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commit d122d05822e02dcc08c665ac6ec7513791dd7209 Author: James Cherry <[email protected]> Date: Thu Mar 27 08:58:22 2025 -0700 rebase Signed-off-by: James Cherry <[email protected]> commit 9c7ae9a7ddd885ebdab102d48b3f39dc5dacf948 Author: James Cherry <[email protected]> Date: Tue Mar 25 16:21:52 2025 -0700 write_spice8 Signed-off-by: James Cherry <[email protected]> commit 2bd088f03bb2e414305232d9ebd76c9d1958ec81 Author: James Cherry <[email protected]> Date: Tue Mar 25 10:08:00 2025 -0700 liberty reader stringify Signed-off-by: James Cherry <[email protected]> commit 86974caf063433b37ed1378e7103db4b2e55a04c Author: James Cherry <[email protected]> Date: Mon Mar 24 20:25:39 2025 -0700 ConcreteLiberary/Cell/Port use string Signed-off-by: James Cherry <[email protected]> commit 334476e185149a90b35cdd859e0a760ec9aa242a Author: James Cherry <[email protected]> Date: Mon Mar 24 20:16:08 2025 -0700 leak Signed-off-by: James Cherry <[email protected]> commit 5130e8d44804f483d9099d48bb413a7f3362b4e1 Author: James Cherry <[email protected]> Date: Mon Mar 24 15:57:14 2025 -0700 liberty parser stringify Signed-off-by: James Cherry <[email protected]> commit d48eba88cbde9093e3eb12bcee8eb48ccd444434 Author: James Cherry <[email protected]> Date: Mon Mar 24 11:16:04 2025 -0700 stringify Signed-off-by: James Cherry <[email protected]> commit 6913fb198d642f6b05a94fb1852064706a748b81 Author: James Cherry <[email protected]> Date: Mon Mar 24 11:06:17 2025 -0700 stringify Signed-off-by: James Cherry <[email protected]> commit 371bca08ecf9bf816b7adcbb7ae1458c4073f5f8 Author: James Cherry <[email protected]> Date: Mon Mar 24 10:44:31 2025 -0700 TableTemplate use string Signed-off-by: James Cherry <[email protected]> commit 326465920a1f4a33dbe6be35cff5ca2245b6677e Author: James Cherry <[email protected]> Date: Mon Mar 24 09:04:55 2025 -0700 use string Signed-off-by: James Cherry <[email protected]> commit b93a542ddfbcb5c793c9b533cbe64ea20ec08f4a Author: James Cherry <[email protected]> Date: Mon Mar 24 08:59:01 2025 -0700 timingSenseString -> to_string Signed-off-by: James Cherry <[email protected]> commit 6c121a0ff4231b37df076a62e83832897be62ff4 Author: James Cherry <[email protected]> Date: Sun Mar 23 16:09:47 2025 -0700 Corner use string Signed-off-by: James Cherry <[email protected]> commit 07b989a5a43bf5d341aa6ba2880be663997577d5 Author: James Cherry <[email protected]> Date: Sun Mar 23 16:05:43 2025 -0700 Tag::to_string() Signed-off-by: James Cherry <[email protected]> commit 0b9480cc5a3fa9ef0cb1c6e8ba0d4a29de2df816 Author: James Cherry <[email protected]> Date: Sun Mar 23 15:53:29 2025 -0700 PathAnalysisPt::to_string Signed-off-by: James Cherry <[email protected]> commit a028659091e99270f7501615285730681ed59523 Author: James Cherry <[email protected]> Date: Sun Mar 23 12:19:03 2025 -0700 TimingRole stati alloc Signed-off-by: James Cherry <[email protected]> commit 495be6a57bda23d82e511282f5db7c188b32971b Author: James Cherry <[email protected]> Date: Sat Mar 22 21:36:52 2025 -0700 RiseFall/RiseFallBoth/Transition const Signed-off-by: James Cherry <[email protected]> commit 4c4b28adb383321b1172f4b774c7c4d9a1aee69f Author: James Cherry <[email protected]> Date: Sat Mar 22 20:38:26 2025 -0700 TimingRole const Signed-off-by: James Cherry <[email protected]> commit 54ab58ec7200d420bf3b5e709e74b652af88d508 Author: James Cherry <[email protected]> Date: Sat Mar 22 14:15:07 2025 -0700 const MinMax Signed-off-by: James Cherry <[email protected]> commit f70bb38df17b2ed758c7b6ba5647b7355366c0c0 Author: James Cherry <[email protected]> Date: Sat Mar 22 13:14:31 2025 -0700 Transition::to_string(() Signed-off-by: James Cherry <[email protected]> commit b3f3d67328194351fb8efac2219bcfbcec331552 Author: James Cherry <[email protected]> Date: Sat Mar 22 12:33:25 2025 -0700 RiseFall::to_string Signed-off-by: James Cherry <[email protected]> commit 4046f8a376926dfde980860c51d2c5c70cf4a867 Author: James Cherry <[email protected]> Date: Thu Mar 20 09:04:10 2025 -0700 TimingRole::name -> to_string Signed-off-by: James Cherry <[email protected]> commit cf4dd918eccb05d459f1804ced8365c81a5c6a50 Author: James Cherry <[email protected]> Date: Wed Mar 19 20:14:42 2025 -0700 MinMax::asString -> to_string Signed-off-by: James Cherry <[email protected]> commit d80118117dda25be7b2b4896f19e955645c27f73 Author: James Cherry <[email protected]> Date: Wed Mar 19 17:43:08 2025 -0700 TimingRole::name -> to_string Signed-off-by: James Cherry <[email protected]> commit 284fa25c28aca998e8ce92e7b7bb927697494a13 Author: James Cherry <[email protected]> Date: Wed Mar 19 17:02:27 2025 -0700 comment Signed-off-by: James Cherry <[email protected]> commit 646f19749b997e03dc4cbdf165cd7637010276d3 Author: James Cherry <[email protected]> Date: Wed Mar 19 14:47:40 2025 -0700 FuncExpr::asString -> to_string Signed-off-by: James Cherry <[email protected]> commit 4f73d8e7ad21feac6f41130b7b070f3e345b6fb5 Author: James Cherry <[email protected]> Date: Wed Mar 19 14:04:13 2025 -0700 Vertex::name -> to_string Signed-off-by: James Cherry <[email protected]> commit 7c7ec486aaea86f6607a1ef72bb1a74dca603831 Author: James Cherry <[email protected]> Date: Wed Mar 19 13:39:24 2025 -0700 Vertex::name -> to_string Signed-off-by: James Cherry <[email protected]> Signed-off-by: James Cherry <[email protected]>
511 lines
13 KiB
C++
511 lines
13 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 "CheckMinPulseWidths.hh"
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#include "Debug.hh"
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#include "TimingRole.hh"
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#include "Liberty.hh"
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#include "Network.hh"
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#include "Graph.hh"
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#include "Clock.hh"
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#include "Sdc.hh"
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#include "DcalcAnalysisPt.hh"
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#include "GraphDelayCalc.hh"
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#include "ClkInfo.hh"
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#include "Tag.hh"
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#include "Path.hh"
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#include "Corner.hh"
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#include "PathAnalysisPt.hh"
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#include "SearchPred.hh"
