7b77c87b94
git-svn-id: https://yap.svn.sf.net/svnroot/yap/trunk@233 b08c6af1-5177-4d33-ba66-4b1c6b8b522a
644 lines
15 KiB
C
644 lines
15 KiB
C
/*************************************************************************
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* *
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* YAP Prolog *
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* *
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* Yap Prolog was developed at NCCUP - Universidade do Porto *
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* *
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* Copyright L.Damas, V.S.Costa and Universidade do Porto 1985-1997 *
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* *
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**************************************************************************
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* *
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* File: attvar.c *
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* Last rev: *
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* mods: *
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* comments: YAP support for attributed vars *
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* *
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*************************************************************************/
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#ifdef SCCS
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static char SccsId[]="%W% %G%";
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#endif
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#include "Yap.h"
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#ifdef COROUTINING
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#include "Yatom.h"
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#include "Heap.h"
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#include "heapgc.h"
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#include "attvar.h"
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#ifndef NULL
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#define NULL (void *)0
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#endif
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STATIC_PROTO(Term InitVarTime, (void));
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STATIC_PROTO(Int PutAtt, (attvar_record *,Int,Term));
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STATIC_PROTO(Int BuildNewAttVar, (Term,Int,Term));
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static CELL *
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AddToQueue(attvar_record *attv)
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{
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Term t[2];
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sus_record *WGs;
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sus_record *new;
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t[0] = (CELL)&(attv->Done);
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t[1] = attv->Value;
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/* follow the chain */
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WGs = (sus_record *)ReadTimedVar(WokenGoals);
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new = (sus_record *)H;
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H = (CELL *)(new+1);
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new->NR = (sus_record *)(&(new->NR));
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new->SG = MkApplTerm(FunctorAttGoal, 2, t);
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new->NS = new;
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if ((Term)WGs == TermNil) {
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UpdateTimedVar(WokenGoals, (CELL)new);
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/* from now on, we have to start waking up goals */
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if (CreepFlag != Unsigned(LCL0) - Unsigned(H0))
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CreepFlag = Unsigned(LCL0);
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} else {
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/* add to the end of the current list of suspended goals */
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CELL *where_to = (CELL *)Deref((CELL)WGs);
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Bind_Global(where_to, (CELL)new);
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}
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return(RepAppl(new->SG)+2);
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}
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static CELL *
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AddFailToQueue(void)
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{
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sus_record *WGs;
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sus_record *new;
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/* follow the chain */
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WGs = (sus_record *)ReadTimedVar(WokenGoals);
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new = (sus_record *)H;
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H = (CELL *)(new+1);
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new->NR = (sus_record *)(&(new->NR));
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new->SG = MkAtomTerm(AtomFail);
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new->NS = new;
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if ((Term)WGs == TermNil) {
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UpdateTimedVar(WokenGoals, (CELL)new);
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/* from now on, we have to start waking up goals */
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if (CreepFlag != Unsigned(LCL0) - Unsigned(H0))
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CreepFlag = Unsigned(LCL0);
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} else {
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/* add to the end of the current list of suspended goals */
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CELL *where_to = (CELL *)Deref((CELL)WGs);
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Bind_Global(where_to, (CELL)new);
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}
