mirror of https://github.com/YosysHQ/abc.git
Added memory reporting to &vta.
This commit is contained in:
parent
072c264f76
commit
735a831e13
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@ -983,7 +983,7 @@ Vta_Man_t * Vga_ManStart( Gia_Man_t * pGia, Gia_ParVta_t * pPars )
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p->pGia = pGia;
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p->pPars = pPars;
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// internal data
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p->nObjsAlloc = (1 << 20);
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p->nObjsAlloc = (1 << 18);
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p->pObjs = ABC_CALLOC( Vta_Obj_t, p->nObjsAlloc );
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p->nObjs = 1;
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p->nBins = Abc_PrimeCudd( 2*p->nObjsAlloc );
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@ -1656,11 +1656,34 @@ finish:
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Abc_PrintTime( 1, "Time", clock() - clk );
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p->timeOther = (clock() - clk) - p->timeUnsat - p->timeSat - p->timeCex;
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ABC_PRTP( "Solver UNSAT", p->timeUnsat, clock() - clk );
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ABC_PRTP( "Solver SAT ", p->timeSat, clock() - clk );
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ABC_PRTP( "Refinement ", p->timeCex, clock() - clk );
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ABC_PRTP( "Other ", p->timeOther, clock() - clk );
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ABC_PRTP( "TOTAL ", clock() - clk, clock() - clk );
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ABC_PRTP( "Runtime: Solver UNSAT", p->timeUnsat, clock() - clk );
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ABC_PRTP( "Runtime: Solver SAT ", p->timeSat, clock() - clk );
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ABC_PRTP( "Runtime: Refinement ", p->timeCex, clock() - clk );
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ABC_PRTP( "Runtime: Other ", p->timeOther, clock() - clk );
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ABC_PRTP( "Runtime: TOTAL ", clock() - clk, clock() - clk );
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{ // memory report
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double memTot = 0;
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double memAig = Gia_ManObjNum(p->pGia) * sizeof(Gia_Obj_t);
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double memSat = sat_solver2_memory( p->pSat );
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double memPro = sat_solver2_memory_proof( p->pSat );
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double memMap = p->nObjsAlloc * sizeof(Vta_Obj_t) + p->nBins * sizeof(int);
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double memOth = sizeof(Vta_Man_t);
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memOth += Vec_IntCap(p->vOrder) * sizeof(int);
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memOth += Vec_VecMemoryInt( (Vec_Vec_t *)p->vFrames );
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memOth += Vec_BitCap(p->vSeenGla) * sizeof(int);
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memOth += Vec_IntCap(p->vCla2Var) * sizeof(int);
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memOth += Vec_VecMemoryInt( (Vec_Vec_t *)p->vCores );
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memOth += Vec_IntCap(p->vAddedNew) * sizeof(int);
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memTot = memAig + memSat + memPro + memMap + memOth;
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ABC_PRMP( "Memory: AIG ", memAig, memTot );
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ABC_PRMP( "Memory: SAT ", memSat, memTot );
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ABC_PRMP( "Memory: Proof", memPro, memTot );
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ABC_PRMP( "Memory: Map ", memMap, memTot );
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ABC_PRMP( "Memory: Other", memOth, memTot );
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ABC_PRMP( "Memory: TOTAL", memTot, memTot );
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}
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Vga_ManStop( p );
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fflush( stdout );
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@ -682,7 +682,7 @@ void Gia_ManPrintFanio( Gia_Man_t * pGia, int nNodes )
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Gia_ManHashStart( pGia );
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Cof_ManPrintHighFanout( p, nNodes );
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Gia_ManHashStop( pGia );
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ABC_PRM( "Memory for logic network", 4*p->nObjData );
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ABC_PRMn( "Memory for logic network", 4*p->nObjData );
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ABC_PRT( "Time", clock() - clk );
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Cof_ManStop( p );
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}
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@ -772,7 +772,7 @@ void Gli_ManSwitchesAndGlitches( Gli_Man_t * p, int nPatterns, float PiTransProb
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if ( fVerbose )
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{
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printf( "\nSimulated %d patterns. ", nPatterns );
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ABC_PRM( "Memory", 4*p->nObjData );
