2012-08-25 06:31:46 +02:00
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/**CFile****************************************************************
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FileName [sclInt.h]
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SystemName [ABC: Logic synthesis and verification system.]
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Synopsis [Standard-cell library representation.]
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Author [Alan Mishchenko, Niklas Een]
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Affiliation [UC Berkeley]
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Date [Ver. 1.0. Started - August 24, 2012.]
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Revision [$Id: sclInt.h,v 1.0 2012/08/24 00:00:00 alanmi Exp $]
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***********************************************************************/
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#ifndef ABC__map__scl__sclInt_h
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#define ABC__map__scl__sclInt_h
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////////////////////////////////////////////////////////////////////////
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/// INCLUDES ///
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////////////////////////////////////////////////////////////////////////
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <assert.h>
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2012-08-29 09:48:36 +02:00
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#include <math.h>
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2012-08-25 06:31:46 +02:00
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#include "misc/vec/vec.h"
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ABC_NAMESPACE_HEADER_START
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////////////////////////////////////////////////////////////////////////
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/// PARAMETERS ///
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////////////////////////////////////////////////////////////////////////
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#define ABC_SCL_CUR_VERSION 5
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typedef enum
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{
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sc_dir_NULL,
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sc_dir_Input,
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sc_dir_Output,
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sc_dir_InOut,
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sc_dir_Internal,
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} SC_Dir;
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typedef enum // -- timing sense, positive-, negative- or non-unate
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{
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sc_ts_NULL,
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sc_ts_Pos,
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sc_ts_Neg,
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sc_ts_Non,
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} SC_TSense;
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////////////////////////////////////////////////////////////////////////
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/// STRUCTURE DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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typedef struct SC_WireLoad_ SC_WireLoad;
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typedef struct SC_WireLoadSel_ SC_WireLoadSel;
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typedef struct SC_TableTempl_ SC_TableTempl;
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typedef struct SC_Surface_ SC_Surface;
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typedef struct SC_Timing_ SC_Timing;
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typedef struct SC_Timings_ SC_Timings;
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typedef struct SC_Pin_ SC_Pin;
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typedef struct SC_Cell_ SC_Cell;
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typedef struct SC_Lib_ SC_Lib;
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struct SC_WireLoad_
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{
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char * name;
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2012-08-27 22:50:33 +02:00
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float res; // (currently not used)
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float cap; // }- multiply estimation in 'fanout_len[].snd' with this value
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2012-08-25 06:31:46 +02:00
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Vec_Int_t * vFanout; // Vec<Pair<uint,float> > -- pairs '(#fanouts, est-wire-len)'
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Vec_Flt_t * vLen;
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};
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struct SC_WireLoadSel_
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{
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char * name;
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Vec_Flt_t * vAreaFrom; // Vec<Trip<float,float,Str> > -- triplets '(from-area, upto-area, wire-load-model)'; range is [from, upto[
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Vec_Flt_t * vAreaTo;
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Vec_Ptr_t * vWireLoadModel;
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};
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struct SC_TableTempl_
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{
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char * name;
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Vec_Ptr_t * vVars; // Vec<Str> -- name of variable (numbered from 0, not 1 as in the Liberty file)
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Vec_Ptr_t * vIndex; // Vec<Vec<float> > -- this is the point of measurement in table for the given variable
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};
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struct SC_Surface_
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{
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char * templ_name;
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Vec_Flt_t * vIndex0; // Vec<float> -- correspondes to "index_1" in the liberty file (for timing: slew)
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Vec_Flt_t * vIndex1; // Vec<float> -- correspondes to "index_2" in the liberty file (for timing: load)
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Vec_Ptr_t * vData; // Vec<Vec<float> > -- 'data[i0][i1]' gives value at '(index0[i0], index1[i1])'
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2012-08-25 21:34:54 +02:00
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float approx[3][6];
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2012-08-25 06:31:46 +02:00
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};
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struct SC_Timing_
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{
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char * related_pin; // -- related pin
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SC_TSense tsense; // -- timing sense (positive_unate, negative_unate, non_unate)
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2012-08-27 22:50:33 +02:00
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char * when_text; // -- logic condition on inputs triggering this delay model for the output (currently not used)
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2012-08-25 06:31:46 +02:00
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SC_Surface * pCellRise; // -- Used to compute pin-to-pin delay
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SC_Surface * pCellFall;
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SC_Surface * pRiseTrans; // -- Used to compute output slew
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SC_Surface * pFallTrans;
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};
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struct SC_Timings_
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{
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char * name; // -- the 'related_pin' field
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Vec_Ptr_t * vTimings; // structures of type SC_Timing
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};
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struct SC_Pin_
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{
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char * name;
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SC_Dir dir;
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2012-08-27 22:50:33 +02:00
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float cap; // -- this value is used if 'rise_cap' and 'fall_cap' is missing (copied by 'postProcess()'). (not used)
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2012-08-25 06:31:46 +02:00
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float rise_cap; // }- used for input pins ('cap' too).
