eval.c revision 1.183 1 /* $NetBSD: eval.c,v 1.183 2021/11/10 15:26:34 kre Exp $ */
2
3 /*-
4 * Copyright (c) 1993
5 * The Regents of the University of California. All rights reserved.
6 *
7 * This code is derived from software contributed to Berkeley by
8 * Kenneth Almquist.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 * 3. Neither the name of the University nor the names of its contributors
19 * may be used to endorse or promote products derived from this software
20 * without specific prior written permission.
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 * SUCH DAMAGE.
33 */
34
35 #include <sys/cdefs.h>
36 #ifndef lint
37 #if 0
38 static char sccsid[] = "@(#)eval.c 8.9 (Berkeley) 6/8/95";
39 #else
40 __RCSID("$NetBSD: eval.c,v 1.183 2021/11/10 15:26:34 kre Exp $");
41 #endif
42 #endif /* not lint */
43
44 #include <stdbool.h>
45 #include <stdlib.h>
46 #include <signal.h>
47 #include <stdio.h>
48 #include <string.h>
49 #include <errno.h>
50 #include <limits.h>
51 #include <unistd.h>
52 #include <sys/fcntl.h>
53 #include <sys/stat.h>
54 #include <sys/times.h>
55 #include <sys/param.h>
56 #include <sys/types.h>
57 #include <sys/wait.h>
58 #include <sys/sysctl.h>
59
60 /*
61 * Evaluate a command.
62 */
63
64 #include "shell.h"
65 #include "nodes.h"
66 #include "syntax.h"
67 #include "expand.h"
68 #include "parser.h"
69 #include "jobs.h"
70 #include "eval.h"
71 #include "builtins.h"
72 #include "options.h"
73 #include "exec.h"
74 #include "redir.h"
75 #include "input.h"
76 #include "output.h"
77 #include "trap.h"
78 #include "var.h"
79 #include "memalloc.h"
80 #include "error.h"
81 #include "show.h"
82 #include "mystring.h"
83 #include "main.h"
84 #ifndef SMALL
85 #include "nodenames.h"
86 #include "myhistedit.h"
87 #endif
88
89
90 STATIC struct skipsave s_k_i_p;
91 #define evalskip (s_k_i_p.state)
92 #define skipcount (s_k_i_p.count)
93
94 STATIC int loopnest; /* current loop nesting level */
95 STATIC int funcnest; /* depth of function calls */
96 STATIC int builtin_flags; /* evalcommand flags for builtins */
97 /*
98 * Base function nesting level inside a dot command. Set to 0 initially
99 * and to (funcnest + 1) before every dot command to enable
100 * 1) detection of being in a file sourced by a dot command and
101 * 2) counting of function nesting in that file for the implementation
102 * of the return command.
103 * The value is reset to its previous value after the dot command.
104 */
105 STATIC int dot_funcnest;
106
107
108 const char *commandname;
109 struct strlist *cmdenviron;
110 int exitstatus; /* exit status of last command */
111 int back_exitstatus; /* exit status of backquoted command */
112
113
114 STATIC void evalloop(union node *, int);
115 STATIC void evalfor(union node *, int);
116 STATIC void evalcase(union node *, int);
117 STATIC void evalsubshell(union node *, int);
118 STATIC void expredir(union node *);
119 STATIC void evalredir(union node *, int);
120 STATIC void evalpipe(union node *);
121 STATIC void evalcommand(union node *, int, struct backcmd *);
122 STATIC void prehash(union node *);
123
124 STATIC char *find_dot_file(char *);
125
126 /*
127 * Called to reset things after an exception.
128 */
129
130 #ifdef mkinit
131 INCLUDE "eval.h"
132
133 RESET {
134 reset_eval();
135 }
136
137 SHELLPROC {
138 exitstatus = 0;
139 }
140 #endif
141
142 void
143 reset_eval(void)
144 {
145 evalskip = SKIPNONE;
146 dot_funcnest = 0;
147 loopnest = 0;
148 funcnest = 0;
149 }
150
151 static int
152 sh_pipe(int fds[2])
153 {
154 int nfd;
155
156 if (pipe(fds))
157 return -1;
158
159 if (fds[0] < 3) {
160 nfd = fcntl(fds[0], F_DUPFD, 3);
161 if (nfd != -1) {
162 close(fds[0]);
163 fds[0] = nfd;
164 }
165 }
166
167 if (fds[1] < 3) {
168 nfd = fcntl(fds[1], F_DUPFD, 3);
169 if (nfd != -1) {
170 close(fds[1]);
171 fds[1] = nfd;
172 }
173 }
174 return 0;
175 }
176
177
178 /*
179 * The eval commmand.
180 */
181
182 int
183 evalcmd(int argc, char **argv)
184 {
185 char *p;
186 char *concat;
187 char **ap;
188
189 if (argc > 1) {
190 p = argv[1];
191 if (argc > 2) {
192 STARTSTACKSTR(concat);
193 ap = argv + 2;
194 for (;;) {
195 while (*p)
196 STPUTC(*p++, concat);
197 if ((p = *ap++) == NULL)
198 break;
199 STPUTC(' ', concat);
200 }
201 STPUTC('\0', concat);
202 p = grabstackstr(concat);
203 }
204 evalstring(p, builtin_flags & EV_TESTED);
205 } else
206 exitstatus = 0;
207 return exitstatus;
208 }
209
210
211 /*
212 * Execute a command or commands contained in a string.
