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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 Christopherab695882010-07-21 22:26:11 +000019#include "ARMRegisterInfo.h"
20#include "ARMTargetMachine.h"
21#include "ARMSubtarget.h"
Eric Christopherc9932f62010-10-01 23:24:42 +000022#include "ARMConstantPoolValue.h"
Evan Chengee04a6d2011-07-20 23:34:39 +000023#include "MCTargetDesc/ARMAddressingModes.h"
Eric Christopherab695882010-07-21 22:26:11 +000024#include "llvm/CallingConv.h"
25#include "llvm/DerivedTypes.h"
26#include "llvm/GlobalVariable.h"
27#include "llvm/Instructions.h"
28#include "llvm/IntrinsicInst.h"
Eric Christopherbb3e5da2010-09-14 23:03:37 +000029#include "llvm/Module.h"
Jay Foad562b84b2011-04-11 09:35:34 +000030#include "llvm/Operator.h"
Eric Christopherab695882010-07-21 22:26:11 +000031#include "llvm/CodeGen/Analysis.h"
32#include "llvm/CodeGen/FastISel.h"
33#include "llvm/CodeGen/FunctionLoweringInfo.h"
Eric Christopher0fe7d542010-08-17 01:25:29 +000034#include "llvm/CodeGen/MachineInstrBuilder.h"
35#include "llvm/CodeGen/MachineModuleInfo.h"
Eric Christopherab695882010-07-21 22:26:11 +000036#include "llvm/CodeGen/MachineConstantPool.h"
37#include "llvm/CodeGen/MachineFrameInfo.h"
Eric Christopherd56d61a2010-10-17 01:51:42 +000038#include "llvm/CodeGen/MachineMemOperand.h"
Eric Christopherab695882010-07-21 22:26:11 +000039#include "llvm/CodeGen/MachineRegisterInfo.h"
40#include "llvm/Support/CallSite.h"
Eric Christopher038fea52010-08-17 00:46:57 +000041#include "llvm/Support/CommandLine.h"
Eric Christopherab695882010-07-21 22:26:11 +000042#include "llvm/Support/ErrorHandling.h"
43#include "llvm/Support/GetElementPtrTypeIterator.h"
Eric Christopher0fe7d542010-08-17 01:25:29 +000044#include "llvm/Target/TargetData.h"
45#include "llvm/Target/TargetInstrInfo.h"
46#include "llvm/Target/TargetLowering.h"
47#include "llvm/Target/TargetMachine.h"
Eric Christopherab695882010-07-21 22:26:11 +000048#include "llvm/Target/TargetOptions.h"
49using namespace llvm;
50
Eric Christopher038fea52010-08-17 00:46:57 +000051static cl::opt<bool>
Eric Christopher6e5367d2010-10-18 22:53:53 +000052DisableARMFastISel("disable-arm-fast-isel",
53 cl::desc("Turn off experimental ARM fast-isel support"),
Eric Christopherfeadddd2010-10-11 20:05:22 +000054 cl::init(false), cl::Hidden);
Eric Christopher038fea52010-08-17 00:46:57 +000055
Eric Christopher836c6242010-12-15 23:47:29 +000056extern cl::opt<bool> EnableARMLongCalls;
57
Eric Christopherab695882010-07-21 22:26:11 +000058namespace {
Eric Christopher827656d2010-11-20 22:38:27 +000059
Eric Christopher0d581222010-11-19 22:30:02 +000060 // All possible address modes, plus some.
61 typedef struct Address {
62 enum {
63 RegBase,
64 FrameIndexBase
65 } BaseType;
Eric Christopher827656d2010-11-20 22:38:27 +000066
Eric Christopher0d581222010-11-19 22:30:02 +000067 union {
68 unsigned Reg;
69 int FI;
70 } Base;
Eric Christopher827656d2010-11-20 22:38:27 +000071
Eric Christopher0d581222010-11-19 22:30:02 +000072 int Offset;
Eric Christopher827656d2010-11-20 22:38:27 +000073
Eric Christopher0d581222010-11-19 22:30:02 +000074 // Innocuous defaults for our address.
75 Address()
Jim Grosbach0c720762011-05-16 22:24:07 +000076 : BaseType(RegBase), Offset(0) {
Eric Christopher0d581222010-11-19 22:30:02 +000077 Base.Reg = 0;
78 }
79 } Address;
Eric Christopherab695882010-07-21 22:26:11 +000080
81class ARMFastISel : public FastISel {
82
83 /// Subtarget - Keep a pointer to the ARMSubtarget around so that we can
84 /// make the right decision when generating code for different targets.
85 const ARMSubtarget *Subtarget;
Eric Christopher0fe7d542010-08-17 01:25:29 +000086 const TargetMachine &TM;
87 const TargetInstrInfo &TII;
88 const TargetLowering &TLI;
Eric Christopherc9932f62010-10-01 23:24:42 +000089 ARMFunctionInfo *AFI;
Eric Christopherab695882010-07-21 22:26:11 +000090
Eric Christopher8cf6c602010-09-29 22:24:45 +000091 // Convenience variables to avoid some queries.
Chad Rosier66dc8ca2011-11-08 21:12:00 +000092 bool isThumb2;
Eric Christopher8cf6c602010-09-29 22:24:45 +000093 LLVMContext *Context;
Eric Christophereaa204b2010-09-02 01:39:14 +000094
Eric Christopherab695882010-07-21 22:26:11 +000095 public:
Eric Christopherac1a19e2010-09-09 01:06:51 +000096 explicit ARMFastISel(FunctionLoweringInfo &funcInfo)
Eric Christopher0fe7d542010-08-17 01:25:29 +000097 : FastISel(funcInfo),
98 TM(funcInfo.MF->getTarget()),
99 TII(*TM.getInstrInfo()),
100 TLI(*TM.getTargetLowering()) {
Eric Christopherab695882010-07-21 22:26:11 +0000101 Subtarget = &TM.getSubtarget<ARMSubtarget>();
Eric Christopher7fe55b72010-08-23 22:32:45 +0000102 AFI = funcInfo.MF->getInfo<ARMFunctionInfo>();
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000103 isThumb2 = AFI->isThumbFunction();
Eric Christopher8cf6c602010-09-29 22:24:45 +0000104 Context = &funcInfo.Fn->getContext();
Eric Christopherab695882010-07-21 22:26:11 +0000105 }
106
Eric Christophercb592292010-08-20 00:20:31 +0000107 // Code from FastISel.cpp.
Eric Christopher0fe7d542010-08-17 01:25:29 +0000108 virtual unsigned FastEmitInst_(unsigned MachineInstOpcode,
109 const TargetRegisterClass *RC);
110 virtual unsigned FastEmitInst_r(unsigned MachineInstOpcode,
111 const TargetRegisterClass *RC,
112 unsigned Op0, bool Op0IsKill);
113 virtual unsigned FastEmitInst_rr(unsigned MachineInstOpcode,
114 const TargetRegisterClass *RC,
115 unsigned Op0, bool Op0IsKill,
116 unsigned Op1, bool Op1IsKill);
Cameron Zwarichc0e6d782011-03-30 23:01:21 +0000117 virtual unsigned FastEmitInst_rrr(unsigned MachineInstOpcode,
118 const TargetRegisterClass *RC,
119 unsigned Op0, bool Op0IsKill,
120 unsigned Op1, bool Op1IsKill,
121 unsigned Op2, bool Op2IsKill);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000122 virtual unsigned FastEmitInst_ri(unsigned MachineInstOpcode,
123 const TargetRegisterClass *RC,
124 unsigned Op0, bool Op0IsKill,
125 uint64_t Imm);
126 virtual unsigned FastEmitInst_rf(unsigned MachineInstOpcode,
127 const TargetRegisterClass *RC,
128 unsigned Op0, bool Op0IsKill,
129 const ConstantFP *FPImm);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000130 virtual unsigned FastEmitInst_rri(unsigned MachineInstOpcode,
131 const TargetRegisterClass *RC,
132 unsigned Op0, bool Op0IsKill,
133 unsigned Op1, bool Op1IsKill,
134 uint64_t Imm);
Eric Christopheraf3dce52011-03-12 01:09:29 +0000135 virtual unsigned FastEmitInst_i(unsigned MachineInstOpcode,
136 const TargetRegisterClass *RC,
137 uint64_t Imm);
Eric Christopherd94bc542011-04-29 22:07:50 +0000138 virtual unsigned FastEmitInst_ii(unsigned MachineInstOpcode,
139 const TargetRegisterClass *RC,
140 uint64_t Imm1, uint64_t Imm2);
Eric Christopheraf3dce52011-03-12 01:09:29 +0000141
Eric Christopher0fe7d542010-08-17 01:25:29 +0000142 virtual unsigned FastEmitInst_extractsubreg(MVT RetVT,
143 unsigned Op0, bool Op0IsKill,
144 uint32_t Idx);
Eric Christopherac1a19e2010-09-09 01:06:51 +0000145
Eric Christophercb592292010-08-20 00:20:31 +0000146 // Backend specific FastISel code.
Eric Christopherab695882010-07-21 22:26:11 +0000147 virtual bool TargetSelectInstruction(const Instruction *I);
Eric Christopher1b61ef42010-09-02 01:48:11 +0000148 virtual unsigned TargetMaterializeConstant(const Constant *C);
Eric Christopherf9764fa2010-09-30 20:49:44 +0000149 virtual unsigned TargetMaterializeAlloca(const AllocaInst *AI);
Chad Rosierb29b9502011-11-13 02:23:59 +0000150 virtual bool TryToFoldLoad(MachineInstr *MI, unsigned OpNo,
151 const LoadInst *LI);
Eric Christopherab695882010-07-21 22:26:11 +0000152
153 #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);
160 bool SelectCmp(const Instruction *I);
161 bool SelectFPExt(const Instruction *I);
162 bool SelectFPTrunc(const Instruction *I);
163 bool SelectBinaryOp(const Instruction *I, unsigned ISDOpcode);
164 bool SelectSIToFP(const Instruction *I);
165 bool SelectFPToSI(const Instruction *I);
166 bool SelectSDiv(const Instruction *I);
167 bool SelectSRem(const Instruction *I);
Chad Rosier11add262011-11-11 23:31:03 +0000168 bool SelectCall(const Instruction *I, const char *IntrMemName);
169 bool SelectIntrinsicCall(const IntrinsicInst &I);
Eric Christopher17787722010-10-21 21:47:51 +0000170 bool SelectSelect(const Instruction *I);
Eric Christopher4f512ef2010-10-22 01:28:00 +0000171 bool SelectRet(const Instruction *I);
Chad Rosier0d7b2312011-11-02 00:18:48 +0000172 bool SelectTrunc(const Instruction *I);
173 bool SelectIntExt(const Instruction *I);
Eric Christopherab695882010-07-21 22:26:11 +0000174
Eric Christopher83007122010-08-23 21:44:12 +0000175 // Utility routines.
Eric Christopher456144e2010-08-19 00:37:05 +0000176 private:
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000177 bool isTypeLegal(Type *Ty, MVT &VT);
178 bool isLoadTypeLegal(Type *Ty, MVT &VT);
Chad Rosiere07cd5e2011-11-02 18:08:25 +0000179 bool ARMEmitCmp(const Value *Src1Value, const Value *Src2Value,
180 bool isZExt);
Chad Rosierb29b9502011-11-13 02:23:59 +0000181 bool ARMEmitLoad(EVT VT, unsigned &ResultReg, Address &Addr, bool isZExt,
182 bool allocReg);
183
Bob Wilson6ce2dea2011-12-04 00:52:23 +0000184 bool ARMEmitStore(EVT VT, unsigned SrcReg, Address &Addr,
185 unsigned Alignment = 0);
Eric Christopher0d581222010-11-19 22:30:02 +0000186 bool ARMComputeAddress(const Value *Obj, Address &Addr);
Chad Rosierb29b9502011-11-13 02:23:59 +0000187 void ARMSimplifyAddress(Address &Addr, EVT VT, bool useAM3);
Chad Rosier2c42b8c2011-11-14 23:04:09 +0000188 bool ARMIsMemCpySmall(uint64_t Len);
189 bool ARMTryEmitSmallMemCpy(Address Dest, Address Src, uint64_t Len);
Chad Rosier87633022011-11-02 17:20:24 +0000190 unsigned ARMEmitIntExt(EVT SrcVT, unsigned SrcReg, EVT DestVT, bool isZExt);
Eric Christopher9ed58df2010-09-09 00:19:41 +0000191 unsigned ARMMaterializeFP(const ConstantFP *CFP, EVT VT);
Eric Christopher744c7c82010-09-28 22:47:54 +0000192 unsigned ARMMaterializeInt(const Constant *C, EVT VT);
Eric Christopherc9932f62010-10-01 23:24:42 +0000193 unsigned ARMMaterializeGV(const GlobalValue *GV, EVT VT);
Eric Christopheraa3ace12010-09-09 20:49:25 +0000194 unsigned ARMMoveToFPReg(EVT VT, unsigned SrcReg);
Eric Christopher9ee4ce22010-09-09 21:44:45 +0000195 unsigned ARMMoveToIntReg(EVT VT, unsigned SrcReg);
Eric Christopher872f4a22011-02-22 01:37:10 +0000196 unsigned ARMSelectCallOp(const GlobalValue *GV);
Eric Christopherac1a19e2010-09-09 01:06:51 +0000197
Eric Christopherd10cd7b2010-09-10 23:18:12 +0000198 // Call handling routines.
199 private:
200 CCAssignFn *CCAssignFnForCall(CallingConv::ID CC, bool Return);
Eric Christopherdccd2c32010-10-11 08:38:55 +0000201 bool ProcessCallArgs(SmallVectorImpl<Value*> &Args,
Eric Christophera9a7a1a2010-09-29 23:11:09 +0000202 SmallVectorImpl<unsigned> &ArgRegs,
Duncan Sands1440e8b2010-11-03 11:35:31 +0000203 SmallVectorImpl<MVT> &ArgVTs,
Eric Christophera9a7a1a2010-09-29 23:11:09 +0000204 SmallVectorImpl<ISD::ArgFlagsTy> &ArgFlags,
205 SmallVectorImpl<unsigned> &RegArgs,
206 CallingConv::ID CC,
207 unsigned &NumBytes);
Duncan Sands1440e8b2010-11-03 11:35:31 +0000208 bool FinishCall(MVT RetVT, SmallVectorImpl<unsigned> &UsedRegs,
Eric Christophera9a7a1a2010-09-29 23:11:09 +0000209 const Instruction *I, CallingConv::ID CC,
210 unsigned &NumBytes);
Eric Christopher7ed8ec92010-09-28 01:21:42 +0000211 bool ARMEmitLibcall(const Instruction *I, RTLIB::Libcall Call);
Eric Christopherd10cd7b2010-09-10 23:18:12 +0000212
213 // OptionalDef handling routines.
214 private:
Eric Christopheraf3dce52011-03-12 01:09:29 +0000215 bool isARMNEONPred(const MachineInstr *MI);
Eric Christopher456144e2010-08-19 00:37:05 +0000216 bool DefinesOptionalPredicate(MachineInstr *MI, bool *CPSR);
217 const MachineInstrBuilder &AddOptionalDefs(const MachineInstrBuilder &MIB);
Eric Christopher564857f2010-12-01 01:40:24 +0000218 void AddLoadStoreOperands(EVT VT, Address &Addr,
Cameron Zwarichc152aa62011-05-28 20:34:49 +0000219 const MachineInstrBuilder &MIB,
Chad Rosierb29b9502011-11-13 02:23:59 +0000220 unsigned Flags, bool useAM3);
Eric Christopher456144e2010-08-19 00:37:05 +0000221};
Eric Christopherab695882010-07-21 22:26:11 +0000222
223} // end anonymous namespace
224
Eric Christopherd10cd7b2010-09-10 23:18:12 +0000225#include "ARMGenCallingConv.inc"
Eric Christopherab695882010-07-21 22:26:11 +0000226
Eric Christopher456144e2010-08-19 00:37:05 +0000227// DefinesOptionalPredicate - This is different from DefinesPredicate in that
228// we don't care about implicit defs here, just places we'll need to add a
229// default CCReg argument. Sets CPSR if we're setting CPSR instead of CCR.
230bool ARMFastISel::DefinesOptionalPredicate(MachineInstr *MI, bool *CPSR) {
Evan Chenge837dea2011-06-28 19:10:37 +0000231 const MCInstrDesc &MCID = MI->getDesc();
232 if (!MCID.hasOptionalDef())
Eric Christopher456144e2010-08-19 00:37:05 +0000233 return false;
234
235 // Look to see if our OptionalDef is defining CPSR or CCR.
236 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
237 const MachineOperand &MO = MI->getOperand(i);
Eric Christopherf762fbe2010-08-20 00:36:24 +0000238 if (!MO.isReg() || !MO.isDef()) continue;
239 if (MO.getReg() == ARM::CPSR)
Eric Christopher456144e2010-08-19 00:37:05 +0000240 *CPSR = true;
241 }
242 return true;
243}
244
Eric Christopheraf3dce52011-03-12 01:09:29 +0000245bool ARMFastISel::isARMNEONPred(const MachineInstr *MI) {
Evan Chenge837dea2011-06-28 19:10:37 +0000246 const MCInstrDesc &MCID = MI->getDesc();
Eric Christopher299bbb22011-04-29 00:03:10 +0000247
Eric Christopheraf3dce52011-03-12 01:09:29 +0000248 // If we're a thumb2 or not NEON function we were handled via isPredicable.
Evan Chenge837dea2011-06-28 19:10:37 +0000249 if ((MCID.TSFlags & ARMII::DomainMask) != ARMII::DomainNEON ||
Eric Christopheraf3dce52011-03-12 01:09:29 +0000250 AFI->isThumb2Function())
251 return false;
Eric Christopher299bbb22011-04-29 00:03:10 +0000252
Evan Chenge837dea2011-06-28 19:10:37 +0000253 for (unsigned i = 0, e = MCID.getNumOperands(); i != e; ++i)
254 if (MCID.OpInfo[i].isPredicate())
Eric Christopheraf3dce52011-03-12 01:09:29 +0000255 return true;
Eric Christopher299bbb22011-04-29 00:03:10 +0000256
Eric Christopheraf3dce52011-03-12 01:09:29 +0000257 return false;
258}
259
Eric Christopher456144e2010-08-19 00:37:05 +0000260// If the machine is predicable go ahead and add the predicate operands, if
261// it needs default CC operands add those.
Eric Christopheraaa8df42010-11-02 01:21:28 +0000262// TODO: If we want to support thumb1 then we'll need to deal with optional
263// CPSR defs that need to be added before the remaining operands. See s_cc_out
264// for descriptions why.
Eric Christopher456144e2010-08-19 00:37:05 +0000265const MachineInstrBuilder &
266ARMFastISel::AddOptionalDefs(const MachineInstrBuilder &MIB) {
267 MachineInstr *MI = &*MIB;
268
Eric Christopheraf3dce52011-03-12 01:09:29 +0000269 // Do we use a predicate? or...
270 // Are we NEON in ARM mode and have a predicate operand? If so, I know
271 // we're not predicable but add it anyways.
272 if (TII.isPredicable(MI) || isARMNEONPred(MI))
Eric Christopher456144e2010-08-19 00:37:05 +0000273 AddDefaultPred(MIB);
Eric Christopher299bbb22011-04-29 00:03:10 +0000274
Eric Christopher456144e2010-08-19 00:37:05 +0000275 // Do we optionally set a predicate? Preds is size > 0 iff the predicate
276 // defines CPSR. All other OptionalDefines in ARM are the CCR register.
