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Dan Gohman1adf1b02008-08-19 21:45:35 +00001//===-- X86FastISel.cpp - X86 FastISel implementation ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file defines the X86-specific support for the FastISel class. Much
11// of the target-specific code is generated by tablegen in the file
12// X86GenFastISel.inc, which is #included here.
13//
14//===----------------------------------------------------------------------===//
15
16#include "X86.h"
Evan Cheng8b19e562008-09-03 06:44:39 +000017#include "X86InstrBuilder.h"
Evan Cheng88e30412008-09-03 01:04:47 +000018#include "X86RegisterInfo.h"
19#include "X86Subtarget.h"
Dan Gohman22bb3112008-08-22 00:20:26 +000020#include "X86TargetMachine.h"
Evan Chengf3d4efe2008-09-07 09:09:33 +000021#include "llvm/CallingConv.h"
Dan Gohman6e3f05f2008-09-04 23:26:51 +000022#include "llvm/DerivedTypes.h"
Dan Gohmane9865942009-02-23 22:03:08 +000023#include "llvm/GlobalVariable.h"
Evan Chengf3d4efe2008-09-07 09:09:33 +000024#include "llvm/Instructions.h"
Chris Lattnera9a42252009-04-12 07:36:01 +000025#include "llvm/IntrinsicInst.h"
Jay Foad562b84b2011-04-11 09:35:34 +000026#include "llvm/Operator.h"
Dan Gohman84023e02010-07-10 09:00:22 +000027#include "llvm/CodeGen/Analysis.h"
Evan Chengc3f44b02008-09-03 00:03:49 +000028#include "llvm/CodeGen/FastISel.h"
Dan Gohmana4160c32010-07-07 16:29:44 +000029#include "llvm/CodeGen/FunctionLoweringInfo.h"
Owen Anderson95267a12008-09-05 00:06:23 +000030#include "llvm/CodeGen/MachineConstantPool.h"
Evan Chengf3d4efe2008-09-07 09:09:33 +000031#include "llvm/CodeGen/MachineFrameInfo.h"
Owen Anderson667d8f72008-08-29 17:45:56 +000032#include "llvm/CodeGen/MachineRegisterInfo.h"
Evan Chengf3d4efe2008-09-07 09:09:33 +000033#include "llvm/Support/CallSite.h"
Torok Edwinc25e7582009-07-11 20:10:48 +000034#include "llvm/Support/ErrorHandling.h"
Dan Gohman35893082008-09-18 23:23:44 +000035#include "llvm/Support/GetElementPtrTypeIterator.h"
Evan Cheng381993f2010-01-27 00:00:57 +000036#include "llvm/Target/TargetOptions.h"
Evan Chengc3f44b02008-09-03 00:03:49 +000037using namespace llvm;
38
Chris Lattner087fcf32009-03-08 18:44:31 +000039namespace {
Wesley Peckbf17cfa2010-11-23 03:31:01 +000040
Evan Chengc3f44b02008-09-03 00:03:49 +000041class X86FastISel : public FastISel {
42 /// Subtarget - Keep a pointer to the X86Subtarget around so that we can
43 /// make the right decision when generating code for different targets.
44 const X86Subtarget *Subtarget;
Evan Chengf3d4efe2008-09-07 09:09:33 +000045
46 /// StackPtr - Register used as the stack pointer.
47 ///
48 unsigned StackPtr;
49
Wesley Peckbf17cfa2010-11-23 03:31:01 +000050 /// X86ScalarSSEf32, X86ScalarSSEf64 - Select between SSE or x87
Evan Chengf3d4efe2008-09-07 09:09:33 +000051 /// floating point ops.
52 /// When SSE is available, use it for f32 operations.
53 /// When SSE2 is available, use it for f64 operations.
54 bool X86ScalarSSEf64;
55 bool X86ScalarSSEf32;
56
Evan Cheng8b19e562008-09-03 06:44:39 +000057public:
Dan Gohmana4160c32010-07-07 16:29:44 +000058 explicit X86FastISel(FunctionLoweringInfo &funcInfo) : FastISel(funcInfo) {
Evan Cheng88e30412008-09-03 01:04:47 +000059 Subtarget = &TM.getSubtarget<X86Subtarget>();
Evan Chengf3d4efe2008-09-07 09:09:33 +000060 StackPtr = Subtarget->is64Bit() ? X86::RSP : X86::ESP;
61 X86ScalarSSEf64 = Subtarget->hasSSE2();
62 X86ScalarSSEf32 = Subtarget->hasSSE1();
Evan Cheng88e30412008-09-03 01:04:47 +000063 }
Evan Chengc3f44b02008-09-03 00:03:49 +000064
Dan Gohman46510a72010-04-15 01:51:59 +000065 virtual bool TargetSelectInstruction(const Instruction *I);
Evan Chengc3f44b02008-09-03 00:03:49 +000066
Chris Lattnerbeac75d2010-09-05 02:18:34 +000067 /// TryToFoldLoad - The specified machine instr operand is a vreg, and that
68 /// vreg is being provided by the specified load instruction. If possible,
69 /// try to fold the load as an operand to the instruction, returning true if
70 /// possible.
71 virtual bool TryToFoldLoad(MachineInstr *MI, unsigned OpNo,
72 const LoadInst *LI);
Wesley Peckbf17cfa2010-11-23 03:31:01 +000073
Dan Gohman1adf1b02008-08-19 21:45:35 +000074#include "X86GenFastISel.inc"
Evan Cheng8b19e562008-09-03 06:44:39 +000075
76private:
Dan Gohman46510a72010-04-15 01:51:59 +000077 bool X86FastEmitCompare(const Value *LHS, const Value *RHS, EVT VT);
Wesley Peckbf17cfa2010-11-23 03:31:01 +000078
Owen Andersone50ed302009-08-10 22:56:29 +000079 bool X86FastEmitLoad(EVT VT, const X86AddressMode &AM, unsigned &RR);
Evan Cheng0de588f2008-09-05 21:00:03 +000080
Chris Lattnerb44101c2011-04-19 05:09:50 +000081 bool X86FastEmitStore(EVT VT, const Value *Val, const X86AddressMode &AM);
82 bool X86FastEmitStore(EVT VT, unsigned Val, const X86AddressMode &AM);
Evan Cheng24e3a902008-09-08 06:35:17 +000083
Owen Andersone50ed302009-08-10 22:56:29 +000084 bool X86FastEmitExtend(ISD::NodeType Opc, EVT DstVT, unsigned Src, EVT SrcVT,
Evan Cheng24e3a902008-09-08 06:35:17 +000085 unsigned &ResultReg);
Wesley Peckbf17cfa2010-11-23 03:31:01 +000086
Dan Gohman46510a72010-04-15 01:51:59 +000087 bool X86SelectAddress(const Value *V, X86AddressMode &AM);
88 bool X86SelectCallAddress(const Value *V, X86AddressMode &AM);
Dan Gohman0586d912008-09-10 20:11:02 +000089
Dan Gohman46510a72010-04-15 01:51:59 +000090 bool X86SelectLoad(const Instruction *I);
Wesley Peckbf17cfa2010-11-23 03:31:01 +000091
Dan Gohman46510a72010-04-15 01:51:59 +000092 bool X86SelectStore(const Instruction *I);
Dan Gohman6e3f05f2008-09-04 23:26:51 +000093
Dan Gohman84023e02010-07-10 09:00:22 +000094 bool X86SelectRet(const Instruction *I);
95
Dan Gohman46510a72010-04-15 01:51:59 +000096 bool X86SelectCmp(const Instruction *I);
Dan Gohmand89ae992008-09-05 01:06:14 +000097
Dan Gohman46510a72010-04-15 01:51:59 +000098 bool X86SelectZExt(const Instruction *I);
Dan Gohmand89ae992008-09-05 01:06:14 +000099
Dan Gohman46510a72010-04-15 01:51:59 +0000100 bool X86SelectBranch(const Instruction *I);
Dan Gohmanc39f4db2008-09-05 18:30:08 +0000101
Dan Gohman46510a72010-04-15 01:51:59 +0000102 bool X86SelectShift(const Instruction *I);
Dan Gohmanc39f4db2008-09-05 18:30:08 +0000103
Dan Gohman46510a72010-04-15 01:51:59 +0000104 bool X86SelectSelect(const Instruction *I);
Evan Cheng0de588f2008-09-05 21:00:03 +0000105
Dan Gohman46510a72010-04-15 01:51:59 +0000106 bool X86SelectTrunc(const Instruction *I);
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000107
Dan Gohman46510a72010-04-15 01:51:59 +0000108 bool X86SelectFPExt(const Instruction *I);
109 bool X86SelectFPTrunc(const Instruction *I);
Dan Gohman78efce62008-09-10 21:02:08 +0000110
Dan Gohman46510a72010-04-15 01:51:59 +0000111 bool X86VisitIntrinsicCall(const IntrinsicInst &I);
112 bool X86SelectCall(const Instruction *I);
Evan Chengf3d4efe2008-09-07 09:09:33 +0000113
Dan Gohman2cc3aa42008-09-25 15:24:26 +0000114 const X86InstrInfo *getInstrInfo() const {
Dan Gohman97135e12008-09-26 19:15:30 +0000115 return getTargetMachine()->getInstrInfo();
116 }
117 const X86TargetMachine *getTargetMachine() const {
118 return static_cast<const X86TargetMachine *>(&TM);
Dan Gohman2cc3aa42008-09-25 15:24:26 +0000119 }
120
Dan Gohman46510a72010-04-15 01:51:59 +0000121 unsigned TargetMaterializeConstant(const Constant *C);
Dan Gohman0586d912008-09-10 20:11:02 +0000122
Dan Gohman46510a72010-04-15 01:51:59 +0000123 unsigned TargetMaterializeAlloca(const AllocaInst *C);
Evan Chengf3d4efe2008-09-07 09:09:33 +0000124
Eli Friedman2790ba82011-04-27 22:41:55 +0000125 unsigned TargetMaterializeFloatZero(const ConstantFP *CF);
126
Evan Chengf3d4efe2008-09-07 09:09:33 +0000127 /// isScalarFPTypeInSSEReg - Return true if the specified scalar FP type is
128 /// computed in an SSE register, not on the X87 floating point stack.
Owen Andersone50ed302009-08-10 22:56:29 +0000129 bool isScalarFPTypeInSSEReg(EVT VT) const {
Owen Anderson825b72b2009-08-11 20:47:22 +0000130 return (VT == MVT::f64 && X86ScalarSSEf64) || // f64 is when SSE2
131 (VT == MVT::f32 && X86ScalarSSEf32); // f32 is when SSE1
Evan Chengf3d4efe2008-09-07 09:09:33 +0000132 }
133
Duncan Sands1440e8b2010-11-03 11:35:31 +0000134 bool isTypeLegal(const Type *Ty, MVT &VT, bool AllowI1 = false);
Eli Friedmand5089a92011-04-27 01:45:07 +0000135
Eli Friedmanc0883452011-05-20 22:21:04 +0000136 bool IsMemcpySmall(uint64_t Len);
137
Eli Friedmand5089a92011-04-27 01:45:07 +0000138 bool TryEmitSmallMemcpy(X86AddressMode DestAM,
139 X86AddressMode SrcAM, uint64_t Len);
Evan Chengc3f44b02008-09-03 00:03:49 +0000140};
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000141
Chris Lattner087fcf32009-03-08 18:44:31 +0000142} // end anonymous namespace.
Dan Gohman99b21822008-08-28 23:21:34 +0000143
Duncan Sands1440e8b2010-11-03 11:35:31 +0000144bool X86FastISel::isTypeLegal(const Type *Ty, MVT &VT, bool AllowI1) {
145 EVT evt = TLI.getValueType(Ty, /*HandleUnknown=*/true);
146 if (evt == MVT::Other || !evt.isSimple())
Evan Chengf3d4efe2008-09-07 09:09:33 +0000147 // Unhandled type. Halt "fast" selection and bail.
148 return false;
Duncan Sands1440e8b2010-11-03 11:35:31 +0000149
150 VT = evt.getSimpleVT();
Dan Gohman9b66d732008-09-30 00:48:39 +0000151 // For now, require SSE/SSE2 for performing floating-point operations,
152 // since x87 requires additional work.
Owen Anderson825b72b2009-08-11 20:47:22 +0000153 if (VT == MVT::f64 && !X86ScalarSSEf64)
Dan Gohman9b66d732008-09-30 00:48:39 +0000154 return false;
Owen Anderson825b72b2009-08-11 20:47:22 +0000155 if (VT == MVT::f32 && !X86ScalarSSEf32)
Dan Gohman9b66d732008-09-30 00:48:39 +0000156 return false;
157 // Similarly, no f80 support yet.
Owen Anderson825b72b2009-08-11 20:47:22 +0000158 if (VT == MVT::f80)
Dan Gohman9b66d732008-09-30 00:48:39 +0000159 return false;
Evan Chengf3d4efe2008-09-07 09:09:33 +0000160 // We only handle legal types. For example, on x86-32 the instruction
161 // selector contains all of the 64-bit instructions from x86-64,
162 // under the assumption that i64 won't be used if the target doesn't
163 // support it.
Owen Anderson825b72b2009-08-11 20:47:22 +0000164 return (AllowI1 && VT == MVT::i1) || TLI.isTypeLegal(VT);
Evan Chengf3d4efe2008-09-07 09:09:33 +0000165}
166
167#include "X86GenCallingConv.inc"
168
Evan Cheng0de588f2008-09-05 21:00:03 +0000169/// X86FastEmitLoad - Emit a machine instruction to load a value of type VT.
Evan Chengf3d4efe2008-09-07 09:09:33 +0000170/// The address is either pre-computed, i.e. Ptr, or a GlobalAddress, i.e. GV.
Evan Cheng0de588f2008-09-05 21:00:03 +0000171/// Return true and the result register by reference if it is possible.
Owen Andersone50ed302009-08-10 22:56:29 +0000172bool X86FastISel::X86FastEmitLoad(EVT VT, const X86AddressMode &AM,
Evan Cheng0de588f2008-09-05 21:00:03 +0000173 unsigned &ResultReg) {
174 // Get opcode and regclass of the output for the given load instruction.
175 unsigned Opc = 0;
176 const TargetRegisterClass *RC = NULL;
Owen Anderson825b72b2009-08-11 20:47:22 +0000177 switch (VT.getSimpleVT().SimpleTy) {
Evan Cheng0de588f2008-09-05 21:00:03 +0000178 default: return false;
Dan Gohman7e7f06e2009-08-27 00:31:47 +0000179 case MVT::i1:
Owen Anderson825b72b2009-08-11 20:47:22 +0000180 case MVT::i8:
Evan Cheng0de588f2008-09-05 21:00:03 +0000181 Opc = X86::MOV8rm;
182 RC = X86::GR8RegisterClass;
183 break;
Owen Anderson825b72b2009-08-11 20:47:22 +0000184 case MVT::i16:
Evan Cheng0de588f2008-09-05 21:00:03 +0000185 Opc = X86::MOV16rm;
186 RC = X86::GR16RegisterClass;
187 break;
Owen Anderson825b72b2009-08-11 20:47:22 +0000188 case MVT::i32:
Evan Cheng0de588f2008-09-05 21:00:03 +0000189 Opc = X86::MOV32rm;
190 RC = X86::GR32RegisterClass;
191 break;
Owen Anderson825b72b2009-08-11 20:47:22 +0000192 case MVT::i64:
Evan Cheng0de588f2008-09-05 21:00:03 +0000193 // Must be in x86-64 mode.
194 Opc = X86::MOV64rm;
195 RC = X86::GR64RegisterClass;
196 break;
Owen Anderson825b72b2009-08-11 20:47:22 +0000197 case MVT::f32:
Evan Cheng0de588f2008-09-05 21:00:03 +0000198 if (Subtarget->hasSSE1()) {
199 Opc = X86::MOVSSrm;
200 RC = X86::FR32RegisterClass;
201 } else {
202 Opc = X86::LD_Fp32m;
203 RC = X86::RFP32RegisterClass;
204 }
205 break;
Owen Anderson825b72b2009-08-11 20:47:22 +0000206 case MVT::f64:
Evan Cheng0de588f2008-09-05 21:00:03 +0000207 if (Subtarget->hasSSE2()) {
208 Opc = X86::MOVSDrm;
209 RC = X86::FR64RegisterClass;
210 } else {
211 Opc = X86::LD_Fp64m;
212 RC = X86::RFP64RegisterClass;
213 }
214 break;
Owen Anderson825b72b2009-08-11 20:47:22 +0000215 case MVT::f80:
Dan Gohman5af29c22008-09-26 01:39:32 +0000216 // No f80 support yet.
217 return false;
Evan Cheng0de588f2008-09-05 21:00:03 +0000218 }
219
220 ResultReg = createResultReg(RC);
Dan Gohman84023e02010-07-10 09:00:22 +0000221 addFullAddress(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
222 DL, TII.get(Opc), ResultReg), AM);
Evan Cheng0de588f2008-09-05 21:00:03 +0000223 return true;
224}
225
Evan Chengf3d4efe2008-09-07 09:09:33 +0000226/// X86FastEmitStore - Emit a machine instruction to store a value Val of
227/// type VT. The address is either pre-computed, consisted of a base ptr, Ptr
228/// and a displacement offset, or a GlobalAddress,
Evan Cheng0de588f2008-09-05 21:00:03 +0000229/// i.e. V. Return true if it is possible.
230bool
Chris Lattnerb44101c2011-04-19 05:09:50 +0000231X86FastISel::X86FastEmitStore(EVT VT, unsigned Val, const X86AddressMode &AM) {
Dan Gohman863890e2008-09-08 16:31:35 +0000232 // Get opcode and regclass of the output for the given store instruction.
