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Arnold Schwaighofer92226dd2007-10-12 21:53:12 +00001//===-- X86ISelLowering.cpp - X86 DAG Lowering Implementation -------------===//
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file defines the interfaces that X86 uses to lower LLVM code into a
11// selection DAG.
12//
13//===----------------------------------------------------------------------===//
14
Evan Chengb1712452010-01-27 06:25:16 +000015#define DEBUG_TYPE "x86-isel"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000016#include "X86.h"
Evan Cheng0cc39452006-01-16 21:21:29 +000017#include "X86InstrBuilder.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000018#include "X86ISelLowering.h"
19#include "X86TargetMachine.h"
Chris Lattner8c6ed052009-09-16 01:46:41 +000020#include "X86TargetObjectFile.h"
David Greene583b68f2011-02-17 19:18:59 +000021#include "Utils/X86ShuffleDecode.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000022#include "llvm/CallingConv.h"
Evan Cheng223547a2006-01-31 22:28:30 +000023#include "llvm/Constants.h"
Evan Cheng347d5f72006-04-28 21:29:37 +000024#include "llvm/DerivedTypes.h"
Chris Lattnerb903bed2009-06-26 21:20:29 +000025#include "llvm/GlobalAlias.h"
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +000026#include "llvm/GlobalVariable.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000027#include "llvm/Function.h"
Chris Lattnerb8105652009-07-20 17:51:36 +000028#include "llvm/Instructions.h"
Evan Cheng6be2c582006-04-05 23:38:46 +000029#include "llvm/Intrinsics.h"
Owen Andersona90b3dc2009-07-15 21:51:10 +000030#include "llvm/LLVMContext.h"
Evan Cheng55d42002011-01-08 01:24:27 +000031#include "llvm/CodeGen/IntrinsicLowering.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000032#include "llvm/CodeGen/MachineFrameInfo.h"
Evan Cheng4a460802006-01-11 00:33:36 +000033#include "llvm/CodeGen/MachineFunction.h"
34#include "llvm/CodeGen/MachineInstrBuilder.h"
Chris Lattner5e1df8d2010-01-25 23:38:14 +000035#include "llvm/CodeGen/MachineJumpTableInfo.h"
Evan Chenga844bde2008-02-02 04:07:54 +000036#include "llvm/CodeGen/MachineModuleInfo.h"
Chris Lattner84bc5422007-12-31 04:13:23 +000037#include "llvm/CodeGen/MachineRegisterInfo.h"
Chris Lattner589c6f62010-01-26 06:28:43 +000038#include "llvm/MC/MCAsmInfo.h"
Chris Lattnerc64daab2010-01-26 05:02:42 +000039#include "llvm/MC/MCContext.h"
Daniel Dunbar4e815f82010-03-15 23:51:06 +000040#include "llvm/MC/MCExpr.h"
Chris Lattnerc64daab2010-01-26 05:02:42 +000041#include "llvm/MC/MCSymbol.h"
Chris Lattnerc64daab2010-01-26 05:02:42 +000042#include "llvm/ADT/BitVector.h"
Evan Cheng14b32e12007-12-11 01:46:18 +000043#include "llvm/ADT/SmallSet.h"
Evan Chengb1712452010-01-27 06:25:16 +000044#include "llvm/ADT/Statistic.h"
Chris Lattner1a60aa72006-10-31 19:42:44 +000045#include "llvm/ADT/StringExtras.h"
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000046#include "llvm/ADT/VariadicFunction.h"
Chris Lattnerc64daab2010-01-26 05:02:42 +000047#include "llvm/ADT/VectorExtras.h"
Evan Cheng485fafc2011-03-21 01:19:09 +000048#include "llvm/Support/CallSite.h"
Chris Lattnerc64daab2010-01-26 05:02:42 +000049#include "llvm/Support/Debug.h"
Bill Wendlingec041eb2010-03-12 19:20:40 +000050#include "llvm/Support/Dwarf.h"
Chris Lattnerc64daab2010-01-26 05:02:42 +000051#include "llvm/Support/ErrorHandling.h"
52#include "llvm/Support/MathExtras.h"
Torok Edwindac237e2009-07-08 20:53:28 +000053#include "llvm/Support/raw_ostream.h"
Rafael Espindola151ab3e2011-08-30 19:47:04 +000054#include "llvm/Target/TargetOptions.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000055using namespace llvm;
Bill Wendlingec041eb2010-03-12 19:20:40 +000056using namespace dwarf;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000057
Evan Chengb1712452010-01-27 06:25:16 +000058STATISTIC(NumTailCalls, "Number of tail calls");
59
Evan Cheng10e86422008-04-25 19:11:04 +000060// Forward declarations.
Owen Andersone50ed302009-08-10 22:56:29 +000061static SDValue getMOVL(SelectionDAG &DAG, DebugLoc dl, EVT VT, SDValue V1,
Nate Begeman9008ca62009-04-27 18:41:29 +000062 SDValue V2);
Evan Cheng10e86422008-04-25 19:11:04 +000063
David Greenea5f26012011-02-07 19:36:54 +000064static SDValue Insert128BitVector(SDValue Result,
65 SDValue Vec,
66 SDValue Idx,
67 SelectionDAG &DAG,
68 DebugLoc dl);
David Greenef125a292011-02-08 19:04:41 +000069
David Greenea5f26012011-02-07 19:36:54 +000070static SDValue Extract128BitVector(SDValue Vec,
71 SDValue Idx,
72 SelectionDAG &DAG,
73 DebugLoc dl);
74
75/// Generate a DAG to grab 128-bits from a vector > 128 bits. This
76/// sets things up to match to an AVX VEXTRACTF128 instruction or a
David Greene74a579d2011-02-10 16:57:36 +000077/// simple subregister reference. Idx is an index in the 128 bits we
78/// want. It need not be aligned to a 128-bit bounday. That makes
79/// lowering EXTRACT_VECTOR_ELT operations easier.
David Greenea5f26012011-02-07 19:36:54 +000080static SDValue Extract128BitVector(SDValue Vec,
81 SDValue Idx,
82 SelectionDAG &DAG,
83 DebugLoc dl) {
84 EVT VT = Vec.getValueType();
85 assert(VT.getSizeInBits() == 256 && "Unexpected vector size!");
David Greenea5f26012011-02-07 19:36:54 +000086 EVT ElVT = VT.getVectorElementType();
Bruno Cardoso Lopes67727ca2011-07-21 01:55:27 +000087 int Factor = VT.getSizeInBits()/128;
88 EVT ResultVT = EVT::getVectorVT(*DAG.getContext(), ElVT,
89 VT.getVectorNumElements()/Factor);
David Greenea5f26012011-02-07 19:36:54 +000090
91 // Extract from UNDEF is UNDEF.
92 if (Vec.getOpcode() == ISD::UNDEF)
93 return DAG.getNode(ISD::UNDEF, dl, ResultVT);
94
95 if (isa<ConstantSDNode>(Idx)) {
96 unsigned IdxVal = cast<ConstantSDNode>(Idx)->getZExtValue();
97
98 // Extract the relevant 128 bits. Generate an EXTRACT_SUBVECTOR
99 // we can match to VEXTRACTF128.
100 unsigned ElemsPerChunk = 128 / ElVT.getSizeInBits();
101
102 // This is the index of the first element of the 128-bit chunk
103 // we want.
104 unsigned NormalizedIdxVal = (((IdxVal * ElVT.getSizeInBits()) / 128)
105 * ElemsPerChunk);
106
107 SDValue VecIdx = DAG.getConstant(NormalizedIdxVal, MVT::i32);
David Greenea5f26012011-02-07 19:36:54 +0000108 SDValue Result = DAG.getNode(ISD::EXTRACT_SUBVECTOR, dl, ResultVT, Vec,
109 VecIdx);
110
111 return Result;
112 }
113
114 return SDValue();
115}
116
117/// Generate a DAG to put 128-bits into a vector > 128 bits. This
118/// sets things up to match to an AVX VINSERTF128 instruction or a
David Greene6b381262011-02-09 15:32:06 +0000119/// simple superregister reference. Idx is an index in the 128 bits
120/// we want. It need not be aligned to a 128-bit bounday. That makes
121/// lowering INSERT_VECTOR_ELT operations easier.
David Greenea5f26012011-02-07 19:36:54 +0000122static SDValue Insert128BitVector(SDValue Result,
123 SDValue Vec,
124 SDValue Idx,
125 SelectionDAG &DAG,
126 DebugLoc dl) {
127 if (isa<ConstantSDNode>(Idx)) {
128 EVT VT = Vec.getValueType();
129 assert(VT.getSizeInBits() == 128 && "Unexpected vector size!");
130
131 EVT ElVT = VT.getVectorElementType();
David Greenea5f26012011-02-07 19:36:54 +0000132 unsigned IdxVal = cast<ConstantSDNode>(Idx)->getZExtValue();
David Greenea5f26012011-02-07 19:36:54 +0000133 EVT ResultVT = Result.getValueType();
134
135 // Insert the relevant 128 bits.
Bruno Cardoso Lopes67727ca2011-07-21 01:55:27 +0000136 unsigned ElemsPerChunk = 128/ElVT.getSizeInBits();
David Greenea5f26012011-02-07 19:36:54 +0000137
138 // This is the index of the first element of the 128-bit chunk
139 // we want.
Bruno Cardoso Lopes67727ca2011-07-21 01:55:27 +0000140 unsigned NormalizedIdxVal = (((IdxVal * ElVT.getSizeInBits())/128)
David Greenea5f26012011-02-07 19:36:54 +0000141 * ElemsPerChunk);
142
143 SDValue VecIdx = DAG.getConstant(NormalizedIdxVal, MVT::i32);
David Greenea5f26012011-02-07 19:36:54 +0000144 Result = DAG.getNode(ISD::INSERT_SUBVECTOR, dl, ResultVT, Result, Vec,
145 VecIdx);
146 return Result;
147 }
148
149 return SDValue();
150}
151
Chris Lattnerf0144122009-07-28 03:13:23 +0000152static TargetLoweringObjectFile *createTLOF(X86TargetMachine &TM) {
Evan Cheng2bffee22011-02-01 01:14:13 +0000153 const X86Subtarget *Subtarget = &TM.getSubtarget<X86Subtarget>();
154 bool is64Bit = Subtarget->is64Bit();
NAKAMURA Takumi27635382011-02-05 15:10:54 +0000155
Evan Cheng2bffee22011-02-01 01:14:13 +0000156 if (Subtarget->isTargetEnvMacho()) {
Chris Lattnere019ec12010-12-19 20:07:10 +0000157 if (is64Bit)
158 return new X8664_MachoTargetObjectFile();
Anton Korobeynikov293d5922010-02-21 20:28:15 +0000159 return new TargetLoweringObjectFileMachO();
Michael J. Spencerec38de22010-10-10 22:04:20 +0000160 }
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +0000161
Evan Cheng203576a2011-07-20 19:50:42 +0000162 if (Subtarget->isTargetELF())
163 return new TargetLoweringObjectFileELF();
Evan Cheng2bffee22011-02-01 01:14:13 +0000164 if (Subtarget->isTargetCOFF() && !Subtarget->isTargetEnvMacho())
Chris Lattnere019ec12010-12-19 20:07:10 +0000165 return new TargetLoweringObjectFileCOFF();
Eric Christopher62f35a22010-07-05 19:26:33 +0000166 llvm_unreachable("unknown subtarget type");
Chris Lattnerf0144122009-07-28 03:13:23 +0000167}
168
Dan Gohmanc9f5f3f2008-05-14 01:58:56 +0000169X86TargetLowering::X86TargetLowering(X86TargetMachine &TM)
Chris Lattnerf0144122009-07-28 03:13:23 +0000170 : TargetLowering(TM, createTLOF(TM)) {
Evan Cheng559806f2006-01-27 08:10:46 +0000171 Subtarget = &TM.getSubtarget<X86Subtarget>();
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +0000172 X86ScalarSSEf64 = Subtarget->hasXMMInt();
173 X86ScalarSSEf32 = Subtarget->hasXMM();
Evan Cheng25ab6902006-09-08 06:48:29 +0000174 X86StackPtr = Subtarget->is64Bit() ? X86::RSP : X86::ESP;
Anton Korobeynikovbff66b02008-09-09 18:22:57 +0000175
Anton Korobeynikov2365f512007-07-14 14:06:15 +0000176 RegInfo = TM.getRegisterInfo();
Anton Korobeynikovbff66b02008-09-09 18:22:57 +0000177 TD = getTargetData();
Anton Korobeynikov2365f512007-07-14 14:06:15 +0000178
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000179 // Set up the TargetLowering object.
Chris Lattnera34b3cf2010-12-19 20:03:11 +0000180 static MVT IntVTs[] = { MVT::i8, MVT::i16, MVT::i32, MVT::i64 };
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000181
182 // X86 is weird, it always uses i8 for shift amounts and setcc results.
Duncan Sands03228082008-11-23 15:47:28 +0000183 setBooleanContents(ZeroOrOneBooleanContent);
Duncan Sands28b77e92011-09-06 19:07:46 +0000184 // X86-SSE is even stranger. It uses -1 or 0 for vector masks.
185 setBooleanVectorContents(ZeroOrNegativeOneBooleanContent);
Eric Christopher471e4222011-06-08 23:55:35 +0000186
Eric Christopherde5e1012011-03-11 01:05:58 +0000187 // For 64-bit since we have so many registers use the ILP scheduler, for
188 // 32-bit code use the register pressure specific scheduling.
189 if (Subtarget->is64Bit())
190 setSchedulingPreference(Sched::ILP);
191 else
192 setSchedulingPreference(Sched::RegPressure);
Evan Cheng25ab6902006-09-08 06:48:29 +0000193 setStackPointerRegisterToSaveRestore(X86StackPtr);
Evan Cheng714554d2006-03-16 21:47:42 +0000194
Michael J. Spencer92bf38c2010-10-10 23:11:06 +0000195 if (Subtarget->isTargetWindows() && !Subtarget->isTargetCygMing()) {
Michael J. Spencer1802a9f2010-10-10 22:04:34 +0000196 // Setup Windows compiler runtime calls.
197 setLibcallName(RTLIB::SDIV_I64, "_alldiv");
Michael J. Spencer335b8062010-10-11 05:29:15 +0000198 setLibcallName(RTLIB::UDIV_I64, "_aulldiv");
Julien Lerougef2960822011-07-08 21:40:25 +0000199 setLibcallName(RTLIB::SREM_I64, "_allrem");
200 setLibcallName(RTLIB::UREM_I64, "_aullrem");
201 setLibcallName(RTLIB::MUL_I64, "_allmul");
Michael J. Spencer335b8062010-10-11 05:29:15 +0000202 setLibcallName(RTLIB::FPTOUINT_F64_I64, "_ftol2");
Michael J. Spencer94f7eeb2010-10-19 07:32:52 +0000203 setLibcallName(RTLIB::FPTOUINT_F32_I64, "_ftol2");
Michael J. Spencer1802a9f2010-10-10 22:04:34 +0000204 setLibcallCallingConv(RTLIB::SDIV_I64, CallingConv::X86_StdCall);
Michael J. Spencer335b8062010-10-11 05:29:15 +0000205 setLibcallCallingConv(RTLIB::UDIV_I64, CallingConv::X86_StdCall);
Julien Lerougef2960822011-07-08 21:40:25 +0000206 setLibcallCallingConv(RTLIB::SREM_I64, CallingConv::X86_StdCall);
207 setLibcallCallingConv(RTLIB::UREM_I64, CallingConv::X86_StdCall);
208 setLibcallCallingConv(RTLIB::MUL_I64, CallingConv::X86_StdCall);
Michael J. Spencer6dad10e2010-10-27 18:52:38 +0000209 setLibcallCallingConv(RTLIB::FPTOUINT_F64_I64, CallingConv::C);
210 setLibcallCallingConv(RTLIB::FPTOUINT_F32_I64, CallingConv::C);
Michael J. Spencer1802a9f2010-10-10 22:04:34 +0000211 }
212
Anton Korobeynikovd27a2582006-12-10 23:12:42 +0000213 if (Subtarget->isTargetDarwin()) {
Evan Chengdf57fa02006-03-17 20:31:41 +0000214 // Darwin should use _setjmp/_longjmp instead of setjmp/longjmp.
Anton Korobeynikovd27a2582006-12-10 23:12:42 +0000215 setUseUnderscoreSetJmp(false);
216 setUseUnderscoreLongJmp(false);
Anton Korobeynikov317848f2007-01-03 11:43:14 +0000217 } else if (Subtarget->isTargetMingw()) {
Anton Korobeynikovd27a2582006-12-10 23:12:42 +0000218 // MS runtime is weird: it exports _setjmp, but longjmp!
219 setUseUnderscoreSetJmp(true);
220 setUseUnderscoreLongJmp(false);
221 } else {
222 setUseUnderscoreSetJmp(true);
223 setUseUnderscoreLongJmp(true);
224 }
Scott Michelfdc40a02009-02-17 22:15:04 +0000225
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000226 // Set up the register classes.
Owen Anderson825b72b2009-08-11 20:47:22 +0000227 addRegisterClass(MVT::i8, X86::GR8RegisterClass);
Dan Gohman71edb242010-04-30 18:30:26 +0000228 addRegisterClass(MVT::i16, X86::GR16RegisterClass);
Owen Anderson825b72b2009-08-11 20:47:22 +0000229 addRegisterClass(MVT::i32, X86::GR32RegisterClass);
Evan Cheng25ab6902006-09-08 06:48:29 +0000230 if (Subtarget->is64Bit())
Owen Anderson825b72b2009-08-11 20:47:22 +0000231 addRegisterClass(MVT::i64, X86::GR64RegisterClass);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000232
Owen Anderson825b72b2009-08-11 20:47:22 +0000233 setLoadExtAction(ISD::SEXTLOAD, MVT::i1, Promote);
Evan Chengc5484282006-10-04 00:56:09 +0000234
Scott Michelfdc40a02009-02-17 22:15:04 +0000235 // We don't accept any truncstore of integer registers.
Owen Anderson825b72b2009-08-11 20:47:22 +0000236 setTruncStoreAction(MVT::i64, MVT::i32, Expand);
Dan Gohman71edb242010-04-30 18:30:26 +0000237 setTruncStoreAction(MVT::i64, MVT::i16, Expand);
Owen Anderson825b72b2009-08-11 20:47:22 +0000238 setTruncStoreAction(MVT::i64, MVT::i8 , Expand);
Dan Gohman71edb242010-04-30 18:30:26 +0000239 setTruncStoreAction(MVT::i32, MVT::i16, Expand);
Owen Anderson825b72b2009-08-11 20:47:22 +0000240 setTruncStoreAction(MVT::i32, MVT::i8 , Expand);
241 setTruncStoreAction(MVT::i16, MVT::i8, Expand);
Evan Cheng7f042682008-10-15 02:05:31 +0000242
243 // SETOEQ and SETUNE require checking two conditions.
Owen Anderson825b72b2009-08-11 20:47:22 +0000244 setCondCodeAction(ISD::SETOEQ, MVT::f32, Expand);
245 setCondCodeAction(ISD::SETOEQ, MVT::f64, Expand);
246 setCondCodeAction(ISD::SETOEQ, MVT::f80, Expand);
247 setCondCodeAction(ISD::SETUNE, MVT::f32, Expand);
248 setCondCodeAction(ISD::SETUNE, MVT::f64, Expand);
249 setCondCodeAction(ISD::SETUNE, MVT::f80, Expand);
Chris Lattnerddf89562008-01-17 19:59:44 +0000250
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000251 // Promote all UINT_TO_FP to larger SINT_TO_FP's, as X86 doesn't have this
252 // operation.
Owen Anderson825b72b2009-08-11 20:47:22 +0000253 setOperationAction(ISD::UINT_TO_FP , MVT::i1 , Promote);
254 setOperationAction(ISD::UINT_TO_FP , MVT::i8 , Promote);
255 setOperationAction(ISD::UINT_TO_FP , MVT::i16 , Promote);
Evan Cheng6892f282006-01-17 02:32:49 +0000256
Evan Cheng25ab6902006-09-08 06:48:29 +0000257 if (Subtarget->is64Bit()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000258 setOperationAction(ISD::UINT_TO_FP , MVT::i32 , Promote);
259 setOperationAction(ISD::UINT_TO_FP , MVT::i64 , Expand);
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000260 } else if (!TM.Options.UseSoftFloat) {
Dale Johannesen8d908eb2010-05-15 18:51:12 +0000261 // We have an algorithm for SSE2->double, and we turn this into a
262 // 64-bit FILD followed by conditional FADD for other targets.
263 setOperationAction(ISD::UINT_TO_FP , MVT::i64 , Custom);
Eli Friedman948e95a2009-05-23 09:59:16 +0000264 // We have an algorithm for SSE2, and we turn this into a 64-bit
265 // FILD for other targets.
Dale Johannesen8d908eb2010-05-15 18:51:12 +0000266 setOperationAction(ISD::UINT_TO_FP , MVT::i32 , Custom);
Evan Cheng25ab6902006-09-08 06:48:29 +0000267 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000268
269 // Promote i1/i8 SINT_TO_FP to larger SINT_TO_FP's, as X86 doesn't have
270 // this operation.
Owen Anderson825b72b2009-08-11 20:47:22 +0000271 setOperationAction(ISD::SINT_TO_FP , MVT::i1 , Promote);
272 setOperationAction(ISD::SINT_TO_FP , MVT::i8 , Promote);
Bill Wendling105be5a2009-03-13 08:41:47 +0000273
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000274 if (!TM.Options.UseSoftFloat) {
Bill Wendling105be5a2009-03-13 08:41:47 +0000275 // SSE has no i16 to fp conversion, only i32
276 if (X86ScalarSSEf32) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000277 setOperationAction(ISD::SINT_TO_FP , MVT::i16 , Promote);
Bill Wendling105be5a2009-03-13 08:41:47 +0000278 // f32 and f64 cases are Legal, f80 case is not
Owen Anderson825b72b2009-08-11 20:47:22 +0000279 setOperationAction(ISD::SINT_TO_FP , MVT::i32 , Custom);
Bill Wendling105be5a2009-03-13 08:41:47 +0000280 } else {
Owen Anderson825b72b2009-08-11 20:47:22 +0000281 setOperationAction(ISD::SINT_TO_FP , MVT::i16 , Custom);
282 setOperationAction(ISD::SINT_TO_FP , MVT::i32 , Custom);
Bill Wendling105be5a2009-03-13 08:41:47 +0000283 }
Dale Johannesen9e3d3ab2007-09-14 22:26:36 +0000284 } else {
Owen Anderson825b72b2009-08-11 20:47:22 +0000285 setOperationAction(ISD::SINT_TO_FP , MVT::i16 , Promote);
286 setOperationAction(ISD::SINT_TO_FP , MVT::i32 , Promote);
Evan Cheng5298bcc2006-02-17 07:01:52 +0000287 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000288
Dale Johannesen73328d12007-09-19 23:55:34 +0000289 // In 32-bit mode these are custom lowered. In 64-bit mode F32 and F64
290 // are Legal, f80 is custom lowered.
Owen Anderson825b72b2009-08-11 20:47:22 +0000291 setOperationAction(ISD::FP_TO_SINT , MVT::i64 , Custom);
292 setOperationAction(ISD::SINT_TO_FP , MVT::i64 , Custom);
Evan Cheng6dab0532006-01-30 08:02:57 +0000293
Evan Cheng02568ff2006-01-30 22:13:22 +0000294 // Promote i1/i8 FP_TO_SINT to larger FP_TO_SINTS's, as X86 doesn't have
295 // this operation.
Owen Anderson825b72b2009-08-11 20:47:22 +0000296 setOperationAction(ISD::FP_TO_SINT , MVT::i1 , Promote);
297 setOperationAction(ISD::FP_TO_SINT , MVT::i8 , Promote);
Evan Cheng02568ff2006-01-30 22:13:22 +0000298
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000299 if (X86ScalarSSEf32) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000300 setOperationAction(ISD::FP_TO_SINT , MVT::i16 , Promote);
Dale Johannesen9e3d3ab2007-09-14 22:26:36 +0000301 // f32 and f64 cases are Legal, f80 case is not
Owen Anderson825b72b2009-08-11 20:47:22 +0000302 setOperationAction(ISD::FP_TO_SINT , MVT::i32 , Custom);
Evan Cheng02568ff2006-01-30 22:13:22 +0000303 } else {
Owen Anderson825b72b2009-08-11 20:47:22 +0000304 setOperationAction(ISD::FP_TO_SINT , MVT::i16 , Custom);
305 setOperationAction(ISD::FP_TO_SINT , MVT::i32 , Custom);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000306 }
307
308 // Handle FP_TO_UINT by promoting the destination to a larger signed
309 // conversion.
Owen Anderson825b72b2009-08-11 20:47:22 +0000310 setOperationAction(ISD::FP_TO_UINT , MVT::i1 , Promote);
311 setOperationAction(ISD::FP_TO_UINT , MVT::i8 , Promote);
312 setOperationAction(ISD::FP_TO_UINT , MVT::i16 , Promote);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000313
Evan Cheng25ab6902006-09-08 06:48:29 +0000314 if (Subtarget->is64Bit()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000315 setOperationAction(ISD::FP_TO_UINT , MVT::i64 , Expand);
316 setOperationAction(ISD::FP_TO_UINT , MVT::i32 , Promote);
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000317 } else if (!TM.Options.UseSoftFloat) {
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +0000318 // Since AVX is a superset of SSE3, only check for SSE here.
319 if (Subtarget->hasSSE1() && !Subtarget->hasSSE3())
Evan Cheng25ab6902006-09-08 06:48:29 +0000320 // Expand FP_TO_UINT into a select.
321 // FIXME: We would like to use a Custom expander here eventually to do
322 // the optimal thing for SSE vs. the default expansion in the legalizer.
Owen Anderson825b72b2009-08-11 20:47:22 +0000323 setOperationAction(ISD::FP_TO_UINT , MVT::i32 , Expand);
Evan Cheng25ab6902006-09-08 06:48:29 +0000324 else
Eli Friedman948e95a2009-05-23 09:59:16 +0000325 // With SSE3 we can use fisttpll to convert to a signed i64; without
326 // SSE, we're stuck with a fistpll.
Owen Anderson825b72b2009-08-11 20:47:22 +0000327 setOperationAction(ISD::FP_TO_UINT , MVT::i32 , Custom);
Evan Cheng25ab6902006-09-08 06:48:29 +0000328 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000329
Chris Lattner399610a2006-12-05 18:22:22 +0000330 // TODO: when we have SSE, these could be more efficient, by using movd/movq.
Michael J. Spencerec38de22010-10-10 22:04:20 +0000331 if (!X86ScalarSSEf64) {
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000332 setOperationAction(ISD::BITCAST , MVT::f32 , Expand);
333 setOperationAction(ISD::BITCAST , MVT::i32 , Expand);
Dale Johannesene39859a2010-05-21 18:40:15 +0000334 if (Subtarget->is64Bit()) {
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000335 setOperationAction(ISD::BITCAST , MVT::f64 , Expand);
Dale Johannesen0488fb62010-09-30 23:57:10 +0000336 // Without SSE, i64->f64 goes through memory.
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000337 setOperationAction(ISD::BITCAST , MVT::i64 , Expand);
Dale Johannesen7d07b482010-05-21 00:52:33 +0000338 }
Chris Lattnerf3597a12006-12-05 18:45:06 +0000339 }
Chris Lattner21f66852005-12-23 05:15:23 +0000340
Dan Gohmanb00ee212008-02-18 19:34:53 +0000341 // Scalar integer divide and remainder are lowered to use operations that
342 // produce two results, to match the available instructions. This exposes
343 // the two-result form to trivial CSE, which is able to combine x/y and x%y
344 // into a single instruction.
345 //
346 // Scalar integer multiply-high is also lowered to use two-result
347 // operations, to match the available instructions. However, plain multiply
348 // (low) operations are left as Legal, as there are single-result
349 // instructions for this in x86. Using the two-result multiply instructions
350 // when both high and low results are needed must be arranged by dagcombine.
Chris Lattnere019ec12010-12-19 20:07:10 +0000351 for (unsigned i = 0, e = 4; i != e; ++i) {
352 MVT VT = IntVTs[i];
353 setOperationAction(ISD::MULHS, VT, Expand);
354 setOperationAction(ISD::MULHU, VT, Expand);
355 setOperationAction(ISD::SDIV, VT, Expand);
356 setOperationAction(ISD::UDIV, VT, Expand);
357 setOperationAction(ISD::SREM, VT, Expand);
358 setOperationAction(ISD::UREM, VT, Expand);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +0000359
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +0000360 // Add/Sub overflow ops with MVT::Glues are lowered to EFLAGS dependences.
Chris Lattnerd8ff7ec2010-12-20 01:03:27 +0000361 setOperationAction(ISD::ADDC, VT, Custom);
362 setOperationAction(ISD::ADDE, VT, Custom);
363 setOperationAction(ISD::SUBC, VT, Custom);
364 setOperationAction(ISD::SUBE, VT, Custom);
Chris Lattnere019ec12010-12-19 20:07:10 +0000365 }
Dan Gohmana37c9f72007-09-25 18:23:27 +0000366
Owen Anderson825b72b2009-08-11 20:47:22 +0000367 setOperationAction(ISD::BR_JT , MVT::Other, Expand);
368 setOperationAction(ISD::BRCOND , MVT::Other, Custom);
369 setOperationAction(ISD::BR_CC , MVT::Other, Expand);
370 setOperationAction(ISD::SELECT_CC , MVT::Other, Expand);
Evan Cheng25ab6902006-09-08 06:48:29 +0000371 if (Subtarget->is64Bit())
Owen Anderson825b72b2009-08-11 20:47:22 +0000372 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i32, Legal);
373 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i16 , Legal);
374 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i8 , Legal);
375 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i1 , Expand);
376 setOperationAction(ISD::FP_ROUND_INREG , MVT::f32 , Expand);
377 setOperationAction(ISD::FREM , MVT::f32 , Expand);
378 setOperationAction(ISD::FREM , MVT::f64 , Expand);
379 setOperationAction(ISD::FREM , MVT::f80 , Expand);
380 setOperationAction(ISD::FLT_ROUNDS_ , MVT::i32 , Custom);
Scott Michelfdc40a02009-02-17 22:15:04 +0000381
Chandler Carruth77821022011-12-24 12:12:34 +0000382 // Promote the i8 variants and force them on up to i32 which has a shorter
383 // encoding.
384 setOperationAction(ISD::CTTZ , MVT::i8 , Promote);
385 AddPromotedToType (ISD::CTTZ , MVT::i8 , MVT::i32);
386 setOperationAction(ISD::CTTZ_ZERO_UNDEF , MVT::i8 , Promote);
387 AddPromotedToType (ISD::CTTZ_ZERO_UNDEF , MVT::i8 , MVT::i32);
Craig Topper909652f2011-10-14 03:21:46 +0000388 if (Subtarget->hasBMI()) {
Chandler Carruthd873a4b2011-12-24 11:11:38 +0000389 setOperationAction(ISD::CTTZ_ZERO_UNDEF, MVT::i16 , Expand);
390 setOperationAction(ISD::CTTZ_ZERO_UNDEF, MVT::i32 , Expand);
391 if (Subtarget->is64Bit())
392 setOperationAction(ISD::CTTZ_ZERO_UNDEF, MVT::i64, Expand);
Craig Topper909652f2011-10-14 03:21:46 +0000393 } else {
Craig Topper909652f2011-10-14 03:21:46 +0000394 setOperationAction(ISD::CTTZ , MVT::i16 , Custom);
395 setOperationAction(ISD::CTTZ , MVT::i32 , Custom);
396 if (Subtarget->is64Bit())
397 setOperationAction(ISD::CTTZ , MVT::i64 , Custom);
398 }
Craig Topper37f21672011-10-11 06:44:02 +0000399
400 if (Subtarget->hasLZCNT()) {
Chandler Carruth77821022011-12-24 12:12:34 +0000401 // When promoting the i8 variants, force them to i32 for a shorter
402 // encoding.
Craig Topper37f21672011-10-11 06:44:02 +0000403 setOperationAction(ISD::CTLZ , MVT::i8 , Promote);
Chandler Carruth77821022011-12-24 12:12:34 +0000404 AddPromotedToType (ISD::CTLZ , MVT::i8 , MVT::i32);
405 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i8 , Promote);
406 AddPromotedToType (ISD::CTLZ_ZERO_UNDEF, MVT::i8 , MVT::i32);
Chandler Carruthacc068e2011-12-24 10:55:54 +0000407 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i16 , Expand);
408 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i32 , Expand);
409 if (Subtarget->is64Bit())
410 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i64, Expand);
Craig Topper37f21672011-10-11 06:44:02 +0000411 } else {
412 setOperationAction(ISD::CTLZ , MVT::i8 , Custom);
413 setOperationAction(ISD::CTLZ , MVT::i16 , Custom);
414 setOperationAction(ISD::CTLZ , MVT::i32 , Custom);
Chandler Carruthacc068e2011-12-24 10:55:54 +0000415 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i8 , Custom);
416 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i16 , Custom);
417 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i32 , Custom);
418 if (Subtarget->is64Bit()) {
Craig Topper37f21672011-10-11 06:44:02 +0000419 setOperationAction(ISD::CTLZ , MVT::i64 , Custom);
Chandler Carruthacc068e2011-12-24 10:55:54 +0000420 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i64, Custom);
421 }
Evan Cheng25ab6902006-09-08 06:48:29 +0000422 }
423
Benjamin Kramer1292c222010-12-04 20:32:23 +0000424 if (Subtarget->hasPOPCNT()) {
425 setOperationAction(ISD::CTPOP , MVT::i8 , Promote);
426 } else {
427 setOperationAction(ISD::CTPOP , MVT::i8 , Expand);
428 setOperationAction(ISD::CTPOP , MVT::i16 , Expand);
429 setOperationAction(ISD::CTPOP , MVT::i32 , Expand);
430 if (Subtarget->is64Bit())
431 setOperationAction(ISD::CTPOP , MVT::i64 , Expand);
432 }
433
Owen Anderson825b72b2009-08-11 20:47:22 +0000434 setOperationAction(ISD::READCYCLECOUNTER , MVT::i64 , Custom);
435 setOperationAction(ISD::BSWAP , MVT::i16 , Expand);
Nate Begeman35ef9132006-01-11 21:21:00 +0000436
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000437 // These should be promoted to a larger select which is supported.
Dan Gohmancbbea0f2009-08-27 00:14:12 +0000438 setOperationAction(ISD::SELECT , MVT::i1 , Promote);
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000439 // X86 wants to expand cmov itself.
Dan Gohmancbbea0f2009-08-27 00:14:12 +0000440 setOperationAction(ISD::SELECT , MVT::i8 , Custom);
Chris Lattnere019ec12010-12-19 20:07:10 +0000441 setOperationAction(ISD::SELECT , MVT::i16 , Custom);
Owen Anderson825b72b2009-08-11 20:47:22 +0000442 setOperationAction(ISD::SELECT , MVT::i32 , Custom);
443 setOperationAction(ISD::SELECT , MVT::f32 , Custom);
444 setOperationAction(ISD::SELECT , MVT::f64 , Custom);
445 setOperationAction(ISD::SELECT , MVT::f80 , Custom);
446 setOperationAction(ISD::SETCC , MVT::i8 , Custom);
Dan Gohman71edb242010-04-30 18:30:26 +0000447 setOperationAction(ISD::SETCC , MVT::i16 , Custom);
Owen Anderson825b72b2009-08-11 20:47:22 +0000448 setOperationAction(ISD::SETCC , MVT::i32 , Custom);
449 setOperationAction(ISD::SETCC , MVT::f32 , Custom);
450 setOperationAction(ISD::SETCC , MVT::f64 , Custom);
451 setOperationAction(ISD::SETCC , MVT::f80 , Custom);
Evan Cheng25ab6902006-09-08 06:48:29 +0000452 if (Subtarget->is64Bit()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000453 setOperationAction(ISD::SELECT , MVT::i64 , Custom);
Andrew Trickf6c39412011-03-23 23:11:02 +0000454 setOperationAction(ISD::SETCC , MVT::i64 , Custom);
Evan Cheng25ab6902006-09-08 06:48:29 +0000455 }
Owen Anderson825b72b2009-08-11 20:47:22 +0000456 setOperationAction(ISD::EH_RETURN , MVT::Other, Custom);
Anton Korobeynikov2365f512007-07-14 14:06:15 +0000457
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000458 // Darwin ABI issue.
Owen Anderson825b72b2009-08-11 20:47:22 +0000459 setOperationAction(ISD::ConstantPool , MVT::i32 , Custom);
460 setOperationAction(ISD::JumpTable , MVT::i32 , Custom);
461 setOperationAction(ISD::GlobalAddress , MVT::i32 , Custom);
462 setOperationAction(ISD::GlobalTLSAddress, MVT::i32 , Custom);
Anton Korobeynikov6625eff2008-05-04 21:36:32 +0000463 if (Subtarget->is64Bit())
Owen Anderson825b72b2009-08-11 20:47:22 +0000464 setOperationAction(ISD::GlobalTLSAddress, MVT::i64, Custom);
465 setOperationAction(ISD::ExternalSymbol , MVT::i32 , Custom);
Dan Gohmanf705adb2009-10-30 01:28:02 +0000466 setOperationAction(ISD::BlockAddress , MVT::i32 , Custom);
Evan Cheng25ab6902006-09-08 06:48:29 +0000467 if (Subtarget->is64Bit()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000468 setOperationAction(ISD::ConstantPool , MVT::i64 , Custom);
469 setOperationAction(ISD::JumpTable , MVT::i64 , Custom);
470 setOperationAction(ISD::GlobalAddress , MVT::i64 , Custom);
471 setOperationAction(ISD::ExternalSymbol, MVT::i64 , Custom);
Dan Gohmanf705adb2009-10-30 01:28:02 +0000472 setOperationAction(ISD::BlockAddress , MVT::i64 , Custom);
Evan Cheng25ab6902006-09-08 06:48:29 +0000473 }
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000474 // 64-bit addm sub, shl, sra, srl (iff 32-bit x86)
Owen Anderson825b72b2009-08-11 20:47:22 +0000475 setOperationAction(ISD::SHL_PARTS , MVT::i32 , Custom);
476 setOperationAction(ISD::SRA_PARTS , MVT::i32 , Custom);
477 setOperationAction(ISD::SRL_PARTS , MVT::i32 , Custom);
Dan Gohman4c1fa612008-03-03 22:22:09 +0000478 if (Subtarget->is64Bit()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000479 setOperationAction(ISD::SHL_PARTS , MVT::i64 , Custom);
480 setOperationAction(ISD::SRA_PARTS , MVT::i64 , Custom);
481 setOperationAction(ISD::SRL_PARTS , MVT::i64 , Custom);
Dan Gohman4c1fa612008-03-03 22:22:09 +0000482 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000483
Nate Begeman2ea8ee72010-12-10 00:26:57 +0000484 if (Subtarget->hasXMM())
Owen Anderson825b72b2009-08-11 20:47:22 +0000485 setOperationAction(ISD::PREFETCH , MVT::Other, Legal);
Evan Cheng27b7db52008-03-08 00:58:38 +0000486
Eric Christopher9a9d2752010-07-22 02:48:34 +0000487 setOperationAction(ISD::MEMBARRIER , MVT::Other, Custom);
Eli Friedman14648462011-07-27 22:21:52 +0000488 setOperationAction(ISD::ATOMIC_FENCE , MVT::Other, Custom);
Michael J. Spencerec38de22010-10-10 22:04:20 +0000489
Jim Grosbachf1ab49e2010-06-23 16:25:07 +0000490 // On X86 and X86-64, atomic operations are lowered to locked instructions.
491 // Locked instructions, in turn, have implicit fence semantics (all memory
492 // operations are flushed before issuing the locked instruction, and they
493 // are not buffered), so we can fold away the common pattern of
494 // fence-atomic-fence.
495 setShouldFoldAtomicFences(true);
Andrew Lenharthd497d9f2008-02-16 14:46:26 +0000496
Mon P Wang63307c32008-05-05 19:05:59 +0000497 // Expand certain atomics
Chris Lattnere019ec12010-12-19 20:07:10 +0000498 for (unsigned i = 0, e = 4; i != e; ++i) {
499 MVT VT = IntVTs[i];
500 setOperationAction(ISD::ATOMIC_CMP_SWAP, VT, Custom);
501 setOperationAction(ISD::ATOMIC_LOAD_SUB, VT, Custom);
Eli Friedman327236c2011-08-24 20:50:09 +0000502 setOperationAction(ISD::ATOMIC_STORE, VT, Custom);
Chris Lattnere019ec12010-12-19 20:07:10 +0000503 }
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +0000504
Dale Johannesen48c1bc22008-10-02 18:53:47 +0000505 if (!Subtarget->is64Bit()) {
Eli Friedmanf8f90f02011-08-24 22:33:28 +0000506 setOperationAction(ISD::ATOMIC_LOAD, MVT::i64, Custom);
Owen Anderson825b72b2009-08-11 20:47:22 +0000507 setOperationAction(ISD::ATOMIC_LOAD_ADD, MVT::i64, Custom);
508 setOperationAction(ISD::ATOMIC_LOAD_SUB, MVT::i64, Custom);
509 setOperationAction(ISD::ATOMIC_LOAD_AND, MVT::i64, Custom);
510 setOperationAction(ISD::ATOMIC_LOAD_OR, MVT::i64, Custom);
511 setOperationAction(ISD::ATOMIC_LOAD_XOR, MVT::i64, Custom);
512 setOperationAction(ISD::ATOMIC_LOAD_NAND, MVT::i64, Custom);
513 setOperationAction(ISD::ATOMIC_SWAP, MVT::i64, Custom);
Dale Johannesen48c1bc22008-10-02 18:53:47 +0000514 }
515
Eli Friedman43f51ae2011-08-26 21:21:21 +0000516 if (Subtarget->hasCmpxchg16b()) {
517 setOperationAction(ISD::ATOMIC_CMP_SWAP, MVT::i128, Custom);
518 }
519
Evan Cheng3c992d22006-03-07 02:02:57 +0000520 // FIXME - use subtarget debug flags
Anton Korobeynikovab4022f2006-10-31 08:31:24 +0000521 if (!Subtarget->isTargetDarwin() &&
522 !Subtarget->isTargetELF() &&
Dan Gohman44066042008-07-01 00:05:16 +0000523 !Subtarget->isTargetCygMing()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000524 setOperationAction(ISD::EH_LABEL, MVT::Other, Expand);
Dan Gohman44066042008-07-01 00:05:16 +0000525 }
Chris Lattnerf73bae12005-11-29 06:16:21 +0000526
Owen Anderson825b72b2009-08-11 20:47:22 +0000527 setOperationAction(ISD::EXCEPTIONADDR, MVT::i64, Expand);
528 setOperationAction(ISD::EHSELECTION, MVT::i64, Expand);
529 setOperationAction(ISD::EXCEPTIONADDR, MVT::i32, Expand);
530 setOperationAction(ISD::EHSELECTION, MVT::i32, Expand);
Anton Korobeynikovce3b4652007-05-02 19:53:33 +0000531 if (Subtarget->is64Bit()) {
Anton Korobeynikovce3b4652007-05-02 19:53:33 +0000532 setExceptionPointerRegister(X86::RAX);
533 setExceptionSelectorRegister(X86::RDX);
534 } else {
535 setExceptionPointerRegister(X86::EAX);
536 setExceptionSelectorRegister(X86::EDX);
537 }
Owen Anderson825b72b2009-08-11 20:47:22 +0000538 setOperationAction(ISD::FRAME_TO_ARGS_OFFSET, MVT::i32, Custom);
539 setOperationAction(ISD::FRAME_TO_ARGS_OFFSET, MVT::i64, Custom);
Anton Korobeynikov260a6b82008-09-08 21:12:11 +0000540
Duncan Sands4a544a72011-09-06 13:37:06 +0000541 setOperationAction(ISD::INIT_TRAMPOLINE, MVT::Other, Custom);
542 setOperationAction(ISD::ADJUST_TRAMPOLINE, MVT::Other, Custom);
Duncan Sandsb116fac2007-07-27 20:02:49 +0000543
Owen Anderson825b72b2009-08-11 20:47:22 +0000544 setOperationAction(ISD::TRAP, MVT::Other, Legal);
Anton Korobeynikov66fac792008-01-15 07:02:33 +0000545
Nate Begemanacc398c2006-01-25 18:21:52 +0000546 // VASTART needs to be custom lowered to use the VarArgsFrameIndex
Owen Anderson825b72b2009-08-11 20:47:22 +0000547 setOperationAction(ISD::VASTART , MVT::Other, Custom);
548 setOperationAction(ISD::VAEND , MVT::Other, Expand);
Dan Gohman9018e832008-05-10 01:26:14 +0000549 if (Subtarget->is64Bit()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000550 setOperationAction(ISD::VAARG , MVT::Other, Custom);
551 setOperationAction(ISD::VACOPY , MVT::Other, Custom);
Dan Gohman9018e832008-05-10 01:26:14 +0000552 } else {
Owen Anderson825b72b2009-08-11 20:47:22 +0000553 setOperationAction(ISD::VAARG , MVT::Other, Expand);
554 setOperationAction(ISD::VACOPY , MVT::Other, Expand);
Dan Gohman9018e832008-05-10 01:26:14 +0000555 }
Evan Chengae642192007-03-02 23:16:35 +0000556
Owen Anderson825b72b2009-08-11 20:47:22 +0000557 setOperationAction(ISD::STACKSAVE, MVT::Other, Expand);
558 setOperationAction(ISD::STACKRESTORE, MVT::Other, Expand);
Eric Christopherc967ad82011-08-31 04:17:21 +0000559
560 if (Subtarget->isTargetCOFF() && !Subtarget->isTargetEnvMacho())
561 setOperationAction(ISD::DYNAMIC_STACKALLOC, Subtarget->is64Bit() ?
562 MVT::i64 : MVT::i32, Custom);
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000563 else if (TM.Options.EnableSegmentedStacks)
Eric Christopherc967ad82011-08-31 04:17:21 +0000564 setOperationAction(ISD::DYNAMIC_STACKALLOC, Subtarget->is64Bit() ?
565 MVT::i64 : MVT::i32, Custom);
566 else
567 setOperationAction(ISD::DYNAMIC_STACKALLOC, Subtarget->is64Bit() ?
568 MVT::i64 : MVT::i32, Expand);
Chris Lattnerb99329e2006-01-13 02:42:53 +0000569
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000570 if (!TM.Options.UseSoftFloat && X86ScalarSSEf64) {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000571 // f32 and f64 use SSE.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000572 // Set up the FP register classes.
Owen Anderson825b72b2009-08-11 20:47:22 +0000573 addRegisterClass(MVT::f32, X86::FR32RegisterClass);
574 addRegisterClass(MVT::f64, X86::FR64RegisterClass);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000575
Evan Cheng223547a2006-01-31 22:28:30 +0000576 // Use ANDPD to simulate FABS.
Owen Anderson825b72b2009-08-11 20:47:22 +0000577 setOperationAction(ISD::FABS , MVT::f64, Custom);
578 setOperationAction(ISD::FABS , MVT::f32, Custom);
Evan Cheng223547a2006-01-31 22:28:30 +0000579
580 // Use XORP to simulate FNEG.
Owen Anderson825b72b2009-08-11 20:47:22 +0000581 setOperationAction(ISD::FNEG , MVT::f64, Custom);
582 setOperationAction(ISD::FNEG , MVT::f32, Custom);
Evan Cheng223547a2006-01-31 22:28:30 +0000583
Evan Cheng68c47cb2007-01-05 07:55:56 +0000584 // Use ANDPD and ORPD to simulate FCOPYSIGN.
Owen Anderson825b72b2009-08-11 20:47:22 +0000585 setOperationAction(ISD::FCOPYSIGN, MVT::f64, Custom);
586 setOperationAction(ISD::FCOPYSIGN, MVT::f32, Custom);
Evan Cheng68c47cb2007-01-05 07:55:56 +0000587
Stuart Hastings4fd0dee2011-06-01 04:39:42 +0000588 // Lower this to FGETSIGNx86 plus an AND.
589 setOperationAction(ISD::FGETSIGN, MVT::i64, Custom);
590 setOperationAction(ISD::FGETSIGN, MVT::i32, Custom);
591
Evan Chengd25e9e82006-02-02 00:28:23 +0000592 // We don't support sin/cos/fmod
Owen Anderson825b72b2009-08-11 20:47:22 +0000593 setOperationAction(ISD::FSIN , MVT::f64, Expand);
594 setOperationAction(ISD::FCOS , MVT::f64, Expand);
595 setOperationAction(ISD::FSIN , MVT::f32, Expand);
596 setOperationAction(ISD::FCOS , MVT::f32, Expand);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000597
Chris Lattnera54aa942006-01-29 06:26:08 +0000598 // Expand FP immediates into loads from the stack, except for the special
599 // cases we handle.
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000600 addLegalFPImmediate(APFloat(+0.0)); // xorpd
601 addLegalFPImmediate(APFloat(+0.0f)); // xorps
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000602 } else if (!TM.Options.UseSoftFloat && X86ScalarSSEf32) {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000603 // Use SSE for f32, x87 for f64.
604 // Set up the FP register classes.
Owen Anderson825b72b2009-08-11 20:47:22 +0000605 addRegisterClass(MVT::f32, X86::FR32RegisterClass);
606 addRegisterClass(MVT::f64, X86::RFP64RegisterClass);
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000607
608 // Use ANDPS to simulate FABS.
Owen Anderson825b72b2009-08-11 20:47:22 +0000609 setOperationAction(ISD::FABS , MVT::f32, Custom);
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000610
611 // Use XORP to simulate FNEG.
Owen Anderson825b72b2009-08-11 20:47:22 +0000612 setOperationAction(ISD::FNEG , MVT::f32, Custom);
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000613
Owen Anderson825b72b2009-08-11 20:47:22 +0000614 setOperationAction(ISD::UNDEF, MVT::f64, Expand);
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000615
616 // Use ANDPS and ORPS to simulate FCOPYSIGN.
Owen Anderson825b72b2009-08-11 20:47:22 +0000617 setOperationAction(ISD::FCOPYSIGN, MVT::f64, Expand);
618 setOperationAction(ISD::FCOPYSIGN, MVT::f32, Custom);
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000619
620 // We don't support sin/cos/fmod
Owen Anderson825b72b2009-08-11 20:47:22 +0000621 setOperationAction(ISD::FSIN , MVT::f32, Expand);
622 setOperationAction(ISD::FCOS , MVT::f32, Expand);
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000623
Nate Begemane1795842008-02-14 08:57:00 +0000624 // Special cases we handle for FP constants.
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000625 addLegalFPImmediate(APFloat(+0.0f)); // xorps
626 addLegalFPImmediate(APFloat(+0.0)); // FLD0
627 addLegalFPImmediate(APFloat(+1.0)); // FLD1
628 addLegalFPImmediate(APFloat(-0.0)); // FLD0/FCHS
629 addLegalFPImmediate(APFloat(-1.0)); // FLD1/FCHS
630
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000631 if (!TM.Options.UnsafeFPMath) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000632 setOperationAction(ISD::FSIN , MVT::f64 , Expand);
633 setOperationAction(ISD::FCOS , MVT::f64 , Expand);
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000634 }
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000635 } else if (!TM.Options.UseSoftFloat) {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000636 // f32 and f64 in x87.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000637 // Set up the FP register classes.
Owen Anderson825b72b2009-08-11 20:47:22 +0000638 addRegisterClass(MVT::f64, X86::RFP64RegisterClass);
639 addRegisterClass(MVT::f32, X86::RFP32RegisterClass);
Anton Korobeynikov12c49af2006-11-21 00:01:06 +0000640
Owen Anderson825b72b2009-08-11 20:47:22 +0000641 setOperationAction(ISD::UNDEF, MVT::f64, Expand);
642 setOperationAction(ISD::UNDEF, MVT::f32, Expand);
643 setOperationAction(ISD::FCOPYSIGN, MVT::f64, Expand);
644 setOperationAction(ISD::FCOPYSIGN, MVT::f32, Expand);
Dale Johannesen5411a392007-08-09 01:04:01 +0000645
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000646 if (!TM.Options.UnsafeFPMath) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000647 setOperationAction(ISD::FSIN , MVT::f64 , Expand);
648 setOperationAction(ISD::FCOS , MVT::f64 , Expand);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000649 }
Dale Johannesenf04afdb2007-08-30 00:23:21 +0000650 addLegalFPImmediate(APFloat(+0.0)); // FLD0
651 addLegalFPImmediate(APFloat(+1.0)); // FLD1
652 addLegalFPImmediate(APFloat(-0.0)); // FLD0/FCHS
653 addLegalFPImmediate(APFloat(-1.0)); // FLD1/FCHS
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000654 addLegalFPImmediate(APFloat(+0.0f)); // FLD0
655 addLegalFPImmediate(APFloat(+1.0f)); // FLD1
656 addLegalFPImmediate(APFloat(-0.0f)); // FLD0/FCHS
657 addLegalFPImmediate(APFloat(-1.0f)); // FLD1/FCHS
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000658 }
Evan Cheng470a6ad2006-02-22 02:26:30 +0000659
Cameron Zwarich33390842011-07-08 21:39:21 +0000660 // We don't support FMA.
661 setOperationAction(ISD::FMA, MVT::f64, Expand);
662 setOperationAction(ISD::FMA, MVT::f32, Expand);
663
Dale Johannesen59a58732007-08-05 18:49:15 +0000664 // Long double always uses X87.
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000665 if (!TM.Options.UseSoftFloat) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000666 addRegisterClass(MVT::f80, X86::RFP80RegisterClass);
667 setOperationAction(ISD::UNDEF, MVT::f80, Expand);
668 setOperationAction(ISD::FCOPYSIGN, MVT::f80, Expand);
Evan Chengc7ce29b2009-02-13 22:36:38 +0000669 {
Benjamin Kramer98383962010-12-04 14:22:24 +0000670 APFloat TmpFlt = APFloat::getZero(APFloat::x87DoubleExtended);
Evan Chengc7ce29b2009-02-13 22:36:38 +0000671 addLegalFPImmediate(TmpFlt); // FLD0
672 TmpFlt.changeSign();
673 addLegalFPImmediate(TmpFlt); // FLD0/FCHS
Benjamin Kramer98383962010-12-04 14:22:24 +0000674
675 bool ignored;
Evan Chengc7ce29b2009-02-13 22:36:38 +0000676 APFloat TmpFlt2(+1.0);
677 TmpFlt2.convert(APFloat::x87DoubleExtended, APFloat::rmNearestTiesToEven,
678 &ignored);
679 addLegalFPImmediate(TmpFlt2); // FLD1
680 TmpFlt2.changeSign();
681 addLegalFPImmediate(TmpFlt2); // FLD1/FCHS
682 }
Scott Michelfdc40a02009-02-17 22:15:04 +0000683
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000684 if (!TM.Options.UnsafeFPMath) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000685 setOperationAction(ISD::FSIN , MVT::f80 , Expand);
686 setOperationAction(ISD::FCOS , MVT::f80 , Expand);
Evan Chengc7ce29b2009-02-13 22:36:38 +0000687 }
Cameron Zwarich33390842011-07-08 21:39:21 +0000688
Owen Anderson4a4fdf32011-12-08 19:32:14 +0000689 setOperationAction(ISD::FFLOOR, MVT::f80, Expand);
690 setOperationAction(ISD::FCEIL, MVT::f80, Expand);
691 setOperationAction(ISD::FTRUNC, MVT::f80, Expand);
692 setOperationAction(ISD::FRINT, MVT::f80, Expand);
693 setOperationAction(ISD::FNEARBYINT, MVT::f80, Expand);
Cameron Zwarich33390842011-07-08 21:39:21 +0000694 setOperationAction(ISD::FMA, MVT::f80, Expand);
Dale Johannesen2f429012007-09-26 21:10:55 +0000695 }
Dale Johannesen59a58732007-08-05 18:49:15 +0000696
Dan Gohmanf96e4de2007-10-11 23:21:31 +0000697 // Always use a library call for pow.
Owen Anderson825b72b2009-08-11 20:47:22 +0000698 setOperationAction(ISD::FPOW , MVT::f32 , Expand);
699 setOperationAction(ISD::FPOW , MVT::f64 , Expand);
700 setOperationAction(ISD::FPOW , MVT::f80 , Expand);
Dan Gohmanf96e4de2007-10-11 23:21:31 +0000701
Owen Anderson825b72b2009-08-11 20:47:22 +0000702 setOperationAction(ISD::FLOG, MVT::f80, Expand);
703 setOperationAction(ISD::FLOG2, MVT::f80, Expand);
704 setOperationAction(ISD::FLOG10, MVT::f80, Expand);
705 setOperationAction(ISD::FEXP, MVT::f80, Expand);
706 setOperationAction(ISD::FEXP2, MVT::f80, Expand);
Dale Johannesen7794f2a2008-09-04 00:47:13 +0000707
Mon P Wangf007a8b2008-11-06 05:31:54 +0000708 // First set operation action for all vector types to either promote
Mon P Wang0c397192008-10-30 08:01:45 +0000709 // (for widening) or expand (for scalarization). Then we will selectively
710 // turn on ones that can be effectively codegen'd.
Owen Anderson825b72b2009-08-11 20:47:22 +0000711 for (unsigned VT = (unsigned)MVT::FIRST_VECTOR_VALUETYPE;
712 VT <= (unsigned)MVT::LAST_VECTOR_VALUETYPE; ++VT) {
713 setOperationAction(ISD::ADD , (MVT::SimpleValueType)VT, Expand);
714 setOperationAction(ISD::SUB , (MVT::SimpleValueType)VT, Expand);
715 setOperationAction(ISD::FADD, (MVT::SimpleValueType)VT, Expand);
716 setOperationAction(ISD::FNEG, (MVT::SimpleValueType)VT, Expand);
717 setOperationAction(ISD::FSUB, (MVT::SimpleValueType)VT, Expand);
718 setOperationAction(ISD::MUL , (MVT::SimpleValueType)VT, Expand);
719 setOperationAction(ISD::FMUL, (MVT::SimpleValueType)VT, Expand);
720 setOperationAction(ISD::SDIV, (MVT::SimpleValueType)VT, Expand);
721 setOperationAction(ISD::UDIV, (MVT::SimpleValueType)VT, Expand);
722 setOperationAction(ISD::FDIV, (MVT::SimpleValueType)VT, Expand);
723 setOperationAction(ISD::SREM, (MVT::SimpleValueType)VT, Expand);
724 setOperationAction(ISD::UREM, (MVT::SimpleValueType)VT, Expand);
725 setOperationAction(ISD::LOAD, (MVT::SimpleValueType)VT, Expand);
726 setOperationAction(ISD::VECTOR_SHUFFLE, (MVT::SimpleValueType)VT, Expand);
727 setOperationAction(ISD::EXTRACT_VECTOR_ELT,(MVT::SimpleValueType)VT,Expand);
Owen Anderson825b72b2009-08-11 20:47:22 +0000728 setOperationAction(ISD::INSERT_VECTOR_ELT,(MVT::SimpleValueType)VT, Expand);
David Greenecfe33c42011-01-26 19:13:22 +0000729 setOperationAction(ISD::EXTRACT_SUBVECTOR,(MVT::SimpleValueType)VT,Expand);
730 setOperationAction(ISD::INSERT_SUBVECTOR,(MVT::SimpleValueType)VT,Expand);
Owen Anderson825b72b2009-08-11 20:47:22 +0000731 setOperationAction(ISD::FABS, (MVT::SimpleValueType)VT, Expand);
732 setOperationAction(ISD::FSIN, (MVT::SimpleValueType)VT, Expand);
733 setOperationAction(ISD::FCOS, (MVT::SimpleValueType)VT, Expand);
734 setOperationAction(ISD::FREM, (MVT::SimpleValueType)VT, Expand);
735 setOperationAction(ISD::FPOWI, (MVT::SimpleValueType)VT, Expand);
736 setOperationAction(ISD::FSQRT, (MVT::SimpleValueType)VT, Expand);
737 setOperationAction(ISD::FCOPYSIGN, (MVT::SimpleValueType)VT, Expand);
738 setOperationAction(ISD::SMUL_LOHI, (MVT::SimpleValueType)VT, Expand);
739 setOperationAction(ISD::UMUL_LOHI, (MVT::SimpleValueType)VT, Expand);
740 setOperationAction(ISD::SDIVREM, (MVT::SimpleValueType)VT, Expand);
741 setOperationAction(ISD::UDIVREM, (MVT::SimpleValueType)VT, Expand);
742 setOperationAction(ISD::FPOW, (MVT::SimpleValueType)VT, Expand);
743 setOperationAction(ISD::CTPOP, (MVT::SimpleValueType)VT, Expand);
744 setOperationAction(ISD::CTTZ, (MVT::SimpleValueType)VT, Expand);
Chandler Carruth63974b22011-12-13 01:56:10 +0000745 setOperationAction(ISD::CTTZ_ZERO_UNDEF, (MVT::SimpleValueType)VT, Expand);
Owen Anderson825b72b2009-08-11 20:47:22 +0000746 setOperationAction(ISD::CTLZ, (MVT::SimpleValueType)VT, Expand);
Chandler Carruth63974b22011-12-13 01:56:10 +0000747 setOperationAction(ISD::CTLZ_ZERO_UNDEF, (MVT::SimpleValueType)VT, Expand);
Owen Anderson825b72b2009-08-11 20:47:22 +0000748 setOperationAction(ISD::SHL, (MVT::SimpleValueType)VT, Expand);
749 setOperationAction(ISD::SRA, (MVT::SimpleValueType)VT, Expand);
750 setOperationAction(ISD::SRL, (MVT::SimpleValueType)VT, Expand);
751 setOperationAction(ISD::ROTL, (MVT::SimpleValueType)VT, Expand);
752 setOperationAction(ISD::ROTR, (MVT::SimpleValueType)VT, Expand);
753 setOperationAction(ISD::BSWAP, (MVT::SimpleValueType)VT, Expand);
Duncan Sands28b77e92011-09-06 19:07:46 +0000754 setOperationAction(ISD::SETCC, (MVT::SimpleValueType)VT, Expand);
Owen Anderson825b72b2009-08-11 20:47:22 +0000755 setOperationAction(ISD::FLOG, (MVT::SimpleValueType)VT, Expand);
756 setOperationAction(ISD::FLOG2, (MVT::SimpleValueType)VT, Expand);
757 setOperationAction(ISD::FLOG10, (MVT::SimpleValueType)VT, Expand);
758 setOperationAction(ISD::FEXP, (MVT::SimpleValueType)VT, Expand);
759 setOperationAction(ISD::FEXP2, (MVT::SimpleValueType)VT, Expand);
760 setOperationAction(ISD::FP_TO_UINT, (MVT::SimpleValueType)VT, Expand);
761 setOperationAction(ISD::FP_TO_SINT, (MVT::SimpleValueType)VT, Expand);
762 setOperationAction(ISD::UINT_TO_FP, (MVT::SimpleValueType)VT, Expand);
763 setOperationAction(ISD::SINT_TO_FP, (MVT::SimpleValueType)VT, Expand);
Dan Gohman87862e72009-12-11 21:31:27 +0000764 setOperationAction(ISD::SIGN_EXTEND_INREG, (MVT::SimpleValueType)VT,Expand);
Dan Gohman2e141d72009-12-14 23:40:38 +0000765 setOperationAction(ISD::TRUNCATE, (MVT::SimpleValueType)VT, Expand);
766 setOperationAction(ISD::SIGN_EXTEND, (MVT::SimpleValueType)VT, Expand);
767 setOperationAction(ISD::ZERO_EXTEND, (MVT::SimpleValueType)VT, Expand);
768 setOperationAction(ISD::ANY_EXTEND, (MVT::SimpleValueType)VT, Expand);
Nadav Rotemaec58612011-09-13 19:17:42 +0000769 setOperationAction(ISD::VSELECT, (MVT::SimpleValueType)VT, Expand);
Dan Gohman2e141d72009-12-14 23:40:38 +0000770 for (unsigned InnerVT = (unsigned)MVT::FIRST_VECTOR_VALUETYPE;
771 InnerVT <= (unsigned)MVT::LAST_VECTOR_VALUETYPE; ++InnerVT)
772 setTruncStoreAction((MVT::SimpleValueType)VT,
773 (MVT::SimpleValueType)InnerVT, Expand);
774 setLoadExtAction(ISD::SEXTLOAD, (MVT::SimpleValueType)VT, Expand);
775 setLoadExtAction(ISD::ZEXTLOAD, (MVT::SimpleValueType)VT, Expand);
776 setLoadExtAction(ISD::EXTLOAD, (MVT::SimpleValueType)VT, Expand);
Evan Chengd30bf012006-03-01 01:11:20 +0000777 }
778
Evan Chengc7ce29b2009-02-13 22:36:38 +0000779 // FIXME: In order to prevent SSE instructions being expanded to MMX ones
780 // with -msoft-float, disable use of MMX as well.
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000781 if (!TM.Options.UseSoftFloat && Subtarget->hasMMX()) {
Dale Johannesene93d99c2010-10-20 21:32:10 +0000782 addRegisterClass(MVT::x86mmx, X86::VR64RegisterClass);
Dale Johannesen0488fb62010-09-30 23:57:10 +0000783 // No operations on x86mmx supported, everything uses intrinsics.
Evan Cheng470a6ad2006-02-22 02:26:30 +0000784 }
785
Dale Johannesen0488fb62010-09-30 23:57:10 +0000786 // MMX-sized vectors (other than x86mmx) are expected to be expanded
787 // into smaller operations.
788 setOperationAction(ISD::MULHS, MVT::v8i8, Expand);
789 setOperationAction(ISD::MULHS, MVT::v4i16, Expand);
790 setOperationAction(ISD::MULHS, MVT::v2i32, Expand);
791 setOperationAction(ISD::MULHS, MVT::v1i64, Expand);
792 setOperationAction(ISD::AND, MVT::v8i8, Expand);
793 setOperationAction(ISD::AND, MVT::v4i16, Expand);
794 setOperationAction(ISD::AND, MVT::v2i32, Expand);
795 setOperationAction(ISD::AND, MVT::v1i64, Expand);
796 setOperationAction(ISD::OR, MVT::v8i8, Expand);
797 setOperationAction(ISD::OR, MVT::v4i16, Expand);
798 setOperationAction(ISD::OR, MVT::v2i32, Expand);
799 setOperationAction(ISD::OR, MVT::v1i64, Expand);
800 setOperationAction(ISD::XOR, MVT::v8i8, Expand);
801 setOperationAction(ISD::XOR, MVT::v4i16, Expand);
802 setOperationAction(ISD::XOR, MVT::v2i32, Expand);
803 setOperationAction(ISD::XOR, MVT::v1i64, Expand);
804 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v8i8, Expand);
805 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v4i16, Expand);
806 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v2i32, Expand);
807 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v1i64, Expand);
808 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v1i64, Expand);
809 setOperationAction(ISD::SELECT, MVT::v8i8, Expand);
810 setOperationAction(ISD::SELECT, MVT::v4i16, Expand);
811 setOperationAction(ISD::SELECT, MVT::v2i32, Expand);
812 setOperationAction(ISD::SELECT, MVT::v1i64, Expand);
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000813 setOperationAction(ISD::BITCAST, MVT::v8i8, Expand);
814 setOperationAction(ISD::BITCAST, MVT::v4i16, Expand);
815 setOperationAction(ISD::BITCAST, MVT::v2i32, Expand);
816 setOperationAction(ISD::BITCAST, MVT::v1i64, Expand);
Dale Johannesen0488fb62010-09-30 23:57:10 +0000817
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000818 if (!TM.Options.UseSoftFloat && Subtarget->hasXMM()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000819 addRegisterClass(MVT::v4f32, X86::VR128RegisterClass);
Evan Cheng470a6ad2006-02-22 02:26:30 +0000820
Owen Anderson825b72b2009-08-11 20:47:22 +0000821 setOperationAction(ISD::FADD, MVT::v4f32, Legal);
822 setOperationAction(ISD::FSUB, MVT::v4f32, Legal);
823 setOperationAction(ISD::FMUL, MVT::v4f32, Legal);
824 setOperationAction(ISD::FDIV, MVT::v4f32, Legal);
825 setOperationAction(ISD::FSQRT, MVT::v4f32, Legal);
826 setOperationAction(ISD::FNEG, MVT::v4f32, Custom);
827 setOperationAction(ISD::LOAD, MVT::v4f32, Legal);
828 setOperationAction(ISD::BUILD_VECTOR, MVT::v4f32, Custom);
829 setOperationAction(ISD::VECTOR_SHUFFLE, MVT::v4f32, Custom);
830 setOperationAction(ISD::EXTRACT_VECTOR_ELT, MVT::v4f32, Custom);
831 setOperationAction(ISD::SELECT, MVT::v4f32, Custom);
Duncan Sands28b77e92011-09-06 19:07:46 +0000832 setOperationAction(ISD::SETCC, MVT::v4f32, Custom);
Evan Cheng470a6ad2006-02-22 02:26:30 +0000833 }
834
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000835 if (!TM.Options.UseSoftFloat && Subtarget->hasXMMInt()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000836 addRegisterClass(MVT::v2f64, X86::VR128RegisterClass);
Evan Chengc7ce29b2009-02-13 22:36:38 +0000837
Bill Wendlingf9abd7e2009-03-11 22:30:01 +0000838 // FIXME: Unfortunately -soft-float and -no-implicit-float means XMM
839 // registers cannot be used even for integer operations.
Owen Anderson825b72b2009-08-11 20:47:22 +0000840 addRegisterClass(MVT::v16i8, X86::VR128RegisterClass);
841 addRegisterClass(MVT::v8i16, X86::VR128RegisterClass);
842 addRegisterClass(MVT::v4i32, X86::VR128RegisterClass);
843 addRegisterClass(MVT::v2i64, X86::VR128RegisterClass);
Evan Cheng470a6ad2006-02-22 02:26:30 +0000844
Owen Anderson825b72b2009-08-11 20:47:22 +0000845 setOperationAction(ISD::ADD, MVT::v16i8, Legal);
846 setOperationAction(ISD::ADD, MVT::v8i16, Legal);
847 setOperationAction(ISD::ADD, MVT::v4i32, Legal);
848 setOperationAction(ISD::ADD, MVT::v2i64, Legal);
849 setOperationAction(ISD::MUL, MVT::v2i64, Custom);
850 setOperationAction(ISD::SUB, MVT::v16i8, Legal);
851 setOperationAction(ISD::SUB, MVT::v8i16, Legal);
852 setOperationAction(ISD::SUB, MVT::v4i32, Legal);
853 setOperationAction(ISD::SUB, MVT::v2i64, Legal);
854 setOperationAction(ISD::MUL, MVT::v8i16, Legal);
855 setOperationAction(ISD::FADD, MVT::v2f64, Legal);
856 setOperationAction(ISD::FSUB, MVT::v2f64, Legal);
857 setOperationAction(ISD::FMUL, MVT::v2f64, Legal);
858 setOperationAction(ISD::FDIV, MVT::v2f64, Legal);
859 setOperationAction(ISD::FSQRT, MVT::v2f64, Legal);
860 setOperationAction(ISD::FNEG, MVT::v2f64, Custom);
Evan Cheng2c3ae372006-04-12 21:21:57 +0000861
Nadav Rotem354efd82011-09-18 14:57:03 +0000862 setOperationAction(ISD::SETCC, MVT::v2i64, Custom);
Duncan Sands28b77e92011-09-06 19:07:46 +0000863 setOperationAction(ISD::SETCC, MVT::v16i8, Custom);
864 setOperationAction(ISD::SETCC, MVT::v8i16, Custom);
865 setOperationAction(ISD::SETCC, MVT::v4i32, Custom);
Nate Begemanc2616e42008-05-12 20:34:32 +0000866
Owen Anderson825b72b2009-08-11 20:47:22 +0000867 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v16i8, Custom);
868 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v8i16, Custom);
869 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v8i16, Custom);
870 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v4i32, Custom);
871 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v4f32, Custom);
Evan Chengf7c378e2006-04-10 07:23:14 +0000872
Mon P Wangeb38ebf2010-01-24 00:05:03 +0000873 setOperationAction(ISD::CONCAT_VECTORS, MVT::v2f64, Custom);
874 setOperationAction(ISD::CONCAT_VECTORS, MVT::v2i64, Custom);
875 setOperationAction(ISD::CONCAT_VECTORS, MVT::v16i8, Custom);
876 setOperationAction(ISD::CONCAT_VECTORS, MVT::v8i16, Custom);
877 setOperationAction(ISD::CONCAT_VECTORS, MVT::v4i32, Custom);
878
Evan Cheng2c3ae372006-04-12 21:21:57 +0000879 // Custom lower build_vector, vector_shuffle, and extract_vector_elt.
Owen Anderson825b72b2009-08-11 20:47:22 +0000880 for (unsigned i = (unsigned)MVT::v16i8; i != (unsigned)MVT::v2i64; ++i) {
881 EVT VT = (MVT::SimpleValueType)i;
Nate Begeman844e0f92007-12-11 01:41:33 +0000882 // Do not attempt to custom lower non-power-of-2 vectors
Duncan Sands83ec4b62008-06-06 12:08:01 +0000883 if (!isPowerOf2_32(VT.getVectorNumElements()))
Nate Begeman844e0f92007-12-11 01:41:33 +0000884 continue;
David Greene9b9838d2009-06-29 16:47:10 +0000885 // Do not attempt to custom lower non-128-bit vectors
886 if (!VT.is128BitVector())
887 continue;
Owen Anderson825b72b2009-08-11 20:47:22 +0000888 setOperationAction(ISD::BUILD_VECTOR,
889 VT.getSimpleVT().SimpleTy, Custom);
890 setOperationAction(ISD::VECTOR_SHUFFLE,
891 VT.getSimpleVT().SimpleTy, Custom);
892 setOperationAction(ISD::EXTRACT_VECTOR_ELT,
893 VT.getSimpleVT().SimpleTy, Custom);
Evan Cheng2c3ae372006-04-12 21:21:57 +0000894 }
Bill Wendlingf9abd7e2009-03-11 22:30:01 +0000895
Owen Anderson825b72b2009-08-11 20:47:22 +0000896 setOperationAction(ISD::BUILD_VECTOR, MVT::v2f64, Custom);
897 setOperationAction(ISD::BUILD_VECTOR, MVT::v2i64, Custom);
898 setOperationAction(ISD::VECTOR_SHUFFLE, MVT::v2f64, Custom);
899 setOperationAction(ISD::VECTOR_SHUFFLE, MVT::v2i64, Custom);
900 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v2f64, Custom);
901 setOperationAction(ISD::EXTRACT_VECTOR_ELT, MVT::v2f64, Custom);
Bill Wendlingf9abd7e2009-03-11 22:30:01 +0000902
Nate Begemancdd1eec2008-02-12 22:51:28 +0000903 if (Subtarget->is64Bit()) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000904 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v2i64, Custom);
905 setOperationAction(ISD::EXTRACT_VECTOR_ELT, MVT::v2i64, Custom);
Nate Begemancdd1eec2008-02-12 22:51:28 +0000906 }
Evan Cheng2c3ae372006-04-12 21:21:57 +0000907
Anton Korobeynikov12c49af2006-11-21 00:01:06 +0000908 // Promote v16i8, v8i16, v4i32 load, select, and, or, xor to v2i64.
Owen Anderson825b72b2009-08-11 20:47:22 +0000909 for (unsigned i = (unsigned)MVT::v16i8; i != (unsigned)MVT::v2i64; i++) {
910 MVT::SimpleValueType SVT = (MVT::SimpleValueType)i;
Owen Andersone50ed302009-08-10 22:56:29 +0000911 EVT VT = SVT;
David Greene9b9838d2009-06-29 16:47:10 +0000912
913 // Do not attempt to promote non-128-bit vectors
Chris Lattner32b4b5a2010-07-05 05:53:14 +0000914 if (!VT.is128BitVector())
David Greene9b9838d2009-06-29 16:47:10 +0000915 continue;
Michael J. Spencerec38de22010-10-10 22:04:20 +0000916
Owen Andersond6662ad2009-08-10 20:46:15 +0000917 setOperationAction(ISD::AND, SVT, Promote);
Owen Anderson825b72b2009-08-11 20:47:22 +0000918 AddPromotedToType (ISD::AND, SVT, MVT::v2i64);
Owen Andersond6662ad2009-08-10 20:46:15 +0000919 setOperationAction(ISD::OR, SVT, Promote);
Owen Anderson825b72b2009-08-11 20:47:22 +0000920 AddPromotedToType (ISD::OR, SVT, MVT::v2i64);
Owen Andersond6662ad2009-08-10 20:46:15 +0000921 setOperationAction(ISD::XOR, SVT, Promote);
Owen Anderson825b72b2009-08-11 20:47:22 +0000922 AddPromotedToType (ISD::XOR, SVT, MVT::v2i64);
Owen Andersond6662ad2009-08-10 20:46:15 +0000923 setOperationAction(ISD::LOAD, SVT, Promote);
Owen Anderson825b72b2009-08-11 20:47:22 +0000924 AddPromotedToType (ISD::LOAD, SVT, MVT::v2i64);
Owen Andersond6662ad2009-08-10 20:46:15 +0000925 setOperationAction(ISD::SELECT, SVT, Promote);
Owen Anderson825b72b2009-08-11 20:47:22 +0000926 AddPromotedToType (ISD::SELECT, SVT, MVT::v2i64);
Evan Chengf7c378e2006-04-10 07:23:14 +0000927 }
Evan Cheng2c3ae372006-04-12 21:21:57 +0000928
Owen Anderson825b72b2009-08-11 20:47:22 +0000929 setTruncStoreAction(MVT::f64, MVT::f32, Expand);
Chris Lattnerd43d00c2008-01-24 08:07:48 +0000930
Evan Cheng2c3ae372006-04-12 21:21:57 +0000931 // Custom lower v2i64 and v2f64 selects.
Owen Anderson825b72b2009-08-11 20:47:22 +0000932 setOperationAction(ISD::LOAD, MVT::v2f64, Legal);
933 setOperationAction(ISD::LOAD, MVT::v2i64, Legal);
934 setOperationAction(ISD::SELECT, MVT::v2f64, Custom);
935 setOperationAction(ISD::SELECT, MVT::v2i64, Custom);
Scott Michelfdc40a02009-02-17 22:15:04 +0000936
Owen Anderson825b72b2009-08-11 20:47:22 +0000937 setOperationAction(ISD::FP_TO_SINT, MVT::v4i32, Legal);
938 setOperationAction(ISD::SINT_TO_FP, MVT::v4i32, Legal);
Evan Cheng470a6ad2006-02-22 02:26:30 +0000939 }
Evan Chengc7ce29b2009-02-13 22:36:38 +0000940
Craig Topperc0d82852011-11-22 00:44:41 +0000941 if (Subtarget->hasSSE41orAVX()) {
Benjamin Kramerb6533972011-12-09 15:44:03 +0000942 setOperationAction(ISD::FFLOOR, MVT::f32, Legal);
943 setOperationAction(ISD::FCEIL, MVT::f32, Legal);
944 setOperationAction(ISD::FTRUNC, MVT::f32, Legal);
945 setOperationAction(ISD::FRINT, MVT::f32, Legal);
946 setOperationAction(ISD::FNEARBYINT, MVT::f32, Legal);
947 setOperationAction(ISD::FFLOOR, MVT::f64, Legal);
948 setOperationAction(ISD::FCEIL, MVT::f64, Legal);
949 setOperationAction(ISD::FTRUNC, MVT::f64, Legal);
950 setOperationAction(ISD::FRINT, MVT::f64, Legal);
951 setOperationAction(ISD::FNEARBYINT, MVT::f64, Legal);
952
Nate Begeman14d12ca2008-02-11 04:19:36 +0000953 // FIXME: Do we need to handle scalar-to-vector here?
Owen Anderson825b72b2009-08-11 20:47:22 +0000954 setOperationAction(ISD::MUL, MVT::v4i32, Legal);
Nate Begeman14d12ca2008-02-11 04:19:36 +0000955
Nadav Rotemfbad25e2011-09-11 15:02:23 +0000956 setOperationAction(ISD::VSELECT, MVT::v2f64, Legal);
957 setOperationAction(ISD::VSELECT, MVT::v2i64, Legal);
958 setOperationAction(ISD::VSELECT, MVT::v16i8, Legal);
959 setOperationAction(ISD::VSELECT, MVT::v4i32, Legal);
960 setOperationAction(ISD::VSELECT, MVT::v4f32, Legal);
Nadav Rotemffe3e7d2011-09-08 08:11:19 +0000961
Nate Begeman14d12ca2008-02-11 04:19:36 +0000962 // i8 and i16 vectors are custom , because the source register and source
963 // source memory operand types are not the same width. f32 vectors are
964 // custom since the immediate controlling the insert encodes additional
965 // information.
Owen Anderson825b72b2009-08-11 20:47:22 +0000966 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v16i8, Custom);
967 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v8i16, Custom);
968 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v4i32, Custom);
969 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v4f32, Custom);
Nate Begeman14d12ca2008-02-11 04:19:36 +0000970
Owen Anderson825b72b2009-08-11 20:47:22 +0000971 setOperationAction(ISD::EXTRACT_VECTOR_ELT, MVT::v16i8, Custom);
972 setOperationAction(ISD::EXTRACT_VECTOR_ELT, MVT::v8i16, Custom);
973 setOperationAction(ISD::EXTRACT_VECTOR_ELT, MVT::v4i32, Custom);
974 setOperationAction(ISD::EXTRACT_VECTOR_ELT, MVT::v4f32, Custom);
Nate Begeman14d12ca2008-02-11 04:19:36 +0000975
Pete Coopera77214a2011-11-14 19:38:42 +0000976 // FIXME: these should be Legal but thats only for the case where
Chad Rosier30450e82011-12-22 22:35:21 +0000977 // the index is constant. For now custom expand to deal with that.
Nate Begeman14d12ca2008-02-11 04:19:36 +0000978 if (Subtarget->is64Bit()) {
Pete Coopera77214a2011-11-14 19:38:42 +0000979 setOperationAction(ISD::INSERT_VECTOR_ELT, MVT::v2i64, Custom);
980 setOperationAction(ISD::EXTRACT_VECTOR_ELT, MVT::v2i64, Custom);
Nate Begeman14d12ca2008-02-11 04:19:36 +0000981 }
982 }
Evan Cheng470a6ad2006-02-22 02:26:30 +0000983
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +0000984 if (Subtarget->hasXMMInt()) {
Bruno Cardoso Lopes328a9d42011-08-08 21:31:08 +0000985 setOperationAction(ISD::SRL, MVT::v8i16, Custom);
Craig Topper7be5dfd2011-11-12 09:58:49 +0000986 setOperationAction(ISD::SRL, MVT::v16i8, Custom);
Nadav Rotem43012222011-05-11 08:12:09 +0000987
Nadav Rotem43012222011-05-11 08:12:09 +0000988 setOperationAction(ISD::SHL, MVT::v8i16, Custom);
Craig Topper7be5dfd2011-11-12 09:58:49 +0000989 setOperationAction(ISD::SHL, MVT::v16i8, Custom);
Nadav Rotem43012222011-05-11 08:12:09 +0000990
Nadav Rotem43012222011-05-11 08:12:09 +0000991 setOperationAction(ISD::SRA, MVT::v8i16, Custom);
Eli Friedmanf6aa6b12011-11-01 21:18:39 +0000992 setOperationAction(ISD::SRA, MVT::v16i8, Custom);
Craig Topper7be5dfd2011-11-12 09:58:49 +0000993
994 if (Subtarget->hasAVX2()) {
995 setOperationAction(ISD::SRL, MVT::v2i64, Legal);
996 setOperationAction(ISD::SRL, MVT::v4i32, Legal);
997
998 setOperationAction(ISD::SHL, MVT::v2i64, Legal);
999 setOperationAction(ISD::SHL, MVT::v4i32, Legal);
1000
1001 setOperationAction(ISD::SRA, MVT::v4i32, Legal);
1002 } else {
1003 setOperationAction(ISD::SRL, MVT::v2i64, Custom);
1004 setOperationAction(ISD::SRL, MVT::v4i32, Custom);
1005
1006 setOperationAction(ISD::SHL, MVT::v2i64, Custom);
1007 setOperationAction(ISD::SHL, MVT::v4i32, Custom);
1008
1009 setOperationAction(ISD::SRA, MVT::v4i32, Custom);
1010 }
Nadav Rotem43012222011-05-11 08:12:09 +00001011 }
1012
Craig Topperc0d82852011-11-22 00:44:41 +00001013 if (Subtarget->hasSSE42orAVX())
Duncan Sands28b77e92011-09-06 19:07:46 +00001014 setOperationAction(ISD::SETCC, MVT::v2i64, Custom);
Scott Michelfdc40a02009-02-17 22:15:04 +00001015
Nick Lewycky8a8d4792011-12-02 22:16:29 +00001016 if (!TM.Options.UseSoftFloat && Subtarget->hasAVX()) {
Bruno Cardoso Lopesdbd4fe22011-07-21 02:24:08 +00001017 addRegisterClass(MVT::v32i8, X86::VR256RegisterClass);
1018 addRegisterClass(MVT::v16i16, X86::VR256RegisterClass);
1019 addRegisterClass(MVT::v8i32, X86::VR256RegisterClass);
1020 addRegisterClass(MVT::v8f32, X86::VR256RegisterClass);
1021 addRegisterClass(MVT::v4i64, X86::VR256RegisterClass);
1022 addRegisterClass(MVT::v4f64, X86::VR256RegisterClass);
David Greened94c1012009-06-29 22:50:51 +00001023
Owen Anderson825b72b2009-08-11 20:47:22 +00001024 setOperationAction(ISD::LOAD, MVT::v8f32, Legal);
Owen Anderson825b72b2009-08-11 20:47:22 +00001025 setOperationAction(ISD::LOAD, MVT::v4f64, Legal);
1026 setOperationAction(ISD::LOAD, MVT::v4i64, Legal);
David Greene54d8eba2011-01-27 22:38:56 +00001027
Owen Anderson825b72b2009-08-11 20:47:22 +00001028 setOperationAction(ISD::FADD, MVT::v8f32, Legal);
1029 setOperationAction(ISD::FSUB, MVT::v8f32, Legal);
1030 setOperationAction(ISD::FMUL, MVT::v8f32, Legal);
1031 setOperationAction(ISD::FDIV, MVT::v8f32, Legal);
1032 setOperationAction(ISD::FSQRT, MVT::v8f32, Legal);
1033 setOperationAction(ISD::FNEG, MVT::v8f32, Custom);
David Greene9b9838d2009-06-29 16:47:10 +00001034
Owen Anderson825b72b2009-08-11 20:47:22 +00001035 setOperationAction(ISD::FADD, MVT::v4f64, Legal);
1036 setOperationAction(ISD::FSUB, MVT::v4f64, Legal);
1037 setOperationAction(ISD::FMUL, MVT::v4f64, Legal);
1038 setOperationAction(ISD::FDIV, MVT::v4f64, Legal);
1039 setOperationAction(ISD::FSQRT, MVT::v4f64, Legal);
1040 setOperationAction(ISD::FNEG, MVT::v4f64, Custom);
David Greene9b9838d2009-06-29 16:47:10 +00001041
Bruno Cardoso Lopes2e64ae42011-07-28 01:26:39 +00001042 setOperationAction(ISD::FP_TO_SINT, MVT::v8i32, Legal);
1043 setOperationAction(ISD::SINT_TO_FP, MVT::v8i32, Legal);
Bruno Cardoso Lopes55244ce2011-08-01 21:54:09 +00001044 setOperationAction(ISD::FP_ROUND, MVT::v4f32, Legal);
Bruno Cardoso Lopes2e64ae42011-07-28 01:26:39 +00001045
Bruno Cardoso Lopes8af24512011-08-01 21:54:02 +00001046 setOperationAction(ISD::CONCAT_VECTORS, MVT::v4f64, Custom);
1047 setOperationAction(ISD::CONCAT_VECTORS, MVT::v4i64, Custom);
1048 setOperationAction(ISD::CONCAT_VECTORS, MVT::v8f32, Custom);
1049 setOperationAction(ISD::CONCAT_VECTORS, MVT::v8i32, Custom);
1050 setOperationAction(ISD::CONCAT_VECTORS, MVT::v32i8, Custom);
1051 setOperationAction(ISD::CONCAT_VECTORS, MVT::v16i16, Custom);
1052
Bruno Cardoso Lopes328a9d42011-08-08 21:31:08 +00001053 setOperationAction(ISD::SRL, MVT::v16i16, Custom);
1054 setOperationAction(ISD::SRL, MVT::v32i8, Custom);
1055
Bruno Cardoso Lopes328a9d42011-08-08 21:31:08 +00001056 setOperationAction(ISD::SHL, MVT::v16i16, Custom);
1057 setOperationAction(ISD::SHL, MVT::v32i8, Custom);
1058
Bruno Cardoso Lopes328a9d42011-08-08 21:31:08 +00001059 setOperationAction(ISD::SRA, MVT::v16i16, Custom);
Craig Topper7be5dfd2011-11-12 09:58:49 +00001060 setOperationAction(ISD::SRA, MVT::v32i8, Custom);
Bruno Cardoso Lopes328a9d42011-08-08 21:31:08 +00001061
Duncan Sands28b77e92011-09-06 19:07:46 +00001062 setOperationAction(ISD::SETCC, MVT::v32i8, Custom);
1063 setOperationAction(ISD::SETCC, MVT::v16i16, Custom);
1064 setOperationAction(ISD::SETCC, MVT::v8i32, Custom);
1065 setOperationAction(ISD::SETCC, MVT::v4i64, Custom);
Bruno Cardoso Lopes0f0e0a02011-08-09 00:46:57 +00001066
Bruno Cardoso Lopesd40aa242011-08-09 23:27:13 +00001067 setOperationAction(ISD::SELECT, MVT::v4f64, Custom);
1068 setOperationAction(ISD::SELECT, MVT::v4i64, Custom);
1069 setOperationAction(ISD::SELECT, MVT::v8f32, Custom);
1070
Craig Topperaaa643c2011-11-09 07:28:55 +00001071 setOperationAction(ISD::VSELECT, MVT::v4f64, Legal);
1072 setOperationAction(ISD::VSELECT, MVT::v4i64, Legal);
1073 setOperationAction(ISD::VSELECT, MVT::v8i32, Legal);
1074 setOperationAction(ISD::VSELECT, MVT::v8f32, Legal);
Nadav Rotem8ffad562011-09-09 20:29:17 +00001075
Craig Topperaaa643c2011-11-09 07:28:55 +00001076 if (Subtarget->hasAVX2()) {
1077 setOperationAction(ISD::ADD, MVT::v4i64, Legal);
1078 setOperationAction(ISD::ADD, MVT::v8i32, Legal);
1079 setOperationAction(ISD::ADD, MVT::v16i16, Legal);
1080 setOperationAction(ISD::ADD, MVT::v32i8, Legal);
Craig Topper13894fa2011-08-24 06:14:18 +00001081
Craig Topperaaa643c2011-11-09 07:28:55 +00001082 setOperationAction(ISD::SUB, MVT::v4i64, Legal);
1083 setOperationAction(ISD::SUB, MVT::v8i32, Legal);
1084 setOperationAction(ISD::SUB, MVT::v16i16, Legal);
1085 setOperationAction(ISD::SUB, MVT::v32i8, Legal);
Craig Topper13894fa2011-08-24 06:14:18 +00001086
Craig Topperaaa643c2011-11-09 07:28:55 +00001087 setOperationAction(ISD::MUL, MVT::v4i64, Custom);
1088 setOperationAction(ISD::MUL, MVT::v8i32, Legal);
1089 setOperationAction(ISD::MUL, MVT::v16i16, Legal);
Craig Topper46154eb2011-11-11 07:39:23 +00001090 // Don't lower v32i8 because there is no 128-bit byte mul
Nadav Rotembb539bf2011-11-09 13:21:28 +00001091
1092 setOperationAction(ISD::VSELECT, MVT::v32i8, Legal);
Craig Topper7be5dfd2011-11-12 09:58:49 +00001093
1094 setOperationAction(ISD::SRL, MVT::v4i64, Legal);
1095 setOperationAction(ISD::SRL, MVT::v8i32, Legal);
1096
1097 setOperationAction(ISD::SHL, MVT::v4i64, Legal);
1098 setOperationAction(ISD::SHL, MVT::v8i32, Legal);
1099
1100 setOperationAction(ISD::SRA, MVT::v8i32, Legal);
Craig Topperaaa643c2011-11-09 07:28:55 +00001101 } else {
1102 setOperationAction(ISD::ADD, MVT::v4i64, Custom);
1103 setOperationAction(ISD::ADD, MVT::v8i32, Custom);
1104 setOperationAction(ISD::ADD, MVT::v16i16, Custom);
1105 setOperationAction(ISD::ADD, MVT::v32i8, Custom);
1106
1107 setOperationAction(ISD::SUB, MVT::v4i64, Custom);
1108 setOperationAction(ISD::SUB, MVT::v8i32, Custom);
1109 setOperationAction(ISD::SUB, MVT::v16i16, Custom);
1110 setOperationAction(ISD::SUB, MVT::v32i8, Custom);
1111
1112 setOperationAction(ISD::MUL, MVT::v4i64, Custom);
1113 setOperationAction(ISD::MUL, MVT::v8i32, Custom);
1114 setOperationAction(ISD::MUL, MVT::v16i16, Custom);
1115 // Don't lower v32i8 because there is no 128-bit byte mul
Craig Topper7be5dfd2011-11-12 09:58:49 +00001116
1117 setOperationAction(ISD::SRL, MVT::v4i64, Custom);
1118 setOperationAction(ISD::SRL, MVT::v8i32, Custom);
1119
1120 setOperationAction(ISD::SHL, MVT::v4i64, Custom);
1121 setOperationAction(ISD::SHL, MVT::v8i32, Custom);
1122
1123 setOperationAction(ISD::SRA, MVT::v8i32, Custom);
Craig Topperaaa643c2011-11-09 07:28:55 +00001124 }
Craig Topper13894fa2011-08-24 06:14:18 +00001125
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00001126 // Custom lower several nodes for 256-bit types.
David Greene54d8eba2011-01-27 22:38:56 +00001127 for (unsigned i = (unsigned)MVT::FIRST_VECTOR_VALUETYPE;
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00001128 i <= (unsigned)MVT::LAST_VECTOR_VALUETYPE; ++i) {
1129 MVT::SimpleValueType SVT = (MVT::SimpleValueType)i;
1130 EVT VT = SVT;
1131
1132 // Extract subvector is special because the value type
1133 // (result) is 128-bit but the source is 256-bit wide.
1134 if (VT.is128BitVector())
1135 setOperationAction(ISD::EXTRACT_SUBVECTOR, SVT, Custom);
1136
1137 // Do not attempt to custom lower other non-256-bit vectors
1138 if (!VT.is256BitVector())
David Greene9b9838d2009-06-29 16:47:10 +00001139 continue;
David Greene54d8eba2011-01-27 22:38:56 +00001140
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00001141 setOperationAction(ISD::BUILD_VECTOR, SVT, Custom);
1142 setOperationAction(ISD::VECTOR_SHUFFLE, SVT, Custom);
1143 setOperationAction(ISD::INSERT_VECTOR_ELT, SVT, Custom);
1144 setOperationAction(ISD::EXTRACT_VECTOR_ELT, SVT, Custom);
Bruno Cardoso Lopes233fa392011-07-25 23:05:16 +00001145 setOperationAction(ISD::SCALAR_TO_VECTOR, SVT, Custom);
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00001146 setOperationAction(ISD::INSERT_SUBVECTOR, SVT, Custom);
David Greene9b9838d2009-06-29 16:47:10 +00001147 }
1148
David Greene54d8eba2011-01-27 22:38:56 +00001149 // Promote v32i8, v16i16, v8i32 select, and, or, xor to v4i64.
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00001150 for (unsigned i = (unsigned)MVT::v32i8; i != (unsigned)MVT::v4i64; ++i) {
1151 MVT::SimpleValueType SVT = (MVT::SimpleValueType)i;
1152 EVT VT = SVT;
David Greene54d8eba2011-01-27 22:38:56 +00001153
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00001154 // Do not attempt to promote non-256-bit vectors
1155 if (!VT.is256BitVector())
David Greene54d8eba2011-01-27 22:38:56 +00001156 continue;
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00001157
1158 setOperationAction(ISD::AND, SVT, Promote);
1159 AddPromotedToType (ISD::AND, SVT, MVT::v4i64);
1160 setOperationAction(ISD::OR, SVT, Promote);
1161 AddPromotedToType (ISD::OR, SVT, MVT::v4i64);
1162 setOperationAction(ISD::XOR, SVT, Promote);
1163 AddPromotedToType (ISD::XOR, SVT, MVT::v4i64);
1164 setOperationAction(ISD::LOAD, SVT, Promote);
1165 AddPromotedToType (ISD::LOAD, SVT, MVT::v4i64);
1166 setOperationAction(ISD::SELECT, SVT, Promote);
1167 AddPromotedToType (ISD::SELECT, SVT, MVT::v4i64);
David Greene54d8eba2011-01-27 22:38:56 +00001168 }
David Greene9b9838d2009-06-29 16:47:10 +00001169 }
1170
Nadav Rotemd0f3ef82011-07-14 11:11:14 +00001171 // SIGN_EXTEND_INREGs are evaluated by the extend type. Handle the expansion
1172 // of this type with custom code.
1173 for (unsigned VT = (unsigned)MVT::FIRST_VECTOR_VALUETYPE;
1174 VT != (unsigned)MVT::LAST_VECTOR_VALUETYPE; VT++) {
Chad Rosier30450e82011-12-22 22:35:21 +00001175 setOperationAction(ISD::SIGN_EXTEND_INREG, (MVT::SimpleValueType)VT,
1176 Custom);
Nadav Rotemd0f3ef82011-07-14 11:11:14 +00001177 }
1178
Evan Cheng6be2c582006-04-05 23:38:46 +00001179 // We want to custom lower some of our intrinsics.
Owen Anderson825b72b2009-08-11 20:47:22 +00001180 setOperationAction(ISD::INTRINSIC_WO_CHAIN, MVT::Other, Custom);
Evan Cheng6be2c582006-04-05 23:38:46 +00001181
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00001182
Eli Friedman962f5492010-06-02 19:35:46 +00001183 // Only custom-lower 64-bit SADDO and friends on 64-bit because we don't
1184 // handle type legalization for these operations here.
Dan Gohman71c62a22010-06-02 19:13:40 +00001185 //
Eli Friedman962f5492010-06-02 19:35:46 +00001186 // FIXME: We really should do custom legalization for addition and
1187 // subtraction on x86-32 once PR3203 is fixed. We really can't do much better
1188 // than generic legalization for 64-bit multiplication-with-overflow, though.
Chris Lattnera34b3cf2010-12-19 20:03:11 +00001189 for (unsigned i = 0, e = 3+Subtarget->is64Bit(); i != e; ++i) {
1190 // Add/Sub/Mul with overflow operations are custom lowered.
1191 MVT VT = IntVTs[i];
1192 setOperationAction(ISD::SADDO, VT, Custom);
1193 setOperationAction(ISD::UADDO, VT, Custom);
1194 setOperationAction(ISD::SSUBO, VT, Custom);
1195 setOperationAction(ISD::USUBO, VT, Custom);
1196 setOperationAction(ISD::SMULO, VT, Custom);
1197 setOperationAction(ISD::UMULO, VT, Custom);
Eli Friedmana993f0a2010-06-02 00:27:18 +00001198 }
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00001199
Chris Lattnera34b3cf2010-12-19 20:03:11 +00001200 // There are no 8-bit 3-address imul/mul instructions
1201 setOperationAction(ISD::SMULO, MVT::i8, Expand);
1202 setOperationAction(ISD::UMULO, MVT::i8, Expand);
Bill Wendling41ea7e72008-11-24 19:21:46 +00001203
Evan Chengd54f2d52009-03-31 19:38:51 +00001204 if (!Subtarget->is64Bit()) {
1205 // These libcalls are not available in 32-bit.
1206 setLibcallName(RTLIB::SHL_I128, 0);
1207 setLibcallName(RTLIB::SRL_I128, 0);
1208 setLibcallName(RTLIB::SRA_I128, 0);
1209 }
1210
Evan Cheng206ee9d2006-07-07 08:33:52 +00001211 // We have target-specific dag combine patterns for the following nodes:
1212 setTargetDAGCombine(ISD::VECTOR_SHUFFLE);
Dan Gohman1bbf72b2010-03-15 23:23:03 +00001213 setTargetDAGCombine(ISD::EXTRACT_VECTOR_ELT);
Duncan Sands6bcd2192011-09-17 16:49:39 +00001214 setTargetDAGCombine(ISD::VSELECT);
Chris Lattner83e6c992006-10-04 06:57:07 +00001215 setTargetDAGCombine(ISD::SELECT);
Nate Begeman740ab032009-01-26 00:52:55 +00001216 setTargetDAGCombine(ISD::SHL);
1217 setTargetDAGCombine(ISD::SRA);
1218 setTargetDAGCombine(ISD::SRL);
Evan Cheng760d1942010-01-04 21:22:48 +00001219 setTargetDAGCombine(ISD::OR);
Nate Begemanb65c1752010-12-17 22:55:37 +00001220 setTargetDAGCombine(ISD::AND);
Benjamin Kramer7d6fe132010-12-21 21:41:44 +00001221 setTargetDAGCombine(ISD::ADD);
Duncan Sands17470be2011-09-22 20:15:48 +00001222 setTargetDAGCombine(ISD::FADD);
1223 setTargetDAGCombine(ISD::FSUB);
Benjamin Kramer7d6fe132010-12-21 21:41:44 +00001224 setTargetDAGCombine(ISD::SUB);
Nadav Rotem91e43fd2011-09-18 10:39:32 +00001225 setTargetDAGCombine(ISD::LOAD);
Chris Lattner149a4e52008-02-22 02:09:43 +00001226 setTargetDAGCombine(ISD::STORE);
Evan Cheng2e489c42009-12-16 00:53:11 +00001227 setTargetDAGCombine(ISD::ZERO_EXTEND);
Stuart Hastingsf99a4b82011-06-06 23:15:58 +00001228 setTargetDAGCombine(ISD::SINT_TO_FP);
Evan Cheng0b0cd912009-03-28 05:57:29 +00001229 if (Subtarget->is64Bit())
1230 setTargetDAGCombine(ISD::MUL);
Craig Topperb4c94572011-10-21 06:55:01 +00001231 if (Subtarget->hasBMI())
1232 setTargetDAGCombine(ISD::XOR);
Evan Cheng206ee9d2006-07-07 08:33:52 +00001233
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001234 computeRegisterProperties();
1235
Evan Cheng05219282011-01-06 06:52:41 +00001236 // On Darwin, -Os means optimize for size without hurting performance,
1237 // do not reduce the limit.
Dan Gohman87060f52008-06-30 21:00:56 +00001238 maxStoresPerMemset = 16; // For @llvm.memset -> sequence of stores
Evan Cheng05219282011-01-06 06:52:41 +00001239 maxStoresPerMemsetOptSize = Subtarget->isTargetDarwin() ? 16 : 8;
Evan Cheng255f20f2010-04-01 06:04:33 +00001240 maxStoresPerMemcpy = 8; // For @llvm.memcpy -> sequence of stores
Evan Cheng05219282011-01-06 06:52:41 +00001241 maxStoresPerMemcpyOptSize = Subtarget->isTargetDarwin() ? 8 : 4;
1242 maxStoresPerMemmove = 8; // For @llvm.memmove -> sequence of stores
1243 maxStoresPerMemmoveOptSize = Subtarget->isTargetDarwin() ? 8 : 4;
Jakob Stoklund Olesen8c741b82011-12-06 01:26:19 +00001244 setPrefLoopAlignment(4); // 2^4 bytes.
Evan Cheng6ebf7bc2009-05-13 21:42:09 +00001245 benefitFromCodePlacementOpt = true;
Eli Friedmanfc5d3052011-05-06 20:34:06 +00001246
Jakob Stoklund Olesen8c741b82011-12-06 01:26:19 +00001247 setPrefFunctionAlignment(4); // 2^4 bytes.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001248}
1249
Scott Michel5b8f82e2008-03-10 15:42:14 +00001250
Duncan Sands28b77e92011-09-06 19:07:46 +00001251EVT X86TargetLowering::getSetCCResultType(EVT VT) const {
1252 if (!VT.isVector()) return MVT::i8;
1253 return VT.changeVectorElementTypeToInteger();
Scott Michel5b8f82e2008-03-10 15:42:14 +00001254}
1255
1256
Evan Cheng29286502008-01-23 23:17:41 +00001257/// getMaxByValAlign - Helper for getByValTypeAlignment to determine
1258/// the desired ByVal argument alignment.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001259static void getMaxByValAlign(Type *Ty, unsigned &MaxAlign) {
Evan Cheng29286502008-01-23 23:17:41 +00001260 if (MaxAlign == 16)
1261 return;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001262 if (VectorType *VTy = dyn_cast<VectorType>(Ty)) {
Evan Cheng29286502008-01-23 23:17:41 +00001263 if (VTy->getBitWidth() == 128)
1264 MaxAlign = 16;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001265 } else if (ArrayType *ATy = dyn_cast<ArrayType>(Ty)) {
Evan Cheng29286502008-01-23 23:17:41 +00001266 unsigned EltAlign = 0;
1267 getMaxByValAlign(ATy->getElementType(), EltAlign);
1268 if (EltAlign > MaxAlign)
1269 MaxAlign = EltAlign;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001270 } else if (StructType *STy = dyn_cast<StructType>(Ty)) {
Evan Cheng29286502008-01-23 23:17:41 +00001271 for (unsigned i = 0, e = STy->getNumElements(); i != e; ++i) {
1272 unsigned EltAlign = 0;
1273 getMaxByValAlign(STy->getElementType(i), EltAlign);
1274 if (EltAlign > MaxAlign)
1275 MaxAlign = EltAlign;
1276 if (MaxAlign == 16)
1277 break;
1278 }
1279 }
1280 return;
1281}
1282
1283/// getByValTypeAlignment - Return the desired alignment for ByVal aggregate
1284/// function arguments in the caller parameter area. For X86, aggregates
Dale Johannesen0c191872008-02-08 19:48:20 +00001285/// that contain SSE vectors are placed at 16-byte boundaries while the rest
1286/// are at 4-byte boundaries.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001287unsigned X86TargetLowering::getByValTypeAlignment(Type *Ty) const {
Evan Cheng1887c1c2008-08-21 21:00:15 +00001288 if (Subtarget->is64Bit()) {
1289 // Max of 8 and alignment of type.
Anton Korobeynikovbff66b02008-09-09 18:22:57 +00001290 unsigned TyAlign = TD->getABITypeAlignment(Ty);
Evan Cheng1887c1c2008-08-21 21:00:15 +00001291 if (TyAlign > 8)
1292 return TyAlign;
1293 return 8;
1294 }
1295
Evan Cheng29286502008-01-23 23:17:41 +00001296 unsigned Align = 4;
Nate Begeman2ea8ee72010-12-10 00:26:57 +00001297 if (Subtarget->hasXMM())
Dale Johannesen0c191872008-02-08 19:48:20 +00001298 getMaxByValAlign(Ty, Align);
Evan Cheng29286502008-01-23 23:17:41 +00001299 return Align;
1300}
Chris Lattner2b02a442007-02-25 08:29:00 +00001301
Evan Chengf0df0312008-05-15 08:39:06 +00001302/// getOptimalMemOpType - Returns the target specific optimal type for load
Evan Chengc3b0c342010-04-08 07:37:57 +00001303/// and store operations as a result of memset, memcpy, and memmove
1304/// lowering. If DstAlign is zero that means it's safe to destination
1305/// alignment can satisfy any constraint. Similarly if SrcAlign is zero it
1306/// means there isn't a need to check it against alignment requirement,
1307/// probably because the source does not need to be loaded. If
Lang Hames15701f82011-10-26 23:50:43 +00001308/// 'IsZeroVal' is true, that means it's safe to return a
Evan Chengc3b0c342010-04-08 07:37:57 +00001309/// non-scalar-integer type, e.g. empty string source, constant, or loaded
1310/// from memory. 'MemcpyStrSrc' indicates whether the memcpy source is
1311/// constant so it does not need to be loaded.
Dan Gohman37f32ee2010-04-16 20:11:05 +00001312/// It returns EVT::Other if the type should be determined using generic
1313/// target-independent logic.
Owen Andersone50ed302009-08-10 22:56:29 +00001314EVT
Evan Cheng255f20f2010-04-01 06:04:33 +00001315X86TargetLowering::getOptimalMemOpType(uint64_t Size,
1316 unsigned DstAlign, unsigned SrcAlign,
Lang Hames15701f82011-10-26 23:50:43 +00001317 bool IsZeroVal,
Evan Chengc3b0c342010-04-08 07:37:57 +00001318 bool MemcpyStrSrc,
Dan Gohman37f32ee2010-04-16 20:11:05 +00001319 MachineFunction &MF) const {
Chris Lattner4002a1b2008-10-28 05:49:35 +00001320 // FIXME: This turns off use of xmm stores for memset/memcpy on targets like
1321 // linux. This is because the stack realignment code can't handle certain
1322 // cases like PR2962. This should be removed when PR2962 is fixed.
Dan Gohman37f32ee2010-04-16 20:11:05 +00001323 const Function *F = MF.getFunction();
Lang Hames15701f82011-10-26 23:50:43 +00001324 if (IsZeroVal &&
Evan Chenga5e13622011-01-07 19:35:30 +00001325 !F->hasFnAttr(Attribute::NoImplicitFloat)) {
Evan Cheng255f20f2010-04-01 06:04:33 +00001326 if (Size >= 16 &&
Evan Chenga5e13622011-01-07 19:35:30 +00001327 (Subtarget->isUnalignedMemAccessFast() ||
1328 ((DstAlign == 0 || DstAlign >= 16) &&
1329 (SrcAlign == 0 || SrcAlign >= 16))) &&
Evan Cheng255f20f2010-04-01 06:04:33 +00001330 Subtarget->getStackAlignment() >= 16) {
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00001331 if (Subtarget->hasAVX() &&
1332 Subtarget->getStackAlignment() >= 32)
1333 return MVT::v8f32;
1334 if (Subtarget->hasXMMInt())
Evan Cheng255f20f2010-04-01 06:04:33 +00001335 return MVT::v4i32;
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00001336 if (Subtarget->hasXMM())
Evan Cheng255f20f2010-04-01 06:04:33 +00001337 return MVT::v4f32;
Evan Chengc3b0c342010-04-08 07:37:57 +00001338 } else if (!MemcpyStrSrc && Size >= 8 &&
Evan Cheng3ea97552010-04-01 20:27:45 +00001339 !Subtarget->is64Bit() &&
Evan Cheng255f20f2010-04-01 06:04:33 +00001340 Subtarget->getStackAlignment() >= 8 &&
Nate Begeman2ea8ee72010-12-10 00:26:57 +00001341 Subtarget->hasXMMInt()) {
Evan Chengc3b0c342010-04-08 07:37:57 +00001342 // Do not use f64 to lower memcpy if source is string constant. It's
1343 // better to use i32 to avoid the loads.
Evan Cheng255f20f2010-04-01 06:04:33 +00001344 return MVT::f64;
Evan Chengc3b0c342010-04-08 07:37:57 +00001345 }
Chris Lattner4002a1b2008-10-28 05:49:35 +00001346 }
Evan Chengf0df0312008-05-15 08:39:06 +00001347 if (Subtarget->is64Bit() && Size >= 8)
Owen Anderson825b72b2009-08-11 20:47:22 +00001348 return MVT::i64;
1349 return MVT::i32;
Evan Chengf0df0312008-05-15 08:39:06 +00001350}
1351
Chris Lattner5e1df8d2010-01-25 23:38:14 +00001352/// getJumpTableEncoding - Return the entry encoding for a jump table in the
1353/// current function. The returned value is a member of the
1354/// MachineJumpTableInfo::JTEntryKind enum.
1355unsigned X86TargetLowering::getJumpTableEncoding() const {
1356 // In GOT pic mode, each entry in the jump table is emitted as a @GOTOFF
1357 // symbol.
1358 if (getTargetMachine().getRelocationModel() == Reloc::PIC_ &&
1359 Subtarget->isPICStyleGOT())
Chris Lattnerc64daab2010-01-26 05:02:42 +00001360 return MachineJumpTableInfo::EK_Custom32;
Michael J. Spencerec38de22010-10-10 22:04:20 +00001361
Chris Lattner5e1df8d2010-01-25 23:38:14 +00001362 // Otherwise, use the normal jump table encoding heuristics.
1363 return TargetLowering::getJumpTableEncoding();
1364}
1365
Chris Lattnerc64daab2010-01-26 05:02:42 +00001366const MCExpr *
1367X86TargetLowering::LowerCustomJumpTableEntry(const MachineJumpTableInfo *MJTI,
1368 const MachineBasicBlock *MBB,
1369 unsigned uid,MCContext &Ctx) const{
1370 assert(getTargetMachine().getRelocationModel() == Reloc::PIC_ &&
1371 Subtarget->isPICStyleGOT());
1372 // In 32-bit ELF systems, our jump table entries are formed with @GOTOFF
1373 // entries.
Daniel Dunbar4e815f82010-03-15 23:51:06 +00001374 return MCSymbolRefExpr::Create(MBB->getSymbol(),
1375 MCSymbolRefExpr::VK_GOTOFF, Ctx);
Chris Lattnerc64daab2010-01-26 05:02:42 +00001376}
1377
Evan Chengcc415862007-11-09 01:32:10 +00001378/// getPICJumpTableRelocaBase - Returns relocation base for the given PIC
1379/// jumptable.
Dan Gohman475871a2008-07-27 21:46:04 +00001380SDValue X86TargetLowering::getPICJumpTableRelocBase(SDValue Table,
Chris Lattner589c6f62010-01-26 06:28:43 +00001381 SelectionDAG &DAG) const {
Chris Lattnere4df7562009-07-09 03:15:51 +00001382 if (!Subtarget->is64Bit())
Dale Johannesenb300d2a2009-02-07 00:55:49 +00001383 // This doesn't have DebugLoc associated with it, but is not really the
1384 // same as a Register.
Chris Lattnerc7f3ace2010-04-02 20:16:16 +00001385 return DAG.getNode(X86ISD::GlobalBaseReg, DebugLoc(), getPointerTy());
Evan Chengcc415862007-11-09 01:32:10 +00001386 return Table;
1387}
1388
Chris Lattner589c6f62010-01-26 06:28:43 +00001389/// getPICJumpTableRelocBaseExpr - This returns the relocation base for the
1390/// given PIC jumptable, the same as getPICJumpTableRelocBase, but as an
1391/// MCExpr.
1392const MCExpr *X86TargetLowering::
1393getPICJumpTableRelocBaseExpr(const MachineFunction *MF, unsigned JTI,
1394 MCContext &Ctx) const {
1395 // X86-64 uses RIP relative addressing based on the jump table label.
1396 if (Subtarget->isPICStyleRIPRel())
1397 return TargetLowering::getPICJumpTableRelocBaseExpr(MF, JTI, Ctx);
1398
1399 // Otherwise, the reference is relative to the PIC base.
Chris Lattner142b5312010-11-14 22:48:15 +00001400 return MCSymbolRefExpr::Create(MF->getPICBaseSymbol(), Ctx);
Chris Lattner589c6f62010-01-26 06:28:43 +00001401}
1402
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00001403// FIXME: Why this routine is here? Move to RegInfo!
Evan Chengdee81012010-07-26 21:50:05 +00001404std::pair<const TargetRegisterClass*, uint8_t>
1405X86TargetLowering::findRepresentativeClass(EVT VT) const{
1406 const TargetRegisterClass *RRC = 0;
1407 uint8_t Cost = 1;
1408 switch (VT.getSimpleVT().SimpleTy) {
1409 default:
1410 return TargetLowering::findRepresentativeClass(VT);
1411 case MVT::i8: case MVT::i16: case MVT::i32: case MVT::i64:
1412 RRC = (Subtarget->is64Bit()
1413 ? X86::GR64RegisterClass : X86::GR32RegisterClass);
1414 break;
Dale Johannesen0488fb62010-09-30 23:57:10 +00001415 case MVT::x86mmx:
Evan Chengdee81012010-07-26 21:50:05 +00001416 RRC = X86::VR64RegisterClass;
1417 break;
1418 case MVT::f32: case MVT::f64:
1419 case MVT::v16i8: case MVT::v8i16: case MVT::v4i32: case MVT::v2i64:
1420 case MVT::v4f32: case MVT::v2f64:
1421 case MVT::v32i8: case MVT::v8i32: case MVT::v4i64: case MVT::v8f32:
1422 case MVT::v4f64:
1423 RRC = X86::VR128RegisterClass;
1424 break;
1425 }
1426 return std::make_pair(RRC, Cost);
1427}
1428
Eric Christopherf7a0c7b2010-07-06 05:18:56 +00001429bool X86TargetLowering::getStackCookieLocation(unsigned &AddressSpace,
1430 unsigned &Offset) const {
1431 if (!Subtarget->isTargetLinux())
1432 return false;
1433
1434 if (Subtarget->is64Bit()) {
1435 // %fs:0x28, unless we're using a Kernel code model, in which case it's %gs:
1436 Offset = 0x28;
1437 if (getTargetMachine().getCodeModel() == CodeModel::Kernel)
1438 AddressSpace = 256;
1439 else
1440 AddressSpace = 257;
1441 } else {
1442 // %gs:0x14 on i386
1443 Offset = 0x14;
1444 AddressSpace = 256;
1445 }
1446 return true;
1447}
1448
1449
Chris Lattner2b02a442007-02-25 08:29:00 +00001450//===----------------------------------------------------------------------===//
1451// Return Value Calling Convention Implementation
1452//===----------------------------------------------------------------------===//
1453
Chris Lattner59ed56b2007-02-28 04:55:35 +00001454#include "X86GenCallingConv.inc"
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00001455
Michael J. Spencerec38de22010-10-10 22:04:20 +00001456bool
Eric Christopher471e4222011-06-08 23:55:35 +00001457X86TargetLowering::CanLowerReturn(CallingConv::ID CallConv,
1458 MachineFunction &MF, bool isVarArg,
Dan Gohman84023e02010-07-10 09:00:22 +00001459 const SmallVectorImpl<ISD::OutputArg> &Outs,
Dan Gohmanc9af33c2010-07-06 22:19:37 +00001460 LLVMContext &Context) const {
Kenneth Uildriksb4997ae2009-11-07 02:11:54 +00001461 SmallVector<CCValAssign, 16> RVLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00001462 CCState CCInfo(CallConv, isVarArg, MF, getTargetMachine(),
Dan Gohmanc9af33c2010-07-06 22:19:37 +00001463 RVLocs, Context);
Dan Gohman84023e02010-07-10 09:00:22 +00001464 return CCInfo.CheckReturn(Outs, RetCC_X86);
Kenneth Uildriksb4997ae2009-11-07 02:11:54 +00001465}
1466
Dan Gohman98ca4f22009-08-05 01:29:28 +00001467SDValue
1468X86TargetLowering::LowerReturn(SDValue Chain,
Sandeep Patel65c3c8f2009-09-02 08:44:58 +00001469 CallingConv::ID CallConv, bool isVarArg,
Dan Gohman98ca4f22009-08-05 01:29:28 +00001470 const SmallVectorImpl<ISD::OutputArg> &Outs,
Dan Gohmanc9403652010-07-07 15:54:55 +00001471 const SmallVectorImpl<SDValue> &OutVals,
Dan Gohmand858e902010-04-17 15:26:15 +00001472 DebugLoc dl, SelectionDAG &DAG) const {
Dan Gohman1e93df62010-04-17 14:41:14 +00001473 MachineFunction &MF = DAG.getMachineFunction();
1474 X86MachineFunctionInfo *FuncInfo = MF.getInfo<X86MachineFunctionInfo>();
Scott Michelfdc40a02009-02-17 22:15:04 +00001475
Chris Lattner9774c912007-02-27 05:28:59 +00001476 SmallVector<CCValAssign, 16> RVLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00001477 CCState CCInfo(CallConv, isVarArg, MF, getTargetMachine(),
Dan Gohman98ca4f22009-08-05 01:29:28 +00001478 RVLocs, *DAG.getContext());
1479 CCInfo.AnalyzeReturn(Outs, RetCC_X86);
Scott Michelfdc40a02009-02-17 22:15:04 +00001480
Evan Chengdcea1632010-02-04 02:40:39 +00001481 // Add the regs to the liveout set for the function.
1482 MachineRegisterInfo &MRI = DAG.getMachineFunction().getRegInfo();
1483 for (unsigned i = 0; i != RVLocs.size(); ++i)
1484 if (RVLocs[i].isRegLoc() && !MRI.isLiveOut(RVLocs[i].getLocReg()))
1485 MRI.addLiveOut(RVLocs[i].getLocReg());
Scott Michelfdc40a02009-02-17 22:15:04 +00001486
Dan Gohman475871a2008-07-27 21:46:04 +00001487 SDValue Flag;
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00001488
Dan Gohman475871a2008-07-27 21:46:04 +00001489 SmallVector<SDValue, 6> RetOps;
Chris Lattner447ff682008-03-11 03:23:40 +00001490 RetOps.push_back(Chain); // Operand #0 = Chain (updated below)
1491 // Operand #1 = Bytes To Pop
Dan Gohman1e93df62010-04-17 14:41:14 +00001492 RetOps.push_back(DAG.getTargetConstant(FuncInfo->getBytesToPopOnReturn(),
1493 MVT::i16));
Scott Michelfdc40a02009-02-17 22:15:04 +00001494
Chris Lattner2a9bdd72007-02-25 09:12:39 +00001495 // Copy the result values into the output registers.
Chris Lattner8e6da152008-03-10 21:08:41 +00001496 for (unsigned i = 0; i != RVLocs.size(); ++i) {
1497 CCValAssign &VA = RVLocs[i];
1498 assert(VA.isRegLoc() && "Can only return in registers!");
Dan Gohmanc9403652010-07-07 15:54:55 +00001499 SDValue ValToCopy = OutVals[i];
Dale Johannesenc76d23f2010-07-23 00:30:35 +00001500 EVT ValVT = ValToCopy.getValueType();
1501
Dale Johannesenc4510512010-09-24 19:05:48 +00001502 // If this is x86-64, and we disabled SSE, we can't return FP values,
1503 // or SSE or MMX vectors.
1504 if ((ValVT == MVT::f32 || ValVT == MVT::f64 ||
1505 VA.getLocReg() == X86::XMM0 || VA.getLocReg() == X86::XMM1) &&
Nate Begeman2ea8ee72010-12-10 00:26:57 +00001506 (Subtarget->is64Bit() && !Subtarget->hasXMM())) {
Dale Johannesenc76d23f2010-07-23 00:30:35 +00001507 report_fatal_error("SSE register return with SSE disabled");
1508 }
1509 // Likewise we can't return F64 values with SSE1 only. gcc does so, but
1510 // llvm-gcc has never done it right and no one has noticed, so this
1511 // should be OK for now.
1512 if (ValVT == MVT::f64 &&
Nate Begeman2ea8ee72010-12-10 00:26:57 +00001513 (Subtarget->is64Bit() && !Subtarget->hasXMMInt()))
Dale Johannesenc76d23f2010-07-23 00:30:35 +00001514 report_fatal_error("SSE2 register return with SSE2 disabled");
Scott Michelfdc40a02009-02-17 22:15:04 +00001515
Chris Lattner447ff682008-03-11 03:23:40 +00001516 // Returns in ST0/ST1 are handled specially: these are pushed as operands to
1517 // the RET instruction and handled by the FP Stackifier.
Dan Gohman37eed792009-02-04 17:28:58 +00001518 if (VA.getLocReg() == X86::ST0 ||
1519 VA.getLocReg() == X86::ST1) {
Chris Lattner447ff682008-03-11 03:23:40 +00001520 // If this is a copy from an xmm register to ST(0), use an FPExtend to
1521 // change the value to the FP stack register class.
Dan Gohman37eed792009-02-04 17:28:58 +00001522 if (isScalarFPTypeInSSEReg(VA.getValVT()))
Owen Anderson825b72b2009-08-11 20:47:22 +00001523 ValToCopy = DAG.getNode(ISD::FP_EXTEND, dl, MVT::f80, ValToCopy);
Chris Lattner447ff682008-03-11 03:23:40 +00001524 RetOps.push_back(ValToCopy);
1525 // Don't emit a copytoreg.
1526 continue;
1527 }
Dale Johannesena68f9012008-06-24 22:01:44 +00001528
Evan Cheng242b38b2009-02-23 09:03:22 +00001529 // 64-bit vector (MMX) values are returned in XMM0 / XMM1 except for v1i64
1530 // which is returned in RAX / RDX.
Evan Cheng6140a8b2009-02-22 08:05:12 +00001531 if (Subtarget->is64Bit()) {
Dale Johannesen0488fb62010-09-30 23:57:10 +00001532 if (ValVT == MVT::x86mmx) {
Chris Lattner97a2a562010-08-26 05:24:29 +00001533 if (VA.getLocReg() == X86::XMM0 || VA.getLocReg() == X86::XMM1) {
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001534 ValToCopy = DAG.getNode(ISD::BITCAST, dl, MVT::i64, ValToCopy);
Eric Christopher90eb4022010-07-22 00:26:08 +00001535 ValToCopy = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v2i64,
1536 ValToCopy);
Chris Lattner97a2a562010-08-26 05:24:29 +00001537 // If we don't have SSE2 available, convert to v4f32 so the generated
1538 // register is legal.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00001539 if (!Subtarget->hasXMMInt())
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001540 ValToCopy = DAG.getNode(ISD::BITCAST, dl, MVT::v4f32,ValToCopy);
Chris Lattner97a2a562010-08-26 05:24:29 +00001541 }
Evan Cheng242b38b2009-02-23 09:03:22 +00001542 }
Evan Cheng6140a8b2009-02-22 08:05:12 +00001543 }
Michael J. Spencerec38de22010-10-10 22:04:20 +00001544
Dale Johannesendd64c412009-02-04 00:33:20 +00001545 Chain = DAG.getCopyToReg(Chain, dl, VA.getLocReg(), ValToCopy, Flag);
Chris Lattner2a9bdd72007-02-25 09:12:39 +00001546 Flag = Chain.getValue(1);
1547 }
Dan Gohman61a92132008-04-21 23:59:07 +00001548
1549 // The x86-64 ABI for returning structs by value requires that we copy
1550 // the sret argument into %rax for the return. We saved the argument into
1551 // a virtual register in the entry block, so now we copy the value out
1552 // and into %rax.
1553 if (Subtarget->is64Bit() &&
1554 DAG.getMachineFunction().getFunction()->hasStructRetAttr()) {
1555 MachineFunction &MF = DAG.getMachineFunction();
1556 X86MachineFunctionInfo *FuncInfo = MF.getInfo<X86MachineFunctionInfo>();
1557 unsigned Reg = FuncInfo->getSRetReturnReg();
Michael J. Spencerec38de22010-10-10 22:04:20 +00001558 assert(Reg &&
Zhongxing Xuc2798a12010-05-26 08:10:02 +00001559 "SRetReturnReg should have been set in LowerFormalArguments().");
Dale Johannesendd64c412009-02-04 00:33:20 +00001560 SDValue Val = DAG.getCopyFromReg(Chain, dl, Reg, getPointerTy());
Dan Gohman61a92132008-04-21 23:59:07 +00001561
Dale Johannesendd64c412009-02-04 00:33:20 +00001562 Chain = DAG.getCopyToReg(Chain, dl, X86::RAX, Val, Flag);
Dan Gohman61a92132008-04-21 23:59:07 +00001563 Flag = Chain.getValue(1);
Dan Gohman00326812009-10-12 16:36:12 +00001564
1565 // RAX now acts like a return value.
Evan Chengdcea1632010-02-04 02:40:39 +00001566 MRI.addLiveOut(X86::RAX);
Dan Gohman61a92132008-04-21 23:59:07 +00001567 }
Scott Michelfdc40a02009-02-17 22:15:04 +00001568
Chris Lattner447ff682008-03-11 03:23:40 +00001569 RetOps[0] = Chain; // Update chain.
1570
1571 // Add the flag if we have it.
Gabor Greifba36cb52008-08-28 21:40:38 +00001572 if (Flag.getNode())
Chris Lattner447ff682008-03-11 03:23:40 +00001573 RetOps.push_back(Flag);
Scott Michelfdc40a02009-02-17 22:15:04 +00001574
1575 return DAG.getNode(X86ISD::RET_FLAG, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00001576 MVT::Other, &RetOps[0], RetOps.size());
Chris Lattner2a9bdd72007-02-25 09:12:39 +00001577}
1578
Evan Cheng3d2125c2010-11-30 23:55:39 +00001579bool X86TargetLowering::isUsedByReturnOnly(SDNode *N) const {
1580 if (N->getNumValues() != 1)
1581 return false;
1582 if (!N->hasNUsesOfValue(1, 0))
1583 return false;
1584
1585 SDNode *Copy = *N->use_begin();
Evan Cheng1bf891a2010-12-01 22:59:46 +00001586 if (Copy->getOpcode() != ISD::CopyToReg &&
1587 Copy->getOpcode() != ISD::FP_EXTEND)
Evan Cheng3d2125c2010-11-30 23:55:39 +00001588 return false;
Evan Cheng1bf891a2010-12-01 22:59:46 +00001589
1590 bool HasRet = false;
Evan Cheng3d2125c2010-11-30 23:55:39 +00001591 for (SDNode::use_iterator UI = Copy->use_begin(), UE = Copy->use_end();
Evan Cheng1bf891a2010-12-01 22:59:46 +00001592 UI != UE; ++UI) {
Evan Cheng3d2125c2010-11-30 23:55:39 +00001593 if (UI->getOpcode() != X86ISD::RET_FLAG)
1594 return false;
Evan Cheng1bf891a2010-12-01 22:59:46 +00001595 HasRet = true;
1596 }
Evan Cheng3d2125c2010-11-30 23:55:39 +00001597
Evan Cheng1bf891a2010-12-01 22:59:46 +00001598 return HasRet;
Evan Cheng3d2125c2010-11-30 23:55:39 +00001599}
1600
Cameron Zwarich7bbf0ee2011-03-17 14:53:37 +00001601EVT
1602X86TargetLowering::getTypeForExtArgOrReturn(LLVMContext &Context, EVT VT,
Cameron Zwarich44579682011-03-17 14:21:56 +00001603 ISD::NodeType ExtendKind) const {
Cameron Zwarich7bbf0ee2011-03-17 14:53:37 +00001604 MVT ReturnMVT;
Cameron Zwarichebe81732011-03-16 22:20:18 +00001605 // TODO: Is this also valid on 32-bit?
1606 if (Subtarget->is64Bit() && VT == MVT::i1 && ExtendKind == ISD::ZERO_EXTEND)
Cameron Zwarich7bbf0ee2011-03-17 14:53:37 +00001607 ReturnMVT = MVT::i8;
1608 else
1609 ReturnMVT = MVT::i32;
1610
1611 EVT MinVT = getRegisterType(Context, ReturnMVT);
1612 return VT.bitsLT(MinVT) ? MinVT : VT;
Cameron Zwarichebe81732011-03-16 22:20:18 +00001613}
1614
Dan Gohman98ca4f22009-08-05 01:29:28 +00001615/// LowerCallResult - Lower the result values of a call into the
1616/// appropriate copies out of appropriate physical registers.
1617///
1618SDValue
1619X86TargetLowering::LowerCallResult(SDValue Chain, SDValue InFlag,
Sandeep Patel65c3c8f2009-09-02 08:44:58 +00001620 CallingConv::ID CallConv, bool isVarArg,
Dan Gohman98ca4f22009-08-05 01:29:28 +00001621 const SmallVectorImpl<ISD::InputArg> &Ins,
1622 DebugLoc dl, SelectionDAG &DAG,
Dan Gohmand858e902010-04-17 15:26:15 +00001623 SmallVectorImpl<SDValue> &InVals) const {
Chris Lattner2a9bdd72007-02-25 09:12:39 +00001624
Chris Lattnere32bbf62007-02-28 07:09:55 +00001625 // Assign locations to each value returned by this call.
Chris Lattner9774c912007-02-27 05:28:59 +00001626 SmallVector<CCValAssign, 16> RVLocs;
Torok Edwin3f142c32009-02-01 18:15:56 +00001627 bool Is64Bit = Subtarget->is64Bit();
Eric Christopher471e4222011-06-08 23:55:35 +00001628 CCState CCInfo(CallConv, isVarArg, DAG.getMachineFunction(),
1629 getTargetMachine(), RVLocs, *DAG.getContext());
Dan Gohman98ca4f22009-08-05 01:29:28 +00001630 CCInfo.AnalyzeCallResult(Ins, RetCC_X86);
Scott Michelfdc40a02009-02-17 22:15:04 +00001631
Chris Lattner3085e152007-02-25 08:59:22 +00001632 // Copy all of the result registers out of their specified physreg.
Chris Lattner8e6da152008-03-10 21:08:41 +00001633 for (unsigned i = 0; i != RVLocs.size(); ++i) {
Dan Gohman37eed792009-02-04 17:28:58 +00001634 CCValAssign &VA = RVLocs[i];
Owen Andersone50ed302009-08-10 22:56:29 +00001635 EVT CopyVT = VA.getValVT();
Scott Michelfdc40a02009-02-17 22:15:04 +00001636
Torok Edwin3f142c32009-02-01 18:15:56 +00001637 // If this is x86-64, and we disabled SSE, we can't return FP values
Owen Anderson825b72b2009-08-11 20:47:22 +00001638 if ((CopyVT == MVT::f32 || CopyVT == MVT::f64) &&
Nate Begeman2ea8ee72010-12-10 00:26:57 +00001639 ((Is64Bit || Ins[i].Flags.isInReg()) && !Subtarget->hasXMM())) {
Chris Lattner75361b62010-04-07 22:58:41 +00001640 report_fatal_error("SSE register return with SSE disabled");
Torok Edwin3f142c32009-02-01 18:15:56 +00001641 }
1642
Evan Cheng79fb3b42009-02-20 20:43:02 +00001643 SDValue Val;
Jakob Stoklund Olesend737fca2010-07-10 04:04:25 +00001644
1645 // If this is a call to a function that returns an fp value on the floating
1646 // point stack, we must guarantee the the value is popped from the stack, so
1647 // a CopyFromReg is not good enough - the copy instruction may be eliminated
Jakob Stoklund Olesen9bbe4d62011-06-28 18:32:28 +00001648 // if the return value is not used. We use the FpPOP_RETVAL instruction
Jakob Stoklund Olesend737fca2010-07-10 04:04:25 +00001649 // instead.
1650 if (VA.getLocReg() == X86::ST0 || VA.getLocReg() == X86::ST1) {
1651 // If we prefer to use the value in xmm registers, copy it out as f80 and
1652 // use a truncate to move it from fp stack reg to xmm reg.
1653 if (isScalarFPTypeInSSEReg(VA.getValVT())) CopyVT = MVT::f80;
Jakob Stoklund Olesend737fca2010-07-10 04:04:25 +00001654 SDValue Ops[] = { Chain, InFlag };
Jakob Stoklund Olesen9bbe4d62011-06-28 18:32:28 +00001655 Chain = SDValue(DAG.getMachineNode(X86::FpPOP_RETVAL, dl, CopyVT,
1656 MVT::Other, MVT::Glue, Ops, 2), 1);
Jakob Stoklund Olesend737fca2010-07-10 04:04:25 +00001657 Val = Chain.getValue(0);
1658
1659 // Round the f80 to the right size, which also moves it to the appropriate
1660 // xmm register.
1661 if (CopyVT != VA.getValVT())
1662 Val = DAG.getNode(ISD::FP_ROUND, dl, VA.getValVT(), Val,
1663 // This truncation won't change the value.
1664 DAG.getIntPtrConstant(1));
Evan Cheng79fb3b42009-02-20 20:43:02 +00001665 } else {
1666 Chain = DAG.getCopyFromReg(Chain, dl, VA.getLocReg(),
1667 CopyVT, InFlag).getValue(1);
1668 Val = Chain.getValue(0);
1669 }
Chris Lattner8e6da152008-03-10 21:08:41 +00001670 InFlag = Chain.getValue(2);
Dan Gohman98ca4f22009-08-05 01:29:28 +00001671 InVals.push_back(Val);
Chris Lattner3085e152007-02-25 08:59:22 +00001672 }
Duncan Sands4bdcb612008-07-02 17:40:58 +00001673
Dan Gohman98ca4f22009-08-05 01:29:28 +00001674 return Chain;
Chris Lattner2b02a442007-02-25 08:29:00 +00001675}
1676
1677
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001678//===----------------------------------------------------------------------===//
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00001679// C & StdCall & Fast Calling Convention implementation
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001680//===----------------------------------------------------------------------===//
Anton Korobeynikovb10308e2007-01-28 13:31:35 +00001681// StdCall calling convention seems to be standard for many Windows' API
1682// routines and around. It differs from C calling convention just a little:
1683// callee should clean up the stack, not caller. Symbols should be also
1684// decorated in some fancy way :) It doesn't support any vector arguments.
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00001685// For info on fast calling convention see Fast Calling Convention (tail call)
1686// implementation LowerX86_32FastCCCallTo.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001687
Dan Gohman98ca4f22009-08-05 01:29:28 +00001688/// CallIsStructReturn - Determines whether a call uses struct return
Arnold Schwaighofer16a3e522008-02-26 17:50:59 +00001689/// semantics.
Dan Gohman98ca4f22009-08-05 01:29:28 +00001690static bool CallIsStructReturn(const SmallVectorImpl<ISD::OutputArg> &Outs) {
1691 if (Outs.empty())
Gordon Henriksen86737662008-01-05 16:56:59 +00001692 return false;
Duncan Sands276dcbd2008-03-21 09:14:45 +00001693
Dan Gohman98ca4f22009-08-05 01:29:28 +00001694 return Outs[0].Flags.isSRet();
Gordon Henriksen86737662008-01-05 16:56:59 +00001695}
1696
Dan Gohman7e77b0f2009-08-01 19:14:37 +00001697/// ArgsAreStructReturn - Determines whether a function uses struct
Arnold Schwaighofer16a3e522008-02-26 17:50:59 +00001698/// return semantics.
Dan Gohman98ca4f22009-08-05 01:29:28 +00001699static bool
1700ArgsAreStructReturn(const SmallVectorImpl<ISD::InputArg> &Ins) {
1701 if (Ins.empty())
Gordon Henriksen86737662008-01-05 16:56:59 +00001702 return false;
Duncan Sands276dcbd2008-03-21 09:14:45 +00001703
Dan Gohman98ca4f22009-08-05 01:29:28 +00001704 return Ins[0].Flags.isSRet();
Gordon Henriksen86737662008-01-05 16:56:59 +00001705}
1706
Arnold Schwaighofer16a3e522008-02-26 17:50:59 +00001707/// CreateCopyOfByValArgument - Make a copy of an aggregate at address specified
1708/// by "Src" to address "Dst" with size and alignment information specified by
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00001709/// the specific parameter attribute. The copy will be passed as a byval
1710/// function parameter.
Scott Michelfdc40a02009-02-17 22:15:04 +00001711static SDValue
Dan Gohman475871a2008-07-27 21:46:04 +00001712CreateCopyOfByValArgument(SDValue Src, SDValue Dst, SDValue Chain,
Dale Johannesendd64c412009-02-04 00:33:20 +00001713 ISD::ArgFlagsTy Flags, SelectionDAG &DAG,
1714 DebugLoc dl) {
Chris Lattnere72f2022010-09-21 05:40:29 +00001715 SDValue SizeNode = DAG.getConstant(Flags.getByValSize(), MVT::i32);
Michael J. Spencerec38de22010-10-10 22:04:20 +00001716
Dale Johannesendd64c412009-02-04 00:33:20 +00001717 return DAG.getMemcpy(Chain, dl, Dst, Src, SizeNode, Flags.getByValAlign(),
Stuart Hastings03d58262011-03-10 00:25:53 +00001718 /*isVolatile*/false, /*AlwaysInline=*/true,
Chris Lattnerfc448ff2010-09-21 18:51:21 +00001719 MachinePointerInfo(), MachinePointerInfo());
Arnold Schwaighoferc8ab8cd2008-01-11 16:49:42 +00001720}
1721
Chris Lattner29689432010-03-11 00:22:57 +00001722/// IsTailCallConvention - Return true if the calling convention is one that
1723/// supports tail call optimization.
1724static bool IsTailCallConvention(CallingConv::ID CC) {
1725 return (CC == CallingConv::Fast || CC == CallingConv::GHC);
1726}
1727
Evan Cheng485fafc2011-03-21 01:19:09 +00001728bool X86TargetLowering::mayBeEmittedAsTailCall(CallInst *CI) const {
1729 if (!CI->isTailCall())
1730 return false;
1731
1732 CallSite CS(CI);
1733 CallingConv::ID CalleeCC = CS.getCallingConv();
1734 if (!IsTailCallConvention(CalleeCC) && CalleeCC != CallingConv::C)
1735 return false;
1736
1737 return true;
1738}
1739
Evan Cheng0c439eb2010-01-27 00:07:07 +00001740/// FuncIsMadeTailCallSafe - Return true if the function is being made into
1741/// a tailcall target by changing its ABI.
