544 lines
22 KiB
C++
544 lines
22 KiB
C++
//===- OpenACCToLLVMIRTranslation.cpp -------------------------------------===//
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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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//
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// This file implements a translation between the MLIR OpenACC dialect and LLVM
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// IR.
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//
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//===----------------------------------------------------------------------===//
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#include "mlir/Target/LLVMIR/Dialect/OpenACC/OpenACCToLLVMIRTranslation.h"
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#include "mlir/Conversion/OpenACCToLLVM/ConvertOpenACCToLLVM.h"
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#include "mlir/Dialect/LLVMIR/LLVMDialect.h"
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#include "mlir/Dialect/OpenACC/OpenACC.h"
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#include "mlir/IR/BuiltinOps.h"
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#include "mlir/IR/Operation.h"
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#include "mlir/Support/LLVM.h"
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#include "mlir/Target/LLVMIR/ModuleTranslation.h"
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#include "llvm/ADT/TypeSwitch.h"
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#include "llvm/Frontend/OpenMP/OMPConstants.h"
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#include "llvm/Support/FormatVariadic.h"
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using namespace mlir;
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using OpenACCIRBuilder = llvm::OpenMPIRBuilder;
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//===----------------------------------------------------------------------===//
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// Utility functions
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//===----------------------------------------------------------------------===//
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/// Flag values are extracted from openmp/libomptarget/include/omptarget.h and
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/// mapped to corresponding OpenACC flags.
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static constexpr uint64_t kCreateFlag = 0x000;
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static constexpr uint64_t kDeviceCopyinFlag = 0x001;
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static constexpr uint64_t kHostCopyoutFlag = 0x002;
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static constexpr uint64_t kCopyFlag = kDeviceCopyinFlag | kHostCopyoutFlag;
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static constexpr uint64_t kPresentFlag = 0x1000;
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static constexpr uint64_t kDeleteFlag = 0x008;
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// Runtime extension to implement the OpenACC second reference counter.
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static constexpr uint64_t kHoldFlag = 0x2000;
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/// Default value for the device id
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static constexpr int64_t kDefaultDevice = -1;
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/// Create a constant string location from the MLIR Location information.
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static llvm::Constant *createSourceLocStrFromLocation(Location loc,
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OpenACCIRBuilder &builder,
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StringRef name,
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uint32_t &strLen) {
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if (auto fileLoc = loc.dyn_cast<FileLineColLoc>()) {
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StringRef fileName = fileLoc.getFilename();
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unsigned lineNo = fileLoc.getLine();
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unsigned colNo = fileLoc.getColumn();
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return builder.getOrCreateSrcLocStr(name, fileName, lineNo, colNo, strLen);
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}
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std::string locStr;
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llvm::raw_string_ostream locOS(locStr);
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locOS << loc;
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return builder.getOrCreateSrcLocStr(locOS.str(), strLen);
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}
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/// Create the location struct from the operation location information.
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static llvm::Value *createSourceLocationInfo(OpenACCIRBuilder &builder,
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Operation *op) {
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auto loc = op->getLoc();
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auto funcOp = op->getParentOfType<LLVM::LLVMFuncOp>();
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StringRef funcName = funcOp ? funcOp.getName() : "unknown";
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uint32_t strLen;
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llvm::Constant *locStr =
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createSourceLocStrFromLocation(loc, builder, funcName, strLen);
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return builder.getOrCreateIdent(locStr, strLen);
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}
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/// Create a constant string representing the mapping information extracted from
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/// the MLIR location information.
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static llvm::Constant *createMappingInformation(Location loc,
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OpenACCIRBuilder &builder) {
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uint32_t strLen;
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if (auto nameLoc = loc.dyn_cast<NameLoc>()) {
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StringRef name = nameLoc.getName();
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return createSourceLocStrFromLocation(nameLoc.getChildLoc(), builder, name,
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strLen);
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}
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return createSourceLocStrFromLocation(loc, builder, "unknown", strLen);
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}
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/// Return the runtime function used to lower the given operation.