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ABC_PRMn( "Memory", 4*p->nObjData );
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ABC_PRT( "Time", clock() - clk );
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}
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}
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@ -411,8 +411,8 @@ void Gia_ManSatExperiment( Gia_Man_t * p )
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Gia_ManSatStop( pMan );
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for ( i = 0; i < 2*GIA_LIMIT+2; i++ )
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printf( "%2d=%6d %7.2f %% %7.2f %%\n", i, nCount[i], 100.0*nCount[i]/nCountAll, 100.0*i*nCount[i]/Gia_ManAndNum(p) );
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ABC_PRM( "MemoryEst", 4*nWords );
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ABC_PRM( "MemoryReal", 4*nWords2 );
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ABC_PRMn( "MemoryEst", 4*nWords );
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ABC_PRMn( "MemoryReal", 4*nWords2 );
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printf( "%5.2f bpn ", 4.0*nWords2/Gia_ManObjNum(p) );
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ABC_PRT( "Time", clock() - clk );
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}
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@ -1248,11 +1248,11 @@ clkOther += clock() - clk2;
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printf( "Conf =%7.0f. ", (double)p->pSat->stats.conflicts );
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printf( "Imp =%10.0f. ", (double)p->pSat->stats.propagations );
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// ABC_PRT( "Time", clock() - clk );
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printf( "%9.2f sec ", (float)(clock() - clkTotal)/(float)(CLOCKS_PER_SEC) );
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printf( "%4.0f Mb", 1+(float)sat_solver_memory(p->pSat)/(1<<20) );
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printf( "%9.2f sec ", (float)(clock() - clkTotal)/(float)(CLOCKS_PER_SEC) );
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printf( "%5.0f Mb", 1.0+sat_solver_memory(p->pSat)/(1<<20) );
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printf( "\n" );
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// ABC_PRM( "Id2Var", (f+1)*p->nObjNums*4 );
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// ABC_PRM( "SAT", 42 * p->pSat->size + 16 * (int)p->pSat->stats.clauses + 4 * (int)p->pSat->stats.clauses_literals );
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// ABC_PRMn( "Id2Var", (f+1)*p->nObjNums*4 );
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// ABC_PRMn( "SAT", 42 * p->pSat->size + 16 * (int)p->pSat->stats.clauses + 4 * (int)p->pSat->stats.clauses_literals );
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// printf( "Simples = %6d. ", p->nBufNum );
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// printf( "Dups = %6d. ", p->nDupNum );
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// printf( "\n" );
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@ -1310,11 +1310,11 @@ clkOther += clock() - clk2;
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printf( "Conf =%7.0f. ",(double)p->pSat->stats.conflicts );
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printf( "Imp =%10.0f. ", (double)p->pSat->stats.propagations );
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// ABC_PRT( "Time", clock() - clk );
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printf( "%9.2f sec ", (float)(clock() - clkTotal)/(float)(CLOCKS_PER_SEC) );
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printf( "%4.0f Mb", 1+(float)sat_solver_memory(p->pSat)/(1<<20) );
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printf( "%9.2f sec ", (float)(clock() - clkTotal)/(float)(CLOCKS_PER_SEC) );
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printf( "%5.0f Mb", 1.0+sat_solver_memory(p->pSat)/(1<<20) );
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printf( "\n" );
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// ABC_PRM( "Id2Var", (f+1)*p->nObjNums*4 );
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// ABC_PRM( "SAT", 42 * p->pSat->size + 16 * (int)p->pSat->stats.clauses + 4 * (int)p->pSat->stats.clauses_literals );
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// ABC_PRMn( "Id2Var", (f+1)*p->nObjNums*4 );
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// ABC_PRMn( "SAT", 42 * p->pSat->size + 16 * (int)p->pSat->stats.clauses + 4 * (int)p->pSat->stats.clauses_literals );
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// printf( "Simples = %6d. ", p->nBufNum );
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// printf( "Dups = %6d. ", p->nDupNum );
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// printf( "\n" );
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@ -1329,8 +1329,8 @@ clkOther += clock() - clk2;
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//ABC_PRT( "CNF generation runtime", clkOther );
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if ( pPars->fVerbose )
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{
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// ABC_PRM( "Id2Var", (f+1)*p->nObjNums*4 );
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// ABC_PRM( "SAT", 48 * p->pSat->size + 16 * (int)p->pSat->stats.clauses + 4 * (int)p->pSat->stats.clauses_literals );
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// ABC_PRMn( "Id2Var", (f+1)*p->nObjNums*4 );
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// ABC_PRMn( "SAT", 48 * p->pSat->size + 16 * (int)p->pSat->stats.clauses + 4 * (int)p->pSat->stats.clauses_literals );
