mirror of https://github.com/YosysHQ/abc.git
Experiments with recent ideas.
This commit is contained in:
parent
c1e54b8b76
commit
d44d9e2927
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@ -32845,8 +32845,7 @@ usage:
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***********************************************************************/
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***********************************************************************/
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int Abc_CommandAbc9Lilac( Abc_Frame_t * pAbc, int argc, char ** argv )
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int Abc_CommandAbc9Lilac( Abc_Frame_t * pAbc, int argc, char ** argv )
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{
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{
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extern Vec_Int_t * Gia_ManLilacTest( Gia_Man_t * p, Vec_Int_t * vInit, int nFrames, int nWords, int nTimeOut, int fSim, int fVerbose );
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extern int Gia_ManLilacTest( Gia_Man_t * p, Vec_Int_t * vInit, int nFrames, int nWords, int nTimeOut, int fSim, int fVerbose );
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Vec_Int_t * vTemp;
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int c, nFrames = 1000, nWords = 1000, nTimeOut = 0, fSim = 0, fVerbose = 0;
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int c, nFrames = 1000, nWords = 1000, nTimeOut = 0, fSim = 0, fVerbose = 0;
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Extra_UtilGetoptReset();
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Extra_UtilGetoptReset();
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while ( ( c = Extra_UtilGetopt( argc, argv, "FWTsvh" ) ) != EOF )
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while ( ( c = Extra_UtilGetopt( argc, argv, "FWTsvh" ) ) != EOF )
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@ -32908,8 +32907,12 @@ int Abc_CommandAbc9Lilac( Abc_Frame_t * pAbc, int argc, char ** argv )
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Abc_Print( -1, "Abc_CommandAbc9Lilac(): AIG is combinational.\n" );
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Abc_Print( -1, "Abc_CommandAbc9Lilac(): AIG is combinational.\n" );
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return 0;
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return 0;
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}
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}
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pAbc->pGia->vInitClasses = Gia_ManLilacTest( pAbc->pGia, vTemp = pAbc->pGia->vInitClasses, nFrames, nWords, nTimeOut, fSim, fVerbose );
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if ( pAbc->pGia->vInitClasses == NULL )
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Vec_IntFreeP( &vTemp );
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{
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Abc_Print( -1, "Abc_CommandAbc9Lilac(): Init array is not given.\n" );
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return 0;
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}
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Gia_ManLilacTest( pAbc->pGia, pAbc->pGia->vInitClasses, nFrames, nWords, nTimeOut, fSim, fVerbose );
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return 0;
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return 0;
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usage:
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usage:
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@ -183,6 +183,8 @@ int Bmc_LilacPerform( Gia_Man_t * p, Vec_Int_t * vInit0, Vec_Int_t * vInit1, int
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sat_solver * pSat;
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sat_solver * pSat;
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int iVar0, iVar1, iLit, iLit0, iLit1;
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int iVar0, iVar1, iLit, iLit0, iLit1;
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int i, f, status, nChanges, nMiters, RetValue = 1;
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int i, f, status, nChanges, nMiters, RetValue = 1;
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assert( Vec_IntSize(vInit0) == Gia_ManRegNum(p) );
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assert( Vec_IntSize(vInit1) == Gia_ManRegNum(p) );
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// start the SAT solver
