382 lines
14 KiB
C++
382 lines
14 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 "utils/context/context_extends.h"
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#include <map>
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#include <string>
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#include <memory>
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#include <thread>
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#include <atomic>
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#include "pybind11/pybind11.h"
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#include "utils/ms_utils.h"
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#include "utils/convert_utils_base.h"
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namespace py = pybind11;
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namespace mindspore {
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namespace context {
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#ifdef ENABLE_GE
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using mindspore::transform::DfGraphManager;
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#endif
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#ifndef NO_DLIB
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// Open tdt dataset
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bool OpenTsd(const std::shared_ptr<MsContext> &ms_context_ptr) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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if (ms_context_ptr->get_param<bool>(MS_CTX_IS_PYNATIVE_GE_INIT)) {
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return true;
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}
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if (ms_context_ptr->get_param<uint32_t>(MS_CTX_TSD_REF)) {
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MS_LOG(DEBUG) << "TDT Dataset client is already opened.";
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ms_context_ptr->increase_param<uint32_t>(MS_CTX_TSD_REF);
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return true;
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}
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auto role = common::GetEnv("MS_ROLE");
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if (strcmp(role.c_str(), "MS_SCHED") == 0 || strcmp(role.c_str(), "MS_PSERVER") == 0) {
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return true;
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}
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unsigned int device_id;
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unsigned int rank_size = 1;
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device_id = ms_context_ptr->get_param<uint32_t>(MS_CTX_DEVICE_ID);
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auto rank_size_env = common::GetEnv("RANK_SIZE");
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if (rank_size_env.empty()) {
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MS_LOG(INFO) << "Should config rank size.";
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rank_size = 1;
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} else {
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int rank_env = std::stoi(rank_size_env);
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if (rank_env <= 0) {
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MS_LOG(EXCEPTION) << "Error rank size " << rank_env << ".";
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}
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rank_size = IntToUint(rank_env);
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}
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MS_LOG(INFO) << "Device id = " << device_id << ", rank size = " << rank_size << ".";
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TDT_StatusT status = TsdOpen(device_id, rank_size);
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if (status != TDT_OK) {
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MS_LOG(EXCEPTION) << "Device " << device_id << " open tsd failed, status = " << status << ".";
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return false;
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}
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ms_context_ptr->increase_param<uint32_t>(MS_CTX_TSD_REF);
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#ifdef ENABLE_TDTQUE
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int32_t initStatus = tdt::TdtHostInit(device_id);
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if (initStatus != TDT_OK_CODE) {
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MS_LOG(EXCEPTION) << "Init tsd failed, status = " << initStatus << ".";
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return false;
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}
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ms_context_ptr->tdt_print_ = std::thread(TensorPrint());
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#endif
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MS_LOG(INFO) << "Open and init tsd successful, tsd reference = "
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<< ms_context_ptr->get_param<uint32_t>(MS_CTX_TSD_REF) << ".";
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return true;
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}
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bool CloseTsd(const std::shared_ptr<MsContext> &ms_context_ptr, bool force) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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if (ms_context_ptr->get_param<uint32_t>(MS_CTX_TSD_REF) == 0) {
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return true;
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}
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ms_context_ptr->decrease_param<uint32_t>(MS_CTX_TSD_REF);
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if (force || ms_context_ptr->get_param<uint32_t>(MS_CTX_TSD_REF) == 0) {
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ms_context_ptr->set_param<uint32_t>(MS_CTX_TSD_REF, 0);
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#ifdef ENABLE_TDTQUE
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int32_t stopStatus = tdt::TdtHostStop(KNpuLog);
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if (stopStatus != TDT_OK_CODE) {
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MS_LOG(EXCEPTION) << "Stop tsd failed, status = " << stopStatus << ".";
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return false;
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}
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py::gil_scoped_release gil_release;
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int32_t destroyStatus = tdt::TdtHostDestroy();
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if (destroyStatus != TDT_OK_CODE) {
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MS_LOG(EXCEPTION) << "Destroy tsd failed, status = " << destroyStatus << ".";
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return false;
