1cde4d5a6SJacques Pienaar //===- ModuleTranslation.cpp - MLIR to LLVM conversion --------------------===// 25d7231d8SStephan Herhut // 330857107SMehdi Amini // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 456222a06SMehdi Amini // See https://llvm.org/LICENSE.txt for license information. 556222a06SMehdi Amini // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 65d7231d8SStephan Herhut // 756222a06SMehdi Amini //===----------------------------------------------------------------------===// 85d7231d8SStephan Herhut // 95d7231d8SStephan Herhut // This file implements the translation between an MLIR LLVM dialect module and 105d7231d8SStephan Herhut // the corresponding LLVMIR module. It only handles core LLVM IR operations. 115d7231d8SStephan Herhut // 125d7231d8SStephan Herhut //===----------------------------------------------------------------------===// 135d7231d8SStephan Herhut 145d7231d8SStephan Herhut #include "mlir/Target/LLVMIR/ModuleTranslation.h" 155d7231d8SStephan Herhut 16c33d6970SRiver Riddle #include "DebugTranslation.h" 17ba0fa925SRiver Riddle #include "mlir/Dialect/LLVMIR/LLVMDialect.h" 1892a295ebSKiran Chandramohan #include "mlir/Dialect/OpenMP/OpenMPDialect.h" 195d7231d8SStephan Herhut #include "mlir/IR/Attributes.h" 205d7231d8SStephan Herhut #include "mlir/IR/Module.h" 21a4a42160SAlex Zinenko #include "mlir/IR/StandardTypes.h" 225d7231d8SStephan Herhut #include "mlir/Support/LLVM.h" 23ebf190fcSRiver Riddle #include "llvm/ADT/TypeSwitch.h" 245d7231d8SStephan Herhut 255d7231d8SStephan Herhut #include "llvm/ADT/SetVector.h" 2692a295ebSKiran Chandramohan #include "llvm/Frontend/OpenMP/OMPIRBuilder.h" 275d7231d8SStephan Herhut #include "llvm/IR/BasicBlock.h" 28d9067dcaSKiran Chandramohan #include "llvm/IR/CFG.h" 295d7231d8SStephan Herhut #include "llvm/IR/Constants.h" 305d7231d8SStephan Herhut #include "llvm/IR/DerivedTypes.h" 315d7231d8SStephan Herhut #include "llvm/IR/IRBuilder.h" 325d7231d8SStephan Herhut #include "llvm/IR/LLVMContext.h" 335d7231d8SStephan Herhut #include "llvm/IR/Module.h" 34d9067dcaSKiran Chandramohan #include "llvm/Transforms/Utils/BasicBlockUtils.h" 355d7231d8SStephan Herhut #include "llvm/Transforms/Utils/Cloning.h" 365d7231d8SStephan Herhut 372666b973SRiver Riddle using namespace mlir; 382666b973SRiver Riddle using namespace mlir::LLVM; 39c33d6970SRiver Riddle using namespace mlir::LLVM::detail; 405d7231d8SStephan Herhut 41eb67bd78SAlex Zinenko #include "mlir/Dialect/LLVMIR/LLVMConversionEnumsToLLVM.inc" 42eb67bd78SAlex Zinenko 43a922e231SAlex Zinenko /// Builds a constant of a sequential LLVM type `type`, potentially containing 44a922e231SAlex Zinenko /// other sequential types recursively, from the individual constant values 45a922e231SAlex Zinenko /// provided in `constants`. `shape` contains the number of elements in nested 46a922e231SAlex Zinenko /// sequential types. Reports errors at `loc` and returns nullptr on error. 47a4a42160SAlex Zinenko static llvm::Constant * 48a4a42160SAlex Zinenko buildSequentialConstant(ArrayRef<llvm::Constant *> &constants, 49a4a42160SAlex Zinenko ArrayRef<int64_t> shape, llvm::Type *type, 50a4a42160SAlex Zinenko Location loc) { 51a4a42160SAlex Zinenko if (shape.empty()) { 52a4a42160SAlex Zinenko llvm::Constant *result = constants.front(); 53a4a42160SAlex Zinenko constants = constants.drop_front(); 54a4a42160SAlex Zinenko return result; 55a4a42160SAlex Zinenko } 56a4a42160SAlex Zinenko 5768b03aeeSEli Friedman llvm::Type *elementType; 5868b03aeeSEli Friedman if (auto *arrayTy = dyn_cast<llvm::ArrayType>(type)) { 5968b03aeeSEli Friedman elementType = arrayTy->getElementType(); 6068b03aeeSEli Friedman } else if (auto *vectorTy = dyn_cast<llvm::VectorType>(type)) { 6168b03aeeSEli Friedman elementType = vectorTy->getElementType(); 6268b03aeeSEli Friedman } else { 63a4a42160SAlex Zinenko emitError(loc) << "expected sequential LLVM types wrapping a scalar"; 64a4a42160SAlex Zinenko return nullptr; 65a4a42160SAlex Zinenko } 66a4a42160SAlex Zinenko 67a4a42160SAlex Zinenko SmallVector<llvm::Constant *, 8> nested; 68a4a42160SAlex Zinenko nested.reserve(shape.front()); 69a4a42160SAlex Zinenko for (int64_t i = 0; i < shape.front(); ++i) { 70a4a42160SAlex Zinenko nested.push_back(buildSequentialConstant(constants, shape.drop_front(), 71a4a42160SAlex Zinenko elementType, loc)); 72a4a42160SAlex Zinenko if (!nested.back()) 73a4a42160SAlex Zinenko return nullptr; 74a4a42160SAlex Zinenko } 75a4a42160SAlex Zinenko 76a4a42160SAlex Zinenko if (shape.size() == 1 && type->isVectorTy()) 77a4a42160SAlex Zinenko return llvm::ConstantVector::get(nested); 78a4a42160SAlex Zinenko return llvm::ConstantArray::get( 79a4a42160SAlex Zinenko llvm::ArrayType::get(elementType, shape.front()), nested); 80a4a42160SAlex Zinenko } 81a4a42160SAlex Zinenko 82fc817b09SKazuaki Ishizaki /// Returns the first non-sequential type nested in sequential types. 83a4a42160SAlex Zinenko static llvm::Type *getInnermostElementType(llvm::Type *type) { 8468b03aeeSEli Friedman do { 8568b03aeeSEli Friedman if (auto *arrayTy = dyn_cast<llvm::ArrayType>(type)) { 8668b03aeeSEli Friedman type = arrayTy->getElementType(); 8768b03aeeSEli Friedman } else if (auto *vectorTy = dyn_cast<llvm::VectorType>(type)) { 8868b03aeeSEli Friedman type = vectorTy->getElementType(); 8968b03aeeSEli Friedman } else { 90a4a42160SAlex Zinenko return type; 91a4a42160SAlex Zinenko } 9268b03aeeSEli Friedman } while (1); 9368b03aeeSEli Friedman } 94a4a42160SAlex Zinenko 952666b973SRiver Riddle /// Create an LLVM IR constant of `llvmType` from the MLIR attribute `attr`. 962666b973SRiver Riddle /// This currently supports integer, floating point, splat and dense element 972666b973SRiver Riddle /// attributes and combinations thereof. In case of error, report it to `loc` 982666b973SRiver Riddle /// and return nullptr. 995d7231d8SStephan Herhut llvm::Constant *ModuleTranslation::getLLVMConstant(llvm::Type *llvmType, 1005d7231d8SStephan Herhut Attribute attr, 1015d7231d8SStephan Herhut Location loc) { 10233a3a91bSChristian Sigg if (!attr) 10333a3a91bSChristian Sigg return llvm::UndefValue::get(llvmType); 104a4a42160SAlex Zinenko if (llvmType->isStructTy()) { 105a4a42160SAlex Zinenko emitError(loc, "struct types are not supported in constants"); 106a4a42160SAlex Zinenko return nullptr; 107a4a42160SAlex Zinenko } 108ac9d742bSStephan Herhut // For integer types, we allow a mismatch in sizes as the index type in 109ac9d742bSStephan Herhut // MLIR might have a different size than the index type in the LLVM module. 