880 lines
20 KiB
C++
880 lines
20 KiB
C++
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#define YAP_CPP_INTERFACE 1
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#include "yapi.hh"
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extern "C" {
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#if __ANDROID__
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#include "android/log.h"
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#endif
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#include "YapInterface.h"
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#include "blobs.h"
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X_API char *Yap_TermToString(Term t, size_t *length, encoding_t encodingp,
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int flags);
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X_API void YAP_UserCPredicate(const char *, YAP_UserCPred, arity_t arity);
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X_API void YAP_UserCPredicateWithArgs(const char *, YAP_UserCPred, arity_t,
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YAP_Term);
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X_API void YAP_UserBackCPredicate(const char *, YAP_UserCPred, YAP_UserCPred,
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arity_t, arity_t);
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}
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YAPAtomTerm::YAPAtomTerm(char *s) { // build string
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BACKUP_H();
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CACHE_REGS
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seq_tv_t inp, out;
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inp.val.c = s;
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inp.type = YAP_STRING_CHARS;
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out.type = YAP_STRING_ATOM;
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if (Yap_CVT_Text(&inp, &out PASS_REGS))
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mk(MkAtomTerm(out.val.a));
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else
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t = 0L;
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RECOVER_H();
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}
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YAPAtomTerm::YAPAtomTerm(char *s, size_t len) { // build string
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BACKUP_H();
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CACHE_REGS
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seq_tv_t inp, out;
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inp.val.c = s;
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inp.type = YAP_STRING_CHARS;
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out.type = YAP_STRING_ATOM | YAP_STRING_NCHARS | YAP_STRING_TRUNC;
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out.max = len;
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if (Yap_CVT_Text(&inp, &out PASS_REGS))
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mk(MkAtomTerm(out.val.a));
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else
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t = 0L;
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RECOVER_H();
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}
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YAPAtomTerm::YAPAtomTerm(wchar_t *s) : YAPTerm() { // build string
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BACKUP_H();
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CACHE_REGS
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seq_tv_t inp, out;
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inp.val.w = s;
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inp.type = YAP_STRING_WCHARS;
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out.type = YAP_STRING_ATOM;
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if (Yap_CVT_Text(&inp, &out PASS_REGS))
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mk(MkAtomTerm(out.val.a));
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else
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t = 0L;
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RECOVER_H();
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}
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YAPAtomTerm::YAPAtomTerm(wchar_t *s, size_t len) : YAPTerm() { // build string
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BACKUP_H();
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CACHE_REGS
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seq_tv_t inp, out;
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inp.val.w = s;
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inp.type = YAP_STRING_WCHARS;
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out.type = YAP_STRING_ATOM | YAP_STRING_NCHARS | YAP_STRING_TRUNC;
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out.max = len;
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if (Yap_CVT_Text(&inp, &out PASS_REGS))
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mk(MkAtomTerm(out.val.a));
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else
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t = 0L;
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RECOVER_H();
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}
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YAPStringTerm::YAPStringTerm(char *s) { // build string
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BACKUP_H();
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CACHE_REGS
