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1.1 ! root 1: # include "dextern" ! 2: ! 3: /* variables used locally */ ! 4: ! 5: /* lookahead computations */ ! 6: ! 7: int tbitset; /* size of lookahead sets */ ! 8: struct looksets lkst [ LSETSIZE ]; ! 9: int nlset = 0; /* next lookahead set index */ ! 10: int nolook = 0; /* flag to suppress lookahead computations */ ! 11: struct looksets clset; /* temporary storage for lookahead computations */ ! 12: ! 13: /* working set computations */ ! 14: ! 15: struct wset wsets[ WSETSIZE ]; ! 16: struct wset *cwp; ! 17: ! 18: /* state information */ ! 19: ! 20: int nstate = 0; /* number of states */ ! 21: struct item *pstate[NSTATES+2]; /* pointers to the descriptions of the states */ ! 22: int tystate[NSTATES]; /* contains type information about the states */ ! 23: int indgo[NSTATES]; /* index to the stored goto table */ ! 24: int tstates[ NTERMS ]; /* states generated by terminal gotos */ ! 25: int ntstates[ NNONTERM ]; /* states generated by nonterminal gotos */ ! 26: int mstates[ NSTATES ]; /* chain of overflows of term/nonterm generation lists */ ! 27: int rlines[ NPROD ]; /* line number for this rule */ ! 28: ! 29: /* storage for the actions in the parser */ ! 30: ! 31: int amem[ACTSIZE]; /* action table storage */ ! 32: int *memp = amem; /* next free action table position */ ! 33: ! 34: /* other storage areas */ ! 35: ! 36: int temp1[TEMPSIZE]; /* temporary storage, indexed by terms + ntokens or states */ ! 37: int lineno= 1; /* current input line number */ ! 38: int fatfl = 1; /* if on, error is fatal */ ! 39: int nerrors = 0; /* number of errors */ ! 40: ! 41: /* storage for information about the nonterminals */ ! 42: ! 43: int **pres[NNONTERM+2]; /* vector of pointers to productions yielding each nonterminal */ ! 44: struct looksets *pfirst[NNONTERM+2]; /* vector of pointers to first sets for each nonterminal */ ! 45: int pempty[NNONTERM+1]; /* vector of nonterminals nontrivially deriving e */ ! 46: ! 47: main(argc,argv) int argc; char *argv[]; { ! 48: ! 49: setup(argc,argv); /* initialize and read productions */ ! 50: tbitset = NWORDS(ntokens); ! 51: cpres(); /* make table of which productions yield a given nonterminal */ ! 52: cempty(); /* make a table of which nonterminals can match the empty string */ ! 53: cpfir(); /* make a table of firsts of nonterminals */ ! 54: stagen(); /* generate the states */ ! 55: output(); /* write the states and the tables */ ! 56: go2out(); ! 57: hideprod(); ! 58: summary(); ! 59: callopt(); ! 60: others(); ! 61: exit(0); ! 62: } ! 63: ! 64: others(){ /* put out other arrays, copy the parsers */ ! 65: register c, i, j; ! 66: ! 67: finput = fopen( PARSER, "r" ); ! 68: if( finput == NULL ) error( "cannot find parser %s", PARSER ); ! 69: ! 70: warray( "yyr1", levprd, nprod ); ! 71: ! 72: aryfil( temp1, nprod, 0 ); ! 73: PLOOP(1,i)temp1[i] = prdptr[i+1]-prdptr[i]-2; ! 