1 //===-- SPIRVEmitIntrinsics.cpp - emit SPIRV intrinsics ---------*- C++ -*-===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // The pass emits SPIRV intrinsics keeping essential high-level information for
10 // the translation of LLVM IR to SPIR-V.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "SPIRV.h"
15 #include "SPIRVTargetMachine.h"
16 #include "SPIRVUtils.h"
17 #include "llvm/IR/IRBuilder.h"
18 #include "llvm/IR/InstIterator.h"
19 #include "llvm/IR/InstVisitor.h"
20 #include "llvm/IR/IntrinsicsSPIRV.h"
21
22 #include <queue>
23
24 // This pass performs the following transformation on LLVM IR level required
25 // for the following translation to SPIR-V:
26 // - replaces direct usages of aggregate constants with target-specific
27 // intrinsics;
28 // - replaces aggregates-related instructions (extract/insert, ld/st, etc)
29 // with a target-specific intrinsics;
30 // - emits intrinsics for the global variable initializers since IRTranslator
31 // doesn't handle them and it's not very convenient to translate them
32 // ourselves;
33 // - emits intrinsics to keep track of the string names assigned to the values;
34 // - emits intrinsics to keep track of constants (this is necessary to have an
35 // LLVM IR constant after the IRTranslation is completed) for their further
36 // deduplication;
37 // - emits intrinsics to keep track of original LLVM types of the values
38 // to be able to emit proper SPIR-V types eventually.
39 //
40 // TODO: consider removing spv.track.constant in favor of spv.assign.type.
41
42 using namespace llvm;
43
44 namespace llvm {
45 void initializeSPIRVEmitIntrinsicsPass(PassRegistry &);
46 } // namespace llvm
47
48 namespace {
49 class SPIRVEmitIntrinsics
50 : public FunctionPass,
51 public InstVisitor<SPIRVEmitIntrinsics, Instruction *> {
52 SPIRVTargetMachine *TM = nullptr;
53 IRBuilder<> *IRB = nullptr;
54 Function *F = nullptr;
55 bool TrackConstants = true;
56 DenseMap<Instruction *, Constant *> AggrConsts;
57 DenseSet<Instruction *> AggrStores;
58 void preprocessCompositeConstants();
buildIntrWithMD(Intrinsic::ID IntrID,ArrayRef<Type * > Types,Value * Arg,Value * Arg2)59 CallInst *buildIntrWithMD(Intrinsic::ID IntrID, ArrayRef<Type *> Types,
60 Value *Arg, Value *Arg2) {
61 ConstantAsMetadata *CM = ValueAsMetadata::getConstant(Arg);
62 MDTuple *TyMD = MDNode::get(F->getContext(), CM);
63 MetadataAsValue *VMD = MetadataAsValue::get(F->getContext(), TyMD);
64 return IRB->CreateIntrinsic(IntrID, {Types}, {Arg2, VMD});
65 }
66 void replaceMemInstrUses(Instruction *Old, Instruction *New);
67 void processInstrAfterVisit(Instruction *I);
68 void insertAssignTypeIntrs(Instruction *I);
69 void processGlobalValue(GlobalVariable &GV);
70
71 public:
72 static char ID;
SPIRVEmitIntrinsics()73 SPIRVEmitIntrinsics() : FunctionPass(ID) {
74 initializeSPIRVEmitIntrinsicsPass(*PassRegistry::getPassRegistry());
75 }
SPIRVEmitIntrinsics(SPIRVTargetMachine * _TM)76 SPIRVEmitIntrinsics(SPIRVTargetMachine *_TM) : FunctionPass(ID), TM(_TM) {
