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Slava Shklyaevfeb87a92018-09-12 14:52:02 +01001/*
2 * Copyright (C) 2018 The Android Open Source Project
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
17#define LOG_TAG "neuralnetworks_hidl_hal_test"
18
19#include "VtsHalNeuralnetworks.h"
20
21#include "Callbacks.h"
22
23namespace android {
24namespace hardware {
25namespace neuralnetworks {
26namespace V1_2 {
27
Slava Shklyaevfeb87a92018-09-12 14:52:02 +010028using V1_0::OperandLifeTime;
Slava Shklyaevfeb87a92018-09-12 14:52:02 +010029using V1_1::ExecutionPreference;
30
31namespace vts {
32namespace functional {
33
Xusong Wang1a06e772018-10-31 08:43:12 -070034using ::android::hardware::neuralnetworks::V1_2::implementation::ExecutionCallback;
35using ::android::hardware::neuralnetworks::V1_2::implementation::PreparedModelCallback;
Slava Shklyaevfeb87a92018-09-12 14:52:02 +010036
37///////////////////////// UTILITY FUNCTIONS /////////////////////////
38
39static void validateGetSupportedOperations(const sp<IDevice>& device, const std::string& message,
40 const Model& model) {
41 SCOPED_TRACE(message + " [getSupportedOperations_1_2]");
42
43 Return<void> ret =
44 device->getSupportedOperations_1_2(model, [&](ErrorStatus status, const hidl_vec<bool>&) {
45 EXPECT_EQ(ErrorStatus::INVALID_ARGUMENT, status);
46 });
47 EXPECT_TRUE(ret.isOk());
48}
49
50static void validatePrepareModel(const sp<IDevice>& device, const std::string& message,
51 const Model& model, ExecutionPreference preference) {
52 SCOPED_TRACE(message + " [prepareModel_1_2]");
53
54 sp<PreparedModelCallback> preparedModelCallback = new PreparedModelCallback();
55 ASSERT_NE(nullptr, preparedModelCallback.get());
56 Return<ErrorStatus> prepareLaunchStatus =
57 device->prepareModel_1_2(model, preference, preparedModelCallback);
58 ASSERT_TRUE(prepareLaunchStatus.isOk());
59 ASSERT_EQ(ErrorStatus::INVALID_ARGUMENT, static_cast<ErrorStatus>(prepareLaunchStatus));
60
61 preparedModelCallback->wait();
62 ErrorStatus prepareReturnStatus = preparedModelCallback->getStatus();
63 ASSERT_EQ(ErrorStatus::INVALID_ARGUMENT, prepareReturnStatus);
Xusong Wang1a06e772018-10-31 08:43:12 -070064 sp<IPreparedModel> preparedModel = getPreparedModel_1_2(preparedModelCallback);
Slava Shklyaevfeb87a92018-09-12 14:52:02 +010065 ASSERT_EQ(nullptr, preparedModel.get());
66}
67
68static bool validExecutionPreference(ExecutionPreference preference) {
69 return preference == ExecutionPreference::LOW_POWER ||
70 preference == ExecutionPreference::FAST_SINGLE_ANSWER ||
71 preference == ExecutionPreference::SUSTAINED_SPEED;
72}
73
74// Primary validation function. This function will take a valid model, apply a
75// mutation to it to invalidate the model, then pass it to interface calls that
76// use the model. Note that the model here is passed by value, and any mutation
77// to the model does not leave this function.
78static void validate(const sp<IDevice>& device, const std::string& message, Model model,
79 const std::function<void(Model*)>& mutation,
80 ExecutionPreference preference = ExecutionPreference::FAST_SINGLE_ANSWER) {
81 mutation(&model);
82 if (validExecutionPreference(preference)) {
83 validateGetSupportedOperations(device, message, model);
84 }
85 validatePrepareModel(device, message, model, preference);
86}
87
88// Delete element from hidl_vec. hidl_vec doesn't support a "remove" operation,
89// so this is efficiently accomplished by moving the element to the end and
90// resizing the hidl_vec to one less.