1105d7231d8SStephan Herhut if (auto intAttr = attr.dyn_cast<IntegerAttr>()) 111ac9d742bSStephan Herhut return llvm::ConstantInt::get( 112ac9d742bSStephan Herhut llvmType, 113ac9d742bSStephan Herhut intAttr.getValue().sextOrTrunc(llvmType->getIntegerBitWidth())); 1145d7231d8SStephan Herhut if (auto floatAttr = attr.dyn_cast<FloatAttr>()) 1155d7231d8SStephan Herhut return llvm::ConstantFP::get(llvmType, floatAttr.getValue()); 1169b9c647cSRiver Riddle if (auto funcAttr = attr.dyn_cast<FlatSymbolRefAttr>()) 117ff77397fSShraiysh Vaishay return llvm::ConstantExpr::getBitCast( 118ff77397fSShraiysh Vaishay functionMapping.lookup(funcAttr.getValue()), llvmType); 1195d7231d8SStephan Herhut if (auto splatAttr = attr.dyn_cast<SplatElementsAttr>()) { 12068b03aeeSEli Friedman llvm::Type *elementType; 12168b03aeeSEli Friedman uint64_t numElements; 12268b03aeeSEli Friedman if (auto *arrayTy = dyn_cast<llvm::ArrayType>(llvmType)) { 12368b03aeeSEli Friedman elementType = arrayTy->getElementType(); 12468b03aeeSEli Friedman numElements = arrayTy->getNumElements(); 12568b03aeeSEli Friedman } else { 1265cba1c63SChristopher Tetreault auto *vectorTy = cast<llvm::FixedVectorType>(llvmType); 12768b03aeeSEli Friedman elementType = vectorTy->getElementType(); 12868b03aeeSEli Friedman numElements = vectorTy->getNumElements(); 12968b03aeeSEli Friedman } 130d6ea8ff0SAlex Zinenko // Splat value is a scalar. Extract it only if the element type is not 131d6ea8ff0SAlex Zinenko // another sequence type. The recursion terminates because each step removes 132d6ea8ff0SAlex Zinenko // one outer sequential type. 13368b03aeeSEli Friedman bool elementTypeSequential = 134d891d738SRahul Joshi isa<llvm::ArrayType, llvm::VectorType>(elementType); 135d6ea8ff0SAlex Zinenko llvm::Constant *child = getLLVMConstant( 136d6ea8ff0SAlex Zinenko elementType, 13768b03aeeSEli Friedman elementTypeSequential ? splatAttr : splatAttr.getSplatValue(), loc); 138a4a42160SAlex Zinenko if (!child) 139a4a42160SAlex Zinenko return nullptr; 1402f13df13SMLIR Team if (llvmType->isVectorTy()) 141396a42d9SRiver Riddle return llvm::ConstantVector::getSplat( 142396a42d9SRiver Riddle llvm::ElementCount(numElements, /*Scalable=*/false), child); 1432f13df13SMLIR Team if (llvmType->isArrayTy()) { 144ac9d742bSStephan Herhut auto *arrayType = llvm::ArrayType::get(elementType, numElements); 1452f13df13SMLIR Team SmallVector<llvm::Constant *, 8> constants(numElements, child); 1462f13df13SMLIR Team return llvm::ConstantArray::get(arrayType, constants); 1472f13df13SMLIR Team } 1485d7231d8SStephan Herhut } 149a4a42160SAlex Zinenko 150d906f84bSRiver Riddle if (auto elementsAttr = attr.dyn_cast<ElementsAttr>()) { 151a4a42160SAlex Zinenko assert(elementsAttr.getType().hasStaticShape()); 152a4a42160SAlex Zinenko assert(elementsAttr.getNumElements() != 0 && 153a4a42160SAlex Zinenko "unexpected empty elements attribute"); 154a4a42160SAlex Zinenko assert(!elementsAttr.getType().getShape().empty() && 155a4a42160SAlex Zinenko "unexpected empty elements attribute shape"); 156a4a42160SAlex Zinenko 1575d7231d8SStephan Herhut SmallVector<llvm::Constant *, 8> constants; 158a4a42160SAlex Zinenko constants.reserve(elementsAttr.getNumElements()); 159a4a42160SAlex Zinenko llvm::Type *innermostType = getInnermostElementType(llvmType); 160d906f84bSRiver Riddle for (auto n : elementsAttr.getValues<Attribute>()) { 161a4a42160SAlex Zinenko constants.push_back(getLLVMConstant(innermostType, n, loc)); 1625d7231d8SStephan Herhut if (!constants.back()) 1635d7231d8SStephan Herhut return nullptr; 1645d7231d8SStephan Herhut } 165a4a42160SAlex Zinenko ArrayRef<llvm::Constant *> constantsRef = constants; 166a4a42160SAlex Zinenko llvm::Constant *result = buildSequentialConstant( 167a4a42160SAlex Zinenko constantsRef, elementsAttr.getType().getShape(), llvmType, loc); 168a4a42160SAlex Zinenko assert(constantsRef.empty() && "did not consume all elemental constants"); 169a4a42160SAlex Zinenko return result; 1702f13df13SMLIR Team } 171a4a42160SAlex Zinenko 172cb348dffSStephan Herhut if (auto stringAttr = attr.dyn_cast<StringAttr>()) { 173cb348dffSStephan Herhut return llvm::ConstantDataArray::get( 174cb348dffSStephan Herhut llvmModule->getContext(), ArrayRef<char>{stringAttr.getValue().data(), 175cb348dffSStephan Herhut stringAttr.getValue().size()}); 176cb348dffSStephan Herhut } 177a4c3a645SRiver Riddle emitError(loc, "unsupported constant value"); 1785d7231d8SStephan Herhut return nullptr; 1795d7231d8SStephan Herhut } 1805d7231d8SStephan Herhut 1812666b973SRiver Riddle /// Convert MLIR integer comparison predicate to LLVM IR comparison predicate. 182ec82e1c9SAlex Zinenko static llvm::CmpInst::Predicate getLLVMCmpPredicate(ICmpPredicate p) { 1835d7231d8SStephan Herhut switch (p) { 184ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::eq: 1855d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_EQ; 186ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::ne: 1875d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_NE; 188ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::slt: 1895d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_SLT; 190ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::sle: 1915d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_SLE; 192ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::sgt: 1935d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_SGT; 194ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::sge: 1955d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_SGE; 196ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::ult: 1975d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_ULT; 198ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::ule: 1995d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_ULE; 200ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::ugt: 2015d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_UGT; 202ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::uge: 2035d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_UGE; 2045d7231d8SStephan Herhut } 205e6365f3dSJacques Pienaar llvm_unreachable("incorrect comparison predicate"); 2065d7231d8SStephan Herhut } 2075d7231d8SStephan Herhut 20848fdc8d7SNagy Mostafa static llvm::CmpInst::Predicate getLLVMCmpPredicate(FCmpPredicate p) { 20948fdc8d7SNagy Mostafa switch (p) { 21048fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::_false: 21148fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_FALSE; 21248fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::oeq: 21348fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OEQ; 21448fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ogt: 21548fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OGT; 21648fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::oge: 21748fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OGE; 21848fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::olt: 21948fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OLT; 22048fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ole: 22148fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OLE; 22248fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::one: 22348fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_ONE; 22448fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ord: 22548fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_ORD; 22648fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ueq: 22748fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UEQ; 22848fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ugt: 22948fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UGT; 23048fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::uge: 23148fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UGE; 23248fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ult: 23348fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_ULT; 23448fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ule: 23548fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_ULE; 23648fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::une: 23748fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UNE; 23848fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::uno: 23948fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UNO; 24048fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::_true: 