parse.c revision 1.11 1 /* $NetBSD: parse.c,v 1.11 2001/09/14 14:04:00 wiz Exp $ */
2
3 /*-
4 * Copyright (c) 1980, 1991, 1993
5 * The Regents of the University of California. All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. All advertising materials mentioning features or use of this software
16 * must display the following acknowledgement:
17 * This product includes software developed by the University of
18 * California, Berkeley and its contributors.
19 * 4. Neither the name of the University nor the names of its contributors
20 * may be used to endorse or promote products derived from this software
21 * without specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 * SUCH DAMAGE.
34 */
35
36 #include <sys/cdefs.h>
37 #ifndef lint
38 #if 0
39 static char sccsid[] = "@(#)parse.c 8.1 (Berkeley) 5/31/93";
40 #else
41 __RCSID("$NetBSD: parse.c,v 1.11 2001/09/14 14:04:00 wiz Exp $");
42 #endif
43 #endif /* not lint */
44
45 #include <sys/types.h>
46
47 #include <stdlib.h>
48 #include <string.h>
49
50 #if __STDC__
51 # include <stdarg.h>
52 #else
53 # include <varargs.h>
54 #endif
55
56 #include "csh.h"
57 #include "extern.h"
58
59 static void asyntax(struct wordent *, struct wordent *);
60 static void asyn0(struct wordent *, struct wordent *);
61 static void asyn3(struct wordent *, struct wordent *);
62 static struct wordent *freenod(struct wordent *, struct wordent *);
63 static struct command *syn0(struct wordent *, struct wordent *, int);
64 static struct command *syn1(struct wordent *, struct wordent *, int);
65 static struct command *syn1a(struct wordent *, struct wordent *, int);
66 static struct command *syn1b(struct wordent *, struct wordent *, int);
67 static struct command *syn2(struct wordent *, struct wordent *, int);
68 static struct command *syn3(struct wordent *, struct wordent *, int);
69
70 #define ALEFT 21 /* max of 20 alias expansions */
71 #define HLEFT 11 /* max of 10 history expansions */
72 /*
73 * Perform aliasing on the word list lex
74 * Do a (very rudimentary) parse to separate into commands.
75 * If word 0 of a command has an alias, do it.
76 * Repeat a maximum of 20 times.
77 */
78 static int aleft;
79 extern int hleft;
80
81 void
82 alias(struct wordent *lex)
83 {
84 jmp_buf osetexit;
85
86 aleft = ALEFT;
87 hleft = HLEFT;
88 getexit(osetexit);
89 (void)setexit();
90 if (haderr) {
91 resexit(osetexit);
92 reset();
93 }
94 if (--aleft == 0)
95 stderror(ERR_ALIASLOOP);
96 asyntax(lex->next, lex);
97 resexit(osetexit);
98 }
99
100 static void
101 asyntax(struct wordent *p1, struct wordent *p2)
102 {
103 while (p1 != p2)
104 if (any(";&\n", p1->word[0]))
105 p1 = p1->next;
106 else {
107 asyn0(p1, p2);
108 return;
109 }
110 }
111
112 static void
113 asyn0(struct wordent *p1, struct wordent *p2)
114 {
115 struct wordent *p;
116 int l;
117
118 l = 0;
119 for (p = p1; p != p2; p = p->next)
120 switch (p->word[0]) {
121 case '(':
122 l++;
123 continue;
124 case ')':
125 l--;
126 if (l < 0)
127 stderror(ERR_TOOMANYRP);
128 continue;
129 case '>':
130 if (p->next != p2 && eq(p->next->word, STRand))
131 p = p->next;
132 continue;
133 case '&':
134 case '|':
135 case ';':
136 case '\n':
137 if (l != 0)
138 continue;
139 asyn3(p1, p);
140 asyntax(p->next, p2);
141 return;
142 }
143 if (l == 0)
144 asyn3(p1, p2);
145 }
146
147 static void
