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prim_test.cc 43 kB

5 years ago
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  1. /**
  2. * Copyright 2020-2021 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 "pybind11/pybind11.h"
  19. #include "common/common_test.h"
  20. #include "common/py_func_graph_fetcher.h"
  21. #include "ir/manager.h"
  22. #include "pipeline/jit/static_analysis/prim.h"
  23. #include "pipeline/static_analysis/helper.h"
  24. #include "frontend/operator/ops.h"
  25. #include "debug/draw.h"
  26. #include "ir/tensor.h"
  27. #include "utils/symbolic.h"
  28. #include "base/core_ops.h"
  29. namespace mindspore {
  30. namespace abstract {
  31. namespace py = pybind11;
  32. namespace python_adapter = mindspore::parse::python_adapter;
  33. class UTPrimUtils {
  34. public:
  35. using AbstractTensorPtr = std::shared_ptr<AbstractTensor>;
  36. using AbstractTuplePtr = std::shared_ptr<AbstractTuple>;
  37. static const std::shared_ptr<Float> kF32;
  38. static const std::shared_ptr<Float> kF64;
  39. static const std::shared_ptr<Int> kI16;
  40. static const std::shared_ptr<Int> kI64;
  41. static const std::shared_ptr<UInt> kU64;
  42. static std::shared_ptr<AbstractType> TypeToAbstract(TypePtr t) { return std::make_shared<AbstractType>(t); }
  43. static AbstractTensorPtr ArrayFloat64Of(std::initializer_list<int64_t> shp) {
  44. auto ele = std::make_shared<AbstractScalar>(kAnyValue, kFloat64);
  45. return std::make_shared<AbstractTensor>(ele, std::make_shared<Shape>(shp));
  46. }
  47. static AbstractTensorPtr ArrayFloat32Of(std::initializer_list<int64_t> shp) {
  48. auto ele = std::make_shared<AbstractScalar>(kAnyValue, kFloat32);
  49. return std::make_shared<AbstractTensor>(ele, std::make_shared<Shape>(shp));
  50. }
  51. static AbstractTensorPtr ArrayInt32Of(std::initializer_list<int64_t> shp) {
  52. auto ele = std::make_shared<AbstractScalar>(kAnyValue, kInt64);
  53. return std::make_shared<AbstractTensor>(ele, std::make_shared<Shape>(shp));
  54. }
  55. static AbstractTuplePtr ShapeOf(std::initializer_list<int64_t> vals) {
  56. AbstractBasePtrList te;
  57. for (auto v : vals) {
  58. te.push_back(std::make_shared<AbstractScalar>(v));
  59. }
  60. return std::make_shared<AbstractTuple>(te);
  61. }
  62. static AbstractListPtr ListShapeOf(std::initializer_list<int64_t> vals) {
  63. AbstractBasePtrList te;
  64. for (auto v : vals) {
  65. te.push_back(std::make_shared<AbstractScalar>(v));
  66. }
  67. return std::make_shared<AbstractList>(te);
  68. }
  69. };
  70. const std::shared_ptr<Float> UTPrimUtils::kF64 = std::make_shared<Float>(64);
  71. const std::shared_ptr<Float> UTPrimUtils::kF32 = std::make_shared<Float>(32);
  72. const std::shared_ptr<Int> UTPrimUtils::kI16 = std::make_shared<Int>(16);
  73. const std::shared_ptr<Int> UTPrimUtils::kI64 = std::make_shared<Int>(64);
  74. const std::shared_ptr<UInt> UTPrimUtils::kU64 = std::make_shared<UInt>(64);
  75. namespace {
  76. /* skip ut test cases temporarily
  77. AbstractBasePtr ArrayOfTensor(const TypePtr &t, std::initializer_list<int64_t> shp) {
  78. auto shape = std::vector<int64_t>(shp);
  79. auto tensor = std::make_shared<tensor::Tensor>(t->type_id(), shape);
  80. return ToAbstract(tensor);
  81. }
  82. */
  83. } // namespace
  84. class TestPrim : public UT::Common {
  85. public:
  86. TestPrim() : getPyFun("gtest_input.pipeline.infer", true) {}
  87. void SetUp();
  88. void TearDown();
  89. AnalysisEnginePtr engine_;
  90. UT::PyFuncGraphFetcher getPyFun;
  91. };
  92. void TestPrim::SetUp() { engine_ = SetupAnalysisEngine(); }
  93. void TestPrim::TearDown() {
  94. // destroy resource
  95. }
  96. static FuncGraphPtr MakeFuncGraph(const PrimitivePtr prim, uint64_t nparam) {
  97. // build the func_graph manually, eg:
  98. // MakeFuncGraph(std::make_shared<Primitive>("scalar_add"), 2) means:
  99. /* python source code:
  100. * @mindspore
  101. * def f(x, y):
  102. * return x + y
  103. */
  104. FuncGraphPtr func_graph = std::make_shared<FuncGraph>();
  105. std::vector<AnfNodePtr> inputs;
  106. inputs.push_back(NewValueNode(prim));
  107. for (uint64_t i = 0; i < nparam; i++) {
  108. inputs.push_back(func_graph->add_parameter());
  109. }
  110. CNodePtr cnode_prim = func_graph->NewCNode(inputs);
  111. inputs.clear();
  112. inputs.push_back(NewValueNode(prim::kPrimReturn));
  113. inputs.push_back(cnode_prim);
  114. CNodePtr cnode_return = func_graph->NewCNode(inputs);
  115. func_graph->set_return(cnode_return);
  116. return func_graph;
  117. }
  118. TEST_F(TestPrim, test_typeof) {
  119. AbstractBasePtrList args_spec_list;
  120. int64_t v1 = 1;
  121. AbstractBasePtr abstract_v1 = FromValue(v1, false);
  122. args_spec_list.push_back(abstract_v1);
  123. auto prim_typeof = std::make_shared<Primitive>("typeof");
  124. FuncGraphPtr func_graph = MakeFuncGraph(prim_typeof, 1);
  125. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  126. res->dump();
  127. TypePtr res_value = res->GetValueTrack()->cast<TypePtr>();
  128. res_value->dump();
  129. ASSERT_TRUE(*res_value == Int(64));
  130. }
  131. TEST_F(TestPrim, test_list_map) {
  132. AbstractBasePtrList args_spec_list;
  133. AbstractBasePtr abstract_v1 = FromValue(static_cast<int64_t>(1), false);
  134. AbstractBasePtr abstract_u1 = FromValue(static_cast<int64_t>(1), false);
  135. auto abstract_list1 = std::make_shared<AbstractList>(AbstractBasePtrList({abstract_v1, abstract_u1}));
  136. AbstractBasePtr abstract_v2 = FromValue(static_cast<int64_t>(2), false);
  137. AbstractBasePtr abstract_u2 = FromValue(static_cast<int64_t>(2), false);
