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kernel_runtime.h 8.5 kB

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  1. /**
  2. * Copyright 2019-2021 Huawei Technologies Co., Ltd
  3. *
  4. * Licensed under the Apache License, Version 2.0 (the "License");
  5. * you may not use this file except in compliance with the License.
  6. * You may obtain a copy of the License at
  7. *
  8. * http://www.apache.org/licenses/LICENSE-2.0
  9. *
  10. * Unless required by applicable law or agreed to in writing, software
  11. * distributed under the License is distributed on an "AS IS" BASIS,
  12. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  13. * See the License for the specific language governing permissions and
  14. * limitations under the License.
  15. */
  16. #ifndef MINDSPORE_CCSRC_RUNTIME_DEVICE_KERNEL_RUNTIME_H_
  17. #define MINDSPORE_CCSRC_RUNTIME_DEVICE_KERNEL_RUNTIME_H_
  18. #include <vector>
  19. #include <memory>
  20. #include <string>
  21. #include <map>
  22. #include <utility>
  23. #include <unordered_set>
  24. #include "runtime/device/device_address.h"
  25. #include "ir/tensor.h"
  26. #include "utils/convert_utils.h"
  27. #ifdef ENABLE_DEBUGGER
  28. #include "debug/debugger/debugger.h"
  29. #endif
  30. #include "backend/session/kernel_graph.h"
  31. #include "backend/session/anf_runtime_algorithm.h"
  32. #include "backend/kernel_compiler/kernel.h"
  33. #include "utils/ms_context.h"
  34. #include "runtime/device/memory_manager.h"
  35. #include "runtime/device/executor/dynamic_kernel.h"
  36. #include "ir/device_event.h"
  37. using mindspore::tensor::Tensor;
  38. using std::vector;
  39. using TensorPtr = std::shared_ptr<Tensor>;
  40. using mindspore::kernel::AddressPtr;
  41. using AddressPtrList = std::vector<mindspore::kernel::AddressPtr>;
  42. namespace mindspore {
  43. #ifndef ENABLE_DEBUGGER
  44. class Debugger;
  45. #endif
  46. namespace device {
  47. class KernelRuntime {
  48. public:
  49. KernelRuntime() = default;
  50. virtual ~KernelRuntime();
  51. virtual bool Init() = 0;
  52. virtual uint32_t GetRankId() { MS_LOG(EXCEPTION) << "Not Implement"; }
  53. virtual uint32_t GetRankSize() { MS_LOG(EXCEPTION) << "Not Implement"; }
  54. virtual void AssignMemory(session::KernelGraph *graph);
  55. void RunOpAssignMemory(const std::vector<tensor::TensorPtr> &input_tensors, session::KernelGraph *graph,
  56. const std::map<tensor::TensorPtr, session::KernelWithIndex> &tensor_to_node = {});
  57. void RunOpClearMemory(const session::KernelGraph *graph) const;
  58. void RunOpMallocPre(const session::KernelGraph &graph, const std::vector<tensor::TensorPtr> &input_tensors);
  59. static bool DumpDataEnabled();
  60. static bool DumpDataEnabledIteration();
  61. virtual bool LoadData(session::KernelGraph *graph);
  62. virtual bool Load(session::KernelGraph *graph, bool is_task_sink);
  63. virtual bool Run(session::KernelGraph *graph, bool is_task_sink) = 0;
  64. virtual bool GenDynamicKernel(const session::KernelGraph *graph) = 0;
  65. virtual bool RunDynamicKernelAsync(const session::KernelGraph *graph) = 0;
  66. bool LaunchKernels(const session::KernelGraph *graph);
  67. virtual bool LaunchKernel(const AnfNodePtr &kernel);
  68. virtual void AssignStaticMemoryInput(const session::KernelGraph *graph);
  69. virtual void AssignStaticMemoryValueNode(session::KernelGraph *graph);
  70. virtual void ClearGraphRuntimeResource(uint32_t graph_id);
  71. virtual bool SyncStream() = 0;
  72. virtual bool MemcpyAsync(void *dst, const void *src, uint64_t size, int32_t kind) = 0;
  73. virtual void ClearGlobalIdleMem() {}
  74. virtual void CreateContext() {}
  75. virtual void SetContext() {}
  76. virtual const void *context() const { return nullptr; }
  77. uint8_t *MallocMem(MemType type, size_t size, const DeviceAddressPtr &address) {
  78. return mem_manager_->MallocMem(type, size, address);
  79. }
  80. uint8_t *MallocCommunicationMemFromMemPool(size_t size) {
  81. return mem_manager_->MallocCommunicationMemFromMemPool(size);
  82. }
  83. static void GenLaunchArgs(const mindspore::kernel::KernelMod &kernel_mod, const AnfNodePtr &kernel,
  84. AddressPtrList *kernel_inputs, AddressPtrList *kernel_workspaces,
  85. AddressPtrList *kernel_outputs);
  86. // for GPU and D to impl
  87. virtual void ReleaseDeviceRes() {}
  88. void set_device_id(uint32_t device_id) { device_id_ = device_id; }
  89. uint32_t device_id() { return device_id_; }
  90. // set debugger
  91. void SetDebugger() {
