00001 #include <assert.h>
00002 #include <ctype.h>
00003 #include <stdarg.h>
00004 #include <stdlib.h>
00005 #include <stdio.h>
00006 #include <string.h>
00007 #include <time.h>
00008 #include "lburg.h"
00009
00010 static char rcsid[] = "lburg.c - faked rcsid";
00011
00012 static char *prefix = "";
00013 static int Tflag = 0;
00014 static int ntnumber = 0;
00015 static Nonterm start = 0;
00016 static Term terms;
00017 static Nonterm nts;
00018 static Rule rules;
00019 static int nrules;
00020 static struct block {
00021 struct block *link;
00022 } *memlist;
00023
00024 static char *stringf(char *fmt, ...);
00025 static void print(char *fmt, ...);
00026 static void ckreach(Nonterm p);
00027 static void emitclosure(Nonterm nts);
00028 static void emitcost(Tree t, char *v);
00029 static void emitdefs(Nonterm nts, int ntnumber);
00030 static void emitheader(void);
00031 static void emitkids(Rule rules, int nrules);
00032 static void emitnts(Rule rules, int nrules);
00033 static void emitrecalc(char *pre, Term root, Term kid);
00034 static void emitrecord(char *pre, Rule r, char *c, int cost);
00035 static void emitrule(Nonterm nts);
00036 static void emitlabel(Term terms, Nonterm start, int ntnumber);
00037 static void emitstring(Rule rules);
00038 static void emitstruct(Nonterm nts, int ntnumber);
00039 static void emittest(Tree t, char *v, char *suffix);
00040
00041 int main(int argc, char *argv[]) {
00042 int c, i;
00043 Nonterm p;
00044
00045 for (i = 1; i < argc; i++)
00046 if (strcmp(argv[i], "-T") == 0)
00047 Tflag = 1;
00048 else if (strncmp(argv[i], "-p", 2) == 0 && argv[i][2])
00049 prefix = &argv[i][2];
00050 else if (strncmp(argv[i], "-p", 2) == 0 && i + 1 < argc)
00051 prefix = argv[++i];
00052 else if (*argv[i] == '-' && argv[i][1]) {
00053 yyerror("usage: %s [-T | -p prefix]... [ [ input ] output ] \n",
00054 argv[0]);
00055 exit(1);
00056 } else if (infp == NULL) {
00057 if (strcmp(argv[i], "-") == 0)
00058 infp = stdin;
00059 else if ((infp = fopen(argv[i], "r")) == NULL) {
00060 yyerror("%s: can't read `%s'\n", argv[0], argv[i]);
00061 exit(1);
00062 }
00063 } else if (outfp == NULL) {
00064 if (strcmp(argv[i], "-") == 0)
00065 outfp = stdout;
00066 if ((outfp = fopen(argv[i], "w")) == NULL) {
00067 yyerror("%s: can't write `%s'\n", argv[0], argv[i]);
00068 exit(1);
00069 }
00070 }
00071 if (infp == NULL)
00072 infp = stdin;
00073 if (outfp == NULL)
00074 outfp = stdout;
00075 yyparse();
00076 if (start)
00077 ckreach(start);
00078 for (p = nts; p; p = p->link) {
00079 if (p->rules == NULL)
00080 yyerror("undefined nonterminal `%s'\n", p->name);
00081 if (!p->reached)
00082 yyerror("can't reach nonterminal `%s'\n", p->name);
00083 }
00084 emitheader();
00085 emitdefs(nts, ntnumber);
00086 emitstruct(nts, ntnumber);
00087 emitnts(rules, nrules);
00088 emitstring(rules);
00089 emitrule(nts);
00090 emitclosure(nts);
00091 if (start)
00092 emitlabel(terms, start, ntnumber);
00093 emitkids(rules, nrules);
00094 if (!feof(infp))
00095 while ((c = getc(infp)) != EOF)
00096 putc(c, outfp);
00097 while (memlist) {
00098 struct block *q = memlist->link;
00099 free(memlist);
00100 memlist = q;
00101 }
00102 return errcnt > 0;
00103 }
00104
00105
00106 void *alloc(int nbytes) {
