mirror of https://github.com/YosysHQ/abc.git
Integrating GIA with LUT mapping.
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@ -30,6 +30,9 @@ ABC_NAMESPACE_IMPL_START
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/// DECLARATIONS ///
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////////////////////////////////////////////////////////////////////////
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extern int Kit_TruthToGia( Gia_Man_t * pMan, unsigned * pTruth, int nVars, Vec_Int_t * vMemory, Vec_Int_t * vLeaves, int fHash );
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extern int Abc_RecToGia2( Gia_Man_t * pMan, If_Man_t * pIfMan, If_Cut_t * pCut, If_Obj_t * pIfObj, Vec_Int_t * vLeaves, int fHash );
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////////////////////////////////////////////////////////////////////////
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/// FUNCTION DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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@ -315,7 +318,7 @@ If_Man_t * Gia_ManToIf( Gia_Man_t * p, If_Par_t * pPars )
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SeeAlso []
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***********************************************************************/
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int Gia_ManNodeIfSopToGiaInt( Gia_Man_t * pNew, Vec_Wrd_t * vAnds, int nVars, Vec_Int_t * vLeaves )
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int Gia_ManNodeIfSopToGiaInt( Gia_Man_t * pNew, Vec_Wrd_t * vAnds, int nVars, Vec_Int_t * vLeaves, int fHash )
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{
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Vec_Int_t * vResults;
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int iRes0, iRes1, iRes;
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@ -334,19 +337,21 @@ int Gia_ManNodeIfSopToGiaInt( Gia_Man_t * pNew, Vec_Wrd_t * vAnds, int nVars, Ve
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This = If_WrdToAnd( Entry );
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iRes0 = Abc_LitNotCond( Vec_IntEntry(vResults, This.iFan0), This.fCompl0 );
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iRes1 = Abc_LitNotCond( Vec_IntEntry(vResults, This.iFan1), This.fCompl1 );
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iRes = Gia_ManHashAnd( pNew, iRes0, iRes1 );
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// iRes = Gia_ManAppendAnd( pNew, iRes0, iRes1 );
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if ( fHash )
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iRes = Gia_ManHashAnd( pNew, iRes0, iRes1 );
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else
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iRes = Gia_ManAppendAnd( pNew, iRes0, iRes1 );
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Vec_IntPush( vResults, iRes );
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}
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Vec_IntFree( vResults );
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return Abc_LitNotCond( iRes, This.fCompl );
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}
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int Gia_ManNodeIfSopToGia( Gia_Man_t * pNew, If_Man_t * p, If_Cut_t * pCut, Vec_Int_t * vLeaves )
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int Gia_ManNodeIfSopToGia( Gia_Man_t * pNew, If_Man_t * p, If_Cut_t * pCut, Vec_Int_t * vLeaves, int fHash )
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{
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int iResult;
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Vec_Wrd_t * vArray;
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vArray = If_CutDelaySopArray( p, pCut );
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iResult = Gia_ManNodeIfSopToGiaInt( pNew, vArray, If_CutLeaveNum(pCut), vLeaves );
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iResult = Gia_ManNodeIfSopToGiaInt( pNew, vArray, If_CutLeaveNum(pCut), vLeaves, fHash );
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// Vec_WrdFree( vArray );
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return iResult;
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}
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@ -362,7 +367,7 @@ int Gia_ManNodeIfSopToGia( Gia_Man_t * pNew, If_Man_t * p, If_Cut_t * pCut, Vec_
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SeeAlso []
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***********************************************************************/
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int Gia_ManNodeIfToGia_rec( Gia_Man_t * pNew, If_Man_t * pIfMan, If_Obj_t * pIfObj, Vec_Ptr_t * vVisited )
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int Gia_ManNodeIfToGia_rec( Gia_Man_t * pNew, If_Man_t * pIfMan, If_Obj_t * pIfObj, Vec_Ptr_t * vVisited, int fHash )
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{
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If_Cut_t * pCut;
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If_Obj_t * pTemp;
