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lib_test.cc 30 kB

5 years ago
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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 <iostream>
  17. #include <memory>
  18. #include "common/common_test.h"
  19. #include "common/py_func_graph_fetcher.h"
  20. #include "ir/anf.h"
  21. #include "ir/func_graph.h"
  22. #include "ir/func_graph_cloner.h"
  23. #include "ir/manager.h"
  24. #include "ir/value.h"
  25. #include "frontend/operator/ops.h"
  26. #include "frontend/optimizer/irpass.h"
  27. #include "pipeline/jit/resource.h"
  28. #include "debug/draw.h"
  29. #include "pipeline/jit/parse/data_converter.h"
  30. namespace mindspore {
  31. namespace opt {
  32. using abstract::AnalysisResult;
  33. class TestOptLib : public UT::Common {
  34. public:
  35. TestOptLib() : getPyFun("gtest_input.optimizer.opt_test", true), irpass() {}
  36. void SetUp() {
  37. UT::InitPythonPath();
  38. parse::data_converter::ClearObjectCache();
  39. auto ms_context = MsContext::GetInstance();
  40. MS_EXCEPTION_IF_NULL(ms_context);
  41. ms_context->set_param<int>(MS_CTX_EXECUTION_MODE, kGraphMode);
  42. }
  43. FuncGraphPtr RunTransform(FuncGraphPtr gbefore, const SubstitutionList &transform) {
  44. equiv_node.clear();
  45. equiv_graph.clear();
  46. FuncGraphPtr gbefore_clone = BasicClone(gbefore);
  47. OptimizerPtr optimizer = std::make_shared<Optimizer>("ut_test", std::make_shared<pipeline::Resource>());
  48. transform(gbefore_clone, optimizer);
  49. return gbefore_clone;
  50. }
  51. FuncGraphPtr RunSubs(FuncGraphPtr before, std::vector<SubstitutionPtr> opts = {}) {
  52. SubstitutionList eq(opts);
  53. return RunTransform(before, eq);
  54. }
  55. bool CheckTransform(FuncGraphPtr gbefore, FuncGraphPtr gafter, const SubstitutionList &transform,
  56. bool save_graphs = false) {
  57. equiv_node.clear();
  58. equiv_graph.clear();
  59. FuncGraphPtr gbefore_clone = BasicClone(gbefore);
  60. OptimizerPtr optimizer = std::make_shared<Optimizer>("ut_test", std::make_shared<pipeline::Resource>());
  61. transform(gbefore_clone, optimizer);
  62. if (save_graphs) {
  63. draw::Draw("before.dot", gbefore);
  64. draw::Draw("after.dot", gbefore_clone);
  65. draw::Draw("expected.dot", gafter);
  66. }
  67. return Isomorphic(gbefore_clone, gafter, &equiv_graph, &equiv_node);
  68. }
  69. bool CheckOpt(FuncGraphPtr before, FuncGraphPtr after, std::vector<SubstitutionPtr> opts = {},
  70. bool save_graphs = false) {
  71. if (nullptr == before || nullptr == after) {
  72. return false;
  73. }
  74. SubstitutionList eq(opts);
  75. return CheckTransform(before, after, eq, save_graphs);
  76. }
  77. public:
  78. UT::PyFuncGraphFetcher getPyFun;
  79. FuncGraphPairMapEquiv equiv_graph;
  80. NodeMapEquiv equiv_node;
  81. irpass::OptimizeIRPassLib irpass;
  82. };
  83. TEST_F(TestOptLib, test_expendJ) {
  84. FuncGraphPtr before = getPyFun("test_expendJ");
  85. ASSERT_TRUE(nullptr != before);
  86. FuncGraphPtr after = RunSubs(before, std::vector<SubstitutionPtr>({irpass.expand_jprim_}));
  87. }
  88. TEST_F(TestOptLib, test_simplify_always_true_false) {
  89. FuncGraphPtr before1 = getPyFun.CallAndParseRet("test_simplify_always_true_false", "before_1");
  90. FuncGraphPtr before2 = getPyFun.CallAndParseRet("test_simplify_always_true_false", "before_2");
  91. FuncGraphPtr after = getPyFun.CallAndParseRet("test_simplify_always_true_false", "after");
  92. auto patterns = std::vector<SubstitutionPtr>({irpass.switch_simplify_});
  93. ASSERT_TRUE(CheckOpt(before1, after, patterns));
  94. ASSERT_TRUE(CheckOpt(before2, after, patterns));
  95. }
  96. TEST_F(TestOptLib, test_inline) {
  97. FuncGraphPtr before1 = getPyFun.CallAndParseRet("test_inline", "before");
  98. FuncGraphPtr after = getPyFun.CallAndParseRet("test_inline", "after");
  99. // add infer and renormalize
  100. std::shared_ptr<mindspore::pipeline::Resource> res = std::make_shared<mindspore::pipeline::Resource>();