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float fall_cap; // }
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2012-08-27 22:50:33 +02:00
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float max_out_cap; // } (not used)
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float max_out_slew; // }- used only for output pins (max values must not be exceeded or else mapping is illegal) (not used)
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2012-08-25 06:31:46 +02:00
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char * func_text; // }
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Vec_Wrd_t * vFunc; // }
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Vec_Ptr_t * vRTimings; // -- for output pins
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};
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struct SC_Cell_
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{
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char * name;
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int seq; // -- set to TRUE by parser if a sequential element
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int unsupp; // -- set to TRUE by parser if cell contains information we cannot handle
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float area;
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2012-08-27 22:50:33 +02:00
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int drive_strength; // -- some library files provide this field (currently unused, but may be a good hint for sizing) (not used)
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2012-08-25 06:31:46 +02:00
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Vec_Ptr_t * vPins; // NamedSet<SC_Pin>
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int n_inputs; // -- 'pins[0 .. n_inputs-1]' are input pins
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int n_outputs; // -- 'pins[n_inputs .. n_inputs+n_outputs-1]' are output pins
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2012-08-28 04:58:15 +02:00
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SC_Cell * pNext; // same-functionality cells linked into a ring by area
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SC_Cell * pPrev; // same-functionality cells linked into a ring by area
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2012-08-25 06:31:46 +02:00
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};
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struct SC_Lib_
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{
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char * lib_name;
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char * default_wire_load;
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char * default_wire_load_sel;
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2012-08-27 22:50:33 +02:00
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float default_max_out_slew; // -- 'default_max_transition'; this is copied to each output pin where 'max_transition' is not defined (not used)
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2012-08-25 06:31:46 +02:00
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int unit_time; // -- Valid 9..12. Unit is '10^(-val)' seconds (e.g. 9=1ns, 10=100ps, 11=10ps, 12=1ps)
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2012-08-25 21:34:54 +02:00
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float unit_cap_fst; // -- First part is a multiplier, second either 12 or 15 for 'pf' or 'ff'.
