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[llvm-project.git] / clang / lib / CodeGen / CGOpenMPRuntime.h
blob0c4ad46e881b9c50ae9851437e7c8406f035f214
1 //===----- CGOpenMPRuntime.h - Interface to OpenMP Runtimes -----*- C++ -*-===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This provides a class for OpenMP runtime code generation.
11 //===----------------------------------------------------------------------===//
13 #ifndef LLVM_CLANG_LIB_CODEGEN_CGOPENMPRUNTIME_H
14 #define LLVM_CLANG_LIB_CODEGEN_CGOPENMPRUNTIME_H
16 #include "CGValue.h"
17 #include "clang/AST/DeclOpenMP.h"
18 #include "clang/AST/GlobalDecl.h"
19 #include "clang/AST/Type.h"
20 #include "clang/Basic/OpenMPKinds.h"
21 #include "clang/Basic/SourceLocation.h"
22 #include "llvm/ADT/DenseMap.h"
23 #include "llvm/ADT/PointerIntPair.h"
24 #include "llvm/ADT/SmallPtrSet.h"
25 #include "llvm/ADT/StringMap.h"
26 #include "llvm/ADT/StringSet.h"
27 #include "llvm/Frontend/OpenMP/OMPConstants.h"
28 #include "llvm/Frontend/OpenMP/OMPIRBuilder.h"
29 #include "llvm/IR/Function.h"
30 #include "llvm/IR/ValueHandle.h"
31 #include "llvm/Support/AtomicOrdering.h"
33 namespace llvm {
34 class ArrayType;
35 class Constant;
36 class FunctionType;
37 class GlobalVariable;
38 class Type;
39 class Value;
40 class OpenMPIRBuilder;
41 } // namespace llvm
43 namespace clang {
44 class Expr;
45 class OMPDependClause;
46 class OMPExecutableDirective;
47 class OMPLoopDirective;
48 class VarDecl;
49 class OMPDeclareReductionDecl;
51 namespace CodeGen {
52 class Address;
53 class CodeGenFunction;
54 class CodeGenModule;
56 /// A basic class for pre|post-action for advanced codegen sequence for OpenMP
57 /// region.
58 class PrePostActionTy {
59 public:
60 explicit PrePostActionTy() {}
61 virtual void Enter(CodeGenFunction &CGF) {}
62 virtual void Exit(CodeGenFunction &CGF) {}
63 virtual ~PrePostActionTy() {}
66 /// Class provides a way to call simple version of codegen for OpenMP region, or
67 /// an advanced with possible pre|post-actions in codegen.
68 class RegionCodeGenTy final {
69 intptr_t CodeGen;
70 typedef void (*CodeGenTy)(intptr_t, CodeGenFunction &, PrePostActionTy &);
71 CodeGenTy Callback;
72 mutable PrePostActionTy *PrePostAction;
73 RegionCodeGenTy() = delete;
74 template <typename Callable>
75 static void CallbackFn(intptr_t CodeGen, CodeGenFunction &CGF,
76 PrePostActionTy &Action) {
77 return (*reinterpret_cast<Callable *>(CodeGen))(CGF, Action);
80 public:
81 template <typename Callable>
82 RegionCodeGenTy(
83 Callable &&CodeGen,
84 std::enable_if_t<!std::is_same<std::remove_reference_t<Callable>,
85 RegionCodeGenTy>::value> * = nullptr)
86 : CodeGen(reinterpret_cast<intptr_t>(&CodeGen)),
87 Callback(CallbackFn<std::remove_reference_t<Callable>>),
88 PrePostAction(nullptr) {}
89 void setAction(PrePostActionTy &Action) const { PrePostAction = &Action; }
90 void operator()(CodeGenFunction &CGF) const;
93 struct OMPTaskDataTy final {
94 SmallVector<const Expr *, 4> PrivateVars;
95 SmallVector<const Expr *, 4> PrivateCopies;
96 SmallVector<const Expr *, 4> FirstprivateVars;
97 SmallVector<const Expr *, 4> FirstprivateCopies;
98 SmallVector<const Expr *, 4> FirstprivateInits;
99 SmallVector<const Expr *, 4> LastprivateVars;
100 SmallVector<const Expr *, 4> LastprivateCopies;
101 SmallVector<const Expr *, 4> ReductionVars;
102 SmallVector<const Expr *, 4> ReductionOrigs;
103 SmallVector<const Expr *, 4> ReductionCopies;
104 SmallVector<const Expr *, 4> ReductionOps;
105 SmallVector<CanonicalDeclPtr<const VarDecl>, 4> PrivateLocals;
106 struct DependData {
107 OpenMPDependClauseKind DepKind = OMPC_DEPEND_unknown;
108 const Expr *IteratorExpr = nullptr;
109 SmallVector<const Expr *, 4> DepExprs;
110 explicit DependData() = default;
111 DependData(OpenMPDependClauseKind DepKind, const Expr *IteratorExpr)
112 : DepKind(DepKind), IteratorExpr(IteratorExpr) {}
114 SmallVector<DependData, 4> Dependences;
115 llvm::PointerIntPair<llvm::Value *, 1, bool> Final;
116 llvm::PointerIntPair<llvm::Value *, 1, bool> Schedule;
117 llvm::PointerIntPair<llvm::Value *, 1, bool> Priority;
118 llvm::Value *Reductions = nullptr;
119 unsigned NumberOfParts = 0;
120 bool Tied = true;
121 bool Nogroup = false;
122 bool IsReductionWithTaskMod = false;
123 bool IsWorksharingReduction = false;
124 bool HasNowaitClause = false;
127 /// Class intended to support codegen of all kind of the reduction clauses.
128 class ReductionCodeGen {
129 private:
130 /// Data required for codegen of reduction clauses.
131 struct ReductionData {
132 /// Reference to the item shared between tasks to reduce into.
133 const Expr *Shared = nullptr;
134 /// Reference to the original item.
135 const Expr *Ref = nullptr;
136 /// Helper expression for generation of private copy.
137 const Expr *Private = nullptr;
138 /// Helper expression for generation reduction operation.
139 const Expr *ReductionOp = nullptr;
140 ReductionData(const Expr *Shared, const Expr *Ref, const Expr *Private,
141 const Expr *ReductionOp)
142 : Shared(Shared), Ref(Ref), Private(Private), ReductionOp(ReductionOp) {
145 /// List of reduction-based clauses.
146 SmallVector<ReductionData, 4> ClausesData;
148 /// List of addresses of shared variables/expressions.
149 SmallVector<std::pair<LValue, LValue>, 4> SharedAddresses;
150 /// List of addresses of original variables/expressions.
151 SmallVector<std::pair<LValue, LValue>, 4> OrigAddresses;
152 /// Sizes of the reduction items in chars.
153 SmallVector<std::pair<llvm::Value *, llvm::Value *>, 4> Sizes;
154 /// Base declarations for the reduction items.
155 SmallVector<const VarDecl *, 4> BaseDecls;
157 /// Emits lvalue for shared expression.
158 LValue emitSharedLValue(CodeGenFunction &CGF, const Expr *E);
159 /// Emits upper bound for shared expression (if array section).
160 LValue emitSharedLValueUB(CodeGenFunction &CGF, const Expr *E);
161 /// Performs aggregate initialization.
162 /// \param N Number of reduction item in the common list.
163 /// \param PrivateAddr Address of the corresponding private item.
164 /// \param SharedAddr Address of the original shared variable.
165 /// \param DRD Declare reduction construct used for reduction item.
166 void emitAggregateInitialization(CodeGenFunction &CGF, unsigned N,
167 Address PrivateAddr, Address SharedAddr,
168 const OMPDeclareReductionDecl *DRD);
170 public:
171 ReductionCodeGen(ArrayRef<const Expr *> Shareds, ArrayRef<const Expr *> Origs,
172 ArrayRef<const Expr *> Privates,
173 ArrayRef<const Expr *> ReductionOps);
174 /// Emits lvalue for the shared and original reduction item.
175 /// \param N Number of the reduction item.
176 void emitSharedOrigLValue(CodeGenFunction &CGF, unsigned N);
177 /// Emits the code for the variable-modified type, if required.
178 /// \param N Number of the reduction item.
179 void emitAggregateType(CodeGenFunction &CGF, unsigned N);
180 /// Emits the code for the variable-modified type, if required.
181 /// \param N Number of the reduction item.
182 /// \param Size Size of the type in chars.
183 void emitAggregateType(CodeGenFunction &CGF, unsigned N, llvm::Value *Size);
184 /// Performs initialization of the private copy for the reduction item.
185 /// \param N Number of the reduction item.
186 /// \param PrivateAddr Address of the corresponding private item.
187 /// \param DefaultInit Default initialization sequence that should be
188 /// performed if no reduction specific initialization is found.
189 /// \param SharedAddr Address of the original shared variable.
190 void
191 emitInitialization(CodeGenFunction &CGF, unsigned N, Address PrivateAddr,
192 Address SharedAddr,
193 llvm::function_ref<bool(CodeGenFunction &)> DefaultInit);
194 /// Returns true if the private copy requires cleanups.
195 bool needCleanups(unsigned N);
196 /// Emits cleanup code for the reduction item.
197 /// \param N Number of the reduction item.
198 /// \param PrivateAddr Address of the corresponding private item.
199 void emitCleanups(CodeGenFunction &CGF, unsigned N, Address PrivateAddr);
200 /// Adjusts \p PrivatedAddr for using instead of the original variable
201 /// address in normal operations.
202 /// \param N Number of the reduction item.
203 /// \param PrivateAddr Address of the corresponding private item.
204 Address adjustPrivateAddress(CodeGenFunction &CGF, unsigned N,
205 Address PrivateAddr);
206 /// Returns LValue for the reduction item.
207 LValue getSharedLValue(unsigned N) const { return SharedAddresses[N].first; }
208 /// Returns LValue for the original reduction item.
209 LValue getOrigLValue(unsigned N) const { return OrigAddresses[N].first; }
210 /// Returns the size of the reduction item (in chars and total number of
211 /// elements in the item), or nullptr, if the size is a constant.
212 std::pair<llvm::Value *, llvm::Value *> getSizes(unsigned N) const {
213 return Sizes[N];
215 /// Returns the base declaration of the reduction item.
216 const VarDecl *getBaseDecl(unsigned N) const { return BaseDecls[N]; }
217 /// Returns the base declaration of the reduction item.
218 const Expr *getRefExpr(unsigned N) const { return ClausesData[N].Ref; }
219 /// Returns true if the initialization of the reduction item uses initializer
220 /// from declare reduction construct.
221 bool usesReductionInitializer(unsigned N) const;
222 /// Return the type of the private item.
223 QualType getPrivateType(unsigned N) const {
224 return cast<VarDecl>(cast<DeclRefExpr>(ClausesData[N].Private)->getDecl())
225 ->getType();
229 class CGOpenMPRuntime {
230 public:
231 /// Allows to disable automatic handling of functions used in target regions
232 /// as those marked as `omp declare target`.
233 class DisableAutoDeclareTargetRAII {
234 CodeGenModule &CGM;
235 bool SavedShouldMarkAsGlobal = false;
237 public:
238 DisableAutoDeclareTargetRAII(CodeGenModule &CGM);
239 ~DisableAutoDeclareTargetRAII();
242 /// Manages list of nontemporal decls for the specified directive.
243 class NontemporalDeclsRAII {
244 CodeGenModule &CGM;
245 const bool NeedToPush;
247 public:
248 NontemporalDeclsRAII(CodeGenModule &CGM, const OMPLoopDirective &S);
249 ~NontemporalDeclsRAII();
252 /// Manages list of nontemporal decls for the specified directive.
253 class UntiedTaskLocalDeclsRAII {
254 CodeGenModule &CGM;
255 const bool NeedToPush;
257 public:
258 UntiedTaskLocalDeclsRAII(
259 CodeGenFunction &CGF,
260 const llvm::MapVector<CanonicalDeclPtr<const VarDecl>,
261 std::pair<Address, Address>> &LocalVars);
262 ~UntiedTaskLocalDeclsRAII();
265 /// Maps the expression for the lastprivate variable to the global copy used
266 /// to store new value because original variables are not mapped in inner
267 /// parallel regions. Only private copies are captured but we need also to
268 /// store private copy in shared address.
269 /// Also, stores the expression for the private loop counter and it
270 /// threaprivate name.
271 struct LastprivateConditionalData {
272 llvm::MapVector<CanonicalDeclPtr<const Decl>, SmallString<16>>
273 DeclToUniqueName;
274 LValue IVLVal;
275 llvm::Function *Fn = nullptr;
276 bool Disabled = false;
278 /// Manages list of lastprivate conditional decls for the specified directive.
279 class LastprivateConditionalRAII {
280 enum class ActionToDo {
281 DoNotPush,
282 PushAsLastprivateConditional,
283 DisableLastprivateConditional,
285 CodeGenModule &CGM;
286 ActionToDo Action = ActionToDo::DoNotPush;
288 /// Check and try to disable analysis of inner regions for changes in
289 /// lastprivate conditional.
290 void tryToDisableInnerAnalysis(const OMPExecutableDirective &S,
291 llvm::DenseSet<CanonicalDeclPtr<const Decl>>
292 &NeedToAddForLPCsAsDisabled) const;
294 LastprivateConditionalRAII(CodeGenFunction &CGF,
295 const OMPExecutableDirective &S);
297 public:
298 explicit LastprivateConditionalRAII(CodeGenFunction &CGF,
299 const OMPExecutableDirective &S,
300 LValue IVLVal);
301 static LastprivateConditionalRAII disable(CodeGenFunction &CGF,
302 const OMPExecutableDirective &S);
303 ~LastprivateConditionalRAII();
306 llvm::OpenMPIRBuilder &getOMPBuilder() { return OMPBuilder; }
308 protected:
309 CodeGenModule &CGM;
311 /// An OpenMP-IR-Builder instance.
312 llvm::OpenMPIRBuilder OMPBuilder;
314 /// Helper to determine the min/max number of threads/teams for \p D.
315 void computeMinAndMaxThreadsAndTeams(const OMPExecutableDirective &D,
316 CodeGenFunction &CGF,
317 int32_t &MinThreadsVal,
318 int32_t &MaxThreadsVal,
319 int32_t &MinTeamsVal,
320 int32_t &MaxTeamsVal);
322 /// Helper to emit outlined function for 'target' directive.
323 /// \param D Directive to emit.
324 /// \param ParentName Name of the function that encloses the target region.
