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Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001//===-- X86ISelLowering.h - X86 DAG Lowering Interface ----------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Chris Lattner and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file defines the interfaces that X86 uses to lower LLVM code into a
11// selection DAG.
12//
13//===----------------------------------------------------------------------===//
14
15#include "X86.h"
Evan Cheng0cc39452006-01-16 21:21:29 +000016#include "X86InstrBuilder.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000017#include "X86ISelLowering.h"
18#include "X86TargetMachine.h"
19#include "llvm/CallingConv.h"
Evan Cheng223547a2006-01-31 22:28:30 +000020#include "llvm/Constants.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000021#include "llvm/Function.h"
Evan Cheng30b37b52006-03-13 23:18:16 +000022#include "llvm/ADT/VectorExtras.h"
23#include "llvm/Analysis/ScalarEvolutionExpressions.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000024#include "llvm/CodeGen/MachineFrameInfo.h"
Evan Cheng4a460802006-01-11 00:33:36 +000025#include "llvm/CodeGen/MachineFunction.h"
26#include "llvm/CodeGen/MachineInstrBuilder.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000027#include "llvm/CodeGen/SelectionDAG.h"
28#include "llvm/CodeGen/SSARegMap.h"
Evan Chengef6ffb12006-01-31 03:14:29 +000029#include "llvm/Support/MathExtras.h"
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000030#include "llvm/Target/TargetOptions.h"
31using namespace llvm;
32
33// FIXME: temporary.
34#include "llvm/Support/CommandLine.h"
35static cl::opt<bool> EnableFastCC("enable-x86-fastcc", cl::Hidden,
36 cl::desc("Enable fastcc on X86"));
37
38X86TargetLowering::X86TargetLowering(TargetMachine &TM)
39 : TargetLowering(TM) {
Evan Cheng559806f2006-01-27 08:10:46 +000040 Subtarget = &TM.getSubtarget<X86Subtarget>();
41 X86ScalarSSE = Subtarget->hasSSE2();
42
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000043 // Set up the TargetLowering object.
44
45 // X86 is weird, it always uses i8 for shift amounts and setcc results.
46 setShiftAmountType(MVT::i8);
47 setSetCCResultType(MVT::i8);
48 setSetCCResultContents(ZeroOrOneSetCCResult);
Evan Cheng0b2afbd2006-01-25 09:15:17 +000049 setSchedulingPreference(SchedulingForRegPressure);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000050 setShiftAmountFlavor(Mask); // shl X, 32 == shl X, 0
Chris Lattner9edba762006-01-13 18:00:54 +000051 setStackPointerRegisterToSaveRestore(X86::ESP);
Evan Cheng714554d2006-03-16 21:47:42 +000052
Evan Chenga88973f2006-03-22 19:22:18 +000053 if (!Subtarget->isTargetDarwin())
Evan Chengdf57fa02006-03-17 20:31:41 +000054 // Darwin should use _setjmp/_longjmp instead of setjmp/longjmp.
55 setUseUnderscoreSetJmpLongJmp(true);
56
Evan Cheng714554d2006-03-16 21:47:42 +000057 // Add legal addressing mode scale values.
58 addLegalAddressScale(8);
59 addLegalAddressScale(4);
60 addLegalAddressScale(2);
61 // Enter the ones which require both scale + index last. These are more
62 // expensive.
63 addLegalAddressScale(9);
64 addLegalAddressScale(5);
65 addLegalAddressScale(3);
Chris Lattnera54aa942006-01-29 06:26:08 +000066
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000067 // Set up the register classes.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000068 addRegisterClass(MVT::i8, X86::R8RegisterClass);
69 addRegisterClass(MVT::i16, X86::R16RegisterClass);
70 addRegisterClass(MVT::i32, X86::R32RegisterClass);
71
72 // Promote all UINT_TO_FP to larger SINT_TO_FP's, as X86 doesn't have this
73 // operation.
74 setOperationAction(ISD::UINT_TO_FP , MVT::i1 , Promote);
75 setOperationAction(ISD::UINT_TO_FP , MVT::i8 , Promote);
76 setOperationAction(ISD::UINT_TO_FP , MVT::i16 , Promote);
Evan Cheng6892f282006-01-17 02:32:49 +000077
78 if (X86ScalarSSE)
79 // No SSE i64 SINT_TO_FP, so expand i32 UINT_TO_FP instead.
80 setOperationAction(ISD::UINT_TO_FP , MVT::i32 , Expand);
81 else
82 setOperationAction(ISD::UINT_TO_FP , MVT::i32 , Promote);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000083
84 // Promote i1/i8 SINT_TO_FP to larger SINT_TO_FP's, as X86 doesn't have
85 // this operation.
86 setOperationAction(ISD::SINT_TO_FP , MVT::i1 , Promote);
87 setOperationAction(ISD::SINT_TO_FP , MVT::i8 , Promote);
Nate Begeman4c5dcf52006-02-17 00:03:04 +000088 // SSE has no i16 to fp conversion, only i32
Evan Cheng02568ff2006-01-30 22:13:22 +000089 if (X86ScalarSSE)
Evan Cheng02568ff2006-01-30 22:13:22 +000090 setOperationAction(ISD::SINT_TO_FP , MVT::i16 , Promote);
Evan Cheng5298bcc2006-02-17 07:01:52 +000091 else {
92 setOperationAction(ISD::SINT_TO_FP , MVT::i16 , Custom);
93 setOperationAction(ISD::SINT_TO_FP , MVT::i32 , Custom);
94 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +000095
Evan Cheng6dab0532006-01-30 08:02:57 +000096 // We can handle SINT_TO_FP and FP_TO_SINT from/to i64 even though i64
97 // isn't legal.
98 setOperationAction(ISD::SINT_TO_FP , MVT::i64 , Custom);
99 setOperationAction(ISD::FP_TO_SINT , MVT::i64 , Custom);
100
Evan Cheng02568ff2006-01-30 22:13:22 +0000101 // Promote i1/i8 FP_TO_SINT to larger FP_TO_SINTS's, as X86 doesn't have
102 // this operation.
103 setOperationAction(ISD::FP_TO_SINT , MVT::i1 , Promote);
104 setOperationAction(ISD::FP_TO_SINT , MVT::i8 , Promote);
105
106 if (X86ScalarSSE) {
107 setOperationAction(ISD::FP_TO_SINT , MVT::i16 , Promote);
108 } else {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000109 setOperationAction(ISD::FP_TO_SINT , MVT::i16 , Custom);
Evan Cheng02568ff2006-01-30 22:13:22 +0000110 setOperationAction(ISD::FP_TO_SINT , MVT::i32 , Custom);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000111 }
112
113 // Handle FP_TO_UINT by promoting the destination to a larger signed
114 // conversion.
115 setOperationAction(ISD::FP_TO_UINT , MVT::i1 , Promote);
116 setOperationAction(ISD::FP_TO_UINT , MVT::i8 , Promote);
117 setOperationAction(ISD::FP_TO_UINT , MVT::i16 , Promote);
118
Evan Cheng45af8fd2006-02-18 07:26:17 +0000119 if (X86ScalarSSE && !Subtarget->hasSSE3())
Evan Cheng02568ff2006-01-30 22:13:22 +0000120 // Expand FP_TO_UINT into a select.
121 // FIXME: We would like to use a Custom expander here eventually to do
122 // the optimal thing for SSE vs. the default expansion in the legalizer.
123 setOperationAction(ISD::FP_TO_UINT , MVT::i32 , Expand);
124 else
Evan Cheng45af8fd2006-02-18 07:26:17 +0000125 // With SSE3 we can use fisttpll to convert to a signed i64.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000126 setOperationAction(ISD::FP_TO_UINT , MVT::i32 , Promote);
127
Evan Cheng02568ff2006-01-30 22:13:22 +0000128 setOperationAction(ISD::BIT_CONVERT , MVT::f32 , Expand);
129 setOperationAction(ISD::BIT_CONVERT , MVT::i32 , Expand);
Chris Lattner21f66852005-12-23 05:15:23 +0000130
Evan Cheng5298bcc2006-02-17 07:01:52 +0000131 setOperationAction(ISD::BRCOND , MVT::Other, Custom);
Nate Begeman750ac1b2006-02-01 07:19:44 +0000132 setOperationAction(ISD::BR_CC , MVT::Other, Expand);
133 setOperationAction(ISD::SELECT_CC , MVT::Other, Expand);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000134 setOperationAction(ISD::MEMMOVE , MVT::Other, Expand);
135 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i16 , Expand);
Chris Lattnere80242a2005-12-07 17:59:14 +0000136 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i8 , Expand);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000137 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i1 , Expand);
138 setOperationAction(ISD::FP_ROUND_INREG , MVT::f32 , Expand);
139 setOperationAction(ISD::SEXTLOAD , MVT::i1 , Expand);
140 setOperationAction(ISD::FREM , MVT::f64 , Expand);
141 setOperationAction(ISD::CTPOP , MVT::i8 , Expand);
142 setOperationAction(ISD::CTTZ , MVT::i8 , Expand);
143 setOperationAction(ISD::CTLZ , MVT::i8 , Expand);
144 setOperationAction(ISD::CTPOP , MVT::i16 , Expand);
145 setOperationAction(ISD::CTTZ , MVT::i16 , Expand);
146 setOperationAction(ISD::CTLZ , MVT::i16 , Expand);
147 setOperationAction(ISD::CTPOP , MVT::i32 , Expand);
148 setOperationAction(ISD::CTTZ , MVT::i32 , Expand);
149 setOperationAction(ISD::CTLZ , MVT::i32 , Expand);
Andrew Lenharthb873ff32005-11-20 21:41:10 +0000150 setOperationAction(ISD::READCYCLECOUNTER , MVT::i64 , Custom);
Nate Begemand88fc032006-01-14 03:14:10 +0000151 setOperationAction(ISD::BSWAP , MVT::i16 , Expand);
Nate Begeman35ef9132006-01-11 21:21:00 +0000152
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000153 // These should be promoted to a larger select which is supported.
154 setOperationAction(ISD::SELECT , MVT::i1 , Promote);
155 setOperationAction(ISD::SELECT , MVT::i8 , Promote);
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000156
157 // X86 wants to expand cmov itself.
Evan Cheng5298bcc2006-02-17 07:01:52 +0000158 setOperationAction(ISD::SELECT , MVT::i16 , Custom);
159 setOperationAction(ISD::SELECT , MVT::i32 , Custom);
160 setOperationAction(ISD::SELECT , MVT::f32 , Custom);
161 setOperationAction(ISD::SELECT , MVT::f64 , Custom);
162 setOperationAction(ISD::SETCC , MVT::i8 , Custom);
163 setOperationAction(ISD::SETCC , MVT::i16 , Custom);
164 setOperationAction(ISD::SETCC , MVT::i32 , Custom);
165 setOperationAction(ISD::SETCC , MVT::f32 , Custom);
166 setOperationAction(ISD::SETCC , MVT::f64 , Custom);
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000167 // X86 ret instruction may pop stack.
Evan Cheng5298bcc2006-02-17 07:01:52 +0000168 setOperationAction(ISD::RET , MVT::Other, Custom);
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000169 // Darwin ABI issue.
Evan Cheng7ccced62006-02-18 00:15:05 +0000170 setOperationAction(ISD::ConstantPool , MVT::i32 , Custom);
Evan Cheng5298bcc2006-02-17 07:01:52 +0000171 setOperationAction(ISD::GlobalAddress , MVT::i32 , Custom);
Evan Cheng020d2e82006-02-23 20:41:18 +0000172 setOperationAction(ISD::ExternalSymbol , MVT::i32 , Custom);
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000173 // 64-bit addm sub, shl, sra, srl (iff 32-bit x86)
Evan Cheng5298bcc2006-02-17 07:01:52 +0000174 setOperationAction(ISD::SHL_PARTS , MVT::i32 , Custom);
175 setOperationAction(ISD::SRA_PARTS , MVT::i32 , Custom);
176 setOperationAction(ISD::SRL_PARTS , MVT::i32 , Custom);
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000177 // X86 wants to expand memset / memcpy itself.
Evan Cheng5298bcc2006-02-17 07:01:52 +0000178 setOperationAction(ISD::MEMSET , MVT::Other, Custom);
179 setOperationAction(ISD::MEMCPY , MVT::Other, Custom);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000180
Chris Lattnerf73bae12005-11-29 06:16:21 +0000181 // We don't have line number support yet.
182 setOperationAction(ISD::LOCATION, MVT::Other, Expand);
Jim Laskeye0bce712006-01-05 01:47:43 +0000183 setOperationAction(ISD::DEBUG_LOC, MVT::Other, Expand);
Evan Cheng3c992d22006-03-07 02:02:57 +0000184 // FIXME - use subtarget debug flags
Evan Chenga88973f2006-03-22 19:22:18 +0000185 if (!Subtarget->isTargetDarwin())
Evan Cheng3c992d22006-03-07 02:02:57 +0000186 setOperationAction(ISD::DEBUG_LABEL, MVT::Other, Expand);
Chris Lattnerf73bae12005-11-29 06:16:21 +0000187
Nate Begemanacc398c2006-01-25 18:21:52 +0000188 // VASTART needs to be custom lowered to use the VarArgsFrameIndex
189 setOperationAction(ISD::VASTART , MVT::Other, Custom);
190
191 // Use the default implementation.
192 setOperationAction(ISD::VAARG , MVT::Other, Expand);
193 setOperationAction(ISD::VACOPY , MVT::Other, Expand);
194 setOperationAction(ISD::VAEND , MVT::Other, Expand);
Chris Lattnere1125522006-01-15 09:00:21 +0000195 setOperationAction(ISD::STACKSAVE, MVT::Other, Expand);
196 setOperationAction(ISD::STACKRESTORE, MVT::Other, Expand);
197 setOperationAction(ISD::DYNAMIC_STACKALLOC, MVT::i32 , Expand);
Chris Lattnerb99329e2006-01-13 02:42:53 +0000198
Chris Lattner9601a862006-03-05 05:08:37 +0000199 setOperationAction(ISD::FCOPYSIGN, MVT::f64, Expand);
200 setOperationAction(ISD::FCOPYSIGN, MVT::f32, Expand);
201
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000202 if (X86ScalarSSE) {
203 // Set up the FP register classes.
Evan Cheng5ee4ccc2006-01-12 08:27:59 +0000204 addRegisterClass(MVT::f32, X86::FR32RegisterClass);
205 addRegisterClass(MVT::f64, X86::FR64RegisterClass);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000206
207 // SSE has no load+extend ops
208 setOperationAction(ISD::EXTLOAD, MVT::f32, Expand);
209 setOperationAction(ISD::ZEXTLOAD, MVT::f32, Expand);
210
Evan Cheng223547a2006-01-31 22:28:30 +0000211 // Use ANDPD to simulate FABS.
212 setOperationAction(ISD::FABS , MVT::f64, Custom);
213 setOperationAction(ISD::FABS , MVT::f32, Custom);
214
215 // Use XORP to simulate FNEG.
216 setOperationAction(ISD::FNEG , MVT::f64, Custom);
217 setOperationAction(ISD::FNEG , MVT::f32, Custom);
218
Evan Chengd25e9e82006-02-02 00:28:23 +0000219 // We don't support sin/cos/fmod
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000220 setOperationAction(ISD::FSIN , MVT::f64, Expand);
221 setOperationAction(ISD::FCOS , MVT::f64, Expand);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000222 setOperationAction(ISD::FREM , MVT::f64, Expand);
223 setOperationAction(ISD::FSIN , MVT::f32, Expand);
224 setOperationAction(ISD::FCOS , MVT::f32, Expand);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000225 setOperationAction(ISD::FREM , MVT::f32, Expand);
226
Chris Lattnera54aa942006-01-29 06:26:08 +0000227 // Expand FP immediates into loads from the stack, except for the special
228 // cases we handle.
229 setOperationAction(ISD::ConstantFP, MVT::f64, Expand);
230 setOperationAction(ISD::ConstantFP, MVT::f32, Expand);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000231 addLegalFPImmediate(+0.0); // xorps / xorpd
232 } else {
233 // Set up the FP register classes.
234 addRegisterClass(MVT::f64, X86::RFPRegisterClass);
Chris Lattner44d9b9b2006-01-29 06:44:22 +0000235
236 setOperationAction(ISD::UNDEF, MVT::f64, Expand);
237
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000238 if (!UnsafeFPMath) {
239 setOperationAction(ISD::FSIN , MVT::f64 , Expand);
240 setOperationAction(ISD::FCOS , MVT::f64 , Expand);
241 }
242
Chris Lattnera54aa942006-01-29 06:26:08 +0000243 setOperationAction(ISD::ConstantFP, MVT::f64, Expand);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000244 addLegalFPImmediate(+0.0); // FLD0
245 addLegalFPImmediate(+1.0); // FLD1
246 addLegalFPImmediate(-0.0); // FLD0/FCHS
247 addLegalFPImmediate(-1.0); // FLD1/FCHS
248 }
Evan Cheng470a6ad2006-02-22 02:26:30 +0000249
Evan Chengd30bf012006-03-01 01:11:20 +0000250 // First set operation action for all vector types to expand. Then we
251 // will selectively turn on ones that can be effectively codegen'd.
