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oplib.cc 14 kB

5 years ago
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  1. /**
  2. * Copyright 2019 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 "backend/kernel_compiler/oplib/oplib.h"
  17. #include <memory>
  18. #include <map>
  19. #include <fstream>
  20. #include "utils/log_adapter.h"
  21. #include "utils/overload.h"
  22. #include "utils/ms_context.h"
  23. namespace mindspore {
  24. namespace kernel {
  25. constexpr auto kImplyType = "imply_type";
  26. constexpr auto kOpName = "op_name";
  27. constexpr auto kFusionType = "fusion_type";
  28. constexpr auto kAsyncFlag = "async_flag";
  29. constexpr auto kBinfileName = "binfile_name";
  30. constexpr auto kComputeCost = "compute_cost";
  31. constexpr auto kKernelName = "kernel_name";
  32. constexpr auto kPartialFlag = "partial_flag";
  33. constexpr auto kReshapeType = "reshape_type";
  34. constexpr auto kOpPattern = "op_pattern";
  35. constexpr auto kDynamicFormat = "dynamicFormat";
  36. constexpr auto kFormatAgnostic = "formatAgnostic";
  37. constexpr auto kBroadcast = "broadcast";
  38. constexpr auto kReduce = "reduce";
  39. constexpr auto kDynamicShape = "dynamic_shape";
  40. constexpr auto kDtypeFormat = "dtype_format";
  41. constexpr auto kAttr = "attr";
  42. constexpr auto kIputs = "inputs";
  43. constexpr auto kOutputs = "outputs";
  44. constexpr auto kAiCPU = "AiCPU";
  45. constexpr auto kAiCore = "AiCore";
  46. constexpr auto kCUDA = "CUDA";
  47. constexpr auto kTbe = "TBE";
  48. constexpr auto kAkg = "AKG";
  49. constexpr auto kName = "name";
  50. constexpr auto kParamType = "param_type";
  51. constexpr auto kDtype = "dtype";
  52. constexpr auto kType = "type";
  53. constexpr auto kValue = "value";
  54. constexpr auto kDefaultValue = "default_value";
  55. constexpr auto kIndex = "index";
  56. constexpr auto kFormat = "format";
  57. constexpr auto kNeedCompile = "need_compile";
  58. constexpr auto kShape = "shape";
  59. constexpr auto kProcessor = "processor";
  60. std::multimap<std::string, std::shared_ptr<OpInfo>> OpLib::op_info_;
  61. static std::string ImplTypeToStr(OpImplyType impl_type) {
  62. switch (impl_type) {
  63. case kTBE:
  64. return kTbe;
  65. case kAKG:
  66. return kAkg;
  67. case kAICPU:
  68. return kAiCPU;
  69. default:
  70. return "unknow";
  71. }
  72. }
  73. bool OpLib::RegOp(const std::string &json_string, const std::string &impl_path) {
  74. bool ret = false;
  75. try {
  76. auto op_json = nlohmann::json::parse(json_string);
  77. std::string imply_type_string = op_json.at(kImplyType);
  78. std::string op_name = op_json.at(kOpName);
  79. if (imply_type_string == kTbe) {
  80. OpImplyType imply_type = kTBE;
  81. ret = DecodeOpInfo(op_json, imply_type, impl_path);
  82. } else if (imply_type_string == kAkg) {
  83. OpImplyType imply_type = kAKG;
  84. ret = DecodeOpInfo(op_json, imply_type, impl_path);
  85. } else if (imply_type_string == kAiCPU) {
  86. OpImplyType imply_type = kAICPU;
  87. ret = DecodeOpInfo(op_json, imply_type, impl_path);
  88. } else {
  89. MS_LOG(ERROR) << "Not support imply_type";
  90. }
  91. if (!ret) {
  92. MS_LOG(ERROR) << "RegOp failed: op_name: " << op_name << " imply_type " << imply_type_string;
  93. }
  94. } catch (const std::exception &e) {
  95. MS_LOG(ERROR) << "get op json elements failed: " << e.what();
  96. }
  97. return ret;
  98. }
  99. void OpLib::DecodeTBESpecificInfo(const nlohmann::json &obj, const std::shared_ptr<OpInfo> &op_info) {
  100. const std::map<std::string, kernel::OpPattern> kOpPatternMap = {{kFormatAgnostic, kFormatAgnosticPattern},