Eric Christopher979e0a12010-08-19 15:35:27 +0000277 bool CPSR = false;
Eric Christopher456144e2010-08-19 00:37:05 +0000278 if (DefinesOptionalPredicate(MI, &CPSR)) {
279 if (CPSR)
280 AddDefaultT1CC(MIB);
281 else
282 AddDefaultCC(MIB);
283 }
284 return MIB;
285}
286
Eric Christopher0fe7d542010-08-17 01:25:29 +0000287unsigned ARMFastISel::FastEmitInst_(unsigned MachineInstOpcode,
288 const TargetRegisterClass* RC) {
289 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000290 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000291
Eric Christopher456144e2010-08-19 00:37:05 +0000292 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg));
Eric Christopher0fe7d542010-08-17 01:25:29 +0000293 return ResultReg;
294}
295
296unsigned ARMFastISel::FastEmitInst_r(unsigned MachineInstOpcode,
297 const TargetRegisterClass *RC,
298 unsigned Op0, bool Op0IsKill) {
299 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000300 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000301
302 if (II.getNumDefs() >= 1)
Eric Christopher456144e2010-08-19 00:37:05 +0000303 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000304 .addReg(Op0, Op0IsKill * RegState::Kill));
305 else {
Eric Christopher456144e2010-08-19 00:37:05 +0000306 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000307 .addReg(Op0, Op0IsKill * RegState::Kill));
Eric Christopher456144e2010-08-19 00:37:05 +0000308 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000309 TII.get(TargetOpcode::COPY), ResultReg)
310 .addReg(II.ImplicitDefs[0]));
311 }
312 return ResultReg;
313}
314
315unsigned ARMFastISel::FastEmitInst_rr(unsigned MachineInstOpcode,
316 const TargetRegisterClass *RC,
317 unsigned Op0, bool Op0IsKill,
318 unsigned Op1, bool Op1IsKill) {
319 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000320 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000321
322 if (II.getNumDefs() >= 1)
Eric Christopher456144e2010-08-19 00:37:05 +0000323 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000324 .addReg(Op0, Op0IsKill * RegState::Kill)
325 .addReg(Op1, Op1IsKill * RegState::Kill));
326 else {
Eric Christopher456144e2010-08-19 00:37:05 +0000327 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000328 .addReg(Op0, Op0IsKill * RegState::Kill)
329 .addReg(Op1, Op1IsKill * RegState::Kill));
Eric Christopher456144e2010-08-19 00:37:05 +0000330 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000331 TII.get(TargetOpcode::COPY), ResultReg)
332 .addReg(II.ImplicitDefs[0]));
333 }
334 return ResultReg;
335}
336
Cameron Zwarichc0e6d782011-03-30 23:01:21 +0000337unsigned ARMFastISel::FastEmitInst_rrr(unsigned MachineInstOpcode,
338 const TargetRegisterClass *RC,
339 unsigned Op0, bool Op0IsKill,
340 unsigned Op1, bool Op1IsKill,
341 unsigned Op2, bool Op2IsKill) {
342 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000343 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Cameron Zwarichc0e6d782011-03-30 23:01:21 +0000344
345 if (II.getNumDefs() >= 1)
346 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
347 .addReg(Op0, Op0IsKill * RegState::Kill)
348 .addReg(Op1, Op1IsKill * RegState::Kill)
349 .addReg(Op2, Op2IsKill * RegState::Kill));
350 else {
351 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
352 .addReg(Op0, Op0IsKill * RegState::Kill)
353 .addReg(Op1, Op1IsKill * RegState::Kill)
354 .addReg(Op2, Op2IsKill * RegState::Kill));
355 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
356 TII.get(TargetOpcode::COPY), ResultReg)
357 .addReg(II.ImplicitDefs[0]));
358 }
359 return ResultReg;
360}
361
Eric Christopher0fe7d542010-08-17 01:25:29 +0000362unsigned ARMFastISel::FastEmitInst_ri(unsigned MachineInstOpcode,
363 const TargetRegisterClass *RC,
364 unsigned Op0, bool Op0IsKill,
365 uint64_t Imm) {
366 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000367 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000368
369 if (II.getNumDefs() >= 1)
Eric Christopher456144e2010-08-19 00:37:05 +0000370 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000371 .addReg(Op0, Op0IsKill * RegState::Kill)
372 .addImm(Imm));
373 else {
Eric Christopher456144e2010-08-19 00:37:05 +0000374 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000375 .addReg(Op0, Op0IsKill * RegState::Kill)
376 .addImm(Imm));
Eric Christopher456144e2010-08-19 00:37:05 +0000377 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000378 TII.get(TargetOpcode::COPY), ResultReg)
379 .addReg(II.ImplicitDefs[0]));
380 }
381 return ResultReg;
382}
383
384unsigned ARMFastISel::FastEmitInst_rf(unsigned MachineInstOpcode,
385 const TargetRegisterClass *RC,
386 unsigned Op0, bool Op0IsKill,
387 const ConstantFP *FPImm) {
388 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000389 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000390
391 if (II.getNumDefs() >= 1)
Eric Christopher456144e2010-08-19 00:37:05 +0000392 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000393 .addReg(Op0, Op0IsKill * RegState::Kill)
394 .addFPImm(FPImm));
395 else {
Eric Christopher456144e2010-08-19 00:37:05 +0000396 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000397 .addReg(Op0, Op0IsKill * RegState::Kill)
398 .addFPImm(FPImm));
Eric Christopher456144e2010-08-19 00:37:05 +0000399 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000400 TII.get(TargetOpcode::COPY), ResultReg)
401 .addReg(II.ImplicitDefs[0]));
402 }
403 return ResultReg;
404}
405
406unsigned ARMFastISel::FastEmitInst_rri(unsigned MachineInstOpcode,
407 const TargetRegisterClass *RC,
408 unsigned Op0, bool Op0IsKill,
409 unsigned Op1, bool Op1IsKill,
410 uint64_t Imm) {
411 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000412 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher0fe7d542010-08-17 01:25:29 +0000413
414 if (II.getNumDefs() >= 1)
Eric Christopher456144e2010-08-19 00:37:05 +0000415 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000416 .addReg(Op0, Op0IsKill * RegState::Kill)
417 .addReg(Op1, Op1IsKill * RegState::Kill)
418 .addImm(Imm));
419 else {
Eric Christopher456144e2010-08-19 00:37:05 +0000420 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000421 .addReg(Op0, Op0IsKill * RegState::Kill)
422 .addReg(Op1, Op1IsKill * RegState::Kill)
423 .addImm(Imm));
Eric Christopher456144e2010-08-19 00:37:05 +0000424 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000425 TII.get(TargetOpcode::COPY), ResultReg)
426 .addReg(II.ImplicitDefs[0]));
427 }
428 return ResultReg;
429}
430
431unsigned ARMFastISel::FastEmitInst_i(unsigned MachineInstOpcode,
432 const TargetRegisterClass *RC,
433 uint64_t Imm) {
434 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000435 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopherac1a19e2010-09-09 01:06:51 +0000436
Eric Christopher0fe7d542010-08-17 01:25:29 +0000437 if (II.getNumDefs() >= 1)
Eric Christopher456144e2010-08-19 00:37:05 +0000438 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000439 .addImm(Imm));
440 else {
Eric Christopher456144e2010-08-19 00:37:05 +0000441 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
Eric Christopher0fe7d542010-08-17 01:25:29 +0000442 .addImm(Imm));
Eric Christopher456144e2010-08-19 00:37:05 +0000443 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000444 TII.get(TargetOpcode::COPY), ResultReg)
445 .addReg(II.ImplicitDefs[0]));
446 }
447 return ResultReg;
448}
449
Eric Christopherd94bc542011-04-29 22:07:50 +0000450unsigned ARMFastISel::FastEmitInst_ii(unsigned MachineInstOpcode,
451 const TargetRegisterClass *RC,
452 uint64_t Imm1, uint64_t Imm2) {
453 unsigned ResultReg = createResultReg(RC);
Evan Chenge837dea2011-06-28 19:10:37 +0000454 const MCInstrDesc &II = TII.get(MachineInstOpcode);
Eric Christopher471e4222011-06-08 23:55:35 +0000455
Eric Christopherd94bc542011-04-29 22:07:50 +0000456 if (II.getNumDefs() >= 1)
457 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II, ResultReg)
458 .addImm(Imm1).addImm(Imm2));
459 else {
460 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, II)
461 .addImm(Imm1).addImm(Imm2));
Eric Christopher471e4222011-06-08 23:55:35 +0000462 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopherd94bc542011-04-29 22:07:50 +0000463 TII.get(TargetOpcode::COPY),
464 ResultReg)
465 .addReg(II.ImplicitDefs[0]));
466 }
467 return ResultReg;
468}
469
Eric Christopher0fe7d542010-08-17 01:25:29 +0000470unsigned ARMFastISel::FastEmitInst_extractsubreg(MVT RetVT,
471 unsigned Op0, bool Op0IsKill,
472 uint32_t Idx) {
473 unsigned ResultReg = createResultReg(TLI.getRegClassFor(RetVT));
474 assert(TargetRegisterInfo::isVirtualRegister(Op0) &&
475 "Cannot yet extract from physregs");
Eric Christopher456144e2010-08-19 00:37:05 +0000476 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt,
Eric Christopher0fe7d542010-08-17 01:25:29 +0000477 DL, TII.get(TargetOpcode::COPY), ResultReg)
478 .addReg(Op0, getKillRegState(Op0IsKill), Idx));
479 return ResultReg;
480}
481
Eric Christopherdb12b2b2010-09-10 00:34:35 +0000482// TODO: Don't worry about 64-bit now, but when this is fixed remove the
483// checks from the various callers.
Eric Christopheraa3ace12010-09-09 20:49:25 +0000484unsigned ARMFastISel::ARMMoveToFPReg(EVT VT, unsigned SrcReg) {
Duncan Sandscdfad362010-11-03 12:17:33 +0000485 if (VT == MVT::f64) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000486
Eric Christopher9ee4ce22010-09-09 21:44:45 +0000487 unsigned MoveReg = createResultReg(TLI.getRegClassFor(VT));
488 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
489 TII.get(ARM::VMOVRS), MoveReg)
490 .addReg(SrcReg));
491 return MoveReg;
492}
493
494unsigned ARMFastISel::ARMMoveToIntReg(EVT VT, unsigned SrcReg) {
Duncan Sandscdfad362010-11-03 12:17:33 +0000495 if (VT == MVT::i64) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000496
Eric Christopheraa3ace12010-09-09 20:49:25 +0000497 unsigned MoveReg = createResultReg(TLI.getRegClassFor(VT));
498 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopher9ee4ce22010-09-09 21:44:45 +0000499 TII.get(ARM::VMOVSR), MoveReg)
Eric Christopheraa3ace12010-09-09 20:49:25 +0000500 .addReg(SrcReg));
501 return MoveReg;
502}
503
Eric Christopher9ed58df2010-09-09 00:19:41 +0000504// For double width floating point we need to materialize two constants
505// (the high and the low) into integer registers then use a move to get
506// the combined constant into an FP reg.
507unsigned ARMFastISel::ARMMaterializeFP(const ConstantFP *CFP, EVT VT) {
508 const APFloat Val = CFP->getValueAPF();
Duncan Sandscdfad362010-11-03 12:17:33 +0000509 bool is64bit = VT == MVT::f64;
Eric Christopherac1a19e2010-09-09 01:06:51 +0000510
Eric Christopher9ed58df2010-09-09 00:19:41 +0000511 // This checks to see if we can use VFP3 instructions to materialize
512 // a constant, otherwise we have to go through the constant pool.
513 if (TLI.isFPImmLegal(Val, VT)) {
Jim Grosbach4ebbf7b2011-09-30 00:50:06 +0000514 int Imm;
515 unsigned Opc;
516 if (is64bit) {
517 Imm = ARM_AM::getFP64Imm(Val);
518 Opc = ARM::FCONSTD;
519 } else {
520 Imm = ARM_AM::getFP32Imm(Val);
521 Opc = ARM::FCONSTS;
522 }
Eric Christopher9ed58df2010-09-09 00:19:41 +0000523 unsigned DestReg = createResultReg(TLI.getRegClassFor(VT));
524 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
525 DestReg)
Jim Grosbach4ebbf7b2011-09-30 00:50:06 +0000526 .addImm(Imm));
Eric Christopher9ed58df2010-09-09 00:19:41 +0000527 return DestReg;
528 }
Eric Christopherdccd2c32010-10-11 08:38:55 +0000529
Eric Christopherdb12b2b2010-09-10 00:34:35 +0000530 // Require VFP2 for loading fp constants.
Eric Christopher238bb162010-09-09 23:50:00 +0000531 if (!Subtarget->hasVFP2()) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000532
Eric Christopher238bb162010-09-09 23:50:00 +0000533 // MachineConstantPool wants an explicit alignment.
534 unsigned Align = TD.getPrefTypeAlignment(CFP->getType());
535 if (Align == 0) {
536 // TODO: Figure out if this is correct.
537 Align = TD.getTypeAllocSize(CFP->getType());
538 }
539 unsigned Idx = MCP.getConstantPoolIndex(cast<Constant>(CFP), Align);
540 unsigned DestReg = createResultReg(TLI.getRegClassFor(VT));
541 unsigned Opc = is64bit ? ARM::VLDRD : ARM::VLDRS;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000542
Eric Christopherdb12b2b2010-09-10 00:34:35 +0000543 // The extra reg is for addrmode5.
Eric Christopherf5732c42010-09-28 00:35:09 +0000544 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
545 DestReg)
546 .addConstantPoolIndex(Idx)
Eric Christopher238bb162010-09-09 23:50:00 +0000547 .addReg(0));
548 return DestReg;
Eric Christopher9ed58df2010-09-09 00:19:41 +0000549}
550
Eric Christopher744c7c82010-09-28 22:47:54 +0000551unsigned ARMFastISel::ARMMaterializeInt(const Constant *C, EVT VT) {
Eric Christopherdccd2c32010-10-11 08:38:55 +0000552
Chad Rosier44e89572011-11-04 22:29:00 +0000553 if (VT != MVT::i32 && VT != MVT::i16 && VT != MVT::i8 && VT != MVT::i1)
554 return false;
Eric Christophere5b13cf2010-11-03 20:21:17 +0000555
556 // If we can do this in a single instruction without a constant pool entry
557 // do so now.
558 const ConstantInt *CI = cast<ConstantInt>(C);
Chad Rosiera4e07272011-11-04 23:09:49 +0000559 if (Subtarget->hasV6T2Ops() && isUInt<16>(CI->getZExtValue())) {
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000560 unsigned Opc = isThumb2 ? ARM::t2MOVi16 : ARM::MOVi16;
Chad Rosier4e89d972011-11-11 00:36:21 +0000561 unsigned ImmReg = createResultReg(TLI.getRegClassFor(MVT::i32));
Eric Christophere5b13cf2010-11-03 20:21:17 +0000562 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Chad Rosier44e89572011-11-04 22:29:00 +0000563 TII.get(Opc), ImmReg)
Chad Rosier42536af2011-11-05 20:16:15 +0000564 .addImm(CI->getZExtValue()));
Chad Rosier44e89572011-11-04 22:29:00 +0000565 return ImmReg;
Eric Christophere5b13cf2010-11-03 20:21:17 +0000566 }
567
Chad Rosier4e89d972011-11-11 00:36:21 +0000568 // Use MVN to emit negative constants.
569 if (VT == MVT::i32 && Subtarget->hasV6T2Ops() && CI->isNegative()) {
570 unsigned Imm = (unsigned)~(CI->getSExtValue());
Chad Rosier1c47de82011-11-11 06:27:41 +0000571 bool UseImm = isThumb2 ? (ARM_AM::getT2SOImmVal(Imm) != -1) :
Chad Rosier4e89d972011-11-11 00:36:21 +0000572 (ARM_AM::getSOImmVal(Imm) != -1);
Chad Rosier1c47de82011-11-11 06:27:41 +0000573 if (UseImm) {
Chad Rosier4e89d972011-11-11 00:36:21 +0000574 unsigned Opc = isThumb2 ? ARM::t2MVNi : ARM::MVNi;
575 unsigned ImmReg = createResultReg(TLI.getRegClassFor(MVT::i32));
576 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
577 TII.get(Opc), ImmReg)
578 .addImm(Imm));
579 return ImmReg;
580 }
581 }
582
583 // Load from constant pool. For now 32-bit only.
Chad Rosier44e89572011-11-04 22:29:00 +0000584 if (VT != MVT::i32)
585 return false;
586
587 unsigned DestReg = createResultReg(TLI.getRegClassFor(VT));
588
Eric Christopher56d2b722010-09-02 23:43:26 +0000589 // MachineConstantPool wants an explicit alignment.
590 unsigned Align = TD.getPrefTypeAlignment(C->getType());
591 if (Align == 0) {
592 // TODO: Figure out if this is correct.
593 Align = TD.getTypeAllocSize(C->getType());
594 }
595 unsigned Idx = MCP.getConstantPoolIndex(C, Align);
Eric Christopherdccd2c32010-10-11 08:38:55 +0000596
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000597 if (isThumb2)
Eric Christopher56d2b722010-09-02 23:43:26 +0000598 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopherfd609802010-09-28 21:55:34 +0000599 TII.get(ARM::t2LDRpci), DestReg)
600 .addConstantPoolIndex(Idx));
Eric Christopher56d2b722010-09-02 23:43:26 +0000601 else
Eric Christopherd0c82a62010-11-12 09:48:30 +0000602 // The extra immediate is for addrmode2.
Eric Christopher56d2b722010-09-02 23:43:26 +0000603 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopherfd609802010-09-28 21:55:34 +0000604 TII.get(ARM::LDRcp), DestReg)
605 .addConstantPoolIndex(Idx)
Jim Grosbach3e556122010-10-26 22:37:02 +0000606 .addImm(0));
Eric Christopherac1a19e2010-09-09 01:06:51 +0000607
Eric Christopher56d2b722010-09-02 23:43:26 +0000608 return DestReg;
Eric Christopher1b61ef42010-09-02 01:48:11 +0000609}
610
Eric Christopherc9932f62010-10-01 23:24:42 +0000611unsigned ARMFastISel::ARMMaterializeGV(const GlobalValue *GV, EVT VT) {
Eric Christopher890dbbe2010-10-02 00:32:44 +0000612 // For now 32-bit only.
Duncan Sandscdfad362010-11-03 12:17:33 +0000613 if (VT != MVT::i32) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000614
Eric Christopher890dbbe2010-10-02 00:32:44 +0000615 Reloc::Model RelocM = TM.getRelocationModel();
Eric Christopherdccd2c32010-10-11 08:38:55 +0000616
Eric Christopher890dbbe2010-10-02 00:32:44 +0000617 // TODO: Need more magic for ARM PIC.
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000618 if (!isThumb2 && (RelocM == Reloc::PIC_)) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000619
Eric Christopher890dbbe2010-10-02 00:32:44 +0000620 // MachineConstantPool wants an explicit alignment.
621 unsigned Align = TD.getPrefTypeAlignment(GV->getType());
622 if (Align == 0) {
623 // TODO: Figure out if this is correct.
624 Align = TD.getTypeAllocSize(GV->getType());
625 }
Eric Christopherdccd2c32010-10-11 08:38:55 +0000626
Eric Christopher890dbbe2010-10-02 00:32:44 +0000627 // Grab index.
628 unsigned PCAdj = (RelocM != Reloc::PIC_) ? 0 : (Subtarget->isThumb() ? 4 : 8);
Evan Cheng5de5d4b2011-01-17 08:03:18 +0000629 unsigned Id = AFI->createPICLabelUId();
Bill Wendling5bb77992011-10-01 08:00:54 +0000630 ARMConstantPoolValue *CPV = ARMConstantPoolConstant::Create(GV, Id,
631 ARMCP::CPValue,
632 PCAdj);
Eric Christopher890dbbe2010-10-02 00:32:44 +0000633 unsigned Idx = MCP.getConstantPoolIndex(CPV, Align);
Eric Christopherdccd2c32010-10-11 08:38:55 +0000634
Eric Christopher890dbbe2010-10-02 00:32:44 +0000635 // Load value.