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// start the SAT solver
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pSat = sat_solver_new();
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pSat = sat_solver_new();
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@ -325,11 +327,12 @@ cleanup:
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SeeAlso []
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SeeAlso []
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***********************************************************************/
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***********************************************************************/
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void Gia_ManLilacTest( Gia_Man_t * p, Vec_Int_t * vInit, int nFrames, int nWords, int nTimeOut, int fSim, int fVerbose )
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int Gia_ManLilacTest( Gia_Man_t * p, Vec_Int_t * vInit, int nFrames, int nWords, int nTimeOut, int fSim, int fVerbose )
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{
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{
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Vec_Int_t * vInit0 = Vec_IntStart( Gia_ManRegNum(p) );
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Vec_Int_t * vInit0 = Vec_IntStart( Gia_ManRegNum(p) );
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Bmc_LilacPerform( p, vInit, vInit0, nFrames, nWords, nTimeOut, fVerbose );
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Bmc_LilacPerform( p, vInit, vInit0, nFrames, nWords, nTimeOut, fVerbose );
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Vec_IntFree( vInit0 );
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Vec_IntFree( vInit0 );
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return 1;
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}
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}
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////////////////////////////////////////////////////////////////////////
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////////////////////////////////////////////////////////////////////////
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@ -38,220 +38,6 @@ static inline word * Gia_ParTestObj( Gia_Man_t * p, int Id ) { return (wor
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/// FUNCTION DEFINITIONS ///
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/// FUNCTION DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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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 Cnf_Dat_t * Cnf_DeriveGiaRemapped( Gia_Man_t * p )
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{
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Cnf_Dat_t * pCnf;
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Aig_Man_t * pAig = Gia_ManToAigSimple( p );
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pAig->nRegs = 0;
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pCnf = Cnf_Derive( pAig, Aig_ManCoNum(pAig) );
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Aig_ManStop( pAig );
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return pCnf;
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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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Gia_Man_t * Gia_ManTulipUnfold( Gia_Man_t * p, int nFrames, int fUseVars, Vec_Int_t * vInit )
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{
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Gia_Man_t * pNew, * pTemp;
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Gia_Obj_t * pObj;
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int i, f;
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pNew = Gia_ManStart( fUseVars * 2 * Gia_ManRegNum(p) + nFrames * Gia_ManObjNum(p) );
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pNew->pName = Abc_UtilStrsav( p->pName );
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Gia_ManHashAlloc( pNew );
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Gia_ManConst0(p)->Value = 0;
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// control/data variables
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Gia_ManForEachRo( p, pObj, i )
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Gia_ManAppendCi( pNew );
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Gia_ManForEachRo( p, pObj, i )
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Gia_ManAppendCi( pNew );
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// build timeframes