Evan Cheng0de588f2008-09-05 21:00:03 +0000233 unsigned Opc = 0;
Owen Anderson825b72b2009-08-11 20:47:22 +0000234 switch (VT.getSimpleVT().SimpleTy) {
235 case MVT::f80: // No f80 support yet.
Evan Cheng0de588f2008-09-05 21:00:03 +0000236 default: return false;
Dan Gohman7e7f06e2009-08-27 00:31:47 +0000237 case MVT::i1: {
238 // Mask out all but lowest bit.
239 unsigned AndResult = createResultReg(X86::GR8RegisterClass);
Dan Gohman84023e02010-07-10 09:00:22 +0000240 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Dan Gohman7e7f06e2009-08-27 00:31:47 +0000241 TII.get(X86::AND8ri), AndResult).addReg(Val).addImm(1);
242 Val = AndResult;
243 }
244 // FALLTHROUGH, handling i1 as i8.
Owen Anderson825b72b2009-08-11 20:47:22 +0000245 case MVT::i8: Opc = X86::MOV8mr; break;
246 case MVT::i16: Opc = X86::MOV16mr; break;
247 case MVT::i32: Opc = X86::MOV32mr; break;
248 case MVT::i64: Opc = X86::MOV64mr; break; // Must be in x86-64 mode.
249 case MVT::f32:
Chris Lattner438949a2008-10-15 05:30:52 +0000250 Opc = Subtarget->hasSSE1() ? X86::MOVSSmr : X86::ST_Fp32m;
Evan Cheng0de588f2008-09-05 21:00:03 +0000251 break;
Owen Anderson825b72b2009-08-11 20:47:22 +0000252 case MVT::f64:
Chris Lattner438949a2008-10-15 05:30:52 +0000253 Opc = Subtarget->hasSSE2() ? X86::MOVSDmr : X86::ST_Fp64m;
Evan Cheng0de588f2008-09-05 21:00:03 +0000254 break;
Evan Cheng0de588f2008-09-05 21:00:03 +0000255 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000256
Dan Gohman84023e02010-07-10 09:00:22 +0000257 addFullAddress(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
258 DL, TII.get(Opc)), AM).addReg(Val);
Evan Cheng0de588f2008-09-05 21:00:03 +0000259 return true;
260}
261
Dan Gohman46510a72010-04-15 01:51:59 +0000262bool X86FastISel::X86FastEmitStore(EVT VT, const Value *Val,
Chris Lattner438949a2008-10-15 05:30:52 +0000263 const X86AddressMode &AM) {
264 // Handle 'null' like i32/i64 0.
265 if (isa<ConstantPointerNull>(Val))
Owen Anderson1d0be152009-08-13 21:58:54 +0000266 Val = Constant::getNullValue(TD.getIntPtrType(Val->getContext()));
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000267
Chris Lattner438949a2008-10-15 05:30:52 +0000268 // If this is a store of a simple constant, fold the constant into the store.
Dan Gohman46510a72010-04-15 01:51:59 +0000269 if (const ConstantInt *CI = dyn_cast<ConstantInt>(Val)) {
Chris Lattner438949a2008-10-15 05:30:52 +0000270 unsigned Opc = 0;
Dan Gohman7e7f06e2009-08-27 00:31:47 +0000271 bool Signed = true;
Owen Anderson825b72b2009-08-11 20:47:22 +0000272 switch (VT.getSimpleVT().SimpleTy) {
Chris Lattner438949a2008-10-15 05:30:52 +0000273 default: break;
Dan Gohman7e7f06e2009-08-27 00:31:47 +0000274 case MVT::i1: Signed = false; // FALLTHROUGH to handle as i8.
Owen Anderson825b72b2009-08-11 20:47:22 +0000275 case MVT::i8: Opc = X86::MOV8mi; break;
276 case MVT::i16: Opc = X86::MOV16mi; break;
277 case MVT::i32: Opc = X86::MOV32mi; break;
278 case MVT::i64:
Chris Lattner438949a2008-10-15 05:30:52 +0000279 // Must be a 32-bit sign extended value.
280 if ((int)CI->getSExtValue() == CI->getSExtValue())
281 Opc = X86::MOV64mi32;
282 break;
283 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000284
Chris Lattner438949a2008-10-15 05:30:52 +0000285 if (Opc) {
Dan Gohman84023e02010-07-10 09:00:22 +0000286 addFullAddress(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
287 DL, TII.get(Opc)), AM)
John McCall795ee9d2010-04-06 23:35:53 +0000288 .addImm(Signed ? (uint64_t) CI->getSExtValue() :
Dan Gohman7e7f06e2009-08-27 00:31:47 +0000289 CI->getZExtValue());
Chris Lattner438949a2008-10-15 05:30:52 +0000290 return true;
291 }
292 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000293
Chris Lattner438949a2008-10-15 05:30:52 +0000294 unsigned ValReg = getRegForValue(Val);
295 if (ValReg == 0)
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000296 return false;
297
Chris Lattner438949a2008-10-15 05:30:52 +0000298 return X86FastEmitStore(VT, ValReg, AM);
299}
300
Evan Cheng24e3a902008-09-08 06:35:17 +0000301/// X86FastEmitExtend - Emit a machine instruction to extend a value Src of
302/// type SrcVT to type DstVT using the specified extension opcode Opc (e.g.
303/// ISD::SIGN_EXTEND).
Owen Andersone50ed302009-08-10 22:56:29 +0000304bool X86FastISel::X86FastEmitExtend(ISD::NodeType Opc, EVT DstVT,
305 unsigned Src, EVT SrcVT,
Evan Cheng24e3a902008-09-08 06:35:17 +0000306 unsigned &ResultReg) {
Dan Gohmana6cb6412010-05-11 23:54:07 +0000307 unsigned RR = FastEmit_r(SrcVT.getSimpleVT(), DstVT.getSimpleVT(), Opc,
308 Src, /*TODO: Kill=*/false);
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000309
Owen Andersonac34a002008-09-11 19:44:55 +0000310 if (RR != 0) {
311 ResultReg = RR;
312 return true;
313 } else
314 return false;
Evan Cheng24e3a902008-09-08 06:35:17 +0000315}
316
Dan Gohman0586d912008-09-10 20:11:02 +0000317/// X86SelectAddress - Attempt to fill in an address from the given value.
318///
Dan Gohman46510a72010-04-15 01:51:59 +0000319bool X86FastISel::X86SelectAddress(const Value *V, X86AddressMode &AM) {
320 const User *U = NULL;
Dan Gohman35893082008-09-18 23:23:44 +0000321 unsigned Opcode = Instruction::UserOp1;
Dan Gohman46510a72010-04-15 01:51:59 +0000322 if (const Instruction *I = dyn_cast<Instruction>(V)) {
Dan Gohmanea9f1512010-06-18 20:44:47 +0000323 // Don't walk into other basic blocks; it's possible we haven't
324 // visited them yet, so the instructions may not yet be assigned
325 // virtual registers.
Dan Gohman742bf872010-11-16 22:43:23 +0000326 if (FuncInfo.StaticAllocaMap.count(static_cast<const AllocaInst *>(V)) ||
327 FuncInfo.MBBMap[I->getParent()] == FuncInfo.MBB) {
328 Opcode = I->getOpcode();
329 U = I;
330 }
Dan Gohman46510a72010-04-15 01:51:59 +0000331 } else if (const ConstantExpr *C = dyn_cast<ConstantExpr>(V)) {
Dan Gohman35893082008-09-18 23:23:44 +0000332 Opcode = C->getOpcode();
333 U = C;
334 }
Dan Gohman0586d912008-09-10 20:11:02 +0000335
Chris Lattner868ee942010-06-15 19:08:40 +0000336 if (const PointerType *Ty = dyn_cast<PointerType>(V->getType()))
337 if (Ty->getAddressSpace() > 255)
Dan Gohman1415a602010-06-18 20:45:41 +0000338 // Fast instruction selection doesn't support the special
339 // address spaces.
Chris Lattner868ee942010-06-15 19:08:40 +0000340 return false;
341
Dan Gohman35893082008-09-18 23:23:44 +0000342 switch (Opcode) {
343 default: break;
344 case Instruction::BitCast:
345 // Look past bitcasts.
Chris Lattner0aa43de2009-07-10 05:33:42 +0000346 return X86SelectAddress(U->getOperand(0), AM);
Dan Gohman35893082008-09-18 23:23:44 +0000347
348 case Instruction::IntToPtr:
349 // Look past no-op inttoptrs.
350 if (TLI.getValueType(U->getOperand(0)->getType()) == TLI.getPointerTy())
Chris Lattner0aa43de2009-07-10 05:33:42 +0000351 return X86SelectAddress(U->getOperand(0), AM);
Dan Gohman55fdaec2008-12-08 23:50:06 +0000352 break;
Dan Gohman35893082008-09-18 23:23:44 +0000353
354 case Instruction::PtrToInt:
355 // Look past no-op ptrtoints.
356 if (TLI.getValueType(U->getType()) == TLI.getPointerTy())
Chris Lattner0aa43de2009-07-10 05:33:42 +0000357 return X86SelectAddress(U->getOperand(0), AM);
Dan Gohman55fdaec2008-12-08 23:50:06 +0000358 break;
Dan Gohman35893082008-09-18 23:23:44 +0000359
360 case Instruction::Alloca: {
361 // Do static allocas.
362 const AllocaInst *A = cast<AllocaInst>(V);
Dan Gohmana4160c32010-07-07 16:29:44 +0000363 DenseMap<const AllocaInst*, int>::iterator SI =
364 FuncInfo.StaticAllocaMap.find(A);
365 if (SI != FuncInfo.StaticAllocaMap.end()) {
Dan Gohman97135e12008-09-26 19:15:30 +0000366 AM.BaseType = X86AddressMode::FrameIndexBase;
367 AM.Base.FrameIndex = SI->second;
368 return true;
369 }
370 break;
Dan Gohman35893082008-09-18 23:23:44 +0000371 }
372
373 case Instruction::Add: {
374 // Adds of constants are common and easy enough.
Dan Gohman46510a72010-04-15 01:51:59 +0000375 if (const ConstantInt *CI = dyn_cast<ConstantInt>(U->getOperand(1))) {
Dan Gohman09aae462008-09-26 20:04:15 +0000376 uint64_t Disp = (int32_t)AM.Disp + (uint64_t)CI->getSExtValue();
377 // They have to fit in the 32-bit signed displacement field though.
Benjamin Kramer34247a02010-03-29 21:13:41 +0000378 if (isInt<32>(Disp)) {
Dan Gohman09aae462008-09-26 20:04:15 +0000379 AM.Disp = (uint32_t)Disp;
Chris Lattner0aa43de2009-07-10 05:33:42 +0000380 return X86SelectAddress(U->getOperand(0), AM);
Dan Gohman09aae462008-09-26 20:04:15 +0000381 }
Dan Gohman0586d912008-09-10 20:11:02 +0000382 }
Dan Gohman35893082008-09-18 23:23:44 +0000383 break;
384 }
385
386 case Instruction::GetElementPtr: {
Chris Lattnerbfcc8e02010-03-04 19:54:45 +0000387 X86AddressMode SavedAM = AM;
388
Dan Gohman35893082008-09-18 23:23:44 +0000389 // Pattern-match simple GEPs.
Dan Gohman09aae462008-09-26 20:04:15 +0000390 uint64_t Disp = (int32_t)AM.Disp;
Dan Gohman35893082008-09-18 23:23:44 +0000391 unsigned IndexReg = AM.IndexReg;
392 unsigned Scale = AM.Scale;
393 gep_type_iterator GTI = gep_type_begin(U);
Dan Gohmanc8a1a3c2008-12-08 07:57:47 +0000394 // Iterate through the indices, folding what we can. Constants can be
395 // folded, and one dynamic index can be handled, if the scale is supported.
Dan Gohman46510a72010-04-15 01:51:59 +0000396 for (User::const_op_iterator i = U->op_begin() + 1, e = U->op_end();
Dan Gohman35893082008-09-18 23:23:44 +0000397 i != e; ++i, ++GTI) {
Dan Gohman46510a72010-04-15 01:51:59 +0000398 const Value *Op = *i;
Dan Gohman35893082008-09-18 23:23:44 +0000399 if (const StructType *STy = dyn_cast<StructType>(*GTI)) {
400 const StructLayout *SL = TD.getStructLayout(STy);
Chris Lattnerdceb52a2011-04-17 17:05:12 +0000401 Disp += SL->getElementOffset(cast<ConstantInt>(Op)->getZExtValue());
402 continue;
403 }
Eric Christopher471e4222011-06-08 23:55:35 +0000404
Chris Lattnerdceb52a2011-04-17 17:05:12 +0000405 // A array/variable index is always of the form i*S where S is the
406 // constant scale size. See if we can push the scale into immediates.
407 uint64_t S = TD.getTypeAllocSize(GTI.getIndexedType());
408 for (;;) {
409 if (const ConstantInt *CI = dyn_cast<ConstantInt>(Op)) {
410 // Constant-offset addressing.
411 Disp += CI->getSExtValue() * S;
412 break;
Dan Gohmanb55d6b62011-03-22 00:04:35 +0000413 }
Chris Lattnerdceb52a2011-04-17 17:05:12 +0000414 if (isa<AddOperator>(Op) &&
415 (!isa<Instruction>(Op) ||
416 FuncInfo.MBBMap[cast<Instruction>(Op)->getParent()]
417 == FuncInfo.MBB) &&
418 isa<ConstantInt>(cast<AddOperator>(Op)->getOperand(1))) {
419 // An add (in the same block) with a constant operand. Fold the
420 // constant.
421 ConstantInt *CI =
422 cast<ConstantInt>(cast<AddOperator>(Op)->getOperand(1));
423 Disp += CI->getSExtValue() * S;
424 // Iterate on the other operand.
425 Op = cast<AddOperator>(Op)->getOperand(0);
426 continue;
427 }
428 if (IndexReg == 0 &&
429 (!AM.GV || !Subtarget->isPICStyleRIPRel()) &&
430 (S == 1 || S == 2 || S == 4 || S == 8)) {
431 // Scaled-index addressing.
432 Scale = S;
433 IndexReg = getRegForGEPIndex(Op).first;
434 if (IndexReg == 0)
435 return false;
436 break;
437 }
438 // Unsupported.
439 goto unsupported_gep;
Dan Gohman35893082008-09-18 23:23:44 +0000440 }
441 }
Dan Gohman09aae462008-09-26 20:04:15 +0000442 // Check for displacement overflow.
Benjamin Kramer34247a02010-03-29 21:13:41 +0000443 if (!isInt<32>(Disp))
Dan Gohman09aae462008-09-26 20:04:15 +0000444 break;
Dan Gohman35893082008-09-18 23:23:44 +0000445 // Ok, the GEP indices were covered by constant-offset and scaled-index
446 // addressing. Update the address state and move on to examining the base.
447 AM.IndexReg = IndexReg;
448 AM.Scale = Scale;
Dan Gohman09aae462008-09-26 20:04:15 +0000449 AM.Disp = (uint32_t)Disp;
Chris Lattner225d4ca2010-03-04 19:48:19 +0000450 if (X86SelectAddress(U->getOperand(0), AM))
451 return true;
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000452
Chris Lattnerdceb52a2011-04-17 17:05:12 +0000453 // If we couldn't merge the gep value into this addr mode, revert back to
Chris Lattner225d4ca2010-03-04 19:48:19 +0000454 // our address and just match the value instead of completely failing.
455 AM = SavedAM;
456 break;
Dan Gohman35893082008-09-18 23:23:44 +0000457 unsupported_gep:
458 // Ok, the GEP indices weren't all covered.
459 break;
460 }
461 }
462
463 // Handle constant address.
Dan Gohman46510a72010-04-15 01:51:59 +0000464 if (const GlobalValue *GV = dyn_cast<GlobalValue>(V)) {
Chris Lattner0a1c9972011-04-17 17:47:38 +0000465 // Can't handle alternate code models or TLS yet.
Chris Lattnerf1d6bd52009-07-10 21:03:06 +0000466 if (TM.getCodeModel() != CodeModel::Small)
Dan Gohman2cc3aa42008-09-25 15:24:26 +0000467 return false;
468
Dan Gohman46510a72010-04-15 01:51:59 +0000469 if (const GlobalVariable *GVar = dyn_cast<GlobalVariable>(GV))
Dan Gohmane9865942009-02-23 22:03:08 +0000470 if (GVar->isThreadLocal())
471 return false;
Eric Christopher471e4222011-06-08 23:55:35 +0000472
Chris Lattner0a1c9972011-04-17 17:47:38 +0000473 // RIP-relative addresses can't have additional register operands, so if
474 // we've already folded stuff into the addressing mode, just force the
475 // global value into its own register, which we can use as the basereg.
476 if (!Subtarget->isPICStyleRIPRel() ||
477 (AM.Base.Reg == 0 && AM.IndexReg == 0)) {
478 // Okay, we've committed to selecting this global. Set up the address.
479 AM.GV = GV;
Dan Gohmane9865942009-02-23 22:03:08 +0000480
Chris Lattner0a1c9972011-04-17 17:47:38 +0000481 // Allow the subtarget to classify the global.
482 unsigned char GVFlags = Subtarget->ClassifyGlobalReference(GV, TM);
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000483
Chris Lattner0a1c9972011-04-17 17:47:38 +0000484 // If this reference is relative to the pic base, set it now.
485 if (isGlobalRelativeToPICBase(GVFlags)) {
486 // FIXME: How do we know Base.Reg is free??
487 AM.Base.Reg = getInstrInfo()->getGlobalBaseReg(FuncInfo.MF);
Dan Gohman7e8ef602008-09-19 23:42:04 +0000488 }
Chris Lattner0a1c9972011-04-17 17:47:38 +0000489
490 // Unless the ABI requires an extra load, return a direct reference to
491 // the global.
