2019-06-06 14:21:15 +02:00
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/*******************************************************************************
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* Copyright (c) 2015-2018 Skymind, Inc.
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*
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* This program and the accompanying materials are made available under the
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* terms of the Apache License, Version 2.0 which is available at
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* https://www.apache.org/licenses/LICENSE-2.0.
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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* License for the specific language governing permissions and limitations
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* under the License.
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*
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* SPDX-License-Identifier: Apache-2.0
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******************************************************************************/
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//
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// @author raver119@gmail.com
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//
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#include "testlayers.h"
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#include <ops/declarable/CustomOperations.h>
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2020-03-02 10:49:41 +01:00
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#include <array/NDArray.h>
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#include <legacy/NativeOps.h>
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2019-06-06 14:21:15 +02:00
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#include <helpers/BitwiseUtils.h>
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2020-03-02 10:49:41 +01:00
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using namespace sd;
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using namespace sd::graph;
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2019-06-06 14:21:15 +02:00
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class SingleDimTests : public testing::Test {
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public:
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};
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TEST_F(SingleDimTests, Test_Create_1) {
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auto x = NDArrayFactory::create<float>('c', {5}, {1, 2, 3, 4, 5});
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ASSERT_EQ(5, x.lengthOf());
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ASSERT_EQ(1, x.rankOf());
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ASSERT_TRUE(x.isVector());
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ASSERT_TRUE(x.isRowVector());
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ASSERT_FALSE(x.isMatrix());
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}
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TEST_F(SingleDimTests, Test_Add_1) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto exp = NDArrayFactory::create<float>('c', {3}, {2, 3, 4});
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x += 1.0f;
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ASSERT_TRUE(exp.isSameShape(&x));
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ASSERT_TRUE(exp.equalsTo(&x));
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}
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TEST_F(SingleDimTests, Test_Pairwise_1) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto exp = NDArrayFactory::create<float>('c', {3}, {2, 4, 6});
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x += x;
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ASSERT_TRUE(exp.isSameShape(&x));
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ASSERT_TRUE(exp.equalsTo(&x));
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}
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TEST_F(SingleDimTests, Test_Concat_1) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto y = NDArrayFactory::create<float>('c', {3}, {4, 5, 6});
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auto exp = NDArrayFactory::create<float>('c', {6}, {1, 2, 3, 4, 5, 6});
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2020-03-02 10:49:41 +01:00
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sd::ops::concat op;
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2020-01-30 08:07:24 +01:00
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auto result = op.evaluate({&x, &y}, {}, {0});
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2019-06-06 14:21:15 +02:00
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ASSERT_EQ(ND4J_STATUS_OK, result->status());
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auto z = result->at(0);
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ASSERT_TRUE(exp.isSameShape(z));
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ASSERT_TRUE(exp.equalsTo(z));
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delete result;
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}
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TEST_F(SingleDimTests, Test_Reduce_1) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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float r = x.reduceNumber(reduce::Sum).e<float>(0);
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ASSERT_NEAR(6.0f, r, 1e-5f);
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}
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TEST_F(SingleDimTests, Test_IndexReduce_1) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto r = x.indexReduceNumber(indexreduce::IndexMax).e<int>(0);
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ASSERT_NEAR(2, r, 1e-5f);
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}
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TEST_F(SingleDimTests, Test_ExpandDims_1) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto exp = NDArrayFactory::create<float>('c', {1, 3}, {1, 2, 3});
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2020-03-02 10:49:41 +01:00
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sd::ops::expand_dims op;
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2020-01-30 08:07:24 +01:00
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auto result = op.evaluate({&x}, {}, {0});
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2019-06-06 14:21:15 +02:00
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ASSERT_EQ(ND4J_STATUS_OK, result->status());
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auto z = result->at(0);
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ASSERT_TRUE(exp.isSameShape(z));
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ASSERT_TRUE(exp.equalsTo(z));