  138. auto abstract_list2 = std::make_shared<AbstractList>(AbstractBasePtrList({abstract_v2, abstract_u2}));
  139. auto prim_scalar_add = std::make_shared<Primitive>(prim::kScalarAdd);
  140. AbstractBasePtr abstract_func = ToAbstract(prim_scalar_add);
  141. args_spec_list.push_back(abstract_func);
  142. args_spec_list.push_back(abstract_list1);
  143. args_spec_list.push_back(abstract_list2);
  144. auto prim_list_map = std::make_shared<Primitive>("list_map");
  145. FuncGraphPtr func_graph = MakeFuncGraph(prim_list_map, 3);
  146. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  147. auto expected = std::make_shared<AbstractList>(
  148. AbstractBasePtrList({FromValue(static_cast<int64_t>(3), false), FromValue(static_cast<int64_t>(3), false)}));
  149. res->dump();
  150. MS_LOG(INFO) << "result res: " << res->ToString();
  151. MS_LOG(INFO) << "result expected: " << expected->ToString();
  152. ASSERT_TRUE(*res == *expected);
  153. }
  154. TEST_F(TestPrim, test_list_reduce) {
  155. AbstractBasePtrList args_spec_list;
  156. int64_t v1 = 1;
  157. AbstractBasePtr abstract_v1 = FromValue(v1, false);
  158. AbstractBasePtr abstract_v2 = FromValue(v1, false);
  159. auto abstract_list = std::make_shared<AbstractList>(AbstractBasePtrList({abstract_v1, abstract_v2}));
  160. auto prim_scalar_add = std::make_shared<Primitive>(prim::kScalarAdd);
  161. AbstractBasePtr abstract_func = ToAbstract(prim_scalar_add);
  162. args_spec_list.push_back(abstract_func);
  163. args_spec_list.push_back(abstract_list);
  164. args_spec_list.push_back(abstract_v1);
  165. auto prim_list_reduce = std::make_shared<Primitive>("list_reduce");
  166. FuncGraphPtr func_graph = MakeFuncGraph(prim_list_reduce, 3);
  167. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  168. res->dump();
  169. TypePtr res_type = res->GetTypeTrack();
  170. res_type->dump();
  171. ASSERT_TRUE(*res_type == Int(64));
  172. }
  173. TEST_F(TestPrim, test_scalar_to_array) {
  174. AbstractBasePtrList args_spec_list;
  175. int64_t v1 = 1;
  176. AbstractBasePtr abstract_v1 = FromValue(v1, false);
  177. args_spec_list.push_back(abstract_v1);
  178. auto prim_scalar_to_array = std::make_shared<Primitive>("scalar_to_array");
  179. FuncGraphPtr func_graph = MakeFuncGraph(prim_scalar_to_array, 1);
  180. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  181. res->dump();
  182. TypePtr res_type = res->BuildType();
  183. res_type->dump();
  184. ASSERT_TRUE(*res_type == TensorType(std::make_shared<Int>(64)));
  185. }
  186. TEST_F(TestPrim, test_array_to_scalar) {
  187. AbstractBasePtrList args_spec_list;
  188. int64_t v1 = 1;
  189. AbstractBasePtr abstract_v1 = FromValue(v1, false);
  190. auto abstract_a1 = std::make_shared<AbstractTensor>(abstract_v1, std::make_shared<Shape>());
  191. args_spec_list.push_back(abstract_a1);
  192. auto prim_array_to_scalar = std::make_shared<Primitive>("array_to_scalar");
  193. FuncGraphPtr func_graph = MakeFuncGraph(prim_array_to_scalar, 1);
  194. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  195. res->dump();
  196. TypePtr res_type = res->BuildType();
  197. res_type->dump();
  198. ASSERT_TRUE(*res_type == Int(64));
  199. }
  200. TEST_F(TestPrim, test_J_1) {
  201. AbstractBasePtrList args_spec_list;
  202. int64_t v1 = 1;
  203. AbstractBasePtr abstract_v1 = FromValue(v1, false);
  204. args_spec_list.push_back(abstract_v1);
  205. auto prim_J = std::make_shared<Primitive>("J");
  206. FuncGraphPtr func_graph = MakeFuncGraph(prim_J, 1);
  207. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  208. AbstractJTaggedPtr res_J = dyn_cast<AbstractJTagged>(res);
  209. ASSERT_TRUE(res_J != nullptr);
  210. ASSERT_TRUE(*(res_J->element()) == *abstract_v1);
  211. }
  212. TEST_F(TestPrim, test_J_2) {
  213. // def add(x):
  214. // return x + x
  215. // def f(x):
  216. // return J(add)(x)
  217. std::vector<AnfNodePtr> inputs;
  218. FuncGraphPtr func_graph1 = std::make_shared<FuncGraph>();
  219. inputs.push_back(NewValueNode(prim::kPrimScalarAdd));
  220. auto x = func_graph1->add_parameter();
  221. inputs.push_back(x);
  222. inputs.push_back(x);
  223. CNodePtr cnode1 = func_graph1->NewCNode(inputs);
  224. func_graph1->set_return(cnode1);
  225. FuncGraphPtr func_graph = std::make_shared<FuncGraph>();
  226. inputs.clear();
  227. auto x1 = func_graph->add_parameter();
  228. inputs.clear();
  229. inputs.push_back(NewValueNode(prim::kPrimJ));
  230. inputs.push_back(NewValueNode(func_graph1));
  231. CNodePtr jf = func_graph->NewCNode(inputs);
  232. inputs.clear();
  233. inputs.push_back(jf);
  234. inputs.push_back(x1);
  235. CNodePtr jf_jx = func_graph->NewCNode(inputs);
  236. inputs.clear();
  237. inputs.push_back(NewValueNode(prim::kPrimReturn));
  238. inputs.push_back(jf_jx);
  239. CNodePtr cnode_return = func_graph->NewCNode(inputs);
  240. func_graph->set_return(cnode_return);
  241. draw::Draw("test_J_2.dot", func_graph);
  242. int64_t v1 = 1;
  243. AbstractBasePtr abstract_v1 = FromValue(v1, false);
  244. AbstractBasePtrList args_spec_list = {abstract_v1};
  245. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  246. res->dump();
  247. AbstractTuplePtr res_J = dyn_cast<AbstractTuple>(res);
  248. ASSERT_TRUE(res_J != nullptr);
  249. auto res_J_0 = res_J->elements()[0];
  250. ASSERT_TRUE(res_J_0 != nullptr);
  251. ASSERT_TRUE(*res_J_0 == *(FromValue(static_cast<int64_t>(2), false)));
  252. AbstractFunctionPtr res_J_1 = dyn_cast<AbstractFunction>(res_J->elements()[1]);
  253. ASSERT_TRUE(res_J_1 != nullptr);
  254. }
  255. // tail half