636 MachineInstrBuilder MIB;
637 unsigned DestReg = createResultReg(TLI.getRegClassFor(VT));
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000638 if (isThumb2) {
Eric Christopher890dbbe2010-10-02 00:32:44 +0000639 unsigned Opc = (RelocM != Reloc::PIC_) ? ARM::t2LDRpci : ARM::t2LDRpci_pic;
640 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc), DestReg)
641 .addConstantPoolIndex(Idx);
642 if (RelocM == Reloc::PIC_)
643 MIB.addImm(Id);
644 } else {
Eric Christopherd0c82a62010-11-12 09:48:30 +0000645 // The extra immediate is for addrmode2.
Eric Christopher890dbbe2010-10-02 00:32:44 +0000646 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(ARM::LDRcp),
647 DestReg)
648 .addConstantPoolIndex(Idx)
Eric Christopherd0c82a62010-11-12 09:48:30 +0000649 .addImm(0);
Eric Christopher890dbbe2010-10-02 00:32:44 +0000650 }
651 AddOptionalDefs(MIB);
Eli Friedmand6412c92011-06-03 01:13:19 +0000652
653 if (Subtarget->GVIsIndirectSymbol(GV, RelocM)) {
654 unsigned NewDestReg = createResultReg(TLI.getRegClassFor(VT));
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000655 if (isThumb2)
Jim Grosbachb04546f2011-09-13 20:30:37 +0000656 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
657 TII.get(ARM::t2LDRi12), NewDestReg)
Eli Friedmand6412c92011-06-03 01:13:19 +0000658 .addReg(DestReg)
659 .addImm(0);
660 else
661 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(ARM::LDRi12),
662 NewDestReg)
663 .addReg(DestReg)
664 .addImm(0);
665 DestReg = NewDestReg;
666 AddOptionalDefs(MIB);
667 }
668
Eric Christopher890dbbe2010-10-02 00:32:44 +0000669 return DestReg;
Eric Christopherc9932f62010-10-01 23:24:42 +0000670}
671
Eric Christopher9ed58df2010-09-09 00:19:41 +0000672unsigned ARMFastISel::TargetMaterializeConstant(const Constant *C) {
673 EVT VT = TLI.getValueType(C->getType(), true);
674
675 // Only handle simple types.
676 if (!VT.isSimple()) return 0;
677
678 if (const ConstantFP *CFP = dyn_cast<ConstantFP>(C))
679 return ARMMaterializeFP(CFP, VT);
Eric Christopherc9932f62010-10-01 23:24:42 +0000680 else if (const GlobalValue *GV = dyn_cast<GlobalValue>(C))
681 return ARMMaterializeGV(GV, VT);
682 else if (isa<ConstantInt>(C))
683 return ARMMaterializeInt(C, VT);
Eric Christopherdccd2c32010-10-11 08:38:55 +0000684
Eric Christopherc9932f62010-10-01 23:24:42 +0000685 return 0;
Eric Christopher9ed58df2010-09-09 00:19:41 +0000686}
687
Chad Rosier944d82b2011-11-17 21:46:13 +0000688// TODO: unsigned ARMFastISel::TargetMaterializeFloatZero(const ConstantFP *CF);
689
Eric Christopherf9764fa2010-09-30 20:49:44 +0000690unsigned ARMFastISel::TargetMaterializeAlloca(const AllocaInst *AI) {
691 // Don't handle dynamic allocas.
692 if (!FuncInfo.StaticAllocaMap.count(AI)) return 0;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000693
Duncan Sands1440e8b2010-11-03 11:35:31 +0000694 MVT VT;
Eric Christopherec8bf972010-10-17 06:07:26 +0000695 if (!isLoadTypeLegal(AI->getType(), VT)) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +0000696
Eric Christopherf9764fa2010-09-30 20:49:44 +0000697 DenseMap<const AllocaInst*, int>::iterator SI =
698 FuncInfo.StaticAllocaMap.find(AI);
699
700 // This will get lowered later into the correct offsets and registers
701 // via rewriteXFrameIndex.
702 if (SI != FuncInfo.StaticAllocaMap.end()) {
703 TargetRegisterClass* RC = TLI.getRegClassFor(VT);
704 unsigned ResultReg = createResultReg(RC);
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000705 unsigned Opc = isThumb2 ? ARM::t2ADDri : ARM::ADDri;
Eric Christopherf9764fa2010-09-30 20:49:44 +0000706 AddOptionalDefs(BuildMI(*FuncInfo.MBB, *FuncInfo.InsertPt, DL,
707 TII.get(Opc), ResultReg)
708 .addFrameIndex(SI->second)
709 .addImm(0));
710 return ResultReg;
711 }
Eric Christopherdccd2c32010-10-11 08:38:55 +0000712
Eric Christopherf9764fa2010-09-30 20:49:44 +0000713 return 0;
714}
715
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000716bool ARMFastISel::isTypeLegal(Type *Ty, MVT &VT) {
Duncan Sands1440e8b2010-11-03 11:35:31 +0000717 EVT evt = TLI.getValueType(Ty, true);
Eric Christopherac1a19e2010-09-09 01:06:51 +0000718
Eric Christopherb1cc8482010-08-25 07:23:49 +0000719 // Only handle simple types.
Duncan Sands1440e8b2010-11-03 11:35:31 +0000720 if (evt == MVT::Other || !evt.isSimple()) return false;
721 VT = evt.getSimpleVT();
Eric Christopherac1a19e2010-09-09 01:06:51 +0000722
Eric Christopherdc908042010-08-31 01:28:42 +0000723 // Handle all legal types, i.e. a register that will directly hold this
724 // value.
725 return TLI.isTypeLegal(VT);
Eric Christopherb1cc8482010-08-25 07:23:49 +0000726}
727
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000728bool ARMFastISel::isLoadTypeLegal(Type *Ty, MVT &VT) {
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000729 if (isTypeLegal(Ty, VT)) return true;
Eric Christopherac1a19e2010-09-09 01:06:51 +0000730
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000731 // If this is a type than can be sign or zero-extended to a basic operation
732 // go ahead and accept it now.
Chad Rosierb29b9502011-11-13 02:23:59 +0000733 if (VT == MVT::i1 || VT == MVT::i8 || VT == MVT::i16)
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000734 return true;
Eric Christopherac1a19e2010-09-09 01:06:51 +0000735
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000736 return false;
737}
738
Eric Christopher88de86b2010-11-19 22:36:41 +0000739// Computes the address to get to an object.
Eric Christopher0d581222010-11-19 22:30:02 +0000740bool ARMFastISel::ARMComputeAddress(const Value *Obj, Address &Addr) {
Eric Christopher83007122010-08-23 21:44:12 +0000741 // Some boilerplate from the X86 FastISel.
742 const User *U = NULL;
Eric Christopher83007122010-08-23 21:44:12 +0000743 unsigned Opcode = Instruction::UserOp1;
Eric Christophercb0b04b2010-08-24 00:07:24 +0000744 if (const Instruction *I = dyn_cast<Instruction>(Obj)) {
Eric Christopher2d630d72010-11-19 22:37:58 +0000745 // Don't walk into other basic blocks unless the object is an alloca from
746 // another block, otherwise it may not have a virtual register assigned.
Eric Christopher76dda7e2010-11-15 21:11:06 +0000747 if (FuncInfo.StaticAllocaMap.count(static_cast<const AllocaInst *>(Obj)) ||
748 FuncInfo.MBBMap[I->getParent()] == FuncInfo.MBB) {
749 Opcode = I->getOpcode();
750 U = I;
751 }
Eric Christophercb0b04b2010-08-24 00:07:24 +0000752 } else if (const ConstantExpr *C = dyn_cast<ConstantExpr>(Obj)) {
Eric Christopher83007122010-08-23 21:44:12 +0000753 Opcode = C->getOpcode();
754 U = C;
755 }
756
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000757 if (PointerType *Ty = dyn_cast<PointerType>(Obj->getType()))
Eric Christopher83007122010-08-23 21:44:12 +0000758 if (Ty->getAddressSpace() > 255)
759 // Fast instruction selection doesn't support the special
760 // address spaces.
761 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +0000762
Eric Christopher83007122010-08-23 21:44:12 +0000763 switch (Opcode) {
Eric Christopherac1a19e2010-09-09 01:06:51 +0000764 default:
Eric Christopher83007122010-08-23 21:44:12 +0000765 break;
Eric Christopher55324332010-10-12 00:43:21 +0000766 case Instruction::BitCast: {
767 // Look through bitcasts.
Eric Christopher0d581222010-11-19 22:30:02 +0000768 return ARMComputeAddress(U->getOperand(0), Addr);
Eric Christopher55324332010-10-12 00:43:21 +0000769 }
770 case Instruction::IntToPtr: {
771 // Look past no-op inttoptrs.
772 if (TLI.getValueType(U->getOperand(0)->getType()) == TLI.getPointerTy())
Eric Christopher0d581222010-11-19 22:30:02 +0000773 return ARMComputeAddress(U->getOperand(0), Addr);
Eric Christopher55324332010-10-12 00:43:21 +0000774 break;
775 }
776 case Instruction::PtrToInt: {
777 // Look past no-op ptrtoints.
778 if (TLI.getValueType(U->getType()) == TLI.getPointerTy())
Eric Christopher0d581222010-11-19 22:30:02 +0000779 return ARMComputeAddress(U->getOperand(0), Addr);
Eric Christopher55324332010-10-12 00:43:21 +0000780 break;
781 }
Eric Christophereae84392010-10-14 09:29:41 +0000782 case Instruction::GetElementPtr: {
Eric Christopherb3716582010-11-19 22:39:56 +0000783 Address SavedAddr = Addr;
Eric Christopher0d581222010-11-19 22:30:02 +0000784 int TmpOffset = Addr.Offset;
Eric Christopher2896df82010-10-15 18:02:07 +0000785
Eric Christophereae84392010-10-14 09:29:41 +0000786 // Iterate through the GEP folding the constants into offsets where
787 // we can.
788 gep_type_iterator GTI = gep_type_begin(U);
789 for (User::const_op_iterator i = U->op_begin() + 1, e = U->op_end();
790 i != e; ++i, ++GTI) {
791 const Value *Op = *i;
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000792 if (StructType *STy = dyn_cast<StructType>(*GTI)) {
Eric Christophereae84392010-10-14 09:29:41 +0000793 const StructLayout *SL = TD.getStructLayout(STy);
794 unsigned Idx = cast<ConstantInt>(Op)->getZExtValue();
795 TmpOffset += SL->getElementOffset(Idx);
796 } else {
Eric Christopher2896df82010-10-15 18:02:07 +0000797 uint64_t S = TD.getTypeAllocSize(GTI.getIndexedType());
Eric Christopher7244d7c2011-03-22 19:39:17 +0000798 for (;;) {
Eric Christopher2896df82010-10-15 18:02:07 +0000799 if (const ConstantInt *CI = dyn_cast<ConstantInt>(Op)) {
800 // Constant-offset addressing.
801 TmpOffset += CI->getSExtValue() * S;
Eric Christopher7244d7c2011-03-22 19:39:17 +0000802 break;
803 }
804 if (isa<AddOperator>(Op) &&
805 (!isa<Instruction>(Op) ||
806 FuncInfo.MBBMap[cast<Instruction>(Op)->getParent()]
807 == FuncInfo.MBB) &&
808 isa<ConstantInt>(cast<AddOperator>(Op)->getOperand(1))) {
Eric Christopher299bbb22011-04-29 00:03:10 +0000809 // An add (in the same block) with a constant operand. Fold the
Eric Christopher7244d7c2011-03-22 19:39:17 +0000810 // constant.
Eric Christopher2896df82010-10-15 18:02:07 +0000811 ConstantInt *CI =
Eric Christopher7244d7c2011-03-22 19:39:17 +0000812 cast<ConstantInt>(cast<AddOperator>(Op)->getOperand(1));
Eric Christopher2896df82010-10-15 18:02:07 +0000813 TmpOffset += CI->getSExtValue() * S;
Eric Christopher7244d7c2011-03-22 19:39:17 +0000814 // Iterate on the other operand.
815 Op = cast<AddOperator>(Op)->getOperand(0);
816 continue;
Eric Christopher299bbb22011-04-29 00:03:10 +0000817 }
Eric Christopher7244d7c2011-03-22 19:39:17 +0000818 // Unsupported
819 goto unsupported_gep;
820 }
Eric Christophereae84392010-10-14 09:29:41 +0000821 }
822 }
Eric Christopher2896df82010-10-15 18:02:07 +0000823
824 // Try to grab the base operand now.
Eric Christopher0d581222010-11-19 22:30:02 +0000825 Addr.Offset = TmpOffset;
826 if (ARMComputeAddress(U->getOperand(0), Addr)) return true;
Eric Christopher2896df82010-10-15 18:02:07 +0000827
828 // We failed, restore everything and try the other options.
Eric Christopherb3716582010-11-19 22:39:56 +0000829 Addr = SavedAddr;
Eric Christopher2896df82010-10-15 18:02:07 +0000830
Eric Christophereae84392010-10-14 09:29:41 +0000831 unsupported_gep:
Eric Christophereae84392010-10-14 09:29:41 +0000832 break;
833 }
Eric Christopher83007122010-08-23 21:44:12 +0000834 case Instruction::Alloca: {
Eric Christopher15418772010-10-12 05:39:06 +0000835 const AllocaInst *AI = cast<AllocaInst>(Obj);
Eric Christopher827656d2010-11-20 22:38:27 +0000836 DenseMap<const AllocaInst*, int>::iterator SI =
837 FuncInfo.StaticAllocaMap.find(AI);
838 if (SI != FuncInfo.StaticAllocaMap.end()) {
839 Addr.BaseType = Address::FrameIndexBase;
840 Addr.Base.FI = SI->second;
841 return true;
842 }
843 break;
Eric Christopher83007122010-08-23 21:44:12 +0000844 }
845 }
Eric Christopherac1a19e2010-09-09 01:06:51 +0000846
Eric Christophera9c57512010-10-13 21:41:51 +0000847 // Materialize the global variable's address into a reg which can
848 // then be used later to load the variable.
Eric Christophercb0b04b2010-08-24 00:07:24 +0000849 if (const GlobalValue *GV = dyn_cast<GlobalValue>(Obj)) {
Eric Christopherede42b02010-10-13 09:11:46 +0000850 unsigned Tmp = ARMMaterializeGV(GV, TLI.getValueType(Obj->getType()));
851 if (Tmp == 0) return false;
Eric Christopher2896df82010-10-15 18:02:07 +0000852
Eric Christopher0d581222010-11-19 22:30:02 +0000853 Addr.Base.Reg = Tmp;
Eric Christopherede42b02010-10-13 09:11:46 +0000854 return true;
Eric Christophercb0b04b2010-08-24 00:07:24 +0000855 }
Eric Christopherac1a19e2010-09-09 01:06:51 +0000856
Eric Christophercb0b04b2010-08-24 00:07:24 +0000857 // Try to get this in a register if nothing else has worked.
Eric Christopher0d581222010-11-19 22:30:02 +0000858 if (Addr.Base.Reg == 0) Addr.Base.Reg = getRegForValue(Obj);
859 return Addr.Base.Reg != 0;
Eric Christophereae84392010-10-14 09:29:41 +0000860}
861
Chad Rosierb29b9502011-11-13 02:23:59 +0000862void ARMFastISel::ARMSimplifyAddress(Address &Addr, EVT VT, bool useAM3) {
Jim Grosbach6b156392010-10-27 21:39:08 +0000863
Eric Christopher212ae932010-10-21 19:40:30 +0000864 assert(VT.isSimple() && "Non-simple types are invalid here!");
Jim Grosbach6b156392010-10-27 21:39:08 +0000865
Eric Christopher212ae932010-10-21 19:40:30 +0000866 bool needsLowering = false;
867 switch (VT.getSimpleVT().SimpleTy) {
868 default:
869 assert(false && "Unhandled load/store type!");
Chad Rosier73463472011-11-09 21:30:12 +0000870 break;
Eric Christopher212ae932010-10-21 19:40:30 +0000871 case MVT::i1:
872 case MVT::i8:
Chad Rosierb29b9502011-11-13 02:23:59 +0000873 case MVT::i16:
Eric Christopher212ae932010-10-21 19:40:30 +0000874 case MVT::i32:
Chad Rosier57b29972011-11-14 20:22:27 +0000875 if (!useAM3) {
Chad Rosierb29b9502011-11-13 02:23:59 +0000876 // Integer loads/stores handle 12-bit offsets.
877 needsLowering = ((Addr.Offset & 0xfff) != Addr.Offset);
Chad Rosier57b29972011-11-14 20:22:27 +0000878 // Handle negative offsets.
Chad Rosiere489af82011-11-14 22:34:48 +0000879 if (needsLowering && isThumb2)
880 needsLowering = !(Subtarget->hasV6T2Ops() && Addr.Offset < 0 &&
881 Addr.Offset > -256);
Chad Rosier57b29972011-11-14 20:22:27 +0000882 } else {
Chad Rosier5be833d2011-11-13 04:25:02 +0000883 // ARM halfword load/stores and signed byte loads use +/-imm8 offsets.
Chad Rosierdc9205d2011-11-14 04:09:28 +0000884 needsLowering = (Addr.Offset > 255 || Addr.Offset < -255);
Chad Rosier57b29972011-11-14 20:22:27 +0000885 }
Eric Christopher212ae932010-10-21 19:40:30 +0000886 break;
887 case MVT::f32:
888 case MVT::f64:
889 // Floating point operands handle 8-bit offsets.
Eric Christopher0d581222010-11-19 22:30:02 +0000890 needsLowering = ((Addr.Offset & 0xff) != Addr.Offset);
Eric Christopher212ae932010-10-21 19:40:30 +0000891 break;
892 }
Jim Grosbach6b156392010-10-27 21:39:08 +0000893
Eric Christopher827656d2010-11-20 22:38:27 +0000894 // If this is a stack pointer and the offset needs to be simplified then
895 // put the alloca address into a register, set the base type back to
896 // register and continue. This should almost never happen.
897 if (needsLowering && Addr.BaseType == Address::FrameIndexBase) {
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000898 TargetRegisterClass *RC = isThumb2 ? ARM::tGPRRegisterClass :
Eric Christopher827656d2010-11-20 22:38:27 +0000899 ARM::GPRRegisterClass;
900 unsigned ResultReg = createResultReg(RC);
Chad Rosier66dc8ca2011-11-08 21:12:00 +0000901 unsigned Opc = isThumb2 ? ARM::t2ADDri : ARM::ADDri;
Eric Christopher827656d2010-11-20 22:38:27 +0000902 AddOptionalDefs(BuildMI(*FuncInfo.MBB, *FuncInfo.InsertPt, DL,
903 TII.get(Opc), ResultReg)
904 .addFrameIndex(Addr.Base.FI)
905 .addImm(0));
906 Addr.Base.Reg = ResultReg;
907 Addr.BaseType = Address::RegBase;
908 }
909
Eric Christopher212ae932010-10-21 19:40:30 +0000910 // Since the offset is too large for the load/store instruction
Eric Christopher318b6ee2010-09-02 00:53:56 +0000911 // get the reg+offset into a register.
Eric Christopher212ae932010-10-21 19:40:30 +0000912 if (needsLowering) {
Eli Friedman9ebf57a2011-04-29 21:22:56 +0000913 Addr.Base.Reg = FastEmit_ri_(MVT::i32, ISD::ADD, Addr.Base.Reg,
914 /*Op0IsKill*/false, Addr.Offset, MVT::i32);
Eric Christopher0d581222010-11-19 22:30:02 +0000915 Addr.Offset = 0;
Eric Christopher318b6ee2010-09-02 00:53:56 +0000916 }
Eric Christopher83007122010-08-23 21:44:12 +0000917}
918
Eric Christopher564857f2010-12-01 01:40:24 +0000919void ARMFastISel::AddLoadStoreOperands(EVT VT, Address &Addr,
Cameron Zwarichc152aa62011-05-28 20:34:49 +0000920 const MachineInstrBuilder &MIB,
Chad Rosierb29b9502011-11-13 02:23:59 +0000921 unsigned Flags, bool useAM3) {
Eric Christopher564857f2010-12-01 01:40:24 +0000922 // addrmode5 output depends on the selection dag addressing dividing the
923 // offset by 4 that it then later multiplies. Do this here as well.