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seq_tv_t inp, out;
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inp.val.c = s;
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inp.type = YAP_STRING_CHARS;
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out.type = YAP_STRING_STRING;
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if (Yap_CVT_Text(&inp, &out PASS_REGS))
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mk(out.val.t);
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else
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t = 0L;
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RECOVER_H();
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}
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YAPStringTerm::YAPStringTerm(char *s, size_t len) { // build string
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BACKUP_H();
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CACHE_REGS
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seq_tv_t inp, out;
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inp.val.c = s;
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inp.type = YAP_STRING_CHARS;
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out.type = YAP_STRING_STRING | YAP_STRING_NCHARS | YAP_STRING_TRUNC;
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out.max = len;
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if (Yap_CVT_Text(&inp, &out PASS_REGS))
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mk(out.val.t);
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else
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t = 0L;
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RECOVER_H();
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}
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YAPStringTerm::YAPStringTerm(wchar_t *s) : YAPTerm() { // build string
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BACKUP_H();
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CACHE_REGS
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seq_tv_t inp, out;
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inp.val.w = s;
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inp.type = YAP_STRING_WCHARS;
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out.type = YAP_STRING_STRING;
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if (Yap_CVT_Text(&inp, &out PASS_REGS))
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mk(out.val.t);
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else
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t = 0L;
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RECOVER_H();
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}
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YAPStringTerm::YAPStringTerm(wchar_t *s, size_t len)
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: YAPTerm() { // build string
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BACKUP_H();
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CACHE_REGS
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seq_tv_t inp, out;
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inp.val.w = s;
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inp.type = YAP_STRING_WCHARS;
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out.type = YAP_STRING_STRING | YAP_STRING_NCHARS | YAP_STRING_TRUNC;
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out.max = len;
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if (Yap_CVT_Text(&inp, &out PASS_REGS))
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mk(out.val.t);
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else
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t = 0L;
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RECOVER_H();
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}
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YAPApplTerm::YAPApplTerm(YAPFunctor f, YAPTerm ts[]) : YAPTerm() {
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BACKUP_H();
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arity_t arity = ArityOfFunctor(f.f);
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Term *tt = new Term[arity];
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for (arity_t i = 0; i < arity; i++)
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tt[i] = ts[i].term();
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mk(Yap_MkApplTerm(f.f, arity, tt));
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delete[] tt;
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RECOVER_H();
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}
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YAPApplTerm::YAPApplTerm(YAPFunctor f) : YAPTerm() {
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BACKUP_H();
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arity_t arity = ArityOfFunctor(f.f);
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mk(Yap_MkNewApplTerm(f.f, arity));
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RECOVER_H();
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}
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YAPFunctor YAPApplTerm::getFunctor() { return YAPFunctor(FunctorOfTerm(gt())); }
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static YAPTerm tmp;
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YAPTerm &YAPTerm::operator[](arity_t i) {
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BACKUP_MACHINE_REGS();
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Term t0 = gt();
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Term tf = 0;