  256. TEST_F(TestPrim, test_switch1) {
  257. PrimitivePtr switch_ = std::make_shared<Primitive>("Switch");
  258. FuncGraphPtr func_graph = MakeFuncGraph(switch_, 3);
  259. AbstractBasePtr arg0 = FromValue(true, false);
  260. AbstractBasePtr arg1 = FromValue(static_cast<int64_t>(1), false);
  261. AbstractBasePtr arg2 = FromValue(static_cast<int64_t>(2), false);
  262. AbstractBasePtrList args_spec_list = {arg0, arg1, arg2};
  263. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  264. ASSERT_TRUE(*res == *arg1);
  265. }
  266. TEST_F(TestPrim, test_switch2) {
  267. PrimitivePtr switch_ = std::make_shared<Primitive>("Switch");
  268. FuncGraphPtr func_graph = MakeFuncGraph(switch_, 3);
  269. AbstractBasePtr arg0 = FromValue(false, false);
  270. AbstractBasePtr arg1 = FromValue(static_cast<int64_t>(1), false);
  271. AbstractBasePtr arg2 = FromValue(static_cast<int64_t>(2), false);
  272. AbstractBasePtrList args_spec_list = {arg0, arg1, arg2};
  273. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  274. MS_LOG(INFO) << "make result res: " << res->ToString();
  275. MS_LOG(INFO) << "make result arg2: " << arg2->ToString();
  276. ASSERT_TRUE(*res == *arg2);
  277. }
  278. TEST_F(TestPrim, test_identity) {
  279. PrimitivePtr identity = std::make_shared<Primitive>("identity");
  280. FuncGraphPtr func_graph = MakeFuncGraph(identity, 1);
  281. AbstractBasePtr abstract_v1 = FromValue(static_cast<int64_t>(1), false);
  282. AbstractBasePtrList args_spec_list = {abstract_v1};
  283. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  284. ASSERT_TRUE(*res == *abstract_v1);
  285. }
  286. TEST_F(TestPrim, test_broadcast_shape) {
  287. PrimitivePtr broadcast_shape = std::make_shared<Primitive>("broadcast_shape");
  288. FuncGraphPtr func_graph = MakeFuncGraph(broadcast_shape, 2);
  289. auto a = UTPrimUtils::ShapeOf({Shape::SHP_ANY, Shape::SHP_ANY});
  290. auto b = UTPrimUtils::ShapeOf({Shape::SHP_ANY});
  291. std::vector<Any> expected{Shape::SHP_ANY, Shape::SHP_ANY};
  292. AbstractBasePtrList args_spec_list = {a, b};
  293. AbstractTuplePtr res = dyn_cast<AbstractTuple>(engine_->Run(func_graph, args_spec_list).inferred->abstract());
  294. auto ret = res->BuildValue()->cast<ValueTuplePtr>()->value();
  295. std::vector<ValuePtr> element_list = {MakeValue(Shape::SHP_ANY), MakeValue(Shape::SHP_ANY)};
  296. ASSERT_TRUE(ret.size() == element_list.size());
  297. for (int64_t i = 0; i < element_list.size(); i++) {
  298. ASSERT_TRUE(*ret[i] == *element_list[i]);
  299. }
  300. }
  301. TEST_F(TestPrim, test_partial) {
  302. PrimitivePtr prim = prim::kPrimPartial;
  303. FuncGraphPtr func_graph = MakeFuncGraph(prim, 3);
  304. PrimitivePtr add = prim::kPrimScalarAdd;
  305. AbstractBasePtr abstract_add = ToAbstract(add);
  306. AbstractBasePtr abstract_v1 = FromValue(static_cast<int64_t>(1), false);
  307. AbstractBasePtr abstract_v2 = FromValue(static_cast<int64_t>(1), false);
  308. AbstractBasePtrList args_spec_list = {abstract_add, abstract_v1, abstract_v2};
  309. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  310. AbstractBasePtrList fn_args_list = {abstract_v1, abstract_v2};
  311. auto expected = std::make_shared<PartialAbstractClosure>(
  312. std::make_shared<PrimitiveAbstractClosure>(prim::kPrimScalarAdd), fn_args_list);
  313. MS_LOG(INFO) << "result: " << res->ToString();
  314. MS_LOG(INFO) << "expected: " << expected->ToString();
  315. ASSERT_TRUE(res->ToString() == expected->ToString());
  316. }
  317. // def test_env(x, y):
  318. // return env_setitem(newenv, embed(x), y)
  319. TEST_F(TestPrim, test_env_setitem) {
  320. FuncGraphPtr graph_embed = MakeFuncGraph(prim::kPrimEmbed, 1);
  321. AbstractBasePtr abstract_x = FromValue(static_cast<int64_t>(1), false);
  322. AbstractBasePtrList args_spec_list = {abstract_x};
  323. AbstractBasePtr embed_x = engine_->Run(graph_embed, args_spec_list).inferred->abstract();
  324. FuncGraphPtr func_graph = MakeFuncGraph(prim::kPrimEnvSetItem, 3);
  325. AbstractBasePtr abstract_env = ToAbstract(newenv);
  326. AbstractBasePtr abstract_y = FromValue(static_cast<int64_t>(2), false);
  327. args_spec_list = {abstract_env, embed_x, abstract_y};
  328. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  329. AbstractBasePtr exp = std::make_shared<AbstractScalar>(kAnyValue, std::make_shared<EnvType>());
  330. ASSERT_TRUE(*res == *exp);
  331. }
  332. // def test_env(x, y, z):
  333. // e = env_setitem(newenv, embed(x), y)
  334. // return env_getitem(e, embed(x), z)
  335. TEST_F(TestPrim, test_env_getitem) {
  336. FuncGraphPtr graph_embed = MakeFuncGraph(prim::kPrimEmbed, 1);
  337. AbstractBasePtr abstract_x = FromValue(static_cast<int64_t>(1), false);
  338. AbstractBasePtrList args_spec_list = {abstract_x};
  339. AbstractBasePtr embed_x = engine_->Run(graph_embed, args_spec_list).inferred->abstract();
  340. FuncGraphPtr graph_setitem = MakeFuncGraph(prim::kPrimEnvSetItem, 3);
  341. AbstractBasePtr abstract_env = ToAbstract(newenv);
  342. AbstractBasePtr abstract_y = FromValue(static_cast<int64_t>(2), false);
  343. args_spec_list = {abstract_env, embed_x, abstract_y};
  344. AbstractBasePtr res = engine_->Run(graph_setitem, args_spec_list).inferred->abstract();
  345. AbstractBasePtr exp = std::make_shared<AbstractScalar>(kAnyValue, std::make_shared<EnvType>());
  346. ASSERT_TRUE(*res == *exp);
  347. FuncGraphPtr graph_getitem = MakeFuncGraph(prim::kPrimEnvGetItem, 3);
  348. AbstractBasePtr abstract_z = FromValue(static_cast<int64_t>(3), false);
  349. args_spec_list = {res, embed_x, abstract_z};
  350. res = engine_->Run(graph_getitem, args_spec_list).inferred->abstract();