24148fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_TRUE; 24248fdc8d7SNagy Mostafa } 243e6365f3dSJacques Pienaar llvm_unreachable("incorrect comparison predicate"); 24448fdc8d7SNagy Mostafa } 24548fdc8d7SNagy Mostafa 24660a0c612SFrank Laub static llvm::AtomicRMWInst::BinOp getLLVMAtomicBinOp(AtomicBinOp op) { 24760a0c612SFrank Laub switch (op) { 24860a0c612SFrank Laub case LLVM::AtomicBinOp::xchg: 24960a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::Xchg; 25060a0c612SFrank Laub case LLVM::AtomicBinOp::add: 25160a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::Add; 25260a0c612SFrank Laub case LLVM::AtomicBinOp::sub: 25360a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::Sub; 25460a0c612SFrank Laub case LLVM::AtomicBinOp::_and: 25560a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::And; 25660a0c612SFrank Laub case LLVM::AtomicBinOp::nand: 25760a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::Nand; 25860a0c612SFrank Laub case LLVM::AtomicBinOp::_or: 25960a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::Or; 26060a0c612SFrank Laub case LLVM::AtomicBinOp::_xor: 26160a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::Xor; 26260a0c612SFrank Laub case LLVM::AtomicBinOp::max: 26360a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::Max; 26460a0c612SFrank Laub case LLVM::AtomicBinOp::min: 26560a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::Min; 26660a0c612SFrank Laub case LLVM::AtomicBinOp::umax: 26760a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::UMax; 26860a0c612SFrank Laub case LLVM::AtomicBinOp::umin: 26960a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::UMin; 27060a0c612SFrank Laub case LLVM::AtomicBinOp::fadd: 27160a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::FAdd; 27260a0c612SFrank Laub case LLVM::AtomicBinOp::fsub: 27360a0c612SFrank Laub return llvm::AtomicRMWInst::BinOp::FSub; 27460a0c612SFrank Laub } 27560a0c612SFrank Laub llvm_unreachable("incorrect atomic binary operator"); 27660a0c612SFrank Laub } 27760a0c612SFrank Laub 27860a0c612SFrank Laub static llvm::AtomicOrdering getLLVMAtomicOrdering(AtomicOrdering ordering) { 27960a0c612SFrank Laub switch (ordering) { 28060a0c612SFrank Laub case LLVM::AtomicOrdering::not_atomic: 28160a0c612SFrank Laub return llvm::AtomicOrdering::NotAtomic; 28260a0c612SFrank Laub case LLVM::AtomicOrdering::unordered: 28360a0c612SFrank Laub return llvm::AtomicOrdering::Unordered; 28460a0c612SFrank Laub case LLVM::AtomicOrdering::monotonic: 28560a0c612SFrank Laub return llvm::AtomicOrdering::Monotonic; 28660a0c612SFrank Laub case LLVM::AtomicOrdering::acquire: 28760a0c612SFrank Laub return llvm::AtomicOrdering::Acquire; 28860a0c612SFrank Laub case LLVM::AtomicOrdering::release: 28960a0c612SFrank Laub return llvm::AtomicOrdering::Release; 29060a0c612SFrank Laub case LLVM::AtomicOrdering::acq_rel: 29160a0c612SFrank Laub return llvm::AtomicOrdering::AcquireRelease; 29260a0c612SFrank Laub case LLVM::AtomicOrdering::seq_cst: 29360a0c612SFrank Laub return llvm::AtomicOrdering::SequentiallyConsistent; 29460a0c612SFrank Laub } 29560a0c612SFrank Laub llvm_unreachable("incorrect atomic ordering"); 29660a0c612SFrank Laub } 29760a0c612SFrank Laub 298c33d6970SRiver Riddle ModuleTranslation::ModuleTranslation(Operation *module, 299c33d6970SRiver Riddle std::unique_ptr<llvm::Module> llvmModule) 300c33d6970SRiver Riddle : mlirModule(module), llvmModule(std::move(llvmModule)), 301c33d6970SRiver Riddle debugTranslation( 30292a295ebSKiran Chandramohan std::make_unique<DebugTranslation>(module, *this->llvmModule)), 30392a295ebSKiran Chandramohan ompDialect( 30469040d5bSStephan Herhut module->getContext()->getRegisteredDialect<omp::OpenMPDialect>()), 30569040d5bSStephan Herhut llvmDialect(module->getContext()->getRegisteredDialect<LLVMDialect>()) { 306c33d6970SRiver Riddle assert(satisfiesLLVMModule(mlirModule) && 307c33d6970SRiver Riddle "mlirModule should honor LLVM's module semantics."); 308c33d6970SRiver Riddle } 309d9067dcaSKiran Chandramohan ModuleTranslation::~ModuleTranslation() { 310d9067dcaSKiran Chandramohan if (ompBuilder) 311d9067dcaSKiran Chandramohan ompBuilder->finalize(); 312d9067dcaSKiran Chandramohan } 313d9067dcaSKiran Chandramohan 314d9067dcaSKiran Chandramohan /// Get the SSA value passed to the current block from the terminator operation 315d9067dcaSKiran Chandramohan /// of its predecessor. 316d9067dcaSKiran Chandramohan static Value getPHISourceValue(Block *current, Block *pred, 317d9067dcaSKiran Chandramohan unsigned numArguments, unsigned index) { 318d9067dcaSKiran Chandramohan Operation &terminator = *pred->getTerminator(); 319d9067dcaSKiran Chandramohan if (isa<LLVM::BrOp>(terminator)) 320d9067dcaSKiran Chandramohan return terminator.getOperand(index); 321d9067dcaSKiran Chandramohan 322d9067dcaSKiran Chandramohan // For conditional branches, we need to check if the current block is reached 323d9067dcaSKiran Chandramohan // through the "true" or the "false" branch and take the relevant operands. 324d9067dcaSKiran Chandramohan auto condBranchOp = dyn_cast<LLVM::CondBrOp>(terminator); 325d9067dcaSKiran Chandramohan assert(condBranchOp && 326d9067dcaSKiran Chandramohan "only branch operations can be terminators of a block that " 327d9067dcaSKiran Chandramohan "has successors"); 328d9067dcaSKiran Chandramohan assert((condBranchOp.getSuccessor(0) != condBranchOp.getSuccessor(1)) && 329d9067dcaSKiran Chandramohan "successors with arguments in LLVM conditional branches must be " 330d9067dcaSKiran Chandramohan "different blocks"); 331d9067dcaSKiran Chandramohan 332d9067dcaSKiran Chandramohan return condBranchOp.getSuccessor(0) == current 333d9067dcaSKiran Chandramohan ? condBranchOp.trueDestOperands()[index] 334d9067dcaSKiran Chandramohan : condBranchOp.falseDestOperands()[index]; 335d9067dcaSKiran Chandramohan } 336d9067dcaSKiran Chandramohan 337d9067dcaSKiran Chandramohan /// Connect the PHI nodes to the results of preceding blocks. 338d9067dcaSKiran Chandramohan template <typename T> 339d9067dcaSKiran Chandramohan static void 340d9067dcaSKiran Chandramohan connectPHINodes(T &func, const DenseMap<Value, llvm::Value *> &valueMapping, 341d9067dcaSKiran Chandramohan const DenseMap<Block *, llvm::BasicBlock *> &blockMapping) { 342d9067dcaSKiran Chandramohan // Skip the first block, it cannot be branched to and its arguments correspond 343d9067dcaSKiran Chandramohan // to the arguments of the LLVM function. 344d9067dcaSKiran Chandramohan for (auto it = std::next(func.begin()), eit = func.end(); it != eit; ++it) { 345d9067dcaSKiran Chandramohan Block *bb = &*it; 346d9067dcaSKiran Chandramohan llvm::BasicBlock *llvmBB = blockMapping.lookup(bb); 347d9067dcaSKiran Chandramohan auto phis = llvmBB->phis(); 348d9067dcaSKiran Chandramohan auto numArguments = bb->getNumArguments(); 349d9067dcaSKiran Chandramohan assert(numArguments == std::distance(phis.begin(), phis.end())); 350d9067dcaSKiran Chandramohan for (auto &numberedPhiNode : llvm::enumerate(phis)) { 351d9067dcaSKiran Chandramohan auto &phiNode = numberedPhiNode.value(); 352d9067dcaSKiran Chandramohan unsigned index = numberedPhiNode.index(); 353d9067dcaSKiran Chandramohan for (auto *pred : bb->getPredecessors()) { 354d9067dcaSKiran Chandramohan phiNode.addIncoming(valueMapping.lookup(getPHISourceValue( 355d9067dcaSKiran Chandramohan bb, pred, numArguments, index)), 356d9067dcaSKiran Chandramohan blockMapping.lookup(pred)); 357d9067dcaSKiran Chandramohan } 358d9067dcaSKiran Chandramohan } 359d9067dcaSKiran Chandramohan } 360d9067dcaSKiran Chandramohan } 361d9067dcaSKiran Chandramohan 362d9067dcaSKiran Chandramohan // TODO: implement an iterative version 363d9067dcaSKiran Chandramohan static void topologicalSortImpl(llvm::SetVector<Block *> &blocks, Block *b) { 364d9067dcaSKiran Chandramohan blocks.insert(b); 365d9067dcaSKiran Chandramohan for (Block *bb : b->getSuccessors()) { 366d9067dcaSKiran Chandramohan if (blocks.count(bb) == 0) 367d9067dcaSKiran Chandramohan topologicalSortImpl(blocks, bb); 368d9067dcaSKiran Chandramohan } 369d9067dcaSKiran Chandramohan } 370d9067dcaSKiran Chandramohan 371d9067dcaSKiran Chandramohan /// Sort function blocks topologically. 