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Dan Gohmanb0cf29c2008-08-13 20:19:35 +00001///===-- FastISel.cpp - Implementation of the FastISel class --------------===//
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 contains the implementation of the FastISel class.
11//
Dan Gohman5ec9efd2008-09-30 20:48:29 +000012// "Fast" instruction selection is designed to emit very poor code quickly.
13// Also, it is not designed to be able to do much lowering, so most illegal
Chris Lattner44d2a982008-10-13 01:59:13 +000014// types (e.g. i64 on 32-bit targets) and operations are not supported. It is
15// also not intended to be able to do much optimization, except in a few cases
16// where doing optimizations reduces overall compile time. For example, folding
17// constants into immediate fields is often done, because it's cheap and it
18// reduces the number of instructions later phases have to examine.
Dan Gohman5ec9efd2008-09-30 20:48:29 +000019//
20// "Fast" instruction selection is able to fail gracefully and transfer
21// control to the SelectionDAG selector for operations that it doesn't
Chris Lattner44d2a982008-10-13 01:59:13 +000022// support. In many cases, this allows us to avoid duplicating a lot of
Dan Gohman5ec9efd2008-09-30 20:48:29 +000023// the complicated lowering logic that SelectionDAG currently has.
24//
25// The intended use for "fast" instruction selection is "-O0" mode
26// compilation, where the quality of the generated code is irrelevant when
Chris Lattner44d2a982008-10-13 01:59:13 +000027// weighed against the speed at which the code can be generated. Also,
Dan Gohman5ec9efd2008-09-30 20:48:29 +000028// at -O0, the LLVM optimizers are not running, and this makes the
29// compile time of codegen a much higher portion of the overall compile
Chris Lattner44d2a982008-10-13 01:59:13 +000030// time. Despite its limitations, "fast" instruction selection is able to
Dan Gohman5ec9efd2008-09-30 20:48:29 +000031// handle enough code on its own to provide noticeable overall speedups
32// in -O0 compiles.
33//
34// Basic operations are supported in a target-independent way, by reading
35// the same instruction descriptions that the SelectionDAG selector reads,
36// and identifying simple arithmetic operations that can be directly selected
Chris Lattner44d2a982008-10-13 01:59:13 +000037// from simple operators. More complicated operations currently require
Dan Gohman5ec9efd2008-09-30 20:48:29 +000038// target-specific code.
39//
Dan Gohmanb0cf29c2008-08-13 20:19:35 +000040//===----------------------------------------------------------------------===//
41
Dan Gohman33134c42008-09-25 17:05:24 +000042#include "llvm/Function.h"
43#include "llvm/GlobalVariable.h"
Dan Gohman6f2766d2008-08-19 22:31:46 +000044#include "llvm/Instructions.h"
Dan Gohman33134c42008-09-25 17:05:24 +000045#include "llvm/IntrinsicInst.h"
Dan Gohmanb0cf29c2008-08-13 20:19:35 +000046#include "llvm/CodeGen/FastISel.h"
47#include "llvm/CodeGen/MachineInstrBuilder.h"
Dan Gohman33134c42008-09-25 17:05:24 +000048#include "llvm/CodeGen/MachineModuleInfo.h"
Dan Gohmanb0cf29c2008-08-13 20:19:35 +000049#include "llvm/CodeGen/MachineRegisterInfo.h"
Devang Patel1be3ecc2009-04-15 00:10:26 +000050#include "llvm/CodeGen/DebugLoc.h"
Devang Patel83489bb2009-01-13 00:35:13 +000051#include "llvm/CodeGen/DwarfWriter.h"
52#include "llvm/Analysis/DebugInfo.h"
Evan Cheng83785c82008-08-20 22:45:34 +000053#include "llvm/Target/TargetData.h"
Dan Gohmanb0cf29c2008-08-13 20:19:35 +000054#include "llvm/Target/TargetInstrInfo.h"
Evan Cheng83785c82008-08-20 22:45:34 +000055#include "llvm/Target/TargetLowering.h"
Dan Gohmanbb466332008-08-20 21:05:57 +000056#include "llvm/Target/TargetMachine.h"
Dan Gohmandd5b58a2008-10-14 23:54:11 +000057#include "SelectionDAGBuild.h"
Dan Gohmanb0cf29c2008-08-13 20:19:35 +000058using namespace llvm;
59
Dan Gohman3df24e62008-09-03 23:12:08 +000060unsigned FastISel::getRegForValue(Value *V) {
Dan Gohman4fd55282009-04-07 20:40:11 +000061 MVT RealVT = TLI.getValueType(V->getType(), /*AllowUnknown=*/true);
62 // Don't handle non-simple values in FastISel.
63 if (!RealVT.isSimple())
64 return 0;
Dan Gohmanc8a1a3c2008-12-08 07:57:47 +000065
66 // Ignore illegal types. We must do this before looking up the value
67 // in ValueMap because Arguments are given virtual registers regardless
68 // of whether FastISel can handle them.
Dan Gohman4fd55282009-04-07 20:40:11 +000069 MVT::SimpleValueType VT = RealVT.getSimpleVT();
Dan Gohmanc8a1a3c2008-12-08 07:57:47 +000070 if (!TLI.isTypeLegal(VT)) {
71 // Promote MVT::i1 to a legal type though, because it's common and easy.
72 if (VT == MVT::i1)
73 VT = TLI.getTypeToTransformTo(VT).getSimpleVT();
74 else
75 return 0;
76 }
77
Dan Gohman104e4ce2008-09-03 23:32:19 +000078 // Look up the value to see if we already have a register for it. We
79 // cache values defined by Instructions across blocks, and other values
80 // only locally. This is because Instructions already have the SSA
81 // def-dominatess-use requirement enforced.
Owen Anderson99aaf102008-09-03 17:37:03 +000082 if (ValueMap.count(V))
83 return ValueMap[V];
Dan Gohman104e4ce2008-09-03 23:32:19 +000084 unsigned Reg = LocalValueMap[V];
85 if (Reg != 0)
86 return Reg;
Dan Gohmanad368ac2008-08-27 18:10:19 +000087
Dan Gohmanad368ac2008-08-27 18:10:19 +000088 if (ConstantInt *CI = dyn_cast<ConstantInt>(V)) {
Dan Gohman2ff7fd12008-09-19 22:16:54 +000089 if (CI->getValue().getActiveBits() <= 64)
90 Reg = FastEmit_i(VT, VT, ISD::Constant, CI->getZExtValue());
Dan Gohman0586d912008-09-10 20:11:02 +000091 } else if (isa<AllocaInst>(V)) {
Dan Gohman2ff7fd12008-09-19 22:16:54 +000092 Reg = TargetMaterializeAlloca(cast<AllocaInst>(V));
Dan Gohman205d9252008-08-28 21:19:07 +000093 } else if (isa<ConstantPointerNull>(V)) {
Dan Gohman1e9e8c32008-10-07 22:03:27 +000094 // Translate this as an integer zero so that it can be
95 // local-CSE'd with actual integer zeros.
