1cde4d5a6SJacques Pienaar //===- ModuleTranslation.cpp - MLIR to LLVM conversion --------------------===// 25d7231d8SStephan Herhut // 356222a06SMehdi Amini // Part of the MLIR 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 16ba0fa925SRiver Riddle #include "mlir/Dialect/LLVMIR/LLVMDialect.h" 175d7231d8SStephan Herhut #include "mlir/IR/Attributes.h" 185d7231d8SStephan Herhut #include "mlir/IR/Module.h" 195d7231d8SStephan Herhut #include "mlir/Support/LLVM.h" 205d7231d8SStephan Herhut 215d7231d8SStephan Herhut #include "llvm/ADT/SetVector.h" 225d7231d8SStephan Herhut #include "llvm/IR/BasicBlock.h" 235d7231d8SStephan Herhut #include "llvm/IR/Constants.h" 245d7231d8SStephan Herhut #include "llvm/IR/DerivedTypes.h" 255d7231d8SStephan Herhut #include "llvm/IR/IRBuilder.h" 265d7231d8SStephan Herhut #include "llvm/IR/LLVMContext.h" 275d7231d8SStephan Herhut #include "llvm/IR/Module.h" 285d7231d8SStephan Herhut #include "llvm/Transforms/Utils/Cloning.h" 295d7231d8SStephan Herhut 302666b973SRiver Riddle using namespace mlir; 312666b973SRiver Riddle using namespace mlir::LLVM; 325d7231d8SStephan Herhut 332666b973SRiver Riddle /// Create an LLVM IR constant of `llvmType` from the MLIR attribute `attr`. 342666b973SRiver Riddle /// This currently supports integer, floating point, splat and dense element 352666b973SRiver Riddle /// attributes and combinations thereof. In case of error, report it to `loc` 362666b973SRiver Riddle /// and return nullptr. 375d7231d8SStephan Herhut llvm::Constant *ModuleTranslation::getLLVMConstant(llvm::Type *llvmType, 385d7231d8SStephan Herhut Attribute attr, 395d7231d8SStephan Herhut Location loc) { 4033a3a91bSChristian Sigg if (!attr) 4133a3a91bSChristian Sigg return llvm::UndefValue::get(llvmType); 425d7231d8SStephan Herhut if (auto intAttr = attr.dyn_cast<IntegerAttr>()) 435d7231d8SStephan Herhut return llvm::ConstantInt::get(llvmType, intAttr.getValue()); 445d7231d8SStephan Herhut if (auto floatAttr = attr.dyn_cast<FloatAttr>()) 455d7231d8SStephan Herhut return llvm::ConstantFP::get(llvmType, floatAttr.getValue()); 469b9c647cSRiver Riddle if (auto funcAttr = attr.dyn_cast<FlatSymbolRefAttr>()) 475d7231d8SStephan Herhut return functionMapping.lookup(funcAttr.getValue()); 485d7231d8SStephan Herhut if (auto splatAttr = attr.dyn_cast<SplatElementsAttr>()) { 492f13df13SMLIR Team auto *sequentialType = cast<llvm::SequentialType>(llvmType); 502f13df13SMLIR Team auto elementType = sequentialType->getElementType(); 512f13df13SMLIR Team uint64_t numElements = sequentialType->getNumElements(); 522f13df13SMLIR Team auto *child = getLLVMConstant(elementType, splatAttr.getSplatValue(), loc); 532f13df13SMLIR Team if (llvmType->isVectorTy()) 542f13df13SMLIR Team return llvm::ConstantVector::getSplat(numElements, child); 552f13df13SMLIR Team if (llvmType->isArrayTy()) { 562f13df13SMLIR Team auto arrayType = llvm::ArrayType::get(elementType, numElements); 572f13df13SMLIR Team SmallVector<llvm::Constant *, 8> constants(numElements, child); 582f13df13SMLIR Team return llvm::ConstantArray::get(arrayType, constants); 592f13df13SMLIR Team } 605d7231d8SStephan Herhut } 61d906f84bSRiver Riddle if (auto elementsAttr = attr.dyn_cast<ElementsAttr>()) { 622f13df13SMLIR Team auto *sequentialType = cast<llvm::SequentialType>(llvmType); 632f13df13SMLIR Team auto elementType = sequentialType->getElementType(); 642f13df13SMLIR Team uint64_t numElements = sequentialType->getNumElements(); 655d7231d8SStephan Herhut SmallVector<llvm::Constant *, 8> constants; 665d7231d8SStephan Herhut constants.reserve(numElements); 67d906f84bSRiver Riddle for (auto n : elementsAttr.getValues<Attribute>()) { 682f13df13SMLIR Team constants.push_back(getLLVMConstant(elementType, n, loc)); 695d7231d8SStephan Herhut if (!constants.back()) 705d7231d8SStephan Herhut return nullptr; 715d7231d8SStephan Herhut } 722f13df13SMLIR Team if (llvmType->isVectorTy()) 735d7231d8SStephan Herhut return llvm::ConstantVector::get(constants); 