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Alexey Bataev9959db52014-05-06 10:08:46 +00001//===--- CGStmtOpenMP.cpp - Emit LLVM Code from Statements ----------------===//
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 contains code to emit OpenMP nodes as LLVM code.
11//
12//===----------------------------------------------------------------------===//
13
14#include "CGOpenMPRuntime.h"
15#include "CodeGenFunction.h"
16#include "CodeGenModule.h"
Chandler Carruth0d9593d2015-01-14 11:29:14 +000017#include "TargetInfo.h"
Alexey Bataev9959db52014-05-06 10:08:46 +000018#include "clang/AST/Stmt.h"
19#include "clang/AST/StmtOpenMP.h"
20using namespace clang;
21using namespace CodeGen;
22
23//===----------------------------------------------------------------------===//
24// OpenMP Directive Emission
25//===----------------------------------------------------------------------===//
Alexey Bataev420d45b2015-04-14 05:11:24 +000026void CodeGenFunction::EmitOMPAggregateAssign(
27 llvm::Value *DestAddr, llvm::Value *SrcAddr, QualType OriginalType,
28 const llvm::function_ref<void(llvm::Value *, llvm::Value *)> &CopyGen) {
29 // Perform element-by-element initialization.
30 QualType ElementTy;
31 auto SrcBegin = SrcAddr;
32 auto DestBegin = DestAddr;
33 auto ArrayTy = OriginalType->getAsArrayTypeUnsafe();
34 auto NumElements = emitArrayLength(ArrayTy, ElementTy, DestBegin);
35 // Cast from pointer to array type to pointer to single element.
36 SrcBegin = Builder.CreatePointerBitCastOrAddrSpaceCast(SrcBegin,
37 DestBegin->getType());
38 auto DestEnd = Builder.CreateGEP(DestBegin, NumElements);
39 // The basic structure here is a while-do loop.
40 auto BodyBB = createBasicBlock("omp.arraycpy.body");
41 auto DoneBB = createBasicBlock("omp.arraycpy.done");
42 auto IsEmpty =
43 Builder.CreateICmpEQ(DestBegin, DestEnd, "omp.arraycpy.isempty");
44 Builder.CreateCondBr(IsEmpty, DoneBB, BodyBB);
Alexey Bataev4a5bb772014-10-08 14:01:46 +000045
Alexey Bataev420d45b2015-04-14 05:11:24 +000046 // Enter the loop body, making that address the current address.
47 auto EntryBB = Builder.GetInsertBlock();
48 EmitBlock(BodyBB);
49 auto SrcElementCurrent =
50 Builder.CreatePHI(SrcBegin->getType(), 2, "omp.arraycpy.srcElementPast");
51 SrcElementCurrent->addIncoming(SrcBegin, EntryBB);
52 auto DestElementCurrent = Builder.CreatePHI(DestBegin->getType(), 2,
53 "omp.arraycpy.destElementPast");
54 DestElementCurrent->addIncoming(DestBegin, EntryBB);
Alexey Bataev4a5bb772014-10-08 14:01:46 +000055
Alexey Bataev420d45b2015-04-14 05:11:24 +000056 // Emit copy.
57 CopyGen(DestElementCurrent, SrcElementCurrent);
58
59 // Shift the address forward by one element.
60 auto DestElementNext = Builder.CreateConstGEP1_32(
61 DestElementCurrent, /*Idx0=*/1, "omp.arraycpy.dest.element");
62 auto SrcElementNext = Builder.CreateConstGEP1_32(
63 SrcElementCurrent, /*Idx0=*/1, "omp.arraycpy.src.element");
64 // Check whether we've reached the end.
65 auto Done =
66 Builder.CreateICmpEQ(DestElementNext, DestEnd, "omp.arraycpy.done");
67 Builder.CreateCondBr(Done, DoneBB, BodyBB);
68 DestElementCurrent->addIncoming(DestElementNext, Builder.GetInsertBlock());
69 SrcElementCurrent->addIncoming(SrcElementNext, Builder.GetInsertBlock());
70
71 // Done.
72 EmitBlock(DoneBB, /*IsFinished=*/true);
73}
74
75void CodeGenFunction::EmitOMPCopy(CodeGenFunction &CGF,
76 QualType OriginalType, llvm::Value *DestAddr,
77 llvm::Value *SrcAddr, const VarDecl *DestVD,
78 const VarDecl *SrcVD, const Expr *Copy) {
79 if (OriginalType->isArrayType()) {
80 auto *BO = dyn_cast<BinaryOperator>(Copy);
81 if (BO && BO->getOpcode() == BO_Assign) {
82 // Perform simple memcpy for simple copying.
83 CGF.EmitAggregateAssign(DestAddr, SrcAddr, OriginalType);
84 } else {
85 // For arrays with complex element types perform element by element
86 // copying.
87 CGF.EmitOMPAggregateAssign(
88 DestAddr, SrcAddr, OriginalType,
89 [&CGF, Copy, SrcVD, DestVD](llvm::Value *DestElement,
90 llvm::Value *SrcElement) {
91 // Working with the single array element, so have to remap
92 // destination and source variables to corresponding array
93 // elements.
94 CodeGenFunction::OMPPrivateScope Remap(CGF);
95 Remap.addPrivate(DestVD, [DestElement]() -> llvm::Value *{
96 return DestElement;
97 });
98 Remap.addPrivate(
99 SrcVD, [SrcElement]() -> llvm::Value *{ return SrcElement; });
100 (void)Remap.Privatize();
101 CGF.EmitIgnoredExpr(Copy);
102 });
Alexey Bataev4a5bb772014-10-08 14:01:46 +0000103 }
Alexey Bataev420d45b2015-04-14 05:11:24 +0000104 } else {
105 // Remap pseudo source variable to private copy.
106 CodeGenFunction::OMPPrivateScope Remap(CGF);
107 Remap.addPrivate(SrcVD, [SrcAddr]() -> llvm::Value *{ return SrcAddr; });
108 Remap.addPrivate(DestVD, [DestAddr]() -> llvm::Value *{ return DestAddr; });
109 (void)Remap.Privatize();
110 // Emit copying of the whole variable.
111 CGF.EmitIgnoredExpr(Copy);
Alexey Bataev4a5bb772014-10-08 14:01:46 +0000112 }
Alexey Bataev4a5bb772014-10-08 14:01:46 +0000113}
114
Alexey Bataev69c62a92015-04-15 04:52:20 +0000115bool CodeGenFunction::EmitOMPFirstprivateClause(const OMPExecutableDirective &D,
116 OMPPrivateScope &PrivateScope) {
Alexey Bataev69c62a92015-04-15 04:52:20 +0000117 llvm::DenseSet<const VarDecl *> EmittedAsFirstprivate;
Alexey Bataevc925aa32015-04-27 08:00:32 +0000118 for (auto &&I = D.getClausesOfKind(OMPC_firstprivate); I; ++I) {
Alexey Bataev4a5bb772014-10-08 14:01:46 +0000119 auto *C = cast<OMPFirstprivateClause>(*I);
120 auto IRef = C->varlist_begin();
121 auto InitsRef = C->inits().begin();
122 for (auto IInit : C->private_copies()) {
Alexey Bataev435ad7b2014-10-10 09:48:26 +0000123 auto *OrigVD = cast<VarDecl>(cast<DeclRefExpr>(*IRef)->getDecl());
Alexey Bataev69c62a92015-04-15 04:52:20 +0000124 if (EmittedAsFirstprivate.count(OrigVD) == 0) {
125 EmittedAsFirstprivate.insert(OrigVD);
126 auto *VD = cast<VarDecl>(cast<DeclRefExpr>(IInit)->getDecl());
127 auto *VDInit = cast<VarDecl>(cast<DeclRefExpr>(*InitsRef)->getDecl());
128 bool IsRegistered;
129 DeclRefExpr DRE(
130 const_cast<VarDecl *>(OrigVD),
131 /*RefersToEnclosingVariableOrCapture=*/CapturedStmtInfo->lookup(
132 OrigVD) != nullptr,
133 (*IRef)->getType(), VK_LValue, (*IRef)->getExprLoc());
134 auto *OriginalAddr = EmitLValue(&DRE).getAddress();
Alexey Bataev1d9c15c2015-05-19 12:31:28 +0000135 QualType Type = OrigVD->getType();
Alexey Bataev1d9c15c2015-05-19 12:31:28 +0000136 if (Type->isArrayType()) {
Alexey Bataev69c62a92015-04-15 04:52:20 +0000137 // Emit VarDecl with copy init for arrays.
138 // Get the address of the original variable captured in current
139 // captured region.
140 IsRegistered = PrivateScope.addPrivate(OrigVD, [&]() -> llvm::Value *{
141 auto Emission = EmitAutoVarAlloca(*VD);
142 auto *Init = VD->getInit();
143 if (!isa<CXXConstructExpr>(Init) || isTrivialInitializer(Init)) {
144 // Perform simple memcpy.
145 EmitAggregateAssign(Emission.getAllocatedAddress(), OriginalAddr,
Alexey Bataev1d9c15c2015-05-19 12:31:28 +0000146 Type);
Alexey Bataev69c62a92015-04-15 04:52:20 +0000147 } else {
148 EmitOMPAggregateAssign(
Alexey Bataev1d9c15c2015-05-19 12:31:28 +0000149 Emission.getAllocatedAddress(), OriginalAddr, Type,
Alexey Bataev69c62a92015-04-15 04:52:20 +0000150 [this, VDInit, Init](llvm::Value *DestElement,
151 llvm::Value *SrcElement) {
152 // Clean up any temporaries needed by the initialization.
153 RunCleanupsScope InitScope(*this);
154 // Emit initialization for single element.
155 LocalDeclMap[VDInit] = SrcElement;
156 EmitAnyExprToMem(Init, DestElement,
157 Init->getType().getQualifiers(),
158 /*IsInitializer*/ false);
159 LocalDeclMap.erase(VDInit);
160 });
161 }
162 EmitAutoVarCleanups(Emission);
163 return Emission.getAllocatedAddress();
164 });
165 } else {
166 IsRegistered = PrivateScope.addPrivate(OrigVD, [&]() -> llvm::Value *{
167 // Emit private VarDecl with copy init.
168 // Remap temp VDInit variable to the address of the original
169 // variable
170 // (for proper handling of captured global variables).
171 LocalDeclMap[VDInit] = OriginalAddr;
172 EmitDecl(*VD);
173 LocalDeclMap.erase(VDInit);
174 return GetAddrOfLocalVar(VD);
175 });
176 }
177 assert(IsRegistered &&
178 "firstprivate var already registered as private");
179 // Silence the warning about unused variable.
180 (void)IsRegistered;
181 }
Alexey Bataev4a5bb772014-10-08 14:01:46 +0000182 ++IRef, ++InitsRef;
183 }
184 }
Alexey Bataev69c62a92015-04-15 04:52:20 +0000185 return !EmittedAsFirstprivate.empty();
Alexey Bataev4a5bb772014-10-08 14:01:46 +0000186}
187
Alexey Bataev03b340a2014-10-21 03:16:40 +0000188void CodeGenFunction::EmitOMPPrivateClause(
189 const OMPExecutableDirective &D,
190 CodeGenFunction::OMPPrivateScope &PrivateScope) {
Alexey Bataev50a64582015-04-22 12:24:45 +0000191 llvm::DenseSet<const VarDecl *> EmittedAsPrivate;
Alexey Bataevc925aa32015-04-27 08:00:32 +0000192 for (auto &&I = D.getClausesOfKind(OMPC_private); I; ++I) {
Alexey Bataev03b340a2014-10-21 03:16:40 +0000193 auto *C = cast<OMPPrivateClause>(*I);
194 auto IRef = C->varlist_begin();
195 for (auto IInit : C->private_copies()) {
196 auto *OrigVD = cast<VarDecl>(cast<DeclRefExpr>(*IRef)->getDecl());
Alexey Bataev50a64582015-04-22 12:24:45 +0000197 if (EmittedAsPrivate.insert(OrigVD->getCanonicalDecl()).second) {
198 auto VD = cast<VarDecl>(cast<DeclRefExpr>(IInit)->getDecl());
199 bool IsRegistered =
200 PrivateScope.addPrivate(OrigVD, [&]() -> llvm::Value *{
201 // Emit private VarDecl with copy init.
202 EmitDecl(*VD);
203 return GetAddrOfLocalVar(VD);
204 });
205 assert(IsRegistered && "private var already registered as private");
206 // Silence the warning about unused variable.
207 (void)IsRegistered;
208 }
Alexey Bataev03b340a2014-10-21 03:16:40 +0000209 ++IRef;
210 }
211 }
212}
213
Alexey Bataevf56f98c2015-04-16 05:39:01 +0000214bool CodeGenFunction::EmitOMPCopyinClause(const OMPExecutableDirective &D) {
215 // threadprivate_var1 = master_threadprivate_var1;
216 // operator=(threadprivate_var2, master_threadprivate_var2);
217 // ...
218 // __kmpc_barrier(&loc, global_tid);
Alexey Bataevf56f98c2015-04-16 05:39:01 +0000219 llvm::DenseSet<const VarDecl *> CopiedVars;
220 llvm::BasicBlock *CopyBegin = nullptr, *CopyEnd = nullptr;
Alexey Bataevc925aa32015-04-27 08:00:32 +0000221 for (auto &&I = D.getClausesOfKind(OMPC_copyin); I; ++I) {
Alexey Bataevf56f98c2015-04-16 05:39:01 +0000222 auto *C = cast<OMPCopyinClause>(*I);
223 auto IRef = C->varlist_begin();
224 auto ISrcRef = C->source_exprs().begin();
225 auto IDestRef = C->destination_exprs().begin();
226 for (auto *AssignOp : C->assignment_ops()) {
227 auto *VD = cast<VarDecl>(cast<DeclRefExpr>(*IRef)->getDecl());
Alexey Bataev1d9c15c2015-05-19 12:31:28 +0000228 QualType Type = VD->getType();
Alexey Bataevf56f98c2015-04-16 05:39:01 +0000229 if (CopiedVars.insert(VD->getCanonicalDecl()).second) {
230 // Get the address of the master variable.
231 auto *MasterAddr = VD->isStaticLocal()
232 ? CGM.getStaticLocalDeclAddress(VD)
233 : CGM.GetAddrOfGlobal(VD);
234 // Get the address of the threadprivate variable.
235 auto *PrivateAddr = EmitLValue(*IRef).getAddress();
236 if (CopiedVars.size() == 1) {
237 // At first check if current thread is a master thread. If it is, no
238 // need to copy data.
239 CopyBegin = createBasicBlock("copyin.not.master");
240 CopyEnd = createBasicBlock("copyin.not.master.end");
241 Builder.CreateCondBr(
242 Builder.CreateICmpNE(
243 Builder.CreatePtrToInt(MasterAddr, CGM.IntPtrTy),
244 Builder.CreatePtrToInt(PrivateAddr, CGM.IntPtrTy)),
245 CopyBegin, CopyEnd);
246 EmitBlock(CopyBegin);
247 }
248 auto *SrcVD = cast<VarDecl>(cast<DeclRefExpr>(*ISrcRef)->getDecl());
249 auto *DestVD = cast<VarDecl>(cast<DeclRefExpr>(*IDestRef)->getDecl());
Alexey Bataev1d9c15c2015-05-19 12:31:28 +0000250 EmitOMPCopy(*this, Type, PrivateAddr, MasterAddr, DestVD, SrcVD,
251 AssignOp);
Alexey Bataevf56f98c2015-04-16 05:39:01 +0000252 }
253 ++IRef;
254 ++ISrcRef;
255 ++IDestRef;
256 }
257 }
258 if (CopyEnd) {
259 // Exit out of copying procedure for non-master thread.
260 EmitBlock(CopyEnd, /*IsFinished=*/true);
261 return true;
262 }
263 return false;
264}
265
Alexey Bataev38e89532015-04-16 04:54:05 +0000266bool CodeGenFunction::EmitOMPLastprivateClauseInit(
267 const OMPExecutableDirective &D, OMPPrivateScope &PrivateScope) {
Alexey Bataev38e89532015-04-16 04:54:05 +0000268 bool HasAtLeastOneLastprivate = false;
269 llvm::DenseSet<const VarDecl *> AlreadyEmittedVars;
Alexey Bataevc925aa32015-04-27 08:00:32 +0000270 for (auto &&I = D.getClausesOfKind(OMPC_lastprivate); I; ++I) {
Alexey Bataevd130fd12015-05-13 10:23:02 +0000271 HasAtLeastOneLastprivate = true;
Alexey Bataev38e89532015-04-16 04:54:05 +0000272 auto *C = cast<OMPLastprivateClause>(*I);
273 auto IRef = C->varlist_begin();
274 auto IDestRef = C->destination_exprs().begin();
275 for (auto *IInit : C->private_copies()) {
276 // Keep the address of the original variable for future update at the end
277 // of the loop.