74: warray( "yyr2", temp1, nprod ); ! 75: ! 76: aryfil( temp1, nstate, -1000 ); ! 77: TLOOP(i){ ! 78: for( j=tstates[i]; j!=0; j=mstates[j] ){ ! 79: temp1[j] = tokset[i].value; ! 80: } ! 81: } ! 82: NTLOOP(i){ ! 83: for( j=ntstates[i]; j!=0; j=mstates[j] ){ ! 84: temp1[j] = -i; ! 85: } ! 86: } ! 87: warray( "yychk", temp1, nstate ); ! 88: ! 89: warray( "yydef", defact, nstate ); ! 90: ! 91: /* copy parser text */ ! 92: ! 93: while( (c=getc(finput) ) != EOF ){ ! 94: if( c == '$' ){ ! 95: if( (c=getc(finput)) != 'A' ) putc( '$', ftable ); ! 96: else { /* copy actions */ ! 97: faction = fopen( actname, "r" ); ! 98: if( faction == NULL ) error( "cannot reopen action tempfile" ); ! 99: while( (c=getc(faction) ) != EOF ) putc( c, ftable ); ! 100: fclose(faction); ! 101: ZAPFILE(actname); ! 102: c = getc(finput); ! 103: } ! 104: } ! 105: putc( c, ftable ); ! 106: } ! 107: ! 108: fclose( ftable ); ! 109: } ! 110: ! 111: char *chcopy( p, q ) char *p, *q; { ! 112: /* copies string q into p, returning next free char ptr */ ! 113: while( *p = *q++ ) ++p; ! 114: return( p ); ! 115: } ! 116: ! 117: # define ISIZE 400 ! 118: char *writem(pp) int *pp; { /* creates output string for item pointed to by pp */ ! 119: int i,*p; ! 120: static char sarr[ISIZE]; ! 121: char *q; ! 122: ! 123: for( p=pp; *p>0 ; ++p ) ; ! 124: p = prdptr[-*p]; ! 125: q = chcopy( sarr, nontrst[*p-NTBASE].name ); ! 126: q = chcopy( q, " : " ); ! 127: ! 128: for(;;){ ! 129: *q++ = ++p==pp ? '.' : ' '; ! 130: *q = '\0'; ! 131: if((i = *p) <= 0) break; ! 132: q = chcopy( q, symnam(i) ); ! 133: if( q> &sarr[ISIZE-30] ) error( "item too big" ); ! 134: } ! 135: ! 136: if( (i = *pp) < 0 ){ /* an item calling for a reduction */ ! 137: q = chcopy( q, " (" ); ! 138: sprintf( q, "%d)", -i ); ! 139: } ! 140: ! 141: return( sarr ); ! 142: } ! 143: ! 144: char *symnam(i){ /* return a pointer to the name of symbol i */ ! 145: char *cp; ! 146: ! 147: cp = (i>=NTBASE) ? nontrst[i-NTBASE].name : tokset[i].name ; ! 148: if( *cp == ' ' ) ++cp; ! 149: return( cp ); ! 150: } ! 151: ! 152: struct wset *zzcwp = wsets; ! 153: int zzgoent = 0; ! 154: int zzgobest = 0; ! 155: int zzacent = 0; ! 156: int zzexcp = 0; ! 157: int zzclose = 0; ! 158: int zzsrconf = 0; ! 159: int * zzmemsz = mem0; ! 160: int zzrrconf = 0; ! 161: ! 162: summary(){ /* output the summary on y.output */ ! 163: ! 164: if( foutput!=NULL ){ ! 165: fprintf( foutput, "\n%d/%d terminals, %d/%d nonterminals\n", ntokens, NTERMS, ! 166: nnonter, NNONTERM ); ! 167: fprintf( foutput, "%d/%d grammar rules, %d/%d states\n", nprod, NPROD, nstate, NSTATES ); ! 168: fprintf( foutput, "%d shift/reduce, %d reduce/reduce conflicts reported\n", zzsrconf, zzrrconf ); ! 169: fprintf( foutput, "%d/%d working sets used\n", zzcwp-wsets, WSETSIZE ); ! 170: fprintf( foutput, "memory: states,etc. %d/%d, parser %d/%d\n", zzmemsz-mem0, MEMSIZE, ! 