924 if (VT.getSimpleVT().SimpleTy == MVT::f32 ||
925 VT.getSimpleVT().SimpleTy == MVT::f64)
926 Addr.Offset /= 4;
Eric Christopher299bbb22011-04-29 00:03:10 +0000927
Eric Christopher564857f2010-12-01 01:40:24 +0000928 // Frame base works a bit differently. Handle it separately.
929 if (Addr.BaseType == Address::FrameIndexBase) {
930 int FI = Addr.Base.FI;
931 int Offset = Addr.Offset;
932 MachineMemOperand *MMO =
933 FuncInfo.MF->getMachineMemOperand(
934 MachinePointerInfo::getFixedStack(FI, Offset),
Cameron Zwarichc152aa62011-05-28 20:34:49 +0000935 Flags,
Eric Christopher564857f2010-12-01 01:40:24 +0000936 MFI.getObjectSize(FI),
937 MFI.getObjectAlignment(FI));
938 // Now add the rest of the operands.
939 MIB.addFrameIndex(FI);
940
Bob Wilson6ce2dea2011-12-04 00:52:23 +0000941 // ARM halfword load/stores and signed byte loads need an additional
942 // operand.
Chad Rosierdc9205d2011-11-14 04:09:28 +0000943 if (useAM3) {
944 signed Imm = (Addr.Offset < 0) ? (0x100 | -Addr.Offset) : Addr.Offset;
945 MIB.addReg(0);
946 MIB.addImm(Imm);
947 } else {
948 MIB.addImm(Addr.Offset);
949 }
Eric Christopher564857f2010-12-01 01:40:24 +0000950 MIB.addMemOperand(MMO);
951 } else {
952 // Now add the rest of the operands.
953 MIB.addReg(Addr.Base.Reg);
Eric Christopher299bbb22011-04-29 00:03:10 +0000954
Bob Wilson6ce2dea2011-12-04 00:52:23 +0000955 // ARM halfword load/stores and signed byte loads need an additional
956 // operand.
Chad Rosierdc9205d2011-11-14 04:09:28 +0000957 if (useAM3) {
958 signed Imm = (Addr.Offset < 0) ? (0x100 | -Addr.Offset) : Addr.Offset;
959 MIB.addReg(0);
960 MIB.addImm(Imm);
961 } else {
962 MIB.addImm(Addr.Offset);
963 }
Eric Christopher564857f2010-12-01 01:40:24 +0000964 }
965 AddOptionalDefs(MIB);
966}
967
Chad Rosierb29b9502011-11-13 02:23:59 +0000968bool ARMFastISel::ARMEmitLoad(EVT VT, unsigned &ResultReg, Address &Addr,
969 bool isZExt = true, bool allocReg = true) {
Eric Christopherb1cc8482010-08-25 07:23:49 +0000970 assert(VT.isSimple() && "Non-simple types are invalid here!");
Eric Christopherdc908042010-08-31 01:28:42 +0000971 unsigned Opc;
Chad Rosierb29b9502011-11-13 02:23:59 +0000972 bool useAM3 = false;
973 TargetRegisterClass *RC;
Eric Christopherb1cc8482010-08-25 07:23:49 +0000974 switch (VT.getSimpleVT().SimpleTy) {
Eric Christopher564857f2010-12-01 01:40:24 +0000975 // This is mostly going to be Neon/vector support.
976 default: return false;
Chad Rosier646abbf2011-11-11 02:38:59 +0000977 case MVT::i1:
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000978 case MVT::i8:
Chad Rosier57b29972011-11-14 20:22:27 +0000979 if (isThumb2) {
980 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
981 Opc = isZExt ? ARM::t2LDRBi8 : ARM::t2LDRSBi8;
982 else
983 Opc = isZExt ? ARM::t2LDRBi12 : ARM::t2LDRSBi12;
Chad Rosierb29b9502011-11-13 02:23:59 +0000984 } else {
Chad Rosier57b29972011-11-14 20:22:27 +0000985 if (isZExt) {
986 Opc = ARM::LDRBi12;
987 } else {
988 Opc = ARM::LDRSB;
989 useAM3 = true;
990 }
Chad Rosierb29b9502011-11-13 02:23:59 +0000991 }
Eric Christopher7a56f332010-10-08 01:13:17 +0000992 RC = ARM::GPRRegisterClass;
Eric Christopher4e68c7c2010-09-01 18:01:32 +0000993 break;
Chad Rosier73463472011-11-09 21:30:12 +0000994 case MVT::i16:
Chad Rosier57b29972011-11-14 20:22:27 +0000995 if (isThumb2) {
996 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
997 Opc = isZExt ? ARM::t2LDRHi8 : ARM::t2LDRSHi8;
998 else
999 Opc = isZExt ? ARM::t2LDRHi12 : ARM::t2LDRSHi12;
1000 } else {
1001 Opc = isZExt ? ARM::LDRH : ARM::LDRSH;
1002 useAM3 = true;
1003 }
Chad Rosier73463472011-11-09 21:30:12 +00001004 RC = ARM::GPRRegisterClass;
1005 break;
Eric Christopherdc908042010-08-31 01:28:42 +00001006 case MVT::i32:
Chad Rosier57b29972011-11-14 20:22:27 +00001007 if (isThumb2) {
1008 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1009 Opc = ARM::t2LDRi8;
1010 else
1011 Opc = ARM::t2LDRi12;
1012 } else {
1013 Opc = ARM::LDRi12;
1014 }
Eric Christopher7a56f332010-10-08 01:13:17 +00001015 RC = ARM::GPRRegisterClass;
Eric Christopherdc908042010-08-31 01:28:42 +00001016 break;
Eric Christopher6dab1372010-09-18 01:59:37 +00001017 case MVT::f32:
1018 Opc = ARM::VLDRS;
Eric Christopheree56ea62010-10-07 05:50:44 +00001019 RC = TLI.getRegClassFor(VT);
Eric Christopher6dab1372010-09-18 01:59:37 +00001020 break;
1021 case MVT::f64:
1022 Opc = ARM::VLDRD;
Eric Christopheree56ea62010-10-07 05:50:44 +00001023 RC = TLI.getRegClassFor(VT);
Eric Christopher6dab1372010-09-18 01:59:37 +00001024 break;
Eric Christopherb1cc8482010-08-25 07:23:49 +00001025 }
Eric Christopher564857f2010-12-01 01:40:24 +00001026 // Simplify this down to something we can handle.
Chad Rosierb29b9502011-11-13 02:23:59 +00001027 ARMSimplifyAddress(Addr, VT, useAM3);
Jim Grosbach6b156392010-10-27 21:39:08 +00001028
Eric Christopher564857f2010-12-01 01:40:24 +00001029 // Create the base instruction, then add the operands.
Chad Rosierb29b9502011-11-13 02:23:59 +00001030 if (allocReg)
1031 ResultReg = createResultReg(RC);
1032 assert (ResultReg > 255 && "Expected an allocated virtual register.");
Eric Christopher564857f2010-12-01 01:40:24 +00001033 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1034 TII.get(Opc), ResultReg);
Chad Rosierb29b9502011-11-13 02:23:59 +00001035 AddLoadStoreOperands(VT, Addr, MIB, MachineMemOperand::MOLoad, useAM3);
Eric Christopherdc908042010-08-31 01:28:42 +00001036 return true;
Eric Christopherb1cc8482010-08-25 07:23:49 +00001037}
1038
Eric Christopher43b62be2010-09-27 06:02:23 +00001039bool ARMFastISel::SelectLoad(const Instruction *I) {
Eli Friedman4136d232011-09-02 22:33:24 +00001040 // Atomic loads need special handling.
1041 if (cast<LoadInst>(I)->isAtomic())
1042 return false;
1043
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001044 // Verify we have a legal type before going any further.
Duncan Sands1440e8b2010-11-03 11:35:31 +00001045 MVT VT;
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001046 if (!isLoadTypeLegal(I->getType(), VT))
1047 return false;
1048
Eric Christopher564857f2010-12-01 01:40:24 +00001049 // See if we can handle this address.
Eric Christopher0d581222010-11-19 22:30:02 +00001050 Address Addr;
Eric Christopher564857f2010-12-01 01:40:24 +00001051 if (!ARMComputeAddress(I->getOperand(0), Addr)) return false;
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001052
1053 unsigned ResultReg;
Eric Christopher0d581222010-11-19 22:30:02 +00001054 if (!ARMEmitLoad(VT, ResultReg, Addr)) return false;
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001055 UpdateValueMap(I, ResultReg);
1056 return true;
1057}
1058
Bob Wilson6ce2dea2011-12-04 00:52:23 +00001059bool ARMFastISel::ARMEmitStore(EVT VT, unsigned SrcReg, Address &Addr,
1060 unsigned Alignment) {
Eric Christopher318b6ee2010-09-02 00:53:56 +00001061 unsigned StrOpc;
Chad Rosierb29b9502011-11-13 02:23:59 +00001062 bool useAM3 = false;
Eric Christopher318b6ee2010-09-02 00:53:56 +00001063 switch (VT.getSimpleVT().SimpleTy) {
Eric Christopher564857f2010-12-01 01:40:24 +00001064 // This is mostly going to be Neon/vector support.
Eric Christopher318b6ee2010-09-02 00:53:56 +00001065 default: return false;
Eric Christopher4c914122010-11-02 23:59:09 +00001066 case MVT::i1: {
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001067 unsigned Res = createResultReg(isThumb2 ? ARM::tGPRRegisterClass :
Eric Christopher4c914122010-11-02 23:59:09 +00001068 ARM::GPRRegisterClass);
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001069 unsigned Opc = isThumb2 ? ARM::t2ANDri : ARM::ANDri;
Eric Christopher4c914122010-11-02 23:59:09 +00001070 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1071 TII.get(Opc), Res)
1072 .addReg(SrcReg).addImm(1));
1073 SrcReg = Res;
1074 } // Fallthrough here.
Eric Christopher2896df82010-10-15 18:02:07 +00001075 case MVT::i8:
Chad Rosier57b29972011-11-14 20:22:27 +00001076 if (isThumb2) {
1077 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1078 StrOpc = ARM::t2STRBi8;
1079 else
1080 StrOpc = ARM::t2STRBi12;
1081 } else {
1082 StrOpc = ARM::STRBi12;
1083 }
Eric Christopher15418772010-10-12 05:39:06 +00001084 break;
1085 case MVT::i16:
Chad Rosier57b29972011-11-14 20:22:27 +00001086 if (isThumb2) {
1087 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1088 StrOpc = ARM::t2STRHi8;
1089 else
1090 StrOpc = ARM::t2STRHi12;
1091 } else {
1092 StrOpc = ARM::STRH;
1093 useAM3 = true;
1094 }
Eric Christopher15418772010-10-12 05:39:06 +00001095 break;
Eric Christopher47650ec2010-10-16 01:10:35 +00001096 case MVT::i32:
Chad Rosier57b29972011-11-14 20:22:27 +00001097 if (isThumb2) {
1098 if (Addr.Offset < 0 && Addr.Offset > -256 && Subtarget->hasV6T2Ops())
1099 StrOpc = ARM::t2STRi8;
1100 else
1101 StrOpc = ARM::t2STRi12;
1102 } else {
1103 StrOpc = ARM::STRi12;
1104 }
Eric Christopher47650ec2010-10-16 01:10:35 +00001105 break;
Eric Christopher56d2b722010-09-02 23:43:26 +00001106 case MVT::f32:
1107 if (!Subtarget->hasVFP2()) return false;
1108 StrOpc = ARM::VSTRS;
Chad Rosiered42c5f2011-12-06 01:44:17 +00001109 // Unaligned stores need special handling. Floats require word-alignment.
Chad Rosier9eff1e32011-12-03 02:21:57 +00001110 if (Alignment && Alignment < 4) {
1111 unsigned MoveReg = createResultReg(TLI.getRegClassFor(MVT::i32));
1112 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1113 TII.get(ARM::VMOVRS), MoveReg)
1114 .addReg(SrcReg));
1115 SrcReg = MoveReg;
1116 VT = MVT::i32;
1117 StrOpc = isThumb2 ? ARM::t2STRi12 : ARM::STRi12;
1118 }
Eric Christopher56d2b722010-09-02 23:43:26 +00001119 break;
1120 case MVT::f64:
1121 if (!Subtarget->hasVFP2()) return false;
Chad Rosiered42c5f2011-12-06 01:44:17 +00001122 // FIXME: Unaligned stores need special handling. Doublewords require
1123 // word-alignment.
1124 if (Alignment && Alignment < 4) {
Chad Rosier9eff1e32011-12-03 02:21:57 +00001125 return false;
1126 }
Eric Christopher56d2b722010-09-02 23:43:26 +00001127 StrOpc = ARM::VSTRD;
1128 break;
Eric Christopher318b6ee2010-09-02 00:53:56 +00001129 }
Eric Christopher564857f2010-12-01 01:40:24 +00001130 // Simplify this down to something we can handle.
Chad Rosierb29b9502011-11-13 02:23:59 +00001131 ARMSimplifyAddress(Addr, VT, useAM3);
Jim Grosbach6b156392010-10-27 21:39:08 +00001132
Eric Christopher564857f2010-12-01 01:40:24 +00001133 // Create the base instruction, then add the operands.
1134 MachineInstrBuilder MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1135 TII.get(StrOpc))
Chad Rosier3bdb3c92011-11-17 01:16:53 +00001136 .addReg(SrcReg);
Chad Rosierb29b9502011-11-13 02:23:59 +00001137 AddLoadStoreOperands(VT, Addr, MIB, MachineMemOperand::MOStore, useAM3);
Eric Christopher318b6ee2010-09-02 00:53:56 +00001138 return true;
1139}
1140
Eric Christopher43b62be2010-09-27 06:02:23 +00001141bool ARMFastISel::SelectStore(const Instruction *I) {
Eric Christopher318b6ee2010-09-02 00:53:56 +00001142 Value *Op0 = I->getOperand(0);
1143 unsigned SrcReg = 0;
1144
Eli Friedman4136d232011-09-02 22:33:24 +00001145 // Atomic stores need special handling.
1146 if (cast<StoreInst>(I)->isAtomic())
1147 return false;
1148
Eric Christopher564857f2010-12-01 01:40:24 +00001149 // Verify we have a legal type before going any further.
Duncan Sands1440e8b2010-11-03 11:35:31 +00001150 MVT VT;
Eric Christopher318b6ee2010-09-02 00:53:56 +00001151 if (!isLoadTypeLegal(I->getOperand(0)->getType(), VT))
Eric Christopher543cf052010-09-01 22:16:27 +00001152 return false;
Eric Christopher318b6ee2010-09-02 00:53:56 +00001153
Eric Christopher1b61ef42010-09-02 01:48:11 +00001154 // Get the value to be stored into a register.
1155 SrcReg = getRegForValue(Op0);
Eric Christopher564857f2010-12-01 01:40:24 +00001156 if (SrcReg == 0) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001157
Eric Christopher564857f2010-12-01 01:40:24 +00001158 // See if we can handle this address.
Eric Christopher0d581222010-11-19 22:30:02 +00001159 Address Addr;
Eric Christopher0d581222010-11-19 22:30:02 +00001160 if (!ARMComputeAddress(I->getOperand(1), Addr))
Eric Christopher318b6ee2010-09-02 00:53:56 +00001161 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001162
Chad Rosier9eff1e32011-12-03 02:21:57 +00001163 if (!ARMEmitStore(VT, SrcReg, Addr, cast<StoreInst>(I)->getAlignment()))
1164 return false;
Eric Christophera5b1e682010-09-17 22:28:18 +00001165 return true;
1166}
1167
1168static ARMCC::CondCodes getComparePred(CmpInst::Predicate Pred) {
1169 switch (Pred) {
1170 // Needs two compares...
1171 case CmpInst::FCMP_ONE:
Eric Christopherdccd2c32010-10-11 08:38:55 +00001172 case CmpInst::FCMP_UEQ:
Eric Christophera5b1e682010-09-17 22:28:18 +00001173 default:
Eric Christopher4053e632010-11-02 01:24:49 +00001174 // AL is our "false" for now. The other two need more compares.
Eric Christophera5b1e682010-09-17 22:28:18 +00001175 return ARMCC::AL;
1176 case CmpInst::ICMP_EQ:
1177 case CmpInst::FCMP_OEQ:
1178 return ARMCC::EQ;
1179 case CmpInst::ICMP_SGT:
1180 case CmpInst::FCMP_OGT:
1181 return ARMCC::GT;
1182 case CmpInst::ICMP_SGE:
1183 case CmpInst::FCMP_OGE:
1184 return ARMCC::GE;
1185 case CmpInst::ICMP_UGT:
1186 case CmpInst::FCMP_UGT:
1187 return ARMCC::HI;
1188 case CmpInst::FCMP_OLT:
1189 return ARMCC::MI;
1190 case CmpInst::ICMP_ULE:
1191 case CmpInst::FCMP_OLE:
1192 return ARMCC::LS;
1193 case CmpInst::FCMP_ORD:
1194 return ARMCC::VC;
1195 case CmpInst::FCMP_UNO:
1196 return ARMCC::VS;
1197 case CmpInst::FCMP_UGE:
1198 return ARMCC::PL;
1199 case CmpInst::ICMP_SLT:
1200 case CmpInst::FCMP_ULT:
Eric Christopherdccd2c32010-10-11 08:38:55 +00001201 return ARMCC::LT;
Eric Christophera5b1e682010-09-17 22:28:18 +00001202 case CmpInst::ICMP_SLE:
1203 case CmpInst::FCMP_ULE:
1204 return ARMCC::LE;
1205 case CmpInst::FCMP_UNE:
1206 case CmpInst::ICMP_NE:
1207 return ARMCC::NE;
1208 case CmpInst::ICMP_UGE:
1209 return ARMCC::HS;
1210 case CmpInst::ICMP_ULT:
1211 return ARMCC::LO;
1212 }
Eric Christopher543cf052010-09-01 22:16:27 +00001213}
1214
Eric Christopher43b62be2010-09-27 06:02:23 +00001215bool ARMFastISel::SelectBranch(const Instruction *I) {
Eric Christophere5734102010-09-03 00:35:47 +00001216 const BranchInst *BI = cast<BranchInst>(I);
1217 MachineBasicBlock *TBB = FuncInfo.MBBMap[BI->getSuccessor(0)];
1218 MachineBasicBlock *FBB = FuncInfo.MBBMap[BI->getSuccessor(1)];
Eric Christopherac1a19e2010-09-09 01:06:51 +00001219
Eric Christophere5734102010-09-03 00:35:47 +00001220 // Simple branch support.
Jim Grosbach16cb3762010-11-09 19:22:26 +00001221
Eric Christopher0e6233b2010-10-29 21:08:19 +00001222 // If we can, avoid recomputing the compare - redoing it could lead to wonky
1223 // behavior.
Eric Christopher0e6233b2010-10-29 21:08:19 +00001224 if (const CmpInst *CI = dyn_cast<CmpInst>(BI->getCondition())) {
Chad Rosier75698f32011-10-26 23:17:28 +00001225 if (CI->hasOneUse() && (CI->getParent() == I->getParent())) {
Eric Christopher0e6233b2010-10-29 21:08:19 +00001226
1227 // Get the compare predicate.
Eric Christopher632ae892011-04-29 21:56:31 +00001228 // Try to take advantage of fallthrough opportunities.
1229 CmpInst::Predicate Predicate = CI->getPredicate();
1230 if (FuncInfo.MBB->isLayoutSuccessor(TBB)) {
1231 std::swap(TBB, FBB);
1232 Predicate = CmpInst::getInversePredicate(Predicate);
1233 }
1234
1235 ARMCC::CondCodes ARMPred = getComparePred(Predicate);
Eric Christopher0e6233b2010-10-29 21:08:19 +00001236
1237 // We may not handle every CC for now.
1238 if (ARMPred == ARMCC::AL) return false;
1239
Chad Rosier75698f32011-10-26 23:17:28 +00001240 // Emit the compare.