213 */
214
215 void
216 evalstring(char *s, int flag)
217 {
218 union node *n;
219 struct stackmark smark;
220 int last;
221 int any;
222
223 last = flag & EV_EXIT;
224 flag &= ~EV_EXIT;
225
226 setstackmark(&smark);
227 setinputstring(s, 1, line_number);
228
229 any = 0; /* to determine if exitstatus will have been set */
230 while ((n = parsecmd(0)) != NEOF) {
231 XTRACE(DBG_EVAL, ("evalstring: "), showtree(n));
232 if (n && nflag == 0) {
233 if (last && at_eof())
234 evaltree(n, flag | EV_EXIT);
235 else
236 evaltree(n, flag);
237 any = 1;
238 if (evalskip)
239 break;
240 }
241 rststackmark(&smark);
242 }
243 popfile();
244 popstackmark(&smark);
245 if (!any)
246 exitstatus = 0;
247 if (last)
248 exraise(EXEXIT);
249 }
250
251
252
253 /*
254 * Evaluate a parse tree. The value is left in the global variable
255 * exitstatus.
256 */
257
258 void
259 evaltree(union node *n, int flags)
260 {
261 bool do_etest;
262 int sflags = flags & ~EV_EXIT;
263 union node *next;
264 struct stackmark smark;
265
266 do_etest = false;
267 if (n == NULL || nflag) {
268 VTRACE(DBG_EVAL, ("evaltree(%s) called\n",
269 n == NULL ? "NULL" : "-n"));
270 if (nflag == 0)
271 exitstatus = 0;
272 goto out2;
273 }
274
275 setstackmark(&smark);
276 do {
277 #ifndef SMALL
278 displayhist = 1; /* show history substitutions done with fc */
279 #endif
280 next = NULL;
281 CTRACE(DBG_EVAL, ("pid %d, evaltree(%p: %s(%d), %#x) called\n",
282 getpid(), n, NODETYPENAME(n->type), n->type, flags));
283 /*
284 if (n->type != NCMD && traps_invalid)
285 free_traps();
286 */
287 switch (n->type) {
288 case NSEMI:
289 evaltree(n->nbinary.ch1, sflags);
290 if (nflag || evalskip)
291 goto out1;
292 next = n->nbinary.ch2;
293 break;
294 case NAND:
295 evaltree(n->nbinary.ch1, EV_TESTED);
296 if (nflag || evalskip || exitstatus != 0)
297 goto out1;
298 next = n->nbinary.ch2;
299 break;
300 case NOR:
301 evaltree(n->nbinary.ch1, EV_TESTED);
302 if (nflag || evalskip || exitstatus == 0)
303 goto out1;
304 next = n->nbinary.ch2;
305 break;
306 case NREDIR:
307 if (traps_invalid)
308 free_traps();
309 evalredir(n, flags);
310 break;
311 case NSUBSHELL:
312 evalsubshell(n, flags);
313 do_etest = !(flags & EV_TESTED);
314 break;
315 case NBACKGND:
316 if (traps_invalid)
317 free_traps();
318 evalsubshell(n, flags);
319 break;
320 case NIF: {
321 if (traps_invalid)
322 free_traps();
323 evaltree(n->nif.test, EV_TESTED);
324 if (nflag || evalskip)
325 goto out1;
326 if (exitstatus == 0)
327 next = n->nif.ifpart;
328 else if (n->nif.elsepart)
329 next = n->nif.elsepart;
330 else
331 exitstatus = 0;
332 break;
333 }
334 case NWHILE:
335 case NUNTIL:
336 if (traps_invalid)
337 free_traps();
338 evalloop(n, sflags);
339 break;
340 case NFOR:
341 if (traps_invalid)
342 free_traps();
343 evalfor(n, sflags);
344 break;
345 case NCASE:
346 if (traps_invalid)
347 free_traps();
348 evalcase(n, sflags);
349 break;
350 case NDEFUN:
351 if (traps_invalid)
352 free_traps();
353 CTRACE(DBG_EVAL, ("Defining fn %s @%d%s\n",
354 n->narg.text, n->narg.lineno,
355 fnline1 ? " LINENO=1" : ""));
356 defun(n->narg.text, n->narg.next, n->narg.lineno);
357 exitstatus = 0;
358 break;
359 case NNOT:
360 evaltree(n->nnot.com, EV_TESTED);
361 exitstatus = !exitstatus;
362 break;
363 case NDNOT:
364 evaltree(n->nnot.com, EV_TESTED);
365 if (exitstatus != 0)
366 exitstatus = 1;
367 break;
368 case NPIPE:
369 if (traps_invalid)
370 free_traps();
371 evalpipe(n);
372 do_etest = !(flags & EV_TESTED);
373 break;
374 case NCMD:
375 evalcommand(n, flags, NULL);
376 do_etest = !(flags & EV_TESTED);
377 break;
378 default:
379 #ifdef NODETYPENAME
380 out1fmt("Node type = %d(%s)\n",