96 Reg = getRegForValue(Constant::getNullValue(TD.getIntPtrType()));
Dan Gohmanad368ac2008-08-27 18:10:19 +000097 } else if (ConstantFP *CF = dyn_cast<ConstantFP>(V)) {
Dan Gohman104e4ce2008-09-03 23:32:19 +000098 Reg = FastEmit_f(VT, VT, ISD::ConstantFP, CF);
Dan Gohmanad368ac2008-08-27 18:10:19 +000099
100 if (!Reg) {
101 const APFloat &Flt = CF->getValueAPF();
102 MVT IntVT = TLI.getPointerTy();
103
104 uint64_t x[2];
105 uint32_t IntBitWidth = IntVT.getSizeInBits();
Dale Johannesen23a98552008-10-09 23:00:39 +0000106 bool isExact;
107 (void) Flt.convertToInteger(x, IntBitWidth, /*isSigned=*/true,
108 APFloat::rmTowardZero, &isExact);
109 if (isExact) {
Dan Gohman2ff7fd12008-09-19 22:16:54 +0000110 APInt IntVal(IntBitWidth, 2, x);
Dan Gohmanad368ac2008-08-27 18:10:19 +0000111
Dan Gohman1e9e8c32008-10-07 22:03:27 +0000112 unsigned IntegerReg = getRegForValue(ConstantInt::get(IntVal));
Dan Gohman2ff7fd12008-09-19 22:16:54 +0000113 if (IntegerReg != 0)
114 Reg = FastEmit_r(IntVT.getSimpleVT(), VT, ISD::SINT_TO_FP, IntegerReg);
115 }
Dan Gohmanad368ac2008-08-27 18:10:19 +0000116 }
Dan Gohman40b189e2008-09-05 18:18:20 +0000117 } else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(V)) {
118 if (!SelectOperator(CE, CE->getOpcode())) return 0;
119 Reg = LocalValueMap[CE];
Dan Gohman205d9252008-08-28 21:19:07 +0000120 } else if (isa<UndefValue>(V)) {
Dan Gohman104e4ce2008-09-03 23:32:19 +0000121 Reg = createResultReg(TLI.getRegClassFor(VT));
Bill Wendling9bc96a52009-02-03 00:55:04 +0000122 BuildMI(MBB, DL, TII.get(TargetInstrInfo::IMPLICIT_DEF), Reg);
Dan Gohmanad368ac2008-08-27 18:10:19 +0000123 }
Owen Andersond5d81a42008-09-03 17:51:57 +0000124
Dan Gohmandceffe62008-09-25 01:28:51 +0000125 // If target-independent code couldn't handle the value, give target-specific
126 // code a try.
Owen Anderson6e607452008-09-05 23:36:01 +0000127 if (!Reg && isa<Constant>(V))
Dan Gohman2ff7fd12008-09-19 22:16:54 +0000128 Reg = TargetMaterializeConstant(cast<Constant>(V));
Owen Anderson6e607452008-09-05 23:36:01 +0000129
Dan Gohman2ff7fd12008-09-19 22:16:54 +0000130 // Don't cache constant materializations in the general ValueMap.
131 // To do so would require tracking what uses they dominate.
Dan Gohmandceffe62008-09-25 01:28:51 +0000132 if (Reg != 0)
133 LocalValueMap[V] = Reg;
Dan Gohman104e4ce2008-09-03 23:32:19 +0000134 return Reg;
Dan Gohmanad368ac2008-08-27 18:10:19 +0000135}
136
Evan Cheng59fbc802008-09-09 01:26:59 +0000137unsigned FastISel::lookUpRegForValue(Value *V) {
138 // Look up the value to see if we already have a register for it. We
139 // cache values defined by Instructions across blocks, and other values
140 // only locally. This is because Instructions already have the SSA
141 // def-dominatess-use requirement enforced.
142 if (ValueMap.count(V))
143 return ValueMap[V];
144 return LocalValueMap[V];
145}
146
Owen Andersoncc54e762008-08-30 00:38:46 +0000147/// UpdateValueMap - Update the value map to include the new mapping for this
148/// instruction, or insert an extra copy to get the result in a previous
149/// determined register.
150/// NOTE: This is only necessary because we might select a block that uses
151/// a value before we select the block that defines the value. It might be
152/// possible to fix this by selecting blocks in reverse postorder.
Chris Lattnerc5040ab2009-04-12 07:45:01 +0000153unsigned FastISel::UpdateValueMap(Value* I, unsigned Reg) {
Dan Gohman40b189e2008-09-05 18:18:20 +0000154 if (!isa<Instruction>(I)) {
155 LocalValueMap[I] = Reg;
Chris Lattnerc5040ab2009-04-12 07:45:01 +0000156 return Reg;
Dan Gohman40b189e2008-09-05 18:18:20 +0000157 }
Chris Lattnerc5040ab2009-04-12 07:45:01 +0000158
159 unsigned &AssignedReg = ValueMap[I];
160 if (AssignedReg == 0)
161 AssignedReg = Reg;
Chris Lattner36e39462009-04-12 07:46:30 +0000162 else if (Reg != AssignedReg) {
Chris Lattnerc5040ab2009-04-12 07:45:01 +0000163 const TargetRegisterClass *RegClass = MRI.getRegClass(Reg);
164 TII.copyRegToReg(*MBB, MBB->end(), AssignedReg,
165 Reg, RegClass, RegClass);
166 }
167 return AssignedReg;
Owen Andersoncc54e762008-08-30 00:38:46 +0000168}
169
Dan Gohmanc8a1a3c2008-12-08 07:57:47 +0000170unsigned FastISel::getRegForGEPIndex(Value *Idx) {
171 unsigned IdxN = getRegForValue(Idx);
172 if (IdxN == 0)
173 // Unhandled operand. Halt "fast" selection and bail.
174 return 0;
175
176 // If the index is smaller or larger than intptr_t, truncate or extend it.
177 MVT PtrVT = TLI.getPointerTy();
178 MVT IdxVT = MVT::getMVT(Idx->getType(), /*HandleUnknown=*/false);
179 if (IdxVT.bitsLT(PtrVT))
180 IdxN = FastEmit_r(IdxVT.getSimpleVT(), PtrVT.getSimpleVT(),
181 ISD::SIGN_EXTEND, IdxN);
182 else if (IdxVT.bitsGT(PtrVT))
183 IdxN = FastEmit_r(IdxVT.getSimpleVT(), PtrVT.getSimpleVT(),
184 ISD::TRUNCATE, IdxN);
185 return IdxN;
186}
187
Dan Gohmanbdedd442008-08-20 00:11:48 +0000188/// SelectBinaryOp - Select and emit code for a binary operator instruction,
189/// which has an opcode which directly corresponds to the given ISD opcode.
190///
Dan Gohman40b189e2008-09-05 18:18:20 +0000191bool FastISel::SelectBinaryOp(User *I, ISD::NodeType ISDOpcode) {
Dan Gohmanbdedd442008-08-20 00:11:48 +0000192 MVT VT = MVT::getMVT(I->getType(), /*HandleUnknown=*/true);
193 if (VT == MVT::Other || !VT.isSimple())
194 // Unhandled type. Halt "fast" selection and bail.
195 return false;
Dan Gohman638c6832008-09-05 18:44:22 +0000196
Dan Gohmanb71fea22008-08-26 20:52:40 +0000197 // We only handle legal types. For example, on x86-32 the instruction
198 // selector contains all of the 64-bit instructions from x86-64,
199 // under the assumption that i64 won't be used if the target doesn't
200 // support it.
Dan Gohman638c6832008-09-05 18:44:22 +0000201 if (!TLI.isTypeLegal(VT)) {
Dan Gohman5dd9c2e2008-09-25 17:22:52 +0000202 // MVT::i1 is special. Allow AND, OR, or XOR because they
Dan Gohman638c6832008-09-05 18:44:22 +0000203 // don't require additional zeroing, which makes them easy.
204 if (VT == MVT::i1 &&
Dan Gohman5dd9c2e2008-09-25 17:22:52 +0000205 (ISDOpcode == ISD::AND || ISDOpcode == ISD::OR ||
206 ISDOpcode == ISD::XOR))
Dan Gohman638c6832008-09-05 18:44:22 +0000207 VT = TLI.getTypeToTransformTo(VT);
208 else
209 return false;
210 }
Dan Gohmanbdedd442008-08-20 00:11:48 +0000211
Dan Gohman3df24e62008-09-03 23:12:08 +0000212 unsigned Op0 = getRegForValue(I->getOperand(0));
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000213 if (Op0 == 0)
214 // Unhandled operand. Halt "fast" selection and bail.
215 return false;
216
217 // Check if the second operand is a constant and handle it appropriately.
218 if (ConstantInt *CI = dyn_cast<ConstantInt>(I->getOperand(1))) {
Dan Gohmanad368ac2008-08-27 18:10:19 +0000219 unsigned ResultReg = FastEmit_ri(VT.getSimpleVT(), VT.getSimpleVT(),
220 ISDOpcode, Op0, CI->getZExtValue());
221 if (ResultReg != 0) {
222 // We successfully emitted code for the given LLVM Instruction.
Dan Gohman3df24e62008-09-03 23:12:08 +0000223 UpdateValueMap(I, ResultReg);
Dan Gohmanad368ac2008-08-27 18:10:19 +0000224 return true;
225 }
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000226 }
227
Dan Gohman10df0fa2008-08-27 01:09:54 +0000228 // Check if the second operand is a constant float.
