forked from OSchip/llvm-project
963 lines
36 KiB
C++
963 lines
36 KiB
C++
//===- OpenMPIRBuilder.cpp - Builder for LLVM-IR for OpenMP directives ----===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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/// \file
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///
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/// This file implements the OpenMPIRBuilder class, which is used as a
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/// convenient way to create LLVM instructions for OpenMP directives.
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///
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//===----------------------------------------------------------------------===//
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#include "llvm/Frontend/OpenMP/OMPIRBuilder.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/ADT/StringSwitch.h"
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#include "llvm/IR/CFG.h"
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#include "llvm/IR/DebugInfo.h"
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#include "llvm/IR/IRBuilder.h"
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#include "llvm/IR/MDBuilder.h"
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#include "llvm/Support/CommandLine.h"
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#include "llvm/Support/Error.h"
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#include "llvm/Transforms/Utils/BasicBlockUtils.h"
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#include "llvm/Transforms/Utils/CodeExtractor.h"
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#include <sstream>
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#define DEBUG_TYPE "openmp-ir-builder"
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using namespace llvm;
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using namespace omp;
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using namespace types;
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static cl::opt<bool>
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OptimisticAttributes("openmp-ir-builder-optimistic-attributes", cl::Hidden,
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cl::desc("Use optimistic attributes describing "
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"'as-if' properties of runtime calls."),
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cl::init(false));
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void OpenMPIRBuilder::addAttributes(omp::RuntimeFunction FnID, Function &Fn) {
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LLVMContext &Ctx = Fn.getContext();
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#define OMP_ATTRS_SET(VarName, AttrSet) AttributeSet VarName = AttrSet;
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#include "llvm/Frontend/OpenMP/OMPKinds.def"
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// Add attributes to the new declaration.
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switch (FnID) {
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#define OMP_RTL_ATTRS(Enum, FnAttrSet, RetAttrSet, ArgAttrSets) \
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case Enum: \
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Fn.setAttributes( \
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AttributeList::get(Ctx, FnAttrSet, RetAttrSet, ArgAttrSets)); \
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break;
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#include "llvm/Frontend/OpenMP/OMPKinds.def"
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default:
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// Attributes are optional.
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break;
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}
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}
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Function *OpenMPIRBuilder::getOrCreateRuntimeFunction(RuntimeFunction FnID) {
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Function *Fn = nullptr;
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// Try to find the declation in the module first.
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switch (FnID) {
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#define OMP_RTL(Enum, Str, IsVarArg, ReturnType, ...) \
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case Enum: \
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Fn = M.getFunction(Str); \
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break;
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#include "llvm/Frontend/OpenMP/OMPKinds.def"
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}
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if (!Fn) {
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// Create a new declaration if we need one.
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switch (FnID) {
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#define OMP_RTL(Enum, Str, IsVarArg, ReturnType, ...) \
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case Enum: \
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Fn = Function::Create(FunctionType::get(ReturnType, \
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ArrayRef<Type *>{__VA_ARGS__}, \
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IsVarArg), \
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GlobalValue::ExternalLinkage, Str, M); \
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break;
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#include "llvm/Frontend/OpenMP/OMPKinds.def"
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}
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addAttributes(FnID, *Fn);
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}
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assert(Fn && "Failed to create OpenMP runtime function");
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return Fn;
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}
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void OpenMPIRBuilder::initialize() { initializeTypes(M); }
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void OpenMPIRBuilder::finalize() {
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for (OutlineInfo &OI : OutlineInfos) {
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assert(!OI.Blocks.empty() &&
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"Outlined regions should have at least a single block!");
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BasicBlock *RegEntryBB = OI.Blocks.front();
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Function *OuterFn = RegEntryBB->getParent();
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CodeExtractorAnalysisCache CEAC(*OuterFn);
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CodeExtractor Extractor(OI.Blocks, /* DominatorTree */ nullptr,
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/* AggregateArgs */ false,
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/* BlockFrequencyInfo */ nullptr,
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/* BranchProbabilityInfo */ nullptr,
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/* AssumptionCache */ nullptr,
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/* AllowVarArgs */ true,
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/* AllowAlloca */ true,
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/* Suffix */ ".omp_par");
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LLVM_DEBUG(dbgs() << "Before outlining: " << *OuterFn << "\n");
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assert(Extractor.isEligible() &&
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"Expected OpenMP outlining to be possible!");
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Function *OutlinedFn = Extractor.extractCodeRegion(CEAC);
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LLVM_DEBUG(dbgs() << "After outlining: " << *OuterFn << "\n");
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LLVM_DEBUG(dbgs() << " Outlined function: " << *OutlinedFn << "\n");
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assert(OutlinedFn->getReturnType()->isVoidTy() &&
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"OpenMP outlined functions should not return a value!");
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// For compability with the clang CG we move the outlined function after the
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// one with the parallel region.
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OutlinedFn->removeFromParent();
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M.getFunctionList().insertAfter(OuterFn->getIterator(), OutlinedFn);
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// Remove the artificial entry introduced by the extractor right away, we
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// made our own entry block after all.
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{
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BasicBlock &ArtificialEntry = OutlinedFn->getEntryBlock();
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assert(ArtificialEntry.getUniqueSuccessor() == RegEntryBB);
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assert(RegEntryBB->getUniquePredecessor() == &ArtificialEntry);
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RegEntryBB->moveBefore(&ArtificialEntry);
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ArtificialEntry.eraseFromParent();
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}
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assert(&OutlinedFn->getEntryBlock() == RegEntryBB);
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assert(OutlinedFn && OutlinedFn->getNumUses() == 1);
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// Run a user callback, e.g. to add attributes.
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if (OI.PostOutlineCB)
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OI.PostOutlineCB(*OutlinedFn);
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}
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// Allow finalize to be called multiple times.
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OutlineInfos.clear();
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}
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Value *OpenMPIRBuilder::getOrCreateIdent(Constant *SrcLocStr,
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IdentFlag LocFlags) {
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// Enable "C-mode".
