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/**CFile****************************************************************
FileName [giaAig.c]
SystemName [ABC: Logic synthesis and verification system.]
PackageName [Scalable AIG package.]
Synopsis [Transformation between AIG manager.]
Author [Alan Mishchenko]
Affiliation [UC Berkeley]
Date [Ver. 1.0. Started - June 20, 2005.]
Revision [$Id: giaAig.c,v 1.00 2005/06/20 00:00:00 alanmi Exp $]
***********************************************************************/
#include "giaAig.h"
#include "proof/fra/fra.h"
#include "proof/dch/dch.h"
#include "opt/dar/dar.h"
#include "opt/dau/dau.h"
ABC_NAMESPACE_IMPL_START
////////////////////////////////////////////////////////////////////////
/// DECLARATIONS ///
////////////////////////////////////////////////////////////////////////
static inline int Gia_ObjChild0Copy( Aig_Obj_t * pObj ) { return Abc_LitNotCond( Aig_ObjFanin0(pObj)->iData, Aig_ObjFaninC0(pObj) ); }
static inline int Gia_ObjChild1Copy( Aig_Obj_t * pObj ) { return Abc_LitNotCond( Aig_ObjFanin1(pObj)->iData, Aig_ObjFaninC1(pObj) ); }
static inline Aig_Obj_t * Gia_ObjChild0Copy2( Aig_Obj_t ** ppNodes, Gia_Obj_t * pObj, int Id ) { return Aig_NotCond( ppNodes[Gia_ObjFaninId0(pObj, Id)], Gia_ObjFaninC0(pObj) ); }
static inline Aig_Obj_t * Gia_ObjChild1Copy2( Aig_Obj_t ** ppNodes, Gia_Obj_t * pObj, int Id ) { return Aig_NotCond( ppNodes[Gia_ObjFaninId1(pObj, Id)], Gia_ObjFaninC1(pObj) ); }
////////////////////////////////////////////////////////////////////////
/// FUNCTION DEFINITIONS ///
////////////////////////////////////////////////////////////////////////
/**Function*************************************************************
Synopsis [Duplicates AIG in the DFS order.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
void Gia_ManFromAig_rec( Gia_Man_t * pNew, Aig_Man_t * p, Aig_Obj_t * pObj )
{
Aig_Obj_t * pNext;
if ( pObj->iData )
return;
assert( Aig_ObjIsNode(pObj) );
Gia_ManFromAig_rec( pNew, p, Aig_ObjFanin0(pObj) );
Gia_ManFromAig_rec( pNew, p, Aig_ObjFanin1(pObj) );
pObj->iData = Gia_ManAppendAnd( pNew, Gia_ObjChild0Copy(pObj), Gia_ObjChild1Copy(pObj) );
if ( p->pEquivs && (pNext = Aig_ObjEquiv(p, pObj)) )
{
int iObjNew, iNextNew;
Gia_ManFromAig_rec( pNew, p, pNext );
iObjNew = Abc_Lit2Var(pObj->iData);
iNextNew = Abc_Lit2Var(pNext->iData);
if ( pNew->pNexts )
pNew->pNexts[iObjNew] = iNextNew;
}
}
Gia_Man_t * Gia_ManFromAig( Aig_Man_t * p )
{
Gia_Man_t * pNew;
Aig_Obj_t * pObj;
int i;
// create the new manager
pNew = Gia_ManStart( Aig_ManObjNum(p) );
pNew->pName = Abc_UtilStrsav( p->pName );
pNew->pSpec = Abc_UtilStrsav( p->pSpec );
pNew->nConstrs = p->nConstrs;
// create room to store equivalences
if ( p->pEquivs )
pNew->pNexts = ABC_CALLOC( int, Aig_ManObjNum(p) );
// create the PIs
Aig_ManCleanData( p );
Aig_ManConst1(p)->iData = 1;
Aig_ManForEachCi( p, pObj, i )
pObj->iData = Gia_ManAppendCi( pNew );