171: memp-amem, ACTSIZE ); ! 172: fprintf( foutput, "%d/%d distinct lookahead sets\n", nlset, LSETSIZE ); ! 173: fprintf( foutput, "%d extra closures\n", zzclose - 2*nstate ); ! 174: fprintf( foutput, "%d shift entries, %d exceptions\n", zzacent, zzexcp ); ! 175: fprintf( foutput, "%d goto entries\n", zzgoent ); ! 176: fprintf( foutput, "%d entries saved by goto default\n", zzgobest ); ! 177: } ! 178: if( zzsrconf!=0 || zzrrconf!=0 ){ ! 179: fprintf( stdout,"\nconflicts: "); ! 180: if( zzsrconf )fprintf( stdout, "%d shift/reduce" , zzsrconf ); ! 181: if( zzsrconf && zzrrconf )fprintf( stdout, ", " ); ! 182: if( zzrrconf )fprintf( stdout, "%d reduce/reduce" , zzrrconf ); ! 183: fprintf( stdout, "\n" ); ! 184: } ! 185: ! 186: if( ftemp != NULL ) fclose( ftemp ); ! 187: if( fdefine != NULL ) fclose( fdefine ); ! 188: } ! 189: ! 190: /* VARARGS1 */ ! 191: error(s,a1) char *s; { /* write out error comment */ ! 192: ! 193: ++nerrors; ! 194: fprintf( stderr, "\n fatal error: "); ! 195: fprintf( stderr, s,a1); ! 196: fprintf( stderr, ", line %d\n", lineno ); ! 197: if( !fatfl ) return; ! 198: summary(); ! 199: cleantmp(); ! 200: exit(1); ! 201: } ! 202: ! 203: aryfil( v, n, c ) int *v,n,c; { /* set elements 0 through n-1 to c */ ! 204: int i; ! 205: for( i=0; i<n; ++i ) v[i] = c; ! 206: } ! 207: ! 208: setunion( a, b ) register *a, *b; { ! 209: /* set a to the union of a and b */ ! 210: /* return 1 if b is not a subset of a, 0 otherwise */ ! 211: register i, x, sub; ! 212: ! 213: sub = 0; ! 214: SETLOOP(i){ ! 215: *a = (x = *a)|*b++; ! 216: if( *a++ != x ) sub = 1; ! 217: } ! 218: return( sub ); ! 219: } ! 220: ! 221: prlook( p ) struct looksets *p;{ ! 222: register j, *pp; ! 223: pp = p->lset; ! 224: if( pp == 0 ) fprintf( foutput, "\tNULL"); ! 225: else { ! 226: fprintf( foutput, " { " ); ! 227: TLOOP(j) { ! 228: if( BIT(pp,j) ) fprintf( foutput, "%s ", symnam(j) ); ! 229: } ! 230: fprintf( foutput, "}" ); ! 231: } ! 232: } ! 233: ! 234: cpres(){ /* compute an array with the beginnings of productions yielding given nonterminals ! 235: The array pres points to these lists */ ! 236: /* the array pyield has the lists: the total size is only NPROD+1 */ ! 237: register **pmem; ! 238: register c, j, i; ! 239: static int * pyield[NPROD]; ! 240: ! 241: pmem = pyield; ! 242: ! 243: NTLOOP(i){ ! 244: c = i+NTBASE; ! 245: pres[i] = pmem; ! 246: fatfl = 0; /* make undefined symbols nonfatal */ ! 247: PLOOP(0,j){ ! 248: if (*prdptr[j] == c) *pmem++ = prdptr[j]+1; ! 249: } ! 250: if(pres[i] == pmem){ ! 251: error("nonterminal %s not defined!", nontrst[i].name); ! 252: } ! 253: } ! 254: pres[i] = pmem; ! 255: fatfl = 1; ! 256: if( nerrors ){ ! 257: summary(); ! 258: cleantmp(); ! 259: exit(1); ! 260: } ! 261: if( pmem != &pyield[nprod] ) error( "internal Yacc error: pyield %d", pmem-&pyield[nprod] ); ! 262: } ! 263: ! 264: int indebug = 0; ! 