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yap-6.3/H/pl-yap.h

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#ifndef PL_YAP_H
#define PL_YAP_H
#ifdef __YAP_PROLOG__
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#include "Yatom.h"
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/* depends on tag schema, but 4 should always do */
#define LMASK_BITS 4 /* total # mask bits */
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#if HAVE_CTYPE_H
#include <ctype.h>
#endif
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#if HAVE_SYS_STAT_H
#include <sys/stat.h>
#endif
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#define SIZE_VOIDP SIZEOF_INT_P
#if SIZEOF_LONG_INT==4
#define INT64_FORMAT "%lld"
#else
#define INT64_FORMAT "%ld"
#endif
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#define INTBITSIZE (sizeof(int)*8)
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typedef module_t Module;
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typedef Term (*Func)(term_t); /* foreign functions */
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extern const char *Yap_GetCurrentPredName(void);
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extern Int Yap_GetCurrentPredArity(void);
extern term_t Yap_fetch_module_for_format(term_t args, Term *modp);
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extern IOENC Yap_DefaultEncoding(void);
extern void Yap_SetDefaultEncoding(IOENC);
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extern void Yap_setCurrentSourceLocation( void *rd );
extern void *Yap_GetStreamHandle(Atom at);
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extern atom_t codeToAtom(int chrcode);
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#define valTermRef(t) ((Word)Yap_AddressFromSlot(t PASS_REGS))
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#include "pl-codelist.h"
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//move this to SWI
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#define GP_CREATE 2 /* create (in this module) */
#ifndef HAVE_MBSCOLL
COMMON(int) mbscoll(const char *s1, const char *s2);
#endif
#ifndef HAVE_MBSCASECOLL
COMMON(int) mbscasecoll(const char *s1, const char *s2);
#endif
COMMON(atom_t) TemporaryFile(const char *id, int *fdp);
COMMON(char *) Getenv(const char *, char *buf, size_t buflen);
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/*** memory allocation stuff: SWI wraps around malloc */
#define stopItimer()
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COMMON(word) pl_print(term_t term);
COMMON(word) pl_write(term_t term);
COMMON(word) pl_write_canonical(term_t term);
COMMON(word) pl_write_term(term_t term, term_t options);
COMMON(word) pl_writeq(term_t term);
static inline int
get_procedure(term_t descr, predicate_t *proc, term_t he, int f) {
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CACHE_REGS
Term t = Yap_GetFromSlot(descr PASS_REGS);
if (IsVarTerm(t)) return FALSE;
if (IsAtomTerm(t))
*proc = RepPredProp(Yap_GetPredPropByAtom(AtomOfTerm(t),CurrentModule));
else if (IsApplTerm(t)) {
Functor f = FunctorOfTerm(t);
if (IsExtensionFunctor(f)) {
return FALSE;
}
*proc = RepPredProp(Yap_GetPredPropByFunc(f, CurrentModule));
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}
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return TRUE;
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}
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COMMON(intptr_t) lengthList(term_t list, int errors);
COMMON(int) promoteToFloatNumber(Number n);
COMMON(char *) PrologPath(const char *ospath, char *plpath, size_t len);
COMMON(char *) ExpandOneFile(const char *spec, char *file);
COMMON(char *) AbsoluteFile(const char *spec, char *path);
COMMON(char *) BaseName(const char *f);
COMMON(bool) ChDir(const char *path);
COMMON(char *) OsPath(const char *plpath, char *ospath);
COMMON(bool) ChDir(const char *path);
COMMON(int) DeleteTemporaryFile(atom_t name);
COMMON(int) IsAbsolutePath(const char *spec);
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COMMON(bool) sysError(const char *fm, ...);
COMMON(int) setDoubleQuotes(atom_t a, unsigned int *flagp);
COMMON(int) getAccessLevelMask(atom_t a, access_level_t *val);
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/* TBD */
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extern word globalString(size_t size, char *s);
extern word globalWString(size_t size, wchar_t *s);
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#define allocHeap(n) allocHeap__LD(n PASS_LD)
#define valHandle(r) valHandle__LD(r PASS_LD)
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Int YAP_PLArityOfSWIFunctor(functor_t f);
struct PL_blob_t* YAP_find_blob_type(Atom at);
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void PL_license(const char *license, const char *module);
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#define arityFunctor(f) YAP_PLArityOfSWIFunctor(f)
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#define stringAtom(w) (YAP_AtomFromSWIAtom(w)->StrOfAE)
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#define isInteger(A) (!IsVarTerm(A) && ( IsIntegerTerm((A)) || YAP_IsBigNumTerm((A)) ))
#define isString(A) (!IsVarTerm(A) && IsStringTerm(A) )
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#define isAtom(A) (!IsVarTerm(A) && IsAtomTerm((A)) )