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return(RepAppl(new->SG)+2);
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}
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static int
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CopyAttVar(CELL *orig, CELL ***to_visit_ptr, CELL *res)
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{
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register attvar_record *attv = (attvar_record *)orig;
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register attvar_record *newv;
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CELL **to_visit = *to_visit_ptr;
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Term time = InitVarTime();
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Int j;
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/* add a new attributed variable */
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newv = (attvar_record *)ReadTimedVar(DelayedVars);
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if (H0 - (CELL *)newv < 1024+(2*NUM_OF_ATTS))
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return(FALSE);
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RESET_VARIABLE(&(newv->Done));
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newv->sus_id = attvars_ext;
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RESET_VARIABLE(&(newv->Value));
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newv->NS = UpdateTimedVar(AttsMutableList, (CELL)&(newv->Done));
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for (j = 0; j < NUM_OF_ATTS; j++) {
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Term t = Deref(attv->Atts[2*j+1]);
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newv->Atts[2*j] = time;
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if (IsVarTerm(t)) {
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RESET_VARIABLE(newv->Atts+(2*j+1));
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} else if (IsAtomicTerm(t)) {
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newv->Atts[2*j+1] = t;
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} else {
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#ifdef RATIONAL_TREES
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to_visit[0] = attv->Atts+2*j;
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to_visit[1] = attv->Atts+2*j+1;
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to_visit[2] = newv->Atts+2*j+1;
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to_visit[3] = (CELL *)(attv->Atts[2*j]);
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/* fool the system into thinking we had a variable there */
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attv->Atts[2*j] = AbsAppl(H);
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to_visit += 4;
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#else
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to_visit[0] = attv->Atts+2*j;
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to_visit[1] = attv->Atts+2*j+1;
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to_visit[2] = newv->Atts+2*j+1;
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to_visit += 3;
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#endif
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}
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}
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*to_visit_ptr = to_visit;
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*res = (CELL)&(newv->Done);
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UpdateTimedVar(DelayedVars, (CELL)(newv->Atts+2*j));
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return(TRUE);
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}
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static Term
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AttVarToTerm(CELL *orig)
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{
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register attvar_record *attv = (attvar_record *)orig;
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Term list = TermNil;
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int j;
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for (j = 0; j < NUM_OF_ATTS; j++) {
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Term t = attv->Atts[2*(NUM_OF_ATTS-j-1)+1];
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if (IsVarTerm(t))
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list = MkPairTerm(MkVarTerm(),list);
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else
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list = MkPairTerm(t,list);
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}
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return(list);
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}
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static int
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TermToAttVar(Term attvar, Term to)
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{
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int i = 0;
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int open = FALSE;
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while (IsPairTerm(attvar)) {
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Term t = HeadOfTerm(attvar);
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if (!IsVarTerm(t)) {
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if (open) {
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attvar_record *attv = (attvar_record *)VarOfTerm(Deref(to));
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if (!PutAtt(attv, i, t))
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return(FALSE);
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} else {
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if (!BuildNewAttVar(to, i, t))
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return(FALSE);
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open = TRUE;
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}
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}
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i++;
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attvar = TailOfTerm(attvar);
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}
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return(TRUE);
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}
