Commit bfbbfadf by Alan Mishchenko

Adding command 'srm2'.

parent ddb34e87
...@@ -1345,6 +1345,9 @@ Gia_Man_t * Gia_ManMiter( Gia_Man_t * p0, Gia_Man_t * p1, int fDualOut, int fSeq ...@@ -1345,6 +1345,9 @@ Gia_Man_t * Gia_ManMiter( Gia_Man_t * p0, Gia_Man_t * p1, int fDualOut, int fSeq
Gia_ManHashStop( pNew ); Gia_ManHashStop( pNew );
pNew = Gia_ManCleanup( pTemp = pNew ); pNew = Gia_ManCleanup( pTemp = pNew );
Gia_ManStop( pTemp ); Gia_ManStop( pTemp );
pNew = Gia_ManDupNormalized( pTemp = pNew );
Gia_ManStop( pTemp );
return pNew; return pNew;
} }
......
...@@ -348,7 +348,7 @@ void Gia_ManEquivPrintClasses( Gia_Man_t * p, int fVerbose, float Mem ) ...@@ -348,7 +348,7 @@ void Gia_ManEquivPrintClasses( Gia_Man_t * p, int fVerbose, float Mem )
if ( fVerbose ) if ( fVerbose )
{ {
int Ent; int Ent;
/*
printf( "Const0 = " ); printf( "Const0 = " );
Gia_ManForEachConst( p, i ) Gia_ManForEachConst( p, i )
printf( "%d ", i ); printf( "%d ", i );
...@@ -356,7 +356,7 @@ void Gia_ManEquivPrintClasses( Gia_Man_t * p, int fVerbose, float Mem ) ...@@ -356,7 +356,7 @@ void Gia_ManEquivPrintClasses( Gia_Man_t * p, int fVerbose, float Mem )
Counter = 0; Counter = 0;
Gia_ManForEachClass( p, i ) Gia_ManForEachClass( p, i )
Gia_ManEquivPrintOne( p, i, ++Counter ); Gia_ManEquivPrintOne( p, i, ++Counter );
*/
Gia_ManLevelNum( p ); Gia_ManLevelNum( p );
Gia_ManForEachClass( p, i ) Gia_ManForEachClass( p, i )
if ( i % 100 == 0 ) if ( i % 100 == 0 )
...@@ -875,6 +875,135 @@ Gia_Man_t * Gia_ManSpecReduceTrace( Gia_Man_t * p, Vec_Int_t * vTrace ) ...@@ -875,6 +875,135 @@ Gia_Man_t * Gia_ManSpecReduceTrace( Gia_Man_t * p, Vec_Int_t * vTrace )
return pNew; return pNew;
} }
/**Function*************************************************************
Synopsis [Reduces AIG using equivalence classes.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
int Gia_ManFilterEquivsForSpeculation( Gia_Man_t * pGia, char * pName1, char * pName2 )
{
Gia_Man_t * pGia1, * pGia2, * pMiter;
Gia_Obj_t * pObj1, * pObj2, * pObjM, * pObj;
int i, iObj, iNext, Counter = 0;
if ( pGia->pReprs == NULL || pGia->pNexts == NULL )
{
printf( "Equivalences are not defined.\n" );
return 0;
}
pGia1 = Gia_ReadAiger( pName1, 0 );
if ( pGia1 == NULL )
{
printf( "Cannot read first file %s.\n", pName1 );
return 0;
}
pGia2 = Gia_ReadAiger( pName2, 0 );
if ( pGia2 == NULL )
{
Gia_ManStop( pGia2 );
printf( "Cannot read second file %s.\n", pName2 );
return 0;
}
pMiter = Gia_ManMiter( pGia1, pGia2, 0, 1, 0 );
if ( pMiter == NULL )
{
Gia_ManStop( pGia1 );
Gia_ManStop( pGia2 );
printf( "Cannot create sequential miter.\n" );
return 0;
}
// make sure the miter is isomorphic
if ( Gia_ManObjNum(pGia) != Gia_ManObjNum(pMiter) )
{
Gia_ManStop( pGia1 );
Gia_ManStop( pGia2 );
Gia_ManStop( pMiter );
printf( "The number of objects in different.\n" );
return 0;
}
if ( memcmp( pGia->pObjs, pMiter->pObjs, sizeof(Gia_Obj_t) * Gia_ManObjNum(pGia) ) )
{
Gia_ManStop( pGia1 );
Gia_ManStop( pGia2 );
Gia_ManStop( pMiter );
printf( "The AIG structure of the miter does not match.\n" );
return 0;
}
// transfer copies
Gia_ManCleanMark0( pGia );
Gia_ManForEachObj( pGia1, pObj1, i )
{
if ( pObj1->Value == ~0 )
continue;
pObjM = Gia_ManObj( pMiter, Gia_Lit2Var(pObj1->Value) );
pObj = Gia_ManObj( pGia, Gia_ObjId(pMiter, pObjM) );
