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atc_ir_common.cc 38 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 "atc_ir_common.h"
  17. #include "common/util/error_manager/error_manager.h"
  18. #include "external/ge/ge_api_types.h"
  19. #include "framework/common/string_util.h"
  20. #include "framework/common/types.h"
  21. #include "framework/common/util.h"
  22. #include "graph/compute_graph.h"
  23. #include "graph/utils/type_utils.h"
  24. #include "graph/utils/tensor_utils.h"
  25. using std::pair;
  26. using std::string;
  27. using std::vector;
  28. namespace ge {
  29. namespace {
  30. const int64_t kDynamicInputDim = -1;
  31. const int64_t kDynamicImageSizeNum = 2;
  32. const size_t kMaxDynamicDimNum = 100;
  33. const size_t kMaxNDDimNum = 4;
  34. const size_t kMinNDDimNum = 1;
  35. const size_t kSquareBracketsSize = 2;
  36. const size_t kRangePairSize = 2;
  37. // datatype/formats from user to GE, Unified to util interface file later
  38. const std::map<std::string, ge::DataType> kOutputTypeSupportDatatype = {
  39. {"FP32", ge::DT_FLOAT}, {"FP16", ge::DT_FLOAT16}, {"UINT8", ge::DT_UINT8}};
  40. const char *const kOutputTypeSupport = "only support FP32, FP16, UINT8";
  41. const std::set<std::string> kBufferOptimizeSupportOption = {"l1_optimize", "l2_optimize", "off_optimize",
  42. "l1_and_l2_optimize"};
  43. // The function is incomplete. Currently, only l2_optimize, off_optimize is supported.
  44. const char *const kBufferOptimizeSupport = "only support l2_optimize, off_optimize";
  45. const char *const IR_OPTION_OP_SELECT_IMPLMODE_DEFAULT = "high_performance";
  46. const char *const IR_OPTION_OP_SELECT_IMPLMODE_PRECISON = "high_precision";
  47. const char *const kInputShapeSample1 = "\"input_name1:n1,c1,h1,w1\"";
  48. const char *const kInputShapeSample2 = "\"input_name1:1,3,224,224\"";
  49. const char *const kSplitError1 = "size not equal to 2 split by \":\"";
  50. const char *const kEmptyError = "can not be empty";
  51. const char *const kFloatNumError = "exist float number";
  52. const char *const kDigitError = "is not digit";
  53. const char *const kCompressWeightError = "it must be appointed when appoint parameter[--optypelist_for_implmode]";
  54. const char *const kSelectImplmodeError = "only support high_performance, high_precision";
  55. const char *const kDynamicBatchSizeError = "It can only contains digit, \",\", \" \"";
  56. const char *const kDynamicImageSizeError = "It can only contains digit, \",\", \" \" and \";\"";
  57. const char *const kKeepDtypeError = "file not found";
  58. const char *const kInputShapeRangeInvalid = "format of shape range is invalid";
  59. const char *const kShapeRangeValueConvertError = "transfer from string to int64 error";
  60. const char *const kInputShapeRangeSample1 = "\"input_name1:[n1~n2,c1,h1,w1]\"";
  61. const char *const kInputShapeRangeSample2 = "\"[1~20]\"";
  62. const char *const kInputShapeRangeSample3 = "\"[1~20,3,3~6,-1]\"";
  63. vector<string> SplitInputShape(const std::string &input_shape) {
  64. vector<string> shape_pair_vec;
  65. size_t pos = input_shape.rfind(":");
  66. if (pos != std::string::npos) {
  67. shape_pair_vec.emplace_back(input_shape.substr(0, pos));
  68. shape_pair_vec.emplace_back(input_shape.substr(pos + 1, input_shape.size() - pos));
  69. }
  70. return shape_pair_vec;
  71. }
  72. } // namespace
  73. Status CheckInputFormat(const string &input_format) {
  74. if (input_format.empty()) {
  75. return ge::SUCCESS;
  76. }
  77. if (!ge::TypeUtils::IsFormatValid(input_format.c_str())) {
  78. ErrorManager::GetInstance().ATCReportErrMessage(
  79. "E10001", {"parameter", "value", "reason"}, {"--input_format", input_format, "input format is invalid!"});
  80. GELOGE(ge::PARAM_INVALID, "[Check][InputFormat] --input_format[%s] is invalid!", input_format.c_str());
  81. return ge::PARAM_INVALID;
  82. }
  83. return ge::SUCCESS;
  84. }
  85. bool CheckDynamicBatchSizeInputShapeValid(map<string, vector<int64_t>> shape_map,
  86. std::string &dynamic_batch_size) {
  87. int32_t size = 0;
  88. for (auto iter = shape_map.begin(); iter != shape_map.end(); ++iter) {
  89. vector<int64_t> shape = iter->second;
  90. if (shape.empty()) {
  91. ErrorManager::GetInstance().ATCReportErrMessage("E10012");
  92. GELOGE(ge::PARAM_INVALID,
  93. "[Check][DynamicBatchSizeInputShape] shape size can not be less than 1 when set --dynamic_batch_size.");
  94. return false;
  95. }
  96. if (std::count(shape.begin(), shape.end(), kDynamicInputDim) == 0) {
  97. continue;
  98. }
  99. bool ret = multibatch::CheckDynamicBatchShape(shape, iter->first);
  100. if (ret) {
  101. size++;
  102. }
  103. }
  104. if (size == 0) {
  105. ErrorManager::GetInstance().ATCReportErrMessage("E10031");
  106. GELOGE(ge::PARAM_INVALID,
  107. "[Check][DynamicBatchSizeInputShape]At least one batch n must be equal to -1 when set dynamic_batch_size.");
  108. return false;
  109. }
  110. for (char c : dynamic_batch_size) {
  111. if (!isdigit(c) && (c != ',') && (c != ' ')) {
  112. ErrorManager::GetInstance().ATCReportErrMessage(
