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davinci_model.cc 171 kB

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  1. /**
  2. * Copyright 2019-2020 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. #include "graph/load/model_manager/davinci_model.h"
  17. #include <graph/utils/node_utils.h>
  18. #include <algorithm>
  19. #include <map>
  20. #include <utility>
  21. #include "common/debug/log.h"
  22. #include "common/formats/formats.h"
  23. #include "common/formats/utils/formats_trans_utils.h"
  24. #include "common/math/math_util.h"
  25. #include "common/op/ge_op_utils.h"
  26. #include "common/profiling/profiling_manager.h"
  27. #include "common/properties_manager.h"
  28. #include "common/scope_guard.h"
  29. #include "common/thread_pool.h"
  30. #include "framework/common/debug/ge_log.h"
  31. #include "graph/common/ge_call_wrapper.h"
  32. #include "graph/compute_graph.h"
  33. #include "graph/debug/ge_attr_define.h"
  34. #include "graph/ge_context.h"
  35. #include "graph/graph.h"
  36. #include "graph/load/model_manager/cpu_queue_schedule.h"
  37. #include "graph/load/model_manager/model_manager.h"
  38. #include "graph/load/model_manager/tbe_handle_store.h"
  39. #include "graph/manager/graph_mem_allocator.h"
  40. #include "graph/manager/graph_var_manager.h"
  41. #include "graph/manager/trans_var_data_utils.h"
  42. #include "graph/manager/util/debug.h"
  43. #include "graph/model_serialize.h"
  44. #include "graph/node.h"
  45. #include "graph/utils/graph_utils.h"
  46. #include "graph/utils/type_utils.h"
  47. #include "init/gelib.h"
  48. #include "mmpa/mmpa_api.h"
  49. #include "omm/csa_interact.h"
  50. #include "runtime/base.h"
  51. #include "runtime/dev.h"
  52. #include "runtime/event.h"
  53. #include "runtime/mem.h"
  54. #include "runtime/rt_model.h"
  55. #include "runtime/stream.h"
  56. #include "securec.h"
  57. #include "graph/common/local_context.h"
  58. #include "common/formats/utils/formats_trans_utils.h"
  59. // create std::thread, catch exceptions using try/catch
  60. #define CREATE_STD_THREAD(thread_id, func, args) \
  61. do { \
  62. try { \
  63. thread_id = std::thread(func, args); \
  64. } catch (const std::system_error &e) { \
  65. GELOGE(FAILED, "Caught system_error with code:%d, meaning:%s", e.code().value(), e.what()); \
  66. GELOGE(FAILED, "Thread creat FAIL, Please check the left resource!"); \
  67. return FAILED; \
  68. } \
  69. } while (0)
  70. namespace ge {
  71. namespace {
  72. const uint32_t kDataIndex = 0;
  73. const uint32_t kTrueBranchStreamNum = 1;
  74. const uint32_t kGetDynamicDimsCount = 1;
  75. const uint32_t kThreadNum = 16;
  76. const uint32_t kAddrLen = sizeof(void *);
  77. const int kDecimal = 10;
  78. const int kBytes = 8;
  79. const uint32_t kDataMemAlignSizeCompare = 64;
  80. const uint32_t kDumpL1FusionOpMByteSize = 2097152; // 2 * 1024 * 1024
  81. const uint32_t kDumpFlagOfL1Fusion = 0;
  82. const char *const kDefaultBatchLable = "Batch_default";
  83. const char *const kGetDynamicDimsName = "ascend_mbatch_get_dynamic_dims_node";
  84. const char *const kMultiBatchNodePostfix = "_ascend_mbatch_batch_";
  85. const int32_t kInvalidStream = -1;
  86. const uint32_t kEndOfSequence = 0x0704000a;
  87. const uint32_t kEndOfSequenceNew = 507005;
  88. const int32_t kModelAbortNormal = 0x0704000e;
  89. const int32_t kModelAbortNormalNew = 507024;
  90. inline bool IsDataOp(const std::string &node_type) {
  91. return node_type == DATA_TYPE || node_type == AIPP_DATA_TYPE || node_type == ANN_DATA_TYPE;
  92. }
  93. inline bool IsTbeTask(const OpDescPtr &op_desc) {
  94. uint32_t run_mode = static_cast<uint32_t>(domi::ImplyType::INVALID);
  95. if (!AttrUtils::GetInt(op_desc, ATTR_NAME_IMPLY_TYPE, run_mode)) {
  96. return false;
  97. }
  98. if (run_mode != static_cast<uint32_t>(domi::ImplyType::TVM)) {
  99. return false;
  100. }
  101. // Skip no_task operator, such as concat and split.
  102. bool attr_no_task = false;
  103. bool get_attr_no_task_flag = AttrUtils::GetBool(op_desc, ATTR_NAME_NOTASK, attr_no_task);
  104. if (get_attr_no_task_flag && attr_no_task) {
  105. GELOGI("Node[name:%s, type:%s] does not generate task, skip initialization.",
  106. op_desc->GetName().c_str(), op_desc->GetType().c_str());
  107. return false;
  108. }
  109. return true;
  110. }
  111. inline bool IsNoTaskAndDumpNeeded(const OpDescPtr &op_desc) {
  112. bool save_dump_info = false;
  113. (void)ge::AttrUtils::GetBool(op_desc, ATTR_NO_TASK_AND_DUMP_NEEDED, save_dump_info);
  114. return save_dump_info;
  115. }
  116. } // namespace
  117. std::mutex DavinciModel::tvm_bin_mutex_;
  118. DavinciModel::DavinciModel(int32_t priority, const std::shared_ptr<ModelListener> &listener)
  119. : weights_mem_base_(nullptr),
  120. var_mem_base_(nullptr),
  121. fixed_mem_base_(0),
  122. mem_base_(nullptr),
  123. is_inner_mem_base_(false),
  124. is_inner_weight_base_(false),
  125. is_inner_p2p_mem_base_(false),
  126. data_inputer_(nullptr),
  127. load_begin_time_(0),
  128. load_end_time_(0),
  129. time_info_(),
  130. dataInputTid(0),
  131. is_weight_mem_has_inited_(false),
  132. is_feature_map_mem_has_inited_(false),
  133. model_id_(0),
  134. runtime_model_id_(0),
  135. version_(0),
  136. ge_model_(nullptr),
  137. thread_id_(),
  138. listener_(listener),
  139. run_flg_(false),
  140. priority_(priority),
  141. rt_model_handle_(nullptr),
  142. rt_model_stream_(nullptr),
  143. is_inner_model_stream_(false),
  144. is_async_mode_(false),
  145. last_execute_mode_(INITIALIZATION),
  146. session_id_(0),
  147. device_id_(0),
  148. maxDumpOpNum_(0), data_dumper_(runtime_param_),
  149. iterator_count_(0),
  150. is_l1_fusion_enable_(false),
  151. is_first_execute_(true) {
  152. op_list_.clear();
  153. skt_info_ = {0, 0, 0, 0, nullptr, nullptr, {}, {}, {}, {}, {}, RT_KERNEL_DEFAULT, -1, 0, nullptr};
  154. }
  155. DavinciModel::~DavinciModel() {
  156. try {
  157. Status ret = data_dumper_.UnloadDumpInfo();
  158. if (ret != SUCCESS) {
  159. GELOGW("UnloadDumpInfo failed, ret: %u.", ret);
  160. }
  161. ClearTaskAddrs();
  162. GE_CHK_STATUS(ModelRunStop());
  163. op_list_.clear();
  164. tensor_name_to_fixed_addr_size_.clear();
  165. tensor_name_to_peer_output_index_.clear();
  166. GE_DELETE_NEW_SINGLE(data_inputer_);
  167. // check rt ctx is exist. rt api call will cause error log when ctx not exist
  168. rtContext_t ctx = nullptr;
  169. rtError_t rt_ret = rtCtxGetCurrent(&ctx);
  170. if (rt_ret == RT_ERROR_NONE) {
  171. UnbindTaskSinkStream();
  172. for (size_t i = 0; i < label_list_.size(); ++i) {
  173. if (label_list_[i] != nullptr) {
  174. GE_LOGW_IF(rtLabelDestroy(label_list_[i]) != RT_ERROR_NONE, "Destroy label failed, index: %zu", i);
  175. }
  176. }
  177. for (size_t i = 0; i < stream_list_.size(); ++i) {
  178. GE_LOGW_IF(rtStreamDestroy(stream_list_[i]) != RT_ERROR_NONE, "Destroy stream failed, index: %zu", i);
  179. }
  180. for (size_t i = 0; i < event_list_.size(); ++i) {
  181. GE_LOGW_IF(rtEventDestroy(event_list_[i]) != RT_ERROR_NONE, "Destroy event failed, index: %zu", i);
  182. }
  183. FreeWeightsMem();
  184. FreeFeatureMapMem();
  185. FreeP2PMem();
  186. if (l1_fusion_addr_ != nullptr) {
  187. GE_CHK_RT(rtFree(l1_fusion_addr_));
  188. }
  189. if (rt_model_handle_ != nullptr) {
  190. GE_CHK_RT(rtModelDestroy(rt_model_handle_));
  191. rt_model_handle_ = nullptr;
  192. }
  193. }
  194. OpDebugUnRegister();
  195. ReleaseTask();
  196. CleanTbeHandle();
  197. var_mem_base_ = nullptr;
  198. if (known_node_) {
  199. if (args_ != nullptr) {
  200. GE_CHK_RT(rtFree(args_));
  201. }
  202. total_io_addrs_.clear();
  203. if (fixed_addrs_ != nullptr) {
  204. GE_CHK_RT(rtFree(fixed_addrs_));
  205. }
  206. }
  207. } catch (...) {
  208. GELOGW("DavinciModel::~DavinciModel: clear op_list catch exception.");
  209. }
  210. }
  211. void DavinciModel::ClearTaskAddrs() {
  212. for (const auto &op_and_addr : saved_task_addrs_) {
  213. auto addr = op_and_addr.second;
  214. if (addr != nullptr) {
  215. GE_CHK_RT(rtFree(addr));
  216. }
  217. addr = nullptr;
  218. }
  219. saved_task_addrs_.clear();
  220. }
  221. void DavinciModel::UnbindHcomStream() {
  222. if (!all_hccl_stream_list_.empty()) {
  223. for (size_t i = 0; i < all_hccl_stream_list_.size(); i++) {
  224. GE_LOGW_IF(rtModelUnbindStream(rt_model_handle_, all_hccl_stream_list_[i]) != RT_ERROR_NONE,
  225. "Unbind hccl stream from model failed! Index: %zu", i);
  226. GE_LOGW_IF(rtStreamDestroy(all_hccl_stream_list_[i]) != RT_ERROR_NONE, "Destroy hccl stream for rt_model failed!")
  227. }
  228. }
  229. return;
  230. }
  231. void DavinciModel::ReleaseTask() {
  232. for (const auto &task : cpu_task_list_) {
  233. if (task != nullptr) {
  234. GE_CHK_STATUS(task->Release(), "Release task failed.");
  235. }
  236. }
  237. cpu_task_list_.clear();
  238. for (const auto &task : task_list_) {
  239. if (task != nullptr) {
  240. GE_CHK_STATUS(task->Release(), "Release task failed.");
  241. }
  242. }
  243. }
  244. Status DavinciModel::Assign(const GeModelPtr &ge_model) {
  245. if (ge_model == nullptr) {
  246. GELOGI("can't assign null ge_model");
  247. return FAILED;
  248. }
  249. ge_model_ = ge_model;
  250. return SUCCESS;
  251. }
  252. ///
  253. /// @ingroup ge
  254. /// @brief Reduce memory usage after task sink.
  255. /// @return: void
  256. ///
  257. void DavinciModel::Shrink() {
  258. skt_info_ = {0, 0, 0, 0, nullptr, nullptr, {}, {}, {}, {}, {}, RT_KERNEL_DEFAULT, -1, 0, nullptr};
  259. DumperShrink();
  260. ge_model_.reset(); // delete object.
  261. op_list_.clear();
  262. ClearTaskAddrs();
  263. }
  264. Status DavinciModel::InitWeightMem(void *dev_ptr, void *weight_ptr, size_t weight_size) {
  265. if (is_weight_mem_has_inited_) {
  266. GELOGE(FAILED, "call InitWeightMem more than once.");
  267. return FAILED;
  268. }
  269. is_weight_mem_has_inited_ = true;
  270. const Buffer &weights = ge_model_->GetWeight();
  271. std::size_t weights_size = weights.GetSize();
  272. GE_CHECK_LE(weights_size, ALLOC_MEMORY_MAX_SIZE);
  273. if ((weight_ptr != nullptr) && (weight_size < weights_size)) {
  274. GELOGE(FAILED, "Invalid mem param: weight_size=%zu totalsize=%zu.", weight_size, weights_size);
  275. return FAILED;
  276. }
  277. weights_mem_base_ = static_cast<uint8_t *>(dev_ptr);
  278. is_inner_weight_base_ = false;
  279. if (weights_size != 0) {
  280. weights_mem_base_ = static_cast<uint8_t *>(weight_ptr);
  281. is_inner_weight_base_ = false;
  282. if (weight_ptr == nullptr) {
  283. weights_mem_base_ = MallocWeightsMem(weights_size);
  284. if (weights_mem_base_ == nullptr) {
  285. GELOGE(ACL_ERROR_GE_MEMORY_ALLOCATION, "Alloc weight memory failed. size: %zu", weights_size);
  286. return ACL_ERROR_GE_MEMORY_ALLOCATION;
  287. }
  288. is_inner_weight_base_ = true;
  289. }
  290. GELOGI("[IMAS]InitWeightMem graph_%u MallocMemory type[W] memaddr[%p] mem_size[%zu]", runtime_param_.graph_id,
  291. weights_mem_base_, weights_size);
  292. GE_CHK_RT_RET(rtMemcpy(weights_mem_base_, weights_size, weights.GetData(), weights_size, RT_MEMCPY_HOST_TO_DEVICE));
  293. GELOGI("copy weights data to device");
  294. }
  295. runtime_param_.weight_base = weights_mem_base_;
  296. return SUCCESS;
  297. }
  298. Status DavinciModel::InitFeatureMapAndP2PMem(void *dev_ptr, size_t mem_size) {
  299. if (is_feature_map_mem_has_inited_) {
  300. GELOGE(PARAM_INVALID, "call InitFeatureMapMem more than once.");
  301. return PARAM_INVALID;
  302. }
  303. is_feature_map_mem_has_inited_ = true;
  304. std::size_t data_size = TotalMemSize();
  305. std::size_t p2p_data_size = P2PMemInfos().at(RT_MEMORY_P2P_DDR).memory_size;
  306. if ((dev_ptr != nullptr) && (mem_size < TotalMemSize())) {
  307. GELOGE(PARAM_INVALID, "Invalid mem param: mem_size=%zu totalsize=%zu.", mem_size, TotalMemSize());
  308. return PARAM_INVALID;
  309. }
  310. mem_base_ = static_cast<uint8_t *>(dev_ptr);
  311. p2p_mem_base_ = static_cast<uint8_t *>(dev_ptr);
  312. is_inner_mem_base_ = false;
  313. if (TotalMemSize() && mem_base_ == nullptr) {
  314. mem_base_ = MallocFeatureMapMem(data_size);
  315. if (mem_base_ == nullptr) {
  316. GELOGE(ACL_ERROR_GE_MEMORY_ALLOCATION, "Alloc feature map memory failed. size: %zu", data_size);
  317. return ACL_ERROR_GE_MEMORY_ALLOCATION;
  318. }
  319. GEEVENT("[IMAS]InitFeatureMapAndP2PMem graph_%u MallocMemory type[F] memaddr[%p] mem_size[%zu]",
  320. runtime_param_.graph_id, mem_base_, data_size);
  321. if (!is_inner_weight_base_) {
  322. weights_mem_base_ = mem_base_;
  323. is_inner_weight_base_ = true;
  324. }
  325. is_inner_mem_base_ = true;
  326. }
  327. if (p2p_data_size != 0) {
  328. p2p_mem_base_ = MallocP2PMem(p2p_data_size);
  329. if (p2p_mem_base_ == nullptr) {
  330. GELOGE(ACL_ERROR_GE_MEMORY_ALLOCATION, "Alloc p2p memory failed,size: %zu", p2p_data_size);
  331. return ACL_ERROR_GE_MEMORY_ALLOCATION;
  332. }
  333. GELOGI("InitFeatureMapAndP2PMem graph_%u MallocMemory type[F] memaddr[%p] mem_size[%zu]", runtime_param_.graph_id,
  334. p2p_mem_base_, p2p_data_size);
  335. is_inner_p2p_mem_base_ = true;
  336. }
  337. GE_CHK_STATUS_RET(InitVariableMem(), "Init variable memory failed.");
  338. runtime_param_.mem_base = mem_base_;
  339. runtime_param_.weight_base = weights_mem_base_;
  340. runtime_param_.memory_infos[RT_MEMORY_P2P_DDR].memory_base = p2p_mem_base_;
  341. return SUCCESS;
  342. }
  343. Status DavinciModel::InitVariableMem() {
  344. // malloc variable memory base
  345. var_mem_base_ = VarManager::Instance(session_id_)->GetVarMemoryBase(RT_MEMORY_HBM);
  346. if (TotalVarMemSize() && var_mem_base_ == nullptr) {
  347. Status ret = VarManager::Instance(session_id_)->MallocVarMemory(TotalVarMemSize());
  348. if (ret != SUCCESS) {
  349. GELOGE(ret, "Malloc variable memory failed.");
  350. return ret;
  351. }
  352. var_mem_base_ = VarManager::Instance(session_id_)->GetVarMemoryBase(RT_MEMORY_HBM);
  353. GEEVENT("[IMAS]InitVariableMem graph_%u MallocMemory type[V] memaddr[%p] mem_size[%zu]", runtime_param_.graph_id,
  354. var_mem_base_, TotalVarMemSize());
  355. }
  356. runtime_param_.var_base = var_mem_base_;
  357. return SUCCESS;
  358. }
  359. void DavinciModel::InitRuntimeParams() {
  360. int64_t value = 0;
  361. bool ret;
  362. MemInfo p2p_mem_info;
  363. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_MEMORY_SIZE, value);
  364. runtime_param_.mem_size = ret ? (uint64_t)value : 0;
  365. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_WEIGHT_SIZE, value);
  366. runtime_param_.weight_size = ret ? (uint64_t)value : 0;
  367. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_STREAM_NUM, value);
  368. runtime_param_.stream_num = ret ? (uint32_t)value : 0;
  369. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_EVENT_NUM, value);
  370. runtime_param_.event_num = ret ? (uint32_t)value : 0;
  371. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_LABEL_NUM, value);
  372. runtime_param_.label_num = ret ? (uint32_t)value : 0;
  373. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_BATCH_NUM, value);
  374. runtime_param_.batch_num = ret ? (uint32_t)value : 0;
  375. ret = ge::AttrUtils::GetInt(ge_model_, MODEL_ATTR_TASK_GEN_BASE_ADDR, value);
  376. runtime_param_.logic_mem_base = ret ? (uint64_t)value : 0;
  377. ret = ge::AttrUtils::GetInt(ge_model_, MODEL_ATTR_TASK_GEN_WEIGHT_ADDR, value);
  378. runtime_param_.logic_weight_base = ret ? (uint64_t)value : 0;
  379. ret = ge::AttrUtils::GetInt(ge_model_, ge::MODEL_ATTR_SESSION_ID, value);
  380. runtime_param_.session_id = ret ? (uint64_t)value : 0;
  381. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_TASK_GEN_VAR_ADDR, value);
  382. runtime_param_.logic_var_base = ret ? (uint64_t)value : 0;
  383. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_VAR_SIZE, value);
  384. runtime_param_.var_size = ret ? (uint64_t)value : 0;
  385. session_id_ = runtime_param_.session_id;
  386. ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_P2P_MEMORY_SIZE, value);
  387. p2p_mem_info.memory_size = ret ? (uint64_t)value : 0;
  388. runtime_param_.memory_infos[RT_MEMORY_P2P_DDR] = std::move(p2p_mem_info);
  389. GELOGI(
  390. "InitRuntimeParams(), session_id:%lu, stream_num:%u, event_num:%u, label_num:%u, "
  391. "logic_mem_base:0x%lx, logic_weight_base:0x%lx, logic_var_base:0x%lx, "
  392. "memory_size:%lu, weight_size:%lu, var_size:%lu",
  393. runtime_param_.session_id, runtime_param_.stream_num, runtime_param_.event_num, runtime_param_.label_num,
  394. runtime_param_.logic_mem_base, runtime_param_.logic_weight_base, runtime_param_.logic_var_base,
  395. runtime_param_.mem_size, runtime_param_.weight_size, runtime_param_.var_size);
  396. }
  397. void DavinciModel::CheckHasHcomOp(const ComputeGraphPtr &compute_graph) {
  398. const set<string> hcom_opp_types({
  399. HCOMBROADCAST, HCOMALLGATHER, HCOMALLREDUCE, HCOMSEND, HCOMRECEIVE, HCOMREDUCESCATTER,
  400. HVDCALLBACKALLREDUCE, HVDCALLBACKALLGATHER, HVDCALLBACKBROADCAST, HVDWAIT, HCOMREDUCE
  401. });
  402. for (const auto &node : compute_graph->GetAllNodes()) {
  403. OpDescPtr op_desc = node->GetOpDesc();
  404. GE_IF_BOOL_EXEC(op_desc == nullptr, GELOGW("Node OpDesc is nullptr"); continue);
  405. if (hcom_opp_types.count(op_desc->GetType()) > 0) {
  406. uint32_t stream_id = static_cast<uint32_t>(op_desc->GetStreamId());
  407. hcom_streams_.emplace(stream_id);
  408. GELOGD("hcom stream: %u.", stream_id);
  409. }
  410. }
  411. }
  412. ///
  413. /// @ingroup ge
  414. /// @brief Make active stream list and bind to model.
  415. /// @return: 0 for success / others for fail
  416. ///
  417. Status DavinciModel::BindModelStream() {
  418. // Stream not in active_stream_indication_ is active stream.
  419. is_stream_list_bind_ = false;
  420. if ((!input_queue_ids_.empty() || !output_queue_ids_.empty()) || (deploy_type_ == AICPU_DEPLOY_CROSS_THREAD)) {
  421. for (size_t i = 0; i < stream_list_.size(); ++i) {
  422. if (active_stream_indication_.count(i) == 0) {
  423. active_stream_list_.push_back(stream_list_[i]);
  424. active_stream_indication_.insert(i); // deactive all model stream.
  425. }
  426. }
  427. }
  428. for (size_t i = 0; i < stream_list_.size(); ++i) {
  429. if (active_stream_indication_.count(i) > 0) {
  430. GELOGI("rtModelBindStream[%zu]", i);
  431. GE_CHK_RT_RET(rtModelBindStream(rt_model_handle_, stream_list_[i], RT_INVALID_FLAG));
  432. } else {
  433. // bind rt_model_handel to all streams that relates to op
  434. GE_CHK_RT_RET(rtModelBindStream(rt_model_handle_, stream_list_[i], RT_HEAD_STREAM));
  435. }
  436. }
  437. is_stream_list_bind_ = true;
  438. return SUCCESS;
  439. }
  440. Status DavinciModel::DoTaskSink() {
  441. // task sink is supported as model_task_def is set
  442. const auto &model_task_def = ge_model_->GetModelTaskDefPtr();
  443. if (model_task_def == nullptr) {
  444. return SUCCESS;
  445. }
  446. GE_CHK_RT_RET(rtGetAicpuDeploy(&deploy_type_));
  447. GELOGI("do task_sink. AiCpu deploy type is: %x.", deploy_type_);
  448. GE_CHK_STATUS_RET(BindModelStream(), "Bind model stream failed.");
  449. if (known_node_) {
  450. GE_CHK_STATUS_RET(MallocKnownArgs(), "Mallloc known node args failed.");
  451. }
  452. GE_CHK_STATUS_RET(InitTaskInfo(*model_task_def.get()), "InitTaskInfo failed.");
  453. GE_CHK_STATUS_RET(ModelManager::GetInstance()->LaunchCustAicpuSo(), "Launch cust aicpu so failed.");
  454. GE_CHK_STATUS_RET(ModelManager::GetInstance()->CheckAicpuOpList(ge_model_), "Check aicpu op type failed.");
  455. GE_CHK_STATUS_RET(InitEntryTask(), "InitEntryTask failed.");
  456. GE_CHK_STATUS_RET(InitL1DataDumperArgs(), "InitL1DataDumperArgs failed.");
  457. GE_CHK_STATUS_RET(DistributeTask(), "Distribute failed.");
  458. GE_CHK_RT_RET(rtModelLoadComplete(rt_model_handle_));
  459. SetCopyOnlyOutput();
  460. return SUCCESS;
  461. }
  462. // set device use aicore(0) or vectorcore(1)
  463. Status DavinciModel::SetTSDevice() {
  464. int64_t value = 0;
  465. bool ret = ge::AttrUtils::GetInt(ge_model_, ATTR_MODEL_CORE_TYPE, value);
  466. uint32_t core_type = ret ? static_cast<uint32_t>(value) : 0;
  467. GELOGD("SetTSDevice: %u", core_type);
  468. rtError_t rt_ret = rtSetTSDevice(core_type);
  469. if (rt_ret != RT_ERROR_NONE) {
  470. GELOGE(RT_FAILED, "SetTSDevice failed, ret: 0x%X", rt_ret);
  471. return RT_ERROR_TO_GE_STATUS(rt_ret);
  472. }
  473. return SUCCESS;
  474. }
  475. Status DavinciModel::OpDebugRegister() {
  476. bool is_op_debug = false;
  477. (void)ge::AttrUtils::GetBool(ge_model_, ATTR_OP_DEBUG_FLAG, is_op_debug);
  478. GELOGD("The value of op debug in ge_model is %d.", is_op_debug);
  479. if (is_op_debug) {
  480. debug_reg_mutex_.lock();
  481. rtError_t rt_ret = rtMalloc(&op_debug_addr_, kOpDebugMemorySize, RT_MEMORY_DDR);
  482. if (rt_ret != RT_ERROR_NONE) {
  483. GELOGE(RT_FAILED, "rtMalloc error, ret: 0x%X", rt_ret);
  484. return RT_ERROR_TO_GE_STATUS(rt_ret);
  485. }
  486. uint64_t debug_addrs_tmp = static_cast<uint64_t>(reinterpret_cast<uintptr_t>(op_debug_addr_));
  487. // For data dump, aicpu needs the pointer to pointer that save the real debug address.
