compute-runtime/runtime/command_stream/aub_command_stream_receiver...

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/*
* Copyright (C) 2017-2018 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#include "hw_cmds.h"
#include "runtime/aub/aub_helper.h"
#include "runtime/aub_mem_dump/page_table_entry_bits.h"
#include "runtime/command_stream/aub_stream_provider.h"
#include "runtime/command_stream/aub_subcapture.h"
#include "runtime/execution_environment/execution_environment.h"
#include "runtime/gmm_helper/gmm.h"
#include "runtime/gmm_helper/gmm_helper.h"
#include "runtime/gmm_helper/resource_info.h"
#include "runtime/helpers/aligned_memory.h"
#include "runtime/helpers/debug_helpers.h"
#include "runtime/helpers/hash.h"
#include "runtime/helpers/ptr_math.h"
#include "runtime/helpers/string.h"
#include "runtime/memory_manager/graphics_allocation.h"
#include "runtime/memory_manager/memory_banks.h"
#include "runtime/memory_manager/os_agnostic_memory_manager.h"
#include "runtime/os_interface/debug_settings_manager.h"
#include "driver_version.h"
#include <algorithm>
#include <cstring>
namespace OCLRT {
template <typename GfxFamily>
AUBCommandStreamReceiverHw<GfxFamily>::AUBCommandStreamReceiverHw(const HardwareInfo &hwInfoIn, const std::string &fileName, bool standalone, ExecutionEnvironment &executionEnvironment)
: BaseClass(hwInfoIn, executionEnvironment),
subCaptureManager(std::make_unique<AubSubCaptureManager>(fileName)),
standalone(standalone) {
executionEnvironment.initAubCenter(&this->peekHwInfo(), this->localMemoryEnabled, fileName);
auto aubCenter = executionEnvironment.aubCenter.get();
UNRECOVERABLE_IF(nullptr == aubCenter);
if (!aubCenter->getPhysicalAddressAllocator()) {
aubCenter->initPhysicalAddressAllocator(this->createPhysicalAddressAllocator());
}
auto physicalAddressAllocator = aubCenter->getPhysicalAddressAllocator();
UNRECOVERABLE_IF(nullptr == physicalAddressAllocator);
ppgtt = std::make_unique<std::conditional<is64bit, PML4, PDPE>::type>(physicalAddressAllocator);
ggtt = std::make_unique<PDPE>(physicalAddressAllocator);
gttRemap = aubCenter->getAddressMapper();
UNRECOVERABLE_IF(nullptr == gttRemap);
auto streamProvider = aubCenter->getStreamProvider();
UNRECOVERABLE_IF(nullptr == streamProvider);
stream = streamProvider->getStream();
UNRECOVERABLE_IF(nullptr == stream);
this->dispatchMode = DispatchMode::BatchedDispatch;
if (DebugManager.flags.CsrDispatchMode.get()) {
this->dispatchMode = (DispatchMode)DebugManager.flags.CsrDispatchMode.get();
}
setCsrProgrammingMode();
if (DebugManager.flags.AUBDumpSubCaptureMode.get()) {
this->subCaptureManager->subCaptureMode = static_cast<AubSubCaptureManager::SubCaptureMode>(DebugManager.flags.AUBDumpSubCaptureMode.get());
this->subCaptureManager->subCaptureFilter.dumpKernelStartIdx = static_cast<uint32_t>(DebugManager.flags.AUBDumpFilterKernelStartIdx.get());
this->subCaptureManager->subCaptureFilter.dumpKernelEndIdx = static_cast<uint32_t>(DebugManager.flags.AUBDumpFilterKernelEndIdx.get());
this->subCaptureManager->subCaptureFilter.dumpNamedKernelStartIdx = static_cast<uint32_t>(DebugManager.flags.AUBDumpFilterNamedKernelStartIdx.get());
this->subCaptureManager->subCaptureFilter.dumpNamedKernelEndIdx = static_cast<uint32_t>(DebugManager.flags.AUBDumpFilterNamedKernelEndIdx.get());
if (DebugManager.flags.AUBDumpFilterKernelName.get() != "unk") {
this->subCaptureManager->subCaptureFilter.dumpKernelName = DebugManager.flags.AUBDumpFilterKernelName.get();
}
}
auto debugDeviceId = DebugManager.flags.OverrideAubDeviceId.get();
this->aubDeviceId = debugDeviceId == -1
