Files
compute-runtime/unit_tests/command_stream/aub_command_stream_receiver_tests.cpp
Milczarek, Slawomir 7c42353c4c Add support for batched dispatch to userspace AUBs
This commit as aimed to add support for batched dispatch,
but doesn't make it the default mode for AubCSR yet.

Change-Id: I4dc366ec5f01adf2c4793009da2100ba0230c60a
2018-01-12 15:40:56 +01:00

183 lines
8.1 KiB
C++

/*
* Copyright (c) 2017, Intel Corporation
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included
* in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
* OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
#include "runtime/command_stream/aub_command_stream_receiver_hw.h"
#include "runtime/helpers/hw_info.h"
#include "runtime/memory_manager/memory_manager.h"
#include "test.h"
#include "unit_tests/fixtures/device_fixture.h"
using OCLRT::AUBCommandStreamReceiver;
using OCLRT::AUBCommandStreamReceiverHw;
using OCLRT::BatchBuffer;
using OCLRT::CommandStreamReceiver;
using OCLRT::GraphicsAllocation;
using OCLRT::ResidencyContainer;
using OCLRT::HardwareInfo;
using OCLRT::LinearStream;
using OCLRT::MemoryManager;
using OCLRT::ObjectNotResident;
using OCLRT::platformDevices;
typedef Test<DeviceFixture> AubCommandStreamReceiverTests;
TEST_F(AubCommandStreamReceiverTests, givenAubCommandStreamReceiverWhenItIsCreatedWithWrongGfxCoreFamilyThenNullPointerShouldBeReturned) {
HardwareInfo hwInfo = *platformDevices[0];
GFXCORE_FAMILY family = hwInfo.pPlatform->eRenderCoreFamily;
const_cast<PLATFORM *>(hwInfo.pPlatform)->eRenderCoreFamily = GFXCORE_FAMILY_FORCE_ULONG; // wrong gfx core family
CommandStreamReceiver *csr = AUBCommandStreamReceiver::create(hwInfo, "");
EXPECT_EQ(nullptr, csr);
const_cast<PLATFORM *>(hwInfo.pPlatform)->eRenderCoreFamily = family;
}
HWTEST_F(AubCommandStreamReceiverTests, givenAubCommandStreamReceiverWhenItIsCreatedThenMemoryManagerIsNotNull) {
HardwareInfo hwInfo;
std::unique_ptr<AUBCommandStreamReceiverHw<FamilyType>> aubCsr(new AUBCommandStreamReceiverHw<FamilyType>(hwInfo));
std::unique_ptr<MemoryManager> memoryManager(aubCsr->createMemoryManager(false));
EXPECT_NE(nullptr, memoryManager.get());
aubCsr->setMemoryManager(nullptr);
}
HWTEST_F(AubCommandStreamReceiverTests, givenGraphicsAllocationWhenMakeResidentCalledMultipleTimesAffectsResidencyOnce) {
std::unique_ptr<AUBCommandStreamReceiverHw<FamilyType>> aubCsr(new AUBCommandStreamReceiverHw<FamilyType>(*platformDevices[0]));
std::unique_ptr<MemoryManager> memoryManager(aubCsr->createMemoryManager(false));
auto gfxAllocation = memoryManager->allocateGraphicsMemory(sizeof(uint32_t), sizeof(uint32_t), false, false);
// First makeResident marks the allocation resident
aubCsr->makeResident(*gfxAllocation);
EXPECT_NE(ObjectNotResident, gfxAllocation->residencyTaskCount);
EXPECT_EQ((int)aubCsr->peekTaskCount(), gfxAllocation->residencyTaskCount);
EXPECT_EQ(1u, memoryManager->getResidencyAllocations().size());
// Second makeResident should have no impact
aubCsr->makeResident(*gfxAllocation);
EXPECT_NE(ObjectNotResident, gfxAllocation->residencyTaskCount);
EXPECT_EQ((int)aubCsr->peekTaskCount(), gfxAllocation->residencyTaskCount);
EXPECT_EQ(1u, memoryManager->getResidencyAllocations().size());
// First makeNonResident marks the allocation as nonresident
aubCsr->makeNonResident(*gfxAllocation);
EXPECT_EQ(ObjectNotResident, gfxAllocation->residencyTaskCount);
EXPECT_EQ(1u, memoryManager->getEvictionAllocations().size());
// Second makeNonResident should have no impact
aubCsr->makeNonResident(*gfxAllocation);
EXPECT_EQ(ObjectNotResident, gfxAllocation->residencyTaskCount);
EXPECT_EQ(1u, memoryManager->getEvictionAllocations().size());
memoryManager->freeGraphicsMemoryImpl(gfxAllocation);
