wlcNtk.c 47.2 KB
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/**CFile****************************************************************

  FileName    [wlcNtk.c]

  SystemName  [ABC: Logic synthesis and verification system.]

  PackageName [Verilog parser.]

  Synopsis    [Network data-structure.]

  Author      [Alan Mishchenko]
  
  Affiliation [UC Berkeley]

  Date        [Ver. 1.0. Started - August 22, 2014.]

  Revision    [$Id: wlcNtk.c,v 1.00 2014/09/12 00:00:00 alanmi Exp $]

***********************************************************************/

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#include <math.h>
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#include "wlc.h"
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#include "misc/vec/vecWec.h"
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ABC_NAMESPACE_IMPL_START


////////////////////////////////////////////////////////////////////////
///                        DECLARATIONS                              ///
////////////////////////////////////////////////////////////////////////

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// object types
static char * Wlc_Names[WLC_OBJ_NUMBER+1] = { 
    NULL,                  // 00: unknown
    "pi",                  // 01: primary input 
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    "po",                  // 02: primary output (unused)
    "ff",                  // 03: flop output
    "bi",                  // 04: flop input (unused)
    "ff",                  // 05: flop (unused)
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    "const",               // 06: constant
    "buf",                 // 07: buffer
    "mux",                 // 08: multiplexer
    ">>",                  // 09: shift right
    ">>>",                 // 10: shift right (arithmetic)
    "<<",                  // 11: shift left
    "<<<",                 // 12: shift left (arithmetic)
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    "rotR",                // 13: rotate right
    "rotL",                // 14: rotate left
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    "~",                   // 15: bitwise NOT
    "&",                   // 16: bitwise AND
    "|",                   // 17: bitwise OR
    "^",                   // 18: bitwise XOR
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    "~&",                  // 19: bitwise NAND
    "~|",                  // 20: bitwise NOR
    "~^",                  // 21: bitwise NXOR
    "[:]",                 // 22: bit selection
    "{,}",                 // 23: bit concatenation
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    "zPad",                // 24: zero padding
    "sExt",                // 25: sign extension
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    "!",                   // 26: logic NOT
    "=>",                  // 27: logic implication
    "&&",                  // 28: logic AND
    "||",                  // 29: logic OR
    "^^",                  // 30: logic XOR
    "==",                  // 31: compare equal
    "!=",                  // 32: compare not equal
    "<",                   // 33: compare less
    ">",                   // 34: compare more
    "<=",                  // 35: compare less or equal
    ">=",                  // 36: compare more or equal
    "&",                   // 37: reduction AND
    "|",                   // 38: reduction OR
    "^",                   // 39: reduction XOR
    "~&",                  // 40: reduction NAND
    "~|",                  // 41: reduction NOR
    "~^",                  // 42: reduction NXOR
    "+",                   // 43: arithmetic addition
    "-",                   // 44: arithmetic subtraction
    "*",                   // 45: arithmetic multiplier
    "/",                   // 46: arithmetic division
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    "%",                   // 47: arithmetic reminder
    "mod",                 // 48: arithmetic modulus
    "**",                  // 49: arithmetic power
    "-",                   // 50: arithmetic minus
    "sqrt",                // 51: integer square root
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    "squar",               // 52: integer square
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    "table",               // 53: bit table
    NULL                   // 54: unused
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};

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char * Wlc_ObjTypeName( Wlc_Obj_t * p ) { return Wlc_Names[p->Type]; }

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////////////////////////////////////////////////////////////////////////
///                     FUNCTION DEFINITIONS                         ///
////////////////////////////////////////////////////////////////////////

/**Function*************************************************************

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  Synopsis    []

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
void Wlc_ManSetDefaultParams( Wlc_Par_t * pPars )
{
    memset( pPars, 0, sizeof(Wlc_Par_t) );
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    pPars->nBitsAdd      = ABC_INFINITY;   // adder bit-width
    pPars->nBitsMul      = ABC_INFINITY;   // multiplier bit-widht 
    pPars->nBitsMux      = ABC_INFINITY;   // MUX bit-width
    pPars->nBitsFlop     = ABC_INFINITY;   // flop bit-width
    pPars->nIterMax      =         1000;   // the max number of iterations
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    pPars->nLimit        = ABC_INFINITY;   // the max number of signals
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    pPars->fXorOutput    =            1;   // XOR outputs of word-level miter
    pPars->fCheckClauses =            1;   // Check clauses in the reloaded trace                    
    pPars->fPushClauses  =            0;   // Push clauses in the reloaded trace                    
    pPars->fMFFC         =            1;   // Refine the entire MFFC of a PPI 
    pPars->fPdra         =            0;   // Use pdr -nct 
    pPars->fProofRefine  =            0;   // Use proof-based refinement
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    pPars->fHybrid       =            1;   // Use a hybrid of CBR and PBR
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    pPars->fCheckCombUnsat =          0;   // Check if ABS becomes comb. unsat
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    pPars->fAbs2         =            0;   // Use UFAR style createAbs
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    pPars->fProofUsePPI  =            0;   // Use PPI values in PBR
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    pPars->fVerbose      =            0;   // verbose output`
    pPars->fPdrVerbose   =            0;   // show verbose PDR output
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}