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assert( !vInit || Vec_IntSize(vInit) == Gia_ManRegNum(p) );
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Gia_ManForEachRo( p, pObj, i )
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{
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if ( vInit == NULL ) // assume 2
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pObj->Value = fUseVars ? Gia_ManHashAnd(pNew, Gia_ManCiLit(pNew, i), Gia_ManCiLit(pNew, Gia_ManRegNum(p)+i)) : 0;
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else if ( Vec_IntEntry(vInit, i) == 0 )
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pObj->Value = 0;
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else if ( Vec_IntEntry(vInit, i) == 1 )
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pObj->Value = 1;
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else if ( Vec_IntEntry(vInit, i) == 2 )
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pObj->Value = fUseVars ? Gia_ManHashAnd(pNew, Gia_ManCiLit(pNew, i), Gia_ManCiLit(pNew, Gia_ManRegNum(p)+i)) : 0;
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else if ( Vec_IntEntry(vInit, i) == 3 )
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pObj->Value = fUseVars ? Gia_ManHashAnd(pNew, Gia_ManCiLit(pNew, i), Gia_ManCiLit(pNew, Gia_ManRegNum(p)+i)) : 1;
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else assert( 0 );
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}
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for ( f = 0; f < nFrames; f++ )
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{
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Gia_ManForEachPi( p, pObj, i )
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pObj->Value = Gia_ManAppendCi( pNew );
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Gia_ManForEachAnd( p, pObj, i )
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pObj->Value = Gia_ManHashAnd( pNew, Gia_ObjFanin0Copy(pObj), Gia_ObjFanin1Copy(pObj) );
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Gia_ManForEachRi( p, pObj, i )
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pObj->Value = Gia_ObjFanin0Copy(pObj);
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Gia_ManForEachRo( p, pObj, i )
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pObj->Value = Gia_ObjRoToRi(p, pObj)->Value;
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}
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Gia_ManForEachRi( p, pObj, i )
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pObj->Value = Gia_ManAppendCo( pNew, pObj->Value );
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pNew = Gia_ManCleanup( pTemp = pNew );
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Gia_ManStop( pTemp );
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assert( Gia_ManPiNum(pNew) == 2 * Gia_ManRegNum(p) + nFrames * Gia_ManPiNum(p) );
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return pNew;
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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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Vec_Int_t * Gia_ManTulipPerform( Gia_Man_t * p, Vec_Int_t * vInit, int nFrames, int nTimeOut, int fVerbose )
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{
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int nIterMax = 1000000;
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int i, iLit, Iter, status;
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int nLits, * pLits;
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abctime clkTotal = Abc_Clock();
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abctime clkSat = 0;
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Vec_Int_t * vLits, * vMap;
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sat_solver * pSat;
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Gia_Obj_t * pObj;
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Gia_Man_t * p0 = Gia_ManTulipUnfold( p, nFrames, 0, vInit );
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Gia_Man_t * p1 = Gia_ManTulipUnfold( p, nFrames, 1, vInit );
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Gia_Man_t * pM = Gia_ManMiter( p0, p1, 0, 0, 0, 0, 0 );
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Cnf_Dat_t * pCnf = Cnf_DeriveGiaRemapped( pM );
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Gia_ManStop( p0 );
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Gia_ManStop( p1 );
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assert( Gia_ManRegNum(p) > 0 );