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}
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try {
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if (ms_context_ptr->tdt_print_.joinable()) {
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MS_LOG(INFO) << "join tdt host receive process";
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ms_context_ptr->tdt_print_.join();
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}
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} catch (const std::exception &e) {
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MS_LOG(ERROR) << "tdt thread join failed: " << e.what();
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}
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#endif
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auto device_id = ms_context_ptr->get_param<uint32_t>(MS_CTX_DEVICE_ID);
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TDT_StatusT status = TsdClose(device_id);
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if (status != TDT_OK) {
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MS_LOG(EXCEPTION) << "Close tsd failed, status = " << status << ".";
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return false;
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}
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ms_context_ptr->set_param<bool>(MS_CTX_IS_PYNATIVE_GE_INIT, false);
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MS_LOG(INFO) << "Destroy and close tsd successful, status = " << status << ".";
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} else {
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MS_LOG(DEBUG) << "TDT Dataset client is used, no need to close, tsd reference = "
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<< ms_context_ptr->get_param<uint32_t>(MS_CTX_TSD_REF) << ".";
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}
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return true;
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}
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#else
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bool OpenTsd(const std::shared_ptr<MsContext> &ms_context_ptr) { return true; }
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bool CloseTsd(const std::shared_ptr<MsContext> &ms_context_ptr, bool) { return true; }
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#endif
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void SetDisableReuseMemoryFlag(std::map<std::string, std::string> *ge_options) {
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auto env_disable_reuse_memory = common::GetEnv("DISABLE_REUSE_MEMORY");
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if (!env_disable_reuse_memory.empty()) {
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(*ge_options)["ge.exec.disableReuseMemory"] = env_disable_reuse_memory;
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} else {
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(*ge_options)["ge.exec.disableReuseMemory"] = "0";
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MS_LOG(WARNING) << "DISABLE_REUSE_MEMORY is not set in ENV. Now set to default value 0";
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}
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}
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void GetGeOptions(const std::shared_ptr<MsContext> &ms_context_ptr, std::map<std::string, std::string> *ge_options) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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#ifdef ENABLE_GE
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(*ge_options)["device_id"] = "0";
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(*ge_options)["ge.exec.enableDump"] = std::to_string(ms_context_ptr->get_param<bool>(MS_CTX_ENABLE_DUMP));
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(*ge_options)["ge.exec.dumpPath"] = ms_context_ptr->get_param<std::string>(MS_CTX_SAVE_DUMP_PATH);
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(*ge_options)["ge.exec.dumpMode"] = "output";
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MS_LOG(INFO) << "The enable dump state is " << std::to_string(ms_context_ptr->get_param<bool>(MS_CTX_ENABLE_DUMP))
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<< " and save dump path is " << ms_context_ptr->get_param<std::string>(MS_CTX_SAVE_DUMP_PATH) << ".";
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(*ge_options)["ge.exec.profilingMode"] = std::to_string(ms_context_ptr->get_param<bool>(MS_CTX_ENABLE_PROFILING));
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if (ms_context_ptr->get_param<bool>(MS_CTX_ENABLE_PROFILING)) {
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(*ge_options)["ge.exec.profilingOptions"] = ms_context_ptr->get_param<std::string>(MS_CTX_PROFILING_OPTIONS);
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}
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(*ge_options)["rank_table_file"] = "";
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auto env_ddk_version = common::GetEnv("DDK_VERSION");
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if (!env_ddk_version.empty()) {
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(*ge_options)["ge.DDK_version"] = env_ddk_version;
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} else {
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(*ge_options)["ge.DDK_version"] = "1.60.T17.B830";
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}
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(*ge_options)["graphType"] = "1";
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if (ms_context_ptr->get_param<std::string>(MS_CTX_GRAPH_MEMORY_MAX_SIZE) != "0") {
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(*ge_options)["ge.graphMemoryMaxSize"] = ms_context_ptr->get_param<std::string>(MS_CTX_GRAPH_MEMORY_MAX_SIZE);
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}
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if (ms_context_ptr->get_param<std::string>(MS_CTX_VARIABLE_MEMORY_MAX_SIZE) != "0") {
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(*ge_options)["ge.variableMemoryMaxSize"] = ms_context_ptr->get_param<std::string>(MS_CTX_VARIABLE_MEMORY_MAX_SIZE);
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}
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#if ENABLE_TRAIN == 1
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(*ge_options)["ge.graphRunMode"] = "1";
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#endif
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SetDisableReuseMemoryFlag(ge_options);
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SetHcclOptions(ms_context_ptr, ge_options);
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auto env_job_id = common::GetEnv("JOB_ID");
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if (!env_job_id.empty()) {
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(*ge_options)["ge.exec.jobId"] = env_job_id;
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} else {
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(*ge_options)["ge.exec.jobId"] = "0";