  92. #if !defined(_WIN32) && !defined(_WIN64)
  93. debugger_ = Debugger::GetInstance();
  94. #endif
  95. }
  96. virtual void PreInit() {}
  97. virtual uint64_t GetAvailableMemMaxSize() const { return 0; }
  98. virtual void GenKernelEvents(const session::KernelGraph *graph);
  99. virtual std::shared_ptr<DeviceEvent> CreateDeviceEvent() { return nullptr; }
  100. virtual std::shared_ptr<DeviceEvent> CreateDeviceTimeEvent() { return nullptr; }
  101. virtual DeviceAddressType GetTargetDeviceAddressType() const = 0;
  102. virtual void *compute_stream() const { return nullptr; }
  103. virtual void *communication_stream() const { return nullptr; }
  104. void UpdateRefNodeOutputMem(const session::KernelGraph *graph);
  105. virtual DeviceAddressPtr AssignExtraStaticMem(const TensorPtr &tensor, const AnfNodePtr &node, int index);
  106. virtual void *GetModelStream(uint32_t graph_id) const { return nullptr; }
  107. protected:
  108. virtual DeviceAddressPtr CreateDeviceAddress(void *device_ptr, size_t device_size, const string &format,
  109. TypeId type_id) = 0;
  110. virtual DeviceAddressPtr CreateDeviceAddress(void *device_ptr, size_t device_size, const string &format,
  111. TypeId type_id, const KernelWithIndex &node_index) = 0;
  112. virtual bool NodeOutputDeviceAddressExist(const AnfNodePtr &node, size_t index);
  113. virtual bool KernelMemNotReuse(const AnfNodePtr &node);
  114. void AssignStaticMemory(session::KernelGraph *graph);
  115. void AssignDynamicMemory(session::KernelGraph *graph);
  116. void AssignNodeOutputMem(MemType type, const AnfNodePtr &node, int index);
  117. void AssignWorkSpaceMem(MemType type, const AnfNodePtr &node);
  118. void AssignCommunicationNodeOutputMem(MemType type, const AnfNodePtr &node);
  119. void AssignCommunicationNodeInputMem(MemType type, const AnfNodePtr &node);
  120. void AssignCommunicationNodeMem(MemType type, const AnfNodePtr &node);
  121. bool LaunchKernelWithPynativeProfiling(kernel::KernelMod *kernel_mod, const std::string &op_name,
  122. const std::vector<AddressPtr> &inputs,
  123. const std::vector<AddressPtr> &workspace,
  124. const std::vector<AddressPtr> &outputs, void *stream);
  125. virtual void KernelLaunchProfiling(const std::string &kernel_name) {}
  126. private:
  127. void AssignStaticMemoryOutput(const session::KernelGraph *graph);
  128. bool LaunchKernelMod(const session::KernelGraph &graph);
  129. void LaunchKernelEvent(const std::vector<std::vector<std::function<void()>>> &run_events, size_t index) const;
  130. void DebugStreamSync(const CNodePtr &kernel);
  131. static void GenAddrCleanLaunchArgs(const CNodePtr &cnode, AddressPtrList *kernel_inputs);
  132. void RunOpAssignInputMemory(const std::vector<tensor::TensorPtr> &input_tensors, const session::KernelGraph *graph);
  133. void RunOpAssignOutputMemory(const AnfNodePtr &kernel,
  134. const std::map<tensor::TensorPtr, session::KernelWithIndex> &tensor_to_node = {});
  135. void RunOpAssignWorkSpaceMemory(const AnfNodePtr &kernel);
  136. void RunOpAssignOutputNodeMemory(const ValuePtr &pre_output_value, session::KernelGraph *graph);
  137. void AssignValueNodeTensor(const ValueNodePtr &value_node, const ValuePtr &node_value, size_t output_idx);
  138. DeviceAddressPtr PreAssignCNodeMemory(const AnfNodePtr &anf_node, size_t index);
  139. #if ((defined ENABLE_CPU) && (!defined _WIN32))
  140. void GetFirstPSEmbeddingCache(const session::KernelGraph *graph, AnfNodePtr *const first_cache_input_index,
  141. size_t *const first_cache_size);
  142. void CheckIfSupportPSEmbeddingCache(const session::KernelGraph *graph);
  143. void CheckSparsePSEmbeddingCache(const CNodePtr &node);
  144. #endif
  145. protected:
  146. uint32_t device_id_{0};
  147. bool pynative_mode_profiling_flag_{false};
  148. #if !defined(_WIN32) && !defined(_WIN64)
  149. std::shared_ptr<Debugger> debugger_;
  150. #endif
  151. void *stream_{nullptr};
  152. void *independent_stream_{nullptr};
  153. void *communication_stream_{nullptr};
  154. std::shared_ptr<MemoryManager> mem_manager_{nullptr};
  155. std::map<uint32_t, std::vector<DynamicKernelPtr>> graph_dynamic_kernel_map_;
  156. std::map<uint32_t,
  157. std::pair<std::vector<std::vector<std::function<void()>>>, std::vector<std::vector<std::function<void()>>>>>
  158. graph_kernel_events_map_;
  159. };
  160. using KernelRuntimePtr = std::shared_ptr<KernelRuntime>;
  161. } // namespace device
  162. } // namespace mindspore
  163. #endif // MINDSPORE_CCSRC_RUNTIME_DEVICE_KERNEL_RUNTIME_H_