pObj->fMark0 = 1;
}
Gia_ManCleanMark1( pGia );
Gia_ManForEachObj( pGia2, pObj2, i )
{
if ( pObj2->Value == ~0 )
continue;
pObjM = Gia_ManObj( pMiter, Gia_Lit2Var(pObj2->Value) );
pObj = Gia_ManObj( pGia, Gia_ObjId(pMiter, pObjM) );
pObj->fMark1 = 1;
}
// filter equivalences
Gia_ManForEachConst( pGia, i )
{
Gia_ObjUnsetRepr( pGia, i );
assert( pGia->pNexts[i] == 0 );
}
Gia_ManForEachClass( pGia, i )
{
// find the first colorA and colorB
int ClassA = -1, ClassB = -1;
Gia_ClassForEachObj( pGia, i, iObj )
{
pObj = Gia_ManObj( pGia, iObj );
if ( ClassA == -1 && pObj->fMark0 && !pObj->fMark1 )
ClassA = iObj;
if ( ClassB == -1 && pObj->fMark1 && !pObj->fMark0 )
ClassB = iObj;
}
// undo equivalence classes
for ( iObj = i, iNext = Gia_ObjNext(pGia, iObj); iObj;
iObj = iNext, iNext = Gia_ObjNext(pGia, iObj) )
{
Gia_ObjUnsetRepr( pGia, iObj );
Gia_ObjSetNext( pGia, iObj, 0 );
}
assert( !Gia_ObjIsHead(pGia, i) );
if ( ClassA > 0 && ClassB > 0 )
{
if ( ClassA > ClassB )
{
ClassA ^= ClassB;
ClassB ^= ClassA;
ClassA ^= ClassB;
}
assert( ClassA < ClassB );
Gia_ObjSetNext( pGia, ClassA, ClassB );
Gia_ObjSetRepr( pGia, ClassB, ClassA );
Counter++;
assert( Gia_ObjIsHead(pGia, ClassA) );
}
}
printf( "The number of two-node classes after filtering = %d.\n", Counter );
//Gia_ManEquivPrintClasses( pGia, 1, 0 );
Gia_ManCleanMark0( pGia );
Gia_ManCleanMark1( pGia );
return 1;
}
/**Function************************************************************* /**Function*************************************************************
Synopsis [Reduces AIG using equivalence classes.] Synopsis [Reduces AIG using equivalence classes.]
......
...@@ -356,6 +356,7 @@ static int Abc_CommandAbc9Choice ( Abc_Frame_t * pAbc, int argc, cha ...@@ -356,6 +356,7 @@ static int Abc_CommandAbc9Choice ( Abc_Frame_t * pAbc, int argc, cha
static int Abc_CommandAbc9Sat ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandAbc9Sat ( Abc_Frame_t * pAbc, int argc, char ** argv );
static int Abc_CommandAbc9Fraig ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandAbc9Fraig ( Abc_Frame_t * pAbc, int argc, char ** argv );
static int Abc_CommandAbc9Srm ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandAbc9Srm ( Abc_Frame_t * pAbc, int argc, char ** argv );
static int Abc_CommandAbc9Srm2 ( Abc_Frame_t * pAbc, int argc, char ** argv );
static int Abc_CommandAbc9Reduce ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandAbc9Reduce ( Abc_Frame_t * pAbc, int argc, char ** argv );
static int Abc_CommandAbc9EquivMark ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandAbc9EquivMark ( Abc_Frame_t * pAbc, int argc, char ** argv );
static int Abc_CommandAbc9Cec ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandAbc9Cec ( Abc_Frame_t * pAbc, int argc, char ** argv );
...@@ -771,6 +772,7 @@ void Abc_Init( Abc_Frame_t * pAbc ) ...@@ -771,6 +772,7 @@ void Abc_Init( Abc_Frame_t * pAbc )
Cmd_CommandAdd( pAbc, "ABC9", "&sat", Abc_CommandAbc9Sat, 0 ); Cmd_CommandAdd( pAbc, "ABC9", "&sat", Abc_CommandAbc9Sat, 0 );
Cmd_CommandAdd( pAbc, "ABC9", "&fraig", Abc_CommandAbc9Fraig, 0 ); Cmd_CommandAdd( pAbc, "ABC9", "&fraig", Abc_CommandAbc9Fraig, 0 );
Cmd_CommandAdd( pAbc, "ABC9", "&srm", Abc_CommandAbc9Srm, 0 ); Cmd_CommandAdd( pAbc, "ABC9", "&srm", Abc_CommandAbc9Srm, 0 );