325 /// \param OutlinedFn Outlined function value to be defined by this call.
326 /// \param OutlinedFnID Outlined function ID value to be defined by this call.
327 /// \param IsOffloadEntry True if the outlined function is an offload entry.
328 /// \param CodeGen Lambda codegen specific to an accelerator device.
329 /// An outlined function may not be an entry if, e.g. the if clause always
330 /// evaluates to false.
331 virtual void emitTargetOutlinedFunctionHelper(const OMPExecutableDirective &D,
332 StringRef ParentName,
333 llvm::Function *&OutlinedFn,
334 llvm::Constant *&OutlinedFnID,
335 bool IsOffloadEntry,
336 const RegionCodeGenTy &CodeGen);
338 /// Returns pointer to ident_t type.
339 llvm::Type *getIdentTyPointerTy();
341 /// Gets thread id value for the current thread.
343 llvm::Value *getThreadID(CodeGenFunction &CGF, SourceLocation Loc);
345 /// Get the function name of an outlined region.
346 std::string getOutlinedHelperName(StringRef Name) const;
347 std::string getOutlinedHelperName(CodeGenFunction &CGF) const;
349 /// Get the function name of a reduction function.
350 std::string getReductionFuncName(StringRef Name) const;
352 /// Emits \p Callee function call with arguments \p Args with location \p Loc.
353 void emitCall(CodeGenFunction &CGF, SourceLocation Loc,
354 llvm::FunctionCallee Callee,
355 ArrayRef<llvm::Value *> Args = std::nullopt) const;
357 /// Emits address of the word in a memory where current thread id is
358 /// stored.
359 virtual Address emitThreadIDAddress(CodeGenFunction &CGF, SourceLocation Loc);
361 void setLocThreadIdInsertPt(CodeGenFunction &CGF,
362 bool AtCurrentPoint = false);
363 void clearLocThreadIdInsertPt(CodeGenFunction &CGF);
365 /// Check if the default location must be constant.
366 /// Default is false to support OMPT/OMPD.
367 virtual bool isDefaultLocationConstant() const { return false; }
369 /// Returns additional flags that can be stored in reserved_2 field of the
370 /// default location.
371 virtual unsigned getDefaultLocationReserved2Flags() const { return 0; }
373 /// Returns default flags for the barriers depending on the directive, for
374 /// which this barier is going to be emitted.
375 static unsigned getDefaultFlagsForBarriers(OpenMPDirectiveKind Kind);
377 /// Get the LLVM type for the critical name.
378 llvm::ArrayType *getKmpCriticalNameTy() const {return KmpCriticalNameTy;}
380 /// Returns corresponding lock object for the specified critical region
381 /// name. If the lock object does not exist it is created, otherwise the
382 /// reference to the existing copy is returned.
383 /// \param CriticalName Name of the critical region.
385 llvm::Value *getCriticalRegionLock(StringRef CriticalName);
387 protected:
388 /// Map for SourceLocation and OpenMP runtime library debug locations.
389 typedef llvm::DenseMap<SourceLocation, llvm::Value *> OpenMPDebugLocMapTy;
390 OpenMPDebugLocMapTy OpenMPDebugLocMap;
391 /// The type for a microtask which gets passed to __kmpc_fork_call().
392 /// Original representation is:
393 /// typedef void (kmpc_micro)(kmp_int32 global_tid, kmp_int32 bound_tid,...);
394 llvm::FunctionType *Kmpc_MicroTy = nullptr;
395 /// Stores debug location and ThreadID for the function.
396 struct DebugLocThreadIdTy {
397 llvm::Value *DebugLoc;
398 llvm::Value *ThreadID;
399 /// Insert point for the service instructions.
400 llvm::AssertingVH<llvm::Instruction> ServiceInsertPt = nullptr;
402 /// Map of local debug location, ThreadId and functions.
403 typedef llvm::DenseMap<llvm::Function *, DebugLocThreadIdTy>
404 OpenMPLocThreadIDMapTy;
405 OpenMPLocThreadIDMapTy OpenMPLocThreadIDMap;
406 /// Map of UDRs and corresponding combiner/initializer.
407 typedef llvm::DenseMap<const OMPDeclareReductionDecl *,
408 std::pair<llvm::Function *, llvm::Function *>>
409 UDRMapTy;
410 UDRMapTy UDRMap;
411 /// Map of functions and locally defined UDRs.
412 typedef llvm::DenseMap<llvm::Function *,
413 SmallVector<const OMPDeclareReductionDecl *, 4>>
414 FunctionUDRMapTy;
415 FunctionUDRMapTy FunctionUDRMap;
416 /// Map from the user-defined mapper declaration to its corresponding
417 /// functions.
418 llvm::DenseMap<const OMPDeclareMapperDecl *, llvm::Function *> UDMMap;
419 /// Map of functions and their local user-defined mappers.
420 using FunctionUDMMapTy =
421 llvm::DenseMap<llvm::Function *,
422 SmallVector<const OMPDeclareMapperDecl *, 4>>;
423 FunctionUDMMapTy FunctionUDMMap;
424 /// Maps local variables marked as lastprivate conditional to their internal
425 /// types.
426 llvm::DenseMap<llvm::Function *,
427 llvm::DenseMap<CanonicalDeclPtr<const Decl>,
428 std::tuple<QualType, const FieldDecl *,
429 const FieldDecl *, LValue>>>
430 LastprivateConditionalToTypes;
431 /// Maps function to the position of the untied task locals stack.
432 llvm::DenseMap<llvm::Function *, unsigned> FunctionToUntiedTaskStackMap;
433 /// Type kmp_critical_name, originally defined as typedef kmp_int32
434 /// kmp_critical_name[8];
435 llvm::ArrayType *KmpCriticalNameTy;
436 /// An ordered map of auto-generated variables to their unique names.
437 /// It stores variables with the following names: 1) ".gomp_critical_user_" +
438 /// <critical_section_name> + ".var" for "omp critical" directives; 2)
439 /// <mangled_name_for_global_var> + ".cache." for cache for threadprivate
440 /// variables.
441 llvm::StringMap<llvm::AssertingVH<llvm::GlobalVariable>,
442 llvm::BumpPtrAllocator> InternalVars;
443 /// Type typedef kmp_int32 (* kmp_routine_entry_t)(kmp_int32, void *);
444 llvm::Type *KmpRoutineEntryPtrTy = nullptr;
445 QualType KmpRoutineEntryPtrQTy;
446 /// Type typedef struct kmp_task {
447 /// void * shareds; /**< pointer to block of pointers to
448 /// shared vars */
449 /// kmp_routine_entry_t routine; /**< pointer to routine to call for
450 /// executing task */
451 /// kmp_int32 part_id; /**< part id for the task */
452 /// kmp_routine_entry_t destructors; /* pointer to function to invoke
453 /// deconstructors of firstprivate C++ objects */
454 /// } kmp_task_t;
455 QualType KmpTaskTQTy;
456 /// Saved kmp_task_t for task directive.
457 QualType SavedKmpTaskTQTy;
458 /// Saved kmp_task_t for taskloop-based directive.
459 QualType SavedKmpTaskloopTQTy;
460 /// Type typedef struct kmp_depend_info {
461 /// kmp_intptr_t base_addr;
462 /// size_t len;
463 /// struct {
464 /// bool in:1;
465 /// bool out:1;
466 /// } flags;
467 /// } kmp_depend_info_t;
468 QualType KmpDependInfoTy;
469 /// Type typedef struct kmp_task_affinity_info {
470 /// kmp_intptr_t base_addr;
471 /// size_t len;
472 /// struct {
473 /// bool flag1 : 1;
474 /// bool flag2 : 1;
475 /// kmp_int32 reserved : 30;
476 /// } flags;
477 /// } kmp_task_affinity_info_t;
478 QualType KmpTaskAffinityInfoTy;
479 /// struct kmp_dim { // loop bounds info casted to kmp_int64
480 /// kmp_int64 lo; // lower
481 /// kmp_int64 up; // upper
482 /// kmp_int64 st; // stride
483 /// };
484 QualType KmpDimTy;
486 bool ShouldMarkAsGlobal = true;
487 /// List of the emitted declarations.
488 llvm::DenseSet<CanonicalDeclPtr<const Decl>> AlreadyEmittedTargetDecls;
489 /// List of the global variables with their addresses that should not be
490 /// emitted for the target.
491 llvm::StringMap<llvm::WeakTrackingVH> EmittedNonTargetVariables;
493 /// List of variables that can become declare target implicitly and, thus,
494 /// must be emitted.
495 llvm::SmallDenseSet<const VarDecl *> DeferredGlobalVariables;
497 using NontemporalDeclsSet = llvm::SmallDenseSet<CanonicalDeclPtr<const Decl>>;
498 /// Stack for list of declarations in current context marked as nontemporal.
499 /// The set is the union of all current stack elements.
500 llvm::SmallVector<NontemporalDeclsSet, 4> NontemporalDeclsStack;
502 using UntiedLocalVarsAddressesMap =
503 llvm::MapVector<CanonicalDeclPtr<const VarDecl>,
504 std::pair<Address, Address>>;
505 llvm::SmallVector<UntiedLocalVarsAddressesMap, 4> UntiedLocalVarsStack;
507 /// Stack for list of addresses of declarations in current context marked as
508 /// lastprivate conditional. The set is the union of all current stack
509 /// elements.
510 llvm::SmallVector<LastprivateConditionalData, 4> LastprivateConditionalStack;
512 /// Flag for keeping track of weather a requires unified_shared_memory
513 /// directive is present.
514 bool HasRequiresUnifiedSharedMemory = false;
516 /// Atomic ordering from the omp requires directive.
517 llvm::AtomicOrdering RequiresAtomicOrdering = llvm::AtomicOrdering::Monotonic;
519 /// Flag for keeping track of weather a target region has been emitted.
520 bool HasEmittedTargetRegion = false;
522 /// Flag for keeping track of weather a device routine has been emitted.
523 /// Device routines are specific to the
524 bool HasEmittedDeclareTargetRegion = false;
526 /// Start scanning from statement \a S and emit all target regions
527 /// found along the way.
528 /// \param S Starting statement.
529 /// \param ParentName Name of the function declaration that is being scanned.
530 void scanForTargetRegionsFunctions(const Stmt *S, StringRef ParentName);
532 /// Build type kmp_routine_entry_t (if not built yet).
533 void emitKmpRoutineEntryT(QualType KmpInt32Ty);
535 /// Returns pointer to kmpc_micro type.
536 llvm::Type *getKmpc_MicroPointerTy();
538 /// If the specified mangled name is not in the module, create and
539 /// return threadprivate cache object. This object is a pointer's worth of
540 /// storage that's reserved for use by the OpenMP runtime.
541 /// \param VD Threadprivate variable.
542 /// \return Cache variable for the specified threadprivate.
543 llvm::Constant *getOrCreateThreadPrivateCache(const VarDecl *VD);
545 /// Set of threadprivate variables with the generated initializer.
546 llvm::StringSet<> ThreadPrivateWithDefinition;
548 /// Set of declare target variables with the generated initializer.
549 llvm::StringSet<> DeclareTargetWithDefinition;
551 /// Emits initialization code for the threadprivate variables.
552 /// \param VDAddr Address of the global variable \a VD.
553 /// \param Ctor Pointer to a global init function for \a VD.
554 /// \param CopyCtor Pointer to a global copy function for \a VD.
555 /// \param Dtor Pointer to a global destructor function for \a VD.
556 /// \param Loc Location of threadprivate declaration.
557 void emitThreadPrivateVarInit(CodeGenFunction &CGF, Address VDAddr,
558 llvm::Value *Ctor, llvm::Value *CopyCtor,
559 llvm::Value *Dtor, SourceLocation Loc);
561 /// Emit the array initialization or deletion portion for user-defined mapper
562 /// code generation.
563 void emitUDMapperArrayInitOrDel(CodeGenFunction &MapperCGF,
564 llvm::Value *Handle, llvm::Value *BasePtr,
565 llvm::Value *Ptr, llvm::Value *Size,
566 llvm::Value *MapType, llvm::Value *MapName,
567 CharUnits ElementSize,
568 llvm::BasicBlock *ExitBB, bool IsInit);
570 struct TaskResultTy {
571 llvm::Value *NewTask = nullptr;
572 llvm::Function *TaskEntry = nullptr;
573 llvm::Value *NewTaskNewTaskTTy = nullptr;
574 LValue TDBase;
575 const RecordDecl *KmpTaskTQTyRD = nullptr;
576 llvm::Value *TaskDupFn = nullptr;
578 /// Emit task region for the task directive. The task region is emitted in
579 /// several steps:
580 /// 1. Emit a call to kmp_task_t *__kmpc_omp_task_alloc(ident_t *, kmp_int32
581 /// gtid, kmp_int32 flags, size_t sizeof_kmp_task_t, size_t sizeof_shareds,
582 /// kmp_routine_entry_t *task_entry). Here task_entry is a pointer to the
583 /// function:
584 /// kmp_int32 .omp_task_entry.(kmp_int32 gtid, kmp_task_t *tt) {
585 /// TaskFunction(gtid, tt->part_id, tt->shareds);
586 /// return 0;
587 /// }
588 /// 2. Copy a list of shared variables to field shareds of the resulting
589 /// structure kmp_task_t returned by the previous call (if any).
590 /// 3. Copy a pointer to destructions function to field destructions of the
591 /// resulting structure kmp_task_t.
592 /// \param D Current task directive.
593 /// \param TaskFunction An LLVM function with type void (*)(i32 /*gtid*/, i32
594 /// /*part_id*/, captured_struct */*__context*/);
595 /// \param SharedsTy A type which contains references the shared variables.
596 /// \param Shareds Context with the list of shared variables from the \p
597 /// TaskFunction.
598 /// \param Data Additional data for task generation like tiednsee, final
599 /// state, list of privates etc.
600 TaskResultTy emitTaskInit(CodeGenFunction &CGF, SourceLocation Loc,
601 const OMPExecutableDirective &D,
602 llvm::Function *TaskFunction, QualType SharedsTy,
603 Address Shareds, const OMPTaskDataTy &Data);
605 /// Emit update for lastprivate conditional data.
606 void emitLastprivateConditionalUpdate(CodeGenFunction &CGF, LValue IVLVal,
607 StringRef UniqueDeclName, LValue LVal,
608 SourceLocation Loc);
610 /// Returns the number of the elements and the address of the depobj
611 /// dependency array.