  113. "E10033", {"value", "reason"}, {dynamic_batch_size, kDynamicBatchSizeError});
  114. GELOGE(ge::PARAM_INVALID, "[Check][DynamicBatchSizeInputShape] --dynamic_batch_size:%s is invalid. reason: %s",
  115. dynamic_batch_size.c_str(), kDynamicBatchSizeError);
  116. return false;
  117. }
  118. }
  119. if (dynamic_batch_size.back() == ',') {
  120. dynamic_batch_size.erase(dynamic_batch_size.end() - 1);
  121. }
  122. return true;
  123. }
  124. bool CheckDynamicImagesizeInputShapeValid(map<string, vector<int64_t>> shape_map,
  125. const std::string input_format, std::string &dynamic_image_size) {
  126. if (!input_format.empty() && !ge::TypeUtils::IsFormatValid(input_format.c_str())) {
  127. GELOGE(ge::PARAM_INVALID,
  128. "[Check][DynamicImagesizeInputShape] input_format [%s] invalid, can not support now.", input_format.c_str());
  129. REPORT_INPUT_ERROR("E10414", std::vector<std::string>({"input_format"}), std::vector<std::string>({input_format}));
  130. return false;
  131. }
  132. int32_t size = 0;
  133. for (auto iter = shape_map.begin(); iter != shape_map.end(); ++iter) {
  134. vector<int64_t> shape = iter->second;
  135. // only support four dim
  136. if (shape.size() != DIM_DEFAULT_SIZE) {
  137. if (std::count(shape.begin(), shape.end(), kDynamicInputDim) > 0) {
  138. ErrorManager::GetInstance().ATCReportErrMessage("E10019");
  139. GELOGE(ge::PARAM_INVALID, "[Check][DynamicImagesizeInputShape] --input_shape invalid,"
  140. " only height and width can be -1 when set --dynamic_image_size.");
  141. return false;
  142. }
  143. continue;
  144. }
  145. if (std::count(shape.begin(), shape.end(), kDynamicInputDim) == 0) {
  146. continue;
  147. }
  148. auto ret = multibatch::CheckDynamicImageSizeShape(shape, iter->first, input_format);
  149. if (ret) {
  150. size++;
  151. } else {
  152. return ret;
  153. }
  154. }
  155. if (size == 0) {
  156. ErrorManager::GetInstance().ATCReportErrMessage("E10019");
  157. GELOGE(ge::PARAM_INVALID, "[Check][DynamicImagesizeInputShape]--input shape invalid, "
  158. "only height and width can be -1 when set --dynamic_image_size.");
  159. return false;
  160. }
  161. EraseEndSemicolon(dynamic_image_size);
  162. for (char c : dynamic_image_size) {
  163. bool is_char_valid = isdigit(c) || (c == ',') || (c == ' ') || (c == ';');
  164. if (!is_char_valid) {
  165. ErrorManager::GetInstance().ATCReportErrMessage(
  166. "E10033", {"value", "reason"}, {dynamic_image_size, kDynamicImageSizeError});
  167. GELOGE(ge::PARAM_INVALID, "[Check][DynamicImageSizeInputShape] --dynamic_image_size:%s is invalid. reason: %s",
  168. dynamic_image_size.c_str(), kDynamicImageSizeError);
  169. return false;
  170. }
  171. }
  172. // Different parameter sets are split string by ';'
  173. std::vector<std::string> split_set = StringUtils::Split(dynamic_image_size, ';');
  174. // Different dimensions are split by ','
  175. std::vector<std::string> split_dim;
  176. for (auto str : split_set) {
  177. split_dim = StringUtils::Split(str, ',');
  178. if (split_dim.size() != static_cast<size_t>(kDynamicImageSizeNum)) {
  179. ErrorManager::GetInstance().ATCReportErrMessage("E10020", {"DynamicImageSizeNum"},
  180. {std::to_string(kDynamicImageSizeNum)});
  181. GELOGE(ge::PARAM_INVALID,
  182. "[Check][DynamicImagesizeInputShape] invalid value:%s number of dimensions of each group must be %ld.",
  183. dynamic_image_size.c_str(), kDynamicImageSizeNum);
  184. return false;
  185. }
  186. }
  187. return true;
  188. }
  189. bool CheckDynamicDimsInputShapeValid(const map<string, vector<int64_t>> &shape_map,
  190. string input_format, string &dynamic_dims) {
  191. if (input_format != "ND") {
  192. ErrorManager::GetInstance().ATCReportErrMessage(
  193. "E10001", {"parameter", "value", "reason"},
  194. {"--input_format", input_format.c_str(), "input_format must be ND when set dynamic_dims"});
  195. GELOGE(ge::PARAM_INVALID, "[Check][DynamicDimsInputShape]--input_format must be ND when set dynamic_dims.");
  196. return false;
  197. }
  198. int32_t dynamic_dim = 0;
  199. for (auto &info_shapes : shape_map) {
  200. auto &shapes = info_shapes.second;
  201. if (shapes.size() > kMaxNDDimNum || shapes.size() < kMinNDDimNum) {
  202. ErrorManager::GetInstance().ATCReportErrMessage(
  203. "E10001", {"parameter", "value", "reason"},
  204. {"--input_shape's dim", std::to_string(shapes.size()), "Dim num must within [1, 4] when set dynamic_dims"});
  205. GELOGE(ge::PARAM_INVALID, "[Check][DynamicDimsInputShape]Dim num must within [%zu, %zu] when set dynamic_dims.",
  206. kMinNDDimNum, kMaxNDDimNum);
  207. return false;
  208. }
  209. dynamic_dim += std::count(shapes.begin(), shapes.end(), kDynamicInputDim);
  210. }
  211. if (dynamic_dim == 0) {
  212. ErrorManager::GetInstance().ATCReportErrMessage(
  213. "E10001", {"parameter", "value", "reason"},
  214. {"--input_shape's dynamic dim num", "0", "at least one dim should be -1 when set dynamic_dims"});
  215. GELOGE(ge::PARAM_INVALID,
  216. "[Check][DynamicDimsInputShape]--input_shape invalid,"
  217. "at least one dim should be -1 when set dynamic_dims.");
  218. return false;
  219. }