372d9067dcaSKiran Chandramohan template <typename T> 373d9067dcaSKiran Chandramohan static llvm::SetVector<Block *> topologicalSort(T &f) { 374d9067dcaSKiran Chandramohan // For each blocks that has not been visited yet (i.e. that has no 375d9067dcaSKiran Chandramohan // predecessors), add it to the list and traverse its successors in DFS 376d9067dcaSKiran Chandramohan // preorder. 377d9067dcaSKiran Chandramohan llvm::SetVector<Block *> blocks; 378d9067dcaSKiran Chandramohan for (Block &b : f) { 379d9067dcaSKiran Chandramohan if (blocks.count(&b) == 0) 380d9067dcaSKiran Chandramohan topologicalSortImpl(blocks, &b); 381d9067dcaSKiran Chandramohan } 382d9067dcaSKiran Chandramohan assert(blocks.size() == f.getBlocks().size() && "some blocks are not sorted"); 383d9067dcaSKiran Chandramohan 384d9067dcaSKiran Chandramohan return blocks; 385d9067dcaSKiran Chandramohan } 386d9067dcaSKiran Chandramohan 387d9067dcaSKiran Chandramohan /// Convert the OpenMP parallel Operation to LLVM IR. 388d9067dcaSKiran Chandramohan LogicalResult 389d9067dcaSKiran Chandramohan ModuleTranslation::convertOmpParallel(Operation &opInst, 390d9067dcaSKiran Chandramohan llvm::IRBuilder<> &builder) { 391d9067dcaSKiran Chandramohan using InsertPointTy = llvm::OpenMPIRBuilder::InsertPointTy; 392d9067dcaSKiran Chandramohan 393d9067dcaSKiran Chandramohan auto bodyGenCB = [&](InsertPointTy allocaIP, InsertPointTy codeGenIP, 394d9067dcaSKiran Chandramohan llvm::BasicBlock &continuationIP) { 395d9067dcaSKiran Chandramohan llvm::LLVMContext &llvmContext = llvmModule->getContext(); 396d9067dcaSKiran Chandramohan 397d9067dcaSKiran Chandramohan llvm::BasicBlock *codeGenIPBB = codeGenIP.getBlock(); 398d9067dcaSKiran Chandramohan llvm::Instruction *codeGenIPBBTI = codeGenIPBB->getTerminator(); 399d9067dcaSKiran Chandramohan 400d9067dcaSKiran Chandramohan builder.SetInsertPoint(codeGenIPBB); 401d9067dcaSKiran Chandramohan 402d9067dcaSKiran Chandramohan for (auto ®ion : opInst.getRegions()) { 403d9067dcaSKiran Chandramohan for (auto &bb : region) { 404d9067dcaSKiran Chandramohan auto *llvmBB = llvm::BasicBlock::Create( 405d9067dcaSKiran Chandramohan llvmContext, "omp.par.region", codeGenIP.getBlock()->getParent()); 406d9067dcaSKiran Chandramohan blockMapping[&bb] = llvmBB; 407d9067dcaSKiran Chandramohan } 408d9067dcaSKiran Chandramohan 409d9067dcaSKiran Chandramohan // Then, convert blocks one by one in topological order to ensure 410d9067dcaSKiran Chandramohan // defs are converted before uses. 411d9067dcaSKiran Chandramohan llvm::SetVector<Block *> blocks = topologicalSort(region); 412d9067dcaSKiran Chandramohan for (auto indexedBB : llvm::enumerate(blocks)) { 413d9067dcaSKiran Chandramohan Block *bb = indexedBB.value(); 414d9067dcaSKiran Chandramohan llvm::BasicBlock *curLLVMBB = blockMapping[bb]; 415d9067dcaSKiran Chandramohan if (bb->isEntryBlock()) 416d9067dcaSKiran Chandramohan codeGenIPBBTI->setSuccessor(0, curLLVMBB); 417d9067dcaSKiran Chandramohan 418d9067dcaSKiran Chandramohan // TODO: Error not returned up the hierarchy 419d9067dcaSKiran Chandramohan if (failed( 420d9067dcaSKiran Chandramohan convertBlock(*bb, /*ignoreArguments=*/indexedBB.index() == 0))) 421d9067dcaSKiran Chandramohan return; 422d9067dcaSKiran Chandramohan 423d9067dcaSKiran Chandramohan // If this block has the terminator then add a jump to 424d9067dcaSKiran Chandramohan // continuation bb 425d9067dcaSKiran Chandramohan for (auto &op : *bb) { 426d9067dcaSKiran Chandramohan if (isa<omp::TerminatorOp>(op)) { 427d9067dcaSKiran Chandramohan builder.SetInsertPoint(curLLVMBB); 428d9067dcaSKiran Chandramohan builder.CreateBr(&continuationIP); 429d9067dcaSKiran Chandramohan } 430d9067dcaSKiran Chandramohan } 431d9067dcaSKiran Chandramohan } 432d9067dcaSKiran Chandramohan // Finally, after all blocks have been traversed and values mapped, 433d9067dcaSKiran Chandramohan // connect the PHI nodes to the results of preceding blocks. 434d9067dcaSKiran Chandramohan connectPHINodes(region, valueMapping, blockMapping); 435d9067dcaSKiran Chandramohan } 436d9067dcaSKiran Chandramohan }; 437d9067dcaSKiran Chandramohan 438d9067dcaSKiran Chandramohan // TODO: Perform appropriate actions according to the data-sharing 439d9067dcaSKiran Chandramohan // attribute (shared, private, firstprivate, ...) of variables. 440d9067dcaSKiran Chandramohan // Currently defaults to shared. 441d9067dcaSKiran Chandramohan auto privCB = [&](InsertPointTy allocaIP, InsertPointTy codeGenIP, 442d9067dcaSKiran Chandramohan llvm::Value &vPtr, 443d9067dcaSKiran Chandramohan llvm::Value *&replacementValue) -> InsertPointTy { 444d9067dcaSKiran Chandramohan replacementValue = &vPtr; 445d9067dcaSKiran Chandramohan 446d9067dcaSKiran Chandramohan return codeGenIP; 447d9067dcaSKiran Chandramohan }; 448d9067dcaSKiran Chandramohan 449d9067dcaSKiran Chandramohan // TODO: Perform finalization actions for variables. This has to be 450d9067dcaSKiran Chandramohan // called for variables which have destructors/finalizers. 451d9067dcaSKiran Chandramohan auto finiCB = [&](InsertPointTy codeGenIP) {}; 452d9067dcaSKiran Chandramohan 453d9067dcaSKiran Chandramohan // TODO: The various operands of parallel operation are not handled. 454d9067dcaSKiran Chandramohan // Parallel operation is created with some default options for now. 455d9067dcaSKiran Chandramohan llvm::Value *ifCond = nullptr; 456d9067dcaSKiran Chandramohan llvm::Value *numThreads = nullptr; 457d9067dcaSKiran Chandramohan bool isCancellable = false; 458d9067dcaSKiran Chandramohan builder.restoreIP(ompBuilder->CreateParallel( 459d9067dcaSKiran Chandramohan builder, bodyGenCB, privCB, finiCB, ifCond, numThreads, 460d9067dcaSKiran Chandramohan llvm::omp::OMP_PROC_BIND_default, isCancellable)); 461d9067dcaSKiran Chandramohan return success(); 462d9067dcaSKiran Chandramohan } 463c33d6970SRiver Riddle 4647ecee63eSKiran Kumar T P /// Given an OpenMP MLIR operation, create the corresponding LLVM IR 4657ecee63eSKiran Kumar T P /// (including OpenMP runtime calls). 