  351. ASSERT_TRUE(*res == *abstract_x);
  352. }
  353. // def test_env(x, y, z):
  354. // e1 = env_setitem(newenv, embed(x), y)
  355. // e2 = env_setitem(newenv, embed(x), z)
  356. // return env_add(e1, e2)
  357. TEST_F(TestPrim, test_env_add) {
  358. FuncGraphPtr graph_embed = MakeFuncGraph(prim::kPrimEmbed, 1);
  359. AbstractBasePtr abstract_x = FromValue(static_cast<int64_t>(1), false);
  360. AbstractBasePtrList args_spec_list = {abstract_x};
  361. AbstractBasePtr embed_x = engine_->Run(graph_embed, args_spec_list).inferred->abstract();
  362. FuncGraphPtr graph_setitem = MakeFuncGraph(prim::kPrimEnvSetItem, 3);
  363. AbstractBasePtr abstract_env = ToAbstract(newenv);
  364. AbstractBasePtr abstract_y = FromValue(static_cast<int64_t>(2), false);
  365. args_spec_list = {abstract_env, embed_x, abstract_y};
  366. AbstractBasePtr abstract_e1 = engine_->Run(graph_setitem, args_spec_list).inferred->abstract();
  367. AbstractBasePtr exp = std::make_shared<AbstractScalar>(kAnyValue, std::make_shared<EnvType>());
  368. ASSERT_TRUE(*abstract_e1 == *exp);
  369. AbstractBasePtr abstract_z = FromValue(static_cast<int64_t>(3), false);
  370. args_spec_list = {abstract_env, embed_x, abstract_z};
  371. AbstractBasePtr abstract_e2 = engine_->Run(graph_setitem, args_spec_list).inferred->abstract();
  372. ASSERT_TRUE(*abstract_e2 == *exp);
  373. FuncGraphPtr graph_add = MakeFuncGraph(prim::kPrimEnvAdd, 2);
  374. args_spec_list = {abstract_e1, abstract_e2};
  375. AbstractBasePtr res = engine_->Run(graph_add, args_spec_list).inferred->abstract();
  376. ASSERT_TRUE(*res == *exp);
  377. }
  378. TEST_F(TestPrim, test_relu) {
  379. PrimitivePtr relu = prim::kPrimRelu;
  380. relu->AddAttr("T", MakeValue(static_cast<int64_t>(kNumberTypeFloat64)));
  381. FuncGraphPtr func_graph = MakeFuncGraph(relu, 1);
  382. AbstractBasePtr expected = UTPrimUtils::ArrayFloat64Of({2, 2, 2, 3}); // NCHW
  383. AbstractBasePtrList args_spec_list = {expected};
  384. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  385. ASSERT_TRUE(*res == *expected);
  386. }
  387. /*
  388. TEST_F(TestPrim, test_relu2) {
  389. FuncGraphPtr func_graph = getPyFun("get_relu");
  390. ASSERT_TRUE(func_graph != nullptr);
  391. draw::Draw("test_relu.dot", func_graph);
  392. auto arr = ArrayOfTensor(UTPrimUtils::kF32, {3, 4, 5});
  393. auto expected = ArrayOfTensor(UTPrimUtils::kF32, {3, 4, 5});
  394. AbstractBasePtrList args_spec_list = {arr};
  395. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  396. auto res = dyn_cast<AbstractTensor>(ret);
  397. ASSERT_TRUE(*(res->GetShapeTrack()) == *(expected->GetShapeTrack()));
  398. }
  399. TEST_F(TestPrim, test_conv2d1) {
  400. std::shared_ptr<py::scoped_interpreter> env = python_adapter::set_python_scoped();
  401. py::tuple kernel_size(2);
  402. kernel_size[0] = 5;
  403. kernel_size[1] = 5;
  404. std::shared_ptr<FuncGraph> func_graph = getPyFun.CallAndParseRet("test_conv2d", 64, kernel_size, 0, 2, 1);
  405. // NCHW
  406. std::vector<int64_t> inputs_dims = {2, 20, 32, 32};
  407. std::vector<int64_t> weight_dims = {64, 20, 5, 5};
  408. tensor::TensorPtr inputs = std::make_shared<tensor::Tensor>();
  409. inputs->set_data_type(kNumberTypeInt32);
  410. inputs->set_shape(inputs_dims);
  411. // Cout, Cin, kernel_size
  412. tensor::TensorPtr weight = std::make_shared<tensor::Tensor>();
  413. weight->set_data_type(kNumberTypeInt32);
  414. weight->set_shape(weight_dims);
  415. AbstractBasePtr abstract_inputs = FromValue(inputs, true);
  416. AbstractBasePtr abstract_weight = FromValue(weight, true);
  417. AbstractBasePtrList args_spec_list = {abstract_inputs, abstract_weight};
  418. AbstractBasePtr expected = abstract_inputs->Clone();
  419. // NCHW
  420. std::vector<int64_t> shape = {2, 64, 14, 14};
  421. expected->set_shape(std::make_shared<Shape>(shape));
  422. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  423. MS_LOG(INFO) << "result: " << res->ToString();
  424. MS_LOG(INFO) << "expected: " << expected->ToString();
  425. auto res_ptr = dyn_cast<AbstractTensor>(res);
  426. auto expected_ptr = dyn_cast<AbstractTensor>(expected);
  427. ASSERT_TRUE(*res_ptr->shape() == *expected_ptr->shape());
  428. ASSERT_TRUE(*res_ptr->element() == *expected_ptr->element());
  429. }
  430. TEST_F(TestPrim, test_conv2d) {
  431. FuncGraphPtr func_graph = getPyFun("get_conv2d");
  432. ASSERT_TRUE(func_graph != nullptr);
  433. auto input = ArrayOfTensor(UTPrimUtils::kF32, {10, 32, 32, 32});
  434. auto weight = ArrayOfTensor(UTPrimUtils::kF32, {64, 32, 3, 3});
  435. AbstractBasePtrList args_spec_list = {input, weight};
  436. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  437. auto res = dyn_cast<AbstractTensor>(ret);
  438. auto expected = ArrayOfTensor(UTPrimUtils::kF32, {10, 64, 16, 16});
  439. MS_LOG(INFO) << "result: " << res->ToString();
  440. MS_LOG(INFO) << "expected: " << expected->ToString();
  441. ASSERT_TRUE(*(res->GetShapeTrack()) == *(expected->GetShapeTrack()));
  442. }
  443. TEST_F(TestPrim, test_conv2d_native) {
  444. FuncGraphPtr func_graph = getPyFun("get_conv2d_native");
  445. ASSERT_TRUE(func_graph != nullptr);
  446. auto input = ArrayOfTensor(UTPrimUtils::kF64, {10, 32, 32, 32});
  447. auto weight = ArrayOfTensor(UTPrimUtils::kF64, {3, 32, 3, 3});
  448. AbstractBasePtrList args_spec_list = {input, weight};
  449. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  450. auto res = dyn_cast<AbstractTensor>(ret);
  451. auto expected = ArrayOfTensor(UTPrimUtils::kF64, {10, 96, 16, 16});
  452. MS_LOG(INFO) << "result: " << res->ToString();