00107 struct block *p = calloc(1, sizeof *p + nbytes);
00108
00109 if (p == NULL) {
00110 yyerror("out of memory\n");
00111 exit(1);
00112 }
00113 p->link = memlist;
00114 memlist = p;
00115 return p + 1;
00116 }
00117
00118
00119 static char *stringf(char *fmt, ...) {
00120 va_list ap;
00121 char buf[512];
00122
00123 va_start(ap, fmt);
00124 vsprintf(buf, fmt, ap);
00125 va_end(ap);
00126 return strcpy(alloc(strlen(buf) + 1), buf);
00127 }
00128
00129 struct entry {
00130 union {
00131 char *name;
00132 struct term t;
00133 struct nonterm nt;
00134 } sym;
00135 struct entry *link;
00136 } *table[211];
00137 #define HASHSIZE (sizeof table/sizeof table[0])
00138
00139
00140 static unsigned hash(char *str) {
00141 unsigned h = 0;
00142
00143 while (*str)
00144 h = (h<<1) + *str++;
00145 return h;
00146 }
00147
00148
00149 static void *lookup(char *name) {
00150 struct entry *p = table[hash(name)%HASHSIZE];
00151
00152 for ( ; p; p = p->link)
00153 if (strcmp(name, p->sym.name) == 0)
00154 return &p->sym;
00155 return 0;
00156 }
00157
00158
00159 static void *install(char *name) {
00160 struct entry *p = alloc(sizeof *p);
00161 int i = hash(name)%HASHSIZE;
00162
00163 p->sym.name = name;
00164 p->link = table[i];
00165 table[i] = p;
00166 return &p->sym;
00167 }
00168
00169
00170 Nonterm nonterm(char *id) {
00171 Nonterm p = lookup(id), *q = &nts;
00172
00173 if (p && p->kind == NONTERM)
00174 return p;
00175 if (p && p->kind == TERM)
00176 yyerror("`%s' is a terminal\n", id);
00177 p = install(id);
00178 p->kind = NONTERM;
00179 p->number = ++ntnumber;
00180 if (p->number == 1)
00181 start = p;
00182 while (*q && (*q)->number < p->number)
00183 q = &(*q)->link;
00184 assert(*q == 0 || (*q)->number != p->number);
00185 p->link = *q;
00186 *q = p;
00187 return p;
00188 }
00189
00190
00191 Term term(char *id, int esn) {
00192 Term p = lookup(id), *q = &terms;
00193
00194 if (p)
00195 yyerror("redefinition of terminal `%s'\n", id);
00196 else
00197 p = install(id);
00198 p->kind = TERM;
00199 p->esn = esn;
00200 p->arity = -1;
00201 while (*q && (*q)->esn < p->esn)
00202 q = &(*q)->link;
00203 if (*q && (*q)->esn == p->esn)
00204 yyerror("duplicate external symbol number `%s=%d'\n",
00205 p->name, p->esn);
00206 p->link = *q;
00207 *q = p;
00208 return p;
00209 }
00210
00211
00212 Tree tree(char *id, Tree left, Tree right) {
00213 Tree t = alloc(sizeof *t);
00214 Term p = lookup(id);
00215 int arity = 0;
00216
00217 if (left && right)
00218 arity = 2;
00219 else if (left)
00220 arity = 1;
00221 if (p == NULL && arity > 0) {
00222 yyerror("undefined terminal `%s'\n", id);
00223 p = term(id, -1);
00224 } else if (p == NULL && arity == 0)
00225 p = (Term)nonterm(id);
00226 else if (p && p->kind == NONTERM && arity > 0) {
00227 yyerror("`%s' is a nonterminal\n", id);
00228 p = term(id, -1);
00229 }
00230 if (p->kind == TERM && p->arity == -1)
00231 p->arity = arity;
00232 if (p->kind == TERM && arity != p->arity)
00233 yyerror("inconsistent arity for terminal `%s'\n", id);
00234 t->op = p;
00235 t->nterms = p->kind == TERM;
00236 if ((t->left = left) != NULL)
00237 t->nterms += left->nterms;
00238 if ((t->right = right) != NULL)
00239 t->nterms += right->nterms;
00240 return t;
