806 lines
41 KiB
C++
806 lines
41 KiB
C++
/*
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* Copyright (C) 2020-2025 Intel Corporation
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*
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* SPDX-License-Identifier: MIT
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*
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*/
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#include "shared/source/command_container/command_encoder.h"
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#include "shared/source/command_container/command_encoder.inl"
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#include "shared/source/command_container/command_encoder_from_gen12lp_to_xe2_hpg.inl"
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#include "shared/source/command_container/command_encoder_gen12lp_and_xe_hpg.inl"
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#include "shared/source/command_container/command_encoder_pre_xe2_hpg_core.inl"
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#include "shared/source/command_container/command_encoder_tgllp_and_later.inl"
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#include "shared/source/command_container/encode_surface_state.h"
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#include "shared/source/command_stream/linear_stream.h"
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#include "shared/source/command_stream/memory_compression_state.h"
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#include "shared/source/command_stream/preemption.h"
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#include "shared/source/command_stream/stream_properties.h"
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#include "shared/source/execution_environment/execution_environment.h"
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#include "shared/source/gen12lp/hw_cmds_base.h"
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#include "shared/source/gen12lp/reg_configs.h"
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#include "shared/source/gmm_helper/gmm_helper.h"
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#include "shared/source/helpers/api_specific_config.h"
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#include "shared/source/helpers/cache_policy.h"
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#include "shared/source/helpers/gfx_core_helper.h"
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#include "shared/source/helpers/in_order_cmd_helpers.h"
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#include "shared/source/helpers/pause_on_gpu_properties.h"
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#include "shared/source/helpers/pipe_control_args.h"
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#include "shared/source/helpers/pipeline_select_args.h"
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#include "shared/source/helpers/preamble.h"
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#include "shared/source/helpers/simd_helper.h"
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#include "shared/source/helpers/state_base_address.h"
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#include "shared/source/kernel/dispatch_kernel_encoder_interface.h"
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#include "shared/source/kernel/implicit_args_helper.h"
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#include "shared/source/release_helper/release_helper.h"
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#include "encode_surface_state_args.h"
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#include <algorithm>
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using Family = NEO::Gen12LpFamily;
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#include "shared/source/command_container/command_encoder_heap_addressing.inl"
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#include "shared/source/command_stream/command_stream_receiver.h"
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namespace NEO {
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template <typename Family>
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template <typename InterfaceDescriptorType>
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void EncodeDispatchKernel<Family>::setGrfInfo(InterfaceDescriptorType *pInterfaceDescriptor, uint32_t grfCount,
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const size_t &sizeCrossThreadData, const size_t &sizePerThreadData,
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const RootDeviceEnvironment &rootDeviceEnvironment) {
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auto grfSize = sizeof(typename Family::GRF);
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DEBUG_BREAK_IF((sizeCrossThreadData % grfSize) != 0);
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auto numGrfCrossThreadData = static_cast<uint32_t>(sizeCrossThreadData / grfSize);
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DEBUG_BREAK_IF(numGrfCrossThreadData == 0);
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pInterfaceDescriptor->setCrossThreadConstantDataReadLength(numGrfCrossThreadData);
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DEBUG_BREAK_IF((sizePerThreadData % grfSize) != 0);
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auto numGrfPerThreadData = static_cast<uint32_t>(sizePerThreadData / grfSize);
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// at least 1 GRF of perThreadData for each thread in a thread group when sizeCrossThreadData != 0
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numGrfPerThreadData = std::max(numGrfPerThreadData, 1u);
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pInterfaceDescriptor->setConstantIndirectUrbEntryReadLength(numGrfPerThreadData);
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}
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template <typename Family>
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template <typename WalkerType>
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void EncodeDispatchKernel<Family>::encode(CommandContainer &container, EncodeDispatchKernelArgs &args) {
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using MEDIA_STATE_FLUSH = typename Family::MEDIA_STATE_FLUSH;
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using STATE_BASE_ADDRESS = typename Family::STATE_BASE_ADDRESS;
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auto &kernelDescriptor = args.dispatchInterface->getKernelDescriptor();
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auto sizeCrossThreadData = args.dispatchInterface->getCrossThreadDataSize();