// add logic for the POs
Aig_ManForEachCo( p, pObj, i )
Gia_ManFromAig_rec( pNew, p, Aig_ObjFanin0(pObj) );
Aig_ManForEachCo( p, pObj, i )
Gia_ManAppendCo( pNew, Gia_ObjChild0Copy(pObj) );
Gia_ManSetRegNum( pNew, Aig_ManRegNum(p) );
if ( pNew->pNexts )
Gia_ManDeriveReprs( pNew );
return pNew;
}
/**Function*************************************************************
Synopsis [Checks integrity of choice nodes.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
void Gia_ManCheckChoices_rec( Gia_Man_t * p, Gia_Obj_t * pObj )
{
if ( !pObj || !Gia_ObjIsAnd(pObj) || pObj->fPhase )
return;
pObj->fPhase = 1;
Gia_ManCheckChoices_rec( p, Gia_ObjFanin0(pObj) );
Gia_ManCheckChoices_rec( p, Gia_ObjFanin1(pObj) );
Gia_ManCheckChoices_rec( p, Gia_ObjSiblObj(p, Gia_ObjId(p, pObj)) );
}
void Gia_ManCheckChoices( Gia_Man_t * p )
{
Gia_Obj_t * pObj;
int i, fFound = 0;
Gia_ManCleanPhase( p );
Gia_ManForEachCo( p, pObj, i )
Gia_ManCheckChoices_rec( p, Gia_ObjFanin0(pObj) );
Gia_ManForEachAnd( p, pObj, i )
if ( !pObj->fPhase )
printf( "Object %d is dangling.\n", i ), fFound = 1;
if ( !fFound )
printf( "There are no dangling objects.\n" );
Gia_ManCleanPhase( p );
}
/**Function*************************************************************
Synopsis [Duplicates AIG in the DFS order.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
void Gia_ManFromAigChoices_rec( Gia_Man_t * pNew, Aig_Man_t * p, Aig_Obj_t * pObj )
{
if ( pObj == NULL || pObj->iData )
return;
assert( Aig_ObjIsNode(pObj) );
Gia_ManFromAigChoices_rec( pNew, p, Aig_ObjFanin0(pObj) );
Gia_ManFromAigChoices_rec( pNew, p, Aig_ObjFanin1(pObj) );
Gia_ManFromAigChoices_rec( pNew, p, Aig_ObjEquiv(p, pObj) );
pObj->iData = Gia_ManAppendAnd( pNew, Gia_ObjChild0Copy(pObj), Gia_ObjChild1Copy(pObj) );
if ( Aig_ObjEquiv(p, pObj) )
{
int iObjNew, iNextNew;
iObjNew = Abc_Lit2Var(pObj->iData);
iNextNew = Abc_Lit2Var(Aig_ObjEquiv(p, pObj)->iData);
assert( iObjNew > iNextNew );
assert( Gia_ObjIsAnd(Gia_ManObj(pNew, iNextNew)) );
pNew->pSibls[iObjNew] = iNextNew;
}
}
Gia_Man_t * Gia_ManFromAigChoices( Aig_Man_t * p )
{
Gia_Man_t * pNew;
Aig_Obj_t * pObj;
int i;
assert( p->pEquivs != NULL );
// create the new manager
pNew = Gia_ManStart( Aig_ManObjNum(p) );
pNew->pName = Abc_UtilStrsav( p->pName );
pNew->pSpec = Abc_UtilStrsav( p->pSpec );
pNew->nConstrs = p->nConstrs;
// create room to store equivalences
pNew->pSibls = ABC_CALLOC( int, Aig_ManObjNum(p) );
// create the PIs
Aig_ManCleanData( p );
Aig_ManConst1(p)->iData = 1;
Aig_ManForEachCi( p, pObj, i )
pObj->iData = Gia_ManAppendCi( pNew );
// add logic for the POs
Aig_ManForEachCo( p, pObj, i )
Gia_ManFromAigChoices_rec( pNew, p, Aig_ObjFanin0(pObj) );
Aig_ManForEachCo( p, pObj, i )
Gia_ManAppendCo( pNew, Gia_ObjChild0Copy(pObj) );
Gia_ManSetRegNum( pNew, Aig_ManRegNum(p) );
//assert( Gia_ManObjNum(pNew) == Aig_ManObjNum(p) );
//Gia_ManCheckChoices( pNew );
return pNew;
