mirror of https://github.com/YosysHQ/abc.git
187 lines
5.6 KiB
C
187 lines
5.6 KiB
C
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/**Function*************************************************************
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Synopsis []
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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int Abc_CommandUnfold2( Abc_Frame_t * pAbc, int argc, char ** argv )
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{
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Abc_Ntk_t * pNtk, * pNtkRes;
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int nFrames;
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int nConfs;
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int nProps;
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int fStruct = 0;
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int fOldAlgo = 0;
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int fVerbose;
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int c;
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extern Abc_Ntk_t * Abc_NtkDarUnfold2( Abc_Ntk_t * pNtk, int nFrames, int nConfs, int nProps, int fStruct, int fOldAlgo, int fVerbose );
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pNtk = Abc_FrameReadNtk(pAbc);
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// set defaults
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nFrames = 1;
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nConfs = 1000;
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nProps = 1000;
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fVerbose = 0;
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Extra_UtilGetoptReset();
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while ( ( c = Extra_UtilGetopt( argc, argv, "CPvh" ) ) != EOF )
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{
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switch ( c )
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{
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/* case 'F': */
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/* if ( globalUtilOptind >= argc ) */
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/* { */
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/* Abc_Print( -1, "Command line switch \"-F\" should be followed by an integer.\n" ); */
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/* goto usage; */
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/* } */
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/* nFrames = atoi(argv[globalUtilOptind]); */
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/* globalUtilOptind++; */
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/* if ( nFrames < 0 ) */
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/* goto usage; */
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/* break; */
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case 'C':
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if ( globalUtilOptind >= argc )
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{
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Abc_Print( -1, "Command line switch \"-C\" should be followed by an integer.\n" );
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goto usage;
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}
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nConfs = atoi(argv[globalUtilOptind]);
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globalUtilOptind++;
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if ( nConfs < 0 )
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goto usage;
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break;
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case 'P':
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if ( globalUtilOptind >= argc )
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{
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Abc_Print( -1, "Command line switch \"-P\" should be followed by an integer.\n" );
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goto usage;
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}
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nProps = atoi(argv[globalUtilOptind]);
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globalUtilOptind++;
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if ( nProps < 0 )
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goto usage;
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break;
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case 'v':
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fVerbose ^= 1;
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break;
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case 'h':
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goto usage;
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default:
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goto usage;
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}
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}
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if ( pNtk == NULL )
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{
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Abc_Print( -1, "Empty network.\n" );
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return 1;
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}
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if ( Abc_NtkIsComb(pNtk) )
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{
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Abc_Print( -1, "The network is combinational.\n" );
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return 0;
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}
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if ( !Abc_NtkIsStrash(pNtk) )
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{
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Abc_Print( -1, "Currently only works for structurally hashed circuits.\n" );
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return 0;
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}
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if ( Abc_NtkConstrNum(pNtk) > 0 )
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{
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Abc_Print( -1, "Constraints are already extracted.\n" );
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return 0;
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}
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if ( Abc_NtkPoNum(pNtk) > 1 && !fStruct )
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{
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Abc_Print( -1, "Functional constraint extraction works for single-output miters (use \"orpos\").\n" );
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return 0;
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}
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// modify the current network
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pNtkRes = Abc_NtkDarUnfold2( pNtk, nFrames, nConfs, nProps, fStruct, fOldAlgo, fVerbose );
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if ( pNtkRes == NULL )
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{
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Abc_Print( 1,"Transformation has failed.\n" );
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return 0;
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}
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// replace the current network
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Abc_FrameReplaceCurrentNetwork( pAbc, pNtkRes );
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return 0;
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usage:
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Abc_Print( -2, "usage: unfold2 [-FCP num] [-savh]\n" );
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Abc_Print( -2, "\t unfold hidden constraints as separate outputs\n" );
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Abc_Print( -2, "\t-C num : the max number of conflicts in SAT solving [default = %d]\n", nConfs );
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Abc_Print( -2, "\t-P num : the max number of constraint propagations [default = %d]\n", nProps );
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Abc_Print( -2, "\t-v : toggle printing verbose information [default = %s]\n", fVerbose? "yes": "no" );
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Abc_Print( -2, "\t-h : print the command usage\n");
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return 1;
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}
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int Abc_CommandFold2( Abc_Frame_t * pAbc, int argc, char ** argv )
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{
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Abc_Ntk_t * pNtk, * pNtkRes;
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int fCompl;
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int fVerbose;
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int c;
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extern Abc_Ntk_t * Abc_NtkDarFold2( Abc_Ntk_t * pNtk, int fCompl, int fVerbose , int);
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pNtk = Abc_FrameReadNtk(pAbc);
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// set defaults
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fCompl = 0;
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fVerbose = 0;
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Extra_UtilGetoptReset();
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while ( ( c = Extra_UtilGetopt( argc, argv, "cvh" ) ) != EOF )
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{
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switch ( c )
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{
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/* case 'c': */
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/* fCompl ^= 1; */
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/* break; */
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case 'v':
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fVerbose ^= 1;
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break;
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case 'h':
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goto usage;
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default:
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goto usage;
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}
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}
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if ( pNtk == NULL )
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{
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Abc_Print( -1, "Empty network.\n" );
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return 1;
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}
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if ( !Abc_NtkIsStrash(pNtk) )
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{
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Abc_Print( -1, "Currently only works for structurally hashed circuits.\n" );
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return 0;
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}
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if ( Abc_NtkConstrNum(pNtk) == 0 )
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{
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Abc_Print( 0, "The network has no constraints.\n" );
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return 0;
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}
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if ( Abc_NtkIsComb(pNtk) )
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Abc_Print( 0, "The network is combinational.\n" );
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// modify the current network
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pNtkRes = Abc_NtkDarFold2( pNtk, fCompl, fVerbose ,0);
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if ( pNtkRes == NULL )
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{
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Abc_Print( 1,"Transformation has failed.\n" );
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return 0;
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}
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// replace the current network
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Abc_FrameReplaceCurrentNetwork( pAbc, pNtkRes );
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return 0;
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usage:
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Abc_Print( -2, "usage: fold [-cvh]\n" );
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Abc_Print( -2, "\t folds constraints represented as separate outputs\n" );
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// Abc_Print( -2, "\t-c : toggle complementing constraints while folding [default = %s]\n", fCompl? "yes": "no" );
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Abc_Print( -2, "\t-v : toggle printing verbose information [default = %s]\n", fVerbose? "yes": "no" );
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Abc_Print( -2, "\t-h : print the command usage\n");
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return 1;
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}
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