Cmd_CommandAdd( pAbc, "ABC9", "&srm2", Abc_CommandAbc9Srm2, 0 );
Cmd_CommandAdd( pAbc, "ABC9", "&reduce", Abc_CommandAbc9Reduce, 0 ); Cmd_CommandAdd( pAbc, "ABC9", "&reduce", Abc_CommandAbc9Reduce, 0 );
Cmd_CommandAdd( pAbc, "ABC9", "&equiv_mark", Abc_CommandAbc9EquivMark, 0 ); Cmd_CommandAdd( pAbc, "ABC9", "&equiv_mark", Abc_CommandAbc9EquivMark, 0 );
Cmd_CommandAdd( pAbc, "ABC9", "&cec", Abc_CommandAbc9Cec, 0 ); Cmd_CommandAdd( pAbc, "ABC9", "&cec", Abc_CommandAbc9Cec, 0 );
...@@ -26262,6 +26264,95 @@ usage: ...@@ -26262,6 +26264,95 @@ usage:
return 1; return 1;
} }
/**Function*************************************************************
Synopsis []
Description []
SideEffects []
SeeAlso []
***********************************************************************/
int Abc_CommandAbc9Srm2( Abc_Frame_t * pAbc, int argc, char ** argv )
{
extern int Gia_ManFilterEquivsForSpeculation( Gia_Man_t * pGia, char * pName1, char * pName2 );
char pFileName[10], * pFileName1, * pFileName2;
Gia_Man_t * pTemp, * pAux;
int c, fVerbose = 0;
Extra_UtilGetoptReset();
while ( ( c = Extra_UtilGetopt( argc, argv, "vh" ) ) != EOF )
{
switch ( c )
{
case 'v':
fVerbose ^= 1;
break;
case 'h':
goto usage;
default:
goto usage;
}
}
if ( pAbc->pGia == NULL )
{
Abc_Print( -1, "Abc_CommandAbc9Srm2(): There is no AIG.\n" );
return 1;
}
if ( pAbc->pGia->pReprs == NULL || pAbc->pGia->pNexts == NULL )
{
Abc_Print( -1, "Equivalences are not defined.\n" );
return 0;
}
if ( argc != globalUtilOptind + 2 )
{
Abc_Print( -1, "Abc_CommandAbc9Srm2(): Expecting two file names on the command line.\n" );
return 1;
}
// get the input file name
pFileName1 = argv[globalUtilOptind];
pFileName2 = argv[globalUtilOptind+1];
// create file name
sprintf( pFileName, "gsrm.aig" );
pTemp = Gia_ManDup( pAbc->pGia );
// copy equivalences
pTemp->pReprs = ABC_ALLOC( Gia_Rpr_t, Gia_ManObjNum(pTemp) );
memcpy( pTemp->pReprs, pAbc->pGia->pReprs, sizeof(Gia_Rpr_t) * Gia_ManObjNum(pTemp) );
pTemp->pNexts = ABC_ALLOC( int, Gia_ManObjNum(pTemp) );
memcpy( pTemp->pNexts, pAbc->pGia->pNexts, sizeof(int) * Gia_ManObjNum(pTemp) );
//Gia_ManPrintStats( pTemp, 0 );
// filter the classes
if ( !Gia_ManFilterEquivsForSpeculation( pTemp, pFileName1, pFileName2 ) )
{
Gia_ManStop( pTemp );
Abc_Print( -1, "Filtering equivalences has failed.\n" );
return 1;
}
//Gia_ManPrintStats( pTemp, 0 );
pTemp = Gia_ManSpecReduce( pAux = pTemp, 0, 0, 1, 0, 0 );
Gia_ManStop( pAux );
if ( pTemp )
{
pTemp = Gia_ManSeqStructSweep( pAux = pTemp, 1, 1, 0 );
Gia_ManStop( pAux );
Gia_WriteAiger( pTemp, pFileName, 0, 0 );
Abc_Print( 1, "Speculatively reduced model was written into file \"%s\".\n", pFileName );
Gia_ManPrintStatsShort( pTemp );
Gia_ManStop( pTemp );
}
return 0;
usage:
Abc_Print( -2, "usage: &srm2 [-vh]\n" );
Abc_Print( -2, "\t writes speculatively reduced model into file \"%s\"\n", pFileName );
Abc_Print( -2, "\t-v : toggle printing verbose information [default = %s]\n", fVerbose? "yes": "no" );
Abc_Print( -2, "\t-h : print the command usage\n");
return 1;
}
/**Function************************************************************* /**Function*************************************************************
Synopsis [] Synopsis []
......
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