}
/**Function*************************************************************
Synopsis [Duplicates AIG in the DFS order.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
Gia_Man_t * Gia_ManFromAigSimple( Aig_Man_t * p )
{
Gia_Man_t * pNew;
Aig_Obj_t * pObj;
int i;
// create the new manager
pNew = Gia_ManStart( Aig_ManObjNum(p) );
pNew->pName = Abc_UtilStrsav( p->pName );
pNew->pSpec = Abc_UtilStrsav( p->pSpec );
pNew->nConstrs = p->nConstrs;
// create the PIs
Aig_ManCleanData( p );
Aig_ManForEachObj( p, pObj, i )
{
if ( Aig_ObjIsAnd(pObj) )
pObj->iData = Gia_ManAppendAnd( pNew, Gia_ObjChild0Copy(pObj), Gia_ObjChild1Copy(pObj) );
else if ( Aig_ObjIsCi(pObj) )
pObj->iData = Gia_ManAppendCi( pNew );
else if ( Aig_ObjIsCo(pObj) )
pObj->iData = Gia_ManAppendCo( pNew, Gia_ObjChild0Copy(pObj) );
else if ( Aig_ObjIsConst1(pObj) )
pObj->iData = 1;
else
assert( 0 );
}
Gia_ManSetRegNum( pNew, Aig_ManRegNum(p) );
return pNew;
}
/**Function*************************************************************
Synopsis [Handles choices as additional combinational outputs.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
Gia_Man_t * Gia_ManFromAigSwitch( Aig_Man_t * p )
{
Gia_Man_t * pNew;
Aig_Obj_t * pObj;
int i;
// create the new manager
pNew = Gia_ManStart( Aig_ManObjNum(p) );
pNew->pName = Abc_UtilStrsav( p->pName );
pNew->pSpec = Abc_UtilStrsav( p->pSpec );
pNew->nConstrs = p->nConstrs;
// create the PIs
Aig_ManCleanData( p );
Aig_ManConst1(p)->iData = 1;
Aig_ManForEachCi( p, pObj, i )
pObj->iData = Gia_ManAppendCi( pNew );
// add POs corresponding to the nodes with choices
Aig_ManForEachNode( p, pObj, i )
if ( Aig_ObjRefs(pObj) == 0 )
{
Gia_ManFromAig_rec( pNew, p, pObj );
Gia_ManAppendCo( pNew, pObj->iData );
}
// add logic for the POs
Aig_ManForEachCo( p, pObj, i )
Gia_ManFromAig_rec( pNew, p, Aig_ObjFanin0(pObj) );
Aig_ManForEachCo( p, pObj, i )
pObj->iData = Gia_ManAppendCo( pNew, Gia_ObjChild0Copy(pObj) );
Gia_ManSetRegNum( pNew, Aig_ManRegNum(p) );
return pNew;
}
/**Function*************************************************************
Synopsis [Duplicates AIG in the DFS order.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
void Gia_ManToAig_rec( Aig_Man_t * pNew, Aig_Obj_t ** ppNodes, Gia_Man_t * p, Gia_Obj_t * pObj )
{
Gia_Obj_t * pNext;
if ( ppNodes[Gia_ObjId(p, pObj)] )
return;
if ( Gia_ObjIsCi(pObj) )
ppNodes[Gia_ObjId(p, pObj)] = Aig_ObjCreateCi( pNew );
else
{
assert( Gia_ObjIsAnd(pObj) );
Gia_ManToAig_rec( pNew, ppNodes, p, Gia_ObjFanin0(pObj) );
Gia_ManToAig_rec( pNew, ppNodes, p, Gia_ObjFanin1(pObj) );
ppNodes[Gia_ObjId(p, pObj)] = Aig_And( pNew, Gia_ObjChild0Copy2(ppNodes, pObj, Gia_ObjId(p, pObj)), Gia_ObjChild1Copy2(ppNodes, pObj, Gia_ObjId(p, pObj)) );
}
if ( pNew->pEquivs && (pNext = Gia_ObjNextObj(p, Gia_ObjId(p, pObj))) )
{
Aig_Obj_t * pObjNew, * pNextNew;
Gia_ManToAig_rec( pNew, ppNodes, p, pNext );
pObjNew = ppNodes[Gia_ObjId(p, pObj)];