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auto sizePerThreadData = args.dispatchInterface->getPerThreadDataSize();
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auto sizePerThreadDataForWholeGroup = args.dispatchInterface->getPerThreadDataSizeForWholeThreadGroup();
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auto pImplicitArgs = args.dispatchInterface->getImplicitArgs();
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auto &hwInfo = args.device->getHardwareInfo();
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auto &rootDeviceEnvironment = args.device->getRootDeviceEnvironment();
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LinearStream *listCmdBufferStream = container.getCommandStream();
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auto threadGroupDims = static_cast<const uint32_t *>(args.threadGroupDimensions);
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DefaultWalkerType cmd = Family::cmdInitGpgpuWalker;
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auto idd = Family::cmdInitInterfaceDescriptorData;
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{
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auto alloc = args.dispatchInterface->getIsaAllocation();
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UNRECOVERABLE_IF(nullptr == alloc);
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auto offset = alloc->getGpuAddressToPatch() + args.dispatchInterface->getIsaOffsetInParentAllocation();
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idd.setKernelStartPointer(offset);
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idd.setKernelStartPointerHigh(0u);
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}
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if (args.dispatchInterface->getKernelDescriptor().kernelAttributes.flags.usesAssert && args.device->getL0Debugger() != nullptr) {
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idd.setSoftwareExceptionEnable(1);
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}
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auto numThreadsPerThreadGroup = args.dispatchInterface->getNumThreadsPerThreadGroup();
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idd.setNumberOfThreadsInGpgpuThreadGroup(numThreadsPerThreadGroup);
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EncodeDispatchKernel<Family>::programBarrierEnable(idd,
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kernelDescriptor,
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hwInfo);
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auto slmSize = EncodeDispatchKernel<Family>::computeSlmValues(hwInfo, args.dispatchInterface->getSlmTotalSize(), nullptr, false);
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idd.setSharedLocalMemorySize(slmSize);
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uint32_t bindingTableStateCount = kernelDescriptor.payloadMappings.bindingTable.numEntries;
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uint32_t bindingTablePointer = 0u;
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bool isBindlessKernel = NEO::KernelDescriptor::isBindlessAddressingKernel(kernelDescriptor);
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if (!isBindlessKernel) {
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container.prepareBindfulSsh();
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if (bindingTableStateCount > 0u) {
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auto ssh = args.surfaceStateHeap;
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if (ssh == nullptr) {
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ssh = container.getHeapWithRequiredSizeAndAlignment(HeapType::surfaceState, args.dispatchInterface->getSurfaceStateHeapDataSize(), NEO::EncodeDispatchKernel<Family>::getDefaultSshAlignment());
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}
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bindingTablePointer = static_cast<uint32_t>(EncodeSurfaceState<Family>::pushBindingTableAndSurfaceStates(
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*ssh,
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args.dispatchInterface->getSurfaceStateHeapData(),
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args.dispatchInterface->getSurfaceStateHeapDataSize(), bindingTableStateCount,
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kernelDescriptor.payloadMappings.bindingTable.tableOffset));
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}
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} else {
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bool globalBindlessSsh = args.device->getBindlessHeapsHelper() != nullptr;
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auto sshHeapSize = args.dispatchInterface->getSurfaceStateHeapDataSize();
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if (sshHeapSize > 0u) {
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auto ssh = args.surfaceStateHeap;
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if (ssh == nullptr) {
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container.prepareBindfulSsh();
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ssh = container.getHeapWithRequiredSizeAndAlignment(HeapType::surfaceState, sshHeapSize, NEO::EncodeDispatchKernel<Family>::getDefaultSshAlignment());
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}
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uint64_t bindlessSshBaseOffset = ptrDiff(ssh->getSpace(0), ssh->getCpuBase());
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if (globalBindlessSsh) {
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bindlessSshBaseOffset += ptrDiff(ssh->getGraphicsAllocation()->getGpuAddress(), ssh->getGraphicsAllocation()->getGpuBaseAddress());
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}
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DEBUG_BREAK_IF(bindingTableStateCount > 0u);
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// Allocate space for new ssh data
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auto dstSurfaceState = ssh->getSpace(sshHeapSize);
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memcpy_s(dstSurfaceState, sshHeapSize, args.dispatchInterface->getSurfaceStateHeapData(), sshHeapSize);
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args.dispatchInterface->patchBindlessOffsetsInCrossThreadData(bindlessSshBaseOffset);
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}
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}
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idd.setBindingTablePointer(bindingTablePointer);