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LocFlags |= OMP_IDENT_FLAG_KMPC;
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GlobalVariable *&DefaultIdent = IdentMap[{SrcLocStr, uint64_t(LocFlags)}];
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if (!DefaultIdent) {
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Constant *I32Null = ConstantInt::getNullValue(Int32);
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Constant *IdentData[] = {I32Null,
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ConstantInt::get(Int32, uint64_t(LocFlags)),
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I32Null, I32Null, SrcLocStr};
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Constant *Initializer = ConstantStruct::get(
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cast<StructType>(IdentPtr->getPointerElementType()), IdentData);
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// Look for existing encoding of the location + flags, not needed but
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// minimizes the difference to the existing solution while we transition.
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for (GlobalVariable &GV : M.getGlobalList())
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if (GV.getType() == IdentPtr && GV.hasInitializer())
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if (GV.getInitializer() == Initializer)
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return DefaultIdent = &GV;
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DefaultIdent = new GlobalVariable(M, IdentPtr->getPointerElementType(),
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/* isConstant = */ false,
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GlobalValue::PrivateLinkage, Initializer);
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DefaultIdent->setUnnamedAddr(GlobalValue::UnnamedAddr::Global);
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DefaultIdent->setAlignment(Align(8));
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}
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return DefaultIdent;
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}
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Constant *OpenMPIRBuilder::getOrCreateSrcLocStr(StringRef LocStr) {
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Constant *&SrcLocStr = SrcLocStrMap[LocStr];
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if (!SrcLocStr) {
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Constant *Initializer =
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ConstantDataArray::getString(M.getContext(), LocStr);
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// Look for existing encoding of the location, not needed but minimizes the
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// difference to the existing solution while we transition.
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for (GlobalVariable &GV : M.getGlobalList())
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if (GV.isConstant() && GV.hasInitializer() &&
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GV.getInitializer() == Initializer)
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return SrcLocStr = ConstantExpr::getPointerCast(&GV, Int8Ptr);
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SrcLocStr = Builder.CreateGlobalStringPtr(LocStr);
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}
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return SrcLocStr;
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}
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Constant *OpenMPIRBuilder::getOrCreateDefaultSrcLocStr() {
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return getOrCreateSrcLocStr(";unknown;unknown;0;0;;");
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}
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Constant *
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OpenMPIRBuilder::getOrCreateSrcLocStr(const LocationDescription &Loc) {
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DILocation *DIL = Loc.DL.get();
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if (!DIL)
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return getOrCreateDefaultSrcLocStr();
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StringRef Filename =
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!DIL->getFilename().empty() ? DIL->getFilename() : M.getName();
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StringRef Function = DIL->getScope()->getSubprogram()->getName();
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Function =
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!Function.empty() ? Function : Loc.IP.getBlock()->getParent()->getName();
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std::string LineStr = std::to_string(DIL->getLine());
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std::string ColumnStr = std::to_string(DIL->getColumn());
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std::stringstream SrcLocStr;
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SrcLocStr << ";" << Filename.data() << ";" << Function.data() << ";"
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<< LineStr << ";" << ColumnStr << ";;";
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return getOrCreateSrcLocStr(SrcLocStr.str());
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}
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Value *OpenMPIRBuilder::getOrCreateThreadID(Value *Ident) {
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return Builder.CreateCall(
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getOrCreateRuntimeFunction(OMPRTL___kmpc_global_thread_num), Ident,
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"omp_global_thread_num");
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}
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OpenMPIRBuilder::InsertPointTy
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OpenMPIRBuilder::CreateBarrier(const LocationDescription &Loc, Directive DK,
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bool ForceSimpleCall, bool CheckCancelFlag) {
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if (!updateToLocation(Loc))
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return Loc.IP;
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return emitBarrierImpl(Loc, DK, ForceSimpleCall, CheckCancelFlag);
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}
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OpenMPIRBuilder::InsertPointTy
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OpenMPIRBuilder::emitBarrierImpl(const LocationDescription &Loc, Directive Kind,
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bool ForceSimpleCall, bool CheckCancelFlag) {
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// Build call __kmpc_cancel_barrier(loc, thread_id) or
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// __kmpc_barrier(loc, thread_id);
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IdentFlag BarrierLocFlags;
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switch (Kind) {
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case OMPD_for:
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BarrierLocFlags = OMP_IDENT_FLAG_BARRIER_IMPL_FOR;
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break;
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case OMPD_sections:
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BarrierLocFlags = OMP_IDENT_FLAG_BARRIER_IMPL_SECTIONS;
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break;
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case OMPD_single:
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BarrierLocFlags = OMP_IDENT_FLAG_BARRIER_IMPL_SINGLE;
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break;
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case OMPD_barrier:
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BarrierLocFlags = OMP_IDENT_FLAG_BARRIER_EXPL;
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break;
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default:
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BarrierLocFlags = OMP_IDENT_FLAG_BARRIER_IMPL;
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break;
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}
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Constant *SrcLocStr = getOrCreateSrcLocStr(Loc);
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Value *Args[] = {getOrCreateIdent(SrcLocStr, BarrierLocFlags),
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getOrCreateThreadID(getOrCreateIdent(SrcLocStr))};
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// If we are in a cancellable parallel region, barriers are cancellation
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// points.
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// TODO: Check why we would force simple calls or to ignore the cancel flag.
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bool UseCancelBarrier =
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!ForceSimpleCall && isLastFinalizationInfoCancellable(OMPD_parallel);
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Value *Result = Builder.CreateCall(
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getOrCreateRuntimeFunction(UseCancelBarrier ? OMPRTL___kmpc_cancel_barrier
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: OMPRTL___kmpc_barrier),
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Args);
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if (UseCancelBarrier && CheckCancelFlag)
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emitCancelationCheckImpl(Result, OMPD_parallel);
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return Builder.saveIP();
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}
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OpenMPIRBuilder::InsertPointTy
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OpenMPIRBuilder::CreateCancel(const LocationDescription &Loc,
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Value *IfCondition,
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omp::Directive CanceledDirective) {
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if (!updateToLocation(Loc))
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return Loc.IP;
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// LLVM utilities like blocks with terminators.