252 for (unsigned VT = (unsigned)MVT::Vector + 1;
253 VT != (unsigned)MVT::LAST_VALUETYPE; VT++) {
254 setOperationAction(ISD::ADD , (MVT::ValueType)VT, Expand);
255 setOperationAction(ISD::SUB , (MVT::ValueType)VT, Expand);
256 setOperationAction(ISD::MUL , (MVT::ValueType)VT, Expand);
257 setOperationAction(ISD::LOAD, (MVT::ValueType)VT, Expand);
Chris Lattner39afef32006-03-20 06:18:01 +0000258 setOperationAction(ISD::VECTOR_SHUFFLE, (MVT::ValueType)VT, Expand);
Chris Lattner9b3bd462006-03-21 20:51:05 +0000259 setOperationAction(ISD::EXTRACT_VECTOR_ELT, (MVT::ValueType)VT, Expand);
Evan Chengd30bf012006-03-01 01:11:20 +0000260 }
261
Evan Chenga88973f2006-03-22 19:22:18 +0000262 if (Subtarget->hasMMX()) {
Evan Cheng470a6ad2006-02-22 02:26:30 +0000263 addRegisterClass(MVT::v8i8, X86::VR64RegisterClass);
264 addRegisterClass(MVT::v4i16, X86::VR64RegisterClass);
265 addRegisterClass(MVT::v2i32, X86::VR64RegisterClass);
266
Evan Chengd30bf012006-03-01 01:11:20 +0000267 // FIXME: add MMX packed arithmetics
Evan Cheng48090aa2006-03-21 23:01:21 +0000268 setOperationAction(ISD::BUILD_VECTOR, MVT::v8i8, Expand);
269 setOperationAction(ISD::BUILD_VECTOR, MVT::v4i16, Expand);
270 setOperationAction(ISD::BUILD_VECTOR, MVT::v2i32, Expand);
Evan Cheng470a6ad2006-02-22 02:26:30 +0000271 }
272
Evan Chenga88973f2006-03-22 19:22:18 +0000273 if (Subtarget->hasSSE1()) {
Evan Cheng470a6ad2006-02-22 02:26:30 +0000274 addRegisterClass(MVT::v4f32, X86::VR128RegisterClass);
275
Evan Cheng48090aa2006-03-21 23:01:21 +0000276 setOperationAction(ISD::ADD, MVT::v4f32, Legal);
277 setOperationAction(ISD::SUB, MVT::v4f32, Legal);
278 setOperationAction(ISD::MUL, MVT::v4f32, Legal);
279 setOperationAction(ISD::LOAD, MVT::v4f32, Legal);
Evan Cheng386031a2006-03-24 07:29:27 +0000280 setOperationAction(ISD::BUILD_VECTOR, MVT::v4f32, Custom);
Evan Chengb9df0ca2006-03-22 02:53:00 +0000281 setOperationAction(ISD::VECTOR_SHUFFLE, MVT::v4f32, Custom);
Evan Cheng470a6ad2006-02-22 02:26:30 +0000282 }
283
Evan Chenga88973f2006-03-22 19:22:18 +0000284 if (Subtarget->hasSSE2()) {
Evan Cheng470a6ad2006-02-22 02:26:30 +0000285 addRegisterClass(MVT::v2f64, X86::VR128RegisterClass);
286 addRegisterClass(MVT::v16i8, X86::VR128RegisterClass);
287 addRegisterClass(MVT::v8i16, X86::VR128RegisterClass);
288 addRegisterClass(MVT::v4i32, X86::VR128RegisterClass);
289 addRegisterClass(MVT::v2i64, X86::VR128RegisterClass);
290
291
Evan Cheng48090aa2006-03-21 23:01:21 +0000292 setOperationAction(ISD::ADD, MVT::v2f64, Legal);
Evan Chenga971f6f2006-03-23 01:57:24 +0000293 setOperationAction(ISD::ADD, MVT::v16i8, Legal);
294 setOperationAction(ISD::ADD, MVT::v8i16, Legal);
295 setOperationAction(ISD::ADD, MVT::v4i32, Legal);
Evan Cheng48090aa2006-03-21 23:01:21 +0000296 setOperationAction(ISD::SUB, MVT::v2f64, Legal);
Evan Cheng7b1d34b2006-03-25 01:33:37 +0000297 setOperationAction(ISD::SUB, MVT::v16i8, Legal);
298 setOperationAction(ISD::SUB, MVT::v8i16, Legal);
299 setOperationAction(ISD::SUB, MVT::v4i32, Legal);
Evan Cheng48090aa2006-03-21 23:01:21 +0000300 setOperationAction(ISD::MUL, MVT::v2f64, Legal);
301 setOperationAction(ISD::LOAD, MVT::v2f64, Legal);
Evan Chenga971f6f2006-03-23 01:57:24 +0000302 setOperationAction(ISD::LOAD, MVT::v16i8, Legal);
303 setOperationAction(ISD::LOAD, MVT::v8i16, Legal);
304 setOperationAction(ISD::LOAD, MVT::v4i32, Legal);
305 setOperationAction(ISD::LOAD, MVT::v2i64, Legal);
Evan Cheng386031a2006-03-24 07:29:27 +0000306 setOperationAction(ISD::BUILD_VECTOR, MVT::v2f64, Custom);
307 setOperationAction(ISD::BUILD_VECTOR, MVT::v16i8, Custom);
308 setOperationAction(ISD::BUILD_VECTOR, MVT::v8i16, Custom);
309 setOperationAction(ISD::BUILD_VECTOR, MVT::v4i32, Custom);
310 setOperationAction(ISD::BUILD_VECTOR, MVT::v2i64, Custom);
Evan Cheng48090aa2006-03-21 23:01:21 +0000311 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v16i8, Custom);
312 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v8i16, Custom);
Evan Chengb9df0ca2006-03-22 02:53:00 +0000313 setOperationAction(ISD::VECTOR_SHUFFLE, MVT::v2f64, Custom);
Evan Cheng470a6ad2006-02-22 02:26:30 +0000314 }
315
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000316 computeRegisterProperties();
317
Evan Cheng87ed7162006-02-14 08:25:08 +0000318 // FIXME: These should be based on subtarget info. Plus, the values should
319 // be smaller when we are in optimizing for size mode.
Evan Chenga03a5dc2006-02-14 08:38:30 +0000320 maxStoresPerMemset = 16; // For %llvm.memset -> sequence of stores
321 maxStoresPerMemcpy = 16; // For %llvm.memcpy -> sequence of stores
322 maxStoresPerMemmove = 16; // For %llvm.memmove -> sequence of stores
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000323 allowUnalignedMemoryAccesses = true; // x86 supports it!
324}
325
326std::vector<SDOperand>
327X86TargetLowering::LowerArguments(Function &F, SelectionDAG &DAG) {
328 if (F.getCallingConv() == CallingConv::Fast && EnableFastCC)
329 return LowerFastCCArguments(F, DAG);
330 return LowerCCCArguments(F, DAG);
331}
332
333std::pair<SDOperand, SDOperand>
334X86TargetLowering::LowerCallTo(SDOperand Chain, const Type *RetTy,
335 bool isVarArg, unsigned CallingConv,
336 bool isTailCall,
337 SDOperand Callee, ArgListTy &Args,
338 SelectionDAG &DAG) {
339 assert((!isVarArg || CallingConv == CallingConv::C) &&
340 "Only C takes varargs!");
Evan Chengd9558e02006-01-06 00:43:03 +0000341
342 // If the callee is a GlobalAddress node (quite common, every direct call is)
343 // turn it into a TargetGlobalAddress node so that legalize doesn't hack it.
344 if (GlobalAddressSDNode *G = dyn_cast<GlobalAddressSDNode>(Callee))
345 Callee = DAG.getTargetGlobalAddress(G->getGlobal(), getPointerTy());
Evan Cheng8700e142006-01-11 06:09:51 +0000346 else if (ExternalSymbolSDNode *S = dyn_cast<ExternalSymbolSDNode>(Callee))
347 Callee = DAG.getTargetExternalSymbol(S->getSymbol(), getPointerTy());
Evan Chengd9558e02006-01-06 00:43:03 +0000348
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000349 if (CallingConv == CallingConv::Fast && EnableFastCC)
350 return LowerFastCCCallTo(Chain, RetTy, isTailCall, Callee, Args, DAG);
351 return LowerCCCCallTo(Chain, RetTy, isVarArg, isTailCall, Callee, Args, DAG);
352}
353
354//===----------------------------------------------------------------------===//
355// C Calling Convention implementation
356//===----------------------------------------------------------------------===//
357
358std::vector<SDOperand>
359X86TargetLowering::LowerCCCArguments(Function &F, SelectionDAG &DAG) {
360 std::vector<SDOperand> ArgValues;
361
362 MachineFunction &MF = DAG.getMachineFunction();
363 MachineFrameInfo *MFI = MF.getFrameInfo();
364
365 // Add DAG nodes to load the arguments... On entry to a function on the X86,
366 // the stack frame looks like this:
367 //
368 // [ESP] -- return address
369 // [ESP + 4] -- first argument (leftmost lexically)
370 // [ESP + 8] -- second argument, if first argument is four bytes in size
371 // ...
372 //
373 unsigned ArgOffset = 0; // Frame mechanisms handle retaddr slot
374 for (Function::arg_iterator I = F.arg_begin(), E = F.arg_end(); I != E; ++I) {
375 MVT::ValueType ObjectVT = getValueType(I->getType());
376 unsigned ArgIncrement = 4;
377 unsigned ObjSize;
378 switch (ObjectVT) {
379 default: assert(0 && "Unhandled argument type!");
380 case MVT::i1:
381 case MVT::i8: ObjSize = 1; break;
382 case MVT::i16: ObjSize = 2; break;
383 case MVT::i32: ObjSize = 4; break;
384 case MVT::i64: ObjSize = ArgIncrement = 8; break;
385 case MVT::f32: ObjSize = 4; break;
386 case MVT::f64: ObjSize = ArgIncrement = 8; break;
387 }
388 // Create the frame index object for this incoming parameter...
389 int FI = MFI->CreateFixedObject(ObjSize, ArgOffset);
390
391 // Create the SelectionDAG nodes corresponding to a load from this parameter
392 SDOperand FIN = DAG.getFrameIndex(FI, MVT::i32);
393
394 // Don't codegen dead arguments. FIXME: remove this check when we can nuke
395 // dead loads.
396 SDOperand ArgValue;
397 if (!I->use_empty())
398 ArgValue = DAG.getLoad(ObjectVT, DAG.getEntryNode(), FIN,
399 DAG.getSrcValue(NULL));
400 else {
401 if (MVT::isInteger(ObjectVT))
402 ArgValue = DAG.getConstant(0, ObjectVT);
403 else
404 ArgValue = DAG.getConstantFP(0, ObjectVT);
405 }
406 ArgValues.push_back(ArgValue);
407
408 ArgOffset += ArgIncrement; // Move on to the next argument...
409 }
410
411 // If the function takes variable number of arguments, make a frame index for
412 // the start of the first vararg value... for expansion of llvm.va_start.
413 if (F.isVarArg())
414 VarArgsFrameIndex = MFI->CreateFixedObject(1, ArgOffset);
415 ReturnAddrIndex = 0; // No return address slot generated yet.
416 BytesToPopOnReturn = 0; // Callee pops nothing.
417 BytesCallerReserves = ArgOffset;
418
419 // Finally, inform the code generator which regs we return values in.
420 switch (getValueType(F.getReturnType())) {
421 default: assert(0 && "Unknown type!");
422 case MVT::isVoid: break;
423 case MVT::i1:
424 case MVT::i8:
425 case MVT::i16:
426 case MVT::i32:
427 MF.addLiveOut(X86::EAX);
428 break;
429 case MVT::i64:
430 MF.addLiveOut(X86::EAX);
431 MF.addLiveOut(X86::EDX);
432 break;
433 case MVT::f32:
434 case MVT::f64:
435 MF.addLiveOut(X86::ST0);
436 break;
437 }
438 return ArgValues;
439}
440
441std::pair<SDOperand, SDOperand>
442X86TargetLowering::LowerCCCCallTo(SDOperand Chain, const Type *RetTy,
443 bool isVarArg, bool isTailCall,
444 SDOperand Callee, ArgListTy &Args,
445 SelectionDAG &DAG) {
446 // Count how many bytes are to be pushed on the stack.
447 unsigned NumBytes = 0;
448
449 if (Args.empty()) {
450 // Save zero bytes.
Chris Lattner94dd2922006-02-13 09:00:43 +0000451 Chain = DAG.getCALLSEQ_START(Chain, DAG.getConstant(0, getPointerTy()));
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000452 } else {
453 for (unsigned i = 0, e = Args.size(); i != e; ++i)
454 switch (getValueType(Args[i].second)) {
455 default: assert(0 && "Unknown value type!");
456 case MVT::i1:
457 case MVT::i8:
458 case MVT::i16:
459 case MVT::i32:
460 case MVT::f32:
461 NumBytes += 4;
462 break;
463 case MVT::i64:
464 case MVT::f64:
465 NumBytes += 8;
466 break;
467 }
468
Chris Lattner94dd2922006-02-13 09:00:43 +0000469 Chain = DAG.getCALLSEQ_START(Chain,
470 DAG.getConstant(NumBytes, getPointerTy()));
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000471
472 // Arguments go on the stack in reverse order, as specified by the ABI.
473 unsigned ArgOffset = 0;
Evan Cheng8700e142006-01-11 06:09:51 +0000474 SDOperand StackPtr = DAG.getRegister(X86::ESP, MVT::i32);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000475 std::vector<SDOperand> Stores;
476
477 for (unsigned i = 0, e = Args.size(); i != e; ++i) {
478 SDOperand PtrOff = DAG.getConstant(ArgOffset, getPointerTy());
479 PtrOff = DAG.getNode(ISD::ADD, MVT::i32, StackPtr, PtrOff);
480
481 switch (getValueType(Args[i].second)) {
482 default: assert(0 && "Unexpected ValueType for argument!");
483 case MVT::i1:
484 case MVT::i8:
485 case MVT::i16:
486 // Promote the integer to 32 bits. If the input type is signed use a
487 // sign extend, otherwise use a zero extend.
488 if (Args[i].second->isSigned())
489 Args[i].first =DAG.getNode(ISD::SIGN_EXTEND, MVT::i32, Args[i].first);
490 else
491 Args[i].first =DAG.getNode(ISD::ZERO_EXTEND, MVT::i32, Args[i].first);
492
493 // FALL THROUGH
494 case MVT::i32:
495 case MVT::f32:
496 Stores.push_back(DAG.getNode(ISD::STORE, MVT::Other, Chain,
497 Args[i].first, PtrOff,
498 DAG.getSrcValue(NULL)));
499 ArgOffset += 4;
500 break;
501 case MVT::i64:
502 case MVT::f64:
503 Stores.push_back(DAG.getNode(ISD::STORE, MVT::Other, Chain,
504 Args[i].first, PtrOff,
505 DAG.getSrcValue(NULL)));
506 ArgOffset += 8;
507 break;
508 }
509 }
510 Chain = DAG.getNode(ISD::TokenFactor, MVT::Other, Stores);
511 }
512
513 std::vector<MVT::ValueType> RetVals;
514 MVT::ValueType RetTyVT = getValueType(RetTy);
515 RetVals.push_back(MVT::Other);
516
517 // The result values produced have to be legal. Promote the result.
518 switch (RetTyVT) {
519 case MVT::isVoid: break;
520 default:
521 RetVals.push_back(RetTyVT);
522 break;
523 case MVT::i1:
524 case MVT::i8:
525 case MVT::i16:
526 RetVals.push_back(MVT::i32);
527 break;
528 case MVT::f32:
529 if (X86ScalarSSE)
530 RetVals.push_back(MVT::f32);
531 else
532 RetVals.push_back(MVT::f64);
533 break;
534 case MVT::i64:
535 RetVals.push_back(MVT::i32);
536 RetVals.push_back(MVT::i32);
537 break;
538 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000539
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000540 std::vector<MVT::ValueType> NodeTys;
541 NodeTys.push_back(MVT::Other); // Returns a chain
542 NodeTys.push_back(MVT::Flag); // Returns a flag for retval copy to use.
543 std::vector<SDOperand> Ops;
544 Ops.push_back(Chain);
545 Ops.push_back(Callee);
Evan Chengd90eb7f2006-01-05 00:27:02 +0000546
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000547 // FIXME: Do not generate X86ISD::TAILCALL for now.
548 Chain = DAG.getNode(X86ISD::CALL, NodeTys, Ops);
549 SDOperand InFlag = Chain.getValue(1);
Evan Chengd90eb7f2006-01-05 00:27:02 +0000550
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000551 NodeTys.clear();
552 NodeTys.push_back(MVT::Other); // Returns a chain
553 NodeTys.push_back(MVT::Flag); // Returns a flag for retval copy to use.
554 Ops.clear();
555 Ops.push_back(Chain);
556 Ops.push_back(DAG.getConstant(NumBytes, getPointerTy()));
557 Ops.push_back(DAG.getConstant(0, getPointerTy()));
558 Ops.push_back(InFlag);
559 Chain = DAG.getNode(ISD::CALLSEQ_END, NodeTys, Ops);
560 InFlag = Chain.getValue(1);
561
562 SDOperand RetVal;
563 if (RetTyVT != MVT::isVoid) {
Evan Chengd90eb7f2006-01-05 00:27:02 +0000564 switch (RetTyVT) {
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000565 default: assert(0 && "Unknown value type to return!");
Evan Chengd90eb7f2006-01-05 00:27:02 +0000566 case MVT::i1:
567 case MVT::i8:
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000568 RetVal = DAG.getCopyFromReg(Chain, X86::AL, MVT::i8, InFlag);
569 Chain = RetVal.getValue(1);
570 if (RetTyVT == MVT::i1)
571 RetVal = DAG.getNode(ISD::TRUNCATE, MVT::i1, RetVal);
572 break;
Evan Chengd90eb7f2006-01-05 00:27:02 +0000573 case MVT::i16:
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000574 RetVal = DAG.getCopyFromReg(Chain, X86::AX, MVT::i16, InFlag);
575 Chain = RetVal.getValue(1);
Evan Chengd90eb7f2006-01-05 00:27:02 +0000576 break;
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000577 case MVT::i32:
578 RetVal = DAG.getCopyFromReg(Chain, X86::EAX, MVT::i32, InFlag);
579 Chain = RetVal.getValue(1);
Evan Chengd90eb7f2006-01-05 00:27:02 +0000580 break;
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000581 case MVT::i64: {
582 SDOperand Lo = DAG.getCopyFromReg(Chain, X86::EAX, MVT::i32, InFlag);
583 SDOperand Hi = DAG.getCopyFromReg(Lo.getValue(1), X86::EDX, MVT::i32,
584 Lo.getValue(2));
585 RetVal = DAG.getNode(ISD::BUILD_PAIR, MVT::i64, Lo, Hi);
586 Chain = Hi.getValue(1);
Evan Chengd90eb7f2006-01-05 00:27:02 +0000587 break;
588 }
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000589 case MVT::f32:
590 case MVT::f64: {
591 std::vector<MVT::ValueType> Tys;
592 Tys.push_back(MVT::f64);
593 Tys.push_back(MVT::Other);
594 Tys.push_back(MVT::Flag);
595 std::vector<SDOperand> Ops;
596 Ops.push_back(Chain);
597 Ops.push_back(InFlag);
598 RetVal = DAG.getNode(X86ISD::FP_GET_RESULT, Tys, Ops);
599 Chain = RetVal.getValue(1);
600 InFlag = RetVal.getValue(2);
601 if (X86ScalarSSE) {
602 // FIXME: Currently the FST is flagged to the FP_GET_RESULT. This
603 // shouldn't be necessary except that RFP cannot be live across
604 // multiple blocks. When stackifier is fixed, they can be uncoupled.
605 MachineFunction &MF = DAG.getMachineFunction();
606 int SSFI = MF.getFrameInfo()->CreateStackObject(8, 8);
607 SDOperand StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
608 Tys.clear();
609 Tys.push_back(MVT::Other);
610 Ops.clear();
611 Ops.push_back(Chain);
612 Ops.push_back(RetVal);
613 Ops.push_back(StackSlot);
614 Ops.push_back(DAG.getValueType(RetTyVT));
615 Ops.push_back(InFlag);
616 Chain = DAG.getNode(X86ISD::FST, Tys, Ops);
617 RetVal = DAG.getLoad(RetTyVT, Chain, StackSlot,
618 DAG.getSrcValue(NULL));
619 Chain = RetVal.getValue(1);
620 }
Evan Chengd90eb7f2006-01-05 00:27:02 +0000621
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000622 if (RetTyVT == MVT::f32 && !X86ScalarSSE)
623 // FIXME: we would really like to remember that this FP_ROUND
624 // operation is okay to eliminate if we allow excess FP precision.
625 RetVal = DAG.getNode(ISD::FP_ROUND, MVT::f32, RetVal);
626 break;
627 }
628 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000629 }
Nate Begeman4c5dcf52006-02-17 00:03:04 +0000630
631 return std::make_pair(RetVal, Chain);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000632}
633
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000634//===----------------------------------------------------------------------===//
635// Fast Calling Convention implementation
636//===----------------------------------------------------------------------===//
637//
638// The X86 'fast' calling convention passes up to two integer arguments in
639// registers (an appropriate portion of EAX/EDX), passes arguments in C order,
640// and requires that the callee pop its arguments off the stack (allowing proper
641// tail calls), and has the same return value conventions as C calling convs.