742f13df13SMLIR Team if (llvmType->isArrayTy()) { 752f13df13SMLIR Team auto arrayType = llvm::ArrayType::get(elementType, numElements); 762f13df13SMLIR Team return llvm::ConstantArray::get(arrayType, constants); 772f13df13SMLIR Team } 785d7231d8SStephan Herhut } 79cb348dffSStephan Herhut if (auto stringAttr = attr.dyn_cast<StringAttr>()) { 80cb348dffSStephan Herhut return llvm::ConstantDataArray::get( 81cb348dffSStephan Herhut llvmModule->getContext(), ArrayRef<char>{stringAttr.getValue().data(), 82cb348dffSStephan Herhut stringAttr.getValue().size()}); 83cb348dffSStephan Herhut } 84a4c3a645SRiver Riddle emitError(loc, "unsupported constant value"); 855d7231d8SStephan Herhut return nullptr; 865d7231d8SStephan Herhut } 875d7231d8SStephan Herhut 882666b973SRiver Riddle /// Convert MLIR integer comparison predicate to LLVM IR comparison predicate. 89ec82e1c9SAlex Zinenko static llvm::CmpInst::Predicate getLLVMCmpPredicate(ICmpPredicate p) { 905d7231d8SStephan Herhut switch (p) { 91ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::eq: 925d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_EQ; 93ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::ne: 945d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_NE; 95ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::slt: 965d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_SLT; 97ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::sle: 985d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_SLE; 99ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::sgt: 1005d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_SGT; 101ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::sge: 1025d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_SGE; 103ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::ult: 1045d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_ULT; 105ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::ule: 1065d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_ULE; 107ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::ugt: 1085d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_UGT; 109ec82e1c9SAlex Zinenko case LLVM::ICmpPredicate::uge: 1105d7231d8SStephan Herhut return llvm::CmpInst::Predicate::ICMP_UGE; 1115d7231d8SStephan Herhut } 112e6365f3dSJacques Pienaar llvm_unreachable("incorrect comparison predicate"); 1135d7231d8SStephan Herhut } 1145d7231d8SStephan Herhut 11548fdc8d7SNagy Mostafa static llvm::CmpInst::Predicate getLLVMCmpPredicate(FCmpPredicate p) { 11648fdc8d7SNagy Mostafa switch (p) { 11748fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::_false: 11848fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_FALSE; 11948fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::oeq: 12048fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OEQ; 12148fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ogt: 12248fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OGT; 12348fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::oge: 12448fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OGE; 12548fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::olt: 12648fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OLT; 12748fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ole: 12848fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_OLE; 12948fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::one: 13048fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_ONE; 13148fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ord: 13248fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_ORD; 13348fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ueq: 13448fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UEQ; 13548fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ugt: 13648fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UGT; 13748fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::uge: 