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auto *UI = Builder.CreateUnreachable();
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Instruction *ThenTI = UI, *ElseTI = nullptr;
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if (IfCondition)
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SplitBlockAndInsertIfThenElse(IfCondition, UI, &ThenTI, &ElseTI);
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Builder.SetInsertPoint(ThenTI);
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Value *CancelKind = nullptr;
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switch (CanceledDirective) {
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#define OMP_CANCEL_KIND(Enum, Str, DirectiveEnum, Value) \
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case DirectiveEnum: \
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CancelKind = Builder.getInt32(Value); \
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break;
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#include "llvm/Frontend/OpenMP/OMPKinds.def"
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default:
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llvm_unreachable("Unknown cancel kind!");
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}
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Constant *SrcLocStr = getOrCreateSrcLocStr(Loc);
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Value *Ident = getOrCreateIdent(SrcLocStr);
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Value *Args[] = {Ident, getOrCreateThreadID(Ident), CancelKind};
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Value *Result = Builder.CreateCall(
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getOrCreateRuntimeFunction(OMPRTL___kmpc_cancel), Args);
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// The actual cancel logic is shared with others, e.g., cancel_barriers.
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emitCancelationCheckImpl(Result, CanceledDirective);
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// Update the insertion point and remove the terminator we introduced.
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Builder.SetInsertPoint(UI->getParent());
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UI->eraseFromParent();
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return Builder.saveIP();
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}
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void OpenMPIRBuilder::emitCancelationCheckImpl(
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Value *CancelFlag, omp::Directive CanceledDirective) {
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assert(isLastFinalizationInfoCancellable(CanceledDirective) &&
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"Unexpected cancellation!");
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// For a cancel barrier we create two new blocks.
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BasicBlock *BB = Builder.GetInsertBlock();
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BasicBlock *NonCancellationBlock;
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if (Builder.GetInsertPoint() == BB->end()) {
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// TODO: This branch will not be needed once we moved to the
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// OpenMPIRBuilder codegen completely.
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NonCancellationBlock = BasicBlock::Create(
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BB->getContext(), BB->getName() + ".cont", BB->getParent());
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} else {
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NonCancellationBlock = SplitBlock(BB, &*Builder.GetInsertPoint());
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BB->getTerminator()->eraseFromParent();
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Builder.SetInsertPoint(BB);
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}
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BasicBlock *CancellationBlock = BasicBlock::Create(
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BB->getContext(), BB->getName() + ".cncl", BB->getParent());
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// Jump to them based on the return value.
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Value *Cmp = Builder.CreateIsNull(CancelFlag);
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Builder.CreateCondBr(Cmp, NonCancellationBlock, CancellationBlock,
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/* TODO weight */ nullptr, nullptr);
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// From the cancellation block we finalize all variables and go to the
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// post finalization block that is known to the FiniCB callback.
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Builder.SetInsertPoint(CancellationBlock);
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auto &FI = FinalizationStack.back();
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FI.FiniCB(Builder.saveIP());
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// The continuation block is where code generation continues.
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Builder.SetInsertPoint(NonCancellationBlock, NonCancellationBlock->begin());
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}
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IRBuilder<>::InsertPoint OpenMPIRBuilder::CreateParallel(
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const LocationDescription &Loc, BodyGenCallbackTy BodyGenCB,
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PrivatizeCallbackTy PrivCB, FinalizeCallbackTy FiniCB, Value *IfCondition,
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Value *NumThreads, omp::ProcBindKind ProcBind, bool IsCancellable) {
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if (!updateToLocation(Loc))
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return Loc.IP;
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Constant *SrcLocStr = getOrCreateSrcLocStr(Loc);
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Value *Ident = getOrCreateIdent(SrcLocStr);
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Value *ThreadID = getOrCreateThreadID(Ident);
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if (NumThreads) {
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// Build call __kmpc_push_num_threads(&Ident, global_tid, num_threads)
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Value *Args[] = {
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Ident, ThreadID,
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Builder.CreateIntCast(NumThreads, Int32, /*isSigned*/ false)};
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Builder.CreateCall(
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getOrCreateRuntimeFunction(OMPRTL___kmpc_push_num_threads), Args);
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}
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if (ProcBind != OMP_PROC_BIND_default) {
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// Build call __kmpc_push_proc_bind(&Ident, global_tid, proc_bind)
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Value *Args[] = {
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Ident, ThreadID,
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ConstantInt::get(Int32, unsigned(ProcBind), /*isSigned=*/true)};
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Builder.CreateCall(getOrCreateRuntimeFunction(OMPRTL___kmpc_push_proc_bind),
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Args);
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}
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BasicBlock *InsertBB = Builder.GetInsertBlock();
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Function *OuterFn = InsertBB->getParent();
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// Vector to remember instructions we used only during the modeling but which
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// we want to delete at the end.
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SmallVector<Instruction *, 4> ToBeDeleted;
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Builder.SetInsertPoint(OuterFn->getEntryBlock().getFirstNonPHI());
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AllocaInst *TIDAddr = Builder.CreateAlloca(Int32, nullptr, "tid.addr");
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AllocaInst *ZeroAddr = Builder.CreateAlloca(Int32, nullptr, "zero.addr");
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// If there is an if condition we actually use the TIDAddr and ZeroAddr in the
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// program, otherwise we only need them for modeling purposes to get the
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// associated arguments in the outlined function. In the former case,
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// initialize the allocas properly, in the latter case, delete them later.
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if (IfCondition) {
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Builder.CreateStore(Constant::getNullValue(Int32), TIDAddr);
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Builder.CreateStore(Constant::getNullValue(Int32), ZeroAddr);
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} else {
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ToBeDeleted.push_back(TIDAddr);
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ToBeDeleted.push_back(ZeroAddr);
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}
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// Create an artificial insertion point that will also ensure the blocks we
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// are about to split are not degenerated.