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if ( fVerbose )
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printf( "Running with %d frames and %sgiven init state.\n", nFrames, vInit ? "":"no " );
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pSat = sat_solver_new();
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sat_solver_setnvars( pSat, pCnf->nVars );
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sat_solver_set_runtime_limit( pSat, nTimeOut ? nTimeOut * CLOCKS_PER_SEC + Abc_Clock(): 0 );
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for ( i = 0; i < pCnf->nClauses; i++ )
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if ( !sat_solver_addclause( pSat, pCnf->pClauses[i], pCnf->pClauses[i+1] ) )
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assert( 0 );
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// add one large OR clause
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vLits = Vec_IntAlloc( Gia_ManCoNum(p) );
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Gia_ManForEachCo( pM, pObj, i )
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Vec_IntPush( vLits, Abc_Var2Lit(pCnf->pVarNums[Gia_ObjId(pM, pObj)], 0) );
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sat_solver_addclause( pSat, Vec_IntArray(vLits), Vec_IntArray(vLits) + Vec_IntSize(vLits) );
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// create assumptions
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Vec_IntClear( vLits );
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Gia_ManForEachPi( pM, pObj, i )
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if ( i == Gia_ManRegNum(p) )
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break;
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else if ( vInit == NULL || (Vec_IntEntry(vInit, i) & 2) )
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Vec_IntPush( vLits, Abc_Var2Lit(pCnf->pVarNums[Gia_ObjId(pM, pObj)], 1) );
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if ( fVerbose )
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{
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printf( "Iter%6d : ", 0 );
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printf( "Var =%10d ", sat_solver_nvars(pSat) );
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printf( "Clause =%10d ", sat_solver_nclauses(pSat) );
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printf( "Conflict =%10d ", sat_solver_nconflicts(pSat) );
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printf( "Subset =%6d ", Vec_IntSize(vLits) );
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Abc_PrintTime( 1, "Time", clkSat );
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// ABC_PRTr( "Solver time", clkSat );
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}
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for ( Iter = 0; Iter < nIterMax; Iter++ )
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{
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abctime clk = Abc_Clock();
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status = sat_solver_solve( pSat, Vec_IntArray(vLits), Vec_IntArray(vLits) + Vec_IntSize(vLits), (ABC_INT64_T)0, (ABC_INT64_T)0, (ABC_INT64_T)0, (ABC_INT64_T)0 );
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clkSat += Abc_Clock() - clk;
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if ( status == l_Undef )
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{
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// if ( fVerbose )
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// printf( "\n" );
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printf( "Timeout reached after %d seconds and %d iterations. ", nTimeOut, Iter );
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break;
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}
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if ( status == l_True )
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{
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// if ( fVerbose )
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// printf( "\n" );
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printf( "The problem is SAT after %d iterations. ", Iter );
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break;
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}
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assert( status == l_False );
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nLits = sat_solver_final( pSat, &pLits );
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if ( fVerbose )