  101. AbstractBasePtrList args_spec_list;
  102. tensor::TensorPtr x_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), std::vector<int64_t>{2, 3});
  103. tensor::TensorPtr y_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), std::vector<int64_t>{2, 3});
  104. AbstractBasePtr abstract_v1 = abstract::FromValue(x_tensor, true);
  105. AbstractBasePtr abstract_v2 = abstract::FromValue(y_tensor, true);
  106. args_spec_list.push_back(abstract_v1);
  107. args_spec_list.push_back(abstract_v2);
  108. AnalysisResult result = pipeline::AbstractAnalyze(res, before1, args_spec_list);
  109. FuncGraphPtr new_graph = pipeline::ProgramSpecialize(res, before1, result.context);
  110. auto patterns = std::vector<SubstitutionPtr>({irpass.arithmetic_simplify_, irpass.switch_simplify_, irpass.inline_});
  111. ASSERT_TRUE(CheckOpt(new_graph, after, patterns));
  112. }
  113. TEST_F(TestOptLib, test_inline_successively) {
  114. FuncGraphPtr before = getPyFun.CallAndParseRet("test_inline_successively", "before");
  115. FuncGraphPtr after = getPyFun.CallAndParseRet("test_inline_successively", "after");
  116. auto patterns = std::vector<SubstitutionPtr>({irpass.inline_});
  117. ASSERT_TRUE(CheckOpt(before, after, patterns));
  118. }
  119. TEST_F(TestOptLib, test_inline_closure) {
  120. FuncGraphPtr before = getPyFun.CallAndParseRet("test_inline_closure", "before");
  121. FuncGraphPtr after = getPyFun.CallAndParseRet("test_inline_closure", "after");
  122. auto patterns = std::vector<SubstitutionPtr>({irpass.inline_});
  123. ASSERT_TRUE(CheckOpt(before, after, patterns));
  124. }
  125. TEST_F(TestOptLib, test_inline_deep_closure) {
  126. FuncGraphPtr before = getPyFun.CallAndParseRet("test_inline_deep_closure", "before");
  127. FuncGraphPtr after = getPyFun.CallAndParseRet("test_inline_deep_closure", "after");
  128. auto patterns = std::vector<SubstitutionPtr>({irpass.inline_});
  129. ASSERT_TRUE(CheckOpt(before, after, patterns));
  130. }
  131. TEST_F(TestOptLib, test_inline_new_closure) {
  132. FuncGraphPtr before = getPyFun.CallAndParseRet("test_inline_new_closure", "before");
  133. FuncGraphPtr after = getPyFun.CallAndParseRet("test_inline_new_closure", "after");
  134. auto patterns = std::vector<SubstitutionPtr>({irpass.inline_});
  135. ASSERT_TRUE(CheckOpt(before, after, patterns));
  136. }
  137. TEST_F(TestOptLib, test_inline_while) {
  138. FuncGraphPtr before = getPyFun.CallAndParseRet("test_inline_while", "before");
  139. auto patterns = std::vector<SubstitutionPtr>({irpass.inline_});
  140. FuncGraphPtr after = RunSubs(before, patterns);
  141. ASSERT_TRUE(CheckOpt(before, after, patterns, true));
  142. }
  143. TEST_F(TestOptLib, test_arithmetic) {
  144. FuncGraphPtr b1_0 = getPyFun.CallAndParseRet("test_arithmetic", "multiply_by_zero_l");
  145. FuncGraphPtr b2_0 = getPyFun.CallAndParseRet("test_arithmetic", "multiply_by_zero_r");
  146. FuncGraphPtr b1 = getPyFun.CallAndParseRet("test_arithmetic", "multiply_by_one_l");
  147. FuncGraphPtr b2 = getPyFun.CallAndParseRet("test_arithmetic", "multiply_by_one_r");
  148. FuncGraphPtr b3 = getPyFun.CallAndParseRet("test_arithmetic", "add_zero_l");
  149. FuncGraphPtr b4 = getPyFun.CallAndParseRet("test_arithmetic", "add_zero_r");
  150. FuncGraphPtr b5 = getPyFun.CallAndParseRet("test_arithmetic", "elim_identity");
  151. FuncGraphPtr after = getPyFun.CallAndParseRet("test_arithmetic", "after");
  152. FuncGraphPtr after_0 = getPyFun.CallAndParseRet("test_arithmetic", "after_0");
  153. auto patterns = std::vector<SubstitutionPtr>({irpass.arithmetic_simplify_});
  154. ASSERT_TRUE(CheckOpt(b1_0, after_0, patterns));
  155. ASSERT_TRUE(CheckOpt(b2_0, after_0, patterns));
  156. ASSERT_TRUE(CheckOpt(b1, after, patterns));
  157. ASSERT_TRUE(CheckOpt(b2, after, patterns));
  158. ASSERT_TRUE(CheckOpt(b3, after, patterns));
  159. ASSERT_TRUE(CheckOpt(b4, after, patterns));
  160. ASSERT_TRUE(CheckOpt(b5, after, patterns));