pNextNew = ppNodes[Gia_ObjId(p, pNext)];
if ( pNew->pEquivs )
pNew->pEquivs[Aig_Regular(pObjNew)->Id] = Aig_Regular(pNextNew);
}
}
Aig_Man_t * Gia_ManToAig( Gia_Man_t * p, int fChoices )
{
Aig_Man_t * pNew;
Aig_Obj_t ** ppNodes;
Gia_Obj_t * pObj;
int i;
assert( !fChoices || (p->pNexts && p->pReprs) );
// create the new manager
pNew = Aig_ManStart( Gia_ManAndNum(p) );
pNew->pName = Abc_UtilStrsav( p->pName );
pNew->pSpec = Abc_UtilStrsav( p->pSpec );
pNew->nConstrs = p->nConstrs;
// pNew->pSpec = Abc_UtilStrsav( p->pName );
// duplicate representation of choice nodes
if ( fChoices )
pNew->pEquivs = ABC_CALLOC( Aig_Obj_t *, Gia_ManObjNum(p) );
// create the PIs
ppNodes = ABC_CALLOC( Aig_Obj_t *, Gia_ManObjNum(p) );
ppNodes[0] = Aig_ManConst0(pNew);
Gia_ManForEachCi( p, pObj, i )
ppNodes[Gia_ObjId(p, pObj)] = Aig_ObjCreateCi( pNew );
// transfer level
if ( p->vLevels )
Gia_ManForEachCi( p, pObj, i )
Aig_ObjSetLevel( ppNodes[Gia_ObjId(p, pObj)], Gia_ObjLevel(p, pObj) );
// add logic for the POs
Gia_ManForEachCo( p, pObj, i )
{
Gia_ManToAig_rec( pNew, ppNodes, p, Gia_ObjFanin0(pObj) );
ppNodes[Gia_ObjId(p, pObj)] = Aig_ObjCreateCo( pNew, Gia_ObjChild0Copy2(ppNodes, pObj, Gia_ObjId(p, pObj)) );
}
Aig_ManSetRegNum( pNew, Gia_ManRegNum(p) );
ABC_FREE( ppNodes );
return pNew;
}
/**Function*************************************************************
Synopsis [Duplicates AIG in the DFS order.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
Aig_Man_t * Gia_ManToAigSkip( Gia_Man_t * p, int nOutDelta )
{
Aig_Man_t * pNew;
Aig_Obj_t ** ppNodes;
Gia_Obj_t * pObj;
int i;
assert( p->pNexts == NULL && p->pReprs == NULL );
assert( nOutDelta > 0 && Gia_ManCoNum(p) % nOutDelta == 0 );
// create the new manager
pNew = Aig_ManStart( Gia_ManAndNum(p) );
pNew->pName = Abc_UtilStrsav( p->pName );
pNew->pSpec = Abc_UtilStrsav( p->pSpec );
pNew->nConstrs = p->nConstrs;
// pNew->pSpec = Abc_UtilStrsav( p->pName );
// create the PIs
ppNodes = ABC_CALLOC( Aig_Obj_t *, Gia_ManObjNum(p) );
ppNodes[0] = Aig_ManConst0(pNew);
Gia_ManForEachCi( p, pObj, i )
ppNodes[Gia_ObjId(p, pObj)] = Aig_ObjCreateCi( pNew );
// add logic for the POs
Gia_ManForEachCo( p, pObj, i )
{
Gia_ManToAig_rec( pNew, ppNodes, p, Gia_ObjFanin0(pObj) );
if ( i % nOutDelta != 0 )
continue;
ppNodes[Gia_ObjId(p, pObj)] = Aig_ObjCreateCo( pNew, Gia_ObjChild0Copy2(ppNodes, pObj, Gia_ObjId(p, pObj)) );
}
Aig_ManSetRegNum( pNew, Gia_ManRegNum(p) );
ABC_FREE( ppNodes );
return pNew;
}
/**Function*************************************************************
Synopsis [Duplicates AIG in the DFS order.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
Aig_Man_t * Gia_ManToAigSimple( Gia_Man_t * p )
{
Aig_Man_t * pNew;
Aig_Obj_t ** ppNodes;
Gia_Obj_t * pObj;
int i;
ppNodes = ABC_FALLOC( Aig_Obj_t *, Gia_ManObjNum(p) );
// create the new manager
pNew = Aig_ManStart( Gia_ManObjNum(p) );
pNew->pName = Abc_UtilStrsav( p->pName );