  488. rt_ret = rtMalloc(&p2p_debug_addr_, kDebugP2pSize, RT_MEMORY_HBM);
  489. if (rt_ret != RT_ERROR_NONE) {
  490. GELOGE(RT_FAILED, "rtMalloc error, ret: 0x%X", rt_ret);
  491. return RT_ERROR_TO_GE_STATUS(rt_ret);
  492. }
  493. rt_ret = rtMemcpy(p2p_debug_addr_, sizeof(uint64_t), &debug_addrs_tmp, sizeof(uint64_t), RT_MEMCPY_HOST_TO_DEVICE);
  494. if (rt_ret != RT_ERROR_NONE) {
  495. GELOGE(RT_FAILED, "rtMemcpy to p2p_addr error: 0x%X", rt_ret);
  496. return RT_ERROR_TO_GE_STATUS(rt_ret);
  497. }
  498. uint32_t op_debug_mode = 0;
  499. (void)ge::AttrUtils::GetInt(ge_model_, ATTR_OP_DEBUG_MODE, op_debug_mode);
  500. GELOGD("The value of op_debug_mode in ge_model_ is %u.", op_debug_mode);
  501. uint32_t debug_task_id = 0;
  502. uint32_t debug_stream_id = 0;
  503. rt_ret = rtDebugRegister(rt_model_handle_, op_debug_mode, op_debug_addr_, &debug_stream_id, &debug_task_id);
  504. if (rt_ret != RT_ERROR_NONE) {
  505. GELOGE(RT_FAILED, "rtDebugRegister error, ret: 0x%X", rt_ret);
  506. return RT_ERROR_TO_GE_STATUS(rt_ret);
  507. }
  508. GELOGI("debug_task_id:%d, debug_stream_id:%u", debug_task_id, debug_stream_id);
  509. is_op_debug_reg_ = true;
  510. data_dumper_.SaveOpDebugId(debug_task_id, debug_stream_id, p2p_debug_addr_, is_op_debug);
  511. }
  512. return SUCCESS;
  513. }
  514. void DavinciModel::OpDebugUnRegister() {
  515. if (is_op_debug_reg_) {
  516. debug_reg_mutex_.unlock();
  517. rtError_t rt_ret = RT_ERROR_NONE;
  518. if (rt_model_handle_ != nullptr) {
  519. GELOGD("start call debug_unregister.");
  520. rt_ret = rtDebugUnRegister(rt_model_handle_);
  521. if (rt_ret != RT_ERROR_NONE) {
  522. GELOGW("rtDebugUnRegister failed, ret: 0x%X", rt_ret);
  523. }
  524. }
  525. if (op_debug_addr_ != nullptr) {
  526. rt_ret = rtFree(op_debug_addr_);
  527. if (rt_ret != RT_ERROR_NONE) {
  528. GELOGW("rtFree failed, ret: 0x%X", rt_ret);
  529. }
  530. op_debug_addr_ = nullptr;
  531. }
  532. if (p2p_debug_addr_ != nullptr) {
  533. rt_ret = rtFree(p2p_debug_addr_);
  534. if (rt_ret != RT_ERROR_NONE) {
  535. GELOGW("rtFree failed, ret: 0x%X", rt_ret);
  536. }
  537. p2p_debug_addr_ = nullptr;
  538. }
  539. is_op_debug_reg_ = false;
  540. }
  541. return;
  542. }
  543. // initialize op sequence and call initialization function of each op respectively
  544. Status DavinciModel::Init(void *dev_ptr, size_t mem_size, void *weight_ptr, size_t weight_size) {
  545. // validating params
  546. GELOGI("Priority is %d", priority_);
  547. GE_CHK_BOOL_TRUE_EXEC_WITH_LOG(priority_ < 0 || priority_ > 7, return PARAM_INVALID,
  548. "Priority must between 0-7, now is %d", priority_);
  549. GE_CHK_BOOL_RET_STATUS(ge_model_ != nullptr, PARAM_INVALID, "GeModel is null.");
  550. Graph graph = ge_model_->GetGraph();
  551. ComputeGraphPtr compute_graph = GraphUtils::GetComputeGraph(graph);
  552. GE_CHK_BOOL_RET_STATUS(compute_graph != nullptr, INTERNAL_ERROR, "Get compute graph is nullptr.");
  553. // Initializing runtime_param_
  554. InitRuntimeParams();
  555. // RTS set aicore or vectorcore
  556. GE_CHK_STATUS_RET(SetTSDevice(), "SetTSDevice failed");
  557. version_ = ge_model_->GetVersion();
  558. name_ = ge_model_->GetName();
  559. (void)ge::AttrUtils::GetBool(ge_model_, ATTR_NAME_SWITCH_FOR_L1_FUSION, is_l1_fusion_enable_);
  560. GELOGD("The value of ge.l1Fusion in ge_model is %d.", is_l1_fusion_enable_);
  561. CheckHasHcomOp(compute_graph);
  562. vector<int64_t> huge_stream_list;
  563. (void)ge::AttrUtils::GetListInt(ge_model_, ATTR_MODEL_HUGE_STREAM_LIST, huge_stream_list);
  564. std::set<int64_t> huge_streams(huge_stream_list.begin(), huge_stream_list.end());
  565. for (uint32_t i = 0; i < StreamNum(); i++) {
  566. rtStream_t stream = nullptr;
  567. GE_MAKE_GUARD_RTSTREAM(stream);
  568. uint32_t stream_flags = RT_STREAM_PERSISTENT;
  569. if (huge_streams.find(i) != huge_streams.end()) {
  570. GELOGI("Stream %u is huge stream.", i);
  571. stream_flags |= RT_STREAM_HUGE;
  572. }
  573. if (hcom_streams_.find(i) != hcom_streams_.end()) {
  574. GE_CHK_RT_RET(rtStreamCreateWithFlags(&stream, priority_, stream_flags | RT_STREAM_FORCE_COPY));
  575. } else {
  576. GE_CHK_RT_RET(rtStreamCreateWithFlags(&stream, priority_, stream_flags));
  577. }
  578. GE_DISMISS_GUARD(stream);
  579. stream_list_.push_back(stream);
  580. int32_t rt_stream_id = kInvalidStream;
  581. (void)rtGetStreamId(stream, &rt_stream_id);
  582. GELOGI("Logical stream index:%u, stream:%p, rtstream: %d.", i, stream, rt_stream_id);
  583. }
  584. for (uint32_t i = 0; i < EventNum(); i++) {
  585. rtEvent_t rt_event;
  586. GE_CHK_RT_RET(rtEventCreate(&rt_event));
  587. event_list_.push_back(rt_event);
  588. }
  589. label_list_.resize(LabelNum(), nullptr);
  590. // create model_handle to load model
  591. GE_CHK_RT_RET(rtModelCreate(&rt_model_handle_, 0));
  592. GE_CHK_RT_RET(rtModelGetId(rt_model_handle_, &runtime_model_id_));
  593. // inference will use default graph_id 0;
  594. runtime_param_.graph_id = compute_graph->GetGraphID();
  595. // op debug register
  596. GE_CHK_STATUS_RET(OpDebugRegister(), "OpDebugRegister failed");
  597. GE_TIMESTAMP_START(TransAllVarData);
  598. GE_CHK_STATUS_RET(TransAllVarData(compute_graph, runtime_param_.graph_id), "TransAllVarData failed.");
  599. GE_TIMESTAMP_END(TransAllVarData, "GraphLoader::TransAllVarData");
  600. GE_CHK_STATUS_RET(TransVarDataUtils::CopyVarData(compute_graph, session_id_, device_id_), "copy var data failed.");
  601. GE_TIMESTAMP_START(InitModelMem);
  602. GELOGD("Known node is %d", known_node_);
  603. GE_CHK_STATUS_RET_NOLOG(InitWeightMem(dev_ptr, weight_ptr, weight_size));
  604. if (!known_node_) {
  605. GE_CHK_STATUS_RET_NOLOG(InitFeatureMapAndP2PMem(dev_ptr, mem_size));
  606. data_inputer_ = new (std::nothrow) DataInputer();
  607. GE_CHK_BOOL_RET_STATUS(data_inputer_ != nullptr, MEMALLOC_FAILED, "data_inputer_ is nullptr.");
  608. }
  609. fixed_mem_base_ = reinterpret_cast<uintptr_t>(mem_base_);
  610. GE_TIMESTAMP_END(InitModelMem, "GraphLoader::InitModelMem");
  611. for (const ge::NodePtr &node : compute_graph->GetDirectNode()) {
  612. auto op_desc = node->GetOpDesc();
  613. GE_IF_BOOL_EXEC(op_desc == nullptr, continue);
  614. GE_IF_BOOL_EXEC(op_desc->GetType() != VARIABLE, continue);
  615. GE_IF_BOOL_EXEC(IsBroadCastOpData(node),
  616. (void)ge::AttrUtils::SetStr(op_desc, VAR_ATTR_VAR_IS_BROADCAST, "var_is_restore"););
  617. }
  618. GE_CHK_STATUS_RET(InitNodes(compute_graph), "Init nodes failed");
  619. GE_TIMESTAMP_START(DoTaskSink);
  620. GE_CHK_STATUS_RET(DoTaskSink(), "Task sink failed");
  621. GE_TIMESTAMP_END(DoTaskSink, "GraphLoader::DoTaskSink");
  622. /// In zero copy model, if a aicpu operator is connected to the first or last layer, before model execution,
  623. /// the aicpu opertor needs to destroy history record, and update operator memory address.
  624. /// The model with specified aicpu operators is only marked here, and destruction is in ModelManager::ExecuteModel().
  625. need_destroy_aicpu_kernel_ = IsAicpuKernelConnectSpecifiedLayer();
  626. string fp_ceiling_mode;
  627. if (ge::AttrUtils::GetStr(ge_model_, ATTR_FP_CEILING_MODE, fp_ceiling_mode)) {
  628. GELOGI("Get attr ATTR_FP_CEILING_MODE from model, value is %s.", fp_ceiling_mode.c_str());
  629. // mode 0: Do not perform saturation processing. By default, IEEE754 is used.
  630. GE_CHK_RT_RET(rtSetCtxINFMode((fp_ceiling_mode != "0")));
  631. }
  632. // collect profiling for ge
  633. GE_CHK_STATUS_RET(InitModelProfile(), "Init model profile failed");
  634. auto &profiling_manager = ProfilingManager::Instance();
  635. if (profiling_manager.ProfilingModelLoadOn()) {
  636. Status p_ret = ReportProfilingData();
  637. if (p_ret != SUCCESS) {
  638. GELOGE(p_ret, "Report profiling data failed.");
  639. return p_ret;
  640. }
  641. }
  642. Shrink();
  643. return SUCCESS;
  644. }
  645. Status DavinciModel::ReportProfilingData() {
  646. std::vector<ComputeGraphDescInfo> compute_graph_desc_info;
  647. Status ret = GetComputeGraphInfo(compute_graph_desc_info);
  648. if (ret != SUCCESS) {
  649. GELOGE(ret, "GetComputeGraphInfo failed.");
  650. return ret;
  651. }
  652. ProfilingManager::Instance().ReportProfilingData(model_id_, GetTaskDescInfo(), compute_graph_desc_info);
  653. GE_CHK_STATUS(SinkModelProfile(), "Sink model profiler failed.");
  654. return SUCCESS;
  655. }
  656. ///
  657. /// @ingroup ge
  658. /// @brief Travel all nodes and determine if destruction is required.
  659. /// @return bool
  660. ///
  661. bool DavinciModel::IsAicpuKernelConnectSpecifiedLayer() {
  662. Graph graph = ge_model_->GetGraph();
  663. ComputeGraphPtr compute_graph = GraphUtils::GetComputeGraph(graph);
  664. auto all_nodes = compute_graph->GetAllNodes();
  665. for (auto &node : all_nodes) {
  666. GE_IF_BOOL_EXEC(node == nullptr, continue);
  667. OpDescPtr op_desc = node->GetOpDesc();
  668. GE_IF_BOOL_EXEC(op_desc == nullptr, continue);
  669. int64_t imply_type = -1;
  670. (void)ge::AttrUtils::GetInt(op_desc, ATTR_NAME_IMPLY_TYPE, imply_type);
  671. if (imply_type != static_cast<int64_t>(domi::ImplyType::AI_CPU)) {
  672. continue;
  673. }
  674. GELOGD("Current operator imply type is %ld, name is %s.", imply_type, op_desc->GetName().c_str());
  675. for (auto &in_data_anchor : node->GetAllInDataAnchors()) {
  676. GE_IF_BOOL_EXEC(in_data_anchor == nullptr, continue);
  677. auto peer_out_data_anchor = in_data_anchor->GetPeerOutAnchor();
  678. GE_IF_BOOL_EXEC(peer_out_data_anchor == nullptr, continue);
  679. auto peer_node = peer_out_data_anchor->GetOwnerNode();
  680. GE_IF_BOOL_EXEC(peer_node == nullptr, continue);
  681. auto peer_op_desc = peer_node->GetOpDesc();
  682. GE_IF_BOOL_EXEC(peer_op_desc == nullptr, continue);
  683. if (IsDataOp(peer_op_desc->GetType())) {
  684. GELOGI("Mark specified aicpu operator connected to data.");
  685. return true;
  686. }
  687. }
  688. for (auto &out_data_anchor : node->GetAllOutDataAnchors()) {
  689. GE_IF_BOOL_EXEC(out_data_anchor == nullptr, continue);
  690. auto peer_in_data_anchors = out_data_anchor->GetPeerInDataAnchors();
  691. for (auto &peer_in_data_anchor : peer_in_data_anchors) {
  692. GE_IF_BOOL_EXEC(peer_in_data_anchor == nullptr, continue);
  693. auto peer_node = peer_in_data_anchor->GetOwnerNode();
  694. GE_IF_BOOL_EXEC(peer_node == nullptr, continue);
  695. auto peer_op_desc = peer_node->GetOpDesc();
  696. GE_IF_BOOL_EXEC(peer_op_desc == nullptr, continue);
  697. if (peer_op_desc->GetType() == NETOUTPUT) {
  698. GELOGI("Mark specified aicpu operator connected to netoutput.");
  699. return true;
  700. }
  701. }
  702. }
  703. }
  704. return false;
  705. }
  706. Status DavinciModel::UpdateSessionId(uint64_t session_id) {
  707. GE_CHECK_NOTNULL(ge_model_);
  708. if (!AttrUtils::SetInt(ge_model_, MODEL_ATTR_SESSION_ID, static_cast<int64_t>(session_id))) {
  709. GELOGW("Set attr[%s] failed in updating session_id.", MODEL_ATTR_SESSION_ID.c_str());
  710. }
  711. GELOGD("Update session id: %lu.", session_id);
  712. return SUCCESS;
  713. }
  714. ///
  715. /// @ingroup ge
  716. /// @brief Travel all nodes and do some init.
  717. /// @param [in] compute_graph: ComputeGraph to load.
  718. /// @return Status
  719. ///
  720. Status DavinciModel::InitNodes(const ComputeGraphPtr &compute_graph) {
  721. uint32_t data_op_index = 0;
  722. GE_TIMESTAMP_CALLNUM_START(LoadTBEKernelBinToOpDesc);
  723. GE_TIMESTAMP_CALLNUM_START(InitTbeHandle);
  724. typedef Status (DavinciModel::*OpDescCall)(const OpDescPtr &);
  725. static std::map<std::string, OpDescCall> op_desc_handle = {
  726. {CONSTANTOP, &DavinciModel::InitConstant},
  727. {STREAMACTIVE, &DavinciModel::InitStreamActive},
  728. {STREAMSWITCH, &DavinciModel::InitStreamSwitch},
  729. {STREAMSWITCHN, &DavinciModel::InitStreamSwitchN},
  730. {LABELSET, &DavinciModel::InitLabelSet},
  731. {CASE, &DavinciModel::InitCase},
  732. };
  733. vector<OpDescPtr> output_op_list;
  734. map<uint32_t, OpDescPtr> data_by_index;
  735. map<string, OpDescPtr> variable_by_name;
  736. auto nodes = compute_graph->GetAllNodes();
  737. const CustAICPUKernelStore &aicpu_kernel_store = ge_model_->GetCustAICPUKernelStore();
  738. for (size_t i = 0; i < nodes.size(); ++i) {
  739. const auto &node = nodes.at(i);
  740. const auto &op_desc = node->GetOpDesc();
  741. GE_CHECK_NOTNULL(op_desc);
  742. op_list_[op_desc->GetId()] = op_desc;
  743. GE_TIMESTAMP_RESTART(LoadTBEKernelBinToOpDesc);
  744. aicpu_kernel_store.LoadCustAICPUKernelBinToOpDesc(op_desc);
  745. GE_TIMESTAMP_ADD(LoadTBEKernelBinToOpDesc);
  746. if (IsDataOp(op_desc->GetType())) {
  747. if (InitDataOp(compute_graph, node, data_op_index, data_by_index) != SUCCESS) {
  748. GELOGE(PARAM_INVALID, "Data init failed, Name: %s", op_desc->GetName().c_str());
  749. return PARAM_INVALID;
  750. }
  751. data_dumper_.SaveDumpInput(node);
  752. continue;
  753. }
  754. if (op_desc->GetType() == NETOUTPUT) {
  755. if (InitNetOutput(compute_graph, node, output_op_list) != SUCCESS) {
  756. GELOGE(PARAM_INVALID, "NetOutput init failed, Name: %s", op_desc->GetName().c_str());
  757. return PARAM_INVALID;
  758. }
  759. if (InitRealSizeAndShapeInfo(compute_graph, node) != SUCCESS) {
  760. GELOGE(PARAM_INVALID, "Init real size and shape failed, Name: %s", op_desc->GetName().c_str());
  761. return PARAM_INVALID;
  762. }
  763. continue;
  764. }
  765. if (op_desc->GetType() == VARIABLE) {
  766. if (InitVariable(op_desc, variable_by_name) != SUCCESS) {
  767. GELOGE(PARAM_INVALID, "Variable init failed, Name: %s", op_desc->GetName().c_str());
  768. return PARAM_INVALID;
  769. }
  770. continue;
  771. }
  772. auto it = op_desc_handle.find(op_desc->GetType());
  773. if (it != op_desc_handle.end()) {
  774. if ((this->*it->second)(op_desc) != SUCCESS) {
  775. GELOGE(PARAM_INVALID, "Node init failed, Name: %s", op_desc->GetName().c_str());
  776. return PARAM_INVALID;
  777. }
  778. continue;
  779. }
  780. // for dynamic shape with control flow
  781. SetLabelForDynamic(node);
  782. if (IsNoTaskAndDumpNeeded(op_desc)) {
  783. GELOGD("node[%s] without task, and save op_desc and addr for dump", op_desc->GetName().c_str());
  784. const RuntimeParam &rts_param = GetRuntimeParam();
  785. const vector<void *> input_data_addrs = ModelUtils::GetInputDataAddrs(rts_param, op_desc);
  786. const vector<void *> output_data_addrs = ModelUtils::GetOutputDataAddrs(rts_param, op_desc);
  787. const vector<void *> workspace_data_addrs = ModelUtils::GetWorkspaceDataAddrs(rts_param, op_desc);
  788. vector<void *> tensor_device_addrs;
  789. tensor_device_addrs.insert(tensor_device_addrs.end(), input_data_addrs.begin(), input_data_addrs.end());
  790. tensor_device_addrs.insert(tensor_device_addrs.end(), output_data_addrs.begin(), output_data_addrs.end());
  791. tensor_device_addrs.insert(tensor_device_addrs.end(), workspace_data_addrs.begin(), workspace_data_addrs.end());
  792. void *addr = nullptr;
  793. auto size = kAddrLen * tensor_device_addrs.size();
  794. GE_CHK_RT_RET(rtMalloc(&addr, size, RT_MEMORY_HBM));
  795. rtError_t rt_ret = rtMemcpy(addr, size, tensor_device_addrs.data(), size, RT_MEMCPY_HOST_TO_DEVICE);
  796. if (rt_ret != RT_ERROR_NONE) {
  797. GELOGE(RT_FAILED, "rtMemcpy error, ret: 0x%X", rt_ret);
  798. GE_CHK_RT(rtFree(addr));
  799. return RT_ERROR_TO_GE_STATUS(rt_ret);
  800. }
  801. saved_task_addrs_.emplace(op_desc, addr);
  802. }
  803. GE_TIMESTAMP_RESTART(InitTbeHandle);
  804. if (IsTbeTask(op_desc)) {
  805. Status status = InitTbeHandle(op_desc);
  806. if (status != SUCCESS) {
  807. GELOGE(status, "TBE init failed. %s", op_desc->GetName().c_str());
  808. return status;
  809. }
  810. }
  811. GE_TIMESTAMP_ADD(InitTbeHandle);
  812. }
  813. SetDataDumperArgs(compute_graph, variable_by_name);
  814. GE_TIMESTAMP_CALLNUM_END(LoadTBEKernelBinToOpDesc, "GraphLoader::LoadTBEKernelBinToOpDesc.");
  815. GE_TIMESTAMP_CALLNUM_END(InitTbeHandle, "GraphLoader::InitTbeHandle.");
  816. return GenInputOutputInfo(data_by_index, output_op_list);
  817. }
  818. void DavinciModel::SetLabelForDynamic(const NodePtr &node) {
  819. if (known_node_ && node->GetOpDesc()->GetType() == LABELSWITCHBYINDEX) {
  820. for (auto &in_data_anchor : node->GetAllInDataAnchors()) {
  821. auto peer_out_data_anchor = in_data_anchor->GetPeerOutAnchor();
  822. if (peer_out_data_anchor != nullptr) {
  823. string tensor_name = node->GetName();
  824. auto peer_node = peer_out_data_anchor->GetOwnerNode();
  825. (void)AttrUtils::SetStr(peer_node->GetOpDesc(), ATTR_DYNAMIC_SHAPE_FIXED_ADDR, tensor_name);
  826. (void)AttrUtils::SetInt(peer_node->GetOpDesc(), ATTR_DYNAMIC_SHAPE_FIXED_ADDR_INDEX, 0);
  827. tensor_name_to_peer_output_index_[tensor_name] = 0;
  828. }
  829. }
  830. }
  831. }
  832. ///
  833. /// @ingroup ge
  834. /// @brief Data Op Initialize.
  835. /// @param [in] ComputeGraphPtr: root graph of the model.
  836. /// @param [in] NodePtr: Data Op.
  837. /// @param [in/out] data_op_index: index of courrent count.
  838. /// @param [in/out] data_by_index: Data ordered by index.
  839. /// @return Status
  840. ///
  841. Status DavinciModel::InitDataOp(const ComputeGraphPtr &graph, const NodePtr &node, uint32_t &data_op_index,
  842. map<uint32_t, OpDescPtr> &data_by_index) {
  843. // op_desc Checked by Init: Data, valid.
  844. auto op_desc = node->GetOpDesc();
  845. if (node->GetOwnerComputeGraph() != graph) {
  846. GELOGI("Skip subgraph Data node: %s.", op_desc->GetName().c_str());
  847. return SUCCESS;
  848. }
  849. GELOGI("Init Data node: %s.", op_desc->GetName().c_str());
  850. auto data_index = data_op_index++;
  851. if (AttrUtils::GetInt(op_desc, ATTR_NAME_INDEX, data_index)) {
  852. GELOGD("Get new index %u, old %u", data_index, data_op_index - 1);
  853. }
  854. data_by_index[data_index] = op_desc;
  855. if (known_node_) {
  856. return SUCCESS;
  857. }
  858. // Make information for copy input data.
  859. const vector<int64_t> output_size_list = ModelUtils::GetOutputSize(op_desc);
  860. const vector<void *> virtual_addr_list = ModelUtils::GetOutputDataAddrs(runtime_param_, op_desc);
  861. const vector<int64_t> output_offset_list = op_desc->GetOutputOffset();
  862. if (output_size_list.empty() || virtual_addr_list.empty() || (output_size_list.size() != virtual_addr_list.size()) ||
  863. (output_offset_list.size() != virtual_addr_list.size())) {
  864. GELOGE(PARAM_INVALID, "Data[%s] init failed: output size is %zu, virtual_addr size is %zu, offset size is %zu.",
  865. op_desc->GetName().c_str(), output_size_list.size(), virtual_addr_list.size(), output_offset_list.size());
  866. return PARAM_INVALID;
  867. }
  868. bool fusion_flag = false;
  869. ZeroCopyOffset zero_copy_offset;
  870. int64_t data_size = output_size_list[kDataIndex];
  871. void *virtual_addr = virtual_addr_list[kDataIndex];
  872. Status ret = zero_copy_offset.InitInputDataInfo(data_size, virtual_addr, op_desc, fusion_flag);
  873. if (ret != SUCCESS) {
  874. GELOGE(PARAM_INVALID, "InitDataInfo of input_info %s failed.", op_desc->GetName().c_str());
  875. return PARAM_INVALID;
  876. }
  877. new_input_data_info_[data_index] = zero_copy_offset;
  878. for (size_t index = 0; index < virtual_addr_list.size(); ++index) {
  879. void *addr = virtual_addr_list.at(index);
  880. if (new_input_outside_addrs_.find(addr) != new_input_outside_addrs_.end()) {
  881. continue;
  882. }
  883. zero_copy_offset.SetInputOutsideAddrs(output_offset_list, addr, index, fusion_flag, real_virtual_addrs_);
  884. new_input_outside_addrs_[addr] = zero_copy_offset;
  885. }
  886. return SUCCESS;
  887. }
  888. ///
  889. /// @ingroup ge
  890. /// @brief Sort Data op list by index.
  891. /// @param [in] data_by_index: map of Data Op.
  892. /// @param [in] output_op_list: list of NetOutput op.
  893. /// @return Status
  894. ///
  895. Status DavinciModel::GenInputOutputInfo(const map<uint32_t, OpDescPtr> &data_by_index,
  896. const vector<OpDescPtr> &output_op_list) {
  897. GELOGD("Data node size: %zu, NetOutput node size: %zu", data_by_index.size(), output_op_list.size());
  898. for (auto &item : data_by_index) {
  899. const auto output_addrs = ModelUtils::GetOutputDataAddrs(runtime_param_, item.second);
  900. GELOGD("Data node: %s, output addr size: %zu", item.second->GetName().c_str(), output_addrs.size());
  901. input_addrs_list_.emplace_back(output_addrs);
  902. GE_CHK_STATUS_RET(InitAippInfo(item.first, item.second), "Init AIPP Info failed");
  903. GE_CHK_STATUS_RET(InitAippType(item.first, item.second, data_by_index), "Init AIPP Type failed");
  904. GE_CHK_STATUS_RET(InitOrigInputInfo(item.first, item.second), "Init Orig input failed");
  905. GE_CHK_STATUS_RET(InitAippInputOutputDims(item.first, item.second), "Init AIPP dims failed");
  906. GE_CHK_STATUS_RET(InitInputDescInfo(item.second), "Init input desc info failed");
  907. if (item.second->GetType() == AIPP_DATA_TYPE) {
  908. GELOGI("This is dynamic aipp model, Node: %s", item.second->GetName().c_str());
  909. is_dynamic_aipp_ = true;
  910. }
  911. }
  912. vector<string> out_node_name;
  913. (void)AttrUtils::GetListStr(ge_model_, ATTR_MODEL_OUT_NODES_NAME, out_node_name);
  914. GELOGD("Output node size: %zu, out nodes name: %zu", output_op_list.size(), out_node_name.size());
  915. for (const auto &op_desc : output_op_list) {
  916. const auto input_addrs = ModelUtils::GetInputDataAddrs(runtime_param_, op_desc);
  917. GELOGD("NetOutput node: %s, input addr size: %zu", op_desc->GetName().c_str(), input_addrs.size());
  918. output_addrs_list_.emplace_back(input_addrs);
  919. bool getnext_sink_dynamic = false;
  920. if (AttrUtils::GetBool(op_desc, ATTR_GETNEXT_SINK_DYNMAIC, getnext_sink_dynamic) && getnext_sink_dynamic) {
  921. GELOGI("ATTR_GETNEXT_SINK_DYNMAIC has been set and is true, node: %s", op_desc->GetName().c_str());
  922. is_getnext_sink_dynamic_ = true;
  923. }
  924. vector<string> shape_info;
  925. if (AttrUtils::GetListStr(op_desc, ATTR_NAME_DYNAMIC_OUTPUT_DIMS, shape_info)) {
  926. dynamic_output_shape_info_.insert(dynamic_output_shape_info_.end(), shape_info.begin(), shape_info.end());
  927. }
  928. if (InitOutputTensorInfo(op_desc) != SUCCESS) {
  929. return INTERNAL_ERROR;
  930. }
  931. GE_CHK_STATUS_RET(InitOutputDescInfo(op_desc, out_node_name), "Init output desc info failed");
  932. }
  933. return SUCCESS;
  934. }
  935. bool DavinciModel::IsGetNextSinkDynamic(const OpDescPtr &op_desc) {
  936. bool getnext_sink_dynamic = false;
  937. if (ge::AttrUtils::GetBool(op_desc, ATTR_GETNEXT_SINK_DYNMAIC, getnext_sink_dynamic) && getnext_sink_dynamic) {
  938. GELOGI("ATTR_GETNEXT_SINK_DYNMAIC has been set and is true.");
  939. return true;
  940. }
  941. return false;
  942. }
  943. /// @ingroup ge
  944. /// @brief NetOutput Op Initialize.
  945. /// @param [in] ComputeGraphPtr: root graph of the model.
  946. /// @param [in] NodePtr: NetOutput Op.
  947. /// @param [in/out] vector<OpDescPtr>: All NetOutput node in model.
  948. /// @return Status
  949. Status DavinciModel::InitNetOutput(const ComputeGraphPtr &graph, const NodePtr &node,
  950. vector<OpDescPtr> &output_op_list) {
  951. // node->GetOpDesc Checked by Init: NetOutput, valid.
