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util_insert_aipp_op.cc 32 kB

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  1. /**
  2. * Copyright 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/preprocess/insert_op/util_insert_aipp_op.h"
  17. #include <fstream>
  18. #include <utility>
  19. #include "common/dynamic_aipp.h"
  20. #include "common/formats/utils/formats_trans_utils.h"
  21. #include "common/ge/ge_util.h"
  22. #include "common/op/ge_op_utils.h"
  23. #include "common/util.h"
  24. #include "common/util/error_manager/error_manager.h"
  25. #include "framework/common/debug/ge_log.h"
  26. #include "framework/common/debug/log.h"
  27. #include "framework/common/ge_inner_error_codes.h"
  28. #include "framework/omg/omg_inner_types.h"
  29. #include "graph/debug/ge_attr_define.h"
  30. #include "graph/preprocess/insert_op/ge_aipp_op.h"
  31. #include "graph/utils/attr_utils.h"
  32. #include "graph/utils/graph_utils.h"
  33. #include "graph/utils/op_desc_utils.h"
  34. #include "graph/utils/tensor_utils.h"
  35. #include "graph/utils/type_utils.h"
  36. using domi::AippOpParams;
  37. namespace ge {
  38. namespace {
  39. const char *const kMbatchSwitchnName = "mbatch-switch-name";
  40. } // namespace
  41. static void ConvertShape2Nhwc(Format &format, vector<int64_t> &shape_vec) {
  42. if ((format == FORMAT_NHWC) || (shape_vec.size() != static_cast<size_t>(NORMAL_TENSOR_SIZE))) {
  43. return;
  44. }
  45. if (format != FORMAT_NCHW) {
  46. GELOGW("The format is not NCHW, current format is %s.", TypeUtils::FormatToSerialString(format).c_str());
  47. return;
  48. }
  49. vector<int64_t> shape_vec_tmp;
  50. shape_vec.swap(shape_vec_tmp);
  51. shape_vec.push_back(shape_vec_tmp[NCHW_DIM_N]);
  52. shape_vec.push_back(shape_vec_tmp[NCHW_DIM_H]);
  53. shape_vec.push_back(shape_vec_tmp[NCHW_DIM_W]);
  54. shape_vec.push_back(shape_vec_tmp[NCHW_DIM_C]);
  55. return;
  56. }
  57. Status InsertNewOpUtil::Init() {
  58. insert_op_conf_.reset((new (std::nothrow) domi::InsertNewOps()));
  59. GE_CHECK_NOTNULL(insert_op_conf_);
  60. return SUCCESS;
  61. }
  62. Status InsertNewOpUtil::Parse(const char *conf_path) {
  63. if (conf_path == nullptr || *conf_path == '\0') {
  64. return SUCCESS;
  65. }
  66. GE_CHK_BOOL_RET_STATUS(ReadProtoFromText(conf_path, insert_op_conf_.get()), FAILED, "Read AIPP conf file error: %s",
  67. conf_path);
  68. GE_CHK_STATUS_RET(CheckPositionNotRepeat(), "Check insert position of op failed");
  69. for (int i = 0; i < insert_op_conf_->aipp_op_size(); i++) {
  70. domi::AippOpParams *aipp_op_params = insert_op_conf_->mutable_aipp_op(i);
  71. std::unique_ptr<AippOp> aipp_op(new (std::nothrow) AippOp());
  72. GE_CHECK_NOTNULL(aipp_op);
  73. GE_CHK_STATUS_RET(aipp_op->Init(aipp_op_params), "Aipp op init failed.");
  74. insert_ops_.push_back(std::move(aipp_op));
  75. }
  76. for (auto &dynamic_op : insert_ops_) {
  77. GE_CHECK_NOTNULL(dynamic_op);
  78. GE_CHK_STATUS_RET(dynamic_op->ValidateParams(), "Validate insert_op config file failed");
  79. GE_CHK_STATUS_RET(dynamic_op->SetDefaultParams(), "Set default value of insert_op failed");
  80. }
  81. return SUCCESS;
  82. }
  83. Status InsertNewOpUtil::InsertAippOps(ComputeGraphPtr &graph, std::string &aippConfigPath) {
  84. GE_CHECK_NOTNULL(graph);
  85. for (uint32_t index = 0; index < insert_ops_.size(); ++index) {
  86. GE_CHK_STATUS_RET(insert_ops_[index]->InsertAippToGraph(graph, aippConfigPath, index), "insert op to graph failed");
  87. }
  88. GE_CHK_STATUS_RET(CheckGraph(graph), "after inserting all ops, check graph failed");
  89. GE_CHK_STATUS_RET(graph->TopologicalSorting(), "after insert dynamic op, sort graph failed");
  90. ClearNewOps();
  91. return SUCCESS;
  92. }
  93. void InsertNewOpUtil::ClearNewOps() {
  94. if (insert_op_conf_ != nullptr) {
  95. insert_op_conf_->Clear();
  96. insert_ops_.clear();
  97. }
  98. }
  99. Status InsertNewOpUtil::CheckInputNamePositionNotRepeat() {
  100. for (int i = 0; i < insert_op_conf_->aipp_op_size(); i++) {
  101. const domi::AippOpParams *item = insert_op_conf_->mutable_aipp_op(i);
  102. GE_CHECK_NOTNULL(item);
  103. for (int j = i + 1; j < insert_op_conf_->aipp_op_size(); j++) {
  104. const domi::AippOpParams *another_item = insert_op_conf_->mutable_aipp_op(j);
  105. GE_CHECK_NOTNULL(another_item);
  106. if (another_item->related_input_name().empty()) {
  107. string error_msg = "Can not both set related_input_name and related_input_rank!"
