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author | Alan Mishchenko <alanmi@berkeley.edu> | 2008-07-05 08:01:00 -0700 |
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committer | Alan Mishchenko <alanmi@berkeley.edu> | 2008-07-05 08:01:00 -0700 |
commit | 7b734f23fc23694ccffdb7e3cd31335ffe6cb272 (patch) | |
tree | d6df566bac26ffb6af1eb01d215d6c4f9785dfa9 /src/base/abci/abc.c | |
parent | 17ab7c7135befeb4e1d33385496959a16bd55054 (diff) | |
download | abc-7b734f23fc23694ccffdb7e3cd31335ffe6cb272.tar.gz abc-7b734f23fc23694ccffdb7e3cd31335ffe6cb272.tar.bz2 abc-7b734f23fc23694ccffdb7e3cd31335ffe6cb272.zip |
Version abc80705
Diffstat (limited to 'src/base/abci/abc.c')
-rw-r--r-- | src/base/abci/abc.c | 114 |
1 files changed, 107 insertions, 7 deletions
diff --git a/src/base/abci/abc.c b/src/base/abci/abc.c index ae1c110f..2c34ed67 100644 --- a/src/base/abci/abc.c +++ b/src/base/abci/abc.c @@ -105,6 +105,7 @@ static int Abc_CommandReach ( Abc_Frame_t * pAbc, int argc, char ** arg static int Abc_CommandCone ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandNode ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandTopmost ( Abc_Frame_t * pAbc, int argc, char ** argv ); +static int Abc_CommandTopAnd ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandTrim ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandShortNames ( Abc_Frame_t * pAbc, int argc, char ** argv ); static int Abc_CommandExdcFree ( Abc_Frame_t * pAbc, int argc, char ** argv ); @@ -361,6 +362,7 @@ void Abc_Init( Abc_Frame_t * pAbc ) Cmd_CommandAdd( pAbc, "Various", "cone", Abc_CommandCone, 1 ); Cmd_CommandAdd( pAbc, "Various", "node", Abc_CommandNode, 1 ); Cmd_CommandAdd( pAbc, "Various", "topmost", Abc_CommandTopmost, 1 ); + Cmd_CommandAdd( pAbc, "Various", "topand", Abc_CommandTopAnd, 1 ); Cmd_CommandAdd( pAbc, "Various", "trim", Abc_CommandTrim, 1 ); Cmd_CommandAdd( pAbc, "Various", "short_names", Abc_CommandShortNames, 0 ); Cmd_CommandAdd( pAbc, "Various", "exdc_free", Abc_CommandExdcFree, 1 ); @@ -6277,6 +6279,91 @@ usage: Description [] SideEffects [] + + SeeAlso [] + +***********************************************************************/ +int Abc_CommandTopAnd( Abc_Frame_t * pAbc, int argc, char ** argv ) +{ + FILE * pOut, * pErr; + Abc_Ntk_t * pNtk, * pNtkRes; + int c; + extern Abc_Ntk_t * Abc_NtkTopAnd( Abc_Ntk_t * pNtk ); + + pNtk = Abc_FrameReadNtk(pAbc); + pOut = Abc_FrameReadOut(pAbc); + pErr = Abc_FrameReadErr(pAbc); + + // set defaults + Extra_UtilGetoptReset(); + while ( ( c = Extra_UtilGetopt( argc, argv, "h" ) ) != EOF ) + { + switch ( c ) + { + case 'h': + goto usage; + default: + goto usage; + } + } + + if ( pNtk == NULL ) + { + fprintf( pErr, "Empty network.\n" ); + return 1; + } + + if ( !Abc_NtkIsStrash(pNtk) ) + { + fprintf( stdout, "Currently only works for structurally hashed circuits.\n" ); + return 0; + } + + if ( Abc_NtkLatchNum(pNtk) > 0 ) + { + fprintf( stdout, "Currently can only works for combinational circuits.\n" ); + return 0; + } + if ( Abc_NtkPoNum(pNtk) != 1 ) + { + fprintf( stdout, "Currently expects a single-output miter.\n" ); + return 0; + } + if ( Abc_ObjFaninC0(Abc_NtkPo(pNtk, 0)) ) + { + fprintf( stdout, "The PO driver is complemented. AND-decomposition is impossible.\n" ); + return 0; + } + if ( !Abc_ObjIsNode(Abc_ObjChild0(Abc_NtkPo(pNtk, 0))) ) + { + fprintf( stdout, "The PO driver is not a node. AND-decomposition is impossible.\n" ); + return 0; + } + pNtkRes = Abc_NtkTopAnd( pNtk ); + if ( pNtkRes == NULL ) + { + fprintf( pErr, "The command has failed.