91template <typename Type>
92static void hidl_vec_removeAt(hidl_vec<Type>* vec, uint32_t index) {
93 if (vec) {
94 std::rotate(vec->begin() + index, vec->begin() + index + 1, vec->end());
95 vec->resize(vec->size() - 1);
96 }
97}
98
99template <typename Type>
100static uint32_t hidl_vec_push_back(hidl_vec<Type>* vec, const Type& value) {
101 // assume vec is valid
102 const uint32_t index = vec->size();
103 vec->resize(index + 1);
104 (*vec)[index] = value;
105 return index;
106}
107
108static uint32_t addOperand(Model* model) {
109 return hidl_vec_push_back(&model->operands,
110 {
111 .type = OperandType::INT32,
112 .dimensions = {},
113 .numberOfConsumers = 0,
114 .scale = 0.0f,
115 .zeroPoint = 0,
116 .lifetime = OperandLifeTime::MODEL_INPUT,
117 .location = {.poolIndex = 0, .offset = 0, .length = 0},
118 });
119}
120
121static uint32_t addOperand(Model* model, OperandLifeTime lifetime) {
122 uint32_t index = addOperand(model);
123 model->operands[index].numberOfConsumers = 1;
124 model->operands[index].lifetime = lifetime;
125 return index;
126}
127
128///////////////////////// VALIDATE MODEL OPERAND TYPE /////////////////////////
129
Michael K. Sanders9233dbe2018-10-30 15:16:54 +0000130static const uint32_t invalidOperandTypes[] = {
131 static_cast<uint32_t>(OperandTypeRange::OPERAND_FUNDAMENTAL_MIN) - 1,
132 static_cast<uint32_t>(OperandTypeRange::OPERAND_FUNDAMENTAL_MAX) + 1,
133 static_cast<uint32_t>(OperandTypeRange::OPERAND_OEM_MIN) - 1,
134 static_cast<uint32_t>(OperandTypeRange::OPERAND_OEM_MAX) + 1,
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100135};
136
137static void mutateOperandTypeTest(const sp<IDevice>& device, const Model& model) {
138 for (size_t operand = 0; operand < model.operands.size(); ++operand) {
Michael K. Sanders9233dbe2018-10-30 15:16:54 +0000139 for (uint32_t invalidOperandType : invalidOperandTypes) {
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100140 const std::string message = "mutateOperandTypeTest: operand " +
141 std::to_string(operand) + " set to value " +
142 std::to_string(invalidOperandType);
143 validate(device, message, model, [operand, invalidOperandType](Model* model) {
144 model->operands[operand].type = static_cast<OperandType>(invalidOperandType);
145 });
146 }
147 }
148}
149
150///////////////////////// VALIDATE OPERAND RANK /////////////////////////
151
152static uint32_t getInvalidRank(OperandType type) {
153 switch (type) {
154 case OperandType::FLOAT32:
155 case OperandType::INT32:
156 case OperandType::UINT32:
Lev Proleev08662c62018-10-01 11:18:31 +0100157 case OperandType::BOOL:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100158 return 1;
Michael K. Sanders5dd84122018-10-12 09:10:15 +0100159 case OperandType::TENSOR_FLOAT16:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100160 case OperandType::TENSOR_FLOAT32:
161 case OperandType::TENSOR_INT32:
162 case OperandType::TENSOR_QUANT8_ASYMM:
Lev Proleev217c4072018-11-13 15:42:36 +0000163 case OperandType::TENSOR_QUANT16_SYMM:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100164 return 0;
165 default:
166 return 0;
167 }
168}
169
170static void mutateOperandRankTest(const sp<IDevice>& device, const Model& model) {
171 for (size_t operand = 0; operand < model.operands.size(); ++operand) {
172 const uint32_t invalidRank = getInvalidRank(model.operands[operand].type);
173 const std::string message = "mutateOperandRankTest: operand " + std::to_string(operand) +
174 " has rank of " + std::to_string(invalidRank);
175 validate(device, message, model, [operand, invalidRank](Model* model) {
176 model->operands[operand].dimensions = std::vector<uint32_t>(invalidRank, 0);
177 });
178 }
179}
180
181///////////////////////// VALIDATE OPERAND SCALE /////////////////////////
182
183static float getInvalidScale(OperandType type) {
184 switch (type) {
185 case OperandType::FLOAT32:
186 case OperandType::INT32:
187 case OperandType::UINT32:
Lev Proleev08662c62018-10-01 11:18:31 +0100188 case OperandType::BOOL:
Michael K. Sanders5dd84122018-10-12 09:10:15 +0100189 case OperandType::TENSOR_FLOAT16:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100190 case OperandType::TENSOR_FLOAT32:
191 return 1.0f;
192 case OperandType::TENSOR_INT32:
193 return -1.0f;
194 case OperandType::TENSOR_QUANT8_ASYMM:
Lev Proleev217c4072018-11-13 15:42:36 +0000195 case OperandType::TENSOR_QUANT16_SYMM:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100196 return 0.0f;
