func.c revision 1.11 1 /* $NetBSD: func.c,v 1.11 1996/02/09 02:28:29 christos 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 #ifndef lint
37 #if 0
38 static char sccsid[] = "@(#)func.c 8.1 (Berkeley) 5/31/93";
39 #else
40 static char rcsid[] = "$NetBSD: func.c,v 1.11 1996/02/09 02:28:29 christos Exp $";
41 #endif
42 #endif /* not lint */
43
44 #include <sys/types.h>
45 #include <sys/stat.h>
46 #include <signal.h>
47 #include <locale.h>
48 #include <stdlib.h>
49 #include <string.h>
50 #include <unistd.h>
51 #if __STDC__
52 # include <stdarg.h>
53 #else
54 # include <varargs.h>
55 #endif
56
57 #include "csh.h"
58 #include "extern.h"
59 #include "pathnames.h"
60
61 extern char **environ;
62
63 static int zlast = -1;
64 static void islogin __P((void));
65 static void reexecute __P((struct command *));
66 static void preread __P((void));
67 static void doagain __P((void));
68 static void search __P((int, int, Char *));
69 static int getword __P((Char *));
70 static int keyword __P((Char *));
71 static void toend __P((void));
72 static void xecho __P((int, Char **));
73 static void Unsetenv __P((Char *));
74
75 struct biltins *
76 isbfunc(t)
77 struct command *t;
78 {
79 register Char *cp = t->t_dcom[0];
80 register struct biltins *bp, *bp1, *bp2;
81 static struct biltins label = {"", dozip, 0, 0};
82 static struct biltins foregnd = {"%job", dofg1, 0, 0};
83 static struct biltins backgnd = {"%job &", dobg1, 0, 0};
84
85 if (lastchr(cp) == ':') {
86 label.bname = short2str(cp);
87 return (&label);
88 }
89 if (*cp == '%') {
90 if (t->t_dflg & F_AMPERSAND) {
91 t->t_dflg &= ~F_AMPERSAND;
92 backgnd.bname = short2str(cp);
93 return (&backgnd);
94 }
95 foregnd.bname = short2str(cp);
96 return (&foregnd);
97 }
98 /*
99 * Binary search Bp1 is the beginning of the current search range. Bp2 is
100 * one past the end.
101 */
102 for (bp1 = bfunc, bp2 = bfunc + nbfunc; bp1 < bp2;) {
103 register i;
104
105 bp = bp1 + ((bp2 - bp1) >> 1);
106 if ((i = *cp - *bp->bname) == 0 &&
107 (i = Strcmp(cp, str2short(bp->bname))) == 0)
108 return bp;
109 if (i < 0)
110 bp2 = bp;
111 else
112 bp1 = bp + 1;
113 }
114 return (0);
115 }
116
117 void
118 func(t, bp)
119 register struct command *t;
120 register struct biltins *bp;
121 {
122 int i;
123
124 xechoit(t->t_dcom);
125 setname(bp->bname);
126 i = blklen(t->t_dcom) - 1;
127 if (i < bp->minargs)
128 stderror(ERR_NAME | ERR_TOOFEW);
129 if (i > bp->maxargs)
130 stderror(ERR_NAME | ERR_TOOMANY);
131 (*bp->bfunct) (t->t_dcom, t);
132 }
133
134 void
135 /*ARGSUSED*/
136 doonintr(v, t)
137 Char **v;
138 struct command *t;
139 {
140 register Char *cp;
141 register Char *vv = v[1];
142 sigset_t sigset;
143
144 if (parintr == SIG_IGN)
145 return;
146 if (setintr && intty)
147 stderror(ERR_NAME | ERR_TERMINAL);
148 cp = gointr;
149 gointr = 0;
150 xfree((ptr_t) cp);
151 if (vv == 0) {
152 if (setintr) {
153 sigemptyset(&sigset);
154 sigaddset(&sigset, SIGINT);
155 sigprocmask(SIG_BLOCK, &sigset, NULL);
156 } else
157 (void) signal(SIGINT, SIG_DFL);
158 gointr = 0;
159 }
160 else if (eq((vv = strip(vv)), STRminus)) {
161 (void) signal(SIGINT, SIG_IGN);
162 gointr = Strsave(STRminus);
163 }
164 else {
165 gointr = Strsave(vv);
166 (void) signal(SIGINT, pintr);
167 }
168 }
169
170 void
171 /*ARGSUSED*/
172 donohup(v, t)
173 Char **v;
174 struct command *t;
175 {
176 if (intty)
177 stderror(ERR_NAME | ERR_TERMINAL);
178 if (setintr == 0) {
179 (void) signal(SIGHUP, SIG_IGN);
180 }
181 }
182
183 void
184 /*ARGSUSED*/
185 dozip(v, t)
186 Char **v;
187 struct command *t;
188 {
189 ;
190 }
191
192 void
193 prvars()
194 {
195 plist(&shvhed);
196 }
197
198 void
199 /*ARGSUSED*/
200 doalias(v, t)
201 Char **v;
202 struct command *t;
203 {
204 register struct varent *vp;
205 register Char *p;
206
207 v++;
208 p = *v++;
209 if (p == 0)
210 plist(&aliases);
211 else if (*v == 0) {
212 vp = adrof1(strip(p), &aliases);
213 if (vp) {
214 blkpr(cshout, vp->vec);
215 fputc('\n', cshout);
216 }
217 }
218 else {
219 if (eq(p, STRalias) || eq(p, STRunalias)) {
220 setname(vis_str(p));
221 stderror(ERR_NAME | ERR_DANGER);
222 }
223 set1(strip(p), saveblk(v), &aliases);
224 }
225 }
226
227 void
228 /*ARGSUSED*/
229 unalias(v, t)
230 Char **v;
231 struct command *t;
232 {
233 unset1(v, &aliases);
234 }
235
236 void
237 /*ARGSUSED*/
238 dologout(v, t)
239 Char **v;
240 struct command *t;
241 {
242 islogin();
243 goodbye();
244 }
245
246 void
247 /*ARGSUSED*/
248 dologin(v, t)
249 Char **v;
250 struct command *t;
251 {
252 islogin();
253 rechist();
254 (void) signal(SIGTERM, parterm);
255 (void) execl(_PATH_LOGIN, "login", short2str(v[1]), NULL);
256 untty();
257 xexit(1);
258 }
259
260 static void
261 islogin()
262 {
263 if (chkstop == 0 && setintr)
264 panystop(0);
265 if (loginsh)
266 return;
267 stderror(ERR_NOTLOGIN);
268 }
269
270 void
271 doif(v, kp)
272 Char **v;
273 struct command *kp;
274 {
275 register int i;
276 register Char **vv;
277
278 v++;
279 i = expr(&v);
280 vv = v;
281 if (*vv == NULL)
282 stderror(ERR_NAME | ERR_EMPTYIF);
283 if (eq(*vv, STRthen)) {
284 if (*++vv)
285 stderror(ERR_NAME | ERR_IMPRTHEN);
286 setname(vis_str(STRthen));
287 /*
288 * If expression was zero, then scan to else, otherwise just fall into
289 * following code.
