#include "mlir/Dialect/GPU/Transforms/Passes.h"
#include "mlir/Pass/Pass.h"
#include "mlir/Target/LLVMIR/Dialect/ROCDL/ROCDLToLLVMIRTranslation.h"
#include "mlir/Target/LLVMIR/Export.h"
#include "llvm/Support/TargetSelect.h"
using namespace mlir;
#if MLIR_ROCM_CONVERSIONS_ENABLED
namespace {
class TestSerializeToHsacoPass
: public PassWrapper<TestSerializeToHsacoPass, gpu::SerializeToBlobPass> {
public:
MLIR_DEFINE_EXPLICIT_INTERNAL_INLINE_TYPE_ID(TestSerializeToHsacoPass)
StringRef getArgument() const final { return "test-gpu-to-hsaco"; }
StringRef getDescription() const final {
return "Lower GPU kernel function to HSAco binary annotations";
}
TestSerializeToHsacoPass();
private:
void getDependentDialects(DialectRegistry ®istry) const override;
std::unique_ptr<std::vector<char>>
serializeISA(const std::string &isa) override;
};
}
TestSerializeToHsacoPass::TestSerializeToHsacoPass() {
this->triple = "amdgcn-amd-amdhsa";
this->chip = "gfx900";
}
void TestSerializeToHsacoPass::getDependentDialects(
DialectRegistry ®istry) const {
registerROCDLDialectTranslation(registry);
gpu::SerializeToBlobPass::getDependentDialects(registry);
}
std::unique_ptr<std::vector<char>>
TestSerializeToHsacoPass::serializeISA(const std::string &) {
std::string data = "HSACO";
return std::make_unique<std::vector<char>>(data.begin(), data.end());
}
namespace mlir {
namespace test {
void registerTestGpuSerializeToHsacoPass() {
PassRegistration<TestSerializeToHsacoPass>([] {
LLVMInitializeAMDGPUTarget();
LLVMInitializeAMDGPUTargetInfo();
LLVMInitializeAMDGPUTargetMC();
LLVMInitializeAMDGPUAsmPrinter();
return std::make_unique<TestSerializeToHsacoPass>();
});
}
}
}
#endif