265: cpfir() { ! 266: /* compute an array with the first of nonterminals */ ! 267: register *p, **s, i, **t, ch, changes; ! 268: ! 269: zzcwp = &wsets[nnonter]; ! 270: NTLOOP(i){ ! 271: aryfil( wsets[i].ws.lset, tbitset, 0 ); ! 272: t = pres[i+1]; ! 273: for( s=pres[i]; s<t; ++s ){ /* initially fill the sets */ ! 274: for( p = *s; (ch = *p) > 0 ; ++p ) { ! 275: if( ch < NTBASE ) { ! 276: SETBIT( wsets[i].ws.lset, ch ); ! 277: break; ! 278: } ! 279: else if( !pempty[ch-NTBASE] ) break; ! 280: } ! 281: } ! 282: } ! 283: ! 284: /* now, reflect transitivity */ ! 285: ! 286: changes = 1; ! 287: while( changes ){ ! 288: changes = 0; ! 289: NTLOOP(i){ ! 290: t = pres[i+1]; ! 291: for( s=pres[i]; s<t; ++s ){ ! 292: for( p = *s; ( ch = (*p-NTBASE) ) >= 0; ++p ) { ! 293: changes |= setunion( wsets[i].ws.lset, wsets[ch].ws.lset ); ! 294: if( !pempty[ch] ) break; ! 295: } ! 296: } ! 297: } ! 298: } ! 299: ! 300: NTLOOP(i) pfirst[i] = flset( &wsets[i].ws ); ! 301: if( !indebug ) return; ! 302: if( (foutput!=NULL) ){ ! 303: NTLOOP(i) { ! 304: fprintf( foutput, "\n%s: ", nontrst[i].name ); ! 305: prlook( pfirst[i] ); ! 306: fprintf( foutput, " %d\n", pempty[i] ); ! 307: } ! 308: } ! 309: } ! 310: ! 311: state(c){ /* sorts last state,and sees if it equals earlier ones. returns state number */ ! 312: int size1,size2; ! 313: register i; ! 314: struct item *p1, *p2, *k, *l, *q1, *q2; ! 315: p1 = pstate[nstate]; ! 316: p2 = pstate[nstate+1]; ! 317: if(p1==p2) return(0); /* null state */ ! 318: /* sort the items */ ! 319: for(k=p2-1;k>p1;k--) { /* make k the biggest */ ! 320: for(l=k-1;l>=p1;--l)if( l->pitem > k->pitem ){ ! 321: int *s; ! 322: struct looksets *ss; ! 323: s = k->pitem; ! 324: k->pitem = l->pitem; ! 325: l->pitem = s; ! 326: ss = k->look; ! 327: k->look = l->look; ! 328: l->look = ss; ! 329: } ! 330: } ! 331: size1 = p2 - p1; /* size of state */ ! 332: ! 333: for( i= (c>=NTBASE)?ntstates[c-NTBASE]:tstates[c]; i != 0; i = mstates[i] ) { ! 334: /* get ith state */ ! 335: q1 = pstate[i]; ! 336: q2 = pstate[i+1]; ! 337: size2 = q2 - q1; ! 338: if (size1 != size2) continue; ! 339: k=p1; ! 340: for(l=q1;l<q2;l++) { ! 341: if( l->pitem != k->pitem ) break; ! 342: ++k; ! 343: } ! 344: if (l != q2) continue; ! 345: /* found it */ ! 346: pstate[nstate+1] = pstate[nstate]; /* delete last state */ ! 347: /* fix up lookaheads */ ! 348: if( nolook ) return(i); ! 349: for( l=q1,k=p1; l<q2; ++l,++k ){ ! 350: int s; ! 351: SETLOOP(s) clset.lset[s] = l->look->lset[s]; ! 352: if( setunion( clset.lset, k->look->lset ) ) { ! 353: tystate[i] = MUSTDO; ! 354: /* register the new set */ ! 355: l->look = flset( &clset ); ! 356: } ! 357: } ! 358: return (i); ! 359: } ! 360: /* state is new */ ! 361: if( nolook ) error( "yacc state/nolook error" ); ! 362: pstate[nstate+2] = p2; ! 363: if(nstate+1 >= NSTATES) error("too many states" ); ! 364: if( c >= NTBASE ){ ! 