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001241 if (!ARMEmitCmp(CI->getOperand(0), CI->getOperand(1), CI->isUnsigned()))
Chad Rosier75698f32011-10-26 23:17:28 +00001242 return false;
Jim Grosbach16cb3762010-11-09 19:22:26 +00001243
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001244 unsigned BrOpc = isThumb2 ? ARM::t2Bcc : ARM::Bcc;
Eric Christopher0e6233b2010-10-29 21:08:19 +00001245 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(BrOpc))
1246 .addMBB(TBB).addImm(ARMPred).addReg(ARM::CPSR);
1247 FastEmitBranch(FBB, DL);
1248 FuncInfo.MBB->addSuccessor(TBB);
1249 return true;
1250 }
Eric Christopherbcf26ae2011-04-29 20:02:39 +00001251 } else if (TruncInst *TI = dyn_cast<TruncInst>(BI->getCondition())) {
1252 MVT SourceVT;
1253 if (TI->hasOneUse() && TI->getParent() == I->getParent() &&
Eli Friedman76927d732011-05-25 23:49:02 +00001254 (isLoadTypeLegal(TI->getOperand(0)->getType(), SourceVT))) {
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001255 unsigned TstOpc = isThumb2 ? ARM::t2TSTri : ARM::TSTri;
Eric Christopherbcf26ae2011-04-29 20:02:39 +00001256 unsigned OpReg = getRegForValue(TI->getOperand(0));
1257 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1258 TII.get(TstOpc))
1259 .addReg(OpReg).addImm(1));
1260
1261 unsigned CCMode = ARMCC::NE;
1262 if (FuncInfo.MBB->isLayoutSuccessor(TBB)) {
1263 std::swap(TBB, FBB);
1264 CCMode = ARMCC::EQ;
1265 }
1266
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001267 unsigned BrOpc = isThumb2 ? ARM::t2Bcc : ARM::Bcc;
Eric Christopherbcf26ae2011-04-29 20:02:39 +00001268 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(BrOpc))
1269 .addMBB(TBB).addImm(CCMode).addReg(ARM::CPSR);
1270
1271 FastEmitBranch(FBB, DL);
1272 FuncInfo.MBB->addSuccessor(TBB);
1273 return true;
1274 }
Chad Rosier6d64b3a2011-10-27 00:21:16 +00001275 } else if (const ConstantInt *CI =
1276 dyn_cast<ConstantInt>(BI->getCondition())) {
1277 uint64_t Imm = CI->getZExtValue();
1278 MachineBasicBlock *Target = (Imm == 0) ? FBB : TBB;
1279 FastEmitBranch(Target, DL);
1280 return true;
Eric Christopher0e6233b2010-10-29 21:08:19 +00001281 }
Jim Grosbach16cb3762010-11-09 19:22:26 +00001282
Eric Christopher0e6233b2010-10-29 21:08:19 +00001283 unsigned CmpReg = getRegForValue(BI->getCondition());
1284 if (CmpReg == 0) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001285
Stuart Hastingsc5eecbc2011-04-16 03:31:26 +00001286 // We've been divorced from our compare! Our block was split, and
1287 // now our compare lives in a predecessor block. We musn't
1288 // re-compare here, as the children of the compare aren't guaranteed
1289 // live across the block boundary (we *could* check for this).
1290 // Regardless, the compare has been done in the predecessor block,
1291 // and it left a value for us in a virtual register. Ergo, we test
1292 // the one-bit value left in the virtual register.
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001293 unsigned TstOpc = isThumb2 ? ARM::t2TSTri : ARM::TSTri;
Stuart Hastingsc5eecbc2011-04-16 03:31:26 +00001294 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TstOpc))
1295 .addReg(CmpReg).addImm(1));
Eric Christopherdccd2c32010-10-11 08:38:55 +00001296
Eric Christopher7a20a372011-04-28 16:52:09 +00001297 unsigned CCMode = ARMCC::NE;
1298 if (FuncInfo.MBB->isLayoutSuccessor(TBB)) {
1299 std::swap(TBB, FBB);
1300 CCMode = ARMCC::EQ;
1301 }
1302
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001303 unsigned BrOpc = isThumb2 ? ARM::t2Bcc : ARM::Bcc;
Eric Christophere5734102010-09-03 00:35:47 +00001304 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(BrOpc))
Eric Christopher7a20a372011-04-28 16:52:09 +00001305 .addMBB(TBB).addImm(CCMode).addReg(ARM::CPSR);
Eric Christophere5734102010-09-03 00:35:47 +00001306 FastEmitBranch(FBB, DL);
1307 FuncInfo.MBB->addSuccessor(TBB);
Eric Christopherdccd2c32010-10-11 08:38:55 +00001308 return true;
Eric Christophere5734102010-09-03 00:35:47 +00001309}
1310
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001311bool ARMFastISel::ARMEmitCmp(const Value *Src1Value, const Value *Src2Value,
1312 bool isZExt) {
Chad Rosierade62002011-10-26 23:25:44 +00001313 Type *Ty = Src1Value->getType();
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001314 EVT SrcVT = TLI.getValueType(Ty, true);
1315 if (!SrcVT.isSimple()) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001316
Chad Rosierade62002011-10-26 23:25:44 +00001317 bool isFloat = (Ty->isFloatTy() || Ty->isDoubleTy());
1318 if (isFloat && !Subtarget->hasVFP2())
Eric Christopherd43393a2010-09-08 23:13:45 +00001319 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001320
Chad Rosier2f2fe412011-11-09 03:22:02 +00001321 // Check to see if the 2nd operand is a constant that we can encode directly
1322 // in the compare.
Chad Rosier1c47de82011-11-11 06:27:41 +00001323 int Imm = 0;
1324 bool UseImm = false;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001325 bool isNegativeImm = false;
Chad Rosierf56c60b2011-11-16 00:32:20 +00001326 // FIXME: At -O0 we don't have anything that canonicalizes operand order.
1327 // Thus, Src1Value may be a ConstantInt, but we're missing it.
Chad Rosier2f2fe412011-11-09 03:22:02 +00001328 if (const ConstantInt *ConstInt = dyn_cast<ConstantInt>(Src2Value)) {
1329 if (SrcVT == MVT::i32 || SrcVT == MVT::i16 || SrcVT == MVT::i8 ||
1330 SrcVT == MVT::i1) {
1331 const APInt &CIVal = ConstInt->getValue();
Chad Rosier1c47de82011-11-11 06:27:41 +00001332 Imm = (isZExt) ? (int)CIVal.getZExtValue() : (int)CIVal.getSExtValue();
1333 if (Imm < 0) {
Chad Rosier6cba97c2011-11-10 01:30:39 +00001334 isNegativeImm = true;
Chad Rosier1c47de82011-11-11 06:27:41 +00001335 Imm = -Imm;
Chad Rosier6cba97c2011-11-10 01:30:39 +00001336 }
Chad Rosier1c47de82011-11-11 06:27:41 +00001337 UseImm = isThumb2 ? (ARM_AM::getT2SOImmVal(Imm) != -1) :
1338 (ARM_AM::getSOImmVal(Imm) != -1);
Chad Rosier2f2fe412011-11-09 03:22:02 +00001339 }
1340 } else if (const ConstantFP *ConstFP = dyn_cast<ConstantFP>(Src2Value)) {
1341 if (SrcVT == MVT::f32 || SrcVT == MVT::f64)
1342 if (ConstFP->isZero() && !ConstFP->isNegative())
Chad Rosier1c47de82011-11-11 06:27:41 +00001343 UseImm = true;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001344 }
1345
Eric Christopherd43393a2010-09-08 23:13:45 +00001346 unsigned CmpOpc;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001347 bool isICmp = true;
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001348 bool needsExt = false;
1349 switch (SrcVT.getSimpleVT().SimpleTy) {
Eric Christopherd43393a2010-09-08 23:13:45 +00001350 default: return false;
1351 // TODO: Verify compares.
1352 case MVT::f32:
Chad Rosier2f2fe412011-11-09 03:22:02 +00001353 isICmp = false;
Chad Rosier1c47de82011-11-11 06:27:41 +00001354 CmpOpc = UseImm ? ARM::VCMPEZS : ARM::VCMPES;
Eric Christopherd43393a2010-09-08 23:13:45 +00001355 break;
1356 case MVT::f64:
Chad Rosier2f2fe412011-11-09 03:22:02 +00001357 isICmp = false;
Chad Rosier1c47de82011-11-11 06:27:41 +00001358 CmpOpc = UseImm ? ARM::VCMPEZD : ARM::VCMPED;
Eric Christopherd43393a2010-09-08 23:13:45 +00001359 break;
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001360 case MVT::i1:
1361 case MVT::i8:
1362 case MVT::i16:
1363 needsExt = true;
1364 // Intentional fall-through.
Eric Christopherd43393a2010-09-08 23:13:45 +00001365 case MVT::i32:
Chad Rosier2f2fe412011-11-09 03:22:02 +00001366 if (isThumb2) {
Chad Rosier1c47de82011-11-11 06:27:41 +00001367 if (!UseImm)
Chad Rosier2f2fe412011-11-09 03:22:02 +00001368 CmpOpc = ARM::t2CMPrr;
1369 else
1370 CmpOpc = isNegativeImm ? ARM::t2CMNzri : ARM::t2CMPri;
1371 } else {
Chad Rosier1c47de82011-11-11 06:27:41 +00001372 if (!UseImm)
Chad Rosier2f2fe412011-11-09 03:22:02 +00001373 CmpOpc = ARM::CMPrr;
1374 else
1375 CmpOpc = isNegativeImm ? ARM::CMNzri : ARM::CMPri;
1376 }
Eric Christopherd43393a2010-09-08 23:13:45 +00001377 break;
1378 }
1379
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001380 unsigned SrcReg1 = getRegForValue(Src1Value);
1381 if (SrcReg1 == 0) return false;
Chad Rosier530f7ce2011-10-26 22:47:55 +00001382
Duncan Sands4c0c5452011-11-28 10:31:27 +00001383 unsigned SrcReg2 = 0;
Chad Rosier1c47de82011-11-11 06:27:41 +00001384 if (!UseImm) {
Chad Rosier2f2fe412011-11-09 03:22:02 +00001385 SrcReg2 = getRegForValue(Src2Value);
1386 if (SrcReg2 == 0) return false;
1387 }
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001388
1389 // We have i1, i8, or i16, we need to either zero extend or sign extend.
1390 if (needsExt) {
1391 unsigned ResultReg;
Chad Rosier2f2fe412011-11-09 03:22:02 +00001392 ResultReg = ARMEmitIntExt(SrcVT, SrcReg1, MVT::i32, isZExt);
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001393 if (ResultReg == 0) return false;
1394 SrcReg1 = ResultReg;
Chad Rosier1c47de82011-11-11 06:27:41 +00001395 if (!UseImm) {
Chad Rosier2f2fe412011-11-09 03:22:02 +00001396 ResultReg = ARMEmitIntExt(SrcVT, SrcReg2, MVT::i32, isZExt);
1397 if (ResultReg == 0) return false;
1398 SrcReg2 = ResultReg;
1399 }
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001400 }
Chad Rosier530f7ce2011-10-26 22:47:55 +00001401
Chad Rosier1c47de82011-11-11 06:27:41 +00001402 if (!UseImm) {
Chad Rosier2f2fe412011-11-09 03:22:02 +00001403 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1404 TII.get(CmpOpc))
1405 .addReg(SrcReg1).addReg(SrcReg2));
1406 } else {
1407 MachineInstrBuilder MIB;
1408 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(CmpOpc))
1409 .addReg(SrcReg1);
1410
1411 // Only add immediate for icmp as the immediate for fcmp is an implicit 0.0.
1412 if (isICmp)
Chad Rosier1c47de82011-11-11 06:27:41 +00001413 MIB.addImm(Imm);
Chad Rosier2f2fe412011-11-09 03:22:02 +00001414 AddOptionalDefs(MIB);
1415 }
Chad Rosierade62002011-10-26 23:25:44 +00001416
1417 // For floating point we need to move the result to a comparison register
1418 // that we can then use for branches.
1419 if (Ty->isFloatTy() || Ty->isDoubleTy())
1420 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1421 TII.get(ARM::FMSTAT)));
Chad Rosier530f7ce2011-10-26 22:47:55 +00001422 return true;
1423}
1424
1425bool ARMFastISel::SelectCmp(const Instruction *I) {
1426 const CmpInst *CI = cast<CmpInst>(I);
Chad Rosierade62002011-10-26 23:25:44 +00001427 Type *Ty = CI->getOperand(0)->getType();
Chad Rosier530f7ce2011-10-26 22:47:55 +00001428
Eric Christopher229207a2010-09-29 01:14:47 +00001429 // Get the compare predicate.
1430 ARMCC::CondCodes ARMPred = getComparePred(CI->getPredicate());
Eric Christopherdccd2c32010-10-11 08:38:55 +00001431
Eric Christopher229207a2010-09-29 01:14:47 +00001432 // We may not handle every CC for now.
1433 if (ARMPred == ARMCC::AL) return false;
1434
Chad Rosier530f7ce2011-10-26 22:47:55 +00001435 // Emit the compare.
Chad Rosiere07cd5e2011-11-02 18:08:25 +00001436 if (!ARMEmitCmp(CI->getOperand(0), CI->getOperand(1), CI->isUnsigned()))
Chad Rosier530f7ce2011-10-26 22:47:55 +00001437 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001438
Eric Christopher229207a2010-09-29 01:14:47 +00001439 // Now set a register based on the comparison. Explicitly set the predicates
1440 // here.
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001441 unsigned MovCCOpc = isThumb2 ? ARM::t2MOVCCi : ARM::MOVCCi;
1442 TargetRegisterClass *RC = isThumb2 ? ARM::rGPRRegisterClass
Eric Christopher5d18d922010-10-07 05:39:19 +00001443 : ARM::GPRRegisterClass;
1444 unsigned DestReg = createResultReg(RC);
Chad Rosierade62002011-10-26 23:25:44 +00001445 Constant *Zero = ConstantInt::get(Type::getInt32Ty(*Context), 0);
Eric Christopher229207a2010-09-29 01:14:47 +00001446 unsigned ZeroReg = TargetMaterializeConstant(Zero);
Chad Rosierade62002011-10-26 23:25:44 +00001447 bool isFloat = (Ty->isFloatTy() || Ty->isDoubleTy());
Chad Rosier530f7ce2011-10-26 22:47:55 +00001448 unsigned CondReg = isFloat ? ARM::FPSCR : ARM::CPSR;
Eric Christopher229207a2010-09-29 01:14:47 +00001449 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(MovCCOpc), DestReg)
1450 .addReg(ZeroReg).addImm(1)
1451 .addImm(ARMPred).addReg(CondReg);
1452
Eric Christophera5b1e682010-09-17 22:28:18 +00001453 UpdateValueMap(I, DestReg);
Eric Christopherd43393a2010-09-08 23:13:45 +00001454 return true;
1455}
1456
Eric Christopher43b62be2010-09-27 06:02:23 +00001457bool ARMFastISel::SelectFPExt(const Instruction *I) {
Eric Christopher46203602010-09-09 00:26:48 +00001458 // Make sure we have VFP and that we're extending float to double.
1459 if (!Subtarget->hasVFP2()) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001460
Eric Christopher46203602010-09-09 00:26:48 +00001461 Value *V = I->getOperand(0);
1462 if (!I->getType()->isDoubleTy() ||
1463 !V->getType()->isFloatTy()) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001464
Eric Christopher46203602010-09-09 00:26:48 +00001465 unsigned Op = getRegForValue(V);
1466 if (Op == 0) return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001467
Eric Christopher46203602010-09-09 00:26:48 +00001468 unsigned Result = createResultReg(ARM::DPRRegisterClass);
Eric Christopherac1a19e2010-09-09 01:06:51 +00001469 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopheref2fdd22010-09-09 20:36:19 +00001470 TII.get(ARM::VCVTDS), Result)
Eric Christopherce07b542010-09-09 20:26:31 +00001471 .addReg(Op));
1472 UpdateValueMap(I, Result);
1473 return true;
1474}
1475
Eric Christopher43b62be2010-09-27 06:02:23 +00001476bool ARMFastISel::SelectFPTrunc(const Instruction *I) {
Eric Christopherce07b542010-09-09 20:26:31 +00001477 // Make sure we have VFP and that we're truncating double to float.
1478 if (!Subtarget->hasVFP2()) return false;
1479
1480 Value *V = I->getOperand(0);
Eric Christopher022b7fb2010-10-05 23:13:24 +00001481 if (!(I->getType()->isFloatTy() &&
1482 V->getType()->isDoubleTy())) return false;
Eric Christopherce07b542010-09-09 20:26:31 +00001483
1484 unsigned Op = getRegForValue(V);
1485 if (Op == 0) return false;
1486
1487 unsigned Result = createResultReg(ARM::SPRRegisterClass);
Eric Christopherce07b542010-09-09 20:26:31 +00001488 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Eric Christopheref2fdd22010-09-09 20:36:19 +00001489 TII.get(ARM::VCVTSD), Result)
Eric Christopher46203602010-09-09 00:26:48 +00001490 .addReg(Op));
1491 UpdateValueMap(I, Result);
1492 return true;
1493}
1494
Eric Christopher43b62be2010-09-27 06:02:23 +00001495bool ARMFastISel::SelectSIToFP(const Instruction *I) {
Eric Christopher9a040492010-09-09 18:54:59 +00001496 // Make sure we have VFP.
1497 if (!Subtarget->hasVFP2()) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001498
Duncan Sands1440e8b2010-11-03 11:35:31 +00001499 MVT DstVT;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001500 Type *Ty = I->getType();
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001501 if (!isTypeLegal(Ty, DstVT))
Eric Christopher9a040492010-09-09 18:54:59 +00001502 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001503
Chad Rosier463fe242011-11-03 02:04:59 +00001504 Value *Src = I->getOperand(0);
1505 EVT SrcVT = TLI.getValueType(Src->getType(), true);
1506 if (SrcVT != MVT::i32 && SrcVT != MVT::i16 && SrcVT != MVT::i8)
Eli Friedman783c6642011-05-25 19:09:45 +00001507 return false;
1508
Chad Rosier463fe242011-11-03 02:04:59 +00001509 unsigned SrcReg = getRegForValue(Src);
1510 if (SrcReg == 0) return false;
1511
1512 // Handle sign-extension.
1513 if (SrcVT == MVT::i16 || SrcVT == MVT::i8) {
1514 EVT DestVT = MVT::i32;
1515 unsigned ResultReg = ARMEmitIntExt(SrcVT, SrcReg, DestVT, /*isZExt*/ false);
1516 if (ResultReg == 0) return false;
1517 SrcReg = ResultReg;
1518 }
Eric Christopherdccd2c32010-10-11 08:38:55 +00001519
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001520 // The conversion routine works on fp-reg to fp-reg and the operand above
1521 // was an integer, move it to the fp registers if possible.
Chad Rosier463fe242011-11-03 02:04:59 +00001522 unsigned FP = ARMMoveToFPReg(MVT::f32, SrcReg);
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001523 if (FP == 0) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001524
Eric Christopher9a040492010-09-09 18:54:59 +00001525 unsigned Opc;
1526 if (Ty->isFloatTy()) Opc = ARM::VSITOS;
1527 else if (Ty->isDoubleTy()) Opc = ARM::VSITOD;
Chad Rosierdd1e7512011-08-31 23:49:05 +00001528 else return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001529
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001530 unsigned ResultReg = createResultReg(TLI.getRegClassFor(DstVT));
Eric Christopher9a040492010-09-09 18:54:59 +00001531 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
1532 ResultReg)
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001533 .addReg(FP));
Eric Christopherce07b542010-09-09 20:26:31 +00001534 UpdateValueMap(I, ResultReg);
Eric Christopher9a040492010-09-09 18:54:59 +00001535 return true;
1536}
1537
Eric Christopher43b62be2010-09-27 06:02:23 +00001538bool ARMFastISel::SelectFPToSI(const Instruction *I) {
Eric Christopher9a040492010-09-09 18:54:59 +00001539 // Make sure we have VFP.