  453. MS_LOG(INFO) << "expected: " << expected->ToString();
  454. ASSERT_TRUE(*(res->GetShapeTrack()) == *(expected->GetShapeTrack()));
  455. }
  456. TEST_F(TestPrim, test_biasAdd) {
  457. FuncGraphPtr func_graph = getPyFun("get_bias_add");
  458. ASSERT_TRUE(func_graph != nullptr);
  459. auto value = ArrayOfTensor(UTPrimUtils::kF32, {10, 32, 32, 32});
  460. auto bias = ArrayOfTensor(UTPrimUtils::kF32, {32});
  461. AbstractBasePtrList args_spec_list = {value, bias};
  462. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  463. auto res = dyn_cast<AbstractTensor>(ret);
  464. auto expected = ArrayOfTensor(UTPrimUtils::kF32, {10, 32, 32, 32});
  465. MS_LOG(INFO) << "result: " << res->ToString();
  466. MS_LOG(INFO) << "expected: " << expected->ToString();
  467. ASSERT_TRUE(*(res->GetShapeTrack()) == *(expected->GetShapeTrack()));
  468. }
  469. TEST_F(TestPrim, test_softmax_cross_entropy_with_logits) {
  470. FuncGraphPtr func_graph = getPyFun("get_softmax_cross_entropy_with_logits");
  471. ASSERT_TRUE(func_graph != nullptr);
  472. auto logits = ArrayOfTensor(UTPrimUtils::kF32, {64, 10});
  473. auto labels = ArrayOfTensor(UTPrimUtils::kF32, {64, 10});
  474. AbstractBasePtrList args_spec_list = {logits, labels};
  475. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  476. ASSERT_NE(ret, nullptr);
  477. auto res = dyn_cast<AbstractTuple>(ret);
  478. auto loss = ArrayOfTensor(UTPrimUtils::kF32, {64});
  479. auto dLogits = ArrayOfTensor(UTPrimUtils::kF32, {64, 10});
  480. AbstractBasePtrList expected_list = {loss, dLogits};
  481. auto expected = std::make_shared<AbstractTuple>(expected_list);
  482. MS_LOG(INFO) << "result: " << res->ToString();
  483. MS_LOG(INFO) << "expected: " << expected->ToString();
  484. auto res_ptr0 = dyn_cast<AbstractTuple>(res);
  485. auto expected_ptr0 = dyn_cast<AbstractTuple>(expected);
  486. ASSERT_GT((*res_ptr0).size(), 1);
  487. auto res_ptr = dyn_cast<AbstractTensor>((*res_ptr0)[1]);
  488. ASSERT_GT((*expected_ptr0).size(), 1);
  489. auto expected_ptr = dyn_cast<AbstractTensor>((*expected_ptr0)[1]);
  490. ASSERT_TRUE(*res_ptr->shape() == *expected_ptr->shape());
  491. ASSERT_TRUE(*res_ptr->element() == *expected_ptr->element());
  492. }
  493. TEST_F(TestPrim, test_tensor_to_scalar_prim) {
  494. FuncGraphPtr func_graph = getPyFun("get_tensor_to_scalar");
  495. ASSERT_TRUE(func_graph != nullptr);
  496. draw::Draw("get_tensor_to_scalar.dot", func_graph);
  497. auto logits = ArrayOfTensor(UTPrimUtils::kF64, {64, 10});
  498. auto labels = ArrayOfTensor(UTPrimUtils::kF64, {64, 10});
  499. AbstractBasePtrList args_spec_list = {logits, labels};
  500. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  501. auto res = dyn_cast<AbstractScalar>(ret);
  502. AbstractScalarPtr expected = std::make_shared<AbstractScalar>(kAnyValue, kFloat64);
  503. expected->set_type(UTPrimUtils::kF64);
  504. MS_LOG(INFO) << "result: " << res->ToString();
  505. MS_LOG(INFO) << "expected: " << expected->ToString();
  506. ASSERT_TRUE(*res == *expected);
  507. }
  508. TEST_F(TestPrim, test_pooling) {
  509. PrimitivePtr pooling = prim::kPrimPooling;
  510. pooling->AddAttr("mode", MakeValue(std::string("avg")));
  511. pooling->AddAttr("pad_mode", MakeValue(std::string("valid")));
  512. pooling->AddAttr("nan_opt", MakeValue(0));
  513. pooling->AddAttr("window", MakeValue(2));
  514. pooling->AddAttr("pad", MakeValue(1));
  515. pooling->AddAttr("stride", MakeValue(1));
  516. pooling->AddAttr("data_mode", MakeValue(1));
  517. pooling->AddAttr("ceil_mode", MakeValue(0));
  518. FuncGraphPtr func_graph = MakeFuncGraph(pooling, 1);
  519. std::vector<int64_t> inputs_dims = {8, 64, 3, 3};
  520. auto inputs = std::make_shared<tensor::Tensor>();
  521. inputs->set_data_type(kNumberTypeFloat32);
  522. inputs->set_shape(inputs_dims);
  523. AbstractBasePtr abstract_input = FromValue(inputs, false);
  524. AbstractBasePtrList args_spec_list = {abstract_input};
  525. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  526. AbstractBasePtr expected = abstract_input->Clone()->Broaden();
  527. std::vector<int64_t> expected_dims = {8, 64, 2, 2};
  528. expected->set_shape(std::make_shared<Shape>(expected_dims));
  529. MS_LOG(INFO) << "result: " << res->ToString();
  530. MS_LOG(INFO) << "expected: " << expected->ToString();
  531. ASSERT_TRUE(*res == *expected);
  532. }
  533. TEST_F(TestPrim, test_hastype) {
  534. AbstractBasePtrList args_spec_list;
  535. int64_t v1 = 1;
  536. TypePtr v2 = std::make_shared<Number>();
  537. AbstractBasePtr abstract_v1 = FromValue(v1, false);
  538. AbstractTypePtr abstract_v2 = UTPrimUtils::TypeToAbstract(v2);
  539. AbstractBasePtr expected = FromValue(true, false);
  540. args_spec_list.push_back(abstract_v1);
  541. args_spec_list.push_back(abstract_v2);
  542. auto prim = std::make_shared<Primitive>("hastype");
  543. FuncGraphPtr func_graph = MakeFuncGraph(prim, 2);
  544. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  545. ASSERT_TRUE(*res == *expected);
  546. }
  547. TEST_F(TestPrim, test_array_len) {
  548. AbstractBasePtrList args_spec_list;
  549. auto v1 = UTPrimUtils::ArrayFloat64Of({3, 4, 0, 2});
  550. auto expected = std::make_shared<AbstractScalar>(kAnyValue, kInt32);
  551. args_spec_list.push_back(v1);
  552. auto prim = std::make_shared<Primitive>("array_len");
  553. FuncGraphPtr func_graph = MakeFuncGraph(prim, 1);
  554. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  555. ASSERT_TRUE(*res == *expected);
  556. }
  557. TEST_F(TestPrim, test_list_len) {
  558. AbstractBasePtrList args_spec_list;