00241 }
00242
00243
00244 Rule rule(char *id, Tree pattern, char *template, char *code) {
00245 Rule r = alloc(sizeof *r), *q;
00246 Term p = pattern->op;
00247 char *end;
00248
00249 r->lhs = nonterm(id);
00250 r->packed = ++r->lhs->lhscount;
00251 for (q = &r->lhs->rules; *q; q = &(*q)->decode)
00252 ;
00253 *q = r;
00254 r->pattern = pattern;
00255 r->ern = ++nrules;
00256 r->template = template;
00257 r->code = code;
00258 r->cost = strtol(code, &end, 10);
00259 if (*end) {
00260 r->cost = -1;
00261 r->code = stringf("(%s)", code);
00262 }
00263 if (p->kind == TERM) {
00264 for (q = &p->rules; *q; q = &(*q)->next)
00265 ;
00266 *q = r;
00267 } else if (pattern->left == NULL && pattern->right == NULL) {
00268 Nonterm p = pattern->op;
00269 r->chain = p->chain;
00270 p->chain = r;
00271 if (r->cost == -1)
00272 yyerror("illegal nonconstant cost `%s'\n", code);
00273 }
00274 for (q = &rules; *q; q = &(*q)->link)
00275 ;
00276 r->link = *q;
00277 *q = r;
00278 return r;
00279 }
00280
00281
00282 static void print(char *fmt, ...) {
00283 va_list ap;
00284
00285 va_start(ap, fmt);
00286 for ( ; *fmt; fmt++)
00287 if (*fmt == '%')
00288 switch (*++fmt) {
00289 case 'd': fprintf(outfp, "%d", va_arg(ap, int)); break;
00290 case 's': fputs(va_arg(ap, char *), outfp); break;
00291 case 'P': fprintf(outfp, "%s_", prefix); break;
00292 case 'T': {
00293 Tree t = va_arg(ap, Tree);
00294 print("%S", t->op);
00295 if (t->left && t->right)
00296 print("(%T,%T)", t->left, t->right);
00297 else if (t->left)
00298 print("(%T)", t->left);
00299 break;
00300 }
00301 case 'R': {
00302 Rule r = va_arg(ap, Rule);
00303 print("%S: %T", r->lhs, r->pattern);
00304 break;
00305 }
00306 case 'S': fputs(va_arg(ap, Term)->name, outfp); break;
00307 case '1': case '2': case '3': case '4': case '5': {
00308 int n = *fmt - '0';
00309 while (n-- > 0)
00310 putc('\t', outfp);
00311 break;
00312 }
00313 default: putc(*fmt, outfp); break;
00314 }
00315 else
00316 putc(*fmt, outfp);
00317 va_end(ap);
00318 }
00319
00320
00321 static void reach(Tree t) {
00322 Nonterm p = t->op;
00323
00324 if (p->kind == NONTERM)
00325 if (!p->reached)
00326 ckreach(p);
00327 if (t->left)
00328 reach(t->left);
00329 if (t->right)
00330 reach(t->right);
00331 }
00332
00333
00334 static void ckreach(Nonterm p) {
00335 Rule r;
00336
00337 p->reached = 1;
00338 for (r = p->rules; r; r = r->decode)
00339 reach(r->pattern);
00340 }
00341
00342
00343 static void emitcase(Term p, int ntnumber) {
00344 Rule r;
00345
00346 print("%1case %d: /* %S */\n", p->esn, p);
00347 switch (p->arity) {
00348 case 0: case -1:
00349 break;
00350 case 1:
00351 print("%2%Plabel(LEFT_CHILD(a));\n");
00352 break;
00353 case 2:
00354 print("%2%Plabel(LEFT_CHILD(a));\n");
00355 print("%2%Plabel(RIGHT_CHILD(a));\n");
00356 break;
00357 default: assert(0);
00358 }
00359 for (r = p->rules; r; r = r->next) {
00360 char *indent = "\t\t\0";
00361 switch (p->arity) {
00362 case 0: case -1:
00363 print("%2/* %R */\n", r);
00364 if (r->cost == -1) {
00365 print("%2c = %s;\n", r->code);
00366 emitrecord("\t\t", r, "c", 0);
00367 } else
00368 emitrecord("\t\t", r, r->code, 0);
00369 break;
00370 case 1:
00371 if (r->pattern->nterms > 1) {
00372 print("%2if (%1/* %R */\n", r);