278 auto *OrigVD = cast<VarDecl>(cast<DeclRefExpr>(*IRef)->getDecl());
279 if (AlreadyEmittedVars.insert(OrigVD->getCanonicalDecl()).second) {
280 auto *DestVD = cast<VarDecl>(cast<DeclRefExpr>(*IDestRef)->getDecl());
281 PrivateScope.addPrivate(DestVD, [this, OrigVD, IRef]() -> llvm::Value *{
282 DeclRefExpr DRE(
283 const_cast<VarDecl *>(OrigVD),
284 /*RefersToEnclosingVariableOrCapture=*/CapturedStmtInfo->lookup(
285 OrigVD) != nullptr,
286 (*IRef)->getType(), VK_LValue, (*IRef)->getExprLoc());
287 return EmitLValue(&DRE).getAddress();
288 });
289 // Check if the variable is also a firstprivate: in this case IInit is
290 // not generated. Initialization of this variable will happen in codegen
291 // for 'firstprivate' clause.
Alexey Bataevd130fd12015-05-13 10:23:02 +0000292 if (IInit) {
293 auto *VD = cast<VarDecl>(cast<DeclRefExpr>(IInit)->getDecl());
294 bool IsRegistered =
295 PrivateScope.addPrivate(OrigVD, [&]() -> llvm::Value *{
296 // Emit private VarDecl with copy init.
297 EmitDecl(*VD);
298 return GetAddrOfLocalVar(VD);
299 });
300 assert(IsRegistered &&
301 "lastprivate var already registered as private");
302 (void)IsRegistered;
303 }
Alexey Bataev38e89532015-04-16 04:54:05 +0000304 }
305 ++IRef, ++IDestRef;
306 }
307 }
308 return HasAtLeastOneLastprivate;
309}
310
311void CodeGenFunction::EmitOMPLastprivateClauseFinal(
312 const OMPExecutableDirective &D, llvm::Value *IsLastIterCond) {
313 // Emit following code:
314 // if (<IsLastIterCond>) {
315 // orig_var1 = private_orig_var1;
316 // ...
317 // orig_varn = private_orig_varn;
318 // }
Alexey Bataevfc087ec2015-06-16 13:14:42 +0000319 llvm::BasicBlock *ThenBB = nullptr;
320 llvm::BasicBlock *DoneBB = nullptr;
321 if (IsLastIterCond) {
322 ThenBB = createBasicBlock(".omp.lastprivate.then");
323 DoneBB = createBasicBlock(".omp.lastprivate.done");
324 Builder.CreateCondBr(IsLastIterCond, ThenBB, DoneBB);
325 EmitBlock(ThenBB);
326 }
Alexey Bataev7a228ff2015-05-21 07:59:51 +0000327 llvm::DenseMap<const Decl *, const Expr *> LoopCountersAndUpdates;
328 const Expr *LastIterVal = nullptr;
329 const Expr *IVExpr = nullptr;
330 const Expr *IncExpr = nullptr;
331 if (auto *LoopDirective = dyn_cast<OMPLoopDirective>(&D)) {
Alexey Bataevfc087ec2015-06-16 13:14:42 +0000332 if (isOpenMPWorksharingDirective(D.getDirectiveKind())) {
333 LastIterVal = cast<VarDecl>(cast<DeclRefExpr>(
334 LoopDirective->getUpperBoundVariable())
335 ->getDecl())
336 ->getAnyInitializer();
337 IVExpr = LoopDirective->getIterationVariable();
338 IncExpr = LoopDirective->getInc();
339 auto IUpdate = LoopDirective->updates().begin();
340 for (auto *E : LoopDirective->counters()) {
341 auto *D = cast<DeclRefExpr>(E)->getDecl()->getCanonicalDecl();
342 LoopCountersAndUpdates[D] = *IUpdate;
343 ++IUpdate;
344 }
Alexey Bataev7a228ff2015-05-21 07:59:51 +0000345 }
346 }
Alexey Bataev38e89532015-04-16 04:54:05 +0000347 {
Alexey Bataev38e89532015-04-16 04:54:05 +0000348 llvm::DenseSet<const VarDecl *> AlreadyEmittedVars;
Alexey Bataev7a228ff2015-05-21 07:59:51 +0000349 bool FirstLCV = true;
Alexey Bataevc925aa32015-04-27 08:00:32 +0000350 for (auto &&I = D.getClausesOfKind(OMPC_lastprivate); I; ++I) {
Alexey Bataev38e89532015-04-16 04:54:05 +0000351 auto *C = cast<OMPLastprivateClause>(*I);
352 auto IRef = C->varlist_begin();
353 auto ISrcRef = C->source_exprs().begin();
354 auto IDestRef = C->destination_exprs().begin();
355 for (auto *AssignOp : C->assignment_ops()) {
356 auto *PrivateVD = cast<VarDecl>(cast<DeclRefExpr>(*IRef)->getDecl());
Alexey Bataev1d9c15c2015-05-19 12:31:28 +0000357 QualType Type = PrivateVD->getType();
Alexey Bataev7a228ff2015-05-21 07:59:51 +0000358 auto *CanonicalVD = PrivateVD->getCanonicalDecl();
359 if (AlreadyEmittedVars.insert(CanonicalVD).second) {
360 // If lastprivate variable is a loop control variable for loop-based
361 // directive, update its value before copyin back to original
362 // variable.
363 if (auto *UpExpr = LoopCountersAndUpdates.lookup(CanonicalVD)) {
Alexey Bataevfc087ec2015-06-16 13:14:42 +0000364 if (FirstLCV && LastIterVal) {
Alexey Bataev7a228ff2015-05-21 07:59:51 +0000365 EmitAnyExprToMem(LastIterVal, EmitLValue(IVExpr).getAddress(),
366 IVExpr->getType().getQualifiers(),
367 /*IsInitializer=*/false);
368 EmitIgnoredExpr(IncExpr);
369 FirstLCV = false;
370 }
371 EmitIgnoredExpr(UpExpr);
372 }
Alexey Bataev38e89532015-04-16 04:54:05 +0000373 auto *SrcVD = cast<VarDecl>(cast<DeclRefExpr>(*ISrcRef)->getDecl());
374 auto *DestVD = cast<VarDecl>(cast<DeclRefExpr>(*IDestRef)->getDecl());
375 // Get the address of the original variable.
376 auto *OriginalAddr = GetAddrOfLocalVar(DestVD);
377 // Get the address of the private variable.
378 auto *PrivateAddr = GetAddrOfLocalVar(PrivateVD);
Alexey Bataev1d9c15c2015-05-19 12:31:28 +0000379 EmitOMPCopy(*this, Type, OriginalAddr, PrivateAddr, DestVD, SrcVD,
380 AssignOp);
Alexey Bataev38e89532015-04-16 04:54:05 +0000381 }
382 ++IRef;
383 ++ISrcRef;
384 ++IDestRef;
385 }
386 }
387 }
Alexey Bataevfc087ec2015-06-16 13:14:42 +0000388 if (IsLastIterCond) {
389 EmitBlock(DoneBB, /*IsFinished=*/true);
390 }
Alexey Bataev38e89532015-04-16 04:54:05 +0000391}
392
Alexey Bataev794ba0d2015-04-10 10:43:45 +0000393void CodeGenFunction::EmitOMPReductionClauseInit(
394 const OMPExecutableDirective &D,
395 CodeGenFunction::OMPPrivateScope &PrivateScope) {
Alexey Bataevc925aa32015-04-27 08:00:32 +0000396 for (auto &&I = D.getClausesOfKind(OMPC_reduction); I; ++I) {
Alexey Bataev794ba0d2015-04-10 10:43:45 +0000397 auto *C = cast<OMPReductionClause>(*I);
398 auto ILHS = C->lhs_exprs().begin();
399 auto IRHS = C->rhs_exprs().begin();
400 for (auto IRef : C->varlists()) {
401 auto *OrigVD = cast<VarDecl>(cast<DeclRefExpr>(IRef)->getDecl());
402 auto *LHSVD = cast<VarDecl>(cast<DeclRefExpr>(*ILHS)->getDecl());
403 auto *PrivateVD = cast<VarDecl>(cast<DeclRefExpr>(*IRHS)->getDecl());
404 // Store the address of the original variable associated with the LHS
405 // implicit variable.
406 PrivateScope.addPrivate(LHSVD, [this, OrigVD, IRef]() -> llvm::Value *{
407 DeclRefExpr DRE(const_cast<VarDecl *>(OrigVD),
408 CapturedStmtInfo->lookup(OrigVD) != nullptr,
409 IRef->getType(), VK_LValue, IRef->getExprLoc());
410 return EmitLValue(&DRE).getAddress();
411 });
412 // Emit reduction copy.
413 bool IsRegistered =
414 PrivateScope.addPrivate(OrigVD, [this, PrivateVD]() -> llvm::Value *{
415 // Emit private VarDecl with reduction init.
416 EmitDecl(*PrivateVD);
417 return GetAddrOfLocalVar(PrivateVD);
418 });
419 assert(IsRegistered && "private var already registered as private");
420 // Silence the warning about unused variable.
421 (void)IsRegistered;
422 ++ILHS, ++IRHS;
423 }
424 }
425}
426
427void CodeGenFunction::EmitOMPReductionClauseFinal(
428 const OMPExecutableDirective &D) {
429 llvm::SmallVector<const Expr *, 8> LHSExprs;
430 llvm::SmallVector<const Expr *, 8> RHSExprs;
431 llvm::SmallVector<const Expr *, 8> ReductionOps;
Alexey Bataev794ba0d2015-04-10 10:43:45 +0000432 bool HasAtLeastOneReduction = false;
Alexey Bataevc925aa32015-04-27 08:00:32 +0000433 for (auto &&I = D.getClausesOfKind(OMPC_reduction); I; ++I) {
Alexey Bataev794ba0d2015-04-10 10:43:45 +0000434 HasAtLeastOneReduction = true;
435 auto *C = cast<OMPReductionClause>(*I);
436 LHSExprs.append(C->lhs_exprs().begin(), C->lhs_exprs().end());
437 RHSExprs.append(C->rhs_exprs().begin(), C->rhs_exprs().end());
438 ReductionOps.append(C->reduction_ops().begin(), C->reduction_ops().end());
439 }
440 if (HasAtLeastOneReduction) {
441 // Emit nowait reduction if nowait clause is present or directive is a
442 // parallel directive (it always has implicit barrier).
443 CGM.getOpenMPRuntime().emitReduction(
444 *this, D.getLocEnd(), LHSExprs, RHSExprs, ReductionOps,
445 D.getSingleClause(OMPC_nowait) ||
Alexey Bataev89e7e8e2015-06-17 06:21:39 +0000446 isOpenMPParallelDirective(D.getDirectiveKind()) ||
447 D.getDirectiveKind() == OMPD_simd,
448 D.getDirectiveKind() == OMPD_simd);
Alexey Bataev794ba0d2015-04-10 10:43:45 +0000449 }
450}
451
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000452static void emitCommonOMPParallelDirective(CodeGenFunction &CGF,
453 const OMPExecutableDirective &S,
454 const RegionCodeGenTy &CodeGen) {
Alexey Bataev18095712014-10-10 12:19:54 +0000455 auto CS = cast<CapturedStmt>(S.getAssociatedStmt());
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000456 auto CapturedStruct = CGF.GenerateCapturedStmtArgument(*CS);
457 auto OutlinedFn = CGF.CGM.getOpenMPRuntime().emitParallelOutlinedFunction(
458 S, *CS->getCapturedDecl()->param_begin(), CodeGen);
Alexey Bataev1d677132015-04-22 13:57:31 +0000459 if (auto C = S.getSingleClause(OMPC_num_threads)) {
460 CodeGenFunction::RunCleanupsScope NumThreadsScope(CGF);
461 auto NumThreadsClause = cast<OMPNumThreadsClause>(C);
462 auto NumThreads = CGF.EmitScalarExpr(NumThreadsClause->getNumThreads(),
463 /*IgnoreResultAssign*/ true);
464 CGF.CGM.getOpenMPRuntime().emitNumThreadsClause(
465 CGF, NumThreads, NumThreadsClause->getLocStart());
466 }
467 const Expr *IfCond = nullptr;
468 if (auto C = S.getSingleClause(OMPC_if)) {
469 IfCond = cast<OMPIfClause>(C)->getCondition();
470 }
471 CGF.CGM.getOpenMPRuntime().emitParallelCall(CGF, S.getLocStart(), OutlinedFn,
472 CapturedStruct, IfCond);
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000473}
474
475void CodeGenFunction::EmitOMPParallelDirective(const OMPParallelDirective &S) {
476 LexicalScope Scope(*this, S.getSourceRange());
477 // Emit parallel region as a standalone region.
478 auto &&CodeGen = [&S](CodeGenFunction &CGF) {
479 OMPPrivateScope PrivateScope(CGF);
Alexey Bataevf56f98c2015-04-16 05:39:01 +0000480 bool Copyins = CGF.EmitOMPCopyinClause(S);
481 bool Firstprivates = CGF.EmitOMPFirstprivateClause(S, PrivateScope);
482 if (Copyins || Firstprivates) {
Alexey Bataev69c62a92015-04-15 04:52:20 +0000483 // Emit implicit barrier to synchronize threads and avoid data races on
Alexey Bataevf56f98c2015-04-16 05:39:01 +0000484 // initialization of firstprivate variables or propagation master's thread
485 // values of threadprivate variables to local instances of that variables
486 // of all other implicit threads.
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000487 CGF.CGM.getOpenMPRuntime().emitBarrierCall(CGF, S.getLocStart(),
488 OMPD_unknown);
Alexey Bataev69c62a92015-04-15 04:52:20 +0000489 }
490 CGF.EmitOMPPrivateClause(S, PrivateScope);
491 CGF.EmitOMPReductionClauseInit(S, PrivateScope);
492 (void)PrivateScope.Privatize();
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000493 CGF.EmitStmt(cast<CapturedStmt>(S.getAssociatedStmt())->getCapturedStmt());
Alexey Bataev794ba0d2015-04-10 10:43:45 +0000494 CGF.EmitOMPReductionClauseFinal(S);
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000495 // Emit implicit barrier at the end of the 'parallel' directive.
496 CGF.CGM.getOpenMPRuntime().emitBarrierCall(CGF, S.getLocStart(),
497 OMPD_unknown);
498 };
499 emitCommonOMPParallelDirective(*this, S, CodeGen);
Alexey Bataev9959db52014-05-06 10:08:46 +0000500}
Alexander Musman515ad8c2014-05-22 08:54:05 +0000501
Alexey Bataevae05c292015-06-16 11:59:36 +0000502void CodeGenFunction::EmitOMPLoopBody(const OMPLoopDirective &S) {
Alexander Musmana5f070a2014-10-01 06:03:56 +0000503 RunCleanupsScope BodyScope(*this);
504 // Update counters values on current iteration.
505 for (auto I : S.updates()) {
506 EmitIgnoredExpr(I);
507 }
Alexander Musman3276a272015-03-21 10:12:56 +0000508 // Update the linear variables.
Alexey Bataevc925aa32015-04-27 08:00:32 +0000509 for (auto &&I = S.getClausesOfKind(OMPC_linear); I; ++I) {
510 auto *C = cast<OMPLinearClause>(*I);
Alexander Musman3276a272015-03-21 10:12:56 +0000511 for (auto U : C->updates()) {
512 EmitIgnoredExpr(U);
513 }
514 }
515
Alexander Musmana5f070a2014-10-01 06:03:56 +0000516 // On a continue in the body, jump to the end.
Alexander Musmand196ef22014-10-07 08:57:09 +0000517 auto Continue = getJumpDestInCurrentScope("omp.body.continue");
Alexander Musmana5f070a2014-10-01 06:03:56 +0000518 BreakContinueStack.push_back(BreakContinue(JumpDest(), Continue));
519 // Emit loop body.
520 EmitStmt(S.getBody());
521 // The end (updates/cleanups).
522 EmitBlock(Continue.getBlock());
523 BreakContinueStack.pop_back();
Alexander Musmana5f070a2014-10-01 06:03:56 +0000524 // TODO: Update lastprivates if the SeparateIter flag is true.