pNew->pSpec = Abc_UtilStrsav( p->pSpec );
pNew->nConstrs = p->nConstrs;
// create the PIs
Gia_ManForEachObj( p, pObj, i )
{
if ( Gia_ObjIsAnd(pObj) )
ppNodes[i] = Aig_And( pNew, Gia_ObjChild0Copy2(ppNodes, pObj, Gia_ObjId(p, pObj)), Gia_ObjChild1Copy2(ppNodes, pObj, Gia_ObjId(p, pObj)) );
else if ( Gia_ObjIsCi(pObj) )
ppNodes[i] = Aig_ObjCreateCi( pNew );
else if ( Gia_ObjIsCo(pObj) )
ppNodes[i] = Aig_ObjCreateCo( pNew, Gia_ObjChild0Copy2(ppNodes, pObj, Gia_ObjId(p, pObj)) );
else if ( Gia_ObjIsConst0(pObj) )
ppNodes[i] = Aig_ManConst0(pNew);
else
assert( 0 );
pObj->Value = Abc_Var2Lit( Aig_ObjId(Aig_Regular(ppNodes[i])), Aig_IsComplement(ppNodes[i]) );
assert( i == 0 || Aig_ObjId(ppNodes[i]) == i );
}
Aig_ManSetRegNum( pNew, Gia_ManRegNum(p) );
ABC_FREE( ppNodes );
return pNew;
}
/**Function*************************************************************
Synopsis [Duplicates AIG in the DFS order.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
Aig_Man_t * Gia_ManCofactorAig( Aig_Man_t * p, int nFrames, int nCofFanLit )
{
Aig_Man_t * pMan;
Gia_Man_t * pGia, * pTemp;
pGia = Gia_ManFromAig( p );
pGia = Gia_ManUnrollAndCofactor( pTemp = pGia, nFrames, nCofFanLit, 1 );
Gia_ManStop( pTemp );
pMan = Gia_ManToAig( pGia, 0 );
Gia_ManStop( pGia );
return pMan;
}
/**Function*************************************************************
Synopsis [Transfers representatives from pGia to pAig.]
Description [Assumes that pGia was created from pAig.]
SideEffects []
SeeAlso []
***********************************************************************/
void Gia_ManReprToAigRepr( Aig_Man_t * pAig, Gia_Man_t * pGia )
{
Aig_Obj_t * pObj;
Gia_Obj_t * pGiaObj, * pGiaRepr;
int i;
assert( pAig->pReprs == NULL );
assert( pGia->pReprs != NULL );
// move pointers from AIG to GIA
Aig_ManForEachObj( pAig, pObj, i )
{
assert( i == 0 || !Abc_LitIsCompl(pObj->iData) );
pGiaObj = Gia_ManObj( pGia, Abc_Lit2Var(pObj->iData) );
pGiaObj->Value = i;
}
// set the pointers to the nodes in AIG
Aig_ManReprStart( pAig, Aig_ManObjNumMax(pAig) );
Gia_ManForEachObj( pGia, pGiaObj, i )
{
pGiaRepr = Gia_ObjReprObj( pGia, i );
if ( pGiaRepr == NULL )
continue;
Aig_ObjCreateRepr( pAig, Aig_ManObj(pAig, pGiaRepr->Value), Aig_ManObj(pAig, pGiaObj->Value) );
}
}
void Gia_ManReprToAigRepr2( Aig_Man_t * pAig, Gia_Man_t * pGia )
{
Gia_Obj_t * pGiaObj, * pGiaRepr;
int i;
assert( pAig->pReprs == NULL );
assert( pGia->pReprs != NULL );
// set the pointers to the nodes in AIG
Aig_ManReprStart( pAig, Aig_ManObjNumMax(pAig) );
Gia_ManForEachObj( pGia, pGiaObj, i )
{
pGiaRepr = Gia_ObjReprObj( pGia, i );
if ( pGiaRepr == NULL )
continue;
Aig_ObjCreateRepr( pAig, Aig_ManObj(pAig, Abc_Lit2Var(pGiaRepr->Value)), Aig_ManObj(pAig, Abc_Lit2Var(pGiaObj->Value)) );
}
}
/**Function*************************************************************
Synopsis [Transfers representatives from pAig to pGia.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