642//
643// This calling convention always arranges for the callee pop value to be 8n+4
644// bytes, which is needed for tail recursion elimination and stack alignment
645// reasons.
646//
647// Note that this can be enhanced in the future to pass fp vals in registers
648// (when we have a global fp allocator) and do other tricks.
649//
650
651/// AddLiveIn - This helper function adds the specified physical register to the
652/// MachineFunction as a live in value. It also creates a corresponding virtual
653/// register for it.
654static unsigned AddLiveIn(MachineFunction &MF, unsigned PReg,
655 TargetRegisterClass *RC) {
656 assert(RC->contains(PReg) && "Not the correct regclass!");
657 unsigned VReg = MF.getSSARegMap()->createVirtualRegister(RC);
658 MF.addLiveIn(PReg, VReg);
659 return VReg;
660}
661
Chris Lattner89fad2c2006-03-17 17:27:47 +0000662// FASTCC_NUM_INT_ARGS_INREGS - This is the max number of integer arguments
663// to pass in registers. 0 is none, 1 is is "use EAX", 2 is "use EAX and
664// EDX". Anything more is illegal.
665//
666// FIXME: The linscan register allocator currently has problem with
Chris Lattner9d5da1d2006-03-24 07:12:19 +0000667// coalescing. At the time of this writing, whenever it decides to coalesce
Chris Lattner89fad2c2006-03-17 17:27:47 +0000668// a physreg with a virtreg, this increases the size of the physreg's live
669// range, and the live range cannot ever be reduced. This causes problems if
Chris Lattner9d5da1d2006-03-24 07:12:19 +0000670// too many physregs are coaleced with virtregs, which can cause the register
Chris Lattner89fad2c2006-03-17 17:27:47 +0000671// allocator to wedge itself.
672//
673// This code triggers this problem more often if we pass args in registers,
674// so disable it until this is fixed.
675//
676// NOTE: this isn't marked const, so that GCC doesn't emit annoying warnings
677// about code being dead.
678//
679static unsigned FASTCC_NUM_INT_ARGS_INREGS = 0;
Chris Lattner1c636e92006-03-17 05:10:20 +0000680
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000681
682std::vector<SDOperand>
683X86TargetLowering::LowerFastCCArguments(Function &F, SelectionDAG &DAG) {
684 std::vector<SDOperand> ArgValues;
685
686 MachineFunction &MF = DAG.getMachineFunction();
687 MachineFrameInfo *MFI = MF.getFrameInfo();
688
689 // Add DAG nodes to load the arguments... On entry to a function the stack
690 // frame looks like this:
691 //
692 // [ESP] -- return address
693 // [ESP + 4] -- first nonreg argument (leftmost lexically)
694 // [ESP + 8] -- second nonreg argument, if first argument is 4 bytes in size
695 // ...
696 unsigned ArgOffset = 0; // Frame mechanisms handle retaddr slot
697
698 // Keep track of the number of integer regs passed so far. This can be either
699 // 0 (neither EAX or EDX used), 1 (EAX is used) or 2 (EAX and EDX are both
700 // used).
701 unsigned NumIntRegs = 0;
Chris Lattner1c636e92006-03-17 05:10:20 +0000702
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000703 for (Function::arg_iterator I = F.arg_begin(), E = F.arg_end(); I != E; ++I) {
704 MVT::ValueType ObjectVT = getValueType(I->getType());
705 unsigned ArgIncrement = 4;
706 unsigned ObjSize = 0;
707 SDOperand ArgValue;
708
709 switch (ObjectVT) {
710 default: assert(0 && "Unhandled argument type!");
711 case MVT::i1:
712 case MVT::i8:
Chris Lattner1c636e92006-03-17 05:10:20 +0000713 if (NumIntRegs < FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000714 if (!I->use_empty()) {
715 unsigned VReg = AddLiveIn(MF, NumIntRegs ? X86::DL : X86::AL,
716 X86::R8RegisterClass);
717 ArgValue = DAG.getCopyFromReg(DAG.getRoot(), VReg, MVT::i8);
718 DAG.setRoot(ArgValue.getValue(1));
Chris Lattnerf31d1932005-12-27 03:02:18 +0000719 if (ObjectVT == MVT::i1)
720 // FIXME: Should insert a assertzext here.
721 ArgValue = DAG.getNode(ISD::TRUNCATE, MVT::i1, ArgValue);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000722 }
723 ++NumIntRegs;
724 break;
725 }
726
727 ObjSize = 1;
728 break;
729 case MVT::i16:
Chris Lattner1c636e92006-03-17 05:10:20 +0000730 if (NumIntRegs < FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000731 if (!I->use_empty()) {
732 unsigned VReg = AddLiveIn(MF, NumIntRegs ? X86::DX : X86::AX,
733 X86::R16RegisterClass);
734 ArgValue = DAG.getCopyFromReg(DAG.getRoot(), VReg, MVT::i16);
735 DAG.setRoot(ArgValue.getValue(1));
736 }
737 ++NumIntRegs;
738 break;
739 }
740 ObjSize = 2;
741 break;
742 case MVT::i32:
Chris Lattner1c636e92006-03-17 05:10:20 +0000743 if (NumIntRegs < FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000744 if (!I->use_empty()) {
Chris Lattner1c636e92006-03-17 05:10:20 +0000745 unsigned VReg = AddLiveIn(MF, NumIntRegs ? X86::EDX : X86::EAX,
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000746 X86::R32RegisterClass);
747 ArgValue = DAG.getCopyFromReg(DAG.getRoot(), VReg, MVT::i32);
748 DAG.setRoot(ArgValue.getValue(1));
749 }
750 ++NumIntRegs;
751 break;
752 }
753 ObjSize = 4;
754 break;
755 case MVT::i64:
Chris Lattner1c636e92006-03-17 05:10:20 +0000756 if (NumIntRegs+2 <= FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000757 if (!I->use_empty()) {
758 unsigned BotReg = AddLiveIn(MF, X86::EAX, X86::R32RegisterClass);
759 unsigned TopReg = AddLiveIn(MF, X86::EDX, X86::R32RegisterClass);
760
761 SDOperand Low = DAG.getCopyFromReg(DAG.getRoot(), BotReg, MVT::i32);
762 SDOperand Hi = DAG.getCopyFromReg(Low.getValue(1), TopReg, MVT::i32);
763 DAG.setRoot(Hi.getValue(1));
764
765 ArgValue = DAG.getNode(ISD::BUILD_PAIR, MVT::i64, Low, Hi);
766 }
Chris Lattner1c636e92006-03-17 05:10:20 +0000767 NumIntRegs += 2;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000768 break;
Chris Lattner1c636e92006-03-17 05:10:20 +0000769 } else if (NumIntRegs+1 <= FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000770 if (!I->use_empty()) {
771 unsigned BotReg = AddLiveIn(MF, X86::EDX, X86::R32RegisterClass);
772 SDOperand Low = DAG.getCopyFromReg(DAG.getRoot(), BotReg, MVT::i32);
773 DAG.setRoot(Low.getValue(1));
774
775 // Load the high part from memory.
776 // Create the frame index object for this incoming parameter...
777 int FI = MFI->CreateFixedObject(4, ArgOffset);
778 SDOperand FIN = DAG.getFrameIndex(FI, MVT::i32);
779 SDOperand Hi = DAG.getLoad(MVT::i32, DAG.getEntryNode(), FIN,
780 DAG.getSrcValue(NULL));
781 ArgValue = DAG.getNode(ISD::BUILD_PAIR, MVT::i64, Low, Hi);
782 }
783 ArgOffset += 4;
Chris Lattner1c636e92006-03-17 05:10:20 +0000784 NumIntRegs = FASTCC_NUM_INT_ARGS_INREGS;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000785 break;
786 }
787 ObjSize = ArgIncrement = 8;
788 break;
789 case MVT::f32: ObjSize = 4; break;
790 case MVT::f64: ObjSize = ArgIncrement = 8; break;
791 }
792
793 // Don't codegen dead arguments. FIXME: remove this check when we can nuke
794 // dead loads.
795 if (ObjSize && !I->use_empty()) {
796 // Create the frame index object for this incoming parameter...
797 int FI = MFI->CreateFixedObject(ObjSize, ArgOffset);
798
799 // Create the SelectionDAG nodes corresponding to a load from this
800 // parameter.
801 SDOperand FIN = DAG.getFrameIndex(FI, MVT::i32);
802
803 ArgValue = DAG.getLoad(ObjectVT, DAG.getEntryNode(), FIN,
804 DAG.getSrcValue(NULL));
805 } else if (ArgValue.Val == 0) {
806 if (MVT::isInteger(ObjectVT))
807 ArgValue = DAG.getConstant(0, ObjectVT);
808 else
809 ArgValue = DAG.getConstantFP(0, ObjectVT);
810 }
811 ArgValues.push_back(ArgValue);
812
813 if (ObjSize)
814 ArgOffset += ArgIncrement; // Move on to the next argument.
815 }
816
817 // Make sure the instruction takes 8n+4 bytes to make sure the start of the
818 // arguments and the arguments after the retaddr has been pushed are aligned.
819 if ((ArgOffset & 7) == 0)
820 ArgOffset += 4;
821
822 VarArgsFrameIndex = 0xAAAAAAA; // fastcc functions can't have varargs.
823 ReturnAddrIndex = 0; // No return address slot generated yet.
824 BytesToPopOnReturn = ArgOffset; // Callee pops all stack arguments.
825 BytesCallerReserves = 0;
826
827 // Finally, inform the code generator which regs we return values in.
828 switch (getValueType(F.getReturnType())) {
829 default: assert(0 && "Unknown type!");
830 case MVT::isVoid: break;
831 case MVT::i1:
832 case MVT::i8:
833 case MVT::i16:
834 case MVT::i32:
835 MF.addLiveOut(X86::EAX);
836 break;
837 case MVT::i64:
838 MF.addLiveOut(X86::EAX);
839 MF.addLiveOut(X86::EDX);
840 break;
841 case MVT::f32:
842 case MVT::f64:
843 MF.addLiveOut(X86::ST0);
844 break;
845 }
846 return ArgValues;
847}
848
849std::pair<SDOperand, SDOperand>
850X86TargetLowering::LowerFastCCCallTo(SDOperand Chain, const Type *RetTy,
851 bool isTailCall, SDOperand Callee,
852 ArgListTy &Args, SelectionDAG &DAG) {
853 // Count how many bytes are to be pushed on the stack.
854 unsigned NumBytes = 0;
855
856 // Keep track of the number of integer regs passed so far. This can be either
857 // 0 (neither EAX or EDX used), 1 (EAX is used) or 2 (EAX and EDX are both
858 // used).
859 unsigned NumIntRegs = 0;
860
861 for (unsigned i = 0, e = Args.size(); i != e; ++i)
862 switch (getValueType(Args[i].second)) {
863 default: assert(0 && "Unknown value type!");
864 case MVT::i1:
865 case MVT::i8:
866 case MVT::i16:
867 case MVT::i32:
Chris Lattner1c636e92006-03-17 05:10:20 +0000868 if (NumIntRegs < FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000869 ++NumIntRegs;
870 break;
871 }
872 // fall through
873 case MVT::f32:
874 NumBytes += 4;
875 break;
876 case MVT::i64:
Chris Lattner1c636e92006-03-17 05:10:20 +0000877 if (NumIntRegs+2 <= FASTCC_NUM_INT_ARGS_INREGS) {
878 NumIntRegs += 2;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000879 break;
Chris Lattner1c636e92006-03-17 05:10:20 +0000880 } else if (NumIntRegs+1 <= FASTCC_NUM_INT_ARGS_INREGS) {
881 NumIntRegs = FASTCC_NUM_INT_ARGS_INREGS;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000882 NumBytes += 4;
883 break;
884 }
885
886 // fall through
887 case MVT::f64:
888 NumBytes += 8;
889 break;
890 }
891
892 // Make sure the instruction takes 8n+4 bytes to make sure the start of the
893 // arguments and the arguments after the retaddr has been pushed are aligned.
894 if ((NumBytes & 7) == 0)
895 NumBytes += 4;
896
Chris Lattner94dd2922006-02-13 09:00:43 +0000897 Chain = DAG.getCALLSEQ_START(Chain,DAG.getConstant(NumBytes, getPointerTy()));
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000898
899 // Arguments go on the stack in reverse order, as specified by the ABI.
900 unsigned ArgOffset = 0;
Chris Lattner91cacc82006-01-24 06:14:44 +0000901 SDOperand StackPtr = DAG.getRegister(X86::ESP, MVT::i32);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000902 NumIntRegs = 0;
903 std::vector<SDOperand> Stores;
904 std::vector<SDOperand> RegValuesToPass;
905 for (unsigned i = 0, e = Args.size(); i != e; ++i) {
906 switch (getValueType(Args[i].second)) {
907 default: assert(0 && "Unexpected ValueType for argument!");
908 case MVT::i1:
Chris Lattnerf31d1932005-12-27 03:02:18 +0000909 Args[i].first = DAG.getNode(ISD::ANY_EXTEND, MVT::i8, Args[i].first);
910 // Fall through.
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000911 case MVT::i8:
912 case MVT::i16:
913 case MVT::i32:
Chris Lattner1c636e92006-03-17 05:10:20 +0000914 if (NumIntRegs < FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000915 RegValuesToPass.push_back(Args[i].first);
916 ++NumIntRegs;
917 break;
918 }
919 // Fall through
920 case MVT::f32: {
921 SDOperand PtrOff = DAG.getConstant(ArgOffset, getPointerTy());
922 PtrOff = DAG.getNode(ISD::ADD, MVT::i32, StackPtr, PtrOff);
923 Stores.push_back(DAG.getNode(ISD::STORE, MVT::Other, Chain,
924 Args[i].first, PtrOff,
925 DAG.getSrcValue(NULL)));
926 ArgOffset += 4;
927 break;
928 }
929 case MVT::i64:
Chris Lattner1c636e92006-03-17 05:10:20 +0000930 // Can pass (at least) part of it in regs?
931 if (NumIntRegs < FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000932 SDOperand Hi = DAG.getNode(ISD::EXTRACT_ELEMENT, MVT::i32,
933 Args[i].first, DAG.getConstant(1, MVT::i32));
934 SDOperand Lo = DAG.getNode(ISD::EXTRACT_ELEMENT, MVT::i32,
935 Args[i].first, DAG.getConstant(0, MVT::i32));
936 RegValuesToPass.push_back(Lo);
937 ++NumIntRegs;
Chris Lattner1c636e92006-03-17 05:10:20 +0000938
939 // Pass both parts in regs?
940 if (NumIntRegs < FASTCC_NUM_INT_ARGS_INREGS) {
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +0000941 RegValuesToPass.push_back(Hi);
942 ++NumIntRegs;
943 } else {
944 // Pass the high part in memory.
945 SDOperand PtrOff = DAG.getConstant(ArgOffset, getPointerTy());
946 PtrOff = DAG.getNode(ISD::ADD, MVT::i32, StackPtr, PtrOff);
947 Stores.push_back(DAG.getNode(ISD::STORE, MVT::Other, Chain,
948 Hi, PtrOff, DAG.getSrcValue(NULL)));
949 ArgOffset += 4;
950 }
951 break;
952 }
953 // Fall through
954 case MVT::f64:
955 SDOperand PtrOff = DAG.getConstant(ArgOffset, getPointerTy());
956 PtrOff = DAG.getNode(ISD::ADD, MVT::i32, StackPtr, PtrOff);
957 Stores.push_back(DAG.getNode(ISD::STORE, MVT::Other, Chain,
958 Args[i].first, PtrOff,
959 DAG.getSrcValue(NULL)));
960 ArgOffset += 8;
961 break;
962 }
963 }
964 if (!Stores.empty())
965 Chain = DAG.getNode(ISD::TokenFactor, MVT::Other, Stores);
966
967 // Make sure the instruction takes 8n+4 bytes to make sure the start of the
968 // arguments and the arguments after the retaddr has been pushed are aligned.
969 if ((ArgOffset & 7) == 0)
970 ArgOffset += 4;
971
972 std::vector<MVT::ValueType> RetVals;
973 MVT::ValueType RetTyVT = getValueType(RetTy);
974
975 RetVals.push_back(MVT::Other);
976
977 // The result values produced have to be legal. Promote the result.
978 switch (RetTyVT) {
979 case MVT::isVoid: break;
980 default:
981 RetVals.push_back(RetTyVT);
982 break;
983 case MVT::i1:
984 case MVT::i8:
985 case MVT::i16:
986 RetVals.push_back(MVT::i32);
987 break;
988 case MVT::f32:
989 if (X86ScalarSSE)
990 RetVals.push_back(MVT::f32);
991 else
992 RetVals.push_back(MVT::f64);
993 break;
994 case MVT::i64:
995 RetVals.push_back(MVT::i32);
996 RetVals.push_back(MVT::i32);
997 break;
998 }
999
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001000 // Build a sequence of copy-to-reg nodes chained together with token chain
1001 // and flag operands which copy the outgoing args into registers.
1002 SDOperand InFlag;
1003 for (unsigned i = 0, e = RegValuesToPass.size(); i != e; ++i) {
1004 unsigned CCReg;
1005 SDOperand RegToPass = RegValuesToPass[i];
1006 switch (RegToPass.getValueType()) {
1007 default: assert(0 && "Bad thing to pass in regs");
1008 case MVT::i8:
1009 CCReg = (i == 0) ? X86::AL : X86::DL;
Evan Chengd9558e02006-01-06 00:43:03 +00001010 break;
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001011 case MVT::i16:
1012 CCReg = (i == 0) ? X86::AX : X86::DX;
1013 break;
1014 case MVT::i32:
1015 CCReg = (i == 0) ? X86::EAX : X86::EDX;
1016 break;
1017 }
1018
1019 Chain = DAG.getCopyToReg(Chain, CCReg, RegToPass, InFlag);
1020 InFlag = Chain.getValue(1);
1021 }
1022
1023 std::vector<MVT::ValueType> NodeTys;
1024 NodeTys.push_back(MVT::Other); // Returns a chain
1025 NodeTys.push_back(MVT::Flag); // Returns a flag for retval copy to use.
1026 std::vector<SDOperand> Ops;
1027 Ops.push_back(Chain);
1028 Ops.push_back(Callee);
1029 if (InFlag.Val)
1030 Ops.push_back(InFlag);
1031
1032 // FIXME: Do not generate X86ISD::TAILCALL for now.