525 // This will be implemented in a follow-up OMPLastprivateClause patch, but
526 // result should be still correct without it, as we do not make these
527 // variables private yet.
Alexander Musmana5f070a2014-10-01 06:03:56 +0000528}
529
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000530void CodeGenFunction::EmitOMPInnerLoop(
531 const Stmt &S, bool RequiresCleanup, const Expr *LoopCond,
532 const Expr *IncExpr,
Alexey Bataev98eb6e32015-04-22 11:15:40 +0000533 const llvm::function_ref<void(CodeGenFunction &)> &BodyGen,
534 const llvm::function_ref<void(CodeGenFunction &)> &PostIncGen) {
Alexander Musmand196ef22014-10-07 08:57:09 +0000535 auto LoopExit = getJumpDestInCurrentScope("omp.inner.for.end");
Alexander Musmana5f070a2014-10-01 06:03:56 +0000536
537 // Start the loop with a block that tests the condition.
Alexander Musmand196ef22014-10-07 08:57:09 +0000538 auto CondBlock = createBasicBlock("omp.inner.for.cond");
Alexander Musmana5f070a2014-10-01 06:03:56 +0000539 EmitBlock(CondBlock);
540 LoopStack.push(CondBlock);
541
542 // If there are any cleanups between here and the loop-exit scope,
543 // create a block to stage a loop exit along.
544 auto ExitBlock = LoopExit.getBlock();
Alexey Bataev2df54a02015-03-12 08:53:29 +0000545 if (RequiresCleanup)
Alexander Musmand196ef22014-10-07 08:57:09 +0000546 ExitBlock = createBasicBlock("omp.inner.for.cond.cleanup");
Alexander Musmana5f070a2014-10-01 06:03:56 +0000547
Alexander Musmand196ef22014-10-07 08:57:09 +0000548 auto LoopBody = createBasicBlock("omp.inner.for.body");
Alexander Musmana5f070a2014-10-01 06:03:56 +0000549
Alexey Bataev2df54a02015-03-12 08:53:29 +0000550 // Emit condition.
Justin Bogner66242d62015-04-23 23:06:47 +0000551 EmitBranchOnBoolExpr(LoopCond, LoopBody, ExitBlock, getProfileCount(&S));
Alexander Musmana5f070a2014-10-01 06:03:56 +0000552 if (ExitBlock != LoopExit.getBlock()) {
553 EmitBlock(ExitBlock);
554 EmitBranchThroughCleanup(LoopExit);
555 }
556
557 EmitBlock(LoopBody);
Justin Bogner66242d62015-04-23 23:06:47 +0000558 incrementProfileCounter(&S);
Alexander Musmana5f070a2014-10-01 06:03:56 +0000559
560 // Create a block for the increment.
Alexander Musmand196ef22014-10-07 08:57:09 +0000561 auto Continue = getJumpDestInCurrentScope("omp.inner.for.inc");
Alexander Musmana5f070a2014-10-01 06:03:56 +0000562 BreakContinueStack.push_back(BreakContinue(LoopExit, Continue));
563
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000564 BodyGen(*this);
Alexander Musmana5f070a2014-10-01 06:03:56 +0000565
566 // Emit "IV = IV + 1" and a back-edge to the condition block.
567 EmitBlock(Continue.getBlock());
Alexey Bataev2df54a02015-03-12 08:53:29 +0000568 EmitIgnoredExpr(IncExpr);
Alexey Bataev98eb6e32015-04-22 11:15:40 +0000569 PostIncGen(*this);
Alexander Musmana5f070a2014-10-01 06:03:56 +0000570 BreakContinueStack.pop_back();
571 EmitBranch(CondBlock);
572 LoopStack.pop();
573 // Emit the fall-through block.
574 EmitBlock(LoopExit.getBlock());
575}
576
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000577static void emitLinearClauseInit(CodeGenFunction &CGF,
578 const OMPLoopDirective &D) {
579 // Emit inits for the linear variables.
580 for (auto &&I = D.getClausesOfKind(OMPC_linear); I; ++I) {
581 auto *C = cast<OMPLinearClause>(*I);
582 for (auto Init : C->inits()) {
583 auto *VD = cast<VarDecl>(cast<DeclRefExpr>(Init)->getDecl());
584 CGF.EmitVarDecl(*VD);
Alexander Musmana5f070a2014-10-01 06:03:56 +0000585 }
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000586 // Emit the linear steps for the linear clauses.
587 // If a step is not constant, it is pre-calculated before the loop.
588 if (auto CS = cast_or_null<BinaryOperator>(C->getCalcStep()))
589 if (auto SaveRef = cast<DeclRefExpr>(CS->getLHS())) {
590 CGF.EmitVarDecl(*cast<VarDecl>(SaveRef->getDecl()));
591 // Emit calculation of the linear step.
592 CGF.EmitIgnoredExpr(CS);
593 }
Alexander Musmana5f070a2014-10-01 06:03:56 +0000594 }
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000595}
596
597static void emitLinearClauseFinal(CodeGenFunction &CGF,
598 const OMPLoopDirective &D) {
Alexander Musman3276a272015-03-21 10:12:56 +0000599 // Emit the final values of the linear variables.
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000600 for (auto &&I = D.getClausesOfKind(OMPC_linear); I; ++I) {
Alexey Bataevc925aa32015-04-27 08:00:32 +0000601 auto *C = cast<OMPLinearClause>(*I);
Alexey Bataev39f915b82015-05-08 10:41:21 +0000602 auto IC = C->varlist_begin();
Alexander Musman3276a272015-03-21 10:12:56 +0000603 for (auto F : C->finals()) {
Alexey Bataev39f915b82015-05-08 10:41:21 +0000604 auto *OrigVD = cast<VarDecl>(cast<DeclRefExpr>(*IC)->getDecl());
605 DeclRefExpr DRE(const_cast<VarDecl *>(OrigVD),
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000606 CGF.CapturedStmtInfo->lookup(OrigVD) != nullptr,
Alexey Bataev39f915b82015-05-08 10:41:21 +0000607 (*IC)->getType(), VK_LValue, (*IC)->getExprLoc());
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000608 auto *OrigAddr = CGF.EmitLValue(&DRE).getAddress();
609 CodeGenFunction::OMPPrivateScope VarScope(CGF);
Alexey Bataev39f915b82015-05-08 10:41:21 +0000610 VarScope.addPrivate(OrigVD,
611 [OrigAddr]() -> llvm::Value *{ return OrigAddr; });
612 (void)VarScope.Privatize();
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000613 CGF.EmitIgnoredExpr(F);
Alexey Bataev39f915b82015-05-08 10:41:21 +0000614 ++IC;
Alexander Musman3276a272015-03-21 10:12:56 +0000615 }
616 }
Alexander Musmana5f070a2014-10-01 06:03:56 +0000617}
618
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000619static void emitAlignedClause(CodeGenFunction &CGF,
620 const OMPExecutableDirective &D) {
621 for (auto &&I = D.getClausesOfKind(OMPC_aligned); I; ++I) {
622 auto *Clause = cast<OMPAlignedClause>(*I);
623 unsigned ClauseAlignment = 0;
624 if (auto AlignmentExpr = Clause->getAlignment()) {
625 auto AlignmentCI =
626 cast<llvm::ConstantInt>(CGF.EmitScalarExpr(AlignmentExpr));
627 ClauseAlignment = static_cast<unsigned>(AlignmentCI->getZExtValue());
Alexander Musman09184fe2014-09-30 05:29:28 +0000628 }
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000629 for (auto E : Clause->varlists()) {
630 unsigned Alignment = ClauseAlignment;
631 if (Alignment == 0) {
632 // OpenMP [2.8.1, Description]
633 // If no optional parameter is specified, implementation-defined default
634 // alignments for SIMD instructions on the target platforms are assumed.
635 Alignment =
636 CGF.CGM.getTargetCodeGenInfo().getOpenMPSimdDefaultAlignment(
637 E->getType());
638 }
639 assert((Alignment == 0 || llvm::isPowerOf2_32(Alignment)) &&
640 "alignment is not power of 2");
641 if (Alignment != 0) {
642 llvm::Value *PtrValue = CGF.EmitScalarExpr(E);
643 CGF.EmitAlignmentAssumption(PtrValue, Alignment);
644 }
Alexander Musman09184fe2014-09-30 05:29:28 +0000645 }
646 }
647}
648
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000649static void emitPrivateLoopCounters(CodeGenFunction &CGF,
Alexey Bataev435ad7b2014-10-10 09:48:26 +0000650 CodeGenFunction::OMPPrivateScope &LoopScope,
651 ArrayRef<Expr *> Counters) {
652 for (auto *E : Counters) {
653 auto VD = cast<VarDecl>(cast<DeclRefExpr>(E)->getDecl());
Alexey Bataev61114692015-04-28 13:20:05 +0000654 (void)LoopScope.addPrivate(VD, [&]() -> llvm::Value *{
Alexey Bataev435ad7b2014-10-10 09:48:26 +0000655 // Emit var without initialization.
656 auto VarEmission = CGF.EmitAutoVarAlloca(*VD);
657 CGF.EmitAutoVarCleanups(VarEmission);
658 return VarEmission.getAllocatedAddress();
659 });
Alexey Bataev435ad7b2014-10-10 09:48:26 +0000660 }
Alexey Bataev435ad7b2014-10-10 09:48:26 +0000661}
662
Alexey Bataev62dbb972015-04-22 11:59:37 +0000663static void emitPreCond(CodeGenFunction &CGF, const OMPLoopDirective &S,
664 const Expr *Cond, llvm::BasicBlock *TrueBlock,
665 llvm::BasicBlock *FalseBlock, uint64_t TrueCount) {
Alexey Bataev6e8248f2015-06-11 10:53:56 +0000666 {
667 CodeGenFunction::OMPPrivateScope PreCondScope(CGF);
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000668 emitPrivateLoopCounters(CGF, PreCondScope, S.counters());
Alexey Bataev6e8248f2015-06-11 10:53:56 +0000669 const VarDecl *IVDecl =
670 cast<VarDecl>(cast<DeclRefExpr>(S.getIterationVariable())->getDecl());
671 bool IsRegistered = PreCondScope.addPrivate(IVDecl, [&]() -> llvm::Value *{
672 // Emit var without initialization.
673 auto VarEmission = CGF.EmitAutoVarAlloca(*IVDecl);
674 CGF.EmitAutoVarCleanups(VarEmission);
675 return VarEmission.getAllocatedAddress();
676 });
677 assert(IsRegistered && "counter already registered as private");
678 // Silence the warning about unused variable.
679 (void)IsRegistered;
680 (void)PreCondScope.Privatize();
681 // Initialize internal counter to 0 to calculate initial values of real
682 // counters.
683 LValue IV = CGF.EmitLValue(S.getIterationVariable());
684 CGF.EmitStoreOfScalar(
685 llvm::ConstantInt::getNullValue(
686 IV.getAddress()->getType()->getPointerElementType()),
687 CGF.EmitLValue(S.getIterationVariable()), /*isInit=*/true);
688 // Get initial values of real counters.
689 for (auto I : S.updates()) {
690 CGF.EmitIgnoredExpr(I);
691 }
Alexey Bataev62dbb972015-04-22 11:59:37 +0000692 }
693 // Check that loop is executed at least one time.
694 CGF.EmitBranchOnBoolExpr(Cond, TrueBlock, FalseBlock, TrueCount);
695}
696
Alexander Musman3276a272015-03-21 10:12:56 +0000697static void
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000698emitPrivateLinearVars(CodeGenFunction &CGF, const OMPExecutableDirective &D,
Alexander Musman3276a272015-03-21 10:12:56 +0000699 CodeGenFunction::OMPPrivateScope &PrivateScope) {
Alexey Bataevc925aa32015-04-27 08:00:32 +0000700 for (auto &&I = D.getClausesOfKind(OMPC_linear); I; ++I) {
701 auto *C = cast<OMPLinearClause>(*I);
702 for (auto *E : C->varlists()) {
Alexander Musman3276a272015-03-21 10:12:56 +0000703 auto VD = cast<VarDecl>(cast<DeclRefExpr>(E)->getDecl());
704 bool IsRegistered = PrivateScope.addPrivate(VD, [&]()->llvm::Value * {
705 // Emit var without initialization.
706 auto VarEmission = CGF.EmitAutoVarAlloca(*VD);
707 CGF.EmitAutoVarCleanups(VarEmission);
708 return VarEmission.getAllocatedAddress();
709 });
710 assert(IsRegistered && "linear var already registered as private");
711 // Silence the warning about unused variable.
712 (void)IsRegistered;
713 }
714 }
715}
716
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000717static void emitSafelenClause(CodeGenFunction &CGF,
718 const OMPExecutableDirective &D) {
719 if (auto *C =
720 cast_or_null<OMPSafelenClause>(D.getSingleClause(OMPC_safelen))) {
721 RValue Len = CGF.EmitAnyExpr(C->getSafelen(), AggValueSlot::ignored(),
722 /*ignoreResult=*/true);
723 llvm::ConstantInt *Val = cast<llvm::ConstantInt>(Len.getScalarVal());
724 CGF.LoopStack.setVectorizerWidth(Val->getZExtValue());
725 // In presence of finite 'safelen', it may be unsafe to mark all
726 // the memory instructions parallel, because loop-carried
727 // dependences of 'safelen' iterations are possible.
728 CGF.LoopStack.setParallel(false);
729 }
730}
731
Alexander Musman515ad8c2014-05-22 08:54:05 +0000732void CodeGenFunction::EmitOMPSimdDirective(const OMPSimdDirective &S) {
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000733 auto &&CodeGen = [&S](CodeGenFunction &CGF) {
Alexey Bataev62dbb972015-04-22 11:59:37 +0000734 // if (PreCond) {
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000735 // for (IV in 0..LastIteration) BODY;
736 // <Final counter/linear vars updates>;
Alexey Bataev62dbb972015-04-22 11:59:37 +0000737 // }
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000738 //
Alexander Musmana5f070a2014-10-01 06:03:56 +0000739
Alexey Bataev62dbb972015-04-22 11:59:37 +0000740 // Emit: if (PreCond) - begin.
741 // If the condition constant folds and can be elided, avoid emitting the
742 // whole loop.
743 bool CondConstant;
744 llvm::BasicBlock *ContBlock = nullptr;
745 if (CGF.ConstantFoldsToSimpleInteger(S.getPreCond(), CondConstant)) {
746 if (!CondConstant)
747 return;
748 } else {
Alexey Bataev62dbb972015-04-22 11:59:37 +0000749 auto *ThenBlock = CGF.createBasicBlock("simd.if.then");
750 ContBlock = CGF.createBasicBlock("simd.if.end");
Justin Bogner66242d62015-04-23 23:06:47 +0000751 emitPreCond(CGF, S, S.getPreCond(), ThenBlock, ContBlock,
752 CGF.getProfileCount(&S));
Alexey Bataev62dbb972015-04-22 11:59:37 +0000753 CGF.EmitBlock(ThenBlock);
Justin Bogner66242d62015-04-23 23:06:47 +0000754 CGF.incrementProfileCounter(&S);
Alexey Bataev62dbb972015-04-22 11:59:37 +0000755 }
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000756 // Walk clauses and process safelen/lastprivate.
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000757 CGF.LoopStack.setParallel();
758 CGF.LoopStack.setVectorizerEnable(true);
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000759 emitSafelenClause(CGF, S);
760 emitAlignedClause(CGF, S);
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000761
762 // Emit the loop iteration variable.
763 const Expr *IVExpr = S.getIterationVariable();
764 const VarDecl *IVDecl = cast<VarDecl>(cast<DeclRefExpr>(IVExpr)->getDecl());
765 CGF.EmitVarDecl(*IVDecl);
766 CGF.EmitIgnoredExpr(S.getInit());
767
768 // Emit the iterations count variable.
769 // If it is not a variable, Sema decided to calculate iterations count on
Alexey Bataev7a228ff2015-05-21 07:59:51 +0000770 // each iteration (e.g., it is foldable into a constant).
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000771 if (auto LIExpr = dyn_cast<DeclRefExpr>(S.getLastIteration())) {
772 CGF.EmitVarDecl(*cast<VarDecl>(LIExpr->getDecl()));
773 // Emit calculation of the iterations count.