  101. {kBroadcast, kBroadcastPattern},
  102. {kReduce, kReducePattern},
  103. {kDynamicFormat, kDynamicFormatPattern}};
  104. MS_EXCEPTION_IF_NULL(op_info);
  105. op_info->set_async_flag(obj.at(kAsyncFlag));
  106. op_info->set_binfile_name(obj.at(kBinfileName));
  107. op_info->set_compute_cost(obj.at(kComputeCost));
  108. op_info->set_kernel_name(obj.at(kKernelName));
  109. op_info->set_partial_flag(obj.at(kPartialFlag));
  110. if (obj.find(kDynamicShape) != obj.end()) {
  111. op_info->set_dynamic_shape(obj.at(kDynamicShape));
  112. }
  113. if (obj.find(kOpPattern) != obj.end()) {
  114. std::string op_pattern = obj.at(kOpPattern);
  115. auto find_iter = kOpPatternMap.find(op_pattern);
  116. if (find_iter == kOpPatternMap.end()) {
  117. if (!op_pattern.empty()) {
  118. MS_LOG(WARNING) << "Op pattern set value error: " << op_pattern;
  119. }
  120. op_info->set_op_pattern(kCommonPattern);
  121. } else {
  122. op_info->set_op_pattern(find_iter->second);
  123. }
  124. }
  125. }
  126. void OpLib::DecodeAKGSpecificInfo(const nlohmann::json &obj, const std::shared_ptr<OpInfo> &op_info) {
  127. MS_EXCEPTION_IF_NULL(op_info);
  128. op_info->set_processor(obj.at(kProcessor));
  129. }
  130. bool OpLib::RegOpFromLocalInfo() {
  131. static bool has_load = false;
  132. if (has_load) {
  133. return true;
  134. }
  135. MS_LOG(INFO) << "Start";
  136. has_load = true;
  137. std::string dir = common::GetEnv("MINDSPORE_OP_INFO_PATH");
  138. if (dir.empty()) {
  139. MS_LOG(INFO) << "MindSpore op info path does not been setted. use op info from python pass.";
  140. return true;
  141. }
  142. char real_path[PATH_MAX] = {0};
  143. if (dir.size() >= PATH_MAX) {
  144. MS_LOG(ERROR) << "Op info path is invalid: " << dir;
  145. return false;
  146. }
  147. #if defined(_WIN32) || defined(_WIN64)
  148. if (_fullpath(real_path, common::SafeCStr(dir), PATH_MAX) == nullptr) {
  149. MS_LOG(ERROR) << "Op info path is invalid: " << dir;
  150. return false;
  151. }
  152. #else
  153. if (realpath(common::SafeCStr(dir), real_path) == nullptr) {
  154. MS_LOG(ERROR) << "Op info path is invalid: " << dir;
  155. return false;
  156. }
  157. #endif
  158. MS_LOG(INFO) << "Start to read op info from local file.";
  159. std::ifstream file(real_path);
  160. if (!file.is_open()) {
  161. MS_LOG(ERROR) << "Find op info file failed.";
  162. return false;
  163. }
  164. std::string line;
  165. while (getline(file, line)) {
  166. if (!line.empty()) {
  167. (void)OpLib::RegOp(line, "");
  168. }
  169. }
  170. MS_LOG(INFO) << "End";
  171. return true;
  172. }
  173. bool OpLib::DecodeOpInfo(const nlohmann::json &obj, const mindspore::kernel::OpImplyType imply_type,
  174. const std::string &impl_path) {
  175. std::shared_ptr<OpInfo> op_info = std::make_shared<OpInfo>();
  176. MS_EXCEPTION_IF_NULL(op_info);
  177. op_info->set_op_name(obj.at(kOpName));
  178. op_info->set_impl_path(impl_path);
  179. op_info->set_imply_type(imply_type);
  180. op_info->set_fusion_type(obj.at(kFusionType));
  181. if (imply_type == kTBE) {
  182. DecodeTBESpecificInfo(obj, op_info);
  183. } else if (imply_type == kAKG) {
  184. DecodeAKGSpecificInfo(obj, op_info);
  185. }
  186. auto attrs = obj.at(kAttr);
  187. for (const auto &attr : attrs) {
  188. if (!DecodeAttr(attr, imply_type, op_info)) {
  189. MS_LOG(ERROR) << "DecodeAttr Failed";
  190. return false;
  191. }
  192. }
  193. nlohmann::json dtype_format;
  194. if (obj.find(kDtypeFormat) != obj.end()) {
  195. dtype_format = obj.at(kDtypeFormat);
  196. }
  197. auto inputs = obj.at(kIputs);