  220. if (!CheckAndParseDynamicDims(dynamic_dim, dynamic_dims)) {
  221. GELOGE(ge::PARAM_INVALID, "[CheckAndParse][DynamicDims]failed, %s invalid.", dynamic_dims.c_str());
  222. return false;
  223. }
  224. return true;
  225. }
  226. bool CheckAndParseDynamicDims(int32_t dynamic_dim_num, std::string &dynamic_dims) {
  227. EraseEndSemicolon(dynamic_dims);
  228. if (dynamic_dims.empty()) {
  229. ErrorManager::GetInstance().ATCReportErrMessage(
  230. "E10001", {"parameter", "value", "reason"},
  231. {"--dynamic_dims", dynamic_dims.c_str(), "dynamic_dims can not be empty"});
  232. GELOGE(ge::PARAM_INVALID, "[CheckAndParse][DynamicDims]--dynamic_dims can not be empty.");
  233. return false;
  234. }
  235. // Different parameter sets are split by ';'
  236. vector<string> split_set = StringUtils::Split(dynamic_dims, ';');
  237. if (split_set.size() > kMaxDynamicDimNum) {
  238. ErrorManager::GetInstance().ATCReportErrMessage(
  239. "E10042", {"parameter", "reason"}, {"dynamic_dims", "dynamic_dims's num of parameter set can not exceed 100"});
  240. GELOGE(ge::PARAM_INVALID,
  241. "[CheckAndParse][DynamicDims]dynamic_dims's num of parameter set can not exceed %zu.", kMaxDynamicDimNum);
  242. return false;
  243. }
  244. for (auto split_dim : split_set) {
  245. vector<string> one_set = StringUtils::Split(split_dim, ',');
  246. if (one_set.size() != static_cast<size_t>(dynamic_dim_num)) {
  247. ErrorManager::GetInstance().ATCReportErrMessage(
  248. "E10042", {"parameter", "reason"},
  249. {"dynamic_dims", "Each gear setting needs to be consistent with the number of -1 in the inputshape"});
  250. GELOGE(ge::PARAM_INVALID, "[CheckAndParse][DynamicDims] --dynamic_dims:%s invalid. "
  251. "reason: Each gear setting needs to be consistent with the number of -1 in the inputshape.",
  252. dynamic_dims.c_str());
  253. return false;
  254. }
  255. for (auto dim : one_set) {
  256. for (auto c : dim) {
  257. if (!isdigit(c)) {
  258. ErrorManager::GetInstance().ATCReportErrMessage(
  259. "E10001", {"parameter", "value", "reason"},
  260. {"--dynamic_dims's parameter", dim.c_str(), "must be positive integer"});
  261. GELOGE(ge::PARAM_INVALID,
  262. "[CheckAndParse][DynamicDims]--dynamic_dims:%s parameter must be positive integer.",
  263. dynamic_dims.c_str());
  264. return false;
  265. }
  266. }
  267. }
  268. }
  269. return true;
  270. }
  271. bool StringToLongNoThrow(const string &str, long &val) {
  272. try {
  273. val = std::stol(str);
  274. return true;
  275. } catch (const std::invalid_argument) {
  276. ErrorManager::GetInstance().ATCReportErrMessage("E10048", {"shape_range", "reason", "sample"},
  277. {str, kShapeRangeValueConvertError, kInputShapeRangeSample3});
  278. GELOGE(PARAM_INVALID, "[Parse][Parameter] str:%s invalid, reason: %s, correct sample is %s.",
  279. str.c_str(), kShapeRangeValueConvertError, kInputShapeRangeSample3);
  280. } catch (const std::out_of_range) {
  281. ErrorManager::GetInstance().ATCReportErrMessage("E10048", {"shape_range", "reason", "sample"},
  282. {str, kShapeRangeValueConvertError, kInputShapeRangeSample3});
  283. GELOGE(PARAM_INVALID, "[Parse][Parameter] str:%s invalid, reason: %s, correct sample is %s.",
  284. str.c_str(), kShapeRangeValueConvertError, kInputShapeRangeSample3);
  285. }
  286. return false;
  287. }
  288. bool ParseSingleShapeRange(std::string &shape_range, vector<pair<int64_t, int64_t>> &shape_range_vec) {
  289. vector<char> square_brackets;
  290. for (auto ch : shape_range) {
  291. if (ch == '[' || ch == ']') {
  292. square_brackets.push_back(ch);
  293. }
  294. }
  295. bool is_square_brackets = (square_brackets.size() == kSquareBracketsSize) &&
  296. (square_brackets[0] == '[') && (square_brackets[1] == ']');
  297. if (!is_square_brackets) {
  298. ErrorManager::GetInstance().ATCReportErrMessage("E10048", {"shape_range", "reason", "sample"},
  299. {shape_range, kInputShapeRangeInvalid, kInputShapeRangeSample2});
  300. GELOGE(PARAM_INVALID, "[Parse][Parameter] shape_range:%s invalid, reason: %s, correct sample is %s.",
  301. shape_range.c_str(), kInputShapeRangeInvalid, kInputShapeRangeSample2);
  302. return false;
  303. }
  304. // trim start bytes, after that, single input should be "1~20,3,3~6,-1"
  305. if (ge::StringUtils::StartWith(shape_range, "[")) {
  306. shape_range = shape_range.substr(1, shape_range.size() - 1);
  307. }
  308. // parse shape_range of single input. eg. "1~20,3,3~6,-1"
  309. vector<string> dim_range_set = ge::StringUtils::Split(shape_range, ',');
  310. for (const auto &range_pair_str : dim_range_set) {
  311. vector<string> range_pair_set = ge::StringUtils::Split(range_pair_str, '~');
  312. pair<int64_t, int64_t> range_pair;
  313. if (range_pair_set.size() == 1) {
  314. long range_value = 0;
  315. if (!StringToLongNoThrow(range_pair_set.at(0), range_value)) {
  316. return false;
  317. }
  318. if (range_value < 0) {
  319. range_pair = std::make_pair(1, range_value);
  320. } else {
  321. range_pair = std::make_pair(range_value, range_value);
  322. }
  323. } else if (range_pair_set.size() == kRangePairSize) {
  324. // unknown dim, should get range.