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PreemptionHelper::programInterfaceDescriptorDataPreemption<Family>(&idd, args.preemptionMode);
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uint32_t samplerStateOffset = 0;
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uint32_t samplerCount = 0;
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if (kernelDescriptor.payloadMappings.samplerTable.numSamplers > 0) {
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auto dsHeap = args.dynamicStateHeap;
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if (dsHeap == nullptr) {
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dsHeap = container.getIndirectHeap(HeapType::dynamicState);
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auto dshSizeRequired = NEO::EncodeDispatchKernel<Family>::getSizeRequiredDsh(kernelDescriptor, container.getNumIddPerBlock());
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if (dsHeap->getAvailableSpace() <= dshSizeRequired) {
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dsHeap = container.getHeapWithRequiredSizeAndAlignment(HeapType::dynamicState, dsHeap->getMaxAvailableSpace(), NEO::EncodeDispatchKernel<Family>::getDefaultDshAlignment());
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}
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}
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UNRECOVERABLE_IF(!dsHeap);
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samplerCount = kernelDescriptor.payloadMappings.samplerTable.numSamplers;
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samplerStateOffset = EncodeStates<Family>::copySamplerState(dsHeap, kernelDescriptor.payloadMappings.samplerTable.tableOffset,
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kernelDescriptor.payloadMappings.samplerTable.numSamplers,
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kernelDescriptor.payloadMappings.samplerTable.borderColor,
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args.dispatchInterface->getDynamicStateHeapData(),
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args.device->getBindlessHeapsHelper(), args.device->getRootDeviceEnvironment());
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}
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idd.setSamplerStatePointer(samplerStateOffset);
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if (!isBindlessKernel) {
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EncodeDispatchKernel<Family>::adjustBindingTablePrefetch(idd, samplerCount, bindingTableStateCount);
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}
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EncodeDispatchKernel<Family>::setGrfInfo(&idd, kernelDescriptor.kernelAttributes.numGrfRequired, sizeCrossThreadData,
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sizePerThreadData, rootDeviceEnvironment);
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uint32_t sizeThreadData = sizePerThreadDataForWholeGroup + sizeCrossThreadData;
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bool isHwLocalIdGeneration = false;
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uint32_t sizeForImplicitArgsPatching = NEO::ImplicitArgsHelper::getSizeForImplicitArgsPatching(pImplicitArgs, kernelDescriptor, isHwLocalIdGeneration, rootDeviceEnvironment);
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uint32_t iohRequiredSize = sizeThreadData + sizeForImplicitArgsPatching;
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uint64_t offsetThreadData = 0u;
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{
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auto heapIndirect = container.getIndirectHeap(HeapType::indirectObject);
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UNRECOVERABLE_IF(!(heapIndirect));
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heapIndirect->align(Family::cacheLineSize);
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void *ptr = nullptr;
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if (args.isKernelDispatchedFromImmediateCmdList) {
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ptr = container.getHeapWithRequiredSizeAndAlignment(HeapType::indirectObject, iohRequiredSize, DefaultWalkerType::INDIRECTDATASTARTADDRESS_ALIGN_SIZE)->getSpace(iohRequiredSize);
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} else {
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ptr = container.getHeapSpaceAllowGrow(HeapType::indirectObject, iohRequiredSize);
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}
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UNRECOVERABLE_IF(!(ptr));
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offsetThreadData = heapIndirect->getHeapGpuStartOffset() + static_cast<uint64_t>(heapIndirect->getUsed() - sizeThreadData);
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uint64_t implicitArgsGpuVA = 0u;
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if (pImplicitArgs) {
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implicitArgsGpuVA = heapIndirect->getGraphicsAllocation()->getGpuAddress() + static_cast<uint64_t>(heapIndirect->getUsed() - iohRequiredSize);
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auto implicitArgsCrossThreadPtr = ptrOffset(const_cast<uint64_t *>(reinterpret_cast<const uint64_t *>(args.dispatchInterface->getCrossThreadData())), kernelDescriptor.payloadMappings.implicitArgs.implicitArgsBuffer);
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*implicitArgsCrossThreadPtr = implicitArgsGpuVA;
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ptr = NEO::ImplicitArgsHelper::patchImplicitArgs(ptr, *pImplicitArgs, kernelDescriptor, {}, rootDeviceEnvironment, nullptr);
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}
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memcpy_s(ptr, sizeCrossThreadData,
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args.dispatchInterface->getCrossThreadData(), sizeCrossThreadData);
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if (args.isIndirect) {
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auto crossThreadDataGpuVA = heapIndirect->getGraphicsAllocation()->getGpuAddress() + heapIndirect->getUsed() - sizeThreadData;
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EncodeIndirectParams<Family>::encode(container, crossThreadDataGpuVA, args.dispatchInterface, implicitArgsGpuVA);
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}
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ptr = ptrOffset(ptr, sizeCrossThreadData);
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memcpy_s(ptr, sizePerThreadDataForWholeGroup,
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args.dispatchInterface->getPerThreadData(), sizePerThreadDataForWholeGroup);