void Gia_ManReprFromAigRepr( Aig_Man_t * pAig, Gia_Man_t * pGia )
{
Gia_Obj_t * pObjGia;
Aig_Obj_t * pObjAig, * pReprAig;
int i;
assert( pAig->pReprs != NULL );
assert( pGia->pReprs == NULL );
assert( Gia_ManObjNum(pGia) - Gia_ManCoNum(pGia) == Aig_ManObjNum(pAig) - Aig_ManCoNum(pAig) );
pGia->pReprs = ABC_CALLOC( Gia_Rpr_t, Gia_ManObjNum(pGia) );
for ( i = 0; i < Gia_ManObjNum(pGia); i++ )
Gia_ObjSetRepr( pGia, i, GIA_VOID );
// move pointers from GIA to AIG
Gia_ManForEachObj( pGia, pObjGia, i )
{
if ( Gia_ObjIsCo(pObjGia) )
continue;
assert( i == 0 || !Abc_LitIsCompl(Gia_ObjValue(pObjGia)) );
pObjAig = Aig_ManObj( pAig, Abc_Lit2Var(Gia_ObjValue(pObjGia)) );
pObjAig->iData = i;
}
Aig_ManForEachObj( pAig, pObjAig, i )
{
if ( Aig_ObjIsCo(pObjAig) )
continue;
if ( pAig->pReprs[i] == NULL )
continue;
pReprAig = pAig->pReprs[i];
Gia_ObjSetRepr( pGia, pObjAig->iData, pReprAig->iData );
}
pGia->pNexts = Gia_ManDeriveNexts( pGia );
}
void Gia_ManReprFromAigRepr2( Aig_Man_t * pAig, Gia_Man_t * pGia )
{
Aig_Obj_t * pObjAig, * pReprAig;
int i;
assert( pAig->pReprs != NULL );
assert( pGia->pReprs == NULL );
assert( Gia_ManObjNum(pGia) - Gia_ManCoNum(pGia) == Aig_ManObjNum(pAig) - Aig_ManCoNum(pAig) );
pGia->pReprs = ABC_CALLOC( Gia_Rpr_t, Gia_ManObjNum(pGia) );
for ( i = 0; i < Gia_ManObjNum(pGia); i++ )
Gia_ObjSetRepr( pGia, i, GIA_VOID );
Aig_ManForEachObj( pAig, pObjAig, i )
{
if ( Aig_ObjIsCo(pObjAig) )
continue;
if ( pAig->pReprs[i] == NULL )
continue;
pReprAig = pAig->pReprs[i];
Gia_ObjSetRepr( pGia, Abc_Lit2Var(pObjAig->iData), Abc_Lit2Var(pReprAig->iData) );
}
pGia->pNexts = Gia_ManDeriveNexts( pGia );
}
/**Function*************************************************************
Synopsis [Applies DC2 to the GIA manager.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
Gia_Man_t * Gia_ManCompress2( Gia_Man_t * p, int fUpdateLevel, int fVerbose )
{
Gia_Man_t * pGia;
Aig_Man_t * pNew, * pTemp;
if ( p->pManTime && p->vLevels == NULL )
Gia_ManLevelWithBoxes( p );
pNew = Gia_ManToAig( p, 0 );
pNew = Dar_ManCompress2( pTemp = pNew, 1, fUpdateLevel, 1, 0, fVerbose );
Aig_ManStop( pTemp );
pGia = Gia_ManFromAig( pNew );
Aig_ManStop( pNew );
Gia_ManTransferTiming( pGia, p );
return pGia;
}
/**Function*************************************************************
Synopsis []
Description []
SideEffects []
SeeAlso []
***********************************************************************/
int Gia_ManTestChoices( Gia_Man_t * p )
{
Gia_Obj_t * pObj; int i;
Vec_Int_t * vPointed = Vec_IntStart( Gia_ManObjNum(p) );
Gia_ManForEachAnd( p, pObj, i )
if ( Gia_ObjSibl(p, i) )
Vec_IntWriteEntry( vPointed, Gia_ObjSibl(p, i), 1 );
Gia_ManCreateRefs( p );
Gia_ManForEachAnd( p, pObj, i )
if ( Vec_IntEntry(vPointed, i) && Gia_ObjRefNumId(p, i) > 0 )
{
printf( "Gia_ManCheckChoices: Member %d", i );
printf( " of a choice node has %d fanouts.\n", Gia_ObjRefNumId(p, i) );