  952. auto op_desc = node->GetOpDesc();
  953. // excludes the function op sub graph, e.g. case,if
  954. if (node->GetOwnerComputeGraph() != graph) {
  955. GELOGI("Skip subgraph NetOutput node: %s.", op_desc->GetName().c_str());
  956. op_list_.erase(op_desc->GetId());
  957. return SUCCESS;
  958. }
  959. GELOGI("Init NetOutput node: %s.", op_desc->GetName().c_str());
  960. output_op_list.push_back(op_desc);
  961. if (known_node_) {
  962. return SUCCESS;
  963. }
  964. // Make information for copy output data.
  965. const vector<int64_t> input_size_list = ModelUtils::GetInputSize(op_desc);
  966. const vector<void *> virtual_addr_list = ModelUtils::GetInputDataAddrs(runtime_param_, op_desc);
  967. const vector<int64_t> input_offset_list = op_desc->GetInputOffset();
  968. GE_IF_BOOL_EXEC(input_offset_list.size() != virtual_addr_list.size(),
  969. GELOGE(PARAM_INVALID, "virtual_addr size should be equal to offset size."); return PARAM_INVALID;);
  970. if (input_size_list.empty() && virtual_addr_list.empty()) {
  971. GELOGI("NetOutput[%s] is empty.", op_desc->GetName().c_str());
  972. return SUCCESS;
  973. }
  974. if (input_size_list.empty() || input_size_list.size() != virtual_addr_list.size()) {
  975. GELOGE(PARAM_INVALID, "NetOutput[%s] init failed: Input size is %zu, Input addr is %zu", op_desc->GetName().c_str(),
  976. input_size_list.size(), virtual_addr_list.size());
  977. return PARAM_INVALID;
  978. }
  979. size_t num = new_output_data_info_.size();
  980. bool fusion_flag = false;
  981. size_t input_count = input_size_list.size();
  982. is_getnext_sink_dynamic_ = false;
  983. if (IsGetNextSinkDynamic(op_desc)) {
  984. input_count = input_size_list.size() - kGetDynamicDimsCount;
  985. is_getnext_sink_dynamic_ = true;
  986. }
  987. for (size_t idx = 0; idx < input_count; ++idx) {
  988. ZeroCopyOffset zero_copy_offset;
  989. Status ret = zero_copy_offset.InitOutputDataInfo(input_size_list, virtual_addr_list, op_desc, idx, fusion_flag);
  990. GE_IF_BOOL_EXEC(ret != SUCCESS, GELOGE(PARAM_INVALID, "InitDataInfo of input_info %s failed.",
  991. op_desc->GetName().c_str()); return PARAM_INVALID;);
  992. new_output_data_info_[num + idx] = zero_copy_offset;
  993. void *addr = virtual_addr_list.at(idx);
  994. int64_t input_offset = input_offset_list.at(idx);
  995. vector<void *> tensor_addrs;
  996. zero_copy_offset.SetOutputOutsideAddrs(input_offset, fusion_flag, addr, tensor_addrs);
  997. auto rslt = new_output_outside_addrs_.insert(std::pair<void *, ZeroCopyOffset>(addr, zero_copy_offset));
  998. if (!rslt.second) {
  999. GELOGI("same output_tensor_addr %p to different input_tensor of %s", addr, op_desc->GetName().c_str());
  1000. DisableZeroCopy(addr);
  1001. }
  1002. for (size_t i = 0; i < tensor_addrs.size(); ++i) {
  1003. void *real_addr = tensor_addrs.at(i);
  1004. DisableZeroCopy(real_addr);
  1005. real_virtual_addrs_.insert(real_addr);
  1006. }
  1007. }
  1008. return SUCCESS;
  1009. }
  1010. Status DavinciModel::InitRealSizeAndShapeInfo(const ComputeGraphPtr &compute_graph, const NodePtr &node) {
  1011. if (node->GetName().find(kMultiBatchNodePostfix) != string::npos) {
  1012. GELOGD("No need to get size and shape of netoutput in subgraph.");
  1013. return SUCCESS;
  1014. }
  1015. GELOGD("Start init real size and shape info of %s.", node->GetName().c_str());
  1016. GetAllGearsInfo(node);
  1017. if (is_getnext_sink_dynamic_) {
  1018. GE_IF_BOOL_EXEC(GetGetDynamicDimsNodeInfo(node) != SUCCESS,
  1019. GELOGE(PARAM_INVALID, "Failed to get info of getdynamicdims node."); return PARAM_INVALID;);
  1020. }
  1021. if (is_online_infer_dynamic_) {
  1022. GE_IF_BOOL_EXEC(GetGearAndRealOutSizeInfo(compute_graph, node) != SUCCESS,
  1023. GELOGE(PARAM_INVALID, "Failed to get gear and real out size info."); return PARAM_INVALID;);
  1024. GE_IF_BOOL_EXEC(GetGearAndRealOutShapeInfo(compute_graph, node) != SUCCESS,
  1025. GELOGE(PARAM_INVALID, "Failed to get gear and real out shape info."); return PARAM_INVALID;);
  1026. }
  1027. return SUCCESS;
  1028. }
  1029. void DavinciModel::GetAllGearsInfo(const NodePtr &node) {
  1030. is_online_infer_dynamic_ = false;
  1031. all_gears_info_.clear();
  1032. std::string shapes;
  1033. (void) AttrUtils::GetStr(node->GetOpDesc(), ATTR_ALL_GEARS_INFO, shapes);
  1034. if (!shapes.empty()) {
  1035. is_online_infer_dynamic_ = true;
  1036. std::vector<std::string> shape_strs = ge::StringUtils::Split(shapes, ';');
  1037. for (const auto &shape_str : shape_strs) {
  1038. if (shape_str.empty()) {
  1039. continue;
  1040. }
  1041. std::vector<int32_t> gear_info;
  1042. std::vector<std::string> dims = ge::StringUtils::Split(shape_str, ',');
  1043. for (const auto &dim : dims) {
  1044. if (dim.empty()) {
  1045. continue;
  1046. }
  1047. gear_info.emplace_back(std::strtol(dim.c_str(), nullptr, kDecimal));
  1048. }
  1049. if (!gear_info.empty()) {
  1050. all_gears_info_.emplace_back(gear_info);
  1051. GELOGD("Init all gears info from %s, gaer info is %s.", node->GetName().c_str(),
  1052. formats::JoinToString(gear_info).c_str());
  1053. }
  1054. }
  1055. }
  1056. }
  1057. Status DavinciModel::GetGetDynamicDimsNodeInfo(const NodePtr &node) {
  1058. GE_CHECK_NOTNULL(node->GetOpDesc());
  1059. size_t input_count = node->GetAllInDataAnchors().size();
  1060. GELOGI("input_anchor count of %s is %zu.", node->GetName().c_str(), input_count);
  1061. size_t get_dynamic_dims_index = input_count - kGetDynamicDimsCount;
  1062. auto in_anchor = node->GetAllInDataAnchors().at(get_dynamic_dims_index);
  1063. auto peer_out_anchor = in_anchor->GetPeerOutAnchor();
  1064. if (peer_out_anchor == nullptr) {
  1065. GELOGE(PARAM_INVALID, "Out anchor of getdynmaicdims node should not be nullptr.");
  1066. return PARAM_INVALID;
  1067. }
  1068. auto peer_node = peer_out_anchor->GetOwnerNode();
  1069. auto op_desc = peer_node->GetOpDesc();
  1070. GE_CHECK_NOTNULL(op_desc);
  1071. if (op_desc->GetName() == kGetDynamicDimsName && op_desc->GetType() == GETDYNAMICDIMS) {
  1072. GELOGD("Start get info of %s.", op_desc->GetName().c_str());
  1073. auto input_addr = ModelUtils::GetInputDataAddrs(runtime_param_, node->GetOpDesc());
  1074. auto input_size = ModelUtils::GetInputSize(node->GetOpDesc());
  1075. if (input_addr.empty() || input_size.empty()) {
  1076. GELOGE(PARAM_INVALID, "Not set output of %s", op_desc->GetName().c_str());
  1077. return PARAM_INVALID;
  1078. }
  1079. auto input_desc = node->GetOpDesc()->GetInputDescPtr(get_dynamic_dims_index);
  1080. GE_CHECK_NOTNULL(input_desc);
  1081. if (input_desc->GetShape().GetDims().empty()) {
  1082. GELOGE(PARAM_INVALID, "Not set output desc shape of %s.", op_desc->GetName().c_str());
  1083. return PARAM_INVALID;
  1084. }
  1085. netoutput_last_input_addr_ = input_addr[get_dynamic_dims_index];
  1086. netoutput_last_input_size_ = input_size[get_dynamic_dims_index];
  1087. shape_of_cur_dynamic_dims_ = input_desc->GetShape().GetDims().at(0);
  1088. GELOGD("Shape of cur dynamic dims is %zu, size is %ld, addr is %p.", shape_of_cur_dynamic_dims_,
  1089. netoutput_last_input_size_, netoutput_last_input_addr_);
  1090. }
  1091. return SUCCESS;
  1092. }
  1093. Status DavinciModel::GetGearAndRealOutSizeInfo(const ComputeGraphPtr &graph, const NodePtr &node) {
  1094. GELOGD("Start get gear and real output size info of %s.", node->GetName().c_str());
  1095. merge_nodes_gear_and_real_out_size_info_.clear();
  1096. size_t idx = 0;
  1097. for (const auto &in_anchor : node->GetAllInDataAnchors()) {
  1098. auto peer_out_anchor = in_anchor->GetPeerOutAnchor();
  1099. if (peer_out_anchor == nullptr) {
  1100. continue;
  1101. }
  1102. auto peer_node = peer_out_anchor->GetOwnerNode();
  1103. auto op_desc = peer_node->GetOpDesc();
  1104. GE_CHECK_NOTNULL(op_desc);
  1105. if ((peer_node->GetType() == CASE) && (op_desc->HasAttr(ATTR_INSERT_BY_MBATCH))) {
  1106. if (GetRealOutputSizeOfCase(graph, idx, peer_node) != SUCCESS) {
  1107. GELOGE(PARAM_INVALID, "Get real output size of %s failed.", peer_node->GetName().c_str());
  1108. return PARAM_INVALID;
  1109. }
  1110. }
  1111. idx++;
  1112. }
  1113. return SUCCESS;
  1114. }
  1115. Status DavinciModel::GetRealOutputSizeOfCase(const ComputeGraphPtr &graph, size_t input_index,
  1116. const NodePtr &case_node) {
  1117. GELOGD("Start get output size of %s, which is %zu input to netoutput.", case_node->GetName().c_str(), input_index);
  1118. const auto &func_desc = case_node->GetOpDesc();
  1119. GE_CHECK_NOTNULL(func_desc);
  1120. std::map<vector<int32_t>, int64_t> gear_and_real_out_size_info;
  1121. for (const auto &name : func_desc->GetSubgraphInstanceNames()) {
  1122. const auto &subgraph = graph->GetSubgraph(name);
  1123. if (subgraph == nullptr) {
  1124. GELOGE(GE_GRAPH_EMPTY_SUBGRAPH, "Subgraph not found, name: %s.", name.c_str());
  1125. return GE_GRAPH_EMPTY_SUBGRAPH;
  1126. }
  1127. for (auto &node : subgraph->GetDirectNode()) {
  1128. if (node->GetType() == NETOUTPUT) {
  1129. auto op_desc = node->GetOpDesc();
  1130. GE_CHECK_NOTNULL(op_desc);
  1131. string batch_label;
  1132. if (AttrUtils::GetStr(op_desc, ATTR_NAME_BATCH_LABEL, batch_label)) {
  1133. size_t batch_index = static_cast<size_t>(stoi(batch_label.substr(batch_label.rfind('_') + 1)));
  1134. GELOGD("Batch index of %s is %zu.", op_desc->GetName().c_str(), batch_index);
  1135. if (batch_index > all_gears_info_.size()) {
  1136. GELOGE(PARAM_INVALID, "The value of ATTR_NAME_BATCH_LABEL is invalid.");
  1137. return PARAM_INVALID;
  1138. }
  1139. const vector<int64_t> input_size_list = ModelUtils::GetInputSize(op_desc);
  1140. auto tensor_desc = op_desc->GetInputDescPtr(input_index);
  1141. GE_CHECK_NOTNULL(tensor_desc);
  1142. int64_t data_size = 0;
  1143. if (TensorUtils::GetTensorSizeInBytes(*tensor_desc, data_size) != GRAPH_SUCCESS) {
  1144. GELOGE(FAILED, "Get tensor size in bytes failed.");
  1145. return FAILED;
  1146. }
  1147. gear_and_real_out_size_info[all_gears_info_[batch_index]] = data_size;
  1148. GELOGD("Get real gear index is: %zu, gear info is %s, size is %ld, tensor size is %ld",
  1149. batch_index, formats::JoinToString(all_gears_info_[batch_index]).c_str(),
  1150. input_size_list[input_index], data_size);
  1151. }
  1152. break;
  1153. }
  1154. }
  1155. }
  1156. merge_nodes_gear_and_real_out_size_info_[input_index] = gear_and_real_out_size_info;
  1157. return SUCCESS;
  1158. }
  1159. Status DavinciModel::GetGearAndRealOutShapeInfo(const ComputeGraphPtr &graph, const NodePtr &node) {
  1160. GELOGD("Start to get dynamic output dims of %s.", node->GetName().c_str());
  1161. merge_nodes_gear_and_real_out_shape_info_.clear();
  1162. size_t idx = 0;
  1163. for (const auto &in_anchor : node->GetAllInDataAnchors()) {
  1164. auto peer_out_anchor = in_anchor->GetPeerOutAnchor();
  1165. if (peer_out_anchor == nullptr) {
  1166. continue;
  1167. }
  1168. auto peer_node = peer_out_anchor->GetOwnerNode();
  1169. auto op_desc = peer_node->GetOpDesc();
  1170. GE_CHECK_NOTNULL(op_desc);
  1171. if ((peer_node->GetType() == CASE) && (op_desc->HasAttr(ATTR_INSERT_BY_MBATCH))) {
  1172. std::vector<std::string> dynamic_output_shape_info;
  1173. if (!AttrUtils::GetListStr(node->GetOpDesc(), ATTR_NAME_DYNAMIC_OUTPUT_DIMS, dynamic_output_shape_info)) {
  1174. GELOGD("Can not get dynamic output dims attr from %s.", node->GetName().c_str());
  1175. return SUCCESS;
  1176. }
  1177. GELOGI("Dynamic output shape info is %s", formats::JoinToString(dynamic_output_shape_info).c_str());
  1178. std::vector<vector<int64_t>> dynamic_output_shape;
  1179. ParseDynamicOutShape(dynamic_output_shape_info, dynamic_output_shape);
  1180. std::map<vector<int32_t>, vector<int64_t>> gear_and_real_out_shape_info;
  1181. for (auto &it : dynamic_output_shape) {
  1182. auto gear_index = static_cast<size_t>(it[0]);
  1183. if (gear_index > all_gears_info_.size()) {
  1184. GELOGE(PARAM_INVALID, "The value of cur index: %zu is invalid.", static_cast<size_t>(it[0]));
  1185. return PARAM_INVALID;
  1186. }
  1187. if (static_cast<size_t>(it[1]) == idx) {
  1188. vector<int64_t> output_shape;
  1189. for (size_t i = 2; i < it.size(); ++i) {
  1190. output_shape.emplace_back(it[i]);
  1191. }
  1192. gear_and_real_out_shape_info[all_gears_info_[gear_index]] = output_shape;
  1193. GELOGD("Get real gear index is: %zu, gear info is %s, output shape is %s.",
  1194. gear_index, formats::JoinToString(all_gears_info_[gear_index]).c_str(),
  1195. formats::JoinToString(output_shape).c_str());
  1196. }
  1197. }
  1198. merge_nodes_gear_and_real_out_shape_info_[idx] = gear_and_real_out_shape_info;
  1199. }
  1200. idx++;
  1201. }
  1202. return SUCCESS;
  1203. }
  1204. void DavinciModel::ParseDynamicOutShape(const std::vector<std::string> &str_info,
  1205. std::vector<vector<int64_t>> &vec_info) {
  1206. for (size_t i = 0; i < str_info.size(); ++i) {
  1207. std::vector<int64_t> shape;
  1208. std::vector<std::string> dims = ge::StringUtils::Split(str_info[i], ',');
  1209. for (const auto &dim : dims) {
  1210. if (dim.empty()) {
  1211. continue;
  1212. }
  1213. shape.emplace_back(std::strtol(dim.c_str(), nullptr, kDecimal));
  1214. }
  1215. GELOGI("Shape from attr is %s.", formats::JoinToString(shape).c_str());
  1216. vec_info.emplace_back(shape);
  1217. }
  1218. }
  1219. /// @ingroup ge
  1220. /// @brief LabelSet Op Initialize.
  1221. /// @param [in] op_desc: LabelSet Op descriptor.
  1222. /// @return Status
  1223. Status DavinciModel::InitLabelSet(const OpDescPtr &op_desc) {
  1224. uint32_t label_index = 0;
  1225. if (!AttrUtils::GetInt(op_desc, ATTR_NAME_LABEL_SWITCH_INDEX, label_index)) {
  1226. GELOGE(INTERNAL_ERROR, "InitLabelSet: %s attr [%s] not exist.", op_desc->GetName().c_str(),
  1227. ATTR_NAME_LABEL_SWITCH_INDEX.c_str());
  1228. return INTERNAL_ERROR;
  1229. }
  1230. if (label_index >= LabelNum()) {
  1231. GELOGE(INTERNAL_ERROR, "InitLabelSet: label index: %u >= label size: %u.", label_index, LabelNum());
  1232. return INTERNAL_ERROR;
  1233. }
  1234. if (label_id_indication_.count(label_index) > 0) {
  1235. GELOGE(INTERNAL_ERROR, "InitLabelSet: %s label index: %u already used.", op_desc->GetName().c_str(), label_index);
  1236. return INTERNAL_ERROR;
  1237. }
  1238. rtStream_t stream = nullptr;
  1239. uint32_t stream_id = static_cast<uint32_t>(op_desc->GetStreamId());
  1240. if (stream_list_.size() == 1) {
  1241. stream = stream_list_[0];
  1242. } else if (stream_list_.size() > stream_id) {
  1243. stream = stream_list_[stream_id];
  1244. } else {
  1245. GELOGE(INTERNAL_ERROR, "InitLabelSet: stream index: %u >= stream size: %zu.", stream_id, stream_list_.size());
  1246. return INTERNAL_ERROR;
  1247. }
  1248. rtLabel_t rt_label = nullptr;
  1249. rtError_t rt_error = rtLabelCreateEx(&rt_label, stream);
  1250. if (rt_error != RT_ERROR_NONE || rt_label == nullptr) {
  1251. GELOGE(INTERNAL_ERROR, "InitLabelSet: %s create label failed, error=0x%x.", op_desc->GetName().c_str(), rt_error);
  1252. return INTERNAL_ERROR;
  1253. }
  1254. GELOGI("InitLabelSet: label[%u]=%p stream[%u]=%p.", label_index, rt_label, stream_id, stream);
  1255. label_id_indication_.insert(label_index);
  1256. label_list_[label_index] = rt_label;
  1257. return SUCCESS;
  1258. }
  1259. Status DavinciModel::InitVariable(const OpDescPtr &op_desc, map<string, OpDescPtr> &variable_by_name) {
  1260. if (op_desc->GetName() == NODE_NAME_GLOBAL_STEP) {
  1261. const auto output_sizes = ModelUtils::GetOutputSize(op_desc);
  1262. if (!output_sizes.empty()) {
  1263. global_step_size_ = output_sizes[0];
  1264. }
  1265. const auto output_addrs = ModelUtils::GetOutputDataAddrs(runtime_param_, op_desc);
  1266. if (!output_addrs.empty()) {
  1267. global_step_addr_ = output_addrs[0];
  1268. }
  1269. }
  1270. if (op_desc->HasAttr(VAR_ATTR_VAR_IS_BROADCAST)) {
  1271. broadcast_variable_[op_desc->GetName()] = op_desc->GetOutputDesc(0);
  1272. }
  1273. variable_by_name[op_desc->GetName()] = op_desc;
  1274. return SUCCESS;
  1275. }
  1276. /// @ingroup ge
  1277. /// @brief ACL case, Load task list with queue.
  1278. /// @param [in] input_queue_ids: input queue ids from user, nums equal Data Op.
  1279. /// @param [in] output_queue_ids: input queue ids from user, nums equal NetOutput Op.
  1280. /// @return: 0 for success / others for failed
  1281. Status DavinciModel::SetQueIds(const std::vector<uint32_t> &input_queue_ids,
  1282. const std::vector<uint32_t> &output_queue_ids) {
  1283. if (input_queue_ids.empty() && output_queue_ids.empty()) {
  1284. GELOGE(ACL_ERROR_GE_EXEC_MODEL_QUEUE_ID_INVALID, "Param is empty");
  1285. return ACL_ERROR_GE_EXEC_MODEL_QUEUE_ID_INVALID;
  1286. }
  1287. input_queue_ids_ = input_queue_ids;
  1288. output_queue_ids_ = output_queue_ids;
  1289. return SUCCESS;
  1290. }
  1291. ///
  1292. /// @ingroup ge
  1293. /// @brief ACL case, Load task list with queue.
  1294. /// @param [in] input_que_ids: input queue ids from user, nums equal Data Op.
  1295. /// @param [in] output_que_ids: input queue ids from user, nums equal NetOutput Op.
  1296. /// @return: 0 for success / others for failed
  1297. ///
  1298. Status DavinciModel::LoadWithQueue() {
  1299. if (input_queue_ids_.empty() && output_queue_ids_.empty()) {
  1300. return SUCCESS;
  1301. }
  1302. if (input_queue_ids_.size() != new_input_data_info_.size()) {
  1303. GELOGE(ACL_ERROR_GE_EXEC_MODEL_QUEUE_ID_INVALID, "Input queue ids not match model: input_queue=%zu input_data=%zu",
  1304. input_queue_ids_.size(), new_input_data_info_.size());
  1305. return ACL_ERROR_GE_EXEC_MODEL_QUEUE_ID_INVALID;
  1306. }
  1307. if (output_queue_ids_.size() != new_output_data_info_.size()) {
  1308. GELOGE(ACL_ERROR_GE_EXEC_MODEL_QUEUE_ID_INVALID,
  1309. "Output queue ids not match model: output_queue=%zu output_data=%zu",
  1310. output_queue_ids_.size(), new_output_data_info_.size());
  1311. return ACL_ERROR_GE_EXEC_MODEL_QUEUE_ID_INVALID;
  1312. }
  1313. GE_CHK_STATUS_RET(AddHeadStream(), "Add head stream failed.");
  1314. // Binding input_queue and Data Op.
  1315. GE_CHK_STATUS_RET(BindInputQueue(), "Launch bind input queue failed.");
  1316. GE_CHK_STATUS_RET(CpuTaskModelZeroCopy(input_mbuf_list_, new_input_outside_addrs_), "Launch zero copy failed.");
  1317. // Binding output_queue and NetOutput Op.
  1318. GE_CHK_STATUS_RET(BindOutputQueue(), "Launch bind output queue failed.");
  1319. GE_CHK_STATUS_RET(CpuTaskModelZeroCopy(output_mbuf_list_, new_output_outside_addrs_), "Launch zero copy failed.");
  1320. GE_CHK_STATUS_RET(CpuActiveStream(), "Launch active entry stream failed.");
  1321. GE_CHK_STATUS_RET(CpuWaitEndGraph(), "Launch wait end graph failed.");
  1322. GE_CHK_STATUS_RET(BindEnqueue(), "Launch enqueue failed.");
  1323. GE_CHK_STATUS_RET(CpuModelRepeat(), "Launch model repeat failed.");
  1324. return SUCCESS;
  1325. }
  1326. /// @ingroup ge
  1327. /// @brief queue schedule, Bind input queue to Data output address.
  1328. /// @return: 0 for success / others for failed
  1329. Status DavinciModel::BindInputQueue() {
  1330. // Caller checked: input_queue_ids_.size() == input_size_list_.size() != input_addr_list_.size()
  1331. for (size_t i = 0; i < input_queue_ids_.size(); ++i) {
  1332. auto it = new_input_data_info_.find(i);
  1333. if (it == new_input_data_info_.end()) {
  1334. GELOGE(FAILED, "Input not match: tensor num=%zu, Queue id index=%zu", new_input_data_info_.size(), i);
  1335. return FAILED;
  1336. }
  1337. uint32_t queue_id = input_queue_ids_[i];
  1338. if (it->second.GetDataInfo().empty()) {
  1339. GELOGE(INTERNAL_ERROR, "the %zu input_queue not set data_info.", i);
  1340. return INTERNAL_ERROR;
  1341. }
  1342. uint32_t data_size = static_cast<uint32_t>(it->second.GetDataInfo().at(0).first);
  1343. uintptr_t data_addr = reinterpret_cast<uintptr_t>(it->second.GetDataInfo().at(0).second);
  1344. GELOGI("BindInputToQueue: graph_%u index[%zu] queue id[%u] output addr[0x%lx] output size[%u]",
  1345. runtime_param_.graph_id, i, queue_id, data_addr, data_size);
  1346. rtError_t rt_ret = rtModelBindQueue(rt_model_handle_, queue_id, RT_MODEL_INPUT_QUEUE);
  1347. if (rt_ret != RT_ERROR_NONE) {
  1348. GELOGE(RT_FAILED, "Call rtModelBindQueue failed, ret: 0x%X", rt_ret);
  1349. return RT_ERROR_TO_GE_STATUS(rt_ret);
  1350. }
  1351. if (CpuModelDequeue(queue_id) != SUCCESS) {
  1352. return INTERNAL_ERROR;
  1353. }
  1354. }
  1355. return SUCCESS;
  1356. }
  1357. /// @ingroup ge
  1358. /// @brief definiteness queue schedule, bind input queue to task.
  1359. /// @param [in] queue_id: input queue id from user.
  1360. /// @return: 0 for success / others for failed
  1361. Status DavinciModel::CpuModelDequeue(uint32_t queue_id) {
  1362. GELOGI("Set CpuKernel model dequeue task enter.");
  1363. std::shared_ptr<CpuTaskModelDequeue> dequeue_task = MakeShared<CpuTaskModelDequeue>(rt_entry_stream_);
  1364. if (dequeue_task == nullptr) {
  1365. GELOGE(MEMALLOC_FAILED, "Make CpuTaskModelDequeue task failed.");
  1366. return MEMALLOC_FAILED;
  1367. }
  1368. // Get DataOp Output address and bind to queue.
  1369. uintptr_t in_mbuf = 0;
  1370. Status status = dequeue_task->Init(queue_id, in_mbuf);
  1371. if (status != SUCCESS) {
  1372. return status;
  1373. }
  1374. cpu_task_list_.push_back(dequeue_task);
  1375. input_mbuf_list_.push_back(in_mbuf);
  1376. GELOGI("Set CpuKernel model dequeue task success.");
  1377. return SUCCESS;
  1378. }
  1379. Status DavinciModel::CpuTaskModelZeroCopy(std::vector<uintptr_t> &mbuf_list,
  1380. std::map<const void *, ZeroCopyOffset> &outside_addrs) {
  1381. GELOGI("Set CpuKernel model zero_copy task enter.");
  1382. std::shared_ptr<CpuTaskZeroCopy> zero_copy = MakeShared<CpuTaskZeroCopy>(rt_entry_stream_);
  1383. if (zero_copy == nullptr) {
  1384. GELOGE(MEMALLOC_FAILED, "Make CpuTaskZeroCopy task failed.");
  1385. return MEMALLOC_FAILED;
  1386. }
  1387. // mdc zero_copy not support l2 fusion
  1388. Status status = zero_copy->Init(mbuf_list, outside_addrs);
  1389. if (status != SUCCESS) {
  1390. return status;
  1391. }
  1392. cpu_task_list_.push_back(zero_copy);
  1393. GELOGI("Set CpuKernel model zero_copy task success.");
  1394. return SUCCESS;
  1395. }
  1396. /// @ingroup ge
  1397. /// @brief queue schedule, bind output queue to NetOutput input address.