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@ -382,15 +387,17 @@ int Gia_ManNodeIfToGia_rec( Gia_Man_t * pNew, If_Man_t * pIfMan, If_Obj_t * pIfO
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// compute the functions of the children
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for ( pTemp = pIfObj; pTemp; pTemp = pTemp->pEquiv )
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{
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iFunc0 = Gia_ManNodeIfToGia_rec( pNew, pIfMan, pTemp->pFanin0, vVisited );
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iFunc0 = Gia_ManNodeIfToGia_rec( pNew, pIfMan, pTemp->pFanin0, vVisited, fHash );
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if ( iFunc0 == ~0 )
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continue;
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iFunc1 = Gia_ManNodeIfToGia_rec( pNew, pIfMan, pTemp->pFanin1, vVisited );
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iFunc1 = Gia_ManNodeIfToGia_rec( pNew, pIfMan, pTemp->pFanin1, vVisited, fHash );
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if ( iFunc1 == ~0 )
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continue;
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// both branches are solved
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iFunc = Gia_ManHashAnd( pNew, Abc_LitNotCond(iFunc0, pTemp->fCompl0), Abc_LitNotCond(iFunc1, pTemp->fCompl1) );
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// iFunc = Gia_ManAppendAnd( pNew, Abc_LitNotCond(iFunc0, pTemp->fCompl0), Abc_LitNotCond(iFunc1, pTemp->fCompl1) );
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if ( fHash )
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iFunc = Gia_ManHashAnd( pNew, Abc_LitNotCond(iFunc0, pTemp->fCompl0), Abc_LitNotCond(iFunc1, pTemp->fCompl1) );
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else
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iFunc = Gia_ManAppendAnd( pNew, Abc_LitNotCond(iFunc0, pTemp->fCompl0), Abc_LitNotCond(iFunc1, pTemp->fCompl1) );
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if ( pTemp->fPhase != pIfObj->fPhase )
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iFunc = Abc_LitNot(iFunc);
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If_CutSetDataInt( pCut, iFunc );
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@ -398,7 +405,7 @@ int Gia_ManNodeIfToGia_rec( Gia_Man_t * pNew, If_Man_t * pIfMan, If_Obj_t * pIfO
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}
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return If_CutDataInt(pCut);
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}
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int Gia_ManNodeIfToGia( Gia_Man_t * pNew, If_Man_t * pIfMan, If_Obj_t * pIfObj, Vec_Int_t * vLeaves )
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int Gia_ManNodeIfToGia( Gia_Man_t * pNew, If_Man_t * pIfMan, If_Obj_t * pIfObj, Vec_Int_t * vLeaves, int fHash )
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{
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If_Cut_t * pCut;
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If_Obj_t * pLeaf;
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@ -411,7 +418,7 @@ int Gia_ManNodeIfToGia( Gia_Man_t * pNew, If_Man_t * pIfMan, If_Obj_t * pIfObj,
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If_CutSetDataInt( If_ObjCutBest(pLeaf), Vec_IntEntry(vLeaves, i) );
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// recursively compute the function while collecting visited cuts
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Vec_PtrClear( pIfMan->vTemp );
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iRes = Gia_ManNodeIfToGia_rec( pNew, pIfMan, pIfObj, pIfMan->vTemp );
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iRes = Gia_ManNodeIfToGia_rec( pNew, pIfMan, pIfObj, pIfMan->vTemp, fHash );
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if ( iRes == ~0 )
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{
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Abc_Print( -1, "Gia_ManNodeIfToGia(): Computing local AIG has failed.\n" );
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@ -438,10 +445,12 @@ int Gia_ManNodeIfToGia( Gia_Man_t * pNew, If_Man_t * pIfMan, If_Obj_t * pIfObj,
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***********************************************************************/
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Gia_Man_t * Gia_ManFromIf( If_Man_t * pIfMan )
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{
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int fHash = 0;
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Gia_Man_t * pNew;
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If_Obj_t * pIfObj, * pIfLeaf;
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If_Cut_t * pCutBest;
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Vec_Int_t * vLeaves;
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Vec_Int_t * vCover;
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unsigned * pTruth;
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int Counter, iOffset, nItems = 0;