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#include "PathEnd.hh"
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#include "Search.hh"
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#include "search/Crpr.hh"
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namespace sta {
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static void
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minPulseWidth(const Path *path,
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const StaState *sta,
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// Return values.
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float &min_width,
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bool &exists);
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// Abstract base class.
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class MinPulseWidthCheckVisitor
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{
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public:
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MinPulseWidthCheckVisitor() {}
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virtual ~MinPulseWidthCheckVisitor() {}
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virtual void visit(MinPulseWidthCheck &check,
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const StaState *sta) = 0;
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};
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CheckMinPulseWidths::CheckMinPulseWidths(StaState *sta) :
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sta_(sta)
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{
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}
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CheckMinPulseWidths::~CheckMinPulseWidths()
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{
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checks_.deleteContents();
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}
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void
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CheckMinPulseWidths::clear()
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{
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checks_.deleteContentsClear();
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}
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////////////////////////////////////////////////////////////////
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class MinPulseWidthChecksVisitor : public MinPulseWidthCheckVisitor
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{
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public:
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explicit MinPulseWidthChecksVisitor(const Corner *corner,
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MinPulseWidthCheckSeq &checks);
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virtual void visit(MinPulseWidthCheck &check,
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const StaState *sta);
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private:
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const Corner *corner_;
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MinPulseWidthCheckSeq &checks_;
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};
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MinPulseWidthChecksVisitor::
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MinPulseWidthChecksVisitor(const Corner *corner,
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MinPulseWidthCheckSeq &checks) :
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corner_(corner),
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checks_(checks)
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{
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}
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void
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MinPulseWidthChecksVisitor::visit(MinPulseWidthCheck &check,
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const StaState *sta)
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{
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if (corner_ == nullptr
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|| check.corner(sta) == corner_) {
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MinPulseWidthCheck *copy = new MinPulseWidthCheck(check.openPath());
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checks_.push_back(copy);
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}
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}
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MinPulseWidthCheckSeq &
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CheckMinPulseWidths::check(const Corner *corner)
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{
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clear();
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MinPulseWidthChecksVisitor visitor(corner, checks_);
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visitMinPulseWidthChecks(&visitor);
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sort(checks_, MinPulseWidthSlackLess(sta_));
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return checks_;
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}
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MinPulseWidthCheckSeq &
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CheckMinPulseWidths::check(PinSeq *pins,
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const Corner *corner)
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{
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clear();
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Graph *graph = sta_->graph();
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MinPulseWidthChecksVisitor visitor(corner, checks_);
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PinSeq::Iterator pin_iter(pins);
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while (pin_iter.hasNext()) {
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const Pin *pin = pin_iter.next();
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Vertex *vertex = graph->pinLoadVertex(pin);
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visitMinPulseWidthChecks(vertex, &visitor);
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}
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sort(checks_, MinPulseWidthSlackLess(sta_));
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return checks_;
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}
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////////////////////////////////////////////////////////////////