  161. }
  162. TEST_F(TestOptLib, test_elim_cast_same_dtype) {
  163. FuncGraphPtr before = getPyFun.CallAndParseRet("test_elim_cast_same_dtype", "fp32_cast_fp32");
  164. FuncGraphPtr after = getPyFun.CallAndParseRet("test_elim_cast_same_dtype", "after");
  165. // construct such case that cast srcT equal dstT
  166. auto &inputs = before->output()->cast<CNodePtr>()->inputs();
  167. if (inputs.size() > 2) {
  168. auto cast_node = inputs[0];
  169. auto cast_py = cast_node->cast<ValueNodePtr>()->value()->cast<PrimitivePyPtr>();
  170. cast_py->set_attr("SrcT", TypeIdToType(kNumberTypeFloat32));
  171. cast_py->set_attr("DstT", TypeIdToType(kNumberTypeFloat32));
  172. auto x_node = inputs[1];
  173. std::vector<int64_t> shp = {2, 3};
  174. tensor::TensorPtr x_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), shp);
  175. auto x_abstract = x_tensor->ToAbstract();
  176. x_node->set_abstract(x_abstract);
  177. TypePtr t = std::make_shared<TensorType>(std::make_shared<Float>(32));
  178. ValueNodePtr val = std::make_shared<ValueNode>(t);
  179. auto t_abstract = t->ToAbstract();
  180. val->set_abstract(t_abstract);
  181. before->output()->cast<CNodePtr>()->set_input(2, val);
  182. }
  183. FuncGraphPtr gbefore_clone = BasicClone(before);
  184. auto patterns = std::vector<SubstitutionPtr>({irpass.cast_eliminate_});
  185. ASSERT_TRUE(CheckOpt(before, after, patterns));
  186. TypePtr t = std::make_shared<Float>(32);
  187. ValueNodePtr val = std::make_shared<ValueNode>(t);
  188. auto t_abstract = t->ToAbstract();
  189. val->set_abstract(t_abstract);
  190. gbefore_clone->output()->cast<CNodePtr>()->set_input(2, val);
  191. ASSERT_TRUE(CheckOpt(gbefore_clone, after, patterns));
  192. }
  193. TEST_F(TestOptLib, test_elim_reshape_same_shape) {
  194. FuncGraphPtr before = getPyFun.CallAndParseRet("elim_reshape_same_shape", "reshape_to_2_3");
  195. FuncGraphPtr after = getPyFun.CallAndParseRet("elim_reshape_same_shape", "after");
  196. // construct such case that shape is equal to reshape target
  197. auto &inputs = before->output()->cast<CNodePtr>()->inputs();
  198. if (inputs.size() > 1) {
  199. auto x_node = inputs[1];
  200. std::vector<int64_t> shp = {2, 3};
  201. tensor::TensorPtr x_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), shp);
  202. auto x_abstract = x_tensor->ToAbstract();
  203. x_node->set_abstract(x_abstract);
  204. before->output()->set_abstract(x_abstract);
  205. }
  206. auto patterns = std::vector<SubstitutionPtr>({irpass.reshape_eliminate_});
  207. ASSERT_TRUE(CheckOpt(before, after, patterns));
  208. if (inputs.size() > 1) {
  209. auto x_node = inputs[1];
  210. std::vector<int64_t> shp = {3, 2};
  211. tensor::TensorPtr x_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), shp);
  212. auto x_abstract = x_tensor->ToAbstract();
  213. x_node->set_abstract(x_abstract);
  214. }
  215. ASSERT_FALSE(CheckOpt(before, after, patterns));
  216. }
  217. TEST_F(TestOptLib, elim_two_reshape) {
  218. FuncGraphPtr before = getPyFun.CallAndParseRet("elim_two_reshape", "before");
  219. FuncGraphPtr after = getPyFun.CallAndParseRet("elim_two_reshape", "after");
  220. auto patterns = std::vector<SubstitutionPtr>({irpass.reshape_eliminate_});
  221. ASSERT_TRUE(CheckOpt(before, after, patterns));
  222. }
  223. TEST_F(TestOptLib, elim_two_cast) {
  224. FuncGraphPtr before = getPyFun.CallAndParseRet("elim_two_cast", "before");
  225. FuncGraphPtr after = getPyFun.CallAndParseRet("elim_two_cast", "after");
  226. auto patterns = std::vector<SubstitutionPtr>({irpass.cast_eliminate_});
  227. ASSERT_TRUE(CheckOpt(before, after, patterns));
  228. }
  229. TEST_F(TestOptLib, test_elim_transpose) {
  230. FuncGraphPtr before = getPyFun.CallAndParseRet("test_elim_transpose", "before");
  231. FuncGraphPtr after = getPyFun.CallAndParseRet("test_elim_transpose", "after");
  232. auto patterns = std::vector<SubstitutionPtr>({irpass.transpose_eliminate_});