229 if (ConstantFP *CF = dyn_cast<ConstantFP>(I->getOperand(1))) {
Dan Gohmanad368ac2008-08-27 18:10:19 +0000230 unsigned ResultReg = FastEmit_rf(VT.getSimpleVT(), VT.getSimpleVT(),
231 ISDOpcode, Op0, CF);
232 if (ResultReg != 0) {
233 // We successfully emitted code for the given LLVM Instruction.
Dan Gohman3df24e62008-09-03 23:12:08 +0000234 UpdateValueMap(I, ResultReg);
Dan Gohmanad368ac2008-08-27 18:10:19 +0000235 return true;
236 }
Dan Gohman10df0fa2008-08-27 01:09:54 +0000237 }
238
Dan Gohman3df24e62008-09-03 23:12:08 +0000239 unsigned Op1 = getRegForValue(I->getOperand(1));
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000240 if (Op1 == 0)
241 // Unhandled operand. Halt "fast" selection and bail.
242 return false;
243
Dan Gohmanad368ac2008-08-27 18:10:19 +0000244 // Now we have both operands in registers. Emit the instruction.
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000245 unsigned ResultReg = FastEmit_rr(VT.getSimpleVT(), VT.getSimpleVT(),
246 ISDOpcode, Op0, Op1);
Dan Gohmanbdedd442008-08-20 00:11:48 +0000247 if (ResultReg == 0)
248 // Target-specific code wasn't able to find a machine opcode for
249 // the given ISD opcode and type. Halt "fast" selection and bail.
250 return false;
251
Dan Gohman8014e862008-08-20 00:23:20 +0000252 // We successfully emitted code for the given LLVM Instruction.
Dan Gohman3df24e62008-09-03 23:12:08 +0000253 UpdateValueMap(I, ResultReg);
Dan Gohmanbdedd442008-08-20 00:11:48 +0000254 return true;
255}
256
Dan Gohman40b189e2008-09-05 18:18:20 +0000257bool FastISel::SelectGetElementPtr(User *I) {
Dan Gohman3df24e62008-09-03 23:12:08 +0000258 unsigned N = getRegForValue(I->getOperand(0));
Evan Cheng83785c82008-08-20 22:45:34 +0000259 if (N == 0)
260 // Unhandled operand. Halt "fast" selection and bail.
261 return false;
262
263 const Type *Ty = I->getOperand(0)->getType();
Dan Gohman7a0e6592008-08-21 17:25:26 +0000264 MVT::SimpleValueType VT = TLI.getPointerTy().getSimpleVT();
Evan Cheng83785c82008-08-20 22:45:34 +0000265 for (GetElementPtrInst::op_iterator OI = I->op_begin()+1, E = I->op_end();
266 OI != E; ++OI) {
267 Value *Idx = *OI;
268 if (const StructType *StTy = dyn_cast<StructType>(Ty)) {
269 unsigned Field = cast<ConstantInt>(Idx)->getZExtValue();
270 if (Field) {
271 // N = N + Offset
272 uint64_t Offs = TD.getStructLayout(StTy)->getElementOffset(Field);
273 // FIXME: This can be optimized by combining the add with a
274 // subsequent one.
Dan Gohman7a0e6592008-08-21 17:25:26 +0000275 N = FastEmit_ri_(VT, ISD::ADD, N, Offs, VT);
Evan Cheng83785c82008-08-20 22:45:34 +0000276 if (N == 0)
277 // Unhandled operand. Halt "fast" selection and bail.
278 return false;
279 }
280 Ty = StTy->getElementType(Field);
281 } else {
282 Ty = cast<SequentialType>(Ty)->getElementType();
283
284 // If this is a constant subscript, handle it quickly.
285 if (ConstantInt *CI = dyn_cast<ConstantInt>(Idx)) {
286 if (CI->getZExtValue() == 0) continue;
287 uint64_t Offs =
Duncan Sands777d2302009-05-09 07:06:46 +0000288 TD.getTypeAllocSize(Ty)*cast<ConstantInt>(CI)->getSExtValue();
Dan Gohman7a0e6592008-08-21 17:25:26 +0000289 N = FastEmit_ri_(VT, ISD::ADD, N, Offs, VT);
Evan Cheng83785c82008-08-20 22:45:34 +0000290 if (N == 0)
291 // Unhandled operand. Halt "fast" selection and bail.
292 return false;
293 continue;
294 }
295
296 // N = N + Idx * ElementSize;
Duncan Sands777d2302009-05-09 07:06:46 +0000297 uint64_t ElementSize = TD.getTypeAllocSize(Ty);
Dan Gohmanc8a1a3c2008-12-08 07:57:47 +0000298 unsigned IdxN = getRegForGEPIndex(Idx);
Evan Cheng83785c82008-08-20 22:45:34 +0000299 if (IdxN == 0)
300 // Unhandled operand. Halt "fast" selection and bail.
301 return false;
302
Dan Gohman80bc6e22008-08-26 20:57:08 +0000303 if (ElementSize != 1) {
Dan Gohmanf93cf792008-08-21 17:37:05 +0000304 IdxN = FastEmit_ri_(VT, ISD::MUL, IdxN, ElementSize, VT);
Dan Gohman80bc6e22008-08-26 20:57:08 +0000305 if (IdxN == 0)
306 // Unhandled operand. Halt "fast" selection and bail.
307 return false;
308 }
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000309 N = FastEmit_rr(VT, VT, ISD::ADD, N, IdxN);
Evan Cheng83785c82008-08-20 22:45:34 +0000310 if (N == 0)
311 // Unhandled operand. Halt "fast" selection and bail.
312 return false;
313 }
314 }
315
316 // We successfully emitted code for the given LLVM Instruction.
Dan Gohman3df24e62008-09-03 23:12:08 +0000317 UpdateValueMap(I, N);
Evan Cheng83785c82008-08-20 22:45:34 +0000318 return true;
Dan Gohmanbdedd442008-08-20 00:11:48 +0000319}
320
Dan Gohman33134c42008-09-25 17:05:24 +0000321bool FastISel::SelectCall(User *I) {
322 Function *F = cast<CallInst>(I)->getCalledFunction();
323 if (!F) return false;
324
325 unsigned IID = F->getIntrinsicID();
326 switch (IID) {
327 default: break;
328 case Intrinsic::dbg_stoppoint: {
329 DbgStopPointInst *SPI = cast<DbgStopPointInst>(I);
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000330 if (DIDescriptor::ValidDebugInfo(SPI->getContext(), CodeGenOpt::None)) {
Devang Patel83489bb2009-01-13 00:35:13 +0000331 DICompileUnit CU(cast<GlobalVariable>(SPI->getContext()));
Dan Gohman33134c42008-09-25 17:05:24 +0000332 unsigned Line = SPI->getLine();
333 unsigned Col = SPI->getColumn();
Bill Wendlingdf7d5d32009-05-21 00:04:55 +0000334 unsigned Idx = MF.getOrCreateDebugLocID(CU.getGV(), Line, Col);
Bill Wendling9bc96a52009-02-03 00:55:04 +0000335 setCurDebugLoc(DebugLoc::get(Idx));
Dan Gohman33134c42008-09-25 17:05:24 +0000336 }
337 return true;
338 }
339 case Intrinsic::dbg_region_start: {
340 DbgRegionStartInst *RSI = cast<DbgRegionStartInst>(I);
Bill Wendlingdf7d5d32009-05-21 00:04:55 +0000341 if (DIDescriptor::ValidDebugInfo(RSI->getContext(), CodeGenOpt::None) &&
342 DW && DW->ShouldEmitDwarfDebug()) {
343 unsigned ID =
344 DW->RecordRegionStart(cast<GlobalVariable>(RSI->getContext()));
Bill Wendling92c1e122009-02-13 02:16:35 +0000345 const TargetInstrDesc &II = TII.get(TargetInstrInfo::DBG_LABEL);
346 BuildMI(MBB, DL, II).addImm(ID);
347 }
Dan Gohman33134c42008-09-25 17:05:24 +0000348 return true;
349 }
350 case Intrinsic::dbg_region_end: {
351 DbgRegionEndInst *REI = cast<DbgRegionEndInst>(I);
Bill Wendlingdf7d5d32009-05-21 00:04:55 +0000352 if (DIDescriptor::ValidDebugInfo(REI->getContext(), CodeGenOpt::None) &&
353 DW && DW->ShouldEmitDwarfDebug()) {
Devang Patel1be3ecc2009-04-15 00:10:26 +0000354 unsigned ID = 0;
Bill Wendlingdf7d5d32009-05-21 00:04:55 +0000355 DISubprogram Subprogram(cast<GlobalVariable>(REI->getContext()));
Devang Patel8818b8f2009-04-15 20:11:08 +0000356 if (!Subprogram.isNull() && !Subprogram.describes(MF.getFunction())) {
Devang Patel1be3ecc2009-04-15 00:10:26 +0000357 // This is end of an inlined function.