774 CGF.EmitIgnoredExpr(S.getCalcLastIteration());
Alexander Musmana5f070a2014-10-01 06:03:56 +0000775 }
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000776
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000777 emitLinearClauseInit(CGF, S);
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000778
Alexey Bataevfc087ec2015-06-16 13:14:42 +0000779 bool HasLastprivateClause;
Alexey Bataev62dbb972015-04-22 11:59:37 +0000780 {
781 OMPPrivateScope LoopScope(CGF);
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000782 emitPrivateLoopCounters(CGF, LoopScope, S.counters());
783 emitPrivateLinearVars(CGF, S, LoopScope);
Alexey Bataev62dbb972015-04-22 11:59:37 +0000784 CGF.EmitOMPPrivateClause(S, LoopScope);
Alexey Bataev89e7e8e2015-06-17 06:21:39 +0000785 CGF.EmitOMPReductionClauseInit(S, LoopScope);
Alexey Bataevfc087ec2015-06-16 13:14:42 +0000786 HasLastprivateClause = CGF.EmitOMPLastprivateClauseInit(S, LoopScope);
Alexey Bataev62dbb972015-04-22 11:59:37 +0000787 (void)LoopScope.Privatize();
788 CGF.EmitOMPInnerLoop(S, LoopScope.requiresCleanups(),
Alexey Bataevae05c292015-06-16 11:59:36 +0000789 S.getCond(), S.getInc(),
Alexey Bataev62dbb972015-04-22 11:59:37 +0000790 [&S](CodeGenFunction &CGF) {
791 CGF.EmitOMPLoopBody(S);
792 CGF.EmitStopPoint(&S);
793 },
794 [](CodeGenFunction &) {});
Alexey Bataevfc087ec2015-06-16 13:14:42 +0000795 // Emit final copy of the lastprivate variables at the end of loops.
796 if (HasLastprivateClause) {
797 CGF.EmitOMPLastprivateClauseFinal(S);
798 }
Alexey Bataev89e7e8e2015-06-17 06:21:39 +0000799 CGF.EmitOMPReductionClauseFinal(S);
Alexey Bataev62dbb972015-04-22 11:59:37 +0000800 }
Alexey Bataevcbdcbb72015-06-17 07:45:51 +0000801 auto IC = S.counters().begin();
802 for (auto F : S.finals()) {
803 auto *OrigVD = cast<VarDecl>(cast<DeclRefExpr>((*IC))->getDecl());
804 if (CGF.LocalDeclMap.lookup(OrigVD)) {
805 DeclRefExpr DRE(const_cast<VarDecl *>(OrigVD),
806 CGF.CapturedStmtInfo->lookup(OrigVD) != nullptr,
807 (*IC)->getType(), VK_LValue, (*IC)->getExprLoc());
808 auto *OrigAddr = CGF.EmitLValue(&DRE).getAddress();
809 OMPPrivateScope VarScope(CGF);
810 VarScope.addPrivate(OrigVD,
811 [OrigAddr]() -> llvm::Value *{ return OrigAddr; });
812 (void)VarScope.Privatize();
813 CGF.EmitIgnoredExpr(F);
814 }
815 ++IC;
816 }
817 emitLinearClauseFinal(CGF, S);
Alexey Bataev62dbb972015-04-22 11:59:37 +0000818 // Emit: if (PreCond) - end.
819 if (ContBlock) {
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000820 CGF.EmitBranch(ContBlock);
821 CGF.EmitBlock(ContBlock, true);
Alexey Bataev6f1ffc02015-04-10 04:50:10 +0000822 }
823 };
824 CGM.getOpenMPRuntime().emitInlinedDirective(*this, CodeGen);
Alexander Musman515ad8c2014-05-22 08:54:05 +0000825}
826
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000827void CodeGenFunction::EmitOMPForOuterLoop(OpenMPScheduleClauseKind ScheduleKind,
828 const OMPLoopDirective &S,
829 OMPPrivateScope &LoopScope,
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000830 bool Ordered, llvm::Value *LB,
831 llvm::Value *UB, llvm::Value *ST,
832 llvm::Value *IL, llvm::Value *Chunk) {
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000833 auto &RT = CGM.getOpenMPRuntime();
Alexander Musman92bdaab2015-03-12 13:37:50 +0000834
835 // Dynamic scheduling of the outer loop (dynamic, guided, auto, runtime).
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000836 const bool DynamicOrOrdered = Ordered || RT.isDynamic(ScheduleKind);
Alexander Musman92bdaab2015-03-12 13:37:50 +0000837
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000838 assert((Ordered ||
839 !RT.isStaticNonchunked(ScheduleKind, /*Chunked=*/Chunk != nullptr)) &&
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000840 "static non-chunked schedule does not need outer loop");
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000841
842 // Emit outer loop.
843 //
844 // OpenMP [2.7.1, Loop Construct, Description, table 2-1]
Alexander Musman92bdaab2015-03-12 13:37:50 +0000845 // When schedule(dynamic,chunk_size) is specified, the iterations are
846 // distributed to threads in the team in chunks as the threads request them.
847 // Each thread executes a chunk of iterations, then requests another chunk,
848 // until no chunks remain to be distributed. Each chunk contains chunk_size
849 // iterations, except for the last chunk to be distributed, which may have
850 // fewer iterations. When no chunk_size is specified, it defaults to 1.
851 //
852 // When schedule(guided,chunk_size) is specified, the iterations are assigned
853 // to threads in the team in chunks as the executing threads request them.
854 // Each thread executes a chunk of iterations, then requests another chunk,
855 // until no chunks remain to be assigned. For a chunk_size of 1, the size of
856 // each chunk is proportional to the number of unassigned iterations divided
857 // by the number of threads in the team, decreasing to 1. For a chunk_size
858 // with value k (greater than 1), the size of each chunk is determined in the
859 // same way, with the restriction that the chunks do not contain fewer than k
860 // iterations (except for the last chunk to be assigned, which may have fewer
861 // than k iterations).
862 //
863 // When schedule(auto) is specified, the decision regarding scheduling is
864 // delegated to the compiler and/or runtime system. The programmer gives the
865 // implementation the freedom to choose any possible mapping of iterations to
866 // threads in the team.
867 //
868 // When schedule(runtime) is specified, the decision regarding scheduling is
869 // deferred until run time, and the schedule and chunk size are taken from the
870 // run-sched-var ICV. If the ICV is set to auto, the schedule is
871 // implementation defined
872 //
873 // while(__kmpc_dispatch_next(&LB, &UB)) {
874 // idx = LB;
Alexey Bataev98eb6e32015-04-22 11:15:40 +0000875 // while (idx <= UB) { BODY; ++idx;
876 // __kmpc_dispatch_fini_(4|8)[u](); // For ordered loops only.
877 // } // inner loop
Alexander Musman92bdaab2015-03-12 13:37:50 +0000878 // }
879 //
880 // OpenMP [2.7.1, Loop Construct, Description, table 2-1]
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000881 // When schedule(static, chunk_size) is specified, iterations are divided into
882 // chunks of size chunk_size, and the chunks are assigned to the threads in
883 // the team in a round-robin fashion in the order of the thread number.
884 //
885 // while(UB = min(UB, GlobalUB), idx = LB, idx < UB) {
886 // while (idx <= UB) { BODY; ++idx; } // inner loop
887 // LB = LB + ST;
888 // UB = UB + ST;
889 // }
890 //
Alexander Musman92bdaab2015-03-12 13:37:50 +0000891
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000892 const Expr *IVExpr = S.getIterationVariable();
893 const unsigned IVSize = getContext().getTypeSize(IVExpr->getType());
894 const bool IVSigned = IVExpr->getType()->hasSignedIntegerRepresentation();
895
Alexander Musman92bdaab2015-03-12 13:37:50 +0000896 RT.emitForInit(
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000897 *this, S.getLocStart(), ScheduleKind, IVSize, IVSigned, Ordered, IL, LB,
898 (DynamicOrOrdered ? EmitAnyExpr(S.getLastIteration()).getScalarVal()
899 : UB),
900 ST, Chunk);
Alexander Musman92bdaab2015-03-12 13:37:50 +0000901
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000902 auto LoopExit = getJumpDestInCurrentScope("omp.dispatch.end");
903
904 // Start the loop with a block that tests the condition.
905 auto CondBlock = createBasicBlock("omp.dispatch.cond");
906 EmitBlock(CondBlock);
907 LoopStack.push(CondBlock);
908
909 llvm::Value *BoolCondVal = nullptr;
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000910 if (!DynamicOrOrdered) {
Alexander Musman92bdaab2015-03-12 13:37:50 +0000911 // UB = min(UB, GlobalUB)
912 EmitIgnoredExpr(S.getEnsureUpperBound());
913 // IV = LB
914 EmitIgnoredExpr(S.getInit());
915 // IV < UB
Alexey Bataevae05c292015-06-16 11:59:36 +0000916 BoolCondVal = EvaluateExprAsBool(S.getCond());
Alexander Musman92bdaab2015-03-12 13:37:50 +0000917 } else {
918 BoolCondVal = RT.emitForNext(*this, S.getLocStart(), IVSize, IVSigned,
919 IL, LB, UB, ST);
920 }
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000921
922 // If there are any cleanups between here and the loop-exit scope,
923 // create a block to stage a loop exit along.
924 auto ExitBlock = LoopExit.getBlock();
925 if (LoopScope.requiresCleanups())
926 ExitBlock = createBasicBlock("omp.dispatch.cleanup");
927
928 auto LoopBody = createBasicBlock("omp.dispatch.body");
929 Builder.CreateCondBr(BoolCondVal, LoopBody, ExitBlock);
930 if (ExitBlock != LoopExit.getBlock()) {
931 EmitBlock(ExitBlock);
932 EmitBranchThroughCleanup(LoopExit);
933 }
934 EmitBlock(LoopBody);
935
Alexander Musman92bdaab2015-03-12 13:37:50 +0000936 // Emit "IV = LB" (in case of static schedule, we have already calculated new
937 // LB for loop condition and emitted it above).
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000938 if (DynamicOrOrdered)
Alexander Musman92bdaab2015-03-12 13:37:50 +0000939 EmitIgnoredExpr(S.getInit());
940
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000941 // Create a block for the increment.
942 auto Continue = getJumpDestInCurrentScope("omp.dispatch.inc");
943 BreakContinueStack.push_back(BreakContinue(LoopExit, Continue));
944
Alexey Bataev98eb6e32015-04-22 11:15:40 +0000945 SourceLocation Loc = S.getLocStart();
Alexey Bataev53223c92015-05-07 04:25:17 +0000946 // Generate !llvm.loop.parallel metadata for loads and stores for loops with
947 // dynamic/guided scheduling and without ordered clause.
948 LoopStack.setParallel((ScheduleKind == OMPC_SCHEDULE_dynamic ||
949 ScheduleKind == OMPC_SCHEDULE_guided) &&
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000950 !Ordered);
Alexey Bataev98eb6e32015-04-22 11:15:40 +0000951 EmitOMPInnerLoop(
Alexey Bataevae05c292015-06-16 11:59:36 +0000952 S, LoopScope.requiresCleanups(), S.getCond(),
Alexey Bataev98eb6e32015-04-22 11:15:40 +0000953 S.getInc(),
954 [&S](CodeGenFunction &CGF) {
955 CGF.EmitOMPLoopBody(S);
956 CGF.EmitStopPoint(&S);
957 },
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000958 [Ordered, IVSize, IVSigned, Loc](CodeGenFunction &CGF) {
959 if (Ordered) {
960 CGF.CGM.getOpenMPRuntime().emitForOrderedIterationEnd(
Alexey Bataev98eb6e32015-04-22 11:15:40 +0000961 CGF, Loc, IVSize, IVSigned);
962 }
963 });
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000964
965 EmitBlock(Continue.getBlock());
966 BreakContinueStack.pop_back();
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000967 if (!DynamicOrOrdered) {
Alexander Musman92bdaab2015-03-12 13:37:50 +0000968 // Emit "LB = LB + Stride", "UB = UB + Stride".
969 EmitIgnoredExpr(S.getNextLowerBound());
970 EmitIgnoredExpr(S.getNextUpperBound());
971 }
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000972
973 EmitBranch(CondBlock);
974 LoopStack.pop();
975 // Emit the fall-through block.
976 EmitBlock(LoopExit.getBlock());
977
978 // Tell the runtime we are done.
Alexey Bataevd7589ffe2015-05-20 13:12:48 +0000979 if (!DynamicOrOrdered)
Alexey Bataev98eb6e32015-04-22 11:15:40 +0000980 RT.emitForStaticFinish(*this, S.getLocEnd());
Alexander Musmandf7a8e22015-01-22 08:49:35 +0000981}
982
Alexander Musmanc6388682014-12-15 07:07:06 +0000983/// \brief Emit a helper variable and return corresponding lvalue.
984static LValue EmitOMPHelperVar(CodeGenFunction &CGF,
985 const DeclRefExpr *Helper) {
986 auto VDecl = cast<VarDecl>(Helper->getDecl());
987 CGF.EmitVarDecl(*VDecl);
988 return CGF.EmitLValue(Helper);
989}
990
Alexey Bataev040d5402015-05-12 08:35:28 +0000991static std::pair<llvm::Value * /*Chunk*/, OpenMPScheduleClauseKind>
992emitScheduleClause(CodeGenFunction &CGF, const OMPLoopDirective &S,
993 bool OuterRegion) {
994 // Detect the loop schedule kind and chunk.
995 auto ScheduleKind = OMPC_SCHEDULE_unknown;
996 llvm::Value *Chunk = nullptr;
997 if (auto *C =
998 cast_or_null<OMPScheduleClause>(S.getSingleClause(OMPC_schedule))) {
999 ScheduleKind = C->getScheduleKind();
1000 if (const auto *Ch = C->getChunkSize()) {
1001 if (auto *ImpRef = cast_or_null<DeclRefExpr>(C->getHelperChunkSize())) {
1002 if (OuterRegion) {
1003 const VarDecl *ImpVar = cast<VarDecl>(ImpRef->getDecl());
1004 CGF.EmitVarDecl(*ImpVar);
1005 CGF.EmitStoreThroughLValue(
1006 CGF.EmitAnyExpr(Ch),
1007 CGF.MakeNaturalAlignAddrLValue(CGF.GetAddrOfLocalVar(ImpVar),
1008 ImpVar->getType()));
1009 } else {
1010 Ch = ImpRef;
1011 }
1012 }
1013 if (!C->getHelperChunkSize() || !OuterRegion) {
1014 Chunk = CGF.EmitScalarExpr(Ch);
1015 Chunk = CGF.EmitScalarConversion(Chunk, Ch->getType(),
1016 S.getIterationVariable()->getType());
1017 }
1018 }
1019 }
1020 return std::make_pair(Chunk, ScheduleKind);
1021}
1022
Alexey Bataev38e89532015-04-16 04:54:05 +00001023bool CodeGenFunction::EmitOMPWorksharingLoop(const OMPLoopDirective &S) {
Alexander Musmanc6388682014-12-15 07:07:06 +00001024 // Emit the loop iteration variable.
1025 auto IVExpr = cast<DeclRefExpr>(S.getIterationVariable());
1026 auto IVDecl = cast<VarDecl>(IVExpr->getDecl());
1027 EmitVarDecl(*IVDecl);
1028
1029 // Emit the iterations count variable.
1030 // If it is not a variable, Sema decided to calculate iterations count on each
1031 // iteration (e.g., it is foldable into a constant).
1032 if (auto LIExpr = dyn_cast<DeclRefExpr>(S.getLastIteration())) {
1033 EmitVarDecl(*cast<VarDecl>(LIExpr->getDecl()));
1034 // Emit calculation of the iterations count.
1035 EmitIgnoredExpr(S.getCalcLastIteration());
1036 }
1037
1038 auto &RT = CGM.getOpenMPRuntime();
1039
Alexey Bataev38e89532015-04-16 04:54:05 +00001040 bool HasLastprivateClause;
Alexander Musmanc6388682014-12-15 07:07:06 +00001041 // Check pre-condition.
1042 {
1043 // Skip the entire loop if we don't meet the precondition.
Alexey Bataev62dbb972015-04-22 11:59:37 +00001044 // If the condition constant folds and can be elided, avoid emitting the
1045 // whole loop.
1046 bool CondConstant;
1047 llvm::BasicBlock *ContBlock = nullptr;
1048 if (ConstantFoldsToSimpleInteger(S.getPreCond(), CondConstant)) {
1049 if (!CondConstant)
1050 return false;
1051 } else {
Alexey Bataev62dbb972015-04-22 11:59:37 +00001052 auto *ThenBlock = createBasicBlock("omp.precond.then");
1053 ContBlock = createBasicBlock("omp.precond.end");
1054 emitPreCond(*this, S, S.getPreCond(), ThenBlock, ContBlock,
Justin Bogner66242d62015-04-23 23:06:47 +00001055 getProfileCount(&S));
Alexey Bataev62dbb972015-04-22 11:59:37 +00001056 EmitBlock(ThenBlock);
Justin Bogner66242d62015-04-23 23:06:47 +00001057 incrementProfileCounter(&S);
Alexey Bataev62dbb972015-04-22 11:59:37 +00001058 }
Alexander Musmanc6388682014-12-15 07:07:06 +00001059 // Emit 'then' code.