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MS_LOG(WARNING) << "JOB_ID is not set in ENV. Now set to default value 0";
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}
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auto env_fe_flag = common::GetEnv("FE_FLAG");
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if (!env_fe_flag.empty()) {
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(*ge_options)["ge.feFlag"] = env_fe_flag;
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MS_LOG(INFO) << "Use FE, make sure fe lib is set in OPTION_EXEC_EXTERN_PLUGIN_PATH.";
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}
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auto env_aicpu_flag = common::GetEnv("AICPU_FLAG");
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if (!env_aicpu_flag.empty()) {
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(*ge_options)["ge.aicpuFlag"] = env_aicpu_flag;
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MS_LOG(INFO) << "Use AICPU, make sure aicpu lib is set in OPTION_EXEC_EXTERN_PLUGIN_PATH.";
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}
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auto proto_lib_path = common::GetEnv("OPTION_PROTO_LIB_PATH");
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if (!proto_lib_path.empty()) {
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char real_path[PATH_MAX] = {0};
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if (realpath(proto_lib_path.c_str(), real_path)) {
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proto_lib_path = real_path;
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(*ge_options)["ge.opsProtoLibPath"] = proto_lib_path;
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}
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} else {
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MS_LOG(WARNING) << "Set proto lib path failed!";
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}
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// Enable auto mixed precision according to the context options
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if (ms_context_ptr->get_param<bool>(MS_CTX_ENABLE_AUTO_MIXED_PRECISION)) {
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(*ge_options)["ge.exec.precision_mode"] = "allow_mix_precision";
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} else {
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(*ge_options)["ge.exec.precision_mode"] = "allow_fp32_to_fp16";
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}
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// Disable the global variable acc, only enable it whlie adding training graph in pipeline
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(*ge_options)["ge.exec.variable_acc"] = "0";
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#endif
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}
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void SetHcclOptions(const std::shared_ptr<MsContext> &ms_context_ptr, std::map<std::string, std::string> *ge_options) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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auto env_table_file = common::GetEnv("RANK_TABLE_FILE");
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auto env_rank_id = common::GetEnv("RANK_ID");
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auto env_device_id = std::to_string(ms_context_ptr->get_param<uint32_t>(MS_CTX_DEVICE_ID));
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if (!(env_table_file.empty() || env_rank_id.empty())) {
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MS_LOG(INFO) << "Initialize Ge for distribute parameter";
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MS_LOG(INFO) << "Use hccl, make sure hccl lib is set in OPTION_EXEC_EXTERN_PLUGIN_PATH.";
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auto env_hccl_flag = common::GetEnv("HCCL_FLAG");
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if (!env_hccl_flag.empty()) {
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(*ge_options)["ge.exec.hcclFlag"] = env_hccl_flag;
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}
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(*ge_options)["ge.exec.isUseHcom"] = "1";
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(*ge_options)["ge.exec.deviceId"] = env_device_id;
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(*ge_options)["ge.exec.rankId"] = env_rank_id;
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(*ge_options)["ge.exec.podName"] = env_rank_id;
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(*ge_options)["ge.exec.rankTableFile"] = env_table_file;
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(*ge_options)["ge.graphRunMode"] = "1";
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} else {
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// device id is still needed for non-distribute case
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(*ge_options)["ge.exec.deviceId"] = env_device_id;
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MS_LOG(INFO) << "No hccl mode. "
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"If use hccl, make sure [RANK_TABLE_FILE,RANK_ID,DEVICE_ID,DEPLOY_MODE] all be set in ENV.";
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}
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auto env_deploy_mode = common::GetEnv("DEPLOY_MODE");
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if (!env_deploy_mode.empty()) {
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(*ge_options)["ge.exec.deployMode"] = env_deploy_mode;
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} else {
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(*ge_options)["ge.exec.deployMode"] = "0";
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MS_LOG(WARNING) << "DEPLOY_MODE is not set in ENV. Now set to default value 0";
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}
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}
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bool InitGe(const std::shared_ptr<MsContext> &ms_context_ptr) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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#ifdef ENABLE_GE
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if (ms_context_ptr->get_param<bool>(MS_CTX_IS_PYNATIVE_GE_INIT)) {
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return true;
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}
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if (ms_context_ptr->get_param<uint32_t>(MS_CTX_GE_REF)) {
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ms_context_ptr->increase_param<uint32_t>(MS_CTX_GE_REF);
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return true;
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}
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std::map<std::string, std::string> ge_options;
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GetGeOptions(ms_context_ptr, &ge_options);
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{