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{
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printf( "Iter%6d : ", Iter+1 );
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printf( "Var =%10d ", sat_solver_nvars(pSat) );
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printf( "Clause =%10d ", sat_solver_nclauses(pSat) );
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printf( "Conflict =%10d ", sat_solver_nconflicts(pSat) );
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printf( "Subset =%6d ", nLits );
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Abc_PrintTime( 1, "Time", clkSat );
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// ABC_PRTr( "Solver time", clkSat );
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}
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if ( Vec_IntSize(vLits) == nLits )
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{
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// if ( fVerbose )
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// printf( "\n" );
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printf( "Reached fixed point with %d entries after %d iterations. ", Vec_IntSize(vLits), Iter+1 );
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break;
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}
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// collect used literals
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Vec_IntClear( vLits );
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for ( i = 0; i < nLits; i++ )
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Vec_IntPush( vLits, Abc_LitNot(pLits[i]) );
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}
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// create map
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vMap = Vec_IntStart( pCnf->nVars );
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Vec_IntForEachEntry( vLits, iLit, i )
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Vec_IntWriteEntry( vMap, Abc_Lit2Var(iLit), 1 );
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// create output
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Vec_IntFree( vLits );
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if ( vInit )
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vLits = Vec_IntDup(vInit);
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else
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vLits = Vec_IntAlloc(Gia_ManRegNum(p)), Vec_IntFill(vLits, Gia_ManRegNum(p), 2);
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Gia_ManForEachPi( pM, pObj, i )
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if ( i == Gia_ManRegNum(p) )
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break;
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else if ( (Vec_IntEntry(vLits, i) & 2) && Vec_IntEntry( vMap, pCnf->pVarNums[Gia_ObjId(pM, pObj)] ) )
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Vec_IntWriteEntry( vLits, i, (Vec_IntEntry(vLits, i) & 1) );
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Vec_IntFree( vMap );
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// cleanup
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sat_solver_delete( pSat );
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Cnf_DataFree( pCnf );
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Gia_ManStop( pM );
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Abc_PrintTime( 1, "Total runtime", Abc_Clock() - clkTotal );
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return vLits;
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}
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/**Function*************************************************************
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/**Function*************************************************************
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Synopsis []
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Synopsis []
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@ -272,10 +58,7 @@ void Gia_ManRoseInit( Gia_Man_t * p, Vec_Int_t * vInit )
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{
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{
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pData0 = Gia_ParTestObj( p, Gia_ObjId(p, pObj) );
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pData0 = Gia_ParTestObj( p, Gia_ObjId(p, pObj) );
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pData1 = pData0 + p->iData;