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static llvm::Function *getAssociatedFunction(OpenACCIRBuilder &builder,
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Operation *op) {
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return llvm::TypeSwitch<Operation *, llvm::Function *>(op)
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.Case([&](acc::EnterDataOp) {
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return builder.getOrCreateRuntimeFunctionPtr(
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llvm::omp::OMPRTL___tgt_target_data_begin_mapper);
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})
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.Case([&](acc::ExitDataOp) {
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return builder.getOrCreateRuntimeFunctionPtr(
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llvm::omp::OMPRTL___tgt_target_data_end_mapper);
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})
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.Case([&](acc::UpdateOp) {
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return builder.getOrCreateRuntimeFunctionPtr(
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llvm::omp::OMPRTL___tgt_target_data_update_mapper);
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});
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llvm_unreachable("Unknown OpenACC operation");
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}
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/// Computes the size of type in bytes.
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static llvm::Value *getSizeInBytes(llvm::IRBuilderBase &builder,
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llvm::Value *basePtr) {
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llvm::LLVMContext &ctx = builder.getContext();
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llvm::Value *null =
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llvm::Constant::getNullValue(basePtr->getType()->getPointerTo());
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llvm::Value *sizeGep =
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builder.CreateGEP(basePtr->getType(), null, builder.getInt32(1));
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llvm::Value *sizePtrToInt =
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builder.CreatePtrToInt(sizeGep, llvm::Type::getInt64Ty(ctx));
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return sizePtrToInt;
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}
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/// Extract pointer, size and mapping information from operands
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/// to populate the future functions arguments.
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static LogicalResult
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processOperands(llvm::IRBuilderBase &builder,
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LLVM::ModuleTranslation &moduleTranslation, Operation *op,
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ValueRange operands, unsigned totalNbOperand,
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uint64_t operandFlag, SmallVector<uint64_t> &flags,
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SmallVectorImpl<llvm::Constant *> &names, unsigned &index,
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struct OpenACCIRBuilder::MapperAllocas &mapperAllocas) {
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OpenACCIRBuilder *accBuilder = moduleTranslation.getOpenMPBuilder();
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llvm::LLVMContext &ctx = builder.getContext();
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auto *i8PtrTy = llvm::Type::getInt8PtrTy(ctx);
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auto *arrI8PtrTy = llvm::ArrayType::get(i8PtrTy, totalNbOperand);
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auto *i64Ty = llvm::Type::getInt64Ty(ctx);
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auto *arrI64Ty = llvm::ArrayType::get(i64Ty, totalNbOperand);
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for (Value data : operands) {
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llvm::Value *dataValue = moduleTranslation.lookupValue(data);
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llvm::Value *dataPtrBase;
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llvm::Value *dataPtr;
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llvm::Value *dataSize;
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// Handle operands that were converted to DataDescriptor.
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if (DataDescriptor::isValid(data)) {
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dataPtrBase =
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builder.CreateExtractValue(dataValue, kPtrBasePosInDataDescriptor);
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dataPtr = builder.CreateExtractValue(dataValue, kPtrPosInDataDescriptor);
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dataSize =
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builder.CreateExtractValue(dataValue, kSizePosInDataDescriptor);
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} else if (data.getType().isa<LLVM::LLVMPointerType>()) {
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dataPtrBase = dataValue;
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dataPtr = dataValue;
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dataSize = getSizeInBytes(builder, dataValue);
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} else {
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return op->emitOpError()
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<< "Data operand must be legalized before translation."
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<< "Unsupported type: " << data.getType();
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}
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// Store base pointer extracted from operand into the i-th position of
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// argBase.
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llvm::Value *ptrBaseGEP = builder.CreateInBoundsGEP(
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arrI8PtrTy, mapperAllocas.ArgsBase,
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{builder.getInt32(0), builder.getInt32(index)});
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llvm::Value *ptrBaseCast = builder.CreateBitCast(
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ptrBaseGEP, dataPtrBase->getType()->getPointerTo());
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builder.CreateStore(dataPtrBase, ptrBaseCast);
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// Store pointer extracted from operand into the i-th position of args.