290 */
291 if (!i)
292 search(T_IF, 0, NULL);
293 return;
294 }
295 /*
296 * Simple command attached to this if. Left shift the node in this tree,
297 * munging it so we can reexecute it.
298 */
299 if (i) {
300 lshift(kp->t_dcom, vv - kp->t_dcom);
301 reexecute(kp);
302 donefds();
303 }
304 }
305
306 /*
307 * Reexecute a command, being careful not
308 * to redo i/o redirection, which is already set up.
309 */
310 static void
311 reexecute(kp)
312 register struct command *kp;
313 {
314 kp->t_dflg &= F_SAVE;
315 kp->t_dflg |= F_REPEAT;
316 /*
317 * If tty is still ours to arbitrate, arbitrate it; otherwise dont even set
318 * pgrp's as the jobs would then have no way to get the tty (we can't give
319 * it to them, and our parent wouldn't know their pgrp, etc.
320 */
321 execute(kp, (tpgrp > 0 ? tpgrp : -1), NULL, NULL);
322 }
323
324 void
325 /*ARGSUSED*/
326 doelse(v, t)
327 Char **v;
328 struct command *t;
329 {
330 search(T_ELSE, 0, NULL);
331 }
332
333 void
334 /*ARGSUSED*/
335 dogoto(v, t)
336 Char **v;
337 struct command *t;
338 {
339 Char *lp;
340
341 gotolab(lp = globone(v[1], G_ERROR));
342 xfree((ptr_t) lp);
343 }
344
345 void
346 gotolab(lab)
347 Char *lab;
348 {
349 register struct whyle *wp;
350 /*
351 * While we still can, locate any unknown ends of existing loops. This
352 * obscure code is the WORST result of the fact that we don't really parse.
353 */
354 zlast = T_GOTO;
355 for (wp = whyles; wp; wp = wp->w_next)
356 if (wp->w_end.type == F_SEEK && wp->w_end.f_seek == 0) {
357 search(T_BREAK, 0, NULL);
358 btell(&wp->w_end);
359 }
360 else
361 bseek(&wp->w_end);
362 search(T_GOTO, 0, lab);
363 /*
364 * Eliminate loops which were exited.
365 */
366 wfree();
367 }
368
369 void
370 /*ARGSUSED*/
371 doswitch(v, t)
372 Char **v;
373 struct command *t;
374 {
375 register Char *cp, *lp;
376
377 v++;
378 if (!*v || *(*v++) != '(')
379 stderror(ERR_SYNTAX);
380 cp = **v == ')' ? STRNULL : *v++;
381 if (*(*v++) != ')')
382 v--;
383 if (*v)
384 stderror(ERR_SYNTAX);
385 search(T_SWITCH, 0, lp = globone(cp, G_ERROR));
386 xfree((ptr_t) lp);
387 }
388
389 void
390 /*ARGSUSED*/
391 dobreak(v, t)
392 Char **v;
393 struct command *t;
394 {
395 if (whyles)
396 toend();
397 else
398 stderror(ERR_NAME | ERR_NOTWHILE);
399 }
400
401 void
402 /*ARGSUSED*/
403 doexit(v, t)
404 Char **v;
405 struct command *t;
406 {
407 if (chkstop == 0 && (intty || intact) && evalvec == 0)
408 panystop(0);
409 /*
410 * Don't DEMAND parentheses here either.