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}
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uint32_t numIDD = 0u;
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void *iddPtr = getInterfaceDescriptor(container, args.dynamicStateHeap, numIDD);
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auto slmSizeNew = args.dispatchInterface->getSlmTotalSize();
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bool dirtyHeaps = container.isAnyHeapDirty();
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bool flush = container.slmSizeRef() != slmSizeNew || dirtyHeaps || args.requiresUncachedMocs;
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if (flush) {
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PipeControlArgs syncArgs;
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syncArgs.dcFlushEnable = args.dcFlushEnable;
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if (dirtyHeaps) {
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syncArgs.hdcPipelineFlush = true;
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}
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MemorySynchronizationCommands<Family>::addSingleBarrier(*container.getCommandStream(), syncArgs);
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if (dirtyHeaps || args.requiresUncachedMocs) {
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STATE_BASE_ADDRESS sba;
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auto gmmHelper = container.getDevice()->getGmmHelper();
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uint32_t statelessMocsIndex =
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args.requiresUncachedMocs ? (gmmHelper->getMOCS(GMM_RESOURCE_USAGE_OCL_BUFFER_CACHELINE_MISALIGNED) >> 1) : (gmmHelper->getMOCS(GMM_RESOURCE_USAGE_OCL_BUFFER) >> 1);
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auto l1CachePolicy = container.l1CachePolicyDataRef()->getL1CacheValue(false);
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auto l1CachePolicyDebuggerActive = container.l1CachePolicyDataRef()->getL1CacheValue(true);
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EncodeStateBaseAddressArgs<Family> encodeStateBaseAddressArgs = {
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&container, // container
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sba, // sbaCmd
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nullptr, // sbaProperties
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statelessMocsIndex, // statelessMocsIndex
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l1CachePolicy, // l1CachePolicy
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l1CachePolicyDebuggerActive, // l1CachePolicyDebuggerActive
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false, // multiOsContextCapable
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args.isRcs, // isRcs
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container.doubleSbaWaRef(), // doubleSbaWa
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false, // heaplessModeEnabled
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};
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EncodeStateBaseAddress<Family>::encode(encodeStateBaseAddressArgs);
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container.setDirtyStateForAllHeaps(false);
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args.requiresUncachedMocs = false;
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}
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if (container.slmSizeRef() != slmSizeNew) {
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EncodeL3State<Family>::encode(container, slmSizeNew != 0u);
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container.slmSizeRef() = slmSizeNew;
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}
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}
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if (numIDD == 0 || flush) {
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EncodeMediaInterfaceDescriptorLoad<Family>::encode(container, args.dynamicStateHeap);
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}
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cmd.setIndirectDataStartAddress(static_cast<uint32_t>(offsetThreadData));
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cmd.setIndirectDataLength(sizeThreadData);
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cmd.setInterfaceDescriptorOffset(numIDD);
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EncodeDispatchKernel<Family>::encodeThreadData(cmd,
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nullptr,
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threadGroupDims,
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args.dispatchInterface->getGroupSize(),
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kernelDescriptor.kernelAttributes.simdSize,
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kernelDescriptor.kernelAttributes.numLocalIdChannels,
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numThreadsPerThreadGroup,
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args.dispatchInterface->getThreadExecutionMask(),
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true,
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false,
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args.isIndirect,
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args.dispatchInterface->getRequiredWorkgroupOrder(),
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rootDeviceEnvironment);
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cmd.setPredicateEnable(args.isPredicate);
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auto threadGroupCount = cmd.getThreadGroupIdXDimension() * cmd.getThreadGroupIdYDimension() * cmd.getThreadGroupIdZDimension();
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EncodeDispatchKernel<Family>::encodeThreadGroupDispatch(idd, *args.device, hwInfo, threadGroupDims, threadGroupCount, kernelDescriptor.kernelAttributes.numGrfRequired, numThreadsPerThreadGroup, cmd);
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EncodeWalkerArgs walkerArgs{
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.kernelExecutionType = KernelExecutionType::defaultType,
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.requiredDispatchWalkOrder = args.requiredDispatchWalkOrder,
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.localRegionSize = args.localRegionSize,
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.maxFrontEndThreads = args.device->getDeviceInfo().maxFrontEndThreads,
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.requiredSystemFence = args.requiresSystemMemoryFence(),