77 initializeSPIRVEmitIntrinsicsPass(*PassRegistry::getPassRegistry());
78 }
visitInstruction(Instruction & I)79 Instruction *visitInstruction(Instruction &I) { return &I; }
80 Instruction *visitSwitchInst(SwitchInst &I);
81 Instruction *visitGetElementPtrInst(GetElementPtrInst &I);
82 Instruction *visitBitCastInst(BitCastInst &I);
83 Instruction *visitInsertElementInst(InsertElementInst &I);
84 Instruction *visitExtractElementInst(ExtractElementInst &I);
85 Instruction *visitInsertValueInst(InsertValueInst &I);
86 Instruction *visitExtractValueInst(ExtractValueInst &I);
87 Instruction *visitLoadInst(LoadInst &I);
88 Instruction *visitStoreInst(StoreInst &I);
89 Instruction *visitAllocaInst(AllocaInst &I);
90 Instruction *visitAtomicCmpXchgInst(AtomicCmpXchgInst &I);
91 bool runOnFunction(Function &F) override;
92 };
93 } // namespace
94
95 char SPIRVEmitIntrinsics::ID = 0;
96
97 INITIALIZE_PASS(SPIRVEmitIntrinsics, "emit-intrinsics", "SPIRV emit intrinsics",
98 false, false)
99
isAssignTypeInstr(const Instruction * I)100 static inline bool isAssignTypeInstr(const Instruction *I) {
101 return isa<IntrinsicInst>(I) &&
102 cast<IntrinsicInst>(I)->getIntrinsicID() == Intrinsic::spv_assign_type;
103 }
104
isMemInstrToReplace(Instruction * I)105 static bool isMemInstrToReplace(Instruction *I) {
106 return isa<StoreInst>(I) || isa<LoadInst>(I) || isa<InsertValueInst>(I) ||
107 isa<ExtractValueInst>(I) || isa<AtomicCmpXchgInst>(I);
108 }
109
isAggrToReplace(const Value * V)110 static bool isAggrToReplace(const Value *V) {
111 return isa<ConstantAggregate>(V) || isa<ConstantDataArray>(V) ||
112 (isa<ConstantAggregateZero>(V) && !V->getType()->isVectorTy());
113 }
114
setInsertPointSkippingPhis(IRBuilder<> & B,Instruction * I)115 static void setInsertPointSkippingPhis(IRBuilder<> &B, Instruction *I) {
116 if (isa<PHINode>(I))
117 B.SetInsertPoint(I->getParent(), I->getParent()->getFirstInsertionPt());
118 else
119 B.SetInsertPoint(I);
120 }
121
requireAssignType(Instruction * I)122 static bool requireAssignType(Instruction *I) {
123 IntrinsicInst *Intr = dyn_cast<IntrinsicInst>(I);
124 if (Intr) {
125 switch (Intr->getIntrinsicID()) {
126 case Intrinsic::invariant_start:
127 case Intrinsic::invariant_end:
128 return false;
129 }
130 }
131 return true;
132 }
133
replaceMemInstrUses(Instruction * Old,Instruction * New)134 void SPIRVEmitIntrinsics::replaceMemInstrUses(Instruction *Old,
135 Instruction *New) {
136 while (!Old->user_empty()) {
137 auto *U = Old->user_back();
138 if (isAssignTypeInstr(U)) {
139 IRB->SetInsertPoint(U);
140 SmallVector<Value *, 2> Args = {New, U->getOperand(1)};
141 IRB->CreateIntrinsic(Intrinsic::spv_assign_type, {New->getType()}, Args);
142 U->eraseFromParent();
143 } else if (isMemInstrToReplace(U) || isa<ReturnInst>(U) ||
144 isa<CallInst>(U)) {
145 U->replaceUsesOfWith(Old, New);
146 } else {
147 llvm_unreachable("illegal aggregate intrinsic user");
