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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// Created by raver119 on 16/11/17.
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//
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#include <graph/FlowPath.h>
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2020-03-02 10:49:41 +01:00
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namespace sd {
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2019-06-06 14:21:15 +02:00
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namespace graph {
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void FlowPath::ensureNode(int nodeId) {
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if (_states.count(nodeId) == 0) {
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NodeState state(nodeId);
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_states[nodeId] = state;
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}
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}
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void FlowPath::ensureFrame(int frameId) {
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if (_frames.count(frameId) == 0) {
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FrameState state(frameId);
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_frames[frameId] = state;
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}
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}
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void FlowPath::setInnerTime(int nodeId, Nd4jLong time) {
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ensureNode(nodeId);
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_states[nodeId].setInnerTime(time);
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}
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void FlowPath::setOuterTime(int nodeId, Nd4jLong time) {
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ensureNode(nodeId);
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_states[nodeId].setOuterTime(time);
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}
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Nd4jLong FlowPath::innerTime(int nodeId) {
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ensureNode(nodeId);
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return _states[nodeId].innerTime();
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}
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Nd4jLong FlowPath::outerTime(int nodeId) {
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ensureNode(nodeId);
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return _states[nodeId].outerTime();
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}
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bool FlowPath::isNodeActive(int nodeId) {
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ensureNode(nodeId);
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return _states[nodeId].isActive();
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}
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void FlowPath::markNodeActive(int nodeId, bool isActive) {
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ensureNode(nodeId);
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_states[nodeId].markActive(isActive);
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}
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int FlowPath::branch(int nodeId){
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ensureNode(nodeId);
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return _states[nodeId].branch();
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}
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void FlowPath::markBranch(int nodeId, int index) {
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ensureNode(nodeId);
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_states[nodeId].markBranch(index);
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}
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bool FlowPath::isFrameActive(Nd4jLong frameId) {
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ensureFrame(frameId);
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return _frames[frameId].wasActivated();
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}
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void FlowPath::markFrameActive(Nd4jLong frameId, bool isActive) {
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ensureFrame(frameId);
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_frames[frameId].markActivated(isActive);
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}
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bool FlowPath::isRewindPlanned(Nd4jLong frameId) {
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return _frames[frameId].isRewindPlanned();
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}
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void FlowPath::planRewind(Nd4jLong frameId, bool reallyRewind) {
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_frames[frameId].planRewind(reallyRewind);
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}
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int FlowPath::getRewindPosition(Nd4jLong frameId) {
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return _frames[frameId].getRewindPosition();
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}
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void FlowPath::setRewindPosition(Nd4jLong frameId, int position) {
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_frames[frameId].setRewindPosition(position);
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}
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void FlowPath::setRewindPositionOnce(Nd4jLong frameId, int position) {
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_frames[frameId].setRewindPositionOnce(position);
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}
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void FlowPath::registerFrame(Nd4jLong frameId) {
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if (_frames.count(frameId) == 0)
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ensureFrame(frameId);
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}
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void FlowPath::forgetFrame(Nd4jLong frameId) {
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if (_frames.count(frameId) > 0)
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_frames.erase(frameId);
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}
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void FlowPath::incrementNumberOfCycles(Nd4jLong frameId) {
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_frames[frameId].incrementNumberOfCycles();
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}
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Nd4jLong FlowPath::getNumberOfCycles(Nd4jLong frameId) {
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return _frames[frameId].getNumberOfCycles();
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}
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bool FlowPath::wasExecuted(int nodeId) {
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return _states[nodeId].wasExecuted();
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}
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void FlowPath::markExecuted(int nodeId, bool wasExecuted) {
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_states[nodeId].markExecuted(wasExecuted);
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}
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GraphProfile* FlowPath::profile() {
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return &_profile;
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}
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}
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}
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