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class MinPulseWidthViolatorsVisitor : public MinPulseWidthCheckVisitor
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{
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public:
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explicit MinPulseWidthViolatorsVisitor(const Corner *corner,
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MinPulseWidthCheckSeq &checks);
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virtual void visit(MinPulseWidthCheck &check,
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const StaState *sta);
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private:
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const Corner *corner_;
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MinPulseWidthCheckSeq &checks_;
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};
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MinPulseWidthViolatorsVisitor::
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MinPulseWidthViolatorsVisitor(const Corner *corner,
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MinPulseWidthCheckSeq &checks) :
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corner_(corner),
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checks_(checks)
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{
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}
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void
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MinPulseWidthViolatorsVisitor::visit(MinPulseWidthCheck &check,
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const StaState *sta)
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{
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if (delayLess(check.slack(sta), 0.0, sta)
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&& (corner_ == nullptr
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|| check.corner(sta) == corner_)) {
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MinPulseWidthCheck *copy = new MinPulseWidthCheck(check.openPath());
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checks_.push_back(copy);
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}
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}
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MinPulseWidthCheckSeq &
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CheckMinPulseWidths::violations(const Corner *corner)
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{
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clear();
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MinPulseWidthViolatorsVisitor visitor(corner, checks_);
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visitMinPulseWidthChecks(&visitor);
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sort(checks_, MinPulseWidthSlackLess(sta_));
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return checks_;
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}
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////////////////////////////////////////////////////////////////
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class MinPulseWidthSlackVisitor : public MinPulseWidthCheckVisitor
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{
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public:
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MinPulseWidthSlackVisitor(const Corner *corner);
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virtual void visit(MinPulseWidthCheck &check,
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const StaState *sta);
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MinPulseWidthCheck *minSlackCheck();
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private:
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const Corner *corner_;
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MinPulseWidthCheck *min_slack_check_;
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};
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MinPulseWidthSlackVisitor::MinPulseWidthSlackVisitor(const Corner *corner) :
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corner_(corner),
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min_slack_check_(nullptr)
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{
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}
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void
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MinPulseWidthSlackVisitor::visit(MinPulseWidthCheck &check,
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const StaState *sta)
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{
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MinPulseWidthSlackLess slack_less(sta);
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if (corner_ == nullptr
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|| check.corner(sta) == corner_) {
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if (min_slack_check_ == nullptr)
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min_slack_check_ = check.copy();
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else if (slack_less(&check, min_slack_check_)) {
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delete min_slack_check_;
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min_slack_check_ = check.copy();
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}
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}
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}
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MinPulseWidthCheck *
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MinPulseWidthSlackVisitor::minSlackCheck()
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{
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return min_slack_check_;
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}
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MinPulseWidthCheck *
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CheckMinPulseWidths::minSlackCheck(const Corner *corner)
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{
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clear();
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MinPulseWidthSlackVisitor visitor(corner);
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visitMinPulseWidthChecks(&visitor);
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MinPulseWidthCheck *check = visitor.minSlackCheck();
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// Save check for cleanup.
