compute-runtime/opencl/test/unit_test/kernel/image_transformer_tests.cpp

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/*
* Copyright (C) 2018-2021 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#include "shared/source/program/kernel_info.h"
#include "opencl/source/kernel/image_transformer.h"
#include "opencl/test/unit_test/fixtures/image_fixture.h"
#include "opencl/test/unit_test/mocks/mock_kernel_info.h"
#include "test.h"
using namespace NEO;
class ImageTransformerTest : public ::testing::Test {
public:
void SetUp() override {
using SimpleKernelArgInfo = Kernel::SimpleKernelArgInfo;
pKernelInfo = std::make_unique<MockKernelInfo>();
pKernelInfo->addArgImage(0, firstImageOffset, iOpenCL::IMAGE_MEMORY_OBJECT_2D, true);
pKernelInfo->addArgImage(1, secondImageOffset, iOpenCL::IMAGE_MEMORY_OBJECT_2D, true);
image1.reset(Image3dHelper<>::create(&context));
image2.reset(Image3dHelper<>::create(&context));
SimpleKernelArgInfo imageArg1;
SimpleKernelArgInfo imageArg2;
clImage1 = static_cast<cl_mem>(image2.get());
clImage2 = static_cast<cl_mem>(image2.get());
imageArg1.value = &clImage1;
imageArg1.object = clImage1;
imageArg2.value = &clImage2;
imageArg2.object = clImage2;
kernelArguments.push_back(imageArg1);
kernelArguments.push_back(imageArg2);
}
const int firstImageOffset = 0x20;
const int secondImageOffset = 0x40;
std::unique_ptr<MockKernelInfo> pKernelInfo;
ImageTransformer imageTransformer;
MockContext context;
std::unique_ptr<Image> image1;
std::unique_ptr<Image> image2;
cl_mem clImage1;
cl_mem clImage2;
char ssh[0x80];
std::vector<Kernel::SimpleKernelArgInfo> kernelArguments;
};
TEST_F(ImageTransformerTest, givenImageTransformerWhenRegisterImage3dThenTransformerHasRegisteredImages3d) {
bool retVal;
retVal = imageTransformer.hasRegisteredImages3d();
EXPECT_FALSE(retVal);
imageTransformer.registerImage3d(0);
retVal = imageTransformer.hasRegisteredImages3d();
EXPECT_TRUE(retVal);
}
TEST_F(ImageTransformerTest, givenImageTransformerWhenTransformToImage2dArrayThenTransformerDidTransform) {
bool retVal;
retVal = imageTransformer.didTransform();
EXPECT_FALSE(retVal);
imageTransformer.transformImagesTo2dArray(*pKernelInfo, kernelArguments, nullptr);
retVal = imageTransformer.didTransform();
EXPECT_TRUE(retVal);
}
TEST_F(ImageTransformerTest, givenImageTransformerWhenTransformToImage3dThenTransformerDidNotTransform) {
bool retVal;
retVal = imageTransformer.didTransform();
EXPECT_FALSE(retVal);
imageTransformer.transformImagesTo2dArray(*pKernelInfo, kernelArguments, nullptr);
imageTransformer.transformImagesTo3d(*pKernelInfo, kernelArguments, nullptr);
retVal = imageTransformer.didTransform();
EXPECT_FALSE(retVal);
}
HWTEST_F(ImageTransformerTest, givenImageTransformerWhenTransformToImage2dArrayThenTransformOnlyRegisteredImages) {
using RENDER_SURFACE_STATE = typename FamilyType::RENDER_SURFACE_STATE;
using SURFACE_TYPE = typename RENDER_SURFACE_STATE::SURFACE_TYPE;
auto firstSurfaceState = reinterpret_cast<RENDER_SURFACE_STATE *>(ptrOffset(ssh, firstImageOffset));
auto secondSurfaceState = reinterpret_cast<RENDER_SURFACE_STATE *>(ptrOffset(ssh, secondImageOffset));
firstSurfaceState->setSurfaceType(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL);
secondSurfaceState->setSurfaceType(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL);
firstSurfaceState->setSurfaceArray(false);
secondSurfaceState->setSurfaceArray(false);
imageTransformer.registerImage3d(1);
imageTransformer.transformImagesTo2dArray(*pKernelInfo, kernelArguments, ssh);
EXPECT_EQ(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL, firstSurfaceState->getSurfaceType());
EXPECT_FALSE(firstSurfaceState->getSurfaceArray());
EXPECT_EQ(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_2D, secondSurfaceState->getSurfaceType());
EXPECT_TRUE(secondSurfaceState->getSurfaceArray());
}
HWTEST_F(ImageTransformerTest, givenImageTransformerWhenTransformToImage2dArrayThenTransformOnlyTransformableImages) {
using RENDER_SURFACE_STATE = typename FamilyType::RENDER_SURFACE_STATE;