1060 {
1061 // Emit helper vars inits.
1062 LValue LB =
1063 EmitOMPHelperVar(*this, cast<DeclRefExpr>(S.getLowerBoundVariable()));
1064 LValue UB =
1065 EmitOMPHelperVar(*this, cast<DeclRefExpr>(S.getUpperBoundVariable()));
1066 LValue ST =
1067 EmitOMPHelperVar(*this, cast<DeclRefExpr>(S.getStrideVariable()));
1068 LValue IL =
1069 EmitOMPHelperVar(*this, cast<DeclRefExpr>(S.getIsLastIterVariable()));
1070
1071 OMPPrivateScope LoopScope(*this);
Alexey Bataev69c62a92015-04-15 04:52:20 +00001072 if (EmitOMPFirstprivateClause(S, LoopScope)) {
1073 // Emit implicit barrier to synchronize threads and avoid data races on
1074 // initialization of firstprivate variables.
1075 CGM.getOpenMPRuntime().emitBarrierCall(*this, S.getLocStart(),
1076 OMPD_unknown);
1077 }
Alexey Bataev50a64582015-04-22 12:24:45 +00001078 EmitOMPPrivateClause(S, LoopScope);
Alexey Bataev38e89532015-04-16 04:54:05 +00001079 HasLastprivateClause = EmitOMPLastprivateClauseInit(S, LoopScope);
Alexey Bataev7ebe5fd2015-04-22 13:43:03 +00001080 EmitOMPReductionClauseInit(S, LoopScope);
Alexey Bataevcbdcbb72015-06-17 07:45:51 +00001081 emitPrivateLoopCounters(*this, LoopScope, S.counters());
Alexander Musman7931b982015-03-16 07:14:41 +00001082 (void)LoopScope.Privatize();
Alexander Musmanc6388682014-12-15 07:07:06 +00001083
1084 // Detect the loop schedule kind and chunk.
Alexey Bataev040d5402015-05-12 08:35:28 +00001085 llvm::Value *Chunk;
1086 OpenMPScheduleClauseKind ScheduleKind;
1087 auto ScheduleInfo =
1088 emitScheduleClause(*this, S, /*OuterRegion=*/false);
1089 Chunk = ScheduleInfo.first;
1090 ScheduleKind = ScheduleInfo.second;
Alexander Musmanc6388682014-12-15 07:07:06 +00001091 const unsigned IVSize = getContext().getTypeSize(IVExpr->getType());
1092 const bool IVSigned = IVExpr->getType()->hasSignedIntegerRepresentation();
Alexey Bataevd7589ffe2015-05-20 13:12:48 +00001093 const bool Ordered = S.getSingleClause(OMPC_ordered) != nullptr;
Alexander Musmanc6388682014-12-15 07:07:06 +00001094 if (RT.isStaticNonchunked(ScheduleKind,
Alexey Bataevd7589ffe2015-05-20 13:12:48 +00001095 /* Chunked */ Chunk != nullptr) &&
1096 !Ordered) {
Alexander Musmanc6388682014-12-15 07:07:06 +00001097 // OpenMP [2.7.1, Loop Construct, Description, table 2-1]
1098 // When no chunk_size is specified, the iteration space is divided into
1099 // chunks that are approximately equal in size, and at most one chunk is
1100 // distributed to each thread. Note that the size of the chunks is
1101 // unspecified in this case.
Alexey Bataev3eff5f42015-02-25 08:32:46 +00001102 RT.emitForInit(*this, S.getLocStart(), ScheduleKind, IVSize, IVSigned,
Alexey Bataevd7589ffe2015-05-20 13:12:48 +00001103 Ordered, IL.getAddress(), LB.getAddress(),
1104 UB.getAddress(), ST.getAddress());
Alexander Musmanc6388682014-12-15 07:07:06 +00001105 // UB = min(UB, GlobalUB);
1106 EmitIgnoredExpr(S.getEnsureUpperBound());
1107 // IV = LB;
1108 EmitIgnoredExpr(S.getInit());
1109 // while (idx <= UB) { BODY; ++idx; }
Alexey Bataevae05c292015-06-16 11:59:36 +00001110 EmitOMPInnerLoop(S, LoopScope.requiresCleanups(), S.getCond(),
1111 S.getInc(),
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001112 [&S](CodeGenFunction &CGF) {
1113 CGF.EmitOMPLoopBody(S);
1114 CGF.EmitStopPoint(&S);
Alexey Bataev98eb6e32015-04-22 11:15:40 +00001115 },
1116 [](CodeGenFunction &) {});
Alexander Musmanc6388682014-12-15 07:07:06 +00001117 // Tell the runtime we are done.
Alexey Bataev98eb6e32015-04-22 11:15:40 +00001118 RT.emitForStaticFinish(*this, S.getLocStart());
Alexander Musmandf7a8e22015-01-22 08:49:35 +00001119 } else {
1120 // Emit the outer loop, which requests its work chunk [LB..UB] from
1121 // runtime and runs the inner loop to process it.
Alexey Bataevd7589ffe2015-05-20 13:12:48 +00001122 EmitOMPForOuterLoop(ScheduleKind, S, LoopScope, Ordered,
1123 LB.getAddress(), UB.getAddress(), ST.getAddress(),
1124 IL.getAddress(), Chunk);
Alexander Musmandf7a8e22015-01-22 08:49:35 +00001125 }
Alexey Bataev7ebe5fd2015-04-22 13:43:03 +00001126 EmitOMPReductionClauseFinal(S);
Alexey Bataev38e89532015-04-16 04:54:05 +00001127 // Emit final copy of the lastprivate variables if IsLastIter != 0.
1128 if (HasLastprivateClause)
1129 EmitOMPLastprivateClauseFinal(
1130 S, Builder.CreateIsNotNull(EmitLoadOfScalar(IL, S.getLocStart())));
Alexander Musmanc6388682014-12-15 07:07:06 +00001131 }
1132 // We're now done with the loop, so jump to the continuation block.
Alexey Bataev62dbb972015-04-22 11:59:37 +00001133 if (ContBlock) {
1134 EmitBranch(ContBlock);
1135 EmitBlock(ContBlock, true);
1136 }
Alexander Musmanc6388682014-12-15 07:07:06 +00001137 }
Alexey Bataev38e89532015-04-16 04:54:05 +00001138 return HasLastprivateClause;
Alexander Musmanc6388682014-12-15 07:07:06 +00001139}
1140
1141void CodeGenFunction::EmitOMPForDirective(const OMPForDirective &S) {
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001142 LexicalScope Scope(*this, S.getSourceRange());
Alexey Bataev38e89532015-04-16 04:54:05 +00001143 bool HasLastprivates = false;
1144 auto &&CodeGen = [&S, &HasLastprivates](CodeGenFunction &CGF) {
1145 HasLastprivates = CGF.EmitOMPWorksharingLoop(S);
1146 };
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001147 CGM.getOpenMPRuntime().emitInlinedDirective(*this, CodeGen);
Alexander Musmanc6388682014-12-15 07:07:06 +00001148
1149 // Emit an implicit barrier at the end.
Alexey Bataev38e89532015-04-16 04:54:05 +00001150 if (!S.getSingleClause(OMPC_nowait) || HasLastprivates) {
Alexey Bataevf2685682015-03-30 04:30:22 +00001151 CGM.getOpenMPRuntime().emitBarrierCall(*this, S.getLocStart(), OMPD_for);
1152 }
Alexey Bataevf29276e2014-06-18 04:14:57 +00001153}
Alexey Bataevd3f8dd22014-06-25 11:44:49 +00001154
Alexey Bataevcbdcbb72015-06-17 07:45:51 +00001155void CodeGenFunction::EmitOMPForSimdDirective(const OMPForSimdDirective &S) {
1156 LexicalScope Scope(*this, S.getSourceRange());
1157 bool HasLastprivates = false;
1158 auto &&CodeGen = [&S, &HasLastprivates](CodeGenFunction &CGF) {
1159 HasLastprivates = CGF.EmitOMPWorksharingLoop(S);
1160 };
1161 CGM.getOpenMPRuntime().emitInlinedDirective(*this, CodeGen);
1162
1163 // Emit an implicit barrier at the end.
1164 if (!S.getSingleClause(OMPC_nowait) || HasLastprivates) {
1165 CGM.getOpenMPRuntime().emitBarrierCall(*this, S.getLocStart(), OMPD_for);
1166 }
Alexander Musmanf82886e2014-09-18 05:12:34 +00001167 llvm_unreachable("CodeGen for 'omp for simd' is not supported yet.");
1168}
1169
Alexey Bataev2df54a02015-03-12 08:53:29 +00001170static LValue createSectionLVal(CodeGenFunction &CGF, QualType Ty,
1171 const Twine &Name,
1172 llvm::Value *Init = nullptr) {
1173 auto LVal = CGF.MakeNaturalAlignAddrLValue(CGF.CreateMemTemp(Ty, Name), Ty);
1174 if (Init)
1175 CGF.EmitScalarInit(Init, LVal);
1176 return LVal;
Alexey Bataevd3f8dd22014-06-25 11:44:49 +00001177}
1178
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001179static OpenMPDirectiveKind emitSections(CodeGenFunction &CGF,
1180 const OMPExecutableDirective &S) {
Alexey Bataev2df54a02015-03-12 08:53:29 +00001181 auto *Stmt = cast<CapturedStmt>(S.getAssociatedStmt())->getCapturedStmt();
1182 auto *CS = dyn_cast<CompoundStmt>(Stmt);
1183 if (CS && CS->size() > 1) {
Alexey Bataev9efc03b2015-04-27 04:34:03 +00001184 bool HasLastprivates = false;
1185 auto &&CodeGen = [&S, CS, &HasLastprivates](CodeGenFunction &CGF) {
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001186 auto &C = CGF.CGM.getContext();
1187 auto KmpInt32Ty = C.getIntTypeForBitwidth(/*DestWidth=*/32, /*Signed=*/1);
1188 // Emit helper vars inits.
1189 LValue LB = createSectionLVal(CGF, KmpInt32Ty, ".omp.sections.lb.",
1190 CGF.Builder.getInt32(0));
1191 auto *GlobalUBVal = CGF.Builder.getInt32(CS->size() - 1);
1192 LValue UB =
1193 createSectionLVal(CGF, KmpInt32Ty, ".omp.sections.ub.", GlobalUBVal);
1194 LValue ST = createSectionLVal(CGF, KmpInt32Ty, ".omp.sections.st.",
1195 CGF.Builder.getInt32(1));
1196 LValue IL = createSectionLVal(CGF, KmpInt32Ty, ".omp.sections.il.",
1197 CGF.Builder.getInt32(0));
1198 // Loop counter.
1199 LValue IV = createSectionLVal(CGF, KmpInt32Ty, ".omp.sections.iv.");
1200 OpaqueValueExpr IVRefExpr(S.getLocStart(), KmpInt32Ty, VK_LValue);
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001201 CodeGenFunction::OpaqueValueMapping OpaqueIV(CGF, &IVRefExpr, IV);
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001202 OpaqueValueExpr UBRefExpr(S.getLocStart(), KmpInt32Ty, VK_LValue);
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001203 CodeGenFunction::OpaqueValueMapping OpaqueUB(CGF, &UBRefExpr, UB);
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001204 // Generate condition for loop.
1205 BinaryOperator Cond(&IVRefExpr, &UBRefExpr, BO_LE, C.BoolTy, VK_RValue,
1206 OK_Ordinary, S.getLocStart(),
1207 /*fpContractable=*/false);
1208 // Increment for loop counter.
1209 UnaryOperator Inc(&IVRefExpr, UO_PreInc, KmpInt32Ty, VK_RValue,
1210 OK_Ordinary, S.getLocStart());
1211 auto BodyGen = [CS, &S, &IV](CodeGenFunction &CGF) {
1212 // Iterate through all sections and emit a switch construct:
1213 // switch (IV) {
1214 // case 0:
1215 // <SectionStmt[0]>;
1216 // break;
1217 // ...
1218 // case <NumSection> - 1:
1219 // <SectionStmt[<NumSection> - 1]>;
1220 // break;
1221 // }
1222 // .omp.sections.exit:
1223 auto *ExitBB = CGF.createBasicBlock(".omp.sections.exit");
1224 auto *SwitchStmt = CGF.Builder.CreateSwitch(
1225 CGF.EmitLoadOfLValue(IV, S.getLocStart()).getScalarVal(), ExitBB,
1226 CS->size());
1227 unsigned CaseNumber = 0;
1228 for (auto C = CS->children(); C; ++C, ++CaseNumber) {
1229 auto CaseBB = CGF.createBasicBlock(".omp.sections.case");
1230 CGF.EmitBlock(CaseBB);
1231 SwitchStmt->addCase(CGF.Builder.getInt32(CaseNumber), CaseBB);
1232 CGF.EmitStmt(*C);
1233 CGF.EmitBranch(ExitBB);
1234 }
1235 CGF.EmitBlock(ExitBB, /*IsFinished=*/true);
1236 };
Alexey Bataev2cb9b952015-04-24 03:37:03 +00001237
1238 CodeGenFunction::OMPPrivateScope LoopScope(CGF);
1239 if (CGF.EmitOMPFirstprivateClause(S, LoopScope)) {
1240 // Emit implicit barrier to synchronize threads and avoid data races on
1241 // initialization of firstprivate variables.
1242 CGF.CGM.getOpenMPRuntime().emitBarrierCall(CGF, S.getLocStart(),
1243 OMPD_unknown);
1244 }
Alexey Bataev73870832015-04-27 04:12:12 +00001245 CGF.EmitOMPPrivateClause(S, LoopScope);
Alexey Bataev9efc03b2015-04-27 04:34:03 +00001246 HasLastprivates = CGF.EmitOMPLastprivateClauseInit(S, LoopScope);
Alexey Bataeva89adf22015-04-27 05:04:13 +00001247 CGF.EmitOMPReductionClauseInit(S, LoopScope);
Alexey Bataev2cb9b952015-04-24 03:37:03 +00001248 (void)LoopScope.Privatize();
1249
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001250 // Emit static non-chunked loop.
1251 CGF.CGM.getOpenMPRuntime().emitForInit(
1252 CGF, S.getLocStart(), OMPC_SCHEDULE_static, /*IVSize=*/32,
Alexey Bataevd7589ffe2015-05-20 13:12:48 +00001253 /*IVSigned=*/true, /*Ordered=*/false, IL.getAddress(),
1254 LB.getAddress(), UB.getAddress(), ST.getAddress());
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001255 // UB = min(UB, GlobalUB);
1256 auto *UBVal = CGF.EmitLoadOfScalar(UB, S.getLocStart());
1257 auto *MinUBGlobalUB = CGF.Builder.CreateSelect(
1258 CGF.Builder.CreateICmpSLT(UBVal, GlobalUBVal), UBVal, GlobalUBVal);
1259 CGF.EmitStoreOfScalar(MinUBGlobalUB, UB);
1260 // IV = LB;
1261 CGF.EmitStoreOfScalar(CGF.EmitLoadOfScalar(LB, S.getLocStart()), IV);
1262 // while (idx <= UB) { BODY; ++idx; }
Alexey Bataev98eb6e32015-04-22 11:15:40 +00001263 CGF.EmitOMPInnerLoop(S, /*RequiresCleanup=*/false, &Cond, &Inc, BodyGen,
1264 [](CodeGenFunction &) {});
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001265 // Tell the runtime we are done.
Alexey Bataev98eb6e32015-04-22 11:15:40 +00001266 CGF.CGM.getOpenMPRuntime().emitForStaticFinish(CGF, S.getLocStart());
Alexey Bataeva89adf22015-04-27 05:04:13 +00001267 CGF.EmitOMPReductionClauseFinal(S);
Alexey Bataev9efc03b2015-04-27 04:34:03 +00001268
1269 // Emit final copy of the lastprivate variables if IsLastIter != 0.