381 n->type, NODETYPENAME(n->type));
382 #else
383 out1fmt("Node type = %d\n", n->type);
384 #endif
385 flushout(&output);
386 break;
387 }
388 n = next;
389 rststackmark(&smark);
390 } while(n != NULL);
391 out1:
392 popstackmark(&smark);
393 out2:
394 if (pendingsigs)
395 dotrap();
396 if (eflag && exitstatus != 0 && do_etest)
397 exitshell(exitstatus);
398 if (flags & EV_EXIT)
399 exraise(EXEXIT);
400 }
401
402
403 STATIC void
404 evalloop(union node *n, int flags)
405 {
406 int status;
407
408 loopnest++;
409 status = 0;
410
411 CTRACE(DBG_EVAL, ("evalloop %s:", NODETYPENAME(n->type)));
412 VXTRACE(DBG_EVAL, (" "), showtree(n->nbinary.ch1));
413 VXTRACE(DBG_EVAL, ("evalloop do: "), showtree(n->nbinary.ch2));
414 VTRACE(DBG_EVAL, ("evalloop done\n"));
415 CTRACE(DBG_EVAL, ("\n"));
416
417 for (;;) {
418 evaltree(n->nbinary.ch1, EV_TESTED);
419 if (nflag)
420 break;
421 if (evalskip) {
422 skipping: if (evalskip == SKIPCONT && --skipcount <= 0) {
423 evalskip = SKIPNONE;
424 continue;
425 }
426 if (evalskip == SKIPBREAK && --skipcount <= 0)
427 evalskip = SKIPNONE;
428 if (evalskip == SKIPFUNC || evalskip == SKIPFILE)
429 status = exitstatus;
430 break;
431 }
432 if (n->type == NWHILE) {
433 if (exitstatus != 0)
434 break;
435 } else {
436 if (exitstatus == 0)
437 break;
438 }
439 evaltree(n->nbinary.ch2, flags & EV_TESTED);
440 status = exitstatus;
441 if (evalskip)
442 goto skipping;
443 }
444 loopnest--;
445 exitstatus = status;
446 }
447
448
449
450 STATIC void
451 evalfor(union node *n, int flags)
452 {
453 struct arglist arglist;
454 union node *argp;
455 struct strlist *sp;
456 struct stackmark smark;
457 int status;
458
459 status = nflag ? exitstatus : 0;
460
461 setstackmark(&smark);
462 arglist.lastp = &arglist.list;
463 for (argp = n->nfor.args ; argp ; argp = argp->narg.next) {
464 expandarg(argp, &arglist, EXP_FULL | EXP_TILDE);
465 if (evalskip)
466 goto out;
467 }
468 *arglist.lastp = NULL;
469
470 loopnest++;
471 for (sp = arglist.list ; sp ; sp = sp->next) {
472 if (xflag) {
473 outxstr(expandstr(ps4val(), line_number));
474 outxstr("for ");
475 outxstr(n->nfor.var);
476 outxc('=');
477 outxshstr(sp->text);
478 outxc('\n');
479 flushout(outx);
480 }
481
482 setvar(n->nfor.var, sp->text, 0);
483 evaltree(n->nfor.body, flags & EV_TESTED);
484 status = exitstatus;
485 if (nflag)
486 break;
487 if (evalskip) {
488 if (evalskip == SKIPCONT && --skipcount <= 0) {
489 evalskip = SKIPNONE;
490 continue;
491 }
492 if (evalskip == SKIPBREAK && --skipcount <= 0)
493 evalskip = SKIPNONE;
494 break;
495 }
496 }
497 loopnest--;
498 exitstatus = status;
499 out:
500 popstackmark(&smark);
501 }
502
503
504
505 STATIC void
506 evalcase(union node *n, int flags)
507 {
508 union node *cp, *ncp;
509 union node *patp;
510 struct arglist arglist;
511 struct stackmark smark;
512 int status = 0;
513
514 setstackmark(&smark);
515 arglist.lastp = &arglist.list;
516 line_number = n->ncase.lineno;
517 expandarg(n->ncase.expr, &arglist, EXP_TILDE);
518 for (cp = n->ncase.cases; cp && evalskip == 0; cp = cp->nclist.next) {
519 for (patp = cp->nclist.pattern; patp; patp = patp->narg.next) {
520 line_number = patp->narg.lineno;
521 if (casematch(patp, arglist.list->text)) {
522 while (cp != NULL && evalskip == 0 &&
523 nflag == 0) {
524 if (cp->type == NCLISTCONT)
525 ncp = cp->nclist.next;
526 else
527 ncp = NULL;
528 line_number = cp->nclist.lineno;
529 evaltree(cp->nclist.body, flags);
530 status = exitstatus;
531 cp = ncp;
532 }
533 goto out;
534 }
535 }
536 }
537 out:
538 exitstatus = status;
539 popstackmark(&smark);
540 }
541
542
543
544 /*
545 * Kick off a subshell to evaluate a tree.