  233. ASSERT_TRUE(CheckOpt(before, after, patterns));
  234. }
  235. TEST_F(TestOptLib, test_elim_depend_value) {
  236. FuncGraphPtr before = getPyFun.CallAndParseRet("test_elim_depend_value", "before");
  237. FuncGraphPtr after = getPyFun.CallAndParseRet("test_elim_depend_value", "after");
  238. auto patterns = std::vector<SubstitutionPtr>({irpass.depend_value_elim_});
  239. ASSERT_TRUE(CheckOpt(before, after, patterns));
  240. }
  241. TEST_F(TestOptLib, test_elim_tile_multiply_one) {
  242. FuncGraphPtr before = getPyFun.CallAndParseRet("test_elim_tile_multiply_one", "before");
  243. FuncGraphPtr after = getPyFun.CallAndParseRet("test_elim_tile_multiply_one", "after");
  244. auto patterns = std::vector<SubstitutionPtr>({irpass.tile_eliminate_});
  245. ASSERT_TRUE(CheckOpt(before, after, patterns, true));
  246. }
  247. TEST_F(TestOptLib, test_elim_reduce_mean_shape_one) {
  248. FuncGraphPtr before = getPyFun.CallAndParseRet("test_elim_reduce_mean_shape_one", "before");
  249. FuncGraphPtr after = getPyFun.CallAndParseRet("test_elim_reduce_mean_shape_one", "after");
  250. // construct such case that input x shape is (1), keepdims is true
  251. auto inputs = before->output()->cast<CNodePtr>()->inputs();
  252. if (inputs.size() > 2) {
  253. auto x_node = inputs[1];
  254. std::vector<int64_t> shp = {1};
  255. tensor::TensorPtr x_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), shp);
  256. auto x_abstract = x_tensor->ToAbstract();
  257. x_node->set_abstract(x_abstract);
  258. auto reduce_node = inputs[0];
  259. auto reduce = reduce_node->cast<ValueNodePtr>()->value()->cast<PrimitivePtr>();
  260. reduce->set_attr("keep_dims", std::make_shared<BoolImm>(true));
  261. }
  262. auto patterns = std::vector<SubstitutionPtr>({irpass.reduce_eliminate_});
  263. ASSERT_TRUE(CheckOpt(before, after, patterns));
  264. }
  265. TEST_F(TestOptLib, test_elim_all_shape_one) {
  266. FuncGraphPtr before = getPyFun.CallAndParseRet("test_elim_all_shape_one", "before");
  267. FuncGraphPtr after = getPyFun.CallAndParseRet("test_elim_all_shape_one", "after");
  268. // construct such case that input x shape is (1) keep_dims is true
  269. auto inputs = before->output()->cast<CNodePtr>()->inputs();
  270. if (inputs.size() > 2) {
  271. auto x_node = inputs[1];
  272. std::vector<int64_t> shp = {1};
  273. tensor::TensorPtr x_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), shp);
  274. auto x_abstract = x_tensor->ToAbstract();
  275. x_node->set_abstract(x_abstract);
  276. auto reduce_node = inputs[0];
  277. auto reduce = reduce_node->cast<ValueNodePtr>()->value()->cast<PrimitivePtr>();
  278. reduce->set_attr("keep_dims", std::make_shared<BoolImm>(true));
  279. }
  280. auto patterns = std::vector<SubstitutionPtr>({irpass.reduce_eliminate_});
  281. ASSERT_TRUE(CheckOpt(before, after, patterns));
  282. }
  283. TEST_F(TestOptLib, test_elim_sum_shape_one) {
  284. FuncGraphPtr before = getPyFun.CallAndParseRet("test_elim_sum_shape_one", "before");
  285. FuncGraphPtr after = getPyFun.CallAndParseRet("test_elim_sum_shape_one", "after");
  286. // construct such case that input x shape is (1) keepdims is true
  287. auto inputs = before->output()->cast<CNodePtr>()->inputs();
  288. if (inputs.size() > 2) {
  289. auto x_node = inputs[1];
  290. std::vector<int64_t> shp = {1};
  291. tensor::TensorPtr x_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), shp);
  292. auto x_abstract = x_tensor->ToAbstract();
  293. x_node->set_abstract(x_abstract);
  294. auto reduce_node = inputs[0];
  295. auto reduce = reduce_node->cast<ValueNodePtr>()->value()->cast<PrimitivePtr>();
  296. reduce->set_attr("keep_dims", std::make_shared<BoolImm>(true));
  297. }
  298. auto patterns = std::vector<SubstitutionPtr>({irpass.reduce_eliminate_});
  299. ASSERT_TRUE(CheckOpt(before, after, patterns));
  300. }
  301. TEST_F(TestOptLib, test_tuple_getitem) {
