mirror of https://github.com/YosysHQ/abc.git
Added bit vector.
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1aeaacc03d
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@ -35,6 +35,7 @@
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#include "vecVec.h"
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#include "vecAtt.h"
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#include "vecWrd.h"
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#include "vecBit.h"
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////////////////////////////////////////////////////////////////////////
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/// MACRO DEFINITIONS ///
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@ -0,0 +1,579 @@
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/**CFile****************************************************************
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FileName [vecBit.h]
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SystemName [ABC: Logic synthesis and verification system.]
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PackageName [Resizable arrays.]
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Synopsis [Resizable arrays of bits.]
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Author [Alan Mishchenko]
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Affiliation [UC Berkeley]
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Date [Ver. 1.0. Started - June 20, 2005.]
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Revision [$Id: vecBit.h,v 1.00 2005/06/20 00:00:00 alanmi Exp $]
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***********************************************************************/
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#ifndef __VEC_BIT_H__
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#define __VEC_BIT_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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ABC_NAMESPACE_HEADER_START
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////////////////////////////////////////////////////////////////////////
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/// PARAMETERS ///
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////////////////////////////////////////////////////////////////////////
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////////////////////////////////////////////////////////////////////////
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/// BASIC TYPES ///
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////////////////////////////////////////////////////////////////////////
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typedef struct Vec_Bit_t_ Vec_Bit_t;
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struct Vec_Bit_t_
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{
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int nCap;
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int nSize;
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int * pArray;
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};
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////////////////////////////////////////////////////////////////////////
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/// MACRO DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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#define Vec_BitForEachEntry( vVec, Entry, i ) \
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for ( i = 0; (i < Vec_BitSize(vVec)) && (((Entry) = Vec_BitEntry(vVec, i)), 1); i++ )
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#define Vec_BitForEachEntryStart( vVec, Entry, i, Start ) \
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for ( i = Start; (i < Vec_BitSize(vVec)) && (((Entry) = Vec_BitEntry(vVec, i)), 1); i++ )
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#define Vec_BitForEachEntryStop( vVec, Entry, i, Stop ) \
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for ( i = 0; (i < Stop) && (((Entry) = Vec_BitEntry(vVec, i)), 1); i++ )
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#define Vec_BitForEachEntryStartStop( vVec, Entry, i, Start, Stop ) \
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for ( i = Start; (i < Stop) && (((Entry) = Vec_BitEntry(vVec, i)), 1); i++ )
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#define Vec_BitForEachEntryReverse( vVec, pEntry, i ) \
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for ( i = Vec_BitSize(vVec) - 1; (i >= 0) && (((pEntry) = Vec_BitEntry(vVec, i)), 1); i-- )
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////////////////////////////////////////////////////////////////////////
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/// FUNCTION DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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/**Function*************************************************************
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Synopsis [Allocates a vector with the given capacity.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline Vec_Bit_t * Vec_BitAlloc( int nCap )
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{
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Vec_Bit_t * p;
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nCap = (nCap >> 5) + ((nCap & 31) > 0);
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p = ABC_ALLOC( Vec_Bit_t, 1 );
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p->nSize = 0;
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p->nCap = nCap * 32;
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p->pArray = nCap? ABC_ALLOC( int, nCap ) : NULL;
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return p;
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}
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/**Function*************************************************************
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Synopsis [Allocates a vector with the given size and cleans it.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline Vec_Bit_t * Vec_BitStart( int nSize )
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{
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Vec_Bit_t * p;
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nSize = (nSize >> 5) + ((nSize & 31) > 0);
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p = Vec_BitAlloc( nSize * 32 );
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p->nSize = nSize * 32;
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memset( p->pArray, 0, sizeof(int) * nSize );
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return p;
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}
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/**Function*************************************************************
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Synopsis [Allocates a vector with the given size and cleans it.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline Vec_Bit_t * Vec_BitStartFull( int nSize )
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{
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Vec_Bit_t * p;
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nSize = (nSize >> 5) + ((nSize & 31) > 0);
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p = Vec_BitAlloc( nSize );
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p->nSize = nSize * 32;
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memset( p->pArray, 0xff, sizeof(int) * nSize );
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return p;
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}
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/**Function*************************************************************
