Files
openvino/docs/template_plugin/tests/functional/op_reference/mod.cpp
David Nam eb7d7e4413 Migrate arithmetic1 to template plugin test (#8052)
* Migrate arithmetic1 to template plugin test

* Remove backend tests of arithmetic1
2021-10-20 19:16:51 +03:00

252 lines
8.9 KiB
C++

// Copyright (C) 2018-2021 Intel Corporation
// SPDX-License-Identifier: Apache-2.0
//
#include <gtest/gtest.h>
#include "base_reference_test.hpp"
#include "openvino/op/mod.hpp"
using namespace ov;
using namespace reference_tests;
namespace {
struct ModParams {
template <class IT>
ModParams(const PartialShape& iShape1,
const PartialShape& iShape2,
const element::Type& iType,
const std::vector<IT>& iValues1,
const std::vector<IT>& iValues2,
const std::vector<IT>& oValues)
: pshape1(iShape1),
pshape2(iShape2),
inType(iType),
outType(iType),
inputData1(CreateTensor(iType, iValues1)),
inputData2(CreateTensor(iType, iValues2)),
refData(CreateTensor(iType, oValues)) {}
PartialShape pshape1;
PartialShape pshape2;
element::Type inType;
element::Type outType;
runtime::Tensor inputData1;
runtime::Tensor inputData2;
runtime::Tensor refData;
};
class ReferenceModLayerTest : public testing::TestWithParam<ModParams>, public CommonReferenceTest {
public:
void SetUp() override {
auto params = GetParam();
function = CreateFunction(params.pshape1, params.pshape2, params.inType, params.outType);
inputData = {params.inputData1, params.inputData2};
refOutData = {params.refData};
}
static std::string getTestCaseName(const testing::TestParamInfo<ModParams>& obj) {
auto param = obj.param;
std::ostringstream result;
result << "iShape1=" << param.pshape1 << "_";
result << "iShape2=" << param.pshape2 << "_";
result << "iType=" << param.inType << "_";
result << "oType=" << param.outType;
return result.str();
}
private:
static std::shared_ptr<Function> CreateFunction(const PartialShape& input_shape1,
const PartialShape& input_shape2,
const element::Type& input_type,
const element::Type& expected_output_type) {
const auto in1 = std::make_shared<op::v0::Parameter>(input_type, input_shape1);
const auto in2 = std::make_shared<op::v0::Parameter>(input_type, input_shape2);
const auto mod = std::make_shared<op::v1::Mod>(in1, in2);
return std::make_shared<Function>(NodeVector{mod}, ParameterVector{in1, in2});
}
};
class ReferenceModInPlaceLayerTest : public testing::TestWithParam<ModParams>, public CommonReferenceTest {
public:
void SetUp() override {
auto params = GetParam();
function = CreateFunction(params.pshape1, params.pshape2, params.inType, params.outType);
inputData = {params.inputData1, params.inputData2};
refOutData = {params.refData};
}
static std::string getTestCaseName(const testing::TestParamInfo<ModParams>& obj) {
auto param = obj.param;
std::ostringstream result;
result << "iShape1=" << param.pshape1 << "_";
result << "iShape2=" << param.pshape2 << "_";
result << "iType=" << param.inType << "_";
result << "oType=" << param.outType;
return result.str();
}
private:
static std::shared_ptr<Function> CreateFunction(const PartialShape& input_shape1,
const PartialShape& input_shape2,
const element::Type& input_type,
const element::Type& expected_output_type) {
const auto in1 = std::make_shared<op::v0::Parameter>(input_type, input_shape1);
const auto in2 = std::make_shared<op::v0::Parameter>(input_type, input_shape2);
auto mod = std::make_shared<op::v1::Mod>(in1, in2);
mod = std::make_shared<op::v1::Mod>(mod, mod);
return std::make_shared<Function>(NodeVector{mod}, ParameterVector{in1, in2});
}
};
TEST_P(ReferenceModLayerTest, ModWithHardcodedRefs) {
Exec();
}
TEST_P(ReferenceModInPlaceLayerTest, ModWithHardcodedRefs) {
Exec();
}
template <element::Type_t IN_ET>
