compute-runtime/unit_tests/fixtures/kernel_arg_fixture.cpp

80 lines
3.2 KiB
C++

/*
* Copyright (C) 2018 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#include "unit_tests/fixtures/kernel_arg_fixture.h"
#include "runtime/program/kernel_info.h"
#include "unit_tests/fixtures/image_fixture.h"
#include "unit_tests/mocks/mock_context.h"
#include "unit_tests/mocks/mock_kernel.h"
#include "unit_tests/mocks/mock_program.h"
#include "unit_tests/mocks/mock_image.h"
KernelImageArgTest::~KernelImageArgTest() = default;
void KernelImageArgTest::SetUp() {
pKernelInfo = std::make_unique<OCLRT::KernelInfo>();
KernelArgPatchInfo kernelArgPatchInfo;
kernelHeader.reset(new iOpenCL::SKernelBinaryHeaderCommon{});
kernelHeader->SurfaceStateHeapSize = sizeof(surfaceStateHeap);
pKernelInfo->heapInfo.pSsh = surfaceStateHeap;
pKernelInfo->heapInfo.pKernelHeader = kernelHeader.get();
pKernelInfo->usesSsh = true;
pKernelInfo->kernelArgInfo.resize(5);
pKernelInfo->kernelArgInfo[4].kernelArgPatchInfoVector.push_back(kernelArgPatchInfo);
pKernelInfo->kernelArgInfo[3].kernelArgPatchInfoVector.push_back(kernelArgPatchInfo);
pKernelInfo->kernelArgInfo[2].kernelArgPatchInfoVector.push_back(kernelArgPatchInfo);
pKernelInfo->kernelArgInfo[1].kernelArgPatchInfoVector.push_back(kernelArgPatchInfo);
pKernelInfo->kernelArgInfo[0].kernelArgPatchInfoVector.push_back(kernelArgPatchInfo);
pKernelInfo->kernelArgInfo[0].offsetImgWidth = 0x4;
pKernelInfo->kernelArgInfo[0].offsetNumSamples = 0x3c;
offsetNumMipLevelsImage0 = 0x40;
pKernelInfo->kernelArgInfo[0].offsetNumMipLevels = offsetNumMipLevelsImage0;
pKernelInfo->kernelArgInfo[1].offsetImgHeight = 0xc;
pKernelInfo->kernelArgInfo[2].kernelArgPatchInfoVector[0].crossthreadOffset = 0x20;
pKernelInfo->kernelArgInfo[2].kernelArgPatchInfoVector[0].size = sizeof(void *);
pKernelInfo->kernelArgInfo[3].offsetImgDepth = 0x30;
pKernelInfo->kernelArgInfo[4].offsetHeap = 0x20;
pKernelInfo->kernelArgInfo[4].offsetObjectId = 0x0;
pKernelInfo->kernelArgInfo[4].isImage = true;
pKernelInfo->kernelArgInfo[3].isImage = true;
pKernelInfo->kernelArgInfo[2].isImage = true;
pKernelInfo->kernelArgInfo[1].isImage = true;
pKernelInfo->kernelArgInfo[0].isImage = true;
DeviceFixture::SetUp();
program = std::make_unique<OCLRT::MockProgram>(*pDevice->getExecutionEnvironment());
pKernel.reset(new OCLRT::MockKernel(program.get(), *pKernelInfo, *pDevice));
ASSERT_EQ(CL_SUCCESS, pKernel->initialize());
pKernel->setKernelArgHandler(0, &OCLRT::Kernel::setArgImage);
pKernel->setKernelArgHandler(1, &OCLRT::Kernel::setArgImage);
pKernel->setKernelArgHandler(2, &OCLRT::Kernel::setArgImmediate);
pKernel->setKernelArgHandler(3, &OCLRT::Kernel::setArgImage);
pKernel->setKernelArgHandler(4, &OCLRT::Kernel::setArgImage);
uint32_t crossThreadData[0x44] = {};
crossThreadData[0x20 / sizeof(uint32_t)] = 0x12344321;
pKernel->setCrossThreadData(crossThreadData, sizeof(crossThreadData));
context.reset(new OCLRT::MockContext(pDevice));
image.reset(Image2dHelper<>::create(context.get()));
ASSERT_NE(nullptr, image);
}
void KernelImageArgTest::TearDown() {
image.reset();
pKernel.reset();
program.reset();
context.reset();
DeviceFixture::TearDown();
}