612 /// \return Number of elements in depobj array and the pointer to the array of
613 /// dependencies.
614 std::pair<llvm::Value *, LValue> getDepobjElements(CodeGenFunction &CGF,
615 LValue DepobjLVal,
616 SourceLocation Loc);
618 SmallVector<llvm::Value *, 4>
619 emitDepobjElementsSizes(CodeGenFunction &CGF, QualType &KmpDependInfoTy,
620 const OMPTaskDataTy::DependData &Data);
622 void emitDepobjElements(CodeGenFunction &CGF, QualType &KmpDependInfoTy,
623 LValue PosLVal, const OMPTaskDataTy::DependData &Data,
624 Address DependenciesArray);
626 public:
627 explicit CGOpenMPRuntime(CodeGenModule &CGM);
628 virtual ~CGOpenMPRuntime() {}
629 virtual void clear();
631 /// Emits object of ident_t type with info for source location.
632 /// \param Flags Flags for OpenMP location.
633 /// \param EmitLoc emit source location with debug-info is off.
635 llvm::Value *emitUpdateLocation(CodeGenFunction &CGF, SourceLocation Loc,
636 unsigned Flags = 0, bool EmitLoc = false);
638 /// Emit the number of teams for a target directive. Inspect the num_teams
639 /// clause associated with a teams construct combined or closely nested
640 /// with the target directive.
642 /// Emit a team of size one for directives such as 'target parallel' that
643 /// have no associated teams construct.
645 /// Otherwise, return nullptr.
646 const Expr *getNumTeamsExprForTargetDirective(CodeGenFunction &CGF,
647 const OMPExecutableDirective &D,
648 int32_t &MinTeamsVal,
649 int32_t &MaxTeamsVal);
650 llvm::Value *emitNumTeamsForTargetDirective(CodeGenFunction &CGF,
651 const OMPExecutableDirective &D);
653 /// Check for a number of threads upper bound constant value (stored in \p
654 /// UpperBound), or expression (returned). If the value is conditional (via an
655 /// if-clause), store the condition in \p CondExpr. Similarly, a potential
656 /// thread limit expression is stored in \p ThreadLimitExpr. If \p
657 /// UpperBoundOnly is true, no expression evaluation is perfomed.
658 const Expr *getNumThreadsExprForTargetDirective(
659 CodeGenFunction &CGF, const OMPExecutableDirective &D,
660 int32_t &UpperBound, bool UpperBoundOnly,
661 llvm::Value **CondExpr = nullptr, const Expr **ThreadLimitExpr = nullptr);
663 /// Emit an expression that denotes the number of threads a target region
664 /// shall use. Will generate "i32 0" to allow the runtime to choose.
665 llvm::Value *
666 emitNumThreadsForTargetDirective(CodeGenFunction &CGF,
667 const OMPExecutableDirective &D);
669 /// Return the trip count of loops associated with constructs / 'target teams
670 /// distribute' and 'teams distribute parallel for'. \param SizeEmitter Emits
671 /// the int64 value for the number of iterations of the associated loop.
672 llvm::Value *emitTargetNumIterationsCall(
673 CodeGenFunction &CGF, const OMPExecutableDirective &D,
674 llvm::function_ref<llvm::Value *(CodeGenFunction &CGF,
675 const OMPLoopDirective &D)>
676 SizeEmitter);
678 /// Returns true if the current target is a GPU.
679 virtual bool isGPU() const { return false; }
681 /// Check if the variable length declaration is delayed:
682 virtual bool isDelayedVariableLengthDecl(CodeGenFunction &CGF,
683 const VarDecl *VD) const {
684 return false;
687 /// Get call to __kmpc_alloc_shared
688 virtual std::pair<llvm::Value *, llvm::Value *>
689 getKmpcAllocShared(CodeGenFunction &CGF, const VarDecl *VD) {
690 llvm_unreachable("not implemented");
693 /// Get call to __kmpc_free_shared
694 virtual void getKmpcFreeShared(
695 CodeGenFunction &CGF,
696 const std::pair<llvm::Value *, llvm::Value *> &AddrSizePair) {
697 llvm_unreachable("not implemented");
700 /// Emits code for OpenMP 'if' clause using specified \a CodeGen
701 /// function. Here is the logic:
702 /// if (Cond) {
703 /// ThenGen();
704 /// } else {
705 /// ElseGen();
706 /// }
707 void emitIfClause(CodeGenFunction &CGF, const Expr *Cond,
708 const RegionCodeGenTy &ThenGen,
709 const RegionCodeGenTy &ElseGen);
711 /// Checks if the \p Body is the \a CompoundStmt and returns its child
712 /// statement iff there is only one that is not evaluatable at the compile
713 /// time.
714 static const Stmt *getSingleCompoundChild(ASTContext &Ctx, const Stmt *Body);
716 /// Get the platform-specific name separator.
717 std::string getName(ArrayRef<StringRef> Parts) const;
719 /// Emit code for the specified user defined reduction construct.
720 virtual void emitUserDefinedReduction(CodeGenFunction *CGF,
721 const OMPDeclareReductionDecl *D);
722 /// Get combiner/initializer for the specified user-defined reduction, if any.
723 virtual std::pair<llvm::Function *, llvm::Function *>
724 getUserDefinedReduction(const OMPDeclareReductionDecl *D);
726 /// Emit the function for the user defined mapper construct.
727 void emitUserDefinedMapper(const OMPDeclareMapperDecl *D,
728 CodeGenFunction *CGF = nullptr);
729 /// Get the function for the specified user-defined mapper. If it does not
730 /// exist, create one.
731 llvm::Function *
732 getOrCreateUserDefinedMapperFunc(const OMPDeclareMapperDecl *D);
734 /// Emits outlined function for the specified OpenMP parallel directive
735 /// \a D. This outlined function has type void(*)(kmp_int32 *ThreadID,
736 /// kmp_int32 BoundID, struct context_vars*).
737 /// \param CGF Reference to current CodeGenFunction.
738 /// \param D OpenMP directive.
739 /// \param ThreadIDVar Variable for thread id in the current OpenMP region.
740 /// \param InnermostKind Kind of innermost directive (for simple directives it
741 /// is a directive itself, for combined - its innermost directive).
742 /// \param CodeGen Code generation sequence for the \a D directive.
743 virtual llvm::Function *emitParallelOutlinedFunction(
744 CodeGenFunction &CGF, const OMPExecutableDirective &D,
745 const VarDecl *ThreadIDVar, OpenMPDirectiveKind InnermostKind,
746 const RegionCodeGenTy &CodeGen);
748 /// Emits outlined function for the specified OpenMP teams directive
749 /// \a D. This outlined function has type void(*)(kmp_int32 *ThreadID,
750 /// kmp_int32 BoundID, struct context_vars*).
751 /// \param CGF Reference to current CodeGenFunction.
752 /// \param D OpenMP directive.
753 /// \param ThreadIDVar Variable for thread id in the current OpenMP region.
754 /// \param InnermostKind Kind of innermost directive (for simple directives it
755 /// is a directive itself, for combined - its innermost directive).
756 /// \param CodeGen Code generation sequence for the \a D directive.
757 virtual llvm::Function *emitTeamsOutlinedFunction(
758 CodeGenFunction &CGF, const OMPExecutableDirective &D,
759 const VarDecl *ThreadIDVar, OpenMPDirectiveKind InnermostKind,
760 const RegionCodeGenTy &CodeGen);
762 /// Emits outlined function for the OpenMP task directive \a D. This
763 /// outlined function has type void(*)(kmp_int32 ThreadID, struct task_t*
764 /// TaskT).
765 /// \param D OpenMP directive.
766 /// \param ThreadIDVar Variable for thread id in the current OpenMP region.
767 /// \param PartIDVar Variable for partition id in the current OpenMP untied
768 /// task region.
769 /// \param TaskTVar Variable for task_t argument.
770 /// \param InnermostKind Kind of innermost directive (for simple directives it
771 /// is a directive itself, for combined - its innermost directive).
772 /// \param CodeGen Code generation sequence for the \a D directive.
773 /// \param Tied true if task is generated for tied task, false otherwise.
774 /// \param NumberOfParts Number of parts in untied task. Ignored for tied
775 /// tasks.
777 virtual llvm::Function *emitTaskOutlinedFunction(
778 const OMPExecutableDirective &D, const VarDecl *ThreadIDVar,
779 const VarDecl *PartIDVar, const VarDecl *TaskTVar,
780 OpenMPDirectiveKind InnermostKind, const RegionCodeGenTy &CodeGen,
781 bool Tied, unsigned &NumberOfParts);
783 /// Cleans up references to the objects in finished function.
785 virtual void functionFinished(CodeGenFunction &CGF);
787 /// Emits code for parallel or serial call of the \a OutlinedFn with
788 /// variables captured in a record which address is stored in \a
789 /// CapturedStruct.
790 /// \param OutlinedFn Outlined function to be run in parallel threads. Type of
791 /// this function is void(*)(kmp_int32 *, kmp_int32, struct context_vars*).
792 /// \param CapturedVars A pointer to the record with the references to
793 /// variables used in \a OutlinedFn function.
794 /// \param IfCond Condition in the associated 'if' clause, if it was
795 /// specified, nullptr otherwise.
796 /// \param NumThreads The value corresponding to the num_threads clause, if
797 /// any, or nullptr.
799 virtual void emitParallelCall(CodeGenFunction &CGF, SourceLocation Loc,
800 llvm::Function *OutlinedFn,
801 ArrayRef<llvm::Value *> CapturedVars,
802 const Expr *IfCond, llvm::Value *NumThreads);
804 /// Emits a critical region.
805 /// \param CriticalName Name of the critical region.
806 /// \param CriticalOpGen Generator for the statement associated with the given
807 /// critical region.
808 /// \param Hint Value of the 'hint' clause (optional).
809 virtual void emitCriticalRegion(CodeGenFunction &CGF, StringRef CriticalName,
810 const RegionCodeGenTy &CriticalOpGen,
811 SourceLocation Loc,
812 const Expr *Hint = nullptr);
814 /// Emits a master region.
815 /// \param MasterOpGen Generator for the statement associated with the given
816 /// master region.
817 virtual void emitMasterRegion(CodeGenFunction &CGF,
818 const RegionCodeGenTy &MasterOpGen,
819 SourceLocation Loc);
821 /// Emits a masked region.
822 /// \param MaskedOpGen Generator for the statement associated with the given
823 /// masked region.
824 virtual void emitMaskedRegion(CodeGenFunction &CGF,
825 const RegionCodeGenTy &MaskedOpGen,
826 SourceLocation Loc,
827 const Expr *Filter = nullptr);
829 /// Emits code for a taskyield directive.
830 virtual void emitTaskyieldCall(CodeGenFunction &CGF, SourceLocation Loc);
832 /// Emit __kmpc_error call for error directive
833 /// extern void __kmpc_error(ident_t *loc, int severity, const char *message);
834 virtual void emitErrorCall(CodeGenFunction &CGF, SourceLocation Loc, Expr *ME,
835 bool IsFatal);
837 /// Emit a taskgroup region.
838 /// \param TaskgroupOpGen Generator for the statement associated with the
839 /// given taskgroup region.
840 virtual void emitTaskgroupRegion(CodeGenFunction &CGF,
841 const RegionCodeGenTy &TaskgroupOpGen,
842 SourceLocation Loc);
844 /// Emits a single region.
845 /// \param SingleOpGen Generator for the statement associated with the given
846 /// single region.
847 virtual void emitSingleRegion(CodeGenFunction &CGF,
848 const RegionCodeGenTy &SingleOpGen,
849 SourceLocation Loc,
850 ArrayRef<const Expr *> CopyprivateVars,
851 ArrayRef<const Expr *> DestExprs,
852 ArrayRef<const Expr *> SrcExprs,
853 ArrayRef<const Expr *> AssignmentOps);
855 /// Emit an ordered region.
856 /// \param OrderedOpGen Generator for the statement associated with the given
857 /// ordered region.
858 virtual void emitOrderedRegion(CodeGenFunction &CGF,
859 const RegionCodeGenTy &OrderedOpGen,
860 SourceLocation Loc, bool IsThreads);
862 /// Emit an implicit/explicit barrier for OpenMP threads.
863 /// \param Kind Directive for which this implicit barrier call must be
864 /// generated. Must be OMPD_barrier for explicit barrier generation.
865 /// \param EmitChecks true if need to emit checks for cancellation barriers.
866 /// \param ForceSimpleCall true simple barrier call must be emitted, false if
867 /// runtime class decides which one to emit (simple or with cancellation
868 /// checks).
870 virtual void emitBarrierCall(CodeGenFunction &CGF, SourceLocation Loc,
871 OpenMPDirectiveKind Kind,
872 bool EmitChecks = true,
873 bool ForceSimpleCall = false);
875 /// Check if the specified \a ScheduleKind is static non-chunked.
876 /// This kind of worksharing directive is emitted without outer loop.
877 /// \param ScheduleKind Schedule kind specified in the 'schedule' clause.
878 /// \param Chunked True if chunk is specified in the clause.
880 virtual bool isStaticNonchunked(OpenMPScheduleClauseKind ScheduleKind,
881 bool Chunked) const;
883 /// Check if the specified \a ScheduleKind is static non-chunked.
884 /// This kind of distribute directive is emitted without outer loop.
885 /// \param ScheduleKind Schedule kind specified in the 'dist_schedule' clause.
886 /// \param Chunked True if chunk is specified in the clause.
888 virtual bool isStaticNonchunked(OpenMPDistScheduleClauseKind ScheduleKind,
889 bool Chunked) const;
891 /// Check if the specified \a ScheduleKind is static chunked.
892 /// \param ScheduleKind Schedule kind specified in the 'schedule' clause.
893 /// \param Chunked True if chunk is specified in the clause.
895 virtual bool isStaticChunked(OpenMPScheduleClauseKind ScheduleKind,
896 bool Chunked) const;
898 /// Check if the specified \a ScheduleKind is static non-chunked.
899 /// \param ScheduleKind Schedule kind specified in the 'dist_schedule' clause.
900 /// \param Chunked True if chunk is specified in the clause.
902 virtual bool isStaticChunked(OpenMPDistScheduleClauseKind ScheduleKind,
903 bool Chunked) const;
905 /// Check if the specified \a ScheduleKind is dynamic.
906 /// This kind of worksharing directive is emitted without outer loop.
907 /// \param ScheduleKind Schedule Kind specified in the 'schedule' clause.