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llvm::Value *ptrGEP = builder.CreateInBoundsGEP(
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arrI8PtrTy, mapperAllocas.Args,
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{builder.getInt32(0), builder.getInt32(index)});
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llvm::Value *ptrCast =
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builder.CreateBitCast(ptrGEP, dataPtr->getType()->getPointerTo());
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builder.CreateStore(dataPtr, ptrCast);
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// Store size extracted from operand into the i-th position of argSizes.
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llvm::Value *sizeGEP = builder.CreateInBoundsGEP(
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arrI64Ty, mapperAllocas.ArgSizes,
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{builder.getInt32(0), builder.getInt32(index)});
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builder.CreateStore(dataSize, sizeGEP);
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flags.push_back(operandFlag);
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llvm::Constant *mapName =
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createMappingInformation(data.getLoc(), *accBuilder);
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names.push_back(mapName);
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++index;
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}
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return success();
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}
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/// Process data operands from acc::EnterDataOp
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static LogicalResult
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processDataOperands(llvm::IRBuilderBase &builder,
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LLVM::ModuleTranslation &moduleTranslation,
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acc::EnterDataOp op, SmallVector<uint64_t> &flags,
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SmallVectorImpl<llvm::Constant *> &names,
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struct OpenACCIRBuilder::MapperAllocas &mapperAllocas) {
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// TODO add `create_zero` and `attach` operands
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unsigned index = 0;
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// Create operands are handled as `alloc` call.
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if (failed(processOperands(builder, moduleTranslation, op,
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op.createOperands(), op.getNumDataOperands(),
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kCreateFlag, flags, names, index, mapperAllocas)))
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return failure();
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// Copyin operands are handled as `to` call.
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if (failed(processOperands(builder, moduleTranslation, op,
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op.copyinOperands(), op.getNumDataOperands(),
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kDeviceCopyinFlag, flags, names, index,
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mapperAllocas)))
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return failure();
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return success();
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}
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/// Process data operands from acc::ExitDataOp
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static LogicalResult
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processDataOperands(llvm::IRBuilderBase &builder,
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LLVM::ModuleTranslation &moduleTranslation,
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acc::ExitDataOp op, SmallVector<uint64_t> &flags,
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SmallVectorImpl<llvm::Constant *> &names,
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struct OpenACCIRBuilder::MapperAllocas &mapperAllocas) {
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// TODO add `detach` operands
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unsigned index = 0;
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// Delete operands are handled as `delete` call.
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if (failed(processOperands(builder, moduleTranslation, op,
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op.deleteOperands(), op.getNumDataOperands(),
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kDeleteFlag, flags, names, index, mapperAllocas)))
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return failure();
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// Copyout operands are handled as `from` call.
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if (failed(processOperands(builder, moduleTranslation, op,
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op.copyoutOperands(), op.getNumDataOperands(),
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kHostCopyoutFlag, flags, names, index,
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mapperAllocas)))
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return failure();
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return success();
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}
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/// Process data operands from acc::UpdateOp
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static LogicalResult
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processDataOperands(llvm::IRBuilderBase &builder,
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LLVM::ModuleTranslation &moduleTranslation,
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acc::UpdateOp op, SmallVector<uint64_t> &flags,
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SmallVectorImpl<llvm::Constant *> &names,
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struct OpenACCIRBuilder::MapperAllocas &mapperAllocas) {
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unsigned index = 0;
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// Host operands are handled as `from` call.
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if (failed(processOperands(builder, moduleTranslation, op, op.hostOperands(),
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op.getNumDataOperands(), kHostCopyoutFlag, flags,
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names, index, mapperAllocas)))
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return failure();
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// Device operands are handled as `to` call.
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if (failed(processOperands(builder, moduleTranslation, op,
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op.deviceOperands(), op.getNumDataOperands(),
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kDeviceCopyinFlag, flags, names, index,
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mapperAllocas)))
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return failure();
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return success();
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}
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//===----------------------------------------------------------------------===//
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// Conversion functions
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//===----------------------------------------------------------------------===//
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/// Converts an OpenACC data operation into LLVM IR.