  302. FuncGraphPtr make_get_0 = getPyFun.CallAndParseRet("test_tuple_getitem", "make_get_0");
  303. FuncGraphPtr make_get_1 = getPyFun.CallAndParseRet("test_tuple_getitem", "make_get_1");
  304. FuncGraphPtr after_0 = getPyFun.CallAndParseRet("test_tuple_getitem", "after_0");
  305. FuncGraphPtr after_1 = getPyFun.CallAndParseRet("test_tuple_getitem", "after_1");
  306. FuncGraphPtr make_get_const = std::make_shared<FuncGraph>();
  307. auto value_node_1 = NewValueNode(static_cast<int64_t>(1));
  308. auto value_node_2 = NewValueNode(static_cast<int64_t>(2));
  309. std::vector<int64_t> vec{1, 2};
  310. auto value_node_tuple = NewValueNode(MakeValue(vec));
  311. std::vector<AnfNodePtr> node_list{NewValueNode(prim::kPrimTupleGetItem), value_node_tuple, value_node_1};
  312. auto get_item = make_get_const->NewCNode(node_list);
  313. make_get_const->set_output(get_item);
  314. FuncGraphPtr after_2 = std::make_shared<FuncGraph>();
  315. after_2->set_output(value_node_2);
  316. auto patterns = std::vector<SubstitutionPtr>({irpass.item_tuple_or_list_eliminate_});
  317. ASSERT_TRUE(CheckOpt(make_get_0, after_0, patterns));
  318. ASSERT_TRUE(CheckOpt(make_get_1, after_1, patterns));
  319. ASSERT_TRUE(CheckOpt(make_get_const, after_2, patterns));
  320. }
  321. TEST_F(TestOptLib, test_tuple_setitem) {
  322. FuncGraphPtr before_0 = getPyFun.CallAndParseRet("test_tuple_setitem", "before_0");
  323. FuncGraphPtr before_1 = getPyFun.CallAndParseRet("test_tuple_setitem", "before_1");
  324. FuncGraphPtr after_0 = getPyFun.CallAndParseRet("test_tuple_setitem", "after_0");
  325. FuncGraphPtr after_1 = getPyFun.CallAndParseRet("test_tuple_setitem", "after_1");
  326. auto patterns = std::vector<SubstitutionPtr>({irpass.item_tuple_or_list_eliminate_});
  327. ASSERT_TRUE(CheckOpt(before_0, after_0, patterns));
  328. ASSERT_TRUE(CheckOpt(before_1, after_1, patterns));
  329. }
  330. TEST_F(TestOptLib, test_tuple_get_set_item) {
  331. FuncGraphPtr before_0 = getPyFun.CallAndParseRet("test_tuple_get_set_item", "before_0");
  332. FuncGraphPtr after_0 = getPyFun.CallAndParseRet("test_tuple_get_set_item", "after_0");
  333. FuncGraphPtr before_1 = getPyFun.CallAndParseRet("test_tuple_get_set_item", "before_0");
  334. FuncGraphPtr after_1 = getPyFun.CallAndParseRet("test_tuple_get_set_item", "after_0");
  335. auto patterns = std::vector<SubstitutionPtr>({irpass.item_tuple_or_list_eliminate_});
  336. ASSERT_TRUE(CheckOpt(before_0, after_0, patterns));
  337. ASSERT_TRUE(CheckOpt(before_1, after_1, patterns));
  338. }
  339. TEST_F(TestOptLib, test_partial) {
  340. FuncGraphPtr before = getPyFun.CallAndParseRet("test_partial", "before");
  341. FuncGraphPtr after = getPyFun.CallAndParseRet("test_partial", "after");
  342. auto patterns = std::vector<SubstitutionPtr>({irpass.partial_eliminate_});
  343. ASSERT_TRUE(CheckOpt(before, after, patterns));
  344. }
  345. TEST_F(TestOptLib, test_replace_applicator) {
  346. FuncGraphPtr before1 = getPyFun.CallAndParseRet("test_replace_applicator", "before1");
  347. FuncGraphPtr before2 = getPyFun.CallAndParseRet("test_replace_applicator", "before2");
  348. FuncGraphPtr before3 = getPyFun.CallAndParseRet("test_replace_applicator", "before3");
  349. FuncGraphPtr after = getPyFun.CallAndParseRet("test_replace_applicator", "after");
  350. auto patterns = std::vector<SubstitutionPtr>({irpass.replace_applicator_});
  351. ASSERT_TRUE(CheckOpt(before1, after, patterns));
  352. ASSERT_TRUE(CheckOpt(before2, after, patterns));
  353. ASSERT_TRUE(CheckOpt(before3, before3, patterns));
  354. }
  355. TEST_F(TestOptLib, test_specialize_on_graph_arguments) {
  356. FuncGraphPtr before = getPyFun.CallAndParseRet("test_specialize_on_graph_arguments", "before");
  357. FuncGraphPtr after = getPyFun.CallAndParseRet("test_specialize_on_graph_arguments", "after");
  358. auto patterns = std::vector<SubstitutionPtr>({irpass.specialize_transform_});
  359. ASSERT_TRUE(CheckOpt(before, after, patterns));
  360. }