909 virtual bool isDynamic(OpenMPScheduleClauseKind ScheduleKind) const;
911 /// struct with the values to be passed to the dispatch runtime function
912 struct DispatchRTInput {
913 /// Loop lower bound
914 llvm::Value *LB = nullptr;
915 /// Loop upper bound
916 llvm::Value *UB = nullptr;
917 /// Chunk size specified using 'schedule' clause (nullptr if chunk
918 /// was not specified)
919 llvm::Value *Chunk = nullptr;
920 DispatchRTInput() = default;
921 DispatchRTInput(llvm::Value *LB, llvm::Value *UB, llvm::Value *Chunk)
922 : LB(LB), UB(UB), Chunk(Chunk) {}
925 /// Call the appropriate runtime routine to initialize it before start
926 /// of loop.
928 /// This is used for non static scheduled types and when the ordered
929 /// clause is present on the loop construct.
930 /// Depending on the loop schedule, it is necessary to call some runtime
931 /// routine before start of the OpenMP loop to get the loop upper / lower
932 /// bounds \a LB and \a UB and stride \a ST.
934 /// \param CGF Reference to current CodeGenFunction.
935 /// \param Loc Clang source location.
936 /// \param ScheduleKind Schedule kind, specified by the 'schedule' clause.
937 /// \param IVSize Size of the iteration variable in bits.
938 /// \param IVSigned Sign of the iteration variable.
939 /// \param Ordered true if loop is ordered, false otherwise.
940 /// \param DispatchValues struct containing llvm values for lower bound, upper
941 /// bound, and chunk expression.
942 /// For the default (nullptr) value, the chunk 1 will be used.
944 virtual void emitForDispatchInit(CodeGenFunction &CGF, SourceLocation Loc,
945 const OpenMPScheduleTy &ScheduleKind,
946 unsigned IVSize, bool IVSigned, bool Ordered,
947 const DispatchRTInput &DispatchValues);
949 /// Struct with the values to be passed to the static runtime function
950 struct StaticRTInput {
951 /// Size of the iteration variable in bits.
952 unsigned IVSize = 0;
953 /// Sign of the iteration variable.
954 bool IVSigned = false;
955 /// true if loop is ordered, false otherwise.
956 bool Ordered = false;
957 /// Address of the output variable in which the flag of the last iteration
958 /// is returned.
959 Address IL = Address::invalid();
960 /// Address of the output variable in which the lower iteration number is
961 /// returned.
962 Address LB = Address::invalid();
963 /// Address of the output variable in which the upper iteration number is
964 /// returned.
965 Address UB = Address::invalid();
966 /// Address of the output variable in which the stride value is returned
967 /// necessary to generated the static_chunked scheduled loop.
968 Address ST = Address::invalid();
969 /// Value of the chunk for the static_chunked scheduled loop. For the
970 /// default (nullptr) value, the chunk 1 will be used.
971 llvm::Value *Chunk = nullptr;
972 StaticRTInput(unsigned IVSize, bool IVSigned, bool Ordered, Address IL,
973 Address LB, Address UB, Address ST,
974 llvm::Value *Chunk = nullptr)
975 : IVSize(IVSize), IVSigned(IVSigned), Ordered(Ordered), IL(IL), LB(LB),
976 UB(UB), ST(ST), Chunk(Chunk) {}
978 /// Call the appropriate runtime routine to initialize it before start
979 /// of loop.
981 /// This is used only in case of static schedule, when the user did not
982 /// specify a ordered clause on the loop construct.
983 /// Depending on the loop schedule, it is necessary to call some runtime
984 /// routine before start of the OpenMP loop to get the loop upper / lower
985 /// bounds LB and UB and stride ST.
987 /// \param CGF Reference to current CodeGenFunction.
988 /// \param Loc Clang source location.
989 /// \param DKind Kind of the directive.
990 /// \param ScheduleKind Schedule kind, specified by the 'schedule' clause.
991 /// \param Values Input arguments for the construct.
993 virtual void emitForStaticInit(CodeGenFunction &CGF, SourceLocation Loc,
994 OpenMPDirectiveKind DKind,
995 const OpenMPScheduleTy &ScheduleKind,
996 const StaticRTInput &Values);
999 /// \param CGF Reference to current CodeGenFunction.
1000 /// \param Loc Clang source location.
1001 /// \param SchedKind Schedule kind, specified by the 'dist_schedule' clause.
1002 /// \param Values Input arguments for the construct.
1004 virtual void emitDistributeStaticInit(CodeGenFunction &CGF,
1005 SourceLocation Loc,
1006 OpenMPDistScheduleClauseKind SchedKind,
1007 const StaticRTInput &Values);
1009 /// Call the appropriate runtime routine to notify that we finished
1010 /// iteration of the ordered loop with the dynamic scheduling.
1012 /// \param CGF Reference to current CodeGenFunction.
1013 /// \param Loc Clang source location.
1014 /// \param IVSize Size of the iteration variable in bits.
1015 /// \param IVSigned Sign of the iteration variable.
1017 virtual void emitForOrderedIterationEnd(CodeGenFunction &CGF,
1018 SourceLocation Loc, unsigned IVSize,
1019 bool IVSigned);
1021 /// Call the appropriate runtime routine to notify that we finished
1022 /// all the work with current loop.
1024 /// \param CGF Reference to current CodeGenFunction.
1025 /// \param Loc Clang source location.
1026 /// \param DKind Kind of the directive for which the static finish is emitted.
1028 virtual void emitForStaticFinish(CodeGenFunction &CGF, SourceLocation Loc,
1029 OpenMPDirectiveKind DKind);
1031 /// Call __kmpc_dispatch_next(
1032 /// ident_t *loc, kmp_int32 tid, kmp_int32 *p_lastiter,
1033 /// kmp_int[32|64] *p_lower, kmp_int[32|64] *p_upper,
1034 /// kmp_int[32|64] *p_stride);
1035 /// \param IVSize Size of the iteration variable in bits.
1036 /// \param IVSigned Sign of the iteration variable.
1037 /// \param IL Address of the output variable in which the flag of the
1038 /// last iteration is returned.
1039 /// \param LB Address of the output variable in which the lower iteration
1040 /// number is returned.
1041 /// \param UB Address of the output variable in which the upper iteration
1042 /// number is returned.
1043 /// \param ST Address of the output variable in which the stride value is
1044 /// returned.
1045 virtual llvm::Value *emitForNext(CodeGenFunction &CGF, SourceLocation Loc,
1046 unsigned IVSize, bool IVSigned,
1047 Address IL, Address LB,
1048 Address UB, Address ST);
1050 /// Emits call to void __kmpc_push_num_threads(ident_t *loc, kmp_int32
1051 /// global_tid, kmp_int32 num_threads) to generate code for 'num_threads'
1052 /// clause.
1053 /// \param NumThreads An integer value of threads.
1054 virtual void emitNumThreadsClause(CodeGenFunction &CGF,
1055 llvm::Value *NumThreads,
1056 SourceLocation Loc);
1058 /// Emit call to void __kmpc_push_proc_bind(ident_t *loc, kmp_int32
1059 /// global_tid, int proc_bind) to generate code for 'proc_bind' clause.
1060 virtual void emitProcBindClause(CodeGenFunction &CGF,
1061 llvm::omp::ProcBindKind ProcBind,
1062 SourceLocation Loc);
1064 /// Returns address of the threadprivate variable for the current
1065 /// thread.
1066 /// \param VD Threadprivate variable.
1067 /// \param VDAddr Address of the global variable \a VD.
1068 /// \param Loc Location of the reference to threadprivate var.
1069 /// \return Address of the threadprivate variable for the current thread.
1070 virtual Address getAddrOfThreadPrivate(CodeGenFunction &CGF,
1071 const VarDecl *VD,
1072 Address VDAddr,
1073 SourceLocation Loc);
1075 /// Returns the address of the variable marked as declare target with link
1076 /// clause OR as declare target with to clause and unified memory.
1077 virtual Address getAddrOfDeclareTargetVar(const VarDecl *VD);
1079 /// Emit a code for initialization of threadprivate variable. It emits
1080 /// a call to runtime library which adds initial value to the newly created
1081 /// threadprivate variable (if it is not constant) and registers destructor
1082 /// for the variable (if any).
1083 /// \param VD Threadprivate variable.
1084 /// \param VDAddr Address of the global variable \a VD.
1085 /// \param Loc Location of threadprivate declaration.
1086 /// \param PerformInit true if initialization expression is not constant.
1087 virtual llvm::Function *
1088 emitThreadPrivateVarDefinition(const VarDecl *VD, Address VDAddr,
1089 SourceLocation Loc, bool PerformInit,
1090 CodeGenFunction *CGF = nullptr);
1092 /// Emit a code for initialization of declare target variable.
1093 /// \param VD Declare target variable.
1094 /// \param Addr Address of the global variable \a VD.
1095 /// \param PerformInit true if initialization expression is not constant.
1096 virtual bool emitDeclareTargetVarDefinition(const VarDecl *VD,
1097 llvm::GlobalVariable *Addr,
1098 bool PerformInit);
1100 /// Emit code for handling declare target functions in the runtime.
1101 /// \param FD Declare target function.
1102 /// \param Addr Address of the global \a FD.
1103 /// \param PerformInit true if initialization expression is not constant.
1104 virtual void emitDeclareTargetFunction(const FunctionDecl *FD,
1105 llvm::GlobalValue *GV);
1107 /// Creates artificial threadprivate variable with name \p Name and type \p
1108 /// VarType.
1109 /// \param VarType Type of the artificial threadprivate variable.
1110 /// \param Name Name of the artificial threadprivate variable.
1111 virtual Address getAddrOfArtificialThreadPrivate(CodeGenFunction &CGF,
1112 QualType VarType,
1113 StringRef Name);
1115 /// Emit flush of the variables specified in 'omp flush' directive.
1116 /// \param Vars List of variables to flush.
1117 virtual void emitFlush(CodeGenFunction &CGF, ArrayRef<const Expr *> Vars,
1118 SourceLocation Loc, llvm::AtomicOrdering AO);
1120 /// Emit task region for the task directive. The task region is
1121 /// emitted in several steps:
1122 /// 1. Emit a call to kmp_task_t *__kmpc_omp_task_alloc(ident_t *, kmp_int32
1123 /// gtid, kmp_int32 flags, size_t sizeof_kmp_task_t, size_t sizeof_shareds,
1124 /// kmp_routine_entry_t *task_entry). Here task_entry is a pointer to the
1125 /// function:
1126 /// kmp_int32 .omp_task_entry.(kmp_int32 gtid, kmp_task_t *tt) {
1127 /// TaskFunction(gtid, tt->part_id, tt->shareds);
1128 /// return 0;
1129 /// }
1130 /// 2. Copy a list of shared variables to field shareds of the resulting
1131 /// structure kmp_task_t returned by the previous call (if any).
1132 /// 3. Copy a pointer to destructions function to field destructions of the
1133 /// resulting structure kmp_task_t.
1134 /// 4. Emit a call to kmp_int32 __kmpc_omp_task(ident_t *, kmp_int32 gtid,
1135 /// kmp_task_t *new_task), where new_task is a resulting structure from
1136 /// previous items.
1137 /// \param D Current task directive.
1138 /// \param TaskFunction An LLVM function with type void (*)(i32 /*gtid*/, i32
1139 /// /*part_id*/, captured_struct */*__context*/);
1140 /// \param SharedsTy A type which contains references the shared variables.
1141 /// \param Shareds Context with the list of shared variables from the \p
1142 /// TaskFunction.
1143 /// \param IfCond Not a nullptr if 'if' clause was specified, nullptr
1144 /// otherwise.
1145 /// \param Data Additional data for task generation like tiednsee, final
1146 /// state, list of privates etc.
1147 virtual void emitTaskCall(CodeGenFunction &CGF, SourceLocation Loc,
1148 const OMPExecutableDirective &D,
1149 llvm::Function *TaskFunction, QualType SharedsTy,
1150 Address Shareds, const Expr *IfCond,
1151 const OMPTaskDataTy &Data);
1153 /// Emit task region for the taskloop directive. The taskloop region is
1154 /// emitted in several steps:
1155 /// 1. Emit a call to kmp_task_t *__kmpc_omp_task_alloc(ident_t *, kmp_int32
1156 /// gtid, kmp_int32 flags, size_t sizeof_kmp_task_t, size_t sizeof_shareds,
1157 /// kmp_routine_entry_t *task_entry). Here task_entry is a pointer to the
1158 /// function:
1159 /// kmp_int32 .omp_task_entry.(kmp_int32 gtid, kmp_task_t *tt) {
1160 /// TaskFunction(gtid, tt->part_id, tt->shareds);
1161 /// return 0;
1162 /// }
1163 /// 2. Copy a list of shared variables to field shareds of the resulting
1164 /// structure kmp_task_t returned by the previous call (if any).
1165 /// 3. Copy a pointer to destructions function to field destructions of the
1166 /// resulting structure kmp_task_t.
1167 /// 4. Emit a call to void __kmpc_taskloop(ident_t *loc, int gtid, kmp_task_t
1168 /// *task, int if_val, kmp_uint64 *lb, kmp_uint64 *ub, kmp_int64 st, int
1169 /// nogroup, int sched, kmp_uint64 grainsize, void *task_dup ), where new_task
1170 /// is a resulting structure from
1171 /// previous items.
1172 /// \param D Current task directive.
1173 /// \param TaskFunction An LLVM function with type void (*)(i32 /*gtid*/, i32
1174 /// /*part_id*/, captured_struct */*__context*/);
1175 /// \param SharedsTy A type which contains references the shared variables.
1176 /// \param Shareds Context with the list of shared variables from the \p
1177 /// TaskFunction.
1178 /// \param IfCond Not a nullptr if 'if' clause was specified, nullptr
1179 /// otherwise.
1180 /// \param Data Additional data for task generation like tiednsee, final
1181 /// state, list of privates etc.
1182 virtual void emitTaskLoopCall(CodeGenFunction &CGF, SourceLocation Loc,
1183 const OMPLoopDirective &D,
1184 llvm::Function *TaskFunction,
1185 QualType SharedsTy, Address Shareds,
1186 const Expr *IfCond, const OMPTaskDataTy &Data);
1188 /// Emit code for the directive that does not require outlining.
1190 /// \param InnermostKind Kind of innermost directive (for simple directives it
1191 /// is a directive itself, for combined - its innermost directive).
1192 /// \param CodeGen Code generation sequence for the \a D directive.