  108. " Please ensure param is the same with the first aipp config(related_input_name).";
  109. GELOGE(PARAM_INVALID, "[Check][InputParam]%s", error_msg.c_str());
  110. REPORT_INPUT_ERROR("E19021", std::vector<std::string>({"reason"}), std::vector<std::string>({error_msg}));
  111. return PARAM_INVALID;
  112. }
  113. if (item->related_input_name() == another_item->related_input_name()) {
  114. string error_msg = "Can not insert aipp to the same postion! Please ensure related_input_name"
  115. " param is different in different aipp config.";
  116. GELOGE(PARAM_INVALID, "[Check][InputParam]%s", error_msg.c_str());
  117. REPORT_INPUT_ERROR("E19021", std::vector<std::string>({"reason"}), std::vector<std::string>({error_msg}));
  118. return PARAM_INVALID;
  119. }
  120. }
  121. }
  122. return SUCCESS;
  123. }
  124. Status InsertNewOpUtil::CheckInputRankPositionNoRepeat() {
  125. for (int i = 0; i < insert_op_conf_->aipp_op_size(); i++) {
  126. const domi::AippOpParams *item = insert_op_conf_->mutable_aipp_op(i);
  127. GE_CHECK_NOTNULL(item);
  128. for (int j = i + 1; j < insert_op_conf_->aipp_op_size(); j++) {
  129. const domi::AippOpParams *another_item = insert_op_conf_->mutable_aipp_op(j);
  130. GE_CHECK_NOTNULL(another_item);
  131. if (!another_item->related_input_name().empty()) {
  132. string error_msg = "Can not both set related_input_rank and related_input_name!"
  133. " Please ensure param is the same with the first aipp config(related_input_rank).";
  134. GELOGE(PARAM_INVALID, "[Check][InputParam]%s", error_msg.c_str());
  135. REPORT_INPUT_ERROR("E19021", std::vector<std::string>({"reason"}), std::vector<std::string>({error_msg}));
  136. return PARAM_INVALID;
  137. }
  138. if (item->related_input_rank() == another_item->related_input_rank()) {
  139. string error_msg = "Can not insert aipp to the same postion! Please ensure related_input_rank"
  140. " param is different in different aipp config.";
  141. GELOGE(PARAM_INVALID, "[Check][InputParam]%s", error_msg.c_str());
  142. REPORT_INPUT_ERROR("E19021", std::vector<std::string>({"reason"}), std::vector<std::string>({error_msg}));
  143. return PARAM_INVALID;
  144. }
  145. }
  146. }
  147. return SUCCESS;
  148. }
  149. Status InsertNewOpUtil::CheckPositionNotRepeat() {
  150. GE_CHECK_NOTNULL(insert_op_conf_);
  151. if (insert_op_conf_->aipp_op_size() <= 1) {
  152. GELOGI("Aipp op size[%d] less than 2, no need to check position repeat.", insert_op_conf_->aipp_op_size());
  153. return SUCCESS;
  154. }
  155. const domi::AippOpParams *item = insert_op_conf_->mutable_aipp_op(0);
  156. GE_CHECK_NOTNULL(item);
  157. string related_input_name = item->related_input_name();
  158. Status ret = FAILED;
  159. if (related_input_name.empty()) {
  160. ret = CheckInputRankPositionNoRepeat();
  161. } else {
  162. ret = CheckInputNamePositionNotRepeat();
  163. }
  164. if (ret != SUCCESS) {
  165. GELOGE(FAILED, "Check position not repeat failed.");
  166. return FAILED;
  167. }
  168. return SUCCESS;
  169. }
  170. Status InsertNewOpUtil::CheckGraph(const ComputeGraphPtr &graph) {
  171. GE_CHECK_NOTNULL(graph);
  172. domi::AippOpParams::AippMode aippMode = domi::AippOpParams::undefined;
  173. for (const auto &node : graph->GetDirectNode()) {
  174. if (node->GetType() != DATA) {
  175. continue;
  176. }
  177. size_t next_nodes_cnt = 0;
  178. std::vector<NodePtr> aippNodes;
  179. for (const auto &anchor : node->GetAllOutDataAnchors()) {
  180. for (const auto &inAnchor : anchor->GetPeerInDataAnchors()) {
  181. const std::string &nodeType = inAnchor->GetOwnerNode()->GetType();
  182. next_nodes_cnt++;
  183. if (nodeType == AIPP) {
  184. aippNodes.push_back(inAnchor->GetOwnerNode());
  185. continue;
  186. }
  187. }
  188. }
  189. GE_CHK_LOG_AND_ERRORMSG((aippNodes.size() == 0) || (aippNodes.size() == next_nodes_cnt),
  190. PARAM_INVALID,
  191. "Can not config part of outputs of Data node to support AIPP, config all "