13848fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UGE; 13948fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ult: 14048fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_ULT; 14148fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::ule: 14248fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_ULE; 14348fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::une: 14448fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UNE; 14548fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::uno: 14648fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_UNO; 14748fdc8d7SNagy Mostafa case LLVM::FCmpPredicate::_true: 14848fdc8d7SNagy Mostafa return llvm::CmpInst::Predicate::FCMP_TRUE; 14948fdc8d7SNagy Mostafa } 150e6365f3dSJacques Pienaar llvm_unreachable("incorrect comparison predicate"); 15148fdc8d7SNagy Mostafa } 15248fdc8d7SNagy Mostafa 1532666b973SRiver Riddle /// Given a single MLIR operation, create the corresponding LLVM IR operation 1542666b973SRiver Riddle /// using the `builder`. LLVM IR Builder does not have a generic interface so 1552666b973SRiver Riddle /// this has to be a long chain of `if`s calling different functions with a 1562666b973SRiver Riddle /// different number of arguments. 157baa1ec22SAlex Zinenko LogicalResult ModuleTranslation::convertOperation(Operation &opInst, 1585d7231d8SStephan Herhut llvm::IRBuilder<> &builder) { 1595d7231d8SStephan Herhut auto extractPosition = [](ArrayAttr attr) { 1605d7231d8SStephan Herhut SmallVector<unsigned, 4> position; 1615d7231d8SStephan Herhut position.reserve(attr.size()); 1625d7231d8SStephan Herhut for (Attribute v : attr) 1635d7231d8SStephan Herhut position.push_back(v.cast<IntegerAttr>().getValue().getZExtValue()); 1645d7231d8SStephan Herhut return position; 1655d7231d8SStephan Herhut }; 1665d7231d8SStephan Herhut 167ba0fa925SRiver Riddle #include "mlir/Dialect/LLVMIR/LLVMConversions.inc" 1685d7231d8SStephan Herhut 1695d7231d8SStephan Herhut // Emit function calls. If the "callee" attribute is present, this is a 1705d7231d8SStephan Herhut // direct function call and we also need to look up the remapped function 1715d7231d8SStephan Herhut // itself. Otherwise, this is an indirect call and the callee is the first 1725d7231d8SStephan Herhut // operand, look it up as a normal value. Return the llvm::Value representing 1735d7231d8SStephan Herhut // the function result, which may be of llvm::VoidTy type. 1745d7231d8SStephan Herhut auto convertCall = [this, &builder](Operation &op) -> llvm::Value * { 1755d7231d8SStephan Herhut auto operands = lookupValues(op.getOperands()); 1765d7231d8SStephan Herhut ArrayRef<llvm::Value *> operandsRef(operands); 1779b9c647cSRiver Riddle if (auto attr = op.getAttrOfType<FlatSymbolRefAttr>("callee")) { 1785d7231d8SStephan Herhut return builder.CreateCall(functionMapping.lookup(attr.getValue()), 1795d7231d8SStephan Herhut operandsRef); 1805d7231d8SStephan Herhut } else { 1815d7231d8SStephan Herhut return builder.CreateCall(operandsRef.front(), operandsRef.drop_front()); 1825d7231d8SStephan Herhut } 1835d7231d8SStephan Herhut }; 1845d7231d8SStephan Herhut 1855d7231d8SStephan Herhut // Emit calls. If the called function has a result, remap the corresponding 1865d7231d8SStephan Herhut // value. Note that LLVM IR dialect CallOp has either 0 or 1 result. 187d5b60ee8SRiver Riddle if (isa<LLVM::CallOp>(opInst)) { 1885d7231d8SStephan Herhut llvm::Value *result = convertCall(opInst); 1895d7231d8SStephan Herhut if (opInst.getNumResults() != 0) { 1905d7231d8SStephan Herhut valueMapping[opInst.getResult(0)] = result; 191baa1ec22SAlex Zinenko return success(); 1925d7231d8SStephan Herhut } 1935d7231d8SStephan Herhut // Check that LLVM call returns void for 0-result functions. 194baa1ec22SAlex Zinenko return success(result->getType()->isVoidTy()); 1955d7231d8SStephan Herhut } 1965d7231d8SStephan Herhut 1975d7231d8SStephan Herhut // Emit branches. We need to look up the remapped blocks and ignore the block 1985d7231d8SStephan Herhut // arguments that were transformed into PHI nodes. 