Xplace_for_ICCAD/thirdparty/lefdef/def58/include/defiPath.hpp

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// *****************************************************************************
// *****************************************************************************
// Copyright 2013-2014, Cadence Design Systems
//
// This file is part of the Cadence LEF/DEF Open Source
// Distribution, Product Version 5.8.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
// implied. See the License for the specific language governing
// permissions and limitations under the License.
//
// For updates, support, or to become part of the LEF/DEF Community,
// check www.openeda.org for details.
//
// $Author: dell $
// $Revision: #1 $
// $Date: 2017/06/06 $
// $State: $
// *****************************************************************************
// *****************************************************************************
#ifndef defiPath_h
#define defiPath_h
#include <stdio.h>
#include "defiKRDefs.hpp"
BEGIN_LEFDEF_PARSER_NAMESPACE
// TX_DIR:TRANSLATION ON
class defrData;
struct defiPnt {
int x;
int y;
int ext;
};
// 5.4.1 1-D & 2-D Arrays of Vias in SPECIALNET Section
struct defiViaData {
int numX;
int numY;
int stepX;
int stepY;
};
struct defiViaRect {
int deltaX1;
int deltaY1;
int deltaX2;
int deltaY2;
};
// value returned by the next() routine.
enum defiPath_e {
DEFIPATH_DONE = 0,
DEFIPATH_LAYER,
DEFIPATH_VIA,
DEFIPATH_VIAROTATION,
DEFIPATH_WIDTH,
DEFIPATH_POINT,
DEFIPATH_FLUSHPOINT,
DEFIPATH_TAPER,
DEFIPATH_SHAPE,
DEFIPATH_STYLE,
DEFIPATH_TAPERRULE,
DEFIPATH_VIADATA,
DEFIPATH_RECT,
DEFIPATH_VIRTUALPOINT,
DEFIPATH_MASK,
DEFIPATH_VIAMASK
} ;
class defiPath {
public:
defiPath(defrData *data);
// This is 'data ownership transfer' constructor.
defiPath(defiPath *defiPathRef);
void Init();
void Destroy();
~defiPath();
void clear();
void reverseOrder();
// To traverse the path and get the parts.
void initTraverse() const; // Initialize the traverse.
void initTraverseBackwards() const; // Initialize the traverse in reverse.
int next() const; // Get the next element.
int prev() const; // Get the next element in reverse.
const char* getLayer() const;// Get the layer.
const char* getTaperRule() const;// Get the rule.
const char* getVia() const; // Get the via.
const char* getShape() const;// Get the shape.
int getTaper() const;// Get the taper.
int getStyle() const;// Get the style.
int getViaRotation() const; // Get the via rotation.
void getViaRect(int* deltaX1, int* deltaY1, int* deltaX2, int* deltaY2) const;
const char* getViaRotationStr() const; // Return via rotation in string format
void getViaData(int* numX, int* numY, int* stepX, int* stepY) const; // 5.4.1
int getWidth() const; // Get the width.
void getPoint(int* x, int* y) const;// Get the point.
void getFlushPoint(int* x, int* y, int* ext) const;// Get the point.
void getVirtualPoint(int* x, int* y) const;
int getMask() const;
int getViaTopMask() const;
int getViaCutMask() const;
int getViaBottomMask() const;
int getRectMask() const;
// These routines are called by the parser to fill the path.
void addWidth(int w);
void addPoint(int x, int y);
void addFlushPoint(int x, int y, int ext);
void addVirtualPoint(int x, int y);
void addLayer(const char* layer);
void addVia(const char* name);
void addViaRotation(int orient);
void addViaRect(int deltaX1, int deltaY1, int deltaX2, int deltaY2);
void addMask(int colorMask);
void addViaMask(int colorMask);
void addViaData(int numX, int numY, int stepX, int stepY); // 5.4.1
void setTaper();
void addTaperRule(const char* rule);
void addShape(const char* shape);
void addStyle(int style);
// debug printing
void print(FILE* fout) const;
void bumpSize(int size);
protected:
int currentType() const;
int* keys_; // type of item in path
void** data_; // extra data
int numUsed_; // number of items used in array
int numAllocated_; // allocated size of keys and data
int* pointer_; // traversal pointer, allocated because used
// as iterator in const traversal functions.
int numX_;
int numY_;
int stepX_;
int stepY_;
int deltaX_;
int deltaY_;
int mask_;
defrData *defData;
};
END_LEFDEF_PARSER_NAMESPACE
USE_LEFDEF_PARSER_NAMESPACE
#endif