  198. for (const auto &input : inputs) {
  199. if (!DecodeInputOutput(input, imply_type, kInput, op_info, dtype_format)) {
  200. MS_LOG(ERROR) << "DecodeInputOutput Failed";
  201. return false;
  202. }
  203. }
  204. auto outputs = obj.at(kOutputs);
  205. for (const auto &output : outputs) {
  206. if (!DecodeInputOutput(output, imply_type, kOutput, op_info, dtype_format)) {
  207. MS_LOG(ERROR) << "DecodeInputOutput Failed";
  208. return false;
  209. }
  210. }
  211. if (CheckRepetition(op_info)) {
  212. MS_LOG(WARNING) << "This op info has been already registed. op name: " << op_info->op_name()
  213. << ", impl type: " << ImplTypeToStr(op_info->imply_type())
  214. << ", impl path: " << op_info->impl_path();
  215. return true;
  216. }
  217. if (!GetRefInfo(op_info)) {
  218. MS_LOG(ERROR) << "GetRefInfo Failed";
  219. return false;
  220. }
  221. op_info_.emplace(op_info->op_name(), op_info);
  222. return true;
  223. }
  224. bool OpLib::DecodeAttr(const nlohmann::json &obj, const OpImplyType imply_type,
  225. const std::shared_ptr<OpInfo> &op_info) {
  226. MS_EXCEPTION_IF_NULL(op_info);
  227. bool ret = true;
  228. try {
  229. std::shared_ptr<OpAttr> op_attr = std::make_shared<OpAttr>();
  230. MS_EXCEPTION_IF_NULL(op_attr);
  231. op_attr->set_name(obj.at(kName));
  232. if (imply_type != kAICPU) {
  233. op_attr->set_param_type(obj.at(kParamType));
  234. }
  235. op_attr->set_type(obj.at(kType));
  236. if (imply_type == kTBE) {
  237. op_attr->set_value(obj.at(kValue));
  238. }
  239. if (obj.find(kDefaultValue) != obj.end()) {
  240. op_attr->set_default_value(obj.at(kDefaultValue));
  241. }
  242. op_info->add_attrs_ptr(op_attr);
  243. } catch (const std::exception &e) {
  244. MS_LOG(ERROR) << "DecodeAttr failed:" << e.what();
  245. ret = false;
  246. }
  247. return ret;
  248. }
  249. bool OpLib::DecodeDtypeFormat(const nlohmann::json &dtype_format, const std::shared_ptr<OpIOInfo> &op_io,
  250. size_t index) {
  251. MS_EXCEPTION_IF_NULL(op_io);
  252. bool ret = true;
  253. try {
  254. std::vector<std::string> dtype;
  255. std::vector<std::string> format;
  256. for (const auto &it : dtype_format) {
  257. dtype.emplace_back(it[index][0]);
  258. format.emplace_back(it[index][1]);
  259. }
  260. op_io->set_dtypes(dtype);
  261. op_io->set_formats(format);
  262. } catch (const std::exception &e) {
  263. MS_LOG(ERROR) << "DecodeDtypeFormat falied" << e.what();
  264. ret = false;
  265. }
  266. return ret;
  267. }
  268. bool OpLib::DecodeInputOutput(const nlohmann::json &obj, const OpImplyType imply_type, const OpIOType io_type,
  269. const std::shared_ptr<OpInfo> &op_info, const nlohmann::json &dtype_format) {
  270. MS_EXCEPTION_IF_NULL(op_info);
  271. bool ret = true;
  272. try {
  273. std::shared_ptr<OpIOInfo> op_io = std::make_shared<OpIOInfo>();
  274. MS_EXCEPTION_IF_NULL(op_io);
  275. op_io->set_index(obj.at(kIndex));
  276. op_io->set_name(obj.at(kName));
  277. if (!dtype_format.empty()) {
  278. if (!DecodeDtypeFormat(dtype_format, op_io, op_info->inputs_ptr().size() + op_info->outputs_ptr().size())) {
  279. MS_LOG(ERROR) << "Decode dtype format failed";
  280. return false;
  281. }
  282. } else {
  283. op_io->set_dtypes(obj.at(kDtype));
  284. op_io->set_formats(obj.at(kFormat));
  285. }
  286. if (op_io->dtypes().size() != op_io->formats().size()) {
  287. MS_LOG(ERROR) << "op " << op_io->name() << " dtype size: " << op_io->dtypes()
  288. << " is not equal to format size: " << op_io->formats();
  289. return false;
  290. }
  291. if (obj.find(kParamType) != obj.end()) {
  292. op_io->set_param_type(obj.at(kParamType));
  293. }