197 default:
198 return 0.0f;
199 }
200}
201
202static void mutateOperandScaleTest(const sp<IDevice>& device, const Model& model) {
203 for (size_t operand = 0; operand < model.operands.size(); ++operand) {
204 const float invalidScale = getInvalidScale(model.operands[operand].type);
205 const std::string message = "mutateOperandScaleTest: operand " + std::to_string(operand) +
206 " has scale of " + std::to_string(invalidScale);
207 validate(device, message, model, [operand, invalidScale](Model* model) {
208 model->operands[operand].scale = invalidScale;
209 });
210 }
211}
212
213///////////////////////// VALIDATE OPERAND ZERO POINT /////////////////////////
214
215static std::vector<int32_t> getInvalidZeroPoints(OperandType type) {
216 switch (type) {
217 case OperandType::FLOAT32:
218 case OperandType::INT32:
219 case OperandType::UINT32:
Lev Proleev08662c62018-10-01 11:18:31 +0100220 case OperandType::BOOL:
Michael K. Sanders5dd84122018-10-12 09:10:15 +0100221 case OperandType::TENSOR_FLOAT16:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100222 case OperandType::TENSOR_FLOAT32:
223 case OperandType::TENSOR_INT32:
224 return {1};
225 case OperandType::TENSOR_QUANT8_ASYMM:
226 return {-1, 256};
Lev Proleev217c4072018-11-13 15:42:36 +0000227 case OperandType::TENSOR_QUANT16_SYMM:
228 return {-32769, -1, 1, 32768};
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100229 default:
230 return {};
231 }
232}
233
234static void mutateOperandZeroPointTest(const sp<IDevice>& device, const Model& model) {
235 for (size_t operand = 0; operand < model.operands.size(); ++operand) {
236 const std::vector<int32_t> invalidZeroPoints =
237 getInvalidZeroPoints(model.operands[operand].type);
238 for (int32_t invalidZeroPoint : invalidZeroPoints) {
239 const std::string message = "mutateOperandZeroPointTest: operand " +
240 std::to_string(operand) + " has zero point of " +
241 std::to_string(invalidZeroPoint);
242 validate(device, message, model, [operand, invalidZeroPoint](Model* model) {
243 model->operands[operand].zeroPoint = invalidZeroPoint;
244 });
245 }
246 }
247}
248
249///////////////////////// VALIDATE EXTRA ??? /////////////////////////
250
251// TODO: Operand::lifetime
252// TODO: Operand::location
253
254///////////////////////// VALIDATE OPERATION OPERAND TYPE /////////////////////////
255
256static void mutateOperand(Operand* operand, OperandType type) {
257 Operand newOperand = *operand;
258 newOperand.type = type;
259 switch (type) {
260 case OperandType::FLOAT32:
261 case OperandType::INT32:
262 case OperandType::UINT32:
Lev Proleev08662c62018-10-01 11:18:31 +0100263 case OperandType::BOOL:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100264 newOperand.dimensions = hidl_vec<uint32_t>();
265 newOperand.scale = 0.0f;
266 newOperand.zeroPoint = 0;
267 break;
Michael K. Sanders5dd84122018-10-12 09:10:15 +0100268 case OperandType::TENSOR_FLOAT16:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100269 case OperandType::TENSOR_FLOAT32:
270 newOperand.dimensions =
271 operand->dimensions.size() > 0 ? operand->dimensions : hidl_vec<uint32_t>({1});
272 newOperand.scale = 0.0f;
273 newOperand.zeroPoint = 0;
274 break;
275 case OperandType::TENSOR_INT32:
276 newOperand.dimensions =
277 operand->dimensions.size() > 0 ? operand->dimensions : hidl_vec<uint32_t>({1});
278 newOperand.zeroPoint = 0;
279 break;
280 case OperandType::TENSOR_QUANT8_ASYMM:
Lev Proleev217c4072018-11-13 15:42:36 +0000281 case OperandType::TENSOR_QUANT16_SYMM:
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100282 newOperand.dimensions =
283 operand->dimensions.size() > 0 ? operand->dimensions : hidl_vec<uint32_t>({1});
284 newOperand.scale = operand->scale != 0.0f ? operand->scale : 1.0f;
285 break;
286 case OperandType::OEM:
287 case OperandType::TENSOR_OEM_BYTE:
288 default:
289 break;
290 }
291 *operand = newOperand;
292}
293
Xusong Wang1a2492f2018-10-05 11:49:13 -0700294static bool mutateOperationOperandTypeSkip(size_t operand, OperandType type, const Model& model) {
295 // Do not test OEM types
296 if (type == model.operands[operand].type || type == OperandType::OEM ||
297 type == OperandType::TENSOR_OEM_BYTE) {
298 return true;
299 }
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100300 for (const Operation& operation : model.operations) {
Xusong Wang1a2492f2018-10-05 11:49:13 -0700301 // Skip mutateOperationOperandTypeTest for the following operations.