  192. "of the outputs of Data to support AIPP, or config none of them");
  193. std::unique_ptr<domi::AippOpParams> aippParams(new (std::nothrow) domi::AippOpParams());
  194. GE_CHECK_NOTNULL(aippParams);
  195. GE_IF_BOOL_EXEC(
  196. aippNodes.size() > 1, for (decltype(aippNodes)::size_type i = 1; i < aippNodes.size(); i++) {
  197. std::unique_ptr<domi::AippOpParams> currAippParam(new (std::nothrow) domi::AippOpParams());
  198. GE_CHECK_NOTNULL(currAippParam);
  199. GE_CHK_STATUS(GetAippParams(currAippParam, aippNodes[i]));
  200. if (aippMode == domi::AippOpParams::static_) {
  201. GE_CHK_LOG_AND_ERRORMSG(
  202. aippParams->input_format() == currAippParam->input_format(),
  203. PARAM_INVALID, "The input_format of all aipp_ops after one Data should be the same");
  204. GE_CHK_LOG_AND_ERRORMSG(
  205. aippParams->src_image_size_w() == currAippParam->src_image_size_w(),
  206. PARAM_INVALID, "The src_image_size_w of all aipp_ops after one Data should be the same");
  207. GE_CHK_LOG_AND_ERRORMSG(
  208. aippParams->src_image_size_h() == currAippParam->src_image_size_h(),
  209. PARAM_INVALID, "The src_image_size_h of all aipp_ops after one Data should be the same");
  210. } else {
  211. GE_CHK_LOG_AND_ERRORMSG(
  212. aippParams->max_src_image_size() == currAippParam->max_src_image_size(),
  213. PARAM_INVALID, "The max_src_image_size of all aipp_ops after one Data should be the same");
  214. }
  215. });
  216. }
  217. return SUCCESS;
  218. }
  219. Status InsertNewOpUtil::GetAippParams(const std::unique_ptr<domi::AippOpParams> &aippParams, const NodePtr &aipp_node) {
  220. GE_CHECK_NOTNULL(aipp_node);
  221. ge::GeAttrValue::NAMED_ATTRS aipp_attr;
  222. const OpDescPtr tmpOpPtr = aipp_node->GetOpDesc();
  223. GE_CHECK_NOTNULL(tmpOpPtr);
  224. GE_CHK_BOOL_RET_STATUS(AttrUtils::GetNamedAttrs(tmpOpPtr, ATTR_NAME_AIPP, aipp_attr), FAILED,
  225. "Aipp node should contain param aipp!");
  226. GE_CHK_STATUS_RET(OpUtils::ConvertAippParams(aipp_attr, aippParams.get()), "get aipp params failed");
  227. return SUCCESS;
  228. }
  229. Status InsertNewOpUtil::UpdateDataNodeByAipp(const ComputeGraphPtr &graph) {
  230. std::map<std::string, NodePtr> switchn_names_to_data;
  231. std::set<NodePtr> updated_switchn;
  232. NodePtr multbatch_case;
  233. for (auto &node : graph->GetDirectNode()) {
  234. if (node->GetType() == DATA) {
  235. std::string switchn_name;
  236. if (AttrUtils::GetStr(node->GetOpDesc(), kMbatchSwitchnName, switchn_name)) {
  237. switchn_names_to_data[switchn_name] = node;
  238. }
  239. }
  240. if (node->GetType() == AIPP) {
  241. GE_RETURN_IF_ERROR(UpdatePrevNodeByAipp(node, updated_switchn));
  242. }
  243. if (node->GetType() == CASE && node->GetOpDesc()->HasAttr(ATTR_NAME_BATCH_NUM)) {
  244. multbatch_case = node;
  245. }
  246. }
  247. for (auto &switchn : updated_switchn) {
  248. auto data_iter = switchn_names_to_data.find(switchn->GetName());
  249. if (data_iter == switchn_names_to_data.end()) {
  250. string error_msg = "Failed to find relative data node by switchn[" + switchn->GetName() + "]";
  251. GE_ERRORLOG_AND_ERRORMSG(INTERNAL_ERROR, error_msg.c_str());
  252. return INTERNAL_ERROR;
  253. }
  254. GE_RETURN_IF_ERROR(UpdateDataBySwitchN(switchn, data_iter->second));
  255. }
  256. if (multbatch_case != nullptr) {
  257. GE_RETURN_IF_ERROR(UpdateCaseNode(graph, multbatch_case));
  258. }
  259. return SUCCESS;
  260. }
  261. Status InsertNewOpUtil::FindMaxSizeNode(const ComputeGraphPtr &graph, const NodePtr &case_node,
  262. map<uint32_t, int64_t> &max_sizes,
  263. map<uint32_t, GeTensorDescPtr> &aipp_inputs) {
  264. const auto &func_desc = case_node->GetOpDesc();
  265. for (const auto &name : func_desc->GetSubgraphInstanceNames()) {
  266. const auto &subgraph = graph->GetSubgraph(name);
  267. if (subgraph == nullptr) {
  268. GELOGE(GE_GRAPH_EMPTY_SUBGRAPH, "Subgraph not found, name: %s", name.c_str());
  269. return GE_GRAPH_EMPTY_SUBGRAPH;
  270. }