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static void
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WakeAttVar(CELL* pt1, CELL reg2)
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{
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/* if bound to someone else, follow until we find the last one */
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attvar_record *attv = (attvar_record *)pt1;
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CELL *myH = H;
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CELL *bind_ptr;
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if (!IsVarTerm(attv->Value) || !IsUnboundVar(attv->Value)) {
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/* oops, our goal is on the queue to be woken */
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if (!unify(attv->Value, reg2)) {
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AddFailToQueue();
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}
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return;
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}
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if (IsVarTerm(reg2)) {
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if (IsAttachedTerm(reg2)) {
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attvar_record *susp2 = (attvar_record *)VarOfTerm(reg2);
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/* binding two suspended variables, be careful */
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if (susp2->sus_id != attvars_ext) {
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/* joining two different kinds of suspensions */
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Error(SYSTEM_ERROR, TermNil, "joining two different suspensions not implemented");
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return;
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}
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if (susp2 >= attv) {
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if (susp2 == attv) return;
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if (!IsVarTerm(susp2->Value) || !IsUnboundVar(susp2->Value)) {
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/* oops, our goal is on the queue to be woken */
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if (!unify(susp2->Value, (CELL)pt1)) {
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AddFailToQueue();
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}
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}
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Bind_Global(&(susp2->Value), (CELL)pt1);
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AddToQueue(susp2);
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return;
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}
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} else {
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Bind(VarOfTerm(reg2), (CELL)pt1);
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return;
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}
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}
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bind_ptr = AddToQueue(attv);
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if (IsNonVarTerm(reg2)) {
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if (IsPairTerm(reg2) && RepPair(reg2) == myH)
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reg2 = AbsPair(H);
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else if (IsApplTerm(reg2) && RepAppl(reg2) == myH)
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reg2 = AbsAppl(H);
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}
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*bind_ptr = reg2;
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Bind_Global(&(attv->Value), reg2);
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}
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#ifndef FIXED_STACKS
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static void
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mark_attvar(CELL *orig)
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{
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register attvar_record *attv = (attvar_record *)orig;
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Int i;
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mark_external_reference(&(attv->Value));
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mark_external_reference(&(attv->Done));
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for (i = 0; i < NUM_OF_ATTS; i++) {
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mark_external_reference(attv->Atts+2*i+1);
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}
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}
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#endif /* FIXED_STACKS */
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#if FROZEN_STACKS
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static Term
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CurrentTime(void) {
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return(MkIntegerTerm(TR-(tr_fr_ptr)TrailBase));
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}
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#endif
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static Term
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InitVarTime(void) {
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#if FROZEN_STACKS
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if (B->cp_tr == TR) {
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/* we run the risk of not making non-determinate bindings before
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the end of the night */
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/* so we just init a TR cell that will not harm anyone */
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Bind((CELL *)(TR+1),AbsAppl(H-1));
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}
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return(MkIntegerTerm(B->cp_tr-(tr_fr_ptr)TrailBase));
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#else
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Term t = (CELL)H;
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*H++ = TermFoundVar;
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return(t);