1033 Chain = DAG.getNode(X86ISD::CALL, NodeTys, Ops);
1034 InFlag = Chain.getValue(1);
1035
1036 NodeTys.clear();
1037 NodeTys.push_back(MVT::Other); // Returns a chain
1038 NodeTys.push_back(MVT::Flag); // Returns a flag for retval copy to use.
1039 Ops.clear();
1040 Ops.push_back(Chain);
1041 Ops.push_back(DAG.getConstant(ArgOffset, getPointerTy()));
1042 Ops.push_back(DAG.getConstant(ArgOffset, getPointerTy()));
1043 Ops.push_back(InFlag);
1044 Chain = DAG.getNode(ISD::CALLSEQ_END, NodeTys, Ops);
1045 InFlag = Chain.getValue(1);
1046
1047 SDOperand RetVal;
1048 if (RetTyVT != MVT::isVoid) {
1049 switch (RetTyVT) {
1050 default: assert(0 && "Unknown value type to return!");
Evan Chengd9558e02006-01-06 00:43:03 +00001051 case MVT::i1:
1052 case MVT::i8:
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001053 RetVal = DAG.getCopyFromReg(Chain, X86::AL, MVT::i8, InFlag);
1054 Chain = RetVal.getValue(1);
1055 if (RetTyVT == MVT::i1)
1056 RetVal = DAG.getNode(ISD::TRUNCATE, MVT::i1, RetVal);
1057 break;
Evan Chengd9558e02006-01-06 00:43:03 +00001058 case MVT::i16:
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001059 RetVal = DAG.getCopyFromReg(Chain, X86::AX, MVT::i16, InFlag);
1060 Chain = RetVal.getValue(1);
Evan Chengd9558e02006-01-06 00:43:03 +00001061 break;
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001062 case MVT::i32:
1063 RetVal = DAG.getCopyFromReg(Chain, X86::EAX, MVT::i32, InFlag);
1064 Chain = RetVal.getValue(1);
Evan Chengd9558e02006-01-06 00:43:03 +00001065 break;
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001066 case MVT::i64: {
1067 SDOperand Lo = DAG.getCopyFromReg(Chain, X86::EAX, MVT::i32, InFlag);
1068 SDOperand Hi = DAG.getCopyFromReg(Lo.getValue(1), X86::EDX, MVT::i32,
1069 Lo.getValue(2));
1070 RetVal = DAG.getNode(ISD::BUILD_PAIR, MVT::i64, Lo, Hi);
1071 Chain = Hi.getValue(1);
Evan Chengd9558e02006-01-06 00:43:03 +00001072 break;
1073 }
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001074 case MVT::f32:
1075 case MVT::f64: {
1076 std::vector<MVT::ValueType> Tys;
1077 Tys.push_back(MVT::f64);
1078 Tys.push_back(MVT::Other);
1079 Tys.push_back(MVT::Flag);
1080 std::vector<SDOperand> Ops;
1081 Ops.push_back(Chain);
1082 Ops.push_back(InFlag);
1083 RetVal = DAG.getNode(X86ISD::FP_GET_RESULT, Tys, Ops);
1084 Chain = RetVal.getValue(1);
1085 InFlag = RetVal.getValue(2);
1086 if (X86ScalarSSE) {
1087 // FIXME: Currently the FST is flagged to the FP_GET_RESULT. This
1088 // shouldn't be necessary except that RFP cannot be live across
1089 // multiple blocks. When stackifier is fixed, they can be uncoupled.
1090 MachineFunction &MF = DAG.getMachineFunction();
1091 int SSFI = MF.getFrameInfo()->CreateStackObject(8, 8);
1092 SDOperand StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
1093 Tys.clear();
1094 Tys.push_back(MVT::Other);
1095 Ops.clear();
1096 Ops.push_back(Chain);
1097 Ops.push_back(RetVal);
1098 Ops.push_back(StackSlot);
1099 Ops.push_back(DAG.getValueType(RetTyVT));
1100 Ops.push_back(InFlag);
1101 Chain = DAG.getNode(X86ISD::FST, Tys, Ops);
1102 RetVal = DAG.getLoad(RetTyVT, Chain, StackSlot,
1103 DAG.getSrcValue(NULL));
1104 Chain = RetVal.getValue(1);
1105 }
Evan Chengd9558e02006-01-06 00:43:03 +00001106
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001107 if (RetTyVT == MVT::f32 && !X86ScalarSSE)
1108 // FIXME: we would really like to remember that this FP_ROUND
1109 // operation is okay to eliminate if we allow excess FP precision.
1110 RetVal = DAG.getNode(ISD::FP_ROUND, MVT::f32, RetVal);
1111 break;
1112 }
1113 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001114 }
Nate Begeman4c5dcf52006-02-17 00:03:04 +00001115
1116 return std::make_pair(RetVal, Chain);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001117}
1118
1119SDOperand X86TargetLowering::getReturnAddressFrameIndex(SelectionDAG &DAG) {
1120 if (ReturnAddrIndex == 0) {
1121 // Set up a frame object for the return address.
1122 MachineFunction &MF = DAG.getMachineFunction();
1123 ReturnAddrIndex = MF.getFrameInfo()->CreateFixedObject(4, -4);
1124 }
1125
1126 return DAG.getFrameIndex(ReturnAddrIndex, MVT::i32);
1127}
1128
1129
1130
1131std::pair<SDOperand, SDOperand> X86TargetLowering::
1132LowerFrameReturnAddress(bool isFrameAddress, SDOperand Chain, unsigned Depth,
1133 SelectionDAG &DAG) {
1134 SDOperand Result;
1135 if (Depth) // Depths > 0 not supported yet!
1136 Result = DAG.getConstant(0, getPointerTy());
1137 else {
1138 SDOperand RetAddrFI = getReturnAddressFrameIndex(DAG);
1139 if (!isFrameAddress)
1140 // Just load the return address
1141 Result = DAG.getLoad(MVT::i32, DAG.getEntryNode(), RetAddrFI,
1142 DAG.getSrcValue(NULL));
1143 else
1144 Result = DAG.getNode(ISD::SUB, MVT::i32, RetAddrFI,
1145 DAG.getConstant(4, MVT::i32));
1146 }
1147 return std::make_pair(Result, Chain);
1148}
1149
Evan Cheng4a460802006-01-11 00:33:36 +00001150/// getCondBrOpcodeForX86CC - Returns the X86 conditional branch opcode
1151/// which corresponds to the condition code.
1152static unsigned getCondBrOpcodeForX86CC(unsigned X86CC) {
1153 switch (X86CC) {
1154 default: assert(0 && "Unknown X86 conditional code!");
1155 case X86ISD::COND_A: return X86::JA;
1156 case X86ISD::COND_AE: return X86::JAE;
1157 case X86ISD::COND_B: return X86::JB;
1158 case X86ISD::COND_BE: return X86::JBE;
1159 case X86ISD::COND_E: return X86::JE;
1160 case X86ISD::COND_G: return X86::JG;
1161 case X86ISD::COND_GE: return X86::JGE;
1162 case X86ISD::COND_L: return X86::JL;
1163 case X86ISD::COND_LE: return X86::JLE;
1164 case X86ISD::COND_NE: return X86::JNE;
1165 case X86ISD::COND_NO: return X86::JNO;
1166 case X86ISD::COND_NP: return X86::JNP;
1167 case X86ISD::COND_NS: return X86::JNS;
1168 case X86ISD::COND_O: return X86::JO;
1169 case X86ISD::COND_P: return X86::JP;
1170 case X86ISD::COND_S: return X86::JS;
1171 }
1172}
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001173
Evan Cheng6dfa9992006-01-30 23:41:35 +00001174/// translateX86CC - do a one to one translation of a ISD::CondCode to the X86
1175/// specific condition code. It returns a false if it cannot do a direct
1176/// translation. X86CC is the translated CondCode. Flip is set to true if the
1177/// the order of comparison operands should be flipped.
Chris Lattner259e97c2006-01-31 19:43:35 +00001178static bool translateX86CC(SDOperand CC, bool isFP, unsigned &X86CC,
1179 bool &Flip) {
Evan Chengd9558e02006-01-06 00:43:03 +00001180 ISD::CondCode SetCCOpcode = cast<CondCodeSDNode>(CC)->get();
Evan Cheng6dfa9992006-01-30 23:41:35 +00001181 Flip = false;
1182 X86CC = X86ISD::COND_INVALID;
Evan Chengd9558e02006-01-06 00:43:03 +00001183 if (!isFP) {
1184 switch (SetCCOpcode) {
1185 default: break;
1186 case ISD::SETEQ: X86CC = X86ISD::COND_E; break;
1187 case ISD::SETGT: X86CC = X86ISD::COND_G; break;
1188 case ISD::SETGE: X86CC = X86ISD::COND_GE; break;
1189 case ISD::SETLT: X86CC = X86ISD::COND_L; break;
1190 case ISD::SETLE: X86CC = X86ISD::COND_LE; break;
1191 case ISD::SETNE: X86CC = X86ISD::COND_NE; break;
1192 case ISD::SETULT: X86CC = X86ISD::COND_B; break;
1193 case ISD::SETUGT: X86CC = X86ISD::COND_A; break;
1194 case ISD::SETULE: X86CC = X86ISD::COND_BE; break;
1195 case ISD::SETUGE: X86CC = X86ISD::COND_AE; break;
1196 }
1197 } else {
1198 // On a floating point condition, the flags are set as follows:
1199 // ZF PF CF op
1200 // 0 | 0 | 0 | X > Y
1201 // 0 | 0 | 1 | X < Y
1202 // 1 | 0 | 0 | X == Y
1203 // 1 | 1 | 1 | unordered
1204 switch (SetCCOpcode) {
1205 default: break;
1206 case ISD::SETUEQ:
1207 case ISD::SETEQ: X86CC = X86ISD::COND_E; break;
Evan Cheng6dfa9992006-01-30 23:41:35 +00001208 case ISD::SETOLE: Flip = true; // Fallthrough
Evan Chengd9558e02006-01-06 00:43:03 +00001209 case ISD::SETOGT:
1210 case ISD::SETGT: X86CC = X86ISD::COND_A; break;
Evan Cheng6dfa9992006-01-30 23:41:35 +00001211 case ISD::SETOLT: Flip = true; // Fallthrough
Evan Chengd9558e02006-01-06 00:43:03 +00001212 case ISD::SETOGE:
1213 case ISD::SETGE: X86CC = X86ISD::COND_AE; break;
Evan Cheng6dfa9992006-01-30 23:41:35 +00001214 case ISD::SETUGE: Flip = true; // Fallthrough
Evan Chengd9558e02006-01-06 00:43:03 +00001215 case ISD::SETULT:
1216 case ISD::SETLT: X86CC = X86ISD::COND_B; break;
Evan Cheng6dfa9992006-01-30 23:41:35 +00001217 case ISD::SETUGT: Flip = true; // Fallthrough
Evan Chengd9558e02006-01-06 00:43:03 +00001218 case ISD::SETULE:
1219 case ISD::SETLE: X86CC = X86ISD::COND_BE; break;
1220 case ISD::SETONE:
1221 case ISD::SETNE: X86CC = X86ISD::COND_NE; break;
1222 case ISD::SETUO: X86CC = X86ISD::COND_P; break;
1223 case ISD::SETO: X86CC = X86ISD::COND_NP; break;
1224 }
1225 }
Evan Cheng6dfa9992006-01-30 23:41:35 +00001226
1227 return X86CC != X86ISD::COND_INVALID;
Evan Chengd9558e02006-01-06 00:43:03 +00001228}
1229
Evan Cheng4a460802006-01-11 00:33:36 +00001230/// hasFPCMov - is there a floating point cmov for the specific X86 condition
1231/// code. Current x86 isa includes the following FP cmov instructions:
Evan Chengaaca22c2006-01-10 20:26:56 +00001232/// fcmovb, fcomvbe, fcomve, fcmovu, fcmovae, fcmova, fcmovne, fcmovnu.
Evan Cheng4a460802006-01-11 00:33:36 +00001233static bool hasFPCMov(unsigned X86CC) {
Evan Chengaaca22c2006-01-10 20:26:56 +00001234 switch (X86CC) {
1235 default:
1236 return false;
1237 case X86ISD::COND_B:
1238 case X86ISD::COND_BE:
1239 case X86ISD::COND_E:
1240 case X86ISD::COND_P:
1241 case X86ISD::COND_A:
1242 case X86ISD::COND_AE:
1243 case X86ISD::COND_NE:
1244 case X86ISD::COND_NP:
1245 return true;
1246 }
1247}
1248
Evan Cheng4a460802006-01-11 00:33:36 +00001249MachineBasicBlock *
1250X86TargetLowering::InsertAtEndOfBasicBlock(MachineInstr *MI,
1251 MachineBasicBlock *BB) {
Evan Cheng0cc39452006-01-16 21:21:29 +00001252 switch (MI->getOpcode()) {
1253 default: assert(false && "Unexpected instr type to insert");
1254 case X86::CMOV_FR32:
1255 case X86::CMOV_FR64: {
Chris Lattner259e97c2006-01-31 19:43:35 +00001256 // To "insert" a SELECT_CC instruction, we actually have to insert the
1257 // diamond control-flow pattern. The incoming instruction knows the
1258 // destination vreg to set, the condition code register to branch on, the
1259 // true/false values to select between, and a branch opcode to use.
Evan Cheng0cc39452006-01-16 21:21:29 +00001260 const BasicBlock *LLVM_BB = BB->getBasicBlock();
1261 ilist<MachineBasicBlock>::iterator It = BB;
1262 ++It;
1263
1264 // thisMBB:
1265 // ...
1266 // TrueVal = ...
1267 // cmpTY ccX, r1, r2
1268 // bCC copy1MBB
1269 // fallthrough --> copy0MBB
1270 MachineBasicBlock *thisMBB = BB;
1271 MachineBasicBlock *copy0MBB = new MachineBasicBlock(LLVM_BB);
1272 MachineBasicBlock *sinkMBB = new MachineBasicBlock(LLVM_BB);
1273 unsigned Opc = getCondBrOpcodeForX86CC(MI->getOperand(3).getImmedValue());
1274 BuildMI(BB, Opc, 1).addMBB(sinkMBB);
1275 MachineFunction *F = BB->getParent();
1276 F->getBasicBlockList().insert(It, copy0MBB);
1277 F->getBasicBlockList().insert(It, sinkMBB);
1278 // Update machine-CFG edges
1279 BB->addSuccessor(copy0MBB);
1280 BB->addSuccessor(sinkMBB);
1281
1282 // copy0MBB:
1283 // %FalseValue = ...
1284 // # fallthrough to sinkMBB
1285 BB = copy0MBB;
1286
1287 // Update machine-CFG edges
1288 BB->addSuccessor(sinkMBB);
1289
1290 // sinkMBB:
1291 // %Result = phi [ %FalseValue, copy0MBB ], [ %TrueValue, thisMBB ]
1292 // ...
1293 BB = sinkMBB;
1294 BuildMI(BB, X86::PHI, 4, MI->getOperand(0).getReg())
1295 .addReg(MI->getOperand(1).getReg()).addMBB(copy0MBB)
1296 .addReg(MI->getOperand(2).getReg()).addMBB(thisMBB);
Evan Cheng4a460802006-01-11 00:33:36 +00001297
Evan Cheng0cc39452006-01-16 21:21:29 +00001298 delete MI; // The pseudo instruction is gone now.
1299 return BB;
1300 }
Evan Cheng4a460802006-01-11 00:33:36 +00001301
Evan Cheng0cc39452006-01-16 21:21:29 +00001302 case X86::FP_TO_INT16_IN_MEM:
1303 case X86::FP_TO_INT32_IN_MEM:
1304 case X86::FP_TO_INT64_IN_MEM: {
1305 // Change the floating point control register to use "round towards zero"
1306 // mode when truncating to an integer value.
1307 MachineFunction *F = BB->getParent();
1308 int CWFrameIdx = F->getFrameInfo()->CreateStackObject(2, 2);
1309 addFrameReference(BuildMI(BB, X86::FNSTCW16m, 4), CWFrameIdx);
1310
1311 // Load the old value of the high byte of the control word...
1312 unsigned OldCW =
1313 F->getSSARegMap()->createVirtualRegister(X86::R16RegisterClass);
1314 addFrameReference(BuildMI(BB, X86::MOV16rm, 4, OldCW), CWFrameIdx);
1315
1316 // Set the high part to be round to zero...
1317 addFrameReference(BuildMI(BB, X86::MOV16mi, 5), CWFrameIdx).addImm(0xC7F);
1318
1319 // Reload the modified control word now...
1320 addFrameReference(BuildMI(BB, X86::FLDCW16m, 4), CWFrameIdx);
1321
1322 // Restore the memory image of control word to original value
1323 addFrameReference(BuildMI(BB, X86::MOV16mr, 5), CWFrameIdx).addReg(OldCW);
1324
1325 // Get the X86 opcode to use.
1326 unsigned Opc;
1327 switch (MI->getOpcode()) {
Chris Lattner6b2469c2006-01-28 10:34:47 +00001328 default: assert(0 && "illegal opcode!");
Evan Cheng0cc39452006-01-16 21:21:29 +00001329 case X86::FP_TO_INT16_IN_MEM: Opc = X86::FpIST16m; break;
1330 case X86::FP_TO_INT32_IN_MEM: Opc = X86::FpIST32m; break;
1331 case X86::FP_TO_INT64_IN_MEM: Opc = X86::FpIST64m; break;
1332 }
1333
1334 X86AddressMode AM;
1335 MachineOperand &Op = MI->getOperand(0);
1336 if (Op.isRegister()) {
1337 AM.BaseType = X86AddressMode::RegBase;
1338 AM.Base.Reg = Op.getReg();
1339 } else {
1340 AM.BaseType = X86AddressMode::FrameIndexBase;
1341 AM.Base.FrameIndex = Op.getFrameIndex();
1342 }
1343 Op = MI->getOperand(1);
1344 if (Op.isImmediate())
1345 AM.Scale = Op.getImmedValue();
1346 Op = MI->getOperand(2);
1347 if (Op.isImmediate())
1348 AM.IndexReg = Op.getImmedValue();
1349 Op = MI->getOperand(3);
1350 if (Op.isGlobalAddress()) {
1351 AM.GV = Op.getGlobal();
1352 } else {
1353 AM.Disp = Op.getImmedValue();
1354 }
1355 addFullAddress(BuildMI(BB, Opc, 5), AM).addReg(MI->getOperand(4).getReg());
1356
1357 // Reload the original control word now.
1358 addFrameReference(BuildMI(BB, X86::FLDCW16m, 4), CWFrameIdx);
1359
1360 delete MI; // The pseudo instruction is gone now.
1361 return BB;
1362 }
1363 }
Evan Cheng4a460802006-01-11 00:33:36 +00001364}
1365
1366
1367//===----------------------------------------------------------------------===//
1368// X86 Custom Lowering Hooks
1369//===----------------------------------------------------------------------===//
1370
Evan Cheng30b37b52006-03-13 23:18:16 +00001371/// DarwinGVRequiresExtraLoad - true if accessing the GV requires an extra
1372/// load. For Darwin, external and weak symbols are indirect, loading the value
1373/// at address GV rather then the value of GV itself. This means that the
1374/// GlobalAddress must be in the base or index register of the address, not the
1375/// GV offset field.
1376static bool DarwinGVRequiresExtraLoad(GlobalValue *GV) {
1377 return (GV->hasWeakLinkage() || GV->hasLinkOnceLinkage() ||
1378 (GV->isExternal() && !GV->hasNotBeenReadFromBytecode()));
1379}
1380
Evan Cheng0188ecb2006-03-22 18:59:22 +00001381/// isPSHUFDMask - Return true if the specified VECTOR_SHUFFLE operand
1382/// specifies a shuffle of elements that is suitable for input to PSHUFD.
1383bool X86::isPSHUFDMask(SDNode *N) {
1384 assert(N->getOpcode() == ISD::BUILD_VECTOR);
1385
1386 if (N->getNumOperands() != 4)
1387 return false;
1388
1389 // Check if the value doesn't reference the second vector.
