/* * Copyright (C) 2018-2022 Intel Corporation * * SPDX-License-Identifier: MIT * */ #pragma once #include "shared/source/command_stream/command_stream_receiver.h" #include "shared/source/device/root_device.h" #include "shared/source/device/sub_device.h" #include "shared/source/memory_manager/memory_manager.h" #include "shared/test/common/helpers/variable_backup.h" #include "shared/test/common/mocks/mock_graphics_allocation.h" #include "shared/test/unit_test/fixtures/mock_aub_center_fixture.h" namespace NEO { class CommandStreamReceiver; class DriverInfo; template class UltCommandStreamReceiver; extern CommandStreamReceiver *createCommandStream(ExecutionEnvironment &executionEnvironment, uint32_t rootDeviceIndex, const DeviceBitfield deviceBitfield); struct MockSubDevice : public SubDevice { using Device::allEngines; using Device::createEngines; using Device::engineInstancedType; using SubDevice::engineInstanced; using SubDevice::getDeviceBitfield; using SubDevice::getGlobalMemorySize; using SubDevice::SubDevice; std::unique_ptr createCommandStreamReceiver() const override { return std::unique_ptr(createCommandStreamReceiverFunc(*executionEnvironment, getRootDeviceIndex(), getDeviceBitfield())); } static decltype(&createCommandStream) createCommandStreamReceiverFunc; bool failOnCreateEngine = false; bool createEngine(uint32_t deviceCsrIndex, EngineTypeUsage engineTypeUsage) override; }; class MockDevice : public RootDevice { public: using Device::addEngineToEngineGroup; using Device::allEngines; using Device::allocateRTDispatchGlobals; using Device::commandStreamReceivers; using Device::createDeviceInternals; using Device::createEngine; using Device::createSubDevices; using Device::deviceBitfield; using Device::deviceInfo; using Device::engineInstanced; using Device::engineInstancedType; using Device::executionEnvironment; using Device::getGlobalMemorySize; using Device::initializeCaps; using Device::isDebuggerActive; using Device::regularEngineGroups; using Device::rootCsrCreated; using Device::rtMemoryBackedBuffer; using RootDevice::createEngines; using RootDevice::defaultEngineIndex; using RootDevice::getDeviceBitfield; using RootDevice::initializeRootCommandStreamReceiver; using RootDevice::numSubDevices; using RootDevice::subdevices; void setOSTime(OSTime *osTime); void setDriverInfo(DriverInfo *driverInfo); static bool createSingleDevice; bool createDeviceImpl() override; bool getCpuTime(uint64_t *timeStamp) { return true; }; MockDevice(); MockDevice(ExecutionEnvironment *executionEnvironment, uint32_t rootDeviceIndex); void setPreemptionMode(PreemptionMode mode) { preemptionMode = mode; } void injectMemoryManager(MemoryManager *); void setPerfCounters(PerformanceCounters *perfCounters) { if (perfCounters) { performanceCounters = std::unique_ptr(perfCounters); } else { performanceCounters.release(); } } size_t getMaxParameterSizeFromIGC() const override { if (callBaseGetMaxParameterSizeFromIGC) { return Device::getMaxParameterSizeFromIGC(); } return maxParameterSizeFromIGC; } const char *getProductAbbrev() const; template UltCommandStreamReceiver &getUltCommandStreamReceiver() { return reinterpret_cast &>(*allEngines[defaultEngineIndex].commandStreamReceiver); } template UltCommandStreamReceiver &getUltCommandStreamReceiverFromIndex(uint32_t index) { return reinterpret_cast &>(*allEngines[index].commandStreamReceiver); } CommandStreamReceiver &getGpgpuCommandStreamReceiver() const { return *allEngines[defaultEngineIndex].commandStreamReceiver; } void resetCommandStreamReceiver(CommandStreamReceiver *newCsr); void resetCommandStreamReceiver(CommandStreamReceiver *newCsr, uint32_t engineIndex); void setDebuggerActive(bool active) { this->deviceInfo.debuggerActive = active; } template static T *createWithExecutionEnvironment(const HardwareInfo *pHwInfo, ExecutionEnvironment *executionEnvironment, uint32_t