358 const TargetInstrDesc &II = TII.get(TargetInstrInfo::DBG_LABEL);
359 ID = DW->RecordInlinedFnEnd(Subprogram);
Devang Patel8818b8f2009-04-15 20:11:08 +0000360 if (ID)
Devang Patel02f8c412009-04-16 17:55:30 +0000361 // Returned ID is 0 if this is unbalanced "end of inlined
362 // scope". This could happen if optimizer eats dbg intrinsics
363 // or "beginning of inlined scope" is not recoginized due to
Devang Patel11a407f2009-06-15 21:45:50 +0000364 // missing location info. In such cases, ignore this region.end.
Devang Patel8818b8f2009-04-15 20:11:08 +0000365 BuildMI(MBB, DL, II).addImm(ID);
Devang Patel1be3ecc2009-04-15 00:10:26 +0000366 } else {
367 const TargetInstrDesc &II = TII.get(TargetInstrInfo::DBG_LABEL);
Dan Gohman9a38e3e2009-05-07 19:46:24 +0000368 ID = DW->RecordRegionEnd(cast<GlobalVariable>(REI->getContext()));
Devang Patel1be3ecc2009-04-15 00:10:26 +0000369 BuildMI(MBB, DL, II).addImm(ID);
370 }
Bill Wendling92c1e122009-02-13 02:16:35 +0000371 }
Dan Gohman33134c42008-09-25 17:05:24 +0000372 return true;
373 }
374 case Intrinsic::dbg_func_start: {
Dan Gohman33134c42008-09-25 17:05:24 +0000375 DbgFuncStartInst *FSI = cast<DbgFuncStartInst>(I);
376 Value *SP = FSI->getSubprogram();
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000377 if (!DIDescriptor::ValidDebugInfo(SP, CodeGenOpt::None))
378 return true;
Bill Wendling9bc96a52009-02-03 00:55:04 +0000379
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000380 // llvm.dbg.func.start implicitly defines a dbg_stoppoint which is what
381 // (most?) gdb expects.
382 DebugLoc PrevLoc = DL;
383 DISubprogram Subprogram(cast<GlobalVariable>(SP));
384 DICompileUnit CompileUnit = Subprogram.getCompileUnit();
Bill Wendling9bc96a52009-02-03 00:55:04 +0000385
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000386 if (!Subprogram.describes(MF.getFunction())) {
387 // This is a beginning of an inlined function.
388
389 // If llvm.dbg.func.start is seen in a new block before any
390 // llvm.dbg.stoppoint intrinsic then the location info is unknown.
391 // FIXME : Why DebugLoc is reset at the beginning of each block ?
392 if (PrevLoc.isUnknown())
393 return true;
394 // Record the source line.
395 unsigned Line = Subprogram.getLineNumber();
Bill Wendlingdf7d5d32009-05-21 00:04:55 +0000396 setCurDebugLoc(DebugLoc::get(MF.getOrCreateDebugLocID(
397 CompileUnit.getGV(), Line, 0)));
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000398
399 if (DW && DW->ShouldEmitDwarfDebug()) {
Argyrios Kyrtzidis116b2742009-05-07 00:16:31 +0000400 DebugLocTuple PrevLocTpl = MF.getDebugLocTuple(PrevLoc);
401 unsigned LabelID = DW->RecordInlinedFnStart(Subprogram,
402 DICompileUnit(PrevLocTpl.CompileUnit),
403 PrevLocTpl.Line,
404 PrevLocTpl.Col);
Devang Patel0f7fef32009-04-13 17:02:03 +0000405 const TargetInstrDesc &II = TII.get(TargetInstrInfo::DBG_LABEL);
406 BuildMI(MBB, DL, II).addImm(LabelID);
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000407 }
408 } else {
409 // Record the source line.
410 unsigned Line = Subprogram.getLineNumber();
Bill Wendlingdf7d5d32009-05-21 00:04:55 +0000411 MF.setDefaultDebugLoc(DebugLoc::get(MF.getOrCreateDebugLocID(
412 CompileUnit.getGV(), Line, 0)));
Dan Gohman9a38e3e2009-05-07 19:46:24 +0000413 if (DW && DW->ShouldEmitDwarfDebug()) {
Devang Patel0f7fef32009-04-13 17:02:03 +0000414 // llvm.dbg.func_start also defines beginning of function scope.
415 DW->RecordRegionStart(cast<GlobalVariable>(FSI->getSubprogram()));
Dan Gohman9a38e3e2009-05-07 19:46:24 +0000416 }
Dan Gohman33134c42008-09-25 17:05:24 +0000417 }
Bill Wendling9bc96a52009-02-03 00:55:04 +0000418
Dan Gohman33134c42008-09-25 17:05:24 +0000419 return true;
420 }
Bill Wendling92c1e122009-02-13 02:16:35 +0000421 case Intrinsic::dbg_declare: {
422 DbgDeclareInst *DI = cast<DbgDeclareInst>(I);
423 Value *Variable = DI->getVariable();
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000424 if (DIDescriptor::ValidDebugInfo(Variable, CodeGenOpt::None) &&
425 DW && DW->ShouldEmitDwarfDebug()) {
Bill Wendling92c1e122009-02-13 02:16:35 +0000426 // Determine the address of the declared object.
427 Value *Address = DI->getAddress();
428 if (BitCastInst *BCI = dyn_cast<BitCastInst>(Address))
429 Address = BCI->getOperand(0);
430 AllocaInst *AI = dyn_cast<AllocaInst>(Address);
431 // Don't handle byval struct arguments or VLAs, for example.
432 if (!AI) break;
433 DenseMap<const AllocaInst*, int>::iterator SI =
434 StaticAllocaMap.find(AI);
435 if (SI == StaticAllocaMap.end()) break; // VLAs.
436 int FI = SI->second;
437
438 // Determine the debug globalvariable.
439 GlobalValue *GV = cast<GlobalVariable>(Variable);
440
441 // Build the DECLARE instruction.
442 const TargetInstrDesc &II = TII.get(TargetInstrInfo::DECLARE);
Devang Patel1be3ecc2009-04-15 00:10:26 +0000443 MachineInstr *DeclareMI
444 = BuildMI(MBB, DL, II).addFrameIndex(FI).addGlobalAddress(GV);
445 DIVariable DV(cast<GlobalVariable>(GV));
446 if (!DV.isNull()) {
447 // This is a local variable
448 DW->RecordVariableScope(DV, DeclareMI);
449 }
Bill Wendling92c1e122009-02-13 02:16:35 +0000450 }
Dan Gohman33134c42008-09-25 17:05:24 +0000451 return true;
Bill Wendling92c1e122009-02-13 02:16:35 +0000452 }
Dan Gohmandd5b58a2008-10-14 23:54:11 +0000453 case Intrinsic::eh_exception: {
454 MVT VT = TLI.getValueType(I->getType());
455 switch (TLI.getOperationAction(ISD::EXCEPTIONADDR, VT)) {
456 default: break;
457 case TargetLowering::Expand: {
Duncan Sandsb0f1e172009-05-22 20:36:31 +0000458 assert(MBB->isLandingPad() && "Call to eh.exception not in landing pad!");
Dan Gohmandd5b58a2008-10-14 23:54:11 +0000459 unsigned Reg = TLI.getExceptionAddressRegister();
460 const TargetRegisterClass *RC = TLI.getRegClassFor(VT);
461 unsigned ResultReg = createResultReg(RC);
462 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
463 Reg, RC, RC);
464 assert(InsertedCopy && "Can't copy address registers!");
Evan Cheng24ac4082008-11-24 07:09:49 +0000465 InsertedCopy = InsertedCopy;
Dan Gohmandd5b58a2008-10-14 23:54:11 +0000466 UpdateValueMap(I, ResultReg);
467 return true;
468 }
469 }
470 break;
471 }
472 case Intrinsic::eh_selector_i32:
473 case Intrinsic::eh_selector_i64: {
474 MVT VT = TLI.getValueType(I->getType());
475 switch (TLI.getOperationAction(ISD::EHSELECTION, VT)) {
476 default: break;
477 case TargetLowering::Expand: {
478 MVT VT = (IID == Intrinsic::eh_selector_i32 ?
479 MVT::i32 : MVT::i64);
480
481 if (MMI) {
482 if (MBB->isLandingPad())
483 AddCatchInfo(*cast<CallInst>(I), MMI, MBB);
484 else {
485#ifndef NDEBUG
486 CatchInfoLost.insert(cast<CallInst>(I));
487#endif
488 // FIXME: Mark exception selector register as live in. Hack for PR1508.