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int unit_cap_snd;
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2012-08-25 06:31:46 +02:00
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Vec_Ptr_t * vWireLoads; // NamedSet<SC_WireLoad>
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Vec_Ptr_t * vWireLoadSels; // NamedSet<SC_WireLoadSel>
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Vec_Ptr_t * vTempls; // NamedSet<SC_TableTempl>
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2012-08-26 04:00:26 +02:00
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Vec_Ptr_t * vCells; // NamedSet<SC_Cell>
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2012-08-28 04:58:15 +02:00
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Vec_Ptr_t * vCellOrder; // NamedSet<SC_Cell>
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2012-08-26 04:00:26 +02:00
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int * pBins; // hashing gateName -> gateId
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int nBins;
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2012-08-25 06:31:46 +02:00
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};
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////////////////////////////////////////////////////////////////////////
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/// GLOBAL VARIABLES ///
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////////////////////////////////////////////////////////////////////////
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////////////////////////////////////////////////////////////////////////
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/// MACRO DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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2012-08-29 09:48:36 +02:00
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static inline SC_Cell * SC_LibCell( SC_Lib * p, int i ) { return (SC_Cell *)Vec_PtrEntry(p->vCells, i); }
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static inline SC_Pin * SC_CellPin( SC_Cell * p, int i ) { return (SC_Pin *)Vec_PtrEntry(p->vPins, i); }
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static inline Vec_Wrd_t * SC_CellFunc( SC_Cell * p ) { return SC_CellPin(p, p->n_inputs)->vFunc; }
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static inline double SC_LibCapFf( SC_Lib * p, double cap ) { return cap * p->unit_cap_fst * pow(10, 15 - p->unit_cap_snd); }
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static inline double SC_LibTimePs( SC_Lib * p, double time ) { return time * pow(10, 12 - p->unit_time); }
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2012-08-28 04:58:15 +02:00
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#define SC_LitForEachCell( p, pCell, i ) Vec_PtrForEachEntry( SC_Cell *, p->vCells, pCell, i )
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#define SC_CellForEachPin( p, pPin, i ) Vec_PtrForEachEntry( SC_Pin *, pCell->vPins, pPin, i )
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#define SC_CellForEachPinIn( p, pPin, i ) Vec_PtrForEachEntryStop( SC_Pin *, pCell->vPins, pPin, i, pCell->n_inputs )
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#define SC_CellForEachPinOut( p, pPin, i ) Vec_PtrForEachEntryStart( SC_Pin *, pCell->vPins, pPin, i, pCell->n_inputs )
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#define SC_RingForEachCell( pRing, pCell, i ) for ( i = 0, pCell = pRing; i == 0 || pCell != pRing; pCell = pCell->pNext, i++ )
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2012-08-26 04:00:26 +02:00
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2012-08-25 06:31:46 +02:00
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////////////////////////////////////////////////////////////////////////
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/// FUNCTION DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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static inline SC_WireLoad * Abc_SclWireLoadAlloc()
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{
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SC_WireLoad * p;
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p = ABC_CALLOC( SC_WireLoad, 1 );
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p->vFanout = Vec_IntAlloc( 0 );
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p->vLen = Vec_FltAlloc( 0 );
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return p;
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}
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static inline SC_WireLoadSel * Abc_SclWireLoadSelAlloc()
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{
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SC_WireLoadSel * p;
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p = ABC_CALLOC( SC_WireLoadSel, 1 );
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p->vAreaFrom = Vec_FltAlloc( 0 );
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p->vAreaTo = Vec_FltAlloc( 0 );
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p->vWireLoadModel = Vec_PtrAlloc( 0 );
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return p;
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}
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static inline SC_TableTempl * Abc_SclTableTemplAlloc()
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{
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SC_TableTempl * p;
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p = ABC_CALLOC( SC_TableTempl, 1 );
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p->vVars = Vec_PtrAlloc( 0 );
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p->vIndex = Vec_PtrAlloc( 0 );
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return p;
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}
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static inline SC_Surface * Abc_SclSurfaceAlloc()
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{
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SC_Surface * p;
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p = ABC_CALLOC( SC_Surface, 1 );
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p->vIndex0 = Vec_FltAlloc( 0 );