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auto *UI = new UnreachableInst(Builder.getContext(), InsertBB);
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Instruction *ThenTI = UI, *ElseTI = nullptr;
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if (IfCondition)
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SplitBlockAndInsertIfThenElse(IfCondition, UI, &ThenTI, &ElseTI);
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BasicBlock *ThenBB = ThenTI->getParent();
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BasicBlock *PRegEntryBB = ThenBB->splitBasicBlock(ThenTI, "omp.par.entry");
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BasicBlock *PRegBodyBB =
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PRegEntryBB->splitBasicBlock(ThenTI, "omp.par.region");
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BasicBlock *PRegPreFiniBB =
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PRegBodyBB->splitBasicBlock(ThenTI, "omp.par.pre_finalize");
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BasicBlock *PRegExitBB =
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PRegPreFiniBB->splitBasicBlock(ThenTI, "omp.par.exit");
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auto FiniCBWrapper = [&](InsertPointTy IP) {
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// Hide "open-ended" blocks from the given FiniCB by setting the right jump
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// target to the region exit block.
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if (IP.getBlock()->end() == IP.getPoint()) {
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IRBuilder<>::InsertPointGuard IPG(Builder);
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Builder.restoreIP(IP);
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Instruction *I = Builder.CreateBr(PRegExitBB);
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IP = InsertPointTy(I->getParent(), I->getIterator());
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}
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assert(IP.getBlock()->getTerminator()->getNumSuccessors() == 1 &&
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IP.getBlock()->getTerminator()->getSuccessor(0) == PRegExitBB &&
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"Unexpected insertion point for finalization call!");
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return FiniCB(IP);
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};
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FinalizationStack.push_back({FiniCBWrapper, OMPD_parallel, IsCancellable});
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// Generate the privatization allocas in the block that will become the entry
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// of the outlined function.
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InsertPointTy AllocaIP(PRegEntryBB,
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PRegEntryBB->getTerminator()->getIterator());
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Builder.restoreIP(AllocaIP);
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AllocaInst *PrivTIDAddr =
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Builder.CreateAlloca(Int32, nullptr, "tid.addr.local");
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Instruction *PrivTID = Builder.CreateLoad(PrivTIDAddr, "tid");
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// Add some fake uses for OpenMP provided arguments.
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ToBeDeleted.push_back(Builder.CreateLoad(TIDAddr, "tid.addr.use"));
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ToBeDeleted.push_back(Builder.CreateLoad(ZeroAddr, "zero.addr.use"));
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// ThenBB
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// |
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// V
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// PRegionEntryBB <- Privatization allocas are placed here.
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// |
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// V
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// PRegionBodyBB <- BodeGen is invoked here.
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// |
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// V
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// PRegPreFiniBB <- The block we will start finalization from.
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// |
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// V
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// PRegionExitBB <- A common exit to simplify block collection.
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//
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LLVM_DEBUG(dbgs() << "Before body codegen: " << *OuterFn << "\n");
|
|
|
|
// Let the caller create the body.
|
|
assert(BodyGenCB && "Expected body generation callback!");
|
|
InsertPointTy CodeGenIP(PRegBodyBB, PRegBodyBB->begin());
|
|
BodyGenCB(AllocaIP, CodeGenIP, *PRegPreFiniBB);
|
|
|
|
LLVM_DEBUG(dbgs() << "After body codegen: " << *OuterFn << "\n");
|
|
|
|
FunctionCallee RTLFn = getOrCreateRuntimeFunction(OMPRTL___kmpc_fork_call);
|
|
if (auto *F = dyn_cast<llvm::Function>(RTLFn.getCallee())) {
|
|
if (!F->hasMetadata(llvm::LLVMContext::MD_callback)) {
|
|
llvm::LLVMContext &Ctx = F->getContext();
|
|
MDBuilder MDB(Ctx);
|
|
// Annotate the callback behavior of the __kmpc_fork_call:
|
|
// - The callback callee is argument number 2 (microtask).
|
|
// - The first two arguments of the callback callee are unknown (-1).
|
|
// - All variadic arguments to the __kmpc_fork_call are passed to the
|
|
// callback callee.
|
|
F->addMetadata(
|
|
llvm::LLVMContext::MD_callback,
|
|
*llvm::MDNode::get(
|
|
Ctx, {MDB.createCallbackEncoding(2, {-1, -1},
|
|
/* VarArgsArePassed */ true)}));
|
|
}
|
|
}
|
|
|
|
OutlineInfo OI;
|
|
OI.PostOutlineCB = [=](Function &OutlinedFn) {
|
|
// Add some known attributes.
|
|
OutlinedFn.addParamAttr(0, Attribute::NoAlias);
|
|
OutlinedFn.addParamAttr(1, Attribute::NoAlias);
|
|
OutlinedFn.addFnAttr(Attribute::NoUnwind);
|
|
OutlinedFn.addFnAttr(Attribute::NoRecurse);
|
|
|
|
assert(OutlinedFn.arg_size() >= 2 &&
|
|
"Expected at least tid and bounded tid as arguments");
|
|
unsigned NumCapturedVars =
|
|
OutlinedFn.arg_size() - /* tid & bounded tid */ 2;
|
|
|
|
CallInst *CI = cast<CallInst>(OutlinedFn.user_back());
|
|
CI->getParent()->setName("omp_parallel");
|
|
Builder.SetInsertPoint(CI);
|
|
|
|
// Build call __kmpc_fork_call(Ident, n, microtask, var1, .., varn);
|
|
Value *ForkCallArgs[] = {
|
|
Ident, Builder.getInt32(NumCapturedVars),
|
|
Builder.CreateBitCast(&OutlinedFn, ParallelTaskPtr)};
|
|
|
|
SmallVector<Value *, 16> RealArgs;
|
|
RealArgs.append(std::begin(ForkCallArgs), std::end(ForkCallArgs));
|
|
RealArgs.append(CI->arg_begin() + /* tid & bound tid */ 2, CI->arg_end());
|
|
|
|
Builder.CreateCall(RTLFn, RealArgs);
|
|
|
|
LLVM_DEBUG(dbgs() << "With fork_call placed: "
|
|
<< *Builder.GetInsertBlock()->getParent() << "\n");
|
|
|
|
InsertPointTy ExitIP(PRegExitBB, PRegExitBB->end());
|
|
|
|
// Initialize the local TID stack location with the argument value.