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int i, k, w, GiaId;
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@ -449,6 +458,7 @@ Gia_Man_t * Gia_ManFromIf( If_Man_t * pIfMan )
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pNew = Gia_ManStart( If_ManObjNum(pIfMan) );
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Gia_ManHashAlloc( pNew );
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// iterate through nodes used in the mapping
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vCover = Vec_IntAlloc( 1 << 16 );
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vLeaves = Vec_IntAlloc( 16 );
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If_ManCleanCutData( pIfMan );
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If_ManForEachObj( pIfMan, pIfObj, i )
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@ -463,10 +473,18 @@ Gia_Man_t * Gia_ManFromIf( If_Man_t * pIfMan )
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If_CutForEachLeaf( pIfMan, pCutBest, pIfLeaf, k )
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Vec_IntPush( vLeaves, pIfLeaf->iCopy );
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// get the functionality
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if ( pIfMan->pPars->fDelayOpt )
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pIfObj->iCopy = Gia_ManNodeIfSopToGia( pNew, pIfMan, pCutBest, vLeaves );
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if ( pIfMan->pPars->pLutStruct )
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pIfObj->iCopy = Kit_TruthToGia( pNew, If_CutTruth(pCutBest), If_CutLeaveNum(pCutBest), vCover, vLeaves, fHash );
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else if ( pIfMan->pPars->fDelayOpt )
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pIfObj->iCopy = Gia_ManNodeIfSopToGia( pNew, pIfMan, pCutBest, vLeaves, fHash );
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else if ( pIfMan->pPars->fUserRecLib )
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pIfObj->iCopy = Abc_RecToGia2( pNew, pIfMan, pCutBest, pIfObj, vLeaves, fHash );
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else
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pIfObj->iCopy = Gia_ManNodeIfToGia( pNew, pIfMan, pIfObj, vLeaves );
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pIfObj->iCopy = Gia_ManNodeIfToGia( pNew, pIfMan, pIfObj, vLeaves, fHash );
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// complement the node if the TT was used and the cut was complemented
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if ( pIfMan->pPars->pLutStruct )
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pIfObj->iCopy = Abc_LitNotCond( pIfObj->iCopy, pCutBest->fCompl );
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// count entries in the mapping array
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nItems += 2 + If_CutLeaveNum( pCutBest );
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}
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else if ( If_ObjIsCi(pIfObj) )
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@ -480,6 +498,7 @@ Gia_Man_t * Gia_ManFromIf( If_Man_t * pIfMan )
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}
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else assert( 0 );
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}
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Vec_IntFree( vCover );
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Vec_IntFree( vLeaves );
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Gia_ManHashStop( pNew );
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@ -501,8 +520,10 @@ Gia_Man_t * Gia_ManFromIf( If_Man_t * pIfMan )
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if ( pIfObj->nRefs == 0 && !If_ObjIsTerm(pIfObj) )
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continue;
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if ( If_ObjIsAnd(pIfObj) )
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{
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{
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GiaId = Abc_Lit2Var( pIfObj->iCopy );
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if ( !Gia_ObjIsAnd(Gia_ManObj(pNew, GiaId)) ) // skip trivial node
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continue;
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assert( Gia_ObjIsAnd(Gia_ManObj(pNew, GiaId)) );
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if ( !Gia_ManObj(pNew, GiaId)->fMark0 ) // skip dangling node
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continue;
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@ -526,10 +547,10 @@ Gia_Man_t * Gia_ManFromIf( If_Man_t * pIfMan )
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pNew->pMapping[iOffset++] = If_CutLeaveNum(pCutBest);
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If_CutForEachLeaf( pIfMan, pCutBest, pIfLeaf, k )
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{
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GiaId = Abc_Lit2Var(pIfLeaf->iCopy);
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int FaninId = Abc_Lit2Var(pIfLeaf->iCopy);