std::vector<ModParams> generateParamsForMod() {
using T = typename element_type_traits<IN_ET>::value_type;
std::vector<ModParams> params{
ModParams(ov::PartialShape{1, 2},
ov::PartialShape{1, 2},
IN_ET,
std::vector<T>{256, 56},
std::vector<T>{256, 56},
std::vector<T>{0, 0}),
ModParams(ov::PartialShape{2, 2},
ov::PartialShape{2, 2},
IN_ET,
std::vector<T>{256, 56, 21, 14},
std::vector<T>{112, 56, 6, 8},
std::vector<T>{32, 0, 3, 6}),
ModParams(ov::PartialShape{1, 2},
ov::PartialShape{3, 2, 2},
IN_ET,
std::vector<T>{1, 2},
std::vector<T>{5, 6, 7, 8, 2, 3, 1, 5, 6, 7, 1, 3},
std::vector<T>{1, 2, 1, 2, 1, 2, 0, 2, 1, 2, 0, 2}),
ModParams(ov::PartialShape{1},
ov::PartialShape{1},
IN_ET,
std::vector<T>{57},
std::vector<T>{13},
std::vector<T>{5}),
ModParams(ov::PartialShape{2, 2},
ov::PartialShape{1},
IN_ET,
std::vector<T>{2, 4, 7, 8},
std::vector<T>{8},
std::vector<T>{2, 4, 7, 0})
};
return params;
}
template <element::Type_t IN_ET>
std::vector<ModParams> generateParamsForModNegative() {
using T = typename element_type_traits<IN_ET>::value_type;
std::vector<ModParams> params{
ModParams(ov::PartialShape{2, 2},
ov::PartialShape{2, 2},
IN_ET,
std::vector<T>{-57, -14, -12, -6},
std::vector<T>{13, -7, 5, -5},
std::vector<T>{-5, 0, -2, -1})
};
return params;
}
template <element::Type_t IN_ET>
std::vector<ModParams> generateParamsForModInPlace() {
using T = typename element_type_traits<IN_ET>::value_type;
std::vector<ModParams> params{
ModParams(ov::PartialShape{2, 2},
ov::PartialShape{2, 2},
IN_ET,
std::vector<T>{1, 2, 3, 4},
std::vector<T>{5, 6, 7, 8},
std::vector<T>{0, 0, 0, 0})
};
return params;
}
std::vector<ModParams> generateCombinedParamsForMod() {
const std::vector<std::vector<ModParams>> allTypeParams{
generateParamsForMod<element::Type_t::f32>(),
generateParamsForMod<element::Type_t::f16>(),
generateParamsForMod<element::Type_t::i64>(),
generateParamsForMod<element::Type_t::i32>()
};
std::vector<ModParams> combinedParams;
for (const auto& params : allTypeParams) {
combinedParams.insert(combinedParams.end(), params.begin(), params.end());
}
return combinedParams;
}
std::vector<ModParams> generateCombinedParamsForModNegative() {
const std::vector<std::vector<ModParams>> allTypeParams{
generateParamsForModNegative<element::Type_t::f32>(),
generateParamsForModNegative<element::Type_t::f16>(),
generateParamsForModNegative<element::Type_t::i64>(),
generateParamsForModNegative<element::Type_t::i32>()
};
std::vector<ModParams> combinedParams;
for (const auto& params : allTypeParams) {
combinedParams.insert(combinedParams.end(), params.begin(), params.end());
}
return combinedParams;
}
std::vector<ModParams> generateCombinedParamsForModInPlace() {
const std::vector<std::vector<ModParams>> allTypeParams{
generateParamsForModInPlace<element::Type_t::f32>(),
generateParamsForModInPlace<element::Type_t::f16>(),
generateParamsForModInPlace<element::Type_t::i64>(),
generateParamsForModInPlace<element::Type_t::i32>()
};
std::vector<ModParams> combinedParams;
for (const auto& params : allTypeParams) {
combinedParams.insert(combinedParams.end(), params.begin(), params.end());
}
return combinedParams;
}
INSTANTIATE_TEST_SUITE_P(
smoke_Mod_With_Hardcoded_Refs,
ReferenceModLayerTest,
::testing::ValuesIn(generateCombinedParamsForMod()),
ReferenceModLayerTest::getTestCaseName);
INSTANTIATE_TEST_SUITE_P(
smoke_Mod_Negative_With_Hardcoded_Refs,
ReferenceModLayerTest,
::testing::ValuesIn(generateCombinedParamsForModNegative()),
ReferenceModLayerTest::getTestCaseName);
INSTANTIATE_TEST_SUITE_P(
smoke_Mod_InPlace_With_Hardcoded_Refs,
ReferenceModInPlaceLayerTest,
::testing::ValuesIn(generateCombinedParamsForModInPlace()),
ReferenceModInPlaceLayerTest::getTestCaseName);
} // namespace