  1398. /// @return: 0 for success / others for failed
  1399. Status DavinciModel::BindOutputQueue() {
  1400. // Caller checked: input_queue_ids_.size() == input_size_list_.size() != input_addr_list_.size()
  1401. for (size_t i = 0; i < output_queue_ids_.size(); ++i) {
  1402. auto it = new_output_data_info_.find(i);
  1403. if (it == new_output_data_info_.end()) {
  1404. GELOGE(FAILED, "Output not match: tensor num=%zu, Queue id index=%zu", new_output_data_info_.size(), i);
  1405. return FAILED;
  1406. }
  1407. uint32_t queue_id = output_queue_ids_[i];
  1408. if (it->second.GetDataInfo().empty()) {
  1409. GELOGE(INTERNAL_ERROR, "the %zu output_queue not set data_info.", i);
  1410. return INTERNAL_ERROR;
  1411. }
  1412. uint32_t data_size = static_cast<uint32_t>(it->second.GetDataInfo().at(0).first);
  1413. uintptr_t data_addr = reinterpret_cast<uintptr_t>(it->second.GetDataInfo().at(0).second);
  1414. GELOGI("BindOutputToQueue: graph_%u index[%zu] queue id[%u] input addr[0x%lx] input size[%u]",
  1415. runtime_param_.graph_id, i, queue_id, data_addr, data_size);
  1416. rtError_t rt_ret = rtModelBindQueue(rt_model_handle_, queue_id, RT_MODEL_OUTPUT_QUEUE);
  1417. if (rt_ret != RT_ERROR_NONE) {
  1418. GELOGE(RT_FAILED, "Call rtModelBindQueue failed, ret: 0x%X", rt_ret);
  1419. return RT_ERROR_TO_GE_STATUS(rt_ret);
  1420. }
  1421. Status status = CpuModelPrepareOutput(data_addr, data_size);
  1422. if (status != SUCCESS) {
  1423. return status;
  1424. }
  1425. }
  1426. return SUCCESS;
  1427. }
  1428. /// @ingroup ge
  1429. /// @brief definiteness queue schedule, bind output queue to task.
  1430. /// @param [in] addr: NetOutput Op input tensor address.
  1431. /// @param [in] size: NetOutput Op input tensor size.
  1432. /// @return: 0 for success / others for failed
  1433. Status DavinciModel::CpuModelPrepareOutput(uintptr_t addr, uint32_t size) {
  1434. GELOGI("Set CpuKernel model enqueue task enter.");
  1435. if (input_mbuf_list_.empty()) {
  1436. GELOGE(FAILED, "Need input mbuf for fill output mbuf head info.");
  1437. return FAILED;
  1438. }
  1439. std::shared_ptr<CpuTaskPrepareOutput> prepare_output = MakeShared<CpuTaskPrepareOutput>(rt_entry_stream_);
  1440. if (prepare_output == nullptr) {
  1441. GELOGE(MEMALLOC_FAILED, "Make CpuTaskPrepareOutput task failed.");
  1442. return MEMALLOC_FAILED;
  1443. }
  1444. uintptr_t out_mbuf = 0;
  1445. if (prepare_output->Init(addr, size, input_mbuf_list_.back(), out_mbuf) != SUCCESS) {
  1446. return FAILED;
  1447. }
  1448. cpu_task_list_.push_back(prepare_output);
  1449. output_mbuf_list_.push_back(out_mbuf);
  1450. GELOGI("Set CpuKernel model enqueue task success.");
  1451. return SUCCESS;
  1452. }
  1453. ///
  1454. /// @ingroup ge
  1455. /// @brief definiteness queue schedule, active original model stream.
  1456. /// @return: 0 for success / others for failed
  1457. ///
  1458. Status DavinciModel::CpuActiveStream() {
  1459. GELOGI("Set CpuKernel active stream task enter.");
  1460. std::shared_ptr<CpuTaskActiveEntry> active_entry = MakeShared<CpuTaskActiveEntry>(rt_entry_stream_);
  1461. if (active_entry == nullptr) {
  1462. GELOGE(MEMALLOC_FAILED, "Make CpuTaskActiveEntry task failed.");
  1463. return MEMALLOC_FAILED;
  1464. }
  1465. Status status = active_entry->Init(rt_head_stream_);
  1466. if (status != SUCCESS) {
  1467. return status;
  1468. }
  1469. cpu_task_list_.push_back(active_entry);
  1470. GELOGI("Set CpuKernel active stream task success.");
  1471. return SUCCESS;
  1472. }
  1473. /// @ingroup ge
  1474. /// @brief definiteness queue schedule, wait for end graph.
  1475. /// @return: 0 for success / others for failed
  1476. Status DavinciModel::CpuWaitEndGraph() {
  1477. GELOGI("Set CpuKernel wait end graph task enter.");
  1478. std::shared_ptr<CpuTaskWaitEndGraph> wait_endgraph = MakeShared<CpuTaskWaitEndGraph>(rt_entry_stream_);
  1479. if (wait_endgraph == nullptr) {
  1480. GELOGE(MEMALLOC_FAILED, "Make CpuTaskWaitEndGraph task failed.");
  1481. return MEMALLOC_FAILED;
  1482. }
  1483. Status status = wait_endgraph->Init(runtime_model_id_);
  1484. if (status != SUCCESS) {
  1485. return status;
  1486. }
  1487. cpu_task_list_.push_back(wait_endgraph);
  1488. GELOGI("Set CpuKernel wait end graph task success.");
  1489. return SUCCESS;
  1490. }
  1491. Status DavinciModel::BindEnqueue() {
  1492. for (size_t i = 0; i < output_queue_ids_.size(); ++i) {
  1493. auto it = new_output_data_info_.find(i);
  1494. if (it == new_output_data_info_.end()) {
  1495. GELOGE(FAILED, "Output not match: tensor num=%zu, Queue id index=%zu", new_output_data_info_.size(), i);
  1496. return FAILED;
  1497. }
  1498. uint32_t queue_id = output_queue_ids_[i];
  1499. if (CpuModelEnqueue(queue_id, output_mbuf_list_[i]) != SUCCESS) {
  1500. return INTERNAL_ERROR;
  1501. }
  1502. }
  1503. return SUCCESS;
  1504. }
  1505. Status DavinciModel::CpuModelEnqueue(uint32_t queue_id, uintptr_t out_mbuf) {
  1506. GELOGI("Set CpuKernel model enqueue task enter.");
  1507. std::shared_ptr<CpuTaskModelEnqueue> model_enqueue = MakeShared<CpuTaskModelEnqueue>(rt_entry_stream_);
  1508. if (model_enqueue == nullptr) {
  1509. GELOGE(MEMALLOC_FAILED, "Make CpuTaskModelEnqueue task failed.");
  1510. return MEMALLOC_FAILED;
  1511. }
  1512. Status status = model_enqueue->Init(queue_id, out_mbuf);
  1513. if (status != SUCCESS) {
  1514. return status;
  1515. }
  1516. cpu_task_list_.push_back(model_enqueue);
  1517. GELOGI("Set CpuKernel model enqueue task enter.");
  1518. return SUCCESS;
  1519. }
  1520. /// @ingroup ge
  1521. /// @brief definiteness queue schedule, repeat run model.
  1522. /// @return: 0 for success / others for failed
  1523. Status DavinciModel::CpuModelRepeat() {
  1524. GELOGI("Set CpuKernel repeat task enter.");
  1525. std::shared_ptr<CpuTaskModelRepeat> model_repeat = MakeShared<CpuTaskModelRepeat>(rt_entry_stream_);
  1526. if (model_repeat == nullptr) {
  1527. GELOGE(MEMALLOC_FAILED, "Make CpuTaskModelRepeat task failed.");
  1528. return MEMALLOC_FAILED;
  1529. }
  1530. Status status = model_repeat->Init(runtime_model_id_);
  1531. if (status != SUCCESS) {
  1532. return status;
  1533. }
  1534. cpu_task_list_.push_back(model_repeat);
  1535. GELOGI("Set CpuKernel repeat task success.");
  1536. return SUCCESS;
  1537. }
  1538. Status DavinciModel::GetInputOutputDescInfo(vector<InputOutputDescInfo> &input_desc,
  1539. vector<InputOutputDescInfo> &output_desc) {
  1540. if (input_addrs_list_.empty() || input_addrs_list_[0].size() != 1) {
  1541. GELOGI("data_op_list_ is empty or input_desc size is not 1.");
  1542. } else {
  1543. vector<uint32_t> input_formats;
  1544. GE_CHK_STATUS_RET(GetInputDescInfo(input_desc, input_formats, false), "get input desc info failed.");
  1545. }
  1546. vector<uint32_t> output_formats;
  1547. GE_CHK_STATUS_RET(GetOutputDescInfo(output_desc, output_formats), "get output desc info failed");
  1548. return SUCCESS;
  1549. }
  1550. Status DavinciModel::GetInputOutputDescInfo(vector<InputOutputDescInfo> &input_desc,
  1551. vector<InputOutputDescInfo> &output_desc,
  1552. vector<uint32_t> &input_formats,
  1553. vector<uint32_t> &output_formats, bool by_dims) {
  1554. if (input_addrs_list_.empty() || input_addrs_list_[0].size() != 1) {
  1555. GELOGE(FAILED, "OP List Pointer is null or input_desc size is not 1!");
  1556. return FAILED;
  1557. }
  1558. GE_CHK_STATUS_RET(GetInputDescInfo(input_desc, input_formats, by_dims), "get input desc info failed");
  1559. GE_CHK_STATUS_RET(GetOutputDescInfo(output_desc, output_formats), "get output desc info failed");
  1560. return SUCCESS;
  1561. }
  1562. ///
  1563. /// @ingroup ge
  1564. /// @brief Get dynamic batch_info
  1565. /// @param [out] batch_info
  1566. /// @param [out] dynamic_type
  1567. /// @return execute result
  1568. ///
  1569. Status DavinciModel::GetDynamicBatchInfo(std::vector<std::vector<int64_t>> &batch_info, int32_t &dynamic_type) const {
  1570. dynamic_type = dynamic_type_;
  1571. batch_info = batch_info_;
  1572. return SUCCESS;
  1573. }
  1574. ///
  1575. /// @ingroup ge
  1576. /// @brief Get combined dynamic dims info
  1577. /// @param [out] batch_info
  1578. /// @return None
  1579. ///
  1580. void DavinciModel::GetCombinedDynamicDims(std::vector<std::vector<int64_t>> &batch_info) const {
  1581. batch_info.clear();
  1582. batch_info = combined_batch_info_;
  1583. }
  1584. ///
  1585. /// @ingroup ge
  1586. /// @brief Get user designate shape order
  1587. /// @param [out] user_input_shape_order
  1588. /// @return None
  1589. ///
  1590. void DavinciModel::GetUserDesignateShapeOrder(std::vector<std::string> &user_input_shape_order) const {
  1591. user_input_shape_order.clear();
  1592. user_input_shape_order = user_designate_shape_order_;
  1593. }
  1594. ///
  1595. /// @ingroup ge
  1596. /// @brief Get AIPP input info
  1597. /// @param [in] index
  1598. /// @param [int] OpDescPtr
  1599. /// @return execute result
  1600. ///
  1601. Status DavinciModel::InitAippInfo(uint32_t index, const OpDescPtr &op_desc) {
  1602. if (!op_desc->HasAttr(ATTR_NAME_AIPP)) {
  1603. GELOGW("There is not AIPP related with index %u.", index);
  1604. return SUCCESS;
  1605. }
  1606. domi::AippOpParams aipp_params;
  1607. GeAttrValue::NAMED_ATTRS aipp_attr;
  1608. GE_CHK_BOOL_RET_STATUS(AttrUtils::GetNamedAttrs(op_desc, ATTR_NAME_AIPP, aipp_attr), ACL_ERROR_GE_AIPP_NOT_EXIST,
  1609. "Data node do not contain param aipp!");
  1610. GE_CHK_STATUS_RET(OpUtils::ConvertAippParams(aipp_attr, &aipp_params), "get aipp params failed");
  1611. GELOGI("Node data: %s, type: %s, current index: %u, current node related input rank: %u",
  1612. op_desc->GetName().c_str(), op_desc->GetType().c_str(), index, aipp_params.related_input_rank());
  1613. AippConfigInfo aipp_info;
  1614. GE_CHK_STATUS_RET(AippUtils::ConvertAippParams2AippInfo(&aipp_params, aipp_info),
  1615. "convert aipp params to aipp config info failed");
  1616. aipp_info_list_[index] = aipp_info;
  1617. return SUCCESS;
  1618. }
  1619. ///
  1620. /// @ingroup ge
  1621. /// @brief Get AIPP input info
  1622. /// @param [in] index
  1623. /// @param [out] aipp_info
  1624. /// @return execute result
  1625. ///
  1626. Status DavinciModel::GetAippInfo(uint32_t index, AippConfigInfo &aipp_info) const {
  1627. const auto it = aipp_info_list_.find(index);
  1628. if (it == aipp_info_list_.end()) {
  1629. GELOGW("there is not AIPP related with index %u.", index);
  1630. return ACL_ERROR_GE_AIPP_NOT_EXIST;
  1631. }
  1632. aipp_info = it->second;
  1633. return SUCCESS;
  1634. }
  1635. Status DavinciModel::InitAippType(uint32_t index, const OpDescPtr &op_desc, const map<uint32_t, OpDescPtr> &data_list) {
  1636. if (!op_desc->HasAttr(ATTR_DATA_RELATED_AIPP_MODE)) {
  1637. GELOGW("There is no aipp releated info with index %u.", index);
  1638. return SUCCESS;
  1639. }
  1640. // Set default value
  1641. InputAippType aipp_type = DATA_WITHOUT_AIPP;
  1642. string data_mode;
  1643. (void)AttrUtils::GetStr(op_desc, ATTR_DATA_RELATED_AIPP_MODE, data_mode);
  1644. if (data_mode == "static_aipp") {
  1645. aipp_type = DATA_WITH_STATIC_AIPP;
  1646. } else if (data_mode == "dynamic_aipp") {
  1647. aipp_type = DATA_WITH_DYNAMIC_AIPP;
  1648. } else if (data_mode == "dynamic_aipp_conf") {
  1649. aipp_type = DYNAMIC_AIPP_NODE;
  1650. } else {
  1651. GELOGE(ACL_ERROR_GE_AIPP_MODE_INVALID,
  1652. "The info of aipp releated info %s is invalid with index %u.", data_mode.c_str(), index);
  1653. return ACL_ERROR_GE_AIPP_MODE_INVALID;
  1654. }
  1655. size_t aipp_index = 0xFFFFFFFF; // default invalid value
  1656. if (aipp_type == DATA_WITH_DYNAMIC_AIPP) {
  1657. string releated_name;
  1658. (void)AttrUtils::GetStr(op_desc, ATTR_DATA_AIPP_DATA_NAME_MAP, releated_name);
  1659. for (const auto item : data_list) {
  1660. if (item.second->GetName() == releated_name) {
  1661. GELOGI("Find aipp_data [%s] index %u from index %u", releated_name.c_str(), item.first, index);
  1662. aipp_index = item.first;
  1663. }
  1664. }
  1665. if (aipp_index == 0xFFFFFFFF) {
  1666. GELOGW("Can not find aipp data node from index %u", index);
  1667. return SUCCESS;
  1668. }
  1669. }
  1670. aipp_type_list_[index] = { aipp_type, aipp_index };
  1671. return SUCCESS;
  1672. }
  1673. Status DavinciModel::GetAippType(uint32_t index, InputAippType &aipp_type, size_t &aipp_index) const {
  1674. GE_CHK_BOOL_RET_STATUS(index < input_addrs_list_.size(), PARAM_INVALID, "Index %u is invalid", index);
  1675. const auto it = aipp_type_list_.find(index);
  1676. if (it == aipp_type_list_.end()) {
  1677. GELOGW("There is no aipp releated info with index %u.", index);
  1678. aipp_type = DATA_WITHOUT_AIPP;
  1679. aipp_index = 0xFFFFFFFF;
  1680. return SUCCESS;
  1681. }
  1682. aipp_type = it->second.first;
  1683. aipp_index = it->second.second;
  1684. return SUCCESS;
  1685. }
  1686. void DavinciModel::SetDynamicSize(const std::vector<uint64_t> &batch_num, int32_t dynamic_type) {
  1687. batch_size_.clear();
  1688. if (batch_num.empty()) {
  1689. GELOGD("User has not set dynammic data");
  1690. }
  1691. for (size_t i = 0; i < batch_num.size(); i++) {
  1692. batch_size_.emplace_back(batch_num[i]);
  1693. }
  1694. dynamic_type_ = dynamic_type;
  1695. }
  1696. void DavinciModel::GetCurShape(std::vector<int64_t> &batch_info, int32_t &dynamic_type) const {
  1697. if (batch_size_.empty()) {
  1698. GELOGD("User does not set dynamic size");
  1699. }
  1700. for (size_t i = 0; i < batch_size_.size(); i++) {
  1701. GELOGI("Start to get current shape");
  1702. batch_info.emplace_back(batch_size_[i]);
  1703. }
  1704. dynamic_type = dynamic_type_;
  1705. }
  1706. void DavinciModel::GetModelAttr(vector<string> &out_shape_info) const {
  1707. out_shape_info.insert(out_shape_info.end(), dynamic_output_shape_info_.begin(), dynamic_output_shape_info_.end());
  1708. }
  1709. void DavinciModel::SetInputDimsInfo(const vector<int64_t> &input_dims, Format &format, ShapeDescription &shape_info) {
  1710. uint32_t n, c, h, w;
  1711. n = format == FORMAT_NHWC ? NHWC_DIM_N : NCHW_DIM_N;
  1712. c = format == FORMAT_NHWC ? NHWC_DIM_C : NCHW_DIM_C;
  1713. h = format == FORMAT_NHWC ? NHWC_DIM_H : NCHW_DIM_H;
  1714. w = format == FORMAT_NHWC ? NHWC_DIM_W : NCHW_DIM_W;
  1715. if (input_dims.size() == static_cast<size_t>(NORMAL_TENSOR_SIZE)) {
  1716. shape_info.num = input_dims[n];
  1717. shape_info.height = input_dims[h];
  1718. shape_info.width = input_dims[w];
  1719. shape_info.channel = input_dims[c];
  1720. }
  1721. for (size_t k = 0; k < input_dims.size(); ++k) {
  1722. shape_info.dims.push_back(input_dims[k]);
  1723. }
  1724. }
  1725. void DavinciModel::CreateInputDimsInfo(const OpDescPtr &op_desc, Format format,
  1726. ShapeDescription &shape_info, ShapeDescription &dims_info) {
  1727. // judge if this data is linked dynamic aipp first, multiply batch has been considered
  1728. if (op_desc->HasAttr(ATTR_DYNAMIC_AIPP_INPUT_DIMS)) {
  1729. vector<int64_t> dynamic_aipp_input_dims;
  1730. (void)AttrUtils::GetListInt(op_desc, ATTR_DYNAMIC_AIPP_INPUT_DIMS, dynamic_aipp_input_dims);
  1731. SetInputDimsInfo(dynamic_aipp_input_dims, format, shape_info);
  1732. } else {
  1733. // judge if this data is multiply batch
  1734. if (!op_desc->HasAttr(ATTR_MBATCH_ORIGIN_INPUT_DIMS)) {
  1735. vector<int64_t> input_dims = op_desc->GetInputDescPtr(0)->GetShape().GetDims();
  1736. SetInputDimsInfo(input_dims, format, shape_info);
  1737. } else {
  1738. vector<int64_t> origin_input_dims;
  1739. (void)AttrUtils::GetListInt(op_desc, ATTR_MBATCH_ORIGIN_INPUT_DIMS, origin_input_dims);
  1740. SetInputDimsInfo(origin_input_dims, format, shape_info);
  1741. }
  1742. }
  1743. if (op_desc->HasAttr(ATTR_NAME_INPUT_DIMS)) {
  1744. // When static aipp is set, need to get the model input dims which processed by aipp
  1745. vector<int64_t> model_input_dims;
  1746. (void)AttrUtils::GetListInt(op_desc, ATTR_NAME_INPUT_DIMS, model_input_dims);
  1747. SetInputDimsInfo(model_input_dims, format, dims_info);
  1748. } else {
  1749. dims_info = shape_info;
  1750. }
  1751. }
  1752. Status DavinciModel::InitInputDescInfo(const OpDescPtr &op_desc) {
  1753. GE_CHECK_NOTNULL(op_desc->GetInputDescPtr(0));
  1754. InputOutputDescInfo input;
  1755. ShapeDescription dims_info;
  1756. Format format = op_desc->GetInputDescPtr(0)->GetFormat();
  1757. CreateInputDimsInfo(op_desc, format, input.shape_info, dims_info);
  1758. input.data_type = op_desc->GetInputDescPtr(0)->GetDataType();
  1759. input.name = op_desc->GetName();
  1760. int64_t input_size = 0;
  1761. GE_CHK_STATUS_RET(TensorUtils::GetSize(*op_desc->GetInputDescPtr(0), input_size), "get input size failed.");
  1762. input.size = input_size;
  1763. input_formats_.push_back(format);
  1764. input_descs_.push_back(input);
  1765. input.shape_info = dims_info;
  1766. input_descs_dims_.push_back(input);
  1767. return SUCCESS;
  1768. }
  1769. Status DavinciModel::GetInputDescInfo(vector<InputOutputDescInfo> &input_descs,
  1770. vector<uint32_t> &input_formats, bool by_dims) const {
  1771. const vector<InputOutputDescInfo> &input_desc_info = by_dims ? input_descs_dims_ : input_descs_;
  1772. input_descs.insert(input_descs.end(), input_desc_info.begin(), input_desc_info.end());
  1773. input_formats.insert(input_formats.end(), input_formats_.begin(), input_formats_.end());
  1774. return SUCCESS;
  1775. }
  1776. void DavinciModel::CreateOutput(uint32_t index, const OpDescPtr &op_desc, InputOutputDescInfo &output,
  1777. uint32_t &format_result) {
  1778. /// netoutput input tensor desc
  1779. GE_IF_BOOL_EXEC(op_desc->GetInputDescPtr(index) == nullptr, GELOGE(FAILED, "OpDesc GetInputDescPtr is nullptr");
  1780. return);
  1781. Format format = op_desc->GetInputDescPtr(index)->GetFormat();
  1782. GeShape shape = op_desc->GetInputDescPtr(index)->GetShape();
  1783. DataType data_type = op_desc->GetInputDescPtr(index)->GetDataType();
  1784. int64_t dims[] = {1, 1, 1, 1};
  1785. format_result = format;
  1786. if (format == FORMAT_ND) { // for ND tensor
  1787. for (size_t i = 0; i < shape.GetDimNum() && i < (sizeof(dims) / sizeof(dims[0])); i++) {
  1788. dims[i] = shape.GetDim(i);
  1789. }
  1790. } else { // FOR FORMAT_NHWC or FORMAT_NCHW
  1791. dims[0] = shape.GetDim(format == FORMAT_NHWC ? NHWC_DIM_N : NCHW_DIM_N); // 0: first dim
  1792. dims[1] = shape.GetDim(format == FORMAT_NHWC ? NHWC_DIM_C : NCHW_DIM_C); // 1: second dim
  1793. dims[2] = shape.GetDim(format == FORMAT_NHWC ? NHWC_DIM_H : NCHW_DIM_H); // 2: third dim
  1794. dims[3] = shape.GetDim(format == FORMAT_NHWC ? NHWC_DIM_W : NCHW_DIM_W); // 3: forth dim
  1795. }
  1796. output.shape_info.num = dims[0]; // 0: first dim
  1797. output.shape_info.channel = dims[1]; // 1: second dim
  1798. output.shape_info.height = dims[2]; // 2: third dim
  1799. output.shape_info.width = dims[3]; // 3: forth dim
  1800. if (op_desc->GetInputDescPtr(index)->GetFormat() == FORMAT_FRACTAL_Z) { // FraczToHWCK
  1801. int64_t k = shape.GetDim(0); // 0: first dim
  1802. int64_t c = shape.GetDim(1); // 1: second dim
  1803. int64_t h = shape.GetDim(2); // 2: third dim
  1804. int64_t w = shape.GetDim(3); // 3: forth dim
  1805. output.shape_info.dims.push_back(h);
  1806. output.shape_info.dims.push_back(w);
  1807. output.shape_info.dims.push_back(c);
  1808. output.shape_info.dims.push_back(k);
  1809. format_result = FORMAT_HWCN;
  1810. } else {
  1811. for (size_t j = 0; j < shape.GetDimNum(); j++) {
  1812. output.shape_info.dims.push_back(shape.GetDim(j));
  1813. }
  1814. }
  1815. int64_t tensor_size = 0;
  1816. if (AttrUtils::GetInt(op_desc->GetInputDescPtr(index), ATTR_NAME_SPECIAL_OUTPUT_SIZE, tensor_size)
  1817. && (tensor_size > 0)) {
  1818. GELOGI("netoutput[%s] [%d]th input has special size [%ld]", op_desc->GetName().c_str(), index, tensor_size);
  1819. } else {
  1820. (void)TensorUtils::CalcTensorMemSize(shape, format, data_type, tensor_size); // no need to check value
  1821. }
  1822. output.size = static_cast<uint64_t>(tensor_size);
  1823. output.data_type = op_desc->GetInputDescPtr(index)->GetDataType();
  1824. }
  1825. Status DavinciModel::InitOutputDescInfo(const OpDescPtr &op_desc, const vector<string> &out_node_name) {
  1826. uint32_t out_size = static_cast<uint32_t>(op_desc->GetInputsSize());
  1827. for (uint32_t i = 0; i < out_size; ++i) {
  1828. string output_name;
  1829. InputOutputDescInfo output;
  1830. uint32_t format_result;
  1831. CreateOutput(i, op_desc, output, format_result);
  1832. std::vector<std::string> src_name = op_desc->GetSrcName();
  1833. std::vector<int64_t> src_index = op_desc->GetSrcIndex();
  1834. GE_CHK_BOOL_RET_STATUS(src_name.size() > i && src_index.size() > i, INTERNAL_ERROR,
  1835. "construct output_name failed.");
  1836. // forward compatbility, if old om has no out_node_name, need to return output follow origin way
  1837. if (out_size == out_node_name.size()) {
  1838. // neweast plan, the index will add to name during generate model.