1193 /// \param HasCancel true if region has inner cancel directive, false
1194 /// otherwise.
1195 virtual void emitInlinedDirective(CodeGenFunction &CGF,
1196 OpenMPDirectiveKind InnermostKind,
1197 const RegionCodeGenTy &CodeGen,
1198 bool HasCancel = false);
1200 /// Emits reduction function.
1201 /// \param ReducerName Name of the function calling the reduction.
1202 /// \param ArgsElemType Array type containing pointers to reduction variables.
1203 /// \param Privates List of private copies for original reduction arguments.
1204 /// \param LHSExprs List of LHS in \a ReductionOps reduction operations.
1205 /// \param RHSExprs List of RHS in \a ReductionOps reduction operations.
1206 /// \param ReductionOps List of reduction operations in form 'LHS binop RHS'
1207 /// or 'operator binop(LHS, RHS)'.
1208 llvm::Function *emitReductionFunction(
1209 StringRef ReducerName, SourceLocation Loc, llvm::Type *ArgsElemType,
1210 ArrayRef<const Expr *> Privates, ArrayRef<const Expr *> LHSExprs,
1211 ArrayRef<const Expr *> RHSExprs, ArrayRef<const Expr *> ReductionOps);
1213 /// Emits single reduction combiner
1214 void emitSingleReductionCombiner(CodeGenFunction &CGF,
1215 const Expr *ReductionOp,
1216 const Expr *PrivateRef,
1217 const DeclRefExpr *LHS,
1218 const DeclRefExpr *RHS);
1220 struct ReductionOptionsTy {
1221 bool WithNowait;
1222 bool SimpleReduction;
1223 OpenMPDirectiveKind ReductionKind;
1225 /// Emit a code for reduction clause. Next code should be emitted for
1226 /// reduction:
1227 /// \code
1229 /// static kmp_critical_name lock = { 0 };
1231 /// void reduce_func(void *lhs[<n>], void *rhs[<n>]) {
1232 /// ...
1233 /// *(Type<i>*)lhs[i] = RedOp<i>(*(Type<i>*)lhs[i], *(Type<i>*)rhs[i]);
1234 /// ...
1235 /// }
1237 /// ...
1238 /// void *RedList[<n>] = {&<RHSExprs>[0], ..., &<RHSExprs>[<n>-1]};
1239 /// switch (__kmpc_reduce{_nowait}(<loc>, <gtid>, <n>, sizeof(RedList),
1240 /// RedList, reduce_func, &<lock>)) {
1241 /// case 1:
1242 /// ...
1243 /// <LHSExprs>[i] = RedOp<i>(*<LHSExprs>[i], *<RHSExprs>[i]);
1244 /// ...
1245 /// __kmpc_end_reduce{_nowait}(<loc>, <gtid>, &<lock>);
1246 /// break;
1247 /// case 2:
1248 /// ...
1249 /// Atomic(<LHSExprs>[i] = RedOp<i>(*<LHSExprs>[i], *<RHSExprs>[i]));
1250 /// ...
1251 /// break;
1252 /// default:;
1253 /// }
1254 /// \endcode
1256 /// \param Privates List of private copies for original reduction arguments.
1257 /// \param LHSExprs List of LHS in \a ReductionOps reduction operations.
1258 /// \param RHSExprs List of RHS in \a ReductionOps reduction operations.
1259 /// \param ReductionOps List of reduction operations in form 'LHS binop RHS'
1260 /// or 'operator binop(LHS, RHS)'.
1261 /// \param Options List of options for reduction codegen:
1262 /// WithNowait true if parent directive has also nowait clause, false
1263 /// otherwise.
1264 /// SimpleReduction Emit reduction operation only. Used for omp simd
1265 /// directive on the host.
1266 /// ReductionKind The kind of reduction to perform.
1267 virtual void emitReduction(CodeGenFunction &CGF, SourceLocation Loc,
1268 ArrayRef<const Expr *> Privates,
1269 ArrayRef<const Expr *> LHSExprs,
1270 ArrayRef<const Expr *> RHSExprs,
1271 ArrayRef<const Expr *> ReductionOps,
1272 ReductionOptionsTy Options);
1274 /// Emit a code for initialization of task reduction clause. Next code
1275 /// should be emitted for reduction:
1276 /// \code
1278 /// _taskred_item_t red_data[n];
1279 /// ...
1280 /// red_data[i].shar = &shareds[i];
1281 /// red_data[i].orig = &origs[i];
1282 /// red_data[i].size = sizeof(origs[i]);
1283 /// red_data[i].f_init = (void*)RedInit<i>;
1284 /// red_data[i].f_fini = (void*)RedDest<i>;
1285 /// red_data[i].f_comb = (void*)RedOp<i>;
1286 /// red_data[i].flags = <Flag_i>;
1287 /// ...
1288 /// void* tg1 = __kmpc_taskred_init(gtid, n, red_data);
1289 /// \endcode
1290 /// For reduction clause with task modifier it emits the next call:
1291 /// \code
1293 /// _taskred_item_t red_data[n];
1294 /// ...
1295 /// red_data[i].shar = &shareds[i];
1296 /// red_data[i].orig = &origs[i];
1297 /// red_data[i].size = sizeof(origs[i]);
1298 /// red_data[i].f_init = (void*)RedInit<i>;
1299 /// red_data[i].f_fini = (void*)RedDest<i>;
1300 /// red_data[i].f_comb = (void*)RedOp<i>;
1301 /// red_data[i].flags = <Flag_i>;
1302 /// ...
1303 /// void* tg1 = __kmpc_taskred_modifier_init(loc, gtid, is_worksharing, n,
1304 /// red_data);
1305 /// \endcode
1306 /// \param LHSExprs List of LHS in \a Data.ReductionOps reduction operations.
1307 /// \param RHSExprs List of RHS in \a Data.ReductionOps reduction operations.
1308 /// \param Data Additional data for task generation like tiedness, final
1309 /// state, list of privates, reductions etc.
1310 virtual llvm::Value *emitTaskReductionInit(CodeGenFunction &CGF,
1311 SourceLocation Loc,
1312 ArrayRef<const Expr *> LHSExprs,
1313 ArrayRef<const Expr *> RHSExprs,
1314 const OMPTaskDataTy &Data);
1316 /// Emits the following code for reduction clause with task modifier:
1317 /// \code
1318 /// __kmpc_task_reduction_modifier_fini(loc, gtid, is_worksharing);
1319 /// \endcode
1320 virtual void emitTaskReductionFini(CodeGenFunction &CGF, SourceLocation Loc,
1321 bool IsWorksharingReduction);
1323 /// Required to resolve existing problems in the runtime. Emits threadprivate
1324 /// variables to store the size of the VLAs/array sections for
1325 /// initializer/combiner/finalizer functions.
1326 /// \param RCG Allows to reuse an existing data for the reductions.
1327 /// \param N Reduction item for which fixups must be emitted.
1328 virtual void emitTaskReductionFixups(CodeGenFunction &CGF, SourceLocation Loc,
1329 ReductionCodeGen &RCG, unsigned N);
1331 /// Get the address of `void *` type of the privatue copy of the reduction
1332 /// item specified by the \p SharedLVal.
1333 /// \param ReductionsPtr Pointer to the reduction data returned by the
1334 /// emitTaskReductionInit function.
1335 /// \param SharedLVal Address of the original reduction item.
1336 virtual Address getTaskReductionItem(CodeGenFunction &CGF, SourceLocation Loc,
1337 llvm::Value *ReductionsPtr,
1338 LValue SharedLVal);
1340 /// Emit code for 'taskwait' directive.
1341 virtual void emitTaskwaitCall(CodeGenFunction &CGF, SourceLocation Loc,
1342 const OMPTaskDataTy &Data);
1344 /// Emit code for 'cancellation point' construct.
1345 /// \param CancelRegion Region kind for which the cancellation point must be
1346 /// emitted.
1348 virtual void emitCancellationPointCall(CodeGenFunction &CGF,
1349 SourceLocation Loc,
1350 OpenMPDirectiveKind CancelRegion);
1352 /// Emit code for 'cancel' construct.
1353 /// \param IfCond Condition in the associated 'if' clause, if it was
1354 /// specified, nullptr otherwise.
1355 /// \param CancelRegion Region kind for which the cancel must be emitted.
1357 virtual void emitCancelCall(CodeGenFunction &CGF, SourceLocation Loc,
1358 const Expr *IfCond,
1359 OpenMPDirectiveKind CancelRegion);
1361 /// Emit outilined function for 'target' directive.
1362 /// \param D Directive to emit.
1363 /// \param ParentName Name of the function that encloses the target region.
1364 /// \param OutlinedFn Outlined function value to be defined by this call.
1365 /// \param OutlinedFnID Outlined function ID value to be defined by this call.
1366 /// \param IsOffloadEntry True if the outlined function is an offload entry.
1367 /// \param CodeGen Code generation sequence for the \a D directive.
1368 /// An outlined function may not be an entry if, e.g. the if clause always
1369 /// evaluates to false.
1370 virtual void emitTargetOutlinedFunction(const OMPExecutableDirective &D,
1371 StringRef ParentName,
1372 llvm::Function *&OutlinedFn,
1373 llvm::Constant *&OutlinedFnID,
1374 bool IsOffloadEntry,
1375 const RegionCodeGenTy &CodeGen);
1377 /// Emit the target offloading code associated with \a D. The emitted
1378 /// code attempts offloading the execution to the device, an the event of
1379 /// a failure it executes the host version outlined in \a OutlinedFn.
1380 /// \param D Directive to emit.
1381 /// \param OutlinedFn Host version of the code to be offloaded.
1382 /// \param OutlinedFnID ID of host version of the code to be offloaded.
1383 /// \param IfCond Expression evaluated in if clause associated with the target
1384 /// directive, or null if no if clause is used.
1385 /// \param Device Expression evaluated in device clause associated with the
1386 /// target directive, or null if no device clause is used and device modifier.
1387 /// \param SizeEmitter Callback to emit number of iterations for loop-based
1388 /// directives.
1389 virtual void emitTargetCall(
1390 CodeGenFunction &CGF, const OMPExecutableDirective &D,
1391 llvm::Function *OutlinedFn, llvm::Value *OutlinedFnID, const Expr *IfCond,
1392 llvm::PointerIntPair<const Expr *, 2, OpenMPDeviceClauseModifier> Device,
1393 llvm::function_ref<llvm::Value *(CodeGenFunction &CGF,
1394 const OMPLoopDirective &D)>
1395 SizeEmitter);
1397 /// Emit the target regions enclosed in \a GD function definition or
1398 /// the function itself in case it is a valid device function. Returns true if
1399 /// \a GD was dealt with successfully.
1400 /// \param GD Function to scan.
1401 virtual bool emitTargetFunctions(GlobalDecl GD);
1403 /// Emit the global variable if it is a valid device global variable.
1404 /// Returns true if \a GD was dealt with successfully.
1405 /// \param GD Variable declaration to emit.
1406 virtual bool emitTargetGlobalVariable(GlobalDecl GD);
1408 /// Checks if the provided global decl \a GD is a declare target variable and
1409 /// registers it when emitting code for the host.
1410 virtual void registerTargetGlobalVariable(const VarDecl *VD,
1411 llvm::Constant *Addr);
1413 /// Emit the global \a GD if it is meaningful for the target. Returns
1414 /// if it was emitted successfully.
1415 /// \param GD Global to scan.
1416 virtual bool emitTargetGlobal(GlobalDecl GD);
1418 /// Creates and returns a registration function for when at least one
1419 /// requires directives was used in the current module.
1420 llvm::Function *emitRequiresDirectiveRegFun();
1422 /// Creates all the offload entries in the current compilation unit
1423 /// along with the associated metadata.
1424 void createOffloadEntriesAndInfoMetadata();
1426 /// Emits code for teams call of the \a OutlinedFn with
1427 /// variables captured in a record which address is stored in \a
1428 /// CapturedStruct.
1429 /// \param OutlinedFn Outlined function to be run by team masters. Type of
1430 /// this function is void(*)(kmp_int32 *, kmp_int32, struct context_vars*).
1431 /// \param CapturedVars A pointer to the record with the references to
1432 /// variables used in \a OutlinedFn function.
1434 virtual void emitTeamsCall(CodeGenFunction &CGF,
1435 const OMPExecutableDirective &D,
1436 SourceLocation Loc, llvm::Function *OutlinedFn,
1437 ArrayRef<llvm::Value *> CapturedVars);
1439 /// Emits call to void __kmpc_push_num_teams(ident_t *loc, kmp_int32
1440 /// global_tid, kmp_int32 num_teams, kmp_int32 thread_limit) to generate code
1441 /// for num_teams clause.
1442 /// \param NumTeams An integer expression of teams.
1443 /// \param ThreadLimit An integer expression of threads.
1444 virtual void emitNumTeamsClause(CodeGenFunction &CGF, const Expr *NumTeams,
1445 const Expr *ThreadLimit, SourceLocation Loc);
1447 /// Emits call to void __kmpc_set_thread_limit(ident_t *loc, kmp_int32
1448 /// global_tid, kmp_int32 thread_limit) to generate code for
1449 /// thread_limit clause on target directive
1450 /// \param ThreadLimit An integer expression of threads.
1451 virtual void emitThreadLimitClause(CodeGenFunction &CGF,
1452 const Expr *ThreadLimit,
1453 SourceLocation Loc);
1455 /// Struct that keeps all the relevant information that should be kept
1456 /// throughout a 'target data' region.
1457 class TargetDataInfo : public llvm::OpenMPIRBuilder::TargetDataInfo {
1458 public:
1459 explicit TargetDataInfo() : llvm::OpenMPIRBuilder::TargetDataInfo() {}
1460 explicit TargetDataInfo(bool RequiresDevicePointerInfo,
1461 bool SeparateBeginEndCalls)
1462 : llvm::OpenMPIRBuilder::TargetDataInfo(RequiresDevicePointerInfo,
1463 SeparateBeginEndCalls) {}
1464 /// Map between the a declaration of a capture and the corresponding new
1465 /// llvm address where the runtime returns the device pointers.
1466 llvm::DenseMap<const ValueDecl *, llvm::Value *> CaptureDeviceAddrMap;
1469 /// Emit the target data mapping code associated with \a D.
1470 /// \param D Directive to emit.
1471 /// \param IfCond Expression evaluated in if clause associated with the
1472 /// target directive, or null if no device clause is used.
