//===------ API.cpp - Kernel Language (CUDA/HIP) entry points ----- C++ -*-===//
//
// 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
//
//===----------------------------------------------------------------------===//
//
//===----------------------------------------------------------------------===//
#include "Shared/APITypes.h"
#include <cstdio>
struct dim3 {
unsigned x = 0, y = 0, z = 0;
};
struct __omp_kernel_t {
dim3 __grid_size;
dim3 __block_size;
size_t __shared_memory;
void *__stream;
};
static __omp_kernel_t __current_kernel = {};
#pragma omp threadprivate(__current_kernel);
extern "C" {
// TODO: There is little reason we need to keep these names or the way calls are
// issued. For now we do to avoid modifying Clang's CUDA codegen. Unclear when
// we actually need to push/pop configurations.
unsigned __llvmPushCallConfiguration(dim3 __grid_size, dim3 __block_size,
size_t __shared_memory, void *__stream) {
__omp_kernel_t &__kernel = __current_kernel;
__kernel.__grid_size = __grid_size;
__kernel.__block_size = __block_size;
__kernel.__shared_memory = __shared_memory;
__kernel.__stream = __stream;
return 0;
}
unsigned __llvmPopCallConfiguration(dim3 *__grid_size, dim3 *__block_size,
size_t *__shared_memory, void *__stream) {
__omp_kernel_t &__kernel = __current_kernel;
*__grid_size = __kernel.__grid_size;
*__block_size = __kernel.__block_size;
*__shared_memory = __kernel.__shared_memory;
*((void **)__stream) = __kernel.__stream;
return 0;
}
int __tgt_target_kernel(void *Loc, int64_t DeviceId, int32_t NumTeams,
int32_t ThreadLimit, const void *HostPtr,
KernelArgsTy *Args);
unsigned llvmLaunchKernel(const void *func, dim3 gridDim, dim3 blockDim,
void *args, size_t sharedMem, void *stream) {
KernelArgsTy Args = {};
Args.DynCGroupMem = sharedMem;
Args.NumTeams[0] = gridDim.x;
Args.NumTeams[1] = gridDim.y;
Args.NumTeams[2] = gridDim.z;
Args.ThreadLimit[0] = blockDim.x;
Args.ThreadLimit[1] = blockDim.y;
Args.ThreadLimit[2] = blockDim.z;
Args.ArgPtrs = reinterpret_cast<void **>(args);
Args.Flags.IsCUDA = true;
return __tgt_target_kernel(nullptr, 0, gridDim.x, blockDim.x, func, &Args);
}
}