365: mstates[ nstate ] = ntstates[ c-NTBASE ]; ! 366: ntstates[ c-NTBASE ] = nstate; ! 367: } ! 368: else { ! 369: mstates[ nstate ] = tstates[ c ]; ! 370: tstates[ c ] = nstate; ! 371: } ! 372: tystate[nstate]=MUSTDO; ! 373: return(nstate++); ! 374: } ! 375: ! 376: int pidebug = 0; /* debugging flag for putitem */ ! 377: putitem( ptr, lptr ) int *ptr; struct looksets *lptr; { ! 378: register struct item *j; ! 379: ! 380: if( pidebug && (foutput!=NULL) ) { ! 381: fprintf( foutput, "putitem(%s), state %d\n", writem(ptr), nstate ); ! 382: } ! 383: j = pstate[nstate+1]; ! 384: j->pitem = ptr; ! 385: if( !nolook ) j->look = flset( lptr ); ! 386: pstate[nstate+1] = ++j; ! 387: if( (int *)j > zzmemsz ){ ! 388: zzmemsz = (int *)j; ! 389: if( zzmemsz >= &mem0[MEMSIZE] ) error( "out of state space" ); ! 390: } ! 391: } ! 392: ! 393: cempty(){ /* mark nonterminals which derive the empty string */ ! 394: /* also, look for nonterminals which don't derive any token strings */ ! 395: ! 396: # define EMPTY 1 ! 397: # define WHOKNOWS 0 ! 398: # define OK 1 ! 399: ! 400: register i, *p; ! 401: ! 402: /* first, use the array pempty to detect productions that can never be reduced */ ! 403: /* set pempty to WHONOWS */ ! 404: aryfil( pempty, nnonter+1, WHOKNOWS ); ! 405: ! 406: /* now, look at productions, marking nonterminals which derive something */ ! 407: ! 408: more: ! 409: PLOOP(0,i){ ! 410: if( pempty[ *prdptr[i] - NTBASE ] ) continue; ! 411: for( p=prdptr[i]+1; *p>=0; ++p ){ ! 412: if( *p>=NTBASE && pempty[ *p-NTBASE ] == WHOKNOWS ) break; ! 413: } ! 414: if( *p < 0 ){ /* production can be derived */ ! 415: pempty[ *prdptr[i]-NTBASE ] = OK; ! 416: goto more; ! 417: } ! 418: } ! 419: ! 420: /* now, look at the nonterminals, to see if they are all OK */ ! 421: ! 422: NTLOOP(i){ ! 423: /* the added production rises or falls as the start symbol ... */ ! 424: if( i == 0 ) continue; ! 425: if( pempty[ i ] != OK ) { ! 426: fatfl = 0; ! 427: error( "nonterminal %s never derives any token string", nontrst[i].name ); ! 428: } ! 429: } ! 430: ! 431: if( nerrors ){ ! 432: summary(); ! 433: cleantmp(); ! 434: exit(1); ! 435: } ! 436: ! 437: /* now, compute the pempty array, to see which nonterminals derive the empty string */ ! 438: ! 439: /* set pempty to WHOKNOWS */ ! 440: ! 441: aryfil( pempty, nnonter+1, WHOKNOWS ); ! 442: ! 443: /* loop as long as we keep finding empty nonterminals */ ! 444: ! 445: again: ! 446: PLOOP(1,i){ ! 447: if( pempty[ *prdptr[i]-NTBASE ]==WHOKNOWS ){ /* not known to be empty */ ! 448: for( p=prdptr[i]+1; *p>=NTBASE && pempty[*p-NTBASE]==EMPTY ; ++p ) ; ! 449: if( *p < 0 ){ /* we have a nontrivially empty nonterminal */ ! 450: pempty[*prdptr[i]-NTBASE] = EMPTY; ! 451: goto again; /* got one ... try for another */ ! 452: } ! 453: } ! 454: } ! 455: ! 456: } ! 457: ! 458: int gsdebug = 0; ! 459: stagen(){ /* generate the states */ ! 