Evan Cheng14aed5e2006-03-24 01:18:28 +00001390 for (unsigned i = 1, e = N->getNumOperands(); i != e; ++i) {
Evan Cheng0188ecb2006-03-22 18:59:22 +00001391 assert(isa<ConstantSDNode>(N->getOperand(i)) &&
1392 "Invalid VECTOR_SHUFFLE mask!");
1393 if (cast<ConstantSDNode>(N->getOperand(i))->getValue() >= 4) return false;
1394 }
1395
1396 return true;
1397}
1398
Evan Cheng14aed5e2006-03-24 01:18:28 +00001399/// isSHUFPMask - Return true if the specified VECTOR_SHUFFLE operand
1400/// specifies a shuffle of elements that is suitable for input to SHUFP*.
1401bool X86::isSHUFPMask(SDNode *N) {
1402 assert(N->getOpcode() == ISD::BUILD_VECTOR);
1403
Evan Chengbc4832b2006-03-24 23:15:12 +00001404 unsigned NumElems = N->getNumOperands();
1405 if (NumElems == 2) {
Evan Cheng2c0dbd02006-03-24 02:58:06 +00001406 // The only case that ought be handled by SHUFPD is
1407 // Dest { 2, 1 } <= shuffle( Dest { 1, 0 }, Src { 3, 2 }
1408 // Expect bit 0 == 1, bit1 == 2
1409 SDOperand Bit0 = N->getOperand(0);
1410 SDOperand Bit1 = N->getOperand(1);
1411 assert(isa<ConstantSDNode>(Bit0) && isa<ConstantSDNode>(Bit1) &&
1412 "Invalid VECTOR_SHUFFLE mask!");
1413 return (cast<ConstantSDNode>(Bit0)->getValue() == 1 &&
1414 cast<ConstantSDNode>(Bit1)->getValue() == 2);
1415 }
1416
Evan Chengbc4832b2006-03-24 23:15:12 +00001417 if (NumElems != 4) return false;
Evan Cheng14aed5e2006-03-24 01:18:28 +00001418
1419 // Each half must refer to only one of the vector.
1420 SDOperand Elt = N->getOperand(0);
1421 assert(isa<ConstantSDNode>(Elt) && "Invalid VECTOR_SHUFFLE mask!");
Evan Chengbc4832b2006-03-24 23:15:12 +00001422 for (unsigned i = 1; i != NumElems / 2; ++i) {
Evan Cheng14aed5e2006-03-24 01:18:28 +00001423 assert(isa<ConstantSDNode>(N->getOperand(i)) &&
1424 "Invalid VECTOR_SHUFFLE mask!");
1425 if (cast<ConstantSDNode>(N->getOperand(i))->getValue() !=
1426 cast<ConstantSDNode>(Elt)->getValue())
1427 return false;
1428 }
Evan Chengbc4832b2006-03-24 23:15:12 +00001429 Elt = N->getOperand(NumElems / 2);
Evan Cheng14aed5e2006-03-24 01:18:28 +00001430 assert(isa<ConstantSDNode>(Elt) && "Invalid VECTOR_SHUFFLE mask!");
Evan Chengbc4832b2006-03-24 23:15:12 +00001431 for (unsigned i = NumElems / 2; i != NumElems; ++i) {
Evan Cheng14aed5e2006-03-24 01:18:28 +00001432 assert(isa<ConstantSDNode>(N->getOperand(i)) &&
1433 "Invalid VECTOR_SHUFFLE mask!");
1434 if (cast<ConstantSDNode>(N->getOperand(i))->getValue() !=
1435 cast<ConstantSDNode>(Elt)->getValue())
1436 return false;
1437 }
1438
1439 return true;
1440}
1441
Evan Cheng2c0dbd02006-03-24 02:58:06 +00001442/// isMOVLHPSorUNPCKLPDMask - Return true if the specified VECTOR_SHUFFLE
1443/// operand specifies a shuffle of elements that is suitable for input to
1444/// MOVLHPS or UNPCKLPD.
1445bool X86::isMOVLHPSorUNPCKLPDMask(SDNode *N) {
1446 assert(N->getOpcode() == ISD::BUILD_VECTOR);
1447
1448 if (N->getNumOperands() != 2)
1449 return false;
1450
1451 // Expect bit 0 == 0, bit1 == 2
1452 SDOperand Bit0 = N->getOperand(0);
1453 SDOperand Bit1 = N->getOperand(1);
1454 assert(isa<ConstantSDNode>(Bit0) && isa<ConstantSDNode>(Bit1) &&
1455 "Invalid VECTOR_SHUFFLE mask!");
1456 return (cast<ConstantSDNode>(Bit0)->getValue() == 0 &&
1457 cast<ConstantSDNode>(Bit1)->getValue() == 2);
1458}
1459
1460/// isMOVHLPSMask - Return true if the specified VECTOR_SHUFFLE operand
1461/// specifies a shuffle of elements that is suitable for input to MOVHLPS.
1462bool X86::isMOVHLPSMask(SDNode *N) {
1463 assert(N->getOpcode() == ISD::BUILD_VECTOR);
1464
1465 if (N->getNumOperands() != 2)
1466 return false;
1467
1468 // Expect bit 0 == 0, bit1 == 3
1469 SDOperand Bit0 = N->getOperand(0);
1470 SDOperand Bit1 = N->getOperand(1);
1471 assert(isa<ConstantSDNode>(Bit0) && isa<ConstantSDNode>(Bit1) &&
1472 "Invalid VECTOR_SHUFFLE mask!");
1473 return (cast<ConstantSDNode>(Bit0)->getValue() == 0 &&
1474 cast<ConstantSDNode>(Bit1)->getValue() == 3);
1475}
1476
1477/// isUNPCKHPDMask - Return true if the specified VECTOR_SHUFFLE operand
1478/// specifies a shuffle of elements that is suitable for input to UNPCKHPD.
1479bool X86::isUNPCKHPDMask(SDNode *N) {
1480 assert(N->getOpcode() == ISD::BUILD_VECTOR);
1481
1482 if (N->getNumOperands() != 2)
1483 return false;
1484
1485 // Expect bit 0 == 1, bit1 == 3
1486 SDOperand Bit0 = N->getOperand(0);
1487 SDOperand Bit1 = N->getOperand(1);
1488 assert(isa<ConstantSDNode>(Bit0) && isa<ConstantSDNode>(Bit1) &&
1489 "Invalid VECTOR_SHUFFLE mask!");
1490 return (cast<ConstantSDNode>(Bit0)->getValue() == 1 &&
1491 cast<ConstantSDNode>(Bit1)->getValue() == 3);
1492}
1493
Evan Chengb9df0ca2006-03-22 02:53:00 +00001494/// isSplatMask - Return true if the specified VECTOR_SHUFFLE operand specifies
1495/// a splat of a single element.
1496bool X86::isSplatMask(SDNode *N) {
1497 assert(N->getOpcode() == ISD::BUILD_VECTOR);
1498
1499 // We can only splat 64-bit, and 32-bit quantities.
1500 if (N->getNumOperands() != 4 && N->getNumOperands() != 2)
1501 return false;
1502
1503 // This is a splat operation if each element of the permute is the same, and
1504 // if the value doesn't reference the second vector.
1505 SDOperand Elt = N->getOperand(0);
1506 assert(isa<ConstantSDNode>(Elt) && "Invalid VECTOR_SHUFFLE mask!");
1507 for (unsigned i = 1, e = N->getNumOperands(); i != e; ++i) {
1508 assert(isa<ConstantSDNode>(N->getOperand(i)) &&
1509 "Invalid VECTOR_SHUFFLE mask!");
1510 if (N->getOperand(i) != Elt) return false;
1511 }
1512
1513 // Make sure it is a splat of the first vector operand.
1514 return cast<ConstantSDNode>(Elt)->getValue() < N->getNumOperands();
1515}
1516
Evan Cheng63d33002006-03-22 08:01:21 +00001517/// getShuffleSHUFImmediate - Return the appropriate immediate to shuffle
1518/// the specified isShuffleMask VECTOR_SHUFFLE mask with PSHUF* and SHUFP*
1519/// instructions.
1520unsigned X86::getShuffleSHUFImmediate(SDNode *N) {
Evan Chengb9df0ca2006-03-22 02:53:00 +00001521 unsigned NumOperands = N->getNumOperands();
1522 unsigned Shift = (NumOperands == 4) ? 2 : 1;
1523 unsigned Mask = 0;
1524 unsigned i = NumOperands - 1;
1525 do {
Evan Cheng14aed5e2006-03-24 01:18:28 +00001526 unsigned Val = cast<ConstantSDNode>(N->getOperand(i))->getValue();
1527 if (Val >= NumOperands) Val -= NumOperands;
Evan Cheng63d33002006-03-22 08:01:21 +00001528 Mask |= Val;
Evan Cheng14aed5e2006-03-24 01:18:28 +00001529 Mask <<= Shift;
Evan Cheng63d33002006-03-22 08:01:21 +00001530 --i;
1531 } while (i != 0);
1532
1533 return Mask;
1534}
1535
Evan Chengbc4832b2006-03-24 23:15:12 +00001536/// isZeroVector - Return true if this build_vector is an all-zero vector.
1537///
Evan Cheng386031a2006-03-24 07:29:27 +00001538bool X86::isZeroVector(SDNode *N) {
Evan Chengbc4832b2006-03-24 23:15:12 +00001539 if (MVT::isInteger(N->getOperand(0).getValueType())) {
1540 for (unsigned i = 0, e = N->getNumOperands(); i != e; ++i)
1541 if (!isa<ConstantSDNode>(N->getOperand(i)) ||
1542 cast<ConstantSDNode>(N->getOperand(i))->getValue() != 0)
Evan Cheng386031a2006-03-24 07:29:27 +00001543 return false;
Evan Chengbc4832b2006-03-24 23:15:12 +00001544 } else {
1545 assert(MVT::isFloatingPoint(N->getOperand(0).getValueType()) &&
1546 "Vector of non-int, non-float values?");
1547 // See if this is all zeros.
1548 for (unsigned i = 0, e = N->getNumOperands(); i != e; ++i)
1549 if (!isa<ConstantFPSDNode>(N->getOperand(i)) ||
1550 !cast<ConstantFPSDNode>(N->getOperand(i))->isExactlyValue(0.0))
Evan Cheng386031a2006-03-24 07:29:27 +00001551 return false;
Evan Cheng386031a2006-03-24 07:29:27 +00001552 }
Evan Cheng386031a2006-03-24 07:29:27 +00001553 return true;
1554}
1555
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001556/// LowerOperation - Provide custom lowering hooks for some operations.
1557///
1558SDOperand X86TargetLowering::LowerOperation(SDOperand Op, SelectionDAG &DAG) {
1559 switch (Op.getOpcode()) {
1560 default: assert(0 && "Should not custom lower this!");
Evan Chenge3413162006-01-09 18:33:28 +00001561 case ISD::SHL_PARTS:
1562 case ISD::SRA_PARTS:
1563 case ISD::SRL_PARTS: {
1564 assert(Op.getNumOperands() == 3 && Op.getValueType() == MVT::i32 &&
1565 "Not an i64 shift!");
1566 bool isSRA = Op.getOpcode() == ISD::SRA_PARTS;
1567 SDOperand ShOpLo = Op.getOperand(0);
1568 SDOperand ShOpHi = Op.getOperand(1);
1569 SDOperand ShAmt = Op.getOperand(2);
1570 SDOperand Tmp1 = isSRA ? DAG.getNode(ISD::SRA, MVT::i32, ShOpHi,
Evan Cheng99fa0a12006-01-18 09:26:46 +00001571 DAG.getConstant(31, MVT::i8))
Evan Chenge3413162006-01-09 18:33:28 +00001572 : DAG.getConstant(0, MVT::i32);
1573
1574 SDOperand Tmp2, Tmp3;
1575 if (Op.getOpcode() == ISD::SHL_PARTS) {
1576 Tmp2 = DAG.getNode(X86ISD::SHLD, MVT::i32, ShOpHi, ShOpLo, ShAmt);
1577 Tmp3 = DAG.getNode(ISD::SHL, MVT::i32, ShOpLo, ShAmt);
1578 } else {
1579 Tmp2 = DAG.getNode(X86ISD::SHRD, MVT::i32, ShOpLo, ShOpHi, ShAmt);
Evan Chengb7b57062006-01-19 01:46:14 +00001580 Tmp3 = DAG.getNode(isSRA ? ISD::SRA : ISD::SRL, MVT::i32, ShOpHi, ShAmt);
Evan Chenge3413162006-01-09 18:33:28 +00001581 }
1582
1583 SDOperand InFlag = DAG.getNode(X86ISD::TEST, MVT::Flag,
1584 ShAmt, DAG.getConstant(32, MVT::i8));
1585
1586 SDOperand Hi, Lo;
Evan Cheng82a24b92006-01-09 20:49:21 +00001587 SDOperand CC = DAG.getConstant(X86ISD::COND_NE, MVT::i8);
Evan Chenge3413162006-01-09 18:33:28 +00001588
1589 std::vector<MVT::ValueType> Tys;
1590 Tys.push_back(MVT::i32);
1591 Tys.push_back(MVT::Flag);
1592 std::vector<SDOperand> Ops;
1593 if (Op.getOpcode() == ISD::SHL_PARTS) {
1594 Ops.push_back(Tmp2);
1595 Ops.push_back(Tmp3);
1596 Ops.push_back(CC);
1597 Ops.push_back(InFlag);
1598 Hi = DAG.getNode(X86ISD::CMOV, Tys, Ops);
1599 InFlag = Hi.getValue(1);
1600
1601 Ops.clear();
1602 Ops.push_back(Tmp3);
1603 Ops.push_back(Tmp1);
1604 Ops.push_back(CC);
1605 Ops.push_back(InFlag);
1606 Lo = DAG.getNode(X86ISD::CMOV, Tys, Ops);
1607 } else {
1608 Ops.push_back(Tmp2);
1609 Ops.push_back(Tmp3);
1610 Ops.push_back(CC);
Evan Cheng910cd3c2006-01-09 22:29:54 +00001611 Ops.push_back(InFlag);
Evan Chenge3413162006-01-09 18:33:28 +00001612 Lo = DAG.getNode(X86ISD::CMOV, Tys, Ops);
1613 InFlag = Lo.getValue(1);
1614
1615 Ops.clear();
1616 Ops.push_back(Tmp3);
1617 Ops.push_back(Tmp1);
1618 Ops.push_back(CC);
1619 Ops.push_back(InFlag);
1620 Hi = DAG.getNode(X86ISD::CMOV, Tys, Ops);
1621 }
1622
1623 Tys.clear();
1624 Tys.push_back(MVT::i32);
1625 Tys.push_back(MVT::i32);
1626 Ops.clear();
1627 Ops.push_back(Lo);
1628 Ops.push_back(Hi);
1629 return DAG.getNode(ISD::MERGE_VALUES, Tys, Ops);
1630 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001631 case ISD::SINT_TO_FP: {
Evan Cheng02568ff2006-01-30 22:13:22 +00001632 assert(Op.getOperand(0).getValueType() <= MVT::i64 &&
Evan Chenga3195e82006-01-12 22:54:21 +00001633 Op.getOperand(0).getValueType() >= MVT::i16 &&
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001634 "Unknown SINT_TO_FP to lower!");
Evan Chenga3195e82006-01-12 22:54:21 +00001635
1636 SDOperand Result;
1637 MVT::ValueType SrcVT = Op.getOperand(0).getValueType();
1638 unsigned Size = MVT::getSizeInBits(SrcVT)/8;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001639 MachineFunction &MF = DAG.getMachineFunction();
Evan Chenga3195e82006-01-12 22:54:21 +00001640 int SSFI = MF.getFrameInfo()->CreateStackObject(Size, Size);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001641 SDOperand StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
Evan Chenga3195e82006-01-12 22:54:21 +00001642 SDOperand Chain = DAG.getNode(ISD::STORE, MVT::Other,
1643 DAG.getEntryNode(), Op.getOperand(0),
1644 StackSlot, DAG.getSrcValue(NULL));
1645
1646 // Build the FILD
1647 std::vector<MVT::ValueType> Tys;
1648 Tys.push_back(MVT::f64);
Evan Cheng6dab0532006-01-30 08:02:57 +00001649 Tys.push_back(MVT::Other);
Evan Chenge3de85b2006-02-04 02:20:30 +00001650 if (X86ScalarSSE) Tys.push_back(MVT::Flag);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001651 std::vector<SDOperand> Ops;
Evan Chenga3195e82006-01-12 22:54:21 +00001652 Ops.push_back(Chain);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001653 Ops.push_back(StackSlot);
Evan Chenga3195e82006-01-12 22:54:21 +00001654 Ops.push_back(DAG.getValueType(SrcVT));
Evan Chenge3de85b2006-02-04 02:20:30 +00001655 Result = DAG.getNode(X86ScalarSSE ? X86ISD::FILD_FLAG :X86ISD::FILD,
1656 Tys, Ops);
Evan Cheng6dab0532006-01-30 08:02:57 +00001657
1658 if (X86ScalarSSE) {
Evan Cheng6dab0532006-01-30 08:02:57 +00001659 Chain = Result.getValue(1);
1660 SDOperand InFlag = Result.getValue(2);
1661
Evan Chenge3de85b2006-02-04 02:20:30 +00001662 // FIXME: Currently the FST is flagged to the FILD_FLAG. This
Evan Cheng6dab0532006-01-30 08:02:57 +00001663 // shouldn't be necessary except that RFP cannot be live across
1664 // multiple blocks. When stackifier is fixed, they can be uncoupled.
1665 MachineFunction &MF = DAG.getMachineFunction();
1666 int SSFI = MF.getFrameInfo()->CreateStackObject(8, 8);
1667 SDOperand StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
1668 std::vector<MVT::ValueType> Tys;
1669 Tys.push_back(MVT::Other);
1670 std::vector<SDOperand> Ops;
1671 Ops.push_back(Chain);
1672 Ops.push_back(Result);
1673 Ops.push_back(StackSlot);
Evan Cheng02568ff2006-01-30 22:13:22 +00001674 Ops.push_back(DAG.getValueType(Op.getValueType()));
Evan Cheng6dab0532006-01-30 08:02:57 +00001675 Ops.push_back(InFlag);
1676 Chain = DAG.getNode(X86ISD::FST, Tys, Ops);
1677 Result = DAG.getLoad(Op.getValueType(), Chain, StackSlot,
1678 DAG.getSrcValue(NULL));
1679 }
1680
Evan Chenga3195e82006-01-12 22:54:21 +00001681 return Result;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001682 }
1683 case ISD::FP_TO_SINT: {
1684 assert(Op.getValueType() <= MVT::i64 && Op.getValueType() >= MVT::i16 &&
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001685 "Unknown FP_TO_SINT to lower!");
1686 // We lower FP->sint64 into FISTP64, followed by a load, all to a temporary
1687 // stack slot.