546 */
547
548 STATIC void
549 evalsubshell(union node *n, int flags)
550 {
551 struct job *jp= NULL;
552 int backgnd = (n->type == NBACKGND);
553
554 expredir(n->nredir.redirect);
555 if (xflag && n->nredir.redirect) {
556 union node *rn;
557
558 outxstr(expandstr(ps4val(), line_number));
559 outxstr("using redirections:");
560 for (rn = n->nredir.redirect; rn; rn = rn->nfile.next)
561 (void) outredir(outx, rn, ' ');
562 outxstr(" do subshell ("/*)*/);
563 if (backgnd)
564 outxstr(/*(*/") &");
565 outxc('\n');
566 flushout(outx);
567 }
568 INTOFF;
569 if ((!backgnd && flags & EV_EXIT && !have_traps() && !anyjobs()) ||
570 forkshell(jp = makejob(n, 1), n, backgnd?FORK_BG:FORK_FG) == 0) {
571 if (backgnd)
572 flags &=~ EV_TESTED;
573 INTON;
574 redirect(n->nredir.redirect, REDIR_KEEP);
575 evaltree(n->nredir.n, flags | EV_EXIT); /* never returns */
576 } else if (backgnd)
577 exitstatus = 0;
578 else
579 exitstatus = waitforjob(jp);
580 INTON;
581
582 if (!backgnd && xflag && n->nredir.redirect) {
583 outxstr(expandstr(ps4val(), line_number));
584 outxstr(/*(*/") done subshell\n");
585 flushout(outx);
586 }
587 }
588
589
590
591 /*
592 * Compute the names of the files in a redirection list.
593 */
594
595 STATIC void
596 expredir(union node *n)
597 {
598 union node *redir;
599
600 for (redir = n ; redir ; redir = redir->nfile.next) {
601 struct arglist fn;
602
603 fn.lastp = &fn.list;
604 switch (redir->type) {
605 case NFROMTO:
606 case NFROM:
607 case NTO:
608 case NCLOBBER:
609 case NAPPEND:
610 expandarg(redir->nfile.fname, &fn, EXP_TILDE | EXP_REDIR);
611 redir->nfile.expfname = fn.list->text;
612 break;
613 case NFROMFD:
614 case NTOFD:
615 if (redir->ndup.vname) {
616 expandarg(redir->ndup.vname, &fn, EXP_TILDE | EXP_REDIR);
617 fixredir(redir, fn.list->text, 1);
618 }
619 break;
620 }
621 }
622 }
623
624 /*
625 * Perform redirections for a compound command, and then do it (and restore)
626 */
627 STATIC void
628 evalredir(union node *n, int flags)
629 {
630 struct jmploc jmploc;
631 struct jmploc * const savehandler = handler;
632 volatile int in_redirect = 1;
633 const char * volatile PS4 = NULL;
634
635 expredir(n->nredir.redirect);
636
637 if (xflag && n->nredir.redirect) {
638 union node *rn;
639
640 outxstr(PS4 = expandstr(ps4val(), line_number));
641 outxstr("using redirections:");
642 for (rn = n->nredir.redirect; rn != NULL; rn = rn->nfile.next)
643 (void) outredir(outx, rn, ' ');
644 outxstr(" do {\n"); /* } */
645 flushout(outx);
646 }
647
648 if (setjmp(jmploc.loc)) {
649 int e;
650
651 handler = savehandler;
652 e = exception;
653 popredir();
654 if (PS4 != NULL) {
655 outxstr(PS4);
656 /* { */ outxstr("} failed\n");
657 flushout(outx);
658 }
659 if (e == EXERROR || e == EXEXEC) {
660 if (in_redirect) {
661 exitstatus = 2;
662 return;
663 }
664 }
665 longjmp(handler->loc, 1);
666 } else {
667 INTOFF;
668 handler = &jmploc;
669 redirect(n->nredir.redirect, REDIR_PUSH | REDIR_KEEP);
670 in_redirect = 0;
671 INTON;
672 evaltree(n->nredir.n, flags);
673 }
674 INTOFF;
675 handler = savehandler;
676 popredir();
677 INTON;
678
679 if (PS4 != NULL) {
680 outxstr(PS4);
681 /* { */ outxstr("} done\n");
682 flushout(outx);
683 }
684 }
685
686
687 /*
688 * Evaluate a pipeline. All the processes in the pipeline are children
689 * of the process creating the pipeline. (This differs from some versions
690 * of the shell, which make the last process in a pipeline the parent
691 * of all the rest.)