1270 if (HasLastprivates)
1271 CGF.EmitOMPLastprivateClauseFinal(
1272 S, CGF.Builder.CreateIsNotNull(
1273 CGF.EmitLoadOfScalar(IL, S.getLocStart())));
Alexey Bataev2df54a02015-03-12 08:53:29 +00001274 };
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001275
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001276 CGF.CGM.getOpenMPRuntime().emitInlinedDirective(CGF, CodeGen);
Alexey Bataev9efc03b2015-04-27 04:34:03 +00001277 // Emit barrier for lastprivates only if 'sections' directive has 'nowait'
1278 // clause. Otherwise the barrier will be generated by the codegen for the
1279 // directive.
1280 if (HasLastprivates && S.getSingleClause(OMPC_nowait)) {
1281 // Emit implicit barrier to synchronize threads and avoid data races on
1282 // initialization of firstprivate variables.
1283 CGF.CGM.getOpenMPRuntime().emitBarrierCall(CGF, S.getLocStart(),
1284 OMPD_unknown);
1285 }
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001286 return OMPD_sections;
Alexey Bataev2df54a02015-03-12 08:53:29 +00001287 }
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001288 // If only one section is found - no need to generate loop, emit as a single
1289 // region.
Alexey Bataev2cb9b952015-04-24 03:37:03 +00001290 bool HasFirstprivates;
Alexey Bataeva89adf22015-04-27 05:04:13 +00001291 // No need to generate reductions for sections with single section region, we
1292 // can use original shared variables for all operations.
Alexey Bataevc925aa32015-04-27 08:00:32 +00001293 bool HasReductions = !S.getClausesOfKind(OMPC_reduction).empty();
Alexey Bataev9efc03b2015-04-27 04:34:03 +00001294 // No need to generate lastprivates for sections with single section region,
1295 // we can use original shared variable for all calculations with barrier at
1296 // the end of the sections.
Alexey Bataevc925aa32015-04-27 08:00:32 +00001297 bool HasLastprivates = !S.getClausesOfKind(OMPC_lastprivate).empty();
Alexey Bataev2cb9b952015-04-24 03:37:03 +00001298 auto &&CodeGen = [Stmt, &S, &HasFirstprivates](CodeGenFunction &CGF) {
1299 CodeGenFunction::OMPPrivateScope SingleScope(CGF);
1300 HasFirstprivates = CGF.EmitOMPFirstprivateClause(S, SingleScope);
Alexey Bataev73870832015-04-27 04:12:12 +00001301 CGF.EmitOMPPrivateClause(S, SingleScope);
Alexey Bataev2cb9b952015-04-24 03:37:03 +00001302 (void)SingleScope.Privatize();
1303
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001304 CGF.EmitStmt(Stmt);
1305 CGF.EnsureInsertPoint();
1306 };
1307 CGF.CGM.getOpenMPRuntime().emitSingleRegion(CGF, CodeGen, S.getLocStart(),
1308 llvm::None, llvm::None,
1309 llvm::None, llvm::None);
Alexey Bataeva89adf22015-04-27 05:04:13 +00001310 // Emit barrier for firstprivates, lastprivates or reductions only if
1311 // 'sections' directive has 'nowait' clause. Otherwise the barrier will be
1312 // generated by the codegen for the directive.
1313 if ((HasFirstprivates || HasLastprivates || HasReductions) &&
1314 S.getSingleClause(OMPC_nowait)) {
Alexey Bataev2cb9b952015-04-24 03:37:03 +00001315 // Emit implicit barrier to synchronize threads and avoid data races on
1316 // initialization of firstprivate variables.
1317 CGF.CGM.getOpenMPRuntime().emitBarrierCall(CGF, S.getLocStart(),
1318 OMPD_unknown);
1319 }
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001320 return OMPD_single;
1321}
Alexey Bataev2df54a02015-03-12 08:53:29 +00001322
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001323void CodeGenFunction::EmitOMPSectionsDirective(const OMPSectionsDirective &S) {
1324 LexicalScope Scope(*this, S.getSourceRange());
1325 OpenMPDirectiveKind EmittedAs = emitSections(*this, S);
Alexey Bataev2df54a02015-03-12 08:53:29 +00001326 // Emit an implicit barrier at the end.
Alexey Bataevf2685682015-03-30 04:30:22 +00001327 if (!S.getSingleClause(OMPC_nowait)) {
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001328 CGM.getOpenMPRuntime().emitBarrierCall(*this, S.getLocStart(), EmittedAs);
Alexey Bataevf2685682015-03-30 04:30:22 +00001329 }
Alexey Bataev2df54a02015-03-12 08:53:29 +00001330}
1331
1332void CodeGenFunction::EmitOMPSectionDirective(const OMPSectionDirective &S) {
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001333 LexicalScope Scope(*this, S.getSourceRange());
1334 auto &&CodeGen = [&S](CodeGenFunction &CGF) {
1335 CGF.EmitStmt(cast<CapturedStmt>(S.getAssociatedStmt())->getCapturedStmt());
1336 CGF.EnsureInsertPoint();
1337 };
1338 CGM.getOpenMPRuntime().emitInlinedDirective(*this, CodeGen);
Alexey Bataev1e0498a2014-06-26 08:21:58 +00001339}
1340
Alexey Bataev6956e2e2015-02-05 06:35:41 +00001341void CodeGenFunction::EmitOMPSingleDirective(const OMPSingleDirective &S) {
Alexey Bataeva63048e2015-03-23 06:18:07 +00001342 llvm::SmallVector<const Expr *, 8> CopyprivateVars;
Alexey Bataev420d45b2015-04-14 05:11:24 +00001343 llvm::SmallVector<const Expr *, 8> DestExprs;
Alexey Bataeva63048e2015-03-23 06:18:07 +00001344 llvm::SmallVector<const Expr *, 8> SrcExprs;
Alexey Bataeva63048e2015-03-23 06:18:07 +00001345 llvm::SmallVector<const Expr *, 8> AssignmentOps;
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001346 // Check if there are any 'copyprivate' clauses associated with this
1347 // 'single'
Alexey Bataeva63048e2015-03-23 06:18:07 +00001348 // construct.
Alexey Bataeva63048e2015-03-23 06:18:07 +00001349 // Build a list of copyprivate variables along with helper expressions
1350 // (<source>, <destination>, <destination>=<source> expressions)
Alexey Bataevc925aa32015-04-27 08:00:32 +00001351 for (auto &&I = S.getClausesOfKind(OMPC_copyprivate); I; ++I) {
Alexey Bataeva63048e2015-03-23 06:18:07 +00001352 auto *C = cast<OMPCopyprivateClause>(*I);
1353 CopyprivateVars.append(C->varlists().begin(), C->varlists().end());
Alexey Bataev420d45b2015-04-14 05:11:24 +00001354 DestExprs.append(C->destination_exprs().begin(),
1355 C->destination_exprs().end());
Alexey Bataeva63048e2015-03-23 06:18:07 +00001356 SrcExprs.append(C->source_exprs().begin(), C->source_exprs().end());
Alexey Bataeva63048e2015-03-23 06:18:07 +00001357 AssignmentOps.append(C->assignment_ops().begin(),
1358 C->assignment_ops().end());
1359 }
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001360 LexicalScope Scope(*this, S.getSourceRange());
Alexey Bataeva63048e2015-03-23 06:18:07 +00001361 // Emit code for 'single' region along with 'copyprivate' clauses
Alexey Bataev5521d782015-04-24 04:21:15 +00001362 bool HasFirstprivates;
1363 auto &&CodeGen = [&S, &HasFirstprivates](CodeGenFunction &CGF) {
1364 CodeGenFunction::OMPPrivateScope SingleScope(CGF);
1365 HasFirstprivates = CGF.EmitOMPFirstprivateClause(S, SingleScope);
Alexey Bataev59c654a2015-04-27 03:48:52 +00001366 CGF.EmitOMPPrivateClause(S, SingleScope);
Alexey Bataev5521d782015-04-24 04:21:15 +00001367 (void)SingleScope.Privatize();
1368
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001369 CGF.EmitStmt(cast<CapturedStmt>(S.getAssociatedStmt())->getCapturedStmt());
1370 CGF.EnsureInsertPoint();
1371 };
1372 CGM.getOpenMPRuntime().emitSingleRegion(*this, CodeGen, S.getLocStart(),
Alexey Bataev420d45b2015-04-14 05:11:24 +00001373 CopyprivateVars, DestExprs, SrcExprs,
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001374 AssignmentOps);
Alexey Bataev5521d782015-04-24 04:21:15 +00001375 // Emit an implicit barrier at the end (to avoid data race on firstprivate
1376 // init or if no 'nowait' clause was specified and no 'copyprivate' clause).
1377 if ((!S.getSingleClause(OMPC_nowait) || HasFirstprivates) &&
1378 CopyprivateVars.empty()) {
1379 CGM.getOpenMPRuntime().emitBarrierCall(
1380 *this, S.getLocStart(),
1381 S.getSingleClause(OMPC_nowait) ? OMPD_unknown : OMPD_single);
Alexey Bataevf2685682015-03-30 04:30:22 +00001382 }
Alexey Bataevd1e40fb2014-06-26 12:05:45 +00001383}
1384
Alexey Bataev8d690652014-12-04 07:23:53 +00001385void CodeGenFunction::EmitOMPMasterDirective(const OMPMasterDirective &S) {
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001386 LexicalScope Scope(*this, S.getSourceRange());
1387 auto &&CodeGen = [&S](CodeGenFunction &CGF) {
1388 CGF.EmitStmt(cast<CapturedStmt>(S.getAssociatedStmt())->getCapturedStmt());
1389 CGF.EnsureInsertPoint();
1390 };
1391 CGM.getOpenMPRuntime().emitMasterRegion(*this, CodeGen, S.getLocStart());
Alexander Musman80c22892014-07-17 08:54:58 +00001392}
1393
Alexey Bataev3a3bf0b2014-09-22 10:01:53 +00001394void CodeGenFunction::EmitOMPCriticalDirective(const OMPCriticalDirective &S) {
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001395 LexicalScope Scope(*this, S.getSourceRange());
1396 auto &&CodeGen = [&S](CodeGenFunction &CGF) {
1397 CGF.EmitStmt(cast<CapturedStmt>(S.getAssociatedStmt())->getCapturedStmt());
1398 CGF.EnsureInsertPoint();
1399 };
Alexey Bataev3eff5f42015-02-25 08:32:46 +00001400 CGM.getOpenMPRuntime().emitCriticalRegion(
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001401 *this, S.getDirectiveName().getAsString(), CodeGen, S.getLocStart());
Alexander Musmand9ed09f2014-07-21 09:42:05 +00001402}
1403
Alexey Bataev671605e2015-04-13 05:28:11 +00001404void CodeGenFunction::EmitOMPParallelForDirective(
1405 const OMPParallelForDirective &S) {
1406 // Emit directive as a combined directive that consists of two implicit
1407 // directives: 'parallel' with 'for' directive.
1408 LexicalScope Scope(*this, S.getSourceRange());
Alexey Bataev040d5402015-05-12 08:35:28 +00001409 (void)emitScheduleClause(*this, S, /*OuterRegion=*/true);
Alexey Bataev671605e2015-04-13 05:28:11 +00001410 auto &&CodeGen = [&S](CodeGenFunction &CGF) {
1411 CGF.EmitOMPWorksharingLoop(S);
1412 // Emit implicit barrier at the end of parallel region, but this barrier
1413 // is at the end of 'for' directive, so emit it as the implicit barrier for
1414 // this 'for' directive.
1415 CGF.CGM.getOpenMPRuntime().emitBarrierCall(CGF, S.getLocStart(),
1416 OMPD_parallel);
1417 };
1418 emitCommonOMPParallelDirective(*this, S, CodeGen);
Alexey Bataev4acb8592014-07-07 13:01:15 +00001419}
1420
Alexander Musmane4e893b2014-09-23 09:33:00 +00001421void CodeGenFunction::EmitOMPParallelForSimdDirective(
1422 const OMPParallelForSimdDirective &) {
1423 llvm_unreachable("CodeGen for 'omp parallel for simd' is not supported yet.");
1424}
1425
Alexey Bataev84d0b3e2014-07-08 08:12:03 +00001426void CodeGenFunction::EmitOMPParallelSectionsDirective(
Alexey Bataev68adb7d2015-04-14 03:29:22 +00001427 const OMPParallelSectionsDirective &S) {
1428 // Emit directive as a combined directive that consists of two implicit
1429 // directives: 'parallel' with 'sections' directive.
1430 LexicalScope Scope(*this, S.getSourceRange());
1431 auto &&CodeGen = [&S](CodeGenFunction &CGF) {
1432 (void)emitSections(CGF, S);
1433 // Emit implicit barrier at the end of parallel region.
1434 CGF.CGM.getOpenMPRuntime().emitBarrierCall(CGF, S.getLocStart(),
1435 OMPD_parallel);
1436 };
1437 emitCommonOMPParallelDirective(*this, S, CodeGen);
Alexey Bataev84d0b3e2014-07-08 08:12:03 +00001438}
1439
Alexey Bataev62b63b12015-03-10 07:28:44 +00001440void CodeGenFunction::EmitOMPTaskDirective(const OMPTaskDirective &S) {
1441 // Emit outlined function for task construct.
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001442 LexicalScope Scope(*this, S.getSourceRange());
Alexey Bataev62b63b12015-03-10 07:28:44 +00001443 auto CS = cast<CapturedStmt>(S.getAssociatedStmt());
1444 auto CapturedStruct = GenerateCapturedStmtArgument(*CS);
1445 auto *I = CS->getCapturedDecl()->param_begin();
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001446 auto *PartId = std::next(I);
Alexey Bataev62b63b12015-03-10 07:28:44 +00001447 // The first function argument for tasks is a thread id, the second one is a
1448 // part id (0 for tied tasks, >=0 for untied task).
Alexey Bataev3ae88e22015-05-22 08:56:35 +00001449 llvm::DenseSet<const VarDecl *> EmittedAsPrivate;
1450 // Get list of private variables.
1451 llvm::SmallVector<const Expr *, 8> PrivateVars;
1452 llvm::SmallVector<const Expr *, 8> PrivateCopies;
1453 for (auto &&I = S.getClausesOfKind(OMPC_private); I; ++I) {
1454 auto *C = cast<OMPPrivateClause>(*I);
1455 auto IRef = C->varlist_begin();
1456 for (auto *IInit : C->private_copies()) {
1457 auto *OrigVD = cast<VarDecl>(cast<DeclRefExpr>(*IRef)->getDecl());
1458 if (EmittedAsPrivate.insert(OrigVD->getCanonicalDecl()).second) {
1459 PrivateVars.push_back(*IRef);
1460 PrivateCopies.push_back(IInit);
1461 }
1462 ++IRef;
1463 }
1464 }
1465 EmittedAsPrivate.clear();
1466 // Get list of firstprivate variables.
1467 llvm::SmallVector<const Expr *, 8> FirstprivateVars;
1468 llvm::SmallVector<const Expr *, 8> FirstprivateCopies;
1469 llvm::SmallVector<const Expr *, 8> FirstprivateInits;
1470 for (auto &&I = S.getClausesOfKind(OMPC_firstprivate); I; ++I) {
1471 auto *C = cast<OMPFirstprivateClause>(*I);
1472 auto IRef = C->varlist_begin();
1473 auto IElemInitRef = C->inits().begin();
1474 for (auto *IInit : C->private_copies()) {
1475 auto *OrigVD = cast<VarDecl>(cast<DeclRefExpr>(*IRef)->getDecl());
1476 if (EmittedAsPrivate.insert(OrigVD->getCanonicalDecl()).second) {
1477 FirstprivateVars.push_back(*IRef);
1478 FirstprivateCopies.push_back(IInit);
1479 FirstprivateInits.push_back(*IElemInitRef);
1480 }
1481 ++IRef, ++IElemInitRef;
1482 }
1483 }
1484 auto &&CodeGen = [PartId, &S, &PrivateVars, &FirstprivateVars](
1485 CodeGenFunction &CGF) {
1486 // Set proper addresses for generated private copies.
1487 auto *CS = cast<CapturedStmt>(S.getAssociatedStmt());
1488 OMPPrivateScope Scope(CGF);
1489 if (!PrivateVars.empty() || !FirstprivateVars.empty()) {
1490 auto *CopyFn = CGF.Builder.CreateAlignedLoad(
1491 CGF.GetAddrOfLocalVar(CS->getCapturedDecl()->getParam(3)),
1492 CGF.PointerAlignInBytes);
1493 auto *PrivatesPtr = CGF.Builder.CreateAlignedLoad(
1494 CGF.GetAddrOfLocalVar(CS->getCapturedDecl()->getParam(2)),
1495 CGF.PointerAlignInBytes);
1496 // Map privates.