? hwInfoIn.capabilityTable.aubDeviceId
: static_cast<uint32_t>(debugDeviceId);
}
template <typename GfxFamily>
AUBCommandStreamReceiverHw<GfxFamily>::~AUBCommandStreamReceiverHw() {
freeEngineInfoTable();
}
template <typename GfxFamily>
const AubMemDump::LrcaHelper &AUBCommandStreamReceiverHw<GfxFamily>::getCsTraits(EngineInstanceT engineInstance) {
return *AUBFamilyMapper<GfxFamily>::csTraits[engineInstance.type];
}
template <typename GfxFamily>
size_t AUBCommandStreamReceiverHw<GfxFamily>::getEngineIndexFromInstance(EngineInstanceT engineInstance) {
auto findCriteria = [&](const auto &it) { return it.type == engineInstance.type && it.id == engineInstance.id; };
auto findResult = std::find_if(allEngineInstances.begin(), allEngineInstances.end(), findCriteria);
UNRECOVERABLE_IF(findResult == allEngineInstances.end());
return findResult - allEngineInstances.begin();
}
template <typename GfxFamily>
size_t AUBCommandStreamReceiverHw<GfxFamily>::getEngineIndex(EngineType engineType) {
return getEngineIndexFromInstance(engineType);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::initEngineMMIO(EngineInstanceT engineInstance) {
auto mmioList = AUBFamilyMapper<GfxFamily>::perEngineMMIO[engineInstance.type];
DEBUG_BREAK_IF(!mmioList);
for (auto &mmioPair : *mmioList) {
stream->writeMMIO(mmioPair.first, mmioPair.second);
}
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::openFile(const std::string &fileName) {
auto streamLocked = getAubStream()->lockStream();
initFile(fileName);
}
template <typename GfxFamily>
bool AUBCommandStreamReceiverHw<GfxFamily>::reopenFile(const std::string &fileName) {
auto streamLocked = getAubStream()->lockStream();
if (isFileOpen()) {
if (fileName != getFileName()) {
closeFile();
freeEngineInfoTable();
}
}
if (!isFileOpen()) {
initFile(fileName);
return true;
}
return false;
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::initFile(const std::string &fileName) {
if (!getAubStream()->isOpen()) {
// Open our file
stream->open(fileName.c_str());
if (!getAubStream()->isOpen()) {
// This DEBUG_BREAK_IF most probably means you are not executing aub tests with correct current directory (containing aub_out folder)
// try adding <familycodename>_aub
DEBUG_BREAK_IF(true);
}
// Add the file header
stream->init(AubMemDump::SteppingValues::A, aubDeviceId);
}
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::closeFile() {
stream->close();
}
template <typename GfxFamily>
bool AUBCommandStreamReceiverHw<GfxFamily>::isFileOpen() const {
return getAubStream()->isOpen();
}
template <typename GfxFamily>
const std::string &AUBCommandStreamReceiverHw<GfxFamily>::getFileName() {
return getAubStream()->getFileName();
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::initializeEngine(size_t engineIndex) {
auto engineInstance = allEngineInstances[engineIndex];
auto csTraits = getCsTraits(engineInstance);
auto &engineInfo = engineInfoTable[engineIndex];
if (engineInfo.pLRCA) {
return;
}
this->initGlobalMMIO();
initEngineMMIO(engineInstance);
this->initAdditionalMMIO();
// Write driver version
{
#define QTR(a) #a
#define TOSTR(b) QTR(b)
const std::string driverVersion = TOSTR(NEO_DRIVER_VERSION);
#undef QTR
#undef TOSTR
std::ostringstream str;
str << "driver version: " << driverVersion;
getAubStream()->addComment(str.str().c_str());
}
// Global HW Status Page
{
const size_t sizeHWSP = 0x1000;
const size_t alignHWSP = 0x1000;
engineInfo.pGlobalHWStatusPage = alignedMalloc(sizeHWSP, alignHWSP);
engineInfo.ggttHWSP = gttRemap->map(engineInfo.pGlobalHWStatusPage, sizeHWSP);