692 */
693
694 STATIC void
695 evalpipe(union node *n)
696 {
697 struct job *jp;
698 struct nodelist *lp;
699 int pipelen;
700 int prevfd;
701 int pip[2];
702
703 CTRACE(DBG_EVAL, ("evalpipe(%p) called\n", n));
704 pipelen = 0;
705 for (lp = n->npipe.cmdlist ; lp ; lp = lp->next)
706 pipelen++;
707 INTOFF;
708 jp = makejob(n, pipelen);
709 prevfd = -1;
710 for (lp = n->npipe.cmdlist ; lp ; lp = lp->next) {
711 prehash(lp->n);
712 pip[1] = -1;
713 if (lp->next) {
714 if (sh_pipe(pip) < 0) {
715 if (prevfd >= 0)
716 close(prevfd);
717 error("Pipe call failed: %s", strerror(errno));
718 }
719 }
720 if (forkshell(jp, lp->n,
721 n->npipe.backgnd ? FORK_BG : FORK_FG) == 0) {
722 INTON;
723 if (prevfd > 0)
724 movefd(prevfd, 0);
725 if (pip[1] >= 0) {
726 close(pip[0]);
727 movefd(pip[1], 1);
728 }
729 evaltree(lp->n, EV_EXIT);
730 }
731 if (prevfd >= 0)
732 close(prevfd);
733 prevfd = pip[0];
734 close(pip[1]);
735 }
736 if (n->npipe.backgnd == 0) {
737 exitstatus = waitforjob(jp);
738 CTRACE(DBG_EVAL, ("evalpipe: job done exit status %d\n",
739 exitstatus));
740 } else
741 exitstatus = 0;
742 INTON;
743 }
744
745
746
747 /*
748 * Execute a command inside back quotes. If it's a builtin command, we
749 * want to save its output in a block obtained from malloc. Otherwise
750 * we fork off a subprocess and get the output of the command via a pipe.
751 * Should be called with interrupts off.
752 */
753
754 void
755 evalbackcmd(union node *n, struct backcmd *result)
756 {
757 int pip[2];
758 struct job *jp;
759 struct stackmark smark; /* unnecessary (because we fork) */
760
761 result->fd = -1;
762 result->buf = NULL;
763 result->nleft = 0;
764 result->jp = NULL;
765
766 if (nflag || n == NULL)
767 goto out;
768
769 setstackmark(&smark);
770
771 #ifdef notyet
772 /*
773 * For now we disable executing builtins in the same
774 * context as the shell, because we are not keeping
775 * enough state to recover from changes that are
776 * supposed only to affect subshells. eg. echo "`cd /`"
777 */
778 if (n->type == NCMD) {
779 exitstatus = oexitstatus; /* XXX o... no longer exists */
780 evalcommand(n, EV_BACKCMD, result);
781 } else
782 #endif
783 {
784 INTOFF;
785 if (sh_pipe(pip) < 0)
786 error("Pipe call failed");
787 jp = makejob(n, 1);
788 if (forkshell(jp, n, FORK_NOJOB) == 0) {
789 FORCEINTON;
790 close(pip[0]);
791 movefd(pip[1], 1);
792 evaltree(n, EV_EXIT);
793 /* NOTREACHED */
794 }
795 close(pip[1]);
796 result->fd = pip[0];
797 result->jp = jp;
798 INTON;
799 }
800 popstackmark(&smark);
801 out:
802 CTRACE(DBG_EVAL, ("evalbackcmd done: fd=%d buf=0x%x nleft=%d jp=0x%x\n",
803 result->fd, result->buf, result->nleft, result->jp));
804 }
805
806 const char *
807 syspath(void)
808 {
809 static char *sys_path = NULL;
810 static int mib[] = {CTL_USER, USER_CS_PATH};
811 static char def_path[] = "PATH=/usr/bin:/bin:/usr/sbin:/sbin";
812 size_t len;
813
814 if (sys_path == NULL) {
815 if (sysctl(mib, 2, 0, &len, 0, 0) != -1 &&
816 (sys_path = ckmalloc(len + 5)) != NULL &&
817 sysctl(mib, 2, sys_path + 5, &len, 0, 0) != -1) {
818 memcpy(sys_path, "PATH=", 5);
819 } else {
820 ckfree(sys_path);
821 /* something to keep things happy */
822 sys_path = def_path;
823 }
824 }
825 return sys_path;
826 }
827
828 static int
829 parse_command_args(int argc, char **argv, int *use_syspath)
830 {
831 int sv_argc = argc;
832 char *cp, c;
833
834 *use_syspath = 0;
835
836 for (;;) {
837 argv++;
838 if (--argc == 0)
839 break;
840 cp = *argv;
841 if (*cp++ != '-')
842 break;
843 if (*cp == '-' && cp[1] == 0) {
844 argv++;
845 argc--;
846 break;
847 }
848 while ((c = *cp++)) {
849 switch (c) {
850 case 'p':
851 *use_syspath = 1;
852 break;
853 default:
854 /* run 'typecmd' for other options */
855 return 0;
856 }
857 }
858 }
859 return sv_argc - argc;
860 }
861
862 int vforked = 0;
863
864 /*
865 * Execute a simple command.