  325. long range_left = 0;
  326. if (!StringToLongNoThrow(range_pair_set.at(0), range_left)) {
  327. return false;
  328. }
  329. long range_right = 0;
  330. if (!StringToLongNoThrow(range_pair_set.at(1), range_right)) {
  331. return false;
  332. }
  333. if (range_left < 0 || (range_right < 0)) {
  334. ErrorManager::GetInstance().ATCReportErrMessage("E10048", {"shape_range", "reason", "sample"},
  335. {shape_range, kInputShapeRangeInvalid, kInputShapeRangeSample3});
  336. GELOGE(PARAM_INVALID,
  337. "[Parse][InputParameter] [--input_shape_range]'s shape range[%s] failed,"
  338. "reason: %s, correct sample is %s.",
  339. shape_range.c_str(), kInputShapeRangeInvalid, kInputShapeRangeSample3);
  340. return false;
  341. }
  342. range_pair = std::make_pair(range_left, range_right);
  343. } else {
  344. ErrorManager::GetInstance().ATCReportErrMessage("E10048", {"shape_range", "reason", "sample"},
  345. {shape_range, kInputShapeRangeInvalid, kInputShapeRangeSample3});
  346. GELOGE(PARAM_INVALID, "[Parse][Parameter]shape_range:%s invalid, reason: %s, correct sample is %s.",
  347. shape_range.c_str(), kInputShapeRangeInvalid, kInputShapeRangeSample3);
  348. return false;
  349. }
  350. shape_range_vec.emplace_back(range_pair);
  351. }
  352. return true;
  353. }
  354. bool ParseInputShapeRange(const std::string &shape_range,
  355. std::map<string, std::vector<std::pair<int64_t, int64_t>>> &shape_range_map) {
  356. GELOGD("Input shape range %s", shape_range.c_str());
  357. vector<string> shape_range_vec = StringUtils::Split(shape_range, ';');
  358. const int DEFAULT_SHAPE_RANGE_PAIR_SIZE = 2;
  359. for (const auto &shape_range_item : shape_range_vec) {
  360. vector<string> shape_range_pair_vec = SplitInputShape(shape_range_item);
  361. if (shape_range_pair_vec.size() != DEFAULT_SHAPE_RANGE_PAIR_SIZE) {
  362. ErrorManager::GetInstance().ATCReportErrMessage("E10048", {"shape_range", "reason", "sample"},
  363. {shape_range, kSplitError1, kInputShapeRangeSample1});
  364. GELOGE(PARAM_INVALID, "[Parse][Parameter]--input shape_range:%s invalid, reason: %s, correct sample is %s.",
  365. shape_range.c_str(), kSplitError1, kInputShapeRangeSample1);
  366. return false;
  367. }
  368. if (shape_range_pair_vec[1].empty()) {
  369. ErrorManager::GetInstance().ATCReportErrMessage("E10048", {"shape", "reason", "sample"},
  370. {shape_range, kEmptyError, kInputShapeRangeSample1});
  371. GELOGE(PARAM_INVALID, "[Parse][Parameter]shape_range:%s invalid,reason: %s, correct sample is %s.",
  372. shape_range.c_str(), kEmptyError, kInputShapeRangeSample1);
  373. return false;
  374. }
  375. string shape_range_str = shape_range_pair_vec[1];
  376. vector<pair<int64_t, int64_t>> shape_range_val;
  377. if (!ParseSingleShapeRange(shape_range_str, shape_range_val)) {
  378. GELOGE(PARAM_INVALID, "[Parse][Parameter] shape_range_str: %s invalid.", shape_range_str.c_str());
  379. return false;
  380. }
  381. shape_range_map.emplace(make_pair(StringUtils::Trim(shape_range_pair_vec[0]), shape_range_val));
  382. }
  383. return true;
  384. }
  385. Status CheckDynamicInputParamValid(string &dynamic_batch_size, string &dynamic_image_size, string &dynamic_dims,
  386. const string input_shape, const string input_shape_range, const string input_format, bool &is_dynamic_input) {
  387. int32_t param_size = static_cast<int32_t>(!dynamic_batch_size.empty()) +
  388. static_cast<int32_t>(!dynamic_image_size.empty()) + static_cast<int32_t>(!dynamic_dims.empty());
  389. if (param_size > 1) {
  390. ErrorManager::GetInstance().ATCReportErrMessage("E10009", {"parameter0", "parameter1", "parameter2"},
  391. {"dynamic_batch_size", "dynamic_image_size", "dynamic_dims"});
  392. GELOGE(ge::PARAM_INVALID,
  393. "[Parse][Parameter]dynamic_batch_size, dynamic_image_size and dynamic_dims can only be set one");
  394. return ge::PARAM_INVALID;
  395. }
  396. if (param_size == 0) {
  397. if (!input_shape_range.empty()) {
  398. std::map<string, std::vector<std::pair<int64_t, int64_t>>> shape_range_map;