148 }
149 }
150 Old->eraseFromParent();
151 }
152
preprocessCompositeConstants()153 void SPIRVEmitIntrinsics::preprocessCompositeConstants() {
154 std::queue<Instruction *> Worklist;
155 for (auto &I : instructions(F))
156 Worklist.push(&I);
157
158 while (!Worklist.empty()) {
159 auto *I = Worklist.front();
160 assert(I);
161 bool KeepInst = false;
162 for (const auto &Op : I->operands()) {
163 auto BuildCompositeIntrinsic = [&KeepInst, &Worklist, &I, &Op,
164 this](Constant *AggrC,
165 ArrayRef<Value *> Args) {
166 IRB->SetInsertPoint(I);
167 auto *CCI =
168 IRB->CreateIntrinsic(Intrinsic::spv_const_composite, {}, {Args});
169 Worklist.push(CCI);
170 I->replaceUsesOfWith(Op, CCI);
171 KeepInst = true;
172 AggrConsts[CCI] = AggrC;
173 };
174
175 if (auto *AggrC = dyn_cast<ConstantAggregate>(Op)) {
176 SmallVector<Value *> Args(AggrC->op_begin(), AggrC->op_end());
177 BuildCompositeIntrinsic(AggrC, Args);
178 } else if (auto *AggrC = dyn_cast<ConstantDataArray>(Op)) {
179 SmallVector<Value *> Args;
180 for (unsigned i = 0; i < AggrC->getNumElements(); ++i)
181 Args.push_back(AggrC->getElementAsConstant(i));
182 BuildCompositeIntrinsic(AggrC, Args);
183 } else if (isa<ConstantAggregateZero>(Op) &&
184 !Op->getType()->isVectorTy()) {
185 auto *AggrC = cast<ConstantAggregateZero>(Op);
186 SmallVector<Value *> Args(AggrC->op_begin(), AggrC->op_end());
187 BuildCompositeIntrinsic(AggrC, Args);
188 }
189 }
190 if (!KeepInst)
191 Worklist.pop();
192 }
193 }
194
visitSwitchInst(SwitchInst & I)195 Instruction *SPIRVEmitIntrinsics::visitSwitchInst(SwitchInst &I) {
196 SmallVector<Value *, 4> Args;
197 for (auto &Op : I.operands())
198 if (Op.get()->getType()->isSized())
199 Args.push_back(Op);
200 IRB->CreateIntrinsic(Intrinsic::spv_switch, {I.getOperand(0)->getType()},
201 {Args});
202 return &I;
203 }
204
visitGetElementPtrInst(GetElementPtrInst & I)205 Instruction *SPIRVEmitIntrinsics::visitGetElementPtrInst(GetElementPtrInst &I) {
206 SmallVector<Type *, 2> Types = {I.getType(), I.getOperand(0)->getType()};
207 SmallVector<Value *, 4> Args;
208 Args.push_back(IRB->getInt1(I.isInBounds()));
209 for (auto &Op : I.operands())
210 Args.push_back(Op);
211 auto *NewI = IRB->CreateIntrinsic(Intrinsic::spv_gep, {Types}, {Args});
212 I.replaceAllUsesWith(NewI);
213 I.eraseFromParent();
214 return NewI;
215 }
216
visitBitCastInst(BitCastInst & I)217 Instruction *SPIRVEmitIntrinsics::visitBitCastInst(BitCastInst &I) {
218 SmallVector<Type *, 2> Types = {I.getType(), I.getOperand(0)->getType()};
219 SmallVector<Value *> Args(I.op_begin(), I.op_end());
220 auto *NewI = IRB->CreateIntrinsic(Intrinsic::spv_bitcast, {Types}, {Args});
221 std::string InstName = I.hasName() ? I.getName().str() : "";
222 I.replaceAllUsesWith(NewI);
223 I.eraseFromParent();
224 NewI->setName(InstName);
225 return NewI;
226 }
227
visitInsertElementInst(InsertElementInst & I)228 Instruction *SPIRVEmitIntrinsics::visitInsertElementInst(InsertElementInst &I) {