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checks_.push_back(check);
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return check;
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}
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void
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CheckMinPulseWidths::
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visitMinPulseWidthChecks(MinPulseWidthCheckVisitor *visitor)
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{
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Graph *graph = sta_->graph();
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Debug *debug = sta_->debug();
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VertexIterator vertex_iter(graph);
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while (vertex_iter.hasNext()) {
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Vertex *vertex = vertex_iter.next();
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if (isClkEnd(vertex, graph)) {
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debugPrint(debug, "mpw", 1, "check mpw %s",
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vertex->to_string(sta_).c_str());
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visitMinPulseWidthChecks(vertex, visitor);
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}
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}
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}
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void
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CheckMinPulseWidths::
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visitMinPulseWidthChecks(Vertex *vertex,
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MinPulseWidthCheckVisitor *visitor)
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{
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Search *search = sta_->search();
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const MinMax *min_max = MinMax::max();
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VertexPathIterator path_iter(vertex, search);
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while (path_iter.hasNext()) {
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Path *path = path_iter.next();
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if (path->isClock(search)
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&& !path->tag(sta_)->clkInfo()->isGenClkSrcPath()) {
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if (path->minMax(sta_) == min_max) {
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float min_width;
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bool exists;
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minPulseWidth(path, sta_, min_width, exists);
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if (exists) {
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MinPulseWidthCheck check(path);
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Path *close_path = check.closePath(sta_);
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// Don't bother visiting if nobody is home.
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if (close_path)
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visitor->visit(check, sta_);
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}
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}
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}
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}
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}
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////////////////////////////////////////////////////////////////
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MinPulseWidthCheck::MinPulseWidthCheck() :
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open_path_(nullptr)
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{
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}
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MinPulseWidthCheck::MinPulseWidthCheck(Path *open_path) :
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open_path_(open_path)
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{
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}
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MinPulseWidthCheck *
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MinPulseWidthCheck::copy()
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{
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return new MinPulseWidthCheck(open_path_);
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}
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Pin *
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MinPulseWidthCheck::pin(const StaState *sta) const
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{
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return open_path_->pin(sta);
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}
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const RiseFall *
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MinPulseWidthCheck::openTransition(const StaState *sta) const
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{
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return open_path_->transition(sta);
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}
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Path *
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MinPulseWidthCheck::closePath(const StaState *sta) const
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{
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PathAnalysisPt *open_ap = open_path_->pathAnalysisPt(sta);
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PathAnalysisPt *close_ap = open_ap->tgtClkAnalysisPt();
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const RiseFall *open_rf = open_path_->transition(sta);
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const RiseFall *close_rf = open_rf->opposite();
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Tag *open_tag = open_path_->tag(sta);
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ClkInfo *open_clk_info = open_tag->clkInfo();
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ClkInfo close_clk_info(open_clk_info->clkEdge()->opposite(),
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open_clk_info->clkSrc(),
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open_clk_info->isPropagated(),
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open_clk_info->genClkSrc(),
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open_clk_info->isGenClkSrcPath(),
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open_clk_info->pulseClkSense(),
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delay_zero, 0.0, nullptr,
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open_clk_info->pathAPIndex(),
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open_clk_info->crprClkPath(sta),
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sta);
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Tag close_tag(0,
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close_rf->index(),
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close_ap->index(),
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&close_clk_info,
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open_tag->isClock(),
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open_tag->inputDelay(),
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open_tag->isSegmentStart(),
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open_tag->states(),
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false, sta);
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debugPrint(sta->debug(), "mpw", 3, " open %s",
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open_tag->to_string(sta).c_str());
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debugPrint(sta->debug(), "mpw", 3, " close %s",