  294. if (imply_type == kTBE) {
  295. if (obj.find(kNeedCompile) != obj.end()) {
  296. op_io->set_need_compile(obj.at(kNeedCompile));
  297. }
  298. if (obj.find(kShape) != obj.end()) {
  299. op_io->set_shape(obj.at(kShape));
  300. }
  301. if (obj.find(kReshapeType) != obj.end()) {
  302. op_io->set_reshape_type(obj.at(kReshapeType));
  303. }
  304. }
  305. if (io_type == kInput) {
  306. op_info->add_inputs_ptr(op_io);
  307. } else if (io_type == kOutput) {
  308. op_info->add_outputs_ptr(op_io);
  309. }
  310. } catch (const std::exception &e) {
  311. MS_LOG(ERROR) << "DecodeInputOutput failed" << e.what();
  312. ret = false;
  313. }
  314. return ret;
  315. }
  316. std::shared_ptr<OpInfo> OpLib::FindOp(const std::string &op_name, OpImplyType imply_type, bool is_dynamic_shape) {
  317. if (!OpLib::RegOpFromLocalInfo()) {
  318. MS_LOG(INFO) << "Warning reg local op info failed.";
  319. }
  320. auto context = MsContext::GetInstance();
  321. MS_EXCEPTION_IF_NULL(context);
  322. bool is_gpu = (context->get_param<std::string>(MS_CTX_DEVICE_TARGET) == kGPUDevice);
  323. if (is_gpu && (imply_type == kTBE || imply_type == kAICPU)) {
  324. MS_LOG(ERROR) << "FindOp failed: opname: " << op_name << ", imply_type: " << ImplTypeToStr(imply_type)
  325. << ", current op num: " << op_info_.size();
  326. return nullptr;
  327. }
  328. std::string target_processor = is_gpu ? kCUDA : kAiCore;
  329. for (auto [iter, end] = op_info_.equal_range(op_name); iter != end; ++iter) {
  330. auto &op_info = iter->second;
  331. MS_EXCEPTION_IF_NULL(op_info);
  332. if (op_info->imply_type() != imply_type) {
  333. continue;
  334. }
  335. if (imply_type == kAKG && op_info->processor() != target_processor) {
  336. continue;
  337. }
  338. if (is_dynamic_shape && !op_info->dynamic_shape()) {
  339. continue;
  340. }
  341. return op_info;
  342. }
  343. MS_LOG(INFO) << "FindOp failed: opname: " << op_name << ", imply_type: " << ImplTypeToStr(imply_type)
  344. << ", current op num: " << op_info_.size() << " is_dynamic_shape:" << is_dynamic_shape;
  345. return nullptr;
  346. }
  347. bool OpLib::GetRefInfo(const std::shared_ptr<OpInfo> &op_info) {
  348. MS_EXCEPTION_IF_NULL(op_info);
  349. const auto &output_infos = op_info->outputs_ptr();
  350. const auto &input_infos = op_info->inputs_ptr();
  351. for (size_t out_index = 0; out_index < output_infos.size(); out_index++) {
  352. MS_EXCEPTION_IF_NULL(output_infos[out_index]);
  353. const auto &out_name = output_infos[out_index]->name();
  354. for (size_t in_index = 0; in_index < input_infos.size(); in_index++) {
  355. MS_EXCEPTION_IF_NULL(input_infos[in_index]);
  356. const auto &in_name = input_infos[in_index]->name();
  357. if (out_name == in_name) {
  358. if (op_info->has_ref_index(out_index)) {
  359. MS_LOG(ERROR) << "The out_index " << out_index << " is already in ref_info";
  360. return false;
  361. }
  362. op_info->add_ref_pair(out_index, in_index);
  363. MS_LOG(INFO) << "add ref info, op name is " << op_info->op_name() << ", outindex is " << out_index
  364. << ", in_index is " << in_index;
  365. }
  366. }
  367. }
  368. return true;
  369. }
  370. bool OpLib::CheckRepetition(const std::shared_ptr<OpInfo> &op_info) {
  371. MS_EXCEPTION_IF_NULL(op_info);
  372. for (auto [iter, end] = op_info_.equal_range(op_info->op_name()); iter != end; ++iter) {
  373. auto &exist_op_info = iter->second;
  374. MS_EXCEPTION_IF_NULL(exist_op_info);
  375. if (exist_op_info->equals_to(op_info)) {
  376. return true;
  377. }
  378. }
  379. return false;
  380. }
  381. } // namespace kernel
  382. } // namespace mindspore