229 SmallVector<Type *, 4> Types = {I.getType(), I.getOperand(0)->getType(),
230 I.getOperand(1)->getType(),
231 I.getOperand(2)->getType()};
232 SmallVector<Value *> Args(I.op_begin(), I.op_end());
233 auto *NewI = IRB->CreateIntrinsic(Intrinsic::spv_insertelt, {Types}, {Args});
234 std::string InstName = I.hasName() ? I.getName().str() : "";
235 I.replaceAllUsesWith(NewI);
236 I.eraseFromParent();
237 NewI->setName(InstName);
238 return NewI;
239 }
240
241 Instruction *
visitExtractElementInst(ExtractElementInst & I)242 SPIRVEmitIntrinsics::visitExtractElementInst(ExtractElementInst &I) {
243 SmallVector<Type *, 3> Types = {I.getType(), I.getVectorOperandType(),
244 I.getIndexOperand()->getType()};
245 SmallVector<Value *, 2> Args = {I.getVectorOperand(), I.getIndexOperand()};
246 auto *NewI = IRB->CreateIntrinsic(Intrinsic::spv_extractelt, {Types}, {Args});
247 std::string InstName = I.hasName() ? I.getName().str() : "";
248 I.replaceAllUsesWith(NewI);
249 I.eraseFromParent();
250 NewI->setName(InstName);
251 return NewI;
252 }
253
visitInsertValueInst(InsertValueInst & I)254 Instruction *SPIRVEmitIntrinsics::visitInsertValueInst(InsertValueInst &I) {
255 SmallVector<Type *, 1> Types = {I.getInsertedValueOperand()->getType()};
256 SmallVector<Value *> Args;
257 for (auto &Op : I.operands())
258 if (isa<UndefValue>(Op))
259 Args.push_back(UndefValue::get(IRB->getInt32Ty()));
260 else
261 Args.push_back(Op);
262 for (auto &Op : I.indices())
263 Args.push_back(IRB->getInt32(Op));
264 Instruction *NewI =
265 IRB->CreateIntrinsic(Intrinsic::spv_insertv, {Types}, {Args});
266 replaceMemInstrUses(&I, NewI);
267 return NewI;
268 }
269
visitExtractValueInst(ExtractValueInst & I)270 Instruction *SPIRVEmitIntrinsics::visitExtractValueInst(ExtractValueInst &I) {
271 SmallVector<Value *> Args;
272 for (auto &Op : I.operands())
273 Args.push_back(Op);
274 for (auto &Op : I.indices())
275 Args.push_back(IRB->getInt32(Op));
276 auto *NewI =
277 IRB->CreateIntrinsic(Intrinsic::spv_extractv, {I.getType()}, {Args});
278 I.replaceAllUsesWith(NewI);
279 I.eraseFromParent();
280 return NewI;
281 }
282
visitLoadInst(LoadInst & I)283 Instruction *SPIRVEmitIntrinsics::visitLoadInst(LoadInst &I) {
284 if (!I.getType()->isAggregateType())
285 return &I;
286 TrackConstants = false;
287 const auto *TLI = TM->getSubtargetImpl()->getTargetLowering();
288 MachineMemOperand::Flags Flags =
289 TLI->getLoadMemOperandFlags(I, F->getParent()->getDataLayout());
290 auto *NewI =
291 IRB->CreateIntrinsic(Intrinsic::spv_load, {I.getOperand(0)->getType()},
292 {I.getPointerOperand(), IRB->getInt16(Flags),
293 IRB->getInt8(I.getAlign().value())});
294 replaceMemInstrUses(&I, NewI);
295 return NewI;
296 }
297
visitStoreInst(StoreInst & I)298 Instruction *SPIRVEmitIntrinsics::visitStoreInst(StoreInst &I) {
299 if (!AggrStores.contains(&I))
300 return &I;
301 TrackConstants = false;
302 const auto *TLI = TM->getSubtargetImpl()->getTargetLowering();