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Synopsis [Duplicates the integer array.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline Vec_Bit_t * Vec_BitDup( Vec_Bit_t * pVec )
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{
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Vec_Bit_t * p;
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assert( (pVec->nSize & 31) == 0 );
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p = ABC_ALLOC( Vec_Bit_t, 1 );
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p->nSize = pVec->nSize;
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p->nCap = pVec->nSize;
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p->pArray = p->nCap? ABC_ALLOC( int, p->nCap >> 5 ) : NULL;
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memcpy( p->pArray, pVec->pArray, sizeof(int) * (p->nCap >> 5) );
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return p;
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitFree( Vec_Bit_t * p )
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{
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ABC_FREE( p->pArray );
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ABC_FREE( p );
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitFreeP( Vec_Bit_t ** p )
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{
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if ( *p == NULL )
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return;
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ABC_FREE( (*p)->pArray );
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ABC_FREE( (*p) );
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int * Vec_BitReleaseArray( Vec_Bit_t * p )
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{
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int * pArray = p->pArray;
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p->nCap = 0;
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p->nSize = 0;
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p->pArray = NULL;
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return pArray;
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int * Vec_BitArray( Vec_Bit_t * p )
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{
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return p->pArray;
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int Vec_BitSize( Vec_Bit_t * p )
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{
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return p->nSize;
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int Vec_BitEntry( Vec_Bit_t * p, int i )
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{
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assert( i >= 0 && i < p->nSize );
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return (p->pArray[i >> 5] >> (i & 31)) & 1;
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitWriteEntry( Vec_Bit_t * p, int i, int Entry )
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{
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assert( i >= 0 && i < p->nSize );
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if ( Entry == 1 )
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p->pArray[i >> 5] |= (1 << (i & 31));
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else if ( Entry == 0 )
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p->pArray[i >> 5] &= ~(1 << (i & 31));
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else assert(0);
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int Vec_BitEntryLast( Vec_Bit_t * p )
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{
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assert( p->nSize > 0 );
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return Vec_BitEntry( p, p->nSize-1 );
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}
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/**Function*************************************************************
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Synopsis [Resizes the vector to the given capacity.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitGrow( Vec_Bit_t * p, int nCapMin )
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{
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if ( p->nCap >= nCapMin )
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return;
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nCapMin = (nCapMin >> 5) + ((nCapMin & 31) > 0);
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p->pArray = ABC_REALLOC( int, p->pArray, nCapMin );
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assert( p->pArray );
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p->nCap = nCapMin * 32;
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}
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/**Function*************************************************************
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Synopsis [Fills the vector with given number of entries.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitFill( Vec_Bit_t * p, int nSize, int Fill )
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{
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int i;
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Vec_BitGrow( p, nSize );
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nSize = (nSize >> 5) + ((nSize & 31) > 0);
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if ( Fill == 0 )
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{
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for ( i = 0; i < nSize; i++ )
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p->pArray[i] = 0;
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}
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else if ( Fill == 1 )
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{
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for ( i = 0; i < nSize; i++ )
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p->pArray[i] = ~0;
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}
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else assert( 0 );
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p->nSize = nSize * 32;
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}
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/**Function*************************************************************
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Synopsis [Fills the vector with given number of entries.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitFillExtra( Vec_Bit_t * p, int nSize, int Fill )
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{
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int i;
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if ( nSize <= p->nSize )
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return;
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if ( nSize > 2 * p->nCap )
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Vec_BitGrow( p, nSize );
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else if ( nSize > p->nCap )
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Vec_BitGrow( p, 2 * p->nCap );
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assert( p->nSize < nSize );
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if ( (p->nSize >> 5) == (nSize >> 5) )
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{
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unsigned Mask = (~(~0 << (nSize-p->nSize)) << p->nSize);
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if ( Fill == 1 )
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p->pArray[nSize >> 5] |= Mask;
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else if ( Fill == 0 )
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p->pArray[nSize >> 5] &= ~Mask;
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else assert( 0 );
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}