302 // - LSH_PROJECTION's second argument is allowed to have any type.
Michael K. Sanders2a010122018-11-28 10:35:08 +0000303 // - ARGMIN and ARGMAX's first argument can be any of
304 // TENSOR_(FLOAT16|FLOAT32|INT32|QUANT8_ASYMM).
305 // - CAST's argument can be any of TENSOR_(FLOAT16|FLOAT32|INT32|QUANT8_ASYMM).
Xusong Wang1a2492f2018-10-05 11:49:13 -0700306 switch (operation.type) {
307 case OperationType::LSH_PROJECTION: {
308 if (operand == operation.inputs[1]) {
309 return true;
310 }
311 } break;
312 case OperationType::CAST:
313 case OperationType::ARGMAX:
314 case OperationType::ARGMIN: {
Michael K. Sanders2a010122018-11-28 10:35:08 +0000315 if (type == OperandType::TENSOR_FLOAT16 || type == OperandType::TENSOR_FLOAT32 ||
316 type == OperandType::TENSOR_INT32 || type == OperandType::TENSOR_QUANT8_ASYMM) {
Xusong Wang1a2492f2018-10-05 11:49:13 -0700317 return true;
318 }
319 } break;
320 default:
321 break;
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100322 }
323 }
324 return false;
325}
326
327static void mutateOperationOperandTypeTest(const sp<IDevice>& device, const Model& model) {
328 for (size_t operand = 0; operand < model.operands.size(); ++operand) {
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100329 for (OperandType invalidOperandType : hidl_enum_range<OperandType>{}) {
Xusong Wang1a2492f2018-10-05 11:49:13 -0700330 if (mutateOperationOperandTypeSkip(operand, invalidOperandType, model)) {
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100331 continue;
332 }
333 const std::string message = "mutateOperationOperandTypeTest: operand " +
334 std::to_string(operand) + " set to type " +
335 toString(invalidOperandType);
336 validate(device, message, model, [operand, invalidOperandType](Model* model) {
337 mutateOperand(&model->operands[operand], invalidOperandType);
338 });
339 }
340 }
341}
342
343///////////////////////// VALIDATE MODEL OPERATION TYPE /////////////////////////
344
Michael K. Sanders9233dbe2018-10-30 15:16:54 +0000345static const uint32_t invalidOperationTypes[] = {
346 static_cast<uint32_t>(OperationTypeRange::OPERATION_FUNDAMENTAL_MIN) - 1,
347 static_cast<uint32_t>(OperationTypeRange::OPERATION_FUNDAMENTAL_MAX) + 1,
348 static_cast<uint32_t>(OperationTypeRange::OPERATION_OEM_MIN) - 1,
349 static_cast<uint32_t>(OperationTypeRange::OPERATION_OEM_MAX) + 1,
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100350};
351
352static void mutateOperationTypeTest(const sp<IDevice>& device, const Model& model) {
353 for (size_t operation = 0; operation < model.operations.size(); ++operation) {
Michael K. Sanders9233dbe2018-10-30 15:16:54 +0000354 for (uint32_t invalidOperationType : invalidOperationTypes) {
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100355 const std::string message = "mutateOperationTypeTest: operation " +
356 std::to_string(operation) + " set to value " +
357 std::to_string(invalidOperationType);
358 validate(device, message, model, [operation, invalidOperationType](Model* model) {
359 model->operations[operation].type =
360 static_cast<OperationType>(invalidOperationType);
361 });
362 }
363 }
364}
365
366///////////////////////// VALIDATE MODEL OPERATION INPUT OPERAND INDEX /////////////////////////
367
368static void mutateOperationInputOperandIndexTest(const sp<IDevice>& device, const Model& model) {
369 for (size_t operation = 0; operation < model.operations.size(); ++operation) {
370 const uint32_t invalidOperand = model.operands.size();
371 for (size_t input = 0; input < model.operations[operation].inputs.size(); ++input) {
372 const std::string message = "mutateOperationInputOperandIndexTest: operation " +
373 std::to_string(operation) + " input " +
374 std::to_string(input);
375 validate(device, message, model, [operation, input, invalidOperand](Model* model) {
376 model->operations[operation].inputs[input] = invalidOperand;