1497 llvm::SmallVector<std::pair<const VarDecl *, llvm::Value *>, 16>
1498 PrivatePtrs;
1499 llvm::SmallVector<llvm::Value *, 16> CallArgs;
1500 CallArgs.push_back(PrivatesPtr);
1501 for (auto *E : PrivateVars) {
1502 auto *VD = cast<VarDecl>(cast<DeclRefExpr>(E)->getDecl());
1503 auto *PrivatePtr =
1504 CGF.CreateMemTemp(CGF.getContext().getPointerType(E->getType()));
1505 PrivatePtrs.push_back(std::make_pair(VD, PrivatePtr));
1506 CallArgs.push_back(PrivatePtr);
1507 }
1508 for (auto *E : FirstprivateVars) {
1509 auto *VD = cast<VarDecl>(cast<DeclRefExpr>(E)->getDecl());
1510 auto *PrivatePtr =
1511 CGF.CreateMemTemp(CGF.getContext().getPointerType(E->getType()));
1512 PrivatePtrs.push_back(std::make_pair(VD, PrivatePtr));
1513 CallArgs.push_back(PrivatePtr);
1514 }
1515 CGF.EmitRuntimeCall(CopyFn, CallArgs);
1516 for (auto &&Pair : PrivatePtrs) {
1517 auto *Replacement =
1518 CGF.Builder.CreateAlignedLoad(Pair.second, CGF.PointerAlignInBytes);
1519 Scope.addPrivate(Pair.first, [Replacement]() { return Replacement; });
1520 }
1521 }
1522 (void)Scope.Privatize();
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001523 if (*PartId) {
1524 // TODO: emit code for untied tasks.
1525 }
Alexey Bataev3ae88e22015-05-22 08:56:35 +00001526 CGF.EmitStmt(CS->getCapturedStmt());
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001527 };
Alexey Bataev62b63b12015-03-10 07:28:44 +00001528 auto OutlinedFn =
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00001529 CGM.getOpenMPRuntime().emitTaskOutlinedFunction(S, *I, CodeGen);
Alexey Bataev62b63b12015-03-10 07:28:44 +00001530 // Check if we should emit tied or untied task.
1531 bool Tied = !S.getSingleClause(OMPC_untied);
1532 // Check if the task is final
1533 llvm::PointerIntPair<llvm::Value *, 1, bool> Final;
1534 if (auto *Clause = S.getSingleClause(OMPC_final)) {
1535 // If the condition constant folds and can be elided, try to avoid emitting
1536 // the condition and the dead arm of the if/else.
1537 auto *Cond = cast<OMPFinalClause>(Clause)->getCondition();
1538 bool CondConstant;
1539 if (ConstantFoldsToSimpleInteger(Cond, CondConstant))
1540 Final.setInt(CondConstant);
1541 else
1542 Final.setPointer(EvaluateExprAsBool(Cond));
1543 } else {
1544 // By default the task is not final.
1545 Final.setInt(/*IntVal=*/false);
1546 }
1547 auto SharedsTy = getContext().getRecordType(CS->getCapturedRecordDecl());
Alexey Bataev1d677132015-04-22 13:57:31 +00001548 const Expr *IfCond = nullptr;
1549 if (auto C = S.getSingleClause(OMPC_if)) {
1550 IfCond = cast<OMPIfClause>(C)->getCondition();
1551 }
Alexey Bataev9e034042015-05-05 04:05:12 +00001552 CGM.getOpenMPRuntime().emitTaskCall(
1553 *this, S.getLocStart(), S, Tied, Final, OutlinedFn, SharedsTy,
Alexey Bataev3ae88e22015-05-22 08:56:35 +00001554 CapturedStruct, IfCond, PrivateVars, PrivateCopies, FirstprivateVars,
Alexey Bataev9e034042015-05-05 04:05:12 +00001555 FirstprivateCopies, FirstprivateInits);
Alexey Bataev9c2e8ee2014-07-11 11:25:16 +00001556}
1557
Alexey Bataev9f797f32015-02-05 05:57:51 +00001558void CodeGenFunction::EmitOMPTaskyieldDirective(
1559 const OMPTaskyieldDirective &S) {
Alexey Bataev3eff5f42015-02-25 08:32:46 +00001560 CGM.getOpenMPRuntime().emitTaskyieldCall(*this, S.getLocStart());
Alexey Bataev68446b72014-07-18 07:47:19 +00001561}
1562
Alexey Bataev8f7c1b02014-12-05 04:09:23 +00001563void CodeGenFunction::EmitOMPBarrierDirective(const OMPBarrierDirective &S) {
Alexey Bataevf2685682015-03-30 04:30:22 +00001564 CGM.getOpenMPRuntime().emitBarrierCall(*this, S.getLocStart(), OMPD_barrier);
Alexey Bataev4d1dfea2014-07-18 09:11:51 +00001565}
1566
Alexey Bataev8b8e2022015-04-27 05:22:09 +00001567void CodeGenFunction::EmitOMPTaskwaitDirective(const OMPTaskwaitDirective &S) {
1568 CGM.getOpenMPRuntime().emitTaskwaitCall(*this, S.getLocStart());
Alexey Bataev2df347a2014-07-18 10:17:07 +00001569}
1570
Alexey Bataevcc37cc12014-11-20 04:34:54 +00001571void CodeGenFunction::EmitOMPFlushDirective(const OMPFlushDirective &S) {
Alexey Bataev3eff5f42015-02-25 08:32:46 +00001572 CGM.getOpenMPRuntime().emitFlush(*this, [&]() -> ArrayRef<const Expr *> {
1573 if (auto C = S.getSingleClause(/*K*/ OMPC_flush)) {
1574 auto FlushClause = cast<OMPFlushClause>(C);
1575 return llvm::makeArrayRef(FlushClause->varlist_begin(),
1576 FlushClause->varlist_end());
1577 }
1578 return llvm::None;
1579 }(), S.getLocStart());
Alexey Bataev6125da92014-07-21 11:26:11 +00001580}
1581
Alexey Bataev98eb6e32015-04-22 11:15:40 +00001582void CodeGenFunction::EmitOMPOrderedDirective(const OMPOrderedDirective &S) {
1583 LexicalScope Scope(*this, S.getSourceRange());
1584 auto &&CodeGen = [&S](CodeGenFunction &CGF) {
1585 CGF.EmitStmt(cast<CapturedStmt>(S.getAssociatedStmt())->getCapturedStmt());
1586 CGF.EnsureInsertPoint();
1587 };
1588 CGM.getOpenMPRuntime().emitOrderedRegion(*this, CodeGen, S.getLocStart());
Alexey Bataev9fb6e642014-07-22 06:45:04 +00001589}
1590
Alexey Bataevb57056f2015-01-22 06:17:56 +00001591static llvm::Value *convertToScalarValue(CodeGenFunction &CGF, RValue Val,
1592 QualType SrcType, QualType DestType) {
1593 assert(CGF.hasScalarEvaluationKind(DestType) &&
1594 "DestType must have scalar evaluation kind.");
1595 assert(!Val.isAggregate() && "Must be a scalar or complex.");
1596 return Val.isScalar()
1597 ? CGF.EmitScalarConversion(Val.getScalarVal(), SrcType, DestType)
1598 : CGF.EmitComplexToScalarConversion(Val.getComplexVal(), SrcType,
1599 DestType);
1600}
1601
1602static CodeGenFunction::ComplexPairTy
1603convertToComplexValue(CodeGenFunction &CGF, RValue Val, QualType SrcType,
1604 QualType DestType) {
1605 assert(CGF.getEvaluationKind(DestType) == TEK_Complex &&
1606 "DestType must have complex evaluation kind.");
1607 CodeGenFunction::ComplexPairTy ComplexVal;
1608 if (Val.isScalar()) {
1609 // Convert the input element to the element type of the complex.
1610 auto DestElementType = DestType->castAs<ComplexType>()->getElementType();
1611 auto ScalarVal =
1612 CGF.EmitScalarConversion(Val.getScalarVal(), SrcType, DestElementType);
1613 ComplexVal = CodeGenFunction::ComplexPairTy(
1614 ScalarVal, llvm::Constant::getNullValue(ScalarVal->getType()));
1615 } else {
1616 assert(Val.isComplex() && "Must be a scalar or complex.");
1617 auto SrcElementType = SrcType->castAs<ComplexType>()->getElementType();
1618 auto DestElementType = DestType->castAs<ComplexType>()->getElementType();
1619 ComplexVal.first = CGF.EmitScalarConversion(
1620 Val.getComplexVal().first, SrcElementType, DestElementType);
1621 ComplexVal.second = CGF.EmitScalarConversion(
1622 Val.getComplexVal().second, SrcElementType, DestElementType);
1623 }
1624 return ComplexVal;
1625}
1626
Alexey Bataev5e018f92015-04-23 06:35:10 +00001627static void emitSimpleAtomicStore(CodeGenFunction &CGF, bool IsSeqCst,
1628 LValue LVal, RValue RVal) {
1629 if (LVal.isGlobalReg()) {
1630 CGF.EmitStoreThroughGlobalRegLValue(RVal, LVal);
1631 } else {
1632 CGF.EmitAtomicStore(RVal, LVal, IsSeqCst ? llvm::SequentiallyConsistent
1633 : llvm::Monotonic,
1634 LVal.isVolatile(), /*IsInit=*/false);
1635 }
1636}
1637
1638static void emitSimpleStore(CodeGenFunction &CGF, LValue LVal, RValue RVal,
1639 QualType RValTy) {
1640 switch (CGF.getEvaluationKind(LVal.getType())) {
1641 case TEK_Scalar:
1642 CGF.EmitStoreThroughLValue(
1643 RValue::get(convertToScalarValue(CGF, RVal, RValTy, LVal.getType())),
1644 LVal);
1645 break;
1646 case TEK_Complex:
1647 CGF.EmitStoreOfComplex(
1648 convertToComplexValue(CGF, RVal, RValTy, LVal.getType()), LVal,
1649 /*isInit=*/false);
1650 break;
1651 case TEK_Aggregate:
1652 llvm_unreachable("Must be a scalar or complex.");
1653 }
1654}
1655
Alexey Bataevb57056f2015-01-22 06:17:56 +00001656static void EmitOMPAtomicReadExpr(CodeGenFunction &CGF, bool IsSeqCst,
1657 const Expr *X, const Expr *V,
1658 SourceLocation Loc) {
1659 // v = x;
1660 assert(V->isLValue() && "V of 'omp atomic read' is not lvalue");
1661 assert(X->isLValue() && "X of 'omp atomic read' is not lvalue");
1662 LValue XLValue = CGF.EmitLValue(X);
1663 LValue VLValue = CGF.EmitLValue(V);
David Majnemera5b195a2015-02-14 01:35:12 +00001664 RValue Res = XLValue.isGlobalReg()
1665 ? CGF.EmitLoadOfLValue(XLValue, Loc)
1666 : CGF.EmitAtomicLoad(XLValue, Loc,
1667 IsSeqCst ? llvm::SequentiallyConsistent
Alexey Bataevb8329262015-02-27 06:33:30 +00001668 : llvm::Monotonic,
1669 XLValue.isVolatile());
Alexey Bataevb57056f2015-01-22 06:17:56 +00001670 // OpenMP, 2.12.6, atomic Construct
1671 // Any atomic construct with a seq_cst clause forces the atomically
1672 // performed operation to include an implicit flush operation without a
1673 // list.
1674 if (IsSeqCst)
Alexey Bataev3eff5f42015-02-25 08:32:46 +00001675 CGF.CGM.getOpenMPRuntime().emitFlush(CGF, llvm::None, Loc);
Alexey Bataev5e018f92015-04-23 06:35:10 +00001676 emitSimpleStore(CGF,VLValue, Res, X->getType().getNonReferenceType());
Alexey Bataevb57056f2015-01-22 06:17:56 +00001677}
1678
Alexey Bataevb8329262015-02-27 06:33:30 +00001679static void EmitOMPAtomicWriteExpr(CodeGenFunction &CGF, bool IsSeqCst,
1680 const Expr *X, const Expr *E,
1681 SourceLocation Loc) {
1682 // x = expr;
1683 assert(X->isLValue() && "X of 'omp atomic write' is not lvalue");
Alexey Bataev5e018f92015-04-23 06:35:10 +00001684 emitSimpleAtomicStore(CGF, IsSeqCst, CGF.EmitLValue(X), CGF.EmitAnyExpr(E));
Alexey Bataevb8329262015-02-27 06:33:30 +00001685 // OpenMP, 2.12.6, atomic Construct
1686 // Any atomic construct with a seq_cst clause forces the atomically
1687 // performed operation to include an implicit flush operation without a
1688 // list.
1689 if (IsSeqCst)
1690 CGF.CGM.getOpenMPRuntime().emitFlush(CGF, llvm::None, Loc);
1691}
1692
Benjamin Kramer439ee9d2015-05-01 13:59:53 +00001693static std::pair<bool, RValue> emitOMPAtomicRMW(CodeGenFunction &CGF, LValue X,
1694 RValue Update,
1695 BinaryOperatorKind BO,
1696 llvm::AtomicOrdering AO,
1697 bool IsXLHSInRHSPart) {
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001698 auto &Context = CGF.CGM.getContext();
1699 // Allow atomicrmw only if 'x' and 'update' are integer values, lvalue for 'x'
Alexey Bataevb4505a72015-03-30 05:20:59 +00001700 // expression is simple and atomic is allowed for the given type for the
1701 // target platform.
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001702 if (BO == BO_Comma || !Update.isScalar() ||
Alexey Bataev9d541a72015-05-08 11:47:16 +00001703 !Update.getScalarVal()->getType()->isIntegerTy() ||
1704 !X.isSimple() || (!isa<llvm::ConstantInt>(Update.getScalarVal()) &&
1705 (Update.getScalarVal()->getType() !=
1706 X.getAddress()->getType()->getPointerElementType())) ||
1707 !X.getAddress()->getType()->getPointerElementType()->isIntegerTy() ||
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001708 !Context.getTargetInfo().hasBuiltinAtomic(
1709 Context.getTypeSize(X.getType()), Context.toBits(X.getAlignment())))
Alexey Bataev5e018f92015-04-23 06:35:10 +00001710 return std::make_pair(false, RValue::get(nullptr));
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001711
1712 llvm::AtomicRMWInst::BinOp RMWOp;
1713 switch (BO) {
1714 case BO_Add:
1715 RMWOp = llvm::AtomicRMWInst::Add;
1716 break;
1717 case BO_Sub:
1718 if (!IsXLHSInRHSPart)
Alexey Bataev5e018f92015-04-23 06:35:10 +00001719 return std::make_pair(false, RValue::get(nullptr));
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001720 RMWOp = llvm::AtomicRMWInst::Sub;
1721 break;
1722 case BO_And:
1723 RMWOp = llvm::AtomicRMWInst::And;
1724 break;
1725 case BO_Or:
1726 RMWOp = llvm::AtomicRMWInst::Or;
1727 break;
1728 case BO_Xor:
1729 RMWOp = llvm::AtomicRMWInst::Xor;
1730 break;
1731 case BO_LT:
1732 RMWOp = X.getType()->hasSignedIntegerRepresentation()
1733 ? (IsXLHSInRHSPart ? llvm::AtomicRMWInst::Min
1734 : llvm::AtomicRMWInst::Max)
1735 : (IsXLHSInRHSPart ? llvm::AtomicRMWInst::UMin
1736 : llvm::AtomicRMWInst::UMax);
1737 break;
1738 case BO_GT:
1739 RMWOp = X.getType()->hasSignedIntegerRepresentation()
1740 ? (IsXLHSInRHSPart ? llvm::AtomicRMWInst::Max
1741 : llvm::AtomicRMWInst::Min)
1742 : (IsXLHSInRHSPart ? llvm::AtomicRMWInst::UMax
1743 : llvm::AtomicRMWInst::UMin);
1744 break;
Alexey Bataev5e018f92015-04-23 06:35:10 +00001745 case BO_Assign:
1746 RMWOp = llvm::AtomicRMWInst::Xchg;
1747 break;
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001748 case BO_Mul:
1749 case BO_Div:
1750 case BO_Rem:
1751 case BO_Shl:
1752 case BO_Shr:
1753 case BO_LAnd:
1754 case BO_LOr:
Alexey Bataev5e018f92015-04-23 06:35:10 +00001755 return std::make_pair(false, RValue::get(nullptr));
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001756 case BO_PtrMemD:
1757 case BO_PtrMemI:
1758 case BO_LE:
1759 case BO_GE:
1760 case BO_EQ:
1761 case BO_NE:
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001762 case BO_AddAssign:
1763 case BO_SubAssign:
1764 case BO_AndAssign:
1765 case BO_OrAssign:
1766 case BO_XorAssign:
1767 case BO_MulAssign:
1768 case BO_DivAssign:
1769 case BO_RemAssign:
1770 case BO_ShlAssign:
1771 case BO_ShrAssign:
1772 case BO_Comma:
1773 llvm_unreachable("Unsupported atomic update operation");
1774 }
1775 auto *UpdateVal = Update.getScalarVal();
1776 if (auto *IC = dyn_cast<llvm::ConstantInt>(UpdateVal)) {
1777 UpdateVal = CGF.Builder.CreateIntCast(
1778 IC, X.getAddress()->getType()->getPointerElementType(),
1779 X.getType()->hasSignedIntegerRepresentation());
1780 }
Alexey Bataev5e018f92015-04-23 06:35:10 +00001781 auto *Res = CGF.Builder.CreateAtomicRMW(RMWOp, X.getAddress(), UpdateVal, AO);
1782 return std::make_pair(true, RValue::get(Res));
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001783}
1784
Alexey Bataev5e018f92015-04-23 06:35:10 +00001785std::pair<bool, RValue> CodeGenFunction::EmitOMPAtomicSimpleUpdateExpr(
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001786 LValue X, RValue E, BinaryOperatorKind BO, bool IsXLHSInRHSPart,
1787 llvm::AtomicOrdering AO, SourceLocation Loc,
1788 const llvm::function_ref<RValue(RValue)> &CommonGen) {
1789 // Update expressions are allowed to have the following forms:
1790 // x binop= expr; -> xrval + expr;
1791 // x++, ++x -> xrval + 1;
1792 // x--, --x -> xrval - 1;
1793 // x = x binop expr; -> xrval binop expr
1794 // x = expr Op x; - > expr binop xrval;
Alexey Bataev5e018f92015-04-23 06:35:10 +00001795 auto Res = emitOMPAtomicRMW(*this, X, E, BO, AO, IsXLHSInRHSPart);
1796 if (!Res.first) {
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001797 if (X.isGlobalReg()) {
1798 // Emit an update expression: 'xrval' binop 'expr' or 'expr' binop
1799 // 'xrval'.