303 MachineMemOperand::Flags Flags =
304 TLI->getStoreMemOperandFlags(I, F->getParent()->getDataLayout());
305 auto *PtrOp = I.getPointerOperand();
306 auto *NewI = IRB->CreateIntrinsic(
307 Intrinsic::spv_store, {I.getValueOperand()->getType(), PtrOp->getType()},
308 {I.getValueOperand(), PtrOp, IRB->getInt16(Flags),
309 IRB->getInt8(I.getAlign().value())});
310 I.eraseFromParent();
311 return NewI;
312 }
313
visitAllocaInst(AllocaInst & I)314 Instruction *SPIRVEmitIntrinsics::visitAllocaInst(AllocaInst &I) {
315 TrackConstants = false;
316 return &I;
317 }
318
visitAtomicCmpXchgInst(AtomicCmpXchgInst & I)319 Instruction *SPIRVEmitIntrinsics::visitAtomicCmpXchgInst(AtomicCmpXchgInst &I) {
320 assert(I.getType()->isAggregateType() && "Aggregate result is expected");
321 SmallVector<Value *> Args;
322 for (auto &Op : I.operands())
323 Args.push_back(Op);
324 Args.push_back(IRB->getInt32(I.getSyncScopeID()));
325 Args.push_back(IRB->getInt32(
326 static_cast<uint32_t>(getMemSemantics(I.getSuccessOrdering()))));
327 Args.push_back(IRB->getInt32(
328 static_cast<uint32_t>(getMemSemantics(I.getFailureOrdering()))));
329 auto *NewI = IRB->CreateIntrinsic(Intrinsic::spv_cmpxchg,
330 {I.getPointerOperand()->getType()}, {Args});
331 replaceMemInstrUses(&I, NewI);
332 return NewI;
333 }
334
processGlobalValue(GlobalVariable & GV)335 void SPIRVEmitIntrinsics::processGlobalValue(GlobalVariable &GV) {
336 // Skip special artifical variable llvm.global.annotations.
337 if (GV.getName() == "llvm.global.annotations")
338 return;
339 if (GV.hasInitializer() && !isa<UndefValue>(GV.getInitializer())) {
340 Constant *Init = GV.getInitializer();
341 Type *Ty = isAggrToReplace(Init) ? IRB->getInt32Ty() : Init->getType();
342 Constant *Const = isAggrToReplace(Init) ? IRB->getInt32(1) : Init;
343 auto *InitInst = IRB->CreateIntrinsic(Intrinsic::spv_init_global,
344 {GV.getType(), Ty}, {&GV, Const});
345 InitInst->setArgOperand(1, Init);
346 }
347 if ((!GV.hasInitializer() || isa<UndefValue>(GV.getInitializer())) &&
348 GV.getNumUses() == 0)
349 IRB->CreateIntrinsic(Intrinsic::spv_unref_global, GV.getType(), &GV);
350 }
351
insertAssignTypeIntrs(Instruction * I)352 void SPIRVEmitIntrinsics::insertAssignTypeIntrs(Instruction *I) {
353 Type *Ty = I->getType();
354 if (!Ty->isVoidTy() && requireAssignType(I)) {
355 setInsertPointSkippingPhis(*IRB, I->getNextNode());
356 Type *TypeToAssign = Ty;
357 if (auto *II = dyn_cast<IntrinsicInst>(I)) {
358 if (II->getIntrinsicID() == Intrinsic::spv_const_composite) {
359 auto t = AggrConsts.find(II);
360 assert(t != AggrConsts.end());
361 TypeToAssign = t->second->getType();
362 }
363 }
364 Constant *Const = Constant::getNullValue(TypeToAssign);
365 buildIntrWithMD(Intrinsic::spv_assign_type, {Ty}, Const, I);
366 }
367 for (const auto &Op : I->operands()) {
368 if (isa<ConstantPointerNull>(Op) || isa<UndefValue>(Op) ||
369 // Check GetElementPtrConstantExpr case.