  271. std::set<NodePtr> updated_switchn; // fix interface
  272. for (auto &node : subgraph->GetDirectNode()) {
  273. if (node->GetType() == AIPP) {
  274. GE_RETURN_IF_ERROR(UpdatePrevNodeByAipp(node, updated_switchn));
  275. int64_t size = 0;
  276. auto in_data_anchor = node->GetInDataAnchor(0);
  277. GE_CHECK_NOTNULL(in_data_anchor);
  278. auto peer_out_anchor = in_data_anchor->GetPeerOutAnchor();
  279. GE_CHECK_NOTNULL(peer_out_anchor);
  280. const auto &src_node = peer_out_anchor->GetOwnerNode();
  281. const auto &src_op = src_node->GetOpDesc();
  282. GE_CHECK_NOTNULL(src_op);
  283. uint32_t parent_index = 0;
  284. if (!AttrUtils::GetInt(src_op, ATTR_NAME_PARENT_NODE_INDEX, parent_index)) {
  285. GELOGE(FAILED, "Parent index not found, name: %s", src_op->GetName().c_str());
  286. return FAILED;
  287. }
  288. auto aipp_op_desc = node->GetOpDesc();
  289. GE_CHECK_NOTNULL(aipp_op_desc);
  290. auto input = aipp_op_desc->MutableInputDesc(0);
  291. GE_CHECK_NOTNULL(input);
  292. if (TensorUtils::GetSize(*input, size) == GRAPH_SUCCESS) {
  293. if (max_sizes[parent_index] < size) {
  294. max_sizes[parent_index] = size;
  295. aipp_inputs[parent_index] = input;
  296. }
  297. }
  298. }
  299. }
  300. }
  301. return SUCCESS;
  302. }
  303. Status InsertNewOpUtil::UpdateCaseNode(const ComputeGraphPtr &graph, const NodePtr &case_node) {
  304. const auto &func_desc = case_node->GetOpDesc();
  305. map<uint32_t, int64_t> max_sizes;
  306. map<uint32_t, GeTensorDescPtr> aipp_inputs;
  307. GE_RETURN_IF_ERROR(FindMaxSizeNode(graph, case_node, max_sizes, aipp_inputs));
  308. for (const auto &item : aipp_inputs) {
  309. uint32_t parent_index = item.first;
  310. const GeTensorDescPtr &aipp_input = item.second;
  311. GE_CHECK_NOTNULL(aipp_input);
  312. const GeTensorDescPtr &input_desc = func_desc->MutableInputDesc(parent_index);
  313. GE_CHECK_NOTNULL(input_desc);
  314. input_desc->SetDataType(aipp_input->GetDataType());
  315. input_desc->SetOriginDataType(aipp_input->GetOriginDataType());
  316. input_desc->SetShape(aipp_input->GetShape());
  317. input_desc->SetOriginShape(aipp_input->GetShape());
  318. input_desc->SetFormat(aipp_input->GetFormat());
  319. input_desc->SetOriginFormat(aipp_input->GetFormat());
  320. ge::TensorUtils::SetSize(*input_desc, max_sizes[item.first]);
  321. const auto &in_anchor = case_node->GetInDataAnchor(parent_index);
  322. const auto &out_anchor = in_anchor->GetPeerOutAnchor();
  323. const auto &data = out_anchor->GetOwnerNode();
  324. auto data_opdesc = data->GetOpDesc();
  325. GE_CHECK_NOTNULL(data_opdesc);
  326. Format old_format = data_opdesc->MutableOutputDesc(0)->GetFormat();
  327. auto ret = data_opdesc->UpdateOutputDesc(0, *input_desc);
  328. if (ret != GRAPH_SUCCESS) {
  329. GELOGE(INTERNAL_ERROR, "Failed to update data %s output using case %s", data->GetName().c_str(),
  330. case_node->GetName().c_str());
  331. return INTERNAL_ERROR;
  332. }
  333. ret = data_opdesc->UpdateInputDesc(0, *input_desc);
  334. if (ret != GRAPH_SUCCESS) {
  335. GELOGE(INTERNAL_ERROR, "Failed to update data %s input using case %s", data->GetName().c_str(),
  336. case_node->GetName().c_str());
  337. return INTERNAL_ERROR;
  338. }
  339. // Update attr _mbatch_origin_input_dims for data when it is linked to aipp
  340. UpdateMultiBatchInputDims(data_opdesc, old_format);
  341. }
  342. return SUCCESS;
  343. }
  344. Status InsertNewOpUtil::UpdatePrevNodeByAipp(NodePtr &node, std::set<NodePtr> &switchns) {
  345. GELOGI("Start to update prev node size by aipp %s.", node->GetName().c_str());
  346. auto aipp_op_desc = node->GetOpDesc();
  347. GE_CHECK_NOTNULL(aipp_op_desc);
  348. auto aipp_input = aipp_op_desc->MutableInputDesc(0);
  349. GE_CHECK_NOTNULL(aipp_input);
  350. int64_t size = 0;
  351. graphStatus graph_ret = ge::TensorUtils::GetSize(*aipp_input, size);
  352. if (graph_ret != GRAPH_SUCCESS) {
  353. GELOGE(FAILED, "UpdateOutputDesc fail, graph_ret:%d", graph_ret);
  354. return FAILED;