866 */
867
868 STATIC void
869 evalcommand(union node *cmd, int flgs, struct backcmd *backcmd)
870 {
871 struct stackmark smark;
872 union node *argp;
873 struct arglist arglist;
874 struct arglist varlist;
875 volatile int flags = flgs;
876 char ** volatile argv;
877 volatile int argc;
878 char **envp;
879 int varflag;
880 struct strlist *sp;
881 volatile int mode;
882 int pip[2];
883 struct cmdentry cmdentry;
884 struct job * volatile jp;
885 struct jmploc jmploc;
886 struct jmploc *volatile savehandler = NULL;
887 const char *volatile savecmdname;
888 volatile struct shparam saveparam;
889 struct localvar *volatile savelocalvars;
890 struct parsefile *volatile savetopfile;
891 volatile int e;
892 char * volatile lastarg;
893 const char * volatile path = pathval();
894 volatile int temp_path;
895 const int savefuncline = funclinebase;
896 const int savefuncabs = funclineabs;
897 volatile int cmd_flags = 0;
898
899 vforked = 0;
900 /* First expand the arguments. */
901 CTRACE(DBG_EVAL, ("evalcommand(%p, %d) called [%s]\n", cmd, flags,
902 cmd->ncmd.args ? cmd->ncmd.args->narg.text : ""));
903 setstackmark(&smark);
904 back_exitstatus = 0;
905
906 line_number = cmd->ncmd.lineno;
907
908 arglist.lastp = &arglist.list;
909 varflag = 1;
910 /* Expand arguments, ignoring the initial 'name=value' ones */
911 for (argp = cmd->ncmd.args ; argp ; argp = argp->narg.next) {
912 if (varflag && isassignment(argp->narg.text))
913 continue;
914 varflag = 0;
915 line_number = argp->narg.lineno;
916 expandarg(argp, &arglist, EXP_FULL | EXP_TILDE);
917 }
918 *arglist.lastp = NULL;
919
920 expredir(cmd->ncmd.redirect);
921
922 /* Now do the initial 'name=value' ones we skipped above */
923 varlist.lastp = &varlist.list;
924 for (argp = cmd->ncmd.args ; argp ; argp = argp->narg.next) {
925 line_number = argp->narg.lineno;
926 if (!isassignment(argp->narg.text))
927 break;
928 expandarg(argp, &varlist, EXP_VARTILDE);
929 }
930 *varlist.lastp = NULL;
931
932 argc = 0;
933 for (sp = arglist.list ; sp ; sp = sp->next)
934 argc++;
935 argv = stalloc(sizeof (char *) * (argc + 1));
936
937 for (sp = arglist.list ; sp ; sp = sp->next) {
938 VTRACE(DBG_EVAL, ("evalcommand arg: %s\n", sp->text));
939 *argv++ = sp->text;
940 }
941 *argv = NULL;
942 lastarg = NULL;
943 if (iflag && funcnest == 0 && argc > 0)
944 lastarg = argv[-1];
945 argv -= argc;
946
947 /* Print the command if xflag is set. */
948 if (xflag) {
949 char sep = 0;
950 union node *rn;
951
952 outxstr(expandstr(ps4val(), line_number));
953 for (sp = varlist.list ; sp ; sp = sp->next) {
954 char *p;
955
956 if (sep != 0)
957 outxc(sep);
958
959 /*
960 * The "var=" part should not be quoted, regardless
961 * of the value, or it would not represent an
962 * assignment, but rather a command
963 */
964 p = strchr(sp->text, '=');
965 if (p != NULL) {
966 *p = '\0'; /*XXX*/
967 outxshstr(sp->text);
968 outxc('=');
969 *p++ = '='; /*XXX*/
970 } else
971 p = sp->text;
972 outxshstr(p);
973 sep = ' ';
974 }
975 for (sp = arglist.list ; sp ; sp = sp->next) {
976 if (sep != 0)
977 outxc(sep);
978 outxshstr(sp->text);
979 sep = ' ';
980 }
981 for (rn = cmd->ncmd.redirect; rn; rn = rn->nfile.next)
982 if (outredir(outx, rn, sep))
983 sep = ' ';
984 outxc('\n');
985 flushout(outx);
986 }
987
988 /* Now locate the command. */
989 if (argc == 0) {
990 /*
991 * the empty command begins as a normal builtin, and
992 * remains that way while redirects are processed, then
993 * will become special before we get to doing the
994 * var assigns.
995 */
996 cmdentry.cmdtype = CMDBUILTIN;
997 cmdentry.u.bltin = bltincmd;
998 VTRACE(DBG_CMDS, ("No command name, assume \"comamnd\"\n"));
999 } else {
1000 static const char PATH[] = "PATH=";
1001
1002 /*
1003 * Modify the command lookup path, if a PATH= assignment
1004 * is present
1005 */
1006 for (sp = varlist.list; sp; sp = sp->next)
1007 if (strncmp(sp->text, PATH, sizeof(PATH) - 1) == 0)
1008 path = sp->text + sizeof(PATH) - 1;
1009
1010 do {
1011 int argsused, use_syspath;
1012
1013 find_command(argv[0], &cmdentry, cmd_flags, path);
1014 VTRACE(DBG_CMDS, ("Command %s type %d\n", argv[0],
1015 cmdentry.cmdtype));
1016 #if 0
1017 /*
1018 * This short circuits all of the processing that
1019 * should be done (including processing the
1020 * redirects), so just don't ...