/**Function*************************************************************

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  Synopsis    [Working with models.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
Wlc_Ntk_t * Wlc_NtkAlloc( char * pName, int nObjsAlloc )
{
    Wlc_Ntk_t * p;
    p = ABC_CALLOC( Wlc_Ntk_t, 1 );
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    p->pName = pName ? Extra_FileNameGeneric( pName ) : NULL;
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    Vec_IntGrow( &p->vPis, 111 );
    Vec_IntGrow( &p->vPos, 111 );
    Vec_IntGrow( &p->vCis, 111 );
    Vec_IntGrow( &p->vCos, 111 );
    Vec_IntGrow( &p->vFfs, 111 );
    p->pMemFanin = Mem_FlexStart();
    p->nObjsAlloc = nObjsAlloc;  
    p->pObjs = ABC_CALLOC( Wlc_Obj_t, p->nObjsAlloc );
    p->iObj = 1;
    return p;
}
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void Wlc_ObjSetCi( Wlc_Ntk_t * p, Wlc_Obj_t * pObj )
{
    assert( Wlc_ObjIsCi(pObj) );
    assert( Wlc_ObjFaninNum(pObj) == 0 );
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    if ( Wlc_NtkPiNum(p) == Wlc_NtkCiNum(p) || pObj->Type != WLC_OBJ_PI )
    {
        pObj->Fanins[1] = Vec_IntSize(&p->vCis);
        Vec_IntPush( &p->vCis, Wlc_ObjId(p, pObj) );
    }
    else // insert in the array of CI at the end of PIs
    {
        Wlc_Obj_t * pTemp; int i;
        Vec_IntInsert( &p->vCis, Wlc_NtkPiNum(p), Wlc_ObjId(p, pObj) );
        // other CI IDs are invalidated... naive fix!
        Wlc_NtkForEachCi( p, pTemp, i )
            pTemp->Fanins[1] = i;
    }
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    if ( pObj->Type == WLC_OBJ_PI )
        Vec_IntPush( &p->vPis, Wlc_ObjId(p, pObj) );
}
void Wlc_ObjSetCo( Wlc_Ntk_t * p, Wlc_Obj_t * pObj, int fFlopInput )
{
//    pObj->Fanins[1] = Vec_IntSize(&p->vCos);
    Vec_IntPush( &p->vCos, Wlc_ObjId(p, pObj) );
    if ( !fFlopInput )
        Vec_IntPush( &p->vPos, Wlc_ObjId(p, pObj) );
    if ( fFlopInput )
        pObj->fIsFi = 1;
    else
        pObj->fIsPo = 1;
}
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int Wlc_ObjAlloc( Wlc_Ntk_t * p, int Type, int Signed, int End, int Beg )
{
    Wlc_Obj_t * pObj;
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    assert( Type != WLC_OBJ_PO && Type != WLC_OBJ_FI );
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    if ( p->iObj == p->nObjsAlloc )
    {
        p->pObjs = ABC_REALLOC( Wlc_Obj_t, p->pObjs, 2 * p->nObjsAlloc );
        memset( p->pObjs + p->nObjsAlloc, 0, sizeof(Wlc_Obj_t) * p->nObjsAlloc );
        p->nObjsAlloc *= 2;
    }
    pObj = Wlc_NtkObj( p, p->iObj );
    pObj->Type   = Type;
    pObj->Signed = Signed;
    pObj->End    = End;
    pObj->Beg    = Beg;
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    if ( Wlc_ObjIsCi(pObj) )
        Wlc_ObjSetCi( p, pObj );
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    p->nObjs[Type]++;
    return p->iObj++;
}
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int Wlc_ObjCreate( Wlc_Ntk_t * p, int Type, int Signed, int End, int Beg, Vec_Int_t * vFanins )
{
    int iFaninNew = Wlc_ObjAlloc( p, Type, Signed, End, Beg );
    Wlc_ObjAddFanins( p, Wlc_NtkObj(p, iFaninNew), vFanins );
    return iFaninNew;
}
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char * Wlc_ObjName( Wlc_Ntk_t * p, int iObj )
{
    static char Buffer[100];
    if ( Wlc_NtkHasNameId(p) && Wlc_ObjNameId(p, iObj) )
        return Abc_NamStr( p->pManName, Wlc_ObjNameId(p, iObj) );
    sprintf( Buffer, "n%d", iObj );
    return Buffer;
}                          
void Wlc_ObjUpdateType( Wlc_Ntk_t * p, Wlc_Obj_t * pObj, int Type )
{
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    assert( pObj->Type == WLC_OBJ_NONE );
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    p->nObjs[pObj->Type]--;
    pObj->Type = Type;
    p->nObjs[pObj->Type]++;
}
void Wlc_ObjAddFanins( Wlc_Ntk_t * p, Wlc_Obj_t * pObj, Vec_Int_t * vFanins )
{
    assert( pObj->nFanins == 0 );
    pObj->nFanins = Vec_IntSize(vFanins);
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    // special treatment of CONST, SELECT and TABLE
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    if ( pObj->Type == WLC_OBJ_CONST )
        pObj->nFanins = 0;
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    else if ( pObj->Type == WLC_OBJ_BIT_SELECT || pObj->Type == WLC_OBJ_TABLE )
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        pObj->nFanins = 1;
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    if ( Wlc_ObjHasArray(pObj) )
        pObj->pFanins[0] = (int *)Mem_FlexEntryFetch( p->pMemFanin, Vec_IntSize(vFanins) * sizeof(int) );
    memcpy( Wlc_ObjFanins(pObj), Vec_IntArray(vFanins), sizeof(int) * Vec_IntSize(vFanins) );
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}
void Wlc_NtkFree( Wlc_Ntk_t * p )
{
    if ( p->pManName )
        Abc_NamStop( p->pManName );
    if ( p->pMemFanin )
        Mem_FlexStop( p->pMemFanin, 0 );
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    if ( p->pMemTable )
        Mem_FlexStop( p->pMemTable, 0 );
    Vec_PtrFreeP( &p->vTables );
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    ABC_FREE( p->vPis.pArray );
    ABC_FREE( p->vPos.pArray );
    ABC_FREE( p->vCis.pArray );
    ABC_FREE( p->vCos.pArray );
    ABC_FREE( p->vFfs.pArray );
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    Vec_IntFreeP( &p->vInits );
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    ABC_FREE( p->vTravIds.pArray );
    ABC_FREE( p->vNameIds.pArray );
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    ABC_FREE( p->vValues.pArray );
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    ABC_FREE( p->vCopies.pArray );
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    ABC_FREE( p->vBits.pArray );
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    ABC_FREE( p->vLevels.pArray );
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    ABC_FREE( p->vRefs.pArray );
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    ABC_FREE( p->pInits );
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    ABC_FREE( p->pObjs );
    ABC_FREE( p->pName );
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    ABC_FREE( p->pSpec );
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    ABC_FREE( p );
}
int Wlc_NtkMemUsage( Wlc_Ntk_t * p )
{
    int Mem = sizeof(Wlc_Ntk_t);
    Mem += 4 * p->vPis.nCap;
    Mem += 4 * p->vPos.nCap;
    Mem += 4 * p->vCis.nCap;
    Mem += 4 * p->vCos.nCap;
    Mem += 4 * p->vFfs.nCap;
    Mem += sizeof(Wlc_Obj_t) * p->nObjsAlloc;
    Mem += Abc_NamMemUsed(p->pManName);
    Mem += Mem_FlexReadMemUsage(p->pMemFanin);
    return Mem;
}
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/**Function*************************************************************

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  Synopsis    [Assigns object levels.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
int Wlc_NtkCreateLevels( Wlc_Ntk_t * p )
{
    Wlc_Obj_t * pObj; 
    int i, k, iFanin, Level, LevelMax = 0;
    Vec_IntFill( &p->vLevels, Wlc_NtkObjNumMax(p), 0 );
    Wlc_NtkForEachObj( p, pObj, i )
    {
        Level = 0;
        Wlc_ObjForEachFanin( pObj, iFanin, k )
            Level = Abc_MaxInt( Level, Wlc_ObjLevelId(p, iFanin) + 1 );
        Vec_IntWriteEntry( &p->vLevels, i, Level );
        LevelMax = Abc_MaxInt( LevelMax, Level );
    }
    return LevelMax;
}
int Wlc_NtkCreateLevelsRev( Wlc_Ntk_t * p )
{
    Wlc_Obj_t * pObj; 
    int i, k, iFanin, Level, LevelMax = 0;
    Vec_IntFill( &p->vLevels, Wlc_NtkObjNumMax(p), 0 );
    Wlc_NtkForEachObjReverse( p, pObj, i )
    {
        if ( Wlc_ObjIsCi(pObj) )
            continue;
        Level = Wlc_ObjLevel(p, pObj) + 1;
        Wlc_ObjForEachFanin( pObj, iFanin, k )
            Vec_IntUpdateEntry( &p->vLevels, iFanin, Level );
        LevelMax = Abc_MaxInt( LevelMax, Level );
    }
    // reverse the values
    Wlc_NtkForEachObj( p, pObj, i )
        Vec_IntWriteEntry( &p->vLevels, i, LevelMax - Wlc_ObjLevelId(p, i) );
    Wlc_NtkForEachCi( p, pObj, i )
        Vec_IntWriteEntry( &p->vLevels, Wlc_ObjId(p, pObj), 0 );
    return LevelMax;
}

/**Function*************************************************************

  Synopsis    [Collects statistics for each side of the miter.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
void Wlc_NtkCollectStats( Wlc_Ntk_t * p, int nObjs[2][WLC_OBJ_NUMBER] )
{
    Wlc_Obj_t * pObj;
    int n, i;
    if ( Wlc_NtkPoNum(p) != 2 )
        return;
    for ( n = 0; n < 2; n++ )
    {
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        Wlc_NtkMarkCone( p, n, 1, 1, 0 );
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        Wlc_NtkForEachObj( p, pObj, i )
            if ( pObj->Mark )
                nObjs[n][pObj->Type]++;
    }
    Wlc_NtkCleanMarks( p );
}
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int Wlc_NtkCountRealPis( Wlc_Ntk_t * p )
{
    Wlc_Obj_t * pObj;
    int i, Count = 0;
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    Wlc_NtkMarkCone( p, -1, -1, 1, 0 );
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    Wlc_NtkForEachPi( p, pObj, i )
        Count += pObj->Mark;
    Wlc_NtkCleanMarks( p );
    return Count;
}
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/**Function*************************************************************