460: ! 461: int i, j; ! 462: register c; ! 463: register struct wset *p, *q; ! 464: ! 465: /* initialize */ ! 466: ! 467: nstate = 0; ! 468: /* THIS IS FUNNY from the standpoint of portability */ ! 469: /* it represents the magic moment when the mem0 array, which has ! 470: /* been holding the productions, starts to hold item pointers, of a ! 471: /* different type... */ ! 472: /* someday, alloc should be used to allocate all this stuff... for now, we ! 473: /* accept that if pointers don't fit in integers, there is a problem... */ ! 474: ! 475: pstate[0] = pstate[1] = (struct item *)mem; ! 476: aryfil( clset.lset, tbitset, 0 ); ! 477: putitem( prdptr[0]+1, &clset ); ! 478: tystate[0] = MUSTDO; ! 479: nstate = 1; ! 480: pstate[2] = pstate[1]; ! 481: ! 482: aryfil( amem, ACTSIZE, 0 ); ! 483: ! 484: /* now, the main state generation loop */ ! 485: ! 486: more: ! 487: SLOOP(i){ ! 488: if( tystate[i] != MUSTDO ) continue; ! 489: tystate[i] = DONE; ! 490: aryfil( temp1, nnonter+1, 0 ); ! 491: /* take state i, close it, and do gotos */ ! 492: closure(i); ! 493: WSLOOP(wsets,p){ /* generate goto's */ ! 494: if( p->flag ) continue; ! 495: p->flag = 1; ! 496: c = *(p->pitem); ! 497: if( c <= 1 ) { ! 498: if( pstate[i+1]-pstate[i] <= p-wsets ) tystate[i] = MUSTLOOKAHEAD; ! 499: continue; ! 500: } ! 501: /* do a goto on c */ ! 502: WSLOOP(p,q){ ! 503: if( c == *(q->pitem) ){ /* this item contributes to the goto */ ! 504: putitem( q->pitem + 1, &q->ws ); ! 505: q->flag = 1; ! 506: } ! 507: } ! 508: if( c < NTBASE ) { ! 509: state(c); /* register new state */ ! 510: } ! 511: else { ! 512: temp1[c-NTBASE] = state(c); ! 513: } ! 514: } ! 515: if( gsdebug && (foutput!=NULL) ){ ! 516: fprintf( foutput, "%d: ", i ); ! 517: NTLOOP(j) { ! 518: if( temp1[j] ) fprintf( foutput, "%s %d, ", nontrst[j].name, temp1[j] ); ! 519: } ! 520: fprintf( foutput, "\n"); ! 521: } ! 522: indgo[i] = apack( &temp1[1], nnonter-1 ) - 1; ! 523: goto more; /* we have done one goto; do some more */ ! 524: } ! 525: /* no more to do... stop */ ! 526: } ! 527: ! 528: int cldebug = 0; /* debugging flag for closure */ ! 529: closure(i){ /* generate the closure of state i */ ! 530: ! 531: int c, ch, work, k; ! 532: register struct wset *u, *v; ! 533: int *pi; ! 534: int **s, **t; ! 535: struct item *q; ! 536: register struct item *p; ! 537: ! 538: ++zzclose; ! 539: ! 540: /* first, copy kernel of state i to wsets */ ! 541: ! 542: cwp = wsets; ! 543: ITMLOOP(i,p,q){ ! 544: cwp->pitem = p->pitem; ! 545: cwp->flag = 1; /* this item must get closed */ ! 546: SETLOOP(k) cwp->ws.lset[k] = p->look->lset[k]; ! 547: WSBUMP(cwp); ! 548: } ! 549: ! 550: /* now, go through the loop, closing each item */ ! 551: ! 552: work = 1; ! 553: while( work ){ ! 554: work = 0; ! 555: WSLOOP(wsets,u){ ! 556: ! 557: if( u->flag == 0 ) continue; ! 558: c = *(u->pitem); /* dot is before c */ ! 