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// printf( "Simples = %6d. ", p->nBufNum );
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// printf( "Dups = %6d. ", p->nDupNum );
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// printf( "\n" );
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@ -205,12 +205,14 @@ typedef ABC_UINT64_T word;
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#define ABC_SWAP(Type, a, b) { Type t = a; a = b; b = t; }
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#define ABC_PRT(a,t) (Abc_Print(1, "%s = ", (a)), Abc_Print(1, "%7.2f sec\n", (float)(t)/(float)(CLOCKS_PER_SEC)))
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#define ABC_PRTr(a,t) (Abc_Print(1, "%s = ", (a)), Abc_Print(1, "%7.2f sec\r", (float)(t)/(float)(CLOCKS_PER_SEC)))
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#define ABC_PRTn(a,t) (Abc_Print(1, "%s = ", (a)), Abc_Print(1, "%6.2f sec ", (float)(t)/(float)(CLOCKS_PER_SEC)))
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#define ABC_PRTP(a,t,T) (Abc_Print(1, "%s = ", (a)), Abc_Print(1, "%7.2f sec (%6.2f %%)\n", (float)(t)/(float)(CLOCKS_PER_SEC), (T)? 100.0*(t)/(T) : 0.0))
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#define ABC_PRM(a,f) (Abc_Print(1, "%s = ", (a)), Abc_Print(1, "%7.3f Mb ", 1.0*(f)/(1<<20)))
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#define ABC_PRMP(a,f,F) (Abc_Print(1, "%s = ", (a)), Abc_Print(1, "%7.3f Mb (%6.2f %%) ", (1.0*(f)/(1<<20)), ((F)? 100.0*(f)/(F) : 0.0) ) )
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#define ABC_PRT(a,t) (Abc_Print(1, "%s =", (a)), Abc_Print(1, "%9.2f sec\n", (float)(t)/(float)(CLOCKS_PER_SEC)))
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#define ABC_PRTr(a,t) (Abc_Print(1, "%s =", (a)), Abc_Print(1, "%9.2f sec\r", (float)(t)/(float)(CLOCKS_PER_SEC)))
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#define ABC_PRTn(a,t) (Abc_Print(1, "%s =", (a)), Abc_Print(1, "%9.2f sec ", (float)(t)/(float)(CLOCKS_PER_SEC)))
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#define ABC_PRTP(a,t,T) (Abc_Print(1, "%s =", (a)), Abc_Print(1, "%9.2f sec (%6.2f %%)\n", (float)(t)/(float)(CLOCKS_PER_SEC), (T)? 100.0*(t)/(T) : 0.0))
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#define ABC_PRM(a,f) (Abc_Print(1, "%s =", (a)), Abc_Print(1, "%10.3f Mb\n", 1.0*(f)/(1<<20)))
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#define ABC_PRMr(a,f) (Abc_Print(1, "%s =", (a)), Abc_Print(1, "%10.3f Mb\r", 1.0*(f)/(1<<20)))
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#define ABC_PRMn(a,f) (Abc_Print(1, "%s =", (a)), Abc_Print(1, "%10.3f Mb ", 1.0*(f)/(1<<20)))
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#define ABC_PRMP(a,f,F) (Abc_Print(1, "%s =", (a)), Abc_Print(1, "%10.3f Mb (%6.2f %%)\n", (1.0*(f)/(1<<20)), ((F)? 100.0*(f)/(F) : 0.0) ) )
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#define ABC_ALLOC(type, num) ((type *) malloc(sizeof(type) * (num)))
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#define ABC_CALLOC(type, num) ((type *) calloc((num), sizeof(type)))
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@ -241,6 +241,22 @@ static inline int Vec_BitSize( Vec_Bit_t * p )
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return p->nSize;
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}
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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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static inline int Vec_BitCap( Vec_Bit_t * p )
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{
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return p->nCap;
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}
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/**Function*************************************************************
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Synopsis []
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@ -284,6 +284,22 @@ static inline int Vec_FltSize( Vec_Flt_t * p )
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return p->nSize;
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}
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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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static inline int Vec_FltCap( Vec_Flt_t * p )
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{
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return p->nCap;
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}
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/**Function*************************************************************
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Synopsis []
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@ -287,6 +287,22 @@ static inline int Vec_PtrSize( Vec_Ptr_t * p )
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return p->nSize;
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}
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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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static inline int Vec_PtrCap( Vec_Ptr_t * p )
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{
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return p->nCap;
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}
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/**Function*************************************************************
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Synopsis []
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@ -189,9 +189,9 @@ static inline void Vec_SetFree( Vec_Set_t * p )