1800 EmitStoreThroughLValue(CommonGen(EmitLoadOfLValue(X, Loc)), X);
1801 } else {
1802 // Perform compare-and-swap procedure.
1803 EmitAtomicUpdate(X, AO, CommonGen, X.getType().isVolatileQualified());
Alexey Bataevb4505a72015-03-30 05:20:59 +00001804 }
1805 }
Alexey Bataev5e018f92015-04-23 06:35:10 +00001806 return Res;
Alexey Bataevb4505a72015-03-30 05:20:59 +00001807}
1808
1809static void EmitOMPAtomicUpdateExpr(CodeGenFunction &CGF, bool IsSeqCst,
1810 const Expr *X, const Expr *E,
1811 const Expr *UE, bool IsXLHSInRHSPart,
1812 SourceLocation Loc) {
1813 assert(isa<BinaryOperator>(UE->IgnoreImpCasts()) &&
1814 "Update expr in 'atomic update' must be a binary operator.");
1815 auto *BOUE = cast<BinaryOperator>(UE->IgnoreImpCasts());
1816 // Update expressions are allowed to have the following forms:
1817 // x binop= expr; -> xrval + expr;
1818 // x++, ++x -> xrval + 1;
1819 // x--, --x -> xrval - 1;
1820 // x = x binop expr; -> xrval binop expr
1821 // x = expr Op x; - > expr binop xrval;
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001822 assert(X->isLValue() && "X of 'omp atomic update' is not lvalue");
Alexey Bataevb4505a72015-03-30 05:20:59 +00001823 LValue XLValue = CGF.EmitLValue(X);
1824 RValue ExprRValue = CGF.EmitAnyExpr(E);
Alexey Bataevb4505a72015-03-30 05:20:59 +00001825 auto AO = IsSeqCst ? llvm::SequentiallyConsistent : llvm::Monotonic;
Alexey Bataev794ba0d2015-04-10 10:43:45 +00001826 auto *LHS = cast<OpaqueValueExpr>(BOUE->getLHS()->IgnoreImpCasts());
1827 auto *RHS = cast<OpaqueValueExpr>(BOUE->getRHS()->IgnoreImpCasts());
1828 auto *XRValExpr = IsXLHSInRHSPart ? LHS : RHS;
1829 auto *ERValExpr = IsXLHSInRHSPart ? RHS : LHS;
1830 auto Gen =
1831 [&CGF, UE, ExprRValue, XRValExpr, ERValExpr](RValue XRValue) -> RValue {
1832 CodeGenFunction::OpaqueValueMapping MapExpr(CGF, ERValExpr, ExprRValue);
1833 CodeGenFunction::OpaqueValueMapping MapX(CGF, XRValExpr, XRValue);
1834 return CGF.EmitAnyExpr(UE);
1835 };
Alexey Bataev5e018f92015-04-23 06:35:10 +00001836 (void)CGF.EmitOMPAtomicSimpleUpdateExpr(
1837 XLValue, ExprRValue, BOUE->getOpcode(), IsXLHSInRHSPart, AO, Loc, Gen);
1838 // OpenMP, 2.12.6, atomic Construct
1839 // Any atomic construct with a seq_cst clause forces the atomically
1840 // performed operation to include an implicit flush operation without a
1841 // list.
1842 if (IsSeqCst)
1843 CGF.CGM.getOpenMPRuntime().emitFlush(CGF, llvm::None, Loc);
1844}
1845
1846static RValue convertToType(CodeGenFunction &CGF, RValue Value,
1847 QualType SourceType, QualType ResType) {
1848 switch (CGF.getEvaluationKind(ResType)) {
1849 case TEK_Scalar:
1850 return RValue::get(convertToScalarValue(CGF, Value, SourceType, ResType));
1851 case TEK_Complex: {
1852 auto Res = convertToComplexValue(CGF, Value, SourceType, ResType);
1853 return RValue::getComplex(Res.first, Res.second);
1854 }
1855 case TEK_Aggregate:
1856 break;
1857 }
1858 llvm_unreachable("Must be a scalar or complex.");
1859}
1860
1861static void EmitOMPAtomicCaptureExpr(CodeGenFunction &CGF, bool IsSeqCst,
1862 bool IsPostfixUpdate, const Expr *V,
1863 const Expr *X, const Expr *E,
1864 const Expr *UE, bool IsXLHSInRHSPart,
1865 SourceLocation Loc) {
1866 assert(X->isLValue() && "X of 'omp atomic capture' is not lvalue");
1867 assert(V->isLValue() && "V of 'omp atomic capture' is not lvalue");
1868 RValue NewVVal;
1869 LValue VLValue = CGF.EmitLValue(V);
1870 LValue XLValue = CGF.EmitLValue(X);
1871 RValue ExprRValue = CGF.EmitAnyExpr(E);
1872 auto AO = IsSeqCst ? llvm::SequentiallyConsistent : llvm::Monotonic;
1873 QualType NewVValType;
1874 if (UE) {
1875 // 'x' is updated with some additional value.
1876 assert(isa<BinaryOperator>(UE->IgnoreImpCasts()) &&
1877 "Update expr in 'atomic capture' must be a binary operator.");
1878 auto *BOUE = cast<BinaryOperator>(UE->IgnoreImpCasts());
1879 // Update expressions are allowed to have the following forms:
1880 // x binop= expr; -> xrval + expr;
1881 // x++, ++x -> xrval + 1;
1882 // x--, --x -> xrval - 1;
1883 // x = x binop expr; -> xrval binop expr
1884 // x = expr Op x; - > expr binop xrval;
1885 auto *LHS = cast<OpaqueValueExpr>(BOUE->getLHS()->IgnoreImpCasts());
1886 auto *RHS = cast<OpaqueValueExpr>(BOUE->getRHS()->IgnoreImpCasts());
1887 auto *XRValExpr = IsXLHSInRHSPart ? LHS : RHS;
1888 NewVValType = XRValExpr->getType();
1889 auto *ERValExpr = IsXLHSInRHSPart ? RHS : LHS;
1890 auto &&Gen = [&CGF, &NewVVal, UE, ExprRValue, XRValExpr, ERValExpr,
1891 IsSeqCst, IsPostfixUpdate](RValue XRValue) -> RValue {
1892 CodeGenFunction::OpaqueValueMapping MapExpr(CGF, ERValExpr, ExprRValue);
1893 CodeGenFunction::OpaqueValueMapping MapX(CGF, XRValExpr, XRValue);
1894 RValue Res = CGF.EmitAnyExpr(UE);
1895 NewVVal = IsPostfixUpdate ? XRValue : Res;
1896 return Res;
1897 };
1898 auto Res = CGF.EmitOMPAtomicSimpleUpdateExpr(
1899 XLValue, ExprRValue, BOUE->getOpcode(), IsXLHSInRHSPart, AO, Loc, Gen);
1900 if (Res.first) {
1901 // 'atomicrmw' instruction was generated.
1902 if (IsPostfixUpdate) {
1903 // Use old value from 'atomicrmw'.
1904 NewVVal = Res.second;
1905 } else {
1906 // 'atomicrmw' does not provide new value, so evaluate it using old
1907 // value of 'x'.
1908 CodeGenFunction::OpaqueValueMapping MapExpr(CGF, ERValExpr, ExprRValue);
1909 CodeGenFunction::OpaqueValueMapping MapX(CGF, XRValExpr, Res.second);
1910 NewVVal = CGF.EmitAnyExpr(UE);
1911 }
1912 }
1913 } else {
1914 // 'x' is simply rewritten with some 'expr'.
1915 NewVValType = X->getType().getNonReferenceType();
1916 ExprRValue = convertToType(CGF, ExprRValue, E->getType(),
1917 X->getType().getNonReferenceType());
1918 auto &&Gen = [&CGF, &NewVVal, ExprRValue](RValue XRValue) -> RValue {
1919 NewVVal = XRValue;
1920 return ExprRValue;
1921 };
1922 // Try to perform atomicrmw xchg, otherwise simple exchange.
1923 auto Res = CGF.EmitOMPAtomicSimpleUpdateExpr(
1924 XLValue, ExprRValue, /*BO=*/BO_Assign, /*IsXLHSInRHSPart=*/false, AO,
1925 Loc, Gen);
1926 if (Res.first) {
1927 // 'atomicrmw' instruction was generated.
1928 NewVVal = IsPostfixUpdate ? Res.second : ExprRValue;
1929 }
1930 }
1931 // Emit post-update store to 'v' of old/new 'x' value.
1932 emitSimpleStore(CGF, VLValue, NewVVal, NewVValType);
Alexey Bataevb4505a72015-03-30 05:20:59 +00001933 // OpenMP, 2.12.6, atomic Construct
1934 // Any atomic construct with a seq_cst clause forces the atomically
1935 // performed operation to include an implicit flush operation without a
1936 // list.
1937 if (IsSeqCst)
1938 CGF.CGM.getOpenMPRuntime().emitFlush(CGF, llvm::None, Loc);
1939}
1940
Alexey Bataevb57056f2015-01-22 06:17:56 +00001941static void EmitOMPAtomicExpr(CodeGenFunction &CGF, OpenMPClauseKind Kind,
Alexey Bataev5e018f92015-04-23 06:35:10 +00001942 bool IsSeqCst, bool IsPostfixUpdate,
1943 const Expr *X, const Expr *V, const Expr *E,
1944 const Expr *UE, bool IsXLHSInRHSPart,
1945 SourceLocation Loc) {
Alexey Bataevb57056f2015-01-22 06:17:56 +00001946 switch (Kind) {
1947 case OMPC_read:
1948 EmitOMPAtomicReadExpr(CGF, IsSeqCst, X, V, Loc);
1949 break;
1950 case OMPC_write:
Alexey Bataevb8329262015-02-27 06:33:30 +00001951 EmitOMPAtomicWriteExpr(CGF, IsSeqCst, X, E, Loc);
1952 break;
Alexey Bataevb4505a72015-03-30 05:20:59 +00001953 case OMPC_unknown:
Alexey Bataevb57056f2015-01-22 06:17:56 +00001954 case OMPC_update:
Alexey Bataevb4505a72015-03-30 05:20:59 +00001955 EmitOMPAtomicUpdateExpr(CGF, IsSeqCst, X, E, UE, IsXLHSInRHSPart, Loc);
1956 break;
Alexey Bataevb57056f2015-01-22 06:17:56 +00001957 case OMPC_capture:
Alexey Bataev5e018f92015-04-23 06:35:10 +00001958 EmitOMPAtomicCaptureExpr(CGF, IsSeqCst, IsPostfixUpdate, V, X, E, UE,
1959 IsXLHSInRHSPart, Loc);
1960 break;
Alexey Bataevb57056f2015-01-22 06:17:56 +00001961 case OMPC_if:
1962 case OMPC_final:
1963 case OMPC_num_threads:
1964 case OMPC_private:
1965 case OMPC_firstprivate:
1966 case OMPC_lastprivate:
1967 case OMPC_reduction:
1968 case OMPC_safelen:
1969 case OMPC_collapse:
1970 case OMPC_default:
1971 case OMPC_seq_cst:
1972 case OMPC_shared:
1973 case OMPC_linear:
1974 case OMPC_aligned:
1975 case OMPC_copyin:
1976 case OMPC_copyprivate:
1977 case OMPC_flush:
1978 case OMPC_proc_bind:
1979 case OMPC_schedule:
1980 case OMPC_ordered:
1981 case OMPC_nowait:
1982 case OMPC_untied:
1983 case OMPC_threadprivate:
1984 case OMPC_mergeable:
Alexey Bataevb57056f2015-01-22 06:17:56 +00001985 llvm_unreachable("Clause is not allowed in 'omp atomic'.");
1986 }
1987}
1988
1989void CodeGenFunction::EmitOMPAtomicDirective(const OMPAtomicDirective &S) {
1990 bool IsSeqCst = S.getSingleClause(/*K=*/OMPC_seq_cst);
1991 OpenMPClauseKind Kind = OMPC_unknown;
1992 for (auto *C : S.clauses()) {
1993 // Find first clause (skip seq_cst clause, if it is first).
1994 if (C->getClauseKind() != OMPC_seq_cst) {
1995 Kind = C->getClauseKind();
1996 break;
1997 }
1998 }
Alexey Bataev10fec572015-03-11 04:48:56 +00001999
2000 const auto *CS =
2001 S.getAssociatedStmt()->IgnoreContainers(/*IgnoreCaptured=*/true);
Alexey Bataev5e018f92015-04-23 06:35:10 +00002002 if (const auto *EWC = dyn_cast<ExprWithCleanups>(CS)) {
Alexey Bataev10fec572015-03-11 04:48:56 +00002003 enterFullExpression(EWC);
Alexey Bataev5e018f92015-04-23 06:35:10 +00002004 }
2005 // Processing for statements under 'atomic capture'.
2006 if (const auto *Compound = dyn_cast<CompoundStmt>(CS)) {
2007 for (const auto *C : Compound->body()) {
2008 if (const auto *EWC = dyn_cast<ExprWithCleanups>(C)) {
2009 enterFullExpression(EWC);
2010 }
2011 }
2012 }
Alexey Bataev10fec572015-03-11 04:48:56 +00002013
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00002014 LexicalScope Scope(*this, S.getSourceRange());
2015 auto &&CodeGen = [&S, Kind, IsSeqCst](CodeGenFunction &CGF) {
Alexey Bataev5e018f92015-04-23 06:35:10 +00002016 EmitOMPAtomicExpr(CGF, Kind, IsSeqCst, S.isPostfixUpdate(), S.getX(),
2017 S.getV(), S.getExpr(), S.getUpdateExpr(),
2018 S.isXLHSInRHSPart(), S.getLocStart());
Alexey Bataev6f1ffc02015-04-10 04:50:10 +00002019 };
2020 CGM.getOpenMPRuntime().emitInlinedDirective(*this, CodeGen);
Alexey Bataev0162e452014-07-22 10:10:35 +00002021}
2022
Alexey Bataev0bd520b2014-09-19 08:19:49 +00002023void CodeGenFunction::EmitOMPTargetDirective(const OMPTargetDirective &) {
2024 llvm_unreachable("CodeGen for 'omp target' is not supported yet.");
2025}
2026
Alexey Bataev13314bf2014-10-09 04:18:56 +00002027void CodeGenFunction::EmitOMPTeamsDirective(const OMPTeamsDirective &) {
2028 llvm_unreachable("CodeGen for 'omp teams' is not supported yet.");
2029}