199c5ecf991SRiver Riddle if (auto brOp = dyn_cast<LLVM::BrOp>(opInst)) { 2005d7231d8SStephan Herhut builder.CreateBr(blockMapping[brOp.getSuccessor(0)]); 201baa1ec22SAlex Zinenko return success(); 2025d7231d8SStephan Herhut } 203c5ecf991SRiver Riddle if (auto condbrOp = dyn_cast<LLVM::CondBrOp>(opInst)) { 2045d7231d8SStephan Herhut builder.CreateCondBr(valueMapping.lookup(condbrOp.getOperand(0)), 2055d7231d8SStephan Herhut blockMapping[condbrOp.getSuccessor(0)], 2065d7231d8SStephan Herhut blockMapping[condbrOp.getSuccessor(1)]); 207baa1ec22SAlex Zinenko return success(); 2085d7231d8SStephan Herhut } 2095d7231d8SStephan Herhut 2102dd38b09SAlex Zinenko // Emit addressof. We need to look up the global value referenced by the 2112dd38b09SAlex Zinenko // operation and store it in the MLIR-to-LLVM value mapping. This does not 2122dd38b09SAlex Zinenko // emit any LLVM instruction. 2132dd38b09SAlex Zinenko if (auto addressOfOp = dyn_cast<LLVM::AddressOfOp>(opInst)) { 2142dd38b09SAlex Zinenko LLVM::GlobalOp global = addressOfOp.getGlobal(); 2152dd38b09SAlex Zinenko // The verifier should not have allowed this. 2162dd38b09SAlex Zinenko assert(global && "referencing an undefined global"); 2172dd38b09SAlex Zinenko 2182dd38b09SAlex Zinenko valueMapping[addressOfOp.getResult()] = globalsMapping.lookup(global); 2192dd38b09SAlex Zinenko return success(); 2202dd38b09SAlex Zinenko } 2212dd38b09SAlex Zinenko 222baa1ec22SAlex Zinenko return opInst.emitError("unsupported or non-LLVM operation: ") 223baa1ec22SAlex Zinenko << opInst.getName(); 2245d7231d8SStephan Herhut } 2255d7231d8SStephan Herhut 2262666b973SRiver Riddle /// Convert block to LLVM IR. Unless `ignoreArguments` is set, emit PHI nodes 2272666b973SRiver Riddle /// to define values corresponding to the MLIR block arguments. These nodes 2282666b973SRiver Riddle /// are not connected to the source basic blocks, which may not exist yet. 229baa1ec22SAlex Zinenko LogicalResult ModuleTranslation::convertBlock(Block &bb, bool ignoreArguments) { 2305d7231d8SStephan Herhut llvm::IRBuilder<> builder(blockMapping[&bb]); 2315d7231d8SStephan Herhut 2325d7231d8SStephan Herhut // Before traversing operations, make block arguments available through 2335d7231d8SStephan Herhut // value remapping and PHI nodes, but do not add incoming edges for the PHI 2345d7231d8SStephan Herhut // nodes just yet: those values may be defined by this or following blocks. 2355d7231d8SStephan Herhut // This step is omitted if "ignoreArguments" is set. The arguments of the 2365d7231d8SStephan Herhut // first block have been already made available through the remapping of 2375d7231d8SStephan Herhut // LLVM function arguments. 2385d7231d8SStephan Herhut if (!ignoreArguments) { 2395d7231d8SStephan Herhut auto predecessors = bb.getPredecessors(); 2405d7231d8SStephan Herhut unsigned numPredecessors = 2415d7231d8SStephan Herhut std::distance(predecessors.begin(), predecessors.end()); 24235807bc4SRiver Riddle for (auto arg : bb.getArguments()) { 243*2bdf33ccSRiver Riddle auto wrappedType = arg.getType().dyn_cast<LLVM::LLVMType>(); 244baa1ec22SAlex Zinenko if (!wrappedType) 245baa1ec22SAlex Zinenko return emitError(bb.front().getLoc(), 246a4c3a645SRiver Riddle "block argument does not have an LLVM type"); 2475d7231d8SStephan Herhut llvm::Type *type = wrappedType.getUnderlyingType(); 2485d7231d8SStephan Herhut llvm::PHINode *phi = builder.CreatePHI(type, numPredecessors); 2495d7231d8SStephan Herhut valueMapping[arg] = phi; 2505d7231d8SStephan Herhut } 2515d7231d8SStephan Herhut } 2525d7231d8SStephan Herhut 2535d7231d8SStephan Herhut // Traverse operations. 