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p->vIndex1 = Vec_FltAlloc( 0 );
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p->vData = Vec_PtrAlloc( 0 );
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return p;
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}
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static inline SC_Timing * Abc_SclTimingAlloc()
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{
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SC_Timing * p;
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p = ABC_CALLOC( SC_Timing, 1 );
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p->pCellRise = Abc_SclSurfaceAlloc();
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p->pCellFall = Abc_SclSurfaceAlloc();
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p->pRiseTrans = Abc_SclSurfaceAlloc();
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p->pFallTrans = Abc_SclSurfaceAlloc();
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return p;
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}
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static inline SC_Timings * Abc_SclTimingsAlloc()
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{
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SC_Timings * p;
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p = ABC_CALLOC( SC_Timings, 1 );
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2012-08-25 21:34:54 +02:00
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p->vTimings = Vec_PtrAlloc( 0 );
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2012-08-25 06:31:46 +02:00
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return p;
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}
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static inline SC_Pin * Abc_SclPinAlloc()
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{
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SC_Pin * p;
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p = ABC_CALLOC( SC_Pin, 1 );
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p->max_out_slew = -1;
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2012-08-25 21:34:54 +02:00
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p->vFunc = Vec_WrdAlloc( 0 );
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p->vRTimings = Vec_PtrAlloc( 0 );
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2012-08-25 06:31:46 +02:00
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return p;
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}
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static inline SC_Cell * Abc_SclCellAlloc()
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{
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SC_Cell * p;
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p = ABC_CALLOC( SC_Cell, 1 );
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p->vPins = Vec_PtrAlloc( 0 );
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return p;
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}
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static inline SC_Lib * Abc_SclLibAlloc()
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{
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SC_Lib * p;
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p = ABC_CALLOC( SC_Lib, 1 );
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p->default_max_out_slew = -1;
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p->unit_time = 9;
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2012-08-25 21:34:54 +02:00
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p->unit_cap_fst = 1;
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p->unit_cap_snd = 12;
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2012-08-25 06:31:46 +02:00
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p->vWireLoads = Vec_PtrAlloc( 0 );
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p->vWireLoadSels = Vec_PtrAlloc( 0 );
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p->vTempls = Vec_PtrAlloc( 0 );
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p->vCells = Vec_PtrAlloc( 0 );
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2012-08-28 04:58:15 +02:00
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p->vCellOrder = Vec_PtrAlloc( 0 );
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2012-08-25 06:31:46 +02:00
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return p;
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}
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static inline void Abc_SclWireLoadFree( SC_WireLoad * p )
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{
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Vec_IntFree( p->vFanout );
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Vec_FltFree( p->vLen );
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ABC_FREE( p->name );
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ABC_FREE( p );
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}
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static inline void Abc_SclWireLoadSelFree( SC_WireLoadSel * p )
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{
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Vec_FltFree( p->vAreaFrom );
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Vec_FltFree( p->vAreaTo );
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Vec_PtrFreeFree( p->vWireLoadModel );
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ABC_FREE( p->name );
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ABC_FREE( p );
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}
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static inline void Abc_SclTableTemplFree( SC_TableTempl * p )
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{
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Vec_PtrFreeFree( p->vVars );
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Vec_VecFree( (Vec_Vec_t *)p->vIndex );
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ABC_FREE( p->name );
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ABC_FREE( p );
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}