4667ecee63eSKiran Kumar T P LogicalResult 4677ecee63eSKiran Kumar T P ModuleTranslation::convertOmpOperation(Operation &opInst, 4687ecee63eSKiran Kumar T P llvm::IRBuilder<> &builder) { 4697ecee63eSKiran Kumar T P if (!ompBuilder) { 4707ecee63eSKiran Kumar T P ompBuilder = std::make_unique<llvm::OpenMPIRBuilder>(*llvmModule); 4717ecee63eSKiran Kumar T P ompBuilder->initialize(); 4727ecee63eSKiran Kumar T P } 473ebf190fcSRiver Riddle return llvm::TypeSwitch<Operation *, LogicalResult>(&opInst) 4747ecee63eSKiran Kumar T P .Case([&](omp::BarrierOp) { 4757ecee63eSKiran Kumar T P ompBuilder->CreateBarrier(builder.saveIP(), llvm::omp::OMPD_barrier); 4767ecee63eSKiran Kumar T P return success(); 4777ecee63eSKiran Kumar T P }) 4787ecee63eSKiran Kumar T P .Case([&](omp::TaskwaitOp) { 4797ecee63eSKiran Kumar T P ompBuilder->CreateTaskwait(builder.saveIP()); 4807ecee63eSKiran Kumar T P return success(); 4817ecee63eSKiran Kumar T P }) 4827ecee63eSKiran Kumar T P .Case([&](omp::TaskyieldOp) { 4837ecee63eSKiran Kumar T P ompBuilder->CreateTaskyield(builder.saveIP()); 4847ecee63eSKiran Kumar T P return success(); 4857ecee63eSKiran Kumar T P }) 486fa8fc9ffSKiran Kumar T P .Case([&](omp::FlushOp) { 487fa8fc9ffSKiran Kumar T P // No support in Openmp runtime funciton (__kmpc_flush) to accept 488fa8fc9ffSKiran Kumar T P // the argument list. 489fa8fc9ffSKiran Kumar T P // OpenMP standard states the following: 490fa8fc9ffSKiran Kumar T P // "An implementation may implement a flush with a list by ignoring 491fa8fc9ffSKiran Kumar T P // the list, and treating it the same as a flush without a list." 492fa8fc9ffSKiran Kumar T P // 493fa8fc9ffSKiran Kumar T P // The argument list is discarded so that, flush with a list is treated 494fa8fc9ffSKiran Kumar T P // same as a flush without a list. 495fa8fc9ffSKiran Kumar T P ompBuilder->CreateFlush(builder.saveIP()); 496fa8fc9ffSKiran Kumar T P return success(); 497fa8fc9ffSKiran Kumar T P }) 498d9067dcaSKiran Chandramohan .Case([&](omp::TerminatorOp) { return success(); }) 499d9067dcaSKiran Chandramohan .Case( 500d9067dcaSKiran Chandramohan [&](omp::ParallelOp) { return convertOmpParallel(opInst, builder); }) 5017ecee63eSKiran Kumar T P .Default([&](Operation *inst) { 5027ecee63eSKiran Kumar T P return inst->emitError("unsupported OpenMP operation: ") 5037ecee63eSKiran Kumar T P << inst->getName(); 5047ecee63eSKiran Kumar T P }); 5057ecee63eSKiran Kumar T P } 5067ecee63eSKiran Kumar T P 5072666b973SRiver Riddle /// Given a single MLIR operation, create the corresponding LLVM IR operation 5082666b973SRiver Riddle /// using the `builder`. LLVM IR Builder does not have a generic interface so 5092666b973SRiver Riddle /// this has to be a long chain of `if`s calling different functions with a 5102666b973SRiver Riddle /// different number of arguments. 511baa1ec22SAlex Zinenko LogicalResult ModuleTranslation::convertOperation(Operation &opInst, 5125d7231d8SStephan Herhut llvm::IRBuilder<> &builder) { 5135d7231d8SStephan Herhut auto extractPosition = [](ArrayAttr attr) { 5145d7231d8SStephan Herhut SmallVector<unsigned, 4> position; 5155d7231d8SStephan Herhut position.reserve(attr.size()); 5165d7231d8SStephan Herhut for (Attribute v : attr) 5175d7231d8SStephan Herhut position.push_back(v.cast<IntegerAttr>().getValue().getZExtValue()); 5185d7231d8SStephan Herhut return position; 5195d7231d8SStephan Herhut }; 5205d7231d8SStephan Herhut 521ba0fa925SRiver Riddle #include "mlir/Dialect/LLVMIR/LLVMConversions.inc" 5225d7231d8SStephan Herhut 5235d7231d8SStephan Herhut // Emit function calls. If the "callee" attribute is present, this is a 5245d7231d8SStephan Herhut // direct function call and we also need to look up the remapped function 5255d7231d8SStephan Herhut // itself. Otherwise, this is an indirect call and the callee is the first 5265d7231d8SStephan Herhut // operand, look it up as a normal value. Return the llvm::Value representing 5275d7231d8SStephan Herhut // the function result, which may be of llvm::VoidTy type. 5285d7231d8SStephan Herhut auto convertCall = [this, &builder](Operation &op) -> llvm::Value * { 5295d7231d8SStephan Herhut auto operands = lookupValues(op.getOperands()); 5305d7231d8SStephan Herhut ArrayRef<llvm::Value *> operandsRef(operands); 5319b9c647cSRiver Riddle if (auto attr = op.getAttrOfType<FlatSymbolRefAttr>("callee")) { 5325d7231d8SStephan Herhut return builder.CreateCall(functionMapping.lookup(attr.getValue()), 5335d7231d8SStephan Herhut operandsRef); 5345d7231d8SStephan Herhut } else { 535133049d0SEli Friedman auto *calleePtrType = 536133049d0SEli Friedman cast<llvm::PointerType>(operandsRef.front()->getType()); 537133049d0SEli Friedman auto *calleeType = 538133049d0SEli Friedman cast<llvm::FunctionType>(calleePtrType->getElementType()); 539133049d0SEli Friedman return builder.CreateCall(calleeType, operandsRef.front(), 540133049d0SEli Friedman operandsRef.drop_front()); 5415d7231d8SStephan Herhut } 5425d7231d8SStephan Herhut }; 5435d7231d8SStephan Herhut 5445d7231d8SStephan Herhut // Emit calls. If the called function has a result, remap the corresponding 5455d7231d8SStephan Herhut // value. Note that LLVM IR dialect CallOp has either 0 or 1 result. 546d5b60ee8SRiver Riddle if (isa<LLVM::CallOp>(opInst)) { 5475d7231d8SStephan Herhut llvm::Value *result = convertCall(opInst); 5485d7231d8SStephan Herhut if (opInst.getNumResults() != 0) { 5495d7231d8SStephan Herhut valueMapping[opInst.getResult(0)] = result; 550baa1ec22SAlex Zinenko return success(); 5515d7231d8SStephan Herhut } 5525d7231d8SStephan Herhut // Check that LLVM call returns void for 0-result functions. 553baa1ec22SAlex Zinenko return success(result->getType()->isVoidTy()); 5545d7231d8SStephan Herhut } 5555d7231d8SStephan Herhut 556d242aa24SShraiysh Vaishay if (auto invOp = dyn_cast<LLVM::InvokeOp>(opInst)) { 557d242aa24SShraiysh Vaishay auto operands = lookupValues(opInst.getOperands()); 558d242aa24SShraiysh Vaishay ArrayRef<llvm::Value *> operandsRef(operands); 559133049d0SEli Friedman if (auto attr = opInst.getAttrOfType<FlatSymbolRefAttr>("callee")) { 560d242aa24SShraiysh Vaishay builder.CreateInvoke(functionMapping.lookup(attr.getValue()), 561d242aa24SShraiysh Vaishay blockMapping[invOp.getSuccessor(0)], 562d242aa24SShraiysh Vaishay blockMapping[invOp.getSuccessor(1)], operandsRef); 563133049d0SEli Friedman } else { 564133049d0SEli Friedman auto *calleePtrType = 565133049d0SEli Friedman cast<llvm::PointerType>(operandsRef.front()->getType()); 566133049d0SEli Friedman auto *calleeType = 567133049d0SEli Friedman cast<llvm::FunctionType>(calleePtrType->getElementType()); 568d242aa24SShraiysh Vaishay builder.CreateInvoke( 569133049d0SEli Friedman calleeType, operandsRef.front(), blockMapping[invOp.getSuccessor(0)], 570d242aa24SShraiysh Vaishay blockMapping[invOp.getSuccessor(1)], operandsRef.drop_front()); 571133049d0SEli Friedman } 572d242aa24SShraiysh Vaishay return success(); 573d242aa24SShraiysh Vaishay } 574d242aa24SShraiysh Vaishay 575d242aa24SShraiysh Vaishay if (auto lpOp = dyn_cast<LLVM::LandingpadOp>(opInst)) { 576d242aa24SShraiysh Vaishay llvm::Type *ty = lpOp.getType().dyn_cast<LLVMType>().getUnderlyingType(); 577d242aa24SShraiysh Vaishay llvm::LandingPadInst *lpi = 578d242aa24SShraiysh Vaishay builder.CreateLandingPad(ty, lpOp.getNumOperands()); 579d242aa24SShraiysh Vaishay 580d242aa24SShraiysh Vaishay // Add clauses 581d242aa24SShraiysh Vaishay for (auto operand : lookupValues(lpOp.getOperands())) { 582d242aa24SShraiysh Vaishay // All operands should be constant - checked by verifier 583d242aa24SShraiysh Vaishay if (auto constOperand = dyn_cast<llvm::Constant>(operand)) 584d242aa24SShraiysh Vaishay lpi->addClause(constOperand); 585d242aa24SShraiysh Vaishay } 586ff77397fSShraiysh Vaishay valueMapping[lpOp.getResult()] = lpi; 587d242aa24SShraiysh Vaishay return success(); 588d242aa24SShraiysh Vaishay } 589d242aa24SShraiysh Vaishay 5905d7231d8SStephan Herhut // Emit branches. We need to look up the remapped blocks and ignore the block 5915d7231d8SStephan Herhut // arguments that were transformed into PHI nodes. 