1540 if (!Subtarget->hasVFP2()) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001541
Duncan Sands1440e8b2010-11-03 11:35:31 +00001542 MVT DstVT;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001543 Type *RetTy = I->getType();
Eric Christopher920a2082010-09-10 00:35:09 +00001544 if (!isTypeLegal(RetTy, DstVT))
Eric Christopher9a040492010-09-09 18:54:59 +00001545 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001546
Eric Christopher9a040492010-09-09 18:54:59 +00001547 unsigned Op = getRegForValue(I->getOperand(0));
1548 if (Op == 0) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001549
Eric Christopher9a040492010-09-09 18:54:59 +00001550 unsigned Opc;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001551 Type *OpTy = I->getOperand(0)->getType();
Eric Christopher9a040492010-09-09 18:54:59 +00001552 if (OpTy->isFloatTy()) Opc = ARM::VTOSIZS;
1553 else if (OpTy->isDoubleTy()) Opc = ARM::VTOSIZD;
Chad Rosierdd1e7512011-08-31 23:49:05 +00001554 else return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001555
Eric Christopher022b7fb2010-10-05 23:13:24 +00001556 // f64->s32 or f32->s32 both need an intermediate f32 reg.
1557 unsigned ResultReg = createResultReg(TLI.getRegClassFor(MVT::f32));
Eric Christopher9a040492010-09-09 18:54:59 +00001558 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc),
1559 ResultReg)
1560 .addReg(Op));
Eric Christopherdccd2c32010-10-11 08:38:55 +00001561
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001562 // This result needs to be in an integer register, but the conversion only
1563 // takes place in fp-regs.
Eric Christopherdb12b2b2010-09-10 00:34:35 +00001564 unsigned IntReg = ARMMoveToIntReg(DstVT, ResultReg);
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001565 if (IntReg == 0) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00001566
Eric Christopher9ee4ce22010-09-09 21:44:45 +00001567 UpdateValueMap(I, IntReg);
Eric Christopher9a040492010-09-09 18:54:59 +00001568 return true;
1569}
1570
Eric Christopher3bbd3962010-10-11 08:27:59 +00001571bool ARMFastISel::SelectSelect(const Instruction *I) {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001572 MVT VT;
1573 if (!isTypeLegal(I->getType(), VT))
Eric Christopher3bbd3962010-10-11 08:27:59 +00001574 return false;
1575
1576 // Things need to be register sized for register moves.
Duncan Sands1440e8b2010-11-03 11:35:31 +00001577 if (VT != MVT::i32) return false;
Eric Christopher3bbd3962010-10-11 08:27:59 +00001578 const TargetRegisterClass *RC = TLI.getRegClassFor(VT);
1579
1580 unsigned CondReg = getRegForValue(I->getOperand(0));
1581 if (CondReg == 0) return false;
1582 unsigned Op1Reg = getRegForValue(I->getOperand(1));
1583 if (Op1Reg == 0) return false;
Eric Christopher3bbd3962010-10-11 08:27:59 +00001584
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001585 // Check to see if we can use an immediate in the conditional move.
1586 int Imm = 0;
1587 bool UseImm = false;
1588 bool isNegativeImm = false;
1589 if (const ConstantInt *ConstInt = dyn_cast<ConstantInt>(I->getOperand(2))) {
1590 assert (VT == MVT::i32 && "Expecting an i32.");
1591 Imm = (int)ConstInt->getValue().getZExtValue();
1592 if (Imm < 0) {
1593 isNegativeImm = true;
1594 Imm = ~Imm;
1595 }
1596 UseImm = isThumb2 ? (ARM_AM::getT2SOImmVal(Imm) != -1) :
1597 (ARM_AM::getSOImmVal(Imm) != -1);
1598 }
1599
Duncan Sands4c0c5452011-11-28 10:31:27 +00001600 unsigned Op2Reg = 0;
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001601 if (!UseImm) {
1602 Op2Reg = getRegForValue(I->getOperand(2));
1603 if (Op2Reg == 0) return false;
1604 }
1605
1606 unsigned CmpOpc = isThumb2 ? ARM::t2CMPri : ARM::CMPri;
Eric Christopher3bbd3962010-10-11 08:27:59 +00001607 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(CmpOpc))
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001608 .addReg(CondReg).addImm(0));
1609
1610 unsigned MovCCOpc;
1611 if (!UseImm) {
1612 MovCCOpc = isThumb2 ? ARM::t2MOVCCr : ARM::MOVCCr;
1613 } else {
1614 if (!isNegativeImm) {
1615 MovCCOpc = isThumb2 ? ARM::t2MOVCCi : ARM::MOVCCi;
1616 } else {
1617 MovCCOpc = isThumb2 ? ARM::t2MVNCCi : ARM::MVNCCi;
1618 }
1619 }
Eric Christopher3bbd3962010-10-11 08:27:59 +00001620 unsigned ResultReg = createResultReg(RC);
Chad Rosiera07d3fc2011-11-11 06:20:39 +00001621 if (!UseImm)
1622 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(MovCCOpc), ResultReg)
1623 .addReg(Op2Reg).addReg(Op1Reg).addImm(ARMCC::NE).addReg(ARM::CPSR);
1624 else
1625 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(MovCCOpc), ResultReg)
1626 .addReg(Op1Reg).addImm(Imm).addImm(ARMCC::EQ).addReg(ARM::CPSR);
Eric Christopher3bbd3962010-10-11 08:27:59 +00001627 UpdateValueMap(I, ResultReg);
1628 return true;
1629}
1630
Eric Christopher08637852010-09-30 22:34:19 +00001631bool ARMFastISel::SelectSDiv(const Instruction *I) {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001632 MVT VT;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001633 Type *Ty = I->getType();
Eric Christopher08637852010-09-30 22:34:19 +00001634 if (!isTypeLegal(Ty, VT))
1635 return false;
1636
1637 // If we have integer div support we should have selected this automagically.
1638 // In case we have a real miss go ahead and return false and we'll pick
1639 // it up later.
Eric Christopherdccd2c32010-10-11 08:38:55 +00001640 if (Subtarget->hasDivide()) return false;
1641
Eric Christopher08637852010-09-30 22:34:19 +00001642 // Otherwise emit a libcall.
1643 RTLIB::Libcall LC = RTLIB::UNKNOWN_LIBCALL;
Eric Christopher7bdc4de2010-10-11 08:31:54 +00001644 if (VT == MVT::i8)
1645 LC = RTLIB::SDIV_I8;
1646 else if (VT == MVT::i16)
Eric Christopher08637852010-09-30 22:34:19 +00001647 LC = RTLIB::SDIV_I16;
1648 else if (VT == MVT::i32)
1649 LC = RTLIB::SDIV_I32;
1650 else if (VT == MVT::i64)
1651 LC = RTLIB::SDIV_I64;
1652 else if (VT == MVT::i128)
1653 LC = RTLIB::SDIV_I128;
1654 assert(LC != RTLIB::UNKNOWN_LIBCALL && "Unsupported SDIV!");
Eric Christopherdccd2c32010-10-11 08:38:55 +00001655
Eric Christopher08637852010-09-30 22:34:19 +00001656 return ARMEmitLibcall(I, LC);
1657}
1658
Eric Christopher6a880d62010-10-11 08:37:26 +00001659bool ARMFastISel::SelectSRem(const Instruction *I) {
Duncan Sands1440e8b2010-11-03 11:35:31 +00001660 MVT VT;
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001661 Type *Ty = I->getType();
Eric Christopher6a880d62010-10-11 08:37:26 +00001662 if (!isTypeLegal(Ty, VT))
1663 return false;
1664
1665 RTLIB::Libcall LC = RTLIB::UNKNOWN_LIBCALL;
1666 if (VT == MVT::i8)
1667 LC = RTLIB::SREM_I8;
1668 else if (VT == MVT::i16)
1669 LC = RTLIB::SREM_I16;
1670 else if (VT == MVT::i32)
1671 LC = RTLIB::SREM_I32;
1672 else if (VT == MVT::i64)
1673 LC = RTLIB::SREM_I64;
1674 else if (VT == MVT::i128)
1675 LC = RTLIB::SREM_I128;
Eric Christophera1640d92010-10-11 08:40:05 +00001676 assert(LC != RTLIB::UNKNOWN_LIBCALL && "Unsupported SREM!");
Eric Christopher2896df82010-10-15 18:02:07 +00001677
Eric Christopher6a880d62010-10-11 08:37:26 +00001678 return ARMEmitLibcall(I, LC);
1679}
1680
Eric Christopher43b62be2010-09-27 06:02:23 +00001681bool ARMFastISel::SelectBinaryOp(const Instruction *I, unsigned ISDOpcode) {
Eric Christopherbd6bf082010-09-09 01:02:03 +00001682 EVT VT = TLI.getValueType(I->getType(), true);
Eric Christopherac1a19e2010-09-09 01:06:51 +00001683
Eric Christopherbc39b822010-09-09 00:53:57 +00001684 // We can get here in the case when we want to use NEON for our fp
1685 // operations, but can't figure out how to. Just use the vfp instructions
1686 // if we have them.
1687 // FIXME: It'd be nice to use NEON instructions.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001688 Type *Ty = I->getType();
Eric Christopherbd6bf082010-09-09 01:02:03 +00001689 bool isFloat = (Ty->isDoubleTy() || Ty->isFloatTy());
1690 if (isFloat && !Subtarget->hasVFP2())
1691 return false;
Eric Christopherac1a19e2010-09-09 01:06:51 +00001692
Eric Christopherbc39b822010-09-09 00:53:57 +00001693 unsigned Opc;
Duncan Sandscdfad362010-11-03 12:17:33 +00001694 bool is64bit = VT == MVT::f64 || VT == MVT::i64;
Eric Christopherbc39b822010-09-09 00:53:57 +00001695 switch (ISDOpcode) {
1696 default: return false;
1697 case ISD::FADD:
Eric Christopherbd6bf082010-09-09 01:02:03 +00001698 Opc = is64bit ? ARM::VADDD : ARM::VADDS;
Eric Christopherbc39b822010-09-09 00:53:57 +00001699 break;
1700 case ISD::FSUB:
Eric Christopherbd6bf082010-09-09 01:02:03 +00001701 Opc = is64bit ? ARM::VSUBD : ARM::VSUBS;
Eric Christopherbc39b822010-09-09 00:53:57 +00001702 break;
1703 case ISD::FMUL:
Eric Christopherbd6bf082010-09-09 01:02:03 +00001704 Opc = is64bit ? ARM::VMULD : ARM::VMULS;
Eric Christopherbc39b822010-09-09 00:53:57 +00001705 break;
1706 }
Chad Rosier508a1f42011-11-16 18:39:44 +00001707 unsigned Op1 = getRegForValue(I->getOperand(0));
1708 if (Op1 == 0) return false;
1709
1710 unsigned Op2 = getRegForValue(I->getOperand(1));
1711 if (Op2 == 0) return false;
1712
Eric Christopherbd6bf082010-09-09 01:02:03 +00001713 unsigned ResultReg = createResultReg(TLI.getRegClassFor(VT));
Eric Christopherbc39b822010-09-09 00:53:57 +00001714 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1715 TII.get(Opc), ResultReg)
1716 .addReg(Op1).addReg(Op2));
Eric Christopherce07b542010-09-09 20:26:31 +00001717 UpdateValueMap(I, ResultReg);
Eric Christopherbc39b822010-09-09 00:53:57 +00001718 return true;
1719}
1720
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001721// Call Handling Code
1722
1723// This is largely taken directly from CCAssignFnForNode - we don't support
1724// varargs in FastISel so that part has been removed.
1725// TODO: We may not support all of this.
1726CCAssignFn *ARMFastISel::CCAssignFnForCall(CallingConv::ID CC, bool Return) {
1727 switch (CC) {
1728 default:
1729 llvm_unreachable("Unsupported calling convention");
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001730 case CallingConv::Fast:
Evan Cheng1f8b40d2010-10-22 18:57:05 +00001731 // Ignore fastcc. Silence compiler warnings.
1732 (void)RetFastCC_ARM_APCS;
1733 (void)FastCC_ARM_APCS;
1734 // Fallthrough
1735 case CallingConv::C:
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001736 // Use target triple & subtarget features to do actual dispatch.
1737 if (Subtarget->isAAPCS_ABI()) {
1738 if (Subtarget->hasVFP2() &&
Nick Lewycky8a8d4792011-12-02 22:16:29 +00001739 TM.Options.FloatABIType == FloatABI::Hard)
Eric Christopherd10cd7b2010-09-10 23:18:12 +00001740 return (Return ? RetCC_ARM_AAPCS_VFP: CC_ARM_AAPCS_VFP);
1741 else
1742 return (Return ? RetCC_ARM_AAPCS: CC_ARM_AAPCS);
1743 } else
1744 return (Return ? RetCC_ARM_APCS: CC_ARM_APCS);
1745 case CallingConv::ARM_AAPCS_VFP:
1746 return (Return ? RetCC_ARM_AAPCS_VFP: CC_ARM_AAPCS_VFP);
1747 case CallingConv::ARM_AAPCS:
1748 return (Return ? RetCC_ARM_AAPCS: CC_ARM_AAPCS);
1749 case CallingConv::ARM_APCS:
1750 return (Return ? RetCC_ARM_APCS: CC_ARM_APCS);
1751 }
1752}
1753
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001754bool ARMFastISel::ProcessCallArgs(SmallVectorImpl<Value*> &Args,
1755 SmallVectorImpl<unsigned> &ArgRegs,
Duncan Sands1440e8b2010-11-03 11:35:31 +00001756 SmallVectorImpl<MVT> &ArgVTs,
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001757 SmallVectorImpl<ISD::ArgFlagsTy> &ArgFlags,
1758 SmallVectorImpl<unsigned> &RegArgs,
1759 CallingConv::ID CC,
1760 unsigned &NumBytes) {
1761 SmallVector<CCValAssign, 16> ArgLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00001762 CCState CCInfo(CC, false, *FuncInfo.MF, TM, ArgLocs, *Context);
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001763 CCInfo.AnalyzeCallOperands(ArgVTs, ArgFlags, CCAssignFnForCall(CC, false));
1764
1765 // Get a count of how many bytes are to be pushed on the stack.
1766 NumBytes = CCInfo.getNextStackOffset();
1767
1768 // Issue CALLSEQ_START
Evan Chengd5b03f22011-06-28 21:14:33 +00001769 unsigned AdjStackDown = TII.getCallFrameSetupOpcode();
Eric Christopherfb0b8922010-10-11 21:20:02 +00001770 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1771 TII.get(AdjStackDown))
1772 .addImm(NumBytes));
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001773
1774 // Process the args.
1775 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
1776 CCValAssign &VA = ArgLocs[i];
1777 unsigned Arg = ArgRegs[VA.getValNo()];
Duncan Sands1440e8b2010-11-03 11:35:31 +00001778 MVT ArgVT = ArgVTs[VA.getValNo()];
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001779
Eric Christopher4a2b3162011-01-27 05:44:56 +00001780 // We don't handle NEON/vector parameters yet.
1781 if (ArgVT.isVector() || ArgVT.getSizeInBits() > 64)
Eric Christophera4633f52010-10-23 09:37:17 +00001782 return false;
1783
Eric Christopherf9764fa2010-09-30 20:49:44 +00001784 // Handle arg promotion, etc.
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001785 switch (VA.getLocInfo()) {
1786 case CCValAssign::Full: break;
Eric Christopherfa87d662010-10-18 02:17:53 +00001787 case CCValAssign::SExt: {
Chad Rosierb74c8652011-12-02 20:25:18 +00001788 MVT DestVT = VA.getLocVT();
Chad Rosier42536af2011-11-05 20:16:15 +00001789 unsigned ResultReg = ARMEmitIntExt(ArgVT, Arg, DestVT,
1790 /*isZExt*/false);
1791 assert (ResultReg != 0 && "Failed to emit a sext");
1792 Arg = ResultReg;
Chad Rosierb74c8652011-12-02 20:25:18 +00001793 ArgVT = DestVT;
Eric Christopherfa87d662010-10-18 02:17:53 +00001794 break;
1795 }
Chad Rosier42536af2011-11-05 20:16:15 +00001796 case CCValAssign::AExt:
1797 // Intentional fall-through. Handle AExt and ZExt.
Eric Christopherfa87d662010-10-18 02:17:53 +00001798 case CCValAssign::ZExt: {
Chad Rosierb74c8652011-12-02 20:25:18 +00001799 MVT DestVT = VA.getLocVT();
Chad Rosier42536af2011-11-05 20:16:15 +00001800 unsigned ResultReg = ARMEmitIntExt(ArgVT, Arg, DestVT,
1801 /*isZExt*/true);
1802 assert (ResultReg != 0 && "Failed to emit a sext");
1803 Arg = ResultReg;
Chad Rosierb74c8652011-12-02 20:25:18 +00001804 ArgVT = DestVT;
Eric Christopherfa87d662010-10-18 02:17:53 +00001805 break;
1806 }
1807 case CCValAssign::BCvt: {
Wesley Peckbf17cfa2010-11-23 03:31:01 +00001808 unsigned BC = FastEmit_r(ArgVT, VA.getLocVT(), ISD::BITCAST, Arg,
Duncan Sands1440e8b2010-11-03 11:35:31 +00001809 /*TODO: Kill=*/false);
Eric Christopherfa87d662010-10-18 02:17:53 +00001810 assert(BC != 0 && "Failed to emit a bitcast!");
1811 Arg = BC;
1812 ArgVT = VA.getLocVT();
1813 break;
1814 }
1815 default: llvm_unreachable("Unknown arg promotion!");
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001816 }
1817
1818 // Now copy/store arg to correct locations.
Eric Christopherfb0b8922010-10-11 21:20:02 +00001819 if (VA.isRegLoc() && !VA.needsCustom()) {
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001820 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
Eric Christopherf9764fa2010-09-30 20:49:44 +00001821 VA.getLocReg())
Chad Rosier42536af2011-11-05 20:16:15 +00001822 .addReg(Arg);
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001823 RegArgs.push_back(VA.getLocReg());
Eric Christopher2d8f6fe2010-10-21 00:01:47 +00001824 } else if (VA.needsCustom()) {
1825 // TODO: We need custom lowering for vector (v2f64) args.
1826 if (VA.getLocVT() != MVT::f64) return false;
Jim Grosbach6b156392010-10-27 21:39:08 +00001827
Eric Christopher2d8f6fe2010-10-21 00:01:47 +00001828 CCValAssign &NextVA = ArgLocs[++i];
1829
1830 // TODO: Only handle register args for now.
1831 if(!(VA.isRegLoc() && NextVA.isRegLoc())) return false;
1832
1833 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1834 TII.get(ARM::VMOVRRD), VA.getLocReg())
1835 .addReg(NextVA.getLocReg(), RegState::Define)
1836 .addReg(Arg));
1837 RegArgs.push_back(VA.getLocReg());
1838 RegArgs.push_back(NextVA.getLocReg());
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001839 } else {
Eric Christopher5b924802010-10-21 20:09:54 +00001840 assert(VA.isMemLoc());
1841 // Need to store on the stack.
Eric Christopher0d581222010-11-19 22:30:02 +00001842 Address Addr;
1843 Addr.BaseType = Address::RegBase;
1844 Addr.Base.Reg = ARM::SP;
1845 Addr.Offset = VA.getLocMemOffset();
Eric Christopher5b924802010-10-21 20:09:54 +00001846
Eric Christopher0d581222010-11-19 22:30:02 +00001847 if (!ARMEmitStore(ArgVT, Arg, Addr)) return false;
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001848 }
1849 }
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001850 return true;
1851}
1852
Duncan Sands1440e8b2010-11-03 11:35:31 +00001853bool ARMFastISel::FinishCall(MVT RetVT, SmallVectorImpl<unsigned> &UsedRegs,
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001854 const Instruction *I, CallingConv::ID CC,
1855 unsigned &NumBytes) {
1856 // Issue CALLSEQ_END
Evan Chengd5b03f22011-06-28 21:14:33 +00001857 unsigned AdjStackUp = TII.getCallFrameDestroyOpcode();
Eric Christopherfb0b8922010-10-11 21:20:02 +00001858 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1859 TII.get(AdjStackUp))
1860 .addImm(NumBytes).addImm(0));
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001861
1862 // Now the return value.