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  Synopsis    [Prints distribution of operator types.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
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static inline void Vec_WrdSelectSortCost2( word * pArray, int nSize, word * pCosts )
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{
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    int i, j, best_i;
    for ( i = 0; i < nSize-1; i++ )
    {
        best_i = i;
        for ( j = i+1; j < nSize; j++ )
            if ( pCosts[j] < pCosts[best_i] )
                best_i = j;
        ABC_SWAP( word, pArray[i], pArray[best_i] );
        ABC_SWAP( word, pCosts[i], pCosts[best_i] );
    }
}
static inline word Wlc_NtkPrintDistribMakeSign( int s, int s0, int s1 )
{
    return ((word)s1 << 42) | ((word)s0 << 21) | (word)s;
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}
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static inline void Wlc_NtkPrintDistribFromSign( word sss, int * s, int * s0, int * s1 )
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{
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    *s1 =  (int)(sss >> 42);  *s0 = (int)(sss >> 21) & 0x1FFFFF;  *s  =  (int)sss & 0x1FFFFF;
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}
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static inline void Wlc_NtkPrintDistribAddOne( Vec_Ptr_t * vTypes, Vec_Ptr_t * vOccurs, int Type, word Sign )
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{
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    Vec_Wrd_t * vType  = (Vec_Wrd_t *)Vec_PtrEntry( vTypes, Type );
    Vec_Wrd_t * vOccur = (Vec_Wrd_t *)Vec_PtrEntry( vOccurs, Type );
    word Entry; int i;
    Vec_WrdForEachEntry( vType, Entry, i )
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        if ( Entry == Sign )
        {
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            Vec_WrdAddToEntry( vOccur, i, 1 );
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            return;
        }
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    Vec_WrdPush( vType, Sign );
    Vec_WrdPush( vOccur, 1 );
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}
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void Wlc_NtkPrintDistribSortOne( Vec_Ptr_t * vTypes, Vec_Ptr_t * vOccurs, int Type )
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{
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    Vec_Wrd_t * vType  = (Vec_Wrd_t *)Vec_PtrEntry( vTypes, Type );
    Vec_Wrd_t * vOccur = (Vec_Wrd_t *)Vec_PtrEntry( vOccurs, Type );
    Vec_WrdSelectSortCost2( Vec_WrdArray(vType), Vec_WrdSize(vType), Vec_WrdArray(vOccur) );
    Vec_WrdReverseOrder( vType );
    Vec_WrdReverseOrder( vOccur );
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}
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void Wlc_NtkPrintDistrib( Wlc_Ntk_t * p, int fTwoSides, int fVerbose )
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{
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    int nObjs[2][WLC_OBJ_NUMBER] = {{0}}; // counter of objects of each type
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    Wlc_Obj_t * pObj, * pObjRange = NULL; int nCountRange = 0;
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    Vec_Ptr_t * vTypes, * vOccurs;
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    Vec_Int_t * vAnds = Vec_IntStart( WLC_OBJ_NUMBER );
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    word Sign;
    int i, k, s, s0, s1;
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    if ( Wlc_NtkPoNum(p) != 2 )
        fTwoSides = 0;
    if ( fTwoSides )
        Wlc_NtkCollectStats( p, nObjs );
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    // allocate statistics arrays
    vTypes  = Vec_PtrStart( WLC_OBJ_NUMBER );
    vOccurs = Vec_PtrStart( WLC_OBJ_NUMBER );
    for ( i = 0; i < WLC_OBJ_NUMBER; i++ )
        Vec_PtrWriteEntry( vTypes, i, Vec_WrdAlloc(16) );
    for ( i = 0; i < WLC_OBJ_NUMBER; i++ )
        Vec_PtrWriteEntry( vOccurs, i, Vec_WrdAlloc(16) );
    // add nodes
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    Wlc_NtkForEachObj( p, pObj, i )
    {
//        char * pName = Wlc_ObjName(p, i);
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        if ( Wlc_ObjSign(pObj) > 0x1FFFFF )
            printf( "Object %6d has range %d, which is reduced to %d in the statistics.\n", 
                i, Wlc_ObjRange(pObj), Wlc_ObjRange(pObj) & 0xFFFFF );
        if ( pObj->Beg )
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        {
            if ( pObjRange == NULL )
                pObjRange = pObj;
            nCountRange++;
        }
        // 0-input types
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        if ( Wlc_ObjIsCi(pObj) || pObj->Type == WLC_OBJ_CONST || pObj->Type == WLC_OBJ_BIT_CONCAT )
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            Sign = Wlc_NtkPrintDistribMakeSign( Wlc_ObjSign(pObj), 0, 0 );
        // 1-input types
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        else if ( pObj->Type == WLC_OBJ_BUF    || pObj->Type == WLC_OBJ_BIT_SELECT  || pObj->Type == WLC_OBJ_TABLE ||
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             pObj->Type == WLC_OBJ_BIT_ZEROPAD || pObj->Type == WLC_OBJ_BIT_SIGNEXT || 
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             pObj->Type == WLC_OBJ_BIT_NOT     || pObj->Type == WLC_OBJ_LOGIC_NOT   || pObj->Type == WLC_OBJ_ARI_MINUS )
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            Sign = Wlc_NtkPrintDistribMakeSign( Wlc_ObjSign(pObj), Wlc_ObjSign(Wlc_ObjFanin0(p, pObj)), 0 );
        // 2-input types (including MUX)
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        else if ( Wlc_ObjFaninNum(pObj) == 1 )
            Sign = Wlc_NtkPrintDistribMakeSign( Wlc_ObjSign(pObj), Wlc_ObjSign(Wlc_ObjFanin0(p, pObj)), 0 );
        else
        {
            assert( Wlc_ObjFaninNum(pObj) >= 2 );
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            Sign = Wlc_NtkPrintDistribMakeSign( Wlc_ObjSign(pObj), Wlc_ObjSign(Wlc_ObjFanin0(p, pObj)), Wlc_ObjSign(Wlc_ObjFanin1(p, pObj)) );
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        }
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        // add to storage
        Wlc_NtkPrintDistribAddOne( vTypes, vOccurs, pObj->Type, Sign );
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        // count the number of AIG nodes
        if ( pObj->Type == WLC_OBJ_MUX )
            Vec_IntAddToEntry( vAnds, WLC_OBJ_MUX,      3 * Wlc_ObjRange(pObj) * (Wlc_ObjFaninNum(pObj) - 2) );
        else if ( pObj->Type == WLC_OBJ_SHIFT_R )      
            Vec_IntAddToEntry( vAnds, WLC_OBJ_SHIFT_R,  Abc_MinInt(Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)), Abc_Base2Log(Wlc_ObjRange(pObj))) * 3 );
        else if ( pObj->Type == WLC_OBJ_SHIFT_RA )     
            Vec_IntAddToEntry( vAnds, WLC_OBJ_SHIFT_RA, Wlc_ObjRange(pObj) * Abc_MinInt(Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)), Abc_Base2Log(Wlc_ObjRange(pObj))) * 3 );
        else if ( pObj->Type == WLC_OBJ_SHIFT_L )      
            Vec_IntAddToEntry( vAnds, WLC_OBJ_SHIFT_L,  Wlc_ObjRange(pObj) * Abc_MinInt(Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)), Abc_Base2Log(Wlc_ObjRange(pObj))) * 3 );
        else if ( pObj->Type == WLC_OBJ_SHIFT_LA )     
            Vec_IntAddToEntry( vAnds, WLC_OBJ_SHIFT_LA, Wlc_ObjRange(pObj) * Abc_MinInt(Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)), Abc_Base2Log(Wlc_ObjRange(pObj))) * 3 );
        else if ( pObj->Type == WLC_OBJ_ROTATE_R )     
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ROTATE_R, Wlc_ObjRange(pObj) * Abc_MinInt(Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)), Abc_Base2Log(Wlc_ObjRange(pObj))) * 3 );
        else if ( pObj->Type == WLC_OBJ_ROTATE_L )     
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ROTATE_L, Wlc_ObjRange(pObj) * Abc_MinInt(Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)), Abc_Base2Log(Wlc_ObjRange(pObj))) * 3 );
        else if ( pObj->Type == WLC_OBJ_BIT_NOT )     
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_NOT, 0 );
        else if ( pObj->Type == WLC_OBJ_BIT_AND )      
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_AND,      Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
        else if ( pObj->Type == WLC_OBJ_BIT_OR )       
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_OR,       Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
        else if ( pObj->Type == WLC_OBJ_BIT_XOR )      
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_XOR,  3 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
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        else if ( pObj->Type == WLC_OBJ_BIT_NAND )      
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_NAND,     Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
        else if ( pObj->Type == WLC_OBJ_BIT_NOR )       
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_NOR,      Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
501 502
        else if ( pObj->Type == WLC_OBJ_BIT_NXOR )      
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_NXOR, 3 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
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        else if ( pObj->Type == WLC_OBJ_BIT_SELECT )   
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_SELECT, 0 );
        else if ( pObj->Type == WLC_OBJ_BIT_CONCAT )   
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_CONCAT, 0 );
        else if ( pObj->Type == WLC_OBJ_BIT_ZEROPAD )  
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_ZEROPAD, 0 );
        else if ( pObj->Type == WLC_OBJ_BIT_SIGNEXT )  
            Vec_IntAddToEntry( vAnds, WLC_OBJ_BIT_SIGNEXT, 0 );
        else if ( pObj->Type == WLC_OBJ_LOGIC_NOT )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_LOGIC_NOT,        Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 1 );
513 514
        else if ( pObj->Type == WLC_OBJ_LOGIC_IMPL )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_LOGIC_IMPL,       Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) + Wlc_ObjRange(Wlc_ObjFanin1(p, pObj)) - 1 );
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        else if ( pObj->Type == WLC_OBJ_LOGIC_AND )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_LOGIC_AND,        Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) + Wlc_ObjRange(Wlc_ObjFanin1(p, pObj)) - 1 );
        else if ( pObj->Type == WLC_OBJ_LOGIC_OR )     
            Vec_IntAddToEntry( vAnds, WLC_OBJ_LOGIC_OR,         Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) + Wlc_ObjRange(Wlc_ObjFanin1(p, pObj)) - 1 );
        else if ( pObj->Type == WLC_OBJ_LOGIC_XOR )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_LOGIC_XOR,        Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) + Wlc_ObjRange(Wlc_ObjFanin1(p, pObj)) + 1 );