592c5ecf991SRiver Riddle if (auto brOp = dyn_cast<LLVM::BrOp>(opInst)) { 593c0fd5e65SRiver Riddle builder.CreateBr(blockMapping[brOp.getSuccessor()]); 594baa1ec22SAlex Zinenko return success(); 5955d7231d8SStephan Herhut } 596c5ecf991SRiver Riddle if (auto condbrOp = dyn_cast<LLVM::CondBrOp>(opInst)) { 5975d7231d8SStephan Herhut builder.CreateCondBr(valueMapping.lookup(condbrOp.getOperand(0)), 5985d7231d8SStephan Herhut blockMapping[condbrOp.getSuccessor(0)], 5995d7231d8SStephan Herhut blockMapping[condbrOp.getSuccessor(1)]); 600baa1ec22SAlex Zinenko return success(); 6015d7231d8SStephan Herhut } 6025d7231d8SStephan Herhut 6032dd38b09SAlex Zinenko // Emit addressof. We need to look up the global value referenced by the 6042dd38b09SAlex Zinenko // operation and store it in the MLIR-to-LLVM value mapping. This does not 6052dd38b09SAlex Zinenko // emit any LLVM instruction. 6062dd38b09SAlex Zinenko if (auto addressOfOp = dyn_cast<LLVM::AddressOfOp>(opInst)) { 6072dd38b09SAlex Zinenko LLVM::GlobalOp global = addressOfOp.getGlobal(); 608cba733edSAlex Zinenko LLVM::LLVMFuncOp function = addressOfOp.getFunction(); 6092dd38b09SAlex Zinenko 610cba733edSAlex Zinenko // The verifier should not have allowed this. 611cba733edSAlex Zinenko assert((global || function) && 612cba733edSAlex Zinenko "referencing an undefined global or function"); 613cba733edSAlex Zinenko 614cba733edSAlex Zinenko valueMapping[addressOfOp.getResult()] = 615cba733edSAlex Zinenko global ? globalsMapping.lookup(global) 616cba733edSAlex Zinenko : functionMapping.lookup(function.getName()); 6172dd38b09SAlex Zinenko return success(); 6182dd38b09SAlex Zinenko } 6192dd38b09SAlex Zinenko 62092a295ebSKiran Chandramohan if (opInst.getDialect() == ompDialect) { 6217ecee63eSKiran Kumar T P return convertOmpOperation(opInst, builder); 62292a295ebSKiran Chandramohan } 62392a295ebSKiran Chandramohan 624baa1ec22SAlex Zinenko return opInst.emitError("unsupported or non-LLVM operation: ") 625baa1ec22SAlex Zinenko << opInst.getName(); 6265d7231d8SStephan Herhut } 6275d7231d8SStephan Herhut 6282666b973SRiver Riddle /// Convert block to LLVM IR. Unless `ignoreArguments` is set, emit PHI nodes 6292666b973SRiver Riddle /// to define values corresponding to the MLIR block arguments. These nodes 6302666b973SRiver Riddle /// are not connected to the source basic blocks, which may not exist yet. 631baa1ec22SAlex Zinenko LogicalResult ModuleTranslation::convertBlock(Block &bb, bool ignoreArguments) { 6325d7231d8SStephan Herhut llvm::IRBuilder<> builder(blockMapping[&bb]); 633c33d6970SRiver Riddle auto *subprogram = builder.GetInsertBlock()->getParent()->getSubprogram(); 6345d7231d8SStephan Herhut 6355d7231d8SStephan Herhut // Before traversing operations, make block arguments available through 6365d7231d8SStephan Herhut // value remapping and PHI nodes, but do not add incoming edges for the PHI 6375d7231d8SStephan Herhut // nodes just yet: those values may be defined by this or following blocks. 6385d7231d8SStephan Herhut // This step is omitted if "ignoreArguments" is set. The arguments of the 6395d7231d8SStephan Herhut // first block have been already made available through the remapping of 6405d7231d8SStephan Herhut // LLVM function arguments. 6415d7231d8SStephan Herhut if (!ignoreArguments) { 6425d7231d8SStephan Herhut auto predecessors = bb.getPredecessors(); 6435d7231d8SStephan Herhut unsigned numPredecessors = 6445d7231d8SStephan Herhut std::distance(predecessors.begin(), predecessors.end()); 64535807bc4SRiver Riddle for (auto arg : bb.getArguments()) { 6462bdf33ccSRiver Riddle auto wrappedType = arg.getType().dyn_cast<LLVM::LLVMType>(); 647baa1ec22SAlex Zinenko if (!wrappedType) 648baa1ec22SAlex Zinenko return emitError(bb.front().getLoc(), 649a4c3a645SRiver Riddle "block argument does not have an LLVM type"); 6505d7231d8SStephan Herhut llvm::Type *type = wrappedType.getUnderlyingType(); 6515d7231d8SStephan Herhut llvm::PHINode *phi = builder.CreatePHI(type, numPredecessors); 6525d7231d8SStephan Herhut valueMapping[arg] = phi; 6535d7231d8SStephan Herhut } 6545d7231d8SStephan Herhut } 6555d7231d8SStephan Herhut 6565d7231d8SStephan Herhut // Traverse operations. 6575d7231d8SStephan Herhut for (auto &op : bb) { 658c33d6970SRiver Riddle // Set the current debug location within the builder. 659c33d6970SRiver Riddle builder.SetCurrentDebugLocation( 660c33d6970SRiver Riddle debugTranslation->translateLoc(op.getLoc(), subprogram)); 661c33d6970SRiver Riddle 662baa1ec22SAlex Zinenko if (failed(convertOperation(op, builder))) 663baa1ec22SAlex Zinenko return failure(); 6645d7231d8SStephan Herhut } 6655d7231d8SStephan Herhut 666baa1ec22SAlex Zinenko return success(); 6675d7231d8SStephan Herhut } 6685d7231d8SStephan Herhut 6692666b973SRiver Riddle /// Create named global variables that correspond to llvm.mlir.global 6702666b973SRiver Riddle /// definitions. 671efa2d533SAlex Zinenko LogicalResult ModuleTranslation::convertGlobals() { 67269040d5bSStephan Herhut // Lock access to the llvm context. 67369040d5bSStephan Herhut llvm::sys::SmartScopedLock<true> scopedLock( 67469040d5bSStephan Herhut llvmDialect->getLLVMContextMutex()); 67544fc7d72STres Popp for (auto op : getModuleBody(mlirModule).getOps<LLVM::GlobalOp>()) { 676250a11aeSJames Molloy llvm::Type *type = op.getType().getUnderlyingType(); 677250a11aeSJames Molloy llvm::Constant *cst = llvm::UndefValue::get(type); 678250a11aeSJames Molloy if (op.getValueOrNull()) { 67968451df2SAlex Zinenko // String attributes are treated separately because they cannot appear as 68068451df2SAlex Zinenko // in-function constants and are thus not supported by getLLVMConstant. 68133a3a91bSChristian Sigg if (auto strAttr = op.getValueOrNull().dyn_cast_or_null<StringAttr>()) { 6822dd38b09SAlex Zinenko cst = llvm::ConstantDataArray::getString( 68368451df2SAlex Zinenko llvmModule->getContext(), strAttr.getValue(), /*AddNull=*/false); 6842dd38b09SAlex Zinenko type = cst->getType(); 685efa2d533SAlex Zinenko } else if (!(cst = getLLVMConstant(type, op.getValueOrNull(), 686efa2d533SAlex Zinenko op.getLoc()))) { 687efa2d533SAlex Zinenko return failure(); 68868451df2SAlex Zinenko } 689250a11aeSJames Molloy } else if (Block *initializer = op.getInitializerBlock()) { 690250a11aeSJames Molloy llvm::IRBuilder<> builder(llvmModule->getContext()); 691250a11aeSJames Molloy for (auto &op : initializer->without_terminator()) { 692250a11aeSJames Molloy if (failed(convertOperation(op, builder)) || 693efa2d533SAlex Zinenko !isa<llvm::Constant>(valueMapping.lookup(op.getResult(0)))) 694efa2d533SAlex Zinenko return emitError(op.getLoc(), "unemittable constant value"); 695250a11aeSJames Molloy } 696250a11aeSJames Molloy ReturnOp ret = cast<ReturnOp>(initializer->getTerminator()); 697250a11aeSJames Molloy cst = cast<llvm::Constant>(valueMapping.lookup(ret.getOperand(0))); 698250a11aeSJames Molloy } 69968451df2SAlex Zinenko 700eb67bd78SAlex Zinenko auto linkage = convertLinkageToLLVM(op.linkage()); 701d5e627f8SAlex Zinenko bool anyExternalLinkage = 7027b5d4669SEric Schweitz ((linkage == llvm::GlobalVariable::ExternalLinkage && 7037b5d4669SEric Schweitz isa<llvm::UndefValue>(cst)) || 704d5e627f8SAlex Zinenko linkage == llvm::GlobalVariable::ExternalWeakLinkage); 705e79bfefbSMLIR Team auto addrSpace = op.addr_space().getLimitedValue(); 706e79bfefbSMLIR Team auto *var = new llvm::GlobalVariable( 707d5e627f8SAlex Zinenko *llvmModule, type, op.constant(), linkage, 708d5e627f8SAlex Zinenko anyExternalLinkage ? nullptr : cst, op.sym_name(), 709d5e627f8SAlex Zinenko /*InsertBefore=*/nullptr, llvm::GlobalValue::NotThreadLocal, addrSpace); 710e79bfefbSMLIR Team 7112dd38b09SAlex Zinenko globalsMapping.try_emplace(op, var); 712b9ff2dd8SAlex Zinenko } 713efa2d533SAlex Zinenko 714efa2d533SAlex Zinenko return success(); 715b9ff2dd8SAlex Zinenko } 716b9ff2dd8SAlex Zinenko 7170a2131b7SAlex Zinenko /// Attempts to add an attribute identified by `key`, optionally with the given 7180a2131b7SAlex Zinenko /// `value` to LLVM function `llvmFunc`. Reports errors at `loc` if any. If the 7190a2131b7SAlex Zinenko /// attribute has a kind known to LLVM IR, create the attribute of this kind, 7200a2131b7SAlex Zinenko /// otherwise keep it as a string attribute. Performs additional checks for 7210a2131b7SAlex Zinenko /// attributes known to have or not have a value in order to avoid assertions 7220a2131b7SAlex Zinenko /// inside LLVM upon construction. 