1021 *
1022 * (eventually this whole #if'd block will vanish)
1023 */
1024 if (cmdentry.cmdtype == CMDUNKNOWN) {
1025 exitstatus = 127;
1026 flushout(&errout);
1027 goto out;
1028 }
1029 #endif
1030
1031 /* implement the 'command' builtin here */
1032 if (cmdentry.cmdtype != CMDBUILTIN ||
1033 cmdentry.u.bltin != bltincmd)
1034 break;
1035 VTRACE(DBG_CMDS, ("Command \"command\"\n"));
1036 cmd_flags |= DO_NOFUNC;
1037 argsused = parse_command_args(argc, argv, &use_syspath);
1038 if (argsused == 0) {
1039 /* use 'type' builtin to display info */
1040 VTRACE(DBG_CMDS,
1041 ("Command \"command\" -> \"type\"\n"));
1042 cmdentry.u.bltin = typecmd;
1043 break;
1044 }
1045 argc -= argsused;
1046 argv += argsused;
1047 if (use_syspath)
1048 path = syspath() + 5;
1049 } while (argc != 0);
1050 if (cmdentry.cmdtype == CMDSPLBLTIN && cmd_flags & DO_NOFUNC)
1051 /* posix mandates that 'command <splbltin>' act as if
1052 <splbltin> was a normal builtin */
1053 cmdentry.cmdtype = CMDBUILTIN;
1054 }
1055
1056 /*
1057 * When traps are invalid, we permit the following:
1058 * trap
1059 * command trap
1060 * eval trap
1061 * command eval trap
1062 * eval command trap
1063 * without zapping the traps completely, in all other cases we do.
1064 * Function calls also do not zap the traps (but commands they execute
1065 * probably will) - this allows a function like
1066 * trapstate() { trap -p; }
1067 * called as save_traps=$(trapstate).
1068 *
1069 * The test here permits eval "anything" but when evalstring() comes
1070 * back here again, the "anything" will be validated.
1071 * This means we can actually do:
1072 * eval eval eval command eval eval command trap
1073 * as long as we end up with just "trap"
1074 *
1075 * We permit "command" by allowing CMDBUILTIN as well as CMDSPLBLTIN
1076 *
1077 * trapcmd() takes care of doing free_traps() if it is needed there.
1078 */
1079 if (traps_invalid &&
1080 cmdentry.cmdtype != CMDFUNCTION &&
1081 ((cmdentry.cmdtype!=CMDSPLBLTIN && cmdentry.cmdtype!=CMDBUILTIN) ||
1082 (cmdentry.u.bltin != trapcmd && cmdentry.u.bltin != evalcmd)))
1083 free_traps();
1084
1085 /* Fork off a child process if necessary. */
1086 if (cmd->ncmd.backgnd
1087 || ((cmdentry.cmdtype == CMDNORMAL || cmdentry.cmdtype == CMDUNKNOWN)
1088 && (have_traps() || (flags & EV_EXIT) == 0))
1089 #ifdef notyet /* EV_BACKCMD is never set currently */
1090 /* this will need more work if/when it gets used */
1091 || ((flags & EV_BACKCMD) != 0
1092 && (cmdentry.cmdtype != CMDBUILTIN
1093 && cmdentry.cmdtype != CMDSPLBLTIN)
1094 || cmdentry.u.bltin == dotcmd
1095 || cmdentry.u.bltin == evalcmd)
1096 #endif
1097 ) {
1098 INTOFF;
1099 jp = makejob(cmd, 1);
1100 mode = cmd->ncmd.backgnd;
1101 if (flags & EV_BACKCMD) {
1102 mode = FORK_NOJOB;
1103 if (sh_pipe(pip) < 0)
1104 error("Pipe call failed");
1105 }
1106 #ifdef DO_SHAREDVFORK
1107 /* It is essential that if DO_SHAREDVFORK is defined that the
1108 * child's address space is actually shared with the parent as
1109 * we rely on this.
1110 */
1111 if (usefork == 0 && cmdentry.cmdtype == CMDNORMAL &&
1112 (!cmd->ncmd.backgnd || cmd->ncmd.redirect == NULL)) {
1113 pid_t pid;
1114 int serrno;
1115
1116 savelocalvars = localvars;
1117 localvars = NULL;
1118 vforked = 1;
1119 VFORK_BLOCK
1120 switch (pid = vfork()) {
1121 case -1:
1122 serrno = errno;
1123 VTRACE(DBG_EVAL, ("vfork() failed, errno=%d\n",
1124 serrno));
1125 INTON;
1126 error("Cannot vfork (%s)", strerror(serrno));
1127 break;
1128 case 0:
1129 /* Make sure that exceptions only unwind to
1130 * after the vfork(2)
1131 */
1132 SHELL_FORKED();
1133 if (setjmp(jmploc.loc)) {
1134 VTRACE(DBG_EVAL|DBG_ERRS|
1135 DBG_PROCS|DBG_CMDS|DBG_TRAP,
1136 ("vfork child exit exception:%d "
1137 "exitstatus:%d exerrno:%d\n",
1138 exception, exitstatus, exerrno));
1139
1140 if (exception == EXSHELLPROC) {
1141 /*
1142 * We can't progress with the
1143 * vfork, so, set vforked = 2
1144 * so the parent knows,
1145 * and _exit();
1146 */
1147 vforked = 2;
1148 _exit(0);
1149 } else {
1150 _exit(exception == EXEXIT ?
