forked from huawei/mindspore2022
185 lines
7.6 KiB
C++
185 lines
7.6 KiB
C++
/**
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* Copyright 2019 Huawei Technologies Co., Ltd
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "kernel/kernel_query.h"
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#include <algorithm>
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#include "plugin/device/ascend/kernel/aicpu/aicpu_kernel_metadata.h"
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#include "plugin/device/ascend/kernel/host/host_kernel_metadata.h"
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#include "plugin/device/ascend/kernel/rts/rt_kernel_info.h"
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#include "plugin/device/ascend/kernel/hccl/hccl_kernel_metadata.h"
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#include "plugin/device/ascend/kernel/tbe/tbe_kernel_select/tbe_kernel_select.h"
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#include "kernel/akg/akg_kernel_metadata.h"
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#include "backend/common/session/anf_runtime_algorithm.h"
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#include "include/common/utils/anfalgo.h"
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#include "utils/ms_context.h"
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#include "utils/trace_base.h"
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namespace mindspore {
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namespace kernel {
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namespace {
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void FilterInvalidKernelInfo(const CNodePtr &kernel_node,
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std::vector<std::shared_ptr<kernel::KernelBuildInfo>> *kernel_info_list) {
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MS_EXCEPTION_IF_NULL(kernel_info_list);
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if (kernel_info_list->empty()) {
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return;
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}
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MS_EXCEPTION_IF_NULL(kernel_node);
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size_t output_tensor_num = common::AnfAlgo::GetOutputTensorNum(kernel_node);
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size_t input_tensor_num = common::AnfAlgo::GetInputTensorNum(kernel_node);
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std::vector<std::shared_ptr<kernel::KernelBuildInfo>> filtered_list;
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(void)std::copy_if(
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kernel_info_list->begin(), kernel_info_list->end(), std::back_inserter(filtered_list),
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[output_tensor_num, input_tensor_num](const std::shared_ptr<kernel::KernelBuildInfo> &kernel_build_info) {
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return kernel_build_info->GetOutputNum() == output_tensor_num &&
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kernel_build_info->GetInputNum() == input_tensor_num;
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});
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if (!filtered_list.empty()) {
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kernel_info_list->clear();
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(void)std::copy(filtered_list.begin(), filtered_list.end(), std::back_inserter(*kernel_info_list));
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} else {
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for (size_t index = 0; index < kernel_info_list->size(); ++index) {
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std::ostringstream buffer;
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auto &kernel_info = kernel_info_list->at(index);
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MS_EXCEPTION_IF_NULL(kernel_info);
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if (kernel_info->GetOutputNum() != output_tensor_num) {
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buffer << "Kernel node's output size [" << output_tensor_num << "]"
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<< " cannot match the kernel's output size [" << kernel_info->GetOutputNum() << "]";
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} else {
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buffer << "Kernel node's input size [" << input_tensor_num << "]"
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<< " cannot match the kernel's input size [" << kernel_info->GetInputNum() << "]";
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}
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MS_LOG(INFO) << "Kernel [ " << index << " ] :" << kernel_info->ToString() << buffer.str();
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}
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kernel_info_list->clear();
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MS_LOG(INFO) << "Node: " << kernel_node->DebugString() << "'s output size : [" << output_tensor_num << "]"
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<< "input size : [" << input_tensor_num << "] can not match any kernelInfo !";
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}
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}
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bool SelectAicpuReshapeInTaskSink(const CNodePtr &kernel_node) {
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MS_EXCEPTION_IF_NULL(kernel_node);
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if (common::AnfAlgo::GetCNodeName(kernel_node) != "Reshape") {
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return false;
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}
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const size_t AicpuReshapeSize = 2;
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if (kernel_node->size() != AicpuReshapeSize) {
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return false;
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}
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auto context_ptr = MsContext::GetInstance();
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MS_EXCEPTION_IF_NULL(context_ptr);
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auto is_task_sink = context_ptr->get_param<bool>(MS_CTX_ENABLE_TASK_SINK);
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return is_task_sink;
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}
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} // namespace
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void CheckKernelInfoListEmpty(const std::vector<std::shared_ptr<kernel::KernelBuildInfo>> *kernel_info_list,
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const std::string &type) {
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MS_EXCEPTION_IF_NULL(kernel_info_list);
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if (kernel_info_list->empty()) {
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MS_LOG(INFO) << "Warning: kernel info list is empty, kernel type: " << type;
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}
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}
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void KernelQueryAll(const CNodePtr &kernel_node,