411 */
412 v++;
413 if (*v) {
414 set(STRstatus, putn(expr(&v)));
415 if (*v)
416 stderror(ERR_NAME | ERR_EXPRESSION);
417 }
418 btoeof();
419 if (intty)
420 (void) close(SHIN);
421 }
422
423 void
424 /*ARGSUSED*/
425 doforeach(v, t)
426 Char **v;
427 struct command *t;
428 {
429 register Char *cp, *sp;
430 register struct whyle *nwp;
431
432 v++;
433 sp = cp = strip(*v);
434 if (!letter(*sp))
435 stderror(ERR_NAME | ERR_VARBEGIN);
436 while (*cp && alnum(*cp))
437 cp++;
438 if (*cp)
439 stderror(ERR_NAME | ERR_VARALNUM);
440 if ((cp - sp) > MAXVARLEN)
441 stderror(ERR_NAME | ERR_VARTOOLONG);
442 cp = *v++;
443 if (v[0][0] != '(' || v[blklen(v) - 1][0] != ')')
444 stderror(ERR_NAME | ERR_NOPAREN);
445 v++;
446 gflag = 0, tglob(v);
447 v = globall(v);
448 if (v == 0)
449 stderror(ERR_NAME | ERR_NOMATCH);
450 nwp = (struct whyle *) xcalloc(1, sizeof *nwp);
451 nwp->w_fe = nwp->w_fe0 = v;
452 gargv = 0;
453 btell(&nwp->w_start);
454 nwp->w_fename = Strsave(cp);
455 nwp->w_next = whyles;
456 nwp->w_end.type = F_SEEK;
457 whyles = nwp;
458 /*
459 * Pre-read the loop so as to be more comprehensible to a terminal user.
460 */
461 zlast = T_FOREACH;
462 if (intty)
463 preread();
464 doagain();
465 }
466
467 void
468 /*ARGSUSED*/
469 dowhile(v, t)
470 Char **v;
471 struct command *t;
472 {
473 register int status;
474 register bool again = whyles != 0 && SEEKEQ(&whyles->w_start, &lineloc) &&
475 whyles->w_fename == 0;
476
477 v++;
478 /*
479 * Implement prereading here also, taking care not to evaluate the
480 * expression before the loop has been read up from a terminal.
481 */
482 if (intty && !again)
483 status = !exp0(&v, 1);
484 else
485 status = !expr(&v);
486 if (*v)
487 stderror(ERR_NAME | ERR_EXPRESSION);
488 if (!again) {
489 register struct whyle *nwp =
490 (struct whyle *) xcalloc(1, sizeof(*nwp));
491
492 nwp->w_start = lineloc;
493 nwp->w_end.type = F_SEEK;
494 nwp->w_end.f_seek = 0;
495 nwp->w_next = whyles;
496 whyles = nwp;
497 zlast = T_WHILE;
498 if (intty) {
499 /*
500 * The tty preread
501 */
502 preread();
503 doagain();
504 return;
505 }
506 }
507 if (status)
508 /* We ain't gonna loop no more, no more! */
509 toend();
510 }
511
512 static void
513 preread()
514 {
515 sigset_t sigset;
516
517 whyles->w_end.type = I_SEEK;
518 if (setintr) {
519 sigemptyset(&sigset);
520 sigaddset(&sigset, SIGINT);
521 sigprocmask(SIG_UNBLOCK, &sigset, NULL);
522 }
523
524 search(T_BREAK, 0, NULL); /* read the expression in */
525 if (setintr)
526 sigprocmask(SIG_BLOCK, &sigset, NULL);
527 btell(&whyles->w_end);
528 }
529
530 void
531 /*ARGSUSED*/
532 doend(v, t)
533 Char **v;
534 struct command *t;
535 {
536 if (!whyles)
537 stderror(ERR_NAME | ERR_NOTWHILE);
538 btell(&whyles->w_end);
539 doagain();
540 }
541
542 void
543 /*ARGSUSED*/
544 docontin(v, t)
545 Char **v;
546 struct command *t;
547 {
548 if (!whyles)
549 stderror(ERR_NAME | ERR_NOTWHILE);
550 doagain();
551 }
552
553 static void
554 doagain()
555 {
556 /* Repeating a while is simple */
557 if (whyles->w_fename == 0) {
558 bseek(&whyles->w_start);
559 return;
560 }
561 /*
562 * The foreach variable list actually has a spurious word ")" at the end of
563 * the w_fe list. Thus we are at the of the list if one word beyond this
564 * is 0.
565 */
566 if (!whyles->w_fe[1]) {
567 dobreak(NULL, NULL);
568 return;
569 }
570 set(whyles->w_fename, Strsave(*whyles->w_fe++));
571 bseek(&whyles->w_start);
572 }
573
574 void
575 dorepeat(v, kp)
576 Char **v;
577 struct command *kp;
578 {
579 register int i;
580 sigset_t sigset;
581
582 i = getn(v[1]);
583 if (setintr) {
584 sigemptyset(&sigset);
585 sigaddset(&sigset, SIGINT);
586 sigprocmask(SIG_BLOCK, &sigset, NULL);
587 }
588 lshift(v, 2);
589 while (i > 0) {
590 if (setintr)
591 sigprocmask(SIG_UNBLOCK, &sigset, NULL);
592 reexecute(kp);
593 --i;
594 }
595 donefds();
596 if (setintr)
597 sigprocmask(SIG_UNBLOCK, &sigset, NULL);
598 }
599
600 void
601 /*ARGSUSED*/
602 doswbrk(v, t)
603 Char **v;
604 struct command *t;
605 {
606 search(T_BRKSW, 0, NULL);
607 }
608
609 int
610 srchx(cp)
611 register Char *cp;
612 {
613 register struct srch *sp, *sp1, *sp2;
614 register i;
615
616 /*
617 * Binary search Sp1 is the beginning of the current search range. Sp2 is
618 * one past the end.