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static LogicalResult convertDataOp(acc::DataOp &op,
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llvm::IRBuilderBase &builder,
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LLVM::ModuleTranslation &moduleTranslation) {
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llvm::LLVMContext &ctx = builder.getContext();
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auto enclosingFuncOp = op.getOperation()->getParentOfType<LLVM::LLVMFuncOp>();
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llvm::Function *enclosingFunction =
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moduleTranslation.lookupFunction(enclosingFuncOp.getName());
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OpenACCIRBuilder *accBuilder = moduleTranslation.getOpenMPBuilder();
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llvm::Value *srcLocInfo = createSourceLocationInfo(*accBuilder, op);
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llvm::Function *beginMapperFunc = accBuilder->getOrCreateRuntimeFunctionPtr(
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llvm::omp::OMPRTL___tgt_target_data_begin_mapper);
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llvm::Function *endMapperFunc = accBuilder->getOrCreateRuntimeFunctionPtr(
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llvm::omp::OMPRTL___tgt_target_data_end_mapper);
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// Number of arguments in the data operation.
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unsigned totalNbOperand = op.getNumDataOperands();
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struct OpenACCIRBuilder::MapperAllocas mapperAllocas;
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OpenACCIRBuilder::InsertPointTy allocaIP(
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&enclosingFunction->getEntryBlock(),
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enclosingFunction->getEntryBlock().getFirstInsertionPt());
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accBuilder->createMapperAllocas(builder.saveIP(), allocaIP, totalNbOperand,
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mapperAllocas);
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SmallVector<uint64_t> flags;
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SmallVector<llvm::Constant *> names;
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unsigned index = 0;
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// TODO handle no_create, deviceptr and attach operands.
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if (failed(processOperands(builder, moduleTranslation, op, op.copyOperands(),
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totalNbOperand, kCopyFlag | kHoldFlag, flags,
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names, index, mapperAllocas)))
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return failure();
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if (failed(processOperands(
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builder, moduleTranslation, op, op.copyinOperands(), totalNbOperand,
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kDeviceCopyinFlag | kHoldFlag, flags, names, index, mapperAllocas)))
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return failure();
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// TODO copyin readonly currenlty handled as copyin. Update when extension
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// available.
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if (failed(processOperands(builder, moduleTranslation, op,
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op.copyinReadonlyOperands(), totalNbOperand,
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kDeviceCopyinFlag | kHoldFlag, flags, names, index,
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mapperAllocas)))
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return failure();
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if (failed(processOperands(
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builder, moduleTranslation, op, op.copyoutOperands(), totalNbOperand,
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kHostCopyoutFlag | kHoldFlag, flags, names, index, mapperAllocas)))
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return failure();
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// TODO copyout zero currenlty handled as copyout. Update when extension
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// available.
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if (failed(processOperands(builder, moduleTranslation, op,
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op.copyoutZeroOperands(), totalNbOperand,
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kHostCopyoutFlag | kHoldFlag, flags, names, index,
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mapperAllocas)))
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return failure();
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if (failed(processOperands(
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builder, moduleTranslation, op, op.createOperands(), totalNbOperand,
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kCreateFlag | kHoldFlag, flags, names, index, mapperAllocas)))
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return failure();
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// TODO create zero currenlty handled as create. Update when extension
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// available.
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if (failed(processOperands(builder, moduleTranslation, op,
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op.createZeroOperands(), totalNbOperand,
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kCreateFlag | kHoldFlag, flags, names, index,
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mapperAllocas)))
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return failure();
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if (failed(processOperands(
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builder, moduleTranslation, op, op.presentOperands(), totalNbOperand,
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kPresentFlag | kHoldFlag, flags, names, index, mapperAllocas)))
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return failure();
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llvm::GlobalVariable *maptypes =
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accBuilder->createOffloadMaptypes(flags, ".offload_maptypes");
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llvm::Value *maptypesArg = builder.CreateConstInBoundsGEP2_32(
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llvm::ArrayType::get(llvm::Type::getInt64Ty(ctx), totalNbOperand),
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maptypes, /*Idx0=*/0, /*Idx1=*/0);
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llvm::GlobalVariable *mapnames =
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accBuilder->createOffloadMapnames(names, ".offload_mapnames");
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llvm::Value *mapnamesArg = builder.CreateConstInBoundsGEP2_32(
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llvm::ArrayType::get(llvm::Type::getInt8PtrTy(ctx), totalNbOperand),
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mapnames, /*Idx0=*/0, /*Idx1=*/0);
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// Create call to start the data region.