7230a2131b7SAlex Zinenko static LogicalResult checkedAddLLVMFnAttribute(Location loc, 7240a2131b7SAlex Zinenko llvm::Function *llvmFunc, 7250a2131b7SAlex Zinenko StringRef key, 7260a2131b7SAlex Zinenko StringRef value = StringRef()) { 7270a2131b7SAlex Zinenko auto kind = llvm::Attribute::getAttrKindFromName(key); 7280a2131b7SAlex Zinenko if (kind == llvm::Attribute::None) { 7290a2131b7SAlex Zinenko llvmFunc->addFnAttr(key, value); 7300a2131b7SAlex Zinenko return success(); 7310a2131b7SAlex Zinenko } 7320a2131b7SAlex Zinenko 7330a2131b7SAlex Zinenko if (llvm::Attribute::doesAttrKindHaveArgument(kind)) { 7340a2131b7SAlex Zinenko if (value.empty()) 7350a2131b7SAlex Zinenko return emitError(loc) << "LLVM attribute '" << key << "' expects a value"; 7360a2131b7SAlex Zinenko 7370a2131b7SAlex Zinenko int result; 7380a2131b7SAlex Zinenko if (!value.getAsInteger(/*Radix=*/0, result)) 7390a2131b7SAlex Zinenko llvmFunc->addFnAttr( 7400a2131b7SAlex Zinenko llvm::Attribute::get(llvmFunc->getContext(), kind, result)); 7410a2131b7SAlex Zinenko else 7420a2131b7SAlex Zinenko llvmFunc->addFnAttr(key, value); 7430a2131b7SAlex Zinenko return success(); 7440a2131b7SAlex Zinenko } 7450a2131b7SAlex Zinenko 7460a2131b7SAlex Zinenko if (!value.empty()) 7470a2131b7SAlex Zinenko return emitError(loc) << "LLVM attribute '" << key 7480a2131b7SAlex Zinenko << "' does not expect a value, found '" << value 7490a2131b7SAlex Zinenko << "'"; 7500a2131b7SAlex Zinenko 7510a2131b7SAlex Zinenko llvmFunc->addFnAttr(kind); 7520a2131b7SAlex Zinenko return success(); 7530a2131b7SAlex Zinenko } 7540a2131b7SAlex Zinenko 7550a2131b7SAlex Zinenko /// Attaches the attributes listed in the given array attribute to `llvmFunc`. 7560a2131b7SAlex Zinenko /// Reports error to `loc` if any and returns immediately. Expects `attributes` 7570a2131b7SAlex Zinenko /// to be an array attribute containing either string attributes, treated as 7580a2131b7SAlex Zinenko /// value-less LLVM attributes, or array attributes containing two string 7590a2131b7SAlex Zinenko /// attributes, with the first string being the name of the corresponding LLVM 7600a2131b7SAlex Zinenko /// attribute and the second string beings its value. Note that even integer 7610a2131b7SAlex Zinenko /// attributes are expected to have their values expressed as strings. 7620a2131b7SAlex Zinenko static LogicalResult 7630a2131b7SAlex Zinenko forwardPassthroughAttributes(Location loc, Optional<ArrayAttr> attributes, 7640a2131b7SAlex Zinenko llvm::Function *llvmFunc) { 7650a2131b7SAlex Zinenko if (!attributes) 7660a2131b7SAlex Zinenko return success(); 7670a2131b7SAlex Zinenko 7680a2131b7SAlex Zinenko for (Attribute attr : *attributes) { 7690a2131b7SAlex Zinenko if (auto stringAttr = attr.dyn_cast<StringAttr>()) { 7700a2131b7SAlex Zinenko if (failed( 7710a2131b7SAlex Zinenko checkedAddLLVMFnAttribute(loc, llvmFunc, stringAttr.getValue()))) 7720a2131b7SAlex Zinenko return failure(); 7730a2131b7SAlex Zinenko continue; 7740a2131b7SAlex Zinenko } 7750a2131b7SAlex Zinenko 7760a2131b7SAlex Zinenko auto arrayAttr = attr.dyn_cast<ArrayAttr>(); 7770a2131b7SAlex Zinenko if (!arrayAttr || arrayAttr.size() != 2) 7780a2131b7SAlex Zinenko return emitError(loc) 7790a2131b7SAlex Zinenko << "expected 'passthrough' to contain string or array attributes"; 7800a2131b7SAlex Zinenko 7810a2131b7SAlex Zinenko auto keyAttr = arrayAttr[0].dyn_cast<StringAttr>(); 7820a2131b7SAlex Zinenko auto valueAttr = arrayAttr[1].dyn_cast<StringAttr>(); 7830a2131b7SAlex Zinenko if (!keyAttr || !valueAttr) 7840a2131b7SAlex Zinenko return emitError(loc) 7850a2131b7SAlex Zinenko << "expected arrays within 'passthrough' to contain two strings"; 7860a2131b7SAlex Zinenko 7870a2131b7SAlex Zinenko if (failed(checkedAddLLVMFnAttribute(loc, llvmFunc, keyAttr.getValue(), 7880a2131b7SAlex Zinenko valueAttr.getValue()))) 7890a2131b7SAlex Zinenko return failure(); 7900a2131b7SAlex Zinenko } 7910a2131b7SAlex Zinenko return success(); 7920a2131b7SAlex Zinenko } 7930a2131b7SAlex Zinenko 7945e7959a3SAlex Zinenko LogicalResult ModuleTranslation::convertOneFunction(LLVMFuncOp func) { 7955d7231d8SStephan Herhut // Clear the block and value mappings, they are only relevant within one 7965d7231d8SStephan Herhut // function. 7975d7231d8SStephan Herhut blockMapping.clear(); 7985d7231d8SStephan Herhut valueMapping.clear(); 799c33862b0SRiver Riddle llvm::Function *llvmFunc = functionMapping.lookup(func.getName()); 800c33d6970SRiver Riddle 801c33d6970SRiver Riddle // Translate the debug information for this function. 802c33d6970SRiver Riddle debugTranslation->translate(func, *llvmFunc); 803c33d6970SRiver Riddle 8045d7231d8SStephan Herhut // Add function arguments to the value remapping table. 8055d7231d8SStephan Herhut // If there was noalias info then we decorate each argument accordingly. 8065d7231d8SStephan Herhut unsigned int argIdx = 0; 807eeef50b1SFangrui Song for (auto kvp : llvm::zip(func.getArguments(), llvmFunc->args())) { 8085d7231d8SStephan Herhut llvm::Argument &llvmArg = std::get<1>(kvp); 809e62a6956SRiver Riddle BlockArgument mlirArg = std::get<0>(kvp); 8105d7231d8SStephan Herhut 8115d7231d8SStephan Herhut if (auto attr = func.getArgAttrOfType<BoolAttr>(argIdx, "llvm.noalias")) { 8125d7231d8SStephan Herhut // NB: Attribute already verified to be boolean, so check if we can indeed 8135d7231d8SStephan Herhut // attach the attribute to this argument, based on its type. 8142bdf33ccSRiver Riddle auto argTy = mlirArg.getType().dyn_cast<LLVM::LLVMType>(); 815baa1ec22SAlex Zinenko if (!argTy.getUnderlyingType()->isPointerTy()) 816baa1ec22SAlex Zinenko return func.emitError( 8175d7231d8SStephan Herhut "llvm.noalias attribute attached to LLVM non-pointer argument"); 8185d7231d8SStephan Herhut if (attr.getValue()) 8195d7231d8SStephan Herhut llvmArg.addAttr(llvm::Attribute::AttrKind::NoAlias); 8205d7231d8SStephan Herhut } 8212416e28cSStephan Herhut 8222416e28cSStephan Herhut if (auto attr = func.getArgAttrOfType<IntegerAttr>(argIdx, "llvm.align")) { 8232416e28cSStephan Herhut // NB: Attribute already verified to be int, so check if we can indeed 8242416e28cSStephan Herhut // attach the attribute to this argument, based on its type. 8252416e28cSStephan Herhut auto argTy = mlirArg.getType().dyn_cast<LLVM::LLVMType>(); 8262416e28cSStephan Herhut if (!argTy.getUnderlyingType()->isPointerTy()) 