619 */
620 for (sp1 = srchn, sp2 = srchn + nsrchn; sp1 < sp2;) {
621 sp = sp1 + ((sp2 - sp1) >> 1);
622 if ((i = *cp - *sp->s_name) == 0 &&
623 (i = Strcmp(cp, str2short(sp->s_name))) == 0)
624 return sp->s_value;
625 if (i < 0)
626 sp2 = sp;
627 else
628 sp1 = sp + 1;
629 }
630 return (-1);
631 }
632
633 static Char Stype;
634 static Char *Sgoal;
635
636 /*VARARGS2*/
637 static void
638 search(type, level, goal)
639 int type;
640 register int level;
641 Char *goal;
642 {
643 Char wordbuf[BUFSIZ];
644 register Char *aword = wordbuf;
645 register Char *cp;
646
647 Stype = type;
648 Sgoal = goal;
649 if (type == T_GOTO) {
650 struct Ain a;
651 a.type = F_SEEK;
652 a.f_seek = 0;
653 bseek(&a);
654 }
655 do {
656 if (intty && fseekp == feobp && aret == F_SEEK)
657 (void) fprintf(cshout, "? "), (void) fflush(cshout);
658 aword[0] = 0;
659 (void) getword(aword);
660 switch (srchx(aword)) {
661
662 case T_ELSE:
663 if (level == 0 && type == T_IF)
664 return;
665 break;
666
667 case T_IF:
668 while (getword(aword))
669 continue;
670 if ((type == T_IF || type == T_ELSE) &&
671 eq(aword, STRthen))
672 level++;
673 break;
674
675 case T_ENDIF:
676 if (type == T_IF || type == T_ELSE)
677 level--;
678 break;
679
680 case T_FOREACH:
681 case T_WHILE:
682 if (type == T_BREAK)
683 level++;
684 break;
685
686 case T_END:
687 if (type == T_BREAK)
688 level--;
689 break;
690
691 case T_SWITCH:
692 if (type == T_SWITCH || type == T_BRKSW)
693 level++;
694 break;
695
696 case T_ENDSW:
697 if (type == T_SWITCH || type == T_BRKSW)
698 level--;
699 break;
700
701 case T_LABEL:
702 if (type == T_GOTO && getword(aword) && eq(aword, goal))
703 level = -1;
704 break;
705
706 default:
707 if (type != T_GOTO && (type != T_SWITCH || level != 0))
708 break;
709 if (lastchr(aword) != ':')
710 break;
711 aword[Strlen(aword) - 1] = 0;
712 if ((type == T_GOTO && eq(aword, goal)) ||
713 (type == T_SWITCH && eq(aword, STRdefault)))
714 level = -1;
715 break;
716
717 case T_CASE:
718 if (type != T_SWITCH || level != 0)
719 break;
720 (void) getword(aword);
721 if (lastchr(aword) == ':')
722 aword[Strlen(aword) - 1] = 0;
723 cp = strip(Dfix1(aword));
724 if (Gmatch(goal, cp))
725 level = -1;
726 xfree((ptr_t) cp);
727 break;
728
729 case T_DEFAULT:
730 if (type == T_SWITCH && level == 0)
731 level = -1;
732 break;
733 }
734 (void) getword(NULL);
735 } while (level >= 0);
736 }
737
738 static int
739 getword(wp)
740 register Char *wp;
741 {
742 register int found = 0;
743 register int c, d;
744 int kwd = 0;
745 Char *owp = wp;
746
747 c = readc(1);
748 d = 0;
749 do {
750 while (c == ' ' || c == '\t')
751 c = readc(1);
752 if (c == '#')
753 do
754 c = readc(1);
755 while (c >= 0 && c != '\n');
756 if (c < 0)
757 goto past;
758 if (c == '\n') {
759 if (wp)
760 break;
761 return (0);
762 }
763 unreadc(c);
764 found = 1;
765 do {
766 c = readc(1);
767 if (c == '\\' && (c = readc(1)) == '\n')
768 c = ' ';
769 if (c == '\'' || c == '"')
770 if (d == 0)
771 d = c;
772 else if (d == c)
773 d = 0;
774 if (c < 0)
775 goto past;
776 if (wp) {
777 *wp++ = c;
778 *wp = 0; /* end the string b4 test */
779 }
780 } while ((d || (!(kwd = keyword(owp)) && c != ' '
781 && c != '\t')) && c != '\n');
782 } while (wp == 0);
783
784 /*
785 * if we have read a keyword ( "if", "switch" or "while" ) then we do not
786 * need to unreadc the look-ahead char
787 */
788 if (!kwd) {
789 unreadc(c);
790 if (found)
791 *--wp = 0;
792 }
793
794 return (found);
795
796 past:
797 switch (Stype) {
798
799 case T_IF:
800 stderror(ERR_NAME | ERR_NOTFOUND, "then/endif");
801
802 case T_ELSE:
803 stderror(ERR_NAME | ERR_NOTFOUND, "endif");
804
805 case T_BRKSW:
806 case T_SWITCH:
807 stderror(ERR_NAME | ERR_NOTFOUND, "endsw");
808
809 case T_BREAK:
810 stderror(ERR_NAME | ERR_NOTFOUND, "end");
811
812 case T_GOTO:
813 setname(vis_str(Sgoal));
814 stderror(ERR_NAME | ERR_NOTFOUND, "label");
815 }
816 /* NOTREACHED */
817 return (0);
818 }
819
820 /*
821 * keyword(wp) determines if wp is one of the built-n functions if,
822 * switch or while. It seems that when an if statement looks like
823 * "if(" then getword above sucks in the '(' and so the search routine
824 * never finds what it is scanning for. Rather than rewrite doword, I hack
825 * in a test to see if the string forms a keyword. Then doword stops
826 * and returns the word "if" -strike
827 */
828
829 static int
830 keyword(wp)
831 Char *wp;
832 {
833 static Char STRif[] = {'i', 'f', '\0'};
834 static Char STRwhile[] = {'w', 'h', 'i', 'l', 'e', '\0'};
835 static Char STRswitch[] = {'s', 'w', 'i', 't', 'c', 'h', '\0'};
836
837 if (!wp)
838 return (0);
839
840 if ((Strcmp(wp, STRif) == 0) || (Strcmp(wp, STRwhile) == 0)
841 || (Strcmp(wp, STRswitch) == 0))
842 return (1);
843
844 return (0);
845 }
846
847 static void
848 toend()
849 {
850 if (whyles->w_end.type == F_SEEK && whyles->w_end.f_seek == 0) {
851 search(T_BREAK, 0, NULL);
852 btell(&whyles->w_end);
853 whyles->w_end.f_seek--;
854 }
855 else
856 bseek(&whyles->w_end);
857 wfree();
858 }
859
860 void
861 wfree()
862 {
863 struct Ain o;
864 struct whyle *nwp;
865
866 btell(&o);
867
868 for (; whyles; whyles = nwp) {
869 register struct whyle *wp = whyles;
870 nwp = wp->w_next;
871
872 /*
873 * We free loops that have different seek types.
