195 lines
5.0 KiB
C
195 lines
5.0 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: readutil.c *
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* Last rev: 2/8/06 *
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* mods: *
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* comments: readutil library support *
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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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#include "Yatom.h"
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#include "YapHeap.h"
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#include "yapio.h"
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#include "iopreds.h"
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static Int
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rl_to_codes(Term TEnd, int do_as_binary, int arity)
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{
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int sno = Yap_CheckStream (ARG1, Input_Stream_f, "read_line_to_codes/2");
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Int status;
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UInt max_inp, buf_sz, sz;
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char *buf;
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int binary_stream;
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if (sno < 0)
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return FALSE;
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status = Stream[sno].status;
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binary_stream = Stream[sno].status & Binary_Stream_f;
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if (status & Eof_Stream_f) {
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UNLOCK(Stream[sno].streamlock);
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Yap_Error(PERMISSION_ERROR_INPUT_PAST_END_OF_STREAM, ARG1, "read_line_to_codes/%d", arity);
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return FALSE;
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}
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max_inp = (ASP-H)/2-1024;
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buf = (char *)TR;
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buf_sz = (char *)Yap_TrailTop-buf;
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while (TRUE) {
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if ( buf_sz > max_inp ) {
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buf_sz = max_inp;
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}
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if (do_as_binary && !binary_stream)
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Stream[sno].status |= Binary_Stream_f;
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sz = Stream[sno].stream_gets(sno, buf_sz, buf);
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if (do_as_binary && !binary_stream)
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Stream[sno].status &= ~Binary_Stream_f;
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if (sz == -1 || sz == 0) {
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if (Stream[sno].status & Eof_Stream_f) {
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UNLOCK(Stream[sno].streamlock);
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return Yap_unify_constant(ARG2, MkAtomTerm (AtomEof));
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}
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UNLOCK(Stream[sno].streamlock);
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return FALSE;
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}
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if (Stream[sno].status & Eof_Stream_f || buf[sz-1] == 10) {
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/* we're done */
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Term end;
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if (!(do_as_binary || Stream[sno].status & Eof_Stream_f)) {
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UNLOCK(Stream[sno].streamlock);
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/* handle CR before NL */
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if (sz-2 >= 0 && buf[sz-2] == 13)
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buf[sz-2] = '\0';
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else
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buf[sz-1] = '\0';
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} else {
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UNLOCK(Stream[sno].streamlock);
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}
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if (arity == 2)
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end = TermNil;
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else
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end = Deref(XREGS[arity]);
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return Yap_unify(ARG2, Yap_StringToDiffList((char *)TR, end)) ;
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}
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buf += (buf_sz-1);
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max_inp -= (buf_sz-1);
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if (max_inp <= 0) {
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UNLOCK(Stream[sno].streamlock);
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Yap_Error(OUT_OF_STACK_ERROR, ARG1, "read_line_to_codes/%d", arity);
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return FALSE;
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}
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}
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}
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static Int
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p_rl_to_codes(void)
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{
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return rl_to_codes(TermNil, FALSE, 2);
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}
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static Int
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p_rl_to_codes2(void)
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{
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return rl_to_codes(TermNil, TRUE, 3);
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}
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static Int
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p_stream_to_codes(void)
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{
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int sno = Yap_CheckStream (ARG1, Input_Stream_f, "read_line_to_codes/2");
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CELL *HBASE = H;
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CELL *h0 = &ARG4;
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if (sno < 0)
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return FALSE;
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while (!(Stream[sno].status & Eof_Stream_f)) {
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/* skip errors */
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Int ch = Stream[sno].stream_getc(sno);
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Term t;
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if (ch == EOFCHAR)
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break;
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t = MkIntegerTerm(ch);
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h0[0] = AbsPair(H);
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*H = t;
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H+=2;
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h0 = H-1;
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if (H >= ASP-1024) {
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RESET_VARIABLE(h0);
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ARG4 = AbsPair(HBASE);
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ARG5 = (CELL)h0;
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if (!Yap_gcl((ASP-HBASE)*sizeof(CELL), 5, ENV, gc_P(P,CP))) {
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Yap_Error(OUT_OF_STACK_ERROR, ARG1, "read_stream_to_codes/3");
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return FALSE;
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}
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/* build a legal term again */
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h0 = (CELL *)ARG5;
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HBASE = RepPair(ARG4);
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}
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}
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UNLOCK(Stream[sno].streamlock);
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if (H == HBASE)
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return Yap_unify(ARG2,ARG3);
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RESET_VARIABLE(H-1);
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Yap_unify(H[-1],ARG3);
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return Yap_unify(AbsPair(HBASE),ARG2);
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}
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static Int
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p_stream_to_terms(void)
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{
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int sno = Yap_CheckStream (ARG1, Input_Stream_f, "read_line_to_codes/2");
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Term t = Deref(ARG3), tpos = TermNil;
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if (sno < 0)
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return FALSE;
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while (!(Stream[sno].status & Eof_Stream_f)) {
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/* skip errors */
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TokEntry *tokstart = Yap_tokptr = Yap_toktide = Yap_tokenizer(sno, &tpos);
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if (!Yap_ErrorMessage)
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{
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Term th = Yap_Parse();
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if (H >= ASP-1024) {
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UNLOCK(Stream[sno].streamlock);
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Yap_Error(OUT_OF_STACK_ERROR, ARG1, "read_stream_to_terms/3");
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return FALSE;
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}
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if (!th || Yap_ErrorMessage)
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break;
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if (th == MkAtomTerm (AtomEof)) {
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UNLOCK(Stream[sno].streamlock);
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Yap_clean_tokenizer(tokstart, Yap_VarTable, Yap_AnonVarTable);
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return Yap_unify(t,ARG2);
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} else {
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t = MkPairTerm(th,t);
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}
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}
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Yap_clean_tokenizer(tokstart, Yap_VarTable, Yap_AnonVarTable);
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}
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UNLOCK(Stream[sno].streamlock);
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return Yap_unify(t,ARG2);
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}
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void
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Yap_InitReadUtil(void)
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{
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Term cm = CurrentModule;
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CurrentModule = READUTIL_MODULE;
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Yap_InitCPred("read_line_to_codes", 2, p_rl_to_codes, SyncPredFlag);
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Yap_InitCPred("read_line_to_codes", 3, p_rl_to_codes2, SyncPredFlag);
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Yap_InitCPred("read_stream_to_codes", 3, p_stream_to_codes, SyncPredFlag);
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Yap_InitCPred("read_stream_to_terms", 3, p_stream_to_terms, SyncPredFlag);
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CurrentModule = cm;
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}
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