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if ( pTruth && Abc_LitIsCompl(pIfLeaf->iCopy) )
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Kit_TruthChangePhase( pTruth, If_CutLeaveNum(pCutBest), k );
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if ( !Gia_ManObj(pNew, GiaId)->fMark0 ) // skip dangling node
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if ( !Gia_ManObj(pNew, FaninId)->fMark0 ) // skip dangling node
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{
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// update truth table
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if ( pTruth )
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@ -547,7 +568,8 @@ Gia_Man_t * Gia_ManFromIf( If_Man_t * pIfMan )
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pNew->pMapping[iOffset-k-1]--;
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continue;
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}
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pNew->pMapping[iOffset++] = GiaId;
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assert( FaninId != GiaId );
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pNew->pMapping[iOffset++] = FaninId;
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}
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pNew->pMapping[iOffset++] = GiaId;
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}
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@ -86,6 +86,7 @@ struct Abc_ManRec_t_2
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Vec_Ptr_t * vNodes; // the temporary nodes
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Vec_Ptr_t * vTtTemps; // the truth tables for the internal nodes of the cut
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Vec_Ptr_t * vLabels; // temporary storage for AIG node labels
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Vec_Int_t * vLabelsInt; // temporary storage for AIG node labels
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Vec_Int_t * vUselessPos;
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// statistics
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int nTried; // the number of cuts tried
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@ -1144,6 +1145,7 @@ p->timeInsert += clock() - timeInsert;
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p->vNodes = Vec_PtrAlloc( 100 );
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p->vTtTemps = Vec_PtrAllocSimInfo( 1024, p->nWords );
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p->vLabels = Vec_PtrStart( 1000 );
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p->vLabelsInt = Vec_IntStart( 1000 );
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p->timeTotal += clock() - clkTotal;
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@ -2063,6 +2065,105 @@ Hop_Obj_t * Abc_RecToHop2( Hop_Man_t * pMan, If_Man_t * pIfMan, If_Cut_t * pCut,
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return Hop_NotCond(pHopObj, (pCut->fCompl)^(((uCanonPhase & (1 << nLeaves)) > 0)) ^ fCompl);
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}
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/**Function*************************************************************
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Synopsis [Derive the final network from the library.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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int Abc_RecToGia2( Gia_Man_t * pMan, If_Man_t * pIfMan, If_Cut_t * pCut, If_Obj_t * pIfObj, Vec_Int_t * vLeaves, int fHash )
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{
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Rec_Obj_t2 * pCandMin;
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int pHopObj, pFan0, pFan1;
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Gia_Obj_t* pGiaObj, *pGiaTemp;
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Gia_Man_t * pAig = s_pMan->pGia;
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int nLeaves, i;// DelayMin = ABC_INFINITY , Delay = -ABC_INFINITY
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unsigned uCanonPhase;
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int nVars = s_pMan->nVars;
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char pCanonPerm[16];
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unsigned *pInOut = s_pMan->pTemp1;
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unsigned *pTemp = s_pMan->pTemp2;
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int time = clock();
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int fCompl;
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int * pCompl = &fCompl;
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nLeaves = If_CutLeaveNum(pCut);
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// if (nLeaves < 3)
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// return Abc_NodeTruthToHop(pMan, pIfMan, pCut);
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Kit_TruthCopy(pInOut, If_CutTruth(pCut), pCut->nLimit);
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//special cases when cut-minimization return 2, that means there is only one leaf in the cut.