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else
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{
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unsigned Mask1 = (p->nSize & 31) ? ~0 << (p->nSize & 31) : 0;
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unsigned Mask2 = (nSize & 31) ? ~(~0 << (nSize & 31)) : 0;
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int w1 = (p->nSize >> 5);
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int w2 = (nSize >> 5);
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if ( Fill == 1 )
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{
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p->pArray[w1] |= Mask1;
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p->pArray[w2] |= Mask2;
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for ( i = w1 + 1; i < w2; i++ )
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p->pArray[i] = ~0;
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}
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else if ( Fill == 0 )
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{
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p->pArray[w1] &= ~Mask1;
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p->pArray[w2] &= ~Mask2;
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for ( i = w1 + 1; i < w2; i++ )
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p->pArray[i] = 0;
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}
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else assert( 0 );
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}
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p->nSize = nSize;
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}
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/**Function*************************************************************
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Synopsis [Returns the entry even if the place not exist.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int Vec_BitGetEntry( Vec_Bit_t * p, int i )
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{
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Vec_BitFillExtra( p, i + 1, 0 );
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return Vec_BitEntry( p, i );
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}
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/**Function*************************************************************
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Synopsis [Inserts the entry even if the place does not exist.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitSetEntry( Vec_Bit_t * p, int i, int Entry )
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{
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Vec_BitFillExtra( p, i + 1, 0 );
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Vec_BitWriteEntry( p, i, Entry );
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitShrink( Vec_Bit_t * p, int nSizeNew )
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{
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assert( p->nSize >= nSizeNew );
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p->nSize = nSizeNew;
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitClear( Vec_Bit_t * p )
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{
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p->nSize = 0;
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Vec_BitPush( Vec_Bit_t * p, int Entry )
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{
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if ( p->nSize == p->nCap )
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{
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if ( p->nCap < 16 )
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Vec_BitGrow( p, 16 );
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else
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Vec_BitGrow( p, 2 * p->nCap );
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}
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if ( Entry == 1 )
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p->pArray[p->nSize >> 5] |= (1 << (p->nSize & 31));
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else if ( Entry == 0 )
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p->pArray[p->nSize >> 5] &= ~(1 << (p->nSize & 31));
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else assert( 0 );
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p->nSize++;
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}
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/**Function*************************************************************
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Synopsis [Returns the last entry and removes it from the list.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int Vec_BitPop( Vec_Bit_t * p )
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{
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int Entry;
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assert( p->nSize > 0 );
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Entry = Vec_BitEntryLast( p );
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p->nSize--;
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return Entry;
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int Vec_BitCountWord( unsigned uWord )
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{
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uWord = (uWord & 0x55555555) + ((uWord>>1) & 0x55555555);
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uWord = (uWord & 0x33333333) + ((uWord>>2) & 0x33333333);
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uWord = (uWord & 0x0F0F0F0F) + ((uWord>>4) & 0x0F0F0F0F);
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uWord = (uWord & 0x00FF00FF) + ((uWord>>8) & 0x00FF00FF);
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return (uWord & 0x0000FFFF) + (uWord>>16);
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}
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline int Vec_BitCount( Vec_Bit_t * p )
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{
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unsigned * pArray = (unsigned *)p->pArray;
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int nWords = (p->nSize >> 5) + ((p->nSize & 31) > 0);
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int i, Counter = 0;
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if ( p->nSize & 31 )
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{
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assert( nWords > 0 );
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for ( i = 0; i < nWords-1; i++ )
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Counter += Vec_BitCountWord( pArray[i] );
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Counter += Vec_BitCountWord( pArray[i] & ~(~0 << (p->nSize & 31)) );
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}
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else
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{
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for ( i = 0; i < nWords; i++ )
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Counter += Vec_BitCountWord( pArray[i] );
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}
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return Counter;
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}
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ABC_NAMESPACE_HEADER_END
|
||||
|
||||
#endif
|
||||
|
||||
////////////////////////////////////////////////////////////////////////
|
||||
/// END OF FILE ///
|
||||
////////////////////////////////////////////////////////////////////////
|
||||
|
||||
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Reference in New Issue