        else if ( pObj->Type == WLC_OBJ_COMP_EQU )     
            Vec_IntAddToEntry( vAnds, WLC_OBJ_COMP_EQU,     4 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 1 );
        else if ( pObj->Type == WLC_OBJ_COMP_NOTEQU )  
            Vec_IntAddToEntry( vAnds, WLC_OBJ_COMP_NOTEQU,  4 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 1 );
        else if ( pObj->Type == WLC_OBJ_COMP_LESS )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_COMP_LESS,    6 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 6 );
        else if ( pObj->Type == WLC_OBJ_COMP_MORE )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_COMP_MORE,    6 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 6 );
        else if ( pObj->Type == WLC_OBJ_COMP_LESSEQU ) 
            Vec_IntAddToEntry( vAnds, WLC_OBJ_COMP_LESSEQU, 6 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 6 );
        else if ( pObj->Type == WLC_OBJ_COMP_MOREEQU ) 
            Vec_IntAddToEntry( vAnds, WLC_OBJ_COMP_MOREEQU, 6 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 6 );
        else if ( pObj->Type == WLC_OBJ_REDUCT_AND )   
            Vec_IntAddToEntry( vAnds, WLC_OBJ_REDUCT_AND,       Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 1 );
        else if ( pObj->Type == WLC_OBJ_REDUCT_OR )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_REDUCT_OR,        Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 1 );
        else if ( pObj->Type == WLC_OBJ_REDUCT_XOR )   
            Vec_IntAddToEntry( vAnds, WLC_OBJ_REDUCT_XOR,   3 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 3 );
539
        else if ( pObj->Type == WLC_OBJ_REDUCT_NAND )   
540
            Vec_IntAddToEntry( vAnds, WLC_OBJ_REDUCT_NAND,      Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 1 );
541
        else if ( pObj->Type == WLC_OBJ_REDUCT_NOR )    
542
            Vec_IntAddToEntry( vAnds, WLC_OBJ_REDUCT_NOR,       Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 1 );
543
        else if ( pObj->Type == WLC_OBJ_REDUCT_NXOR )   
544
            Vec_IntAddToEntry( vAnds, WLC_OBJ_REDUCT_NXOR,  3 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 3 );
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        else if ( pObj->Type == WLC_OBJ_ARI_ADD )       
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_ADD,      9 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
        else if ( pObj->Type == WLC_OBJ_ARI_SUB )       
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_SUB,      9 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
        else if ( pObj->Type == WLC_OBJ_ARI_MULTI )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_MULTI,    9 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) * Wlc_ObjRange(Wlc_ObjFanin1(p, pObj)) );
        else if ( pObj->Type == WLC_OBJ_ARI_DIVIDE )   
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_DIVIDE,  13 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 19 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) + 10 );
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        else if ( pObj->Type == WLC_OBJ_ARI_REM )  
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_REM,     13 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 7 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 2  );
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        else if ( pObj->Type == WLC_OBJ_ARI_MODULUS )  
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_MODULUS, 13 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 7 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) - 2  );
        else if ( pObj->Type == WLC_OBJ_ARI_POWER ) 
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_POWER,   10 * (int)pow(Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)),Wlc_ObjRange(Wlc_ObjFanin0(p, pObj))) );
        else if ( pObj->Type == WLC_OBJ_ARI_MINUS )   
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_MINUS,    4 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) );
        else if ( pObj->Type == WLC_OBJ_ARI_SQRT )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_SQRT,    11 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) / 8 + 5 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) / 2 - 5  );
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        else if ( pObj->Type == WLC_OBJ_ARI_SQUARE )    
            Vec_IntAddToEntry( vAnds, WLC_OBJ_ARI_SQUARE,   5 * Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)) * Wlc_ObjRange(Wlc_ObjFanin1(p, pObj))  );
565
    }
566
    if ( nCountRange && Vec_IntSize(&p->vNameIds) > 0 )
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    {
        printf( "Warning: %d objects of the design have non-zero-based ranges.\n", nCountRange );
        printf( "In particular, object %6d with name \"%s\" has range %d=[%d:%d]\n", Wlc_ObjId(p, pObjRange), 
            Abc_NamStr(p->pManName, Wlc_ObjNameId(p, Wlc_ObjId(p, pObjRange))), Wlc_ObjRange(pObjRange), pObjRange->End, pObjRange->Beg );
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    }
    // print by occurrence
573
    printf( "ID  :  name  occurrence%s    and2 (occurrence)<output_range>=<input_range>.<input_range> ...\n", fTwoSides ? "     Left Share Right":"" );
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    for ( i = 0; i < WLC_OBJ_NUMBER; i++ )
    {
576 577
        Vec_Wrd_t * vType  = (Vec_Wrd_t *)Vec_PtrEntry( vTypes, i );
        Vec_Wrd_t * vOccur = (Vec_Wrd_t *)Vec_PtrEntry( vOccurs, i );
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        if ( p->nObjs[i] == 0 )
            continue;
580
        printf( "%2d  :  %-8s  %6d", i, Wlc_Names[i], p->nObjs[i] );
581
        if ( fTwoSides )
582
        {
583
            int nTotal = i == WLC_OBJ_PI ? Wlc_NtkCountRealPis(p) : p->nObjs[i];
584 585
            printf( "   " );
            printf( "%6d", nObjs[0][i] );
586
            printf( "%6d", nObjs[0][i]+nObjs[1][i]-nTotal );
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            printf( "%6d", nObjs[1][i] );
        }
        printf( "%8d ", Vec_IntEntry(vAnds, i) );
590 591
        // sort by occurence
        Wlc_NtkPrintDistribSortOne( vTypes, vOccurs, i );
592
        Vec_WrdForEachEntry( vType, Sign, k )
593 594
        {
            Wlc_NtkPrintDistribFromSign( Sign, &s, &s0, &s1 );
595
            if ( ((k % 6) == 5 && s1) || ((k % 8) == 7 && !s1) )
596
            {
597
                printf( "\n                                " );
598
                if ( fTwoSides )
599 600
                    printf( "                     " );
            }
601
            printf( "(%d)", (int)Vec_WrdEntry( vOccur, k ) );
602
            printf( "%s%d",      Abc_LitIsCompl(s)?"-":"",  Abc_Lit2Var(s) );
603
            if ( s0 )
604
                printf( "=%s%d", Abc_LitIsCompl(s0)?"-":"", Abc_Lit2Var(s0) );
605
            if ( s1 )
606
                printf( ".%s%d", Abc_LitIsCompl(s1)?"-":"", Abc_Lit2Var(s1) );
607 608 609 610
            printf( " " );
        }
        printf( "\n" );
    }
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    Vec_VecFree( (Vec_Vec_t *)vTypes );
    Vec_VecFree( (Vec_Vec_t *)vOccurs );
613
    Vec_IntFree( vAnds );
614
}
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void Wlc_NtkPrintNode( Wlc_Ntk_t * p, Wlc_Obj_t * pObj )
{
    printf( "%8d  :  ", Wlc_ObjId(p, pObj) );
    printf( "%3d%s",    Wlc_ObjRange(pObj), Wlc_ObjIsSigned(pObj) ? "s" : " " );
    if ( pObj->Type == WLC_OBJ_CONST )
        printf( "                          " );
    else
    {
        printf( " = %3d%s  %5s  ",  Wlc_ObjRange(Wlc_ObjFanin0(p, pObj)), Wlc_ObjIsSigned(Wlc_ObjFanin0(p, pObj)) ? "s" : " ", Wlc_Names[(int)pObj->Type] );
        if ( Wlc_ObjFaninNum(pObj) > 1 )
            printf( "%3d%s ",       Wlc_ObjRange(Wlc_ObjFanin1(p, pObj)), Wlc_ObjIsSigned(Wlc_ObjFanin1(p, pObj)) ? "s" : " " );
        else
            printf( "     " );
        if ( Wlc_ObjFaninNum(pObj) > 2 )
            printf( "%3d%s ",       Wlc_ObjRange(Wlc_ObjFanin2(p, pObj)), Wlc_ObjIsSigned(Wlc_ObjFanin2(p, pObj)) ? "s" : " " );
        else
            printf( "     " );
    }
    printf( " :    " );
    printf( "%-12s",   Wlc_ObjName(p, Wlc_ObjId(p, pObj)) );
    if ( pObj->Type == WLC_OBJ_CONST )
    {
        printf( " =  %d\'%sh", Wlc_ObjRange(pObj), Wlc_ObjIsSigned(pObj) ? "s":"" );
        if ( pObj->fXConst )
        {
            int k;
            for ( k = 0; k < (Wlc_ObjRange(pObj) + 3) / 4; k++ )
                printf( "x" );
        }
        else
            Abc_TtPrintHexArrayRev( stdout, (word *)Wlc_ObjConstValue(pObj), (Wlc_ObjRange(pObj) + 3) / 4 );
    }
    else
    {
        printf( " =  %-12s  %5s  ", Wlc_ObjName(p, Wlc_ObjFaninId0(pObj)), Wlc_Names[(int)pObj->Type] );
        if ( Wlc_ObjFaninNum(pObj) > 1 )
            printf( "%-12s ",       Wlc_ObjName(p, Wlc_ObjFaninId1(pObj)) );
        else
            printf( "             " );
        if ( Wlc_ObjFaninNum(pObj) > 2 )
            printf( "%-12s ",       Wlc_ObjName(p, Wlc_ObjFaninId2(pObj)) );
    }
    printf( "\n" );
}
void Wlc_NtkPrintNodeArray( Wlc_Ntk_t * p, Vec_Int_t * vArray )
{
    Wlc_Obj_t * pObj; 
    int i;
    Wlc_NtkForEachObjVec( vArray, p, pObj, i )
        Wlc_NtkPrintNode( p, pObj );
}
666 667 668 669 670 671 672 673 674
void Wlc_NtkPrintNodes( Wlc_Ntk_t * p, int Type )
{
    Wlc_Obj_t * pObj; 
    int i, Counter = 0;
    printf( "Operation %s\n", Wlc_Names[Type] );
    Wlc_NtkForEachObj( p, pObj, i )
    {
        if ( (int)pObj->Type != Type )
            continue;
675 676
        printf( "%8d  :", Counter++ );
        Wlc_NtkPrintNode( p, pObj );
677 678
    }
}
679
void Wlc_NtkPrintStats( Wlc_Ntk_t * p, int fDistrib, int fTwoSides, int fVerbose )
680 681 682
{
    int i;
    printf( "%-20s : ",        p->pName );
683
    printf( "PI = %4d  ",      Wlc_NtkCountRealPis(p) ); //Wlc_NtkPiNum(p) );
684 685
    printf( "PO = %4d  ",      Wlc_NtkPoNum(p) );
    printf( "FF = %4d  ",      Wlc_NtkFfNum(p) );
686
    printf( "Obj = %6d  ",     Wlc_NtkObjNum(p) - Wlc_NtkPiNum(p) - Wlc_NtkPoNum(p) - Wlc_NtkFfNum(p) );
687 688
    printf( "Mem = %.3f MB",   1.0*Wlc_NtkMemUsage(p)/(1<<20) );
    printf( "\n" );
689 690
    if ( fDistrib )
    {
691
        Wlc_NtkPrintDistrib( p, fTwoSides, fVerbose );
692 693
        return;
    }
694 695
    if ( !fVerbose )
        return;
696 697 698 699 700 701 702 703 704 705
    printf( "Node type statistics:\n" );
    for ( i = 1; i < WLC_OBJ_NUMBER; i++ )
    {
        if ( !p->nObjs[i] )
            continue;
        if ( p->nAnds[0] && p->nAnds[i] )
            printf( "%2d  :  %-8s  %6d  %7.2f %%\n", i, Wlc_Names[i], p->nObjs[i], 100.0*p->nAnds[i]/p->nAnds[0] );
        else
            printf( "%2d  :  %-8s  %6d\n", i, Wlc_Names[i], p->nObjs[i] );
    }
706 707 708 709
}