  399. if (!ParseInputShapeRange(input_shape_range, shape_range_map)) {
  400. GELOGE(ge::PARAM_INVALID, "[Parse][InputShapeRange] failed, range: %s", input_shape_range.c_str());
  401. return ge::PARAM_INVALID;
  402. }
  403. }
  404. return ge::SUCCESS;
  405. }
  406. map<string, vector<int64_t>> shape_map;
  407. vector<pair<string, vector<int64_t>>> user_shape_map;
  408. is_dynamic_input = true;
  409. if (input_shape.empty()) {
  410. ErrorManager::GetInstance().ATCReportErrMessage("E10004", {"parameter"}, {"input_shape"});
  411. GELOGE(ge::PARAM_INVALID,
  412. "[Check][Parameter:input_shape]The input_shape can not be empty in dynamic input size scenario.");
  413. return ge::PARAM_INVALID;
  414. }
  415. if (!ParseInputShape(input_shape, shape_map, user_shape_map, is_dynamic_input)) {
  416. GELOGE(ge::PARAM_INVALID, "[Parse][InputShape]input_shape: %s invalid.", input_shape.c_str());
  417. return ge::PARAM_INVALID;
  418. }
  419. if (!dynamic_batch_size.empty()) {
  420. if (!CheckDynamicBatchSizeInputShapeValid(shape_map, dynamic_batch_size)) {
  421. GELOGE(ge::PARAM_INVALID, "[Check][DynamicBatchSizeInputShape] input_shape: %s invalid.", input_shape.c_str());
  422. return ge::PARAM_INVALID;
  423. }
  424. }
  425. if (!dynamic_image_size.empty()) {
  426. if (!CheckDynamicImagesizeInputShapeValid(shape_map, input_format, dynamic_image_size)) {
  427. GELOGE(ge::PARAM_INVALID, "[Check][DynamicImagesizeInputShape] %s invalid. dynamic_image_size:%s ",
  428. input_shape.c_str(), dynamic_image_size.c_str());
  429. return ge::PARAM_INVALID;
  430. }
  431. }
  432. if (!dynamic_dims.empty()) {
  433. if (!CheckDynamicDimsInputShapeValid(shape_map, input_format, dynamic_dims)) {
  434. GELOGE(ge::PARAM_INVALID, "[Check][DynamicDimsInputShape]: %s of input shape: %s failed.", dynamic_dims.c_str(),
  435. input_shape.c_str());
  436. return ge::PARAM_INVALID;
  437. }
  438. }
  439. return ge::SUCCESS;
  440. }
  441. bool ParseInputShape(const string &input_shape, map<string, vector<int64_t>> &shape_map,
  442. vector<pair<string, vector<int64_t>>> &user_shape_map, bool is_dynamic_input) {
  443. vector<string> shape_vec = StringUtils::Split(input_shape, ';');
  444. const int DEFAULT_SHAPE_PAIR_SIZE = 2;
  445. for (const auto &shape : shape_vec) {
  446. vector<string> shape_pair_vec = SplitInputShape(shape);
  447. if (shape_pair_vec.size() != DEFAULT_SHAPE_PAIR_SIZE) {
  448. ErrorManager::GetInstance().ATCReportErrMessage("E10002", {"shape", "reason", "sample"},
  449. {shape, kSplitError1, kInputShapeSample1});
  450. GELOGW("Parse input parameter [--input_shape]'s shape[%s] failed, reason: %s, correct sample is %s.",
  451. shape.c_str(), kSplitError1, kInputShapeSample1);
  452. return false;
  453. }
  454. if (shape_pair_vec[1].empty()) {
  455. ErrorManager::GetInstance().ATCReportErrMessage("E10002", {"shape", "reason", "sample"},
  456. {shape, kEmptyError, kInputShapeSample1});
  457. GELOGW("Parse input parameter [--input_shape]'s shape[%s] failed, reason: %s, correct sample is %s.",
  458. shape.c_str(), kEmptyError, kInputShapeSample1);
  459. return false;
  460. }
  461. vector<string> shape_value_strs = StringUtils::Split(shape_pair_vec[1], ',');
  462. vector<int64_t> shape_values;
  463. for (auto &shape_value_str : shape_value_strs) {
  464. // stoul: The method may throw an exception: invalid_argument/out_of_range
  465. if (std::string::npos != shape_value_str.find('.')) {
  466. ErrorManager::GetInstance().ATCReportErrMessage("E10002", {"shape", "reason", "sample"},
  467. {shape, kFloatNumError, kInputShapeSample2});
  468. GELOGW("Parse input parameter [--input_shape]'s shape[%s] failed, reason: %s, correct sample is %s.",
  469. shape.c_str(), kFloatNumError, kInputShapeSample2);
  470. return false;
  471. }
  472. long left_result = 0;
  473. try {
  474. left_result = stol(StringUtils::Trim(shape_value_str));
  475. if (!shape_value_str.empty() && (shape_value_str.front() == '-')) {
  476. // The value maybe dynamic shape [-1], need substr it and verify isdigit.