Nick Lewycky8a8d4792011-12-02 22:16:29 +00001742static bool FuncIsMadeTailCallSafe(CallingConv::ID CC,
1743 bool GuaranteedTailCallOpt) {
Chris Lattner29689432010-03-11 00:22:57 +00001744 return GuaranteedTailCallOpt && IsTailCallConvention(CC);
Evan Cheng0c439eb2010-01-27 00:07:07 +00001745}
1746
Dan Gohman98ca4f22009-08-05 01:29:28 +00001747SDValue
1748X86TargetLowering::LowerMemArgument(SDValue Chain,
Sandeep Patel65c3c8f2009-09-02 08:44:58 +00001749 CallingConv::ID CallConv,
Dan Gohman98ca4f22009-08-05 01:29:28 +00001750 const SmallVectorImpl<ISD::InputArg> &Ins,
1751 DebugLoc dl, SelectionDAG &DAG,
1752 const CCValAssign &VA,
1753 MachineFrameInfo *MFI,
Dan Gohmand858e902010-04-17 15:26:15 +00001754 unsigned i) const {
Rafael Espindola7effac52007-09-14 15:48:13 +00001755 // Create the nodes corresponding to a load from this parameter slot.
Dan Gohman98ca4f22009-08-05 01:29:28 +00001756 ISD::ArgFlagsTy Flags = Ins[i].Flags;
Nick Lewycky8a8d4792011-12-02 22:16:29 +00001757 bool AlwaysUseMutable = FuncIsMadeTailCallSafe(CallConv,
1758 getTargetMachine().Options.GuaranteedTailCallOpt);
Duncan Sands276dcbd2008-03-21 09:14:45 +00001759 bool isImmutable = !AlwaysUseMutable && !Flags.isByVal();
Anton Korobeynikov22472762009-08-14 18:19:10 +00001760 EVT ValVT;
1761
1762 // If value is passed by pointer we have address passed instead of the value
1763 // itself.
1764 if (VA.getLocInfo() == CCValAssign::Indirect)
1765 ValVT = VA.getLocVT();
1766 else
1767 ValVT = VA.getValVT();
Evan Chenge70bb592008-01-10 02:24:25 +00001768
Arnold Schwaighofer865c6812008-02-26 09:19:59 +00001769 // FIXME: For now, all byval parameter objects are marked mutable. This can be
Scott Michelfdc40a02009-02-17 22:15:04 +00001770 // changed with more analysis.
Arnold Schwaighofer865c6812008-02-26 09:19:59 +00001771 // In case of tail call optimization mark all arguments mutable. Since they
1772 // could be overwritten by lowering of arguments in case of a tail call.
Evan Cheng90567c32010-02-02 23:58:13 +00001773 if (Flags.isByVal()) {
Evan Chengee2e0e32011-03-30 23:44:13 +00001774 unsigned Bytes = Flags.getByValSize();
1775 if (Bytes == 0) Bytes = 1; // Don't create zero-sized stack objects.
1776 int FI = MFI->CreateFixedObject(Bytes, VA.getLocMemOffset(), isImmutable);
Evan Cheng90567c32010-02-02 23:58:13 +00001777 return DAG.getFrameIndex(FI, getPointerTy());
1778 } else {
1779 int FI = MFI->CreateFixedObject(ValVT.getSizeInBits()/8,
Evan Chenged2ae132010-07-03 00:40:23 +00001780 VA.getLocMemOffset(), isImmutable);
Evan Cheng90567c32010-02-02 23:58:13 +00001781 SDValue FIN = DAG.getFrameIndex(FI, getPointerTy());
1782 return DAG.getLoad(ValVT, dl, Chain, FIN,
Chris Lattnere8639032010-09-21 06:22:23 +00001783 MachinePointerInfo::getFixedStack(FI),
Pete Cooperd752e0f2011-11-08 18:42:53 +00001784 false, false, false, 0);
Evan Cheng90567c32010-02-02 23:58:13 +00001785 }
Rafael Espindola7effac52007-09-14 15:48:13 +00001786}
1787
Dan Gohman475871a2008-07-27 21:46:04 +00001788SDValue
Dan Gohman98ca4f22009-08-05 01:29:28 +00001789X86TargetLowering::LowerFormalArguments(SDValue Chain,
Sandeep Patel65c3c8f2009-09-02 08:44:58 +00001790 CallingConv::ID CallConv,
Dan Gohman98ca4f22009-08-05 01:29:28 +00001791 bool isVarArg,
1792 const SmallVectorImpl<ISD::InputArg> &Ins,
1793 DebugLoc dl,
1794 SelectionDAG &DAG,
Dan Gohmand858e902010-04-17 15:26:15 +00001795 SmallVectorImpl<SDValue> &InVals)
1796 const {
Evan Cheng1bc78042006-04-26 01:20:17 +00001797 MachineFunction &MF = DAG.getMachineFunction();
Gordon Henriksen86737662008-01-05 16:56:59 +00001798 X86MachineFunctionInfo *FuncInfo = MF.getInfo<X86MachineFunctionInfo>();
Scott Michelfdc40a02009-02-17 22:15:04 +00001799
Gordon Henriksen86737662008-01-05 16:56:59 +00001800 const Function* Fn = MF.getFunction();
1801 if (Fn->hasExternalLinkage() &&
1802 Subtarget->isTargetCygMing() &&
1803 Fn->getName() == "main")
1804 FuncInfo->setForceFramePointer(true);
1805
Evan Cheng1bc78042006-04-26 01:20:17 +00001806 MachineFrameInfo *MFI = MF.getFrameInfo();
Gordon Henriksen86737662008-01-05 16:56:59 +00001807 bool Is64Bit = Subtarget->is64Bit();
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001808 bool IsWin64 = Subtarget->isTargetWin64();
Gordon Henriksenae636f82008-01-03 16:47:34 +00001809
Chris Lattner29689432010-03-11 00:22:57 +00001810 assert(!(isVarArg && IsTailCallConvention(CallConv)) &&
1811 "Var args not supported with calling convention fastcc or ghc");
Gordon Henriksenae636f82008-01-03 16:47:34 +00001812
Chris Lattner638402b2007-02-28 07:00:42 +00001813 // Assign locations to all of the incoming arguments.
Chris Lattnerf39f7712007-02-28 05:46:49 +00001814 SmallVector<CCValAssign, 16> ArgLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00001815 CCState CCInfo(CallConv, isVarArg, MF, getTargetMachine(),
Dan Gohman98ca4f22009-08-05 01:29:28 +00001816 ArgLocs, *DAG.getContext());
NAKAMURA Takumi3f4be4f2011-02-05 15:11:32 +00001817
1818 // Allocate shadow area for Win64
1819 if (IsWin64) {
1820 CCInfo.AllocateStack(32, 8);
1821 }
1822
Duncan Sands45907662010-10-31 13:21:44 +00001823 CCInfo.AnalyzeFormalArguments(Ins, CC_X86);
Scott Michelfdc40a02009-02-17 22:15:04 +00001824
Chris Lattnerf39f7712007-02-28 05:46:49 +00001825 unsigned LastVal = ~0U;
Anton Korobeynikov4ab15532009-08-03 08:13:56 +00001826 SDValue ArgValue;
Chris Lattnerf39f7712007-02-28 05:46:49 +00001827 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
1828 CCValAssign &VA = ArgLocs[i];
1829 // TODO: If an arg is passed in two places (e.g. reg and stack), skip later
1830 // places.
1831 assert(VA.getValNo() != LastVal &&
1832 "Don't support value assigned to multiple locs yet");
Duncan Sands17001ce2011-10-18 12:44:00 +00001833 (void)LastVal;
Chris Lattnerf39f7712007-02-28 05:46:49 +00001834 LastVal = VA.getValNo();
Scott Michelfdc40a02009-02-17 22:15:04 +00001835
Chris Lattnerf39f7712007-02-28 05:46:49 +00001836 if (VA.isRegLoc()) {
Owen Andersone50ed302009-08-10 22:56:29 +00001837 EVT RegVT = VA.getLocVT();
Devang Patel8a84e442009-01-05 17:31:22 +00001838 TargetRegisterClass *RC = NULL;
Owen Anderson825b72b2009-08-11 20:47:22 +00001839 if (RegVT == MVT::i32)
Chris Lattnerf39f7712007-02-28 05:46:49 +00001840 RC = X86::GR32RegisterClass;
Owen Anderson825b72b2009-08-11 20:47:22 +00001841 else if (Is64Bit && RegVT == MVT::i64)
Gordon Henriksen86737662008-01-05 16:56:59 +00001842 RC = X86::GR64RegisterClass;
Owen Anderson825b72b2009-08-11 20:47:22 +00001843 else if (RegVT == MVT::f32)
Gordon Henriksen86737662008-01-05 16:56:59 +00001844 RC = X86::FR32RegisterClass;
Owen Anderson825b72b2009-08-11 20:47:22 +00001845 else if (RegVT == MVT::f64)
Gordon Henriksen86737662008-01-05 16:56:59 +00001846 RC = X86::FR64RegisterClass;
Bruno Cardoso Lopesac098352010-08-05 23:35:51 +00001847 else if (RegVT.isVector() && RegVT.getSizeInBits() == 256)
1848 RC = X86::VR256RegisterClass;
Duncan Sands83ec4b62008-06-06 12:08:01 +00001849 else if (RegVT.isVector() && RegVT.getSizeInBits() == 128)
Evan Chengee472b12008-04-25 07:56:45 +00001850 RC = X86::VR128RegisterClass;
Dale Johannesen0488fb62010-09-30 23:57:10 +00001851 else if (RegVT == MVT::x86mmx)
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +00001852 RC = X86::VR64RegisterClass;
1853 else
Torok Edwinc23197a2009-07-14 16:55:14 +00001854 llvm_unreachable("Unknown argument type!");
Gordon Henriksenae636f82008-01-03 16:47:34 +00001855
Devang Patel68e6bee2011-02-21 23:21:26 +00001856 unsigned Reg = MF.addLiveIn(VA.getLocReg(), RC);
Dan Gohman98ca4f22009-08-05 01:29:28 +00001857 ArgValue = DAG.getCopyFromReg(Chain, dl, Reg, RegVT);
Scott Michelfdc40a02009-02-17 22:15:04 +00001858
Chris Lattnerf39f7712007-02-28 05:46:49 +00001859 // If this is an 8 or 16-bit value, it is really passed promoted to 32
1860 // bits. Insert an assert[sz]ext to capture this, then truncate to the
1861 // right size.
1862 if (VA.getLocInfo() == CCValAssign::SExt)
Dale Johannesenace16102009-02-03 19:33:06 +00001863 ArgValue = DAG.getNode(ISD::AssertSext, dl, RegVT, ArgValue,
Chris Lattnerf39f7712007-02-28 05:46:49 +00001864 DAG.getValueType(VA.getValVT()));
1865 else if (VA.getLocInfo() == CCValAssign::ZExt)
Dale Johannesenace16102009-02-03 19:33:06 +00001866 ArgValue = DAG.getNode(ISD::AssertZext, dl, RegVT, ArgValue,
Chris Lattnerf39f7712007-02-28 05:46:49 +00001867 DAG.getValueType(VA.getValVT()));
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +00001868 else if (VA.getLocInfo() == CCValAssign::BCvt)
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001869 ArgValue = DAG.getNode(ISD::BITCAST, dl, VA.getValVT(), ArgValue);
Scott Michelfdc40a02009-02-17 22:15:04 +00001870
Anton Korobeynikov4ab15532009-08-03 08:13:56 +00001871 if (VA.isExtInLoc()) {
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +00001872 // Handle MMX values passed in XMM regs.
1873 if (RegVT.isVector()) {
Dale Johannesen0488fb62010-09-30 23:57:10 +00001874 ArgValue = DAG.getNode(X86ISD::MOVDQ2Q, dl, VA.getValVT(),
1875 ArgValue);
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +00001876 } else
1877 ArgValue = DAG.getNode(ISD::TRUNCATE, dl, VA.getValVT(), ArgValue);
Evan Cheng44c0fd12008-04-25 20:13:28 +00001878 }
Chris Lattnerf39f7712007-02-28 05:46:49 +00001879 } else {
1880 assert(VA.isMemLoc());
Dan Gohman98ca4f22009-08-05 01:29:28 +00001881 ArgValue = LowerMemArgument(Chain, CallConv, Ins, dl, DAG, VA, MFI, i);
Evan Cheng1bc78042006-04-26 01:20:17 +00001882 }
Anton Korobeynikov4ab15532009-08-03 08:13:56 +00001883
1884 // If value is passed via pointer - do a load.
1885 if (VA.getLocInfo() == CCValAssign::Indirect)
Chris Lattner51abfe42010-09-21 06:02:19 +00001886 ArgValue = DAG.getLoad(VA.getValVT(), dl, Chain, ArgValue,
Pete Cooperd752e0f2011-11-08 18:42:53 +00001887 MachinePointerInfo(), false, false, false, 0);
Anton Korobeynikov4ab15532009-08-03 08:13:56 +00001888
Dan Gohman98ca4f22009-08-05 01:29:28 +00001889 InVals.push_back(ArgValue);
Evan Cheng1bc78042006-04-26 01:20:17 +00001890 }
Gordon Henriksenae636f82008-01-03 16:47:34 +00001891
Dan Gohman61a92132008-04-21 23:59:07 +00001892 // The x86-64 ABI for returning structs by value requires that we copy
1893 // the sret argument into %rax for the return. Save the argument into
1894 // a virtual register so that we can access it from the return points.
Dan Gohman7e77b0f2009-08-01 19:14:37 +00001895 if (Is64Bit && MF.getFunction()->hasStructRetAttr()) {
Dan Gohman61a92132008-04-21 23:59:07 +00001896 X86MachineFunctionInfo *FuncInfo = MF.getInfo<X86MachineFunctionInfo>();
1897 unsigned Reg = FuncInfo->getSRetReturnReg();
1898 if (!Reg) {
Owen Anderson825b72b2009-08-11 20:47:22 +00001899 Reg = MF.getRegInfo().createVirtualRegister(getRegClassFor(MVT::i64));
Dan Gohman61a92132008-04-21 23:59:07 +00001900 FuncInfo->setSRetReturnReg(Reg);
1901 }
Dan Gohman98ca4f22009-08-05 01:29:28 +00001902 SDValue Copy = DAG.getCopyToReg(DAG.getEntryNode(), dl, Reg, InVals[0]);
Owen Anderson825b72b2009-08-11 20:47:22 +00001903 Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other, Copy, Chain);
Dan Gohman61a92132008-04-21 23:59:07 +00001904 }
1905
Chris Lattnerf39f7712007-02-28 05:46:49 +00001906 unsigned StackSize = CCInfo.getNextStackOffset();
Evan Cheng0c439eb2010-01-27 00:07:07 +00001907 // Align stack specially for tail calls.
Nick Lewycky8a8d4792011-12-02 22:16:29 +00001908 if (FuncIsMadeTailCallSafe(CallConv,
1909 MF.getTarget().Options.GuaranteedTailCallOpt))
Gordon Henriksenae636f82008-01-03 16:47:34 +00001910 StackSize = GetAlignedArgumentStackSize(StackSize, DAG);
Evan Cheng25caf632006-05-23 21:06:34 +00001911
Evan Cheng1bc78042006-04-26 01:20:17 +00001912 // If the function takes variable number of arguments, make a frame index for
1913 // the start of the first vararg value... for expansion of llvm.va_start.
Gordon Henriksenae636f82008-01-03 16:47:34 +00001914 if (isVarArg) {
NAKAMURA Takumi3ca99432011-03-09 11:33:15 +00001915 if (Is64Bit || (CallConv != CallingConv::X86_FastCall &&
1916 CallConv != CallingConv::X86_ThisCall)) {
Jakob Stoklund Olesenb2eeed72010-07-29 17:42:27 +00001917 FuncInfo->setVarArgsFrameIndex(MFI->CreateFixedObject(1, StackSize,true));
Gordon Henriksen86737662008-01-05 16:56:59 +00001918 }
1919 if (Is64Bit) {
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001920 unsigned TotalNumIntRegs = 0, TotalNumXMMRegs = 0;
1921
1922 // FIXME: We should really autogenerate these arrays
1923 static const unsigned GPR64ArgRegsWin64[] = {
1924 X86::RCX, X86::RDX, X86::R8, X86::R9
Gordon Henriksen86737662008-01-05 16:56:59 +00001925 };
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001926 static const unsigned GPR64ArgRegs64Bit[] = {
1927 X86::RDI, X86::RSI, X86::RDX, X86::RCX, X86::R8, X86::R9
1928 };
1929 static const unsigned XMMArgRegs64Bit[] = {
Gordon Henriksen86737662008-01-05 16:56:59 +00001930 X86::XMM0, X86::XMM1, X86::XMM2, X86::XMM3,
1931 X86::XMM4, X86::XMM5, X86::XMM6, X86::XMM7
1932 };
Anton Korobeynikove7beda12010-10-03 22:52:07 +00001933 const unsigned *GPR64ArgRegs;
1934 unsigned NumXMMRegs = 0;
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001935
1936 if (IsWin64) {
Anton Korobeynikove7beda12010-10-03 22:52:07 +00001937 // The XMM registers which might contain var arg parameters are shadowed
1938 // in their paired GPR. So we only need to save the GPR to their home
1939 // slots.
1940 TotalNumIntRegs = 4;
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001941 GPR64ArgRegs = GPR64ArgRegsWin64;
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001942 } else {
1943 TotalNumIntRegs = 6; TotalNumXMMRegs = 8;
1944 GPR64ArgRegs = GPR64ArgRegs64Bit;
Anton Korobeynikove7beda12010-10-03 22:52:07 +00001945
Chad Rosier30450e82011-12-22 22:35:21 +00001946 NumXMMRegs = CCInfo.getFirstUnallocated(XMMArgRegs64Bit,
1947 TotalNumXMMRegs);
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001948 }
1949 unsigned NumIntRegs = CCInfo.getFirstUnallocated(GPR64ArgRegs,
1950 TotalNumIntRegs);
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001951
Devang Patel578efa92009-06-05 21:57:13 +00001952 bool NoImplicitFloatOps = Fn->hasFnAttr(Attribute::NoImplicitFloat);
Nate Begeman2ea8ee72010-12-10 00:26:57 +00001953 assert(!(NumXMMRegs && !Subtarget->hasXMM()) &&
Torok Edwin3f142c32009-02-01 18:15:56 +00001954 "SSE register cannot be used when SSE is disabled!");
Nick Lewycky8a8d4792011-12-02 22:16:29 +00001955 assert(!(NumXMMRegs && MF.getTarget().Options.UseSoftFloat &&
1956 NoImplicitFloatOps) &&
Evan Chengc7ce29b2009-02-13 22:36:38 +00001957 "SSE register cannot be used when SSE is disabled!");
Nick Lewycky8a8d4792011-12-02 22:16:29 +00001958 if (MF.getTarget().Options.UseSoftFloat || NoImplicitFloatOps ||
1959 !Subtarget->hasXMM())
Torok Edwin3f142c32009-02-01 18:15:56 +00001960 // Kernel mode asks for SSE to be disabled, so don't push them
1961 // on the stack.
1962 TotalNumXMMRegs = 0;
Bill Wendlingf9abd7e2009-03-11 22:30:01 +00001963
Anton Korobeynikove7beda12010-10-03 22:52:07 +00001964 if (IsWin64) {
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00001965 const TargetFrameLowering &TFI = *getTargetMachine().getFrameLowering();
Cameron Esfahaniec37b002010-10-08 19:24:18 +00001966 // Get to the caller-allocated home save location. Add 8 to account
1967 // for the return address.
1968 int HomeOffset = TFI.getOffsetOfLocalArea() + 8;
Anton Korobeynikove7beda12010-10-03 22:52:07 +00001969 FuncInfo->setRegSaveFrameIndex(
Cameron Esfahaniec37b002010-10-08 19:24:18 +00001970 MFI->CreateFixedObject(1, NumIntRegs * 8 + HomeOffset, false));
NAKAMURA Takumi3ca99432011-03-09 11:33:15 +00001971 // Fixup to set vararg frame on shadow area (4 x i64).
1972 if (NumIntRegs < 4)
1973 FuncInfo->setVarArgsFrameIndex(FuncInfo->getRegSaveFrameIndex());
Anton Korobeynikove7beda12010-10-03 22:52:07 +00001974 } else {
1975 // For X86-64, if there are vararg parameters that are passed via
Chad Rosier30450e82011-12-22 22:35:21 +00001976 // registers, then we must store them to their spots on the stack so
1977 // they may be loaded by deferencing the result of va_next.
Anton Korobeynikove7beda12010-10-03 22:52:07 +00001978 FuncInfo->setVarArgsGPOffset(NumIntRegs * 8);
1979 FuncInfo->setVarArgsFPOffset(TotalNumIntRegs * 8 + NumXMMRegs * 16);
1980 FuncInfo->setRegSaveFrameIndex(
1981 MFI->CreateStackObject(TotalNumIntRegs * 8 + TotalNumXMMRegs * 16, 16,
Dan Gohman1e93df62010-04-17 14:41:14 +00001982 false));
Anton Korobeynikove7beda12010-10-03 22:52:07 +00001983 }
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001984
Gordon Henriksen86737662008-01-05 16:56:59 +00001985 // Store the integer parameter registers.
Dan Gohman475871a2008-07-27 21:46:04 +00001986 SmallVector<SDValue, 8> MemOps;
Dan Gohman1e93df62010-04-17 14:41:14 +00001987 SDValue RSFIN = DAG.getFrameIndex(FuncInfo->getRegSaveFrameIndex(),
1988 getPointerTy());
1989 unsigned Offset = FuncInfo->getVarArgsGPOffset();
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00001990 for (; NumIntRegs != TotalNumIntRegs; ++NumIntRegs) {
Dan Gohmand6708ea2009-08-15 01:38:56 +00001991 SDValue FIN = DAG.getNode(ISD::ADD, dl, getPointerTy(), RSFIN,
1992 DAG.getIntPtrConstant(Offset));
Bob Wilson998e1252009-04-20 18:36:57 +00001993 unsigned VReg = MF.addLiveIn(GPR64ArgRegs[NumIntRegs],
Devang Patel68e6bee2011-02-21 23:21:26 +00001994 X86::GR64RegisterClass);
Owen Anderson825b72b2009-08-11 20:47:22 +00001995 SDValue Val = DAG.getCopyFromReg(Chain, dl, VReg, MVT::i64);
Dan Gohman475871a2008-07-27 21:46:04 +00001996 SDValue Store =
Dale Johannesenace16102009-02-03 19:33:06 +00001997 DAG.getStore(Val.getValue(1), dl, Val, FIN,
Chris Lattnere8639032010-09-21 06:22:23 +00001998 MachinePointerInfo::getFixedStack(
1999 FuncInfo->getRegSaveFrameIndex(), Offset),
2000 false, false, 0);
Gordon Henriksen86737662008-01-05 16:56:59 +00002001 MemOps.push_back(Store);
Dan Gohmand6708ea2009-08-15 01:38:56 +00002002 Offset += 8;
Gordon Henriksen86737662008-01-05 16:56:59 +00002003 }
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00002004
Dan Gohmanface41a2009-08-16 21:24:25 +00002005 if (TotalNumXMMRegs != 0 && NumXMMRegs != TotalNumXMMRegs) {
2006 // Now store the XMM (fp + vector) parameter registers.
2007 SmallVector<SDValue, 11> SaveXMMOps;
2008 SaveXMMOps.push_back(Chain);
Dan Gohmand6708ea2009-08-15 01:38:56 +00002009
Devang Patel68e6bee2011-02-21 23:21:26 +00002010 unsigned AL = MF.addLiveIn(X86::AL, X86::GR8RegisterClass);
Dan Gohmanface41a2009-08-16 21:24:25 +00002011 SDValue ALVal = DAG.getCopyFromReg(DAG.getEntryNode(), dl, AL, MVT::i8);
2012 SaveXMMOps.push_back(ALVal);
Dan Gohmand6708ea2009-08-15 01:38:56 +00002013
Dan Gohman1e93df62010-04-17 14:41:14 +00002014 SaveXMMOps.push_back(DAG.getIntPtrConstant(
2015 FuncInfo->getRegSaveFrameIndex()));
2016 SaveXMMOps.push_back(DAG.getIntPtrConstant(
2017 FuncInfo->getVarArgsFPOffset()));
Dan Gohmand6708ea2009-08-15 01:38:56 +00002018
Dan Gohmanface41a2009-08-16 21:24:25 +00002019 for (; NumXMMRegs != TotalNumXMMRegs; ++NumXMMRegs) {
Anton Korobeynikove7beda12010-10-03 22:52:07 +00002020 unsigned VReg = MF.addLiveIn(XMMArgRegs64Bit[NumXMMRegs],
Devang Patel68e6bee2011-02-21 23:21:26 +00002021 X86::VR128RegisterClass);
Dan Gohmanface41a2009-08-16 21:24:25 +00002022 SDValue Val = DAG.getCopyFromReg(Chain, dl, VReg, MVT::v4f32);
2023 SaveXMMOps.push_back(Val);
2024 }
2025 MemOps.push_back(DAG.getNode(X86ISD::VASTART_SAVE_XMM_REGS, dl,
2026 MVT::Other,
2027 &SaveXMMOps[0], SaveXMMOps.size()));
Gordon Henriksen86737662008-01-05 16:56:59 +00002028 }
Dan Gohmanface41a2009-08-16 21:24:25 +00002029
2030 if (!MemOps.empty())
2031 Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other,
2032 &MemOps[0], MemOps.size());
Gordon Henriksen86737662008-01-05 16:56:59 +00002033 }
Gordon Henriksenae636f82008-01-03 16:47:34 +00002034 }
Scott Michelfdc40a02009-02-17 22:15:04 +00002035
Gordon Henriksen86737662008-01-05 16:56:59 +00002036 // Some CCs need callee pop.
Nick Lewycky8a8d4792011-12-02 22:16:29 +00002037 if (X86::isCalleePop(CallConv, Is64Bit, isVarArg,
2038 MF.getTarget().Options.GuaranteedTailCallOpt)) {
Dan Gohman1e93df62010-04-17 14:41:14 +00002039 FuncInfo->setBytesToPopOnReturn(StackSize); // Callee pops everything.
Anton Korobeynikovb10308e2007-01-28 13:31:35 +00002040 } else {
Dan Gohman1e93df62010-04-17 14:41:14 +00002041 FuncInfo->setBytesToPopOnReturn(0); // Callee pops nothing.
Chris Lattnerf39f7712007-02-28 05:46:49 +00002042 // If this is an sret function, the return should pop the hidden pointer.
Chris Lattner29689432010-03-11 00:22:57 +00002043 if (!Is64Bit && !IsTailCallConvention(CallConv) && ArgsAreStructReturn(Ins))
Dan Gohman1e93df62010-04-17 14:41:14 +00002044 FuncInfo->setBytesToPopOnReturn(4);
Anton Korobeynikovb10308e2007-01-28 13:31:35 +00002045 }
Gordon Henriksenae636f82008-01-03 16:47:34 +00002046
Gordon Henriksen86737662008-01-05 16:56:59 +00002047 if (!Is64Bit) {
Dan Gohman1e93df62010-04-17 14:41:14 +00002048 // RegSaveFrameIndex is X86-64 only.
2049 FuncInfo->setRegSaveFrameIndex(0xAAAAAAA);
Anton Korobeynikovded05e32010-05-16 09:08:45 +00002050 if (CallConv == CallingConv::X86_FastCall ||
2051 CallConv == CallingConv::X86_ThisCall)
Dan Gohman1e93df62010-04-17 14:41:14 +00002052 // fastcc functions can't have varargs.
2053 FuncInfo->setVarArgsFrameIndex(0xAAAAAAA);
Gordon Henriksen86737662008-01-05 16:56:59 +00002054 }
Evan Cheng25caf632006-05-23 21:06:34 +00002055
Rafael Espindola76927d752011-08-30 19:39:58 +00002056 FuncInfo->setArgumentStackSize(StackSize);
2057
Dan Gohman98ca4f22009-08-05 01:29:28 +00002058 return Chain;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002059}
2060
Dan Gohman475871a2008-07-27 21:46:04 +00002061SDValue
Dan Gohman98ca4f22009-08-05 01:29:28 +00002062X86TargetLowering::LowerMemOpCallTo(SDValue Chain,
2063 SDValue StackPtr, SDValue Arg,
2064 DebugLoc dl, SelectionDAG &DAG,
Evan Chengdffbd832008-01-10 00:09:10 +00002065 const CCValAssign &VA,
Dan Gohmand858e902010-04-17 15:26:15 +00002066 ISD::ArgFlagsTy Flags) const {
NAKAMURA Takumi3f4be4f2011-02-05 15:11:32 +00002067 unsigned LocMemOffset = VA.getLocMemOffset();
Dan Gohman475871a2008-07-27 21:46:04 +00002068 SDValue PtrOff = DAG.getIntPtrConstant(LocMemOffset);
Dale Johannesenace16102009-02-03 19:33:06 +00002069 PtrOff = DAG.getNode(ISD::ADD, dl, getPointerTy(), StackPtr, PtrOff);
Chris Lattnerfc448ff2010-09-21 18:51:21 +00002070 if (Flags.isByVal())
Dale Johannesendd64c412009-02-04 00:33:20 +00002071 return CreateCopyOfByValArgument(Arg, PtrOff, Chain, Flags, DAG, dl);
Chris Lattnerfc448ff2010-09-21 18:51:21 +00002072
2073 return DAG.getStore(Chain, dl, Arg, PtrOff,
2074 MachinePointerInfo::getStack(LocMemOffset),
David Greene67c9d422010-02-15 16:53:33 +00002075 false, false, 0);
Evan Chengdffbd832008-01-10 00:09:10 +00002076}
2077
Bill Wendling64e87322009-01-16 19:25:27 +00002078/// EmitTailCallLoadRetAddr - Emit a load of return address if tail call
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002079/// optimization is performed and it is required.
Scott Michelfdc40a02009-02-17 22:15:04 +00002080SDValue
2081X86TargetLowering::EmitTailCallLoadRetAddr(SelectionDAG &DAG,
Evan Chengddc419c2010-01-26 19:04:47 +00002082 SDValue &OutRetAddr, SDValue Chain,
2083 bool IsTailCall, bool Is64Bit,
Dan Gohmand858e902010-04-17 15:26:15 +00002084 int FPDiff, DebugLoc dl) const {
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002085 // Adjust the Return address stack slot.
Owen Andersone50ed302009-08-10 22:56:29 +00002086 EVT VT = getPointerTy();
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002087 OutRetAddr = getReturnAddressFrameIndex(DAG);
Bill Wendling64e87322009-01-16 19:25:27 +00002088
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002089 // Load the "old" Return address.
Chris Lattner51abfe42010-09-21 06:02:19 +00002090 OutRetAddr = DAG.getLoad(VT, dl, Chain, OutRetAddr, MachinePointerInfo(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00002091 false, false, false, 0);
Gabor Greifba36cb52008-08-28 21:40:38 +00002092 return SDValue(OutRetAddr.getNode(), 1);
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002093}
2094
Chris Lattner7a2bdde2011-04-15 05:18:47 +00002095/// EmitTailCallStoreRetAddr - Emit a store of the return address if tail call
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002096/// optimization is performed and it is required (FPDiff!=0).
Scott Michelfdc40a02009-02-17 22:15:04 +00002097static SDValue
2098EmitTailCallStoreRetAddr(SelectionDAG & DAG, MachineFunction &MF,
Dan Gohman475871a2008-07-27 21:46:04 +00002099 SDValue Chain, SDValue RetAddrFrIdx,
Dale Johannesenace16102009-02-03 19:33:06 +00002100 bool Is64Bit, int FPDiff, DebugLoc dl) {
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002101 // Store the return address to the appropriate stack slot.
2102 if (!FPDiff) return Chain;
2103 // Calculate the new stack slot for the return address.
2104 int SlotSize = Is64Bit ? 8 : 4;
Scott Michelfdc40a02009-02-17 22:15:04 +00002105 int NewReturnAddrFI =
Evan Chenged2ae132010-07-03 00:40:23 +00002106 MF.getFrameInfo()->CreateFixedObject(SlotSize, FPDiff-SlotSize, false);
Owen Anderson825b72b2009-08-11 20:47:22 +00002107 EVT VT = Is64Bit ? MVT::i64 : MVT::i32;
Dan Gohman475871a2008-07-27 21:46:04 +00002108 SDValue NewRetAddrFrIdx = DAG.getFrameIndex(NewReturnAddrFI, VT);
Scott Michelfdc40a02009-02-17 22:15:04 +00002109 Chain = DAG.getStore(Chain, dl, RetAddrFrIdx, NewRetAddrFrIdx,
Chris Lattnere8639032010-09-21 06:22:23 +00002110 MachinePointerInfo::getFixedStack(NewReturnAddrFI),
David Greene67c9d422010-02-15 16:53:33 +00002111 false, false, 0);
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002112 return Chain;
2113}
2114
Dan Gohman98ca4f22009-08-05 01:29:28 +00002115SDValue
Evan Cheng022d9e12010-02-02 23:55:14 +00002116X86TargetLowering::LowerCall(SDValue Chain, SDValue Callee,
Sandeep Patel65c3c8f2009-09-02 08:44:58 +00002117 CallingConv::ID CallConv, bool isVarArg,
Evan Cheng0c439eb2010-01-27 00:07:07 +00002118 bool &isTailCall,
Dan Gohman98ca4f22009-08-05 01:29:28 +00002119 const SmallVectorImpl<ISD::OutputArg> &Outs,
Dan Gohmanc9403652010-07-07 15:54:55 +00002120 const SmallVectorImpl<SDValue> &OutVals,
Dan Gohman98ca4f22009-08-05 01:29:28 +00002121 const SmallVectorImpl<ISD::InputArg> &Ins,
2122 DebugLoc dl, SelectionDAG &DAG,
Dan Gohmand858e902010-04-17 15:26:15 +00002123 SmallVectorImpl<SDValue> &InVals) const {
Dan Gohman98ca4f22009-08-05 01:29:28 +00002124 MachineFunction &MF = DAG.getMachineFunction();
2125 bool Is64Bit = Subtarget->is64Bit();
NAKAMURA Takumifb840c92011-02-05 15:11:13 +00002126 bool IsWin64 = Subtarget->isTargetWin64();
Dan Gohman98ca4f22009-08-05 01:29:28 +00002127 bool IsStructRet = CallIsStructReturn(Outs);
Evan Cheng5f941932010-02-05 02:21:12 +00002128 bool IsSibcall = false;
Dan Gohman98ca4f22009-08-05 01:29:28 +00002129
Evan Cheng5f941932010-02-05 02:21:12 +00002130 if (isTailCall) {
Evan Cheng0c439eb2010-01-27 00:07:07 +00002131 // Check if it's really possible to do a tail call.
Evan Chenga375d472010-03-15 18:54:48 +00002132 isTailCall = IsEligibleForTailCallOptimization(Callee, CallConv,
2133 isVarArg, IsStructRet, MF.getFunction()->hasStructRetAttr(),
Dan Gohmanc9403652010-07-07 15:54:55 +00002134 Outs, OutVals, Ins, DAG);
Evan Chengf22f9b32010-02-06 03:28:46 +00002135
2136 // Sibcalls are automatically detected tailcalls which do not require
2137 // ABI changes.
Nick Lewycky8a8d4792011-12-02 22:16:29 +00002138 if (!MF.getTarget().Options.GuaranteedTailCallOpt && isTailCall)
Evan Cheng5f941932010-02-05 02:21:12 +00002139 IsSibcall = true;
Evan Chengf22f9b32010-02-06 03:28:46 +00002140
2141 if (isTailCall)
2142 ++NumTailCalls;
Evan Cheng5f941932010-02-05 02:21:12 +00002143 }
Evan Cheng0c439eb2010-01-27 00:07:07 +00002144
Chris Lattner29689432010-03-11 00:22:57 +00002145 assert(!(isVarArg && IsTailCallConvention(CallConv)) &&
2146 "Var args not supported with calling convention fastcc or ghc");
Gordon Henriksenae636f82008-01-03 16:47:34 +00002147
Chris Lattner638402b2007-02-28 07:00:42 +00002148 // Analyze operands of the call, assigning locations to each operand.
Chris Lattner423c5f42007-02-28 05:31:48 +00002149 SmallVector<CCValAssign, 16> ArgLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00002150 CCState CCInfo(CallConv, isVarArg, MF, getTargetMachine(),
Dan Gohman98ca4f22009-08-05 01:29:28 +00002151 ArgLocs, *DAG.getContext());
NAKAMURA Takumi3f4be4f2011-02-05 15:11:32 +00002152
2153 // Allocate shadow area for Win64
2154 if (IsWin64) {
2155 CCInfo.AllocateStack(32, 8);
2156 }
2157
Duncan Sands45907662010-10-31 13:21:44 +00002158 CCInfo.AnalyzeCallOperands(Outs, CC_X86);
Scott Michelfdc40a02009-02-17 22:15:04 +00002159
Chris Lattner423c5f42007-02-28 05:31:48 +00002160 // Get a count of how many bytes are to be pushed on the stack.
2161 unsigned NumBytes = CCInfo.getNextStackOffset();
Evan Chengf22f9b32010-02-06 03:28:46 +00002162 if (IsSibcall)
Evan Chengb2c92902010-02-02 02:22:50 +00002163 // This is a sibcall. The memory operands are available in caller's
2164 // own caller's stack.
2165 NumBytes = 0;
Nick Lewycky8a8d4792011-12-02 22:16:29 +00002166 else if (getTargetMachine().Options.GuaranteedTailCallOpt &&
2167 IsTailCallConvention(CallConv))
Evan Chengf22f9b32010-02-06 03:28:46 +00002168 NumBytes = GetAlignedArgumentStackSize(NumBytes, DAG);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002169
Gordon Henriksen86737662008-01-05 16:56:59 +00002170 int FPDiff = 0;
Evan Chengf22f9b32010-02-06 03:28:46 +00002171 if (isTailCall && !IsSibcall) {
Gordon Henriksen86737662008-01-05 16:56:59 +00002172 // Lower arguments at fp - stackoffset + fpdiff.
Scott Michelfdc40a02009-02-17 22:15:04 +00002173 unsigned NumBytesCallerPushed =
Gordon Henriksen86737662008-01-05 16:56:59 +00002174 MF.getInfo<X86MachineFunctionInfo>()->getBytesToPopOnReturn();
2175 FPDiff = NumBytesCallerPushed - NumBytes;
2176
2177 // Set the delta of movement of the returnaddr stackslot.
2178 // But only set if delta is greater than previous delta.
2179 if (FPDiff < (MF.getInfo<X86MachineFunctionInfo>()->getTCReturnAddrDelta()))
2180 MF.getInfo<X86MachineFunctionInfo>()->setTCReturnAddrDelta(FPDiff);
2181 }
2182
Evan Chengf22f9b32010-02-06 03:28:46 +00002183 if (!IsSibcall)
2184 Chain = DAG.getCALLSEQ_START(Chain, DAG.getIntPtrConstant(NumBytes, true));
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002185
Dan Gohman475871a2008-07-27 21:46:04 +00002186 SDValue RetAddrFrIdx;
Chris Lattner7a2bdde2011-04-15 05:18:47 +00002187 // Load return address for tail calls.
Evan Chengf22f9b32010-02-06 03:28:46 +00002188 if (isTailCall && FPDiff)
2189 Chain = EmitTailCallLoadRetAddr(DAG, RetAddrFrIdx, Chain, isTailCall,
2190 Is64Bit, FPDiff, dl);
Gordon Henriksen86737662008-01-05 16:56:59 +00002191
Dan Gohman475871a2008-07-27 21:46:04 +00002192 SmallVector<std::pair<unsigned, SDValue>, 8> RegsToPass;
2193 SmallVector<SDValue, 8> MemOpChains;
2194 SDValue StackPtr;
Chris Lattner423c5f42007-02-28 05:31:48 +00002195
Arnold Schwaighofer30e62c02008-04-30 09:16:33 +00002196 // Walk the register/memloc assignments, inserting copies/loads. In the case
2197 // of tail call optimization arguments are handle later.
Chris Lattner423c5f42007-02-28 05:31:48 +00002198 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
2199 CCValAssign &VA = ArgLocs[i];
Owen Andersone50ed302009-08-10 22:56:29 +00002200 EVT RegVT = VA.getLocVT();
Dan Gohmanc9403652010-07-07 15:54:55 +00002201 SDValue Arg = OutVals[i];
Dan Gohman98ca4f22009-08-05 01:29:28 +00002202 ISD::ArgFlagsTy Flags = Outs[i].Flags;
Dan Gohman095cc292008-09-13 01:54:27 +00002203 bool isByVal = Flags.isByVal();
Scott Michelfdc40a02009-02-17 22:15:04 +00002204
Chris Lattner423c5f42007-02-28 05:31:48 +00002205 // Promote the value if needed.
2206 switch (VA.getLocInfo()) {
Torok Edwinc23197a2009-07-14 16:55:14 +00002207 default: llvm_unreachable("Unknown loc info!");
Chris Lattner423c5f42007-02-28 05:31:48 +00002208 case CCValAssign::Full: break;
2209 case CCValAssign::SExt:
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +00002210 Arg = DAG.getNode(ISD::SIGN_EXTEND, dl, RegVT, Arg);
Chris Lattner423c5f42007-02-28 05:31:48 +00002211 break;
2212 case CCValAssign::ZExt:
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +00002213 Arg = DAG.getNode(ISD::ZERO_EXTEND, dl, RegVT, Arg);
Chris Lattner423c5f42007-02-28 05:31:48 +00002214 break;
2215 case CCValAssign::AExt:
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +00002216 if (RegVT.isVector() && RegVT.getSizeInBits() == 128) {
2217 // Special case: passing MMX values in XMM registers.
Wesley Peckbf17cfa2010-11-23 03:31:01 +00002218 Arg = DAG.getNode(ISD::BITCAST, dl, MVT::i64, Arg);
Owen Anderson825b72b2009-08-11 20:47:22 +00002219 Arg = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v2i64, Arg);
2220 Arg = getMOVL(DAG, dl, MVT::v2i64, DAG.getUNDEF(MVT::v2i64), Arg);
Anton Korobeynikov80cb8aa2009-08-03 08:13:24 +00002221 } else
2222 Arg = DAG.getNode(ISD::ANY_EXTEND, dl, RegVT, Arg);
2223 break;
2224 case CCValAssign::BCvt:
Wesley Peckbf17cfa2010-11-23 03:31:01 +00002225 Arg = DAG.getNode(ISD::BITCAST, dl, RegVT, Arg);
Chris Lattner423c5f42007-02-28 05:31:48 +00002226 break;
Anton Korobeynikov4ab15532009-08-03 08:13:56 +00002227 case CCValAssign::Indirect: {
2228 // Store the argument.
2229 SDValue SpillSlot = DAG.CreateStackTemporary(VA.getValVT());
Evan Chengff89dcb2009-10-18 18:16:27 +00002230 int FI = cast<FrameIndexSDNode>(SpillSlot)->getIndex();
Anton Korobeynikov4ab15532009-08-03 08:13:56 +00002231 Chain = DAG.getStore(Chain, dl, Arg, SpillSlot,
Chris Lattnere8639032010-09-21 06:22:23 +00002232 MachinePointerInfo::getFixedStack(FI),
David Greene67c9d422010-02-15 16:53:33 +00002233 false, false, 0);
Anton Korobeynikov4ab15532009-08-03 08:13:56 +00002234 Arg = SpillSlot;
2235 break;
2236 }
Evan Cheng6b5783d2006-05-25 18:56:34 +00002237 }
Scott Michelfdc40a02009-02-17 22:15:04 +00002238
Chris Lattner423c5f42007-02-28 05:31:48 +00002239 if (VA.isRegLoc()) {
Stuart Hastings2aa0f232011-05-26 04:09:49 +00002240 RegsToPass.push_back(std::make_pair(VA.getLocReg(), Arg));
2241 if (isVarArg && IsWin64) {
2242 // Win64 ABI requires argument XMM reg to be copied to the corresponding
2243 // shadow reg if callee is a varargs function.
2244 unsigned ShadowReg = 0;
2245 switch (VA.getLocReg()) {
2246 case X86::XMM0: ShadowReg = X86::RCX; break;
2247 case X86::XMM1: ShadowReg = X86::RDX; break;
2248 case X86::XMM2: ShadowReg = X86::R8; break;
2249 case X86::XMM3: ShadowReg = X86::R9; break;
Anton Korobeynikovc52bedb2010-08-27 14:43:06 +00002250 }
Stuart Hastings2aa0f232011-05-26 04:09:49 +00002251 if (ShadowReg)
2252 RegsToPass.push_back(std::make_pair(ShadowReg, Arg));
Anton Korobeynikovc52bedb2010-08-27 14:43:06 +00002253 }
Evan Chengf22f9b32010-02-06 03:28:46 +00002254 } else if (!IsSibcall && (!isTailCall || isByVal)) {
Evan Cheng5f941932010-02-05 02:21:12 +00002255 assert(VA.isMemLoc());
2256 if (StackPtr.getNode() == 0)
2257 StackPtr = DAG.getCopyFromReg(Chain, dl, X86StackPtr, getPointerTy());
2258 MemOpChains.push_back(LowerMemOpCallTo(Chain, StackPtr, Arg,
2259 dl, DAG, VA, Flags));
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002260 }
Stuart Hastings2aa0f232011-05-26 04:09:49 +00002261 }
Scott Michelfdc40a02009-02-17 22:15:04 +00002262
Evan Cheng32fe1032006-05-25 00:59:30 +00002263 if (!MemOpChains.empty())
Owen Anderson825b72b2009-08-11 20:47:22 +00002264 Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other,
Chris Lattnerbd564bf2006-08-08 02:23:42 +00002265 &MemOpChains[0], MemOpChains.size());
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002266
Evan Cheng347d5f72006-04-28 21:29:37 +00002267 // Build a sequence of copy-to-reg nodes chained together with token chain
2268 // and flag operands which copy the outgoing args into registers.
Dan Gohman475871a2008-07-27 21:46:04 +00002269 SDValue InFlag;
Arnold Schwaighofer30e62c02008-04-30 09:16:33 +00002270 // Tail call byval lowering might overwrite argument registers so in case of
2271 // tail call optimization the copies to registers are lowered later.
Dan Gohman98ca4f22009-08-05 01:29:28 +00002272 if (!isTailCall)
Arnold Schwaighofer30e62c02008-04-30 09:16:33 +00002273 for (unsigned i = 0, e = RegsToPass.size(); i != e; ++i) {
Scott Michelfdc40a02009-02-17 22:15:04 +00002274 Chain = DAG.getCopyToReg(Chain, dl, RegsToPass[i].first,
Dale Johannesendd64c412009-02-04 00:33:20 +00002275 RegsToPass[i].second, InFlag);
Arnold Schwaighofer30e62c02008-04-30 09:16:33 +00002276 InFlag = Chain.getValue(1);
2277 }
Gordon Henriksen86737662008-01-05 16:56:59 +00002278
Chris Lattner88e1fd52009-07-09 04:24:46 +00002279 if (Subtarget->isPICStyleGOT()) {
Chris Lattnerb133a0a2009-07-09 02:55:47 +00002280 // ELF / PIC requires GOT in the EBX register before function calls via PLT
2281 // GOT pointer.
Dan Gohman98ca4f22009-08-05 01:29:28 +00002282 if (!isTailCall) {
Chris Lattnerb133a0a2009-07-09 02:55:47 +00002283 Chain = DAG.getCopyToReg(Chain, dl, X86::EBX,
2284 DAG.getNode(X86ISD::GlobalBaseReg,
Chris Lattnerc7f3ace2010-04-02 20:16:16 +00002285 DebugLoc(), getPointerTy()),
Chris Lattnerb133a0a2009-07-09 02:55:47 +00002286 InFlag);
2287 InFlag = Chain.getValue(1);
2288 } else {
2289 // If we are tail calling and generating PIC/GOT style code load the
2290 // address of the callee into ECX. The value in ecx is used as target of
2291 // the tail jump. This is done to circumvent the ebx/callee-saved problem
2292 // for tail calls on PIC/GOT architectures. Normally we would just put the
2293 // address of GOT into ebx and then call target@PLT. But for tail calls
2294 // ebx would be restored (since ebx is callee saved) before jumping to the
2295 // target@PLT.
2296
2297 // Note: The actual moving to ECX is done further down.
2298 GlobalAddressSDNode *G = dyn_cast<GlobalAddressSDNode>(Callee);
2299 if (G && !G->getGlobal()->hasHiddenVisibility() &&
2300 !G->getGlobal()->hasProtectedVisibility())
2301 Callee = LowerGlobalAddress(Callee, DAG);
2302 else if (isa<ExternalSymbolSDNode>(Callee))
Chris Lattner15a380a2009-07-09 04:39:06 +00002303 Callee = LowerExternalSymbol(Callee, DAG);
Chris Lattnerb133a0a2009-07-09 02:55:47 +00002304 }
Anton Korobeynikov7f705592007-01-12 19:20:47 +00002305 }
Gordon Henriksenae636f82008-01-03 16:47:34 +00002306
NAKAMURA Takumifb840c92011-02-05 15:11:13 +00002307 if (Is64Bit && isVarArg && !IsWin64) {
Gordon Henriksen86737662008-01-05 16:56:59 +00002308 // From AMD64 ABI document:
2309 // For calls that may call functions that use varargs or stdargs
2310 // (prototype-less calls or calls to functions containing ellipsis (...) in
2311 // the declaration) %al is used as hidden argument to specify the number
2312 // of SSE registers used. The contents of %al do not need to match exactly
2313 // the number of registers, but must be an ubound on the number of SSE
2314 // registers used and is in the range 0 - 8 inclusive.
Anton Korobeynikov998a5bc2008-04-27 23:15:03 +00002315
Gordon Henriksen86737662008-01-05 16:56:59 +00002316 // Count the number of XMM registers allocated.
2317 static const unsigned XMMArgRegs[] = {
2318 X86::XMM0, X86::XMM1, X86::XMM2, X86::XMM3,
2319 X86::XMM4, X86::XMM5, X86::XMM6, X86::XMM7
2320 };
2321 unsigned NumXMMRegs = CCInfo.getFirstUnallocated(XMMArgRegs, 8);
Nate Begeman2ea8ee72010-12-10 00:26:57 +00002322 assert((Subtarget->hasXMM() || !NumXMMRegs)
Torok Edwin3f142c32009-02-01 18:15:56 +00002323 && "SSE registers cannot be used when SSE is disabled");
Scott Michelfdc40a02009-02-17 22:15:04 +00002324
Dale Johannesendd64c412009-02-04 00:33:20 +00002325 Chain = DAG.getCopyToReg(Chain, dl, X86::AL,
Owen Anderson825b72b2009-08-11 20:47:22 +00002326 DAG.getConstant(NumXMMRegs, MVT::i8), InFlag);
Gordon Henriksen86737662008-01-05 16:56:59 +00002327 InFlag = Chain.getValue(1);
2328 }
2329
Arnold Schwaighofer865c6812008-02-26 09:19:59 +00002330
Arnold Schwaighoferc8ab8cd2008-01-11 16:49:42 +00002331 // For tail calls lower the arguments to the 'real' stack slot.
Dan Gohman98ca4f22009-08-05 01:29:28 +00002332 if (isTailCall) {
2333 // Force all the incoming stack arguments to be loaded from the stack
2334 // before any new outgoing arguments are stored to the stack, because the
2335 // outgoing stack slots may alias the incoming argument stack slots, and
2336 // the alias isn't otherwise explicit. This is slightly more conservative
2337 // than necessary, because it means that each store effectively depends
2338 // on every argument instead of just those arguments it would clobber.
2339 SDValue ArgChain = DAG.getStackArgumentTokenFactor(Chain);
2340
Dan Gohman475871a2008-07-27 21:46:04 +00002341 SmallVector<SDValue, 8> MemOpChains2;
2342 SDValue FIN;
Gordon Henriksen86737662008-01-05 16:56:59 +00002343 int FI = 0;
Chris Lattner7a2bdde2011-04-15 05:18:47 +00002344 // Do not flag preceding copytoreg stuff together with the following stuff.
Dan Gohman475871a2008-07-27 21:46:04 +00002345 InFlag = SDValue();
Nick Lewycky8a8d4792011-12-02 22:16:29 +00002346 if (getTargetMachine().Options.GuaranteedTailCallOpt) {
Evan Chengb2c92902010-02-02 02:22:50 +00002347 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
2348 CCValAssign &VA = ArgLocs[i];
2349 if (VA.isRegLoc())
2350 continue;
Arnold Schwaighoferc8ab8cd2008-01-11 16:49:42 +00002351 assert(VA.isMemLoc());
Dan Gohmanc9403652010-07-07 15:54:55 +00002352 SDValue Arg = OutVals[i];
Dan Gohman98ca4f22009-08-05 01:29:28 +00002353 ISD::ArgFlagsTy Flags = Outs[i].Flags;
Gordon Henriksen86737662008-01-05 16:56:59 +00002354 // Create frame index.
2355 int32_t Offset = VA.getLocMemOffset()+FPDiff;
Duncan Sands83ec4b62008-06-06 12:08:01 +00002356 uint32_t OpSize = (VA.getLocVT().getSizeInBits()+7)/8;
Evan Chenged2ae132010-07-03 00:40:23 +00002357 FI = MF.getFrameInfo()->CreateFixedObject(OpSize, Offset, true);
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002358 FIN = DAG.getFrameIndex(FI, getPointerTy());
Arnold Schwaighoferc8ab8cd2008-01-11 16:49:42 +00002359
Duncan Sands276dcbd2008-03-21 09:14:45 +00002360 if (Flags.isByVal()) {
Evan Cheng8e5712b2008-01-12 01:08:07 +00002361 // Copy relative to framepointer.
Dan Gohman475871a2008-07-27 21:46:04 +00002362 SDValue Source = DAG.getIntPtrConstant(VA.getLocMemOffset());
Gabor Greifba36cb52008-08-28 21:40:38 +00002363 if (StackPtr.getNode() == 0)
Scott Michelfdc40a02009-02-17 22:15:04 +00002364 StackPtr = DAG.getCopyFromReg(Chain, dl, X86StackPtr,
Dale Johannesendd64c412009-02-04 00:33:20 +00002365 getPointerTy());
Dale Johannesenace16102009-02-03 19:33:06 +00002366 Source = DAG.getNode(ISD::ADD, dl, getPointerTy(), StackPtr, Source);
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002367
Dan Gohman98ca4f22009-08-05 01:29:28 +00002368 MemOpChains2.push_back(CreateCopyOfByValArgument(Source, FIN,
2369 ArgChain,
Dale Johannesendd64c412009-02-04 00:33:20 +00002370 Flags, DAG, dl));
Gordon Henriksen86737662008-01-05 16:56:59 +00002371 } else {
Evan Cheng8e5712b2008-01-12 01:08:07 +00002372 // Store relative to framepointer.
Dan Gohman69de1932008-02-06 22:27:42 +00002373 MemOpChains2.push_back(
Dan Gohman98ca4f22009-08-05 01:29:28 +00002374 DAG.getStore(ArgChain, dl, Arg, FIN,
Chris Lattnere8639032010-09-21 06:22:23 +00002375 MachinePointerInfo::getFixedStack(FI),
David Greene67c9d422010-02-15 16:53:33 +00002376 false, false, 0));
Scott Michelfdc40a02009-02-17 22:15:04 +00002377 }
Gordon Henriksen86737662008-01-05 16:56:59 +00002378 }
2379 }
2380
2381 if (!MemOpChains2.empty())
Owen Anderson825b72b2009-08-11 20:47:22 +00002382 Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other,
Arnold Schwaighofer719eb022008-01-11 14:34:56 +00002383 &MemOpChains2[0], MemOpChains2.size());
Gordon Henriksen86737662008-01-05 16:56:59 +00002384
Arnold Schwaighofer30e62c02008-04-30 09:16:33 +00002385 // Copy arguments to their registers.
2386 for (unsigned i = 0, e = RegsToPass.size(); i != e; ++i) {
Scott Michelfdc40a02009-02-17 22:15:04 +00002387 Chain = DAG.getCopyToReg(Chain, dl, RegsToPass[i].first,
Dale Johannesendd64c412009-02-04 00:33:20 +00002388 RegsToPass[i].second, InFlag);
Arnold Schwaighofer30e62c02008-04-30 09:16:33 +00002389 InFlag = Chain.getValue(1);
2390 }
Dan Gohman475871a2008-07-27 21:46:04 +00002391 InFlag =SDValue();
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002392
Gordon Henriksen86737662008-01-05 16:56:59 +00002393 // Store the return address to the appropriate stack slot.
Arnold Schwaighofer4b5324a2008-04-12 18:11:06 +00002394 Chain = EmitTailCallStoreRetAddr(DAG, MF, Chain, RetAddrFrIdx, Is64Bit,
Dale Johannesenace16102009-02-03 19:33:06 +00002395 FPDiff, dl);
Gordon Henriksen86737662008-01-05 16:56:59 +00002396 }
2397
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +00002398 if (getTargetMachine().getCodeModel() == CodeModel::Large) {
2399 assert(Is64Bit && "Large code model is only legal in 64-bit mode.");
2400 // In the 64-bit large code model, we have to make all calls
2401 // through a register, since the call instruction's 32-bit
2402 // pc-relative offset may not be large enough to hold the whole
2403 // address.
2404 } else if (GlobalAddressSDNode *G = dyn_cast<GlobalAddressSDNode>(Callee)) {
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +00002405 // If the callee is a GlobalAddress node (quite common, every direct call
2406 // is) turn it into a TargetGlobalAddress node so that legalize doesn't hack
2407 // it.
2408
Anton Korobeynikov2b2bc682006-12-22 22:29:05 +00002409 // We should use extra load for direct calls to dllimported functions in
2410 // non-JIT mode.
Dan Gohman46510a72010-04-15 01:51:59 +00002411 const GlobalValue *GV = G->getGlobal();
Chris Lattner754b7652009-07-10 05:48:03 +00002412 if (!GV->hasDLLImportLinkage()) {
Chris Lattner48a7d022009-07-09 05:02:21 +00002413 unsigned char OpFlags = 0;
John McCall3a3465b2011-06-15 20:36:13 +00002414 bool ExtraLoad = false;
2415 unsigned WrapperKind = ISD::DELETED_NODE;
Eric Christopherfd179292009-08-27 18:07:15 +00002416
Chris Lattner48a7d022009-07-09 05:02:21 +00002417 // On ELF targets, in both X86-64 and X86-32 mode, direct calls to
2418 // external symbols most go through the PLT in PIC mode. If the symbol
2419 // has hidden or protected visibility, or if it is static or local, then
2420 // we don't need to use the PLT - we can directly call it.
2421 if (Subtarget->isTargetELF() &&
2422 getTargetMachine().getRelocationModel() == Reloc::PIC_ &&
Chris Lattner74e726e2009-07-09 05:27:35 +00002423 GV->hasDefaultVisibility() && !GV->hasLocalLinkage()) {
Chris Lattner48a7d022009-07-09 05:02:21 +00002424 OpFlags = X86II::MO_PLT;
Chris Lattner3b67e9b2009-07-10 20:47:30 +00002425 } else if (Subtarget->isPICStyleStubAny() &&
Chris Lattner80945782010-09-27 06:34:01 +00002426 (GV->isDeclaration() || GV->isWeakForLinker()) &&
Daniel Dunbar558692f2011-04-20 00:14:25 +00002427 (!Subtarget->getTargetTriple().isMacOSX() ||
2428 Subtarget->getTargetTriple().isMacOSXVersionLT(10, 5))) {
Chris Lattner74e726e2009-07-09 05:27:35 +00002429 // PC-relative references to external symbols should go through $stub,
2430 // unless we're building with the leopard linker or later, which
2431 // automatically synthesizes these stubs.
2432 OpFlags = X86II::MO_DARWIN_STUB;
John McCall3a3465b2011-06-15 20:36:13 +00002433 } else if (Subtarget->isPICStyleRIPRel() &&
2434 isa<Function>(GV) &&
2435 cast<Function>(GV)->hasFnAttr(Attribute::NonLazyBind)) {
2436 // If the function is marked as non-lazy, generate an indirect call
2437 // which loads from the GOT directly. This avoids runtime overhead
2438 // at the cost of eager binding (and one extra byte of encoding).
2439 OpFlags = X86II::MO_GOTPCREL;
2440 WrapperKind = X86ISD::WrapperRIP;
2441 ExtraLoad = true;
Chris Lattner74e726e2009-07-09 05:27:35 +00002442 }
Chris Lattner48a7d022009-07-09 05:02:21 +00002443
Devang Patel0d881da2010-07-06 22:08:15 +00002444 Callee = DAG.getTargetGlobalAddress(GV, dl, getPointerTy(),
Chris Lattner48a7d022009-07-09 05:02:21 +00002445 G->getOffset(), OpFlags);
John McCall3a3465b2011-06-15 20:36:13 +00002446
2447 // Add a wrapper if needed.
2448 if (WrapperKind != ISD::DELETED_NODE)
2449 Callee = DAG.getNode(X86ISD::WrapperRIP, dl, getPointerTy(), Callee);
2450 // Add extra indirection if needed.
2451 if (ExtraLoad)
2452 Callee = DAG.getLoad(getPointerTy(), dl, DAG.getEntryNode(), Callee,
2453 MachinePointerInfo::getGOT(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00002454 false, false, false, 0);
Chris Lattner48a7d022009-07-09 05:02:21 +00002455 }
Bill Wendling056292f2008-09-16 21:48:12 +00002456 } else if (ExternalSymbolSDNode *S = dyn_cast<ExternalSymbolSDNode>(Callee)) {
Chris Lattner48a7d022009-07-09 05:02:21 +00002457 unsigned char OpFlags = 0;
2458
Evan Cheng1bf891a2010-12-01 22:59:46 +00002459 // On ELF targets, in either X86-64 or X86-32 mode, direct calls to
2460 // external symbols should go through the PLT.
2461 if (Subtarget->isTargetELF() &&
2462 getTargetMachine().getRelocationModel() == Reloc::PIC_) {
2463 OpFlags = X86II::MO_PLT;
2464 } else if (Subtarget->isPICStyleStubAny() &&
Daniel Dunbar558692f2011-04-20 00:14:25 +00002465 (!Subtarget->getTargetTriple().isMacOSX() ||
2466 Subtarget->getTargetTriple().isMacOSXVersionLT(10, 5))) {
Evan Cheng1bf891a2010-12-01 22:59:46 +00002467 // PC-relative references to external symbols should go through $stub,
2468 // unless we're building with the leopard linker or later, which
2469 // automatically synthesizes these stubs.
2470 OpFlags = X86II::MO_DARWIN_STUB;
Chris Lattner74e726e2009-07-09 05:27:35 +00002471 }
Eric Christopherfd179292009-08-27 18:07:15 +00002472
Chris Lattner48a7d022009-07-09 05:02:21 +00002473 Callee = DAG.getTargetExternalSymbol(S->getSymbol(), getPointerTy(),
2474 OpFlags);
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +00002475 }
2476
Chris Lattnerd96d0722007-02-25 06:40:16 +00002477 // Returns a chain & a flag for retval copy to use.
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +00002478 SDVTList NodeTys = DAG.getVTList(MVT::Other, MVT::Glue);
Dan Gohman475871a2008-07-27 21:46:04 +00002479 SmallVector<SDValue, 8> Ops;
Gordon Henriksen86737662008-01-05 16:56:59 +00002480
Evan Chengf22f9b32010-02-06 03:28:46 +00002481 if (!IsSibcall && isTailCall) {
Dale Johannesene8d72302009-02-06 23:05:02 +00002482 Chain = DAG.getCALLSEQ_END(Chain, DAG.getIntPtrConstant(NumBytes, true),
2483 DAG.getIntPtrConstant(0, true), InFlag);
Gordon Henriksen86737662008-01-05 16:56:59 +00002484 InFlag = Chain.getValue(1);
Gordon Henriksen86737662008-01-05 16:56:59 +00002485 }
Scott Michelfdc40a02009-02-17 22:15:04 +00002486
Nate Begeman4c5dcf52006-02-17 00:03:04 +00002487 Ops.push_back(Chain);
2488 Ops.push_back(Callee);
Evan Chengb69d1132006-06-14 18:17:40 +00002489
Dan Gohman98ca4f22009-08-05 01:29:28 +00002490 if (isTailCall)
Owen Anderson825b72b2009-08-11 20:47:22 +00002491 Ops.push_back(DAG.getConstant(FPDiff, MVT::i32));
Evan Chengf4684712007-02-21 21:18:14 +00002492
Gordon Henriksen86737662008-01-05 16:56:59 +00002493 // Add argument registers to the end of the list so that they are known live
2494 // into the call.
Evan Cheng9b449442008-01-07 23:08:23 +00002495 for (unsigned i = 0, e = RegsToPass.size(); i != e; ++i)
2496 Ops.push_back(DAG.getRegister(RegsToPass[i].first,
2497 RegsToPass[i].second.getValueType()));
Scott Michelfdc40a02009-02-17 22:15:04 +00002498
Evan Cheng586ccac2008-03-18 23:36:35 +00002499 // Add an implicit use GOT pointer in EBX.
Dan Gohman98ca4f22009-08-05 01:29:28 +00002500 if (!isTailCall && Subtarget->isPICStyleGOT())
Evan Cheng586ccac2008-03-18 23:36:35 +00002501 Ops.push_back(DAG.getRegister(X86::EBX, getPointerTy()));
2502
Anton Korobeynikov3a1e54a2010-08-17 21:06:07 +00002503 // Add an implicit use of AL for non-Windows x86 64-bit vararg functions.
NAKAMURA Takumifb840c92011-02-05 15:11:13 +00002504 if (Is64Bit && isVarArg && !IsWin64)
Owen Anderson825b72b2009-08-11 20:47:22 +00002505 Ops.push_back(DAG.getRegister(X86::AL, MVT::i8));
Evan Cheng586ccac2008-03-18 23:36:35 +00002506
Gabor Greifba36cb52008-08-28 21:40:38 +00002507 if (InFlag.getNode())
Evan Cheng347d5f72006-04-28 21:29:37 +00002508 Ops.push_back(InFlag);
Gordon Henriksenae636f82008-01-03 16:47:34 +00002509
Dan Gohman98ca4f22009-08-05 01:29:28 +00002510 if (isTailCall) {
Dale Johannesen88004c22010-06-05 00:30:45 +00002511 // We used to do:
2512 //// If this is the first return lowered for this function, add the regs
2513 //// to the liveout set for the function.
2514 // This isn't right, although it's probably harmless on x86; liveouts
2515 // should be computed from returns not tail calls. Consider a void
2516 // function making a tail call to a function returning int.
Dan Gohman98ca4f22009-08-05 01:29:28 +00002517 return DAG.getNode(X86ISD::TC_RETURN, dl,
2518 NodeTys, &Ops[0], Ops.size());
Gordon Henriksen86737662008-01-05 16:56:59 +00002519 }
2520
Dale Johannesenace16102009-02-03 19:33:06 +00002521 Chain = DAG.getNode(X86ISD::CALL, dl, NodeTys, &Ops[0], Ops.size());
Evan Cheng347d5f72006-04-28 21:29:37 +00002522 InFlag = Chain.getValue(1);
Evan Chengd90eb7f2006-01-05 00:27:02 +00002523
Chris Lattner2d297092006-05-23 18:50:38 +00002524 // Create the CALLSEQ_END node.
Gordon Henriksen86737662008-01-05 16:56:59 +00002525 unsigned NumBytesForCalleeToPush;
Nick Lewycky8a8d4792011-12-02 22:16:29 +00002526 if (X86::isCalleePop(CallConv, Is64Bit, isVarArg,
2527 getTargetMachine().Options.GuaranteedTailCallOpt))
Gordon Henriksen86737662008-01-05 16:56:59 +00002528 NumBytesForCalleeToPush = NumBytes; // Callee pops everything
Chris Lattner29689432010-03-11 00:22:57 +00002529 else if (!Is64Bit && !IsTailCallConvention(CallConv) && IsStructRet)
Dan Gohmanf451cb82010-02-10 16:03:48 +00002530 // If this is a call to a struct-return function, the callee
Anton Korobeynikovb10308e2007-01-28 13:31:35 +00002531 // pops the hidden struct pointer, so we have to push it back.
2532 // This is common for Darwin/X86, Linux & Mingw32 targets.
Gordon Henriksenae636f82008-01-03 16:47:34 +00002533 NumBytesForCalleeToPush = 4;
Gordon Henriksen86737662008-01-05 16:56:59 +00002534 else
Gordon Henriksenae636f82008-01-03 16:47:34 +00002535 NumBytesForCalleeToPush = 0; // Callee pops nothing.
Scott Michelfdc40a02009-02-17 22:15:04 +00002536
Gordon Henriksenae636f82008-01-03 16:47:34 +00002537 // Returns a flag for retval copy to use.
Evan Chengf22f9b32010-02-06 03:28:46 +00002538 if (!IsSibcall) {
2539 Chain = DAG.getCALLSEQ_END(Chain,
2540 DAG.getIntPtrConstant(NumBytes, true),
2541 DAG.getIntPtrConstant(NumBytesForCalleeToPush,
2542 true),
2543 InFlag);
2544 InFlag = Chain.getValue(1);
2545 }
Anton Korobeynikov12c49af2006-11-21 00:01:06 +00002546
Chris Lattner3085e152007-02-25 08:59:22 +00002547 // Handle result values, copying them out of physregs into vregs that we
2548 // return.
Dan Gohman98ca4f22009-08-05 01:29:28 +00002549 return LowerCallResult(Chain, InFlag, CallConv, isVarArg,
2550 Ins, dl, DAG, InVals);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002551}
2552
Evan Cheng25ab6902006-09-08 06:48:29 +00002553
2554//===----------------------------------------------------------------------===//
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00002555// Fast Calling Convention (tail call) implementation
2556//===----------------------------------------------------------------------===//
2557
2558// Like std call, callee cleans arguments, convention except that ECX is
2559// reserved for storing the tail called function address. Only 2 registers are
2560// free for argument passing (inreg). Tail call optimization is performed
2561// provided:
2562// * tailcallopt is enabled
2563// * caller/callee are fastcc
Arnold Schwaighofera2a4b472008-02-26 10:21:54 +00002564// On X86_64 architecture with GOT-style position independent code only local
2565// (within module) calls are supported at the moment.
Arnold Schwaighofer48abc5c2007-10-12 21:30:57 +00002566// To keep the stack aligned according to platform abi the function
2567// GetAlignedArgumentStackSize ensures that argument delta is always multiples
2568// of stack alignment. (Dynamic linkers need this - darwin's dyld for example)
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00002569// If a tail called function callee has more arguments than the caller the
2570// caller needs to make sure that there is room to move the RETADDR to. This is
Arnold Schwaighofer48abc5c2007-10-12 21:30:57 +00002571// achieved by reserving an area the size of the argument delta right after the
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00002572// original REtADDR, but before the saved framepointer or the spilled registers
2573// e.g. caller(arg1, arg2) calls callee(arg1, arg2,arg3,arg4)
2574// stack layout:
2575// arg1
2576// arg2
2577// RETADDR
Scott Michelfdc40a02009-02-17 22:15:04 +00002578// [ new RETADDR
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00002579// move area ]
2580// (possible EBP)
2581// ESI
2582// EDI
2583// local1 ..
2584
2585/// GetAlignedArgumentStackSize - Make the stack size align e.g 16n + 12 aligned
2586/// for a 16 byte align requirement.
Dan Gohmand858e902010-04-17 15:26:15 +00002587unsigned
2588X86TargetLowering::GetAlignedArgumentStackSize(unsigned StackSize,
2589 SelectionDAG& DAG) const {
Evan Chenge9ac9e62008-09-07 09:07:23 +00002590 MachineFunction &MF = DAG.getMachineFunction();
2591 const TargetMachine &TM = MF.getTarget();
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00002592 const TargetFrameLowering &TFI = *TM.getFrameLowering();
Evan Chenge9ac9e62008-09-07 09:07:23 +00002593 unsigned StackAlignment = TFI.getStackAlignment();
Scott Michelfdc40a02009-02-17 22:15:04 +00002594 uint64_t AlignMask = StackAlignment - 1;
Evan Chenge9ac9e62008-09-07 09:07:23 +00002595 int64_t Offset = StackSize;
Anton Korobeynikovbff66b02008-09-09 18:22:57 +00002596 uint64_t SlotSize = TD->getPointerSize();
Evan Chenge9ac9e62008-09-07 09:07:23 +00002597 if ( (Offset & AlignMask) <= (StackAlignment - SlotSize) ) {
2598 // Number smaller than 12 so just add the difference.
2599 Offset += ((StackAlignment - SlotSize) - (Offset & AlignMask));
2600 } else {
2601 // Mask out lower bits, add stackalignment once plus the 12 bytes.
Scott Michelfdc40a02009-02-17 22:15:04 +00002602 Offset = ((~AlignMask) & Offset) + StackAlignment +
Evan Chenge9ac9e62008-09-07 09:07:23 +00002603 (StackAlignment-SlotSize);
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00002604 }
Evan Chenge9ac9e62008-09-07 09:07:23 +00002605 return Offset;
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00002606}
2607
Evan Cheng5f941932010-02-05 02:21:12 +00002608/// MatchingStackOffset - Return true if the given stack call argument is
2609/// already available in the same position (relatively) of the caller's
2610/// incoming argument stack.
2611static
2612bool MatchingStackOffset(SDValue Arg, unsigned Offset, ISD::ArgFlagsTy Flags,
2613 MachineFrameInfo *MFI, const MachineRegisterInfo *MRI,
2614 const X86InstrInfo *TII) {
Evan Cheng4cae1332010-03-05 08:38:04 +00002615 unsigned Bytes = Arg.getValueType().getSizeInBits() / 8;
2616 int FI = INT_MAX;
Evan Cheng5f941932010-02-05 02:21:12 +00002617 if (Arg.getOpcode() == ISD::CopyFromReg) {
2618 unsigned VR = cast<RegisterSDNode>(Arg.getOperand(1))->getReg();
Jakob Stoklund Olesenc9df0252011-01-10 02:58:51 +00002619 if (!TargetRegisterInfo::isVirtualRegister(VR))
Evan Cheng5f941932010-02-05 02:21:12 +00002620 return false;
2621 MachineInstr *Def = MRI->getVRegDef(VR);
2622 if (!Def)
2623 return false;
2624 if (!Flags.isByVal()) {
2625 if (!TII->isLoadFromStackSlot(Def, FI))
2626 return false;
2627 } else {
2628 unsigned Opcode = Def->getOpcode();
2629 if ((Opcode == X86::LEA32r || Opcode == X86::LEA64r) &&
2630 Def->getOperand(1).isFI()) {
2631 FI = Def->getOperand(1).getIndex();
Evan Cheng4cae1332010-03-05 08:38:04 +00002632 Bytes = Flags.getByValSize();
Evan Cheng5f941932010-02-05 02:21:12 +00002633 } else
2634 return false;
2635 }
Evan Cheng4cae1332010-03-05 08:38:04 +00002636 } else if (LoadSDNode *Ld = dyn_cast<LoadSDNode>(Arg)) {
2637 if (Flags.isByVal())
2638 // ByVal argument is passed in as a pointer but it's now being
Evan Cheng10718492010-03-05 19:55:55 +00002639 // dereferenced. e.g.
Evan Cheng4cae1332010-03-05 08:38:04 +00002640 // define @foo(%struct.X* %A) {
2641 // tail call @bar(%struct.X* byval %A)
2642 // }
Evan Cheng5f941932010-02-05 02:21:12 +00002643 return false;
2644 SDValue Ptr = Ld->getBasePtr();
2645 FrameIndexSDNode *FINode = dyn_cast<FrameIndexSDNode>(Ptr);
2646 if (!FINode)
2647 return false;
2648 FI = FINode->getIndex();
Chad Rosierdf78fcd2011-06-25 02:04:56 +00002649 } else if (Arg.getOpcode() == ISD::FrameIndex && Flags.isByVal()) {
Chad Rosier14d71aa2011-06-25 18:51:28 +00002650 FrameIndexSDNode *FINode = cast<FrameIndexSDNode>(Arg);
Chad Rosierdf78fcd2011-06-25 02:04:56 +00002651 FI = FINode->getIndex();
2652 Bytes = Flags.getByValSize();
Evan Cheng4cae1332010-03-05 08:38:04 +00002653 } else
2654 return false;
Evan Cheng5f941932010-02-05 02:21:12 +00002655
Evan Cheng4cae1332010-03-05 08:38:04 +00002656 assert(FI != INT_MAX);
Evan Cheng5f941932010-02-05 02:21:12 +00002657 if (!MFI->isFixedObjectIndex(FI))
2658 return false;
Evan Cheng4cae1332010-03-05 08:38:04 +00002659 return Offset == MFI->getObjectOffset(FI) && Bytes == MFI->getObjectSize(FI);
Evan Cheng5f941932010-02-05 02:21:12 +00002660}
2661
Dan Gohman98ca4f22009-08-05 01:29:28 +00002662/// IsEligibleForTailCallOptimization - Check whether the call is eligible
2663/// for tail call optimization. Targets which want to do tail call
2664/// optimization should implement this function.
2665bool
2666X86TargetLowering::IsEligibleForTailCallOptimization(SDValue Callee,
Sandeep Patel65c3c8f2009-09-02 08:44:58 +00002667 CallingConv::ID CalleeCC,
Dan Gohman98ca4f22009-08-05 01:29:28 +00002668 bool isVarArg,
Evan Chenga375d472010-03-15 18:54:48 +00002669 bool isCalleeStructRet,
2670 bool isCallerStructRet,
Evan Chengb1712452010-01-27 06:25:16 +00002671 const SmallVectorImpl<ISD::OutputArg> &Outs,
Dan Gohmanc9403652010-07-07 15:54:55 +00002672 const SmallVectorImpl<SDValue> &OutVals,
Evan Chengb1712452010-01-27 06:25:16 +00002673 const SmallVectorImpl<ISD::InputArg> &Ins,
Dan Gohman98ca4f22009-08-05 01:29:28 +00002674 SelectionDAG& DAG) const {
Chris Lattner29689432010-03-11 00:22:57 +00002675 if (!IsTailCallConvention(CalleeCC) &&
Evan Chengb1712452010-01-27 06:25:16 +00002676 CalleeCC != CallingConv::C)
2677 return false;
2678
Evan Cheng7096ae42010-01-29 06:45:59 +00002679 // If -tailcallopt is specified, make fastcc functions tail-callable.
Evan Cheng2c12cb42010-03-26 16:26:03 +00002680 const MachineFunction &MF = DAG.getMachineFunction();
Evan Cheng7096ae42010-01-29 06:45:59 +00002681 const Function *CallerF = DAG.getMachineFunction().getFunction();
Evan Cheng13617962010-04-30 01:12:32 +00002682 CallingConv::ID CallerCC = CallerF->getCallingConv();
2683 bool CCMatch = CallerCC == CalleeCC;
2684
Nick Lewycky8a8d4792011-12-02 22:16:29 +00002685 if (getTargetMachine().Options.GuaranteedTailCallOpt) {
Evan Cheng13617962010-04-30 01:12:32 +00002686 if (IsTailCallConvention(CalleeCC) && CCMatch)
Evan Cheng843bd692010-01-31 06:44:49 +00002687 return true;
2688 return false;
2689 }
2690
Dale Johannesen2f05cc02010-05-28 23:24:28 +00002691 // Look for obvious safe cases to perform tail call optimization that do not
2692 // require ABI changes. This is what gcc calls sibcall.
Evan Chengb2c92902010-02-02 02:22:50 +00002693
Evan Cheng2c12cb42010-03-26 16:26:03 +00002694 // Can't do sibcall if stack needs to be dynamically re-aligned. PEI needs to
2695 // emit a special epilogue.
2696 if (RegInfo->needsStackRealignment(MF))
2697 return false;
2698
Evan Chenga375d472010-03-15 18:54:48 +00002699 // Also avoid sibcall optimization if either caller or callee uses struct
2700 // return semantics.
2701 if (isCalleeStructRet || isCallerStructRet)
2702 return false;
2703
Chad Rosier2416da32011-06-24 21:15:36 +00002704 // An stdcall caller is expected to clean up its arguments; the callee
2705 // isn't going to do that.
2706 if (!CCMatch && CallerCC==CallingConv::X86_StdCall)
2707 return false;
2708
Chad Rosier871f6642011-05-18 19:59:50 +00002709 // Do not sibcall optimize vararg calls unless all arguments are passed via
Chad Rosiera1660892011-05-20 00:59:28 +00002710 // registers.
Chad Rosier871f6642011-05-18 19:59:50 +00002711 if (isVarArg && !Outs.empty()) {
Chad Rosiera1660892011-05-20 00:59:28 +00002712
2713 // Optimizing for varargs on Win64 is unlikely to be safe without
2714 // additional testing.
2715 if (Subtarget->isTargetWin64())
2716 return false;
2717
Chad Rosier871f6642011-05-18 19:59:50 +00002718 SmallVector<CCValAssign, 16> ArgLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00002719 CCState CCInfo(CalleeCC, isVarArg, DAG.getMachineFunction(),
2720 getTargetMachine(), ArgLocs, *DAG.getContext());
Chad Rosier871f6642011-05-18 19:59:50 +00002721
Chad Rosier871f6642011-05-18 19:59:50 +00002722 CCInfo.AnalyzeCallOperands(Outs, CC_X86);
2723 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i)
2724 if (!ArgLocs[i].isRegLoc())
2725 return false;
2726 }
2727
Chad Rosier30450e82011-12-22 22:35:21 +00002728 // If the call result is in ST0 / ST1, it needs to be popped off the x87
2729 // stack. Therefore, if it's not used by the call it is not safe to optimize
2730 // this into a sibcall.
Evan Chengf5b9d6c2010-03-20 02:58:15 +00002731 bool Unused = false;
2732 for (unsigned i = 0, e = Ins.size(); i != e; ++i) {
2733 if (!Ins[i].Used) {
2734 Unused = true;
2735 break;
2736 }
2737 }
2738 if (Unused) {
2739 SmallVector<CCValAssign, 16> RVLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00002740 CCState CCInfo(CalleeCC, false, DAG.getMachineFunction(),
2741 getTargetMachine(), RVLocs, *DAG.getContext());
Evan Chengf5b9d6c2010-03-20 02:58:15 +00002742 CCInfo.AnalyzeCallResult(Ins, RetCC_X86);
Evan Cheng13617962010-04-30 01:12:32 +00002743 for (unsigned i = 0, e = RVLocs.size(); i != e; ++i) {
Evan Chengf5b9d6c2010-03-20 02:58:15 +00002744 CCValAssign &VA = RVLocs[i];
2745 if (VA.getLocReg() == X86::ST0 || VA.getLocReg() == X86::ST1)
2746 return false;
2747 }
2748 }
2749
Evan Cheng13617962010-04-30 01:12:32 +00002750 // If the calling conventions do not match, then we'd better make sure the
2751 // results are returned in the same way as what the caller expects.
2752 if (!CCMatch) {
2753 SmallVector<CCValAssign, 16> RVLocs1;
Eric Christopher471e4222011-06-08 23:55:35 +00002754 CCState CCInfo1(CalleeCC, false, DAG.getMachineFunction(),
2755 getTargetMachine(), RVLocs1, *DAG.getContext());
Evan Cheng13617962010-04-30 01:12:32 +00002756 CCInfo1.AnalyzeCallResult(Ins, RetCC_X86);
2757
2758 SmallVector<CCValAssign, 16> RVLocs2;
Eric Christopher471e4222011-06-08 23:55:35 +00002759 CCState CCInfo2(CallerCC, false, DAG.getMachineFunction(),
2760 getTargetMachine(), RVLocs2, *DAG.getContext());
Evan Cheng13617962010-04-30 01:12:32 +00002761 CCInfo2.AnalyzeCallResult(Ins, RetCC_X86);
2762
2763 if (RVLocs1.size() != RVLocs2.size())
2764 return false;
2765 for (unsigned i = 0, e = RVLocs1.size(); i != e; ++i) {
2766 if (RVLocs1[i].isRegLoc() != RVLocs2[i].isRegLoc())
2767 return false;
2768 if (RVLocs1[i].getLocInfo() != RVLocs2[i].getLocInfo())
2769 return false;
2770 if (RVLocs1[i].isRegLoc()) {
2771 if (RVLocs1[i].getLocReg() != RVLocs2[i].getLocReg())
2772 return false;
2773 } else {
2774 if (RVLocs1[i].getLocMemOffset() != RVLocs2[i].getLocMemOffset())
2775 return false;
2776 }
2777 }
2778 }
2779
Evan Chenga6bff982010-01-30 01:22:00 +00002780 // If the callee takes no arguments then go on to check the results of the
2781 // call.
2782 if (!Outs.empty()) {
2783 // Check if stack adjustment is needed. For now, do not do this if any
2784 // argument is passed on the stack.
2785 SmallVector<CCValAssign, 16> ArgLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00002786 CCState CCInfo(CalleeCC, isVarArg, DAG.getMachineFunction(),
2787 getTargetMachine(), ArgLocs, *DAG.getContext());
NAKAMURA Takumi3f4be4f2011-02-05 15:11:32 +00002788
2789 // Allocate shadow area for Win64
2790 if (Subtarget->isTargetWin64()) {
2791 CCInfo.AllocateStack(32, 8);
2792 }
2793
Duncan Sands45907662010-10-31 13:21:44 +00002794 CCInfo.AnalyzeCallOperands(Outs, CC_X86);
Stuart Hastings6db2c2f2011-05-17 16:59:46 +00002795 if (CCInfo.getNextStackOffset()) {
Evan Chengb2c92902010-02-02 02:22:50 +00002796 MachineFunction &MF = DAG.getMachineFunction();
2797 if (MF.getInfo<X86MachineFunctionInfo>()->getBytesToPopOnReturn())
2798 return false;
Evan Chengb2c92902010-02-02 02:22:50 +00002799
2800 // Check if the arguments are already laid out in the right way as
2801 // the caller's fixed stack objects.
2802 MachineFrameInfo *MFI = MF.getFrameInfo();
Evan Cheng5f941932010-02-05 02:21:12 +00002803 const MachineRegisterInfo *MRI = &MF.getRegInfo();
2804 const X86InstrInfo *TII =
2805 ((X86TargetMachine&)getTargetMachine()).getInstrInfo();
Evan Chengb2c92902010-02-02 02:22:50 +00002806 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
2807 CCValAssign &VA = ArgLocs[i];
Dan Gohmanc9403652010-07-07 15:54:55 +00002808 SDValue Arg = OutVals[i];
Evan Chengb2c92902010-02-02 02:22:50 +00002809 ISD::ArgFlagsTy Flags = Outs[i].Flags;
Evan Chengb2c92902010-02-02 02:22:50 +00002810 if (VA.getLocInfo() == CCValAssign::Indirect)
2811 return false;
2812 if (!VA.isRegLoc()) {
Evan Cheng5f941932010-02-05 02:21:12 +00002813 if (!MatchingStackOffset(Arg, VA.getLocMemOffset(), Flags,
2814 MFI, MRI, TII))
Evan Chengb2c92902010-02-02 02:22:50 +00002815 return false;
2816 }
2817 }
2818 }
Evan Cheng9c044672010-05-29 01:35:22 +00002819
2820 // If the tailcall address may be in a register, then make sure it's
2821 // possible to register allocate for it. In 32-bit, the call address can
2822 // only target EAX, EDX, or ECX since the tail call must be scheduled after
Evan Chengdedd9742010-07-14 06:44:01 +00002823 // callee-saved registers are restored. These happen to be the same
2824 // registers used to pass 'inreg' arguments so watch out for those.
2825 if (!Subtarget->is64Bit() &&
2826 !isa<GlobalAddressSDNode>(Callee) &&
Evan Cheng9c044672010-05-29 01:35:22 +00002827 !isa<ExternalSymbolSDNode>(Callee)) {
Evan Cheng9c044672010-05-29 01:35:22 +00002828 unsigned NumInRegs = 0;
2829 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
2830 CCValAssign &VA = ArgLocs[i];
Evan Chengdedd9742010-07-14 06:44:01 +00002831 if (!VA.isRegLoc())
2832 continue;
2833 unsigned Reg = VA.getLocReg();
2834 switch (Reg) {
2835 default: break;
2836 case X86::EAX: case X86::EDX: case X86::ECX:
2837 if (++NumInRegs == 3)
Evan Cheng9c044672010-05-29 01:35:22 +00002838 return false;
Evan Chengdedd9742010-07-14 06:44:01 +00002839 break;
Evan Cheng9c044672010-05-29 01:35:22 +00002840 }
2841 }
2842 }
Evan Chenga6bff982010-01-30 01:22:00 +00002843 }
Evan Chengb1712452010-01-27 06:25:16 +00002844
Evan Cheng86809cc2010-02-03 03:28:02 +00002845 return true;
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +00002846}
2847
Dan Gohman3df24e62008-09-03 23:12:08 +00002848FastISel *
Dan Gohmana4160c32010-07-07 16:29:44 +00002849X86TargetLowering::createFastISel(FunctionLoweringInfo &funcInfo) const {
2850 return X86::createFastISel(funcInfo);
Dan Gohmand9f3c482008-08-19 21:32:53 +00002851}
2852
2853
Chris Lattnerfcf1a3d2007-02-28 06:10:12 +00002854//===----------------------------------------------------------------------===//
2855// Other Lowering Hooks
2856//===----------------------------------------------------------------------===//
2857
Bruno Cardoso Lopese654b562010-09-01 00:51:36 +00002858static bool MayFoldLoad(SDValue Op) {
2859 return Op.hasOneUse() && ISD::isNormalLoad(Op.getNode());
2860}
2861
2862static bool MayFoldIntoStore(SDValue Op) {
2863 return Op.hasOneUse() && ISD::isNormalStore(*Op.getNode()->use_begin());
2864}
2865
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00002866static bool isTargetShuffle(unsigned Opcode) {
2867 switch(Opcode) {
2868 default: return false;
2869 case X86ISD::PSHUFD:
2870 case X86ISD::PSHUFHW:
2871 case X86ISD::PSHUFLW:
2872 case X86ISD::SHUFPD:
Bruno Cardoso Lopesaace0f22010-09-04 02:36:07 +00002873 case X86ISD::PALIGN:
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00002874 case X86ISD::SHUFPS:
2875 case X86ISD::MOVLHPS:
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00002876 case X86ISD::MOVLHPD:
Bruno Cardoso Lopes7ff30bb2010-08-31 21:38:49 +00002877 case X86ISD::MOVHLPS:
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00002878 case X86ISD::MOVLPS:
2879 case X86ISD::MOVLPD:
Bruno Cardoso Lopes5023ef22010-08-31 22:22:11 +00002880 case X86ISD::MOVSHDUP:
Bruno Cardoso Lopes013bb3d2010-08-31 22:35:05 +00002881 case X86ISD::MOVSLDUP:
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00002882 case X86ISD::MOVDDUP:
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00002883 case X86ISD::MOVSS:
2884 case X86ISD::MOVSD:
Craig Topper34671b82011-12-06 08:21:25 +00002885 case X86ISD::UNPCKL:
2886 case X86ISD::UNPCKH:
Craig Topper316cd2a2011-11-30 06:25:25 +00002887 case X86ISD::VPERMILP:
Craig Topperec24e612011-11-30 07:47:51 +00002888 case X86ISD::VPERM2X128:
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00002889 return true;
2890 }
2891 return false;
2892}
2893
Bruno Cardoso Lopes3efc0772010-08-23 20:41:02 +00002894static SDValue getTargetShuffleNode(unsigned Opc, DebugLoc dl, EVT VT,
Bruno Cardoso Lopes5023ef22010-08-31 22:22:11 +00002895 SDValue V1, SelectionDAG &DAG) {
2896 switch(Opc) {
2897 default: llvm_unreachable("Unknown x86 shuffle node");
2898 case X86ISD::MOVSHDUP:
Bruno Cardoso Lopes013bb3d2010-08-31 22:35:05 +00002899 case X86ISD::MOVSLDUP:
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00002900 case X86ISD::MOVDDUP:
Bruno Cardoso Lopes5023ef22010-08-31 22:22:11 +00002901 return DAG.getNode(Opc, dl, VT, V1);
2902 }
2903
2904 return SDValue();
2905}
2906
2907static SDValue getTargetShuffleNode(unsigned Opc, DebugLoc dl, EVT VT,
Bruno Cardoso Lopes8878e212010-08-24 01:16:15 +00002908 SDValue V1, unsigned TargetMask, SelectionDAG &DAG) {
Bruno Cardoso Lopes3efc0772010-08-23 20:41:02 +00002909 switch(Opc) {
2910 default: llvm_unreachable("Unknown x86 shuffle node");
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00002911 case X86ISD::PSHUFD:
Bruno Cardoso Lopes3efc0772010-08-23 20:41:02 +00002912 case X86ISD::PSHUFHW:
2913 case X86ISD::PSHUFLW:
Craig Topper316cd2a2011-11-30 06:25:25 +00002914 case X86ISD::VPERMILP:
Bruno Cardoso Lopes3efc0772010-08-23 20:41:02 +00002915 return DAG.getNode(Opc, dl, VT, V1, DAG.getConstant(TargetMask, MVT::i8));
2916 }
2917
2918 return SDValue();
2919}
Chris Lattnerfcf1a3d2007-02-28 06:10:12 +00002920
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00002921static SDValue getTargetShuffleNode(unsigned Opc, DebugLoc dl, EVT VT,
2922 SDValue V1, SDValue V2, unsigned TargetMask, SelectionDAG &DAG) {
2923 switch(Opc) {
2924 default: llvm_unreachable("Unknown x86 shuffle node");
Bruno Cardoso Lopesaace0f22010-09-04 02:36:07 +00002925 case X86ISD::PALIGN:
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00002926 case X86ISD::SHUFPD:
2927 case X86ISD::SHUFPS:
Craig Topperec24e612011-11-30 07:47:51 +00002928 case X86ISD::VPERM2X128:
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00002929 return DAG.getNode(Opc, dl, VT, V1, V2,
2930 DAG.getConstant(TargetMask, MVT::i8));
2931 }
2932 return SDValue();
2933}
2934
2935static SDValue getTargetShuffleNode(unsigned Opc, DebugLoc dl, EVT VT,
2936 SDValue V1, SDValue V2, SelectionDAG &DAG) {
2937 switch(Opc) {
2938 default: llvm_unreachable("Unknown x86 shuffle node");
2939 case X86ISD::MOVLHPS:
Bruno Cardoso Lopesf2db5b42010-08-31 21:15:21 +00002940 case X86ISD::MOVLHPD:
Bruno Cardoso Lopes7ff30bb2010-08-31 21:38:49 +00002941 case X86ISD::MOVHLPS:
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00002942 case X86ISD::MOVLPS:
2943 case X86ISD::MOVLPD:
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00002944 case X86ISD::MOVSS:
2945 case X86ISD::MOVSD:
Craig Topper34671b82011-12-06 08:21:25 +00002946 case X86ISD::UNPCKL:
2947 case X86ISD::UNPCKH:
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00002948 return DAG.getNode(Opc, dl, VT, V1, V2);
2949 }
2950 return SDValue();
2951}
2952
Dan Gohmand858e902010-04-17 15:26:15 +00002953SDValue X86TargetLowering::getReturnAddressFrameIndex(SelectionDAG &DAG) const {
Anton Korobeynikova2780e12007-08-15 17:12:32 +00002954 MachineFunction &MF = DAG.getMachineFunction();
2955 X86MachineFunctionInfo *FuncInfo = MF.getInfo<X86MachineFunctionInfo>();
2956 int ReturnAddrIndex = FuncInfo->getRAIndex();
2957
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002958 if (ReturnAddrIndex == 0) {
2959 // Set up a frame object for the return address.
Bill Wendling64e87322009-01-16 19:25:27 +00002960 uint64_t SlotSize = TD->getPointerSize();
David Greene3f2bf852009-11-12 20:49:22 +00002961 ReturnAddrIndex = MF.getFrameInfo()->CreateFixedObject(SlotSize, -SlotSize,
Evan Chenged2ae132010-07-03 00:40:23 +00002962 false);
Anton Korobeynikova2780e12007-08-15 17:12:32 +00002963 FuncInfo->setRAIndex(ReturnAddrIndex);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002964 }
2965
Evan Cheng25ab6902006-09-08 06:48:29 +00002966 return DAG.getFrameIndex(ReturnAddrIndex, getPointerTy());
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002967}
2968
2969
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00002970bool X86::isOffsetSuitableForCodeModel(int64_t Offset, CodeModel::Model M,
2971 bool hasSymbolicDisplacement) {
2972 // Offset should fit into 32 bit immediate field.
Benjamin Kramer34247a02010-03-29 21:13:41 +00002973 if (!isInt<32>(Offset))
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00002974 return false;
2975
2976 // If we don't have a symbolic displacement - we don't have any extra
2977 // restrictions.
2978 if (!hasSymbolicDisplacement)
2979 return true;
2980
2981 // FIXME: Some tweaks might be needed for medium code model.
2982 if (M != CodeModel::Small && M != CodeModel::Kernel)
2983 return false;
2984
2985 // For small code model we assume that latest object is 16MB before end of 31
2986 // bits boundary. We may also accept pretty large negative constants knowing
2987 // that all objects are in the positive half of address space.
2988 if (M == CodeModel::Small && Offset < 16*1024*1024)
2989 return true;
2990
2991 // For kernel code model we know that all object resist in the negative half
2992 // of 32bits address space. We may not accept negative offsets, since they may
2993 // be just off and we may accept pretty large positive ones.
2994 if (M == CodeModel::Kernel && Offset > 0)
2995 return true;
2996
2997 return false;
2998}
2999
Evan Chengef41ff62011-06-23 17:54:54 +00003000/// isCalleePop - Determines whether the callee is required to pop its
3001/// own arguments. Callee pop is necessary to support tail calls.
3002bool X86::isCalleePop(CallingConv::ID CallingConv,
3003 bool is64Bit, bool IsVarArg, bool TailCallOpt) {
3004 if (IsVarArg)
3005 return false;
3006
3007 switch (CallingConv) {
3008 default:
3009 return false;
3010 case CallingConv::X86_StdCall:
3011 return !is64Bit;
3012 case CallingConv::X86_FastCall:
3013 return !is64Bit;
3014 case CallingConv::X86_ThisCall:
3015 return !is64Bit;
3016 case CallingConv::Fast:
3017 return TailCallOpt;
3018 case CallingConv::GHC:
3019 return TailCallOpt;
3020 }
3021}
3022
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003023/// TranslateX86CC - do a one to one translation of a ISD::CondCode to the X86
3024/// specific condition code, returning the condition code and the LHS/RHS of the
3025/// comparison to make.
3026static unsigned TranslateX86CC(ISD::CondCode SetCCOpcode, bool isFP,
3027 SDValue &LHS, SDValue &RHS, SelectionDAG &DAG) {
Evan Chengd9558e02006-01-06 00:43:03 +00003028 if (!isFP) {
Chris Lattnerbfd68a72006-09-13 17:04:54 +00003029 if (ConstantSDNode *RHSC = dyn_cast<ConstantSDNode>(RHS)) {
3030 if (SetCCOpcode == ISD::SETGT && RHSC->isAllOnesValue()) {
3031 // X > -1 -> X == 0, jump !sign.
3032 RHS = DAG.getConstant(0, RHS.getValueType());
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003033 return X86::COND_NS;
Chris Lattnerbfd68a72006-09-13 17:04:54 +00003034 } else if (SetCCOpcode == ISD::SETLT && RHSC->isNullValue()) {
3035 // X < 0 -> X == 0, jump on sign.
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003036 return X86::COND_S;
Andrew Trickf6c39412011-03-23 23:11:02 +00003037 } else if (SetCCOpcode == ISD::SETLT && RHSC->getZExtValue() == 1) {
Dan Gohman5f6913c2007-09-17 14:49:27 +00003038 // X < 1 -> X <= 0
3039 RHS = DAG.getConstant(0, RHS.getValueType());
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003040 return X86::COND_LE;
Chris Lattnerbfd68a72006-09-13 17:04:54 +00003041 }
Chris Lattnerf9570512006-09-13 03:22:10 +00003042 }
Anton Korobeynikov12c49af2006-11-21 00:01:06 +00003043
Evan Chengd9558e02006-01-06 00:43:03 +00003044 switch (SetCCOpcode) {
Torok Edwinc23197a2009-07-14 16:55:14 +00003045 default: llvm_unreachable("Invalid integer condition!");
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003046 case ISD::SETEQ: return X86::COND_E;
3047 case ISD::SETGT: return X86::COND_G;
3048 case ISD::SETGE: return X86::COND_GE;
3049 case ISD::SETLT: return X86::COND_L;
3050 case ISD::SETLE: return X86::COND_LE;
3051 case ISD::SETNE: return X86::COND_NE;
3052 case ISD::SETULT: return X86::COND_B;
3053 case ISD::SETUGT: return X86::COND_A;
3054 case ISD::SETULE: return X86::COND_BE;
3055 case ISD::SETUGE: return X86::COND_AE;
Evan Chengd9558e02006-01-06 00:43:03 +00003056 }
Chris Lattner4c78e022008-12-23 23:42:27 +00003057 }
Scott Michelfdc40a02009-02-17 22:15:04 +00003058
Chris Lattner4c78e022008-12-23 23:42:27 +00003059 // First determine if it is required or is profitable to flip the operands.
Duncan Sands4047f4a2008-10-24 13:03:10 +00003060
Chris Lattner4c78e022008-12-23 23:42:27 +00003061 // If LHS is a foldable load, but RHS is not, flip the condition.
Rafael Espindolaf297c932011-02-03 03:58:05 +00003062 if (ISD::isNON_EXTLoad(LHS.getNode()) &&
3063 !ISD::isNON_EXTLoad(RHS.getNode())) {
Chris Lattner4c78e022008-12-23 23:42:27 +00003064 SetCCOpcode = getSetCCSwappedOperands(SetCCOpcode);
3065 std::swap(LHS, RHS);
Evan Cheng4d46d0a2008-08-28 23:48:31 +00003066 }
3067
Chris Lattner4c78e022008-12-23 23:42:27 +00003068 switch (SetCCOpcode) {
3069 default: break;
3070 case ISD::SETOLT:
3071 case ISD::SETOLE:
3072 case ISD::SETUGT:
3073 case ISD::SETUGE:
3074 std::swap(LHS, RHS);
3075 break;
3076 }
3077
3078 // On a floating point condition, the flags are set as follows:
3079 // ZF PF CF op
3080 // 0 | 0 | 0 | X > Y
3081 // 0 | 0 | 1 | X < Y
3082 // 1 | 0 | 0 | X == Y
3083 // 1 | 1 | 1 | unordered
3084 switch (SetCCOpcode) {
Torok Edwinc23197a2009-07-14 16:55:14 +00003085 default: llvm_unreachable("Condcode should be pre-legalized away");
Chris Lattner4c78e022008-12-23 23:42:27 +00003086 case ISD::SETUEQ:
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003087 case ISD::SETEQ: return X86::COND_E;
Chris Lattner4c78e022008-12-23 23:42:27 +00003088 case ISD::SETOLT: // flipped
3089 case ISD::SETOGT:
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003090 case ISD::SETGT: return X86::COND_A;
Chris Lattner4c78e022008-12-23 23:42:27 +00003091 case ISD::SETOLE: // flipped
3092 case ISD::SETOGE:
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003093 case ISD::SETGE: return X86::COND_AE;
Chris Lattner4c78e022008-12-23 23:42:27 +00003094 case ISD::SETUGT: // flipped
3095 case ISD::SETULT:
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003096 case ISD::SETLT: return X86::COND_B;
Chris Lattner4c78e022008-12-23 23:42:27 +00003097 case ISD::SETUGE: // flipped
3098 case ISD::SETULE:
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003099 case ISD::SETLE: return X86::COND_BE;
Chris Lattner4c78e022008-12-23 23:42:27 +00003100 case ISD::SETONE:
Chris Lattner1c39d4c2008-12-24 23:53:05 +00003101 case ISD::SETNE: return X86::COND_NE;
3102 case ISD::SETUO: return X86::COND_P;
3103 case ISD::SETO: return X86::COND_NP;
Dan Gohman1a492952009-10-20 16:22:37 +00003104 case ISD::SETOEQ:
3105 case ISD::SETUNE: return X86::COND_INVALID;
Chris Lattner4c78e022008-12-23 23:42:27 +00003106 }
Evan Chengd9558e02006-01-06 00:43:03 +00003107}
3108
Evan Cheng4a460802006-01-11 00:33:36 +00003109/// hasFPCMov - is there a floating point cmov for the specific X86 condition
3110/// code. Current x86 isa includes the following FP cmov instructions:
Evan Chengaaca22c2006-01-10 20:26:56 +00003111/// fcmovb, fcomvbe, fcomve, fcmovu, fcmovae, fcmova, fcmovne, fcmovnu.
Evan Cheng4a460802006-01-11 00:33:36 +00003112static bool hasFPCMov(unsigned X86CC) {
Evan Chengaaca22c2006-01-10 20:26:56 +00003113 switch (X86CC) {
3114 default:
3115 return false;
Chris Lattner7fbe9722006-10-20 17:42:20 +00003116 case X86::COND_B:
3117 case X86::COND_BE:
3118 case X86::COND_E:
3119 case X86::COND_P:
3120 case X86::COND_A:
3121 case X86::COND_AE:
3122 case X86::COND_NE:
3123 case X86::COND_NP:
Evan Chengaaca22c2006-01-10 20:26:56 +00003124 return true;
3125 }
3126}
3127
Evan Chengeb2f9692009-10-27 19:56:55 +00003128/// isFPImmLegal - Returns true if the target can instruction select the
3129/// specified FP immediate natively. If false, the legalizer will
3130/// materialize the FP immediate as a load from a constant pool.
Evan Chenga1eaa3c2009-10-28 01:43:28 +00003131bool X86TargetLowering::isFPImmLegal(const APFloat &Imm, EVT VT) const {
Evan Chengeb2f9692009-10-27 19:56:55 +00003132 for (unsigned i = 0, e = LegalFPImmediates.size(); i != e; ++i) {
3133 if (Imm.bitwiseIsEqual(LegalFPImmediates[i]))
3134 return true;
3135 }
3136 return false;
3137}
3138
Nate Begeman9008ca62009-04-27 18:41:29 +00003139/// isUndefOrInRange - Return true if Val is undef or if its value falls within
3140/// the specified range (L, H].
3141static bool isUndefOrInRange(int Val, int Low, int Hi) {
3142 return (Val < 0) || (Val >= Low && Val < Hi);
3143}
3144
Bruno Cardoso Lopes3b865982011-08-16 18:21:54 +00003145/// isUndefOrInRange - Return true if every element in Mask, begining
3146/// from position Pos and ending in Pos+Size, falls within the specified
3147/// range (L, L+Pos]. or is undef.
3148static bool isUndefOrInRange(const SmallVectorImpl<int> &Mask,
3149 int Pos, int Size, int Low, int Hi) {
3150 for (int i = Pos, e = Pos+Size; i != e; ++i)
3151 if (!isUndefOrInRange(Mask[i], Low, Hi))
3152 return false;
3153 return true;
3154}
3155
Nate Begeman9008ca62009-04-27 18:41:29 +00003156/// isUndefOrEqual - Val is either less than zero (undef) or equal to the
3157/// specified value.
3158static bool isUndefOrEqual(int Val, int CmpVal) {
3159 if (Val < 0 || Val == CmpVal)
Evan Cheng5ced1d82006-04-06 23:23:56 +00003160 return true;
Nate Begeman9008ca62009-04-27 18:41:29 +00003161 return false;
Evan Chengc5cdff22006-04-07 21:53:05 +00003162}
3163
Bruno Cardoso Lopes4002d7e2011-08-12 21:54:42 +00003164/// isSequentialOrUndefInRange - Return true if every element in Mask, begining
3165/// from position Pos and ending in Pos+Size, falls within the specified
3166/// sequential range (L, L+Pos]. or is undef.
Bruno Cardoso Lopes53cae132011-08-12 21:48:26 +00003167static bool isSequentialOrUndefInRange(const SmallVectorImpl<int> &Mask,
3168 int Pos, int Size, int Low) {
3169 for (int i = Pos, e = Pos+Size; i != e; ++i, ++Low)
3170 if (!isUndefOrEqual(Mask[i], Low))
3171 return false;
3172 return true;
3173}
3174
Nate Begeman9008ca62009-04-27 18:41:29 +00003175/// isPSHUFDMask - Return true if the node specifies a shuffle of elements that
3176/// is suitable for input to PSHUFD or PSHUFW. That is, it doesn't reference
3177/// the second operand.
Owen Andersone50ed302009-08-10 22:56:29 +00003178static bool isPSHUFDMask(const SmallVectorImpl<int> &Mask, EVT VT) {
Dale Johannesen0488fb62010-09-30 23:57:10 +00003179 if (VT == MVT::v4f32 || VT == MVT::v4i32 )
Nate Begeman9008ca62009-04-27 18:41:29 +00003180 return (Mask[0] < 4 && Mask[1] < 4 && Mask[2] < 4 && Mask[3] < 4);
Owen Anderson825b72b2009-08-11 20:47:22 +00003181 if (VT == MVT::v2f64 || VT == MVT::v2i64)
Nate Begeman9008ca62009-04-27 18:41:29 +00003182 return (Mask[0] < 2 && Mask[1] < 2);
3183 return false;
Evan Cheng5ced1d82006-04-06 23:23:56 +00003184}
3185
Nate Begeman9008ca62009-04-27 18:41:29 +00003186bool X86::isPSHUFDMask(ShuffleVectorSDNode *N) {
Eric Christopherfd179292009-08-27 18:07:15 +00003187 SmallVector<int, 8> M;
Nate Begeman9008ca62009-04-27 18:41:29 +00003188 N->getMask(M);
3189 return ::isPSHUFDMask(M, N->getValueType(0));
3190}
Evan Cheng0188ecb2006-03-22 18:59:22 +00003191
Nate Begeman9008ca62009-04-27 18:41:29 +00003192/// isPSHUFHWMask - Return true if the node specifies a shuffle of elements that
3193/// is suitable for input to PSHUFHW.
Owen Andersone50ed302009-08-10 22:56:29 +00003194static bool isPSHUFHWMask(const SmallVectorImpl<int> &Mask, EVT VT) {
Owen Anderson825b72b2009-08-11 20:47:22 +00003195 if (VT != MVT::v8i16)
Evan Cheng0188ecb2006-03-22 18:59:22 +00003196 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003197
Nate Begeman9008ca62009-04-27 18:41:29 +00003198 // Lower quadword copied in order or undef.
3199 for (int i = 0; i != 4; ++i)
3200 if (Mask[i] >= 0 && Mask[i] != i)
Evan Cheng506d3df2006-03-29 23:07:14 +00003201 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003202
Evan Cheng506d3df2006-03-29 23:07:14 +00003203 // Upper quadword shuffled.
Nate Begeman9008ca62009-04-27 18:41:29 +00003204 for (int i = 4; i != 8; ++i)
3205 if (Mask[i] >= 0 && (Mask[i] < 4 || Mask[i] > 7))
Evan Cheng506d3df2006-03-29 23:07:14 +00003206 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003207
Evan Cheng506d3df2006-03-29 23:07:14 +00003208 return true;
3209}
3210
Nate Begeman9008ca62009-04-27 18:41:29 +00003211bool X86::isPSHUFHWMask(ShuffleVectorSDNode *N) {
Eric Christopherfd179292009-08-27 18:07:15 +00003212 SmallVector<int, 8> M;
Nate Begeman9008ca62009-04-27 18:41:29 +00003213 N->getMask(M);
3214 return ::isPSHUFHWMask(M, N->getValueType(0));
3215}
Evan Cheng506d3df2006-03-29 23:07:14 +00003216
Nate Begeman9008ca62009-04-27 18:41:29 +00003217/// isPSHUFLWMask - Return true if the node specifies a shuffle of elements that
3218/// is suitable for input to PSHUFLW.
Owen Andersone50ed302009-08-10 22:56:29 +00003219static bool isPSHUFLWMask(const SmallVectorImpl<int> &Mask, EVT VT) {
Owen Anderson825b72b2009-08-11 20:47:22 +00003220 if (VT != MVT::v8i16)
Evan Cheng506d3df2006-03-29 23:07:14 +00003221 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003222
Rafael Espindola15684b22009-04-24 12:40:33 +00003223 // Upper quadword copied in order.
Nate Begeman9008ca62009-04-27 18:41:29 +00003224 for (int i = 4; i != 8; ++i)
3225 if (Mask[i] >= 0 && Mask[i] != i)
Rafael Espindola15684b22009-04-24 12:40:33 +00003226 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003227
Rafael Espindola15684b22009-04-24 12:40:33 +00003228 // Lower quadword shuffled.
Nate Begeman9008ca62009-04-27 18:41:29 +00003229 for (int i = 0; i != 4; ++i)
3230 if (Mask[i] >= 4)
Rafael Espindola15684b22009-04-24 12:40:33 +00003231 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003232
Rafael Espindola15684b22009-04-24 12:40:33 +00003233 return true;
Nate Begemanb706d292009-04-24 03:42:54 +00003234}
3235
Nate Begeman9008ca62009-04-27 18:41:29 +00003236bool X86::isPSHUFLWMask(ShuffleVectorSDNode *N) {
Eric Christopherfd179292009-08-27 18:07:15 +00003237 SmallVector<int, 8> M;
Nate Begeman9008ca62009-04-27 18:41:29 +00003238 N->getMask(M);
3239 return ::isPSHUFLWMask(M, N->getValueType(0));
3240}
3241
Nate Begemana09008b2009-10-19 02:17:23 +00003242/// isPALIGNRMask - Return true if the node specifies a shuffle of elements that
3243/// is suitable for input to PALIGNR.
3244static bool isPALIGNRMask(const SmallVectorImpl<int> &Mask, EVT VT,
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00003245 bool hasSSSE3OrAVX) {
Nate Begemana09008b2009-10-19 02:17:23 +00003246 int i, e = VT.getVectorNumElements();
Craig Topper1dc0fbc2011-12-05 07:27:14 +00003247 if (VT.getSizeInBits() != 128)
Bruno Cardoso Lopes9065d4b2011-07-29 01:30:59 +00003248 return false;
Michael J. Spencerec38de22010-10-10 22:04:20 +00003249
Nate Begemana09008b2009-10-19 02:17:23 +00003250 // Do not handle v2i64 / v2f64 shuffles with palignr.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00003251 if (e < 4 || !hasSSSE3OrAVX)
Nate Begemana09008b2009-10-19 02:17:23 +00003252 return false;
Michael J. Spencerec38de22010-10-10 22:04:20 +00003253
Nate Begemana09008b2009-10-19 02:17:23 +00003254 for (i = 0; i != e; ++i)
3255 if (Mask[i] >= 0)
3256 break;
Michael J. Spencerec38de22010-10-10 22:04:20 +00003257
Nate Begemana09008b2009-10-19 02:17:23 +00003258 // All undef, not a palignr.
3259 if (i == e)
3260 return false;
3261
Eli Friedman63f8dde2011-07-25 21:36:45 +00003262 // Make sure we're shifting in the right direction.
3263 if (Mask[i] <= i)
3264 return false;
Nate Begemana09008b2009-10-19 02:17:23 +00003265
3266 int s = Mask[i] - i;
Michael J. Spencerec38de22010-10-10 22:04:20 +00003267
Nate Begemana09008b2009-10-19 02:17:23 +00003268 // Check the rest of the elements to see if they are consecutive.
3269 for (++i; i != e; ++i) {
3270 int m = Mask[i];
Eli Friedman63f8dde2011-07-25 21:36:45 +00003271 if (m >= 0 && m != s+i)
Nate Begemana09008b2009-10-19 02:17:23 +00003272 return false;
3273 }
3274 return true;
3275}
3276
Craig Topper9d7025b2011-11-27 21:41:12 +00003277/// isVSHUFPYMask - Return true if the specified VECTOR_SHUFFLE operand
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003278/// specifies a shuffle of elements that is suitable for input to 256-bit
3279/// VSHUFPSY.
Craig Topper9d7025b2011-11-27 21:41:12 +00003280static bool isVSHUFPYMask(const SmallVectorImpl<int> &Mask, EVT VT,
Craig Topper1ff73d72011-12-06 04:59:07 +00003281 bool HasAVX, bool Commuted = false) {
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003282 int NumElems = VT.getVectorNumElements();
3283
Craig Topper71c4c122011-11-28 01:14:24 +00003284 if (!HasAVX || VT.getSizeInBits() != 256)
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003285 return false;
3286
Craig Topper9d7025b2011-11-27 21:41:12 +00003287 if (NumElems != 4 && NumElems != 8)
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003288 return false;
3289
3290 // VSHUFPSY divides the resulting vector into 4 chunks.
3291 // The sources are also splitted into 4 chunks, and each destination
3292 // chunk must come from a different source chunk.
3293 //
3294 // SRC1 => X7 X6 X5 X4 X3 X2 X1 X0
3295 // SRC2 => Y7 Y6 Y5 Y4 Y3 Y2 Y1 Y9
3296 //
3297 // DST => Y7..Y4, Y7..Y4, X7..X4, X7..X4,
3298 // Y3..Y0, Y3..Y0, X3..X0, X3..X0
3299 //
Craig Topper9d7025b2011-11-27 21:41:12 +00003300 // VSHUFPDY divides the resulting vector into 4 chunks.
3301 // The sources are also splitted into 4 chunks, and each destination
3302 // chunk must come from a different source chunk.
3303 //
3304 // SRC1 => X3 X2 X1 X0
3305 // SRC2 => Y3 Y2 Y1 Y0
3306 //
3307 // DST => Y3..Y2, X3..X2, Y1..Y0, X1..X0
3308 //
Craig Topper1ff73d72011-12-06 04:59:07 +00003309 unsigned QuarterSize = NumElems/4;
3310 unsigned HalfSize = QuarterSize*2;
3311 for (unsigned l = 0; l != 2; ++l) {
3312 unsigned LaneStart = l*HalfSize;
3313 for (unsigned s = 0; s != 2; ++s) {
3314 unsigned QuarterStart = s*QuarterSize;
3315 unsigned Src = (Commuted) ? (1-s) : s;
3316 unsigned SrcStart = Src*NumElems + LaneStart;
3317 for (unsigned i = 0; i != QuarterSize; ++i) {
3318 int Idx = Mask[i+QuarterStart+LaneStart];
3319 if (!isUndefOrInRange(Idx, SrcStart, SrcStart+HalfSize))
3320 return false;
Chad Rosier30450e82011-12-22 22:35:21 +00003321 // For VSHUFPSY, the mask of the second half must be the same as the
3322 // first but with the appropriate offsets. This works in the same way as
Craig Topper1ff73d72011-12-06 04:59:07 +00003323 // VPERMILPS works with masks.
3324 if (NumElems == 4 || l == 0 || Mask[i+QuarterStart] < 0)
3325 continue;
3326 if (!isUndefOrEqual(Idx, Mask[i+QuarterStart]+HalfSize))
3327 return false;
3328 }
3329 }
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003330 }
3331
3332 return true;
3333}
3334
Craig Topper9d7025b2011-11-27 21:41:12 +00003335/// getShuffleVSHUFPYImmediate - Return the appropriate immediate to shuffle
3336/// the specified VECTOR_MASK mask with VSHUFPSY/VSHUFPDY instructions.
3337static unsigned getShuffleVSHUFPYImmediate(SDNode *N) {
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003338 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(N);
3339 EVT VT = SVOp->getValueType(0);
3340 int NumElems = VT.getVectorNumElements();
3341
Craig Topper9d7025b2011-11-27 21:41:12 +00003342 assert(VT.getSizeInBits() == 256 && "Only supports 256-bit types");
3343 assert((NumElems == 4 || NumElems == 8) && "Only supports v4 and v8 types");
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003344
3345 int HalfSize = NumElems/2;
Craig Topper9d7025b2011-11-27 21:41:12 +00003346 unsigned Mul = (NumElems == 8) ? 2 : 1;
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003347 unsigned Mask = 0;
Craig Topper71c4c122011-11-28 01:14:24 +00003348 for (int i = 0; i != NumElems; ++i) {
Craig Topper9d7025b2011-11-27 21:41:12 +00003349 int Elt = SVOp->getMaskElt(i);
3350 if (Elt < 0)
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003351 continue;
Craig Topper9d7025b2011-11-27 21:41:12 +00003352 Elt %= HalfSize;
3353 unsigned Shamt = i;
3354 // For VSHUFPSY, the mask of the first half must be equal to the second one.
3355 if (NumElems == 8) Shamt %= HalfSize;
3356 Mask |= Elt << (Shamt*Mul);
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00003357 }
3358
3359 return Mask;
3360}
3361
Elena Demikhovsky52a35a82011-11-23 10:23:16 +00003362/// CommuteVectorShuffleMask - Change values in a shuffle permute mask assuming
3363/// the two vector operands have swapped position.
Craig Topperbeabc6c2011-12-05 06:56:46 +00003364static void CommuteVectorShuffleMask(SmallVectorImpl<int> &Mask,
3365 unsigned NumElems) {
Elena Demikhovsky52a35a82011-11-23 10:23:16 +00003366 for (unsigned i = 0; i != NumElems; ++i) {
3367 int idx = Mask[i];
3368 if (idx < 0)
3369 continue;
3370 else if (idx < (int)NumElems)
3371 Mask[i] = idx + NumElems;
3372 else
3373 Mask[i] = idx - NumElems;
3374 }
3375}
3376
Evan Cheng14aed5e2006-03-24 01:18:28 +00003377/// isSHUFPMask - Return true if the specified VECTOR_SHUFFLE operand
Bruno Cardoso Lopesaf002d82011-08-24 23:17:55 +00003378/// specifies a shuffle of elements that is suitable for input to 128-bit
Craig Topper1ff73d72011-12-06 04:59:07 +00003379/// SHUFPS and SHUFPD. If Commuted is true, then it checks for sources to be
3380/// reverse of what x86 shuffles want.
3381static bool isSHUFPMask(const SmallVectorImpl<int> &Mask, EVT VT,
3382 bool Commuted = false) {
3383 unsigned NumElems = VT.getVectorNumElements();
Bruno Cardoso Lopesaf002d82011-08-24 23:17:55 +00003384
3385 if (VT.getSizeInBits() != 128)
3386 return false;
3387
Nate Begeman9008ca62009-04-27 18:41:29 +00003388 if (NumElems != 2 && NumElems != 4)
3389 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003390
Craig Topper1ff73d72011-12-06 04:59:07 +00003391 unsigned Half = NumElems / 2;
3392 unsigned SrcStart = Commuted ? NumElems : 0;
3393 for (unsigned i = 0; i != Half; ++i)
3394 if (!isUndefOrInRange(Mask[i], SrcStart, SrcStart+NumElems))
Evan Cheng39623da2006-04-20 08:58:49 +00003395 return false;
Craig Topper1ff73d72011-12-06 04:59:07 +00003396 SrcStart = Commuted ? 0 : NumElems;
3397 for (unsigned i = Half; i != NumElems; ++i)
3398 if (!isUndefOrInRange(Mask[i], SrcStart, SrcStart+NumElems))
Evan Cheng39623da2006-04-20 08:58:49 +00003399 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003400
Evan Cheng14aed5e2006-03-24 01:18:28 +00003401 return true;
3402}
3403
Nate Begeman9008ca62009-04-27 18:41:29 +00003404bool X86::isSHUFPMask(ShuffleVectorSDNode *N) {
3405 SmallVector<int, 8> M;
3406 N->getMask(M);
3407 return ::isSHUFPMask(M, N->getValueType(0));
Evan Cheng39623da2006-04-20 08:58:49 +00003408}
3409
Evan Cheng2c0dbd02006-03-24 02:58:06 +00003410/// isMOVHLPSMask - Return true if the specified VECTOR_SHUFFLE operand
3411/// specifies a shuffle of elements that is suitable for input to MOVHLPS.
Nate Begeman9008ca62009-04-27 18:41:29 +00003412bool X86::isMOVHLPSMask(ShuffleVectorSDNode *N) {
Bruno Cardoso Lopes61260052011-07-29 02:05:28 +00003413 EVT VT = N->getValueType(0);
3414 unsigned NumElems = VT.getVectorNumElements();
3415
3416 if (VT.getSizeInBits() != 128)
3417 return false;
3418
3419 if (NumElems != 4)
Evan Cheng2c0dbd02006-03-24 02:58:06 +00003420 return false;
3421
Evan Cheng2064a2b2006-03-28 06:50:32 +00003422 // Expect bit0 == 6, bit1 == 7, bit2 == 2, bit3 == 3
Nate Begeman9008ca62009-04-27 18:41:29 +00003423 return isUndefOrEqual(N->getMaskElt(0), 6) &&
3424 isUndefOrEqual(N->getMaskElt(1), 7) &&
3425 isUndefOrEqual(N->getMaskElt(2), 2) &&
3426 isUndefOrEqual(N->getMaskElt(3), 3);
Evan Cheng6e56e2c2006-11-07 22:14:24 +00003427}
3428
Nate Begeman0b10b912009-11-07 23:17:15 +00003429/// isMOVHLPS_v_undef_Mask - Special case of isMOVHLPSMask for canonical form
3430/// of vector_shuffle v, v, <2, 3, 2, 3>, i.e. vector_shuffle v, undef,
3431/// <2, 3, 2, 3>
3432bool X86::isMOVHLPS_v_undef_Mask(ShuffleVectorSDNode *N) {
Bruno Cardoso Lopes61260052011-07-29 02:05:28 +00003433 EVT VT = N->getValueType(0);
3434 unsigned NumElems = VT.getVectorNumElements();
3435
3436 if (VT.getSizeInBits() != 128)
3437 return false;
Michael J. Spencerec38de22010-10-10 22:04:20 +00003438
Nate Begeman0b10b912009-11-07 23:17:15 +00003439 if (NumElems != 4)
3440 return false;
Michael J. Spencerec38de22010-10-10 22:04:20 +00003441
Nate Begeman0b10b912009-11-07 23:17:15 +00003442 return isUndefOrEqual(N->getMaskElt(0), 2) &&
Bruno Cardoso Lopes61260052011-07-29 02:05:28 +00003443 isUndefOrEqual(N->getMaskElt(1), 3) &&
3444 isUndefOrEqual(N->getMaskElt(2), 2) &&
3445 isUndefOrEqual(N->getMaskElt(3), 3);
Nate Begeman0b10b912009-11-07 23:17:15 +00003446}
3447
Evan Cheng5ced1d82006-04-06 23:23:56 +00003448/// isMOVLPMask - Return true if the specified VECTOR_SHUFFLE operand
3449/// specifies a shuffle of elements that is suitable for input to MOVLP{S|D}.
Nate Begeman9008ca62009-04-27 18:41:29 +00003450bool X86::isMOVLPMask(ShuffleVectorSDNode *N) {
Elena Demikhovsky021c0a22011-12-28 08:14:01 +00003451 EVT VT = N->getValueType(0);
3452
3453 if (VT.getSizeInBits() != 128)
3454 return false;
3455
Nate Begeman9008ca62009-04-27 18:41:29 +00003456 unsigned NumElems = N->getValueType(0).getVectorNumElements();
Evan Cheng5ced1d82006-04-06 23:23:56 +00003457
Evan Cheng5ced1d82006-04-06 23:23:56 +00003458 if (NumElems != 2 && NumElems != 4)
3459 return false;
3460
Evan Chengc5cdff22006-04-07 21:53:05 +00003461 for (unsigned i = 0; i < NumElems/2; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00003462 if (!isUndefOrEqual(N->getMaskElt(i), i + NumElems))
Evan Chengc5cdff22006-04-07 21:53:05 +00003463 return false;
Evan Cheng5ced1d82006-04-06 23:23:56 +00003464
Evan Chengc5cdff22006-04-07 21:53:05 +00003465 for (unsigned i = NumElems/2; i < NumElems; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00003466 if (!isUndefOrEqual(N->getMaskElt(i), i))
Evan Chengc5cdff22006-04-07 21:53:05 +00003467 return false;
Evan Cheng5ced1d82006-04-06 23:23:56 +00003468
3469 return true;
3470}
3471
Nate Begeman0b10b912009-11-07 23:17:15 +00003472/// isMOVLHPSMask - Return true if the specified VECTOR_SHUFFLE operand
3473/// specifies a shuffle of elements that is suitable for input to MOVLHPS.
3474bool X86::isMOVLHPSMask(ShuffleVectorSDNode *N) {
Nate Begeman9008ca62009-04-27 18:41:29 +00003475 unsigned NumElems = N->getValueType(0).getVectorNumElements();
Evan Cheng5ced1d82006-04-06 23:23:56 +00003476
David Greenea20244d2011-03-02 17:23:43 +00003477 if ((NumElems != 2 && NumElems != 4)
3478 || N->getValueType(0).getSizeInBits() > 128)
Evan Cheng5ced1d82006-04-06 23:23:56 +00003479 return false;
3480
Evan Chengc5cdff22006-04-07 21:53:05 +00003481 for (unsigned i = 0; i < NumElems/2; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00003482 if (!isUndefOrEqual(N->getMaskElt(i), i))
Evan Chengc5cdff22006-04-07 21:53:05 +00003483 return false;
Evan Cheng5ced1d82006-04-06 23:23:56 +00003484
Nate Begeman9008ca62009-04-27 18:41:29 +00003485 for (unsigned i = 0; i < NumElems/2; ++i)
3486 if (!isUndefOrEqual(N->getMaskElt(i + NumElems/2), i + NumElems))
Evan Chengc5cdff22006-04-07 21:53:05 +00003487 return false;
Evan Cheng5ced1d82006-04-06 23:23:56 +00003488
3489 return true;
3490}
3491
Evan Cheng0038e592006-03-28 00:39:58 +00003492/// isUNPCKLMask - Return true if the specified VECTOR_SHUFFLE operand
3493/// specifies a shuffle of elements that is suitable for input to UNPCKL.
Owen Andersone50ed302009-08-10 22:56:29 +00003494static bool isUNPCKLMask(const SmallVectorImpl<int> &Mask, EVT VT,
Craig Topper6347e862011-11-21 06:57:39 +00003495 bool HasAVX2, bool V2IsSplat = false) {
Craig Topper94438ba2011-12-16 08:06:31 +00003496 unsigned NumElts = VT.getVectorNumElements();
Bruno Cardoso Lopes4ea49682011-07-26 22:03:40 +00003497
3498 assert((VT.is128BitVector() || VT.is256BitVector()) &&
3499 "Unsupported vector type for unpckh");
3500
Craig Topper6347e862011-11-21 06:57:39 +00003501 if (VT.getSizeInBits() == 256 && NumElts != 4 && NumElts != 8 &&
Craig Topper6fa583d2011-11-21 08:26:50 +00003502 (!HasAVX2 || (NumElts != 16 && NumElts != 32)))
Evan Cheng0038e592006-03-28 00:39:58 +00003503 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003504
Bruno Cardoso Lopes4ea49682011-07-26 22:03:40 +00003505 // Handle 128 and 256-bit vector lengths. AVX defines UNPCK* to operate
3506 // independently on 128-bit lanes.
3507 unsigned NumLanes = VT.getSizeInBits()/128;
3508 unsigned NumLaneElts = NumElts/NumLanes;
David Greenea20244d2011-03-02 17:23:43 +00003509
Craig Topper94438ba2011-12-16 08:06:31 +00003510 for (unsigned l = 0; l != NumLanes; ++l) {
3511 for (unsigned i = l*NumLaneElts, j = l*NumLaneElts;
3512 i != (l+1)*NumLaneElts;
David Greenea20244d2011-03-02 17:23:43 +00003513 i += 2, ++j) {
3514 int BitI = Mask[i];
3515 int BitI1 = Mask[i+1];
3516 if (!isUndefOrEqual(BitI, j))
Evan Cheng39623da2006-04-20 08:58:49 +00003517 return false;
David Greenea20244d2011-03-02 17:23:43 +00003518 if (V2IsSplat) {
3519 if (!isUndefOrEqual(BitI1, NumElts))
3520 return false;
3521 } else {
3522 if (!isUndefOrEqual(BitI1, j + NumElts))
3523 return false;
3524 }
Evan Cheng39623da2006-04-20 08:58:49 +00003525 }
Evan Cheng0038e592006-03-28 00:39:58 +00003526 }
David Greenea20244d2011-03-02 17:23:43 +00003527
Evan Cheng0038e592006-03-28 00:39:58 +00003528 return true;
3529}
3530
Craig Topper6347e862011-11-21 06:57:39 +00003531bool X86::isUNPCKLMask(ShuffleVectorSDNode *N, bool HasAVX2, bool V2IsSplat) {
Nate Begeman9008ca62009-04-27 18:41:29 +00003532 SmallVector<int, 8> M;
3533 N->getMask(M);
Craig Topper6347e862011-11-21 06:57:39 +00003534 return ::isUNPCKLMask(M, N->getValueType(0), HasAVX2, V2IsSplat);
Evan Cheng39623da2006-04-20 08:58:49 +00003535}
3536
Evan Cheng4fcb9222006-03-28 02:43:26 +00003537/// isUNPCKHMask - Return true if the specified VECTOR_SHUFFLE operand
3538/// specifies a shuffle of elements that is suitable for input to UNPCKH.
Eric Christopherfd179292009-08-27 18:07:15 +00003539static bool isUNPCKHMask(const SmallVectorImpl<int> &Mask, EVT VT,
Craig Topper6347e862011-11-21 06:57:39 +00003540 bool HasAVX2, bool V2IsSplat = false) {
Craig Topper94438ba2011-12-16 08:06:31 +00003541 unsigned NumElts = VT.getVectorNumElements();
Bruno Cardoso Lopes4ea49682011-07-26 22:03:40 +00003542
3543 assert((VT.is128BitVector() || VT.is256BitVector()) &&
3544 "Unsupported vector type for unpckh");
3545
Craig Topper6347e862011-11-21 06:57:39 +00003546 if (VT.getSizeInBits() == 256 && NumElts != 4 && NumElts != 8 &&
Craig Topper6fa583d2011-11-21 08:26:50 +00003547 (!HasAVX2 || (NumElts != 16 && NumElts != 32)))
Evan Cheng4fcb9222006-03-28 02:43:26 +00003548 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003549
Bruno Cardoso Lopes4ea49682011-07-26 22:03:40 +00003550 // Handle 128 and 256-bit vector lengths. AVX defines UNPCK* to operate
3551 // independently on 128-bit lanes.
3552 unsigned NumLanes = VT.getSizeInBits()/128;
3553 unsigned NumLaneElts = NumElts/NumLanes;
3554
Bruno Cardoso Lopes4ea49682011-07-26 22:03:40 +00003555 for (unsigned l = 0; l != NumLanes; ++l) {
Craig Topper94438ba2011-12-16 08:06:31 +00003556 for (unsigned i = l*NumLaneElts, j = (l*NumLaneElts)+NumLaneElts/2;
3557 i != (l+1)*NumLaneElts; i += 2, ++j) {
Bruno Cardoso Lopes4ea49682011-07-26 22:03:40 +00003558 int BitI = Mask[i];
3559 int BitI1 = Mask[i+1];
3560 if (!isUndefOrEqual(BitI, j))
Evan Cheng39623da2006-04-20 08:58:49 +00003561 return false;
Bruno Cardoso Lopes4ea49682011-07-26 22:03:40 +00003562 if (V2IsSplat) {
3563 if (isUndefOrEqual(BitI1, NumElts))
3564 return false;
3565 } else {
3566 if (!isUndefOrEqual(BitI1, j+NumElts))
3567 return false;
3568 }
Evan Cheng39623da2006-04-20 08:58:49 +00003569 }
Evan Cheng4fcb9222006-03-28 02:43:26 +00003570 }
Evan Cheng4fcb9222006-03-28 02:43:26 +00003571 return true;
3572}
3573
Craig Topper6347e862011-11-21 06:57:39 +00003574bool X86::isUNPCKHMask(ShuffleVectorSDNode *N, bool HasAVX2, bool V2IsSplat) {
Nate Begeman9008ca62009-04-27 18:41:29 +00003575 SmallVector<int, 8> M;
3576 N->getMask(M);
Craig Topper6347e862011-11-21 06:57:39 +00003577 return ::isUNPCKHMask(M, N->getValueType(0), HasAVX2, V2IsSplat);
Evan Cheng39623da2006-04-20 08:58:49 +00003578}
3579
Evan Cheng1d5a8cc2006-04-05 07:20:06 +00003580/// isUNPCKL_v_undef_Mask - Special case of isUNPCKLMask for canonical form
3581/// of vector_shuffle v, v, <0, 4, 1, 5>, i.e. vector_shuffle v, undef,
3582/// <0, 0, 1, 1>
Craig Topper94438ba2011-12-16 08:06:31 +00003583static bool isUNPCKL_v_undef_Mask(const SmallVectorImpl<int> &Mask, EVT VT,
3584 bool HasAVX2) {
3585 unsigned NumElts = VT.getVectorNumElements();
3586
3587 assert((VT.is128BitVector() || VT.is256BitVector()) &&
3588 "Unsupported vector type for unpckh");
3589
3590 if (VT.getSizeInBits() == 256 && NumElts != 4 && NumElts != 8 &&
3591 (!HasAVX2 || (NumElts != 16 && NumElts != 32)))
Evan Cheng1d5a8cc2006-04-05 07:20:06 +00003592 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003593
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00003594 // For 256-bit i64/f64, use MOVDDUPY instead, so reject the matching pattern
3595 // FIXME: Need a better way to get rid of this, there's no latency difference
3596 // between UNPCKLPD and MOVDDUP, the later should always be checked first and
3597 // the former later. We should also remove the "_undef" special mask.
Craig Topper94438ba2011-12-16 08:06:31 +00003598 if (NumElts == 4 && VT.getSizeInBits() == 256)
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00003599 return false;
3600
Bruno Cardoso Lopes4ea49682011-07-26 22:03:40 +00003601 // Handle 128 and 256-bit vector lengths. AVX defines UNPCK* to operate
3602 // independently on 128-bit lanes.
Craig Topper94438ba2011-12-16 08:06:31 +00003603 unsigned NumLanes = VT.getSizeInBits()/128;
3604 unsigned NumLaneElts = NumElts/NumLanes;
David Greenea20244d2011-03-02 17:23:43 +00003605
Craig Topper94438ba2011-12-16 08:06:31 +00003606 for (unsigned l = 0; l != NumLanes; ++l) {
3607 for (unsigned i = l*NumLaneElts, j = l*NumLaneElts;
3608 i != (l+1)*NumLaneElts;
David Greenea20244d2011-03-02 17:23:43 +00003609 i += 2, ++j) {
3610 int BitI = Mask[i];
3611 int BitI1 = Mask[i+1];
3612
3613 if (!isUndefOrEqual(BitI, j))
3614 return false;
3615 if (!isUndefOrEqual(BitI1, j))
3616 return false;
3617 }
Evan Cheng1d5a8cc2006-04-05 07:20:06 +00003618 }
David Greenea20244d2011-03-02 17:23:43 +00003619
Rafael Espindola15684b22009-04-24 12:40:33 +00003620 return true;
Nate Begemanb706d292009-04-24 03:42:54 +00003621}
3622
Craig Topper94438ba2011-12-16 08:06:31 +00003623bool X86::isUNPCKL_v_undef_Mask(ShuffleVectorSDNode *N, bool HasAVX2) {
Nate Begeman9008ca62009-04-27 18:41:29 +00003624 SmallVector<int, 8> M;
3625 N->getMask(M);
Craig Topper94438ba2011-12-16 08:06:31 +00003626 return ::isUNPCKL_v_undef_Mask(M, N->getValueType(0), HasAVX2);
Nate Begeman9008ca62009-04-27 18:41:29 +00003627}
3628
Bill Wendling2f9bb1a2007-04-24 21:16:55 +00003629/// isUNPCKH_v_undef_Mask - Special case of isUNPCKHMask for canonical form
3630/// of vector_shuffle v, v, <2, 6, 3, 7>, i.e. vector_shuffle v, undef,
3631/// <2, 2, 3, 3>
Craig Topper94438ba2011-12-16 08:06:31 +00003632static bool isUNPCKH_v_undef_Mask(const SmallVectorImpl<int> &Mask, EVT VT,
3633 bool HasAVX2) {
3634 unsigned NumElts = VT.getVectorNumElements();
3635
3636 assert((VT.is128BitVector() || VT.is256BitVector()) &&
3637 "Unsupported vector type for unpckh");
3638
3639 if (VT.getSizeInBits() == 256 && NumElts != 4 && NumElts != 8 &&
3640 (!HasAVX2 || (NumElts != 16 && NumElts != 32)))
Bill Wendling2f9bb1a2007-04-24 21:16:55 +00003641 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003642
Craig Topper94438ba2011-12-16 08:06:31 +00003643 // Handle 128 and 256-bit vector lengths. AVX defines UNPCK* to operate
3644 // independently on 128-bit lanes.