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if ((Kit_TruthIsConst0(pInOut, nLeaves) && pCut->fCompl == 0) || (Kit_TruthIsConst1(pInOut, nLeaves) && pCut->fCompl == 1))
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return 0;
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if ((Kit_TruthIsConst0(pInOut, nLeaves) && pCut->fCompl == 1) || (Kit_TruthIsConst1(pInOut, nLeaves) && pCut->fCompl == 0))
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return 1;
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if (Kit_TruthSupport(pInOut, nLeaves) != Kit_BitMask(nLeaves))
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{
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for (i = 0; i < nLeaves; i++)
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if(Kit_TruthVarInSupport( pInOut, nLeaves, i ))
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return Abc_LitNotCond( Vec_IntEntry(vLeaves, i), (pCut->fCompl ^ ((*pInOut & 0x01) > 0)) );
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}
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for (i = 0; i < nLeaves; i++)
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pCanonPerm[i] = i;
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uCanonPhase = Kit_TruthSemiCanonicize_new(pInOut, pTemp, nLeaves, pCanonPerm);
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If_CutTruthStretch(pInOut, nLeaves, nVars);
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pCandMin = Abc_NtkRecLookUpBest(pIfMan, pCut, pInOut, pCanonPerm, pCompl,NULL);
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// get the top-most GIA node
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pGiaObj = Abc_NtkRecGetObj( Rec_ObjID(s_pMan, pCandMin) );
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assert( Gia_ObjIsAnd(pGiaObj) || Gia_ObjIsPi(pAig, pGiaObj) );
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// collect internal nodes into pAig->vTtNodes
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if ( pAig->vTtNodes == NULL )
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pAig->vTtNodes = Vec_IntAlloc( 256 );
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Gia_ObjCollectInternal( pAig, pGiaObj );
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// collect HOP nodes for leaves
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Vec_IntClear( s_pMan->vLabelsInt );
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for (i = 0; i < nLeaves; i++)
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{
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pHopObj = Vec_IntEntry(vLeaves, pCanonPerm[i]);
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pHopObj = Abc_LitNotCond(pHopObj, ((uCanonPhase & (1 << i)) > 0));
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Vec_IntPush(s_pMan->vLabelsInt, pHopObj);
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}
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// compute HOP nodes for internal nodes
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Gia_ManForEachObjVec( pAig->vTtNodes, pAig, pGiaTemp, i )
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{
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pGiaTemp->fMark0 = 0; // unmark node marked by Gia_ObjCollectInternal()
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if ( Gia_ObjIsAnd(Gia_ObjFanin0(pGiaTemp)) )
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pFan0 = Vec_IntEntry(s_pMan->vLabelsInt, Gia_ObjNum(pAig, Gia_ObjFanin0(pGiaTemp)) + nLeaves);
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else
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pFan0 = Vec_IntEntry(s_pMan->vLabelsInt, Gia_ObjCioId(Gia_ObjFanin0(pGiaTemp)));
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pFan0 = Abc_LitNotCond(pFan0, Gia_ObjFaninC0(pGiaTemp));
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if ( Gia_ObjIsAnd(Gia_ObjFanin1(pGiaTemp)) )
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pFan1 = Vec_IntEntry(s_pMan->vLabelsInt, Gia_ObjNum(pAig, Gia_ObjFanin1(pGiaTemp)) + nLeaves);
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else
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pFan1 = Vec_IntEntry(s_pMan->vLabelsInt, Gia_ObjCioId(Gia_ObjFanin1(pGiaTemp)));
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pFan1 = Abc_LitNotCond(pFan1, Gia_ObjFaninC1(pGiaTemp));
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if ( fHash )
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pHopObj = Gia_ManHashAnd(pMan, pFan0, pFan1);
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else
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pHopObj = Gia_ManAppendAnd(pMan, pFan0, pFan1);
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Vec_IntPush(s_pMan->vLabelsInt, pHopObj);
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}
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// get the final result
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if ( Gia_ObjIsAnd(pGiaObj) )
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pHopObj = Vec_IntEntry(s_pMan->vLabelsInt, Gia_ObjNum(pAig, pGiaObj) + nLeaves);
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else if ( Gia_ObjIsPi(pAig, pGiaObj) )
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pHopObj = Vec_IntEntry(s_pMan->vLabelsInt, Gia_ObjCioId(pGiaObj));
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else assert( 0 );
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s_pMan->timeIfDerive += clock() - time;
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s_pMan->timeIfTotal += clock() - time;
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// complement the result if needed
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return Abc_LitNotCond(pHopObj, (pCut->fCompl)^(((uCanonPhase & (1 << nLeaves)) > 0)) ^ fCompl);
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}
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/**Function*************************************************************
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Synopsis [Returns the given record.]