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if (IsApplTerm(t0)) {
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Functor f = FunctorOfTerm(t0);
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if (IsExtensionFunctor(f))
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return *new YAPTerm();
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tf = ArgOfTerm(i + 1, t0);
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} else if (IsPairTerm(t0)) {
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if (i == 0)
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tf = HeadOfTerm(t0);
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else if (i == 1)
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tf = TailOfTerm(t0);
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}
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RECOVER_MACHINE_REGS();
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return *new YAPTerm(tf);
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}
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YAPTerm &YAPListTerm::operator[](arity_t i) {
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BACKUP_MACHINE_REGS();
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Term t0 = gt();
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Term tf = 0;
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while (IsPairTerm(t0)) {
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if (i == 0) {
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tf = HeadOfTerm(t0);
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break;
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} else {
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t0 = TailOfTerm(t0);
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i--;
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}
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}
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RECOVER_MACHINE_REGS();
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return *new YAPTerm(tf);
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}
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YAPPairTerm::YAPPairTerm(YAPTerm th, YAPTerm tl) : YAPTerm() {
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CACHE_REGS
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BACKUP_H();
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mk(MkPairTerm(th.term(), tl.term()));
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RECOVER_H();
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}
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YAPPairTerm::YAPPairTerm() : YAPTerm() {
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BACKUP_H();
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t = Yap_MkNewPairTerm();
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RECOVER_H();
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}
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void YAPTerm::mk(Term t0) { CACHE_REGS t = Yap_InitSlot(t0); }
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Term YAPTerm::gt() { CACHE_REGS return Yap_GetFromSlot(t); }
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YAP_tag_t YAPTerm::tag() {
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Term tt = gt();
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if (IsVarTerm(tt)) {
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CELL *pt = VarOfTerm(tt);
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if (IsUnboundVar(pt)) {
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CACHE_REGS
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if (IsAttVar(pt))
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return YAP_TAG_ATT;
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return YAP_TAG_UNBOUND;
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}
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return YAP_TAG_REF;
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}
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if (IsPairTerm(tt))
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return YAP_TAG_PAIR;
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if (IsAtomOrIntTerm(tt)) {
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if (IsAtomTerm(tt))
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return YAP_TAG_ATOM;
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return YAP_TAG_INT;
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} else {
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Functor f = FunctorOfTerm(tt);
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if (IsExtensionFunctor(f)) {
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if (f == FunctorDBRef) {
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return YAP_TAG_DBREF;
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}
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if (f == FunctorLongInt) {
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return YAP_TAG_LONG_INT;
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}
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if (f == FunctorBigInt) {
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big_blob_type bt = (big_blob_type)RepAppl(tt)[1];
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switch (bt) {
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case BIG_INT:
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return YAP_TAG_BIG_INT;
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case BIG_RATIONAL:
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return YAP_TAG_RATIONAL;
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default:
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return YAP_TAG_OPAQUE;
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}
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}
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}
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return YAP_TAG_APPL;
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}
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}
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YAPTerm YAPTerm::deepCopy() {
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yhandle_t tn;
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BACKUP_MACHINE_REGS();
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tn = Yap_CopyTerm(gt());
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RECOVER_MACHINE_REGS();
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return *new YAPTerm(tn);
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}
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YAPListTerm YAPListTerm::dup() {
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yhandle_t tn;
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BACKUP_MACHINE_REGS();
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tn = Yap_CopyTerm(gt());
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RECOVER_MACHINE_REGS();
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return *new YAPListTerm(tn);
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}
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intptr_t YAPTerm::numberVars(intptr_t i0, bool skip_singletons) {
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BACKUP_MACHINE_REGS();
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intptr_t i = Yap_NumberVars(gt(), i0, skip_singletons);
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RECOVER_MACHINE_REGS();
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return i;
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}
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bool YAPTerm::exactlyEqual(YAPTerm t1) {
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bool out;
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BACKUP_MACHINE_REGS();
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out = Yap_eq(gt(), t1.term());
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RECOVER_MACHINE_REGS();
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return out;
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}
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bool YAPTerm::unify(YAPTerm t1) {
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intptr_t out;
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BACKUP_MACHINE_REGS();
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out = Yap_unify(gt(), t1.term());
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RECOVER_MACHINE_REGS();
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return out;
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}
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bool YAPTerm::unifiable(YAPTerm t1) {
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intptr_t out;
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BACKUP_MACHINE_REGS();
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out = Yap_Unifiable(gt(), t1.term());
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RECOVER_MACHINE_REGS();
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return out;
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}
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bool YAPTerm::variant(YAPTerm t1) {
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intptr_t out;
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BACKUP_MACHINE_REGS();
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out = Yap_Variant(gt(), t1.term());
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RECOVER_MACHINE_REGS();
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return out;
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}
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intptr_t YAPTerm::hashTerm(size_t sz, size_t depth, bool variant) {
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intptr_t out;
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BACKUP_MACHINE_REGS();
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out = Yap_TermHash(gt(), sz, depth, variant);
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RECOVER_MACHINE_REGS();
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return out;
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}
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const char *YAPTerm::text() {
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CACHE_REGS
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size_t length;
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encoding_t enc = LOCAL_encoding;
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char *os;
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BACKUP_MACHINE_REGS();
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if (!(os = Yap_TermToString(Yap_GetFromSlot(t), &length, enc,
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Handle_vars_f))) {
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RECOVER_MACHINE_REGS();
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return nullptr;
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}
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RECOVER_MACHINE_REGS();
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return os;
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}
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const char *YAPQuery::text() { return goal.text(); }