874 */
875 if (wp->w_end.type != I_SEEK && wp->w_start.type == wp->w_end.type &&
876 wp->w_start.type == o.type) {
877 if (wp->w_end.type == F_SEEK) {
878 if (o.f_seek >= wp->w_start.f_seek &&
879 (wp->w_end.f_seek == 0 || o.f_seek < wp->w_end.f_seek))
880 break;
881 }
882 else {
883 if (o.a_seek >= wp->w_start.a_seek &&
884 (wp->w_end.a_seek == 0 || o.a_seek < wp->w_end.a_seek))
885 break;
886 }
887 }
888
889 if (wp->w_fe0)
890 blkfree(wp->w_fe0);
891 if (wp->w_fename)
892 xfree((ptr_t) wp->w_fename);
893 xfree((ptr_t) wp);
894 }
895 }
896
897 void
898 /*ARGSUSED*/
899 doecho(v, t)
900 Char **v;
901 struct command *t;
902 {
903 xecho(' ', v);
904 }
905
906 void
907 /*ARGSUSED*/
908 doglob(v, t)
909 Char **v;
910 struct command *t;
911 {
912 xecho(0, v);
913 (void) fflush(cshout);
914 }
915
916 static void
917 xecho(sep, v)
918 int sep;
919 register Char **v;
920 {
921 register Char *cp;
922 int nonl = 0;
923 sigset_t sigset;
924
925 if (setintr) {
926 sigemptyset(&sigset);
927 sigaddset(&sigset, SIGINT);
928 sigprocmask(SIG_UNBLOCK, &sigset, NULL);
929 }
930 v++;
931 if (*v == 0)
932 return;
933 gflag = 0, tglob(v);
934 if (gflag) {
935 v = globall(v);
936 if (v == 0)
937 stderror(ERR_NAME | ERR_NOMATCH);
938 }
939 else {
940 v = gargv = saveblk(v);
941 trim(v);
942 }
943 if (sep == ' ' && *v && eq(*v, STRmn))
944 nonl++, v++;
945 while ((cp = *v++) != NULL) {
946 register int c;
947
948 while ((c = *cp++) != '\0')
949 (void) vis_fputc(c | QUOTE, cshout);
950
951 if (*v)
952 (void) vis_fputc(sep | QUOTE, cshout);
953 }
954 if (sep && nonl == 0)
955 (void) fputc('\n', cshout);
956 else
957 (void) fflush(cshout);
958 if (setintr)
959 sigprocmask(SIG_BLOCK, &sigset, NULL);
960 if (gargv)
961 blkfree(gargv), gargv = 0;
962 }
963
964 void
965 /*ARGSUSED*/
966 dosetenv(v, t)
967 Char **v;
968 struct command *t;
969 {
970 Char *vp, *lp;
971 sigset_t sigset;
972
973 v++;
974 if ((vp = *v++) == 0) {
975 register Char **ep;
976
977 if (setintr) {
978 sigemptyset(&sigset);
979 sigaddset(&sigset, SIGINT);
980 sigprocmask(SIG_UNBLOCK, &sigset, NULL);
981 }
982 for (ep = STR_environ; *ep; ep++)
983 (void) fprintf(cshout, "%s\n", vis_str(*ep));
984 return;
985 }
986 if ((lp = *v++) == 0)
987 lp = STRNULL;
988 Setenv(vp, lp = globone(lp, G_APPEND));
989 if (eq(vp, STRPATH)) {
990 importpath(lp);
991 dohash(NULL, NULL);
992 }
993 else if (eq(vp, STRLANG) || eq(vp, STRLC_CTYPE)) {
994 #ifdef NLS
995 int k;
996
997 (void) setlocale(LC_ALL, "");
998 for (k = 0200; k <= 0377 && !Isprint(k); k++)
999 continue;
1000 AsciiOnly = k > 0377;
1001 #else
1002 AsciiOnly = 0;
1003 #endif /* NLS */
1004 }
1005 xfree((ptr_t) lp);
1006 }
1007
1008 void
1009 /*ARGSUSED*/
1010 dounsetenv(v, t)
1011 Char **v;
1012 struct command *t;
1013 {
1014 Char **ep, *p, *n;
1015 int i, maxi;
1016 static Char *name = NULL;
1017
1018 if (name)
1019 xfree((ptr_t) name);
1020 /*
1021 * Find the longest environment variable
1022 */
1023 for (maxi = 0, ep = STR_environ; *ep; ep++) {
1024 for (i = 0, p = *ep; *p && *p != '='; p++, i++)
1025 continue;
1026 if (i > maxi)
1027 maxi = i;
1028 }
1029
1030 name = (Char *) xmalloc((size_t) (maxi + 1) * sizeof(Char));
1031
1032 while (++v && *v)
1033 for (maxi = 1; maxi;)
1034 for (maxi = 0, ep = STR_environ; *ep; ep++) {
1035 for (n = name, p = *ep; *p && *p != '='; *n++ = *p++)
1036 continue;
1037 *n = '\0';
1038 if (!Gmatch(name, *v))
1039 continue;
1040 maxi = 1;
1041 if (eq(name, STRLANG) || eq(name, STRLC_CTYPE)) {
1042 #ifdef NLS
1043 int k;
1044
1045 (void) setlocale(LC_ALL, "");
1046 for (k = 0200; k <= 0377 && !Isprint(k); k++)
1047 continue;
1048 AsciiOnly = k > 0377;
