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Eric Christopherab695882010-07-21 22:26:11 +00001//===-- ARMFastISel.cpp - ARM 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 ARM-specific support for the FastISel class. Some
11// of the target-specific code is generated by tablegen in the file
12// ARMGenFastISel.inc, which is #included here.
13//
14//===----------------------------------------------------------------------===//
15
16#include "ARM.h"
Eric Christopher456144e2010-08-19 00:37:05 +000017#include "ARMBaseInstrInfo.h"
Eric Christopherd10cd7b2010-09-10 23:18:12 +000018#include "ARMCallingConv.h"
Eric Christopherc9932f62010-10-01 23:24:42 +000019#include "ARMConstantPoolValue.h"
Chandler Carruthd04a8d42012-12-03 16:50:05 +000020#include "ARMSubtarget.h"
21#include "ARMTargetMachine.h"
Evan Chengee04a6d2011-07-20 23:34:39 +000022#include "MCTargetDesc/ARMAddressingModes.h"
JF Bastien5ab77042013-06-11 22:13:46 +000023#include "llvm/ADT/STLExtras.h"
Chandler Carruthd04a8d42012-12-03 16:50:05 +000024#include "llvm/CodeGen/Analysis.h"
25#include "llvm/CodeGen/FastISel.h"
26#include "llvm/CodeGen/FunctionLoweringInfo.h"
27#include "llvm/CodeGen/MachineConstantPool.h"
28#include "llvm/CodeGen/MachineFrameInfo.h"
29#include "llvm/CodeGen/MachineInstrBuilder.h"
30#include "llvm/CodeGen/MachineMemOperand.h"
31#include "llvm/CodeGen/MachineModuleInfo.h"
32#include "llvm/CodeGen/MachineRegisterInfo.h"
Chandler Carruth0b8c9a82013-01-02 11:36:10 +000033#include "llvm/IR/CallingConv.h"
34#include "llvm/IR/DataLayout.h"
35#include "llvm/IR/DerivedTypes.h"
36#include "llvm/IR/GlobalVariable.h"
37#include "llvm/IR/Instructions.h"
38#include "llvm/IR/IntrinsicInst.h"
39#include "llvm/IR/Module.h"
40#include "llvm/IR/Operator.h"
Eric Christopherab695882010-07-21 22:26:11 +000041#include "llvm/Support/CallSite.h"
Eric Christopher038fea52010-08-17 00:46:57 +000042#include "llvm/Support/CommandLine.h"
Eric Christopherab695882010-07-21 22:26:11 +000043#include "llvm/Support/ErrorHandling.h"
44#include "llvm/Support/GetElementPtrTypeIterator.h"
JF Bastien8fc760c2013-06-07 20:10:37 +000045#include "llvm/Support/MathExtras.h"
Eric Christopher0fe7d542010-08-17 01:25:29 +000046#include "llvm/Target/TargetInstrInfo.h"
47#include "llvm/Target/TargetLowering.h"
48#include "llvm/Target/TargetMachine.h"
Eric Christopherab695882010-07-21 22:26:11 +000049#include "llvm/Target/TargetOptions.h"
50using namespace llvm;
51
Eric Christopher836c6242010-12-15 23:47:29 +000052extern cl::opt<bool> EnableARMLongCalls;
53
Eric Christopherab695882010-07-21 22:26:11 +000054namespace {
Eric Christopher827656d2010-11-20 22:38:27 +000055
Eric Christopher0d581222010-11-19 22:30:02 +000056 // All possible address modes, plus some.
57 typedef struct Address {
58 enum {
59 RegBase,
60 FrameIndexBase
61 } BaseType;
Eric Christopher827656d2010-11-20 22:38:27 +000062
Eric Christopher0d581222010-11-19 22:30:02 +000063 union {
64 unsigned Reg;
65 int FI;
66 } Base;
Eric Christopher827656d2010-11-20 22:38:27 +000067
Eric Christopher0d581222010-11-19 22:30:02 +000068 int Offset;
Eric Christopher827656d2010-11-20 22:38:27 +000069
Eric Christopher0d581222010-11-19 22:30:02 +000070 // Innocuous defaults for our address.
71 Address()
Jim Grosbach0c720762011-05-16 22:24:07 +000072 : BaseType(RegBase), Offset(0) {
Eric Christopher0d581222010-11-19 22:30:02 +000073 Base.Reg = 0;
74 }
75 } Address;
Eric Christopherab695882010-07-21 22:26:11 +000076
77class ARMFastISel : public FastISel {
78
79 /// Subtarget - Keep a pointer to the ARMSubtarget around so that we can
80 /// make the right decision when generating code for different targets.
81 const ARMSubtarget *Subtarget;
Eric Christopher0fe7d542010-08-17 01:25:29 +000082 const TargetMachine &TM;
83 const TargetInstrInfo &TII;
84 const TargetLowering &TLI;
Eric Christopherc9932f62010-10-01 23:24:42 +000085 ARMFunctionInfo *AFI;
Eric Christopherab695882010-07-21 22:26:11 +000086
Eric Christopher8cf6c602010-09-29 22:24:45 +000087 // Convenience variables to avoid some queries.
Chad Rosier66dc8ca2011-11-08 21:12:00 +000088 bool isThumb2;
Eric Christopher8cf6c602010-09-29 22:24:45 +000089 LLVMContext *Context;
Eric Christophereaa204b2010-09-02 01:39:14 +000090
Eric Christopherab695882010-07-21 22:26:11 +000091 public:
Bob Wilsond49edb72012-08-03 04:06:28 +000092 explicit ARMFastISel(FunctionLoweringInfo &funcInfo,
93 const TargetLibraryInfo *libInfo)
94 : FastISel(funcInfo, libInfo),
Eric Christopher0fe7d542010-08-17 01:25:29 +000095 TM(funcInfo.MF->getTarget()),
96 TII(*TM.getInstrInfo()),
97 TLI(*TM.getTargetLowering()) {
Eric Christopherab695882010-07-21 22:26:11 +000098 Subtarget = &TM.getSubtarget<ARMSubtarget>();
Eric Christopher7fe55b72010-08-23 22:32:45 +000099 AFI = funcInfo.MF->getInfo<ARMFunctionInfo>();
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000100 isThumb2 = AFI->isThumbFunction();
Eric Christopher8cf6c602010-09-29 22:24:45 +0000101 Context = &funcInfo.Fn->getContext();
Eric Christopherab695882010-07-21 22:26:11 +0000102 }
103
Eric Christophercb592292010-08-20 00:20:31 +0000104 // Code from FastISel.cpp.
Craig Topper35fc62b2012-08-18 21:38:45 +0000105 private:
106 unsigned FastEmitInst_(unsigned MachineInstOpcode,
107 const TargetRegisterClass *RC);
108 unsigned FastEmitInst_r(unsigned MachineInstOpcode,
109 const TargetRegisterClass *RC,
110 unsigned Op0, bool Op0IsKill);
111 unsigned FastEmitInst_rr(unsigned MachineInstOpcode,
112 const TargetRegisterClass *RC,
113 unsigned Op0, bool Op0IsKill,
114 unsigned Op1, bool Op1IsKill);
115 unsigned FastEmitInst_rrr(unsigned MachineInstOpcode,
116 const TargetRegisterClass *RC,
117 unsigned Op0, bool Op0IsKill,
118 unsigned Op1, bool Op1IsKill,
119 unsigned Op2, bool Op2IsKill);
120 unsigned FastEmitInst_ri(unsigned MachineInstOpcode,
121 const TargetRegisterClass *RC,
122 unsigned Op0, bool Op0IsKill,
123 uint64_t Imm);
124 unsigned FastEmitInst_rf(unsigned MachineInstOpcode,
125 const TargetRegisterClass *RC,
126 unsigned Op0, bool Op0IsKill,
127 const ConstantFP *FPImm);
128 unsigned FastEmitInst_rri(unsigned MachineInstOpcode,
129 const TargetRegisterClass *RC,
130 unsigned Op0, bool Op0IsKill,
131 unsigned Op1, bool Op1IsKill,
132 uint64_t Imm);
133 unsigned FastEmitInst_i(unsigned MachineInstOpcode,
134 const TargetRegisterClass *RC,
135 uint64_t Imm);
136 unsigned FastEmitInst_ii(unsigned MachineInstOpcode,
137 const TargetRegisterClass *RC,
138 uint64_t Imm1, uint64_t Imm2);
Eric Christopheraf3dce52011-03-12 01:09:29 +0000139
Craig Topper35fc62b2012-08-18 21:38:45 +0000140 unsigned FastEmitInst_extractsubreg(MVT RetVT,
141 unsigned Op0, bool Op0IsKill,
142 uint32_t Idx);
Eric Christopherac1a19e2010-09-09 01:06:51 +0000143
Eric Christophercb592292010-08-20 00:20:31 +0000144 // Backend specific FastISel code.
Craig Topper35fc62b2012-08-18 21:38:45 +0000145 private:
Eric Christopherab695882010-07-21 22:26:11 +0000146 virtual bool TargetSelectInstruction(const Instruction *I);
Eric Christopher1b61ef42010-09-02 01:48:11 +0000147 virtual unsigned TargetMaterializeConstant(const Constant *C);
Eric Christopherf9764fa2010-09-30 20:49:44 +0000148 virtual unsigned TargetMaterializeAlloca(const AllocaInst *AI);
Eli Bendersky75299e32013-04-19 22:29:18 +0000149 virtual bool tryToFoldLoadIntoMI(MachineInstr *MI, unsigned OpNo,
150 const LoadInst *LI);
Evan Cheng092e5e72013-02-11 01:27:15 +0000151 virtual bool FastLowerArguments();
Craig Topper35fc62b2012-08-18 21:38:45 +0000152 private:
Eric Christopherab695882010-07-21 22:26:11 +0000153 #include "ARMGenFastISel.inc"
Eric Christopherac1a19e2010-09-09 01:06:51 +0000154
Eric Christopher83007122010-08-23 21:44:12 +0000155 // Instruction selection routines.
Eric Christopher44bff902010-09-10 23:10:30 +0000156 private:
Eric Christopher17787722010-10-21 21:47:51 +0000157 bool SelectLoad(const Instruction *I);
158 bool SelectStore(const Instruction *I);
159 bool SelectBranch(const Instruction *I);
Chad Rosier60c8fa62012-02-07 23:56:08 +0000160 bool SelectIndirectBr(const Instruction *I);
Eric Christopher17787722010-10-21 21:47:51 +0000161 bool SelectCmp(const Instruction *I);
162 bool SelectFPExt(const Instruction *I);
163 bool SelectFPTrunc(const Instruction *I);
Chad Rosier3901c3e2012-02-06 23:50:07 +0000164 bool SelectBinaryIntOp(const Instruction *I, unsigned ISDOpcode);
165 bool SelectBinaryFPOp(const Instruction *I, unsigned ISDOpcode);
Chad Rosierae46a332012-02-03 21:14:11 +0000166 bool SelectIToFP(const Instruction *I, bool isSigned);
167 bool SelectFPToI(const Instruction *I, bool isSigned);
Chad Rosier7ccb30b2012-02-03 21:07:27 +0000168 bool SelectDiv(const Instruction *I, bool isSigned);
Chad Rosier769422f2012-02-03 21:23:45 +0000169 bool SelectRem(const Instruction *I, bool isSigned);
Chad Rosier11add262011-11-11 23:31:03 +0000170 bool SelectCall(const Instruction *I, const char *IntrMemName);
171 bool SelectIntrinsicCall(const IntrinsicInst &I);
Eric Christopher17787722010-10-21 21:47:51 +0000172 bool SelectSelect(const Instruction *I);
Eric Christopher4f512ef2010-10-22 01:28:00 +0000173 bool SelectRet(const Instruction *I);
Chad Rosier0d7b2312011-11-02 00:18:48 +0000174 bool SelectTrunc(const Instruction *I);
175 bool SelectIntExt(const Instruction *I);
Jush Lu29465492012-08-03 02:37:48 +0000176 bool SelectShift(const Instruction *I, ARM_AM::ShiftOpc ShiftTy);
Eric Christopherab695882010-07-21 22:26:11 +0000177
Eric Christopher83007122010-08-23 21:44:12 +0000178 // Utility routines.
Eric Christopher456144e2010-08-19 00:37:05 +0000179 private:
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000180 bool isTypeLegal(Type *Ty, MVT &VT);
181 bool isLoadTypeLegal(Type *Ty, MVT &VT);
Chad Rosiere07cd5e2011-11-02 18:08:25 +0000182 bool ARMEmitCmp(const Value *Src1Value, const Value *Src2Value,
183 bool isZExt);
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000184 bool ARMEmitLoad(MVT VT, unsigned &ResultReg, Address &Addr,
Chad Rosier404ed3c2011-12-14 17:26:05 +0000185 unsigned Alignment = 0, bool isZExt = true,
186 bool allocReg = true);
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000187 bool ARMEmitStore(MVT VT, unsigned SrcReg, Address &Addr,
Bob Wilson6ce2dea2011-12-04 00:52:23 +0000188 unsigned Alignment = 0);
Eric Christopher0d581222010-11-19 22:30:02 +0000189 bool ARMComputeAddress(const Value *Obj, Address &Addr);
Chad Rosier6290b932012-12-17 22:35:29 +0000190 void ARMSimplifyAddress(Address &Addr, MVT VT, bool useAM3);
Chad Rosier2c42b8c2011-11-14 23:04:09 +0000191 bool ARMIsMemCpySmall(uint64_t Len);
Chad Rosierc9758b12012-12-06 01:34:31 +0000192 bool ARMTryEmitSmallMemCpy(Address Dest, Address Src, uint64_t Len,
193 unsigned Alignment);
Chad Rosier316a5aa2012-12-17 19:59:43 +0000194 unsigned ARMEmitIntExt(MVT SrcVT, unsigned SrcReg, MVT DestVT, bool isZExt);
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000195 unsigned ARMMaterializeFP(const ConstantFP *CFP, MVT VT);
196 unsigned ARMMaterializeInt(const Constant *C, MVT VT);
197 unsigned ARMMaterializeGV(const GlobalValue *GV, MVT VT);
198 unsigned ARMMoveToFPReg(MVT VT, unsigned SrcReg);
199 unsigned ARMMoveToIntReg(MVT VT, unsigned SrcReg);
Chad Rosier49d6fc02012-06-12 19:25:13 +0000200 unsigned ARMSelectCallOp(bool UseReg);
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000201 unsigned ARMLowerPICELF(const GlobalValue *GV, unsigned Align, MVT VT);
Eric Christopherac1a19e2010-09-09 01:06:51 +0000202
Eric Christopherd10cd7b2010-09-10 23:18:12 +0000203 // Call handling routines.
204 private:
Jush Luee649832012-07-19 09:49:00 +0000205 CCAssignFn *CCAssignFnForCall(CallingConv::ID CC,
206 bool Return,
207 bool isVarArg);
Eric Christopherdccd2c32010-10-11 08:38:55 +0000208 bool ProcessCallArgs(SmallVectorImpl<Value*> &Args,
Eric Christophera9a7a1a2010-09-29 23:11:09 +0000209 SmallVectorImpl<unsigned> &ArgRegs,
Duncan Sands1440e8b2010-11-03 11:35:31 +0000210 SmallVectorImpl<MVT> &ArgVTs,
Eric Christophera9a7a1a2010-09-29 23:11:09 +0000211 SmallVectorImpl<ISD::ArgFlagsTy> &ArgFlags,
212 SmallVectorImpl<unsigned> &RegArgs,
213 CallingConv::ID CC,
Jush Luee649832012-07-19 09:49:00 +0000214 unsigned &NumBytes,
215 bool isVarArg);
Chad Rosier49d6fc02012-06-12 19:25:13 +0000216 unsigned getLibcallReg(const Twine &Name);
Duncan Sands1440e8b2010-11-03 11:35:31 +0000217 bool FinishCall(MVT RetVT, SmallVectorImpl<unsigned> &UsedRegs,
Eric Christophera9a7a1a2010-09-29 23:11:09 +0000218 const Instruction *I, CallingConv::ID CC,
Jush Luee649832012-07-19 09:49:00 +0000219 unsigned &NumBytes, bool isVarArg);
Eric Christopher7ed8ec92010-09-28 01:21:42 +0000220 bool ARMEmitLibcall(const Instruction *I, RTLIB::Libcall Call);
Eric Christopherd10cd7b2010-09-10 23:18:12 +0000221
222 // OptionalDef handling routines.
223 private:
Eric Christopheraf3dce52011-03-12 01:09:29 +0000224 bool isARMNEONPred(const MachineInstr *MI);
Eric Christopher456144e2010-08-19 00:37:05 +0000225 bool DefinesOptionalPredicate(MachineInstr *MI, bool *CPSR);
226 const MachineInstrBuilder &AddOptionalDefs(const MachineInstrBuilder &MIB);
Chad Rosier6290b932012-12-17 22:35:29 +0000227 void AddLoadStoreOperands(MVT VT, Address &Addr,
Cameron Zwarichc152aa62011-05-28 20:34:49 +0000228 const MachineInstrBuilder &MIB,
Chad Rosierb29b9502011-11-13 02:23:59 +0000229 unsigned Flags, bool useAM3);
Eric Christopher456144e2010-08-19 00:37:05 +0000230};
Eric Christopherab695882010-07-21 22:26:11 +0000231
232} // end anonymous namespace
233
Eric Christopherd10cd7b2010-09-10 23:18:12 +0000234#include "ARMGenCallingConv.inc"
Eric Christopherab695882010-07-21 22:26:11 +0000235
Eric Christopher456144e2010-08-19 00:37:05 +0000236// DefinesOptionalPredicate - This is different from DefinesPredicate in that
237// we don't care about implicit defs here, just places we'll need to add a
238// default CCReg argument. Sets CPSR if we're setting CPSR instead of CCR.
239bool ARMFastISel::DefinesOptionalPredicate(MachineInstr *MI, bool *CPSR) {
Evan Cheng5a96b3d2011-12-07 07:15:52 +0000240 if (!MI->hasOptionalDef())
Eric Christopher456144e2010-08-19 00:37:05 +0000241 return false;
242
243 // Look to see if our OptionalDef is defining CPSR or CCR.
244 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
245 const MachineOperand &MO = MI->getOperand(i);
Eric Christopherf762fbe2010-08-20 00:36:24 +0000246 if (!MO.isReg() || !MO.isDef()) continue;
247 if (MO.getReg() == ARM::CPSR)
Eric Christopher456144e2010-08-19 00:37:05 +0000248 *CPSR = true;
249 }
250 return true;
251}
252
Eric Christopheraf3dce52011-03-12 01:09:29 +0000253bool ARMFastISel::isARMNEONPred(const MachineInstr *MI) {
Evan Chenge837dea2011-06-28 19:10:37 +0000254 const MCInstrDesc &MCID = MI->getDesc();
Eric Christopher299bbb22011-04-29 00:03:10 +0000255
Eric Christopheraf3dce52011-03-12 01:09:29 +0000256 // If we're a thumb2 or not NEON function we were handled via isPredicable.
Evan Chenge837dea2011-06-28 19:10:37 +0000257 if ((MCID.TSFlags & ARMII::DomainMask) != ARMII::DomainNEON ||
Eric Christopheraf3dce52011-03-12 01:09:29 +0000258 AFI->isThumb2Function())
259 return false;
Eric Christopher299bbb22011-04-29 00:03:10 +0000260
Evan Chenge837dea2011-06-28 19:10:37 +0000261 for (unsigned i = 0, e = MCID.getNumOperands(); i != e; ++i)
262 if (MCID.OpInfo[i].isPredicate())
Eric Christopheraf3dce52011-03-12 01:09:29 +0000263 return true;
Eric Christopher299bbb22011-04-29 00:03:10 +0000264
Eric Christopheraf3dce52011-03-12 01:09:29 +0000265 return false;
266}
267
Eric Christopher456144e2010-08-19 00:37:05 +0000268// If the machine is predicable go ahead and add the predicate operands, if
269// it needs default CC operands add those.
Eric Christopheraaa8df42010-11-02 01:21:28 +0000270// TODO: If we want to support thumb1 then we'll need to deal with optional
271// CPSR defs that need to be added before the remaining operands. See s_cc_out
272// for descriptions why.
Eric Christopher456144e2010-08-19 00:37:05 +0000273const MachineInstrBuilder &
274ARMFastISel::AddOptionalDefs(const MachineInstrBuilder &MIB) {
275 MachineInstr *MI = &*MIB;
276
Eric Christopheraf3dce52011-03-12 01:09:29 +0000277 // Do we use a predicate? or...
278 // Are we NEON in ARM mode and have a predicate operand? If so, I know
279 // we're not predicable but add it anyways.
280 if (TII.isPredicable(MI) || isARMNEONPred(MI))
Eric Christopher456144e2010-08-19 00:37:05 +0000281 AddDefaultPred(MIB);
Eric Christopher299bbb22011-04-29 00:03:10 +0000282
Sylvestre Ledru94c22712012-09-27 10:14:43 +0000283 // Do we optionally set a predicate? Preds is size > 0 iff the predicate
Eric Christopher456144e2010-08-19 00:37:05 +0000284 // defines CPSR. All other OptionalDefines in ARM are the CCR register.