492 if (!isGlobalStubReference(GVFlags)) {
493 if (Subtarget->isPICStyleRIPRel()) {
494 // Use rip-relative addressing if we can. Above we verified that the
495 // base and index registers are unused.
496 assert(AM.Base.Reg == 0 && AM.IndexReg == 0);
497 AM.Base.Reg = X86::RIP;
498 }
499 AM.GVOpFlags = GVFlags;
500 return true;
501 }
502
503 // Ok, we need to do a load from a stub. If we've already loaded from
504 // this stub, reuse the loaded pointer, otherwise emit the load now.
505 DenseMap<const Value*, unsigned>::iterator I = LocalValueMap.find(V);
506 unsigned LoadReg;
507 if (I != LocalValueMap.end() && I->second != 0) {
508 LoadReg = I->second;
509 } else {
510 // Issue load from stub.
511 unsigned Opc = 0;
512 const TargetRegisterClass *RC = NULL;
513 X86AddressMode StubAM;
514 StubAM.Base.Reg = AM.Base.Reg;
515 StubAM.GV = GV;
516 StubAM.GVOpFlags = GVFlags;
517
518 // Prepare for inserting code in the local-value area.
519 SavePoint SaveInsertPt = enterLocalValueArea();
520
521 if (TLI.getPointerTy() == MVT::i64) {
522 Opc = X86::MOV64rm;
523 RC = X86::GR64RegisterClass;
524
525 if (Subtarget->isPICStyleRIPRel())
526 StubAM.Base.Reg = X86::RIP;
527 } else {
528 Opc = X86::MOV32rm;
529 RC = X86::GR32RegisterClass;
530 }
531
532 LoadReg = createResultReg(RC);
533 MachineInstrBuilder LoadMI =
534 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc), LoadReg);
535 addFullAddress(LoadMI, StubAM);
536
537 // Ok, back to normal mode.
538 leaveLocalValueArea(SaveInsertPt);
539
540 // Prevent loading GV stub multiple times in same MBB.
541 LocalValueMap[V] = LoadReg;
542 }
543
544 // Now construct the final address. Note that the Disp, Scale,
545 // and Index values may already be set here.
546 AM.Base.Reg = LoadReg;
547 AM.GV = 0;
Chris Lattnerff7727f2009-07-09 06:41:35 +0000548 return true;
549 }
Dan Gohman0586d912008-09-10 20:11:02 +0000550 }
551
Dan Gohman97135e12008-09-26 19:15:30 +0000552 // If all else fails, try to materialize the value in a register.
Chris Lattner4c1b6062009-06-27 05:24:12 +0000553 if (!AM.GV || !Subtarget->isPICStyleRIPRel()) {
Dan Gohman97135e12008-09-26 19:15:30 +0000554 if (AM.Base.Reg == 0) {
555 AM.Base.Reg = getRegForValue(V);
556 return AM.Base.Reg != 0;
557 }
558 if (AM.IndexReg == 0) {
559 assert(AM.Scale == 1 && "Scale with no index!");
560 AM.IndexReg = getRegForValue(V);
561 return AM.IndexReg != 0;
562 }
563 }
564
565 return false;
Dan Gohman0586d912008-09-10 20:11:02 +0000566}
567
Chris Lattner0aa43de2009-07-10 05:33:42 +0000568/// X86SelectCallAddress - Attempt to fill in an address from the given value.
569///
Dan Gohman46510a72010-04-15 01:51:59 +0000570bool X86FastISel::X86SelectCallAddress(const Value *V, X86AddressMode &AM) {
571 const User *U = NULL;
Chris Lattner0aa43de2009-07-10 05:33:42 +0000572 unsigned Opcode = Instruction::UserOp1;
Dan Gohman46510a72010-04-15 01:51:59 +0000573 if (const Instruction *I = dyn_cast<Instruction>(V)) {
Chris Lattner0aa43de2009-07-10 05:33:42 +0000574 Opcode = I->getOpcode();
575 U = I;
Dan Gohman46510a72010-04-15 01:51:59 +0000576 } else if (const ConstantExpr *C = dyn_cast<ConstantExpr>(V)) {
Chris Lattner0aa43de2009-07-10 05:33:42 +0000577 Opcode = C->getOpcode();
578 U = C;
579 }
580
581 switch (Opcode) {
582 default: break;
583 case Instruction::BitCast:
584 // Look past bitcasts.
585 return X86SelectCallAddress(U->getOperand(0), AM);
586
587 case Instruction::IntToPtr:
588 // Look past no-op inttoptrs.
589 if (TLI.getValueType(U->getOperand(0)->getType()) == TLI.getPointerTy())
590 return X86SelectCallAddress(U->getOperand(0), AM);
591 break;
592
593 case Instruction::PtrToInt:
594 // Look past no-op ptrtoints.
595 if (TLI.getValueType(U->getType()) == TLI.getPointerTy())
596 return X86SelectCallAddress(U->getOperand(0), AM);
597 break;
598 }
599
600 // Handle constant address.
Dan Gohman46510a72010-04-15 01:51:59 +0000601 if (const GlobalValue *GV = dyn_cast<GlobalValue>(V)) {
Chris Lattner0aa43de2009-07-10 05:33:42 +0000602 // Can't handle alternate code models yet.
Chris Lattnerf1d6bd52009-07-10 21:03:06 +0000603 if (TM.getCodeModel() != CodeModel::Small)
Chris Lattner0aa43de2009-07-10 05:33:42 +0000604 return false;
605
606 // RIP-relative addresses can't have additional register operands.
607 if (Subtarget->isPICStyleRIPRel() &&
608 (AM.Base.Reg != 0 || AM.IndexReg != 0))
609 return false;
610
NAKAMURA Takumid64cfe12011-02-21 04:50:06 +0000611 // Can't handle DLLImport.
612 if (GV->hasDLLImportLinkage())
613 return false;
614
615 // Can't handle TLS.
Dan Gohman46510a72010-04-15 01:51:59 +0000616 if (const GlobalVariable *GVar = dyn_cast<GlobalVariable>(GV))
NAKAMURA Takumid64cfe12011-02-21 04:50:06 +0000617 if (GVar->isThreadLocal())
Chris Lattner0aa43de2009-07-10 05:33:42 +0000618 return false;
619
620 // Okay, we've committed to selecting this global. Set up the basic address.
621 AM.GV = GV;
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000622
Chris Lattnere6c07b52009-07-10 05:45:15 +0000623 // No ABI requires an extra load for anything other than DLLImport, which
624 // we rejected above. Return a direct reference to the global.
Chris Lattnere6c07b52009-07-10 05:45:15 +0000625 if (Subtarget->isPICStyleRIPRel()) {
626 // Use rip-relative addressing if we can. Above we verified that the
627 // base and index registers are unused.
628 assert(AM.Base.Reg == 0 && AM.IndexReg == 0);
629 AM.Base.Reg = X86::RIP;
Chris Lattnere2c92082009-07-10 21:00:45 +0000630 } else if (Subtarget->isPICStyleStubPIC()) {
Chris Lattnere6c07b52009-07-10 05:45:15 +0000631 AM.GVOpFlags = X86II::MO_PIC_BASE_OFFSET;
632 } else if (Subtarget->isPICStyleGOT()) {
633 AM.GVOpFlags = X86II::MO_GOTOFF;
Chris Lattner0aa43de2009-07-10 05:33:42 +0000634 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000635
Chris Lattner0aa43de2009-07-10 05:33:42 +0000636 return true;
637 }
638
639 // If all else fails, try to materialize the value in a register.
640 if (!AM.GV || !Subtarget->isPICStyleRIPRel()) {
641 if (AM.Base.Reg == 0) {
642 AM.Base.Reg = getRegForValue(V);
643 return AM.Base.Reg != 0;
644 }
645 if (AM.IndexReg == 0) {
646 assert(AM.Scale == 1 && "Scale with no index!");
647 AM.IndexReg = getRegForValue(V);
648 return AM.IndexReg != 0;
649 }
650 }
651
652 return false;
653}
654
655
Owen Andersona3971df2008-09-04 07:08:58 +0000656/// X86SelectStore - Select and emit code to implement store instructions.
Dan Gohman46510a72010-04-15 01:51:59 +0000657bool X86FastISel::X86SelectStore(const Instruction *I) {
Duncan Sands1440e8b2010-11-03 11:35:31 +0000658 MVT VT;
Dan Gohman7e7f06e2009-08-27 00:31:47 +0000659 if (!isTypeLegal(I->getOperand(0)->getType(), VT, /*AllowI1=*/true))
Owen Andersona3971df2008-09-04 07:08:58 +0000660 return false;
Owen Andersona3971df2008-09-04 07:08:58 +0000661
Dan Gohman0586d912008-09-10 20:11:02 +0000662 X86AddressMode AM;
Chris Lattner0aa43de2009-07-10 05:33:42 +0000663 if (!X86SelectAddress(I->getOperand(1), AM))
Dan Gohman0586d912008-09-10 20:11:02 +0000664 return false;
Owen Andersona3971df2008-09-04 07:08:58 +0000665
Chris Lattner438949a2008-10-15 05:30:52 +0000666 return X86FastEmitStore(VT, I->getOperand(0), AM);
Owen Andersona3971df2008-09-04 07:08:58 +0000667}
668
Dan Gohman84023e02010-07-10 09:00:22 +0000669/// X86SelectRet - Select and emit code to implement ret instructions.
670bool X86FastISel::X86SelectRet(const Instruction *I) {
671 const ReturnInst *Ret = cast<ReturnInst>(I);
672 const Function &F = *I->getParent()->getParent();
673
674 if (!FuncInfo.CanLowerReturn)
675 return false;
676
677 CallingConv::ID CC = F.getCallingConv();
678 if (CC != CallingConv::C &&
679 CC != CallingConv::Fast &&
680 CC != CallingConv::X86_FastCall)
681 return false;
682
683 if (Subtarget->isTargetWin64())
684 return false;
685
686 // Don't handle popping bytes on return for now.
687 if (FuncInfo.MF->getInfo<X86MachineFunctionInfo>()
688 ->getBytesToPopOnReturn() != 0)
689 return 0;
690
691 // fastcc with -tailcallopt is intended to provide a guaranteed
692 // tail call optimization. Fastisel doesn't know how to do that.
693 if (CC == CallingConv::Fast && GuaranteedTailCallOpt)
694 return false;
695
696 // Let SDISel handle vararg functions.
697 if (F.isVarArg())
698 return false;
699
700 if (Ret->getNumOperands() > 0) {
701 SmallVector<ISD::OutputArg, 4> Outs;
702 GetReturnInfo(F.getReturnType(), F.getAttributes().getRetAttributes(),
703 Outs, TLI);
704
705 // Analyze operands of the call, assigning locations to each operand.
706 SmallVector<CCValAssign, 16> ValLocs;
Eric Christopher471e4222011-06-08 23:55:35 +0000707 CCState CCInfo(CC, F.isVarArg(), *FuncInfo.MF, TM, ValLocs,
708 I->getContext());
Duncan Sandse26032d2010-10-31 13:02:38 +0000709 CCInfo.AnalyzeReturn(Outs, RetCC_X86);
Dan Gohman84023e02010-07-10 09:00:22 +0000710
711 const Value *RV = Ret->getOperand(0);
712 unsigned Reg = getRegForValue(RV);
713 if (Reg == 0)
714 return false;
715
716 // Only handle a single return value for now.
717 if (ValLocs.size() != 1)
718 return false;
719
720 CCValAssign &VA = ValLocs[0];
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000721
Dan Gohman84023e02010-07-10 09:00:22 +0000722 // Don't bother handling odd stuff for now.
723 if (VA.getLocInfo() != CCValAssign::Full)
724 return false;
725 // Only handle register returns for now.
726 if (!VA.isRegLoc())
727 return false;
Dan Gohman84023e02010-07-10 09:00:22 +0000728
729 // The calling-convention tables for x87 returns don't tell
730 // the whole story.
731 if (VA.getLocReg() == X86::ST0 || VA.getLocReg() == X86::ST1)
732 return false;
733
Eli Friedman22486c92011-05-18 23:13:10 +0000734 unsigned SrcReg = Reg + VA.getValNo();
Eli Friedmandc515752011-05-19 22:16:13 +0000735 EVT SrcVT = TLI.getValueType(RV->getType());
736 EVT DstVT = VA.getValVT();
737 // Special handling for extended integers.
738 if (SrcVT != DstVT) {
739 if (SrcVT != MVT::i1 && SrcVT != MVT::i8 && SrcVT != MVT::i16)
740 return false;
741
742 if (!Outs[0].Flags.isZExt() && !Outs[0].Flags.isSExt())
743 return false;
744
745 assert(DstVT == MVT::i32 && "X86 should always ext to i32");
746
747 if (SrcVT == MVT::i1) {
748 if (Outs[0].Flags.isSExt())
749 return false;
750 SrcReg = FastEmitZExtFromI1(MVT::i8, SrcReg, /*TODO: Kill=*/false);
751 SrcVT = MVT::i8;
752 }
753 unsigned Op = Outs[0].Flags.isZExt() ? ISD::ZERO_EXTEND :
754 ISD::SIGN_EXTEND;
755 SrcReg = FastEmit_r(SrcVT.getSimpleVT(), DstVT.getSimpleVT(), Op,
756 SrcReg, /*TODO: Kill=*/false);
757 }
758
759 // Make the copy.
Dan Gohman84023e02010-07-10 09:00:22 +0000760 unsigned DstReg = VA.getLocReg();
761 const TargetRegisterClass* SrcRC = MRI.getRegClass(SrcReg);
Jakob Stoklund Olesen1ba31892010-07-11 05:17:02 +0000762 // Avoid a cross-class copy. This is very unlikely.
763 if (!SrcRC->contains(DstReg))
Dan Gohman84023e02010-07-10 09:00:22 +0000764 return false;
Jakob Stoklund Olesen1ba31892010-07-11 05:17:02 +0000765 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
766 DstReg).addReg(SrcReg);
Dan Gohman84023e02010-07-10 09:00:22 +0000767
768 // Mark the register as live out of the function.
769 MRI.addLiveOut(VA.getLocReg());
770 }
771
772 // Now emit the RET.
773 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::RET));
774 return true;
775}
776
Evan Cheng8b19e562008-09-03 06:44:39 +0000777/// X86SelectLoad - Select and emit code to implement load instructions.
778///
Dan Gohman46510a72010-04-15 01:51:59 +0000779bool X86FastISel::X86SelectLoad(const Instruction *I) {
Duncan Sands1440e8b2010-11-03 11:35:31 +0000780 MVT VT;
Dan Gohman7e7f06e2009-08-27 00:31:47 +0000781 if (!isTypeLegal(I->getType(), VT, /*AllowI1=*/true))
Evan Cheng8b19e562008-09-03 06:44:39 +0000782 return false;
783
Dan Gohman0586d912008-09-10 20:11:02 +0000784 X86AddressMode AM;
Chris Lattner0aa43de2009-07-10 05:33:42 +0000785 if (!X86SelectAddress(I->getOperand(0), AM))
Dan Gohman0586d912008-09-10 20:11:02 +0000786 return false;
Evan Cheng8b19e562008-09-03 06:44:39 +0000787
Evan Cheng0de588f2008-09-05 21:00:03 +0000788 unsigned ResultReg = 0;
Dan Gohman0586d912008-09-10 20:11:02 +0000789 if (X86FastEmitLoad(VT, AM, ResultReg)) {
Evan Cheng0de588f2008-09-05 21:00:03 +0000790 UpdateValueMap(I, ResultReg);
791 return true;
Evan Cheng8b19e562008-09-03 06:44:39 +0000792 }
Evan Cheng0de588f2008-09-05 21:00:03 +0000793 return false;
Evan Cheng8b19e562008-09-03 06:44:39 +0000794}
795
Jakob Stoklund Olesen75be45c2010-07-11 16:22:13 +0000796static unsigned X86ChooseCmpOpcode(EVT VT, const X86Subtarget *Subtarget) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000797 switch (VT.getSimpleVT().SimpleTy) {
Chris Lattner45ac17f2008-10-15 04:32:45 +0000798 default: return 0;
Owen Anderson825b72b2009-08-11 20:47:22 +0000799 case MVT::i8: return X86::CMP8rr;
800 case MVT::i16: return X86::CMP16rr;
801 case MVT::i32: return X86::CMP32rr;
802 case MVT::i64: return X86::CMP64rr;
Dan Gohmanbe4d10d2010-07-12 15:46:30 +0000803 case MVT::f32: return Subtarget->hasSSE1() ? X86::UCOMISSrr : 0;
804 case MVT::f64: return Subtarget->hasSSE2() ? X86::UCOMISDrr : 0;
Dan Gohmand98d6202008-10-02 22:15:21 +0000805 }
Dan Gohmand98d6202008-10-02 22:15:21 +0000806}
807
Chris Lattner0e13c782008-10-15 04:13:29 +0000808/// X86ChooseCmpImmediateOpcode - If we have a comparison with RHS as the RHS
809/// of the comparison, return an opcode that works for the compare (e.g.
810/// CMP32ri) otherwise return 0.
Dan Gohman46510a72010-04-15 01:51:59 +0000811static unsigned X86ChooseCmpImmediateOpcode(EVT VT, const ConstantInt *RHSC) {
Owen Anderson825b72b2009-08-11 20:47:22 +0000812 switch (VT.getSimpleVT().SimpleTy) {
Chris Lattner0e13c782008-10-15 04:13:29 +0000813 // Otherwise, we can't fold the immediate into this comparison.