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close_tag.to_string(sta).c_str());
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VertexPathIterator close_iter(open_path_->vertex(sta), close_rf,
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close_ap, sta);
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while (close_iter.hasNext()) {
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Path *close_path = close_iter.next();
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if (tagMatchNoPathAp(close_path->tag(sta), &close_tag)) {
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debugPrint(sta->debug(), "mpw", 3, " match %s",
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close_path->tag(sta)->to_string(sta).c_str());
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return close_path;
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}
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}
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return nullptr;
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}
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Arrival
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MinPulseWidthCheck::openArrival(const StaState *) const
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{
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return open_path_->arrival();
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}
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Arrival
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MinPulseWidthCheck::closeArrival(const StaState *sta) const
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{
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Path *close = closePath(sta);
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return close->arrival();
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}
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Arrival
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MinPulseWidthCheck::openDelay(const StaState *sta) const
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{
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return openArrival(sta) - openClkEdge(sta)->time();
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}
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Arrival
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MinPulseWidthCheck::closeDelay(const StaState *sta) const
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{
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return closeArrival(sta) - closeClkEdge(sta)->time();
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}
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const ClockEdge *
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MinPulseWidthCheck::openClkEdge(const StaState *sta) const
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{
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return open_path_->clkEdge(sta->search());
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}
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const ClockEdge *
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MinPulseWidthCheck::closeClkEdge(const StaState *sta) const
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{
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Tag *open_tag = open_path_->tag(sta);
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ClkInfo *open_clk_info = open_tag->clkInfo();
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return open_clk_info->clkEdge()->opposite();
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}
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float
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MinPulseWidthCheck::closeOffset(const StaState *sta) const
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{
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const ClockEdge *open_clk_edge = openClkEdge(sta);
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const ClockEdge *close_clk_edge = closeClkEdge(sta);
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if (open_clk_edge->time() > close_clk_edge->time())
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return open_clk_edge->clock()->period();
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else
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return 0.0;
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}
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Arrival
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MinPulseWidthCheck::width(const StaState *sta) const
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{
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return closeArrival(sta) + closeOffset(sta)
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- open_path_->arrival()
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+ checkCrpr(sta);
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}
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float
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MinPulseWidthCheck::minWidth(const StaState *sta) const
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{
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float min_width;
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bool exists;
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minPulseWidth(open_path_, sta, min_width, exists);
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return min_width;
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|
}
|
|
|
|
// Precedence:
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|
// set_min_pulse_width SDC command
|
|
// SDF annotation
|
|
// Liberty library
|
|
// port min_pulse_width_low/high
|
|
// min_pulse_width timing group
|
|
static void
|
|
minPulseWidth(const Path *path,
|
|
const StaState *sta,
|
|
// Return values.
|
|
float &min_width,
|
|
bool &exists)
|
|
{
|
|
Pin *pin = path->pin(sta);
|
|
const Clock *clk = path->clock(sta);
|
|
const RiseFall *rf = path->transition(sta);
|
|
Sdc *sdc = sta->sdc();
|
|
// set_min_pulse_width command.
|
|
sdc->minPulseWidth(pin, clk, rf, min_width, exists);
|
|
if (!exists) {
|
|
const PathAnalysisPt *path_ap = path->pathAnalysisPt(sta);
|
|
const DcalcAnalysisPt *dcalc_ap = path_ap->dcalcAnalysisPt();
|
|
Vertex *vertex = path->vertex(sta);
|
|
Graph *graph = sta->graph();
|
|
Edge *edge;
|
|
TimingArc *arc;
|
|
graph->minPulseWidthArc(vertex, rf, edge, arc);
|
|
if (edge) {
|
|
min_width = delayAsFloat(graph->arcDelay(edge, arc, dcalc_ap->index()));
|
|
exists = true;
|
|
}
|
|
}
|
|
}
|
|
|
|
Crpr
|
|
MinPulseWidthCheck::checkCrpr(const StaState *sta) const
|
|
{
|
|
CheckCrpr *check_crpr = sta->search()->checkCrpr();
|
|
Path *close = closePath(sta);
|
|
if (close)
|
|
return check_crpr->checkCrpr(openPath(), close);
|
|
else
|
|
return 0.0;
|
|
}
|
|
|
|
Slack
|
|
MinPulseWidthCheck::slack(const StaState *sta) const
|
|
{
|
|
return width(sta) - minWidth(sta);
|
|
}
|
|
|
|
Corner *
|
|
MinPulseWidthCheck::corner(const StaState *sta) const
|
|
{
|
|
return open_path_->pathAnalysisPt(sta)->corner();
|
|
}
|
|
|
|
////////////////////////////////////////////////////////////////
|
|
|
|
MinPulseWidthSlackLess::MinPulseWidthSlackLess(const StaState *sta) :
|
|
sta_(sta)
|
|
{
|
|
}
|
|
|
|
bool
|
|
MinPulseWidthSlackLess::operator()(const MinPulseWidthCheck *check1,
|
|
const MinPulseWidthCheck *check2) const
|
|
{
|
|
Slack slack1 = check1->slack(sta_);
|
|
Slack slack2 = check2->slack(sta_);
|
|
const Pin *pin1 = check1->pin(sta_);
|
|
const Pin *pin2 = check2->pin(sta_);
|
|
return delayLess(slack1, slack2, sta_)
|
|
|| (delayEqual(slack1, slack2)
|
|
// Break ties for the sake of regression stability.
|
|
&& (sta_->network()->pinLess(pin1, pin2)
|
|
|| (pin1 == pin2
|
|
&& check1->openPath()->rfIndex(sta_)
|
|
< check2->openPath()->rfIndex(sta_))));
|
|
}
|
|
|
|
} // namespace
|