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 <flatbuffers/flatbuffers.h>
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#include <graph/generated/node_generated.h>
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#include <graph/generated/graph_generated.h>
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#include <graph/Node.h>
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#include <graph/Graph.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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2019-06-06 14:21:15 +02:00
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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 VariableSpaceTest : public testing::Test {
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public:
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int *cShape = new int[8]{2, 2, 2, 2, 1, 0, 1, 99};
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int *fShape = new int[8]{2, 2, 2, 1, 2, 0, 1, 102};
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~VariableSpaceTest() {
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delete[] cShape;
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delete[] fShape;
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}
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};
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TEST_F(VariableSpaceTest, SettersGettersTest1) {
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auto space1 = new VariableSpace();
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auto arrayA = NDArrayFactory::create_<float>('c', {5, 5});
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auto arrayB = NDArrayFactory::create_<float>('c', {3, 3});
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space1->putVariable(1, arrayA);
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space1->putVariable(2, arrayB);
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auto arrayRA = space1->getVariable(1);
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auto arrayRB = space1->getVariable(2);
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ASSERT_TRUE(arrayA == arrayRA->getNDArray());
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ASSERT_TRUE(arrayB == arrayRB->getNDArray());
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// we should survive this call
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delete space1;
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}
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TEST_F(VariableSpaceTest, SettersGettersTest2) {
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auto space1 = new VariableSpace();
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auto arrayA = NDArrayFactory::create_<float>('c', {5, 5});
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auto arrayB = NDArrayFactory::create_<float>('c', {3, 3});
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auto varA = new Variable(arrayA);
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auto varB = new Variable(arrayB);
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varA->markExternal(true);
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space1->putVariable(-1, varA);
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space1->putVariable(2, varB);
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Nd4jLong expExternal = (25 * 4) + (8 * 8);
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Nd4jLong expInternal = (9 * 4) + (8 * 8);
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ASSERT_EQ(expExternal, space1->externalMemory());
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ASSERT_EQ(expInternal, space1->internalMemory());
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delete space1;
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}
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TEST_F(VariableSpaceTest, EqualityTest1) {
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VariableSpace space;
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std::string name("myvar");
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auto arrayA = NDArrayFactory::create_<float>('c', {3, 3});
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auto variableA = new Variable(arrayA, name.c_str());
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space.putVariable(1, variableA);
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std::pair<int,int> pair(1,0);
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ASSERT_TRUE(space.hasVariable(1));
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ASSERT_TRUE(space.hasVariable(pair));
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ASSERT_TRUE(space.hasVariable(&name));
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auto rV1 = space.getVariable(1);
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auto rV2 = space.getVariable(pair);
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auto rV3 = space.getVariable(&name);
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ASSERT_TRUE(rV1 == rV2);
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ASSERT_TRUE(rV2 == rV3);
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}
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TEST_F(VariableSpaceTest, EqualityTest2) {
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VariableSpace space;
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auto arrayA = NDArrayFactory::create_<float>('c', {3, 3});
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space.putVariable(1, arrayA);
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std::pair<int,int> pair(1,0);
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ASSERT_TRUE(space.hasVariable(1));
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ASSERT_TRUE(space.hasVariable(pair));
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auto rV1 = space.getVariable(1);
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auto rV2 = space.getVariable(pair);
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ASSERT_TRUE(rV1 == rV2);
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}
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TEST_F(VariableSpaceTest, CloneTests_1) {
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VariableSpace spaceA;
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auto arrayA = NDArrayFactory::create_<float>('c', {3, 3});
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arrayA->assign(1.0);
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spaceA.putVariable(1, arrayA);
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auto spaceB = spaceA.clone();
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std::pair<int,int> pair(1,0);
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ASSERT_TRUE(spaceB->hasVariable(1));
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ASSERT_TRUE(spaceB->hasVariable(pair));
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auto arrayB = spaceB->getVariable(1)->getNDArray();
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ASSERT_TRUE(arrayA->equalsTo(arrayB));
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arrayB->assign(2.0);
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ASSERT_FALSE(arrayA->equalsTo(arrayB));
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delete spaceB;
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}
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TEST_F(VariableSpaceTest, CloneTests_2) {
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VariableSpace spaceA;
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auto arrayA = NDArrayFactory::create_<float>('c', {3, 3});
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arrayA->assign(1.0);
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auto variableA = new Variable(arrayA, "alpha");
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std::string str("alpha");
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std::pair<int, int> pair(2, 3);
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spaceA.putVariable(pair, variableA);
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ASSERT_TRUE(spaceA.hasVariable(&str));
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ASSERT_TRUE(spaceA.hasVariable(pair));
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auto spaceB = spaceA.clone();
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ASSERT_FALSE(spaceB->hasVariable(1));
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ASSERT_FALSE(spaceB->hasVariable(2));
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ASSERT_TRUE(spaceB->hasVariable(pair));
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ASSERT_TRUE(spaceB->hasVariable(&str));
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auto arrayB = spaceB->getVariable(pair)->getNDArray();
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ASSERT_TRUE(arrayA->equalsTo(arrayB));
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arrayB->assign(2.0);
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ASSERT_FALSE(arrayA->equalsTo(arrayB));
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delete spaceB;
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ASSERT_TRUE(spaceA.hasVariable(&str));
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ASSERT_TRUE(spaceA.hasVariable(pair));
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}
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TEST_F(VariableSpaceTest, Test_DType_Conversion_1) {
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/*
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VariableSpace spaceA;
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auto arrayA = NDArrayFactory::create_<float>('c', {3, 3});
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arrayA->assign(1.0);
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auto variableA = new Variable(arrayA, "alpha");
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std::string str("alpha");
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std::pair<int, int> pair(2, 3);
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spaceA.putVariable(pair, variableA);
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auto sd = spaceA.template asT<double>();
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auto sf = sd->template asT<float>();
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ASSERT_TRUE(sf->hasVariable(pair));
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auto xf = sf->getVariable(pair)->getNDArray();
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ASSERT_TRUE(arrayA->isSameShape(xf));
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ASSERT_TRUE(arrayA->equalsTo(xf));
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delete sd;
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delete sf;
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*/
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}
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