  559. auto v1 = UTPrimUtils::ListShapeOf({3, 4, 0, 2});
  560. auto expected = std::make_shared<AbstractScalar>(4);
  561. args_spec_list.push_back(v1);
  562. auto prim = std::make_shared<Primitive>("list_len");
  563. FuncGraphPtr func_graph = MakeFuncGraph(prim, 1);
  564. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  565. ASSERT_TRUE(*res == *expected);
  566. }
  567. TEST_F(TestPrim, test_tuple_len) {
  568. AbstractBasePtrList args_spec_list;
  569. auto v1 = UTPrimUtils::ShapeOf({3, 4, 0, 2});
  570. auto expected = std::make_shared<AbstractScalar>(4);
  571. args_spec_list.push_back(v1);
  572. auto prim = std::make_shared<Primitive>("tuple_len");
  573. FuncGraphPtr func_graph = MakeFuncGraph(prim, 1);
  574. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  575. ASSERT_TRUE(*res == *expected);
  576. }
  577. TEST_F(TestPrim, test_tuple_reversed) {
  578. AbstractBasePtrList args_spec_list;
  579. auto v1 = UTPrimUtils::ShapeOf({0, 1, 2, 3});
  580. auto expected = UTPrimUtils::ShapeOf({3, 2, 1, 0});
  581. args_spec_list.push_back(v1);
  582. auto prim = std::make_shared<Primitive>("tuple_reversed");
  583. FuncGraphPtr func_graph = MakeFuncGraph(prim, 1);
  584. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  585. MS_LOG(INFO) << "expect=" << expected->ToString();
  586. ASSERT_TRUE(*res == *expected);
  587. }
  588. TEST_F(TestPrim, test_list_getitem) {
  589. AbstractBasePtrList args_spec_list;
  590. int64_t v1 = 2;
  591. int64_t v2 = 1;
  592. AbstractBasePtr elem = FromValue(v1, false);
  593. AbstractBasePtr elem2 = FromValue(v2, false);
  594. AbstractBasePtrList elems = {elem, elem};
  595. auto abstract_v1 = std::make_shared<AbstractList>(elems);
  596. AbstractBasePtr abstract_v2 = FromValue(v2, false);
  597. args_spec_list.push_back(abstract_v1);
  598. args_spec_list.push_back(abstract_v2);
  599. auto prim = std::make_shared<Primitive>("list_getitem");
  600. FuncGraphPtr func_graph = MakeFuncGraph(prim, 2);
  601. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  602. ASSERT_TRUE(*res == *elem);
  603. }
  604. TEST_F(TestPrim, test_list_setitem) {
  605. int64_t v1 = 1;
  606. int64_t v2 = 2;
  607. AbstractBasePtr elem1 = FromValue(v1, false);
  608. AbstractBasePtr elem2 = FromValue(v2, false);
  609. AbstractBasePtrList elems = {elem1, elem1};
  610. auto abstract_tuple = std::make_shared<AbstractList>(elems);
  611. AbstractBasePtr abstract_v2 = FromValue(v1, false);
  612. AbstractBasePtr abstract_v3 = FromValue(v2, false);
  613. AbstractBasePtrList args_spec_list = {abstract_tuple, abstract_v2, abstract_v3};
  614. auto prim = std::make_shared<Primitive>("list_setitem");
  615. FuncGraphPtr func_graph = MakeFuncGraph(prim, 3);
  616. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  617. MS_LOG(INFO) << "result: " << res->ToString();
  618. AbstractBasePtrList elems_exp = {elem1, elem2};
  619. auto expected = std::make_shared<AbstractList>(elems_exp);
  620. MS_LOG(INFO) << "expected: " << expected->ToString();
  621. auto res_list = dyn_cast<AbstractList>(res);
  622. ASSERT_TRUE(*expected == *res_list);
  623. }
  624. TEST_F(TestPrim, test_list_append) {
  625. int64_t v1 = 1;
  626. AbstractBasePtr elem1 = FromValue(v1, false);
  627. AbstractBasePtr elem2 = FromValue(v1, false);
  628. auto abstract_tuple = std::make_shared<AbstractList>(AbstractBasePtrList({elem1, elem2}));
  629. AbstractBasePtr abstract_v2 = FromValue(v1, false);
  630. AbstractBasePtrList args_spec_list = {abstract_tuple, abstract_v2};
  631. auto prim = std::make_shared<Primitive>("list_append");
  632. FuncGraphPtr func_graph = MakeFuncGraph(prim, 2);
  633. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  634. MS_LOG(INFO) << "result: " << res->ToString();
  635. auto expected = std::make_shared<AbstractList>(AbstractBasePtrList({elem1, elem2}));
  636. MS_LOG(INFO) << "expected: " << expected->ToString();
  637. auto res_list = dyn_cast<AbstractList>(res);
  638. ASSERT_TRUE(*res_list == *expected);
  639. }
  640. TEST_F(TestPrim, test_tuple_setitem) {
  641. int64_t v1 = 1;
  642. int64_t v2 = 2;
  643. AbstractBasePtr elem1 = FromValue(v1, false);
  644. AbstractBasePtr elem2 = FromValue(v2, false);
  645. AbstractBasePtrList elems = {elem1, elem1};
  646. auto abstract_tuple = std::make_shared<AbstractTuple>(elems);
  647. AbstractBasePtr abstract_v2 = FromValue(v1, false);
  648. AbstractBasePtr abstract_v3 = FromValue(v2, false);
  649. AbstractBasePtrList args_spec_list = {abstract_tuple, abstract_v2, abstract_v3};
  650. auto prim = std::make_shared<Primitive>("tuple_setitem");
  651. FuncGraphPtr func_graph = MakeFuncGraph(prim, 3);
  652. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  653. MS_LOG(INFO) << "result: " << res->ToString();
  654. AbstractBasePtrList elems_exp = {elem1, elem2};
  655. auto expected = std::make_shared<AbstractTuple>(elems_exp);
  656. MS_LOG(INFO) << "expected: " << expected->ToString();
  657. auto res_tuple = dyn_cast<AbstractTuple>(res);
  658. ASSERT_TRUE(*res == *expected);
  659. }
  660. TEST_F(TestPrim, test_make_list) {
  661. AbstractBasePtrList args_spec_list;
  662. int64_t v1 = 2;
  663. int64_t v2 = 2;
  664. AbstractBasePtr abstract_v1 = FromValue(v1, false);
  665. AbstractBasePtr abstract_v2 = FromValue(v2, false);
  666. auto expected = std::make_shared<AbstractList>(AbstractBasePtrList({abstract_v1, abstract_v2}));
  667. args_spec_list.push_back(abstract_v1);
  668. args_spec_list.push_back(abstract_v2);
  669. auto prim = std::make_shared<Primitive>("make_list");
  670. FuncGraphPtr func_graph = MakeFuncGraph(prim, 2);