1473 /// \param Device Expression evaluated in device clause associated with the
1474 /// target directive, or null if no device clause is used.
1475 /// \param Info A record used to store information that needs to be preserved
1476 /// until the region is closed.
1477 virtual void emitTargetDataCalls(CodeGenFunction &CGF,
1478 const OMPExecutableDirective &D,
1479 const Expr *IfCond, const Expr *Device,
1480 const RegionCodeGenTy &CodeGen,
1481 CGOpenMPRuntime::TargetDataInfo &Info);
1483 /// Emit the data mapping/movement code associated with the directive
1484 /// \a D that should be of the form 'target [{enter|exit} data | update]'.
1485 /// \param D Directive to emit.
1486 /// \param IfCond Expression evaluated in if clause associated with the target
1487 /// directive, or null if no if clause is used.
1488 /// \param Device Expression evaluated in device clause associated with the
1489 /// target directive, or null if no device clause is used.
1490 virtual void emitTargetDataStandAloneCall(CodeGenFunction &CGF,
1491 const OMPExecutableDirective &D,
1492 const Expr *IfCond,
1493 const Expr *Device);
1495 /// Marks function \a Fn with properly mangled versions of vector functions.
1496 /// \param FD Function marked as 'declare simd'.
1497 /// \param Fn LLVM function that must be marked with 'declare simd'
1498 /// attributes.
1499 virtual void emitDeclareSimdFunction(const FunctionDecl *FD,
1500 llvm::Function *Fn);
1502 /// Emit initialization for doacross loop nesting support.
1503 /// \param D Loop-based construct used in doacross nesting construct.
1504 virtual void emitDoacrossInit(CodeGenFunction &CGF, const OMPLoopDirective &D,
1505 ArrayRef<Expr *> NumIterations);
1507 /// Emit code for doacross ordered directive with 'depend' clause.
1508 /// \param C 'depend' clause with 'sink|source' dependency kind.
1509 virtual void emitDoacrossOrdered(CodeGenFunction &CGF,
1510 const OMPDependClause *C);
1512 /// Emit code for doacross ordered directive with 'doacross' clause.
1513 /// \param C 'doacross' clause with 'sink|source' dependence type.
1514 virtual void emitDoacrossOrdered(CodeGenFunction &CGF,
1515 const OMPDoacrossClause *C);
1517 /// Translates the native parameter of outlined function if this is required
1518 /// for target.
1519 /// \param FD Field decl from captured record for the parameter.
1520 /// \param NativeParam Parameter itself.
1521 virtual const VarDecl *translateParameter(const FieldDecl *FD,
1522 const VarDecl *NativeParam) const {
1523 return NativeParam;
1526 /// Gets the address of the native argument basing on the address of the
1527 /// target-specific parameter.
1528 /// \param NativeParam Parameter itself.
1529 /// \param TargetParam Corresponding target-specific parameter.
1530 virtual Address getParameterAddress(CodeGenFunction &CGF,
1531 const VarDecl *NativeParam,
1532 const VarDecl *TargetParam) const;
1534 /// Choose default schedule type and chunk value for the
1535 /// dist_schedule clause.
1536 virtual void getDefaultDistScheduleAndChunk(CodeGenFunction &CGF,
1537 const OMPLoopDirective &S, OpenMPDistScheduleClauseKind &ScheduleKind,
1538 llvm::Value *&Chunk) const {}
1540 /// Choose default schedule type and chunk value for the
1541 /// schedule clause.
1542 virtual void getDefaultScheduleAndChunk(CodeGenFunction &CGF,
1543 const OMPLoopDirective &S, OpenMPScheduleClauseKind &ScheduleKind,
1544 const Expr *&ChunkExpr) const;
1546 /// Emits call of the outlined function with the provided arguments,
1547 /// translating these arguments to correct target-specific arguments.
1548 virtual void
1549 emitOutlinedFunctionCall(CodeGenFunction &CGF, SourceLocation Loc,
1550 llvm::FunctionCallee OutlinedFn,
1551 ArrayRef<llvm::Value *> Args = std::nullopt) const;
1553 /// Emits OpenMP-specific function prolog.
1554 /// Required for device constructs.
1555 virtual void emitFunctionProlog(CodeGenFunction &CGF, const Decl *D);
1557 /// Gets the OpenMP-specific address of the local variable.
1558 virtual Address getAddressOfLocalVariable(CodeGenFunction &CGF,
1559 const VarDecl *VD);
1561 /// Marks the declaration as already emitted for the device code and returns
1562 /// true, if it was marked already, and false, otherwise.
1563 bool markAsGlobalTarget(GlobalDecl GD);
1565 /// Emit deferred declare target variables marked for deferred emission.
1566 void emitDeferredTargetDecls() const;
1568 /// Adjust some parameters for the target-based directives, like addresses of
1569 /// the variables captured by reference in lambdas.
1570 virtual void
1571 adjustTargetSpecificDataForLambdas(CodeGenFunction &CGF,
1572 const OMPExecutableDirective &D) const;
1574 /// Perform check on requires decl to ensure that target architecture
1575 /// supports unified addressing
1576 virtual void processRequiresDirective(const OMPRequiresDecl *D);
1578 /// Gets default memory ordering as specified in requires directive.
1579 llvm::AtomicOrdering getDefaultMemoryOrdering() const;
1581 /// Checks if the variable has associated OMPAllocateDeclAttr attribute with
1582 /// the predefined allocator and translates it into the corresponding address
1583 /// space.
1584 virtual bool hasAllocateAttributeForGlobalVar(const VarDecl *VD, LangAS &AS);
1586 /// Return whether the unified_shared_memory has been specified.
1587 bool hasRequiresUnifiedSharedMemory() const;
1589 /// Checks if the \p VD variable is marked as nontemporal declaration in
1590 /// current context.
1591 bool isNontemporalDecl(const ValueDecl *VD) const;
1593 /// Create specialized alloca to handle lastprivate conditionals.
1594 Address emitLastprivateConditionalInit(CodeGenFunction &CGF,
1595 const VarDecl *VD);
1597 /// Checks if the provided \p LVal is lastprivate conditional and emits the
1598 /// code to update the value of the original variable.
1599 /// \code
1600 /// lastprivate(conditional: a)
1601 /// ...
1602 /// <type> a;
1603 /// lp_a = ...;
1604 /// #pragma omp critical(a)
1605 /// if (last_iv_a <= iv) {
1606 /// last_iv_a = iv;
1607 /// global_a = lp_a;
1608 /// }
1609 /// \endcode
1610 virtual void checkAndEmitLastprivateConditional(CodeGenFunction &CGF,
1611 const Expr *LHS);
1613 /// Checks if the lastprivate conditional was updated in inner region and
1614 /// writes the value.
1615 /// \code
1616 /// lastprivate(conditional: a)
1617 /// ...
1618 /// <type> a;bool Fired = false;
1619 /// #pragma omp ... shared(a)
1620 /// {
1621 /// lp_a = ...;
1622 /// Fired = true;
1623 /// }
1624 /// if (Fired) {
1625 /// #pragma omp critical(a)
1626 /// if (last_iv_a <= iv) {
1627 /// last_iv_a = iv;
1628 /// global_a = lp_a;
1629 /// }
1630 /// Fired = false;
1631 /// }
1632 /// \endcode
1633 virtual void checkAndEmitSharedLastprivateConditional(
1634 CodeGenFunction &CGF, const OMPExecutableDirective &D,
1635 const llvm::DenseSet<CanonicalDeclPtr<const VarDecl>> &IgnoredDecls);
1637 /// Gets the address of the global copy used for lastprivate conditional
1638 /// update, if any.
1639 /// \param PrivLVal LValue for the private copy.
1640 /// \param VD Original lastprivate declaration.
1641 virtual void emitLastprivateConditionalFinalUpdate(CodeGenFunction &CGF,
1642 LValue PrivLVal,
1643 const VarDecl *VD,
1644 SourceLocation Loc);
1646 /// Emits list of dependecies based on the provided data (array of
1647 /// dependence/expression pairs).
1648 /// \returns Pointer to the first element of the array casted to VoidPtr type.
1649 std::pair<llvm::Value *, Address>
1650 emitDependClause(CodeGenFunction &CGF,
1651 ArrayRef<OMPTaskDataTy::DependData> Dependencies,
1652 SourceLocation Loc);
1654 /// Emits list of dependecies based on the provided data (array of
1655 /// dependence/expression pairs) for depobj construct. In this case, the
1656 /// variable is allocated in dynamically. \returns Pointer to the first
1657 /// element of the array casted to VoidPtr type.
1658 Address emitDepobjDependClause(CodeGenFunction &CGF,
1659 const OMPTaskDataTy::DependData &Dependencies,
1660 SourceLocation Loc);
1662 /// Emits the code to destroy the dependency object provided in depobj
1663 /// directive.
1664 void emitDestroyClause(CodeGenFunction &CGF, LValue DepobjLVal,
1665 SourceLocation Loc);
1667 /// Updates the dependency kind in the specified depobj object.
1668 /// \param DepobjLVal LValue for the main depobj object.
1669 /// \param NewDepKind New dependency kind.
1670 void emitUpdateClause(CodeGenFunction &CGF, LValue DepobjLVal,
1671 OpenMPDependClauseKind NewDepKind, SourceLocation Loc);
1673 /// Initializes user defined allocators specified in the uses_allocators
1674 /// clauses.
1675 void emitUsesAllocatorsInit(CodeGenFunction &CGF, const Expr *Allocator,
1676 const Expr *AllocatorTraits);
1678 /// Destroys user defined allocators specified in the uses_allocators clause.
1679 void emitUsesAllocatorsFini(CodeGenFunction &CGF, const Expr *Allocator);
1681 /// Returns true if the variable is a local variable in untied task.
1682 bool isLocalVarInUntiedTask(CodeGenFunction &CGF, const VarDecl *VD) const;
1685 /// Class supports emissionof SIMD-only code.
1686 class CGOpenMPSIMDRuntime final : public CGOpenMPRuntime {
1687 public:
1688 explicit CGOpenMPSIMDRuntime(CodeGenModule &CGM) : CGOpenMPRuntime(CGM) {}
1689 ~CGOpenMPSIMDRuntime() override {}
1691 /// Emits outlined function for the specified OpenMP parallel directive
1692 /// \a D. This outlined function has type void(*)(kmp_int32 *ThreadID,
1693 /// kmp_int32 BoundID, struct context_vars*).
1694 /// \param CGF Reference to current CodeGenFunction.
1695 /// \param D OpenMP directive.
1696 /// \param ThreadIDVar Variable for thread id in the current OpenMP region.
1697 /// \param InnermostKind Kind of innermost directive (for simple directives it
1698 /// is a directive itself, for combined - its innermost directive).
1699 /// \param CodeGen Code generation sequence for the \a D directive.
1700 llvm::Function *emitParallelOutlinedFunction(
1701 CodeGenFunction &CGF, const OMPExecutableDirective &D,
1702 const VarDecl *ThreadIDVar, OpenMPDirectiveKind InnermostKind,
1703 const RegionCodeGenTy &CodeGen) override;
1705 /// Emits outlined function for the specified OpenMP teams directive
1706 /// \a D. This outlined function has type void(*)(kmp_int32 *ThreadID,
1707 /// kmp_int32 BoundID, struct context_vars*).
1708 /// \param CGF Reference to current CodeGenFunction.
1709 /// \param D OpenMP directive.
1710 /// \param ThreadIDVar Variable for thread id in the current OpenMP region.
1711 /// \param InnermostKind Kind of innermost directive (for simple directives it
1712 /// is a directive itself, for combined - its innermost directive).
1713 /// \param CodeGen Code generation sequence for the \a D directive.
1714 llvm::Function *emitTeamsOutlinedFunction(
1715 CodeGenFunction &CGF, const OMPExecutableDirective &D,
1716 const VarDecl *ThreadIDVar, OpenMPDirectiveKind InnermostKind,
1717 const RegionCodeGenTy &CodeGen) override;
1719 /// Emits outlined function for the OpenMP task directive \a D. This
1720 /// outlined function has type void(*)(kmp_int32 ThreadID, struct task_t*
1721 /// TaskT).
1722 /// \param D OpenMP directive.
1723 /// \param ThreadIDVar Variable for thread id in the current OpenMP region.
1724 /// \param PartIDVar Variable for partition id in the current OpenMP untied
1725 /// task region.
1726 /// \param TaskTVar Variable for task_t argument.
1727 /// \param InnermostKind Kind of innermost directive (for simple directives it
1728 /// is a directive itself, for combined - its innermost directive).
1729 /// \param CodeGen Code generation sequence for the \a D directive.
1730 /// \param Tied true if task is generated for tied task, false otherwise.
1731 /// \param NumberOfParts Number of parts in untied task. Ignored for tied
1732 /// tasks.
1734 llvm::Function *emitTaskOutlinedFunction(
1735 const OMPExecutableDirective &D, const VarDecl *ThreadIDVar,
1736 const VarDecl *PartIDVar, const VarDecl *TaskTVar,
1737 OpenMPDirectiveKind InnermostKind, const RegionCodeGenTy &CodeGen,
1738 bool Tied, unsigned &NumberOfParts) override;
1740 /// Emits code for parallel or serial call of the \a OutlinedFn with
1741 /// variables captured in a record which address is stored in \a
1742 /// CapturedStruct.
1743 /// \param OutlinedFn Outlined function to be run in parallel threads. Type of
1744 /// this function is void(*)(kmp_int32 *, kmp_int32, struct context_vars*).
1745 /// \param CapturedVars A pointer to the record with the references to
1746 /// variables used in \a OutlinedFn function.
1747 /// \param IfCond Condition in the associated 'if' clause, if it was
1748 /// specified, nullptr otherwise.
1749 /// \param NumThreads The value corresponding to the num_threads clause, if
1750 /// any, or nullptr.
1752 void emitParallelCall(CodeGenFunction &CGF, SourceLocation Loc,
1753 llvm::Function *OutlinedFn,
1754 ArrayRef<llvm::Value *> CapturedVars,
1755 const Expr *IfCond, llvm::Value *NumThreads) override;
1757 /// Emits a critical region.
1758 /// \param CriticalName Name of the critical region.
1759 /// \param CriticalOpGen Generator for the statement associated with the given
1760 /// critical region.
1761 /// \param Hint Value of the 'hint' clause (optional).