  355. }
  356. GELOGI("Get input size [%ld] from aipp [%s].", size, aipp_op_desc->GetName().c_str());
  357. if (size == 0) {
  358. GELOGE(FAILED, "Can not get size from aipp [%s]", aipp_op_desc->GetName().c_str());
  359. return FAILED;
  360. }
  361. (void)AttrUtils::SetInt(aipp_input, ATTR_NAME_INPUT_ORIGIN_SIZE, size);
  362. auto in_data_anchor = node->GetInDataAnchor(0);
  363. GE_CHECK_NOTNULL(in_data_anchor);
  364. auto peer_out_anchor = in_data_anchor->GetPeerOutAnchor();
  365. GE_CHECK_NOTNULL(peer_out_anchor);
  366. const auto &src_node = peer_out_anchor->GetOwnerNode();
  367. const auto &src_op = src_node->GetOpDesc();
  368. GE_CHECK_NOTNULL(src_op);
  369. // if the type of src_node is SwitchN, the input of it may be updated to a size not the max one
  370. // the correct size will be updated in function `UpdateDataBySwitchN`
  371. DataType aipp_dt = aipp_input->GetDataType();
  372. aipp_input->SetOriginDataType(aipp_dt);
  373. DataType aipp_origni_dt = aipp_input->GetOriginDataType();
  374. GeShape aipp_shape = aipp_input->GetShape();
  375. Format aipp_format = aipp_input->GetFormat();
  376. GELOGI("Aipp [%s] input datatype is %s, origin datatype is %s, input shape is %s", aipp_op_desc->GetName().c_str(),
  377. TypeUtils::DataTypeToSerialString(aipp_dt).c_str(), TypeUtils::DataTypeToSerialString(aipp_origni_dt).c_str(),
  378. ge::formats::ShapeToString(aipp_shape.GetDims()).c_str());
  379. const GeTensorDescPtr &input = src_op->MutableInputDesc(0);
  380. GE_CHECK_NOTNULL(input);
  381. input->SetDataType(aipp_dt);
  382. input->SetOriginDataType(aipp_origni_dt);
  383. input->SetShape(aipp_shape);
  384. input->SetOriginShape(aipp_shape);
  385. input->SetFormat(aipp_format);
  386. input->SetOriginFormat(aipp_format);
  387. ge::TensorUtils::SetSize(*input, size);
  388. const GeTensorDescPtr &output = src_op->MutableOutputDesc(peer_out_anchor->GetIdx());
  389. GE_CHECK_NOTNULL(output);
  390. output->SetDataType(aipp_dt);
  391. output->SetOriginDataType(aipp_origni_dt);
  392. output->SetShape(aipp_shape);
  393. output->SetOriginShape(aipp_shape);
  394. output->SetFormat(aipp_format);
  395. output->SetOriginFormat(aipp_format);
  396. ge::TensorUtils::SetSize(*output, size);
  397. if (src_node->GetType() == SWITCHN) {
  398. switchns.insert(src_node);
  399. }
  400. GELOGI("Set node %s output %d size %ld by aipp.", src_node->GetName().c_str(), peer_out_anchor->GetIdx(), size);
  401. return SUCCESS;
  402. }
  403. Status InsertNewOpUtil::UpdateDataBySwitchN(const NodePtr &switchn, const NodePtr &data) {
  404. size_t max_index = switchn->GetOpDesc()->GetOutputsSize();
  405. int64_t max_size = 0;
  406. for (size_t i = 0; i < switchn->GetOpDesc()->GetOutputsSize(); ++i) {
  407. int64_t size = 0;
  408. auto output_desc = switchn->GetOpDesc()->MutableOutputDesc(i);
  409. GE_CHECK_NOTNULL(output_desc);
  410. if (TensorUtils::GetSize(*output_desc, size) == GRAPH_SUCCESS) {
  411. if (max_size < size) {
  412. max_size = size;
  413. max_index = i;
  414. }
  415. }
  416. }
  417. if (max_index >= switchn->GetOpDesc()->GetOutputsSize()) {
  418. string error_msg = "No max size found from switchn node[" + switchn->GetName() + "]";
  419. GE_ERRORLOG_AND_ERRORMSG(INTERNAL_ERROR, error_msg.c_str());
  420. return INTERNAL_ERROR;
  421. }
  422. auto output_desc = switchn->GetOpDesc()->MutableOutputDesc(max_index);
  423. auto input_desc = switchn->GetOpDesc()->MutableInputDesc(0);
  424. GE_CHECK_NOTNULL(input_desc);
  425. input_desc->SetDataType(output_desc->GetDataType());
  426. input_desc->SetOriginDataType(output_desc->GetOriginDataType());
  427. input_desc->SetShape(output_desc->GetShape());
  428. input_desc->SetOriginShape(output_desc->GetOriginShape());
  429. input_desc->SetFormat(output_desc->GetFormat());
  430. input_desc->SetOriginFormat(output_desc->GetOriginFormat());
  431. TensorUtils::SetSize(*input_desc, max_size);
  432. auto data_opdesc = data->GetOpDesc();