#define isList(A) (!IsVarTerm(A) && IsPairTerm((A)) )
#define isNil(A) ((A) == TermNil)
#define isReal(A) (!IsVarTerm(A) && IsFloatTerm((A)) )
#define isFloat(A) (!IsVarTerm(A) && IsFloatTerm((A)) )
#define isVar(A) IsVarTerm((A))
#define valReal(w) FloatOfTerm((w))
#define valFloat(w) FloatOfTerm((w))
#define atomValue(atom) AtomOfTerm(atom)
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#define atomFromTerm(term) YAP_SWIAtomFromAtom(AtomOfTerm(term))
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inline static char *
atomName(Atom atom)
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{
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if (IsWideAtom(atom))
return (char *)(atom->WStrOfAE);
return atom->StrOfAE;
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}
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#define nameOfAtom(atom) nameOfAtom(atom)
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#define atomBlobType(at) YAP_find_blob_type(at)
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#define argTermP(w,i) ((Word)((YAP_ArgsOfTerm(w)+(i))))
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#define deRef(t) while (IsVarTerm(*(t)) && !IsUnboundVar(t)) { t = (CELL *)(*(t)); }
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#define canBind(t) FALSE // VSC: to implement
#define _PL_predicate(A,B,C,D) PL_predicate(A,B,C)
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#define predicateHasClauses(pe) ((pe)->cs.p_code.NOfClauses != 0)
#define lookupModule(A) Yap_GetModuleEntry(MkAtomTerm(YAP_AtomFromSWIAtom(A)))
Procedure resolveProcedure(functor_t f, Module module);
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#define charEscapeWriteOption(A) FALSE // VSC: to implement
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#define wordToTermRef(A) Yap_InitSlot(*(A) PASS_REGS)
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#define isTaggedInt(A) IsIntegerTerm(A)
#define valInt(A) IntegerOfTerm(A)
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#define MODULE_user Yap_GetModuleEntry(MkAtomTerm(Yap_LookupAtom("user")))
#define MODULE_system Yap_GetModuleEntry(MkAtomTerm(Yap_LookupAtom("system")))
#define MODULE_parse Yap_GetModuleEntry(LOCAL_SourceModule)
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extern term_t Yap_CvtTerm(term_t ts);
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#define clearNumber(n)
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wchar_t *nameOfWideAtom(atom_t atom);
int isWideAtom(atom_t atom);
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inline static int
charCode(Term w)
{ if ( IsAtomTerm(w) )
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{
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Atom a = atomValue(w);
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if (IsWideAtom(a)) {
if (wcslen(a->WStrOfAE) == 1)
return a->WStrOfAE[0];
return -1;
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}
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if (strlen(a->StrOfAE) == 1)
return ((unsigned char *)(a->StrOfAE))[0];
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return -1;
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}
return -1;
}
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#define PL_get_atom(t, a) PL_get_atom__LD(t, a PASS_LD)
#define PL_get_atom_ex(t, a) PL_get_atom_ex__LD(t, a PASS_LD)
#define PL_get_text(l, t, f) PL_get_text__LD(l, t, f PASS_LD)
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#define PL_is_atom(t) PL_is_atom__LD(t PASS_LD)
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#define PL_is_variable(t) PL_is_variable__LD(t PASS_LD)
#define PL_new_term_ref() PL_new_term_ref__LD(PASS_LD1)
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#define PL_put_atom(t, a) PL_put_atom__LD(t, a PASS_LD)
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#define PL_put_term(t1, t2) PL_put_term__LD(t1, t2 PASS_LD)
#define PL_unify_atom(t, a) PL_unify_atom__LD(t, a PASS_LD)
#define PL_unify_integer(t, i) PL_unify_integer__LD(t, i PASS_LD)
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#define _PL_get_arg(i, t, a) _PL_get_arg__LD(i, t, a PASS_LD);
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#endif /* __YAP_PROLOG__ */
unsigned int getUnknownModule(module_t m);
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#if IN_PL_OS_C
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static int
stripostfix(const char *s, const char *e)
{ size_t ls = strlen(s);
size_t le = strlen(e);
if ( ls >= le )
return strcasecmp(&s[ls-le], e) == 0;
return FALSE;
}
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#endif
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#if HAVE_SIGPROCMASK
#if HAVE_SIGNAL_H
#include <signal.h>
#endif
static inline void
unblockSignal(int sig)
{ sigset_t set;
sigemptyset(&set);
sigaddset(&set, sig);
sigprocmask(SIG_UNBLOCK, &set, NULL);
// DEBUG(1, Sdprintf("Unblocked signal %d\n", sig));
}
#else
static inline void
unblockSignal(int sig)
{
}
#endif
#define suspendTrace(x)
atom_t ATOM_;
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#if THREADS
intptr_t system_thread_id(PL_thread_info_t *info);
#endif
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#endif /* PL_YAP_H */