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.hasSample = false};
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EncodeDispatchKernel<Family>::encodeAdditionalWalkerFields(rootDeviceEnvironment, cmd, walkerArgs);
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EncodeDispatchKernel<Family>::encodeWalkerPostSyncFields(cmd, walkerArgs);
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EncodeDispatchKernel<Family>::template encodeComputeDispatchAllWalker<WalkerType, INTERFACE_DESCRIPTOR_DATA>(cmd, nullptr, rootDeviceEnvironment, walkerArgs);
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memcpy_s(iddPtr, sizeof(idd), &idd, sizeof(idd));
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if (NEO::PauseOnGpuProperties::pauseModeAllowed(NEO::debugManager.flags.PauseOnEnqueue.get(), args.device->debugExecutionCounter.load(), NEO::PauseOnGpuProperties::PauseMode::BeforeWorkload)) {
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void *commandBuffer = listCmdBufferStream->getSpace(MemorySynchronizationCommands<Family>::getSizeForBarrierWithPostSyncOperation(args.device->getRootDeviceEnvironment(), false));
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args.additionalCommands->push_back(commandBuffer);
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EncodeSemaphore<Family>::applyMiSemaphoreWaitCommand(*listCmdBufferStream, *args.additionalCommands);
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}
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auto buffer = listCmdBufferStream->getSpaceForCmd<DefaultWalkerType>();
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*buffer = cmd;
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{
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auto mediaStateFlush = listCmdBufferStream->getSpaceForCmd<MEDIA_STATE_FLUSH>();
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*mediaStateFlush = Family::cmdInitMediaStateFlush;
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}
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args.partitionCount = 1;
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if (NEO::PauseOnGpuProperties::pauseModeAllowed(NEO::debugManager.flags.PauseOnEnqueue.get(), args.device->debugExecutionCounter.load(), NEO::PauseOnGpuProperties::PauseMode::AfterWorkload)) {
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void *commandBuffer = listCmdBufferStream->getSpace(MemorySynchronizationCommands<Family>::getSizeForBarrierWithPostSyncOperation(args.device->getRootDeviceEnvironment(), false));
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args.additionalCommands->push_back(commandBuffer);
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EncodeSemaphore<Family>::applyMiSemaphoreWaitCommand(*listCmdBufferStream, *args.additionalCommands);
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}
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}
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template <typename Family>
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void EncodeMediaInterfaceDescriptorLoad<Family>::encode(CommandContainer &container, IndirectHeap *childDsh) {
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using MEDIA_STATE_FLUSH = typename Family::MEDIA_STATE_FLUSH;
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using MEDIA_INTERFACE_DESCRIPTOR_LOAD = typename Family::MEDIA_INTERFACE_DESCRIPTOR_LOAD;
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void *heapBase = nullptr;
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if (childDsh != nullptr) {
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heapBase = childDsh->getCpuBase();
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} else {
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heapBase = container.getIndirectHeap(HeapType::dynamicState)->getCpuBase();
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}
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auto mediaStateFlush = container.getCommandStream()->getSpaceForCmd<MEDIA_STATE_FLUSH>();
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*mediaStateFlush = Family::cmdInitMediaStateFlush;
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auto iddOffset = static_cast<uint32_t>(ptrDiff(container.getIddBlock(), heapBase));
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MEDIA_INTERFACE_DESCRIPTOR_LOAD cmd = Family::cmdInitMediaInterfaceDescriptorLoad;
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cmd.setInterfaceDescriptorDataStartAddress(iddOffset);
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cmd.setInterfaceDescriptorTotalLength(sizeof(INTERFACE_DESCRIPTOR_DATA) * container.getNumIddPerBlock());
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auto buffer = container.getCommandStream()->getSpace(sizeof(cmd));
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*(decltype(cmd) *)buffer = cmd;
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}
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template <typename Family>
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inline bool EncodeDispatchKernel<Family>::isRuntimeLocalIdsGenerationRequired(uint32_t activeChannels,
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const size_t *lws,
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std::array<uint8_t, 3> walkOrder,
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bool requireInputWalkOrder,
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uint32_t &requiredWalkOrder,
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uint32_t simd) {
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requiredWalkOrder = 0u;
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return true;
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}
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template <typename Family>
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template <typename WalkerType>
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void EncodeDispatchKernel<Family>::encodeThreadData(WalkerType &walkerCmd,
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const uint32_t *startWorkGroup,
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const uint32_t *numWorkGroups,
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const uint32_t *workGroupSizes,
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uint32_t simd,
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uint32_t localIdDimensions,
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uint32_t threadsPerThreadGroup,
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uint32_t threadExecutionMask,
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bool localIdsGenerationByRuntime,