  1839. bool contains_colon = out_node_name[i].find(":") != std::string::npos;
  1840. output_name = contains_colon ? out_node_name[i] : out_node_name[i] + ":" + std::to_string(src_index[i]);
  1841. } else {
  1842. output_name = string("output_") + std::to_string(i) + "_" + src_name[i] + "_" + std::to_string(src_index[i]);
  1843. }
  1844. output.name = output_name;
  1845. output_descs_.push_back(output);
  1846. output_formats_.push_back(format_result);
  1847. }
  1848. return SUCCESS;
  1849. }
  1850. Status DavinciModel::GetOutputDescInfo(vector<InputOutputDescInfo> &output_descs,
  1851. vector<uint32_t> &output_formats) const {
  1852. output_descs.insert(output_descs.end(), output_descs_.begin(), output_descs_.end());
  1853. output_formats.insert(output_formats.end(), output_formats_.begin(), output_formats_.end());
  1854. return SUCCESS;
  1855. }
  1856. Status DavinciModel::CopyInputData(const InputData &input_data, bool device_data) {
  1857. rtMemcpyKind_t kind = device_data ? RT_MEMCPY_DEVICE_TO_DEVICE : RT_MEMCPY_HOST_TO_DEVICE;
  1858. const std::vector<DataBuffer> &blobs = input_data.blobs;
  1859. for (const auto &data : new_input_data_info_) {
  1860. if (data.first >= blobs.size()) {
  1861. GELOGE(FAILED, "Blobs not match: blobs=%zu, tensor=%zu, index=%u, size=%ld, op_name(%s)", blobs.size(),
  1862. new_input_data_info_.size(), data.first, data.second.GetDataInfo().at(0).first,
  1863. data.second.GetOpName().c_str());
  1864. return FAILED;
  1865. }
  1866. const DataBuffer &data_buf = blobs[data.first];
  1867. if (data_buf.length == 0) {
  1868. GELOGW("No data need to memcpy!");
  1869. return SUCCESS;
  1870. }
  1871. uint64_t data_size = data.second.GetDataSize();
  1872. GE_CHK_BOOL_RET_STATUS(data_size >= data_buf.length, PARAM_INVALID,
  1873. "input data size(%lu) does not match model required size(%lu), op_name(%s) ret failed.",
  1874. data_buf.length, data_size, data.second.GetOpName().c_str());
  1875. void *mem_addr = data.second.GetBasicAddr();
  1876. void *data_buf_addr = reinterpret_cast<void *>(reinterpret_cast<uintptr_t>(data_buf.data));
  1877. uint64_t data_buf_length = data_buf.length;
  1878. GELOGI("CopyPlainData memcpy graph_%u type[F] input[%s] rank[%u] dst[%p] src[%p] mem_size[%lu] datasize[%lu]",
  1879. runtime_param_.graph_id, data.second.GetOpName().c_str(), data.first, mem_addr, data_buf_addr, data_size,
  1880. data_buf_length);
  1881. GE_CHK_RT_RET(rtMemcpy(mem_addr, data_size, data_buf_addr, data_buf_length, kind));
  1882. }
  1883. return SUCCESS;
  1884. }
  1885. Status DavinciModel::SyncVarData() {
  1886. GELOGI("Sync var data, model id:%u", model_id_);
  1887. Status ret = SUCCESS;
  1888. if (global_step_addr_ != nullptr && global_step_size_ != 0) {
  1889. const vector<uint64_t> v_step = { iterator_count_ };
  1890. GE_CHK_RT_RET(rtMemcpy(global_step_addr_, global_step_size_, v_step.data(), v_step.size() * sizeof(uint64_t),
  1891. RT_MEMCPY_HOST_TO_DEVICE));
  1892. }
  1893. return ret;
  1894. }
  1895. Status DavinciModel::InitModelProfile() {
  1896. for (const auto &task : task_list_) {
  1897. GE_CHECK_NOTNULL(task);
  1898. const FusionOpInfo *fusion_op_info = task->GetFusionOpInfo();
  1899. // when type is RT_MODEL_TASK_KERNEL, ctx is not null
  1900. if ((fusion_op_info == nullptr) || fusion_op_info->original_op_names.empty()) {
  1901. continue;
  1902. }
  1903. GELOGI("task.id = %u, opNum = %zu", task->GetTaskID(), fusion_op_info->original_op_names.size());
  1904. op_id_map_.insert(std::make_pair(fusion_op_info->op_index, task->GetTaskID()));
  1905. }
  1906. std::set<uint32_t> task_id_set;
  1907. using CIT = std::multimap<uint32_t, uint32_t>::const_iterator;
  1908. using Range = std::pair<CIT, CIT>;
  1909. for (const auto &task : task_list_) {
  1910. GE_CHECK_NOTNULL(task);
  1911. const FusionOpInfo *fusion_op_info = task->GetFusionOpInfo();
  1912. if ((fusion_op_info == nullptr) || fusion_op_info->original_op_names.empty()) {
  1913. continue;
  1914. }
  1915. if (task_id_set.count(task->GetTaskID()) > 0) {
  1916. continue;
  1917. }
  1918. const auto &op_desc = GetOpByIndex(fusion_op_info->op_index);
  1919. GE_CHK_BOOL_EXEC(op_desc != nullptr, return FAILED, "index: %u out of range", fusion_op_info->op_index);
  1920. ProfileInfo profile;
  1921. profile.fusion_info = *fusion_op_info;
  1922. Range range = op_id_map_.equal_range(fusion_op_info->op_index);
  1923. for (CIT range_idx = range.first; range_idx != range.second; ++range_idx) {
  1924. profile.task_count++;
  1925. task_id_set.insert(range_idx->second);
  1926. }
  1927. // memory info
  1928. TaskMemInfo &mem_info = profile.memory_info;
  1929. const auto input_size = ModelUtils::GetInputSize(op_desc);
  1930. const auto output_size = ModelUtils::GetOutputSize(op_desc);
  1931. const auto workspace_size = ModelUtils::GetWorkspaceSize(op_desc);
  1932. const auto weight_size = ModelUtils::GetWeightSize(op_desc);
  1933. mem_info.input_size = std::accumulate(input_size.begin(), input_size.end(), 0);
  1934. mem_info.output_size = std::accumulate(output_size.begin(), output_size.end(), 0);
  1935. mem_info.workspace_size = std::accumulate(workspace_size.begin(), workspace_size.end(), 0);
  1936. mem_info.weight_size = std::accumulate(weight_size.begin(), weight_size.end(), 0);
  1937. mem_info.total_size = mem_info.weight_size + mem_info.input_size + mem_info.output_size + mem_info.workspace_size;
  1938. profile_list_.emplace_back(profile);
  1939. }
  1940. GELOGI("fusion task size: %zu, profile info size: %zu", op_id_map_.size(), profile_list_.size());
  1941. return SUCCESS;
  1942. }
  1943. Status DavinciModel::SinkModelProfile() {
  1944. // profiling plugin must be registered
  1945. auto &prof_mgr = ProfilingManager::Instance();
  1946. ReporterData reporter_data{};
  1947. // report model data tag name
  1948. std::string tag_name("model_load_info_" + std::to_string(this->Id()));
  1949. GE_CHK_BOOL_EXEC(memcpy_s(reporter_data.tag, MSPROF_ENGINE_MAX_TAG_LEN, tag_name.c_str(), tag_name.size()) == EOK,
  1950. return FAILED, "Sink model tag memcpy error.");
  1951. // Model Header
  1952. std::string name = om_name_.empty() ? name_ : om_name_;
  1953. size_t name_len = name.size();
  1954. reporter_data.deviceId = device_id_;
  1955. reporter_data.data = (unsigned char *)&name_len;
  1956. reporter_data.dataLen = sizeof(int32_t);
  1957. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  1958. "Reporter data fail, model id:%u.", this->Id());
  1959. reporter_data.data = (unsigned char *)name.c_str();
  1960. reporter_data.dataLen = name.size();
  1961. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  1962. "Reporter data fail, model id:%u.", this->Id());
  1963. uint32_t model_id = this->Id();
  1964. reporter_data.data = (unsigned char *)&model_id;
  1965. reporter_data.dataLen = sizeof(uint32_t);
  1966. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  1967. "Reporter data fail, model id:%u.", this->Id());
  1968. // Load Start/End Time
  1969. int64_t start_time = this->GetLoadBeginTime();
  1970. reporter_data.data = (unsigned char *)&start_time;
  1971. reporter_data.dataLen = sizeof(int64_t);
  1972. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  1973. "Reporter data fail, model id:%u.", this->Id());
  1974. int64_t end_time = this->GetLoadEndTime();
  1975. reporter_data.data = (unsigned char *)&end_time;
  1976. reporter_data.dataLen = sizeof(int64_t);
  1977. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  1978. "Reporter data fail, model id:%u.", this->Id());
  1979. using CIT = std::multimap<uint32_t, uint32_t>::const_iterator;
  1980. using Range = std::pair<CIT, CIT>;
  1981. for (const ProfileInfo &profile : profile_list_) {
  1982. // op name after fusion
  1983. string fusion_op_name = profile.fusion_info.op_name;
  1984. int32_t fusion_op_name_len = fusion_op_name.size() == 0 ? 1 : fusion_op_name.size();
  1985. reporter_data.data = (unsigned char *)&fusion_op_name_len;
  1986. reporter_data.dataLen = sizeof(int32_t);
  1987. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  1988. "Reporter data fail, model id:%u.", this->Id());
  1989. reporter_data.data = (unsigned char *)fusion_op_name.c_str();
  1990. reporter_data.dataLen = fusion_op_name_len;
  1991. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  1992. "Reporter data fail, model id:%u.", this->Id());
  1993. // original op name before fusion
  1994. uint32_t op_num = profile.fusion_info.original_op_names.size();
  1995. reporter_data.data = (unsigned char *)&op_num;
  1996. reporter_data.dataLen = sizeof(int32_t);
  1997. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  1998. "Reporter data fail, model id:%u.", this->Id());
  1999. for (uint32_t k = 0; k < op_num; k++) {
  2000. std::string op_name = profile.fusion_info.original_op_names[k];
  2001. int32_t op_name_len = op_name.size() == 0 ? 1 : op_name.size();
  2002. reporter_data.data = (unsigned char *)&op_name_len;
  2003. reporter_data.dataLen = sizeof(int32_t);
  2004. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2005. "Reporter data fail, model id:%u.", this->Id());
  2006. reporter_data.data = (unsigned char *)op_name.c_str();
  2007. reporter_data.dataLen = op_name_len;
  2008. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2009. "Reporter data fail, model id:%u.", this->Id());
  2010. }
  2011. // stream id info
  2012. uint32_t streamId = profile.fusion_info.stream_id;
  2013. reporter_data.data = (unsigned char *)&streamId;
  2014. reporter_data.dataLen = sizeof(int32_t);
  2015. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2016. "Reporter data fail, model id:%u.", this->Id());
  2017. // memory info
  2018. reporter_data.data = (unsigned char *)&profile.memory_info;
  2019. reporter_data.dataLen = sizeof(profile.memory_info);
  2020. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2021. "Reporter data fail, model id:%u.", this->Id());
  2022. // task info
  2023. reporter_data.data = (unsigned char *)&profile.task_count;
  2024. reporter_data.dataLen = sizeof(uint32_t);
  2025. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2026. "Reporter data fail, model id:%u.", this->Id());
  2027. Range task_range = op_id_map_.equal_range(profile.fusion_info.op_index);
  2028. for (CIT idx = task_range.first; idx != task_range.second; ++idx) {
  2029. uint32_t task_id = idx->second;
  2030. reporter_data.data = (unsigned char *)&task_id;
  2031. reporter_data.dataLen = sizeof(uint32_t);
  2032. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2033. "Reporter data fail, model id:%u.", this->Id());
  2034. }
  2035. }
  2036. return SUCCESS;
  2037. }
  2038. Status DavinciModel::SinkTimeProfile(const InputData &current_data) {
  2039. // profiling plugin must be registered
  2040. auto &prof_mgr = ProfilingManager::Instance();
  2041. ReporterData reporter_data{};
  2042. // report model data tag name
  2043. std::string tag_name;
  2044. tag_name.append("model_time_info_")
  2045. .append(std::to_string(this->Id()))
  2046. .append("_")
  2047. .append(std::to_string(current_data.index));
  2048. GE_CHK_BOOL_EXEC(memcpy_s(reporter_data.tag, MSPROF_ENGINE_MAX_TAG_LEN, tag_name.c_str(), tag_name.size()) == EOK,
  2049. return FAILED, "Sink model tag memcpy error.");
  2050. // device id
  2051. reporter_data.deviceId = device_id_;
  2052. // Model Header
  2053. string name;
  2054. if (!om_name_.empty()) {
  2055. name = om_name_;
  2056. } else {
  2057. name = name_;
  2058. }
  2059. size_t name_len = name.size();
  2060. reporter_data.data = (unsigned char *)&name_len;
  2061. reporter_data.dataLen = sizeof(int32_t);
  2062. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2063. "Reporter data fail, model id:%u.", this->Id());
  2064. reporter_data.data = (unsigned char *)name.c_str();
  2065. reporter_data.dataLen = name.size();
  2066. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2067. "Reporter data fail, model id:%u.", this->Id());
  2068. // request id
  2069. uint64_t request_id = current_data.request_id;
  2070. reporter_data.data = (unsigned char *)&request_id;
  2071. reporter_data.dataLen = sizeof(uint32_t);
  2072. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2073. "Reporter data fail, model id:%u, data index:%u.", this->Id(), current_data.index);
  2074. // thread id
  2075. int32_t thread_id = GetDataInputTid();
  2076. reporter_data.data = (unsigned char *)&thread_id;
  2077. reporter_data.dataLen = sizeof(int32_t);
  2078. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2079. "Reporter data fail, model id:%u, data index:%u.", this->Id(), current_data.index);
  2080. // time info
  2081. time_info_.modelId = this->Id();
  2082. reporter_data.data = (unsigned char *)&time_info_;
  2083. reporter_data.dataLen = sizeof(struct timeInfo);
  2084. GE_CHK_BOOL_EXEC(prof_mgr.CallMsprofReport(reporter_data) == 0, return FAILED,
  2085. "Reporter data fail, model id:%u, data index:%u.", this->Id(), current_data.index);
  2086. return SUCCESS;
  2087. }
  2088. void DavinciModel::SetProfileTime(ModelProcStage stage, int64_t endTime) {
  2089. int64_t time = endTime;
  2090. if (time == 0) {
  2091. mmTimespec timespec = mmGetTickCount();
  2092. time = timespec.tv_sec * 1000 * 1000 * 1000 + timespec.tv_nsec; // 1000 ^ 3 converts second to nanosecond
  2093. }
  2094. switch (stage) {
  2095. case MODEL_LOAD_START:
  2096. load_begin_time_ = time;
  2097. break;
  2098. case MODEL_LOAD_END:
  2099. load_end_time_ = time;
  2100. break;
  2101. case MODEL_PRE_PROC_START:
  2102. time_info_.processBeginTime = time;
  2103. break;
  2104. case MODEL_PRE_PROC_END:
  2105. time_info_.processEndTime = time;
  2106. break;
  2107. case MODEL_INFER_START:
  2108. time_info_.inferenceBeginTime = time;
  2109. break;
  2110. case MODEL_INFER_END:
  2111. time_info_.inferenceEndTime = time;
  2112. break;
  2113. case MODEL_AFTER_PROC_START:
  2114. time_info_.dumpBeginTime = time;
  2115. break;
  2116. case MODEL_AFTER_PROC_END:
  2117. time_info_.dumpEndTime = time;
  2118. break;
  2119. default:
  2120. break;
  2121. }
  2122. return;
  2123. }
  2124. ///
  2125. /// @ingroup ge
  2126. /// @brief send Output Op result to upper layer
  2127. /// @already malloced in ModelLoad, no need to malloc again
  2128. /// @param [in] data_id: the index of output_data
  2129. /// @param [in/out] output_data: real user output_data
  2130. /// @param [in] kind: the kind of rtMemcpy
  2131. /// @return Status result
  2132. /// @author
  2133. ///
  2134. Status DavinciModel::CopyOutputData(uint32_t data_id, OutputData &output_data, rtMemcpyKind_t kind) {
  2135. if (output_addrs_list_.empty()) {
  2136. Status ret = SyncVarData();
  2137. return ret;
  2138. }
  2139. output_data.index = data_id;
  2140. output_data.model_id = model_id_;
  2141. if (output_data.blobs.size() != new_output_data_info_.size()) {
  2142. GELOGE(FAILED, "Output data buffer num=%zu not equal model data num=%zu", output_data.blobs.size(),
  2143. new_output_data_info_.size());
  2144. return FAILED;
  2145. }
  2146. std::vector<DataBuffer> &blobs = output_data.blobs;
  2147. size_t idx = 0;
  2148. for (const auto &output : new_output_data_info_) {
  2149. if (output.first >= blobs.size()) {
  2150. GELOGE(FAILED, "Blobs not match: blobs=%zu, tensor=%zu, index=%u, size=%ld", blobs.size(),
  2151. new_input_data_info_.size(), output.first, output.second.GetDataInfo().at(0).first);
  2152. return FAILED;
  2153. }
  2154. if ((kind == RT_MEMCPY_DEVICE_TO_DEVICE) && (copy_only_addrs_.count(output.second.GetBasicAddr()) == 0)) {
  2155. continue; // Skip: Feed by zero copy.
  2156. }
  2157. DataBuffer &buffer = blobs[output.first];
  2158. uint64_t mem_size = static_cast<uint64_t>(output.second.GetDataSize());
  2159. if ((buffer.length == 0) || (mem_size == 0)) {
  2160. GELOGI("Length of data is zero, No need copy. output tensor index=%u", output.first);
  2161. continue;
  2162. }
  2163. if (is_dynamic_) {
  2164. GELOGI("No need to check output data size.");
  2165. } else if (buffer.length < mem_size) {
  2166. GELOGE(FAILED, "Tensor data size=%lu, buffer size=%lu", mem_size, buffer.length);
  2167. return FAILED;
  2168. } else if (buffer.length > mem_size) {
  2169. GELOGW("Tensor data size=%lu, buffer size=%lu", mem_size, buffer.length);
  2170. }
  2171. int64_t data_size = output.second.GetDataSize();
  2172. if (is_online_infer_dynamic_) {
  2173. if (merge_nodes_gear_and_real_out_size_info_.find(idx) != merge_nodes_gear_and_real_out_size_info_.end()) {
  2174. auto gear_and_real_out_size_info = merge_nodes_gear_and_real_out_size_info_[idx];
  2175. data_size = gear_and_real_out_size_info[cur_dynamic_dims_];
  2176. }
  2177. }
  2178. uint64_t buffer_length = buffer.length;
  2179. void *buffer_addr = reinterpret_cast<void *>(reinterpret_cast<uintptr_t>(buffer.data));
  2180. GELOGI("CopyPlainData memcpy graph_%u type[F] output[%u] memaddr[%p] mem_size[%lu] datasize[%lu]",
  2181. runtime_param_.graph_id, output.first, output.second.GetBasicAddr(), data_size, buffer_length);
  2182. GE_CHK_RT_RET(rtMemcpy(buffer_addr, buffer_length, output.second.GetBasicAddr(), data_size, kind));
  2183. idx++;
  2184. }
  2185. return SUCCESS;
  2186. }
  2187. Status DavinciModel::InitOutputTensorInfo(const OpDescPtr &op_desc) {
  2188. size_t input_num = op_desc->GetInputsSize();
  2189. if (is_getnext_sink_dynamic_) {
  2190. input_num = input_num - kGetDynamicDimsCount;
  2191. }
  2192. for (size_t i = 0; i < input_num; ++i) {
  2193. int64_t size = 0;
  2194. auto input_desc = op_desc->GetInputDescPtr(i);
  2195. GE_CHECK_NOTNULL(input_desc);
  2196. auto ret = TensorUtils::GetTensorSizeInBytes(*input_desc, size);
  2197. GE_IF_BOOL_EXEC(ret != GRAPH_SUCCESS,
  2198. GELOGE(ret, "Get size from TensorDesc failed, op:%s, input id:%zu", op_desc->GetName().c_str(), i);
  2199. return ret);
  2200. const GeShape &shape = input_desc->GetShape();
  2201. GELOGI("Output size is %ld, output shape is %s.", size, formats::JoinToString(shape.GetDims()).c_str());
  2202. output_buffer_size_.emplace_back(size);
  2203. output_shape_info_.emplace_back(shape);
  2204. }
  2205. return SUCCESS;
  2206. }
  2207. Status DavinciModel::GenOutputTensorInfo(OutputData *output_data, vector<OutputTensorInfo> &outputs) {
  2208. GE_CHECK_NOTNULL(output_data);
  2209. if (!output_data->blobs.empty()) {
  2210. GELOGI("No need to generate output tensor info, model id:%u", model_id_);
  2211. return SUCCESS;
  2212. }
  2213. vector<int64_t> output_buffer_size;
  2214. vector<vector<int64_t>> output_shape_info;
  2215. size_t output_num = output_buffer_size_.size();
  2216. for (size_t i = 0; i < output_num; ++i) {
  2217. int64_t output_size = output_buffer_size_[i];
  2218. vector<int64_t> output_shape = output_shape_info_[i].GetDims();
  2219. if (is_online_infer_dynamic_) {
  2220. if (merge_nodes_gear_and_real_out_size_info_.find(i) != merge_nodes_gear_and_real_out_size_info_.end()) {
  2221. auto gear_and_real_out_size_info = merge_nodes_gear_and_real_out_size_info_[i];
  2222. output_size = gear_and_real_out_size_info[cur_dynamic_dims_];
  2223. auto gear_and_real_out_shape_info = merge_nodes_gear_and_real_out_shape_info_[i];
  2224. output_shape = gear_and_real_out_shape_info[cur_dynamic_dims_];
  2225. is_dynamic_ = true;
  2226. }
  2227. }
  2228. GELOGI("Output size is %ld, output shape is %s.", output_size, formats::JoinToString(output_shape).c_str());
  2229. output_buffer_size.push_back(output_size);
  2230. output_shape_info.push_back(output_shape);
  2231. }
  2232. GELOGI("Output blobs size:%zu, model id:%u", output_buffer_size_.size(), model_id_);
  2233. for (size_t i = 0; i < output_buffer_size.size(); ++i) {
  2234. std::unique_ptr<uint8_t[]> data_buf(new (std::nothrow) uint8_t[output_buffer_size[i]]);
  2235. if (data_buf == nullptr) {
  2236. GELOGE(GE_GRAPH_MALLOC_FAILED, "Malloc buffer failed.");
  2237. return GE_GRAPH_MALLOC_FAILED;
  2238. }
  2239. output_data->blobs.push_back({data_buf.get(), static_cast<uint64_t>(output_buffer_size[i]), false});
  2240. OutputTensorInfo output;
  2241. output.dims = output_shape_info[i];
  2242. output.data = std::move(data_buf);
  2243. output.length = output_buffer_size[i];
  2244. outputs.emplace_back(std::move(output));
  2245. GELOGD("Output index:%zu, output dims is %s, data length:%lu.", i,
  2246. formats::JoinToString(output.dims).c_str(), output.length);
  2247. }
  2248. return SUCCESS;
  2249. }
  2250. ///
  2251. /// @ingroup ge
  2252. /// @brief send Output Op result to upper layer
  2253. /// @already malloced in ModelLoad, no need to malloc again
  2254. /// @param [in] data_id: the index of output_data
  2255. /// @param [in] rslt_flg: result flag
  2256. /// @param [in] seq_end_flag: sequence end flag
  2257. /// @param [out] output_data: real user output_data
  2258. /// @return Status result
  2259. /// @author
  2260. ///
  2261. Status DavinciModel::ReturnResult(uint32_t data_id, const bool rslt_flg, const bool seq_end_flag,
  2262. OutputData *output_data) {
  2263. GE_CHK_BOOL_EXEC(listener_ != nullptr, return PARAM_INVALID, "listener_ is null.");
  2264. std::vector<ge::OutputTensorInfo> outputs;
  2265. // return result is not required
  2266. if (!rslt_flg && !seq_end_flag) {
  2267. GELOGW("Compute failed, model id: %u", model_id_);
  2268. auto model_manager = ModelManager::GetInstance();
  2269. GE_CHECK_NOTNULL(model_manager);
  2270. auto exception_infos = model_manager->GetExceptionInfos();
  2271. if (exception_infos.size() > 0) {
  2272. GE_CHK_STATUS_RET(data_dumper_.DumpExceptionInfo(exception_infos), "Dump exception info failed");
  2273. } else {
  2274. GELOGI("Exception info is null");
  2275. }
  2276. GE_CHK_STATUS(listener_->OnComputeDone(model_id_, data_id, INTERNAL_ERROR, outputs), "OnComputeDone failed.");
  2277. return INTERNAL_ERROR;
  2278. }
  2279. if (output_addrs_list_.empty()) {
  2280. GELOGW("Output tensor list is empty, model id: %u", model_id_);
  2281. GE_CHK_STATUS(listener_->OnComputeDone(model_id_, data_id, INTERNAL_ERROR, outputs), "OnComputeDone failed.");
  2282. return INTERNAL_ERROR;
  2283. }
  2284. GE_CHECK_NOTNULL(output_data);
  2285. output_data->index = data_id;
  2286. output_data->model_id = model_id_;
  2287. if (is_getnext_sink_dynamic_) {
  2288. GELOGD("Reinit cur dynamic dims when getnext sink dynamic.");
  2289. cur_dynamic_dims_.clear();
  2290. cur_dynamic_dims_.resize(shape_of_cur_dynamic_dims_);
  2291. auto ret = rtMemcpy(cur_dynamic_dims_.data(), shape_of_cur_dynamic_dims_ * sizeof(int32_t),
  2292. netoutput_last_input_addr_, netoutput_last_input_size_, RT_MEMCPY_DEVICE_TO_HOST);
  2293. GE_CHK_RT_RET(ret);
  2294. }
  2295. GELOGD("Cur dynamic dims is %s.", formats::JoinToString(cur_dynamic_dims_).c_str());
  2296. if (GenOutputTensorInfo(output_data, outputs) != SUCCESS) {
  2297. return INTERNAL_ERROR;
  2298. }
  2299. if (CopyOutputData(data_id, *output_data, RT_MEMCPY_DEVICE_TO_HOST) != SUCCESS) {
  2300. GE_CHK_STATUS(listener_->OnComputeDone(model_id_, data_id, INTERNAL_ERROR, outputs), "OnComputeDone failed");
  2301. return INTERNAL_ERROR;
  2302. }
  2303. if (seq_end_flag) {
  2304. GELOGW("End of sequence, model id: %u", model_id_);
  2305. GE_CHK_STATUS(listener_->OnComputeDone(model_id_, data_id, END_OF_SEQUENCE, outputs), "OnCompute Done failed.");
  2306. return END_OF_SEQUENCE;
  2307. }
  2308. GE_CHK_STATUS(listener_->OnComputeDone(model_id_, data_id, SUCCESS, outputs), "OnComputeDone failed");
  2309. return SUCCESS;
  2310. }
  2311. ///
  2312. /// @ingroup ge
  2313. /// @brief return not output to upper layer for cloud case
  2314. /// @param [in] data_id
  2315. /// @return Status result
  2316. ///
  2317. Status DavinciModel::ReturnNoOutput(uint32_t data_id) {
  2318. GELOGI("ReturnNoOutput model id:%u", model_id_);
  2319. GE_CHK_BOOL_EXEC(listener_ != nullptr, return PARAM_INVALID, "listener_ is null!");
  2320. std::vector<ge::OutputTensorInfo> outputs;
  2321. GE_CHK_STATUS(listener_->OnComputeDone(model_id_, data_id, SUCCESS, outputs), "OnComputeDone failed.");
  2322. return SUCCESS;
  2323. }
  2324. void *DavinciModel::Run(DavinciModel *model) {
  2325. GE_CHK_BOOL_EXEC(model != nullptr,
  2326. CsaInteract::GetInstance().WriteErrorCode(FAILED, ERROR_MODULE_FMK, JOBSUBSTATE_GRAPH_EXEC);
  2327. return nullptr, "model_pointer is null!")
  2328. bool seq_end_flag = false;
  2329. uint32_t model_id = model->Id();
  2330. uint32_t device_id = model->GetDeviceId();
  2331. GELOGI("Model Run thread start, model_id:%u.", model_id);
  2332. rtError_t rt_ret = rtSetDevice(static_cast<int32_t>(device_id));
  2333. if (rt_ret != RT_ERROR_NONE) {
  2334. GELOGE(FAILED, "Model run rtsetdevice failed.");
  2335. return nullptr;
  2336. }
  2337. // DeviceReset before thread run finished!