  361. TEST_F(TestOptLib, test_incorporate_getitem) {
  362. FuncGraphPtr before1 = getPyFun.CallAndParseRet("test_incorporate_getitem", "before1");
  363. FuncGraphPtr before2 = getPyFun.CallAndParseRet("test_incorporate_getitem", "before2");
  364. FuncGraphPtr after1 = getPyFun.CallAndParseRet("test_incorporate_getitem", "after1");
  365. FuncGraphPtr after2 = getPyFun.CallAndParseRet("test_incorporate_getitem", "after2");
  366. auto patterns = std::vector<SubstitutionPtr>({irpass.incorporate_getitem_set_});
  367. ASSERT_TRUE(CheckOpt(before1, after1, patterns));
  368. ASSERT_TRUE(CheckOpt(before2, after2, patterns));
  369. }
  370. TEST_F(TestOptLib, test_incorporate_getitem_through_switch) {
  371. FuncGraphPtr before = getPyFun.CallAndParseRet("test_incorporate_getitem_through_switch", "before");
  372. FuncGraphPtr after = getPyFun.CallAndParseRet("test_incorporate_getitem_through_switch", "after");
  373. auto patterns = std::vector<SubstitutionPtr>({irpass.incorporate_getitem_set_});
  374. ASSERT_TRUE(CheckOpt(before, after, patterns));
  375. }
  376. TEST_F(TestOptLib, test_incorporate_call) {
  377. FuncGraphPtr before = getPyFun.CallAndParseRet("test_incorporate_call", "before");
  378. FuncGraphPtr after = getPyFun.CallAndParseRet("test_incorporate_call", "after");
  379. auto patterns = std::vector<SubstitutionPtr>({irpass.incorporate_call_});
  380. ASSERT_TRUE(CheckOpt(before, after, patterns));
  381. }
  382. TEST_F(TestOptLib, test_incorporate_call_through_switch) {
  383. FuncGraphPtr before = getPyFun.CallAndParseRet("test_incorporate_call_through_switch", "before");
  384. FuncGraphPtr after = getPyFun.CallAndParseRet("test_incorporate_call_through_switch", "after");
  385. auto patterns = std::vector<SubstitutionPtr>({
  386. irpass.incorporate_call_switch_,
  387. irpass.incorporate_call_,
  388. irpass.arithmetic_simplify_,
  389. });
  390. ASSERT_TRUE(CheckOpt(before, after, patterns));
  391. }
  392. TEST_F(TestOptLib, test_float_tuple_getitem_through_switch) {
  393. FuncGraphPtr before = getPyFun.CallAndParseRet("test_float_tuple_getitem_through_switch", "before");
  394. FuncGraphPtr after = getPyFun.CallAndParseRet("test_float_tuple_getitem_through_switch", "after");
  395. auto patterns = std::vector<SubstitutionPtr>({irpass.float_tuple_getitem_switch_});
  396. ASSERT_TRUE(CheckOpt(before, after, patterns));
  397. }
  398. TEST_F(TestOptLib, test_merge_addn) {
  399. FuncGraphPtr before = getPyFun.CallAndParseRet("test_merge_addn", "before");
  400. FuncGraphPtr after = getPyFun.CallAndParseRet("test_merge_addn", "after");
  401. auto patterns = std::vector<SubstitutionPtr>({irpass.merge_addn_});
  402. ASSERT_TRUE(CheckOpt(before, after, patterns));
  403. }
  404. TEST_F(TestOptLib, test_filter_addn_zero) {
  405. FuncGraphPtr before1 = getPyFun.CallAndParseRet("test_addn_zero", "before_1");
  406. FuncGraphPtr after = getPyFun.CallAndParseRet("test_addn_zero", "after");
  407. FuncGraphPtr before2 = getPyFun.CallAndParseRet("test_addn_zero", "before_2");
  408. FuncGraphPtr before3 = getPyFun.CallAndParseRet("test_addn_zero", "before_3");
  409. FuncGraphPtr before4 = getPyFun.CallAndParseRet("test_addn_zero", "before_4");
  410. auto patterns = std::vector<SubstitutionPtr>({irpass.addn_zero_filter_});
  411. ASSERT_TRUE(CheckOpt(before1, after, patterns));
  412. ASSERT_TRUE(CheckOpt(before2, after, patterns));
  413. ASSERT_TRUE(CheckOpt(before3, after, patterns));
  414. ASSERT_TRUE(CheckOpt(before4, before4, patterns));
  415. }
  416. TEST_F(TestOptLib, test_minmax_grad) {
  417. FuncGraphPtr before11 = getPyFun.CallAndParseRet("test_minmax_grad", "before_11");
  418. FuncGraphPtr before12 = getPyFun.CallAndParseRet("test_minmax_grad", "before_12");
  419. FuncGraphPtr before2 = getPyFun.CallAndParseRet("test_minmax_grad", "before_2");
  420. FuncGraphPtr before31 = getPyFun.CallAndParseRet("test_minmax_grad", "before_31");
  421. FuncGraphPtr before32 = getPyFun.CallAndParseRet("test_minmax_grad", "before_32");
