* Copyright (c) 2025 Huawei Technologies Co., Ltd.
* This program is free software, you can redistribute it and/or modify it under the terms and conditions of
* CANN Open Software License Agreement Version 2.0 (the "License").
* Please refer to the License for details. You may not use this file except in compliance with the License.
* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, EITHER EXPRESS OR IMPLIED,
* INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, MERCHANTABILITY, OR FITNESS FOR A PARTICULAR PURPOSE.
* See LICENSE in the root of the software repository for the full text of the License.
*/
#include <gtest/gtest.h>
#define private public
#define protected public
#include "kernel_operator.h"
using namespace std;
using namespace AscendC;
template <typename srcType> class KernelSilu {
public:
__aicore__ inline KernelSilu() {}
__aicore__ inline void Init(GM_ADDR srcGm, GM_ADDR dstGm, uint32_t inputSize)
{
dataSize = inputSize;
srcGlobal.SetGlobalBuffer(reinterpret_cast<__gm__ srcType*>(srcGm), dataSize);
dstGlobal.SetGlobalBuffer(reinterpret_cast<__gm__ srcType*>(dstGm), dataSize);
pipe.InitBuffer(inQueueX, 1, dataSize * sizeof(srcType));
pipe.InitBuffer(outQueue, 1, dataSize * sizeof(srcType));
}
__aicore__ inline void Process()
{
CopyIn();
Compute();
CopyOut();
}
private:
__aicore__ inline void CopyIn()
{
LocalTensor<srcType> srcLocal = inQueueX.AllocTensor<srcType>();
DataCopy(srcLocal, srcGlobal, dataSize);
inQueueX.EnQue(srcLocal);
}
__aicore__ inline void Compute()
{
LocalTensor<srcType> dstLocal = outQueue.AllocTensor<srcType>();
LocalTensor<srcType> srcLocal = inQueueX.DeQue<srcType>();
Silu(dstLocal, srcLocal, dataSize);
outQueue.EnQue<srcType>(dstLocal);
inQueueX.FreeTensor(srcLocal);
}
__aicore__ inline void CopyOut()
{
LocalTensor<srcType> dstLocal = outQueue.DeQue<srcType>();
DataCopy(dstGlobal, dstLocal, dataSize);
outQueue.FreeTensor(dstLocal);
}
private:
GlobalTensor<srcType> srcGlobal;
GlobalTensor<srcType> dstGlobal;
TPipe pipe;
TQue<TPosition::VECIN, 1> inQueueX;
TQue<TPosition::VECOUT, 1> outQueue;
uint32_t dataSize = 0;
};
template <typename dataType>
__aicore__ void main_Silu_test(GM_ADDR srcGm, GM_ADDR dstGm, uint32_t dataSize)
{
KernelSilu<dataType> op;
op.Init(srcGm, dstGm, dataSize);
op.Process();
}
struct SiluTestParams {
uint32_t dataSize;
uint32_t dataTypeSize;
void (*calFunc)(uint8_t*, uint8_t*, uint32_t);
};
class SiluTestSuite : public testing::Test, public testing::WithParamInterface<SiluTestParams> {
protected:
static void SetUpTestCase()
{
std::cout << "SiluTestSuite SetUpTestCase" << std::endl;
}
static void TearDownTestCase()
{
std::cout << "SiluTestSuite TearDownTestCase" << std::endl;
}
virtual void SetUp() {
AscendC::SetGCoreType(2);
}
virtual void TearDown() {
AscendC::SetGCoreType(0);
}
};
INSTANTIATE_TEST_CASE_P(TEST_PACKAGE_Silu, SiluTestSuite,
::testing::Values(
SiluTestParams { 32, sizeof(half), main_Silu_test<half> },
SiluTestParams { 64, sizeof(half), main_Silu_test<half> },
SiluTestParams { 256, sizeof(half), main_Silu_test<half> },
SiluTestParams { 512, sizeof(half), main_Silu_test<half> },
SiluTestParams { 1024, sizeof(half), main_Silu_test<half> },
SiluTestParams { 2048, sizeof(half), main_Silu_test<half> },
SiluTestParams { 4096, sizeof(half), main_Silu_test<half> },
SiluTestParams { 8192, sizeof(half), main_Silu_test<half> },
SiluTestParams { 16384, sizeof(half), main_Silu_test<half> },
SiluTestParams { 32768, sizeof(half), main_Silu_test<half> },
SiluTestParams { 32, sizeof(float), main_Silu_test<float> },
SiluTestParams { 64, sizeof(float), main_Silu_test<float> },
SiluTestParams { 256, sizeof(float), main_Silu_test<float> },
SiluTestParams { 512, sizeof(float), main_Silu_test<float> },
SiluTestParams { 1024, sizeof(float), main_Silu_test<float> },
SiluTestParams { 2048, sizeof(float), main_Silu_test<float> },
SiluTestParams { 4096, sizeof(float), main_Silu_test<float> },
SiluTestParams { 8192, sizeof(float), main_Silu_test<float> },
SiluTestParams { 16384, sizeof(float), main_Silu_test<float> }
));
TEST_P(SiluTestSuite, SiluTestCase)
{
auto param = GetParam();
uint8_t inputGm[param.dataSize * param.dataTypeSize] { 0x00 };
uint8_t outputGm[param.dataSize * param.dataTypeSize] { 0x00 };
param.calFunc(inputGm, outputGm, param.dataSize);
for (int32_t i = 0; i < param.dataSize; i++) {
EXPECT_EQ(outputGm[i], 0x00);
}
}