3645 unsigned NumLanes = VT.getSizeInBits()/128;
3646 unsigned NumLaneElts = NumElts/NumLanes;
3647
3648 for (unsigned l = 0; l != NumLanes; ++l) {
3649 for (unsigned i = l*NumLaneElts, j = (l*NumLaneElts)+NumLaneElts/2;
3650 i != (l+1)*NumLaneElts; i += 2, ++j) {
3651 int BitI = Mask[i];
3652 int BitI1 = Mask[i+1];
3653 if (!isUndefOrEqual(BitI, j))
3654 return false;
3655 if (!isUndefOrEqual(BitI1, j))
3656 return false;
3657 }
Bill Wendling2f9bb1a2007-04-24 21:16:55 +00003658 }
Rafael Espindola15684b22009-04-24 12:40:33 +00003659 return true;
Nate Begemanb706d292009-04-24 03:42:54 +00003660}
3661
Craig Topper94438ba2011-12-16 08:06:31 +00003662bool X86::isUNPCKH_v_undef_Mask(ShuffleVectorSDNode *N, bool HasAVX2) {
Nate Begeman9008ca62009-04-27 18:41:29 +00003663 SmallVector<int, 8> M;
3664 N->getMask(M);
Craig Topper94438ba2011-12-16 08:06:31 +00003665 return ::isUNPCKH_v_undef_Mask(M, N->getValueType(0), HasAVX2);
Nate Begeman9008ca62009-04-27 18:41:29 +00003666}
3667
Evan Cheng017dcc62006-04-21 01:05:10 +00003668/// isMOVLMask - Return true if the specified VECTOR_SHUFFLE operand
3669/// specifies a shuffle of elements that is suitable for input to MOVSS,
3670/// MOVSD, and MOVD, i.e. setting the lowest element.
Owen Andersone50ed302009-08-10 22:56:29 +00003671static bool isMOVLMask(const SmallVectorImpl<int> &Mask, EVT VT) {
Eli Friedman10415532009-06-06 06:05:10 +00003672 if (VT.getVectorElementType().getSizeInBits() < 32)
Evan Chengd6d1cbd2006-04-11 00:19:04 +00003673 return false;
Elena Demikhovsky021c0a22011-12-28 08:14:01 +00003674 if (VT.getSizeInBits() == 256)
3675 return false;
Eli Friedman10415532009-06-06 06:05:10 +00003676
3677 int NumElts = VT.getVectorNumElements();
Eric Christopherfd179292009-08-27 18:07:15 +00003678
Nate Begeman9008ca62009-04-27 18:41:29 +00003679 if (!isUndefOrEqual(Mask[0], NumElts))
Evan Chengd6d1cbd2006-04-11 00:19:04 +00003680 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003681
Nate Begeman9008ca62009-04-27 18:41:29 +00003682 for (int i = 1; i < NumElts; ++i)
3683 if (!isUndefOrEqual(Mask[i], i))
Evan Chengd6d1cbd2006-04-11 00:19:04 +00003684 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003685
Evan Chengd6d1cbd2006-04-11 00:19:04 +00003686 return true;
3687}
Evan Cheng1d5a8cc2006-04-05 07:20:06 +00003688
Nate Begeman9008ca62009-04-27 18:41:29 +00003689bool X86::isMOVLMask(ShuffleVectorSDNode *N) {
3690 SmallVector<int, 8> M;
3691 N->getMask(M);
3692 return ::isMOVLMask(M, N->getValueType(0));
Evan Cheng39623da2006-04-20 08:58:49 +00003693}
3694
Craig Topper70b883b2011-11-28 10:14:51 +00003695/// isVPERM2X128Mask - Match 256-bit shuffles where the elements are considered
Bruno Cardoso Lopes53cae132011-08-12 21:48:26 +00003696/// as permutations between 128-bit chunks or halves. As an example: this
3697/// shuffle bellow:
3698/// vector_shuffle <4, 5, 6, 7, 12, 13, 14, 15>
3699/// The first half comes from the second half of V1 and the second half from the
3700/// the second half of V2.
Craig Topper70b883b2011-11-28 10:14:51 +00003701static bool isVPERM2X128Mask(const SmallVectorImpl<int> &Mask, EVT VT,
3702 bool HasAVX) {
3703 if (!HasAVX || VT.getSizeInBits() != 256)
Bruno Cardoso Lopes53cae132011-08-12 21:48:26 +00003704 return false;
3705
3706 // The shuffle result is divided into half A and half B. In total the two
3707 // sources have 4 halves, namely: C, D, E, F. The final values of A and
3708 // B must come from C, D, E or F.
3709 int HalfSize = VT.getVectorNumElements()/2;
3710 bool MatchA = false, MatchB = false;
3711
3712 // Check if A comes from one of C, D, E, F.
3713 for (int Half = 0; Half < 4; ++Half) {
3714 if (isSequentialOrUndefInRange(Mask, 0, HalfSize, Half*HalfSize)) {
3715 MatchA = true;
3716 break;
3717 }
3718 }
3719
3720 // Check if B comes from one of C, D, E, F.
3721 for (int Half = 0; Half < 4; ++Half) {
3722 if (isSequentialOrUndefInRange(Mask, HalfSize, HalfSize, Half*HalfSize)) {
3723 MatchB = true;
3724 break;
3725 }
3726 }
3727
3728 return MatchA && MatchB;
3729}
3730
Craig Topper70b883b2011-11-28 10:14:51 +00003731/// getShuffleVPERM2X128Immediate - Return the appropriate immediate to shuffle
3732/// the specified VECTOR_MASK mask with VPERM2F128/VPERM2I128 instructions.
Craig Topperd93e4c32011-12-11 19:12:35 +00003733static unsigned getShuffleVPERM2X128Immediate(ShuffleVectorSDNode *SVOp) {
Bruno Cardoso Lopes53cae132011-08-12 21:48:26 +00003734 EVT VT = SVOp->getValueType(0);
3735
3736 int HalfSize = VT.getVectorNumElements()/2;
3737
3738 int FstHalf = 0, SndHalf = 0;
3739 for (int i = 0; i < HalfSize; ++i) {
3740 if (SVOp->getMaskElt(i) > 0) {
3741 FstHalf = SVOp->getMaskElt(i)/HalfSize;
3742 break;
3743 }
3744 }
3745 for (int i = HalfSize; i < HalfSize*2; ++i) {
3746 if (SVOp->getMaskElt(i) > 0) {
3747 SndHalf = SVOp->getMaskElt(i)/HalfSize;
3748 break;
3749 }
3750 }
3751
3752 return (FstHalf | (SndHalf << 4));
3753}
3754
Craig Topper70b883b2011-11-28 10:14:51 +00003755/// isVPERMILPMask - Return true if the specified VECTOR_SHUFFLE operand
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00003756/// specifies a shuffle of elements that is suitable for input to VPERMILPD*.
3757/// Note that VPERMIL mask matching is different depending whether theunderlying
3758/// type is 32 or 64. In the VPERMILPS the high half of the mask should point
3759/// to the same elements of the low, but to the higher half of the source.
3760/// In VPERMILPD the two lanes could be shuffled independently of each other
3761/// with the same restriction that lanes can't be crossed.
Craig Topper70b883b2011-11-28 10:14:51 +00003762static bool isVPERMILPMask(const SmallVectorImpl<int> &Mask, EVT VT,
3763 bool HasAVX) {
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00003764 int NumElts = VT.getVectorNumElements();
3765 int NumLanes = VT.getSizeInBits()/128;
3766
Craig Topper70b883b2011-11-28 10:14:51 +00003767 if (!HasAVX)
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00003768 return false;
3769
Craig Topper70b883b2011-11-28 10:14:51 +00003770 // Only match 256-bit with 32/64-bit types
3771 if (VT.getSizeInBits() != 256 || (NumElts != 4 && NumElts != 8))
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00003772 return false;
3773
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00003774 int LaneSize = NumElts/NumLanes;
Craig Topper70b883b2011-11-28 10:14:51 +00003775 for (int l = 0; l != NumLanes; ++l) {
3776 int LaneStart = l*LaneSize;
3777 for (int i = 0; i != LaneSize; ++i) {
3778 if (!isUndefOrInRange(Mask[i+LaneStart], LaneStart, LaneStart+LaneSize))
3779 return false;
3780 if (NumElts == 4 || l == 0)
3781 continue;
3782 // VPERMILPS handling
3783 if (Mask[i] < 0)
3784 continue;
3785 if (!isUndefOrEqual(Mask[i+LaneStart], Mask[i]+LaneSize))
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00003786 return false;
3787 }
Bruno Cardoso Lopes65b74e12011-07-21 01:55:47 +00003788 }
3789
3790 return true;
3791}
3792
Craig Topper70b883b2011-11-28 10:14:51 +00003793/// getShuffleVPERMILPImmediate - Return the appropriate immediate to shuffle
3794/// the specified VECTOR_MASK mask with VPERMILPS/D* instructions.
Craig Topperd93e4c32011-12-11 19:12:35 +00003795static unsigned getShuffleVPERMILPImmediate(ShuffleVectorSDNode *SVOp) {
Bruno Cardoso Lopes65b74e12011-07-21 01:55:47 +00003796 EVT VT = SVOp->getValueType(0);
3797
3798 int NumElts = VT.getVectorNumElements();
3799 int NumLanes = VT.getSizeInBits()/128;
Bruno Cardoso Lopesdd635302011-07-29 01:31:15 +00003800 int LaneSize = NumElts/NumLanes;
Bruno Cardoso Lopes65b74e12011-07-21 01:55:47 +00003801
Bruno Cardoso Lopesdd635302011-07-29 01:31:15 +00003802 // Although the mask is equal for both lanes do it twice to get the cases
3803 // where a mask will match because the same mask element is undef on the
3804 // first half but valid on the second. This would get pathological cases
3805 // such as: shuffle <u, 0, 1, 2, 4, 4, 5, 6>, which is completely valid.
Craig Topper70b883b2011-11-28 10:14:51 +00003806 unsigned Shift = (LaneSize == 4) ? 2 : 1;
Bruno Cardoso Lopes65b74e12011-07-21 01:55:47 +00003807 unsigned Mask = 0;
Craig Topper70b883b2011-11-28 10:14:51 +00003808 for (int i = 0; i != NumElts; ++i) {
3809 int MaskElt = SVOp->getMaskElt(i);
3810 if (MaskElt < 0)
3811 continue;
3812 MaskElt %= LaneSize;
3813 unsigned Shamt = i;
3814 // VPERMILPSY, the mask of the first half must be equal to the second one
3815 if (NumElts == 8) Shamt %= LaneSize;
3816 Mask |= MaskElt << (Shamt*Shift);
Bruno Cardoso Lopes377baa52011-07-29 01:31:04 +00003817 }
Bruno Cardoso Lopes65b74e12011-07-21 01:55:47 +00003818
3819 return Mask;
3820}
3821
Evan Cheng017dcc62006-04-21 01:05:10 +00003822/// isCommutedMOVL - Returns true if the shuffle mask is except the reverse
3823/// of what x86 movss want. X86 movs requires the lowest element to be lowest
Evan Cheng39623da2006-04-20 08:58:49 +00003824/// element of vector 2 and the other elements to come from vector 1 in order.
Owen Andersone50ed302009-08-10 22:56:29 +00003825static bool isCommutedMOVLMask(const SmallVectorImpl<int> &Mask, EVT VT,
Nate Begeman9008ca62009-04-27 18:41:29 +00003826 bool V2IsSplat = false, bool V2IsUndef = false) {
3827 int NumOps = VT.getVectorNumElements();
Chris Lattner5a88b832007-02-25 07:10:00 +00003828 if (NumOps != 2 && NumOps != 4 && NumOps != 8 && NumOps != 16)
Evan Cheng39623da2006-04-20 08:58:49 +00003829 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003830
Nate Begeman9008ca62009-04-27 18:41:29 +00003831 if (!isUndefOrEqual(Mask[0], 0))
Evan Cheng39623da2006-04-20 08:58:49 +00003832 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003833
Nate Begeman9008ca62009-04-27 18:41:29 +00003834 for (int i = 1; i < NumOps; ++i)
3835 if (!(isUndefOrEqual(Mask[i], i+NumOps) ||
3836 (V2IsUndef && isUndefOrInRange(Mask[i], NumOps, NumOps*2)) ||
3837 (V2IsSplat && isUndefOrEqual(Mask[i], NumOps))))
Evan Cheng8cf723d2006-09-08 01:50:06 +00003838 return false;
Eric Christopherfd179292009-08-27 18:07:15 +00003839
Evan Cheng39623da2006-04-20 08:58:49 +00003840 return true;
3841}
3842
Nate Begeman9008ca62009-04-27 18:41:29 +00003843static bool isCommutedMOVL(ShuffleVectorSDNode *N, bool V2IsSplat = false,
Evan Cheng8cf723d2006-09-08 01:50:06 +00003844 bool V2IsUndef = false) {
Nate Begeman9008ca62009-04-27 18:41:29 +00003845 SmallVector<int, 8> M;
3846 N->getMask(M);
3847 return isCommutedMOVLMask(M, N->getValueType(0), V2IsSplat, V2IsUndef);
Evan Cheng39623da2006-04-20 08:58:49 +00003848}
3849
Evan Chengd9539472006-04-14 21:59:03 +00003850/// isMOVSHDUPMask - Return true if the specified VECTOR_SHUFFLE operand
3851/// specifies a shuffle of elements that is suitable for input to MOVSHDUP.
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00003852/// Masks to match: <1, 1, 3, 3> or <1, 1, 3, 3, 5, 5, 7, 7>
3853bool X86::isMOVSHDUPMask(ShuffleVectorSDNode *N,
3854 const X86Subtarget *Subtarget) {
Craig Topperc0d82852011-11-22 00:44:41 +00003855 if (!Subtarget->hasSSE3orAVX())
Evan Chengd9539472006-04-14 21:59:03 +00003856 return false;
3857
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00003858 // The second vector must be undef
3859 if (N->getOperand(1).getOpcode() != ISD::UNDEF)
3860 return false;
Evan Cheng57ebe9f2006-04-15 05:37:34 +00003861
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00003862 EVT VT = N->getValueType(0);
3863 unsigned NumElems = VT.getVectorNumElements();
3864
3865 if ((VT.getSizeInBits() == 128 && NumElems != 4) ||
3866 (VT.getSizeInBits() == 256 && NumElems != 8))
3867 return false;
3868
3869 // "i+1" is the value the indexed mask element must have
3870 for (unsigned i = 0; i < NumElems; i += 2)
3871 if (!isUndefOrEqual(N->getMaskElt(i), i+1) ||
3872 !isUndefOrEqual(N->getMaskElt(i+1), i+1))
Nate Begeman9008ca62009-04-27 18:41:29 +00003873 return false;
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00003874
3875 return true;
Evan Chengd9539472006-04-14 21:59:03 +00003876}
3877
3878/// isMOVSLDUPMask - Return true if the specified VECTOR_SHUFFLE operand
3879/// specifies a shuffle of elements that is suitable for input to MOVSLDUP.
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00003880/// Masks to match: <0, 0, 2, 2> or <0, 0, 2, 2, 4, 4, 6, 6>
3881bool X86::isMOVSLDUPMask(ShuffleVectorSDNode *N,
3882 const X86Subtarget *Subtarget) {
Craig Topperc0d82852011-11-22 00:44:41 +00003883 if (!Subtarget->hasSSE3orAVX())
Evan Chengd9539472006-04-14 21:59:03 +00003884 return false;
3885
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00003886 // The second vector must be undef
3887 if (N->getOperand(1).getOpcode() != ISD::UNDEF)
3888 return false;
3889
3890 EVT VT = N->getValueType(0);
3891 unsigned NumElems = VT.getVectorNumElements();
3892
3893 if ((VT.getSizeInBits() == 128 && NumElems != 4) ||
3894 (VT.getSizeInBits() == 256 && NumElems != 8))
3895 return false;
3896
3897 // "i" is the value the indexed mask element must have
3898 for (unsigned i = 0; i < NumElems; i += 2)
3899 if (!isUndefOrEqual(N->getMaskElt(i), i) ||
3900 !isUndefOrEqual(N->getMaskElt(i+1), i))
Nate Begeman9008ca62009-04-27 18:41:29 +00003901 return false;
Evan Cheng57ebe9f2006-04-15 05:37:34 +00003902
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00003903 return true;
Evan Chengd9539472006-04-14 21:59:03 +00003904}
3905
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00003906/// isMOVDDUPYMask - Return true if the specified VECTOR_SHUFFLE operand
3907/// specifies a shuffle of elements that is suitable for input to 256-bit
3908/// version of MOVDDUP.
Craig Topperbeabc6c2011-12-05 06:56:46 +00003909static bool isMOVDDUPYMask(const SmallVectorImpl<int> &Mask, EVT VT,
3910 bool HasAVX) {
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00003911 int NumElts = VT.getVectorNumElements();
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00003912
Craig Topperbeabc6c2011-12-05 06:56:46 +00003913 if (!HasAVX || VT.getSizeInBits() != 256 || NumElts != 4)
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00003914 return false;
3915
3916 for (int i = 0; i != NumElts/2; ++i)
Craig Topperbeabc6c2011-12-05 06:56:46 +00003917 if (!isUndefOrEqual(Mask[i], 0))
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00003918 return false;
3919 for (int i = NumElts/2; i != NumElts; ++i)
Craig Topperbeabc6c2011-12-05 06:56:46 +00003920 if (!isUndefOrEqual(Mask[i], NumElts/2))
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00003921 return false;
3922 return true;
3923}
3924
Evan Cheng0b457f02008-09-25 20:50:48 +00003925/// isMOVDDUPMask - Return true if the specified VECTOR_SHUFFLE operand
Bruno Cardoso Lopes06ef9232011-08-25 21:40:34 +00003926/// specifies a shuffle of elements that is suitable for input to 128-bit
3927/// version of MOVDDUP.
Nate Begeman9008ca62009-04-27 18:41:29 +00003928bool X86::isMOVDDUPMask(ShuffleVectorSDNode *N) {
Bruno Cardoso Lopes06ef9232011-08-25 21:40:34 +00003929 EVT VT = N->getValueType(0);
Eric Christopherfd179292009-08-27 18:07:15 +00003930
Bruno Cardoso Lopes06ef9232011-08-25 21:40:34 +00003931 if (VT.getSizeInBits() != 128)
3932 return false;
3933
3934 int e = VT.getVectorNumElements() / 2;
Nate Begeman9008ca62009-04-27 18:41:29 +00003935 for (int i = 0; i < e; ++i)
3936 if (!isUndefOrEqual(N->getMaskElt(i), i))
Evan Cheng0b457f02008-09-25 20:50:48 +00003937 return false;
Nate Begeman9008ca62009-04-27 18:41:29 +00003938 for (int i = 0; i < e; ++i)
3939 if (!isUndefOrEqual(N->getMaskElt(e+i), i))
Evan Cheng0b457f02008-09-25 20:50:48 +00003940 return false;
3941 return true;
3942}
3943
David Greenec38a03e2011-02-03 15:50:00 +00003944/// isVEXTRACTF128Index - Return true if the specified
3945/// EXTRACT_SUBVECTOR operand specifies a vector extract that is
3946/// suitable for input to VEXTRACTF128.
3947bool X86::isVEXTRACTF128Index(SDNode *N) {
3948 if (!isa<ConstantSDNode>(N->getOperand(1).getNode()))
3949 return false;
3950
3951 // The index should be aligned on a 128-bit boundary.
3952 uint64_t Index =
3953 cast<ConstantSDNode>(N->getOperand(1).getNode())->getZExtValue();
3954
3955 unsigned VL = N->getValueType(0).getVectorNumElements();
3956 unsigned VBits = N->getValueType(0).getSizeInBits();
3957 unsigned ElSize = VBits / VL;
3958 bool Result = (Index * ElSize) % 128 == 0;
3959
3960 return Result;
3961}
3962
David Greeneccacdc12011-02-04 16:08:29 +00003963/// isVINSERTF128Index - Return true if the specified INSERT_SUBVECTOR
3964/// operand specifies a subvector insert that is suitable for input to
3965/// VINSERTF128.
3966bool X86::isVINSERTF128Index(SDNode *N) {
3967 if (!isa<ConstantSDNode>(N->getOperand(2).getNode()))
3968 return false;
3969
3970 // The index should be aligned on a 128-bit boundary.
3971 uint64_t Index =
3972 cast<ConstantSDNode>(N->getOperand(2).getNode())->getZExtValue();
3973
3974 unsigned VL = N->getValueType(0).getVectorNumElements();
3975 unsigned VBits = N->getValueType(0).getSizeInBits();
3976 unsigned ElSize = VBits / VL;
3977 bool Result = (Index * ElSize) % 128 == 0;
3978
3979 return Result;
3980}
3981
Evan Cheng63d33002006-03-22 08:01:21 +00003982/// getShuffleSHUFImmediate - Return the appropriate immediate to shuffle
Nate Begemana09008b2009-10-19 02:17:23 +00003983/// the specified VECTOR_SHUFFLE mask with PSHUF* and SHUFP* instructions.
Evan Cheng63d33002006-03-22 08:01:21 +00003984unsigned X86::getShuffleSHUFImmediate(SDNode *N) {
Nate Begeman9008ca62009-04-27 18:41:29 +00003985 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(N);
3986 int NumOperands = SVOp->getValueType(0).getVectorNumElements();
3987
Evan Chengb9df0ca2006-03-22 02:53:00 +00003988 unsigned Shift = (NumOperands == 4) ? 2 : 1;
3989 unsigned Mask = 0;
Nate Begeman9008ca62009-04-27 18:41:29 +00003990 for (int i = 0; i < NumOperands; ++i) {
3991 int Val = SVOp->getMaskElt(NumOperands-i-1);
3992 if (Val < 0) Val = 0;
Evan Cheng14aed5e2006-03-24 01:18:28 +00003993 if (Val >= NumOperands) Val -= NumOperands;
Evan Cheng63d33002006-03-22 08:01:21 +00003994 Mask |= Val;
Evan Cheng36b27f32006-03-28 23:41:33 +00003995 if (i != NumOperands - 1)
3996 Mask <<= Shift;
3997 }
Evan Cheng63d33002006-03-22 08:01:21 +00003998 return Mask;
3999}
4000
Evan Cheng506d3df2006-03-29 23:07:14 +00004001/// getShufflePSHUFHWImmediate - Return the appropriate immediate to shuffle
Nate Begemana09008b2009-10-19 02:17:23 +00004002/// the specified VECTOR_SHUFFLE mask with the PSHUFHW instruction.
Evan Cheng506d3df2006-03-29 23:07:14 +00004003unsigned X86::getShufflePSHUFHWImmediate(SDNode *N) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004004 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(N);
Evan Cheng506d3df2006-03-29 23:07:14 +00004005 unsigned Mask = 0;
4006 // 8 nodes, but we only care about the last 4.
4007 for (unsigned i = 7; i >= 4; --i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004008 int Val = SVOp->getMaskElt(i);
4009 if (Val >= 0)
Mon P Wang7bcaefa2009-02-04 01:16:59 +00004010 Mask |= (Val - 4);
Evan Cheng506d3df2006-03-29 23:07:14 +00004011 if (i != 4)
4012 Mask <<= 2;
4013 }
Evan Cheng506d3df2006-03-29 23:07:14 +00004014 return Mask;
4015}
4016
4017/// getShufflePSHUFLWImmediate - Return the appropriate immediate to shuffle
Nate Begemana09008b2009-10-19 02:17:23 +00004018/// the specified VECTOR_SHUFFLE mask with the PSHUFLW instruction.
Evan Cheng506d3df2006-03-29 23:07:14 +00004019unsigned X86::getShufflePSHUFLWImmediate(SDNode *N) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004020 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(N);
Evan Cheng506d3df2006-03-29 23:07:14 +00004021 unsigned Mask = 0;
4022 // 8 nodes, but we only care about the first 4.
4023 for (int i = 3; i >= 0; --i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004024 int Val = SVOp->getMaskElt(i);
4025 if (Val >= 0)
4026 Mask |= Val;
Evan Cheng506d3df2006-03-29 23:07:14 +00004027 if (i != 0)
4028 Mask <<= 2;
4029 }
Evan Cheng506d3df2006-03-29 23:07:14 +00004030 return Mask;
4031}
4032
Nate Begemana09008b2009-10-19 02:17:23 +00004033/// getShufflePALIGNRImmediate - Return the appropriate immediate to shuffle
4034/// the specified VECTOR_SHUFFLE mask with the PALIGNR instruction.
Craig Topperd93e4c32011-12-11 19:12:35 +00004035static unsigned getShufflePALIGNRImmediate(ShuffleVectorSDNode *SVOp) {
4036 EVT VT = SVOp->getValueType(0);
4037 unsigned EltSize = VT.getVectorElementType().getSizeInBits() >> 3;
Nate Begemana09008b2009-10-19 02:17:23 +00004038 int Val = 0;
4039
4040 unsigned i, e;
Craig Topperd93e4c32011-12-11 19:12:35 +00004041 for (i = 0, e = VT.getVectorNumElements(); i != e; ++i) {
Nate Begemana09008b2009-10-19 02:17:23 +00004042 Val = SVOp->getMaskElt(i);
4043 if (Val >= 0)
4044 break;
4045 }
Eli Friedman63f8dde2011-07-25 21:36:45 +00004046 assert(Val - i > 0 && "PALIGNR imm should be positive");
Nate Begemana09008b2009-10-19 02:17:23 +00004047 return (Val - i) * EltSize;
4048}
4049
David Greenec38a03e2011-02-03 15:50:00 +00004050/// getExtractVEXTRACTF128Immediate - Return the appropriate immediate
4051/// to extract the specified EXTRACT_SUBVECTOR index with VEXTRACTF128
4052/// instructions.
4053unsigned X86::getExtractVEXTRACTF128Immediate(SDNode *N) {
4054 if (!isa<ConstantSDNode>(N->getOperand(1).getNode()))
4055 llvm_unreachable("Illegal extract subvector for VEXTRACTF128");
4056
4057 uint64_t Index =
4058 cast<ConstantSDNode>(N->getOperand(1).getNode())->getZExtValue();
4059
4060 EVT VecVT = N->getOperand(0).getValueType();
4061 EVT ElVT = VecVT.getVectorElementType();
4062
4063 unsigned NumElemsPerChunk = 128 / ElVT.getSizeInBits();
David Greenec38a03e2011-02-03 15:50:00 +00004064 return Index / NumElemsPerChunk;
4065}
4066
David Greeneccacdc12011-02-04 16:08:29 +00004067/// getInsertVINSERTF128Immediate - Return the appropriate immediate
4068/// to insert at the specified INSERT_SUBVECTOR index with VINSERTF128
4069/// instructions.
4070unsigned X86::getInsertVINSERTF128Immediate(SDNode *N) {
4071 if (!isa<ConstantSDNode>(N->getOperand(2).getNode()))
4072 llvm_unreachable("Illegal insert subvector for VINSERTF128");
4073
4074 uint64_t Index =
NAKAMURA Takumi27635382011-02-05 15:10:54 +00004075 cast<ConstantSDNode>(N->getOperand(2).getNode())->getZExtValue();
David Greeneccacdc12011-02-04 16:08:29 +00004076
4077 EVT VecVT = N->getValueType(0);
4078 EVT ElVT = VecVT.getVectorElementType();
4079
4080 unsigned NumElemsPerChunk = 128 / ElVT.getSizeInBits();
David Greeneccacdc12011-02-04 16:08:29 +00004081 return Index / NumElemsPerChunk;
4082}
4083
Evan Cheng37b73872009-07-30 08:33:02 +00004084/// isZeroNode - Returns true if Elt is a constant zero or a floating point
4085/// constant +0.0.
4086bool X86::isZeroNode(SDValue Elt) {
4087 return ((isa<ConstantSDNode>(Elt) &&
Dan Gohmane368b462010-06-18 14:22:04 +00004088 cast<ConstantSDNode>(Elt)->isNullValue()) ||
Evan Cheng37b73872009-07-30 08:33:02 +00004089 (isa<ConstantFPSDNode>(Elt) &&
4090 cast<ConstantFPSDNode>(Elt)->getValueAPF().isPosZero()));
4091}
4092
Nate Begeman9008ca62009-04-27 18:41:29 +00004093/// CommuteVectorShuffle - Swap vector_shuffle operands as well as values in
4094/// their permute mask.
4095static SDValue CommuteVectorShuffle(ShuffleVectorSDNode *SVOp,
4096 SelectionDAG &DAG) {
Owen Andersone50ed302009-08-10 22:56:29 +00004097 EVT VT = SVOp->getValueType(0);
Nate Begeman5a5ca152009-04-29 05:20:52 +00004098 unsigned NumElems = VT.getVectorNumElements();
Nate Begeman9008ca62009-04-27 18:41:29 +00004099 SmallVector<int, 8> MaskVec;
Eric Christopherfd179292009-08-27 18:07:15 +00004100
Nate Begeman5a5ca152009-04-29 05:20:52 +00004101 for (unsigned i = 0; i != NumElems; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004102 int idx = SVOp->getMaskElt(i);
4103 if (idx < 0)
4104 MaskVec.push_back(idx);
Nate Begeman5a5ca152009-04-29 05:20:52 +00004105 else if (idx < (int)NumElems)
Nate Begeman9008ca62009-04-27 18:41:29 +00004106 MaskVec.push_back(idx + NumElems);
Evan Cheng5ced1d82006-04-06 23:23:56 +00004107 else
Nate Begeman9008ca62009-04-27 18:41:29 +00004108 MaskVec.push_back(idx - NumElems);
Evan Cheng5ced1d82006-04-06 23:23:56 +00004109 }
Nate Begeman9008ca62009-04-27 18:41:29 +00004110 return DAG.getVectorShuffle(VT, SVOp->getDebugLoc(), SVOp->getOperand(1),
4111 SVOp->getOperand(0), &MaskVec[0]);
Evan Cheng5ced1d82006-04-06 23:23:56 +00004112}
4113
Evan Cheng533a0aa2006-04-19 20:35:22 +00004114/// ShouldXformToMOVHLPS - Return true if the node should be transformed to
4115/// match movhlps. The lower half elements should come from upper half of
4116/// V1 (and in order), and the upper half elements should come from the upper
Anton Korobeynikov12c49af2006-11-21 00:01:06 +00004117/// half of V2 (and in order).
Nate Begeman9008ca62009-04-27 18:41:29 +00004118static bool ShouldXformToMOVHLPS(ShuffleVectorSDNode *Op) {
Bruno Cardoso Lopes59353b42011-08-11 18:59:13 +00004119 EVT VT = Op->getValueType(0);
4120 if (VT.getSizeInBits() != 128)
4121 return false;
4122 if (VT.getVectorNumElements() != 4)
Evan Cheng533a0aa2006-04-19 20:35:22 +00004123 return false;
4124 for (unsigned i = 0, e = 2; i != e; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00004125 if (!isUndefOrEqual(Op->getMaskElt(i), i+2))
Evan Cheng533a0aa2006-04-19 20:35:22 +00004126 return false;
4127 for (unsigned i = 2; i != 4; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00004128 if (!isUndefOrEqual(Op->getMaskElt(i), i+4))
Evan Cheng533a0aa2006-04-19 20:35:22 +00004129 return false;
4130 return true;
4131}
4132
Evan Cheng5ced1d82006-04-06 23:23:56 +00004133/// isScalarLoadToVector - Returns true if the node is a scalar load that
Evan Cheng7e2ff772008-05-08 00:57:18 +00004134/// is promoted to a vector. It also returns the LoadSDNode by reference if
4135/// required.
4136static bool isScalarLoadToVector(SDNode *N, LoadSDNode **LD = NULL) {
Evan Cheng0b457f02008-09-25 20:50:48 +00004137 if (N->getOpcode() != ISD::SCALAR_TO_VECTOR)
4138 return false;
4139 N = N->getOperand(0).getNode();
4140 if (!ISD::isNON_EXTLoad(N))
4141 return false;
4142 if (LD)
4143 *LD = cast<LoadSDNode>(N);
4144 return true;
Evan Cheng5ced1d82006-04-06 23:23:56 +00004145}
4146
Dan Gohman65fd6562011-11-03 21:49:52 +00004147// Test whether the given value is a vector value which will be legalized
4148// into a load.
4149static bool WillBeConstantPoolLoad(SDNode *N) {
4150 if (N->getOpcode() != ISD::BUILD_VECTOR)
4151 return false;
4152
4153 // Check for any non-constant elements.
4154 for (unsigned i = 0, e = N->getNumOperands(); i != e; ++i)
4155 switch (N->getOperand(i).getNode()->getOpcode()) {
4156 case ISD::UNDEF:
4157 case ISD::ConstantFP:
4158 case ISD::Constant:
4159 break;
4160 default:
4161 return false;
4162 }
4163
4164 // Vectors of all-zeros and all-ones are materialized with special
4165 // instructions rather than being loaded.
4166 return !ISD::isBuildVectorAllZeros(N) &&
4167 !ISD::isBuildVectorAllOnes(N);
4168}
4169
Evan Cheng533a0aa2006-04-19 20:35:22 +00004170/// ShouldXformToMOVLP{S|D} - Return true if the node should be transformed to
4171/// match movlp{s|d}. The lower half elements should come from lower half of
4172/// V1 (and in order), and the upper half elements should come from the upper
4173/// half of V2 (and in order). And since V1 will become the source of the
4174/// MOVLP, it must be either a vector load or a scalar load to vector.
Nate Begeman9008ca62009-04-27 18:41:29 +00004175static bool ShouldXformToMOVLP(SDNode *V1, SDNode *V2,
4176 ShuffleVectorSDNode *Op) {
Bruno Cardoso Lopes59353b42011-08-11 18:59:13 +00004177 EVT VT = Op->getValueType(0);
4178 if (VT.getSizeInBits() != 128)
4179 return false;
4180
Evan Cheng466685d2006-10-09 20:57:25 +00004181 if (!ISD::isNON_EXTLoad(V1) && !isScalarLoadToVector(V1))
Evan Cheng533a0aa2006-04-19 20:35:22 +00004182 return false;
Evan Cheng23425f52006-10-09 21:39:25 +00004183 // Is V2 is a vector load, don't do this transformation. We will try to use
4184 // load folding shufps op.
Dan Gohman65fd6562011-11-03 21:49:52 +00004185 if (ISD::isNON_EXTLoad(V2) || WillBeConstantPoolLoad(V2))
Evan Cheng23425f52006-10-09 21:39:25 +00004186 return false;
Evan Cheng5ced1d82006-04-06 23:23:56 +00004187
Bruno Cardoso Lopes59353b42011-08-11 18:59:13 +00004188 unsigned NumElems = VT.getVectorNumElements();
Eric Christopherfd179292009-08-27 18:07:15 +00004189
Evan Cheng533a0aa2006-04-19 20:35:22 +00004190 if (NumElems != 2 && NumElems != 4)
4191 return false;
Nate Begeman5a5ca152009-04-29 05:20:52 +00004192 for (unsigned i = 0, e = NumElems/2; i != e; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00004193 if (!isUndefOrEqual(Op->getMaskElt(i), i))
Evan Cheng533a0aa2006-04-19 20:35:22 +00004194 return false;
Nate Begeman5a5ca152009-04-29 05:20:52 +00004195 for (unsigned i = NumElems/2; i != NumElems; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00004196 if (!isUndefOrEqual(Op->getMaskElt(i), i+NumElems))
Evan Cheng533a0aa2006-04-19 20:35:22 +00004197 return false;
4198 return true;
Evan Cheng5ced1d82006-04-06 23:23:56 +00004199}
4200
Evan Cheng39623da2006-04-20 08:58:49 +00004201/// isSplatVector - Returns true if N is a BUILD_VECTOR node whose elements are
4202/// all the same.
4203static bool isSplatVector(SDNode *N) {
4204 if (N->getOpcode() != ISD::BUILD_VECTOR)
4205 return false;
Evan Cheng5ced1d82006-04-06 23:23:56 +00004206
Dan Gohman475871a2008-07-27 21:46:04 +00004207 SDValue SplatValue = N->getOperand(0);
Evan Cheng39623da2006-04-20 08:58:49 +00004208 for (unsigned i = 1, e = N->getNumOperands(); i != e; ++i)
4209 if (N->getOperand(i) != SplatValue)
Evan Cheng5ced1d82006-04-06 23:23:56 +00004210 return false;
4211 return true;
4212}
4213
Evan Cheng213d2cf2007-05-17 18:45:50 +00004214/// isZeroShuffle - Returns true if N is a VECTOR_SHUFFLE that can be resolved
Eric Christopherfd179292009-08-27 18:07:15 +00004215/// to an zero vector.
Nate Begeman5a5ca152009-04-29 05:20:52 +00004216/// FIXME: move to dag combiner / method on ShuffleVectorSDNode
Nate Begeman9008ca62009-04-27 18:41:29 +00004217static bool isZeroShuffle(ShuffleVectorSDNode *N) {
Dan Gohman475871a2008-07-27 21:46:04 +00004218 SDValue V1 = N->getOperand(0);
4219 SDValue V2 = N->getOperand(1);
Nate Begeman5a5ca152009-04-29 05:20:52 +00004220 unsigned NumElems = N->getValueType(0).getVectorNumElements();
4221 for (unsigned i = 0; i != NumElems; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004222 int Idx = N->getMaskElt(i);
Nate Begeman5a5ca152009-04-29 05:20:52 +00004223 if (Idx >= (int)NumElems) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004224 unsigned Opc = V2.getOpcode();
Rafael Espindola15684b22009-04-24 12:40:33 +00004225 if (Opc == ISD::UNDEF || ISD::isBuildVectorAllZeros(V2.getNode()))
4226 continue;
Evan Cheng37b73872009-07-30 08:33:02 +00004227 if (Opc != ISD::BUILD_VECTOR ||
4228 !X86::isZeroNode(V2.getOperand(Idx-NumElems)))
Nate Begeman9008ca62009-04-27 18:41:29 +00004229 return false;
4230 } else if (Idx >= 0) {
4231 unsigned Opc = V1.getOpcode();
4232 if (Opc == ISD::UNDEF || ISD::isBuildVectorAllZeros(V1.getNode()))
4233 continue;
Evan Cheng37b73872009-07-30 08:33:02 +00004234 if (Opc != ISD::BUILD_VECTOR ||
4235 !X86::isZeroNode(V1.getOperand(Idx)))
Chris Lattner8a594482007-11-25 00:24:49 +00004236 return false;
Evan Cheng213d2cf2007-05-17 18:45:50 +00004237 }
4238 }
4239 return true;
4240}
4241
4242/// getZeroVector - Returns a vector of specified type with all zero elements.
4243///
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00004244static SDValue getZeroVector(EVT VT, bool HasXMMInt, SelectionDAG &DAG,
Dale Johannesenace16102009-02-03 19:33:06 +00004245 DebugLoc dl) {
Duncan Sands83ec4b62008-06-06 12:08:01 +00004246 assert(VT.isVector() && "Expected a vector type");
Scott Michelfdc40a02009-02-17 22:15:04 +00004247
Dale Johannesen0488fb62010-09-30 23:57:10 +00004248 // Always build SSE zero vectors as <4 x i32> bitcasted
Bruno Cardoso Lopes8c05a852010-08-12 02:06:36 +00004249 // to their dest type. This ensures they get CSE'd.
Dan Gohman475871a2008-07-27 21:46:04 +00004250 SDValue Vec;
Dale Johannesen0488fb62010-09-30 23:57:10 +00004251 if (VT.getSizeInBits() == 128) { // SSE
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00004252 if (HasXMMInt) { // SSE2
Bruno Cardoso Lopes8c05a852010-08-12 02:06:36 +00004253 SDValue Cst = DAG.getTargetConstant(0, MVT::i32);
4254 Vec = DAG.getNode(ISD::BUILD_VECTOR, dl, MVT::v4i32, Cst, Cst, Cst, Cst);
4255 } else { // SSE1
4256 SDValue Cst = DAG.getTargetConstantFP(+0.0, MVT::f32);
4257 Vec = DAG.getNode(ISD::BUILD_VECTOR, dl, MVT::v4f32, Cst, Cst, Cst, Cst);
4258 }
4259 } else if (VT.getSizeInBits() == 256) { // AVX
4260 // 256-bit logic and arithmetic instructions in AVX are
4261 // all floating-point, no support for integer ops. Default
4262 // to emitting fp zeroed vectors then.
Owen Anderson825b72b2009-08-11 20:47:22 +00004263 SDValue Cst = DAG.getTargetConstantFP(+0.0, MVT::f32);
Bruno Cardoso Lopes8c05a852010-08-12 02:06:36 +00004264 SDValue Ops[] = { Cst, Cst, Cst, Cst, Cst, Cst, Cst, Cst };
4265 Vec = DAG.getNode(ISD::BUILD_VECTOR, dl, MVT::v8f32, Ops, 8);
Evan Chengf0df0312008-05-15 08:39:06 +00004266 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00004267 return DAG.getNode(ISD::BITCAST, dl, VT, Vec);
Evan Cheng213d2cf2007-05-17 18:45:50 +00004268}
4269
Chris Lattner8a594482007-11-25 00:24:49 +00004270/// getOnesVector - Returns a vector of specified type with all bits set.
Craig Topper745a86b2011-11-19 22:34:59 +00004271/// Always build ones vectors as <4 x i32> or <8 x i32>. For 256-bit types with
4272/// no AVX2 supprt, use two <4 x i32> inserted in a <8 x i32> appropriately.
4273/// Then bitcast to their original type, ensuring they get CSE'd.
4274static SDValue getOnesVector(EVT VT, bool HasAVX2, SelectionDAG &DAG,
4275 DebugLoc dl) {
Duncan Sands83ec4b62008-06-06 12:08:01 +00004276 assert(VT.isVector() && "Expected a vector type");
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00004277 assert((VT.is128BitVector() || VT.is256BitVector())
4278 && "Expected a 128-bit or 256-bit vector type");
Scott Michelfdc40a02009-02-17 22:15:04 +00004279
Owen Anderson825b72b2009-08-11 20:47:22 +00004280 SDValue Cst = DAG.getTargetConstant(~0U, MVT::i32);
Craig Topper745a86b2011-11-19 22:34:59 +00004281 SDValue Vec;
4282 if (VT.getSizeInBits() == 256) {
4283 if (HasAVX2) { // AVX2
4284 SDValue Ops[] = { Cst, Cst, Cst, Cst, Cst, Cst, Cst, Cst };
4285 Vec = DAG.getNode(ISD::BUILD_VECTOR, dl, MVT::v8i32, Ops, 8);
4286 } else { // AVX
4287 Vec = DAG.getNode(ISD::BUILD_VECTOR, dl, MVT::v4i32, Cst, Cst, Cst, Cst);
4288 SDValue InsV = Insert128BitVector(DAG.getNode(ISD::UNDEF, dl, MVT::v8i32),
4289 Vec, DAG.getConstant(0, MVT::i32), DAG, dl);
4290 Vec = Insert128BitVector(InsV, Vec,
4291 DAG.getConstant(4 /* NumElems/2 */, MVT::i32), DAG, dl);
4292 }
4293 } else {
4294 Vec = DAG.getNode(ISD::BUILD_VECTOR, dl, MVT::v4i32, Cst, Cst, Cst, Cst);
Bruno Cardoso Lopes863bd9d2011-07-25 23:05:32 +00004295 }
4296
Wesley Peckbf17cfa2010-11-23 03:31:01 +00004297 return DAG.getNode(ISD::BITCAST, dl, VT, Vec);
Chris Lattner8a594482007-11-25 00:24:49 +00004298}
4299
Evan Cheng39623da2006-04-20 08:58:49 +00004300/// NormalizeMask - V2 is a splat, modify the mask (if needed) so all elements
4301/// that point to V2 points to its first element.
Nate Begeman9008ca62009-04-27 18:41:29 +00004302static SDValue NormalizeMask(ShuffleVectorSDNode *SVOp, SelectionDAG &DAG) {
Owen Andersone50ed302009-08-10 22:56:29 +00004303 EVT VT = SVOp->getValueType(0);
Nate Begeman5a5ca152009-04-29 05:20:52 +00004304 unsigned NumElems = VT.getVectorNumElements();
Eric Christopherfd179292009-08-27 18:07:15 +00004305
Evan Cheng39623da2006-04-20 08:58:49 +00004306 bool Changed = false;
Nate Begeman9008ca62009-04-27 18:41:29 +00004307 SmallVector<int, 8> MaskVec;
4308 SVOp->getMask(MaskVec);
Eric Christopherfd179292009-08-27 18:07:15 +00004309
Nate Begeman5a5ca152009-04-29 05:20:52 +00004310 for (unsigned i = 0; i != NumElems; ++i) {
4311 if (MaskVec[i] > (int)NumElems) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004312 MaskVec[i] = NumElems;
4313 Changed = true;
Evan Cheng39623da2006-04-20 08:58:49 +00004314 }
Evan Cheng39623da2006-04-20 08:58:49 +00004315 }
Evan Cheng39623da2006-04-20 08:58:49 +00004316 if (Changed)
Nate Begeman9008ca62009-04-27 18:41:29 +00004317 return DAG.getVectorShuffle(VT, SVOp->getDebugLoc(), SVOp->getOperand(0),
4318 SVOp->getOperand(1), &MaskVec[0]);
4319 return SDValue(SVOp, 0);
Evan Cheng39623da2006-04-20 08:58:49 +00004320}
4321
Evan Cheng017dcc62006-04-21 01:05:10 +00004322/// getMOVLMask - Returns a vector_shuffle mask for an movs{s|d}, movd
4323/// operation of specified width.
Owen Andersone50ed302009-08-10 22:56:29 +00004324static SDValue getMOVL(SelectionDAG &DAG, DebugLoc dl, EVT VT, SDValue V1,
Nate Begeman9008ca62009-04-27 18:41:29 +00004325 SDValue V2) {
4326 unsigned NumElems = VT.getVectorNumElements();
4327 SmallVector<int, 8> Mask;
4328 Mask.push_back(NumElems);
Evan Cheng39623da2006-04-20 08:58:49 +00004329 for (unsigned i = 1; i != NumElems; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00004330 Mask.push_back(i);
4331 return DAG.getVectorShuffle(VT, dl, V1, V2, &Mask[0]);
Evan Cheng39623da2006-04-20 08:58:49 +00004332}
4333
Nate Begeman9008ca62009-04-27 18:41:29 +00004334/// getUnpackl - Returns a vector_shuffle node for an unpackl operation.
Owen Andersone50ed302009-08-10 22:56:29 +00004335static SDValue getUnpackl(SelectionDAG &DAG, DebugLoc dl, EVT VT, SDValue V1,
Nate Begeman9008ca62009-04-27 18:41:29 +00004336 SDValue V2) {
4337 unsigned NumElems = VT.getVectorNumElements();
4338 SmallVector<int, 8> Mask;
Evan Chengc575ca22006-04-17 20:43:08 +00004339 for (unsigned i = 0, e = NumElems/2; i != e; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004340 Mask.push_back(i);
4341 Mask.push_back(i + NumElems);
Evan Chengc575ca22006-04-17 20:43:08 +00004342 }
Nate Begeman9008ca62009-04-27 18:41:29 +00004343 return DAG.getVectorShuffle(VT, dl, V1, V2, &Mask[0]);
Evan Chengc575ca22006-04-17 20:43:08 +00004344}
4345
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004346/// getUnpackh - Returns a vector_shuffle node for an unpackh operation.
Owen Andersone50ed302009-08-10 22:56:29 +00004347static SDValue getUnpackh(SelectionDAG &DAG, DebugLoc dl, EVT VT, SDValue V1,
Nate Begeman9008ca62009-04-27 18:41:29 +00004348 SDValue V2) {
4349 unsigned NumElems = VT.getVectorNumElements();
Evan Cheng39623da2006-04-20 08:58:49 +00004350 unsigned Half = NumElems/2;
Nate Begeman9008ca62009-04-27 18:41:29 +00004351 SmallVector<int, 8> Mask;
Evan Cheng39623da2006-04-20 08:58:49 +00004352 for (unsigned i = 0; i != Half; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00004353 Mask.push_back(i + Half);
4354 Mask.push_back(i + NumElems + Half);
Evan Cheng39623da2006-04-20 08:58:49 +00004355 }
Nate Begeman9008ca62009-04-27 18:41:29 +00004356 return DAG.getVectorShuffle(VT, dl, V1, V2, &Mask[0]);
Chris Lattner62098042008-03-09 01:05:04 +00004357}
4358
Bruno Cardoso Lopes5f1d8ab2011-08-11 02:49:44 +00004359// PromoteSplati8i16 - All i16 and i8 vector types can't be used directly by
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004360// a generic shuffle instruction because the target has no such instructions.
4361// Generate shuffles which repeat i16 and i8 several times until they can be
4362// represented by v4f32 and then be manipulated by target suported shuffles.
Bruno Cardoso Lopes5f1d8ab2011-08-11 02:49:44 +00004363static SDValue PromoteSplati8i16(SDValue V, SelectionDAG &DAG, int &EltNo) {
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004364 EVT VT = V.getValueType();
Nate Begeman9008ca62009-04-27 18:41:29 +00004365 int NumElems = VT.getVectorNumElements();
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004366 DebugLoc dl = V.getDebugLoc();
Rafael Espindola15684b22009-04-24 12:40:33 +00004367
Nate Begeman9008ca62009-04-27 18:41:29 +00004368 while (NumElems > 4) {
4369 if (EltNo < NumElems/2) {
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004370 V = getUnpackl(DAG, dl, VT, V, V);
Nate Begeman9008ca62009-04-27 18:41:29 +00004371 } else {
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004372 V = getUnpackh(DAG, dl, VT, V, V);
Nate Begeman9008ca62009-04-27 18:41:29 +00004373 EltNo -= NumElems/2;
4374 }
4375 NumElems >>= 1;
4376 }
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004377 return V;
4378}
Eric Christopherfd179292009-08-27 18:07:15 +00004379
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004380/// getLegalSplat - Generate a legal splat with supported x86 shuffles
4381static SDValue getLegalSplat(SelectionDAG &DAG, SDValue V, int EltNo) {
4382 EVT VT = V.getValueType();
4383 DebugLoc dl = V.getDebugLoc();
4384 assert((VT.getSizeInBits() == 128 || VT.getSizeInBits() == 256)
4385 && "Vector size not supported");
4386
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00004387 if (VT.getSizeInBits() == 128) {
4388 V = DAG.getNode(ISD::BITCAST, dl, MVT::v4f32, V);
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004389 int SplatMask[4] = { EltNo, EltNo, EltNo, EltNo };
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00004390 V = DAG.getVectorShuffle(MVT::v4f32, dl, V, DAG.getUNDEF(MVT::v4f32),
4391 &SplatMask[0]);
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004392 } else {
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00004393 // To use VPERMILPS to splat scalars, the second half of indicies must
4394 // refer to the higher part, which is a duplication of the lower one,
4395 // because VPERMILPS can only handle in-lane permutations.
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004396 int SplatMask[8] = { EltNo, EltNo, EltNo, EltNo,
4397 EltNo+4, EltNo+4, EltNo+4, EltNo+4 };
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00004398
4399 V = DAG.getNode(ISD::BITCAST, dl, MVT::v8f32, V);
4400 V = DAG.getVectorShuffle(MVT::v8f32, dl, V, DAG.getUNDEF(MVT::v8f32),
4401 &SplatMask[0]);
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004402 }
4403
4404 return DAG.getNode(ISD::BITCAST, dl, VT, V);
4405}
4406
Bruno Cardoso Lopes8a5b2622011-08-17 02:29:13 +00004407/// PromoteSplat - Splat is promoted to target supported vector shuffles.
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004408static SDValue PromoteSplat(ShuffleVectorSDNode *SV, SelectionDAG &DAG) {
4409 EVT SrcVT = SV->getValueType(0);
4410 SDValue V1 = SV->getOperand(0);
4411 DebugLoc dl = SV->getDebugLoc();
4412
4413 int EltNo = SV->getSplatIndex();
4414 int NumElems = SrcVT.getVectorNumElements();
4415 unsigned Size = SrcVT.getSizeInBits();
4416
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00004417 assert(((Size == 128 && NumElems > 4) || Size == 256) &&
4418 "Unknown how to promote splat for type");
4419
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004420 // Extract the 128-bit part containing the splat element and update
4421 // the splat element index when it refers to the higher register.
4422 if (Size == 256) {
4423 unsigned Idx = (EltNo > NumElems/2) ? NumElems/2 : 0;
4424 V1 = Extract128BitVector(V1, DAG.getConstant(Idx, MVT::i32), DAG, dl);
4425 if (Idx > 0)
4426 EltNo -= NumElems/2;
4427 }
4428
Bruno Cardoso Lopes8a5b2622011-08-17 02:29:13 +00004429 // All i16 and i8 vector types can't be used directly by a generic shuffle
4430 // instruction because the target has no such instruction. Generate shuffles
4431 // which repeat i16 and i8 several times until they fit in i32, and then can
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00004432 // be manipulated by target suported shuffles.
Bruno Cardoso Lopes5f1d8ab2011-08-11 02:49:44 +00004433 EVT EltVT = SrcVT.getVectorElementType();
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00004434 if (EltVT == MVT::i8 || EltVT == MVT::i16)
Bruno Cardoso Lopes5f1d8ab2011-08-11 02:49:44 +00004435 V1 = PromoteSplati8i16(V1, DAG, EltNo);
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004436
4437 // Recreate the 256-bit vector and place the same 128-bit vector
4438 // into the low and high part. This is necessary because we want
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00004439 // to use VPERM* to shuffle the vectors
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00004440 if (Size == 256) {
4441 SDValue InsV = Insert128BitVector(DAG.getUNDEF(SrcVT), V1,
4442 DAG.getConstant(0, MVT::i32), DAG, dl);
4443 V1 = Insert128BitVector(InsV, V1,
4444 DAG.getConstant(NumElems/2, MVT::i32), DAG, dl);
4445 }
4446
4447 return getLegalSplat(DAG, V1, EltNo);
Evan Chengc575ca22006-04-17 20:43:08 +00004448}
4449
Evan Chengba05f722006-04-21 23:03:30 +00004450/// getShuffleVectorZeroOrUndef - Return a vector_shuffle of the specified
Chris Lattner8a594482007-11-25 00:24:49 +00004451/// vector of zero or undef vector. This produces a shuffle where the low
4452/// element of V2 is swizzled into the zero/undef vector, landing at element
4453/// Idx. This produces a shuffle mask like 4,1,2,3 (idx=0) or 0,1,2,4 (idx=3).
Dan Gohman475871a2008-07-27 21:46:04 +00004454static SDValue getShuffleVectorZeroOrUndef(SDValue V2, unsigned Idx,
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00004455 bool isZero, bool HasXMMInt,
4456 SelectionDAG &DAG) {
Owen Andersone50ed302009-08-10 22:56:29 +00004457 EVT VT = V2.getValueType();
Dan Gohman475871a2008-07-27 21:46:04 +00004458 SDValue V1 = isZero
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00004459 ? getZeroVector(VT, HasXMMInt, DAG, V2.getDebugLoc()) : DAG.getUNDEF(VT);
Nate Begeman9008ca62009-04-27 18:41:29 +00004460 unsigned NumElems = VT.getVectorNumElements();
4461 SmallVector<int, 16> MaskVec;
Chris Lattner8a594482007-11-25 00:24:49 +00004462 for (unsigned i = 0; i != NumElems; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00004463 // If this is the insertion idx, put the low elt of V2 here.
4464 MaskVec.push_back(i == Idx ? NumElems : i);
4465 return DAG.getVectorShuffle(VT, V2.getDebugLoc(), V1, V2, &MaskVec[0]);
Evan Cheng017dcc62006-04-21 01:05:10 +00004466}
4467
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004468/// getShuffleScalarElt - Returns the scalar element that will make up the ith
4469/// element of the result of the vector shuffle.
Benjamin Kramer050db522011-03-26 12:38:19 +00004470static SDValue getShuffleScalarElt(SDNode *N, int Index, SelectionDAG &DAG,
4471 unsigned Depth) {
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004472 if (Depth == 6)
4473 return SDValue(); // Limit search depth.
4474
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004475 SDValue V = SDValue(N, 0);
4476 EVT VT = V.getValueType();
4477 unsigned Opcode = V.getOpcode();
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004478
4479 // Recurse into ISD::VECTOR_SHUFFLE node to find scalars.
4480 if (const ShuffleVectorSDNode *SV = dyn_cast<ShuffleVectorSDNode>(N)) {
4481 Index = SV->getMaskElt(Index);
4482
4483 if (Index < 0)
4484 return DAG.getUNDEF(VT.getVectorElementType());
4485
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00004486 int NumElems = VT.getVectorNumElements();
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004487 SDValue NewV = (Index < NumElems) ? SV->getOperand(0) : SV->getOperand(1);
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004488 return getShuffleScalarElt(NewV.getNode(), Index % NumElems, DAG, Depth+1);
Evan Chengf26ffe92008-05-29 08:22:04 +00004489 }
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004490
4491 // Recurse into target specific vector shuffles to find scalars.
4492 if (isTargetShuffle(Opcode)) {
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004493 int NumElems = VT.getVectorNumElements();
4494 SmallVector<unsigned, 16> ShuffleMask;
4495 SDValue ImmN;
4496
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004497 switch(Opcode) {
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004498 case X86ISD::SHUFPS:
4499 case X86ISD::SHUFPD:
4500 ImmN = N->getOperand(N->getNumOperands()-1);
Craig Topper36e36ac2011-11-29 07:49:05 +00004501 DecodeSHUFPMask(VT, cast<ConstantSDNode>(ImmN)->getZExtValue(),
4502 ShuffleMask);
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004503 break;
Craig Topper34671b82011-12-06 08:21:25 +00004504 case X86ISD::UNPCKH:
Craig Topper3d8c2ce2011-12-06 05:31:16 +00004505 DecodeUNPCKHMask(VT, ShuffleMask);
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004506 break;
Craig Topper34671b82011-12-06 08:21:25 +00004507 case X86ISD::UNPCKL:
Craig Topper3d8c2ce2011-12-06 05:31:16 +00004508 DecodeUNPCKLMask(VT, ShuffleMask);
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004509 break;
4510 case X86ISD::MOVHLPS:
4511 DecodeMOVHLPSMask(NumElems, ShuffleMask);
4512 break;
4513 case X86ISD::MOVLHPS:
4514 DecodeMOVLHPSMask(NumElems, ShuffleMask);
4515 break;
4516 case X86ISD::PSHUFD:
4517 ImmN = N->getOperand(N->getNumOperands()-1);
4518 DecodePSHUFMask(NumElems,
4519 cast<ConstantSDNode>(ImmN)->getZExtValue(),
4520 ShuffleMask);
4521 break;
4522 case X86ISD::PSHUFHW:
4523 ImmN = N->getOperand(N->getNumOperands()-1);
4524 DecodePSHUFHWMask(cast<ConstantSDNode>(ImmN)->getZExtValue(),
4525 ShuffleMask);
4526 break;
4527 case X86ISD::PSHUFLW:
4528 ImmN = N->getOperand(N->getNumOperands()-1);
4529 DecodePSHUFLWMask(cast<ConstantSDNode>(ImmN)->getZExtValue(),
4530 ShuffleMask);
4531 break;
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004532 case X86ISD::MOVSS:
Bruno Cardoso Lopes20a07f42010-08-31 02:26:40 +00004533 case X86ISD::MOVSD: {
4534 // The index 0 always comes from the first element of the second source,
4535 // this is why MOVSS and MOVSD are used in the first place. The other
4536 // elements come from the other positions of the first source vector.
4537 unsigned OpNum = (Index == 0) ? 1 : 0;
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004538 return getShuffleScalarElt(V.getOperand(OpNum).getNode(), Index, DAG,
4539 Depth+1);
Bruno Cardoso Lopes20a07f42010-08-31 02:26:40 +00004540 }
Craig Topper316cd2a2011-11-30 06:25:25 +00004541 case X86ISD::VPERMILP:
Bruno Cardoso Lopes65b74e12011-07-21 01:55:47 +00004542 ImmN = N->getOperand(N->getNumOperands()-1);
Craig Topper316cd2a2011-11-30 06:25:25 +00004543 DecodeVPERMILPMask(VT, cast<ConstantSDNode>(ImmN)->getZExtValue(),
Bruno Cardoso Lopes2eb4c2b2011-07-29 01:31:11 +00004544 ShuffleMask);
4545 break;
Craig Topperec24e612011-11-30 07:47:51 +00004546 case X86ISD::VPERM2X128:
Bruno Cardoso Lopes53cae132011-08-12 21:48:26 +00004547 ImmN = N->getOperand(N->getNumOperands()-1);
4548 DecodeVPERM2F128Mask(VT, cast<ConstantSDNode>(ImmN)->getZExtValue(),
4549 ShuffleMask);
4550 break;
Eli Friedman106f6e72011-09-10 02:01:42 +00004551 case X86ISD::MOVDDUP:
4552 case X86ISD::MOVLHPD:
4553 case X86ISD::MOVLPD:
4554 case X86ISD::MOVLPS:
4555 case X86ISD::MOVSHDUP:
4556 case X86ISD::MOVSLDUP:
4557 case X86ISD::PALIGN:
4558 return SDValue(); // Not yet implemented.
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004559 default:
Eli Friedman106f6e72011-09-10 02:01:42 +00004560 assert(0 && "unknown target shuffle node");
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004561 return SDValue();
4562 }
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004563
4564 Index = ShuffleMask[Index];
4565 if (Index < 0)
4566 return DAG.getUNDEF(VT.getVectorElementType());
4567
4568 SDValue NewV = (Index < NumElems) ? N->getOperand(0) : N->getOperand(1);
4569 return getShuffleScalarElt(NewV.getNode(), Index % NumElems, DAG,
4570 Depth+1);
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004571 }
4572
4573 // Actual nodes that may contain scalar elements
Wesley Peckbf17cfa2010-11-23 03:31:01 +00004574 if (Opcode == ISD::BITCAST) {
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004575 V = V.getOperand(0);
4576 EVT SrcVT = V.getValueType();
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00004577 unsigned NumElems = VT.getVectorNumElements();
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004578
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00004579 if (!SrcVT.isVector() || SrcVT.getVectorNumElements() != NumElems)
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004580 return SDValue();
4581 }
4582
4583 if (V.getOpcode() == ISD::SCALAR_TO_VECTOR)
4584 return (Index == 0) ? V.getOperand(0)
4585 : DAG.getUNDEF(VT.getVectorElementType());
4586
4587 if (V.getOpcode() == ISD::BUILD_VECTOR)
4588 return V.getOperand(Index);
4589
4590 return SDValue();
4591}
4592
4593/// getNumOfConsecutiveZeros - Return the number of elements of a vector
4594/// shuffle operation which come from a consecutively from a zero. The
Chris Lattner7a2bdde2011-04-15 05:18:47 +00004595/// search can start in two different directions, from left or right.
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004596static
4597unsigned getNumOfConsecutiveZeros(SDNode *N, int NumElems,
4598 bool ZerosFromLeft, SelectionDAG &DAG) {
4599 int i = 0;
4600
4601 while (i < NumElems) {
4602 unsigned Index = ZerosFromLeft ? i : NumElems-i-1;
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00004603 SDValue Elt = getShuffleScalarElt(N, Index, DAG, 0);
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004604 if (!(Elt.getNode() &&
4605 (Elt.getOpcode() == ISD::UNDEF || X86::isZeroNode(Elt))))
4606 break;
4607 ++i;
4608 }
4609
4610 return i;
4611}
4612
4613/// isShuffleMaskConsecutive - Check if the shuffle mask indicies from MaskI to
4614/// MaskE correspond consecutively to elements from one of the vector operands,
4615/// starting from its index OpIdx. Also tell OpNum which source vector operand.
4616static
4617bool isShuffleMaskConsecutive(ShuffleVectorSDNode *SVOp, int MaskI, int MaskE,
4618 int OpIdx, int NumElems, unsigned &OpNum) {
4619 bool SeenV1 = false;
4620 bool SeenV2 = false;
4621
4622 for (int i = MaskI; i <= MaskE; ++i, ++OpIdx) {
4623 int Idx = SVOp->getMaskElt(i);
4624 // Ignore undef indicies
4625 if (Idx < 0)
4626 continue;
4627
4628 if (Idx < NumElems)
4629 SeenV1 = true;
4630 else
4631 SeenV2 = true;
4632
4633 // Only accept consecutive elements from the same vector
4634 if ((Idx % NumElems != OpIdx) || (SeenV1 && SeenV2))
4635 return false;
4636 }
4637
4638 OpNum = SeenV1 ? 0 : 1;
4639 return true;
4640}
4641
4642/// isVectorShiftRight - Returns true if the shuffle can be implemented as a
4643/// logical left shift of a vector.
4644static bool isVectorShiftRight(ShuffleVectorSDNode *SVOp, SelectionDAG &DAG,
4645 bool &isLeft, SDValue &ShVal, unsigned &ShAmt) {
4646 unsigned NumElems = SVOp->getValueType(0).getVectorNumElements();
4647 unsigned NumZeros = getNumOfConsecutiveZeros(SVOp, NumElems,
4648 false /* check zeros from right */, DAG);
4649 unsigned OpSrc;
4650
4651 if (!NumZeros)
4652 return false;
4653
4654 // Considering the elements in the mask that are not consecutive zeros,
4655 // check if they consecutively come from only one of the source vectors.
4656 //
4657 // V1 = {X, A, B, C} 0
4658 // \ \ \ /
4659 // vector_shuffle V1, V2 <1, 2, 3, X>
4660 //
4661 if (!isShuffleMaskConsecutive(SVOp,
4662 0, // Mask Start Index
4663 NumElems-NumZeros-1, // Mask End Index
4664 NumZeros, // Where to start looking in the src vector
4665 NumElems, // Number of elements in vector
4666 OpSrc)) // Which source operand ?
4667 return false;
4668
4669 isLeft = false;
4670 ShAmt = NumZeros;
4671 ShVal = SVOp->getOperand(OpSrc);
4672 return true;
4673}
4674
4675/// isVectorShiftLeft - Returns true if the shuffle can be implemented as a
4676/// logical left shift of a vector.
4677static bool isVectorShiftLeft(ShuffleVectorSDNode *SVOp, SelectionDAG &DAG,
4678 bool &isLeft, SDValue &ShVal, unsigned &ShAmt) {
4679 unsigned NumElems = SVOp->getValueType(0).getVectorNumElements();
4680 unsigned NumZeros = getNumOfConsecutiveZeros(SVOp, NumElems,
4681 true /* check zeros from left */, DAG);
4682 unsigned OpSrc;
4683
4684 if (!NumZeros)
4685 return false;
4686
4687 // Considering the elements in the mask that are not consecutive zeros,
4688 // check if they consecutively come from only one of the source vectors.
4689 //
4690 // 0 { A, B, X, X } = V2
4691 // / \ / /
4692 // vector_shuffle V1, V2 <X, X, 4, 5>
4693 //
4694 if (!isShuffleMaskConsecutive(SVOp,
4695 NumZeros, // Mask Start Index
4696 NumElems-1, // Mask End Index
4697 0, // Where to start looking in the src vector
4698 NumElems, // Number of elements in vector
4699 OpSrc)) // Which source operand ?
4700 return false;
4701
4702 isLeft = true;
4703 ShAmt = NumZeros;
4704 ShVal = SVOp->getOperand(OpSrc);
4705 return true;
Evan Chengf26ffe92008-05-29 08:22:04 +00004706}
4707
4708/// isVectorShift - Returns true if the shuffle can be implemented as a
4709/// logical left or right shift of a vector.
Nate Begeman9008ca62009-04-27 18:41:29 +00004710static bool isVectorShift(ShuffleVectorSDNode *SVOp, SelectionDAG &DAG,
Dan Gohman475871a2008-07-27 21:46:04 +00004711 bool &isLeft, SDValue &ShVal, unsigned &ShAmt) {
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00004712 // Although the logic below support any bitwidth size, there are no
4713 // shift instructions which handle more than 128-bit vectors.
4714 if (SVOp->getValueType(0).getSizeInBits() > 128)
4715 return false;
4716
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004717 if (isVectorShiftLeft(SVOp, DAG, isLeft, ShVal, ShAmt) ||
4718 isVectorShiftRight(SVOp, DAG, isLeft, ShVal, ShAmt))
4719 return true;
Evan Chengf26ffe92008-05-29 08:22:04 +00004720
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +00004721 return false;
Evan Chengf26ffe92008-05-29 08:22:04 +00004722}
4723
Evan Chengc78d3b42006-04-24 18:01:45 +00004724/// LowerBuildVectorv16i8 - Custom lower build_vector of v16i8.
4725///
Dan Gohman475871a2008-07-27 21:46:04 +00004726static SDValue LowerBuildVectorv16i8(SDValue Op, unsigned NonZeros,
Evan Chengc78d3b42006-04-24 18:01:45 +00004727 unsigned NumNonZero, unsigned NumZero,
Dan Gohmand858e902010-04-17 15:26:15 +00004728 SelectionDAG &DAG,
4729 const TargetLowering &TLI) {
Evan Chengc78d3b42006-04-24 18:01:45 +00004730 if (NumNonZero > 8)
Dan Gohman475871a2008-07-27 21:46:04 +00004731 return SDValue();
Evan Chengc78d3b42006-04-24 18:01:45 +00004732
Dale Johannesen6f38cb62009-02-07 19:59:05 +00004733 DebugLoc dl = Op.getDebugLoc();
Dan Gohman475871a2008-07-27 21:46:04 +00004734 SDValue V(0, 0);
Evan Chengc78d3b42006-04-24 18:01:45 +00004735 bool First = true;
4736 for (unsigned i = 0; i < 16; ++i) {
4737 bool ThisIsNonZero = (NonZeros & (1 << i)) != 0;
4738 if (ThisIsNonZero && First) {
4739 if (NumZero)
Owen Anderson825b72b2009-08-11 20:47:22 +00004740 V = getZeroVector(MVT::v8i16, true, DAG, dl);
Evan Chengc78d3b42006-04-24 18:01:45 +00004741 else
Owen Anderson825b72b2009-08-11 20:47:22 +00004742 V = DAG.getUNDEF(MVT::v8i16);
Evan Chengc78d3b42006-04-24 18:01:45 +00004743 First = false;
4744 }
4745
4746 if ((i & 1) != 0) {
Dan Gohman475871a2008-07-27 21:46:04 +00004747 SDValue ThisElt(0, 0), LastElt(0, 0);
Evan Chengc78d3b42006-04-24 18:01:45 +00004748 bool LastIsNonZero = (NonZeros & (1 << (i-1))) != 0;
4749 if (LastIsNonZero) {
Scott Michelfdc40a02009-02-17 22:15:04 +00004750 LastElt = DAG.getNode(ISD::ZERO_EXTEND, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00004751 MVT::i16, Op.getOperand(i-1));
Evan Chengc78d3b42006-04-24 18:01:45 +00004752 }
4753 if (ThisIsNonZero) {
Owen Anderson825b72b2009-08-11 20:47:22 +00004754 ThisElt = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, Op.getOperand(i));
4755 ThisElt = DAG.getNode(ISD::SHL, dl, MVT::i16,
4756 ThisElt, DAG.getConstant(8, MVT::i8));
Evan Chengc78d3b42006-04-24 18:01:45 +00004757 if (LastIsNonZero)
Owen Anderson825b72b2009-08-11 20:47:22 +00004758 ThisElt = DAG.getNode(ISD::OR, dl, MVT::i16, ThisElt, LastElt);
Evan Chengc78d3b42006-04-24 18:01:45 +00004759 } else
4760 ThisElt = LastElt;
4761
Gabor Greifba36cb52008-08-28 21:40:38 +00004762 if (ThisElt.getNode())
Owen Anderson825b72b2009-08-11 20:47:22 +00004763 V = DAG.getNode(ISD::INSERT_VECTOR_ELT, dl, MVT::v8i16, V, ThisElt,
Chris Lattner0bd48932008-01-17 07:00:52 +00004764 DAG.getIntPtrConstant(i/2));
Evan Chengc78d3b42006-04-24 18:01:45 +00004765 }
4766 }
4767
Wesley Peckbf17cfa2010-11-23 03:31:01 +00004768 return DAG.getNode(ISD::BITCAST, dl, MVT::v16i8, V);
Evan Chengc78d3b42006-04-24 18:01:45 +00004769}
4770
Bill Wendlinga348c562007-03-22 18:42:45 +00004771/// LowerBuildVectorv8i16 - Custom lower build_vector of v8i16.
Evan Chengc78d3b42006-04-24 18:01:45 +00004772///
Dan Gohman475871a2008-07-27 21:46:04 +00004773static SDValue LowerBuildVectorv8i16(SDValue Op, unsigned NonZeros,
Dan Gohmand858e902010-04-17 15:26:15 +00004774 unsigned NumNonZero, unsigned NumZero,
4775 SelectionDAG &DAG,
4776 const TargetLowering &TLI) {
Evan Chengc78d3b42006-04-24 18:01:45 +00004777 if (NumNonZero > 4)
Dan Gohman475871a2008-07-27 21:46:04 +00004778 return SDValue();
Evan Chengc78d3b42006-04-24 18:01:45 +00004779
Dale Johannesen6f38cb62009-02-07 19:59:05 +00004780 DebugLoc dl = Op.getDebugLoc();
Dan Gohman475871a2008-07-27 21:46:04 +00004781 SDValue V(0, 0);
Evan Chengc78d3b42006-04-24 18:01:45 +00004782 bool First = true;
4783 for (unsigned i = 0; i < 8; ++i) {
4784 bool isNonZero = (NonZeros & (1 << i)) != 0;
4785 if (isNonZero) {
4786 if (First) {
4787 if (NumZero)
Owen Anderson825b72b2009-08-11 20:47:22 +00004788 V = getZeroVector(MVT::v8i16, true, DAG, dl);
Evan Chengc78d3b42006-04-24 18:01:45 +00004789 else
Owen Anderson825b72b2009-08-11 20:47:22 +00004790 V = DAG.getUNDEF(MVT::v8i16);
Evan Chengc78d3b42006-04-24 18:01:45 +00004791 First = false;
4792 }
Scott Michelfdc40a02009-02-17 22:15:04 +00004793 V = DAG.getNode(ISD::INSERT_VECTOR_ELT, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00004794 MVT::v8i16, V, Op.getOperand(i),
Chris Lattner0bd48932008-01-17 07:00:52 +00004795 DAG.getIntPtrConstant(i));
Evan Chengc78d3b42006-04-24 18:01:45 +00004796 }
4797 }
4798
4799 return V;
4800}
4801
Evan Chengf26ffe92008-05-29 08:22:04 +00004802/// getVShift - Return a vector logical shift node.
4803///
Owen Andersone50ed302009-08-10 22:56:29 +00004804static SDValue getVShift(bool isLeft, EVT VT, SDValue SrcOp,
Nate Begeman9008ca62009-04-27 18:41:29 +00004805 unsigned NumBits, SelectionDAG &DAG,
4806 const TargetLowering &TLI, DebugLoc dl) {
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00004807 assert(VT.getSizeInBits() == 128 && "Unknown type for VShift");
Dale Johannesen0488fb62010-09-30 23:57:10 +00004808 EVT ShVT = MVT::v2i64;
Evan Chengf26ffe92008-05-29 08:22:04 +00004809 unsigned Opc = isLeft ? X86ISD::VSHL : X86ISD::VSRL;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00004810 SrcOp = DAG.getNode(ISD::BITCAST, dl, ShVT, SrcOp);
4811 return DAG.getNode(ISD::BITCAST, dl, VT,
Dale Johannesenace16102009-02-03 19:33:06 +00004812 DAG.getNode(Opc, dl, ShVT, SrcOp,
Owen Anderson95771af2011-02-25 21:41:48 +00004813 DAG.getConstant(NumBits,
4814 TLI.getShiftAmountTy(SrcOp.getValueType()))));
Evan Chengf26ffe92008-05-29 08:22:04 +00004815}
4816
Dan Gohman475871a2008-07-27 21:46:04 +00004817SDValue
Evan Chengc3630942009-12-09 21:00:30 +00004818X86TargetLowering::LowerAsSplatVectorLoad(SDValue SrcOp, EVT VT, DebugLoc dl,
Dan Gohmand858e902010-04-17 15:26:15 +00004819 SelectionDAG &DAG) const {
Michael J. Spencerec38de22010-10-10 22:04:20 +00004820
Evan Chengc3630942009-12-09 21:00:30 +00004821 // Check if the scalar load can be widened into a vector load. And if
4822 // the address is "base + cst" see if the cst can be "absorbed" into
4823 // the shuffle mask.
4824 if (LoadSDNode *LD = dyn_cast<LoadSDNode>(SrcOp)) {
4825 SDValue Ptr = LD->getBasePtr();
4826 if (!ISD::isNormalLoad(LD) || LD->isVolatile())
4827 return SDValue();
4828 EVT PVT = LD->getValueType(0);
4829 if (PVT != MVT::i32 && PVT != MVT::f32)
4830 return SDValue();
4831
4832 int FI = -1;
4833 int64_t Offset = 0;
4834 if (FrameIndexSDNode *FINode = dyn_cast<FrameIndexSDNode>(Ptr)) {
4835 FI = FINode->getIndex();
4836 Offset = 0;
Chris Lattner0a9481f2011-02-13 22:25:43 +00004837 } else if (DAG.isBaseWithConstantOffset(Ptr) &&
Evan Chengc3630942009-12-09 21:00:30 +00004838 isa<FrameIndexSDNode>(Ptr.getOperand(0))) {
4839 FI = cast<FrameIndexSDNode>(Ptr.getOperand(0))->getIndex();
4840 Offset = Ptr.getConstantOperandVal(1);
4841 Ptr = Ptr.getOperand(0);
4842 } else {
4843 return SDValue();
4844 }
4845
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004846 // FIXME: 256-bit vector instructions don't require a strict alignment,
4847 // improve this code to support it better.
4848 unsigned RequiredAlign = VT.getSizeInBits()/8;
Evan Chengc3630942009-12-09 21:00:30 +00004849 SDValue Chain = LD->getChain();
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004850 // Make sure the stack object alignment is at least 16 or 32.
Evan Chengc3630942009-12-09 21:00:30 +00004851 MachineFrameInfo *MFI = DAG.getMachineFunction().getFrameInfo();
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004852 if (DAG.InferPtrAlignment(Ptr) < RequiredAlign) {
Evan Chengc3630942009-12-09 21:00:30 +00004853 if (MFI->isFixedObjectIndex(FI)) {
Eric Christophere9625cf2010-01-23 06:02:43 +00004854 // Can't change the alignment. FIXME: It's possible to compute
4855 // the exact stack offset and reference FI + adjust offset instead.
4856 // If someone *really* cares about this. That's the way to implement it.
4857 return SDValue();
Evan Chengc3630942009-12-09 21:00:30 +00004858 } else {
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004859 MFI->setObjectAlignment(FI, RequiredAlign);
Evan Chengc3630942009-12-09 21:00:30 +00004860 }
4861 }
4862
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004863 // (Offset % 16 or 32) must be multiple of 4. Then address is then
Evan Chengc3630942009-12-09 21:00:30 +00004864 // Ptr + (Offset & ~15).
4865 if (Offset < 0)
4866 return SDValue();
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004867 if ((Offset % RequiredAlign) & 3)
Evan Chengc3630942009-12-09 21:00:30 +00004868 return SDValue();
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004869 int64_t StartOffset = Offset & ~(RequiredAlign-1);
Evan Chengc3630942009-12-09 21:00:30 +00004870 if (StartOffset)
4871 Ptr = DAG.getNode(ISD::ADD, Ptr.getDebugLoc(), Ptr.getValueType(),
4872 Ptr,DAG.getConstant(StartOffset, Ptr.getValueType()));
4873
4874 int EltNo = (Offset - StartOffset) >> 2;
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004875 int NumElems = VT.getVectorNumElements();
4876
4877 EVT CanonVT = VT.getSizeInBits() == 128 ? MVT::v4i32 : MVT::v8i32;
4878 EVT NVT = EVT::getVectorVT(*DAG.getContext(), PVT, NumElems);
4879 SDValue V1 = DAG.getLoad(NVT, dl, Chain, Ptr,
Chris Lattner51abfe42010-09-21 06:02:19 +00004880 LD->getPointerInfo().getWithOffset(StartOffset),
Pete Cooperd752e0f2011-11-08 18:42:53 +00004881 false, false, false, 0);
Bruno Cardoso Lopesac5f13f2011-08-02 16:06:18 +00004882
4883 // Canonicalize it to a v4i32 or v8i32 shuffle.
4884 SmallVector<int, 8> Mask;
4885 for (int i = 0; i < NumElems; ++i)
4886 Mask.push_back(EltNo);
4887
4888 V1 = DAG.getNode(ISD::BITCAST, dl, CanonVT, V1);
4889 return DAG.getNode(ISD::BITCAST, dl, NVT,
4890 DAG.getVectorShuffle(CanonVT, dl, V1,
4891 DAG.getUNDEF(CanonVT),&Mask[0]));
Evan Chengc3630942009-12-09 21:00:30 +00004892 }
4893
4894 return SDValue();
4895}
4896
Michael J. Spencerec38de22010-10-10 22:04:20 +00004897/// EltsFromConsecutiveLoads - Given the initializing elements 'Elts' of a
4898/// vector of type 'VT', see if the elements can be replaced by a single large
Nate Begeman1449f292010-03-24 22:19:06 +00004899/// load which has the same value as a build_vector whose operands are 'elts'.
4900///
4901/// Example: <load i32 *a, load i32 *a+4, undef, undef> -> zextload a
Michael J. Spencerec38de22010-10-10 22:04:20 +00004902///
Nate Begeman1449f292010-03-24 22:19:06 +00004903/// FIXME: we'd also like to handle the case where the last elements are zero
4904/// rather than undef via VZEXT_LOAD, but we do not detect that case today.
4905/// There's even a handy isZeroNode for that purpose.
Nate Begemanfdea31a2010-03-24 20:49:50 +00004906static SDValue EltsFromConsecutiveLoads(EVT VT, SmallVectorImpl<SDValue> &Elts,
Chris Lattner88641552010-09-22 00:34:38 +00004907 DebugLoc &DL, SelectionDAG &DAG) {
Nate Begemanfdea31a2010-03-24 20:49:50 +00004908 EVT EltVT = VT.getVectorElementType();
4909 unsigned NumElems = Elts.size();
Michael J. Spencerec38de22010-10-10 22:04:20 +00004910
Nate Begemanfdea31a2010-03-24 20:49:50 +00004911 LoadSDNode *LDBase = NULL;
4912 unsigned LastLoadedElt = -1U;
Michael J. Spencerec38de22010-10-10 22:04:20 +00004913
Nate Begeman1449f292010-03-24 22:19:06 +00004914 // For each element in the initializer, see if we've found a load or an undef.
Michael J. Spencerec38de22010-10-10 22:04:20 +00004915 // If we don't find an initial load element, or later load elements are
Nate Begeman1449f292010-03-24 22:19:06 +00004916 // non-consecutive, bail out.
Nate Begemanfdea31a2010-03-24 20:49:50 +00004917 for (unsigned i = 0; i < NumElems; ++i) {
4918 SDValue Elt = Elts[i];
Michael J. Spencerec38de22010-10-10 22:04:20 +00004919
Nate Begemanfdea31a2010-03-24 20:49:50 +00004920 if (!Elt.getNode() ||
4921 (Elt.getOpcode() != ISD::UNDEF && !ISD::isNON_EXTLoad(Elt.getNode())))
4922 return SDValue();
4923 if (!LDBase) {
4924 if (Elt.getNode()->getOpcode() == ISD::UNDEF)
4925 return SDValue();
4926 LDBase = cast<LoadSDNode>(Elt.getNode());
4927 LastLoadedElt = i;
4928 continue;
4929 }
4930 if (Elt.getOpcode() == ISD::UNDEF)
4931 continue;
4932
4933 LoadSDNode *LD = cast<LoadSDNode>(Elt);
4934 if (!DAG.isConsecutiveLoad(LD, LDBase, EltVT.getSizeInBits()/8, i))
4935 return SDValue();
4936 LastLoadedElt = i;
4937 }
Nate Begeman1449f292010-03-24 22:19:06 +00004938
4939 // If we have found an entire vector of loads and undefs, then return a large
4940 // load of the entire vector width starting at the base pointer. If we found
4941 // consecutive loads for the low half, generate a vzext_load node.
Nate Begemanfdea31a2010-03-24 20:49:50 +00004942 if (LastLoadedElt == NumElems - 1) {
4943 if (DAG.InferPtrAlignment(LDBase->getBasePtr()) >= 16)
Chris Lattner88641552010-09-22 00:34:38 +00004944 return DAG.getLoad(VT, DL, LDBase->getChain(), LDBase->getBasePtr(),
Chris Lattner51abfe42010-09-21 06:02:19 +00004945 LDBase->getPointerInfo(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00004946 LDBase->isVolatile(), LDBase->isNonTemporal(),
4947 LDBase->isInvariant(), 0);
Chris Lattner88641552010-09-22 00:34:38 +00004948 return DAG.getLoad(VT, DL, LDBase->getChain(), LDBase->getBasePtr(),
Chris Lattner51abfe42010-09-21 06:02:19 +00004949 LDBase->getPointerInfo(),
Nate Begemanfdea31a2010-03-24 20:49:50 +00004950 LDBase->isVolatile(), LDBase->isNonTemporal(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00004951 LDBase->isInvariant(), LDBase->getAlignment());
Eli Friedman61cc47e2011-07-26 21:02:58 +00004952 } else if (NumElems == 4 && LastLoadedElt == 1 &&
4953 DAG.getTargetLoweringInfo().isTypeLegal(MVT::v2i64)) {
Nate Begemanfdea31a2010-03-24 20:49:50 +00004954 SDVTList Tys = DAG.getVTList(MVT::v2i64, MVT::Other);
4955 SDValue Ops[] = { LDBase->getChain(), LDBase->getBasePtr() };
Eli Friedman322ea082011-09-14 23:42:45 +00004956 SDValue ResNode =
4957 DAG.getMemIntrinsicNode(X86ISD::VZEXT_LOAD, DL, Tys, Ops, 2, MVT::i64,
4958 LDBase->getPointerInfo(),
4959 LDBase->getAlignment(),
4960 false/*isVolatile*/, true/*ReadMem*/,
4961 false/*WriteMem*/);
Wesley Peckbf17cfa2010-11-23 03:31:01 +00004962 return DAG.getNode(ISD::BITCAST, DL, VT, ResNode);
Nate Begemanfdea31a2010-03-24 20:49:50 +00004963 }
4964 return SDValue();
4965}
4966
Nadav Rotemf8c10e52011-11-15 22:50:37 +00004967/// isVectorBroadcast - Check if the node chain is suitable to be xformed to
4968/// a vbroadcast node. We support two patterns:
4969/// 1. A splat BUILD_VECTOR which uses a single scalar load.
4970/// 2. A splat shuffle which uses a scalar_to_vector node which comes from
4971/// a scalar load.
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00004972/// The scalar load node is returned when a pattern is found,
4973/// or SDValue() otherwise.
4974static SDValue isVectorBroadcast(SDValue &Op, bool hasAVX2) {
Nadav Rotemf8c10e52011-11-15 22:50:37 +00004975 EVT VT = Op.getValueType();
4976 SDValue V = Op;
4977
4978 if (V.hasOneUse() && V.getOpcode() == ISD::BITCAST)
4979 V = V.getOperand(0);
4980
4981 //A suspected load to be broadcasted.
4982 SDValue Ld;
4983
4984 switch (V.getOpcode()) {
4985 default:
4986 // Unknown pattern found.
4987 return SDValue();
4988
4989 case ISD::BUILD_VECTOR: {
4990 // The BUILD_VECTOR node must be a splat.
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00004991 if (!isSplatVector(V.getNode()))
Nadav Rotemf8c10e52011-11-15 22:50:37 +00004992 return SDValue();
4993
4994 Ld = V.getOperand(0);
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00004995
4996 // The suspected load node has several users. Make sure that all
Nadav Rotemf8c10e52011-11-15 22:50:37 +00004997 // of its users are from the BUILD_VECTOR node.
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00004998 if (!Ld->hasNUsesOfValue(VT.getVectorNumElements(), 0))
Nadav Rotemf8c10e52011-11-15 22:50:37 +00004999 return SDValue();
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005000 break;
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005001 }
5002
5003 case ISD::VECTOR_SHUFFLE: {
5004 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(Op);
5005
5006 // Shuffles must have a splat mask where the first element is
5007 // broadcasted.
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005008 if ((!SVOp->isSplat()) || SVOp->getMaskElt(0) != 0)
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005009 return SDValue();
5010
5011 SDValue Sc = Op.getOperand(0);
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005012 if (Sc.getOpcode() != ISD::SCALAR_TO_VECTOR)
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005013 return SDValue();
5014
5015 Ld = Sc.getOperand(0);
5016
5017 // The scalar_to_vector node and the suspected
5018 // load node must have exactly one user.
5019 if (!Sc.hasOneUse() || !Ld.hasOneUse())
5020 return SDValue();
5021 break;
5022 }
5023 }
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005024
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005025 // The scalar source must be a normal load.
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005026 if (!ISD::isNormalLoad(Ld.getNode()))
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005027 return SDValue();
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005028
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005029 bool Is256 = VT.getSizeInBits() == 256;
5030 bool Is128 = VT.getSizeInBits() == 128;
5031 unsigned ScalarSize = Ld.getValueType().getSizeInBits();
5032
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005033 if (hasAVX2) {
5034 // VBroadcast to YMM
5035 if (Is256 && (ScalarSize == 8 || ScalarSize == 16 ||
5036 ScalarSize == 32 || ScalarSize == 64 ))
5037 return Ld;
5038
5039 // VBroadcast to XMM
5040 if (Is128 && (ScalarSize == 8 || ScalarSize == 32 ||
5041 ScalarSize == 16 || ScalarSize == 64 ))
5042 return Ld;
5043 }
5044
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005045 // VBroadcast to YMM
5046 if (Is256 && (ScalarSize == 32 || ScalarSize == 64))
5047 return Ld;
5048
5049 // VBroadcast to XMM
5050 if (Is128 && (ScalarSize == 32))
5051 return Ld;
5052
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005053
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005054 // Unsupported broadcast.
5055 return SDValue();
5056}
5057
Evan Chengc3630942009-12-09 21:00:30 +00005058SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00005059X86TargetLowering::LowerBUILD_VECTOR(SDValue Op, SelectionDAG &DAG) const {
Dale Johannesen6f38cb62009-02-07 19:59:05 +00005060 DebugLoc dl = Op.getDebugLoc();
David Greenea5f26012011-02-07 19:36:54 +00005061
David Greenef125a292011-02-08 19:04:41 +00005062 EVT VT = Op.getValueType();
5063 EVT ExtVT = VT.getVectorElementType();
David Greenef125a292011-02-08 19:04:41 +00005064 unsigned NumElems = Op.getNumOperands();
5065
Bruno Cardoso Lopes531f19f2011-08-01 19:51:53 +00005066 // Vectors containing all zeros can be matched by pxor and xorps later
5067 if (ISD::isBuildVectorAllZeros(Op.getNode())) {
5068 // Canonicalize this to <4 x i32> to 1) ensure the zero vectors are CSE'd
5069 // and 2) ensure that i64 scalars are eliminated on x86-32 hosts.
Bruno Cardoso Lopes5bc37dd2011-07-15 22:24:33 +00005070 if (Op.getValueType() == MVT::v4i32 ||
5071 Op.getValueType() == MVT::v8i32)
Chris Lattner8a594482007-11-25 00:24:49 +00005072 return Op;
Evan Cheng0db9fe62006-04-25 20:13:52 +00005073
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00005074 return getZeroVector(Op.getValueType(), Subtarget->hasXMMInt(), DAG, dl);
Chris Lattner8a594482007-11-25 00:24:49 +00005075 }
Evan Cheng0db9fe62006-04-25 20:13:52 +00005076
Bruno Cardoso Lopes531f19f2011-08-01 19:51:53 +00005077 // Vectors containing all ones can be matched by pcmpeqd on 128-bit width
Craig Topper745a86b2011-11-19 22:34:59 +00005078 // vectors or broken into v4i32 operations on 256-bit vectors. AVX2 can use
5079 // vpcmpeqd on 256-bit vectors.
Bruno Cardoso Lopes531f19f2011-08-01 19:51:53 +00005080 if (ISD::isBuildVectorAllOnes(Op.getNode())) {
Craig Topper745a86b2011-11-19 22:34:59 +00005081 if (Op.getValueType() == MVT::v4i32 ||
5082 (Op.getValueType() == MVT::v8i32 && Subtarget->hasAVX2()))
Bruno Cardoso Lopes531f19f2011-08-01 19:51:53 +00005083 return Op;
5084
Craig Topper745a86b2011-11-19 22:34:59 +00005085 return getOnesVector(Op.getValueType(), Subtarget->hasAVX2(), DAG, dl);
Bruno Cardoso Lopes531f19f2011-08-01 19:51:53 +00005086 }
5087
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00005088 SDValue LD = isVectorBroadcast(Op, Subtarget->hasAVX2());
Nadav Rotemf8c10e52011-11-15 22:50:37 +00005089 if (Subtarget->hasAVX() && LD.getNode())
5090 return DAG.getNode(X86ISD::VBROADCAST, dl, VT, LD);
5091
Owen Andersone50ed302009-08-10 22:56:29 +00005092 unsigned EVTBits = ExtVT.getSizeInBits();
Evan Cheng0db9fe62006-04-25 20:13:52 +00005093
Evan Cheng0db9fe62006-04-25 20:13:52 +00005094 unsigned NumZero = 0;
5095 unsigned NumNonZero = 0;
5096 unsigned NonZeros = 0;
Chris Lattnerc9517fb2008-03-08 22:48:29 +00005097 bool IsAllConstants = true;
Dan Gohman475871a2008-07-27 21:46:04 +00005098 SmallSet<SDValue, 8> Values;
Evan Cheng0db9fe62006-04-25 20:13:52 +00005099 for (unsigned i = 0; i < NumElems; ++i) {
Dan Gohman475871a2008-07-27 21:46:04 +00005100 SDValue Elt = Op.getOperand(i);
Evan Chengdb2d5242007-12-12 06:45:40 +00005101 if (Elt.getOpcode() == ISD::UNDEF)
5102 continue;
5103 Values.insert(Elt);
5104 if (Elt.getOpcode() != ISD::Constant &&
5105 Elt.getOpcode() != ISD::ConstantFP)
Chris Lattnerc9517fb2008-03-08 22:48:29 +00005106 IsAllConstants = false;
Evan Cheng37b73872009-07-30 08:33:02 +00005107 if (X86::isZeroNode(Elt))
Evan Chengdb2d5242007-12-12 06:45:40 +00005108 NumZero++;
5109 else {
5110 NonZeros |= (1 << i);
5111 NumNonZero++;
Evan Cheng0db9fe62006-04-25 20:13:52 +00005112 }
5113 }
5114
Chris Lattner97a2a562010-08-26 05:24:29 +00005115 // All undef vector. Return an UNDEF. All zero vectors were handled above.
5116 if (NumNonZero == 0)
Dale Johannesene8d72302009-02-06 23:05:02 +00005117 return DAG.getUNDEF(VT);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005118
Chris Lattner67f453a2008-03-09 05:42:06 +00005119 // Special case for single non-zero, non-undef, element.
Eli Friedman10415532009-06-06 06:05:10 +00005120 if (NumNonZero == 1) {
Evan Cheng0db9fe62006-04-25 20:13:52 +00005121 unsigned Idx = CountTrailingZeros_32(NonZeros);
Dan Gohman475871a2008-07-27 21:46:04 +00005122 SDValue Item = Op.getOperand(Idx);
Scott Michelfdc40a02009-02-17 22:15:04 +00005123
Chris Lattner62098042008-03-09 01:05:04 +00005124 // If this is an insertion of an i64 value on x86-32, and if the top bits of
5125 // the value are obviously zero, truncate the value to i32 and do the
5126 // insertion that way. Only do this if the value is non-constant or if the
5127 // value is a constant being inserted into element 0. It is cheaper to do
5128 // a constant pool load than it is to do a movd + shuffle.
Owen Anderson825b72b2009-08-11 20:47:22 +00005129 if (ExtVT == MVT::i64 && !Subtarget->is64Bit() &&
Chris Lattner62098042008-03-09 01:05:04 +00005130 (!IsAllConstants || Idx == 0)) {
5131 if (DAG.MaskedValueIsZero(Item, APInt::getBitsSet(64, 32, 64))) {
Dale Johannesen0488fb62010-09-30 23:57:10 +00005132 // Handle SSE only.
5133 assert(VT == MVT::v2i64 && "Expected an SSE value type!");
5134 EVT VecVT = MVT::v4i32;
5135 unsigned VecElts = 4;
Scott Michelfdc40a02009-02-17 22:15:04 +00005136
Chris Lattner62098042008-03-09 01:05:04 +00005137 // Truncate the value (which may itself be a constant) to i32, and
5138 // convert it to a vector with movd (S2V+shuffle to zero extend).
Owen Anderson825b72b2009-08-11 20:47:22 +00005139 Item = DAG.getNode(ISD::TRUNCATE, dl, MVT::i32, Item);
Dale Johannesenace16102009-02-03 19:33:06 +00005140 Item = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VecVT, Item);
Evan Chengf0df0312008-05-15 08:39:06 +00005141 Item = getShuffleVectorZeroOrUndef(Item, 0, true,
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00005142 Subtarget->hasXMMInt(), DAG);
Scott Michelfdc40a02009-02-17 22:15:04 +00005143
Chris Lattner62098042008-03-09 01:05:04 +00005144 // Now we have our 32-bit value zero extended in the low element of
5145 // a vector. If Idx != 0, swizzle it into place.
5146 if (Idx != 0) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005147 SmallVector<int, 4> Mask;
5148 Mask.push_back(Idx);
5149 for (unsigned i = 1; i != VecElts; ++i)
5150 Mask.push_back(i);
5151 Item = DAG.getVectorShuffle(VecVT, dl, Item,
Eric Christopherfd179292009-08-27 18:07:15 +00005152 DAG.getUNDEF(Item.getValueType()),
Nate Begeman9008ca62009-04-27 18:41:29 +00005153 &Mask[0]);
Chris Lattner62098042008-03-09 01:05:04 +00005154 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005155 return DAG.getNode(ISD::BITCAST, dl, Op.getValueType(), Item);
Chris Lattner62098042008-03-09 01:05:04 +00005156 }
5157 }
Scott Michelfdc40a02009-02-17 22:15:04 +00005158
Chris Lattner19f79692008-03-08 22:59:52 +00005159 // If we have a constant or non-constant insertion into the low element of
5160 // a vector, we can do this with SCALAR_TO_VECTOR + shuffle of zero into
5161 // the rest of the elements. This will be matched as movd/movq/movss/movsd
Eli Friedman10415532009-06-06 06:05:10 +00005162 // depending on what the source datatype is.
5163 if (Idx == 0) {
5164 if (NumZero == 0) {
5165 return DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT, Item);
Owen Anderson825b72b2009-08-11 20:47:22 +00005166 } else if (ExtVT == MVT::i32 || ExtVT == MVT::f32 || ExtVT == MVT::f64 ||
5167 (ExtVT == MVT::i64 && Subtarget->is64Bit())) {
Elena Demikhovsky021c0a22011-12-28 08:14:01 +00005168 if (VT.getSizeInBits() == 256) {
Elena Demikhovsky021c0a22011-12-28 08:14:01 +00005169 EVT VT128 = EVT::getVectorVT(*DAG.getContext(), ExtVT, NumElems / 2);
5170 Item = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT128, Item);
Craig Topper3224e6b2011-12-29 03:09:33 +00005171 SDValue ZeroVec = getZeroVector(VT, true, DAG, dl);
Elena Demikhovsky021c0a22011-12-28 08:14:01 +00005172 return Insert128BitVector(ZeroVec, Item, DAG.getConstant(0, MVT::i32),
5173 DAG, dl);
5174 }
Craig Topper3224e6b2011-12-29 03:09:33 +00005175 assert (VT.getSizeInBits() == 128 && "Expected an SSE value type!");
Eli Friedman10415532009-06-06 06:05:10 +00005176 Item = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT, Item);
5177 // Turn it into a MOVL (i.e. movss, movsd, or movd) to a zero vector.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00005178 return getShuffleVectorZeroOrUndef(Item, 0, true,Subtarget->hasXMMInt(),
Eli Friedman10415532009-06-06 06:05:10 +00005179 DAG);
Owen Anderson825b72b2009-08-11 20:47:22 +00005180 } else if (ExtVT == MVT::i16 || ExtVT == MVT::i8) {
5181 Item = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i32, Item);
Elena Demikhovsky021c0a22011-12-28 08:14:01 +00005182 if (VT.getSizeInBits() == 256) {
Elena Demikhovsky021c0a22011-12-28 08:14:01 +00005183 EVT VT128 = EVT::getVectorVT(*DAG.getContext(), ExtVT, NumElems / 2);
5184 Item = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT128, Item);
Craig Topper3224e6b2011-12-29 03:09:33 +00005185 SDValue ZeroVec = getZeroVector(VT, true, DAG, dl);
Elena Demikhovsky021c0a22011-12-28 08:14:01 +00005186 return Insert128BitVector(ZeroVec, Item, DAG.getConstant(0, MVT::i32),
5187 DAG, dl);
5188 }
Craig Topper3224e6b2011-12-29 03:09:33 +00005189 assert (VT.getSizeInBits() == 128 && "Expected an SSE value type!");
5190 Item = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v4i32, Item);
Eli Friedman10415532009-06-06 06:05:10 +00005191 Item = getShuffleVectorZeroOrUndef(Item, 0, true,
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00005192 Subtarget->hasXMMInt(), DAG);
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005193 return DAG.getNode(ISD::BITCAST, dl, VT, Item);
Eli Friedman10415532009-06-06 06:05:10 +00005194 }
Chris Lattnerc9517fb2008-03-08 22:48:29 +00005195 }
Evan Chengf26ffe92008-05-29 08:22:04 +00005196
5197 // Is it a vector logical left shift?
5198 if (NumElems == 2 && Idx == 1 &&
Evan Cheng37b73872009-07-30 08:33:02 +00005199 X86::isZeroNode(Op.getOperand(0)) &&
5200 !X86::isZeroNode(Op.getOperand(1))) {
Duncan Sands83ec4b62008-06-06 12:08:01 +00005201 unsigned NumBits = VT.getSizeInBits();
Evan Chengf26ffe92008-05-29 08:22:04 +00005202 return getVShift(true, VT,
Scott Michelfdc40a02009-02-17 22:15:04 +00005203 DAG.getNode(ISD::SCALAR_TO_VECTOR, dl,
Dale Johannesenb300d2a2009-02-07 00:55:49 +00005204 VT, Op.getOperand(1)),
Dale Johannesenace16102009-02-03 19:33:06 +00005205 NumBits/2, DAG, *this, dl);
Evan Chengf26ffe92008-05-29 08:22:04 +00005206 }
Scott Michelfdc40a02009-02-17 22:15:04 +00005207
Chris Lattnerc9517fb2008-03-08 22:48:29 +00005208 if (IsAllConstants) // Otherwise, it's better to do a constpool load.
Dan Gohman475871a2008-07-27 21:46:04 +00005209 return SDValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00005210
Chris Lattner19f79692008-03-08 22:59:52 +00005211 // Otherwise, if this is a vector with i32 or f32 elements, and the element
5212 // is a non-constant being inserted into an element other than the low one,
5213 // we can't use a constant pool load. Instead, use SCALAR_TO_VECTOR (aka
5214 // movd/movss) to move this into the low element, then shuffle it into
5215 // place.
Evan Cheng0db9fe62006-04-25 20:13:52 +00005216 if (EVTBits == 32) {
Dale Johannesenace16102009-02-03 19:33:06 +00005217 Item = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT, Item);
Scott Michelfdc40a02009-02-17 22:15:04 +00005218
Evan Cheng0db9fe62006-04-25 20:13:52 +00005219 // Turn it into a shuffle of zero and zero-extended scalar to vector.
Evan Chengf0df0312008-05-15 08:39:06 +00005220 Item = getShuffleVectorZeroOrUndef(Item, 0, NumZero > 0,
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00005221 Subtarget->hasXMMInt(), DAG);
Nate Begeman9008ca62009-04-27 18:41:29 +00005222 SmallVector<int, 8> MaskVec;
Evan Cheng0db9fe62006-04-25 20:13:52 +00005223 for (unsigned i = 0; i < NumElems; i++)
Nate Begeman9008ca62009-04-27 18:41:29 +00005224 MaskVec.push_back(i == Idx ? 0 : 1);
5225 return DAG.getVectorShuffle(VT, dl, Item, DAG.getUNDEF(VT), &MaskVec[0]);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005226 }
5227 }
5228
Chris Lattner67f453a2008-03-09 05:42:06 +00005229 // Splat is obviously ok. Let legalizer expand it to a shuffle.
Evan Chengc3630942009-12-09 21:00:30 +00005230 if (Values.size() == 1) {
5231 if (EVTBits == 32) {
5232 // Instead of a shuffle like this:
5233 // shuffle (scalar_to_vector (load (ptr + 4))), undef, <0, 0, 0, 0>
5234 // Check if it's possible to issue this instead.
5235 // shuffle (vload ptr)), undef, <1, 1, 1, 1>
5236 unsigned Idx = CountTrailingZeros_32(NonZeros);
5237 SDValue Item = Op.getOperand(Idx);
5238 if (Op.getNode()->isOnlyUserOf(Item.getNode()))
5239 return LowerAsSplatVectorLoad(Item, VT, dl, DAG);
5240 }
Dan Gohman475871a2008-07-27 21:46:04 +00005241 return SDValue();
Evan Chengc3630942009-12-09 21:00:30 +00005242 }
Scott Michelfdc40a02009-02-17 22:15:04 +00005243
Dan Gohmana3941172007-07-24 22:55:08 +00005244 // A vector full of immediates; various special cases are already
5245 // handled, so this is best done with a single constant-pool load.
Chris Lattnerc9517fb2008-03-08 22:48:29 +00005246 if (IsAllConstants)
Dan Gohman475871a2008-07-27 21:46:04 +00005247 return SDValue();
Dan Gohmana3941172007-07-24 22:55:08 +00005248
Bruno Cardoso Lopes6683efb2011-07-22 00:15:07 +00005249 // For AVX-length vectors, build the individual 128-bit pieces and use
5250 // shuffles to put them in place.
5251 if (VT.getSizeInBits() == 256 && !ISD::isBuildVectorAllZeros(Op.getNode())) {
5252 SmallVector<SDValue, 32> V;
5253 for (unsigned i = 0; i < NumElems; ++i)
5254 V.push_back(Op.getOperand(i));
5255
5256 EVT HVT = EVT::getVectorVT(*DAG.getContext(), ExtVT, NumElems/2);
5257
5258 // Build both the lower and upper subvector.
5259 SDValue Lower = DAG.getNode(ISD::BUILD_VECTOR, dl, HVT, &V[0], NumElems/2);
5260 SDValue Upper = DAG.getNode(ISD::BUILD_VECTOR, dl, HVT, &V[NumElems / 2],
5261 NumElems/2);
5262
5263 // Recreate the wider vector with the lower and upper part.
Bruno Cardoso Lopes15d03fb2011-07-28 01:26:53 +00005264 SDValue Vec = Insert128BitVector(DAG.getNode(ISD::UNDEF, dl, VT), Lower,
5265 DAG.getConstant(0, MVT::i32), DAG, dl);
5266 return Insert128BitVector(Vec, Upper, DAG.getConstant(NumElems/2, MVT::i32),
Bruno Cardoso Lopes6683efb2011-07-22 00:15:07 +00005267 DAG, dl);
5268 }
5269
Bill Wendling2f9bb1a2007-04-24 21:16:55 +00005270 // Let legalizer expand 2-wide build_vectors.
Evan Cheng7e2ff772008-05-08 00:57:18 +00005271 if (EVTBits == 64) {
5272 if (NumNonZero == 1) {
5273 // One half is zero or undef.
5274 unsigned Idx = CountTrailingZeros_32(NonZeros);
Dale Johannesenace16102009-02-03 19:33:06 +00005275 SDValue V2 = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT,
Evan Cheng7e2ff772008-05-08 00:57:18 +00005276 Op.getOperand(Idx));
Evan Chengf0df0312008-05-15 08:39:06 +00005277 return getShuffleVectorZeroOrUndef(V2, Idx, true,
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00005278 Subtarget->hasXMMInt(), DAG);
Evan Cheng7e2ff772008-05-08 00:57:18 +00005279 }
Dan Gohman475871a2008-07-27 21:46:04 +00005280 return SDValue();
Evan Cheng7e2ff772008-05-08 00:57:18 +00005281 }
Evan Cheng0db9fe62006-04-25 20:13:52 +00005282
5283 // If element VT is < 32 bits, convert it to inserts into a zero vector.
Bill Wendling826f36f2007-03-28 00:57:11 +00005284 if (EVTBits == 8 && NumElems == 16) {
Dan Gohman475871a2008-07-27 21:46:04 +00005285 SDValue V = LowerBuildVectorv16i8(Op, NonZeros,NumNonZero,NumZero, DAG,
Evan Cheng25ab6902006-09-08 06:48:29 +00005286 *this);
Gabor Greifba36cb52008-08-28 21:40:38 +00005287 if (V.getNode()) return V;
Evan Cheng0db9fe62006-04-25 20:13:52 +00005288 }
5289
Bill Wendling826f36f2007-03-28 00:57:11 +00005290 if (EVTBits == 16 && NumElems == 8) {
Dan Gohman475871a2008-07-27 21:46:04 +00005291 SDValue V = LowerBuildVectorv8i16(Op, NonZeros,NumNonZero,NumZero, DAG,
Chris Lattner97a2a562010-08-26 05:24:29 +00005292 *this);
Gabor Greifba36cb52008-08-28 21:40:38 +00005293 if (V.getNode()) return V;
Evan Cheng0db9fe62006-04-25 20:13:52 +00005294 }
5295
5296 // If element VT is == 32 bits, turn it into a number of shuffles.
Dan Gohman475871a2008-07-27 21:46:04 +00005297 SmallVector<SDValue, 8> V;
Chris Lattner5a88b832007-02-25 07:10:00 +00005298 V.resize(NumElems);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005299 if (NumElems == 4 && NumZero > 0) {
5300 for (unsigned i = 0; i < 4; ++i) {
5301 bool isZero = !(NonZeros & (1 << i));
5302 if (isZero)
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00005303 V[i] = getZeroVector(VT, Subtarget->hasXMMInt(), DAG, dl);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005304 else
Dale Johannesenace16102009-02-03 19:33:06 +00005305 V[i] = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT, Op.getOperand(i));
Evan Cheng0db9fe62006-04-25 20:13:52 +00005306 }
5307
5308 for (unsigned i = 0; i < 2; ++i) {
5309 switch ((NonZeros & (0x3 << i*2)) >> (i*2)) {
5310 default: break;
5311 case 0:
5312 V[i] = V[i*2]; // Must be a zero vector.
5313 break;
5314 case 1:
Nate Begeman9008ca62009-04-27 18:41:29 +00005315 V[i] = getMOVL(DAG, dl, VT, V[i*2+1], V[i*2]);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005316 break;
5317 case 2:
Nate Begeman9008ca62009-04-27 18:41:29 +00005318 V[i] = getMOVL(DAG, dl, VT, V[i*2], V[i*2+1]);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005319 break;
5320 case 3:
Nate Begeman9008ca62009-04-27 18:41:29 +00005321 V[i] = getUnpackl(DAG, dl, VT, V[i*2], V[i*2+1]);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005322 break;
5323 }
5324 }
5325
Nate Begeman9008ca62009-04-27 18:41:29 +00005326 SmallVector<int, 8> MaskVec;
Evan Cheng0db9fe62006-04-25 20:13:52 +00005327 bool Reverse = (NonZeros & 0x3) == 2;
5328 for (unsigned i = 0; i < 2; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00005329 MaskVec.push_back(Reverse ? 1-i : i);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005330 Reverse = ((NonZeros & (0x3 << 2)) >> 2) == 2;
5331 for (unsigned i = 0; i < 2; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00005332 MaskVec.push_back(Reverse ? 1-i+NumElems : i+NumElems);
5333 return DAG.getVectorShuffle(VT, dl, V[0], V[1], &MaskVec[0]);
Evan Cheng0db9fe62006-04-25 20:13:52 +00005334 }
5335
Nate Begemanfdea31a2010-03-24 20:49:50 +00005336 if (Values.size() > 1 && VT.getSizeInBits() == 128) {
5337 // Check for a build vector of consecutive loads.
5338 for (unsigned i = 0; i < NumElems; ++i)
5339 V[i] = Op.getOperand(i);
Michael J. Spencerec38de22010-10-10 22:04:20 +00005340
Nate Begemanfdea31a2010-03-24 20:49:50 +00005341 // Check for elements which are consecutive loads.
5342 SDValue LD = EltsFromConsecutiveLoads(VT, V, dl, DAG);
5343 if (LD.getNode())
5344 return LD;
Michael J. Spencerec38de22010-10-10 22:04:20 +00005345
5346 // For SSE 4.1, use insertps to put the high elements into the low element.
Craig Topperc0d82852011-11-22 00:44:41 +00005347 if (getSubtarget()->hasSSE41orAVX()) {
Chris Lattner24faf612010-08-28 17:59:08 +00005348 SDValue Result;
5349 if (Op.getOperand(0).getOpcode() != ISD::UNDEF)
5350 Result = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT, Op.getOperand(0));
5351 else
5352 Result = DAG.getUNDEF(VT);
Michael J. Spencerec38de22010-10-10 22:04:20 +00005353
Chris Lattner24faf612010-08-28 17:59:08 +00005354 for (unsigned i = 1; i < NumElems; ++i) {
5355 if (Op.getOperand(i).getOpcode() == ISD::UNDEF) continue;
5356 Result = DAG.getNode(ISD::INSERT_VECTOR_ELT, dl, VT, Result,
Nate Begeman9008ca62009-04-27 18:41:29 +00005357 Op.getOperand(i), DAG.getIntPtrConstant(i));
Chris Lattner24faf612010-08-28 17:59:08 +00005358 }
5359 return Result;
Nate Begeman9008ca62009-04-27 18:41:29 +00005360 }
Michael J. Spencerec38de22010-10-10 22:04:20 +00005361
Chris Lattner6e80e442010-08-28 17:15:43 +00005362 // Otherwise, expand into a number of unpckl*, start by extending each of
5363 // our (non-undef) elements to the full vector width with the element in the
5364 // bottom slot of the vector (which generates no code for SSE).
5365 for (unsigned i = 0; i < NumElems; ++i) {
5366 if (Op.getOperand(i).getOpcode() != ISD::UNDEF)
5367 V[i] = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT, Op.getOperand(i));
5368 else
5369 V[i] = DAG.getUNDEF(VT);
5370 }
5371
5372 // Next, we iteratively mix elements, e.g. for v4f32:
Evan Cheng0db9fe62006-04-25 20:13:52 +00005373 // Step 1: unpcklps 0, 2 ==> X: <?, ?, 2, 0>
5374 // : unpcklps 1, 3 ==> Y: <?, ?, 3, 1>
5375 // Step 2: unpcklps X, Y ==> <3, 2, 1, 0>
Chris Lattner6e80e442010-08-28 17:15:43 +00005376 unsigned EltStride = NumElems >> 1;
5377 while (EltStride != 0) {
Chris Lattner3ddcc432010-08-28 17:28:30 +00005378 for (unsigned i = 0; i < EltStride; ++i) {
5379 // If V[i+EltStride] is undef and this is the first round of mixing,
5380 // then it is safe to just drop this shuffle: V[i] is already in the
5381 // right place, the one element (since it's the first round) being
5382 // inserted as undef can be dropped. This isn't safe for successive
5383 // rounds because they will permute elements within both vectors.
5384 if (V[i+EltStride].getOpcode() == ISD::UNDEF &&
5385 EltStride == NumElems/2)
5386 continue;
Michael J. Spencerec38de22010-10-10 22:04:20 +00005387
Chris Lattner6e80e442010-08-28 17:15:43 +00005388 V[i] = getUnpackl(DAG, dl, VT, V[i], V[i + EltStride]);
Chris Lattner3ddcc432010-08-28 17:28:30 +00005389 }
Chris Lattner6e80e442010-08-28 17:15:43 +00005390 EltStride >>= 1;
Evan Cheng0db9fe62006-04-25 20:13:52 +00005391 }
5392 return V[0];
5393 }
Dan Gohman475871a2008-07-27 21:46:04 +00005394 return SDValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00005395}
5396
Bruno Cardoso Lopes8af24512011-08-01 21:54:02 +00005397// LowerMMXCONCAT_VECTORS - We support concatenate two MMX registers and place
5398// them in a MMX register. This is better than doing a stack convert.
5399static SDValue LowerMMXCONCAT_VECTORS(SDValue Op, SelectionDAG &DAG) {
Mon P Wangeb38ebf2010-01-24 00:05:03 +00005400 DebugLoc dl = Op.getDebugLoc();
5401 EVT ResVT = Op.getValueType();
Bruno Cardoso Lopes8af24512011-08-01 21:54:02 +00005402
Mon P Wangeb38ebf2010-01-24 00:05:03 +00005403 assert(ResVT == MVT::v2i64 || ResVT == MVT::v4i32 ||
5404 ResVT == MVT::v8i16 || ResVT == MVT::v16i8);
5405 int Mask[2];
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005406 SDValue InVec = DAG.getNode(ISD::BITCAST,dl, MVT::v1i64, Op.getOperand(0));
Mon P Wangeb38ebf2010-01-24 00:05:03 +00005407 SDValue VecOp = DAG.getNode(X86ISD::MOVQ2DQ, dl, MVT::v2i64, InVec);
5408 InVec = Op.getOperand(1);
5409 if (InVec.getOpcode() == ISD::SCALAR_TO_VECTOR) {
5410 unsigned NumElts = ResVT.getVectorNumElements();
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005411 VecOp = DAG.getNode(ISD::BITCAST, dl, ResVT, VecOp);
Mon P Wangeb38ebf2010-01-24 00:05:03 +00005412 VecOp = DAG.getNode(ISD::INSERT_VECTOR_ELT, dl, ResVT, VecOp,
5413 InVec.getOperand(0), DAG.getIntPtrConstant(NumElts/2+1));
5414 } else {
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005415 InVec = DAG.getNode(ISD::BITCAST, dl, MVT::v1i64, InVec);
Mon P Wangeb38ebf2010-01-24 00:05:03 +00005416 SDValue VecOp2 = DAG.getNode(X86ISD::MOVQ2DQ, dl, MVT::v2i64, InVec);
5417 Mask[0] = 0; Mask[1] = 2;
5418 VecOp = DAG.getVectorShuffle(MVT::v2i64, dl, VecOp, VecOp2, Mask);
5419 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005420 return DAG.getNode(ISD::BITCAST, dl, ResVT, VecOp);
Mon P Wangeb38ebf2010-01-24 00:05:03 +00005421}
5422
Bruno Cardoso Lopes8af24512011-08-01 21:54:02 +00005423// LowerAVXCONCAT_VECTORS - 256-bit AVX can use the vinsertf128 instruction
5424// to create 256-bit vectors from two other 128-bit ones.
5425static SDValue LowerAVXCONCAT_VECTORS(SDValue Op, SelectionDAG &DAG) {
5426 DebugLoc dl = Op.getDebugLoc();
5427 EVT ResVT = Op.getValueType();
5428
5429 assert(ResVT.getSizeInBits() == 256 && "Value type must be 256-bit wide");
5430
5431 SDValue V1 = Op.getOperand(0);
5432 SDValue V2 = Op.getOperand(1);
5433 unsigned NumElems = ResVT.getVectorNumElements();
5434
5435 SDValue V = Insert128BitVector(DAG.getNode(ISD::UNDEF, dl, ResVT), V1,
5436 DAG.getConstant(0, MVT::i32), DAG, dl);
5437 return Insert128BitVector(V, V2, DAG.getConstant(NumElems/2, MVT::i32),
5438 DAG, dl);
5439}
5440
5441SDValue
5442X86TargetLowering::LowerCONCAT_VECTORS(SDValue Op, SelectionDAG &DAG) const {
Bruno Cardoso Lopes8af24512011-08-01 21:54:02 +00005443 EVT ResVT = Op.getValueType();
5444
5445 assert(Op.getNumOperands() == 2);
5446 assert((ResVT.getSizeInBits() == 128 || ResVT.getSizeInBits() == 256) &&
5447 "Unsupported CONCAT_VECTORS for value type");
5448
5449 // We support concatenate two MMX registers and place them in a MMX register.
5450 // This is better than doing a stack convert.
5451 if (ResVT.is128BitVector())
5452 return LowerMMXCONCAT_VECTORS(Op, DAG);
5453
5454 // 256-bit AVX can use the vinsertf128 instruction to create 256-bit vectors
5455 // from two other 128-bit ones.
5456 return LowerAVXCONCAT_VECTORS(Op, DAG);
5457}
5458
Nate Begemanb9a47b82009-02-23 08:49:38 +00005459// v8i16 shuffles - Prefer shuffles in the following order:
5460// 1. [all] pshuflw, pshufhw, optional move
5461// 2. [ssse3] 1 x pshufb
5462// 3. [ssse3] 2 x pshufb + 1 x por
5463// 4. [all] mov + pshuflw + pshufhw + N x (pextrw + pinsrw)
Bruno Cardoso Lopesbf8154a2010-08-21 01:32:18 +00005464SDValue
5465X86TargetLowering::LowerVECTOR_SHUFFLEv8i16(SDValue Op,
5466 SelectionDAG &DAG) const {
5467 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(Op);
Nate Begeman9008ca62009-04-27 18:41:29 +00005468 SDValue V1 = SVOp->getOperand(0);
5469 SDValue V2 = SVOp->getOperand(1);
5470 DebugLoc dl = SVOp->getDebugLoc();
Nate Begemanb9a47b82009-02-23 08:49:38 +00005471 SmallVector<int, 8> MaskVals;
Evan Cheng14b32e12007-12-11 01:46:18 +00005472
Nate Begemanb9a47b82009-02-23 08:49:38 +00005473 // Determine if more than 1 of the words in each of the low and high quadwords
5474 // of the result come from the same quadword of one of the two inputs. Undef
5475 // mask values count as coming from any quadword, for better codegen.
Benjamin Kramer003fad92011-10-15 13:28:31 +00005476 unsigned LoQuad[] = { 0, 0, 0, 0 };
5477 unsigned HiQuad[] = { 0, 0, 0, 0 };
Nate Begemanb9a47b82009-02-23 08:49:38 +00005478 BitVector InputQuads(4);
5479 for (unsigned i = 0; i < 8; ++i) {
Benjamin Kramer003fad92011-10-15 13:28:31 +00005480 unsigned *Quad = i < 4 ? LoQuad : HiQuad;
Nate Begeman9008ca62009-04-27 18:41:29 +00005481 int EltIdx = SVOp->getMaskElt(i);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005482 MaskVals.push_back(EltIdx);
5483 if (EltIdx < 0) {
5484 ++Quad[0];
5485 ++Quad[1];
5486 ++Quad[2];
5487 ++Quad[3];
Evan Cheng14b32e12007-12-11 01:46:18 +00005488 continue;
Nate Begemanb9a47b82009-02-23 08:49:38 +00005489 }
5490 ++Quad[EltIdx / 4];
5491 InputQuads.set(EltIdx / 4);
Evan Cheng14b32e12007-12-11 01:46:18 +00005492 }
Bill Wendlinge85dc492008-08-21 22:35:37 +00005493
Nate Begemanb9a47b82009-02-23 08:49:38 +00005494 int BestLoQuad = -1;
Evan Cheng14b32e12007-12-11 01:46:18 +00005495 unsigned MaxQuad = 1;
5496 for (unsigned i = 0; i < 4; ++i) {
Nate Begemanb9a47b82009-02-23 08:49:38 +00005497 if (LoQuad[i] > MaxQuad) {
5498 BestLoQuad = i;
5499 MaxQuad = LoQuad[i];
Evan Cheng14b32e12007-12-11 01:46:18 +00005500 }
Evan Cheng8a86c3f2007-12-07 08:07:39 +00005501 }
5502
Nate Begemanb9a47b82009-02-23 08:49:38 +00005503 int BestHiQuad = -1;
Evan Cheng14b32e12007-12-11 01:46:18 +00005504 MaxQuad = 1;
5505 for (unsigned i = 0; i < 4; ++i) {
Nate Begemanb9a47b82009-02-23 08:49:38 +00005506 if (HiQuad[i] > MaxQuad) {
5507 BestHiQuad = i;
5508 MaxQuad = HiQuad[i];
Evan Cheng14b32e12007-12-11 01:46:18 +00005509 }
5510 }
5511
Nate Begemanb9a47b82009-02-23 08:49:38 +00005512 // For SSSE3, If all 8 words of the result come from only 1 quadword of each
Eric Christopherfd179292009-08-27 18:07:15 +00005513 // of the two input vectors, shuffle them into one input vector so only a
Nate Begemanb9a47b82009-02-23 08:49:38 +00005514 // single pshufb instruction is necessary. If There are more than 2 input
5515 // quads, disable the next transformation since it does not help SSSE3.
5516 bool V1Used = InputQuads[0] || InputQuads[1];
5517 bool V2Used = InputQuads[2] || InputQuads[3];
Craig Topperc0d82852011-11-22 00:44:41 +00005518 if (Subtarget->hasSSSE3orAVX()) {
Nate Begemanb9a47b82009-02-23 08:49:38 +00005519 if (InputQuads.count() == 2 && V1Used && V2Used) {
5520 BestLoQuad = InputQuads.find_first();
5521 BestHiQuad = InputQuads.find_next(BestLoQuad);
5522 }
5523 if (InputQuads.count() > 2) {
5524 BestLoQuad = -1;
5525 BestHiQuad = -1;
5526 }
5527 }
Bill Wendlinge85dc492008-08-21 22:35:37 +00005528
Nate Begemanb9a47b82009-02-23 08:49:38 +00005529 // If BestLoQuad or BestHiQuad are set, shuffle the quads together and update
5530 // the shuffle mask. If a quad is scored as -1, that means that it contains
5531 // words from all 4 input quadwords.
5532 SDValue NewV;
5533 if (BestLoQuad >= 0 || BestHiQuad >= 0) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005534 SmallVector<int, 8> MaskV;
5535 MaskV.push_back(BestLoQuad < 0 ? 0 : BestLoQuad);
5536 MaskV.push_back(BestHiQuad < 0 ? 1 : BestHiQuad);
Eric Christopherfd179292009-08-27 18:07:15 +00005537 NewV = DAG.getVectorShuffle(MVT::v2i64, dl,
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005538 DAG.getNode(ISD::BITCAST, dl, MVT::v2i64, V1),
5539 DAG.getNode(ISD::BITCAST, dl, MVT::v2i64, V2), &MaskV[0]);
5540 NewV = DAG.getNode(ISD::BITCAST, dl, MVT::v8i16, NewV);
Evan Cheng14b32e12007-12-11 01:46:18 +00005541
Nate Begemanb9a47b82009-02-23 08:49:38 +00005542 // Rewrite the MaskVals and assign NewV to V1 if NewV now contains all the
5543 // source words for the shuffle, to aid later transformations.
5544 bool AllWordsInNewV = true;
Mon P Wang37b9a192009-03-11 06:35:11 +00005545 bool InOrder[2] = { true, true };
Evan Cheng14b32e12007-12-11 01:46:18 +00005546 for (unsigned i = 0; i != 8; ++i) {
Nate Begemanb9a47b82009-02-23 08:49:38 +00005547 int idx = MaskVals[i];
Mon P Wang37b9a192009-03-11 06:35:11 +00005548 if (idx != (int)i)
5549 InOrder[i/4] = false;
Nate Begemanb9a47b82009-02-23 08:49:38 +00005550 if (idx < 0 || (idx/4) == BestLoQuad || (idx/4) == BestHiQuad)
Evan Cheng14b32e12007-12-11 01:46:18 +00005551 continue;
Nate Begemanb9a47b82009-02-23 08:49:38 +00005552 AllWordsInNewV = false;
5553 break;
Evan Cheng14b32e12007-12-11 01:46:18 +00005554 }
Bill Wendlinge85dc492008-08-21 22:35:37 +00005555
Nate Begemanb9a47b82009-02-23 08:49:38 +00005556 bool pshuflw = AllWordsInNewV, pshufhw = AllWordsInNewV;
5557 if (AllWordsInNewV) {
5558 for (int i = 0; i != 8; ++i) {
5559 int idx = MaskVals[i];
5560 if (idx < 0)
Evan Cheng14b32e12007-12-11 01:46:18 +00005561 continue;
Eric Christopherfd179292009-08-27 18:07:15 +00005562 idx = MaskVals[i] = (idx / 4) == BestLoQuad ? (idx & 3) : (idx & 3) + 4;
Nate Begemanb9a47b82009-02-23 08:49:38 +00005563 if ((idx != i) && idx < 4)
5564 pshufhw = false;
5565 if ((idx != i) && idx > 3)
5566 pshuflw = false;
Evan Cheng14b32e12007-12-11 01:46:18 +00005567 }
Nate Begemanb9a47b82009-02-23 08:49:38 +00005568 V1 = NewV;
5569 V2Used = false;
5570 BestLoQuad = 0;
5571 BestHiQuad = 1;
Evan Cheng8a86c3f2007-12-07 08:07:39 +00005572 }
Evan Cheng14b32e12007-12-11 01:46:18 +00005573
Nate Begemanb9a47b82009-02-23 08:49:38 +00005574 // If we've eliminated the use of V2, and the new mask is a pshuflw or
5575 // pshufhw, that's as cheap as it gets. Return the new shuffle.
Mon P Wang37b9a192009-03-11 06:35:11 +00005576 if ((pshufhw && InOrder[0]) || (pshuflw && InOrder[1])) {
Bruno Cardoso Lopes3efc0772010-08-23 20:41:02 +00005577 unsigned Opc = pshufhw ? X86ISD::PSHUFHW : X86ISD::PSHUFLW;
5578 unsigned TargetMask = 0;
5579 NewV = DAG.getVectorShuffle(MVT::v8i16, dl, NewV,
Owen Anderson825b72b2009-08-11 20:47:22 +00005580 DAG.getUNDEF(MVT::v8i16), &MaskVals[0]);
Bruno Cardoso Lopes3efc0772010-08-23 20:41:02 +00005581 TargetMask = pshufhw ? X86::getShufflePSHUFHWImmediate(NewV.getNode()):
5582 X86::getShufflePSHUFLWImmediate(NewV.getNode());
5583 V1 = NewV.getOperand(0);
Bruno Cardoso Lopes8878e212010-08-24 01:16:15 +00005584 return getTargetShuffleNode(Opc, dl, MVT::v8i16, V1, TargetMask, DAG);
Evan Cheng14b32e12007-12-11 01:46:18 +00005585 }
Evan Cheng14b32e12007-12-11 01:46:18 +00005586 }
Eric Christopherfd179292009-08-27 18:07:15 +00005587
Nate Begemanb9a47b82009-02-23 08:49:38 +00005588 // If we have SSSE3, and all words of the result are from 1 input vector,
5589 // case 2 is generated, otherwise case 3 is generated. If no SSSE3
5590 // is present, fall back to case 4.
Craig Topperc0d82852011-11-22 00:44:41 +00005591 if (Subtarget->hasSSSE3orAVX()) {
Nate Begemanb9a47b82009-02-23 08:49:38 +00005592 SmallVector<SDValue,16> pshufbMask;
Eric Christopherfd179292009-08-27 18:07:15 +00005593
Nate Begemanb9a47b82009-02-23 08:49:38 +00005594 // If we have elements from both input vectors, set the high bit of the
Eric Christopherfd179292009-08-27 18:07:15 +00005595 // shuffle mask element to zero out elements that come from V2 in the V1
Nate Begemanb9a47b82009-02-23 08:49:38 +00005596 // mask, and elements that come from V1 in the V2 mask, so that the two
5597 // results can be OR'd together.
5598 bool TwoInputs = V1Used && V2Used;
5599 for (unsigned i = 0; i != 8; ++i) {
5600 int EltIdx = MaskVals[i] * 2;
5601 if (TwoInputs && (EltIdx >= 16)) {
Owen Anderson825b72b2009-08-11 20:47:22 +00005602 pshufbMask.push_back(DAG.getConstant(0x80, MVT::i8));
5603 pshufbMask.push_back(DAG.getConstant(0x80, MVT::i8));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005604 continue;
5605 }
Owen Anderson825b72b2009-08-11 20:47:22 +00005606 pshufbMask.push_back(DAG.getConstant(EltIdx, MVT::i8));
5607 pshufbMask.push_back(DAG.getConstant(EltIdx+1, MVT::i8));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005608 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005609 V1 = DAG.getNode(ISD::BITCAST, dl, MVT::v16i8, V1);
Eric Christopherfd179292009-08-27 18:07:15 +00005610 V1 = DAG.getNode(X86ISD::PSHUFB, dl, MVT::v16i8, V1,
Evan Chenga87008d2009-02-25 22:49:59 +00005611 DAG.getNode(ISD::BUILD_VECTOR, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00005612 MVT::v16i8, &pshufbMask[0], 16));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005613 if (!TwoInputs)
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005614 return DAG.getNode(ISD::BITCAST, dl, MVT::v8i16, V1);
Eric Christopherfd179292009-08-27 18:07:15 +00005615
Nate Begemanb9a47b82009-02-23 08:49:38 +00005616 // Calculate the shuffle mask for the second input, shuffle it, and
5617 // OR it with the first shuffled input.
5618 pshufbMask.clear();
5619 for (unsigned i = 0; i != 8; ++i) {
5620 int EltIdx = MaskVals[i] * 2;
5621 if (EltIdx < 16) {
Owen Anderson825b72b2009-08-11 20:47:22 +00005622 pshufbMask.push_back(DAG.getConstant(0x80, MVT::i8));
5623 pshufbMask.push_back(DAG.getConstant(0x80, MVT::i8));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005624 continue;
5625 }
Owen Anderson825b72b2009-08-11 20:47:22 +00005626 pshufbMask.push_back(DAG.getConstant(EltIdx - 16, MVT::i8));
5627 pshufbMask.push_back(DAG.getConstant(EltIdx - 15, MVT::i8));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005628 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005629 V2 = DAG.getNode(ISD::BITCAST, dl, MVT::v16i8, V2);
Eric Christopherfd179292009-08-27 18:07:15 +00005630 V2 = DAG.getNode(X86ISD::PSHUFB, dl, MVT::v16i8, V2,
Evan Chenga87008d2009-02-25 22:49:59 +00005631 DAG.getNode(ISD::BUILD_VECTOR, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00005632 MVT::v16i8, &pshufbMask[0], 16));
5633 V1 = DAG.getNode(ISD::OR, dl, MVT::v16i8, V1, V2);
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005634 return DAG.getNode(ISD::BITCAST, dl, MVT::v8i16, V1);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005635 }
5636
5637 // If BestLoQuad >= 0, generate a pshuflw to put the low elements in order,
5638 // and update MaskVals with new element order.
5639 BitVector InOrder(8);
5640 if (BestLoQuad >= 0) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005641 SmallVector<int, 8> MaskV;
Nate Begemanb9a47b82009-02-23 08:49:38 +00005642 for (int i = 0; i != 4; ++i) {
5643 int idx = MaskVals[i];
5644 if (idx < 0) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005645 MaskV.push_back(-1);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005646 InOrder.set(i);
5647 } else if ((idx / 4) == BestLoQuad) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005648 MaskV.push_back(idx & 3);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005649 InOrder.set(i);
5650 } else {
Nate Begeman9008ca62009-04-27 18:41:29 +00005651 MaskV.push_back(-1);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005652 }
5653 }
5654 for (unsigned i = 4; i != 8; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00005655 MaskV.push_back(i);
Owen Anderson825b72b2009-08-11 20:47:22 +00005656 NewV = DAG.getVectorShuffle(MVT::v8i16, dl, NewV, DAG.getUNDEF(MVT::v8i16),
Nate Begeman9008ca62009-04-27 18:41:29 +00005657 &MaskV[0]);
Bruno Cardoso Lopes8878e212010-08-24 01:16:15 +00005658
Craig Topperc0d82852011-11-22 00:44:41 +00005659 if (NewV.getOpcode() == ISD::VECTOR_SHUFFLE && Subtarget->hasSSSE3orAVX())
Bruno Cardoso Lopes8878e212010-08-24 01:16:15 +00005660 NewV = getTargetShuffleNode(X86ISD::PSHUFLW, dl, MVT::v8i16,
5661 NewV.getOperand(0),
5662 X86::getShufflePSHUFLWImmediate(NewV.getNode()),
5663 DAG);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005664 }
Eric Christopherfd179292009-08-27 18:07:15 +00005665
Nate Begemanb9a47b82009-02-23 08:49:38 +00005666 // If BestHi >= 0, generate a pshufhw to put the high elements in order,
5667 // and update MaskVals with the new element order.
5668 if (BestHiQuad >= 0) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005669 SmallVector<int, 8> MaskV;
Nate Begemanb9a47b82009-02-23 08:49:38 +00005670 for (unsigned i = 0; i != 4; ++i)
Nate Begeman9008ca62009-04-27 18:41:29 +00005671 MaskV.push_back(i);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005672 for (unsigned i = 4; i != 8; ++i) {
5673 int idx = MaskVals[i];
5674 if (idx < 0) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005675 MaskV.push_back(-1);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005676 InOrder.set(i);
5677 } else if ((idx / 4) == BestHiQuad) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005678 MaskV.push_back((idx & 3) + 4);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005679 InOrder.set(i);
5680 } else {
Nate Begeman9008ca62009-04-27 18:41:29 +00005681 MaskV.push_back(-1);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005682 }
5683 }
Owen Anderson825b72b2009-08-11 20:47:22 +00005684 NewV = DAG.getVectorShuffle(MVT::v8i16, dl, NewV, DAG.getUNDEF(MVT::v8i16),
Nate Begeman9008ca62009-04-27 18:41:29 +00005685 &MaskV[0]);
Bruno Cardoso Lopes8878e212010-08-24 01:16:15 +00005686
Craig Topperc0d82852011-11-22 00:44:41 +00005687 if (NewV.getOpcode() == ISD::VECTOR_SHUFFLE && Subtarget->hasSSSE3orAVX())
Bruno Cardoso Lopes8878e212010-08-24 01:16:15 +00005688 NewV = getTargetShuffleNode(X86ISD::PSHUFHW, dl, MVT::v8i16,
5689 NewV.getOperand(0),
5690 X86::getShufflePSHUFHWImmediate(NewV.getNode()),
5691 DAG);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005692 }
Eric Christopherfd179292009-08-27 18:07:15 +00005693
Nate Begemanb9a47b82009-02-23 08:49:38 +00005694 // In case BestHi & BestLo were both -1, which means each quadword has a word
5695 // from each of the four input quadwords, calculate the InOrder bitvector now
5696 // before falling through to the insert/extract cleanup.
5697 if (BestLoQuad == -1 && BestHiQuad == -1) {
5698 NewV = V1;
5699 for (int i = 0; i != 8; ++i)
5700 if (MaskVals[i] < 0 || MaskVals[i] == i)
5701 InOrder.set(i);
5702 }
Eric Christopherfd179292009-08-27 18:07:15 +00005703
Nate Begemanb9a47b82009-02-23 08:49:38 +00005704 // The other elements are put in the right place using pextrw and pinsrw.
5705 for (unsigned i = 0; i != 8; ++i) {
5706 if (InOrder[i])
5707 continue;
5708 int EltIdx = MaskVals[i];
5709 if (EltIdx < 0)
5710 continue;
5711 SDValue ExtOp = (EltIdx < 8)
Owen Anderson825b72b2009-08-11 20:47:22 +00005712 ? DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::i16, V1,
Nate Begemanb9a47b82009-02-23 08:49:38 +00005713 DAG.getIntPtrConstant(EltIdx))
Owen Anderson825b72b2009-08-11 20:47:22 +00005714 : DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::i16, V2,
Nate Begemanb9a47b82009-02-23 08:49:38 +00005715 DAG.getIntPtrConstant(EltIdx - 8));
Owen Anderson825b72b2009-08-11 20:47:22 +00005716 NewV = DAG.getNode(ISD::INSERT_VECTOR_ELT, dl, MVT::v8i16, NewV, ExtOp,
Nate Begemanb9a47b82009-02-23 08:49:38 +00005717 DAG.getIntPtrConstant(i));
5718 }
5719 return NewV;
5720}
5721
5722// v16i8 shuffles - Prefer shuffles in the following order:
5723// 1. [ssse3] 1 x pshufb
5724// 2. [ssse3] 2 x pshufb + 1 x por
5725// 3. [all] v8i16 shuffle + N x pextrw + rotate + pinsrw
5726static
Nate Begeman9008ca62009-04-27 18:41:29 +00005727SDValue LowerVECTOR_SHUFFLEv16i8(ShuffleVectorSDNode *SVOp,
Dan Gohmand858e902010-04-17 15:26:15 +00005728 SelectionDAG &DAG,
5729 const X86TargetLowering &TLI) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005730 SDValue V1 = SVOp->getOperand(0);
5731 SDValue V2 = SVOp->getOperand(1);
5732 DebugLoc dl = SVOp->getDebugLoc();
Nate Begemanb9a47b82009-02-23 08:49:38 +00005733 SmallVector<int, 16> MaskVals;
Nate Begeman9008ca62009-04-27 18:41:29 +00005734 SVOp->getMask(MaskVals);
Eric Christopherfd179292009-08-27 18:07:15 +00005735
Nate Begemanb9a47b82009-02-23 08:49:38 +00005736 // If we have SSSE3, case 1 is generated when all result bytes come from
Eric Christopherfd179292009-08-27 18:07:15 +00005737 // one of the inputs. Otherwise, case 2 is generated. If no SSSE3 is
Nate Begemanb9a47b82009-02-23 08:49:38 +00005738 // present, fall back to case 3.