1688 MachineFunction &MF = DAG.getMachineFunction();
1689 unsigned MemSize = MVT::getSizeInBits(Op.getValueType())/8;
1690 int SSFI = MF.getFrameInfo()->CreateStackObject(MemSize, MemSize);
1691 SDOperand StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
1692
1693 unsigned Opc;
1694 switch (Op.getValueType()) {
1695 default: assert(0 && "Invalid FP_TO_SINT to lower!");
1696 case MVT::i16: Opc = X86ISD::FP_TO_INT16_IN_MEM; break;
1697 case MVT::i32: Opc = X86ISD::FP_TO_INT32_IN_MEM; break;
1698 case MVT::i64: Opc = X86ISD::FP_TO_INT64_IN_MEM; break;
1699 }
1700
Evan Cheng6dab0532006-01-30 08:02:57 +00001701 SDOperand Chain = DAG.getEntryNode();
1702 SDOperand Value = Op.getOperand(0);
1703 if (X86ScalarSSE) {
1704 assert(Op.getValueType() == MVT::i64 && "Invalid FP_TO_SINT to lower!");
1705 Chain = DAG.getNode(ISD::STORE, MVT::Other, Chain, Value, StackSlot,
1706 DAG.getSrcValue(0));
1707 std::vector<MVT::ValueType> Tys;
1708 Tys.push_back(MVT::f64);
1709 Tys.push_back(MVT::Other);
1710 std::vector<SDOperand> Ops;
1711 Ops.push_back(Chain);
1712 Ops.push_back(StackSlot);
Evan Cheng02568ff2006-01-30 22:13:22 +00001713 Ops.push_back(DAG.getValueType(Op.getOperand(0).getValueType()));
Evan Cheng6dab0532006-01-30 08:02:57 +00001714 Value = DAG.getNode(X86ISD::FLD, Tys, Ops);
1715 Chain = Value.getValue(1);
1716 SSFI = MF.getFrameInfo()->CreateStackObject(MemSize, MemSize);
1717 StackSlot = DAG.getFrameIndex(SSFI, getPointerTy());
1718 }
1719
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001720 // Build the FP_TO_INT*_IN_MEM
1721 std::vector<SDOperand> Ops;
Evan Cheng6dab0532006-01-30 08:02:57 +00001722 Ops.push_back(Chain);
1723 Ops.push_back(Value);
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00001724 Ops.push_back(StackSlot);
1725 SDOperand FIST = DAG.getNode(Opc, MVT::Other, Ops);
1726
1727 // Load the result.
1728 return DAG.getLoad(Op.getValueType(), FIST, StackSlot,
1729 DAG.getSrcValue(NULL));
1730 }
Andrew Lenharthb873ff32005-11-20 21:41:10 +00001731 case ISD::READCYCLECOUNTER: {
Chris Lattner81363c32005-11-20 22:01:40 +00001732 std::vector<MVT::ValueType> Tys;
1733 Tys.push_back(MVT::Other);
1734 Tys.push_back(MVT::Flag);
1735 std::vector<SDOperand> Ops;
1736 Ops.push_back(Op.getOperand(0));
1737 SDOperand rd = DAG.getNode(X86ISD::RDTSC_DAG, Tys, Ops);
Chris Lattner81f803d2005-11-20 22:57:19 +00001738 Ops.clear();
1739 Ops.push_back(DAG.getCopyFromReg(rd, X86::EAX, MVT::i32, rd.getValue(1)));
1740 Ops.push_back(DAG.getCopyFromReg(Ops[0].getValue(1), X86::EDX,
1741 MVT::i32, Ops[0].getValue(2)));
1742 Ops.push_back(Ops[1].getValue(1));
1743 Tys[0] = Tys[1] = MVT::i32;
1744 Tys.push_back(MVT::Other);
1745 return DAG.getNode(ISD::MERGE_VALUES, Tys, Ops);
Andrew Lenharthb873ff32005-11-20 21:41:10 +00001746 }
Evan Chengef6ffb12006-01-31 03:14:29 +00001747 case ISD::FABS: {
1748 MVT::ValueType VT = Op.getValueType();
Evan Cheng223547a2006-01-31 22:28:30 +00001749 const Type *OpNTy = MVT::getTypeForValueType(VT);
1750 std::vector<Constant*> CV;
1751 if (VT == MVT::f64) {
1752 CV.push_back(ConstantFP::get(OpNTy, BitsToDouble(~(1ULL << 63))));
1753 CV.push_back(ConstantFP::get(OpNTy, 0.0));
1754 } else {
1755 CV.push_back(ConstantFP::get(OpNTy, BitsToFloat(~(1U << 31))));
1756 CV.push_back(ConstantFP::get(OpNTy, 0.0));
1757 CV.push_back(ConstantFP::get(OpNTy, 0.0));
1758 CV.push_back(ConstantFP::get(OpNTy, 0.0));
1759 }
1760 Constant *CS = ConstantStruct::get(CV);
1761 SDOperand CPIdx = DAG.getConstantPool(CS, getPointerTy(), 4);
1762 SDOperand Mask
1763 = DAG.getNode(X86ISD::LOAD_PACK,
1764 VT, DAG.getEntryNode(), CPIdx, DAG.getSrcValue(NULL));
Evan Chengef6ffb12006-01-31 03:14:29 +00001765 return DAG.getNode(X86ISD::FAND, VT, Op.getOperand(0), Mask);
1766 }
Evan Cheng223547a2006-01-31 22:28:30 +00001767 case ISD::FNEG: {
1768 MVT::ValueType VT = Op.getValueType();
1769 const Type *OpNTy = MVT::getTypeForValueType(VT);
1770 std::vector<Constant*> CV;
1771 if (VT == MVT::f64) {
1772 CV.push_back(ConstantFP::get(OpNTy, BitsToDouble(1ULL << 63)));
1773 CV.push_back(ConstantFP::get(OpNTy, 0.0));
1774 } else {
1775 CV.push_back(ConstantFP::get(OpNTy, BitsToFloat(1U << 31)));
1776 CV.push_back(ConstantFP::get(OpNTy, 0.0));
1777 CV.push_back(ConstantFP::get(OpNTy, 0.0));
1778 CV.push_back(ConstantFP::get(OpNTy, 0.0));
1779 }
1780 Constant *CS = ConstantStruct::get(CV);
1781 SDOperand CPIdx = DAG.getConstantPool(CS, getPointerTy(), 4);
1782 SDOperand Mask
1783 = DAG.getNode(X86ISD::LOAD_PACK,
1784 VT, DAG.getEntryNode(), CPIdx, DAG.getSrcValue(NULL));
1785 return DAG.getNode(X86ISD::FXOR, VT, Op.getOperand(0), Mask);
1786 }
Evan Chengd5781fc2005-12-21 20:21:51 +00001787 case ISD::SETCC: {
1788 assert(Op.getValueType() == MVT::i8 && "SetCC type must be 8-bit integer");
Evan Cheng6dfa9992006-01-30 23:41:35 +00001789 SDOperand Cond;
1790 SDOperand CC = Op.getOperand(2);
Evan Chengd9558e02006-01-06 00:43:03 +00001791 ISD::CondCode SetCCOpcode = cast<CondCodeSDNode>(CC)->get();
1792 bool isFP = MVT::isFloatingPoint(Op.getOperand(1).getValueType());
Evan Cheng6dfa9992006-01-30 23:41:35 +00001793 bool Flip;
1794 unsigned X86CC;
1795 if (translateX86CC(CC, isFP, X86CC, Flip)) {
1796 if (Flip)
1797 Cond = DAG.getNode(X86ISD::CMP, MVT::Flag,
1798 Op.getOperand(1), Op.getOperand(0));
1799 else
1800 Cond = DAG.getNode(X86ISD::CMP, MVT::Flag,
1801 Op.getOperand(0), Op.getOperand(1));
Evan Chengd9558e02006-01-06 00:43:03 +00001802 return DAG.getNode(X86ISD::SETCC, MVT::i8,
1803 DAG.getConstant(X86CC, MVT::i8), Cond);
1804 } else {
1805 assert(isFP && "Illegal integer SetCC!");
1806
Evan Cheng6dfa9992006-01-30 23:41:35 +00001807 Cond = DAG.getNode(X86ISD::CMP, MVT::Flag,
1808 Op.getOperand(0), Op.getOperand(1));
Evan Chengd9558e02006-01-06 00:43:03 +00001809 std::vector<MVT::ValueType> Tys;
1810 std::vector<SDOperand> Ops;
1811 switch (SetCCOpcode) {
1812 default: assert(false && "Illegal floating point SetCC!");
1813 case ISD::SETOEQ: { // !PF & ZF
1814 Tys.push_back(MVT::i8);
1815 Tys.push_back(MVT::Flag);
1816 Ops.push_back(DAG.getConstant(X86ISD::COND_NP, MVT::i8));
1817 Ops.push_back(Cond);
1818 SDOperand Tmp1 = DAG.getNode(X86ISD::SETCC, Tys, Ops);
1819 SDOperand Tmp2 = DAG.getNode(X86ISD::SETCC, MVT::i8,
1820 DAG.getConstant(X86ISD::COND_E, MVT::i8),
1821 Tmp1.getValue(1));
1822 return DAG.getNode(ISD::AND, MVT::i8, Tmp1, Tmp2);
1823 }
Evan Chengd9558e02006-01-06 00:43:03 +00001824 case ISD::SETUNE: { // PF | !ZF
1825 Tys.push_back(MVT::i8);
1826 Tys.push_back(MVT::Flag);
1827 Ops.push_back(DAG.getConstant(X86ISD::COND_P, MVT::i8));
1828 Ops.push_back(Cond);
1829 SDOperand Tmp1 = DAG.getNode(X86ISD::SETCC, Tys, Ops);
1830 SDOperand Tmp2 = DAG.getNode(X86ISD::SETCC, MVT::i8,
1831 DAG.getConstant(X86ISD::COND_NE, MVT::i8),
1832 Tmp1.getValue(1));
1833 return DAG.getNode(ISD::OR, MVT::i8, Tmp1, Tmp2);
1834 }
1835 }
1836 }
Evan Chengd5781fc2005-12-21 20:21:51 +00001837 }
Evan Cheng7df96d62005-12-17 01:21:05 +00001838 case ISD::SELECT: {
Evan Chengaaca22c2006-01-10 20:26:56 +00001839 MVT::ValueType VT = Op.getValueType();
1840 bool isFP = MVT::isFloatingPoint(VT);
Evan Cheng559806f2006-01-27 08:10:46 +00001841 bool isFPStack = isFP && !X86ScalarSSE;
1842 bool isFPSSE = isFP && X86ScalarSSE;
Evan Cheng1bcee362006-01-13 01:03:02 +00001843 bool addTest = false;
Evan Chengaaca22c2006-01-10 20:26:56 +00001844 SDOperand Op0 = Op.getOperand(0);
1845 SDOperand Cond, CC;
Evan Cheng6dfa9992006-01-30 23:41:35 +00001846 if (Op0.getOpcode() == ISD::SETCC)
1847 Op0 = LowerOperation(Op0, DAG);
1848
Evan Chengaaca22c2006-01-10 20:26:56 +00001849 if (Op0.getOpcode() == X86ISD::SETCC) {
Evan Cheng1bcee362006-01-13 01:03:02 +00001850 // If condition flag is set by a X86ISD::CMP, then make a copy of it
1851 // (since flag operand cannot be shared). If the X86ISD::SETCC does not
1852 // have another use it will be eliminated.
1853 // If the X86ISD::SETCC has more than one use, then it's probably better
1854 // to use a test instead of duplicating the X86ISD::CMP (for register
1855 // pressure reason).
Evan Cheng9bba8942006-01-26 02:13:10 +00001856 if (Op0.getOperand(1).getOpcode() == X86ISD::CMP) {
1857 if (!Op0.hasOneUse()) {
1858 std::vector<MVT::ValueType> Tys;
1859 for (unsigned i = 0; i < Op0.Val->getNumValues(); ++i)
1860 Tys.push_back(Op0.Val->getValueType(i));
1861 std::vector<SDOperand> Ops;
1862 for (unsigned i = 0; i < Op0.getNumOperands(); ++i)
1863 Ops.push_back(Op0.getOperand(i));
1864 Op0 = DAG.getNode(X86ISD::SETCC, Tys, Ops);
1865 }
1866
Evan Cheng1bcee362006-01-13 01:03:02 +00001867 CC = Op0.getOperand(0);
1868 Cond = Op0.getOperand(1);
Evan Cheng0d718e92006-01-25 09:05:09 +00001869 // Make a copy as flag result cannot be used by more than one.
1870 Cond = DAG.getNode(X86ISD::CMP, MVT::Flag,
1871 Cond.getOperand(0), Cond.getOperand(1));
Evan Cheng1bcee362006-01-13 01:03:02 +00001872 addTest =
Evan Cheng80ebe382006-01-13 01:17:24 +00001873 isFPStack && !hasFPCMov(cast<ConstantSDNode>(CC)->getSignExtended());
Evan Cheng1bcee362006-01-13 01:03:02 +00001874 } else
1875 addTest = true;
Evan Cheng1bcee362006-01-13 01:03:02 +00001876 } else
1877 addTest = true;
Evan Chengaaca22c2006-01-10 20:26:56 +00001878
Evan Cheng189d01e2006-01-13 01:06:49 +00001879 if (addTest) {
Evan Chenge90da972006-01-13 19:51:46 +00001880 CC = DAG.getConstant(X86ISD::COND_NE, MVT::i8);
Evan Chengaaca22c2006-01-10 20:26:56 +00001881 Cond = DAG.getNode(X86ISD::TEST, MVT::Flag, Op0, Op0);
Evan Cheng7df96d62005-12-17 01:21:05 +00001882 }
Evan Chenge3413162006-01-09 18:33:28 +00001883
1884 std::vector<MVT::ValueType> Tys;
1885 Tys.push_back(Op.getValueType());
1886 Tys.push_back(MVT::Flag);
1887 std::vector<SDOperand> Ops;
Evan Chenge90da972006-01-13 19:51:46 +00001888 // X86ISD::CMOV means set the result (which is operand 1) to the RHS if
1889 // condition is true.
Evan Chenge3413162006-01-09 18:33:28 +00001890 Ops.push_back(Op.getOperand(2));
Evan Chenge90da972006-01-13 19:51:46 +00001891 Ops.push_back(Op.getOperand(1));
Evan Chenge3413162006-01-09 18:33:28 +00001892 Ops.push_back(CC);
1893 Ops.push_back(Cond);
1894 return DAG.getNode(X86ISD::CMOV, Tys, Ops);
Evan Cheng7df96d62005-12-17 01:21:05 +00001895 }
Evan Cheng898101c2005-12-19 23:12:38 +00001896 case ISD::BRCOND: {
Evan Cheng1bcee362006-01-13 01:03:02 +00001897 bool addTest = false;
Evan Cheng898101c2005-12-19 23:12:38 +00001898 SDOperand Cond = Op.getOperand(1);
1899 SDOperand Dest = Op.getOperand(2);
1900 SDOperand CC;
Evan Cheng6dfa9992006-01-30 23:41:35 +00001901 if (Cond.getOpcode() == ISD::SETCC)
1902 Cond = LowerOperation(Cond, DAG);
1903
Evan Chengd5781fc2005-12-21 20:21:51 +00001904 if (Cond.getOpcode() == X86ISD::SETCC) {
Evan Cheng1bcee362006-01-13 01:03:02 +00001905 // If condition flag is set by a X86ISD::CMP, then make a copy of it
1906 // (since flag operand cannot be shared). If the X86ISD::SETCC does not
1907 // have another use it will be eliminated.
1908 // If the X86ISD::SETCC has more than one use, then it's probably better
1909 // to use a test instead of duplicating the X86ISD::CMP (for register
1910 // pressure reason).
Evan Cheng9bba8942006-01-26 02:13:10 +00001911 if (Cond.getOperand(1).getOpcode() == X86ISD::CMP) {
1912 if (!Cond.hasOneUse()) {
1913 std::vector<MVT::ValueType> Tys;
1914 for (unsigned i = 0; i < Cond.Val->getNumValues(); ++i)
1915 Tys.push_back(Cond.Val->getValueType(i));
1916 std::vector<SDOperand> Ops;
1917 for (unsigned i = 0; i < Cond.getNumOperands(); ++i)
1918 Ops.push_back(Cond.getOperand(i));
1919 Cond = DAG.getNode(X86ISD::SETCC, Tys, Ops);
1920 }
1921
Evan Cheng1bcee362006-01-13 01:03:02 +00001922 CC = Cond.getOperand(0);
Evan Cheng0d718e92006-01-25 09:05:09 +00001923 Cond = Cond.getOperand(1);
1924 // Make a copy as flag result cannot be used by more than one.
Evan Cheng1bcee362006-01-13 01:03:02 +00001925 Cond = DAG.getNode(X86ISD::CMP, MVT::Flag,
Evan Cheng0d718e92006-01-25 09:05:09 +00001926 Cond.getOperand(0), Cond.getOperand(1));
Evan Cheng1bcee362006-01-13 01:03:02 +00001927 } else
1928 addTest = true;
Evan Cheng1bcee362006-01-13 01:03:02 +00001929 } else
1930 addTest = true;
1931
1932 if (addTest) {
Evan Chengd9558e02006-01-06 00:43:03 +00001933 CC = DAG.getConstant(X86ISD::COND_NE, MVT::i8);
Evan Cheng898101c2005-12-19 23:12:38 +00001934 Cond = DAG.getNode(X86ISD::TEST, MVT::Flag, Cond, Cond);
1935 }
1936 return DAG.getNode(X86ISD::BRCOND, Op.getValueType(),
1937 Op.getOperand(0), Op.getOperand(2), CC, Cond);
1938 }
Evan Cheng67f92a72006-01-11 22:15:48 +00001939 case ISD::MEMSET: {
Evan Cheng62bec2c2006-03-04 02:48:56 +00001940 SDOperand InFlag(0, 0);
Evan Cheng67f92a72006-01-11 22:15:48 +00001941 SDOperand Chain = Op.getOperand(0);
1942 unsigned Align =
1943 (unsigned)cast<ConstantSDNode>(Op.getOperand(4))->getValue();
1944 if (Align == 0) Align = 1;
1945
Evan Cheng18a84522006-02-16 00:21:07 +00001946 ConstantSDNode *I = dyn_cast<ConstantSDNode>(Op.getOperand(3));
1947 // If not DWORD aligned, call memset if size is less than the threshold.
1948 // It knows how to align to the right boundary first.
Evan Cheng62bec2c2006-03-04 02:48:56 +00001949 if ((Align & 3) != 0 ||
Evan Chengff909922006-03-07 23:29:39 +00001950 (I && I->getValue() < Subtarget->getMinRepStrSizeThreshold())) {
Evan Cheng18a84522006-02-16 00:21:07 +00001951 MVT::ValueType IntPtr = getPointerTy();
1952 const Type *IntPtrTy = getTargetData().getIntPtrType();
1953 std::vector<std::pair<SDOperand, const Type*> > Args;
1954 Args.push_back(std::make_pair(Op.getOperand(1), IntPtrTy));
1955 // Extend the ubyte argument to be an int value for the call.