auto physHWSP = ggtt->map(engineInfo.ggttHWSP, sizeHWSP, this->getGTTBits(), getMemoryBankForGtt());
// Write our GHWSP
{
std::ostringstream str;
str << "ggtt: " << std::hex << std::showbase << engineInfo.ggttHWSP;
getAubStream()->addComment(str.str().c_str());
}
AubGTTData data = {0};
getGTTData(reinterpret_cast<void *>(physHWSP), data);
AUB::reserveAddressGGTT(*stream, engineInfo.ggttHWSP, sizeHWSP, physHWSP, data);
stream->writeMMIO(csTraits.mmioBase + 0x2080, engineInfo.ggttHWSP);
}
// Allocate the LRCA
const size_t sizeLRCA = csTraits.sizeLRCA;
const size_t alignLRCA = csTraits.alignLRCA;
auto pLRCABase = alignedMalloc(sizeLRCA, alignLRCA);
engineInfo.pLRCA = pLRCABase;
// Initialize the LRCA to a known state
csTraits.initialize(pLRCABase);
// Reserve the ring buffer
engineInfo.sizeRingBuffer = 0x4 * 0x1000;
{
const size_t alignRingBuffer = 0x1000;
engineInfo.pRingBuffer = alignedMalloc(engineInfo.sizeRingBuffer, alignRingBuffer);
engineInfo.ggttRingBuffer = gttRemap->map(engineInfo.pRingBuffer, engineInfo.sizeRingBuffer);
auto physRingBuffer = ggtt->map(engineInfo.ggttRingBuffer, engineInfo.sizeRingBuffer, this->getGTTBits(), getMemoryBankForGtt());
{
std::ostringstream str;
str << "ggtt: " << std::hex << std::showbase << engineInfo.ggttRingBuffer;
getAubStream()->addComment(str.str().c_str());
}
AubGTTData data = {0};
getGTTData(reinterpret_cast<void *>(physRingBuffer), data);
AUB::reserveAddressGGTT(*stream, engineInfo.ggttRingBuffer, engineInfo.sizeRingBuffer, physRingBuffer, data);
}
// Initialize the ring MMIO registers
{
uint32_t ringHead = 0x000;
uint32_t ringTail = 0x000;
auto ringBase = engineInfo.ggttRingBuffer;
auto ringCtrl = (uint32_t)((engineInfo.sizeRingBuffer - 0x1000) | 1);
csTraits.setRingHead(pLRCABase, ringHead);
csTraits.setRingTail(pLRCABase, ringTail);
csTraits.setRingBase(pLRCABase, ringBase);
csTraits.setRingCtrl(pLRCABase, ringCtrl);
}
// Write our LRCA
{
engineInfo.ggttLRCA = gttRemap->map(engineInfo.pLRCA, sizeLRCA);
auto lrcAddressPhys = ggtt->map(engineInfo.ggttLRCA, sizeLRCA, this->getGTTBits(), getMemoryBankForGtt());
{
std::ostringstream str;
str << "ggtt: " << std::hex << std::showbase << engineInfo.ggttLRCA;
getAubStream()->addComment(str.str().c_str());
}
AubGTTData data = {0};
getGTTData(reinterpret_cast<void *>(lrcAddressPhys), data);
AUB::reserveAddressGGTT(*stream, engineInfo.ggttLRCA, sizeLRCA, lrcAddressPhys, data);
AUB::addMemoryWrite(
*stream,
lrcAddressPhys,
pLRCABase,
sizeLRCA,
this->getAddressSpace(csTraits.aubHintLRCA),
csTraits.aubHintLRCA);
}
// Create a context to facilitate AUB dumping of memory using PPGTT
addContextToken(getDumpHandle());
DEBUG_BREAK_IF(!engineInfo.pLRCA);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::freeEngineInfoTable() {
for (auto &engineInfo : engineInfoTable) {
alignedFree(engineInfo.pLRCA);
gttRemap->unmap(engineInfo.pLRCA);
engineInfo.pLRCA = nullptr;
alignedFree(engineInfo.pGlobalHWStatusPage);
gttRemap->unmap(engineInfo.pGlobalHWStatusPage);
engineInfo.pGlobalHWStatusPage = nullptr;
alignedFree(engineInfo.pRingBuffer);
gttRemap->unmap(engineInfo.pRingBuffer);
engineInfo.pRingBuffer = nullptr;
}
}
template <typename GfxFamily>
CommandStreamReceiver *AUBCommandStreamReceiverHw<GfxFamily>::create(const HardwareInfo &hwInfoIn, const std::string &fileName, bool standalone, ExecutionEnvironment &executionEnvironment) {
auto csr = new AUBCommandStreamReceiverHw<GfxFamily>(hwInfoIn, fileName, standalone, executionEnvironment);
if (!csr->subCaptureManager->isSubCaptureMode()) {
csr->openFile(fileName);
}
return csr;
}
template <typename GfxFamily>