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std::vector<std::shared_ptr<kernel::KernelBuildInfo>> *kernel_info_list) {
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MS_EXCEPTION_IF_NULL(kernel_node);
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MS_EXCEPTION_IF_NULL(kernel_info_list);
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TbeMetadataInfo(kernel_node, kernel_info_list);
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if (kernel_info_list->empty()) {
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GetRtKelInfo(kernel_node, kernel_info_list);
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CheckKernelInfoListEmpty(kernel_info_list, "RT_Kernel");
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}
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if (kernel_info_list->empty()) {
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HcclMetadataInfo(kernel_node, kernel_info_list);
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CheckKernelInfoListEmpty(kernel_info_list, "HCCL_Kernel");
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}
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if (SelectAicpuReshapeInTaskSink(kernel_node)) {
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return;
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}
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if (kernel_info_list->empty()) {
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HostMetadataInfo(kernel_node, kernel_info_list);
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CheckKernelInfoListEmpty(kernel_info_list, "HOST_Kernel");
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}
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}
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void KernelQuery(const CNodePtr &kernel_node, std::vector<std::shared_ptr<kernel::KernelBuildInfo>> *kernel_info_list,
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KernelType kernel_type) {
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MS_EXCEPTION_IF_NULL(kernel_node);
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MS_EXCEPTION_IF_NULL(kernel_info_list);
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auto context_ptr = MsContext::GetInstance();
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MS_EXCEPTION_IF_NULL(context_ptr);
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const PrimitivePtr kPrimProdForceSeA = std::make_shared<Primitive>("ProdForceSeA");
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if (IsPrimitiveCNode(kernel_node, kPrimProdForceSeA)) {
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kernel_type = KernelType::AKG_KERNEL;
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}
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const PrimitivePtr kPrimLoadIm2Col = std::make_shared<Primitive>("LoadIm2Col");
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if (IsPrimitiveCNode(kernel_node, kPrimLoadIm2Col)) {
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kernel_type = KernelType::AKG_KERNEL;
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} // use LoadIm2Col only for THOR optimizer
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switch (kernel_type) {
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case KernelType::AKG_KERNEL:
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AkgMetadataInfo(kernel_node, kernel_info_list);
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break;
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default:
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KernelQueryAll(kernel_node, kernel_info_list);
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break;
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}
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// check output
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FilterInvalidKernelInfo(kernel_node, kernel_info_list);
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}
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void AICPUQuery(const CNodePtr &kernel_node, std::vector<std::shared_ptr<kernel::KernelBuildInfo>> *kernel_info_list) {
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MS_EXCEPTION_IF_NULL(kernel_node);
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MS_EXCEPTION_IF_NULL(kernel_info_list);
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kernel_info_list->clear();
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AicpuMetadataInfo(kernel_node, kernel_info_list);
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FilterInvalidKernelInfo(kernel_node, kernel_info_list);
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}
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bool IsSupportedByAICPU(const AnfNodePtr &kernel_node, const KernelBuildInfoPtr &select_kernel_build_info) {
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MS_EXCEPTION_IF_NULL(kernel_node);
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MS_EXCEPTION_IF_NULL(select_kernel_build_info);
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std::vector<std::shared_ptr<kernel::KernelBuildInfo>> kernel_info_list;
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auto cnode = kernel_node->cast<CNodePtr>();
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MS_EXCEPTION_IF_NULL(cnode);
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AICPUQuery(cnode, &kernel_info_list);
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return std::any_of(kernel_info_list.begin(), kernel_info_list.end(),
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[&select_kernel_build_info](const kernel::KernelBuildInfoPtr item) {
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MS_EXCEPTION_IF_NULL(item);
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return item->IsSimilarityKernelBuildInfo(*select_kernel_build_info);
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});
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}
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bool IsSupportedByAICore(const AnfNodePtr &kernel_node, const KernelBuildInfoPtr &select_kernel_build_info) {
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MS_EXCEPTION_IF_NULL(kernel_node);
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MS_EXCEPTION_IF_NULL(select_kernel_build_info);
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std::vector<std::shared_ptr<kernel::KernelBuildInfo>> kernel_info_list;
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auto cnode = kernel_node->cast<CNodePtr>();
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MS_EXCEPTION_IF_NULL(cnode);
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TbeMetadataInfo(cnode, &kernel_info_list);
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return std::any_of(kernel_info_list.begin(), kernel_info_list.end(),
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[&select_kernel_build_info](const kernel::KernelBuildInfoPtr item) {
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MS_EXCEPTION_IF_NULL(item);
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return *item == *select_kernel_build_info;
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});
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}
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} // namespace kernel
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} // namespace mindspore
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