/**Function*************************************************************

710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744
  Synopsis    []

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
void Wlc_NtkTransferNames( Wlc_Ntk_t * pNew, Wlc_Ntk_t * p )
{
    int i;
    assert( !Wlc_NtkHasCopy(pNew)   && Wlc_NtkHasCopy(p)   );
    assert( !Wlc_NtkHasNameId(pNew) && Wlc_NtkHasNameId(p) );
    assert( pNew->pManName  == NULL && p->pManName != NULL );
    Wlc_NtkCleanNameId( pNew );
    for ( i = 0; i < p->nObjsAlloc; i++ )
        if ( Wlc_ObjCopy(p, i) && i < Vec_IntSize(&p->vNameIds) && Wlc_ObjNameId(p, i) )
            Wlc_ObjSetNameId( pNew, Wlc_ObjCopy(p, i), Wlc_ObjNameId(p, i) );
    pNew->pManName = p->pManName; 
    p->pManName = NULL;
    Vec_IntErase( &p->vNameIds );
    // transfer table
    pNew->pMemTable = p->pMemTable;  p->pMemTable = NULL;
    pNew->vTables = p->vTables;      p->vTables = NULL;
}
char * Wlc_NtkNewName( Wlc_Ntk_t * p, int iCoId, int fSeq )
{
    static char pBuffer[1000];
    sprintf( pBuffer, "%s_o%d_%s", p->pName, iCoId, fSeq ? "seq": "comb" );
    return pBuffer;
}