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bool inlineDataProgrammingRequired,
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bool isIndirect,
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uint32_t requiredWorkGroupOrder,
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const RootDeviceEnvironment &rootDeviceEnvironment) {
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if (isIndirect) {
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walkerCmd.setIndirectParameterEnable(true);
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} else {
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walkerCmd.setThreadGroupIdXDimension(static_cast<uint32_t>(numWorkGroups[0]));
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walkerCmd.setThreadGroupIdYDimension(static_cast<uint32_t>(numWorkGroups[1]));
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walkerCmd.setThreadGroupIdZDimension(static_cast<uint32_t>(numWorkGroups[2]));
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}
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if (startWorkGroup) {
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walkerCmd.setThreadGroupIdStartingX(static_cast<uint32_t>(startWorkGroup[0]));
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walkerCmd.setThreadGroupIdStartingY(static_cast<uint32_t>(startWorkGroup[1]));
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walkerCmd.setThreadGroupIdStartingResumeZ(static_cast<uint32_t>(startWorkGroup[2]));
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}
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walkerCmd.setSimdSize(getSimdConfig<WalkerType>(simd));
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auto localWorkSize = static_cast<uint32_t>(workGroupSizes[0] * workGroupSizes[1] * workGroupSizes[2]);
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if (threadsPerThreadGroup == 0) {
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threadsPerThreadGroup = getThreadsPerWG(simd, localWorkSize);
|
|
}
|
|
walkerCmd.setThreadWidthCounterMaximum(threadsPerThreadGroup);
|
|
|
|
uint64_t executionMask = threadExecutionMask;
|
|
if (executionMask == 0) {
|
|
auto remainderSimdLanes = localWorkSize & (simd - 1);
|
|
executionMask = maxNBitValue(remainderSimdLanes);
|
|
if (!executionMask)
|
|
executionMask = ~executionMask;
|
|
}
|
|
|
|
constexpr uint32_t maxDword = std::numeric_limits<uint32_t>::max();
|
|
walkerCmd.setRightExecutionMask(static_cast<uint32_t>(executionMask));
|
|
walkerCmd.setBottomExecutionMask(maxDword);
|
|
}
|
|
|
|
template <typename Family>
|
|
template <typename InterfaceDescriptorType>
|
|
void EncodeDispatchKernel<Family>::programBarrierEnable(InterfaceDescriptorType &interfaceDescriptor,
|
|
const KernelDescriptor &kernelDescriptor,
|
|
const HardwareInfo &hwInfo) {
|
|
interfaceDescriptor.setBarrierEnable(kernelDescriptor.kernelAttributes.barrierCount);
|
|
}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
inline void EncodeDispatchKernel<Family>::encodeAdditionalWalkerFields(const RootDeviceEnvironment &rootDeviceEnvironment, WalkerType &walkerCmd, const EncodeWalkerArgs &walkerArgs) {}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
inline void EncodeDispatchKernel<Family>::encodeWalkerPostSyncFields(WalkerType &walkerCmd, const EncodeWalkerArgs &walkerArgs) {}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType, typename InterfaceDescriptorType>
|
|
inline void EncodeDispatchKernel<Family>::encodeComputeDispatchAllWalker(WalkerType &walkerCmd, const InterfaceDescriptorType *idd, const RootDeviceEnvironment &rootDeviceEnvironment, const EncodeWalkerArgs &walkerArgs) {}
|
|
|
|
template <typename Family>
|
|
template <typename InterfaceDescriptorType>
|
|
void EncodeDispatchKernel<Family>::setupPreferredSlmSize(InterfaceDescriptorType *pInterfaceDescriptor, const RootDeviceEnvironment &rootDeviceEnvironment, const uint32_t threadsPerThreadGroup, uint32_t slmTotalSize, SlmPolicy slmPolicy) {}
|
|
|
|
template <typename Family>
|
|
inline bool EncodeDispatchKernel<Family>::isDshNeeded(const DeviceInfo &deviceInfo) {
|
|
return true;
|
|
}
|
|
|
|
template <typename Family>
|
|
void EncodeStateBaseAddress<Family>::setSbaAddressesForDebugger(NEO::Debugger::SbaAddresses &sbaAddress, const STATE_BASE_ADDRESS &sbaCmd) {
|
|
sbaAddress.indirectObjectBaseAddress = sbaCmd.getIndirectObjectBaseAddress();
|
|
sbaAddress.bindlessSurfaceStateBaseAddress = sbaCmd.getBindlessSurfaceStateBaseAddress();
|
|
sbaAddress.dynamicStateBaseAddress = sbaCmd.getDynamicStateBaseAddress();
|
|
sbaAddress.generalStateBaseAddress = sbaCmd.getGeneralStateBaseAddress();
|
|
sbaAddress.instructionBaseAddress = sbaCmd.getInstructionBaseAddress();
|
|
sbaAddress.surfaceStateBaseAddress = sbaCmd.getSurfaceStateBaseAddress();
|
|
}
|
|
|
|
template <typename Family>
|
|
void EncodeStateBaseAddress<Family>::encode(EncodeStateBaseAddressArgs<Family> &args) {
|
|
auto &device = *args.container->getDevice();
|
|
|
|
if (args.container->isAnyHeapDirty()) {
|
|
EncodeWA<Family>::encodeAdditionalPipelineSelect(*args.container->getCommandStream(), {}, true, device.getRootDeviceEnvironment(), args.isRcs);
|
|
}
|
|
|
|
auto gmmHelper = device.getGmmHelper();
|
|
|
|
auto dsh = args.container->isHeapDirty(HeapType::dynamicState) ? args.container->getIndirectHeap(HeapType::dynamicState) : nullptr;
|
|
auto ioh = args.container->isHeapDirty(HeapType::indirectObject) ? args.container->getIndirectHeap(HeapType::indirectObject) : nullptr;
|
|
auto ssh = args.container->isHeapDirty(HeapType::surfaceState) ? args.container->getIndirectHeap(HeapType::surfaceState) : nullptr;
|
|
auto isDebuggerActive = device.getDebugger() != nullptr;
|
|
uint64_t globalHeapsBase = 0;
|
|
uint64_t bindlessSurfStateBase = 0;
|
|
bool useGlobalSshAndDsh = false;
|
|
|
|
if (device.getBindlessHeapsHelper()) {
|
|
bindlessSurfStateBase = device.getBindlessHeapsHelper()->getGlobalHeapsBase();
|
|
globalHeapsBase = device.getBindlessHeapsHelper()->getGlobalHeapsBase();
|
|
useGlobalSshAndDsh = true;
|
|
}
|
|
|
|
StateBaseAddressHelperArgs<Family> stateBaseAddressHelperArgs = {
|
|
0, // generalStateBaseAddress
|
|
args.container->getIndirectObjectHeapBaseAddress(), // indirectObjectHeapBaseAddress
|
|
args.container->getInstructionHeapBaseAddress(), // instructionHeapBaseAddress
|
|
globalHeapsBase, // globalHeapsBaseAddress
|
|
0, // surfaceStateBaseAddress
|
|
bindlessSurfStateBase, // bindlessSurfaceStateBaseAddress
|
|
&args.sbaCmd, // stateBaseAddressCmd
|
|
args.sbaProperties, // sbaProperties
|
|
dsh, // dsh
|
|
ioh, // ioh
|
|
ssh, // ssh
|
|
gmmHelper, // gmmHelper
|
|
args.statelessMocsIndex, // statelessMocsIndex
|
|