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accBuilder->emitMapperCall(builder.saveIP(), beginMapperFunc, srcLocInfo,
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maptypesArg, mapnamesArg, mapperAllocas,
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kDefaultDevice, totalNbOperand);
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// Convert the region.
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llvm::BasicBlock *entryBlock = nullptr;
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for (Block &bb : op.region()) {
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llvm::BasicBlock *llvmBB = llvm::BasicBlock::Create(
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ctx, "acc.data", builder.GetInsertBlock()->getParent());
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if (entryBlock == nullptr)
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entryBlock = llvmBB;
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moduleTranslation.mapBlock(&bb, llvmBB);
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}
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auto afterDataRegion = builder.saveIP();
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llvm::BranchInst *sourceTerminator = builder.CreateBr(entryBlock);
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builder.restoreIP(afterDataRegion);
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llvm::BasicBlock *endDataBlock = llvm::BasicBlock::Create(
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ctx, "acc.end_data", builder.GetInsertBlock()->getParent());
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SetVector<Block *> blocks =
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LLVM::detail::getTopologicallySortedBlocks(op.region());
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for (Block *bb : blocks) {
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llvm::BasicBlock *llvmBB = moduleTranslation.lookupBlock(bb);
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if (bb->isEntryBlock()) {
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assert(sourceTerminator->getNumSuccessors() == 1 &&
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"provided entry block has multiple successors");
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sourceTerminator->setSuccessor(0, llvmBB);
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}
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if (failed(
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moduleTranslation.convertBlock(*bb, bb->isEntryBlock(), builder))) {
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return failure();
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}
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if (isa<acc::TerminatorOp, acc::YieldOp>(bb->getTerminator()))
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builder.CreateBr(endDataBlock);
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}
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// Create call to end the data region.
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builder.SetInsertPoint(endDataBlock);
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accBuilder->emitMapperCall(builder.saveIP(), endMapperFunc, srcLocInfo,
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maptypesArg, mapnamesArg, mapperAllocas,
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kDefaultDevice, totalNbOperand);
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return success();
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}
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/// Converts an OpenACC standalone data operation into LLVM IR.
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template <typename OpTy>
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static LogicalResult
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convertStandaloneDataOp(OpTy &op, llvm::IRBuilderBase &builder,
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LLVM::ModuleTranslation &moduleTranslation) {
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auto enclosingFuncOp =
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op.getOperation()->template getParentOfType<LLVM::LLVMFuncOp>();
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llvm::Function *enclosingFunction =
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moduleTranslation.lookupFunction(enclosingFuncOp.getName());
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OpenACCIRBuilder *accBuilder = moduleTranslation.getOpenMPBuilder();
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auto *srcLocInfo = createSourceLocationInfo(*accBuilder, op);
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auto *mapperFunc = getAssociatedFunction(*accBuilder, op);
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// Number of arguments in the enter_data operation.