377 });
378 }
379 }
380}
381
382///////////////////////// VALIDATE MODEL OPERATION OUTPUT OPERAND INDEX /////////////////////////
383
384static void mutateOperationOutputOperandIndexTest(const sp<IDevice>& device, const Model& model) {
385 for (size_t operation = 0; operation < model.operations.size(); ++operation) {
386 const uint32_t invalidOperand = model.operands.size();
387 for (size_t output = 0; output < model.operations[operation].outputs.size(); ++output) {
388 const std::string message = "mutateOperationOutputOperandIndexTest: operation " +
389 std::to_string(operation) + " output " +
390 std::to_string(output);
391 validate(device, message, model, [operation, output, invalidOperand](Model* model) {
392 model->operations[operation].outputs[output] = invalidOperand;
393 });
394 }
395 }
396}
397
398///////////////////////// REMOVE OPERAND FROM EVERYTHING /////////////////////////
399
400static void removeValueAndDecrementGreaterValues(hidl_vec<uint32_t>* vec, uint32_t value) {
401 if (vec) {
402 // remove elements matching "value"
403 auto last = std::remove(vec->begin(), vec->end(), value);
404 vec->resize(std::distance(vec->begin(), last));
405
406 // decrement elements exceeding "value"
407 std::transform(vec->begin(), vec->end(), vec->begin(),
408 [value](uint32_t v) { return v > value ? v-- : v; });
409 }
410}
411
412static void removeOperand(Model* model, uint32_t index) {
413 hidl_vec_removeAt(&model->operands, index);
414 for (Operation& operation : model->operations) {
415 removeValueAndDecrementGreaterValues(&operation.inputs, index);
416 removeValueAndDecrementGreaterValues(&operation.outputs, index);
417 }
418 removeValueAndDecrementGreaterValues(&model->inputIndexes, index);
419 removeValueAndDecrementGreaterValues(&model->outputIndexes, index);
420}
421
Xusong Wang1a2492f2018-10-05 11:49:13 -0700422static bool removeOperandSkip(size_t operand, const Model& model) {
423 for (const Operation& operation : model.operations) {
424 // Skip removeOperandTest for the following operations.
425 // - SPLIT's outputs are not checked during prepareModel.
426 if (operation.type == OperationType::SPLIT) {
427 for (const size_t outOprand : operation.outputs) {
428 if (operand == outOprand) {
429 return true;
430 }
431 }
432 }
433 }
434 return false;
435}
436
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100437static void removeOperandTest(const sp<IDevice>& device, const Model& model) {
438 for (size_t operand = 0; operand < model.operands.size(); ++operand) {
Xusong Wang1a2492f2018-10-05 11:49:13 -0700439 if (removeOperandSkip(operand, model)) {
440 continue;
441 }
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100442 const std::string message = "removeOperandTest: operand " + std::to_string(operand);
443 validate(device, message, model,
444 [operand](Model* model) { removeOperand(model, operand); });
445 }
446}
447
448///////////////////////// REMOVE OPERATION /////////////////////////
449
450static void removeOperation(Model* model, uint32_t index) {
451 for (uint32_t operand : model->operations[index].inputs) {
452 model->operands[operand].numberOfConsumers--;
453 }
454 hidl_vec_removeAt(&model->operations, index);
455}
456
457static void removeOperationTest(const sp<IDevice>& device, const Model& model) {
458 for (size_t operation = 0; operation < model.operations.size(); ++operation) {
459 const std::string message = "removeOperationTest: operation " + std::to_string(operation);
460 validate(device, message, model,
461 [operation](Model* model) { removeOperation(model, operation); });
462 }
463}
464
465///////////////////////// REMOVE OPERATION INPUT /////////////////////////
466
Xusong Wang1a2492f2018-10-05 11:49:13 -0700467static bool removeOperationInputSkip(const Operation& op, size_t input) {
468 // Skip removeOperationInputTest for the following operations.