rootDeviceIndex) { pHwInfo = pHwInfo ? pHwInfo : defaultHwInfo.get(); executionEnvironment->rootDeviceEnvironments[rootDeviceIndex]->setHwInfo(pHwInfo); T *device = new T(executionEnvironment, rootDeviceIndex); return createDeviceInternals(device); } static ExecutionEnvironment *prepareExecutionEnvironment(const HardwareInfo *pHwInfo, uint32_t rootDeviceIndex) { ExecutionEnvironment *executionEnvironment = new ExecutionEnvironment(); auto numRootDevices = DebugManager.flags.CreateMultipleRootDevices.get() ? DebugManager.flags.CreateMultipleRootDevices.get() : rootDeviceIndex + 1; executionEnvironment->prepareRootDeviceEnvironments(numRootDevices); pHwInfo = pHwInfo ? pHwInfo : defaultHwInfo.get(); for (auto i = 0u; i < executionEnvironment->rootDeviceEnvironments.size(); i++) { executionEnvironment->rootDeviceEnvironments[i]->setHwInfo(pHwInfo); executionEnvironment->rootDeviceEnvironments[i]->initGmm(); } executionEnvironment->calculateMaxOsContextCount(); return executionEnvironment; } template static T *createWithNewExecutionEnvironment(const HardwareInfo *pHwInfo, uint32_t rootDeviceIndex = 0) { auto executionEnvironment = prepareExecutionEnvironment(pHwInfo, rootDeviceIndex); return createWithExecutionEnvironment(pHwInfo, executionEnvironment, rootDeviceIndex); } SubDevice *createSubDevice(uint32_t subDeviceIndex) override { return Device::create(executionEnvironment, subDeviceIndex, *this); } SubDevice *createEngineInstancedSubDevice(uint32_t subDeviceIndex, aub_stream::EngineType engineType) override { return Device::create(executionEnvironment, subDeviceIndex, *this, engineType); } std::unique_ptr createCommandStreamReceiver() const override { return std::unique_ptr(createCommandStreamReceiverFunc(*executionEnvironment, getRootDeviceIndex(), getDeviceBitfield())); } bool isDebuggerActive() const override { if (isDebuggerActiveParentCall) { return Device::isDebuggerActive(); } return isDebuggerActiveReturn; } static decltype(&createCommandStream) createCommandStreamReceiverFunc; bool isDebuggerActiveParentCall = true; bool isDebuggerActiveReturn = false; bool callBaseGetMaxParameterSizeFromIGC = false; size_t maxParameterSizeFromIGC = 0u; }; template <> inline Device *MockDevice::createWithNewExecutionEnvironment(const HardwareInfo *pHwInfo, uint32_t rootDeviceIndex) { auto executionEnvironment = new ExecutionEnvironment(); executionEnvironment->prepareRootDeviceEnvironments(1); auto hwInfo = pHwInfo ? pHwInfo : defaultHwInfo.get(); executionEnvironment->rootDeviceEnvironments[0]->setHwInfo(hwInfo); MockAubCenterFixture::setMockAubCenter(*executionEnvironment->rootDeviceEnvironments[0]); executionEnvironment->initializeMemoryManager(); return Device::create(executionEnvironment, 0u); } class FailDevice : public MockDevice { public: FailDevice(ExecutionEnvironment *executionEnvironment, uint32_t deviceIndex); }; class FailDeviceAfterOne : public MockDevice { public: FailDeviceAfterOne(ExecutionEnvironment *executionEnvironment, uint32_t deviceIndex); }; class MockAlignedMallocManagerDevice : public MockDevice { public: MockAlignedMallocManagerDevice(ExecutionEnvironment *executionEnvironment, uint32_t deviceIndex); }; struct EnvironmentWithCsrWrapper { template void setCsrType() { createSubDeviceCsrFuncBackup = EnvironmentWithCsrWrapper::createCommandStreamReceiver; createRootDeviceCsrFuncBackup = EnvironmentWithCsrWrapper::createCommandStreamReceiver; } template static CommandStreamReceiver *createCommandStreamReceiver(ExecutionEnvironment &executionEnvironment, uint32_t rootDeviceIndex, const DeviceBitfield deviceBitfield) { return new CsrType(executionEnvironment, rootDeviceIndex, deviceBitfield); } VariableBackup createSubDeviceCsrFuncBackup{&MockSubDevice::createCommandStreamReceiverFunc}; VariableBackup createRootDeviceCsrFuncBackup{&MockDevice::createCommandStreamReceiverFunc}; }; } // namespace NEO