|
|
Builder.SetInsertPoint(PrivTID);
|
|
Function::arg_iterator OutlinedAI = OutlinedFn.arg_begin();
|
|
Builder.CreateStore(Builder.CreateLoad(OutlinedAI), PrivTIDAddr);
|
|
|
|
// If no "if" clause was present we do not need the call created during
|
|
// outlining, otherwise we reuse it in the serialized parallel region.
|
|
if (!ElseTI) {
|
|
CI->eraseFromParent();
|
|
} else {
|
|
|
|
// If an "if" clause was present we are now generating the serialized
|
|
// version into the "else" branch.
|
|
Builder.SetInsertPoint(ElseTI);
|
|
|
|
// Build calls __kmpc_serialized_parallel(&Ident, GTid);
|
|
Value *SerializedParallelCallArgs[] = {Ident, ThreadID};
|
|
Builder.CreateCall(
|
|
getOrCreateRuntimeFunction(OMPRTL___kmpc_serialized_parallel),
|
|
SerializedParallelCallArgs);
|
|
|
|
// OutlinedFn(>id, &zero, CapturedStruct);
|
|
CI->removeFromParent();
|
|
Builder.Insert(CI);
|
|
|
|
// __kmpc_end_serialized_parallel(&Ident, GTid);
|
|
Value *EndArgs[] = {Ident, ThreadID};
|
|
Builder.CreateCall(
|
|
getOrCreateRuntimeFunction(OMPRTL___kmpc_end_serialized_parallel),
|
|
EndArgs);
|
|
|
|
LLVM_DEBUG(dbgs() << "With serialized parallel region: "
|
|
<< *Builder.GetInsertBlock()->getParent() << "\n");
|
|
}
|
|
|
|
for (Instruction *I : ToBeDeleted)
|
|
I->eraseFromParent();
|
|
};
|
|
|
|
// Adjust the finalization stack, verify the adjustment, and call the
|
|
// finalize function a last time to finalize values between the pre-fini
|
|
// block and the exit block if we left the parallel "the normal way".
|
|
auto FiniInfo = FinalizationStack.pop_back_val();
|
|
(void)FiniInfo;
|
|
assert(FiniInfo.DK == OMPD_parallel &&
|
|
"Unexpected finalization stack state!");
|
|
|
|
Instruction *PRegPreFiniTI = PRegPreFiniBB->getTerminator();
|
|
assert(PRegPreFiniTI->getNumSuccessors() == 1 &&
|
|
PRegPreFiniTI->getSuccessor(0) == PRegExitBB &&
|
|
"Unexpected CFG structure!");
|
|
|
|
InsertPointTy PreFiniIP(PRegPreFiniBB, PRegPreFiniTI->getIterator());
|
|
FiniCB(PreFiniIP);
|
|
|
|
SmallPtrSet<BasicBlock *, 32> ParallelRegionBlockSet;
|
|
SmallVector<BasicBlock *, 32> Worklist;
|
|
ParallelRegionBlockSet.insert(PRegEntryBB);
|
|
ParallelRegionBlockSet.insert(PRegExitBB);
|
|
|
|
// Collect all blocks in-between PRegEntryBB and PRegExitBB.
|
|
Worklist.push_back(PRegEntryBB);
|
|
while (!Worklist.empty()) {
|
|
BasicBlock *BB = Worklist.pop_back_val();
|
|
OI.Blocks.push_back(BB);
|
|
for (BasicBlock *SuccBB : successors(BB))
|
|
if (ParallelRegionBlockSet.insert(SuccBB).second)
|
|
Worklist.push_back(SuccBB);
|
|
}
|
|
|
|
// Ensure a single exit node for the outlined region by creating one.
|
|
// We might have multiple incoming edges to the exit now due to finalizations,
|
|
// e.g., cancel calls that cause the control flow to leave the region.
|
|
BasicBlock *PRegOutlinedExitBB = PRegExitBB;
|
|
PRegExitBB = SplitBlock(PRegExitBB, &*PRegExitBB->getFirstInsertionPt());
|
|
PRegOutlinedExitBB->setName("omp.par.outlined.exit");
|
|
OI.Blocks.push_back(PRegOutlinedExitBB);
|
|
|
|
CodeExtractorAnalysisCache CEAC(*OuterFn);
|
|
CodeExtractor Extractor(OI.Blocks, /* DominatorTree */ nullptr,
|
|
/* AggregateArgs */ false,
|
|
/* BlockFrequencyInfo */ nullptr,
|
|
/* BranchProbabilityInfo */ nullptr,
|
|
/* AssumptionCache */ nullptr,
|
|
/* AllowVarArgs */ true,
|
|
/* AllowAlloca */ true,
|
|
/* Suffix */ ".omp_par");
|
|
|
|
// Find inputs to, outputs from the code region.