args.l1CachePolicy, // l1CachePolicy
|
|
args.l1CachePolicyDebuggerActive, // l1CachePolicyDebuggerActive
|
|
NEO::MemoryCompressionState::notApplicable, // memoryCompressionState
|
|
false, // setInstructionStateBaseAddress
|
|
false, // setGeneralStateBaseAddress
|
|
useGlobalSshAndDsh, // useGlobalHeapsBaseAddress
|
|
false, // isMultiOsContextCapable
|
|
false, // areMultipleSubDevicesInContext
|
|
false, // overrideSurfaceStateBaseAddress
|
|
isDebuggerActive, // isDebuggerActive
|
|
args.doubleSbaWa, // doubleSbaWa
|
|
args.heaplessModeEnabled // heaplessModeEnabled
|
|
};
|
|
|
|
StateBaseAddressHelper<Family>::programStateBaseAddressIntoCommandStream(stateBaseAddressHelperArgs,
|
|
*args.container->getCommandStream());
|
|
|
|
EncodeWA<Family>::encodeAdditionalPipelineSelect(*args.container->getCommandStream(), {}, false, device.getRootDeviceEnvironment(), args.isRcs);
|
|
}
|
|
|
|
template <typename Family>
|
|
size_t EncodeStateBaseAddress<Family>::getRequiredSizeForStateBaseAddress(Device &device, CommandContainer &container, bool isRcs) {
|
|
return sizeof(typename Family::STATE_BASE_ADDRESS) + 2 * EncodeWA<Family>::getAdditionalPipelineSelectSize(device, isRcs);
|
|
}
|
|
|
|
template <typename GfxFamily>
|
|
void EncodeMiFlushDW<GfxFamily>::adjust(MI_FLUSH_DW *miFlushDwCmd, const ProductHelper &productHelper) {}
|
|
|
|
template <typename GfxFamily>
|
|
inline void EncodeWA<GfxFamily>::addPipeControlPriorToNonPipelinedStateCommand(LinearStream &commandStream, PipeControlArgs args,
|
|
const RootDeviceEnvironment &rootDeviceEnvironment, bool isRcs) {
|
|
MemorySynchronizationCommands<GfxFamily>::addSingleBarrier(commandStream, args);
|
|
}
|
|
|
|
template <typename GfxFamily>
|
|
inline void EncodeWA<GfxFamily>::adjustCompressionFormatForPlanarImage(uint32_t &compressionFormat, int plane) {
|
|
}
|
|
|
|
template <typename Family>
|
|
void EncodeSurfaceState<Family>::setCoherencyType(R_SURFACE_STATE *surfaceState, COHERENCY_TYPE coherencyType) {
|
|
surfaceState->setCoherencyType(coherencyType);
|
|
}
|
|
|
|
template <typename Family>
|
|
void EncodeSemaphore<Family>::programMiSemaphoreWait(MI_SEMAPHORE_WAIT *cmd,
|
|
uint64_t compareAddress,
|
|
uint64_t compareData,
|
|
COMPARE_OPERATION compareMode,
|
|
bool registerPollMode,
|
|
bool waitMode,
|
|
bool useQwordData,
|
|
bool indirect,
|
|
bool switchOnUnsuccessful) {
|
|
constexpr uint64_t upper32b = static_cast<uint64_t>(std::numeric_limits<uint32_t>::max()) << 32;
|
|
UNRECOVERABLE_IF(useQwordData || (compareData & upper32b));
|
|
UNRECOVERABLE_IF(indirect);
|
|
|
|
MI_SEMAPHORE_WAIT localCmd = Family::cmdInitMiSemaphoreWait;
|
|
localCmd.setCompareOperation(compareMode);
|
|
localCmd.setSemaphoreDataDword(static_cast<uint32_t>(compareData));
|
|
localCmd.setSemaphoreGraphicsAddress(compareAddress);
|
|
localCmd.setWaitMode(waitMode ? MI_SEMAPHORE_WAIT::WAIT_MODE::WAIT_MODE_POLLING_MODE : MI_SEMAPHORE_WAIT::WAIT_MODE::WAIT_MODE_SIGNAL_MODE);
|
|
|
|
*cmd = localCmd;
|
|
}
|
|
|
|
template <typename GfxFamily>
|
|
void EncodeEnableRayTracing<GfxFamily>::programEnableRayTracing(LinearStream &commandStream, uint64_t backBuffer) {
|
|
}
|
|
|
|
template <typename Family>
|
|
inline void EncodeStoreMemory<Family>::programStoreDataImm(MI_STORE_DATA_IMM *cmdBuffer,
|
|
uint64_t gpuAddress,
|
|
uint32_t dataDword0,
|
|
uint32_t dataDword1,
|
|
bool storeQword,
|
|
bool workloadPartitionOffset) {
|
|
MI_STORE_DATA_IMM storeDataImmediate = Family::cmdInitStoreDataImm;
|
|
storeDataImmediate.setAddress(gpuAddress);
|
|
storeDataImmediate.setStoreQword(storeQword);
|
|
storeDataImmediate.setDataDword0(dataDword0);
|
|
if (storeQword) {
|
|
storeDataImmediate.setDataDword1(dataDword1);
|
|
storeDataImmediate.setDwordLength(MI_STORE_DATA_IMM::DWORD_LENGTH::DWORD_LENGTH_STORE_QWORD);
|
|
} else {
|
|
storeDataImmediate.setDwordLength(MI_STORE_DATA_IMM::DWORD_LENGTH::DWORD_LENGTH_STORE_DWORD);
|
|
}
|
|
EncodeStoreMemory<Family>::encodeForceCompletionCheck(storeDataImmediate);
|
|
|
|
*cmdBuffer = storeDataImmediate;
|
|
}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
void EncodeDispatchKernel<Family>::setupPostSyncMocs(WalkerType &walkerCmd, const RootDeviceEnvironment &rootDeviceEnvironment, bool dcFlush) {}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
void EncodeDispatchKernel<Family>::setupPostSyncForRegularEvent(WalkerType &walkerCmd, const EncodeDispatchKernelArgs &args) {}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
void EncodeDispatchKernel<Family>::encodeL3FlushAfterPostSync(WalkerType &walkerCmd, const EncodeDispatchKernelArgs &args) {}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
void EncodeDispatchKernel<Family>::setupPostSyncForInOrderExec(WalkerType &walkerCmd, const EncodeDispatchKernelArgs &args) {}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
void EncodeDispatchKernel<Family>::adjustWalkOrder(WalkerType &walkerCmd, uint32_t requiredWorkGroupOrder, const RootDeviceEnvironment &rootDeviceEnvironment) {}
|
|
|
|
template <typename Family>
|
|
size_t EncodeDispatchKernel<Family>::additionalSizeRequiredDsh(uint32_t iddCount) {
|
|
return iddCount * sizeof(typename Family::INTERFACE_DESCRIPTOR_DATA);
|
|
}
|
|
|
|
template <typename Family>
|
|
inline size_t EncodeDispatchKernel<Family>::getInlineDataOffset(EncodeDispatchKernelArgs &args) {
|
|
return 0;
|
|
}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
void EncodeDispatchKernel<Family>::forceComputeWalkerPostSyncFlushWithWrite(WalkerType &walkerCmd) {
|
|
}
|
|
|
|
template <typename Family>
|
|
uint32_t EncodeDispatchKernel<Family>::alignSlmSize(uint32_t slmSize) {
|
|
if (slmSize == 0u) {
|
|
return 0u;
|
|
}
|
|
slmSize = std::max(slmSize, 1024u);
|
|
slmSize = Math::nextPowerOfTwo(slmSize);
|
|
UNRECOVERABLE_IF(slmSize > 64u * MemoryConstants::kiloByte);
|
|
return slmSize;
|
|
}
|
|
|
|
template <typename Family>
|
|
uint32_t EncodeDispatchKernel<Family>::computeSlmValues(const HardwareInfo &hwInfo, uint32_t slmSize, ReleaseHelper *releaseHelper, bool isHeapless) {
|
|
auto value = std::max(slmSize, 1024u);
|
|
value = Math::nextPowerOfTwo(value);
|
|
value = Math::getMinLsbSet(value);
|
|
value = value - 9;
|
|
DEBUG_BREAK_IF(value > 7);
|
|
return value * !!slmSize;
|
|
}
|
|
|
|
template <typename Family>
|
|
bool EncodeDispatchKernel<Family>::singleTileExecImplicitScalingRequired(bool cooperativeKernel) {
|
|
return cooperativeKernel;
|
|
}
|
|
|
|
template <typename Family>
|
|
size_t EncodeStates<Family>::getSshHeapSize() {
|
|
return 64 * MemoryConstants::kiloByte;
|
|
}
|
|
|
|
template <typename Family>
|
|
void InOrderPatchCommandHelpers::PatchCmd<Family>::patchComputeWalker(uint64_t appendCounterValue) {
|
|
UNRECOVERABLE_IF(true);
|
|