Eric Christopher979e0a12010-08-19 15:35:27 +0000285 bool CPSR = false;
Eric Christopher456144e2010-08-19 00:37:05 +0000286 if (DefinesOptionalPredicate(MI, &CPSR)) {
287 if (CPSR)
288 AddDefaultT1CC(MIB);
289 else
290 AddDefaultCC(MIB);
291 }
292 return MIB;
293}
294
Eric Christopher0fe7d542010-08-17 01:25:29 +0000295unsigned ARMFastISel::FastEmitInst_(unsigned MachineInstOpcode,
296 const TargetRegisterClass* RC) {
297 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000298 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000299
Eric Christopher456144e2010-08-19 00:37:05 +0000300 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg));
Eric Christopher0fe7d542010-08-17 01:25:29 +0000301 return ResultReg;
302}
303
304unsigned ARMFastISel::FastEmitInst_r(unsigned MachineInstOpcode,
305 const TargetRegisterClass *RC,
306 unsigned Op0, bool Op0IsKill) {
307 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000308 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000309
Chad Rosier40d552e2012-02-15 17:36:21 +0000310 if (II.getNumDefs() >= 1) {
Eric Christopher456144e2010-08-19 00:37:05 +0000311 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000312 .addReg(Op0, Op0IsKill * RegState::Kill));
Chad Rosier40d552e2012-02-15 17:36:21 +0000313 } else {
Eric Christopher456144e2010-08-19 00:37:05 +0000314 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000315 .addReg(Op0, Op0IsKill * RegState::Kill));
Eric Christopher456144e2010-08-19 00:37:05 +0000316 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000317 TII.get(TargetOpcode::COPY), ResultReg)
318 .addReg(II.ImplicitDefs[0]));
319 }
320 return ResultReg;
321}
322
323unsigned ARMFastISel::FastEmitInst_rr(unsigned MachineInstOpcode,
324 const TargetRegisterClass *RC,
325 unsigned Op0, bool Op0IsKill,
326 unsigned Op1, bool Op1IsKill) {
327 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000328 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000329
Chad Rosier40d552e2012-02-15 17:36:21 +0000330 if (II.getNumDefs() >= 1) {
Eric Christopher456144e2010-08-19 00:37:05 +0000331 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000332 .addReg(Op0, Op0IsKill * RegState::Kill)
333 .addReg(Op1, Op1IsKill * RegState::Kill));
Chad Rosier40d552e2012-02-15 17:36:21 +0000334 } else {
Eric Christopher456144e2010-08-19 00:37:05 +0000335 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000336 .addReg(Op0, Op0IsKill * RegState::Kill)
337 .addReg(Op1, Op1IsKill * RegState::Kill));
Eric Christopher456144e2010-08-19 00:37:05 +0000338 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000339 TII.get(TargetOpcode::COPY), ResultReg)
340 .addReg(II.ImplicitDefs[0]));
341 }
342 return ResultReg;
343}
344
Cameron Zwarichc0e6d782011-03-30 23:01:21 +0000345unsigned ARMFastISel::FastEmitInst_rrr(unsigned MachineInstOpcode,
346 const TargetRegisterClass *RC,
347 unsigned Op0, bool Op0IsKill,
348 unsigned Op1, bool Op1IsKill,
349 unsigned Op2, bool Op2IsKill) {
350 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000351 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Cameron Zwarichc0e6d782011-03-30 23:01:21 +0000352
Chad Rosier40d552e2012-02-15 17:36:21 +0000353 if (II.getNumDefs() >= 1) {
Cameron Zwarichc0e6d782011-03-30 23:01:21 +0000354 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
355 .addReg(Op0, Op0IsKill * RegState::Kill)
356 .addReg(Op1, Op1IsKill * RegState::Kill)
357 .addReg(Op2, Op2IsKill * RegState::Kill));
Chad Rosier40d552e2012-02-15 17:36:21 +0000358 } else {
Cameron Zwarichc0e6d782011-03-30 23:01:21 +0000359 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
360 .addReg(Op0, Op0IsKill * RegState::Kill)
361 .addReg(Op1, Op1IsKill * RegState::Kill)
362 .addReg(Op2, Op2IsKill * RegState::Kill));
363 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
364 TII.get(TargetOpcode::COPY), ResultReg)
365 .addReg(II.ImplicitDefs[0]));
366 }
367 return ResultReg;
368}
369
Eric Christopher0fe7d542010-08-17 01:25:29 +0000370unsigned ARMFastISel::FastEmitInst_ri(unsigned MachineInstOpcode,
371 const TargetRegisterClass *RC,
372 unsigned Op0, bool Op0IsKill,
373 uint64_t Imm) {
374 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000375 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000376
Chad Rosier40d552e2012-02-15 17:36:21 +0000377 if (II.getNumDefs() >= 1) {
Eric Christopher456144e2010-08-19 00:37:05 +0000378 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000379 .addReg(Op0, Op0IsKill * RegState::Kill)
380 .addImm(Imm));
Chad Rosier40d552e2012-02-15 17:36:21 +0000381 } else {
Eric Christopher456144e2010-08-19 00:37:05 +0000382 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000383 .addReg(Op0, Op0IsKill * RegState::Kill)
384 .addImm(Imm));
Eric Christopher456144e2010-08-19 00:37:05 +0000385 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000386 TII.get(TargetOpcode::COPY), ResultReg)
387 .addReg(II.ImplicitDefs[0]));
388 }
389 return ResultReg;
390}
391
392unsigned ARMFastISel::FastEmitInst_rf(unsigned MachineInstOpcode,
393 const TargetRegisterClass *RC,
394 unsigned Op0, bool Op0IsKill,
395 const ConstantFP *FPImm) {
396 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000397 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000398
Chad Rosier40d552e2012-02-15 17:36:21 +0000399 if (II.getNumDefs() >= 1) {
Eric Christopher456144e2010-08-19 00:37:05 +0000400 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000401 .addReg(Op0, Op0IsKill * RegState::Kill)
402 .addFPImm(FPImm));
Chad Rosier40d552e2012-02-15 17:36:21 +0000403 } else {
Eric Christopher456144e2010-08-19 00:37:05 +0000404 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000405 .addReg(Op0, Op0IsKill * RegState::Kill)
406 .addFPImm(FPImm));
Eric Christopher456144e2010-08-19 00:37:05 +0000407 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000408 TII.get(TargetOpcode::COPY), ResultReg)
409 .addReg(II.ImplicitDefs[0]));
410 }
411 return ResultReg;
412}
413
414unsigned ARMFastISel::FastEmitInst_rri(unsigned MachineInstOpcode,
415 const TargetRegisterClass *RC,
416 unsigned Op0, bool Op0IsKill,
417 unsigned Op1, bool Op1IsKill,
418 uint64_t Imm) {
419 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000420 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000421
Chad Rosier40d552e2012-02-15 17:36:21 +0000422 if (II.getNumDefs() >= 1) {
Eric Christopher456144e2010-08-19 00:37:05 +0000423 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000424 .addReg(Op0, Op0IsKill * RegState::Kill)
425 .addReg(Op1, Op1IsKill * RegState::Kill)
426 .addImm(Imm));
Chad Rosier40d552e2012-02-15 17:36:21 +0000427 } else {
Eric Christopher456144e2010-08-19 00:37:05 +0000428 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000429 .addReg(Op0, Op0IsKill * RegState::Kill)
430 .addReg(Op1, Op1IsKill * RegState::Kill)
431 .addImm(Imm));
Eric Christopher456144e2010-08-19 00:37:05 +0000432 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000433 TII.get(TargetOpcode::COPY), ResultReg)
434 .addReg(II.ImplicitDefs[0]));
435 }
436 return ResultReg;
437}
438
439unsigned ARMFastISel::FastEmitInst_i(unsigned MachineInstOpcode,
440 const TargetRegisterClass *RC,
441 uint64_t Imm) {
442 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000443 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopherac1a19e2010-09-09 01:06:51 +0000444
Chad Rosier40d552e2012-02-15 17:36:21 +0000445 if (II.getNumDefs() >= 1) {
Eric Christopher456144e2010-08-19 00:37:05 +0000446 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000447 .addImm(Imm));
Chad Rosier40d552e2012-02-15 17:36:21 +0000448 } else {
Eric Christopher456144e2010-08-19 00:37:05 +0000449 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000450 .addImm(Imm));
Eric Christopher456144e2010-08-19 00:37:05 +0000451 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000452 TII.get(TargetOpcode::COPY), ResultReg)
453 .addReg(II.ImplicitDefs[0]));
454 }
455 return ResultReg;
456}
457
Eric Christopherd94bc542011-04-29 22:07:50 +0000458unsigned ARMFastISel::FastEmitInst_ii(unsigned MachineInstOpcode,
459 const TargetRegisterClass *RC,
460 uint64_t Imm1, uint64_t Imm2) {
461 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000462 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher471e4222011-06-08 23:55:35 +0000463
Chad Rosier40d552e2012-02-15 17:36:21 +0000464 if (II.getNumDefs() >= 1) {
Eric Christopherd94bc542011-04-29 22:07:50 +0000465 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
466 .addImm(Imm1).addImm(Imm2));
Chad Rosier40d552e2012-02-15 17:36:21 +0000467 } else {
Eric Christopherd94bc542011-04-29 22:07:50 +0000468 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
469 .addImm(Imm1).addImm(Imm2));
Eric Christopher471e4222011-06-08 23:55:35 +0000470 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopherd94bc542011-04-29 22:07:50 +0000471 TII.get(TargetOpcode::COPY),
472 ResultReg)
473 .addReg(II.ImplicitDefs[0]));
474 }
475 return ResultReg;
476}
477
Eric Christopher0fe7d542010-08-17 01:25:29 +0000478unsigned ARMFastISel::FastEmitInst_extractsubreg(MVT RetVT,
479 unsigned Op0, bool Op0IsKill,
480 uint32_t Idx) {
481 unsigned ResultReg = createResultReg(TLI.getRegClassFor(RetVT));
482 assert(TargetRegisterInfo::isVirtualRegister(Op0) &&
483 "Cannot yet extract from physregs");
Chad Rosier40d552e2012-02-15 17:36:21 +0000484
Eric Christopher456144e2010-08-19 00:37:05 +0000485 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
Chad Rosier40d552e2012-02-15 17:36:21 +0000486 DL, TII.get(TargetOpcode::COPY), ResultReg)
487 .addReg(Op0, getKillRegState(Op0IsKill), Idx));
Eric Christopher0fe7d542010-08-17 01:25:29 +0000488 return ResultReg;
489}
490
Eric Christopherdb12b2b2010-09-10 00:34:35 +0000491// TODO: Don't worry about 64-bit now, but when this is fixed remove the
492// checks from the various callers.
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000493unsigned ARMFastISel::ARMMoveToFPReg(MVT VT, unsigned SrcReg) {
Duncan Sandscdfad362010-11-03 12:17:33 +0000494 if (VT == MVT::f64) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000495
Eric Christopher9ee4ce22010-09-09 21:44:45 +0000496 unsigned MoveReg = createResultReg(TLI.getRegClassFor(VT));
497 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Jim Grosbache751c002012-03-01 22:47:09 +0000498 TII.get(ARM::VMOVSR), MoveReg)
Eric Christopher9ee4ce22010-09-09 21:44:45 +0000499 .addReg(SrcReg));
500 return MoveReg;
501}
502
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000503unsigned ARMFastISel::ARMMoveToIntReg(MVT VT, unsigned SrcReg) {
Duncan Sandscdfad362010-11-03 12:17:33 +0000504 if (VT == MVT::i64) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000505
Eric Christopheraa3ace12010-09-09 20:49:25 +0000506 unsigned MoveReg = createResultReg(TLI.getRegClassFor(VT));
507 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Jim Grosbache751c002012-03-01 22:47:09 +0000508 TII.get(ARM::VMOVRS), MoveReg)
Eric Christopheraa3ace12010-09-09 20:49:25 +0000509 .addReg(SrcReg));
510 return MoveReg;
511}
512
Eric Christopher9ed58df2010-09-09 00:19:41 +0000513// For double width floating point we need to materialize two constants
514// (the high and the low) into integer registers then use a move to get
515// the combined constant into an FP reg.
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000516unsigned ARMFastISel::ARMMaterializeFP(const ConstantFP *CFP, MVT VT) {
Eric Christopher9ed58df2010-09-09 00:19:41 +0000517 const APFloat Val = CFP->getValueAPF();
Duncan Sandscdfad362010-11-03 12:17:33 +0000518 bool is64bit = VT == MVT::f64;
Eric Christopherac1a19e2010-09-09 01:06:51 +0000519
Eric Christopher9ed58df2010-09-09 00:19:41 +0000520 // This checks to see if we can use VFP3 instructions to materialize
521 // a constant, otherwise we have to go through the constant pool.
522 if (TLI.isFPImmLegal(Val, VT)) {
Jim Grosbach4ebbf7b2011-09-30 00:50:06 +0000523 int Imm;
524 unsigned Opc;
525 if (is64bit) {
526 Imm = ARM_AM::getFP64Imm(Val);
527 Opc = ARM::FCONSTD;
528 } else {
529 Imm = ARM_AM::getFP32Imm(Val);
530 Opc = ARM::FCONSTS;
531 }
Eric Christopher9ed58df2010-09-09 00:19:41 +0000532 unsigned DestReg = createResultReg(TLI.getRegClassFor(VT));
533 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
534 DestReg)
Jim Grosbach4ebbf7b2011-09-30 00:50:06 +0000535 .addImm(Imm));
Eric Christopher9ed58df2010-09-09 00:19:41 +0000536 return DestReg;
537 }
Eric Christopherdccd2c32010-10-11 08:38:55 +0000538
Eric Christopherdb12b2b2010-09-10 00:34:35 +0000539 // Require VFP2 for loading fp constants.
Eric Christopher238bb162010-09-09 23:50:00 +0000540 if (!Subtarget->hasVFP2()) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000541
Eric Christopher238bb162010-09-09 23:50:00 +0000542 // MachineConstantPool wants an explicit alignment.
543 unsigned Align = TD.getPrefTypeAlignment(CFP->getType());
544 if (Align == 0) {
545 // TODO: Figure out if this is correct.
546 Align = TD.getTypeAllocSize(CFP->getType());
547 }
548 unsigned Idx = MCP.getConstantPoolIndex(cast<Constant>(CFP), Align);
549 unsigned DestReg = createResultReg(TLI.getRegClassFor(VT));
550 unsigned Opc = is64bit ? ARM::VLDRD : ARM::VLDRS;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000551
Eric Christopherdb12b2b2010-09-10 00:34:35 +0000552 // The extra reg is for addrmode5.
Eric Christopherf5732c42010-09-28 00:35:09 +0000553 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
554 DestReg)
555 .addConstantPoolIndex(Idx)
Eric Christopher238bb162010-09-09 23:50:00 +0000556 .addReg(0));
557 return DestReg;
Eric Christopher9ed58df2010-09-09 00:19:41 +0000558}
559
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000560unsigned ARMFastISel::ARMMaterializeInt(const Constant *C, MVT VT) {
Eric Christopherdccd2c32010-10-11 08:38:55 +0000561
Chad Rosier44e89572011-11-04 22:29:00 +0000562 if (VT != MVT::i32 && VT != MVT::i16 && VT != MVT::i8 && VT != MVT::i1)
563 return false;
Eric Christophere5b13cf2010-11-03 20:21:17 +0000564
565 // If we can do this in a single instruction without a constant pool entry
566 // do so now.
567 const ConstantInt *CI = cast<ConstantInt>(C);
Chad Rosiera4e07272011-11-04 23:09:49 +0000568 if (Subtarget->hasV6T2Ops() && isUInt<16>(CI->getZExtValue())) {
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000569 unsigned Opc = isThumb2 ? ARM::t2MOVi16 : ARM::MOVi16;
Chad Rosierfc17ddd2012-11-27 01:06:49 +0000570 const TargetRegisterClass *RC = isThumb2 ? &ARM::rGPRRegClass :
571 &ARM::GPRRegClass;
572 unsigned ImmReg = createResultReg(RC);
Eric Christophere5b13cf2010-11-03 20:21:17 +0000573 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Chad Rosier44e89572011-11-04 22:29:00 +0000574 TII.get(Opc), ImmReg)
Chad Rosier42536af2011-11-05 20:16:15 +0000575 .addImm(CI->getZExtValue()));
Chad Rosier44e89572011-11-04 22:29:00 +0000576 return ImmReg;
Eric Christophere5b13cf2010-11-03 20:21:17 +0000577 }
578
Chad Rosier4e89d972011-11-11 00:36:21 +0000579 // Use MVN to emit negative constants.
580 if (VT == MVT::i32 && Subtarget->hasV6T2Ops() && CI->isNegative()) {
581 unsigned Imm = (unsigned)~(CI->getSExtValue());
Chad Rosier1c47de82011-11-11 06:27:41 +0000582 bool UseImm = isThumb2 ? (ARM_AM::getT2SOImmVal(Imm) != -1) :
Chad Rosier4e89d972011-11-11 00:36:21 +0000583 (ARM_AM::getSOImmVal(Imm) != -1);
Chad Rosier1c47de82011-11-11 06:27:41 +0000584 if (UseImm) {
Chad Rosier4e89d972011-11-11 00:36:21 +0000585 unsigned Opc = isThumb2 ? ARM::t2MVNi : ARM::MVNi;
586 unsigned ImmReg = createResultReg(TLI.getRegClassFor(MVT::i32));
587 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
588 TII.get(Opc), ImmReg)
589 .addImm(Imm));
590 return ImmReg;
591 }
592 }
593
594 // Load from constant pool. For now 32-bit only.
Chad Rosier44e89572011-11-04 22:29:00 +0000595 if (VT != MVT::i32)
596 return false;
597
598 unsigned DestReg = createResultReg(TLI.getRegClassFor(VT));
599
Eric Christopher56d2b722010-09-02 23:43:26 +0000600 // MachineConstantPool wants an explicit alignment.
601 unsigned Align = TD.getPrefTypeAlignment(C->getType());
602 if (Align == 0) {
603 // TODO: Figure out if this is correct.
604 Align = TD.getTypeAllocSize(C->getType());
605 }
606 unsigned Idx = MCP.getConstantPoolIndex(C, Align);
Eric Christopherdccd2c32010-10-11 08:38:55 +0000607
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000608 if (isThumb2)
Eric Christopher56d2b722010-09-02 23:43:26 +0000609 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopherfd609802010-09-28 21:55:34 +0000610 TII.get(ARM::t2LDRpci), DestReg)
611 .addConstantPoolIndex(Idx));
Eric Christopher56d2b722010-09-02 23:43:26 +0000612 else
Eric Christopherd0c82a62010-11-12 09:48:30 +0000613 // The extra immediate is for addrmode2.
Eric Christopher56d2b722010-09-02 23:43:26 +0000614 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopherfd609802010-09-28 21:55:34 +0000615 TII.get(ARM::LDRcp), DestReg)
616 .addConstantPoolIndex(Idx)
Jim Grosbach3e556122010-10-26 22:37:02 +0000617 .addImm(0));
Eric Christopherac1a19e2010-09-09 01:06:51 +0000618
Eric Christopher56d2b722010-09-02 23:43:26 +0000619 return DestReg;
Eric Christopher1b61ef42010-09-02 01:48:11 +0000620}
621
Patrik Hagglunda61b17c2012-12-13 06:34:11 +0000622unsigned ARMFastISel::ARMMaterializeGV(const GlobalValue *GV, MVT VT) {
Eric Christopher890dbbe2010-10-02 00:32:44 +0000623 // For now 32-bit only.
Duncan Sandscdfad362010-11-03 12:17:33 +0000624 if (VT != MVT::i32) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000625
Eric Christopher890dbbe2010-10-02 00:32:44 +0000626 Reloc::Model RelocM = TM.getRelocationModel();
Jush Luc4dc2492012-08-29 02:41:21 +0000627 bool IsIndirect = Subtarget->GVIsIndirectSymbol(GV, RelocM);
Chad Rosier6aa6e5a2012-11-07 00:13:01 +0000628 const TargetRegisterClass *RC = isThumb2 ?
629 (const TargetRegisterClass*)&ARM::rGPRRegClass :
630 (const TargetRegisterClass*)&ARM::GPRRegClass;
631 unsigned DestReg = createResultReg(RC);
Jakob Stoklund Olesen45ca7c62012-01-07 01:47:05 +0000632
633 // Use movw+movt when possible, it avoids constant pool entries.
Jakob Stoklund Olesen8f37a242012-01-07 20:49:15 +0000634 // Darwin targets don't support movt with Reloc::Static, see
635 // ARMTargetLowering::LowerGlobalAddressDarwin. Other targets only support
636 // static movt relocations.
637 if (Subtarget->useMovt() &&
638 Subtarget->isTargetDarwin() == (RelocM != Reloc::Static)) {
Jakob Stoklund Olesen45ca7c62012-01-07 01:47:05 +0000639 unsigned Opc;
640 switch (RelocM) {
641 case Reloc::PIC_:
642 Opc = isThumb2 ? ARM::t2MOV_ga_pcrel : ARM::MOV_ga_pcrel;
643 break;
644 case Reloc::DynamicNoPIC:
645 Opc = isThumb2 ? ARM::t2MOV_ga_dyn : ARM::MOV_ga_dyn;
646 break;
647 default:
648 Opc = isThumb2 ? ARM::t2MOVi32imm : ARM::MOVi32imm;
649 break;
650 }
651 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
652 DestReg).addGlobalAddress(GV));
Eric Christopher890dbbe2010-10-02 00:32:44 +0000653 } else {
Jakob Stoklund Olesen45ca7c62012-01-07 01:47:05 +0000654 // MachineConstantPool wants an explicit alignment.
655 unsigned Align = TD.getPrefTypeAlignment(GV->getType());
656 if (Align == 0) {
657 // TODO: Figure out if this is correct.
658 Align = TD.getTypeAllocSize(GV->getType());
659 }
660
Jush Lu8f506472012-09-27 05:21:41 +0000661 if (Subtarget->isTargetELF() && RelocM == Reloc::PIC_)
662 return ARMLowerPICELF(GV, Align, VT);
663
Jakob Stoklund Olesen45ca7c62012-01-07 01:47:05 +0000664 // Grab index.
665 unsigned PCAdj = (RelocM != Reloc::PIC_) ? 0 :
666 (Subtarget->isThumb() ? 4 : 8);
667 unsigned Id = AFI->createPICLabelUId();
668 ARMConstantPoolValue *CPV = ARMConstantPoolConstant::Create(GV, Id,
669 ARMCP::CPValue,
670 PCAdj);
671 unsigned Idx = MCP.getConstantPoolIndex(CPV, Align);
672
673 // Load value.
674 MachineInstrBuilder MIB;
675 if (isThumb2) {
676 unsigned Opc = (RelocM!=Reloc::PIC_) ? ARM::t2LDRpci : ARM::t2LDRpci_pic;
677 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc), DestReg)
678 .addConstantPoolIndex(Idx);
679 if (RelocM == Reloc::PIC_)
680 MIB.addImm(Id);
Jush Luc4dc2492012-08-29 02:41:21 +0000681 AddOptionalDefs(MIB);
Jakob Stoklund Olesen45ca7c62012-01-07 01:47:05 +0000682 } else {
683 // The extra immediate is for addrmode2.
684 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(ARM::LDRcp),
685 DestReg)
686 .addConstantPoolIndex(Idx)
687 .addImm(0);
Jush Luc4dc2492012-08-29 02:41:21 +0000688 AddOptionalDefs(MIB);
689
690 if (RelocM == Reloc::PIC_) {
691 unsigned Opc = IsIndirect ? ARM::PICLDR : ARM::PICADD;
692 unsigned NewDestReg = createResultReg(TLI.getRegClassFor(VT));
693
694 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
695 DL, TII.get(Opc), NewDestReg)
696 .addReg(DestReg)
697 .addImm(Id);
698 AddOptionalDefs(MIB);
699 return NewDestReg;
700 }
Jakob Stoklund Olesen45ca7c62012-01-07 01:47:05 +0000701 }
Eric Christopher890dbbe2010-10-02 00:32:44 +0000702 }
Eli Friedmand6412c92011-06-03 01:13:19 +0000703
Jush Luc4dc2492012-08-29 02:41:21 +0000704 if (IsIndirect) {
Jakob Stoklund Olesen45ca7c62012-01-07 01:47:05 +0000705 MachineInstrBuilder MIB;
Eli Friedmand6412c92011-06-03 01:13:19 +0000706 unsigned NewDestReg = createResultReg(TLI.getRegClassFor(VT));
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000707 if (isThumb2)
Jim Grosbachb04546f2011-09-13 20:30:37 +0000708 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
709 TII.get(ARM::t2LDRi12), NewDestReg)
Eli Friedmand6412c92011-06-03 01:13:19 +0000710 .addReg(DestReg)
711 .addImm(0);
712 else
713 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(ARM::LDRi12),
714 NewDestReg)
715 .addReg(DestReg)
716 .addImm(0);
717 DestReg = NewDestReg;
718 AddOptionalDefs(MIB);
719 }
720
Eric Christopher890dbbe2010-10-02 00:32:44 +0000721 return DestReg;
Eric Christopherc9932f62010-10-01 23:24:42 +0000722}
723
Eric Christopher9ed58df2010-09-09 00:19:41 +0000724unsigned ARMFastISel::TargetMaterializeConstant(const Constant *C) {
Patrik Hagglund3d170e62012-12-17 14:30:06 +0000725 EVT CEVT = TLI.getValueType(C->getType(), true);
726
727 // Only handle simple types.
728 if (!CEVT.isSimple()) return 0;
729 MVT VT = CEVT.getSimpleVT();
Eric Christopher9ed58df2010-09-09 00:19:41 +0000730
731 if (const ConstantFP *CFP = dyn_cast<ConstantFP>(C))
732 return ARMMaterializeFP(CFP, VT);
Eric Christopherc9932f62010-10-01 23:24:42 +0000733 else if (const GlobalValue *GV = dyn_cast<GlobalValue>(C))
734 return ARMMaterializeGV(GV, VT);
735 else if (isa<ConstantInt>(C))
736 return ARMMaterializeInt(C, VT);
Eric Christopherdccd2c32010-10-11 08:38:55 +0000737
Eric Christopherc9932f62010-10-01 23:24:42 +0000738 return 0;
Eric Christopher9ed58df2010-09-09 00:19:41 +0000739}
740
Chad Rosier944d82b2011-11-17 21:46:13 +0000741// TODO: unsigned ARMFastISel::TargetMaterializeFloatZero(const ConstantFP *CF);
742
Eric Christopherf9764fa2010-09-30 20:49:44 +0000743unsigned ARMFastISel::TargetMaterializeAlloca(const AllocaInst *AI) {
744 // Don't handle dynamic allocas.
745 if (!FuncInfo.StaticAllocaMap.count(AI)) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000746
Duncan Sands1440e8b2010-11-03 11:35:31 +0000747 MVT VT;
Chad Rosierf4bd21c2012-05-11 16:41:38 +0000748 if (!isLoadTypeLegal(AI->getType(), VT)) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000749
Eric Christopherf9764fa2010-09-30 20:49:44 +0000750 DenseMap<const AllocaInst*, int>::iterator SI =
751 FuncInfo.StaticAllocaMap.find(AI);
752
753 // This will get lowered later into the correct offsets and registers
754 // via rewriteXFrameIndex.
755 if (SI != FuncInfo.StaticAllocaMap.end()) {
Craig Topper44d23822012-02-22 05:59:10 +0000756 const TargetRegisterClass* RC = TLI.getRegClassFor(VT);
Eric Christopherf9764fa2010-09-30 20:49:44 +0000757 unsigned ResultReg = createResultReg(RC);
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000758 unsigned Opc = isThumb2 ? ARM::t2ADDri : ARM::ADDri;
Evan Chengddfd1372011-12-14 02:11:42 +0000759 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopherf9764fa2010-09-30 20:49:44 +0000760 TII.get(Opc), ResultReg)
761 .addFrameIndex(SI->second)
762 .addImm(0));
763 return ResultReg;
764 }
Eric Christopherdccd2c32010-10-11 08:38:55 +0000765
Eric Christopherf9764fa2010-09-30 20:49:44 +0000766 return 0;
767}
768
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000769bool ARMFastISel::isTypeLegal(Type *Ty, MVT &VT) {
Duncan Sands1440e8b2010-11-03 11:35:31 +0000770 EVT evt = TLI.getValueType(Ty, true);
Eric Christopherac1a19e2010-09-09 01:06:51 +0000771
Eric Christopherb1cc8482010-08-25 07:23:49 +0000772 // Only handle simple types.