370 (isa<ConstantExpr>(Op) && isa<GEPOperator>(Op))) {
371 IRB->SetInsertPoint(I);
372 if (isa<UndefValue>(Op) && Op->getType()->isAggregateType())
373 buildIntrWithMD(Intrinsic::spv_assign_type, {IRB->getInt32Ty()}, Op,
374 UndefValue::get(IRB->getInt32Ty()));
375 else
376 buildIntrWithMD(Intrinsic::spv_assign_type, {Op->getType()}, Op, Op);
377 }
378 }
379 }
380
processInstrAfterVisit(Instruction * I)381 void SPIRVEmitIntrinsics::processInstrAfterVisit(Instruction *I) {
382 auto *II = dyn_cast<IntrinsicInst>(I);
383 if (II && II->getIntrinsicID() == Intrinsic::spv_const_composite &&
384 TrackConstants) {
385 IRB->SetInsertPoint(I->getNextNode());
386 Type *Ty = IRB->getInt32Ty();
387 auto t = AggrConsts.find(I);
388 assert(t != AggrConsts.end());
389 auto *NewOp =
390 buildIntrWithMD(Intrinsic::spv_track_constant, {Ty, Ty}, t->second, I);
391 I->replaceAllUsesWith(NewOp);
392 NewOp->setArgOperand(0, I);
393 }
394 for (const auto &Op : I->operands()) {
395 if ((isa<ConstantAggregateZero>(Op) && Op->getType()->isVectorTy()) ||
396 isa<PHINode>(I) || isa<SwitchInst>(I))
397 TrackConstants = false;
398 if ((isa<ConstantData>(Op) || isa<ConstantExpr>(Op)) && TrackConstants) {
399 unsigned OpNo = Op.getOperandNo();
400 if (II && ((II->getIntrinsicID() == Intrinsic::spv_gep && OpNo == 0) ||
401 (II->paramHasAttr(OpNo, Attribute::ImmArg))))
402 continue;
403 IRB->SetInsertPoint(I);
404 auto *NewOp = buildIntrWithMD(Intrinsic::spv_track_constant,
405 {Op->getType(), Op->getType()}, Op, Op);
406 I->setOperand(OpNo, NewOp);
407 }
408 }
409 if (I->hasName()) {
410 setInsertPointSkippingPhis(*IRB, I->getNextNode());
411 std::vector<Value *> Args = {I};
412 addStringImm(I->getName(), *IRB, Args);
413 IRB->CreateIntrinsic(Intrinsic::spv_assign_name, {I->getType()}, Args);
414 }
415 }
416
runOnFunction(Function & Func)417 bool SPIRVEmitIntrinsics::runOnFunction(Function &Func) {
418 if (Func.isDeclaration())
419 return false;
420 F = &Func;
421 IRB = new IRBuilder<>(Func.getContext());
422 AggrConsts.clear();
423 AggrStores.clear();
424
425 // StoreInst's operand type can be changed during the next transformations,
426 // so we need to store it in the set. Also store already transformed types.
427 for (auto &I : instructions(Func)) {
428 StoreInst *SI = dyn_cast<StoreInst>(&I);
429 if (!SI)
430 continue;
431 Type *ElTy = SI->getValueOperand()->getType();
432 PointerType *PTy = cast<PointerType>(SI->getOperand(1)->getType());
433 if (ElTy->isAggregateType() || ElTy->isVectorTy() ||
434 !PTy->isOpaqueOrPointeeTypeMatches(ElTy))
435 AggrStores.insert(&I);
436 }
437
438 IRB->SetInsertPoint(&Func.getEntryBlock().front());
439 for (auto &GV : Func.getParent()->globals())
440 processGlobalValue(GV);
441
442 preprocessCompositeConstants();
443 SmallVector<Instruction *> Worklist;
444 for (auto &I : instructions(Func))
445 Worklist.push_back(&I);
446
447 for (auto &I : Worklist)
448 insertAssignTypeIntrs(I);
449
450 for (auto *I : Worklist) {
451 TrackConstants = true;
452 if (!I->getType()->isVoidTy() || isa<StoreInst>(I))
453 IRB->SetInsertPoint(I->getNextNode());
454 I = visit(*I);
455 processInstrAfterVisit(I);
456 }
457 return true;
458 }
459
createSPIRVEmitIntrinsicsPass(SPIRVTargetMachine * TM)460 FunctionPass *llvm::createSPIRVEmitIntrinsicsPass(SPIRVTargetMachine *TM) {
461 return new SPIRVEmitIntrinsics(TM);
462 }
463