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pData1 = pData0 + p->iData;
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if ( vInit == NULL ) // X
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if ( Vec_IntEntry(vInit, k) == 0 ) // 0
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for ( i = 0; i < p->iData; i++ )
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pData0[i] = pData1[i] = 0;
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else if ( Vec_IntEntry(vInit, k) == 0 ) // 0
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for ( i = 0; i < p->iData; i++ )
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for ( i = 0; i < p->iData; i++ )
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pData0[i] = ~(word)0, pData1[i] = 0;
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pData0[i] = ~(word)0, pData1[i] = 0;
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else if ( Vec_IntEntry(vInit, k) == 1 ) // 1
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else if ( Vec_IntEntry(vInit, k) == 1 ) // 1
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@ -453,11 +236,7 @@ Vec_Int_t * Gia_ManRosePerform( Gia_Man_t * p, Vec_Int_t * vInit0, int nFrames,
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Gia_ManRandomW( 1 );
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Gia_ManRandomW( 1 );
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if ( fVerbose )
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if ( fVerbose )
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printf( "Running with %d frames, %d words, and %sgiven init state.\n", nFrames, nWords, vInit0 ? "":"no " );
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printf( "Running with %d frames, %d words, and %sgiven init state.\n", nFrames, nWords, vInit0 ? "":"no " );
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if ( vInit0 )
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vInit = Vec_IntDup(vInit0);
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vInit = Vec_IntDup(vInit0);
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else
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vInit = Vec_IntAlloc(Gia_ManRegNum(p)), Vec_IntFill(vInit, Gia_ManRegNum(p), 2);
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assert( Vec_IntSize(vInit) == Gia_ManRegNum(p) );
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Gia_ParTestAlloc( p, nWords );
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Gia_ParTestAlloc( p, nWords );
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Gia_ManRoseInit( p, vInit );
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Gia_ManRoseInit( p, vInit );
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||||||
Cost0 = 0;
|
Cost0 = 0;
|
||||||
|
|
@ -481,12 +260,33 @@ Vec_Int_t * Gia_ManRosePerform( Gia_Man_t * p, Vec_Int_t * vInit0, int nFrames,
|
||||||
Gia_ParTestFree( p );
|
Gia_ParTestFree( p );
|
||||||
printf( "After %d frames, found a sequence to produce %d x-values (out of %d). ", f, Cost, Gia_ManRegNum(p) );
|
printf( "After %d frames, found a sequence to produce %d x-values (out of %d). ", f, Cost, Gia_ManRegNum(p) );
|
||||||
Abc_PrintTime( 1, "Total runtime", Abc_Clock() - clkTotal );
|
Abc_PrintTime( 1, "Total runtime", Abc_Clock() - clkTotal );
|
||||||
Vec_IntFill(vInit, Vec_IntSize(vInit), 2);
|
|
||||||
// printf( "The resulting init state is invalid.\n" );
|
// printf( "The resulting init state is invalid.\n" );
|
||||||
Vec_IntFreeP( &vInit );
|
Vec_IntFreeP( &vInit );
|
||||||
return vInit;
|
return vInit;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
|
/**Function*************************************************************
|
||||||
|
|
||||||
|
Synopsis []
|
||||||
|
|
||||||
|
Description []
|
||||||
|
|
||||||
|
SideEffects []
|
||||||
|
|
||||||
|
SeeAlso []
|
||||||
|
|
||||||
|
***********************************************************************/
|
||||||
|
static inline Cnf_Dat_t * Cnf_DeriveGiaRemapped( Gia_Man_t * p )
|
||||||
|
{
|
||||||
|
Cnf_Dat_t * pCnf;
|
||||||
|
Aig_Man_t * pAig = Gia_ManToAigSimple( p );
|
||||||
|
pAig->nRegs = 0;
|
||||||
|
pCnf = Cnf_Derive( pAig, Aig_ManCoNum(pAig) );
|
||||||
|
Aig_ManStop( pAig );
|
||||||
|
return pCnf;
|
||||||
|
}
|
||||||
|
|
||||||
/**Function*************************************************************
|
/**Function*************************************************************
|
||||||
|
|
||||||
Synopsis []
|
Synopsis []
|
||||||
|
|
@ -498,13 +298,209 @@ Vec_Int_t * Gia_ManRosePerform( Gia_Man_t * p, Vec_Int_t * vInit0, int nFrames,
|
||||||
SeeAlso []