|
|
BasicBlock *CommonExit = nullptr;
|
|
SetVector<Value *> Inputs, Outputs, SinkingCands, HoistingCands;
|
|
Extractor.findAllocas(CEAC, SinkingCands, HoistingCands, CommonExit);
|
|
Extractor.findInputsOutputs(Inputs, Outputs, SinkingCands);
|
|
|
|
LLVM_DEBUG(dbgs() << "Before privatization: " << *OuterFn << "\n");
|
|
|
|
FunctionCallee TIDRTLFn =
|
|
getOrCreateRuntimeFunction(OMPRTL___kmpc_global_thread_num);
|
|
|
|
auto PrivHelper = [&](Value &V) {
|
|
if (&V == TIDAddr || &V == ZeroAddr)
|
|
return;
|
|
|
|
SmallVector<Use *, 8> Uses;
|
|
for (Use &U : V.uses())
|
|
if (auto *UserI = dyn_cast<Instruction>(U.getUser()))
|
|
if (ParallelRegionBlockSet.count(UserI->getParent()))
|
|
Uses.push_back(&U);
|
|
|
|
Value *ReplacementValue = nullptr;
|
|
CallInst *CI = dyn_cast<CallInst>(&V);
|
|
if (CI && CI->getCalledFunction() == TIDRTLFn.getCallee()) {
|
|
ReplacementValue = PrivTID;
|
|
} else {
|
|
Builder.restoreIP(
|
|
PrivCB(AllocaIP, Builder.saveIP(), V, ReplacementValue));
|
|
assert(ReplacementValue &&
|
|
"Expected copy/create callback to set replacement value!");
|
|
if (ReplacementValue == &V)
|
|
return;
|
|
}
|
|
|
|
for (Use *UPtr : Uses)
|
|
UPtr->set(ReplacementValue);
|
|
};
|
|
|
|
for (Value *Input : Inputs) {
|
|
LLVM_DEBUG(dbgs() << "Captured input: " << *Input << "\n");
|
|
PrivHelper(*Input);
|
|
}
|
|
assert(Outputs.empty() &&
|
|
"OpenMP outlining should not produce live-out values!");
|
|
|
|
LLVM_DEBUG(dbgs() << "After privatization: " << *OuterFn << "\n");
|
|
LLVM_DEBUG({
|
|
for (auto *BB : OI.Blocks)
|
|
dbgs() << " PBR: " << BB->getName() << "\n";
|
|
});
|
|
|
|
// Register the outlined info.
|
|
addOutlineInfo(std::move(OI));
|
|
|
|
InsertPointTy AfterIP(UI->getParent(), UI->getParent()->end());
|
|
UI->eraseFromParent();
|
|
|
|
return AfterIP;
|
|
}
|
|
|
|
void OpenMPIRBuilder::emitFlush(const LocationDescription &Loc) {
|
|
// Build call void __kmpc_flush(ident_t *loc)
|
|
Constant *SrcLocStr = getOrCreateSrcLocStr(Loc);
|
|
Value *Args[] = {getOrCreateIdent(SrcLocStr)};
|
|
|
|
Builder.CreateCall(getOrCreateRuntimeFunction(OMPRTL___kmpc_flush), Args);
|
|
}
|
|
|
|
void OpenMPIRBuilder::CreateFlush(const LocationDescription &Loc) {
|
|
if (!updateToLocation(Loc))
|
|
return;
|
|
emitFlush(Loc);
|
|
}
|
|
|
|
void OpenMPIRBuilder::emitTaskwaitImpl(const LocationDescription &Loc) {
|
|
// Build call kmp_int32 __kmpc_omp_taskwait(ident_t *loc, kmp_int32
|
|
// global_tid);
|
|
Constant *SrcLocStr = getOrCreateSrcLocStr(Loc);
|
|
Value *Ident = getOrCreateIdent(SrcLocStr);
|
|
Value *Args[] = {Ident, getOrCreateThreadID(Ident)};
|
|
|
|
// Ignore return result until untied tasks are supported.
|
|
Builder.CreateCall(getOrCreateRuntimeFunction(OMPRTL___kmpc_omp_taskwait),
|
|
Args);
|
|
}
|
|
|
|
void OpenMPIRBuilder::CreateTaskwait(const LocationDescription &Loc) {
|
|
if (!updateToLocation(Loc))
|
|
return;
|
|
emitTaskwaitImpl(Loc);
|
|
}
|
|
|
|
void OpenMPIRBuilder::emitTaskyieldImpl(const LocationDescription &Loc) {
|
|
// Build call __kmpc_omp_taskyield(loc, thread_id, 0);
|
|
Constant *SrcLocStr = getOrCreateSrcLocStr(Loc);
|
|
Value *Ident = getOrCreateIdent(SrcLocStr);
|
|
Constant *I32Null = ConstantInt::getNullValue(Int32);
|
|
Value *Args[] = {Ident, getOrCreateThreadID(Ident), I32Null};
|
|
|
|
Builder.CreateCall(getOrCreateRuntimeFunction(OMPRTL___kmpc_omp_taskyield),
|
|
Args);
|
|
}
|
|
|
|
void OpenMPIRBuilder::CreateTaskyield(const LocationDescription &Loc) {
|
|
if (!updateToLocation(Loc))
|
|
return;
|
|
emitTaskyieldImpl(Loc);
|
|
}
|
|
|
|
OpenMPIRBuilder::InsertPointTy
|
|
OpenMPIRBuilder::CreateMaster(const LocationDescription &Loc,
|
|
BodyGenCallbackTy BodyGenCB,
|
|
FinalizeCallbackTy FiniCB) {
|
|
|
|
if (!updateToLocation(Loc))
|
|
return Loc.IP;
|
|
|
|
Directive OMPD = Directive::OMPD_master;
|
|
Constant *SrcLocStr = getOrCreateSrcLocStr(Loc);
|
|
Value *Ident = getOrCreateIdent(SrcLocStr);
|
|
Value *ThreadId = getOrCreateThreadID(Ident);
|
|
Value *Args[] = {Ident, ThreadId};
|
|
|
|
Function *EntryRTLFn = getOrCreateRuntimeFunction(OMPRTL___kmpc_master);
|
|
Instruction *EntryCall = Builder.CreateCall(EntryRTLFn, Args);
|
|
|
|
Function *ExitRTLFn = getOrCreateRuntimeFunction(OMPRTL___kmpc_end_master);
|
|
Instruction *ExitCall = Builder.CreateCall(ExitRTLFn, Args);
|
|
|
|
return EmitOMPInlinedRegion(OMPD, EntryCall, ExitCall, BodyGenCB, FiniCB,
|
|