489 unsigned Reg = TLI.getExceptionSelectorRegister();
490 if (Reg) MBB->addLiveIn(Reg);
491 }
492
493 unsigned Reg = TLI.getExceptionSelectorRegister();
494 const TargetRegisterClass *RC = TLI.getRegClassFor(VT);
495 unsigned ResultReg = createResultReg(RC);
496 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
497 Reg, RC, RC);
498 assert(InsertedCopy && "Can't copy address registers!");
Evan Cheng24ac4082008-11-24 07:09:49 +0000499 InsertedCopy = InsertedCopy;
Dan Gohmandd5b58a2008-10-14 23:54:11 +0000500 UpdateValueMap(I, ResultReg);
501 } else {
502 unsigned ResultReg =
503 getRegForValue(Constant::getNullValue(I->getType()));
504 UpdateValueMap(I, ResultReg);
505 }
506 return true;
507 }
508 }
509 break;
510 }
Dan Gohman33134c42008-09-25 17:05:24 +0000511 }
512 return false;
513}
514
Dan Gohman40b189e2008-09-05 18:18:20 +0000515bool FastISel::SelectCast(User *I, ISD::NodeType Opcode) {
Owen Anderson6336b702008-08-27 18:58:30 +0000516 MVT SrcVT = TLI.getValueType(I->getOperand(0)->getType());
517 MVT DstVT = TLI.getValueType(I->getType());
Owen Andersond0533c92008-08-26 23:46:32 +0000518
519 if (SrcVT == MVT::Other || !SrcVT.isSimple() ||
Dan Gohman474d3b32009-03-13 23:53:06 +0000520 DstVT == MVT::Other || !DstVT.isSimple())
Owen Andersond0533c92008-08-26 23:46:32 +0000521 // Unhandled type. Halt "fast" selection and bail.
522 return false;
523
Dan Gohman474d3b32009-03-13 23:53:06 +0000524 // Check if the destination type is legal. Or as a special case,
525 // it may be i1 if we're doing a truncate because that's
526 // easy and somewhat common.
527 if (!TLI.isTypeLegal(DstVT))
528 if (DstVT != MVT::i1 || Opcode != ISD::TRUNCATE)
Dan Gohman91b6f972008-10-03 01:28:47 +0000529 // Unhandled type. Halt "fast" selection and bail.
530 return false;
Dan Gohman474d3b32009-03-13 23:53:06 +0000531
532 // Check if the source operand is legal. Or as a special case,
533 // it may be i1 if we're doing zero-extension because that's
534 // easy and somewhat common.
535 if (!TLI.isTypeLegal(SrcVT))
536 if (SrcVT != MVT::i1 || Opcode != ISD::ZERO_EXTEND)
537 // Unhandled type. Halt "fast" selection and bail.
538 return false;
539
Dan Gohman3df24e62008-09-03 23:12:08 +0000540 unsigned InputReg = getRegForValue(I->getOperand(0));
Owen Andersond0533c92008-08-26 23:46:32 +0000541 if (!InputReg)
542 // Unhandled operand. Halt "fast" selection and bail.
543 return false;
Dan Gohman14ea1ec2009-03-13 20:42:20 +0000544
545 // If the operand is i1, arrange for the high bits in the register to be zero.
Dan Gohman474d3b32009-03-13 23:53:06 +0000546 if (SrcVT == MVT::i1) {
547 SrcVT = TLI.getTypeToTransformTo(SrcVT);
Dan Gohman14ea1ec2009-03-13 20:42:20 +0000548 InputReg = FastEmitZExtFromI1(SrcVT.getSimpleVT(), InputReg);
549 if (!InputReg)
550 return false;
551 }
Dan Gohman474d3b32009-03-13 23:53:06 +0000552 // If the result is i1, truncate to the target's type for i1 first.
553 if (DstVT == MVT::i1)
554 DstVT = TLI.getTypeToTransformTo(DstVT);
Dan Gohman14ea1ec2009-03-13 20:42:20 +0000555
Owen Andersond0533c92008-08-26 23:46:32 +0000556 unsigned ResultReg = FastEmit_r(SrcVT.getSimpleVT(),
557 DstVT.getSimpleVT(),
558 Opcode,
559 InputReg);
560 if (!ResultReg)
561 return false;
562
Dan Gohman3df24e62008-09-03 23:12:08 +0000563 UpdateValueMap(I, ResultReg);
Owen Andersond0533c92008-08-26 23:46:32 +0000564 return true;
565}
566
Dan Gohman40b189e2008-09-05 18:18:20 +0000567bool FastISel::SelectBitCast(User *I) {
Dan Gohmanad368ac2008-08-27 18:10:19 +0000568 // If the bitcast doesn't change the type, just use the operand value.
569 if (I->getType() == I->getOperand(0)->getType()) {
Dan Gohman3df24e62008-09-03 23:12:08 +0000570 unsigned Reg = getRegForValue(I->getOperand(0));
Dan Gohmana318dab2008-08-27 20:41:38 +0000571 if (Reg == 0)
572 return false;
Dan Gohman3df24e62008-09-03 23:12:08 +0000573 UpdateValueMap(I, Reg);
Dan Gohmanad368ac2008-08-27 18:10:19 +0000574 return true;
575 }
576
577 // Bitcasts of other values become reg-reg copies or BIT_CONVERT operators.
Owen Anderson6336b702008-08-27 18:58:30 +0000578 MVT SrcVT = TLI.getValueType(I->getOperand(0)->getType());
579 MVT DstVT = TLI.getValueType(I->getType());
Owen Andersond0533c92008-08-26 23:46:32 +0000580
581 if (SrcVT == MVT::Other || !SrcVT.isSimple() ||
582 DstVT == MVT::Other || !DstVT.isSimple() ||
583 !TLI.isTypeLegal(SrcVT) || !TLI.isTypeLegal(DstVT))
584 // Unhandled type. Halt "fast" selection and bail.
585 return false;
586
Dan Gohman3df24e62008-09-03 23:12:08 +0000587 unsigned Op0 = getRegForValue(I->getOperand(0));
Dan Gohmanad368ac2008-08-27 18:10:19 +0000588 if (Op0 == 0)
589 // Unhandled operand. Halt "fast" selection and bail.
Owen Andersond0533c92008-08-26 23:46:32 +0000590 return false;
591
Dan Gohmanad368ac2008-08-27 18:10:19 +0000592 // First, try to perform the bitcast by inserting a reg-reg copy.
593 unsigned ResultReg = 0;
594 if (SrcVT.getSimpleVT() == DstVT.getSimpleVT()) {
595 TargetRegisterClass* SrcClass = TLI.getRegClassFor(SrcVT);
596 TargetRegisterClass* DstClass = TLI.getRegClassFor(DstVT);
597 ResultReg = createResultReg(DstClass);
598
599 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
600 Op0, DstClass, SrcClass);
601 if (!InsertedCopy)
602 ResultReg = 0;
603 }
604
605 // If the reg-reg copy failed, select a BIT_CONVERT opcode.