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@ -2097,8 +2198,8 @@ void Abc_NtkRecStop2()
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ABC_FREE( s_pMan->pTemp2 );
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Vec_PtrFree( s_pMan->vNodes );
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Vec_PtrFree( s_pMan->vTtTemps );
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if ( s_pMan->vLabels )
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Vec_PtrFree( s_pMan->vLabels );
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Vec_PtrFree( s_pMan->vLabels );
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Vec_IntFree( s_pMan->vLabelsInt );
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//if(s_pMan->pMemObj)
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// Mem_FixedStop(s_pMan->pMemObj, 0);
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Vec_IntFree( s_pMan->vUselessPos);
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@ -68,7 +68,8 @@ struct Kit_Node_t_
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Kit_Edge_t eEdge0; // the left child of the node
|
||||
Kit_Edge_t eEdge1; // the right child of the node
|
||||
// other info
|
||||
void * pFunc; // the function of the node (BDD or AIG)
|
||||
union { int iFunc; // the function of the node (BDD or AIG)
|
||||
void * pFunc; }; // the function of the node (BDD or AIG)
|
||||
unsigned Level : 14; // the level of this node in the global AIG
|
||||
// printing info
|
||||
unsigned fNodeOr : 1; // marks the original OR node
|
||||
|
|
@ -561,6 +562,7 @@ extern unsigned Kit_GraphToTruth( Kit_Graph_t * pGraph );
|
|||
extern Kit_Graph_t * Kit_TruthToGraph( unsigned * pTruth, int nVars, Vec_Int_t * vMemory );
|
||||
extern int Kit_GraphLeafDepth_rec( Kit_Graph_t * pGraph, Kit_Node_t * pNode, Kit_Node_t * pLeaf );
|
||||
/*=== kitHop.c ==========================================================*/
|
||||
//extern int Kit_TruthToGia( Gia_Man_t * pMan, unsigned * pTruth, int nVars, Vec_Int_t * vMemory, Vec_Int_t * vLeaves, int fHash );
|
||||
//extern Hop_Obj_t * Kit_GraphToHop( Hop_Man_t * pMan, Kit_Graph_t * pGraph );
|
||||
//extern Hop_Obj_t * Kit_TruthToHop( Hop_Man_t * pMan, unsigned * pTruth, int nVars, Vec_Int_t * vMemory );
|
||||
//extern Hop_Obj_t * Kit_CoverToHop( Hop_Man_t * pMan, Vec_Int_t * vCover, int nVars, Vec_Int_t * vMemory );
|
||||
|
|
|
|||
|
|
@ -20,6 +20,7 @@
|
|||
|
||||
#include "kit.h"
|
||||
#include "aig/hop/hop.h"
|
||||
#include "aig/gia/gia.h"
|
||||
|
||||
ABC_NAMESPACE_IMPL_START
|
||||
|
||||
|
|
@ -32,6 +33,74 @@ ABC_NAMESPACE_IMPL_START
|
|||
/// FUNCTION DEFINITIONS ///
|
||||
////////////////////////////////////////////////////////////////////////
|
||||
|
||||
/**Function*************************************************************
|
||||
|
||||
Synopsis [Transforms the decomposition graph into the AIG.]
|
||||
|
||||
Description []
|
||||
|
||||
SideEffects []
|
||||
|
||||
SeeAlso []
|
||||
|
||||
***********************************************************************/
|
||||
int Kit_GraphToGiaInternal( Gia_Man_t * pMan, Kit_Graph_t * pGraph, int fHash )
|
||||
{
|
||||
Kit_Node_t * pNode = NULL;
|
||||
int i, pAnd0, pAnd1;
|
||||
// check for constant function
|
||||
if ( Kit_GraphIsConst(pGraph) )
|
||||
return Abc_LitNotCond( 1, Kit_GraphIsComplement(pGraph) );
|
||||
// check for a literal
|
||||
if ( Kit_GraphIsVar(pGraph) )
|
||||
return Abc_LitNotCond( Kit_GraphVar(pGraph)->iFunc, Kit_GraphIsComplement(pGraph) );