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#endif
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}
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static Int
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PutAtt(attvar_record *attv, Int i, Term tatt) {
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Int pos = i*2;
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#if FROZEN_STACKS
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tr_fr_ptr timestmp = (tr_fr_ptr)TrailBase+IntegerOfTerm(attv->Atts[pos]);
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if (B->cp_tr <= timestmp
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&& timestmp <= TR) {
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#if defined(SBA)
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if (Unsigned((Int)(attv)-(Int)(H_FZ)) >
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Unsigned((Int)(B_FZ)-(Int)(H_FZ))) {
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CELL *ptr = STACK_TO_SBA(attv->Atts+pos+1);
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*ptr = tatt;
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} else
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#endif
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attv->Atts[pos+1] = tatt;
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if (Unsigned((Int)(attv)-(Int)(HBREG)) >
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Unsigned(BBREG)-(Int)(HBREG))
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TrailVal(timestmp-1) = tatt;
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} else {
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Term tnewt;
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MaBind(attv->Atts+pos+1, tatt);
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tnewt = CurrentTime();
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MaBind(attv->Atts+pos, tnewt);
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}
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#else
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CELL *timestmp = (CELL *)(attv->Atts[pos]);
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if (B->cp_h <= timestmp)
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{
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attv->Atts[pos+1] = tatt;
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} else {
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Term tnewt;
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MaBind(attv->Atts+pos+1, tatt);
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tnewt = (Term)H;
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*H++ = TermFoundVar;
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MaBind(attv->Atts+pos, tnewt);
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}
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#endif
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return(TRUE);
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}
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static Int
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RmAtt(attvar_record *attv, Int i) {
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Int pos = i *2;
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if (!IsVarTerm(attv->Atts[pos+1])) {
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#if FROZEN_STACKS
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tr_fr_ptr timestmp = (tr_fr_ptr)TrailBase+IntegerOfTerm(attv->Atts[pos]);
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if (B->cp_tr <= timestmp
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&& timestmp <= TR) {
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RESET_VARIABLE(attv->Atts+(pos+1));
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if (Unsigned((Int)(attv)-(Int)(HBREG)) >
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Unsigned(BBREG)-(Int)(HBREG))
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TrailVal(timestmp-1) = attv->Atts[pos+1];
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} else {
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/* reset the variable */
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Term tnewt;
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#ifdef SBA
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MaBind(attv->Atts+(pos+1), 0L);
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#else
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MaBind(attv->Atts+(pos+1), (CELL)(attv->Atts+(pos+1)));
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#endif
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tnewt = CurrentTime();
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MaBind(attv->Atts+pos, tnewt);
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}
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}
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#else
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CELL *timestmp = (CELL *)(attv->Atts[pos]);
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if (B->cp_h <= timestmp) {
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RESET_VARIABLE(attv->Atts+(pos+1));
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} else {
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/* reset the variable */
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Term tnewt;
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#ifdef SBA
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MaBind(attv->Atts+(pos+1), 0L);
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#else
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MaBind(attv->Atts+(pos+1), (CELL)(attv->Atts+(pos+1)));
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#endif
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tnewt = (Term)H;
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*H++ = TermFoundVar;
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MaBind(attv->Atts+pos, tnewt);
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}
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}
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#endif
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return(TRUE);
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}
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static Int
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BuildNewAttVar(Term t, Int i, Term tatt)