1762 void emitCriticalRegion(CodeGenFunction &CGF, StringRef CriticalName,
1763 const RegionCodeGenTy &CriticalOpGen,
1764 SourceLocation Loc,
1765 const Expr *Hint = nullptr) override;
1767 /// Emits a master region.
1768 /// \param MasterOpGen Generator for the statement associated with the given
1769 /// master region.
1770 void emitMasterRegion(CodeGenFunction &CGF,
1771 const RegionCodeGenTy &MasterOpGen,
1772 SourceLocation Loc) override;
1774 /// Emits a masked region.
1775 /// \param MaskedOpGen Generator for the statement associated with the given
1776 /// masked region.
1777 void emitMaskedRegion(CodeGenFunction &CGF,
1778 const RegionCodeGenTy &MaskedOpGen, SourceLocation Loc,
1779 const Expr *Filter = nullptr) override;
1781 /// Emits a masked region.
1782 /// \param MaskedOpGen Generator for the statement associated with the given
1783 /// masked region.
1785 /// Emits code for a taskyield directive.
1786 void emitTaskyieldCall(CodeGenFunction &CGF, SourceLocation Loc) override;
1788 /// Emit a taskgroup region.
1789 /// \param TaskgroupOpGen Generator for the statement associated with the
1790 /// given taskgroup region.
1791 void emitTaskgroupRegion(CodeGenFunction &CGF,
1792 const RegionCodeGenTy &TaskgroupOpGen,
1793 SourceLocation Loc) override;
1795 /// Emits a single region.
1796 /// \param SingleOpGen Generator for the statement associated with the given
1797 /// single region.
1798 void emitSingleRegion(CodeGenFunction &CGF,
1799 const RegionCodeGenTy &SingleOpGen, SourceLocation Loc,
1800 ArrayRef<const Expr *> CopyprivateVars,
1801 ArrayRef<const Expr *> DestExprs,
1802 ArrayRef<const Expr *> SrcExprs,
1803 ArrayRef<const Expr *> AssignmentOps) override;
1805 /// Emit an ordered region.
1806 /// \param OrderedOpGen Generator for the statement associated with the given
1807 /// ordered region.
1808 void emitOrderedRegion(CodeGenFunction &CGF,
1809 const RegionCodeGenTy &OrderedOpGen,
1810 SourceLocation Loc, bool IsThreads) override;
1812 /// Emit an implicit/explicit barrier for OpenMP threads.
1813 /// \param Kind Directive for which this implicit barrier call must be
1814 /// generated. Must be OMPD_barrier for explicit barrier generation.
1815 /// \param EmitChecks true if need to emit checks for cancellation barriers.
1816 /// \param ForceSimpleCall true simple barrier call must be emitted, false if
1817 /// runtime class decides which one to emit (simple or with cancellation
1818 /// checks).
1820 void emitBarrierCall(CodeGenFunction &CGF, SourceLocation Loc,
1821 OpenMPDirectiveKind Kind, bool EmitChecks = true,
1822 bool ForceSimpleCall = false) override;
1824 /// This is used for non static scheduled types and when the ordered
1825 /// clause is present on the loop construct.
1826 /// Depending on the loop schedule, it is necessary to call some runtime
1827 /// routine before start of the OpenMP loop to get the loop upper / lower
1828 /// bounds \a LB and \a UB and stride \a ST.
1830 /// \param CGF Reference to current CodeGenFunction.
1831 /// \param Loc Clang source location.
1832 /// \param ScheduleKind Schedule kind, specified by the 'schedule' clause.
1833 /// \param IVSize Size of the iteration variable in bits.
1834 /// \param IVSigned Sign of the iteration variable.
1835 /// \param Ordered true if loop is ordered, false otherwise.
1836 /// \param DispatchValues struct containing llvm values for lower bound, upper
1837 /// bound, and chunk expression.
1838 /// For the default (nullptr) value, the chunk 1 will be used.
1840 void emitForDispatchInit(CodeGenFunction &CGF, SourceLocation Loc,
1841 const OpenMPScheduleTy &ScheduleKind,
1842 unsigned IVSize, bool IVSigned, bool Ordered,
1843 const DispatchRTInput &DispatchValues) override;
1845 /// Call the appropriate runtime routine to initialize it before start
1846 /// of loop.
1848 /// This is used only in case of static schedule, when the user did not
1849 /// specify a ordered clause on the loop construct.
1850 /// Depending on the loop schedule, it is necessary to call some runtime
1851 /// routine before start of the OpenMP loop to get the loop upper / lower
1852 /// bounds LB and UB and stride ST.
1854 /// \param CGF Reference to current CodeGenFunction.
1855 /// \param Loc Clang source location.
1856 /// \param DKind Kind of the directive.
1857 /// \param ScheduleKind Schedule kind, specified by the 'schedule' clause.
1858 /// \param Values Input arguments for the construct.
1860 void emitForStaticInit(CodeGenFunction &CGF, SourceLocation Loc,
1861 OpenMPDirectiveKind DKind,
1862 const OpenMPScheduleTy &ScheduleKind,
1863 const StaticRTInput &Values) override;
1866 /// \param CGF Reference to current CodeGenFunction.
1867 /// \param Loc Clang source location.
1868 /// \param SchedKind Schedule kind, specified by the 'dist_schedule' clause.
1869 /// \param Values Input arguments for the construct.
1871 void emitDistributeStaticInit(CodeGenFunction &CGF, SourceLocation Loc,
1872 OpenMPDistScheduleClauseKind SchedKind,
1873 const StaticRTInput &Values) override;
1875 /// Call the appropriate runtime routine to notify that we finished
1876 /// iteration of the ordered loop with the dynamic scheduling.
1878 /// \param CGF Reference to current CodeGenFunction.
1879 /// \param Loc Clang source location.
1880 /// \param IVSize Size of the iteration variable in bits.
1881 /// \param IVSigned Sign of the iteration variable.
1883 void emitForOrderedIterationEnd(CodeGenFunction &CGF, SourceLocation Loc,
1884 unsigned IVSize, bool IVSigned) override;
1886 /// Call the appropriate runtime routine to notify that we finished
1887 /// all the work with current loop.
1889 /// \param CGF Reference to current CodeGenFunction.
1890 /// \param Loc Clang source location.
1891 /// \param DKind Kind of the directive for which the static finish is emitted.
1893 void emitForStaticFinish(CodeGenFunction &CGF, SourceLocation Loc,
1894 OpenMPDirectiveKind DKind) override;
1896 /// Call __kmpc_dispatch_next(
1897 /// ident_t *loc, kmp_int32 tid, kmp_int32 *p_lastiter,
1898 /// kmp_int[32|64] *p_lower, kmp_int[32|64] *p_upper,
1899 /// kmp_int[32|64] *p_stride);
1900 /// \param IVSize Size of the iteration variable in bits.
1901 /// \param IVSigned Sign of the iteration variable.
1902 /// \param IL Address of the output variable in which the flag of the
1903 /// last iteration is returned.
1904 /// \param LB Address of the output variable in which the lower iteration
1905 /// number is returned.
1906 /// \param UB Address of the output variable in which the upper iteration
1907 /// number is returned.
1908 /// \param ST Address of the output variable in which the stride value is
1909 /// returned.
1910 llvm::Value *emitForNext(CodeGenFunction &CGF, SourceLocation Loc,
1911 unsigned IVSize, bool IVSigned, Address IL,
1912 Address LB, Address UB, Address ST) override;
1914 /// Emits call to void __kmpc_push_num_threads(ident_t *loc, kmp_int32
1915 /// global_tid, kmp_int32 num_threads) to generate code for 'num_threads'
1916 /// clause.
1917 /// \param NumThreads An integer value of threads.
1918 void emitNumThreadsClause(CodeGenFunction &CGF, llvm::Value *NumThreads,
1919 SourceLocation Loc) override;
1921 /// Emit call to void __kmpc_push_proc_bind(ident_t *loc, kmp_int32
1922 /// global_tid, int proc_bind) to generate code for 'proc_bind' clause.
1923 void emitProcBindClause(CodeGenFunction &CGF,
1924 llvm::omp::ProcBindKind ProcBind,
1925 SourceLocation Loc) override;
1927 /// Returns address of the threadprivate variable for the current
1928 /// thread.
1929 /// \param VD Threadprivate variable.
1930 /// \param VDAddr Address of the global variable \a VD.
1931 /// \param Loc Location of the reference to threadprivate var.
1932 /// \return Address of the threadprivate variable for the current thread.
1933 Address getAddrOfThreadPrivate(CodeGenFunction &CGF, const VarDecl *VD,
1934 Address VDAddr, SourceLocation Loc) override;
1936 /// Emit a code for initialization of threadprivate variable. It emits
1937 /// a call to runtime library which adds initial value to the newly created
1938 /// threadprivate variable (if it is not constant) and registers destructor
1939 /// for the variable (if any).
1940 /// \param VD Threadprivate variable.
1941 /// \param VDAddr Address of the global variable \a VD.
1942 /// \param Loc Location of threadprivate declaration.
1943 /// \param PerformInit true if initialization expression is not constant.
1944 llvm::Function *
1945 emitThreadPrivateVarDefinition(const VarDecl *VD, Address VDAddr,
1946 SourceLocation Loc, bool PerformInit,
1947 CodeGenFunction *CGF = nullptr) override;
1949 /// Creates artificial threadprivate variable with name \p Name and type \p
1950 /// VarType.
1951 /// \param VarType Type of the artificial threadprivate variable.
1952 /// \param Name Name of the artificial threadprivate variable.
1953 Address getAddrOfArtificialThreadPrivate(CodeGenFunction &CGF,
1954 QualType VarType,
1955 StringRef Name) override;
1957 /// Emit flush of the variables specified in 'omp flush' directive.
1958 /// \param Vars List of variables to flush.
1959 void emitFlush(CodeGenFunction &CGF, ArrayRef<const Expr *> Vars,
1960 SourceLocation Loc, llvm::AtomicOrdering AO) override;
1962 /// Emit task region for the task directive. The task region is
1963 /// emitted in several steps:
1964 /// 1. Emit a call to kmp_task_t *__kmpc_omp_task_alloc(ident_t *, kmp_int32
1965 /// gtid, kmp_int32 flags, size_t sizeof_kmp_task_t, size_t sizeof_shareds,
1966 /// kmp_routine_entry_t *task_entry). Here task_entry is a pointer to the
1967 /// function:
1968 /// kmp_int32 .omp_task_entry.(kmp_int32 gtid, kmp_task_t *tt) {
1969 /// TaskFunction(gtid, tt->part_id, tt->shareds);
1970 /// return 0;
1971 /// }
1972 /// 2. Copy a list of shared variables to field shareds of the resulting
1973 /// structure kmp_task_t returned by the previous call (if any).
1974 /// 3. Copy a pointer to destructions function to field destructions of the
1975 /// resulting structure kmp_task_t.
1976 /// 4. Emit a call to kmp_int32 __kmpc_omp_task(ident_t *, kmp_int32 gtid,
1977 /// kmp_task_t *new_task), where new_task is a resulting structure from
1978 /// previous items.
1979 /// \param D Current task directive.
1980 /// \param TaskFunction An LLVM function with type void (*)(i32 /*gtid*/, i32
1981 /// /*part_id*/, captured_struct */*__context*/);
1982 /// \param SharedsTy A type which contains references the shared variables.
1983 /// \param Shareds Context with the list of shared variables from the \p
1984 /// TaskFunction.
1985 /// \param IfCond Not a nullptr if 'if' clause was specified, nullptr
1986 /// otherwise.
1987 /// \param Data Additional data for task generation like tiednsee, final
1988 /// state, list of privates etc.
1989 void emitTaskCall(CodeGenFunction &CGF, SourceLocation Loc,
1990 const OMPExecutableDirective &D,
1991 llvm::Function *TaskFunction, QualType SharedsTy,
1992 Address Shareds, const Expr *IfCond,
1993 const OMPTaskDataTy &Data) override;
1995 /// Emit task region for the taskloop directive. The taskloop region is
1996 /// emitted in several steps:
1997 /// 1. Emit a call to kmp_task_t *__kmpc_omp_task_alloc(ident_t *, kmp_int32
1998 /// gtid, kmp_int32 flags, size_t sizeof_kmp_task_t, size_t sizeof_shareds,
1999 /// kmp_routine_entry_t *task_entry). Here task_entry is a pointer to the
2000 /// function:
2001 /// kmp_int32 .omp_task_entry.(kmp_int32 gtid, kmp_task_t *tt) {
2002 /// TaskFunction(gtid, tt->part_id, tt->shareds);
2003 /// return 0;
2004 /// }
2005 /// 2. Copy a list of shared variables to field shareds of the resulting
2006 /// structure kmp_task_t returned by the previous call (if any).
2007 /// 3. Copy a pointer to destructions function to field destructions of the
2008 /// resulting structure kmp_task_t.
2009 /// 4. Emit a call to void __kmpc_taskloop(ident_t *loc, int gtid, kmp_task_t
2010 /// *task, int if_val, kmp_uint64 *lb, kmp_uint64 *ub, kmp_int64 st, int
2011 /// nogroup, int sched, kmp_uint64 grainsize, void *task_dup ), where new_task
2012 /// is a resulting structure from
2013 /// previous items.
2014 /// \param D Current task directive.
2015 /// \param TaskFunction An LLVM function with type void (*)(i32 /*gtid*/, i32
2016 /// /*part_id*/, captured_struct */*__context*/);
2017 /// \param SharedsTy A type which contains references the shared variables.
2018 /// \param Shareds Context with the list of shared variables from the \p
2019 /// TaskFunction.
2020 /// \param IfCond Not a nullptr if 'if' clause was specified, nullptr
2021 /// otherwise.
2022 /// \param Data Additional data for task generation like tiednsee, final
2023 /// state, list of privates etc.
2024 void emitTaskLoopCall(CodeGenFunction &CGF, SourceLocation Loc,
2025 const OMPLoopDirective &D, llvm::Function *TaskFunction,
2026 QualType SharedsTy, Address Shareds, const Expr *IfCond,
2027 const OMPTaskDataTy &Data) override;
2029 /// Emit a code for reduction clause. Next code should be emitted for
2030 /// reduction:
2031 /// \code
2033 /// static kmp_critical_name lock = { 0 };
2035 /// void reduce_func(void *lhs[<n>], void *rhs[<n>]) {
2036 /// ...
2037 /// *(Type<i>*)lhs[i] = RedOp<i>(*(Type<i>*)lhs[i], *(Type<i>*)rhs[i]);
2038 /// ...