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YAPIntegerTerm::YAPIntegerTerm(intptr_t i) {
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CACHE_REGS Term tn = MkIntegerTerm(i);
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mk(tn);
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}
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/*
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YAPTerm *YAPTerm::vars()
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{
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BACKUP_MACHINE_REGS();
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CACHE_REGS
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YAPPairTerm lv = YAPPairTerm(Yap_TermVariables(gt(), 0 PASS_REGS));
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RECOVER_MACHINE_REGS();
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return lv;
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}
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*/
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YAPTerm::YAPTerm(void *ptr) {
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CACHE_REGS
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mk(MkIntegerTerm((Int)ptr));
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}
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YAPTerm YAPListTerm::car() {
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Term to = gt();
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if (IsPairTerm(to))
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return YAPTerm(HeadOfTerm(to));
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else
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throw YAPError(TYPE_ERROR_LIST);
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}
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YAPListTerm::YAPListTerm(YAPTerm ts[], arity_t n) {
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CACHE_REGS
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BACKUP_H();
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if (n == 0)
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t = TermNil;
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while (HR + n * 2 > ASP - 1024) {
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RECOVER_H();
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if (!Yap_dogc(0, NULL PASS_REGS)) {
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t = TermNil;
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}
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BACKUP_H();
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}
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t = AbsPair(HR);
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for (arity_t i = 0; i < n; i++) {
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HR[2 * i] = ts[i].gt();
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HR[2 * i + 1] = AbsPair(HR + (2 * i + 2));
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}
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}
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YAPVarTerm::YAPVarTerm() {
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CACHE_REGS
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mk(MkVarTerm());
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}
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const char *YAPAtom::getName(void) {
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if (IsWideAtom(a)) {
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// return an UTF-8 version
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size_t sz = 512;
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wchar_t *ptr = a->WStrOfAE;
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utf8proc_int32_t ch = -1;
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char *s = new char[sz], *op = s;
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while (ch) {
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ch = *ptr++;
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op += put_utf8((unsigned char *)op, ch);
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}
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sz = strlen(s) + 1;
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char *os = new char[sz];
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memcpy(os, s, sz);
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delete[] s;
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return os;
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} else if (IsBlob(a)) {
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size_t sz = 1024;
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char *s = new char[sz + 1];
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return Yap_blob_to_string(RepAtom(a), s, sz);
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} else {
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return (char *)a->StrOfAE;
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}
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}
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void YAPQuery::initOpenQ() {
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CACHE_REGS
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// oq = LOCAL_execution;
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// LOCAL_execution = this;
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q_open = true;
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q_state = 0;
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q_flags = true; // PL_Q_PASS_EXCEPTION;
