Files
clang-p2996/mlir/lib/Conversion/StandardToSPIRV/StandardToSPIRVPass.cpp
Lei Zhang 5299843c31 [mlir][spirv] Add control for non-32-bit scalar type emulation
Non-32-bit scalar types require special hardware support that may not
exist on all GPUs. This is reflected in SPIR-V as that non-32-bit scalar
types require special capabilities or extensions.

Previously when there is a non-32-bit type and no native support, we
unconditionally emulate it with 32-bit ones. This isn't good given that
it can have implications over ABI and data layout consistency.

This commit introduces an option to control whether to use 32-bit
types to emulate.

Differential Revision: https://reviews.llvm.org/D100059
2021-04-08 08:19:47 -04:00

55 lines
2.0 KiB
C++

//===- StandardToSPIRVPass.cpp - Standard to SPIR-V Passes ----------------===//
//
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
// See https://llvm.org/LICENSE.txt for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
//===----------------------------------------------------------------------===//
//
// This file implements a pass to convert standard dialect to SPIR-V dialect.
//
//===----------------------------------------------------------------------===//
#include "mlir/Conversion/StandardToSPIRV/StandardToSPIRVPass.h"
#include "../PassDetail.h"
#include "mlir/Conversion/StandardToSPIRV/StandardToSPIRV.h"
#include "mlir/Dialect/SPIRV/IR/SPIRVDialect.h"
#include "mlir/Dialect/SPIRV/Transforms/SPIRVConversion.h"
using namespace mlir;
namespace {
/// A pass converting MLIR Standard operations into the SPIR-V dialect.
class ConvertStandardToSPIRVPass
: public ConvertStandardToSPIRVBase<ConvertStandardToSPIRVPass> {
void runOnOperation() override;
};
} // namespace
void ConvertStandardToSPIRVPass::runOnOperation() {
MLIRContext *context = &getContext();
ModuleOp module = getOperation();
auto targetAttr = spirv::lookupTargetEnvOrDefault(module);
std::unique_ptr<ConversionTarget> target =
SPIRVConversionTarget::get(targetAttr);
SPIRVTypeConverter::Options options;
options.emulateNon32BitScalarTypes = this->emulateNon32BitScalarTypes;
SPIRVTypeConverter typeConverter(targetAttr, options);
RewritePatternSet patterns(context);
populateStandardToSPIRVPatterns(typeConverter, patterns);
populateTensorToSPIRVPatterns(typeConverter,
/*byteCountThreshold=*/64, patterns);
populateBuiltinFuncToSPIRVPatterns(typeConverter, patterns);
if (failed(applyPartialConversion(module, *target, std::move(patterns))))
return signalPassFailure();
}
std::unique_ptr<OperationPass<ModuleOp>>
mlir::createConvertStandardToSPIRVPass() {
return std::make_unique<ConvertStandardToSPIRVPass>();
}