/**Function*************************************************************

745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760
  Synopsis    [Reduce init vector.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
Vec_Int_t * Wlc_ReduceMarkedInitVec( Wlc_Ntk_t * p, Vec_Int_t * vInit )
{
    Vec_Int_t * vInitNew = Vec_IntDup( vInit );
    Wlc_Obj_t * pObj; int i, k = 0;
    assert( Vec_IntSize(vInit) == Wlc_NtkCiNum(p) - Wlc_NtkPiNum(p) );
    Wlc_NtkForEachCi( p, pObj, i )
        if ( !Wlc_ObjIsPi(pObj) && pObj->Mark )
761
            Vec_IntWriteEntry( vInitNew, k++, Vec_IntEntry(vInit, i - Wlc_NtkPiNum(p)) );
762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783
    Vec_IntShrink( vInitNew, k );
    return vInitNew;
}
char * Wlc_ReduceMarkedInitStr( Wlc_Ntk_t * p, char * pInit )
{
    char * pInitNew = Abc_UtilStrsav( pInit );
    Wlc_Obj_t * pObj; int i, b, nBits = 0, k = 0;
    Wlc_NtkForEachCi( p, pObj, i )
    {
        if ( !Wlc_ObjIsPi(pObj) && pObj->Mark )
            for ( b = 0; b < Wlc_ObjRange(pObj); b++ )
                pInitNew[k++] = pInitNew[nBits+b];
        if ( !Wlc_ObjIsPi(pObj) )
            nBits += Wlc_ObjRange(pObj);
    }
    pInitNew[k] = '\0';
    assert( nBits == (int)strlen(pInit) );
    return pInitNew;
}

/**Function*************************************************************

784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807
  Synopsis    [Duplicates the network in a topological order.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
void Wlc_ObjCollectCopyFanins( Wlc_Ntk_t * p, int iObj, Vec_Int_t * vFanins )
{
    int i, iFanin;
    Wlc_Obj_t * pObj = Wlc_NtkObj( p, iObj );
    Vec_IntClear( vFanins );
    Wlc_ObjForEachFanin( pObj, iFanin, i )
        Vec_IntPush( vFanins, Wlc_ObjCopy(p, iFanin) );
    // special treatment of CONST and SELECT
    if ( pObj->Type == WLC_OBJ_CONST )
    {
        int * pInts = Wlc_ObjConstValue( pObj );
        int nInts = Abc_BitWordNum( Wlc_ObjRange(pObj) );
        for ( i = 0; i < nInts; i++ )
            Vec_IntPush( vFanins, pInts[i] );
    }
808 809 810 811 812 813
    else if ( pObj->Type == WLC_OBJ_BIT_SELECT )
    {
        assert( Vec_IntSize(vFanins) == 1 );
        Vec_IntPushTwo( vFanins, Wlc_ObjRangeEnd(pObj), Wlc_ObjRangeBeg(pObj) );
    }
    else if ( pObj->Type == WLC_OBJ_TABLE )
814 815 816 817 818 819 820 821
    {
        assert( Vec_IntSize(vFanins) == 1 );
        Vec_IntPush( vFanins, pObj->Fanins[1] );
    }
}
int Wlc_ObjDup( Wlc_Ntk_t * pNew, Wlc_Ntk_t * p, int iObj, Vec_Int_t * vFanins )
{
    Wlc_Obj_t * pObj = Wlc_NtkObj( p, iObj );
822
    int iFaninNew = Wlc_ObjAlloc( pNew, pObj->Type, Wlc_ObjIsSigned(pObj), pObj->End, pObj->Beg );
823 824 825 826
    Wlc_Obj_t * pObjNew = Wlc_NtkObj(pNew, iFaninNew);
    Wlc_ObjCollectCopyFanins( p, iObj, vFanins );
    Wlc_ObjAddFanins( pNew, pObjNew, vFanins );
    Wlc_ObjSetCopy( p, iObj, iFaninNew );
827
    pObjNew->fXConst = pObj->fXConst;
828 829 830 831 832 833 834 835 836 837 838 839 840
    return iFaninNew;
}
void Wlc_NtkDupDfs_rec( Wlc_Ntk_t * pNew, Wlc_Ntk_t * p, int iObj, Vec_Int_t * vFanins )
{
    Wlc_Obj_t * pObj;
    int i, iFanin;
    if ( Wlc_ObjCopy(p, iObj) )
        return;
    pObj = Wlc_NtkObj( p, iObj );
    Wlc_ObjForEachFanin( pObj, iFanin, i )
        Wlc_NtkDupDfs_rec( pNew, p, iFanin, vFanins );
    Wlc_ObjDup( pNew, p, iObj, vFanins );
}
841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867

Wlc_Ntk_t * Wlc_NtkDupDfsSimple( Wlc_Ntk_t * p )
{
    Wlc_Ntk_t * pNew;
    Wlc_Obj_t * pObj;
    Vec_Int_t * vFanins;
    int i;
    Wlc_NtkCleanCopy( p );
    vFanins = Vec_IntAlloc( 100 );
    pNew = Wlc_NtkAlloc( p->pName, p->nObjsAlloc );
    pNew->fSmtLib = p->fSmtLib;
    Wlc_NtkForEachCi( p, pObj, i )
        Wlc_ObjDup( pNew, p, Wlc_ObjId(p, pObj), vFanins );
    Wlc_NtkForEachCo( p, pObj, i )
        Wlc_NtkDupDfs_rec( pNew, p, Wlc_ObjId(p, pObj), vFanins );
    Wlc_NtkForEachCo( p, pObj, i )
        Wlc_ObjSetCo( pNew, Wlc_ObjCopyObj(pNew, p, pObj), pObj->fIsFi );
    if ( p->vInits )
    pNew->vInits = Vec_IntDup( p->vInits );
    if ( p->pInits )
    pNew->pInits = Abc_UtilStrsav( p->pInits );
    Vec_IntFree( vFanins );
    if ( p->pSpec )
    pNew->pSpec = Abc_UtilStrsav( p->pSpec );
    return pNew;
}