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{
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/* allocate space in Heap */
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Term time;
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int j;
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attvar_record *attv = (attvar_record *)ReadTimedVar(DelayedVars);
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if (H0 - (CELL *)attv < 1024+(2*NUM_OF_ATTS)) {
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ARG1 = t;
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ARG2 = tatt;
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growglobal();
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t = ARG1;
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tatt = ARG2;
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}
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time = InitVarTime();
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RESET_VARIABLE(&(attv->Value));
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RESET_VARIABLE(&(attv->Done));
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attv->sus_id = attvars_ext;
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for (j = 0; j < NUM_OF_ATTS; j++) {
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attv->Atts[2*j] = time;
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RESET_VARIABLE(attv->Atts+2*j+1);
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}
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attv->NS = UpdateTimedVar(AttsMutableList, (CELL)&(attv->Done));
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Bind((CELL *)t,(CELL)attv);
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UpdateTimedVar(DelayedVars,(CELL)(attv->Atts+2*j));
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return(PutAtt(attv, i, tatt));
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}
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static Int
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GetAtt(attvar_record *attv, int i) {
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Int pos = i *2;
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#if SBA
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if (IsUnboundVar(attv->Atts[pos+1]))
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return((CELL)&(attv->Atts[pos+1]));
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#endif
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return(attv->Atts[pos+1]);
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}
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static Int
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FreeAtt(attvar_record *attv, int i) {
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Int pos = i *2;
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return(IsVarTerm(attv->Atts[pos+1]));
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}
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static Int
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BindAttVar(attvar_record *attv) {
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if (IsVarTerm(attv->Done) && IsUnboundVar(attv->Done)) {
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Bind_Global(&(attv->Done), attv->Value);
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return(TRUE);
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} else {
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Error(SYSTEM_ERROR,(CELL)&(attv->Done),"attvar was bound when set");
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return(FALSE);
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}
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}
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static Term
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GetAllAtts(attvar_record *attv) {
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Int i;
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Term t = TermNil;
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for (i = NUM_OF_ATTS-1; i >= 0; i --) {
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if (!IsVarTerm(attv->Atts[2*i+1]))
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t = MkPairTerm(MkPairTerm(MkIntegerTerm(i),attv->Atts[2*i+1]), t);
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}
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return(t);
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}
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static Term
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AllAttVars(Term t) {
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if (t == TermNil) {
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return(t);
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} else {
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attvar_record *attv = (attvar_record *)VarOfTerm(t);
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if (!IsVarTerm(attv->Done) || !IsUnboundVar(attv->Done))
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return(AllAttVars(attv->NS));
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else return(MkPairTerm(t,AllAttVars(attv->NS)));
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}
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}
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Term
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CurrentAttVars(void) {
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return(AllAttVars(ReadTimedVar(AttsMutableList)));
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}
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static Int
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p_put_att(void) {
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/* receive a variable in ARG1 */
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Term inp = Deref(ARG1);
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/* if this is unbound, ok */
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if (IsVarTerm(inp)) {
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if (IsAttachedTerm(inp)) {
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attvar_record *attv = (attvar_record *)VarOfTerm(inp);
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exts id = (exts)attv->sus_id;
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if (id != attvars_ext) {