2039 /// }
2041 /// ...
2042 /// void *RedList[<n>] = {&<RHSExprs>[0], ..., &<RHSExprs>[<n>-1]};
2043 /// switch (__kmpc_reduce{_nowait}(<loc>, <gtid>, <n>, sizeof(RedList),
2044 /// RedList, reduce_func, &<lock>)) {
2045 /// case 1:
2046 /// ...
2047 /// <LHSExprs>[i] = RedOp<i>(*<LHSExprs>[i], *<RHSExprs>[i]);
2048 /// ...
2049 /// __kmpc_end_reduce{_nowait}(<loc>, <gtid>, &<lock>);
2050 /// break;
2051 /// case 2:
2052 /// ...
2053 /// Atomic(<LHSExprs>[i] = RedOp<i>(*<LHSExprs>[i], *<RHSExprs>[i]));
2054 /// ...
2055 /// break;
2056 /// default:;
2057 /// }
2058 /// \endcode
2060 /// \param Privates List of private copies for original reduction arguments.
2061 /// \param LHSExprs List of LHS in \a ReductionOps reduction operations.
2062 /// \param RHSExprs List of RHS in \a ReductionOps reduction operations.
2063 /// \param ReductionOps List of reduction operations in form 'LHS binop RHS'
2064 /// or 'operator binop(LHS, RHS)'.
2065 /// \param Options List of options for reduction codegen:
2066 /// WithNowait true if parent directive has also nowait clause, false
2067 /// otherwise.
2068 /// SimpleReduction Emit reduction operation only. Used for omp simd
2069 /// directive on the host.
2070 /// ReductionKind The kind of reduction to perform.
2071 void emitReduction(CodeGenFunction &CGF, SourceLocation Loc,
2072 ArrayRef<const Expr *> Privates,
2073 ArrayRef<const Expr *> LHSExprs,
2074 ArrayRef<const Expr *> RHSExprs,
2075 ArrayRef<const Expr *> ReductionOps,
2076 ReductionOptionsTy Options) override;
2078 /// Emit a code for initialization of task reduction clause. Next code
2079 /// should be emitted for reduction:
2080 /// \code
2082 /// _taskred_item_t red_data[n];
2083 /// ...
2084 /// red_data[i].shar = &shareds[i];
2085 /// red_data[i].orig = &origs[i];
2086 /// red_data[i].size = sizeof(origs[i]);
2087 /// red_data[i].f_init = (void*)RedInit<i>;
2088 /// red_data[i].f_fini = (void*)RedDest<i>;
2089 /// red_data[i].f_comb = (void*)RedOp<i>;
2090 /// red_data[i].flags = <Flag_i>;
2091 /// ...
2092 /// void* tg1 = __kmpc_taskred_init(gtid, n, red_data);
2093 /// \endcode
2094 /// For reduction clause with task modifier it emits the next call:
2095 /// \code
2097 /// _taskred_item_t red_data[n];
2098 /// ...
2099 /// red_data[i].shar = &shareds[i];
2100 /// red_data[i].orig = &origs[i];
2101 /// red_data[i].size = sizeof(origs[i]);
2102 /// red_data[i].f_init = (void*)RedInit<i>;
2103 /// red_data[i].f_fini = (void*)RedDest<i>;
2104 /// red_data[i].f_comb = (void*)RedOp<i>;
2105 /// red_data[i].flags = <Flag_i>;
2106 /// ...
2107 /// void* tg1 = __kmpc_taskred_modifier_init(loc, gtid, is_worksharing, n,
2108 /// red_data);
2109 /// \endcode
2110 /// \param LHSExprs List of LHS in \a Data.ReductionOps reduction operations.
2111 /// \param RHSExprs List of RHS in \a Data.ReductionOps reduction operations.
2112 /// \param Data Additional data for task generation like tiedness, final
2113 /// state, list of privates, reductions etc.
2114 llvm::Value *emitTaskReductionInit(CodeGenFunction &CGF, SourceLocation Loc,
2115 ArrayRef<const Expr *> LHSExprs,
2116 ArrayRef<const Expr *> RHSExprs,
2117 const OMPTaskDataTy &Data) override;
2119 /// Emits the following code for reduction clause with task modifier:
2120 /// \code
2121 /// __kmpc_task_reduction_modifier_fini(loc, gtid, is_worksharing);
2122 /// \endcode
2123 void emitTaskReductionFini(CodeGenFunction &CGF, SourceLocation Loc,
2124 bool IsWorksharingReduction) override;
2126 /// Required to resolve existing problems in the runtime. Emits threadprivate
2127 /// variables to store the size of the VLAs/array sections for
2128 /// initializer/combiner/finalizer functions + emits threadprivate variable to
2129 /// store the pointer to the original reduction item for the custom
2130 /// initializer defined by declare reduction construct.
2131 /// \param RCG Allows to reuse an existing data for the reductions.
2132 /// \param N Reduction item for which fixups must be emitted.
2133 void emitTaskReductionFixups(CodeGenFunction &CGF, SourceLocation Loc,
2134 ReductionCodeGen &RCG, unsigned N) override;
2136 /// Get the address of `void *` type of the privatue copy of the reduction
2137 /// item specified by the \p SharedLVal.
2138 /// \param ReductionsPtr Pointer to the reduction data returned by the
2139 /// emitTaskReductionInit function.
2140 /// \param SharedLVal Address of the original reduction item.
2141 Address getTaskReductionItem(CodeGenFunction &CGF, SourceLocation Loc,
2142 llvm::Value *ReductionsPtr,
2143 LValue SharedLVal) override;
2145 /// Emit code for 'taskwait' directive.
2146 void emitTaskwaitCall(CodeGenFunction &CGF, SourceLocation Loc,
2147 const OMPTaskDataTy &Data) override;
2149 /// Emit code for 'cancellation point' construct.
2150 /// \param CancelRegion Region kind for which the cancellation point must be
2151 /// emitted.
2153 void emitCancellationPointCall(CodeGenFunction &CGF, SourceLocation Loc,
2154 OpenMPDirectiveKind CancelRegion) override;
2156 /// Emit code for 'cancel' construct.
2157 /// \param IfCond Condition in the associated 'if' clause, if it was
2158 /// specified, nullptr otherwise.
2159 /// \param CancelRegion Region kind for which the cancel must be emitted.
2161 void emitCancelCall(CodeGenFunction &CGF, SourceLocation Loc,
2162 const Expr *IfCond,
2163 OpenMPDirectiveKind CancelRegion) override;
2165 /// Emit outilined function for 'target' directive.
2166 /// \param D Directive to emit.
2167 /// \param ParentName Name of the function that encloses the target region.
2168 /// \param OutlinedFn Outlined function value to be defined by this call.
2169 /// \param OutlinedFnID Outlined function ID value to be defined by this call.
2170 /// \param IsOffloadEntry True if the outlined function is an offload entry.
2171 /// \param CodeGen Code generation sequence for the \a D directive.
2172 /// An outlined function may not be an entry if, e.g. the if clause always
2173 /// evaluates to false.
2174 void emitTargetOutlinedFunction(const OMPExecutableDirective &D,
2175 StringRef ParentName,
2176 llvm::Function *&OutlinedFn,
2177 llvm::Constant *&OutlinedFnID,
2178 bool IsOffloadEntry,
2179 const RegionCodeGenTy &CodeGen) override;
2181 /// Emit the target offloading code associated with \a D. The emitted
2182 /// code attempts offloading the execution to the device, an the event of
2183 /// a failure it executes the host version outlined in \a OutlinedFn.
2184 /// \param D Directive to emit.
2185 /// \param OutlinedFn Host version of the code to be offloaded.
2186 /// \param OutlinedFnID ID of host version of the code to be offloaded.
2187 /// \param IfCond Expression evaluated in if clause associated with the target
2188 /// directive, or null if no if clause is used.
2189 /// \param Device Expression evaluated in device clause associated with the
2190 /// target directive, or null if no device clause is used and device modifier.
2191 void emitTargetCall(
2192 CodeGenFunction &CGF, const OMPExecutableDirective &D,
2193 llvm::Function *OutlinedFn, llvm::Value *OutlinedFnID, const Expr *IfCond,
2194 llvm::PointerIntPair<const Expr *, 2, OpenMPDeviceClauseModifier> Device,
2195 llvm::function_ref<llvm::Value *(CodeGenFunction &CGF,
2196 const OMPLoopDirective &D)>
2197 SizeEmitter) override;
2199 /// Emit the target regions enclosed in \a GD function definition or
2200 /// the function itself in case it is a valid device function. Returns true if
2201 /// \a GD was dealt with successfully.
2202 /// \param GD Function to scan.
2203 bool emitTargetFunctions(GlobalDecl GD) override;
2205 /// Emit the global variable if it is a valid device global variable.
2206 /// Returns true if \a GD was dealt with successfully.
2207 /// \param GD Variable declaration to emit.
2208 bool emitTargetGlobalVariable(GlobalDecl GD) override;
2210 /// Emit the global \a GD if it is meaningful for the target. Returns
2211 /// if it was emitted successfully.
2212 /// \param GD Global to scan.
2213 bool emitTargetGlobal(GlobalDecl GD) override;
2215 /// Emits code for teams call of the \a OutlinedFn with
2216 /// variables captured in a record which address is stored in \a
2217 /// CapturedStruct.
2218 /// \param OutlinedFn Outlined function to be run by team masters. Type of
2219 /// this function is void(*)(kmp_int32 *, kmp_int32, struct context_vars*).
2220 /// \param CapturedVars A pointer to the record with the references to
2221 /// variables used in \a OutlinedFn function.
2223 void emitTeamsCall(CodeGenFunction &CGF, const OMPExecutableDirective &D,
2224 SourceLocation Loc, llvm::Function *OutlinedFn,
2225 ArrayRef<llvm::Value *> CapturedVars) override;
2227 /// Emits call to void __kmpc_push_num_teams(ident_t *loc, kmp_int32
2228 /// global_tid, kmp_int32 num_teams, kmp_int32 thread_limit) to generate code
2229 /// for num_teams clause.
2230 /// \param NumTeams An integer expression of teams.
2231 /// \param ThreadLimit An integer expression of threads.
2232 void emitNumTeamsClause(CodeGenFunction &CGF, const Expr *NumTeams,
2233 const Expr *ThreadLimit, SourceLocation Loc) override;
2235 /// Emit the target data mapping code associated with \a D.
2236 /// \param D Directive to emit.
2237 /// \param IfCond Expression evaluated in if clause associated with the
2238 /// target directive, or null if no device clause is used.
2239 /// \param Device Expression evaluated in device clause associated with the
2240 /// target directive, or null if no device clause is used.
2241 /// \param Info A record used to store information that needs to be preserved
2242 /// until the region is closed.
2243 void emitTargetDataCalls(CodeGenFunction &CGF,
2244 const OMPExecutableDirective &D, const Expr *IfCond,
2245 const Expr *Device, const RegionCodeGenTy &CodeGen,
2246 CGOpenMPRuntime::TargetDataInfo &Info) override;
2248 /// Emit the data mapping/movement code associated with the directive
2249 /// \a D that should be of the form 'target [{enter|exit} data | update]'.
2250 /// \param D Directive to emit.
2251 /// \param IfCond Expression evaluated in if clause associated with the target
2252 /// directive, or null if no if clause is used.
2253 /// \param Device Expression evaluated in device clause associated with the
2254 /// target directive, or null if no device clause is used.
2255 void emitTargetDataStandAloneCall(CodeGenFunction &CGF,
2256 const OMPExecutableDirective &D,
2257 const Expr *IfCond,
2258 const Expr *Device) override;
2260 /// Emit initialization for doacross loop nesting support.
2261 /// \param D Loop-based construct used in doacross nesting construct.
2262 void emitDoacrossInit(CodeGenFunction &CGF, const OMPLoopDirective &D,
2263 ArrayRef<Expr *> NumIterations) override;
2265 /// Emit code for doacross ordered directive with 'depend' clause.
2266 /// \param C 'depend' clause with 'sink|source' dependency kind.
2267 void emitDoacrossOrdered(CodeGenFunction &CGF,
2268 const OMPDependClause *C) override;
2270 /// Emit code for doacross ordered directive with 'doacross' clause.
2271 /// \param C 'doacross' clause with 'sink|source' dependence type.
2272 void emitDoacrossOrdered(CodeGenFunction &CGF,
2273 const OMPDoacrossClause *C) override;
2275 /// Translates the native parameter of outlined function if this is required
2276 /// for target.
2277 /// \param FD Field decl from captured record for the parameter.
2278 /// \param NativeParam Parameter itself.
2279 const VarDecl *translateParameter(const FieldDecl *FD,
2280 const VarDecl *NativeParam) const override;
2282 /// Gets the address of the native argument basing on the address of the
2283 /// target-specific parameter.
2284 /// \param NativeParam Parameter itself.
2285 /// \param TargetParam Corresponding target-specific parameter.
2286 Address getParameterAddress(CodeGenFunction &CGF, const VarDecl *NativeParam,
2287 const VarDecl *TargetParam) const override;
2289 /// Gets the OpenMP-specific address of the local variable.
2290 Address getAddressOfLocalVariable(CodeGenFunction &CGF,
2291 const VarDecl *VD) override {
2292 return Address::invalid();
2296 } // namespace CodeGen
2297 // Utility for openmp doacross clause kind
2298 namespace {
2299 template <typename T> class OMPDoacrossKind {
2300 public:
2301 bool isSink(const T *) { return false; }
2302 bool isSource(const T *) { return false; }
2304 template <> class OMPDoacrossKind<OMPDependClause> {
2305 public:
2306 bool isSink(const OMPDependClause *C) {
2307 return C->getDependencyKind() == OMPC_DEPEND_sink;
2309 bool isSource(const OMPDependClause *C) {
2310 return C->getDependencyKind() == OMPC_DEPEND_source;
2313 template <> class OMPDoacrossKind<OMPDoacrossClause> {
2314 public:
2315 bool isSource(const OMPDoacrossClause *C) {
2316 return C->getDependenceType() == OMPC_DOACROSS_source ||
2317 C->getDependenceType() == OMPC_DOACROSS_source_omp_cur_iteration;
2319 bool isSink(const OMPDoacrossClause *C) {
2320 return C->getDependenceType() == OMPC_DOACROSS_sink ||
2321 C->getDependenceType() == OMPC_DOACROSS_sink_omp_cur_iteration;
2324 } // namespace
2325 } // namespace clang
2327 #endif