1049 #else
1050 AsciiOnly = getenv("LANG") == NULL &&
1051 getenv("LC_CTYPE") == NULL;
1052 #endif /* NLS */
1053 }
1054 /*
1055 * Delete name, and start again cause the environment changes
1056 */
1057 Unsetenv(name);
1058 break;
1059 }
1060 xfree((ptr_t) name);
1061 name = NULL;
1062 }
1063
1064 void
1065 Setenv(name, val)
1066 Char *name, *val;
1067 {
1068 register Char **ep = STR_environ;
1069 register Char *cp, *dp;
1070 Char *blk[2];
1071 Char **oep = ep;
1072
1073
1074 for (; *ep; ep++) {
1075 for (cp = name, dp = *ep; *cp && *cp == *dp; cp++, dp++)
1076 continue;
1077 if (*cp != 0 || *dp != '=')
1078 continue;
1079 cp = Strspl(STRequal, val);
1080 xfree((ptr_t) * ep);
1081 *ep = strip(Strspl(name, cp));
1082 xfree((ptr_t) cp);
1083 blkfree((Char **) environ);
1084 environ = short2blk(STR_environ);
1085 return;
1086 }
1087 cp = Strspl(name, STRequal);
1088 blk[0] = strip(Strspl(cp, val));
1089 xfree((ptr_t) cp);
1090 blk[1] = 0;
1091 STR_environ = blkspl(STR_environ, blk);
1092 blkfree((Char **) environ);
1093 environ = short2blk(STR_environ);
1094 xfree((ptr_t) oep);
1095 }
1096
1097 static void
1098 Unsetenv(name)
1099 Char *name;
1100 {
1101 register Char **ep = STR_environ;
1102 register Char *cp, *dp;
1103 Char **oep = ep;
1104
1105 for (; *ep; ep++) {
1106 for (cp = name, dp = *ep; *cp && *cp == *dp; cp++, dp++)
1107 continue;
1108 if (*cp != 0 || *dp != '=')
1109 continue;
1110 cp = *ep;
1111 *ep = 0;
1112 STR_environ = blkspl(STR_environ, ep + 1);
1113 environ = short2blk(STR_environ);
1114 *ep = cp;
1115 xfree((ptr_t) cp);
1116 xfree((ptr_t) oep);
1117 return;
1118 }
1119 }
1120
1121 void
1122 /*ARGSUSED*/
1123 doumask(v, t)
1124 Char **v;
1125 struct command *t;
1126 {
1127 register Char *cp = v[1];
1128 register int i;
1129
1130 if (cp == 0) {
1131 i = umask(0);
1132 (void) umask(i);
1133 (void) fprintf(cshout, "%o\n", i);
1134 return;
1135 }
1136 i = 0;
1137 while (Isdigit(*cp) && *cp != '8' && *cp != '9')
1138 i = i * 8 + *cp++ - '0';
1139 if (*cp || i < 0 || i > 0777)
1140 stderror(ERR_NAME | ERR_MASK);
1141 (void) umask(i);
1142 }
1143
1144 typedef quad_t RLIM_TYPE;
1145
1146 static struct limits {
1147 int limconst;
1148 char *limname;
1149 int limdiv;
1150 char *limscale;
1151 } limits[] = {
1152 { RLIMIT_CPU, "cputime", 1, "seconds" },
1153 { RLIMIT_FSIZE, "filesize", 1024, "kbytes" },
1154 { RLIMIT_DATA, "datasize", 1024, "kbytes" },
1155 { RLIMIT_STACK, "stacksize", 1024, "kbytes" },
1156 { RLIMIT_CORE, "coredumpsize", 1024, "kbytes" },
1157 { RLIMIT_RSS, "memoryuse", 1024, "kbytes" },
1158 { RLIMIT_MEMLOCK, "memorylocked", 1024, "kbytes" },
1159 { RLIMIT_NPROC, "maxproc", 1, "" },
1160 { RLIMIT_NOFILE, "openfiles", 1, "" },
1161 { -1, NULL, 0, NULL }
1162 };
1163
1164 static struct limits *findlim __P((Char *));
1165 static RLIM_TYPE getval __P((struct limits *, Char **));
1166 static void limtail __P((Char *, char *));
1167 static void plim __P((struct limits *, Char));
1168 static int setlim __P((struct limits *, Char, RLIM_TYPE));
1169
1170 static struct limits *
1171 findlim(cp)
1172 Char *cp;
1173 {
1174 register struct limits *lp, *res;
1175
1176 res = (struct limits *) NULL;
1177 for (lp = limits; lp->limconst >= 0; lp++)
1178 if (prefix(cp, str2short(lp->limname))) {
1179 if (res)
1180 stderror(ERR_NAME | ERR_AMBIG);
1181 res = lp;
1182 }
1183 if (res)
1184 return (res);
1185 stderror(ERR_NAME | ERR_LIMIT);
1186 /* NOTREACHED */
1187 return (0);
1188 }
1189
1190 void
1191 /*ARGSUSED*/
1192 dolimit(v, t)
1193 Char **v;
1194 struct command *t;
1195 {
1196 register struct limits *lp;
1197 register RLIM_TYPE limit;
1198 char hard = 0;