Duncan Sands1440e8b2010-11-03 11:35:31 +0000773 if (evt == MVT::Other || !evt.isSimple()) return false;
774 VT = evt.getSimpleVT();
Eric Christopherac1a19e2010-09-09 01:06:51 +0000775
Eric Christopherdc908042010-08-31 01:28:42 +0000776 // Handle all legal types, i.e. a register that will directly hold this
777 // value.
778 return TLI.isTypeLegal(VT);
Eric Christopherb1cc8482010-08-25 07:23:49 +0000779}
780
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000781bool ARMFastISel::isLoadTypeLegal(Type *Ty, MVT &VT) {
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000782 if (isTypeLegal(Ty, VT)) return true;
Eric Christopherac1a19e2010-09-09 01:06:51 +0000783
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000784 // If this is a type than can be sign or zero-extended to a basic operation
785 // go ahead and accept it now.
Chad Rosierb29b9502011-11-13 02:23:59 +0000786 if (VT == MVT::i1 || VT == MVT::i8 || VT == MVT::i16)
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000787 return true;
Eric Christopherac1a19e2010-09-09 01:06:51 +0000788
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000789 return false;
790}
791
Eric Christopher88de86b2010-11-19 22:36:41 +0000792// Computes the address to get to an object.
Eric Christopher0d581222010-11-19 22:30:02 +0000793bool ARMFastISel::ARMComputeAddress(const Value *Obj, Address &Addr) {
Eric Christopher83007122010-08-23 21:44:12 +0000794 // Some boilerplate from the X86 FastISel.
795 const User *U = NULL;
Eric Christopher83007122010-08-23 21:44:12 +0000796 unsigned Opcode = Instruction::UserOp1;
Eric Christophercb0b04b2010-08-24 00:07:24 +0000797 if (const Instruction *I = dyn_cast<Instruction>(Obj)) {
Eric Christopher2d630d72010-11-19 22:37:58 +0000798 // Don't walk into other basic blocks unless the object is an alloca from
799 // another block, otherwise it may not have a virtual register assigned.
Eric Christopher76dda7e2010-11-15 21:11:06 +0000800 if (FuncInfo.StaticAllocaMap.count(static_cast<const AllocaInst *>(Obj)) ||
801 FuncInfo.MBBMap[I->getParent()] == FuncInfo.MBB) {
802 Opcode = I->getOpcode();
803 U = I;
804 }
Eric Christophercb0b04b2010-08-24 00:07:24 +0000805 } else if (const ConstantExpr *C = dyn_cast<ConstantExpr>(Obj)) {
Eric Christopher83007122010-08-23 21:44:12 +0000806 Opcode = C->getOpcode();
807 U = C;
808 }
809
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000810 if (PointerType *Ty = dyn_cast<PointerType>(Obj->getType()))
Eric Christopher83007122010-08-23 21:44:12 +0000811 if (Ty->getAddressSpace() > 255)
812 // Fast instruction selection doesn't support the special
813 // address spaces.
814 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +0000815
Eric Christopher83007122010-08-23 21:44:12 +0000816 switch (Opcode) {
Eric Christopherac1a19e2010-09-09 01:06:51 +0000817 default:
Eric Christopher83007122010-08-23 21:44:12 +0000818 break;
Eric Christopher55324332010-10-12 00:43:21 +0000819 case Instruction::BitCast: {
820 // Look through bitcasts.
Eric Christopher0d581222010-11-19 22:30:02 +0000821 return ARMComputeAddress(U->getOperand(0), Addr);
Eric Christopher55324332010-10-12 00:43:21 +0000822 }
823 case Instruction::IntToPtr: {
824 // Look past no-op inttoptrs.
825 if (TLI.getValueType(U->getOperand(0)->getType()) == TLI.getPointerTy())
Eric Christopher0d581222010-11-19 22:30:02 +0000826 return ARMComputeAddress(U->getOperand(0), Addr);
Eric Christopher55324332010-10-12 00:43:21 +0000827 break;
828 }
829 case Instruction::PtrToInt: {
830 // Look past no-op ptrtoints.
831 if (TLI.getValueType(U->getType()) == TLI.getPointerTy())
Eric Christopher0d581222010-11-19 22:30:02 +0000832 return ARMComputeAddress(U->getOperand(0), Addr);
Eric Christopher55324332010-10-12 00:43:21 +0000833 break;
834 }
Eric Christophereae84392010-10-14 09:29:41 +0000835 case Instruction::GetElementPtr: {
Eric Christopherb3716582010-11-19 22:39:56 +0000836 Address SavedAddr = Addr;
Eric Christopher0d581222010-11-19 22:30:02 +0000837 int TmpOffset = Addr.Offset;
Eric Christopher2896df82010-10-15 18:02:07 +0000838
Eric Christophereae84392010-10-14 09:29:41 +0000839 // Iterate through the GEP folding the constants into offsets where
840 // we can.
841 gep_type_iterator GTI = gep_type_begin(U);
842 for (User::const_op_iterator i = U->op_begin() + 1, e = U->op_end();
843 i != e; ++i, ++GTI) {
844 const Value *Op = *i;
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000845 if (StructType *STy = dyn_cast<StructType>(*GTI)) {
Eric Christophereae84392010-10-14 09:29:41 +0000846 const StructLayout *SL = TD.getStructLayout(STy);
847 unsigned Idx = cast<ConstantInt>(Op)->getZExtValue();
848 TmpOffset += SL->getElementOffset(Idx);
849 } else {
Eric Christopher2896df82010-10-15 18:02:07 +0000850 uint64_t S = TD.getTypeAllocSize(GTI.getIndexedType());
Eric Christopher7244d7c2011-03-22 19:39:17 +0000851 for (;;) {
Eric Christopher2896df82010-10-15 18:02:07 +0000852 if (const ConstantInt *CI = dyn_cast<ConstantInt>(Op)) {
853 // Constant-offset addressing.
854 TmpOffset += CI->getSExtValue() * S;
Eric Christopher7244d7c2011-03-22 19:39:17 +0000855 break;
856 }
857 if (isa<AddOperator>(Op) &&
858 (!isa<Instruction>(Op) ||
859 FuncInfo.MBBMap[cast<Instruction>(Op)->getParent()]
860 == FuncInfo.MBB) &&
861 isa<ConstantInt>(cast<AddOperator>(Op)->getOperand(1))) {
Eric Christopher299bbb22011-04-29 00:03:10 +0000862 // An add (in the same block) with a constant operand. Fold the
Eric Christopher7244d7c2011-03-22 19:39:17 +0000863 // constant.
Eric Christopher2896df82010-10-15 18:02:07 +0000864 ConstantInt *CI =
Eric Christopher7244d7c2011-03-22 19:39:17 +0000865 cast<ConstantInt>(cast<AddOperator>(Op)->getOperand(1));
Eric Christopher2896df82010-10-15 18:02:07 +0000866 TmpOffset += CI->getSExtValue() * S;
Eric Christopher7244d7c2011-03-22 19:39:17 +0000867 // Iterate on the other operand.
868 Op = cast<AddOperator>(Op)->getOperand(0);
869 continue;
Eric Christopher299bbb22011-04-29 00:03:10 +0000870 }
Eric Christopher7244d7c2011-03-22 19:39:17 +0000871 // Unsupported
872 goto unsupported_gep;
873 }
Eric Christophereae84392010-10-14 09:29:41 +0000874 }
875 }
Eric Christopher2896df82010-10-15 18:02:07 +0000876
877 // Try to grab the base operand now.
Eric Christopher0d581222010-11-19 22:30:02 +0000878 Addr.Offset = TmpOffset;
879 if (ARMComputeAddress(U->getOperand(0), Addr)) return true;
Eric Christopher2896df82010-10-15 18:02:07 +0000880
881 // We failed, restore everything and try the other options.
Eric Christopherb3716582010-11-19 22:39:56 +0000882 Addr = SavedAddr;
Eric Christopher2896df82010-10-15 18:02:07 +0000883
Eric Christophereae84392010-10-14 09:29:41 +0000884 unsupported_gep:
Eric Christophereae84392010-10-14 09:29:41 +0000885 break;
886 }
Eric Christopher83007122010-08-23 21:44:12 +0000887 case Instruction::Alloca: {
Eric Christopher15418772010-10-12 05:39:06 +0000888 const AllocaInst *AI = cast<AllocaInst>(Obj);
Eric Christopher827656d2010-11-20 22:38:27 +0000889 DenseMap<const AllocaInst*, int>::iterator SI =
890 FuncInfo.StaticAllocaMap.find(AI);
891 if (SI != FuncInfo.StaticAllocaMap.end()) {
892 Addr.BaseType = Address::FrameIndexBase;
893 Addr.Base.FI = SI->second;
894 return true;
895 }
896 break;
Eric Christopher83007122010-08-23 21:44:12 +0000897 }
898 }
Eric Christopherac1a19e2010-09-09 01:06:51 +0000899
Eric Christophercb0b04b2010-08-24 00:07:24 +0000900 // Try to get this in a register if nothing else has worked.
Eric Christopher0d581222010-11-19 22:30:02 +0000901 if (Addr.Base.Reg == 0) Addr.Base.Reg = getRegForValue(Obj);
902 return Addr.Base.Reg != 0;
Eric Christophereae84392010-10-14 09:29:41 +0000903}
904
Chad Rosier6290b932012-12-17 22:35:29 +0000905void ARMFastISel::ARMSimplifyAddress(Address &Addr, MVT VT, bool useAM3) {
Eric Christopher212ae932010-10-21 19:40:30 +0000906 bool needsLowering = false;
Chad Rosier6290b932012-12-17 22:35:29 +0000907 switch (VT.SimpleTy) {
Craig Topperbc219812012-02-07 02:50:20 +0000908 default: llvm_unreachable("Unhandled load/store type!");
Eric Christopher212ae932010-10-21 19:40:30 +0000909 case MVT::i1:
910 case MVT::i8:
Chad Rosierb29b9502011-11-13 02:23:59 +0000911 case MVT::i16:
Eric Christopher212ae932010-10-21 19:40:30 +0000912 case MVT::i32:
Chad Rosier57b29972011-11-14 20:22:27 +0000913 if (!useAM3) {
Chad Rosierb29b9502011-11-13 02:23:59 +0000914 // Integer loads/stores handle 12-bit offsets.
915 needsLowering = ((Addr.Offset & 0xfff) != Addr.Offset);
Chad Rosier57b29972011-11-14 20:22:27 +0000916 // Handle negative offsets.
Chad Rosiere489af82011-11-14 22:34:48 +0000917 if (needsLowering && isThumb2)
918 needsLowering = !(Subtarget->hasV6T2Ops() && Addr.Offset < 0 &&
919 Addr.Offset > -256);
Chad Rosier57b29972011-11-14 20:22:27 +0000920 } else {
Chad Rosier5be833d2011-11-13 04:25:02 +0000921 // ARM halfword load/stores and signed byte loads use +/-imm8 offsets.
Chad Rosierdc9205d2011-11-14 04:09:28 +0000922 needsLowering = (Addr.Offset > 255 || Addr.Offset < -255);
Chad Rosier57b29972011-11-14 20:22:27 +0000923 }
Eric Christopher212ae932010-10-21 19:40:30 +0000924 break;
925 case MVT::f32:
926 case MVT::f64:
927 // Floating point operands handle 8-bit offsets.
Eric Christopher0d581222010-11-19 22:30:02 +0000928 needsLowering = ((Addr.Offset & 0xff) != Addr.Offset);
Eric Christopher212ae932010-10-21 19:40:30 +0000929 break;
930 }
Jim Grosbach6b156392010-10-27 21:39:08 +0000931
Eric Christopher827656d2010-11-20 22:38:27 +0000932 // If this is a stack pointer and the offset needs to be simplified then
933 // put the alloca address into a register, set the base type back to
934 // register and continue. This should almost never happen.
935 if (needsLowering && Addr.BaseType == Address::FrameIndexBase) {
Craig Topper420761a2012-04-20 07:30:17 +0000936 const TargetRegisterClass *RC = isThumb2 ?
937 (const TargetRegisterClass*)&ARM::tGPRRegClass :
938 (const TargetRegisterClass*)&ARM::GPRRegClass;
Eric Christopher827656d2010-11-20 22:38:27 +0000939 unsigned ResultReg = createResultReg(RC);
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000940 unsigned Opc = isThumb2 ? ARM::t2ADDri : ARM::ADDri;
Evan Chengddfd1372011-12-14 02:11:42 +0000941 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher827656d2010-11-20 22:38:27 +0000942 TII.get(Opc), ResultReg)
943 .addFrameIndex(Addr.Base.FI)
944 .addImm(0));
945 Addr.Base.Reg = ResultReg;
946 Addr.BaseType = Address::RegBase;
947 }
948
Eric Christopher212ae932010-10-21 19:40:30 +0000949 // Since the offset is too large for the load/store instruction
Eric Christopher318b6ee2010-09-02 00:53:56 +0000950 // get the reg+offset into a register.
Eric Christopher212ae932010-10-21 19:40:30 +0000951 if (needsLowering) {
Eli Friedman9ebf57a2011-04-29 21:22:56 +0000952 Addr.Base.Reg = FastEmit_ri_(MVT::i32, ISD::ADD, Addr.Base.Reg,
953 /*Op0IsKill*/false, Addr.Offset, MVT::i32);
Eric Christopher0d581222010-11-19 22:30:02 +0000954 Addr.Offset = 0;
Eric Christopher318b6ee2010-09-02 00:53:56 +0000955 }
Eric Christopher83007122010-08-23 21:44:12 +0000956}
957
Chad Rosier6290b932012-12-17 22:35:29 +0000958void ARMFastISel::AddLoadStoreOperands(MVT VT, Address &Addr,
Cameron Zwarichc152aa62011-05-28 20:34:49 +0000959 const MachineInstrBuilder &MIB,
Chad Rosierb29b9502011-11-13 02:23:59 +0000960 unsigned Flags, bool useAM3) {
Eric Christopher564857f2010-12-01 01:40:24 +0000961 // addrmode5 output depends on the selection dag addressing dividing the
962 // offset by 4 that it then later multiplies. Do this here as well.
Chad Rosier6290b932012-12-17 22:35:29 +0000963 if (VT.SimpleTy == MVT::f32 || VT.SimpleTy == MVT::f64)
Eric Christopher564857f2010-12-01 01:40:24 +0000964 Addr.Offset /= 4;
Eric Christopher299bbb22011-04-29 00:03:10 +0000965
Eric Christopher564857f2010-12-01 01:40:24 +0000966 // Frame base works a bit differently. Handle it separately.
967 if (Addr.BaseType == Address::FrameIndexBase) {
968 int FI = Addr.Base.FI;
969 int Offset = Addr.Offset;
970 MachineMemOperand *MMO =
971 FuncInfo.MF->getMachineMemOperand(
972 MachinePointerInfo::getFixedStack(FI, Offset),
Cameron Zwarichc152aa62011-05-28 20:34:49 +0000973 Flags,
Eric Christopher564857f2010-12-01 01:40:24 +0000974 MFI.getObjectSize(FI),
975 MFI.getObjectAlignment(FI));
976 // Now add the rest of the operands.
977 MIB.addFrameIndex(FI);
978
Bob Wilson6ce2dea2011-12-04 00:52:23 +0000979 // ARM halfword load/stores and signed byte loads need an additional
980 // operand.
Chad Rosierdc9205d2011-11-14 04:09:28 +0000981 if (useAM3) {
982 signed Imm = (Addr.Offset < 0) ? (0x100 | -Addr.Offset) : Addr.Offset;
983 MIB.addReg(0);
984 MIB.addImm(Imm);
985 } else {
986 MIB.addImm(Addr.Offset);
987 }
Eric Christopher564857f2010-12-01 01:40:24 +0000988 MIB.addMemOperand(MMO);
989 } else {
990 // Now add the rest of the operands.
991 MIB.addReg(Addr.Base.Reg);
Eric Christopher299bbb22011-04-29 00:03:10 +0000992
Bob Wilson6ce2dea2011-12-04 00:52:23 +0000993 // ARM halfword load/stores and signed byte loads need an additional
994 // operand.
Chad Rosierdc9205d2011-11-14 04:09:28 +0000995 if (useAM3) {
996 signed Imm = (Addr.Offset < 0) ? (0x100 | -Addr.Offset) : Addr.Offset;
997 MIB.addReg(0);
998 MIB.addImm(Imm);
999 } else {
1000 MIB.addImm(Addr.Offset);
1001 }
Eric Christopher564857f2010-12-01 01:40:24 +00001002 }
1003 AddOptionalDefs(MIB);
1004}
1005
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00001006bool ARMFastISel::ARMEmitLoad(MVT VT, unsigned &ResultReg, Address &Addr,
Chad Rosier8a9bce92011-12-13 19:22:14 +00001007 unsigned Alignment, bool isZExt, bool allocReg) {
Eric Christopherdc908042010-08-31 01:28:42 +00001008 unsigned Opc;
Chad Rosierb29b9502011-11-13 02:23:59 +00001009 bool useAM3 = false;
Chad Rosier8a9bce92011-12-13 19:22:14 +00001010 bool needVMOV = false;
Craig Topper44d23822012-02-22 05:59:10 +00001011 const TargetRegisterClass *RC;
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00001012 switch (VT.SimpleTy) {
Eric Christopher564857f2010-12-01 01:40:24 +00001013 // This is mostly going to be Neon/vector support.
1014 default: return false;
Chad Rosier646abbf2011-11-11 02:38:59 +00001015 case MVT::i1:
Eric Christopher4e68c7c2010-09-01 18:01:32 +00001016 case MVT::i8:
Chad Rosier57b29972011-11-14 20:22:27 +00001017 if (isThumb2) {
1018 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1019 Opc = isZExt ? ARM::t2LDRBi8 : ARM::t2LDRSBi8;
1020 else
1021 Opc = isZExt ? ARM::t2LDRBi12 : ARM::t2LDRSBi12;
Chad Rosierb29b9502011-11-13 02:23:59 +00001022 } else {
Chad Rosier57b29972011-11-14 20:22:27 +00001023 if (isZExt) {
1024 Opc = ARM::LDRBi12;
1025 } else {
1026 Opc = ARM::LDRSB;
1027 useAM3 = true;
1028 }
Chad Rosierb29b9502011-11-13 02:23:59 +00001029 }
JF Bastien1fe907e2013-06-09 00:20:24 +00001030 RC = isThumb2 ? &ARM::rGPRRegClass : &ARM::GPRnopcRegClass;
Eric Christopher4e68c7c2010-09-01 18:01:32 +00001031 break;
Chad Rosier73463472011-11-09 21:30:12 +00001032 case MVT::i16:
Chad Rosierb3235b12012-11-09 18:25:27 +00001033 if (Alignment && Alignment < 2 && !Subtarget->allowsUnalignedMem())
Chad Rosierd70c98e2012-09-21 00:41:42 +00001034 return false;
1035
Chad Rosier57b29972011-11-14 20:22:27 +00001036 if (isThumb2) {
1037 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1038 Opc = isZExt ? ARM::t2LDRHi8 : ARM::t2LDRSHi8;
1039 else
1040 Opc = isZExt ? ARM::t2LDRHi12 : ARM::t2LDRSHi12;
1041 } else {
1042 Opc = isZExt ? ARM::LDRH : ARM::LDRSH;
1043 useAM3 = true;
1044 }
JF Bastien1fe907e2013-06-09 00:20:24 +00001045 RC = isThumb2 ? &ARM::rGPRRegClass : &ARM::GPRnopcRegClass;
Chad Rosier73463472011-11-09 21:30:12 +00001046 break;
Eric Christopherdc908042010-08-31 01:28:42 +00001047 case MVT::i32:
Chad Rosierb3235b12012-11-09 18:25:27 +00001048 if (Alignment && Alignment < 4 && !Subtarget->allowsUnalignedMem())
Chad Rosiere5e674b2012-09-21 16:58:35 +00001049 return false;
1050
Chad Rosier57b29972011-11-14 20:22:27 +00001051 if (isThumb2) {
1052 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1053 Opc = ARM::t2LDRi8;
1054 else
1055 Opc = ARM::t2LDRi12;
1056 } else {
1057 Opc = ARM::LDRi12;
1058 }
JF Bastien1fe907e2013-06-09 00:20:24 +00001059 RC = isThumb2 ? &ARM::rGPRRegClass : &ARM::GPRnopcRegClass;
Eric Christopherdc908042010-08-31 01:28:42 +00001060 break;
Eric Christopher6dab1372010-09-18 01:59:37 +00001061 case MVT::f32:
Chad Rosier6762f8f2011-12-14 17:55:03 +00001062 if (!Subtarget->hasVFP2()) return false;
Chad Rosier8a9bce92011-12-13 19:22:14 +00001063 // Unaligned loads need special handling. Floats require word-alignment.
1064 if (Alignment && Alignment < 4) {
1065 needVMOV = true;
1066 VT = MVT::i32;
1067 Opc = isThumb2 ? ARM::t2LDRi12 : ARM::LDRi12;
JF Bastien1fe907e2013-06-09 00:20:24 +00001068 RC = isThumb2 ? &ARM::rGPRRegClass : &ARM::GPRnopcRegClass;
Chad Rosier8a9bce92011-12-13 19:22:14 +00001069 } else {
1070 Opc = ARM::VLDRS;
1071 RC = TLI.getRegClassFor(VT);
1072 }
Eric Christopher6dab1372010-09-18 01:59:37 +00001073 break;
1074 case MVT::f64:
Chad Rosier6762f8f2011-12-14 17:55:03 +00001075 if (!Subtarget->hasVFP2()) return false;
Chad Rosier404ed3c2011-12-14 17:26:05 +00001076 // FIXME: Unaligned loads need special handling. Doublewords require
1077 // word-alignment.
1078 if (Alignment && Alignment < 4)
Chad Rosier8a9bce92011-12-13 19:22:14 +00001079 return false;
Chad Rosier404ed3c2011-12-14 17:26:05 +00001080
Eric Christopher6dab1372010-09-18 01:59:37 +00001081 Opc = ARM::VLDRD;
Eric Christopheree56ea62010-10-07 05:50:44 +00001082 RC = TLI.getRegClassFor(VT);
Eric Christopher6dab1372010-09-18 01:59:37 +00001083 break;
Eric Christopherb1cc8482010-08-25 07:23:49 +00001084 }
Eric Christopher564857f2010-12-01 01:40:24 +00001085 // Simplify this down to something we can handle.
Chad Rosierb29b9502011-11-13 02:23:59 +00001086 ARMSimplifyAddress(Addr, VT, useAM3);
Jim Grosbach6b156392010-10-27 21:39:08 +00001087
Eric Christopher564857f2010-12-01 01:40:24 +00001088 // Create the base instruction, then add the operands.
Chad Rosierb29b9502011-11-13 02:23:59 +00001089 if (allocReg)
1090 ResultReg = createResultReg(RC);
1091 assert (ResultReg > 255 && "Expected an allocated virtual register.");
Eric Christopher564857f2010-12-01 01:40:24 +00001092 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1093 TII.get(Opc), ResultReg);
Chad Rosierb29b9502011-11-13 02:23:59 +00001094 AddLoadStoreOperands(VT, Addr, MIB, MachineMemOperand::MOLoad, useAM3);
Chad Rosier8a9bce92011-12-13 19:22:14 +00001095
1096 // If we had an unaligned load of a float we've converted it to an regular
1097 // load. Now we must move from the GRP to the FP register.
1098 if (needVMOV) {
1099 unsigned MoveReg = createResultReg(TLI.getRegClassFor(MVT::f32));
1100 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1101 TII.get(ARM::VMOVSR), MoveReg)
1102 .addReg(ResultReg));
1103 ResultReg = MoveReg;
1104 }
Eric Christopherdc908042010-08-31 01:28:42 +00001105 return true;
Eric Christopherb1cc8482010-08-25 07:23:49 +00001106}
1107
Eric Christopher43b62be2010-09-27 06:02:23 +00001108bool ARMFastISel::SelectLoad(const Instruction *I) {
Eli Friedman4136d232011-09-02 22:33:24 +00001109 // Atomic loads need special handling.
1110 if (cast<LoadInst>(I)->isAtomic())
1111 return false;
1112
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001113 // Verify we have a legal type before going any further.
Duncan Sands1440e8b2010-11-03 11:35:31 +00001114 MVT VT;
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001115 if (!isLoadTypeLegal(I->getType(), VT))
1116 return false;
1117
Eric Christopher564857f2010-12-01 01:40:24 +00001118 // See if we can handle this address.