00373 emittest(r->pattern->left, "LEFT_CHILD(a)", " ");
00374 print("%2) {\n");
00375 indent = "\t\t\t";
00376 } else
00377 print("%2/* %R */\n", r);
00378 if (r->pattern->nterms == 2 && r->pattern->left
00379 && r->pattern->right == NULL)
00380 emitrecalc(indent, r->pattern->op, r->pattern->left->op);
00381 print("%sc = ", indent);
00382 emitcost(r->pattern->left, "LEFT_CHILD(a)");
00383 print("%s;\n", r->code);
00384 emitrecord(indent, r, "c", 0);
00385 if (indent[2])
00386 print("%2}\n");
00387 break;
00388 case 2:
00389 if (r->pattern->nterms > 1) {
00390 print("%2if (%1/* %R */\n", r);
00391 emittest(r->pattern->left, "LEFT_CHILD(a)",
00392 r->pattern->right->nterms ? " && " : " ");
00393 emittest(r->pattern->right, "RIGHT_CHILD(a)", " ");
00394 print("%2) {\n");
00395 indent = "\t\t\t";
00396 } else
00397 print("%2/* %R */\n", r);
00398 print("%sc = ", indent);
00399 emitcost(r->pattern->left, "LEFT_CHILD(a)");
00400 emitcost(r->pattern->right, "RIGHT_CHILD(a)");
00401 print("%s;\n", r->code);
00402 emitrecord(indent, r, "c", 0);
00403 if (indent[2])
00404 print("%2}\n");
00405 break;
00406 default: assert(0);
00407 }
00408 }
00409 print("%2break;\n");
00410 }
00411
00412
00413 static void emitclosure(Nonterm nts) {
00414 Nonterm p;
00415
00416 for (p = nts; p; p = p->link)
00417 if (p->chain)
00418 print("static void %Pclosure_%S(NODEPTR_TYPE, int);\n", p);
00419 print("\n");
00420 for (p = nts; p; p = p->link)
00421 if (p->chain) {
00422 Rule r;
00423 print("static void %Pclosure_%S(NODEPTR_TYPE a, int c) {\n"
00424 "%1struct %Pstate *p = STATE_LABEL(a);\n", p);
00425 for (r = p->chain; r; r = r->chain)
00426 emitrecord("\t", r, "c", r->cost);
00427 print("}\n\n");
00428 }
00429 }
00430
00431
00432 static void emitcost(Tree t, char *v) {
00433 Nonterm p = t->op;
00434
00435 if (p->kind == TERM) {
00436 if (t->left)
00437 emitcost(t->left, stringf("LEFT_CHILD(%s)", v));
00438 if (t->right)
00439 emitcost(t->right, stringf("RIGHT_CHILD(%s)", v));
00440 } else
00441 print("((struct %Pstate *)(%s->x.state))->cost[%P%S_NT] + ", v, p);
00442 }
00443
00444
00445 static void emitdefs(Nonterm nts, int ntnumber) {
00446 Nonterm p;
00447
00448 for (p = nts; p; p = p->link)
00449 print("#define %P%S_NT %d\n", p, p->number);
00450 print("\n");
00451 print("static char *%Pntname[] = {\n%10,\n");
00452 for (p = nts; p; p = p->link)
00453 print("%1\"%S\",\n", p);
00454 print("%10\n};\n\n");
00455 }
00456
00457
00458 static void emitheader(void) {
00459 time_t timer = time(NULL);
00460
00461 print("/*\ngenerated at %sby %s\n*/\n", ctime(&timer), rcsid);
00462 print("static void %Pkids(NODEPTR_TYPE, int, NODEPTR_TYPE[]);\n");
00463 print("static void %Plabel(NODEPTR_TYPE);\n");
00464 print("static int %Prule(void*, int);\n\n");
00465 }
00466
00467
00468 static char *computekids(Tree t, char *v, char *bp, int *ip) {
00469 Term p = t->op;
00470
00471 if (p->kind == NONTERM) {
00472 sprintf(bp, "\t\tkids[%d] = %s;\n", (*ip)++, v);
00473 bp += strlen(bp);
00474 } else if (p->arity > 0) {
00475 bp = computekids(t->left, stringf("LEFT_CHILD(%s)", v), bp, ip);
00476 if (p->arity == 2)
00477 bp = computekids(t->right, stringf("RIGHT_CHILD(%s)", v), bp, ip);
00478 }
00479 return bp;
00480 }