1199
1200 v++;
1201 if (*v && eq(*v, STRmh)) {
1202 hard = 1;
1203 v++;
1204 }
1205 if (*v == 0) {
1206 for (lp = limits; lp->limconst >= 0; lp++)
1207 plim(lp, hard);
1208 return;
1209 }
1210 lp = findlim(v[0]);
1211 if (v[1] == 0) {
1212 plim(lp, hard);
1213 return;
1214 }
1215 limit = getval(lp, v + 1);
1216 if (setlim(lp, hard, limit) < 0)
1217 stderror(ERR_SILENT);
1218 }
1219
1220 static RLIM_TYPE
1221 getval(lp, v)
1222 register struct limits *lp;
1223 Char **v;
1224 {
1225 register float f;
1226 double atof();
1227 Char *cp = *v++;
1228
1229 f = atof(short2str(cp));
1230
1231 while (Isdigit(*cp) || *cp == '.' || *cp == 'e' || *cp == 'E')
1232 cp++;
1233 if (*cp == 0) {
1234 if (*v == 0)
1235 return ((RLIM_TYPE) ((f + 0.5) * lp->limdiv));
1236 cp = *v;
1237 }
1238 switch (*cp) {
1239 case ':':
1240 if (lp->limconst != RLIMIT_CPU)
1241 goto badscal;
1242 return ((RLIM_TYPE) (f * 60.0 + atof(short2str(cp + 1))));
1243 case 'h':
1244 if (lp->limconst != RLIMIT_CPU)
1245 goto badscal;
1246 limtail(cp, "hours");
1247 f *= 3600.0;
1248 break;
1249 case 'm':
1250 if (lp->limconst == RLIMIT_CPU) {
1251 limtail(cp, "minutes");
1252 f *= 60.0;
1253 break;
1254 }
1255 *cp = 'm';
1256 limtail(cp, "megabytes");
1257 f *= 1024.0 * 1024.0;
1258 break;
1259 case 's':
1260 if (lp->limconst != RLIMIT_CPU)
1261 goto badscal;
1262 limtail(cp, "seconds");
1263 break;
1264 case 'M':
1265 if (lp->limconst == RLIMIT_CPU)
1266 goto badscal;
1267 *cp = 'm';
1268 limtail(cp, "megabytes");
1269 f *= 1024.0 * 1024.0;
1270 break;
1271 case 'k':
1272 if (lp->limconst == RLIMIT_CPU)
1273 goto badscal;
1274 limtail(cp, "kbytes");
1275 f *= 1024.0;
1276 break;
1277 case 'u':
1278 limtail(cp, "unlimited");
1279 return (RLIM_INFINITY);
1280 default:
1281 badscal:
1282 stderror(ERR_NAME | ERR_SCALEF);
1283 }
1284 f += 0.5;
1285 if (f > (float) RLIM_INFINITY)
1286 return RLIM_INFINITY;
1287 else
1288 return ((RLIM_TYPE) f);
1289 }
1290
1291 static void
1292 limtail(cp, str)
1293 Char *cp;
1294 char *str;
1295 {
1296 while (*cp && *cp == *str)
1297 cp++, str++;
1298 if (*cp)
1299 stderror(ERR_BADSCALE, str);
1300 }
1301
1302
1303 /*ARGSUSED*/
1304 static void
1305 plim(lp, hard)
1306 register struct limits *lp;
1307 Char hard;
1308 {
1309 struct rlimit rlim;
1310 RLIM_TYPE limit;
1311
1312 (void) fprintf(cshout, "%s \t", lp->limname);
1313
1314 (void) getrlimit(lp->limconst, &rlim);
1315 limit = hard ? rlim.rlim_max : rlim.rlim_cur;
1316
1317 if (limit == RLIM_INFINITY)
1318 (void) fprintf(cshout, "unlimited");
1319 else if (lp->limconst == RLIMIT_CPU)
1320 psecs((long) limit);
1321 else
1322 (void) fprintf(cshout, "%ld %s", (long) (limit / lp->limdiv),
1323 lp->limscale);
1324 (void) fputc('\n', cshout);
1325 }
1326
1327 void
1328 /*ARGSUSED*/
1329 dounlimit(v, t)
1330 Char **v;
1331 struct command *t;
1332 {
1333 register struct limits *lp;
1334 int lerr = 0;
1335 Char hard = 0;
1336
1337 v++;
1338 if (*v && eq(*v, STRmh)) {
1339 hard = 1;
1340 v++;
1341 }
1342 if (*v == 0) {
1343 for (lp = limits; lp->limconst >= 0; lp++)
1344 if (setlim(lp, hard, (RLIM_TYPE) RLIM_INFINITY) < 0)
1345 lerr++;
1346 if (lerr)
1347 stderror(ERR_SILENT);
1348 return;
1349 }
1350 while (*v) {
1351 lp = findlim(*v++);
1352 if (setlim(lp, hard, (RLIM_TYPE) RLIM_INFINITY) < 0)
1353 stderror(ERR_SILENT);
1354 }
1355 }
1356
1357 static int
1358 setlim(lp, hard, limit)
1359 register struct limits *lp;
1360 Char hard;
1361 RLIM_TYPE limit;
1362 {
1363 struct rlimit rlim;
1364
1365 (void) getrlimit(lp->limconst, &rlim);
1366
1367 if (hard)
1368 rlim.rlim_max = limit;
1369 else if (limit == RLIM_INFINITY && geteuid() != 0)