aubCsr->setMemoryManager(nullptr);
}
HWTEST_F(AubCommandStreamReceiverTests, flushShouldLeaveProperRingTailAlignment) {
auto csr = new AUBCommandStreamReceiverHw<FamilyType>(*platformDevices[0]);
auto mm = csr->createMemoryManager(false);
GraphicsAllocation *commandBuffer = mm->allocateGraphicsMemory(4096, 4096);
ASSERT_NE(nullptr, commandBuffer);
LinearStream cs(commandBuffer);
auto engineOrdinal = OCLRT::ENGINE_RCS;
auto ringTailAlignment = sizeof(uint64_t);
BatchBuffer batchBuffer{cs.getGraphicsAllocation(), 0, false, false, cs.getUsed(), &cs};
// First flush typically includes a preamble and chain to command buffer
csr->flush(batchBuffer, engineOrdinal, nullptr);
EXPECT_EQ(0ull, csr->engineInfoTable[engineOrdinal].tailRingBuffer % ringTailAlignment);
// Second flush should just submit command buffer
cs.getSpace(sizeof(uint64_t));
csr->flush(batchBuffer, engineOrdinal, nullptr);
EXPECT_EQ(0ull, csr->engineInfoTable[engineOrdinal].tailRingBuffer % ringTailAlignment);
mm->freeGraphicsMemory(commandBuffer);
delete csr;
delete mm;
}
HWTEST_F(AubCommandStreamReceiverTests, flushShouldCallMakeResidentOnCommandBufferAllocation) {
std::unique_ptr<AUBCommandStreamReceiverHw<FamilyType>> csr(new AUBCommandStreamReceiverHw<FamilyType>(*platformDevices[0]));
std::unique_ptr<MemoryManager> mm(csr->createMemoryManager(false));
GraphicsAllocation *commandBuffer = mm->allocateGraphicsMemory(4096, 4096);
ASSERT_NE(nullptr, commandBuffer);
LinearStream cs(commandBuffer);
BatchBuffer batchBuffer{cs.getGraphicsAllocation(), 0, false, false, cs.getUsed(), &cs};
auto engineOrdinal = OCLRT::ENGINE_RCS;
EXPECT_EQ(ObjectNotResident, commandBuffer->residencyTaskCount);
csr->overrideDispatchPolicy(CommandStreamReceiver::DispatchMode::ImmediateDispatch);
csr->flush(batchBuffer, engineOrdinal, nullptr);
EXPECT_NE(ObjectNotResident, commandBuffer->residencyTaskCount);
EXPECT_EQ((int)csr->peekTaskCount(), commandBuffer->residencyTaskCount);
csr->makeSurfacePackNonResident(nullptr);
EXPECT_EQ(ObjectNotResident, commandBuffer->residencyTaskCount);
mm->freeGraphicsMemoryImpl(commandBuffer);
csr->setMemoryManager(nullptr);
}
HWTEST_F(AubCommandStreamReceiverTests, flushShouldCallMakeResidentOnResidencyAllocations) {
std::unique_ptr<AUBCommandStreamReceiverHw<FamilyType>> csr(new AUBCommandStreamReceiverHw<FamilyType>(*platformDevices[0]));
std::unique_ptr<MemoryManager> mm(csr->createMemoryManager(false));
auto gfxAllocation = mm->allocateGraphicsMemory(sizeof(uint32_t), sizeof(uint32_t), false, false);
GraphicsAllocation *commandBuffer = mm->allocateGraphicsMemory(4096, 4096);
ASSERT_NE(nullptr, commandBuffer);
LinearStream cs(commandBuffer);
BatchBuffer batchBuffer{cs.getGraphicsAllocation(), 0, false, false, cs.getUsed(), &cs};
auto engineOrdinal = OCLRT::ENGINE_RCS;
ResidencyContainer allocationsForResidency = {gfxAllocation};
EXPECT_EQ(ObjectNotResident, gfxAllocation->residencyTaskCount);
EXPECT_EQ(ObjectNotResident, commandBuffer->residencyTaskCount);
csr->overrideDispatchPolicy(CommandStreamReceiver::DispatchMode::BatchedDispatch);
csr->flush(batchBuffer, engineOrdinal, &allocationsForResidency);
EXPECT_NE(ObjectNotResident, gfxAllocation->residencyTaskCount);
EXPECT_EQ((int)csr->peekTaskCount(), gfxAllocation->residencyTaskCount);
EXPECT_NE(ObjectNotResident, commandBuffer->residencyTaskCount);
EXPECT_EQ((int)csr->peekTaskCount(), commandBuffer->residencyTaskCount);
csr->makeSurfacePackNonResident(&allocationsForResidency);
EXPECT_EQ(ObjectNotResident, gfxAllocation->residencyTaskCount);
EXPECT_EQ(ObjectNotResident, commandBuffer->residencyTaskCount);
mm->freeGraphicsMemory(commandBuffer);
mm->freeGraphicsMemoryImpl(gfxAllocation);
csr->setMemoryManager(nullptr);
}