00481
00482
00483 static void emitkids(Rule rules, int nrules) {
00484 int i;
00485 Rule r, *rc = alloc((nrules + 1 + 1)*sizeof *rc);
00486 char **str = alloc((nrules + 1 + 1)*sizeof *str);
00487
00488 for (i = 0, r = rules; r; r = r->link) {
00489 int j = 0;
00490 char buf[1024], *bp = buf;
00491 *computekids(r->pattern, "p", bp, &j) = 0;
00492 for (j = 0; str[j] && strcmp(str[j], buf); j++)
00493 ;
00494 if (str[j] == NULL)
00495 str[j] = strcpy(alloc(strlen(buf) + 1), buf);
00496 r->kids = rc[j];
00497 rc[j] = r;
00498 }
00499 print("static void %Pkids(NODEPTR_TYPE p, int eruleno, NODEPTR_TYPE kids[]) {\n"
00500 "%1if (!p)\n%2fatal(\"%Pkids\", \"Null tree\\n\", 0);\n"
00501 "%1if (!kids)\n%2fatal(\"%Pkids\", \"Null kids\\n\", 0);\n"
00502 "%1switch (eruleno) {\n");
00503 for (i = 0; (r = rc[i]) != NULL; i++) {
00504 for ( ; r; r = r->kids)
00505 print("%1case %d: /* %R */\n", r->ern, r);
00506 print("%s%2break;\n", str[i]);
00507 }
00508 print("%1default:\n%2fatal(\"%Pkids\", \"Bad rule number %%d\\n\", eruleno);\n%1}\n}\n\n");
00509 }
00510
00511
00512 static void emitlabel(Term terms, Nonterm start, int ntnumber) {
00513 int i;
00514 Term p;
00515
00516 print("static void %Plabel(NODEPTR_TYPE a) {\n%1int c;\n"
00517 "%1struct %Pstate *p;\n\n"
00518 "%1if (!a)\n%2fatal(\"%Plabel\", \"Null tree\\n\", 0);\n");
00519 print("%1STATE_LABEL(a) = p = allocate(sizeof *p, FUNC);\n"
00520 "%1p->rule._stmt = 0;\n");
00521 for (i = 1; i <= ntnumber; i++)
00522 print("%1p->cost[%d] =\n", i);
00523 print("%20x7fff;\n%1switch (OP_LABEL(a)) {\n");
00524 for (p = terms; p; p = p->link)
00525 emitcase(p, ntnumber);
00526 print("%1default:\n"
00527 "%2fatal(\"%Plabel\", \"Bad terminal %%d\\n\", OP_LABEL(a));\n%1}\n}\n\n");
00528 }
00529
00530
00531 static char *computents(Tree t, char *bp) {
00532 if (t) {
00533 Nonterm p = t->op;
00534 if (p->kind == NONTERM) {
00535 sprintf(bp, "%s_%s_NT, ", prefix, p->name);
00536 bp += strlen(bp);
00537 } else
00538 bp = computents(t->right, computents(t->left, bp));
00539 }
00540 return bp;
00541 }
00542
00543
00544 static void emitnts(Rule rules, int nrules) {
00545 Rule r;
00546 int i, j, *nts = alloc((nrules + 1)*sizeof *nts);
00547 char **str = alloc((nrules + 1)*sizeof *str);
00548
00549 for (i = 0, r = rules; r; r = r->link) {
00550 char buf[1024];
00551 *computents(r->pattern, buf) = 0;
00552 for (j = 0; str[j] && strcmp(str[j], buf); j++)
00553 ;
00554 if (str[j] == NULL) {
00555 print("static short %Pnts_%d[] = { %s0 };\n", j, buf);
00556 str[j] = strcpy(alloc(strlen(buf) + 1), buf);
00557 }
00558 nts[i++] = j;
00559 }
00560 print("\nstatic short *%Pnts[] = {\n");
00561 for (i = j = 0, r = rules; r; r = r->link) {
00562 for ( ; j < r->ern; j++)
00563 print("%10,%1/* %d */\n", j);
00564 print("%1%Pnts_%d,%1/* %d */\n", nts[i++], j++);
00565 }
00566 print("};\n\n");
00567 }
00568
00569
00570 static void emitrecalc(char *pre, Term root, Term kid) {
00571 if (root->kind == TERM && strncmp(root->name, "INDIR", 5) == 0
00572 && kid->kind == TERM && strcmp(kid->name, "VREGP" ) == 0) {
00573 Nonterm p;
00574 print("%sif (mayrecalc(a)) {\n", pre);
00575 print("%s%1struct %Pstate *q = a->syms[RX]->u.t.cse->x.state;\n", pre);
00576 for (p = nts; p; p = p->link) {