  422. FuncGraphPtr before4 = getPyFun.CallAndParseRet("test_minmax_grad", "before_4");
  423. auto patterns = std::vector<SubstitutionPtr>({irpass.minmaximum_grad_});
  424. ASSERT_TRUE(CheckOpt(before11, before11, patterns));
  425. ASSERT_TRUE(CheckOpt(before12, before12, patterns));
  426. ASSERT_TRUE(CheckOpt(before2, before2, patterns));
  427. ASSERT_TRUE(CheckOpt(before31, before31, patterns));
  428. ASSERT_TRUE(CheckOpt(before32, before32, patterns));
  429. ASSERT_TRUE(CheckOpt(before4, before4, patterns));
  430. }
  431. TEST_F(TestOptLib, test_reducesum_one) {
  432. FuncGraphPtr before1 = getPyFun.CallAndParseRet("test_reducesum_one", "before_1");
  433. FuncGraphPtr before2 = getPyFun.CallAndParseRet("test_reducesum_one", "before_2");
  434. FuncGraphPtr before3 = getPyFun.CallAndParseRet("test_reducesum_one", "before_3");
  435. FuncGraphPtr before4 = getPyFun.CallAndParseRet("test_reducesum_one", "before_4");
  436. FuncGraphPtr after1 = getPyFun.CallAndParseRet("test_reducesum_one", "after_1");
  437. FuncGraphPtr after2 = getPyFun.CallAndParseRet("test_reducesum_one", "after_2");
  438. FuncGraphPtr after3 = getPyFun.CallAndParseRet("test_reducesum_one", "after_3");
  439. auto patterns = std::vector<SubstitutionPtr>({irpass.reduce_eliminate_});
  440. std::vector<int64_t> shp = {3, 2, 2, 1};
  441. tensor::TensorPtr x_tensor = std::make_shared<tensor::Tensor>(kFloat32->type_id(), shp);
  442. auto x_abstract = x_tensor->ToAbstract();
  443. std::vector<int64_t> shp2 = {3, 2, 1, 1};
  444. tensor::TensorPtr x_tensor2 = std::make_shared<tensor::Tensor>(kFloat32->type_id(), shp2);
  445. auto x_abstract2 = x_tensor2->ToAbstract();
  446. auto inputs = before1->output()->cast<CNodePtr>()->inputs();
  447. if (inputs.size() > 1) {
  448. auto x_node = inputs[1];
  449. x_node->set_abstract(x_abstract);
  450. }
  451. ASSERT_TRUE(CheckOpt(before1, after1, patterns));
  452. auto inputs2 = before2->output()->cast<CNodePtr>()->inputs();
  453. if (inputs2.size() > 1) {
  454. auto x_node2 = inputs2[1];
  455. x_node2->set_abstract(x_abstract2);
  456. }
  457. ASSERT_TRUE(CheckOpt(before2, after1, patterns));
  458. auto inputs3 = before2->output()->cast<CNodePtr>()->inputs();
  459. if (inputs3.size() > 1) {
  460. auto x_node3 = inputs3[1];
  461. x_node3->set_abstract(x_abstract);
  462. }
  463. ASSERT_TRUE(CheckOpt(before2, before2, patterns));
  464. auto inputs4 = before3->output()->cast<CNodePtr>()->inputs();
  465. if (inputs4.size() > 1) {
  466. auto x_node4 = inputs4[1];
  467. x_node4->set_abstract(x_abstract);
  468. }
  469. ASSERT_TRUE(CheckOpt(before3, after2, patterns));
  470. auto inputs5 = before4->output()->cast<CNodePtr>()->inputs();
  471. if (inputs5.size() > 1) {
  472. auto x_node5 = inputs5[1];
  473. x_node5->set_abstract(x_abstract2);
  474. }
  475. ASSERT_TRUE(CheckOpt(before4, after3, patterns));
  476. }
  477. TEST_F(TestOptLib, test_print_tuple_wrapper) {
  478. FuncGraphPtr before1 = getPyFun.CallAndParseRet("test_print_tuple_wrapper", "before1");
  479. FuncGraphPtr before2 = getPyFun.CallAndParseRet("test_print_tuple_wrapper", "before2");
  480. FuncGraphPtr before3 = getPyFun.CallAndParseRet("test_print_tuple_wrapper", "before3");
  481. FuncGraphPtr after1 = getPyFun.CallAndParseRet("test_print_tuple_wrapper", "after1");
  482. FuncGraphPtr after2 = getPyFun.CallAndParseRet("test_print_tuple_wrapper", "after2");
  483. auto patterns = std::vector<SubstitutionPtr>({irpass.print_tuple_wrapper_});
  484. ASSERT_TRUE(CheckOpt(before1, after1, patterns));
  485. ASSERT_TRUE(CheckOpt(before2, after2, patterns));
  486. ASSERT_TRUE(CheckOpt(before3, before3, patterns));
  487. }
  488. TEST_F(TestOptLib, test_constant_duplicate_mul) {
  489. FuncGraphPtr beforell = getPyFun.CallAndParseRet("test_constant_duplicate_mul", "beforell");
  490. FuncGraphPtr beforelr = getPyFun.CallAndParseRet("test_constant_duplicate_mul", "beforelr");