  671. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  672. ASSERT_TRUE(*res == *expected);
  673. }
  674. TEST_F(TestPrim, test_make_range) {
  675. AbstractBasePtrList args_spec_list;
  676. int64_t v1 = 1;
  677. int64_t v2 = 4;
  678. AbstractBasePtr abstract_v1 = FromValue(v1);
  679. AbstractBasePtr abstract_v2 = FromValue(v2);
  680. args_spec_list.push_back(abstract_v1);
  681. args_spec_list.push_back(abstract_v2);
  682. auto prim = std::make_shared<Primitive>("make_range");
  683. std::shared_ptr<FuncGraph> func_graph = MakeFuncGraph(prim, 2);
  684. AbstractBasePtr ele1 = FromValue(1);
  685. AbstractBasePtr ele2 = FromValue(2);
  686. AbstractBasePtr ele3 = FromValue(3);
  687. AbstractBasePtrList elem_list({ele1, ele2, ele3});
  688. AbstractBasePtr expected = std::make_shared<AbstractTuple>(elem_list);
  689. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  690. MS_LOG(INFO) << "res=" << res->ToString();
  691. MS_LOG(INFO) << "expected=" << expected->ToString();
  692. ASSERT_TRUE(*res == *expected);
  693. }
  694. TEST_F(TestPrim, test_layernorm) {
  695. PrimitivePtr layerNorm = prim::kPrimLayerNorm;
  696. layerNorm->AddAttr("begin_norm_axis", MakeValue(1));
  697. layerNorm->AddAttr("begin_params_axis", MakeValue(1));
  698. std::shared_ptr<FuncGraph> func_graph = MakeFuncGraph(layerNorm, 3);
  699. std::vector<int64_t> inputs_dims = {128, 64, 32, 64};
  700. std::vector<int64_t> mean_var_dims = {128, 64, 32, 1};
  701. std::vector<int64_t> params_dims = {64, 32, 64};
  702. tensor::TensorPtr inputs = std::make_shared<tensor::Tensor>();
  703. inputs->set_data_type(kNumberTypeFloat32);
  704. inputs->set_shape(inputs_dims);
  705. tensor::TensorPtr mean_var = std::make_shared<tensor::Tensor>();
  706. mean_var->set_data_type(kNumberTypeFloat32);
  707. mean_var->set_shape(mean_var_dims);
  708. tensor::TensorPtr gamma = std::make_shared<tensor::Tensor>();
  709. gamma->set_data_type(kNumberTypeFloat32);
  710. gamma->set_shape(params_dims);
  711. tensor::TensorPtr beta = std::make_shared<tensor::Tensor>();
  712. beta->set_data_type(kNumberTypeFloat32);
  713. beta->set_shape(params_dims);
  714. AbstractBasePtr abstract_inputs = FromValue(inputs, true);
  715. AbstractBasePtr abstract_mean_var = FromValue(mean_var, true);
  716. AbstractBasePtr abstract_gamma = FromValue(gamma, true);
  717. AbstractBasePtr abstract_beta = FromValue(beta, true);
  718. AbstractBasePtrList args_spec_list = {abstract_inputs, abstract_gamma, abstract_beta};
  719. AbstractBasePtr expected0 = abstract_inputs->Clone();
  720. AbstractBasePtr expected1 = abstract_mean_var->Clone();
  721. AbstractBasePtr expected2 = abstract_mean_var->Clone();
  722. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  723. MS_LOG(INFO) << "result: " << res->ToString();
  724. MS_LOG(INFO) << "expected0: " << expected0->ToString();
  725. MS_LOG(INFO) << "expected1: " << expected1->ToString();
  726. MS_LOG(INFO) << "expected2: " << expected2->ToString();
  727. std::shared_ptr<AbstractTuple> abs_tuple = dyn_cast<AbstractTuple>(res);
  728. ASSERT_TRUE(abs_tuple != nullptr);
  729. auto res_ptr0 = dyn_cast<AbstractTensor>(abs_tuple->elements()[0]);
  730. auto expected_ptr0 = dyn_cast<AbstractTensor>(expected0);
  731. ASSERT_TRUE(*res_ptr0->shape() == *expected_ptr0->shape());
  732. ASSERT_TRUE(*res_ptr0->element() == *expected_ptr0->element());
  733. auto res_ptr1 = dyn_cast<AbstractTensor>(abs_tuple->elements()[1]);
  734. auto expected_ptr1 = dyn_cast<AbstractTensor>(expected1);
  735. ASSERT_TRUE(*res_ptr1->shape() == *expected_ptr1->shape());
  736. ASSERT_TRUE(*res_ptr1->element() == *expected_ptr1->element());
  737. auto res_ptr2 = dyn_cast<AbstractTensor>(abs_tuple->elements()[2]);
  738. auto expected_ptr2 = dyn_cast<AbstractTensor>(expected2);
  739. ASSERT_TRUE(*res_ptr2->shape() == *expected_ptr2->shape());
  740. ASSERT_TRUE(*res_ptr2->element() == *expected_ptr2->element());
  741. }
  742. TEST_F(TestPrim, test_DropoutGenMask) {
  743. AbstractBasePtrList args_spec_list;
  744. auto arg0 = UTPrimUtils::ShapeOf({5, 5, 5, 5});
  745. std::vector<int64_t> keep_prob_shape = {};
  746. tensor::TensorPtr keep_prob = std::make_shared<tensor::Tensor>(0.5f);
  747. keep_prob->set_data_type(kNumberTypeFloat32);
  748. keep_prob->set_shape(keep_prob_shape);
  749. AbstractBasePtr abstract_keep_prob = FromValue(keep_prob);
  750. auto prim = std::make_shared<Primitive>("DropoutGenMask");
  751. std::shared_ptr<FuncGraph> func_graph = MakeFuncGraph(prim, 2);
  752. args_spec_list.push_back(arg0);
  753. args_spec_list.push_back(abstract_keep_prob);
  754. // should return a tensor with on dimension of 79 elements
  755. AbstractBasePtr expected = std::make_shared<AbstractTensor>(std::make_shared<AbstractScalar>(kAnyValue, kUInt8),
  756. std::make_shared<Shape>(std::vector<int64_t>{79}));
  757. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  758. MS_LOG(INFO) << "res=" << res->ToString();
  759. MS_LOG(INFO) << "expected=" << expected->ToString();
  760. ASSERT_TRUE(*res == *expected);
  761. }
  762. TEST_F(TestPrim, test_dropout) {
  763. std::shared_ptr<py::scoped_interpreter> env = python_adapter::set_python_scoped();
  764. std::shared_ptr<FuncGraph> func_graph = getPyFun.CallAndParseRet("test_dropout");
  765. std::vector<int64_t> inputs_dims = {2, 20, 32, 32};
  766. tensor::TensorPtr inputs = std::make_shared<tensor::Tensor>();
  767. inputs->set_data_type(kNumberTypeFloat32);
  768. inputs->set_shape(inputs_dims);
  769. AbstractBasePtr abstract_inputs = FromValue(inputs, true);
  770. std::vector<int64_t> keep_prob_shape = {};