|
SeeAlso []
|
||||||
|
|
||||||
***********************************************************************/
|
***********************************************************************/
|
||||||
Vec_Int_t * Gia_ManTulipTest( Gia_Man_t * p, Vec_Int_t * vInit, int nFrames, int nWords, int nTimeOut, int fSim, int fVerbose )
|
Gia_Man_t * Gia_ManTulipUnfold( Gia_Man_t * p, int nFrames, int fUseVars, Vec_Int_t * vInit )
|
||||||
{
|
{
|
||||||
Vec_Int_t * vRes;
|
Gia_Man_t * pNew, * pTemp;
|
||||||
|
Gia_Obj_t * pObj;
|
||||||
|
int i, f;
|
||||||
|
pNew = Gia_ManStart( fUseVars * 2 * Gia_ManRegNum(p) + nFrames * Gia_ManObjNum(p) );
|
||||||
|
pNew->pName = Abc_UtilStrsav( p->pName );
|
||||||
|
Gia_ManHashAlloc( pNew );
|
||||||
|
Gia_ManConst0(p)->Value = 0;
|
||||||
|
// control/data variables
|
||||||
|
Gia_ManForEachRo( p, pObj, i )
|
||||||
|
Gia_ManAppendCi( pNew );
|
||||||
|
Gia_ManForEachRo( p, pObj, i )
|
||||||
|
Gia_ManAppendCi( pNew );
|
||||||
|
// build timeframes
|
||||||
|
assert( !vInit || Vec_IntSize(vInit) == Gia_ManRegNum(p) );
|
||||||
|
Gia_ManForEachRo( p, pObj, i )
|
||||||
|
{
|
||||||
|
if ( Vec_IntEntry(vInit, i) == 0 )
|
||||||
|
pObj->Value = fUseVars ? Gia_ManHashAnd(pNew, Gia_ManCiLit(pNew, i), Gia_ManCiLit(pNew, Gia_ManRegNum(p)+i)) : 0;
|
||||||
|
else if ( Vec_IntEntry(vInit, i) == 1 )
|
||||||
|
pObj->Value = fUseVars ? Gia_ManHashAnd(pNew, Gia_ManCiLit(pNew, i), Gia_ManCiLit(pNew, Gia_ManRegNum(p)+i)) : 1;
|
||||||
|
else if ( Vec_IntEntry(vInit, i) == 2 )
|
||||||
|
pObj->Value = Gia_ManHashAnd(pNew, Gia_ManCiLit(pNew, i), Gia_ManCiLit(pNew, Gia_ManRegNum(p)+i));
|
||||||
|
else if ( Vec_IntEntry(vInit, i) == 3 )
|
||||||
|
pObj->Value = Gia_ManHashAnd(pNew, Gia_ManCiLit(pNew, i), Gia_ManCiLit(pNew, Gia_ManRegNum(p)+i));
|
||||||
|
else assert( 0 );
|
||||||
|
}
|
||||||
|
for ( f = 0; f < nFrames; f++ )
|
||||||
|
{
|
||||||
|
Gia_ManForEachPi( p, pObj, i )
|
||||||
|
pObj->Value = Gia_ManAppendCi( pNew );
|
||||||
|
Gia_ManForEachAnd( p, pObj, i )
|
||||||
|
pObj->Value = Gia_ManHashAnd( pNew, Gia_ObjFanin0Copy(pObj), Gia_ObjFanin1Copy(pObj) );
|
||||||
|
Gia_ManForEachRi( p, pObj, i )
|
||||||
|
pObj->Value = Gia_ObjFanin0Copy(pObj);
|
||||||
|
Gia_ManForEachRo( p, pObj, i )
|
||||||
|
pObj->Value = Gia_ObjRoToRi(p, pObj)->Value;
|
||||||
|
}
|
||||||
|
Gia_ManForEachRi( p, pObj, i )
|
||||||
|
pObj->Value = Gia_ManAppendCo( pNew, pObj->Value );
|
||||||
|
pNew = Gia_ManCleanup( pTemp = pNew );
|
||||||
|
Gia_ManStop( pTemp );
|
||||||
|
assert( Gia_ManPiNum(pNew) == 2 * Gia_ManRegNum(p) + nFrames * Gia_ManPiNum(p) );
|
||||||
|
return pNew;
|
||||||
|
}
|
||||||
|
|
||||||
|
|
||||||
|
/**Function*************************************************************
|
||||||
|
|
||||||
|
Synopsis []
|
||||||
|
|
||||||
|
Description []
|
||||||
|
|
||||||
|
SideEffects []
|
||||||
|
|
||||||
|
SeeAlso []
|
||||||
|
|
||||||
|
***********************************************************************/
|
||||||
|
Vec_Int_t * Gia_ManTulipPerform( Gia_Man_t * p, Vec_Int_t * vInit, int nFrames, int nTimeOut, int fVerbose )
|
||||||
|
{
|
||||||
|
int nIterMax = 1000000;
|
||||||
|
int i, iLit, Iter, status;
|
||||||
|
int nLits, * pLits;
|
||||||
|
abctime clkTotal = Abc_Clock();
|
||||||
|
abctime clkSat = 0;
|
||||||
|
Vec_Int_t * vLits, * vMap;
|
||||||
|
sat_solver * pSat;
|
||||||
|
Gia_Obj_t * pObj;
|
||||||
|
Gia_Man_t * p0 = Gia_ManTulipUnfold( p, nFrames, 0, vInit );
|
||||||
|
Gia_Man_t * p1 = Gia_ManTulipUnfold( p, nFrames, 1, vInit );
|
||||||
|
Gia_Man_t * pM = Gia_ManMiter( p0, p1, 0, 0, 0, 0, 0 );
|
||||||
|
Cnf_Dat_t * pCnf = Cnf_DeriveGiaRemapped( pM );
|
||||||
|
Gia_ManStop( p0 );
|
||||||
|
Gia_ManStop( p1 );
|
||||||
|
assert( Gia_ManRegNum(p) > 0 );
|
||||||
|
if ( fVerbose )
|
||||||
|
printf( "Running with %d frames and %sgiven init state.\n", nFrames, vInit ? "":"no " );
|
||||||
|
|
||||||
|
pSat = sat_solver_new();
|
||||||
|
sat_solver_setnvars( pSat, pCnf->nVars );
|
||||||
|
sat_solver_set_runtime_limit( pSat, nTimeOut ? nTimeOut * CLOCKS_PER_SEC + Abc_Clock(): 0 );
|
||||||
|
for ( i = 0; i < pCnf->nClauses; i++ )
|
||||||
|
if ( !sat_solver_addclause( pSat, pCnf->pClauses[i], pCnf->pClauses[i+1] ) )
|
||||||
|
assert( 0 );
|
||||||
|
|
||||||
|
// add one large OR clause
|
||||||
|
vLits = Vec_IntAlloc( Gia_ManCoNum(p) );
|
||||||
|
Gia_ManForEachCo( pM, pObj, i )
|
||||||
|
Vec_IntPush( vLits, Abc_Var2Lit(pCnf->pVarNums[Gia_ObjId(pM, pObj)], 0) );
|
||||||
|
sat_solver_addclause( pSat, Vec_IntArray(vLits), Vec_IntArray(vLits) + Vec_IntSize(vLits) );
|
||||||
|
|