606 if (!ResultReg)
607 ResultReg = FastEmit_r(SrcVT.getSimpleVT(), DstVT.getSimpleVT(),
608 ISD::BIT_CONVERT, Op0);
609
610 if (!ResultReg)
Owen Andersond0533c92008-08-26 23:46:32 +0000611 return false;
612
Dan Gohman3df24e62008-09-03 23:12:08 +0000613 UpdateValueMap(I, ResultReg);
Owen Andersond0533c92008-08-26 23:46:32 +0000614 return true;
615}
616
Dan Gohman3df24e62008-09-03 23:12:08 +0000617bool
618FastISel::SelectInstruction(Instruction *I) {
Dan Gohman40b189e2008-09-05 18:18:20 +0000619 return SelectOperator(I, I->getOpcode());
620}
621
Dan Gohmand98d6202008-10-02 22:15:21 +0000622/// FastEmitBranch - Emit an unconditional branch to the given block,
623/// unless it is the immediate (fall-through) successor, and update
624/// the CFG.
625void
626FastISel::FastEmitBranch(MachineBasicBlock *MSucc) {
627 MachineFunction::iterator NextMBB =
628 next(MachineFunction::iterator(MBB));
629
630 if (MBB->isLayoutSuccessor(MSucc)) {
631 // The unconditional fall-through case, which needs no instructions.
632 } else {
633 // The unconditional branch case.
634 TII.InsertBranch(*MBB, MSucc, NULL, SmallVector<MachineOperand, 0>());
635 }
636 MBB->addSuccessor(MSucc);
637}
638
Dan Gohman40b189e2008-09-05 18:18:20 +0000639bool
640FastISel::SelectOperator(User *I, unsigned Opcode) {
641 switch (Opcode) {
Dan Gohmanae3a0be2009-06-04 22:49:04 +0000642 case Instruction::Add:
643 return SelectBinaryOp(I, ISD::ADD);
644 case Instruction::FAdd:
645 return SelectBinaryOp(I, ISD::FADD);
646 case Instruction::Sub:
647 return SelectBinaryOp(I, ISD::SUB);
648 case Instruction::FSub:
649 return SelectBinaryOp(I, ISD::FSUB);
650 case Instruction::Mul:
651 return SelectBinaryOp(I, ISD::MUL);
652 case Instruction::FMul:
653 return SelectBinaryOp(I, ISD::FMUL);
Dan Gohman3df24e62008-09-03 23:12:08 +0000654 case Instruction::SDiv:
655 return SelectBinaryOp(I, ISD::SDIV);
656 case Instruction::UDiv:
657 return SelectBinaryOp(I, ISD::UDIV);
658 case Instruction::FDiv:
659 return SelectBinaryOp(I, ISD::FDIV);
660 case Instruction::SRem:
661 return SelectBinaryOp(I, ISD::SREM);
662 case Instruction::URem:
663 return SelectBinaryOp(I, ISD::UREM);
664 case Instruction::FRem:
665 return SelectBinaryOp(I, ISD::FREM);
666 case Instruction::Shl:
667 return SelectBinaryOp(I, ISD::SHL);
668 case Instruction::LShr:
669 return SelectBinaryOp(I, ISD::SRL);
670 case Instruction::AShr:
671 return SelectBinaryOp(I, ISD::SRA);
672 case Instruction::And:
673 return SelectBinaryOp(I, ISD::AND);
674 case Instruction::Or:
675 return SelectBinaryOp(I, ISD::OR);
676 case Instruction::Xor:
677 return SelectBinaryOp(I, ISD::XOR);
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000678
Dan Gohman3df24e62008-09-03 23:12:08 +0000679 case Instruction::GetElementPtr:
680 return SelectGetElementPtr(I);
Dan Gohmanbdedd442008-08-20 00:11:48 +0000681
Dan Gohman3df24e62008-09-03 23:12:08 +0000682 case Instruction::Br: {
683 BranchInst *BI = cast<BranchInst>(I);
Dan Gohmanbdedd442008-08-20 00:11:48 +0000684
Dan Gohman3df24e62008-09-03 23:12:08 +0000685 if (BI->isUnconditional()) {
Dan Gohman3df24e62008-09-03 23:12:08 +0000686 BasicBlock *LLVMSucc = BI->getSuccessor(0);
687 MachineBasicBlock *MSucc = MBBMap[LLVMSucc];
Dan Gohmand98d6202008-10-02 22:15:21 +0000688 FastEmitBranch(MSucc);
Dan Gohman3df24e62008-09-03 23:12:08 +0000689 return true;
Owen Anderson9d5b4162008-08-27 00:31:01 +0000690 }
Dan Gohman3df24e62008-09-03 23:12:08 +0000691
692 // Conditional branches are not handed yet.
693 // Halt "fast" selection and bail.
694 return false;
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000695 }
696
Dan Gohman087c8502008-09-05 01:08:41 +0000697 case Instruction::Unreachable:
698 // Nothing to emit.
699 return true;
700
Dan Gohman3df24e62008-09-03 23:12:08 +0000701 case Instruction::PHI:
702 // PHI nodes are already emitted.
703 return true;
Dan Gohman0586d912008-09-10 20:11:02 +0000704
705 case Instruction::Alloca:
706 // FunctionLowering has the static-sized case covered.
707 if (StaticAllocaMap.count(cast<AllocaInst>(I)))
708 return true;
709
710 // Dynamic-sized alloca is not handled yet.
711 return false;
Dan Gohman3df24e62008-09-03 23:12:08 +0000712
Dan Gohman33134c42008-09-25 17:05:24 +0000713 case Instruction::Call:
714 return SelectCall(I);
715
Dan Gohman3df24e62008-09-03 23:12:08 +0000716 case Instruction::BitCast:
717 return SelectBitCast(I);
718
719 case Instruction::FPToSI:
720 return SelectCast(I, ISD::FP_TO_SINT);
721 case Instruction::ZExt:
722 return SelectCast(I, ISD::ZERO_EXTEND);
723 case Instruction::SExt:
724 return SelectCast(I, ISD::SIGN_EXTEND);
725 case Instruction::Trunc:
726 return SelectCast(I, ISD::TRUNCATE);
727 case Instruction::SIToFP:
728 return SelectCast(I, ISD::SINT_TO_FP);
729
730 case Instruction::IntToPtr: // Deliberate fall-through.
731 case Instruction::PtrToInt: {
732 MVT SrcVT = TLI.getValueType(I->getOperand(0)->getType());
733 MVT DstVT = TLI.getValueType(I->getType());
734 if (DstVT.bitsGT(SrcVT))
735 return SelectCast(I, ISD::ZERO_EXTEND);
736 if (DstVT.bitsLT(SrcVT))
737 return SelectCast(I, ISD::TRUNCATE);
738 unsigned Reg = getRegForValue(I->getOperand(0));
739 if (Reg == 0) return false;
740 UpdateValueMap(I, Reg);
741 return true;
742 }
Dan Gohmand57dd5f2008-09-23 21:53:34 +0000743
Dan Gohman3df24e62008-09-03 23:12:08 +0000744 default:
745 // Unhandled instruction. Halt "fast" selection and bail.