Duncan Sands1440e8b2010-11-03 11:35:31 +00001863 if (RetVT != MVT::isVoid) {
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001864 SmallVector<CCValAssign, 16> RVLocs;
Eric Christopher471e4222011-06-08 23:55:35 +00001865 CCState CCInfo(CC, false, *FuncInfo.MF, TM, RVLocs, *Context);
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001866 CCInfo.AnalyzeCallResult(RetVT, CCAssignFnForCall(CC, true));
1867
1868 // Copy all of the result registers out of their specified physreg.
Duncan Sands1440e8b2010-11-03 11:35:31 +00001869 if (RVLocs.size() == 2 && RetVT == MVT::f64) {
Eric Christopher14df8822010-10-01 00:00:11 +00001870 // For this move we copy into two registers and then move into the
1871 // double fp reg we want.
Eric Christopher14df8822010-10-01 00:00:11 +00001872 EVT DestVT = RVLocs[0].getValVT();
1873 TargetRegisterClass* DstRC = TLI.getRegClassFor(DestVT);
1874 unsigned ResultReg = createResultReg(DstRC);
1875 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1876 TII.get(ARM::VMOVDRR), ResultReg)
Eric Christopher3659ac22010-10-20 08:02:24 +00001877 .addReg(RVLocs[0].getLocReg())
1878 .addReg(RVLocs[1].getLocReg()));
Eric Christopherdccd2c32010-10-11 08:38:55 +00001879
Eric Christopher3659ac22010-10-20 08:02:24 +00001880 UsedRegs.push_back(RVLocs[0].getLocReg());
1881 UsedRegs.push_back(RVLocs[1].getLocReg());
Jim Grosbach6b156392010-10-27 21:39:08 +00001882
Eric Christopherdccd2c32010-10-11 08:38:55 +00001883 // Finally update the result.
Eric Christopher14df8822010-10-01 00:00:11 +00001884 UpdateValueMap(I, ResultReg);
1885 } else {
Jim Grosbach95369592010-10-13 23:34:31 +00001886 assert(RVLocs.size() == 1 &&"Can't handle non-double multi-reg retvals!");
Eric Christopher14df8822010-10-01 00:00:11 +00001887 EVT CopyVT = RVLocs[0].getValVT();
Chad Rosier0eff39f2011-11-08 00:03:32 +00001888
1889 // Special handling for extended integers.
1890 if (RetVT == MVT::i1 || RetVT == MVT::i8 || RetVT == MVT::i16)
1891 CopyVT = MVT::i32;
1892
Eric Christopher14df8822010-10-01 00:00:11 +00001893 TargetRegisterClass* DstRC = TLI.getRegClassFor(CopyVT);
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001894
Eric Christopher14df8822010-10-01 00:00:11 +00001895 unsigned ResultReg = createResultReg(DstRC);
1896 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
1897 ResultReg).addReg(RVLocs[0].getLocReg());
1898 UsedRegs.push_back(RVLocs[0].getLocReg());
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001899
Eric Christopherdccd2c32010-10-11 08:38:55 +00001900 // Finally update the result.
Eric Christopher14df8822010-10-01 00:00:11 +00001901 UpdateValueMap(I, ResultReg);
1902 }
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001903 }
1904
Eric Christopherdccd2c32010-10-11 08:38:55 +00001905 return true;
Eric Christophera9a7a1a2010-09-29 23:11:09 +00001906}
1907
Eric Christopher4f512ef2010-10-22 01:28:00 +00001908bool ARMFastISel::SelectRet(const Instruction *I) {
1909 const ReturnInst *Ret = cast<ReturnInst>(I);
1910 const Function &F = *I->getParent()->getParent();
Jim Grosbach6b156392010-10-27 21:39:08 +00001911
Eric Christopher4f512ef2010-10-22 01:28:00 +00001912 if (!FuncInfo.CanLowerReturn)
1913 return false;
Jim Grosbach6b156392010-10-27 21:39:08 +00001914
Eric Christopher4f512ef2010-10-22 01:28:00 +00001915 if (F.isVarArg())
1916 return false;
1917
1918 CallingConv::ID CC = F.getCallingConv();
1919 if (Ret->getNumOperands() > 0) {
1920 SmallVector<ISD::OutputArg, 4> Outs;
1921 GetReturnInfo(F.getReturnType(), F.getAttributes().getRetAttributes(),
1922 Outs, TLI);
1923
1924 // Analyze operands of the call, assigning locations to each operand.
1925 SmallVector<CCValAssign, 16> ValLocs;
Jim Grosbachb04546f2011-09-13 20:30:37 +00001926 CCState CCInfo(CC, F.isVarArg(), *FuncInfo.MF, TM, ValLocs,I->getContext());
Eric Christopher4f512ef2010-10-22 01:28:00 +00001927 CCInfo.AnalyzeReturn(Outs, CCAssignFnForCall(CC, true /* is Ret */));
1928
1929 const Value *RV = Ret->getOperand(0);
1930 unsigned Reg = getRegForValue(RV);
1931 if (Reg == 0)
1932 return false;
1933
1934 // Only handle a single return value for now.
1935 if (ValLocs.size() != 1)
1936 return false;
1937
1938 CCValAssign &VA = ValLocs[0];
Jim Grosbach6b156392010-10-27 21:39:08 +00001939
Eric Christopher4f512ef2010-10-22 01:28:00 +00001940 // Don't bother handling odd stuff for now.
1941 if (VA.getLocInfo() != CCValAssign::Full)
1942 return false;
1943 // Only handle register returns for now.
1944 if (!VA.isRegLoc())
1945 return false;
Chad Rosierf470cbb2011-11-04 00:50:21 +00001946
1947 unsigned SrcReg = Reg + VA.getValNo();
1948 EVT RVVT = TLI.getValueType(RV->getType());
1949 EVT DestVT = VA.getValVT();
1950 // Special handling for extended integers.
1951 if (RVVT != DestVT) {
1952 if (RVVT != MVT::i1 && RVVT != MVT::i8 && RVVT != MVT::i16)
1953 return false;
1954
1955 if (!Outs[0].Flags.isZExt() && !Outs[0].Flags.isSExt())
1956 return false;
1957
1958 assert(DestVT == MVT::i32 && "ARM should always ext to i32");
1959
1960 bool isZExt = Outs[0].Flags.isZExt();
1961 unsigned ResultReg = ARMEmitIntExt(RVVT, SrcReg, DestVT, isZExt);
1962 if (ResultReg == 0) return false;
1963 SrcReg = ResultReg;
1964 }
Jim Grosbach6b156392010-10-27 21:39:08 +00001965
Eric Christopher4f512ef2010-10-22 01:28:00 +00001966 // Make the copy.
Eric Christopher4f512ef2010-10-22 01:28:00 +00001967 unsigned DstReg = VA.getLocReg();
1968 const TargetRegisterClass* SrcRC = MRI.getRegClass(SrcReg);
1969 // Avoid a cross-class copy. This is very unlikely.
1970 if (!SrcRC->contains(DstReg))
1971 return false;
1972 BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(TargetOpcode::COPY),
1973 DstReg).addReg(SrcReg);
1974
1975 // Mark the register as live out of the function.
1976 MRI.addLiveOut(VA.getLocReg());
1977 }
Jim Grosbach6b156392010-10-27 21:39:08 +00001978
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001979 unsigned RetOpc = isThumb2 ? ARM::tBX_RET : ARM::BX_RET;
Eric Christopher4f512ef2010-10-22 01:28:00 +00001980 AddOptionalDefs(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
1981 TII.get(RetOpc)));
1982 return true;
1983}
1984
Eric Christopher872f4a22011-02-22 01:37:10 +00001985unsigned ARMFastISel::ARMSelectCallOp(const GlobalValue *GV) {
1986
Eric Christopher872f4a22011-02-22 01:37:10 +00001987 // Darwin needs the r9 versions of the opcodes.
1988 bool isDarwin = Subtarget->isTargetDarwin();
Chad Rosier66dc8ca2011-11-08 21:12:00 +00001989 if (isThumb2) {
Eric Christopher872f4a22011-02-22 01:37:10 +00001990 return isDarwin ? ARM::tBLr9 : ARM::tBL;
1991 } else {
1992 return isDarwin ? ARM::BLr9 : ARM::BL;
1993 }
1994}
1995
Eric Christopherbb3e5da2010-09-14 23:03:37 +00001996// A quick function that will emit a call for a named libcall in F with the
1997// vector of passed arguments for the Instruction in I. We can assume that we
Eric Christopherdccd2c32010-10-11 08:38:55 +00001998// can emit a call for any libcall we can produce. This is an abridged version
1999// of the full call infrastructure since we won't need to worry about things
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002000// like computed function pointers or strange arguments at call sites.
2001// TODO: Try to unify this and the normal call bits for ARM, then try to unify
2002// with X86.
Eric Christopher7ed8ec92010-09-28 01:21:42 +00002003bool ARMFastISel::ARMEmitLibcall(const Instruction *I, RTLIB::Libcall Call) {
2004 CallingConv::ID CC = TLI.getLibcallCallingConv(Call);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002005
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002006 // Handle *simple* calls for now.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002007 Type *RetTy = I->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00002008 MVT RetVT;
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002009 if (RetTy->isVoidTy())
2010 RetVT = MVT::isVoid;
2011 else if (!isTypeLegal(RetTy, RetVT))
2012 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002013
Eric Christopher836c6242010-12-15 23:47:29 +00002014 // TODO: For now if we have long calls specified we don't handle the call.
2015 if (EnableARMLongCalls) return false;
2016
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002017 // Set up the argument vectors.
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002018 SmallVector<Value*, 8> Args;
2019 SmallVector<unsigned, 8> ArgRegs;
Duncan Sands1440e8b2010-11-03 11:35:31 +00002020 SmallVector<MVT, 8> ArgVTs;
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002021 SmallVector<ISD::ArgFlagsTy, 8> ArgFlags;
2022 Args.reserve(I->getNumOperands());
2023 ArgRegs.reserve(I->getNumOperands());
2024 ArgVTs.reserve(I->getNumOperands());
2025 ArgFlags.reserve(I->getNumOperands());
Eric Christopher7ed8ec92010-09-28 01:21:42 +00002026 for (unsigned i = 0; i < I->getNumOperands(); ++i) {
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002027 Value *Op = I->getOperand(i);
2028 unsigned Arg = getRegForValue(Op);
2029 if (Arg == 0) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002030
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002031 Type *ArgTy = Op->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00002032 MVT ArgVT;
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002033 if (!isTypeLegal(ArgTy, ArgVT)) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002034
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002035 ISD::ArgFlagsTy Flags;
2036 unsigned OriginalAlignment = TD.getABITypeAlignment(ArgTy);
2037 Flags.setOrigAlign(OriginalAlignment);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002038
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002039 Args.push_back(Op);
2040 ArgRegs.push_back(Arg);
2041 ArgVTs.push_back(ArgVT);
2042 ArgFlags.push_back(Flags);
2043 }
Eric Christopherdccd2c32010-10-11 08:38:55 +00002044
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002045 // Handle the arguments now that we've gotten them.
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002046 SmallVector<unsigned, 4> RegArgs;
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002047 unsigned NumBytes;
2048 if (!ProcessCallArgs(Args, ArgRegs, ArgVTs, ArgFlags, RegArgs, CC, NumBytes))
2049 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002050
Eric Christopher6344a5f2011-04-29 00:07:20 +00002051 // Issue the call, BLr9 for darwin, BL otherwise.
Eric Christopherdccd2c32010-10-11 08:38:55 +00002052 // TODO: Turn this into the table of arm call ops.
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002053 MachineInstrBuilder MIB;
Eric Christopher872f4a22011-02-22 01:37:10 +00002054 unsigned CallOpc = ARMSelectCallOp(NULL);
Chad Rosier66dc8ca2011-11-08 21:12:00 +00002055 if(isThumb2)
Eric Christopherc19aadb2010-12-21 03:50:43 +00002056 // Explicitly adding the predicate here.
2057 MIB = AddDefaultPred(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2058 TII.get(CallOpc)))
2059 .addExternalSymbol(TLI.getLibcallName(Call));
Eric Christopher872f4a22011-02-22 01:37:10 +00002060 else
Eric Christopherc19aadb2010-12-21 03:50:43 +00002061 // Explicitly adding the predicate here.
2062 MIB = AddDefaultPred(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2063 TII.get(CallOpc))
2064 .addExternalSymbol(TLI.getLibcallName(Call)));
Eric Christopherdccd2c32010-10-11 08:38:55 +00002065
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002066 // Add implicit physical register uses to the call.
2067 for (unsigned i = 0, e = RegArgs.size(); i != e; ++i)
2068 MIB.addReg(RegArgs[i]);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002069
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002070 // Finish off the call including any return values.
Eric Christopherdccd2c32010-10-11 08:38:55 +00002071 SmallVector<unsigned, 4> UsedRegs;
Eric Christophera9a7a1a2010-09-29 23:11:09 +00002072 if (!FinishCall(RetVT, UsedRegs, I, CC, NumBytes)) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002073
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002074 // Set all unused physreg defs as dead.
2075 static_cast<MachineInstr *>(MIB)->setPhysRegsDeadExcept(UsedRegs, TRI);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002076
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002077 return true;
2078}
2079
Chad Rosier11add262011-11-11 23:31:03 +00002080bool ARMFastISel::SelectCall(const Instruction *I,
2081 const char *IntrMemName = 0) {
Eric Christopherf9764fa2010-09-30 20:49:44 +00002082 const CallInst *CI = cast<CallInst>(I);
2083 const Value *Callee = CI->getCalledValue();
2084
Chad Rosier11add262011-11-11 23:31:03 +00002085 // Can't handle inline asm.
2086 if (isa<InlineAsm>(Callee)) return false;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002087
Eric Christopher52f6c032011-05-02 20:16:33 +00002088 // Only handle global variable Callees.
Eric Christopherf9764fa2010-09-30 20:49:44 +00002089 const GlobalValue *GV = dyn_cast<GlobalValue>(Callee);
Eric Christopher52f6c032011-05-02 20:16:33 +00002090 if (!GV)
Eric Christophere6ca6772010-10-01 21:33:12 +00002091 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002092
Eric Christopherf9764fa2010-09-30 20:49:44 +00002093 // Check the calling convention.
2094 ImmutableCallSite CS(CI);
2095 CallingConv::ID CC = CS.getCallingConv();
Eric Christopher4cf34c62010-10-18 06:49:12 +00002096
Eric Christopherf9764fa2010-09-30 20:49:44 +00002097 // TODO: Avoid some calling conventions?
Eric Christopherdccd2c32010-10-11 08:38:55 +00002098
Eric Christopherf9764fa2010-09-30 20:49:44 +00002099 // Let SDISel handle vararg functions.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002100 PointerType *PT = cast<PointerType>(CS.getCalledValue()->getType());
2101 FunctionType *FTy = cast<FunctionType>(PT->getElementType());
Eric Christopherf9764fa2010-09-30 20:49:44 +00002102 if (FTy->isVarArg())
2103 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002104
Eric Christopherf9764fa2010-09-30 20:49:44 +00002105 // Handle *simple* calls for now.
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002106 Type *RetTy = I->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00002107 MVT RetVT;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002108 if (RetTy->isVoidTy())
2109 RetVT = MVT::isVoid;
Chad Rosier0eff39f2011-11-08 00:03:32 +00002110 else if (!isTypeLegal(RetTy, RetVT) && RetVT != MVT::i16 &&
2111 RetVT != MVT::i8 && RetVT != MVT::i1)
Eric Christopherf9764fa2010-09-30 20:49:44 +00002112 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002113
Eric Christopher836c6242010-12-15 23:47:29 +00002114 // TODO: For now if we have long calls specified we don't handle the call.
2115 if (EnableARMLongCalls) return false;
Eric Christopher299bbb22011-04-29 00:03:10 +00002116
Eric Christopherf9764fa2010-09-30 20:49:44 +00002117 // Set up the argument vectors.
2118 SmallVector<Value*, 8> Args;
2119 SmallVector<unsigned, 8> ArgRegs;
Duncan Sands1440e8b2010-11-03 11:35:31 +00002120 SmallVector<MVT, 8> ArgVTs;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002121 SmallVector<ISD::ArgFlagsTy, 8> ArgFlags;
2122 Args.reserve(CS.arg_size());
2123 ArgRegs.reserve(CS.arg_size());
2124 ArgVTs.reserve(CS.arg_size());
2125 ArgFlags.reserve(CS.arg_size());
2126 for (ImmutableCallSite::arg_iterator i = CS.arg_begin(), e = CS.arg_end();
2127 i != e; ++i) {
Chad Rosier11add262011-11-11 23:31:03 +00002128 // If we're lowering a memory intrinsic instead of a regular call, skip the
2129 // last two arguments, which shouldn't be passed to the underlying function.
2130 if (IntrMemName && e-i <= 2)
2131 break;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002132
Eric Christopherf9764fa2010-09-30 20:49:44 +00002133 ISD::ArgFlagsTy Flags;
2134 unsigned AttrInd = i - CS.arg_begin() + 1;
2135 if (CS.paramHasAttr(AttrInd, Attribute::SExt))
2136 Flags.setSExt();
2137 if (CS.paramHasAttr(AttrInd, Attribute::ZExt))
2138 Flags.setZExt();
2139
Chad Rosier8e4a2e42011-11-04 00:58:10 +00002140 // FIXME: Only handle *easy* calls for now.
Eric Christopherf9764fa2010-09-30 20:49:44 +00002141 if (CS.paramHasAttr(AttrInd, Attribute::InReg) ||
2142 CS.paramHasAttr(AttrInd, Attribute::StructRet) ||
2143 CS.paramHasAttr(AttrInd, Attribute::Nest) ||
2144 CS.paramHasAttr(AttrInd, Attribute::ByVal))
2145 return false;
2146
Chris Lattnerdb125cf2011-07-18 04:54:35 +00002147 Type *ArgTy = (*i)->getType();
Duncan Sands1440e8b2010-11-03 11:35:31 +00002148 MVT ArgVT;
Chad Rosier42536af2011-11-05 20:16:15 +00002149 if (!isTypeLegal(ArgTy, ArgVT) && ArgVT != MVT::i16 && ArgVT != MVT::i8 &&
2150 ArgVT != MVT::i1)
Eric Christopherf9764fa2010-09-30 20:49:44 +00002151 return false;
Chad Rosier424fe0e2011-11-18 01:17:34 +00002152
2153 unsigned Arg = getRegForValue(*i);
2154 if (Arg == 0)
2155 return false;
2156
Eric Christopherf9764fa2010-09-30 20:49:44 +00002157 unsigned OriginalAlignment = TD.getABITypeAlignment(ArgTy);
2158 Flags.setOrigAlign(OriginalAlignment);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002159
Eric Christopherf9764fa2010-09-30 20:49:44 +00002160 Args.push_back(*i);
2161 ArgRegs.push_back(Arg);
2162 ArgVTs.push_back(ArgVT);
2163 ArgFlags.push_back(Flags);
2164 }
Eric Christopherdccd2c32010-10-11 08:38:55 +00002165
Eric Christopherf9764fa2010-09-30 20:49:44 +00002166 // Handle the arguments now that we've gotten them.
2167 SmallVector<unsigned, 4> RegArgs;
2168 unsigned NumBytes;
2169 if (!ProcessCallArgs(Args, ArgRegs, ArgVTs, ArgFlags, RegArgs, CC, NumBytes))
2170 return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002171
Eric Christopher6344a5f2011-04-29 00:07:20 +00002172 // Issue the call, BLr9 for darwin, BL otherwise.