Chris Lattner45ac17f2008-10-15 04:32:45 +0000814 default: return 0;
Owen Anderson825b72b2009-08-11 20:47:22 +0000815 case MVT::i8: return X86::CMP8ri;
816 case MVT::i16: return X86::CMP16ri;
817 case MVT::i32: return X86::CMP32ri;
818 case MVT::i64:
Chris Lattner45ac17f2008-10-15 04:32:45 +0000819 // 64-bit comparisons are only valid if the immediate fits in a 32-bit sext
820 // field.
Chris Lattner438949a2008-10-15 05:30:52 +0000821 if ((int)RHSC->getSExtValue() == RHSC->getSExtValue())
Chris Lattner45ac17f2008-10-15 04:32:45 +0000822 return X86::CMP64ri32;
823 return 0;
824 }
Chris Lattner0e13c782008-10-15 04:13:29 +0000825}
826
Dan Gohman46510a72010-04-15 01:51:59 +0000827bool X86FastISel::X86FastEmitCompare(const Value *Op0, const Value *Op1,
828 EVT VT) {
Chris Lattner9a08a612008-10-15 04:26:38 +0000829 unsigned Op0Reg = getRegForValue(Op0);
830 if (Op0Reg == 0) return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000831
Chris Lattnerd53886b2008-10-15 05:18:04 +0000832 // Handle 'null' like i32/i64 0.
833 if (isa<ConstantPointerNull>(Op1))
Owen Anderson1d0be152009-08-13 21:58:54 +0000834 Op1 = Constant::getNullValue(TD.getIntPtrType(Op0->getContext()));
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000835
Chris Lattner9a08a612008-10-15 04:26:38 +0000836 // We have two options: compare with register or immediate. If the RHS of
837 // the compare is an immediate that we can fold into this compare, use
838 // CMPri, otherwise use CMPrr.
Dan Gohman46510a72010-04-15 01:51:59 +0000839 if (const ConstantInt *Op1C = dyn_cast<ConstantInt>(Op1)) {
Chris Lattner45ac17f2008-10-15 04:32:45 +0000840 if (unsigned CompareImmOpc = X86ChooseCmpImmediateOpcode(VT, Op1C)) {
Dan Gohman84023e02010-07-10 09:00:22 +0000841 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(CompareImmOpc))
842 .addReg(Op0Reg)
843 .addImm(Op1C->getSExtValue());
Chris Lattner9a08a612008-10-15 04:26:38 +0000844 return true;
845 }
846 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000847
Jakob Stoklund Olesen75be45c2010-07-11 16:22:13 +0000848 unsigned CompareOpc = X86ChooseCmpOpcode(VT, Subtarget);
Chris Lattner9a08a612008-10-15 04:26:38 +0000849 if (CompareOpc == 0) return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000850
Chris Lattner9a08a612008-10-15 04:26:38 +0000851 unsigned Op1Reg = getRegForValue(Op1);
852 if (Op1Reg == 0) return false;
Dan Gohman84023e02010-07-10 09:00:22 +0000853 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(CompareOpc))
854 .addReg(Op0Reg)
855 .addReg(Op1Reg);
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000856
Chris Lattner9a08a612008-10-15 04:26:38 +0000857 return true;
858}
859
Dan Gohman46510a72010-04-15 01:51:59 +0000860bool X86FastISel::X86SelectCmp(const Instruction *I) {
861 const CmpInst *CI = cast<CmpInst>(I);
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000862
Duncan Sands1440e8b2010-11-03 11:35:31 +0000863 MVT VT;
Chris Lattner160f6cc2008-10-15 05:07:36 +0000864 if (!isTypeLegal(I->getOperand(0)->getType(), VT))
Dan Gohman4f22bb02008-09-05 01:33:56 +0000865 return false;
866
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000867 unsigned ResultReg = createResultReg(&X86::GR8RegClass);
Chris Lattner54aebde2008-10-15 03:47:17 +0000868 unsigned SetCCOpc;
Chris Lattner8aeeeb92008-10-15 03:52:54 +0000869 bool SwapArgs; // false -> compare Op0, Op1. true -> compare Op1, Op0.
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000870 switch (CI->getPredicate()) {
871 case CmpInst::FCMP_OEQ: {
Chris Lattner51ccb3d2008-10-15 04:29:23 +0000872 if (!X86FastEmitCompare(CI->getOperand(0), CI->getOperand(1), VT))
873 return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000874
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000875 unsigned EReg = createResultReg(&X86::GR8RegClass);
876 unsigned NPReg = createResultReg(&X86::GR8RegClass);
Dan Gohman84023e02010-07-10 09:00:22 +0000877 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::SETEr), EReg);
878 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
879 TII.get(X86::SETNPr), NPReg);
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000880 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Dale Johannesen8d13f8f2009-02-13 02:33:27 +0000881 TII.get(X86::AND8rr), ResultReg).addReg(NPReg).addReg(EReg);
Chris Lattner54aebde2008-10-15 03:47:17 +0000882 UpdateValueMap(I, ResultReg);
883 return true;
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000884 }
885 case CmpInst::FCMP_UNE: {
Chris Lattner51ccb3d2008-10-15 04:29:23 +0000886 if (!X86FastEmitCompare(CI->getOperand(0), CI->getOperand(1), VT))
887 return false;
888
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000889 unsigned NEReg = createResultReg(&X86::GR8RegClass);
890 unsigned PReg = createResultReg(&X86::GR8RegClass);
Chris Lattner90cb88a2011-04-19 04:22:17 +0000891 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::SETNEr), NEReg);
892 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::SETPr), PReg);
893 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::OR8rr),ResultReg)
Dan Gohman84023e02010-07-10 09:00:22 +0000894 .addReg(PReg).addReg(NEReg);
Chris Lattner54aebde2008-10-15 03:47:17 +0000895 UpdateValueMap(I, ResultReg);
896 return true;
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000897 }
Chris Lattner8aeeeb92008-10-15 03:52:54 +0000898 case CmpInst::FCMP_OGT: SwapArgs = false; SetCCOpc = X86::SETAr; break;
899 case CmpInst::FCMP_OGE: SwapArgs = false; SetCCOpc = X86::SETAEr; break;
900 case CmpInst::FCMP_OLT: SwapArgs = true; SetCCOpc = X86::SETAr; break;
901 case CmpInst::FCMP_OLE: SwapArgs = true; SetCCOpc = X86::SETAEr; break;
902 case CmpInst::FCMP_ONE: SwapArgs = false; SetCCOpc = X86::SETNEr; break;
903 case CmpInst::FCMP_ORD: SwapArgs = false; SetCCOpc = X86::SETNPr; break;
904 case CmpInst::FCMP_UNO: SwapArgs = false; SetCCOpc = X86::SETPr; break;
905 case CmpInst::FCMP_UEQ: SwapArgs = false; SetCCOpc = X86::SETEr; break;
906 case CmpInst::FCMP_UGT: SwapArgs = true; SetCCOpc = X86::SETBr; break;
907 case CmpInst::FCMP_UGE: SwapArgs = true; SetCCOpc = X86::SETBEr; break;
908 case CmpInst::FCMP_ULT: SwapArgs = false; SetCCOpc = X86::SETBr; break;
909 case CmpInst::FCMP_ULE: SwapArgs = false; SetCCOpc = X86::SETBEr; break;
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000910
Chris Lattner8aeeeb92008-10-15 03:52:54 +0000911 case CmpInst::ICMP_EQ: SwapArgs = false; SetCCOpc = X86::SETEr; break;
912 case CmpInst::ICMP_NE: SwapArgs = false; SetCCOpc = X86::SETNEr; break;
913 case CmpInst::ICMP_UGT: SwapArgs = false; SetCCOpc = X86::SETAr; break;
914 case CmpInst::ICMP_UGE: SwapArgs = false; SetCCOpc = X86::SETAEr; break;
915 case CmpInst::ICMP_ULT: SwapArgs = false; SetCCOpc = X86::SETBr; break;
916 case CmpInst::ICMP_ULE: SwapArgs = false; SetCCOpc = X86::SETBEr; break;
917 case CmpInst::ICMP_SGT: SwapArgs = false; SetCCOpc = X86::SETGr; break;
918 case CmpInst::ICMP_SGE: SwapArgs = false; SetCCOpc = X86::SETGEr; break;
919 case CmpInst::ICMP_SLT: SwapArgs = false; SetCCOpc = X86::SETLr; break;
920 case CmpInst::ICMP_SLE: SwapArgs = false; SetCCOpc = X86::SETLEr; break;
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000921 default:
922 return false;
923 }
924
Dan Gohman46510a72010-04-15 01:51:59 +0000925 const Value *Op0 = CI->getOperand(0), *Op1 = CI->getOperand(1);
Chris Lattner8aeeeb92008-10-15 03:52:54 +0000926 if (SwapArgs)
Chris Lattner9a08a612008-10-15 04:26:38 +0000927 std::swap(Op0, Op1);
Chris Lattner8aeeeb92008-10-15 03:52:54 +0000928
Chris Lattner9a08a612008-10-15 04:26:38 +0000929 // Emit a compare of Op0/Op1.
Chris Lattner51ccb3d2008-10-15 04:29:23 +0000930 if (!X86FastEmitCompare(Op0, Op1, VT))
931 return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +0000932
Dan Gohman84023e02010-07-10 09:00:22 +0000933 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(SetCCOpc), ResultReg);
Dan Gohman6e3f05f2008-09-04 23:26:51 +0000934 UpdateValueMap(I, ResultReg);
935 return true;
936}
Evan Cheng8b19e562008-09-03 06:44:39 +0000937
Dan Gohman46510a72010-04-15 01:51:59 +0000938bool X86FastISel::X86SelectZExt(const Instruction *I) {
Dan Gohman14ea1ec2009-03-13 20:42:20 +0000939 // Handle zero-extension from i1 to i8, which is common.
Eric Christopher471e4222011-06-08 23:55:35 +0000940 if (!I->getOperand(0)->getType()->isIntegerTy(1))
Eli Friedman76927d732011-05-25 23:49:02 +0000941 return false;
942
943 EVT DstVT = TLI.getValueType(I->getType());
944 if (!TLI.isTypeLegal(DstVT))
945 return false;
946
947 unsigned ResultReg = getRegForValue(I->getOperand(0));
948 if (ResultReg == 0)
949 return false;
950
951 // Set the high bits to zero.
952 ResultReg = FastEmitZExtFromI1(MVT::i8, ResultReg, /*TODO: Kill=*/false);
953 if (ResultReg == 0)
954 return false;
955
956 if (DstVT != MVT::i8) {
957 ResultReg = FastEmit_r(MVT::i8, DstVT.getSimpleVT(), ISD::ZERO_EXTEND,
958 ResultReg, /*Kill=*/true);
959 if (ResultReg == 0)
960 return false;
Dan Gohmand89ae992008-09-05 01:06:14 +0000961 }
962
Eli Friedman76927d732011-05-25 23:49:02 +0000963 UpdateValueMap(I, ResultReg);
964 return true;
Dan Gohmand89ae992008-09-05 01:06:14 +0000965}
966
Chris Lattner9a08a612008-10-15 04:26:38 +0000967
Dan Gohman46510a72010-04-15 01:51:59 +0000968bool X86FastISel::X86SelectBranch(const Instruction *I) {
Dan Gohmand89ae992008-09-05 01:06:14 +0000969 // Unconditional branches are selected by tablegen-generated code.
Dan Gohmand98d6202008-10-02 22:15:21 +0000970 // Handle a conditional branch.
Dan Gohman46510a72010-04-15 01:51:59 +0000971 const BranchInst *BI = cast<BranchInst>(I);
Dan Gohmana4160c32010-07-07 16:29:44 +0000972 MachineBasicBlock *TrueMBB = FuncInfo.MBBMap[BI->getSuccessor(0)];
973 MachineBasicBlock *FalseMBB = FuncInfo.MBBMap[BI->getSuccessor(1)];
Dan Gohmand89ae992008-09-05 01:06:14 +0000974
Dan Gohman8bef7442010-08-21 02:32:36 +0000975 // Fold the common case of a conditional branch with a comparison
976 // in the same block (values defined on other blocks may not have
977 // initialized registers).
Dan Gohman46510a72010-04-15 01:51:59 +0000978 if (const CmpInst *CI = dyn_cast<CmpInst>(BI->getCondition())) {
Dan Gohman8bef7442010-08-21 02:32:36 +0000979 if (CI->hasOneUse() && CI->getParent() == I->getParent()) {
Owen Andersone50ed302009-08-10 22:56:29 +0000980 EVT VT = TLI.getValueType(CI->getOperand(0)->getType());
Dan Gohmand89ae992008-09-05 01:06:14 +0000981
Dan Gohmand98d6202008-10-02 22:15:21 +0000982 // Try to take advantage of fallthrough opportunities.
983 CmpInst::Predicate Predicate = CI->getPredicate();
Dan Gohman84023e02010-07-10 09:00:22 +0000984 if (FuncInfo.MBB->isLayoutSuccessor(TrueMBB)) {
Dan Gohmand98d6202008-10-02 22:15:21 +0000985 std::swap(TrueMBB, FalseMBB);
986 Predicate = CmpInst::getInversePredicate(Predicate);
987 }
988
Chris Lattner871d2462008-10-15 03:58:05 +0000989 bool SwapArgs; // false -> compare Op0, Op1. true -> compare Op1, Op0.
990 unsigned BranchOpc; // Opcode to jump on, e.g. "X86::JA"
991
Dan Gohmand98d6202008-10-02 22:15:21 +0000992 switch (Predicate) {
Dan Gohman7b66e042008-10-21 18:24:51 +0000993 case CmpInst::FCMP_OEQ:
994 std::swap(TrueMBB, FalseMBB);
995 Predicate = CmpInst::FCMP_UNE;
996 // FALL THROUGH
Chris Lattnerbd13fb62010-02-11 19:25:55 +0000997 case CmpInst::FCMP_UNE: SwapArgs = false; BranchOpc = X86::JNE_4; break;
998 case CmpInst::FCMP_OGT: SwapArgs = false; BranchOpc = X86::JA_4; break;
999 case CmpInst::FCMP_OGE: SwapArgs = false; BranchOpc = X86::JAE_4; break;
1000 case CmpInst::FCMP_OLT: SwapArgs = true; BranchOpc = X86::JA_4; break;
1001 case CmpInst::FCMP_OLE: SwapArgs = true; BranchOpc = X86::JAE_4; break;
1002 case CmpInst::FCMP_ONE: SwapArgs = false; BranchOpc = X86::JNE_4; break;
1003 case CmpInst::FCMP_ORD: SwapArgs = false; BranchOpc = X86::JNP_4; break;
1004 case CmpInst::FCMP_UNO: SwapArgs = false; BranchOpc = X86::JP_4; break;
1005 case CmpInst::FCMP_UEQ: SwapArgs = false; BranchOpc = X86::JE_4; break;
1006 case CmpInst::FCMP_UGT: SwapArgs = true; BranchOpc = X86::JB_4; break;
1007 case CmpInst::FCMP_UGE: SwapArgs = true; BranchOpc = X86::JBE_4; break;
1008 case CmpInst::FCMP_ULT: SwapArgs = false; BranchOpc = X86::JB_4; break;
1009 case CmpInst::FCMP_ULE: SwapArgs = false; BranchOpc = X86::JBE_4; break;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001010
Chris Lattnerbd13fb62010-02-11 19:25:55 +00001011 case CmpInst::ICMP_EQ: SwapArgs = false; BranchOpc = X86::JE_4; break;
1012 case CmpInst::ICMP_NE: SwapArgs = false; BranchOpc = X86::JNE_4; break;
1013 case CmpInst::ICMP_UGT: SwapArgs = false; BranchOpc = X86::JA_4; break;
1014 case CmpInst::ICMP_UGE: SwapArgs = false; BranchOpc = X86::JAE_4; break;
1015 case CmpInst::ICMP_ULT: SwapArgs = false; BranchOpc = X86::JB_4; break;
1016 case CmpInst::ICMP_ULE: SwapArgs = false; BranchOpc = X86::JBE_4; break;
1017 case CmpInst::ICMP_SGT: SwapArgs = false; BranchOpc = X86::JG_4; break;
1018 case CmpInst::ICMP_SGE: SwapArgs = false; BranchOpc = X86::JGE_4; break;
1019 case CmpInst::ICMP_SLT: SwapArgs = false; BranchOpc = X86::JL_4; break;
1020 case CmpInst::ICMP_SLE: SwapArgs = false; BranchOpc = X86::JLE_4; break;
Dan Gohmand98d6202008-10-02 22:15:21 +00001021 default:
1022 return false;
1023 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001024
Dan Gohman46510a72010-04-15 01:51:59 +00001025 const Value *Op0 = CI->getOperand(0), *Op1 = CI->getOperand(1);
Chris Lattner709d8292008-10-15 04:02:26 +00001026 if (SwapArgs)
1027 std::swap(Op0, Op1);
1028
Chris Lattner9a08a612008-10-15 04:26:38 +00001029 // Emit a compare of the LHS and RHS, setting the flags.
1030 if (!X86FastEmitCompare(Op0, Op1, VT))
1031 return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001032
Dan Gohman84023e02010-07-10 09:00:22 +00001033 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(BranchOpc))
1034 .addMBB(TrueMBB);
Dan Gohman7b66e042008-10-21 18:24:51 +00001035
1036 if (Predicate == CmpInst::FCMP_UNE) {
1037 // X86 requires a second branch to handle UNE (and OEQ,
1038 // which is mapped to UNE above).