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static inline void Abc_SclSurfaceFree( SC_Surface * p )
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{
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Vec_FltFree( p->vIndex0 );
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Vec_FltFree( p->vIndex1 );
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Vec_VecFree( (Vec_Vec_t *)p->vData );
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ABC_FREE( p->templ_name );
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ABC_FREE( p );
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}
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static inline void Abc_SclTimingFree( SC_Timing * p )
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{
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Abc_SclSurfaceFree( p->pCellRise );
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Abc_SclSurfaceFree( p->pCellFall );
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Abc_SclSurfaceFree( p->pRiseTrans );
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Abc_SclSurfaceFree( p->pFallTrans );
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ABC_FREE( p->related_pin );
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ABC_FREE( p->when_text );
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ABC_FREE( p );
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}
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static inline void Abc_SclTimingsFree( SC_Timings * p )
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{
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SC_Timing * pTemp;
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int i;
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Vec_PtrForEachEntry( SC_Timing *, p->vTimings, pTemp, i )
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Abc_SclTimingFree( pTemp );
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Vec_PtrFree( p->vTimings );
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ABC_FREE( p->name );
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ABC_FREE( p );
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}
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static inline void Abc_SclPinFree( SC_Pin * p )
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{
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SC_Timings * pTemp;
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int i;
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Vec_PtrForEachEntry( SC_Timings *, p->vRTimings, pTemp, i )
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Abc_SclTimingsFree( pTemp );
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Vec_PtrFree( p->vRTimings );
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Vec_WrdFree( p->vFunc );
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ABC_FREE( p->func_text );
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ABC_FREE( p->name );
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ABC_FREE( p );
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|
}
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static inline void Abc_SclCellFree( SC_Cell * p )
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|
|
{
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|
|
SC_Pin * pTemp;
|
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|
int i;
|
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|
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Vec_PtrForEachEntry( SC_Pin *, p->vPins, pTemp, i )
|
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|
|
Abc_SclPinFree( pTemp );
|
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|
|
Vec_PtrFree( p->vPins );
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ABC_FREE( p->name );
|
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|
|
ABC_FREE( p );
|
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|
|
|
}
|
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|
|
static inline void Abc_SclLibFree( SC_Lib * p )
|
|
|
|
|
{
|
|
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|
|
SC_WireLoad * pTemp1;
|
|
|
|
|
SC_WireLoadSel * pTemp2;
|
|
|
|
|
SC_TableTempl * pTemp3;
|
|
|
|
|
SC_Cell * pTemp4;
|
|
|
|
|
int i;
|
|
|
|
|
Vec_PtrForEachEntry( SC_WireLoad *, p->vWireLoads, pTemp1, i )
|
|
|
|
|
Abc_SclWireLoadFree( pTemp1 );
|
|
|
|
|
Vec_PtrFree( p->vWireLoads );
|
|
|
|
|
Vec_PtrForEachEntry( SC_WireLoadSel *, p->vWireLoadSels, pTemp2, i )
|
|
|
|
|
Abc_SclWireLoadSelFree( pTemp2 );
|
|
|
|
|
Vec_PtrFree( p->vWireLoadSels );
|
|
|
|
|
Vec_PtrForEachEntry( SC_TableTempl *, p->vTempls, pTemp3, i )
|
|
|
|
|
Abc_SclTableTemplFree( pTemp3 );
|
|
|
|
|
Vec_PtrFree( p->vTempls );
|
2012-08-28 04:58:15 +02:00
|
|
|
SC_LitForEachCell( p, pTemp4, i )
|
2012-08-25 06:31:46 +02:00
|
|
|
Abc_SclCellFree( pTemp4 );
|
|
|
|
|
Vec_PtrFree( p->vCells );
|
2012-08-28 04:58:15 +02:00
|
|
|
Vec_PtrFree( p->vCellOrder );
|
2012-08-25 06:31:46 +02:00
|
|
|
ABC_FREE( p->lib_name );
|
|
|
|
|
ABC_FREE( p->default_wire_load );
|
|
|
|
|
ABC_FREE( p->default_wire_load_sel );
|
2012-08-26 04:00:26 +02:00
|
|
|
ABC_FREE( p->pBins );
|
2012-08-25 06:31:46 +02:00
|
|
|
ABC_FREE( p );
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
|
2012-08-26 04:00:26 +02:00
|
|
|
/*=== sclFile.c =============================================================*/
|
|
|
|
|
extern SC_Lib * Abc_SclRead( char * pFileName );
|
|
|
|
|
extern void Abc_SclWrite( char * pFileName, SC_Lib * p );
|
|
|
|
|
extern void Abc_SclWriteText( char * pFileName, SC_Lib * p );
|
|
|
|
|
|
2012-08-28 04:58:15 +02:00
|
|
|
/*=== sclUtil.c =============================================================*/
|
|
|
|
|
extern void Abc_SclHashCells( SC_Lib * p );
|
2012-08-26 04:00:26 +02:00
|
|
|
extern int Abc_SclCellFind( SC_Lib * p, char * pName );
|
2012-08-28 04:58:15 +02:00
|
|
|
extern void Abc_SclLinkCells( SC_Lib * p );
|
|
|
|
|
extern void Abc_SclPrintCells( SC_Lib * p );
|
2012-08-25 06:31:46 +02:00
|
|
|
|
|
|
|
|
ABC_NAMESPACE_HEADER_END
|
|
|
|
|
|
|
|
|
|
#endif
|
|
|
|
|
|
|
|
|
|
////////////////////////////////////////////////////////////////////////
|
|
|
|
|
/// END OF FILE ///
|
|
|
|
|
////////////////////////////////////////////////////////////////////////
|