FlushStamp AUBCommandStreamReceiverHw<GfxFamily>::flush(BatchBuffer &batchBuffer,
EngineType engineType, ResidencyContainer &allocationsForResidency, OsContext &osContext) {
if (subCaptureManager->isSubCaptureMode()) {
if (!subCaptureManager->isSubCaptureEnabled()) {
if (this->standalone) {
*this->tagAddress = this->peekLatestSentTaskCount();
}
return 0;
}
}
auto streamLocked = getAubStream()->lockStream();
auto engineIndex = getEngineIndex(engineType);
auto engineInstance = allEngineInstances[engineIndex];
initializeEngine(engineIndex);
// Write our batch buffer
auto pBatchBuffer = ptrOffset(batchBuffer.commandBufferAllocation->getUnderlyingBuffer(), batchBuffer.startOffset);
auto batchBufferGpuAddress = ptrOffset(batchBuffer.commandBufferAllocation->getGpuAddress(), batchBuffer.startOffset);
auto currentOffset = batchBuffer.usedSize;
DEBUG_BREAK_IF(currentOffset < batchBuffer.startOffset);
auto sizeBatchBuffer = currentOffset - batchBuffer.startOffset;
std::unique_ptr<GraphicsAllocation, std::function<void(GraphicsAllocation *)>> flatBatchBuffer(
nullptr, [&](GraphicsAllocation *ptr) { this->getMemoryManager()->freeGraphicsMemory(ptr); });
if (DebugManager.flags.FlattenBatchBufferForAUBDump.get()) {
flatBatchBuffer.reset(this->flatBatchBufferHelper->flattenBatchBuffer(batchBuffer, sizeBatchBuffer, this->dispatchMode));
if (flatBatchBuffer.get() != nullptr) {
pBatchBuffer = flatBatchBuffer->getUnderlyingBuffer();
batchBufferGpuAddress = flatBatchBuffer->getGpuAddress();
batchBuffer.commandBufferAllocation = flatBatchBuffer.get();
}
}
if (this->standalone) {
if (this->dispatchMode == DispatchMode::ImmediateDispatch) {
if (!DebugManager.flags.FlattenBatchBufferForAUBDump.get()) {
CommandStreamReceiver::makeResident(*batchBuffer.commandBufferAllocation);
}
} else {
allocationsForResidency.push_back(batchBuffer.commandBufferAllocation);
batchBuffer.commandBufferAllocation->updateResidencyTaskCount(this->taskCount, this->deviceIndex);
}
}
processResidency(allocationsForResidency, osContext);
submitBatchBuffer(engineIndex, batchBufferGpuAddress, pBatchBuffer, sizeBatchBuffer, this->getMemoryBank(batchBuffer.commandBufferAllocation), getPPGTTAdditionalBits(batchBuffer.commandBufferAllocation));
pollForCompletion(engineInstance);
if (this->standalone) {
*this->tagAddress = this->peekLatestSentTaskCount();
}
if (subCaptureManager->isSubCaptureMode()) {
subCaptureManager->disableSubCapture();
}
getAubStream()->flush();
return 0;
}
template <typename GfxFamily>
bool AUBCommandStreamReceiverHw<GfxFamily>::addPatchInfoComments() {
std::map<uint64_t, uint64_t> allocationsMap;
std::ostringstream str;
str << "PatchInfoData" << std::endl;
for (auto &patchInfoData : this->flatBatchBufferHelper->getPatchInfoCollection()) {
str << std::hex << patchInfoData.sourceAllocation << ";";
str << std::hex << patchInfoData.sourceAllocationOffset << ";";
str << std::hex << patchInfoData.sourceType << ";";
str << std::hex << patchInfoData.targetAllocation << ";";
str << std::hex << patchInfoData.targetAllocationOffset << ";";
str << std::hex << patchInfoData.targetType << ";";
str << std::endl;
if (patchInfoData.sourceAllocation) {
allocationsMap.insert(std::pair<uint64_t, uint64_t>(patchInfoData.sourceAllocation,
ppgtt->map(static_cast<uintptr_t>(patchInfoData.sourceAllocation), 1, 0, MemoryBanks::MainBank)));
}
if (patchInfoData.targetAllocation) {
allocationsMap.insert(std::pair<uint64_t, uintptr_t>(patchInfoData.targetAllocation,
ppgtt->map(static_cast<uintptr_t>(patchInfoData.targetAllocation), 1, 0, MemoryBanks::MainBank)));
}
}