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delete result;
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}
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TEST_F(SingleDimTests, Test_ExpandDims_2) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto exp = NDArrayFactory::create<float>('c', {3, 1}, {1, 2, 3});
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2020-03-02 10:49:41 +01:00
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sd::ops::expand_dims op;
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auto result = op.evaluate({&x}, {}, {1});
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2019-06-06 14:21:15 +02:00
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ASSERT_EQ(ND4J_STATUS_OK, result->status());
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auto z = result->at(0);
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ASSERT_TRUE(exp.isSameShape(z));
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ASSERT_TRUE(exp.equalsTo(z));
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delete result;
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}
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TEST_F(SingleDimTests, Test_Squeeze_1) {
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std::vector<Nd4jLong> vecS({1});
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std::vector<float> vecB({3.0f});
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auto x = NDArrayFactory::create<float>('c', vecS, vecB);
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auto exp = NDArrayFactory::create<float>(3.0f);
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2020-03-02 10:49:41 +01:00
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sd::ops::squeeze op;
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2020-01-30 08:07:24 +01:00
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auto result = op.evaluate({&x}, {}, {});
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2019-06-06 14:21:15 +02:00
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ASSERT_EQ(ND4J_STATUS_OK, result->status());
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auto z = result->at(0);
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ASSERT_EQ(exp.rankOf(), z->rankOf());
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ASSERT_TRUE(exp.equalsTo(z));
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delete result;
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}
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TEST_F(SingleDimTests, Test_Squeeze_2) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto exp = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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2020-03-02 10:49:41 +01:00
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sd::ops::squeeze op;
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2020-01-30 08:07:24 +01:00
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auto result = op.evaluate({&x}, {}, {});
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2019-06-06 14:21:15 +02:00
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ASSERT_EQ(ND4J_STATUS_OK, result->status());
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auto z = result->at(0);
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ASSERT_TRUE(exp.isSameShape(z));
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ASSERT_TRUE(exp.equalsTo(z));
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delete result;
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}
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TEST_F(SingleDimTests, Test_Reshape_1) {
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auto x = NDArrayFactory::create<float>('c', {1, 3}, {1, 2, 3});
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auto exp = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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2020-03-02 10:49:41 +01:00
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sd::ops::reshape op;
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2020-01-30 08:07:24 +01:00
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auto result = op.evaluate({&x}, {}, {-99, 3});
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2019-06-06 14:21:15 +02:00
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ASSERT_EQ(ND4J_STATUS_OK, result->status());
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auto z = result->at(0);
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ASSERT_TRUE(exp.isSameShape(z));
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ASSERT_TRUE(exp.equalsTo(z));
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delete result;
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}
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TEST_F(SingleDimTests, Test_Reshape_2) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto exp = NDArrayFactory::create<float>('c', {1, 3}, {1, 2, 3});
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2020-03-02 10:49:41 +01:00
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sd::ops::reshape op;
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2020-01-30 08:07:24 +01:00
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auto result = op.evaluate({&x}, {}, {-99, 1, 3});
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2019-06-06 14:21:15 +02:00
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ASSERT_EQ(ND4J_STATUS_OK, result->status());
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auto z = result->at(0);
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ASSERT_TRUE(exp.isSameShape(z));
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ASSERT_TRUE(exp.equalsTo(z));
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delete result;
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}
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TEST_F(SingleDimTests, Test_Permute_1) {
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auto x = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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auto exp = NDArrayFactory::create<float>('c', {3}, {1, 2, 3});
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2020-03-02 10:49:41 +01:00
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sd::ops::permute op;
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auto result = op.evaluate({&x}, {}, {0});
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2019-06-06 14:21:15 +02:00
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ASSERT_EQ(ND4J_STATUS_OK, result->status());
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auto z = result->at(0);
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ASSERT_TRUE(exp.isSameShape(z));
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ASSERT_TRUE(exp.equalsTo(z));
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delete result;
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}
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