  2338. GE_MAKE_GUARD(not_used_var, [&] { GE_CHK_RT(rtDeviceReset(device_id)); });
  2339. while (model->RunFlag()) {
  2340. bool rslt_flg = true;
  2341. if (model->GetDataInputer() == nullptr) {
  2342. GELOGW("Data inputer is nullptr.");
  2343. CsaInteract::GetInstance().StoreInternalErrorCode(FAILED, ERROR_MODULE_FMK, JOBSUBSTATE_GRAPH_EXEC);
  2344. break;
  2345. }
  2346. std::shared_ptr<InputDataWrapper> data_wrapper;
  2347. Status ret = model->GetDataInputer()->Pop(data_wrapper);
  2348. if (data_wrapper == nullptr || ret != SUCCESS) {
  2349. GELOGI("data_wrapper is null!");
  2350. continue;
  2351. }
  2352. GELOGI("Getting the input data, model_id:%u", model_id);
  2353. GE_IF_BOOL_EXEC(!model->RunFlag(), break);
  2354. InputData current_data = data_wrapper->GetInput();
  2355. GELOGI("Model thread Run begin, model id:%u, data index:%u.", model_id, current_data.index);
  2356. GE_TIMESTAMP_START(Model_SyncVarData);
  2357. ret = model->SyncVarData();
  2358. GE_CHK_BOOL_TRUE_EXEC_WITH_LOG(
  2359. ret != SUCCESS, (void)model->ReturnResult(current_data.index, false, false, data_wrapper->GetOutput());
  2360. CsaInteract::GetInstance().StoreInternalErrorCode(ret, ERROR_MODULE_FMK, JOBSUBSTATE_GRAPH_EXEC);
  2361. continue, "Copy input data to model failed."); // [No need to check value]
  2362. GE_IF_BOOL_EXEC(model->is_first_execute_, GE_TIMESTAMP_EVENT_END(Model_SyncVarData, "Model Run SyncVarData"));
  2363. GELOGI("Copy input data, model id:%u", model_id);
  2364. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(),
  2365. model->SetProfileTime(MODEL_PRE_PROC_START));
  2366. ret = model->CopyInputData(current_data, false);
  2367. GE_CHK_BOOL_TRUE_EXEC_WITH_LOG(
  2368. ret != SUCCESS, (void)model->ReturnResult(current_data.index, false, false, data_wrapper->GetOutput());
  2369. CsaInteract::GetInstance().StoreInternalErrorCode(ret, ERROR_MODULE_FMK, JOBSUBSTATE_GRAPH_EXEC);
  2370. continue, "Copy input data to model failed."); // [No need to check value]
  2371. if (model->is_online_infer_dynamic_ && !model->is_getnext_sink_dynamic_) {
  2372. model->cur_dynamic_dims_.clear();
  2373. GE_IF_BOOL_EXEC(current_data.blobs.empty(), break);
  2374. auto shape_data_buffer_data = current_data.blobs.back().data;
  2375. auto shape_data_buffer_length = current_data.blobs.back().length;
  2376. model->cur_dynamic_dims_.assign(reinterpret_cast<int32_t *>(shape_data_buffer_data),
  2377. reinterpret_cast<int32_t *>(shape_data_buffer_data) +
  2378. shape_data_buffer_length / sizeof(int32_t));
  2379. GELOGD("Data: cur dynamic dims is %s", formats::JoinToString(model->cur_dynamic_dims_).c_str());
  2380. delete[] reinterpret_cast<int32_t *>(current_data.blobs.back().data);
  2381. current_data.blobs.pop_back();
  2382. }
  2383. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), model->SetProfileTime(MODEL_PRE_PROC_END));
  2384. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), model->SetProfileTime(MODEL_INFER_START));
  2385. GE_TIMESTAMP_START(rtModelExecute);
  2386. GELOGI("rtModelExecute start.");
  2387. rt_ret = rtModelExecute(model->rt_model_handle_, model->rt_model_stream_, 0);
  2388. GE_IF_BOOL_EXEC(rt_ret != RT_ERROR_NONE, rslt_flg = false;
  2389. (void)model->ReturnResult(current_data.index, false, false, data_wrapper->GetOutput());
  2390. CsaInteract::GetInstance().WriteErrorCode(rt_ret, ERROR_MODULE_RUNTIME, JOBSUBSTATE_GRAPH_EXEC);
  2391. continue);
  2392. GELOGI("rtModelExecute end");
  2393. GE_IF_BOOL_EXEC(model->is_first_execute_, GE_TIMESTAMP_EVENT_END(rtModelExecute, "GraphExcute::rtModelExecute"));
  2394. GE_TIMESTAMP_START(rtStreamSynchronize);
  2395. GELOGI("rtStreamSynchronize start.");
  2396. rt_ret = rtStreamSynchronize(model->rt_model_stream_);
  2397. if (rt_ret == kEndOfSequence || rt_ret == kEndOfSequenceNew) {
  2398. seq_end_flag = true;
  2399. }
  2400. if (rt_ret == kModelAbortNormal || rt_ret == kModelAbortNormalNew) {
  2401. GELOGI("The model with multiple datasets aborts normally.");
  2402. } else {
  2403. GE_IF_BOOL_EXEC(
  2404. rt_ret != RT_ERROR_NONE, rslt_flg = false; GELOGI("seq_end_flg: %d", seq_end_flag);
  2405. (void)model->ReturnResult(current_data.index, false, seq_end_flag,
  2406. data_wrapper->GetOutput()); // [No need to check value]
  2407. CsaInteract::GetInstance().StoreInternalErrorCode(rt_ret, ERROR_MODULE_RUNTIME, JOBSUBSTATE_GRAPH_EXEC);
  2408. continue);
  2409. }
  2410. GELOGI("rtStreamSynchronize end.");
  2411. GE_IF_BOOL_EXEC(model->is_first_execute_,
  2412. GE_TIMESTAMP_EVENT_END(rtStreamSynchronize, "GraphExcute::Wait for rtStreamSynchronize"));
  2413. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), model->SetProfileTime(MODEL_INFER_END));
  2414. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(),
  2415. model->SetProfileTime(MODEL_AFTER_PROC_START));
  2416. GE_TIMESTAMP_START(ReturnResult3);
  2417. // copy output data from device to host
  2418. GE_IF_BOOL_EXEC(!model->output_addrs_list_.empty(),
  2419. (void)model->ReturnResult(current_data.index, rslt_flg, false, data_wrapper->GetOutput()))
  2420. // copy output data from device to host for variable graph
  2421. GE_IF_BOOL_EXEC(model->output_addrs_list_.empty(), (void)model->ReturnNoOutput(current_data.index));
  2422. GE_IF_BOOL_EXEC(model->is_first_execute_,
  2423. GE_TIMESTAMP_EVENT_END(ReturnResult3, "GraphExcute::CopyDataFromDeviceToHost"));
  2424. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(),
  2425. model->SetProfileTime(MODEL_AFTER_PROC_END));
  2426. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), (void)model->SinkTimeProfile(current_data));
  2427. model->iterator_count_++;
  2428. model->is_first_execute_ = false;
  2429. GELOGI("run iterator count is %lu", model->iterator_count_);
  2430. }
  2431. CsaInteract::GetInstance().WriteInternalErrorCode();
  2432. GELOGI("Model run end, model id:%u", model->model_id_);
  2433. return nullptr;
  2434. }
  2435. ///
  2436. /// @ingroup ge
  2437. /// @brief call API provided by data inputer to destroy thread
  2438. /// @param [in] no
  2439. /// @return Status Destroy result
  2440. /// @author
  2441. ///
  2442. Status DavinciModel::DestroyThread() {
  2443. GE_CHK_BOOL_RET_STATUS(data_inputer_ != nullptr, INTERNAL_ERROR, "data_inputer_ is nullptr.");
  2444. run_flg_ = false;
  2445. data_inputer_->Stop();
  2446. if (thread_id_.joinable()) {
  2447. thread_id_.join();
  2448. }
  2449. return SUCCESS;
  2450. }
  2451. ///
  2452. /// @ingroup ge
  2453. /// @brief create model std::thread,
  2454. /// @brief start to execute Model
  2455. /// @param [in] no
  2456. /// @return Status create model thread and execute result
  2457. /// @author
  2458. ///
  2459. Status DavinciModel::ModelRunStart() {
  2460. GE_CHK_BOOL_RET_STATUS(data_inputer_ != nullptr, INTERNAL_ERROR, "data_inputer_ is nullptr.");
  2461. LockRunFlg();
  2462. GE_MAKE_GUARD(tmp_lock, [&] { UnlockRunFlg(); });
  2463. GE_CHK_BOOL_RET_STATUS(!run_flg_, INTERNAL_ERROR, "Model already started.");
  2464. run_flg_ = true;
  2465. // create stream instance which rt_model_handel is running on
  2466. GE_CHK_RT_RET(rtStreamCreate(&rt_model_stream_, priority_));
  2467. is_inner_model_stream_ = true;
  2468. string opt = "0";
  2469. (void)ge::GetContext().GetOption(OPTION_GE_MAX_DUMP_OP_NUM, opt); // option may not be set up, no need to check value
  2470. int64_t maxDumpOpNum = std::strtol(opt.c_str(), nullptr, kDecimal);
  2471. maxDumpOpNum_ = maxDumpOpNum;
  2472. CREATE_STD_THREAD(thread_id_, DavinciModel::Run, this);
  2473. GELOGI("model tread create success, model id:%u.", model_id_);
  2474. return SUCCESS;
  2475. }
  2476. ///
  2477. /// @ingroup ge
  2478. /// @brief call API provided by data inputer and destroy model Thread
  2479. /// @param [in] no
  2480. /// @return Status Destroy result
  2481. /// @author
  2482. ///
  2483. Status DavinciModel::ModelRunStop() {
  2484. LockRunFlg();
  2485. GE_MAKE_GUARD(tmp_lock, [&] { UnlockRunFlg(); });
  2486. GE_IF_BOOL_EXEC(!run_flg_, return SUCCESS);
  2487. GE_CHK_STATUS_RET(DestroyThread(), "DestoyThead failed.");
  2488. return SUCCESS;
  2489. }
  2490. void DavinciModel::UnbindTaskSinkStream() {
  2491. // unbinding hcom stream
  2492. UnbindHcomStream();
  2493. if (is_stream_list_bind_) {
  2494. for (size_t i = 0; i < stream_list_.size(); i++) {
  2495. // unbind rt_model_handle and streams
  2496. GE_LOGW_IF(rtModelUnbindStream(rt_model_handle_, stream_list_[i]) != RT_ERROR_NONE,
  2497. "Unbind stream from model failed! Index: %zu", i);
  2498. }
  2499. }
  2500. if (is_inner_model_stream_) {
  2501. if (!input_queue_ids_.empty() || !output_queue_ids_.empty()) {
  2502. GE_LOGW_IF(rtModelUnbindStream(rt_model_handle_, rt_model_stream_) != RT_ERROR_NONE, "Unbind stream failed!");
  2503. }
  2504. // destroy stream that is bound with rt_model
  2505. GE_LOGW_IF(rtStreamDestroy(rt_model_stream_) != RT_ERROR_NONE, "Destroy stream for rt_model failed.")
  2506. }
  2507. if (is_pure_head_stream_ && rt_head_stream_ != nullptr) {
  2508. GE_LOGW_IF(rtModelUnbindStream(rt_model_handle_, rt_head_stream_) != RT_ERROR_NONE, "Unbind stream failed!");
  2509. GE_LOGW_IF(rtStreamDestroy(rt_head_stream_) != RT_ERROR_NONE, "Destroy stream for rt_model failed.");
  2510. rt_head_stream_ = nullptr;
  2511. }
  2512. if (rt_entry_stream_ != nullptr) {
  2513. GE_LOGW_IF(rtModelUnbindStream(rt_model_handle_, rt_entry_stream_) != RT_ERROR_NONE, "Unbind stream failed!");
  2514. GE_LOGW_IF(rtStreamDestroy(rt_entry_stream_) != RT_ERROR_NONE, "Destroy stream for rt_model failed.");
  2515. rt_entry_stream_ = nullptr;
  2516. }
  2517. }
  2518. void *DavinciModel::GetRunAddress(void *addr) const {
  2519. if (fixed_mem_base_ == reinterpret_cast<uintptr_t>(mem_base_)) {
  2520. return addr;
  2521. }
  2522. uintptr_t ptr = reinterpret_cast<uintptr_t>(addr);
  2523. if ((fixed_mem_base_ <= ptr) && (ptr < fixed_mem_base_ + runtime_param_.mem_size)) {
  2524. return mem_base_ + (ptr - fixed_mem_base_);
  2525. } else {
  2526. return addr;
  2527. }
  2528. }
  2529. Status DavinciModel::CreateKnownZeroCopyMap(const vector<void *> &inputs, const vector<void *> &outputs) {
  2530. GELOGI("in, inputs size: %zu, input addr size: %zu, outputs size: %zu, output addr size: %zu",
  2531. inputs.size(), input_addrs_list_.size(), outputs.size(), output_addrs_list_.size());
  2532. if (inputs.size() > input_addrs_list_.size()) {
  2533. GELOGE(FAILED, "input data addr %zu should less than input op num %zu.", inputs.size(), input_addrs_list_.size());
  2534. return FAILED;
  2535. }
  2536. // remove zero copy addr in last iteration
  2537. known_input_data_info_.clear();
  2538. known_output_data_info_.clear();
  2539. for (size_t i = 0; i < inputs.size(); ++i) {
  2540. const vector<void *> &addr_list = input_addrs_list_[i];
  2541. void *addr = GetRunAddress(addr_list[kDataIndex]);
  2542. known_input_data_info_[addr] = inputs[i];
  2543. GELOGI("input %zu, v addr %p, r addr %p, p addr %p", i, addr_list[kDataIndex], addr, inputs[i]);
  2544. }
  2545. if (output_addrs_list_.empty()) {
  2546. GELOGW("output op num in graph is %zu", output_addrs_list_.size());
  2547. return SUCCESS;
  2548. }
  2549. const vector<void *> &addr_list = output_addrs_list_.front();
  2550. for (size_t i = 0; i < addr_list.size() && i < outputs.size(); ++i) {
  2551. void *addr = GetRunAddress(addr_list[i]);
  2552. known_output_data_info_[addr] = outputs[i];
  2553. GELOGI("output %zu, v addr %p, r addr %p, p addr %p", i, addr_list[i], addr, outputs[i]);
  2554. }
  2555. GELOGI("success, known input data info size: %zu, known output data info size: %zu",
  2556. known_input_data_info_.size(), known_output_data_info_.size());
  2557. return SUCCESS;
  2558. }
  2559. void DavinciModel::SetTotalIOAddrs(const vector<void *> &io_addrs) {
  2560. if (fixed_mem_base_ == reinterpret_cast<uintptr_t>(mem_base_)) {
  2561. total_io_addrs_.insert(total_io_addrs_.end(), io_addrs.begin(), io_addrs.end());
  2562. return;
  2563. }
  2564. for (size_t i = 0; i < io_addrs.size(); ++i) {
  2565. total_io_addrs_.emplace_back(GetRunAddress(io_addrs[i]));
  2566. }
  2567. }
  2568. Status DavinciModel::UpdateKnownZeroCopyAddr(vector<void *> &total_io_addrs, bool update_args) {
  2569. if (fixed_mem_base_ != reinterpret_cast<uintptr_t>(mem_base_) && update_args) {
  2570. for (size_t i = 0; i < total_io_addrs.size(); ++i) {
  2571. total_io_addrs[i] = GetRunAddress(total_io_addrs[i]);
  2572. }
  2573. }
  2574. for (size_t i = 0; i < total_io_addrs.size(); ++i) {
  2575. auto it_in = known_input_data_info_.find(total_io_addrs[i]);
  2576. if (it_in != known_input_data_info_.end()) {
  2577. GELOGI("input %zu, v addr %p, p addr %p", i, total_io_addrs[i], known_input_data_info_.at(total_io_addrs[i]));
  2578. total_io_addrs[i] = known_input_data_info_.at(total_io_addrs[i]);
  2579. }
  2580. auto it_out = known_output_data_info_.find(total_io_addrs[i]);
  2581. if (it_out != known_output_data_info_.end()) {
  2582. GELOGI("output %zu, v addr %p, p addr %p", i, total_io_addrs[i], known_output_data_info_.at(total_io_addrs[i]));
  2583. total_io_addrs[i] = known_output_data_info_.at(total_io_addrs[i]);
  2584. }
  2585. }
  2586. GELOGI("success, total io addrs size: %zu", total_io_addrs.size());
  2587. return SUCCESS;
  2588. }
  2589. Status DavinciModel::UpdateKnownNodeArgs(const vector<void *> &inputs, const vector<void *> &outputs) {
  2590. GELOGI("DavinciModel::UpdateKnownNodeArgs in");
  2591. GE_CHK_STATUS_RET(CreateKnownZeroCopyMap(inputs, outputs),
  2592. "DavinciModel::UpdateKnownNodeArgs create map for input/output zero copy.");
  2593. if (!base_addr_not_changed_) {
  2594. total_io_addrs_.clear();
  2595. orig_total_io_addrs_.clear();
  2596. for (size_t task_index = 0; task_index < task_list_.size(); ++task_index) {
  2597. auto &task = task_list_[task_index];
  2598. if (task != nullptr) {
  2599. Status ret = task->UpdateArgs();
  2600. if (ret != SUCCESS) {
  2601. GELOGE(FAILED, "task %zu created by davinci model is nullptr.", task_index);
  2602. return FAILED;
  2603. }
  2604. }
  2605. }
  2606. // cache latest iterator io addr
  2607. orig_total_io_addrs_ = total_io_addrs_;
  2608. } else {
  2609. total_io_addrs_ = orig_total_io_addrs_;
  2610. }
  2611. GE_CHK_STATUS_RET(UpdateKnownZeroCopyAddr(total_io_addrs_, false), "DavinciModel::UpdateKnownZeroCopyAddr failed.");
  2612. if (total_args_size_ == 0) {
  2613. GELOGW("DavinciModel::UpdateKnownNodeArgs device args %p, dst size %u, pass rtMemcpy.", args_, total_args_size_);
  2614. } else {
  2615. uint32_t total_addr_size = total_io_addrs_.size() * sizeof(uint64_t);
  2616. GELOGI("DavinciModel::UpdateKnownNodeArgs device args %p, dst size %u, src size %u", args_, total_args_size_,
  2617. total_addr_size);
  2618. Status rt_ret =
  2619. rtMemcpy(args_, total_args_size_, total_io_addrs_.data(), total_addr_size, RT_MEMCPY_HOST_TO_DEVICE);
  2620. GE_IF_BOOL_EXEC(rt_ret != RT_ERROR_NONE, GELOGE(rt_ret, "rtMemcpy error, ret: Ox%X", rt_ret); return FAILED;)
  2621. }
  2622. GELOGI("DavinciModel::UpdateKnownNodeArgs success");
  2623. return SUCCESS;
  2624. }
  2625. Status DavinciModel::InitTaskInfo(domi::ModelTaskDef &model_task_def) {
  2626. GELOGI("InitTaskInfo in, task size %d", model_task_def.task().size());
  2627. task_list_.resize(model_task_def.task_size());
  2628. for (int i = 0; i < model_task_def.task_size(); ++i) {
  2629. // dynamic shape will create task_list_ before
  2630. const domi::TaskDef &task = model_task_def.task(i);
  2631. if (this->task_list_[i] == nullptr) {
  2632. task_list_[i] = TaskInfoFactory::Instance().Create(static_cast<rtModelTaskType_t>(task.type()));
  2633. }
  2634. GE_CHECK_NOTNULL(task_list_[i]);
  2635. Status ret = task_list_[i]->Init(task, this);
  2636. if (ret != SUCCESS) {
  2637. GELOGE(ret, "Task index %d init failed.", i);
  2638. return ret;
  2639. }
  2640. }
  2641. GELOGI("InitTaskInfo out");
  2642. return SUCCESS;
  2643. }
  2644. Status DavinciModel::MallocKnownArgs() {
  2645. GELOGI("DavinciModel::MallocKnownArgs in");
  2646. const auto &model_task_def = ge_model_->GetModelTaskDefPtr();
  2647. if (model_task_def->task_size() == 0) {
  2648. GELOGW("DavinciModel::MallocKnownArgs davincimodel has no task info.");
  2649. return SUCCESS;
  2650. }
  2651. task_list_.resize(model_task_def->task_size());
  2652. for (int32_t i = 0; i < model_task_def->task_size(); ++i) {
  2653. const domi::TaskDef &taskdef = model_task_def->task(i);
  2654. task_list_[i] = TaskInfoFactory::Instance().Create(static_cast<rtModelTaskType_t>(taskdef.type()));
  2655. GE_CHECK_NOTNULL(task_list_[i]);
  2656. Status ret = task_list_[i]->CalculateArgs(taskdef, this);
  2657. if (ret != SUCCESS) {
  2658. GELOGE(ret, "TaskInfo CalculateArgs failed.");
  2659. return ret;
  2660. }
  2661. }
  2662. // malloc args memory
  2663. if (total_args_size_ == 0) {
  2664. GELOGW("DavinciModel::MallocKnownArgs total_args_size_ equals to zero.");
  2665. return SUCCESS;
  2666. }
  2667. rtError_t rt_ret = rtMalloc(&args_, total_args_size_, RT_MEMORY_HBM);
  2668. if (rt_ret != RT_ERROR_NONE) {
  2669. GELOGE(RT_FAILED, "Call rtMalloc failed, ret: 0x%X", rt_ret);
  2670. return RT_ERROR_TO_GE_STATUS(rt_ret);
  2671. }
  2672. // malloc dynamic and static hybrid memory
  2673. if (total_hybrid_args_size_ != 0) {
  2674. rt_ret = rtMalloc(&hybrid_addrs_, total_hybrid_args_size_, RT_MEMORY_HBM);
  2675. if (rt_ret != RT_ERROR_NONE) {
  2676. GELOGE(RT_FAILED, "Call rtMalloc failed, ret: 0x%X", rt_ret);
  2677. return RT_ERROR_TO_GE_STATUS(rt_ret);
  2678. }
  2679. }
  2680. // malloc fixed addr memory, eg: rts op
  2681. if (total_fixed_addr_size_ != 0) {
  2682. GELOGI("Begin to allocate fixed addr.");
  2683. rt_ret = rtMalloc(&fixed_addrs_, total_fixed_addr_size_, RT_MEMORY_HBM);
  2684. if (rt_ret != RT_ERROR_NONE) {
  2685. GELOGE(RT_FAILED, "Call rtMalloc failed, ret: 0x%X", rt_ret);
  2686. return RT_ERROR_TO_GE_STATUS(rt_ret);
  2687. }
  2688. }
  2689. GELOGI("DavinciModel::MallocKnownArgs success, total args size %u. total fixed addr size %ld", total_args_size_,
  2690. total_fixed_addr_size_);
  2691. return SUCCESS;
  2692. }
  2693. void DavinciModel::SaveProfilingTaskDescInfo(const OpDescPtr &op, const TaskInfoPtr &task,
  2694. const domi::TaskDef &task_def, size_t task_index) {
  2695. bool flag = GetL1FusionEnableOption();
  2696. char skt_enable_env[MMPA_MAX_PATH] = { 0x00 };
  2697. INT32 res = mmGetEnv("SKT_ENABLE", skt_enable_env, MMPA_MAX_PATH);
  2698. int64_t env_flag = (res == EN_OK) ? std::strtol(skt_enable_env, nullptr, kDecimal) : 0;
  2699. if (env_flag != 0) {
  2700. flag = true;
  2701. }
  2702. TaskDescInfo task_desc_info;
  2703. if (!om_name_.empty()) {
  2704. task_desc_info.model_name = om_name_;
  2705. } else {
  2706. task_desc_info.model_name = name_;
  2707. }
  2708. task_desc_info.op_name = op->GetName();
  2709. task_desc_info.block_dim = task_def.kernel().block_dim();
  2710. task_desc_info.task_id = task->GetTaskID();
  2711. task_desc_info.stream_id = task->GetStreamId();
  2712. task_desc_info.shape_type = "static";
  2713. task_desc_info.cur_iter_num = 0;
  2714. // task type
  2715. task_desc_info.task_type = kTaskTypeInvalid;
  2716. auto model_task_type = static_cast<rtModelTaskType_t>(task_def.type());
  2717. if (model_task_type == RT_MODEL_TASK_KERNEL) {
  2718. const domi::KernelDef &kernel_def = task_def.kernel();
  2719. const auto &context = kernel_def.context();
  2720. auto kernel_type = static_cast<ccKernelType>(context.kernel_type());
  2721. if (kernel_type == ccKernelType::TE) {
  2722. task_desc_info.task_type = kTaskTypeAicore;
  2723. } else if (kernel_type == ccKernelType::AI_CPU || kernel_type == ccKernelType::CUST_AI_CPU) {
  2724. task_desc_info.task_type = kTaskTypeAicpu;
  2725. } else {
  2726. GELOGD("Other kernel type: %u", context.kernel_type());
  2727. }
  2728. } else if (model_task_type == RT_MODEL_TASK_KERNEL_EX) {
  2729. task_desc_info.task_type = kTaskTypeAicpu;
  2730. } else {
  2731. GELOGD("Skip task type: %d", static_cast<int>(model_task_type));
  2732. }
  2733. profiler_report_op_info_[task_desc_info.op_name] =
  2734. std::pair<uint32_t, uint32_t>(task_desc_info.task_id, task_desc_info.stream_id);
  2735. task_desc_info_.emplace_back(task_desc_info);
  2736. if (flag) {
  2737. if (task->GetSktTaskID() != 0xFFFFFFFF) {
  2738. TaskDescInfo task_desc_info;
  2739. string op_name = "super_kernel_" + to_string(task_index);
  2740. task_desc_info.op_name = op_name;
  2741. task_desc_info.task_id = task->GetSktTaskID();
  2742. profiler_report_op_info_[task_desc_info.op_name] =
  2743. std::pair<uint32_t, uint32_t>(task_desc_info.task_id, task_desc_info.stream_id);
  2744. task_desc_info_.emplace_back(task_desc_info);
  2745. }
  2746. }
  2747. return;
  2748. }
  2749. Status DavinciModel::DistributeTask() {
  2750. GELOGI("do Distribute.");
  2751. for (auto &task : cpu_task_list_) {
  2752. if (task == nullptr) {
  2753. GELOGW("task is null");
  2754. continue;
  2755. }
  2756. GE_CHK_STATUS_RET(task->Distribute());
  2757. }
  2758. task_desc_info_.clear();
  2759. const auto &model_task_def = ge_model_->GetModelTaskDefPtr();
  2760. for (size_t task_index = 0; task_index < task_list_.size(); ++task_index) {
  2761. auto &task_def = model_task_def->task(task_index);
  2762. auto &task = task_list_.at(task_index);
  2763. GE_CHECK_NOTNULL(task);
  2764. GE_CHK_STATUS_RET(task->Distribute(), "Task[%zu] distribute fail", task_index);
  2765. // for data dump
  2766. auto op_index = std::max(task_def.kernel().context().op_index(),
  2767. task_def.kernel_ex().op_index());
  2768. OpDescPtr op = GetOpByIndex(op_index);
  2769. GE_CHECK_NOTNULL(op);
  2770. if (reinterpret_cast<void *>(task->GetDumpArgs()) != nullptr) {
  2771. bool call_dump = GetDumpProperties().IsLayerNeedDump(name_, om_name_, op->GetName()) && task->CallSaveDumpInfo();
  2772. if (call_dump || is_op_debug_reg_) {
  2773. SaveDumpTask(task->GetTaskID(), task->GetStreamId(), op, task->GetDumpArgs());
  2774. }
  2775. }
  2776. auto task_type = static_cast<rtModelTaskType_t>(task_def.type());
  2777. bool no_need_profiling = (task_type != RT_MODEL_TASK_KERNEL) && (task_type != RT_MODEL_TASK_KERNEL_EX);
  2778. GE_IF_BOOL_EXEC(no_need_profiling, continue);
  2779. SaveDumpOpInfo(runtime_param_, op, task->GetTaskID(), task->GetStreamId());
  2780. // save task info for profiling
  2781. SaveProfilingTaskDescInfo(op, task, task_def, task_index);
  2782. }
  2783. // launch dump kernel to aicpu
  2784. GE_CHK_STATUS_RET(data_dumper_.LoadDumpInfo(), "Load dump info failed.");
  2785. return SUCCESS;
  2786. }
  2787. void DavinciModel::SetEndGraphId(uint32_t task_id, uint32_t stream_id) {
  2788. auto all_dump_model = GetDumpProperties().GetAllDumpModel();
  2789. bool findByOmName = all_dump_model.find(om_name_) != all_dump_model.end();
  2790. bool findByModelName = all_dump_model.find(name_) != all_dump_model.end();
  2791. if (all_dump_model.find(ge::DUMP_ALL_MODEL) != all_dump_model.end() || findByOmName || findByModelName) {
  2792. GELOGI("start save end_graph_info to dumper, task_id is %u, stream_id is %u", task_id, stream_id);
  2793. data_dumper_.SaveEndGraphId(task_id, stream_id);
  2794. }
  2795. }
  2796. ///
  2797. /// @ingroup ge
  2798. /// @brief Set copy only for No task feed NetOutput address.
  2799. /// @return None.
  2800. ///
  2801. void DavinciModel::SetCopyOnlyOutput() {
  2802. for (const auto &output_outside_addrs : new_output_outside_addrs_) {
  2803. ZeroCopyOffset output_outside = output_outside_addrs.second;
  2804. for (uint32_t out_count = 0; out_count < output_outside.GetAddrCount(); ++out_count) {
  2805. auto &addrs_mapping_list = output_outside.GetOutsideAddrs();
  2806. std::map<const void *, std::vector<void *>> virtual_args_addrs = addrs_mapping_list[out_count];
  2807. for (const auto &virtual_args_addr : virtual_args_addrs) {
  2808. const auto &args_addrs = virtual_args_addr.second;
  2809. if (args_addrs.empty()) { // No task feed Output addr, Need copy directly.