868
Wlc_Ntk_t * Wlc_NtkDupDfs( Wlc_Ntk_t * p, int fMarked, int fSeq )
869 870 871 872 873 874
{
    Wlc_Ntk_t * pNew;
    Wlc_Obj_t * pObj;
    Vec_Int_t * vFanins;
    int i;
    vFanins = Vec_IntAlloc( 100 );
875
    Wlc_NtkCleanCopy( p );
876
    pNew = Wlc_NtkAlloc( p->pName, p->nObjsAlloc );
877
    pNew->fSmtLib = p->fSmtLib;
878 879
    Wlc_NtkForEachCi( p, pObj, i )
        if ( !fMarked || pObj->Mark )
880 881
        {
            unsigned Type = pObj->Type;
882
            if ( !fSeq ) pObj->Type = WLC_OBJ_PI;
883
            Wlc_ObjDup( pNew, p, Wlc_ObjId(p, pObj), vFanins );
884 885
            pObj->Type = Type;
        }
886
    Wlc_NtkForEachCo( p, pObj, i )
887 888
        if ( !fMarked || pObj->Mark )
            Wlc_NtkDupDfs_rec( pNew, p, Wlc_ObjId(p, pObj), vFanins );
889
    Wlc_NtkForEachCo( p, pObj, i )
890
        if ( !fMarked || pObj->Mark )
891
            Wlc_ObjSetCo( pNew, Wlc_ObjCopyObj(pNew, p, pObj), fSeq ? pObj->fIsFi : 0 );
892
    Vec_IntFree( vFanins );
893
    if ( fSeq )
894
    {
895 896 897 898 899 900 901 902 903 904 905 906 907 908
        if ( fMarked )
        {
            if ( p->vInits )
                pNew->vInits = Wlc_ReduceMarkedInitVec( p, p->vInits );
            if ( p->pInits )
                pNew->pInits = Wlc_ReduceMarkedInitStr( p, p->pInits );
        }
        else
        {
            if ( p->vInits )
                pNew->vInits = Vec_IntDup( p->vInits );
            if ( p->pInits )
                pNew->pInits = Abc_UtilStrsav( p->pInits );
        }
909
    }
910
    if ( p->pSpec )
911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976
        pNew->pSpec = Abc_UtilStrsav( p->pSpec );
    Wlc_NtkTransferNames( pNew, p );
    return pNew;
}
Wlc_Ntk_t * Wlc_NtkDupDfsAbs( Wlc_Ntk_t * p, Vec_Int_t * vPisOld, Vec_Int_t * vPisNew, Vec_Int_t * vFlops )
{
    Wlc_Ntk_t * pNew;
    Wlc_Obj_t * pObj;
    Vec_Int_t * vFanins;
    int i;
    Wlc_NtkCleanCopy( p );
    pNew = Wlc_NtkAlloc( p->pName, p->nObjsAlloc );
    pNew->fSmtLib = p->fSmtLib;

    // duplicate marked PIs
    vFanins = Vec_IntAlloc( 100 );
    Wlc_NtkForEachObjVec( vPisOld, p, pObj, i )
    {
        assert( Wlc_ObjIsPi(pObj) );
        Wlc_ObjDup( pNew, p, Wlc_ObjId(p, pObj), vFanins );
    }
    // duplicate additional PIs
    Wlc_NtkForEachObjVec( vPisNew, p, pObj, i )
    {
        unsigned Type = pObj->Type;
        int nFanins = Wlc_ObjFaninNum(pObj);
        assert( !Wlc_ObjIsPi(pObj) );
        pObj->Type = WLC_OBJ_PI;
        pObj->nFanins = 0;
        Wlc_ObjDup( pNew, p, Wlc_ObjId(p, pObj), vFanins );
        pObj->Type = Type;
        pObj->nFanins = (unsigned)nFanins;
    }
    // duplicate flop outputs
    Wlc_NtkForEachObjVec( vFlops, p, pObj, i )
    {
        assert( !Wlc_ObjIsPi(pObj) && Wlc_ObjIsCi(pObj) );
        Wlc_ObjDup( pNew, p, Wlc_ObjId(p, pObj), vFanins );
    }

    // duplicate logic cones of primary outputs
    Wlc_NtkForEachPo( p, pObj, i )
        Wlc_NtkDupDfs_rec( pNew, p, Wlc_ObjId(p, pObj), vFanins );
    // duplidate logic cone of flop inputs
    Wlc_NtkForEachObjVec( vFlops, p, pObj, i )
        Wlc_NtkDupDfs_rec( pNew, p, Wlc_ObjId(p, Wlc_ObjFo2Fi(p, pObj)), vFanins );

    // duplicate POs
    Wlc_NtkForEachPo( p, pObj, i )
        Wlc_ObjSetCo( pNew, Wlc_ObjCopyObj(pNew, p, pObj), 0 );
    // duplicate flop inputs 
    Wlc_NtkForEachObjVec( vFlops, p, pObj, i )
        Wlc_ObjSetCo( pNew, Wlc_ObjCopyObj(pNew, p, Wlc_ObjFo2Fi(p, pObj)), 1 );
    Vec_IntFree( vFanins );

    // mark flop outputs
    Wlc_NtkForEachObjVec( vFlops, p, pObj, i )
        pObj->Mark = 1;
    if ( p->vInits )
        pNew->vInits = Wlc_ReduceMarkedInitVec( p, p->vInits );
    if ( p->pInits )
        pNew->pInits = Wlc_ReduceMarkedInitStr( p, p->pInits );
    Wlc_NtkCleanMarks( p );

    if ( p->pSpec )
        pNew->pSpec = Abc_UtilStrsav( p->pSpec );
977
    //Wlc_NtkTransferNames( pNew, p );
978 979 980
    return pNew;
}

981
/**Function*************************************************************
982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998

  Synopsis    [Select the cone of the given output.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
void Wlc_NtkCleanMarks( Wlc_Ntk_t * p )
{
    Wlc_Obj_t * pObj;
    int i;
    Wlc_NtkForEachObj( p, pObj, i )
        pObj->Mark = 0;
}
999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
int Wlc_NtkCountMarked( Wlc_Ntk_t * p, int * pnPis, int * pnFos, int * pnAdders, int * pnMults )
{
    Wlc_Obj_t * pObj;
    int i, nNodes = 0;
    *pnPis = *pnFos = *pnAdders = *pnMults = 0;
    Wlc_NtkForEachObj( p, pObj, i )
    {
        if ( !pObj->Mark )
            continue;
        if ( Wlc_ObjIsPi(pObj) )
            (*pnPis)++;
        else if ( Wlc_ObjIsCi(pObj) )
            (*pnFos)++;
        else if ( pObj->Mark )
        {
            nNodes++;
            if ( pObj->Type == WLC_OBJ_ARI_ADD || pObj->Type == WLC_OBJ_ARI_SUB )
                (*pnAdders)++;
            else if ( pObj->Type == WLC_OBJ_ARI_MULTI )
                (*pnMults)++;
        }
    }
    return nNodes;
}
1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037
void Wlc_NtkMarkCone_rec( Wlc_Ntk_t * p, Wlc_Obj_t * pObj, Vec_Int_t * vFlops )
{
    int i, iFanin;
    if ( pObj->Mark )
        return;
    pObj->Mark = 1;
    if ( Wlc_ObjIsCi(pObj) )
    {
        if ( !Wlc_ObjIsPi(pObj) )
            Vec_IntPush( vFlops, Wlc_ObjCiId(pObj) );
        return;
    }
    Wlc_ObjForEachFanin( pObj, iFanin, i )
        Wlc_NtkMarkCone_rec( p, Wlc_NtkObj(p, iFanin), vFlops );
}
1038
void Wlc_NtkMarkCone( Wlc_Ntk_t * p, int iCoId, int Range, int fSeq, int fAllPis )
1039 1040 1041 1042 1043
{
    Vec_Int_t * vFlops;
    Wlc_Obj_t * pObj;
    int i, CiId, CoId;
    Wlc_NtkCleanMarks( p );
1044 1045 1046
    if ( fAllPis )
    Wlc_NtkForEachPi( p, pObj, i )
        pObj->Mark = 1;
1047
    vFlops = Vec_IntAlloc( 100 );
1048
    Wlc_NtkForEachCo( p, pObj, i )
1049
        if ( iCoId == -1 || (i >= iCoId && i < iCoId + Range) )
1050
            Wlc_NtkMarkCone_rec( p, pObj, vFlops );
1051
    if ( fSeq )
1052 1053 1054 1055 1056 1057 1058
    Vec_IntForEachEntry( vFlops, CiId, i )
    {
        CoId = Wlc_NtkPoNum(p) + CiId - Wlc_NtkPiNum(p);
        Wlc_NtkMarkCone_rec( p, Wlc_NtkCo(p, CoId), vFlops );
    }
    Vec_IntFree( vFlops );
}
1059 1060 1061 1062 1063 1064
void Wlc_NtkProfileCones( Wlc_Ntk_t * p )
{
    Wlc_Obj_t * pObj; 
    int i, nPis, nFos, nNodes, nAdders, nMults;
    Wlc_NtkForEachCo( p, pObj, i )
    {
1065
        Wlc_NtkMarkCone( p, i, 1, 0, 0 );
1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076
        nNodes = Wlc_NtkCountMarked( p, &nPis, &nFos, &nAdders, &nMults );
        printf( "Cone %5d : ", i );
        printf( "PI = %4d  ", nPis );
        printf( "FO = %4d  ", nFos );
        printf( "Node = %6d  ", nNodes );
        printf( "Add/Sub = %4d  ", nAdders );
        printf( "Mult = %4d  ", nMults );
        printf( "\n" );
    }
    Wlc_NtkCleanMarks( p );
}
1077 1078