2545d7231d8SStephan Herhut for (auto &op : bb) { 255baa1ec22SAlex Zinenko if (failed(convertOperation(op, builder))) 256baa1ec22SAlex Zinenko return failure(); 2575d7231d8SStephan Herhut } 2585d7231d8SStephan Herhut 259baa1ec22SAlex Zinenko return success(); 2605d7231d8SStephan Herhut } 2615d7231d8SStephan Herhut 2622666b973SRiver Riddle /// Convert the LLVM dialect linkage type to LLVM IR linkage type. 263d5e627f8SAlex Zinenko llvm::GlobalVariable::LinkageTypes convertLinkageType(LLVM::Linkage linkage) { 264d5e627f8SAlex Zinenko switch (linkage) { 265d5e627f8SAlex Zinenko case LLVM::Linkage::Private: 266d5e627f8SAlex Zinenko return llvm::GlobalValue::PrivateLinkage; 267d5e627f8SAlex Zinenko case LLVM::Linkage::Internal: 268d5e627f8SAlex Zinenko return llvm::GlobalValue::InternalLinkage; 269d5e627f8SAlex Zinenko case LLVM::Linkage::AvailableExternally: 270d5e627f8SAlex Zinenko return llvm::GlobalValue::AvailableExternallyLinkage; 271d5e627f8SAlex Zinenko case LLVM::Linkage::Linkonce: 272d5e627f8SAlex Zinenko return llvm::GlobalValue::LinkOnceAnyLinkage; 273d5e627f8SAlex Zinenko case LLVM::Linkage::Weak: 274d5e627f8SAlex Zinenko return llvm::GlobalValue::WeakAnyLinkage; 275d5e627f8SAlex Zinenko case LLVM::Linkage::Common: 276d5e627f8SAlex Zinenko return llvm::GlobalValue::CommonLinkage; 277d5e627f8SAlex Zinenko case LLVM::Linkage::Appending: 278d5e627f8SAlex Zinenko return llvm::GlobalValue::AppendingLinkage; 279d5e627f8SAlex Zinenko case LLVM::Linkage::ExternWeak: 280d5e627f8SAlex Zinenko return llvm::GlobalValue::ExternalWeakLinkage; 281d5e627f8SAlex Zinenko case LLVM::Linkage::LinkonceODR: 282d5e627f8SAlex Zinenko return llvm::GlobalValue::LinkOnceODRLinkage; 283d5e627f8SAlex Zinenko case LLVM::Linkage::WeakODR: 284d5e627f8SAlex Zinenko return llvm::GlobalValue::WeakODRLinkage; 285d5e627f8SAlex Zinenko case LLVM::Linkage::External: 286d5e627f8SAlex Zinenko return llvm::GlobalValue::ExternalLinkage; 287d5e627f8SAlex Zinenko } 288d5e627f8SAlex Zinenko llvm_unreachable("unknown linkage type"); 289d5e627f8SAlex Zinenko } 290d5e627f8SAlex Zinenko 2912666b973SRiver Riddle /// Create named global variables that correspond to llvm.mlir.global 2922666b973SRiver Riddle /// definitions. 293b9ff2dd8SAlex Zinenko void ModuleTranslation::convertGlobals() { 29444fc7d72STres Popp for (auto op : getModuleBody(mlirModule).getOps<LLVM::GlobalOp>()) { 295250a11aeSJames Molloy llvm::Type *type = op.getType().getUnderlyingType(); 296250a11aeSJames Molloy llvm::Constant *cst = llvm::UndefValue::get(type); 297250a11aeSJames Molloy if (op.getValueOrNull()) { 29868451df2SAlex Zinenko // String attributes are treated separately because they cannot appear as 29968451df2SAlex Zinenko // in-function constants and are thus not supported by getLLVMConstant. 30033a3a91bSChristian Sigg if (auto strAttr = op.getValueOrNull().dyn_cast_or_null<StringAttr>()) { 3012dd38b09SAlex Zinenko cst = llvm::ConstantDataArray::getString( 30268451df2SAlex Zinenko llvmModule->getContext(), strAttr.getValue(), /*AddNull=*/false); 3032dd38b09SAlex Zinenko type = cst->getType(); 3042dd38b09SAlex Zinenko } else { 30533a3a91bSChristian Sigg cst = getLLVMConstant(type, op.getValueOrNull(), op.getLoc()); 30668451df2SAlex Zinenko } 307250a11aeSJames Molloy } else if (Block *initializer = op.getInitializerBlock()) { 308250a11aeSJames Molloy llvm::IRBuilder<> builder(llvmModule->getContext()); 309250a11aeSJames Molloy for (auto &op : initializer->without_terminator()) { 310250a11aeSJames Molloy if (failed(convertOperation(op, builder)) || 311250a11aeSJames Molloy !isa<llvm::Constant>(valueMapping.lookup(op.getResult(0)))) { 312250a11aeSJames Molloy emitError(op.getLoc(), "unemittable constant value"); 313250a11aeSJames Molloy return; 314250a11aeSJames Molloy } 315250a11aeSJames Molloy } 316250a11aeSJames Molloy ReturnOp ret = cast<ReturnOp>(initializer->getTerminator()); 317250a11aeSJames Molloy cst = cast<llvm::Constant>(valueMapping.lookup(ret.getOperand(0))); 318250a11aeSJames Molloy } 31968451df2SAlex Zinenko 320d5e627f8SAlex Zinenko auto linkage = convertLinkageType(op.linkage()); 321d5e627f8SAlex Zinenko bool anyExternalLinkage = 322d5e627f8SAlex Zinenko (linkage == llvm::GlobalVariable::ExternalLinkage || 323d5e627f8SAlex Zinenko linkage == llvm::GlobalVariable::ExternalWeakLinkage); 324e79bfefbSMLIR Team auto addrSpace = op.addr_space().getLimitedValue(); 325e79bfefbSMLIR Team auto *var = new llvm::GlobalVariable( 326d5e627f8SAlex Zinenko *llvmModule, type, op.constant(), linkage, 327d5e627f8SAlex Zinenko anyExternalLinkage ? nullptr : cst, op.sym_name(), 328d5e627f8SAlex Zinenko /*InsertBefore=*/nullptr, llvm::GlobalValue::NotThreadLocal, addrSpace); 329e79bfefbSMLIR Team 3302dd38b09SAlex Zinenko globalsMapping.try_emplace(op, var); 331b9ff2dd8SAlex Zinenko } 332b9ff2dd8SAlex Zinenko } 333b9ff2dd8SAlex Zinenko 3342666b973SRiver Riddle /// Get the SSA value passed to the current block from the terminator operation 3352666b973SRiver Riddle /// of its predecessor. 336e62a6956SRiver Riddle static Value getPHISourceValue(Block *current, Block *pred, 3375d7231d8SStephan Herhut unsigned numArguments, unsigned index) { 3385d7231d8SStephan Herhut auto &terminator = *pred->getTerminator(); 339d5b60ee8SRiver Riddle if (isa<LLVM::BrOp>(terminator)) { 3405d7231d8SStephan Herhut return terminator.getOperand(index); 3415d7231d8SStephan Herhut } 3425d7231d8SStephan Herhut 3435d7231d8SStephan Herhut // For conditional branches, we need to check if the current block is reached 3445d7231d8SStephan Herhut // through the "true" or the "false" branch and take the relevant operands. 345c5ecf991SRiver Riddle auto condBranchOp = dyn_cast<LLVM::CondBrOp>(terminator); 3465d7231d8SStephan Herhut assert(condBranchOp && 3475d7231d8SStephan Herhut "only branch operations can be terminators of a block that " 3485d7231d8SStephan Herhut "has successors"); 3495d7231d8SStephan Herhut assert((condBranchOp.getSuccessor(0) != condBranchOp.getSuccessor(1)) && 3505d7231d8SStephan Herhut "successors with arguments in LLVM conditional branches must be " 3515d7231d8SStephan Herhut "different blocks"); 3525d7231d8SStephan Herhut 3535d7231d8SStephan Herhut return condBranchOp.getSuccessor(0) == current 3545d7231d8SStephan Herhut ? terminator.getSuccessorOperand(0, index) 3555d7231d8SStephan Herhut : terminator.getSuccessorOperand(1, index); 3565d7231d8SStephan Herhut } 3575d7231d8SStephan Herhut 3585e7959a3SAlex Zinenko void ModuleTranslation::connectPHINodes(LLVMFuncOp func) { 3595d7231d8SStephan Herhut // Skip the first block, it cannot be branched to and its arguments correspond 3605d7231d8SStephan Herhut // to the arguments of the LLVM function. 3615d7231d8SStephan Herhut for (auto it = std::next(func.begin()), eit = func.end(); it != eit; ++it) { 3625d7231d8SStephan Herhut Block *bb = &*it; 3635d7231d8SStephan Herhut llvm::BasicBlock *llvmBB = blockMapping.lookup(bb); 3645d7231d8SStephan Herhut auto phis = llvmBB->phis(); 3655d7231d8SStephan Herhut auto numArguments = bb->getNumArguments(); 3665d7231d8SStephan Herhut assert(numArguments == std::distance(phis.begin(), phis.end())); 3675d7231d8SStephan Herhut for (auto &numberedPhiNode : llvm::enumerate(phis)) { 3685d7231d8SStephan Herhut auto &phiNode = numberedPhiNode.value(); 3695d7231d8SStephan Herhut unsigned index = numberedPhiNode.index(); 3705d7231d8SStephan Herhut for (auto *pred : bb->getPredecessors()) { 3715d7231d8SStephan Herhut phiNode.addIncoming(valueMapping.lookup(getPHISourceValue( 3725d7231d8SStephan Herhut bb, pred, numArguments, index)), 3735d7231d8SStephan Herhut blockMapping.lookup(pred)); 3745d7231d8SStephan Herhut } 3755d7231d8SStephan Herhut } 3765d7231d8SStephan Herhut } 3775d7231d8SStephan Herhut } 3785d7231d8SStephan Herhut 3795d7231d8SStephan Herhut // TODO(mlir-team): implement an iterative version 3805d7231d8SStephan Herhut static void topologicalSortImpl(llvm::SetVector<Block *> &blocks, Block *b) { 3815d7231d8SStephan Herhut blocks.insert(b); 3825d7231d8SStephan Herhut for (Block *bb : b->getSuccessors()) { 3835d7231d8SStephan Herhut if (blocks.count(bb) == 0) 3845d7231d8SStephan Herhut topologicalSortImpl(blocks, bb); 3855d7231d8SStephan Herhut } 3865d7231d8SStephan Herhut } 3875d7231d8SStephan Herhut 3882666b973SRiver Riddle /// Sort function blocks topologically. 