  771. tensor::TensorPtr keep_prob = std::make_shared<tensor::Tensor>(0.5f);
  772. keep_prob->set_data_type(kNumberTypeFloat32);
  773. keep_prob->set_shape(keep_prob_shape);
  774. AbstractBasePtr abstract_keep_prob = FromValue(keep_prob);
  775. AbstractBasePtrList args_spec_list = {abstract_inputs, abstract_keep_prob};
  776. AbstractBasePtr expected = abstract_inputs->Clone();
  777. // NCHW
  778. std::vector<int64_t> shape = {2, 20, 32, 32};
  779. expected->set_shape(std::make_shared<Shape>(shape));
  780. AbstractBasePtr res = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  781. MS_LOG(INFO) << "result: " << res->ToString();
  782. MS_LOG(INFO) << "expected: " << expected->ToString();
  783. auto res_ptr = dyn_cast<AbstractTensor>(res);
  784. auto expected_ptr = dyn_cast<AbstractTensor>(expected);
  785. ASSERT_TRUE(*res_ptr->shape() == *expected_ptr->shape());
  786. ASSERT_TRUE(*res_ptr->element() == *expected_ptr->element());
  787. }
  788. TEST_F(TestPrim, test_BroadcastGradientArgs_01_dim) {
  789. PrimitivePtr broadcatGradientArgs = prim::kPrimBroadcastGradientArgs;
  790. std::shared_ptr<FuncGraph> func_graph = MakeFuncGraph(broadcatGradientArgs, 2);
  791. // broadcast shape: x: 8,5,3, y:3
  792. // output: ((),(0, 1))
  793. AbstractBasePtrList x_arg_list({abstract::FromValue(8), abstract::FromValue(5), abstract::FromValue(3)});
  794. AbstractBasePtrList y_arg_list({abstract::FromValue(3)});
  795. auto x_input = std::make_shared<AbstractTuple>(x_arg_list);
  796. auto y_input = std::make_shared<AbstractTuple>(y_arg_list);
  797. AbstractBasePtrList args_spec_list = {x_input, y_input};
  798. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  799. auto res = dyn_cast<AbstractTuple>(ret);
  800. AbstractBasePtrList x_idx_list;
  801. auto r_x = std::make_shared<AbstractTuple>(x_idx_list);
  802. AbstractBasePtrList y_idx_list({abstract::FromValue(0), abstract::FromValue(1)});
  803. auto r_y = std::make_shared<AbstractTuple>(y_idx_list);
  804. AbstractBasePtrList elem_list({r_x, r_y});
  805. auto expected = std::make_shared<AbstractTuple>(elem_list);
  806. MS_LOG(INFO) << "result: " << res->ToString();
  807. MS_LOG(INFO) << "expected: " << expected->ToString();
  808. ASSERT_TRUE(*res == *expected);
  809. }
  810. TEST_F(TestPrim, test_BroadcastGradientArgs_1_dim) {
  811. PrimitivePtr broadcatGradientArgs = prim::kPrimBroadcastGradientArgs;
  812. std::shared_ptr<FuncGraph> func_graph = MakeFuncGraph(broadcatGradientArgs, 2);
  813. // broadcast shape: x: 8,1,3, y:8 5 3
  814. // output: ((1),())
  815. AbstractBasePtrList x_arg_list({abstract::FromValue(8), abstract::FromValue(1), abstract::FromValue(3)});
  816. AbstractBasePtrList y_arg_list({abstract::FromValue(8), abstract::FromValue(5), abstract::FromValue(3)});
  817. auto x_input = std::make_shared<AbstractTuple>(x_arg_list);
  818. auto y_input = std::make_shared<AbstractTuple>(y_arg_list);
  819. AbstractBasePtrList args_spec_list = {x_input, y_input};
  820. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  821. auto res = dyn_cast<AbstractTuple>(ret);
  822. AbstractBasePtrList x_idx_list({abstract::FromValue(1)});
  823. auto r_x = std::make_shared<AbstractTuple>(x_idx_list);
  824. AbstractBasePtrList y_idx_list;
  825. auto r_y = std::make_shared<AbstractTuple>(y_idx_list);
  826. AbstractBasePtrList elem_list({r_x, r_y});
  827. auto expected = std::make_shared<AbstractTuple>(elem_list);
  828. MS_LOG(INFO) << "result: " << res->ToString();
  829. MS_LOG(INFO) << "expected: " << expected->ToString();
  830. ASSERT_TRUE(*res == *expected);
  831. }
  832. TEST_F(TestPrim, test_DictGetItem) {
  833. PrimitivePtr dictGetItem = prim::kPrimDictGetItem;
  834. std::shared_ptr<FuncGraph> func_graph = MakeFuncGraph(dictGetItem, 2);
  835. std::vector<std::pair<std::string, ValuePtr>> tensor_map = {
  836. {"x", std::make_shared<tensor::Tensor>(kNumberTypeInt32, std::vector<int64_t>{2, 3, 4})},
  837. {"y", std::make_shared<tensor::Tensor>(kNumberTypeInt32, std::vector<int64_t>{2, 1, 4})}};
  838. ValueDictionary value_dict(tensor_map);
  839. AbstractBasePtr array_dict = value_dict.ToAbstract();
  840. AbstractBasePtr key = abstract::FromValue("x");
  841. AbstractBasePtrList args_spec_list = {array_dict, key};
  842. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  843. AbstractTensorPtr tensor_ret = dyn_cast<AbstractTensor>(ret);
  844. AbstractTensorPtr expect = dyn_cast<AbstractTensor>(FromValue(tensor_map[0].second));
  845. ASSERT_TRUE(*tensor_ret == *expect);
  846. }
  847. TEST_F(TestPrim, test_DictGetItem2) {
  848. PrimitivePtr dictGetItem = prim::kPrimDictGetItem;
  849. std::shared_ptr<FuncGraph> func_graph = MakeFuncGraph(dictGetItem, 2);
  850. AbstractBasePtr arr_x = ArrayOfTensor(UTPrimUtils::kF64, {3, 4, 5});
  851. AbstractBasePtr arr_y = ArrayOfTensor(UTPrimUtils::kF64, {1, 4, 5});
  852. AbstractBasePtr arr_z = ArrayOfTensor(UTPrimUtils::kF64, {3, 1, 5});
  853. std::vector<AbstractAttribute> array_map = {{"x", arr_x}, {"y", arr_y}, {"z", arr_z}};
  854. AbstractDictionaryPtr array_dict = std::make_shared<AbstractDictionary>(array_map);
  855. AbstractBasePtr key = abstract::FromValue("x");
  856. AbstractBasePtrList args_spec_list = {array_dict, key};
  857. AbstractBasePtr ret = engine_->Run(func_graph, args_spec_list).inferred->abstract();
  858. AbstractTensorPtr tensor_ret = dyn_cast<AbstractTensor>(ret);
  859. AbstractTensorPtr expect = dyn_cast<AbstractTensor>(arr_x);
  860. ASSERT_TRUE(*tensor_ret == *expect);
  861. }
  862. */
  863. } // namespace abstract
  864. } // namespace mindspore