1357{
1358
1360#ifndef OM_NDEBUG
1361#ifndef __OPTIMIZE__
1363#else
1365#endif
1366#else
1368#endif
1370
1371#ifndef HAVE_NTL
1374#endif
1375
1377
1380
1382
1391
1393
1394#if 1
1395
1397 {
1399 #ifdef SINGULAR_4_2
1402 #endif
1403
1406
1409
1410 (void)type;
1411 }
1412#endif
1413
1414
1416 if (t==0) t=1;
1422
1423
1424
1425
1427
1428
1431
1432 int cpus=2;
1433 int cpu_n;
1434 #ifdef _SC_NPROCESSORS_ONLN
1435 if ((cpu_n=sysconf(_SC_NPROCESSORS_ONLN))>cpus) cpus=cpu_n;
1436 #elif defined(_SC_NPROCESSORS_CONF)
1437 if ((cpu_n=sysconf(_SC_NPROCESSORS_CONF))>cpus) cpus=cpu_n;
1438 #endif
1440
1442
1443
1444 {
1453
1454
1455
1456
1457 }
1458
1459
1460#ifdef HAVE_PLURAL
1467#endif
1468
1470 {
1476 }
1477
1478 #ifndef __CYGWIN__
1480 #endif
1482}
BOOLEAN naInitChar(coeffs cf, void *infoStruct)
Initialize the coeffs object.
BOOLEAN n2pInitChar(coeffs cf, void *infoStruct)
void factoryseed(int s)
random seed initializer
VAR void(* factoryError)(const char *s)
Class used for (list of) interpreter objects.
@ n_polyExt
used to represent polys as coeffcients
@ n_Q
rational (GMP) numbers
@ n_algExt
used for all algebraic extensions, i.e., the top-most extension in an extension tower is algebraic
@ n_Zn
only used if HAVE_RINGS is defined
@ n_transExt
used for all transcendental extensions, i.e., the top-most extension in an extension tower is transce...
@ n_Z
only used if HAVE_RINGS is defined
coeffs nInitChar(n_coeffType t, void *parameter)
one-time initialisations for new coeffs in case of an error return NULL
const char * feSetOptValue(feOptIndex opt, char *optarg)
static void * feOptValue(feOptIndex opt)
EXTERN_VAR struct fe_option feOptSpec[]
void feInitResources(const char *argv0)
EXTERN_VAR BBA_Proc gnc_gr_bba
EXTERN_VAR BBA_Proc gnc_gr_mora
EXTERN_VAR BBA_Proc sca_gr_bba
EXTERN_VAR BBA_Proc sca_mora
EXTERN_VAR BBA_Proc sca_bba
ideal k_gnc_gr_mora(const ideal F, const ideal Q, const intvec *, const intvec *, kStrategy strat, const ring _currRing)
ideal k_gnc_gr_bba(const ideal F, const ideal Q, const intvec *, const intvec *, kStrategy strat, const ring _currRing)
int iiInitArithmetic()
initialisation of arithmetic structured data
idhdl enterid(const char *s, int lev, int t, idhdl *root, BOOLEAN init, BOOLEAN search)
int iiAddCproc(const char *libname, const char *procname, BOOLEAN pstatic, BOOLEAN(*func)(leftv res, leftv v))
BOOLEAN iiLibCmd(const char *newlib, BOOLEAN autoexport, BOOLEAN tellerror, BOOLEAN force)
ideal k_sca_bba(const ideal F, const ideal Q, const intvec *, const intvec *, kStrategy strat, const ring _currRing)
Modified modern Sinuglar Buchberger's algorithm.
ideal k_sca_mora(const ideal F, const ideal Q, const intvec *, const intvec *, kStrategy strat, const ring _currRing)
Modified modern Sinuglar Mora's algorithm.
ideal k_sca_gr_bba(const ideal F, const ideal Q, const intvec *, const intvec *, kStrategy strat, const ring _currRing)
Modified Plural's Buchberger's algorithmus.
poly k_NF(ideal F, ideal Q, poly p, int syzComp, int lazyReduce, const ring _currRing)
NOTE: this is just a wrapper which sets currRing for the actual kNF call.
static BOOLEAN iiCrossProd(leftv res, leftv args)
void omSingOutOfMemoryFunc()
static BOOLEAN iiFloat(leftv res, leftv pnn)
static void callWerrorS(const char *s)
void nRegisterCfByName(cfInitCfByNameProc p, n_coeffType n)
n_coeffType nRegister(n_coeffType n, cfInitCharProc p)
#define SI_SAVE_OPT(A, B)
#define SI_RESTORE_OPT(A, B)
coeffs nrnInitCfByName(char *s, n_coeffType)
INST_VAR sleftv sLastPrinted
BOOLEAN ntInitChar(coeffs cf, void *infoStruct)
Initialize the coeffs object.
char name(const Variable &v)