/*Conditional*/ true, /*hasFinalize*/ true);
|
|
}
|
|
|
|
OpenMPIRBuilder::InsertPointTy OpenMPIRBuilder::CreateCritical(
|
|
const LocationDescription &Loc, BodyGenCallbackTy BodyGenCB,
|
|
FinalizeCallbackTy FiniCB, StringRef CriticalName, Value *HintInst) {
|
|
|
|
if (!updateToLocation(Loc))
|
|
return Loc.IP;
|
|
|
|
Directive OMPD = Directive::OMPD_critical;
|
|
Constant *SrcLocStr = getOrCreateSrcLocStr(Loc);
|
|
Value *Ident = getOrCreateIdent(SrcLocStr);
|
|
Value *ThreadId = getOrCreateThreadID(Ident);
|
|
Value *LockVar = getOMPCriticalRegionLock(CriticalName);
|
|
Value *Args[] = {Ident, ThreadId, LockVar};
|
|
|
|
SmallVector<llvm::Value *, 4> EnterArgs(std::begin(Args), std::end(Args));
|
|
Function *RTFn = nullptr;
|
|
if (HintInst) {
|
|
// Add Hint to entry Args and create call
|
|
EnterArgs.push_back(HintInst);
|
|
RTFn = getOrCreateRuntimeFunction(OMPRTL___kmpc_critical_with_hint);
|
|
} else {
|
|
RTFn = getOrCreateRuntimeFunction(OMPRTL___kmpc_critical);
|
|
}
|
|
Instruction *EntryCall = Builder.CreateCall(RTFn, EnterArgs);
|
|
|
|
Function *ExitRTLFn = getOrCreateRuntimeFunction(OMPRTL___kmpc_end_critical);
|
|
Instruction *ExitCall = Builder.CreateCall(ExitRTLFn, Args);
|
|
|
|
return EmitOMPInlinedRegion(OMPD, EntryCall, ExitCall, BodyGenCB, FiniCB,
|
|
/*Conditional*/ false, /*hasFinalize*/ true);
|
|
}
|
|
|
|
OpenMPIRBuilder::InsertPointTy OpenMPIRBuilder::EmitOMPInlinedRegion(
|
|
Directive OMPD, Instruction *EntryCall, Instruction *ExitCall,
|
|
BodyGenCallbackTy BodyGenCB, FinalizeCallbackTy FiniCB, bool Conditional,
|
|
bool HasFinalize) {
|
|
|
|
if (HasFinalize)
|
|
FinalizationStack.push_back({FiniCB, OMPD, /*IsCancellable*/ false});
|
|
|
|
// Create inlined region's entry and body blocks, in preparation
|
|
// for conditional creation
|
|
BasicBlock *EntryBB = Builder.GetInsertBlock();
|
|
Instruction *SplitPos = EntryBB->getTerminator();
|
|
if (!isa_and_nonnull<BranchInst>(SplitPos))
|
|
SplitPos = new UnreachableInst(Builder.getContext(), EntryBB);
|
|
BasicBlock *ExitBB = EntryBB->splitBasicBlock(SplitPos, "omp_region.end");
|
|
BasicBlock *FiniBB =
|
|
EntryBB->splitBasicBlock(EntryBB->getTerminator(), "omp_region.finalize");
|
|
|
|
Builder.SetInsertPoint(EntryBB->getTerminator());
|
|
emitCommonDirectiveEntry(OMPD, EntryCall, ExitBB, Conditional);
|
|
|
|
// generate body
|
|
BodyGenCB(/* AllocaIP */ InsertPointTy(),
|
|
/* CodeGenIP */ Builder.saveIP(), *FiniBB);
|
|
|
|
// If we didn't emit a branch to FiniBB during body generation, it means
|
|
// FiniBB is unreachable (e.g. while(1);). stop generating all the
|
|
// unreachable blocks, and remove anything we are not going to use.
|
|
auto SkipEmittingRegion = FiniBB->hasNPredecessors(0);
|
|
if (SkipEmittingRegion) {
|
|
FiniBB->eraseFromParent();
|
|
ExitCall->eraseFromParent();
|
|
// Discard finalization if we have it.
|
|
if (HasFinalize) {
|
|
assert(!FinalizationStack.empty() &&
|
|
"Unexpected finalization stack state!");
|
|
FinalizationStack.pop_back();
|
|
}
|
|
} else {
|
|
// emit exit call and do any needed finalization.
|
|
auto FinIP = InsertPointTy(FiniBB, FiniBB->getFirstInsertionPt());
|
|
assert(FiniBB->getTerminator()->getNumSuccessors() == 1 &&
|
|
FiniBB->getTerminator()->getSuccessor(0) == ExitBB &&
|
|
"Unexpected control flow graph state!!");
|
|
emitCommonDirectiveExit(OMPD, FinIP, ExitCall, HasFinalize);
|
|
assert(FiniBB->getUniquePredecessor()->getUniqueSuccessor() == FiniBB &&
|
|
"Unexpected Control Flow State!");
|
|
MergeBlockIntoPredecessor(FiniBB);
|
|
}
|
|
|
|
// If we are skipping the region of a non conditional, remove the exit
|
|
// block, and clear the builder's insertion point.
|
|
assert(SplitPos->getParent() == ExitBB &&
|
|
"Unexpected Insertion point location!");
|
|
if (!Conditional && SkipEmittingRegion) {
|
|
ExitBB->eraseFromParent();
|
|
Builder.ClearInsertionPoint();
|
|
} else {
|
|
auto merged = MergeBlockIntoPredecessor(ExitBB);
|
|
BasicBlock *ExitPredBB = SplitPos->getParent();
|
|
auto InsertBB = merged ? ExitPredBB : ExitBB;
|
|
if (!isa_and_nonnull<BranchInst>(SplitPos))
|
|
SplitPos->eraseFromParent();
|
|
Builder.SetInsertPoint(InsertBB);
|
|
}
|
|
|
|
return Builder.saveIP();
|
|
}
|
|
|
|
OpenMPIRBuilder::InsertPointTy OpenMPIRBuilder::emitCommonDirectiveEntry(
|
|
Directive OMPD, Value *EntryCall, BasicBlock *ExitBB, bool Conditional) {
|
|
|
|
// if nothing to do, Return current insertion point.