using SURFACE_TYPE = typename RENDER_SURFACE_STATE::SURFACE_TYPE;
pKernelInfo->argAt(1).getExtendedTypeInfo().isTransformable = false;
auto firstSurfaceState = reinterpret_cast<RENDER_SURFACE_STATE *>(ptrOffset(ssh, firstImageOffset));
auto secondSurfaceState = reinterpret_cast<RENDER_SURFACE_STATE *>(ptrOffset(ssh, secondImageOffset));
firstSurfaceState->setSurfaceType(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL);
secondSurfaceState->setSurfaceType(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL);
firstSurfaceState->setSurfaceArray(false);
secondSurfaceState->setSurfaceArray(false);
imageTransformer.registerImage3d(0);
imageTransformer.registerImage3d(1);
imageTransformer.transformImagesTo2dArray(*pKernelInfo, kernelArguments, ssh);
EXPECT_EQ(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_2D, firstSurfaceState->getSurfaceType());
EXPECT_TRUE(firstSurfaceState->getSurfaceArray());
EXPECT_EQ(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL, secondSurfaceState->getSurfaceType());
EXPECT_FALSE(secondSurfaceState->getSurfaceArray());
}
HWTEST_F(ImageTransformerTest, givenImageTransformerWhenTransformToImage3dThenTransformAllRegisteredImages) {
using RENDER_SURFACE_STATE = typename FamilyType::RENDER_SURFACE_STATE;
using SURFACE_TYPE = typename RENDER_SURFACE_STATE::SURFACE_TYPE;
pKernelInfo->argAt(1).getExtendedTypeInfo().isTransformable = false;
auto firstSurfaceState = reinterpret_cast<RENDER_SURFACE_STATE *>(ptrOffset(ssh, firstImageOffset));
auto secondSurfaceState = reinterpret_cast<RENDER_SURFACE_STATE *>(ptrOffset(ssh, secondImageOffset));
firstSurfaceState->setSurfaceType(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL);
secondSurfaceState->setSurfaceType(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL);
firstSurfaceState->setSurfaceArray(true);
secondSurfaceState->setSurfaceArray(true);
imageTransformer.registerImage3d(0);
imageTransformer.registerImage3d(1);
imageTransformer.transformImagesTo3d(*pKernelInfo, kernelArguments, ssh);
EXPECT_EQ(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_3D, firstSurfaceState->getSurfaceType());
EXPECT_FALSE(firstSurfaceState->getSurfaceArray());
EXPECT_EQ(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_3D, secondSurfaceState->getSurfaceType());
EXPECT_FALSE(secondSurfaceState->getSurfaceArray());
}
HWTEST_F(ImageTransformerTest, givenImageTransformerWhenTransformToImage3dThenTransformOnlyRegisteredImages) {
using RENDER_SURFACE_STATE = typename FamilyType::RENDER_SURFACE_STATE;
using SURFACE_TYPE = typename RENDER_SURFACE_STATE::SURFACE_TYPE;
pKernelInfo->argAt(1).getExtendedTypeInfo().isTransformable = false;
auto firstSurfaceState = reinterpret_cast<RENDER_SURFACE_STATE *>(ptrOffset(ssh, firstImageOffset));
auto secondSurfaceState = reinterpret_cast<RENDER_SURFACE_STATE *>(ptrOffset(ssh, secondImageOffset));
firstSurfaceState->setSurfaceType(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL);
secondSurfaceState->setSurfaceType(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL);
firstSurfaceState->setSurfaceArray(true);
secondSurfaceState->setSurfaceArray(true);
imageTransformer.registerImage3d(1);
imageTransformer.transformImagesTo3d(*pKernelInfo, kernelArguments, ssh);
EXPECT_EQ(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_NULL, firstSurfaceState->getSurfaceType());
EXPECT_TRUE(firstSurfaceState->getSurfaceArray());
EXPECT_EQ(SURFACE_TYPE::SURFACE_TYPE_SURFTYPE_3D, secondSurfaceState->getSurfaceType());
EXPECT_FALSE(secondSurfaceState->getSurfaceArray());
}
class MockImageTransformer : public ImageTransformer {
public:
using ImageTransformer::argIndexes;
};
TEST(ImageTransformerRegisterImageTest, givenImageTransformerWhenRegisterTheSameImageTwiceThenAppendOnlyOne) {
MockImageTransformer transformer;
EXPECT_EQ(0u, transformer.argIndexes.size());
transformer.registerImage3d(0);
EXPECT_EQ(1u, transformer.argIndexes.size());
transformer.registerImage3d(0);
EXPECT_EQ(1u, transformer.argIndexes.size());
transformer.registerImage3d(1);
EXPECT_EQ(2u, transformer.argIndexes.size());
}