559: ! 560: if( c < NTBASE ){ ! 561: u->flag = 0; ! 562: continue; /* only interesting case is where . is before nonterminal */ ! 563: } ! 564: ! 565: /* compute the lookahead */ ! 566: aryfil( clset.lset, tbitset, 0 ); ! 567: ! 568: /* find items involving c */ ! 569: ! 570: WSLOOP(u,v){ ! 571: if( v->flag == 1 && *(pi=v->pitem) == c ){ ! 572: v->flag = 0; ! 573: if( nolook ) continue; ! 574: while( (ch= *++pi)>0 ){ ! 575: if( ch < NTBASE ){ /* terminal symbol */ ! 576: SETBIT( clset.lset, ch ); ! 577: break; ! 578: } ! 579: /* nonterminal symbol */ ! 580: setunion( clset.lset, pfirst[ch-NTBASE]->lset ); ! 581: if( !pempty[ch-NTBASE] ) break; ! 582: } ! 583: if( ch<=0 ) setunion( clset.lset, v->ws.lset ); ! 584: } ! 585: } ! 586: ! 587: /* now loop over productions derived from c */ ! 588: ! 589: c -= NTBASE; /* c is now nonterminal number */ ! 590: ! 591: t = pres[c+1]; ! 592: for( s=pres[c]; s<t; ++s ){ ! 593: /* put these items into the closure */ ! 594: WSLOOP(wsets,v){ /* is the item there */ ! 595: if( v->pitem == *s ){ /* yes, it is there */ ! 596: if( nolook ) goto nexts; ! 597: if( setunion( v->ws.lset, clset.lset ) ) v->flag = work = 1; ! 598: goto nexts; ! 599: } ! 600: } ! 601: ! 602: /* not there; make a new entry */ ! 603: if( cwp-wsets+1 >= WSETSIZE ) error( "working set overflow" ); ! 604: cwp->pitem = *s; ! 605: cwp->flag = 1; ! 606: if( !nolook ){ ! 607: work = 1; ! 608: SETLOOP(k) cwp->ws.lset[k] = clset.lset[k]; ! 609: } ! 610: WSBUMP(cwp); ! 611: ! 612: nexts: ; ! 613: } ! 614: ! 615: } ! 616: } ! 617: ! 618: /* have computed closure; flags are reset; return */ ! 619: ! 620: if( cwp > zzcwp ) zzcwp = cwp; ! 621: if( cldebug && (foutput!=NULL) ){ ! 622: fprintf( foutput, "\nState %d, nolook = %d\n", i, nolook ); ! 623: WSLOOP(wsets,u){ ! 624: if( u->flag ) fprintf( foutput, "flag set!\n"); ! 625: u->flag = 0; ! 626: fprintf( foutput, "\t%s", writem(u->pitem)); ! 627: prlook( &u->ws ); ! 628: fprintf( foutput, "\n" ); ! 629: } ! 630: } ! 631: } ! 632: ! 633: struct looksets *flset( p ) struct looksets *p; { ! 634: /* decide if the lookahead set pointed to by p is known */ ! 635: /* return pointer to a perminent location for the set */ ! 636: ! 637: register struct looksets *q; ! 638: int j, *w; ! 639: register *u, *v; ! 640: ! 641: for( q = &lkst[nlset]; q-- > lkst; ){ ! 642: u = p->lset; ! 643: v = q->lset; ! 644: w = & v[tbitset]; ! 645: while( v<w) if( *u++ != *v++ ) goto more; ! 646: /* we have matched */ ! 647: return( q ); ! 648: more: ; ! 649: } ! 650: /* add a new one */ ! 651: q = &lkst[nlset++]; ! 652: if( nlset >= LSETSIZE )error("too many lookahead sets" ); ! 653: SETLOOP(j){ ! 654: q->lset[j] = p->lset[j]; ! 655: } ! 656: return( q ); ! 657: } ! 658: ! 659: cleantmp() ! 660: { ! 661: ZAPFILE(actname); ! 662: ZAPFILE(tempname); ! 663: }
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