746 return false;
747 }
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000748}
749
Dan Gohman3df24e62008-09-03 23:12:08 +0000750FastISel::FastISel(MachineFunction &mf,
Dan Gohmand57dd5f2008-09-23 21:53:34 +0000751 MachineModuleInfo *mmi,
Devang Patel83489bb2009-01-13 00:35:13 +0000752 DwarfWriter *dw,
Dan Gohman3df24e62008-09-03 23:12:08 +0000753 DenseMap<const Value *, unsigned> &vm,
Dan Gohman0586d912008-09-10 20:11:02 +0000754 DenseMap<const BasicBlock *, MachineBasicBlock *> &bm,
Dan Gohmandd5b58a2008-10-14 23:54:11 +0000755 DenseMap<const AllocaInst *, int> &am
756#ifndef NDEBUG
757 , SmallSet<Instruction*, 8> &cil
758#endif
759 )
Dan Gohman3df24e62008-09-03 23:12:08 +0000760 : MBB(0),
761 ValueMap(vm),
762 MBBMap(bm),
Dan Gohman0586d912008-09-10 20:11:02 +0000763 StaticAllocaMap(am),
Dan Gohmandd5b58a2008-10-14 23:54:11 +0000764#ifndef NDEBUG
765 CatchInfoLost(cil),
766#endif
Dan Gohman3df24e62008-09-03 23:12:08 +0000767 MF(mf),
Dan Gohmand57dd5f2008-09-23 21:53:34 +0000768 MMI(mmi),
Devang Patel83489bb2009-01-13 00:35:13 +0000769 DW(dw),
Dan Gohman3df24e62008-09-03 23:12:08 +0000770 MRI(MF.getRegInfo()),
Dan Gohman0586d912008-09-10 20:11:02 +0000771 MFI(*MF.getFrameInfo()),
772 MCP(*MF.getConstantPool()),
Dan Gohman3df24e62008-09-03 23:12:08 +0000773 TM(MF.getTarget()),
Dan Gohman22bb3112008-08-22 00:20:26 +0000774 TD(*TM.getTargetData()),
775 TII(*TM.getInstrInfo()),
776 TLI(*TM.getTargetLowering()) {
Dan Gohmanbb466332008-08-20 21:05:57 +0000777}
778
Dan Gohmane285a742008-08-14 21:51:29 +0000779FastISel::~FastISel() {}
780
Evan Cheng36fd9412008-09-02 21:59:13 +0000781unsigned FastISel::FastEmit_(MVT::SimpleValueType, MVT::SimpleValueType,
782 ISD::NodeType) {
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000783 return 0;
784}
785
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000786unsigned FastISel::FastEmit_r(MVT::SimpleValueType, MVT::SimpleValueType,
787 ISD::NodeType, unsigned /*Op0*/) {
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000788 return 0;
789}
790
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000791unsigned FastISel::FastEmit_rr(MVT::SimpleValueType, MVT::SimpleValueType,
792 ISD::NodeType, unsigned /*Op0*/,
793 unsigned /*Op0*/) {
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000794 return 0;
795}
796
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000797unsigned FastISel::FastEmit_i(MVT::SimpleValueType, MVT::SimpleValueType,
798 ISD::NodeType, uint64_t /*Imm*/) {
Evan Cheng83785c82008-08-20 22:45:34 +0000799 return 0;
800}
801
Dan Gohman10df0fa2008-08-27 01:09:54 +0000802unsigned FastISel::FastEmit_f(MVT::SimpleValueType, MVT::SimpleValueType,
803 ISD::NodeType, ConstantFP * /*FPImm*/) {
804 return 0;
805}
806
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000807unsigned FastISel::FastEmit_ri(MVT::SimpleValueType, MVT::SimpleValueType,
808 ISD::NodeType, unsigned /*Op0*/,
809 uint64_t /*Imm*/) {
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000810 return 0;
811}
812
Dan Gohman10df0fa2008-08-27 01:09:54 +0000813unsigned FastISel::FastEmit_rf(MVT::SimpleValueType, MVT::SimpleValueType,
814 ISD::NodeType, unsigned /*Op0*/,
815 ConstantFP * /*FPImm*/) {
816 return 0;
817}
818
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000819unsigned FastISel::FastEmit_rri(MVT::SimpleValueType, MVT::SimpleValueType,
820 ISD::NodeType,
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000821 unsigned /*Op0*/, unsigned /*Op1*/,
822 uint64_t /*Imm*/) {
Evan Cheng83785c82008-08-20 22:45:34 +0000823 return 0;
824}
825
826/// FastEmit_ri_ - This method is a wrapper of FastEmit_ri. It first tries
827/// to emit an instruction with an immediate operand using FastEmit_ri.
828/// If that fails, it materializes the immediate into a register and try
829/// FastEmit_rr instead.
830unsigned FastISel::FastEmit_ri_(MVT::SimpleValueType VT, ISD::NodeType Opcode,
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000831 unsigned Op0, uint64_t Imm,
832 MVT::SimpleValueType ImmType) {
Evan Cheng83785c82008-08-20 22:45:34 +0000833 // First check if immediate type is legal. If not, we can't use the ri form.
Dan Gohman151ed612008-08-27 18:15:05 +0000834 unsigned ResultReg = FastEmit_ri(VT, VT, Opcode, Op0, Imm);
Evan Cheng83785c82008-08-20 22:45:34 +0000835 if (ResultReg != 0)
836 return ResultReg;
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000837 unsigned MaterialReg = FastEmit_i(ImmType, ImmType, ISD::Constant, Imm);
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000838 if (MaterialReg == 0)
839 return 0;
Owen Anderson0f84e4e2008-08-25 23:58:18 +0000840 return FastEmit_rr(VT, VT, Opcode, Op0, MaterialReg);
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000841}
842
Dan Gohman10df0fa2008-08-27 01:09:54 +0000843/// FastEmit_rf_ - This method is a wrapper of FastEmit_ri. It first tries
844/// to emit an instruction with a floating-point immediate operand using
845/// FastEmit_rf. If that fails, it materializes the immediate into a register
846/// and try FastEmit_rr instead.
847unsigned FastISel::FastEmit_rf_(MVT::SimpleValueType VT, ISD::NodeType Opcode,
848 unsigned Op0, ConstantFP *FPImm,
849 MVT::SimpleValueType ImmType) {
Dan Gohman10df0fa2008-08-27 01:09:54 +0000850 // First check if immediate type is legal. If not, we can't use the rf form.
Dan Gohman151ed612008-08-27 18:15:05 +0000851 unsigned ResultReg = FastEmit_rf(VT, VT, Opcode, Op0, FPImm);
Dan Gohman10df0fa2008-08-27 01:09:54 +0000852 if (ResultReg != 0)
853 return ResultReg;
854
855 // Materialize the constant in a register.
856 unsigned MaterialReg = FastEmit_f(ImmType, ImmType, ISD::ConstantFP, FPImm);
857 if (MaterialReg == 0) {
Dan Gohman96a99992008-08-27 18:01:42 +0000858 // If the target doesn't have a way to directly enter a floating-point
859 // value into a register, use an alternate approach.
860 // TODO: The current approach only supports floating-point constants
861 // that can be constructed by conversion from integer values. This should
862 // be replaced by code that creates a load from a constant-pool entry,
863 // which will require some target-specific work.
Dan Gohman10df0fa2008-08-27 01:09:54 +0000864 const APFloat &Flt = FPImm->getValueAPF();
865 MVT IntVT = TLI.getPointerTy();
866
867 uint64_t x[2];
868 uint32_t IntBitWidth = IntVT.getSizeInBits();
Dale Johannesen23a98552008-10-09 23:00:39 +0000869 bool isExact;
870 (void) Flt.convertToInteger(x, IntBitWidth, /*isSigned=*/true,
871 APFloat::rmTowardZero, &isExact);
872 if (!isExact)
Dan Gohman10df0fa2008-08-27 01:09:54 +0000873 return 0;
874 APInt IntVal(IntBitWidth, 2, x);
875
876 unsigned IntegerReg = FastEmit_i(IntVT.getSimpleVT(), IntVT.getSimpleVT(),
877 ISD::Constant, IntVal.getZExtValue());
878 if (IntegerReg == 0)
879 return 0;
880 MaterialReg = FastEmit_r(IntVT.getSimpleVT(), VT,
881 ISD::SINT_TO_FP, IntegerReg);
882 if (MaterialReg == 0)
883 return 0;
884 }
885 return FastEmit_rr(VT, VT, Opcode, Op0, MaterialReg);
886}
887
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000888unsigned FastISel::createResultReg(const TargetRegisterClass* RC) {
889 return MRI.createVirtualRegister(RC);
Evan Cheng83785c82008-08-20 22:45:34 +0000890}
891
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000892unsigned FastISel::FastEmitInst_(unsigned MachineInstOpcode,
Dan Gohman77ad7962008-08-20 18:09:38 +0000893 const TargetRegisterClass* RC) {
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000894 unsigned ResultReg = createResultReg(RC);