  477. shape_value_str = shape_value_str.substr(1);
  478. }
  479. for (char c : shape_value_str) {
  480. if (!isdigit(c)) {
  481. ErrorManager::GetInstance().ATCReportErrMessage("E10002", {"shape", "reason", "sample"},
  482. {shape, kDigitError, kInputShapeSample2});
  483. GELOGE(PARAM_INVALID, "[Check][Param]--input_shape's shape value[%s] is not digit",
  484. shape_value_str.c_str());
  485. return false;
  486. }
  487. }
  488. } catch (const std::out_of_range &) {
  489. ErrorManager::GetInstance().ATCReportErrMessage("E10013", {"parameter", "value"},
  490. {"--input_shape", shape_value_str});
  491. GELOGW("Input parameter[--input_shape]’s value[%s] cause out of range execption!", shape_value_str.c_str());
  492. return false;
  493. } catch (const std::invalid_argument &) {
  494. ErrorManager::GetInstance().ATCReportErrMessage("E10014", {"parameter", "value"},
  495. {"--input_shape", shape_value_str});
  496. GELOGW("Input parameter[--input_shape]’s value[%s] cause invalid argument!", shape_value_str.c_str());
  497. return false;
  498. } catch (...) {
  499. ErrorManager::GetInstance().ATCReportErrMessage("E10015", {"parameter", "value"},
  500. {"--input_shape", shape_value_str});
  501. GELOGW("Input parameter[--input_shape]’s value[%s] cause unkown execption!", shape_value_str.c_str());
  502. return false;
  503. }
  504. int64_t result = left_result;
  505. // - 1 is not currently supported
  506. if (!is_dynamic_input && result <= 0) {
  507. ErrorManager::GetInstance().ATCReportErrMessage("E10011", {"shape", "result"},
  508. {shape, std::to_string(result)});
  509. GELOGW(
  510. "Input parameter[--input_shape]’s shape value[%s] is invalid, "
  511. "expect positive integer, but value is %ld.",
  512. shape.c_str(), result);
  513. return false;
  514. }
  515. shape_values.push_back(result);
  516. }
  517. shape_map.emplace(make_pair(StringUtils::Trim(shape_pair_vec[0]), shape_values));
  518. user_shape_map.push_back(make_pair(StringUtils::Trim(shape_pair_vec[0]), shape_values));
  519. }
  520. return true;
  521. }
  522. Status CheckOutputTypeParamValid(const std::string output_type) {
  523. if ((!output_type.empty()) && (kOutputTypeSupportDatatype.find(output_type) == kOutputTypeSupportDatatype.end())) {
  524. ErrorManager::GetInstance().ATCReportErrMessage("E10001", {"parameter", "value", "reason"},
  525. {"--output_type", output_type, kOutputTypeSupport});
  526. GELOGE(ge::PARAM_INVALID,
  527. "[Check][Param]Invalid value for --output_type[%s], %s.", output_type.c_str(), kOutputTypeSupport);
  528. return ge::PARAM_INVALID;
  529. }
  530. return ge::SUCCESS;
  531. }
  532. Status CheckBufferOptimizeParamValid(const std::string buffer_optimize) {
  533. if ((!buffer_optimize.empty()) &&
  534. (kBufferOptimizeSupportOption.find(buffer_optimize) == kBufferOptimizeSupportOption.end())) {
  535. ErrorManager::GetInstance().ATCReportErrMessage("E10001", {"parameter", "value", "reason"},
  536. {"--buffer_optimize", buffer_optimize, kBufferOptimizeSupport});
  537. GELOGE(ge::PARAM_INVALID,
  538. "[Check][BufferOptimize]Invalid value for [%s], %s.", buffer_optimize.c_str(), kBufferOptimizeSupport);
  539. return ge::PARAM_INVALID;
  540. }
  541. return ge::SUCCESS;
  542. }
  543. Status CheckCompressWeightParamValid(const std::string enable_compress_weight,
  544. const std::string compress_weight_conf) {
  545. if ((!compress_weight_conf.empty()) &&
  546. (!CheckInputPathValid(compress_weight_conf, "--compress_weight_conf"))) {
  547. GELOGE(ge::PARAM_INVALID, "[Check][InputPath]compress weight config file not found, file_name:%s",
  548. compress_weight_conf.c_str());
  549. return ge::PARAM_INVALID;
  550. }
  551. if ((enable_compress_weight != "") && (enable_compress_weight != "true") && (enable_compress_weight != "false")) {
  552. ErrorManager::GetInstance().ATCReportErrMessage("E10005", {"parameter", "value"},
  553. {"enable_compress_weight", enable_compress_weight});
  554. GELOGE(ge::PARAM_INVALID, "[Check][Param:enable_compress_weight]"
  555. "Input parameter[--enable_compress_weight]'s value:%s must be true or false.",
  556. enable_compress_weight.c_str());
  557. return ge::PARAM_INVALID;
  558. }
  559. if ((enable_compress_weight == "true") && (!compress_weight_conf.empty())) {
  560. ErrorManager::GetInstance().ATCReportErrMessage("E10047", {"parameter0", "parameter1"},
  561. {"enable_compress_weight", "compress_weight_conf"});
  562. GELOGE(ge::PARAM_INVALID,
  563. "[Check][CompressWeight]enable_compress_weight and compress_weight_conf can not both exist!!");
  564. return ge::PARAM_INVALID;
  565. }
  566. return ge::SUCCESS;
  567. }
  568. Status CheckKeepTypeParamValid(const std::string &keep_dtype) {
  569. if ((!keep_dtype.empty()) && (!CheckInputPathValid(keep_dtype, "--keep_dtype"))) {
  570. ErrorManager::GetInstance().ATCReportErrMessage("E10001", {"parameter", "value", "reason"},