Eric Christopher0d581222010-11-19 22:30:02 +00001119 Address Addr;
Eric Christopher564857f2010-12-01 01:40:24 +00001120 if (!ARMComputeAddress(I->getOperand(0), Addr)) return false;
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001121
1122 unsigned ResultReg;
Chad Rosier8a9bce92011-12-13 19:22:14 +00001123 if (!ARMEmitLoad(VT, ResultReg, Addr, cast<LoadInst>(I)->getAlignment()))
1124 return false;
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001125 UpdateValueMap(I, ResultReg);
1126 return true;
1127}
1128
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00001129bool ARMFastISel::ARMEmitStore(MVT VT, unsigned SrcReg, Address &Addr,
Bob Wilson6ce2dea2011-12-04 00:52:23 +00001130 unsigned Alignment) {
Eric Christopher318b6ee2010-09-02 00:53:56 +00001131 unsigned StrOpc;
Chad Rosierb29b9502011-11-13 02:23:59 +00001132 bool useAM3 = false;
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00001133 switch (VT.SimpleTy) {
Eric Christopher564857f2010-12-01 01:40:24 +00001134 // This is mostly going to be Neon/vector support.
Eric Christopher318b6ee2010-09-02 00:53:56 +00001135 default: return false;
Eric Christopher4c914122010-11-02 23:59:09 +00001136 case MVT::i1: {
Craig Topper420761a2012-04-20 07:30:17 +00001137 unsigned Res = createResultReg(isThumb2 ?
1138 (const TargetRegisterClass*)&ARM::tGPRRegClass :
1139 (const TargetRegisterClass*)&ARM::GPRRegClass);
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001140 unsigned Opc = isThumb2 ? ARM::t2ANDri : ARM::ANDri;
Eric Christopher4c914122010-11-02 23:59:09 +00001141 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1142 TII.get(Opc), Res)
1143 .addReg(SrcReg).addImm(1));
1144 SrcReg = Res;
1145 } // Fallthrough here.
Eric Christopher2896df82010-10-15 18:02:07 +00001146 case MVT::i8:
Chad Rosier57b29972011-11-14 20:22:27 +00001147 if (isThumb2) {
1148 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1149 StrOpc = ARM::t2STRBi8;
1150 else
1151 StrOpc = ARM::t2STRBi12;
1152 } else {
1153 StrOpc = ARM::STRBi12;
1154 }
Eric Christopher15418772010-10-12 05:39:06 +00001155 break;
1156 case MVT::i16:
Chad Rosierb3235b12012-11-09 18:25:27 +00001157 if (Alignment && Alignment < 2 && !Subtarget->allowsUnalignedMem())
Chad Rosierd70c98e2012-09-21 00:41:42 +00001158 return false;
1159
Chad Rosier57b29972011-11-14 20:22:27 +00001160 if (isThumb2) {
1161 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1162 StrOpc = ARM::t2STRHi8;
1163 else
1164 StrOpc = ARM::t2STRHi12;
1165 } else {
1166 StrOpc = ARM::STRH;
1167 useAM3 = true;
1168 }
Eric Christopher15418772010-10-12 05:39:06 +00001169 break;
Eric Christopher47650ec2010-10-16 01:10:35 +00001170 case MVT::i32:
Chad Rosierb3235b12012-11-09 18:25:27 +00001171 if (Alignment && Alignment < 4 && !Subtarget->allowsUnalignedMem())
Chad Rosiere5e674b2012-09-21 16:58:35 +00001172 return false;
1173
Chad Rosier57b29972011-11-14 20:22:27 +00001174 if (isThumb2) {
1175 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1176 StrOpc = ARM::t2STRi8;
1177 else
1178 StrOpc = ARM::t2STRi12;
1179 } else {
1180 StrOpc = ARM::STRi12;
1181 }
Eric Christopher47650ec2010-10-16 01:10:35 +00001182 break;
Eric Christopher56d2b722010-09-02 23:43:26 +00001183 case MVT::f32:
1184 if (!Subtarget->hasVFP2()) return false;
Chad Rosiered42c5f2011-12-06 01:44:17 +00001185 // Unaligned stores need special handling. Floats require word-alignment.
Chad Rosier9eff1e32011-12-03 02:21:57 +00001186 if (Alignment && Alignment < 4) {
1187 unsigned MoveReg = createResultReg(TLI.getRegClassFor(MVT::i32));
1188 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1189 TII.get(ARM::VMOVRS), MoveReg)
1190 .addReg(SrcReg));
1191 SrcReg = MoveReg;
1192 VT = MVT::i32;
1193 StrOpc = isThumb2 ? ARM::t2STRi12 : ARM::STRi12;
Chad Rosier64ac91b2011-12-14 17:32:02 +00001194 } else {
1195 StrOpc = ARM::VSTRS;
Chad Rosier9eff1e32011-12-03 02:21:57 +00001196 }
Eric Christopher56d2b722010-09-02 23:43:26 +00001197 break;
1198 case MVT::f64:
1199 if (!Subtarget->hasVFP2()) return false;
Chad Rosiered42c5f2011-12-06 01:44:17 +00001200 // FIXME: Unaligned stores need special handling. Doublewords require
1201 // word-alignment.
Chad Rosier404ed3c2011-12-14 17:26:05 +00001202 if (Alignment && Alignment < 4)
Chad Rosier9eff1e32011-12-03 02:21:57 +00001203 return false;
Chad Rosier404ed3c2011-12-14 17:26:05 +00001204
Eric Christopher56d2b722010-09-02 23:43:26 +00001205 StrOpc = ARM::VSTRD;
1206 break;
Eric Christopher318b6ee2010-09-02 00:53:56 +00001207 }
Eric Christopher564857f2010-12-01 01:40:24 +00001208 // Simplify this down to something we can handle.
Chad Rosierb29b9502011-11-13 02:23:59 +00001209 ARMSimplifyAddress(Addr, VT, useAM3);
Jim Grosbach6b156392010-10-27 21:39:08 +00001210
Eric Christopher564857f2010-12-01 01:40:24 +00001211 // Create the base instruction, then add the operands.
1212 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1213 TII.get(StrOpc))
Chad Rosier3bdb3c92011-11-17 01:16:53 +00001214 .addReg(SrcReg);
Chad Rosierb29b9502011-11-13 02:23:59 +00001215 AddLoadStoreOperands(VT, Addr, MIB, MachineMemOperand::MOStore, useAM3);
Eric Christopher318b6ee2010-09-02 00:53:56 +00001216 return true;
1217}
1218
Eric Christopher43b62be2010-09-27 06:02:23 +00001219bool ARMFastISel::SelectStore(const Instruction *I) {
Eric Christopher318b6ee2010-09-02 00:53:56 +00001220 Value *Op0 = I->getOperand(0);
1221 unsigned SrcReg = 0;
1222
Eli Friedman4136d232011-09-02 22:33:24 +00001223 // Atomic stores need special handling.
1224 if (cast<StoreInst>(I)->isAtomic())
1225 return false;
1226
Eric Christopher564857f2010-12-01 01:40:24 +00001227 // Verify we have a legal type before going any further.
Duncan Sands1440e8b2010-11-03 11:35:31 +00001228 MVT VT;
Eric Christopher318b6ee2010-09-02 00:53:56 +00001229 if (!isLoadTypeLegal(I->getOperand(0)->getType(), VT))
Eric Christopher543cf052010-09-01 22:16:27 +00001230 return false;
Eric Christopher318b6ee2010-09-02 00:53:56 +00001231
Eric Christopher1b61ef42010-09-02 01:48:11 +00001232 // Get the value to be stored into a register.
1233 SrcReg = getRegForValue(Op0);
Eric Christopher564857f2010-12-01 01:40:24 +00001234 if (SrcReg == 0) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001235
Eric Christopher564857f2010-12-01 01:40:24 +00001236 // See if we can handle this address.
Eric Christopher0d581222010-11-19 22:30:02 +00001237 Address Addr;
Eric Christopher0d581222010-11-19 22:30:02 +00001238 if (!ARMComputeAddress(I->getOperand(1), Addr))
Eric Christopher318b6ee2010-09-02 00:53:56 +00001239 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001240
Chad Rosier9eff1e32011-12-03 02:21:57 +00001241 if (!ARMEmitStore(VT, SrcReg, Addr, cast<StoreInst>(I)->getAlignment()))
1242 return false;
Eric Christophera5b1e682010-09-17 22:28:18 +00001243 return true;
1244}
1245
1246static ARMCC::CondCodes getComparePred(CmpInst::Predicate Pred) {
1247 switch (Pred) {
1248 // Needs two compares...
1249 case CmpInst::FCMP_ONE:
Eric Christopherdccd2c32010-10-11 08:38:55 +00001250 case CmpInst::FCMP_UEQ:
Eric Christophera5b1e682010-09-17 22:28:18 +00001251 default:
Eric Christopher4053e632010-11-02 01:24:49 +00001252 // AL is our "false" for now. The other two need more compares.
Eric Christophera5b1e682010-09-17 22:28:18 +00001253 return ARMCC::AL;
1254 case CmpInst::ICMP_EQ:
1255 case CmpInst::FCMP_OEQ:
1256 return ARMCC::EQ;
1257 case CmpInst::ICMP_SGT:
1258 case CmpInst::FCMP_OGT:
1259 return ARMCC::GT;
1260 case CmpInst::ICMP_SGE:
1261 case CmpInst::FCMP_OGE:
1262 return ARMCC::GE;
1263 case CmpInst::ICMP_UGT:
1264 case CmpInst::FCMP_UGT:
1265 return ARMCC::HI;
1266 case CmpInst::FCMP_OLT:
1267 return ARMCC::MI;
1268 case CmpInst::ICMP_ULE:
1269 case CmpInst::FCMP_OLE:
1270 return ARMCC::LS;
1271 case CmpInst::FCMP_ORD:
1272 return ARMCC::VC;
1273 case CmpInst::FCMP_UNO:
1274 return ARMCC::VS;
1275 case CmpInst::FCMP_UGE:
1276 return ARMCC::PL;
1277 case CmpInst::ICMP_SLT:
1278 case CmpInst::FCMP_ULT:
Eric Christopherdccd2c32010-10-11 08:38:55 +00001279 return ARMCC::LT;
Eric Christophera5b1e682010-09-17 22:28:18 +00001280 case CmpInst::ICMP_SLE:
1281 case CmpInst::FCMP_ULE:
1282 return ARMCC::LE;
1283 case CmpInst::FCMP_UNE:
1284 case CmpInst::ICMP_NE:
1285 return ARMCC::NE;
1286 case CmpInst::ICMP_UGE:
1287 return ARMCC::HS;
1288 case CmpInst::ICMP_ULT:
1289 return ARMCC::LO;
1290 }
Eric Christopher543cf052010-09-01 22:16:27 +00001291}
1292
Eric Christopher43b62be2010-09-27 06:02:23 +00001293bool ARMFastISel::SelectBranch(const Instruction *I) {
Eric Christophere5734102010-09-03 00:35:47 +00001294 const BranchInst *BI = cast<BranchInst>(I);
1295 MachineBasicBlock *TBB = FuncInfo.MBBMap[BI->getSuccessor(0)];
1296 MachineBasicBlock *FBB = FuncInfo.MBBMap[BI->getSuccessor(1)];
Eric Christopherac1a19e2010-09-09 01:06:51 +00001297
Eric Christophere5734102010-09-03 00:35:47 +00001298 // Simple branch support.
Jim Grosbach16cb3762010-11-09 19:22:26 +00001299
Eric Christopher0e6233b2010-10-29 21:08:19 +00001300 // If we can, avoid recomputing the compare - redoing it could lead to wonky
1301 // behavior.
Eric Christopher0e6233b2010-10-29 21:08:19 +00001302 if (const CmpInst *CI = dyn_cast<CmpInst>(BI->getCondition())) {
Chad Rosier75698f32011-10-26 23:17:28 +00001303 if (CI->hasOneUse() && (CI->getParent() == I->getParent())) {
Eric Christopher0e6233b2010-10-29 21:08:19 +00001304
1305 // Get the compare predicate.
Eric Christopher632ae892011-04-29 21:56:31 +00001306 // Try to take advantage of fallthrough opportunities.
1307 CmpInst::Predicate Predicate = CI->getPredicate();
1308 if (FuncInfo.MBB->isLayoutSuccessor(TBB)) {
1309 std::swap(TBB, FBB);
1310 Predicate = CmpInst::getInversePredicate(Predicate);
1311 }
1312
1313 ARMCC::CondCodes ARMPred = getComparePred(Predicate);
Eric Christopher0e6233b2010-10-29 21:08:19 +00001314
1315 // We may not handle every CC for now.
1316 if (ARMPred == ARMCC::AL) return false;
1317
Chad Rosier75698f32011-10-26 23:17:28 +00001318 // Emit the compare.
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001319 if (!ARMEmitCmp(CI->getOperand(0), CI->getOperand(1), CI->isUnsigned()))
Chad Rosier75698f32011-10-26 23:17:28 +00001320 return false;
Jim Grosbach16cb3762010-11-09 19:22:26 +00001321
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001322 unsigned BrOpc = isThumb2 ? ARM::t2Bcc : ARM::Bcc;
Eric Christopher0e6233b2010-10-29 21:08:19 +00001323 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(BrOpc))
1324 .addMBB(TBB).addImm(ARMPred).addReg(ARM::CPSR);
1325 FastEmitBranch(FBB, DL);
1326 FuncInfo.MBB->addSuccessor(TBB);
1327 return true;
1328 }
Eric Christopherbcf26ae2011-04-29 20:02:39 +00001329 } else if (TruncInst *TI = dyn_cast<TruncInst>(BI->getCondition())) {
1330 MVT SourceVT;
1331 if (TI->hasOneUse() && TI->getParent() == I->getParent() &&
Eli Friedman76927d732011-05-25 23:49:02 +00001332 (isLoadTypeLegal(TI->getOperand(0)->getType(), SourceVT))) {
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001333 unsigned TstOpc = isThumb2 ? ARM::t2TSTri : ARM::TSTri;
Eric Christopherbcf26ae2011-04-29 20:02:39 +00001334 unsigned OpReg = getRegForValue(TI->getOperand(0));
1335 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1336 TII.get(TstOpc))
1337 .addReg(OpReg).addImm(1));
1338
1339 unsigned CCMode = ARMCC::NE;
1340 if (FuncInfo.MBB->isLayoutSuccessor(TBB)) {
1341 std::swap(TBB, FBB);
1342 CCMode = ARMCC::EQ;
1343 }
1344
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001345 unsigned BrOpc = isThumb2 ? ARM::t2Bcc : ARM::Bcc;
Eric Christopherbcf26ae2011-04-29 20:02:39 +00001346 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(BrOpc))
1347 .addMBB(TBB).addImm(CCMode).addReg(ARM::CPSR);
1348
1349 FastEmitBranch(FBB, DL);
1350 FuncInfo.MBB->addSuccessor(TBB);
1351 return true;
1352 }
Chad Rosier6d64b3a2011-10-27 00:21:16 +00001353 } else if (const ConstantInt *CI =
1354 dyn_cast<ConstantInt>(BI->getCondition())) {
1355 uint64_t Imm = CI->getZExtValue();
1356 MachineBasicBlock *Target = (Imm == 0) ? FBB : TBB;
1357 FastEmitBranch(Target, DL);
1358 return true;
Eric Christopher0e6233b2010-10-29 21:08:19 +00001359 }
Jim Grosbach16cb3762010-11-09 19:22:26 +00001360
Eric Christopher0e6233b2010-10-29 21:08:19 +00001361 unsigned CmpReg = getRegForValue(BI->getCondition());
1362 if (CmpReg == 0) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001363
Stuart Hastingsc5eecbc2011-04-16 03:31:26 +00001364 // We've been divorced from our compare! Our block was split, and
1365 // now our compare lives in a predecessor block. We musn't
1366 // re-compare here, as the children of the compare aren't guaranteed
1367 // live across the block boundary (we *could* check for this).
1368 // Regardless, the compare has been done in the predecessor block,
1369 // and it left a value for us in a virtual register. Ergo, we test
1370 // the one-bit value left in the virtual register.
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001371 unsigned TstOpc = isThumb2 ? ARM::t2TSTri : ARM::TSTri;
Stuart Hastingsc5eecbc2011-04-16 03:31:26 +00001372 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TstOpc))
1373 .addReg(CmpReg).addImm(1));
Eric Christopherdccd2c32010-10-11 08:38:55 +00001374
Eric Christopher7a20a372011-04-28 16:52:09 +00001375 unsigned CCMode = ARMCC::NE;
1376 if (FuncInfo.MBB->isLayoutSuccessor(TBB)) {
1377 std::swap(TBB, FBB);
1378 CCMode = ARMCC::EQ;
1379 }
1380
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001381 unsigned BrOpc = isThumb2 ? ARM::t2Bcc : ARM::Bcc;
Eric Christophere5734102010-09-03 00:35:47 +00001382 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(BrOpc))
Eric Christopher7a20a372011-04-28 16:52:09 +00001383 .addMBB(TBB).addImm(CCMode).addReg(ARM::CPSR);
Eric Christophere5734102010-09-03 00:35:47 +00001384 FastEmitBranch(FBB, DL);
1385 FuncInfo.MBB->addSuccessor(TBB);
Eric Christopherdccd2c32010-10-11 08:38:55 +00001386 return true;
Eric Christophere5734102010-09-03 00:35:47 +00001387}
1388
Chad Rosier60c8fa62012-02-07 23:56:08 +00001389bool ARMFastISel::SelectIndirectBr(const Instruction *I) {
1390 unsigned AddrReg = getRegForValue(I->getOperand(0));
1391 if (AddrReg == 0) return false;
1392
1393 unsigned Opc = isThumb2 ? ARM::tBRIND : ARM::BX;
1394 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc))
1395 .addReg(AddrReg));
Bill Wendling8f47fc82012-10-22 23:30:04 +00001396
1397 const IndirectBrInst *IB = cast<IndirectBrInst>(I);
1398 for (unsigned i = 0, e = IB->getNumSuccessors(); i != e; ++i)
1399 FuncInfo.MBB->addSuccessor(FuncInfo.MBBMap[IB->getSuccessor(i)]);
1400
Jush Luefc967e2012-06-14 06:08:19 +00001401 return true;
Chad Rosier60c8fa62012-02-07 23:56:08 +00001402}
1403
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001404bool ARMFastISel::ARMEmitCmp(const Value *Src1Value, const Value *Src2Value,
1405 bool isZExt) {
Chad Rosierade62002011-10-26 23:25:44 +00001406 Type *Ty = Src1Value->getType();
Patrik Hagglund3d170e62012-12-17 14:30:06 +00001407 EVT SrcEVT = TLI.getValueType(Ty, true);
1408 if (!SrcEVT.isSimple()) return false;
1409 MVT SrcVT = SrcEVT.getSimpleVT();
Eric Christopherac1a19e2010-09-09 01:06:51 +00001410
Chad Rosierade62002011-10-26 23:25:44 +00001411 bool isFloat = (Ty->isFloatTy() || Ty->isDoubleTy());
1412 if (isFloat && !Subtarget->hasVFP2())
Eric Christopherd43393a2010-09-08 23:13:45 +00001413 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001414
Chad Rosier2f2fe412011-11-09 03:22:02 +00001415 // Check to see if the 2nd operand is a constant that we can encode directly
1416 // in the compare.
Chad Rosier1c47de82011-11-11 06:27:41 +00001417 int Imm = 0;
1418 bool UseImm = false;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001419 bool isNegativeImm = false;
Chad Rosierf56c60b2011-11-16 00:32:20 +00001420 // FIXME: At -O0 we don't have anything that canonicalizes operand order.
1421 // Thus, Src1Value may be a ConstantInt, but we're missing it.
Chad Rosier2f2fe412011-11-09 03:22:02 +00001422 if (const ConstantInt *ConstInt = dyn_cast<ConstantInt>(Src2Value)) {
1423 if (SrcVT == MVT::i32 || SrcVT == MVT::i16 || SrcVT == MVT::i8 ||
1424 SrcVT == MVT::i1) {
1425 const APInt &CIVal = ConstInt->getValue();
Chad Rosier1c47de82011-11-11 06:27:41 +00001426 Imm = (isZExt) ? (int)CIVal.getZExtValue() : (int)CIVal.getSExtValue();
Chad Rosier0ac754f2012-03-15 22:54:20 +00001427 // For INT_MIN/LONG_MIN (i.e., 0x80000000) we need to use a cmp, rather
1428 // then a cmn, because there is no way to represent 2147483648 as a
1429 // signed 32-bit int.
1430 if (Imm < 0 && Imm != (int)0x80000000) {
1431 isNegativeImm = true;
1432 Imm = -Imm;
Chad Rosier6cba97c2011-11-10 01:30:39 +00001433 }
Chad Rosier0ac754f2012-03-15 22:54:20 +00001434 UseImm = isThumb2 ? (ARM_AM::getT2SOImmVal(Imm) != -1) :
1435 (ARM_AM::getSOImmVal(Imm) != -1);
Chad Rosier2f2fe412011-11-09 03:22:02 +00001436 }
1437 } else if (const ConstantFP *ConstFP = dyn_cast<ConstantFP>(Src2Value)) {
1438 if (SrcVT == MVT::f32 || SrcVT == MVT::f64)
1439 if (ConstFP->isZero() && !ConstFP->isNegative())
Chad Rosier1c47de82011-11-11 06:27:41 +00001440 UseImm = true;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001441 }
1442
Eric Christopherd43393a2010-09-08 23:13:45 +00001443 unsigned CmpOpc;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001444 bool isICmp = true;
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001445 bool needsExt = false;
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00001446 switch (SrcVT.SimpleTy) {
Eric Christopherd43393a2010-09-08 23:13:45 +00001447 default: return false;
1448 // TODO: Verify compares.
1449 case MVT::f32:
Chad Rosier2f2fe412011-11-09 03:22:02 +00001450 isICmp = false;
Chad Rosier1c47de82011-11-11 06:27:41 +00001451 CmpOpc = UseImm ? ARM::VCMPEZS : ARM::VCMPES;
Eric Christopherd43393a2010-09-08 23:13:45 +00001452 break;
1453 case MVT::f64:
Chad Rosier2f2fe412011-11-09 03:22:02 +00001454 isICmp = false;
Chad Rosier1c47de82011-11-11 06:27:41 +00001455 CmpOpc = UseImm ? ARM::VCMPEZD : ARM::VCMPED;
Eric Christopherd43393a2010-09-08 23:13:45 +00001456 break;
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001457 case MVT::i1:
1458 case MVT::i8:
1459 case MVT::i16:
1460 needsExt = true;
1461 // Intentional fall-through.
Eric Christopherd43393a2010-09-08 23:13:45 +00001462 case MVT::i32:
Chad Rosier2f2fe412011-11-09 03:22:02 +00001463 if (isThumb2) {
Chad Rosier1c47de82011-11-11 06:27:41 +00001464 if (!UseImm)
Chad Rosier2f2fe412011-11-09 03:22:02 +00001465 CmpOpc = ARM::t2CMPrr;
1466 else
Bill Wendlingad5c8802012-06-11 08:07:26 +00001467 CmpOpc = isNegativeImm ? ARM::t2CMNri : ARM::t2CMPri;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001468 } else {
Chad Rosier1c47de82011-11-11 06:27:41 +00001469 if (!UseImm)
Chad Rosier2f2fe412011-11-09 03:22:02 +00001470 CmpOpc = ARM::CMPrr;
1471 else
Bill Wendlingad5c8802012-06-11 08:07:26 +00001472 CmpOpc = isNegativeImm ? ARM::CMNri : ARM::CMPri;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001473 }
Eric Christopherd43393a2010-09-08 23:13:45 +00001474 break;
1475 }
1476
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001477 unsigned SrcReg1 = getRegForValue(Src1Value);
1478 if (SrcReg1 == 0) return false;
Chad Rosier530f7ce2011-10-26 22:47:55 +00001479
Duncan Sands4c0c5452011-11-28 10:31:27 +00001480 unsigned SrcReg2 = 0;
Chad Rosier1c47de82011-11-11 06:27:41 +00001481 if (!UseImm) {
Chad Rosier2f2fe412011-11-09 03:22:02 +00001482 SrcReg2 = getRegForValue(Src2Value);
1483 if (SrcReg2 == 0) return false;
1484 }
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001485
1486 // We have i1, i8, or i16, we need to either zero extend or sign extend.
1487 if (needsExt) {
Chad Rosiera69feb02012-02-16 22:45:33 +00001488 SrcReg1 = ARMEmitIntExt(SrcVT, SrcReg1, MVT::i32, isZExt);
1489 if (SrcReg1 == 0) return false;
Chad Rosier1c47de82011-11-11 06:27:41 +00001490 if (!UseImm) {
Chad Rosiera69feb02012-02-16 22:45:33 +00001491 SrcReg2 = ARMEmitIntExt(SrcVT, SrcReg2, MVT::i32, isZExt);
1492 if (SrcReg2 == 0) return false;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001493 }
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001494 }
Chad Rosier530f7ce2011-10-26 22:47:55 +00001495
Chad Rosier1c47de82011-11-11 06:27:41 +00001496 if (!UseImm) {
Chad Rosier2f2fe412011-11-09 03:22:02 +00001497 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1498 TII.get(CmpOpc))
1499 .addReg(SrcReg1).addReg(SrcReg2));
1500 } else {
1501 MachineInstrBuilder MIB;
1502 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(CmpOpc))
1503 .addReg(SrcReg1);
1504
1505 // Only add immediate for icmp as the immediate for fcmp is an implicit 0.0.