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q_p = P;
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q_cp = CP;
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// make sure this is safe
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q_handles = Yap_StartSlots();
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}
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int YAPError::get() { return errNo; }
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const char *YAPError::text() { return "YAP Error"; }
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void YAPQuery::initQuery(Term t) {
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CACHE_REGS
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BACKUP_MACHINE_REGS();
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arity_t arity = ap->ArityOfPE;
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goal = YAPTerm(t);
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if (arity) {
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q_g = Yap_InitSlots(arity, RepAppl(t) + 1);
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} else {
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q_g = 0;
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}
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q_pe = ap;
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initOpenQ();
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RECOVER_MACHINE_REGS();
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}
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void YAPQuery::initQuery(YAPAtom at) {
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CACHE_REGS
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BACKUP_MACHINE_REGS();
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PredEntry *ap = RepPredProp(PredPropByAtom(at.a, Yap_CurrentModule()));
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goal = YAPAtomTerm(at);
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q_g = 0;
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q_pe = ap;
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initOpenQ();
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RECOVER_MACHINE_REGS();
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}
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void YAPQuery::initQuery(YAPTerm ts[], arity_t arity) {
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CACHE_REGS
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BACKUP_MACHINE_REGS();
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if (arity) {
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q_g = Yap_NewSlots(arity);
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for (arity_t i = 0; i < arity; i++) {
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Yap_PutInSlot(q_g + i, ts[i].term());
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}
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Term t = Yap_MkApplTerm(ap->FunctorOfPred, ap->ArityOfPE,
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Yap_AddressFromSlot(q_g));
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goal = YAPTerm(t);
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} else {
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q_g = 0;
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goal = YAPTerm(MkAtomTerm((Atom)ap->FunctorOfPred));
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}
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initOpenQ();
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RECOVER_MACHINE_REGS();
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}
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YAPQuery::YAPQuery(YAPFunctor f, YAPTerm mod, YAPTerm ts[])
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: YAPPredicate(f, mod) {
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/* ignore flags for now */
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initQuery(ts, f.arity());
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}
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YAPQuery::YAPQuery(YAPFunctor f, YAPTerm ts[]) : YAPPredicate(f) {
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/* ignore flags for now */
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initQuery(ts, f.arity());
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}
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YAPQuery::YAPQuery(YAPPredicate p, YAPTerm ts[]) : YAPPredicate(p.ap) {
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initQuery(ts, p.ap->ArityOfPE);
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}
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YAPListTerm YAPQuery::namedVars() {
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CACHE_REGS
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__android_log_print(ANDROID_LOG_INFO, "YAPDroid", "vnames %s %d",
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vnames.text(), LOCAL_CurSlot);
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return vnames; // should be o
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}
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|
YAPListTerm YAPQuery::namedVarsCopy() {
|
|
CACHE_REGS
|
|
__android_log_print(ANDROID_LOG_INFO, "YAPDroid", "vnames %s %d",
|
|
vnames.text(), LOCAL_CurSlot);
|
|
return YAPListTerm(YAP_CopyTerm(vnames.term())); // should be o
|
|
}
|
|
|
|
bool YAPQuery::next() {
|
|
CACHE_REGS
|
|
bool result;
|
|
|
|
BACKUP_MACHINE_REGS();
|
|
if (!q_open)
|
|
return false;
|
|
if (setjmp(q_env)) {
|
|
return false;
|
|
}
|
|
// don't forget, on success these guys may create slots