  571. {"--keep_dtype", keep_dtype, kKeepDtypeError});
  572. GELOGE(ge::PARAM_INVALID, "[Check][InputPath::--keep_dtype] file not found, file_name:%s", keep_dtype.c_str());
  573. return ge::PARAM_INVALID;
  574. }
  575. return ge::SUCCESS;
  576. }
  577. int CheckLogParamValidAndSetLogLevel(const std::string log) {
  578. int ret = -1;
  579. if (log == "default") {
  580. ret = 0;
  581. } else if (log == "null") {
  582. ret = dlog_setlevel(-1, DLOG_NULL, 0);
  583. } else if (log == "debug") {
  584. ret = dlog_setlevel(-1, DLOG_DEBUG, 1);
  585. } else if (log == "info") {
  586. ret = dlog_setlevel(-1, DLOG_INFO, 1);
  587. } else if (log == "warning") {
  588. ret = dlog_setlevel(-1, DLOG_WARN, 1);
  589. } else if (log == "error") {
  590. ret = dlog_setlevel(-1, DLOG_ERROR, 1);
  591. } else {
  592. GELOGE(ge::PARAM_INVALID,
  593. "[Check][LogParam]log:%s invalid, only support debug, info, warning, error, null", log.c_str());
  594. REPORT_INPUT_ERROR("E10417", std::vector<std::string>({"loglevel"}), std::vector<std::string>({log}));
  595. return ret;
  596. }
  597. if (ret != 0) {
  598. GELOGE(ge::PARAM_INVALID, "[Set][LogLevel] fail, level:%s.", log.c_str());
  599. REPORT_INPUT_ERROR("E10417", std::vector<std::string>({"loglevel"}), std::vector<std::string>({log}));
  600. }
  601. return ret;
  602. }
  603. Status CheckInsertOpConfParamValid(const std::string insert_op_conf) {
  604. if ((!insert_op_conf.empty()) &&
  605. (!CheckInputPathValid(insert_op_conf, "--insert_op_conf"))) {
  606. GELOGE(ge::PARAM_INVALID, "[Check][InputPath]file not found: %s", insert_op_conf.c_str());
  607. return ge::PARAM_INVALID;
  608. }
  609. return ge::SUCCESS;
  610. }
  611. Status CheckDisableReuseMemoryParamValid(const std::string disable_reuse_memory) {
  612. if ((disable_reuse_memory != "") && (disable_reuse_memory != "0") && (disable_reuse_memory != "1")) {
  613. ErrorManager::GetInstance().ATCReportErrMessage("E10006", {"parameter"}, {"disable_reuse_memory"});
  614. GELOGE(ge::PARAM_INVALID, "[Check][DisableReuseMemory]disable_reuse_memory must be 1 or 0.");
  615. return ge::PARAM_INVALID;
  616. }
  617. return ge::SUCCESS;
  618. }
  619. Status CheckEnableSingleStreamParamValid(const std::string enable_single_stream) {
  620. if ((enable_single_stream != "") && (enable_single_stream != "true") && (enable_single_stream != "false")) {
  621. ErrorManager::GetInstance().ATCReportErrMessage("E10005", {"parameter", "value"},
  622. {"enable_single_stream", enable_single_stream});
  623. GELOGE(ge::PARAM_INVALID, "[Check][Param:--enable_single_stream] value:%s must be true or false.",
  624. enable_single_stream.c_str());
  625. return ge::PARAM_INVALID;
  626. }
  627. return ge::SUCCESS;
  628. }
  629. Status CheckImplmodeParamValid(const std::string &optypelist_for_implmode, std::string &op_select_implmode) {
  630. // only appointed op_select_implmode, can user appoint optypelist_for_implmode
  631. if (optypelist_for_implmode != "" && op_select_implmode == "") {
  632. ErrorManager::GetInstance().ATCReportErrMessage("E10001", {"parameter", "value", "reason"},
  633. {"--op_select_implmode", op_select_implmode.c_str(),
  634. kCompressWeightError});
  635. GELOGE(ge::PARAM_INVALID, "[Check][Param:--op_select_implmode]value:%s invalid, %s.",
  636. op_select_implmode.c_str(), kCompressWeightError);
  637. return ge::PARAM_INVALID;
  638. }
  639. // op_select_implmode default value is high_performance
  640. if (op_select_implmode == "") {
  641. op_select_implmode = IR_OPTION_OP_SELECT_IMPLMODE_DEFAULT;
  642. } else {
  643. if (op_select_implmode != IR_OPTION_OP_SELECT_IMPLMODE_DEFAULT &&
  644. op_select_implmode != IR_OPTION_OP_SELECT_IMPLMODE_PRECISON) {
  645. ErrorManager::GetInstance().ATCReportErrMessage("E10001", {"parameter", "value", "reason"},
  646. {"--op_select_implmode", op_select_implmode.c_str(),
  647. kSelectImplmodeError});
  648. GELOGE(ge::PARAM_INVALID, "[Check][Implmode]Invalid value for --op_select_implmode[%s], %s.",
  649. op_select_implmode.c_str(), kSelectImplmodeError);
  650. return ge::PARAM_INVALID;
  651. }
  652. }
  653. return ge::SUCCESS;
  654. }
  655. void PrintOptionMap(std::map<std::string, std::string> &options, std::string tips) {
  656. for (auto iter = options.begin(); iter != options.end(); iter++) {
  657. std::string key = iter->first;
  658. std::string option_name = iter->second;
  659. GELOGD("%s set successfully, option_key=%s, option_value=%s", tips.c_str(), key.c_str(), option_name.c_str());
  660. }
  661. }
  662. void EraseEndSemicolon(string &param) {
  663. if (param.empty()) {
  664. return;
  665. }
  666. if (param.back() == ';') {
  667. param.erase(param.end() - 1);
  668. }
  669. }
  670. Status UpdateDataOpShape(const OpDescPtr &op, map<string, vector<int64_t>> &shape_map) {
  671. GE_CHECK_NOTNULL(op);