Eric Christopherdccd2c32010-10-11 08:38:55 +00002173 // TODO: Turn this into the table of arm call ops.
Eric Christopherf9764fa2010-09-30 20:49:44 +00002174 MachineInstrBuilder MIB;
Eric Christopher872f4a22011-02-22 01:37:10 +00002175 unsigned CallOpc = ARMSelectCallOp(GV);
Eric Christopher7bb59962010-11-29 21:56:23 +00002176 // Explicitly adding the predicate here.
Chad Rosier9eb67482011-11-13 09:44:21 +00002177 if(isThumb2) {
Eric Christopherc19aadb2010-12-21 03:50:43 +00002178 // Explicitly adding the predicate here.
2179 MIB = AddDefaultPred(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
Chad Rosier11add262011-11-11 23:31:03 +00002180 TII.get(CallOpc)));
Chad Rosier9eb67482011-11-13 09:44:21 +00002181 if (!IntrMemName)
2182 MIB.addGlobalAddress(GV, 0, 0);
2183 else
2184 MIB.addExternalSymbol(IntrMemName, 0);
2185 } else {
2186 if (!IntrMemName)
2187 // Explicitly adding the predicate here.
2188 MIB = AddDefaultPred(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2189 TII.get(CallOpc))
2190 .addGlobalAddress(GV, 0, 0));
2191 else
2192 MIB = AddDefaultPred(BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL,
2193 TII.get(CallOpc))
2194 .addExternalSymbol(IntrMemName, 0));
2195 }
Chad Rosier11add262011-11-11 23:31:03 +00002196
Eric Christopherf9764fa2010-09-30 20:49:44 +00002197 // Add implicit physical register uses to the call.
2198 for (unsigned i = 0, e = RegArgs.size(); i != e; ++i)
2199 MIB.addReg(RegArgs[i]);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002200
Eric Christopherf9764fa2010-09-30 20:49:44 +00002201 // Finish off the call including any return values.
Eric Christopherdccd2c32010-10-11 08:38:55 +00002202 SmallVector<unsigned, 4> UsedRegs;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002203 if (!FinishCall(RetVT, UsedRegs, I, CC, NumBytes)) return false;
Eric Christopherdccd2c32010-10-11 08:38:55 +00002204
Eric Christopherf9764fa2010-09-30 20:49:44 +00002205 // Set all unused physreg defs as dead.
2206 static_cast<MachineInstr *>(MIB)->setPhysRegsDeadExcept(UsedRegs, TRI);
Eric Christopherdccd2c32010-10-11 08:38:55 +00002207
Eric Christopherf9764fa2010-09-30 20:49:44 +00002208 return true;
Eric Christopherf9764fa2010-09-30 20:49:44 +00002209}
2210
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002211bool ARMFastISel::ARMIsMemCpySmall(uint64_t Len) {
Chad Rosier909cb4f2011-11-14 22:46:17 +00002212 return Len <= 16;
2213}
2214
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002215bool ARMFastISel::ARMTryEmitSmallMemCpy(Address Dest, Address Src, uint64_t Len) {
Chad Rosier909cb4f2011-11-14 22:46:17 +00002216 // Make sure we don't bloat code by inlining very large memcpy's.
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002217 if (!ARMIsMemCpySmall(Len))
Chad Rosier909cb4f2011-11-14 22:46:17 +00002218 return false;
2219
2220 // We don't care about alignment here since we just emit integer accesses.
2221 while (Len) {
2222 MVT VT;
2223 if (Len >= 4)
2224 VT = MVT::i32;
2225 else if (Len >= 2)
2226 VT = MVT::i16;
2227 else {
2228 assert(Len == 1);
2229 VT = MVT::i8;
2230 }
2231
2232 bool RV;
2233 unsigned ResultReg;
2234 RV = ARMEmitLoad(VT, ResultReg, Src);
2235 assert (RV = true && "Should be able to handle this load.");
2236 RV = ARMEmitStore(VT, ResultReg, Dest);
2237 assert (RV = true && "Should be able to handle this store.");
2238
2239 unsigned Size = VT.getSizeInBits()/8;
2240 Len -= Size;
2241 Dest.Offset += Size;
2242 Src.Offset += Size;
2243 }
2244
2245 return true;
2246}
2247
Chad Rosier11add262011-11-11 23:31:03 +00002248bool ARMFastISel::SelectIntrinsicCall(const IntrinsicInst &I) {
2249 // FIXME: Handle more intrinsics.
2250 switch (I.getIntrinsicID()) {
2251 default: return false;
2252 case Intrinsic::memcpy:
2253 case Intrinsic::memmove: {
Chad Rosier11add262011-11-11 23:31:03 +00002254 const MemTransferInst &MTI = cast<MemTransferInst>(I);
2255 // Don't handle volatile.
2256 if (MTI.isVolatile())
2257 return false;
Chad Rosier909cb4f2011-11-14 22:46:17 +00002258
2259 // Disable inlining for memmove before calls to ComputeAddress. Otherwise,
2260 // we would emit dead code because we don't currently handle memmoves.
2261 bool isMemCpy = (I.getIntrinsicID() == Intrinsic::memcpy);
2262 if (isa<ConstantInt>(MTI.getLength()) && isMemCpy) {
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002263 // Small memcpy's are common enough that we want to do them without a call
2264 // if possible.
Chad Rosier909cb4f2011-11-14 22:46:17 +00002265 uint64_t Len = cast<ConstantInt>(MTI.getLength())->getZExtValue();
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002266 if (ARMIsMemCpySmall(Len)) {
Chad Rosier909cb4f2011-11-14 22:46:17 +00002267 Address Dest, Src;
2268 if (!ARMComputeAddress(MTI.getRawDest(), Dest) ||
2269 !ARMComputeAddress(MTI.getRawSource(), Src))
2270 return false;
Chad Rosier2c42b8c2011-11-14 23:04:09 +00002271 if (ARMTryEmitSmallMemCpy(Dest, Src, Len))
Chad Rosier909cb4f2011-11-14 22:46:17 +00002272 return true;
2273 }
2274 }
Chad Rosier11add262011-11-11 23:31:03 +00002275
2276 if (!MTI.getLength()->getType()->isIntegerTy(32))
2277 return false;
2278
2279 if (MTI.getSourceAddressSpace() > 255 || MTI.getDestAddressSpace() > 255)
2280 return false;
2281
2282 const char *IntrMemName = isa<MemCpyInst>(I) ? "memcpy" : "memmove";
2283 return SelectCall(&I, IntrMemName);
2284 }
2285 case Intrinsic::memset: {
2286 const MemSetInst &MSI = cast<MemSetInst>(I);
2287 // Don't handle volatile.
2288 if (MSI.isVolatile())
2289 return false;
2290
2291 if (!MSI.getLength()->getType()->isIntegerTy(32))
2292 return false;
2293
2294 if (MSI.getDestAddressSpace() > 255)
2295 return false;
2296
2297 return SelectCall(&I, "memset");
2298 }
2299 }
2300 return false;
2301}
2302
Chad Rosier0d7b2312011-11-02 00:18:48 +00002303bool ARMFastISel::SelectTrunc(const Instruction *I) {
2304 // The high bits for a type smaller than the register size are assumed to be
2305 // undefined.
2306 Value *Op = I->getOperand(0);
2307
2308 EVT SrcVT, DestVT;
2309 SrcVT = TLI.getValueType(Op->getType(), true);
2310 DestVT = TLI.getValueType(I->getType(), true);
2311
2312 if (SrcVT != MVT::i32 && SrcVT != MVT::i16 && SrcVT != MVT::i8)
2313 return false;
2314 if (DestVT != MVT::i16 && DestVT != MVT::i8 && DestVT != MVT::i1)
2315 return false;
2316
2317 unsigned SrcReg = getRegForValue(Op);
2318 if (!SrcReg) return false;
2319
2320 // Because the high bits are undefined, a truncate doesn't generate
2321 // any code.
2322 UpdateValueMap(I, SrcReg);
2323 return true;
2324}
2325
Chad Rosier87633022011-11-02 17:20:24 +00002326unsigned ARMFastISel::ARMEmitIntExt(EVT SrcVT, unsigned SrcReg, EVT DestVT,
2327 bool isZExt) {
Eli Friedman76927d732011-05-25 23:49:02 +00002328 if (DestVT != MVT::i32 && DestVT != MVT::i16 && DestVT != MVT::i8)
Chad Rosier87633022011-11-02 17:20:24 +00002329 return 0;
Eli Friedman76927d732011-05-25 23:49:02 +00002330
2331 unsigned Opc;
Eli Friedman76927d732011-05-25 23:49:02 +00002332 bool isBoolZext = false;
Chad Rosier87633022011-11-02 17:20:24 +00002333 if (!SrcVT.isSimple()) return 0;
Eli Friedman76927d732011-05-25 23:49:02 +00002334 switch (SrcVT.getSimpleVT().SimpleTy) {
Chad Rosier87633022011-11-02 17:20:24 +00002335 default: return 0;
Eli Friedman76927d732011-05-25 23:49:02 +00002336 case MVT::i16:
Chad Rosier87633022011-11-02 17:20:24 +00002337 if (!Subtarget->hasV6Ops()) return 0;
2338 if (isZExt)
Chad Rosier66dc8ca2011-11-08 21:12:00 +00002339 Opc = isThumb2 ? ARM::t2UXTH : ARM::UXTH;
Eli Friedman76927d732011-05-25 23:49:02 +00002340 else
Chad Rosier66dc8ca2011-11-08 21:12:00 +00002341 Opc = isThumb2 ? ARM::t2SXTH : ARM::SXTH;
Eli Friedman76927d732011-05-25 23:49:02 +00002342 break;
2343 case MVT::i8:
Chad Rosier87633022011-11-02 17:20:24 +00002344 if (!Subtarget->hasV6Ops()) return 0;
2345 if (isZExt)
Chad Rosier66dc8ca2011-11-08 21:12:00 +00002346 Opc = isThumb2 ? ARM::t2UXTB : ARM::UXTB;
Eli Friedman76927d732011-05-25 23:49:02 +00002347 else
Chad Rosier66dc8ca2011-11-08 21:12:00 +00002348 Opc = isThumb2 ? ARM::t2SXTB : ARM::SXTB;
Eli Friedman76927d732011-05-25 23:49:02 +00002349 break;
2350 case MVT::i1:
Chad Rosier87633022011-11-02 17:20:24 +00002351 if (isZExt) {
Chad Rosier66dc8ca2011-11-08 21:12:00 +00002352 Opc = isThumb2 ? ARM::t2ANDri : ARM::ANDri;
Eli Friedman76927d732011-05-25 23:49:02 +00002353 isBoolZext = true;
2354 break;
2355 }
Chad Rosier87633022011-11-02 17:20:24 +00002356 return 0;
Eli Friedman76927d732011-05-25 23:49:02 +00002357 }
2358
Chad Rosier87633022011-11-02 17:20:24 +00002359 unsigned ResultReg = createResultReg(TLI.getRegClassFor(MVT::i32));
Eli Friedman76927d732011-05-25 23:49:02 +00002360 MachineInstrBuilder MIB;
Chad Rosier87633022011-11-02 17:20:24 +00002361 MIB = BuildMI(*FuncInfo.MBB, FuncInfo.InsertPt, DL, TII.get(Opc), ResultReg)
Eli Friedman76927d732011-05-25 23:49:02 +00002362 .addReg(SrcReg);
2363 if (isBoolZext)
2364 MIB.addImm(1);
Jim Grosbachc5a8c862011-07-27 16:47:19 +00002365 else
2366 MIB.addImm(0);
Eli Friedman76927d732011-05-25 23:49:02 +00002367 AddOptionalDefs(MIB);
Chad Rosier87633022011-11-02 17:20:24 +00002368 return ResultReg;
2369}
2370
2371bool ARMFastISel::SelectIntExt(const Instruction *I) {
2372 // On ARM, in general, integer casts don't involve legal types; this code
2373 // handles promotable integers.
Chad Rosier87633022011-11-02 17:20:24 +00002374 Type *DestTy = I->getType();
2375 Value *Src = I->getOperand(0);
2376 Type *SrcTy = Src->getType();
2377
2378 EVT SrcVT, DestVT;
2379 SrcVT = TLI.getValueType(SrcTy, true);
2380 DestVT = TLI.getValueType(DestTy, true);
2381
2382 bool isZExt = isa<ZExtInst>(I);
2383 unsigned SrcReg = getRegForValue(Src);
2384 if (!SrcReg) return false;
2385
2386 unsigned ResultReg = ARMEmitIntExt(SrcVT, SrcReg, DestVT, isZExt);
2387 if (ResultReg == 0) return false;
2388 UpdateValueMap(I, ResultReg);
Eli Friedman76927d732011-05-25 23:49:02 +00002389 return true;
2390}
2391
Eric Christopher56d2b722010-09-02 23:43:26 +00002392// TODO: SoftFP support.
Eric Christopherab695882010-07-21 22:26:11 +00002393bool ARMFastISel::TargetSelectInstruction(const Instruction *I) {
Eric Christopherac1a19e2010-09-09 01:06:51 +00002394
Eric Christopherab695882010-07-21 22:26:11 +00002395 switch (I->getOpcode()) {
Eric Christopher83007122010-08-23 21:44:12 +00002396 case Instruction::Load:
Eric Christopher43b62be2010-09-27 06:02:23 +00002397 return SelectLoad(I);
Eric Christopher543cf052010-09-01 22:16:27 +00002398 case Instruction::Store:
Eric Christopher43b62be2010-09-27 06:02:23 +00002399 return SelectStore(I);
Eric Christophere5734102010-09-03 00:35:47 +00002400 case Instruction::Br:
Eric Christopher43b62be2010-09-27 06:02:23 +00002401 return SelectBranch(I);
Eric Christopherd43393a2010-09-08 23:13:45 +00002402 case Instruction::ICmp:
2403 case Instruction::FCmp:
Eric Christopher43b62be2010-09-27 06:02:23 +00002404 return SelectCmp(I);
Eric Christopher46203602010-09-09 00:26:48 +00002405 case Instruction::FPExt:
Eric Christopher43b62be2010-09-27 06:02:23 +00002406 return SelectFPExt(I);
Eric Christopherce07b542010-09-09 20:26:31 +00002407 case Instruction::FPTrunc:
Eric Christopher43b62be2010-09-27 06:02:23 +00002408 return SelectFPTrunc(I);
Eric Christopher9a040492010-09-09 18:54:59 +00002409 case Instruction::SIToFP:
Eric Christopher43b62be2010-09-27 06:02:23 +00002410 return SelectSIToFP(I);
Eric Christopher9a040492010-09-09 18:54:59 +00002411 case Instruction::FPToSI:
Eric Christopher43b62be2010-09-27 06:02:23 +00002412 return SelectFPToSI(I);
Eric Christopherbc39b822010-09-09 00:53:57 +00002413 case Instruction::FAdd:
Eric Christopher43b62be2010-09-27 06:02:23 +00002414 return SelectBinaryOp(I, ISD::FADD);
Eric Christopherbc39b822010-09-09 00:53:57 +00002415 case Instruction::FSub:
Eric Christopher43b62be2010-09-27 06:02:23 +00002416 return SelectBinaryOp(I, ISD::FSUB);
Eric Christopherbc39b822010-09-09 00:53:57 +00002417 case Instruction::FMul:
Eric Christopher43b62be2010-09-27 06:02:23 +00002418 return SelectBinaryOp(I, ISD::FMUL);
Eric Christopherbb3e5da2010-09-14 23:03:37 +00002419 case Instruction::SDiv:
Eric Christopher43b62be2010-09-27 06:02:23 +00002420 return SelectSDiv(I);
Eric Christopher6a880d62010-10-11 08:37:26 +00002421 case Instruction::SRem:
2422 return SelectSRem(I);
Eric Christopherf9764fa2010-09-30 20:49:44 +00002423 case Instruction::Call:
Chad Rosier11add262011-11-11 23:31:03 +00002424 if (const IntrinsicInst *II = dyn_cast<IntrinsicInst>(I))
2425 return SelectIntrinsicCall(*II);
Eric Christopherf9764fa2010-09-30 20:49:44 +00002426 return SelectCall(I);
Eric Christopher3bbd3962010-10-11 08:27:59 +00002427 case Instruction::Select:
2428 return SelectSelect(I);
Eric Christopher4f512ef2010-10-22 01:28:00 +00002429 case Instruction::Ret:
2430 return SelectRet(I);
Eli Friedman76927d732011-05-25 23:49:02 +00002431 case Instruction::Trunc:
Chad Rosier0d7b2312011-11-02 00:18:48 +00002432 return SelectTrunc(I);
Eli Friedman76927d732011-05-25 23:49:02 +00002433 case Instruction::ZExt:
2434 case Instruction::SExt:
Chad Rosier0d7b2312011-11-02 00:18:48 +00002435 return SelectIntExt(I);
Eric Christopherab695882010-07-21 22:26:11 +00002436 default: break;
2437 }
2438 return false;
2439}
2440
Chad Rosierb29b9502011-11-13 02:23:59 +00002441/// TryToFoldLoad - The specified machine instr operand is a vreg, and that
2442/// vreg is being provided by the specified load instruction. If possible,
2443/// try to fold the load as an operand to the instruction, returning true if
2444/// successful.
2445bool ARMFastISel::TryToFoldLoad(MachineInstr *MI, unsigned OpNo,
2446 const LoadInst *LI) {
2447 // Verify we have a legal type before going any further.
2448 MVT VT;
2449 if (!isLoadTypeLegal(LI->getType(), VT))
2450 return false;
2451
2452 // Combine load followed by zero- or sign-extend.
2453 // ldrb r1, [r0] ldrb r1, [r0]
2454 // uxtb r2, r1 =>
2455 // mov r3, r2 mov r3, r1
2456 bool isZExt = true;
2457 switch(MI->getOpcode()) {
2458 default: return false;
2459 case ARM::SXTH:
2460 case ARM::t2SXTH:
2461 isZExt = false;
2462 case ARM::UXTH:
2463 case ARM::t2UXTH:
2464 if (VT != MVT::i16)
2465 return false;
2466 break;
2467 case ARM::SXTB:
2468 case ARM::t2SXTB:
2469 isZExt = false;
2470 case ARM::UXTB:
2471 case ARM::t2UXTB:
2472 if (VT != MVT::i8)
2473 return false;
2474 break;
2475 }
2476 // See if we can handle this address.
2477 Address Addr;
2478 if (!ARMComputeAddress(LI->getOperand(0), Addr)) return false;
2479
2480 unsigned ResultReg = MI->getOperand(0).getReg();
2481 if (!ARMEmitLoad(VT, ResultReg, Addr, isZExt, false))
2482 return false;
2483 MI->eraseFromParent();
2484 return true;
2485}
2486
Eric Christopherab695882010-07-21 22:26:11 +00002487namespace llvm {
2488 llvm::FastISel *ARM::createFastISel(FunctionLoweringInfo &funcInfo) {
Eric Christopherfeadddd2010-10-11 20:05:22 +00002489 // Completely untested on non-darwin.
2490 const TargetMachine &TM = funcInfo.MF->getTarget();
Jim Grosbach16cb3762010-11-09 19:22:26 +00002491
Eric Christopheraaa8df42010-11-02 01:21:28 +00002492 // Darwin and thumb1 only for now.
Eric Christopherfeadddd2010-10-11 20:05:22 +00002493 const ARMSubtarget *Subtarget = &TM.getSubtarget<ARMSubtarget>();
Jim Grosbach16cb3762010-11-09 19:22:26 +00002494 if (Subtarget->isTargetDarwin() && !Subtarget->isThumb1Only() &&
Eric Christopheraaa8df42010-11-02 01:21:28 +00002495 !DisableARMFastISel)
Eric Christopherfeadddd2010-10-11 20:05:22 +00002496 return new ARMFastISel(funcInfo);
Evan Cheng09447952010-07-26 18:32:55 +00002497 return 0;
Eric Christopherab695882010-07-21 22:26:11 +00002498 }
2499}