  2810. GELOGI("[ZCPY] just copy %p to netoutput.", virtual_args_addr.first);
  2811. copy_only_addrs_.insert(virtual_args_addr.first);
  2812. }
  2813. }
  2814. }
  2815. }
  2816. }
  2817. ///
  2818. /// @ingroup ge
  2819. /// @brief Set disabled input zero copy addr.
  2820. /// @param [in] const void *addr: address of task
  2821. /// @return None.
  2822. ///
  2823. void DavinciModel::DisableZeroCopy(const void *addr) {
  2824. if (real_virtual_addrs_.find(addr) == real_virtual_addrs_.end()) {
  2825. return;
  2826. }
  2827. // Data link to RTS Op directly.
  2828. std::lock_guard<std::mutex> lock(outside_addrs_mutex_);
  2829. GELOGI("[ZCPY] disable zero copy of %p.", addr);
  2830. copy_only_addrs_.insert(addr);
  2831. }
  2832. ///
  2833. /// @ingroup ge
  2834. /// @brief Save outside address used info for ZeroCopy.
  2835. /// @param [in] const OpDescPtr &op_desc: current op desc
  2836. /// @param [in] const std::vector<void *> &outside_addrs: address of task
  2837. /// @param [in] const void *info: task args
  2838. /// @param [in] const char *args: task args
  2839. /// @param [in] size_t size: size of task args
  2840. /// @param [in] size_t offset: offset of task args
  2841. /// @return None.
  2842. ///
  2843. void DavinciModel::SetZeroCopyAddr(const OpDescPtr &op_desc, const std::vector<void *> &outside_addrs, const void *info,
  2844. void *args, size_t size, size_t offset) {
  2845. // Internal call has ensured that op_desc is not nullptr
  2846. GELOGD("[ZCPY] SetZeroCopyAddr for %s.", op_desc->GetName().c_str());
  2847. size_t nums = outside_addrs.size();
  2848. ZeroCopyTask zero_copy_task(op_desc->GetName(), static_cast<uint8_t *>(args), size);
  2849. for (size_t i = 0; i < nums; ++i) {
  2850. std::lock_guard<std::mutex> lock(outside_addrs_mutex_);
  2851. for (auto &input_outside_addrs : new_input_outside_addrs_) {
  2852. ZeroCopyOffset &input_outside = input_outside_addrs.second;
  2853. input_outside.SetOutsideAddrsValue(zero_copy_task, outside_addrs[i], args, offset + i * kAddrLen);
  2854. }
  2855. for (auto &output_outside_addrs : new_output_outside_addrs_) {
  2856. ZeroCopyOffset &output_outside = output_outside_addrs.second;
  2857. output_outside.SetOutsideAddrsValue(zero_copy_task, outside_addrs[i], args, offset + i * kAddrLen);
  2858. }
  2859. }
  2860. string batch_label;
  2861. if (!AttrUtils::GetStr(op_desc, ATTR_NAME_BATCH_LABEL, batch_label) || batch_label.empty()) {
  2862. zero_copy_task.SetBatchLabel(kDefaultBatchLable);
  2863. } else {
  2864. zero_copy_task.SetBatchLabel(batch_label);
  2865. }
  2866. std::lock_guard<std::mutex> lock(outside_addrs_mutex_);
  2867. if (zero_copy_task.IsTaskArgsSet()) {
  2868. zero_copy_task.SetOriginalArgs(info, offset + nums * kAddrLen);
  2869. zero_copy_tasks_.emplace_back(zero_copy_task);
  2870. }
  2871. }
  2872. ///
  2873. /// @ingroup ge
  2874. /// @brief Copy Check input size and model op size.
  2875. /// @param [in] const int64_t &input_size: input size.
  2876. /// @param [in] const int64_t &op_size: model op size.
  2877. /// @param [in] is_dynamic: dynamic batch input flag.
  2878. /// @return true if success
  2879. ///
  2880. bool DavinciModel::CheckInputAndModelSize(const int64_t &input_size, const int64_t &op_size, bool is_dynamic) {
  2881. if (is_dynamic) { // dynamic is max size.
  2882. GELOGI("No need to check input and model size.");
  2883. return true;
  2884. }
  2885. if (input_size > op_size) {
  2886. GELOGW(
  2887. "Input size [%ld] is bigger than om size need [%ld], "
  2888. "MAY cause inference result ERROR, please check model input",
  2889. input_size, op_size);
  2890. }
  2891. if (is_dynamic_aipp_) {
  2892. GELOGI("This is dynamic aipp model, no need to judge smaller input size");
  2893. return true;
  2894. }
  2895. // Judge overflow first
  2896. if (input_size > (INT64_MAX - kDataMemAlignSizeCompare)) {
  2897. GELOGI("The Input size [%ld] is smaller than model size [%ld] and is in the range of 64 bytes", input_size,
  2898. op_size);
  2899. return true;
  2900. }
  2901. // The input and model input size can not be exactly equal because user input is not definite.
  2902. if ((input_size + kDataMemAlignSizeCompare) < op_size) {
  2903. GELOGE(FAILED, "Input size [%ld] can not be smaller than op size [%ld] after 64-byte alignment", input_size,
  2904. op_size);
  2905. return false;
  2906. }
  2907. return true;
  2908. }
  2909. ///
  2910. /// @ingroup ge
  2911. /// @brief Copy Inputs and Outputs addr to model for direct use.
  2912. /// @param [in] const InputData &input_data: model input data.
  2913. /// @param [in] OutputData &output_data: model output data.
  2914. /// @param [in] bool is_dynamic_input: whether is dynamic input, true: is dynamic input; false: not is dynamic input
  2915. /// @return SUCCESS handle successfully / PARAM_INVALID for failed
  2916. ///
  2917. Status DavinciModel::CopyModelData(const InputData &input_data, OutputData &output_data, bool is_dynamic) {
  2918. if (UpdateIoTaskArgs(new_input_data_info_, true, input_data.blobs, is_dynamic, input_data.batch_label) != SUCCESS) {
  2919. GELOGE(ACL_ERROR_GE_PARAM_INVALID, "[ZCPY] Update input data to model failed.");
  2920. return ACL_ERROR_GE_PARAM_INVALID;
  2921. }
  2922. if (UpdateIoTaskArgs(new_output_data_info_, false, output_data.blobs, is_dynamic, input_data.batch_label) !=
  2923. SUCCESS) {
  2924. GELOGE(ACL_ERROR_GE_PARAM_INVALID, "[ZCPY] Update output data to model failed.");
  2925. return ACL_ERROR_GE_PARAM_INVALID;
  2926. }
  2927. for (ZeroCopyTask &task : zero_copy_tasks_) {
  2928. GE_CHK_STATUS_RET(task.DistributeParam(is_async_mode_, rt_model_stream_), "[ZCPY] Update args failed.");
  2929. }
  2930. output_data.index = input_data.index;
  2931. output_data.model_id = model_id_;
  2932. return SUCCESS;
  2933. }
  2934. ///
  2935. /// @ingroup ge
  2936. /// @brief Copy Data addr to model for direct use.
  2937. /// @param [in] data_info: model memory addr/size map { data_index, { tensor_size, tensor_addr } }.
  2938. /// @param [in] is_input: input data or output data
  2939. /// @param [in] blobs: user input/output data list.
  2940. /// @param [in] is_dynamic: whether is dynamic input, true: is dynamic input; false: not is dynamic input
  2941. /// @param [in] batch_label: batch label for multi-batch scenes
  2942. /// @return SUCCESS handle successfully / others handle failed
  2943. ///
  2944. Status DavinciModel::UpdateIoTaskArgs(const std::map<uint32_t, ZeroCopyOffset> &data_info, bool is_input,
  2945. const vector<DataBuffer> &blobs, bool is_dynamic, const string &batch_label) {
  2946. string input_or_output = "input";
  2947. is_input ? input_or_output = "input" : input_or_output = "output";
  2948. if (blobs.size() != data_info.size()) {
  2949. GELOGE(FAILED, "Verify %s data num failed: model requires %zu, but user actually feeds %zu",
  2950. input_or_output.c_str(), data_info.size(), blobs.size());
  2951. return FAILED;
  2952. }
  2953. for (const auto &data : data_info) {
  2954. if (data.first >= blobs.size()) { // check data index.
  2955. GELOGE(FAILED, "Verify %s data num failed: can not find No.%u data, because user only feeds %zu",
  2956. input_or_output.c_str(), data.first, blobs.size());
  2957. return FAILED;
  2958. }
  2959. const DataBuffer &buffer = blobs[data.first]; // index of data.
  2960. if (buffer.data == nullptr) {
  2961. GELOGE(FAILED, "data_buf.data is nullptr, index=%u", data.first);
  2962. return FAILED;
  2963. }
  2964. if (!CheckInputAndModelSize(buffer.length, data.second.GetDataSize(), is_dynamic)) {
  2965. GELOGE(FAILED, "Check input size and model size failed, op[%s]", data.second.GetOpName().c_str());
  2966. return FAILED;
  2967. }
  2968. void *basic_addr = data.second.GetBasicAddr();
  2969. uint64_t data_size = data.second.GetDataSize();
  2970. if (copy_only_addrs_.count(basic_addr) > 0) {
  2971. if (is_input) {
  2972. GELOGI("[IMAS] Find addr %p need direct copy from user malloc input %p", basic_addr, buffer.data);
  2973. if (rtMemcpy(basic_addr, data_size, buffer.data, buffer.length, RT_MEMCPY_DEVICE_TO_DEVICE) != RT_ERROR_NONE) {
  2974. GELOGE(FAILED, "Non-zero copy data node copy failed");
  2975. return FAILED;
  2976. }
  2977. }
  2978. GELOGI("No need to exeucte zero copy task because this addr %p need direct copy.", basic_addr);
  2979. continue;
  2980. }
  2981. for (size_t count = 0; count < data.second.GetDataCount(); ++count) {
  2982. int64_t size = data.second.GetDataInfo().at(count).first;
  2983. void *addr = data.second.GetDataInfo().at(count).second;
  2984. void *buffer_addr = reinterpret_cast<void *>(reinterpret_cast<uintptr_t>(buffer.data) +
  2985. data.second.GetRelativeOffset().at(count));
  2986. GELOGI("[ZCPY] Copy %s blobs_index %u, virtual_addr: %p, size: %ld, user_data_addr: %p, batch_label: %s",
  2987. input_or_output.c_str(), data.first, addr, size, buffer_addr, batch_label.c_str());
  2988. // For input data, just copy for rts task.
  2989. for (ZeroCopyTask &task : zero_copy_tasks_) {
  2990. if (task.GetBatchLabel() != kDefaultBatchLable && task.GetBatchLabel() != batch_label) {
  2991. continue;
  2992. }
  2993. uintptr_t addr_val = reinterpret_cast<uintptr_t>(addr);
  2994. if (task.UpdateTaskParam(addr_val, buffer_addr) != SUCCESS) {
  2995. return FAILED;
  2996. }
  2997. }
  2998. }
  2999. }
  3000. return SUCCESS;
  3001. }
  3002. ///
  3003. /// @ingroup ge
  3004. /// @brief get unique identification for op when load two or more models
  3005. /// @param [in] const OpDescPtr: current op.
  3006. /// @param [in] string identification: unique identification for current op.
  3007. /// @return SUCCESS handle successfully / others handle failed
  3008. ///
  3009. void DavinciModel::GetUniqueId(const OpDescPtr &op_desc, std::string &unique_identification) {
  3010. std::string session_graph_id;
  3011. GE_IF_BOOL_EXEC(AttrUtils::GetStr(*op_desc, ATTR_NAME_SESSION_GRAPH_ID, session_graph_id),
  3012. GELOGD("Get original type of session_graph_id."));
  3013. if (session_graph_id.empty()) {
  3014. return;
  3015. } else if (session_graph_id.find("-1") != string::npos) {
  3016. unique_identification = session_graph_id + "_" + to_string(model_id_);
  3017. } else {
  3018. unique_identification = session_graph_id;
  3019. }
  3020. }
  3021. ///
  3022. /// @ingroup ge
  3023. /// @brief For TVM Op, avoid Addr Reuse.
  3024. /// @return void*
  3025. ///
  3026. const char *DavinciModel::GetRegisterStub(const string &binfile, const string &session_graph_id) {
  3027. string binfile_key;
  3028. if (session_graph_id.empty()) {
  3029. binfile_key = binfile;
  3030. } else {
  3031. binfile_key = session_graph_id + "_" + binfile;
  3032. }
  3033. auto it = tvm_bin_kernel_.find(binfile_key);
  3034. if (it != tvm_bin_kernel_.end()) {
  3035. return it->c_str();
  3036. } else {
  3037. it = tvm_bin_kernel_.insert(tvm_bin_kernel_.end(), binfile_key);
  3038. return it->c_str();
  3039. }
  3040. }
  3041. ///
  3042. /// @ingroup ge
  3043. /// @brief Constant Op Init.
  3044. /// @return Status
  3045. ///
  3046. Status DavinciModel::InitConstant(const OpDescPtr &op_desc) {
  3047. auto v_weights = ModelUtils::GetWeights(op_desc);
  3048. auto v_output_size = ModelUtils::GetOutputSize(op_desc);
  3049. auto v_output_addr = ModelUtils::GetOutputDataAddrs(runtime_param_, op_desc);
  3050. GE_IF_BOOL_EXEC(v_weights.empty() || v_output_size.empty() || v_output_addr.empty(),
  3051. GELOGE(PARAM_INVALID, "const op:%s not set output", op_desc->GetName().c_str());
  3052. return PARAM_INVALID;);
  3053. GeTensor *tensor = const_cast<GeTensor *>(v_weights[0].get());
  3054. GE_IF_BOOL_EXEC(static_cast<size_t>(v_output_size[0]) < tensor->GetData().size(),
  3055. GELOGE(PARAM_INVALID, "output size:%ld less than weight data size:%zu", v_output_size[0],
  3056. tensor->GetData().size());
  3057. return PARAM_INVALID;);
  3058. GE_IF_BOOL_EXEC(tensor->GetData().size() == 0, GELOGW("const op:%s has no weight data.", op_desc->GetName().c_str());
  3059. return SUCCESS;);
  3060. auto desc = tensor->GetTensorDesc();
  3061. if (desc.GetDataType() == DT_STRING) {
  3062. GeShape tensor_shape = desc.GetShape();
  3063. /// if tensor is a scaler, it's shape size if zero, according ge_tensor.cc.
  3064. /// the logic of GetShapeSize is wrong, the scaler tensor's GetShapeSize is zero
  3065. /// and that of unknown shape is zero too.
  3066. /// unknown shape will not appear here, so we can use zero judge a tensor is scaler or not
  3067. int64_t elem_num = tensor_shape.GetShapeSize();
  3068. if (elem_num == 0 && tensor_shape.GetDims().size() == 0) {
  3069. elem_num = 1;
  3070. }
  3071. uint64_t *buff = reinterpret_cast<uint64_t *>(tensor->MutableData().data());
  3072. GE_CHK_BOOL_RET_STATUS(ge::CheckInt64Uint32MulOverflow(elem_num, kBytes) == SUCCESS, FAILED,
  3073. "Shape size is invalid");
  3074. uint64_t offset = static_cast<uint64_t>(elem_num * kBytes);
  3075. uint64_t hbm_raw_data_base_addr =
  3076. static_cast<uint64_t>(reinterpret_cast<uintptr_t>(v_output_addr[0])) + offset;
  3077. for (int64_t i = elem_num - 1; i >= 0; --i) {
  3078. buff[i] = hbm_raw_data_base_addr + (buff[i] - buff[0]);
  3079. }
  3080. }
  3081. GELOGI("[IMAS]InitConstant memcpy graph_%u type[V] name[%s] output[%d] memaddr[%p] mem_size[%lu] datasize[%zu]",
  3082. runtime_param_.graph_id, op_desc->GetName().c_str(), 0, v_output_addr[0], v_output_size[0],
  3083. tensor->GetData().size());
  3084. GE_CHK_RT_RET(rtMemcpy(v_output_addr[0], v_output_size[0], tensor->GetData().data(), tensor->GetData().size(),
  3085. RT_MEMCPY_HOST_TO_DEVICE));
  3086. return SUCCESS;
  3087. }
  3088. ///
  3089. /// @ingroup ge
  3090. /// @brief TVM Op Init.
  3091. /// @return Status
  3092. ///
  3093. Status DavinciModel::InitTbeHandle(const OpDescPtr &op_desc) {
  3094. auto kernel = ge_model_->GetTBEKernelStore().FindKernel(op_desc->GetName());
  3095. auto tbe_kernel = (kernel != nullptr) ? kernel : op_desc->TryGetExtAttr(OP_EXTATTR_NAME_TBE_KERNEL, TBEKernelPtr());
  3096. if (tbe_kernel == nullptr) {
  3097. GELOGE(INTERNAL_ERROR, "TBE: %s can't find tvm bin file!", op_desc->GetName().c_str());
  3098. return INTERNAL_ERROR;
  3099. }
  3100. std::string session_graph_model_id;
  3101. GetUniqueId(op_desc, session_graph_model_id);
  3102. const char *bin_file_key = GetRegisterStub(op_desc->GetName(), session_graph_model_id); // from set, always valid.
  3103. TBEHandleStore &kernel_store = TBEHandleStore::GetInstance();
  3104. std::lock_guard<std::mutex> lock(tvm_bin_mutex_);
  3105. if (rtQueryFunctionRegistered(bin_file_key) != RT_ERROR_NONE) {
  3106. void *bin_handle = nullptr;
  3107. if (!kernel_store.FindTBEHandle(bin_file_key, bin_handle)) {
  3108. GELOGD("TBE: can't find the kernel_name[%s] in HandleMap", bin_file_key);
  3109. rtDevBinary_t binary;
  3110. std::string json_string;
  3111. GE_IF_BOOL_EXEC(AttrUtils::GetStr(op_desc, TVM_ATTR_NAME_MAGIC, json_string),
  3112. GELOGD("Get original type of session_graph_id."));
  3113. if (json_string == "RT_DEV_BINARY_MAGIC_ELF_AICPU") {
  3114. binary.magic = RT_DEV_BINARY_MAGIC_ELF_AICPU;
  3115. } else if (json_string == "RT_DEV_BINARY_MAGIC_ELF") {
  3116. binary.magic = RT_DEV_BINARY_MAGIC_ELF;
  3117. } else if (json_string == "RT_DEV_BINARY_MAGIC_ELF_AIVEC") {
  3118. binary.magic = RT_DEV_BINARY_MAGIC_ELF_AIVEC;
  3119. } else {
  3120. GELOGE(PARAM_INVALID, "TBE: Invalid parameter magic number! json: %s", json_string.c_str());
  3121. return PARAM_INVALID;
  3122. }
  3123. binary.version = 0;
  3124. binary.data = tbe_kernel->GetBinData();
  3125. binary.length = tbe_kernel->GetBinDataSize();
  3126. GELOGD("TBE: binary.length: %lu", binary.length);
  3127. GE_CHK_RT_RET(rtDevBinaryRegister(&binary, &bin_handle));
  3128. std::string meta_data;
  3129. GE_IF_BOOL_EXEC(AttrUtils::GetStr(op_desc, TVM_ATTR_NAME_METADATA, meta_data),
  3130. GELOGI("Get original type of json_string"));
  3131. GELOGD("TBE: meta data: %s", meta_data.empty() ? "null" : meta_data.c_str());
  3132. GE_IF_BOOL_EXEC(!meta_data.empty(), GE_CHK_RT_RET(rtMetadataRegister(bin_handle, meta_data.c_str())));
  3133. kernel_store.StoreTBEHandle(bin_file_key, bin_handle, tbe_kernel);
  3134. } else {
  3135. GELOGI("TBE: find the kernel_name[%s] in HandleMap", bin_file_key);
  3136. kernel_store.ReferTBEHandle(bin_file_key);
  3137. }
  3138. std::string kernel_name;
  3139. GE_IF_BOOL_EXEC(AttrUtils::GetStr(op_desc, op_desc->GetName() + "_kernelname", kernel_name),
  3140. GELOGD("Get original type of kernel_name"));
  3141. GE_CHK_RT_RET(rtFunctionRegister(bin_handle, bin_file_key, bin_file_key, kernel_name.c_str(), 0));
  3142. used_tbe_handle_map_[bin_file_key] = 1; // Init used num to 1.
  3143. return SUCCESS;
  3144. }
  3145. // Kernel registed, Increase used num in store.
  3146. StoreTbeHandle(bin_file_key);
  3147. return SUCCESS;
  3148. }
  3149. void DavinciModel::StoreTbeHandle(const std::string &handle_key) {
  3150. // Online mode FE may call rtFunctionRegister.
  3151. TBEHandleStore &kernel_store = TBEHandleStore::GetInstance();
  3152. auto it = used_tbe_handle_map_.find(handle_key);
  3153. if (it != used_tbe_handle_map_.end()) {
  3154. // GE registered, increase reference.
  3155. kernel_store.ReferTBEHandle(handle_key);
  3156. it->second++;
  3157. return;
  3158. }
  3159. void *bin_handle = nullptr;
  3160. if (kernel_store.FindTBEHandle(handle_key, bin_handle)) {
  3161. // GE registered, increase reference.
  3162. used_tbe_handle_map_[handle_key] = 1; // Init used num to 1.
  3163. kernel_store.ReferTBEHandle(handle_key);
  3164. }
  3165. }
  3166. void DavinciModel::CleanTbeHandle() {
  3167. TBEHandleStore &kernel_store = TBEHandleStore::GetInstance();
  3168. kernel_store.EraseTBEHandle(used_tbe_handle_map_);
  3169. used_tbe_handle_map_.clear();
  3170. tvm_bin_kernel_.clear();
  3171. }
  3172. ///
  3173. /// @ingroup ge
  3174. /// @brief insert active_stream_indication_
  3175. /// @return Status
  3176. ///
  3177. Status DavinciModel::InitStreamActive(const OpDescPtr &op_desc) {
  3178. if (op_desc->HasAttr(ATTR_NAME_SWITCH_BRANCH_NODE_LABEL)) {
  3179. std::vector<uint32_t> active_stream_list;
  3180. GE_CHK_BOOL_EXEC(AttrUtils::GetListInt(op_desc, ATTR_NAME_ACTIVE_STREAM_LIST, active_stream_list),
  3181. return INTERNAL_ERROR, "StreamActiveOp get attr ACTIVE_STREAM failed.");
  3182. for (size_t j = 0; j < active_stream_list.size(); ++j) {
  3183. active_stream_indication_.insert(active_stream_list[j]);
  3184. GELOGI("flowctrl_op_index_map node:%s, active_stream_id=%u.", op_desc->GetName().c_str(), active_stream_list[j]);
  3185. }
  3186. }
  3187. return SUCCESS;
  3188. }
  3189. Status DavinciModel::InitStreamSwitch(const OpDescPtr &op_desc) {
  3190. std::vector<uint32_t> active_stream_list;
  3191. GE_LOGI_IF(!ge::AttrUtils::GetListInt(op_desc, ATTR_NAME_ACTIVE_STREAM_LIST, active_stream_list),
  3192. "GetInt ACTIVE_STREAM_LIST failed.");
  3193. if (active_stream_list.size() != kTrueBranchStreamNum) {
  3194. GELOGE(INTERNAL_ERROR, "Stream num of switch true branch must be %u.", kTrueBranchStreamNum);
  3195. return INTERNAL_ERROR;
  3196. }
  3197. uint32_t true_stream_id = active_stream_list.front();
  3198. active_stream_indication_.insert(true_stream_id);
  3199. GELOGI("flowctrl_op_index_map node:%s, true_stream_id=%u.", op_desc->GetName().c_str(), true_stream_id);
  3200. return SUCCESS;
  3201. }
  3202. Status DavinciModel::InitStreamSwitchN(const OpDescPtr &op_desc) {
  3203. std::vector<uint32_t> active_stream_list;
  3204. if (!AttrUtils::GetListInt(op_desc, ATTR_NAME_ACTIVE_STREAM_LIST, active_stream_list)) {
  3205. GELOGE(INTERNAL_ERROR, "StreamSwitchNOp get attr ACTIVE_STREAM failed.");
  3206. return INTERNAL_ERROR;
  3207. }
  3208. for (size_t j = 0; j < active_stream_list.size(); ++j) {
  3209. active_stream_indication_.insert(active_stream_list[j]);
  3210. GELOGI("StreamSwitchNOp node:%s, active_stream_id=%u.", op_desc->GetName().c_str(), active_stream_list[j]);
  3211. }
  3212. uint32_t batch_num = 0;
  3213. if (!AttrUtils::GetInt(op_desc, ATTR_NAME_BATCH_NUM, batch_num)) {
  3214. GELOGE(FAILED, "Failed to get attr ATTR_NAME_BATCH_NUM, StreamSwitchN: %s.", op_desc->GetName().c_str());
  3215. return FAILED;
  3216. }
  3217. return SetDynamicBatchInfo(op_desc, batch_num);
  3218. }
  3219. Status DavinciModel::SetDynamicBatchInfo(const OpDescPtr &op_desc, uint32_t batch_num) {
  3220. batch_info_.clear();
  3221. combined_batch_info_.clear();
  3222. (void)AttrUtils::GetInt(op_desc, ATTR_DYNAMIC_TYPE, dynamic_type_);
  3223. (void)AttrUtils::GetListStr(op_desc, ATTR_USER_DESIGNEATE_SHAPE_ORDER, user_designate_shape_order_);
  3224. for (uint32_t i = 0; i < batch_num; ++i) {
  3225. std::vector<int64_t> batch_shape;
  3226. const std::string attr_name = ATTR_NAME_PRED_VALUE + "_" + std::to_string(i);
  3227. if (!AttrUtils::GetListInt(op_desc, attr_name, batch_shape)) {
  3228. GELOGE(FAILED, "Get attr ATTR_NAME_PRED_VALUE failed, Node: %s", op_desc->GetName().c_str());
  3229. batch_info_.clear();
  3230. return FAILED;
  3231. }
  3232. batch_info_.emplace_back(batch_shape);
  3233. batch_shape.clear();
  3234. const string attr_combined_batch = ATTR_NAME_COMBINED_BATCH + "_" + std::to_string(i);
  3235. if (AttrUtils::GetListInt(op_desc, attr_combined_batch, batch_shape)) {
  3236. combined_batch_info_.emplace_back(batch_shape);
  3237. }
  3238. }
  3239. return SUCCESS;
  3240. }
  3241. Status DavinciModel::InitCase(const OpDescPtr &op_desc) {
  3242. uint32_t batch_num = 0;
  3243. if (!AttrUtils::GetInt(op_desc, ATTR_NAME_BATCH_NUM, batch_num)) {
  3244. GELOGI("Not multi-batch Node: %s", op_desc->GetName().c_str());
  3245. return SUCCESS;
  3246. }
  3247. return SetDynamicBatchInfo(op_desc, batch_num);
  3248. }
  3249. bool DavinciModel::IsBroadCastOpData(const ge::NodePtr &var_node) {
  3250. for (auto out_anchor : var_node->GetAllOutDataAnchors()) {
  3251. GE_RT_FALSE_CHECK_NOTNULL(out_anchor);
  3252. for (auto in_anchor : out_anchor->GetPeerInDataAnchors()) {
  3253. GE_RT_FALSE_CHECK_NOTNULL(in_anchor);
  3254. ge::NodePtr dst_node = in_anchor->GetOwnerNode();
  3255. GE_RT_FALSE_CHECK_NOTNULL(dst_node);
  3256. if (dst_node->GetType() == HCOMBROADCAST || dst_node->GetType() == HVDCALLBACKBROADCAST) {
  3257. return true;
  3258. }
  3259. }
  3260. }
  3261. return false;
  3262. }
  3263. ///
  3264. /// @ingroup ge
  3265. /// @brief Init model stream for NN model.
  3266. /// @param [in] stream user input model stream.
  3267. /// @return Status
  3268. ///
  3269. Status DavinciModel::InitModelStream(rtStream_t stream) {
  3270. ExecuteMode curr_mode = is_async_mode_ ? ASYNCHRONIZATION : SYNCHRONIZATION;
  3271. GE_CHK_BOOL_RET_STATUS((curr_mode == last_execute_mode_) || (last_execute_mode_ == INITIALIZATION), INTERNAL_ERROR,
  3272. "NnExecute not support mix execute.");
  3273. last_execute_mode_ = curr_mode;
  3274. // asynchronize mode, use user input stream.