||||||
|
// create assumptions
|
||||||
|
Vec_IntClear( vLits );
|
||||||
|
Gia_ManForEachPi( pM, pObj, i )
|
||||||
|
if ( i == Gia_ManRegNum(p) )
|
||||||
|
break;
|
||||||
|
else if ( !(Vec_IntEntry(vInit, i) & 2) )
|
||||||
|
Vec_IntPush( vLits, Abc_Var2Lit(pCnf->pVarNums[Gia_ObjId(pM, pObj)], 1) );
|
||||||
|
|
||||||
|
if ( fVerbose )
|
||||||
|
{
|
||||||
|
printf( "Iter%6d : ", 0 );
|
||||||
|
printf( "Var =%10d ", sat_solver_nvars(pSat) );
|
||||||
|
printf( "Clause =%10d ", sat_solver_nclauses(pSat) );
|
||||||
|
printf( "Conflict =%10d ", sat_solver_nconflicts(pSat) );
|
||||||
|
printf( "Subset =%6d ", Vec_IntSize(vLits) );
|
||||||
|
Abc_PrintTime( 1, "Time", clkSat );
|
||||||
|
// ABC_PRTr( "Solver time", clkSat );
|
||||||
|
}
|
||||||
|
for ( Iter = 0; Iter < nIterMax; Iter++ )
|
||||||
|
{
|
||||||
|
abctime clk = Abc_Clock();
|
||||||
|
status = sat_solver_solve( pSat, Vec_IntArray(vLits), Vec_IntArray(vLits) + Vec_IntSize(vLits), (ABC_INT64_T)0, (ABC_INT64_T)0, (ABC_INT64_T)0, (ABC_INT64_T)0 );
|
||||||
|
clkSat += Abc_Clock() - clk;
|
||||||
|
if ( status == l_Undef )
|
||||||
|
{
|
||||||
|
// if ( fVerbose )
|
||||||
|
// printf( "\n" );
|
||||||
|
printf( "Timeout reached after %d seconds and %d iterations. ", nTimeOut, Iter );
|
||||||
|
break;
|
||||||
|
}
|
||||||
|
if ( status == l_True )
|
||||||
|
{
|
||||||
|
// if ( fVerbose )
|
||||||
|
// printf( "\n" );
|
||||||
|
printf( "The problem is SAT after %d iterations. ", Iter );
|
||||||
|
break;
|
||||||
|
}
|
||||||
|
assert( status == l_False );
|
||||||
|
nLits = sat_solver_final( pSat, &pLits );
|
||||||
|
if ( fVerbose )
|
||||||
|
{
|
||||||
|
printf( "Iter%6d : ", Iter+1 );
|
||||||
|
printf( "Var =%10d ", sat_solver_nvars(pSat) );
|
||||||
|
printf( "Clause =%10d ", sat_solver_nclauses(pSat) );
|
||||||
|
printf( "Conflict =%10d ", sat_solver_nconflicts(pSat) );
|
||||||
|
printf( "Subset =%6d ", nLits );
|
||||||
|
Abc_PrintTime( 1, "Time", clkSat );
|
||||||
|
// ABC_PRTr( "Solver time", clkSat );
|
||||||
|
}
|
||||||
|
if ( Vec_IntSize(vLits) == nLits )
|
||||||
|
{
|
||||||
|
// if ( fVerbose )
|
||||||
|
// printf( "\n" );
|
||||||
|
printf( "Reached fixed point with %d entries after %d iterations. ", Vec_IntSize(vLits), Iter+1 );
|
||||||
|
break;
|
||||||
|
}
|
||||||
|
// collect used literals
|
||||||
|
Vec_IntClear( vLits );
|
||||||
|
for ( i = 0; i < nLits; i++ )
|
||||||
|
Vec_IntPush( vLits, Abc_LitNot(pLits[i]) );
|
||||||
|
}
|
||||||
|
// create map
|
||||||
|
vMap = Vec_IntStart( pCnf->nVars );
|
||||||
|
Vec_IntForEachEntry( vLits, iLit, i )
|
||||||
|
Vec_IntWriteEntry( vMap, Abc_Lit2Var(iLit), 1 );
|
||||||
|
|
||||||
|
// create output
|
||||||
|
Vec_IntFree( vLits );
|
||||||
|
vLits = Vec_IntDup(vInit);
|
||||||
|
Gia_ManForEachPi( pM, pObj, i )
|
||||||
|
if ( i == Gia_ManRegNum(p) )
|
||||||
|
break;
|
||||||
|
else if ( !(Vec_IntEntry(vLits, i) & 2) && !Vec_IntEntry(vMap, pCnf->pVarNums[Gia_ObjId(pM, pObj)]) )
|
||||||
|
Vec_IntWriteEntry( vLits, i, Vec_IntEntry(vLits, i) | 2 );
|
||||||
|
Vec_IntFree( vMap );
|
||||||
|
|
||||||
|
// cleanup
|
||||||
|
sat_solver_delete( pSat );
|
||||||
|
Cnf_DataFree( pCnf );
|
||||||
|
Gia_ManStop( pM );
|
||||||
|
Abc_PrintTime( 1, "Total runtime", Abc_Clock() - clkTotal );
|
||||||
|
return vLits;
|
||||||
|
}
|
||||||
|
|
||||||
|
|
||||||
|
/**Function*************************************************************
|
||||||
|
|
||||||
|
Synopsis []
|
||||||
|
|
||||||
|
Description []
|
||||||
|
|
||||||
|
SideEffects []
|
||||||
|
|
||||||
|
SeeAlso []
|
||||||
|
|
||||||
|
***********************************************************************/
|
||||||
|
Vec_Int_t * Gia_ManTulipTest( Gia_Man_t * p, Vec_Int_t * vInit0, int nFrames, int nWords, int nTimeOut, int fSim, int fVerbose )
|
||||||
|
{
|
||||||
|
Vec_Int_t * vRes, * vInit;
|
||||||
if ( fSim )
|
if ( fSim )
|
||||||
|
{
|
||||||
|
vInit = Vec_IntAlloc(0); Vec_IntFill( vInit, Gia_ManRegNum(p), 2 );
|
||||||
vRes = Gia_ManRosePerform( p, vInit, nFrames, nWords, fVerbose );
|
vRes = Gia_ManRosePerform( p, vInit, nFrames, nWords, fVerbose );
|
||||||
|
}
|
||||||
else
|
else
|
||||||
|
{
|
||||||
|
vInit = vInit0 ? vInit0 : Vec_IntStart( Gia_ManRegNum(p) );
|
||||||
vRes = Gia_ManTulipPerform( p, vInit, nFrames, nTimeOut, fVerbose );
|
vRes = Gia_ManTulipPerform( p, vInit, nFrames, nTimeOut, fVerbose );
|
||||||
|
}
|
||||||
|
if ( vInit != vInit0 )
|
||||||
|
Vec_IntFree( vInit );
|
||||||
return vRes;
|
return vRes;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
|
||||||
Loading…
Reference in New Issue