/* Copyright 2018 The TensorFlow Authors. All Rights Reserved. Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License. ==============================================================================*/ #include #include "tensorflow/contrib/lite/interpreter.h" #include "tensorflow/contrib/lite/kernels/register.h" #include "tensorflow/contrib/lite/kernels/test_util.h" #include "tensorflow/contrib/lite/model.h" namespace tflite { namespace { using ::testing::ElementsAreArray; class MaxMinOpModel : public SingleOpModel { public: MaxMinOpModel(tflite::BuiltinOperator op, const TensorData& input1, const TensorData& input2, const TensorType& output) { input1_ = AddInput(input1); input2_ = AddInput(input2); output_ = AddOutput(output); SetBuiltinOp(op, BuiltinOptions_MaximumMinimumOptions, CreateMaximumMinimumOptions(builder_).Union()); BuildInterpreter({GetShape(input1_), GetShape(input2_)}); } template void SetInput1(std::initializer_list data) { PopulateTensor(input1_, data); } template void SetInput2(std::initializer_list data) { PopulateTensor(input2_, data); } template std::vector GetOutput() { return ExtractVector(output_); } std::vector GetOutputShape() { return GetTensorShape(output_); } protected: int input1_; int input2_; int output_; }; template void TestModel(tflite::BuiltinOperator op, const TensorData& input1, const TensorData& input2, const TensorData& output, std::initializer_list input1_values, std::initializer_list input2_values, std::initializer_list output_values) { MaxMinOpModel m(op, input1, input2, output.type); m.SetInput1(input1_values); m.SetInput2(input2_values); m.Invoke(); EXPECT_THAT(m.GetOutputShape(), ElementsAreArray(output.shape)); EXPECT_THAT(m.GetOutput(), ElementsAreArray(output_values)); } template <> void TestModel(tflite::BuiltinOperator op, const TensorData& input1, const TensorData& input2, const TensorData& output, std::initializer_list input1_values, std::initializer_list input2_values, std::initializer_list output_values) { MaxMinOpModel m(op, input1, input2, output.type); m.SetInput1(input1_values); m.SetInput2(input2_values); m.Invoke(); EXPECT_THAT(m.GetOutputShape(), ElementsAreArray(output.shape)); EXPECT_THAT(m.GetOutput(), ElementsAreArray(ArrayFloatNear(output_values))); } TEST(MaximumOpTest, FloatTest) { std::initializer_list data1 = {1.0, 0.0, -1.0, 11.0, -2.0, -1.44}; std::initializer_list data2 = {-1.0, 0.0, 1.0, 12.0, -3.0, -1.43}; TestModel(BuiltinOperator_MAXIMUM, {TensorType_FLOAT32, {3, 1, 2}}, {TensorType_FLOAT32, {3, 1, 2}}, {TensorType_FLOAT32, {3, 1, 2}}, data1, data2, {1.0, 0.0, 1.0, 12.0, -2.0, -1.43}); TestModel(BuiltinOperator_MINIMUM, {TensorType_FLOAT32, {3, 1, 2}}, {TensorType_FLOAT32, {3, 1, 2}}, {TensorType_FLOAT32, {3, 1, 2}}, data1, data2, {-1.0, 0.0, -1.0, 11.0, -3.0, -1.44}); } TEST(MaxMinOpTest, Uint8Test) { std::initializer_list data1 = {1, 0, 2, 11, 2, 23}; std::initializer_list data2 = {0, 0, 1, 12, 255, 1}; TestModel(BuiltinOperator_MAXIMUM, {TensorType_UINT8, {3, 1, 2}}, {TensorType_UINT8, {3, 1, 2}}, {TensorType_UINT8, {3, 1, 2}}, data1, data2, {1, 0, 2, 12, 255, 23}); TestModel(BuiltinOperator_MINIMUM, {TensorType_UINT8, {3, 1, 2}}, {TensorType_UINT8, {3, 1, 2}}, {TensorType_UINT8, {3, 1, 2}}, data1, data2, {0, 0, 1, 11, 2, 1}); } TEST(MaximumOpTest, FloatWithBroadcastTest) { std::initializer_list data1 = {1.0, 0.0, -1.0, -2.0, -1.44, 11.0}; std::initializer_list data2 = {0.5, 2.0}; TestModel(BuiltinOperator_MAXIMUM, {TensorType_FLOAT32, {3, 1, 2}}, {TensorType_FLOAT32, {2}}, {TensorType_FLOAT32, {3, 1, 2}}, data1, data2, {1.0, 2.0, 0.5, 2.0, 0.5, 11.0}); TestModel(BuiltinOperator_MINIMUM, {TensorType_FLOAT32, {3, 1, 2}}, {TensorType_FLOAT32, {2}}, {TensorType_FLOAT32, {3, 1, 2}}, data1, data2, {0.5, 0.0, -1.0, -2.0, -1.44, 2.0}); } TEST(MaximumOpTest, Int32WithBroadcastTest) { std::initializer_list data1 = {1, 0, -1, -2, 3, 11}; std::initializer_list data2 = {2}; TestModel(BuiltinOperator_MAXIMUM, {TensorType_INT32, {3, 1, 2}}, {TensorType_INT32, {1}}, {TensorType_INT32, {3, 1, 2}}, data1, data2, {2, 2, 2, 2, 3, 11}); TestModel(BuiltinOperator_MINIMUM, {TensorType_INT32, {3, 1, 2}}, {TensorType_INT32, {1}}, {TensorType_INT32, {3, 1, 2}}, data1, data2, {1, 0, -1, -2, 2, 2}); } } // namespace } // namespace tflite int main(int argc, char** argv) { ::tflite::LogToStderr(); ::testing::InitGoogleTest(&argc, argv); return RUN_ALL_TESTS(); }