5739 // FIXME: kill V2Only once shuffles are canonizalized by getNode.
5740 bool V1Only = true;
5741 bool V2Only = true;
5742 for (unsigned i = 0; i < 16; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005743 int EltIdx = MaskVals[i];
Nate Begemanb9a47b82009-02-23 08:49:38 +00005744 if (EltIdx < 0)
5745 continue;
5746 if (EltIdx < 16)
5747 V2Only = false;
5748 else
5749 V1Only = false;
5750 }
Eric Christopherfd179292009-08-27 18:07:15 +00005751
Nate Begemanb9a47b82009-02-23 08:49:38 +00005752 // If SSSE3, use 1 pshufb instruction per vector with elements in the result.
Craig Topperc0d82852011-11-22 00:44:41 +00005753 if (TLI.getSubtarget()->hasSSSE3orAVX()) {
Nate Begemanb9a47b82009-02-23 08:49:38 +00005754 SmallVector<SDValue,16> pshufbMask;
Eric Christopherfd179292009-08-27 18:07:15 +00005755
Nate Begemanb9a47b82009-02-23 08:49:38 +00005756 // If all result elements are from one input vector, then only translate
Eric Christopherfd179292009-08-27 18:07:15 +00005757 // undef mask values to 0x80 (zero out result) in the pshufb mask.
Nate Begemanb9a47b82009-02-23 08:49:38 +00005758 //
5759 // Otherwise, we have elements from both input vectors, and must zero out
5760 // elements that come from V2 in the first mask, and V1 in the second mask
5761 // so that we can OR them together.
5762 bool TwoInputs = !(V1Only || V2Only);
5763 for (unsigned i = 0; i != 16; ++i) {
5764 int EltIdx = MaskVals[i];
5765 if (EltIdx < 0 || (TwoInputs && EltIdx >= 16)) {
Owen Anderson825b72b2009-08-11 20:47:22 +00005766 pshufbMask.push_back(DAG.getConstant(0x80, MVT::i8));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005767 continue;
5768 }
Owen Anderson825b72b2009-08-11 20:47:22 +00005769 pshufbMask.push_back(DAG.getConstant(EltIdx, MVT::i8));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005770 }
5771 // If all the elements are from V2, assign it to V1 and return after
5772 // building the first pshufb.
5773 if (V2Only)
5774 V1 = V2;
Owen Anderson825b72b2009-08-11 20:47:22 +00005775 V1 = DAG.getNode(X86ISD::PSHUFB, dl, MVT::v16i8, V1,
Evan Chenga87008d2009-02-25 22:49:59 +00005776 DAG.getNode(ISD::BUILD_VECTOR, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00005777 MVT::v16i8, &pshufbMask[0], 16));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005778 if (!TwoInputs)
5779 return V1;
Eric Christopherfd179292009-08-27 18:07:15 +00005780
Nate Begemanb9a47b82009-02-23 08:49:38 +00005781 // Calculate the shuffle mask for the second input, shuffle it, and
5782 // OR it with the first shuffled input.
5783 pshufbMask.clear();
5784 for (unsigned i = 0; i != 16; ++i) {
5785 int EltIdx = MaskVals[i];
5786 if (EltIdx < 16) {
Owen Anderson825b72b2009-08-11 20:47:22 +00005787 pshufbMask.push_back(DAG.getConstant(0x80, MVT::i8));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005788 continue;
5789 }
Owen Anderson825b72b2009-08-11 20:47:22 +00005790 pshufbMask.push_back(DAG.getConstant(EltIdx - 16, MVT::i8));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005791 }
Owen Anderson825b72b2009-08-11 20:47:22 +00005792 V2 = DAG.getNode(X86ISD::PSHUFB, dl, MVT::v16i8, V2,
Evan Chenga87008d2009-02-25 22:49:59 +00005793 DAG.getNode(ISD::BUILD_VECTOR, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00005794 MVT::v16i8, &pshufbMask[0], 16));
5795 return DAG.getNode(ISD::OR, dl, MVT::v16i8, V1, V2);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005796 }
Eric Christopherfd179292009-08-27 18:07:15 +00005797
Nate Begemanb9a47b82009-02-23 08:49:38 +00005798 // No SSSE3 - Calculate in place words and then fix all out of place words
5799 // With 0-16 extracts & inserts. Worst case is 16 bytes out of order from
5800 // the 16 different words that comprise the two doublequadword input vectors.
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005801 V1 = DAG.getNode(ISD::BITCAST, dl, MVT::v8i16, V1);
5802 V2 = DAG.getNode(ISD::BITCAST, dl, MVT::v8i16, V2);
Nate Begemanb9a47b82009-02-23 08:49:38 +00005803 SDValue NewV = V2Only ? V2 : V1;
5804 for (int i = 0; i != 8; ++i) {
5805 int Elt0 = MaskVals[i*2];
5806 int Elt1 = MaskVals[i*2+1];
Eric Christopherfd179292009-08-27 18:07:15 +00005807
Nate Begemanb9a47b82009-02-23 08:49:38 +00005808 // This word of the result is all undef, skip it.
5809 if (Elt0 < 0 && Elt1 < 0)
5810 continue;
Eric Christopherfd179292009-08-27 18:07:15 +00005811
Nate Begemanb9a47b82009-02-23 08:49:38 +00005812 // This word of the result is already in the correct place, skip it.
5813 if (V1Only && (Elt0 == i*2) && (Elt1 == i*2+1))
5814 continue;
5815 if (V2Only && (Elt0 == i*2+16) && (Elt1 == i*2+17))
5816 continue;
Eric Christopherfd179292009-08-27 18:07:15 +00005817
Nate Begemanb9a47b82009-02-23 08:49:38 +00005818 SDValue Elt0Src = Elt0 < 16 ? V1 : V2;
5819 SDValue Elt1Src = Elt1 < 16 ? V1 : V2;
5820 SDValue InsElt;
Mon P Wang6b3ef692009-03-11 18:47:57 +00005821
5822 // If Elt0 and Elt1 are defined, are consecutive, and can be load
5823 // using a single extract together, load it and store it.
5824 if ((Elt0 >= 0) && ((Elt0 + 1) == Elt1) && ((Elt0 & 1) == 0)) {
Owen Anderson825b72b2009-08-11 20:47:22 +00005825 InsElt = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::i16, Elt1Src,
Mon P Wang6b3ef692009-03-11 18:47:57 +00005826 DAG.getIntPtrConstant(Elt1 / 2));
Owen Anderson825b72b2009-08-11 20:47:22 +00005827 NewV = DAG.getNode(ISD::INSERT_VECTOR_ELT, dl, MVT::v8i16, NewV, InsElt,
Mon P Wang6b3ef692009-03-11 18:47:57 +00005828 DAG.getIntPtrConstant(i));
5829 continue;
5830 }
5831
Nate Begemanb9a47b82009-02-23 08:49:38 +00005832 // If Elt1 is defined, extract it from the appropriate source. If the
Mon P Wang6b3ef692009-03-11 18:47:57 +00005833 // source byte is not also odd, shift the extracted word left 8 bits
5834 // otherwise clear the bottom 8 bits if we need to do an or.
Nate Begemanb9a47b82009-02-23 08:49:38 +00005835 if (Elt1 >= 0) {
Owen Anderson825b72b2009-08-11 20:47:22 +00005836 InsElt = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::i16, Elt1Src,
Nate Begemanb9a47b82009-02-23 08:49:38 +00005837 DAG.getIntPtrConstant(Elt1 / 2));
5838 if ((Elt1 & 1) == 0)
Owen Anderson825b72b2009-08-11 20:47:22 +00005839 InsElt = DAG.getNode(ISD::SHL, dl, MVT::i16, InsElt,
Owen Anderson95771af2011-02-25 21:41:48 +00005840 DAG.getConstant(8,
5841 TLI.getShiftAmountTy(InsElt.getValueType())));
Mon P Wang6b3ef692009-03-11 18:47:57 +00005842 else if (Elt0 >= 0)
Owen Anderson825b72b2009-08-11 20:47:22 +00005843 InsElt = DAG.getNode(ISD::AND, dl, MVT::i16, InsElt,
5844 DAG.getConstant(0xFF00, MVT::i16));
Nate Begemanb9a47b82009-02-23 08:49:38 +00005845 }
5846 // If Elt0 is defined, extract it from the appropriate source. If the
5847 // source byte is not also even, shift the extracted word right 8 bits. If
5848 // Elt1 was also defined, OR the extracted values together before
5849 // inserting them in the result.
5850 if (Elt0 >= 0) {
Owen Anderson825b72b2009-08-11 20:47:22 +00005851 SDValue InsElt0 = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::i16,
Nate Begemanb9a47b82009-02-23 08:49:38 +00005852 Elt0Src, DAG.getIntPtrConstant(Elt0 / 2));
5853 if ((Elt0 & 1) != 0)
Owen Anderson825b72b2009-08-11 20:47:22 +00005854 InsElt0 = DAG.getNode(ISD::SRL, dl, MVT::i16, InsElt0,
Owen Anderson95771af2011-02-25 21:41:48 +00005855 DAG.getConstant(8,
5856 TLI.getShiftAmountTy(InsElt0.getValueType())));
Mon P Wang6b3ef692009-03-11 18:47:57 +00005857 else if (Elt1 >= 0)
Owen Anderson825b72b2009-08-11 20:47:22 +00005858 InsElt0 = DAG.getNode(ISD::AND, dl, MVT::i16, InsElt0,
5859 DAG.getConstant(0x00FF, MVT::i16));
5860 InsElt = Elt1 >= 0 ? DAG.getNode(ISD::OR, dl, MVT::i16, InsElt, InsElt0)
Nate Begemanb9a47b82009-02-23 08:49:38 +00005861 : InsElt0;
5862 }
Owen Anderson825b72b2009-08-11 20:47:22 +00005863 NewV = DAG.getNode(ISD::INSERT_VECTOR_ELT, dl, MVT::v8i16, NewV, InsElt,
Nate Begemanb9a47b82009-02-23 08:49:38 +00005864 DAG.getIntPtrConstant(i));
5865 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005866 return DAG.getNode(ISD::BITCAST, dl, MVT::v16i8, NewV);
Evan Cheng14b32e12007-12-11 01:46:18 +00005867}
5868
Evan Cheng7a831ce2007-12-15 03:00:47 +00005869/// RewriteAsNarrowerShuffle - Try rewriting v8i16 and v16i8 shuffles as 4 wide
Bruno Cardoso Lopes0a7dd4f2010-09-08 18:12:31 +00005870/// ones, or rewriting v4i32 / v4f32 as 2 wide ones if possible. This can be
Evan Cheng7a831ce2007-12-15 03:00:47 +00005871/// done when every pair / quad of shuffle mask elements point to elements in
5872/// the right sequence. e.g.
Bruno Cardoso Lopes0a7dd4f2010-09-08 18:12:31 +00005873/// vector_shuffle X, Y, <2, 3, | 10, 11, | 0, 1, | 14, 15>
Evan Cheng14b32e12007-12-11 01:46:18 +00005874static
Nate Begeman9008ca62009-04-27 18:41:29 +00005875SDValue RewriteAsNarrowerShuffle(ShuffleVectorSDNode *SVOp,
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00005876 SelectionDAG &DAG, DebugLoc dl) {
Owen Andersone50ed302009-08-10 22:56:29 +00005877 EVT VT = SVOp->getValueType(0);
Nate Begeman9008ca62009-04-27 18:41:29 +00005878 SDValue V1 = SVOp->getOperand(0);
5879 SDValue V2 = SVOp->getOperand(1);
5880 unsigned NumElems = VT.getVectorNumElements();
Evan Cheng7a831ce2007-12-15 03:00:47 +00005881 unsigned NewWidth = (NumElems == 4) ? 2 : 4;
Bruno Cardoso Lopes0a7dd4f2010-09-08 18:12:31 +00005882 EVT NewVT;
Owen Anderson825b72b2009-08-11 20:47:22 +00005883 switch (VT.getSimpleVT().SimpleTy) {
Duncan Sands83ec4b62008-06-06 12:08:01 +00005884 default: assert(false && "Unexpected!");
Owen Anderson825b72b2009-08-11 20:47:22 +00005885 case MVT::v4f32: NewVT = MVT::v2f64; break;
5886 case MVT::v4i32: NewVT = MVT::v2i64; break;
5887 case MVT::v8i16: NewVT = MVT::v4i32; break;
5888 case MVT::v16i8: NewVT = MVT::v4i32; break;
Evan Cheng7a831ce2007-12-15 03:00:47 +00005889 }
5890
Nate Begeman9008ca62009-04-27 18:41:29 +00005891 int Scale = NumElems / NewWidth;
5892 SmallVector<int, 8> MaskVec;
Evan Cheng14b32e12007-12-11 01:46:18 +00005893 for (unsigned i = 0; i < NumElems; i += Scale) {
Nate Begeman9008ca62009-04-27 18:41:29 +00005894 int StartIdx = -1;
5895 for (int j = 0; j < Scale; ++j) {
5896 int EltIdx = SVOp->getMaskElt(i+j);
5897 if (EltIdx < 0)
Evan Cheng14b32e12007-12-11 01:46:18 +00005898 continue;
Nate Begeman9008ca62009-04-27 18:41:29 +00005899 if (StartIdx == -1)
Evan Cheng14b32e12007-12-11 01:46:18 +00005900 StartIdx = EltIdx - (EltIdx % Scale);
5901 if (EltIdx != StartIdx + j)
Dan Gohman475871a2008-07-27 21:46:04 +00005902 return SDValue();
Evan Cheng14b32e12007-12-11 01:46:18 +00005903 }
Nate Begeman9008ca62009-04-27 18:41:29 +00005904 if (StartIdx == -1)
5905 MaskVec.push_back(-1);
Evan Cheng14b32e12007-12-11 01:46:18 +00005906 else
Nate Begeman9008ca62009-04-27 18:41:29 +00005907 MaskVec.push_back(StartIdx / Scale);
Evan Cheng8a86c3f2007-12-07 08:07:39 +00005908 }
5909
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005910 V1 = DAG.getNode(ISD::BITCAST, dl, NewVT, V1);
5911 V2 = DAG.getNode(ISD::BITCAST, dl, NewVT, V2);
Nate Begeman9008ca62009-04-27 18:41:29 +00005912 return DAG.getVectorShuffle(NewVT, dl, V1, V2, &MaskVec[0]);
Evan Cheng8a86c3f2007-12-07 08:07:39 +00005913}
5914
Evan Chengd880b972008-05-09 21:53:03 +00005915/// getVZextMovL - Return a zero-extending vector move low node.
Evan Cheng7e2ff772008-05-08 00:57:18 +00005916///
Owen Andersone50ed302009-08-10 22:56:29 +00005917static SDValue getVZextMovL(EVT VT, EVT OpVT,
Nate Begeman9008ca62009-04-27 18:41:29 +00005918 SDValue SrcOp, SelectionDAG &DAG,
5919 const X86Subtarget *Subtarget, DebugLoc dl) {
Owen Anderson825b72b2009-08-11 20:47:22 +00005920 if (VT == MVT::v2f64 || VT == MVT::v4f32) {
Evan Cheng7e2ff772008-05-08 00:57:18 +00005921 LoadSDNode *LD = NULL;
Gabor Greifba36cb52008-08-28 21:40:38 +00005922 if (!isScalarLoadToVector(SrcOp.getNode(), &LD))
Evan Cheng7e2ff772008-05-08 00:57:18 +00005923 LD = dyn_cast<LoadSDNode>(SrcOp);
5924 if (!LD) {
5925 // movssrr and movsdrr do not clear top bits. Try to use movd, movq
5926 // instead.
Owen Anderson766b5ef2009-08-11 21:59:30 +00005927 MVT ExtVT = (OpVT == MVT::v2f64) ? MVT::i64 : MVT::i32;
Duncan Sandscdfad362010-11-03 12:17:33 +00005928 if ((ExtVT != MVT::i64 || Subtarget->is64Bit()) &&
Evan Cheng7e2ff772008-05-08 00:57:18 +00005929 SrcOp.getOpcode() == ISD::SCALAR_TO_VECTOR &&
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005930 SrcOp.getOperand(0).getOpcode() == ISD::BITCAST &&
Owen Anderson766b5ef2009-08-11 21:59:30 +00005931 SrcOp.getOperand(0).getOperand(0).getValueType() == ExtVT) {
Evan Cheng7e2ff772008-05-08 00:57:18 +00005932 // PR2108
Owen Anderson825b72b2009-08-11 20:47:22 +00005933 OpVT = (OpVT == MVT::v2f64) ? MVT::v2i64 : MVT::v4i32;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005934 return DAG.getNode(ISD::BITCAST, dl, VT,
Dale Johannesenace16102009-02-03 19:33:06 +00005935 DAG.getNode(X86ISD::VZEXT_MOVL, dl, OpVT,
5936 DAG.getNode(ISD::SCALAR_TO_VECTOR, dl,
5937 OpVT,
Gabor Greif327ef032008-08-28 23:19:51 +00005938 SrcOp.getOperand(0)
5939 .getOperand(0))));
Evan Cheng7e2ff772008-05-08 00:57:18 +00005940 }
5941 }
5942 }
5943
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005944 return DAG.getNode(ISD::BITCAST, dl, VT,
Dale Johannesenace16102009-02-03 19:33:06 +00005945 DAG.getNode(X86ISD::VZEXT_MOVL, dl, OpVT,
Wesley Peckbf17cfa2010-11-23 03:31:01 +00005946 DAG.getNode(ISD::BITCAST, dl,
Dale Johannesenace16102009-02-03 19:33:06 +00005947 OpVT, SrcOp)));
Evan Cheng7e2ff772008-05-08 00:57:18 +00005948}
5949
Bruno Cardoso Lopes3b865982011-08-16 18:21:54 +00005950/// areShuffleHalvesWithinDisjointLanes - Check whether each half of a vector
5951/// shuffle node referes to only one lane in the sources.
5952static bool areShuffleHalvesWithinDisjointLanes(ShuffleVectorSDNode *SVOp) {
5953 EVT VT = SVOp->getValueType(0);
5954 int NumElems = VT.getVectorNumElements();
5955 int HalfSize = NumElems/2;
5956 SmallVector<int, 16> M;
5957 SVOp->getMask(M);
5958 bool MatchA = false, MatchB = false;
5959
5960 for (int l = 0; l < NumElems*2; l += HalfSize) {
5961 if (isUndefOrInRange(M, 0, HalfSize, l, l+HalfSize)) {
5962 MatchA = true;
5963 break;
5964 }
5965 }
5966
5967 for (int l = 0; l < NumElems*2; l += HalfSize) {
5968 if (isUndefOrInRange(M, HalfSize, HalfSize, l, l+HalfSize)) {
5969 MatchB = true;
5970 break;
5971 }
5972 }
5973
5974 return MatchA && MatchB;
5975}
5976
Bruno Cardoso Lopesd0888342011-07-22 00:14:56 +00005977/// LowerVECTOR_SHUFFLE_256 - Handle all 256-bit wide vectors shuffles
5978/// which could not be matched by any known target speficic shuffle
5979static SDValue
5980LowerVECTOR_SHUFFLE_256(ShuffleVectorSDNode *SVOp, SelectionDAG &DAG) {
Bruno Cardoso Lopes3b865982011-08-16 18:21:54 +00005981 if (areShuffleHalvesWithinDisjointLanes(SVOp)) {
5982 // If each half of a vector shuffle node referes to only one lane in the
5983 // source vectors, extract each used 128-bit lane and shuffle them using
5984 // 128-bit shuffles. Then, concatenate the results. Otherwise leave
5985 // the work to the legalizer.
5986 DebugLoc dl = SVOp->getDebugLoc();
5987 EVT VT = SVOp->getValueType(0);
5988 int NumElems = VT.getVectorNumElements();
5989 int HalfSize = NumElems/2;
5990
5991 // Extract the reference for each half
5992 int FstVecExtractIdx = 0, SndVecExtractIdx = 0;
5993 int FstVecOpNum = 0, SndVecOpNum = 0;
5994 for (int i = 0; i < HalfSize; ++i) {
5995 int Elt = SVOp->getMaskElt(i);
5996 if (SVOp->getMaskElt(i) < 0)
5997 continue;
5998 FstVecOpNum = Elt/NumElems;
5999 FstVecExtractIdx = Elt % NumElems < HalfSize ? 0 : HalfSize;
6000 break;
6001 }
6002 for (int i = HalfSize; i < NumElems; ++i) {
6003 int Elt = SVOp->getMaskElt(i);
6004 if (SVOp->getMaskElt(i) < 0)
6005 continue;
6006 SndVecOpNum = Elt/NumElems;
6007 SndVecExtractIdx = Elt % NumElems < HalfSize ? 0 : HalfSize;
6008 break;
6009 }
6010
6011 // Extract the subvectors
6012 SDValue V1 = Extract128BitVector(SVOp->getOperand(FstVecOpNum),
6013 DAG.getConstant(FstVecExtractIdx, MVT::i32), DAG, dl);
6014 SDValue V2 = Extract128BitVector(SVOp->getOperand(SndVecOpNum),
6015 DAG.getConstant(SndVecExtractIdx, MVT::i32), DAG, dl);
6016
6017 // Generate 128-bit shuffles
6018 SmallVector<int, 16> MaskV1, MaskV2;
6019 for (int i = 0; i < HalfSize; ++i) {
6020 int Elt = SVOp->getMaskElt(i);
6021 MaskV1.push_back(Elt < 0 ? Elt : Elt % HalfSize);
6022 }
6023 for (int i = HalfSize; i < NumElems; ++i) {
6024 int Elt = SVOp->getMaskElt(i);
6025 MaskV2.push_back(Elt < 0 ? Elt : Elt % HalfSize);
6026 }
6027
6028 EVT NVT = V1.getValueType();
6029 V1 = DAG.getVectorShuffle(NVT, dl, V1, DAG.getUNDEF(NVT), &MaskV1[0]);
6030 V2 = DAG.getVectorShuffle(NVT, dl, V2, DAG.getUNDEF(NVT), &MaskV2[0]);
6031
6032 // Concatenate the result back
6033 SDValue V = Insert128BitVector(DAG.getNode(ISD::UNDEF, dl, VT), V1,
6034 DAG.getConstant(0, MVT::i32), DAG, dl);
6035 return Insert128BitVector(V, V2, DAG.getConstant(NumElems/2, MVT::i32),
6036 DAG, dl);
6037 }
6038
Bruno Cardoso Lopesd0888342011-07-22 00:14:56 +00006039 return SDValue();
6040}
6041
Bruno Cardoso Lopes589b8972011-07-22 00:14:53 +00006042/// LowerVECTOR_SHUFFLE_128v4 - Handle all 128-bit wide vectors with
6043/// 4 elements, and match them with several different shuffle types.
Dan Gohman475871a2008-07-27 21:46:04 +00006044static SDValue
Bruno Cardoso Lopes589b8972011-07-22 00:14:53 +00006045LowerVECTOR_SHUFFLE_128v4(ShuffleVectorSDNode *SVOp, SelectionDAG &DAG) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006046 SDValue V1 = SVOp->getOperand(0);
6047 SDValue V2 = SVOp->getOperand(1);
6048 DebugLoc dl = SVOp->getDebugLoc();
Owen Andersone50ed302009-08-10 22:56:29 +00006049 EVT VT = SVOp->getValueType(0);
Eric Christopherfd179292009-08-27 18:07:15 +00006050
Bruno Cardoso Lopes589b8972011-07-22 00:14:53 +00006051 assert(VT.getSizeInBits() == 128 && "Unsupported vector size");
6052
Evan Chengace3c172008-07-22 21:13:36 +00006053 SmallVector<std::pair<int, int>, 8> Locs;
Rafael Espindola833a9902008-08-28 18:32:53 +00006054 Locs.resize(4);
Nate Begeman9008ca62009-04-27 18:41:29 +00006055 SmallVector<int, 8> Mask1(4U, -1);
6056 SmallVector<int, 8> PermMask;
6057 SVOp->getMask(PermMask);
6058
Evan Chengace3c172008-07-22 21:13:36 +00006059 unsigned NumHi = 0;
6060 unsigned NumLo = 0;
Evan Chengace3c172008-07-22 21:13:36 +00006061 for (unsigned i = 0; i != 4; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006062 int Idx = PermMask[i];
6063 if (Idx < 0) {
Evan Chengace3c172008-07-22 21:13:36 +00006064 Locs[i] = std::make_pair(-1, -1);
6065 } else {
Nate Begeman9008ca62009-04-27 18:41:29 +00006066 assert(Idx < 8 && "Invalid VECTOR_SHUFFLE index!");
6067 if (Idx < 4) {
Evan Chengace3c172008-07-22 21:13:36 +00006068 Locs[i] = std::make_pair(0, NumLo);
Nate Begeman9008ca62009-04-27 18:41:29 +00006069 Mask1[NumLo] = Idx;
Evan Chengace3c172008-07-22 21:13:36 +00006070 NumLo++;
6071 } else {
6072 Locs[i] = std::make_pair(1, NumHi);
6073 if (2+NumHi < 4)
Nate Begeman9008ca62009-04-27 18:41:29 +00006074 Mask1[2+NumHi] = Idx;
Evan Chengace3c172008-07-22 21:13:36 +00006075 NumHi++;
6076 }
6077 }
6078 }
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006079
Evan Chengace3c172008-07-22 21:13:36 +00006080 if (NumLo <= 2 && NumHi <= 2) {
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006081 // If no more than two elements come from either vector. This can be
6082 // implemented with two shuffles. First shuffle gather the elements.
6083 // The second shuffle, which takes the first shuffle as both of its
6084 // vector operands, put the elements into the right order.
Nate Begeman9008ca62009-04-27 18:41:29 +00006085 V1 = DAG.getVectorShuffle(VT, dl, V1, V2, &Mask1[0]);
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006086
Nate Begeman9008ca62009-04-27 18:41:29 +00006087 SmallVector<int, 8> Mask2(4U, -1);
Eric Christopherfd179292009-08-27 18:07:15 +00006088
Evan Chengace3c172008-07-22 21:13:36 +00006089 for (unsigned i = 0; i != 4; ++i) {
6090 if (Locs[i].first == -1)
6091 continue;
6092 else {
6093 unsigned Idx = (i < 2) ? 0 : 4;
6094 Idx += Locs[i].first * 2 + Locs[i].second;
Nate Begeman9008ca62009-04-27 18:41:29 +00006095 Mask2[i] = Idx;
Evan Chengace3c172008-07-22 21:13:36 +00006096 }
6097 }
6098
Nate Begeman9008ca62009-04-27 18:41:29 +00006099 return DAG.getVectorShuffle(VT, dl, V1, V1, &Mask2[0]);
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006100 } else if (NumLo == 3 || NumHi == 3) {
6101 // Otherwise, we must have three elements from one vector, call it X, and
6102 // one element from the other, call it Y. First, use a shufps to build an
6103 // intermediate vector with the one element from Y and the element from X
6104 // that will be in the same half in the final destination (the indexes don't
6105 // matter). Then, use a shufps to build the final vector, taking the half
6106 // containing the element from Y from the intermediate, and the other half
6107 // from X.
6108 if (NumHi == 3) {
6109 // Normalize it so the 3 elements come from V1.
Craig Topperbeabc6c2011-12-05 06:56:46 +00006110 CommuteVectorShuffleMask(PermMask, 4);
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006111 std::swap(V1, V2);
6112 }
6113
6114 // Find the element from V2.
6115 unsigned HiIndex;
6116 for (HiIndex = 0; HiIndex < 3; ++HiIndex) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006117 int Val = PermMask[HiIndex];
6118 if (Val < 0)
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006119 continue;
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006120 if (Val >= 4)
6121 break;
6122 }
6123
Nate Begeman9008ca62009-04-27 18:41:29 +00006124 Mask1[0] = PermMask[HiIndex];
6125 Mask1[1] = -1;
6126 Mask1[2] = PermMask[HiIndex^1];
6127 Mask1[3] = -1;
6128 V2 = DAG.getVectorShuffle(VT, dl, V1, V2, &Mask1[0]);
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006129
6130 if (HiIndex >= 2) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006131 Mask1[0] = PermMask[0];
6132 Mask1[1] = PermMask[1];
6133 Mask1[2] = HiIndex & 1 ? 6 : 4;
6134 Mask1[3] = HiIndex & 1 ? 4 : 6;
6135 return DAG.getVectorShuffle(VT, dl, V1, V2, &Mask1[0]);
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006136 } else {
Nate Begeman9008ca62009-04-27 18:41:29 +00006137 Mask1[0] = HiIndex & 1 ? 2 : 0;
6138 Mask1[1] = HiIndex & 1 ? 0 : 2;
6139 Mask1[2] = PermMask[2];
6140 Mask1[3] = PermMask[3];
6141 if (Mask1[2] >= 0)
6142 Mask1[2] += 4;
6143 if (Mask1[3] >= 0)
6144 Mask1[3] += 4;
6145 return DAG.getVectorShuffle(VT, dl, V2, V1, &Mask1[0]);
Evan Cheng5e6ebaf2008-07-23 00:22:17 +00006146 }
Evan Chengace3c172008-07-22 21:13:36 +00006147 }
6148
6149 // Break it into (shuffle shuffle_hi, shuffle_lo).
6150 Locs.clear();
David Greenec4db4e52011-02-28 19:06:56 +00006151 Locs.resize(4);
Nate Begeman9008ca62009-04-27 18:41:29 +00006152 SmallVector<int,8> LoMask(4U, -1);
6153 SmallVector<int,8> HiMask(4U, -1);
6154
6155 SmallVector<int,8> *MaskPtr = &LoMask;
Evan Chengace3c172008-07-22 21:13:36 +00006156 unsigned MaskIdx = 0;
6157 unsigned LoIdx = 0;
6158 unsigned HiIdx = 2;
6159 for (unsigned i = 0; i != 4; ++i) {
6160 if (i == 2) {
6161 MaskPtr = &HiMask;
6162 MaskIdx = 1;
6163 LoIdx = 0;
6164 HiIdx = 2;
6165 }
Nate Begeman9008ca62009-04-27 18:41:29 +00006166 int Idx = PermMask[i];
6167 if (Idx < 0) {
Evan Chengace3c172008-07-22 21:13:36 +00006168 Locs[i] = std::make_pair(-1, -1);
Nate Begeman9008ca62009-04-27 18:41:29 +00006169 } else if (Idx < 4) {
Evan Chengace3c172008-07-22 21:13:36 +00006170 Locs[i] = std::make_pair(MaskIdx, LoIdx);
Nate Begeman9008ca62009-04-27 18:41:29 +00006171 (*MaskPtr)[LoIdx] = Idx;
Evan Chengace3c172008-07-22 21:13:36 +00006172 LoIdx++;
6173 } else {
6174 Locs[i] = std::make_pair(MaskIdx, HiIdx);
Nate Begeman9008ca62009-04-27 18:41:29 +00006175 (*MaskPtr)[HiIdx] = Idx;
Evan Chengace3c172008-07-22 21:13:36 +00006176 HiIdx++;
6177 }
6178 }
6179
Nate Begeman9008ca62009-04-27 18:41:29 +00006180 SDValue LoShuffle = DAG.getVectorShuffle(VT, dl, V1, V2, &LoMask[0]);
6181 SDValue HiShuffle = DAG.getVectorShuffle(VT, dl, V1, V2, &HiMask[0]);
6182 SmallVector<int, 8> MaskOps;
Evan Chengace3c172008-07-22 21:13:36 +00006183 for (unsigned i = 0; i != 4; ++i) {
6184 if (Locs[i].first == -1) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006185 MaskOps.push_back(-1);
Evan Chengace3c172008-07-22 21:13:36 +00006186 } else {
6187 unsigned Idx = Locs[i].first * 4 + Locs[i].second;
Nate Begeman9008ca62009-04-27 18:41:29 +00006188 MaskOps.push_back(Idx);
Evan Chengace3c172008-07-22 21:13:36 +00006189 }
6190 }
Nate Begeman9008ca62009-04-27 18:41:29 +00006191 return DAG.getVectorShuffle(VT, dl, LoShuffle, HiShuffle, &MaskOps[0]);
Evan Chengace3c172008-07-22 21:13:36 +00006192}
6193
Bruno Cardoso Lopes2a446062010-09-03 20:20:02 +00006194static bool MayFoldVectorLoad(SDValue V) {
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006195 if (V.hasOneUse() && V.getOpcode() == ISD::BITCAST)
Bruno Cardoso Lopes2a446062010-09-03 20:20:02 +00006196 V = V.getOperand(0);
6197 if (V.hasOneUse() && V.getOpcode() == ISD::SCALAR_TO_VECTOR)
6198 V = V.getOperand(0);
Evan Cheng7bc389b2011-11-08 00:31:58 +00006199 if (V.hasOneUse() && V.getOpcode() == ISD::BUILD_VECTOR &&
6200 V.getNumOperands() == 2 && V.getOperand(1).getOpcode() == ISD::UNDEF)
6201 // BUILD_VECTOR (load), undef
6202 V = V.getOperand(0);
Bruno Cardoso Lopes2a446062010-09-03 20:20:02 +00006203 if (MayFoldLoad(V))
6204 return true;
6205 return false;
6206}
6207
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006208// FIXME: the version above should always be used. Since there's
6209// a bug where several vector shuffles can't be folded because the
6210// DAG is not updated during lowering and a node claims to have two
6211// uses while it only has one, use this version, and let isel match
6212// another instruction if the load really happens to have more than
6213// one use. Remove this version after this bug get fixed.
Evan Cheng835580f2010-10-07 20:50:20 +00006214// rdar://8434668, PR8156
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006215static bool RelaxedMayFoldVectorLoad(SDValue V) {
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006216 if (V.hasOneUse() && V.getOpcode() == ISD::BITCAST)
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006217 V = V.getOperand(0);
6218 if (V.hasOneUse() && V.getOpcode() == ISD::SCALAR_TO_VECTOR)
6219 V = V.getOperand(0);
6220 if (ISD::isNormalLoad(V.getNode()))
6221 return true;
6222 return false;
6223}
6224
6225/// CanFoldShuffleIntoVExtract - Check if the current shuffle is used by
6226/// a vector extract, and if both can be later optimized into a single load.
6227/// This is done in visitEXTRACT_VECTOR_ELT and the conditions are checked
6228/// here because otherwise a target specific shuffle node is going to be
6229/// emitted for this shuffle, and the optimization not done.
6230/// FIXME: This is probably not the best approach, but fix the problem
6231/// until the right path is decided.
6232static
6233bool CanXFormVExtractWithShuffleIntoLoad(SDValue V, SelectionDAG &DAG,
6234 const TargetLowering &TLI) {
6235 EVT VT = V.getValueType();
6236 ShuffleVectorSDNode *SVOp = dyn_cast<ShuffleVectorSDNode>(V);
6237
6238 // Be sure that the vector shuffle is present in a pattern like this:
6239 // (vextract (v4f32 shuffle (load $addr), <1,u,u,u>), c) -> (f32 load $addr)
6240 if (!V.hasOneUse())
6241 return false;
6242
6243 SDNode *N = *V.getNode()->use_begin();
6244 if (N->getOpcode() != ISD::EXTRACT_VECTOR_ELT)
6245 return false;
6246
6247 SDValue EltNo = N->getOperand(1);
6248 if (!isa<ConstantSDNode>(EltNo))
6249 return false;
6250
6251 // If the bit convert changed the number of elements, it is unsafe
6252 // to examine the mask.
6253 bool HasShuffleIntoBitcast = false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006254 if (V.getOpcode() == ISD::BITCAST) {
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006255 EVT SrcVT = V.getOperand(0).getValueType();
6256 if (SrcVT.getVectorNumElements() != VT.getVectorNumElements())
6257 return false;
6258 V = V.getOperand(0);
6259 HasShuffleIntoBitcast = true;
6260 }
6261
6262 // Select the input vector, guarding against out of range extract vector.
6263 unsigned NumElems = VT.getVectorNumElements();
6264 unsigned Elt = cast<ConstantSDNode>(EltNo)->getZExtValue();
6265 int Idx = (Elt > NumElems) ? -1 : SVOp->getMaskElt(Elt);
6266 V = (Idx < (int)NumElems) ? V.getOperand(0) : V.getOperand(1);
6267
6268 // Skip one more bit_convert if necessary
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006269 if (V.getOpcode() == ISD::BITCAST)
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006270 V = V.getOperand(0);
6271
6272 if (ISD::isNormalLoad(V.getNode())) {
6273 // Is the original load suitable?
6274 LoadSDNode *LN0 = cast<LoadSDNode>(V);
6275
6276 // FIXME: avoid the multi-use bug that is preventing lots of
6277 // of foldings to be detected, this is still wrong of course, but
6278 // give the temporary desired behavior, and if it happens that
6279 // the load has real more uses, during isel it will not fold, and
6280 // will generate poor code.
6281 if (!LN0 || LN0->isVolatile()) // || !LN0->hasOneUse()
6282 return false;
6283
6284 if (!HasShuffleIntoBitcast)
6285 return true;
6286
6287 // If there's a bitcast before the shuffle, check if the load type and
6288 // alignment is valid.
6289 unsigned Align = LN0->getAlignment();
6290 unsigned NewAlign =
6291 TLI.getTargetData()->getABITypeAlignment(
6292 VT.getTypeForEVT(*DAG.getContext()));
6293
6294 if (NewAlign > Align || !TLI.isOperationLegalOrCustom(ISD::LOAD, VT))
6295 return false;
6296 }
6297
6298 return true;
6299}
6300
Bruno Cardoso Lopesf2db5b42010-08-31 21:15:21 +00006301static
Evan Cheng835580f2010-10-07 20:50:20 +00006302SDValue getMOVDDup(SDValue &Op, DebugLoc &dl, SDValue V1, SelectionDAG &DAG) {
6303 EVT VT = Op.getValueType();
6304
6305 // Canonizalize to v2f64.
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006306 V1 = DAG.getNode(ISD::BITCAST, dl, MVT::v2f64, V1);
6307 return DAG.getNode(ISD::BITCAST, dl, VT,
Evan Cheng835580f2010-10-07 20:50:20 +00006308 getTargetShuffleNode(X86ISD::MOVDDUP, dl, MVT::v2f64,
6309 V1, DAG));
6310}
6311
6312static
Bruno Cardoso Lopesf2db5b42010-08-31 21:15:21 +00006313SDValue getMOVLowToHigh(SDValue &Op, DebugLoc &dl, SelectionDAG &DAG,
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006314 bool HasXMMInt) {
Bruno Cardoso Lopesf2db5b42010-08-31 21:15:21 +00006315 SDValue V1 = Op.getOperand(0);
6316 SDValue V2 = Op.getOperand(1);
6317 EVT VT = Op.getValueType();
6318
6319 assert(VT != MVT::v2i64 && "unsupported shuffle type");
6320
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006321 if (HasXMMInt && VT == MVT::v2f64)
Bruno Cardoso Lopesf2db5b42010-08-31 21:15:21 +00006322 return getTargetShuffleNode(X86ISD::MOVLHPD, dl, VT, V1, V2, DAG);
6323
Evan Cheng0899f5c2011-08-31 02:05:24 +00006324 // v4f32 or v4i32: canonizalized to v4f32 (which is legal for SSE1)
6325 return DAG.getNode(ISD::BITCAST, dl, VT,
6326 getTargetShuffleNode(X86ISD::MOVLHPS, dl, MVT::v4f32,
6327 DAG.getNode(ISD::BITCAST, dl, MVT::v4f32, V1),
6328 DAG.getNode(ISD::BITCAST, dl, MVT::v4f32, V2), DAG));
Bruno Cardoso Lopesf2db5b42010-08-31 21:15:21 +00006329}
6330
Bruno Cardoso Lopes7ff30bb2010-08-31 21:38:49 +00006331static
6332SDValue getMOVHighToLow(SDValue &Op, DebugLoc &dl, SelectionDAG &DAG) {
6333 SDValue V1 = Op.getOperand(0);
6334 SDValue V2 = Op.getOperand(1);
6335 EVT VT = Op.getValueType();
6336
6337 assert((VT == MVT::v4i32 || VT == MVT::v4f32) &&
6338 "unsupported shuffle type");
6339
6340 if (V2.getOpcode() == ISD::UNDEF)
6341 V2 = V1;
6342
6343 // v4i32 or v4f32
6344 return getTargetShuffleNode(X86ISD::MOVHLPS, dl, VT, V1, V2, DAG);
6345}
6346
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00006347static inline unsigned getSHUFPOpcode(EVT VT) {
6348 switch(VT.getSimpleVT().SimpleTy) {
6349 case MVT::v8i32: // Use fp unit for int unpack.
6350 case MVT::v8f32:
6351 case MVT::v4i32: // Use fp unit for int unpack.
6352 case MVT::v4f32: return X86ISD::SHUFPS;
6353 case MVT::v4i64: // Use fp unit for int unpack.
6354 case MVT::v4f64:
6355 case MVT::v2i64: // Use fp unit for int unpack.
6356 case MVT::v2f64: return X86ISD::SHUFPD;
6357 default:
6358 llvm_unreachable("Unknown type for shufp*");
6359 }
6360 return 0;
6361}
6362
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006363static
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006364SDValue getMOVLP(SDValue &Op, DebugLoc &dl, SelectionDAG &DAG, bool HasXMMInt) {
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006365 SDValue V1 = Op.getOperand(0);
6366 SDValue V2 = Op.getOperand(1);
6367 EVT VT = Op.getValueType();
6368 unsigned NumElems = VT.getVectorNumElements();
6369
6370 // Use MOVLPS and MOVLPD in case V1 or V2 are loads. During isel, the second
6371 // operand of these instructions is only memory, so check if there's a
6372 // potencial load folding here, otherwise use SHUFPS or MOVSD to match the
6373 // same masks.
6374 bool CanFoldLoad = false;
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006375
Bruno Cardoso Lopesd00bfe12010-09-02 02:35:51 +00006376 // Trivial case, when V2 comes from a load.
Bruno Cardoso Lopes2a446062010-09-03 20:20:02 +00006377 if (MayFoldVectorLoad(V2))
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006378 CanFoldLoad = true;
6379
6380 // When V1 is a load, it can be folded later into a store in isel, example:
6381 // (store (v4f32 (X86Movlps (load addr:$src1), VR128:$src2)), addr:$src1)
6382 // turns into:
6383 // (MOVLPSmr addr:$src1, VR128:$src2)
6384 // So, recognize this potential and also use MOVLPS or MOVLPD
Evan Cheng7bc389b2011-11-08 00:31:58 +00006385 else if (MayFoldVectorLoad(V1) && MayFoldIntoStore(Op))
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006386 CanFoldLoad = true;
6387
Dan Gohman65fd6562011-11-03 21:49:52 +00006388 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(Op);
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006389 if (CanFoldLoad) {
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006390 if (HasXMMInt && NumElems == 2)
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006391 return getTargetShuffleNode(X86ISD::MOVLPD, dl, VT, V1, V2, DAG);
6392
6393 if (NumElems == 4)
Dan Gohman65fd6562011-11-03 21:49:52 +00006394 // If we don't care about the second element, procede to use movss.
6395 if (SVOp->getMaskElt(1) != -1)
6396 return getTargetShuffleNode(X86ISD::MOVLPS, dl, VT, V1, V2, DAG);
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006397 }
6398
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006399 // movl and movlp will both match v2i64, but v2i64 is never matched by
6400 // movl earlier because we make it strict to avoid messing with the movlp load
6401 // folding logic (see the code above getMOVLP call). Match it here then,
6402 // this is horrible, but will stay like this until we move all shuffle
6403 // matching to x86 specific nodes. Note that for the 1st condition all
6404 // types are matched with movsd.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006405 if (HasXMMInt) {
Bruno Cardoso Lopes5ca0d142011-09-14 02:36:14 +00006406 // FIXME: isMOVLMask should be checked and matched before getMOVLP,
6407 // as to remove this logic from here, as much as possible
6408 if (NumElems == 2 || !X86::isMOVLMask(SVOp))
Bruno Cardoso Lopes57d6a5e2011-08-31 03:04:20 +00006409 return getTargetShuffleNode(X86ISD::MOVSD, dl, VT, V1, V2, DAG);
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006410 return getTargetShuffleNode(X86ISD::MOVSS, dl, VT, V1, V2, DAG);
Bruno Cardoso Lopes57d6a5e2011-08-31 03:04:20 +00006411 }
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006412
6413 assert(VT != MVT::v4i32 && "unsupported shuffle type");
6414
6415 // Invert the operand order and use SHUFPS to match it.
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00006416 return getTargetShuffleNode(getSHUFPOpcode(VT), dl, VT, V2, V1,
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +00006417 X86::getShuffleSHUFImmediate(SVOp), DAG);
6418}
6419
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006420static
6421SDValue NormalizeVectorShuffle(SDValue Op, SelectionDAG &DAG,
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006422 const TargetLowering &TLI,
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006423 const X86Subtarget *Subtarget) {
6424 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(Op);
6425 EVT VT = Op.getValueType();
6426 DebugLoc dl = Op.getDebugLoc();
6427 SDValue V1 = Op.getOperand(0);
6428 SDValue V2 = Op.getOperand(1);
6429
6430 if (isZeroShuffle(SVOp))
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006431 return getZeroVector(VT, Subtarget->hasXMMInt(), DAG, dl);
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006432
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006433 // Handle splat operations
6434 if (SVOp->isSplat()) {
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00006435 unsigned NumElem = VT.getVectorNumElements();
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00006436 int Size = VT.getSizeInBits();
Bruno Cardoso Lopes9283b662011-07-21 01:55:42 +00006437 // Special case, this is the only place now where it's allowed to return
6438 // a vector_shuffle operation without using a target specific node, because
6439 // *hopefully* it will be optimized away by the dag combiner. FIXME: should
6440 // this be moved to DAGCombine instead?
6441 if (NumElem <= 4 && CanXFormVExtractWithShuffleIntoLoad(Op, DAG, TLI))
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006442 return Op;
6443
Bruno Cardoso Lopes0e6d2302011-08-17 02:29:19 +00006444 // Use vbroadcast whenever the splat comes from a foldable load
Nadav Rotemcbbe33f2011-11-18 02:49:55 +00006445 SDValue LD = isVectorBroadcast(Op, Subtarget->hasAVX2());
Nadav Rotemf8c10e52011-11-15 22:50:37 +00006446 if (Subtarget->hasAVX() && LD.getNode())
6447 return DAG.getNode(X86ISD::VBROADCAST, dl, VT, LD);
Bruno Cardoso Lopes0e6d2302011-08-17 02:29:19 +00006448
Bruno Cardoso Lopes6a32adc2011-07-25 23:05:25 +00006449 // Handle splats by matching through known shuffle masks
Bruno Cardoso Lopesd8b7dd52011-08-23 22:06:37 +00006450 if ((Size == 128 && NumElem <= 4) ||
6451 (Size == 256 && NumElem < 8))
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006452 return SDValue();
6453
Bruno Cardoso Lopes8a5b2622011-08-17 02:29:13 +00006454 // All remaning splats are promoted to target supported vector shuffles.
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006455 return PromoteSplat(SVOp, DAG);
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006456 }
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006457
6458 // If the shuffle can be profitably rewritten as a narrower shuffle, then
6459 // do it!
6460 if (VT == MVT::v8i16 || VT == MVT::v16i8) {
6461 SDValue NewOp = RewriteAsNarrowerShuffle(SVOp, DAG, dl);
6462 if (NewOp.getNode())
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006463 return DAG.getNode(ISD::BITCAST, dl, VT, NewOp);
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006464 } else if ((VT == MVT::v4i32 ||
6465 (VT == MVT::v4f32 && Subtarget->hasXMMInt()))) {
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006466 // FIXME: Figure out a cleaner way to do this.
6467 // Try to make use of movq to zero out the top part.
6468 if (ISD::isBuildVectorAllZeros(V2.getNode())) {
6469 SDValue NewOp = RewriteAsNarrowerShuffle(SVOp, DAG, dl);
6470 if (NewOp.getNode()) {
6471 if (isCommutedMOVL(cast<ShuffleVectorSDNode>(NewOp), true, false))
6472 return getVZextMovL(VT, NewOp.getValueType(), NewOp.getOperand(0),
6473 DAG, Subtarget, dl);
6474 }
6475 } else if (ISD::isBuildVectorAllZeros(V1.getNode())) {
6476 SDValue NewOp = RewriteAsNarrowerShuffle(SVOp, DAG, dl);
6477 if (NewOp.getNode() && X86::isMOVLMask(cast<ShuffleVectorSDNode>(NewOp)))
6478 return getVZextMovL(VT, NewOp.getValueType(), NewOp.getOperand(1),
6479 DAG, Subtarget, dl);
6480 }
6481 }
6482 return SDValue();
6483}
6484
Dan Gohman475871a2008-07-27 21:46:04 +00006485SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00006486X86TargetLowering::LowerVECTOR_SHUFFLE(SDValue Op, SelectionDAG &DAG) const {
Nate Begeman9008ca62009-04-27 18:41:29 +00006487 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(Op);
Dan Gohman475871a2008-07-27 21:46:04 +00006488 SDValue V1 = Op.getOperand(0);
6489 SDValue V2 = Op.getOperand(1);
Owen Andersone50ed302009-08-10 22:56:29 +00006490 EVT VT = Op.getValueType();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00006491 DebugLoc dl = Op.getDebugLoc();
Nate Begeman9008ca62009-04-27 18:41:29 +00006492 unsigned NumElems = VT.getVectorNumElements();
Evan Cheng0db9fe62006-04-25 20:13:52 +00006493 bool V2IsUndef = V2.getOpcode() == ISD::UNDEF;
Evan Chengd9b8e402006-10-16 06:36:00 +00006494 bool V1IsSplat = false;
6495 bool V2IsSplat = false;
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006496 bool HasXMMInt = Subtarget->hasXMMInt();
Craig Topperbeabc6c2011-12-05 06:56:46 +00006497 bool HasAVX = Subtarget->hasAVX();
Craig Topper6347e862011-11-21 06:57:39 +00006498 bool HasAVX2 = Subtarget->hasAVX2();
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00006499 MachineFunction &MF = DAG.getMachineFunction();
6500 bool OptForSize = MF.getFunction()->hasFnAttr(Attribute::OptimizeForSize);
Evan Cheng0db9fe62006-04-25 20:13:52 +00006501
Craig Topper3426a3e2011-11-14 06:46:21 +00006502 assert(VT.getSizeInBits() != 64 && "Can't lower MMX shuffles");
Bruno Cardoso Lopes58277b12010-09-07 18:41:45 +00006503
Craig Topper38034c52011-11-26 22:55:48 +00006504 assert(V1.getOpcode() != ISD::UNDEF && "Op 1 of shuffle should not be undef");
6505
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006506 // Vector shuffle lowering takes 3 steps:
6507 //
6508 // 1) Normalize the input vectors. Here splats, zeroed vectors, profitable
6509 // narrowing and commutation of operands should be handled.
6510 // 2) Matching of shuffles with known shuffle masks to x86 target specific
6511 // shuffle nodes.
6512 // 3) Rewriting of unmatched masks into new generic shuffle operations,
6513 // so the shuffle can be broken into other shuffles and the legalizer can
6514 // try the lowering again.
6515 //
Craig Topper3426a3e2011-11-14 06:46:21 +00006516 // The general idea is that no vector_shuffle operation should be left to
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006517 // be matched during isel, all of them must be converted to a target specific
6518 // node here.
Bruno Cardoso Lopes0d1340b2010-09-07 20:20:27 +00006519
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006520 // Normalize the input vectors. Here splats, zeroed vectors, profitable
6521 // narrowing and commutation of operands should be handled. The actual code
6522 // doesn't include all of those, work in progress...
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006523 SDValue NewOp = NormalizeVectorShuffle(Op, DAG, *this, Subtarget);
Bruno Cardoso Lopes90462b42010-09-07 21:03:14 +00006524 if (NewOp.getNode())
6525 return NewOp;
Eric Christopherfd179292009-08-27 18:07:15 +00006526
Bruno Cardoso Lopesa22c8452010-09-04 00:39:43 +00006527 // NOTE: isPSHUFDMask can also match both masks below (unpckl_undef and
6528 // unpckh_undef). Only use pshufd if speed is more important than size.
Craig Topper94438ba2011-12-16 08:06:31 +00006529 if (OptForSize && X86::isUNPCKL_v_undef_Mask(SVOp, HasAVX2))
Craig Topper34671b82011-12-06 08:21:25 +00006530 return getTargetShuffleNode(X86ISD::UNPCKL, dl, VT, V1, V1, DAG);
Craig Topper94438ba2011-12-16 08:06:31 +00006531 if (OptForSize && X86::isUNPCKH_v_undef_Mask(SVOp, HasAVX2))
Craig Topper34671b82011-12-06 08:21:25 +00006532 return getTargetShuffleNode(X86ISD::UNPCKH, dl, VT, V1, V1, DAG);
Bruno Cardoso Lopes3722f002010-09-02 05:23:12 +00006533
Craig Topperc0d82852011-11-22 00:44:41 +00006534 if (X86::isMOVDDUPMask(SVOp) && Subtarget->hasSSE3orAVX() &&
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006535 V2IsUndef && RelaxedMayFoldVectorLoad(V1))
Evan Cheng835580f2010-10-07 20:50:20 +00006536 return getMOVDDup(Op, dl, V1, DAG);
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006537
Dale Johannesen0488fb62010-09-30 23:57:10 +00006538 if (X86::isMOVHLPS_v_undef_Mask(SVOp))
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006539 return getMOVHighToLow(Op, dl, DAG);
6540
6541 // Use to match splats
Craig Topperc0d82852011-11-22 00:44:41 +00006542 if (HasXMMInt && X86::isUNPCKHMask(SVOp, HasAVX2) && V2IsUndef &&
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006543 (VT == MVT::v2f64 || VT == MVT::v2i64))
Craig Topper34671b82011-12-06 08:21:25 +00006544 return getTargetShuffleNode(X86ISD::UNPCKH, dl, VT, V1, V1, DAG);
Bruno Cardoso Lopes1485cc22010-09-08 17:43:25 +00006545
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00006546 if (X86::isPSHUFDMask(SVOp)) {
6547 // The actual implementation will match the mask in the if above and then
6548 // during isel it can match several different instructions, not only pshufd
6549 // as its name says, sad but true, emulate the behavior for now...
6550 if (X86::isMOVDDUPMask(SVOp) && ((VT == MVT::v4f32 || VT == MVT::v2i64)))
6551 return getTargetShuffleNode(X86ISD::MOVLHPS, dl, VT, V1, V1, DAG);
6552
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00006553 unsigned TargetMask = X86::getShuffleSHUFImmediate(SVOp);
6554
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006555 if (HasXMMInt && (VT == MVT::v4f32 || VT == MVT::v4i32))
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00006556 return getTargetShuffleNode(X86ISD::PSHUFD, dl, VT, V1, TargetMask, DAG);
6557
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00006558 return getTargetShuffleNode(getSHUFPOpcode(VT), dl, VT, V1, V1,
6559 TargetMask, DAG);
Bruno Cardoso Lopes7338bbd2010-08-25 02:35:37 +00006560 }
Eric Christopherfd179292009-08-27 18:07:15 +00006561
Evan Chengf26ffe92008-05-29 08:22:04 +00006562 // Check if this can be converted into a logical shift.
6563 bool isLeft = false;
6564 unsigned ShAmt = 0;
Dan Gohman475871a2008-07-27 21:46:04 +00006565 SDValue ShVal;
Craig Topperc0d82852011-11-22 00:44:41 +00006566 bool isShift = HasXMMInt && isVectorShift(SVOp, DAG, isLeft, ShVal, ShAmt);
Evan Chengf26ffe92008-05-29 08:22:04 +00006567 if (isShift && ShVal.hasOneUse()) {
Scott Michelfdc40a02009-02-17 22:15:04 +00006568 // If the shifted value has multiple uses, it may be cheaper to use
Evan Chengf26ffe92008-05-29 08:22:04 +00006569 // v_set0 + movlhps or movhlps, etc.
Dan Gohman8a55ce42009-09-23 21:02:20 +00006570 EVT EltVT = VT.getVectorElementType();
6571 ShAmt *= EltVT.getSizeInBits();
Dale Johannesenace16102009-02-03 19:33:06 +00006572 return getVShift(isLeft, VT, ShVal, ShAmt, DAG, *this, dl);
Evan Chengf26ffe92008-05-29 08:22:04 +00006573 }
Eric Christopherfd179292009-08-27 18:07:15 +00006574
Nate Begeman9008ca62009-04-27 18:41:29 +00006575 if (X86::isMOVLMask(SVOp)) {
Gabor Greifba36cb52008-08-28 21:40:38 +00006576 if (ISD::isBuildVectorAllZeros(V1.getNode()))
Dale Johannesenace16102009-02-03 19:33:06 +00006577 return getVZextMovL(VT, VT, V2, DAG, Subtarget, dl);
Dale Johannesen0488fb62010-09-30 23:57:10 +00006578 if (!X86::isMOVLPMask(SVOp)) {
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006579 if (HasXMMInt && (VT == MVT::v2i64 || VT == MVT::v2f64))
Bruno Cardoso Lopes20a07f42010-08-31 02:26:40 +00006580 return getTargetShuffleNode(X86ISD::MOVSD, dl, VT, V1, V2, DAG);
6581
Bruno Cardoso Lopes4783a3e2010-09-01 22:59:03 +00006582 if (VT == MVT::v4i32 || VT == MVT::v4f32)
Bruno Cardoso Lopes20a07f42010-08-31 02:26:40 +00006583 return getTargetShuffleNode(X86ISD::MOVSS, dl, VT, V1, V2, DAG);
6584 }
Evan Cheng7e2ff772008-05-08 00:57:18 +00006585 }
Eric Christopherfd179292009-08-27 18:07:15 +00006586
Nate Begeman9008ca62009-04-27 18:41:29 +00006587 // FIXME: fold these into legal mask.
Craig Topperc0d82852011-11-22 00:44:41 +00006588 if (X86::isMOVLHPSMask(SVOp) && !X86::isUNPCKLMask(SVOp, HasAVX2))
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006589 return getMOVLowToHigh(Op, dl, DAG, HasXMMInt);
Bruno Cardoso Lopesf2db5b42010-08-31 21:15:21 +00006590
Dale Johannesen0488fb62010-09-30 23:57:10 +00006591 if (X86::isMOVHLPSMask(SVOp))
6592 return getMOVHighToLow(Op, dl, DAG);
Bruno Cardoso Lopes7ff30bb2010-08-31 21:38:49 +00006593
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00006594 if (X86::isMOVSHDUPMask(SVOp, Subtarget))
Dale Johannesen0488fb62010-09-30 23:57:10 +00006595 return getTargetShuffleNode(X86ISD::MOVSHDUP, dl, VT, V1, DAG);
Bruno Cardoso Lopes5023ef22010-08-31 22:22:11 +00006596
Bruno Cardoso Lopes9123c6f2011-07-26 02:39:28 +00006597 if (X86::isMOVSLDUPMask(SVOp, Subtarget))
Dale Johannesen0488fb62010-09-30 23:57:10 +00006598 return getTargetShuffleNode(X86ISD::MOVSLDUP, dl, VT, V1, DAG);
Bruno Cardoso Lopes013bb3d2010-08-31 22:35:05 +00006599
Dale Johannesen0488fb62010-09-30 23:57:10 +00006600 if (X86::isMOVLPMask(SVOp))
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00006601 return getMOVLP(Op, dl, DAG, HasXMMInt);
Evan Cheng0db9fe62006-04-25 20:13:52 +00006602
Nate Begeman9008ca62009-04-27 18:41:29 +00006603 if (ShouldXformToMOVHLPS(SVOp) ||
6604 ShouldXformToMOVLP(V1.getNode(), V2.getNode(), SVOp))
6605 return CommuteVectorShuffle(SVOp, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +00006606
Evan Chengf26ffe92008-05-29 08:22:04 +00006607 if (isShift) {
6608 // No better options. Use a vshl / vsrl.
Dan Gohman8a55ce42009-09-23 21:02:20 +00006609 EVT EltVT = VT.getVectorElementType();
6610 ShAmt *= EltVT.getSizeInBits();
Dale Johannesenace16102009-02-03 19:33:06 +00006611 return getVShift(isLeft, VT, ShVal, ShAmt, DAG, *this, dl);
Evan Chengf26ffe92008-05-29 08:22:04 +00006612 }
Eric Christopherfd179292009-08-27 18:07:15 +00006613
Evan Cheng9eca5e82006-10-25 21:49:50 +00006614 bool Commuted = false;
Chris Lattner8a594482007-11-25 00:24:49 +00006615 // FIXME: This should also accept a bitcast of a splat? Be careful, not
6616 // 1,1,1,1 -> v8i16 though.
Gabor Greifba36cb52008-08-28 21:40:38 +00006617 V1IsSplat = isSplatVector(V1.getNode());
6618 V2IsSplat = isSplatVector(V2.getNode());
Scott Michelfdc40a02009-02-17 22:15:04 +00006619
Chris Lattner8a594482007-11-25 00:24:49 +00006620 // Canonicalize the splat or undef, if present, to be on the RHS.
Craig Topper38034c52011-11-26 22:55:48 +00006621 if (V1IsSplat && !V2IsSplat) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006622 Op = CommuteVectorShuffle(SVOp, DAG);
6623 SVOp = cast<ShuffleVectorSDNode>(Op);
6624 V1 = SVOp->getOperand(0);
6625 V2 = SVOp->getOperand(1);
Evan Cheng9bbbb982006-10-25 20:48:19 +00006626 std::swap(V1IsSplat, V2IsSplat);
Evan Cheng9eca5e82006-10-25 21:49:50 +00006627 Commuted = true;
Evan Cheng9bbbb982006-10-25 20:48:19 +00006628 }
6629
Craig Topperbeabc6c2011-12-05 06:56:46 +00006630 SmallVector<int, 32> M;
6631 SVOp->getMask(M);
6632
6633 if (isCommutedMOVLMask(M, VT, V2IsSplat, V2IsUndef)) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006634 // Shuffling low element of v1 into undef, just return v1.
Eric Christopherfd179292009-08-27 18:07:15 +00006635 if (V2IsUndef)
Nate Begeman9008ca62009-04-27 18:41:29 +00006636 return V1;
6637 // If V2 is a splat, the mask may be malformed such as <4,3,3,3>, which
6638 // the instruction selector will not match, so get a canonical MOVL with
6639 // swapped operands to undo the commute.
6640 return getMOVL(DAG, dl, VT, V2, V1);
Evan Chengd9b8e402006-10-16 06:36:00 +00006641 }
Evan Cheng0db9fe62006-04-25 20:13:52 +00006642
Craig Topperbeabc6c2011-12-05 06:56:46 +00006643 if (isUNPCKLMask(M, VT, HasAVX2))
Craig Topper34671b82011-12-06 08:21:25 +00006644 return getTargetShuffleNode(X86ISD::UNPCKL, dl, VT, V1, V2, DAG);
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00006645
Craig Topperbeabc6c2011-12-05 06:56:46 +00006646 if (isUNPCKHMask(M, VT, HasAVX2))
Craig Topper34671b82011-12-06 08:21:25 +00006647 return getTargetShuffleNode(X86ISD::UNPCKH, dl, VT, V1, V2, DAG);
Evan Chenge1113032006-10-04 18:33:38 +00006648
Evan Cheng9bbbb982006-10-25 20:48:19 +00006649 if (V2IsSplat) {
6650 // Normalize mask so all entries that point to V2 points to its first
Anton Korobeynikov12c49af2006-11-21 00:01:06 +00006651 // element then try to match unpck{h|l} again. If match, return a
Evan Cheng9bbbb982006-10-25 20:48:19 +00006652 // new vector_shuffle with the corrected mask.
Nate Begeman9008ca62009-04-27 18:41:29 +00006653 SDValue NewMask = NormalizeMask(SVOp, DAG);
6654 ShuffleVectorSDNode *NSVOp = cast<ShuffleVectorSDNode>(NewMask);
6655 if (NSVOp != SVOp) {
Craig Topperc0d82852011-11-22 00:44:41 +00006656 if (X86::isUNPCKLMask(NSVOp, HasAVX2, true)) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006657 return NewMask;
Craig Topperc0d82852011-11-22 00:44:41 +00006658 } else if (X86::isUNPCKHMask(NSVOp, HasAVX2, true)) {
Nate Begeman9008ca62009-04-27 18:41:29 +00006659 return NewMask;
Evan Cheng0db9fe62006-04-25 20:13:52 +00006660 }
6661 }
6662 }
6663
Evan Cheng9eca5e82006-10-25 21:49:50 +00006664 if (Commuted) {
6665 // Commute is back and try unpck* again.
Nate Begeman9008ca62009-04-27 18:41:29 +00006666 // FIXME: this seems wrong.
6667 SDValue NewOp = CommuteVectorShuffle(SVOp, DAG);
6668 ShuffleVectorSDNode *NewSVOp = cast<ShuffleVectorSDNode>(NewOp);
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00006669
Craig Topperc0d82852011-11-22 00:44:41 +00006670 if (X86::isUNPCKLMask(NewSVOp, HasAVX2))
Craig Topper34671b82011-12-06 08:21:25 +00006671 return getTargetShuffleNode(X86ISD::UNPCKL, dl, VT, V2, V1, DAG);
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +00006672
Craig Topperc0d82852011-11-22 00:44:41 +00006673 if (X86::isUNPCKHMask(NewSVOp, HasAVX2))
Craig Topper34671b82011-12-06 08:21:25 +00006674 return getTargetShuffleNode(X86ISD::UNPCKH, dl, VT, V2, V1, DAG);
Evan Cheng9eca5e82006-10-25 21:49:50 +00006675 }
Evan Cheng0db9fe62006-04-25 20:13:52 +00006676
Nate Begeman9008ca62009-04-27 18:41:29 +00006677 // Normalize the node to match x86 shuffle ops if needed
Craig Topper1ff73d72011-12-06 04:59:07 +00006678 if (!V2IsUndef && (isSHUFPMask(M, VT, /* Commuted */ true) ||
6679 isVSHUFPYMask(M, VT, HasAVX, /* Commuted */ true)))
Nate Begeman9008ca62009-04-27 18:41:29 +00006680 return CommuteVectorShuffle(SVOp, DAG);
6681
Bruno Cardoso Lopes7256e222010-09-03 23:24:06 +00006682 // The checks below are all present in isShuffleMaskLegal, but they are
6683 // inlined here right now to enable us to directly emit target specific
6684 // nodes, and remove one by one until they don't return Op anymore.
Bruno Cardoso Lopes7256e222010-09-03 23:24:06 +00006685
Craig Topperc0d82852011-11-22 00:44:41 +00006686 if (isPALIGNRMask(M, VT, Subtarget->hasSSSE3orAVX()))
Bruno Cardoso Lopesaace0f22010-09-04 02:36:07 +00006687 return getTargetShuffleNode(X86ISD::PALIGN, dl, VT, V1, V2,
Craig Topperd93e4c32011-12-11 19:12:35 +00006688 getShufflePALIGNRImmediate(SVOp),
Bruno Cardoso Lopesaace0f22010-09-04 02:36:07 +00006689 DAG);
6690
Bruno Cardoso Lopesc800c0d2010-09-04 02:02:14 +00006691 if (ShuffleVectorSDNode::isSplatMask(&M[0], VT) &&
6692 SVOp->getSplatIndex() == 0 && V2IsUndef) {
Craig Topperbeabc6c2011-12-05 06:56:46 +00006693 if (VT == MVT::v2f64 || VT == MVT::v2i64)
Craig Topper34671b82011-12-06 08:21:25 +00006694 return getTargetShuffleNode(X86ISD::UNPCKL, dl, VT, V1, V1, DAG);
Bruno Cardoso Lopesc800c0d2010-09-04 02:02:14 +00006695 }
6696
Bruno Cardoso Lopesbbfc3102010-09-04 01:36:45 +00006697 if (isPSHUFHWMask(M, VT))
6698 return getTargetShuffleNode(X86ISD::PSHUFHW, dl, VT, V1,
6699 X86::getShufflePSHUFHWImmediate(SVOp),
6700 DAG);
6701
6702 if (isPSHUFLWMask(M, VT))
6703 return getTargetShuffleNode(X86ISD::PSHUFLW, dl, VT, V1,
6704 X86::getShufflePSHUFLWImmediate(SVOp),
6705 DAG);
6706
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00006707 if (isSHUFPMask(M, VT))
6708 return getTargetShuffleNode(getSHUFPOpcode(VT), dl, VT, V1, V2,
6709 X86::getShuffleSHUFImmediate(SVOp), DAG);
Bruno Cardoso Lopes4c827f52010-09-04 01:22:57 +00006710
Craig Topper94438ba2011-12-16 08:06:31 +00006711 if (isUNPCKL_v_undef_Mask(M, VT, HasAVX2))
Craig Topper34671b82011-12-06 08:21:25 +00006712 return getTargetShuffleNode(X86ISD::UNPCKL, dl, VT, V1, V1, DAG);
Craig Topper94438ba2011-12-16 08:06:31 +00006713 if (isUNPCKH_v_undef_Mask(M, VT, HasAVX2))
Craig Topper34671b82011-12-06 08:21:25 +00006714 return getTargetShuffleNode(X86ISD::UNPCKH, dl, VT, V1, V1, DAG);
Bruno Cardoso Lopesa22c8452010-09-04 00:39:43 +00006715
Bruno Cardoso Lopesd0888342011-07-22 00:14:56 +00006716 //===--------------------------------------------------------------------===//
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00006717 // Generate target specific nodes for 128 or 256-bit shuffles only
6718 // supported in the AVX instruction set.
6719 //
Bruno Cardoso Lopesd0888342011-07-22 00:14:56 +00006720
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00006721 // Handle VMOVDDUPY permutations
Craig Topperbeabc6c2011-12-05 06:56:46 +00006722 if (V2IsUndef && isMOVDDUPYMask(M, VT, HasAVX))
Bruno Cardoso Lopes6292ece2011-08-25 21:40:37 +00006723 return getTargetShuffleNode(X86ISD::MOVDDUP, dl, VT, V1, DAG);
6724
Craig Topper70b883b2011-11-28 10:14:51 +00006725 // Handle VPERMILPS/D* permutations
Craig Topperbeabc6c2011-12-05 06:56:46 +00006726 if (isVPERMILPMask(M, VT, HasAVX))
Craig Topper316cd2a2011-11-30 06:25:25 +00006727 return getTargetShuffleNode(X86ISD::VPERMILP, dl, VT, V1,
Craig Topper70b883b2011-11-28 10:14:51 +00006728 getShuffleVPERMILPImmediate(SVOp), DAG);
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00006729
Craig Topper70b883b2011-11-28 10:14:51 +00006730 // Handle VPERM2F128/VPERM2I128 permutations
Craig Topperbeabc6c2011-12-05 06:56:46 +00006731 if (isVPERM2X128Mask(M, VT, HasAVX))
Craig Topperec24e612011-11-30 07:47:51 +00006732 return getTargetShuffleNode(X86ISD::VPERM2X128, dl, VT, V1,
Craig Topper70b883b2011-11-28 10:14:51 +00006733 V2, getShuffleVPERM2X128Immediate(SVOp), DAG);
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00006734
Craig Topper70b883b2011-11-28 10:14:51 +00006735 // Handle VSHUFPS/DY permutations
Craig Topperbeabc6c2011-12-05 06:56:46 +00006736 if (isVSHUFPYMask(M, VT, HasAVX))
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00006737 return getTargetShuffleNode(getSHUFPOpcode(VT), dl, VT, V1, V2,
Craig Topper9d7025b2011-11-27 21:41:12 +00006738 getShuffleVSHUFPYImmediate(SVOp), DAG);
Bruno Cardoso Lopes07b7f672011-08-25 02:58:26 +00006739
Bruno Cardoso Lopescea34e42011-07-27 00:56:34 +00006740 //===--------------------------------------------------------------------===//
6741 // Since no target specific shuffle was selected for this generic one,
6742 // lower it into other known shuffles. FIXME: this isn't true yet, but
6743 // this is the plan.
6744 //
Bruno Cardoso Lopes65b74e12011-07-21 01:55:47 +00006745
Bruno Cardoso Lopes9b4ad122011-07-27 00:56:37 +00006746 // Handle v8i16 specifically since SSE can do byte extraction and insertion.
6747 if (VT == MVT::v8i16) {
6748 SDValue NewOp = LowerVECTOR_SHUFFLEv8i16(Op, DAG);
6749 if (NewOp.getNode())
6750 return NewOp;
6751 }
6752
6753 if (VT == MVT::v16i8) {
6754 SDValue NewOp = LowerVECTOR_SHUFFLEv16i8(SVOp, DAG, *this);
6755 if (NewOp.getNode())
6756 return NewOp;
6757 }
6758
6759 // Handle all 128-bit wide vectors with 4 elements, and match them with
6760 // several different shuffle types.
6761 if (NumElems == 4 && VT.getSizeInBits() == 128)
6762 return LowerVECTOR_SHUFFLE_128v4(SVOp, DAG);
6763
Bruno Cardoso Lopesd0888342011-07-22 00:14:56 +00006764 // Handle general 256-bit shuffles
6765 if (VT.is256BitVector())
6766 return LowerVECTOR_SHUFFLE_256(SVOp, DAG);
6767
Dan Gohman475871a2008-07-27 21:46:04 +00006768 return SDValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00006769}
6770
Dan Gohman475871a2008-07-27 21:46:04 +00006771SDValue
6772X86TargetLowering::LowerEXTRACT_VECTOR_ELT_SSE4(SDValue Op,
Dan Gohmand858e902010-04-17 15:26:15 +00006773 SelectionDAG &DAG) const {
Owen Andersone50ed302009-08-10 22:56:29 +00006774 EVT VT = Op.getValueType();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00006775 DebugLoc dl = Op.getDebugLoc();
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006776
6777 if (Op.getOperand(0).getValueType().getSizeInBits() != 128)
6778 return SDValue();
6779
Duncan Sands83ec4b62008-06-06 12:08:01 +00006780 if (VT.getSizeInBits() == 8) {
Owen Anderson825b72b2009-08-11 20:47:22 +00006781 SDValue Extract = DAG.getNode(X86ISD::PEXTRB, dl, MVT::i32,
Nate Begeman14d12ca2008-02-11 04:19:36 +00006782 Op.getOperand(0), Op.getOperand(1));
Owen Anderson825b72b2009-08-11 20:47:22 +00006783 SDValue Assert = DAG.getNode(ISD::AssertZext, dl, MVT::i32, Extract,
Nate Begeman14d12ca2008-02-11 04:19:36 +00006784 DAG.getValueType(VT));
Dale Johannesenace16102009-02-03 19:33:06 +00006785 return DAG.getNode(ISD::TRUNCATE, dl, VT, Assert);
Duncan Sands83ec4b62008-06-06 12:08:01 +00006786 } else if (VT.getSizeInBits() == 16) {
Evan Cheng52ceafa2009-01-02 05:29:08 +00006787 unsigned Idx = cast<ConstantSDNode>(Op.getOperand(1))->getZExtValue();
6788 // If Idx is 0, it's cheaper to do a move instead of a pextrw.
6789 if (Idx == 0)
Owen Anderson825b72b2009-08-11 20:47:22 +00006790 return DAG.getNode(ISD::TRUNCATE, dl, MVT::i16,
6791 DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::i32,
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006792 DAG.getNode(ISD::BITCAST, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00006793 MVT::v4i32,
Evan Cheng52ceafa2009-01-02 05:29:08 +00006794 Op.getOperand(0)),
6795 Op.getOperand(1)));
Owen Anderson825b72b2009-08-11 20:47:22 +00006796 SDValue Extract = DAG.getNode(X86ISD::PEXTRW, dl, MVT::i32,
Nate Begeman14d12ca2008-02-11 04:19:36 +00006797 Op.getOperand(0), Op.getOperand(1));
Owen Anderson825b72b2009-08-11 20:47:22 +00006798 SDValue Assert = DAG.getNode(ISD::AssertZext, dl, MVT::i32, Extract,
Nate Begeman14d12ca2008-02-11 04:19:36 +00006799 DAG.getValueType(VT));
Dale Johannesenace16102009-02-03 19:33:06 +00006800 return DAG.getNode(ISD::TRUNCATE, dl, VT, Assert);
Owen Anderson825b72b2009-08-11 20:47:22 +00006801 } else if (VT == MVT::f32) {
Evan Cheng62a3f152008-03-24 21:52:23 +00006802 // EXTRACTPS outputs to a GPR32 register which will require a movd to copy
6803 // the result back to FR32 register. It's only worth matching if the
Dan Gohmand17cfbe2008-10-31 00:57:24 +00006804 // result has a single use which is a store or a bitcast to i32. And in
6805 // the case of a store, it's not worth it if the index is a constant 0,
6806 // because a MOVSSmr can be used instead, which is smaller and faster.
Evan Cheng62a3f152008-03-24 21:52:23 +00006807 if (!Op.hasOneUse())
Dan Gohman475871a2008-07-27 21:46:04 +00006808 return SDValue();
Gabor Greifba36cb52008-08-28 21:40:38 +00006809 SDNode *User = *Op.getNode()->use_begin();
Dan Gohmand17cfbe2008-10-31 00:57:24 +00006810 if ((User->getOpcode() != ISD::STORE ||
6811 (isa<ConstantSDNode>(Op.getOperand(1)) &&
6812 cast<ConstantSDNode>(Op.getOperand(1))->isNullValue())) &&
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006813 (User->getOpcode() != ISD::BITCAST ||
Owen Anderson825b72b2009-08-11 20:47:22 +00006814 User->getValueType(0) != MVT::i32))
Dan Gohman475871a2008-07-27 21:46:04 +00006815 return SDValue();
Owen Anderson825b72b2009-08-11 20:47:22 +00006816 SDValue Extract = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::i32,
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006817 DAG.getNode(ISD::BITCAST, dl, MVT::v4i32,
Dale Johannesenace16102009-02-03 19:33:06 +00006818 Op.getOperand(0)),
6819 Op.getOperand(1));
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006820 return DAG.getNode(ISD::BITCAST, dl, MVT::f32, Extract);
Pete Coopera77214a2011-11-14 19:38:42 +00006821 } else if (VT == MVT::i32 || VT == MVT::i64) {
6822 // ExtractPS/pextrq works with constant index.
Mon P Wangf0fcdd82009-01-15 21:10:20 +00006823 if (isa<ConstantSDNode>(Op.getOperand(1)))
6824 return Op;
Nate Begeman14d12ca2008-02-11 04:19:36 +00006825 }
Dan Gohman475871a2008-07-27 21:46:04 +00006826 return SDValue();
Nate Begeman14d12ca2008-02-11 04:19:36 +00006827}
6828
6829
Dan Gohman475871a2008-07-27 21:46:04 +00006830SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00006831X86TargetLowering::LowerEXTRACT_VECTOR_ELT(SDValue Op,
6832 SelectionDAG &DAG) const {
Evan Cheng0db9fe62006-04-25 20:13:52 +00006833 if (!isa<ConstantSDNode>(Op.getOperand(1)))
Dan Gohman475871a2008-07-27 21:46:04 +00006834 return SDValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00006835
David Greene74a579d2011-02-10 16:57:36 +00006836 SDValue Vec = Op.getOperand(0);
6837 EVT VecVT = Vec.getValueType();
6838
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006839 // If this is a 256-bit vector result, first extract the 128-bit vector and
6840 // then extract the element from the 128-bit vector.
6841 if (VecVT.getSizeInBits() == 256) {
David Greene74a579d2011-02-10 16:57:36 +00006842 DebugLoc dl = Op.getNode()->getDebugLoc();
6843 unsigned NumElems = VecVT.getVectorNumElements();
6844 SDValue Idx = Op.getOperand(1);
David Greene74a579d2011-02-10 16:57:36 +00006845 unsigned IdxVal = cast<ConstantSDNode>(Idx)->getZExtValue();
6846
6847 // Get the 128-bit vector.
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006848 bool Upper = IdxVal >= NumElems/2;
6849 Vec = Extract128BitVector(Vec,
6850 DAG.getConstant(Upper ? NumElems/2 : 0, MVT::i32), DAG, dl);
David Greene74a579d2011-02-10 16:57:36 +00006851
David Greene74a579d2011-02-10 16:57:36 +00006852 return DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, Op.getValueType(), Vec,
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006853 Upper ? DAG.getConstant(IdxVal-NumElems/2, MVT::i32) : Idx);
David Greene74a579d2011-02-10 16:57:36 +00006854 }
6855
6856 assert(Vec.getValueSizeInBits() <= 128 && "Unexpected vector length");
6857
Craig Topperc0d82852011-11-22 00:44:41 +00006858 if (Subtarget->hasSSE41orAVX()) {
Dan Gohman475871a2008-07-27 21:46:04 +00006859 SDValue Res = LowerEXTRACT_VECTOR_ELT_SSE4(Op, DAG);
Gabor Greifba36cb52008-08-28 21:40:38 +00006860 if (Res.getNode())
Evan Cheng62a3f152008-03-24 21:52:23 +00006861 return Res;
6862 }
Nate Begeman14d12ca2008-02-11 04:19:36 +00006863
Owen Andersone50ed302009-08-10 22:56:29 +00006864 EVT VT = Op.getValueType();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00006865 DebugLoc dl = Op.getDebugLoc();
Evan Cheng0db9fe62006-04-25 20:13:52 +00006866 // TODO: handle v16i8.
Duncan Sands83ec4b62008-06-06 12:08:01 +00006867 if (VT.getSizeInBits() == 16) {
Dan Gohman475871a2008-07-27 21:46:04 +00006868 SDValue Vec = Op.getOperand(0);
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00006869 unsigned Idx = cast<ConstantSDNode>(Op.getOperand(1))->getZExtValue();
Evan Cheng14b32e12007-12-11 01:46:18 +00006870 if (Idx == 0)
Owen Anderson825b72b2009-08-11 20:47:22 +00006871 return DAG.getNode(ISD::TRUNCATE, dl, MVT::i16,
6872 DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::i32,
Wesley Peckbf17cfa2010-11-23 03:31:01 +00006873 DAG.getNode(ISD::BITCAST, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00006874 MVT::v4i32, Vec),
Evan Cheng14b32e12007-12-11 01:46:18 +00006875 Op.getOperand(1)));
Evan Cheng0db9fe62006-04-25 20:13:52 +00006876 // Transform it so it match pextrw which produces a 32-bit result.
Ken Dyck70d0ef12009-12-17 15:31:52 +00006877 EVT EltVT = MVT::i32;
Dan Gohman8a55ce42009-09-23 21:02:20 +00006878 SDValue Extract = DAG.getNode(X86ISD::PEXTRW, dl, EltVT,
Evan Cheng0db9fe62006-04-25 20:13:52 +00006879 Op.getOperand(0), Op.getOperand(1));
Dan Gohman8a55ce42009-09-23 21:02:20 +00006880 SDValue Assert = DAG.getNode(ISD::AssertZext, dl, EltVT, Extract,
Evan Cheng0db9fe62006-04-25 20:13:52 +00006881 DAG.getValueType(VT));
Dale Johannesenace16102009-02-03 19:33:06 +00006882 return DAG.getNode(ISD::TRUNCATE, dl, VT, Assert);
Duncan Sands83ec4b62008-06-06 12:08:01 +00006883 } else if (VT.getSizeInBits() == 32) {
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00006884 unsigned Idx = cast<ConstantSDNode>(Op.getOperand(1))->getZExtValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00006885 if (Idx == 0)
6886 return Op;
Eric Christopherfd179292009-08-27 18:07:15 +00006887
Evan Cheng0db9fe62006-04-25 20:13:52 +00006888 // SHUFPS the element to the lowest double word, then movss.
Jeffrey Yasskina44defe2011-07-27 06:22:51 +00006889 int Mask[4] = { static_cast<int>(Idx), -1, -1, -1 };
Owen Andersone50ed302009-08-10 22:56:29 +00006890 EVT VVT = Op.getOperand(0).getValueType();
Eric Christopherfd179292009-08-27 18:07:15 +00006891 SDValue Vec = DAG.getVectorShuffle(VVT, dl, Op.getOperand(0),
Nate Begeman9008ca62009-04-27 18:41:29 +00006892 DAG.getUNDEF(VVT), Mask);
Dale Johannesenace16102009-02-03 19:33:06 +00006893 return DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, VT, Vec,
Chris Lattner0bd48932008-01-17 07:00:52 +00006894 DAG.getIntPtrConstant(0));
Duncan Sands83ec4b62008-06-06 12:08:01 +00006895 } else if (VT.getSizeInBits() == 64) {
Nate Begeman14d12ca2008-02-11 04:19:36 +00006896 // FIXME: .td only matches this for <2 x f64>, not <2 x i64> on 32b
6897 // FIXME: seems like this should be unnecessary if mov{h,l}pd were taught
6898 // to match extract_elt for f64.
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00006899 unsigned Idx = cast<ConstantSDNode>(Op.getOperand(1))->getZExtValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00006900 if (Idx == 0)
6901 return Op;
6902
6903 // UNPCKHPD the element to the lowest double word, then movsd.
6904 // Note if the lower 64 bits of the result of the UNPCKHPD is then stored
6905 // to a f64mem, the whole operation is folded into a single MOVHPDmr.
Nate Begeman9008ca62009-04-27 18:41:29 +00006906 int Mask[2] = { 1, -1 };
Owen Andersone50ed302009-08-10 22:56:29 +00006907 EVT VVT = Op.getOperand(0).getValueType();
Eric Christopherfd179292009-08-27 18:07:15 +00006908 SDValue Vec = DAG.getVectorShuffle(VVT, dl, Op.getOperand(0),
Nate Begeman9008ca62009-04-27 18:41:29 +00006909 DAG.getUNDEF(VVT), Mask);
Dale Johannesenace16102009-02-03 19:33:06 +00006910 return DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, VT, Vec,
Chris Lattner0bd48932008-01-17 07:00:52 +00006911 DAG.getIntPtrConstant(0));
Evan Cheng0db9fe62006-04-25 20:13:52 +00006912 }
6913
Dan Gohman475871a2008-07-27 21:46:04 +00006914 return SDValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00006915}
6916
Dan Gohman475871a2008-07-27 21:46:04 +00006917SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00006918X86TargetLowering::LowerINSERT_VECTOR_ELT_SSE4(SDValue Op,
6919 SelectionDAG &DAG) const {
Owen Andersone50ed302009-08-10 22:56:29 +00006920 EVT VT = Op.getValueType();
Dan Gohman8a55ce42009-09-23 21:02:20 +00006921 EVT EltVT = VT.getVectorElementType();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00006922 DebugLoc dl = Op.getDebugLoc();
Nate Begeman14d12ca2008-02-11 04:19:36 +00006923
Dan Gohman475871a2008-07-27 21:46:04 +00006924 SDValue N0 = Op.getOperand(0);
6925 SDValue N1 = Op.getOperand(1);
6926 SDValue N2 = Op.getOperand(2);
Nate Begeman14d12ca2008-02-11 04:19:36 +00006927
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006928 if (VT.getSizeInBits() == 256)
6929 return SDValue();
6930
Dan Gohman8a55ce42009-09-23 21:02:20 +00006931 if ((EltVT.getSizeInBits() == 8 || EltVT.getSizeInBits() == 16) &&
Dan Gohmanef521f12008-08-14 22:53:18 +00006932 isa<ConstantSDNode>(N2)) {
Chris Lattner8f2b4cc2010-02-23 02:07:48 +00006933 unsigned Opc;
6934 if (VT == MVT::v8i16)
6935 Opc = X86ISD::PINSRW;
Chris Lattner8f2b4cc2010-02-23 02:07:48 +00006936 else if (VT == MVT::v16i8)
6937 Opc = X86ISD::PINSRB;
6938 else
6939 Opc = X86ISD::PINSRB;
6940
Nate Begeman14d12ca2008-02-11 04:19:36 +00006941 // Transform it so it match pinsr{b,w} which expects a GR32 as its second
6942 // argument.
Owen Anderson825b72b2009-08-11 20:47:22 +00006943 if (N1.getValueType() != MVT::i32)
6944 N1 = DAG.getNode(ISD::ANY_EXTEND, dl, MVT::i32, N1);
6945 if (N2.getValueType() != MVT::i32)
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00006946 N2 = DAG.getIntPtrConstant(cast<ConstantSDNode>(N2)->getZExtValue());
Dale Johannesenace16102009-02-03 19:33:06 +00006947 return DAG.getNode(Opc, dl, VT, N0, N1, N2);
Dan Gohman8a55ce42009-09-23 21:02:20 +00006948 } else if (EltVT == MVT::f32 && isa<ConstantSDNode>(N2)) {
Nate Begeman14d12ca2008-02-11 04:19:36 +00006949 // Bits [7:6] of the constant are the source select. This will always be
6950 // zero here. The DAG Combiner may combine an extract_elt index into these
6951 // bits. For example (insert (extract, 3), 2) could be matched by putting
6952 // the '3' into bits [7:6] of X86ISD::INSERTPS.
Scott Michelfdc40a02009-02-17 22:15:04 +00006953 // Bits [5:4] of the constant are the destination select. This is the
Nate Begeman14d12ca2008-02-11 04:19:36 +00006954 // value of the incoming immediate.
Scott Michelfdc40a02009-02-17 22:15:04 +00006955 // Bits [3:0] of the constant are the zero mask. The DAG Combiner may
Nate Begeman14d12ca2008-02-11 04:19:36 +00006956 // combine either bitwise AND or insert of float 0.0 to set these bits.
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00006957 N2 = DAG.getIntPtrConstant(cast<ConstantSDNode>(N2)->getZExtValue() << 4);
Eric Christopherfbd66872009-07-24 00:33:09 +00006958 // Create this as a scalar to vector..
Owen Anderson825b72b2009-08-11 20:47:22 +00006959 N1 = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v4f32, N1);
Dale Johannesenace16102009-02-03 19:33:06 +00006960 return DAG.getNode(X86ISD::INSERTPS, dl, VT, N0, N1, N2);
Pete Coopera77214a2011-11-14 19:38:42 +00006961 } else if ((EltVT == MVT::i32 || EltVT == MVT::i64) &&
6962 isa<ConstantSDNode>(N2)) {
Eric Christopherfbd66872009-07-24 00:33:09 +00006963 // PINSR* works with constant index.
6964 return Op;
Nate Begeman14d12ca2008-02-11 04:19:36 +00006965 }
Dan Gohman475871a2008-07-27 21:46:04 +00006966 return SDValue();
Nate Begeman14d12ca2008-02-11 04:19:36 +00006967}
6968
Dan Gohman475871a2008-07-27 21:46:04 +00006969SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00006970X86TargetLowering::LowerINSERT_VECTOR_ELT(SDValue Op, SelectionDAG &DAG) const {
Owen Andersone50ed302009-08-10 22:56:29 +00006971 EVT VT = Op.getValueType();
Dan Gohman8a55ce42009-09-23 21:02:20 +00006972 EVT EltVT = VT.getVectorElementType();
Nate Begeman14d12ca2008-02-11 04:19:36 +00006973
David Greene6b381262011-02-09 15:32:06 +00006974 DebugLoc dl = Op.getDebugLoc();
6975 SDValue N0 = Op.getOperand(0);
6976 SDValue N1 = Op.getOperand(1);
6977 SDValue N2 = Op.getOperand(2);
6978
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006979 // If this is a 256-bit vector result, first extract the 128-bit vector,
6980 // insert the element into the extracted half and then place it back.
6981 if (VT.getSizeInBits() == 256) {
David Greene6b381262011-02-09 15:32:06 +00006982 if (!isa<ConstantSDNode>(N2))
6983 return SDValue();
6984
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006985 // Get the desired 128-bit vector half.
David Greene6b381262011-02-09 15:32:06 +00006986 unsigned NumElems = VT.getVectorNumElements();
6987 unsigned IdxVal = cast<ConstantSDNode>(N2)->getZExtValue();
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006988 bool Upper = IdxVal >= NumElems/2;
6989 SDValue Ins128Idx = DAG.getConstant(Upper ? NumElems/2 : 0, MVT::i32);
6990 SDValue V = Extract128BitVector(N0, Ins128Idx, DAG, dl);
David Greene6b381262011-02-09 15:32:06 +00006991
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006992 // Insert the element into the desired half.
6993 V = DAG.getNode(ISD::INSERT_VECTOR_ELT, dl, V.getValueType(), V,
6994 N1, Upper ? DAG.getConstant(IdxVal-NumElems/2, MVT::i32) : N2);
David Greene6b381262011-02-09 15:32:06 +00006995
Bruno Cardoso Lopes0b0a09f2011-07-29 01:31:02 +00006996 // Insert the changed part back to the 256-bit vector
6997 return Insert128BitVector(N0, V, Ins128Idx, DAG, dl);
David Greene6b381262011-02-09 15:32:06 +00006998 }
6999
Craig Topperc0d82852011-11-22 00:44:41 +00007000 if (Subtarget->hasSSE41orAVX())
Nate Begeman14d12ca2008-02-11 04:19:36 +00007001 return LowerINSERT_VECTOR_ELT_SSE4(Op, DAG);
7002
Dan Gohman8a55ce42009-09-23 21:02:20 +00007003 if (EltVT == MVT::i8)
Dan Gohman475871a2008-07-27 21:46:04 +00007004 return SDValue();
Evan Cheng794405e2007-12-12 07:55:34 +00007005
Dan Gohman8a55ce42009-09-23 21:02:20 +00007006 if (EltVT.getSizeInBits() == 16 && isa<ConstantSDNode>(N2)) {
Evan Cheng794405e2007-12-12 07:55:34 +00007007 // Transform it so it match pinsrw which expects a 16-bit value in a GR32
7008 // as its second argument.
Owen Anderson825b72b2009-08-11 20:47:22 +00007009 if (N1.getValueType() != MVT::i32)
7010 N1 = DAG.getNode(ISD::ANY_EXTEND, dl, MVT::i32, N1);
7011 if (N2.getValueType() != MVT::i32)
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00007012 N2 = DAG.getIntPtrConstant(cast<ConstantSDNode>(N2)->getZExtValue());
Dale Johannesen0488fb62010-09-30 23:57:10 +00007013 return DAG.getNode(X86ISD::PINSRW, dl, VT, N0, N1, N2);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007014 }
Dan Gohman475871a2008-07-27 21:46:04 +00007015 return SDValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00007016}
7017
Dan Gohman475871a2008-07-27 21:46:04 +00007018SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00007019X86TargetLowering::LowerSCALAR_TO_VECTOR(SDValue Op, SelectionDAG &DAG) const {
Bruno Cardoso Lopes233fa392011-07-25 23:05:16 +00007020 LLVMContext *Context = DAG.getContext();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007021 DebugLoc dl = Op.getDebugLoc();
David Greene2fcdfb42011-02-10 23:11:29 +00007022 EVT OpVT = Op.getValueType();
7023
Bruno Cardoso Lopes233fa392011-07-25 23:05:16 +00007024 // If this is a 256-bit vector result, first insert into a 128-bit
7025 // vector and then insert into the 256-bit vector.
7026 if (OpVT.getSizeInBits() > 128) {
7027 // Insert into a 128-bit vector.
7028 EVT VT128 = EVT::getVectorVT(*Context,
7029 OpVT.getVectorElementType(),
7030 OpVT.getVectorNumElements() / 2);
7031
7032 Op = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, VT128, Op.getOperand(0));
7033
7034 // Insert the 128-bit vector.
7035 return Insert128BitVector(DAG.getNode(ISD::UNDEF, dl, OpVT), Op,
7036 DAG.getConstant(0, MVT::i32),
7037 DAG, dl);
7038 }
7039
Chris Lattnerf172ecd2010-07-04 23:07:25 +00007040 if (Op.getValueType() == MVT::v1i64 &&
7041 Op.getOperand(0).getValueType() == MVT::i64)
Owen Anderson825b72b2009-08-11 20:47:22 +00007042 return DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v1i64, Op.getOperand(0));
Rafael Espindoladef390a2009-08-03 02:45:34 +00007043
Owen Anderson825b72b2009-08-11 20:47:22 +00007044 SDValue AnyExt = DAG.getNode(ISD::ANY_EXTEND, dl, MVT::i32, Op.getOperand(0));
Dale Johannesen0488fb62010-09-30 23:57:10 +00007045 assert(Op.getValueType().getSimpleVT().getSizeInBits() == 128 &&
7046 "Expected an SSE type!");
Wesley Peckbf17cfa2010-11-23 03:31:01 +00007047 return DAG.getNode(ISD::BITCAST, dl, Op.getValueType(),
Dale Johannesen0488fb62010-09-30 23:57:10 +00007048 DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v4i32,AnyExt));
Evan Cheng0db9fe62006-04-25 20:13:52 +00007049}
7050
David Greene91585092011-01-26 15:38:49 +00007051// Lower a node with an EXTRACT_SUBVECTOR opcode. This may result in
7052// a simple subregister reference or explicit instructions to grab
7053// upper bits of a vector.
7054SDValue
7055X86TargetLowering::LowerEXTRACT_SUBVECTOR(SDValue Op, SelectionDAG &DAG) const {
7056 if (Subtarget->hasAVX()) {
David Greenea5f26012011-02-07 19:36:54 +00007057 DebugLoc dl = Op.getNode()->getDebugLoc();
7058 SDValue Vec = Op.getNode()->getOperand(0);
7059 SDValue Idx = Op.getNode()->getOperand(1);
7060
7061 if (Op.getNode()->getValueType(0).getSizeInBits() == 128
7062 && Vec.getNode()->getValueType(0).getSizeInBits() == 256) {
7063 return Extract128BitVector(Vec, Idx, DAG, dl);
7064 }
David Greene91585092011-01-26 15:38:49 +00007065 }
7066 return SDValue();
7067}
7068
David Greenecfe33c42011-01-26 19:13:22 +00007069// Lower a node with an INSERT_SUBVECTOR opcode. This may result in a
7070// simple superregister reference or explicit instructions to insert
7071// the upper bits of a vector.
7072SDValue
7073X86TargetLowering::LowerINSERT_SUBVECTOR(SDValue Op, SelectionDAG &DAG) const {
7074 if (Subtarget->hasAVX()) {
7075 DebugLoc dl = Op.getNode()->getDebugLoc();
7076 SDValue Vec = Op.getNode()->getOperand(0);
7077 SDValue SubVec = Op.getNode()->getOperand(1);
7078 SDValue Idx = Op.getNode()->getOperand(2);
7079
7080 if (Op.getNode()->getValueType(0).getSizeInBits() == 256
7081 && SubVec.getNode()->getValueType(0).getSizeInBits() == 128) {
David Greenea5f26012011-02-07 19:36:54 +00007082 return Insert128BitVector(Vec, SubVec, Idx, DAG, dl);
David Greenecfe33c42011-01-26 19:13:22 +00007083 }
7084 }
7085 return SDValue();
7086}
7087
Bill Wendling056292f2008-09-16 21:48:12 +00007088// ConstantPool, JumpTable, GlobalAddress, and ExternalSymbol are lowered as
7089// their target countpart wrapped in the X86ISD::Wrapper node. Suppose N is
7090// one of the above mentioned nodes. It has to be wrapped because otherwise
7091// Select(N) returns N. So the raw TargetGlobalAddress nodes, etc. can only
7092// be used to form addressing mode. These wrapped nodes will be selected
7093// into MOV32ri.
Dan Gohman475871a2008-07-27 21:46:04 +00007094SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00007095X86TargetLowering::LowerConstantPool(SDValue Op, SelectionDAG &DAG) const {
Evan Cheng0db9fe62006-04-25 20:13:52 +00007096 ConstantPoolSDNode *CP = cast<ConstantPoolSDNode>(Op);
Eric Christopherfd179292009-08-27 18:07:15 +00007097
Chris Lattner41621a22009-06-26 19:22:52 +00007098 // In PIC mode (unless we're in RIPRel PIC mode) we add an offset to the
7099 // global base reg.
7100 unsigned char OpFlag = 0;
Chris Lattner18c59872009-06-27 04:16:01 +00007101 unsigned WrapperKind = X86ISD::Wrapper;
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00007102 CodeModel::Model M = getTargetMachine().getCodeModel();
7103
Chris Lattner4f066492009-07-11 20:29:19 +00007104 if (Subtarget->isPICStyleRIPRel() &&
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00007105 (M == CodeModel::Small || M == CodeModel::Kernel))
Chris Lattnere4df7562009-07-09 03:15:51 +00007106 WrapperKind = X86ISD::WrapperRIP;
Chris Lattner3b67e9b2009-07-10 20:47:30 +00007107 else if (Subtarget->isPICStyleGOT())
Chris Lattner88e1fd52009-07-09 04:24:46 +00007108 OpFlag = X86II::MO_GOTOFF;
Chris Lattnere2c92082009-07-10 21:00:45 +00007109 else if (Subtarget->isPICStyleStubPIC())
Chris Lattner88e1fd52009-07-09 04:24:46 +00007110 OpFlag = X86II::MO_PIC_BASE_OFFSET;
Eric Christopherfd179292009-08-27 18:07:15 +00007111
Evan Cheng1606e8e2009-03-13 07:51:59 +00007112 SDValue Result = DAG.getTargetConstantPool(CP->getConstVal(), getPointerTy(),
Chris Lattner41621a22009-06-26 19:22:52 +00007113 CP->getAlignment(),
7114 CP->getOffset(), OpFlag);
7115 DebugLoc DL = CP->getDebugLoc();
Chris Lattner18c59872009-06-27 04:16:01 +00007116 Result = DAG.getNode(WrapperKind, DL, getPointerTy(), Result);
Anton Korobeynikov7f705592007-01-12 19:20:47 +00007117 // With PIC, the address is actually $g + Offset.
Chris Lattner41621a22009-06-26 19:22:52 +00007118 if (OpFlag) {
7119 Result = DAG.getNode(ISD::ADD, DL, getPointerTy(),
Dale Johannesenb300d2a2009-02-07 00:55:49 +00007120 DAG.getNode(X86ISD::GlobalBaseReg,
Chris Lattnerc7f3ace2010-04-02 20:16:16 +00007121 DebugLoc(), getPointerTy()),
Anton Korobeynikov7f705592007-01-12 19:20:47 +00007122 Result);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007123 }
7124
7125 return Result;
7126}
7127
Dan Gohmand858e902010-04-17 15:26:15 +00007128SDValue X86TargetLowering::LowerJumpTable(SDValue Op, SelectionDAG &DAG) const {
Chris Lattner18c59872009-06-27 04:16:01 +00007129 JumpTableSDNode *JT = cast<JumpTableSDNode>(Op);
Eric Christopherfd179292009-08-27 18:07:15 +00007130
Chris Lattner18c59872009-06-27 04:16:01 +00007131 // In PIC mode (unless we're in RIPRel PIC mode) we add an offset to the
7132 // global base reg.
7133 unsigned char OpFlag = 0;
7134 unsigned WrapperKind = X86ISD::Wrapper;
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00007135 CodeModel::Model M = getTargetMachine().getCodeModel();
7136
Chris Lattner4f066492009-07-11 20:29:19 +00007137 if (Subtarget->isPICStyleRIPRel() &&
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00007138 (M == CodeModel::Small || M == CodeModel::Kernel))
Chris Lattnere4df7562009-07-09 03:15:51 +00007139 WrapperKind = X86ISD::WrapperRIP;
Chris Lattner3b67e9b2009-07-10 20:47:30 +00007140 else if (Subtarget->isPICStyleGOT())
Chris Lattner88e1fd52009-07-09 04:24:46 +00007141 OpFlag = X86II::MO_GOTOFF;
Chris Lattnere2c92082009-07-10 21:00:45 +00007142 else if (Subtarget->isPICStyleStubPIC())
Chris Lattner88e1fd52009-07-09 04:24:46 +00007143 OpFlag = X86II::MO_PIC_BASE_OFFSET;
Eric Christopherfd179292009-08-27 18:07:15 +00007144
Chris Lattner18c59872009-06-27 04:16:01 +00007145 SDValue Result = DAG.getTargetJumpTable(JT->getIndex(), getPointerTy(),
7146 OpFlag);
7147 DebugLoc DL = JT->getDebugLoc();
7148 Result = DAG.getNode(WrapperKind, DL, getPointerTy(), Result);
Eric Christopherfd179292009-08-27 18:07:15 +00007149
Chris Lattner18c59872009-06-27 04:16:01 +00007150 // With PIC, the address is actually $g + Offset.
Chris Lattner1e61e692010-11-15 02:46:57 +00007151 if (OpFlag)
Chris Lattner18c59872009-06-27 04:16:01 +00007152 Result = DAG.getNode(ISD::ADD, DL, getPointerTy(),
7153 DAG.getNode(X86ISD::GlobalBaseReg,
Chris Lattnerc7f3ace2010-04-02 20:16:16 +00007154 DebugLoc(), getPointerTy()),
Chris Lattner18c59872009-06-27 04:16:01 +00007155 Result);
Eric Christopherfd179292009-08-27 18:07:15 +00007156
Chris Lattner18c59872009-06-27 04:16:01 +00007157 return Result;
7158}
7159
7160SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00007161X86TargetLowering::LowerExternalSymbol(SDValue Op, SelectionDAG &DAG) const {
Chris Lattner18c59872009-06-27 04:16:01 +00007162 const char *Sym = cast<ExternalSymbolSDNode>(Op)->getSymbol();
Eric Christopherfd179292009-08-27 18:07:15 +00007163
Chris Lattner18c59872009-06-27 04:16:01 +00007164 // In PIC mode (unless we're in RIPRel PIC mode) we add an offset to the
7165 // global base reg.
7166 unsigned char OpFlag = 0;
7167 unsigned WrapperKind = X86ISD::Wrapper;
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00007168 CodeModel::Model M = getTargetMachine().getCodeModel();
7169
Chris Lattner4f066492009-07-11 20:29:19 +00007170 if (Subtarget->isPICStyleRIPRel() &&
Eli Friedman586272d2011-08-11 01:48:05 +00007171 (M == CodeModel::Small || M == CodeModel::Kernel)) {
7172 if (Subtarget->isTargetDarwin() || Subtarget->isTargetELF())
7173 OpFlag = X86II::MO_GOTPCREL;
Chris Lattnere4df7562009-07-09 03:15:51 +00007174 WrapperKind = X86ISD::WrapperRIP;
Eli Friedman586272d2011-08-11 01:48:05 +00007175 } else if (Subtarget->isPICStyleGOT()) {
7176 OpFlag = X86II::MO_GOT;
7177 } else if (Subtarget->isPICStyleStubPIC()) {
7178 OpFlag = X86II::MO_DARWIN_NONLAZY_PIC_BASE;
7179 } else if (Subtarget->isPICStyleStubNoDynamic()) {
7180 OpFlag = X86II::MO_DARWIN_NONLAZY;
7181 }
Eric Christopherfd179292009-08-27 18:07:15 +00007182
Chris Lattner18c59872009-06-27 04:16:01 +00007183 SDValue Result = DAG.getTargetExternalSymbol(Sym, getPointerTy(), OpFlag);
Eric Christopherfd179292009-08-27 18:07:15 +00007184
Chris Lattner18c59872009-06-27 04:16:01 +00007185 DebugLoc DL = Op.getDebugLoc();
7186 Result = DAG.getNode(WrapperKind, DL, getPointerTy(), Result);
Eric Christopherfd179292009-08-27 18:07:15 +00007187
7188
Chris Lattner18c59872009-06-27 04:16:01 +00007189 // With PIC, the address is actually $g + Offset.
7190 if (getTargetMachine().getRelocationModel() == Reloc::PIC_ &&
Chris Lattnere4df7562009-07-09 03:15:51 +00007191 !Subtarget->is64Bit()) {
Chris Lattner18c59872009-06-27 04:16:01 +00007192 Result = DAG.getNode(ISD::ADD, DL, getPointerTy(),
7193 DAG.getNode(X86ISD::GlobalBaseReg,
Chris Lattnerc7f3ace2010-04-02 20:16:16 +00007194 DebugLoc(), getPointerTy()),
Chris Lattner18c59872009-06-27 04:16:01 +00007195 Result);
7196 }
Eric Christopherfd179292009-08-27 18:07:15 +00007197
Eli Friedman586272d2011-08-11 01:48:05 +00007198 // For symbols that require a load from a stub to get the address, emit the
7199 // load.
7200 if (isGlobalStubReference(OpFlag))
7201 Result = DAG.getLoad(getPointerTy(), DL, DAG.getEntryNode(), Result,
Pete Cooperd752e0f2011-11-08 18:42:53 +00007202 MachinePointerInfo::getGOT(), false, false, false, 0);
Eli Friedman586272d2011-08-11 01:48:05 +00007203
Chris Lattner18c59872009-06-27 04:16:01 +00007204 return Result;
7205}
7206
Dan Gohman475871a2008-07-27 21:46:04 +00007207SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00007208X86TargetLowering::LowerBlockAddress(SDValue Op, SelectionDAG &DAG) const {
Dan Gohman29cbade2009-11-20 23:18:13 +00007209 // Create the TargetBlockAddressAddress node.
7210 unsigned char OpFlags =
7211 Subtarget->ClassifyBlockAddressReference();
Dan Gohmanf705adb2009-10-30 01:28:02 +00007212 CodeModel::Model M = getTargetMachine().getCodeModel();
Dan Gohman46510a72010-04-15 01:51:59 +00007213 const BlockAddress *BA = cast<BlockAddressSDNode>(Op)->getBlockAddress();
Dan Gohman29cbade2009-11-20 23:18:13 +00007214 DebugLoc dl = Op.getDebugLoc();
7215 SDValue Result = DAG.getBlockAddress(BA, getPointerTy(),
7216 /*isTarget=*/true, OpFlags);
7217
Dan Gohmanf705adb2009-10-30 01:28:02 +00007218 if (Subtarget->isPICStyleRIPRel() &&
7219 (M == CodeModel::Small || M == CodeModel::Kernel))
Dan Gohman29cbade2009-11-20 23:18:13 +00007220 Result = DAG.getNode(X86ISD::WrapperRIP, dl, getPointerTy(), Result);
7221 else
7222 Result = DAG.getNode(X86ISD::Wrapper, dl, getPointerTy(), Result);
Dan Gohmanf705adb2009-10-30 01:28:02 +00007223
Dan Gohman29cbade2009-11-20 23:18:13 +00007224 // With PIC, the address is actually $g + Offset.
7225 if (isGlobalRelativeToPICBase(OpFlags)) {
7226 Result = DAG.getNode(ISD::ADD, dl, getPointerTy(),
7227 DAG.getNode(X86ISD::GlobalBaseReg, dl, getPointerTy()),
7228 Result);
7229 }
Dan Gohmanf705adb2009-10-30 01:28:02 +00007230
7231 return Result;
7232}
7233
7234SDValue
Dale Johannesen33c960f2009-02-04 20:06:27 +00007235X86TargetLowering::LowerGlobalAddress(const GlobalValue *GV, DebugLoc dl,
Dan Gohman6520e202008-10-18 02:06:02 +00007236 int64_t Offset,
Evan Chengda43bcf2008-09-24 00:05:32 +00007237 SelectionDAG &DAG) const {
Dan Gohman6520e202008-10-18 02:06:02 +00007238 // Create the TargetGlobalAddress node, folding in the constant
7239 // offset if it is legal.
Chris Lattnerd392bd92009-07-10 07:20:05 +00007240 unsigned char OpFlags =
7241 Subtarget->ClassifyGlobalReference(GV, getTargetMachine());
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00007242 CodeModel::Model M = getTargetMachine().getCodeModel();
Dan Gohman6520e202008-10-18 02:06:02 +00007243 SDValue Result;
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00007244 if (OpFlags == X86II::MO_NO_FLAG &&
7245 X86::isOffsetSuitableForCodeModel(Offset, M)) {
Chris Lattner4aa21aa2009-07-09 00:58:53 +00007246 // A direct static reference to a global.
Devang Patel0d881da2010-07-06 22:08:15 +00007247 Result = DAG.getTargetGlobalAddress(GV, dl, getPointerTy(), Offset);
Dan Gohman6520e202008-10-18 02:06:02 +00007248 Offset = 0;
Chris Lattner18c59872009-06-27 04:16:01 +00007249 } else {
Devang Patel0d881da2010-07-06 22:08:15 +00007250 Result = DAG.getTargetGlobalAddress(GV, dl, getPointerTy(), 0, OpFlags);
Chris Lattner18c59872009-06-27 04:16:01 +00007251 }
Eric Christopherfd179292009-08-27 18:07:15 +00007252
Chris Lattner4f066492009-07-11 20:29:19 +00007253 if (Subtarget->isPICStyleRIPRel() &&
Anton Korobeynikovb5e01722009-08-05 23:01:26 +00007254 (M == CodeModel::Small || M == CodeModel::Kernel))
Chris Lattner18c59872009-06-27 04:16:01 +00007255 Result = DAG.getNode(X86ISD::WrapperRIP, dl, getPointerTy(), Result);
7256 else
7257 Result = DAG.getNode(X86ISD::Wrapper, dl, getPointerTy(), Result);
Dan Gohman6520e202008-10-18 02:06:02 +00007258
Anton Korobeynikov7f705592007-01-12 19:20:47 +00007259 // With PIC, the address is actually $g + Offset.
Chris Lattner36c25012009-07-10 07:34:39 +00007260 if (isGlobalRelativeToPICBase(OpFlags)) {
Dale Johannesen33c960f2009-02-04 20:06:27 +00007261 Result = DAG.getNode(ISD::ADD, dl, getPointerTy(),
7262 DAG.getNode(X86ISD::GlobalBaseReg, dl, getPointerTy()),
Anton Korobeynikov7f705592007-01-12 19:20:47 +00007263 Result);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007264 }
Scott Michelfdc40a02009-02-17 22:15:04 +00007265
Chris Lattner36c25012009-07-10 07:34:39 +00007266 // For globals that require a load from a stub to get the address, emit the
7267 // load.
7268 if (isGlobalStubReference(OpFlags))
Dale Johannesen33c960f2009-02-04 20:06:27 +00007269 Result = DAG.getLoad(getPointerTy(), dl, DAG.getEntryNode(), Result,
Pete Cooperd752e0f2011-11-08 18:42:53 +00007270 MachinePointerInfo::getGOT(), false, false, false, 0);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007271
Dan Gohman6520e202008-10-18 02:06:02 +00007272 // If there was a non-zero offset that we didn't fold, create an explicit
7273 // addition for it.
7274 if (Offset != 0)
Dale Johannesen33c960f2009-02-04 20:06:27 +00007275 Result = DAG.getNode(ISD::ADD, dl, getPointerTy(), Result,
Dan Gohman6520e202008-10-18 02:06:02 +00007276 DAG.getConstant(Offset, getPointerTy()));
7277
Evan Cheng0db9fe62006-04-25 20:13:52 +00007278 return Result;
7279}
7280
Evan Chengda43bcf2008-09-24 00:05:32 +00007281SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00007282X86TargetLowering::LowerGlobalAddress(SDValue Op, SelectionDAG &DAG) const {
Evan Chengda43bcf2008-09-24 00:05:32 +00007283 const GlobalValue *GV = cast<GlobalAddressSDNode>(Op)->getGlobal();
Dan Gohman6520e202008-10-18 02:06:02 +00007284 int64_t Offset = cast<GlobalAddressSDNode>(Op)->getOffset();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007285 return LowerGlobalAddress(GV, Op.getDebugLoc(), Offset, DAG);
Evan Chengda43bcf2008-09-24 00:05:32 +00007286}
7287
Rafael Espindola2ee3db32009-04-17 14:35:58 +00007288static SDValue
7289GetTLSADDR(SelectionDAG &DAG, SDValue Chain, GlobalAddressSDNode *GA,
Owen Andersone50ed302009-08-10 22:56:29 +00007290 SDValue *InFlag, const EVT PtrVT, unsigned ReturnReg,
Chris Lattnerb903bed2009-06-26 21:20:29 +00007291 unsigned char OperandFlags) {
Anton Korobeynikov817a4642009-12-11 19:39:55 +00007292 MachineFrameInfo *MFI = DAG.getMachineFunction().getFrameInfo();
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +00007293 SDVTList NodeTys = DAG.getVTList(MVT::Other, MVT::Glue);
Rafael Espindola2ee3db32009-04-17 14:35:58 +00007294 DebugLoc dl = GA->getDebugLoc();
Devang Patel0d881da2010-07-06 22:08:15 +00007295 SDValue TGA = DAG.getTargetGlobalAddress(GA->getGlobal(), dl,
Rafael Espindola2ee3db32009-04-17 14:35:58 +00007296 GA->getValueType(0),
Chris Lattnerb903bed2009-06-26 21:20:29 +00007297 GA->getOffset(),
7298 OperandFlags);
Rafael Espindola2ee3db32009-04-17 14:35:58 +00007299 if (InFlag) {
7300 SDValue Ops[] = { Chain, TGA, *InFlag };
Rafael Espindola15f1b662009-04-24 12:59:40 +00007301 Chain = DAG.getNode(X86ISD::TLSADDR, dl, NodeTys, Ops, 3);
Rafael Espindola2ee3db32009-04-17 14:35:58 +00007302 } else {
7303 SDValue Ops[] = { Chain, TGA };
Rafael Espindola15f1b662009-04-24 12:59:40 +00007304 Chain = DAG.getNode(X86ISD::TLSADDR, dl, NodeTys, Ops, 2);
Rafael Espindola2ee3db32009-04-17 14:35:58 +00007305 }
Anton Korobeynikov817a4642009-12-11 19:39:55 +00007306
7307 // TLSADDR will be codegen'ed as call. Inform MFI that function has calls.
Bill Wendlingb92187a2010-05-14 21:14:32 +00007308 MFI->setAdjustsStack(true);
Anton Korobeynikov817a4642009-12-11 19:39:55 +00007309
Rafael Espindola15f1b662009-04-24 12:59:40 +00007310 SDValue Flag = Chain.getValue(1);
7311 return DAG.getCopyFromReg(Chain, dl, ReturnReg, PtrVT, Flag);
Rafael Espindola2ee3db32009-04-17 14:35:58 +00007312}
7313
Anton Korobeynikov6625eff2008-05-04 21:36:32 +00007314// Lower ISD::GlobalTLSAddress using the "general dynamic" model, 32 bit
Dan Gohman475871a2008-07-27 21:46:04 +00007315static SDValue
Anton Korobeynikov6625eff2008-05-04 21:36:32 +00007316LowerToTLSGeneralDynamicModel32(GlobalAddressSDNode *GA, SelectionDAG &DAG,
Owen Andersone50ed302009-08-10 22:56:29 +00007317 const EVT PtrVT) {
Dan Gohman475871a2008-07-27 21:46:04 +00007318 SDValue InFlag;
Dale Johannesendd64c412009-02-04 00:33:20 +00007319 DebugLoc dl = GA->getDebugLoc(); // ? function entry point might be better
7320 SDValue Chain = DAG.getCopyToReg(DAG.getEntryNode(), dl, X86::EBX,
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007321 DAG.getNode(X86ISD::GlobalBaseReg,
Chris Lattnerc7f3ace2010-04-02 20:16:16 +00007322 DebugLoc(), PtrVT), InFlag);
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007323 InFlag = Chain.getValue(1);
7324
Chris Lattnerb903bed2009-06-26 21:20:29 +00007325 return GetTLSADDR(DAG, Chain, GA, &InFlag, PtrVT, X86::EAX, X86II::MO_TLSGD);
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007326}
7327
Anton Korobeynikov6625eff2008-05-04 21:36:32 +00007328// Lower ISD::GlobalTLSAddress using the "general dynamic" model, 64 bit
Dan Gohman475871a2008-07-27 21:46:04 +00007329static SDValue
Anton Korobeynikov6625eff2008-05-04 21:36:32 +00007330LowerToTLSGeneralDynamicModel64(GlobalAddressSDNode *GA, SelectionDAG &DAG,
Owen Andersone50ed302009-08-10 22:56:29 +00007331 const EVT PtrVT) {
Chris Lattnerb903bed2009-06-26 21:20:29 +00007332 return GetTLSADDR(DAG, DAG.getEntryNode(), GA, NULL, PtrVT,
7333 X86::RAX, X86II::MO_TLSGD);
Anton Korobeynikov6625eff2008-05-04 21:36:32 +00007334}
7335
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007336// Lower ISD::GlobalTLSAddress using the "initial exec" (for no-pic) or
7337// "local exec" model.
Dan Gohman475871a2008-07-27 21:46:04 +00007338static SDValue LowerToTLSExecModel(GlobalAddressSDNode *GA, SelectionDAG &DAG,
Owen Andersone50ed302009-08-10 22:56:29 +00007339 const EVT PtrVT, TLSModel::Model model,
Rafael Espindola7ff5bff2009-04-13 13:02:49 +00007340 bool is64Bit) {
Dale Johannesen33c960f2009-02-04 20:06:27 +00007341 DebugLoc dl = GA->getDebugLoc();
Michael J. Spencerec38de22010-10-10 22:04:20 +00007342
Chris Lattnerf93b90c2010-09-22 04:39:11 +00007343 // Get the Thread Pointer, which is %gs:0 (32-bit) or %fs:0 (64-bit).
7344 Value *Ptr = Constant::getNullValue(Type::getInt8PtrTy(*DAG.getContext(),
7345 is64Bit ? 257 : 256));
Rafael Espindola094fad32009-04-08 21:14:34 +00007346
Michael J. Spencerec38de22010-10-10 22:04:20 +00007347 SDValue ThreadPointer = DAG.getLoad(PtrVT, dl, DAG.getEntryNode(),
Chris Lattnerf93b90c2010-09-22 04:39:11 +00007348 DAG.getIntPtrConstant(0),
Pete Cooperd752e0f2011-11-08 18:42:53 +00007349 MachinePointerInfo(Ptr),
7350 false, false, false, 0);
Rafael Espindola094fad32009-04-08 21:14:34 +00007351
Chris Lattnerb903bed2009-06-26 21:20:29 +00007352 unsigned char OperandFlags = 0;
Chris Lattner18c59872009-06-27 04:16:01 +00007353 // Most TLS accesses are not RIP relative, even on x86-64. One exception is
7354 // initialexec.
7355 unsigned WrapperKind = X86ISD::Wrapper;
7356 if (model == TLSModel::LocalExec) {
Chris Lattnerb903bed2009-06-26 21:20:29 +00007357 OperandFlags = is64Bit ? X86II::MO_TPOFF : X86II::MO_NTPOFF;
Chris Lattner18c59872009-06-27 04:16:01 +00007358 } else if (is64Bit) {
7359 assert(model == TLSModel::InitialExec);
7360 OperandFlags = X86II::MO_GOTTPOFF;
7361 WrapperKind = X86ISD::WrapperRIP;
7362 } else {
7363 assert(model == TLSModel::InitialExec);
7364 OperandFlags = X86II::MO_INDNTPOFF;
Chris Lattnerb903bed2009-06-26 21:20:29 +00007365 }
Eric Christopherfd179292009-08-27 18:07:15 +00007366
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007367 // emit "addl x@ntpoff,%eax" (local exec) or "addl x@indntpoff,%eax" (initial
7368 // exec)
Michael J. Spencerec38de22010-10-10 22:04:20 +00007369 SDValue TGA = DAG.getTargetGlobalAddress(GA->getGlobal(), dl,
Devang Patel0d881da2010-07-06 22:08:15 +00007370 GA->getValueType(0),
Chris Lattnerb903bed2009-06-26 21:20:29 +00007371 GA->getOffset(), OperandFlags);
Chris Lattner18c59872009-06-27 04:16:01 +00007372 SDValue Offset = DAG.getNode(WrapperKind, dl, PtrVT, TGA);
Lauro Ramos Venancio7d2cc2b2007-04-22 22:50:52 +00007373
Rafael Espindola9a580232009-02-27 13:37:18 +00007374 if (model == TLSModel::InitialExec)
Dale Johannesen33c960f2009-02-04 20:06:27 +00007375 Offset = DAG.getLoad(PtrVT, dl, DAG.getEntryNode(), Offset,
Pete Cooperd752e0f2011-11-08 18:42:53 +00007376 MachinePointerInfo::getGOT(), false, false, false, 0);
Lauro Ramos Venancio7d2cc2b2007-04-22 22:50:52 +00007377
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007378 // The address of the thread local variable is the add of the thread
7379 // pointer with the offset of the variable.
Dale Johannesen33c960f2009-02-04 20:06:27 +00007380 return DAG.getNode(ISD::ADD, dl, PtrVT, ThreadPointer, Offset);
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007381}
7382
Dan Gohman475871a2008-07-27 21:46:04 +00007383SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00007384X86TargetLowering::LowerGlobalTLSAddress(SDValue Op, SelectionDAG &DAG) const {
Michael J. Spencerec38de22010-10-10 22:04:20 +00007385
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007386 GlobalAddressSDNode *GA = cast<GlobalAddressSDNode>(Op);
Chris Lattnerb903bed2009-06-26 21:20:29 +00007387 const GlobalValue *GV = GA->getGlobal();
Eric Christopherfd179292009-08-27 18:07:15 +00007388
Eric Christopher30ef0e52010-06-03 04:07:48 +00007389 if (Subtarget->isTargetELF()) {
7390 // TODO: implement the "local dynamic" model
7391 // TODO: implement the "initial exec"model for pic executables
Michael J. Spencerec38de22010-10-10 22:04:20 +00007392
Eric Christopher30ef0e52010-06-03 04:07:48 +00007393 // If GV is an alias then use the aliasee for determining
7394 // thread-localness.
7395 if (const GlobalAlias *GA = dyn_cast<GlobalAlias>(GV))
7396 GV = GA->resolveAliasedGlobal(false);
Michael J. Spencerec38de22010-10-10 22:04:20 +00007397
7398 TLSModel::Model model
Eric Christopher30ef0e52010-06-03 04:07:48 +00007399 = getTLSModel(GV, getTargetMachine().getRelocationModel());
Michael J. Spencerec38de22010-10-10 22:04:20 +00007400
Eric Christopher30ef0e52010-06-03 04:07:48 +00007401 switch (model) {
7402 case TLSModel::GeneralDynamic:
7403 case TLSModel::LocalDynamic: // not implemented
7404 if (Subtarget->is64Bit())
7405 return LowerToTLSGeneralDynamicModel64(GA, DAG, getPointerTy());
7406 return LowerToTLSGeneralDynamicModel32(GA, DAG, getPointerTy());
Michael J. Spencerec38de22010-10-10 22:04:20 +00007407
Eric Christopher30ef0e52010-06-03 04:07:48 +00007408 case TLSModel::InitialExec:
7409 case TLSModel::LocalExec:
7410 return LowerToTLSExecModel(GA, DAG, getPointerTy(), model,
7411 Subtarget->is64Bit());
7412 }
7413 } else if (Subtarget->isTargetDarwin()) {
7414 // Darwin only has one model of TLS. Lower to that.
7415 unsigned char OpFlag = 0;
7416 unsigned WrapperKind = Subtarget->isPICStyleRIPRel() ?
7417 X86ISD::WrapperRIP : X86ISD::Wrapper;
Michael J. Spencerec38de22010-10-10 22:04:20 +00007418
Eric Christopher30ef0e52010-06-03 04:07:48 +00007419 // In PIC mode (unless we're in RIPRel PIC mode) we add an offset to the
7420 // global base reg.
7421 bool PIC32 = (getTargetMachine().getRelocationModel() == Reloc::PIC_) &&
7422 !Subtarget->is64Bit();
7423 if (PIC32)
7424 OpFlag = X86II::MO_TLVP_PIC_BASE;
7425 else
7426 OpFlag = X86II::MO_TLVP;
Michael J. Spencerec38de22010-10-10 22:04:20 +00007427 DebugLoc DL = Op.getDebugLoc();
Devang Patel0d881da2010-07-06 22:08:15 +00007428 SDValue Result = DAG.getTargetGlobalAddress(GA->getGlobal(), DL,
Eric Christopherd8c05362010-12-09 06:25:53 +00007429 GA->getValueType(0),
Eric Christopher30ef0e52010-06-03 04:07:48 +00007430 GA->getOffset(), OpFlag);
Eric Christopher30ef0e52010-06-03 04:07:48 +00007431 SDValue Offset = DAG.getNode(WrapperKind, DL, getPointerTy(), Result);
Michael J. Spencerec38de22010-10-10 22:04:20 +00007432
Eric Christopher30ef0e52010-06-03 04:07:48 +00007433 // With PIC32, the address is actually $g + Offset.
7434 if (PIC32)
7435 Offset = DAG.getNode(ISD::ADD, DL, getPointerTy(),
7436 DAG.getNode(X86ISD::GlobalBaseReg,
7437 DebugLoc(), getPointerTy()),
7438 Offset);
Michael J. Spencerec38de22010-10-10 22:04:20 +00007439
Eric Christopher30ef0e52010-06-03 04:07:48 +00007440 // Lowering the machine isd will make sure everything is in the right
7441 // location.
Eric Christopherd8c05362010-12-09 06:25:53 +00007442 SDValue Chain = DAG.getEntryNode();
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +00007443 SDVTList NodeTys = DAG.getVTList(MVT::Other, MVT::Glue);
Eric Christopherd8c05362010-12-09 06:25:53 +00007444 SDValue Args[] = { Chain, Offset };
7445 Chain = DAG.getNode(X86ISD::TLSCALL, DL, NodeTys, Args, 2);
Michael J. Spencerec38de22010-10-10 22:04:20 +00007446
Eric Christopher30ef0e52010-06-03 04:07:48 +00007447 // TLSCALL will be codegen'ed as call. Inform MFI that function has calls.
7448 MachineFrameInfo *MFI = DAG.getMachineFunction().getFrameInfo();
7449 MFI->setAdjustsStack(true);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00007450
Eric Christopher30ef0e52010-06-03 04:07:48 +00007451 // And our return value (tls address) is in the standard call return value
7452 // location.
Eric Christopherd8c05362010-12-09 06:25:53 +00007453 unsigned Reg = Subtarget->is64Bit() ? X86::RAX : X86::EAX;
Evan Chengfd230df2011-10-19 22:22:54 +00007454 return DAG.getCopyFromReg(Chain, DL, Reg, getPointerTy(),
7455 Chain.getValue(1));
Anton Korobeynikov6625eff2008-05-04 21:36:32 +00007456 }
Michael J. Spencerec38de22010-10-10 22:04:20 +00007457
Eric Christopher30ef0e52010-06-03 04:07:48 +00007458 assert(false &&
7459 "TLS not implemented for this target.");
Eric Christopherfd179292009-08-27 18:07:15 +00007460
Torok Edwinc23197a2009-07-14 16:55:14 +00007461 llvm_unreachable("Unreachable");
Chris Lattner5867de12009-04-01 22:14:45 +00007462 return SDValue();
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +00007463}
7464
Evan Cheng0db9fe62006-04-25 20:13:52 +00007465
Nadav Rotem43012222011-05-11 08:12:09 +00007466/// LowerShiftParts - Lower SRA_PARTS and friends, which return two i32 values and
Scott Michelfdc40a02009-02-17 22:15:04 +00007467/// take a 2 x i32 value to shift plus a shift amount.
Nadav Rotem43012222011-05-11 08:12:09 +00007468SDValue X86TargetLowering::LowerShiftParts(SDValue Op, SelectionDAG &DAG) const {
Dan Gohman4c1fa612008-03-03 22:22:09 +00007469 assert(Op.getNumOperands() == 3 && "Not a double-shift!");
Owen Andersone50ed302009-08-10 22:56:29 +00007470 EVT VT = Op.getValueType();
Duncan Sands83ec4b62008-06-06 12:08:01 +00007471 unsigned VTBits = VT.getSizeInBits();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007472 DebugLoc dl = Op.getDebugLoc();
Chris Lattner2ff75ee2007-10-17 06:02:13 +00007473 bool isSRA = Op.getOpcode() == ISD::SRA_PARTS;
Dan Gohman475871a2008-07-27 21:46:04 +00007474 SDValue ShOpLo = Op.getOperand(0);
7475 SDValue ShOpHi = Op.getOperand(1);
7476 SDValue ShAmt = Op.getOperand(2);
Chris Lattner31dcfe62009-07-29 05:48:09 +00007477 SDValue Tmp1 = isSRA ? DAG.getNode(ISD::SRA, dl, VT, ShOpHi,
Owen Anderson825b72b2009-08-11 20:47:22 +00007478 DAG.getConstant(VTBits - 1, MVT::i8))
Chris Lattner31dcfe62009-07-29 05:48:09 +00007479 : DAG.getConstant(0, VT);
Evan Chenge3413162006-01-09 18:33:28 +00007480
Dan Gohman475871a2008-07-27 21:46:04 +00007481 SDValue Tmp2, Tmp3;
Chris Lattner2ff75ee2007-10-17 06:02:13 +00007482 if (Op.getOpcode() == ISD::SHL_PARTS) {
Dale Johannesenace16102009-02-03 19:33:06 +00007483 Tmp2 = DAG.getNode(X86ISD::SHLD, dl, VT, ShOpHi, ShOpLo, ShAmt);
7484 Tmp3 = DAG.getNode(ISD::SHL, dl, VT, ShOpLo, ShAmt);
Chris Lattner2ff75ee2007-10-17 06:02:13 +00007485 } else {
Dale Johannesenace16102009-02-03 19:33:06 +00007486 Tmp2 = DAG.getNode(X86ISD::SHRD, dl, VT, ShOpLo, ShOpHi, ShAmt);
7487 Tmp3 = DAG.getNode(isSRA ? ISD::SRA : ISD::SRL, dl, VT, ShOpHi, ShAmt);
Chris Lattner2ff75ee2007-10-17 06:02:13 +00007488 }
Evan Chenge3413162006-01-09 18:33:28 +00007489
Owen Anderson825b72b2009-08-11 20:47:22 +00007490 SDValue AndNode = DAG.getNode(ISD::AND, dl, MVT::i8, ShAmt,
7491 DAG.getConstant(VTBits, MVT::i8));
Chris Lattnerccfea352010-02-22 00:28:59 +00007492 SDValue Cond = DAG.getNode(X86ISD::CMP, dl, MVT::i32,
Owen Anderson825b72b2009-08-11 20:47:22 +00007493 AndNode, DAG.getConstant(0, MVT::i8));
Evan Chenge3413162006-01-09 18:33:28 +00007494
Dan Gohman475871a2008-07-27 21:46:04 +00007495 SDValue Hi, Lo;
Owen Anderson825b72b2009-08-11 20:47:22 +00007496 SDValue CC = DAG.getConstant(X86::COND_NE, MVT::i8);
Dan Gohman475871a2008-07-27 21:46:04 +00007497 SDValue Ops0[4] = { Tmp2, Tmp3, CC, Cond };
7498 SDValue Ops1[4] = { Tmp3, Tmp1, CC, Cond };
Duncan Sandsf9516202008-06-30 10:19:09 +00007499
Chris Lattner2ff75ee2007-10-17 06:02:13 +00007500 if (Op.getOpcode() == ISD::SHL_PARTS) {
Dale Johannesenace16102009-02-03 19:33:06 +00007501 Hi = DAG.getNode(X86ISD::CMOV, dl, VT, Ops0, 4);
7502 Lo = DAG.getNode(X86ISD::CMOV, dl, VT, Ops1, 4);
Chris Lattner2ff75ee2007-10-17 06:02:13 +00007503 } else {
Dale Johannesenace16102009-02-03 19:33:06 +00007504 Lo = DAG.getNode(X86ISD::CMOV, dl, VT, Ops0, 4);
7505 Hi = DAG.getNode(X86ISD::CMOV, dl, VT, Ops1, 4);
Chris Lattner2ff75ee2007-10-17 06:02:13 +00007506 }
7507
Dan Gohman475871a2008-07-27 21:46:04 +00007508 SDValue Ops[2] = { Lo, Hi };
Dale Johannesenace16102009-02-03 19:33:06 +00007509 return DAG.getMergeValues(Ops, 2, dl);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007510}
Evan Chenga3195e82006-01-12 22:54:21 +00007511
Dan Gohmand858e902010-04-17 15:26:15 +00007512SDValue X86TargetLowering::LowerSINT_TO_FP(SDValue Op,
7513 SelectionDAG &DAG) const {
Owen Andersone50ed302009-08-10 22:56:29 +00007514 EVT SrcVT = Op.getOperand(0).getValueType();
Eli Friedman23ef1052009-06-06 03:57:58 +00007515
Dale Johannesen0488fb62010-09-30 23:57:10 +00007516 if (SrcVT.isVector())
Eli Friedman23ef1052009-06-06 03:57:58 +00007517 return SDValue();
Eli Friedman23ef1052009-06-06 03:57:58 +00007518
Owen Anderson825b72b2009-08-11 20:47:22 +00007519 assert(SrcVT.getSimpleVT() <= MVT::i64 && SrcVT.getSimpleVT() >= MVT::i16 &&
Chris Lattnerb09916b2008-02-27 05:57:41 +00007520 "Unknown SINT_TO_FP to lower!");
Scott Michelfdc40a02009-02-17 22:15:04 +00007521
Eli Friedman36df4992009-05-27 00:47:34 +00007522 // These are really Legal; return the operand so the caller accepts it as
7523 // Legal.
Owen Anderson825b72b2009-08-11 20:47:22 +00007524 if (SrcVT == MVT::i32 && isScalarFPTypeInSSEReg(Op.getValueType()))
Eli Friedman36df4992009-05-27 00:47:34 +00007525 return Op;
Owen Anderson825b72b2009-08-11 20:47:22 +00007526 if (SrcVT == MVT::i64 && isScalarFPTypeInSSEReg(Op.getValueType()) &&
Eli Friedman36df4992009-05-27 00:47:34 +00007527 Subtarget->is64Bit()) {
7528 return Op;
7529 }
Scott Michelfdc40a02009-02-17 22:15:04 +00007530
Bruno Cardoso Lopesa511b8e2011-08-09 17:39:01 +00007531 DebugLoc dl = Op.getDebugLoc();
Duncan Sands83ec4b62008-06-06 12:08:01 +00007532 unsigned Size = SrcVT.getSizeInBits()/8;
Evan Cheng0db9fe62006-04-25 20:13:52 +00007533 MachineFunction &MF = DAG.getMachineFunction();
David Greene3f2bf852009-11-12 20:49:22 +00007534 int SSFI = MF.getFrameInfo()->CreateStackObject(Size, Size, false);
Dan Gohman475871a2008-07-27 21:46:04 +00007535 SDValue StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
Dale Johannesenace16102009-02-03 19:33:06 +00007536 SDValue Chain = DAG.getStore(DAG.getEntryNode(), dl, Op.getOperand(0),
Bill Wendling105be5a2009-03-13 08:41:47 +00007537 StackSlot,
Chris Lattnere8639032010-09-21 06:22:23 +00007538 MachinePointerInfo::getFixedStack(SSFI),
David Greene67c9d422010-02-15 16:53:33 +00007539 false, false, 0);
Eli Friedman948e95a2009-05-23 09:59:16 +00007540 return BuildFILD(Op, SrcVT, Chain, StackSlot, DAG);
7541}
Evan Cheng0db9fe62006-04-25 20:13:52 +00007542
Owen Andersone50ed302009-08-10 22:56:29 +00007543SDValue X86TargetLowering::BuildFILD(SDValue Op, EVT SrcVT, SDValue Chain,
Michael J. Spencerec38de22010-10-10 22:04:20 +00007544 SDValue StackSlot,
Dan Gohmand858e902010-04-17 15:26:15 +00007545 SelectionDAG &DAG) const {
Evan Cheng0db9fe62006-04-25 20:13:52 +00007546 // Build the FILD
Chris Lattner492a43e2010-09-22 01:28:21 +00007547 DebugLoc DL = Op.getDebugLoc();
Chris Lattner5a88b832007-02-25 07:10:00 +00007548 SDVTList Tys;
Chris Lattner78631162008-01-16 06:24:21 +00007549 bool useSSE = isScalarFPTypeInSSEReg(Op.getValueType());
Dale Johannesen9e3d3ab2007-09-14 22:26:36 +00007550 if (useSSE)
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +00007551 Tys = DAG.getVTList(MVT::f64, MVT::Other, MVT::Glue);
Chris Lattner5a88b832007-02-25 07:10:00 +00007552 else
Owen Anderson825b72b2009-08-11 20:47:22 +00007553 Tys = DAG.getVTList(Op.getValueType(), MVT::Other);
Michael J. Spencerec38de22010-10-10 22:04:20 +00007554
Chris Lattner492a43e2010-09-22 01:28:21 +00007555 unsigned ByteSize = SrcVT.getSizeInBits()/8;
Michael J. Spencerec38de22010-10-10 22:04:20 +00007556
Stuart Hastings84be9582011-06-02 15:57:11 +00007557 FrameIndexSDNode *FI = dyn_cast<FrameIndexSDNode>(StackSlot);
7558 MachineMemOperand *MMO;
7559 if (FI) {
7560 int SSFI = FI->getIndex();
7561 MMO =
7562 DAG.getMachineFunction()
7563 .getMachineMemOperand(MachinePointerInfo::getFixedStack(SSFI),
7564 MachineMemOperand::MOLoad, ByteSize, ByteSize);
7565 } else {
7566 MMO = cast<LoadSDNode>(StackSlot)->getMemOperand();
7567 StackSlot = StackSlot.getOperand(1);
7568 }
Benjamin Kramer7f1a5602009-12-29 16:57:26 +00007569 SDValue Ops[] = { Chain, StackSlot, DAG.getValueType(SrcVT) };
Chris Lattner492a43e2010-09-22 01:28:21 +00007570 SDValue Result = DAG.getMemIntrinsicNode(useSSE ? X86ISD::FILD_FLAG :
7571 X86ISD::FILD, DL,
7572 Tys, Ops, array_lengthof(Ops),
7573 SrcVT, MMO);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007574
Dale Johannesen9e3d3ab2007-09-14 22:26:36 +00007575 if (useSSE) {
Evan Cheng0db9fe62006-04-25 20:13:52 +00007576 Chain = Result.getValue(1);
Dan Gohman475871a2008-07-27 21:46:04 +00007577 SDValue InFlag = Result.getValue(2);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007578
7579 // FIXME: Currently the FST is flagged to the FILD_FLAG. This
7580 // shouldn't be necessary except that RFP cannot be live across
7581 // multiple blocks. When stackifier is fixed, they can be uncoupled.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00007582 MachineFunction &MF = DAG.getMachineFunction();
Bob Wilsoneafca4e2010-09-22 17:35:14 +00007583 unsigned SSFISize = Op.getValueType().getSizeInBits()/8;
7584 int SSFI = MF.getFrameInfo()->CreateStackObject(SSFISize, SSFISize, false);
Dan Gohman475871a2008-07-27 21:46:04 +00007585 SDValue StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
Owen Anderson825b72b2009-08-11 20:47:22 +00007586 Tys = DAG.getVTList(MVT::Other);
Benjamin Kramer7f1a5602009-12-29 16:57:26 +00007587 SDValue Ops[] = {
7588 Chain, Result, StackSlot, DAG.getValueType(Op.getValueType()), InFlag
7589 };
Chris Lattner492a43e2010-09-22 01:28:21 +00007590 MachineMemOperand *MMO =
7591 DAG.getMachineFunction()
7592 .getMachineMemOperand(MachinePointerInfo::getFixedStack(SSFI),
Bob Wilsoneafca4e2010-09-22 17:35:14 +00007593 MachineMemOperand::MOStore, SSFISize, SSFISize);
Michael J. Spencerec38de22010-10-10 22:04:20 +00007594
Chris Lattner492a43e2010-09-22 01:28:21 +00007595 Chain = DAG.getMemIntrinsicNode(X86ISD::FST, DL, Tys,
7596 Ops, array_lengthof(Ops),
7597 Op.getValueType(), MMO);
7598 Result = DAG.getLoad(Op.getValueType(), DL, Chain, StackSlot,
Chris Lattnere8639032010-09-21 06:22:23 +00007599 MachinePointerInfo::getFixedStack(SSFI),
Pete Cooperd752e0f2011-11-08 18:42:53 +00007600 false, false, false, 0);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00007601 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00007602
Evan Cheng0db9fe62006-04-25 20:13:52 +00007603 return Result;
7604}
7605
Bill Wendling8b8a6362009-01-17 03:56:04 +00007606// LowerUINT_TO_FP_i64 - 64-bit unsigned integer to double expansion.