bool result = getAubStream()->addComment(str.str().c_str());
this->flatBatchBufferHelper->getPatchInfoCollection().clear();
if (!result) {
return false;
}
std::ostringstream allocationStr;
allocationStr << "AllocationsList" << std::endl;
for (auto &element : allocationsMap) {
allocationStr << std::hex << element.first << ";" << element.second << std::endl;
}
result = getAubStream()->addComment(allocationStr.str().c_str());
if (!result) {
return false;
}
return true;
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::submitBatchBuffer(size_t engineIndex, uint64_t batchBufferGpuAddress, const void *batchBuffer, size_t batchBufferSize, uint32_t memoryBank, uint64_t entryBits) {
auto engineInstance = allEngineInstances[engineIndex];
auto csTraits = getCsTraits(engineInstance);
auto &engineInfo = engineInfoTable[engineIndex];
{
{
std::ostringstream str;
str << "ppgtt: " << std::hex << std::showbase << batchBuffer;
getAubStream()->addComment(str.str().c_str());
}
auto physBatchBuffer = ppgtt->map(static_cast<uintptr_t>(batchBufferGpuAddress), batchBufferSize, entryBits, memoryBank);
AubHelperHw<GfxFamily> aubHelperHw(this->localMemoryEnabled);
AUB::reserveAddressPPGTT(*stream, static_cast<uintptr_t>(batchBufferGpuAddress), batchBufferSize, physBatchBuffer,
entryBits, aubHelperHw);
AUB::addMemoryWrite(
*stream,
physBatchBuffer,
batchBuffer,
batchBufferSize,
this->getAddressSpace(AubMemDump::DataTypeHintValues::TraceBatchBufferPrimary),
AubMemDump::DataTypeHintValues::TraceBatchBufferPrimary);
}
if (DebugManager.flags.AddPatchInfoCommentsForAUBDump.get()) {
addGUCStartMessage(static_cast<uint64_t>(reinterpret_cast<std::uintptr_t>(batchBuffer)), engineInstance.type);
addPatchInfoComments();
}
// Add a batch buffer start to the ring buffer
auto previousTail = engineInfo.tailRingBuffer;
{
typedef typename GfxFamily::MI_LOAD_REGISTER_IMM MI_LOAD_REGISTER_IMM;
typedef typename GfxFamily::MI_BATCH_BUFFER_START MI_BATCH_BUFFER_START;
typedef typename GfxFamily::MI_NOOP MI_NOOP;
auto pTail = ptrOffset(engineInfo.pRingBuffer, engineInfo.tailRingBuffer);
auto ggttTail = ptrOffset(engineInfo.ggttRingBuffer, engineInfo.tailRingBuffer);
auto sizeNeeded =
sizeof(MI_BATCH_BUFFER_START) +
sizeof(MI_LOAD_REGISTER_IMM);
auto tailAlignment = sizeof(uint64_t);
sizeNeeded = alignUp(sizeNeeded, tailAlignment);
if (engineInfo.tailRingBuffer + sizeNeeded >= engineInfo.sizeRingBuffer) {
// Pad the remaining ring with NOOPs
auto sizeToWrap = engineInfo.sizeRingBuffer - engineInfo.tailRingBuffer;
memset(pTail, 0, sizeToWrap);
// write remaining ring
auto physDumpStart = ggtt->map(ggttTail, sizeToWrap, this->getGTTBits(), getMemoryBankForGtt());
AUB::addMemoryWrite(
*stream,
physDumpStart,
pTail,
sizeToWrap,
this->getAddressSpace(AubMemDump::DataTypeHintValues::TraceCommandBuffer),
AubMemDump::DataTypeHintValues::TraceCommandBuffer);
previousTail = 0;
engineInfo.tailRingBuffer = 0;
pTail = engineInfo.pRingBuffer;
} else if (engineInfo.tailRingBuffer == 0) {
// Add a LRI if this is our first submission
auto lri = MI_LOAD_REGISTER_IMM::sInit();
lri.setRegisterOffset(csTraits.mmioBase + 0x2244);
lri.setDataDword(0x00010000);
*(MI_LOAD_REGISTER_IMM *)pTail = lri;
pTail = ((MI_LOAD_REGISTER_IMM *)pTail) + 1;
}
// Add our BBS
auto bbs = MI_BATCH_BUFFER_START::sInit();
bbs.setBatchBufferStartAddressGraphicsaddress472(static_cast<uint64_t>(batchBufferGpuAddress));
bbs.setAddressSpaceIndicator(MI_BATCH_BUFFER_START::ADDRESS_SPACE_INDICATOR_PPGTT);
*(MI_BATCH_BUFFER_START *)pTail = bbs;
pTail = ((MI_BATCH_BUFFER_START *)pTail) + 1;
// Compute our new ring tail.