1956 SDOperand Val = DAG.getNode(ISD::ZERO_EXTEND, MVT::i32, Op.getOperand(2));
1957 Args.push_back(std::make_pair(Val, IntPtrTy));
1958 Args.push_back(std::make_pair(Op.getOperand(3), IntPtrTy));
1959 std::pair<SDOperand,SDOperand> CallResult =
1960 LowerCallTo(Chain, Type::VoidTy, false, CallingConv::C, false,
1961 DAG.getExternalSymbol("memset", IntPtr), Args, DAG);
1962 return CallResult.second;
1963 }
1964
Evan Cheng67f92a72006-01-11 22:15:48 +00001965 MVT::ValueType AVT;
1966 SDOperand Count;
Evan Cheng62bec2c2006-03-04 02:48:56 +00001967 ConstantSDNode *ValC = dyn_cast<ConstantSDNode>(Op.getOperand(2));
1968 unsigned BytesLeft = 0;
Evan Chengff909922006-03-07 23:29:39 +00001969 bool TwoRepStos = false;
Evan Cheng62bec2c2006-03-04 02:48:56 +00001970 if (ValC) {
Evan Cheng67f92a72006-01-11 22:15:48 +00001971 unsigned ValReg;
1972 unsigned Val = ValC->getValue() & 255;
1973
1974 // If the value is a constant, then we can potentially use larger sets.
1975 switch (Align & 3) {
1976 case 2: // WORD aligned
1977 AVT = MVT::i16;
Evan Cheng62bec2c2006-03-04 02:48:56 +00001978 Count = DAG.getConstant(I->getValue() / 2, MVT::i32);
1979 BytesLeft = I->getValue() % 2;
Evan Cheng67f92a72006-01-11 22:15:48 +00001980 Val = (Val << 8) | Val;
1981 ValReg = X86::AX;
1982 break;
1983 case 0: // DWORD aligned
1984 AVT = MVT::i32;
Evan Chengff909922006-03-07 23:29:39 +00001985 if (I) {
1986 Count = DAG.getConstant(I->getValue() / 4, MVT::i32);
1987 BytesLeft = I->getValue() % 4;
1988 } else {
1989 Count = DAG.getNode(ISD::SRL, MVT::i32, Op.getOperand(3),
1990 DAG.getConstant(2, MVT::i8));
1991 TwoRepStos = true;
1992 }
Evan Cheng67f92a72006-01-11 22:15:48 +00001993 Val = (Val << 8) | Val;
1994 Val = (Val << 16) | Val;
1995 ValReg = X86::EAX;
1996 break;
1997 default: // Byte aligned
1998 AVT = MVT::i8;
1999 Count = Op.getOperand(3);
2000 ValReg = X86::AL;
2001 break;
2002 }
2003
2004 Chain = DAG.getCopyToReg(Chain, ValReg, DAG.getConstant(Val, AVT),
2005 InFlag);
2006 InFlag = Chain.getValue(1);
2007 } else {
Evan Cheng18a84522006-02-16 00:21:07 +00002008 AVT = MVT::i8;
Evan Cheng67f92a72006-01-11 22:15:48 +00002009 Count = Op.getOperand(3);
2010 Chain = DAG.getCopyToReg(Chain, X86::AL, Op.getOperand(2), InFlag);
2011 InFlag = Chain.getValue(1);
2012 }
2013
2014 Chain = DAG.getCopyToReg(Chain, X86::ECX, Count, InFlag);
2015 InFlag = Chain.getValue(1);
2016 Chain = DAG.getCopyToReg(Chain, X86::EDI, Op.getOperand(1), InFlag);
2017 InFlag = Chain.getValue(1);
2018
Evan Chengff909922006-03-07 23:29:39 +00002019 std::vector<MVT::ValueType> Tys;
2020 Tys.push_back(MVT::Other);
2021 Tys.push_back(MVT::Flag);
2022 std::vector<SDOperand> Ops;
2023 Ops.push_back(Chain);
2024 Ops.push_back(DAG.getValueType(AVT));
2025 Ops.push_back(InFlag);
2026 Chain = DAG.getNode(X86ISD::REP_STOS, Tys, Ops);
2027
2028 if (TwoRepStos) {
2029 InFlag = Chain.getValue(1);
2030 Count = Op.getOperand(3);
2031 MVT::ValueType CVT = Count.getValueType();
2032 SDOperand Left = DAG.getNode(ISD::AND, CVT, Count,
2033 DAG.getConstant(3, CVT));
2034 Chain = DAG.getCopyToReg(Chain, X86::ECX, Left, InFlag);
2035 InFlag = Chain.getValue(1);
2036 Tys.clear();
2037 Tys.push_back(MVT::Other);
2038 Tys.push_back(MVT::Flag);
2039 Ops.clear();
2040 Ops.push_back(Chain);
2041 Ops.push_back(DAG.getValueType(MVT::i8));
2042 Ops.push_back(InFlag);
2043 Chain = DAG.getNode(X86ISD::REP_STOS, Tys, Ops);
2044 } else if (BytesLeft) {
Evan Cheng62bec2c2006-03-04 02:48:56 +00002045 // Issue stores for the last 1 - 3 bytes.
2046 SDOperand Value;
2047 unsigned Val = ValC->getValue() & 255;
2048 unsigned Offset = I->getValue() - BytesLeft;
2049 SDOperand DstAddr = Op.getOperand(1);
2050 MVT::ValueType AddrVT = DstAddr.getValueType();
2051 if (BytesLeft >= 2) {
2052 Value = DAG.getConstant((Val << 8) | Val, MVT::i16);
2053 Chain = DAG.getNode(ISD::STORE, MVT::Other, Chain, Value,
2054 DAG.getNode(ISD::ADD, AddrVT, DstAddr,
2055 DAG.getConstant(Offset, AddrVT)),
2056 DAG.getSrcValue(NULL));
2057 BytesLeft -= 2;
2058 Offset += 2;
2059 }
2060
2061 if (BytesLeft == 1) {
2062 Value = DAG.getConstant(Val, MVT::i8);
2063 Chain = DAG.getNode(ISD::STORE, MVT::Other, Chain, Value,
2064 DAG.getNode(ISD::ADD, AddrVT, DstAddr,
2065 DAG.getConstant(Offset, AddrVT)),
2066 DAG.getSrcValue(NULL));
2067 }
2068 }
2069
2070 return Chain;
Evan Cheng67f92a72006-01-11 22:15:48 +00002071 }
2072 case ISD::MEMCPY: {
2073 SDOperand Chain = Op.getOperand(0);
2074 unsigned Align =
2075 (unsigned)cast<ConstantSDNode>(Op.getOperand(4))->getValue();
2076 if (Align == 0) Align = 1;
2077
Evan Cheng18a84522006-02-16 00:21:07 +00002078 ConstantSDNode *I = dyn_cast<ConstantSDNode>(Op.getOperand(3));
2079 // If not DWORD aligned, call memcpy if size is less than the threshold.
2080 // It knows how to align to the right boundary first.
Evan Cheng62bec2c2006-03-04 02:48:56 +00002081 if ((Align & 3) != 0 ||
Evan Chengff909922006-03-07 23:29:39 +00002082 (I && I->getValue() < Subtarget->getMinRepStrSizeThreshold())) {
Evan Cheng18a84522006-02-16 00:21:07 +00002083 MVT::ValueType IntPtr = getPointerTy();
2084 const Type *IntPtrTy = getTargetData().getIntPtrType();
2085 std::vector<std::pair<SDOperand, const Type*> > Args;
2086 Args.push_back(std::make_pair(Op.getOperand(1), IntPtrTy));
2087 Args.push_back(std::make_pair(Op.getOperand(2), IntPtrTy));
2088 Args.push_back(std::make_pair(Op.getOperand(3), IntPtrTy));
2089 std::pair<SDOperand,SDOperand> CallResult =
2090 LowerCallTo(Chain, Type::VoidTy, false, CallingConv::C, false,
2091 DAG.getExternalSymbol("memcpy", IntPtr), Args, DAG);
2092 return CallResult.second;
2093 }
2094
Evan Cheng67f92a72006-01-11 22:15:48 +00002095 MVT::ValueType AVT;
2096 SDOperand Count;
Evan Cheng62bec2c2006-03-04 02:48:56 +00002097 unsigned BytesLeft = 0;
Evan Chengff909922006-03-07 23:29:39 +00002098 bool TwoRepMovs = false;
Evan Cheng67f92a72006-01-11 22:15:48 +00002099 switch (Align & 3) {
2100 case 2: // WORD aligned
2101 AVT = MVT::i16;
Evan Cheng62bec2c2006-03-04 02:48:56 +00002102 Count = DAG.getConstant(I->getValue() / 2, MVT::i32);
2103 BytesLeft = I->getValue() % 2;
Evan Cheng67f92a72006-01-11 22:15:48 +00002104 break;
2105 case 0: // DWORD aligned
2106 AVT = MVT::i32;
Evan Chengff909922006-03-07 23:29:39 +00002107 if (I) {
2108 Count = DAG.getConstant(I->getValue() / 4, MVT::i32);
2109 BytesLeft = I->getValue() % 4;
2110 } else {
2111 Count = DAG.getNode(ISD::SRL, MVT::i32, Op.getOperand(3),
2112 DAG.getConstant(2, MVT::i8));
2113 TwoRepMovs = true;
2114 }
Evan Cheng67f92a72006-01-11 22:15:48 +00002115 break;
2116 default: // Byte aligned
2117 AVT = MVT::i8;
2118 Count = Op.getOperand(3);
2119 break;
2120 }
2121
Evan Cheng62bec2c2006-03-04 02:48:56 +00002122 SDOperand InFlag(0, 0);
Evan Cheng67f92a72006-01-11 22:15:48 +00002123 Chain = DAG.getCopyToReg(Chain, X86::ECX, Count, InFlag);
2124 InFlag = Chain.getValue(1);
2125 Chain = DAG.getCopyToReg(Chain, X86::EDI, Op.getOperand(1), InFlag);
2126 InFlag = Chain.getValue(1);
2127 Chain = DAG.getCopyToReg(Chain, X86::ESI, Op.getOperand(2), InFlag);
2128 InFlag = Chain.getValue(1);
2129
Evan Chengff909922006-03-07 23:29:39 +00002130 std::vector<MVT::ValueType> Tys;
2131 Tys.push_back(MVT::Other);
2132 Tys.push_back(MVT::Flag);
2133 std::vector<SDOperand> Ops;
2134 Ops.push_back(Chain);
2135 Ops.push_back(DAG.getValueType(AVT));
2136 Ops.push_back(InFlag);
2137 Chain = DAG.getNode(X86ISD::REP_MOVS, Tys, Ops);
2138
2139 if (TwoRepMovs) {
2140 InFlag = Chain.getValue(1);
2141 Count = Op.getOperand(3);
2142 MVT::ValueType CVT = Count.getValueType();
2143 SDOperand Left = DAG.getNode(ISD::AND, CVT, Count,
2144 DAG.getConstant(3, CVT));
2145 Chain = DAG.getCopyToReg(Chain, X86::ECX, Left, InFlag);
2146 InFlag = Chain.getValue(1);
2147 Tys.clear();
2148 Tys.push_back(MVT::Other);
2149 Tys.push_back(MVT::Flag);
2150 Ops.clear();
2151 Ops.push_back(Chain);
2152 Ops.push_back(DAG.getValueType(MVT::i8));
2153 Ops.push_back(InFlag);
2154 Chain = DAG.getNode(X86ISD::REP_MOVS, Tys, Ops);
2155 } else if (BytesLeft) {
Evan Cheng62bec2c2006-03-04 02:48:56 +00002156 // Issue loads and stores for the last 1 - 3 bytes.
2157 unsigned Offset = I->getValue() - BytesLeft;
2158 SDOperand DstAddr = Op.getOperand(1);
2159 MVT::ValueType DstVT = DstAddr.getValueType();
2160 SDOperand SrcAddr = Op.getOperand(2);
2161 MVT::ValueType SrcVT = SrcAddr.getValueType();
2162 SDOperand Value;
2163 if (BytesLeft >= 2) {
2164 Value = DAG.getLoad(MVT::i16, Chain,
2165 DAG.getNode(ISD::ADD, SrcVT, SrcAddr,
2166 DAG.getConstant(Offset, SrcVT)),
2167 DAG.getSrcValue(NULL));
2168 Chain = Value.getValue(1);
2169 Chain = DAG.getNode(ISD::STORE, MVT::Other, Chain, Value,
2170 DAG.getNode(ISD::ADD, DstVT, DstAddr,
2171 DAG.getConstant(Offset, DstVT)),
2172 DAG.getSrcValue(NULL));
2173 BytesLeft -= 2;
2174 Offset += 2;
2175 }
2176
2177 if (BytesLeft == 1) {
2178 Value = DAG.getLoad(MVT::i8, Chain,
2179 DAG.getNode(ISD::ADD, SrcVT, SrcAddr,
2180 DAG.getConstant(Offset, SrcVT)),
2181 DAG.getSrcValue(NULL));
2182 Chain = Value.getValue(1);
2183 Chain = DAG.getNode(ISD::STORE, MVT::Other, Chain, Value,
2184 DAG.getNode(ISD::ADD, DstVT, DstAddr,
2185 DAG.getConstant(Offset, DstVT)),
2186 DAG.getSrcValue(NULL));
2187 }
2188 }
2189
2190 return Chain;
Evan Cheng67f92a72006-01-11 22:15:48 +00002191 }
Evan Chengbbbb2fb2006-02-25 09:55:19 +00002192
2193 // ConstantPool, GlobalAddress, and ExternalSymbol are lowered as their
2194 // target countpart wrapped in the X86ISD::Wrapper node. Suppose N is
2195 // one of the above mentioned nodes. It has to be wrapped because otherwise
2196 // Select(N) returns N. So the raw TargetGlobalAddress nodes, etc. can only
2197 // be used to form addressing mode. These wrapped nodes will be selected
2198 // into MOV32ri.
Evan Cheng7ccced62006-02-18 00:15:05 +00002199 case ISD::ConstantPool: {
2200 ConstantPoolSDNode *CP = cast<ConstantPoolSDNode>(Op);
Evan Cheng020d2e82006-02-23 20:41:18 +00002201 SDOperand Result = DAG.getNode(X86ISD::Wrapper, getPointerTy(),
2202 DAG.getTargetConstantPool(CP->get(), getPointerTy(),
2203 CP->getAlignment()));
Evan Chenga88973f2006-03-22 19:22:18 +00002204 if (Subtarget->isTargetDarwin()) {
Evan Cheng7ccced62006-02-18 00:15:05 +00002205 // With PIC, the address is actually $g + Offset.
Evan Cheng4c1aa862006-02-22 20:19:42 +00002206 if (getTargetMachine().getRelocationModel() == Reloc::PIC)
Evan Cheng7ccced62006-02-18 00:15:05 +00002207 Result = DAG.getNode(ISD::ADD, getPointerTy(),
2208 DAG.getNode(X86ISD::GlobalBaseReg, getPointerTy()), Result);
2209 }
2210
2211 return Result;
2212 }
Evan Cheng38bcbaf2005-12-23 07:31:11 +00002213 case ISD::GlobalAddress: {
Evan Cheng020d2e82006-02-23 20:41:18 +00002214 GlobalValue *GV = cast<GlobalAddressSDNode>(Op)->getGlobal();
2215 SDOperand Result = DAG.getNode(X86ISD::Wrapper, getPointerTy(),
2216 DAG.getTargetGlobalAddress(GV, getPointerTy()));
Evan Chenga88973f2006-03-22 19:22:18 +00002217 if (Subtarget->isTargetDarwin()) {
Evan Cheng7ccced62006-02-18 00:15:05 +00002218 // With PIC, the address is actually $g + Offset.
Evan Cheng4c1aa862006-02-22 20:19:42 +00002219 if (getTargetMachine().getRelocationModel() == Reloc::PIC)
Evan Chenga0ea0532006-02-23 02:43:52 +00002220 Result = DAG.getNode(ISD::ADD, getPointerTy(),
2221 DAG.getNode(X86ISD::GlobalBaseReg, getPointerTy()), Result);
Evan Cheng7ccced62006-02-18 00:15:05 +00002222
2223 // For Darwin, external and weak symbols are indirect, so we want to load
Evan Cheng30b37b52006-03-13 23:18:16 +00002224 // the value at address GV, not the value of GV itself. This means that
Evan Cheng7ccced62006-02-18 00:15:05 +00002225 // the GlobalAddress must be in the base or index register of the address,
2226 // not the GV offset field.
Evan Cheng4c1aa862006-02-22 20:19:42 +00002227 if (getTargetMachine().getRelocationModel() != Reloc::Static &&
Evan Cheng30b37b52006-03-13 23:18:16 +00002228 DarwinGVRequiresExtraLoad(GV))
Evan Cheng2338c5c2006-02-07 08:38:37 +00002229 Result = DAG.getLoad(MVT::i32, DAG.getEntryNode(),
Evan Chenga0ea0532006-02-23 02:43:52 +00002230 Result, DAG.getSrcValue(NULL));
Evan Cheng2338c5c2006-02-07 08:38:37 +00002231 }
Evan Cheng7ccced62006-02-18 00:15:05 +00002232
Evan Cheng002fe9b2006-01-12 07:56:47 +00002233 return Result;
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002234 }
Evan Cheng020d2e82006-02-23 20:41:18 +00002235 case ISD::ExternalSymbol: {
2236 const char *Sym = cast<ExternalSymbolSDNode>(Op)->getSymbol();
2237 SDOperand Result = DAG.getNode(X86ISD::Wrapper, getPointerTy(),
2238 DAG.getTargetExternalSymbol(Sym, getPointerTy()));
Evan Chenga88973f2006-03-22 19:22:18 +00002239 if (Subtarget->isTargetDarwin()) {
Evan Cheng020d2e82006-02-23 20:41:18 +00002240 // With PIC, the address is actually $g + Offset.
2241 if (getTargetMachine().getRelocationModel() == Reloc::PIC)
2242 Result = DAG.getNode(ISD::ADD, getPointerTy(),
2243 DAG.getNode(X86ISD::GlobalBaseReg, getPointerTy()), Result);
2244 }
2245
2246 return Result;
2247 }
Nate Begemanacc398c2006-01-25 18:21:52 +00002248 case ISD::VASTART: {
2249 // vastart just stores the address of the VarArgsFrameIndex slot into the
2250 // memory location argument.
2251 // FIXME: Replace MVT::i32 with PointerTy
2252 SDOperand FR = DAG.getFrameIndex(VarArgsFrameIndex, MVT::i32);
2253 return DAG.getNode(ISD::STORE, MVT::Other, Op.getOperand(0), FR,
2254 Op.getOperand(1), Op.getOperand(2));
2255 }
Nate Begemanee625572006-01-27 21:09:22 +00002256 case ISD::RET: {
2257 SDOperand Copy;
2258
2259 switch(Op.getNumOperands()) {
2260 default:
2261 assert(0 && "Do not know how to return this many arguments!");
2262 abort();
2263 case 1:
2264 return DAG.getNode(X86ISD::RET_FLAG, MVT::Other, Op.getOperand(0),
2265 DAG.getConstant(getBytesToPopOnReturn(), MVT::i16));
2266 case 2: {
2267 MVT::ValueType ArgVT = Op.getOperand(1).getValueType();
2268 if (MVT::isInteger(ArgVT))
2269 Copy = DAG.getCopyToReg(Op.getOperand(0), X86::EAX, Op.getOperand(1),
2270 SDOperand());
2271 else if (!X86ScalarSSE) {
2272 std::vector<MVT::ValueType> Tys;
2273 Tys.push_back(MVT::Other);
2274 Tys.push_back(MVT::Flag);
2275 std::vector<SDOperand> Ops;
2276 Ops.push_back(Op.getOperand(0));
2277 Ops.push_back(Op.getOperand(1));
2278 Copy = DAG.getNode(X86ISD::FP_SET_RESULT, Tys, Ops);
2279 } else {
Evan Cheng0d084c92006-02-01 00:20:21 +00002280 SDOperand MemLoc;
2281 SDOperand Chain = Op.getOperand(0);
Evan Cheng0e8671b2006-01-31 23:19:54 +00002282 SDOperand Value = Op.getOperand(1);
2283
Evan Cheng760df292006-02-01 01:19:32 +00002284 if (Value.getOpcode() == ISD::LOAD &&
2285 (Chain == Value.getValue(1) || Chain == Value.getOperand(0))) {
Evan Cheng0e8671b2006-01-31 23:19:54 +00002286 Chain = Value.getOperand(0);
2287 MemLoc = Value.getOperand(1);
2288 } else {
2289 // Spill the value to memory and reload it into top of stack.