3895e7959a3SAlex Zinenko static llvm::SetVector<Block *> topologicalSort(LLVMFuncOp f) { 3905d7231d8SStephan Herhut // For each blocks that has not been visited yet (i.e. that has no 3915d7231d8SStephan Herhut // predecessors), add it to the list and traverse its successors in DFS 3925d7231d8SStephan Herhut // preorder. 3935d7231d8SStephan Herhut llvm::SetVector<Block *> blocks; 3945d7231d8SStephan Herhut for (Block &b : f.getBlocks()) { 3955d7231d8SStephan Herhut if (blocks.count(&b) == 0) 3965d7231d8SStephan Herhut topologicalSortImpl(blocks, &b); 3975d7231d8SStephan Herhut } 3985d7231d8SStephan Herhut assert(blocks.size() == f.getBlocks().size() && "some blocks are not sorted"); 3995d7231d8SStephan Herhut 4005d7231d8SStephan Herhut return blocks; 4015d7231d8SStephan Herhut } 4025d7231d8SStephan Herhut 4035e7959a3SAlex Zinenko LogicalResult ModuleTranslation::convertOneFunction(LLVMFuncOp func) { 4045d7231d8SStephan Herhut // Clear the block and value mappings, they are only relevant within one 4055d7231d8SStephan Herhut // function. 4065d7231d8SStephan Herhut blockMapping.clear(); 4075d7231d8SStephan Herhut valueMapping.clear(); 408c33862b0SRiver Riddle llvm::Function *llvmFunc = functionMapping.lookup(func.getName()); 4095d7231d8SStephan Herhut // Add function arguments to the value remapping table. 4105d7231d8SStephan Herhut // If there was noalias info then we decorate each argument accordingly. 4115d7231d8SStephan Herhut unsigned int argIdx = 0; 412eeef50b1SFangrui Song for (auto kvp : llvm::zip(func.getArguments(), llvmFunc->args())) { 4135d7231d8SStephan Herhut llvm::Argument &llvmArg = std::get<1>(kvp); 414e62a6956SRiver Riddle BlockArgument mlirArg = std::get<0>(kvp); 4155d7231d8SStephan Herhut 4165d7231d8SStephan Herhut if (auto attr = func.getArgAttrOfType<BoolAttr>(argIdx, "llvm.noalias")) { 4175d7231d8SStephan Herhut // NB: Attribute already verified to be boolean, so check if we can indeed 4185d7231d8SStephan Herhut // attach the attribute to this argument, based on its type. 419*2bdf33ccSRiver Riddle auto argTy = mlirArg.getType().dyn_cast<LLVM::LLVMType>(); 420baa1ec22SAlex Zinenko if (!argTy.getUnderlyingType()->isPointerTy()) 421baa1ec22SAlex Zinenko return func.emitError( 4225d7231d8SStephan Herhut "llvm.noalias attribute attached to LLVM non-pointer argument"); 4235d7231d8SStephan Herhut if (attr.getValue()) 4245d7231d8SStephan Herhut llvmArg.addAttr(llvm::Attribute::AttrKind::NoAlias); 4255d7231d8SStephan Herhut } 4265d7231d8SStephan Herhut valueMapping[mlirArg] = &llvmArg; 4275d7231d8SStephan Herhut argIdx++; 4285d7231d8SStephan Herhut } 4295d7231d8SStephan Herhut 4305d7231d8SStephan Herhut // First, create all blocks so we can jump to them. 4315d7231d8SStephan Herhut llvm::LLVMContext &llvmContext = llvmFunc->getContext(); 4325d7231d8SStephan Herhut for (auto &bb : func) { 4335d7231d8SStephan Herhut auto *llvmBB = llvm::BasicBlock::Create(llvmContext); 4345d7231d8SStephan Herhut llvmBB->insertInto(llvmFunc); 4355d7231d8SStephan Herhut blockMapping[&bb] = llvmBB; 4365d7231d8SStephan Herhut } 4375d7231d8SStephan Herhut 4385d7231d8SStephan Herhut // Then, convert blocks one by one in topological order to ensure defs are 4395d7231d8SStephan Herhut // converted before uses. 4405d7231d8SStephan Herhut auto blocks = topologicalSort(func); 4415d7231d8SStephan Herhut for (auto indexedBB : llvm::enumerate(blocks)) { 4425d7231d8SStephan Herhut auto *bb = indexedBB.value(); 443baa1ec22SAlex Zinenko if (failed(convertBlock(*bb, /*ignoreArguments=*/indexedBB.index() == 0))) 444baa1ec22SAlex Zinenko return failure(); 4455d7231d8SStephan Herhut } 4465d7231d8SStephan Herhut 4475d7231d8SStephan Herhut // Finally, after all blocks have been traversed and values mapped, connect 4485d7231d8SStephan Herhut // the PHI nodes to the results of preceding blocks. 