engineInfo.tailRingBuffer = (uint32_t)ptrDiff(pTail, engineInfo.pRingBuffer);
// Add NOOPs as needed as our tail needs to be aligned
while (engineInfo.tailRingBuffer % tailAlignment) {
*(MI_NOOP *)pTail = MI_NOOP::sInit();
pTail = ((MI_NOOP *)pTail) + 1;
engineInfo.tailRingBuffer = (uint32_t)ptrDiff(pTail, engineInfo.pRingBuffer);
}
UNRECOVERABLE_IF((engineInfo.tailRingBuffer % tailAlignment) != 0);
// Only dump the new commands
auto ggttDumpStart = ptrOffset(engineInfo.ggttRingBuffer, previousTail);
auto dumpStart = ptrOffset(engineInfo.pRingBuffer, previousTail);
auto dumpLength = engineInfo.tailRingBuffer - previousTail;
// write ring
{
std::ostringstream str;
str << "ggtt: " << std::hex << std::showbase << ggttDumpStart;
getAubStream()->addComment(str.str().c_str());
}
auto physDumpStart = ggtt->map(ggttDumpStart, dumpLength, this->getGTTBits(), getMemoryBankForGtt());
AUB::addMemoryWrite(
*stream,
physDumpStart,
dumpStart,
dumpLength,
this->getAddressSpace(AubMemDump::DataTypeHintValues::TraceCommandBuffer),
AubMemDump::DataTypeHintValues::TraceCommandBuffer);
// update the ring mmio tail in the LRCA
{
std::ostringstream str;
str << "ggtt: " << std::hex << std::showbase << engineInfo.ggttLRCA + 0x101c;
getAubStream()->addComment(str.str().c_str());
}
auto physLRCA = ggtt->map(engineInfo.ggttLRCA, sizeof(engineInfo.tailRingBuffer), this->getGTTBits(), getMemoryBankForGtt());
AUB::addMemoryWrite(
*stream,
physLRCA + 0x101c,
&engineInfo.tailRingBuffer,
sizeof(engineInfo.tailRingBuffer),
this->getAddressSpace(csTraits.aubHintLRCA));
DEBUG_BREAK_IF(engineInfo.tailRingBuffer >= engineInfo.sizeRingBuffer);
}
// Submit our execlist by submitting to the execlist submit ports
{
typename AUB::MiContextDescriptorReg contextDescriptor = {{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}};
contextDescriptor.sData.Valid = true;
contextDescriptor.sData.ForcePageDirRestore = false;
contextDescriptor.sData.ForceRestore = false;
contextDescriptor.sData.Legacy = true;
contextDescriptor.sData.FaultSupport = 0;
contextDescriptor.sData.PrivilegeAccessOrPPGTT = true;
contextDescriptor.sData.ADor64bitSupport = AUB::Traits::addressingBits > 32;
auto ggttLRCA = engineInfo.ggttLRCA;
contextDescriptor.sData.LogicalRingCtxAddress = ggttLRCA / 4096;
contextDescriptor.sData.ContextID = 0;
submitLRCA(engineInstance, contextDescriptor);
}
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::submitLRCA(EngineInstanceT engineInstance, const typename AUBCommandStreamReceiverHw<GfxFamily>::MiContextDescriptorReg &contextDescriptor) {
auto mmioBase = getCsTraits(engineInstance).mmioBase;
stream->writeMMIO(mmioBase + 0x2230, 0);
stream->writeMMIO(mmioBase + 0x2230, 0);
stream->writeMMIO(mmioBase + 0x2230, contextDescriptor.ulData[1]);
stream->writeMMIO(mmioBase + 0x2230, contextDescriptor.ulData[0]);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::pollForCompletion(EngineInstanceT engineInstance) {
typedef typename AubMemDump::CmdServicesMemTraceRegisterPoll CmdServicesMemTraceRegisterPoll;
auto mmioBase = getCsTraits(engineInstance).mmioBase;
bool pollNotEqual = false;
stream->registerPoll(
mmioBase + 0x2234, //EXECLIST_STATUS
0x100,
0x100,
pollNotEqual,
CmdServicesMemTraceRegisterPoll::TimeoutActionValues::Abort);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::makeResidentExternal(AllocationView &allocationView) {
externalAllocations.push_back(allocationView);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::makeNonResidentExternal(uint64_t gpuAddress) {
for (auto it = externalAllocations.begin(); it != externalAllocations.end(); it++) {
if (it->first == gpuAddress) {
externalAllocations.erase(it);
break;
}
}
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::writeMemory(uint64_t gpuAddress, void *cpuAddress, size_t size, uint32_t memoryBank, uint64_t entryBits, DevicesBitfield devicesBitfield) {
{
std::ostringstream str;
str << "ppgtt: " << std::hex << std::showbase << gpuAddress << " end address: " << gpuAddress + size << " cpu address: " << cpuAddress << " device mask: " << devicesBitfield << " size: " << std::dec << size;
getAubStream()->addComment(str.str().c_str());
}
AubHelperHw<GfxFamily> aubHelperHw(this->localMemoryEnabled);
PageWalker walker = [&](uint64_t physAddress, size_t size, size_t offset, uint64_t entryBits) {
AUB::reserveAddressGGTTAndWriteMmeory(*stream, static_cast<uintptr_t>(gpuAddress), cpuAddress, physAddress, size, offset, entryBits,
aubHelperHw);
};
ppgtt->pageWalk(static_cast<uintptr_t>(gpuAddress), size, 0, entryBits, walker, memoryBank);
}
template <typename GfxFamily>
bool AUBCommandStreamReceiverHw<GfxFamily>::writeMemory(GraphicsAllocation &gfxAllocation) {
auto cpuAddress = ptrOffset(gfxAllocation.getUnderlyingBuffer(), static_cast<size_t>(gfxAllocation.allocationOffset));
auto gpuAddress = GmmHelper::decanonize(gfxAllocation.getGpuAddress());
auto size = gfxAllocation.getUnderlyingBufferSize();
if (gfxAllocation.gmm && gfxAllocation.gmm->isRenderCompressed) {