|
||||
// build the AIG nodes corresponding to the AND gates of the graph
|
||||
Kit_GraphForEachNode( pGraph, pNode, i )
|
||||
{
|
||||
pAnd0 = Abc_LitNotCond( Kit_GraphNode(pGraph, pNode->eEdge0.Node)->iFunc, pNode->eEdge0.fCompl );
|
||||
pAnd1 = Abc_LitNotCond( Kit_GraphNode(pGraph, pNode->eEdge1.Node)->iFunc, pNode->eEdge1.fCompl );
|
||||
if ( fHash )
|
||||
pNode->iFunc = Gia_ManHashAnd( pMan, pAnd0, pAnd1 );
|
||||
else
|
||||
pNode->iFunc = Gia_ManAppendAnd( pMan, pAnd0, pAnd1 );
|
||||
}
|
||||
// complement the result if necessary
|
||||
return Abc_LitNotCond( pNode->iFunc, Kit_GraphIsComplement(pGraph) );
|
||||
}
|
||||
int Kit_GraphToGia( Gia_Man_t * pMan, Kit_Graph_t * pGraph, Vec_Int_t * vLeaves, int fHash )
|
||||
{
|
||||
Kit_Node_t * pNode = NULL;
|
||||
int i;
|
||||
// collect the fanins
|
||||
Kit_GraphForEachLeaf( pGraph, pNode, i )
|
||||
pNode->iFunc = Vec_IntEntry( vLeaves, i );
|
||||
// perform strashing
|
||||
return Kit_GraphToGiaInternal( pMan, pGraph, fHash );
|
||||
}
|
||||
int Kit_TruthToGia( Gia_Man_t * pMan, unsigned * pTruth, int nVars, Vec_Int_t * vMemory, Vec_Int_t * vLeaves, int fHash )
|
||||
{
|
||||
int iLit;
|
||||
Kit_Graph_t * pGraph;
|
||||
// transform truth table into the decomposition tree
|
||||
if ( vMemory == NULL )
|
||||
{
|
||||
vMemory = Vec_IntAlloc( 0 );
|
||||
pGraph = Kit_TruthToGraph( pTruth, nVars, vMemory );
|
||||
Vec_IntFree( vMemory );
|
||||
}
|
||||
else
|
||||
pGraph = Kit_TruthToGraph( pTruth, nVars, vMemory );
|
||||
if ( pGraph == NULL )
|
||||
{
|
||||
printf( "Kit_TruthToGia(): Converting truth table to AIG has failed for function:\n" );
|
||||
Kit_DsdPrintFromTruth( pTruth, nVars ); printf( "\n" );
|
||||
}
|
||||
// derive the AIG for the decomposition tree
|
||||
iLit = Kit_GraphToGia( pMan, pGraph, vLeaves, fHash );
|
||||
Kit_GraphFree( pGraph );
|
||||
return iLit;
|
||||
}
|
||||
|
||||
/**Function*************************************************************
|
||||
|
||||
Synopsis [Transforms the decomposition graph into the AIG.]
|
||||
|
|
@ -64,18 +133,6 @@ Hop_Obj_t * Kit_GraphToHopInternal( Hop_Man_t * pMan, Kit_Graph_t * pGraph )
|
|||
// complement the result if necessary
|
||||
return Hop_NotCond( (Hop_Obj_t *)pNode->pFunc, Kit_GraphIsComplement(pGraph) );
|
||||
}
|
||||
|
||||
/**Function*************************************************************
|
||||
|
||||
Synopsis [Strashes one logic node using its SOP.]
|
||||
|
||||
Description []
|
||||
|
||||
SideEffects []
|
||||
|
||||
SeeAlso []
|
||||
|
||||
***********************************************************************/
|
||||
Hop_Obj_t * Kit_GraphToHop( Hop_Man_t * pMan, Kit_Graph_t * pGraph )
|
||||
{
|
||||
Kit_Node_t * pNode = NULL;
|
||||
|
|
@ -86,18 +143,6 @@ Hop_Obj_t * Kit_GraphToHop( Hop_Man_t * pMan, Kit_Graph_t * pGraph )
|
|||
// perform strashing
|
||||
return Kit_GraphToHopInternal( pMan, pGraph );
|
||||
}
|
||||
|
||||
/**Function*************************************************************
|
||||
|
||||
Synopsis [Strashed onen logic nodes using its truth table.]
|
||||
|
||||
Description []
|
||||
|
||||
SideEffects []
|
||||
|
||||
SeeAlso []
|
||||
|
||||
***********************************************************************/
|
||||
Hop_Obj_t * Kit_TruthToHop( Hop_Man_t * pMan, unsigned * pTruth, int nVars, Vec_Int_t * vMemory )
|
||||
{
|
||||
Hop_Obj_t * pObj;
|
||||
|
|
|
|||
Loading…
Reference in New Issue