469 // - CONCATENATION has at least 2 inputs, with the last element being INT32.
470 // - CONV_2D, DEPTHWISE_CONV_2D, MAX_POOL_2D, AVERAGE_POOL_2D, L2_POOL_2D, RESIZE_BILINEAR,
471 // SPACE_TO_DEPTH, SPACE_TO_DEPTH, SPACE_TO_BATCH_ND, BATCH_TO_SPACE_ND can have an optional
472 // layout parameter.
473 // - L2_NORMALIZATION, LOCAL_RESPONSE_NORMALIZATION, SOFTMAX can have an optional axis
474 // parameter.
475 switch (op.type) {
476 case OperationType::CONCATENATION: {
477 if (op.inputs.size() > 2 && input != op.inputs.size() - 1) {
478 return true;
479 }
480 } break;
481 case OperationType::DEPTHWISE_CONV_2D: {
482 if ((op.inputs.size() == 12 && input == 11) || (op.inputs.size() == 9 && input == 8)) {
483 return true;
484 }
485 } break;
486 case OperationType::CONV_2D:
487 case OperationType::AVERAGE_POOL_2D:
488 case OperationType::MAX_POOL_2D:
489 case OperationType::L2_POOL_2D: {
490 if ((op.inputs.size() == 11 && input == 10) || (op.inputs.size() == 8 && input == 7)) {
491 return true;
492 }
493 } break;
494 case OperationType::RESIZE_BILINEAR: {
495 if (op.inputs.size() == 4 && input == 3) {
496 return true;
497 }
498 } break;
499 case OperationType::SPACE_TO_DEPTH:
500 case OperationType::DEPTH_TO_SPACE:
501 case OperationType::BATCH_TO_SPACE_ND: {
502 if (op.inputs.size() == 3 && input == 2) {
503 return true;
504 }
505 } break;
506 case OperationType::SPACE_TO_BATCH_ND: {
507 if (op.inputs.size() == 4 && input == 3) {
508 return true;
509 }
510 } break;
511 case OperationType::L2_NORMALIZATION: {
512 if (op.inputs.size() == 2 && input == 1) {
513 return true;
514 }
515 } break;
516 case OperationType::LOCAL_RESPONSE_NORMALIZATION: {
517 if (op.inputs.size() == 6 && input == 5) {
518 return true;
519 }
520 } break;
521 case OperationType::SOFTMAX: {
522 if (op.inputs.size() == 3 && input == 2) {
523 return true;
524 }
525 } break;
526 default:
527 break;
528 }
529 return false;
530}
531
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100532static void removeOperationInputTest(const sp<IDevice>& device, const Model& model) {
533 for (size_t operation = 0; operation < model.operations.size(); ++operation) {
534 for (size_t input = 0; input < model.operations[operation].inputs.size(); ++input) {
535 const Operation& op = model.operations[operation];
Xusong Wang1a2492f2018-10-05 11:49:13 -0700536 if (removeOperationInputSkip(op, input)) {
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100537 continue;
538 }
539 const std::string message = "removeOperationInputTest: operation " +
540 std::to_string(operation) + ", input " +
541 std::to_string(input);
542 validate(device, message, model, [operation, input](Model* model) {
543 uint32_t operand = model->operations[operation].inputs[input];
544 model->operands[operand].numberOfConsumers--;
545 hidl_vec_removeAt(&model->operations[operation].inputs, input);
546 });
547 }
548 }
549}
550
551///////////////////////// REMOVE OPERATION OUTPUT /////////////////////////
552
553static void removeOperationOutputTest(const sp<IDevice>& device, const Model& model) {
554 for (size_t operation = 0; operation < model.operations.size(); ++operation) {
555 for (size_t output = 0; output < model.operations[operation].outputs.size(); ++output) {
556 const std::string message = "removeOperationOutputTest: operation " +
557 std::to_string(operation) + ", output " +
558 std::to_string(output);
559 validate(device, message, model, [operation, output](Model* model) {
560 hidl_vec_removeAt(&model->operations[operation].outputs, output);
561 });
562 }
563 }
564}
565
566///////////////////////// MODEL VALIDATION /////////////////////////
567
568// TODO: remove model input
569// TODO: remove model output
570// TODO: add unused operation
571
572///////////////////////// ADD OPERATION INPUT /////////////////////////
573
Xusong Wang1a2492f2018-10-05 11:49:13 -0700574static bool addOperationInputSkip(const Operation& op) {
Xusong Wanga6b1dc72018-10-22 13:49:00 -0700575 // Skip addOperationInputTest for the following operations.