Dan Gohman84023e02010-07-10 09:00:22 +00001039 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::JP_4))
1040 .addMBB(TrueMBB);
Dan Gohman7b66e042008-10-21 18:24:51 +00001041 }
1042
Stuart Hastings3bf91252010-06-17 22:43:56 +00001043 FastEmitBranch(FalseMBB, DL);
Dan Gohman84023e02010-07-10 09:00:22 +00001044 FuncInfo.MBB->addSuccessor(TrueMBB);
Dan Gohmand98d6202008-10-02 22:15:21 +00001045 return true;
1046 }
Chris Lattner90cb88a2011-04-19 04:22:17 +00001047 } else if (TruncInst *TI = dyn_cast<TruncInst>(BI->getCondition())) {
1048 // Handle things like "%cond = trunc i32 %X to i1 / br i1 %cond", which
1049 // typically happen for _Bool and C++ bools.
1050 MVT SourceVT;
1051 if (TI->hasOneUse() && TI->getParent() == I->getParent() &&
1052 isTypeLegal(TI->getOperand(0)->getType(), SourceVT)) {
1053 unsigned TestOpc = 0;
1054 switch (SourceVT.SimpleTy) {
1055 default: break;
1056 case MVT::i8: TestOpc = X86::TEST8ri; break;
1057 case MVT::i16: TestOpc = X86::TEST16ri; break;
1058 case MVT::i32: TestOpc = X86::TEST32ri; break;
1059 case MVT::i64: TestOpc = X86::TEST64ri32; break;
1060 }
1061 if (TestOpc) {
1062 unsigned OpReg = getRegForValue(TI->getOperand(0));
1063 if (OpReg == 0) return false;
1064 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TestOpc))
1065 .addReg(OpReg).addImm(1);
Eric Christopher471e4222011-06-08 23:55:35 +00001066
Chris Lattnerc76d1212011-04-19 04:26:32 +00001067 unsigned JmpOpc = X86::JNE_4;
1068 if (FuncInfo.MBB->isLayoutSuccessor(TrueMBB)) {
1069 std::swap(TrueMBB, FalseMBB);
1070 JmpOpc = X86::JE_4;
1071 }
Eric Christopher471e4222011-06-08 23:55:35 +00001072
Chris Lattnerc76d1212011-04-19 04:26:32 +00001073 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(JmpOpc))
Chris Lattner90cb88a2011-04-19 04:22:17 +00001074 .addMBB(TrueMBB);
1075 FastEmitBranch(FalseMBB, DL);
1076 FuncInfo.MBB->addSuccessor(TrueMBB);
1077 return true;
1078 }
1079 }
Dan Gohmand98d6202008-10-02 22:15:21 +00001080 }
1081
1082 // Otherwise do a clumsy setcc and re-test it.
Eli Friedman547eb4f2011-04-27 01:34:27 +00001083 // Note that i1 essentially gets ANY_EXTEND'ed to i8 where it isn't used
1084 // in an explicit cast, so make sure to handle that correctly.
Dan Gohmand98d6202008-10-02 22:15:21 +00001085 unsigned OpReg = getRegForValue(BI->getCondition());
1086 if (OpReg == 0) return false;
1087
Eli Friedman547eb4f2011-04-27 01:34:27 +00001088 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::TEST8ri))
1089 .addReg(OpReg).addImm(1);
Dan Gohman84023e02010-07-10 09:00:22 +00001090 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::JNE_4))
1091 .addMBB(TrueMBB);
Stuart Hastings3bf91252010-06-17 22:43:56 +00001092 FastEmitBranch(FalseMBB, DL);
Dan Gohman84023e02010-07-10 09:00:22 +00001093 FuncInfo.MBB->addSuccessor(TrueMBB);
Dan Gohmand89ae992008-09-05 01:06:14 +00001094 return true;
1095}
1096
Dan Gohman46510a72010-04-15 01:51:59 +00001097bool X86FastISel::X86SelectShift(const Instruction *I) {
Chris Lattner602fc062011-04-17 20:23:29 +00001098 unsigned CReg = 0, OpReg = 0;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001099 const TargetRegisterClass *RC = NULL;
Duncan Sandsb0bc6c32010-02-15 16:12:20 +00001100 if (I->getType()->isIntegerTy(8)) {
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001101 CReg = X86::CL;
1102 RC = &X86::GR8RegClass;
1103 switch (I->getOpcode()) {
Chris Lattner602fc062011-04-17 20:23:29 +00001104 case Instruction::LShr: OpReg = X86::SHR8rCL; break;
1105 case Instruction::AShr: OpReg = X86::SAR8rCL; break;
1106 case Instruction::Shl: OpReg = X86::SHL8rCL; break;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001107 default: return false;
1108 }
Duncan Sandsb0bc6c32010-02-15 16:12:20 +00001109 } else if (I->getType()->isIntegerTy(16)) {
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001110 CReg = X86::CX;
1111 RC = &X86::GR16RegClass;
1112 switch (I->getOpcode()) {
Chris Lattner602fc062011-04-17 20:23:29 +00001113 case Instruction::LShr: OpReg = X86::SHR16rCL; break;
1114 case Instruction::AShr: OpReg = X86::SAR16rCL; break;
1115 case Instruction::Shl: OpReg = X86::SHL16rCL; break;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001116 default: return false;
1117 }
Duncan Sandsb0bc6c32010-02-15 16:12:20 +00001118 } else if (I->getType()->isIntegerTy(32)) {
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001119 CReg = X86::ECX;
1120 RC = &X86::GR32RegClass;
1121 switch (I->getOpcode()) {
Chris Lattner602fc062011-04-17 20:23:29 +00001122 case Instruction::LShr: OpReg = X86::SHR32rCL; break;
1123 case Instruction::AShr: OpReg = X86::SAR32rCL; break;
1124 case Instruction::Shl: OpReg = X86::SHL32rCL; break;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001125 default: return false;
1126 }
Duncan Sandsb0bc6c32010-02-15 16:12:20 +00001127 } else if (I->getType()->isIntegerTy(64)) {
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001128 CReg = X86::RCX;
1129 RC = &X86::GR64RegClass;
1130 switch (I->getOpcode()) {
Chris Lattner602fc062011-04-17 20:23:29 +00001131 case Instruction::LShr: OpReg = X86::SHR64rCL; break;
1132 case Instruction::AShr: OpReg = X86::SAR64rCL; break;
1133 case Instruction::Shl: OpReg = X86::SHL64rCL; break;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001134 default: return false;
1135 }
1136 } else {
1137 return false;
1138 }
1139
Duncan Sands1440e8b2010-11-03 11:35:31 +00001140 MVT VT;
1141 if (!isTypeLegal(I->getType(), VT))
Dan Gohmanf58cb6d2008-09-05 21:27:34 +00001142 return false;
1143
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001144 unsigned Op0Reg = getRegForValue(I->getOperand(0));
1145 if (Op0Reg == 0) return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001146
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001147 unsigned Op1Reg = getRegForValue(I->getOperand(1));
1148 if (Op1Reg == 0) return false;
Jakob Stoklund Olesen5127f792010-07-11 03:31:00 +00001149 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
1150 CReg).addReg(Op1Reg);
Dan Gohman145b8282008-10-07 21:50:36 +00001151
1152 // The shift instruction uses X86::CL. If we defined a super-register
Jakob Stoklund Olesen0bc25f42010-07-08 16:40:22 +00001153 // of X86::CL, emit a subreg KILL to precisely describe what we're doing here.
Dan Gohman145b8282008-10-07 21:50:36 +00001154 if (CReg != X86::CL)
Dan Gohman84023e02010-07-10 09:00:22 +00001155 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1156 TII.get(TargetOpcode::KILL), X86::CL)
Jakob Stoklund Olesen0bc25f42010-07-08 16:40:22 +00001157 .addReg(CReg, RegState::Kill);
Dan Gohman145b8282008-10-07 21:50:36 +00001158
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001159 unsigned ResultReg = createResultReg(RC);
Dan Gohman84023e02010-07-10 09:00:22 +00001160 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(OpReg), ResultReg)
1161 .addReg(Op0Reg);
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001162 UpdateValueMap(I, ResultReg);
1163 return true;
1164}
1165
Dan Gohman46510a72010-04-15 01:51:59 +00001166bool X86FastISel::X86SelectSelect(const Instruction *I) {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001167 MVT VT;
1168 if (!isTypeLegal(I->getType(), VT))
Chris Lattner160f6cc2008-10-15 05:07:36 +00001169 return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001170
Eric Christophere487b012010-09-29 23:00:29 +00001171 // We only use cmov here, if we don't have a cmov instruction bail.
1172 if (!Subtarget->hasCMov()) return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001173
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001174 unsigned Opc = 0;
1175 const TargetRegisterClass *RC = NULL;
Duncan Sands1440e8b2010-11-03 11:35:31 +00001176 if (VT == MVT::i16) {
Dan Gohman31d26912008-09-05 21:13:04 +00001177 Opc = X86::CMOVE16rr;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001178 RC = &X86::GR16RegClass;
Duncan Sands1440e8b2010-11-03 11:35:31 +00001179 } else if (VT == MVT::i32) {
Dan Gohman31d26912008-09-05 21:13:04 +00001180 Opc = X86::CMOVE32rr;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001181 RC = &X86::GR32RegClass;
Duncan Sands1440e8b2010-11-03 11:35:31 +00001182 } else if (VT == MVT::i64) {
Dan Gohman31d26912008-09-05 21:13:04 +00001183 Opc = X86::CMOVE64rr;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001184 RC = &X86::GR64RegClass;
1185 } else {
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001186 return false;
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001187 }
1188
1189 unsigned Op0Reg = getRegForValue(I->getOperand(0));
1190 if (Op0Reg == 0) return false;
1191 unsigned Op1Reg = getRegForValue(I->getOperand(1));
1192 if (Op1Reg == 0) return false;
1193 unsigned Op2Reg = getRegForValue(I->getOperand(2));
1194 if (Op2Reg == 0) return false;
1195
Dan Gohman84023e02010-07-10 09:00:22 +00001196 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::TEST8rr))
1197 .addReg(Op0Reg).addReg(Op0Reg);
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001198 unsigned ResultReg = createResultReg(RC);
Dan Gohman84023e02010-07-10 09:00:22 +00001199 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc), ResultReg)
1200 .addReg(Op1Reg).addReg(Op2Reg);
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001201 UpdateValueMap(I, ResultReg);
1202 return true;
1203}
1204
Dan Gohman46510a72010-04-15 01:51:59 +00001205bool X86FastISel::X86SelectFPExt(const Instruction *I) {
Chris Lattner160f6cc2008-10-15 05:07:36 +00001206 // fpext from float to double.
Owen Anderson1d0be152009-08-13 21:58:54 +00001207 if (Subtarget->hasSSE2() &&
Chris Lattnercf0fe8d2009-10-05 05:54:46 +00001208 I->getType()->isDoubleTy()) {
Dan Gohman46510a72010-04-15 01:51:59 +00001209 const Value *V = I->getOperand(0);
Chris Lattnercf0fe8d2009-10-05 05:54:46 +00001210 if (V->getType()->isFloatTy()) {
Chris Lattner160f6cc2008-10-15 05:07:36 +00001211 unsigned OpReg = getRegForValue(V);
1212 if (OpReg == 0) return false;
1213 unsigned ResultReg = createResultReg(X86::FR64RegisterClass);
Dan Gohman84023e02010-07-10 09:00:22 +00001214 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1215 TII.get(X86::CVTSS2SDrr), ResultReg)
1216 .addReg(OpReg);
Chris Lattner160f6cc2008-10-15 05:07:36 +00001217 UpdateValueMap(I, ResultReg);
1218 return true;
Dan Gohman78efce62008-09-10 21:02:08 +00001219 }
1220 }
1221
1222 return false;
1223}
1224
Dan Gohman46510a72010-04-15 01:51:59 +00001225bool X86FastISel::X86SelectFPTrunc(const Instruction *I) {
Dan Gohman78efce62008-09-10 21:02:08 +00001226 if (Subtarget->hasSSE2()) {
Chris Lattnercf0fe8d2009-10-05 05:54:46 +00001227 if (I->getType()->isFloatTy()) {
Dan Gohman46510a72010-04-15 01:51:59 +00001228 const Value *V = I->getOperand(0);
Chris Lattnercf0fe8d2009-10-05 05:54:46 +00001229 if (V->getType()->isDoubleTy()) {
Dan Gohman78efce62008-09-10 21:02:08 +00001230 unsigned OpReg = getRegForValue(V);
1231 if (OpReg == 0) return false;
1232 unsigned ResultReg = createResultReg(X86::FR32RegisterClass);
Dan Gohman84023e02010-07-10 09:00:22 +00001233 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1234 TII.get(X86::CVTSD2SSrr), ResultReg)
1235 .addReg(OpReg);
Dan Gohman78efce62008-09-10 21:02:08 +00001236 UpdateValueMap(I, ResultReg);
1237 return true;
1238 }
1239 }
1240 }
1241
1242 return false;
1243}
1244
Dan Gohman46510a72010-04-15 01:51:59 +00001245bool X86FastISel::X86SelectTrunc(const Instruction *I) {
Owen Andersone50ed302009-08-10 22:56:29 +00001246 EVT SrcVT = TLI.getValueType(I->getOperand(0)->getType());
1247 EVT DstVT = TLI.getValueType(I->getType());
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001248
Eli Friedman76927d732011-05-25 23:49:02 +00001249 // This code only handles truncation to byte.
Owen Anderson825b72b2009-08-11 20:47:22 +00001250 if (DstVT != MVT::i8 && DstVT != MVT::i1)
Evan Cheng10a8d9c2008-09-07 08:47:42 +00001251 return false;
Eli Friedman76927d732011-05-25 23:49:02 +00001252 if (!TLI.isTypeLegal(SrcVT))
Evan Cheng10a8d9c2008-09-07 08:47:42 +00001253 return false;
1254
1255 unsigned InputReg = getRegForValue(I->getOperand(0));
1256 if (!InputReg)
1257 // Unhandled operand. Halt "fast" selection and bail.
1258 return false;
1259
Eli Friedman76927d732011-05-25 23:49:02 +00001260 if (SrcVT == MVT::i8) {
1261 // Truncate from i8 to i1; no code needed.
1262 UpdateValueMap(I, InputReg);
1263 return true;
1264 }
Evan Cheng10a8d9c2008-09-07 08:47:42 +00001265
Eli Friedman76927d732011-05-25 23:49:02 +00001266 if (!Subtarget->is64Bit()) {
1267 // If we're on x86-32; we can't extract an i8 from a general register.
1268 // First issue a copy to GR16_ABCD or GR32_ABCD.
1269 const TargetRegisterClass *CopyRC = (SrcVT == MVT::i16)
1270 ? X86::GR16_ABCDRegisterClass : X86::GR32_ABCDRegisterClass;
1271 unsigned CopyReg = createResultReg(CopyRC);
1272 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
1273 CopyReg).addReg(InputReg);
1274 InputReg = CopyReg;
1275 }
1276
1277 // Issue an extract_subreg.
Owen Anderson825b72b2009-08-11 20:47:22 +00001278 unsigned ResultReg = FastEmitInst_extractsubreg(MVT::i8,
Eli Friedman76927d732011-05-25 23:49:02 +00001279 InputReg, /*Kill=*/true,
Jakob Stoklund Olesen3458e9e2010-05-24 14:48:17 +00001280 X86::sub_8bit);
Evan Cheng10a8d9c2008-09-07 08:47:42 +00001281 if (!ResultReg)
1282 return false;
1283
1284 UpdateValueMap(I, ResultReg);
1285 return true;
1286}
1287
Eli Friedmanc0883452011-05-20 22:21:04 +00001288bool X86FastISel::IsMemcpySmall(uint64_t Len) {
1289 return Len <= (Subtarget->is64Bit() ? 32 : 16);
1290}
1291
Eli Friedmand5089a92011-04-27 01:45:07 +00001292bool X86FastISel::TryEmitSmallMemcpy(X86AddressMode DestAM,
1293 X86AddressMode SrcAM, uint64_t Len) {
Eli Friedmanc0883452011-05-20 22:21:04 +00001294
Eli Friedmand5089a92011-04-27 01:45:07 +00001295 // Make sure we don't bloat code by inlining very large memcpy's.
Eli Friedmanc0883452011-05-20 22:21:04 +00001296 if (!IsMemcpySmall(Len))
1297 return false;
1298
1299 bool i64Legal = Subtarget->is64Bit();
Eli Friedmand5089a92011-04-27 01:45:07 +00001300
1301 // We don't care about alignment here since we just emit integer accesses.
1302 while (Len) {
1303 MVT VT;
1304 if (Len >= 8 && i64Legal)
1305 VT = MVT::i64;
1306 else if (Len >= 4)
1307 VT = MVT::i32;
1308 else if (Len >= 2)
1309 VT = MVT::i16;
1310 else {
1311 assert(Len == 1);
1312 VT = MVT::i8;
1313 }
1314
1315 unsigned Reg;
1316 bool RV = X86FastEmitLoad(VT, SrcAM, Reg);
1317 RV &= X86FastEmitStore(VT, Reg, DestAM);
1318 assert(RV && "Failed to emit load or store??");
1319
1320 unsigned Size = VT.getSizeInBits()/8;
1321 Len -= Size;
1322 DestAM.Disp += Size;
1323 SrcAM.Disp += Size;
1324 }
1325
1326 return true;
1327}
1328
Dan Gohman46510a72010-04-15 01:51:59 +00001329bool X86FastISel::X86VisitIntrinsicCall(const IntrinsicInst &I) {
Bill Wendling52370a12008-12-09 02:42:50 +00001330 // FIXME: Handle more intrinsics.
Chris Lattnera9a42252009-04-12 07:36:01 +00001331 switch (I.getIntrinsicID()) {
Bill Wendling52370a12008-12-09 02:42:50 +00001332 default: return false;
Chris Lattner832e4942011-04-19 05:52:03 +00001333 case Intrinsic::memcpy: {
1334 const MemCpyInst &MCI = cast<MemCpyInst>(I);
1335 // Don't handle volatile or variable length memcpys.