Dan Gohmand858e902010-04-17 15:26:15 +00007607SDValue X86TargetLowering::LowerUINT_TO_FP_i64(SDValue Op,
7608 SelectionDAG &DAG) const {
Bill Wendling8b8a6362009-01-17 03:56:04 +00007609 // This algorithm is not obvious. Here it is in C code, more or less:
7610 /*
7611 double uint64_to_double( uint32_t hi, uint32_t lo ) {
7612 static const __m128i exp = { 0x4330000045300000ULL, 0 };
7613 static const __m128d bias = { 0x1.0p84, 0x1.0p52 };
Dale Johannesen040225f2008-10-21 23:07:49 +00007614
Bill Wendling8b8a6362009-01-17 03:56:04 +00007615 // Copy ints to xmm registers.
7616 __m128i xh = _mm_cvtsi32_si128( hi );
7617 __m128i xl = _mm_cvtsi32_si128( lo );
Dale Johannesen040225f2008-10-21 23:07:49 +00007618
Bill Wendling8b8a6362009-01-17 03:56:04 +00007619 // Combine into low half of a single xmm register.
7620 __m128i x = _mm_unpacklo_epi32( xh, xl );
7621 __m128d d;
7622 double sd;
Dale Johannesen040225f2008-10-21 23:07:49 +00007623
Bill Wendling8b8a6362009-01-17 03:56:04 +00007624 // Merge in appropriate exponents to give the integer bits the right
7625 // magnitude.
7626 x = _mm_unpacklo_epi32( x, exp );
Dale Johannesen040225f2008-10-21 23:07:49 +00007627
Bill Wendling8b8a6362009-01-17 03:56:04 +00007628 // Subtract away the biases to deal with the IEEE-754 double precision
7629 // implicit 1.
7630 d = _mm_sub_pd( (__m128d) x, bias );
Dale Johannesen040225f2008-10-21 23:07:49 +00007631
Bill Wendling8b8a6362009-01-17 03:56:04 +00007632 // All conversions up to here are exact. The correctly rounded result is
7633 // calculated using the current rounding mode using the following
7634 // horizontal add.
7635 d = _mm_add_sd( d, _mm_unpackhi_pd( d, d ) );
7636 _mm_store_sd( &sd, d ); // Because we are returning doubles in XMM, this
7637 // store doesn't really need to be here (except
7638 // maybe to zero the other double)
7639 return sd;
7640 }
7641 */
Dale Johannesen040225f2008-10-21 23:07:49 +00007642
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007643 DebugLoc dl = Op.getDebugLoc();
Owen Andersona90b3dc2009-07-15 21:51:10 +00007644 LLVMContext *Context = DAG.getContext();
Dale Johannesenace16102009-02-03 19:33:06 +00007645
Dale Johannesen1c15bf52008-10-21 20:50:01 +00007646 // Build some magic constants.
Chad Rosier01d426e2011-12-15 01:16:09 +00007647 SmallVector<Constant*,4> CV0;
Owen Andersoneed707b2009-07-24 23:12:02 +00007648 CV0.push_back(ConstantInt::get(*Context, APInt(32, 0x45300000)));
7649 CV0.push_back(ConstantInt::get(*Context, APInt(32, 0x43300000)));
7650 CV0.push_back(ConstantInt::get(*Context, APInt(32, 0)));
7651 CV0.push_back(ConstantInt::get(*Context, APInt(32, 0)));
Owen Andersonaf7ec972009-07-28 21:19:26 +00007652 Constant *C0 = ConstantVector::get(CV0);
Evan Cheng1606e8e2009-03-13 07:51:59 +00007653 SDValue CPIdx0 = DAG.getConstantPool(C0, getPointerTy(), 16);
Dale Johannesen1c15bf52008-10-21 20:50:01 +00007654
Chad Rosier01d426e2011-12-15 01:16:09 +00007655 SmallVector<Constant*,2> CV1;
Owen Andersona90b3dc2009-07-15 21:51:10 +00007656 CV1.push_back(
Owen Anderson6f83c9c2009-07-27 20:59:43 +00007657 ConstantFP::get(*Context, APFloat(APInt(64, 0x4530000000000000ULL))));
Owen Andersona90b3dc2009-07-15 21:51:10 +00007658 CV1.push_back(
Owen Anderson6f83c9c2009-07-27 20:59:43 +00007659 ConstantFP::get(*Context, APFloat(APInt(64, 0x4330000000000000ULL))));
Owen Andersonaf7ec972009-07-28 21:19:26 +00007660 Constant *C1 = ConstantVector::get(CV1);
Evan Cheng1606e8e2009-03-13 07:51:59 +00007661 SDValue CPIdx1 = DAG.getConstantPool(C1, getPointerTy(), 16);
Dale Johannesen1c15bf52008-10-21 20:50:01 +00007662
Owen Anderson825b72b2009-08-11 20:47:22 +00007663 SDValue XR1 = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v4i32,
7664 DAG.getNode(ISD::EXTRACT_ELEMENT, dl, MVT::i32,
Duncan Sands6b6aeb32008-10-22 11:24:12 +00007665 Op.getOperand(0),
7666 DAG.getIntPtrConstant(1)));
Owen Anderson825b72b2009-08-11 20:47:22 +00007667 SDValue XR2 = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v4i32,
7668 DAG.getNode(ISD::EXTRACT_ELEMENT, dl, MVT::i32,
Duncan Sands6b6aeb32008-10-22 11:24:12 +00007669 Op.getOperand(0),
7670 DAG.getIntPtrConstant(0)));
Owen Anderson825b72b2009-08-11 20:47:22 +00007671 SDValue Unpck1 = getUnpackl(DAG, dl, MVT::v4i32, XR1, XR2);
7672 SDValue CLod0 = DAG.getLoad(MVT::v4i32, dl, DAG.getEntryNode(), CPIdx0,
Chris Lattnere8639032010-09-21 06:22:23 +00007673 MachinePointerInfo::getConstantPool(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00007674 false, false, false, 16);
Owen Anderson825b72b2009-08-11 20:47:22 +00007675 SDValue Unpck2 = getUnpackl(DAG, dl, MVT::v4i32, Unpck1, CLod0);
Wesley Peckbf17cfa2010-11-23 03:31:01 +00007676 SDValue XR2F = DAG.getNode(ISD::BITCAST, dl, MVT::v2f64, Unpck2);
Owen Anderson825b72b2009-08-11 20:47:22 +00007677 SDValue CLod1 = DAG.getLoad(MVT::v2f64, dl, CLod0.getValue(1), CPIdx1,
Chris Lattnere8639032010-09-21 06:22:23 +00007678 MachinePointerInfo::getConstantPool(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00007679 false, false, false, 16);
Owen Anderson825b72b2009-08-11 20:47:22 +00007680 SDValue Sub = DAG.getNode(ISD::FSUB, dl, MVT::v2f64, XR2F, CLod1);
Bill Wendling8b8a6362009-01-17 03:56:04 +00007681
Dale Johannesen1c15bf52008-10-21 20:50:01 +00007682 // Add the halves; easiest way is to swap them into another reg first.
Nate Begeman9008ca62009-04-27 18:41:29 +00007683 int ShufMask[2] = { 1, -1 };
Owen Anderson825b72b2009-08-11 20:47:22 +00007684 SDValue Shuf = DAG.getVectorShuffle(MVT::v2f64, dl, Sub,
7685 DAG.getUNDEF(MVT::v2f64), ShufMask);
7686 SDValue Add = DAG.getNode(ISD::FADD, dl, MVT::v2f64, Shuf, Sub);
7687 return DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::f64, Add,
Dale Johannesen1c15bf52008-10-21 20:50:01 +00007688 DAG.getIntPtrConstant(0));
7689}
7690
Bill Wendling8b8a6362009-01-17 03:56:04 +00007691// LowerUINT_TO_FP_i32 - 32-bit unsigned integer to float expansion.
Dan Gohmand858e902010-04-17 15:26:15 +00007692SDValue X86TargetLowering::LowerUINT_TO_FP_i32(SDValue Op,
7693 SelectionDAG &DAG) const {
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007694 DebugLoc dl = Op.getDebugLoc();
Bill Wendling8b8a6362009-01-17 03:56:04 +00007695 // FP constant to bias correct the final result.
7696 SDValue Bias = DAG.getConstantFP(BitsToDouble(0x4330000000000000ULL),
Owen Anderson825b72b2009-08-11 20:47:22 +00007697 MVT::f64);
Bill Wendling8b8a6362009-01-17 03:56:04 +00007698
7699 // Load the 32-bit value into an XMM register.
Owen Anderson825b72b2009-08-11 20:47:22 +00007700 SDValue Load = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v4i32,
Eli Friedman6cdc1f42011-08-02 18:38:35 +00007701 Op.getOperand(0));
Bill Wendling8b8a6362009-01-17 03:56:04 +00007702
Eli Friedmanf3704762011-08-29 21:15:46 +00007703 // Zero out the upper parts of the register.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +00007704 Load = getShuffleVectorZeroOrUndef(Load, 0, true, Subtarget->hasXMMInt(),
7705 DAG);
Eli Friedmanf3704762011-08-29 21:15:46 +00007706
Owen Anderson825b72b2009-08-11 20:47:22 +00007707 Load = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::f64,
Wesley Peckbf17cfa2010-11-23 03:31:01 +00007708 DAG.getNode(ISD::BITCAST, dl, MVT::v2f64, Load),
Bill Wendling8b8a6362009-01-17 03:56:04 +00007709 DAG.getIntPtrConstant(0));
7710
7711 // Or the load with the bias.
Owen Anderson825b72b2009-08-11 20:47:22 +00007712 SDValue Or = DAG.getNode(ISD::OR, dl, MVT::v2i64,
Wesley Peckbf17cfa2010-11-23 03:31:01 +00007713 DAG.getNode(ISD::BITCAST, dl, MVT::v2i64,
Dale Johannesenace16102009-02-03 19:33:06 +00007714 DAG.getNode(ISD::SCALAR_TO_VECTOR, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00007715 MVT::v2f64, Load)),
Wesley Peckbf17cfa2010-11-23 03:31:01 +00007716 DAG.getNode(ISD::BITCAST, dl, MVT::v2i64,
Dale Johannesenace16102009-02-03 19:33:06 +00007717 DAG.getNode(ISD::SCALAR_TO_VECTOR, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00007718 MVT::v2f64, Bias)));
7719 Or = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::f64,
Wesley Peckbf17cfa2010-11-23 03:31:01 +00007720 DAG.getNode(ISD::BITCAST, dl, MVT::v2f64, Or),
Bill Wendling8b8a6362009-01-17 03:56:04 +00007721 DAG.getIntPtrConstant(0));
7722
7723 // Subtract the bias.
Owen Anderson825b72b2009-08-11 20:47:22 +00007724 SDValue Sub = DAG.getNode(ISD::FSUB, dl, MVT::f64, Or, Bias);
Bill Wendling8b8a6362009-01-17 03:56:04 +00007725
7726 // Handle final rounding.
Owen Andersone50ed302009-08-10 22:56:29 +00007727 EVT DestVT = Op.getValueType();
Bill Wendling030939c2009-01-17 07:40:19 +00007728
Owen Anderson825b72b2009-08-11 20:47:22 +00007729 if (DestVT.bitsLT(MVT::f64)) {
Dale Johannesenace16102009-02-03 19:33:06 +00007730 return DAG.getNode(ISD::FP_ROUND, dl, DestVT, Sub,
Bill Wendling030939c2009-01-17 07:40:19 +00007731 DAG.getIntPtrConstant(0));
Owen Anderson825b72b2009-08-11 20:47:22 +00007732 } else if (DestVT.bitsGT(MVT::f64)) {
Dale Johannesenace16102009-02-03 19:33:06 +00007733 return DAG.getNode(ISD::FP_EXTEND, dl, DestVT, Sub);
Bill Wendling030939c2009-01-17 07:40:19 +00007734 }
7735
7736 // Handle final rounding.
7737 return Sub;
Bill Wendling8b8a6362009-01-17 03:56:04 +00007738}
7739
Dan Gohmand858e902010-04-17 15:26:15 +00007740SDValue X86TargetLowering::LowerUINT_TO_FP(SDValue Op,
7741 SelectionDAG &DAG) const {
Evan Chenga06ec9e2009-01-19 08:08:22 +00007742 SDValue N0 = Op.getOperand(0);
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007743 DebugLoc dl = Op.getDebugLoc();
Bill Wendling8b8a6362009-01-17 03:56:04 +00007744
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007745 // Since UINT_TO_FP is legal (it's marked custom), dag combiner won't
Evan Chenga06ec9e2009-01-19 08:08:22 +00007746 // optimize it to a SINT_TO_FP when the sign bit is known zero. Perform
7747 // the optimization here.
7748 if (DAG.SignBitIsZero(N0))
Dale Johannesenace16102009-02-03 19:33:06 +00007749 return DAG.getNode(ISD::SINT_TO_FP, dl, Op.getValueType(), N0);
Evan Chenga06ec9e2009-01-19 08:08:22 +00007750
Owen Andersone50ed302009-08-10 22:56:29 +00007751 EVT SrcVT = N0.getValueType();
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007752 EVT DstVT = Op.getValueType();
7753 if (SrcVT == MVT::i64 && DstVT == MVT::f64 && X86ScalarSSEf64)
Bill Wendling8b8a6362009-01-17 03:56:04 +00007754 return LowerUINT_TO_FP_i64(Op, DAG);
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007755 else if (SrcVT == MVT::i32 && X86ScalarSSEf64)
Bill Wendling8b8a6362009-01-17 03:56:04 +00007756 return LowerUINT_TO_FP_i32(Op, DAG);
Eli Friedman948e95a2009-05-23 09:59:16 +00007757
7758 // Make a 64-bit buffer, and use it to build an FILD.
Owen Anderson825b72b2009-08-11 20:47:22 +00007759 SDValue StackSlot = DAG.CreateStackTemporary(MVT::i64);
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007760 if (SrcVT == MVT::i32) {
7761 SDValue WordOff = DAG.getConstant(4, getPointerTy());
7762 SDValue OffsetSlot = DAG.getNode(ISD::ADD, dl,
7763 getPointerTy(), StackSlot, WordOff);
7764 SDValue Store1 = DAG.getStore(DAG.getEntryNode(), dl, Op.getOperand(0),
Chris Lattner8026a9d2010-09-21 17:50:43 +00007765 StackSlot, MachinePointerInfo(),
7766 false, false, 0);
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007767 SDValue Store2 = DAG.getStore(Store1, dl, DAG.getConstant(0, MVT::i32),
Chris Lattner8026a9d2010-09-21 17:50:43 +00007768 OffsetSlot, MachinePointerInfo(),
7769 false, false, 0);
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007770 SDValue Fild = BuildFILD(Op, MVT::i64, Store2, StackSlot, DAG);
7771 return Fild;
7772 }
7773
7774 assert(SrcVT == MVT::i64 && "Unexpected type in UINT_TO_FP");
7775 SDValue Store = DAG.getStore(DAG.getEntryNode(), dl, Op.getOperand(0),
Chris Lattner8026a9d2010-09-21 17:50:43 +00007776 StackSlot, MachinePointerInfo(),
7777 false, false, 0);
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007778 // For i64 source, we need to add the appropriate power of 2 if the input
7779 // was negative. This is the same as the optimization in
7780 // DAGTypeLegalizer::ExpandIntOp_UNIT_TO_FP, and for it to be safe here,
7781 // we must be careful to do the computation in x87 extended precision, not
7782 // in SSE. (The generic code can't know it's OK to do this, or how to.)
Chris Lattner492a43e2010-09-22 01:28:21 +00007783 int SSFI = cast<FrameIndexSDNode>(StackSlot)->getIndex();
7784 MachineMemOperand *MMO =
7785 DAG.getMachineFunction()
7786 .getMachineMemOperand(MachinePointerInfo::getFixedStack(SSFI),
7787 MachineMemOperand::MOLoad, 8, 8);
Michael J. Spencerec38de22010-10-10 22:04:20 +00007788
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007789 SDVTList Tys = DAG.getVTList(MVT::f80, MVT::Other);
7790 SDValue Ops[] = { Store, StackSlot, DAG.getValueType(MVT::i64) };
Chris Lattner492a43e2010-09-22 01:28:21 +00007791 SDValue Fild = DAG.getMemIntrinsicNode(X86ISD::FILD, dl, Tys, Ops, 3,
7792 MVT::i64, MMO);
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007793
7794 APInt FF(32, 0x5F800000ULL);
7795
7796 // Check whether the sign bit is set.
7797 SDValue SignSet = DAG.getSetCC(dl, getSetCCResultType(MVT::i64),
7798 Op.getOperand(0), DAG.getConstant(0, MVT::i64),
7799 ISD::SETLT);
7800
7801 // Build a 64 bit pair (0, FF) in the constant pool, with FF in the lo bits.
7802 SDValue FudgePtr = DAG.getConstantPool(
7803 ConstantInt::get(*DAG.getContext(), FF.zext(64)),
7804 getPointerTy());
7805
7806 // Get a pointer to FF if the sign bit was set, or to 0 otherwise.
7807 SDValue Zero = DAG.getIntPtrConstant(0);
7808 SDValue Four = DAG.getIntPtrConstant(4);
7809 SDValue Offset = DAG.getNode(ISD::SELECT, dl, Zero.getValueType(), SignSet,
7810 Zero, Four);
7811 FudgePtr = DAG.getNode(ISD::ADD, dl, getPointerTy(), FudgePtr, Offset);
7812
7813 // Load the value out, extending it from f32 to f80.
7814 // FIXME: Avoid the extend by constructing the right constant pool?
Stuart Hastingsa9011292011-02-16 16:23:55 +00007815 SDValue Fudge = DAG.getExtLoad(ISD::EXTLOAD, dl, MVT::f80, DAG.getEntryNode(),
Chris Lattnere8639032010-09-21 06:22:23 +00007816 FudgePtr, MachinePointerInfo::getConstantPool(),
7817 MVT::f32, false, false, 4);
Dale Johannesen8d908eb2010-05-15 18:51:12 +00007818 // Extend everything to 80 bits to force it to be done on x87.
7819 SDValue Add = DAG.getNode(ISD::FADD, dl, MVT::f80, Fild, Fudge);
7820 return DAG.getNode(ISD::FP_ROUND, dl, DstVT, Add, DAG.getIntPtrConstant(0));
Bill Wendling8b8a6362009-01-17 03:56:04 +00007821}
7822
Dan Gohman475871a2008-07-27 21:46:04 +00007823std::pair<SDValue,SDValue> X86TargetLowering::
Dan Gohmand858e902010-04-17 15:26:15 +00007824FP_TO_INTHelper(SDValue Op, SelectionDAG &DAG, bool IsSigned) const {
Chris Lattner07290932010-09-22 01:05:16 +00007825 DebugLoc DL = Op.getDebugLoc();
Eli Friedman948e95a2009-05-23 09:59:16 +00007826
Owen Andersone50ed302009-08-10 22:56:29 +00007827 EVT DstTy = Op.getValueType();
Eli Friedman948e95a2009-05-23 09:59:16 +00007828
7829 if (!IsSigned) {
Owen Anderson825b72b2009-08-11 20:47:22 +00007830 assert(DstTy == MVT::i32 && "Unexpected FP_TO_UINT");
7831 DstTy = MVT::i64;
Eli Friedman948e95a2009-05-23 09:59:16 +00007832 }
7833
Owen Anderson825b72b2009-08-11 20:47:22 +00007834 assert(DstTy.getSimpleVT() <= MVT::i64 &&
7835 DstTy.getSimpleVT() >= MVT::i16 &&
Evan Cheng0db9fe62006-04-25 20:13:52 +00007836 "Unknown FP_TO_SINT to lower!");
Evan Cheng0db9fe62006-04-25 20:13:52 +00007837
Dale Johannesen9e3d3ab2007-09-14 22:26:36 +00007838 // These are really Legal.
Owen Anderson825b72b2009-08-11 20:47:22 +00007839 if (DstTy == MVT::i32 &&
Chris Lattner78631162008-01-16 06:24:21 +00007840 isScalarFPTypeInSSEReg(Op.getOperand(0).getValueType()))
Dan Gohman475871a2008-07-27 21:46:04 +00007841 return std::make_pair(SDValue(), SDValue());
Dale Johannesen73328d12007-09-19 23:55:34 +00007842 if (Subtarget->is64Bit() &&
Owen Anderson825b72b2009-08-11 20:47:22 +00007843 DstTy == MVT::i64 &&
Eli Friedman36df4992009-05-27 00:47:34 +00007844 isScalarFPTypeInSSEReg(Op.getOperand(0).getValueType()))
Dan Gohman475871a2008-07-27 21:46:04 +00007845 return std::make_pair(SDValue(), SDValue());
Dale Johannesen9e3d3ab2007-09-14 22:26:36 +00007846
Evan Cheng87c89352007-10-15 20:11:21 +00007847 // We lower FP->sint64 into FISTP64, followed by a load, all to a temporary
7848 // stack slot.
7849 MachineFunction &MF = DAG.getMachineFunction();
Eli Friedman948e95a2009-05-23 09:59:16 +00007850 unsigned MemSize = DstTy.getSizeInBits()/8;
David Greene3f2bf852009-11-12 20:49:22 +00007851 int SSFI = MF.getFrameInfo()->CreateStackObject(MemSize, MemSize, false);
Dan Gohman475871a2008-07-27 21:46:04 +00007852 SDValue StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
Eric Christopherfd179292009-08-27 18:07:15 +00007853
Michael J. Spencerec38de22010-10-10 22:04:20 +00007854
7855
Evan Cheng0db9fe62006-04-25 20:13:52 +00007856 unsigned Opc;
Owen Anderson825b72b2009-08-11 20:47:22 +00007857 switch (DstTy.getSimpleVT().SimpleTy) {
Torok Edwinc23197a2009-07-14 16:55:14 +00007858 default: llvm_unreachable("Invalid FP_TO_SINT to lower!");
Owen Anderson825b72b2009-08-11 20:47:22 +00007859 case MVT::i16: Opc = X86ISD::FP_TO_INT16_IN_MEM; break;
7860 case MVT::i32: Opc = X86ISD::FP_TO_INT32_IN_MEM; break;
7861 case MVT::i64: Opc = X86ISD::FP_TO_INT64_IN_MEM; break;
Evan Cheng0db9fe62006-04-25 20:13:52 +00007862 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00007863
Dan Gohman475871a2008-07-27 21:46:04 +00007864 SDValue Chain = DAG.getEntryNode();
7865 SDValue Value = Op.getOperand(0);
Chris Lattner492a43e2010-09-22 01:28:21 +00007866 EVT TheVT = Op.getOperand(0).getValueType();
7867 if (isScalarFPTypeInSSEReg(TheVT)) {
Owen Anderson825b72b2009-08-11 20:47:22 +00007868 assert(DstTy == MVT::i64 && "Invalid FP_TO_SINT to lower!");
Chris Lattner07290932010-09-22 01:05:16 +00007869 Chain = DAG.getStore(Chain, DL, Value, StackSlot,
Chris Lattnere8639032010-09-21 06:22:23 +00007870 MachinePointerInfo::getFixedStack(SSFI),
David Greene67c9d422010-02-15 16:53:33 +00007871 false, false, 0);
Owen Anderson825b72b2009-08-11 20:47:22 +00007872 SDVTList Tys = DAG.getVTList(Op.getOperand(0).getValueType(), MVT::Other);
Dan Gohman475871a2008-07-27 21:46:04 +00007873 SDValue Ops[] = {
Chris Lattner492a43e2010-09-22 01:28:21 +00007874 Chain, StackSlot, DAG.getValueType(TheVT)
Chris Lattner5a88b832007-02-25 07:10:00 +00007875 };
Michael J. Spencerec38de22010-10-10 22:04:20 +00007876
Chris Lattner492a43e2010-09-22 01:28:21 +00007877 MachineMemOperand *MMO =
7878 MF.getMachineMemOperand(MachinePointerInfo::getFixedStack(SSFI),
7879 MachineMemOperand::MOLoad, MemSize, MemSize);
7880 Value = DAG.getMemIntrinsicNode(X86ISD::FLD, DL, Tys, Ops, 3,
7881 DstTy, MMO);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007882 Chain = Value.getValue(1);
David Greene3f2bf852009-11-12 20:49:22 +00007883 SSFI = MF.getFrameInfo()->CreateStackObject(MemSize, MemSize, false);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007884 StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
7885 }
Michael J. Spencerec38de22010-10-10 22:04:20 +00007886
Chris Lattner07290932010-09-22 01:05:16 +00007887 MachineMemOperand *MMO =
7888 MF.getMachineMemOperand(MachinePointerInfo::getFixedStack(SSFI),
7889 MachineMemOperand::MOStore, MemSize, MemSize);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00007890
Evan Cheng0db9fe62006-04-25 20:13:52 +00007891 // Build the FP_TO_INT*_IN_MEM
Dan Gohman475871a2008-07-27 21:46:04 +00007892 SDValue Ops[] = { Chain, Value, StackSlot };
Chris Lattner07290932010-09-22 01:05:16 +00007893 SDValue FIST = DAG.getMemIntrinsicNode(Opc, DL, DAG.getVTList(MVT::Other),
7894 Ops, 3, DstTy, MMO);
Evan Chengd9558e02006-01-06 00:43:03 +00007895
Chris Lattner27a6c732007-11-24 07:07:01 +00007896 return std::make_pair(FIST, StackSlot);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007897}
7898
Dan Gohmand858e902010-04-17 15:26:15 +00007899SDValue X86TargetLowering::LowerFP_TO_SINT(SDValue Op,
7900 SelectionDAG &DAG) const {
Dale Johannesen0488fb62010-09-30 23:57:10 +00007901 if (Op.getValueType().isVector())
Eli Friedman23ef1052009-06-06 03:57:58 +00007902 return SDValue();
Eli Friedman23ef1052009-06-06 03:57:58 +00007903
Eli Friedman948e95a2009-05-23 09:59:16 +00007904 std::pair<SDValue,SDValue> Vals = FP_TO_INTHelper(Op, DAG, true);
Dan Gohman475871a2008-07-27 21:46:04 +00007905 SDValue FIST = Vals.first, StackSlot = Vals.second;
Eli Friedman36df4992009-05-27 00:47:34 +00007906 // If FP_TO_INTHelper failed, the node is actually supposed to be Legal.
7907 if (FIST.getNode() == 0) return Op;
Scott Michelfdc40a02009-02-17 22:15:04 +00007908
Chris Lattner27a6c732007-11-24 07:07:01 +00007909 // Load the result.
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007910 return DAG.getLoad(Op.getValueType(), Op.getDebugLoc(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00007911 FIST, StackSlot, MachinePointerInfo(),
7912 false, false, false, 0);
Chris Lattner27a6c732007-11-24 07:07:01 +00007913}
7914
Dan Gohmand858e902010-04-17 15:26:15 +00007915SDValue X86TargetLowering::LowerFP_TO_UINT(SDValue Op,
7916 SelectionDAG &DAG) const {
Eli Friedman948e95a2009-05-23 09:59:16 +00007917 std::pair<SDValue,SDValue> Vals = FP_TO_INTHelper(Op, DAG, false);
7918 SDValue FIST = Vals.first, StackSlot = Vals.second;
7919 assert(FIST.getNode() && "Unexpected failure");
7920
7921 // Load the result.
7922 return DAG.getLoad(Op.getValueType(), Op.getDebugLoc(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00007923 FIST, StackSlot, MachinePointerInfo(),
7924 false, false, false, 0);
Eli Friedman948e95a2009-05-23 09:59:16 +00007925}
7926
Dan Gohmand858e902010-04-17 15:26:15 +00007927SDValue X86TargetLowering::LowerFABS(SDValue Op,
7928 SelectionDAG &DAG) const {
Owen Andersona90b3dc2009-07-15 21:51:10 +00007929 LLVMContext *Context = DAG.getContext();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007930 DebugLoc dl = Op.getDebugLoc();
Owen Andersone50ed302009-08-10 22:56:29 +00007931 EVT VT = Op.getValueType();
7932 EVT EltVT = VT;
Duncan Sands83ec4b62008-06-06 12:08:01 +00007933 if (VT.isVector())
7934 EltVT = VT.getVectorElementType();
Chad Rosier01d426e2011-12-15 01:16:09 +00007935 SmallVector<Constant*,4> CV;
Owen Anderson825b72b2009-08-11 20:47:22 +00007936 if (EltVT == MVT::f64) {
Owen Anderson6f83c9c2009-07-27 20:59:43 +00007937 Constant *C = ConstantFP::get(*Context, APFloat(APInt(64, ~(1ULL << 63))));
Chad Rosier01d426e2011-12-15 01:16:09 +00007938 CV.assign(2, C);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007939 } else {
Owen Anderson6f83c9c2009-07-27 20:59:43 +00007940 Constant *C = ConstantFP::get(*Context, APFloat(APInt(32, ~(1U << 31))));
Chad Rosier01d426e2011-12-15 01:16:09 +00007941 CV.assign(4, C);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007942 }
Owen Andersonaf7ec972009-07-28 21:19:26 +00007943 Constant *C = ConstantVector::get(CV);
Evan Cheng1606e8e2009-03-13 07:51:59 +00007944 SDValue CPIdx = DAG.getConstantPool(C, getPointerTy(), 16);
Dale Johannesenace16102009-02-03 19:33:06 +00007945 SDValue Mask = DAG.getLoad(VT, dl, DAG.getEntryNode(), CPIdx,
Chris Lattnere8639032010-09-21 06:22:23 +00007946 MachinePointerInfo::getConstantPool(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00007947 false, false, false, 16);
Dale Johannesenace16102009-02-03 19:33:06 +00007948 return DAG.getNode(X86ISD::FAND, dl, VT, Op.getOperand(0), Mask);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007949}
7950
Dan Gohmand858e902010-04-17 15:26:15 +00007951SDValue X86TargetLowering::LowerFNEG(SDValue Op, SelectionDAG &DAG) const {
Owen Andersona90b3dc2009-07-15 21:51:10 +00007952 LLVMContext *Context = DAG.getContext();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007953 DebugLoc dl = Op.getDebugLoc();
Owen Andersone50ed302009-08-10 22:56:29 +00007954 EVT VT = Op.getValueType();
7955 EVT EltVT = VT;
Chad Rosiera860b182011-12-15 01:02:25 +00007956 unsigned NumElts = VT == MVT::f64 ? 2 : 4;
7957 if (VT.isVector()) {
Duncan Sands83ec4b62008-06-06 12:08:01 +00007958 EltVT = VT.getVectorElementType();
Chad Rosiera860b182011-12-15 01:02:25 +00007959 NumElts = VT.getVectorNumElements();
7960 }
7961 SmallVector<Constant*,8> CV;
Owen Anderson825b72b2009-08-11 20:47:22 +00007962 if (EltVT == MVT::f64) {
Owen Anderson6f83c9c2009-07-27 20:59:43 +00007963 Constant *C = ConstantFP::get(*Context, APFloat(APInt(64, 1ULL << 63)));
Chad Rosiera860b182011-12-15 01:02:25 +00007964 CV.assign(NumElts, C);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007965 } else {
Owen Anderson6f83c9c2009-07-27 20:59:43 +00007966 Constant *C = ConstantFP::get(*Context, APFloat(APInt(32, 1U << 31)));
Chad Rosiera860b182011-12-15 01:02:25 +00007967 CV.assign(NumElts, C);
Evan Cheng0db9fe62006-04-25 20:13:52 +00007968 }
Owen Andersonaf7ec972009-07-28 21:19:26 +00007969 Constant *C = ConstantVector::get(CV);
Evan Cheng1606e8e2009-03-13 07:51:59 +00007970 SDValue CPIdx = DAG.getConstantPool(C, getPointerTy(), 16);
Dale Johannesenace16102009-02-03 19:33:06 +00007971 SDValue Mask = DAG.getLoad(VT, dl, DAG.getEntryNode(), CPIdx,
Chris Lattnere8639032010-09-21 06:22:23 +00007972 MachinePointerInfo::getConstantPool(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00007973 false, false, false, 16);
Duncan Sands83ec4b62008-06-06 12:08:01 +00007974 if (VT.isVector()) {
Chad Rosiera860b182011-12-15 01:02:25 +00007975 MVT XORVT = VT.getSizeInBits() == 128 ? MVT::v2i64 : MVT::v4i64;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00007976 return DAG.getNode(ISD::BITCAST, dl, VT,
Chad Rosiera860b182011-12-15 01:02:25 +00007977 DAG.getNode(ISD::XOR, dl, XORVT,
7978 DAG.getNode(ISD::BITCAST, dl, XORVT,
Dale Johannesenace16102009-02-03 19:33:06 +00007979 Op.getOperand(0)),
Chad Rosiera860b182011-12-15 01:02:25 +00007980 DAG.getNode(ISD::BITCAST, dl, XORVT, Mask)));
Evan Chengd4d01b72007-07-19 23:36:01 +00007981 } else {
Dale Johannesenace16102009-02-03 19:33:06 +00007982 return DAG.getNode(X86ISD::FXOR, dl, VT, Op.getOperand(0), Mask);
Evan Chengd4d01b72007-07-19 23:36:01 +00007983 }
Evan Cheng0db9fe62006-04-25 20:13:52 +00007984}
7985
Dan Gohmand858e902010-04-17 15:26:15 +00007986SDValue X86TargetLowering::LowerFCOPYSIGN(SDValue Op, SelectionDAG &DAG) const {
Owen Andersona90b3dc2009-07-15 21:51:10 +00007987 LLVMContext *Context = DAG.getContext();
Dan Gohman475871a2008-07-27 21:46:04 +00007988 SDValue Op0 = Op.getOperand(0);
7989 SDValue Op1 = Op.getOperand(1);
Dale Johannesen6f38cb62009-02-07 19:59:05 +00007990 DebugLoc dl = Op.getDebugLoc();
Owen Andersone50ed302009-08-10 22:56:29 +00007991 EVT VT = Op.getValueType();
7992 EVT SrcVT = Op1.getValueType();
Evan Cheng73d6cf12007-01-05 21:37:56 +00007993
7994 // If second operand is smaller, extend it first.
Duncan Sands8e4eb092008-06-08 20:54:56 +00007995 if (SrcVT.bitsLT(VT)) {
Dale Johannesenace16102009-02-03 19:33:06 +00007996 Op1 = DAG.getNode(ISD::FP_EXTEND, dl, VT, Op1);
Evan Cheng73d6cf12007-01-05 21:37:56 +00007997 SrcVT = VT;
7998 }
Dale Johannesen61c7ef32007-10-21 01:07:44 +00007999 // And if it is bigger, shrink it first.
Duncan Sands8e4eb092008-06-08 20:54:56 +00008000 if (SrcVT.bitsGT(VT)) {
Dale Johannesenace16102009-02-03 19:33:06 +00008001 Op1 = DAG.getNode(ISD::FP_ROUND, dl, VT, Op1, DAG.getIntPtrConstant(1));
Dale Johannesen61c7ef32007-10-21 01:07:44 +00008002 SrcVT = VT;
Dale Johannesen61c7ef32007-10-21 01:07:44 +00008003 }
8004
8005 // At this point the operands and the result should have the same
8006 // type, and that won't be f80 since that is not custom lowered.
Evan Cheng73d6cf12007-01-05 21:37:56 +00008007
Evan Cheng68c47cb2007-01-05 07:55:56 +00008008 // First get the sign bit of second operand.
Chad Rosier01d426e2011-12-15 01:16:09 +00008009 SmallVector<Constant*,4> CV;
Owen Anderson825b72b2009-08-11 20:47:22 +00008010 if (SrcVT == MVT::f64) {
Owen Anderson6f83c9c2009-07-27 20:59:43 +00008011 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(64, 1ULL << 63))));
8012 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(64, 0))));
Evan Cheng68c47cb2007-01-05 07:55:56 +00008013 } else {
Owen Anderson6f83c9c2009-07-27 20:59:43 +00008014 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(32, 1U << 31))));
8015 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(32, 0))));
8016 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(32, 0))));
8017 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(32, 0))));
Evan Cheng68c47cb2007-01-05 07:55:56 +00008018 }
Owen Andersonaf7ec972009-07-28 21:19:26 +00008019 Constant *C = ConstantVector::get(CV);
Evan Cheng1606e8e2009-03-13 07:51:59 +00008020 SDValue CPIdx = DAG.getConstantPool(C, getPointerTy(), 16);
Dale Johannesenace16102009-02-03 19:33:06 +00008021 SDValue Mask1 = DAG.getLoad(SrcVT, dl, DAG.getEntryNode(), CPIdx,
Chris Lattnere8639032010-09-21 06:22:23 +00008022 MachinePointerInfo::getConstantPool(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00008023 false, false, false, 16);
Dale Johannesenace16102009-02-03 19:33:06 +00008024 SDValue SignBit = DAG.getNode(X86ISD::FAND, dl, SrcVT, Op1, Mask1);
Evan Cheng68c47cb2007-01-05 07:55:56 +00008025
8026 // Shift sign bit right or left if the two operands have different types.
Duncan Sands8e4eb092008-06-08 20:54:56 +00008027 if (SrcVT.bitsGT(VT)) {
Owen Anderson825b72b2009-08-11 20:47:22 +00008028 // Op0 is MVT::f32, Op1 is MVT::f64.
8029 SignBit = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl, MVT::v2f64, SignBit);
8030 SignBit = DAG.getNode(X86ISD::FSRL, dl, MVT::v2f64, SignBit,
8031 DAG.getConstant(32, MVT::i32));
Wesley Peckbf17cfa2010-11-23 03:31:01 +00008032 SignBit = DAG.getNode(ISD::BITCAST, dl, MVT::v4f32, SignBit);
Owen Anderson825b72b2009-08-11 20:47:22 +00008033 SignBit = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, MVT::f32, SignBit,
Chris Lattner0bd48932008-01-17 07:00:52 +00008034 DAG.getIntPtrConstant(0));
Evan Cheng68c47cb2007-01-05 07:55:56 +00008035 }
8036
Evan Cheng73d6cf12007-01-05 21:37:56 +00008037 // Clear first operand sign bit.
8038 CV.clear();
Owen Anderson825b72b2009-08-11 20:47:22 +00008039 if (VT == MVT::f64) {
Owen Anderson6f83c9c2009-07-27 20:59:43 +00008040 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(64, ~(1ULL << 63)))));
8041 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(64, 0))));
Evan Cheng73d6cf12007-01-05 21:37:56 +00008042 } else {
Owen Anderson6f83c9c2009-07-27 20:59:43 +00008043 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(32, ~(1U << 31)))));
8044 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(32, 0))));
8045 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(32, 0))));
8046 CV.push_back(ConstantFP::get(*Context, APFloat(APInt(32, 0))));
Evan Cheng73d6cf12007-01-05 21:37:56 +00008047 }
Owen Andersonaf7ec972009-07-28 21:19:26 +00008048 C = ConstantVector::get(CV);
Evan Cheng1606e8e2009-03-13 07:51:59 +00008049 CPIdx = DAG.getConstantPool(C, getPointerTy(), 16);
Dale Johannesenace16102009-02-03 19:33:06 +00008050 SDValue Mask2 = DAG.getLoad(VT, dl, DAG.getEntryNode(), CPIdx,
Chris Lattnere8639032010-09-21 06:22:23 +00008051 MachinePointerInfo::getConstantPool(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00008052 false, false, false, 16);
Dale Johannesenace16102009-02-03 19:33:06 +00008053 SDValue Val = DAG.getNode(X86ISD::FAND, dl, VT, Op0, Mask2);
Evan Cheng73d6cf12007-01-05 21:37:56 +00008054
8055 // Or the value with the sign bit.
Dale Johannesenace16102009-02-03 19:33:06 +00008056 return DAG.getNode(X86ISD::FOR, dl, VT, Val, SignBit);
Evan Cheng68c47cb2007-01-05 07:55:56 +00008057}
8058
Stuart Hastings4fd0dee2011-06-01 04:39:42 +00008059SDValue X86TargetLowering::LowerFGETSIGN(SDValue Op, SelectionDAG &DAG) const {
8060 SDValue N0 = Op.getOperand(0);
8061 DebugLoc dl = Op.getDebugLoc();
8062 EVT VT = Op.getValueType();
8063
8064 // Lower ISD::FGETSIGN to (AND (X86ISD::FGETSIGNx86 ...) 1).
8065 SDValue xFGETSIGN = DAG.getNode(X86ISD::FGETSIGNx86, dl, VT, N0,
8066 DAG.getConstant(1, VT));
8067 return DAG.getNode(ISD::AND, dl, VT, xFGETSIGN, DAG.getConstant(1, VT));
8068}
8069
Dan Gohman076aee32009-03-04 19:44:21 +00008070/// Emit nodes that will be selected as "test Op0,Op0", or something
8071/// equivalent.
Dan Gohman31125812009-03-07 01:58:32 +00008072SDValue X86TargetLowering::EmitTest(SDValue Op, unsigned X86CC,
Evan Cheng552f09a2010-04-26 19:06:11 +00008073 SelectionDAG &DAG) const {
Dan Gohman076aee32009-03-04 19:44:21 +00008074 DebugLoc dl = Op.getDebugLoc();
8075
Dan Gohman31125812009-03-07 01:58:32 +00008076 // CF and OF aren't always set the way we want. Determine which
8077 // of these we need.
8078 bool NeedCF = false;
8079 bool NeedOF = false;
8080 switch (X86CC) {
Bill Wendlingc25ccf82010-06-28 21:08:32 +00008081 default: break;
Dan Gohman31125812009-03-07 01:58:32 +00008082 case X86::COND_A: case X86::COND_AE:
8083 case X86::COND_B: case X86::COND_BE:
8084 NeedCF = true;
8085 break;
8086 case X86::COND_G: case X86::COND_GE:
8087 case X86::COND_L: case X86::COND_LE:
8088 case X86::COND_O: case X86::COND_NO:
8089 NeedOF = true;
8090 break;
Dan Gohman31125812009-03-07 01:58:32 +00008091 }
8092
Dan Gohman076aee32009-03-04 19:44:21 +00008093 // See if we can use the EFLAGS value from the operand instead of
Dan Gohman31125812009-03-07 01:58:32 +00008094 // doing a separate TEST. TEST always sets OF and CF to 0, so unless
8095 // we prove that the arithmetic won't overflow, we can't use OF or CF.
Bill Wendlingc25ccf82010-06-28 21:08:32 +00008096 if (Op.getResNo() != 0 || NeedOF || NeedCF)
8097 // Emit a CMP with 0, which is the TEST pattern.
8098 return DAG.getNode(X86ISD::CMP, dl, MVT::i32, Op,
8099 DAG.getConstant(0, Op.getValueType()));
8100
8101 unsigned Opcode = 0;
8102 unsigned NumOperands = 0;
8103 switch (Op.getNode()->getOpcode()) {
8104 case ISD::ADD:
8105 // Due to an isel shortcoming, be conservative if this add is likely to be
8106 // selected as part of a load-modify-store instruction. When the root node
8107 // in a match is a store, isel doesn't know how to remap non-chain non-flag
8108 // uses of other nodes in the match, such as the ADD in this case. This
8109 // leads to the ADD being left around and reselected, with the result being
8110 // two adds in the output. Alas, even if none our users are stores, that
8111 // doesn't prove we're O.K. Ergo, if we have any parents that aren't
8112 // CopyToReg or SETCC, eschew INC/DEC. A better fix seems to require
8113 // climbing the DAG back to the root, and it doesn't seem to be worth the
8114 // effort.
8115 for (SDNode::use_iterator UI = Op.getNode()->use_begin(),
Pete Cooper2d496892011-11-15 21:57:53 +00008116 UE = Op.getNode()->use_end(); UI != UE; ++UI)
8117 if (UI->getOpcode() != ISD::CopyToReg &&
8118 UI->getOpcode() != ISD::SETCC &&
8119 UI->getOpcode() != ISD::STORE)
Bill Wendlingc25ccf82010-06-28 21:08:32 +00008120 goto default_case;
8121
8122 if (ConstantSDNode *C =
8123 dyn_cast<ConstantSDNode>(Op.getNode()->getOperand(1))) {
8124 // An add of one will be selected as an INC.
8125 if (C->getAPIntValue() == 1) {
8126 Opcode = X86ISD::INC;
8127 NumOperands = 1;
8128 break;
Dan Gohmane220c4b2009-09-18 19:59:53 +00008129 }
Bill Wendlingc25ccf82010-06-28 21:08:32 +00008130
8131 // An add of negative one (subtract of one) will be selected as a DEC.
8132 if (C->getAPIntValue().isAllOnesValue()) {
8133 Opcode = X86ISD::DEC;
8134 NumOperands = 1;
8135 break;
8136 }
Dan Gohman076aee32009-03-04 19:44:21 +00008137 }
Bill Wendlingc25ccf82010-06-28 21:08:32 +00008138
8139 // Otherwise use a regular EFLAGS-setting add.
8140 Opcode = X86ISD::ADD;
8141 NumOperands = 2;
8142 break;
8143 case ISD::AND: {
8144 // If the primary and result isn't used, don't bother using X86ISD::AND,
8145 // because a TEST instruction will be better.
8146 bool NonFlagUse = false;
8147 for (SDNode::use_iterator UI = Op.getNode()->use_begin(),
8148 UE = Op.getNode()->use_end(); UI != UE; ++UI) {
8149 SDNode *User = *UI;
8150 unsigned UOpNo = UI.getOperandNo();
8151 if (User->getOpcode() == ISD::TRUNCATE && User->hasOneUse()) {
8152 // Look pass truncate.
8153 UOpNo = User->use_begin().getOperandNo();
8154 User = *User->use_begin();
8155 }
8156
8157 if (User->getOpcode() != ISD::BRCOND &&
8158 User->getOpcode() != ISD::SETCC &&
8159 (User->getOpcode() != ISD::SELECT || UOpNo != 0)) {
8160 NonFlagUse = true;
8161 break;
8162 }
Dan Gohman076aee32009-03-04 19:44:21 +00008163 }
Bill Wendlingc25ccf82010-06-28 21:08:32 +00008164
8165 if (!NonFlagUse)
8166 break;
8167 }
8168 // FALL THROUGH
8169 case ISD::SUB:
8170 case ISD::OR:
8171 case ISD::XOR:
8172 // Due to the ISEL shortcoming noted above, be conservative if this op is
8173 // likely to be selected as part of a load-modify-store instruction.
8174 for (SDNode::use_iterator UI = Op.getNode()->use_begin(),
8175 UE = Op.getNode()->use_end(); UI != UE; ++UI)
8176 if (UI->getOpcode() == ISD::STORE)
8177 goto default_case;
8178
8179 // Otherwise use a regular EFLAGS-setting instruction.
8180 switch (Op.getNode()->getOpcode()) {
8181 default: llvm_unreachable("unexpected operator!");
8182 case ISD::SUB: Opcode = X86ISD::SUB; break;
8183 case ISD::OR: Opcode = X86ISD::OR; break;
8184 case ISD::XOR: Opcode = X86ISD::XOR; break;
8185 case ISD::AND: Opcode = X86ISD::AND; break;
8186 }
8187
8188 NumOperands = 2;
8189 break;
8190 case X86ISD::ADD:
8191 case X86ISD::SUB:
8192 case X86ISD::INC:
8193 case X86ISD::DEC:
8194 case X86ISD::OR:
8195 case X86ISD::XOR:
8196 case X86ISD::AND:
8197 return SDValue(Op.getNode(), 1);
8198 default:
8199 default_case:
8200 break;
Dan Gohman076aee32009-03-04 19:44:21 +00008201 }
8202
Bill Wendlingc25ccf82010-06-28 21:08:32 +00008203 if (Opcode == 0)
8204 // Emit a CMP with 0, which is the TEST pattern.
8205 return DAG.getNode(X86ISD::CMP, dl, MVT::i32, Op,
8206 DAG.getConstant(0, Op.getValueType()));
8207
8208 SDVTList VTs = DAG.getVTList(Op.getValueType(), MVT::i32);
8209 SmallVector<SDValue, 4> Ops;
8210 for (unsigned i = 0; i != NumOperands; ++i)
8211 Ops.push_back(Op.getOperand(i));
8212
8213 SDValue New = DAG.getNode(Opcode, dl, VTs, &Ops[0], NumOperands);
8214 DAG.ReplaceAllUsesWith(Op, New);
8215 return SDValue(New.getNode(), 1);
Dan Gohman076aee32009-03-04 19:44:21 +00008216}
8217
8218/// Emit nodes that will be selected as "cmp Op0,Op1", or something
8219/// equivalent.
Dan Gohman31125812009-03-07 01:58:32 +00008220SDValue X86TargetLowering::EmitCmp(SDValue Op0, SDValue Op1, unsigned X86CC,
Evan Cheng552f09a2010-04-26 19:06:11 +00008221 SelectionDAG &DAG) const {
Dan Gohman076aee32009-03-04 19:44:21 +00008222 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op1))
8223 if (C->getAPIntValue() == 0)
Evan Cheng552f09a2010-04-26 19:06:11 +00008224 return EmitTest(Op0, X86CC, DAG);
Dan Gohman076aee32009-03-04 19:44:21 +00008225
8226 DebugLoc dl = Op0.getDebugLoc();
Owen Anderson825b72b2009-08-11 20:47:22 +00008227 return DAG.getNode(X86ISD::CMP, dl, MVT::i32, Op0, Op1);
Dan Gohman076aee32009-03-04 19:44:21 +00008228}
8229
Evan Chengd40d03e2010-01-06 19:38:29 +00008230/// LowerToBT - Result of 'and' is compared against zero. Turn it into a BT node
8231/// if it's possible.
Evan Cheng5528e7b2010-04-21 01:47:12 +00008232SDValue X86TargetLowering::LowerToBT(SDValue And, ISD::CondCode CC,
8233 DebugLoc dl, SelectionDAG &DAG) const {
Evan Cheng2c755ba2010-02-27 07:36:59 +00008234 SDValue Op0 = And.getOperand(0);
8235 SDValue Op1 = And.getOperand(1);
8236 if (Op0.getOpcode() == ISD::TRUNCATE)
8237 Op0 = Op0.getOperand(0);
8238 if (Op1.getOpcode() == ISD::TRUNCATE)
8239 Op1 = Op1.getOperand(0);
8240
Evan Chengd40d03e2010-01-06 19:38:29 +00008241 SDValue LHS, RHS;
Dan Gohman6b13cbc2010-06-24 02:07:59 +00008242 if (Op1.getOpcode() == ISD::SHL)
8243 std::swap(Op0, Op1);
8244 if (Op0.getOpcode() == ISD::SHL) {
Evan Cheng2c755ba2010-02-27 07:36:59 +00008245 if (ConstantSDNode *And00C = dyn_cast<ConstantSDNode>(Op0.getOperand(0)))
8246 if (And00C->getZExtValue() == 1) {
Dan Gohman6b13cbc2010-06-24 02:07:59 +00008247 // If we looked past a truncate, check that it's only truncating away
8248 // known zeros.
8249 unsigned BitWidth = Op0.getValueSizeInBits();
8250 unsigned AndBitWidth = And.getValueSizeInBits();
8251 if (BitWidth > AndBitWidth) {
8252 APInt Mask = APInt::getAllOnesValue(BitWidth), Zeros, Ones;
8253 DAG.ComputeMaskedBits(Op0, Mask, Zeros, Ones);
8254 if (Zeros.countLeadingOnes() < BitWidth - AndBitWidth)
8255 return SDValue();
8256 }
Evan Cheng2c755ba2010-02-27 07:36:59 +00008257 LHS = Op1;
8258 RHS = Op0.getOperand(1);
Evan Chengd40d03e2010-01-06 19:38:29 +00008259 }
Evan Cheng2c755ba2010-02-27 07:36:59 +00008260 } else if (Op1.getOpcode() == ISD::Constant) {
8261 ConstantSDNode *AndRHS = cast<ConstantSDNode>(Op1);
Benjamin Kramerf238f502011-11-23 13:54:17 +00008262 uint64_t AndRHSVal = AndRHS->getZExtValue();
Evan Cheng2c755ba2010-02-27 07:36:59 +00008263 SDValue AndLHS = Op0;
Benjamin Kramerf238f502011-11-23 13:54:17 +00008264
8265 if (AndRHSVal == 1 && AndLHS.getOpcode() == ISD::SRL) {
Evan Chengd40d03e2010-01-06 19:38:29 +00008266 LHS = AndLHS.getOperand(0);
8267 RHS = AndLHS.getOperand(1);
Dan Gohmane5af2d32009-01-29 01:59:02 +00008268 }
Benjamin Kramerf238f502011-11-23 13:54:17 +00008269
8270 // Use BT if the immediate can't be encoded in a TEST instruction.
8271 if (!isUInt<32>(AndRHSVal) && isPowerOf2_64(AndRHSVal)) {
8272 LHS = AndLHS;
8273 RHS = DAG.getConstant(Log2_64_Ceil(AndRHSVal), LHS.getValueType());
8274 }
Evan Chengd40d03e2010-01-06 19:38:29 +00008275 }
Evan Cheng0488db92007-09-25 01:57:46 +00008276
Evan Chengd40d03e2010-01-06 19:38:29 +00008277 if (LHS.getNode()) {
Evan Chenge5b51ac2010-04-17 06:13:15 +00008278 // If LHS is i8, promote it to i32 with any_extend. There is no i8 BT
Evan Chengd40d03e2010-01-06 19:38:29 +00008279 // instruction. Since the shift amount is in-range-or-undefined, we know
Evan Chenge5b51ac2010-04-17 06:13:15 +00008280 // that doing a bittest on the i32 value is ok. We extend to i32 because
Evan Chengd40d03e2010-01-06 19:38:29 +00008281 // the encoding for the i16 version is larger than the i32 version.
Evan Chenge5b51ac2010-04-17 06:13:15 +00008282 // Also promote i16 to i32 for performance / code size reason.
8283 if (LHS.getValueType() == MVT::i8 ||
Evan Cheng2bce5f4b2010-04-28 08:30:49 +00008284 LHS.getValueType() == MVT::i16)
Evan Chengd40d03e2010-01-06 19:38:29 +00008285 LHS = DAG.getNode(ISD::ANY_EXTEND, dl, MVT::i32, LHS);
Chris Lattnere55484e2008-12-25 05:34:37 +00008286
Evan Chengd40d03e2010-01-06 19:38:29 +00008287 // If the operand types disagree, extend the shift amount to match. Since
8288 // BT ignores high bits (like shifts) we can use anyextend.
8289 if (LHS.getValueType() != RHS.getValueType())
8290 RHS = DAG.getNode(ISD::ANY_EXTEND, dl, LHS.getValueType(), RHS);
Dan Gohmane5af2d32009-01-29 01:59:02 +00008291
Evan Chengd40d03e2010-01-06 19:38:29 +00008292 SDValue BT = DAG.getNode(X86ISD::BT, dl, MVT::i32, LHS, RHS);
8293 unsigned Cond = CC == ISD::SETEQ ? X86::COND_AE : X86::COND_B;
8294 return DAG.getNode(X86ISD::SETCC, dl, MVT::i8,
8295 DAG.getConstant(Cond, MVT::i8), BT);
Chris Lattnere55484e2008-12-25 05:34:37 +00008296 }
8297
Evan Cheng54de3ea2010-01-05 06:52:31 +00008298 return SDValue();
8299}
8300
Dan Gohmand858e902010-04-17 15:26:15 +00008301SDValue X86TargetLowering::LowerSETCC(SDValue Op, SelectionDAG &DAG) const {
Duncan Sands28b77e92011-09-06 19:07:46 +00008302
8303 if (Op.getValueType().isVector()) return LowerVSETCC(Op, DAG);
8304
Evan Cheng54de3ea2010-01-05 06:52:31 +00008305 assert(Op.getValueType() == MVT::i8 && "SetCC type must be 8-bit integer");
8306 SDValue Op0 = Op.getOperand(0);
8307 SDValue Op1 = Op.getOperand(1);
8308 DebugLoc dl = Op.getDebugLoc();
8309 ISD::CondCode CC = cast<CondCodeSDNode>(Op.getOperand(2))->get();
8310
8311 // Optimize to BT if possible.
Evan Chengd40d03e2010-01-06 19:38:29 +00008312 // Lower (X & (1 << N)) == 0 to BT(X, N).
8313 // Lower ((X >>u N) & 1) != 0 to BT(X, N).
8314 // Lower ((X >>s N) & 1) != 0 to BT(X, N).
Andrew Trickf6c39412011-03-23 23:11:02 +00008315 if (Op0.getOpcode() == ISD::AND && Op0.hasOneUse() &&
Evan Chengd40d03e2010-01-06 19:38:29 +00008316 Op1.getOpcode() == ISD::Constant &&
Dan Gohmane368b462010-06-18 14:22:04 +00008317 cast<ConstantSDNode>(Op1)->isNullValue() &&
Evan Chengd40d03e2010-01-06 19:38:29 +00008318 (CC == ISD::SETEQ || CC == ISD::SETNE)) {
8319 SDValue NewSetCC = LowerToBT(Op0, CC, dl, DAG);
8320 if (NewSetCC.getNode())
8321 return NewSetCC;
8322 }
Evan Cheng54de3ea2010-01-05 06:52:31 +00008323
Chris Lattner481eebc2010-12-19 21:23:48 +00008324 // Look for X == 0, X == 1, X != 0, or X != 1. We can simplify some forms of
8325 // these.
8326 if (Op1.getOpcode() == ISD::Constant &&
Andrew Trickf6c39412011-03-23 23:11:02 +00008327 (cast<ConstantSDNode>(Op1)->getZExtValue() == 1 ||
Evan Cheng2c755ba2010-02-27 07:36:59 +00008328 cast<ConstantSDNode>(Op1)->isNullValue()) &&
8329 (CC == ISD::SETEQ || CC == ISD::SETNE)) {
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00008330
Chris Lattner481eebc2010-12-19 21:23:48 +00008331 // If the input is a setcc, then reuse the input setcc or use a new one with
8332 // the inverted condition.
8333 if (Op0.getOpcode() == X86ISD::SETCC) {
8334 X86::CondCode CCode = (X86::CondCode)Op0.getConstantOperandVal(0);
8335 bool Invert = (CC == ISD::SETNE) ^
8336 cast<ConstantSDNode>(Op1)->isNullValue();
8337 if (!Invert) return Op0;
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00008338
Evan Cheng2c755ba2010-02-27 07:36:59 +00008339 CCode = X86::GetOppositeBranchCondition(CCode);
Chris Lattner481eebc2010-12-19 21:23:48 +00008340 return DAG.getNode(X86ISD::SETCC, dl, MVT::i8,
8341 DAG.getConstant(CCode, MVT::i8), Op0.getOperand(1));
8342 }
Evan Cheng2c755ba2010-02-27 07:36:59 +00008343 }
8344
Evan Chenge5b51ac2010-04-17 06:13:15 +00008345 bool isFP = Op1.getValueType().isFloatingPoint();
Chris Lattnere55484e2008-12-25 05:34:37 +00008346 unsigned X86CC = TranslateX86CC(CC, isFP, Op0, Op1, DAG);
Dan Gohman1a492952009-10-20 16:22:37 +00008347 if (X86CC == X86::COND_INVALID)
8348 return SDValue();
Scott Michelfdc40a02009-02-17 22:15:04 +00008349
Chris Lattnerc19d1c32010-12-19 22:08:31 +00008350 SDValue EFLAGS = EmitCmp(Op0, Op1, X86CC, DAG);
Owen Anderson825b72b2009-08-11 20:47:22 +00008351 return DAG.getNode(X86ISD::SETCC, dl, MVT::i8,
Chris Lattnerc19d1c32010-12-19 22:08:31 +00008352 DAG.getConstant(X86CC, MVT::i8), EFLAGS);
Evan Cheng0488db92007-09-25 01:57:46 +00008353}
8354
Craig Topper89af15e2011-09-18 08:03:58 +00008355// Lower256IntVSETCC - Break a VSETCC 256-bit integer VSETCC into two new 128
Bruno Cardoso Lopes2ac81112011-08-22 20:31:04 +00008356// ones, and then concatenate the result back.
Craig Topper89af15e2011-09-18 08:03:58 +00008357static SDValue Lower256IntVSETCC(SDValue Op, SelectionDAG &DAG) {
Bruno Cardoso Lopes2ac81112011-08-22 20:31:04 +00008358 EVT VT = Op.getValueType();
8359
Duncan Sands28b77e92011-09-06 19:07:46 +00008360 assert(VT.getSizeInBits() == 256 && Op.getOpcode() == ISD::SETCC &&
Bruno Cardoso Lopes2ac81112011-08-22 20:31:04 +00008361 "Unsupported value type for operation");
8362
8363 int NumElems = VT.getVectorNumElements();
8364 DebugLoc dl = Op.getDebugLoc();
8365 SDValue CC = Op.getOperand(2);
8366 SDValue Idx0 = DAG.getConstant(0, MVT::i32);
8367 SDValue Idx1 = DAG.getConstant(NumElems/2, MVT::i32);
8368
8369 // Extract the LHS vectors
8370 SDValue LHS = Op.getOperand(0);
8371 SDValue LHS1 = Extract128BitVector(LHS, Idx0, DAG, dl);
8372 SDValue LHS2 = Extract128BitVector(LHS, Idx1, DAG, dl);
8373
8374 // Extract the RHS vectors
8375 SDValue RHS = Op.getOperand(1);
8376 SDValue RHS1 = Extract128BitVector(RHS, Idx0, DAG, dl);
8377 SDValue RHS2 = Extract128BitVector(RHS, Idx1, DAG, dl);
8378
8379 // Issue the operation on the smaller types and concatenate the result back
8380 MVT EltVT = VT.getVectorElementType().getSimpleVT();
8381 EVT NewVT = MVT::getVectorVT(EltVT, NumElems/2);
8382 return DAG.getNode(ISD::CONCAT_VECTORS, dl, VT,
8383 DAG.getNode(Op.getOpcode(), dl, NewVT, LHS1, RHS1, CC),
8384 DAG.getNode(Op.getOpcode(), dl, NewVT, LHS2, RHS2, CC));
8385}
8386
8387
Dan Gohmand858e902010-04-17 15:26:15 +00008388SDValue X86TargetLowering::LowerVSETCC(SDValue Op, SelectionDAG &DAG) const {
Dan Gohman475871a2008-07-27 21:46:04 +00008389 SDValue Cond;
8390 SDValue Op0 = Op.getOperand(0);
8391 SDValue Op1 = Op.getOperand(1);
8392 SDValue CC = Op.getOperand(2);
Owen Andersone50ed302009-08-10 22:56:29 +00008393 EVT VT = Op.getValueType();
Nate Begeman30a0de92008-07-17 16:51:19 +00008394 ISD::CondCode SetCCOpcode = cast<CondCodeSDNode>(CC)->get();
8395 bool isFP = Op.getOperand(1).getValueType().isFloatingPoint();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00008396 DebugLoc dl = Op.getDebugLoc();
Nate Begeman30a0de92008-07-17 16:51:19 +00008397
8398 if (isFP) {
8399 unsigned SSECC = 8;
Bruno Cardoso Lopes0f0e0a02011-08-09 00:46:57 +00008400 EVT EltVT = Op0.getValueType().getVectorElementType();
8401 assert(EltVT == MVT::f32 || EltVT == MVT::f64);
8402
8403 unsigned Opc = EltVT == MVT::f32 ? X86ISD::CMPPS : X86ISD::CMPPD;
Nate Begeman30a0de92008-07-17 16:51:19 +00008404 bool Swap = false;
8405
Bruno Cardoso Lopes8e03a822011-09-12 19:30:40 +00008406 // SSE Condition code mapping:
8407 // 0 - EQ
8408 // 1 - LT
8409 // 2 - LE
8410 // 3 - UNORD
8411 // 4 - NEQ
8412 // 5 - NLT
8413 // 6 - NLE
8414 // 7 - ORD
Nate Begeman30a0de92008-07-17 16:51:19 +00008415 switch (SetCCOpcode) {
8416 default: break;
Nate Begemanfb8ead02008-07-25 19:05:58 +00008417 case ISD::SETOEQ:
Nate Begeman30a0de92008-07-17 16:51:19 +00008418 case ISD::SETEQ: SSECC = 0; break;
Bruno Cardoso Lopes8e03a822011-09-12 19:30:40 +00008419 case ISD::SETOGT:
8420 case ISD::SETGT: Swap = true; // Fallthrough
Bruno Cardoso Lopes457d53d2011-09-12 21:24:07 +00008421 case ISD::SETLT:
8422 case ISD::SETOLT: SSECC = 1; break;
8423 case ISD::SETOGE:
8424 case ISD::SETGE: Swap = true; // Fallthrough
Nate Begeman30a0de92008-07-17 16:51:19 +00008425 case ISD::SETLE:
8426 case ISD::SETOLE: SSECC = 2; break;
8427 case ISD::SETUO: SSECC = 3; break;
Nate Begemanfb8ead02008-07-25 19:05:58 +00008428 case ISD::SETUNE:
Nate Begeman30a0de92008-07-17 16:51:19 +00008429 case ISD::SETNE: SSECC = 4; break;
8430 case ISD::SETULE: Swap = true;
8431 case ISD::SETUGE: SSECC = 5; break;
8432 case ISD::SETULT: Swap = true;
8433 case ISD::SETUGT: SSECC = 6; break;
8434 case ISD::SETO: SSECC = 7; break;
8435 }
8436 if (Swap)
8437 std::swap(Op0, Op1);
8438
Nate Begemanfb8ead02008-07-25 19:05:58 +00008439 // In the two special cases we can't handle, emit two comparisons.
Nate Begeman30a0de92008-07-17 16:51:19 +00008440 if (SSECC == 8) {
Nate Begemanfb8ead02008-07-25 19:05:58 +00008441 if (SetCCOpcode == ISD::SETUEQ) {
Dan Gohman475871a2008-07-27 21:46:04 +00008442 SDValue UNORD, EQ;
Bruno Cardoso Lopes809f17f2011-09-13 19:33:00 +00008443 UNORD = DAG.getNode(Opc, dl, VT, Op0, Op1, DAG.getConstant(3, MVT::i8));
8444 EQ = DAG.getNode(Opc, dl, VT, Op0, Op1, DAG.getConstant(0, MVT::i8));
Dale Johannesenace16102009-02-03 19:33:06 +00008445 return DAG.getNode(ISD::OR, dl, VT, UNORD, EQ);
Craig Topper0a150352011-11-09 08:06:13 +00008446 } else if (SetCCOpcode == ISD::SETONE) {
Dan Gohman475871a2008-07-27 21:46:04 +00008447 SDValue ORD, NEQ;
Bruno Cardoso Lopes809f17f2011-09-13 19:33:00 +00008448 ORD = DAG.getNode(Opc, dl, VT, Op0, Op1, DAG.getConstant(7, MVT::i8));
8449 NEQ = DAG.getNode(Opc, dl, VT, Op0, Op1, DAG.getConstant(4, MVT::i8));
Dale Johannesenace16102009-02-03 19:33:06 +00008450 return DAG.getNode(ISD::AND, dl, VT, ORD, NEQ);
Nate Begemanfb8ead02008-07-25 19:05:58 +00008451 }
Torok Edwinc23197a2009-07-14 16:55:14 +00008452 llvm_unreachable("Illegal FP comparison");
Nate Begeman30a0de92008-07-17 16:51:19 +00008453 }
8454 // Handle all other FP comparisons here.
Bruno Cardoso Lopes809f17f2011-09-13 19:33:00 +00008455 return DAG.getNode(Opc, dl, VT, Op0, Op1, DAG.getConstant(SSECC, MVT::i8));
Nate Begeman30a0de92008-07-17 16:51:19 +00008456 }
Scott Michelfdc40a02009-02-17 22:15:04 +00008457
Bruno Cardoso Lopes2ac81112011-08-22 20:31:04 +00008458 // Break 256-bit integer vector compare into smaller ones.
Craig Topper0a150352011-11-09 08:06:13 +00008459 if (VT.getSizeInBits() == 256 && !Subtarget->hasAVX2())
Craig Topper89af15e2011-09-18 08:03:58 +00008460 return Lower256IntVSETCC(Op, DAG);
Bruno Cardoso Lopes0f0e0a02011-08-09 00:46:57 +00008461
Nate Begeman30a0de92008-07-17 16:51:19 +00008462 // We are handling one of the integer comparisons here. Since SSE only has
8463 // GT and EQ comparisons for integer, swapping operands and multiple
8464 // operations may be required for some comparisons.
8465 unsigned Opc = 0, EQOpc = 0, GTOpc = 0;
8466 bool Swap = false, Invert = false, FlipSigns = false;
Scott Michelfdc40a02009-02-17 22:15:04 +00008467
Craig Topper0a150352011-11-09 08:06:13 +00008468 switch (VT.getVectorElementType().getSimpleVT().SimpleTy) {
Nate Begeman30a0de92008-07-17 16:51:19 +00008469 default: break;
Craig Topper0a150352011-11-09 08:06:13 +00008470 case MVT::i8: EQOpc = X86ISD::PCMPEQB; GTOpc = X86ISD::PCMPGTB; break;
8471 case MVT::i16: EQOpc = X86ISD::PCMPEQW; GTOpc = X86ISD::PCMPGTW; break;
8472 case MVT::i32: EQOpc = X86ISD::PCMPEQD; GTOpc = X86ISD::PCMPGTD; break;
8473 case MVT::i64: EQOpc = X86ISD::PCMPEQQ; GTOpc = X86ISD::PCMPGTQ; break;
Nate Begeman30a0de92008-07-17 16:51:19 +00008474 }
Scott Michelfdc40a02009-02-17 22:15:04 +00008475
Nate Begeman30a0de92008-07-17 16:51:19 +00008476 switch (SetCCOpcode) {
8477 default: break;
8478 case ISD::SETNE: Invert = true;
8479 case ISD::SETEQ: Opc = EQOpc; break;
8480 case ISD::SETLT: Swap = true;
8481 case ISD::SETGT: Opc = GTOpc; break;
8482 case ISD::SETGE: Swap = true;
8483 case ISD::SETLE: Opc = GTOpc; Invert = true; break;
8484 case ISD::SETULT: Swap = true;
8485 case ISD::SETUGT: Opc = GTOpc; FlipSigns = true; break;
8486 case ISD::SETUGE: Swap = true;
8487 case ISD::SETULE: Opc = GTOpc; FlipSigns = true; Invert = true; break;
8488 }
8489 if (Swap)
8490 std::swap(Op0, Op1);
Scott Michelfdc40a02009-02-17 22:15:04 +00008491
Eli Friedman7d3e2b72011-09-28 21:00:25 +00008492 // Check that the operation in question is available (most are plain SSE2,
8493 // but PCMPGTQ and PCMPEQQ have different requirements).
Craig Topperc0d82852011-11-22 00:44:41 +00008494 if (Opc == X86ISD::PCMPGTQ && !Subtarget->hasSSE42orAVX())
Eli Friedman7d3e2b72011-09-28 21:00:25 +00008495 return SDValue();
Craig Topperc0d82852011-11-22 00:44:41 +00008496 if (Opc == X86ISD::PCMPEQQ && !Subtarget->hasSSE41orAVX())
Eli Friedman7d3e2b72011-09-28 21:00:25 +00008497 return SDValue();
8498
Nate Begeman30a0de92008-07-17 16:51:19 +00008499 // Since SSE has no unsigned integer comparisons, we need to flip the sign
8500 // bits of the inputs before performing those operations.
8501 if (FlipSigns) {
Owen Andersone50ed302009-08-10 22:56:29 +00008502 EVT EltVT = VT.getVectorElementType();
Duncan Sandsb0d5cdd2009-02-01 18:06:53 +00008503 SDValue SignBit = DAG.getConstant(APInt::getSignBit(EltVT.getSizeInBits()),
8504 EltVT);
Dan Gohman475871a2008-07-27 21:46:04 +00008505 std::vector<SDValue> SignBits(VT.getVectorNumElements(), SignBit);
Evan Chenga87008d2009-02-25 22:49:59 +00008506 SDValue SignVec = DAG.getNode(ISD::BUILD_VECTOR, dl, VT, &SignBits[0],
8507 SignBits.size());
Dale Johannesenace16102009-02-03 19:33:06 +00008508 Op0 = DAG.getNode(ISD::XOR, dl, VT, Op0, SignVec);
8509 Op1 = DAG.getNode(ISD::XOR, dl, VT, Op1, SignVec);
Nate Begeman30a0de92008-07-17 16:51:19 +00008510 }
Scott Michelfdc40a02009-02-17 22:15:04 +00008511
Dale Johannesenace16102009-02-03 19:33:06 +00008512 SDValue Result = DAG.getNode(Opc, dl, VT, Op0, Op1);
Nate Begeman30a0de92008-07-17 16:51:19 +00008513
8514 // If the logical-not of the result is required, perform that now.
Bob Wilson4c245462009-01-22 17:39:32 +00008515 if (Invert)
Dale Johannesenace16102009-02-03 19:33:06 +00008516 Result = DAG.getNOT(dl, Result, VT);
Bob Wilson4c245462009-01-22 17:39:32 +00008517
Nate Begeman30a0de92008-07-17 16:51:19 +00008518 return Result;
8519}
Evan Cheng0488db92007-09-25 01:57:46 +00008520
Evan Cheng370e5342008-12-03 08:38:43 +00008521// isX86LogicalCmp - Return true if opcode is a X86 logical comparison.
Dan Gohman076aee32009-03-04 19:44:21 +00008522static bool isX86LogicalCmp(SDValue Op) {
8523 unsigned Opc = Op.getNode()->getOpcode();
8524 if (Opc == X86ISD::CMP || Opc == X86ISD::COMI || Opc == X86ISD::UCOMI)
8525 return true;
8526 if (Op.getResNo() == 1 &&
8527 (Opc == X86ISD::ADD ||
8528 Opc == X86ISD::SUB ||
Chris Lattner5b856542010-12-20 00:59:46 +00008529 Opc == X86ISD::ADC ||
8530 Opc == X86ISD::SBB ||
Dan Gohman076aee32009-03-04 19:44:21 +00008531 Opc == X86ISD::SMUL ||
8532 Opc == X86ISD::UMUL ||
8533 Opc == X86ISD::INC ||
Dan Gohmane220c4b2009-09-18 19:59:53 +00008534 Opc == X86ISD::DEC ||
8535 Opc == X86ISD::OR ||
8536 Opc == X86ISD::XOR ||
8537 Opc == X86ISD::AND))
Dan Gohman076aee32009-03-04 19:44:21 +00008538 return true;
8539
Chris Lattner9637d5b2010-12-05 07:49:54 +00008540 if (Op.getResNo() == 2 && Opc == X86ISD::UMUL)
8541 return true;
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00008542
Dan Gohman076aee32009-03-04 19:44:21 +00008543 return false;
Evan Cheng370e5342008-12-03 08:38:43 +00008544}
8545
Chris Lattnera2b56002010-12-05 01:23:24 +00008546static bool isZero(SDValue V) {
8547 ConstantSDNode *C = dyn_cast<ConstantSDNode>(V);
8548 return C && C->isNullValue();
8549}
8550
Chris Lattner96908b12010-12-05 02:00:51 +00008551static bool isAllOnes(SDValue V) {
8552 ConstantSDNode *C = dyn_cast<ConstantSDNode>(V);
8553 return C && C->isAllOnesValue();
8554}
8555
Dan Gohmand858e902010-04-17 15:26:15 +00008556SDValue X86TargetLowering::LowerSELECT(SDValue Op, SelectionDAG &DAG) const {
Evan Cheng734503b2006-09-11 02:19:56 +00008557 bool addTest = true;
Dan Gohman475871a2008-07-27 21:46:04 +00008558 SDValue Cond = Op.getOperand(0);
Chris Lattnera2b56002010-12-05 01:23:24 +00008559 SDValue Op1 = Op.getOperand(1);
8560 SDValue Op2 = Op.getOperand(2);
8561 DebugLoc DL = Op.getDebugLoc();
Dan Gohman475871a2008-07-27 21:46:04 +00008562 SDValue CC;
Evan Cheng9bba8942006-01-26 02:13:10 +00008563
Dan Gohman1a492952009-10-20 16:22:37 +00008564 if (Cond.getOpcode() == ISD::SETCC) {
8565 SDValue NewCond = LowerSETCC(Cond, DAG);
8566 if (NewCond.getNode())
8567 Cond = NewCond;
8568 }
Evan Cheng734503b2006-09-11 02:19:56 +00008569
Chris Lattnera2b56002010-12-05 01:23:24 +00008570 // (select (x == 0), -1, y) -> (sign_bit (x - 1)) | y
Chris Lattner96908b12010-12-05 02:00:51 +00008571 // (select (x == 0), y, -1) -> ~(sign_bit (x - 1)) | y
Chris Lattnera2b56002010-12-05 01:23:24 +00008572 // (select (x != 0), y, -1) -> (sign_bit (x - 1)) | y
Chris Lattner96908b12010-12-05 02:00:51 +00008573 // (select (x != 0), -1, y) -> ~(sign_bit (x - 1)) | y
Evan Cheng8c7ecaf2010-01-26 02:00:44 +00008574 if (Cond.getOpcode() == X86ISD::SETCC &&
Chris Lattner96908b12010-12-05 02:00:51 +00008575 Cond.getOperand(1).getOpcode() == X86ISD::CMP &&
8576 isZero(Cond.getOperand(1).getOperand(1))) {
Evan Cheng8c7ecaf2010-01-26 02:00:44 +00008577 SDValue Cmp = Cond.getOperand(1);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00008578
Chris Lattnera2b56002010-12-05 01:23:24 +00008579 unsigned CondCode =cast<ConstantSDNode>(Cond.getOperand(0))->getZExtValue();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00008580
8581 if ((isAllOnes(Op1) || isAllOnes(Op2)) &&
Chris Lattner96908b12010-12-05 02:00:51 +00008582 (CondCode == X86::COND_E || CondCode == X86::COND_NE)) {
8583 SDValue Y = isAllOnes(Op2) ? Op1 : Op2;
Chris Lattnera2b56002010-12-05 01:23:24 +00008584
8585 SDValue CmpOp0 = Cmp.getOperand(0);
8586 Cmp = DAG.getNode(X86ISD::CMP, DL, MVT::i32,
8587 CmpOp0, DAG.getConstant(1, CmpOp0.getValueType()));
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00008588
Chris Lattner96908b12010-12-05 02:00:51 +00008589 SDValue Res = // Res = 0 or -1.
Chris Lattnera2b56002010-12-05 01:23:24 +00008590 DAG.getNode(X86ISD::SETCC_CARRY, DL, Op.getValueType(),
8591 DAG.getConstant(X86::COND_B, MVT::i8), Cmp);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00008592
Chris Lattner96908b12010-12-05 02:00:51 +00008593 if (isAllOnes(Op1) != (CondCode == X86::COND_E))
8594 Res = DAG.getNOT(DL, Res, Res.getValueType());
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +00008595
Evan Cheng8c7ecaf2010-01-26 02:00:44 +00008596 ConstantSDNode *N2C = dyn_cast<ConstantSDNode>(Op2);
Chris Lattnera2b56002010-12-05 01:23:24 +00008597 if (N2C == 0 || !N2C->isNullValue())
8598 Res = DAG.getNode(ISD::OR, DL, Res.getValueType(), Res, Y);
8599 return Res;
Evan Cheng8c7ecaf2010-01-26 02:00:44 +00008600 }
8601 }
8602
Chris Lattnera2b56002010-12-05 01:23:24 +00008603 // Look past (and (setcc_carry (cmp ...)), 1).
Evan Chengad9c0a32009-12-15 00:53:42 +00008604 if (Cond.getOpcode() == ISD::AND &&
8605 Cond.getOperand(0).getOpcode() == X86ISD::SETCC_CARRY) {
8606 ConstantSDNode *C = dyn_cast<ConstantSDNode>(Cond.getOperand(1));
Michael J. Spencerec38de22010-10-10 22:04:20 +00008607 if (C && C->getAPIntValue() == 1)
Evan Chengad9c0a32009-12-15 00:53:42 +00008608 Cond = Cond.getOperand(0);
8609 }
8610
Evan Cheng3f41d662007-10-08 22:16:29 +00008611 // If condition flag is set by a X86ISD::CMP, then use it as the condition
8612 // setting operand in place of the X86ISD::SETCC.
Dan Gohman65fd6562011-11-03 21:49:52 +00008613 unsigned CondOpcode = Cond.getOpcode();
8614 if (CondOpcode == X86ISD::SETCC ||
8615 CondOpcode == X86ISD::SETCC_CARRY) {
Evan Cheng734503b2006-09-11 02:19:56 +00008616 CC = Cond.getOperand(0);
8617
Dan Gohman475871a2008-07-27 21:46:04 +00008618 SDValue Cmp = Cond.getOperand(1);
Evan Cheng734503b2006-09-11 02:19:56 +00008619 unsigned Opc = Cmp.getOpcode();
Owen Andersone50ed302009-08-10 22:56:29 +00008620 EVT VT = Op.getValueType();
Scott Michelfdc40a02009-02-17 22:15:04 +00008621
Evan Cheng3f41d662007-10-08 22:16:29 +00008622 bool IllegalFPCMov = false;
Duncan Sands83ec4b62008-06-06 12:08:01 +00008623 if (VT.isFloatingPoint() && !VT.isVector() &&
Chris Lattner78631162008-01-16 06:24:21 +00008624 !isScalarFPTypeInSSEReg(VT)) // FPStack?
Dan Gohman7810bfe2008-09-26 21:54:37 +00008625 IllegalFPCMov = !hasFPCMov(cast<ConstantSDNode>(CC)->getSExtValue());
Scott Michelfdc40a02009-02-17 22:15:04 +00008626
Chris Lattnerd1980a52009-03-12 06:52:53 +00008627 if ((isX86LogicalCmp(Cmp) && !IllegalFPCMov) ||
8628 Opc == X86ISD::BT) { // FIXME
Evan Cheng3f41d662007-10-08 22:16:29 +00008629 Cond = Cmp;
Evan Cheng0488db92007-09-25 01:57:46 +00008630 addTest = false;
8631 }
Dan Gohman65fd6562011-11-03 21:49:52 +00008632 } else if (CondOpcode == ISD::USUBO || CondOpcode == ISD::SSUBO ||
8633 CondOpcode == ISD::UADDO || CondOpcode == ISD::SADDO ||
8634 ((CondOpcode == ISD::UMULO || CondOpcode == ISD::SMULO) &&
8635 Cond.getOperand(0).getValueType() != MVT::i8)) {
8636 SDValue LHS = Cond.getOperand(0);
8637 SDValue RHS = Cond.getOperand(1);
8638 unsigned X86Opcode;
8639 unsigned X86Cond;
8640 SDVTList VTs;
8641 switch (CondOpcode) {
8642 case ISD::UADDO: X86Opcode = X86ISD::ADD; X86Cond = X86::COND_B; break;
8643 case ISD::SADDO: X86Opcode = X86ISD::ADD; X86Cond = X86::COND_O; break;
8644 case ISD::USUBO: X86Opcode = X86ISD::SUB; X86Cond = X86::COND_B; break;
8645 case ISD::SSUBO: X86Opcode = X86ISD::SUB; X86Cond = X86::COND_O; break;
8646 case ISD::UMULO: X86Opcode = X86ISD::UMUL; X86Cond = X86::COND_O; break;
8647 case ISD::SMULO: X86Opcode = X86ISD::SMUL; X86Cond = X86::COND_O; break;
8648 default: llvm_unreachable("unexpected overflowing operator");
8649 }
8650 if (CondOpcode == ISD::UMULO)
8651 VTs = DAG.getVTList(LHS.getValueType(), LHS.getValueType(),
8652 MVT::i32);
8653 else
8654 VTs = DAG.getVTList(LHS.getValueType(), MVT::i32);
8655
8656 SDValue X86Op = DAG.getNode(X86Opcode, DL, VTs, LHS, RHS);
8657
8658 if (CondOpcode == ISD::UMULO)
8659 Cond = X86Op.getValue(2);
8660 else
8661 Cond = X86Op.getValue(1);
8662
8663 CC = DAG.getConstant(X86Cond, MVT::i8);
8664 addTest = false;
Evan Cheng0488db92007-09-25 01:57:46 +00008665 }
8666
8667 if (addTest) {
Evan Chengd40d03e2010-01-06 19:38:29 +00008668 // Look pass the truncate.
8669 if (Cond.getOpcode() == ISD::TRUNCATE)
8670 Cond = Cond.getOperand(0);
8671
8672 // We know the result of AND is compared against zero. Try to match
8673 // it to BT.
Michael J. Spencerec38de22010-10-10 22:04:20 +00008674 if (Cond.getOpcode() == ISD::AND && Cond.hasOneUse()) {
Chris Lattnera2b56002010-12-05 01:23:24 +00008675 SDValue NewSetCC = LowerToBT(Cond, ISD::SETNE, DL, DAG);
Evan Chengd40d03e2010-01-06 19:38:29 +00008676 if (NewSetCC.getNode()) {
8677 CC = NewSetCC.getOperand(0);
8678 Cond = NewSetCC.getOperand(1);
8679 addTest = false;
8680 }
8681 }
8682 }
8683
8684 if (addTest) {
Owen Anderson825b72b2009-08-11 20:47:22 +00008685 CC = DAG.getConstant(X86::COND_NE, MVT::i8);
Evan Cheng552f09a2010-04-26 19:06:11 +00008686 Cond = EmitTest(Cond, X86::COND_NE, DAG);
Evan Cheng0488db92007-09-25 01:57:46 +00008687 }
8688
Benjamin Kramere915ff32010-12-22 23:09:28 +00008689 // a < b ? -1 : 0 -> RES = ~setcc_carry
8690 // a < b ? 0 : -1 -> RES = setcc_carry
8691 // a >= b ? -1 : 0 -> RES = setcc_carry
8692 // a >= b ? 0 : -1 -> RES = ~setcc_carry
8693 if (Cond.getOpcode() == X86ISD::CMP) {
8694 unsigned CondCode = cast<ConstantSDNode>(CC)->getZExtValue();
8695
8696 if ((CondCode == X86::COND_AE || CondCode == X86::COND_B) &&
8697 (isAllOnes(Op1) || isAllOnes(Op2)) && (isZero(Op1) || isZero(Op2))) {
8698 SDValue Res = DAG.getNode(X86ISD::SETCC_CARRY, DL, Op.getValueType(),
8699 DAG.getConstant(X86::COND_B, MVT::i8), Cond);
8700 if (isAllOnes(Op1) != (CondCode == X86::COND_B))
8701 return DAG.getNOT(DL, Res, Res.getValueType());
8702 return Res;
8703 }
8704 }
8705
Evan Cheng0488db92007-09-25 01:57:46 +00008706 // X86ISD::CMOV means set the result (which is operand 1) to the RHS if
8707 // condition is true.
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +00008708 SDVTList VTs = DAG.getVTList(Op.getValueType(), MVT::Glue);
Evan Cheng8c7ecaf2010-01-26 02:00:44 +00008709 SDValue Ops[] = { Op2, Op1, CC, Cond };
Chris Lattnera2b56002010-12-05 01:23:24 +00008710 return DAG.getNode(X86ISD::CMOV, DL, VTs, Ops, array_lengthof(Ops));
Evan Cheng0488db92007-09-25 01:57:46 +00008711}
8712
Evan Cheng370e5342008-12-03 08:38:43 +00008713// isAndOrOfSingleUseSetCCs - Return true if node is an ISD::AND or
8714// ISD::OR of two X86ISD::SETCC nodes each of which has no other use apart
8715// from the AND / OR.
8716static bool isAndOrOfSetCCs(SDValue Op, unsigned &Opc) {
8717 Opc = Op.getOpcode();
8718 if (Opc != ISD::OR && Opc != ISD::AND)
8719 return false;
8720 return (Op.getOperand(0).getOpcode() == X86ISD::SETCC &&
8721 Op.getOperand(0).hasOneUse() &&
8722 Op.getOperand(1).getOpcode() == X86ISD::SETCC &&
8723 Op.getOperand(1).hasOneUse());
8724}
8725
Evan Cheng961d6d42009-02-02 08:19:07 +00008726// isXor1OfSetCC - Return true if node is an ISD::XOR of a X86ISD::SETCC and
8727// 1 and that the SETCC node has a single use.
Evan Cheng67ad9db2009-02-02 08:07:36 +00008728static bool isXor1OfSetCC(SDValue Op) {
8729 if (Op.getOpcode() != ISD::XOR)
8730 return false;
8731 ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(Op.getOperand(1));
8732 if (N1C && N1C->getAPIntValue() == 1) {
8733 return Op.getOperand(0).getOpcode() == X86ISD::SETCC &&
8734 Op.getOperand(0).hasOneUse();
8735 }
8736 return false;
8737}
8738
Dan Gohmand858e902010-04-17 15:26:15 +00008739SDValue X86TargetLowering::LowerBRCOND(SDValue Op, SelectionDAG &DAG) const {
Evan Cheng734503b2006-09-11 02:19:56 +00008740 bool addTest = true;
Dan Gohman475871a2008-07-27 21:46:04 +00008741 SDValue Chain = Op.getOperand(0);
8742 SDValue Cond = Op.getOperand(1);
8743 SDValue Dest = Op.getOperand(2);
Dale Johannesen6f38cb62009-02-07 19:59:05 +00008744 DebugLoc dl = Op.getDebugLoc();
Dan Gohman475871a2008-07-27 21:46:04 +00008745 SDValue CC;
Dan Gohman65fd6562011-11-03 21:49:52 +00008746 bool Inverted = false;
Evan Cheng734503b2006-09-11 02:19:56 +00008747
Dan Gohman1a492952009-10-20 16:22:37 +00008748 if (Cond.getOpcode() == ISD::SETCC) {
Dan Gohman65fd6562011-11-03 21:49:52 +00008749 // Check for setcc([su]{add,sub,mul}o == 0).
8750 if (cast<CondCodeSDNode>(Cond.getOperand(2))->get() == ISD::SETEQ &&
8751 isa<ConstantSDNode>(Cond.getOperand(1)) &&
8752 cast<ConstantSDNode>(Cond.getOperand(1))->isNullValue() &&
8753 Cond.getOperand(0).getResNo() == 1 &&
8754 (Cond.getOperand(0).getOpcode() == ISD::SADDO ||
8755 Cond.getOperand(0).getOpcode() == ISD::UADDO ||
8756 Cond.getOperand(0).getOpcode() == ISD::SSUBO ||
8757 Cond.getOperand(0).getOpcode() == ISD::USUBO ||
8758 Cond.getOperand(0).getOpcode() == ISD::SMULO ||
8759 Cond.getOperand(0).getOpcode() == ISD::UMULO)) {
8760 Inverted = true;
8761 Cond = Cond.getOperand(0);
8762 } else {
8763 SDValue NewCond = LowerSETCC(Cond, DAG);
8764 if (NewCond.getNode())
8765 Cond = NewCond;
8766 }
Dan Gohman1a492952009-10-20 16:22:37 +00008767 }
Chris Lattnere55484e2008-12-25 05:34:37 +00008768#if 0
8769 // FIXME: LowerXALUO doesn't handle these!!
Bill Wendlingd350e022008-12-12 21:15:41 +00008770 else if (Cond.getOpcode() == X86ISD::ADD ||
8771 Cond.getOpcode() == X86ISD::SUB ||
8772 Cond.getOpcode() == X86ISD::SMUL ||
8773 Cond.getOpcode() == X86ISD::UMUL)
Bill Wendling74c37652008-12-09 22:08:41 +00008774 Cond = LowerXALUO(Cond, DAG);
Chris Lattnere55484e2008-12-25 05:34:37 +00008775#endif
Scott Michelfdc40a02009-02-17 22:15:04 +00008776
Evan Chengad9c0a32009-12-15 00:53:42 +00008777 // Look pass (and (setcc_carry (cmp ...)), 1).
8778 if (Cond.getOpcode() == ISD::AND &&
8779 Cond.getOperand(0).getOpcode() == X86ISD::SETCC_CARRY) {
8780 ConstantSDNode *C = dyn_cast<ConstantSDNode>(Cond.getOperand(1));
Michael J. Spencerec38de22010-10-10 22:04:20 +00008781 if (C && C->getAPIntValue() == 1)
Evan Chengad9c0a32009-12-15 00:53:42 +00008782 Cond = Cond.getOperand(0);
8783 }
8784
Evan Cheng3f41d662007-10-08 22:16:29 +00008785 // If condition flag is set by a X86ISD::CMP, then use it as the condition
8786 // setting operand in place of the X86ISD::SETCC.
Dan Gohman65fd6562011-11-03 21:49:52 +00008787 unsigned CondOpcode = Cond.getOpcode();
8788 if (CondOpcode == X86ISD::SETCC ||
8789 CondOpcode == X86ISD::SETCC_CARRY) {
Evan Cheng734503b2006-09-11 02:19:56 +00008790 CC = Cond.getOperand(0);
Evan Cheng0db9fe62006-04-25 20:13:52 +00008791
Dan Gohman475871a2008-07-27 21:46:04 +00008792 SDValue Cmp = Cond.getOperand(1);
Evan Cheng734503b2006-09-11 02:19:56 +00008793 unsigned Opc = Cmp.getOpcode();
Chris Lattnere55484e2008-12-25 05:34:37 +00008794 // FIXME: WHY THE SPECIAL CASING OF LogicalCmp??
Dan Gohman076aee32009-03-04 19:44:21 +00008795 if (isX86LogicalCmp(Cmp) || Opc == X86ISD::BT) {
Evan Cheng3f41d662007-10-08 22:16:29 +00008796 Cond = Cmp;
Evan Cheng0488db92007-09-25 01:57:46 +00008797 addTest = false;
Bill Wendling61edeb52008-12-02 01:06:39 +00008798 } else {
Evan Cheng370e5342008-12-03 08:38:43 +00008799 switch (cast<ConstantSDNode>(CC)->getZExtValue()) {
Bill Wendling0ea25cb2008-12-03 08:32:02 +00008800 default: break;
8801 case X86::COND_O:
Dan Gohman653456c2009-01-07 00:15:08 +00008802 case X86::COND_B:
Chris Lattnere55484e2008-12-25 05:34:37 +00008803 // These can only come from an arithmetic instruction with overflow,
8804 // e.g. SADDO, UADDO.
Bill Wendling0ea25cb2008-12-03 08:32:02 +00008805 Cond = Cond.getNode()->getOperand(1);
8806 addTest = false;
8807 break;
Bill Wendling61edeb52008-12-02 01:06:39 +00008808 }
Evan Cheng0488db92007-09-25 01:57:46 +00008809 }
Dan Gohman65fd6562011-11-03 21:49:52 +00008810 }
8811 CondOpcode = Cond.getOpcode();
8812 if (CondOpcode == ISD::UADDO || CondOpcode == ISD::SADDO ||
8813 CondOpcode == ISD::USUBO || CondOpcode == ISD::SSUBO ||
8814 ((CondOpcode == ISD::UMULO || CondOpcode == ISD::SMULO) &&
8815 Cond.getOperand(0).getValueType() != MVT::i8)) {
8816 SDValue LHS = Cond.getOperand(0);
8817 SDValue RHS = Cond.getOperand(1);
8818 unsigned X86Opcode;
8819 unsigned X86Cond;
8820 SDVTList VTs;
8821 switch (CondOpcode) {
8822 case ISD::UADDO: X86Opcode = X86ISD::ADD; X86Cond = X86::COND_B; break;
8823 case ISD::SADDO: X86Opcode = X86ISD::ADD; X86Cond = X86::COND_O; break;
8824 case ISD::USUBO: X86Opcode = X86ISD::SUB; X86Cond = X86::COND_B; break;
8825 case ISD::SSUBO: X86Opcode = X86ISD::SUB; X86Cond = X86::COND_O; break;
8826 case ISD::UMULO: X86Opcode = X86ISD::UMUL; X86Cond = X86::COND_O; break;
8827 case ISD::SMULO: X86Opcode = X86ISD::SMUL; X86Cond = X86::COND_O; break;
8828 default: llvm_unreachable("unexpected overflowing operator");
8829 }
8830 if (Inverted)
8831 X86Cond = X86::GetOppositeBranchCondition((X86::CondCode)X86Cond);
8832 if (CondOpcode == ISD::UMULO)
8833 VTs = DAG.getVTList(LHS.getValueType(), LHS.getValueType(),
8834 MVT::i32);
8835 else
8836 VTs = DAG.getVTList(LHS.getValueType(), MVT::i32);
8837
8838 SDValue X86Op = DAG.getNode(X86Opcode, dl, VTs, LHS, RHS);
8839
8840 if (CondOpcode == ISD::UMULO)
8841 Cond = X86Op.getValue(2);
8842 else
8843 Cond = X86Op.getValue(1);
8844
8845 CC = DAG.getConstant(X86Cond, MVT::i8);
8846 addTest = false;
Evan Cheng370e5342008-12-03 08:38:43 +00008847 } else {
8848 unsigned CondOpc;
8849 if (Cond.hasOneUse() && isAndOrOfSetCCs(Cond, CondOpc)) {
8850 SDValue Cmp = Cond.getOperand(0).getOperand(1);
Evan Cheng370e5342008-12-03 08:38:43 +00008851 if (CondOpc == ISD::OR) {
8852 // Also, recognize the pattern generated by an FCMP_UNE. We can emit
8853 // two branches instead of an explicit OR instruction with a
8854 // separate test.
8855 if (Cmp == Cond.getOperand(1).getOperand(1) &&
Dan Gohman076aee32009-03-04 19:44:21 +00008856 isX86LogicalCmp(Cmp)) {
Evan Cheng370e5342008-12-03 08:38:43 +00008857 CC = Cond.getOperand(0).getOperand(0);
Dale Johannesene4d209d2009-02-03 20:21:25 +00008858 Chain = DAG.getNode(X86ISD::BRCOND, dl, Op.getValueType(),
Evan Cheng370e5342008-12-03 08:38:43 +00008859 Chain, Dest, CC, Cmp);
8860 CC = Cond.getOperand(1).getOperand(0);
8861 Cond = Cmp;
8862 addTest = false;
8863 }
8864 } else { // ISD::AND
8865 // Also, recognize the pattern generated by an FCMP_OEQ. We can emit
8866 // two branches instead of an explicit AND instruction with a
8867 // separate test. However, we only do this if this block doesn't
8868 // have a fall-through edge, because this requires an explicit
8869 // jmp when the condition is false.
8870 if (Cmp == Cond.getOperand(1).getOperand(1) &&
Dan Gohman076aee32009-03-04 19:44:21 +00008871 isX86LogicalCmp(Cmp) &&
Evan Cheng370e5342008-12-03 08:38:43 +00008872 Op.getNode()->hasOneUse()) {
8873 X86::CondCode CCode =
8874 (X86::CondCode)Cond.getOperand(0).getConstantOperandVal(0);
8875 CCode = X86::GetOppositeBranchCondition(CCode);
Owen Anderson825b72b2009-08-11 20:47:22 +00008876 CC = DAG.getConstant(CCode, MVT::i8);
Dan Gohman027657d2010-06-18 15:30:29 +00008877 SDNode *User = *Op.getNode()->use_begin();
Evan Cheng370e5342008-12-03 08:38:43 +00008878 // Look for an unconditional branch following this conditional branch.
8879 // We need this because we need to reverse the successors in order
8880 // to implement FCMP_OEQ.
Dan Gohman027657d2010-06-18 15:30:29 +00008881 if (User->getOpcode() == ISD::BR) {
8882 SDValue FalseBB = User->getOperand(1);
8883 SDNode *NewBR =
8884 DAG.UpdateNodeOperands(User, User->getOperand(0), Dest);
Evan Cheng370e5342008-12-03 08:38:43 +00008885 assert(NewBR == User);
Nick Lewycky2a3ee5e2010-06-20 20:27:42 +00008886 (void)NewBR;
Evan Cheng370e5342008-12-03 08:38:43 +00008887 Dest = FalseBB;
Dan Gohman279c22e2008-10-21 03:29:32 +00008888
Dale Johannesene4d209d2009-02-03 20:21:25 +00008889 Chain = DAG.getNode(X86ISD::BRCOND, dl, Op.getValueType(),
Evan Cheng370e5342008-12-03 08:38:43 +00008890 Chain, Dest, CC, Cmp);
8891 X86::CondCode CCode =
8892 (X86::CondCode)Cond.getOperand(1).getConstantOperandVal(0);
8893 CCode = X86::GetOppositeBranchCondition(CCode);
Owen Anderson825b72b2009-08-11 20:47:22 +00008894 CC = DAG.getConstant(CCode, MVT::i8);
Evan Cheng370e5342008-12-03 08:38:43 +00008895 Cond = Cmp;
8896 addTest = false;
8897 }
8898 }
Dan Gohman279c22e2008-10-21 03:29:32 +00008899 }
Evan Cheng67ad9db2009-02-02 08:07:36 +00008900 } else if (Cond.hasOneUse() && isXor1OfSetCC(Cond)) {
8901 // Recognize for xorb (setcc), 1 patterns. The xor inverts the condition.
8902 // It should be transformed during dag combiner except when the condition
8903 // is set by a arithmetics with overflow node.
8904 X86::CondCode CCode =
8905 (X86::CondCode)Cond.getOperand(0).getConstantOperandVal(0);
8906 CCode = X86::GetOppositeBranchCondition(CCode);
Owen Anderson825b72b2009-08-11 20:47:22 +00008907 CC = DAG.getConstant(CCode, MVT::i8);
Evan Cheng67ad9db2009-02-02 08:07:36 +00008908 Cond = Cond.getOperand(0).getOperand(1);
8909 addTest = false;
Dan Gohman65fd6562011-11-03 21:49:52 +00008910 } else if (Cond.getOpcode() == ISD::SETCC &&
8911 cast<CondCodeSDNode>(Cond.getOperand(2))->get() == ISD::SETOEQ) {
8912 // For FCMP_OEQ, we can emit
8913 // two branches instead of an explicit AND instruction with a
8914 // separate test. However, we only do this if this block doesn't
8915 // have a fall-through edge, because this requires an explicit
8916 // jmp when the condition is false.
8917 if (Op.getNode()->hasOneUse()) {
8918 SDNode *User = *Op.getNode()->use_begin();
8919 // Look for an unconditional branch following this conditional branch.
8920 // We need this because we need to reverse the successors in order
8921 // to implement FCMP_OEQ.
8922 if (User->getOpcode() == ISD::BR) {
8923 SDValue FalseBB = User->getOperand(1);
8924 SDNode *NewBR =
8925 DAG.UpdateNodeOperands(User, User->getOperand(0), Dest);
8926 assert(NewBR == User);
8927 (void)NewBR;
8928 Dest = FalseBB;
8929
8930 SDValue Cmp = DAG.getNode(X86ISD::CMP, dl, MVT::i32,
8931 Cond.getOperand(0), Cond.getOperand(1));
8932 CC = DAG.getConstant(X86::COND_NE, MVT::i8);
8933 Chain = DAG.getNode(X86ISD::BRCOND, dl, Op.getValueType(),
8934 Chain, Dest, CC, Cmp);
8935 CC = DAG.getConstant(X86::COND_P, MVT::i8);
8936 Cond = Cmp;
8937 addTest = false;
8938 }
8939 }
8940 } else if (Cond.getOpcode() == ISD::SETCC &&
8941 cast<CondCodeSDNode>(Cond.getOperand(2))->get() == ISD::SETUNE) {
8942 // For FCMP_UNE, we can emit
8943 // two branches instead of an explicit AND instruction with a
8944 // separate test. However, we only do this if this block doesn't
8945 // have a fall-through edge, because this requires an explicit
8946 // jmp when the condition is false.
8947 if (Op.getNode()->hasOneUse()) {
8948 SDNode *User = *Op.getNode()->use_begin();
8949 // Look for an unconditional branch following this conditional branch.
8950 // We need this because we need to reverse the successors in order
8951 // to implement FCMP_UNE.
8952 if (User->getOpcode() == ISD::BR) {
8953 SDValue FalseBB = User->getOperand(1);
8954 SDNode *NewBR =
8955 DAG.UpdateNodeOperands(User, User->getOperand(0), Dest);
8956 assert(NewBR == User);
8957 (void)NewBR;
8958
8959 SDValue Cmp = DAG.getNode(X86ISD::CMP, dl, MVT::i32,
8960 Cond.getOperand(0), Cond.getOperand(1));
8961 CC = DAG.getConstant(X86::COND_NE, MVT::i8);
8962 Chain = DAG.getNode(X86ISD::BRCOND, dl, Op.getValueType(),
8963 Chain, Dest, CC, Cmp);
8964 CC = DAG.getConstant(X86::COND_NP, MVT::i8);
8965 Cond = Cmp;
8966 addTest = false;
8967 Dest = FalseBB;
8968 }
8969 }
Dan Gohman279c22e2008-10-21 03:29:32 +00008970 }
Evan Cheng0488db92007-09-25 01:57:46 +00008971 }
8972
8973 if (addTest) {
Evan Chengd40d03e2010-01-06 19:38:29 +00008974 // Look pass the truncate.
8975 if (Cond.getOpcode() == ISD::TRUNCATE)
8976 Cond = Cond.getOperand(0);
8977
8978 // We know the result of AND is compared against zero. Try to match
8979 // it to BT.
Michael J. Spencerec38de22010-10-10 22:04:20 +00008980 if (Cond.getOpcode() == ISD::AND && Cond.hasOneUse()) {
Evan Chengd40d03e2010-01-06 19:38:29 +00008981 SDValue NewSetCC = LowerToBT(Cond, ISD::SETNE, dl, DAG);
8982 if (NewSetCC.getNode()) {
8983 CC = NewSetCC.getOperand(0);
8984 Cond = NewSetCC.getOperand(1);
8985 addTest = false;
8986 }
8987 }
8988 }
8989
8990 if (addTest) {
Owen Anderson825b72b2009-08-11 20:47:22 +00008991 CC = DAG.getConstant(X86::COND_NE, MVT::i8);
Evan Cheng552f09a2010-04-26 19:06:11 +00008992 Cond = EmitTest(Cond, X86::COND_NE, DAG);
Evan Cheng0488db92007-09-25 01:57:46 +00008993 }
Dale Johannesene4d209d2009-02-03 20:21:25 +00008994 return DAG.getNode(X86ISD::BRCOND, dl, Op.getValueType(),
Dan Gohman279c22e2008-10-21 03:29:32 +00008995 Chain, Dest, CC, Cond);
Evan Cheng0488db92007-09-25 01:57:46 +00008996}
8997
Anton Korobeynikove060b532007-04-17 19:34:00 +00008998
8999// Lower dynamic stack allocation to _alloca call for Cygwin/Mingw targets.
9000// Calls to _alloca is needed to probe the stack when allocating more than 4k
9001// bytes in one go. Touching the stack at 4K increments is necessary to ensure
9002// that the guard pages used by the OS virtual memory manager are allocated in
9003// correct sequence.
Dan Gohman475871a2008-07-27 21:46:04 +00009004SDValue
9005X86TargetLowering::LowerDYNAMIC_STACKALLOC(SDValue Op,
Dan Gohmand858e902010-04-17 15:26:15 +00009006 SelectionDAG &DAG) const {
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009007 assert((Subtarget->isTargetCygMing() || Subtarget->isTargetWindows() ||
Nick Lewycky8a8d4792011-12-02 22:16:29 +00009008 getTargetMachine().Options.EnableSegmentedStacks) &&
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009009 "This should be used only on Windows targets or when segmented stacks "
Rafael Espindola96428ce2011-09-06 18:43:08 +00009010 "are being used");
9011 assert(!Subtarget->isTargetEnvMacho() && "Not implemented");
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009012 DebugLoc dl = Op.getDebugLoc();
Anton Korobeynikov096b4612008-06-11 20:16:42 +00009013
Anton Korobeynikov57fc00d2007-04-17 09:20:00 +00009014 // Get the inputs.
Dan Gohman475871a2008-07-27 21:46:04 +00009015 SDValue Chain = Op.getOperand(0);
9016 SDValue Size = Op.getOperand(1);
Anton Korobeynikov57fc00d2007-04-17 09:20:00 +00009017 // FIXME: Ensure alignment here
9018
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009019 bool Is64Bit = Subtarget->is64Bit();
9020 EVT SPTy = Is64Bit ? MVT::i64 : MVT::i32;
Anton Korobeynikov096b4612008-06-11 20:16:42 +00009021
Nick Lewycky8a8d4792011-12-02 22:16:29 +00009022 if (getTargetMachine().Options.EnableSegmentedStacks) {
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009023 MachineFunction &MF = DAG.getMachineFunction();
9024 MachineRegisterInfo &MRI = MF.getRegInfo();
Anton Korobeynikov57fc00d2007-04-17 09:20:00 +00009025
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009026 if (Is64Bit) {
9027 // The 64 bit implementation of segmented stacks needs to clobber both r10
Rafael Espindola96428ce2011-09-06 18:43:08 +00009028 // r11. This makes it impossible to use it along with nested parameters.
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009029 const Function *F = MF.getFunction();
Anton Korobeynikov4304bcc2007-07-05 20:36:08 +00009030
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009031 for (Function::const_arg_iterator I = F->arg_begin(), E = F->arg_end();
9032 I != E; I++)
9033 if (I->hasNestAttr())
9034 report_fatal_error("Cannot use segmented stacks with functions that "
9035 "have nested arguments.");
9036 }
Anton Korobeynikov4304bcc2007-07-05 20:36:08 +00009037
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009038 const TargetRegisterClass *AddrRegClass =
9039 getRegClassFor(Subtarget->is64Bit() ? MVT::i64:MVT::i32);
9040 unsigned Vreg = MRI.createVirtualRegister(AddrRegClass);
9041 Chain = DAG.getCopyToReg(Chain, dl, Vreg, Size);
9042 SDValue Value = DAG.getNode(X86ISD::SEG_ALLOCA, dl, SPTy, Chain,
9043 DAG.getRegister(Vreg, SPTy));
9044 SDValue Ops1[2] = { Value, Chain };
9045 return DAG.getMergeValues(Ops1, 2, dl);
9046 } else {
9047 SDValue Flag;
9048 unsigned Reg = (Subtarget->is64Bit() ? X86::RAX : X86::EAX);
Anton Korobeynikov096b4612008-06-11 20:16:42 +00009049
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009050 Chain = DAG.getCopyToReg(Chain, dl, Reg, Size, Flag);
9051 Flag = Chain.getValue(1);
9052 SDVTList NodeTys = DAG.getVTList(MVT::Other, MVT::Glue);
Anton Korobeynikov096b4612008-06-11 20:16:42 +00009053
Rafael Espindola151ab3e2011-08-30 19:47:04 +00009054 Chain = DAG.getNode(X86ISD::WIN_ALLOCA, dl, NodeTys, Chain, Flag);
9055 Flag = Chain.getValue(1);
9056
9057 Chain = DAG.getCopyFromReg(Chain, dl, X86StackPtr, SPTy).getValue(1);
9058
9059 SDValue Ops1[2] = { Chain.getValue(0), Chain };
9060 return DAG.getMergeValues(Ops1, 2, dl);
9061 }
Anton Korobeynikov57fc00d2007-04-17 09:20:00 +00009062}
9063
Dan Gohmand858e902010-04-17 15:26:15 +00009064SDValue X86TargetLowering::LowerVASTART(SDValue Op, SelectionDAG &DAG) const {
Dan Gohman1e93df62010-04-17 14:41:14 +00009065 MachineFunction &MF = DAG.getMachineFunction();
9066 X86MachineFunctionInfo *FuncInfo = MF.getInfo<X86MachineFunctionInfo>();
9067
Dan Gohman69de1932008-02-06 22:27:42 +00009068 const Value *SV = cast<SrcValueSDNode>(Op.getOperand(2))->getValue();
Chris Lattner8026a9d2010-09-21 17:50:43 +00009069 DebugLoc DL = Op.getDebugLoc();
Evan Cheng8b2794a2006-10-13 21:14:26 +00009070
Anton Korobeynikove7beda12010-10-03 22:52:07 +00009071 if (!Subtarget->is64Bit() || Subtarget->isTargetWin64()) {
Evan Cheng25ab6902006-09-08 06:48:29 +00009072 // vastart just stores the address of the VarArgsFrameIndex slot into the
9073 // memory location argument.
Dan Gohman1e93df62010-04-17 14:41:14 +00009074 SDValue FR = DAG.getFrameIndex(FuncInfo->getVarArgsFrameIndex(),
9075 getPointerTy());
Chris Lattner8026a9d2010-09-21 17:50:43 +00009076 return DAG.getStore(Op.getOperand(0), DL, FR, Op.getOperand(1),
9077 MachinePointerInfo(SV), false, false, 0);
Evan Cheng25ab6902006-09-08 06:48:29 +00009078 }
9079
9080 // __va_list_tag:
9081 // gp_offset (0 - 6 * 8)
9082 // fp_offset (48 - 48 + 8 * 16)
9083 // overflow_arg_area (point to parameters coming in memory).
9084 // reg_save_area
Dan Gohman475871a2008-07-27 21:46:04 +00009085 SmallVector<SDValue, 8> MemOps;
9086 SDValue FIN = Op.getOperand(1);
Evan Cheng25ab6902006-09-08 06:48:29 +00009087 // Store gp_offset
Chris Lattner8026a9d2010-09-21 17:50:43 +00009088 SDValue Store = DAG.getStore(Op.getOperand(0), DL,
Dan Gohman1e93df62010-04-17 14:41:14 +00009089 DAG.getConstant(FuncInfo->getVarArgsGPOffset(),
9090 MVT::i32),
Chris Lattner8026a9d2010-09-21 17:50:43 +00009091 FIN, MachinePointerInfo(SV), false, false, 0);
Evan Cheng25ab6902006-09-08 06:48:29 +00009092 MemOps.push_back(Store);
9093
9094 // Store fp_offset
Chris Lattner8026a9d2010-09-21 17:50:43 +00009095 FIN = DAG.getNode(ISD::ADD, DL, getPointerTy(),
Dale Johannesene4d209d2009-02-03 20:21:25 +00009096 FIN, DAG.getIntPtrConstant(4));
Chris Lattner8026a9d2010-09-21 17:50:43 +00009097 Store = DAG.getStore(Op.getOperand(0), DL,
Dan Gohman1e93df62010-04-17 14:41:14 +00009098 DAG.getConstant(FuncInfo->getVarArgsFPOffset(),
9099 MVT::i32),
Chris Lattner8026a9d2010-09-21 17:50:43 +00009100 FIN, MachinePointerInfo(SV, 4), false, false, 0);
Evan Cheng25ab6902006-09-08 06:48:29 +00009101 MemOps.push_back(Store);
9102
9103 // Store ptr to overflow_arg_area
Chris Lattner8026a9d2010-09-21 17:50:43 +00009104 FIN = DAG.getNode(ISD::ADD, DL, getPointerTy(),
Dale Johannesene4d209d2009-02-03 20:21:25 +00009105 FIN, DAG.getIntPtrConstant(4));
Dan Gohman1e93df62010-04-17 14:41:14 +00009106 SDValue OVFIN = DAG.getFrameIndex(FuncInfo->getVarArgsFrameIndex(),
9107 getPointerTy());
Chris Lattner8026a9d2010-09-21 17:50:43 +00009108 Store = DAG.getStore(Op.getOperand(0), DL, OVFIN, FIN,
9109 MachinePointerInfo(SV, 8),
David Greene67c9d422010-02-15 16:53:33 +00009110 false, false, 0);
Evan Cheng25ab6902006-09-08 06:48:29 +00009111 MemOps.push_back(Store);
9112
9113 // Store ptr to reg_save_area.
Chris Lattner8026a9d2010-09-21 17:50:43 +00009114 FIN = DAG.getNode(ISD::ADD, DL, getPointerTy(),
Dale Johannesene4d209d2009-02-03 20:21:25 +00009115 FIN, DAG.getIntPtrConstant(8));
Dan Gohman1e93df62010-04-17 14:41:14 +00009116 SDValue RSFIN = DAG.getFrameIndex(FuncInfo->getRegSaveFrameIndex(),
9117 getPointerTy());
Chris Lattner8026a9d2010-09-21 17:50:43 +00009118 Store = DAG.getStore(Op.getOperand(0), DL, RSFIN, FIN,
9119 MachinePointerInfo(SV, 16), false, false, 0);
Evan Cheng25ab6902006-09-08 06:48:29 +00009120 MemOps.push_back(Store);
Chris Lattner8026a9d2010-09-21 17:50:43 +00009121 return DAG.getNode(ISD::TokenFactor, DL, MVT::Other,
Dale Johannesene4d209d2009-02-03 20:21:25 +00009122 &MemOps[0], MemOps.size());
Evan Cheng0db9fe62006-04-25 20:13:52 +00009123}
9124
Dan Gohmand858e902010-04-17 15:26:15 +00009125SDValue X86TargetLowering::LowerVAARG(SDValue Op, SelectionDAG &DAG) const {
Dan Gohman320afb82010-10-12 18:00:49 +00009126 assert(Subtarget->is64Bit() &&
9127 "LowerVAARG only handles 64-bit va_arg!");
9128 assert((Subtarget->isTargetLinux() ||
9129 Subtarget->isTargetDarwin()) &&
9130 "Unhandled target in LowerVAARG");
9131 assert(Op.getNode()->getNumOperands() == 4);
9132 SDValue Chain = Op.getOperand(0);
9133 SDValue SrcPtr = Op.getOperand(1);
9134 const Value *SV = cast<SrcValueSDNode>(Op.getOperand(2))->getValue();
9135 unsigned Align = Op.getConstantOperandVal(3);
9136 DebugLoc dl = Op.getDebugLoc();
Dan Gohman9018e832008-05-10 01:26:14 +00009137
Dan Gohman320afb82010-10-12 18:00:49 +00009138 EVT ArgVT = Op.getNode()->getValueType(0);
Chris Lattnerdb125cf2011-07-18 04:54:35 +00009139 Type *ArgTy = ArgVT.getTypeForEVT(*DAG.getContext());
Dan Gohman320afb82010-10-12 18:00:49 +00009140 uint32_t ArgSize = getTargetData()->getTypeAllocSize(ArgTy);
9141 uint8_t ArgMode;
9142
9143 // Decide which area this value should be read from.
9144 // TODO: Implement the AMD64 ABI in its entirety. This simple
9145 // selection mechanism works only for the basic types.
9146 if (ArgVT == MVT::f80) {
9147 llvm_unreachable("va_arg for f80 not yet implemented");
9148 } else if (ArgVT.isFloatingPoint() && ArgSize <= 16 /*bytes*/) {
9149 ArgMode = 2; // Argument passed in XMM register. Use fp_offset.
9150 } else if (ArgVT.isInteger() && ArgSize <= 32 /*bytes*/) {
9151 ArgMode = 1; // Argument passed in GPR64 register(s). Use gp_offset.
9152 } else {
9153 llvm_unreachable("Unhandled argument type in LowerVAARG");
9154 }
9155
9156 if (ArgMode == 2) {
9157 // Sanity Check: Make sure using fp_offset makes sense.
Nick Lewycky8a8d4792011-12-02 22:16:29 +00009158 assert(!getTargetMachine().Options.UseSoftFloat &&
Eric Christopher52b45052010-10-12 19:44:17 +00009159 !(DAG.getMachineFunction()
9160 .getFunction()->hasFnAttr(Attribute::NoImplicitFloat)) &&
Nate Begeman2ea8ee72010-12-10 00:26:57 +00009161 Subtarget->hasXMM());
Dan Gohman320afb82010-10-12 18:00:49 +00009162 }
9163
9164 // Insert VAARG_64 node into the DAG
9165 // VAARG_64 returns two values: Variable Argument Address, Chain
9166 SmallVector<SDValue, 11> InstOps;
9167 InstOps.push_back(Chain);
9168 InstOps.push_back(SrcPtr);
9169 InstOps.push_back(DAG.getConstant(ArgSize, MVT::i32));
9170 InstOps.push_back(DAG.getConstant(ArgMode, MVT::i8));
9171 InstOps.push_back(DAG.getConstant(Align, MVT::i32));
9172 SDVTList VTs = DAG.getVTList(getPointerTy(), MVT::Other);
9173 SDValue VAARG = DAG.getMemIntrinsicNode(X86ISD::VAARG_64, dl,
9174 VTs, &InstOps[0], InstOps.size(),
9175 MVT::i64,
9176 MachinePointerInfo(SV),
9177 /*Align=*/0,
9178 /*Volatile=*/false,
9179 /*ReadMem=*/true,
9180 /*WriteMem=*/true);
9181 Chain = VAARG.getValue(1);
9182
9183 // Load the next argument and return it
9184 return DAG.getLoad(ArgVT, dl,
9185 Chain,
9186 VAARG,
9187 MachinePointerInfo(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00009188 false, false, false, 0);
Dan Gohman9018e832008-05-10 01:26:14 +00009189}
9190
Dan Gohmand858e902010-04-17 15:26:15 +00009191SDValue X86TargetLowering::LowerVACOPY(SDValue Op, SelectionDAG &DAG) const {
Evan Chengae642192007-03-02 23:16:35 +00009192 // X86-64 va_list is a struct { i32, i32, i8*, i8* }.
Dan Gohman28269132008-04-18 20:55:41 +00009193 assert(Subtarget->is64Bit() && "This code only handles 64-bit va_copy!");
Dan Gohman475871a2008-07-27 21:46:04 +00009194 SDValue Chain = Op.getOperand(0);
9195 SDValue DstPtr = Op.getOperand(1);
9196 SDValue SrcPtr = Op.getOperand(2);
Dan Gohman69de1932008-02-06 22:27:42 +00009197 const Value *DstSV = cast<SrcValueSDNode>(Op.getOperand(3))->getValue();
9198 const Value *SrcSV = cast<SrcValueSDNode>(Op.getOperand(4))->getValue();
Chris Lattnere72f2022010-09-21 05:40:29 +00009199 DebugLoc DL = Op.getDebugLoc();
Evan Chengae642192007-03-02 23:16:35 +00009200
Chris Lattnere72f2022010-09-21 05:40:29 +00009201 return DAG.getMemcpy(Chain, DL, DstPtr, SrcPtr,
Mon P Wang20adc9d2010-04-04 03:10:48 +00009202 DAG.getIntPtrConstant(24), 8, /*isVolatile*/false,
Michael J. Spencerec38de22010-10-10 22:04:20 +00009203 false,
Chris Lattnere72f2022010-09-21 05:40:29 +00009204 MachinePointerInfo(DstSV), MachinePointerInfo(SrcSV));
Evan Chengae642192007-03-02 23:16:35 +00009205}
9206
Dan Gohman475871a2008-07-27 21:46:04 +00009207SDValue
Dan Gohmand858e902010-04-17 15:26:15 +00009208X86TargetLowering::LowerINTRINSIC_WO_CHAIN(SDValue Op, SelectionDAG &DAG) const {
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009209 DebugLoc dl = Op.getDebugLoc();
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00009210 unsigned IntNo = cast<ConstantSDNode>(Op.getOperand(0))->getZExtValue();
Evan Cheng0db9fe62006-04-25 20:13:52 +00009211 switch (IntNo) {
Dan Gohman475871a2008-07-27 21:46:04 +00009212 default: return SDValue(); // Don't custom lower most intrinsics.
Evan Cheng5759f972008-05-04 09:15:50 +00009213 // Comparison intrinsics.
Evan Cheng0db9fe62006-04-25 20:13:52 +00009214 case Intrinsic::x86_sse_comieq_ss:
9215 case Intrinsic::x86_sse_comilt_ss:
9216 case Intrinsic::x86_sse_comile_ss:
9217 case Intrinsic::x86_sse_comigt_ss:
9218 case Intrinsic::x86_sse_comige_ss:
9219 case Intrinsic::x86_sse_comineq_ss:
9220 case Intrinsic::x86_sse_ucomieq_ss:
9221 case Intrinsic::x86_sse_ucomilt_ss:
9222 case Intrinsic::x86_sse_ucomile_ss:
9223 case Intrinsic::x86_sse_ucomigt_ss:
9224 case Intrinsic::x86_sse_ucomige_ss:
9225 case Intrinsic::x86_sse_ucomineq_ss:
9226 case Intrinsic::x86_sse2_comieq_sd:
9227 case Intrinsic::x86_sse2_comilt_sd:
9228 case Intrinsic::x86_sse2_comile_sd:
9229 case Intrinsic::x86_sse2_comigt_sd:
9230 case Intrinsic::x86_sse2_comige_sd:
9231 case Intrinsic::x86_sse2_comineq_sd:
9232 case Intrinsic::x86_sse2_ucomieq_sd:
9233 case Intrinsic::x86_sse2_ucomilt_sd:
9234 case Intrinsic::x86_sse2_ucomile_sd:
9235 case Intrinsic::x86_sse2_ucomigt_sd:
9236 case Intrinsic::x86_sse2_ucomige_sd:
9237 case Intrinsic::x86_sse2_ucomineq_sd: {
9238 unsigned Opc = 0;
9239 ISD::CondCode CC = ISD::SETCC_INVALID;
9240 switch (IntNo) {
9241 default: break;
Anton Korobeynikov12c49af2006-11-21 00:01:06 +00009242 case Intrinsic::x86_sse_comieq_ss:
9243 case Intrinsic::x86_sse2_comieq_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009244 Opc = X86ISD::COMI;
9245 CC = ISD::SETEQ;
9246 break;
Evan Cheng6be2c582006-04-05 23:38:46 +00009247 case Intrinsic::x86_sse_comilt_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009248 case Intrinsic::x86_sse2_comilt_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009249 Opc = X86ISD::COMI;
9250 CC = ISD::SETLT;
9251 break;
9252 case Intrinsic::x86_sse_comile_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009253 case Intrinsic::x86_sse2_comile_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009254 Opc = X86ISD::COMI;
9255 CC = ISD::SETLE;
9256 break;
9257 case Intrinsic::x86_sse_comigt_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009258 case Intrinsic::x86_sse2_comigt_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009259 Opc = X86ISD::COMI;
9260 CC = ISD::SETGT;
9261 break;
9262 case Intrinsic::x86_sse_comige_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009263 case Intrinsic::x86_sse2_comige_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009264 Opc = X86ISD::COMI;
9265 CC = ISD::SETGE;
9266 break;
9267 case Intrinsic::x86_sse_comineq_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009268 case Intrinsic::x86_sse2_comineq_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009269 Opc = X86ISD::COMI;
9270 CC = ISD::SETNE;
9271 break;
9272 case Intrinsic::x86_sse_ucomieq_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009273 case Intrinsic::x86_sse2_ucomieq_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009274 Opc = X86ISD::UCOMI;
9275 CC = ISD::SETEQ;
9276 break;
9277 case Intrinsic::x86_sse_ucomilt_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009278 case Intrinsic::x86_sse2_ucomilt_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009279 Opc = X86ISD::UCOMI;
9280 CC = ISD::SETLT;
9281 break;
9282 case Intrinsic::x86_sse_ucomile_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009283 case Intrinsic::x86_sse2_ucomile_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009284 Opc = X86ISD::UCOMI;
9285 CC = ISD::SETLE;
9286 break;
9287 case Intrinsic::x86_sse_ucomigt_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009288 case Intrinsic::x86_sse2_ucomigt_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009289 Opc = X86ISD::UCOMI;
9290 CC = ISD::SETGT;
9291 break;
9292 case Intrinsic::x86_sse_ucomige_ss:
Evan Cheng6be2c582006-04-05 23:38:46 +00009293 case Intrinsic::x86_sse2_ucomige_sd:
Evan Cheng0db9fe62006-04-25 20:13:52 +00009294 Opc = X86ISD::UCOMI;
9295 CC = ISD::SETGE;
9296 break;
9297 case Intrinsic::x86_sse_ucomineq_ss:
9298 case Intrinsic::x86_sse2_ucomineq_sd:
9299 Opc = X86ISD::UCOMI;
9300 CC = ISD::SETNE;
9301 break;
Evan Cheng6be2c582006-04-05 23:38:46 +00009302 }
Evan Cheng734503b2006-09-11 02:19:56 +00009303
Dan Gohman475871a2008-07-27 21:46:04 +00009304 SDValue LHS = Op.getOperand(1);
9305 SDValue RHS = Op.getOperand(2);
Chris Lattner1c39d4c2008-12-24 23:53:05 +00009306 unsigned X86CC = TranslateX86CC(CC, true, LHS, RHS, DAG);
Dan Gohman1a492952009-10-20 16:22:37 +00009307 assert(X86CC != X86::COND_INVALID && "Unexpected illegal condition!");
Owen Anderson825b72b2009-08-11 20:47:22 +00009308 SDValue Cond = DAG.getNode(Opc, dl, MVT::i32, LHS, RHS);
9309 SDValue SetCC = DAG.getNode(X86ISD::SETCC, dl, MVT::i8,
9310 DAG.getConstant(X86CC, MVT::i8), Cond);
9311 return DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i32, SetCC);
Evan Cheng6be2c582006-04-05 23:38:46 +00009312 }
Duncan Sands04aa4ae2011-09-23 16:10:22 +00009313 // Arithmetic intrinsics.
9314 case Intrinsic::x86_sse3_hadd_ps:
9315 case Intrinsic::x86_sse3_hadd_pd:
9316 case Intrinsic::x86_avx_hadd_ps_256:
9317 case Intrinsic::x86_avx_hadd_pd_256:
9318 return DAG.getNode(X86ISD::FHADD, dl, Op.getValueType(),
9319 Op.getOperand(1), Op.getOperand(2));
9320 case Intrinsic::x86_sse3_hsub_ps:
9321 case Intrinsic::x86_sse3_hsub_pd:
9322 case Intrinsic::x86_avx_hsub_ps_256:
9323 case Intrinsic::x86_avx_hsub_pd_256:
9324 return DAG.getNode(X86ISD::FHSUB, dl, Op.getValueType(),
9325 Op.getOperand(1), Op.getOperand(2));
Craig Topper98fc7292011-11-19 17:46:46 +00009326 case Intrinsic::x86_avx2_psllv_d:
9327 case Intrinsic::x86_avx2_psllv_q:
9328 case Intrinsic::x86_avx2_psllv_d_256:
9329 case Intrinsic::x86_avx2_psllv_q_256:
9330 return DAG.getNode(ISD::SHL, dl, Op.getValueType(),
9331 Op.getOperand(1), Op.getOperand(2));
9332 case Intrinsic::x86_avx2_psrlv_d:
9333 case Intrinsic::x86_avx2_psrlv_q:
9334 case Intrinsic::x86_avx2_psrlv_d_256:
9335 case Intrinsic::x86_avx2_psrlv_q_256:
9336 return DAG.getNode(ISD::SRL, dl, Op.getValueType(),
9337 Op.getOperand(1), Op.getOperand(2));
9338 case Intrinsic::x86_avx2_psrav_d:
9339 case Intrinsic::x86_avx2_psrav_d_256:
9340 return DAG.getNode(ISD::SRA, dl, Op.getValueType(),
9341 Op.getOperand(1), Op.getOperand(2));
9342
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009343 // ptest and testp intrinsics. The intrinsic these come from are designed to
9344 // return an integer value, not just an instruction so lower it to the ptest
9345 // or testp pattern and a setcc for the result.
Eric Christopher71c67532009-07-29 00:28:05 +00009346 case Intrinsic::x86_sse41_ptestz:
9347 case Intrinsic::x86_sse41_ptestc:
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009348 case Intrinsic::x86_sse41_ptestnzc:
9349 case Intrinsic::x86_avx_ptestz_256:
9350 case Intrinsic::x86_avx_ptestc_256:
9351 case Intrinsic::x86_avx_ptestnzc_256:
9352 case Intrinsic::x86_avx_vtestz_ps:
9353 case Intrinsic::x86_avx_vtestc_ps:
9354 case Intrinsic::x86_avx_vtestnzc_ps:
9355 case Intrinsic::x86_avx_vtestz_pd:
9356 case Intrinsic::x86_avx_vtestc_pd:
9357 case Intrinsic::x86_avx_vtestnzc_pd:
9358 case Intrinsic::x86_avx_vtestz_ps_256:
9359 case Intrinsic::x86_avx_vtestc_ps_256:
9360 case Intrinsic::x86_avx_vtestnzc_ps_256:
9361 case Intrinsic::x86_avx_vtestz_pd_256:
9362 case Intrinsic::x86_avx_vtestc_pd_256:
9363 case Intrinsic::x86_avx_vtestnzc_pd_256: {
9364 bool IsTestPacked = false;
Eric Christopher71c67532009-07-29 00:28:05 +00009365 unsigned X86CC = 0;
9366 switch (IntNo) {
Eric Christopher978dae32009-07-29 18:14:04 +00009367 default: llvm_unreachable("Bad fallthrough in Intrinsic lowering.");
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009368 case Intrinsic::x86_avx_vtestz_ps:
9369 case Intrinsic::x86_avx_vtestz_pd:
9370 case Intrinsic::x86_avx_vtestz_ps_256:
9371 case Intrinsic::x86_avx_vtestz_pd_256:
9372 IsTestPacked = true; // Fallthrough
Eric Christopher71c67532009-07-29 00:28:05 +00009373 case Intrinsic::x86_sse41_ptestz:
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009374 case Intrinsic::x86_avx_ptestz_256:
Eric Christopher71c67532009-07-29 00:28:05 +00009375 // ZF = 1
9376 X86CC = X86::COND_E;
9377 break;
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009378 case Intrinsic::x86_avx_vtestc_ps:
9379 case Intrinsic::x86_avx_vtestc_pd:
9380 case Intrinsic::x86_avx_vtestc_ps_256:
9381 case Intrinsic::x86_avx_vtestc_pd_256:
9382 IsTestPacked = true; // Fallthrough
Eric Christopher71c67532009-07-29 00:28:05 +00009383 case Intrinsic::x86_sse41_ptestc:
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009384 case Intrinsic::x86_avx_ptestc_256:
Eric Christopher71c67532009-07-29 00:28:05 +00009385 // CF = 1
9386 X86CC = X86::COND_B;
9387 break;
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009388 case Intrinsic::x86_avx_vtestnzc_ps:
9389 case Intrinsic::x86_avx_vtestnzc_pd:
9390 case Intrinsic::x86_avx_vtestnzc_ps_256:
9391 case Intrinsic::x86_avx_vtestnzc_pd_256:
9392 IsTestPacked = true; // Fallthrough
Eric Christopherfd179292009-08-27 18:07:15 +00009393 case Intrinsic::x86_sse41_ptestnzc:
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009394 case Intrinsic::x86_avx_ptestnzc_256:
Eric Christopher71c67532009-07-29 00:28:05 +00009395 // ZF and CF = 0
9396 X86CC = X86::COND_A;
9397 break;
9398 }
Eric Christopherfd179292009-08-27 18:07:15 +00009399
Eric Christopher71c67532009-07-29 00:28:05 +00009400 SDValue LHS = Op.getOperand(1);
9401 SDValue RHS = Op.getOperand(2);
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +00009402 unsigned TestOpc = IsTestPacked ? X86ISD::TESTP : X86ISD::PTEST;
9403 SDValue Test = DAG.getNode(TestOpc, dl, MVT::i32, LHS, RHS);
Owen Anderson825b72b2009-08-11 20:47:22 +00009404 SDValue CC = DAG.getConstant(X86CC, MVT::i8);
9405 SDValue SetCC = DAG.getNode(X86ISD::SETCC, dl, MVT::i8, CC, Test);
9406 return DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i32, SetCC);
Eric Christopher71c67532009-07-29 00:28:05 +00009407 }
Evan Cheng5759f972008-05-04 09:15:50 +00009408
9409 // Fix vector shift instructions where the last operand is a non-immediate
9410 // i32 value.