1506 if (isICmp)
Chad Rosier1c47de82011-11-11 06:27:41 +00001507 MIB.addImm(Imm);
Chad Rosier2f2fe412011-11-09 03:22:02 +00001508 AddOptionalDefs(MIB);
1509 }
Chad Rosierade62002011-10-26 23:25:44 +00001510
1511 // For floating point we need to move the result to a comparison register
1512 // that we can then use for branches.
1513 if (Ty->isFloatTy() || Ty->isDoubleTy())
1514 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1515 TII.get(ARM::FMSTAT)));
Chad Rosier530f7ce2011-10-26 22:47:55 +00001516 return true;
1517}
1518
1519bool ARMFastISel::SelectCmp(const Instruction *I) {
1520 const CmpInst *CI = cast<CmpInst>(I);
1521
Eric Christopher229207a2010-09-29 01:14:47 +00001522 // Get the compare predicate.
1523 ARMCC::CondCodes ARMPred = getComparePred(CI->getPredicate());
Eric Christopherdccd2c32010-10-11 08:38:55 +00001524
Eric Christopher229207a2010-09-29 01:14:47 +00001525 // We may not handle every CC for now.
1526 if (ARMPred == ARMCC::AL) return false;
1527
Chad Rosier530f7ce2011-10-26 22:47:55 +00001528 // Emit the compare.
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001529 if (!ARMEmitCmp(CI->getOperand(0), CI->getOperand(1), CI->isUnsigned()))
Chad Rosier530f7ce2011-10-26 22:47:55 +00001530 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001531
Eric Christopher229207a2010-09-29 01:14:47 +00001532 // Now set a register based on the comparison. Explicitly set the predicates
1533 // here.
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001534 unsigned MovCCOpc = isThumb2 ? ARM::t2MOVCCi : ARM::MOVCCi;
Craig Topper420761a2012-04-20 07:30:17 +00001535 const TargetRegisterClass *RC = isThumb2 ?
1536 (const TargetRegisterClass*)&ARM::rGPRRegClass :
1537 (const TargetRegisterClass*)&ARM::GPRRegClass;
Eric Christopher5d18d922010-10-07 05:39:19 +00001538 unsigned DestReg = createResultReg(RC);
Chad Rosierade62002011-10-26 23:25:44 +00001539 Constant *Zero = ConstantInt::get(Type::getInt32Ty(*Context), 0);
Eric Christopher229207a2010-09-29 01:14:47 +00001540 unsigned ZeroReg = TargetMaterializeConstant(Zero);
Chad Rosier44c98b72012-03-07 20:59:26 +00001541 // ARMEmitCmp emits a FMSTAT when necessary, so it's always safe to use CPSR.
Eric Christopher229207a2010-09-29 01:14:47 +00001542 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(MovCCOpc), DestReg)
1543 .addReg(ZeroReg).addImm(1)
Chad Rosier44c98b72012-03-07 20:59:26 +00001544 .addImm(ARMPred).addReg(ARM::CPSR);
Eric Christopher229207a2010-09-29 01:14:47 +00001545
Eric Christophera5b1e682010-09-17 22:28:18 +00001546 UpdateValueMap(I, DestReg);
Eric Christopherd43393a2010-09-08 23:13:45 +00001547 return true;
1548}
1549
Eric Christopher43b62be2010-09-27 06:02:23 +00001550bool ARMFastISel::SelectFPExt(const Instruction *I) {
Eric Christopher46203602010-09-09 00:26:48 +00001551 // Make sure we have VFP and that we're extending float to double.
1552 if (!Subtarget->hasVFP2()) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001553
Eric Christopher46203602010-09-09 00:26:48 +00001554 Value *V = I->getOperand(0);
1555 if (!I->getType()->isDoubleTy() ||
1556 !V->getType()->isFloatTy()) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001557
Eric Christopher46203602010-09-09 00:26:48 +00001558 unsigned Op = getRegForValue(V);
1559 if (Op == 0) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001560
Craig Topper420761a2012-04-20 07:30:17 +00001561 unsigned Result = createResultReg(&ARM::DPRRegClass);
Eric Christopherac1a19e2010-09-09 01:06:51 +00001562 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopheref2fdd22010-09-09 20:36:19 +00001563 TII.get(ARM::VCVTDS), Result)
Eric Christopherce07b542010-09-09 20:26:31 +00001564 .addReg(Op));
1565 UpdateValueMap(I, Result);
1566 return true;
1567}
1568
Eric Christopher43b62be2010-09-27 06:02:23 +00001569bool ARMFastISel::SelectFPTrunc(const Instruction *I) {
Eric Christopherce07b542010-09-09 20:26:31 +00001570 // Make sure we have VFP and that we're truncating double to float.
1571 if (!Subtarget->hasVFP2()) return false;
1572
1573 Value *V = I->getOperand(0);
Eric Christopher022b7fb2010-10-05 23:13:24 +00001574 if (!(I->getType()->isFloatTy() &&
1575 V->getType()->isDoubleTy())) return false;
Eric Christopherce07b542010-09-09 20:26:31 +00001576
1577 unsigned Op = getRegForValue(V);
1578 if (Op == 0) return false;
1579
Craig Topper420761a2012-04-20 07:30:17 +00001580 unsigned Result = createResultReg(&ARM::SPRRegClass);
Eric Christopherce07b542010-09-09 20:26:31 +00001581 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopheref2fdd22010-09-09 20:36:19 +00001582 TII.get(ARM::VCVTSD), Result)
Eric Christopher46203602010-09-09 00:26:48 +00001583 .addReg(Op));
1584 UpdateValueMap(I, Result);
1585 return true;
1586}
1587
Chad Rosierae46a332012-02-03 21:14:11 +00001588bool ARMFastISel::SelectIToFP(const Instruction *I, bool isSigned) {
Eric Christopher9a040492010-09-09 18:54:59 +00001589 // Make sure we have VFP.
1590 if (!Subtarget->hasVFP2()) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001591
Duncan Sands1440e8b2010-11-03 11:35:31 +00001592 MVT DstVT;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001593 Type *Ty = I->getType();
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001594 if (!isTypeLegal(Ty, DstVT))
Eric Christopher9a040492010-09-09 18:54:59 +00001595 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001596
Chad Rosier463fe242011-11-03 02:04:59 +00001597 Value *Src = I->getOperand(0);
Patrik Hagglund3d170e62012-12-17 14:30:06 +00001598 EVT SrcEVT = TLI.getValueType(Src->getType(), true);
1599 if (!SrcEVT.isSimple())
1600 return false;
1601 MVT SrcVT = SrcEVT.getSimpleVT();
Chad Rosier463fe242011-11-03 02:04:59 +00001602 if (SrcVT != MVT::i32 && SrcVT != MVT::i16 && SrcVT != MVT::i8)
Eli Friedman783c6642011-05-25 19:09:45 +00001603 return false;
1604
Chad Rosier463fe242011-11-03 02:04:59 +00001605 unsigned SrcReg = getRegForValue(Src);
1606 if (SrcReg == 0) return false;
1607
1608 // Handle sign-extension.
1609 if (SrcVT == MVT::i16 || SrcVT == MVT::i8) {
Chad Rosier316a5aa2012-12-17 19:59:43 +00001610 SrcReg = ARMEmitIntExt(SrcVT, SrcReg, MVT::i32,
Chad Rosierae46a332012-02-03 21:14:11 +00001611 /*isZExt*/!isSigned);
Chad Rosiera69feb02012-02-16 22:45:33 +00001612 if (SrcReg == 0) return false;
Chad Rosier463fe242011-11-03 02:04:59 +00001613 }
Eric Christopherdccd2c32010-10-11 08:38:55 +00001614
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001615 // The conversion routine works on fp-reg to fp-reg and the operand above
1616 // was an integer, move it to the fp registers if possible.
Chad Rosier463fe242011-11-03 02:04:59 +00001617 unsigned FP = ARMMoveToFPReg(MVT::f32, SrcReg);
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001618 if (FP == 0) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001619
Eric Christopher9a040492010-09-09 18:54:59 +00001620 unsigned Opc;
Chad Rosierae46a332012-02-03 21:14:11 +00001621 if (Ty->isFloatTy()) Opc = isSigned ? ARM::VSITOS : ARM::VUITOS;
1622 else if (Ty->isDoubleTy()) Opc = isSigned ? ARM::VSITOD : ARM::VUITOD;
Chad Rosierdd1e7512011-08-31 23:49:05 +00001623 else return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001624
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001625 unsigned ResultReg = createResultReg(TLI.getRegClassFor(DstVT));
Eric Christopher9a040492010-09-09 18:54:59 +00001626 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
1627 ResultReg)
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001628 .addReg(FP));
Eric Christopherce07b542010-09-09 20:26:31 +00001629 UpdateValueMap(I, ResultReg);
Eric Christopher9a040492010-09-09 18:54:59 +00001630 return true;
1631}
1632
Chad Rosierae46a332012-02-03 21:14:11 +00001633bool ARMFastISel::SelectFPToI(const Instruction *I, bool isSigned) {
Eric Christopher9a040492010-09-09 18:54:59 +00001634 // Make sure we have VFP.
1635 if (!Subtarget->hasVFP2()) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001636
Duncan Sands1440e8b2010-11-03 11:35:31 +00001637 MVT DstVT;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001638 Type *RetTy = I->getType();
Eric Christopher920a2082010-09-10 00:35:09 +00001639 if (!isTypeLegal(RetTy, DstVT))
Eric Christopher9a040492010-09-09 18:54:59 +00001640 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001641
Eric Christopher9a040492010-09-09 18:54:59 +00001642 unsigned Op = getRegForValue(I->getOperand(0));
1643 if (Op == 0) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001644
Eric Christopher9a040492010-09-09 18:54:59 +00001645 unsigned Opc;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001646 Type *OpTy = I->getOperand(0)->getType();
Chad Rosierae46a332012-02-03 21:14:11 +00001647 if (OpTy->isFloatTy()) Opc = isSigned ? ARM::VTOSIZS : ARM::VTOUIZS;
1648 else if (OpTy->isDoubleTy()) Opc = isSigned ? ARM::VTOSIZD : ARM::VTOUIZD;
Chad Rosierdd1e7512011-08-31 23:49:05 +00001649 else return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001650
Chad Rosieree8901c2012-02-03 20:27:51 +00001651 // f64->s32/u32 or f32->s32/u32 both need an intermediate f32 reg.
Eric Christopher022b7fb2010-10-05 23:13:24 +00001652 unsigned ResultReg = createResultReg(TLI.getRegClassFor(MVT::f32));
Eric Christopher9a040492010-09-09 18:54:59 +00001653 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
1654 ResultReg)
1655 .addReg(Op));
Eric Christopherdccd2c32010-10-11 08:38:55 +00001656
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001657 // This result needs to be in an integer register, but the conversion only
1658 // takes place in fp-regs.
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001659 unsigned IntReg = ARMMoveToIntReg(DstVT, ResultReg);
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001660 if (IntReg == 0) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001661
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001662 UpdateValueMap(I, IntReg);
Eric Christopher9a040492010-09-09 18:54:59 +00001663 return true;
1664}
1665
Eric Christopher3bbd3962010-10-11 08:27:59 +00001666bool ARMFastISel::SelectSelect(const Instruction *I) {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001667 MVT VT;
1668 if (!isTypeLegal(I->getType(), VT))
Eric Christopher3bbd3962010-10-11 08:27:59 +00001669 return false;
1670
1671 // Things need to be register sized for register moves.
Duncan Sands1440e8b2010-11-03 11:35:31 +00001672 if (VT != MVT::i32) return false;
Eric Christopher3bbd3962010-10-11 08:27:59 +00001673
1674 unsigned CondReg = getRegForValue(I->getOperand(0));
1675 if (CondReg == 0) return false;
1676 unsigned Op1Reg = getRegForValue(I->getOperand(1));
1677 if (Op1Reg == 0) return false;
Eric Christopher3bbd3962010-10-11 08:27:59 +00001678
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001679 // Check to see if we can use an immediate in the conditional move.
1680 int Imm = 0;
1681 bool UseImm = false;
1682 bool isNegativeImm = false;
1683 if (const ConstantInt *ConstInt = dyn_cast<ConstantInt>(I->getOperand(2))) {
1684 assert (VT == MVT::i32 && "Expecting an i32.");
1685 Imm = (int)ConstInt->getValue().getZExtValue();
1686 if (Imm < 0) {
1687 isNegativeImm = true;
1688 Imm = ~Imm;
1689 }
1690 UseImm = isThumb2 ? (ARM_AM::getT2SOImmVal(Imm) != -1) :
1691 (ARM_AM::getSOImmVal(Imm) != -1);
1692 }
1693
Duncan Sands4c0c5452011-11-28 10:31:27 +00001694 unsigned Op2Reg = 0;
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001695 if (!UseImm) {
1696 Op2Reg = getRegForValue(I->getOperand(2));
1697 if (Op2Reg == 0) return false;
1698 }
1699
1700 unsigned CmpOpc = isThumb2 ? ARM::t2CMPri : ARM::CMPri;
Eric Christopher3bbd3962010-10-11 08:27:59 +00001701 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(CmpOpc))
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001702 .addReg(CondReg).addImm(0));
1703
1704 unsigned MovCCOpc;
Chad Rosierac3158b2012-11-27 21:46:46 +00001705 const TargetRegisterClass *RC;
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001706 if (!UseImm) {
Chad Rosierac3158b2012-11-27 21:46:46 +00001707 RC = isThumb2 ? &ARM::tGPRRegClass : &ARM::GPRRegClass;
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001708 MovCCOpc = isThumb2 ? ARM::t2MOVCCr : ARM::MOVCCr;
1709 } else {
Chad Rosierac3158b2012-11-27 21:46:46 +00001710 RC = isThumb2 ? &ARM::rGPRRegClass : &ARM::GPRRegClass;
1711 if (!isNegativeImm)
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001712 MovCCOpc = isThumb2 ? ARM::t2MOVCCi : ARM::MOVCCi;
Chad Rosierac3158b2012-11-27 21:46:46 +00001713 else
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001714 MovCCOpc = isThumb2 ? ARM::t2MVNCCi : ARM::MVNCCi;
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001715 }
Eric Christopher3bbd3962010-10-11 08:27:59 +00001716 unsigned ResultReg = createResultReg(RC);
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001717 if (!UseImm)
1718 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(MovCCOpc), ResultReg)
1719 .addReg(Op2Reg).addReg(Op1Reg).addImm(ARMCC::NE).addReg(ARM::CPSR);
1720 else
1721 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(MovCCOpc), ResultReg)
1722 .addReg(Op1Reg).addImm(Imm).addImm(ARMCC::EQ).addReg(ARM::CPSR);
Eric Christopher3bbd3962010-10-11 08:27:59 +00001723 UpdateValueMap(I, ResultReg);
1724 return true;
1725}
1726
Chad Rosier7ccb30b2012-02-03 21:07:27 +00001727bool ARMFastISel::SelectDiv(const Instruction *I, bool isSigned) {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001728 MVT VT;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001729 Type *Ty = I->getType();
Eric Christopher08637852010-09-30 22:34:19 +00001730 if (!isTypeLegal(Ty, VT))
1731 return false;
1732
1733 // If we have integer div support we should have selected this automagically.
1734 // In case we have a real miss go ahead and return false and we'll pick
1735 // it up later.
Eric Christopherdccd2c32010-10-11 08:38:55 +00001736 if (Subtarget->hasDivide()) return false;
1737
Eric Christopher08637852010-09-30 22:34:19 +00001738 // Otherwise emit a libcall.
1739 RTLIB::Libcall LC = RTLIB::UNKNOWN_LIBCALL;
Eric Christopher7bdc4de2010-10-11 08:31:54 +00001740 if (VT == MVT::i8)
Chad Rosier7ccb30b2012-02-03 21:07:27 +00001741 LC = isSigned ? RTLIB::SDIV_I8 : RTLIB::UDIV_I8;
Eric Christopher7bdc4de2010-10-11 08:31:54 +00001742 else if (VT == MVT::i16)
Chad Rosier7ccb30b2012-02-03 21:07:27 +00001743 LC = isSigned ? RTLIB::SDIV_I16 : RTLIB::UDIV_I16;
Eric Christopher08637852010-09-30 22:34:19 +00001744 else if (VT == MVT::i32)
Chad Rosier7ccb30b2012-02-03 21:07:27 +00001745 LC = isSigned ? RTLIB::SDIV_I32 : RTLIB::UDIV_I32;
Eric Christopher08637852010-09-30 22:34:19 +00001746 else if (VT == MVT::i64)
Chad Rosier7ccb30b2012-02-03 21:07:27 +00001747 LC = isSigned ? RTLIB::SDIV_I64 : RTLIB::UDIV_I64;
Eric Christopher08637852010-09-30 22:34:19 +00001748 else if (VT == MVT::i128)
Chad Rosier7ccb30b2012-02-03 21:07:27 +00001749 LC = isSigned ? RTLIB::SDIV_I128 : RTLIB::UDIV_I128;
Eric Christopher08637852010-09-30 22:34:19 +00001750 assert(LC != RTLIB::UNKNOWN_LIBCALL && "Unsupported SDIV!");
Eric Christopherdccd2c32010-10-11 08:38:55 +00001751
Eric Christopher08637852010-09-30 22:34:19 +00001752 return ARMEmitLibcall(I, LC);
1753}
1754
Chad Rosier769422f2012-02-03 21:23:45 +00001755bool ARMFastISel::SelectRem(const Instruction *I, bool isSigned) {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001756 MVT VT;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001757 Type *Ty = I->getType();
Eric Christopher6a880d62010-10-11 08:37:26 +00001758 if (!isTypeLegal(Ty, VT))
1759 return false;
1760
1761 RTLIB::Libcall LC = RTLIB::UNKNOWN_LIBCALL;
1762 if (VT == MVT::i8)
Chad Rosier769422f2012-02-03 21:23:45 +00001763 LC = isSigned ? RTLIB::SREM_I8 : RTLIB::UREM_I8;
Eric Christopher6a880d62010-10-11 08:37:26 +00001764 else if (VT == MVT::i16)
Chad Rosier769422f2012-02-03 21:23:45 +00001765 LC = isSigned ? RTLIB::SREM_I16 : RTLIB::UREM_I16;
Eric Christopher6a880d62010-10-11 08:37:26 +00001766 else if (VT == MVT::i32)
Chad Rosier769422f2012-02-03 21:23:45 +00001767 LC = isSigned ? RTLIB::SREM_I32 : RTLIB::UREM_I32;
Eric Christopher6a880d62010-10-11 08:37:26 +00001768 else if (VT == MVT::i64)
Chad Rosier769422f2012-02-03 21:23:45 +00001769 LC = isSigned ? RTLIB::SREM_I64 : RTLIB::UREM_I64;
Eric Christopher6a880d62010-10-11 08:37:26 +00001770 else if (VT == MVT::i128)
Chad Rosier769422f2012-02-03 21:23:45 +00001771 LC = isSigned ? RTLIB::SREM_I128 : RTLIB::UREM_I128;
Eric Christophera1640d92010-10-11 08:40:05 +00001772 assert(LC != RTLIB::UNKNOWN_LIBCALL && "Unsupported SREM!");
Eric Christopher2896df82010-10-15 18:02:07 +00001773
Eric Christopher6a880d62010-10-11 08:37:26 +00001774 return ARMEmitLibcall(I, LC);
1775}
1776
Chad Rosier3901c3e2012-02-06 23:50:07 +00001777bool ARMFastISel::SelectBinaryIntOp(const Instruction *I, unsigned ISDOpcode) {
Chad Rosier3901c3e2012-02-06 23:50:07 +00001778 EVT DestVT = TLI.getValueType(I->getType(), true);
1779
1780 // We can get here in the case when we have a binary operation on a non-legal
1781 // type and the target independent selector doesn't know how to handle it.
1782 if (DestVT != MVT::i16 && DestVT != MVT::i8 && DestVT != MVT::i1)
1783 return false;
Jush Luefc967e2012-06-14 06:08:19 +00001784
Chad Rosier6fde8752012-02-08 02:29:21 +00001785 unsigned Opc;
1786 switch (ISDOpcode) {
1787 default: return false;
1788 case ISD::ADD:
1789 Opc = isThumb2 ? ARM::t2ADDrr : ARM::ADDrr;
1790 break;
1791 case ISD::OR:
1792 Opc = isThumb2 ? ARM::t2ORRrr : ARM::ORRrr;
1793 break;
Chad Rosier743e1992012-02-08 02:45:44 +00001794 case ISD::SUB:
1795 Opc = isThumb2 ? ARM::t2SUBrr : ARM::SUBrr;
1796 break;
Chad Rosier6fde8752012-02-08 02:29:21 +00001797 }
1798
Chad Rosier3901c3e2012-02-06 23:50:07 +00001799 unsigned SrcReg1 = getRegForValue(I->getOperand(0));
1800 if (SrcReg1 == 0) return false;
1801
1802 // TODO: Often the 2nd operand is an immediate, which can be encoded directly
1803 // in the instruction, rather then materializing the value in a register.
1804 unsigned SrcReg2 = getRegForValue(I->getOperand(1));
1805 if (SrcReg2 == 0) return false;
1806
JF Bastiena9a8a122013-05-29 15:45:47 +00001807 unsigned ResultReg = createResultReg(&ARM::GPRnopcRegClass);
Chad Rosier3901c3e2012-02-06 23:50:07 +00001808 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1809 TII.get(Opc), ResultReg)
1810 .addReg(SrcReg1).addReg(SrcReg2));
1811 UpdateValueMap(I, ResultReg);
1812 return true;
1813}
1814
1815bool ARMFastISel::SelectBinaryFPOp(const Instruction *I, unsigned ISDOpcode) {
Chad Rosier316a5aa2012-12-17 19:59:43 +00001816 EVT FPVT = TLI.getValueType(I->getType(), true);
1817 if (!FPVT.isSimple()) return false;
1818 MVT VT = FPVT.getSimpleVT();
Eric Christopherac1a19e2010-09-09 01:06:51 +00001819
Eric Christopherbc39b822010-09-09 00:53:57 +00001820 // We can get here in the case when we want to use NEON for our fp
1821 // operations, but can't figure out how to. Just use the vfp instructions
1822 // if we have them.
1823 // FIXME: It'd be nice to use NEON instructions.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001824 Type *Ty = I->getType();
Eric Christopherbd6bf082010-09-09 01:02:03 +00001825 bool isFloat = (Ty->isDoubleTy() || Ty->isFloatTy());
1826 if (isFloat && !Subtarget->hasVFP2())
1827 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001828
Eric Christopherbc39b822010-09-09 00:53:57 +00001829 unsigned Opc;
Duncan Sandscdfad362010-11-03 12:17:33 +00001830 bool is64bit = VT == MVT::f64 || VT == MVT::i64;
Eric Christopherbc39b822010-09-09 00:53:57 +00001831 switch (ISDOpcode) {
1832 default: return false;
1833 case ISD::FADD:
Eric Christopherbd6bf082010-09-09 01:02:03 +00001834 Opc = is64bit ? ARM::VADDD : ARM::VADDS;
Eric Christopherbc39b822010-09-09 00:53:57 +00001835 break;
1836 case ISD::FSUB:
Eric Christopherbd6bf082010-09-09 01:02:03 +00001837 Opc = is64bit ? ARM::VSUBD : ARM::VSUBS;
Eric Christopherbc39b822010-09-09 00:53:57 +00001838 break;
1839 case ISD::FMUL:
Eric Christopherbd6bf082010-09-09 01:02:03 +00001840 Opc = is64bit ? ARM::VMULD : ARM::VMULS;
Eric Christopherbc39b822010-09-09 00:53:57 +00001841 break;
1842 }
Chad Rosier508a1f42011-11-16 18:39:44 +00001843 unsigned Op1 = getRegForValue(I->getOperand(0));
1844 if (Op1 == 0) return false;
1845
1846 unsigned Op2 = getRegForValue(I->getOperand(1));
1847 if (Op2 == 0) return false;
1848
Chad Rosier316a5aa2012-12-17 19:59:43 +00001849 unsigned ResultReg = createResultReg(TLI.getRegClassFor(VT.SimpleTy));
Eric Christopherbc39b822010-09-09 00:53:57 +00001850 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1851 TII.get(Opc), ResultReg)
1852 .addReg(Op1).addReg(Op2));
Eric Christopherce07b542010-09-09 20:26:31 +00001853 UpdateValueMap(I, ResultReg);
Eric Christopherbc39b822010-09-09 00:53:57 +00001854 return true;
1855}
1856
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001857// Call Handling Code
1858
Jush Luee649832012-07-19 09:49:00 +00001859// This is largely taken directly from CCAssignFnForNode
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001860// TODO: We may not support all of this.
