/** * Copyright 2019 Huawei Technologies Co., Ltd * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ #include "session/cpu_session.h" #include #include "ir/meta_tensor.h" #include "ir/anf.h" #include "kernel/kernel.h" #include "common/utils.h" #include "session/anf_runtime_algorithm.h" #include "device/kernel_runtime.h" #include "predict/predict.h" #include "kernel/cpu/cpu_kernel_factory.h" #include "device/cpu/kernel_select_cpu.h" namespace mindspore { namespace session { GraphId CPUSession::CompileGraph(const AnfNodePtrList &lst, const AnfNodePtrList &outputs) { auto graph_id = graph_sum_; auto graph = ConstructKernelGraph(lst, outputs); MS_EXCEPTION_IF_NULL(graph); MS_LOG(INFO) << "Set kernel info"; SetKernelInfo(graph.get()); predictmodel::StepConvertGraph(graph); MS_LOG(INFO) << "Build kernel"; BuildKernel(graph.get()); MS_LOG(INFO) << "Assign kernel address"; runtime_.AssignKernelAddress(graph.get()); return graph_id; } void CPUSession::RunGraph(const GraphId &graph_id, const std::vector &inputs, VectorRef *outputs) { auto &kernel_graph = graphs_[graph_id]; MS_EXCEPTION_IF_NULL(kernel_graph); MS_LOG(INFO) << "Bind input output address"; runtime_.BindInputOutput(kernel_graph.get(), inputs, outputs); MS_LOG(INFO) << "Run graph start"; predictmodel::StepConvertWeight(inputs); auto execution_order = kernel_graph->execution_order(); Reorder(&execution_order); kernel_graph->set_execution_order(execution_order); bool ret = runtime_.Run(kernel_graph.get()); if (!ret) { MS_LOG(EXCEPTION) << "Run graph failed"; } MS_LOG(INFO) << "Run graph end"; } void CPUSession::SetKernelInfo(const KernelGraph *kernel_graph) { MS_EXCEPTION_IF_NULL(kernel_graph); auto &kernel_nodes = kernel_graph->execution_order(); for (const auto &kernel_node : kernel_nodes) { MS_EXCEPTION_IF_NULL(kernel_node); device::cpu::SetKernelInfo(kernel_node); } } void CPUSession::BuildKernel(const KernelGraph *kernel_graph) { MS_EXCEPTION_IF_NULL(kernel_graph); auto &kernel_nodes = kernel_graph->execution_order(); for (const auto &kernel_node : kernel_nodes) { MS_EXCEPTION_IF_NULL(kernel_node); std::string kernel_name = AnfAlgo::GetCNodeName(kernel_node); MS_LOG(INFO) << "Cpu building operator[" << kernel_name << "]."; std::shared_ptr cpu_kernel = kernel::CPUKernelFactory::GetInstance().Create(kernel_name, kernel_node); if (cpu_kernel == nullptr) { MS_LOG(EXCEPTION) << "Operator[" << kernel_name << "] is not support."; } cpu_kernel->Init(kernel_node); AnfAlgo::SetKernelMod(cpu_kernel, kernel_node.get()); MS_LOG(INFO) << "Cpu build success operator[" << kernel_name << "]."; } } } // namespace session } // namespace mindspore