Craig Topper7be5dfd2011-11-12 09:58:49 +00009411 case Intrinsic::x86_avx2_pslli_w:
9412 case Intrinsic::x86_avx2_pslli_d:
9413 case Intrinsic::x86_avx2_pslli_q:
9414 case Intrinsic::x86_avx2_psrli_w:
9415 case Intrinsic::x86_avx2_psrli_d:
9416 case Intrinsic::x86_avx2_psrli_q:
9417 case Intrinsic::x86_avx2_psrai_w:
9418 case Intrinsic::x86_avx2_psrai_d:
Evan Cheng5759f972008-05-04 09:15:50 +00009419 case Intrinsic::x86_sse2_pslli_w:
9420 case Intrinsic::x86_sse2_pslli_d:
9421 case Intrinsic::x86_sse2_pslli_q:
9422 case Intrinsic::x86_sse2_psrli_w:
9423 case Intrinsic::x86_sse2_psrli_d:
9424 case Intrinsic::x86_sse2_psrli_q:
9425 case Intrinsic::x86_sse2_psrai_w:
9426 case Intrinsic::x86_sse2_psrai_d:
9427 case Intrinsic::x86_mmx_pslli_w:
9428 case Intrinsic::x86_mmx_pslli_d:
9429 case Intrinsic::x86_mmx_pslli_q:
9430 case Intrinsic::x86_mmx_psrli_w:
9431 case Intrinsic::x86_mmx_psrli_d:
9432 case Intrinsic::x86_mmx_psrli_q:
9433 case Intrinsic::x86_mmx_psrai_w:
9434 case Intrinsic::x86_mmx_psrai_d: {
Dan Gohman475871a2008-07-27 21:46:04 +00009435 SDValue ShAmt = Op.getOperand(2);
Evan Cheng5759f972008-05-04 09:15:50 +00009436 if (isa<ConstantSDNode>(ShAmt))
Dan Gohman475871a2008-07-27 21:46:04 +00009437 return SDValue();
Evan Cheng5759f972008-05-04 09:15:50 +00009438
9439 unsigned NewIntNo = 0;
Owen Anderson825b72b2009-08-11 20:47:22 +00009440 EVT ShAmtVT = MVT::v4i32;
Evan Cheng5759f972008-05-04 09:15:50 +00009441 switch (IntNo) {
9442 case Intrinsic::x86_sse2_pslli_w:
9443 NewIntNo = Intrinsic::x86_sse2_psll_w;
9444 break;
9445 case Intrinsic::x86_sse2_pslli_d:
9446 NewIntNo = Intrinsic::x86_sse2_psll_d;
9447 break;
9448 case Intrinsic::x86_sse2_pslli_q:
9449 NewIntNo = Intrinsic::x86_sse2_psll_q;
9450 break;
9451 case Intrinsic::x86_sse2_psrli_w:
9452 NewIntNo = Intrinsic::x86_sse2_psrl_w;
9453 break;
9454 case Intrinsic::x86_sse2_psrli_d:
9455 NewIntNo = Intrinsic::x86_sse2_psrl_d;
9456 break;
9457 case Intrinsic::x86_sse2_psrli_q:
9458 NewIntNo = Intrinsic::x86_sse2_psrl_q;
9459 break;
9460 case Intrinsic::x86_sse2_psrai_w:
9461 NewIntNo = Intrinsic::x86_sse2_psra_w;
9462 break;
9463 case Intrinsic::x86_sse2_psrai_d:
9464 NewIntNo = Intrinsic::x86_sse2_psra_d;
9465 break;
Craig Topper7be5dfd2011-11-12 09:58:49 +00009466 case Intrinsic::x86_avx2_pslli_w:
9467 NewIntNo = Intrinsic::x86_avx2_psll_w;
9468 break;
9469 case Intrinsic::x86_avx2_pslli_d:
9470 NewIntNo = Intrinsic::x86_avx2_psll_d;
9471 break;
9472 case Intrinsic::x86_avx2_pslli_q:
9473 NewIntNo = Intrinsic::x86_avx2_psll_q;
9474 break;
9475 case Intrinsic::x86_avx2_psrli_w:
9476 NewIntNo = Intrinsic::x86_avx2_psrl_w;
9477 break;
9478 case Intrinsic::x86_avx2_psrli_d:
9479 NewIntNo = Intrinsic::x86_avx2_psrl_d;
9480 break;
9481 case Intrinsic::x86_avx2_psrli_q:
9482 NewIntNo = Intrinsic::x86_avx2_psrl_q;
9483 break;
9484 case Intrinsic::x86_avx2_psrai_w:
9485 NewIntNo = Intrinsic::x86_avx2_psra_w;
9486 break;
9487 case Intrinsic::x86_avx2_psrai_d:
9488 NewIntNo = Intrinsic::x86_avx2_psra_d;
9489 break;
Evan Cheng5759f972008-05-04 09:15:50 +00009490 default: {
Owen Anderson825b72b2009-08-11 20:47:22 +00009491 ShAmtVT = MVT::v2i32;
Evan Cheng5759f972008-05-04 09:15:50 +00009492 switch (IntNo) {
9493 case Intrinsic::x86_mmx_pslli_w:
9494 NewIntNo = Intrinsic::x86_mmx_psll_w;
9495 break;
9496 case Intrinsic::x86_mmx_pslli_d:
9497 NewIntNo = Intrinsic::x86_mmx_psll_d;
9498 break;
9499 case Intrinsic::x86_mmx_pslli_q:
9500 NewIntNo = Intrinsic::x86_mmx_psll_q;
9501 break;
9502 case Intrinsic::x86_mmx_psrli_w:
9503 NewIntNo = Intrinsic::x86_mmx_psrl_w;
9504 break;
9505 case Intrinsic::x86_mmx_psrli_d:
9506 NewIntNo = Intrinsic::x86_mmx_psrl_d;
9507 break;
9508 case Intrinsic::x86_mmx_psrli_q:
9509 NewIntNo = Intrinsic::x86_mmx_psrl_q;
9510 break;
9511 case Intrinsic::x86_mmx_psrai_w:
9512 NewIntNo = Intrinsic::x86_mmx_psra_w;
9513 break;
9514 case Intrinsic::x86_mmx_psrai_d:
9515 NewIntNo = Intrinsic::x86_mmx_psra_d;
9516 break;
Torok Edwinc23197a2009-07-14 16:55:14 +00009517 default: llvm_unreachable("Impossible intrinsic"); // Can't reach here.
Evan Cheng5759f972008-05-04 09:15:50 +00009518 }
9519 break;
9520 }
9521 }
Mon P Wangefa42202009-09-03 19:56:25 +00009522
9523 // The vector shift intrinsics with scalars uses 32b shift amounts but
9524 // the sse2/mmx shift instructions reads 64 bits. Set the upper 32 bits
9525 // to be zero.
9526 SDValue ShOps[4];
9527 ShOps[0] = ShAmt;
9528 ShOps[1] = DAG.getConstant(0, MVT::i32);
9529 if (ShAmtVT == MVT::v4i32) {
9530 ShOps[2] = DAG.getUNDEF(MVT::i32);
9531 ShOps[3] = DAG.getUNDEF(MVT::i32);
9532 ShAmt = DAG.getNode(ISD::BUILD_VECTOR, dl, ShAmtVT, &ShOps[0], 4);
9533 } else {
9534 ShAmt = DAG.getNode(ISD::BUILD_VECTOR, dl, ShAmtVT, &ShOps[0], 2);
Dale Johannesen0488fb62010-09-30 23:57:10 +00009535// FIXME this must be lowered to get rid of the invalid type.
Mon P Wangefa42202009-09-03 19:56:25 +00009536 }
9537
Owen Andersone50ed302009-08-10 22:56:29 +00009538 EVT VT = Op.getValueType();
Wesley Peckbf17cfa2010-11-23 03:31:01 +00009539 ShAmt = DAG.getNode(ISD::BITCAST, dl, VT, ShAmt);
Dale Johannesene4d209d2009-02-03 20:21:25 +00009540 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +00009541 DAG.getConstant(NewIntNo, MVT::i32),
Evan Cheng5759f972008-05-04 09:15:50 +00009542 Op.getOperand(1), ShAmt);
9543 }
Evan Cheng38bcbaf2005-12-23 07:31:11 +00009544 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00009545}
Evan Cheng72261582005-12-20 06:22:03 +00009546
Dan Gohmand858e902010-04-17 15:26:15 +00009547SDValue X86TargetLowering::LowerRETURNADDR(SDValue Op,
9548 SelectionDAG &DAG) const {
Evan Cheng2457f2c2010-05-22 01:47:14 +00009549 MachineFrameInfo *MFI = DAG.getMachineFunction().getFrameInfo();
9550 MFI->setReturnAddressIsTaken(true);
9551
Bill Wendling64e87322009-01-16 19:25:27 +00009552 unsigned Depth = cast<ConstantSDNode>(Op.getOperand(0))->getZExtValue();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009553 DebugLoc dl = Op.getDebugLoc();
Bill Wendling64e87322009-01-16 19:25:27 +00009554
9555 if (Depth > 0) {
9556 SDValue FrameAddr = LowerFRAMEADDR(Op, DAG);
9557 SDValue Offset =
9558 DAG.getConstant(TD->getPointerSize(),
Owen Anderson825b72b2009-08-11 20:47:22 +00009559 Subtarget->is64Bit() ? MVT::i64 : MVT::i32);
Dale Johannesene4d209d2009-02-03 20:21:25 +00009560 return DAG.getLoad(getPointerTy(), dl, DAG.getEntryNode(),
Scott Michelfdc40a02009-02-17 22:15:04 +00009561 DAG.getNode(ISD::ADD, dl, getPointerTy(),
Dale Johannesene4d209d2009-02-03 20:21:25 +00009562 FrameAddr, Offset),
Pete Cooperd752e0f2011-11-08 18:42:53 +00009563 MachinePointerInfo(), false, false, false, 0);
Bill Wendling64e87322009-01-16 19:25:27 +00009564 }
9565
9566 // Just load the return address.
Dan Gohman475871a2008-07-27 21:46:04 +00009567 SDValue RetAddrFI = getReturnAddressFrameIndex(DAG);
Scott Michelfdc40a02009-02-17 22:15:04 +00009568 return DAG.getLoad(getPointerTy(), dl, DAG.getEntryNode(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00009569 RetAddrFI, MachinePointerInfo(), false, false, false, 0);
Nate Begemanbcc5f362007-01-29 22:58:52 +00009570}
9571
Dan Gohmand858e902010-04-17 15:26:15 +00009572SDValue X86TargetLowering::LowerFRAMEADDR(SDValue Op, SelectionDAG &DAG) const {
Evan Cheng184793f2008-09-27 01:56:22 +00009573 MachineFrameInfo *MFI = DAG.getMachineFunction().getFrameInfo();
9574 MFI->setFrameAddressIsTaken(true);
Evan Cheng2457f2c2010-05-22 01:47:14 +00009575
Owen Andersone50ed302009-08-10 22:56:29 +00009576 EVT VT = Op.getValueType();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009577 DebugLoc dl = Op.getDebugLoc(); // FIXME probably not meaningful
Evan Cheng184793f2008-09-27 01:56:22 +00009578 unsigned Depth = cast<ConstantSDNode>(Op.getOperand(0))->getZExtValue();
9579 unsigned FrameReg = Subtarget->is64Bit() ? X86::RBP : X86::EBP;
Dale Johannesendd64c412009-02-04 00:33:20 +00009580 SDValue FrameAddr = DAG.getCopyFromReg(DAG.getEntryNode(), dl, FrameReg, VT);
Evan Cheng184793f2008-09-27 01:56:22 +00009581 while (Depth--)
Chris Lattner51abfe42010-09-21 06:02:19 +00009582 FrameAddr = DAG.getLoad(VT, dl, DAG.getEntryNode(), FrameAddr,
9583 MachinePointerInfo(),
Pete Cooperd752e0f2011-11-08 18:42:53 +00009584 false, false, false, 0);
Evan Cheng184793f2008-09-27 01:56:22 +00009585 return FrameAddr;
Nate Begemanbcc5f362007-01-29 22:58:52 +00009586}
9587
Dan Gohman475871a2008-07-27 21:46:04 +00009588SDValue X86TargetLowering::LowerFRAME_TO_ARGS_OFFSET(SDValue Op,
Dan Gohmand858e902010-04-17 15:26:15 +00009589 SelectionDAG &DAG) const {
Anton Korobeynikovbff66b02008-09-09 18:22:57 +00009590 return DAG.getIntPtrConstant(2*TD->getPointerSize());
Anton Korobeynikov2365f512007-07-14 14:06:15 +00009591}
9592
Dan Gohmand858e902010-04-17 15:26:15 +00009593SDValue X86TargetLowering::LowerEH_RETURN(SDValue Op, SelectionDAG &DAG) const {
Anton Korobeynikov2365f512007-07-14 14:06:15 +00009594 MachineFunction &MF = DAG.getMachineFunction();
Dan Gohman475871a2008-07-27 21:46:04 +00009595 SDValue Chain = Op.getOperand(0);
9596 SDValue Offset = Op.getOperand(1);
9597 SDValue Handler = Op.getOperand(2);
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009598 DebugLoc dl = Op.getDebugLoc();
Anton Korobeynikov2365f512007-07-14 14:06:15 +00009599
Dan Gohmand8816272010-08-11 18:14:00 +00009600 SDValue Frame = DAG.getCopyFromReg(DAG.getEntryNode(), dl,
9601 Subtarget->is64Bit() ? X86::RBP : X86::EBP,
9602 getPointerTy());
Anton Korobeynikovb84c1672008-09-08 21:12:47 +00009603 unsigned StoreAddrReg = (Subtarget->is64Bit() ? X86::RCX : X86::ECX);
Anton Korobeynikov2365f512007-07-14 14:06:15 +00009604
Dan Gohmand8816272010-08-11 18:14:00 +00009605 SDValue StoreAddr = DAG.getNode(ISD::ADD, dl, getPointerTy(), Frame,
9606 DAG.getIntPtrConstant(TD->getPointerSize()));
Dale Johannesene4d209d2009-02-03 20:21:25 +00009607 StoreAddr = DAG.getNode(ISD::ADD, dl, getPointerTy(), StoreAddr, Offset);
Chris Lattner8026a9d2010-09-21 17:50:43 +00009608 Chain = DAG.getStore(Chain, dl, Handler, StoreAddr, MachinePointerInfo(),
9609 false, false, 0);
Dale Johannesendd64c412009-02-04 00:33:20 +00009610 Chain = DAG.getCopyToReg(Chain, dl, StoreAddrReg, StoreAddr);
Anton Korobeynikovb84c1672008-09-08 21:12:47 +00009611 MF.getRegInfo().addLiveOut(StoreAddrReg);
Anton Korobeynikov2365f512007-07-14 14:06:15 +00009612
Dale Johannesene4d209d2009-02-03 20:21:25 +00009613 return DAG.getNode(X86ISD::EH_RETURN, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00009614 MVT::Other,
Anton Korobeynikovb84c1672008-09-08 21:12:47 +00009615 Chain, DAG.getRegister(StoreAddrReg, getPointerTy()));
Anton Korobeynikov2365f512007-07-14 14:06:15 +00009616}
9617
Duncan Sands4a544a72011-09-06 13:37:06 +00009618SDValue X86TargetLowering::LowerADJUST_TRAMPOLINE(SDValue Op,
9619 SelectionDAG &DAG) const {
9620 return Op.getOperand(0);
9621}
9622
9623SDValue X86TargetLowering::LowerINIT_TRAMPOLINE(SDValue Op,
9624 SelectionDAG &DAG) const {
Dan Gohman475871a2008-07-27 21:46:04 +00009625 SDValue Root = Op.getOperand(0);
9626 SDValue Trmp = Op.getOperand(1); // trampoline
9627 SDValue FPtr = Op.getOperand(2); // nested function
9628 SDValue Nest = Op.getOperand(3); // 'nest' parameter value
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009629 DebugLoc dl = Op.getDebugLoc();
Duncan Sandsb116fac2007-07-27 20:02:49 +00009630
Dan Gohman69de1932008-02-06 22:27:42 +00009631 const Value *TrmpAddr = cast<SrcValueSDNode>(Op.getOperand(4))->getValue();
Duncan Sandsb116fac2007-07-27 20:02:49 +00009632
9633 if (Subtarget->is64Bit()) {
Dan Gohman475871a2008-07-27 21:46:04 +00009634 SDValue OutChains[6];
Duncan Sands339e14f2008-01-16 22:55:25 +00009635
9636 // Large code-model.
Chris Lattnera62fe662010-02-05 19:20:30 +00009637 const unsigned char JMP64r = 0xFF; // 64-bit jmp through register opcode.
9638 const unsigned char MOV64ri = 0xB8; // X86::MOV64ri opcode.
Duncan Sands339e14f2008-01-16 22:55:25 +00009639
Evan Cheng0e6a0522011-07-18 20:57:22 +00009640 const unsigned char N86R10 = X86_MC::getX86RegNum(X86::R10);
9641 const unsigned char N86R11 = X86_MC::getX86RegNum(X86::R11);
Duncan Sands339e14f2008-01-16 22:55:25 +00009642
9643 const unsigned char REX_WB = 0x40 | 0x08 | 0x01; // REX prefix
9644
9645 // Load the pointer to the nested function into R11.
9646 unsigned OpCode = ((MOV64ri | N86R11) << 8) | REX_WB; // movabsq r11
Dan Gohman475871a2008-07-27 21:46:04 +00009647 SDValue Addr = Trmp;
Owen Anderson825b72b2009-08-11 20:47:22 +00009648 OutChains[0] = DAG.getStore(Root, dl, DAG.getConstant(OpCode, MVT::i16),
Chris Lattner8026a9d2010-09-21 17:50:43 +00009649 Addr, MachinePointerInfo(TrmpAddr),
9650 false, false, 0);
Duncan Sands339e14f2008-01-16 22:55:25 +00009651
Owen Anderson825b72b2009-08-11 20:47:22 +00009652 Addr = DAG.getNode(ISD::ADD, dl, MVT::i64, Trmp,
9653 DAG.getConstant(2, MVT::i64));
Chris Lattner8026a9d2010-09-21 17:50:43 +00009654 OutChains[1] = DAG.getStore(Root, dl, FPtr, Addr,
9655 MachinePointerInfo(TrmpAddr, 2),
David Greene67c9d422010-02-15 16:53:33 +00009656 false, false, 2);
Duncan Sands339e14f2008-01-16 22:55:25 +00009657
9658 // Load the 'nest' parameter value into R10.
9659 // R10 is specified in X86CallingConv.td
9660 OpCode = ((MOV64ri | N86R10) << 8) | REX_WB; // movabsq r10
Owen Anderson825b72b2009-08-11 20:47:22 +00009661 Addr = DAG.getNode(ISD::ADD, dl, MVT::i64, Trmp,
9662 DAG.getConstant(10, MVT::i64));
9663 OutChains[2] = DAG.getStore(Root, dl, DAG.getConstant(OpCode, MVT::i16),
Chris Lattner8026a9d2010-09-21 17:50:43 +00009664 Addr, MachinePointerInfo(TrmpAddr, 10),
9665 false, false, 0);
Duncan Sands339e14f2008-01-16 22:55:25 +00009666
Owen Anderson825b72b2009-08-11 20:47:22 +00009667 Addr = DAG.getNode(ISD::ADD, dl, MVT::i64, Trmp,
9668 DAG.getConstant(12, MVT::i64));
Chris Lattner8026a9d2010-09-21 17:50:43 +00009669 OutChains[3] = DAG.getStore(Root, dl, Nest, Addr,
9670 MachinePointerInfo(TrmpAddr, 12),
David Greene67c9d422010-02-15 16:53:33 +00009671 false, false, 2);
Duncan Sands339e14f2008-01-16 22:55:25 +00009672
9673 // Jump to the nested function.
9674 OpCode = (JMP64r << 8) | REX_WB; // jmpq *...
Owen Anderson825b72b2009-08-11 20:47:22 +00009675 Addr = DAG.getNode(ISD::ADD, dl, MVT::i64, Trmp,
9676 DAG.getConstant(20, MVT::i64));
9677 OutChains[4] = DAG.getStore(Root, dl, DAG.getConstant(OpCode, MVT::i16),
Chris Lattner8026a9d2010-09-21 17:50:43 +00009678 Addr, MachinePointerInfo(TrmpAddr, 20),
9679 false, false, 0);
Duncan Sands339e14f2008-01-16 22:55:25 +00009680
9681 unsigned char ModRM = N86R11 | (4 << 3) | (3 << 6); // ...r11
Owen Anderson825b72b2009-08-11 20:47:22 +00009682 Addr = DAG.getNode(ISD::ADD, dl, MVT::i64, Trmp,
9683 DAG.getConstant(22, MVT::i64));
9684 OutChains[5] = DAG.getStore(Root, dl, DAG.getConstant(ModRM, MVT::i8), Addr,
Chris Lattner8026a9d2010-09-21 17:50:43 +00009685 MachinePointerInfo(TrmpAddr, 22),
9686 false, false, 0);
Duncan Sands339e14f2008-01-16 22:55:25 +00009687
Duncan Sands4a544a72011-09-06 13:37:06 +00009688 return DAG.getNode(ISD::TokenFactor, dl, MVT::Other, OutChains, 6);
Duncan Sandsb116fac2007-07-27 20:02:49 +00009689 } else {
Dan Gohmanbbfb9c52008-01-31 01:01:48 +00009690 const Function *Func =
Duncan Sandsb116fac2007-07-27 20:02:49 +00009691 cast<Function>(cast<SrcValueSDNode>(Op.getOperand(5))->getValue());
Sandeep Patel65c3c8f2009-09-02 08:44:58 +00009692 CallingConv::ID CC = Func->getCallingConv();
Duncan Sandsee465742007-08-29 19:01:20 +00009693 unsigned NestReg;
Duncan Sandsb116fac2007-07-27 20:02:49 +00009694
9695 switch (CC) {
9696 default:
Torok Edwinc23197a2009-07-14 16:55:14 +00009697 llvm_unreachable("Unsupported calling convention");
Duncan Sandsb116fac2007-07-27 20:02:49 +00009698 case CallingConv::C:
Duncan Sandsb116fac2007-07-27 20:02:49 +00009699 case CallingConv::X86_StdCall: {
9700 // Pass 'nest' parameter in ECX.
9701 // Must be kept in sync with X86CallingConv.td
Duncan Sandsee465742007-08-29 19:01:20 +00009702 NestReg = X86::ECX;
Duncan Sandsb116fac2007-07-27 20:02:49 +00009703
9704 // Check that ECX wasn't needed by an 'inreg' parameter.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00009705 FunctionType *FTy = Func->getFunctionType();
Devang Patel05988662008-09-25 21:00:45 +00009706 const AttrListPtr &Attrs = Func->getAttributes();
Duncan Sandsb116fac2007-07-27 20:02:49 +00009707
Chris Lattner58d74912008-03-12 17:45:29 +00009708 if (!Attrs.isEmpty() && !Func->isVarArg()) {
Duncan Sandsb116fac2007-07-27 20:02:49 +00009709 unsigned InRegCount = 0;
9710 unsigned Idx = 1;
9711
9712 for (FunctionType::param_iterator I = FTy->param_begin(),
9713 E = FTy->param_end(); I != E; ++I, ++Idx)
Devang Patel05988662008-09-25 21:00:45 +00009714 if (Attrs.paramHasAttr(Idx, Attribute::InReg))
Duncan Sandsb116fac2007-07-27 20:02:49 +00009715 // FIXME: should only count parameters that are lowered to integers.
Anton Korobeynikovbff66b02008-09-09 18:22:57 +00009716 InRegCount += (TD->getTypeSizeInBits(*I) + 31) / 32;
Duncan Sandsb116fac2007-07-27 20:02:49 +00009717
9718 if (InRegCount > 2) {
Eric Christopher90eb4022010-07-22 00:26:08 +00009719 report_fatal_error("Nest register in use - reduce number of inreg"
9720 " parameters!");
Duncan Sandsb116fac2007-07-27 20:02:49 +00009721 }
9722 }
9723 break;
9724 }
9725 case CallingConv::X86_FastCall:
Anton Korobeynikovded05e32010-05-16 09:08:45 +00009726 case CallingConv::X86_ThisCall:
Duncan Sandsbf53c292008-09-10 13:22:10 +00009727 case CallingConv::Fast:
Duncan Sandsb116fac2007-07-27 20:02:49 +00009728 // Pass 'nest' parameter in EAX.
9729 // Must be kept in sync with X86CallingConv.td
Duncan Sandsee465742007-08-29 19:01:20 +00009730 NestReg = X86::EAX;
Duncan Sandsb116fac2007-07-27 20:02:49 +00009731 break;
9732 }
9733
Dan Gohman475871a2008-07-27 21:46:04 +00009734 SDValue OutChains[4];
9735 SDValue Addr, Disp;
Duncan Sandsb116fac2007-07-27 20:02:49 +00009736
Owen Anderson825b72b2009-08-11 20:47:22 +00009737 Addr = DAG.getNode(ISD::ADD, dl, MVT::i32, Trmp,
9738 DAG.getConstant(10, MVT::i32));
9739 Disp = DAG.getNode(ISD::SUB, dl, MVT::i32, FPtr, Addr);
Duncan Sandsb116fac2007-07-27 20:02:49 +00009740
Chris Lattnera62fe662010-02-05 19:20:30 +00009741 // This is storing the opcode for MOV32ri.
9742 const unsigned char MOV32ri = 0xB8; // X86::MOV32ri's opcode byte.
Evan Cheng0e6a0522011-07-18 20:57:22 +00009743 const unsigned char N86Reg = X86_MC::getX86RegNum(NestReg);
Scott Michelfdc40a02009-02-17 22:15:04 +00009744 OutChains[0] = DAG.getStore(Root, dl,
Owen Anderson825b72b2009-08-11 20:47:22 +00009745 DAG.getConstant(MOV32ri|N86Reg, MVT::i8),
Chris Lattner8026a9d2010-09-21 17:50:43 +00009746 Trmp, MachinePointerInfo(TrmpAddr),
9747 false, false, 0);
Duncan Sandsb116fac2007-07-27 20:02:49 +00009748
Owen Anderson825b72b2009-08-11 20:47:22 +00009749 Addr = DAG.getNode(ISD::ADD, dl, MVT::i32, Trmp,
9750 DAG.getConstant(1, MVT::i32));
Chris Lattner8026a9d2010-09-21 17:50:43 +00009751 OutChains[1] = DAG.getStore(Root, dl, Nest, Addr,
9752 MachinePointerInfo(TrmpAddr, 1),
David Greene67c9d422010-02-15 16:53:33 +00009753 false, false, 1);
Duncan Sandsb116fac2007-07-27 20:02:49 +00009754
Chris Lattnera62fe662010-02-05 19:20:30 +00009755 const unsigned char JMP = 0xE9; // jmp <32bit dst> opcode.
Owen Anderson825b72b2009-08-11 20:47:22 +00009756 Addr = DAG.getNode(ISD::ADD, dl, MVT::i32, Trmp,
9757 DAG.getConstant(5, MVT::i32));
9758 OutChains[2] = DAG.getStore(Root, dl, DAG.getConstant(JMP, MVT::i8), Addr,
Chris Lattner8026a9d2010-09-21 17:50:43 +00009759 MachinePointerInfo(TrmpAddr, 5),
9760 false, false, 1);
Duncan Sandsb116fac2007-07-27 20:02:49 +00009761
Owen Anderson825b72b2009-08-11 20:47:22 +00009762 Addr = DAG.getNode(ISD::ADD, dl, MVT::i32, Trmp,
9763 DAG.getConstant(6, MVT::i32));
Chris Lattner8026a9d2010-09-21 17:50:43 +00009764 OutChains[3] = DAG.getStore(Root, dl, Disp, Addr,
9765 MachinePointerInfo(TrmpAddr, 6),
David Greene67c9d422010-02-15 16:53:33 +00009766 false, false, 1);
Duncan Sandsb116fac2007-07-27 20:02:49 +00009767
Duncan Sands4a544a72011-09-06 13:37:06 +00009768 return DAG.getNode(ISD::TokenFactor, dl, MVT::Other, OutChains, 4);
Duncan Sandsb116fac2007-07-27 20:02:49 +00009769 }
9770}
9771
Dan Gohmand858e902010-04-17 15:26:15 +00009772SDValue X86TargetLowering::LowerFLT_ROUNDS_(SDValue Op,
9773 SelectionDAG &DAG) const {
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009774 /*
9775 The rounding mode is in bits 11:10 of FPSR, and has the following
9776 settings:
9777 00 Round to nearest
9778 01 Round to -inf
9779 10 Round to +inf
9780 11 Round to 0
9781
9782 FLT_ROUNDS, on the other hand, expects the following:
9783 -1 Undefined
9784 0 Round to 0
9785 1 Round to nearest
9786 2 Round to +inf
9787 3 Round to -inf
9788
9789 To perform the conversion, we do:
9790 (((((FPSR & 0x800) >> 11) | ((FPSR & 0x400) >> 9)) + 1) & 3)
9791 */
9792
9793 MachineFunction &MF = DAG.getMachineFunction();
9794 const TargetMachine &TM = MF.getTarget();
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00009795 const TargetFrameLowering &TFI = *TM.getFrameLowering();
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009796 unsigned StackAlignment = TFI.getStackAlignment();
Owen Andersone50ed302009-08-10 22:56:29 +00009797 EVT VT = Op.getValueType();
Chris Lattner2156b792010-09-22 01:11:26 +00009798 DebugLoc DL = Op.getDebugLoc();
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009799
9800 // Save FP Control Word to stack slot
David Greene3f2bf852009-11-12 20:49:22 +00009801 int SSFI = MF.getFrameInfo()->CreateStackObject(2, StackAlignment, false);
Dan Gohman475871a2008-07-27 21:46:04 +00009802 SDValue StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009803
Michael J. Spencerec38de22010-10-10 22:04:20 +00009804
Chris Lattner2156b792010-09-22 01:11:26 +00009805 MachineMemOperand *MMO =
9806 MF.getMachineMemOperand(MachinePointerInfo::getFixedStack(SSFI),
9807 MachineMemOperand::MOStore, 2, 2);
Michael J. Spencerec38de22010-10-10 22:04:20 +00009808
Chris Lattner2156b792010-09-22 01:11:26 +00009809 SDValue Ops[] = { DAG.getEntryNode(), StackSlot };
9810 SDValue Chain = DAG.getMemIntrinsicNode(X86ISD::FNSTCW16m, DL,
9811 DAG.getVTList(MVT::Other),
9812 Ops, 2, MVT::i16, MMO);
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009813
9814 // Load FP Control Word from stack slot
Chris Lattner2156b792010-09-22 01:11:26 +00009815 SDValue CWD = DAG.getLoad(MVT::i16, DL, Chain, StackSlot,
Pete Cooperd752e0f2011-11-08 18:42:53 +00009816 MachinePointerInfo(), false, false, false, 0);
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009817
9818 // Transform as necessary
Dan Gohman475871a2008-07-27 21:46:04 +00009819 SDValue CWD1 =
Chris Lattner2156b792010-09-22 01:11:26 +00009820 DAG.getNode(ISD::SRL, DL, MVT::i16,
9821 DAG.getNode(ISD::AND, DL, MVT::i16,
Owen Anderson825b72b2009-08-11 20:47:22 +00009822 CWD, DAG.getConstant(0x800, MVT::i16)),
9823 DAG.getConstant(11, MVT::i8));
Dan Gohman475871a2008-07-27 21:46:04 +00009824 SDValue CWD2 =
Chris Lattner2156b792010-09-22 01:11:26 +00009825 DAG.getNode(ISD::SRL, DL, MVT::i16,
9826 DAG.getNode(ISD::AND, DL, MVT::i16,
Owen Anderson825b72b2009-08-11 20:47:22 +00009827 CWD, DAG.getConstant(0x400, MVT::i16)),
9828 DAG.getConstant(9, MVT::i8));
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009829
Dan Gohman475871a2008-07-27 21:46:04 +00009830 SDValue RetVal =
Chris Lattner2156b792010-09-22 01:11:26 +00009831 DAG.getNode(ISD::AND, DL, MVT::i16,
9832 DAG.getNode(ISD::ADD, DL, MVT::i16,
9833 DAG.getNode(ISD::OR, DL, MVT::i16, CWD1, CWD2),
Owen Anderson825b72b2009-08-11 20:47:22 +00009834 DAG.getConstant(1, MVT::i16)),
9835 DAG.getConstant(3, MVT::i16));
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009836
9837
Duncan Sands83ec4b62008-06-06 12:08:01 +00009838 return DAG.getNode((VT.getSizeInBits() < 16 ?
Chris Lattner2156b792010-09-22 01:11:26 +00009839 ISD::TRUNCATE : ISD::ZERO_EXTEND), DL, VT, RetVal);
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +00009840}
9841
Dan Gohmand858e902010-04-17 15:26:15 +00009842SDValue X86TargetLowering::LowerCTLZ(SDValue Op, SelectionDAG &DAG) const {
Owen Andersone50ed302009-08-10 22:56:29 +00009843 EVT VT = Op.getValueType();
9844 EVT OpVT = VT;
Duncan Sands83ec4b62008-06-06 12:08:01 +00009845 unsigned NumBits = VT.getSizeInBits();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009846 DebugLoc dl = Op.getDebugLoc();
Evan Cheng18efe262007-12-14 02:13:44 +00009847
9848 Op = Op.getOperand(0);
Owen Anderson825b72b2009-08-11 20:47:22 +00009849 if (VT == MVT::i8) {
Evan Cheng152804e2007-12-14 08:30:15 +00009850 // Zero extend to i32 since there is not an i8 bsr.
Owen Anderson825b72b2009-08-11 20:47:22 +00009851 OpVT = MVT::i32;
Dale Johannesene4d209d2009-02-03 20:21:25 +00009852 Op = DAG.getNode(ISD::ZERO_EXTEND, dl, OpVT, Op);
Evan Cheng18efe262007-12-14 02:13:44 +00009853 }
Evan Cheng18efe262007-12-14 02:13:44 +00009854
Evan Cheng152804e2007-12-14 08:30:15 +00009855 // Issue a bsr (scan bits in reverse) which also sets EFLAGS.
Owen Anderson825b72b2009-08-11 20:47:22 +00009856 SDVTList VTs = DAG.getVTList(OpVT, MVT::i32);
Dale Johannesene4d209d2009-02-03 20:21:25 +00009857 Op = DAG.getNode(X86ISD::BSR, dl, VTs, Op);
Evan Cheng152804e2007-12-14 08:30:15 +00009858
9859 // If src is zero (i.e. bsr sets ZF), returns NumBits.
Benjamin Kramer7f1a5602009-12-29 16:57:26 +00009860 SDValue Ops[] = {
9861 Op,
9862 DAG.getConstant(NumBits+NumBits-1, OpVT),
9863 DAG.getConstant(X86::COND_E, MVT::i8),
9864 Op.getValue(1)
9865 };
9866 Op = DAG.getNode(X86ISD::CMOV, dl, OpVT, Ops, array_lengthof(Ops));
Evan Cheng152804e2007-12-14 08:30:15 +00009867
9868 // Finally xor with NumBits-1.
Dale Johannesene4d209d2009-02-03 20:21:25 +00009869 Op = DAG.getNode(ISD::XOR, dl, OpVT, Op, DAG.getConstant(NumBits-1, OpVT));
Evan Cheng152804e2007-12-14 08:30:15 +00009870
Owen Anderson825b72b2009-08-11 20:47:22 +00009871 if (VT == MVT::i8)
9872 Op = DAG.getNode(ISD::TRUNCATE, dl, MVT::i8, Op);
Evan Cheng18efe262007-12-14 02:13:44 +00009873 return Op;
9874}
9875
Chandler Carruthacc068e2011-12-24 10:55:54 +00009876SDValue X86TargetLowering::LowerCTLZ_ZERO_UNDEF(SDValue Op,
9877 SelectionDAG &DAG) const {
9878 EVT VT = Op.getValueType();
9879 EVT OpVT = VT;
9880 unsigned NumBits = VT.getSizeInBits();
9881 DebugLoc dl = Op.getDebugLoc();
9882
9883 Op = Op.getOperand(0);
9884 if (VT == MVT::i8) {
9885 // Zero extend to i32 since there is not an i8 bsr.
9886 OpVT = MVT::i32;
9887 Op = DAG.getNode(ISD::ZERO_EXTEND, dl, OpVT, Op);
9888 }
9889
9890 // Issue a bsr (scan bits in reverse).
9891 SDVTList VTs = DAG.getVTList(OpVT, MVT::i32);
9892 Op = DAG.getNode(X86ISD::BSR, dl, VTs, Op);
9893
9894 // And xor with NumBits-1.
9895 Op = DAG.getNode(ISD::XOR, dl, OpVT, Op, DAG.getConstant(NumBits-1, OpVT));
9896
9897 if (VT == MVT::i8)
9898 Op = DAG.getNode(ISD::TRUNCATE, dl, MVT::i8, Op);
9899 return Op;
9900}
9901
Dan Gohmand858e902010-04-17 15:26:15 +00009902SDValue X86TargetLowering::LowerCTTZ(SDValue Op, SelectionDAG &DAG) const {
Owen Andersone50ed302009-08-10 22:56:29 +00009903 EVT VT = Op.getValueType();
Duncan Sands83ec4b62008-06-06 12:08:01 +00009904 unsigned NumBits = VT.getSizeInBits();
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009905 DebugLoc dl = Op.getDebugLoc();
Evan Cheng18efe262007-12-14 02:13:44 +00009906 Op = Op.getOperand(0);
Evan Cheng152804e2007-12-14 08:30:15 +00009907
9908 // Issue a bsf (scan bits forward) which also sets EFLAGS.
Chandler Carruth77821022011-12-24 12:12:34 +00009909 SDVTList VTs = DAG.getVTList(VT, MVT::i32);
Dale Johannesene4d209d2009-02-03 20:21:25 +00009910 Op = DAG.getNode(X86ISD::BSF, dl, VTs, Op);
Evan Cheng152804e2007-12-14 08:30:15 +00009911
9912 // If src is zero (i.e. bsf sets ZF), returns NumBits.
Benjamin Kramer7f1a5602009-12-29 16:57:26 +00009913 SDValue Ops[] = {
9914 Op,
Chandler Carruth77821022011-12-24 12:12:34 +00009915 DAG.getConstant(NumBits, VT),
Benjamin Kramer7f1a5602009-12-29 16:57:26 +00009916 DAG.getConstant(X86::COND_E, MVT::i8),
9917 Op.getValue(1)
9918 };
Chandler Carruth77821022011-12-24 12:12:34 +00009919 return DAG.getNode(X86ISD::CMOV, dl, VT, Ops, array_lengthof(Ops));
Evan Cheng18efe262007-12-14 02:13:44 +00009920}
9921
Craig Topper13894fa2011-08-24 06:14:18 +00009922// Lower256IntArith - Break a 256-bit integer operation into two new 128-bit
9923// ones, and then concatenate the result back.
9924static SDValue Lower256IntArith(SDValue Op, SelectionDAG &DAG) {
Owen Andersone50ed302009-08-10 22:56:29 +00009925 EVT VT = Op.getValueType();
Craig Topper13894fa2011-08-24 06:14:18 +00009926
9927 assert(VT.getSizeInBits() == 256 && VT.isInteger() &&
9928 "Unsupported value type for operation");
9929
9930 int NumElems = VT.getVectorNumElements();
9931 DebugLoc dl = Op.getDebugLoc();
9932 SDValue Idx0 = DAG.getConstant(0, MVT::i32);
9933 SDValue Idx1 = DAG.getConstant(NumElems/2, MVT::i32);
9934
9935 // Extract the LHS vectors
9936 SDValue LHS = Op.getOperand(0);
9937 SDValue LHS1 = Extract128BitVector(LHS, Idx0, DAG, dl);
9938 SDValue LHS2 = Extract128BitVector(LHS, Idx1, DAG, dl);
9939
9940 // Extract the RHS vectors
9941 SDValue RHS = Op.getOperand(1);
9942 SDValue RHS1 = Extract128BitVector(RHS, Idx0, DAG, dl);
9943 SDValue RHS2 = Extract128BitVector(RHS, Idx1, DAG, dl);
9944
9945 MVT EltVT = VT.getVectorElementType().getSimpleVT();
9946 EVT NewVT = MVT::getVectorVT(EltVT, NumElems/2);
9947
9948 return DAG.getNode(ISD::CONCAT_VECTORS, dl, VT,
9949 DAG.getNode(Op.getOpcode(), dl, NewVT, LHS1, RHS1),
9950 DAG.getNode(Op.getOpcode(), dl, NewVT, LHS2, RHS2));
9951}
9952
9953SDValue X86TargetLowering::LowerADD(SDValue Op, SelectionDAG &DAG) const {
9954 assert(Op.getValueType().getSizeInBits() == 256 &&
9955 Op.getValueType().isInteger() &&
9956 "Only handle AVX 256-bit vector integer operation");
9957 return Lower256IntArith(Op, DAG);
9958}
9959
9960SDValue X86TargetLowering::LowerSUB(SDValue Op, SelectionDAG &DAG) const {
9961 assert(Op.getValueType().getSizeInBits() == 256 &&
9962 Op.getValueType().isInteger() &&
9963 "Only handle AVX 256-bit vector integer operation");
9964 return Lower256IntArith(Op, DAG);
9965}
9966
9967SDValue X86TargetLowering::LowerMUL(SDValue Op, SelectionDAG &DAG) const {
9968 EVT VT = Op.getValueType();
9969
9970 // Decompose 256-bit ops into smaller 128-bit ops.
Craig Topperaaa643c2011-11-09 07:28:55 +00009971 if (VT.getSizeInBits() == 256 && !Subtarget->hasAVX2())
Craig Topper13894fa2011-08-24 06:14:18 +00009972 return Lower256IntArith(Op, DAG);
9973
Dale Johannesen6f38cb62009-02-07 19:59:05 +00009974 DebugLoc dl = Op.getDebugLoc();
Scott Michelfdc40a02009-02-17 22:15:04 +00009975
Craig Topperaaa643c2011-11-09 07:28:55 +00009976 SDValue A = Op.getOperand(0);
9977 SDValue B = Op.getOperand(1);
9978
9979 if (VT == MVT::v4i64) {
9980 assert(Subtarget->hasAVX2() && "Lowering v4i64 multiply requires AVX2");
9981
9982 // ulong2 Ahi = __builtin_ia32_psrlqi256( a, 32);
9983 // ulong2 Bhi = __builtin_ia32_psrlqi256( b, 32);
9984 // ulong2 AloBlo = __builtin_ia32_pmuludq256( a, b );
9985 // ulong2 AloBhi = __builtin_ia32_pmuludq256( a, Bhi );
9986 // ulong2 AhiBlo = __builtin_ia32_pmuludq256( Ahi, b );
9987 //
9988 // AloBhi = __builtin_ia32_psllqi256( AloBhi, 32 );
9989 // AhiBlo = __builtin_ia32_psllqi256( AhiBlo, 32 );
9990 // return AloBlo + AloBhi + AhiBlo;
9991
9992 SDValue Ahi = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
9993 DAG.getConstant(Intrinsic::x86_avx2_psrli_q, MVT::i32),
9994 A, DAG.getConstant(32, MVT::i32));
9995 SDValue Bhi = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
9996 DAG.getConstant(Intrinsic::x86_avx2_psrli_q, MVT::i32),
9997 B, DAG.getConstant(32, MVT::i32));
9998 SDValue AloBlo = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
9999 DAG.getConstant(Intrinsic::x86_avx2_pmulu_dq, MVT::i32),
10000 A, B);
10001 SDValue AloBhi = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10002 DAG.getConstant(Intrinsic::x86_avx2_pmulu_dq, MVT::i32),
10003 A, Bhi);
10004 SDValue AhiBlo = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10005 DAG.getConstant(Intrinsic::x86_avx2_pmulu_dq, MVT::i32),
10006 Ahi, B);
10007 AloBhi = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10008 DAG.getConstant(Intrinsic::x86_avx2_pslli_q, MVT::i32),
10009 AloBhi, DAG.getConstant(32, MVT::i32));
10010 AhiBlo = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10011 DAG.getConstant(Intrinsic::x86_avx2_pslli_q, MVT::i32),
10012 AhiBlo, DAG.getConstant(32, MVT::i32));
10013 SDValue Res = DAG.getNode(ISD::ADD, dl, VT, AloBlo, AloBhi);
10014 Res = DAG.getNode(ISD::ADD, dl, VT, Res, AhiBlo);
10015 return Res;
10016 }
10017
10018 assert(VT == MVT::v2i64 && "Only know how to lower V2I64 multiply");
10019
Mon P Wangaf9b9522008-12-18 21:42:19 +000010020 // ulong2 Ahi = __builtin_ia32_psrlqi128( a, 32);
10021 // ulong2 Bhi = __builtin_ia32_psrlqi128( b, 32);
10022 // ulong2 AloBlo = __builtin_ia32_pmuludq128( a, b );
10023 // ulong2 AloBhi = __builtin_ia32_pmuludq128( a, Bhi );
10024 // ulong2 AhiBlo = __builtin_ia32_pmuludq128( Ahi, b );
10025 //
10026 // AloBhi = __builtin_ia32_psllqi128( AloBhi, 32 );
10027 // AhiBlo = __builtin_ia32_psllqi128( AhiBlo, 32 );
10028 // return AloBlo + AloBhi + AhiBlo;
10029
Dale Johannesene4d209d2009-02-03 20:21:25 +000010030 SDValue Ahi = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000010031 DAG.getConstant(Intrinsic::x86_sse2_psrli_q, MVT::i32),
10032 A, DAG.getConstant(32, MVT::i32));
Dale Johannesene4d209d2009-02-03 20:21:25 +000010033 SDValue Bhi = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000010034 DAG.getConstant(Intrinsic::x86_sse2_psrli_q, MVT::i32),
10035 B, DAG.getConstant(32, MVT::i32));
Dale Johannesene4d209d2009-02-03 20:21:25 +000010036 SDValue AloBlo = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000010037 DAG.getConstant(Intrinsic::x86_sse2_pmulu_dq, MVT::i32),
Mon P Wangaf9b9522008-12-18 21:42:19 +000010038 A, B);
Dale Johannesene4d209d2009-02-03 20:21:25 +000010039 SDValue AloBhi = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000010040 DAG.getConstant(Intrinsic::x86_sse2_pmulu_dq, MVT::i32),
Mon P Wangaf9b9522008-12-18 21:42:19 +000010041 A, Bhi);
Dale Johannesene4d209d2009-02-03 20:21:25 +000010042 SDValue AhiBlo = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000010043 DAG.getConstant(Intrinsic::x86_sse2_pmulu_dq, MVT::i32),
Mon P Wangaf9b9522008-12-18 21:42:19 +000010044 Ahi, B);
Dale Johannesene4d209d2009-02-03 20:21:25 +000010045 AloBhi = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000010046 DAG.getConstant(Intrinsic::x86_sse2_pslli_q, MVT::i32),
10047 AloBhi, DAG.getConstant(32, MVT::i32));
Dale Johannesene4d209d2009-02-03 20:21:25 +000010048 AhiBlo = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000010049 DAG.getConstant(Intrinsic::x86_sse2_pslli_q, MVT::i32),
10050 AhiBlo, DAG.getConstant(32, MVT::i32));
Dale Johannesene4d209d2009-02-03 20:21:25 +000010051 SDValue Res = DAG.getNode(ISD::ADD, dl, VT, AloBlo, AloBhi);
10052 Res = DAG.getNode(ISD::ADD, dl, VT, Res, AhiBlo);
Mon P Wangaf9b9522008-12-18 21:42:19 +000010053 return Res;
10054}
10055
Nadav Rotem43012222011-05-11 08:12:09 +000010056SDValue X86TargetLowering::LowerShift(SDValue Op, SelectionDAG &DAG) const {
10057
Nate Begemanbdcb5af2010-07-27 22:37:06 +000010058 EVT VT = Op.getValueType();
10059 DebugLoc dl = Op.getDebugLoc();
10060 SDValue R = Op.getOperand(0);
Nadav Rotem43012222011-05-11 08:12:09 +000010061 SDValue Amt = Op.getOperand(1);
Nate Begemanbdcb5af2010-07-27 22:37:06 +000010062 LLVMContext *Context = DAG.getContext();
Nate Begemanbdcb5af2010-07-27 22:37:06 +000010063
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000010064 if (!Subtarget->hasXMMInt())
Bruno Cardoso Lopes328a9d42011-08-08 21:31:08 +000010065 return SDValue();
10066
Nadav Rotem43012222011-05-11 08:12:09 +000010067 // Optimize shl/srl/sra with constant shift amount.
10068 if (isSplatVector(Amt.getNode())) {
10069 SDValue SclrAmt = Amt->getOperand(0);
10070 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(SclrAmt)) {
10071 uint64_t ShiftAmt = C->getZExtValue();
10072
Benjamin Kramerdade3c12011-10-30 17:31:21 +000010073 if (VT == MVT::v16i8 && Op.getOpcode() == ISD::SHL) {
10074 // Make a large shift.
10075 SDValue SHL =
10076 DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10077 DAG.getConstant(Intrinsic::x86_sse2_pslli_w, MVT::i32),
10078 R, DAG.getConstant(ShiftAmt, MVT::i32));
10079 // Zero out the rightmost bits.
10080 SmallVector<SDValue, 16> V(16, DAG.getConstant(uint8_t(-1U << ShiftAmt),
10081 MVT::i8));
10082 return DAG.getNode(ISD::AND, dl, VT, SHL,
10083 DAG.getNode(ISD::BUILD_VECTOR, dl, VT, &V[0], 16));
10084 }
10085
Nadav Rotem43012222011-05-11 08:12:09 +000010086 if (VT == MVT::v2i64 && Op.getOpcode() == ISD::SHL)
10087 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10088 DAG.getConstant(Intrinsic::x86_sse2_pslli_q, MVT::i32),
10089 R, DAG.getConstant(ShiftAmt, MVT::i32));
10090
10091 if (VT == MVT::v4i32 && Op.getOpcode() == ISD::SHL)
10092 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10093 DAG.getConstant(Intrinsic::x86_sse2_pslli_d, MVT::i32),
10094 R, DAG.getConstant(ShiftAmt, MVT::i32));
10095
10096 if (VT == MVT::v8i16 && Op.getOpcode() == ISD::SHL)
10097 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10098 DAG.getConstant(Intrinsic::x86_sse2_pslli_w, MVT::i32),
10099 R, DAG.getConstant(ShiftAmt, MVT::i32));
10100
Benjamin Kramerdade3c12011-10-30 17:31:21 +000010101 if (VT == MVT::v16i8 && Op.getOpcode() == ISD::SRL) {
10102 // Make a large shift.
10103 SDValue SRL =
10104 DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10105 DAG.getConstant(Intrinsic::x86_sse2_psrli_w, MVT::i32),
10106 R, DAG.getConstant(ShiftAmt, MVT::i32));
10107 // Zero out the leftmost bits.
10108 SmallVector<SDValue, 16> V(16, DAG.getConstant(uint8_t(-1U) >> ShiftAmt,
10109 MVT::i8));
10110 return DAG.getNode(ISD::AND, dl, VT, SRL,
10111 DAG.getNode(ISD::BUILD_VECTOR, dl, VT, &V[0], 16));
10112 }
10113
Nadav Rotem43012222011-05-11 08:12:09 +000010114 if (VT == MVT::v2i64 && Op.getOpcode() == ISD::SRL)
10115 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10116 DAG.getConstant(Intrinsic::x86_sse2_psrli_q, MVT::i32),
10117 R, DAG.getConstant(ShiftAmt, MVT::i32));
10118
10119 if (VT == MVT::v4i32 && Op.getOpcode() == ISD::SRL)
10120 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10121 DAG.getConstant(Intrinsic::x86_sse2_psrli_d, MVT::i32),
10122 R, DAG.getConstant(ShiftAmt, MVT::i32));
10123
10124 if (VT == MVT::v8i16 && Op.getOpcode() == ISD::SRL)
10125 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10126 DAG.getConstant(Intrinsic::x86_sse2_psrli_w, MVT::i32),
10127 R, DAG.getConstant(ShiftAmt, MVT::i32));
10128
10129 if (VT == MVT::v4i32 && Op.getOpcode() == ISD::SRA)
10130 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10131 DAG.getConstant(Intrinsic::x86_sse2_psrai_d, MVT::i32),
10132 R, DAG.getConstant(ShiftAmt, MVT::i32));
10133
10134 if (VT == MVT::v8i16 && Op.getOpcode() == ISD::SRA)
10135 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10136 DAG.getConstant(Intrinsic::x86_sse2_psrai_w, MVT::i32),
10137 R, DAG.getConstant(ShiftAmt, MVT::i32));
Eli Friedmanf6aa6b12011-11-01 21:18:39 +000010138
10139 if (VT == MVT::v16i8 && Op.getOpcode() == ISD::SRA) {
10140 if (ShiftAmt == 7) {
10141 // R s>> 7 === R s< 0
10142 SDValue Zeros = getZeroVector(VT, true /* HasXMMInt */, DAG, dl);
10143 return DAG.getNode(X86ISD::PCMPGTB, dl, VT, Zeros, R);
10144 }
10145
10146 // R s>> a === ((R u>> a) ^ m) - m
10147 SDValue Res = DAG.getNode(ISD::SRL, dl, VT, R, Amt);
10148 SmallVector<SDValue, 16> V(16, DAG.getConstant(128 >> ShiftAmt,
10149 MVT::i8));
10150 SDValue Mask = DAG.getNode(ISD::BUILD_VECTOR, dl, VT, &V[0], 16);
10151 Res = DAG.getNode(ISD::XOR, dl, VT, Res, Mask);
10152 Res = DAG.getNode(ISD::SUB, dl, VT, Res, Mask);
10153 return Res;
10154 }
Craig Topper46154eb2011-11-11 07:39:23 +000010155
Craig Topper0d86d462011-11-20 00:12:05 +000010156 if (Subtarget->hasAVX2() && VT == MVT::v32i8) {
10157 if (Op.getOpcode() == ISD::SHL) {
10158 // Make a large shift.
10159 SDValue SHL =
10160 DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10161 DAG.getConstant(Intrinsic::x86_avx2_pslli_w, MVT::i32),
10162 R, DAG.getConstant(ShiftAmt, MVT::i32));
10163 // Zero out the rightmost bits.
10164 SmallVector<SDValue, 32> V(32, DAG.getConstant(uint8_t(-1U << ShiftAmt),
10165 MVT::i8));
10166 return DAG.getNode(ISD::AND, dl, VT, SHL,
10167 DAG.getNode(ISD::BUILD_VECTOR, dl, VT, &V[0], 32));
Craig Topper46154eb2011-11-11 07:39:23 +000010168 }
Craig Topper0d86d462011-11-20 00:12:05 +000010169 if (Op.getOpcode() == ISD::SRL) {
10170 // Make a large shift.
10171 SDValue SRL =
10172 DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10173 DAG.getConstant(Intrinsic::x86_avx2_psrli_w, MVT::i32),
10174 R, DAG.getConstant(ShiftAmt, MVT::i32));
10175 // Zero out the leftmost bits.
10176 SmallVector<SDValue, 32> V(32, DAG.getConstant(uint8_t(-1U) >> ShiftAmt,
10177 MVT::i8));
10178 return DAG.getNode(ISD::AND, dl, VT, SRL,
10179 DAG.getNode(ISD::BUILD_VECTOR, dl, VT, &V[0], 32));
10180 }
10181 if (Op.getOpcode() == ISD::SRA) {
10182 if (ShiftAmt == 7) {
10183 // R s>> 7 === R s< 0
10184 SDValue Zeros = getZeroVector(VT, true /* HasXMMInt */, DAG, dl);
10185 return DAG.getNode(X86ISD::PCMPGTB, dl, VT, Zeros, R);
10186 }
10187
10188 // R s>> a === ((R u>> a) ^ m) - m
10189 SDValue Res = DAG.getNode(ISD::SRL, dl, VT, R, Amt);
10190 SmallVector<SDValue, 32> V(32, DAG.getConstant(128 >> ShiftAmt,
10191 MVT::i8));
10192 SDValue Mask = DAG.getNode(ISD::BUILD_VECTOR, dl, VT, &V[0], 32);
10193 Res = DAG.getNode(ISD::XOR, dl, VT, Res, Mask);
10194 Res = DAG.getNode(ISD::SUB, dl, VT, Res, Mask);
10195 return Res;
10196 }
10197 }
Nadav Rotem43012222011-05-11 08:12:09 +000010198 }
10199 }
10200
10201 // Lower SHL with variable shift amount.
Nadav Rotem43012222011-05-11 08:12:09 +000010202 if (VT == MVT::v4i32 && Op->getOpcode() == ISD::SHL) {
Nate Begeman51409212010-07-28 00:21:48 +000010203 Op = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10204 DAG.getConstant(Intrinsic::x86_sse2_pslli_d, MVT::i32),
10205 Op.getOperand(1), DAG.getConstant(23, MVT::i32));
10206
10207 ConstantInt *CI = ConstantInt::get(*Context, APInt(32, 0x3f800000U));
Michael J. Spencerec38de22010-10-10 22:04:20 +000010208
Nate Begeman51409212010-07-28 00:21:48 +000010209 std::vector<Constant*> CV(4, CI);
10210 Constant *C = ConstantVector::get(CV);
10211 SDValue CPIdx = DAG.getConstantPool(C, getPointerTy(), 16);
10212 SDValue Addend = DAG.getLoad(VT, dl, DAG.getEntryNode(), CPIdx,
Chris Lattnere8639032010-09-21 06:22:23 +000010213 MachinePointerInfo::getConstantPool(),
Pete Cooperd752e0f2011-11-08 18:42:53 +000010214 false, false, false, 16);
Nate Begeman51409212010-07-28 00:21:48 +000010215
10216 Op = DAG.getNode(ISD::ADD, dl, VT, Op, Addend);
Wesley Peckbf17cfa2010-11-23 03:31:01 +000010217 Op = DAG.getNode(ISD::BITCAST, dl, MVT::v4f32, Op);
Nate Begeman51409212010-07-28 00:21:48 +000010218 Op = DAG.getNode(ISD::FP_TO_SINT, dl, VT, Op);
10219 return DAG.getNode(ISD::MUL, dl, VT, Op, R);
10220 }
Nadav Rotem43012222011-05-11 08:12:09 +000010221 if (VT == MVT::v16i8 && Op->getOpcode() == ISD::SHL) {
Lang Hames8b99c1e2011-12-17 01:08:46 +000010222 assert((Subtarget->hasSSE2() || Subtarget->hasAVX()) &&
10223 "Need SSE2 for pslli/pcmpeq.");
10224
Nate Begeman51409212010-07-28 00:21:48 +000010225 // a = a << 5;
10226 Op = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10227 DAG.getConstant(Intrinsic::x86_sse2_pslli_w, MVT::i32),
10228 Op.getOperand(1), DAG.getConstant(5, MVT::i32));
10229
Lang Hames8b99c1e2011-12-17 01:08:46 +000010230 // Turn 'a' into a mask suitable for VSELECT
10231 SDValue VSelM = DAG.getConstant(0x80, VT);
10232 SDValue OpVSel = DAG.getNode(ISD::AND, dl, VT, VSelM, Op);
10233 OpVSel = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10234 DAG.getConstant(Intrinsic::x86_sse2_pcmpeq_b, MVT::i32),
10235 OpVSel, VSelM);
Nate Begeman51409212010-07-28 00:21:48 +000010236
Lang Hames8b99c1e2011-12-17 01:08:46 +000010237 SDValue CM1 = DAG.getConstant(0x0f, VT);
10238 SDValue CM2 = DAG.getConstant(0x3f, VT);
Nate Begeman51409212010-07-28 00:21:48 +000010239
Lang Hames8b99c1e2011-12-17 01:08:46 +000010240 // r = VSELECT(r, psllw(r & (char16)15, 4), a);
10241 SDValue M = DAG.getNode(ISD::AND, dl, VT, R, CM1);
Nate Begeman51409212010-07-28 00:21:48 +000010242 M = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10243 DAG.getConstant(Intrinsic::x86_sse2_pslli_w, MVT::i32), M,
10244 DAG.getConstant(4, MVT::i32));
Lang Hames8b99c1e2011-12-17 01:08:46 +000010245 R = DAG.getNode(ISD::VSELECT, dl, VT, OpVSel, M, R);
10246
Nate Begeman51409212010-07-28 00:21:48 +000010247 // a += a
10248 Op = DAG.getNode(ISD::ADD, dl, VT, Op, Op);
Lang Hames8b99c1e2011-12-17 01:08:46 +000010249 OpVSel = DAG.getNode(ISD::AND, dl, VT, VSelM, Op);
10250 OpVSel = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10251 DAG.getConstant(Intrinsic::x86_sse2_pcmpeq_b, MVT::i32),
10252 OpVSel, VSelM);
Michael J. Spencerec38de22010-10-10 22:04:20 +000010253
Lang Hames8b99c1e2011-12-17 01:08:46 +000010254 // r = VSELECT(r, psllw(r & (char16)63, 2), a);
10255 M = DAG.getNode(ISD::AND, dl, VT, R, CM2);
Nate Begeman51409212010-07-28 00:21:48 +000010256 M = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10257 DAG.getConstant(Intrinsic::x86_sse2_pslli_w, MVT::i32), M,
10258 DAG.getConstant(2, MVT::i32));
Lang Hames8b99c1e2011-12-17 01:08:46 +000010259 R = DAG.getNode(ISD::VSELECT, dl, VT, OpVSel, M, R);
10260
Nate Begeman51409212010-07-28 00:21:48 +000010261 // a += a
10262 Op = DAG.getNode(ISD::ADD, dl, VT, Op, Op);
Lang Hames8b99c1e2011-12-17 01:08:46 +000010263 OpVSel = DAG.getNode(ISD::AND, dl, VT, VSelM, Op);
10264 OpVSel = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10265 DAG.getConstant(Intrinsic::x86_sse2_pcmpeq_b, MVT::i32),
10266 OpVSel, VSelM);
Michael J. Spencerec38de22010-10-10 22:04:20 +000010267
Lang Hames8b99c1e2011-12-17 01:08:46 +000010268 // return VSELECT(r, r+r, a);
10269 R = DAG.getNode(ISD::VSELECT, dl, VT, OpVSel,
Lang Hamesa0a25132011-12-15 18:57:27 +000010270 DAG.getNode(ISD::ADD, dl, VT, R, R), R);
Nate Begeman51409212010-07-28 00:21:48 +000010271 return R;
10272 }
Craig Topper46154eb2011-11-11 07:39:23 +000010273
10274 // Decompose 256-bit shifts into smaller 128-bit shifts.
10275 if (VT.getSizeInBits() == 256) {
10276 int NumElems = VT.getVectorNumElements();
10277 MVT EltVT = VT.getVectorElementType().getSimpleVT();
10278 EVT NewVT = MVT::getVectorVT(EltVT, NumElems/2);
10279
10280 // Extract the two vectors
10281 SDValue V1 = Extract128BitVector(R, DAG.getConstant(0, MVT::i32), DAG, dl);
10282 SDValue V2 = Extract128BitVector(R, DAG.getConstant(NumElems/2, MVT::i32),
10283 DAG, dl);
10284
10285 // Recreate the shift amount vectors
10286 SDValue Amt1, Amt2;
10287 if (Amt.getOpcode() == ISD::BUILD_VECTOR) {
10288 // Constant shift amount
10289 SmallVector<SDValue, 4> Amt1Csts;
10290 SmallVector<SDValue, 4> Amt2Csts;
10291 for (int i = 0; i < NumElems/2; ++i)
10292 Amt1Csts.push_back(Amt->getOperand(i));
10293 for (int i = NumElems/2; i < NumElems; ++i)
10294 Amt2Csts.push_back(Amt->getOperand(i));
10295
10296 Amt1 = DAG.getNode(ISD::BUILD_VECTOR, dl, NewVT,
10297 &Amt1Csts[0], NumElems/2);
10298 Amt2 = DAG.getNode(ISD::BUILD_VECTOR, dl, NewVT,
10299 &Amt2Csts[0], NumElems/2);
10300 } else {
10301 // Variable shift amount
10302 Amt1 = Extract128BitVector(Amt, DAG.getConstant(0, MVT::i32), DAG, dl);
10303 Amt2 = Extract128BitVector(Amt, DAG.getConstant(NumElems/2, MVT::i32),
10304 DAG, dl);
10305 }
10306
10307 // Issue new vector shifts for the smaller types
10308 V1 = DAG.getNode(Op.getOpcode(), dl, NewVT, V1, Amt1);
10309 V2 = DAG.getNode(Op.getOpcode(), dl, NewVT, V2, Amt2);
10310
10311 // Concatenate the result back
10312 return DAG.getNode(ISD::CONCAT_VECTORS, dl, VT, V1, V2);
10313 }
10314
Nate Begeman51409212010-07-28 00:21:48 +000010315 return SDValue();
Nate Begemanbdcb5af2010-07-27 22:37:06 +000010316}
Mon P Wangaf9b9522008-12-18 21:42:19 +000010317
Dan Gohmand858e902010-04-17 15:26:15 +000010318SDValue X86TargetLowering::LowerXALUO(SDValue Op, SelectionDAG &DAG) const {
Bill Wendling74c37652008-12-09 22:08:41 +000010319 // Lower the "add/sub/mul with overflow" instruction into a regular ins plus
10320 // a "setcc" instruction that checks the overflow flag. The "brcond" lowering
Bill Wendling61edeb52008-12-02 01:06:39 +000010321 // looks for this combo and may remove the "setcc" instruction if the "setcc"
10322 // has only one use.
Bill Wendling3fafd932008-11-26 22:37:40 +000010323 SDNode *N = Op.getNode();
Bill Wendling61edeb52008-12-02 01:06:39 +000010324 SDValue LHS = N->getOperand(0);
10325 SDValue RHS = N->getOperand(1);
Bill Wendling74c37652008-12-09 22:08:41 +000010326 unsigned BaseOp = 0;
10327 unsigned Cond = 0;
Chris Lattnerb20e0b12010-12-05 07:30:36 +000010328 DebugLoc DL = Op.getDebugLoc();
Bill Wendling74c37652008-12-09 22:08:41 +000010329 switch (Op.getOpcode()) {
Torok Edwinc23197a2009-07-14 16:55:14 +000010330 default: llvm_unreachable("Unknown ovf instruction!");
Bill Wendling74c37652008-12-09 22:08:41 +000010331 case ISD::SADDO:
Dan Gohman076aee32009-03-04 19:44:21 +000010332 // A subtract of one will be selected as a INC. Note that INC doesn't
10333 // set CF, so we can't do this for UADDO.
Benjamin Kramerc175a4b2011-03-08 15:20:20 +000010334 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(RHS))
10335 if (C->isOne()) {
Dan Gohman076aee32009-03-04 19:44:21 +000010336 BaseOp = X86ISD::INC;
10337 Cond = X86::COND_O;
10338 break;
10339 }
Bill Wendlingab55ebd2008-12-12 00:56:36 +000010340 BaseOp = X86ISD::ADD;
Bill Wendling74c37652008-12-09 22:08:41 +000010341 Cond = X86::COND_O;
10342 break;
10343 case ISD::UADDO:
Bill Wendlingab55ebd2008-12-12 00:56:36 +000010344 BaseOp = X86ISD::ADD;
Dan Gohman653456c2009-01-07 00:15:08 +000010345 Cond = X86::COND_B;
Bill Wendling74c37652008-12-09 22:08:41 +000010346 break;
10347 case ISD::SSUBO:
Dan Gohman076aee32009-03-04 19:44:21 +000010348 // A subtract of one will be selected as a DEC. Note that DEC doesn't
10349 // set CF, so we can't do this for USUBO.
Benjamin Kramerc175a4b2011-03-08 15:20:20 +000010350 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(RHS))
10351 if (C->isOne()) {
Dan Gohman076aee32009-03-04 19:44:21 +000010352 BaseOp = X86ISD::DEC;
10353 Cond = X86::COND_O;
10354 break;
10355 }
Bill Wendlingab55ebd2008-12-12 00:56:36 +000010356 BaseOp = X86ISD::SUB;
Bill Wendling74c37652008-12-09 22:08:41 +000010357 Cond = X86::COND_O;
10358 break;
10359 case ISD::USUBO:
Bill Wendlingab55ebd2008-12-12 00:56:36 +000010360 BaseOp = X86ISD::SUB;
Dan Gohman653456c2009-01-07 00:15:08 +000010361 Cond = X86::COND_B;
Bill Wendling74c37652008-12-09 22:08:41 +000010362 break;
10363 case ISD::SMULO:
Bill Wendlingd350e022008-12-12 21:15:41 +000010364 BaseOp = X86ISD::SMUL;
Bill Wendling74c37652008-12-09 22:08:41 +000010365 Cond = X86::COND_O;
10366 break;
Chris Lattnerb20e0b12010-12-05 07:30:36 +000010367 case ISD::UMULO: { // i64, i8 = umulo lhs, rhs --> i64, i64, i32 umul lhs,rhs
10368 SDVTList VTs = DAG.getVTList(N->getValueType(0), N->getValueType(0),
10369 MVT::i32);
10370 SDValue Sum = DAG.getNode(X86ISD::UMUL, DL, VTs, LHS, RHS);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000010371
Chris Lattnerb20e0b12010-12-05 07:30:36 +000010372 SDValue SetCC =
10373 DAG.getNode(X86ISD::SETCC, DL, MVT::i8,
10374 DAG.getConstant(X86::COND_O, MVT::i32),
10375 SDValue(Sum.getNode(), 2));
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000010376
Dan Gohman6e5fda22011-07-22 18:45:15 +000010377 return DAG.getNode(ISD::MERGE_VALUES, DL, N->getVTList(), Sum, SetCC);
Chris Lattnerb20e0b12010-12-05 07:30:36 +000010378 }
Bill Wendling74c37652008-12-09 22:08:41 +000010379 }
Bill Wendling3fafd932008-11-26 22:37:40 +000010380
Bill Wendling61edeb52008-12-02 01:06:39 +000010381 // Also sets EFLAGS.
Owen Anderson825b72b2009-08-11 20:47:22 +000010382 SDVTList VTs = DAG.getVTList(N->getValueType(0), MVT::i32);
Chris Lattnerb20e0b12010-12-05 07:30:36 +000010383 SDValue Sum = DAG.getNode(BaseOp, DL, VTs, LHS, RHS);
Bill Wendling3fafd932008-11-26 22:37:40 +000010384
Bill Wendling61edeb52008-12-02 01:06:39 +000010385 SDValue SetCC =
Chris Lattnerb20e0b12010-12-05 07:30:36 +000010386 DAG.getNode(X86ISD::SETCC, DL, N->getValueType(1),
10387 DAG.getConstant(Cond, MVT::i32),
10388 SDValue(Sum.getNode(), 1));
Bill Wendling3fafd932008-11-26 22:37:40 +000010389
Dan Gohman6e5fda22011-07-22 18:45:15 +000010390 return DAG.getNode(ISD::MERGE_VALUES, DL, N->getVTList(), Sum, SetCC);
Bill Wendling41ea7e72008-11-24 19:21:46 +000010391}
10392
Chad Rosier30450e82011-12-22 22:35:21 +000010393SDValue X86TargetLowering::LowerSIGN_EXTEND_INREG(SDValue Op,
10394 SelectionDAG &DAG) const {
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010395 DebugLoc dl = Op.getDebugLoc();
Craig Toppera124f942011-11-21 01:12:36 +000010396 EVT ExtraVT = cast<VTSDNode>(Op.getOperand(1))->getVT();
10397 EVT VT = Op.getValueType();
10398
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000010399 if (Subtarget->hasXMMInt() && VT.isVector()) {
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010400 unsigned BitsDiff = VT.getScalarType().getSizeInBits() -
10401 ExtraVT.getScalarType().getSizeInBits();
10402 SDValue ShAmt = DAG.getConstant(BitsDiff, MVT::i32);
10403
10404 unsigned SHLIntrinsicsID = 0;
10405 unsigned SRAIntrinsicsID = 0;
10406 switch (VT.getSimpleVT().SimpleTy) {
10407 default:
10408 return SDValue();
Craig Toppera124f942011-11-21 01:12:36 +000010409 case MVT::v4i32:
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010410 SHLIntrinsicsID = Intrinsic::x86_sse2_pslli_d;
10411 SRAIntrinsicsID = Intrinsic::x86_sse2_psrai_d;
10412 break;
Craig Toppera124f942011-11-21 01:12:36 +000010413 case MVT::v8i16:
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010414 SHLIntrinsicsID = Intrinsic::x86_sse2_pslli_w;
10415 SRAIntrinsicsID = Intrinsic::x86_sse2_psrai_w;
10416 break;
Craig Toppera124f942011-11-21 01:12:36 +000010417 case MVT::v8i32:
10418 case MVT::v16i16:
10419 if (!Subtarget->hasAVX())
10420 return SDValue();
10421 if (!Subtarget->hasAVX2()) {
10422 // needs to be split
10423 int NumElems = VT.getVectorNumElements();
10424 SDValue Idx0 = DAG.getConstant(0, MVT::i32);
10425 SDValue Idx1 = DAG.getConstant(NumElems/2, MVT::i32);
10426
10427 // Extract the LHS vectors
10428 SDValue LHS = Op.getOperand(0);
10429 SDValue LHS1 = Extract128BitVector(LHS, Idx0, DAG, dl);
10430 SDValue LHS2 = Extract128BitVector(LHS, Idx1, DAG, dl);
10431
10432 MVT EltVT = VT.getVectorElementType().getSimpleVT();
10433 EVT NewVT = MVT::getVectorVT(EltVT, NumElems/2);
10434
10435 EVT ExtraEltVT = ExtraVT.getVectorElementType();
10436 int ExtraNumElems = ExtraVT.getVectorNumElements();
10437 ExtraVT = EVT::getVectorVT(*DAG.getContext(), ExtraEltVT,
10438 ExtraNumElems/2);
10439 SDValue Extra = DAG.getValueType(ExtraVT);
10440
10441 LHS1 = DAG.getNode(Op.getOpcode(), dl, NewVT, LHS1, Extra);
10442 LHS2 = DAG.getNode(Op.getOpcode(), dl, NewVT, LHS2, Extra);
10443
10444 return DAG.getNode(ISD::CONCAT_VECTORS, dl, VT, LHS1, LHS2);;
10445 }
10446 if (VT == MVT::v8i32) {
10447 SHLIntrinsicsID = Intrinsic::x86_avx2_pslli_d;
10448 SRAIntrinsicsID = Intrinsic::x86_avx2_psrai_d;
10449 } else {
10450 SHLIntrinsicsID = Intrinsic::x86_avx2_pslli_w;
10451 SRAIntrinsicsID = Intrinsic::x86_avx2_psrai_w;
10452 }
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010453 }
10454
10455 SDValue Tmp1 = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10456 DAG.getConstant(SHLIntrinsicsID, MVT::i32),
Craig Toppera124f942011-11-21 01:12:36 +000010457 Op.getOperand(0), ShAmt);
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010458
Nadav Rotema7934dd2011-10-10 19:31:45 +000010459 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, dl, VT,
10460 DAG.getConstant(SRAIntrinsicsID, MVT::i32),
10461 Tmp1, ShAmt);
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010462 }
10463
10464 return SDValue();
10465}
10466
10467
Eric Christopher9a9d2752010-07-22 02:48:34 +000010468SDValue X86TargetLowering::LowerMEMBARRIER(SDValue Op, SelectionDAG &DAG) const{
10469 DebugLoc dl = Op.getDebugLoc();
Michael J. Spencerec38de22010-10-10 22:04:20 +000010470
Eric Christopher77ed1352011-07-08 00:04:56 +000010471 // Go ahead and emit the fence on x86-64 even if we asked for no-sse2.
10472 // There isn't any reason to disable it if the target processor supports it.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000010473 if (!Subtarget->hasXMMInt() && !Subtarget->is64Bit()) {
Eric Christopherc0b2a202010-08-14 21:51:50 +000010474 SDValue Chain = Op.getOperand(0);
Eric Christopher77ed1352011-07-08 00:04:56 +000010475 SDValue Zero = DAG.getConstant(0, MVT::i32);
Eric Christopherc0b2a202010-08-14 21:51:50 +000010476 SDValue Ops[] = {
10477 DAG.getRegister(X86::ESP, MVT::i32), // Base
10478 DAG.getTargetConstant(1, MVT::i8), // Scale
10479 DAG.getRegister(0, MVT::i32), // Index
10480 DAG.getTargetConstant(0, MVT::i32), // Disp
10481 DAG.getRegister(0, MVT::i32), // Segment.
10482 Zero,
10483 Chain
10484 };
Michael J. Spencerec38de22010-10-10 22:04:20 +000010485 SDNode *Res =
Eric Christopherc0b2a202010-08-14 21:51:50 +000010486 DAG.getMachineNode(X86::OR32mrLocked, dl, MVT::Other, Ops,
10487 array_lengthof(Ops));
10488 return SDValue(Res, 0);
Eric Christopherb6729dc2010-08-04 23:03:04 +000010489 }
Michael J. Spencerec38de22010-10-10 22:04:20 +000010490
Eric Christopher9a9d2752010-07-22 02:48:34 +000010491 unsigned isDev = cast<ConstantSDNode>(Op.getOperand(5))->getZExtValue();
Chris Lattner132929a2010-08-14 17:26:09 +000010492 if (!isDev)
Eric Christopher9a9d2752010-07-22 02:48:34 +000010493 return DAG.getNode(X86ISD::MEMBARRIER, dl, MVT::Other, Op.getOperand(0));
Michael J. Spencerec38de22010-10-10 22:04:20 +000010494
Chris Lattner132929a2010-08-14 17:26:09 +000010495 unsigned Op1 = cast<ConstantSDNode>(Op.getOperand(1))->getZExtValue();
10496 unsigned Op2 = cast<ConstantSDNode>(Op.getOperand(2))->getZExtValue();
10497 unsigned Op3 = cast<ConstantSDNode>(Op.getOperand(3))->getZExtValue();
10498 unsigned Op4 = cast<ConstantSDNode>(Op.getOperand(4))->getZExtValue();
Michael J. Spencerec38de22010-10-10 22:04:20 +000010499
Chris Lattner132929a2010-08-14 17:26:09 +000010500 // def : Pat<(membarrier (i8 0), (i8 0), (i8 0), (i8 1), (i8 1)), (SFENCE)>;
10501 if (!Op1 && !Op2 && !Op3 && Op4)
10502 return DAG.getNode(X86ISD::SFENCE, dl, MVT::Other, Op.getOperand(0));
Michael J. Spencerec38de22010-10-10 22:04:20 +000010503
Chris Lattner132929a2010-08-14 17:26:09 +000010504 // def : Pat<(membarrier (i8 1), (i8 0), (i8 0), (i8 0), (i8 1)), (LFENCE)>;
10505 if (Op1 && !Op2 && !Op3 && !Op4)
10506 return DAG.getNode(X86ISD::LFENCE, dl, MVT::Other, Op.getOperand(0));
Michael J. Spencerec38de22010-10-10 22:04:20 +000010507
10508 // def : Pat<(membarrier (i8 imm), (i8 imm), (i8 imm), (i8 imm), (i8 1)),
Chris Lattner132929a2010-08-14 17:26:09 +000010509 // (MFENCE)>;
10510 return DAG.getNode(X86ISD::MFENCE, dl, MVT::Other, Op.getOperand(0));
Eric Christopher9a9d2752010-07-22 02:48:34 +000010511}
10512
Eli Friedman14648462011-07-27 22:21:52 +000010513SDValue X86TargetLowering::LowerATOMIC_FENCE(SDValue Op,
10514 SelectionDAG &DAG) const {
10515 DebugLoc dl = Op.getDebugLoc();
10516 AtomicOrdering FenceOrdering = static_cast<AtomicOrdering>(
10517 cast<ConstantSDNode>(Op.getOperand(1))->getZExtValue());
10518 SynchronizationScope FenceScope = static_cast<SynchronizationScope>(
10519 cast<ConstantSDNode>(Op.getOperand(2))->getZExtValue());
10520
10521 // The only fence that needs an instruction is a sequentially-consistent
10522 // cross-thread fence.
10523 if (FenceOrdering == SequentiallyConsistent && FenceScope == CrossThread) {
10524 // Use mfence if we have SSE2 or we're on x86-64 (even if we asked for
10525 // no-sse2). There isn't any reason to disable it if the target processor
10526 // supports it.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000010527 if (Subtarget->hasXMMInt() || Subtarget->is64Bit())
Eli Friedman14648462011-07-27 22:21:52 +000010528 return DAG.getNode(X86ISD::MFENCE, dl, MVT::Other, Op.getOperand(0));
10529
10530 SDValue Chain = Op.getOperand(0);
10531 SDValue Zero = DAG.getConstant(0, MVT::i32);
10532 SDValue Ops[] = {
10533 DAG.getRegister(X86::ESP, MVT::i32), // Base
10534 DAG.getTargetConstant(1, MVT::i8), // Scale
10535 DAG.getRegister(0, MVT::i32), // Index
10536 DAG.getTargetConstant(0, MVT::i32), // Disp
10537 DAG.getRegister(0, MVT::i32), // Segment.
10538 Zero,
10539 Chain
10540 };
10541 SDNode *Res =
10542 DAG.getMachineNode(X86::OR32mrLocked, dl, MVT::Other, Ops,
10543 array_lengthof(Ops));
10544 return SDValue(Res, 0);
10545 }
10546
10547 // MEMBARRIER is a compiler barrier; it codegens to a no-op.
10548 return DAG.getNode(X86ISD::MEMBARRIER, dl, MVT::Other, Op.getOperand(0));
10549}
10550
10551
Dan Gohmand858e902010-04-17 15:26:15 +000010552SDValue X86TargetLowering::LowerCMP_SWAP(SDValue Op, SelectionDAG &DAG) const {
Owen Andersone50ed302009-08-10 22:56:29 +000010553 EVT T = Op.getValueType();
Chris Lattner93c4a5b2010-09-21 23:59:42 +000010554 DebugLoc DL = Op.getDebugLoc();
Andrew Lenhartha76e2f02008-03-04 21:13:33 +000010555 unsigned Reg = 0;
10556 unsigned size = 0;
Owen Anderson825b72b2009-08-11 20:47:22 +000010557 switch(T.getSimpleVT().SimpleTy) {
Duncan Sands83ec4b62008-06-06 12:08:01 +000010558 default:
10559 assert(false && "Invalid value type!");
Owen Anderson825b72b2009-08-11 20:47:22 +000010560 case MVT::i8: Reg = X86::AL; size = 1; break;
10561 case MVT::i16: Reg = X86::AX; size = 2; break;
10562 case MVT::i32: Reg = X86::EAX; size = 4; break;
10563 case MVT::i64:
Duncan Sands1607f052008-12-01 11:39:25 +000010564 assert(Subtarget->is64Bit() && "Node not type legal!");
10565 Reg = X86::RAX; size = 8;
Andrew Lenharthd19189e2008-03-05 01:15:49 +000010566 break;
Bill Wendling61edeb52008-12-02 01:06:39 +000010567 }
Chris Lattner93c4a5b2010-09-21 23:59:42 +000010568 SDValue cpIn = DAG.getCopyToReg(Op.getOperand(0), DL, Reg,
Dale Johannesend18a4622008-09-11 03:12:59 +000010569 Op.getOperand(2), SDValue());
Dan Gohman475871a2008-07-27 21:46:04 +000010570 SDValue Ops[] = { cpIn.getValue(0),
Evan Cheng8a186ae2008-09-24 23:26:36 +000010571 Op.getOperand(1),
10572 Op.getOperand(3),
Owen Anderson825b72b2009-08-11 20:47:22 +000010573 DAG.getTargetConstant(size, MVT::i8),
Evan Cheng8a186ae2008-09-24 23:26:36 +000010574 cpIn.getValue(1) };
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +000010575 SDVTList Tys = DAG.getVTList(MVT::Other, MVT::Glue);
Chris Lattner93c4a5b2010-09-21 23:59:42 +000010576 MachineMemOperand *MMO = cast<AtomicSDNode>(Op)->getMemOperand();
10577 SDValue Result = DAG.getMemIntrinsicNode(X86ISD::LCMPXCHG_DAG, DL, Tys,
10578 Ops, 5, T, MMO);
Scott Michelfdc40a02009-02-17 22:15:04 +000010579 SDValue cpOut =
Chris Lattner93c4a5b2010-09-21 23:59:42 +000010580 DAG.getCopyFromReg(Result.getValue(0), DL, Reg, T, Result.getValue(1));
Andrew Lenharth26ed8692008-03-01 21:52:34 +000010581 return cpOut;
10582}
10583
Duncan Sands1607f052008-12-01 11:39:25 +000010584SDValue X86TargetLowering::LowerREADCYCLECOUNTER(SDValue Op,
Dan Gohmand858e902010-04-17 15:26:15 +000010585 SelectionDAG &DAG) const {
Duncan Sands1607f052008-12-01 11:39:25 +000010586 assert(Subtarget->is64Bit() && "Result not type legalized?");
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +000010587 SDVTList Tys = DAG.getVTList(MVT::Other, MVT::Glue);
Duncan Sands1607f052008-12-01 11:39:25 +000010588 SDValue TheChain = Op.getOperand(0);
Dale Johannesen6f38cb62009-02-07 19:59:05 +000010589 DebugLoc dl = Op.getDebugLoc();
Dale Johannesene4d209d2009-02-03 20:21:25 +000010590 SDValue rd = DAG.getNode(X86ISD::RDTSC_DAG, dl, Tys, &TheChain, 1);
Owen Anderson825b72b2009-08-11 20:47:22 +000010591 SDValue rax = DAG.getCopyFromReg(rd, dl, X86::RAX, MVT::i64, rd.getValue(1));
10592 SDValue rdx = DAG.getCopyFromReg(rax.getValue(1), dl, X86::RDX, MVT::i64,
Duncan Sands1607f052008-12-01 11:39:25 +000010593 rax.getValue(2));
Owen Anderson825b72b2009-08-11 20:47:22 +000010594 SDValue Tmp = DAG.getNode(ISD::SHL, dl, MVT::i64, rdx,
10595 DAG.getConstant(32, MVT::i8));
Duncan Sands1607f052008-12-01 11:39:25 +000010596 SDValue Ops[] = {
Owen Anderson825b72b2009-08-11 20:47:22 +000010597 DAG.getNode(ISD::OR, dl, MVT::i64, rax, Tmp),
Duncan Sands1607f052008-12-01 11:39:25 +000010598 rdx.getValue(1)
10599 };
Dale Johannesene4d209d2009-02-03 20:21:25 +000010600 return DAG.getMergeValues(Ops, 2, dl);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000010601}
10602
Wesley Peckbf17cfa2010-11-23 03:31:01 +000010603SDValue X86TargetLowering::LowerBITCAST(SDValue Op,
Dale Johannesen7d07b482010-05-21 00:52:33 +000010604 SelectionDAG &DAG) const {
10605 EVT SrcVT = Op.getOperand(0).getValueType();
10606 EVT DstVT = Op.getValueType();
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000010607 assert(Subtarget->is64Bit() && !Subtarget->hasXMMInt() &&
Chris Lattner2a786eb2010-12-19 20:19:20 +000010608 Subtarget->hasMMX() && "Unexpected custom BITCAST");
Michael J. Spencerec38de22010-10-10 22:04:20 +000010609 assert((DstVT == MVT::i64 ||
Dale Johannesen7d07b482010-05-21 00:52:33 +000010610 (DstVT.isVector() && DstVT.getSizeInBits()==64)) &&
Wesley Peckbf17cfa2010-11-23 03:31:01 +000010611 "Unexpected custom BITCAST");
Dale Johannesen7d07b482010-05-21 00:52:33 +000010612 // i64 <=> MMX conversions are Legal.
10613 if (SrcVT==MVT::i64 && DstVT.isVector())
10614 return Op;
10615 if (DstVT==MVT::i64 && SrcVT.isVector())
10616 return Op;
Dale Johannesene39859a2010-05-21 18:40:15 +000010617 // MMX <=> MMX conversions are Legal.
10618 if (SrcVT.isVector() && DstVT.isVector())
10619 return Op;
Dale Johannesen7d07b482010-05-21 00:52:33 +000010620 // All other conversions need to be expanded.
10621 return SDValue();
10622}
Chris Lattner5b856542010-12-20 00:59:46 +000010623
Dan Gohmand858e902010-04-17 15:26:15 +000010624SDValue X86TargetLowering::LowerLOAD_SUB(SDValue Op, SelectionDAG &DAG) const {
Dale Johannesen71d1bf52008-09-29 22:25:26 +000010625 SDNode *Node = Op.getNode();
Dale Johannesene4d209d2009-02-03 20:21:25 +000010626 DebugLoc dl = Node->getDebugLoc();
Owen Andersone50ed302009-08-10 22:56:29 +000010627 EVT T = Node->getValueType(0);
Dale Johannesene4d209d2009-02-03 20:21:25 +000010628 SDValue negOp = DAG.getNode(ISD::SUB, dl, T,
Evan Cheng242b38b2009-02-23 09:03:22 +000010629 DAG.getConstant(0, T), Node->getOperand(2));
Dale Johannesene4d209d2009-02-03 20:21:25 +000010630 return DAG.getAtomic(ISD::ATOMIC_LOAD_ADD, dl,
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010631 cast<AtomicSDNode>(Node)->getMemoryVT(),
Dale Johannesen71d1bf52008-09-29 22:25:26 +000010632 Node->getOperand(0),
10633 Node->getOperand(1), negOp,
10634 cast<AtomicSDNode>(Node)->getSrcValue(),
Eli Friedman55ba8162011-07-29 03:05:32 +000010635 cast<AtomicSDNode>(Node)->getAlignment(),
10636 cast<AtomicSDNode>(Node)->getOrdering(),
10637 cast<AtomicSDNode>(Node)->getSynchScope());
Mon P Wang63307c32008-05-05 19:05:59 +000010638}
10639
Eli Friedman327236c2011-08-24 20:50:09 +000010640static SDValue LowerATOMIC_STORE(SDValue Op, SelectionDAG &DAG) {
10641 SDNode *Node = Op.getNode();
10642 DebugLoc dl = Node->getDebugLoc();
Eli Friedmanf8f90f02011-08-24 22:33:28 +000010643 EVT VT = cast<AtomicSDNode>(Node)->getMemoryVT();
Eli Friedman327236c2011-08-24 20:50:09 +000010644
10645 // Convert seq_cst store -> xchg
Eli Friedmanf8f90f02011-08-24 22:33:28 +000010646 // Convert wide store -> swap (-> cmpxchg8b/cmpxchg16b)
10647 // FIXME: On 32-bit, store -> fist or movq would be more efficient
10648 // (The only way to get a 16-byte store is cmpxchg16b)
10649 // FIXME: 16-byte ATOMIC_SWAP isn't actually hooked up at the moment.
10650 if (cast<AtomicSDNode>(Node)->getOrdering() == SequentiallyConsistent ||
10651 !DAG.getTargetLoweringInfo().isTypeLegal(VT)) {
Eli Friedman4317fe12011-08-24 21:17:30 +000010652 SDValue Swap = DAG.getAtomic(ISD::ATOMIC_SWAP, dl,
10653 cast<AtomicSDNode>(Node)->getMemoryVT(),
10654 Node->getOperand(0),
10655 Node->getOperand(1), Node->getOperand(2),
Eli Friedmanf8f90f02011-08-24 22:33:28 +000010656 cast<AtomicSDNode>(Node)->getMemOperand(),
Eli Friedman4317fe12011-08-24 21:17:30 +000010657 cast<AtomicSDNode>(Node)->getOrdering(),
10658 cast<AtomicSDNode>(Node)->getSynchScope());
Eli Friedman327236c2011-08-24 20:50:09 +000010659 return Swap.getValue(1);
10660 }
10661 // Other atomic stores have a simple pattern.
10662 return Op;
10663}
10664
Chris Lattner5b856542010-12-20 00:59:46 +000010665static SDValue LowerADDC_ADDE_SUBC_SUBE(SDValue Op, SelectionDAG &DAG) {
10666 EVT VT = Op.getNode()->getValueType(0);
10667
10668 // Let legalize expand this if it isn't a legal type yet.
10669 if (!DAG.getTargetLoweringInfo().isTypeLegal(VT))
10670 return SDValue();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000010671
Chris Lattner5b856542010-12-20 00:59:46 +000010672 SDVTList VTs = DAG.getVTList(VT, MVT::i32);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000010673
Chris Lattner5b856542010-12-20 00:59:46 +000010674 unsigned Opc;
10675 bool ExtraOp = false;
10676 switch (Op.getOpcode()) {
10677 default: assert(0 && "Invalid code");
10678 case ISD::ADDC: Opc = X86ISD::ADD; break;
10679 case ISD::ADDE: Opc = X86ISD::ADC; ExtraOp = true; break;
10680 case ISD::SUBC: Opc = X86ISD::SUB; break;
10681 case ISD::SUBE: Opc = X86ISD::SBB; ExtraOp = true; break;
10682 }
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000010683
Chris Lattner5b856542010-12-20 00:59:46 +000010684 if (!ExtraOp)
10685 return DAG.getNode(Opc, Op->getDebugLoc(), VTs, Op.getOperand(0),
10686 Op.getOperand(1));
10687 return DAG.getNode(Opc, Op->getDebugLoc(), VTs, Op.getOperand(0),
10688 Op.getOperand(1), Op.getOperand(2));
10689}
10690
Evan Cheng0db9fe62006-04-25 20:13:52 +000010691/// LowerOperation - Provide custom lowering hooks for some operations.
10692///
Dan Gohmand858e902010-04-17 15:26:15 +000010693SDValue X86TargetLowering::LowerOperation(SDValue Op, SelectionDAG &DAG) const {
Evan Cheng0db9fe62006-04-25 20:13:52 +000010694 switch (Op.getOpcode()) {
Torok Edwinc23197a2009-07-14 16:55:14 +000010695 default: llvm_unreachable("Should not custom lower this!");
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010696 case ISD::SIGN_EXTEND_INREG: return LowerSIGN_EXTEND_INREG(Op,DAG);
Eric Christopher9a9d2752010-07-22 02:48:34 +000010697 case ISD::MEMBARRIER: return LowerMEMBARRIER(Op,DAG);
Eli Friedman14648462011-07-27 22:21:52 +000010698 case ISD::ATOMIC_FENCE: return LowerATOMIC_FENCE(Op,DAG);
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010699 case ISD::ATOMIC_CMP_SWAP: return LowerCMP_SWAP(Op,DAG);
10700 case ISD::ATOMIC_LOAD_SUB: return LowerLOAD_SUB(Op,DAG);
Eli Friedman327236c2011-08-24 20:50:09 +000010701 case ISD::ATOMIC_STORE: return LowerATOMIC_STORE(Op,DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010702 case ISD::BUILD_VECTOR: return LowerBUILD_VECTOR(Op, DAG);
Mon P Wangeb38ebf2010-01-24 00:05:03 +000010703 case ISD::CONCAT_VECTORS: return LowerCONCAT_VECTORS(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010704 case ISD::VECTOR_SHUFFLE: return LowerVECTOR_SHUFFLE(Op, DAG);
10705 case ISD::EXTRACT_VECTOR_ELT: return LowerEXTRACT_VECTOR_ELT(Op, DAG);
10706 case ISD::INSERT_VECTOR_ELT: return LowerINSERT_VECTOR_ELT(Op, DAG);
David Greene91585092011-01-26 15:38:49 +000010707 case ISD::EXTRACT_SUBVECTOR: return LowerEXTRACT_SUBVECTOR(Op, DAG);
David Greenecfe33c42011-01-26 19:13:22 +000010708 case ISD::INSERT_SUBVECTOR: return LowerINSERT_SUBVECTOR(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010709 case ISD::SCALAR_TO_VECTOR: return LowerSCALAR_TO_VECTOR(Op, DAG);
10710 case ISD::ConstantPool: return LowerConstantPool(Op, DAG);
10711 case ISD::GlobalAddress: return LowerGlobalAddress(Op, DAG);
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +000010712 case ISD::GlobalTLSAddress: return LowerGlobalTLSAddress(Op, DAG);
Bill Wendling056292f2008-09-16 21:48:12 +000010713 case ISD::ExternalSymbol: return LowerExternalSymbol(Op, DAG);
Dan Gohmanf705adb2009-10-30 01:28:02 +000010714 case ISD::BlockAddress: return LowerBlockAddress(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010715 case ISD::SHL_PARTS:
10716 case ISD::SRA_PARTS:
Nadav Rotem43012222011-05-11 08:12:09 +000010717 case ISD::SRL_PARTS: return LowerShiftParts(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010718 case ISD::SINT_TO_FP: return LowerSINT_TO_FP(Op, DAG);
Dale Johannesen1c15bf52008-10-21 20:50:01 +000010719 case ISD::UINT_TO_FP: return LowerUINT_TO_FP(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010720 case ISD::FP_TO_SINT: return LowerFP_TO_SINT(Op, DAG);
Eli Friedman948e95a2009-05-23 09:59:16 +000010721 case ISD::FP_TO_UINT: return LowerFP_TO_UINT(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010722 case ISD::FABS: return LowerFABS(Op, DAG);
10723 case ISD::FNEG: return LowerFNEG(Op, DAG);
Evan Cheng68c47cb2007-01-05 07:55:56 +000010724 case ISD::FCOPYSIGN: return LowerFCOPYSIGN(Op, DAG);
Stuart Hastings4fd0dee2011-06-01 04:39:42 +000010725 case ISD::FGETSIGN: return LowerFGETSIGN(Op, DAG);
Evan Chenge5f62042007-09-29 00:00:36 +000010726 case ISD::SETCC: return LowerSETCC(Op, DAG);
10727 case ISD::SELECT: return LowerSELECT(Op, DAG);
10728 case ISD::BRCOND: return LowerBRCOND(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010729 case ISD::JumpTable: return LowerJumpTable(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010730 case ISD::VASTART: return LowerVASTART(Op, DAG);
Dan Gohman9018e832008-05-10 01:26:14 +000010731 case ISD::VAARG: return LowerVAARG(Op, DAG);
Evan Chengae642192007-03-02 23:16:35 +000010732 case ISD::VACOPY: return LowerVACOPY(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010733 case ISD::INTRINSIC_WO_CHAIN: return LowerINTRINSIC_WO_CHAIN(Op, DAG);
Nate Begemanbcc5f362007-01-29 22:58:52 +000010734 case ISD::RETURNADDR: return LowerRETURNADDR(Op, DAG);
10735 case ISD::FRAMEADDR: return LowerFRAMEADDR(Op, DAG);
Anton Korobeynikov2365f512007-07-14 14:06:15 +000010736 case ISD::FRAME_TO_ARGS_OFFSET:
10737 return LowerFRAME_TO_ARGS_OFFSET(Op, DAG);
Anton Korobeynikov57fc00d2007-04-17 09:20:00 +000010738 case ISD::DYNAMIC_STACKALLOC: return LowerDYNAMIC_STACKALLOC(Op, DAG);
Anton Korobeynikov2365f512007-07-14 14:06:15 +000010739 case ISD::EH_RETURN: return LowerEH_RETURN(Op, DAG);
Duncan Sands4a544a72011-09-06 13:37:06 +000010740 case ISD::INIT_TRAMPOLINE: return LowerINIT_TRAMPOLINE(Op, DAG);
10741 case ISD::ADJUST_TRAMPOLINE: return LowerADJUST_TRAMPOLINE(Op, DAG);
Dan Gohman1a024862008-01-31 00:41:03 +000010742 case ISD::FLT_ROUNDS_: return LowerFLT_ROUNDS_(Op, DAG);
Evan Cheng18efe262007-12-14 02:13:44 +000010743 case ISD::CTLZ: return LowerCTLZ(Op, DAG);
Chandler Carruthacc068e2011-12-24 10:55:54 +000010744 case ISD::CTLZ_ZERO_UNDEF: return LowerCTLZ_ZERO_UNDEF(Op, DAG);
Evan Cheng18efe262007-12-14 02:13:44 +000010745 case ISD::CTTZ: return LowerCTTZ(Op, DAG);
Craig Topper13894fa2011-08-24 06:14:18 +000010746 case ISD::MUL: return LowerMUL(Op, DAG);
Nadav Rotem43012222011-05-11 08:12:09 +000010747 case ISD::SRA:
10748 case ISD::SRL:
10749 case ISD::SHL: return LowerShift(Op, DAG);
Bill Wendling74c37652008-12-09 22:08:41 +000010750 case ISD::SADDO:
10751 case ISD::UADDO:
10752 case ISD::SSUBO:
10753 case ISD::USUBO:
10754 case ISD::SMULO:
10755 case ISD::UMULO: return LowerXALUO(Op, DAG);
Duncan Sands1607f052008-12-01 11:39:25 +000010756 case ISD::READCYCLECOUNTER: return LowerREADCYCLECOUNTER(Op, DAG);
Wesley Peckbf17cfa2010-11-23 03:31:01 +000010757 case ISD::BITCAST: return LowerBITCAST(Op, DAG);
Chris Lattner5b856542010-12-20 00:59:46 +000010758 case ISD::ADDC:
10759 case ISD::ADDE:
10760 case ISD::SUBC:
10761 case ISD::SUBE: return LowerADDC_ADDE_SUBC_SUBE(Op, DAG);
Craig Topper13894fa2011-08-24 06:14:18 +000010762 case ISD::ADD: return LowerADD(Op, DAG);
10763 case ISD::SUB: return LowerSUB(Op, DAG);
Evan Cheng0db9fe62006-04-25 20:13:52 +000010764 }
Chris Lattner27a6c732007-11-24 07:07:01 +000010765}
10766
Eli Friedmanf8f90f02011-08-24 22:33:28 +000010767static void ReplaceATOMIC_LOAD(SDNode *Node,
10768 SmallVectorImpl<SDValue> &Results,
10769 SelectionDAG &DAG) {
10770 DebugLoc dl = Node->getDebugLoc();
10771 EVT VT = cast<AtomicSDNode>(Node)->getMemoryVT();
10772
10773 // Convert wide load -> cmpxchg8b/cmpxchg16b
10774 // FIXME: On 32-bit, load -> fild or movq would be more efficient
10775 // (The only way to get a 16-byte load is cmpxchg16b)
10776 // FIXME: 16-byte ATOMIC_CMP_SWAP isn't actually hooked up at the moment.
Benjamin Kramer2753ae32011-08-27 17:36:14 +000010777 SDValue Zero = DAG.getConstant(0, VT);
10778 SDValue Swap = DAG.getAtomic(ISD::ATOMIC_CMP_SWAP, dl, VT,
Eli Friedmanf8f90f02011-08-24 22:33:28 +000010779 Node->getOperand(0),
10780 Node->getOperand(1), Zero, Zero,
10781 cast<AtomicSDNode>(Node)->getMemOperand(),
10782 cast<AtomicSDNode>(Node)->getOrdering(),
10783 cast<AtomicSDNode>(Node)->getSynchScope());
10784 Results.push_back(Swap.getValue(0));
10785 Results.push_back(Swap.getValue(1));
10786}
10787
Duncan Sands1607f052008-12-01 11:39:25 +000010788void X86TargetLowering::
10789ReplaceATOMIC_BINARY_64(SDNode *Node, SmallVectorImpl<SDValue>&Results,
Dan Gohmand858e902010-04-17 15:26:15 +000010790 SelectionDAG &DAG, unsigned NewOp) const {
Dale Johannesene4d209d2009-02-03 20:21:25 +000010791 DebugLoc dl = Node->getDebugLoc();
Duncan Sands17001ce2011-10-18 12:44:00 +000010792 assert (Node->getValueType(0) == MVT::i64 &&
10793 "Only know how to expand i64 atomics");
Duncan Sands1607f052008-12-01 11:39:25 +000010794
10795 SDValue Chain = Node->getOperand(0);
10796 SDValue In1 = Node->getOperand(1);
Owen Anderson825b72b2009-08-11 20:47:22 +000010797 SDValue In2L = DAG.getNode(ISD::EXTRACT_ELEMENT, dl, MVT::i32,
Duncan Sands1607f052008-12-01 11:39:25 +000010798 Node->getOperand(2), DAG.getIntPtrConstant(0));
Owen Anderson825b72b2009-08-11 20:47:22 +000010799 SDValue In2H = DAG.getNode(ISD::EXTRACT_ELEMENT, dl, MVT::i32,
Duncan Sands1607f052008-12-01 11:39:25 +000010800 Node->getOperand(2), DAG.getIntPtrConstant(1));
Dan Gohmanc76909a2009-09-25 20:36:54 +000010801 SDValue Ops[] = { Chain, In1, In2L, In2H };
Owen Anderson825b72b2009-08-11 20:47:22 +000010802 SDVTList Tys = DAG.getVTList(MVT::i32, MVT::i32, MVT::Other);
Dan Gohmanc76909a2009-09-25 20:36:54 +000010803 SDValue Result =
10804 DAG.getMemIntrinsicNode(NewOp, dl, Tys, Ops, 4, MVT::i64,
10805 cast<MemSDNode>(Node)->getMemOperand());
Duncan Sands1607f052008-12-01 11:39:25 +000010806 SDValue OpsF[] = { Result.getValue(0), Result.getValue(1)};
Owen Anderson825b72b2009-08-11 20:47:22 +000010807 Results.push_back(DAG.getNode(ISD::BUILD_PAIR, dl, MVT::i64, OpsF, 2));
Duncan Sands1607f052008-12-01 11:39:25 +000010808 Results.push_back(Result.getValue(2));
10809}
10810
Duncan Sands126d9072008-07-04 11:47:58 +000010811/// ReplaceNodeResults - Replace a node with an illegal result type
10812/// with a new node built out of custom code.
Duncan Sands1607f052008-12-01 11:39:25 +000010813void X86TargetLowering::ReplaceNodeResults(SDNode *N,
10814 SmallVectorImpl<SDValue>&Results,
Dan Gohmand858e902010-04-17 15:26:15 +000010815 SelectionDAG &DAG) const {
Dale Johannesene4d209d2009-02-03 20:21:25 +000010816 DebugLoc dl = N->getDebugLoc();
Chris Lattner27a6c732007-11-24 07:07:01 +000010817 switch (N->getOpcode()) {
Duncan Sandsed294c42008-10-20 15:56:33 +000010818 default:
Duncan Sands1607f052008-12-01 11:39:25 +000010819 assert(false && "Do not know how to custom type legalize this operation!");
10820 return;
Nadav Rotemd0f3ef82011-07-14 11:11:14 +000010821 case ISD::SIGN_EXTEND_INREG:
Chris Lattner5b856542010-12-20 00:59:46 +000010822 case ISD::ADDC:
10823 case ISD::ADDE:
10824 case ISD::SUBC:
10825 case ISD::SUBE:
10826 // We don't want to expand or promote these.
10827 return;
Duncan Sands1607f052008-12-01 11:39:25 +000010828 case ISD::FP_TO_SINT: {
Eli Friedman948e95a2009-05-23 09:59:16 +000010829 std::pair<SDValue,SDValue> Vals =
10830 FP_TO_INTHelper(SDValue(N, 0), DAG, true);
Duncan Sands1607f052008-12-01 11:39:25 +000010831 SDValue FIST = Vals.first, StackSlot = Vals.second;
10832 if (FIST.getNode() != 0) {
Owen Andersone50ed302009-08-10 22:56:29 +000010833 EVT VT = N->getValueType(0);
Duncan Sands1607f052008-12-01 11:39:25 +000010834 // Return a load from the stack slot.
Chris Lattner51abfe42010-09-21 06:02:19 +000010835 Results.push_back(DAG.getLoad(VT, dl, FIST, StackSlot,
Pete Cooperd752e0f2011-11-08 18:42:53 +000010836 MachinePointerInfo(),
10837 false, false, false, 0));
Duncan Sands1607f052008-12-01 11:39:25 +000010838 }
10839 return;
10840 }
10841 case ISD::READCYCLECOUNTER: {
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +000010842 SDVTList Tys = DAG.getVTList(MVT::Other, MVT::Glue);
Duncan Sands1607f052008-12-01 11:39:25 +000010843 SDValue TheChain = N->getOperand(0);
Dale Johannesene4d209d2009-02-03 20:21:25 +000010844 SDValue rd = DAG.getNode(X86ISD::RDTSC_DAG, dl, Tys, &TheChain, 1);
Owen Anderson825b72b2009-08-11 20:47:22 +000010845 SDValue eax = DAG.getCopyFromReg(rd, dl, X86::EAX, MVT::i32,
Dale Johannesendd64c412009-02-04 00:33:20 +000010846 rd.getValue(1));
Owen Anderson825b72b2009-08-11 20:47:22 +000010847 SDValue edx = DAG.getCopyFromReg(eax.getValue(1), dl, X86::EDX, MVT::i32,
Duncan Sands1607f052008-12-01 11:39:25 +000010848 eax.getValue(2));
10849 // Use a buildpair to merge the two 32-bit values into a 64-bit one.
10850 SDValue Ops[] = { eax, edx };
Owen Anderson825b72b2009-08-11 20:47:22 +000010851 Results.push_back(DAG.getNode(ISD::BUILD_PAIR, dl, MVT::i64, Ops, 2));
Duncan Sands1607f052008-12-01 11:39:25 +000010852 Results.push_back(edx.getValue(1));
10853 return;
10854 }
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010855 case ISD::ATOMIC_CMP_SWAP: {
Owen Andersone50ed302009-08-10 22:56:29 +000010856 EVT T = N->getValueType(0);
Benjamin Kramer2753ae32011-08-27 17:36:14 +000010857 assert((T == MVT::i64 || T == MVT::i128) && "can only expand cmpxchg pair");
Eli Friedman43f51ae2011-08-26 21:21:21 +000010858 bool Regs64bit = T == MVT::i128;
10859 EVT HalfT = Regs64bit ? MVT::i64 : MVT::i32;
Duncan Sands1607f052008-12-01 11:39:25 +000010860 SDValue cpInL, cpInH;
Eli Friedman43f51ae2011-08-26 21:21:21 +000010861 cpInL = DAG.getNode(ISD::EXTRACT_ELEMENT, dl, HalfT, N->getOperand(2),
10862 DAG.getConstant(0, HalfT));
10863 cpInH = DAG.getNode(ISD::EXTRACT_ELEMENT, dl, HalfT, N->getOperand(2),
10864 DAG.getConstant(1, HalfT));
10865 cpInL = DAG.getCopyToReg(N->getOperand(0), dl,
10866 Regs64bit ? X86::RAX : X86::EAX,
10867 cpInL, SDValue());
10868 cpInH = DAG.getCopyToReg(cpInL.getValue(0), dl,
10869 Regs64bit ? X86::RDX : X86::EDX,
10870 cpInH, cpInL.getValue(1));
Duncan Sands1607f052008-12-01 11:39:25 +000010871 SDValue swapInL, swapInH;
Eli Friedman43f51ae2011-08-26 21:21:21 +000010872 swapInL = DAG.getNode(ISD::EXTRACT_ELEMENT, dl, HalfT, N->getOperand(3),
10873 DAG.getConstant(0, HalfT));
10874 swapInH = DAG.getNode(ISD::EXTRACT_ELEMENT, dl, HalfT, N->getOperand(3),
10875 DAG.getConstant(1, HalfT));
10876 swapInL = DAG.getCopyToReg(cpInH.getValue(0), dl,
10877 Regs64bit ? X86::RBX : X86::EBX,
10878 swapInL, cpInH.getValue(1));
10879 swapInH = DAG.getCopyToReg(swapInL.getValue(0), dl,
10880 Regs64bit ? X86::RCX : X86::ECX,
10881 swapInH, swapInL.getValue(1));
Duncan Sands1607f052008-12-01 11:39:25 +000010882 SDValue Ops[] = { swapInH.getValue(0),
10883 N->getOperand(1),
10884 swapInH.getValue(1) };
Chris Lattnerf1b4eaf2010-12-21 02:38:05 +000010885 SDVTList Tys = DAG.getVTList(MVT::Other, MVT::Glue);
Andrew Trick1a2cf3b2010-10-11 19:02:04 +000010886 MachineMemOperand *MMO = cast<AtomicSDNode>(N)->getMemOperand();
Eli Friedman43f51ae2011-08-26 21:21:21 +000010887 unsigned Opcode = Regs64bit ? X86ISD::LCMPXCHG16_DAG :
10888 X86ISD::LCMPXCHG8_DAG;
10889 SDValue Result = DAG.getMemIntrinsicNode(Opcode, dl, Tys,
Andrew Trick1a2cf3b2010-10-11 19:02:04 +000010890 Ops, 3, T, MMO);
Eli Friedman43f51ae2011-08-26 21:21:21 +000010891 SDValue cpOutL = DAG.getCopyFromReg(Result.getValue(0), dl,
10892 Regs64bit ? X86::RAX : X86::EAX,
10893 HalfT, Result.getValue(1));
10894 SDValue cpOutH = DAG.getCopyFromReg(cpOutL.getValue(1), dl,
10895 Regs64bit ? X86::RDX : X86::EDX,
10896 HalfT, cpOutL.getValue(2));
Duncan Sands1607f052008-12-01 11:39:25 +000010897 SDValue OpsF[] = { cpOutL.getValue(0), cpOutH.getValue(0)};
Eli Friedman43f51ae2011-08-26 21:21:21 +000010898 Results.push_back(DAG.getNode(ISD::BUILD_PAIR, dl, T, OpsF, 2));
Duncan Sands1607f052008-12-01 11:39:25 +000010899 Results.push_back(cpOutH.getValue(1));
10900 return;
10901 }
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010902 case ISD::ATOMIC_LOAD_ADD:
Duncan Sands1607f052008-12-01 11:39:25 +000010903 ReplaceATOMIC_BINARY_64(N, Results, DAG, X86ISD::ATOMADD64_DAG);
10904 return;
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010905 case ISD::ATOMIC_LOAD_AND:
Duncan Sands1607f052008-12-01 11:39:25 +000010906 ReplaceATOMIC_BINARY_64(N, Results, DAG, X86ISD::ATOMAND64_DAG);
10907 return;
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010908 case ISD::ATOMIC_LOAD_NAND:
Duncan Sands1607f052008-12-01 11:39:25 +000010909 ReplaceATOMIC_BINARY_64(N, Results, DAG, X86ISD::ATOMNAND64_DAG);
10910 return;
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010911 case ISD::ATOMIC_LOAD_OR:
Duncan Sands1607f052008-12-01 11:39:25 +000010912 ReplaceATOMIC_BINARY_64(N, Results, DAG, X86ISD::ATOMOR64_DAG);
10913 return;
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010914 case ISD::ATOMIC_LOAD_SUB:
Duncan Sands1607f052008-12-01 11:39:25 +000010915 ReplaceATOMIC_BINARY_64(N, Results, DAG, X86ISD::ATOMSUB64_DAG);
10916 return;
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010917 case ISD::ATOMIC_LOAD_XOR:
Duncan Sands1607f052008-12-01 11:39:25 +000010918 ReplaceATOMIC_BINARY_64(N, Results, DAG, X86ISD::ATOMXOR64_DAG);
10919 return;
Dan Gohman0b1d4a72008-12-23 21:37:04 +000010920 case ISD::ATOMIC_SWAP:
Duncan Sands1607f052008-12-01 11:39:25 +000010921 ReplaceATOMIC_BINARY_64(N, Results, DAG, X86ISD::ATOMSWAP64_DAG);
10922 return;
Eli Friedmanf8f90f02011-08-24 22:33:28 +000010923 case ISD::ATOMIC_LOAD:
10924 ReplaceATOMIC_LOAD(N, Results, DAG);
Chris Lattner27a6c732007-11-24 07:07:01 +000010925 }
Evan Cheng0db9fe62006-04-25 20:13:52 +000010926}
10927
Evan Cheng72261582005-12-20 06:22:03 +000010928const char *X86TargetLowering::getTargetNodeName(unsigned Opcode) const {
10929 switch (Opcode) {
10930 default: return NULL;
Evan Cheng18efe262007-12-14 02:13:44 +000010931 case X86ISD::BSF: return "X86ISD::BSF";
10932 case X86ISD::BSR: return "X86ISD::BSR";
Evan Chenge3413162006-01-09 18:33:28 +000010933 case X86ISD::SHLD: return "X86ISD::SHLD";
10934 case X86ISD::SHRD: return "X86ISD::SHRD";
Evan Chengef6ffb12006-01-31 03:14:29 +000010935 case X86ISD::FAND: return "X86ISD::FAND";
Evan Cheng68c47cb2007-01-05 07:55:56 +000010936 case X86ISD::FOR: return "X86ISD::FOR";
Evan Cheng223547a2006-01-31 22:28:30 +000010937 case X86ISD::FXOR: return "X86ISD::FXOR";
Evan Cheng68c47cb2007-01-05 07:55:56 +000010938 case X86ISD::FSRL: return "X86ISD::FSRL";
Evan Chenga3195e82006-01-12 22:54:21 +000010939 case X86ISD::FILD: return "X86ISD::FILD";
Evan Chenge3de85b2006-02-04 02:20:30 +000010940 case X86ISD::FILD_FLAG: return "X86ISD::FILD_FLAG";
Evan Cheng72261582005-12-20 06:22:03 +000010941 case X86ISD::FP_TO_INT16_IN_MEM: return "X86ISD::FP_TO_INT16_IN_MEM";
10942 case X86ISD::FP_TO_INT32_IN_MEM: return "X86ISD::FP_TO_INT32_IN_MEM";
10943 case X86ISD::FP_TO_INT64_IN_MEM: return "X86ISD::FP_TO_INT64_IN_MEM";
Evan Chengb077b842005-12-21 02:39:21 +000010944 case X86ISD::FLD: return "X86ISD::FLD";
Evan Chengd90eb7f2006-01-05 00:27:02 +000010945 case X86ISD::FST: return "X86ISD::FST";
Evan Cheng72261582005-12-20 06:22:03 +000010946 case X86ISD::CALL: return "X86ISD::CALL";
Evan Cheng72261582005-12-20 06:22:03 +000010947 case X86ISD::RDTSC_DAG: return "X86ISD::RDTSC_DAG";
Dan Gohmanc7a37d42008-12-23 22:45:23 +000010948 case X86ISD::BT: return "X86ISD::BT";
Evan Cheng72261582005-12-20 06:22:03 +000010949 case X86ISD::CMP: return "X86ISD::CMP";
Evan Cheng6be2c582006-04-05 23:38:46 +000010950 case X86ISD::COMI: return "X86ISD::COMI";
10951 case X86ISD::UCOMI: return "X86ISD::UCOMI";
Evan Chengd5781fc2005-12-21 20:21:51 +000010952 case X86ISD::SETCC: return "X86ISD::SETCC";
Evan Chengad9c0a32009-12-15 00:53:42 +000010953 case X86ISD::SETCC_CARRY: return "X86ISD::SETCC_CARRY";
Stuart Hastings865f0932011-06-03 23:53:54 +000010954 case X86ISD::FSETCCsd: return "X86ISD::FSETCCsd";
10955 case X86ISD::FSETCCss: return "X86ISD::FSETCCss";
Evan Cheng72261582005-12-20 06:22:03 +000010956 case X86ISD::CMOV: return "X86ISD::CMOV";
10957 case X86ISD::BRCOND: return "X86ISD::BRCOND";
Evan Chengb077b842005-12-21 02:39:21 +000010958 case X86ISD::RET_FLAG: return "X86ISD::RET_FLAG";
Evan Cheng8df346b2006-03-04 01:12:00 +000010959 case X86ISD::REP_STOS: return "X86ISD::REP_STOS";
10960 case X86ISD::REP_MOVS: return "X86ISD::REP_MOVS";
Evan Cheng7ccced62006-02-18 00:15:05 +000010961 case X86ISD::GlobalBaseReg: return "X86ISD::GlobalBaseReg";
Evan Cheng020d2e82006-02-23 20:41:18 +000010962 case X86ISD::Wrapper: return "X86ISD::Wrapper";
Chris Lattner18c59872009-06-27 04:16:01 +000010963 case X86ISD::WrapperRIP: return "X86ISD::WrapperRIP";
Nate Begeman14d12ca2008-02-11 04:19:36 +000010964 case X86ISD::PEXTRB: return "X86ISD::PEXTRB";
Evan Chengb067a1e2006-03-31 19:22:53 +000010965 case X86ISD::PEXTRW: return "X86ISD::PEXTRW";
Nate Begeman14d12ca2008-02-11 04:19:36 +000010966 case X86ISD::INSERTPS: return "X86ISD::INSERTPS";
10967 case X86ISD::PINSRB: return "X86ISD::PINSRB";
Evan Cheng653159f2006-03-31 21:55:24 +000010968 case X86ISD::PINSRW: return "X86ISD::PINSRW";
Nate Begemanb9a47b82009-02-23 08:49:38 +000010969 case X86ISD::PSHUFB: return "X86ISD::PSHUFB";
Bruno Cardoso Lopesc1af4772011-07-13 21:36:47 +000010970 case X86ISD::ANDNP: return "X86ISD::ANDNP";
Craig Topper31133842011-11-19 07:33:10 +000010971 case X86ISD::PSIGN: return "X86ISD::PSIGN";
Craig Toppere6a62772011-11-13 17:31:07 +000010972 case X86ISD::BLENDV: return "X86ISD::BLENDV";
Craig Topperfe033152011-12-06 09:31:36 +000010973 case X86ISD::HADD: return "X86ISD::HADD";
10974 case X86ISD::HSUB: return "X86ISD::HSUB";
Craig Toppere6a62772011-11-13 17:31:07 +000010975 case X86ISD::FHADD: return "X86ISD::FHADD";
10976 case X86ISD::FHSUB: return "X86ISD::FHSUB";
Evan Cheng8ca29322006-11-10 21:43:37 +000010977 case X86ISD::FMAX: return "X86ISD::FMAX";
10978 case X86ISD::FMIN: return "X86ISD::FMIN";
Dan Gohman20382522007-07-10 00:05:58 +000010979 case X86ISD::FRSQRT: return "X86ISD::FRSQRT";
10980 case X86ISD::FRCP: return "X86ISD::FRCP";
Lauro Ramos Venanciob3a04172007-04-20 21:38:10 +000010981 case X86ISD::TLSADDR: return "X86ISD::TLSADDR";
Eric Christopher30ef0e52010-06-03 04:07:48 +000010982 case X86ISD::TLSCALL: return "X86ISD::TLSCALL";
Anton Korobeynikov2365f512007-07-14 14:06:15 +000010983 case X86ISD::EH_RETURN: return "X86ISD::EH_RETURN";
Arnold Schwaighoferc85e1712007-10-11 19:40:01 +000010984 case X86ISD::TC_RETURN: return "X86ISD::TC_RETURN";
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +000010985 case X86ISD::FNSTCW16m: return "X86ISD::FNSTCW16m";
Evan Cheng7e2ff772008-05-08 00:57:18 +000010986 case X86ISD::LCMPXCHG_DAG: return "X86ISD::LCMPXCHG_DAG";
10987 case X86ISD::LCMPXCHG8_DAG: return "X86ISD::LCMPXCHG8_DAG";
Dale Johannesen48c1bc22008-10-02 18:53:47 +000010988 case X86ISD::ATOMADD64_DAG: return "X86ISD::ATOMADD64_DAG";
10989 case X86ISD::ATOMSUB64_DAG: return "X86ISD::ATOMSUB64_DAG";
10990 case X86ISD::ATOMOR64_DAG: return "X86ISD::ATOMOR64_DAG";
10991 case X86ISD::ATOMXOR64_DAG: return "X86ISD::ATOMXOR64_DAG";
10992 case X86ISD::ATOMAND64_DAG: return "X86ISD::ATOMAND64_DAG";
10993 case X86ISD::ATOMNAND64_DAG: return "X86ISD::ATOMNAND64_DAG";
Evan Chengd880b972008-05-09 21:53:03 +000010994 case X86ISD::VZEXT_MOVL: return "X86ISD::VZEXT_MOVL";
10995 case X86ISD::VZEXT_LOAD: return "X86ISD::VZEXT_LOAD";
Evan Chengf26ffe92008-05-29 08:22:04 +000010996 case X86ISD::VSHL: return "X86ISD::VSHL";
10997 case X86ISD::VSRL: return "X86ISD::VSRL";
Nate Begeman30a0de92008-07-17 16:51:19 +000010998 case X86ISD::CMPPD: return "X86ISD::CMPPD";
10999 case X86ISD::CMPPS: return "X86ISD::CMPPS";
11000 case X86ISD::PCMPEQB: return "X86ISD::PCMPEQB";
11001 case X86ISD::PCMPEQW: return "X86ISD::PCMPEQW";
11002 case X86ISD::PCMPEQD: return "X86ISD::PCMPEQD";
11003 case X86ISD::PCMPEQQ: return "X86ISD::PCMPEQQ";
11004 case X86ISD::PCMPGTB: return "X86ISD::PCMPGTB";
11005 case X86ISD::PCMPGTW: return "X86ISD::PCMPGTW";
11006 case X86ISD::PCMPGTD: return "X86ISD::PCMPGTD";
11007 case X86ISD::PCMPGTQ: return "X86ISD::PCMPGTQ";
Bill Wendlingab55ebd2008-12-12 00:56:36 +000011008 case X86ISD::ADD: return "X86ISD::ADD";
11009 case X86ISD::SUB: return "X86ISD::SUB";
Chris Lattner5b856542010-12-20 00:59:46 +000011010 case X86ISD::ADC: return "X86ISD::ADC";
11011 case X86ISD::SBB: return "X86ISD::SBB";
Bill Wendlingd350e022008-12-12 21:15:41 +000011012 case X86ISD::SMUL: return "X86ISD::SMUL";
11013 case X86ISD::UMUL: return "X86ISD::UMUL";
Dan Gohman076aee32009-03-04 19:44:21 +000011014 case X86ISD::INC: return "X86ISD::INC";
11015 case X86ISD::DEC: return "X86ISD::DEC";
Dan Gohmane220c4b2009-09-18 19:59:53 +000011016 case X86ISD::OR: return "X86ISD::OR";
11017 case X86ISD::XOR: return "X86ISD::XOR";
11018 case X86ISD::AND: return "X86ISD::AND";
Craig Topper54a11172011-10-14 07:06:56 +000011019 case X86ISD::ANDN: return "X86ISD::ANDN";
Craig Toppere6a62772011-11-13 17:31:07 +000011020 case X86ISD::BLSI: return "X86ISD::BLSI";
11021 case X86ISD::BLSMSK: return "X86ISD::BLSMSK";
11022 case X86ISD::BLSR: return "X86ISD::BLSR";
Evan Cheng73f24c92009-03-30 21:36:47 +000011023 case X86ISD::MUL_IMM: return "X86ISD::MUL_IMM";
Eric Christopher71c67532009-07-29 00:28:05 +000011024 case X86ISD::PTEST: return "X86ISD::PTEST";
Bruno Cardoso Lopes045573c2010-08-10 23:25:42 +000011025 case X86ISD::TESTP: return "X86ISD::TESTP";
Bruno Cardoso Lopes3157ef12010-08-20 22:55:05 +000011026 case X86ISD::PALIGN: return "X86ISD::PALIGN";
11027 case X86ISD::PSHUFD: return "X86ISD::PSHUFD";
11028 case X86ISD::PSHUFHW: return "X86ISD::PSHUFHW";
11029 case X86ISD::PSHUFHW_LD: return "X86ISD::PSHUFHW_LD";
11030 case X86ISD::PSHUFLW: return "X86ISD::PSHUFLW";
11031 case X86ISD::PSHUFLW_LD: return "X86ISD::PSHUFLW_LD";
11032 case X86ISD::SHUFPS: return "X86ISD::SHUFPS";
11033 case X86ISD::SHUFPD: return "X86ISD::SHUFPD";
11034 case X86ISD::MOVLHPS: return "X86ISD::MOVLHPS";
Bruno Cardoso Lopes3157ef12010-08-20 22:55:05 +000011035 case X86ISD::MOVLHPD: return "X86ISD::MOVLHPD";
Bruno Cardoso Lopesf2db5b42010-08-31 21:15:21 +000011036 case X86ISD::MOVHLPS: return "X86ISD::MOVHLPS";
Bruno Cardoso Lopes56098f52010-09-01 05:08:25 +000011037 case X86ISD::MOVLPS: return "X86ISD::MOVLPS";
11038 case X86ISD::MOVLPD: return "X86ISD::MOVLPD";
Bruno Cardoso Lopes3157ef12010-08-20 22:55:05 +000011039 case X86ISD::MOVDDUP: return "X86ISD::MOVDDUP";
11040 case X86ISD::MOVSHDUP: return "X86ISD::MOVSHDUP";
11041 case X86ISD::MOVSLDUP: return "X86ISD::MOVSLDUP";
11042 case X86ISD::MOVSHDUP_LD: return "X86ISD::MOVSHDUP_LD";
11043 case X86ISD::MOVSLDUP_LD: return "X86ISD::MOVSLDUP_LD";
11044 case X86ISD::MOVSD: return "X86ISD::MOVSD";
11045 case X86ISD::MOVSS: return "X86ISD::MOVSS";
Craig Topper34671b82011-12-06 08:21:25 +000011046 case X86ISD::UNPCKL: return "X86ISD::UNPCKL";
11047 case X86ISD::UNPCKH: return "X86ISD::UNPCKH";
Bruno Cardoso Lopes0e6d2302011-08-17 02:29:19 +000011048 case X86ISD::VBROADCAST: return "X86ISD::VBROADCAST";
Craig Topper316cd2a2011-11-30 06:25:25 +000011049 case X86ISD::VPERMILP: return "X86ISD::VPERMILP";
Craig Topperec24e612011-11-30 07:47:51 +000011050 case X86ISD::VPERM2X128: return "X86ISD::VPERM2X128";
Dan Gohmand6708ea2009-08-15 01:38:56 +000011051 case X86ISD::VASTART_SAVE_XMM_REGS: return "X86ISD::VASTART_SAVE_XMM_REGS";
Dan Gohman320afb82010-10-12 18:00:49 +000011052 case X86ISD::VAARG_64: return "X86ISD::VAARG_64";
Michael J. Spencere9c253e2010-10-21 01:41:01 +000011053 case X86ISD::WIN_ALLOCA: return "X86ISD::WIN_ALLOCA";
Eli Friedman14648462011-07-27 22:21:52 +000011054 case X86ISD::MEMBARRIER: return "X86ISD::MEMBARRIER";
Rafael Espindolad07b7ec2011-08-30 19:43:21 +000011055 case X86ISD::SEG_ALLOCA: return "X86ISD::SEG_ALLOCA";
Evan Cheng72261582005-12-20 06:22:03 +000011056 }
11057}
Evan Cheng3a03ebb2005-12-21 23:05:39 +000011058
Chris Lattnerc9addb72007-03-30 23:15:24 +000011059// isLegalAddressingMode - Return true if the addressing mode represented
11060// by AM is legal for this target, for a load/store of the specified type.
Scott Michelfdc40a02009-02-17 22:15:04 +000011061bool X86TargetLowering::isLegalAddressingMode(const AddrMode &AM,
Chris Lattnerdb125cf2011-07-18 04:54:35 +000011062 Type *Ty) const {
Chris Lattnerc9addb72007-03-30 23:15:24 +000011063 // X86 supports extremely general addressing modes.
Anton Korobeynikovb5e01722009-08-05 23:01:26 +000011064 CodeModel::Model M = getTargetMachine().getCodeModel();
Dan Gohman92b651f2010-08-24 15:55:12 +000011065 Reloc::Model R = getTargetMachine().getRelocationModel();
Scott Michelfdc40a02009-02-17 22:15:04 +000011066
Chris Lattnerc9addb72007-03-30 23:15:24 +000011067 // X86 allows a sign-extended 32-bit immediate field as a displacement.
Anton Korobeynikovb5e01722009-08-05 23:01:26 +000011068 if (!X86::isOffsetSuitableForCodeModel(AM.BaseOffs, M, AM.BaseGV != NULL))
Chris Lattnerc9addb72007-03-30 23:15:24 +000011069 return false;
Scott Michelfdc40a02009-02-17 22:15:04 +000011070
Chris Lattnerc9addb72007-03-30 23:15:24 +000011071 if (AM.BaseGV) {
Chris Lattnerdfed4132009-07-10 07:38:24 +000011072 unsigned GVFlags =
11073 Subtarget->ClassifyGlobalReference(AM.BaseGV, getTargetMachine());
Anton Korobeynikovb5e01722009-08-05 23:01:26 +000011074
Chris Lattnerdfed4132009-07-10 07:38:24 +000011075 // If a reference to this global requires an extra load, we can't fold it.
11076 if (isGlobalStubReference(GVFlags))
Chris Lattnerc9addb72007-03-30 23:15:24 +000011077 return false;
Anton Korobeynikovb5e01722009-08-05 23:01:26 +000011078
Chris Lattnerdfed4132009-07-10 07:38:24 +000011079 // If BaseGV requires a register for the PIC base, we cannot also have a
11080 // BaseReg specified.
11081 if (AM.HasBaseReg && isGlobalRelativeToPICBase(GVFlags))
Dale Johannesen203af582008-12-05 21:47:27 +000011082 return false;
Evan Cheng52787842007-08-01 23:46:47 +000011083
Anton Korobeynikovb5e01722009-08-05 23:01:26 +000011084 // If lower 4G is not available, then we must use rip-relative addressing.
Dan Gohman92b651f2010-08-24 15:55:12 +000011085 if ((M != CodeModel::Small || R != Reloc::Static) &&
11086 Subtarget->is64Bit() && (AM.BaseOffs || AM.Scale > 1))
Anton Korobeynikovb5e01722009-08-05 23:01:26 +000011087 return false;
Chris Lattnerc9addb72007-03-30 23:15:24 +000011088 }
Scott Michelfdc40a02009-02-17 22:15:04 +000011089
Chris Lattnerc9addb72007-03-30 23:15:24 +000011090 switch (AM.Scale) {
11091 case 0:
11092 case 1:
11093 case 2:
11094 case 4:
11095 case 8:
11096 // These scales always work.
11097 break;
11098 case 3:
11099 case 5:
11100 case 9:
11101 // These scales are formed with basereg+scalereg. Only accept if there is
11102 // no basereg yet.
11103 if (AM.HasBaseReg)
11104 return false;
11105 break;
11106 default: // Other stuff never works.
11107 return false;
11108 }
Scott Michelfdc40a02009-02-17 22:15:04 +000011109
Chris Lattnerc9addb72007-03-30 23:15:24 +000011110 return true;
11111}
11112
11113
Chris Lattnerdb125cf2011-07-18 04:54:35 +000011114bool X86TargetLowering::isTruncateFree(Type *Ty1, Type *Ty2) const {
Duncan Sandsb0bc6c32010-02-15 16:12:20 +000011115 if (!Ty1->isIntegerTy() || !Ty2->isIntegerTy())
Evan Cheng2bd122c2007-10-26 01:56:11 +000011116 return false;
Evan Chenge127a732007-10-29 07:57:50 +000011117 unsigned NumBits1 = Ty1->getPrimitiveSizeInBits();
11118 unsigned NumBits2 = Ty2->getPrimitiveSizeInBits();
Evan Cheng260e07e2008-03-20 02:18:41 +000011119 if (NumBits1 <= NumBits2)
Evan Chenge127a732007-10-29 07:57:50 +000011120 return false;
Dan Gohman377fbc02010-02-25 03:04:36 +000011121 return true;
Evan Cheng2bd122c2007-10-26 01:56:11 +000011122}
11123
Owen Andersone50ed302009-08-10 22:56:29 +000011124bool X86TargetLowering::isTruncateFree(EVT VT1, EVT VT2) const {
Duncan Sands83ec4b62008-06-06 12:08:01 +000011125 if (!VT1.isInteger() || !VT2.isInteger())
Evan Cheng3c3ddb32007-10-29 19:58:20 +000011126 return false;
Duncan Sands83ec4b62008-06-06 12:08:01 +000011127 unsigned NumBits1 = VT1.getSizeInBits();
11128 unsigned NumBits2 = VT2.getSizeInBits();
Evan Cheng260e07e2008-03-20 02:18:41 +000011129 if (NumBits1 <= NumBits2)
Evan Cheng3c3ddb32007-10-29 19:58:20 +000011130 return false;
Dan Gohman377fbc02010-02-25 03:04:36 +000011131 return true;
Evan Cheng3c3ddb32007-10-29 19:58:20 +000011132}
Evan Cheng2bd122c2007-10-26 01:56:11 +000011133
Chris Lattnerdb125cf2011-07-18 04:54:35 +000011134bool X86TargetLowering::isZExtFree(Type *Ty1, Type *Ty2) const {
Dan Gohman349ba492009-04-09 02:06:09 +000011135 // x86-64 implicitly zero-extends 32-bit results in 64-bit registers.
Duncan Sandsb0bc6c32010-02-15 16:12:20 +000011136 return Ty1->isIntegerTy(32) && Ty2->isIntegerTy(64) && Subtarget->is64Bit();
Dan Gohman97121ba2009-04-08 00:15:30 +000011137}
11138
Owen Andersone50ed302009-08-10 22:56:29 +000011139bool X86TargetLowering::isZExtFree(EVT VT1, EVT VT2) const {
Dan Gohman349ba492009-04-09 02:06:09 +000011140 // x86-64 implicitly zero-extends 32-bit results in 64-bit registers.
Owen Anderson825b72b2009-08-11 20:47:22 +000011141 return VT1 == MVT::i32 && VT2 == MVT::i64 && Subtarget->is64Bit();
Dan Gohman97121ba2009-04-08 00:15:30 +000011142}
11143
Owen Andersone50ed302009-08-10 22:56:29 +000011144bool X86TargetLowering::isNarrowingProfitable(EVT VT1, EVT VT2) const {
Evan Cheng8b944d32009-05-28 00:35:15 +000011145 // i16 instructions are longer (0x66 prefix) and potentially slower.
Owen Anderson825b72b2009-08-11 20:47:22 +000011146 return !(VT1 == MVT::i32 && VT2 == MVT::i16);
Evan Cheng8b944d32009-05-28 00:35:15 +000011147}
11148
Evan Cheng60c07e12006-07-05 22:17:51 +000011149/// isShuffleMaskLegal - Targets can use this to indicate that they only
11150/// support *some* VECTOR_SHUFFLE operations, those with specific masks.
11151/// By default, if a target supports the VECTOR_SHUFFLE node, all mask values
11152/// are assumed to be legal.
11153bool
Eric Christopherfd179292009-08-27 18:07:15 +000011154X86TargetLowering::isShuffleMaskLegal(const SmallVectorImpl<int> &M,
Owen Andersone50ed302009-08-10 22:56:29 +000011155 EVT VT) const {
Eric Christophercff6f852010-04-15 01:40:20 +000011156 // Very little shuffling can be done for 64-bit vectors right now.
Nate Begeman9008ca62009-04-27 18:41:29 +000011157 if (VT.getSizeInBits() == 64)
Craig Topper1dc0fbc2011-12-05 07:27:14 +000011158 return false;
Nate Begeman9008ca62009-04-27 18:41:29 +000011159
Nate Begemana09008b2009-10-19 02:17:23 +000011160 // FIXME: pshufb, blends, shifts.
Nate Begeman9008ca62009-04-27 18:41:29 +000011161 return (VT.getVectorNumElements() == 2 ||
11162 ShuffleVectorSDNode::isSplatMask(&M[0], VT) ||
11163 isMOVLMask(M, VT) ||
11164 isSHUFPMask(M, VT) ||
11165 isPSHUFDMask(M, VT) ||
11166 isPSHUFHWMask(M, VT) ||
11167 isPSHUFLWMask(M, VT) ||
Craig Topperc0d82852011-11-22 00:44:41 +000011168 isPALIGNRMask(M, VT, Subtarget->hasSSSE3orAVX()) ||
Craig Topper6347e862011-11-21 06:57:39 +000011169 isUNPCKLMask(M, VT, Subtarget->hasAVX2()) ||
11170 isUNPCKHMask(M, VT, Subtarget->hasAVX2()) ||
Craig Topper94438ba2011-12-16 08:06:31 +000011171 isUNPCKL_v_undef_Mask(M, VT, Subtarget->hasAVX2()) ||
11172 isUNPCKH_v_undef_Mask(M, VT, Subtarget->hasAVX2()));
Evan Cheng60c07e12006-07-05 22:17:51 +000011173}
11174
Dan Gohman7d8143f2008-04-09 20:09:42 +000011175bool
Nate Begeman5a5ca152009-04-29 05:20:52 +000011176X86TargetLowering::isVectorClearMaskLegal(const SmallVectorImpl<int> &Mask,
Owen Andersone50ed302009-08-10 22:56:29 +000011177 EVT VT) const {
Nate Begeman9008ca62009-04-27 18:41:29 +000011178 unsigned NumElts = VT.getVectorNumElements();
11179 // FIXME: This collection of masks seems suspect.
11180 if (NumElts == 2)
11181 return true;
11182 if (NumElts == 4 && VT.getSizeInBits() == 128) {
11183 return (isMOVLMask(Mask, VT) ||
11184 isCommutedMOVLMask(Mask, VT, true) ||
11185 isSHUFPMask(Mask, VT) ||
Craig Topper1ff73d72011-12-06 04:59:07 +000011186 isSHUFPMask(Mask, VT, /* Commuted */ true));
Evan Cheng60c07e12006-07-05 22:17:51 +000011187 }
11188 return false;
11189}
11190
11191//===----------------------------------------------------------------------===//
11192// X86 Scheduler Hooks
11193//===----------------------------------------------------------------------===//
11194
Mon P Wang63307c32008-05-05 19:05:59 +000011195// private utility function
11196MachineBasicBlock *
11197X86TargetLowering::EmitAtomicBitwiseWithCustomInserter(MachineInstr *bInstr,
11198 MachineBasicBlock *MBB,
11199 unsigned regOpc,
Andrew Lenharth507a58a2008-06-14 05:48:15 +000011200 unsigned immOpc,
Dale Johannesen140be2d2008-08-19 18:47:28 +000011201 unsigned LoadOpc,
11202 unsigned CXchgOpc,
Dale Johannesen140be2d2008-08-19 18:47:28 +000011203 unsigned notOpc,
11204 unsigned EAXreg,
11205 TargetRegisterClass *RC,
Dan Gohman1fdbc1d2009-02-07 16:15:20 +000011206 bool invSrc) const {
Mon P Wang63307c32008-05-05 19:05:59 +000011207 // For the atomic bitwise operator, we generate
11208 // thisMBB:
11209 // newMBB:
Mon P Wangab3e7472008-05-05 22:56:23 +000011210 // ld t1 = [bitinstr.addr]
11211 // op t2 = t1, [bitinstr.val]
11212 // mov EAX = t1
Mon P Wang63307c32008-05-05 19:05:59 +000011213 // lcs dest = [bitinstr.addr], t2 [EAX is implicit]
11214 // bz newMBB
11215 // fallthrough -->nextMBB
11216 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
11217 const BasicBlock *LLVM_BB = MBB->getBasicBlock();
Dan Gohman8e5f2c62008-07-07 23:14:23 +000011218 MachineFunction::iterator MBBIter = MBB;
Mon P Wang63307c32008-05-05 19:05:59 +000011219 ++MBBIter;
Scott Michelfdc40a02009-02-17 22:15:04 +000011220
Mon P Wang63307c32008-05-05 19:05:59 +000011221 /// First build the CFG
11222 MachineFunction *F = MBB->getParent();
11223 MachineBasicBlock *thisMBB = MBB;
Dan Gohman8e5f2c62008-07-07 23:14:23 +000011224 MachineBasicBlock *newMBB = F->CreateMachineBasicBlock(LLVM_BB);
11225 MachineBasicBlock *nextMBB = F->CreateMachineBasicBlock(LLVM_BB);
11226 F->insert(MBBIter, newMBB);
11227 F->insert(MBBIter, nextMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011228
Dan Gohman14152b42010-07-06 20:24:04 +000011229 // Transfer the remainder of thisMBB and its successor edges to nextMBB.