4495d7231d8SStephan Herhut connectPHINodes(func); 450baa1ec22SAlex Zinenko return success(); 4515d7231d8SStephan Herhut } 4525d7231d8SStephan Herhut 45344fc7d72STres Popp LogicalResult ModuleTranslation::checkSupportedModuleOps(Operation *m) { 45444fc7d72STres Popp for (Operation &o : getModuleBody(m).getOperations()) 4554dde19f0SAlex Zinenko if (!isa<LLVM::LLVMFuncOp>(&o) && !isa<LLVM::GlobalOp>(&o) && 45644fc7d72STres Popp !o.isKnownTerminator()) 4574dde19f0SAlex Zinenko return o.emitOpError("unsupported module-level operation"); 4584dde19f0SAlex Zinenko return success(); 4594dde19f0SAlex Zinenko } 4604dde19f0SAlex Zinenko 461baa1ec22SAlex Zinenko LogicalResult ModuleTranslation::convertFunctions() { 4625d7231d8SStephan Herhut // Declare all functions first because there may be function calls that form a 4635d7231d8SStephan Herhut // call graph with cycles. 46444fc7d72STres Popp for (auto function : getModuleBody(mlirModule).getOps<LLVMFuncOp>()) { 4655e7959a3SAlex Zinenko llvm::FunctionCallee llvmFuncCst = llvmModule->getOrInsertFunction( 4665e7959a3SAlex Zinenko function.getName(), 4674562e389SRiver Riddle cast<llvm::FunctionType>(function.getType().getUnderlyingType())); 4685d7231d8SStephan Herhut assert(isa<llvm::Function>(llvmFuncCst.getCallee())); 469c33862b0SRiver Riddle functionMapping[function.getName()] = 4705d7231d8SStephan Herhut cast<llvm::Function>(llvmFuncCst.getCallee()); 4715d7231d8SStephan Herhut } 4725d7231d8SStephan Herhut 4735d7231d8SStephan Herhut // Convert functions. 47444fc7d72STres Popp for (auto function : getModuleBody(mlirModule).getOps<LLVMFuncOp>()) { 4755d7231d8SStephan Herhut // Ignore external functions. 4765d7231d8SStephan Herhut if (function.isExternal()) 4775d7231d8SStephan Herhut continue; 4785d7231d8SStephan Herhut 479baa1ec22SAlex Zinenko if (failed(convertOneFunction(function))) 480baa1ec22SAlex Zinenko return failure(); 4815d7231d8SStephan Herhut } 4825d7231d8SStephan Herhut 483baa1ec22SAlex Zinenko return success(); 4845d7231d8SStephan Herhut } 4855d7231d8SStephan Herhut 486efadb6b8SAlex Zinenko /// A helper to look up remapped operands in the value remapping table.` 487efadb6b8SAlex Zinenko SmallVector<llvm::Value *, 8> 488efadb6b8SAlex Zinenko ModuleTranslation::lookupValues(ValueRange values) { 489efadb6b8SAlex Zinenko SmallVector<llvm::Value *, 8> remapped; 490efadb6b8SAlex Zinenko remapped.reserve(values.size()); 491e62a6956SRiver Riddle for (Value v : values) 492efadb6b8SAlex Zinenko remapped.push_back(valueMapping.lookup(v)); 493efadb6b8SAlex Zinenko return remapped; 494efadb6b8SAlex Zinenko } 495efadb6b8SAlex Zinenko 49644fc7d72STres Popp std::unique_ptr<llvm::Module> 49744fc7d72STres Popp ModuleTranslation::prepareLLVMModule(Operation *m) { 49844fc7d72STres Popp auto *dialect = m->getContext()->getRegisteredDialect<LLVM::LLVMDialect>(); 4995d7231d8SStephan Herhut assert(dialect && "LLVM dialect must be registered"); 5005d7231d8SStephan Herhut 501bc5c7378SRiver Riddle auto llvmModule = llvm::CloneModule(dialect->getLLVMModule()); 5025d7231d8SStephan Herhut if (!llvmModule) 5035d7231d8SStephan Herhut return nullptr; 5045d7231d8SStephan Herhut 5055d7231d8SStephan Herhut llvm::LLVMContext &llvmContext = llvmModule->getContext(); 5065d7231d8SStephan Herhut llvm::IRBuilder<> builder(llvmContext); 5075d7231d8SStephan Herhut 5085d7231d8SStephan Herhut // Inject declarations for `malloc` and `free` functions that can be used in 5095d7231d8SStephan Herhut // memref allocation/deallocation coming from standard ops lowering. 5105d7231d8SStephan Herhut llvmModule->getOrInsertFunction("malloc", builder.getInt8PtrTy(), 5115d7231d8SStephan Herhut builder.getInt64Ty()); 5125d7231d8SStephan Herhut llvmModule->getOrInsertFunction("free", builder.getVoidTy(), 5135d7231d8SStephan Herhut builder.getInt8PtrTy()); 5145d7231d8SStephan Herhut 5155d7231d8SStephan Herhut return llvmModule; 5165d7231d8SStephan Herhut } 517