|
|
if (!Conditional)
|
|
return Builder.saveIP();
|
|
|
|
BasicBlock *EntryBB = Builder.GetInsertBlock();
|
|
Value *CallBool = Builder.CreateIsNotNull(EntryCall);
|
|
auto *ThenBB = BasicBlock::Create(M.getContext(), "omp_region.body");
|
|
auto *UI = new UnreachableInst(Builder.getContext(), ThenBB);
|
|
|
|
// Emit thenBB and set the Builder's insertion point there for
|
|
// body generation next. Place the block after the current block.
|
|
Function *CurFn = EntryBB->getParent();
|
|
CurFn->getBasicBlockList().insertAfter(EntryBB->getIterator(), ThenBB);
|
|
|
|
// Move Entry branch to end of ThenBB, and replace with conditional
|
|
// branch (If-stmt)
|
|
Instruction *EntryBBTI = EntryBB->getTerminator();
|
|
Builder.CreateCondBr(CallBool, ThenBB, ExitBB);
|
|
EntryBBTI->removeFromParent();
|
|
Builder.SetInsertPoint(UI);
|
|
Builder.Insert(EntryBBTI);
|
|
UI->eraseFromParent();
|
|
Builder.SetInsertPoint(ThenBB->getTerminator());
|
|
|
|
// return an insertion point to ExitBB.
|
|
return IRBuilder<>::InsertPoint(ExitBB, ExitBB->getFirstInsertionPt());
|
|
}
|
|
|
|
OpenMPIRBuilder::InsertPointTy OpenMPIRBuilder::emitCommonDirectiveExit(
|
|
omp::Directive OMPD, InsertPointTy FinIP, Instruction *ExitCall,
|
|
bool HasFinalize) {
|
|
|
|
Builder.restoreIP(FinIP);
|
|
|
|
// If there is finalization to do, emit it before the exit call
|
|
if (HasFinalize) {
|
|
assert(!FinalizationStack.empty() &&
|
|
"Unexpected finalization stack state!");
|
|
|
|
FinalizationInfo Fi = FinalizationStack.pop_back_val();
|
|
assert(Fi.DK == OMPD && "Unexpected Directive for Finalization call!");
|
|
|
|
Fi.FiniCB(FinIP);
|
|
|
|
BasicBlock *FiniBB = FinIP.getBlock();
|
|
Instruction *FiniBBTI = FiniBB->getTerminator();
|
|
|
|
// set Builder IP for call creation
|
|
Builder.SetInsertPoint(FiniBBTI);
|
|
}
|
|
|
|
// place the Exitcall as last instruction before Finalization block terminator
|
|
ExitCall->removeFromParent();
|
|
Builder.Insert(ExitCall);
|
|
|
|
return IRBuilder<>::InsertPoint(ExitCall->getParent(),
|
|
ExitCall->getIterator());
|
|
}
|
|
|
|
std::string OpenMPIRBuilder::getNameWithSeparators(ArrayRef<StringRef> Parts,
|
|
StringRef FirstSeparator,
|
|
StringRef Separator) {
|
|
SmallString<128> Buffer;
|
|
llvm::raw_svector_ostream OS(Buffer);
|
|
StringRef Sep = FirstSeparator;
|
|
for (StringRef Part : Parts) {
|
|
OS << Sep << Part;
|
|
Sep = Separator;
|
|
}
|
|
return OS.str().str();
|
|
}
|
|
|
|
Constant *OpenMPIRBuilder::getOrCreateOMPInternalVariable(
|
|
llvm::Type *Ty, const llvm::Twine &Name, unsigned AddressSpace) {
|
|
// TODO: Replace the twine arg with stringref to get rid of the conversion
|
|
// logic. However This is taken from current implementation in clang as is.
|
|
// Since this method is used in many places exclusively for OMP internal use
|
|
// we will keep it as is for temporarily until we move all users to the
|
|
// builder and then, if possible, fix it everywhere in one go.
|
|
SmallString<256> Buffer;
|
|
llvm::raw_svector_ostream Out(Buffer);
|
|
Out << Name;
|
|
StringRef RuntimeName = Out.str();
|
|
auto &Elem = *InternalVars.try_emplace(RuntimeName, nullptr).first;
|
|
if (Elem.second) {
|
|
assert(Elem.second->getType()->getPointerElementType() == Ty &&
|
|
"OMP internal variable has different type than requested");
|
|
} else {
|
|
// TODO: investigate the appropriate linkage type used for the global
|
|
// variable for possibly changing that to internal or private, or maybe
|
|
// create different versions of the function for different OMP internal
|
|
// variables.
|
|
Elem.second = new llvm::GlobalVariable(
|
|
M, Ty, /*IsConstant*/ false, llvm::GlobalValue::CommonLinkage,
|
|
llvm::Constant::getNullValue(Ty), Elem.first(),
|
|
/*InsertBefore=*/nullptr, llvm::GlobalValue::NotThreadLocal,
|
|
AddressSpace);
|
|
}
|
|
|
|
return Elem.second;
|
|
}
|
|
|
|
Value *OpenMPIRBuilder::getOMPCriticalRegionLock(StringRef CriticalName) {
|
|
std::string Prefix = Twine("gomp_critical_user_", CriticalName).str();
|
|
std::string Name = getNameWithSeparators({Prefix, "var"}, ".", ".");
|
|
return getOrCreateOMPInternalVariable(KmpCriticalNameTy, Name);
|
|
}
|