Xusong Wang1a2492f2018-10-05 11:49:13 -0700576 // - L2_NORMALIZATION, LOCAL_RESPONSE_NORMALIZATION, SOFTMAX can have an optional INT32 axis
577 // parameter.
578 if ((op.type == OperationType::L2_NORMALIZATION && op.inputs.size() == 1) ||
579 (op.type == OperationType::LOCAL_RESPONSE_NORMALIZATION && op.inputs.size() == 5) ||
580 (op.type == OperationType::SOFTMAX && op.inputs.size() == 2)) {
Xusong Wanga6b1dc72018-10-22 13:49:00 -0700581 return true;
582 }
583 return false;
584}
585
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100586static void addOperationInputTest(const sp<IDevice>& device, const Model& model) {
587 for (size_t operation = 0; operation < model.operations.size(); ++operation) {
Xusong Wanga6b1dc72018-10-22 13:49:00 -0700588 if (addOperationInputSkip(model.operations[operation])) {
589 continue;
590 }
Slava Shklyaevfeb87a92018-09-12 14:52:02 +0100591 const std::string message = "addOperationInputTest: operation " + std::to_string(operation);
592 validate(device, message, model, [operation](Model* model) {
593 uint32_t index = addOperand(model, OperandLifeTime::MODEL_INPUT);
594 hidl_vec_push_back(&model->operations[operation].inputs, index);
595 hidl_vec_push_back(&model->inputIndexes, index);
596 });
597 }
598}
599
600///////////////////////// ADD OPERATION OUTPUT /////////////////////////
601
602static void addOperationOutputTest(const sp<IDevice>& device, const Model& model) {
603 for (size_t operation = 0; operation < model.operations.size(); ++operation) {
604 const std::string message =
605 "addOperationOutputTest: operation " + std::to_string(operation);
606 validate(device, message, model, [operation](Model* model) {
607 uint32_t index = addOperand(model, OperandLifeTime::MODEL_OUTPUT);
608 hidl_vec_push_back(&model->operations[operation].outputs, index);
609 hidl_vec_push_back(&model->outputIndexes, index);
610 });
611 }
612}
613
614///////////////////////// VALIDATE EXECUTION PREFERENCE /////////////////////////
615
616static const int32_t invalidExecutionPreferences[] = {
617 static_cast<int32_t>(ExecutionPreference::LOW_POWER) - 1, // lower bound
618 static_cast<int32_t>(ExecutionPreference::SUSTAINED_SPEED) + 1, // upper bound
619};
620
621static void mutateExecutionPreferenceTest(const sp<IDevice>& device, const Model& model) {
622 for (int32_t preference : invalidExecutionPreferences) {
623 const std::string message =
624 "mutateExecutionPreferenceTest: preference " + std::to_string(preference);
625 validate(device, message, model, [](Model*) {},
626 static_cast<ExecutionPreference>(preference));
627 }
628}
629
630////////////////////////// ENTRY POINT //////////////////////////////
631
632void ValidationTest::validateModel(const Model& model) {
633 mutateOperandTypeTest(device, model);
634 mutateOperandRankTest(device, model);
635 mutateOperandScaleTest(device, model);
636 mutateOperandZeroPointTest(device, model);
637 mutateOperationOperandTypeTest(device, model);
638 mutateOperationTypeTest(device, model);
639 mutateOperationInputOperandIndexTest(device, model);
640 mutateOperationOutputOperandIndexTest(device, model);
641 removeOperandTest(device, model);
642 removeOperationTest(device, model);
643 removeOperationInputTest(device, model);
644 removeOperationOutputTest(device, model);
645 addOperationInputTest(device, model);
646 addOperationOutputTest(device, model);
647 mutateExecutionPreferenceTest(device, model);
648}
649
650} // namespace functional
651} // namespace vts
652} // namespace V1_2
653} // namespace neuralnetworks
654} // namespace hardware
655} // namespace android