  433. GE_CHECK_NOTNULL(data_opdesc);
  434. Format old_format = data_opdesc->MutableOutputDesc(0)->GetFormat();
  435. auto ret = data_opdesc->UpdateOutputDesc(0, *input_desc);
  436. if (ret != GRAPH_SUCCESS) {
  437. GELOGE(INTERNAL_ERROR, "Failed to update data %s output using switchn %s", data->GetName().c_str(),
  438. switchn->GetName().c_str());
  439. return INTERNAL_ERROR;
  440. }
  441. ret = data_opdesc->UpdateInputDesc(0, *input_desc);
  442. if (ret != GRAPH_SUCCESS) {
  443. GELOGE(INTERNAL_ERROR, "Failed to update data %s input using switchn %s", data->GetName().c_str(),
  444. switchn->GetName().c_str());
  445. return INTERNAL_ERROR;
  446. }
  447. // Update attr _mbatch_origin_input_dims for data when it is linked to aipp
  448. UpdateMultiBatchInputDims(data_opdesc, old_format);
  449. return SUCCESS;
  450. }
  451. void InsertNewOpUtil::UpdateMultiBatchInputDims(const OpDescPtr &data_opdesc, Format &old_format) {
  452. if (!data_opdesc->HasAttr(ATTR_MBATCH_ORIGIN_INPUT_DIMS)) {
  453. GELOGW("Failed to acquire _mbatch_origin_input_dims attr from node [%s]", data_opdesc->GetName().c_str());
  454. return;
  455. }
  456. auto new_data_dims = data_opdesc->GetOutputDesc(0).GetShape().GetDims();
  457. vector<int64_t> origin_input_dims;
  458. (void)AttrUtils::GetListInt(data_opdesc, ATTR_MBATCH_ORIGIN_INPUT_DIMS, origin_input_dims);
  459. // Convert origin_input_dims to NHWC because data format is set to NHWC when it is linked to aipp.
  460. ConvertShape2Nhwc(old_format, origin_input_dims);
  461. if (new_data_dims.size() != origin_input_dims.size()) {
  462. return;
  463. }
  464. for (size_t i = 0; i < origin_input_dims.size(); ++i) {
  465. // Need to update shape when aipp has crop function because H,W is different, ignore -1.
  466. if (origin_input_dims[i] > 0) {
  467. origin_input_dims[i] = new_data_dims[i];
  468. }
  469. }
  470. (void)AttrUtils::SetListInt(data_opdesc, ATTR_MBATCH_ORIGIN_INPUT_DIMS, origin_input_dims);
  471. return;
  472. }
  473. Status InsertNewOpUtil::GetDataRelatedNode(NodePtr &node, std::map<NodePtr, std::set<NodePtr>> &data_next_node_map) {
  474. GELOGI("Start to get data and next node %s.", node->GetName().c_str());
  475. OpDescPtr data_op = node->GetOpDesc();
  476. GE_CHECK_NOTNULL(data_op);
  477. if (!data_op->HasAttr(ATTR_NAME_AIPP)) {
  478. GELOGI("there is not AIPP info for Data: %s.", data_op->GetName().c_str());
  479. return SUCCESS;
  480. }
  481. std::unique_ptr<domi::AippOpParams> aipp_params(new (std::nothrow) domi::AippOpParams());
  482. ge::GeAttrValue::NAMED_ATTRS aipp_attr;
  483. GE_CHK_BOOL_RET_STATUS(AttrUtils::GetNamedAttrs(data_op, ATTR_NAME_AIPP, aipp_attr), ACL_ERROR_GE_AIPP_NOT_EXIST,
  484. "Data node do not contain param aipp!");
  485. GE_CHK_STATUS_RET(OpUtils::ConvertAippParams(aipp_attr, aipp_params.get()), "get aipp params failed");
  486. for (auto out_data_anchor : node->GetAllOutDataAnchors()) {
  487. GE_CHECK_NOTNULL(out_data_anchor);
  488. auto peer_in_anchors = out_data_anchor->GetPeerInDataAnchors();
  489. for (auto peer_in_data_anchor : peer_in_anchors) {
  490. GE_CHECK_NOTNULL(peer_in_data_anchor);
  491. const auto &dst_node = peer_in_data_anchor->GetOwnerNode();
  492. const auto &dst_op = dst_node->GetOpDesc();
  493. GE_CHECK_NOTNULL(dst_op);
  494. if (dst_op->GetType() == AIPP || dst_op->GetType() == SWITCHN || dst_op->GetType() == CASE) {
  495. auto data_iter = data_next_node_map.find(node);
  496. if (data_iter == data_next_node_map.end()) {
  497. std::set<NodePtr> next_node_set;
  498. next_node_set.insert(dst_node);
  499. data_next_node_map[node] = next_node_set;
  500. } else {
  501. if (data_next_node_map[node].find(dst_node) == data_next_node_map[node].end()) {
  502. data_next_node_map[node].insert(dst_node);
  503. }
  504. }
  505. }
  506. }
  507. }
  508. return SUCCESS;
  509. }
  510. Status InsertNewOpUtil::GetAllAipps(const NodePtr &data_node, const NodePtr &node, std::vector<NodePtr> &aipps) {