1336 if (MCI.isVolatile() || !isa<ConstantInt>(MCI.getLength()))
1337 return false;
Eli Friedmand5089a92011-04-27 01:45:07 +00001338
Chris Lattner832e4942011-04-19 05:52:03 +00001339 uint64_t Len = cast<ConstantInt>(MCI.getLength())->getZExtValue();
Eric Christopher471e4222011-06-08 23:55:35 +00001340
Chris Lattner832e4942011-04-19 05:52:03 +00001341 // Get the address of the dest and source addresses.
1342 X86AddressMode DestAM, SrcAM;
1343 if (!X86SelectAddress(MCI.getRawDest(), DestAM) ||
1344 !X86SelectAddress(MCI.getRawSource(), SrcAM))
1345 return false;
Eli Friedmand5089a92011-04-27 01:45:07 +00001346
1347 return TryEmitSmallMemcpy(DestAM, SrcAM, Len);
Chris Lattner832e4942011-04-19 05:52:03 +00001348 }
Eric Christopher471e4222011-06-08 23:55:35 +00001349
Eric Christopher07754c22010-03-18 20:27:26 +00001350 case Intrinsic::stackprotector: {
1351 // Emit code inline code to store the stack guard onto the stack.
1352 EVT PtrTy = TLI.getPointerTy();
1353
Gabor Greif1cfe44a2010-06-26 11:51:52 +00001354 const Value *Op1 = I.getArgOperand(0); // The guard's value.
1355 const AllocaInst *Slot = cast<AllocaInst>(I.getArgOperand(1));
Eric Christopher07754c22010-03-18 20:27:26 +00001356
1357 // Grab the frame index.
1358 X86AddressMode AM;
1359 if (!X86SelectAddress(Slot, AM)) return false;
Eric Christopher88dee302010-03-18 21:58:33 +00001360 if (!X86FastEmitStore(PtrTy, Op1, AM)) return false;
Eric Christopher07754c22010-03-18 20:27:26 +00001361 return true;
1362 }
Dale Johannesen5ed17ae2010-01-26 00:09:58 +00001363 case Intrinsic::dbg_declare: {
Dan Gohman46510a72010-04-15 01:51:59 +00001364 const DbgDeclareInst *DI = cast<DbgDeclareInst>(&I);
Dale Johannesen5ed17ae2010-01-26 00:09:58 +00001365 X86AddressMode AM;
Dale Johannesen973f4672010-01-29 21:21:28 +00001366 assert(DI->getAddress() && "Null address should be checked earlier!");
Dale Johannesen5ed17ae2010-01-26 00:09:58 +00001367 if (!X86SelectAddress(DI->getAddress(), AM))
1368 return false;
Chris Lattner518bb532010-02-09 19:54:29 +00001369 const TargetInstrDesc &II = TII.get(TargetOpcode::DBG_VALUE);
Dale Johannesen116b7992010-02-18 18:51:15 +00001370 // FIXME may need to add RegState::Debug to any registers produced,
1371 // although ESP/EBP should be the only ones at the moment.
Dan Gohman84023e02010-07-10 09:00:22 +00001372 addFullAddress(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II), AM).
1373 addImm(0).addMetadata(DI->getVariable());
Dale Johannesen5ed17ae2010-01-26 00:09:58 +00001374 return true;
1375 }
Eric Christopher77f79892010-01-18 22:11:29 +00001376 case Intrinsic::trap: {
Dan Gohman84023e02010-07-10 09:00:22 +00001377 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::TRAP));
Eric Christopher77f79892010-01-18 22:11:29 +00001378 return true;
1379 }
Bill Wendling52370a12008-12-09 02:42:50 +00001380 case Intrinsic::sadd_with_overflow:
1381 case Intrinsic::uadd_with_overflow: {
Chris Lattner832e4942011-04-19 05:52:03 +00001382 // FIXME: Should fold immediates.
Eric Christopher471e4222011-06-08 23:55:35 +00001383
Bill Wendlingc065b3f2008-12-09 07:55:31 +00001384 // Replace "add with overflow" intrinsics with an "add" instruction followed
Eli Friedman482feb32011-05-16 21:06:17 +00001385 // by a seto/setc instruction.
Bill Wendling52370a12008-12-09 02:42:50 +00001386 const Function *Callee = I.getCalledFunction();
1387 const Type *RetTy =
1388 cast<StructType>(Callee->getReturnType())->getTypeAtIndex(unsigned(0));
1389
Duncan Sands1440e8b2010-11-03 11:35:31 +00001390 MVT VT;
Bill Wendling52370a12008-12-09 02:42:50 +00001391 if (!isTypeLegal(RetTy, VT))
1392 return false;
1393
Gabor Greif1cfe44a2010-06-26 11:51:52 +00001394 const Value *Op1 = I.getArgOperand(0);
1395 const Value *Op2 = I.getArgOperand(1);
Bill Wendling52370a12008-12-09 02:42:50 +00001396 unsigned Reg1 = getRegForValue(Op1);
1397 unsigned Reg2 = getRegForValue(Op2);
1398
1399 if (Reg1 == 0 || Reg2 == 0)
1400 // FIXME: Handle values *not* in registers.
1401 return false;
1402
1403 unsigned OpC = 0;
Owen Anderson825b72b2009-08-11 20:47:22 +00001404 if (VT == MVT::i32)
Bill Wendling52370a12008-12-09 02:42:50 +00001405 OpC = X86::ADD32rr;
Owen Anderson825b72b2009-08-11 20:47:22 +00001406 else if (VT == MVT::i64)
Bill Wendling52370a12008-12-09 02:42:50 +00001407 OpC = X86::ADD64rr;
1408 else
1409 return false;
1410
Eli Friedman482feb32011-05-16 21:06:17 +00001411 // The call to CreateRegs builds two sequential registers, to store the
1412 // both the the returned values.
1413 unsigned ResultReg = FuncInfo.CreateRegs(I.getType());
Dan Gohman84023e02010-07-10 09:00:22 +00001414 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(OpC), ResultReg)
1415 .addReg(Reg1).addReg(Reg2);
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001416
Chris Lattnera9a42252009-04-12 07:36:01 +00001417 unsigned Opc = X86::SETBr;
1418 if (I.getIntrinsicID() == Intrinsic::sadd_with_overflow)
1419 Opc = X86::SETOr;
Eli Friedman482feb32011-05-16 21:06:17 +00001420 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc), ResultReg+1);
1421
1422 UpdateValueMap(&I, ResultReg, 2);
Bill Wendling52370a12008-12-09 02:42:50 +00001423 return true;
1424 }
1425 }
1426}
1427
Dan Gohman46510a72010-04-15 01:51:59 +00001428bool X86FastISel::X86SelectCall(const Instruction *I) {
1429 const CallInst *CI = cast<CallInst>(I);
Gabor Greif1cfe44a2010-06-26 11:51:52 +00001430 const Value *Callee = CI->getCalledValue();
Evan Chengf3d4efe2008-09-07 09:09:33 +00001431
1432 // Can't handle inline asm yet.
1433 if (isa<InlineAsm>(Callee))
1434 return false;
1435
Bill Wendling52370a12008-12-09 02:42:50 +00001436 // Handle intrinsic calls.
Dan Gohman46510a72010-04-15 01:51:59 +00001437 if (const IntrinsicInst *II = dyn_cast<IntrinsicInst>(CI))
Chris Lattnera9a42252009-04-12 07:36:01 +00001438 return X86VisitIntrinsicCall(*II);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001439
Evan Chengf3d4efe2008-09-07 09:09:33 +00001440 // Handle only C and fastcc calling conventions for now.
Dan Gohman46510a72010-04-15 01:51:59 +00001441 ImmutableCallSite CS(CI);
Sandeep Patel65c3c8f2009-09-02 08:44:58 +00001442 CallingConv::ID CC = CS.getCallingConv();
Chris Lattnere03b8d32011-04-19 04:42:38 +00001443 if (CC != CallingConv::C && CC != CallingConv::Fast &&
Evan Chengf3d4efe2008-09-07 09:09:33 +00001444 CC != CallingConv::X86_FastCall)
1445 return false;
1446
Evan Cheng381993f2010-01-27 00:00:57 +00001447 // fastcc with -tailcallopt is intended to provide a guaranteed
1448 // tail call optimization. Fastisel doesn't know how to do that.
Dan Gohman1797ed52010-02-08 20:27:50 +00001449 if (CC == CallingConv::Fast && GuaranteedTailCallOpt)
Evan Cheng381993f2010-01-27 00:00:57 +00001450 return false;
1451
Evan Chengf3d4efe2008-09-07 09:09:33 +00001452 const PointerType *PT = cast<PointerType>(CS.getCalledValue()->getType());
1453 const FunctionType *FTy = cast<FunctionType>(PT->getElementType());
Eli Friedman37620462011-04-19 17:22:22 +00001454 bool isVarArg = FTy->isVarArg();
1455
1456 // Don't know how to handle Win64 varargs yet. Nothing special needed for
1457 // x86-32. Special handling for x86-64 is implemented.
1458 if (isVarArg && Subtarget->isTargetWin64())
Evan Chengf3d4efe2008-09-07 09:09:33 +00001459 return false;
1460
Dan Gohman4d3d6e12010-05-27 18:43:40 +00001461 // Fast-isel doesn't know about callee-pop yet.
Eli Friedman37620462011-04-19 17:22:22 +00001462 if (Subtarget->IsCalleePop(isVarArg, CC))
Dan Gohman4d3d6e12010-05-27 18:43:40 +00001463 return false;
1464
Eli Friedman19515b42011-05-17 18:29:03 +00001465 // Check whether the function can return without sret-demotion.
1466 SmallVector<ISD::OutputArg, 4> Outs;
1467 SmallVector<uint64_t, 4> Offsets;
1468 GetReturnInfo(I->getType(), CS.getAttributes().getRetAttributes(),
1469 Outs, TLI, &Offsets);
1470 bool CanLowerReturn = TLI.CanLowerReturn(CS.getCallingConv(),
Eric Christopher471e4222011-06-08 23:55:35 +00001471 *FuncInfo.MF, FTy->isVarArg(),
1472 Outs, FTy->getContext());
Eli Friedman19515b42011-05-17 18:29:03 +00001473 if (!CanLowerReturn)
Eli Friedmanc93943b2011-05-17 02:36:59 +00001474 return false;
1475
Dan Gohmanb5b6ec62008-09-17 21:18:49 +00001476 // Materialize callee address in a register. FIXME: GV address can be
1477 // handled with a CALLpcrel32 instead.
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001478 X86AddressMode CalleeAM;
Chris Lattner0aa43de2009-07-10 05:33:42 +00001479 if (!X86SelectCallAddress(Callee, CalleeAM))
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001480 return false;
Dan Gohmanb5b6ec62008-09-17 21:18:49 +00001481 unsigned CalleeOp = 0;
Dan Gohman46510a72010-04-15 01:51:59 +00001482 const GlobalValue *GV = 0;
Chris Lattner553e5712009-06-27 04:50:14 +00001483 if (CalleeAM.GV != 0) {
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001484 GV = CalleeAM.GV;
Chris Lattner553e5712009-06-27 04:50:14 +00001485 } else if (CalleeAM.Base.Reg != 0) {
1486 CalleeOp = CalleeAM.Base.Reg;
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001487 } else
1488 return false;
Dan Gohmanb5b6ec62008-09-17 21:18:49 +00001489
Evan Chengf3d4efe2008-09-07 09:09:33 +00001490 // Deal with call operands first.
Dan Gohman46510a72010-04-15 01:51:59 +00001491 SmallVector<const Value *, 8> ArgVals;
Chris Lattner241ab472008-10-15 05:38:32 +00001492 SmallVector<unsigned, 8> Args;
Duncan Sands1440e8b2010-11-03 11:35:31 +00001493 SmallVector<MVT, 8> ArgVTs;
Chris Lattner241ab472008-10-15 05:38:32 +00001494 SmallVector<ISD::ArgFlagsTy, 8> ArgFlags;
Evan Chengf3d4efe2008-09-07 09:09:33 +00001495 Args.reserve(CS.arg_size());
Chris Lattner241ab472008-10-15 05:38:32 +00001496 ArgVals.reserve(CS.arg_size());
Evan Chengf3d4efe2008-09-07 09:09:33 +00001497 ArgVTs.reserve(CS.arg_size());
1498 ArgFlags.reserve(CS.arg_size());
Dan Gohman46510a72010-04-15 01:51:59 +00001499 for (ImmutableCallSite::arg_iterator i = CS.arg_begin(), e = CS.arg_end();
Evan Chengf3d4efe2008-09-07 09:09:33 +00001500 i != e; ++i) {
Chris Lattnere03b8d32011-04-19 04:42:38 +00001501 Value *ArgVal = *i;
Evan Chengf3d4efe2008-09-07 09:09:33 +00001502 ISD::ArgFlagsTy Flags;
1503 unsigned AttrInd = i - CS.arg_begin() + 1;
Devang Patel05988662008-09-25 21:00:45 +00001504 if (CS.paramHasAttr(AttrInd, Attribute::SExt))
Evan Chengf3d4efe2008-09-07 09:09:33 +00001505 Flags.setSExt();
Devang Patel05988662008-09-25 21:00:45 +00001506 if (CS.paramHasAttr(AttrInd, Attribute::ZExt))
Evan Chengf3d4efe2008-09-07 09:09:33 +00001507 Flags.setZExt();
1508
Eli Friedmanc0883452011-05-20 22:21:04 +00001509 if (CS.paramHasAttr(AttrInd, Attribute::ByVal)) {
1510 const PointerType *Ty = cast<PointerType>(ArgVal->getType());
1511 const Type *ElementTy = Ty->getElementType();
1512 unsigned FrameSize = TD.getTypeAllocSize(ElementTy);
1513 unsigned FrameAlign = CS.getParamAlignment(AttrInd);
1514 if (!FrameAlign)
1515 FrameAlign = TLI.getByValTypeAlignment(ElementTy);
1516 Flags.setByVal();
1517 Flags.setByValSize(FrameSize);
1518 Flags.setByValAlign(FrameAlign);
1519 if (!IsMemcpySmall(FrameSize))
1520 return false;
1521 }
1522
1523 if (CS.paramHasAttr(AttrInd, Attribute::InReg))
1524 Flags.setInReg();
1525 if (CS.paramHasAttr(AttrInd, Attribute::Nest))
1526 Flags.setNest();
1527
Chris Lattnere03b8d32011-04-19 04:42:38 +00001528 // If this is an i1/i8/i16 argument, promote to i32 to avoid an extra
1529 // instruction. This is safe because it is common to all fastisel supported
1530 // calling conventions on x86.
1531 if (ConstantInt *CI = dyn_cast<ConstantInt>(ArgVal)) {
1532 if (CI->getBitWidth() == 1 || CI->getBitWidth() == 8 ||
1533 CI->getBitWidth() == 16) {
1534 if (Flags.isSExt())
1535 ArgVal = ConstantExpr::getSExt(CI,Type::getInt32Ty(CI->getContext()));
1536 else
1537 ArgVal = ConstantExpr::getZExt(CI,Type::getInt32Ty(CI->getContext()));
1538 }
1539 }
Eric Christopher471e4222011-06-08 23:55:35 +00001540
Chris Lattnerb44101c2011-04-19 05:09:50 +00001541 unsigned ArgReg;
Eric Christopher471e4222011-06-08 23:55:35 +00001542
Chris Lattnerff009ad2011-04-19 05:15:59 +00001543 // Passing bools around ends up doing a trunc to i1 and passing it.
1544 // Codegen this as an argument + "and 1".
Chris Lattnerb44101c2011-04-19 05:09:50 +00001545 if (ArgVal->getType()->isIntegerTy(1) && isa<TruncInst>(ArgVal) &&
1546 cast<TruncInst>(ArgVal)->getParent() == I->getParent() &&
1547 ArgVal->hasOneUse()) {
Chris Lattnerb44101c2011-04-19 05:09:50 +00001548 ArgVal = cast<TruncInst>(ArgVal)->getOperand(0);
1549 ArgReg = getRegForValue(ArgVal);
1550 if (ArgReg == 0) return false;
Eric Christopher471e4222011-06-08 23:55:35 +00001551
Chris Lattnerb44101c2011-04-19 05:09:50 +00001552 MVT ArgVT;
1553 if (!isTypeLegal(ArgVal->getType(), ArgVT)) return false;
Eric Christopher471e4222011-06-08 23:55:35 +00001554
Chris Lattnerb44101c2011-04-19 05:09:50 +00001555 ArgReg = FastEmit_ri(ArgVT, ArgVT, ISD::AND, ArgReg,
1556 ArgVal->hasOneUse(), 1);
1557 } else {
1558 ArgReg = getRegForValue(ArgVal);
Chris Lattnerb44101c2011-04-19 05:09:50 +00001559 }
Chris Lattnere03b8d32011-04-19 04:42:38 +00001560
Chris Lattnerff009ad2011-04-19 05:15:59 +00001561 if (ArgReg == 0) return false;
1562
Chris Lattnere03b8d32011-04-19 04:42:38 +00001563 const Type *ArgTy = ArgVal->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00001564 MVT ArgVT;
Chris Lattner160f6cc2008-10-15 05:07:36 +00001565 if (!isTypeLegal(ArgTy, ArgVT))
Evan Chengf3d4efe2008-09-07 09:09:33 +00001566 return false;
Eli Friedmanc0883452011-05-20 22:21:04 +00001567 if (ArgVT == MVT::x86mmx)
1568 return false;
Evan Chengf3d4efe2008-09-07 09:09:33 +00001569 unsigned OriginalAlignment = TD.getABITypeAlignment(ArgTy);
1570 Flags.setOrigAlign(OriginalAlignment);
1571
Chris Lattnerb44101c2011-04-19 05:09:50 +00001572 Args.push_back(ArgReg);
Chris Lattnere03b8d32011-04-19 04:42:38 +00001573 ArgVals.push_back(ArgVal);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001574 ArgVTs.push_back(ArgVT);
1575 ArgFlags.push_back(Flags);
1576 }
1577
1578 // Analyze operands of the call, assigning locations to each operand.