1370 rlim.rlim_cur = rlim.rlim_max;
1371 else
1372 rlim.rlim_cur = limit;
1373
1374 if (setrlimit(lp->limconst, &rlim) < 0) {
1375 (void) fprintf(csherr, "%s: %s: Can't %s%s limit\n", bname, lp->limname,
1376 limit == RLIM_INFINITY ? "remove" : "set",
1377 hard ? " hard" : "");
1378 return (-1);
1379 }
1380 return (0);
1381 }
1382
1383 void
1384 /*ARGSUSED*/
1385 dosuspend(v, t)
1386 Char **v;
1387 struct command *t;
1388 {
1389 int ctpgrp;
1390
1391 void (*old) ();
1392
1393 if (loginsh)
1394 stderror(ERR_SUSPLOG);
1395 untty();
1396
1397 old = signal(SIGTSTP, SIG_DFL);
1398 (void) kill(0, SIGTSTP);
1399 /* the shell stops here */
1400 (void) signal(SIGTSTP, old);
1401
1402 if (tpgrp != -1) {
1403 retry:
1404 ctpgrp = tcgetpgrp(FSHTTY);
1405 if (ctpgrp != opgrp) {
1406 old = signal(SIGTTIN, SIG_DFL);
1407 (void) kill(0, SIGTTIN);
1408 (void) signal(SIGTTIN, old);
1409 goto retry;
1410 }
1411 (void) setpgid(0, shpgrp);
1412 (void) tcsetpgrp(FSHTTY, shpgrp);
1413 }
1414 }
1415
1416 /* This is the dreaded EVAL built-in.
1417 * If you don't fiddle with file descriptors, and reset didfds,
1418 * this command will either ignore redirection inside or outside
1419 * its aguments, e.g. eval "date >x" vs. eval "date" >x
1420 * The stuff here seems to work, but I did it by trial and error rather
1421 * than really knowing what was going on. If tpgrp is zero, we are
1422 * probably a background eval, e.g. "eval date &", and we want to
1423 * make sure that any processes we start stay in our pgrp.
1424 * This is also the case for "time eval date" -- stay in same pgrp.
1425 * Otherwise, under stty tostop, processes will stop in the wrong
1426 * pgrp, with no way for the shell to get them going again. -IAN!
1427 */
1428 static Char **gv = NULL;
1429 void
1430 /*ARGSUSED*/
1431 doeval(v, t)
1432 Char **v;
1433 struct command *t;
1434 {
1435 Char **oevalvec;
1436 Char *oevalp;
1437 int odidfds;
1438 jmp_buf osetexit;
1439 int my_reenter;
1440 Char **savegv = gv;
1441 int saveIN;
1442 int saveOUT;
1443 int saveERR;
1444 int oSHIN;
1445 int oSHOUT;
1446 int oSHERR;
1447
1448 UNREGISTER(v);
1449
1450 oevalvec = evalvec;
1451 oevalp = evalp;
1452 odidfds = didfds;
1453 oSHIN = SHIN;
1454 oSHOUT = SHOUT;
1455 oSHERR = SHERR;
1456
1457 v++;
1458 if (*v == 0)
1459 return;
1460 gflag = 0, tglob(v);
1461 if (gflag) {
1462 gv = v = globall(v);
1463 gargv = 0;
1464 if (v == 0)
1465 stderror(ERR_NOMATCH);
1466 v = copyblk(v);
1467 }
1468 else {
1469 gv = NULL;
1470 v = copyblk(v);
1471 trim(v);
1472 }
1473
1474 saveIN = dcopy(SHIN, -1);
1475 saveOUT = dcopy(SHOUT, -1);
1476 saveERR = dcopy(SHERR, -1);
1477
1478 getexit(osetexit);
1479
1480 if ((my_reenter = setexit()) == 0) {
1481 evalvec = v;
1482 evalp = 0;
1483 SHIN = dcopy(0, -1);
1484 SHOUT = dcopy(1, -1);
1485 SHERR = dcopy(2, -1);
1486 didfds = 0;
1487 process(0);
1488 }
1489
1490 evalvec = oevalvec;
1491 evalp = oevalp;
1492 doneinp = 0;
1493 didfds = odidfds;
1494 (void) close(SHIN);
1495 (void) close(SHOUT);
1496 (void) close(SHERR);
1497 SHIN = dmove(saveIN, oSHIN);
1498 SHOUT = dmove(saveOUT, oSHOUT);
1499 SHERR = dmove(saveERR, oSHERR);
1500 if (gv)
1501 blkfree(gv), gv = NULL;
1502 resexit(osetexit);
1503 gv = savegv;
1504 if (my_reenter)
1505 stderror(ERR_SILENT);
1506 }
1507
1508 void
1509 /*ARGSUSED*/
1510 doprintf(v, t)
1511 Char **v;
1512 struct command *t;
1513 {
1514 char **c;
1515 extern int progprintf __P((int, char **));
1516 int ret;
1517
1518 ret = progprintf(blklen(v), c = short2blk(v));
1519 (void) fflush(cshout);
1520 (void) fflush(csherr);
1521
1522 blkfree((Char **) c);
1523 if (ret)
1524 stderror(ERR_SILENT);
1525 }
1526