size = gfxAllocation.gmm->gmmResourceInfo->getSizeAllocation();
}
if ((size == 0) || !gfxAllocation.isAubWritable())
return false;
if (cpuAddress == nullptr) {
DEBUG_BREAK_IF(gfxAllocation.isLocked());
cpuAddress = this->getMemoryManager()->lockResource(&gfxAllocation);
gfxAllocation.setLocked(true);
}
writeMemory(gpuAddress, cpuAddress, size, this->getMemoryBank(&gfxAllocation), getPPGTTAdditionalBits(&gfxAllocation), gfxAllocation.devicesBitfield);
if (gfxAllocation.isLocked()) {
this->getMemoryManager()->unlockResource(&gfxAllocation);
gfxAllocation.setLocked(false);
}
if (AubHelper::isOneTimeAubWritableAllocationType(gfxAllocation.getAllocationType())) {
gfxAllocation.setAubWritable(false);
}
return true;
}
template <typename GfxFamily>
bool AUBCommandStreamReceiverHw<GfxFamily>::writeMemory(AllocationView &allocationView) {
GraphicsAllocation gfxAllocation(reinterpret_cast<void *>(allocationView.first), allocationView.first, 0llu, allocationView.second, this->getMemoryManager()->getOsContextCount(), false);
return writeMemory(gfxAllocation);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::expectMMIO(uint32_t mmioRegister, uint32_t expectedValue) {
using AubMemDump::CmdServicesMemTraceRegisterCompare;
CmdServicesMemTraceRegisterCompare header;
memset(&header, 0, sizeof(header));
header.setHeader();
header.data[0] = expectedValue;
header.registerOffset = mmioRegister;
header.noReadExpect = CmdServicesMemTraceRegisterCompare::NoReadExpectValues::ReadExpect;
header.registerSize = CmdServicesMemTraceRegisterCompare::RegisterSizeValues::Dword;
header.registerSpace = CmdServicesMemTraceRegisterCompare::RegisterSpaceValues::Mmio;
header.readMaskLow = 0xffffffff;
header.readMaskHigh = 0xffffffff;
header.dwordCount = (sizeof(header) / sizeof(uint32_t)) - 1;
this->getAubStream()->fileHandle.write(reinterpret_cast<char *>(&header), sizeof(header));
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::expectMemoryEqual(void *gfxAddress, const void *srcAddress, size_t length) {
expectMemory(gfxAddress, srcAddress, length,
AubMemDump::CmdServicesMemTraceMemoryCompare::CompareOperationValues::CompareEqual);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::expectMemoryNotEqual(void *gfxAddress, const void *srcAddress, size_t length) {
expectMemory(gfxAddress, srcAddress, length,
AubMemDump::CmdServicesMemTraceMemoryCompare::CompareOperationValues::CompareNotEqual);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::expectMemory(void *gfxAddress, const void *srcAddress,
size_t length, uint32_t compareOperation) {
PageWalker walker = [&](uint64_t physAddress, size_t size, size_t offset, uint64_t entryBits) {
UNRECOVERABLE_IF(offset > length);
this->getAubStream()->expectMemory(physAddress,
reinterpret_cast<void *>(reinterpret_cast<uintptr_t>(srcAddress) + offset),
size,
this->getAddressSpaceFromPTEBits(entryBits),
compareOperation);
};
this->ppgtt->pageWalk(reinterpret_cast<uintptr_t>(gfxAddress), length, 0, PageTableEntry::nonValidBits, walker, MemoryBanks::BankNotSpecified);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::processResidency(ResidencyContainer &allocationsForResidency, OsContext &osContext) {
if (subCaptureManager->isSubCaptureMode()) {
if (!subCaptureManager->isSubCaptureEnabled()) {
return;
}
}
for (auto &externalAllocation : externalAllocations) {
if (!writeMemory(externalAllocation)) {
DEBUG_BREAK_IF(externalAllocation.second != 0);
}
}
for (auto &gfxAllocation : allocationsForResidency) {
if (dumpAubNonWritable) {
gfxAllocation->setAubWritable(true);
}
if (!writeMemory(*gfxAllocation)) {
DEBUG_BREAK_IF(!((gfxAllocation->getUnderlyingBufferSize() == 0) || !gfxAllocation->isAubWritable()));
}
gfxAllocation->updateResidencyTaskCount(this->taskCount + 1, this->deviceIndex);
}
dumpAubNonWritable = false;
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::makeNonResident(GraphicsAllocation &gfxAllocation) {
if (gfxAllocation.isResident(this->deviceIndex)) {
this->getEvictionAllocations().push_back(&gfxAllocation);
gfxAllocation.resetResidencyTaskCount(this->deviceIndex);
}
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::activateAubSubCapture(const MultiDispatchInfo &dispatchInfo) {
bool active = subCaptureManager->activateSubCapture(dispatchInfo);
if (active) {
std::string subCaptureFile = subCaptureManager->getSubCaptureFileName(dispatchInfo);
auto isReopened = reopenFile(subCaptureFile);
if (isReopened) {
dumpAubNonWritable = true;
}
}
if (this->standalone) {
if (DebugManager.flags.ForceCsrFlushing.get()) {
this->flushBatchedSubmissions();
}
if (DebugManager.flags.ForceCsrReprogramming.get()) {
this->initProgrammingFlags();
}
}
}
template <typename GfxFamily>
uint32_t AUBCommandStreamReceiverHw<GfxFamily>::getDumpHandle() {
return hashPtrToU32(this);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::addContextToken(uint32_t dumpHandle) {
// Some simulator versions don't support adding the context token.