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Error(TYPE_ERROR_VARIABLE,inp,"put_attributes/2");
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return(FALSE);
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}
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return(PutAtt(attv, IntegerOfTerm(Deref(ARG2)), Deref(ARG3)));
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}
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return(BuildNewAttVar(inp, IntegerOfTerm(Deref(ARG2)), Deref(ARG3)));
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} else {
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Error(TYPE_ERROR_VARIABLE,inp,"put_attributes/2");
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return(FALSE);
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}
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}
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static Int
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p_rm_att(void) {
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/* receive a variable in ARG1 */
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Term inp = Deref(ARG1);
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/* if this is unbound, ok */
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if (IsVarTerm(inp)) {
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if (IsAttachedTerm(inp)) {
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attvar_record *attv = (attvar_record *)VarOfTerm(inp);
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exts id = (exts)attv->sus_id;
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if (id != attvars_ext) {
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Error(TYPE_ERROR_VARIABLE,inp,"delete_attribute/2");
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return(FALSE);
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}
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return(RmAtt(attv, IntegerOfTerm(Deref(ARG2))));
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}
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return(TRUE);
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} else {
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Error(TYPE_ERROR_VARIABLE,inp,"delete_attribute/2");
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return(FALSE);
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}
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}
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static Int
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p_get_att(void) {
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/* receive a variable in ARG1 */
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Term inp = Deref(ARG1);
|
|
/* if this is unbound, ok */
|
|
if (IsVarTerm(inp)) {
|
|
if (IsAttachedTerm(inp)) {
|
|
attvar_record *attv = (attvar_record *)VarOfTerm(inp);
|
|
Term out;
|
|
exts id = (exts)attv->sus_id;
|
|
|
|
if (id != attvars_ext) {
|
|
Error(TYPE_ERROR_VARIABLE,inp,"get_att/2");
|
|
return(FALSE);
|
|
}
|
|
out = GetAtt(attv,IntegerOfTerm(Deref(ARG2)));
|
|
return(!IsVarTerm(out) && unify(ARG3,out));
|
|
}
|
|
/* Error(INSTANTIATION_ERROR,inp,"get_att/2");*/
|
|
return(FALSE);
|
|
} else {
|
|
Error(TYPE_ERROR_VARIABLE,inp,"get_att/2");
|
|
return(FALSE);
|
|
}
|
|
}
|
|
|
|
static Int
|
|
p_free_att(void) {
|
|
/* receive a variable in ARG1 */
|
|
Term inp = Deref(ARG1);
|
|
/* if this is unbound, ok */
|
|
if (IsVarTerm(inp)) {
|
|
if (IsAttachedTerm(inp)) {
|
|
attvar_record *attv = (attvar_record *)VarOfTerm(inp);
|
|
exts id = (exts)attv->sus_id;
|
|
|
|
if (id != attvars_ext) {
|
|
Error(TYPE_ERROR_VARIABLE,inp,"get_att/2");
|
|
return(FALSE);
|
|
}
|
|
return(FreeAtt(attv,IntegerOfTerm(Deref(ARG2))));
|
|
}
|
|
return(TRUE);
|
|
} else {
|
|
Error(TYPE_ERROR_VARIABLE,inp,"free_att/2");
|
|
return(FALSE);
|
|
}
|
|
}
|
|
|
|
static Int
|
|
p_bind_attvar(void) {
|
|
/* receive a variable in ARG1 */
|
|
Term inp = Deref(ARG1);
|
|
/* if this is unbound, ok */
|
|
if (IsVarTerm(inp)) {
|
|
if (IsAttachedTerm(inp)) {
|
|
attvar_record *attv = (attvar_record *)VarOfTerm(inp);
|
|
exts id = (exts)attv->sus_id;
|
|
|
|
if (id != attvars_ext) {
|
|
Error(TYPE_ERROR_VARIABLE,inp,"get_att/2");
|
|
return(FALSE);
|
|
}
|
|
return(BindAttVar(attv));
|
|
}
|
|
return(TRUE);
|
|
} else {
|
|
Error(TYPE_ERROR_VARIABLE,inp,"bind_att/2");
|
|
return(FALSE);
|
|
}
|
|
}
|
|
|
|
static Int
|
|
p_get_all_atts(void) {
|
|
/* receive a variable in ARG1 */
|
|
Term inp = Deref(ARG1);
|
|
/* if this is unbound, ok */
|
|
if (IsVarTerm(inp)) {
|
|
if (IsAttachedTerm(inp)) {
|
|
attvar_record *attv = (attvar_record *)VarOfTerm(inp);
|
|
exts id = (exts)(attv->sus_id);
|
|
|
|
if (id != attvars_ext) {
|
|
Error(TYPE_ERROR_VARIABLE,inp,"get_att/2");
|
|
return(FALSE);
|
|
}
|
|
return(unify(ARG2,GetAllAtts(attv)));
|
|
}
|
|
return(TRUE);
|
|
} else {
|
|
Error(TYPE_ERROR_VARIABLE,inp,"get_att/2");
|
|
return(FALSE);
|
|
}
|
|
}
|
|
|
|
static Int
|
|
p_inc_atts(void)
|
|
{
|
|
Term t = MkIntegerTerm(NUM_OF_ATTS);
|
|
NUM_OF_ATTS++;
|
|
return(unify(ARG1,t));
|
|
}
|
|
|
|
static Int
|
|
p_n_atts(void)
|
|
{
|
|
Term t = MkIntegerTerm(NUM_OF_ATTS);
|
|
return(unify(ARG1,t));
|
|
}
|
|
|
|
static Int
|
|
p_all_attvars(void)
|
|
{
|
|
Term t = ReadTimedVar(AttsMutableList);
|
|
return(unify(ARG1,AllAttVars(t)));
|
|
}
|
|
|
|
static Int
|
|
p_is_attvar(void)
|
|
{
|
|
Term t = Deref(ARG1);
|
|
return(IsVarTerm(t) &&
|
|
IsAttachedTerm(t) &&
|
|
((attvar_record *)VarOfTerm(t))->sus_id == attvars_ext);
|
|
}
|
|
|
|
void InitAttVarPreds(void)
|
|
{
|
|
attas[attvars_ext].bind_op = WakeAttVar;
|
|
attas[attvars_ext].copy_term_op = CopyAttVar;
|
|
attas[attvars_ext].to_term_op = AttVarToTerm;
|
|
attas[attvars_ext].term_to_op = TermToAttVar;
|
|
#ifndef FIXED_STACKS
|
|
attas[attvars_ext].mark_op = mark_attvar;
|
|
#endif
|
|
InitCPred("get_att", 3, p_get_att, SafePredFlag);
|
|
InitCPred("get_all_atts", 2, p_get_all_atts, SafePredFlag);
|
|
InitCPred("free_att", 2, p_free_att, SafePredFlag);
|
|
InitCPred("put_att", 3, p_put_att, 0);
|
|
InitCPred("rm_att", 2, p_rm_att, SafePredFlag);
|
|
InitCPred("inc_n_of_atts", 1, p_inc_atts, SafePredFlag);
|
|
InitCPred("n_of_atts", 1, p_n_atts, SafePredFlag);
|
|
InitCPred("bind_attvar", 1, p_bind_attvar, SafePredFlag);
|
|
InitCPred("$all_attvars", 1, p_all_attvars, SafePredFlag);
|
|
InitCPred("$is_att_variable", 1, p_is_attvar, SafePredFlag);
|
|
}
|
|
|
|
#endif /* COROUTINING */
|
|
|
|
|