/**Function*************************************************************
1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103

  Synopsis    [Duplicates the network by copying each node.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
Wlc_Ntk_t * Wlc_NtkDupSingleNodes( Wlc_Ntk_t * p )
{
    Wlc_Ntk_t * pNew;
    Vec_Int_t * vFanins;
    Wlc_Obj_t * pObj, * pObjNew;
    Wlc_Obj_t * pFanin, * pFaninNew;
    int i, k, iFanin, iFaninNew, iObjNew, Count = 0;
    // count objects
    Wlc_NtkForEachObj( p, pObj, i )
        if ( !Wlc_ObjIsCi(pObj) )
            Count += 1 + Wlc_ObjFaninNum(pObj);
    // copy objects
    Wlc_NtkCleanCopy( p );
    vFanins = Vec_IntAlloc( 100 );
    pNew = Wlc_NtkAlloc( p->pName, p->nObjsAlloc );
1104
    pNew->fSmtLib = p->fSmtLib;
1105 1106 1107 1108 1109 1110
    Wlc_NtkForEachObj( p, pObj, i )
    {
        if ( Wlc_ObjIsCi(pObj) )
            continue;
        if ( pObj->Type == WLC_OBJ_ARI_MULTI )
            continue;
1111 1112
        if ( pObj->Type == WLC_OBJ_MUX && Wlc_ObjFaninNum(pObj) > 3 )
            continue;
1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129
        // create CIs for the fanins
        Wlc_ObjForEachFanin( pObj, iFanin, k )
        {
            pFanin = Wlc_NtkObj(p, iFanin);
            iFaninNew = Wlc_ObjAlloc( pNew, WLC_OBJ_PI, pFanin->Signed, pFanin->End, pFanin->Beg );
            pFaninNew = Wlc_NtkObj(pNew, iFaninNew);
            Wlc_ObjSetCopy( p, iFanin, iFaninNew );
            //Wlc_ObjSetCi( pNew, pFaninNew );
        }
        // create object
        iObjNew = Wlc_ObjDup( pNew, p, i, vFanins );
        pObjNew = Wlc_NtkObj(pNew, iObjNew);
        pObjNew->fIsPo = 1;
        Vec_IntPush( &pNew->vPos, iObjNew );
    }
    Vec_IntFree( vFanins );
    Wlc_NtkTransferNames( pNew, p );
1130 1131
    if ( p->pSpec )
    pNew->pSpec = Abc_UtilStrsav( p->pSpec );
1132 1133 1134
    return pNew;
}

1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192
/**Function*************************************************************

  Synopsis    [Creates short names for all objects.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
void Wlc_NtkShortNames( Wlc_Ntk_t * p )
{
    Wlc_Obj_t * pObj;
    char pBuffer[100];
    int nDigits, NameId, fFound, i;
    int nFlops = Wlc_NtkCoNum(p) - Wlc_NtkPoNum(p);
    nDigits = Abc_Base10Log( nFlops );
    Wlc_NtkForEachCo( p, pObj, i )
    {
        if ( Wlc_ObjIsPo(pObj) )
            continue;
        sprintf( pBuffer, "%s%0*d", "fi", nDigits, i - Wlc_NtkPoNum(p) );
        NameId = Abc_NamStrFindOrAdd( p->pManName, pBuffer, &fFound );
        Wlc_ObjSetNameId( p, Wlc_ObjId(p, pObj), NameId );
    }
    Wlc_NtkForEachCi( p, pObj, i )
    {
        if ( Wlc_ObjIsPi(pObj) )
            continue;
        sprintf( pBuffer, "%s%0*d", "fo", nDigits, i - Wlc_NtkPiNum(p) );
        NameId = Abc_NamStrFindOrAdd( p->pManName, pBuffer, &fFound );
        Wlc_ObjSetNameId( p, Wlc_ObjId(p, pObj), NameId );
    }
    nDigits = Abc_Base10Log( Wlc_NtkPoNum(p) );
    Wlc_NtkForEachPo( p, pObj, i )
    {
        sprintf( pBuffer, "%s%0*d", "po", nDigits, i );
        NameId = Abc_NamStrFindOrAdd( p->pManName, pBuffer, &fFound );
        Wlc_ObjSetNameId( p, Wlc_ObjId(p, pObj), NameId );
    }
    nDigits = Abc_Base10Log( Wlc_NtkPiNum(p) );
    Wlc_NtkForEachPi( p, pObj, i )
    {
        sprintf( pBuffer, "%s%0*d", "pi", nDigits, i );
        NameId = Abc_NamStrFindOrAdd( p->pManName, pBuffer, &fFound );
        Wlc_ObjSetNameId( p, Wlc_ObjId(p, pObj), NameId );
    }
    nDigits = Abc_Base10Log( Wlc_NtkObjNum(p) );
    Wlc_NtkForEachObj( p, pObj, i )
    {
        if ( Wlc_ObjIsCi(pObj) || Wlc_ObjIsCo(pObj) )
            continue;
        sprintf( pBuffer, "%s%0*d", "n", nDigits, i );
        NameId = Abc_NamStrFindOrAdd( p->pManName, pBuffer, &fFound );
        Wlc_ObjSetNameId( p, Wlc_ObjId(p, pObj), NameId );
    }
}
1193

1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257
/**Function*************************************************************

  Synopsis    [Count the number of flops initialized to DC value.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
int Wlc_NtkDcFlopNum( Wlc_Ntk_t * p )
{
    int i, nFlops, Count = 0;
    if ( p->pInits == NULL )
        return 0;
    nFlops = strlen(p->pInits);
    for ( i = 0; i < nFlops; i++ )
        Count += (p->pInits[i] == 'x' || p->pInits[i] == 'X');
    return Count;
}

/**Function*************************************************************

  Synopsis    [Create references.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
void Wlc_NtkSetRefs( Wlc_Ntk_t * p )
{
    Wlc_Obj_t * pObj; int i, k, Fanin;
    Vec_IntFill( &p->vRefs, Wlc_NtkObjNumMax(p), 0 );
    Wlc_NtkForEachObj( p, pObj, i )
        Wlc_ObjForEachFanin( pObj, Fanin, k )
            Vec_IntAddToEntry( &p->vRefs, Fanin, 1 );
    Wlc_NtkForEachCo( p, pObj, i )
        Vec_IntAddToEntry( &p->vRefs, Wlc_ObjId(p, pObj), 1 );
}

/**Function*************************************************************

  Synopsis    [This procedure simply count the number of PPI bits.]

  Description []
               
  SideEffects []

  SeeAlso     []

***********************************************************************/
int Wlc_NtkCountObjBits( Wlc_Ntk_t * p, Vec_Int_t * vPisNew )
{
    Wlc_Obj_t * pObj; 
    int i, Count = 0;
    Wlc_NtkForEachObjVec( vPisNew, p, pObj, i )
        Count += Wlc_ObjRange(pObj);
    return Count;
}

1258 1259 1260 1261 1262 1263 1264
////////////////////////////////////////////////////////////////////////
///                       END OF FILE                                ///
////////////////////////////////////////////////////////////////////////


ABC_NAMESPACE_IMPL_END