148 asyn3(struct wordent *p1, struct wordent *p2)
149 {
150 struct varent *ap;
151 struct wordent alout;
152 bool redid;
153
154 if (p1 == p2)
155 return;
156 if (p1->word[0] == '(') {
157 for (p2 = p2->prev; p2->word[0] != ')'; p2 = p2->prev)
158 if (p2 == p1)
159 return;
160 if (p2 == p1->next)
161 return;
162 asyn0(p1->next, p2);
163 return;
164 }
165 ap = adrof1(p1->word, &aliases);
166 if (ap == 0)
167 return;
168 alhistp = p1->prev;
169 alhistt = p2;
170 alvec = ap->vec;
171 redid = lex(&alout);
172 alhistp = alhistt = 0;
173 alvec = 0;
174 if (seterr) {
175 freelex(&alout);
176 stderror(ERR_OLD);
177 }
178 if (p1->word[0] && eq(p1->word, alout.next->word)) {
179 Char *cp;
180
181 cp = alout.next->word;
182 alout.next->word = Strspl(STRQNULL, cp);
183 xfree((ptr_t) cp);
184 }
185 p1 = freenod(p1, redid ? p2 : p1->next);
186 if (alout.next != &alout) {
187 p1->next->prev = alout.prev->prev;
188 alout.prev->prev->next = p1->next;
189 alout.next->prev = p1;
190 p1->next = alout.next;
191 xfree((ptr_t)alout.prev->word);
192 xfree((ptr_t)(alout.prev));
193 }
194 reset(); /* throw! */
195 }
196
197 static struct wordent *
198 freenod(struct wordent *p1, struct wordent *p2)
199 {
200 struct wordent *retp;
201
202 retp = p1->prev;
203 while (p1 != p2) {
204 xfree((ptr_t)p1->word);
205 p1 = p1->next;
206 xfree((ptr_t) (p1->prev));
207 }
208 retp->next = p2;
209 p2->prev = retp;
210 return (retp);
211 }
212
213 #define PHERE 1
214 #define PIN 2
215 #define POUT 4
216 #define PERR 8
217
218 /*
219 * syntax
220 * empty
221 * syn0
222 */
223 struct command *
224 syntax(struct wordent *p1, struct wordent *p2, int flags)
225 {
226 while (p1 != p2)
227 if (any(";&\n", p1->word[0]))
228 p1 = p1->next;
229 else
230 return (syn0(p1, p2, flags));
231 return (0);
232 }
233
234 /*
235 * syn0
236 * syn1
237 * syn1 & syntax
238 */
239 static struct command *
240 syn0(struct wordent *p1, struct wordent *p2, int flags)
241 {
242 struct wordent *p;
243 struct command *t, *t1;
244 int l;
245
246 l = 0;
247 for (p = p1; p != p2; p = p->next)
248 switch (p->word[0]) {
249 case '(':
250 l++;
251 continue;
252 case ')':
253 l--;
254 if (l < 0)
255 seterror(ERR_TOOMANYRP);
256 continue;
257 case '|':
258 if (p->word[1] == '|')
259 continue;
260 /* FALLTHROUGH */
261 case '>':
262 if (p->next != p2 && eq(p->next->word, STRand))
263 p = p->next;
264 continue;
265 case '&':
266 if (l != 0)
267 break;
268 if (p->word[1] == '&')
269 continue;
270 t1 = syn1(p1, p, flags);
271 if (t1->t_dtyp == NODE_LIST ||
272 t1->t_dtyp == NODE_AND ||
273 t1->t_dtyp == NODE_OR) {
274 t = (struct command *)xcalloc(1, sizeof(*t));
275 t->t_dtyp = NODE_PAREN;
276 t->t_dflg = F_AMPERSAND | F_NOINTERRUPT;
277 t->t_dspr = t1;
278 t1 = t;
279 }
280 else
281 t1->t_dflg |= F_AMPERSAND | F_NOINTERRUPT;
282 t = (struct command *)xcalloc(1, sizeof(*t));
283 t->t_dtyp = NODE_LIST;
284 t->t_dflg = 0;
285 t->t_dcar = t1;
286 t->t_dcdr = syntax(p, p2, flags);
287 return (t);
288 }
289 if (l == 0)
290 return (syn1(p1, p2, flags));
291 seterror(ERR_TOOMANYLP);
292 return (0);
293 }
294
295 /*
296 * syn1
297 * syn1a
298 * syn1a ; syntax
299 */
300 static struct command *
301 syn1(struct wordent *p1, struct wordent *p2, int flags)
302 {
303 struct wordent *p;
304 struct command *t;
305 int l;
306
307 l = 0;
308 for (p = p1; p != p2; p = p->next)