2290 unsigned Size = MVT::getSizeInBits(ArgVT)/8;
2291 MachineFunction &MF = DAG.getMachineFunction();
2292 int SSFI = MF.getFrameInfo()->CreateStackObject(Size, Size);
2293 MemLoc = DAG.getFrameIndex(SSFI, getPointerTy());
2294 Chain = DAG.getNode(ISD::STORE, MVT::Other, Op.getOperand(0),
2295 Value, MemLoc, DAG.getSrcValue(0));
2296 }
Nate Begemanee625572006-01-27 21:09:22 +00002297 std::vector<MVT::ValueType> Tys;
2298 Tys.push_back(MVT::f64);
2299 Tys.push_back(MVT::Other);
2300 std::vector<SDOperand> Ops;
2301 Ops.push_back(Chain);
Evan Cheng0e8671b2006-01-31 23:19:54 +00002302 Ops.push_back(MemLoc);
Nate Begemanee625572006-01-27 21:09:22 +00002303 Ops.push_back(DAG.getValueType(ArgVT));
2304 Copy = DAG.getNode(X86ISD::FLD, Tys, Ops);
2305 Tys.clear();
2306 Tys.push_back(MVT::Other);
2307 Tys.push_back(MVT::Flag);
2308 Ops.clear();
2309 Ops.push_back(Copy.getValue(1));
2310 Ops.push_back(Copy);
2311 Copy = DAG.getNode(X86ISD::FP_SET_RESULT, Tys, Ops);
2312 }
2313 break;
2314 }
2315 case 3:
2316 Copy = DAG.getCopyToReg(Op.getOperand(0), X86::EDX, Op.getOperand(2),
2317 SDOperand());
2318 Copy = DAG.getCopyToReg(Copy, X86::EAX,Op.getOperand(1),Copy.getValue(1));
2319 break;
2320 }
2321 return DAG.getNode(X86ISD::RET_FLAG, MVT::Other,
2322 Copy, DAG.getConstant(getBytesToPopOnReturn(), MVT::i16),
2323 Copy.getValue(1));
2324 }
Evan Cheng48090aa2006-03-21 23:01:21 +00002325 case ISD::SCALAR_TO_VECTOR: {
2326 SDOperand AnyExt = DAG.getNode(ISD::ANY_EXTEND, MVT::i32, Op.getOperand(0));
Evan Chengbc4832b2006-03-24 23:15:12 +00002327 return DAG.getNode(X86ISD::S2VEC, Op.getValueType(), AnyExt);
Evan Cheng48090aa2006-03-21 23:01:21 +00002328 }
Evan Chengb9df0ca2006-03-22 02:53:00 +00002329 case ISD::VECTOR_SHUFFLE: {
2330 SDOperand V1 = Op.getOperand(0);
2331 SDOperand V2 = Op.getOperand(1);
2332 SDOperand PermMask = Op.getOperand(2);
2333 MVT::ValueType VT = Op.getValueType();
Evan Cheng2c0dbd02006-03-24 02:58:06 +00002334 unsigned NumElems = PermMask.getNumOperands();
Evan Chengb9df0ca2006-03-22 02:53:00 +00002335
Evan Cheng0188ecb2006-03-22 18:59:22 +00002336 // Handle splat cases.
2337 if (X86::isSplatMask(PermMask.Val)) {
2338 if (V2.getOpcode() == ISD::UNDEF)
Evan Chengb9df0ca2006-03-22 02:53:00 +00002339 // Leave the VECTOR_SHUFFLE alone. It matches SHUFP*.
Chris Lattner6df11542006-03-22 04:18:34 +00002340 return SDOperand();
Evan Cheng0188ecb2006-03-22 18:59:22 +00002341 else
2342 // Make it match SHUFP* or UNPCKLPD. Second vector is undef since it's
2343 // not needed.
2344 return DAG.getNode(ISD::VECTOR_SHUFFLE, VT, V1,
2345 DAG.getNode(ISD::UNDEF, V1.getValueType()),
2346 PermMask);
Evan Chengbc4832b2006-03-24 23:15:12 +00002347 } else if (NumElems == 2) {
2348 // All v2f64 cases are handled.
2349 return SDOperand();
Evan Cheng14aed5e2006-03-24 01:18:28 +00002350 } else if (X86::isPSHUFDMask(PermMask.Val)) {
Evan Cheng0188ecb2006-03-22 18:59:22 +00002351 if (V2.getOpcode() == ISD::UNDEF)
Evan Chengb9df0ca2006-03-22 02:53:00 +00002352 // Leave the VECTOR_SHUFFLE alone. It matches PSHUFD.
Chris Lattner6df11542006-03-22 04:18:34 +00002353 return SDOperand();
Evan Cheng0188ecb2006-03-22 18:59:22 +00002354 else
2355 // Make it match PSHUFD. Second vector is undef since it's not needed.
2356 return DAG.getNode(ISD::VECTOR_SHUFFLE, VT, V1,
2357 DAG.getNode(ISD::UNDEF, V1.getValueType()),
2358 PermMask);
Evan Cheng5217a5b2006-03-24 06:40:32 +00002359 } else if (X86::isSHUFPMask(PermMask.Val)) {
Evan Cheng14aed5e2006-03-24 01:18:28 +00002360 SDOperand Elt = PermMask.getOperand(0);
2361 if (cast<ConstantSDNode>(Elt)->getValue() >= NumElems) {
2362 // Swap the operands and change mask.
2363 std::vector<SDOperand> MaskVec;
2364 for (unsigned i = NumElems / 2; i != NumElems; ++i)
2365 MaskVec.push_back(PermMask.getOperand(i));
2366 for (unsigned i = 0; i != NumElems / 2; ++i)
2367 MaskVec.push_back(PermMask.getOperand(i));
2368 PermMask =
2369 DAG.getNode(ISD::BUILD_VECTOR, PermMask.getValueType(), MaskVec);
2370 return DAG.getNode(ISD::VECTOR_SHUFFLE, VT, V2, V1, PermMask);
2371 }
2372 return SDOperand();
Evan Chengb9df0ca2006-03-22 02:53:00 +00002373 }
2374
Evan Cheng386031a2006-03-24 07:29:27 +00002375 assert(0 && "Unexpected VECTOR_SHUFFLE to lower");
Chris Lattner6df11542006-03-22 04:18:34 +00002376 abort();
Evan Chengb9df0ca2006-03-22 02:53:00 +00002377 }
Evan Cheng386031a2006-03-24 07:29:27 +00002378 case ISD::BUILD_VECTOR: {
Evan Chengbc4832b2006-03-24 23:15:12 +00002379 SDOperand Elt0 = Op.getOperand(0);
2380 bool Elt0IsZero = (isa<ConstantSDNode>(Elt0) &&
2381 cast<ConstantSDNode>(Elt0)->getValue() == 0) ||
2382 (isa<ConstantFPSDNode>(Elt0) &&
2383 cast<ConstantFPSDNode>(Elt0)->isExactlyValue(0.0));
2384 bool RestAreZero = true;
Evan Cheng386031a2006-03-24 07:29:27 +00002385 unsigned NumElems = Op.getNumOperands();
Evan Chengbc4832b2006-03-24 23:15:12 +00002386 for (unsigned i = 1; i < NumElems; ++i) {
Evan Cheng386031a2006-03-24 07:29:27 +00002387 SDOperand V = Op.getOperand(i);
2388 if (ConstantFPSDNode *FPC = dyn_cast<ConstantFPSDNode>(V)) {
2389 if (!FPC->isExactlyValue(+0.0))
Evan Chengbc4832b2006-03-24 23:15:12 +00002390 RestAreZero = false;
Evan Cheng386031a2006-03-24 07:29:27 +00002391 } else if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(V)) {
2392 if (!C->isNullValue())
Evan Chengbc4832b2006-03-24 23:15:12 +00002393 RestAreZero = false;
Evan Cheng386031a2006-03-24 07:29:27 +00002394 } else
Evan Chengbc4832b2006-03-24 23:15:12 +00002395 RestAreZero = false;
Evan Cheng386031a2006-03-24 07:29:27 +00002396 }
2397
Evan Chengbc4832b2006-03-24 23:15:12 +00002398 if (RestAreZero) {
2399 if (Elt0IsZero) return Op;
2400
2401 // Zero extend a scalar to a vector.
2402 return DAG.getNode(X86ISD::ZEXT_S2VEC, Op.getValueType(), Elt0);
2403 }
2404
Evan Cheng386031a2006-03-24 07:29:27 +00002405 return SDOperand();
2406 }
Evan Cheng38bcbaf2005-12-23 07:31:11 +00002407 }
Chris Lattnerdbdbf0c2005-11-15 00:40:23 +00002408}
Evan Cheng72261582005-12-20 06:22:03 +00002409
2410const char *X86TargetLowering::getTargetNodeName(unsigned Opcode) const {
2411 switch (Opcode) {
2412 default: return NULL;
Evan Chenge3413162006-01-09 18:33:28 +00002413 case X86ISD::SHLD: return "X86ISD::SHLD";
2414 case X86ISD::SHRD: return "X86ISD::SHRD";
Evan Chengef6ffb12006-01-31 03:14:29 +00002415 case X86ISD::FAND: return "X86ISD::FAND";
Evan Cheng223547a2006-01-31 22:28:30 +00002416 case X86ISD::FXOR: return "X86ISD::FXOR";
Evan Chenga3195e82006-01-12 22:54:21 +00002417 case X86ISD::FILD: return "X86ISD::FILD";
Evan Chenge3de85b2006-02-04 02:20:30 +00002418 case X86ISD::FILD_FLAG: return "X86ISD::FILD_FLAG";
Evan Cheng72261582005-12-20 06:22:03 +00002419 case X86ISD::FP_TO_INT16_IN_MEM: return "X86ISD::FP_TO_INT16_IN_MEM";
2420 case X86ISD::FP_TO_INT32_IN_MEM: return "X86ISD::FP_TO_INT32_IN_MEM";
2421 case X86ISD::FP_TO_INT64_IN_MEM: return "X86ISD::FP_TO_INT64_IN_MEM";
Evan Chengb077b842005-12-21 02:39:21 +00002422 case X86ISD::FLD: return "X86ISD::FLD";
Evan Chengd90eb7f2006-01-05 00:27:02 +00002423 case X86ISD::FST: return "X86ISD::FST";
2424 case X86ISD::FP_GET_RESULT: return "X86ISD::FP_GET_RESULT";
Evan Chengb077b842005-12-21 02:39:21 +00002425 case X86ISD::FP_SET_RESULT: return "X86ISD::FP_SET_RESULT";
Evan Cheng72261582005-12-20 06:22:03 +00002426 case X86ISD::CALL: return "X86ISD::CALL";
2427 case X86ISD::TAILCALL: return "X86ISD::TAILCALL";
2428 case X86ISD::RDTSC_DAG: return "X86ISD::RDTSC_DAG";
2429 case X86ISD::CMP: return "X86ISD::CMP";
2430 case X86ISD::TEST: return "X86ISD::TEST";
Evan Chengd5781fc2005-12-21 20:21:51 +00002431 case X86ISD::SETCC: return "X86ISD::SETCC";
Evan Cheng72261582005-12-20 06:22:03 +00002432 case X86ISD::CMOV: return "X86ISD::CMOV";
2433 case X86ISD::BRCOND: return "X86ISD::BRCOND";
Evan Chengb077b842005-12-21 02:39:21 +00002434 case X86ISD::RET_FLAG: return "X86ISD::RET_FLAG";
Evan Cheng8df346b2006-03-04 01:12:00 +00002435 case X86ISD::REP_STOS: return "X86ISD::REP_STOS";
2436 case X86ISD::REP_MOVS: return "X86ISD::REP_MOVS";
Evan Cheng223547a2006-01-31 22:28:30 +00002437 case X86ISD::LOAD_PACK: return "X86ISD::LOAD_PACK";
Evan Cheng7ccced62006-02-18 00:15:05 +00002438 case X86ISD::GlobalBaseReg: return "X86ISD::GlobalBaseReg";
Evan Cheng020d2e82006-02-23 20:41:18 +00002439 case X86ISD::Wrapper: return "X86ISD::Wrapper";
Evan Chengbc4832b2006-03-24 23:15:12 +00002440 case X86ISD::S2VEC: return "X86ISD::S2VEC";
2441 case X86ISD::ZEXT_S2VEC: return "X86ISD::ZEXT_S2VEC";
Evan Cheng72261582005-12-20 06:22:03 +00002442 }
2443}
Evan Cheng3a03ebb2005-12-21 23:05:39 +00002444
Nate Begeman368e18d2006-02-16 21:11:51 +00002445void X86TargetLowering::computeMaskedBitsForTargetNode(const SDOperand Op,
2446 uint64_t Mask,
2447 uint64_t &KnownZero,
2448 uint64_t &KnownOne,
2449 unsigned Depth) const {
Evan Cheng3a03ebb2005-12-21 23:05:39 +00002450
2451 unsigned Opc = Op.getOpcode();
Nate Begeman368e18d2006-02-16 21:11:51 +00002452 KnownZero = KnownOne = 0; // Don't know anything.
Evan Cheng3a03ebb2005-12-21 23:05:39 +00002453
2454 switch (Opc) {
2455 default:
2456 assert(Opc >= ISD::BUILTIN_OP_END && "Expected a target specific node");
2457 break;
Nate Begeman368e18d2006-02-16 21:11:51 +00002458 case X86ISD::SETCC:
2459 KnownZero |= (MVT::getIntVTBitMask(Op.getValueType()) ^ 1ULL);
2460 break;
Evan Cheng3a03ebb2005-12-21 23:05:39 +00002461 }
Evan Cheng3a03ebb2005-12-21 23:05:39 +00002462}
Chris Lattner259e97c2006-01-31 19:43:35 +00002463
2464std::vector<unsigned> X86TargetLowering::
Chris Lattner1efa40f2006-02-22 00:56:39 +00002465getRegClassForInlineAsmConstraint(const std::string &Constraint,
2466 MVT::ValueType VT) const {
Chris Lattner259e97c2006-01-31 19:43:35 +00002467 if (Constraint.size() == 1) {
2468 // FIXME: not handling fp-stack yet!
2469 // FIXME: not handling MMX registers yet ('y' constraint).
2470 switch (Constraint[0]) { // GCC X86 Constraint Letters
2471 default: break; // Unknown constriant letter
2472 case 'r': // GENERAL_REGS
2473 case 'R': // LEGACY_REGS
2474 return make_vector<unsigned>(X86::EAX, X86::EBX, X86::ECX, X86::EDX,
2475 X86::ESI, X86::EDI, X86::EBP, X86::ESP, 0);
2476 case 'l': // INDEX_REGS
2477 return make_vector<unsigned>(X86::EAX, X86::EBX, X86::ECX, X86::EDX,
2478 X86::ESI, X86::EDI, X86::EBP, 0);
2479 case 'q': // Q_REGS (GENERAL_REGS in 64-bit mode)
2480 case 'Q': // Q_REGS
2481 return make_vector<unsigned>(X86::EAX, X86::EBX, X86::ECX, X86::EDX, 0);
2482 case 'x': // SSE_REGS if SSE1 allowed
2483 if (Subtarget->hasSSE1())
2484 return make_vector<unsigned>(X86::XMM0, X86::XMM1, X86::XMM2, X86::XMM3,
2485 X86::XMM4, X86::XMM5, X86::XMM6, X86::XMM7,
2486 0);
2487 return std::vector<unsigned>();
2488 case 'Y': // SSE_REGS if SSE2 allowed
2489 if (Subtarget->hasSSE2())
2490 return make_vector<unsigned>(X86::XMM0, X86::XMM1, X86::XMM2, X86::XMM3,
2491 X86::XMM4, X86::XMM5, X86::XMM6, X86::XMM7,
2492 0);
2493 return std::vector<unsigned>();
2494 }
2495 }
2496
Chris Lattner1efa40f2006-02-22 00:56:39 +00002497 return std::vector<unsigned>();
Chris Lattner259e97c2006-01-31 19:43:35 +00002498}
Evan Cheng30b37b52006-03-13 23:18:16 +00002499
2500/// isLegalAddressImmediate - Return true if the integer value or
2501/// GlobalValue can be used as the offset of the target addressing mode.
2502bool X86TargetLowering::isLegalAddressImmediate(int64_t V) const {
2503 // X86 allows a sign-extended 32-bit immediate field.
2504 return (V > -(1LL << 32) && V < (1LL << 32)-1);
2505}
2506
2507bool X86TargetLowering::isLegalAddressImmediate(GlobalValue *GV) const {
Evan Chenga88973f2006-03-22 19:22:18 +00002508 if (Subtarget->isTargetDarwin()) {
Evan Cheng30b37b52006-03-13 23:18:16 +00002509 Reloc::Model RModel = getTargetMachine().getRelocationModel();
2510 if (RModel == Reloc::Static)
2511 return true;
2512 else if (RModel == Reloc::DynamicNoPIC)
Evan Cheng2221de92006-03-16 22:02:48 +00002513 return !DarwinGVRequiresExtraLoad(GV);
Evan Cheng30b37b52006-03-13 23:18:16 +00002514 else
2515 return false;
2516 } else
2517 return true;
2518}
Evan Cheng0188ecb2006-03-22 18:59:22 +00002519
2520/// isShuffleMaskLegal - Targets can use this to indicate that they only
2521/// support *some* VECTOR_SHUFFLE operations, those with specific masks.
2522/// By default, if a target supports the VECTOR_SHUFFLE node, all mask values
2523/// are assumed to be legal.
Evan Chengca6e8ea2006-03-22 22:07:06 +00002524bool
2525X86TargetLowering::isShuffleMaskLegal(SDOperand Mask, MVT::ValueType VT) const {
2526 // Only do shuffles on 128-bit vector types for now.
2527 if (MVT::getSizeInBits(VT) == 64) return false;
Evan Cheng2c0dbd02006-03-24 02:58:06 +00002528 return (Mask.Val->getNumOperands() == 2 ||
2529 X86::isSplatMask(Mask.Val) ||
Evan Cheng14aed5e2006-03-24 01:18:28 +00002530 X86::isPSHUFDMask(Mask.Val) ||
2531 X86::isSHUFPMask(Mask.Val));
Evan Cheng0188ecb2006-03-22 18:59:22 +00002532}