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unsigned totalNbOperand = op.getNumDataOperands();
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llvm::LLVMContext &ctx = builder.getContext();
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struct OpenACCIRBuilder::MapperAllocas mapperAllocas;
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OpenACCIRBuilder::InsertPointTy allocaIP(
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&enclosingFunction->getEntryBlock(),
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enclosingFunction->getEntryBlock().getFirstInsertionPt());
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accBuilder->createMapperAllocas(builder.saveIP(), allocaIP, totalNbOperand,
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mapperAllocas);
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SmallVector<uint64_t> flags;
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SmallVector<llvm::Constant *> names;
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if (failed(processDataOperands(builder, moduleTranslation, op, flags, names,
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mapperAllocas)))
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return failure();
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llvm::GlobalVariable *maptypes =
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accBuilder->createOffloadMaptypes(flags, ".offload_maptypes");
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llvm::Value *maptypesArg = builder.CreateConstInBoundsGEP2_32(
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llvm::ArrayType::get(llvm::Type::getInt64Ty(ctx), totalNbOperand),
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maptypes, /*Idx0=*/0, /*Idx1=*/0);
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llvm::GlobalVariable *mapnames =
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accBuilder->createOffloadMapnames(names, ".offload_mapnames");
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llvm::Value *mapnamesArg = builder.CreateConstInBoundsGEP2_32(
|
|
llvm::ArrayType::get(llvm::Type::getInt8PtrTy(ctx), totalNbOperand),
|
|
mapnames, /*Idx0=*/0, /*Idx1=*/0);
|
|
|
|
accBuilder->emitMapperCall(builder.saveIP(), mapperFunc, srcLocInfo,
|
|
maptypesArg, mapnamesArg, mapperAllocas,
|
|
kDefaultDevice, totalNbOperand);
|
|
|
|
return success();
|
|
}
|
|
|
|
namespace {
|
|
|
|
/// Implementation of the dialect interface that converts operations belonging
|
|
/// to the OpenACC dialect to LLVM IR.
|
|
class OpenACCDialectLLVMIRTranslationInterface
|
|
: public LLVMTranslationDialectInterface {
|
|
public:
|
|
using LLVMTranslationDialectInterface::LLVMTranslationDialectInterface;
|
|
|
|
/// Translates the given operation to LLVM IR using the provided IR builder
|
|
/// and saving the state in `moduleTranslation`.
|
|
LogicalResult
|
|
convertOperation(Operation *op, llvm::IRBuilderBase &builder,
|
|
LLVM::ModuleTranslation &moduleTranslation) const final;
|
|
};
|
|
|
|
} // namespace
|
|
|
|
/// Given an OpenACC MLIR operation, create the corresponding LLVM IR
|
|
/// (including OpenACC runtime calls).
|
|
LogicalResult OpenACCDialectLLVMIRTranslationInterface::convertOperation(
|
|
Operation *op, llvm::IRBuilderBase &builder,
|
|
LLVM::ModuleTranslation &moduleTranslation) const {
|
|
|
|
return llvm::TypeSwitch<Operation *, LogicalResult>(op)
|
|
.Case([&](acc::DataOp dataOp) {
|
|
return convertDataOp(dataOp, builder, moduleTranslation);
|
|
})
|
|
.Case([&](acc::EnterDataOp enterDataOp) {
|
|
return convertStandaloneDataOp<acc::EnterDataOp>(enterDataOp, builder,
|
|
moduleTranslation);
|
|
})
|
|
.Case([&](acc::ExitDataOp exitDataOp) {
|
|
return convertStandaloneDataOp<acc::ExitDataOp>(exitDataOp, builder,
|
|
moduleTranslation);
|
|
})
|
|
.Case([&](acc::UpdateOp updateOp) {
|
|
return convertStandaloneDataOp<acc::UpdateOp>(updateOp, builder,
|
|
moduleTranslation);
|
|
})
|
|
.Case<acc::TerminatorOp, acc::YieldOp>([](auto op) {
|
|
// `yield` and `terminator` can be just omitted. The block structure was
|
|
// created in the function that handles their parent operation.
|
|
assert(op->getNumOperands() == 0 &&
|
|
"unexpected OpenACC terminator with operands");
|
|
return success();
|
|
})
|
|
.Default([&](Operation *op) {
|
|
return op->emitError("unsupported OpenACC operation: ")
|
|
<< op->getName();
|
|
});
|
|
}
|
|
|
|
void mlir::registerOpenACCDialectTranslation(DialectRegistry ®istry) {
|
|
registry.insert<acc::OpenACCDialect>();
|
|
registry.addExtension(+[](MLIRContext *ctx, acc::OpenACCDialect *dialect) {
|
|
dialect->addInterfaces<OpenACCDialectLLVMIRTranslationInterface>();
|
|
});
|
|
}
|
|
|
|
void mlir::registerOpenACCDialectTranslation(MLIRContext &context) {
|
|
DialectRegistry registry;
|
|
registerOpenACCDialectTranslation(registry);
|
|
context.appendDialectRegistry(registry);
|
|
}
|