336 lines
9.2 KiB
C++
336 lines
9.2 KiB
C++
// OpenSTA, Static Timing Analyzer
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// Copyright (c) 2025, Parallax Software, Inc.
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <https://www.gnu.org/licenses/>.
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//
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// The origin of this software must not be misrepresented; you must not
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// claim that you wrote the original software.
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//
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// Altered source versions must be plainly marked as such, and must not be
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// misrepresented as being the original software.
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//
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// This notice may not be removed or altered from any source distribution.
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#include "WorstSlack.hh"
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#include "Debug.hh"
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#include "Report.hh"
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#include "Mutex.hh"
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#include "Graph.hh"
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#include "Corner.hh"
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#include "Search.hh"
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#include "PathAnalysisPt.hh"
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namespace sta {
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using std::min;
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WorstSlacks::WorstSlacks(StaState *sta) :
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worst_slacks_(sta->corners()->pathAnalysisPtCount(), sta),
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sta_(sta)
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{
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}
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void
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WorstSlacks::worstSlack(const MinMax *min_max,
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// Return values.
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Slack &worst_slack,
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Vertex *&worst_vertex)
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{
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worst_slack = MinMax::min()->initValue();
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worst_vertex = nullptr;
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for (auto corner : *sta_->corners()) {
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PathAPIndex path_ap_index = corner->findPathAnalysisPt(min_max)->index();
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Slack worst_slack1;
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Vertex *worst_vertex1;
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worst_slacks_[path_ap_index].worstSlack(path_ap_index,
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worst_slack1, worst_vertex1);
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if (delayLess(worst_slack1, worst_slack, sta_)) {
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worst_slack = worst_slack1;
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worst_vertex = worst_vertex1;
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}
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}
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}
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void
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WorstSlacks::worstSlack(const Corner *corner,
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const MinMax *min_max,
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// Return values.
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Slack &worst_slack,
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Vertex *&worst_vertex)
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{
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PathAPIndex path_ap_index = corner->findPathAnalysisPt(min_max)->index();
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worst_slacks_[path_ap_index].worstSlack(path_ap_index,
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worst_slack, worst_vertex);
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}
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void
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WorstSlacks::updateWorstSlacks(Vertex *vertex,
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SlackSeq &slacks)
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{
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PathAPIndex path_ap_count = sta_->corners()->pathAnalysisPtCount();
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for (PathAPIndex i = 0; i < path_ap_count; i++)
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worst_slacks_[i].updateWorstSlack(vertex, slacks, i);
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}
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void
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WorstSlacks::worstSlackNotifyBefore(Vertex *vertex)
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{
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WorstSlackSeq::Iterator worst_iter(worst_slacks_);
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while (worst_iter.hasNext()) {
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WorstSlack &worst_slack = worst_iter.next();
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worst_slack.deleteVertexBefore(vertex);
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}
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}
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////////////////////////////////////////////////////////////////
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WorstSlack::WorstSlack(StaState *sta) :
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StaState(sta),
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slack_init_(MinMax::min()->initValue()),
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worst_vertex_(nullptr),
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worst_slack_(slack_init_),
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slack_threshold_(slack_init_),
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queue_(new VertexSet(graph_)),
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min_queue_size_(10),
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max_queue_size_(20)
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{
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}
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WorstSlack::~WorstSlack()
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{
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delete queue_;
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}
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WorstSlack::WorstSlack(const WorstSlack &worst_slack) :
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StaState(worst_slack),
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slack_init_(MinMax::min()->initValue()),
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worst_vertex_(nullptr),
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worst_slack_(slack_init_),
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slack_threshold_(slack_init_),
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queue_(new VertexSet(graph_)),
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min_queue_size_(10),
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max_queue_size_(20)
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{
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}
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void
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WorstSlack::deleteVertexBefore(Vertex *vertex)
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{
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LockGuard lock(lock_);
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if (vertex == worst_vertex_) {
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worst_vertex_ = nullptr;
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worst_slack_ = slack_init_;
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}
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queue_->erase(vertex);
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}
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void
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WorstSlack::worstSlack(PathAPIndex path_ap_index,
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// Return values.
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Slack &worst_slack,
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Vertex *&worst_vertex)
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{
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findWorstSlack(path_ap_index);
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worst_slack = worst_slack_;
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worst_vertex = worst_vertex_;
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}
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void
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WorstSlack::findWorstSlack(PathAPIndex path_ap_index)
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{
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if (worst_vertex_ == nullptr) {
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if (queue_->empty())
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initQueue(path_ap_index);
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else
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findWorstInQueue(path_ap_index);
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}
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}
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void
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WorstSlack::initQueue(PathAPIndex path_ap_index)
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{
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debugPrint(debug_, "wns", 3, "init queue");
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queue_->clear();
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worst_vertex_ = nullptr;
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worst_slack_ = slack_init_;
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slack_threshold_ = slack_init_;
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for(Vertex *vertex : *search_->endpoints()) {
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Slack slack = search_->wnsSlack(vertex, path_ap_index);
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if (!delayEqual(slack, slack_init_)) {
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if (delayLess(slack, worst_slack_, this))
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setWorstSlack(vertex, slack);
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if (delayLessEqual(slack, slack_threshold_, this))
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queue_->insert(vertex);
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int queue_size = queue_->size();
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if (queue_size >= max_queue_size_)
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sortQueue(path_ap_index);
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}
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}
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debugPrint(debug_, "wns", 3, "threshold %s",
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delayAsString(slack_threshold_, this));
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// checkQueue();
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}
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void
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WorstSlack::sortQueue(PathAPIndex path_ap_index)
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{
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if (queue_->size() > 0) {
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debugPrint(debug_, "wns", 3, "sort queue");
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VertexSeq vertices;
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vertices.reserve(queue_->size());
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for (Vertex *vertex : *queue_)
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vertices.push_back(vertex);
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WnsSlackLess slack_less(path_ap_index, this);
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sort(vertices, slack_less);
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int vertex_count = vertices.size();
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int threshold_index = min(min_queue_size_, vertex_count - 1);
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Vertex *threshold_vertex = vertices[threshold_index];
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slack_threshold_ = search_->wnsSlack(threshold_vertex, path_ap_index);
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debugPrint(debug_, "wns", 3, "threshold %s",
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delayAsString(slack_threshold_, this));
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// Reinsert vertices with slack < threshold.