11230 nextMBB->splice(nextMBB->begin(), thisMBB,
11231 llvm::next(MachineBasicBlock::iterator(bInstr)),
11232 thisMBB->end());
11233 nextMBB->transferSuccessorsAndUpdatePHIs(thisMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011234
Mon P Wang63307c32008-05-05 19:05:59 +000011235 // Update thisMBB to fall through to newMBB
11236 thisMBB->addSuccessor(newMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011237
Mon P Wang63307c32008-05-05 19:05:59 +000011238 // newMBB jumps to itself and fall through to nextMBB
11239 newMBB->addSuccessor(nextMBB);
11240 newMBB->addSuccessor(newMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011241
Mon P Wang63307c32008-05-05 19:05:59 +000011242 // Insert instructions into newMBB based on incoming instruction
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011243 assert(bInstr->getNumOperands() < X86::AddrNumOperands + 4 &&
Bill Wendling51b16f42009-05-30 01:09:53 +000011244 "unexpected number of operands");
Dale Johannesene4d209d2009-02-03 20:21:25 +000011245 DebugLoc dl = bInstr->getDebugLoc();
Mon P Wang63307c32008-05-05 19:05:59 +000011246 MachineOperand& destOper = bInstr->getOperand(0);
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011247 MachineOperand* argOpers[2 + X86::AddrNumOperands];
Mon P Wang63307c32008-05-05 19:05:59 +000011248 int numArgs = bInstr->getNumOperands() - 1;
11249 for (int i=0; i < numArgs; ++i)
11250 argOpers[i] = &bInstr->getOperand(i+1);
11251
11252 // x86 address has 4 operands: base, index, scale, and displacement
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011253 int lastAddrIndx = X86::AddrNumOperands - 1; // [0,3]
Rafael Espindolaa82dfca2009-03-27 15:26:30 +000011254 int valArgIndx = lastAddrIndx + 1;
Scott Michelfdc40a02009-02-17 22:15:04 +000011255
Dale Johannesen140be2d2008-08-19 18:47:28 +000011256 unsigned t1 = F->getRegInfo().createVirtualRegister(RC);
Dale Johannesene4d209d2009-02-03 20:21:25 +000011257 MachineInstrBuilder MIB = BuildMI(newMBB, dl, TII->get(LoadOpc), t1);
Mon P Wang63307c32008-05-05 19:05:59 +000011258 for (int i=0; i <= lastAddrIndx; ++i)
11259 (*MIB).addOperand(*argOpers[i]);
Andrew Lenharth507a58a2008-06-14 05:48:15 +000011260
Dale Johannesen140be2d2008-08-19 18:47:28 +000011261 unsigned tt = F->getRegInfo().createVirtualRegister(RC);
Andrew Lenharth507a58a2008-06-14 05:48:15 +000011262 if (invSrc) {
Dale Johannesene4d209d2009-02-03 20:21:25 +000011263 MIB = BuildMI(newMBB, dl, TII->get(notOpc), tt).addReg(t1);
Andrew Lenharth507a58a2008-06-14 05:48:15 +000011264 }
Scott Michelfdc40a02009-02-17 22:15:04 +000011265 else
Andrew Lenharth507a58a2008-06-14 05:48:15 +000011266 tt = t1;
11267
Dale Johannesen140be2d2008-08-19 18:47:28 +000011268 unsigned t2 = F->getRegInfo().createVirtualRegister(RC);
Dan Gohmand735b802008-10-03 15:45:36 +000011269 assert((argOpers[valArgIndx]->isReg() ||
11270 argOpers[valArgIndx]->isImm()) &&
Dan Gohman014278e2008-09-13 17:58:21 +000011271 "invalid operand");
Dan Gohmand735b802008-10-03 15:45:36 +000011272 if (argOpers[valArgIndx]->isReg())
Dale Johannesene4d209d2009-02-03 20:21:25 +000011273 MIB = BuildMI(newMBB, dl, TII->get(regOpc), t2);
Mon P Wang63307c32008-05-05 19:05:59 +000011274 else
Dale Johannesene4d209d2009-02-03 20:21:25 +000011275 MIB = BuildMI(newMBB, dl, TII->get(immOpc), t2);
Andrew Lenharth507a58a2008-06-14 05:48:15 +000011276 MIB.addReg(tt);
Mon P Wang63307c32008-05-05 19:05:59 +000011277 (*MIB).addOperand(*argOpers[valArgIndx]);
Andrew Lenharth507a58a2008-06-14 05:48:15 +000011278
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011279 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), EAXreg);
Mon P Wangab3e7472008-05-05 22:56:23 +000011280 MIB.addReg(t1);
Scott Michelfdc40a02009-02-17 22:15:04 +000011281
Dale Johannesene4d209d2009-02-03 20:21:25 +000011282 MIB = BuildMI(newMBB, dl, TII->get(CXchgOpc));
Mon P Wang63307c32008-05-05 19:05:59 +000011283 for (int i=0; i <= lastAddrIndx; ++i)
11284 (*MIB).addOperand(*argOpers[i]);
11285 MIB.addReg(t2);
Mon P Wangf5952662008-07-17 04:54:06 +000011286 assert(bInstr->hasOneMemOperand() && "Unexpected number of memoperand");
Dan Gohmanc76909a2009-09-25 20:36:54 +000011287 (*MIB).setMemRefs(bInstr->memoperands_begin(),
11288 bInstr->memoperands_end());
Mon P Wangf5952662008-07-17 04:54:06 +000011289
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011290 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), destOper.getReg());
Dale Johannesen140be2d2008-08-19 18:47:28 +000011291 MIB.addReg(EAXreg);
Scott Michelfdc40a02009-02-17 22:15:04 +000011292
Mon P Wang63307c32008-05-05 19:05:59 +000011293 // insert branch
Chris Lattnerbd13fb62010-02-11 19:25:55 +000011294 BuildMI(newMBB, dl, TII->get(X86::JNE_4)).addMBB(newMBB);
Mon P Wang63307c32008-05-05 19:05:59 +000011295
Dan Gohman14152b42010-07-06 20:24:04 +000011296 bInstr->eraseFromParent(); // The pseudo instruction is gone now.
Mon P Wang63307c32008-05-05 19:05:59 +000011297 return nextMBB;
11298}
11299
Dale Johannesen1b54c7f2008-10-03 19:41:08 +000011300// private utility function: 64 bit atomics on 32 bit host.
Mon P Wang63307c32008-05-05 19:05:59 +000011301MachineBasicBlock *
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011302X86TargetLowering::EmitAtomicBit6432WithCustomInserter(MachineInstr *bInstr,
11303 MachineBasicBlock *MBB,
11304 unsigned regOpcL,
11305 unsigned regOpcH,
11306 unsigned immOpcL,
11307 unsigned immOpcH,
Dan Gohman1fdbc1d2009-02-07 16:15:20 +000011308 bool invSrc) const {
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011309 // For the atomic bitwise operator, we generate
11310 // thisMBB (instructions are in pairs, except cmpxchg8b)
11311 // ld t1,t2 = [bitinstr.addr]
11312 // newMBB:
11313 // out1, out2 = phi (thisMBB, t1/t2) (newMBB, t3/t4)
11314 // op t5, t6 <- out1, out2, [bitinstr.val]
Dale Johannesen880ae362008-10-03 22:25:52 +000011315 // (for SWAP, substitute: mov t5, t6 <- [bitinstr.val])
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011316 // mov ECX, EBX <- t5, t6
11317 // mov EAX, EDX <- t1, t2
11318 // cmpxchg8b [bitinstr.addr] [EAX, EDX, EBX, ECX implicit]
11319 // mov t3, t4 <- EAX, EDX
11320 // bz newMBB
11321 // result in out1, out2
11322 // fallthrough -->nextMBB
11323
11324 const TargetRegisterClass *RC = X86::GR32RegisterClass;
11325 const unsigned LoadOpc = X86::MOV32rm;
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011326 const unsigned NotOpc = X86::NOT32r;
11327 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
11328 const BasicBlock *LLVM_BB = MBB->getBasicBlock();
11329 MachineFunction::iterator MBBIter = MBB;
11330 ++MBBIter;
Scott Michelfdc40a02009-02-17 22:15:04 +000011331
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011332 /// First build the CFG
11333 MachineFunction *F = MBB->getParent();
11334 MachineBasicBlock *thisMBB = MBB;
11335 MachineBasicBlock *newMBB = F->CreateMachineBasicBlock(LLVM_BB);
11336 MachineBasicBlock *nextMBB = F->CreateMachineBasicBlock(LLVM_BB);
11337 F->insert(MBBIter, newMBB);
11338 F->insert(MBBIter, nextMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011339
Dan Gohman14152b42010-07-06 20:24:04 +000011340 // Transfer the remainder of thisMBB and its successor edges to nextMBB.
11341 nextMBB->splice(nextMBB->begin(), thisMBB,
11342 llvm::next(MachineBasicBlock::iterator(bInstr)),
11343 thisMBB->end());
11344 nextMBB->transferSuccessorsAndUpdatePHIs(thisMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011345
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011346 // Update thisMBB to fall through to newMBB
11347 thisMBB->addSuccessor(newMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011348
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011349 // newMBB jumps to itself and fall through to nextMBB
11350 newMBB->addSuccessor(nextMBB);
11351 newMBB->addSuccessor(newMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011352
Dale Johannesene4d209d2009-02-03 20:21:25 +000011353 DebugLoc dl = bInstr->getDebugLoc();
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011354 // Insert instructions into newMBB based on incoming instruction
11355 // There are 8 "real" operands plus 9 implicit def/uses, ignored here.
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011356 assert(bInstr->getNumOperands() < X86::AddrNumOperands + 14 &&
Bill Wendling51b16f42009-05-30 01:09:53 +000011357 "unexpected number of operands");
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011358 MachineOperand& dest1Oper = bInstr->getOperand(0);
11359 MachineOperand& dest2Oper = bInstr->getOperand(1);
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011360 MachineOperand* argOpers[2 + X86::AddrNumOperands];
11361 for (int i=0; i < 2 + X86::AddrNumOperands; ++i) {
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011362 argOpers[i] = &bInstr->getOperand(i+2);
11363
Dan Gohman71ea4e52010-05-14 21:01:44 +000011364 // We use some of the operands multiple times, so conservatively just
11365 // clear any kill flags that might be present.
11366 if (argOpers[i]->isReg() && argOpers[i]->isUse())
11367 argOpers[i]->setIsKill(false);
11368 }
11369
Evan Chengad5b52f2010-01-08 19:14:57 +000011370 // x86 address has 5 operands: base, index, scale, displacement, and segment.
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011371 int lastAddrIndx = X86::AddrNumOperands - 1; // [0,3]
Scott Michelfdc40a02009-02-17 22:15:04 +000011372
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011373 unsigned t1 = F->getRegInfo().createVirtualRegister(RC);
Dale Johannesene4d209d2009-02-03 20:21:25 +000011374 MachineInstrBuilder MIB = BuildMI(thisMBB, dl, TII->get(LoadOpc), t1);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011375 for (int i=0; i <= lastAddrIndx; ++i)
11376 (*MIB).addOperand(*argOpers[i]);
11377 unsigned t2 = F->getRegInfo().createVirtualRegister(RC);
Dale Johannesene4d209d2009-02-03 20:21:25 +000011378 MIB = BuildMI(thisMBB, dl, TII->get(LoadOpc), t2);
Dale Johannesen880ae362008-10-03 22:25:52 +000011379 // add 4 to displacement.
Rafael Espindola094fad32009-04-08 21:14:34 +000011380 for (int i=0; i <= lastAddrIndx-2; ++i)
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011381 (*MIB).addOperand(*argOpers[i]);
Dale Johannesen880ae362008-10-03 22:25:52 +000011382 MachineOperand newOp3 = *(argOpers[3]);
11383 if (newOp3.isImm())
11384 newOp3.setImm(newOp3.getImm()+4);
11385 else
11386 newOp3.setOffset(newOp3.getOffset()+4);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011387 (*MIB).addOperand(newOp3);
Rafael Espindola094fad32009-04-08 21:14:34 +000011388 (*MIB).addOperand(*argOpers[lastAddrIndx]);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011389
11390 // t3/4 are defined later, at the bottom of the loop
11391 unsigned t3 = F->getRegInfo().createVirtualRegister(RC);
11392 unsigned t4 = F->getRegInfo().createVirtualRegister(RC);
Dale Johannesene4d209d2009-02-03 20:21:25 +000011393 BuildMI(newMBB, dl, TII->get(X86::PHI), dest1Oper.getReg())
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011394 .addReg(t1).addMBB(thisMBB).addReg(t3).addMBB(newMBB);
Dale Johannesene4d209d2009-02-03 20:21:25 +000011395 BuildMI(newMBB, dl, TII->get(X86::PHI), dest2Oper.getReg())
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011396 .addReg(t2).addMBB(thisMBB).addReg(t4).addMBB(newMBB);
11397
Evan Cheng306b4ca2010-01-08 23:41:50 +000011398 // The subsequent operations should be using the destination registers of
11399 //the PHI instructions.
Scott Michelfdc40a02009-02-17 22:15:04 +000011400 if (invSrc) {
Evan Cheng306b4ca2010-01-08 23:41:50 +000011401 t1 = F->getRegInfo().createVirtualRegister(RC);
11402 t2 = F->getRegInfo().createVirtualRegister(RC);
11403 MIB = BuildMI(newMBB, dl, TII->get(NotOpc), t1).addReg(dest1Oper.getReg());
11404 MIB = BuildMI(newMBB, dl, TII->get(NotOpc), t2).addReg(dest2Oper.getReg());
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011405 } else {
Evan Cheng306b4ca2010-01-08 23:41:50 +000011406 t1 = dest1Oper.getReg();
11407 t2 = dest2Oper.getReg();
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011408 }
11409
Rafael Espindolaa82dfca2009-03-27 15:26:30 +000011410 int valArgIndx = lastAddrIndx + 1;
11411 assert((argOpers[valArgIndx]->isReg() ||
Bill Wendling51b16f42009-05-30 01:09:53 +000011412 argOpers[valArgIndx]->isImm()) &&
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011413 "invalid operand");
11414 unsigned t5 = F->getRegInfo().createVirtualRegister(RC);
11415 unsigned t6 = F->getRegInfo().createVirtualRegister(RC);
Rafael Espindolaa82dfca2009-03-27 15:26:30 +000011416 if (argOpers[valArgIndx]->isReg())
Dale Johannesene4d209d2009-02-03 20:21:25 +000011417 MIB = BuildMI(newMBB, dl, TII->get(regOpcL), t5);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011418 else
Dale Johannesene4d209d2009-02-03 20:21:25 +000011419 MIB = BuildMI(newMBB, dl, TII->get(immOpcL), t5);
Dale Johannesen880ae362008-10-03 22:25:52 +000011420 if (regOpcL != X86::MOV32rr)
Evan Cheng306b4ca2010-01-08 23:41:50 +000011421 MIB.addReg(t1);
Rafael Espindolaa82dfca2009-03-27 15:26:30 +000011422 (*MIB).addOperand(*argOpers[valArgIndx]);
11423 assert(argOpers[valArgIndx + 1]->isReg() ==
Bill Wendling51b16f42009-05-30 01:09:53 +000011424 argOpers[valArgIndx]->isReg());
Rafael Espindolaa82dfca2009-03-27 15:26:30 +000011425 assert(argOpers[valArgIndx + 1]->isImm() ==
Bill Wendling51b16f42009-05-30 01:09:53 +000011426 argOpers[valArgIndx]->isImm());
Rafael Espindolaa82dfca2009-03-27 15:26:30 +000011427 if (argOpers[valArgIndx + 1]->isReg())
Dale Johannesene4d209d2009-02-03 20:21:25 +000011428 MIB = BuildMI(newMBB, dl, TII->get(regOpcH), t6);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011429 else
Dale Johannesene4d209d2009-02-03 20:21:25 +000011430 MIB = BuildMI(newMBB, dl, TII->get(immOpcH), t6);
Dale Johannesen880ae362008-10-03 22:25:52 +000011431 if (regOpcH != X86::MOV32rr)
Evan Cheng306b4ca2010-01-08 23:41:50 +000011432 MIB.addReg(t2);
Rafael Espindolaa82dfca2009-03-27 15:26:30 +000011433 (*MIB).addOperand(*argOpers[valArgIndx + 1]);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011434
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011435 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), X86::EAX);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011436 MIB.addReg(t1);
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011437 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), X86::EDX);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011438 MIB.addReg(t2);
11439
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011440 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), X86::EBX);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011441 MIB.addReg(t5);
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011442 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), X86::ECX);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011443 MIB.addReg(t6);
Scott Michelfdc40a02009-02-17 22:15:04 +000011444
Dale Johannesene4d209d2009-02-03 20:21:25 +000011445 MIB = BuildMI(newMBB, dl, TII->get(X86::LCMPXCHG8B));
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011446 for (int i=0; i <= lastAddrIndx; ++i)
11447 (*MIB).addOperand(*argOpers[i]);
11448
11449 assert(bInstr->hasOneMemOperand() && "Unexpected number of memoperand");
Dan Gohmanc76909a2009-09-25 20:36:54 +000011450 (*MIB).setMemRefs(bInstr->memoperands_begin(),
11451 bInstr->memoperands_end());
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011452
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011453 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), t3);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011454 MIB.addReg(X86::EAX);
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011455 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), t4);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011456 MIB.addReg(X86::EDX);
Scott Michelfdc40a02009-02-17 22:15:04 +000011457
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011458 // insert branch
Chris Lattnerbd13fb62010-02-11 19:25:55 +000011459 BuildMI(newMBB, dl, TII->get(X86::JNE_4)).addMBB(newMBB);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011460
Dan Gohman14152b42010-07-06 20:24:04 +000011461 bInstr->eraseFromParent(); // The pseudo instruction is gone now.
Dale Johannesen48c1bc22008-10-02 18:53:47 +000011462 return nextMBB;
11463}
11464
11465// private utility function
11466MachineBasicBlock *
Mon P Wang63307c32008-05-05 19:05:59 +000011467X86TargetLowering::EmitAtomicMinMaxWithCustomInserter(MachineInstr *mInstr,
11468 MachineBasicBlock *MBB,
Dan Gohman1fdbc1d2009-02-07 16:15:20 +000011469 unsigned cmovOpc) const {
Mon P Wang63307c32008-05-05 19:05:59 +000011470 // For the atomic min/max operator, we generate
11471 // thisMBB:
11472 // newMBB:
Mon P Wangab3e7472008-05-05 22:56:23 +000011473 // ld t1 = [min/max.addr]
Scott Michelfdc40a02009-02-17 22:15:04 +000011474 // mov t2 = [min/max.val]
Mon P Wang63307c32008-05-05 19:05:59 +000011475 // cmp t1, t2
11476 // cmov[cond] t2 = t1
Mon P Wangab3e7472008-05-05 22:56:23 +000011477 // mov EAX = t1
Mon P Wang63307c32008-05-05 19:05:59 +000011478 // lcs dest = [bitinstr.addr], t2 [EAX is implicit]
11479 // bz newMBB
11480 // fallthrough -->nextMBB
11481 //
11482 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
11483 const BasicBlock *LLVM_BB = MBB->getBasicBlock();
Dan Gohman8e5f2c62008-07-07 23:14:23 +000011484 MachineFunction::iterator MBBIter = MBB;
Mon P Wang63307c32008-05-05 19:05:59 +000011485 ++MBBIter;
Scott Michelfdc40a02009-02-17 22:15:04 +000011486
Mon P Wang63307c32008-05-05 19:05:59 +000011487 /// First build the CFG
11488 MachineFunction *F = MBB->getParent();
11489 MachineBasicBlock *thisMBB = MBB;
Dan Gohman8e5f2c62008-07-07 23:14:23 +000011490 MachineBasicBlock *newMBB = F->CreateMachineBasicBlock(LLVM_BB);
11491 MachineBasicBlock *nextMBB = F->CreateMachineBasicBlock(LLVM_BB);
11492 F->insert(MBBIter, newMBB);
11493 F->insert(MBBIter, nextMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011494
Dan Gohman14152b42010-07-06 20:24:04 +000011495 // Transfer the remainder of thisMBB and its successor edges to nextMBB.
11496 nextMBB->splice(nextMBB->begin(), thisMBB,
11497 llvm::next(MachineBasicBlock::iterator(mInstr)),
11498 thisMBB->end());
11499 nextMBB->transferSuccessorsAndUpdatePHIs(thisMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011500
Mon P Wang63307c32008-05-05 19:05:59 +000011501 // Update thisMBB to fall through to newMBB
11502 thisMBB->addSuccessor(newMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011503
Mon P Wang63307c32008-05-05 19:05:59 +000011504 // newMBB jumps to newMBB and fall through to nextMBB
11505 newMBB->addSuccessor(nextMBB);
11506 newMBB->addSuccessor(newMBB);
Scott Michelfdc40a02009-02-17 22:15:04 +000011507
Dale Johannesene4d209d2009-02-03 20:21:25 +000011508 DebugLoc dl = mInstr->getDebugLoc();
Mon P Wang63307c32008-05-05 19:05:59 +000011509 // Insert instructions into newMBB based on incoming instruction
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011510 assert(mInstr->getNumOperands() < X86::AddrNumOperands + 4 &&
Bill Wendling51b16f42009-05-30 01:09:53 +000011511 "unexpected number of operands");
Mon P Wang63307c32008-05-05 19:05:59 +000011512 MachineOperand& destOper = mInstr->getOperand(0);
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011513 MachineOperand* argOpers[2 + X86::AddrNumOperands];
Mon P Wang63307c32008-05-05 19:05:59 +000011514 int numArgs = mInstr->getNumOperands() - 1;
11515 for (int i=0; i < numArgs; ++i)
11516 argOpers[i] = &mInstr->getOperand(i+1);
Scott Michelfdc40a02009-02-17 22:15:04 +000011517
Mon P Wang63307c32008-05-05 19:05:59 +000011518 // x86 address has 4 operands: base, index, scale, and displacement
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000011519 int lastAddrIndx = X86::AddrNumOperands - 1; // [0,3]
Rafael Espindolaa82dfca2009-03-27 15:26:30 +000011520 int valArgIndx = lastAddrIndx + 1;
Scott Michelfdc40a02009-02-17 22:15:04 +000011521
Mon P Wangab3e7472008-05-05 22:56:23 +000011522 unsigned t1 = F->getRegInfo().createVirtualRegister(X86::GR32RegisterClass);
Dale Johannesene4d209d2009-02-03 20:21:25 +000011523 MachineInstrBuilder MIB = BuildMI(newMBB, dl, TII->get(X86::MOV32rm), t1);
Mon P Wang63307c32008-05-05 19:05:59 +000011524 for (int i=0; i <= lastAddrIndx; ++i)
11525 (*MIB).addOperand(*argOpers[i]);
Mon P Wangab3e7472008-05-05 22:56:23 +000011526
Mon P Wang63307c32008-05-05 19:05:59 +000011527 // We only support register and immediate values
Dan Gohmand735b802008-10-03 15:45:36 +000011528 assert((argOpers[valArgIndx]->isReg() ||
11529 argOpers[valArgIndx]->isImm()) &&
Dan Gohman014278e2008-09-13 17:58:21 +000011530 "invalid operand");
Scott Michelfdc40a02009-02-17 22:15:04 +000011531
11532 unsigned t2 = F->getRegInfo().createVirtualRegister(X86::GR32RegisterClass);
Dan Gohmand735b802008-10-03 15:45:36 +000011533 if (argOpers[valArgIndx]->isReg())
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011534 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), t2);
Scott Michelfdc40a02009-02-17 22:15:04 +000011535 else
Dale Johannesene4d209d2009-02-03 20:21:25 +000011536 MIB = BuildMI(newMBB, dl, TII->get(X86::MOV32rr), t2);
Mon P Wang63307c32008-05-05 19:05:59 +000011537 (*MIB).addOperand(*argOpers[valArgIndx]);
11538
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011539 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), X86::EAX);
Mon P Wangab3e7472008-05-05 22:56:23 +000011540 MIB.addReg(t1);
11541
Dale Johannesene4d209d2009-02-03 20:21:25 +000011542 MIB = BuildMI(newMBB, dl, TII->get(X86::CMP32rr));
Mon P Wang63307c32008-05-05 19:05:59 +000011543 MIB.addReg(t1);
11544 MIB.addReg(t2);
11545
11546 // Generate movc
11547 unsigned t3 = F->getRegInfo().createVirtualRegister(X86::GR32RegisterClass);
Dale Johannesene4d209d2009-02-03 20:21:25 +000011548 MIB = BuildMI(newMBB, dl, TII->get(cmovOpc),t3);
Mon P Wang63307c32008-05-05 19:05:59 +000011549 MIB.addReg(t2);
11550 MIB.addReg(t1);
11551
11552 // Cmp and exchange if none has modified the memory location
Dale Johannesene4d209d2009-02-03 20:21:25 +000011553 MIB = BuildMI(newMBB, dl, TII->get(X86::LCMPXCHG32));
Mon P Wang63307c32008-05-05 19:05:59 +000011554 for (int i=0; i <= lastAddrIndx; ++i)
11555 (*MIB).addOperand(*argOpers[i]);
11556 MIB.addReg(t3);
Mon P Wangf5952662008-07-17 04:54:06 +000011557 assert(mInstr->hasOneMemOperand() && "Unexpected number of memoperand");
Dan Gohmanc76909a2009-09-25 20:36:54 +000011558 (*MIB).setMemRefs(mInstr->memoperands_begin(),
11559 mInstr->memoperands_end());
Scott Michelfdc40a02009-02-17 22:15:04 +000011560
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000011561 MIB = BuildMI(newMBB, dl, TII->get(TargetOpcode::COPY), destOper.getReg());
Mon P Wang63307c32008-05-05 19:05:59 +000011562 MIB.addReg(X86::EAX);
Scott Michelfdc40a02009-02-17 22:15:04 +000011563
Mon P Wang63307c32008-05-05 19:05:59 +000011564 // insert branch
Chris Lattnerbd13fb62010-02-11 19:25:55 +000011565 BuildMI(newMBB, dl, TII->get(X86::JNE_4)).addMBB(newMBB);
Mon P Wang63307c32008-05-05 19:05:59 +000011566
Dan Gohman14152b42010-07-06 20:24:04 +000011567 mInstr->eraseFromParent(); // The pseudo instruction is gone now.
Mon P Wang63307c32008-05-05 19:05:59 +000011568 return nextMBB;
11569}
11570
Eric Christopherf83a5de2009-08-27 18:08:16 +000011571// FIXME: When we get size specific XMM0 registers, i.e. XMM0_V16I8
Bruno Cardoso Lopes98f98562010-07-30 19:54:33 +000011572// or XMM0_V32I8 in AVX all of this code can be replaced with that
11573// in the .td file.
Dan Gohmand6708ea2009-08-15 01:38:56 +000011574MachineBasicBlock *
Eric Christopherb120ab42009-08-18 22:50:32 +000011575X86TargetLowering::EmitPCMP(MachineInstr *MI, MachineBasicBlock *BB,
Daniel Dunbara279bc32009-09-20 02:20:51 +000011576 unsigned numArgs, bool memArg) const {
Craig Topperc0d82852011-11-22 00:44:41 +000011577 assert(Subtarget->hasSSE42orAVX() &&
Bruno Cardoso Lopes98f98562010-07-30 19:54:33 +000011578 "Target must have SSE4.2 or AVX features enabled");
11579
Eric Christopherb120ab42009-08-18 22:50:32 +000011580 DebugLoc dl = MI->getDebugLoc();
11581 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
Eric Christopherb120ab42009-08-18 22:50:32 +000011582 unsigned Opc;
Bruno Cardoso Lopes98f98562010-07-30 19:54:33 +000011583 if (!Subtarget->hasAVX()) {
11584 if (memArg)
11585 Opc = numArgs == 3 ? X86::PCMPISTRM128rm : X86::PCMPESTRM128rm;
11586 else
11587 Opc = numArgs == 3 ? X86::PCMPISTRM128rr : X86::PCMPESTRM128rr;
11588 } else {
11589 if (memArg)
11590 Opc = numArgs == 3 ? X86::VPCMPISTRM128rm : X86::VPCMPESTRM128rm;
11591 else
11592 Opc = numArgs == 3 ? X86::VPCMPISTRM128rr : X86::VPCMPESTRM128rr;
11593 }
Eric Christopherb120ab42009-08-18 22:50:32 +000011594
Eric Christopher41c902f2010-11-30 08:20:21 +000011595 MachineInstrBuilder MIB = BuildMI(*BB, MI, dl, TII->get(Opc));
Eric Christopherb120ab42009-08-18 22:50:32 +000011596 for (unsigned i = 0; i < numArgs; ++i) {
11597 MachineOperand &Op = MI->getOperand(i+1);
Eric Christopherb120ab42009-08-18 22:50:32 +000011598 if (!(Op.isReg() && Op.isImplicit()))
11599 MIB.addOperand(Op);
11600 }
Bruno Cardoso Lopes5affa512011-08-31 03:04:09 +000011601 BuildMI(*BB, MI, dl,
11602 TII->get(Subtarget->hasAVX() ? X86::VMOVAPSrr : X86::MOVAPSrr),
11603 MI->getOperand(0).getReg())
Eric Christopherb120ab42009-08-18 22:50:32 +000011604 .addReg(X86::XMM0);
11605
Dan Gohman14152b42010-07-06 20:24:04 +000011606 MI->eraseFromParent();
Eric Christopherb120ab42009-08-18 22:50:32 +000011607 return BB;
11608}
11609
11610MachineBasicBlock *
Eric Christopher228232b2010-11-30 07:20:12 +000011611X86TargetLowering::EmitMonitor(MachineInstr *MI, MachineBasicBlock *BB) const {
Eric Christopher228232b2010-11-30 07:20:12 +000011612 DebugLoc dl = MI->getDebugLoc();
11613 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000011614
Eric Christopher228232b2010-11-30 07:20:12 +000011615 // Address into RAX/EAX, other two args into ECX, EDX.
11616 unsigned MemOpc = Subtarget->is64Bit() ? X86::LEA64r : X86::LEA32r;
11617 unsigned MemReg = Subtarget->is64Bit() ? X86::RAX : X86::EAX;
11618 MachineInstrBuilder MIB = BuildMI(*BB, MI, dl, TII->get(MemOpc), MemReg);
11619 for (int i = 0; i < X86::AddrNumOperands; ++i)
Eric Christopher82be2202010-11-30 08:10:28 +000011620 MIB.addOperand(MI->getOperand(i));
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000011621
Eric Christopher228232b2010-11-30 07:20:12 +000011622 unsigned ValOps = X86::AddrNumOperands;
11623 BuildMI(*BB, MI, dl, TII->get(TargetOpcode::COPY), X86::ECX)
11624 .addReg(MI->getOperand(ValOps).getReg());
11625 BuildMI(*BB, MI, dl, TII->get(TargetOpcode::COPY), X86::EDX)
11626 .addReg(MI->getOperand(ValOps+1).getReg());
11627
11628 // The instruction doesn't actually take any operands though.
11629 BuildMI(*BB, MI, dl, TII->get(X86::MONITORrrr));
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000011630
Eric Christopher228232b2010-11-30 07:20:12 +000011631 MI->eraseFromParent(); // The pseudo is gone now.
11632 return BB;
11633}
11634
11635MachineBasicBlock *
11636X86TargetLowering::EmitMwait(MachineInstr *MI, MachineBasicBlock *BB) const {
Eric Christopher228232b2010-11-30 07:20:12 +000011637 DebugLoc dl = MI->getDebugLoc();
11638 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000011639
Eric Christopher228232b2010-11-30 07:20:12 +000011640 // First arg in ECX, the second in EAX.
11641 BuildMI(*BB, MI, dl, TII->get(TargetOpcode::COPY), X86::ECX)
11642 .addReg(MI->getOperand(0).getReg());
11643 BuildMI(*BB, MI, dl, TII->get(TargetOpcode::COPY), X86::EAX)
11644 .addReg(MI->getOperand(1).getReg());
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000011645
Eric Christopher228232b2010-11-30 07:20:12 +000011646 // The instruction doesn't actually take any operands though.
11647 BuildMI(*BB, MI, dl, TII->get(X86::MWAITrr));
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000011648
Eric Christopher228232b2010-11-30 07:20:12 +000011649 MI->eraseFromParent(); // The pseudo is gone now.
11650 return BB;
11651}
11652
11653MachineBasicBlock *
Dan Gohman320afb82010-10-12 18:00:49 +000011654X86TargetLowering::EmitVAARG64WithCustomInserter(
11655 MachineInstr *MI,
11656 MachineBasicBlock *MBB) const {
11657 // Emit va_arg instruction on X86-64.
11658
11659 // Operands to this pseudo-instruction:
11660 // 0 ) Output : destination address (reg)
11661 // 1-5) Input : va_list address (addr, i64mem)
11662 // 6 ) ArgSize : Size (in bytes) of vararg type
11663 // 7 ) ArgMode : 0=overflow only, 1=use gp_offset, 2=use fp_offset
11664 // 8 ) Align : Alignment of type
11665 // 9 ) EFLAGS (implicit-def)
11666
11667 assert(MI->getNumOperands() == 10 && "VAARG_64 should have 10 operands!");
11668 assert(X86::AddrNumOperands == 5 && "VAARG_64 assumes 5 address operands");
11669
11670 unsigned DestReg = MI->getOperand(0).getReg();
11671 MachineOperand &Base = MI->getOperand(1);
11672 MachineOperand &Scale = MI->getOperand(2);
11673 MachineOperand &Index = MI->getOperand(3);
11674 MachineOperand &Disp = MI->getOperand(4);
11675 MachineOperand &Segment = MI->getOperand(5);
11676 unsigned ArgSize = MI->getOperand(6).getImm();
11677 unsigned ArgMode = MI->getOperand(7).getImm();
11678 unsigned Align = MI->getOperand(8).getImm();
11679
11680 // Memory Reference
11681 assert(MI->hasOneMemOperand() && "Expected VAARG_64 to have one memoperand");
11682 MachineInstr::mmo_iterator MMOBegin = MI->memoperands_begin();
11683 MachineInstr::mmo_iterator MMOEnd = MI->memoperands_end();
11684
11685 // Machine Information
11686 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
11687 MachineRegisterInfo &MRI = MBB->getParent()->getRegInfo();
11688 const TargetRegisterClass *AddrRegClass = getRegClassFor(MVT::i64);
11689 const TargetRegisterClass *OffsetRegClass = getRegClassFor(MVT::i32);
11690 DebugLoc DL = MI->getDebugLoc();
11691
11692 // struct va_list {
11693 // i32 gp_offset
11694 // i32 fp_offset
11695 // i64 overflow_area (address)
11696 // i64 reg_save_area (address)
11697 // }
11698 // sizeof(va_list) = 24
11699 // alignment(va_list) = 8
11700
11701 unsigned TotalNumIntRegs = 6;
11702 unsigned TotalNumXMMRegs = 8;
11703 bool UseGPOffset = (ArgMode == 1);
11704 bool UseFPOffset = (ArgMode == 2);
11705 unsigned MaxOffset = TotalNumIntRegs * 8 +
11706 (UseFPOffset ? TotalNumXMMRegs * 16 : 0);
11707
11708 /* Align ArgSize to a multiple of 8 */
11709 unsigned ArgSizeA8 = (ArgSize + 7) & ~7;
11710 bool NeedsAlign = (Align > 8);
11711
11712 MachineBasicBlock *thisMBB = MBB;
11713 MachineBasicBlock *overflowMBB;
11714 MachineBasicBlock *offsetMBB;
11715 MachineBasicBlock *endMBB;
11716
11717 unsigned OffsetDestReg = 0; // Argument address computed by offsetMBB
11718 unsigned OverflowDestReg = 0; // Argument address computed by overflowMBB
11719 unsigned OffsetReg = 0;
11720
11721 if (!UseGPOffset && !UseFPOffset) {
11722 // If we only pull from the overflow region, we don't create a branch.
11723 // We don't need to alter control flow.
11724 OffsetDestReg = 0; // unused
11725 OverflowDestReg = DestReg;
11726
11727 offsetMBB = NULL;
11728 overflowMBB = thisMBB;
11729 endMBB = thisMBB;
11730 } else {
11731 // First emit code to check if gp_offset (or fp_offset) is below the bound.
11732 // If so, pull the argument from reg_save_area. (branch to offsetMBB)
11733 // If not, pull from overflow_area. (branch to overflowMBB)
11734 //
11735 // thisMBB
11736 // | .
11737 // | .
11738 // offsetMBB overflowMBB
11739 // | .
11740 // | .
11741 // endMBB
11742
11743 // Registers for the PHI in endMBB
11744 OffsetDestReg = MRI.createVirtualRegister(AddrRegClass);
11745 OverflowDestReg = MRI.createVirtualRegister(AddrRegClass);
11746
11747 const BasicBlock *LLVM_BB = MBB->getBasicBlock();
11748 MachineFunction *MF = MBB->getParent();
11749 overflowMBB = MF->CreateMachineBasicBlock(LLVM_BB);
11750 offsetMBB = MF->CreateMachineBasicBlock(LLVM_BB);
11751 endMBB = MF->CreateMachineBasicBlock(LLVM_BB);
11752
11753 MachineFunction::iterator MBBIter = MBB;
11754 ++MBBIter;
11755
11756 // Insert the new basic blocks
11757 MF->insert(MBBIter, offsetMBB);
11758 MF->insert(MBBIter, overflowMBB);
11759 MF->insert(MBBIter, endMBB);
11760
11761 // Transfer the remainder of MBB and its successor edges to endMBB.
11762 endMBB->splice(endMBB->begin(), thisMBB,
11763 llvm::next(MachineBasicBlock::iterator(MI)),
11764 thisMBB->end());
11765 endMBB->transferSuccessorsAndUpdatePHIs(thisMBB);
11766
11767 // Make offsetMBB and overflowMBB successors of thisMBB
11768 thisMBB->addSuccessor(offsetMBB);
11769 thisMBB->addSuccessor(overflowMBB);
11770
11771 // endMBB is a successor of both offsetMBB and overflowMBB
11772 offsetMBB->addSuccessor(endMBB);
11773 overflowMBB->addSuccessor(endMBB);
11774
11775 // Load the offset value into a register
11776 OffsetReg = MRI.createVirtualRegister(OffsetRegClass);
11777 BuildMI(thisMBB, DL, TII->get(X86::MOV32rm), OffsetReg)
11778 .addOperand(Base)
11779 .addOperand(Scale)
11780 .addOperand(Index)
11781 .addDisp(Disp, UseFPOffset ? 4 : 0)
11782 .addOperand(Segment)
11783 .setMemRefs(MMOBegin, MMOEnd);
11784
11785 // Check if there is enough room left to pull this argument.
11786 BuildMI(thisMBB, DL, TII->get(X86::CMP32ri))
11787 .addReg(OffsetReg)
11788 .addImm(MaxOffset + 8 - ArgSizeA8);
11789
11790 // Branch to "overflowMBB" if offset >= max
11791 // Fall through to "offsetMBB" otherwise
11792 BuildMI(thisMBB, DL, TII->get(X86::GetCondBranchFromCond(X86::COND_AE)))
11793 .addMBB(overflowMBB);
11794 }
11795
11796 // In offsetMBB, emit code to use the reg_save_area.
11797 if (offsetMBB) {
11798 assert(OffsetReg != 0);
11799
11800 // Read the reg_save_area address.
11801 unsigned RegSaveReg = MRI.createVirtualRegister(AddrRegClass);
11802 BuildMI(offsetMBB, DL, TII->get(X86::MOV64rm), RegSaveReg)
11803 .addOperand(Base)
11804 .addOperand(Scale)
11805 .addOperand(Index)
11806 .addDisp(Disp, 16)
11807 .addOperand(Segment)
11808 .setMemRefs(MMOBegin, MMOEnd);
11809
11810 // Zero-extend the offset
11811 unsigned OffsetReg64 = MRI.createVirtualRegister(AddrRegClass);
11812 BuildMI(offsetMBB, DL, TII->get(X86::SUBREG_TO_REG), OffsetReg64)
11813 .addImm(0)
11814 .addReg(OffsetReg)
11815 .addImm(X86::sub_32bit);
11816
11817 // Add the offset to the reg_save_area to get the final address.
11818 BuildMI(offsetMBB, DL, TII->get(X86::ADD64rr), OffsetDestReg)
11819 .addReg(OffsetReg64)
11820 .addReg(RegSaveReg);
11821
11822 // Compute the offset for the next argument
11823 unsigned NextOffsetReg = MRI.createVirtualRegister(OffsetRegClass);
11824 BuildMI(offsetMBB, DL, TII->get(X86::ADD32ri), NextOffsetReg)
11825 .addReg(OffsetReg)
11826 .addImm(UseFPOffset ? 16 : 8);
11827
11828 // Store it back into the va_list.
11829 BuildMI(offsetMBB, DL, TII->get(X86::MOV32mr))
11830 .addOperand(Base)
11831 .addOperand(Scale)
11832 .addOperand(Index)
11833 .addDisp(Disp, UseFPOffset ? 4 : 0)
11834 .addOperand(Segment)
11835 .addReg(NextOffsetReg)
11836 .setMemRefs(MMOBegin, MMOEnd);
11837
11838 // Jump to endMBB
11839 BuildMI(offsetMBB, DL, TII->get(X86::JMP_4))
11840 .addMBB(endMBB);
11841 }
11842
11843 //
11844 // Emit code to use overflow area
11845 //
11846
11847 // Load the overflow_area address into a register.
11848 unsigned OverflowAddrReg = MRI.createVirtualRegister(AddrRegClass);
11849 BuildMI(overflowMBB, DL, TII->get(X86::MOV64rm), OverflowAddrReg)
11850 .addOperand(Base)
11851 .addOperand(Scale)
11852 .addOperand(Index)
11853 .addDisp(Disp, 8)
11854 .addOperand(Segment)
11855 .setMemRefs(MMOBegin, MMOEnd);
11856
11857 // If we need to align it, do so. Otherwise, just copy the address
11858 // to OverflowDestReg.
11859 if (NeedsAlign) {
11860 // Align the overflow address
11861 assert((Align & (Align-1)) == 0 && "Alignment must be a power of 2");
11862 unsigned TmpReg = MRI.createVirtualRegister(AddrRegClass);
11863
11864 // aligned_addr = (addr + (align-1)) & ~(align-1)
11865 BuildMI(overflowMBB, DL, TII->get(X86::ADD64ri32), TmpReg)
11866 .addReg(OverflowAddrReg)
11867 .addImm(Align-1);
11868
11869 BuildMI(overflowMBB, DL, TII->get(X86::AND64ri32), OverflowDestReg)
11870 .addReg(TmpReg)
11871 .addImm(~(uint64_t)(Align-1));
11872 } else {
11873 BuildMI(overflowMBB, DL, TII->get(TargetOpcode::COPY), OverflowDestReg)
11874 .addReg(OverflowAddrReg);
11875 }
11876
11877 // Compute the next overflow address after this argument.
11878 // (the overflow address should be kept 8-byte aligned)
11879 unsigned NextAddrReg = MRI.createVirtualRegister(AddrRegClass);
11880 BuildMI(overflowMBB, DL, TII->get(X86::ADD64ri32), NextAddrReg)
11881 .addReg(OverflowDestReg)
11882 .addImm(ArgSizeA8);
11883
11884 // Store the new overflow address.
11885 BuildMI(overflowMBB, DL, TII->get(X86::MOV64mr))
11886 .addOperand(Base)
11887 .addOperand(Scale)
11888 .addOperand(Index)
11889 .addDisp(Disp, 8)
11890 .addOperand(Segment)
11891 .addReg(NextAddrReg)
11892 .setMemRefs(MMOBegin, MMOEnd);
11893
11894 // If we branched, emit the PHI to the front of endMBB.
11895 if (offsetMBB) {
11896 BuildMI(*endMBB, endMBB->begin(), DL,
11897 TII->get(X86::PHI), DestReg)
11898 .addReg(OffsetDestReg).addMBB(offsetMBB)
11899 .addReg(OverflowDestReg).addMBB(overflowMBB);
11900 }
11901
11902 // Erase the pseudo instruction
11903 MI->eraseFromParent();
11904
11905 return endMBB;
11906}
11907
11908MachineBasicBlock *
Dan Gohmand6708ea2009-08-15 01:38:56 +000011909X86TargetLowering::EmitVAStartSaveXMMRegsWithCustomInserter(
11910 MachineInstr *MI,
11911 MachineBasicBlock *MBB) const {
11912 // Emit code to save XMM registers to the stack. The ABI says that the
11913 // number of registers to save is given in %al, so it's theoretically
11914 // possible to do an indirect jump trick to avoid saving all of them,
11915 // however this code takes a simpler approach and just executes all
11916 // of the stores if %al is non-zero. It's less code, and it's probably
11917 // easier on the hardware branch predictor, and stores aren't all that
11918 // expensive anyway.
11919
11920 // Create the new basic blocks. One block contains all the XMM stores,
11921 // and one block is the final destination regardless of whether any
11922 // stores were performed.
11923 const BasicBlock *LLVM_BB = MBB->getBasicBlock();
11924 MachineFunction *F = MBB->getParent();
11925 MachineFunction::iterator MBBIter = MBB;
11926 ++MBBIter;
11927 MachineBasicBlock *XMMSaveMBB = F->CreateMachineBasicBlock(LLVM_BB);
11928 MachineBasicBlock *EndMBB = F->CreateMachineBasicBlock(LLVM_BB);
11929 F->insert(MBBIter, XMMSaveMBB);
11930 F->insert(MBBIter, EndMBB);
11931
Dan Gohman14152b42010-07-06 20:24:04 +000011932 // Transfer the remainder of MBB and its successor edges to EndMBB.
11933 EndMBB->splice(EndMBB->begin(), MBB,
11934 llvm::next(MachineBasicBlock::iterator(MI)),
11935 MBB->end());
11936 EndMBB->transferSuccessorsAndUpdatePHIs(MBB);
11937
Dan Gohmand6708ea2009-08-15 01:38:56 +000011938 // The original block will now fall through to the XMM save block.
11939 MBB->addSuccessor(XMMSaveMBB);
11940 // The XMMSaveMBB will fall through to the end block.
11941 XMMSaveMBB->addSuccessor(EndMBB);
11942
11943 // Now add the instructions.
11944 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
11945 DebugLoc DL = MI->getDebugLoc();
11946
11947 unsigned CountReg = MI->getOperand(0).getReg();
11948 int64_t RegSaveFrameIndex = MI->getOperand(1).getImm();
11949 int64_t VarArgsFPOffset = MI->getOperand(2).getImm();
11950
11951 if (!Subtarget->isTargetWin64()) {
11952 // If %al is 0, branch around the XMM save block.
11953 BuildMI(MBB, DL, TII->get(X86::TEST8rr)).addReg(CountReg).addReg(CountReg);
Chris Lattnerbd13fb62010-02-11 19:25:55 +000011954 BuildMI(MBB, DL, TII->get(X86::JE_4)).addMBB(EndMBB);
Dan Gohmand6708ea2009-08-15 01:38:56 +000011955 MBB->addSuccessor(EndMBB);
11956 }
11957
Bruno Cardoso Lopes5affa512011-08-31 03:04:09 +000011958 unsigned MOVOpc = Subtarget->hasAVX() ? X86::VMOVAPSmr : X86::MOVAPSmr;
Dan Gohmand6708ea2009-08-15 01:38:56 +000011959 // In the XMM save block, save all the XMM argument registers.
11960 for (int i = 3, e = MI->getNumOperands(); i != e; ++i) {
11961 int64_t Offset = (i - 3) * 16 + VarArgsFPOffset;
Dan Gohmanc76909a2009-09-25 20:36:54 +000011962 MachineMemOperand *MMO =
Evan Chengff89dcb2009-10-18 18:16:27 +000011963 F->getMachineMemOperand(
Chris Lattnere8639032010-09-21 06:22:23 +000011964 MachinePointerInfo::getFixedStack(RegSaveFrameIndex, Offset),
Chris Lattner59db5492010-09-21 04:39:43 +000011965 MachineMemOperand::MOStore,
Evan Chengff89dcb2009-10-18 18:16:27 +000011966 /*Size=*/16, /*Align=*/16);
Bruno Cardoso Lopes5affa512011-08-31 03:04:09 +000011967 BuildMI(XMMSaveMBB, DL, TII->get(MOVOpc))
Dan Gohmand6708ea2009-08-15 01:38:56 +000011968 .addFrameIndex(RegSaveFrameIndex)
11969 .addImm(/*Scale=*/1)
11970 .addReg(/*IndexReg=*/0)
11971 .addImm(/*Disp=*/Offset)
11972 .addReg(/*Segment=*/0)
11973 .addReg(MI->getOperand(i).getReg())
Dan Gohmanc76909a2009-09-25 20:36:54 +000011974 .addMemOperand(MMO);
Dan Gohmand6708ea2009-08-15 01:38:56 +000011975 }
11976
Dan Gohman14152b42010-07-06 20:24:04 +000011977 MI->eraseFromParent(); // The pseudo instruction is gone now.
Dan Gohmand6708ea2009-08-15 01:38:56 +000011978
11979 return EndMBB;
11980}
Mon P Wang63307c32008-05-05 19:05:59 +000011981
Evan Cheng60c07e12006-07-05 22:17:51 +000011982MachineBasicBlock *
Chris Lattner52600972009-09-02 05:57:00 +000011983X86TargetLowering::EmitLoweredSelect(MachineInstr *MI,
Dan Gohmanaf1d8ca2010-05-01 00:01:06 +000011984 MachineBasicBlock *BB) const {
Chris Lattner52600972009-09-02 05:57:00 +000011985 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
11986 DebugLoc DL = MI->getDebugLoc();
Daniel Dunbara279bc32009-09-20 02:20:51 +000011987
Chris Lattner52600972009-09-02 05:57:00 +000011988 // To "insert" a SELECT_CC instruction, we actually have to insert the
11989 // diamond control-flow pattern. The incoming instruction knows the
11990 // destination vreg to set, the condition code register to branch on, the
11991 // true/false values to select between, and a branch opcode to use.
11992 const BasicBlock *LLVM_BB = BB->getBasicBlock();
11993 MachineFunction::iterator It = BB;
11994 ++It;
Daniel Dunbara279bc32009-09-20 02:20:51 +000011995
Chris Lattner52600972009-09-02 05:57:00 +000011996 // thisMBB:
11997 // ...
11998 // TrueVal = ...
11999 // cmpTY ccX, r1, r2
12000 // bCC copy1MBB
12001 // fallthrough --> copy0MBB
12002 MachineBasicBlock *thisMBB = BB;
12003 MachineFunction *F = BB->getParent();
12004 MachineBasicBlock *copy0MBB = F->CreateMachineBasicBlock(LLVM_BB);
12005 MachineBasicBlock *sinkMBB = F->CreateMachineBasicBlock(LLVM_BB);
Chris Lattner52600972009-09-02 05:57:00 +000012006 F->insert(It, copy0MBB);
12007 F->insert(It, sinkMBB);
Bill Wendling730c07e2010-06-25 20:48:10 +000012008
Bill Wendling730c07e2010-06-25 20:48:10 +000012009 // If the EFLAGS register isn't dead in the terminator, then claim that it's
12010 // live into the sink and copy blocks.
Jakob Stoklund Olesen4a1b9d82011-09-02 23:52:49 +000012011 if (!MI->killsRegister(X86::EFLAGS)) {
12012 copy0MBB->addLiveIn(X86::EFLAGS);
12013 sinkMBB->addLiveIn(X86::EFLAGS);
Bill Wendling730c07e2010-06-25 20:48:10 +000012014 }
12015
Dan Gohman14152b42010-07-06 20:24:04 +000012016 // Transfer the remainder of BB and its successor edges to sinkMBB.
12017 sinkMBB->splice(sinkMBB->begin(), BB,
12018 llvm::next(MachineBasicBlock::iterator(MI)),
12019 BB->end());
12020 sinkMBB->transferSuccessorsAndUpdatePHIs(BB);
12021
12022 // Add the true and fallthrough blocks as its successors.
12023 BB->addSuccessor(copy0MBB);
12024 BB->addSuccessor(sinkMBB);
12025
12026 // Create the conditional branch instruction.
12027 unsigned Opc =
12028 X86::GetCondBranchFromCond((X86::CondCode)MI->getOperand(3).getImm());
12029 BuildMI(BB, DL, TII->get(Opc)).addMBB(sinkMBB);
12030
Chris Lattner52600972009-09-02 05:57:00 +000012031 // copy0MBB:
12032 // %FalseValue = ...
12033 // # fallthrough to sinkMBB
Dan Gohman3335a222010-04-30 20:14:26 +000012034 copy0MBB->addSuccessor(sinkMBB);
Daniel Dunbara279bc32009-09-20 02:20:51 +000012035
Chris Lattner52600972009-09-02 05:57:00 +000012036 // sinkMBB:
12037 // %Result = phi [ %FalseValue, copy0MBB ], [ %TrueValue, thisMBB ]
12038 // ...
Dan Gohman14152b42010-07-06 20:24:04 +000012039 BuildMI(*sinkMBB, sinkMBB->begin(), DL,
12040 TII->get(X86::PHI), MI->getOperand(0).getReg())
Chris Lattner52600972009-09-02 05:57:00 +000012041 .addReg(MI->getOperand(1).getReg()).addMBB(copy0MBB)
12042 .addReg(MI->getOperand(2).getReg()).addMBB(thisMBB);
12043
Dan Gohman14152b42010-07-06 20:24:04 +000012044 MI->eraseFromParent(); // The pseudo instruction is gone now.
Dan Gohman3335a222010-04-30 20:14:26 +000012045 return sinkMBB;
Chris Lattner52600972009-09-02 05:57:00 +000012046}
12047
Anton Korobeynikov043f3c22010-03-06 19:32:29 +000012048MachineBasicBlock *
Rafael Espindola151ab3e2011-08-30 19:47:04 +000012049X86TargetLowering::EmitLoweredSegAlloca(MachineInstr *MI, MachineBasicBlock *BB,
12050 bool Is64Bit) const {
12051 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
12052 DebugLoc DL = MI->getDebugLoc();
12053 MachineFunction *MF = BB->getParent();
12054 const BasicBlock *LLVM_BB = BB->getBasicBlock();
12055
Nick Lewycky8a8d4792011-12-02 22:16:29 +000012056 assert(getTargetMachine().Options.EnableSegmentedStacks);
Rafael Espindola151ab3e2011-08-30 19:47:04 +000012057
12058 unsigned TlsReg = Is64Bit ? X86::FS : X86::GS;
12059 unsigned TlsOffset = Is64Bit ? 0x70 : 0x30;
12060
12061 // BB:
12062 // ... [Till the alloca]
12063 // If stacklet is not large enough, jump to mallocMBB
12064 //
12065 // bumpMBB:
12066 // Allocate by subtracting from RSP
12067 // Jump to continueMBB
12068 //
12069 // mallocMBB:
12070 // Allocate by call to runtime
12071 //
12072 // continueMBB:
12073 // ...
12074 // [rest of original BB]
12075 //
12076
12077 MachineBasicBlock *mallocMBB = MF->CreateMachineBasicBlock(LLVM_BB);
12078 MachineBasicBlock *bumpMBB = MF->CreateMachineBasicBlock(LLVM_BB);
12079 MachineBasicBlock *continueMBB = MF->CreateMachineBasicBlock(LLVM_BB);
12080
12081 MachineRegisterInfo &MRI = MF->getRegInfo();
12082 const TargetRegisterClass *AddrRegClass =
12083 getRegClassFor(Is64Bit ? MVT::i64:MVT::i32);
12084
12085 unsigned mallocPtrVReg = MRI.createVirtualRegister(AddrRegClass),
12086 bumpSPPtrVReg = MRI.createVirtualRegister(AddrRegClass),
12087 tmpSPVReg = MRI.createVirtualRegister(AddrRegClass),
Rafael Espindola66bf7432011-10-26 21:16:41 +000012088 SPLimitVReg = MRI.createVirtualRegister(AddrRegClass),
Rafael Espindola151ab3e2011-08-30 19:47:04 +000012089 sizeVReg = MI->getOperand(1).getReg(),
12090 physSPReg = Is64Bit ? X86::RSP : X86::ESP;
12091
12092 MachineFunction::iterator MBBIter = BB;
12093 ++MBBIter;
12094
12095 MF->insert(MBBIter, bumpMBB);
12096 MF->insert(MBBIter, mallocMBB);
12097 MF->insert(MBBIter, continueMBB);
12098
12099 continueMBB->splice(continueMBB->begin(), BB, llvm::next
12100 (MachineBasicBlock::iterator(MI)), BB->end());
12101 continueMBB->transferSuccessorsAndUpdatePHIs(BB);
12102
12103 // Add code to the main basic block to check if the stack limit has been hit,
12104 // and if so, jump to mallocMBB otherwise to bumpMBB.
12105 BuildMI(BB, DL, TII->get(TargetOpcode::COPY), tmpSPVReg).addReg(physSPReg);
Rafael Espindola66bf7432011-10-26 21:16:41 +000012106 BuildMI(BB, DL, TII->get(Is64Bit ? X86::SUB64rr:X86::SUB32rr), SPLimitVReg)
Rafael Espindola151ab3e2011-08-30 19:47:04 +000012107 .addReg(tmpSPVReg).addReg(sizeVReg);
12108 BuildMI(BB, DL, TII->get(Is64Bit ? X86::CMP64mr:X86::CMP32mr))
12109 .addReg(0).addImm(0).addReg(0).addImm(TlsOffset).addReg(TlsReg)
Rafael Espindola66bf7432011-10-26 21:16:41 +000012110 .addReg(SPLimitVReg);
Rafael Espindola151ab3e2011-08-30 19:47:04 +000012111 BuildMI(BB, DL, TII->get(X86::JG_4)).addMBB(mallocMBB);
12112
12113 // bumpMBB simply decreases the stack pointer, since we know the current
12114 // stacklet has enough space.
12115 BuildMI(bumpMBB, DL, TII->get(TargetOpcode::COPY), physSPReg)
Rafael Espindola66bf7432011-10-26 21:16:41 +000012116 .addReg(SPLimitVReg);
Rafael Espindola151ab3e2011-08-30 19:47:04 +000012117 BuildMI(bumpMBB, DL, TII->get(TargetOpcode::COPY), bumpSPPtrVReg)
Rafael Espindola66bf7432011-10-26 21:16:41 +000012118 .addReg(SPLimitVReg);
Rafael Espindola151ab3e2011-08-30 19:47:04 +000012119 BuildMI(bumpMBB, DL, TII->get(X86::JMP_4)).addMBB(continueMBB);
12120
12121 // Calls into a routine in libgcc to allocate more space from the heap.
12122 if (Is64Bit) {
12123 BuildMI(mallocMBB, DL, TII->get(X86::MOV64rr), X86::RDI)
12124 .addReg(sizeVReg);
12125 BuildMI(mallocMBB, DL, TII->get(X86::CALL64pcrel32))
12126 .addExternalSymbol("__morestack_allocate_stack_space").addReg(X86::RDI);
12127 } else {
12128 BuildMI(mallocMBB, DL, TII->get(X86::SUB32ri), physSPReg).addReg(physSPReg)
12129 .addImm(12);
12130 BuildMI(mallocMBB, DL, TII->get(X86::PUSH32r)).addReg(sizeVReg);
12131 BuildMI(mallocMBB, DL, TII->get(X86::CALLpcrel32))
12132 .addExternalSymbol("__morestack_allocate_stack_space");
12133 }
12134
12135 if (!Is64Bit)
12136 BuildMI(mallocMBB, DL, TII->get(X86::ADD32ri), physSPReg).addReg(physSPReg)
12137 .addImm(16);
12138
12139 BuildMI(mallocMBB, DL, TII->get(TargetOpcode::COPY), mallocPtrVReg)
12140 .addReg(Is64Bit ? X86::RAX : X86::EAX);
12141 BuildMI(mallocMBB, DL, TII->get(X86::JMP_4)).addMBB(continueMBB);
12142
12143 // Set up the CFG correctly.
12144 BB->addSuccessor(bumpMBB);
12145 BB->addSuccessor(mallocMBB);
12146 mallocMBB->addSuccessor(continueMBB);
12147 bumpMBB->addSuccessor(continueMBB);
12148
12149 // Take care of the PHI nodes.
12150 BuildMI(*continueMBB, continueMBB->begin(), DL, TII->get(X86::PHI),
12151 MI->getOperand(0).getReg())
12152 .addReg(mallocPtrVReg).addMBB(mallocMBB)
12153 .addReg(bumpSPPtrVReg).addMBB(bumpMBB);
12154
12155 // Delete the original pseudo instruction.
12156 MI->eraseFromParent();
12157
12158 // And we're done.
12159 return continueMBB;
12160}
12161
12162MachineBasicBlock *
Michael J. Spencere9c253e2010-10-21 01:41:01 +000012163X86TargetLowering::EmitLoweredWinAlloca(MachineInstr *MI,
Dan Gohmanaf1d8ca2010-05-01 00:01:06 +000012164 MachineBasicBlock *BB) const {
Anton Korobeynikov043f3c22010-03-06 19:32:29 +000012165 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
12166 DebugLoc DL = MI->getDebugLoc();
Anton Korobeynikov043f3c22010-03-06 19:32:29 +000012167
NAKAMURA Takumia2e07622011-03-24 07:07:00 +000012168 assert(!Subtarget->isTargetEnvMacho());
12169
Anton Korobeynikov043f3c22010-03-06 19:32:29 +000012170 // The lowering is pretty easy: we're just emitting the call to _alloca. The
12171 // non-trivial part is impdef of ESP.
Anton Korobeynikov043f3c22010-03-06 19:32:29 +000012172
NAKAMURA Takumia2e07622011-03-24 07:07:00 +000012173 if (Subtarget->isTargetWin64()) {
12174 if (Subtarget->isTargetCygMing()) {
12175 // ___chkstk(Mingw64):
12176 // Clobbers R10, R11, RAX and EFLAGS.
12177 // Updates RSP.
12178 BuildMI(*BB, MI, DL, TII->get(X86::W64ALLOCA))
12179 .addExternalSymbol("___chkstk")
12180 .addReg(X86::RAX, RegState::Implicit)
12181 .addReg(X86::RSP, RegState::Implicit)
12182 .addReg(X86::RAX, RegState::Define | RegState::Implicit)
12183 .addReg(X86::RSP, RegState::Define | RegState::Implicit)
12184 .addReg(X86::EFLAGS, RegState::Define | RegState::Implicit);
12185 } else {
12186 // __chkstk(MSVCRT): does not update stack pointer.
12187 // Clobbers R10, R11 and EFLAGS.
12188 // FIXME: RAX(allocated size) might be reused and not killed.
12189 BuildMI(*BB, MI, DL, TII->get(X86::W64ALLOCA))
12190 .addExternalSymbol("__chkstk")
12191 .addReg(X86::RAX, RegState::Implicit)
12192 .addReg(X86::EFLAGS, RegState::Define | RegState::Implicit);
12193 // RAX has the offset to subtracted from RSP.
12194 BuildMI(*BB, MI, DL, TII->get(X86::SUB64rr), X86::RSP)
12195 .addReg(X86::RSP)
12196 .addReg(X86::RAX);
12197 }
12198 } else {
12199 const char *StackProbeSymbol =
Michael J. Spencere9c253e2010-10-21 01:41:01 +000012200 Subtarget->isTargetWindows() ? "_chkstk" : "_alloca";
12201
NAKAMURA Takumia2e07622011-03-24 07:07:00 +000012202 BuildMI(*BB, MI, DL, TII->get(X86::CALLpcrel32))
12203 .addExternalSymbol(StackProbeSymbol)
12204 .addReg(X86::EAX, RegState::Implicit)
12205 .addReg(X86::ESP, RegState::Implicit)
12206 .addReg(X86::EAX, RegState::Define | RegState::Implicit)
12207 .addReg(X86::ESP, RegState::Define | RegState::Implicit)
12208 .addReg(X86::EFLAGS, RegState::Define | RegState::Implicit);
12209 }
Anton Korobeynikov043f3c22010-03-06 19:32:29 +000012210
Dan Gohman14152b42010-07-06 20:24:04 +000012211 MI->eraseFromParent(); // The pseudo instruction is gone now.
Anton Korobeynikov043f3c22010-03-06 19:32:29 +000012212 return BB;
12213}
Chris Lattner52600972009-09-02 05:57:00 +000012214
12215MachineBasicBlock *
Eric Christopher30ef0e52010-06-03 04:07:48 +000012216X86TargetLowering::EmitLoweredTLSCall(MachineInstr *MI,
12217 MachineBasicBlock *BB) const {
12218 // This is pretty easy. We're taking the value that we received from
12219 // our load from the relocation, sticking it in either RDI (x86-64)
12220 // or EAX and doing an indirect call. The return value will then
12221 // be in the normal return register.
Michael J. Spencerec38de22010-10-10 22:04:20 +000012222 const X86InstrInfo *TII
Eric Christopher54415362010-06-08 22:04:25 +000012223 = static_cast<const X86InstrInfo*>(getTargetMachine().getInstrInfo());
Eric Christopher30ef0e52010-06-03 04:07:48 +000012224 DebugLoc DL = MI->getDebugLoc();
12225 MachineFunction *F = BB->getParent();
Eric Christopher722d3152010-09-27 06:01:51 +000012226
12227 assert(Subtarget->isTargetDarwin() && "Darwin only instr emitted?");
Eric Christopher54415362010-06-08 22:04:25 +000012228 assert(MI->getOperand(3).isGlobal() && "This should be a global");
Michael J. Spencerec38de22010-10-10 22:04:20 +000012229
Eric Christopher30ef0e52010-06-03 04:07:48 +000012230 if (Subtarget->is64Bit()) {
Dan Gohman14152b42010-07-06 20:24:04 +000012231 MachineInstrBuilder MIB = BuildMI(*BB, MI, DL,
12232 TII->get(X86::MOV64rm), X86::RDI)
Eric Christopher54415362010-06-08 22:04:25 +000012233 .addReg(X86::RIP)
12234 .addImm(0).addReg(0)
Michael J. Spencerec38de22010-10-10 22:04:20 +000012235 .addGlobalAddress(MI->getOperand(3).getGlobal(), 0,
Eric Christopher54415362010-06-08 22:04:25 +000012236 MI->getOperand(3).getTargetFlags())
12237 .addReg(0);
Eric Christopher722d3152010-09-27 06:01:51 +000012238 MIB = BuildMI(*BB, MI, DL, TII->get(X86::CALL64m));
Chris Lattner599b5312010-07-08 23:46:44 +000012239 addDirectMem(MIB, X86::RDI);
Eric Christopher61025492010-06-15 23:08:42 +000012240 } else if (getTargetMachine().getRelocationModel() != Reloc::PIC_) {
Dan Gohman14152b42010-07-06 20:24:04 +000012241 MachineInstrBuilder MIB = BuildMI(*BB, MI, DL,
12242 TII->get(X86::MOV32rm), X86::EAX)
Eric Christopher61025492010-06-15 23:08:42 +000012243 .addReg(0)
12244 .addImm(0).addReg(0)
Michael J. Spencerec38de22010-10-10 22:04:20 +000012245 .addGlobalAddress(MI->getOperand(3).getGlobal(), 0,
Eric Christopher61025492010-06-15 23:08:42 +000012246 MI->getOperand(3).getTargetFlags())
12247 .addReg(0);
Dan Gohman14152b42010-07-06 20:24:04 +000012248 MIB = BuildMI(*BB, MI, DL, TII->get(X86::CALL32m));
Chris Lattner599b5312010-07-08 23:46:44 +000012249 addDirectMem(MIB, X86::EAX);
Eric Christopher30ef0e52010-06-03 04:07:48 +000012250 } else {
Dan Gohman14152b42010-07-06 20:24:04 +000012251 MachineInstrBuilder MIB = BuildMI(*BB, MI, DL,
12252 TII->get(X86::MOV32rm), X86::EAX)
Eric Christopher54415362010-06-08 22:04:25 +000012253 .addReg(TII->getGlobalBaseReg(F))
12254 .addImm(0).addReg(0)
Michael J. Spencerec38de22010-10-10 22:04:20 +000012255 .addGlobalAddress(MI->getOperand(3).getGlobal(), 0,
Eric Christopher54415362010-06-08 22:04:25 +000012256 MI->getOperand(3).getTargetFlags())
12257 .addReg(0);
Dan Gohman14152b42010-07-06 20:24:04 +000012258 MIB = BuildMI(*BB, MI, DL, TII->get(X86::CALL32m));
Chris Lattner599b5312010-07-08 23:46:44 +000012259 addDirectMem(MIB, X86::EAX);
Eric Christopher30ef0e52010-06-03 04:07:48 +000012260 }
Michael J. Spencerec38de22010-10-10 22:04:20 +000012261
Dan Gohman14152b42010-07-06 20:24:04 +000012262 MI->eraseFromParent(); // The pseudo instruction is gone now.
Eric Christopher30ef0e52010-06-03 04:07:48 +000012263 return BB;
12264}
12265
12266MachineBasicBlock *
Evan Chengff9b3732008-01-30 18:18:23 +000012267X86TargetLowering::EmitInstrWithCustomInserter(MachineInstr *MI,
Dan Gohmanaf1d8ca2010-05-01 00:01:06 +000012268 MachineBasicBlock *BB) const {
Evan Cheng60c07e12006-07-05 22:17:51 +000012269 switch (MI->getOpcode()) {
Richard Trieu23946fc2011-09-21 03:09:09 +000012270 default: assert(0 && "Unexpected instr type to insert");
NAKAMURA Takumi7754f852011-01-26 02:04:09 +000012271 case X86::TAILJMPd64:
12272 case X86::TAILJMPr64:
12273 case X86::TAILJMPm64:
Richard Trieu23946fc2011-09-21 03:09:09 +000012274 assert(0 && "TAILJMP64 would not be touched here.");
NAKAMURA Takumi7754f852011-01-26 02:04:09 +000012275 case X86::TCRETURNdi64:
12276 case X86::TCRETURNri64:
12277 case X86::TCRETURNmi64:
12278 // Defs of TCRETURNxx64 has Win64's callee-saved registers, as subset.
12279 // On AMD64, additional defs should be added before register allocation.
12280 if (!Subtarget->isTargetWin64()) {
12281 MI->addRegisterDefined(X86::RSI);
12282 MI->addRegisterDefined(X86::RDI);
12283 MI->addRegisterDefined(X86::XMM6);
12284 MI->addRegisterDefined(X86::XMM7);
12285 MI->addRegisterDefined(X86::XMM8);
12286 MI->addRegisterDefined(X86::XMM9);
12287 MI->addRegisterDefined(X86::XMM10);
12288 MI->addRegisterDefined(X86::XMM11);
12289 MI->addRegisterDefined(X86::XMM12);
12290 MI->addRegisterDefined(X86::XMM13);
12291 MI->addRegisterDefined(X86::XMM14);
12292 MI->addRegisterDefined(X86::XMM15);
12293 }
12294 return BB;
Michael J. Spencere9c253e2010-10-21 01:41:01 +000012295 case X86::WIN_ALLOCA:
12296 return EmitLoweredWinAlloca(MI, BB);
Rafael Espindola151ab3e2011-08-30 19:47:04 +000012297 case X86::SEG_ALLOCA_32:
12298 return EmitLoweredSegAlloca(MI, BB, false);
12299 case X86::SEG_ALLOCA_64:
12300 return EmitLoweredSegAlloca(MI, BB, true);
Eric Christopher30ef0e52010-06-03 04:07:48 +000012301 case X86::TLSCall_32:
12302 case X86::TLSCall_64:
12303 return EmitLoweredTLSCall(MI, BB);
Dan Gohmancbbea0f2009-08-27 00:14:12 +000012304 case X86::CMOV_GR8:
Evan Cheng60c07e12006-07-05 22:17:51 +000012305 case X86::CMOV_FR32:
12306 case X86::CMOV_FR64:
12307 case X86::CMOV_V4F32:
12308 case X86::CMOV_V2F64:
Chris Lattner52600972009-09-02 05:57:00 +000012309 case X86::CMOV_V2I64:
Bruno Cardoso Lopesd40aa242011-08-09 23:27:13 +000012310 case X86::CMOV_V8F32:
12311 case X86::CMOV_V4F64:
12312 case X86::CMOV_V4I64:
Chris Lattner314a1132010-03-14 18:31:44 +000012313 case X86::CMOV_GR16:
12314 case X86::CMOV_GR32:
12315 case X86::CMOV_RFP32:
12316 case X86::CMOV_RFP64:
12317 case X86::CMOV_RFP80:
Dan Gohmanaf1d8ca2010-05-01 00:01:06 +000012318 return EmitLoweredSelect(MI, BB);
Evan Cheng60c07e12006-07-05 22:17:51 +000012319
Dale Johannesen849f2142007-07-03 00:53:03 +000012320 case X86::FP32_TO_INT16_IN_MEM:
12321 case X86::FP32_TO_INT32_IN_MEM:
12322 case X86::FP32_TO_INT64_IN_MEM:
12323 case X86::FP64_TO_INT16_IN_MEM:
12324 case X86::FP64_TO_INT32_IN_MEM:
Dale Johannesena996d522007-08-07 01:17:37 +000012325 case X86::FP64_TO_INT64_IN_MEM:
12326 case X86::FP80_TO_INT16_IN_MEM:
12327 case X86::FP80_TO_INT32_IN_MEM:
12328 case X86::FP80_TO_INT64_IN_MEM: {
Chris Lattner52600972009-09-02 05:57:00 +000012329 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
12330 DebugLoc DL = MI->getDebugLoc();
12331
Evan Cheng60c07e12006-07-05 22:17:51 +000012332 // Change the floating point control register to use "round towards zero"
12333 // mode when truncating to an integer value.
12334 MachineFunction *F = BB->getParent();
David Greene3f2bf852009-11-12 20:49:22 +000012335 int CWFrameIdx = F->getFrameInfo()->CreateStackObject(2, 2, false);
Dan Gohman14152b42010-07-06 20:24:04 +000012336 addFrameReference(BuildMI(*BB, MI, DL,
12337 TII->get(X86::FNSTCW16m)), CWFrameIdx);
Evan Cheng60c07e12006-07-05 22:17:51 +000012338
12339 // Load the old value of the high byte of the control word...
12340 unsigned OldCW =
Chris Lattner84bc5422007-12-31 04:13:23 +000012341 F->getRegInfo().createVirtualRegister(X86::GR16RegisterClass);
Dan Gohman14152b42010-07-06 20:24:04 +000012342 addFrameReference(BuildMI(*BB, MI, DL, TII->get(X86::MOV16rm), OldCW),
Dale Johannesene4d209d2009-02-03 20:21:25 +000012343 CWFrameIdx);
Evan Cheng60c07e12006-07-05 22:17:51 +000012344
12345 // Set the high part to be round to zero...
Dan Gohman14152b42010-07-06 20:24:04 +000012346 addFrameReference(BuildMI(*BB, MI, DL, TII->get(X86::MOV16mi)), CWFrameIdx)
Evan Chengc0f64ff2006-11-27 23:37:22 +000012347 .addImm(0xC7F);
Evan Cheng60c07e12006-07-05 22:17:51 +000012348
12349 // Reload the modified control word now...
Dan Gohman14152b42010-07-06 20:24:04 +000012350 addFrameReference(BuildMI(*BB, MI, DL,
12351 TII->get(X86::FLDCW16m)), CWFrameIdx);
Evan Cheng60c07e12006-07-05 22:17:51 +000012352
12353 // Restore the memory image of control word to original value
Dan Gohman14152b42010-07-06 20:24:04 +000012354 addFrameReference(BuildMI(*BB, MI, DL, TII->get(X86::MOV16mr)), CWFrameIdx)
Evan Chengc0f64ff2006-11-27 23:37:22 +000012355 .addReg(OldCW);
Evan Cheng60c07e12006-07-05 22:17:51 +000012356
12357 // Get the X86 opcode to use.
12358 unsigned Opc;
12359 switch (MI->getOpcode()) {
Torok Edwinc23197a2009-07-14 16:55:14 +000012360 default: llvm_unreachable("illegal opcode!");
Dale Johannesene377d4d2007-07-04 21:07:47 +000012361 case X86::FP32_TO_INT16_IN_MEM: Opc = X86::IST_Fp16m32; break;
12362 case X86::FP32_TO_INT32_IN_MEM: Opc = X86::IST_Fp32m32; break;
12363 case X86::FP32_TO_INT64_IN_MEM: Opc = X86::IST_Fp64m32; break;
12364 case X86::FP64_TO_INT16_IN_MEM: Opc = X86::IST_Fp16m64; break;
12365 case X86::FP64_TO_INT32_IN_MEM: Opc = X86::IST_Fp32m64; break;
12366 case X86::FP64_TO_INT64_IN_MEM: Opc = X86::IST_Fp64m64; break;
Dale Johannesena996d522007-08-07 01:17:37 +000012367 case X86::FP80_TO_INT16_IN_MEM: Opc = X86::IST_Fp16m80; break;
12368 case X86::FP80_TO_INT32_IN_MEM: Opc = X86::IST_Fp32m80; break;
12369 case X86::FP80_TO_INT64_IN_MEM: Opc = X86::IST_Fp64m80; break;
Evan Cheng60c07e12006-07-05 22:17:51 +000012370 }
12371
12372 X86AddressMode AM;
12373 MachineOperand &Op = MI->getOperand(0);
Dan Gohmand735b802008-10-03 15:45:36 +000012374 if (Op.isReg()) {
Evan Cheng60c07e12006-07-05 22:17:51 +000012375 AM.BaseType = X86AddressMode::RegBase;
12376 AM.Base.Reg = Op.getReg();
12377 } else {
12378 AM.BaseType = X86AddressMode::FrameIndexBase;
Chris Lattner8aa797a2007-12-30 23:10:15 +000012379 AM.Base.FrameIndex = Op.getIndex();
Evan Cheng60c07e12006-07-05 22:17:51 +000012380 }
12381 Op = MI->getOperand(1);
Dan Gohmand735b802008-10-03 15:45:36 +000012382 if (Op.isImm())
Chris Lattner7fbe9722006-10-20 17:42:20 +000012383 AM.Scale = Op.getImm();
Evan Cheng60c07e12006-07-05 22:17:51 +000012384 Op = MI->getOperand(2);
Dan Gohmand735b802008-10-03 15:45:36 +000012385 if (Op.isImm())
Chris Lattner7fbe9722006-10-20 17:42:20 +000012386 AM.IndexReg = Op.getImm();
Evan Cheng60c07e12006-07-05 22:17:51 +000012387 Op = MI->getOperand(3);
Dan Gohmand735b802008-10-03 15:45:36 +000012388 if (Op.isGlobal()) {
Evan Cheng60c07e12006-07-05 22:17:51 +000012389 AM.GV = Op.getGlobal();
12390 } else {
Chris Lattner7fbe9722006-10-20 17:42:20 +000012391 AM.Disp = Op.getImm();
Evan Cheng60c07e12006-07-05 22:17:51 +000012392 }
Dan Gohman14152b42010-07-06 20:24:04 +000012393 addFullAddress(BuildMI(*BB, MI, DL, TII->get(Opc)), AM)
Chris Lattnerac0ed5d2010-07-08 22:41:28 +000012394 .addReg(MI->getOperand(X86::AddrNumOperands).getReg());
Evan Cheng60c07e12006-07-05 22:17:51 +000012395
12396 // Reload the original control word now.
Dan Gohman14152b42010-07-06 20:24:04 +000012397 addFrameReference(BuildMI(*BB, MI, DL,
12398 TII->get(X86::FLDCW16m)), CWFrameIdx);
Evan Cheng60c07e12006-07-05 22:17:51 +000012399
Dan Gohman14152b42010-07-06 20:24:04 +000012400 MI->eraseFromParent(); // The pseudo instruction is gone now.
Evan Cheng60c07e12006-07-05 22:17:51 +000012401 return BB;
12402 }
Eric Christopherb120ab42009-08-18 22:50:32 +000012403 // String/text processing lowering.
12404 case X86::PCMPISTRM128REG:
Bruno Cardoso Lopes98f98562010-07-30 19:54:33 +000012405 case X86::VPCMPISTRM128REG:
Eric Christopherb120ab42009-08-18 22:50:32 +000012406 return EmitPCMP(MI, BB, 3, false /* in-mem */);
12407 case X86::PCMPISTRM128MEM:
Bruno Cardoso Lopes98f98562010-07-30 19:54:33 +000012408 case X86::VPCMPISTRM128MEM:
Eric Christopherb120ab42009-08-18 22:50:32 +000012409 return EmitPCMP(MI, BB, 3, true /* in-mem */);
12410 case X86::PCMPESTRM128REG:
Bruno Cardoso Lopes98f98562010-07-30 19:54:33 +000012411 case X86::VPCMPESTRM128REG:
Eric Christopherb120ab42009-08-18 22:50:32 +000012412 return EmitPCMP(MI, BB, 5, false /* in mem */);
12413 case X86::PCMPESTRM128MEM:
Bruno Cardoso Lopes98f98562010-07-30 19:54:33 +000012414 case X86::VPCMPESTRM128MEM:
Eric Christopherb120ab42009-08-18 22:50:32 +000012415 return EmitPCMP(MI, BB, 5, true /* in mem */);
12416
Eric Christopher228232b2010-11-30 07:20:12 +000012417 // Thread synchronization.
12418 case X86::MONITOR:
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000012419 return EmitMonitor(MI, BB);
Eric Christopher228232b2010-11-30 07:20:12 +000012420 case X86::MWAIT:
12421 return EmitMwait(MI, BB);
12422
Eric Christopherb120ab42009-08-18 22:50:32 +000012423 // Atomic Lowering.
Mon P Wang63307c32008-05-05 19:05:59 +000012424 case X86::ATOMAND32:
12425 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::AND32rr,
Scott Michelfdc40a02009-02-17 22:15:04 +000012426 X86::AND32ri, X86::MOV32rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012427 X86::LCMPXCHG32,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012428 X86::NOT32r, X86::EAX,
12429 X86::GR32RegisterClass);
Mon P Wang63307c32008-05-05 19:05:59 +000012430 case X86::ATOMOR32:
Scott Michelfdc40a02009-02-17 22:15:04 +000012431 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::OR32rr,
12432 X86::OR32ri, X86::MOV32rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012433 X86::LCMPXCHG32,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012434 X86::NOT32r, X86::EAX,
12435 X86::GR32RegisterClass);
Mon P Wang63307c32008-05-05 19:05:59 +000012436 case X86::ATOMXOR32:
12437 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::XOR32rr,
Scott Michelfdc40a02009-02-17 22:15:04 +000012438 X86::XOR32ri, X86::MOV32rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012439 X86::LCMPXCHG32,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012440 X86::NOT32r, X86::EAX,
12441 X86::GR32RegisterClass);
Andrew Lenharth507a58a2008-06-14 05:48:15 +000012442 case X86::ATOMNAND32:
12443 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::AND32rr,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012444 X86::AND32ri, X86::MOV32rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012445 X86::LCMPXCHG32,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012446 X86::NOT32r, X86::EAX,
12447 X86::GR32RegisterClass, true);
Mon P Wang63307c32008-05-05 19:05:59 +000012448 case X86::ATOMMIN32:
12449 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVL32rr);
12450 case X86::ATOMMAX32:
12451 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVG32rr);
12452 case X86::ATOMUMIN32:
12453 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVB32rr);
12454 case X86::ATOMUMAX32:
12455 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVA32rr);
Dale Johannesen140be2d2008-08-19 18:47:28 +000012456
12457 case X86::ATOMAND16:
12458 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::AND16rr,
12459 X86::AND16ri, X86::MOV16rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012460 X86::LCMPXCHG16,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012461 X86::NOT16r, X86::AX,
12462 X86::GR16RegisterClass);
12463 case X86::ATOMOR16:
Scott Michelfdc40a02009-02-17 22:15:04 +000012464 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::OR16rr,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012465 X86::OR16ri, X86::MOV16rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012466 X86::LCMPXCHG16,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012467 X86::NOT16r, X86::AX,
12468 X86::GR16RegisterClass);
12469 case X86::ATOMXOR16:
12470 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::XOR16rr,
12471 X86::XOR16ri, X86::MOV16rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012472 X86::LCMPXCHG16,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012473 X86::NOT16r, X86::AX,
12474 X86::GR16RegisterClass);
12475 case X86::ATOMNAND16:
12476 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::AND16rr,
12477 X86::AND16ri, X86::MOV16rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012478 X86::LCMPXCHG16,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012479 X86::NOT16r, X86::AX,
12480 X86::GR16RegisterClass, true);
12481 case X86::ATOMMIN16:
12482 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVL16rr);
12483 case X86::ATOMMAX16:
12484 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVG16rr);
12485 case X86::ATOMUMIN16:
12486 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVB16rr);
12487 case X86::ATOMUMAX16:
12488 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVA16rr);
12489
12490 case X86::ATOMAND8:
12491 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::AND8rr,
12492 X86::AND8ri, X86::MOV8rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012493 X86::LCMPXCHG8,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012494 X86::NOT8r, X86::AL,
12495 X86::GR8RegisterClass);
12496 case X86::ATOMOR8:
Scott Michelfdc40a02009-02-17 22:15:04 +000012497 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::OR8rr,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012498 X86::OR8ri, X86::MOV8rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012499 X86::LCMPXCHG8,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012500 X86::NOT8r, X86::AL,
12501 X86::GR8RegisterClass);
12502 case X86::ATOMXOR8:
12503 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::XOR8rr,
12504 X86::XOR8ri, X86::MOV8rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012505 X86::LCMPXCHG8,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012506 X86::NOT8r, X86::AL,
12507 X86::GR8RegisterClass);
12508 case X86::ATOMNAND8:
12509 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::AND8rr,
12510 X86::AND8ri, X86::MOV8rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012511 X86::LCMPXCHG8,
Dale Johannesen140be2d2008-08-19 18:47:28 +000012512 X86::NOT8r, X86::AL,
12513 X86::GR8RegisterClass, true);
12514 // FIXME: There are no CMOV8 instructions; MIN/MAX need some other way.
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012515 // This group is for 64-bit host.
Dale Johannesena99e3842008-08-20 00:48:50 +000012516 case X86::ATOMAND64:
12517 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::AND64rr,
Scott Michelfdc40a02009-02-17 22:15:04 +000012518 X86::AND64ri32, X86::MOV64rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012519 X86::LCMPXCHG64,
Dale Johannesena99e3842008-08-20 00:48:50 +000012520 X86::NOT64r, X86::RAX,
12521 X86::GR64RegisterClass);
12522 case X86::ATOMOR64:
Scott Michelfdc40a02009-02-17 22:15:04 +000012523 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::OR64rr,
12524 X86::OR64ri32, X86::MOV64rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012525 X86::LCMPXCHG64,
Dale Johannesena99e3842008-08-20 00:48:50 +000012526 X86::NOT64r, X86::RAX,
12527 X86::GR64RegisterClass);
12528 case X86::ATOMXOR64:
12529 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::XOR64rr,
Scott Michelfdc40a02009-02-17 22:15:04 +000012530 X86::XOR64ri32, X86::MOV64rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012531 X86::LCMPXCHG64,
Dale Johannesena99e3842008-08-20 00:48:50 +000012532 X86::NOT64r, X86::RAX,
12533 X86::GR64RegisterClass);
12534 case X86::ATOMNAND64:
12535 return EmitAtomicBitwiseWithCustomInserter(MI, BB, X86::AND64rr,
12536 X86::AND64ri32, X86::MOV64rm,
Jakob Stoklund Olesenb5378ea2010-07-14 23:50:27 +000012537 X86::LCMPXCHG64,
Dale Johannesena99e3842008-08-20 00:48:50 +000012538 X86::NOT64r, X86::RAX,
12539 X86::GR64RegisterClass, true);
12540 case X86::ATOMMIN64:
12541 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVL64rr);
12542 case X86::ATOMMAX64:
12543 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVG64rr);
12544 case X86::ATOMUMIN64:
12545 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVB64rr);
12546 case X86::ATOMUMAX64:
12547 return EmitAtomicMinMaxWithCustomInserter(MI, BB, X86::CMOVA64rr);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012548
12549 // This group does 64-bit operations on a 32-bit host.
12550 case X86::ATOMAND6432:
Scott Michelfdc40a02009-02-17 22:15:04 +000012551 return EmitAtomicBit6432WithCustomInserter(MI, BB,
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012552 X86::AND32rr, X86::AND32rr,
12553 X86::AND32ri, X86::AND32ri,
12554 false);
12555 case X86::ATOMOR6432:
Scott Michelfdc40a02009-02-17 22:15:04 +000012556 return EmitAtomicBit6432WithCustomInserter(MI, BB,
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012557 X86::OR32rr, X86::OR32rr,
12558 X86::OR32ri, X86::OR32ri,
12559 false);
12560 case X86::ATOMXOR6432:
Scott Michelfdc40a02009-02-17 22:15:04 +000012561 return EmitAtomicBit6432WithCustomInserter(MI, BB,
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012562 X86::XOR32rr, X86::XOR32rr,
12563 X86::XOR32ri, X86::XOR32ri,
12564 false);
12565 case X86::ATOMNAND6432:
Scott Michelfdc40a02009-02-17 22:15:04 +000012566 return EmitAtomicBit6432WithCustomInserter(MI, BB,
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012567 X86::AND32rr, X86::AND32rr,
12568 X86::AND32ri, X86::AND32ri,
12569 true);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012570 case X86::ATOMADD6432:
Scott Michelfdc40a02009-02-17 22:15:04 +000012571 return EmitAtomicBit6432WithCustomInserter(MI, BB,
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012572 X86::ADD32rr, X86::ADC32rr,
12573 X86::ADD32ri, X86::ADC32ri,
12574 false);
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012575 case X86::ATOMSUB6432:
Scott Michelfdc40a02009-02-17 22:15:04 +000012576 return EmitAtomicBit6432WithCustomInserter(MI, BB,
Dale Johannesen48c1bc22008-10-02 18:53:47 +000012577 X86::SUB32rr, X86::SBB32rr,
12578 X86::SUB32ri, X86::SBB32ri,
12579 false);
Dale Johannesen880ae362008-10-03 22:25:52 +000012580 case X86::ATOMSWAP6432:
Scott Michelfdc40a02009-02-17 22:15:04 +000012581 return EmitAtomicBit6432WithCustomInserter(MI, BB,
Dale Johannesen880ae362008-10-03 22:25:52 +000012582 X86::MOV32rr, X86::MOV32rr,
12583 X86::MOV32ri, X86::MOV32ri,
12584 false);
Dan Gohmand6708ea2009-08-15 01:38:56 +000012585 case X86::VASTART_SAVE_XMM_REGS:
12586 return EmitVAStartSaveXMMRegsWithCustomInserter(MI, BB);
Dan Gohman320afb82010-10-12 18:00:49 +000012587
12588 case X86::VAARG_64:
12589 return EmitVAARG64WithCustomInserter(MI, BB);
Evan Cheng60c07e12006-07-05 22:17:51 +000012590 }
12591}
12592
12593//===----------------------------------------------------------------------===//
12594// X86 Optimization Hooks
12595//===----------------------------------------------------------------------===//
12596
Dan Gohman475871a2008-07-27 21:46:04 +000012597void X86TargetLowering::computeMaskedBitsForTargetNode(const SDValue Op,
Dan Gohman977a76f2008-02-13 22:28:48 +000012598 const APInt &Mask,
Dan Gohmanfd29e0e2008-02-13 00:35:47 +000012599 APInt &KnownZero,
12600 APInt &KnownOne,
Dan Gohmanea859be2007-06-22 14:59:07 +000012601 const SelectionDAG &DAG,
Nate Begeman368e18d2006-02-16 21:11:51 +000012602 unsigned Depth) const {
Evan Cheng3a03ebb2005-12-21 23:05:39 +000012603 unsigned Opc = Op.getOpcode();
Evan Cheng865f0602006-04-05 06:11:20 +000012604 assert((Opc >= ISD::BUILTIN_OP_END ||
12605 Opc == ISD::INTRINSIC_WO_CHAIN ||
12606 Opc == ISD::INTRINSIC_W_CHAIN ||
12607 Opc == ISD::INTRINSIC_VOID) &&
12608 "Should use MaskedValueIsZero if you don't know whether Op"
12609 " is a target node!");
Evan Cheng3a03ebb2005-12-21 23:05:39 +000012610
Dan Gohmanf4f92f52008-02-13 23:07:24 +000012611 KnownZero = KnownOne = APInt(Mask.getBitWidth(), 0); // Don't know anything.
Evan Cheng3a03ebb2005-12-21 23:05:39 +000012612 switch (Opc) {
Evan Cheng865f0602006-04-05 06:11:20 +000012613 default: break;
Evan Cheng97d0e0e2009-02-02 09:15:04 +000012614 case X86ISD::ADD:
12615 case X86ISD::SUB:
Chris Lattner5b856542010-12-20 00:59:46 +000012616 case X86ISD::ADC:
12617 case X86ISD::SBB:
Evan Cheng97d0e0e2009-02-02 09:15:04 +000012618 case X86ISD::SMUL:
12619 case X86ISD::UMUL:
Dan Gohman076aee32009-03-04 19:44:21 +000012620 case X86ISD::INC:
12621 case X86ISD::DEC:
Dan Gohmane220c4b2009-09-18 19:59:53 +000012622 case X86ISD::OR:
12623 case X86ISD::XOR:
12624 case X86ISD::AND:
Evan Cheng97d0e0e2009-02-02 09:15:04 +000012625 // These nodes' second result is a boolean.
12626 if (Op.getResNo() == 0)
12627 break;
12628 // Fallthrough
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000012629 case X86ISD::SETCC:
Dan Gohmanfd29e0e2008-02-13 00:35:47 +000012630 KnownZero |= APInt::getHighBitsSet(Mask.getBitWidth(),
12631 Mask.getBitWidth() - 1);
Nate Begeman368e18d2006-02-16 21:11:51 +000012632 break;
Evan Cheng7c1780c2011-10-07 17:21:44 +000012633 case ISD::INTRINSIC_WO_CHAIN: {
12634 unsigned IntId = cast<ConstantSDNode>(Op.getOperand(0))->getZExtValue();
12635 unsigned NumLoBits = 0;
12636 switch (IntId) {
12637 default: break;
12638 case Intrinsic::x86_sse_movmsk_ps:
12639 case Intrinsic::x86_avx_movmsk_ps_256:
12640 case Intrinsic::x86_sse2_movmsk_pd:
12641 case Intrinsic::x86_avx_movmsk_pd_256:
12642 case Intrinsic::x86_mmx_pmovmskb:
Craig Topper3738ccd2011-12-27 06:27:23 +000012643 case Intrinsic::x86_sse2_pmovmskb_128:
12644 case Intrinsic::x86_avx2_pmovmskb: {
Evan Cheng7c1780c2011-10-07 17:21:44 +000012645 // High bits of movmskp{s|d}, pmovmskb are known zero.
12646 switch (IntId) {
12647 case Intrinsic::x86_sse_movmsk_ps: NumLoBits = 4; break;
12648 case Intrinsic::x86_avx_movmsk_ps_256: NumLoBits = 8; break;
12649 case Intrinsic::x86_sse2_movmsk_pd: NumLoBits = 2; break;
12650 case Intrinsic::x86_avx_movmsk_pd_256: NumLoBits = 4; break;
12651 case Intrinsic::x86_mmx_pmovmskb: NumLoBits = 8; break;
12652 case Intrinsic::x86_sse2_pmovmskb_128: NumLoBits = 16; break;
Craig Topper3738ccd2011-12-27 06:27:23 +000012653 case Intrinsic::x86_avx2_pmovmskb: NumLoBits = 32; break;
Evan Cheng7c1780c2011-10-07 17:21:44 +000012654 }
12655 KnownZero = APInt::getHighBitsSet(Mask.getBitWidth(),
12656 Mask.getBitWidth() - NumLoBits);
12657 break;
12658 }
12659 }
12660 break;
12661 }
Evan Cheng3a03ebb2005-12-21 23:05:39 +000012662 }
Evan Cheng3a03ebb2005-12-21 23:05:39 +000012663}
Chris Lattner259e97c2006-01-31 19:43:35 +000012664
Owen Andersonbc146b02010-09-21 20:42:50 +000012665unsigned X86TargetLowering::ComputeNumSignBitsForTargetNode(SDValue Op,
12666 unsigned Depth) const {
12667 // SETCC_CARRY sets the dest to ~0 for true or 0 for false.
12668 if (Op.getOpcode() == X86ISD::SETCC_CARRY)
12669 return Op.getValueType().getScalarType().getSizeInBits();
Michael J. Spencerec38de22010-10-10 22:04:20 +000012670
Owen Andersonbc146b02010-09-21 20:42:50 +000012671 // Fallback case.
12672 return 1;
12673}
12674
Evan Cheng206ee9d2006-07-07 08:33:52 +000012675/// isGAPlusOffset - Returns true (and the GlobalValue and the offset) if the
Evan Chengad4196b2008-05-12 19:56:52 +000012676/// node is a GlobalAddress + offset.
12677bool X86TargetLowering::isGAPlusOffset(SDNode *N,
Dan Gohman46510a72010-04-15 01:51:59 +000012678 const GlobalValue* &GA,
12679 int64_t &Offset) const {
Evan Chengad4196b2008-05-12 19:56:52 +000012680 if (N->getOpcode() == X86ISD::Wrapper) {
12681 if (isa<GlobalAddressSDNode>(N->getOperand(0))) {
Evan Cheng206ee9d2006-07-07 08:33:52 +000012682 GA = cast<GlobalAddressSDNode>(N->getOperand(0))->getGlobal();
Dan Gohman6520e202008-10-18 02:06:02 +000012683 Offset = cast<GlobalAddressSDNode>(N->getOperand(0))->getOffset();
Evan Cheng206ee9d2006-07-07 08:33:52 +000012684 return true;
12685 }
Evan Cheng206ee9d2006-07-07 08:33:52 +000012686 }
Evan Chengad4196b2008-05-12 19:56:52 +000012687 return TargetLowering::isGAPlusOffset(N, GA, Offset);
Evan Cheng206ee9d2006-07-07 08:33:52 +000012688}
12689
Bruno Cardoso Lopesef8d6992011-08-11 21:50:44 +000012690/// isShuffleHigh128VectorInsertLow - Checks whether the shuffle node is the
12691/// same as extracting the high 128-bit part of 256-bit vector and then
12692/// inserting the result into the low part of a new 256-bit vector
12693static bool isShuffleHigh128VectorInsertLow(ShuffleVectorSDNode *SVOp) {
12694 EVT VT = SVOp->getValueType(0);
12695 int NumElems = VT.getVectorNumElements();
12696
12697 // vector_shuffle <4, 5, 6, 7, u, u, u, u> or <2, 3, u, u>
12698 for (int i = 0, j = NumElems/2; i < NumElems/2; ++i, ++j)
12699 if (!isUndefOrEqual(SVOp->getMaskElt(i), j) ||
12700 SVOp->getMaskElt(j) >= 0)
12701 return false;
12702
12703 return true;
12704}
12705
12706/// isShuffleLow128VectorInsertHigh - Checks whether the shuffle node is the
12707/// same as extracting the low 128-bit part of 256-bit vector and then
12708/// inserting the result into the high part of a new 256-bit vector
12709static bool isShuffleLow128VectorInsertHigh(ShuffleVectorSDNode *SVOp) {
12710 EVT VT = SVOp->getValueType(0);
12711 int NumElems = VT.getVectorNumElements();
12712
12713 // vector_shuffle <u, u, u, u, 0, 1, 2, 3> or <u, u, 0, 1>
12714 for (int i = NumElems/2, j = 0; i < NumElems; ++i, ++j)
12715 if (!isUndefOrEqual(SVOp->getMaskElt(i), j) ||
12716 SVOp->getMaskElt(j) >= 0)
12717 return false;
12718
12719 return true;
12720}
12721
Bruno Cardoso Lopes74dad552011-07-22 00:15:00 +000012722/// PerformShuffleCombine256 - Performs shuffle combines for 256-bit vectors.
12723static SDValue PerformShuffleCombine256(SDNode *N, SelectionDAG &DAG,
12724 TargetLowering::DAGCombinerInfo &DCI) {
12725 DebugLoc dl = N->getDebugLoc();
12726 ShuffleVectorSDNode *SVOp = cast<ShuffleVectorSDNode>(N);
12727 SDValue V1 = SVOp->getOperand(0);
12728 SDValue V2 = SVOp->getOperand(1);
12729 EVT VT = SVOp->getValueType(0);
Bruno Cardoso Lopesef8d6992011-08-11 21:50:44 +000012730 int NumElems = VT.getVectorNumElements();
Bruno Cardoso Lopes74dad552011-07-22 00:15:00 +000012731
12732 if (V1.getOpcode() == ISD::CONCAT_VECTORS &&
12733 V2.getOpcode() == ISD::CONCAT_VECTORS) {
12734 //
12735 // 0,0,0,...
Benjamin Kramer558cc5a2011-07-22 01:02:57 +000012736 // |
Bruno Cardoso Lopes74dad552011-07-22 00:15:00 +000012737 // V UNDEF BUILD_VECTOR UNDEF
12738 // \ / \ /
12739 // CONCAT_VECTOR CONCAT_VECTOR
12740 // \ /
12741 // \ /
12742 // RESULT: V + zero extended
12743 //
12744 if (V2.getOperand(0).getOpcode() != ISD::BUILD_VECTOR ||
12745 V2.getOperand(1).getOpcode() != ISD::UNDEF ||
12746 V1.getOperand(1).getOpcode() != ISD::UNDEF)
12747 return SDValue();
12748
12749 if (!ISD::isBuildVectorAllZeros(V2.getOperand(0).getNode()))
12750 return SDValue();
12751
12752 // To match the shuffle mask, the first half of the mask should
12753 // be exactly the first vector, and all the rest a splat with the
12754 // first element of the second one.
Bruno Cardoso Lopes74dad552011-07-22 00:15:00 +000012755 for (int i = 0; i < NumElems/2; ++i)
12756 if (!isUndefOrEqual(SVOp->getMaskElt(i), i) ||
12757 !isUndefOrEqual(SVOp->getMaskElt(i+NumElems/2), NumElems))
12758 return SDValue();
12759
12760 // Emit a zeroed vector and insert the desired subvector on its
12761 // first half.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000012762 SDValue Zeros = getZeroVector(VT, true /* HasXMMInt */, DAG, dl);
Bruno Cardoso Lopes74dad552011-07-22 00:15:00 +000012763 SDValue InsV = Insert128BitVector(Zeros, V1.getOperand(0),
12764 DAG.getConstant(0, MVT::i32), DAG, dl);
12765 return DCI.CombineTo(N, InsV);
12766 }
12767
Bruno Cardoso Lopesef8d6992011-08-11 21:50:44 +000012768 //===--------------------------------------------------------------------===//
12769 // Combine some shuffles into subvector extracts and inserts:
12770 //
12771
12772 // vector_shuffle <4, 5, 6, 7, u, u, u, u> or <2, 3, u, u>
12773 if (isShuffleHigh128VectorInsertLow(SVOp)) {
12774 SDValue V = Extract128BitVector(V1, DAG.getConstant(NumElems/2, MVT::i32),
12775 DAG, dl);
12776 SDValue InsV = Insert128BitVector(DAG.getNode(ISD::UNDEF, dl, VT),
12777 V, DAG.getConstant(0, MVT::i32), DAG, dl);
12778 return DCI.CombineTo(N, InsV);
12779 }
12780
12781 // vector_shuffle <u, u, u, u, 0, 1, 2, 3> or <u, u, 0, 1>
12782 if (isShuffleLow128VectorInsertHigh(SVOp)) {
12783 SDValue V = Extract128BitVector(V1, DAG.getConstant(0, MVT::i32), DAG, dl);
12784 SDValue InsV = Insert128BitVector(DAG.getNode(ISD::UNDEF, dl, VT),
12785 V, DAG.getConstant(NumElems/2, MVT::i32), DAG, dl);
12786 return DCI.CombineTo(N, InsV);
12787 }
12788
Bruno Cardoso Lopes74dad552011-07-22 00:15:00 +000012789 return SDValue();
12790}
12791
12792/// PerformShuffleCombine - Performs several different shuffle combines.
Dan Gohman475871a2008-07-27 21:46:04 +000012793static SDValue PerformShuffleCombine(SDNode *N, SelectionDAG &DAG,
Bruno Cardoso Lopes50b37c72011-08-15 21:45:54 +000012794 TargetLowering::DAGCombinerInfo &DCI,
12795 const X86Subtarget *Subtarget) {
Dale Johannesene4d209d2009-02-03 20:21:25 +000012796 DebugLoc dl = N->getDebugLoc();
Owen Andersone50ed302009-08-10 22:56:29 +000012797 EVT VT = N->getValueType(0);
Mon P Wang1e955802009-04-03 02:43:30 +000012798
Mon P Wanga0fd0d52010-12-19 23:55:53 +000012799 // Don't create instructions with illegal types after legalize types has run.
12800 const TargetLowering &TLI = DAG.getTargetLoweringInfo();
12801 if (!DCI.isBeforeLegalize() && !TLI.isTypeLegal(VT.getVectorElementType()))
12802 return SDValue();
12803
Bruno Cardoso Lopes50b37c72011-08-15 21:45:54 +000012804 // Combine 256-bit vector shuffles. This is only profitable when in AVX mode
12805 if (Subtarget->hasAVX() && VT.getSizeInBits() == 256 &&
12806 N->getOpcode() == ISD::VECTOR_SHUFFLE)
Bruno Cardoso Lopes74dad552011-07-22 00:15:00 +000012807 return PerformShuffleCombine256(N, DAG, DCI);
12808
12809 // Only handle 128 wide vector from here on.
12810 if (VT.getSizeInBits() != 128)
12811 return SDValue();
12812
12813 // Combine a vector_shuffle that is equal to build_vector load1, load2, load3,
12814 // load4, <0, 1, 2, 3> into a 128-bit load if the load addresses are
12815 // consecutive, non-overlapping, and in the right order.
Nate Begemanfdea31a2010-03-24 20:49:50 +000012816 SmallVector<SDValue, 16> Elts;
12817 for (unsigned i = 0, e = VT.getVectorNumElements(); i != e; ++i)
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +000012818 Elts.push_back(getShuffleScalarElt(N, i, DAG, 0));
Bruno Cardoso Lopes27f12792010-08-28 02:46:39 +000012819
Nate Begemanfdea31a2010-03-24 20:49:50 +000012820 return EltsFromConsecutiveLoads(VT, Elts, dl, DAG);
Scott Michelfdc40a02009-02-17 22:15:04 +000012821}
Evan Chengd880b972008-05-09 21:53:03 +000012822
Bruno Cardoso Lopesb3e06692010-09-03 19:55:05 +000012823/// PerformEXTRACT_VECTOR_ELTCombine - Detect vector gather/scatter index
12824/// generation and convert it from being a bunch of shuffles and extracts
12825/// to a simple store and scalar loads to extract the elements.
Dan Gohman1bbf72b2010-03-15 23:23:03 +000012826static SDValue PerformEXTRACT_VECTOR_ELTCombine(SDNode *N, SelectionDAG &DAG,
12827 const TargetLowering &TLI) {
12828 SDValue InputVector = N->getOperand(0);
12829
12830 // Only operate on vectors of 4 elements, where the alternative shuffling
12831 // gets to be more expensive.
12832 if (InputVector.getValueType() != MVT::v4i32)
12833 return SDValue();
12834
12835 // Check whether every use of InputVector is an EXTRACT_VECTOR_ELT with a
12836 // single use which is a sign-extend or zero-extend, and all elements are
12837 // used.
12838 SmallVector<SDNode *, 4> Uses;
12839 unsigned ExtractedElements = 0;
12840 for (SDNode::use_iterator UI = InputVector.getNode()->use_begin(),
12841 UE = InputVector.getNode()->use_end(); UI != UE; ++UI) {
12842 if (UI.getUse().getResNo() != InputVector.getResNo())
12843 return SDValue();
12844
12845 SDNode *Extract = *UI;
12846 if (Extract->getOpcode() != ISD::EXTRACT_VECTOR_ELT)
12847 return SDValue();
12848
12849 if (Extract->getValueType(0) != MVT::i32)
12850 return SDValue();
12851 if (!Extract->hasOneUse())
12852 return SDValue();
12853 if (Extract->use_begin()->getOpcode() != ISD::SIGN_EXTEND &&
12854 Extract->use_begin()->getOpcode() != ISD::ZERO_EXTEND)
12855 return SDValue();
12856 if (!isa<ConstantSDNode>(Extract->getOperand(1)))
12857 return SDValue();
12858
12859 // Record which element was extracted.
12860 ExtractedElements |=
12861 1 << cast<ConstantSDNode>(Extract->getOperand(1))->getZExtValue();
12862
12863 Uses.push_back(Extract);
12864 }
12865
12866 // If not all the elements were used, this may not be worthwhile.
12867 if (ExtractedElements != 15)
12868 return SDValue();
12869
12870 // Ok, we've now decided to do the transformation.
12871 DebugLoc dl = InputVector.getDebugLoc();
12872
12873 // Store the value to a temporary stack slot.
12874 SDValue StackPtr = DAG.CreateStackTemporary(InputVector.getValueType());
Chris Lattner8026a9d2010-09-21 17:50:43 +000012875 SDValue Ch = DAG.getStore(DAG.getEntryNode(), dl, InputVector, StackPtr,
12876 MachinePointerInfo(), false, false, 0);
Dan Gohman1bbf72b2010-03-15 23:23:03 +000012877
12878 // Replace each use (extract) with a load of the appropriate element.
12879 for (SmallVectorImpl<SDNode *>::iterator UI = Uses.begin(),
12880 UE = Uses.end(); UI != UE; ++UI) {
12881 SDNode *Extract = *UI;
12882
Nadav Rotem86694292011-05-17 08:31:57 +000012883 // cOMpute the element's address.
Dan Gohman1bbf72b2010-03-15 23:23:03 +000012884 SDValue Idx = Extract->getOperand(1);
12885 unsigned EltSize =
12886 InputVector.getValueType().getVectorElementType().getSizeInBits()/8;
12887 uint64_t Offset = EltSize * cast<ConstantSDNode>(Idx)->getZExtValue();
12888 SDValue OffsetVal = DAG.getConstant(Offset, TLI.getPointerTy());
12889
Nadav Rotem86694292011-05-17 08:31:57 +000012890 SDValue ScalarAddr = DAG.getNode(ISD::ADD, dl, TLI.getPointerTy(),
Chris Lattner51abfe42010-09-21 06:02:19 +000012891 StackPtr, OffsetVal);
Dan Gohman1bbf72b2010-03-15 23:23:03 +000012892
12893 // Load the scalar.
Eric Christopher90eb4022010-07-22 00:26:08 +000012894 SDValue LoadScalar = DAG.getLoad(Extract->getValueType(0), dl, Ch,
Chris Lattner51abfe42010-09-21 06:02:19 +000012895 ScalarAddr, MachinePointerInfo(),
Pete Cooperd752e0f2011-11-08 18:42:53 +000012896 false, false, false, 0);
Dan Gohman1bbf72b2010-03-15 23:23:03 +000012897
12898 // Replace the exact with the load.
12899 DAG.ReplaceAllUsesOfValueWith(SDValue(Extract, 0), LoadScalar);
12900 }
12901
12902 // The replacement was made in place; don't return anything.
12903 return SDValue();
12904}
12905
Duncan Sands6bcd2192011-09-17 16:49:39 +000012906/// PerformSELECTCombine - Do target-specific dag combines on SELECT and VSELECT
12907/// nodes.
Dan Gohman475871a2008-07-27 21:46:04 +000012908static SDValue PerformSELECTCombine(SDNode *N, SelectionDAG &DAG,
Chris Lattner47b4ce82009-03-11 05:48:52 +000012909 const X86Subtarget *Subtarget) {
12910 DebugLoc DL = N->getDebugLoc();
Dan Gohman475871a2008-07-27 21:46:04 +000012911 SDValue Cond = N->getOperand(0);
Chris Lattner47b4ce82009-03-11 05:48:52 +000012912 // Get the LHS/RHS of the select.
12913 SDValue LHS = N->getOperand(1);
12914 SDValue RHS = N->getOperand(2);
Bruno Cardoso Lopes149f29f2011-09-20 22:34:45 +000012915 EVT VT = LHS.getValueType();
Eric Christopherfd179292009-08-27 18:07:15 +000012916
Dan Gohman670e5392009-09-21 18:03:22 +000012917 // If we have SSE[12] support, try to form min/max nodes. SSE min/max
Dan Gohman8ce05da2010-02-22 04:03:39 +000012918 // instructions match the semantics of the common C idiom x<y?x:y but not
12919 // x<=y?x:y, because of how they handle negative zero (which can be
12920 // ignored in unsafe-math mode).
Benjamin Kramer2c2ccbf2011-09-22 03:27:22 +000012921 if (Cond.getOpcode() == ISD::SETCC && VT.isFloatingPoint() &&
12922 VT != MVT::f80 && DAG.getTargetLoweringInfo().isTypeLegal(VT) &&
12923 (Subtarget->hasXMMInt() ||
12924 (Subtarget->hasSSE1() && VT.getScalarType() == MVT::f32))) {
Chris Lattner47b4ce82009-03-11 05:48:52 +000012925 ISD::CondCode CC = cast<CondCodeSDNode>(Cond.getOperand(2))->get();
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000012926
Chris Lattner47b4ce82009-03-11 05:48:52 +000012927 unsigned Opcode = 0;
Dan Gohman670e5392009-09-21 18:03:22 +000012928 // Check for x CC y ? x : y.
Dan Gohmane8326932010-02-24 06:52:40 +000012929 if (DAG.isEqualTo(LHS, Cond.getOperand(0)) &&
12930 DAG.isEqualTo(RHS, Cond.getOperand(1))) {
Chris Lattner47b4ce82009-03-11 05:48:52 +000012931 switch (CC) {
12932 default: break;
Dan Gohman670e5392009-09-21 18:03:22 +000012933 case ISD::SETULT:
Dan Gohmane8326932010-02-24 06:52:40 +000012934 // Converting this to a min would handle NaNs incorrectly, and swapping
12935 // the operands would cause it to handle comparisons between positive
12936 // and negative zero incorrectly.
Evan Cheng60108e92010-07-15 22:07:12 +000012937 if (!DAG.isKnownNeverNaN(LHS) || !DAG.isKnownNeverNaN(RHS)) {
Nick Lewycky8a8d4792011-12-02 22:16:29 +000012938 if (!DAG.getTarget().Options.UnsafeFPMath &&
Dan Gohmane8326932010-02-24 06:52:40 +000012939 !(DAG.isKnownNeverZero(LHS) || DAG.isKnownNeverZero(RHS)))
12940 break;
12941 std::swap(LHS, RHS);
12942 }
Dan Gohman670e5392009-09-21 18:03:22 +000012943 Opcode = X86ISD::FMIN;
12944 break;
12945 case ISD::SETOLE:
Dan Gohmane8326932010-02-24 06:52:40 +000012946 // Converting this to a min would handle comparisons between positive
12947 // and negative zero incorrectly.
Nick Lewycky8a8d4792011-12-02 22:16:29 +000012948 if (!DAG.getTarget().Options.UnsafeFPMath &&
Dan Gohmane8326932010-02-24 06:52:40 +000012949 !DAG.isKnownNeverZero(LHS) && !DAG.isKnownNeverZero(RHS))
12950 break;
Dan Gohman670e5392009-09-21 18:03:22 +000012951 Opcode = X86ISD::FMIN;
12952 break;
Chris Lattner47b4ce82009-03-11 05:48:52 +000012953 case ISD::SETULE:
Dan Gohmane8326932010-02-24 06:52:40 +000012954 // Converting this to a min would handle both negative zeros and NaNs
12955 // incorrectly, but we can swap the operands to fix both.
12956 std::swap(LHS, RHS);
Dan Gohman670e5392009-09-21 18:03:22 +000012957 case ISD::SETOLT:
Chris Lattner47b4ce82009-03-11 05:48:52 +000012958 case ISD::SETLT:
Dan Gohman670e5392009-09-21 18:03:22 +000012959 case ISD::SETLE:
Chris Lattner47b4ce82009-03-11 05:48:52 +000012960 Opcode = X86ISD::FMIN;
12961 break;
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000012962
Dan Gohman670e5392009-09-21 18:03:22 +000012963 case ISD::SETOGE:
Dan Gohmane8326932010-02-24 06:52:40 +000012964 // Converting this to a max would handle comparisons between positive
12965 // and negative zero incorrectly.
Nick Lewycky8a8d4792011-12-02 22:16:29 +000012966 if (!DAG.getTarget().Options.UnsafeFPMath &&
Evan Chengdd5663c2011-08-04 18:38:15 +000012967 !DAG.isKnownNeverZero(LHS) && !DAG.isKnownNeverZero(RHS))
Dan Gohmane8326932010-02-24 06:52:40 +000012968 break;
Dan Gohman670e5392009-09-21 18:03:22 +000012969 Opcode = X86ISD::FMAX;
12970 break;
Chris Lattner47b4ce82009-03-11 05:48:52 +000012971 case ISD::SETUGT:
Dan Gohmane8326932010-02-24 06:52:40 +000012972 // Converting this to a max would handle NaNs incorrectly, and swapping
12973 // the operands would cause it to handle comparisons between positive
12974 // and negative zero incorrectly.
Evan Cheng60108e92010-07-15 22:07:12 +000012975 if (!DAG.isKnownNeverNaN(LHS) || !DAG.isKnownNeverNaN(RHS)) {
Nick Lewycky8a8d4792011-12-02 22:16:29 +000012976 if (!DAG.getTarget().Options.UnsafeFPMath &&
Dan Gohmane8326932010-02-24 06:52:40 +000012977 !(DAG.isKnownNeverZero(LHS) || DAG.isKnownNeverZero(RHS)))
12978 break;
12979 std::swap(LHS, RHS);
12980 }
Dan Gohman670e5392009-09-21 18:03:22 +000012981 Opcode = X86ISD::FMAX;
12982 break;
12983 case ISD::SETUGE:
Dan Gohmane8326932010-02-24 06:52:40 +000012984 // Converting this to a max would handle both negative zeros and NaNs
12985 // incorrectly, but we can swap the operands to fix both.
12986 std::swap(LHS, RHS);
Dan Gohman670e5392009-09-21 18:03:22 +000012987 case ISD::SETOGT:
Chris Lattner47b4ce82009-03-11 05:48:52 +000012988 case ISD::SETGT:
Chris Lattner47b4ce82009-03-11 05:48:52 +000012989 case ISD::SETGE:
12990 Opcode = X86ISD::FMAX;
12991 break;
Chris Lattner83e6c992006-10-04 06:57:07 +000012992 }
Dan Gohman670e5392009-09-21 18:03:22 +000012993 // Check for x CC y ? y : x -- a min/max with reversed arms.
Dan Gohmane8326932010-02-24 06:52:40 +000012994 } else if (DAG.isEqualTo(LHS, Cond.getOperand(1)) &&
12995 DAG.isEqualTo(RHS, Cond.getOperand(0))) {
Chris Lattner47b4ce82009-03-11 05:48:52 +000012996 switch (CC) {
12997 default: break;
Dan Gohman670e5392009-09-21 18:03:22 +000012998 case ISD::SETOGE:
Dan Gohmane8326932010-02-24 06:52:40 +000012999 // Converting this to a min would handle comparisons between positive
13000 // and negative zero incorrectly, and swapping the operands would
13001 // cause it to handle NaNs incorrectly.
Nick Lewycky8a8d4792011-12-02 22:16:29 +000013002 if (!DAG.getTarget().Options.UnsafeFPMath &&
Dan Gohmane8326932010-02-24 06:52:40 +000013003 !(DAG.isKnownNeverZero(LHS) || DAG.isKnownNeverZero(RHS))) {
Evan Cheng60108e92010-07-15 22:07:12 +000013004 if (!DAG.isKnownNeverNaN(LHS) || !DAG.isKnownNeverNaN(RHS))
Dan Gohmane8326932010-02-24 06:52:40 +000013005 break;
13006 std::swap(LHS, RHS);
13007 }
Dan Gohman670e5392009-09-21 18:03:22 +000013008 Opcode = X86ISD::FMIN;
Dan Gohman8d44b282009-09-03 20:34:31 +000013009 break;
Dan Gohman670e5392009-09-21 18:03:22 +000013010 case ISD::SETUGT:
Dan Gohmane8326932010-02-24 06:52:40 +000013011 // Converting this to a min would handle NaNs incorrectly.
Nick Lewycky8a8d4792011-12-02 22:16:29 +000013012 if (!DAG.getTarget().Options.UnsafeFPMath &&
Dan Gohmane8326932010-02-24 06:52:40 +000013013 (!DAG.isKnownNeverNaN(LHS) || !DAG.isKnownNeverNaN(RHS)))
13014 break;
Dan Gohman670e5392009-09-21 18:03:22 +000013015 Opcode = X86ISD::FMIN;
13016 break;
13017 case ISD::SETUGE:
Dan Gohmane8326932010-02-24 06:52:40 +000013018 // Converting this to a min would handle both negative zeros and NaNs
13019 // incorrectly, but we can swap the operands to fix both.
13020 std::swap(LHS, RHS);
Dan Gohman670e5392009-09-21 18:03:22 +000013021 case ISD::SETOGT:
Chris Lattner47b4ce82009-03-11 05:48:52 +000013022 case ISD::SETGT:
Chris Lattner47b4ce82009-03-11 05:48:52 +000013023 case ISD::SETGE:
13024 Opcode = X86ISD::FMIN;
13025 break;
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000013026
Dan Gohman670e5392009-09-21 18:03:22 +000013027 case ISD::SETULT:
Dan Gohmane8326932010-02-24 06:52:40 +000013028 // Converting this to a max would handle NaNs incorrectly.
Evan Cheng60108e92010-07-15 22:07:12 +000013029 if (!DAG.isKnownNeverNaN(LHS) || !DAG.isKnownNeverNaN(RHS))
Dan Gohmane8326932010-02-24 06:52:40 +000013030 break;
Dan Gohman670e5392009-09-21 18:03:22 +000013031 Opcode = X86ISD::FMAX;
Dan Gohman8d44b282009-09-03 20:34:31 +000013032 break;
Dan Gohman670e5392009-09-21 18:03:22 +000013033 case ISD::SETOLE:
Dan Gohmane8326932010-02-24 06:52:40 +000013034 // Converting this to a max would handle comparisons between positive
13035 // and negative zero incorrectly, and swapping the operands would
13036 // cause it to handle NaNs incorrectly.
Nick Lewycky8a8d4792011-12-02 22:16:29 +000013037 if (!DAG.getTarget().Options.UnsafeFPMath &&
Dan Gohmane8326932010-02-24 06:52:40 +000013038 !DAG.isKnownNeverZero(LHS) && !DAG.isKnownNeverZero(RHS)) {
Evan Cheng60108e92010-07-15 22:07:12 +000013039 if (!DAG.isKnownNeverNaN(LHS) || !DAG.isKnownNeverNaN(RHS))
Dan Gohmane8326932010-02-24 06:52:40 +000013040 break;
13041 std::swap(LHS, RHS);
13042 }
Dan Gohman670e5392009-09-21 18:03:22 +000013043 Opcode = X86ISD::FMAX;
13044 break;
13045 case ISD::SETULE:
Dan Gohmane8326932010-02-24 06:52:40 +000013046 // Converting this to a max would handle both negative zeros and NaNs
13047 // incorrectly, but we can swap the operands to fix both.
13048 std::swap(LHS, RHS);
Dan Gohman670e5392009-09-21 18:03:22 +000013049 case ISD::SETOLT:
Chris Lattner47b4ce82009-03-11 05:48:52 +000013050 case ISD::SETLT:
Dan Gohman670e5392009-09-21 18:03:22 +000013051 case ISD::SETLE:
Chris Lattner47b4ce82009-03-11 05:48:52 +000013052 Opcode = X86ISD::FMAX;
13053 break;
13054 }
Chris Lattner83e6c992006-10-04 06:57:07 +000013055 }
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000013056
Chris Lattner47b4ce82009-03-11 05:48:52 +000013057 if (Opcode)
13058 return DAG.getNode(Opcode, DL, N->getValueType(0), LHS, RHS);
Chris Lattner83e6c992006-10-04 06:57:07 +000013059 }
Eric Christopherfd179292009-08-27 18:07:15 +000013060
Chris Lattnerd1980a52009-03-12 06:52:53 +000013061 // If this is a select between two integer constants, try to do some
13062 // optimizations.
Chris Lattnercee56e72009-03-13 05:53:31 +000013063 if (ConstantSDNode *TrueC = dyn_cast<ConstantSDNode>(LHS)) {
13064 if (ConstantSDNode *FalseC = dyn_cast<ConstantSDNode>(RHS))
Chris Lattnerd1980a52009-03-12 06:52:53 +000013065 // Don't do this for crazy integer types.
13066 if (DAG.getTargetLoweringInfo().isTypeLegal(LHS.getValueType())) {
13067 // If this is efficiently invertible, canonicalize the LHSC/RHSC values
Chris Lattnercee56e72009-03-13 05:53:31 +000013068 // so that TrueC (the true value) is larger than FalseC.
Chris Lattnerd1980a52009-03-12 06:52:53 +000013069 bool NeedsCondInvert = false;
Eric Christopherfd179292009-08-27 18:07:15 +000013070
Chris Lattnercee56e72009-03-13 05:53:31 +000013071 if (TrueC->getAPIntValue().ult(FalseC->getAPIntValue()) &&
Chris Lattnerd1980a52009-03-12 06:52:53 +000013072 // Efficiently invertible.
13073 (Cond.getOpcode() == ISD::SETCC || // setcc -> invertible.
13074 (Cond.getOpcode() == ISD::XOR && // xor(X, C) -> invertible.
13075 isa<ConstantSDNode>(Cond.getOperand(1))))) {
13076 NeedsCondInvert = true;
Chris Lattnercee56e72009-03-13 05:53:31 +000013077 std::swap(TrueC, FalseC);
Chris Lattnerd1980a52009-03-12 06:52:53 +000013078 }
Eric Christopherfd179292009-08-27 18:07:15 +000013079
Chris Lattnerd1980a52009-03-12 06:52:53 +000013080 // Optimize C ? 8 : 0 -> zext(C) << 3. Likewise for any pow2/0.
Chris Lattnercee56e72009-03-13 05:53:31 +000013081 if (FalseC->getAPIntValue() == 0 &&
13082 TrueC->getAPIntValue().isPowerOf2()) {
Chris Lattnerd1980a52009-03-12 06:52:53 +000013083 if (NeedsCondInvert) // Invert the condition if needed.
13084 Cond = DAG.getNode(ISD::XOR, DL, Cond.getValueType(), Cond,
13085 DAG.getConstant(1, Cond.getValueType()));
Eric Christopherfd179292009-08-27 18:07:15 +000013086
Chris Lattnerd1980a52009-03-12 06:52:53 +000013087 // Zero extend the condition if needed.
13088 Cond = DAG.getNode(ISD::ZERO_EXTEND, DL, LHS.getValueType(), Cond);
Eric Christopherfd179292009-08-27 18:07:15 +000013089
Chris Lattnercee56e72009-03-13 05:53:31 +000013090 unsigned ShAmt = TrueC->getAPIntValue().logBase2();
Chris Lattnerd1980a52009-03-12 06:52:53 +000013091 return DAG.getNode(ISD::SHL, DL, LHS.getValueType(), Cond,
Owen Anderson825b72b2009-08-11 20:47:22 +000013092 DAG.getConstant(ShAmt, MVT::i8));
Chris Lattnerd1980a52009-03-12 06:52:53 +000013093 }
Eric Christopherfd179292009-08-27 18:07:15 +000013094
Chris Lattner97a29a52009-03-13 05:22:11 +000013095 // Optimize Cond ? cst+1 : cst -> zext(setcc(C)+cst.
Chris Lattnercee56e72009-03-13 05:53:31 +000013096 if (FalseC->getAPIntValue()+1 == TrueC->getAPIntValue()) {
Chris Lattner97a29a52009-03-13 05:22:11 +000013097 if (NeedsCondInvert) // Invert the condition if needed.
13098 Cond = DAG.getNode(ISD::XOR, DL, Cond.getValueType(), Cond,
13099 DAG.getConstant(1, Cond.getValueType()));
Eric Christopherfd179292009-08-27 18:07:15 +000013100
Chris Lattner97a29a52009-03-13 05:22:11 +000013101 // Zero extend the condition if needed.
Chris Lattnercee56e72009-03-13 05:53:31 +000013102 Cond = DAG.getNode(ISD::ZERO_EXTEND, DL,
13103 FalseC->getValueType(0), Cond);
Chris Lattner97a29a52009-03-13 05:22:11 +000013104 return DAG.getNode(ISD::ADD, DL, Cond.getValueType(), Cond,
Chris Lattnercee56e72009-03-13 05:53:31 +000013105 SDValue(FalseC, 0));
Chris Lattner97a29a52009-03-13 05:22:11 +000013106 }
Eric Christopherfd179292009-08-27 18:07:15 +000013107
Chris Lattnercee56e72009-03-13 05:53:31 +000013108 // Optimize cases that will turn into an LEA instruction. This requires
13109 // an i32 or i64 and an efficient multiplier (1, 2, 3, 4, 5, 8, 9).
Owen Anderson825b72b2009-08-11 20:47:22 +000013110 if (N->getValueType(0) == MVT::i32 || N->getValueType(0) == MVT::i64) {
Chris Lattnercee56e72009-03-13 05:53:31 +000013111 uint64_t Diff = TrueC->getZExtValue()-FalseC->getZExtValue();
Owen Anderson825b72b2009-08-11 20:47:22 +000013112 if (N->getValueType(0) == MVT::i32) Diff = (unsigned)Diff;
Eric Christopherfd179292009-08-27 18:07:15 +000013113
Chris Lattnercee56e72009-03-13 05:53:31 +000013114 bool isFastMultiplier = false;
13115 if (Diff < 10) {
13116 switch ((unsigned char)Diff) {
13117 default: break;
13118 case 1: // result = add base, cond
13119 case 2: // result = lea base( , cond*2)
13120 case 3: // result = lea base(cond, cond*2)
13121 case 4: // result = lea base( , cond*4)
13122 case 5: // result = lea base(cond, cond*4)
13123 case 8: // result = lea base( , cond*8)
13124 case 9: // result = lea base(cond, cond*8)
13125 isFastMultiplier = true;
13126 break;
13127 }
13128 }
Eric Christopherfd179292009-08-27 18:07:15 +000013129
Chris Lattnercee56e72009-03-13 05:53:31 +000013130 if (isFastMultiplier) {
13131 APInt Diff = TrueC->getAPIntValue()-FalseC->getAPIntValue();
13132 if (NeedsCondInvert) // Invert the condition if needed.
13133 Cond = DAG.getNode(ISD::XOR, DL, Cond.getValueType(), Cond,
13134 DAG.getConstant(1, Cond.getValueType()));
Eric Christopherfd179292009-08-27 18:07:15 +000013135
Chris Lattnercee56e72009-03-13 05:53:31 +000013136 // Zero extend the condition if needed.
13137 Cond = DAG.getNode(ISD::ZERO_EXTEND, DL, FalseC->getValueType(0),
13138 Cond);
13139 // Scale the condition by the difference.
13140 if (Diff != 1)
13141 Cond = DAG.getNode(ISD::MUL, DL, Cond.getValueType(), Cond,
13142 DAG.getConstant(Diff, Cond.getValueType()));
Eric Christopherfd179292009-08-27 18:07:15 +000013143
Chris Lattnercee56e72009-03-13 05:53:31 +000013144 // Add the base if non-zero.
13145 if (FalseC->getAPIntValue() != 0)
13146 Cond = DAG.getNode(ISD::ADD, DL, Cond.getValueType(), Cond,
13147 SDValue(FalseC, 0));
13148 return Cond;
13149 }
Eric Christopherfd179292009-08-27 18:07:15 +000013150 }
Chris Lattnerd1980a52009-03-12 06:52:53 +000013151 }
13152 }
Eric Christopherfd179292009-08-27 18:07:15 +000013153
Dan Gohman475871a2008-07-27 21:46:04 +000013154 return SDValue();
Chris Lattner83e6c992006-10-04 06:57:07 +000013155}
13156
Chris Lattnerd1980a52009-03-12 06:52:53 +000013157/// Optimize X86ISD::CMOV [LHS, RHS, CONDCODE (e.g. X86::COND_NE), CONDVAL]
13158static SDValue PerformCMOVCombine(SDNode *N, SelectionDAG &DAG,
13159 TargetLowering::DAGCombinerInfo &DCI) {
13160 DebugLoc DL = N->getDebugLoc();
Eric Christopherfd179292009-08-27 18:07:15 +000013161
Chris Lattnerd1980a52009-03-12 06:52:53 +000013162 // If the flag operand isn't dead, don't touch this CMOV.
13163 if (N->getNumValues() == 2 && !SDValue(N, 1).use_empty())
13164 return SDValue();
Eric Christopherfd179292009-08-27 18:07:15 +000013165
Evan Chengb5a55d92011-05-24 01:48:22 +000013166 SDValue FalseOp = N->getOperand(0);
13167 SDValue TrueOp = N->getOperand(1);
13168 X86::CondCode CC = (X86::CondCode)N->getConstantOperandVal(2);
13169 SDValue Cond = N->getOperand(3);
13170 if (CC == X86::COND_E || CC == X86::COND_NE) {
13171 switch (Cond.getOpcode()) {
13172 default: break;
13173 case X86ISD::BSR:
13174 case X86ISD::BSF:
13175 // If operand of BSR / BSF are proven never zero, then ZF cannot be set.
13176 if (DAG.isKnownNeverZero(Cond.getOperand(0)))
13177 return (CC == X86::COND_E) ? FalseOp : TrueOp;
13178 }
13179 }
13180
Chris Lattnerd1980a52009-03-12 06:52:53 +000013181 // If this is a select between two integer constants, try to do some
13182 // optimizations. Note that the operands are ordered the opposite of SELECT
13183 // operands.
Evan Chengb5a55d92011-05-24 01:48:22 +000013184 if (ConstantSDNode *TrueC = dyn_cast<ConstantSDNode>(TrueOp)) {
13185 if (ConstantSDNode *FalseC = dyn_cast<ConstantSDNode>(FalseOp)) {
Chris Lattnerd1980a52009-03-12 06:52:53 +000013186 // Canonicalize the TrueC/FalseC values so that TrueC (the true value) is
13187 // larger than FalseC (the false value).
Chris Lattnerd1980a52009-03-12 06:52:53 +000013188 if (TrueC->getAPIntValue().ult(FalseC->getAPIntValue())) {
13189 CC = X86::GetOppositeBranchCondition(CC);
13190 std::swap(TrueC, FalseC);
13191 }
Eric Christopherfd179292009-08-27 18:07:15 +000013192
Chris Lattnerd1980a52009-03-12 06:52:53 +000013193 // Optimize C ? 8 : 0 -> zext(setcc(C)) << 3. Likewise for any pow2/0.
Chris Lattnercee56e72009-03-13 05:53:31 +000013194 // This is efficient for any integer data type (including i8/i16) and
13195 // shift amount.
Chris Lattnerd1980a52009-03-12 06:52:53 +000013196 if (FalseC->getAPIntValue() == 0 && TrueC->getAPIntValue().isPowerOf2()) {
Owen Anderson825b72b2009-08-11 20:47:22 +000013197 Cond = DAG.getNode(X86ISD::SETCC, DL, MVT::i8,
13198 DAG.getConstant(CC, MVT::i8), Cond);
Eric Christopherfd179292009-08-27 18:07:15 +000013199
Chris Lattnerd1980a52009-03-12 06:52:53 +000013200 // Zero extend the condition if needed.
13201 Cond = DAG.getNode(ISD::ZERO_EXTEND, DL, TrueC->getValueType(0), Cond);
Eric Christopherfd179292009-08-27 18:07:15 +000013202
Chris Lattnerd1980a52009-03-12 06:52:53 +000013203 unsigned ShAmt = TrueC->getAPIntValue().logBase2();
13204 Cond = DAG.getNode(ISD::SHL, DL, Cond.getValueType(), Cond,
Owen Anderson825b72b2009-08-11 20:47:22 +000013205 DAG.getConstant(ShAmt, MVT::i8));
Chris Lattnerd1980a52009-03-12 06:52:53 +000013206 if (N->getNumValues() == 2) // Dead flag value?
13207 return DCI.CombineTo(N, Cond, SDValue());
13208 return Cond;
13209 }
Eric Christopherfd179292009-08-27 18:07:15 +000013210
Chris Lattnercee56e72009-03-13 05:53:31 +000013211 // Optimize Cond ? cst+1 : cst -> zext(setcc(C)+cst. This is efficient
13212 // for any integer data type, including i8/i16.
Chris Lattner97a29a52009-03-13 05:22:11 +000013213 if (FalseC->getAPIntValue()+1 == TrueC->getAPIntValue()) {
Owen Anderson825b72b2009-08-11 20:47:22 +000013214 Cond = DAG.getNode(X86ISD::SETCC, DL, MVT::i8,
13215 DAG.getConstant(CC, MVT::i8), Cond);
Eric Christopherfd179292009-08-27 18:07:15 +000013216
Chris Lattner97a29a52009-03-13 05:22:11 +000013217 // Zero extend the condition if needed.
Chris Lattnercee56e72009-03-13 05:53:31 +000013218 Cond = DAG.getNode(ISD::ZERO_EXTEND, DL,
13219 FalseC->getValueType(0), Cond);
Chris Lattner97a29a52009-03-13 05:22:11 +000013220 Cond = DAG.getNode(ISD::ADD, DL, Cond.getValueType(), Cond,
13221 SDValue(FalseC, 0));
Eric Christopherfd179292009-08-27 18:07:15 +000013222
Chris Lattner97a29a52009-03-13 05:22:11 +000013223 if (N->getNumValues() == 2) // Dead flag value?
13224 return DCI.CombineTo(N, Cond, SDValue());
13225 return Cond;
13226 }
Eric Christopherfd179292009-08-27 18:07:15 +000013227
Chris Lattnercee56e72009-03-13 05:53:31 +000013228 // Optimize cases that will turn into an LEA instruction. This requires
13229 // an i32 or i64 and an efficient multiplier (1, 2, 3, 4, 5, 8, 9).
Owen Anderson825b72b2009-08-11 20:47:22 +000013230 if (N->getValueType(0) == MVT::i32 || N->getValueType(0) == MVT::i64) {
Chris Lattnercee56e72009-03-13 05:53:31 +000013231 uint64_t Diff = TrueC->getZExtValue()-FalseC->getZExtValue();
Owen Anderson825b72b2009-08-11 20:47:22 +000013232 if (N->getValueType(0) == MVT::i32) Diff = (unsigned)Diff;
Eric Christopherfd179292009-08-27 18:07:15 +000013233
Chris Lattnercee56e72009-03-13 05:53:31 +000013234 bool isFastMultiplier = false;
13235 if (Diff < 10) {
13236 switch ((unsigned char)Diff) {
13237 default: break;
13238 case 1: // result = add base, cond
13239 case 2: // result = lea base( , cond*2)
13240 case 3: // result = lea base(cond, cond*2)
13241 case 4: // result = lea base( , cond*4)
13242 case 5: // result = lea base(cond, cond*4)
13243 case 8: // result = lea base( , cond*8)
13244 case 9: // result = lea base(cond, cond*8)
13245 isFastMultiplier = true;
13246 break;
13247 }
13248 }
Eric Christopherfd179292009-08-27 18:07:15 +000013249
Chris Lattnercee56e72009-03-13 05:53:31 +000013250 if (isFastMultiplier) {
13251 APInt Diff = TrueC->getAPIntValue()-FalseC->getAPIntValue();
Owen Anderson825b72b2009-08-11 20:47:22 +000013252 Cond = DAG.getNode(X86ISD::SETCC, DL, MVT::i8,
13253 DAG.getConstant(CC, MVT::i8), Cond);
Chris Lattnercee56e72009-03-13 05:53:31 +000013254 // Zero extend the condition if needed.
13255 Cond = DAG.getNode(ISD::ZERO_EXTEND, DL, FalseC->getValueType(0),
13256 Cond);
13257 // Scale the condition by the difference.
13258 if (Diff != 1)
13259 Cond = DAG.getNode(ISD::MUL, DL, Cond.getValueType(), Cond,
13260 DAG.getConstant(Diff, Cond.getValueType()));
13261
13262 // Add the base if non-zero.
13263 if (FalseC->getAPIntValue() != 0)
13264 Cond = DAG.getNode(ISD::ADD, DL, Cond.getValueType(), Cond,
13265 SDValue(FalseC, 0));
13266 if (N->getNumValues() == 2) // Dead flag value?
13267 return DCI.CombineTo(N, Cond, SDValue());
13268 return Cond;
13269 }
Eric Christopherfd179292009-08-27 18:07:15 +000013270 }
Chris Lattnerd1980a52009-03-12 06:52:53 +000013271 }
13272 }
13273 return SDValue();
13274}
13275
13276
Evan Cheng0b0cd912009-03-28 05:57:29 +000013277/// PerformMulCombine - Optimize a single multiply with constant into two
13278/// in order to implement it with two cheaper instructions, e.g.
13279/// LEA + SHL, LEA + LEA.