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// Release GIL before calling into (potentially long-running) C++ code
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py::gil_scoped_release release;
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if (ge::GEInitialize(ge_options) != ge::GRAPH_SUCCESS) {
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MS_LOG(EXCEPTION) << "Initialize GE failed!";
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}
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}
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ms_context_ptr->increase_param<uint32_t>(MS_CTX_GE_REF);
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MS_LOG(INFO) << "Init ge successful, ge reference = " << ms_context_ptr->get_param<uint32_t>(MS_CTX_GE_REF) << ".";
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#endif
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return true;
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}
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bool PynativeInitGe(const std::shared_ptr<MsContext> &ms_context_ptr) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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if (ms_context_ptr->get_param<bool>(MS_CTX_IS_PYNATIVE_GE_INIT) ||
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ms_context_ptr->get_param<uint32_t>(MS_CTX_GE_REF) || ms_context_ptr->get_param<uint32_t>(MS_CTX_TSD_REF)) {
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return true;
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}
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(void)OpenTsd(ms_context_ptr);
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(void)InitGe(ms_context_ptr);
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ms_context_ptr->set_param(MS_CTX_IS_PYNATIVE_GE_INIT, true);
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return true;
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}
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bool FinalizeGe(const std::shared_ptr<MsContext> &ms_context_ptr, bool force) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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#ifdef ENABLE_GE
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if (ms_context_ptr->get_param<uint32_t>(MS_CTX_GE_REF) == 0) {
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return true;
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}
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ms_context_ptr->decrease_param<uint32_t>(MS_CTX_GE_REF);
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if (force || ms_context_ptr->get_param<uint32_t>(MS_CTX_GE_REF) == 0) {
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ms_context_ptr->set_param<uint32_t>(MS_CTX_GE_REF, 0);
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try {
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DfGraphManager::GetInstance().DeleteGraphRunner();
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DfGraphManager::GetInstance().DeleteGeSession();
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} catch (const std::exception &e) {
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MS_LOG(ERROR) << "Error occurred when deleting GE graph runner and session fail. Error: " << e.what();
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} catch (...) {
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std::string exName(abi::__cxa_current_exception_type()->name());
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MS_LOG(ERROR) << "Error occurred when deleting GE graph runner and session fail. Exception name: " << exName;
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}
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if (ge::GEFinalize() != ge::GRAPH_SUCCESS) {
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MS_LOG(WARNING) << "Finalize GE failed!";
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}
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ms_context_ptr->set_param<bool>(MS_CTX_IS_PYNATIVE_GE_INIT, false);
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} else {
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MS_LOG(INFO) << "Ge is used, no need to finalize, tsd reference = "
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<< ms_context_ptr->get_param<uint32_t>(MS_CTX_GE_REF) << ".";
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}
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#endif
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return true;
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}
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bool IsTsdOpened(const std::shared_ptr<MsContext> &ms_context_ptr) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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return ms_context_ptr->get_param<uint32_t>(MS_CTX_TSD_REF) > 0;
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}
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bool IsGeInited(const std::shared_ptr<MsContext> &ms_context_ptr) {
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if (ms_context_ptr == nullptr) {
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MS_LOG(EXCEPTION) << "nullptr";
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}
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return ms_context_ptr->get_param<uint32_t>(MS_CTX_GE_REF) > 0;
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}
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// Register for device type.
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struct DeviceTypeSetRegister {
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DeviceTypeSetRegister() {
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MsContext::device_type_seter([](std::shared_ptr<MsContext> &device_type_seter) {
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#ifdef ENABLE_GE
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device_type_seter.reset(new (std::nothrow) MsContext("ge", kAscendDevice));
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#elif defined(ENABLE_D)
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device_type_seter.reset(new (std::nothrow) MsContext("ms", kAscendDevice));
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#elif defined(ENABLE_GPU)
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device_type_seter.reset(new (std::nothrow) MsContext("ms", kGPUDevice));
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#else
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device_type_seter.reset(new (std::nothrow) MsContext("vm", kCPUDevice));
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#endif
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});
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}
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~DeviceTypeSetRegister() = default;
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} device_type_set_regsiter;
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} // namespace context
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} // namespace mindspore
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