1579 SmallVector<CCValAssign, 16> ArgLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00001580 CCState CCInfo(CC, isVarArg, *FuncInfo.MF, TM, ArgLocs,
1581 I->getParent()->getContext());
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001582
Dan Gohmand8acddd2010-06-01 21:09:47 +00001583 // Allocate shadow area for Win64
Chris Lattnere03b8d32011-04-19 04:42:38 +00001584 if (Subtarget->isTargetWin64())
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001585 CCInfo.AllocateStack(32, 8);
Dan Gohmand8acddd2010-06-01 21:09:47 +00001586
Duncan Sands45907662010-10-31 13:21:44 +00001587 CCInfo.AnalyzeCallOperands(ArgVTs, ArgFlags, CC_X86);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001588
1589 // Get a count of how many bytes are to be pushed on the stack.
1590 unsigned NumBytes = CCInfo.getNextStackOffset();
1591
1592 // Issue CALLSEQ_START
Dan Gohman6d4b0522008-10-01 18:28:06 +00001593 unsigned AdjStackDown = TM.getRegisterInfo()->getCallFrameSetupOpcode();
Dan Gohman84023e02010-07-10 09:00:22 +00001594 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(AdjStackDown))
1595 .addImm(NumBytes);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001596
Chris Lattner438949a2008-10-15 05:30:52 +00001597 // Process argument: walk the register/memloc assignments, inserting
Evan Chengf3d4efe2008-09-07 09:09:33 +00001598 // copies / loads.
1599 SmallVector<unsigned, 4> RegArgs;
1600 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
1601 CCValAssign &VA = ArgLocs[i];
1602 unsigned Arg = Args[VA.getValNo()];
Owen Andersone50ed302009-08-10 22:56:29 +00001603 EVT ArgVT = ArgVTs[VA.getValNo()];
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001604
Evan Chengf3d4efe2008-09-07 09:09:33 +00001605 // Promote the value if needed.
1606 switch (VA.getLocInfo()) {
Torok Edwinc23197a2009-07-14 16:55:14 +00001607 default: llvm_unreachable("Unknown loc info!");
Evan Chengf3d4efe2008-09-07 09:09:33 +00001608 case CCValAssign::Full: break;
Evan Cheng24e3a902008-09-08 06:35:17 +00001609 case CCValAssign::SExt: {
Eli Friedmanc0883452011-05-20 22:21:04 +00001610 assert(VA.getLocVT().isInteger() && !VA.getLocVT().isVector() &&
1611 "Unexpected extend");
Evan Cheng24e3a902008-09-08 06:35:17 +00001612 bool Emitted = X86FastEmitExtend(ISD::SIGN_EXTEND, VA.getLocVT(),
1613 Arg, ArgVT, Arg);
Chris Lattnerc46ec642011-01-05 22:26:52 +00001614 assert(Emitted && "Failed to emit a sext!"); (void)Emitted;
Evan Cheng24e3a902008-09-08 06:35:17 +00001615 ArgVT = VA.getLocVT();
Evan Chengf3d4efe2008-09-07 09:09:33 +00001616 break;
Evan Cheng24e3a902008-09-08 06:35:17 +00001617 }
1618 case CCValAssign::ZExt: {
Eli Friedmanc0883452011-05-20 22:21:04 +00001619 assert(VA.getLocVT().isInteger() && !VA.getLocVT().isVector() &&
1620 "Unexpected extend");
Evan Cheng24e3a902008-09-08 06:35:17 +00001621 bool Emitted = X86FastEmitExtend(ISD::ZERO_EXTEND, VA.getLocVT(),
1622 Arg, ArgVT, Arg);
Chris Lattnerc46ec642011-01-05 22:26:52 +00001623 assert(Emitted && "Failed to emit a zext!"); (void)Emitted;
Evan Cheng24e3a902008-09-08 06:35:17 +00001624 ArgVT = VA.getLocVT();
Evan Chengf3d4efe2008-09-07 09:09:33 +00001625 break;
Evan Cheng24e3a902008-09-08 06:35:17 +00001626 }
1627 case CCValAssign::AExt: {
Eli Friedmanc0883452011-05-20 22:21:04 +00001628 assert(VA.getLocVT().isInteger() && !VA.getLocVT().isVector() &&
1629 "Unexpected extend");
Evan Cheng24e3a902008-09-08 06:35:17 +00001630 bool Emitted = X86FastEmitExtend(ISD::ANY_EXTEND, VA.getLocVT(),
1631 Arg, ArgVT, Arg);
Owen Andersonb6369132008-09-11 02:41:37 +00001632 if (!Emitted)
1633 Emitted = X86FastEmitExtend(ISD::ZERO_EXTEND, VA.getLocVT(),
Chris Lattner160f6cc2008-10-15 05:07:36 +00001634 Arg, ArgVT, Arg);
Owen Andersonb6369132008-09-11 02:41:37 +00001635 if (!Emitted)
1636 Emitted = X86FastEmitExtend(ISD::SIGN_EXTEND, VA.getLocVT(),
1637 Arg, ArgVT, Arg);
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001638
Chris Lattnerc46ec642011-01-05 22:26:52 +00001639 assert(Emitted && "Failed to emit a aext!"); (void)Emitted;
Evan Cheng24e3a902008-09-08 06:35:17 +00001640 ArgVT = VA.getLocVT();
Evan Chengf3d4efe2008-09-07 09:09:33 +00001641 break;
1642 }
Dan Gohmanc3c9c482009-08-05 05:33:42 +00001643 case CCValAssign::BCvt: {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001644 unsigned BC = FastEmit_r(ArgVT.getSimpleVT(), VA.getLocVT(),
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001645 ISD::BITCAST, Arg, /*TODO: Kill=*/false);
Dan Gohmanc3c9c482009-08-05 05:33:42 +00001646 assert(BC != 0 && "Failed to emit a bitcast!");
1647 Arg = BC;
1648 ArgVT = VA.getLocVT();
1649 break;
1650 }
Evan Cheng24e3a902008-09-08 06:35:17 +00001651 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001652
Evan Chengf3d4efe2008-09-07 09:09:33 +00001653 if (VA.isRegLoc()) {
Jakob Stoklund Olesen5127f792010-07-11 03:31:00 +00001654 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
1655 VA.getLocReg()).addReg(Arg);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001656 RegArgs.push_back(VA.getLocReg());
1657 } else {
1658 unsigned LocMemOffset = VA.getLocMemOffset();
Dan Gohman0586d912008-09-10 20:11:02 +00001659 X86AddressMode AM;
1660 AM.Base.Reg = StackPtr;
1661 AM.Disp = LocMemOffset;
Dan Gohman46510a72010-04-15 01:51:59 +00001662 const Value *ArgVal = ArgVals[VA.getValNo()];
Eli Friedmanc0883452011-05-20 22:21:04 +00001663 ISD::ArgFlagsTy Flags = ArgFlags[VA.getValNo()];
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001664
Eli Friedmanc0883452011-05-20 22:21:04 +00001665 if (Flags.isByVal()) {
1666 X86AddressMode SrcAM;
1667 SrcAM.Base.Reg = Arg;
1668 bool Res = TryEmitSmallMemcpy(AM, SrcAM, Flags.getByValSize());
1669 assert(Res && "memcpy length already checked!"); (void)Res;
1670 } else if (isa<ConstantInt>(ArgVal) || isa<ConstantPointerNull>(ArgVal)) {
1671 // If this is a really simple value, emit this with the Value* version
1672 //of X86FastEmitStore. If it isn't simple, we don't want to do this,
1673 // as it can cause us to reevaluate the argument.
Chris Lattner241ab472008-10-15 05:38:32 +00001674 X86FastEmitStore(ArgVT, ArgVal, AM);
Eli Friedmanc0883452011-05-20 22:21:04 +00001675 } else {
Chris Lattner241ab472008-10-15 05:38:32 +00001676 X86FastEmitStore(ArgVT, Arg, AM);
Eli Friedmanc0883452011-05-20 22:21:04 +00001677 }
Evan Chengf3d4efe2008-09-07 09:09:33 +00001678 }
1679 }
1680
Dan Gohman2cc3aa42008-09-25 15:24:26 +00001681 // ELF / PIC requires GOT in the EBX register before function calls via PLT
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001682 // GOT pointer.
Chris Lattner15a380a2009-07-09 04:39:06 +00001683 if (Subtarget->isPICStyleGOT()) {
Dan Gohmana4160c32010-07-07 16:29:44 +00001684 unsigned Base = getInstrInfo()->getGlobalBaseReg(FuncInfo.MF);
Jakob Stoklund Olesen5127f792010-07-11 03:31:00 +00001685 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
1686 X86::EBX).addReg(Base);
Dan Gohman2cc3aa42008-09-25 15:24:26 +00001687 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001688
Eli Friedman37620462011-04-19 17:22:22 +00001689 if (Subtarget->is64Bit() && isVarArg && !Subtarget->isTargetWin64()) {
1690 // Count the number of XMM registers allocated.
1691 static const unsigned XMMArgRegs[] = {
1692 X86::XMM0, X86::XMM1, X86::XMM2, X86::XMM3,
1693 X86::XMM4, X86::XMM5, X86::XMM6, X86::XMM7
1694 };
1695 unsigned NumXMMRegs = CCInfo.getFirstUnallocated(XMMArgRegs, 8);
1696 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(X86::MOV8ri),
1697 X86::AL).addImm(NumXMMRegs);
1698 }
1699
Evan Chengf3d4efe2008-09-07 09:09:33 +00001700 // Issue the call.
Chris Lattner51e8eab2009-07-09 06:34:26 +00001701 MachineInstrBuilder MIB;
1702 if (CalleeOp) {
1703 // Register-indirect call.
Nate Begeman0c07b642010-07-22 00:09:39 +00001704 unsigned CallOpc;
1705 if (Subtarget->isTargetWin64())
1706 CallOpc = X86::WINCALL64r;
1707 else if (Subtarget->is64Bit())
1708 CallOpc = X86::CALL64r;
1709 else
1710 CallOpc = X86::CALL32r;
Dan Gohman84023e02010-07-10 09:00:22 +00001711 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(CallOpc))
1712 .addReg(CalleeOp);
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001713
Chris Lattner51e8eab2009-07-09 06:34:26 +00001714 } else {
1715 // Direct call.
1716 assert(GV && "Not a direct call");
Nate Begeman0c07b642010-07-22 00:09:39 +00001717 unsigned CallOpc;
1718 if (Subtarget->isTargetWin64())
1719 CallOpc = X86::WINCALL64pcrel32;
1720 else if (Subtarget->is64Bit())
1721 CallOpc = X86::CALL64pcrel32;
1722 else
1723 CallOpc = X86::CALLpcrel32;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001724
Chris Lattner51e8eab2009-07-09 06:34:26 +00001725 // See if we need any target-specific flags on the GV operand.
1726 unsigned char OpFlags = 0;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001727
Chris Lattner51e8eab2009-07-09 06:34:26 +00001728 // On ELF targets, in both X86-64 and X86-32 mode, direct calls to
1729 // external symbols most go through the PLT in PIC mode. If the symbol
1730 // has hidden or protected visibility, or if it is static or local, then
1731 // we don't need to use the PLT - we can directly call it.
1732 if (Subtarget->isTargetELF() &&
1733 TM.getRelocationModel() == Reloc::PIC_ &&
1734 GV->hasDefaultVisibility() && !GV->hasLocalLinkage()) {
1735 OpFlags = X86II::MO_PLT;
Chris Lattner3b67e9b2009-07-10 20:47:30 +00001736 } else if (Subtarget->isPICStyleStubAny() &&
Chris Lattner51e8eab2009-07-09 06:34:26 +00001737 (GV->isDeclaration() || GV->isWeakForLinker()) &&
Daniel Dunbar558692f2011-04-20 00:14:25 +00001738 (!Subtarget->getTargetTriple().isMacOSX() ||
1739 Subtarget->getTargetTriple().isMacOSXVersionLT(10, 5))) {
Chris Lattner51e8eab2009-07-09 06:34:26 +00001740 // PC-relative references to external symbols should go through $stub,
1741 // unless we're building with the leopard linker or later, which
1742 // automatically synthesizes these stubs.
1743 OpFlags = X86II::MO_DARWIN_STUB;
1744 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001745
1746
Dan Gohman84023e02010-07-10 09:00:22 +00001747 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(CallOpc))
1748 .addGlobalAddress(GV, 0, OpFlags);
Chris Lattner51e8eab2009-07-09 06:34:26 +00001749 }
Dan Gohman2cc3aa42008-09-25 15:24:26 +00001750
1751 // Add an implicit use GOT pointer in EBX.
Chris Lattner15a380a2009-07-09 04:39:06 +00001752 if (Subtarget->isPICStyleGOT())
Dan Gohman2cc3aa42008-09-25 15:24:26 +00001753 MIB.addReg(X86::EBX);
1754
Eli Friedman37620462011-04-19 17:22:22 +00001755 if (Subtarget->is64Bit() && isVarArg && !Subtarget->isTargetWin64())
1756 MIB.addReg(X86::AL);
1757
Evan Chengf3d4efe2008-09-07 09:09:33 +00001758 // Add implicit physical register uses to the call.
Dan Gohman8c3f8b62008-10-07 22:10:33 +00001759 for (unsigned i = 0, e = RegArgs.size(); i != e; ++i)
1760 MIB.addReg(RegArgs[i]);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001761
1762 // Issue CALLSEQ_END
Dan Gohman6d4b0522008-10-01 18:28:06 +00001763 unsigned AdjStackUp = TM.getRegisterInfo()->getCallFrameDestroyOpcode();
Eli Friedmand227eed2011-04-28 20:19:12 +00001764 unsigned NumBytesCallee = 0;
1765 if (!Subtarget->is64Bit() && CS.paramHasAttr(1, Attribute::StructRet))
1766 NumBytesCallee = 4;
Dan Gohman84023e02010-07-10 09:00:22 +00001767 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(AdjStackUp))
Eli Friedmand227eed2011-04-28 20:19:12 +00001768 .addImm(NumBytes).addImm(NumBytesCallee);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001769
Eli Friedman19515b42011-05-17 18:29:03 +00001770 // Build info for return calling conv lowering code.
1771 // FIXME: This is practically a copy-paste from TargetLowering::LowerCallTo.
1772 SmallVector<ISD::InputArg, 32> Ins;
1773 SmallVector<EVT, 4> RetTys;
1774 ComputeValueVTs(TLI, I->getType(), RetTys);
1775 for (unsigned i = 0, e = RetTys.size(); i != e; ++i) {
1776 EVT VT = RetTys[i];
1777 EVT RegisterVT = TLI.getRegisterType(I->getParent()->getContext(), VT);
1778 unsigned NumRegs = TLI.getNumRegisters(I->getParent()->getContext(), VT);
1779 for (unsigned j = 0; j != NumRegs; ++j) {
1780 ISD::InputArg MyFlags;
1781 MyFlags.VT = RegisterVT.getSimpleVT();
1782 MyFlags.Used = !CS.getInstruction()->use_empty();
1783 if (CS.paramHasAttr(0, Attribute::SExt))
1784 MyFlags.Flags.setSExt();
1785 if (CS.paramHasAttr(0, Attribute::ZExt))
1786 MyFlags.Flags.setZExt();
1787 if (CS.paramHasAttr(0, Attribute::InReg))
1788 MyFlags.Flags.setInReg();
1789 Ins.push_back(MyFlags);
1790 }
1791 }
Eli Friedmanc93943b2011-05-17 02:36:59 +00001792
Eli Friedman19515b42011-05-17 18:29:03 +00001793 // Now handle call return values.
1794 SmallVector<unsigned, 4> UsedRegs;
1795 SmallVector<CCValAssign, 16> RVLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00001796 CCState CCRetInfo(CC, false, *FuncInfo.MF, TM, RVLocs,
1797 I->getParent()->getContext());
Eli Friedman19515b42011-05-17 18:29:03 +00001798 unsigned ResultReg = FuncInfo.CreateRegs(I->getType());
1799 CCRetInfo.AnalyzeCallResult(Ins, RetCC_X86);
1800 for (unsigned i = 0; i != RVLocs.size(); ++i) {
1801 EVT CopyVT = RVLocs[i].getValVT();
1802 unsigned CopyReg = ResultReg + i;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001803
Evan Chengf3d4efe2008-09-07 09:09:33 +00001804 // If this is a call to a function that returns an fp value on the x87 fp
1805 // stack, but where we prefer to use the value in xmm registers, copy it
1806 // out as F80 and use a truncate to move it from fp stack reg to xmm reg.
Eli Friedman19515b42011-05-17 18:29:03 +00001807 if ((RVLocs[i].getLocReg() == X86::ST0 ||
1808 RVLocs[i].getLocReg() == X86::ST1) &&
Evan Chengf3d4efe2008-09-07 09:09:33 +00001809 isScalarFPTypeInSSEReg(RVLocs[0].getValVT())) {
Owen Anderson825b72b2009-08-11 20:47:22 +00001810 CopyVT = MVT::f80;
Eli Friedman19515b42011-05-17 18:29:03 +00001811 CopyReg = createResultReg(X86::RFP80RegisterClass);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001812 }
1813
Jakob Stoklund Olesen5127f792010-07-11 03:31:00 +00001814 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
Eli Friedman19515b42011-05-17 18:29:03 +00001815 CopyReg).addReg(RVLocs[i].getLocReg());
1816 UsedRegs.push_back(RVLocs[i].getLocReg());
Dan Gohmandb497122010-06-18 23:28:01 +00001817
Eli Friedman19515b42011-05-17 18:29:03 +00001818 if (CopyVT != RVLocs[i].getValVT()) {
Evan Chengf3d4efe2008-09-07 09:09:33 +00001819 // Round the F80 the right size, which also moves to the appropriate xmm
1820 // register. This is accomplished by storing the F80 value in memory and
1821 // then loading it back. Ewww...