Jush Luee649832012-07-19 09:49:00 +00001861CCAssignFn *ARMFastISel::CCAssignFnForCall(CallingConv::ID CC,
1862 bool Return,
1863 bool isVarArg) {
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001864 switch (CC) {
1865 default:
1866 llvm_unreachable("Unsupported calling convention");
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001867 case CallingConv::Fast:
Jush Lu2ff4e9d2012-08-16 05:15:53 +00001868 if (Subtarget->hasVFP2() && !isVarArg) {
1869 if (!Subtarget->isAAPCS_ABI())
1870 return (Return ? RetFastCC_ARM_APCS : FastCC_ARM_APCS);
1871 // For AAPCS ABI targets, just use VFP variant of the calling convention.
1872 return (Return ? RetCC_ARM_AAPCS_VFP : CC_ARM_AAPCS_VFP);
1873 }
Evan Cheng1f8b40d2010-10-22 18:57:05 +00001874 // Fallthrough
1875 case CallingConv::C:
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001876 // Use target triple & subtarget features to do actual dispatch.
1877 if (Subtarget->isAAPCS_ABI()) {
1878 if (Subtarget->hasVFP2() &&
Jush Luee649832012-07-19 09:49:00 +00001879 TM.Options.FloatABIType == FloatABI::Hard && !isVarArg)
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001880 return (Return ? RetCC_ARM_AAPCS_VFP: CC_ARM_AAPCS_VFP);
1881 else
1882 return (Return ? RetCC_ARM_AAPCS: CC_ARM_AAPCS);
1883 } else
1884 return (Return ? RetCC_ARM_APCS: CC_ARM_APCS);
1885 case CallingConv::ARM_AAPCS_VFP:
Jush Luee649832012-07-19 09:49:00 +00001886 if (!isVarArg)
1887 return (Return ? RetCC_ARM_AAPCS_VFP: CC_ARM_AAPCS_VFP);
1888 // Fall through to soft float variant, variadic functions don't
1889 // use hard floating point ABI.
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001890 case CallingConv::ARM_AAPCS:
1891 return (Return ? RetCC_ARM_AAPCS: CC_ARM_AAPCS);
1892 case CallingConv::ARM_APCS:
1893 return (Return ? RetCC_ARM_APCS: CC_ARM_APCS);
Eric Christophere94ac882012-08-03 00:05:53 +00001894 case CallingConv::GHC:
1895 if (Return)
1896 llvm_unreachable("Can't return in GHC call convention");
1897 else
1898 return CC_ARM_APCS_GHC;
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001899 }
1900}
1901
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001902bool ARMFastISel::ProcessCallArgs(SmallVectorImpl<Value*> &Args,
1903 SmallVectorImpl<unsigned> &ArgRegs,
Duncan Sands1440e8b2010-11-03 11:35:31 +00001904 SmallVectorImpl<MVT> &ArgVTs,
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001905 SmallVectorImpl<ISD::ArgFlagsTy> &ArgFlags,
1906 SmallVectorImpl<unsigned> &RegArgs,
1907 CallingConv::ID CC,
Jush Luee649832012-07-19 09:49:00 +00001908 unsigned &NumBytes,
1909 bool isVarArg) {
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001910 SmallVector<CCValAssign, 16> ArgLocs;
Jush Luee649832012-07-19 09:49:00 +00001911 CCState CCInfo(CC, isVarArg, *FuncInfo.MF, TM, ArgLocs, *Context);
1912 CCInfo.AnalyzeCallOperands(ArgVTs, ArgFlags,
1913 CCAssignFnForCall(CC, false, isVarArg));
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001914
Bill Wendling5aeff312012-03-16 23:11:07 +00001915 // Check that we can handle all of the arguments. If we can't, then bail out
1916 // now before we add code to the MBB.
1917 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
1918 CCValAssign &VA = ArgLocs[i];
1919 MVT ArgVT = ArgVTs[VA.getValNo()];
1920
1921 // We don't handle NEON/vector parameters yet.
1922 if (ArgVT.isVector() || ArgVT.getSizeInBits() > 64)
1923 return false;
1924
1925 // Now copy/store arg to correct locations.
1926 if (VA.isRegLoc() && !VA.needsCustom()) {
1927 continue;
1928 } else if (VA.needsCustom()) {
1929 // TODO: We need custom lowering for vector (v2f64) args.
1930 if (VA.getLocVT() != MVT::f64 ||
1931 // TODO: Only handle register args for now.
1932 !VA.isRegLoc() || !ArgLocs[++i].isRegLoc())
1933 return false;
1934 } else {
1935 switch (static_cast<EVT>(ArgVT).getSimpleVT().SimpleTy) {
1936 default:
1937 return false;
1938 case MVT::i1:
1939 case MVT::i8:
1940 case MVT::i16:
1941 case MVT::i32:
1942 break;
1943 case MVT::f32:
1944 if (!Subtarget->hasVFP2())
1945 return false;
1946 break;
1947 case MVT::f64:
1948 if (!Subtarget->hasVFP2())
1949 return false;
1950 break;
1951 }
1952 }
1953 }
1954
1955 // At the point, we are able to handle the call's arguments in fast isel.
1956
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001957 // Get a count of how many bytes are to be pushed on the stack.
1958 NumBytes = CCInfo.getNextStackOffset();
1959
1960 // Issue CALLSEQ_START
Evan Chengd5b03f22011-06-28 21:14:33 +00001961 unsigned AdjStackDown = TII.getCallFrameSetupOpcode();
Eric Christopherfb0b8922010-10-11 21:20:02 +00001962 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1963 TII.get(AdjStackDown))
1964 .addImm(NumBytes));
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001965
1966 // Process the args.
1967 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
1968 CCValAssign &VA = ArgLocs[i];
1969 unsigned Arg = ArgRegs[VA.getValNo()];
Duncan Sands1440e8b2010-11-03 11:35:31 +00001970 MVT ArgVT = ArgVTs[VA.getValNo()];
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001971
Bill Wendling5aeff312012-03-16 23:11:07 +00001972 assert((!ArgVT.isVector() && ArgVT.getSizeInBits() <= 64) &&
1973 "We don't handle NEON/vector parameters yet.");
Eric Christophera4633f52010-10-23 09:37:17 +00001974
Eric Christopherf9764fa2010-09-30 20:49:44 +00001975 // Handle arg promotion, etc.
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001976 switch (VA.getLocInfo()) {
1977 case CCValAssign::Full: break;
Eric Christopherfa87d662010-10-18 02:17:53 +00001978 case CCValAssign::SExt: {
Chad Rosierb74c8652011-12-02 20:25:18 +00001979 MVT DestVT = VA.getLocVT();
Chad Rosier5793a652012-02-14 22:29:48 +00001980 Arg = ARMEmitIntExt(ArgVT, Arg, DestVT, /*isZExt*/false);
1981 assert (Arg != 0 && "Failed to emit a sext");
Chad Rosierb74c8652011-12-02 20:25:18 +00001982 ArgVT = DestVT;
Eric Christopherfa87d662010-10-18 02:17:53 +00001983 break;
1984 }
Chad Rosier42536af2011-11-05 20:16:15 +00001985 case CCValAssign::AExt:
1986 // Intentional fall-through. Handle AExt and ZExt.
Eric Christopherfa87d662010-10-18 02:17:53 +00001987 case CCValAssign::ZExt: {
Chad Rosierb74c8652011-12-02 20:25:18 +00001988 MVT DestVT = VA.getLocVT();
Chad Rosier5793a652012-02-14 22:29:48 +00001989 Arg = ARMEmitIntExt(ArgVT, Arg, DestVT, /*isZExt*/true);
JF Bastien8fc760c2013-06-07 20:10:37 +00001990 assert (Arg != 0 && "Failed to emit a zext");
Chad Rosierb74c8652011-12-02 20:25:18 +00001991 ArgVT = DestVT;
Eric Christopherfa87d662010-10-18 02:17:53 +00001992 break;
1993 }
1994 case CCValAssign::BCvt: {
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001995 unsigned BC = FastEmit_r(ArgVT, VA.getLocVT(), ISD::BITCAST, Arg,
Duncan Sands1440e8b2010-11-03 11:35:31 +00001996 /*TODO: Kill=*/false);
Eric Christopherfa87d662010-10-18 02:17:53 +00001997 assert(BC != 0 && "Failed to emit a bitcast!");
1998 Arg = BC;
1999 ArgVT = VA.getLocVT();
2000 break;
2001 }
2002 default: llvm_unreachable("Unknown arg promotion!");
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002003 }
2004
2005 // Now copy/store arg to correct locations.
Eric Christopherfb0b8922010-10-11 21:20:02 +00002006 if (VA.isRegLoc() && !VA.needsCustom()) {
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002007 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
Eric Christopherf9764fa2010-09-30 20:49:44 +00002008 VA.getLocReg())
Chad Rosier42536af2011-11-05 20:16:15 +00002009 .addReg(Arg);
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002010 RegArgs.push_back(VA.getLocReg());
Eric Christopher2d8f6fe2010-10-21 00:01:47 +00002011 } else if (VA.needsCustom()) {
2012 // TODO: We need custom lowering for vector (v2f64) args.
Bill Wendling5aeff312012-03-16 23:11:07 +00002013 assert(VA.getLocVT() == MVT::f64 &&
2014 "Custom lowering for v2f64 args not available");
Jim Grosbach6b156392010-10-27 21:39:08 +00002015
Eric Christopher2d8f6fe2010-10-21 00:01:47 +00002016 CCValAssign &NextVA = ArgLocs[++i];
2017
Bill Wendling5aeff312012-03-16 23:11:07 +00002018 assert(VA.isRegLoc() && NextVA.isRegLoc() &&
2019 "We only handle register args!");
Eric Christopher2d8f6fe2010-10-21 00:01:47 +00002020
2021 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2022 TII.get(ARM::VMOVRRD), VA.getLocReg())
2023 .addReg(NextVA.getLocReg(), RegState::Define)
2024 .addReg(Arg));
2025 RegArgs.push_back(VA.getLocReg());
2026 RegArgs.push_back(NextVA.getLocReg());
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002027 } else {
Eric Christopher5b924802010-10-21 20:09:54 +00002028 assert(VA.isMemLoc());
2029 // Need to store on the stack.
Eric Christopher0d581222010-11-19 22:30:02 +00002030 Address Addr;
2031 Addr.BaseType = Address::RegBase;
2032 Addr.Base.Reg = ARM::SP;
2033 Addr.Offset = VA.getLocMemOffset();
Eric Christopher5b924802010-10-21 20:09:54 +00002034
Bill Wendling5aeff312012-03-16 23:11:07 +00002035 bool EmitRet = ARMEmitStore(ArgVT, Arg, Addr); (void)EmitRet;
2036 assert(EmitRet && "Could not emit a store for argument!");
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002037 }
2038 }
Bill Wendling5aeff312012-03-16 23:11:07 +00002039
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002040 return true;
2041}
2042
Duncan Sands1440e8b2010-11-03 11:35:31 +00002043bool ARMFastISel::FinishCall(MVT RetVT, SmallVectorImpl<unsigned> &UsedRegs,
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002044 const Instruction *I, CallingConv::ID CC,
Jush Luee649832012-07-19 09:49:00 +00002045 unsigned &NumBytes, bool isVarArg) {
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002046 // Issue CALLSEQ_END
Evan Chengd5b03f22011-06-28 21:14:33 +00002047 unsigned AdjStackUp = TII.getCallFrameDestroyOpcode();
Eric Christopherfb0b8922010-10-11 21:20:02 +00002048 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2049 TII.get(AdjStackUp))
2050 .addImm(NumBytes).addImm(0));
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002051
2052 // Now the return value.
Duncan Sands1440e8b2010-11-03 11:35:31 +00002053 if (RetVT != MVT::isVoid) {
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002054 SmallVector<CCValAssign, 16> RVLocs;
Jush Luee649832012-07-19 09:49:00 +00002055 CCState CCInfo(CC, isVarArg, *FuncInfo.MF, TM, RVLocs, *Context);
2056 CCInfo.AnalyzeCallResult(RetVT, CCAssignFnForCall(CC, true, isVarArg));
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002057
2058 // Copy all of the result registers out of their specified physreg.
Duncan Sands1440e8b2010-11-03 11:35:31 +00002059 if (RVLocs.size() == 2 && RetVT == MVT::f64) {
Eric Christopher14df8822010-10-01 00:00:11 +00002060 // For this move we copy into two registers and then move into the
2061 // double fp reg we want.
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00002062 MVT DestVT = RVLocs[0].getValVT();
Craig Topper44d23822012-02-22 05:59:10 +00002063 const TargetRegisterClass* DstRC = TLI.getRegClassFor(DestVT);
Eric Christopher14df8822010-10-01 00:00:11 +00002064 unsigned ResultReg = createResultReg(DstRC);
2065 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2066 TII.get(ARM::VMOVDRR), ResultReg)
Eric Christopher3659ac22010-10-20 08:02:24 +00002067 .addReg(RVLocs[0].getLocReg())
2068 .addReg(RVLocs[1].getLocReg()));
Eric Christopherdccd2c32010-10-11 08:38:55 +00002069
Eric Christopher3659ac22010-10-20 08:02:24 +00002070 UsedRegs.push_back(RVLocs[0].getLocReg());
2071 UsedRegs.push_back(RVLocs[1].getLocReg());
Jim Grosbach6b156392010-10-27 21:39:08 +00002072
Eric Christopherdccd2c32010-10-11 08:38:55 +00002073 // Finally update the result.
Eric Christopher14df8822010-10-01 00:00:11 +00002074 UpdateValueMap(I, ResultReg);
Chad Rosier2a2e9d52012-05-11 18:51:55 +00002075 } else {
2076 assert(RVLocs.size() == 1 &&"Can't handle non-double multi-reg retvals!");
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00002077 MVT CopyVT = RVLocs[0].getValVT();
Chad Rosier0eff39f2011-11-08 00:03:32 +00002078
2079 // Special handling for extended integers.
2080 if (RetVT == MVT::i1 || RetVT == MVT::i8 || RetVT == MVT::i16)
2081 CopyVT = MVT::i32;
2082
Craig Topper44d23822012-02-22 05:59:10 +00002083 const TargetRegisterClass* DstRC = TLI.getRegClassFor(CopyVT);
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002084
Eric Christopher14df8822010-10-01 00:00:11 +00002085 unsigned ResultReg = createResultReg(DstRC);
2086 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
2087 ResultReg).addReg(RVLocs[0].getLocReg());
2088 UsedRegs.push_back(RVLocs[0].getLocReg());
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002089
Eric Christopherdccd2c32010-10-11 08:38:55 +00002090 // Finally update the result.
Eric Christopher14df8822010-10-01 00:00:11 +00002091 UpdateValueMap(I, ResultReg);
2092 }
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002093 }
2094
Eric Christopherdccd2c32010-10-11 08:38:55 +00002095 return true;
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002096}
2097
Eric Christopher4f512ef2010-10-22 01:28:00 +00002098bool ARMFastISel::SelectRet(const Instruction *I) {
2099 const ReturnInst *Ret = cast<ReturnInst>(I);
2100 const Function &F = *I->getParent()->getParent();
Jim Grosbach6b156392010-10-27 21:39:08 +00002101
Eric Christopher4f512ef2010-10-22 01:28:00 +00002102 if (!FuncInfo.CanLowerReturn)
2103 return false;
Jim Grosbach6b156392010-10-27 21:39:08 +00002104
Jakob Stoklund Olesenfc743272013-02-05 18:08:40 +00002105 // Build a list of return value registers.
2106 SmallVector<unsigned, 4> RetRegs;
2107
Eric Christopher4f512ef2010-10-22 01:28:00 +00002108 CallingConv::ID CC = F.getCallingConv();
2109 if (Ret->getNumOperands() > 0) {
2110 SmallVector<ISD::OutputArg, 4> Outs;
Bill Wendling8b62abd2012-12-30 13:01:51 +00002111 GetReturnInfo(F.getReturnType(), F.getAttributes(), Outs, TLI);
Eric Christopher4f512ef2010-10-22 01:28:00 +00002112
2113 // Analyze operands of the call, assigning locations to each operand.
2114 SmallVector<CCValAssign, 16> ValLocs;
Jim Grosbachb04546f2011-09-13 20:30:37 +00002115 CCState CCInfo(CC, F.isVarArg(), *FuncInfo.MF, TM, ValLocs,I->getContext());
Jush Luee649832012-07-19 09:49:00 +00002116 CCInfo.AnalyzeReturn(Outs, CCAssignFnForCall(CC, true /* is Ret */,
2117 F.isVarArg()));
Eric Christopher4f512ef2010-10-22 01:28:00 +00002118
2119 const Value *RV = Ret->getOperand(0);
2120 unsigned Reg = getRegForValue(RV);
2121 if (Reg == 0)
2122 return false;
2123
2124 // Only handle a single return value for now.
2125 if (ValLocs.size() != 1)
2126 return false;
2127
2128 CCValAssign &VA = ValLocs[0];
Jim Grosbach6b156392010-10-27 21:39:08 +00002129
Eric Christopher4f512ef2010-10-22 01:28:00 +00002130 // Don't bother handling odd stuff for now.
2131 if (VA.getLocInfo() != CCValAssign::Full)
2132 return false;
2133 // Only handle register returns for now.
2134 if (!VA.isRegLoc())
2135 return false;
Chad Rosierf470cbb2011-11-04 00:50:21 +00002136
2137 unsigned SrcReg = Reg + VA.getValNo();
Chad Rosier316a5aa2012-12-17 19:59:43 +00002138 EVT RVEVT = TLI.getValueType(RV->getType());
2139 if (!RVEVT.isSimple()) return false;
2140 MVT RVVT = RVEVT.getSimpleVT();
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00002141 MVT DestVT = VA.getValVT();
Chad Rosierf470cbb2011-11-04 00:50:21 +00002142 // Special handling for extended integers.
2143 if (RVVT != DestVT) {
2144 if (RVVT != MVT::i1 && RVVT != MVT::i8 && RVVT != MVT::i16)
2145 return false;
2146
Chad Rosierf470cbb2011-11-04 00:50:21 +00002147 assert(DestVT == MVT::i32 && "ARM should always ext to i32");
2148
Chad Rosierb8703fe2012-02-17 01:21:28 +00002149 // Perform extension if flagged as either zext or sext. Otherwise, do
2150 // nothing.
2151 if (Outs[0].Flags.isZExt() || Outs[0].Flags.isSExt()) {
2152 SrcReg = ARMEmitIntExt(RVVT, SrcReg, DestVT, Outs[0].Flags.isZExt());
2153 if (SrcReg == 0) return false;
2154 }
Chad Rosierf470cbb2011-11-04 00:50:21 +00002155 }
Jim Grosbach6b156392010-10-27 21:39:08 +00002156
Eric Christopher4f512ef2010-10-22 01:28:00 +00002157 // Make the copy.
Eric Christopher4f512ef2010-10-22 01:28:00 +00002158 unsigned DstReg = VA.getLocReg();
2159 const TargetRegisterClass* SrcRC = MRI.getRegClass(SrcReg);
2160 // Avoid a cross-class copy. This is very unlikely.
2161 if (!SrcRC->contains(DstReg))
2162 return false;
2163 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
2164 DstReg).addReg(SrcReg);
2165
Jakob Stoklund Olesenfc743272013-02-05 18:08:40 +00002166 // Add register to return instruction.
2167 RetRegs.push_back(VA.getLocReg());
Eric Christopher4f512ef2010-10-22 01:28:00 +00002168 }
Jim Grosbach6b156392010-10-27 21:39:08 +00002169
Chad Rosier66dc8ca2011-11-08 21:12:00 +00002170 unsigned RetOpc = isThumb2 ? ARM::tBX_RET : ARM::BX_RET;
Jakob Stoklund Olesenfc743272013-02-05 18:08:40 +00002171 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2172 TII.get(RetOpc));
2173 AddOptionalDefs(MIB);
2174 for (unsigned i = 0, e = RetRegs.size(); i != e; ++i)
2175 MIB.addReg(RetRegs[i], RegState::Implicit);
Eric Christopher4f512ef2010-10-22 01:28:00 +00002176 return true;
2177}
2178
Chad Rosier49d6fc02012-06-12 19:25:13 +00002179unsigned ARMFastISel::ARMSelectCallOp(bool UseReg) {
2180 if (UseReg)
2181 return isThumb2 ? ARM::tBLXr : ARM::BLX;
2182 else
2183 return isThumb2 ? ARM::tBL : ARM::BL;
2184}
2185
2186unsigned ARMFastISel::getLibcallReg(const Twine &Name) {
2187 GlobalValue *GV = new GlobalVariable(Type::getInt32Ty(*Context), false,
2188 GlobalValue::ExternalLinkage, 0, Name);
Chad Rosier316a5aa2012-12-17 19:59:43 +00002189 EVT LCREVT = TLI.getValueType(GV->getType());
2190 if (!LCREVT.isSimple()) return 0;
2191 return ARMMaterializeGV(GV, LCREVT.getSimpleVT());
Eric Christopher872f4a22011-02-22 01:37:10 +00002192}
2193
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002194// A quick function that will emit a call for a named libcall in F with the
2195// vector of passed arguments for the Instruction in I. We can assume that we
Eric Christopherdccd2c32010-10-11 08:38:55 +00002196// can emit a call for any libcall we can produce. This is an abridged version
2197// of the full call infrastructure since we won't need to worry about things
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002198// like computed function pointers or strange arguments at call sites.
2199// TODO: Try to unify this and the normal call bits for ARM, then try to unify
2200// with X86.
Eric Christopher7ed8ec92010-09-28 01:21:42 +00002201bool ARMFastISel::ARMEmitLibcall(const Instruction *I, RTLIB::Libcall Call) {
2202 CallingConv::ID CC = TLI.getLibcallCallingConv(Call);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002203
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002204 // Handle *simple* calls for now.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002205 Type *RetTy = I->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00002206 MVT RetVT;
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002207 if (RetTy->isVoidTy())
2208 RetVT = MVT::isVoid;
2209 else if (!isTypeLegal(RetTy, RetVT))
2210 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002211
Chad Rosier2a2e9d52012-05-11 18:51:55 +00002212 // Can't handle non-double multi-reg retvals.
Jush Luefc967e2012-06-14 06:08:19 +00002213 if (RetVT != MVT::isVoid && RetVT != MVT::i32) {
Chad Rosier2a2e9d52012-05-11 18:51:55 +00002214 SmallVector<CCValAssign, 16> RVLocs;
2215 CCState CCInfo(CC, false, *FuncInfo.MF, TM, RVLocs, *Context);
Jush Luee649832012-07-19 09:49:00 +00002216 CCInfo.AnalyzeCallResult(RetVT, CCAssignFnForCall(CC, true, false));
Chad Rosier2a2e9d52012-05-11 18:51:55 +00002217 if (RVLocs.size() >= 2 && RetVT != MVT::f64)
2218 return false;
2219 }
2220
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002221 // Set up the argument vectors.
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002222 SmallVector<Value*, 8> Args;
2223 SmallVector<unsigned, 8> ArgRegs;
Duncan Sands1440e8b2010-11-03 11:35:31 +00002224 SmallVector<MVT, 8> ArgVTs;
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002225 SmallVector<ISD::ArgFlagsTy, 8> ArgFlags;
2226 Args.reserve(I->getNumOperands());
2227 ArgRegs.reserve(I->getNumOperands());
2228 ArgVTs.reserve(I->getNumOperands());
2229 ArgFlags.reserve(I->getNumOperands());
Eric Christopher7ed8ec92010-09-28 01:21:42 +00002230 for (unsigned i = 0; i < I->getNumOperands(); ++i) {
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002231 Value *Op = I->getOperand(i);
2232 unsigned Arg = getRegForValue(Op);
2233 if (Arg == 0) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002234
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002235 Type *ArgTy = Op->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00002236 MVT ArgVT;
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002237 if (!isTypeLegal(ArgTy, ArgVT)) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002238
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002239 ISD::ArgFlagsTy Flags;
2240 unsigned OriginalAlignment = TD.getABITypeAlignment(ArgTy);
2241 Flags.setOrigAlign(OriginalAlignment);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002242
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002243 Args.push_back(Op);
2244 ArgRegs.push_back(Arg);
2245 ArgVTs.push_back(ArgVT);
2246 ArgFlags.push_back(Flags);
2247 }
Eric Christopherdccd2c32010-10-11 08:38:55 +00002248
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002249 // Handle the arguments now that we've gotten them.