13280static SDValue PerformMulCombine(SDNode *N, SelectionDAG &DAG,
13281 TargetLowering::DAGCombinerInfo &DCI) {
Evan Cheng0b0cd912009-03-28 05:57:29 +000013282 if (DCI.isBeforeLegalize() || DCI.isCalledByLegalizer())
13283 return SDValue();
13284
Owen Andersone50ed302009-08-10 22:56:29 +000013285 EVT VT = N->getValueType(0);
Owen Anderson825b72b2009-08-11 20:47:22 +000013286 if (VT != MVT::i64)
Evan Cheng0b0cd912009-03-28 05:57:29 +000013287 return SDValue();
13288
13289 ConstantSDNode *C = dyn_cast<ConstantSDNode>(N->getOperand(1));
13290 if (!C)
13291 return SDValue();
13292 uint64_t MulAmt = C->getZExtValue();
13293 if (isPowerOf2_64(MulAmt) || MulAmt == 3 || MulAmt == 5 || MulAmt == 9)
13294 return SDValue();
13295
13296 uint64_t MulAmt1 = 0;
13297 uint64_t MulAmt2 = 0;
13298 if ((MulAmt % 9) == 0) {
13299 MulAmt1 = 9;
13300 MulAmt2 = MulAmt / 9;
13301 } else if ((MulAmt % 5) == 0) {
13302 MulAmt1 = 5;
13303 MulAmt2 = MulAmt / 5;
13304 } else if ((MulAmt % 3) == 0) {
13305 MulAmt1 = 3;
13306 MulAmt2 = MulAmt / 3;
13307 }
13308 if (MulAmt2 &&
13309 (isPowerOf2_64(MulAmt2) || MulAmt2 == 3 || MulAmt2 == 5 || MulAmt2 == 9)){
13310 DebugLoc DL = N->getDebugLoc();
13311
13312 if (isPowerOf2_64(MulAmt2) &&
13313 !(N->hasOneUse() && N->use_begin()->getOpcode() == ISD::ADD))
13314 // If second multiplifer is pow2, issue it first. We want the multiply by
13315 // 3, 5, or 9 to be folded into the addressing mode unless the lone use
13316 // is an add.
13317 std::swap(MulAmt1, MulAmt2);
13318
13319 SDValue NewMul;
Eric Christopherfd179292009-08-27 18:07:15 +000013320 if (isPowerOf2_64(MulAmt1))
Evan Cheng0b0cd912009-03-28 05:57:29 +000013321 NewMul = DAG.getNode(ISD::SHL, DL, VT, N->getOperand(0),
Owen Anderson825b72b2009-08-11 20:47:22 +000013322 DAG.getConstant(Log2_64(MulAmt1), MVT::i8));
Evan Cheng0b0cd912009-03-28 05:57:29 +000013323 else
Evan Cheng73f24c92009-03-30 21:36:47 +000013324 NewMul = DAG.getNode(X86ISD::MUL_IMM, DL, VT, N->getOperand(0),
Evan Cheng0b0cd912009-03-28 05:57:29 +000013325 DAG.getConstant(MulAmt1, VT));
13326
Eric Christopherfd179292009-08-27 18:07:15 +000013327 if (isPowerOf2_64(MulAmt2))
Evan Cheng0b0cd912009-03-28 05:57:29 +000013328 NewMul = DAG.getNode(ISD::SHL, DL, VT, NewMul,
Owen Anderson825b72b2009-08-11 20:47:22 +000013329 DAG.getConstant(Log2_64(MulAmt2), MVT::i8));
Eric Christopherfd179292009-08-27 18:07:15 +000013330 else
Evan Cheng73f24c92009-03-30 21:36:47 +000013331 NewMul = DAG.getNode(X86ISD::MUL_IMM, DL, VT, NewMul,
Evan Cheng0b0cd912009-03-28 05:57:29 +000013332 DAG.getConstant(MulAmt2, VT));
13333
13334 // Do not add new nodes to DAG combiner worklist.
13335 DCI.CombineTo(N, NewMul, false);
13336 }
13337 return SDValue();
13338}
13339
Evan Chengad9c0a32009-12-15 00:53:42 +000013340static SDValue PerformSHLCombine(SDNode *N, SelectionDAG &DAG) {
13341 SDValue N0 = N->getOperand(0);
13342 SDValue N1 = N->getOperand(1);
13343 ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N1);
13344 EVT VT = N0.getValueType();
13345
13346 // fold (shl (and (setcc_c), c1), c2) -> (and setcc_c, (c1 << c2))
13347 // since the result of setcc_c is all zero's or all ones.
Nadav Rotemfb0dfbb2011-10-30 13:24:22 +000013348 if (VT.isInteger() && !VT.isVector() &&
13349 N1C && N0.getOpcode() == ISD::AND &&
Evan Chengad9c0a32009-12-15 00:53:42 +000013350 N0.getOperand(1).getOpcode() == ISD::Constant) {
13351 SDValue N00 = N0.getOperand(0);
13352 if (N00.getOpcode() == X86ISD::SETCC_CARRY ||
13353 ((N00.getOpcode() == ISD::ANY_EXTEND ||
13354 N00.getOpcode() == ISD::ZERO_EXTEND) &&
13355 N00.getOperand(0).getOpcode() == X86ISD::SETCC_CARRY)) {
13356 APInt Mask = cast<ConstantSDNode>(N0.getOperand(1))->getAPIntValue();
13357 APInt ShAmt = N1C->getAPIntValue();
13358 Mask = Mask.shl(ShAmt);
13359 if (Mask != 0)
13360 return DAG.getNode(ISD::AND, N->getDebugLoc(), VT,
13361 N00, DAG.getConstant(Mask, VT));
13362 }
13363 }
13364
Nadav Rotemfb0dfbb2011-10-30 13:24:22 +000013365
13366 // Hardware support for vector shifts is sparse which makes us scalarize the
13367 // vector operations in many cases. Also, on sandybridge ADD is faster than
13368 // shl.
13369 // (shl V, 1) -> add V,V
13370 if (isSplatVector(N1.getNode())) {
13371 assert(N0.getValueType().isVector() && "Invalid vector shift type");
13372 ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N1->getOperand(0));
13373 // We shift all of the values by one. In many cases we do not have
13374 // hardware support for this operation. This is better expressed as an ADD
13375 // of two values.
13376 if (N1C && (1 == N1C->getZExtValue())) {
13377 return DAG.getNode(ISD::ADD, N->getDebugLoc(), VT, N0, N0);
13378 }
13379 }
13380
Evan Chengad9c0a32009-12-15 00:53:42 +000013381 return SDValue();
13382}
Evan Cheng0b0cd912009-03-28 05:57:29 +000013383
Nate Begeman740ab032009-01-26 00:52:55 +000013384/// PerformShiftCombine - Transforms vector shift nodes to use vector shifts
13385/// when possible.
13386static SDValue PerformShiftCombine(SDNode* N, SelectionDAG &DAG,
13387 const X86Subtarget *Subtarget) {
Evan Chengad9c0a32009-12-15 00:53:42 +000013388 EVT VT = N->getValueType(0);
Nadav Rotemfb0dfbb2011-10-30 13:24:22 +000013389 if (N->getOpcode() == ISD::SHL) {
13390 SDValue V = PerformSHLCombine(N, DAG);
13391 if (V.getNode()) return V;
13392 }
Evan Chengad9c0a32009-12-15 00:53:42 +000013393
Nate Begeman740ab032009-01-26 00:52:55 +000013394 // On X86 with SSE2 support, we can transform this to a vector shift if
13395 // all elements are shifted by the same amount. We can't do this in legalize
13396 // because the a constant vector is typically transformed to a constant pool
13397 // so we have no knowledge of the shift amount.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000013398 if (!Subtarget->hasXMMInt())
Nate Begemanc2fd67f2009-01-26 03:15:31 +000013399 return SDValue();
Scott Michelfdc40a02009-02-17 22:15:04 +000013400
Craig Topper7be5dfd2011-11-12 09:58:49 +000013401 if (VT != MVT::v2i64 && VT != MVT::v4i32 && VT != MVT::v8i16 &&
13402 (!Subtarget->hasAVX2() ||
13403 (VT != MVT::v4i64 && VT != MVT::v8i32 && VT != MVT::v16i16)))
Nate Begemanc2fd67f2009-01-26 03:15:31 +000013404 return SDValue();
Scott Michelfdc40a02009-02-17 22:15:04 +000013405
Mon P Wang3becd092009-01-28 08:12:05 +000013406 SDValue ShAmtOp = N->getOperand(1);
Owen Andersone50ed302009-08-10 22:56:29 +000013407 EVT EltVT = VT.getVectorElementType();
Chris Lattner47b4ce82009-03-11 05:48:52 +000013408 DebugLoc DL = N->getDebugLoc();
Mon P Wangefa42202009-09-03 19:56:25 +000013409 SDValue BaseShAmt = SDValue();
Mon P Wang3becd092009-01-28 08:12:05 +000013410 if (ShAmtOp.getOpcode() == ISD::BUILD_VECTOR) {
13411 unsigned NumElts = VT.getVectorNumElements();
13412 unsigned i = 0;
13413 for (; i != NumElts; ++i) {
13414 SDValue Arg = ShAmtOp.getOperand(i);
13415 if (Arg.getOpcode() == ISD::UNDEF) continue;
13416 BaseShAmt = Arg;
13417 break;
13418 }
13419 for (; i != NumElts; ++i) {
13420 SDValue Arg = ShAmtOp.getOperand(i);
13421 if (Arg.getOpcode() == ISD::UNDEF) continue;
13422 if (Arg != BaseShAmt) {
13423 return SDValue();
13424 }
13425 }
13426 } else if (ShAmtOp.getOpcode() == ISD::VECTOR_SHUFFLE &&
Nate Begeman9008ca62009-04-27 18:41:29 +000013427 cast<ShuffleVectorSDNode>(ShAmtOp)->isSplat()) {
Mon P Wangefa42202009-09-03 19:56:25 +000013428 SDValue InVec = ShAmtOp.getOperand(0);
13429 if (InVec.getOpcode() == ISD::BUILD_VECTOR) {
13430 unsigned NumElts = InVec.getValueType().getVectorNumElements();
13431 unsigned i = 0;
13432 for (; i != NumElts; ++i) {
13433 SDValue Arg = InVec.getOperand(i);
13434 if (Arg.getOpcode() == ISD::UNDEF) continue;
13435 BaseShAmt = Arg;
13436 break;
13437 }
13438 } else if (InVec.getOpcode() == ISD::INSERT_VECTOR_ELT) {
13439 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(InVec.getOperand(2))) {
Evan Chengae3ecf92010-02-16 21:09:44 +000013440 unsigned SplatIdx= cast<ShuffleVectorSDNode>(ShAmtOp)->getSplatIndex();
Mon P Wangefa42202009-09-03 19:56:25 +000013441 if (C->getZExtValue() == SplatIdx)
13442 BaseShAmt = InVec.getOperand(1);
13443 }
13444 }
13445 if (BaseShAmt.getNode() == 0)
13446 BaseShAmt = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, DL, EltVT, ShAmtOp,
13447 DAG.getIntPtrConstant(0));
Mon P Wang3becd092009-01-28 08:12:05 +000013448 } else
Nate Begemanc2fd67f2009-01-26 03:15:31 +000013449 return SDValue();
Nate Begeman740ab032009-01-26 00:52:55 +000013450
Mon P Wangefa42202009-09-03 19:56:25 +000013451 // The shift amount is an i32.
Owen Anderson825b72b2009-08-11 20:47:22 +000013452 if (EltVT.bitsGT(MVT::i32))
13453 BaseShAmt = DAG.getNode(ISD::TRUNCATE, DL, MVT::i32, BaseShAmt);
13454 else if (EltVT.bitsLT(MVT::i32))
Mon P Wangefa42202009-09-03 19:56:25 +000013455 BaseShAmt = DAG.getNode(ISD::ZERO_EXTEND, DL, MVT::i32, BaseShAmt);
Nate Begeman740ab032009-01-26 00:52:55 +000013456
Nate Begemanc2fd67f2009-01-26 03:15:31 +000013457 // The shift amount is identical so we can do a vector shift.
13458 SDValue ValOp = N->getOperand(0);
13459 switch (N->getOpcode()) {
13460 default:
Torok Edwinc23197a2009-07-14 16:55:14 +000013461 llvm_unreachable("Unknown shift opcode!");
Nate Begemanc2fd67f2009-01-26 03:15:31 +000013462 break;
13463 case ISD::SHL:
Owen Anderson825b72b2009-08-11 20:47:22 +000013464 if (VT == MVT::v2i64)
Chris Lattner47b4ce82009-03-11 05:48:52 +000013465 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000013466 DAG.getConstant(Intrinsic::x86_sse2_pslli_q, MVT::i32),
Nate Begeman740ab032009-01-26 00:52:55 +000013467 ValOp, BaseShAmt);
Owen Anderson825b72b2009-08-11 20:47:22 +000013468 if (VT == MVT::v4i32)
Chris Lattner47b4ce82009-03-11 05:48:52 +000013469 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000013470 DAG.getConstant(Intrinsic::x86_sse2_pslli_d, MVT::i32),
Nate Begeman740ab032009-01-26 00:52:55 +000013471 ValOp, BaseShAmt);
Owen Anderson825b72b2009-08-11 20:47:22 +000013472 if (VT == MVT::v8i16)
Chris Lattner47b4ce82009-03-11 05:48:52 +000013473 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000013474 DAG.getConstant(Intrinsic::x86_sse2_pslli_w, MVT::i32),
Nate Begeman740ab032009-01-26 00:52:55 +000013475 ValOp, BaseShAmt);
Craig Topper7be5dfd2011-11-12 09:58:49 +000013476 if (VT == MVT::v4i64)
13477 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
13478 DAG.getConstant(Intrinsic::x86_avx2_pslli_q, MVT::i32),
13479 ValOp, BaseShAmt);
13480 if (VT == MVT::v8i32)
13481 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
13482 DAG.getConstant(Intrinsic::x86_avx2_pslli_d, MVT::i32),
13483 ValOp, BaseShAmt);
13484 if (VT == MVT::v16i16)
13485 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
13486 DAG.getConstant(Intrinsic::x86_avx2_pslli_w, MVT::i32),
13487 ValOp, BaseShAmt);
Nate Begemanc2fd67f2009-01-26 03:15:31 +000013488 break;
13489 case ISD::SRA:
Owen Anderson825b72b2009-08-11 20:47:22 +000013490 if (VT == MVT::v4i32)
Chris Lattner47b4ce82009-03-11 05:48:52 +000013491 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000013492 DAG.getConstant(Intrinsic::x86_sse2_psrai_d, MVT::i32),
Nate Begeman740ab032009-01-26 00:52:55 +000013493 ValOp, BaseShAmt);
Owen Anderson825b72b2009-08-11 20:47:22 +000013494 if (VT == MVT::v8i16)
Chris Lattner47b4ce82009-03-11 05:48:52 +000013495 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000013496 DAG.getConstant(Intrinsic::x86_sse2_psrai_w, MVT::i32),
Nate Begeman740ab032009-01-26 00:52:55 +000013497 ValOp, BaseShAmt);
Craig Topper7be5dfd2011-11-12 09:58:49 +000013498 if (VT == MVT::v8i32)
13499 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
13500 DAG.getConstant(Intrinsic::x86_avx2_psrai_d, MVT::i32),
13501 ValOp, BaseShAmt);
13502 if (VT == MVT::v16i16)
13503 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
13504 DAG.getConstant(Intrinsic::x86_avx2_psrai_w, MVT::i32),
13505 ValOp, BaseShAmt);
Nate Begemanc2fd67f2009-01-26 03:15:31 +000013506 break;
13507 case ISD::SRL:
Owen Anderson825b72b2009-08-11 20:47:22 +000013508 if (VT == MVT::v2i64)
Chris Lattner47b4ce82009-03-11 05:48:52 +000013509 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000013510 DAG.getConstant(Intrinsic::x86_sse2_psrli_q, MVT::i32),
Nate Begeman740ab032009-01-26 00:52:55 +000013511 ValOp, BaseShAmt);
Owen Anderson825b72b2009-08-11 20:47:22 +000013512 if (VT == MVT::v4i32)
Chris Lattner47b4ce82009-03-11 05:48:52 +000013513 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000013514 DAG.getConstant(Intrinsic::x86_sse2_psrli_d, MVT::i32),
Nate Begeman740ab032009-01-26 00:52:55 +000013515 ValOp, BaseShAmt);
Owen Anderson825b72b2009-08-11 20:47:22 +000013516 if (VT == MVT::v8i16)
Chris Lattner47b4ce82009-03-11 05:48:52 +000013517 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
Owen Anderson825b72b2009-08-11 20:47:22 +000013518 DAG.getConstant(Intrinsic::x86_sse2_psrli_w, MVT::i32),
Nate Begeman740ab032009-01-26 00:52:55 +000013519 ValOp, BaseShAmt);
Craig Topper7be5dfd2011-11-12 09:58:49 +000013520 if (VT == MVT::v4i64)
13521 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
13522 DAG.getConstant(Intrinsic::x86_avx2_psrli_q, MVT::i32),
13523 ValOp, BaseShAmt);
13524 if (VT == MVT::v8i32)
13525 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
13526 DAG.getConstant(Intrinsic::x86_avx2_psrli_d, MVT::i32),
13527 ValOp, BaseShAmt);
13528 if (VT == MVT::v16i16)
13529 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
13530 DAG.getConstant(Intrinsic::x86_avx2_psrli_w, MVT::i32),
13531 ValOp, BaseShAmt);
Nate Begemanc2fd67f2009-01-26 03:15:31 +000013532 break;
Nate Begeman740ab032009-01-26 00:52:55 +000013533 }
13534 return SDValue();
13535}
13536
Nate Begemanb65c1752010-12-17 22:55:37 +000013537
Stuart Hastings865f0932011-06-03 23:53:54 +000013538// CMPEQCombine - Recognize the distinctive (AND (setcc ...) (setcc ..))
13539// where both setccs reference the same FP CMP, and rewrite for CMPEQSS
13540// and friends. Likewise for OR -> CMPNEQSS.
13541static SDValue CMPEQCombine(SDNode *N, SelectionDAG &DAG,
13542 TargetLowering::DAGCombinerInfo &DCI,
13543 const X86Subtarget *Subtarget) {
13544 unsigned opcode;
13545
13546 // SSE1 supports CMP{eq|ne}SS, and SSE2 added CMP{eq|ne}SD, but
13547 // we're requiring SSE2 for both.
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000013548 if (Subtarget->hasXMMInt() && isAndOrOfSetCCs(SDValue(N, 0U), opcode)) {
Stuart Hastings865f0932011-06-03 23:53:54 +000013549 SDValue N0 = N->getOperand(0);
13550 SDValue N1 = N->getOperand(1);
13551 SDValue CMP0 = N0->getOperand(1);
13552 SDValue CMP1 = N1->getOperand(1);
13553 DebugLoc DL = N->getDebugLoc();
13554
13555 // The SETCCs should both refer to the same CMP.
13556 if (CMP0.getOpcode() != X86ISD::CMP || CMP0 != CMP1)
13557 return SDValue();
13558
13559 SDValue CMP00 = CMP0->getOperand(0);
13560 SDValue CMP01 = CMP0->getOperand(1);
13561 EVT VT = CMP00.getValueType();
13562
13563 if (VT == MVT::f32 || VT == MVT::f64) {
13564 bool ExpectingFlags = false;
13565 // Check for any users that want flags:
13566 for (SDNode::use_iterator UI = N->use_begin(),
13567 UE = N->use_end();
13568 !ExpectingFlags && UI != UE; ++UI)
13569 switch (UI->getOpcode()) {
13570 default:
13571 case ISD::BR_CC:
13572 case ISD::BRCOND:
13573 case ISD::SELECT:
13574 ExpectingFlags = true;
13575 break;
13576 case ISD::CopyToReg:
13577 case ISD::SIGN_EXTEND:
13578 case ISD::ZERO_EXTEND:
13579 case ISD::ANY_EXTEND:
13580 break;
13581 }
13582
13583 if (!ExpectingFlags) {
13584 enum X86::CondCode cc0 = (enum X86::CondCode)N0.getConstantOperandVal(0);
13585 enum X86::CondCode cc1 = (enum X86::CondCode)N1.getConstantOperandVal(0);
13586
13587 if (cc1 == X86::COND_E || cc1 == X86::COND_NE) {
13588 X86::CondCode tmp = cc0;
13589 cc0 = cc1;
13590 cc1 = tmp;
13591 }
13592
13593 if ((cc0 == X86::COND_E && cc1 == X86::COND_NP) ||
13594 (cc0 == X86::COND_NE && cc1 == X86::COND_P)) {
13595 bool is64BitFP = (CMP00.getValueType() == MVT::f64);
13596 X86ISD::NodeType NTOperator = is64BitFP ?
13597 X86ISD::FSETCCsd : X86ISD::FSETCCss;
13598 // FIXME: need symbolic constants for these magic numbers.
13599 // See X86ATTInstPrinter.cpp:printSSECC().
13600 unsigned x86cc = (cc0 == X86::COND_E) ? 0 : 4;
13601 SDValue OnesOrZeroesF = DAG.getNode(NTOperator, DL, MVT::f32, CMP00, CMP01,
13602 DAG.getConstant(x86cc, MVT::i8));
13603 SDValue OnesOrZeroesI = DAG.getNode(ISD::BITCAST, DL, MVT::i32,
13604 OnesOrZeroesF);
13605 SDValue ANDed = DAG.getNode(ISD::AND, DL, MVT::i32, OnesOrZeroesI,
13606 DAG.getConstant(1, MVT::i32));
13607 SDValue OneBitOfTruth = DAG.getNode(ISD::TRUNCATE, DL, MVT::i8, ANDed);
13608 return OneBitOfTruth;
13609 }
13610 }
13611 }
13612 }
13613 return SDValue();
13614}
13615
Bruno Cardoso Lopes863bd9d2011-07-25 23:05:32 +000013616/// CanFoldXORWithAllOnes - Test whether the XOR operand is a AllOnes vector
13617/// so it can be folded inside ANDNP.
13618static bool CanFoldXORWithAllOnes(const SDNode *N) {
13619 EVT VT = N->getValueType(0);
13620
13621 // Match direct AllOnes for 128 and 256-bit vectors
13622 if (ISD::isBuildVectorAllOnes(N))
13623 return true;
13624
13625 // Look through a bit convert.
13626 if (N->getOpcode() == ISD::BITCAST)
13627 N = N->getOperand(0).getNode();
13628
13629 // Sometimes the operand may come from a insert_subvector building a 256-bit
13630 // allones vector
Bruno Cardoso Lopes863bd9d2011-07-25 23:05:32 +000013631 if (VT.getSizeInBits() == 256 &&
Bill Wendling456a9252011-08-04 00:32:58 +000013632 N->getOpcode() == ISD::INSERT_SUBVECTOR) {
13633 SDValue V1 = N->getOperand(0);
13634 SDValue V2 = N->getOperand(1);
13635
13636 if (V1.getOpcode() == ISD::INSERT_SUBVECTOR &&
13637 V1.getOperand(0).getOpcode() == ISD::UNDEF &&
13638 ISD::isBuildVectorAllOnes(V1.getOperand(1).getNode()) &&
13639 ISD::isBuildVectorAllOnes(V2.getNode()))
13640 return true;
13641 }
Bruno Cardoso Lopes863bd9d2011-07-25 23:05:32 +000013642
13643 return false;
13644}
13645
Nate Begemanb65c1752010-12-17 22:55:37 +000013646static SDValue PerformAndCombine(SDNode *N, SelectionDAG &DAG,
13647 TargetLowering::DAGCombinerInfo &DCI,
13648 const X86Subtarget *Subtarget) {
13649 if (DCI.isBeforeLegalizeOps())
13650 return SDValue();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013651
Stuart Hastings865f0932011-06-03 23:53:54 +000013652 SDValue R = CMPEQCombine(N, DAG, DCI, Subtarget);
13653 if (R.getNode())
13654 return R;
13655
Craig Topper54a11172011-10-14 07:06:56 +000013656 EVT VT = N->getValueType(0);
13657
Craig Topperb4c94572011-10-21 06:55:01 +000013658 // Create ANDN, BLSI, and BLSR instructions
13659 // BLSI is X & (-X)
13660 // BLSR is X & (X-1)
Craig Topper54a11172011-10-14 07:06:56 +000013661 if (Subtarget->hasBMI() && (VT == MVT::i32 || VT == MVT::i64)) {
13662 SDValue N0 = N->getOperand(0);
13663 SDValue N1 = N->getOperand(1);
13664 DebugLoc DL = N->getDebugLoc();
13665
13666 // Check LHS for not
13667 if (N0.getOpcode() == ISD::XOR && isAllOnes(N0.getOperand(1)))
13668 return DAG.getNode(X86ISD::ANDN, DL, VT, N0.getOperand(0), N1);
13669 // Check RHS for not
13670 if (N1.getOpcode() == ISD::XOR && isAllOnes(N1.getOperand(1)))
13671 return DAG.getNode(X86ISD::ANDN, DL, VT, N1.getOperand(0), N0);
13672
Craig Topperb4c94572011-10-21 06:55:01 +000013673 // Check LHS for neg
13674 if (N0.getOpcode() == ISD::SUB && N0.getOperand(1) == N1 &&
13675 isZero(N0.getOperand(0)))
13676 return DAG.getNode(X86ISD::BLSI, DL, VT, N1);
13677
13678 // Check RHS for neg
13679 if (N1.getOpcode() == ISD::SUB && N1.getOperand(1) == N0 &&
13680 isZero(N1.getOperand(0)))
13681 return DAG.getNode(X86ISD::BLSI, DL, VT, N0);
13682
13683 // Check LHS for X-1
13684 if (N0.getOpcode() == ISD::ADD && N0.getOperand(0) == N1 &&
13685 isAllOnes(N0.getOperand(1)))
13686 return DAG.getNode(X86ISD::BLSR, DL, VT, N1);
13687
13688 // Check RHS for X-1
13689 if (N1.getOpcode() == ISD::ADD && N1.getOperand(0) == N0 &&
13690 isAllOnes(N1.getOperand(1)))
13691 return DAG.getNode(X86ISD::BLSR, DL, VT, N0);
13692
Craig Topper54a11172011-10-14 07:06:56 +000013693 return SDValue();
13694 }
13695
Bruno Cardoso Lopes466b0222011-07-13 21:36:51 +000013696 // Want to form ANDNP nodes:
13697 // 1) In the hopes of then easily combining them with OR and AND nodes
13698 // to form PBLEND/PSIGN.
13699 // 2) To match ANDN packed intrinsics
Bruno Cardoso Lopes466b0222011-07-13 21:36:51 +000013700 if (VT != MVT::v2i64 && VT != MVT::v4i64)
Nate Begemanb65c1752010-12-17 22:55:37 +000013701 return SDValue();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013702
Nate Begemanb65c1752010-12-17 22:55:37 +000013703 SDValue N0 = N->getOperand(0);
13704 SDValue N1 = N->getOperand(1);
13705 DebugLoc DL = N->getDebugLoc();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013706
Nate Begemanb65c1752010-12-17 22:55:37 +000013707 // Check LHS for vnot
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013708 if (N0.getOpcode() == ISD::XOR &&
Bruno Cardoso Lopes863bd9d2011-07-25 23:05:32 +000013709 //ISD::isBuildVectorAllOnes(N0.getOperand(1).getNode()))
13710 CanFoldXORWithAllOnes(N0.getOperand(1).getNode()))
Bruno Cardoso Lopesc1af4772011-07-13 21:36:47 +000013711 return DAG.getNode(X86ISD::ANDNP, DL, VT, N0.getOperand(0), N1);
Nate Begemanb65c1752010-12-17 22:55:37 +000013712
13713 // Check RHS for vnot
13714 if (N1.getOpcode() == ISD::XOR &&
Bruno Cardoso Lopes863bd9d2011-07-25 23:05:32 +000013715 //ISD::isBuildVectorAllOnes(N1.getOperand(1).getNode()))
13716 CanFoldXORWithAllOnes(N1.getOperand(1).getNode()))
Bruno Cardoso Lopesc1af4772011-07-13 21:36:47 +000013717 return DAG.getNode(X86ISD::ANDNP, DL, VT, N1.getOperand(0), N0);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013718
Nate Begemanb65c1752010-12-17 22:55:37 +000013719 return SDValue();
13720}
13721
Evan Cheng760d1942010-01-04 21:22:48 +000013722static SDValue PerformOrCombine(SDNode *N, SelectionDAG &DAG,
Evan Cheng8b1190a2010-04-28 01:18:01 +000013723 TargetLowering::DAGCombinerInfo &DCI,
Evan Cheng760d1942010-01-04 21:22:48 +000013724 const X86Subtarget *Subtarget) {
Evan Cheng39cfeec2010-04-28 02:25:18 +000013725 if (DCI.isBeforeLegalizeOps())
Evan Cheng8b1190a2010-04-28 01:18:01 +000013726 return SDValue();
13727
Stuart Hastings865f0932011-06-03 23:53:54 +000013728 SDValue R = CMPEQCombine(N, DAG, DCI, Subtarget);
13729 if (R.getNode())
13730 return R;
13731
Evan Cheng760d1942010-01-04 21:22:48 +000013732 EVT VT = N->getValueType(0);
Evan Cheng760d1942010-01-04 21:22:48 +000013733
Evan Cheng760d1942010-01-04 21:22:48 +000013734 SDValue N0 = N->getOperand(0);
13735 SDValue N1 = N->getOperand(1);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013736
Nate Begemanb65c1752010-12-17 22:55:37 +000013737 // look for psign/blend
Craig Topper1666cb62011-11-19 07:07:26 +000013738 if (VT == MVT::v2i64 || VT == MVT::v4i64) {
Craig Topperc0d82852011-11-22 00:44:41 +000013739 if (!Subtarget->hasSSSE3orAVX() ||
Craig Topper1666cb62011-11-19 07:07:26 +000013740 (VT == MVT::v4i64 && !Subtarget->hasAVX2()))
13741 return SDValue();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013742
Craig Topper1666cb62011-11-19 07:07:26 +000013743 // Canonicalize pandn to RHS
13744 if (N0.getOpcode() == X86ISD::ANDNP)
13745 std::swap(N0, N1);
13746 // or (and (m, x), (pandn m, y))
13747 if (N0.getOpcode() == ISD::AND && N1.getOpcode() == X86ISD::ANDNP) {
13748 SDValue Mask = N1.getOperand(0);
13749 SDValue X = N1.getOperand(1);
13750 SDValue Y;
13751 if (N0.getOperand(0) == Mask)
13752 Y = N0.getOperand(1);
13753 if (N0.getOperand(1) == Mask)
13754 Y = N0.getOperand(0);
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013755
Craig Topper1666cb62011-11-19 07:07:26 +000013756 // Check to see if the mask appeared in both the AND and ANDNP and
13757 if (!Y.getNode())
13758 return SDValue();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013759
Craig Topper1666cb62011-11-19 07:07:26 +000013760 // Validate that X, Y, and Mask are BIT_CONVERTS, and see through them.
13761 if (Mask.getOpcode() != ISD::BITCAST ||
13762 X.getOpcode() != ISD::BITCAST ||
13763 Y.getOpcode() != ISD::BITCAST)
13764 return SDValue();
Nate Begemanb65c1752010-12-17 22:55:37 +000013765
Craig Topper1666cb62011-11-19 07:07:26 +000013766 // Look through mask bitcast.
13767 Mask = Mask.getOperand(0);
13768 EVT MaskVT = Mask.getValueType();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013769
Craig Topper1666cb62011-11-19 07:07:26 +000013770 // Validate that the Mask operand is a vector sra node. The sra node
13771 // will be an intrinsic.
13772 if (Mask.getOpcode() != ISD::INTRINSIC_WO_CHAIN)
13773 return SDValue();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013774
Craig Topper1666cb62011-11-19 07:07:26 +000013775 // FIXME: what to do for bytes, since there is a psignb/pblendvb, but
13776 // there is no psrai.b
13777 switch (cast<ConstantSDNode>(Mask.getOperand(0))->getZExtValue()) {
13778 case Intrinsic::x86_sse2_psrai_w:
13779 case Intrinsic::x86_sse2_psrai_d:
13780 case Intrinsic::x86_avx2_psrai_w:
13781 case Intrinsic::x86_avx2_psrai_d:
13782 break;
13783 default: return SDValue();
Nate Begemanb65c1752010-12-17 22:55:37 +000013784 }
Craig Topper1666cb62011-11-19 07:07:26 +000013785
13786 // Check that the SRA is all signbits.
13787 SDValue SraC = Mask.getOperand(2);
13788 unsigned SraAmt = cast<ConstantSDNode>(SraC)->getZExtValue();
13789 unsigned EltBits = MaskVT.getVectorElementType().getSizeInBits();
13790 if ((SraAmt + 1) != EltBits)
13791 return SDValue();
13792
13793 DebugLoc DL = N->getDebugLoc();
13794
13795 // Now we know we at least have a plendvb with the mask val. See if
13796 // we can form a psignb/w/d.
13797 // psign = x.type == y.type == mask.type && y = sub(0, x);
13798 X = X.getOperand(0);
13799 Y = Y.getOperand(0);
13800 if (Y.getOpcode() == ISD::SUB && Y.getOperand(1) == X &&
13801 ISD::isBuildVectorAllZeros(Y.getOperand(0).getNode()) &&
Craig Topper31133842011-11-19 07:33:10 +000013802 X.getValueType() == MaskVT && X.getValueType() == Y.getValueType() &&
13803 (EltBits == 8 || EltBits == 16 || EltBits == 32)) {
13804 SDValue Sign = DAG.getNode(X86ISD::PSIGN, DL, MaskVT, X,
13805 Mask.getOperand(1));
13806 return DAG.getNode(ISD::BITCAST, DL, VT, Sign);
Craig Topper1666cb62011-11-19 07:07:26 +000013807 }
13808 // PBLENDVB only available on SSE 4.1
Craig Topperc0d82852011-11-22 00:44:41 +000013809 if (!Subtarget->hasSSE41orAVX())
Craig Topper1666cb62011-11-19 07:07:26 +000013810 return SDValue();
13811
13812 EVT BlendVT = (VT == MVT::v4i64) ? MVT::v32i8 : MVT::v16i8;
13813
13814 X = DAG.getNode(ISD::BITCAST, DL, BlendVT, X);
13815 Y = DAG.getNode(ISD::BITCAST, DL, BlendVT, Y);
13816 Mask = DAG.getNode(ISD::BITCAST, DL, BlendVT, Mask);
Nadav Rotem18197d72011-11-30 10:13:37 +000013817 Mask = DAG.getNode(ISD::VSELECT, DL, BlendVT, Mask, Y, X);
Craig Topper1666cb62011-11-19 07:07:26 +000013818 return DAG.getNode(ISD::BITCAST, DL, VT, Mask);
Nate Begemanb65c1752010-12-17 22:55:37 +000013819 }
13820 }
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013821
Craig Topper1666cb62011-11-19 07:07:26 +000013822 if (VT != MVT::i16 && VT != MVT::i32 && VT != MVT::i64)
13823 return SDValue();
13824
Nate Begemanb65c1752010-12-17 22:55:37 +000013825 // fold (or (x << c) | (y >> (64 - c))) ==> (shld64 x, y, c)
Evan Cheng760d1942010-01-04 21:22:48 +000013826 if (N0.getOpcode() == ISD::SRL && N1.getOpcode() == ISD::SHL)
13827 std::swap(N0, N1);
13828 if (N0.getOpcode() != ISD::SHL || N1.getOpcode() != ISD::SRL)
13829 return SDValue();
Evan Cheng8b1190a2010-04-28 01:18:01 +000013830 if (!N0.hasOneUse() || !N1.hasOneUse())
13831 return SDValue();
Evan Cheng760d1942010-01-04 21:22:48 +000013832
13833 SDValue ShAmt0 = N0.getOperand(1);
13834 if (ShAmt0.getValueType() != MVT::i8)
13835 return SDValue();
13836 SDValue ShAmt1 = N1.getOperand(1);
13837 if (ShAmt1.getValueType() != MVT::i8)
13838 return SDValue();
13839 if (ShAmt0.getOpcode() == ISD::TRUNCATE)
13840 ShAmt0 = ShAmt0.getOperand(0);
13841 if (ShAmt1.getOpcode() == ISD::TRUNCATE)
13842 ShAmt1 = ShAmt1.getOperand(0);
13843
13844 DebugLoc DL = N->getDebugLoc();
13845 unsigned Opc = X86ISD::SHLD;
13846 SDValue Op0 = N0.getOperand(0);
13847 SDValue Op1 = N1.getOperand(0);
13848 if (ShAmt0.getOpcode() == ISD::SUB) {
13849 Opc = X86ISD::SHRD;
13850 std::swap(Op0, Op1);
13851 std::swap(ShAmt0, ShAmt1);
13852 }
13853
Evan Cheng8b1190a2010-04-28 01:18:01 +000013854 unsigned Bits = VT.getSizeInBits();
Evan Cheng760d1942010-01-04 21:22:48 +000013855 if (ShAmt1.getOpcode() == ISD::SUB) {
13856 SDValue Sum = ShAmt1.getOperand(0);
13857 if (ConstantSDNode *SumC = dyn_cast<ConstantSDNode>(Sum)) {
Dan Gohman4e39e9d2010-06-24 14:30:44 +000013858 SDValue ShAmt1Op1 = ShAmt1.getOperand(1);
13859 if (ShAmt1Op1.getNode()->getOpcode() == ISD::TRUNCATE)
13860 ShAmt1Op1 = ShAmt1Op1.getOperand(0);
13861 if (SumC->getSExtValue() == Bits && ShAmt1Op1 == ShAmt0)
Evan Cheng760d1942010-01-04 21:22:48 +000013862 return DAG.getNode(Opc, DL, VT,
13863 Op0, Op1,
13864 DAG.getNode(ISD::TRUNCATE, DL,
13865 MVT::i8, ShAmt0));
13866 }
13867 } else if (ConstantSDNode *ShAmt1C = dyn_cast<ConstantSDNode>(ShAmt1)) {
13868 ConstantSDNode *ShAmt0C = dyn_cast<ConstantSDNode>(ShAmt0);
13869 if (ShAmt0C &&
Evan Cheng8b1190a2010-04-28 01:18:01 +000013870 ShAmt0C->getSExtValue() + ShAmt1C->getSExtValue() == Bits)
Evan Cheng760d1942010-01-04 21:22:48 +000013871 return DAG.getNode(Opc, DL, VT,
13872 N0.getOperand(0), N1.getOperand(0),
13873 DAG.getNode(ISD::TRUNCATE, DL,
13874 MVT::i8, ShAmt0));
13875 }
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000013876
Evan Cheng760d1942010-01-04 21:22:48 +000013877 return SDValue();
13878}
13879
Craig Topper3738ccd2011-12-27 06:27:23 +000013880// PerformXorCombine - Attempts to turn XOR nodes into BLSMSK nodes
Craig Topperb4c94572011-10-21 06:55:01 +000013881static SDValue PerformXorCombine(SDNode *N, SelectionDAG &DAG,
13882 TargetLowering::DAGCombinerInfo &DCI,
13883 const X86Subtarget *Subtarget) {
13884 if (DCI.isBeforeLegalizeOps())
13885 return SDValue();
13886
13887 EVT VT = N->getValueType(0);
13888
13889 if (VT != MVT::i32 && VT != MVT::i64)
13890 return SDValue();
13891
Craig Topper3738ccd2011-12-27 06:27:23 +000013892 assert(Subtarget->hasBMI() && "Creating BLSMSK requires BMI instructions");
13893
Craig Topperb4c94572011-10-21 06:55:01 +000013894 // Create BLSMSK instructions by finding X ^ (X-1)
13895 SDValue N0 = N->getOperand(0);
13896 SDValue N1 = N->getOperand(1);
13897 DebugLoc DL = N->getDebugLoc();
13898
13899 if (N0.getOpcode() == ISD::ADD && N0.getOperand(0) == N1 &&
13900 isAllOnes(N0.getOperand(1)))
13901 return DAG.getNode(X86ISD::BLSMSK, DL, VT, N1);
13902
13903 if (N1.getOpcode() == ISD::ADD && N1.getOperand(0) == N0 &&
13904 isAllOnes(N1.getOperand(1)))
13905 return DAG.getNode(X86ISD::BLSMSK, DL, VT, N0);
13906
13907 return SDValue();
13908}
13909
Nadav Rotem91e43fd2011-09-18 10:39:32 +000013910/// PerformLOADCombine - Do target-specific dag combines on LOAD nodes.
13911static SDValue PerformLOADCombine(SDNode *N, SelectionDAG &DAG,
13912 const X86Subtarget *Subtarget) {
13913 LoadSDNode *Ld = cast<LoadSDNode>(N);
13914 EVT RegVT = Ld->getValueType(0);
13915 EVT MemVT = Ld->getMemoryVT();
13916 DebugLoc dl = Ld->getDebugLoc();
13917 const TargetLowering &TLI = DAG.getTargetLoweringInfo();
13918
13919 ISD::LoadExtType Ext = Ld->getExtensionType();
13920
Nadav Rotemca6f2962011-09-18 19:00:23 +000013921 // If this is a vector EXT Load then attempt to optimize it using a
Nadav Rotem91e43fd2011-09-18 10:39:32 +000013922 // shuffle. We need SSE4 for the shuffles.
13923 // TODO: It is possible to support ZExt by zeroing the undef values
13924 // during the shuffle phase or after the shuffle.
Eli Friedmanda813f42011-12-28 21:24:44 +000013925 if (RegVT.isVector() && RegVT.isInteger() &&
13926 Ext == ISD::EXTLOAD && Subtarget->hasSSE41()) {
Nadav Rotem91e43fd2011-09-18 10:39:32 +000013927 assert(MemVT != RegVT && "Cannot extend to the same type");
13928 assert(MemVT.isVector() && "Must load a vector from memory");
13929
13930 unsigned NumElems = RegVT.getVectorNumElements();
13931 unsigned RegSz = RegVT.getSizeInBits();
13932 unsigned MemSz = MemVT.getSizeInBits();
13933 assert(RegSz > MemSz && "Register size must be greater than the mem size");
Nadav Rotemca6f2962011-09-18 19:00:23 +000013934 // All sizes must be a power of two
Nadav Rotem91e43fd2011-09-18 10:39:32 +000013935 if (!isPowerOf2_32(RegSz * MemSz * NumElems)) return SDValue();
13936
13937 // Attempt to load the original value using a single load op.
13938 // Find a scalar type which is equal to the loaded word size.
13939 MVT SclrLoadTy = MVT::i8;
13940 for (unsigned tp = MVT::FIRST_INTEGER_VALUETYPE;
13941 tp < MVT::LAST_INTEGER_VALUETYPE; ++tp) {
13942 MVT Tp = (MVT::SimpleValueType)tp;
13943 if (TLI.isTypeLegal(Tp) && Tp.getSizeInBits() == MemSz) {
13944 SclrLoadTy = Tp;
13945 break;
13946 }
13947 }
13948
13949 // Proceed if a load word is found.
13950 if (SclrLoadTy.getSizeInBits() != MemSz) return SDValue();
13951
13952 EVT LoadUnitVecVT = EVT::getVectorVT(*DAG.getContext(), SclrLoadTy,
13953 RegSz/SclrLoadTy.getSizeInBits());
13954
13955 EVT WideVecVT = EVT::getVectorVT(*DAG.getContext(), MemVT.getScalarType(),
13956 RegSz/MemVT.getScalarType().getSizeInBits());
13957 // Can't shuffle using an illegal type.
13958 if (!TLI.isTypeLegal(WideVecVT)) return SDValue();
13959
13960 // Perform a single load.
13961 SDValue ScalarLoad = DAG.getLoad(SclrLoadTy, dl, Ld->getChain(),
13962 Ld->getBasePtr(),
13963 Ld->getPointerInfo(), Ld->isVolatile(),
Pete Cooperd752e0f2011-11-08 18:42:53 +000013964 Ld->isNonTemporal(), Ld->isInvariant(),
13965 Ld->getAlignment());
Nadav Rotem91e43fd2011-09-18 10:39:32 +000013966
13967 // Insert the word loaded into a vector.
13968 SDValue ScalarInVector = DAG.getNode(ISD::SCALAR_TO_VECTOR, dl,
13969 LoadUnitVecVT, ScalarLoad);
13970
13971 // Bitcast the loaded value to a vector of the original element type, in
13972 // the size of the target vector type.
13973 SDValue SlicedVec = DAG.getNode(ISD::BITCAST, dl, WideVecVT, ScalarInVector);
13974 unsigned SizeRatio = RegSz/MemSz;
13975
13976 // Redistribute the loaded elements into the different locations.
13977 SmallVector<int, 8> ShuffleVec(NumElems * SizeRatio, -1);
13978 for (unsigned i = 0; i < NumElems; i++) ShuffleVec[i*SizeRatio] = i;
13979
13980 SDValue Shuff = DAG.getVectorShuffle(WideVecVT, dl, SlicedVec,
13981 DAG.getUNDEF(SlicedVec.getValueType()),
13982 ShuffleVec.data());
13983
13984 // Bitcast to the requested type.
13985 Shuff = DAG.getNode(ISD::BITCAST, dl, RegVT, Shuff);
13986 // Replace the original load with the new sequence
13987 // and return the new chain.
13988 DAG.ReplaceAllUsesOfValueWith(SDValue(N, 0), Shuff);
13989 return SDValue(ScalarLoad.getNode(), 1);
13990 }
13991
13992 return SDValue();
13993}
13994
Chris Lattner149a4e52008-02-22 02:09:43 +000013995/// PerformSTORECombine - Do target-specific dag combines on STORE nodes.
Dan Gohman475871a2008-07-27 21:46:04 +000013996static SDValue PerformSTORECombine(SDNode *N, SelectionDAG &DAG,
Evan Cheng536e6672009-03-12 05:59:15 +000013997 const X86Subtarget *Subtarget) {
Nadav Rotem614061b2011-08-10 19:30:14 +000013998 StoreSDNode *St = cast<StoreSDNode>(N);
13999 EVT VT = St->getValue().getValueType();
14000 EVT StVT = St->getMemoryVT();
14001 DebugLoc dl = St->getDebugLoc();
Nadav Rotem5e742a32011-08-11 16:41:21 +000014002 SDValue StoredVal = St->getOperand(1);
14003 const TargetLowering &TLI = DAG.getTargetLoweringInfo();
14004
Nick Lewycky8a8d4792011-12-02 22:16:29 +000014005 // If we are saving a concatenation of two XMM registers, perform two stores.
Nadav Rotem6236f7f2011-08-11 17:05:47 +000014006 // This is better in Sandy Bridge cause one 256-bit mem op is done via two
14007 // 128-bit ones. If in the future the cost becomes only one memory access the
14008 // first version would be better.
Nadav Rotem5e742a32011-08-11 16:41:21 +000014009 if (VT.getSizeInBits() == 256 &&
14010 StoredVal.getNode()->getOpcode() == ISD::CONCAT_VECTORS &&
14011 StoredVal.getNumOperands() == 2) {
14012
14013 SDValue Value0 = StoredVal.getOperand(0);
14014 SDValue Value1 = StoredVal.getOperand(1);
14015
14016 SDValue Stride = DAG.getConstant(16, TLI.getPointerTy());
14017 SDValue Ptr0 = St->getBasePtr();
14018 SDValue Ptr1 = DAG.getNode(ISD::ADD, dl, Ptr0.getValueType(), Ptr0, Stride);
14019
14020 SDValue Ch0 = DAG.getStore(St->getChain(), dl, Value0, Ptr0,
14021 St->getPointerInfo(), St->isVolatile(),
14022 St->isNonTemporal(), St->getAlignment());
14023 SDValue Ch1 = DAG.getStore(St->getChain(), dl, Value1, Ptr1,
14024 St->getPointerInfo(), St->isVolatile(),
14025 St->isNonTemporal(), St->getAlignment());
14026 return DAG.getNode(ISD::TokenFactor, dl, MVT::Other, Ch0, Ch1);
14027 }
Nadav Rotem614061b2011-08-10 19:30:14 +000014028
14029 // Optimize trunc store (of multiple scalars) to shuffle and store.
14030 // First, pack all of the elements in one place. Next, store to memory
14031 // in fewer chunks.
14032 if (St->isTruncatingStore() && VT.isVector()) {
14033 const TargetLowering &TLI = DAG.getTargetLoweringInfo();
14034 unsigned NumElems = VT.getVectorNumElements();
14035 assert(StVT != VT && "Cannot truncate to the same type");
14036 unsigned FromSz = VT.getVectorElementType().getSizeInBits();
14037 unsigned ToSz = StVT.getVectorElementType().getSizeInBits();
14038
14039 // From, To sizes and ElemCount must be pow of two
14040 if (!isPowerOf2_32(NumElems * FromSz * ToSz)) return SDValue();
Nadav Rotem9c6cdf42011-09-21 08:45:10 +000014041 // We are going to use the original vector elt for storing.
Nadav Rotem64ac73b2011-09-21 17:14:40 +000014042 // Accumulated smaller vector elements must be a multiple of the store size.
Nadav Rotem9c6cdf42011-09-21 08:45:10 +000014043 if (0 != (NumElems * FromSz) % ToSz) return SDValue();
Nadav Rotem91e43fd2011-09-18 10:39:32 +000014044
Nadav Rotem614061b2011-08-10 19:30:14 +000014045 unsigned SizeRatio = FromSz / ToSz;
14046
14047 assert(SizeRatio * NumElems * ToSz == VT.getSizeInBits());
14048
14049 // Create a type on which we perform the shuffle
14050 EVT WideVecVT = EVT::getVectorVT(*DAG.getContext(),
14051 StVT.getScalarType(), NumElems*SizeRatio);
14052
14053 assert(WideVecVT.getSizeInBits() == VT.getSizeInBits());
14054
14055 SDValue WideVec = DAG.getNode(ISD::BITCAST, dl, WideVecVT, St->getValue());
14056 SmallVector<int, 8> ShuffleVec(NumElems * SizeRatio, -1);
14057 for (unsigned i = 0; i < NumElems; i++ ) ShuffleVec[i] = i * SizeRatio;
14058
14059 // Can't shuffle using an illegal type
14060 if (!TLI.isTypeLegal(WideVecVT)) return SDValue();
14061
14062 SDValue Shuff = DAG.getVectorShuffle(WideVecVT, dl, WideVec,
14063 DAG.getUNDEF(WideVec.getValueType()),
14064 ShuffleVec.data());
14065 // At this point all of the data is stored at the bottom of the
14066 // register. We now need to save it to mem.
14067
14068 // Find the largest store unit
14069 MVT StoreType = MVT::i8;
14070 for (unsigned tp = MVT::FIRST_INTEGER_VALUETYPE;
14071 tp < MVT::LAST_INTEGER_VALUETYPE; ++tp) {
14072 MVT Tp = (MVT::SimpleValueType)tp;
14073 if (TLI.isTypeLegal(Tp) && StoreType.getSizeInBits() < NumElems * ToSz)
14074 StoreType = Tp;
14075 }
14076
14077 // Bitcast the original vector into a vector of store-size units
14078 EVT StoreVecVT = EVT::getVectorVT(*DAG.getContext(),
14079 StoreType, VT.getSizeInBits()/EVT(StoreType).getSizeInBits());
14080 assert(StoreVecVT.getSizeInBits() == VT.getSizeInBits());
14081 SDValue ShuffWide = DAG.getNode(ISD::BITCAST, dl, StoreVecVT, Shuff);
14082 SmallVector<SDValue, 8> Chains;
14083 SDValue Increment = DAG.getConstant(StoreType.getSizeInBits()/8,
14084 TLI.getPointerTy());
14085 SDValue Ptr = St->getBasePtr();
14086
14087 // Perform one or more big stores into memory.
14088 for (unsigned i = 0; i < (ToSz*NumElems)/StoreType.getSizeInBits() ; i++) {
14089 SDValue SubVec = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl,
14090 StoreType, ShuffWide,
14091 DAG.getIntPtrConstant(i));
14092 SDValue Ch = DAG.getStore(St->getChain(), dl, SubVec, Ptr,
14093 St->getPointerInfo(), St->isVolatile(),
14094 St->isNonTemporal(), St->getAlignment());
14095 Ptr = DAG.getNode(ISD::ADD, dl, Ptr.getValueType(), Ptr, Increment);
14096 Chains.push_back(Ch);
14097 }
14098
14099 return DAG.getNode(ISD::TokenFactor, dl, MVT::Other, &Chains[0],
14100 Chains.size());
14101 }
14102
14103
Chris Lattner149a4e52008-02-22 02:09:43 +000014104 // Turn load->store of MMX types into GPR load/stores. This avoids clobbering
14105 // the FP state in cases where an emms may be missing.
Dale Johannesen079f2a62008-02-25 19:20:14 +000014106 // A preferable solution to the general problem is to figure out the right
14107 // places to insert EMMS. This qualifies as a quick hack.
Evan Cheng536e6672009-03-12 05:59:15 +000014108
14109 // Similarly, turn load->store of i64 into double load/stores in 32-bit mode.
Evan Cheng536e6672009-03-12 05:59:15 +000014110 if (VT.getSizeInBits() != 64)
14111 return SDValue();
14112
Devang Patel578efa92009-06-05 21:57:13 +000014113 const Function *F = DAG.getMachineFunction().getFunction();
14114 bool NoImplicitFloatOps = F->hasFnAttr(Attribute::NoImplicitFloat);
Nick Lewycky8a8d4792011-12-02 22:16:29 +000014115 bool F64IsLegal = !DAG.getTarget().Options.UseSoftFloat && !NoImplicitFloatOps
Bruno Cardoso Lopes0c4b9ff2011-09-15 18:27:36 +000014116 && Subtarget->hasXMMInt();
Evan Cheng536e6672009-03-12 05:59:15 +000014117 if ((VT.isVector() ||
Owen Anderson825b72b2009-08-11 20:47:22 +000014118 (VT == MVT::i64 && F64IsLegal && !Subtarget->is64Bit())) &&
Dale Johannesen079f2a62008-02-25 19:20:14 +000014119 isa<LoadSDNode>(St->getValue()) &&
14120 !cast<LoadSDNode>(St->getValue())->isVolatile() &&
14121 St->getChain().hasOneUse() && !St->isVolatile()) {
Gabor Greifba36cb52008-08-28 21:40:38 +000014122 SDNode* LdVal = St->getValue().getNode();
Dale Johannesen079f2a62008-02-25 19:20:14 +000014123 LoadSDNode *Ld = 0;
14124 int TokenFactorIndex = -1;
Dan Gohman475871a2008-07-27 21:46:04 +000014125 SmallVector<SDValue, 8> Ops;
Gabor Greifba36cb52008-08-28 21:40:38 +000014126 SDNode* ChainVal = St->getChain().getNode();
Dale Johannesen079f2a62008-02-25 19:20:14 +000014127 // Must be a store of a load. We currently handle two cases: the load
14128 // is a direct child, and it's under an intervening TokenFactor. It is
14129 // possible to dig deeper under nested TokenFactors.
Dale Johannesen14e2ea92008-02-25 22:29:22 +000014130 if (ChainVal == LdVal)
Dale Johannesen079f2a62008-02-25 19:20:14 +000014131 Ld = cast<LoadSDNode>(St->getChain());
14132 else if (St->getValue().hasOneUse() &&
14133 ChainVal->getOpcode() == ISD::TokenFactor) {
14134 for (unsigned i=0, e = ChainVal->getNumOperands(); i != e; ++i) {
Gabor Greifba36cb52008-08-28 21:40:38 +000014135 if (ChainVal->getOperand(i).getNode() == LdVal) {
Dale Johannesen079f2a62008-02-25 19:20:14 +000014136 TokenFactorIndex = i;
14137 Ld = cast<LoadSDNode>(St->getValue());
14138 } else
14139 Ops.push_back(ChainVal->getOperand(i));
14140 }
14141 }
Dale Johannesen079f2a62008-02-25 19:20:14 +000014142
Evan Cheng536e6672009-03-12 05:59:15 +000014143 if (!Ld || !ISD::isNormalLoad(Ld))
14144 return SDValue();
Dale Johannesen079f2a62008-02-25 19:20:14 +000014145
Evan Cheng536e6672009-03-12 05:59:15 +000014146 // If this is not the MMX case, i.e. we are just turning i64 load/store
14147 // into f64 load/store, avoid the transformation if there are multiple
14148 // uses of the loaded value.
14149 if (!VT.isVector() && !Ld->hasNUsesOfValue(1, 0))
14150 return SDValue();
Dale Johannesen079f2a62008-02-25 19:20:14 +000014151
Evan Cheng536e6672009-03-12 05:59:15 +000014152 DebugLoc LdDL = Ld->getDebugLoc();
14153 DebugLoc StDL = N->getDebugLoc();
14154 // If we are a 64-bit capable x86, lower to a single movq load/store pair.
14155 // Otherwise, if it's legal to use f64 SSE instructions, use f64 load/store
14156 // pair instead.
14157 if (Subtarget->is64Bit() || F64IsLegal) {
Owen Anderson825b72b2009-08-11 20:47:22 +000014158 EVT LdVT = Subtarget->is64Bit() ? MVT::i64 : MVT::f64;
Chris Lattner51abfe42010-09-21 06:02:19 +000014159 SDValue NewLd = DAG.getLoad(LdVT, LdDL, Ld->getChain(), Ld->getBasePtr(),
14160 Ld->getPointerInfo(), Ld->isVolatile(),
Pete Cooperd752e0f2011-11-08 18:42:53 +000014161 Ld->isNonTemporal(), Ld->isInvariant(),
14162 Ld->getAlignment());
Evan Cheng536e6672009-03-12 05:59:15 +000014163 SDValue NewChain = NewLd.getValue(1);
Dale Johannesen079f2a62008-02-25 19:20:14 +000014164 if (TokenFactorIndex != -1) {
Evan Cheng536e6672009-03-12 05:59:15 +000014165 Ops.push_back(NewChain);
Owen Anderson825b72b2009-08-11 20:47:22 +000014166 NewChain = DAG.getNode(ISD::TokenFactor, LdDL, MVT::Other, &Ops[0],
Dale Johannesen079f2a62008-02-25 19:20:14 +000014167 Ops.size());
14168 }
Evan Cheng536e6672009-03-12 05:59:15 +000014169 return DAG.getStore(NewChain, StDL, NewLd, St->getBasePtr(),
Chris Lattner51abfe42010-09-21 06:02:19 +000014170 St->getPointerInfo(),
David Greene67c9d422010-02-15 16:53:33 +000014171 St->isVolatile(), St->isNonTemporal(),
14172 St->getAlignment());
Chris Lattner149a4e52008-02-22 02:09:43 +000014173 }
Evan Cheng536e6672009-03-12 05:59:15 +000014174
14175 // Otherwise, lower to two pairs of 32-bit loads / stores.
14176 SDValue LoAddr = Ld->getBasePtr();
Owen Anderson825b72b2009-08-11 20:47:22 +000014177 SDValue HiAddr = DAG.getNode(ISD::ADD, LdDL, MVT::i32, LoAddr,
14178 DAG.getConstant(4, MVT::i32));
Evan Cheng536e6672009-03-12 05:59:15 +000014179
Owen Anderson825b72b2009-08-11 20:47:22 +000014180 SDValue LoLd = DAG.getLoad(MVT::i32, LdDL, Ld->getChain(), LoAddr,
Chris Lattner51abfe42010-09-21 06:02:19 +000014181 Ld->getPointerInfo(),
David Greene67c9d422010-02-15 16:53:33 +000014182 Ld->isVolatile(), Ld->isNonTemporal(),
Pete Cooperd752e0f2011-11-08 18:42:53 +000014183 Ld->isInvariant(), Ld->getAlignment());
Owen Anderson825b72b2009-08-11 20:47:22 +000014184 SDValue HiLd = DAG.getLoad(MVT::i32, LdDL, Ld->getChain(), HiAddr,
Chris Lattner51abfe42010-09-21 06:02:19 +000014185 Ld->getPointerInfo().getWithOffset(4),
David Greene67c9d422010-02-15 16:53:33 +000014186 Ld->isVolatile(), Ld->isNonTemporal(),
Pete Cooperd752e0f2011-11-08 18:42:53 +000014187 Ld->isInvariant(),
Evan Cheng536e6672009-03-12 05:59:15 +000014188 MinAlign(Ld->getAlignment(), 4));
14189
14190 SDValue NewChain = LoLd.getValue(1);
14191 if (TokenFactorIndex != -1) {
14192 Ops.push_back(LoLd);
14193 Ops.push_back(HiLd);
Owen Anderson825b72b2009-08-11 20:47:22 +000014194 NewChain = DAG.getNode(ISD::TokenFactor, LdDL, MVT::Other, &Ops[0],
Evan Cheng536e6672009-03-12 05:59:15 +000014195 Ops.size());
14196 }
14197
14198 LoAddr = St->getBasePtr();
Owen Anderson825b72b2009-08-11 20:47:22 +000014199 HiAddr = DAG.getNode(ISD::ADD, StDL, MVT::i32, LoAddr,
14200 DAG.getConstant(4, MVT::i32));
Evan Cheng536e6672009-03-12 05:59:15 +000014201
14202 SDValue LoSt = DAG.getStore(NewChain, StDL, LoLd, LoAddr,
Chris Lattner8026a9d2010-09-21 17:50:43 +000014203 St->getPointerInfo(),
David Greene67c9d422010-02-15 16:53:33 +000014204 St->isVolatile(), St->isNonTemporal(),
14205 St->getAlignment());
Evan Cheng536e6672009-03-12 05:59:15 +000014206 SDValue HiSt = DAG.getStore(NewChain, StDL, HiLd, HiAddr,
Chris Lattner8026a9d2010-09-21 17:50:43 +000014207 St->getPointerInfo().getWithOffset(4),
Evan Cheng536e6672009-03-12 05:59:15 +000014208 St->isVolatile(),
David Greene67c9d422010-02-15 16:53:33 +000014209 St->isNonTemporal(),
Evan Cheng536e6672009-03-12 05:59:15 +000014210 MinAlign(St->getAlignment(), 4));
Owen Anderson825b72b2009-08-11 20:47:22 +000014211 return DAG.getNode(ISD::TokenFactor, StDL, MVT::Other, LoSt, HiSt);
Chris Lattner149a4e52008-02-22 02:09:43 +000014212 }
Dan Gohman475871a2008-07-27 21:46:04 +000014213 return SDValue();
Chris Lattner149a4e52008-02-22 02:09:43 +000014214}
14215
Duncan Sands17470be2011-09-22 20:15:48 +000014216/// isHorizontalBinOp - Return 'true' if this vector operation is "horizontal"
14217/// and return the operands for the horizontal operation in LHS and RHS. A
14218/// horizontal operation performs the binary operation on successive elements
14219/// of its first operand, then on successive elements of its second operand,
14220/// returning the resulting values in a vector. For example, if
14221/// A = < float a0, float a1, float a2, float a3 >
14222/// and
14223/// B = < float b0, float b1, float b2, float b3 >
14224/// then the result of doing a horizontal operation on A and B is
14225/// A horizontal-op B = < a0 op a1, a2 op a3, b0 op b1, b2 op b3 >.
14226/// In short, LHS and RHS are inspected to see if LHS op RHS is of the form
14227/// A horizontal-op B, for some already available A and B, and if so then LHS is
14228/// set to A, RHS to B, and the routine returns 'true'.
14229/// Note that the binary operation should have the property that if one of the
14230/// operands is UNDEF then the result is UNDEF.
Craig Topperbeabc6c2011-12-05 06:56:46 +000014231static bool isHorizontalBinOp(SDValue &LHS, SDValue &RHS, bool IsCommutative) {
Duncan Sands17470be2011-09-22 20:15:48 +000014232 // Look for the following pattern: if
14233 // A = < float a0, float a1, float a2, float a3 >
14234 // B = < float b0, float b1, float b2, float b3 >
14235 // and
14236 // LHS = VECTOR_SHUFFLE A, B, <0, 2, 4, 6>
14237 // RHS = VECTOR_SHUFFLE A, B, <1, 3, 5, 7>
14238 // then LHS op RHS = < a0 op a1, a2 op a3, b0 op b1, b2 op b3 >
14239 // which is A horizontal-op B.
14240
14241 // At least one of the operands should be a vector shuffle.
14242 if (LHS.getOpcode() != ISD::VECTOR_SHUFFLE &&
14243 RHS.getOpcode() != ISD::VECTOR_SHUFFLE)
14244 return false;
14245
14246 EVT VT = LHS.getValueType();
Craig Topperf8363302011-12-02 08:18:41 +000014247
14248 assert((VT.is128BitVector() || VT.is256BitVector()) &&
14249 "Unsupported vector type for horizontal add/sub");
14250
14251 // Handle 128 and 256-bit vector lengths. AVX defines horizontal add/sub to
14252 // operate independently on 128-bit lanes.
Craig Topperb72039c2011-11-30 09:10:50 +000014253 unsigned NumElts = VT.getVectorNumElements();
14254 unsigned NumLanes = VT.getSizeInBits()/128;
14255 unsigned NumLaneElts = NumElts / NumLanes;
Craig Topperf8363302011-12-02 08:18:41 +000014256 assert((NumLaneElts % 2 == 0) &&
14257 "Vector type should have an even number of elements in each lane");
14258 unsigned HalfLaneElts = NumLaneElts/2;
Duncan Sands17470be2011-09-22 20:15:48 +000014259
14260 // View LHS in the form
14261 // LHS = VECTOR_SHUFFLE A, B, LMask
14262 // If LHS is not a shuffle then pretend it is the shuffle
14263 // LHS = VECTOR_SHUFFLE LHS, undef, <0, 1, ..., N-1>
14264 // NOTE: in what follows a default initialized SDValue represents an UNDEF of
14265 // type VT.
14266 SDValue A, B;
Craig Topperb72039c2011-11-30 09:10:50 +000014267 SmallVector<int, 16> LMask(NumElts);
Duncan Sands17470be2011-09-22 20:15:48 +000014268 if (LHS.getOpcode() == ISD::VECTOR_SHUFFLE) {
14269 if (LHS.getOperand(0).getOpcode() != ISD::UNDEF)
14270 A = LHS.getOperand(0);
14271 if (LHS.getOperand(1).getOpcode() != ISD::UNDEF)
14272 B = LHS.getOperand(1);
14273 cast<ShuffleVectorSDNode>(LHS.getNode())->getMask(LMask);
14274 } else {
14275 if (LHS.getOpcode() != ISD::UNDEF)
14276 A = LHS;
Craig Topperb72039c2011-11-30 09:10:50 +000014277 for (unsigned i = 0; i != NumElts; ++i)
Duncan Sands17470be2011-09-22 20:15:48 +000014278 LMask[i] = i;
14279 }
14280
14281 // Likewise, view RHS in the form
14282 // RHS = VECTOR_SHUFFLE C, D, RMask
14283 SDValue C, D;
Craig Topperb72039c2011-11-30 09:10:50 +000014284 SmallVector<int, 16> RMask(NumElts);
Duncan Sands17470be2011-09-22 20:15:48 +000014285 if (RHS.getOpcode() == ISD::VECTOR_SHUFFLE) {
14286 if (RHS.getOperand(0).getOpcode() != ISD::UNDEF)
14287 C = RHS.getOperand(0);
14288 if (RHS.getOperand(1).getOpcode() != ISD::UNDEF)
14289 D = RHS.getOperand(1);
14290 cast<ShuffleVectorSDNode>(RHS.getNode())->getMask(RMask);
14291 } else {
14292 if (RHS.getOpcode() != ISD::UNDEF)
14293 C = RHS;
Craig Topperb72039c2011-11-30 09:10:50 +000014294 for (unsigned i = 0; i != NumElts; ++i)
Duncan Sands17470be2011-09-22 20:15:48 +000014295 RMask[i] = i;
14296 }
14297
14298 // Check that the shuffles are both shuffling the same vectors.
14299 if (!(A == C && B == D) && !(A == D && B == C))
14300 return false;
14301
14302 // If everything is UNDEF then bail out: it would be better to fold to UNDEF.
14303 if (!A.getNode() && !B.getNode())
14304 return false;
14305
14306 // If A and B occur in reverse order in RHS, then "swap" them (which means
14307 // rewriting the mask).
14308 if (A != C)
Craig Topperbeabc6c2011-12-05 06:56:46 +000014309 CommuteVectorShuffleMask(RMask, NumElts);
Duncan Sands17470be2011-09-22 20:15:48 +000014310
14311 // At this point LHS and RHS are equivalent to
14312 // LHS = VECTOR_SHUFFLE A, B, LMask
14313 // RHS = VECTOR_SHUFFLE A, B, RMask
14314 // Check that the masks correspond to performing a horizontal operation.
Craig Topperf8363302011-12-02 08:18:41 +000014315 for (unsigned i = 0; i != NumElts; ++i) {
Craig Topperbeabc6c2011-12-05 06:56:46 +000014316 int LIdx = LMask[i], RIdx = RMask[i];
Duncan Sands17470be2011-09-22 20:15:48 +000014317
Craig Topperf8363302011-12-02 08:18:41 +000014318 // Ignore any UNDEF components.
Craig Topperbeabc6c2011-12-05 06:56:46 +000014319 if (LIdx < 0 || RIdx < 0 ||
14320 (!A.getNode() && (LIdx < (int)NumElts || RIdx < (int)NumElts)) ||
14321 (!B.getNode() && (LIdx >= (int)NumElts || RIdx >= (int)NumElts)))
Craig Topperf8363302011-12-02 08:18:41 +000014322 continue;
Duncan Sands17470be2011-09-22 20:15:48 +000014323
Craig Topperf8363302011-12-02 08:18:41 +000014324 // Check that successive elements are being operated on. If not, this is
14325 // not a horizontal operation.
14326 unsigned Src = (i/HalfLaneElts) % 2; // each lane is split between srcs
14327 unsigned LaneStart = (i/NumLaneElts) * NumLaneElts;
Craig Topperbeabc6c2011-12-05 06:56:46 +000014328 int Index = 2*(i%HalfLaneElts) + NumElts*Src + LaneStart;
Craig Topperf8363302011-12-02 08:18:41 +000014329 if (!(LIdx == Index && RIdx == Index + 1) &&
Craig Topperbeabc6c2011-12-05 06:56:46 +000014330 !(IsCommutative && LIdx == Index + 1 && RIdx == Index))
Craig Topperf8363302011-12-02 08:18:41 +000014331 return false;
Duncan Sands17470be2011-09-22 20:15:48 +000014332 }
14333
14334 LHS = A.getNode() ? A : B; // If A is 'UNDEF', use B for it.
14335 RHS = B.getNode() ? B : A; // If B is 'UNDEF', use A for it.
14336 return true;
14337}
14338
14339/// PerformFADDCombine - Do target-specific dag combines on floating point adds.
14340static SDValue PerformFADDCombine(SDNode *N, SelectionDAG &DAG,
14341 const X86Subtarget *Subtarget) {
14342 EVT VT = N->getValueType(0);
14343 SDValue LHS = N->getOperand(0);
14344 SDValue RHS = N->getOperand(1);
14345
14346 // Try to synthesize horizontal adds from adds of shuffles.
Craig Topper138a5c62011-12-02 07:16:01 +000014347 if (((Subtarget->hasSSE3orAVX() && (VT == MVT::v4f32 || VT == MVT::v2f64)) ||
14348 (Subtarget->hasAVX() && (VT == MVT::v8f32 || VT == MVT::v4f64))) &&
Duncan Sands17470be2011-09-22 20:15:48 +000014349 isHorizontalBinOp(LHS, RHS, true))
14350 return DAG.getNode(X86ISD::FHADD, N->getDebugLoc(), VT, LHS, RHS);
14351 return SDValue();
14352}
14353
14354/// PerformFSUBCombine - Do target-specific dag combines on floating point subs.
14355static SDValue PerformFSUBCombine(SDNode *N, SelectionDAG &DAG,
14356 const X86Subtarget *Subtarget) {
14357 EVT VT = N->getValueType(0);
14358 SDValue LHS = N->getOperand(0);
14359 SDValue RHS = N->getOperand(1);
14360
14361 // Try to synthesize horizontal subs from subs of shuffles.
Craig Topper138a5c62011-12-02 07:16:01 +000014362 if (((Subtarget->hasSSE3orAVX() && (VT == MVT::v4f32 || VT == MVT::v2f64)) ||
14363 (Subtarget->hasAVX() && (VT == MVT::v8f32 || VT == MVT::v4f64))) &&
Duncan Sands17470be2011-09-22 20:15:48 +000014364 isHorizontalBinOp(LHS, RHS, false))
14365 return DAG.getNode(X86ISD::FHSUB, N->getDebugLoc(), VT, LHS, RHS);
14366 return SDValue();
14367}
14368
Chris Lattner6cf73262008-01-25 06:14:17 +000014369/// PerformFORCombine - Do target-specific dag combines on X86ISD::FOR and
14370/// X86ISD::FXOR nodes.
Dan Gohman475871a2008-07-27 21:46:04 +000014371static SDValue PerformFORCombine(SDNode *N, SelectionDAG &DAG) {
Chris Lattner6cf73262008-01-25 06:14:17 +000014372 assert(N->getOpcode() == X86ISD::FOR || N->getOpcode() == X86ISD::FXOR);
14373 // F[X]OR(0.0, x) -> x
14374 // F[X]OR(x, 0.0) -> x
Chris Lattneraf723b92008-01-25 05:46:26 +000014375 if (ConstantFPSDNode *C = dyn_cast<ConstantFPSDNode>(N->getOperand(0)))
14376 if (C->getValueAPF().isPosZero())
14377 return N->getOperand(1);
14378 if (ConstantFPSDNode *C = dyn_cast<ConstantFPSDNode>(N->getOperand(1)))
14379 if (C->getValueAPF().isPosZero())
14380 return N->getOperand(0);
Dan Gohman475871a2008-07-27 21:46:04 +000014381 return SDValue();
Chris Lattneraf723b92008-01-25 05:46:26 +000014382}
14383
14384/// PerformFANDCombine - Do target-specific dag combines on X86ISD::FAND nodes.
Dan Gohman475871a2008-07-27 21:46:04 +000014385static SDValue PerformFANDCombine(SDNode *N, SelectionDAG &DAG) {
Chris Lattneraf723b92008-01-25 05:46:26 +000014386 // FAND(0.0, x) -> 0.0
14387 // FAND(x, 0.0) -> 0.0
14388 if (ConstantFPSDNode *C = dyn_cast<ConstantFPSDNode>(N->getOperand(0)))
14389 if (C->getValueAPF().isPosZero())
14390 return N->getOperand(0);
14391 if (ConstantFPSDNode *C = dyn_cast<ConstantFPSDNode>(N->getOperand(1)))
14392 if (C->getValueAPF().isPosZero())
14393 return N->getOperand(1);
Dan Gohman475871a2008-07-27 21:46:04 +000014394 return SDValue();
Chris Lattneraf723b92008-01-25 05:46:26 +000014395}
14396
Dan Gohmane5af2d32009-01-29 01:59:02 +000014397static SDValue PerformBTCombine(SDNode *N,
14398 SelectionDAG &DAG,
14399 TargetLowering::DAGCombinerInfo &DCI) {
14400 // BT ignores high bits in the bit index operand.
14401 SDValue Op1 = N->getOperand(1);
14402 if (Op1.hasOneUse()) {
14403 unsigned BitWidth = Op1.getValueSizeInBits();
14404 APInt DemandedMask = APInt::getLowBitsSet(BitWidth, Log2_32(BitWidth));
14405 APInt KnownZero, KnownOne;
Evan Chenge5b51ac2010-04-17 06:13:15 +000014406 TargetLowering::TargetLoweringOpt TLO(DAG, !DCI.isBeforeLegalize(),
14407 !DCI.isBeforeLegalizeOps());
Dan Gohmand858e902010-04-17 15:26:15 +000014408 const TargetLowering &TLI = DAG.getTargetLoweringInfo();
Dan Gohmane5af2d32009-01-29 01:59:02 +000014409 if (TLO.ShrinkDemandedConstant(Op1, DemandedMask) ||
14410 TLI.SimplifyDemandedBits(Op1, DemandedMask, KnownZero, KnownOne, TLO))
14411 DCI.CommitTargetLoweringOpt(TLO);
14412 }
14413 return SDValue();
14414}
Chris Lattner83e6c992006-10-04 06:57:07 +000014415
Eli Friedman7a5e5552009-06-07 06:52:44 +000014416static SDValue PerformVZEXT_MOVLCombine(SDNode *N, SelectionDAG &DAG) {
14417 SDValue Op = N->getOperand(0);
Wesley Peckbf17cfa2010-11-23 03:31:01 +000014418 if (Op.getOpcode() == ISD::BITCAST)
Eli Friedman7a5e5552009-06-07 06:52:44 +000014419 Op = Op.getOperand(0);
Owen Andersone50ed302009-08-10 22:56:29 +000014420 EVT VT = N->getValueType(0), OpVT = Op.getValueType();
Eli Friedman7a5e5552009-06-07 06:52:44 +000014421 if (Op.getOpcode() == X86ISD::VZEXT_LOAD &&
Eric Christopherfd179292009-08-27 18:07:15 +000014422 VT.getVectorElementType().getSizeInBits() ==
Eli Friedman7a5e5552009-06-07 06:52:44 +000014423 OpVT.getVectorElementType().getSizeInBits()) {
Wesley Peckbf17cfa2010-11-23 03:31:01 +000014424 return DAG.getNode(ISD::BITCAST, N->getDebugLoc(), VT, Op);
Eli Friedman7a5e5552009-06-07 06:52:44 +000014425 }
14426 return SDValue();
14427}
14428
Evan Cheng2e489c42009-12-16 00:53:11 +000014429static SDValue PerformZExtCombine(SDNode *N, SelectionDAG &DAG) {
14430 // (i32 zext (and (i8 x86isd::setcc_carry), 1)) ->
14431 // (and (i32 x86isd::setcc_carry), 1)
14432 // This eliminates the zext. This transformation is necessary because
14433 // ISD::SETCC is always legalized to i8.
14434 DebugLoc dl = N->getDebugLoc();
14435 SDValue N0 = N->getOperand(0);
14436 EVT VT = N->getValueType(0);
14437 if (N0.getOpcode() == ISD::AND &&
14438 N0.hasOneUse() &&
14439 N0.getOperand(0).hasOneUse()) {
14440 SDValue N00 = N0.getOperand(0);
14441 if (N00.getOpcode() != X86ISD::SETCC_CARRY)
14442 return SDValue();
14443 ConstantSDNode *C = dyn_cast<ConstantSDNode>(N0.getOperand(1));
14444 if (!C || C->getZExtValue() != 1)
14445 return SDValue();
14446 return DAG.getNode(ISD::AND, dl, VT,
14447 DAG.getNode(X86ISD::SETCC_CARRY, dl, VT,
14448 N00.getOperand(0), N00.getOperand(1)),
14449 DAG.getConstant(1, VT));
14450 }
14451
14452 return SDValue();
14453}
14454
Chris Lattnerc19d1c32010-12-19 22:08:31 +000014455// Optimize RES = X86ISD::SETCC CONDCODE, EFLAG_INPUT
14456static SDValue PerformSETCCCombine(SDNode *N, SelectionDAG &DAG) {
14457 unsigned X86CC = N->getConstantOperandVal(0);
14458 SDValue EFLAG = N->getOperand(1);
14459 DebugLoc DL = N->getDebugLoc();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000014460
Chris Lattnerc19d1c32010-12-19 22:08:31 +000014461 // Materialize "setb reg" as "sbb reg,reg", since it can be extended without
14462 // a zext and produces an all-ones bit which is more useful than 0/1 in some
14463 // cases.
14464 if (X86CC == X86::COND_B)
14465 return DAG.getNode(ISD::AND, DL, MVT::i8,
14466 DAG.getNode(X86ISD::SETCC_CARRY, DL, MVT::i8,
14467 DAG.getConstant(X86CC, MVT::i8), EFLAG),
14468 DAG.getConstant(1, MVT::i8));
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000014469
Chris Lattnerc19d1c32010-12-19 22:08:31 +000014470 return SDValue();
14471}
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000014472
Benjamin Kramer1396c402011-06-18 11:09:41 +000014473static SDValue PerformSINT_TO_FPCombine(SDNode *N, SelectionDAG &DAG,
14474 const X86TargetLowering *XTLI) {
Stuart Hastingsf99a4b82011-06-06 23:15:58 +000014475 SDValue Op0 = N->getOperand(0);
14476 // Transform (SINT_TO_FP (i64 ...)) into an x87 operation if we have
14477 // a 32-bit target where SSE doesn't support i64->FP operations.
14478 if (Op0.getOpcode() == ISD::LOAD) {
14479 LoadSDNode *Ld = cast<LoadSDNode>(Op0.getNode());
14480 EVT VT = Ld->getValueType(0);
14481 if (!Ld->isVolatile() && !N->getValueType(0).isVector() &&
14482 ISD::isNON_EXTLoad(Op0.getNode()) && Op0.hasOneUse() &&
14483 !XTLI->getSubtarget()->is64Bit() &&
14484 !DAG.getTargetLoweringInfo().isTypeLegal(VT)) {
Benjamin Kramer1396c402011-06-18 11:09:41 +000014485 SDValue FILDChain = XTLI->BuildFILD(SDValue(N, 0), Ld->getValueType(0),
14486 Ld->getChain(), Op0, DAG);
Stuart Hastingsf99a4b82011-06-06 23:15:58 +000014487 DAG.ReplaceAllUsesOfValueWith(Op0.getValue(1), FILDChain.getValue(1));
14488 return FILDChain;
14489 }
14490 }
14491 return SDValue();
14492}
14493
Chris Lattner23a01992010-12-20 01:37:09 +000014494// Optimize RES, EFLAGS = X86ISD::ADC LHS, RHS, EFLAGS
14495static SDValue PerformADCCombine(SDNode *N, SelectionDAG &DAG,
14496 X86TargetLowering::DAGCombinerInfo &DCI) {
14497 // If the LHS and RHS of the ADC node are zero, then it can't overflow and
14498 // the result is either zero or one (depending on the input carry bit).
14499 // Strength reduce this down to a "set on carry" aka SETCC_CARRY&1.
14500 if (X86::isZeroNode(N->getOperand(0)) &&
14501 X86::isZeroNode(N->getOperand(1)) &&
14502 // We don't have a good way to replace an EFLAGS use, so only do this when
14503 // dead right now.
14504 SDValue(N, 1).use_empty()) {
14505 DebugLoc DL = N->getDebugLoc();
14506 EVT VT = N->getValueType(0);
14507 SDValue CarryOut = DAG.getConstant(0, N->getValueType(1));
14508 SDValue Res1 = DAG.getNode(ISD::AND, DL, VT,
14509 DAG.getNode(X86ISD::SETCC_CARRY, DL, VT,
14510 DAG.getConstant(X86::COND_B,MVT::i8),
14511 N->getOperand(2)),
14512 DAG.getConstant(1, VT));
14513 return DCI.CombineTo(N, Res1, CarryOut);
14514 }
14515
14516 return SDValue();
14517}
14518
Benjamin Kramer7d6fe132010-12-21 21:41:44 +000014519// fold (add Y, (sete X, 0)) -> adc 0, Y
14520// (add Y, (setne X, 0)) -> sbb -1, Y
14521// (sub (sete X, 0), Y) -> sbb 0, Y
14522// (sub (setne X, 0), Y) -> adc -1, Y
Benjamin Kramer162ee5c2011-07-26 22:42:13 +000014523static SDValue OptimizeConditionalInDecrement(SDNode *N, SelectionDAG &DAG) {
Benjamin Kramer7d6fe132010-12-21 21:41:44 +000014524 DebugLoc DL = N->getDebugLoc();
NAKAMURA Takumie5fffe92011-01-26 02:03:37 +000014525
Benjamin Kramer7d6fe132010-12-21 21:41:44 +000014526 // Look through ZExts.
14527 SDValue Ext = N->getOperand(N->getOpcode() == ISD::SUB ? 1 : 0);
14528 if (Ext.getOpcode() != ISD::ZERO_EXTEND || !Ext.hasOneUse())
14529 return SDValue();
14530
14531 SDValue SetCC = Ext.getOperand(0);
14532 if (SetCC.getOpcode() != X86ISD::SETCC || !SetCC.hasOneUse())
14533 return SDValue();
14534
14535 X86::CondCode CC = (X86::CondCode)SetCC.getConstantOperandVal(0);
14536 if (CC != X86::COND_E && CC != X86::COND_NE)
14537 return SDValue();
14538
14539 SDValue Cmp = SetCC.getOperand(1);
14540 if (Cmp.getOpcode() != X86ISD::CMP || !Cmp.hasOneUse() ||
Chris Lattner9cd3da42011-01-16 02:56:53 +000014541 !X86::isZeroNode(Cmp.getOperand(1)) ||
14542 !Cmp.getOperand(0).getValueType().isInteger())
Benjamin Kramer7d6fe132010-12-21 21:41:44 +000014543 return SDValue();
14544
14545 SDValue CmpOp0 = Cmp.getOperand(0);
14546 SDValue NewCmp = DAG.getNode(X86ISD::CMP, DL, MVT::i32, CmpOp0,
14547 DAG.getConstant(1, CmpOp0.getValueType()));
14548
14549 SDValue OtherVal = N->getOperand(N->getOpcode() == ISD::SUB ? 0 : 1);
14550 if (CC == X86::COND_NE)
14551 return DAG.getNode(N->getOpcode() == ISD::SUB ? X86ISD::ADC : X86ISD::SBB,
14552 DL, OtherVal.getValueType(), OtherVal,
14553 DAG.getConstant(-1ULL, OtherVal.getValueType()), NewCmp);
14554 return DAG.getNode(N->getOpcode() == ISD::SUB ? X86ISD::SBB : X86ISD::ADC,
14555 DL, OtherVal.getValueType(), OtherVal,
14556 DAG.getConstant(0, OtherVal.getValueType()), NewCmp);
14557}
Chris Lattnerc19d1c32010-12-19 22:08:31 +000014558
Craig Topper54f952a2011-11-19 09:02:40 +000014559/// PerformADDCombine - Do target-specific dag combines on integer adds.
14560static SDValue PerformAddCombine(SDNode *N, SelectionDAG &DAG,
14561 const X86Subtarget *Subtarget) {
14562 EVT VT = N->getValueType(0);
14563 SDValue Op0 = N->getOperand(0);
14564 SDValue Op1 = N->getOperand(1);
14565
14566 // Try to synthesize horizontal adds from adds of shuffles.
Craig Topperb72039c2011-11-30 09:10:50 +000014567 if (((Subtarget->hasSSSE3orAVX() && (VT == MVT::v8i16 || VT == MVT::v4i32)) ||
14568 (Subtarget->hasAVX2() && (VT == MVT::v16i16 || MVT::v8i32))) &&
Craig Topper54f952a2011-11-19 09:02:40 +000014569 isHorizontalBinOp(Op0, Op1, true))
14570 return DAG.getNode(X86ISD::HADD, N->getDebugLoc(), VT, Op0, Op1);
14571
14572 return OptimizeConditionalInDecrement(N, DAG);
14573}
14574
14575static SDValue PerformSubCombine(SDNode *N, SelectionDAG &DAG,
14576 const X86Subtarget *Subtarget) {
Benjamin Kramer162ee5c2011-07-26 22:42:13 +000014577 SDValue Op0 = N->getOperand(0);
14578 SDValue Op1 = N->getOperand(1);
14579
14580 // X86 can't encode an immediate LHS of a sub. See if we can push the
14581 // negation into a preceding instruction.
14582 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op0)) {
Benjamin Kramer162ee5c2011-07-26 22:42:13 +000014583 // If the RHS of the sub is a XOR with one use and a constant, invert the
14584 // immediate. Then add one to the LHS of the sub so we can turn
14585 // X-Y -> X+~Y+1, saving one register.
14586 if (Op1->hasOneUse() && Op1.getOpcode() == ISD::XOR &&
14587 isa<ConstantSDNode>(Op1.getOperand(1))) {
Nick Lewycky726ebd62011-08-23 19:01:24 +000014588 APInt XorC = cast<ConstantSDNode>(Op1.getOperand(1))->getAPIntValue();
Benjamin Kramer162ee5c2011-07-26 22:42:13 +000014589 EVT VT = Op0.getValueType();
14590 SDValue NewXor = DAG.getNode(ISD::XOR, Op1.getDebugLoc(), VT,
14591 Op1.getOperand(0),
14592 DAG.getConstant(~XorC, VT));
14593 return DAG.getNode(ISD::ADD, N->getDebugLoc(), VT, NewXor,
Nick Lewycky726ebd62011-08-23 19:01:24 +000014594 DAG.getConstant(C->getAPIntValue()+1, VT));
Benjamin Kramer162ee5c2011-07-26 22:42:13 +000014595 }
14596 }
14597
Craig Topper54f952a2011-11-19 09:02:40 +000014598 // Try to synthesize horizontal adds from adds of shuffles.
14599 EVT VT = N->getValueType(0);
Craig Topperb72039c2011-11-30 09:10:50 +000014600 if (((Subtarget->hasSSSE3orAVX() && (VT == MVT::v8i16 || VT == MVT::v4i32)) ||
14601 (Subtarget->hasAVX2() && (VT == MVT::v16i16 || VT == MVT::v8i32))) &&
14602 isHorizontalBinOp(Op0, Op1, true))
Craig Topper54f952a2011-11-19 09:02:40 +000014603 return DAG.getNode(X86ISD::HSUB, N->getDebugLoc(), VT, Op0, Op1);
14604
Benjamin Kramer162ee5c2011-07-26 22:42:13 +000014605 return OptimizeConditionalInDecrement(N, DAG);
14606}
14607
Dan Gohman475871a2008-07-27 21:46:04 +000014608SDValue X86TargetLowering::PerformDAGCombine(SDNode *N,
Evan Cheng9dd93b32008-11-05 06:03:38 +000014609 DAGCombinerInfo &DCI) const {
Evan Cheng206ee9d2006-07-07 08:33:52 +000014610 SelectionDAG &DAG = DCI.DAG;
14611 switch (N->getOpcode()) {
14612 default: break;
Dan Gohman1bbf72b2010-03-15 23:23:03 +000014613 case ISD::EXTRACT_VECTOR_ELT:
Chris Lattnerc19d1c32010-12-19 22:08:31 +000014614 return PerformEXTRACT_VECTOR_ELTCombine(N, DAG, *this);
Duncan Sands6bcd2192011-09-17 16:49:39 +000014615 case ISD::VSELECT:
Chris Lattneraf723b92008-01-25 05:46:26 +000014616 case ISD::SELECT: return PerformSELECTCombine(N, DAG, Subtarget);
Chris Lattnerd1980a52009-03-12 06:52:53 +000014617 case X86ISD::CMOV: return PerformCMOVCombine(N, DAG, DCI);
Craig Topper54f952a2011-11-19 09:02:40 +000014618 case ISD::ADD: return PerformAddCombine(N, DAG, Subtarget);
14619 case ISD::SUB: return PerformSubCombine(N, DAG, Subtarget);
Chris Lattner23a01992010-12-20 01:37:09 +000014620 case X86ISD::ADC: return PerformADCCombine(N, DAG, DCI);
Evan Cheng0b0cd912009-03-28 05:57:29 +000014621 case ISD::MUL: return PerformMulCombine(N, DAG, DCI);
Nate Begeman740ab032009-01-26 00:52:55 +000014622 case ISD::SHL:
14623 case ISD::SRA:
14624 case ISD::SRL: return PerformShiftCombine(N, DAG, Subtarget);
Nate Begemanb65c1752010-12-17 22:55:37 +000014625 case ISD::AND: return PerformAndCombine(N, DAG, DCI, Subtarget);
Evan Cheng8b1190a2010-04-28 01:18:01 +000014626 case ISD::OR: return PerformOrCombine(N, DAG, DCI, Subtarget);
Craig Topperb4c94572011-10-21 06:55:01 +000014627 case ISD::XOR: return PerformXorCombine(N, DAG, DCI, Subtarget);
Nadav Rotem91e43fd2011-09-18 10:39:32 +000014628 case ISD::LOAD: return PerformLOADCombine(N, DAG, Subtarget);
Evan Cheng7e2ff772008-05-08 00:57:18 +000014629 case ISD::STORE: return PerformSTORECombine(N, DAG, Subtarget);
Stuart Hastingsf99a4b82011-06-06 23:15:58 +000014630 case ISD::SINT_TO_FP: return PerformSINT_TO_FPCombine(N, DAG, this);
Duncan Sands17470be2011-09-22 20:15:48 +000014631 case ISD::FADD: return PerformFADDCombine(N, DAG, Subtarget);
14632 case ISD::FSUB: return PerformFSUBCombine(N, DAG, Subtarget);
Chris Lattner6cf73262008-01-25 06:14:17 +000014633 case X86ISD::FXOR:
Chris Lattneraf723b92008-01-25 05:46:26 +000014634 case X86ISD::FOR: return PerformFORCombine(N, DAG);
14635 case X86ISD::FAND: return PerformFANDCombine(N, DAG);
Dan Gohmane5af2d32009-01-29 01:59:02 +000014636 case X86ISD::BT: return PerformBTCombine(N, DAG, DCI);
Eli Friedman7a5e5552009-06-07 06:52:44 +000014637 case X86ISD::VZEXT_MOVL: return PerformVZEXT_MOVLCombine(N, DAG);
Evan Cheng2e489c42009-12-16 00:53:11 +000014638 case ISD::ZERO_EXTEND: return PerformZExtCombine(N, DAG);
Chris Lattnerc19d1c32010-12-19 22:08:31 +000014639 case X86ISD::SETCC: return PerformSETCCCombine(N, DAG);
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +000014640 case X86ISD::SHUFPS: // Handle all target specific shuffles
14641 case X86ISD::SHUFPD:
Bruno Cardoso Lopesaace0f22010-09-04 02:36:07 +000014642 case X86ISD::PALIGN:
Craig Topper34671b82011-12-06 08:21:25 +000014643 case X86ISD::UNPCKH:
14644 case X86ISD::UNPCKL:
Bruno Cardoso Lopese8f279c2010-09-03 22:09:41 +000014645 case X86ISD::MOVHLPS:
14646 case X86ISD::MOVLHPS:
14647 case X86ISD::PSHUFD:
14648 case X86ISD::PSHUFHW:
14649 case X86ISD::PSHUFLW:
14650 case X86ISD::MOVSS:
14651 case X86ISD::MOVSD:
Craig Topper316cd2a2011-11-30 06:25:25 +000014652 case X86ISD::VPERMILP:
Craig Topperec24e612011-11-30 07:47:51 +000014653 case X86ISD::VPERM2X128:
Bruno Cardoso Lopes50b37c72011-08-15 21:45:54 +000014654 case ISD::VECTOR_SHUFFLE: return PerformShuffleCombine(N, DAG, DCI,Subtarget);
Evan Cheng206ee9d2006-07-07 08:33:52 +000014655 }
14656
Dan Gohman475871a2008-07-27 21:46:04 +000014657 return SDValue();
Evan Cheng206ee9d2006-07-07 08:33:52 +000014658}
14659
Evan Chenge5b51ac2010-04-17 06:13:15 +000014660/// isTypeDesirableForOp - Return true if the target has native support for
14661/// the specified value type and it is 'desirable' to use the type for the
14662/// given node type. e.g. On x86 i16 is legal, but undesirable since i16
14663/// instruction encodings are longer and some i16 instructions are slow.
14664bool X86TargetLowering::isTypeDesirableForOp(unsigned Opc, EVT VT) const {
14665 if (!isTypeLegal(VT))
14666 return false;
Evan Cheng2bce5f4b2010-04-28 08:30:49 +000014667 if (VT != MVT::i16)
Evan Chenge5b51ac2010-04-17 06:13:15 +000014668 return true;
14669
14670 switch (Opc) {
14671 default:
14672 return true;
Evan Cheng4c26e932010-04-19 19:29:22 +000014673 case ISD::LOAD:
14674 case ISD::SIGN_EXTEND:
14675 case ISD::ZERO_EXTEND:
14676 case ISD::ANY_EXTEND:
Evan Chenge5b51ac2010-04-17 06:13:15 +000014677 case ISD::SHL:
Evan Chenge5b51ac2010-04-17 06:13:15 +000014678 case ISD::SRL:
14679 case ISD::SUB:
14680 case ISD::ADD:
14681 case ISD::MUL:
14682 case ISD::AND:
14683 case ISD::OR:
14684 case ISD::XOR:
14685 return false;
14686 }
14687}
14688
14689/// IsDesirableToPromoteOp - This method query the target whether it is
Evan Cheng64b7bf72010-04-16 06:14:10 +000014690/// beneficial for dag combiner to promote the specified node. If true, it
14691/// should return the desired promotion type by reference.
Evan Chenge5b51ac2010-04-17 06:13:15 +000014692bool X86TargetLowering::IsDesirableToPromoteOp(SDValue Op, EVT &PVT) const {
Evan Cheng64b7bf72010-04-16 06:14:10 +000014693 EVT VT = Op.getValueType();
14694 if (VT != MVT::i16)
14695 return false;
14696
Evan Cheng4c26e932010-04-19 19:29:22 +000014697 bool Promote = false;
14698 bool Commute = false;
Evan Cheng64b7bf72010-04-16 06:14:10 +000014699 switch (Op.getOpcode()) {
Evan Cheng4c26e932010-04-19 19:29:22 +000014700 default: break;
14701 case ISD::LOAD: {
14702 LoadSDNode *LD = cast<LoadSDNode>(Op);
14703 // If the non-extending load has a single use and it's not live out, then it
14704 // might be folded.
Evan Cheng2bce5f4b2010-04-28 08:30:49 +000014705 if (LD->getExtensionType() == ISD::NON_EXTLOAD /*&&
14706 Op.hasOneUse()*/) {
14707 for (SDNode::use_iterator UI = Op.getNode()->use_begin(),
14708 UE = Op.getNode()->use_end(); UI != UE; ++UI) {
14709 // The only case where we'd want to promote LOAD (rather then it being
14710 // promoted as an operand is when it's only use is liveout.
14711 if (UI->getOpcode() != ISD::CopyToReg)
14712 return false;
14713 }
14714 }
Evan Cheng4c26e932010-04-19 19:29:22 +000014715 Promote = true;
14716 break;
14717 }
14718 case ISD::SIGN_EXTEND:
14719 case ISD::ZERO_EXTEND:
14720 case ISD::ANY_EXTEND:
14721 Promote = true;
14722 break;
Evan Chenge5b51ac2010-04-17 06:13:15 +000014723 case ISD::SHL:
Evan Cheng2bce5f4b2010-04-28 08:30:49 +000014724 case ISD::SRL: {
Evan Chenge5b51ac2010-04-17 06:13:15 +000014725 SDValue N0 = Op.getOperand(0);
14726 // Look out for (store (shl (load), x)).
Evan Chengc82c20b2010-04-24 04:44:57 +000014727 if (MayFoldLoad(N0) && MayFoldIntoStore(Op))
Evan Chenge5b51ac2010-04-17 06:13:15 +000014728 return false;
Evan Cheng4c26e932010-04-19 19:29:22 +000014729 Promote = true;
Evan Chenge5b51ac2010-04-17 06:13:15 +000014730 break;
14731 }
Evan Cheng64b7bf72010-04-16 06:14:10 +000014732 case ISD::ADD:
14733 case ISD::MUL:
14734 case ISD::AND:
14735 case ISD::OR:
Evan Cheng4c26e932010-04-19 19:29:22 +000014736 case ISD::XOR:
14737 Commute = true;
14738 // fallthrough
14739 case ISD::SUB: {
Evan Cheng64b7bf72010-04-16 06:14:10 +000014740 SDValue N0 = Op.getOperand(0);
14741 SDValue N1 = Op.getOperand(1);
Evan Chengc82c20b2010-04-24 04:44:57 +000014742 if (!Commute && MayFoldLoad(N1))
Evan Cheng64b7bf72010-04-16 06:14:10 +000014743 return false;
14744 // Avoid disabling potential load folding opportunities.
Evan Chengc82c20b2010-04-24 04:44:57 +000014745 if (MayFoldLoad(N0) && (!isa<ConstantSDNode>(N1) || MayFoldIntoStore(Op)))
Evan Cheng64b7bf72010-04-16 06:14:10 +000014746 return false;
Evan Chengc82c20b2010-04-24 04:44:57 +000014747 if (MayFoldLoad(N1) && (!isa<ConstantSDNode>(N0) || MayFoldIntoStore(Op)))
Evan Cheng64b7bf72010-04-16 06:14:10 +000014748 return false;
Evan Cheng4c26e932010-04-19 19:29:22 +000014749 Promote = true;
Evan Cheng64b7bf72010-04-16 06:14:10 +000014750 }
14751 }
14752
14753 PVT = MVT::i32;
Evan Cheng4c26e932010-04-19 19:29:22 +000014754 return Promote;
Evan Cheng64b7bf72010-04-16 06:14:10 +000014755}
14756
Evan Cheng60c07e12006-07-05 22:17:51 +000014757//===----------------------------------------------------------------------===//
14758// X86 Inline Assembly Support
14759//===----------------------------------------------------------------------===//
14760
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000014761namespace {
14762 // Helper to match a string separated by whitespace.
Benjamin Kramer0581ed72011-12-18 20:51:31 +000014763 bool matchAsmImpl(StringRef s, ArrayRef<const StringRef *> args) {
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000014764 s = s.substr(s.find_first_not_of(" \t")); // Skip leading whitespace.
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014765
Benjamin Kramer0581ed72011-12-18 20:51:31 +000014766 for (unsigned i = 0, e = args.size(); i != e; ++i) {
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000014767 StringRef piece(*args[i]);
14768 if (!s.startswith(piece)) // Check if the piece matches.
14769 return false;
14770
14771 s = s.substr(piece.size());
14772 StringRef::size_type pos = s.find_first_not_of(" \t");
14773 if (pos == 0) // We matched a prefix.
14774 return false;
14775
14776 s = s.substr(pos);
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014777 }
14778
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000014779 return s.empty();
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014780 }
Benjamin Kramer0581ed72011-12-18 20:51:31 +000014781 const VariadicFunction1<bool, StringRef, StringRef, matchAsmImpl> matchAsm={};
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014782}
14783
Chris Lattnerb8105652009-07-20 17:51:36 +000014784bool X86TargetLowering::ExpandInlineAsm(CallInst *CI) const {
14785 InlineAsm *IA = cast<InlineAsm>(CI->getCalledValue());
Chris Lattnerb8105652009-07-20 17:51:36 +000014786
14787 std::string AsmStr = IA->getAsmString();
14788
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014789 IntegerType *Ty = dyn_cast<IntegerType>(CI->getType());
14790 if (!Ty || Ty->getBitWidth() % 16 != 0)
14791 return false;
14792
Chris Lattnerb8105652009-07-20 17:51:36 +000014793 // TODO: should remove alternatives from the asmstring: "foo {a|b}" -> "foo a"
Benjamin Kramerd4f19592010-01-11 18:03:24 +000014794 SmallVector<StringRef, 4> AsmPieces;
Peter Collingbourne98361182010-11-13 19:54:23 +000014795 SplitString(AsmStr, AsmPieces, ";\n");
Chris Lattnerb8105652009-07-20 17:51:36 +000014796
14797 switch (AsmPieces.size()) {
14798 default: return false;
14799 case 1:
Chris Lattner7a2bdde2011-04-15 05:18:47 +000014800 // FIXME: this should verify that we are targeting a 486 or better. If not,
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014801 // we will turn this bswap into something that will be lowered to logical
14802 // ops instead of emitting the bswap asm. For now, we don't support 486 or
14803 // lower so don't worry about this.
Chris Lattnerb8105652009-07-20 17:51:36 +000014804 // bswap $0
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000014805 if (matchAsm(AsmPieces[0], "bswap", "$0") ||
14806 matchAsm(AsmPieces[0], "bswapl", "$0") ||
14807 matchAsm(AsmPieces[0], "bswapq", "$0") ||
14808 matchAsm(AsmPieces[0], "bswap", "${0:q}") ||
14809 matchAsm(AsmPieces[0], "bswapl", "${0:q}") ||
14810 matchAsm(AsmPieces[0], "bswapq", "${0:q}")) {
Chris Lattnerb8105652009-07-20 17:51:36 +000014811 // No need to check constraints, nothing other than the equivalent of
14812 // "=r,0" would be valid here.
Evan Cheng55d42002011-01-08 01:24:27 +000014813 return IntrinsicLowering::LowerToByteSwap(CI);
Chris Lattnerb8105652009-07-20 17:51:36 +000014814 }
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014815
Chris Lattnerb8105652009-07-20 17:51:36 +000014816 // rorw $$8, ${0:w} --> llvm.bswap.i16
Duncan Sandsb0bc6c32010-02-15 16:12:20 +000014817 if (CI->getType()->isIntegerTy(16) &&
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014818 IA->getConstraintString().compare(0, 5, "=r,0,") == 0 &&
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000014819 (matchAsm(AsmPieces[0], "rorw", "$$8,", "${0:w}") ||
14820 matchAsm(AsmPieces[0], "rolw", "$$8,", "${0:w}"))) {
Dan Gohman0ef701e2010-03-04 19:58:08 +000014821 AsmPieces.clear();
Evan Cheng55d42002011-01-08 01:24:27 +000014822 const std::string &ConstraintsStr = IA->getConstraintString();
14823 SplitString(StringRef(ConstraintsStr).substr(5), AsmPieces, ",");
Dan Gohman0ef701e2010-03-04 19:58:08 +000014824 std::sort(AsmPieces.begin(), AsmPieces.end());
14825 if (AsmPieces.size() == 4 &&
14826 AsmPieces[0] == "~{cc}" &&
14827 AsmPieces[1] == "~{dirflag}" &&
14828 AsmPieces[2] == "~{flags}" &&
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014829 AsmPieces[3] == "~{fpsr}")
14830 return IntrinsicLowering::LowerToByteSwap(CI);
Chris Lattnerb8105652009-07-20 17:51:36 +000014831 }
14832 break;
14833 case 3:
Peter Collingbourne948cf022010-11-13 19:54:30 +000014834 if (CI->getType()->isIntegerTy(32) &&
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014835 IA->getConstraintString().compare(0, 5, "=r,0,") == 0 &&
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000014836 matchAsm(AsmPieces[0], "rorw", "$$8,", "${0:w}") &&
14837 matchAsm(AsmPieces[1], "rorl", "$$16,", "$0") &&
14838 matchAsm(AsmPieces[2], "rorw", "$$8,", "${0:w}")) {
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014839 AsmPieces.clear();
14840 const std::string &ConstraintsStr = IA->getConstraintString();
14841 SplitString(StringRef(ConstraintsStr).substr(5), AsmPieces, ",");
14842 std::sort(AsmPieces.begin(), AsmPieces.end());
14843 if (AsmPieces.size() == 4 &&
14844 AsmPieces[0] == "~{cc}" &&
14845 AsmPieces[1] == "~{dirflag}" &&
14846 AsmPieces[2] == "~{flags}" &&
14847 AsmPieces[3] == "~{fpsr}")
14848 return IntrinsicLowering::LowerToByteSwap(CI);
Peter Collingbourne948cf022010-11-13 19:54:30 +000014849 }
Evan Cheng55d42002011-01-08 01:24:27 +000014850
14851 if (CI->getType()->isIntegerTy(64)) {
14852 InlineAsm::ConstraintInfoVector Constraints = IA->ParseConstraints();
14853 if (Constraints.size() >= 2 &&
14854 Constraints[0].Codes.size() == 1 && Constraints[0].Codes[0] == "A" &&
14855 Constraints[1].Codes.size() == 1 && Constraints[1].Codes[0] == "0") {
14856 // bswap %eax / bswap %edx / xchgl %eax, %edx -> llvm.bswap.i64
Benjamin Kramer2ea4cdb2011-12-18 19:59:20 +000014857 if (matchAsm(AsmPieces[0], "bswap", "%eax") &&
14858 matchAsm(AsmPieces[1], "bswap", "%edx") &&
14859 matchAsm(AsmPieces[2], "xchgl", "%eax,", "%edx"))
Benjamin Kramere6cddb72011-12-17 14:36:05 +000014860 return IntrinsicLowering::LowerToByteSwap(CI);
Chris Lattnerb8105652009-07-20 17:51:36 +000014861 }
14862 }
14863 break;
14864 }
14865 return false;
14866}
14867
14868
14869
Chris Lattnerf4dff842006-07-11 02:54:03 +000014870/// getConstraintType - Given a constraint letter, return the type of
14871/// constraint it is for this target.
14872X86TargetLowering::ConstraintType
Chris Lattner4234f572007-03-25 02:14:49 +000014873X86TargetLowering::getConstraintType(const std::string &Constraint) const {
14874 if (Constraint.size() == 1) {
14875 switch (Constraint[0]) {
Chris Lattner4234f572007-03-25 02:14:49 +000014876 case 'R':
Chris Lattner4234f572007-03-25 02:14:49 +000014877 case 'q':
14878 case 'Q':
John Thompson44ab89e2010-10-29 17:29:13 +000014879 case 'f':
14880 case 't':
14881 case 'u':
Dale Johannesen2ffbcac2008-04-01 00:57:48 +000014882 case 'y':
John Thompson44ab89e2010-10-29 17:29:13 +000014883 case 'x':
Chris Lattner4234f572007-03-25 02:14:49 +000014884 case 'Y':
Eric Christopher31b5f002011-07-07 22:29:07 +000014885 case 'l':
Chris Lattner4234f572007-03-25 02:14:49 +000014886 return C_RegisterClass;
John Thompson44ab89e2010-10-29 17:29:13 +000014887 case 'a':
14888 case 'b':
14889 case 'c':
14890 case 'd':
14891 case 'S':
14892 case 'D':
14893 case 'A':
14894 return C_Register;
14895 case 'I':
14896 case 'J':
14897 case 'K':
14898 case 'L':
14899 case 'M':
14900 case 'N':
14901 case 'G':
14902 case 'C':
Dale Johannesen78e3e522009-02-12 20:58:09 +000014903 case 'e':
14904 case 'Z':
14905 return C_Other;
Chris Lattner4234f572007-03-25 02:14:49 +000014906 default:
14907 break;
14908 }
Chris Lattnerf4dff842006-07-11 02:54:03 +000014909 }
Chris Lattner4234f572007-03-25 02:14:49 +000014910 return TargetLowering::getConstraintType(Constraint);
Chris Lattnerf4dff842006-07-11 02:54:03 +000014911}
14912
John Thompson44ab89e2010-10-29 17:29:13 +000014913/// Examine constraint type and operand type and determine a weight value.
John Thompsoneac6e1d2010-09-13 18:15:37 +000014914/// This object must already have been set up with the operand type
14915/// and the current alternative constraint selected.
John Thompson44ab89e2010-10-29 17:29:13 +000014916TargetLowering::ConstraintWeight
14917 X86TargetLowering::getSingleConstraintMatchWeight(
John Thompsoneac6e1d2010-09-13 18:15:37 +000014918 AsmOperandInfo &info, const char *constraint) const {
John Thompson44ab89e2010-10-29 17:29:13 +000014919 ConstraintWeight weight = CW_Invalid;
John Thompsoneac6e1d2010-09-13 18:15:37 +000014920 Value *CallOperandVal = info.CallOperandVal;
14921 // If we don't have a value, we can't do a match,
14922 // but allow it at the lowest weight.
14923 if (CallOperandVal == NULL)
John Thompson44ab89e2010-10-29 17:29:13 +000014924 return CW_Default;
Chris Lattnerdb125cf2011-07-18 04:54:35 +000014925 Type *type = CallOperandVal->getType();
John Thompsoneac6e1d2010-09-13 18:15:37 +000014926 // Look at the constraint type.
14927 switch (*constraint) {
14928 default:
John Thompson44ab89e2010-10-29 17:29:13 +000014929 weight = TargetLowering::getSingleConstraintMatchWeight(info, constraint);
14930 case 'R':
14931 case 'q':
14932 case 'Q':
14933 case 'a':
14934 case 'b':
14935 case 'c':
14936 case 'd':
14937 case 'S':
14938 case 'D':
14939 case 'A':
14940 if (CallOperandVal->getType()->isIntegerTy())
14941 weight = CW_SpecificReg;
14942 break;
14943 case 'f':
14944 case 't':
14945 case 'u':
14946 if (type->isFloatingPointTy())
14947 weight = CW_SpecificReg;
14948 break;
14949 case 'y':
Chris Lattner2a786eb2010-12-19 20:19:20 +000014950 if (type->isX86_MMXTy() && Subtarget->hasMMX())
John Thompson44ab89e2010-10-29 17:29:13 +000014951 weight = CW_SpecificReg;
14952 break;
14953 case 'x':
14954 case 'Y':
Nate Begeman2ea8ee72010-12-10 00:26:57 +000014955 if ((type->getPrimitiveSizeInBits() == 128) && Subtarget->hasXMM())
John Thompson44ab89e2010-10-29 17:29:13 +000014956 weight = CW_Register;
John Thompsoneac6e1d2010-09-13 18:15:37 +000014957 break;
14958 case 'I':
14959 if (ConstantInt *C = dyn_cast<ConstantInt>(info.CallOperandVal)) {
14960 if (C->getZExtValue() <= 31)
John Thompson44ab89e2010-10-29 17:29:13 +000014961 weight = CW_Constant;
John Thompsoneac6e1d2010-09-13 18:15:37 +000014962 }
14963 break;
John Thompson44ab89e2010-10-29 17:29:13 +000014964 case 'J':
14965 if (ConstantInt *C = dyn_cast<ConstantInt>(CallOperandVal)) {
14966 if (C->getZExtValue() <= 63)
14967 weight = CW_Constant;
14968 }
14969 break;
14970 case 'K':
14971 if (ConstantInt *C = dyn_cast<ConstantInt>(CallOperandVal)) {
14972 if ((C->getSExtValue() >= -0x80) && (C->getSExtValue() <= 0x7f))
14973 weight = CW_Constant;
14974 }
14975 break;
14976 case 'L':
14977 if (ConstantInt *C = dyn_cast<ConstantInt>(CallOperandVal)) {
14978 if ((C->getZExtValue() == 0xff) || (C->getZExtValue() == 0xffff))
14979 weight = CW_Constant;
14980 }
14981 break;
14982 case 'M':
14983 if (ConstantInt *C = dyn_cast<ConstantInt>(CallOperandVal)) {
14984 if (C->getZExtValue() <= 3)
14985 weight = CW_Constant;
14986 }
14987 break;
14988 case 'N':
14989 if (ConstantInt *C = dyn_cast<ConstantInt>(CallOperandVal)) {
14990 if (C->getZExtValue() <= 0xff)
14991 weight = CW_Constant;
14992 }
14993 break;
14994 case 'G':
14995 case 'C':
14996 if (dyn_cast<ConstantFP>(CallOperandVal)) {
14997 weight = CW_Constant;
14998 }
14999 break;
15000 case 'e':
15001 if (ConstantInt *C = dyn_cast<ConstantInt>(CallOperandVal)) {
15002 if ((C->getSExtValue() >= -0x80000000LL) &&
15003 (C->getSExtValue() <= 0x7fffffffLL))
15004 weight = CW_Constant;
15005 }
15006 break;
15007 case 'Z':
15008 if (ConstantInt *C = dyn_cast<ConstantInt>(CallOperandVal)) {
15009 if (C->getZExtValue() <= 0xffffffff)
15010 weight = CW_Constant;
15011 }
15012 break;
John Thompsoneac6e1d2010-09-13 18:15:37 +000015013 }
15014 return weight;
15015}
15016
Dale Johannesenba2a0b92008-01-29 02:21:21 +000015017/// LowerXConstraint - try to replace an X constraint, which matches anything,
15018/// with another that has more specific requirements based on the type of the
15019/// corresponding operand.
Chris Lattner5e764232008-04-26 23:02:14 +000015020const char *X86TargetLowering::
Owen Andersone50ed302009-08-10 22:56:29 +000015021LowerXConstraint(EVT ConstraintVT) const {
Chris Lattner5e764232008-04-26 23:02:14 +000015022 // FP X constraints get lowered to SSE1/2 registers if available, otherwise
15023 // 'f' like normal targets.
Duncan Sands83ec4b62008-06-06 12:08:01 +000015024 if (ConstraintVT.isFloatingPoint()) {
Nate Begeman2ea8ee72010-12-10 00:26:57 +000015025 if (Subtarget->hasXMMInt())
Chris Lattner5e764232008-04-26 23:02:14 +000015026 return "Y";
Nate Begeman2ea8ee72010-12-10 00:26:57 +000015027 if (Subtarget->hasXMM())
Chris Lattner5e764232008-04-26 23:02:14 +000015028 return "x";
15029 }
Scott Michelfdc40a02009-02-17 22:15:04 +000015030
Chris Lattner5e764232008-04-26 23:02:14 +000015031 return TargetLowering::LowerXConstraint(ConstraintVT);
Dale Johannesenba2a0b92008-01-29 02:21:21 +000015032}
15033
Chris Lattner48884cd2007-08-25 00:47:38 +000015034/// LowerAsmOperandForConstraint - Lower the specified operand into the Ops
15035/// vector. If it is invalid, don't add anything to Ops.
Dan Gohman475871a2008-07-27 21:46:04 +000015036void X86TargetLowering::LowerAsmOperandForConstraint(SDValue Op,
Eric Christopher100c8332011-06-02 23:16:42 +000015037 std::string &Constraint,
Dan Gohman475871a2008-07-27 21:46:04 +000015038 std::vector<SDValue>&Ops,
Chris Lattner5e764232008-04-26 23:02:14 +000015039 SelectionDAG &DAG) const {
Dan Gohman475871a2008-07-27 21:46:04 +000015040 SDValue Result(0, 0);
Scott Michelfdc40a02009-02-17 22:15:04 +000015041
Eric Christopher100c8332011-06-02 23:16:42 +000015042 // Only support length 1 constraints for now.
15043 if (Constraint.length() > 1) return;
Eric Christopher471e4222011-06-08 23:55:35 +000015044
Eric Christopher100c8332011-06-02 23:16:42 +000015045 char ConstraintLetter = Constraint[0];
15046 switch (ConstraintLetter) {
Chris Lattner22aaf1d2006-10-31 20:13:11 +000015047 default: break;
Devang Patel84f7fd22007-03-17 00:13:28 +000015048 case 'I':
Chris Lattner188b9fe2007-03-25 01:57:35 +000015049 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op)) {
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +000015050 if (C->getZExtValue() <= 31) {
15051 Result = DAG.getTargetConstant(C->getZExtValue(), Op.getValueType());
Chris Lattner48884cd2007-08-25 00:47:38 +000015052 break;
15053 }
Devang Patel84f7fd22007-03-17 00:13:28 +000015054 }
Chris Lattner48884cd2007-08-25 00:47:38 +000015055 return;
Evan Cheng364091e2008-09-22 23:57:37 +000015056 case 'J':
15057 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op)) {
Chris Lattner2e06dd22009-06-15 04:39:05 +000015058 if (C->getZExtValue() <= 63) {
Chris Lattnere4935152009-06-15 04:01:39 +000015059 Result = DAG.getTargetConstant(C->getZExtValue(), Op.getValueType());
15060 break;
15061 }
15062 }
15063 return;
15064 case 'K':
15065 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op)) {
Chris Lattner2e06dd22009-06-15 04:39:05 +000015066 if ((int8_t)C->getSExtValue() == C->getSExtValue()) {
Evan Cheng364091e2008-09-22 23:57:37 +000015067 Result = DAG.getTargetConstant(C->getZExtValue(), Op.getValueType());
15068 break;
15069 }
15070 }
15071 return;
Chris Lattner188b9fe2007-03-25 01:57:35 +000015072 case 'N':
15073 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op)) {
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +000015074 if (C->getZExtValue() <= 255) {
15075 Result = DAG.getTargetConstant(C->getZExtValue(), Op.getValueType());
Chris Lattner48884cd2007-08-25 00:47:38 +000015076 break;
15077 }
Chris Lattner188b9fe2007-03-25 01:57:35 +000015078 }
Chris Lattner48884cd2007-08-25 00:47:38 +000015079 return;
Dale Johannesen78e3e522009-02-12 20:58:09 +000015080 case 'e': {
15081 // 32-bit signed value
15082 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op)) {
Dan Gohman7720cb32010-06-18 14:01:07 +000015083 if (ConstantInt::isValueValidForType(Type::getInt32Ty(*DAG.getContext()),
15084 C->getSExtValue())) {
Dale Johannesen78e3e522009-02-12 20:58:09 +000015085 // Widen to 64 bits here to get it sign extended.
Owen Anderson825b72b2009-08-11 20:47:22 +000015086 Result = DAG.getTargetConstant(C->getSExtValue(), MVT::i64);
Dale Johannesen78e3e522009-02-12 20:58:09 +000015087 break;
15088 }
15089 // FIXME gcc accepts some relocatable values here too, but only in certain
15090 // memory models; it's complicated.
15091 }
15092 return;
15093 }
15094 case 'Z': {
15095 // 32-bit unsigned value
15096 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op)) {
Dan Gohman7720cb32010-06-18 14:01:07 +000015097 if (ConstantInt::isValueValidForType(Type::getInt32Ty(*DAG.getContext()),
15098 C->getZExtValue())) {
Dale Johannesen78e3e522009-02-12 20:58:09 +000015099 Result = DAG.getTargetConstant(C->getZExtValue(), Op.getValueType());
15100 break;
15101 }
15102 }
15103 // FIXME gcc accepts some relocatable values here too, but only in certain
15104 // memory models; it's complicated.
15105 return;
15106 }
Chris Lattnerdc43a882007-05-03 16:52:29 +000015107 case 'i': {
Chris Lattner22aaf1d2006-10-31 20:13:11 +000015108 // Literal immediates are always ok.
Chris Lattner48884cd2007-08-25 00:47:38 +000015109 if (ConstantSDNode *CST = dyn_cast<ConstantSDNode>(Op)) {
Dale Johannesen78e3e522009-02-12 20:58:09 +000015110 // Widen to 64 bits here to get it sign extended.
Owen Anderson825b72b2009-08-11 20:47:22 +000015111 Result = DAG.getTargetConstant(CST->getSExtValue(), MVT::i64);
Chris Lattner48884cd2007-08-25 00:47:38 +000015112 break;
15113 }
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000015114
Dale Johannesene5ff9ef2010-06-24 20:14:51 +000015115 // In any sort of PIC mode addresses need to be computed at runtime by
15116 // adding in a register or some sort of table lookup. These can't
15117 // be used as immediates.
Dale Johannesene2b448c2010-07-06 23:27:00 +000015118 if (Subtarget->isPICStyleGOT() || Subtarget->isPICStyleStubPIC())
Dale Johannesene5ff9ef2010-06-24 20:14:51 +000015119 return;
15120
Chris Lattnerdc43a882007-05-03 16:52:29 +000015121 // If we are in non-pic codegen mode, we allow the address of a global (with
15122 // an optional displacement) to be used with 'i'.
Chris Lattner49921962009-05-08 18:23:14 +000015123 GlobalAddressSDNode *GA = 0;
Chris Lattnerdc43a882007-05-03 16:52:29 +000015124 int64_t Offset = 0;
Scott Michelfdc40a02009-02-17 22:15:04 +000015125
Chris Lattner49921962009-05-08 18:23:14 +000015126 // Match either (GA), (GA+C), (GA+C1+C2), etc.
15127 while (1) {
15128 if ((GA = dyn_cast<GlobalAddressSDNode>(Op))) {
15129 Offset += GA->getOffset();
15130 break;
15131 } else if (Op.getOpcode() == ISD::ADD) {
15132 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op.getOperand(1))) {
15133 Offset += C->getZExtValue();
15134 Op = Op.getOperand(0);
15135 continue;
15136 }
15137 } else if (Op.getOpcode() == ISD::SUB) {
15138 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op.getOperand(1))) {
15139 Offset += -C->getZExtValue();
15140 Op = Op.getOperand(0);
15141 continue;
15142 }
Chris Lattnerdc43a882007-05-03 16:52:29 +000015143 }
Dale Johannesen76a1e2e2009-07-07 00:18:49 +000015144
Chris Lattner49921962009-05-08 18:23:14 +000015145 // Otherwise, this isn't something we can handle, reject it.
15146 return;
Chris Lattnerdc43a882007-05-03 16:52:29 +000015147 }
Eric Christopherfd179292009-08-27 18:07:15 +000015148
Dan Gohman46510a72010-04-15 01:51:59 +000015149 const GlobalValue *GV = GA->getGlobal();
Dale Johannesen76a1e2e2009-07-07 00:18:49 +000015150 // If we require an extra load to get this address, as in PIC mode, we
15151 // can't accept it.
Chris Lattner36c25012009-07-10 07:34:39 +000015152 if (isGlobalStubReference(Subtarget->ClassifyGlobalReference(GV,
15153 getTargetMachine())))
Dale Johannesen76a1e2e2009-07-07 00:18:49 +000015154 return;
Scott Michelfdc40a02009-02-17 22:15:04 +000015155
Devang Patel0d881da2010-07-06 22:08:15 +000015156 Result = DAG.getTargetGlobalAddress(GV, Op.getDebugLoc(),
15157 GA->getValueType(0), Offset);
Chris Lattner49921962009-05-08 18:23:14 +000015158 break;
Chris Lattner22aaf1d2006-10-31 20:13:11 +000015159 }
Chris Lattnerdc43a882007-05-03 16:52:29 +000015160 }
Scott Michelfdc40a02009-02-17 22:15:04 +000015161
Gabor Greifba36cb52008-08-28 21:40:38 +000015162 if (Result.getNode()) {
Chris Lattner48884cd2007-08-25 00:47:38 +000015163 Ops.push_back(Result);
15164 return;
15165 }
Dale Johannesen1784d162010-06-25 21:55:36 +000015166 return TargetLowering::LowerAsmOperandForConstraint(Op, Constraint, Ops, DAG);
Chris Lattner22aaf1d2006-10-31 20:13:11 +000015167}
15168
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000015169std::pair<unsigned, const TargetRegisterClass*>
Chris Lattnerf76d1802006-07-31 23:26:50 +000015170X86TargetLowering::getRegForInlineAsmConstraint(const std::string &Constraint,
Owen Andersone50ed302009-08-10 22:56:29 +000015171 EVT VT) const {
Chris Lattnerad043e82007-04-09 05:11:28 +000015172 // First, see if this is a constraint that directly corresponds to an LLVM
15173 // register class.
15174 if (Constraint.size() == 1) {
15175 // GCC Constraint Letters
15176 switch (Constraint[0]) {
15177 default: break;
Eric Christopherd176af82011-06-29 17:23:50 +000015178 // TODO: Slight differences here in allocation order and leaving
15179 // RIP in the class. Do they matter any more here than they do
15180 // in the normal allocation?
15181 case 'q': // GENERAL_REGS in 64-bit mode, Q_REGS in 32-bit mode.
15182 if (Subtarget->is64Bit()) {
Nick Lewycky9bf45d02011-07-08 00:19:27 +000015183 if (VT == MVT::i32 || VT == MVT::f32)
Eric Christopherd176af82011-06-29 17:23:50 +000015184 return std::make_pair(0U, X86::GR32RegisterClass);
15185 else if (VT == MVT::i16)
15186 return std::make_pair(0U, X86::GR16RegisterClass);
Eric Christopher5427ede2011-07-14 20:13:52 +000015187 else if (VT == MVT::i8 || VT == MVT::i1)
Eric Christopherd176af82011-06-29 17:23:50 +000015188 return std::make_pair(0U, X86::GR8RegisterClass);
Nick Lewycky9bf45d02011-07-08 00:19:27 +000015189 else if (VT == MVT::i64 || VT == MVT::f64)
Eric Christopherd176af82011-06-29 17:23:50 +000015190 return std::make_pair(0U, X86::GR64RegisterClass);
15191 break;
15192 }
15193 // 32-bit fallthrough
15194 case 'Q': // Q_REGS
Nick Lewycky9bf45d02011-07-08 00:19:27 +000015195 if (VT == MVT::i32 || VT == MVT::f32)
Eric Christopherd176af82011-06-29 17:23:50 +000015196 return std::make_pair(0U, X86::GR32_ABCDRegisterClass);
15197 else if (VT == MVT::i16)
15198 return std::make_pair(0U, X86::GR16_ABCDRegisterClass);
Eric Christopher5427ede2011-07-14 20:13:52 +000015199 else if (VT == MVT::i8 || VT == MVT::i1)
Eric Christopherd176af82011-06-29 17:23:50 +000015200 return std::make_pair(0U, X86::GR8_ABCD_LRegisterClass);
15201 else if (VT == MVT::i64)
15202 return std::make_pair(0U, X86::GR64_ABCDRegisterClass);
15203 break;
Chris Lattner0f65cad2007-04-09 05:49:22 +000015204 case 'r': // GENERAL_REGS
Chris Lattner0f65cad2007-04-09 05:49:22 +000015205 case 'l': // INDEX_REGS
Eric Christopher5427ede2011-07-14 20:13:52 +000015206 if (VT == MVT::i8 || VT == MVT::i1)
Chris Lattner0f65cad2007-04-09 05:49:22 +000015207 return std::make_pair(0U, X86::GR8RegisterClass);
Owen Anderson825b72b2009-08-11 20:47:22 +000015208 if (VT == MVT::i16)
Chris Lattner1fa71982008-10-17 18:15:05 +000015209 return std::make_pair(0U, X86::GR16RegisterClass);
Eric Christopher2bbecd82011-05-19 21:33:47 +000015210 if (VT == MVT::i32 || VT == MVT::f32 || !Subtarget->is64Bit())
Scott Michelfdc40a02009-02-17 22:15:04 +000015211 return std::make_pair(0U, X86::GR32RegisterClass);
Chris Lattner1fa71982008-10-17 18:15:05 +000015212 return std::make_pair(0U, X86::GR64RegisterClass);
Dale Johannesen5f3663e2009-10-07 22:47:20 +000015213 case 'R': // LEGACY_REGS
Eric Christopher5427ede2011-07-14 20:13:52 +000015214 if (VT == MVT::i8 || VT == MVT::i1)
Dale Johannesen5f3663e2009-10-07 22:47:20 +000015215 return std::make_pair(0U, X86::GR8_NOREXRegisterClass);
15216 if (VT == MVT::i16)
15217 return std::make_pair(0U, X86::GR16_NOREXRegisterClass);
15218 if (VT == MVT::i32 || !Subtarget->is64Bit())
15219 return std::make_pair(0U, X86::GR32_NOREXRegisterClass);
15220 return std::make_pair(0U, X86::GR64_NOREXRegisterClass);
Chris Lattnerfce84ac2008-03-11 19:06:29 +000015221 case 'f': // FP Stack registers.
15222 // If SSE is enabled for this VT, use f80 to ensure the isel moves the
15223 // value to the correct fpstack register class.
Owen Anderson825b72b2009-08-11 20:47:22 +000015224 if (VT == MVT::f32 && !isScalarFPTypeInSSEReg(VT))
Chris Lattnerfce84ac2008-03-11 19:06:29 +000015225 return std::make_pair(0U, X86::RFP32RegisterClass);
Owen Anderson825b72b2009-08-11 20:47:22 +000015226 if (VT == MVT::f64 && !isScalarFPTypeInSSEReg(VT))
Chris Lattnerfce84ac2008-03-11 19:06:29 +000015227 return std::make_pair(0U, X86::RFP64RegisterClass);
15228 return std::make_pair(0U, X86::RFP80RegisterClass);
Chris Lattner6c284d72007-04-12 04:14:49 +000015229 case 'y': // MMX_REGS if MMX allowed.
15230 if (!Subtarget->hasMMX()) break;
15231 return std::make_pair(0U, X86::VR64RegisterClass);
Chris Lattner0f65cad2007-04-09 05:49:22 +000015232 case 'Y': // SSE_REGS if SSE2 allowed
Nate Begeman2ea8ee72010-12-10 00:26:57 +000015233 if (!Subtarget->hasXMMInt()) break;
Chris Lattner0f65cad2007-04-09 05:49:22 +000015234 // FALL THROUGH.
15235 case 'x': // SSE_REGS if SSE1 allowed
Nate Begeman2ea8ee72010-12-10 00:26:57 +000015236 if (!Subtarget->hasXMM()) break;
Duncan Sands83ec4b62008-06-06 12:08:01 +000015237
Owen Anderson825b72b2009-08-11 20:47:22 +000015238 switch (VT.getSimpleVT().SimpleTy) {
Chris Lattner0f65cad2007-04-09 05:49:22 +000015239 default: break;
15240 // Scalar SSE types.
Owen Anderson825b72b2009-08-11 20:47:22 +000015241 case MVT::f32:
15242 case MVT::i32:
Chris Lattnerad043e82007-04-09 05:11:28 +000015243 return std::make_pair(0U, X86::FR32RegisterClass);
Owen Anderson825b72b2009-08-11 20:47:22 +000015244 case MVT::f64:
15245 case MVT::i64:
Chris Lattnerad043e82007-04-09 05:11:28 +000015246 return std::make_pair(0U, X86::FR64RegisterClass);
Chris Lattner0f65cad2007-04-09 05:49:22 +000015247 // Vector types.
Owen Anderson825b72b2009-08-11 20:47:22 +000015248 case MVT::v16i8:
15249 case MVT::v8i16:
15250 case MVT::v4i32:
15251 case MVT::v2i64:
15252 case MVT::v4f32:
15253 case MVT::v2f64:
Chris Lattner0f65cad2007-04-09 05:49:22 +000015254 return std::make_pair(0U, X86::VR128RegisterClass);
15255 }
Chris Lattnerad043e82007-04-09 05:11:28 +000015256 break;
15257 }
15258 }
Scott Michelfdc40a02009-02-17 22:15:04 +000015259
Chris Lattnerf76d1802006-07-31 23:26:50 +000015260 // Use the default implementation in TargetLowering to convert the register
15261 // constraint into a member of a register class.
15262 std::pair<unsigned, const TargetRegisterClass*> Res;
15263 Res = TargetLowering::getRegForInlineAsmConstraint(Constraint, VT);
Chris Lattner1a60aa72006-10-31 19:42:44 +000015264
15265 // Not found as a standard register?
15266 if (Res.second == 0) {
Chris Lattner56d77c72009-09-13 22:41:48 +000015267 // Map st(0) -> st(7) -> ST0
15268 if (Constraint.size() == 7 && Constraint[0] == '{' &&
15269 tolower(Constraint[1]) == 's' &&
15270 tolower(Constraint[2]) == 't' &&
15271 Constraint[3] == '(' &&
15272 (Constraint[4] >= '0' && Constraint[4] <= '7') &&
15273 Constraint[5] == ')' &&
15274 Constraint[6] == '}') {
Daniel Dunbara279bc32009-09-20 02:20:51 +000015275
Chris Lattner56d77c72009-09-13 22:41:48 +000015276 Res.first = X86::ST0+Constraint[4]-'0';
15277 Res.second = X86::RFP80RegisterClass;
15278 return Res;
15279 }
Daniel Dunbara279bc32009-09-20 02:20:51 +000015280
Chris Lattner56d77c72009-09-13 22:41:48 +000015281 // GCC allows "st(0)" to be called just plain "st".
Benjamin Kramer05872ea2009-11-12 20:36:59 +000015282 if (StringRef("{st}").equals_lower(Constraint)) {
Chris Lattner1a60aa72006-10-31 19:42:44 +000015283 Res.first = X86::ST0;
Chris Lattner9b4baf12007-09-24 05:27:37 +000015284 Res.second = X86::RFP80RegisterClass;
Chris Lattner56d77c72009-09-13 22:41:48 +000015285 return Res;
Chris Lattner1a60aa72006-10-31 19:42:44 +000015286 }
Chris Lattner56d77c72009-09-13 22:41:48 +000015287
15288 // flags -> EFLAGS
Benjamin Kramer05872ea2009-11-12 20:36:59 +000015289 if (StringRef("{flags}").equals_lower(Constraint)) {
Chris Lattner56d77c72009-09-13 22:41:48 +000015290 Res.first = X86::EFLAGS;
15291 Res.second = X86::CCRRegisterClass;
15292 return Res;
15293 }
Daniel Dunbara279bc32009-09-20 02:20:51 +000015294
Dale Johannesen330169f2008-11-13 21:52:36 +000015295 // 'A' means EAX + EDX.
15296 if (Constraint == "A") {
15297 Res.first = X86::EAX;
Dan Gohman68a31c22009-07-30 17:02:08 +000015298 Res.second = X86::GR32_ADRegisterClass;
Chris Lattner56d77c72009-09-13 22:41:48 +000015299 return Res;
Dale Johannesen330169f2008-11-13 21:52:36 +000015300 }
Chris Lattner1a60aa72006-10-31 19:42:44 +000015301 return Res;
15302 }
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000015303
Chris Lattnerf76d1802006-07-31 23:26:50 +000015304 // Otherwise, check to see if this is a register class of the wrong value
15305 // type. For example, we want to map "{ax},i32" -> {eax}, we don't want it to
15306 // turn into {ax},{dx}.
15307 if (Res.second->hasType(VT))
15308 return Res; // Correct type already, nothing to do.
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000015309
Chris Lattnerf76d1802006-07-31 23:26:50 +000015310 // All of the single-register GCC register classes map their values onto
15311 // 16-bit register pieces "ax","dx","cx","bx","si","di","bp","sp". If we
15312 // really want an 8-bit or 32-bit register, map to the appropriate register
15313 // class and return the appropriate register.
Chris Lattner6ba50a92008-08-26 06:19:02 +000015314 if (Res.second == X86::GR16RegisterClass) {
Owen Anderson825b72b2009-08-11 20:47:22 +000015315 if (VT == MVT::i8) {
Chris Lattner6ba50a92008-08-26 06:19:02 +000015316 unsigned DestReg = 0;
15317 switch (Res.first) {
15318 default: break;
15319 case X86::AX: DestReg = X86::AL; break;
15320 case X86::DX: DestReg = X86::DL; break;
15321 case X86::CX: DestReg = X86::CL; break;
15322 case X86::BX: DestReg = X86::BL; break;
15323 }
15324 if (DestReg) {
15325 Res.first = DestReg;
Duncan Sands005e7982009-04-21 09:44:39 +000015326 Res.second = X86::GR8RegisterClass;
Chris Lattner6ba50a92008-08-26 06:19:02 +000015327 }
Owen Anderson825b72b2009-08-11 20:47:22 +000015328 } else if (VT == MVT::i32) {
Chris Lattner6ba50a92008-08-26 06:19:02 +000015329 unsigned DestReg = 0;
15330 switch (Res.first) {
15331 default: break;
15332 case X86::AX: DestReg = X86::EAX; break;
15333 case X86::DX: DestReg = X86::EDX; break;
15334 case X86::CX: DestReg = X86::ECX; break;
15335 case X86::BX: DestReg = X86::EBX; break;
15336 case X86::SI: DestReg = X86::ESI; break;
15337 case X86::DI: DestReg = X86::EDI; break;
15338 case X86::BP: DestReg = X86::EBP; break;
15339 case X86::SP: DestReg = X86::ESP; break;
15340 }
15341 if (DestReg) {
15342 Res.first = DestReg;
Duncan Sands005e7982009-04-21 09:44:39 +000015343 Res.second = X86::GR32RegisterClass;
Chris Lattner6ba50a92008-08-26 06:19:02 +000015344 }
Owen Anderson825b72b2009-08-11 20:47:22 +000015345 } else if (VT == MVT::i64) {
Chris Lattner6ba50a92008-08-26 06:19:02 +000015346 unsigned DestReg = 0;
15347 switch (Res.first) {
15348 default: break;
15349 case X86::AX: DestReg = X86::RAX; break;
15350 case X86::DX: DestReg = X86::RDX; break;
15351 case X86::CX: DestReg = X86::RCX; break;
15352 case X86::BX: DestReg = X86::RBX; break;
15353 case X86::SI: DestReg = X86::RSI; break;
15354 case X86::DI: DestReg = X86::RDI; break;
15355 case X86::BP: DestReg = X86::RBP; break;
15356 case X86::SP: DestReg = X86::RSP; break;
15357 }
15358 if (DestReg) {
15359 Res.first = DestReg;
Duncan Sands005e7982009-04-21 09:44:39 +000015360 Res.second = X86::GR64RegisterClass;
Chris Lattner6ba50a92008-08-26 06:19:02 +000015361 }
Chris Lattnerf76d1802006-07-31 23:26:50 +000015362 }
Chris Lattner6ba50a92008-08-26 06:19:02 +000015363 } else if (Res.second == X86::FR32RegisterClass ||
15364 Res.second == X86::FR64RegisterClass ||
15365 Res.second == X86::VR128RegisterClass) {
15366 // Handle references to XMM physical registers that got mapped into the
15367 // wrong class. This can happen with constraints like {xmm0} where the
15368 // target independent register mapper will just pick the first match it can
15369 // find, ignoring the required type.
Owen Anderson825b72b2009-08-11 20:47:22 +000015370 if (VT == MVT::f32)
Chris Lattner6ba50a92008-08-26 06:19:02 +000015371 Res.second = X86::FR32RegisterClass;
Owen Anderson825b72b2009-08-11 20:47:22 +000015372 else if (VT == MVT::f64)
Chris Lattner6ba50a92008-08-26 06:19:02 +000015373 Res.second = X86::FR64RegisterClass;
15374 else if (X86::VR128RegisterClass->hasType(VT))
15375 Res.second = X86::VR128RegisterClass;
Chris Lattnerf76d1802006-07-31 23:26:50 +000015376 }
Anton Korobeynikov12c49af2006-11-21 00:01:06 +000015377
Chris Lattnerf76d1802006-07-31 23:26:50 +000015378 return Res;
15379}