Eli Friedman19515b42011-05-17 18:29:03 +00001822 EVT ResVT = RVLocs[i].getValVT();
Owen Anderson825b72b2009-08-11 20:47:22 +00001823 unsigned Opc = ResVT == MVT::f32 ? X86::ST_Fp80m32 : X86::ST_Fp80m64;
Evan Chengf3d4efe2008-09-07 09:09:33 +00001824 unsigned MemSize = ResVT.getSizeInBits()/8;
David Greene3f2bf852009-11-12 20:49:22 +00001825 int FI = MFI.CreateStackObject(MemSize, MemSize, false);
Dan Gohman84023e02010-07-10 09:00:22 +00001826 addFrameReference(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1827 TII.get(Opc)), FI)
Eli Friedman19515b42011-05-17 18:29:03 +00001828 .addReg(CopyReg);
Owen Anderson825b72b2009-08-11 20:47:22 +00001829 Opc = ResVT == MVT::f32 ? X86::MOVSSrm : X86::MOVSDrm;
Dan Gohman84023e02010-07-10 09:00:22 +00001830 addFrameReference(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eli Friedman19515b42011-05-17 18:29:03 +00001831 TII.get(Opc), ResultReg + i), FI);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001832 }
Eli Friedmanc93943b2011-05-17 02:36:59 +00001833 }
Eli Friedmancdc9a202011-05-17 00:13:47 +00001834
Eli Friedman19515b42011-05-17 18:29:03 +00001835 if (RVLocs.size())
1836 UpdateValueMap(I, ResultReg, RVLocs.size());
1837
Dan Gohmandb497122010-06-18 23:28:01 +00001838 // Set all unused physreg defs as dead.
1839 static_cast<MachineInstr *>(MIB)->setPhysRegsDeadExcept(UsedRegs, TRI);
1840
Evan Chengf3d4efe2008-09-07 09:09:33 +00001841 return true;
1842}
1843
1844
Dan Gohman99b21822008-08-28 23:21:34 +00001845bool
Dan Gohman46510a72010-04-15 01:51:59 +00001846X86FastISel::TargetSelectInstruction(const Instruction *I) {
Dan Gohman99b21822008-08-28 23:21:34 +00001847 switch (I->getOpcode()) {
1848 default: break;
Evan Cheng8b19e562008-09-03 06:44:39 +00001849 case Instruction::Load:
Dan Gohman3df24e62008-09-03 23:12:08 +00001850 return X86SelectLoad(I);
Owen Anderson79924eb2008-09-04 16:48:33 +00001851 case Instruction::Store:
1852 return X86SelectStore(I);
Dan Gohman84023e02010-07-10 09:00:22 +00001853 case Instruction::Ret:
1854 return X86SelectRet(I);
Dan Gohman6e3f05f2008-09-04 23:26:51 +00001855 case Instruction::ICmp:
1856 case Instruction::FCmp:
1857 return X86SelectCmp(I);
Dan Gohmand89ae992008-09-05 01:06:14 +00001858 case Instruction::ZExt:
1859 return X86SelectZExt(I);
1860 case Instruction::Br:
1861 return X86SelectBranch(I);
Evan Chengf3d4efe2008-09-07 09:09:33 +00001862 case Instruction::Call:
1863 return X86SelectCall(I);
Dan Gohmanc39f4db2008-09-05 18:30:08 +00001864 case Instruction::LShr:
1865 case Instruction::AShr:
1866 case Instruction::Shl:
1867 return X86SelectShift(I);
1868 case Instruction::Select:
1869 return X86SelectSelect(I);
Evan Cheng10a8d9c2008-09-07 08:47:42 +00001870 case Instruction::Trunc:
1871 return X86SelectTrunc(I);
Dan Gohman78efce62008-09-10 21:02:08 +00001872 case Instruction::FPExt:
1873 return X86SelectFPExt(I);
1874 case Instruction::FPTrunc:
1875 return X86SelectFPTrunc(I);
Dan Gohman474d3b32009-03-13 23:53:06 +00001876 case Instruction::IntToPtr: // Deliberate fall-through.
1877 case Instruction::PtrToInt: {
Owen Andersone50ed302009-08-10 22:56:29 +00001878 EVT SrcVT = TLI.getValueType(I->getOperand(0)->getType());
1879 EVT DstVT = TLI.getValueType(I->getType());
Dan Gohman474d3b32009-03-13 23:53:06 +00001880 if (DstVT.bitsGT(SrcVT))
1881 return X86SelectZExt(I);
1882 if (DstVT.bitsLT(SrcVT))
1883 return X86SelectTrunc(I);
1884 unsigned Reg = getRegForValue(I->getOperand(0));
1885 if (Reg == 0) return false;
1886 UpdateValueMap(I, Reg);
1887 return true;
1888 }
Dan Gohman99b21822008-08-28 23:21:34 +00001889 }
1890
1891 return false;
1892}
1893
Dan Gohman46510a72010-04-15 01:51:59 +00001894unsigned X86FastISel::TargetMaterializeConstant(const Constant *C) {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001895 MVT VT;
Chris Lattner160f6cc2008-10-15 05:07:36 +00001896 if (!isTypeLegal(C->getType(), VT))
Owen Anderson95267a12008-09-05 00:06:23 +00001897 return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001898
Owen Anderson95267a12008-09-05 00:06:23 +00001899 // Get opcode and regclass of the output for the given load instruction.
1900 unsigned Opc = 0;
1901 const TargetRegisterClass *RC = NULL;
Duncan Sands1440e8b2010-11-03 11:35:31 +00001902 switch (VT.SimpleTy) {
Owen Anderson95267a12008-09-05 00:06:23 +00001903 default: return false;
Owen Anderson825b72b2009-08-11 20:47:22 +00001904 case MVT::i8:
Owen Anderson95267a12008-09-05 00:06:23 +00001905 Opc = X86::MOV8rm;
1906 RC = X86::GR8RegisterClass;
1907 break;
Owen Anderson825b72b2009-08-11 20:47:22 +00001908 case MVT::i16:
Owen Anderson95267a12008-09-05 00:06:23 +00001909 Opc = X86::MOV16rm;
1910 RC = X86::GR16RegisterClass;
1911 break;
Owen Anderson825b72b2009-08-11 20:47:22 +00001912 case MVT::i32:
Owen Anderson95267a12008-09-05 00:06:23 +00001913 Opc = X86::MOV32rm;
1914 RC = X86::GR32RegisterClass;
1915 break;
Owen Anderson825b72b2009-08-11 20:47:22 +00001916 case MVT::i64:
Owen Anderson95267a12008-09-05 00:06:23 +00001917 // Must be in x86-64 mode.
1918 Opc = X86::MOV64rm;
1919 RC = X86::GR64RegisterClass;
1920 break;
Owen Anderson825b72b2009-08-11 20:47:22 +00001921 case MVT::f32:
Owen Anderson95267a12008-09-05 00:06:23 +00001922 if (Subtarget->hasSSE1()) {
1923 Opc = X86::MOVSSrm;
1924 RC = X86::FR32RegisterClass;
1925 } else {
1926 Opc = X86::LD_Fp32m;
1927 RC = X86::RFP32RegisterClass;
1928 }
1929 break;
Owen Anderson825b72b2009-08-11 20:47:22 +00001930 case MVT::f64:
Owen Anderson95267a12008-09-05 00:06:23 +00001931 if (Subtarget->hasSSE2()) {
1932 Opc = X86::MOVSDrm;
1933 RC = X86::FR64RegisterClass;
1934 } else {
1935 Opc = X86::LD_Fp64m;
1936 RC = X86::RFP64RegisterClass;
1937 }
1938 break;
Owen Anderson825b72b2009-08-11 20:47:22 +00001939 case MVT::f80:
Dan Gohman5af29c22008-09-26 01:39:32 +00001940 // No f80 support yet.
1941 return false;
Owen Anderson95267a12008-09-05 00:06:23 +00001942 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001943
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001944 // Materialize addresses with LEA instructions.
Owen Anderson95267a12008-09-05 00:06:23 +00001945 if (isa<GlobalValue>(C)) {
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001946 X86AddressMode AM;
Chris Lattner0aa43de2009-07-10 05:33:42 +00001947 if (X86SelectAddress(C, AM)) {
Chris Lattner685090f2011-04-17 17:12:08 +00001948 // If the expression is just a basereg, then we're done, otherwise we need
1949 // to emit an LEA.
1950 if (AM.BaseType == X86AddressMode::RegBase &&
1951 AM.IndexReg == 0 && AM.Disp == 0 && AM.GV == 0)
1952 return AM.Base.Reg;
Eric Christopher471e4222011-06-08 23:55:35 +00001953
Chris Lattner685090f2011-04-17 17:12:08 +00001954 Opc = TLI.getPointerTy() == MVT::i32 ? X86::LEA32r : X86::LEA64r;
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001955 unsigned ResultReg = createResultReg(RC);
Dan Gohman84023e02010-07-10 09:00:22 +00001956 addFullAddress(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1957 TII.get(Opc), ResultReg), AM);
Owen Anderson95267a12008-09-05 00:06:23 +00001958 return ResultReg;
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001959 }
Evan Cheng0de588f2008-09-05 21:00:03 +00001960 return 0;
Owen Anderson95267a12008-09-05 00:06:23 +00001961 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001962
Owen Anderson3b217c62008-09-06 01:11:01 +00001963 // MachineConstantPool wants an explicit alignment.
Evan Cheng1606e8e2009-03-13 07:51:59 +00001964 unsigned Align = TD.getPrefTypeAlignment(C->getType());
Owen Anderson3b217c62008-09-06 01:11:01 +00001965 if (Align == 0) {
1966 // Alignment of vector types. FIXME!
Duncan Sands777d2302009-05-09 07:06:46 +00001967 Align = TD.getTypeAllocSize(C->getType());
Owen Anderson3b217c62008-09-06 01:11:01 +00001968 }
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001969
Dan Gohman5396c992008-09-30 01:21:32 +00001970 // x86-32 PIC requires a PIC base register for constant pools.
1971 unsigned PICBase = 0;
Chris Lattner89da6992009-06-27 01:31:51 +00001972 unsigned char OpFlag = 0;
Chris Lattnere2c92082009-07-10 21:00:45 +00001973 if (Subtarget->isPICStyleStubPIC()) { // Not dynamic-no-pic
Chris Lattner15a380a2009-07-09 04:39:06 +00001974 OpFlag = X86II::MO_PIC_BASE_OFFSET;
Dan Gohmana4160c32010-07-07 16:29:44 +00001975 PICBase = getInstrInfo()->getGlobalBaseReg(FuncInfo.MF);
Chris Lattner15a380a2009-07-09 04:39:06 +00001976 } else if (Subtarget->isPICStyleGOT()) {
1977 OpFlag = X86II::MO_GOTOFF;
Dan Gohmana4160c32010-07-07 16:29:44 +00001978 PICBase = getInstrInfo()->getGlobalBaseReg(FuncInfo.MF);
Chris Lattner15a380a2009-07-09 04:39:06 +00001979 } else if (Subtarget->isPICStyleRIPRel() &&
1980 TM.getCodeModel() == CodeModel::Small) {
1981 PICBase = X86::RIP;
Chris Lattner89da6992009-06-27 01:31:51 +00001982 }
Dan Gohman5396c992008-09-30 01:21:32 +00001983
1984 // Create the load from the constant pool.
Dan Gohman0586d912008-09-10 20:11:02 +00001985 unsigned MCPOffset = MCP.getConstantPoolIndex(C, Align);
Dan Gohman2ff7fd12008-09-19 22:16:54 +00001986 unsigned ResultReg = createResultReg(RC);
Dan Gohman84023e02010-07-10 09:00:22 +00001987 addConstantPoolReference(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1988 TII.get(Opc), ResultReg),
Chris Lattner89da6992009-06-27 01:31:51 +00001989 MCPOffset, PICBase, OpFlag);
Dan Gohman5396c992008-09-30 01:21:32 +00001990
Owen Anderson95267a12008-09-05 00:06:23 +00001991 return ResultReg;
1992}
1993
Dan Gohman46510a72010-04-15 01:51:59 +00001994unsigned X86FastISel::TargetMaterializeAlloca(const AllocaInst *C) {
Dan Gohman4e6ed5e2008-10-03 01:27:49 +00001995 // Fail on dynamic allocas. At this point, getRegForValue has already
1996 // checked its CSE maps, so if we're here trying to handle a dynamic
1997 // alloca, we're not going to succeed. X86SelectAddress has a
1998 // check for dynamic allocas, because it's called directly from
1999 // various places, but TargetMaterializeAlloca also needs a check
2000 // in order to avoid recursion between getRegForValue,
2001 // X86SelectAddrss, and TargetMaterializeAlloca.
Dan Gohmana4160c32010-07-07 16:29:44 +00002002 if (!FuncInfo.StaticAllocaMap.count(C))
Dan Gohman4e6ed5e2008-10-03 01:27:49 +00002003 return 0;
2004
Dan Gohman0586d912008-09-10 20:11:02 +00002005 X86AddressMode AM;
Chris Lattner0aa43de2009-07-10 05:33:42 +00002006 if (!X86SelectAddress(C, AM))
Dan Gohman0586d912008-09-10 20:11:02 +00002007 return 0;
2008 unsigned Opc = Subtarget->is64Bit() ? X86::LEA64r : X86::LEA32r;
2009 TargetRegisterClass* RC = TLI.getRegClassFor(TLI.getPointerTy());
2010 unsigned ResultReg = createResultReg(RC);
Dan Gohman84023e02010-07-10 09:00:22 +00002011 addFullAddress(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2012 TII.get(Opc), ResultReg), AM);
Dan Gohman0586d912008-09-10 20:11:02 +00002013 return ResultReg;
2014}
2015
Eli Friedman2790ba82011-04-27 22:41:55 +00002016unsigned X86FastISel::TargetMaterializeFloatZero(const ConstantFP *CF) {
2017 MVT VT;
2018 if (!isTypeLegal(CF->getType(), VT))
2019 return false;
2020
2021 // Get opcode and regclass for the given zero.
2022 unsigned Opc = 0;
2023 const TargetRegisterClass *RC = NULL;
2024 switch (VT.SimpleTy) {
2025 default: return false;
2026 case MVT::f32:
2027 if (Subtarget->hasSSE1()) {
2028 Opc = X86::FsFLD0SS;
2029 RC = X86::FR32RegisterClass;
2030 } else {
2031 Opc = X86::LD_Fp032;
2032 RC = X86::RFP32RegisterClass;
2033 }
2034 break;
2035 case MVT::f64:
2036 if (Subtarget->hasSSE2()) {
2037 Opc = X86::FsFLD0SD;
2038 RC = X86::FR64RegisterClass;
2039 } else {
2040 Opc = X86::LD_Fp064;
2041 RC = X86::RFP64RegisterClass;
2042 }
2043 break;
2044 case MVT::f80:
2045 // No f80 support yet.
2046 return false;
2047 }
2048
2049 unsigned ResultReg = createResultReg(RC);
2050 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc), ResultReg);
2051 return ResultReg;
2052}
2053
2054
Chris Lattnerbeac75d2010-09-05 02:18:34 +00002055/// TryToFoldLoad - The specified machine instr operand is a vreg, and that
2056/// vreg is being provided by the specified load instruction. If possible,
2057/// try to fold the load as an operand to the instruction, returning true if
2058/// possible.
2059bool X86FastISel::TryToFoldLoad(MachineInstr *MI, unsigned OpNo,
2060 const LoadInst *LI) {
2061 X86AddressMode AM;
2062 if (!X86SelectAddress(LI->getOperand(0), AM))
2063 return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00002064
Chris Lattnerbeac75d2010-09-05 02:18:34 +00002065 X86InstrInfo &XII = (X86InstrInfo&)TII;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00002066
Chris Lattnerbeac75d2010-09-05 02:18:34 +00002067 unsigned Size = TD.getTypeAllocSize(LI->getType());
2068 unsigned Alignment = LI->getAlignment();
2069
2070 SmallVector<MachineOperand, 8> AddrOps;
2071 AM.getFullAddress(AddrOps);
Wesley Peckbf17cfa2010-11-23 03:31:01 +00002072
Chris Lattnerbeac75d2010-09-05 02:18:34 +00002073 MachineInstr *Result =
2074 XII.foldMemoryOperandImpl(*FuncInfo.MF, MI, OpNo, AddrOps, Size, Alignment);
2075 if (Result == 0) return false;
Wesley Peckbf17cfa2010-11-23 03:31:01 +00002076
Chris Lattnerb99fdee2011-01-16 02:27:38 +00002077 FuncInfo.MBB->insert(FuncInfo.InsertPt, Result);
Chris Lattnerbeac75d2010-09-05 02:18:34 +00002078 MI->eraseFromParent();
2079 return true;
2080}
2081
2082
Evan Chengc3f44b02008-09-03 00:03:49 +00002083namespace llvm {
Dan Gohmana4160c32010-07-07 16:29:44 +00002084 llvm::FastISel *X86::createFastISel(FunctionLoweringInfo &funcInfo) {
2085 return new X86FastISel(funcInfo);
Evan Chengc3f44b02008-09-03 00:03:49 +00002086 }
Dan Gohman99b21822008-08-28 23:21:34 +00002087}