|
|
__android_log_print(ANDROID_LOG_INFO, "YAPDroid", "exec ");
|
|
|
|
if (q_state == 0) {
|
|
result = (bool)YAP_EnterGoal((YAP_PredEntryPtr)ap, q_g, &q_h);
|
|
} else {
|
|
LOCAL_AllowRestart = q_open;
|
|
result = (bool)YAP_RetryGoal(&q_h);
|
|
}
|
|
if (result) {
|
|
__android_log_print(ANDROID_LOG_INFO, "YAPDroid", "vnames %d %s %d",
|
|
q_state, vnames.text(), LOCAL_CurSlot);
|
|
} else {
|
|
__android_log_print(ANDROID_LOG_INFO, "YAPDroid", "fail");
|
|
}
|
|
q_state = 1;
|
|
if (Yap_GetException()) {
|
|
return false;
|
|
}
|
|
__android_log_print(ANDROID_LOG_INFO, "YAPDroid", "out %d", result);
|
|
|
|
if (!result) {
|
|
YAP_LeaveGoal(FALSE, &q_h);
|
|
Yap_CloseHandles(q_handles);
|
|
q_open = false;
|
|
} else {
|
|
q_handles = Yap_StartSlots();
|
|
}
|
|
RECOVER_MACHINE_REGS();
|
|
return result;
|
|
}
|
|
|
|
void YAPQuery::cut() {
|
|
CACHE_REGS
|
|
|
|
BACKUP_MACHINE_REGS();
|
|
if (!q_open || q_state == 0)
|
|
return;
|
|
YAP_LeaveGoal(FALSE, &q_h);
|
|
q_open = 0;
|
|
// LOCAL_execution = this;
|
|
RECOVER_MACHINE_REGS();
|
|
}
|
|
|
|
bool YAPQuery::deterministic() {
|
|
CACHE_REGS
|
|
|
|
BACKUP_MACHINE_REGS();
|
|
if (!q_open || q_state == 0)
|
|
return false;
|
|
choiceptr myB = (choiceptr)(LCL0 - q_h.b);
|
|
return (B >= myB);
|
|
RECOVER_MACHINE_REGS();
|
|
}
|
|
|
|
YAPTerm YAPQuery::getTerm(yhandle_t t) { return YAPTerm(t); }
|
|
|
|
void YAPQuery::close() {
|
|
CACHE_REGS
|
|
|
|
RECOVER_MACHINE_REGS();
|
|
Yap_ResetException(worker_id);
|
|
/* need to implement backtracking here */
|
|
if (q_open != 1 || q_state == 0) {
|
|
RECOVER_MACHINE_REGS();
|
|
return;
|
|
}
|
|
YAP_LeaveGoal(FALSE, &q_h);
|
|
q_open = 0;
|
|
Yap_CloseHandles(q_handles);
|
|
// LOCAL_execution = this;
|
|
RECOVER_MACHINE_REGS();
|
|
}
|
|
|
|
static YAPEngine *curren;
|
|
|
|
#if __ANDROID__
|
|
|
|
#include <jni.h>
|
|
#include <string.h>
|
|
|
|
JNIEnv *Yap_jenv;
|
|
|
|
extern JNIEXPORT jint JNICALL JNI_MySQLOnLoad(JavaVM *vm, void *reserved);
|
|
|
|
JNIEXPORT jint JNICALL JNI_MySQLOnLoad(JavaVM *vm, void *reserved) {
|
|
JNIEnv *env;
|
|
if (vm->GetEnv(reinterpret_cast<void **>(&env), JNI_VERSION_1_6) != JNI_OK) {
|
|
return -1;
|
|
}
|
|
Yap_jenv = env;
|
|
|
|
return JNI_VERSION_1_6;
|
|
}
|
|
|
|
char *Yap_AndroidBufp;
|
|
|
|
static size_t Yap_AndroidMax, Yap_AndroidSz;
|
|
|
|
extern void (*Yap_DisplayWithJava)(int c);
|
|
|
|
void Yap_displayWithJava(int c) {
|
|
char *ptr = Yap_AndroidBufp;
|
|
if (!ptr)
|
|
ptr = Yap_AndroidBufp = (char *)malloc(Yap_AndroidSz);
|
|
ptr[Yap_AndroidSz++] = c;
|
|
if (Yap_AndroidMax - 1 == Yap_AndroidSz) {
|
|
if (Yap_AndroidMax < 32 * 1024) {
|
|
Yap_AndroidMax *= 2;
|
|
} else {
|
|
Yap_AndroidMax += 32 * 1024;
|
|
}
|
|
Yap_AndroidBufp = (char *)realloc(ptr, Yap_AndroidMax);
|
|
}
|
|
Yap_AndroidBufp[Yap_AndroidSz] = '\0';
|
|
if (c == '\n') {
|
|
Yap_AndroidBufp[Yap_AndroidSz] = '\0';
|
|
curren->run(Yap_AndroidBufp);
|
|
Yap_AndroidSz = 0;
|
|
}
|
|
}
|
|
|
|
#endif
|
|
|
|
void YAPEngine::doInit(YAP_file_type_t BootMode) {
|
|
if ((BootMode = YAP_Init(&init_args)) == YAP_FOUND_BOOT_ERROR) {
|
|
throw(YAPError(SYSTEM_ERROR_INTERNAL));
|
|
}
|
|
/* Begin preprocessor code */
|
|
/* live */
|
|
__android_log_print(ANDROID_LOG_INFO, "YAPDroid", "$init_system");
|
|
#if __ANDROID__
|
|
Yap_AndroidBufp = (char *)malloc(Yap_AndroidMax = 4096);
|
|
Yap_AndroidBufp[0] = '\0';
|
|
Yap_AndroidSz = 0;
|
|
#endif
|
|
yerror = YAPError();
|
|
|
|
YAPQuery initq = YAPQuery(YAPAtom("$init_system"));
|
|
if (initq.next()) {
|
|
initq.cut();
|
|
} else {
|
|
// should throw exception
|
|
}
|
|
}
|
|
|
|
YAPEngine::YAPEngine(char *savedState, char *bootFile, size_t stackSize,
|
|
size_t trailSize, size_t maxStackSize, size_t maxTrailSize,
|
|
char *libDir, char *goal, char *topLevel, bool script,
|
|
bool fastBoot,
|
|
YAPCallback *cb)
|
|
: _callback(0) { // a single engine can be active
|
|
|
|
YAP_file_type_t BootMode;
|
|
int Argc = 1;
|
|
char **Argv;
|
|
__android_log_print(ANDROID_LOG_INFO, "YAPDroid", "YAP %s ", bootFile);
|
|
|
|
// delYAPCallback()b
|
|
// if (cb)
|
|
// setYAPCallback(cb);
|
|
curren = this;
|
|
{
|
|
size_t l1 = 2 * sizeof(char *);
|
|
if (!(Argv = (char **)malloc(l1)))
|
|
return;
|
|
Argv[0] = (char *)malloc(4);
|
|
strcpy(Argv[0], "yap");
|
|
Argv[1] = NULL;
|
|
}
|
|
BootMode = Yap_InitDefaults(&init_args, NULL, Argc, Argv);
|
|
init_args.SavedState = savedState;
|
|
init_args.StackSize = stackSize;
|
|
init_args.TrailSize = trailSize;
|
|
init_args.MaxStackSize = maxStackSize;
|
|
init_args.MaxTrailSize = maxTrailSize;
|
|
init_args.YapLibDir = libDir;
|
|
init_args.YapPrologBootFile = bootFile;
|
|
init_args.YapPrologGoal = goal;
|
|
init_args.YapPrologTopLevelGoal = topLevel;
|
|
init_args.HaltAfterConsult = script;
|
|
init_args.FastBoot = fastBoot;
|
|
doInit(BootMode);
|
|
}
|
|
|
|
YAPEngine::YAPEngine(int argc, char *argv[],
|
|
YAPCallback *cb)
|
|
: _callback(0) { // a single engine can be active
|
|
|
|
YAP_file_type_t BootMode;
|
|
BootMode = YAP_parse_yap_arguments(argc, argv, &init_args);
|
|
// delYAPCallback()b
|
|
// if (cb)
|
|
// setYAPCallback(cb);
|
|
curren = this;
|
|
doInit(BootMode);
|
|
}
|
|
|
|
YAPPredicate::YAPPredicate(YAPAtom at) {
|
|
CACHE_REGS
|
|
ap = RepPredProp(PredPropByAtom(at.a, Yap_CurrentModule()));
|
|
}
|
|
|
|
YAPPredicate::YAPPredicate(YAPAtom at, arity_t arity) {
|
|
CACHE_REGS
|
|
if (arity) {
|
|
Functor f = Yap_MkFunctor(at.a, arity);
|
|
ap = RepPredProp(PredPropByFunc(f, Yap_CurrentModule()));
|
|
} else {
|
|
ap = RepPredProp(PredPropByAtom(at.a, Yap_CurrentModule()));
|
|
}
|
|
}
|
|
|
|
/// auxiliary routine to find a predicate in the current module.