Dan Gohmanbb466332008-08-20 21:05:57 +0000895 const TargetInstrDesc &II = TII.get(MachineInstOpcode);
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000896
Bill Wendling9bc96a52009-02-03 00:55:04 +0000897 BuildMI(MBB, DL, II, ResultReg);
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000898 return ResultReg;
899}
900
901unsigned FastISel::FastEmitInst_r(unsigned MachineInstOpcode,
902 const TargetRegisterClass *RC,
903 unsigned Op0) {
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000904 unsigned ResultReg = createResultReg(RC);
Dan Gohmanbb466332008-08-20 21:05:57 +0000905 const TargetInstrDesc &II = TII.get(MachineInstOpcode);
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000906
Evan Cheng5960e4e2008-09-08 08:38:20 +0000907 if (II.getNumDefs() >= 1)
Bill Wendling9bc96a52009-02-03 00:55:04 +0000908 BuildMI(MBB, DL, II, ResultReg).addReg(Op0);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000909 else {
Bill Wendling9bc96a52009-02-03 00:55:04 +0000910 BuildMI(MBB, DL, II).addReg(Op0);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000911 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
912 II.ImplicitDefs[0], RC, RC);
913 if (!InsertedCopy)
914 ResultReg = 0;
915 }
916
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000917 return ResultReg;
918}
919
920unsigned FastISel::FastEmitInst_rr(unsigned MachineInstOpcode,
921 const TargetRegisterClass *RC,
922 unsigned Op0, unsigned Op1) {
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000923 unsigned ResultReg = createResultReg(RC);
Dan Gohmanbb466332008-08-20 21:05:57 +0000924 const TargetInstrDesc &II = TII.get(MachineInstOpcode);
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000925
Evan Cheng5960e4e2008-09-08 08:38:20 +0000926 if (II.getNumDefs() >= 1)
Bill Wendling9bc96a52009-02-03 00:55:04 +0000927 BuildMI(MBB, DL, II, ResultReg).addReg(Op0).addReg(Op1);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000928 else {
Bill Wendling9bc96a52009-02-03 00:55:04 +0000929 BuildMI(MBB, DL, II).addReg(Op0).addReg(Op1);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000930 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
931 II.ImplicitDefs[0], RC, RC);
932 if (!InsertedCopy)
933 ResultReg = 0;
934 }
Dan Gohmanb0cf29c2008-08-13 20:19:35 +0000935 return ResultReg;
936}
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000937
938unsigned FastISel::FastEmitInst_ri(unsigned MachineInstOpcode,
939 const TargetRegisterClass *RC,
940 unsigned Op0, uint64_t Imm) {
941 unsigned ResultReg = createResultReg(RC);
942 const TargetInstrDesc &II = TII.get(MachineInstOpcode);
943
Evan Cheng5960e4e2008-09-08 08:38:20 +0000944 if (II.getNumDefs() >= 1)
Bill Wendling9bc96a52009-02-03 00:55:04 +0000945 BuildMI(MBB, DL, II, ResultReg).addReg(Op0).addImm(Imm);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000946 else {
Bill Wendling9bc96a52009-02-03 00:55:04 +0000947 BuildMI(MBB, DL, II).addReg(Op0).addImm(Imm);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000948 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
949 II.ImplicitDefs[0], RC, RC);
950 if (!InsertedCopy)
951 ResultReg = 0;
952 }
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000953 return ResultReg;
954}
955
Dan Gohman10df0fa2008-08-27 01:09:54 +0000956unsigned FastISel::FastEmitInst_rf(unsigned MachineInstOpcode,
957 const TargetRegisterClass *RC,
958 unsigned Op0, ConstantFP *FPImm) {
959 unsigned ResultReg = createResultReg(RC);
960 const TargetInstrDesc &II = TII.get(MachineInstOpcode);
961
Evan Cheng5960e4e2008-09-08 08:38:20 +0000962 if (II.getNumDefs() >= 1)
Bill Wendling9bc96a52009-02-03 00:55:04 +0000963 BuildMI(MBB, DL, II, ResultReg).addReg(Op0).addFPImm(FPImm);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000964 else {
Bill Wendling9bc96a52009-02-03 00:55:04 +0000965 BuildMI(MBB, DL, II).addReg(Op0).addFPImm(FPImm);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000966 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
967 II.ImplicitDefs[0], RC, RC);
968 if (!InsertedCopy)
969 ResultReg = 0;
970 }
Dan Gohman10df0fa2008-08-27 01:09:54 +0000971 return ResultReg;
972}
973
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000974unsigned FastISel::FastEmitInst_rri(unsigned MachineInstOpcode,
975 const TargetRegisterClass *RC,
976 unsigned Op0, unsigned Op1, uint64_t Imm) {
977 unsigned ResultReg = createResultReg(RC);
978 const TargetInstrDesc &II = TII.get(MachineInstOpcode);
979
Evan Cheng5960e4e2008-09-08 08:38:20 +0000980 if (II.getNumDefs() >= 1)
Bill Wendling9bc96a52009-02-03 00:55:04 +0000981 BuildMI(MBB, DL, II, ResultReg).addReg(Op0).addReg(Op1).addImm(Imm);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000982 else {
Bill Wendling9bc96a52009-02-03 00:55:04 +0000983 BuildMI(MBB, DL, II).addReg(Op0).addReg(Op1).addImm(Imm);
Evan Cheng5960e4e2008-09-08 08:38:20 +0000984 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
985 II.ImplicitDefs[0], RC, RC);
986 if (!InsertedCopy)
987 ResultReg = 0;
988 }
Dan Gohmand5fe57d2008-08-21 01:41:07 +0000989 return ResultReg;
990}
Owen Anderson6d0c25e2008-08-25 20:20:32 +0000991
992unsigned FastISel::FastEmitInst_i(unsigned MachineInstOpcode,
993 const TargetRegisterClass *RC,
994 uint64_t Imm) {
995 unsigned ResultReg = createResultReg(RC);
996 const TargetInstrDesc &II = TII.get(MachineInstOpcode);
997
Evan Cheng5960e4e2008-09-08 08:38:20 +0000998 if (II.getNumDefs() >= 1)
Bill Wendling9bc96a52009-02-03 00:55:04 +0000999 BuildMI(MBB, DL, II, ResultReg).addImm(Imm);
Evan Cheng5960e4e2008-09-08 08:38:20 +00001000 else {
Bill Wendling9bc96a52009-02-03 00:55:04 +00001001 BuildMI(MBB, DL, II).addImm(Imm);
Evan Cheng5960e4e2008-09-08 08:38:20 +00001002 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
1003 II.ImplicitDefs[0], RC, RC);
1004 if (!InsertedCopy)
1005 ResultReg = 0;
1006 }
Owen Anderson6d0c25e2008-08-25 20:20:32 +00001007 return ResultReg;
Evan Chengb41aec52008-08-25 22:20:39 +00001008}
Owen Anderson8970f002008-08-27 22:30:02 +00001009
Evan Cheng536ab132009-01-22 09:10:11 +00001010unsigned FastISel::FastEmitInst_extractsubreg(MVT::SimpleValueType RetVT,
1011 unsigned Op0, uint32_t Idx) {
Owen Anderson40a468f2008-08-28 17:47:37 +00001012 const TargetRegisterClass* RC = MRI.getRegClass(Op0);
Owen Anderson8970f002008-08-27 22:30:02 +00001013
Evan Cheng536ab132009-01-22 09:10:11 +00001014 unsigned ResultReg = createResultReg(TLI.getRegClassFor(RetVT));
Owen Anderson8970f002008-08-27 22:30:02 +00001015 const TargetInstrDesc &II = TII.get(TargetInstrInfo::EXTRACT_SUBREG);
1016
Evan Cheng5960e4e2008-09-08 08:38:20 +00001017 if (II.getNumDefs() >= 1)
Bill Wendling9bc96a52009-02-03 00:55:04 +00001018 BuildMI(MBB, DL, II, ResultReg).addReg(Op0).addImm(Idx);
Evan Cheng5960e4e2008-09-08 08:38:20 +00001019 else {
Bill Wendling9bc96a52009-02-03 00:55:04 +00001020 BuildMI(MBB, DL, II).addReg(Op0).addImm(Idx);
Evan Cheng5960e4e2008-09-08 08:38:20 +00001021 bool InsertedCopy = TII.copyRegToReg(*MBB, MBB->end(), ResultReg,
1022 II.ImplicitDefs[0], RC, RC);
1023 if (!InsertedCopy)
1024 ResultReg = 0;
1025 }
Owen Anderson8970f002008-08-27 22:30:02 +00001026 return ResultReg;
1027}
Dan Gohman14ea1ec2009-03-13 20:42:20 +00001028
1029/// FastEmitZExtFromI1 - Emit MachineInstrs to compute the value of Op
1030/// with all but the least significant bit set to zero.
1031unsigned FastISel::FastEmitZExtFromI1(MVT::SimpleValueType VT, unsigned Op) {
1032 return FastEmit_ri(VT, VT, ISD::AND, Op, 1);
1033}