139 lines
4.1 KiB
C++
139 lines
4.1 KiB
C++
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// *****************************************************************************
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// *****************************************************************************
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// Copyright 2013, Cadence Design Systems
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//
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// This file is part of the Cadence LEF/DEF Open Source
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// Distribution, Product Version 5.8.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://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,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
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// implied. See the License for the specific language governing
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// permissions and limitations under the License.
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//
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// For updates, support, or to become part of the LEF/DEF Community,
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// check www.openeda.org for details.
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//
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// $Author: dell $
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// $Revision: #1 $
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// $Date: 2017/06/06 $
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// $State: $
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// *****************************************************************************
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// *****************************************************************************
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#ifndef defiAssertion_h
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#define defiAssertion_h
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#include "defiKRDefs.hpp"
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#include <stdio.h>
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BEGIN_LEFDEF_PARSER_NAMESPACE
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// Struct holds the data for one assertion/constraint.
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// An assertion or constraint is either a net/path rule or a
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// wired logic rule.
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//
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// A net/path rule is an item or list of items plus specifications.
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// The specifications are: rise/fall min/max.
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// The items are a list of (one or more) net names or paths or a
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// combination of both.
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//
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// A wired logic rule is a netname and a distance.
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//
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// We will NOT allow the mixing of wired logic rules and net/path delays
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// in the same assertion/constraint.
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//
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// We will allow the rule to be a sum of sums (which will be interpreted
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// as just one list).
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//
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class defrData;
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class defiAssertion {
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public:
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defiAssertion(defrData *data);
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void Init();
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void Destroy();
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~defiAssertion();
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void setConstraintMode();
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void setAssertionMode();
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void setSum();
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void setDiff();
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void setNetName(const char* name);
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void setRiseMin(double num);
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void setRiseMax(double num);
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void setFallMin(double num);
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void setFallMax(double num);
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void setDelay();
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void setWiredlogicMode();
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void setWiredlogic(const char* net, double dist);
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void addNet(const char* name);
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void addPath(const char* fromInst, const char* fromPin,
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const char* toInst, const char* toPin);
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void bumpItems();
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void unsetSum();
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int isAssertion() const; // Either isAssertion or isConstraint is true
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int isConstraint() const;
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int isWiredlogic() const; // Either isWiredlogic or isDelay is true
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int isDelay() const;
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int isSum() const;
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int isDiff() const;
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int hasRiseMin() const;
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int hasRiseMax() const;
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int hasFallMin() const;
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int hasFallMax() const;
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double riseMin() const;
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double riseMax() const;
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double fallMin() const;
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double fallMax() const;
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const char* netName() const; // Wired logic net name
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double distance() const; // Wired logic distance
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int numItems() const; // number of paths or nets
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int isPath(int index) const; // is item #index a path?
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int isNet(int index) const; // is item #index a net?
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void path(int index, char** fromInst, char** fromPin,
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char** toInst, char** toPin) const; // Get path data for item #index
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void net(int index, char** netName) const; // Get net data for item #index
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void clear();
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void print(FILE* f) const;
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protected:
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char isAssertion_;
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char isSum_;
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char isDiff_;
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char hasRiseMin_;
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char hasRiseMax_;
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char hasFallMin_;
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char hasFallMax_;
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char isWiredlogic_;
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char isDelay_;
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char* netName_; // wired logic net name
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int netNameLength_;
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double riseMin_;
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double riseMax_;
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double fallMin_;
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double fallMax_; // also used to store the wired logic dist
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int numItems_;
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int numItemsAllocated_;
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char* itemTypes_;
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int** items_; // not really integers.
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defrData *defData;
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};
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END_LEFDEF_PARSER_NAMESPACE
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USE_LEFDEF_PARSER_NAMESPACE
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#endif
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