mirror of https://github.com/YosysHQ/abc.git
382 lines
13 KiB
C
382 lines
13 KiB
C
/**CFile****************************************************************
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FileName [abcRefactor.c]
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SystemName [ABC: Logic synthesis and verification system.]
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PackageName [Network and node package.]
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Synopsis [Resynthesis based on collapsing and refactoring.]
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Author [Alan Mishchenko]
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Affiliation [UC Berkeley]
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Date [Ver. 1.0. Started - June 20, 2005.]
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Revision [$Id: abcRefactor.c,v 1.00 2005/06/20 00:00:00 alanmi Exp $]
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***********************************************************************/
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#include "abc.h"
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#include "dec.h"
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////////////////////////////////////////////////////////////////////////
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/// DECLARATIONS ///
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////////////////////////////////////////////////////////////////////////
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typedef struct Abc_ManRef_t_ Abc_ManRef_t;
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struct Abc_ManRef_t_
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{
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// user specified parameters
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int nNodeSizeMax; // the limit on the size of the supernode
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int nConeSizeMax; // the limit on the size of the containing cone
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int fVerbose; // the verbosity flag
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// internal data structures
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DdManager * dd; // the BDD manager
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Vec_Str_t * vCube; // temporary
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Vec_Int_t * vForm; // temporary
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Vec_Ptr_t * vVisited; // temporary
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Vec_Ptr_t * vLeaves; // temporary
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// node statistics
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int nLastGain;
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int nNodesConsidered;
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int nNodesRefactored;
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int nNodesGained;
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int nNodesBeg;
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int nNodesEnd;
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// runtime statistics
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int timeCut;
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int timeBdd;
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int timeDcs;
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int timeSop;
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int timeFact;
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int timeEval;
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int timeRes;
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int timeNtk;
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int timeTotal;
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};
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static void Abc_NtkManRefPrintStats( Abc_ManRef_t * p );
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static Abc_ManRef_t * Abc_NtkManRefStart( int nNodeSizeMax, int nConeSizeMax, bool fUseDcs, bool fVerbose );
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static void Abc_NtkManRefStop( Abc_ManRef_t * p );
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static Dec_Graph_t * Abc_NodeRefactor( Abc_ManRef_t * p, Abc_Obj_t * pNode, Vec_Ptr_t * vFanins, bool fUpdateLevel, bool fUseZeros, bool fUseDcs, bool fVerbose );
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////////////////////////////////////////////////////////////////////////
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/// FUNCTION DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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/**Function*************************************************************
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Synopsis [Performs incremental resynthesis of the AIG.]
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Description [Starting from each node, computes a reconvergence-driven cut,
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derives BDD of the cut function, constructs ISOP, factors the ISOP,
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and replaces the current implementation of the MFFC of the node by the
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new factored form, if the number of AIG nodes is reduced and the total
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number of levels of the AIG network is not increated. Returns the
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number of AIG nodes saved.]
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SideEffects []
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SeeAlso []
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***********************************************************************/
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int Abc_NtkRefactor( Abc_Ntk_t * pNtk, int nNodeSizeMax, int nConeSizeMax, bool fUpdateLevel, bool fUseZeros, bool fUseDcs, bool fVerbose )
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{
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extern void Dec_GraphUpdateNetwork( Abc_Obj_t * pRoot, Dec_Graph_t * pGraph, bool fUpdateLevel, int nGain );
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ProgressBar * pProgress;
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Abc_ManRef_t * pManRef;
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Abc_ManCut_t * pManCut;
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Dec_Graph_t * pFForm;
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Vec_Ptr_t * vFanins;
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Abc_Obj_t * pNode;
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int clk, clkStart = clock();
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int i, nNodes;
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assert( Abc_NtkIsStrash(pNtk) );
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// cleanup the AIG
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Abc_AigCleanup(pNtk->pManFunc);
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// start the managers
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pManCut = Abc_NtkManCutStart( nNodeSizeMax, nConeSizeMax, 2, 1000 );
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pManRef = Abc_NtkManRefStart( nNodeSizeMax, nConeSizeMax, fUseDcs, fVerbose );
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pManRef->vLeaves = Abc_NtkManCutReadCutLarge( pManCut );
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// compute the reverse levels if level update is requested
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if ( fUpdateLevel )
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Abc_NtkStartReverseLevels( pNtk, 0 );
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// resynthesize each node once
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pManRef->nNodesBeg = Abc_NtkNodeNum(pNtk);
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nNodes = Abc_NtkObjNumMax(pNtk);
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pProgress = Extra_ProgressBarStart( stdout, nNodes );
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Abc_NtkForEachNode( pNtk, pNode, i )
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{
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Extra_ProgressBarUpdate( pProgress, i, NULL );
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// skip the constant node
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// if ( Abc_NodeIsConst(pNode) )
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// continue;
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// skip persistant nodes
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if ( Abc_NodeIsPersistant(pNode) )
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continue;
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// skip the nodes with many fanouts
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if ( Abc_ObjFanoutNum(pNode) > 1000 )
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continue;
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// stop if all nodes have been tried once
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if ( i >= nNodes )
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break;