  511. GE_CHECK_NOTNULL(node);
  512. OpDescPtr op = node->GetOpDesc();
  513. GE_CHECK_NOTNULL(op);
  514. GELOGI("Get all aipp node from this node %s.", op->GetName().c_str());
  515. if (op->GetType() == AIPP) {
  516. aipps.emplace_back(node);
  517. } else if (op->GetType() == SWITCHN) {
  518. for (auto out_data_anchor : node->GetAllOutDataAnchors()) {
  519. GE_CHECK_NOTNULL(out_data_anchor);
  520. auto peer_in_anchors = out_data_anchor->GetPeerInDataAnchors();
  521. if (peer_in_anchors.size() > 0) {
  522. auto peer_in_anchor = peer_in_anchors.at(0);
  523. GE_CHECK_NOTNULL(peer_in_anchor);
  524. auto dst_aipp_node = peer_in_anchor->GetOwnerNode();
  525. if (dst_aipp_node->GetType() == AIPP) {
  526. aipps.emplace_back(dst_aipp_node);
  527. }
  528. }
  529. }
  530. } else if (op->GetType() == CASE) {
  531. const ComputeGraphPtr &graph = node->GetOwnerComputeGraph();
  532. for (const auto &name : op->GetSubgraphInstanceNames()) {
  533. const auto &subgraph = graph->GetSubgraph(name);
  534. if (subgraph == nullptr) {
  535. GELOGE(GE_GRAPH_EMPTY_SUBGRAPH, "Subgraph not found, name: %s", name.c_str());
  536. return GE_GRAPH_EMPTY_SUBGRAPH;
  537. }
  538. for (auto &subgraph_node : subgraph->GetDirectNode()) {
  539. if (subgraph_node->GetType() == AIPP) {
  540. auto src_node = subgraph_node->GetInDataNodes().at(0);
  541. const auto &src_op = src_node->GetOpDesc();
  542. GE_CHECK_NOTNULL(src_op);
  543. uint32_t parent_index = 0;
  544. if (!AttrUtils::GetInt(src_op, ATTR_NAME_PARENT_NODE_INDEX, parent_index)) {
  545. GELOGE(FAILED, "Parent index not found, name: %s", src_op->GetName().c_str());
  546. return FAILED;
  547. }
  548. auto data = node->GetInDataNodes().at(parent_index);
  549. if (data->GetName() == data_node->GetName()) {
  550. aipps.emplace_back(subgraph_node);
  551. }
  552. }
  553. }
  554. }
  555. }
  556. return SUCCESS;
  557. }
  558. Status InsertNewOpUtil::RecordAIPPInfoToData(const ComputeGraphPtr &graph) {
  559. GELOGI("Start to record aipp info to Data.");
  560. std::map<NodePtr, std::set<NodePtr>> data_next_node_map;
  561. for (auto &node : graph->GetDirectNode()) {
  562. if (node->GetType() == DATA) {
  563. GE_RETURN_IF_ERROR(GetDataRelatedNode(node, data_next_node_map));
  564. }
  565. }
  566. for (auto it : data_next_node_map) {
  567. std::vector<std::string> input_dims;
  568. std::vector<std::string> output_dims;
  569. auto data_node = it.first;
  570. auto data_op_desc = data_node->GetOpDesc();
  571. GE_CHECK_NOTNULL(data_op_desc);
  572. std::set<NodePtr> aipps_or_switchs_or_case = it.second;
  573. if (aipps_or_switchs_or_case.size() != 1) {
  574. GELOGW("The number of successors swith or aipp of data is more than 1");
  575. continue;
  576. }
  577. std::vector<NodePtr> aipps;
  578. GE_RETURN_IF_ERROR(GetAllAipps(data_node, *aipps_or_switchs_or_case.begin(), aipps));
  579. GELOGI("RecordAIPPInfoToData: Data: name[%s], type[%s], batch size[%zu]", data_node->GetName().c_str(),
  580. data_node->GetType().c_str(), aipps.size());
  581. for (auto aipp_it : aipps) {
  582. string input;
  583. string output;
  584. GetInputOutputInfo(data_node, aipp_it, input, output);
  585. input_dims.emplace_back(input);
  586. output_dims.emplace_back(output);
  587. // When static aipp is set, need to get the model input dims which processed by aipp
  588. GE_RETURN_IF_ERROR(SetModelInputDims(data_node, aipp_it));
  589. }
  590. // if _all_origin_gears_inputs is set, use its value directly.
  591. if (data_op_desc->HasAttr("_all_origin_gears_inputs")) {
  592. std::vector<std::string> input_dims_str;
  593. (void)AttrUtils::GetListStr(data_op_desc, "_all_origin_gears_inputs", input_dims_str);
  594. (void)AttrUtils::SetListStr(data_op_desc, ATTR_NAME_AIPP_INPUTS, input_dims_str);
  595. if ((input_dims_str.size() > output_dims.size()) && !output_dims.empty()) {
  596. // make sure output and input counts is equal, appears in dynamic aipp and dynamic shape/batch scene.
