feat: add RHI abstraction layer unit tests
- Add RHITestFixture with RHI_BACKEND env var support for backend selection - Add unit tests for: Device, Buffer, Texture, SwapChain, CommandList, CommandQueue, Shader, Fence, Sampler - Tests can run against D3D12 or OpenGL backends via RHI_BACKEND env var - Add integration folder placeholder for future integration tests
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109
tests/RHI/unit/test_command_queue.cpp
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109
tests/RHI/unit/test_command_queue.cpp
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#include "fixtures/RHITestFixture.h"
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#include "XCEngine/RHI/RHICommandQueue.h"
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#include "XCEngine/RHI/RHICommandList.h"
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#include "XCEngine/RHI/RHIFence.h"
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using namespace XCEngine::RHI;
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TEST_F(RHITestFixture, CommandQueue_ExecuteCommandLists) {
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CommandQueueDesc queueDesc = {};
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queueDesc.queueType = static_cast<uint32_t>(CommandQueueType::Direct);
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RHICommandQueue* queue = GetDevice()->CreateCommandQueue(queueDesc);
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ASSERT_NE(queue, nullptr);
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CommandListDesc cmdDesc = {};
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cmdDesc.commandListType = static_cast<uint32_t>(CommandQueueType::Direct);
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RHICommandList* cmdList = GetDevice()->CreateCommandList(cmdDesc);
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ASSERT_NE(cmdList, nullptr);
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cmdList->Reset();
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cmdList->Close();
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void* cmdLists[] = { cmdList };
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queue->ExecuteCommandLists(1, cmdLists);
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cmdList->Shutdown();
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delete cmdList;
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queue->Shutdown();
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delete queue;
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}
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TEST_F(RHITestFixture, CommandQueue_SignalWaitFence) {
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CommandQueueDesc queueDesc = {};
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queueDesc.queueType = static_cast<uint32_t>(CommandQueueType::Direct);
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RHICommandQueue* queue = GetDevice()->CreateCommandQueue(queueDesc);
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ASSERT_NE(queue, nullptr);
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FenceDesc fenceDesc = {};
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fenceDesc.initialValue = 0;
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RHIFence* fence = GetDevice()->CreateFence(fenceDesc);
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ASSERT_NE(fence, nullptr);
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queue->Signal(fence, 1);
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fence->Wait(1);
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EXPECT_EQ(fence->GetCompletedValue(), 1u);
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fence->Shutdown();
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delete fence;
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queue->Shutdown();
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delete queue;
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}
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TEST_F(RHITestFixture, CommandQueue_GetCompletedValue) {
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CommandQueueDesc queueDesc = {};
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queueDesc.queueType = static_cast<uint32_t>(CommandQueueType::Direct);
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RHICommandQueue* queue = GetDevice()->CreateCommandQueue(queueDesc);
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ASSERT_NE(queue, nullptr);
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uint64_t completedValue = queue->GetCompletedValue();
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EXPECT_GE(completedValue, 0u);
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queue->Shutdown();
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delete queue;
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}
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TEST_F(RHITestFixture, CommandQueue_WaitForIdle) {
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CommandQueueDesc queueDesc = {};
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queueDesc.queueType = static_cast<uint32_t>(CommandQueueType::Direct);
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RHICommandQueue* queue = GetDevice()->CreateCommandQueue(queueDesc);
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ASSERT_NE(queue, nullptr);
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queue->WaitForIdle();
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queue->Shutdown();
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delete queue;
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}
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TEST_F(RHITestFixture, CommandQueue_GetType) {
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CommandQueueDesc queueDesc = {};
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queueDesc.queueType = static_cast<uint32_t>(CommandQueueType::Direct);
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RHICommandQueue* queue = GetDevice()->CreateCommandQueue(queueDesc);
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ASSERT_NE(queue, nullptr);
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EXPECT_EQ(queue->GetType(), CommandQueueType::Direct);
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queue->Shutdown();
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delete queue;
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}
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TEST_F(RHITestFixture, CommandQueue_GetTimestampFrequency) {
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CommandQueueDesc queueDesc = {};
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queueDesc.queueType = static_cast<uint32_t>(CommandQueueType::Direct);
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RHICommandQueue* queue = GetDevice()->CreateCommandQueue(queueDesc);
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ASSERT_NE(queue, nullptr);
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uint64_t frequency = queue->GetTimestampFrequency();
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EXPECT_GT(frequency, 0u);
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queue->Shutdown();
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delete queue;
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}
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