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// compute a reconvergence-driven cut
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clk = clock();
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vFanins = Abc_NodeFindCut( pManCut, pNode, fUseDcs );
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pManRef->timeCut += clock() - clk;
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// evaluate this cut
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clk = clock();
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pFForm = Abc_NodeRefactor( pManRef, pNode, vFanins, fUpdateLevel, fUseZeros, fUseDcs, fVerbose );
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pManRef->timeRes += clock() - clk;
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if ( pFForm == NULL )
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continue;
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// acceptable replacement found, update the graph
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clk = clock();
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Dec_GraphUpdateNetwork( pNode, pFForm, fUpdateLevel, pManRef->nLastGain );
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pManRef->timeNtk += clock() - clk;
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Dec_GraphFree( pFForm );
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// {
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// extern int s_TotalChanges;
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// s_TotalChanges++;
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// }
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}
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Extra_ProgressBarStop( pProgress );
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pManRef->timeTotal = clock() - clkStart;
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pManRef->nNodesEnd = Abc_NtkNodeNum(pNtk);
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// print statistics of the manager
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if ( fVerbose )
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Abc_NtkManRefPrintStats( pManRef );
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// delete the managers
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Abc_NtkManCutStop( pManCut );
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Abc_NtkManRefStop( pManRef );
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// put the nodes into the DFS order and reassign their IDs
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Abc_NtkReassignIds( pNtk );
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// Abc_AigCheckFaninOrder( pNtk->pManFunc );
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// fix the levels
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if ( fUpdateLevel )
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Abc_NtkStopReverseLevels( pNtk );
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else
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Abc_NtkLevel( pNtk );
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// check
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if ( !Abc_NtkCheck( pNtk ) )
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{
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printf( "Abc_NtkRefactor: The network check has failed.\n" );
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return 0;
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}
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return 1;
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}
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/**Function*************************************************************
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Synopsis [Resynthesizes the node using refactoring.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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Dec_Graph_t * Abc_NodeRefactor( Abc_ManRef_t * p, Abc_Obj_t * pNode, Vec_Ptr_t * vFanins, bool fUpdateLevel, bool fUseZeros, bool fUseDcs, bool fVerbose )
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{
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extern int Dec_GraphToNetworkCount( Abc_Obj_t * pRoot, Dec_Graph_t * pGraph, int NodeMax, int LevelMax );
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int fVeryVerbose = 0;
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Abc_Obj_t * pFanin;
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Dec_Graph_t * pFForm;
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DdNode * bNodeFunc;
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int nNodesSaved, nNodesAdded, i, clk;
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char * pSop;
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int Required;
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Required = fUpdateLevel? Abc_ObjRequiredLevel(pNode) : ABC_INFINITY;
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p->nNodesConsidered++;
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// get the function of the cut
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clk = clock();
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bNodeFunc = Abc_NodeConeBdd( p->dd, p->dd->vars, pNode, vFanins, p->vVisited ); Cudd_Ref( bNodeFunc );
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p->timeBdd += clock() - clk;
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// if don't-care are used, transform the function into ISOP
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if ( fUseDcs )
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{
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DdNode * bNodeDc, * bNodeOn, * bNodeOnDc;
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int nMints, nMintsDc;
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clk = clock();
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// get the don't-cares
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bNodeDc = Abc_NodeConeDcs( p->dd, p->dd->vars + vFanins->nSize, p->dd->vars, p->vLeaves, vFanins, p->vVisited ); Cudd_Ref( bNodeDc );
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nMints = (1 << vFanins->nSize);
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nMintsDc = (int)Cudd_CountMinterm( p->dd, bNodeDc, vFanins->nSize );
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// printf( "Percentage of minterms = %5.2f.\n", 100.0 * nMintsDc / nMints );
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// get the ISF
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bNodeOn = Cudd_bddAnd( p->dd, bNodeFunc, Cudd_Not(bNodeDc) ); Cudd_Ref( bNodeOn );
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bNodeOnDc = Cudd_bddOr ( p->dd, bNodeFunc, bNodeDc ); Cudd_Ref( bNodeOnDc );
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Cudd_RecursiveDeref( p->dd, bNodeFunc );
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Cudd_RecursiveDeref( p->dd, bNodeDc );
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// get the ISOP
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bNodeFunc = Cudd_bddIsop( p->dd, bNodeOn, bNodeOnDc ); Cudd_Ref( bNodeFunc );
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Cudd_RecursiveDeref( p->dd, bNodeOn );
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Cudd_RecursiveDeref( p->dd, bNodeOnDc );
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p->timeDcs += clock() - clk;
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}
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// always accept the case of constant node
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if ( Cudd_IsConstant(bNodeFunc) )
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{
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p->nLastGain = Abc_NodeMffcSize( pNode );
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p->nNodesGained += p->nLastGain;
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p->nNodesRefactored++;
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Cudd_RecursiveDeref( p->dd, bNodeFunc );
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if ( Cudd_IsComplement(bNodeFunc) )
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return Dec_GraphCreateConst0();
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return Dec_GraphCreateConst1();
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}
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// get the SOP of the cut
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clk = clock();
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pSop = Abc_ConvertBddToSop( NULL, p->dd, bNodeFunc, bNodeFunc, vFanins->nSize, 0, p->vCube, -1 );
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p->timeSop += clock() - clk;
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// get the factored form
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clk = clock();
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pFForm = Dec_Factor( pSop );
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free( pSop );
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p->timeFact += clock() - clk;
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// mark the fanin boundary
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// (can mark only essential fanins, belonging to bNodeFunc!)