|
|
PredEntry *YAPPredicate::getPred(Term &t, Term *&outp) {
|
|
CACHE_REGS
|
|
Term m = Yap_CurrentModule();
|
|
t = Yap_StripModule(t, &m);
|
|
if (IsVarTerm(t) || IsNumTerm(t)) {
|
|
throw YAPError(TYPE_ERROR_NUMBER);
|
|
}
|
|
if (IsAtomTerm(t)) {
|
|
ap = RepPredProp(PredPropByAtom(AtomOfTerm(t), m));
|
|
outp = (Term *)NULL;
|
|
return ap;
|
|
} else if (IsPairTerm(t)) {
|
|
Term ts[2];
|
|
ts[0] = t;
|
|
ts[1] = m;
|
|
t = Yap_MkApplTerm(FunctorCsult, 2, ts);
|
|
outp = RepAppl(t) + 1;
|
|
}
|
|
Functor f = FunctorOfTerm(t);
|
|
if (IsExtensionFunctor(f)) {
|
|
throw YAPError(TYPE_ERROR_NUMBER);
|
|
} else {
|
|
ap = RepPredProp(PredPropByFunc(f, m));
|
|
outp = RepAppl(t) + 1;
|
|
}
|
|
return ap;
|
|
}
|
|
|
|
YAPPrologPredicate::YAPPrologPredicate(
|
|
YAPAtom name, arity_t arity, YAPModule mod, bool tabled,
|
|
bool logical_updates, bool is_thread_local, bool sourced,
|
|
bool discontiguous, bool multiFile, bool hidden, bool untraceable,
|
|
bool unspyable, bool meta, bool moduleTransparent, bool quasiQuotable,
|
|
size_t mega_clause)
|
|
: YAPPredicate(name, arity, mod) {
|
|
if (!ap)
|
|
return;
|
|
if (is_thread_local) {
|
|
if (ap->cs.p_code.NOfClauses || tabled)
|
|
return;
|
|
ap->PredFlags |= (ThreadLocalPredFlag | LogUpdatePredFlag);
|
|
} else if (logical_updates) {
|
|
if (ap->cs.p_code.NOfClauses || tabled)
|
|
return;
|
|
ap->PredFlags |= LogUpdatePredFlag;
|
|
ap->CodeOfPred = FAILCODE;
|
|
ap->OpcodeOfPred = FAILCODE->opc;
|
|
}
|
|
if (tabled) {
|
|
ap->PredFlags |= TabledPredFlag;
|
|
if (ap->cs.p_code.NOfClauses || tabled)
|
|
return;
|
|
ap->PredFlags |= TabledPredFlag;
|
|
}
|
|
if (sourced) {
|
|
ap->PredFlags |= SourcePredFlag;
|
|
}
|
|
if (discontiguous) {
|
|
ap->PredFlags |= DiscontiguousPredFlag;
|
|
}
|
|
if (multiFile) {
|
|
ap->PredFlags |= MultiFileFlag;
|
|
}
|
|
if (hidden) {
|
|
ap->PredFlags |= HiddenPredFlag;
|
|
}
|
|
if (untraceable) {
|
|
ap->PredFlags |= SourcePredFlag;
|
|
}
|
|
if (unspyable) {
|
|
ap->PredFlags |= NoSpyPredFlag;
|
|
}
|
|
if (meta) {
|
|
ap->PredFlags |= MetaPredFlag;
|
|
} else if (moduleTransparent) {
|
|
ap->PredFlags |= ModuleTransparentPredFlag;
|
|
}
|
|
if (quasiQuotable) {
|
|
ap->PredFlags |= QuasiQuotationPredFlag;
|
|
}
|
|
if (untraceable) {
|
|
ap->PredFlags |= SourcePredFlag;
|
|
}
|
|
if (hidden) {
|
|
ap->PredFlags |= SourcePredFlag;
|
|
}
|
|
}
|
|
|
|
void *YAPPrologPredicate::assertClause(YAPTerm clause, bool last,
|
|
YAPTerm source) {
|
|
CACHE_REGS
|
|
|
|
RECOVER_MACHINE_REGS();
|
|
Term tt = clause.gt();
|
|
Term sourcet = source.gt();
|
|
yamop *codeaddr = Yap_cclause(tt, PP->ArityOfPE, Yap_CurrentModule(),
|
|
sourcet); /* vsc: give the number of arguments
|
|
to cclause in case there is overflow */
|
|
Term ntt = clause.gt();
|
|
if (LOCAL_ErrorMessage) {
|
|
RECOVER_MACHINE_REGS();
|
|
return 0;
|
|
}
|
|
Term *tref = &ntt;
|
|
if (Yap_addclause(ntt, codeaddr, (last ? TermAssertz : TermAsserta),
|
|
Yap_CurrentModule(), tref)) {
|
|
RECOVER_MACHINE_REGS();
|
|
}
|
|
return tref;
|
|
return 0;
|
|
}
|
|
void *YAPPrologPredicate::retractClause(YAPTerm skeleton, bool all) {
|
|
return 0;
|
|
}
|
|
void *YAPPrologPredicate::clause(YAPTerm skeleton, YAPTerm &body) { return 0; }
|