ABC_FREE( p->pRefs );
Vec_IntFree( vPointed );
return 0;
}
ABC_FREE( p->pRefs );
Vec_IntFree( vPointed );
return 1;
}
Gia_Man_t * Gia_ManPerformDch( Gia_Man_t * p, void * pPars )
{
int fUseMapping = 0;
Gia_Man_t * pGia, * pGia1;
Aig_Man_t * pNew;
if ( p->pManTime && p->vLevels == NULL )
Gia_ManLevelWithBoxes( p );
if ( fUseMapping && Gia_ManHasMapping(p) )
pGia1 = (Gia_Man_t *)Dsm_ManDeriveGia( p, 0 );
else
pGia1 = Gia_ManDup( p );
pNew = Gia_ManToAig( pGia1, 0 );
Gia_ManStop( pGia1 );
pNew = Dar_ManChoiceNew( pNew, (Dch_Pars_t *)pPars );
// pGia = Gia_ManFromAig( pNew );
pGia = Gia_ManFromAigChoices( pNew );
Aig_ManStop( pNew );
if ( !p->pManTime && !Gia_ManTestChoices(pGia) )
{
Gia_ManStop( pGia );
pGia = Gia_ManDup( p );
}
Gia_ManTransferTiming( pGia, p );
return pGia;
}
/**Function*************************************************************
Synopsis [Computes equivalences after structural sequential cleanup.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
void Gia_ManSeqCleanupClasses( Gia_Man_t * p, int fConst, int fEquiv, int fVerbose )
{
Aig_Man_t * pNew, * pTemp;
pNew = Gia_ManToAigSimple( p );
pTemp = Aig_ManScl( pNew, fConst, fEquiv, 0, -1, -1, fVerbose, 0 );
Gia_ManReprFromAigRepr( pNew, p );
Aig_ManStop( pTemp );
Aig_ManStop( pNew );
}
/**Function*************************************************************
Synopsis [Solves SAT problem.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
int Gia_ManSolveSat( Gia_Man_t * p )
{
// extern int Fra_FraigSat( Aig_Man_t * pMan, ABC_INT64_T nConfLimit, ABC_INT64_T nInsLimit, int fFlipBits, int fAndOuts, int fNewSolver, int fVerbose );
Aig_Man_t * pNew;
int RetValue;//, clk = Abc_Clock();
pNew = Gia_ManToAig( p, 0 );
RetValue = Fra_FraigSat( pNew, 10000000, 0, 0, 0, 0, 1, 1, 0, 0 );
if ( RetValue == 0 )
{
Gia_Obj_t * pObj;
int i, * pInit = (int *)pNew->pData;
Gia_ManConst0(p)->fMark0 = 0;
Gia_ManForEachPi( p, pObj, i )
pObj->fMark0 = pInit[i];
Gia_ManForEachAnd( p, pObj, i )
pObj->fMark0 = (Gia_ObjFanin0(pObj)->fMark0 ^ Gia_ObjFaninC0(pObj)) &
(Gia_ObjFanin1(pObj)->fMark0 ^ Gia_ObjFaninC1(pObj));
Gia_ManForEachPo( p, pObj, i )
pObj->fMark0 = (Gia_ObjFanin0(pObj)->fMark0 ^ Gia_ObjFaninC0(pObj));
Gia_ManForEachPo( p, pObj, i )
if ( pObj->fMark0 != 1 )
break;
if ( i != Gia_ManPoNum(p) )
Abc_Print( 1, "Counter-example verification has failed. " );
// else
// Abc_Print( 1, "Counter-example verification succeeded. " );
}
/*
else if ( RetValue == 1 )
Abc_Print( 1, "The SAT problem is unsatisfiable. " );
else if ( RetValue == -1 )
Abc_Print( 1, "The SAT problem is undecided. " );
Abc_PrintTime( 1, "Time", Abc_Clock() - clk );
*/
Aig_ManStop( pNew );
return RetValue;
}
////////////////////////////////////////////////////////////////////////
/// END OF FILE ///
////////////////////////////////////////////////////////////////////////
ABC_NAMESPACE_IMPL_END
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