  597. std::vector<std::string> output_dims_str{input_dims_str.size(), output_dims[0]};
  598. (void)AttrUtils::SetListStr(data_op_desc, ATTR_NAME_AIPP_OUTPUTS, output_dims_str);
  599. } else {
  600. (void)AttrUtils::SetListStr(data_op_desc, ATTR_NAME_AIPP_OUTPUTS, output_dims);
  601. }
  602. } else {
  603. (void)AttrUtils::SetListStr(data_op_desc, ATTR_NAME_AIPP_INPUTS, input_dims);
  604. (void)AttrUtils::SetListStr(data_op_desc, ATTR_NAME_AIPP_OUTPUTS, output_dims);
  605. }
  606. }
  607. return SUCCESS;
  608. }
  609. Status InsertNewOpUtil::GetInputOutputInfo(NodePtr &data_node, NodePtr &aipp_node, std::string &input,
  610. std::string &output) {
  611. GE_CHECK_NOTNULL(data_node);
  612. GE_CHECK_NOTNULL(aipp_node);
  613. OpDescPtr data_op = data_node->GetOpDesc();
  614. GE_CHECK_NOTNULL(data_op);
  615. OpDescPtr aipp_op = aipp_node->GetOpDesc();
  616. GE_CHECK_NOTNULL(aipp_op);
  617. // aipp node's original output shape equals to original model data's shape
  618. ConstGeTensorDescPtr output_desc = aipp_op->GetOutputDescPtr(0);
  619. Format orig_format = output_desc->GetOriginFormat();
  620. DataType orig_data_type = output_desc->GetOriginDataType();
  621. std::string tensor_name = data_op->GetName();
  622. size_t dim_num = output_desc->GetOriginShape().GetDimNum();
  623. int64_t tensor_size = 0;
  624. (void)TensorUtils::CalcTensorMemSize(output_desc->GetOriginShape(), orig_format, orig_data_type, tensor_size);
  625. int64_t input_size = tensor_size;
  626. input = TypeUtils::FormatToSerialString(orig_format) + ":" + TypeUtils::DataTypeToSerialString(orig_data_type) + ":" +
  627. tensor_name + ":" + std::to_string(input_size) + ":" + std::to_string(dim_num) + ":" +
  628. formats::JoinToString(output_desc->GetOriginShape().GetDims());
  629. Format format = output_desc->GetFormat();
  630. DataType data_type = output_desc->GetDataType();
  631. std::string output_name = aipp_op->GetOutputNameByIndex(0);
  632. size_t output_dim_num = output_desc->GetShape().GetDimNum();
  633. (void)TensorUtils::CalcTensorMemSize(output_desc->GetShape(), output_desc->GetFormat(), output_desc->GetDataType(),
  634. tensor_size);
  635. int64_t output_size = tensor_size;
  636. output = TypeUtils::FormatToSerialString(format) + ":" + TypeUtils::DataTypeToSerialString(data_type) + ":" +
  637. output_name + ":" + std::to_string(output_size) + ":" + std::to_string(output_dim_num) + ":" +
  638. formats::JoinToString(output_desc->GetShape().GetDims());
  639. GELOGI("GetInputOutputInfo: get data[%s] node related aipp[%s] node info, input[%s], output[%s].",
  640. data_node->GetName().c_str(), aipp_node->GetName().c_str(), input.c_str(), output.c_str());
  641. return SUCCESS;
  642. }
  643. Status InsertNewOpUtil::SetModelInputDims(NodePtr &data_node, NodePtr &aipp_node) {
  644. GE_CHECK_NOTNULL(data_node);
  645. GE_CHECK_NOTNULL(aipp_node);
  646. OpDescPtr data_opdesc = data_node->GetOpDesc();
  647. GE_CHECK_NOTNULL(data_opdesc);
  648. OpDescPtr aipp_opdesc = aipp_node->GetOpDesc();
  649. GE_CHECK_NOTNULL(aipp_opdesc);
  650. // In dynamic bacth/hw scenario, the new model input dims only need be set once
  651. if (data_node->GetOpDesc()->HasAttr(ATTR_NAME_INPUT_DIMS)) {
  652. GELOGD("Data %s already has attribute %s", data_node->GetOpDesc()->GetName().c_str(), ATTR_NAME_INPUT_DIMS.c_str());
  653. return SUCCESS;
  654. }
  655. vector<int64_t> model_input_dims;
  656. vector<int64_t> origin_input_dims;
  657. if (AttrUtils::GetListInt(aipp_opdesc, ATTR_NAME_INPUT_DIMS, model_input_dims) && !model_input_dims.empty()) {
  658. // When dynamic bacth/hw is set, N or HW need to be set to -1
  659. if (AttrUtils::GetListInt(data_opdesc, ATTR_MBATCH_ORIGIN_INPUT_DIMS, origin_input_dims) &&
  660. !origin_input_dims.empty()) {
  661. GELOGI("In dynamic bacth/hw scenario, N or HW need to be set to -1. model_input_dims: %s, origin_input_dims: %s",
  662. formats::JoinToString(model_input_dims).c_str(), formats::JoinToString(origin_input_dims).c_str());
  663. for (size_t i = 0; i < origin_input_dims.size(); ++i) {
  664. // N or HW need to be set to -1
  665. if (origin_input_dims[i] < 0) {
  666. model_input_dims[i] = origin_input_dims[i];
  667. }
  668. }
  669. }
  670. GELOGD("After set N or H/W to -1, the model input dims: %s.", formats::JoinToString(model_input_dims).c_str());
  671. if (!AttrUtils::SetListInt(data_opdesc, ATTR_NAME_INPUT_DIMS, model_input_dims)) {
  672. GELOGE(FAILED, "SetListInt of %s failed.", ATTR_NAME_INPUT_DIMS.c_str());
  673. return FAILED;
  674. }
  675. }
  676. return SUCCESS;
  677. }
  678. } // 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