00577 print("%s%1if (q->cost[%P%S_NT] == 0) {\n", pre, p);
00578 print("%s%2p->cost[%P%S_NT] = 0;\n", pre, p);
00579 print("%s%2p->rule.%P%S = q->rule.%P%S;\n", pre, p, p);
00580 print("%s%1}\n", pre);
00581 }
00582 print("%s}\n", pre);
00583 }
00584 }
00585
00586
00587 static void emitrecord(char *pre, Rule r, char *c, int cost) {
00588 if (Tflag)
00589 print("%s%Ptrace(a, %d, %s + %d, p->cost[%P%S_NT]);\n",
00590 pre, r->ern, c, cost, r->lhs);
00591 print("%sif (", pre);
00592 print("%s + %d < p->cost[%P%S_NT]) {\n"
00593 "%s%1p->cost[%P%S_NT] = %s + %d;\n%s%1p->rule.%P%S = %d;\n",
00594 c, cost, r->lhs, pre, r->lhs, c, cost, pre, r->lhs,
00595 r->packed);
00596 if (r->lhs->chain)
00597 print("%s%1%Pclosure_%S(a, %s + %d);\n", pre, r->lhs, c, cost);
00598 print("%s}\n", pre);
00599 }
00600
00601
00602 static void emitrule(Nonterm nts) {
00603 Nonterm p;
00604
00605 for (p = nts; p; p = p->link) {
00606 Rule r;
00607 print("static short %Pdecode_%S[] = {\n%10,\n", p);
00608 for (r = p->rules; r; r = r->decode)
00609 print("%1%d,\n", r->ern);
00610 print("};\n\n");
00611 }
00612 print("static int %Prule(void *state, int goalnt) {\n"
00613 "%1if (goalnt < 1 || goalnt > %d)\n%2fatal(\"%Prule\", \"Bad goal nonterminal %%d\\n\", goalnt);\n"
00614 "%1if (!state)\n%2return 0;\n%1switch (goalnt) {\n", ntnumber);
00615 for (p = nts; p; p = p->link)
00616 print("%1case %P%S_NT:"
00617 "%1return %Pdecode_%S[((struct %Pstate *)state)->rule.%P%S];\n", p, p, p);
00618 print("%1default:\n%2fatal(\"%Prule\", \"Bad goal nonterminal %%d\\n\", goalnt);\n%2return 0;\n%1}\n}\n\n");
00619 }
00620
00621
00622 static void emitstring(Rule rules) {
00623 Rule r;
00624
00625 print("static char *%Ptemplates[] = {\n");
00626 print("/* 0 */%10,\n");
00627 for (r = rules; r; r = r->link)
00628 print("/* %d */%1\"%s\",%1/* %R */\n", r->ern, r->template, r);
00629 print("};\n");
00630 print("\nstatic char %Pisinstruction[] = {\n");
00631 print("/* 0 */%10,\n");
00632 for (r = rules; r; r = r->link) {
00633 int len = strlen(r->template);
00634 print("/* %d */%1%d,%1/* %s */\n", r->ern,
00635 len >= 2 && r->template[len-2] == '\\' && r->template[len-1] == 'n',
00636 r->template);
00637 }
00638 print("};\n");
00639 print("\nstatic char *%Pstring[] = {\n");
00640 print("/* 0 */%10,\n");
00641 for (r = rules; r; r = r->link)
00642 print("/* %d */%1\"%R\",\n", r->ern, r);
00643 print("};\n\n");
00644 }
00645
00646
00647 static void emitstruct(Nonterm nts, int ntnumber) {
00648 print("struct %Pstate {\n%1short cost[%d];\n%1struct {\n", ntnumber + 1);
00649 for ( ; nts; nts = nts->link) {
00650 int n = 1, m = nts->lhscount;
00651 while ((m >>= 1) != 0)
00652 n++;
00653 print("%2unsigned int %P%S:%d;\n", nts, n);
00654 }
00655 print("%1} rule;\n};\n\n");
00656 }
00657
00658
00659 static void emittest(Tree t, char *v, char *suffix) {
00660 Term p = t->op;
00661
00662 if (p->kind == TERM) {
00663 print("%3%s->op == %d%s/* %S */\n", v, p->esn,
00664 t->nterms > 1 ? " && " : suffix, p);
00665 if (t->left)
00666 emittest(t->left, stringf("LEFT_CHILD(%s)", v),
00667 t->right && t->right->nterms ? " && " : suffix);
00668 if (t->right)
00669 emittest(t->right, stringf("RIGHT_CHILD(%s)", v), suffix);
00670 }
00671 }