\n" ); + return 1; + } + // replace the current network + Abc_FrameReplaceCurrentNetwork( pAbc, pNtkRes ); + return 0; + +usage: + fprintf( pErr, "usage: topand [-h]\n" ); + fprintf( pErr, "\t AND-decomposition of single-output combinational miter\n" ); + fprintf( pErr, "\t-h : print the command usage\n"); + fprintf( pErr, "\tname : the node name\n"); + return 1; +} + +/**Function************************************************************* + + Synopsis [] + + Description [] + + SideEffects [] SeeAlso [] @@ -13997,7 +14084,7 @@ int Abc_CommandDCec( Abc_Frame_t * pAbc, int argc, char ** argv ) int fPartition; int fMiter; - extern int Abc_NtkDSat( Abc_Ntk_t * pNtk, sint64 nConfLimit, sint64 nInsLimit, int fVerbose ); + extern int Abc_NtkDSat( Abc_Ntk_t * pNtk, sint64 nConfLimit, sint64 nInsLimit, int fFlipBits, int fAndOuts, int fVerbose ); extern int Abc_NtkDarCec( Abc_Ntk_t * pNtk1, Abc_Ntk_t * pNtk2, int fPartition, int fVerbose ); pNtk = Abc_FrameReadNtk(pAbc); @@ -14097,7 +14184,7 @@ int Abc_CommandDCec( Abc_Frame_t * pAbc, int argc, char ** argv ) // perform equivalence checking if ( fSat && fMiter ) - Abc_NtkDSat( pNtk1, nConfLimit, nInsLimit, fVerbose ); + Abc_NtkDSat( pNtk1, nConfLimit, nInsLimit, 0, 0, fVerbose ); else Abc_NtkDarCec( pNtk1, pNtk2, fPartition, fVerbose ); @@ -14651,12 +14738,14 @@ int Abc_CommandDSat( Abc_Frame_t * pAbc, int argc, char ** argv ) Abc_Ntk_t * pNtk; int c; int RetValue; + int fFlipBits; + int fAndOuts; int fVerbose; int nConfLimit; int nInsLimit; int clk; - extern int Abc_NtkDSat( Abc_Ntk_t * pNtk, sint64 nConfLimit, sint64 nInsLimit, int fVerbose ); + extern int Abc_NtkDSat( Abc_Ntk_t * pNtk, sint64 nConfLimit, sint64 nInsLimit, int fFlipBits, int fAndOuts, int fVerbose ); pNtk = Abc_FrameReadNtk(pAbc); @@ -14664,11 +14753,13 @@ int Abc_CommandDSat( Abc_Frame_t * pAbc, int argc, char ** argv ) pErr = Abc_FrameReadErr(pAbc); // set defaults + fFlipBits = 0; + fAndOuts = 0; fVerbose = 0; nConfLimit = 100000; nInsLimit = 0; Extra_UtilGetoptReset(); - while ( ( c = Extra_UtilGetopt( argc, argv, "CIvh" ) ) != EOF ) + while ( ( c = Extra_UtilGetopt( argc, argv, "CIfavh" ) ) != EOF ) { switch ( c ) { @@ -14694,6 +14785,12 @@ int Abc_CommandDSat( Abc_Frame_t * pAbc, int argc, char ** argv ) if ( nInsLimit < 0 ) goto usage; break; + case 'f': + fFlipBits ^= 1; + break; + case 'a': + fAndOuts ^= 1; + break; case 'v': fVerbose ^= 1; break; @@ -14714,12 +14811,13 @@ int Abc_CommandDSat( Abc_Frame_t * pAbc, int argc, char ** argv ) fprintf( stdout, "Currently can only solve the miter for combinational circuits.\n" ); return 0; } +/* if ( Abc_NtkPoNum(pNtk) != 1 ) { fprintf( stdout, "Currently expects a single-output miter.\n" ); return 0; } - +*/ if ( !Abc_NtkIsStrash(pNtk) ) { fprintf( stdout, "Currently only works for structurally hashed circuits.\n" ); @@ -14727,7 +14825,7 @@ int Abc_CommandDSat( Abc_Frame_t * pAbc, int argc, char ** argv ) } clk = clock(); - RetValue = Abc_NtkDSat( pNtk, (sint64)nConfLimit, (sint64)nInsLimit, fVerbose ); + RetValue = Abc_NtkDSat( pNtk, (sint64)nConfLimit, (sint64)nInsLimit, fFlipBits, fAndOuts, fVerbose ); // verify that the pattern is correct if ( RetValue == 0 && Abc_NtkPoNum(pNtk) == 1 ) { @@ -14760,11 +14858,13 @@ int Abc_CommandDSat( Abc_Frame_t * pAbc, int argc, char ** argv ) return 0; usage: - fprintf( pErr, "usage: dsat [-C num] [-I num] [-vh]\n" ); + fprintf( pErr, "usage: dsat [-C num] [-I num] [-favh]\n" ); fprintf( pErr, "\t solves the combinational miter using SAT solver MiniSat-1.14\n" ); fprintf( pErr, "\t derives CNF from the current network and leave it unchanged\n" ); fprintf( pErr, "\t-C num : limit on the number of conflicts [default = %d]\n", nConfLimit ); fprintf( pErr, "\t-I num : limit on the number of inspections [default = %d]\n", nInsLimit ); + fprintf( pErr, "\t-f : flip polarity of SAT variables [default = %s]\n", fFlipBits? "yes": "no" ); + fprintf( pErr, "\t-a : constrain each output of multi-output miter [default = %s]\n", fAndOuts? "yes": "no" ); fprintf( pErr, "\t-v : prints verbose information [default = %s]\n", fVerbose? "yes": "no" ); fprintf( pErr, "\t-h : print the command usage\n"); return 1; |