}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType, typename InterfaceDescriptorType>
|
|
void EncodeDispatchKernel<Family>::overrideDefaultValues(WalkerType &walkerCmd, InterfaceDescriptorType &interfaceDescriptor) {
|
|
}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType, typename InterfaceDescriptorType>
|
|
void EncodeDispatchKernel<Family>::encodeThreadGroupDispatch(InterfaceDescriptorType &interfaceDescriptor, const Device &device, const HardwareInfo &hwInfo,
|
|
const uint32_t *threadGroupDimensions, const uint32_t threadGroupCount, const uint32_t grfCount, const uint32_t threadsPerThreadGroup,
|
|
WalkerType &walkerCmd) {
|
|
}
|
|
|
|
template <typename Family>
|
|
size_t EncodeDispatchKernel<Family>::getScratchPtrOffsetOfImplicitArgs() {
|
|
return 0;
|
|
}
|
|
|
|
template <typename Family>
|
|
void EncodeSurfaceState<Family>::setPitchForScratch(R_SURFACE_STATE *surfaceState, uint32_t pitch, const ProductHelper &productHelper) {
|
|
surfaceState->setSurfacePitch(pitch);
|
|
}
|
|
|
|
template <typename Family>
|
|
uint32_t EncodeSurfaceState<Family>::getPitchForScratchInBytes(R_SURFACE_STATE *surfaceState, const ProductHelper &productHelper) {
|
|
return surfaceState->getSurfacePitch();
|
|
}
|
|
|
|
template <typename Family>
|
|
void EncodeSemaphore<Family>::appendSemaphoreCommand(MI_SEMAPHORE_WAIT &cmd, uint64_t compareData, bool indirect, bool useQwordData, bool switchOnUnsuccessful) {
|
|
constexpr uint64_t upper32b = static_cast<uint64_t>(std::numeric_limits<uint32_t>::max()) << 32;
|
|
UNRECOVERABLE_IF(useQwordData || (compareData & upper32b));
|
|
}
|
|
|
|
template <typename Family>
|
|
template <bool isHeapless>
|
|
void EncodeDispatchKernel<Family>::setScratchAddress(uint64_t &scratchAddress, uint32_t requiredScratchSlot0Size, uint32_t requiredScratchSlot1Size, IndirectHeap *ssh, CommandStreamReceiver &submissionCsr) {
|
|
}
|
|
|
|
template <typename Family>
|
|
template <typename InterfaceDescriptorType>
|
|
void EncodeDispatchKernel<Family>::encodeEuSchedulingPolicy(InterfaceDescriptorType *pInterfaceDescriptor, const KernelDescriptor &kernelDesc, int32_t defaultPipelinedThreadArbitrationPolicy) {
|
|
}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
void EncodeDispatchKernel<Family>::setWalkerRegionSettings(WalkerType &walkerCmd, const NEO::Device &device, uint32_t partitionCount, uint32_t workgroupSize, uint32_t threadGroupCount, uint32_t maxWgCountPerTile, bool requiredDispatchWalkOrder) {}
|
|
|
|
template <typename Family>
|
|
template <typename WalkerType>
|
|
void EncodeDispatchKernel<Family>::adjustTimestampPacket(WalkerType &walkerCmd, const EncodeDispatchKernelArgs &args) {}
|
|
|
|
template <>
|
|
size_t EncodeWA<Family>::getAdditionalPipelineSelectSize(Device &device, bool isRcs) {
|
|
size_t size = 0;
|
|
const auto &productHelper = device.getProductHelper();
|
|
if (isRcs && productHelper.is3DPipelineSelectWARequired()) {
|
|
size += 2 * PreambleHelper<Family>::getCmdSizeForPipelineSelect(device.getRootDeviceEnvironment());
|
|
}
|
|
return size;
|
|
}
|
|
|
|
template <>
|
|
void EncodeComputeMode<Family>::programComputeModeCommand(LinearStream &csr, StateComputeModeProperties &properties, const RootDeviceEnvironment &rootDeviceEnvironment) {
|
|
using STATE_COMPUTE_MODE = typename Family::STATE_COMPUTE_MODE;
|
|
using FORCE_NON_COHERENT = typename STATE_COMPUTE_MODE::FORCE_NON_COHERENT;
|
|
|
|
STATE_COMPUTE_MODE stateComputeMode = Family::cmdInitStateComputeMode;
|
|
auto maskBits = stateComputeMode.getMaskBits();
|
|
|
|
FORCE_NON_COHERENT coherencyValue = (properties.isCoherencyRequired.value == 1) ? FORCE_NON_COHERENT::FORCE_NON_COHERENT_FORCE_DISABLED
|
|
: FORCE_NON_COHERENT::FORCE_NON_COHERENT_FORCE_GPU_NON_COHERENT;
|
|
stateComputeMode.setForceNonCoherent(coherencyValue);
|
|
maskBits |= Family::stateComputeModeForceNonCoherentMask;
|
|
|
|
stateComputeMode.setMaskBits(maskBits);
|
|
|
|
auto buffer = csr.getSpace(sizeof(STATE_COMPUTE_MODE));
|
|
*reinterpret_cast<STATE_COMPUTE_MODE *>(buffer) = stateComputeMode;
|
|
}
|
|
|
|
template <>
|
|
void EncodeWA<Family>::encodeAdditionalPipelineSelect(LinearStream &stream, const PipelineSelectArgs &args,
|
|
bool is3DPipeline, const RootDeviceEnvironment &rootDeviceEnvironment, bool isRcs) {
|
|
const auto &productHelper = rootDeviceEnvironment.getHelper<ProductHelper>();
|
|
if (productHelper.is3DPipelineSelectWARequired() && isRcs) {
|
|
PipelineSelectArgs pipelineSelectArgs = args;
|
|
pipelineSelectArgs.is3DPipelineRequired = is3DPipeline;
|
|
PreambleHelper<Family>::programPipelineSelect(&stream, pipelineSelectArgs, rootDeviceEnvironment);
|
|
}
|
|
}
|
|
|
|
template <>
|
|
void EncodeSurfaceState<Family>::encodeExtraBufferParams(EncodeSurfaceStateArgs &args) {
|
|
auto surfaceState = reinterpret_cast<R_SURFACE_STATE *>(args.outMemory);
|
|
const bool isL3Allowed = surfaceState->getMemoryObjectControlState() == args.gmmHelper->getMOCS(GMM_RESOURCE_USAGE_OCL_BUFFER);
|
|
if (isL3Allowed) {
|
|
const bool isConstantSurface = args.allocation && args.allocation->getAllocationType() == AllocationType::constantSurface;
|
|
bool useL1 = args.isReadOnly || isConstantSurface;
|
|
|
|
if (debugManager.flags.ForceL1Caching.get() != 1) {
|
|
useL1 = false;
|
|
}
|
|
|
|
if (useL1) {
|
|
surfaceState->setMemoryObjectControlState(args.gmmHelper->getMOCS(GMM_RESOURCE_USAGE_OCL_BUFFER_CONST));
|
|
}
|
|
}
|
|
}
|
|
|
|
template <>
|
|
void EncodeL3State<Family>::encode(CommandContainer &container, bool enableSLM) {
|
|
}
|
|
|
|
template <>
|
|
void EncodeStoreMMIO<Family>::appendFlags(MI_STORE_REGISTER_MEM *storeRegMem, bool workloadPartition) {
|
|
storeRegMem->setMmioRemapEnable(true);
|
|
}
|
|
|
|
template <>
|
|
void EncodeSurfaceState<Family>::appendImageCompressionParams(R_SURFACE_STATE *surfaceState, GraphicsAllocation *allocation,
|
|
GmmHelper *gmmHelper, bool imageFromBuffer, GMM_YUV_PLANE_ENUM plane) {
|
|
}
|
|
|
|
template <>
|
|
inline void EncodeSurfaceState<Family>::encodeExtraCacheSettings(R_SURFACE_STATE *surfaceState, const EncodeSurfaceStateArgs &args) {}
|
|
|
|
template <>
|
|
inline void EncodeWA<Family>::setAdditionalPipeControlFlagsForNonPipelineStateCommand(PipeControlArgs &args) {}
|
|
|
|
template <>
|
|
bool EncodeEnableRayTracing<Family>::is48bResourceNeededForRayTracing() {
|
|
return true;
|
|
}
|
|
|
|
} // namespace NEO
|
|
|
|
#include "shared/source/command_container/command_encoder_enablers.inl"
|
|
|
|
namespace NEO {
|
|
template struct EncodeL3State<Family>;
|
|
|
|
template void InOrderPatchCommandHelpers::PatchCmd<Family>::patchComputeWalker(uint64_t appendCounterValue);
|
|
} // namespace NEO
|
|
|
|
#include "shared/source/command_container/implicit_scaling_before_xe_hp.inl" |