  3275. if (is_async_mode_) {
  3276. rt_model_stream_ = stream;
  3277. is_inner_model_stream_ = false;
  3278. return SUCCESS;
  3279. }
  3280. // synchronize mode, use forbidden stream.
  3281. if (stream != nullptr) {
  3282. if ((rt_model_stream_ != nullptr) && is_inner_model_stream_) {
  3283. GE_LOGW_IF(rtStreamDestroy(rt_model_stream_) != RT_ERROR_NONE, "Destroy rt_stream failed!");
  3284. }
  3285. rt_model_stream_ = stream;
  3286. is_inner_model_stream_ = false;
  3287. return SUCCESS;
  3288. }
  3289. if (rt_model_stream_ == nullptr) {
  3290. GE_CHK_RT_RET(rtStreamCreateWithFlags(&rt_model_stream_, priority_, RT_STREAM_FORBIDDEN_DEFAULT));
  3291. is_inner_model_stream_ = true;
  3292. }
  3293. return SUCCESS;
  3294. }
  3295. ///
  3296. /// @ingroup ge
  3297. /// @brief ACL case, do not start new thread, return execute result.
  3298. /// @param [in] stream execute model stream.
  3299. /// @param [in] async_mode is asynchronize mode.
  3300. /// @param [in] input_data model input data.
  3301. /// @param [out] output_data model output data.
  3302. ///
  3303. Status DavinciModel::NnExecute(rtStream_t stream, bool async_mode, const InputData &input_data,
  3304. OutputData &output_data) {
  3305. is_async_mode_ = async_mode;
  3306. GELOGD("Model Run begin, model id:%u, data index:%u, flag:%d.", model_id_, input_data.index, is_async_mode_);
  3307. GE_CHK_STATUS_RET(InitModelStream(stream), "Init model stream failed.");
  3308. is_dynamic_ = input_data.is_dynamic_batch;
  3309. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), SetProfileTime(MODEL_PRE_PROC_START));
  3310. Status ret = CopyModelData(input_data, output_data, is_dynamic_);
  3311. GE_CHK_BOOL_TRUE_EXEC_WITH_LOG(ret != SUCCESS, return ret, "Copy input data to model failed. model id: %u",
  3312. model_id_);
  3313. GELOGD("current_data.index=%u", input_data.index);
  3314. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), SetProfileTime(MODEL_PRE_PROC_END));
  3315. if (!task_list_.empty()) {
  3316. GELOGD("rtModelExecute do");
  3317. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), SetProfileTime(MODEL_INFER_START));
  3318. rtError_t rt_ret = rtModelExecute(rt_model_handle_, rt_model_stream_, 0);
  3319. GE_CHK_RT_EXEC(rt_ret, return RT_ERROR_TO_GE_STATUS(rt_ret));
  3320. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), SetProfileTime(MODEL_INFER_END));
  3321. GELOGD("rtModelExecute end");
  3322. }
  3323. if (!is_async_mode_) {
  3324. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), SetProfileTime(MODEL_AFTER_PROC_START));
  3325. ret = CopyOutputData(input_data.index, output_data, RT_MEMCPY_DEVICE_TO_DEVICE);
  3326. GE_CHK_BOOL_TRUE_EXEC_WITH_LOG(ret != SUCCESS, return ACL_ERROR_GE_INTERNAL_ERROR,
  3327. "Copy Output data to user failed.");
  3328. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), SetProfileTime(MODEL_AFTER_PROC_END));
  3329. }
  3330. // report model time data
  3331. GE_IF_BOOL_EXEC(ProfilingManager::Instance().ProfilingModelExecuteOn(), (void)SinkTimeProfile(input_data));
  3332. GELOGD("Model run end, model id:%u", model_id_);
  3333. return SUCCESS;
  3334. }
  3335. // Add active entry stream for special env.
  3336. Status DavinciModel::AddHeadStream() {
  3337. if (active_stream_list_.empty()) {
  3338. GELOGE(INTERNAL_ERROR, "Active stream is empty, stream list size: %zu, stream indication size: %zu.",
  3339. stream_list_.size(), active_stream_indication_.size());
  3340. return INTERNAL_ERROR;
  3341. }
  3342. if (active_stream_list_.size() == 1) {
  3343. GELOGI("Just one active stream, take as head stream.");
  3344. rt_head_stream_ = active_stream_list_[0];
  3345. is_pure_head_stream_ = false;
  3346. } else {
  3347. // Create stream which rt_model_handel running on, this is S0, TS stream.
  3348. GELOGI("Multiple active stream: %zu, create head stream.", active_stream_list_.size());
  3349. GE_CHK_RT_RET(rtStreamCreateWithFlags(&rt_head_stream_, priority_, RT_STREAM_PERSISTENT));
  3350. GE_CHK_RT_RET(rtModelBindStream(rt_model_handle_, rt_head_stream_, RT_INVALID_FLAG)); // Not active.
  3351. is_pure_head_stream_ = true;
  3352. for (auto s : active_stream_list_) {
  3353. std::shared_ptr<CpuTaskActiveEntry> active_entry = MakeShared<CpuTaskActiveEntry>(rt_head_stream_);
  3354. if (active_entry == nullptr) {
  3355. GELOGE(MEMALLOC_FAILED, "Make CpuTaskActiveEntry task failed.");
  3356. return MEMALLOC_FAILED;
  3357. }
  3358. Status status = active_entry->Init(s);
  3359. if (status != SUCCESS) {
  3360. return status;
  3361. }
  3362. cpu_task_list_.emplace_back(active_entry);
  3363. }
  3364. }
  3365. // Create entry stream active head stream. AICPU stream.
  3366. GE_CHK_RT_RET(rtStreamCreateWithFlags(&rt_entry_stream_, priority_, RT_STREAM_AICPU));
  3367. GE_CHK_RT_RET(rtModelBindStream(rt_model_handle_, rt_entry_stream_, RT_HEAD_STREAM));
  3368. return SUCCESS;
  3369. }
  3370. Status DavinciModel::InitEntryTask() {
  3371. if (deploy_type_ == AICPU_DEPLOY_CROSS_THREAD) {
  3372. GE_CHK_STATUS_RET(AddHeadStream(), "Add head stream failed.");
  3373. return CpuActiveStream();
  3374. } else {
  3375. return LoadWithQueue();
  3376. }
  3377. }
  3378. uint8_t *DavinciModel::MallocFeatureMapMem(size_t data_size) {
  3379. uint8_t *mem_base = nullptr;
  3380. const string purpose("feature map,used for op input and output.");
  3381. char ge_static_mem_env[MMPA_MAX_PATH] = { 0x00 };
  3382. INT32 res = mmGetEnv(kEnvGeuseStaticMemory, ge_static_mem_env, MMPA_MAX_PATH);
  3383. if (res == EN_OK) {
  3384. data_size = static_cast<size_t>(VarManager::Instance(session_id_)->GetGraphMemoryMaxSize());
  3385. string memory_key = std::to_string(0) + "_f";
  3386. mem_base = MemManager::Instance(RT_MEMORY_HBM)->MallocMemory(purpose, memory_key, data_size, GetDeviceId());
  3387. } else {
  3388. mem_base = MemManager::Instance(RT_MEMORY_HBM)->MallocMemory(purpose, data_size, GetDeviceId());
  3389. }
  3390. if (mem_base != nullptr) {
  3391. GE_CHK_RT(rtMemset(mem_base, data_size, 0U, data_size));
  3392. }
  3393. return mem_base;
  3394. }
  3395. uint8_t *DavinciModel::MallocP2PMem(size_t p2p_data_size) {
  3396. uint8_t *p2p_mem_base = nullptr;
  3397. const string purpose("p2p memory, used for some op related to hcom");
  3398. if (std::getenv(kEnvGeuseStaticMemory) != nullptr) {
  3399. string p2p_memory_key = std::to_string(0) + "_p";
  3400. p2p_mem_base =
  3401. MemManager::Instance(RT_MEMORY_P2P_DDR)->MallocMemory(purpose, p2p_memory_key, p2p_data_size, GetDeviceId());
  3402. } else {
  3403. p2p_mem_base = MemManager::Instance(RT_MEMORY_P2P_DDR)->MallocMemory(purpose, p2p_data_size, GetDeviceId());
  3404. }
  3405. return p2p_mem_base;
  3406. }
  3407. uint8_t *DavinciModel::MallocWeightsMem(size_t weights_size) {
  3408. uint8_t *weights_mem_base = nullptr;
  3409. const string purpose("weights memory in inference network.");
  3410. char ge_static_mem_env[MMPA_MAX_PATH] = { 0x00 };
  3411. INT32 res = mmGetEnv(kEnvGeuseStaticMemory, ge_static_mem_env, MMPA_MAX_PATH);
  3412. if (res == EN_OK) {
  3413. string weight_memory_key = std::to_string(0) + "_w";
  3414. weights_mem_base =
  3415. MemManager::Instance(RT_MEMORY_HBM)->MallocMemory(purpose, weight_memory_key, weights_size, GetDeviceId());
  3416. } else {
  3417. weights_mem_base = MemManager::Instance(RT_MEMORY_HBM)->MallocMemory(purpose, weights_size, GetDeviceId());
  3418. }
  3419. return weights_mem_base;
  3420. }
  3421. void DavinciModel::FreeFeatureMapMem() {
  3422. char ge_static_mem_env[MMPA_MAX_PATH] = { 0x00 };
  3423. INT32 res = mmGetEnv(kEnvGeuseStaticMemory, ge_static_mem_env, MMPA_MAX_PATH);
  3424. if (res == EN_OK && is_inner_mem_base_) {
  3425. string weight_memory_key = std::to_string(0) + "_f";
  3426. if (MemManager::Instance(RT_MEMORY_HBM)->GetMemoryAddr(weight_memory_key) != nullptr) {
  3427. GE_CHK_STATUS(MemManager::Instance(RT_MEMORY_HBM)->FreeMemory(weight_memory_key, GetDeviceId()),
  3428. "failed to free weight memory");
  3429. }
  3430. mem_base_ = nullptr;
  3431. } else {
  3432. GE_IF_BOOL_EXEC(mem_base_ != nullptr && is_inner_mem_base_,
  3433. GE_CHK_STATUS(MemManager::Instance(RT_MEMORY_HBM)->FreeMemory(mem_base_, GetDeviceId()),
  3434. "failed to free feature_map memory");
  3435. mem_base_ = nullptr);
  3436. }
  3437. }
  3438. void DavinciModel::FreeP2PMem() {
  3439. if (std::getenv(kEnvGeuseStaticMemory) != nullptr) {
  3440. std::string p2p_memory_key = std::to_string(0) + "_p";
  3441. if (MemManager::Instance(RT_MEMORY_P2P_DDR)->GetMemoryAddr(p2p_memory_key) != nullptr) {
  3442. GE_CHK_STATUS(MemManager::Instance(RT_MEMORY_P2P_DDR)->FreeMemory(p2p_memory_key, GetDeviceId()),
  3443. "failed to free p2p memory");
  3444. }
  3445. p2p_mem_base_ = nullptr;
  3446. } else {
  3447. GE_IF_BOOL_EXEC(p2p_mem_base_ != nullptr && is_inner_mem_base_,
  3448. GE_CHK_STATUS(MemManager::Instance(RT_MEMORY_P2P_DDR)->FreeMemory(p2p_mem_base_, GetDeviceId()),
  3449. "failed to free p2p memory");
  3450. p2p_mem_base_ = nullptr);
  3451. }
  3452. }
  3453. void DavinciModel::FreeWeightsMem() {
  3454. char ge_static_mem_env[MMPA_MAX_PATH] = { 0x00 };
  3455. INT32 res = mmGetEnv(kEnvGeuseStaticMemory, ge_static_mem_env, MMPA_MAX_PATH);
  3456. if (res == EN_OK) {
  3457. string memory_key = std::to_string(0) + "_w";
  3458. if (MemManager::Instance(RT_MEMORY_HBM)->GetMemoryAddr(memory_key) != nullptr) {
  3459. GE_CHK_STATUS(MemManager::Instance(RT_MEMORY_HBM)->FreeMemory(memory_key, GetDeviceId()),
  3460. "failed to free feature_map memory");
  3461. }
  3462. weights_mem_base_ = nullptr;
  3463. } else {
  3464. GE_IF_BOOL_EXEC(weights_mem_base_ != nullptr && weights_mem_base_ != mem_base_ && is_inner_weight_base_,
  3465. GE_CHK_STATUS(MemManager::Instance(RT_MEMORY_HBM)->FreeMemory(weights_mem_base_, GetDeviceId()),
  3466. "failed to free weight memory");
  3467. weights_mem_base_ = nullptr);
  3468. }
  3469. }
  3470. Status DavinciModel::TransAllVarData(ComputeGraphPtr &graph, uint32_t graph_id) {
  3471. rtContext_t ctx = nullptr;
  3472. rtError_t rt_ret = rtCtxGetCurrent(&ctx);
  3473. if (rt_ret != RT_ERROR_NONE) {
  3474. GELOGE(RT_FAILED, "Failed to get current context, error_code is: 0x%X.", rt_ret);
  3475. return RT_ERROR_TO_GE_STATUS(rt_ret);
  3476. }
  3477. std::vector<NodePtr> variable_node_list;
  3478. for (ge::NodePtr &node : graph->GetDirectNode()) {
  3479. if (node == nullptr) {
  3480. continue;
  3481. }
  3482. if (node->GetType() != VARIABLE) {
  3483. continue;
  3484. }
  3485. variable_node_list.emplace_back(node);
  3486. }
  3487. GE_CHK_STATUS_RET_NOLOG(
  3488. TransVarDataUtils::TransAllVarData(variable_node_list, session_id_, ctx, graph_id, kThreadNum));
  3489. return SUCCESS;
  3490. }
  3491. void DavinciModel::SetDataDumperArgs(const ComputeGraphPtr &graph, const map<string, OpDescPtr> &variable_by_name) {
  3492. data_dumper_.SetModelName(name_);
  3493. data_dumper_.SetModelId(model_id_);
  3494. data_dumper_.SetOmName(om_name_);
  3495. data_dumper_.SetComputeGraph(graph);
  3496. data_dumper_.SetRefInfo(saved_task_addrs_);
  3497. int32_t device_id = 0;
  3498. rtError_t rt_ret = rtGetDevice(&device_id);
  3499. if (rt_ret != RT_ERROR_NONE || device_id < 0) {
  3500. GELOGE(RT_FAILED, "Call rtGetDevice failed, ret = 0x%X, device_id = %d.", rt_ret, device_id);
  3501. return;
  3502. }
  3503. data_dumper_.SetDeviceId(device_id);
  3504. if (known_node_) {
  3505. data_dumper_.SetLoopAddr(known_shape_global_step_, nullptr, nullptr);
  3506. } else {
  3507. // set loop count addr
  3508. auto get_var_addr = [&](const string &name) -> void *{
  3509. const auto it = variable_by_name.find(name);
  3510. if (it != variable_by_name.end()) {
  3511. const auto output_sizes = ModelUtils::GetOutputSize(it->second);
  3512. const auto output_addrs = ModelUtils::GetOutputDataAddrs(runtime_param_, it->second);
  3513. if (output_sizes.empty() || output_addrs.empty()) {
  3514. return nullptr;
  3515. }
  3516. return output_addrs[0];
  3517. }
  3518. GELOGD("op: %s is null.", name.c_str());
  3519. return nullptr;
  3520. };
  3521. data_dumper_.SetLoopAddr(get_var_addr(NODE_NAME_GLOBAL_STEP),
  3522. get_var_addr(NODE_NAME_FLOWCTRL_LOOP_PER_ITER),
  3523. get_var_addr(NODE_NAME_FLOWCTRL_LOOP_COND));
  3524. }
  3525. }
  3526. uint32_t DavinciModel::GetFlowctrlIndex(uint32_t op_index) {
  3527. std::lock_guard<std::mutex> lock(flowctrl_op_index_internal_map_mutex_);
  3528. return (++flowctrl_op_index_internal_map_[op_index]) - 1;
  3529. }
  3530. void DavinciModel::PushHcclStream(rtStream_t value) {
  3531. std::lock_guard<std::mutex> lock(all_hccl_stream_list_mutex_);
  3532. all_hccl_stream_list_.push_back(value);
  3533. }
  3534. void DavinciModel::SaveHcclFollowStream(int64_t main_stream_id, rtStream_t stream) {
  3535. std::lock_guard<std::mutex> lock(capacity_of_stream_mutex_);
  3536. main_follow_stream_mapping_[main_stream_id].emplace_back(stream);
  3537. }
  3538. Status DavinciModel::GetComputeGraphInfo(vector<ComputeGraphDescInfo> &graph_desc_info) {
  3539. auto &all_op_desc = data_dumper_.GetAllOpDescInfo();
  3540. for (auto &op_desc : all_op_desc) {
  3541. ComputeGraphDescInfo compute_graph_info;
  3542. if (!om_name_.empty()) {
  3543. compute_graph_info.model_name = om_name_;
  3544. } else {
  3545. compute_graph_info.model_name = name_;
  3546. }
  3547. std::vector<Format> format = { FORMAT_NULL };
  3548. std::vector<std::vector<int64_t>> shape = { {0} };
  3549. std::vector<DataType> data_type = { DT_UNDEFINED };
  3550. compute_graph_info.op_name = op_desc.op_name;
  3551. compute_graph_info.op_type = op_desc.op_type;
  3552. compute_graph_info.input_format = op_desc.input_format.empty() ? format : op_desc.input_format;
  3553. compute_graph_info.input_shape = op_desc.input_shape.empty() ? shape : op_desc.input_shape;
  3554. compute_graph_info.input_data_type = op_desc.input_data_type.empty() ? data_type : op_desc.input_data_type;
  3555. compute_graph_info.output_format = op_desc.output_format.empty() ? format : op_desc.output_format;
  3556. compute_graph_info.output_shape = op_desc.output_shape.empty() ? shape : op_desc.output_shape;
  3557. compute_graph_info.output_data_type = op_desc.output_data_type.empty() ? data_type : op_desc.output_data_type;
  3558. uint32_t task_id = 0;
  3559. uint32_t stream_id = 0;
  3560. auto iter = profiler_report_op_info_.find(op_desc.op_name);
  3561. if (iter != profiler_report_op_info_.end()) {
  3562. task_id = iter->second.first;
  3563. stream_id = iter->second.second;
  3564. }
  3565. compute_graph_info.task_id = task_id;
  3566. compute_graph_info.stream_id = stream_id;
  3567. graph_desc_info.emplace_back(compute_graph_info);
  3568. }
  3569. return SUCCESS;
  3570. }
  3571. void DavinciModel::SetTotalFixedAddrsSize(string tensor_name, int64_t fix_addr_size) {
  3572. if (tensor_name_to_fixed_addr_size_.find(tensor_name) == tensor_name_to_fixed_addr_size_.end()) {
  3573. tensor_name_to_fixed_addr_size_[tensor_name] = total_fixed_addr_size_;
  3574. total_fixed_addr_size_ += fix_addr_size;
  3575. }
  3576. }
  3577. Status DavinciModel::InitOrigInputInfo(uint32_t index, const OpDescPtr &op_desc) {
  3578. if (!op_desc->HasAttr(ATTR_NAME_AIPP_INPUTS) || !op_desc->HasAttr(ATTR_NAME_AIPP_OUTPUTS)) {
  3579. GELOGI("there is not AIPP related with index %u, node: %s.", index, op_desc->GetName().c_str());
  3580. return SUCCESS;
  3581. }
  3582. vector<string> inputs;
  3583. if (AttrUtils::GetListStr(op_desc, ATTR_NAME_AIPP_INPUTS, inputs) && !inputs.empty()) {
  3584. std::string input = inputs[kAippOriginInputIndex];
  3585. GELOGI("origin input str: %s", input.c_str());
  3586. std::vector<std::string> infos = ge::StringUtils::Split(input, ':');
  3587. if (infos.size() != kAippInfoNum) {
  3588. GELOGE(ACL_ERROR_GE_AIPP_MODE_INVALID, "origin input str is invalid[%zu, %u].", infos.size(), kAippInfoNum);
  3589. return ACL_ERROR_GE_AIPP_MODE_INVALID;
  3590. }
  3591. OriginInputInfo input_info;
  3592. input_info.format = TypeUtils::SerialStringToFormat(infos[kAippInfoFormat]);
  3593. input_info.data_type = TypeUtils::SerialStringToDataType(infos[kAippInfoDataType]);
  3594. input_info.dim_num = std::strtol(infos[kAippInfoDimNum].c_str(), nullptr, kDecimal);
  3595. orig_input_info_[index] = input_info;
  3596. } else {
  3597. OriginInputInfo input_info = { FORMAT_RESERVED, DT_UNDEFINED, 0 };
  3598. orig_input_info_[index] = input_info;
  3599. }
  3600. return SUCCESS;
  3601. }
  3602. Status DavinciModel::GetOrigInputInfo(uint32_t index, OriginInputInfo &orig_input_info) const {
  3603. const auto it = orig_input_info_.find(index);
  3604. if (it == orig_input_info_.end()) {
  3605. GELOGE(ACL_ERROR_GE_AIPP_NOT_EXIST, "there is not AIPP related with index %u.", index);
  3606. return ACL_ERROR_GE_AIPP_NOT_EXIST;
  3607. }
  3608. const OriginInputInfo &input_info = it->second;
  3609. if (input_info.format != FORMAT_RESERVED || input_info.data_type != DT_UNDEFINED) {
  3610. orig_input_info = input_info;
  3611. }
  3612. return SUCCESS;
  3613. }
  3614. void DavinciModel::ParseAIPPInfo(std::string in_out_info, InputOutputDims &dims_info) {
  3615. GELOGI("ParseAIPPInfo: origin str: %s", in_out_info.c_str());
  3616. std::vector<std::string> infos = ge::StringUtils::Split(in_out_info, ':');
  3617. if (infos.size() != kAippInfoNum) {
  3618. GELOGE(ACL_ERROR_GE_AIPP_MODE_INVALID, "origin input str is invalid[%zu, %u].", infos.size(), kAippInfoNum);
  3619. return;
  3620. }
  3621. dims_info.name = infos[kAippInfoTensorName];
  3622. dims_info.size = std::strtol(infos[kAippInfoTensorSize].c_str(), nullptr, kDecimal);
  3623. dims_info.dim_num = std::strtol(infos[kAippInfoDimNum].c_str(), nullptr, kDecimal);
  3624. std::vector<std::string> dims = ge::StringUtils::Split(infos[kAippInfoShape], ',');
  3625. for (const auto &dim : dims) {
  3626. if (dim.empty()) {
  3627. continue;
  3628. }
  3629. dims_info.dims.emplace_back(std::strtol(dim.c_str(), nullptr, kDecimal));
  3630. }
  3631. }
  3632. Status DavinciModel::InitAippInputOutputDims(uint32_t index, const OpDescPtr &op_desc) {
  3633. if (!op_desc->HasAttr(ATTR_NAME_AIPP_INPUTS) || !op_desc->HasAttr(ATTR_NAME_AIPP_OUTPUTS)) {
  3634. GELOGI("there is not AIPP related with index %u.", index);
  3635. return SUCCESS;
  3636. }
  3637. vector<string> inputs;
  3638. vector<InputOutputDims> input_dims;
  3639. if (AttrUtils::GetListStr(op_desc, ATTR_NAME_AIPP_INPUTS, inputs) && !inputs.empty()) {
  3640. GELOGI("Data: %s has %zu related aippInfo.", op_desc->GetName().c_str(), inputs.size());
  3641. for (auto it : inputs) {
  3642. InputOutputDims input_info;
  3643. ParseAIPPInfo(it, input_info);
  3644. input_dims.emplace_back(input_info);
  3645. GELOGD("Aipp origin input dims info: %s", it.c_str());
  3646. ConstGeTensorDescPtr data_input_desc = op_desc->GetInputDescPtr(kDataIndex);
  3647. int64_t data_input_size;
  3648. (void)TensorUtils::GetSize(*(op_desc->GetInputDescPtr(kDataIndex)), data_input_size);
  3649. GELOGD("related Data[%d]: tensor_name: %s, dim_num: %zu, tensor_size: %zu, format: %s, data_type: %s, shape: %s",
  3650. index, op_desc->GetName().c_str(), data_input_desc->GetShape().GetDimNum(), data_input_size,
  3651. TypeUtils::FormatToSerialString(data_input_desc->GetFormat()).c_str(),
  3652. TypeUtils::DataTypeToSerialString(data_input_desc->GetDataType()).c_str(),
  3653. formats::JoinToString(data_input_desc->GetShape().GetDims()).c_str());
  3654. }
  3655. }
  3656. vector<string> outputs;
  3657. vector<InputOutputDims> output_dims;
  3658. if (AttrUtils::GetListStr(op_desc, ATTR_NAME_AIPP_OUTPUTS, outputs) && !outputs.empty()) {
  3659. for (auto it : outputs) {
  3660. InputOutputDims output_info;
  3661. ParseAIPPInfo(it, output_info);
  3662. output_dims.emplace_back(output_info);
  3663. GELOGD("Aipp output dims info: %s", it.c_str());
  3664. }
  3665. }
  3666. aipp_dims_info_[index] = { input_dims, input_dims };
  3667. return SUCCESS;
  3668. }
  3669. Status DavinciModel::GetAllAippInputOutputDims(uint32_t index, vector<InputOutputDims> &input_dims,
  3670. vector<InputOutputDims> &output_dims) const {
  3671. const auto it = aipp_dims_info_.find(index);
  3672. if (it == aipp_dims_info_.end()) {
  3673. GELOGE(ACL_ERROR_GE_AIPP_NOT_EXIST, "there is not AIPP related with index %u.", index);
  3674. return ACL_ERROR_GE_AIPP_NOT_EXIST;
  3675. }
  3676. input_dims = it->second.first;
  3677. output_dims = it->second.second;
  3678. return SUCCESS;
  3679. }
  3680. int64_t DavinciModel::GetFixedAddrsSize(string tensor_name) {
  3681. if (tensor_name_to_fixed_addr_size_.find(tensor_name) != tensor_name_to_fixed_addr_size_.end()) {
  3682. return tensor_name_to_fixed_addr_size_[tensor_name];
  3683. } else {
  3684. return total_fixed_addr_size_;
  3685. }
  3686. }
  3687. Status DavinciModel::InitL1DataDumperArgs() {
  3688. auto all_dump_model = GetDumpProperties().GetAllDumpModel();
  3689. bool find_by_om_name = all_dump_model.find(om_name_) != all_dump_model.end();
  3690. bool find_by_model_name = all_dump_model.find(name_) != all_dump_model.end();
  3691. bool dump_l1fusion_op =
  3692. (all_dump_model.find(ge::DUMP_ALL_MODEL) != all_dump_model.end()) || find_by_om_name || find_by_model_name;
  3693. if (dump_l1fusion_op) {
  3694. // malloc 2M for dump l1fusion op
  3695. GE_CHK_RT_RET(rtMalloc(&l1_fusion_addr_, kDumpL1FusionOpMByteSize, RT_MEMORY_DDR));
  3696. // send l1fusion dump addr to rts
  3697. if (rtDumpAddrSet(rt_model_handle_, l1_fusion_addr_, kDumpL1FusionOpMByteSize, kDumpFlagOfL1Fusion) !=
  3698. RT_ERROR_NONE) {
  3699. // l1_fusion_addr_ will be free when DavinciModel destruct
  3700. GELOGE(FAILED, "Call rtDumpAddrSet failed");
  3701. return FAILED;
  3702. }
  3703. // set addr for l1 data dump
  3704. data_dumper_.SetL1FusionAddr(l1_fusion_addr_);
  3705. }
  3706. return SUCCESS;
  3707. }
  3708. } // namespace ge

图引擎模块(GE)是MindSpore的一个子模块,其代码由C++实现,位于前端模块ME和底层硬件之间,起到承接作用。图引擎模块以ME下发的图作为输入,然后进行一系列的深度图优化操作,最后输出一张可以在底层硬件上高效运行的图。GE针对昇腾AI处理器的硬件结构特点,做了特定的优化工作,以此来充分发挥出昇腾AI处理器的强大算力。在进行模型训练/推理时,GE会被自动调用而用户并不感知。GE主要由GE API和GE Core两部分组成,详细的架构图如下所示