// This hook allows specialization for those that do.
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::addGUCStartMessage(uint64_t batchBufferAddress, EngineType engineType) {
typedef typename GfxFamily::MI_BATCH_BUFFER_START MI_BATCH_BUFFER_START;
auto bufferSize = sizeof(uint32_t) + sizeof(MI_BATCH_BUFFER_START);
AubHelperHw<GfxFamily> aubHelperHw(this->localMemoryEnabled);
std::unique_ptr<void, std::function<void(void *)>> buffer(this->getMemoryManager()->alignedMallocWrapper(bufferSize, MemoryConstants::pageSize), [&](void *ptr) { this->getMemoryManager()->alignedFreeWrapper(ptr); });
LinearStream linearStream(buffer.get(), bufferSize);
uint32_t *header = static_cast<uint32_t *>(linearStream.getSpace(sizeof(uint32_t)));
*header = getGUCWorkQueueItemHeader(engineType);
MI_BATCH_BUFFER_START *miBatchBufferStart = linearStream.getSpaceForCmd<MI_BATCH_BUFFER_START>();
DEBUG_BREAK_IF(bufferSize != linearStream.getUsed());
miBatchBufferStart->init();
miBatchBufferStart->setBatchBufferStartAddressGraphicsaddress472(AUB::ptrToPPGTT(buffer.get()));
miBatchBufferStart->setAddressSpaceIndicator(MI_BATCH_BUFFER_START::ADDRESS_SPACE_INDICATOR_PPGTT);
auto physBufferAddres = ppgtt->map(reinterpret_cast<uintptr_t>(buffer.get()), bufferSize,
getPPGTTAdditionalBits(linearStream.getGraphicsAllocation()),
MemoryBanks::MainBank);
AUB::reserveAddressPPGTT(*stream, reinterpret_cast<uintptr_t>(buffer.get()), bufferSize, physBufferAddres,
getPPGTTAdditionalBits(linearStream.getGraphicsAllocation()),
aubHelperHw);
AUB::addMemoryWrite(
*stream,
physBufferAddres,
buffer.get(),
bufferSize,
this->getAddressSpace(AubMemDump::DataTypeHintValues::TraceNotype));
PatchInfoData patchInfoData(batchBufferAddress, 0u, PatchInfoAllocationType::Default, reinterpret_cast<uintptr_t>(buffer.get()), sizeof(uint32_t) + sizeof(MI_BATCH_BUFFER_START) - sizeof(uint64_t), PatchInfoAllocationType::GUCStartMessage);
this->flatBatchBufferHelper->setPatchInfoData(patchInfoData);
}
template <typename GfxFamily>
uint32_t AUBCommandStreamReceiverHw<GfxFamily>::getGUCWorkQueueItemHeader(EngineType engineType) {
uint32_t GUCWorkQueueItemHeader = 0x00030001;
return GUCWorkQueueItemHeader;
}
template <typename GfxFamily>
uint64_t AUBCommandStreamReceiverHw<GfxFamily>::getPPGTTAdditionalBits(GraphicsAllocation *gfxAllocation) {
return BIT(PageTableEntry::presentBit) | BIT(PageTableEntry::writableBit) | BIT(PageTableEntry::userSupervisorBit);
}
template <typename GfxFamily>
void AUBCommandStreamReceiverHw<GfxFamily>::getGTTData(void *memory, AubGTTData &data) {
data.present = true;
data.localMemory = false;
}
template <typename GfxFamily>
int AUBCommandStreamReceiverHw<GfxFamily>::getAddressSpaceFromPTEBits(uint64_t entryBits) const {
return AubMemDump::AddressSpaceValues::TraceNonlocal;
}
template <typename GfxFamily>
uint32_t AUBCommandStreamReceiverHw<GfxFamily>::getMemoryBankForGtt() const {
return MemoryBanks::getBank(this->deviceIndex);
}
} // namespace OCLRT