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SeeAlso []
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***********************************************************************/
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static inline int Vec_ReportMemory( Vec_Set_t * p )
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static inline double Vec_ReportMemory( Vec_Set_t * p )
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{
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int Mem = sizeof(Vec_Set_t);
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double Mem = sizeof(Vec_Set_t);
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Mem += p->nPagesAlloc * sizeof(void *);
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Mem += sizeof(word) * (1 << p->nPageSize) * (1 + p->iPage);
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return Mem;
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@ -278,6 +278,22 @@ static inline int Vec_StrSize( Vec_Str_t * p )
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return p->nSize;
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}
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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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static inline int Vec_StrCap( Vec_Str_t * p )
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{
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return p->nCap;
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}
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/**Function*************************************************************
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Synopsis []
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@ -236,6 +236,22 @@ static inline int Vec_VecSize( Vec_Vec_t * p )
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return p->nSize;
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}
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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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static inline int Vec_VecCap( Vec_Vec_t * p )
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{
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return p->nCap;
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}
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/**Function*************************************************************
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Synopsis []
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@ -673,6 +689,37 @@ static inline void Vec_VecPrintInt( Vec_Vec_t * p, int fSkipSingles )
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}
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}
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/**Function*************************************************************
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Synopsis [Returns memory, in bytes, used by the vector.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline double Vec_VecMemory( Vec_Vec_t * p )
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{
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int i;
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Vec_Ptr_t * vVec;
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double Mem = sizeof(Vec_Vec_t);
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Mem += Vec_VecCap(p) * sizeof(void *);
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Vec_VecForEachLevel( p, vVec, i )
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Mem += sizeof(Vec_Ptr_t) + Vec_PtrCap(vVec) * sizeof(void *);
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return Mem;
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}
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static inline double Vec_VecMemoryInt( Vec_Vec_t * p )
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{
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int i;
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Vec_Int_t * vVec;
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double Mem = sizeof(Vec_Vec_t);
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Mem += Vec_VecCap(p) * sizeof(void *);
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Vec_VecForEachLevelInt( p, vVec, i )
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Mem += sizeof(Vec_Int_t) + Vec_IntCap(vVec) * sizeof(int);
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return Mem;
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}
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ABC_NAMESPACE_HEADER_END
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@ -334,6 +334,22 @@ static inline int Vec_WrdSize( Vec_Wrd_t * p )
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return p->nSize;
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}
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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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static inline int Vec_WrdCap( Vec_Wrd_t * p )
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{
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return p->nCap;
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}
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/**Function*************************************************************
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Synopsis []
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@ -1118,9 +1118,10 @@ void sat_solver_rollback( sat_solver* s )
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}
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// returns memory in bytes used by the SAT solver