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queue_->clear();
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VertexSeq::Iterator queue_iter2(vertices);
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while (queue_iter2.hasNext()) {
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Vertex *vertex = queue_iter2.next();
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Slack slack = search_->wnsSlack(vertex, path_ap_index);
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if (delayGreater(slack, slack_threshold_, this))
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break;
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queue_->insert(vertex);
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}
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max_queue_size_ = queue_->size() * 2;
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Vertex *worst_slack_vertex = vertices[0];
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Slack worst_slack_slack = search_->wnsSlack(worst_slack_vertex, path_ap_index);
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setWorstSlack(worst_slack_vertex, worst_slack_slack);
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}
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}
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void
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WorstSlack::findWorstInQueue(PathAPIndex path_ap_index)
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{
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debugPrint(debug_, "wns", 3, "find worst in queue");
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worst_vertex_ = nullptr;
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worst_slack_ = slack_init_;
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for (Vertex *vertex : *queue_) {
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Slack slack = search_->wnsSlack(vertex, path_ap_index);
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if (delayLess(slack, worst_slack_, this))
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setWorstSlack(vertex, slack);
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}
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}
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void
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WorstSlack::checkQueue(PathAPIndex path_ap_index)
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{
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VertexSeq ends;
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for(Vertex *end : *search_->endpoints()) {
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if (delayLessEqual(search_->wnsSlack(end, path_ap_index),
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slack_threshold_, this))
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ends.push_back(end);
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}
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WnsSlackLess slack_less(path_ap_index, this);
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sort(ends, slack_less);
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VertexSet end_set(graph_);
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for (Vertex *end : ends) {
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end_set.insert(end);
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if (!queue_->hasKey(end)
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&& delayLessEqual(search_->wnsSlack(end, path_ap_index),
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slack_threshold_, this))
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report_->reportLine("WorstSlack queue missing %s %s < %s",
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end->name(network_),
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delayAsString(search_->wnsSlack(end, path_ap_index), this),
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delayAsString(slack_threshold_, this));
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}
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for (Vertex *end : *queue_) {
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if (!end_set.hasKey(end))
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report_->reportLine("WorstSlack queue extra %s %s > %s",
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end->name(network_),
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delayAsString(search_->wnsSlack(end, path_ap_index), this),
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delayAsString(slack_threshold_, this));
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}
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}
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void
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WorstSlack::updateWorstSlack(Vertex *vertex,
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SlackSeq &slacks,
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PathAPIndex path_ap_index)
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{
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// Do not touch the state unless queue has been initialized
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if (!queue_->empty()) {
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Slack slack = slacks[path_ap_index];
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// Locking is required because ArrivalVisitor is called by multiple
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// threads.
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LockGuard lock(lock_);
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if (worst_vertex_
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&& delayLess(slack, worst_slack_, this))
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setWorstSlack(vertex, slack);
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else if (vertex == worst_vertex_)
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// Mark worst slack as unknown (updated by findWorstSlack().
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worst_vertex_ = nullptr;
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if (!delayEqual(slack, slack_init_)
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&& delayLessEqual(slack, slack_threshold_, this)) {
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debugPrint(debug_, "wns", 3, "insert %s %s",
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vertex->name(network_),
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delayAsString(slack, this));
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queue_->insert(vertex);
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}
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else {
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debugPrint(debug_, "wns", 3, "delete %s %s",
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vertex->name(network_),
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delayAsString(slack, this));
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queue_->erase(vertex);
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}
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//checkQueue(path_ap_index);
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}
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}
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void
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WorstSlack::setWorstSlack(Vertex *vertex,
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Slack slack)
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{
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debugPrint(debug_, "wns", 3, "%s %s",
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vertex->name(network_),
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delayAsString(slack, this));
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worst_vertex_ = vertex;
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worst_slack_ = slack;
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}
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////////////////////////////////////////////////////////////////
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WnsSlackLess::WnsSlackLess(PathAPIndex path_ap_index,
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const StaState *sta) :
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path_ap_index_(path_ap_index),
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search_(sta->search())
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{
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}
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bool
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WnsSlackLess::operator()(Vertex *vertex1,
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Vertex *vertex2)
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{
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return delayLess(search_->wnsSlack(vertex1, path_ap_index_),
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search_->wnsSlack(vertex2, path_ap_index_),
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search_);
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}
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} // namespace
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