309 switch (p->word[0]) {
310 case '(':
311 l++;
312 continue;
313 case ')':
314 l--;
315 continue;
316 case ';':
317 case '\n':
318 if (l != 0)
319 break;
320 t = (struct command *) xcalloc(1, sizeof(*t));
321 t->t_dtyp = NODE_LIST;
322 t->t_dcar = syn1a(p1, p, flags);
323 t->t_dcdr = syntax(p->next, p2, flags);
324 if (t->t_dcdr == 0)
325 t->t_dcdr = t->t_dcar, t->t_dcar = 0;
326 return (t);
327 }
328 return (syn1a(p1, p2, flags));
329 }
330
331 /*
332 * syn1a
333 * syn1b
334 * syn1b || syn1a
335 */
336 static struct command *
337 syn1a(struct wordent *p1, struct wordent *p2, int flags)
338 {
339 struct wordent *p;
340 struct command *t;
341 int l;
342
343 l = 0;
344 for (p = p1; p != p2; p = p->next)
345 switch (p->word[0]) {
346 case '(':
347 l++;
348 continue;
349 case ')':
350 l--;
351 continue;
352 case '|':
353 if (p->word[1] != '|')
354 continue;
355 if (l == 0) {
356 t = (struct command *)xcalloc(1, sizeof(*t));
357 t->t_dtyp = NODE_OR;
358 t->t_dcar = syn1b(p1, p, flags);
359 t->t_dcdr = syn1a(p->next, p2, flags);
360 t->t_dflg = 0;
361 return (t);
362 }
363 continue;
364 }
365 return (syn1b(p1, p2, flags));
366 }
367
368 /*
369 * syn1b
370 * syn2
371 * syn2 && syn1b
372 */
373 static struct command *
374 syn1b(struct wordent *p1, struct wordent *p2, int flags)
375 {
376 struct wordent *p;
377 struct command *t;
378 int l;
379
380 l = 0;
381 for (p = p1; p != p2; p = p->next)
382 switch (p->word[0]) {
383 case '(':
384 l++;
385 continue;
386 case ')':
387 l--;
388 continue;
389 case '&':
390 if (p->word[1] == '&' && l == 0) {
391 t = (struct command *)xcalloc(1, sizeof(*t));
392 t->t_dtyp = NODE_AND;
393 t->t_dcar = syn2(p1, p, flags);
394 t->t_dcdr = syn1b(p->next, p2, flags);
395 t->t_dflg = 0;
396 return (t);
397 }
398 continue;
399 }
400 return (syn2(p1, p2, flags));
401 }
402
403 /*
404 * syn2
405 * syn3
406 * syn3 | syn2
407 * syn3 |& syn2
408 */
409 static struct command *
410 syn2(struct wordent *p1, struct wordent *p2, int flags)
411 {
412 struct wordent *p, *pn;
413 struct command *t;
414 int f, l;
415
416 l = 0;
417 for (p = p1; p != p2; p = p->next)
418 switch (p->word[0]) {
419 case '(':
420 l++;
421 continue;
422 case ')':
423 l--;
424 continue;
425 case '|':
426 if (l != 0)
427 continue;
428 t = (struct command *)xcalloc(1, sizeof(*t));
429 f = flags | POUT;
430 pn = p->next;
431 if (pn != p2 && pn->word[0] == '&') {
432 f |= PERR;
433 t->t_dflg |= F_STDERR;
434 }
435 t->t_dtyp = NODE_PIPE;
436 t->t_dcar = syn3(p1, p, f);
437 if (pn != p2 && pn->word[0] == '&')
438 p = pn;
439 t->t_dcdr = syn2(p->next, p2, flags | PIN);
440 return (t);
441 }
442 return (syn3(p1, p2, flags));
443 }
444
445 static char RELPAR[] = {'<', '>', '(', ')', '\0'};
446
447 /*
448 * syn3
449 * ( syn0 ) [ < in ] [ > out ]
450 * word word* [ < in ] [ > out ]
451 * KEYWORD ( word* ) word* [ < in ] [ > out ]
452 *
453 * KEYWORD = (@ exit foreach if set switch test while)
454 */
455 static struct command *
456 syn3(struct wordent *p1, struct wordent *p2, int flags)
457 {
458 struct wordent *lp, *p, *rp;
459 struct command *t;
460 Char **av;
461 int c, l, n;
462 bool specp;
463
464 specp = 0;
465 if (p1 != p2) {
466 p = p1;
467 again:
468 switch (srchx(p->word)) {
469 case T_ELSE:
470 p = p->next;
471 if (p != p2)
472 goto again;
473 break;
474 case T_EXIT:
475 case T_FOREACH:
476 case T_IF:
477 case T_LET:
478 case T_SET:
479 case T_SWITCH:
480 case T_WHILE:
481 specp = 1;
482 break;
483 }
484 }
485 n = 0;
486 l = 0;
487 for (p = p1; p != p2; p = p->next)
488 switch (p->word[0]) {
489 case '(':
490 if (specp)
491 n++;
492 l++;
493 continue;
494 case ')':
495 if (specp)
496 n++;
497 l--;
498 continue;
499 case '>':
500 case '<':
501 if (l != 0) {
502 if (specp)
503 n++;
504 continue;
505 }
506 if (p->next == p2)
507 continue;
508 if (any(RELPAR, p->next->word[0]))
509 continue;
510 n--;
511 continue;
512 default:
513 if (!specp && l != 0)
514 continue;
515 n++;
516 continue;
517 }
518 if (n < 0)
519 n = 0;
520 t = (struct command *)xcalloc(1, sizeof(*t));
521 av = (Char **)xcalloc((size_t)(n + 1), sizeof(Char **));
522 t->t_dcom = av;
523 n = 0;
524 if (p2->word[0] == ')')
525 t->t_dflg = F_NOFORK;
526 lp = 0;
527 rp = 0;
528 l = 0;
529 for (p = p1; p != p2; p = p->next) {
530 c = p->word[0];
531 switch (c) {
532 case '(':
533 if (l == 0) {
534 if (lp != 0 && !specp)
535 seterror(ERR_BADPLP);
536 lp = p->next;
537 }
538 l++;
539 goto savep;
540 case ')':
541 l--;
542 if (l == 0)
543 rp = p;
544 goto savep;
545 case '>':
546 if (l != 0)
547 goto savep;
548 if (p->word[1] == '>')
549 t->t_dflg |= F_APPEND;
550 if (p->next != p2 && eq(p->next->word, STRand)) {
551 t->t_dflg |= F_STDERR, p = p->next;
552 if (flags & (POUT | PERR)) {
553 seterror(ERR_OUTRED);
554 continue;
555 }
556 }
557 if (p->next != p2 && eq(p->next->word, STRbang))
558 t->t_dflg |= F_OVERWRITE, p = p->next;
559 if (p->next == p2) {
560 seterror(ERR_MISRED);
561 continue;
562 }
563 p = p->next;
564 if (any(RELPAR, p->word[0])) {
565 seterror(ERR_MISRED);
566 continue;
567 }
568 if ((flags & POUT) && ((flags & PERR) == 0 || t->t_drit))
569 seterror(ERR_OUTRED);
570 else
571 t->t_drit = Strsave(p->word);
572 continue;
573 case '<':
574 if (l != 0)
575 goto savep;
576 if (p->word[1] == '<')
577 t->t_dflg |= F_READ;
578 if (p->next == p2) {
579 seterror(ERR_MISRED);
580 continue;
581 }
582 p = p->next;
583 if (any(RELPAR, p->word[0])) {
584 seterror(ERR_MISRED);
585 continue;
586 }
587 if ((flags & PHERE) && (t->t_dflg & F_READ))
588 seterror(ERR_REDPAR);
589 else if ((flags & PIN) || t->t_dlef)
590 seterror(ERR_INRED);
591 else
592 t->t_dlef = Strsave(p->word);
593 continue;
594 savep:
595 if (!specp)
596 continue;
597 /* FALLTHROUGH */
598 default:
599 if (l != 0 && !specp)
600 continue;
601 if (seterr == 0)
602 av[n] = Strsave(p->word);
603 n++;
604 continue;
605 }
606 }
607 if (lp != 0 && !specp) {
608 if (n != 0)
609 seterror(ERR_BADPLPS);
610 t->t_dtyp = NODE_PAREN;
611 t->t_dspr = syn0(lp, rp, PHERE);
612 }
613 else {
614 if (n == 0)
615 seterror(ERR_NULLCOM);
616 t->t_dtyp = NODE_COMMAND;
617 }
618 return (t);
619 }
620
621 void
622 freesyn(struct command *t)
623 {
624 Char **v;
625
626 if (t == 0)
627 return;
628 switch (t->t_dtyp) {
629 case NODE_COMMAND:
630 for (v = t->t_dcom; *v; v++)
631 xfree((ptr_t) * v);
632 xfree((ptr_t)(t->t_dcom));
633 xfree((ptr_t)t->t_dlef);
634 xfree((ptr_t)t->t_drit);
635 break;
636 case NODE_PAREN:
637 freesyn(t->t_dspr);
638 xfree((ptr_t)t->t_dlef);
639 xfree((ptr_t)t->t_drit);
640 break;
641 case NODE_AND:
642 case NODE_OR:
643 case NODE_PIPE:
644 case NODE_LIST:
645 freesyn(t->t_dcar), freesyn(t->t_dcdr);
646 break;
647 }
648 xfree((ptr_t)t);
649 }
650