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int sat_solver_memory( sat_solver* s )
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double sat_solver_memory( sat_solver* s )
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{
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int i, Mem = sizeof(sat_solver);
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int i;
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double Mem = sizeof(sat_solver);
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for (i = 0; i < s->cap*2; i++)
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Mem += s->wlists[i].cap * sizeof(int);
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Mem += s->cap * sizeof(veci); // ABC_FREE(s->wlists );
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@ -52,7 +52,7 @@ extern void sat_solver_rollback( sat_solver* s );
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extern int sat_solver_nvars(sat_solver* s);
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extern int sat_solver_nclauses(sat_solver* s);
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extern int sat_solver_nconflicts(sat_solver* s);
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extern int sat_solver_memory(sat_solver* s);
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extern double sat_solver_memory(sat_solver* s);
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extern void sat_solver_setnvars(sat_solver* s,int n);
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extern int sat_solver_get_var_value(sat_solver* s, int v);
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@ -1250,7 +1250,7 @@ void sat_solver2_delete(sat_solver2* s)
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}
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// report statistics
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Abc_Print(1, "Used %6.2f Mb for proof-logging. Unit clauses = %d.\n", 1.0 * Vec_SetMemory(&s->Proofs) / (1<<20), s->nUnits );
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// Abc_Print(1, "Used %6.2f Mb for proof-logging. Unit clauses = %d.\n", 1.0 * Vec_ReportMemory(&s->Proofs) / (1<<20), s->nUnits );
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// delete vectors
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veci_delete(&s->order);
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@ -1618,6 +1618,56 @@ void sat_solver2_rollback( sat_solver2* s )
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}
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}
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// returns memory in bytes used by the SAT solver
|
||||
double sat_solver2_memory( sat_solver2* s )
|
||||
{
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||||
int i;
|
||||
double Mem = sizeof(sat_solver2);
|
||||
for (i = 0; i < s->cap*2; i++)
|
||||
Mem += s->wlists[i].cap * sizeof(int);
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Mem += s->cap * sizeof(veci); // ABC_FREE(s->wlists );
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||||
Mem += s->clauses.cap * sizeof(int);
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||||
Mem += s->learnts.cap * sizeof(int);
|
||||
Mem += s->claActs.cap * sizeof(int);
|
||||
Mem += s->claProofs.cap * sizeof(int);
|
||||
// Mem += s->cap * sizeof(char); // ABC_FREE(s->polarity );
|
||||
// Mem += s->cap * sizeof(char); // ABC_FREE(s->tags );
|
||||
Mem += s->cap * sizeof(varinfo2); // ABC_FREE(s->vi );
|
||||
Mem += s->cap * sizeof(int); // ABC_FREE(s->levels );
|
||||
Mem += s->cap * sizeof(char); // ABC_FREE(s->assigns );
|
||||
#ifdef USE_FLOAT_ACTIVITY
|
||||
Mem += s->cap * sizeof(double); // ABC_FREE(s->activity );
|
||||
#else
|
||||
Mem += s->cap * sizeof(unsigned); // ABC_FREE(s->activity );
|
||||
#endif
|
||||
// if ( s->factors )
|
||||
// Mem += s->cap * sizeof(double); // ABC_FREE(s->factors );
|
||||
Mem += s->cap * sizeof(lit); // ABC_FREE(s->trail );
|
||||
Mem += s->cap * sizeof(int); // ABC_FREE(s->orderpos );
|
||||
Mem += s->cap * sizeof(int); // ABC_FREE(s->reasons );
|
||||
Mem += s->cap * sizeof(int); // ABC_FREE(s->units );
|
||||
Mem += s->cap * sizeof(int); // ABC_FREE(s->model );
|
||||
|
||||
Mem += s->tagged.cap * sizeof(int);
|
||||
Mem += s->stack.cap * sizeof(int);
|
||||
Mem += s->order.cap * sizeof(int);
|
||||
Mem += s->trail_lim.cap * sizeof(int);
|
||||
Mem += s->temp_clause.cap * sizeof(int);
|
||||
Mem += s->conf_final.cap * sizeof(int);
|
||||
Mem += s->mark_levels.cap * sizeof(int);
|
||||
Mem += s->min_lit_order.cap * sizeof(int);
|
||||
Mem += s->min_step_order.cap * sizeof(int);
|
||||
Mem += s->learnt_live.cap * sizeof(int);
|
||||
Mem += s->temp_proof.cap * sizeof(int);
|
||||
// Mem += Vec_ReportMemory( &s->Mem );
|
||||
return Mem;
|
||||
}
|
||||
double sat_solver2_memory_proof( sat_solver2* s )
|
||||
{
|
||||
return Vec_ReportMemory( &s->Proofs );
|
||||
}
|
||||
|
||||
|
||||
// find the clause in the watcher lists
|
||||
int sat_solver2_find_clause( sat_solver2* s, int Hand, int fVerbose )
|
||||
{
|
||||
|
|
|
|||
|
|
@ -49,6 +49,8 @@ extern int sat_solver2_simplify(sat_solver2* s);
|
|||
extern int sat_solver2_solve(sat_solver2* s, lit* begin, lit* end, ABC_INT64_T nConfLimit, ABC_INT64_T nInsLimit, ABC_INT64_T nConfLimitGlobal, ABC_INT64_T nInsLimitGlobal);
|
||||
extern void sat_solver2_rollback(sat_solver2* s);
|
||||
extern void sat_solver2_reducedb(sat_solver2* s);
|
||||
extern double sat_solver2_memory( sat_solver2* s );
|
||||
extern double sat_solver2_memory_proof( sat_solver2* s );
|
||||
|
||||
extern void sat_solver2_setnvars(sat_solver2* s,int n);
|
||||
|
||||
|
|
|
|||
Loading…
Reference in New Issue