8272416e28cSStephan Herhut return func.emitError( 8282416e28cSStephan Herhut "llvm.align attribute attached to LLVM non-pointer argument"); 8292416e28cSStephan Herhut llvmArg.addAttrs( 8302416e28cSStephan Herhut llvm::AttrBuilder().addAlignmentAttr(llvm::Align(attr.getInt()))); 8312416e28cSStephan Herhut } 8322416e28cSStephan Herhut 8335d7231d8SStephan Herhut valueMapping[mlirArg] = &llvmArg; 8345d7231d8SStephan Herhut argIdx++; 8355d7231d8SStephan Herhut } 8365d7231d8SStephan Herhut 837ff77397fSShraiysh Vaishay // Check the personality and set it. 838ff77397fSShraiysh Vaishay if (func.personality().hasValue()) { 839ff77397fSShraiysh Vaishay llvm::Type *ty = llvm::Type::getInt8PtrTy(llvmFunc->getContext()); 840ff77397fSShraiysh Vaishay if (llvm::Constant *pfunc = 841ff77397fSShraiysh Vaishay getLLVMConstant(ty, func.personalityAttr(), func.getLoc())) 842ff77397fSShraiysh Vaishay llvmFunc->setPersonalityFn(pfunc); 843ff77397fSShraiysh Vaishay } 844ff77397fSShraiysh Vaishay 8455d7231d8SStephan Herhut // First, create all blocks so we can jump to them. 8465d7231d8SStephan Herhut llvm::LLVMContext &llvmContext = llvmFunc->getContext(); 8475d7231d8SStephan Herhut for (auto &bb : func) { 8485d7231d8SStephan Herhut auto *llvmBB = llvm::BasicBlock::Create(llvmContext); 8495d7231d8SStephan Herhut llvmBB->insertInto(llvmFunc); 8505d7231d8SStephan Herhut blockMapping[&bb] = llvmBB; 8515d7231d8SStephan Herhut } 8525d7231d8SStephan Herhut 8535d7231d8SStephan Herhut // Then, convert blocks one by one in topological order to ensure defs are 8545d7231d8SStephan Herhut // converted before uses. 8555d7231d8SStephan Herhut auto blocks = topologicalSort(func); 8565d7231d8SStephan Herhut for (auto indexedBB : llvm::enumerate(blocks)) { 8575d7231d8SStephan Herhut auto *bb = indexedBB.value(); 858baa1ec22SAlex Zinenko if (failed(convertBlock(*bb, /*ignoreArguments=*/indexedBB.index() == 0))) 859baa1ec22SAlex Zinenko return failure(); 8605d7231d8SStephan Herhut } 8615d7231d8SStephan Herhut 8625d7231d8SStephan Herhut // Finally, after all blocks have been traversed and values mapped, connect 8635d7231d8SStephan Herhut // the PHI nodes to the results of preceding blocks. 864d9067dcaSKiran Chandramohan connectPHINodes(func, valueMapping, blockMapping); 865baa1ec22SAlex Zinenko return success(); 8665d7231d8SStephan Herhut } 8675d7231d8SStephan Herhut 86844fc7d72STres Popp LogicalResult ModuleTranslation::checkSupportedModuleOps(Operation *m) { 86944fc7d72STres Popp for (Operation &o : getModuleBody(m).getOperations()) 870ee394e68SRahul Joshi if (!isa<LLVM::LLVMFuncOp, LLVM::GlobalOp>(&o) && !o.isKnownTerminator()) 8714dde19f0SAlex Zinenko return o.emitOpError("unsupported module-level operation"); 8724dde19f0SAlex Zinenko return success(); 8734dde19f0SAlex Zinenko } 8744dde19f0SAlex Zinenko 875a084b94fSSean Silva LogicalResult ModuleTranslation::convertFunctionSignatures() { 87669040d5bSStephan Herhut // Lock access to the llvm context. 87769040d5bSStephan Herhut llvm::sys::SmartScopedLock<true> scopedLock( 87869040d5bSStephan Herhut llvmDialect->getLLVMContextMutex()); 879a084b94fSSean Silva 8805d7231d8SStephan Herhut // Declare all functions first because there may be function calls that form a 881a084b94fSSean Silva // call graph with cycles, or global initializers that reference functions. 88244fc7d72STres Popp for (auto function : getModuleBody(mlirModule).getOps<LLVMFuncOp>()) { 8835e7959a3SAlex Zinenko llvm::FunctionCallee llvmFuncCst = llvmModule->getOrInsertFunction( 8845e7959a3SAlex Zinenko function.getName(), 8854562e389SRiver Riddle cast<llvm::FunctionType>(function.getType().getUnderlyingType())); 8860a2131b7SAlex Zinenko llvm::Function *llvmFunc = cast<llvm::Function>(llvmFuncCst.getCallee()); 887*ebbdecddSAlex Zinenko llvmFunc->setLinkage(convertLinkageToLLVM(function.linkage())); 8880a2131b7SAlex Zinenko functionMapping[function.getName()] = llvmFunc; 8890a2131b7SAlex Zinenko 8900a2131b7SAlex Zinenko // Forward the pass-through attributes to LLVM. 8910a2131b7SAlex Zinenko if (failed(forwardPassthroughAttributes(function.getLoc(), 8920a2131b7SAlex Zinenko function.passthrough(), llvmFunc))) 8930a2131b7SAlex Zinenko return failure(); 8945d7231d8SStephan Herhut } 8955d7231d8SStephan Herhut 896a084b94fSSean Silva return success(); 897a084b94fSSean Silva } 898a084b94fSSean Silva 899a084b94fSSean Silva LogicalResult ModuleTranslation::convertFunctions() { 900a084b94fSSean Silva // Lock access to the llvm context. 901a084b94fSSean Silva llvm::sys::SmartScopedLock<true> scopedLock( 902a084b94fSSean Silva llvmDialect->getLLVMContextMutex()); 903a084b94fSSean Silva 9045d7231d8SStephan Herhut // Convert functions. 90544fc7d72STres Popp for (auto function : getModuleBody(mlirModule).getOps<LLVMFuncOp>()) { 9065d7231d8SStephan Herhut // Ignore external functions. 9075d7231d8SStephan Herhut if (function.isExternal()) 9085d7231d8SStephan Herhut continue; 9095d7231d8SStephan Herhut 910baa1ec22SAlex Zinenko if (failed(convertOneFunction(function))) 911baa1ec22SAlex Zinenko return failure(); 9125d7231d8SStephan Herhut } 9135d7231d8SStephan Herhut 914baa1ec22SAlex Zinenko return success(); 9155d7231d8SStephan Herhut } 9165d7231d8SStephan Herhut 917efadb6b8SAlex Zinenko /// A helper to look up remapped operands in the value remapping table.` 918efadb6b8SAlex Zinenko SmallVector<llvm::Value *, 8> 919efadb6b8SAlex Zinenko ModuleTranslation::lookupValues(ValueRange values) { 920efadb6b8SAlex Zinenko SmallVector<llvm::Value *, 8> remapped; 921efadb6b8SAlex Zinenko remapped.reserve(values.size()); 922ff77397fSShraiysh Vaishay for (Value v : values) { 923ff77397fSShraiysh Vaishay assert(valueMapping.count(v) && "referencing undefined value"); 924efadb6b8SAlex Zinenko remapped.push_back(valueMapping.lookup(v)); 925ff77397fSShraiysh Vaishay } 926efadb6b8SAlex Zinenko return remapped; 927efadb6b8SAlex Zinenko } 928efadb6b8SAlex Zinenko 92944fc7d72STres Popp std::unique_ptr<llvm::Module> 93044fc7d72STres Popp ModuleTranslation::prepareLLVMModule(Operation *m) { 93144fc7d72STres Popp auto *dialect = m->getContext()->getRegisteredDialect<LLVM::LLVMDialect>(); 9325d7231d8SStephan Herhut assert(dialect && "LLVM dialect must be registered"); 93369040d5bSStephan Herhut // Lock the LLVM context as we might create new types here. 93469040d5bSStephan Herhut llvm::sys::SmartScopedLock<true> scopedLock(dialect->getLLVMContextMutex()); 9355d7231d8SStephan Herhut 936bc5c7378SRiver Riddle auto llvmModule = llvm::CloneModule(dialect->getLLVMModule()); 9375d7231d8SStephan Herhut if (!llvmModule) 9385d7231d8SStephan Herhut return nullptr; 9395d7231d8SStephan Herhut 9405d7231d8SStephan Herhut llvm::LLVMContext &llvmContext = llvmModule->getContext(); 9415d7231d8SStephan Herhut llvm::IRBuilder<> builder(llvmContext); 9425d7231d8SStephan Herhut 9435d7231d8SStephan Herhut // Inject declarations for `malloc` and `free` functions that can be used in 9445d7231d8SStephan Herhut // memref allocation/deallocation coming from standard ops lowering. 9455d7231d8SStephan Herhut llvmModule->getOrInsertFunction("malloc", builder.getInt8PtrTy(), 9465d7231d8SStephan Herhut builder.getInt64Ty()); 9475d7231d8SStephan Herhut llvmModule->getOrInsertFunction("free", builder.getVoidTy(), 9485d7231d8SStephan Herhut builder.getInt8PtrTy()); 9495d7231d8SStephan Herhut 9505d7231d8SStephan Herhut return llvmModule; 9515d7231d8SStephan Herhut } 952