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002250 SmallVector<unsigned, 4> RegArgs;
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002251 unsigned NumBytes;
Jush Luee649832012-07-19 09:49:00 +00002252 if (!ProcessCallArgs(Args, ArgRegs, ArgVTs, ArgFlags,
2253 RegArgs, CC, NumBytes, false))
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002254 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002255
Chad Rosier49d6fc02012-06-12 19:25:13 +00002256 unsigned CalleeReg = 0;
2257 if (EnableARMLongCalls) {
2258 CalleeReg = getLibcallReg(TLI.getLibcallName(Call));
2259 if (CalleeReg == 0) return false;
2260 }
Eric Christopherdccd2c32010-10-11 08:38:55 +00002261
Chad Rosier49d6fc02012-06-12 19:25:13 +00002262 // Issue the call.
2263 unsigned CallOpc = ARMSelectCallOp(EnableARMLongCalls);
2264 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
2265 DL, TII.get(CallOpc));
Jakob Stoklund Olesen0745b642012-08-24 20:52:46 +00002266 // BL / BLX don't take a predicate, but tBL / tBLX do.
2267 if (isThumb2)
Chad Rosier49d6fc02012-06-12 19:25:13 +00002268 AddDefaultPred(MIB);
Jakob Stoklund Olesen0745b642012-08-24 20:52:46 +00002269 if (EnableARMLongCalls)
2270 MIB.addReg(CalleeReg);
2271 else
2272 MIB.addExternalSymbol(TLI.getLibcallName(Call));
Chad Rosier49d6fc02012-06-12 19:25:13 +00002273
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002274 // Add implicit physical register uses to the call.
2275 for (unsigned i = 0, e = RegArgs.size(); i != e; ++i)
Jakob Stoklund Olesen0745b642012-08-24 20:52:46 +00002276 MIB.addReg(RegArgs[i], RegState::Implicit);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002277
Jakob Stoklund Olesenc54f6342012-02-24 01:19:29 +00002278 // Add a register mask with the call-preserved registers.
2279 // Proper defs for return values will be added by setPhysRegsDeadExcept().
2280 MIB.addRegMask(TRI.getCallPreservedMask(CC));
2281
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002282 // Finish off the call including any return values.
Eric Christopherdccd2c32010-10-11 08:38:55 +00002283 SmallVector<unsigned, 4> UsedRegs;
Jush Luee649832012-07-19 09:49:00 +00002284 if (!FinishCall(RetVT, UsedRegs, I, CC, NumBytes, false)) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002285
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002286 // Set all unused physreg defs as dead.
2287 static_cast<MachineInstr *>(MIB)->setPhysRegsDeadExcept(UsedRegs, TRI);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002288
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002289 return true;
2290}
2291
Chad Rosier11add262011-11-11 23:31:03 +00002292bool ARMFastISel::SelectCall(const Instruction *I,
2293 const char *IntrMemName = 0) {
Eric Christopherf9764fa2010-09-30 20:49:44 +00002294 const CallInst *CI = cast<CallInst>(I);
2295 const Value *Callee = CI->getCalledValue();
2296
Chad Rosier11add262011-11-11 23:31:03 +00002297 // Can't handle inline asm.
2298 if (isa<InlineAsm>(Callee)) return false;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002299
Chad Rosier425e9512012-12-11 00:18:02 +00002300 // Allow SelectionDAG isel to handle tail calls.
2301 if (CI->isTailCall()) return false;
2302
Eric Christopherf9764fa2010-09-30 20:49:44 +00002303 // Check the calling convention.
2304 ImmutableCallSite CS(CI);
2305 CallingConv::ID CC = CS.getCallingConv();
Eric Christopher4cf34c62010-10-18 06:49:12 +00002306
Eric Christopherf9764fa2010-09-30 20:49:44 +00002307 // TODO: Avoid some calling conventions?
Eric Christopherdccd2c32010-10-11 08:38:55 +00002308
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002309 PointerType *PT = cast<PointerType>(CS.getCalledValue()->getType());
2310 FunctionType *FTy = cast<FunctionType>(PT->getElementType());
Jush Luee649832012-07-19 09:49:00 +00002311 bool isVarArg = FTy->isVarArg();
Eric Christopherdccd2c32010-10-11 08:38:55 +00002312
Eric Christopherf9764fa2010-09-30 20:49:44 +00002313 // Handle *simple* calls for now.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002314 Type *RetTy = I->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00002315 MVT RetVT;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002316 if (RetTy->isVoidTy())
2317 RetVT = MVT::isVoid;
Chad Rosier0eff39f2011-11-08 00:03:32 +00002318 else if (!isTypeLegal(RetTy, RetVT) && RetVT != MVT::i16 &&
2319 RetVT != MVT::i8 && RetVT != MVT::i1)
Eric Christopherf9764fa2010-09-30 20:49:44 +00002320 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002321
Chad Rosier2a2e9d52012-05-11 18:51:55 +00002322 // Can't handle non-double multi-reg retvals.
2323 if (RetVT != MVT::isVoid && RetVT != MVT::i1 && RetVT != MVT::i8 &&
2324 RetVT != MVT::i16 && RetVT != MVT::i32) {
2325 SmallVector<CCValAssign, 16> RVLocs;
Jush Luee649832012-07-19 09:49:00 +00002326 CCState CCInfo(CC, isVarArg, *FuncInfo.MF, TM, RVLocs, *Context);
2327 CCInfo.AnalyzeCallResult(RetVT, CCAssignFnForCall(CC, true, isVarArg));
Chad Rosier2a2e9d52012-05-11 18:51:55 +00002328 if (RVLocs.size() >= 2 && RetVT != MVT::f64)
2329 return false;
2330 }
2331
Eric Christopherf9764fa2010-09-30 20:49:44 +00002332 // Set up the argument vectors.
2333 SmallVector<Value*, 8> Args;
2334 SmallVector<unsigned, 8> ArgRegs;
Duncan Sands1440e8b2010-11-03 11:35:31 +00002335 SmallVector<MVT, 8> ArgVTs;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002336 SmallVector<ISD::ArgFlagsTy, 8> ArgFlags;
Chad Rosier92fd0172012-02-15 00:23:55 +00002337 unsigned arg_size = CS.arg_size();
2338 Args.reserve(arg_size);
2339 ArgRegs.reserve(arg_size);
2340 ArgVTs.reserve(arg_size);
2341 ArgFlags.reserve(arg_size);
Eric Christopherf9764fa2010-09-30 20:49:44 +00002342 for (ImmutableCallSite::arg_iterator i = CS.arg_begin(), e = CS.arg_end();
2343 i != e; ++i) {
Chad Rosier11add262011-11-11 23:31:03 +00002344 // If we're lowering a memory intrinsic instead of a regular call, skip the
2345 // last two arguments, which shouldn't be passed to the underlying function.
2346 if (IntrMemName && e-i <= 2)
2347 break;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002348
Eric Christopherf9764fa2010-09-30 20:49:44 +00002349 ISD::ArgFlagsTy Flags;
2350 unsigned AttrInd = i - CS.arg_begin() + 1;
Bill Wendling034b94b2012-12-19 07:18:57 +00002351 if (CS.paramHasAttr(AttrInd, Attribute::SExt))
Eric Christopherf9764fa2010-09-30 20:49:44 +00002352 Flags.setSExt();
Bill Wendling034b94b2012-12-19 07:18:57 +00002353 if (CS.paramHasAttr(AttrInd, Attribute::ZExt))
Eric Christopherf9764fa2010-09-30 20:49:44 +00002354 Flags.setZExt();
2355
Chad Rosier8e4a2e42011-11-04 00:58:10 +00002356 // FIXME: Only handle *easy* calls for now.
Bill Wendling034b94b2012-12-19 07:18:57 +00002357 if (CS.paramHasAttr(AttrInd, Attribute::InReg) ||
2358 CS.paramHasAttr(AttrInd, Attribute::StructRet) ||
2359 CS.paramHasAttr(AttrInd, Attribute::Nest) ||
2360 CS.paramHasAttr(AttrInd, Attribute::ByVal))
Eric Christopherf9764fa2010-09-30 20:49:44 +00002361 return false;
2362
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002363 Type *ArgTy = (*i)->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00002364 MVT ArgVT;
Chad Rosier42536af2011-11-05 20:16:15 +00002365 if (!isTypeLegal(ArgTy, ArgVT) && ArgVT != MVT::i16 && ArgVT != MVT::i8 &&
2366 ArgVT != MVT::i1)
Eric Christopherf9764fa2010-09-30 20:49:44 +00002367 return false;
Chad Rosier424fe0e2011-11-18 01:17:34 +00002368
2369 unsigned Arg = getRegForValue(*i);
2370 if (Arg == 0)
2371 return false;
2372
Eric Christopherf9764fa2010-09-30 20:49:44 +00002373 unsigned OriginalAlignment = TD.getABITypeAlignment(ArgTy);
2374 Flags.setOrigAlign(OriginalAlignment);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002375
Eric Christopherf9764fa2010-09-30 20:49:44 +00002376 Args.push_back(*i);
2377 ArgRegs.push_back(Arg);
2378 ArgVTs.push_back(ArgVT);
2379 ArgFlags.push_back(Flags);
2380 }
Eric Christopherdccd2c32010-10-11 08:38:55 +00002381
Eric Christopherf9764fa2010-09-30 20:49:44 +00002382 // Handle the arguments now that we've gotten them.
2383 SmallVector<unsigned, 4> RegArgs;
2384 unsigned NumBytes;
Jush Luee649832012-07-19 09:49:00 +00002385 if (!ProcessCallArgs(Args, ArgRegs, ArgVTs, ArgFlags,
2386 RegArgs, CC, NumBytes, isVarArg))
Eric Christopherf9764fa2010-09-30 20:49:44 +00002387 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002388
Chad Rosier49d6fc02012-06-12 19:25:13 +00002389 bool UseReg = false;
Chad Rosier1c8fccb2012-05-23 18:38:57 +00002390 const GlobalValue *GV = dyn_cast<GlobalValue>(Callee);
Chad Rosier49d6fc02012-06-12 19:25:13 +00002391 if (!GV || EnableARMLongCalls) UseReg = true;
Chad Rosier1c8fccb2012-05-23 18:38:57 +00002392
Chad Rosier49d6fc02012-06-12 19:25:13 +00002393 unsigned CalleeReg = 0;
2394 if (UseReg) {
2395 if (IntrMemName)
2396 CalleeReg = getLibcallReg(IntrMemName);
2397 else
2398 CalleeReg = getRegForValue(Callee);
2399
Chad Rosier1c8fccb2012-05-23 18:38:57 +00002400 if (CalleeReg == 0) return false;
2401 }
2402
Chad Rosier49d6fc02012-06-12 19:25:13 +00002403 // Issue the call.
2404 unsigned CallOpc = ARMSelectCallOp(UseReg);
2405 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
2406 DL, TII.get(CallOpc));
Chad Rosier49d6fc02012-06-12 19:25:13 +00002407
Jakob Stoklund Olesen0745b642012-08-24 20:52:46 +00002408 // ARM calls don't take a predicate, but tBL / tBLX do.
2409 if(isThumb2)
Chad Rosier49d6fc02012-06-12 19:25:13 +00002410 AddDefaultPred(MIB);
Jakob Stoklund Olesen0745b642012-08-24 20:52:46 +00002411 if (UseReg)
2412 MIB.addReg(CalleeReg);
2413 else if (!IntrMemName)
2414 MIB.addGlobalAddress(GV, 0, 0);
2415 else
2416 MIB.addExternalSymbol(IntrMemName, 0);
Jush Luefc967e2012-06-14 06:08:19 +00002417
Eric Christopherf9764fa2010-09-30 20:49:44 +00002418 // Add implicit physical register uses to the call.
2419 for (unsigned i = 0, e = RegArgs.size(); i != e; ++i)
Jakob Stoklund Olesen0745b642012-08-24 20:52:46 +00002420 MIB.addReg(RegArgs[i], RegState::Implicit);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002421
Jakob Stoklund Olesenc54f6342012-02-24 01:19:29 +00002422 // Add a register mask with the call-preserved registers.
2423 // Proper defs for return values will be added by setPhysRegsDeadExcept().
2424 MIB.addRegMask(TRI.getCallPreservedMask(CC));
2425
Eric Christopherf9764fa2010-09-30 20:49:44 +00002426 // Finish off the call including any return values.
Eric Christopherdccd2c32010-10-11 08:38:55 +00002427 SmallVector<unsigned, 4> UsedRegs;
Jush Luee649832012-07-19 09:49:00 +00002428 if (!FinishCall(RetVT, UsedRegs, I, CC, NumBytes, isVarArg))
2429 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002430
Eric Christopherf9764fa2010-09-30 20:49:44 +00002431 // Set all unused physreg defs as dead.
2432 static_cast<MachineInstr *>(MIB)->setPhysRegsDeadExcept(UsedRegs, TRI);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002433
Eric Christopherf9764fa2010-09-30 20:49:44 +00002434 return true;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002435}
2436
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002437bool ARMFastISel::ARMIsMemCpySmall(uint64_t Len) {
Chad Rosier909cb4f2011-11-14 22:46:17 +00002438 return Len <= 16;
2439}
2440
Jim Grosbachd4f020a2012-04-06 23:43:50 +00002441bool ARMFastISel::ARMTryEmitSmallMemCpy(Address Dest, Address Src,
Chad Rosierc9758b12012-12-06 01:34:31 +00002442 uint64_t Len, unsigned Alignment) {
Chad Rosier909cb4f2011-11-14 22:46:17 +00002443 // Make sure we don't bloat code by inlining very large memcpy's.
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002444 if (!ARMIsMemCpySmall(Len))
Chad Rosier909cb4f2011-11-14 22:46:17 +00002445 return false;
2446
Chad Rosier909cb4f2011-11-14 22:46:17 +00002447 while (Len) {
2448 MVT VT;
Chad Rosierc9758b12012-12-06 01:34:31 +00002449 if (!Alignment || Alignment >= 4) {
2450 if (Len >= 4)
2451 VT = MVT::i32;
2452 else if (Len >= 2)
2453 VT = MVT::i16;
2454 else {
2455 assert (Len == 1 && "Expected a length of 1!");
2456 VT = MVT::i8;
2457 }
2458 } else {
2459 // Bound based on alignment.
2460 if (Len >= 2 && Alignment == 2)
2461 VT = MVT::i16;
2462 else {
Chad Rosierc9758b12012-12-06 01:34:31 +00002463 VT = MVT::i8;
2464 }
Chad Rosier909cb4f2011-11-14 22:46:17 +00002465 }
2466
2467 bool RV;
2468 unsigned ResultReg;
2469 RV = ARMEmitLoad(VT, ResultReg, Src);
Eric Christopherfae699a2012-01-11 20:55:27 +00002470 assert (RV == true && "Should be able to handle this load.");
Chad Rosier909cb4f2011-11-14 22:46:17 +00002471 RV = ARMEmitStore(VT, ResultReg, Dest);
Eric Christopherfae699a2012-01-11 20:55:27 +00002472 assert (RV == true && "Should be able to handle this store.");
Duncan Sands5b8a1db2012-02-05 14:20:11 +00002473 (void)RV;
Chad Rosier909cb4f2011-11-14 22:46:17 +00002474
2475 unsigned Size = VT.getSizeInBits()/8;
2476 Len -= Size;
2477 Dest.Offset += Size;
2478 Src.Offset += Size;
2479 }
2480
2481 return true;
2482}
2483
Chad Rosier11add262011-11-11 23:31:03 +00002484bool ARMFastISel::SelectIntrinsicCall(const IntrinsicInst &I) {
2485 // FIXME: Handle more intrinsics.
2486 switch (I.getIntrinsicID()) {
2487 default: return false;
Chad Rosierada759d2012-05-30 17:23:22 +00002488 case Intrinsic::frameaddress: {
2489 MachineFrameInfo *MFI = FuncInfo.MF->getFrameInfo();
2490 MFI->setFrameAddressIsTaken(true);
2491
2492 unsigned LdrOpc;
2493 const TargetRegisterClass *RC;
2494 if (isThumb2) {
2495 LdrOpc = ARM::t2LDRi12;
2496 RC = (const TargetRegisterClass*)&ARM::tGPRRegClass;
2497 } else {
2498 LdrOpc = ARM::LDRi12;
2499 RC = (const TargetRegisterClass*)&ARM::GPRRegClass;
2500 }
2501
2502 const ARMBaseRegisterInfo *RegInfo =
2503 static_cast<const ARMBaseRegisterInfo*>(TM.getRegisterInfo());
2504 unsigned FramePtr = RegInfo->getFrameRegister(*(FuncInfo.MF));
2505 unsigned SrcReg = FramePtr;
2506
2507 // Recursively load frame address
2508 // ldr r0 [fp]
2509 // ldr r0 [r0]
2510 // ldr r0 [r0]
2511 // ...
2512 unsigned DestReg;
2513 unsigned Depth = cast<ConstantInt>(I.getOperand(0))->getZExtValue();
2514 while (Depth--) {
2515 DestReg = createResultReg(RC);
2516 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2517 TII.get(LdrOpc), DestReg)
2518 .addReg(SrcReg).addImm(0));
2519 SrcReg = DestReg;
2520 }
Chad Rosierbbff4ee2012-06-01 21:12:31 +00002521 UpdateValueMap(&I, SrcReg);
Chad Rosierada759d2012-05-30 17:23:22 +00002522 return true;
2523 }
Chad Rosier11add262011-11-11 23:31:03 +00002524 case Intrinsic::memcpy:
2525 case Intrinsic::memmove: {
Chad Rosier11add262011-11-11 23:31:03 +00002526 const MemTransferInst &MTI = cast<MemTransferInst>(I);
2527 // Don't handle volatile.
2528 if (MTI.isVolatile())
2529 return false;
Chad Rosier909cb4f2011-11-14 22:46:17 +00002530
2531 // Disable inlining for memmove before calls to ComputeAddress. Otherwise,
2532 // we would emit dead code because we don't currently handle memmoves.
2533 bool isMemCpy = (I.getIntrinsicID() == Intrinsic::memcpy);
2534 if (isa<ConstantInt>(MTI.getLength()) && isMemCpy) {
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002535 // Small memcpy's are common enough that we want to do them without a call
2536 // if possible.
Chad Rosier909cb4f2011-11-14 22:46:17 +00002537 uint64_t Len = cast<ConstantInt>(MTI.getLength())->getZExtValue();
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002538 if (ARMIsMemCpySmall(Len)) {
Chad Rosier909cb4f2011-11-14 22:46:17 +00002539 Address Dest, Src;
2540 if (!ARMComputeAddress(MTI.getRawDest(), Dest) ||
2541 !ARMComputeAddress(MTI.getRawSource(), Src))
2542 return false;
Chad Rosierc9758b12012-12-06 01:34:31 +00002543 unsigned Alignment = MTI.getAlignment();
2544 if (ARMTryEmitSmallMemCpy(Dest, Src, Len, Alignment))
Chad Rosier909cb4f2011-11-14 22:46:17 +00002545 return true;
2546 }
2547 }
Jush Luefc967e2012-06-14 06:08:19 +00002548
Chad Rosier11add262011-11-11 23:31:03 +00002549 if (!MTI.getLength()->getType()->isIntegerTy(32))
2550 return false;
Jush Luefc967e2012-06-14 06:08:19 +00002551
Chad Rosier11add262011-11-11 23:31:03 +00002552 if (MTI.getSourceAddressSpace() > 255 || MTI.getDestAddressSpace() > 255)
2553 return false;
2554
2555 const char *IntrMemName = isa<MemCpyInst>(I) ? "memcpy" : "memmove";
2556 return SelectCall(&I, IntrMemName);
2557 }
2558 case Intrinsic::memset: {
2559 const MemSetInst &MSI = cast<MemSetInst>(I);
2560 // Don't handle volatile.
2561 if (MSI.isVolatile())
2562 return false;
Jush Luefc967e2012-06-14 06:08:19 +00002563
Chad Rosier11add262011-11-11 23:31:03 +00002564 if (!MSI.getLength()->getType()->isIntegerTy(32))
2565 return false;
Jush Luefc967e2012-06-14 06:08:19 +00002566
Chad Rosier11add262011-11-11 23:31:03 +00002567 if (MSI.getDestAddressSpace() > 255)
2568 return false;
Jush Luefc967e2012-06-14 06:08:19 +00002569
Chad Rosier11add262011-11-11 23:31:03 +00002570 return SelectCall(&I, "memset");
2571 }
Chad Rosier226ddf52012-05-11 21:33:49 +00002572 case Intrinsic::trap: {
Eli Bendersky0f156af2013-01-30 16:30:19 +00002573 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(
2574 Subtarget->useNaClTrap() ? ARM::TRAPNaCl : ARM::TRAP));
Chad Rosier226ddf52012-05-11 21:33:49 +00002575 return true;
2576 }
Chad Rosier11add262011-11-11 23:31:03 +00002577 }
Chad Rosier11add262011-11-11 23:31:03 +00002578}
2579
Chad Rosier0d7b2312011-11-02 00:18:48 +00002580bool ARMFastISel::SelectTrunc(const Instruction *I) {
Jush Luefc967e2012-06-14 06:08:19 +00002581 // The high bits for a type smaller than the register size are assumed to be
Chad Rosier0d7b2312011-11-02 00:18:48 +00002582 // undefined.
2583 Value *Op = I->getOperand(0);
2584
2585 EVT SrcVT, DestVT;
2586 SrcVT = TLI.getValueType(Op->getType(), true);
2587 DestVT = TLI.getValueType(I->getType(), true);
2588
2589 if (SrcVT != MVT::i32 && SrcVT != MVT::i16 && SrcVT != MVT::i8)
2590 return false;
2591 if (DestVT != MVT::i16 && DestVT != MVT::i8 && DestVT != MVT::i1)
2592 return false;
2593
2594 unsigned SrcReg = getRegForValue(Op);
2595 if (!SrcReg) return false;
2596
2597 // Because the high bits are undefined, a truncate doesn't generate
2598 // any code.
2599 UpdateValueMap(I, SrcReg);
2600 return true;
2601}
2602
Chad Rosier316a5aa2012-12-17 19:59:43 +00002603unsigned ARMFastISel::ARMEmitIntExt(MVT SrcVT, unsigned SrcReg, MVT DestVT,
Chad Rosier87633022011-11-02 17:20:24 +00002604 bool isZExt) {
Eli Friedman76927d732011-05-25 23:49:02 +00002605 if (DestVT != MVT::i32 && DestVT != MVT::i16 && DestVT != MVT::i8)
Chad Rosier87633022011-11-02 17:20:24 +00002606 return 0;
JF Bastien8fc760c2013-06-07 20:10:37 +00002607 if (SrcVT != MVT::i16 && SrcVT != MVT::i8 && SrcVT != MVT::i1)
Chad Rosier87633022011-11-02 17:20:24 +00002608 return 0;
JF Bastien8fc760c2013-06-07 20:10:37 +00002609
2610 // Table of which combinations can be emitted as a single instruction,
2611 // and which will require two.
2612 static const uint8_t isSingleInstrTbl[3][2][2][2] = {
2613 // ARM Thumb
2614 // !hasV6Ops hasV6Ops !hasV6Ops hasV6Ops
2615 // ext: s z s z s z s z
2616 /* 1 */ { { { 0, 1 }, { 0, 1 } }, { { 0, 0 }, { 0, 1 } } },
2617 /* 8 */ { { { 0, 1 }, { 1, 1 } }, { { 0, 0 }, { 1, 1 } } },
2618 /* 16 */ { { { 0, 0 }, { 1, 1 } }, { { 0, 0 }, { 1, 1 } } }
2619 };
2620
2621 // Target registers for:
2622 // - For ARM can never be PC.
2623 // - For 16-bit Thumb are restricted to lower 8 registers.
2624 // - For 32-bit Thumb are restricted to non-SP and non-PC.
2625 static const TargetRegisterClass *RCTbl[2][2] = {
2626 // Instructions: Two Single
2627 /* ARM */ { &ARM::GPRnopcRegClass, &ARM::GPRnopcRegClass },
2628 /* Thumb */ { &ARM::tGPRRegClass, &ARM::rGPRRegClass }
2629 };
2630
2631 // Table governing the instruction(s) to be emitted.
2632 static const struct {
2633 // First entry for each of the following is sext, second zext.
2634 uint16_t Opc[2];
2635 uint8_t Imm[2]; // All instructions have either a shift or a mask.
2636 uint8_t hasS[2]; // Some instructions have an S bit, always set it to 0.
2637 } OpcTbl[2][2][3] = {
2638 { // Two instructions (first is left shift, second is in this table).