  672. if (shape_map.empty()) {
  673. GELOGI("Shape map of data op [%s] is empty, no need to update.", op->GetName().c_str());
  674. return SUCCESS;
  675. }
  676. auto tensor_input = op->MutableInputDesc(0);
  677. auto tensor_output = op->MutableOutputDesc(0);
  678. GE_CHECK_NOTNULL(tensor_input);
  679. GE_CHECK_NOTNULL(tensor_output);
  680. string data_op_name = op->GetName();
  681. auto iter = shape_map.find(data_op_name);
  682. if (iter != shape_map.end()) {
  683. tensor_input->SetShape(ge::GeShape(iter->second));
  684. tensor_output->SetShape(ge::GeShape(iter->second));
  685. GELOGI("Update input [%s] shape info", data_op_name.c_str());
  686. } else {
  687. GELOGI("No need update input [%s] attr because not found from input_shape.", data_op_name.c_str());
  688. }
  689. return SUCCESS;
  690. }
  691. Status UpdateDataOpShapeRange(const OpDescPtr &op,
  692. map<string, vector<pair<int64_t, int64_t>>> &shape_range_map) {
  693. GE_CHECK_NOTNULL(op);
  694. if (shape_range_map.empty()) {
  695. GELOGI("Shape range map of data op [%s] is empty.", op->GetName().c_str());
  696. return SUCCESS;
  697. }
  698. auto tensor_input = op->MutableInputDesc(0);
  699. auto tensor_output = op->MutableOutputDesc(0);
  700. GE_CHECK_NOTNULL(tensor_input);
  701. GE_CHECK_NOTNULL(tensor_output);
  702. string data_op_name = op->GetName();
  703. auto origin_shape = tensor_input->GetShape();
  704. auto iter = shape_range_map.find(data_op_name);
  705. if (iter != shape_range_map.end()) {
  706. auto cur_shape_range = iter->second;
  707. if (TensorUtils::CheckShapeByShapeRange(origin_shape, cur_shape_range) != SUCCESS) {
  708. GELOGE(PARAM_INVALID, "[Check][OpDescPtr] Check shape by shape range failed for op:%s.", data_op_name.c_str());
  709. return PARAM_INVALID;
  710. }
  711. for (size_t idx = 0; idx < cur_shape_range.size(); idx++) {
  712. auto left_range = cur_shape_range[idx].first;
  713. auto right_range = cur_shape_range[idx].second;
  714. if (left_range != right_range) {
  715. origin_shape.SetDim(idx, UNKNOWN_DIM);
  716. }
  717. }
  718. tensor_input->SetShape(origin_shape);
  719. tensor_input->SetShapeRange(cur_shape_range);
  720. tensor_output->SetShape(origin_shape);
  721. tensor_output->SetShapeRange(cur_shape_range);
  722. GELOGI("Update input [%s] shape range info", data_op_name.c_str());
  723. } else {
  724. GELOGI("No need to update input [%s] attr because not found from input_shape_range.", data_op_name.c_str());
  725. }
  726. return SUCCESS;
  727. }
  728. static Status CheckInputShapeRangeNode(const ComputeGraphPtr &compute_graph,
  729. const map<string, vector<pair<int64_t, int64_t>>> &shape_range_map) {
  730. for (const auto &it : shape_range_map) {
  731. std::string node_name = it.first;
  732. ge::NodePtr node = compute_graph->FindNode(node_name);
  733. if (node == nullptr) {
  734. REPORT_INPUT_ERROR("E10016", std::vector<std::string>({"parameter", "opname"}),
  735. std::vector<std::string>({"input_shape_range", node_name}));
  736. GELOGE(PARAM_INVALID, "[Check][InputNode]Input parameter[--input_shape_range]'s opname[%s] is not exist in model",
  737. node_name.c_str());
  738. return PARAM_INVALID;
  739. }
  740. if (node->GetType() != DATA) {
  741. REPORT_INPUT_ERROR("E10017", std::vector<std::string>({"parameter", "opname"}),
  742. std::vector<std::string>({"input_shape_range", node_name}));
  743. GELOGE(PARAM_INVALID, "[Check][InputNode]Input parameter[--input_shape_range]'s opname[%s] is not a input opname",
  744. node_name.c_str());
  745. return PARAM_INVALID;
  746. }
  747. }
  748. return SUCCESS;
  749. }
  750. Status UpdateDynamicInputShapeRange(const ge::ComputeGraphPtr &compute_graph, const string &input_shape_range) {
  751. if (input_shape_range.empty()) {
  752. return SUCCESS;
  753. }
  754. GE_CHECK_NOTNULL(compute_graph);
  755. map<string, vector<pair<int64_t, int64_t>>> shape_range_map;
  756. if (!ParseInputShapeRange(input_shape_range, shape_range_map)) {
  757. GELOGE(PARAM_INVALID, "[Parse][InputShapeRange] input_shape_range:%s invalid.", input_shape_range.c_str());
  758. return PARAM_INVALID;
  759. }
  760. if (CheckInputShapeRangeNode(compute_graph, shape_range_map) != SUCCESS) {
  761. GELOGE(PARAM_INVALID, "[Check][InputShapeRange]check input shape range:%s failed.", input_shape_range.c_str());
  762. return PARAM_INVALID;
  763. }
  764. for (NodePtr &input_node : compute_graph->GetDirectNode()) {
  765. GE_CHECK_NOTNULL(input_node);
  766. OpDescPtr op = input_node->GetOpDesc();
  767. GE_CHECK_NOTNULL(op);
  768. if (op->GetType() == DATA) {
  769. if (UpdateDataOpShapeRange(op, shape_range_map) != SUCCESS) {
  770. GELOGE(FAILED, "[Update][InputShapeRange] fail for op:%s.", op->GetName().c_str());
  771. return FAILED;
  772. }
  773. }
  774. }
  775. return SUCCESS;
  776. }
  777. } // 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