  491. FuncGraphPtr beforerl = getPyFun.CallAndParseRet("test_constant_duplicate_mul", "beforerl");
  492. FuncGraphPtr beforerr = getPyFun.CallAndParseRet("test_constant_duplicate_mul", "beforerr");
  493. FuncGraphPtr after = getPyFun.CallAndParseRet("test_constant_duplicate_mul", "after");
  494. auto patterns = std::vector<SubstitutionPtr>({irpass.arithmetic_simplify_});
  495. ASSERT_TRUE(CheckOpt(beforell, after, patterns));
  496. ASSERT_TRUE(CheckOpt(beforelr, after, patterns));
  497. ASSERT_TRUE(CheckOpt(beforerl, after, patterns));
  498. ASSERT_TRUE(CheckOpt(beforerr, after, patterns));
  499. }
  500. TEST_F(TestOptLib, test_adjust_allreduce_mul_add) {
  501. FuncGraphPtr beforell = getPyFun.CallAndParseRet("test_adjust_allreduce_mul_add", "beforell");
  502. FuncGraphPtr beforelr = getPyFun.CallAndParseRet("test_adjust_allreduce_mul_add", "beforelr");
  503. FuncGraphPtr beforerl = getPyFun.CallAndParseRet("test_adjust_allreduce_mul_add", "beforerl");
  504. FuncGraphPtr beforerr = getPyFun.CallAndParseRet("test_adjust_allreduce_mul_add", "beforerr");
  505. FuncGraphPtr after1 = getPyFun.CallAndParseRet("test_adjust_allreduce_mul_add", "after1");
  506. FuncGraphPtr before2r = getPyFun.CallAndParseRet("test_adjust_allreduce_mul_add", "before2r");
  507. FuncGraphPtr before2l = getPyFun.CallAndParseRet("test_adjust_allreduce_mul_add", "before2l");
  508. FuncGraphPtr after2 = getPyFun.CallAndParseRet("test_adjust_allreduce_mul_add", "after2");
  509. auto patterns = std::vector<SubstitutionPtr>({irpass.adjust_all_reduce_mul_add_});
  510. ASSERT_TRUE(CheckOpt(beforell, after1, patterns, true));
  511. ASSERT_TRUE(CheckOpt(beforelr, after1, patterns));
  512. ASSERT_TRUE(CheckOpt(beforerl, after1, patterns));
  513. ASSERT_TRUE(CheckOpt(beforerr, after1, patterns));
  514. }
  515. TEST_F(TestOptLib, test_row_tensor) {
  516. FuncGraphPtr before_get_indices = getPyFun.CallAndParseRet("test_row_tensor", "before_get_indices");
  517. FuncGraphPtr after_get_indices = getPyFun.CallAndParseRet("test_row_tensor", "after_get_indices");
  518. FuncGraphPtr before_get_values = getPyFun.CallAndParseRet("test_row_tensor", "before_get_values");
  519. FuncGraphPtr after_get_values = getPyFun.CallAndParseRet("test_row_tensor", "after_get_values");
  520. FuncGraphPtr before_get_dense_shape = getPyFun.CallAndParseRet("test_row_tensor", "before_get_dense_shape");
  521. FuncGraphPtr after_get_dense_shape = getPyFun.CallAndParseRet("test_row_tensor", "after_get_dense_shape");
  522. auto patterns = std::vector<SubstitutionPtr>({irpass.row_tensor_eliminate_});
  523. ASSERT_TRUE(CheckOpt(before_get_indices, after_get_indices, patterns));
  524. ASSERT_TRUE(CheckOpt(before_get_values, after_get_values, patterns));
  525. ASSERT_TRUE(CheckOpt(before_get_dense_shape, after_get_dense_shape, patterns));
  526. }
  527. TEST_F(TestOptLib, test_sparse_tensor) {
  528. FuncGraphPtr before_get_indices = getPyFun.CallAndParseRet("test_sparse_tensor", "before_get_indices");
  529. FuncGraphPtr after_get_indices = getPyFun.CallAndParseRet("test_sparse_tensor", "after_get_indices");
  530. FuncGraphPtr before_get_values = getPyFun.CallAndParseRet("test_sparse_tensor", "before_get_values");
  531. FuncGraphPtr after_get_values = getPyFun.CallAndParseRet("test_sparse_tensor", "after_get_values");
  532. FuncGraphPtr before_get_dense_shape = getPyFun.CallAndParseRet("test_sparse_tensor", "before_get_dense_shape");
  533. FuncGraphPtr after_get_dense_shape = getPyFun.CallAndParseRet("test_sparse_tensor", "after_get_dense_shape");
  534. auto patterns = std::vector<SubstitutionPtr>({irpass.sparse_tensor_eliminate_});
  535. ASSERT_TRUE(CheckOpt(before_get_indices, after_get_indices, patterns));
  536. ASSERT_TRUE(CheckOpt(before_get_values, after_get_values, patterns));
  537. ASSERT_TRUE(CheckOpt(before_get_dense_shape, after_get_dense_shape, patterns));
  538. }
  539. } // namespace opt
  540. } // namespace mindspore