2639 { // ARM
2640 /* 1 */ { { ARM::ASRi, ARM::LSRi }, { 31, 31 }, { 1, 1 } },
2641 /* 8 */ { { ARM::ASRi, ARM::LSRi }, { 24, 24 }, { 1, 1 } },
2642 /* 16 */ { { ARM::ASRi, ARM::LSRi }, { 16, 16 }, { 1, 1 } }
2643 },
2644 { // Thumb
2645 /* 1 */ { { ARM::tASRri, ARM::tLSRri }, { 31, 31 }, { 0, 0 } },
2646 /* 8 */ { { ARM::tASRri, ARM::tLSRri }, { 24, 24 }, { 0, 0 } },
2647 /* 16 */ { { ARM::tASRri, ARM::tLSRri }, { 16, 16 }, { 0, 0 } }
2648 }
2649 },
2650 { // Single instruction.
2651 { // ARM
2652 /* 1 */ { { ARM::KILL, ARM::ANDri }, { 0, 1 }, { 0, 1 } },
2653 /* 8 */ { { ARM::SXTB, ARM::ANDri }, { 0, 255 }, { 0, 1 } },
2654 /* 16 */ { { ARM::SXTH, ARM::UXTH }, { 0, 0 }, { 0, 0 } }
2655 },
2656 { // Thumb
2657 /* 1 */ { { ARM::KILL, ARM::t2ANDri }, { 0, 1 }, { 0, 1 } },
2658 /* 8 */ { { ARM::t2SXTB, ARM::t2ANDri }, { 0, 255 }, { 0, 1 } },
2659 /* 16 */ { { ARM::t2SXTH, ARM::t2UXTH }, { 0, 0 }, { 0, 0 } }
2660 }
2661 }
2662 };
2663
2664 unsigned SrcBits = SrcVT.getSizeInBits();
2665 unsigned DestBits = DestVT.getSizeInBits();
JF Bastien2c69e902013-06-08 00:51:51 +00002666 (void) DestBits;
JF Bastien8fc760c2013-06-07 20:10:37 +00002667 assert((SrcBits < DestBits) && "can only extend to larger types");
2668 assert((DestBits == 32 || DestBits == 16 || DestBits == 8) &&
2669 "other sizes unimplemented");
2670 assert((SrcBits == 16 || SrcBits == 8 || SrcBits == 1) &&
2671 "other sizes unimplemented");
2672
2673 bool hasV6Ops = Subtarget->hasV6Ops();
2674 unsigned Bitness = countTrailingZeros(SrcBits) >> 1; // {1,8,16}=>{0,1,2}
2675 assert((Bitness < 3) && "sanity-check table bounds");
2676
2677 bool isSingleInstr = isSingleInstrTbl[Bitness][isThumb2][hasV6Ops][isZExt];
2678 const TargetRegisterClass *RC = RCTbl[isThumb2][isSingleInstr];
2679 unsigned Opc = OpcTbl[isSingleInstr][isThumb2][Bitness].Opc[isZExt];
2680 assert(ARM::KILL != Opc && "Invalid table entry");
2681 unsigned Imm = OpcTbl[isSingleInstr][isThumb2][Bitness].Imm[isZExt];
2682 unsigned hasS = OpcTbl[isSingleInstr][isThumb2][Bitness].hasS[isZExt];
2683
2684 // 16-bit Thumb instructions always set CPSR (unless they're in an IT block).
2685 bool setsCPSR = &ARM::tGPRRegClass == RC;
2686 unsigned LSLOpc = isThumb2 ? ARM::tLSLri : ARM::LSLi;
2687 unsigned ResultReg;
2688
2689 // Either one or two instructions are emitted.
2690 // They're always of the form:
2691 // dst = in OP imm
2692 // CPSR is set only by 16-bit Thumb instructions.
2693 // Predicate, if any, is AL.
2694 // S bit, if available, is always 0.
2695 // When two are emitted the first's result will feed as the second's input,
2696 // that value is then dead.
2697 unsigned NumInstrsEmitted = isSingleInstr ? 1 : 2;
2698 for (unsigned Instr = 0; Instr != NumInstrsEmitted; ++Instr) {
2699 ResultReg = createResultReg(RC);
2700 unsigned Opcode = ((0 == Instr) && !isSingleInstr) ? LSLOpc : Opc;
2701 bool isKill = 1 == Instr;
2702 MachineInstrBuilder MIB = BuildMI(
2703 *FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opcode), ResultReg);
2704 if (setsCPSR)
2705 MIB.addReg(ARM::CPSR, RegState::Define);
2706 AddDefaultPred(MIB.addReg(SrcReg, isKill * RegState::Kill).addImm(Imm));
2707 if (hasS)
2708 AddDefaultCC(MIB);
2709 // Second instruction consumes the first's result.
2710 SrcReg = ResultReg;
Eli Friedman76927d732011-05-25 23:49:02 +00002711 }
2712
Chad Rosier87633022011-11-02 17:20:24 +00002713 return ResultReg;
2714}
2715
2716bool ARMFastISel::SelectIntExt(const Instruction *I) {
2717 // On ARM, in general, integer casts don't involve legal types; this code
2718 // handles promotable integers.
Chad Rosier87633022011-11-02 17:20:24 +00002719 Type *DestTy = I->getType();
2720 Value *Src = I->getOperand(0);
2721 Type *SrcTy = Src->getType();
2722
Chad Rosier87633022011-11-02 17:20:24 +00002723 bool isZExt = isa<ZExtInst>(I);
2724 unsigned SrcReg = getRegForValue(Src);
2725 if (!SrcReg) return false;
2726
Chad Rosier316a5aa2012-12-17 19:59:43 +00002727 EVT SrcEVT, DestEVT;
2728 SrcEVT = TLI.getValueType(SrcTy, true);
2729 DestEVT = TLI.getValueType(DestTy, true);
2730 if (!SrcEVT.isSimple()) return false;
2731 if (!DestEVT.isSimple()) return false;
Patrik Hagglund3d170e62012-12-17 14:30:06 +00002732
Chad Rosier316a5aa2012-12-17 19:59:43 +00002733 MVT SrcVT = SrcEVT.getSimpleVT();
2734 MVT DestVT = DestEVT.getSimpleVT();
Chad Rosier87633022011-11-02 17:20:24 +00002735 unsigned ResultReg = ARMEmitIntExt(SrcVT, SrcReg, DestVT, isZExt);
2736 if (ResultReg == 0) return false;
2737 UpdateValueMap(I, ResultReg);
Eli Friedman76927d732011-05-25 23:49:02 +00002738 return true;
2739}
2740
Jush Lu29465492012-08-03 02:37:48 +00002741bool ARMFastISel::SelectShift(const Instruction *I,
2742 ARM_AM::ShiftOpc ShiftTy) {
2743 // We handle thumb2 mode by target independent selector
2744 // or SelectionDAG ISel.
2745 if (isThumb2)
2746 return false;
2747
2748 // Only handle i32 now.
2749 EVT DestVT = TLI.getValueType(I->getType(), true);
2750 if (DestVT != MVT::i32)
2751 return false;
2752
2753 unsigned Opc = ARM::MOVsr;
2754 unsigned ShiftImm;
2755 Value *Src2Value = I->getOperand(1);
2756 if (const ConstantInt *CI = dyn_cast<ConstantInt>(Src2Value)) {
2757 ShiftImm = CI->getZExtValue();
2758
2759 // Fall back to selection DAG isel if the shift amount
2760 // is zero or greater than the width of the value type.
2761 if (ShiftImm == 0 || ShiftImm >=32)
2762 return false;
2763
2764 Opc = ARM::MOVsi;
2765 }
2766
2767 Value *Src1Value = I->getOperand(0);
2768 unsigned Reg1 = getRegForValue(Src1Value);
2769 if (Reg1 == 0) return false;
2770
Nadav Roteme7576402012-09-06 11:13:55 +00002771 unsigned Reg2 = 0;
Jush Lu29465492012-08-03 02:37:48 +00002772 if (Opc == ARM::MOVsr) {
2773 Reg2 = getRegForValue(Src2Value);
2774 if (Reg2 == 0) return false;
2775 }
2776
JF Bastiena9a8a122013-05-29 15:45:47 +00002777 unsigned ResultReg = createResultReg(&ARM::GPRnopcRegClass);
Jush Lu29465492012-08-03 02:37:48 +00002778 if(ResultReg == 0) return false;
2779
2780 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2781 TII.get(Opc), ResultReg)
2782 .addReg(Reg1);
2783
2784 if (Opc == ARM::MOVsi)
2785 MIB.addImm(ARM_AM::getSORegOpc(ShiftTy, ShiftImm));
2786 else if (Opc == ARM::MOVsr) {
2787 MIB.addReg(Reg2);
2788 MIB.addImm(ARM_AM::getSORegOpc(ShiftTy, 0));
2789 }
2790
2791 AddOptionalDefs(MIB);
2792 UpdateValueMap(I, ResultReg);
2793 return true;
2794}
2795
Eric Christopher56d2b722010-09-02 23:43:26 +00002796// TODO: SoftFP support.
Eric Christopherab695882010-07-21 22:26:11 +00002797bool ARMFastISel::TargetSelectInstruction(const Instruction *I) {
Eric Christopherac1a19e2010-09-09 01:06:51 +00002798
Eric Christopherab695882010-07-21 22:26:11 +00002799 switch (I->getOpcode()) {
Eric Christopher83007122010-08-23 21:44:12 +00002800 case Instruction::Load:
Eric Christopher43b62be2010-09-27 06:02:23 +00002801 return SelectLoad(I);
Eric Christopher543cf052010-09-01 22:16:27 +00002802 case Instruction::Store:
Eric Christopher43b62be2010-09-27 06:02:23 +00002803 return SelectStore(I);
Eric Christophere5734102010-09-03 00:35:47 +00002804 case Instruction::Br:
Eric Christopher43b62be2010-09-27 06:02:23 +00002805 return SelectBranch(I);
Chad Rosier60c8fa62012-02-07 23:56:08 +00002806 case Instruction::IndirectBr:
2807 return SelectIndirectBr(I);
Eric Christopherd43393a2010-09-08 23:13:45 +00002808 case Instruction::ICmp:
2809 case Instruction::FCmp:
Eric Christopher43b62be2010-09-27 06:02:23 +00002810 return SelectCmp(I);
Eric Christopher46203602010-09-09 00:26:48 +00002811 case Instruction::FPExt:
Eric Christopher43b62be2010-09-27 06:02:23 +00002812 return SelectFPExt(I);
Eric Christopherce07b542010-09-09 20:26:31 +00002813 case Instruction::FPTrunc:
Eric Christopher43b62be2010-09-27 06:02:23 +00002814 return SelectFPTrunc(I);
Eric Christopher9a040492010-09-09 18:54:59 +00002815 case Instruction::SIToFP:
Chad Rosierae46a332012-02-03 21:14:11 +00002816 return SelectIToFP(I, /*isSigned*/ true);
Chad Rosier36b7beb2012-02-03 19:42:52 +00002817 case Instruction::UIToFP:
Chad Rosierae46a332012-02-03 21:14:11 +00002818 return SelectIToFP(I, /*isSigned*/ false);
Eric Christopher9a040492010-09-09 18:54:59 +00002819 case Instruction::FPToSI:
Chad Rosierae46a332012-02-03 21:14:11 +00002820 return SelectFPToI(I, /*isSigned*/ true);
Chad Rosieree8901c2012-02-03 20:27:51 +00002821 case Instruction::FPToUI:
Chad Rosierae46a332012-02-03 21:14:11 +00002822 return SelectFPToI(I, /*isSigned*/ false);
Chad Rosier3901c3e2012-02-06 23:50:07 +00002823 case Instruction::Add:
2824 return SelectBinaryIntOp(I, ISD::ADD);
Chad Rosier6fde8752012-02-08 02:29:21 +00002825 case Instruction::Or:
2826 return SelectBinaryIntOp(I, ISD::OR);
Chad Rosier743e1992012-02-08 02:45:44 +00002827 case Instruction::Sub:
2828 return SelectBinaryIntOp(I, ISD::SUB);
Eric Christopherbc39b822010-09-09 00:53:57 +00002829 case Instruction::FAdd:
Chad Rosier3901c3e2012-02-06 23:50:07 +00002830 return SelectBinaryFPOp(I, ISD::FADD);
Eric Christopherbc39b822010-09-09 00:53:57 +00002831 case Instruction::FSub:
Chad Rosier3901c3e2012-02-06 23:50:07 +00002832 return SelectBinaryFPOp(I, ISD::FSUB);
Eric Christopherbc39b822010-09-09 00:53:57 +00002833 case Instruction::FMul:
Chad Rosier3901c3e2012-02-06 23:50:07 +00002834 return SelectBinaryFPOp(I, ISD::FMUL);
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002835 case Instruction::SDiv:
Chad Rosier7ccb30b2012-02-03 21:07:27 +00002836 return SelectDiv(I, /*isSigned*/ true);
2837 case Instruction::UDiv:
2838 return SelectDiv(I, /*isSigned*/ false);
Eric Christopher6a880d62010-10-11 08:37:26 +00002839 case Instruction::SRem:
Chad Rosier769422f2012-02-03 21:23:45 +00002840 return SelectRem(I, /*isSigned*/ true);
2841 case Instruction::URem:
2842 return SelectRem(I, /*isSigned*/ false);
Eric Christopherf9764fa2010-09-30 20:49:44 +00002843 case Instruction::Call:
Chad Rosier11add262011-11-11 23:31:03 +00002844 if (const IntrinsicInst *II = dyn_cast<IntrinsicInst>(I))
2845 return SelectIntrinsicCall(*II);
Eric Christopherf9764fa2010-09-30 20:49:44 +00002846 return SelectCall(I);
Eric Christopher3bbd3962010-10-11 08:27:59 +00002847 case Instruction::Select:
2848 return SelectSelect(I);
Eric Christopher4f512ef2010-10-22 01:28:00 +00002849 case Instruction::Ret:
2850 return SelectRet(I);
Eli Friedman76927d732011-05-25 23:49:02 +00002851 case Instruction::Trunc:
Chad Rosier0d7b2312011-11-02 00:18:48 +00002852 return SelectTrunc(I);
Eli Friedman76927d732011-05-25 23:49:02 +00002853 case Instruction::ZExt:
2854 case Instruction::SExt:
Chad Rosier0d7b2312011-11-02 00:18:48 +00002855 return SelectIntExt(I);
Jush Lu29465492012-08-03 02:37:48 +00002856 case Instruction::Shl:
2857 return SelectShift(I, ARM_AM::lsl);
2858 case Instruction::LShr:
2859 return SelectShift(I, ARM_AM::lsr);
2860 case Instruction::AShr:
2861 return SelectShift(I, ARM_AM::asr);
Eric Christopherab695882010-07-21 22:26:11 +00002862 default: break;
2863 }
2864 return false;
2865}
2866
JF Bastien5ab77042013-06-11 22:13:46 +00002867namespace {
2868// This table describes sign- and zero-extend instructions which can be
2869// folded into a preceding load. All of these extends have an immediate
2870// (sometimes a mask and sometimes a shift) that's applied after
2871// extension.
2872const struct FoldableLoadExtendsStruct {
2873 uint16_t Opc[2]; // ARM, Thumb.
2874 uint8_t ExpectedImm;
2875 uint8_t isZExt : 1;
2876 uint8_t ExpectedVT : 7;
2877} FoldableLoadExtends[] = {
2878 { { ARM::SXTH, ARM::t2SXTH }, 0, 0, MVT::i16 },
2879 { { ARM::UXTH, ARM::t2UXTH }, 0, 1, MVT::i16 },
2880 { { ARM::ANDri, ARM::t2ANDri }, 255, 1, MVT::i8 },
2881 { { ARM::SXTB, ARM::t2SXTB }, 0, 0, MVT::i8 },
2882 { { ARM::UXTB, ARM::t2UXTB }, 0, 1, MVT::i8 }
2883};
2884}
2885
Eli Bendersky75299e32013-04-19 22:29:18 +00002886/// \brief The specified machine instr operand is a vreg, and that
Chad Rosierb29b9502011-11-13 02:23:59 +00002887/// vreg is being provided by the specified load instruction. If possible,
2888/// try to fold the load as an operand to the instruction, returning true if
2889/// successful.
Eli Bendersky75299e32013-04-19 22:29:18 +00002890bool ARMFastISel::tryToFoldLoadIntoMI(MachineInstr *MI, unsigned OpNo,
2891 const LoadInst *LI) {
Chad Rosierb29b9502011-11-13 02:23:59 +00002892 // Verify we have a legal type before going any further.
2893 MVT VT;
2894 if (!isLoadTypeLegal(LI->getType(), VT))
2895 return false;
2896
2897 // Combine load followed by zero- or sign-extend.
2898 // ldrb r1, [r0] ldrb r1, [r0]
2899 // uxtb r2, r1 =>
2900 // mov r3, r2 mov r3, r1
JF Bastien5ab77042013-06-11 22:13:46 +00002901 if (MI->getNumOperands() < 3 || !MI->getOperand(2).isImm())
2902 return false;
2903 const uint64_t Imm = MI->getOperand(2).getImm();
2904
2905 bool Found = false;
2906 bool isZExt;
2907 for (unsigned i = 0, e = array_lengthof(FoldableLoadExtends);
2908 i != e; ++i) {
2909 if (FoldableLoadExtends[i].Opc[isThumb2] == MI->getOpcode() &&
2910 (uint64_t)FoldableLoadExtends[i].ExpectedImm == Imm &&
2911 MVT((MVT::SimpleValueType)FoldableLoadExtends[i].ExpectedVT) == VT) {
2912 Found = true;
2913 isZExt = FoldableLoadExtends[i].isZExt;
2914 }
Chad Rosierb29b9502011-11-13 02:23:59 +00002915 }
JF Bastien5ab77042013-06-11 22:13:46 +00002916 if (!Found) return false;
2917
Chad Rosierb29b9502011-11-13 02:23:59 +00002918 // See if we can handle this address.
2919 Address Addr;
2920 if (!ARMComputeAddress(LI->getOperand(0), Addr)) return false;
Jush Luefc967e2012-06-14 06:08:19 +00002921
Chad Rosierb29b9502011-11-13 02:23:59 +00002922 unsigned ResultReg = MI->getOperand(0).getReg();
Chad Rosier8a9bce92011-12-13 19:22:14 +00002923 if (!ARMEmitLoad(VT, ResultReg, Addr, LI->getAlignment(), isZExt, false))
Chad Rosierb29b9502011-11-13 02:23:59 +00002924 return false;
2925 MI->eraseFromParent();
2926 return true;
2927}
2928
Jush Lu8f506472012-09-27 05:21:41 +00002929unsigned ARMFastISel::ARMLowerPICELF(const GlobalValue *GV,
Patrik Hagglunda61b17c2012-12-13 06:34:11 +00002930 unsigned Align, MVT VT) {
Jush Lu8f506472012-09-27 05:21:41 +00002931 bool UseGOTOFF = GV->hasLocalLinkage() || GV->hasHiddenVisibility();
2932 ARMConstantPoolConstant *CPV =
2933 ARMConstantPoolConstant::Create(GV, UseGOTOFF ? ARMCP::GOTOFF : ARMCP::GOT);
2934 unsigned Idx = MCP.getConstantPoolIndex(CPV, Align);
2935
2936 unsigned Opc;
2937 unsigned DestReg1 = createResultReg(TLI.getRegClassFor(VT));
2938 // Load value.
2939 if (isThumb2) {
2940 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2941 TII.get(ARM::t2LDRpci), DestReg1)
2942 .addConstantPoolIndex(Idx));
2943 Opc = UseGOTOFF ? ARM::t2ADDrr : ARM::t2LDRs;
2944 } else {
2945 // The extra immediate is for addrmode2.
2946 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
2947 DL, TII.get(ARM::LDRcp), DestReg1)
2948 .addConstantPoolIndex(Idx).addImm(0));
2949 Opc = UseGOTOFF ? ARM::ADDrr : ARM::LDRrs;
2950 }
2951
2952 unsigned GlobalBaseReg = AFI->getGlobalBaseReg();
2953 if (GlobalBaseReg == 0) {
2954 GlobalBaseReg = MRI.createVirtualRegister(TLI.getRegClassFor(VT));
2955 AFI->setGlobalBaseReg(GlobalBaseReg);
2956 }
2957
2958 unsigned DestReg2 = createResultReg(TLI.getRegClassFor(VT));
2959 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
2960 DL, TII.get(Opc), DestReg2)
2961 .addReg(DestReg1)
2962 .addReg(GlobalBaseReg);
2963 if (!UseGOTOFF)
2964 MIB.addImm(0);
2965 AddOptionalDefs(MIB);
2966
2967 return DestReg2;
2968}
2969
Evan Cheng092e5e72013-02-11 01:27:15 +00002970bool ARMFastISel::FastLowerArguments() {
2971 if (!FuncInfo.CanLowerReturn)
2972 return false;
2973
2974 const Function *F = FuncInfo.Fn;
2975 if (F->isVarArg())
2976 return false;
2977
2978 CallingConv::ID CC = F->getCallingConv();
2979 switch (CC) {
2980 default:
2981 return false;
2982 case CallingConv::Fast:
2983 case CallingConv::C:
2984 case CallingConv::ARM_AAPCS_VFP:
2985 case CallingConv::ARM_AAPCS:
2986 case CallingConv::ARM_APCS:
2987 break;
2988 }
2989
2990 // Only handle simple cases. i.e. Up to 4 i8/i16/i32 scalar arguments
2991 // which are passed in r0 - r3.
2992 unsigned Idx = 1;
2993 for (Function::const_arg_iterator I = F->arg_begin(), E = F->arg_end();
2994 I != E; ++I, ++Idx) {
2995 if (Idx > 4)
2996 return false;
2997
2998 if (F->getAttributes().hasAttribute(Idx, Attribute::InReg) ||
2999 F->getAttributes().hasAttribute(Idx, Attribute::StructRet) ||
3000 F->getAttributes().hasAttribute(Idx, Attribute::ByVal))
3001 return false;
3002
3003 Type *ArgTy = I->getType();
3004 if (ArgTy->isStructTy() || ArgTy->isArrayTy() || ArgTy->isVectorTy())
3005 return false;
3006
3007 EVT ArgVT = TLI.getValueType(ArgTy);
Chad Rosierfe88aa02013-02-26 01:05:31 +00003008 if (!ArgVT.isSimple()) return false;
Evan Cheng092e5e72013-02-11 01:27:15 +00003009 switch (ArgVT.getSimpleVT().SimpleTy) {
3010 case MVT::i8:
3011 case MVT::i16:
3012 case MVT::i32:
3013 break;
3014 default:
3015 return false;
3016 }
3017 }
3018
3019
3020 static const uint16_t GPRArgRegs[] = {
3021 ARM::R0, ARM::R1, ARM::R2, ARM::R3
3022 };
3023
3024 const TargetRegisterClass *RC = TLI.getRegClassFor(MVT::i32);
3025 Idx = 0;
3026 for (Function::const_arg_iterator I = F->arg_begin(), E = F->arg_end();
3027 I != E; ++I, ++Idx) {
3028 if (I->use_empty())
3029 continue;
3030 unsigned SrcReg = GPRArgRegs[Idx];
3031 unsigned DstReg = FuncInfo.MF->addLiveIn(SrcReg, RC);
3032 // FIXME: Unfortunately it's necessary to emit a copy from the livein copy.
3033 // Without this, EmitLiveInCopies may eliminate the livein if its only
3034 // use is a bitcast (which isn't turned into an instruction).
3035 unsigned ResultReg = createResultReg(RC);
3036 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
3037 ResultReg).addReg(DstReg, getKillRegState(true));
3038 UpdateValueMap(I, ResultReg);
3039 }
3040
3041 return true;
3042}
3043
Eric Christopherab695882010-07-21 22:26:11 +00003044namespace llvm {
Bob Wilsond49edb72012-08-03 04:06:28 +00003045 FastISel *ARM::createFastISel(FunctionLoweringInfo &funcInfo,
3046 const TargetLibraryInfo *libInfo) {
Rafael Espindola9e3e7302013-05-30 20:37:52 +00003047 // Completely untested on non-iOS.
Eric Christopherfeadddd2010-10-11 20:05:22 +00003048 const TargetMachine &TM = funcInfo.MF->getTarget();
Jim Grosbach16cb3762010-11-09 19:22:26 +00003049
Rafael Espindola9e3e7302013-05-30 20:37:52 +00003050 // Darwin and thumb1 only for now.
Eric Christopherfeadddd2010-10-11 20:05:22 +00003051 const ARMSubtarget *Subtarget = &TM.getSubtarget<ARMSubtarget>();
Rafael Espindola9e3e7302013-05-30 20:37:52 +00003052 if (Subtarget->isTargetIOS() && !Subtarget->isThumb1Only())
Bob Wilsond49edb72012-08-03 04:06:28 +00003053 return new ARMFastISel(funcInfo, libInfo);
Evan Cheng09447952010-07-26 18:32:55 +00003054 return 0;
Eric Christopherab695882010-07-21 22:26:11 +00003055 }
3056}