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Vec_PtrForEachEntry( vFanins, pFanin, i )
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pFanin->vFanouts.nSize++;
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// label MFFC with current traversal ID
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Abc_NtkIncrementTravId( pNode->pNtk );
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nNodesSaved = Abc_NodeMffcLabelAig( pNode );
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// unmark the fanin boundary and set the fanins as leaves in the form
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Vec_PtrForEachEntry( vFanins, pFanin, i )
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{
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pFanin->vFanouts.nSize--;
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Dec_GraphNode(pFForm, i)->pFunc = pFanin;
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}
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// detect how many new nodes will be added (while taking into account reused nodes)
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clk = clock();
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nNodesAdded = Dec_GraphToNetworkCount( pNode, pFForm, nNodesSaved, Required );
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p->timeEval += clock() - clk;
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// quit if there is no improvement
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if ( nNodesAdded == -1 || nNodesAdded == nNodesSaved && !fUseZeros )
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{
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Cudd_RecursiveDeref( p->dd, bNodeFunc );
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Dec_GraphFree( pFForm );
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return NULL;
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}
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// compute the total gain in the number of nodes
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p->nLastGain = nNodesSaved - nNodesAdded;
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p->nNodesGained += p->nLastGain;
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p->nNodesRefactored++;
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// report the progress
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if ( fVeryVerbose )
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{
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printf( "Node %6s : ", Abc_ObjName(pNode) );
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printf( "Cone = %2d. ", vFanins->nSize );
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printf( "BDD = %2d. ", Cudd_DagSize(bNodeFunc) );
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printf( "FF = %2d. ", 1 + Dec_GraphNodeNum(pFForm) );
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printf( "MFFC = %2d. ", nNodesSaved );
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printf( "Add = %2d. ", nNodesAdded );
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printf( "GAIN = %2d. ", p->nLastGain );
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printf( "\n" );
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}
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Cudd_RecursiveDeref( p->dd, bNodeFunc );
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return pFForm;
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}
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/**Function*************************************************************
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Synopsis [Starts the resynthesis manager.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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Abc_ManRef_t * Abc_NtkManRefStart( int nNodeSizeMax, int nConeSizeMax, bool fUseDcs, bool fVerbose )
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{
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Abc_ManRef_t * p;
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p = ALLOC( Abc_ManRef_t, 1 );
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memset( p, 0, sizeof(Abc_ManRef_t) );
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p->vCube = Vec_StrAlloc( 100 );
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p->vVisited = Vec_PtrAlloc( 100 );
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p->nNodeSizeMax = nNodeSizeMax;
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p->nConeSizeMax = nConeSizeMax;
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p->fVerbose = fVerbose;
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// start the BDD manager
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if ( fUseDcs )
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p->dd = Cudd_Init( p->nNodeSizeMax + p->nConeSizeMax, 0, CUDD_UNIQUE_SLOTS, CUDD_CACHE_SLOTS, 0 );
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else
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p->dd = Cudd_Init( p->nNodeSizeMax, 0, CUDD_UNIQUE_SLOTS, CUDD_CACHE_SLOTS, 0 );
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Cudd_zddVarsFromBddVars( p->dd, 2 );
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return p;
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}
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/**Function*************************************************************
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Synopsis [Stops the resynthesis manager.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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void Abc_NtkManRefStop( Abc_ManRef_t * p )
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{
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Extra_StopManager( p->dd );
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Vec_PtrFree( p->vVisited );
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Vec_StrFree( p->vCube );
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free( p );
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}
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/**Function*************************************************************
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Synopsis [Stops the resynthesis manager.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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void Abc_NtkManRefPrintStats( Abc_ManRef_t * p )
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{
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printf( "Refactoring statistics:\n" );
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printf( "Nodes considered = %8d.\n", p->nNodesConsidered );
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printf( "Nodes refactored = %8d.\n", p->nNodesRefactored );
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printf( "Gain = %8d. (%6.2f %%).\n", p->nNodesBeg-p->nNodesEnd, 100.0*(p->nNodesBeg-p->nNodesEnd)/p->nNodesBeg );
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PRT( "Cuts ", p->timeCut );
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PRT( "Resynthesis", p->timeRes );
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PRT( " BDD ", p->timeBdd );
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PRT( " DCs ", p->timeDcs );
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PRT( " SOP ", p->timeSop );
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PRT( " FF ", p->timeFact );
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PRT( " Eval ", p->timeEval );
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PRT( "AIG update ", p->timeNtk );
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PRT( "TOTAL ", p->timeTotal );
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}
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////////////////////////////////////////////////////////////////////////
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/// END OF FILE ///
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////////////////////////////////////////////////////////////////////////
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