1151 exitstatus : exerrno);
1152 }
1153 }
1154 savehandler = handler;
1155 handler = &jmploc;
1156 listmklocal(varlist.list,
1157 VDOEXPORT | VEXPORT | VNOFUNC);
1158 forkchild(jp, cmd, mode, vforked);
1159 break;
1160 default:
1161 VFORK_UNDO();
1162 /* restore from vfork(2) */
1163 CTRACE(DBG_PROCS|DBG_CMDS,
1164 ("parent after vfork - vforked=%d\n",
1165 vforked));
1166 handler = savehandler;
1167 poplocalvars();
1168 localvars = savelocalvars;
1169 if (vforked == 2) {
1170 vforked = 0;
1171
1172 (void)waitpid(pid, NULL, 0);
1173 /*
1174 * We need to progress in a
1175 * normal fork fashion
1176 */
1177 goto normal_fork;
1178 }
1179 /*
1180 * Here the child has left home,
1181 * getting on with its life, so
1182 * so must we...
1183 */
1184 vforked = 0;
1185 forkparent(jp, cmd, mode, pid);
1186 goto parent;
1187 }
1188 VFORK_END
1189 } else {
1190 normal_fork:
1191 #endif
1192 if (forkshell(jp, cmd, mode) != 0)
1193 goto parent; /* at end of routine */
1194 CTRACE(DBG_PROCS|DBG_CMDS, ("Child sets EV_EXIT\n"));
1195 flags |= EV_EXIT;
1196 FORCEINTON;
1197 #ifdef DO_SHAREDVFORK
1198 }
1199 #endif
1200 if (flags & EV_BACKCMD) {
1201 if (!vforked) {
1202 FORCEINTON;
1203 }
1204 close(pip[0]);
1205 movefd(pip[1], 1);
1206 }
1207 flags |= EV_EXIT;
1208 }
1209
1210 /* This is the child process if a fork occurred. */
1211 /* Execute the command. */
1212 switch (cmdentry.cmdtype) {
1213 volatile int saved;
1214
1215 case CMDFUNCTION:
1216 VXTRACE(DBG_EVAL, ("Shell function%s: ",vforked?" VF":""),
1217 trargs(argv));
1218 redirect(cmd->ncmd.redirect, saved =
1219 !(flags & EV_EXIT) || have_traps() ? REDIR_PUSH : 0);
1220 saveparam = shellparam;
1221 shellparam.malloc = 0;
1222 shellparam.reset = 1;
1223 shellparam.nparam = argc - 1;
1224 shellparam.p = argv + 1;
1225 shellparam.optnext = NULL;
1226 INTOFF;
1227 savelocalvars = localvars;
1228 localvars = NULL;
1229 reffunc(cmdentry.u.func);
1230 INTON;
1231 if (setjmp(jmploc.loc)) {
1232 if (exception == EXSHELLPROC) {
1233 freeparam((volatile struct shparam *)
1234 &saveparam);
1235 } else {
1236 freeparam(&shellparam);
1237 shellparam = saveparam;
1238 }
1239 if (saved)
1240 popredir();
1241 unreffunc(cmdentry.u.func);
1242 poplocalvars();
1243 localvars = savelocalvars;
1244 funclinebase = savefuncline;
1245 funclineabs = savefuncabs;
1246 handler = savehandler;
1247 longjmp(handler->loc, 1);
1248 }
1249 savehandler = handler;
1250 handler = &jmploc;
1251 if (cmdentry.u.func) {
1252 if (cmdentry.lno_frel)
1253 funclinebase = cmdentry.lineno - 1;
1254 else
1255 funclinebase = 0;
1256 funclineabs = cmdentry.lineno;
1257
1258 VTRACE(DBG_EVAL,
1259 ("function: node: %d '%s' # %d%s; funclinebase=%d\n",
1260 getfuncnode(cmdentry.u.func)->type,
1261 NODETYPENAME(getfuncnode(cmdentry.u.func)->type),
1262 cmdentry.lineno, cmdentry.lno_frel?" (=1)":"",
1263 funclinebase));
1264 }
1265 listmklocal(varlist.list, VDOEXPORT | VEXPORT);
1266 /* stop shell blowing its stack */
1267 if (++funcnest > 1000)
1268 error("too many nested function calls");
1269 evaltree(getfuncnode(cmdentry.u.func),
1270 flags & (EV_TESTED|EV_EXIT));
1271 funcnest--;
1272 INTOFF;
1273 unreffunc(cmdentry.u.func);
1274 poplocalvars();
1275 localvars = savelocalvars;
1276 funclinebase = savefuncline;
1277 funclineabs = savefuncabs;
1278 freeparam(&shellparam);
1279 shellparam = saveparam;
1280 handler = savehandler;
1281 if (saved)
1282 popredir();
1283 INTON;
1284 if (evalskip == SKIPFUNC) {
1285 evalskip = SKIPNONE;
1286 skipcount = 0;
1287 }
1288 if (flags & EV_EXIT)
1289 exitshell(exitstatus);
1290 break;
1291
1292 case CMDSPLBLTIN:
1293 VTRACE(DBG_EVAL, ("special "));
1294 case CMDBUILTIN:
1295 VXTRACE(DBG_EVAL, ("builtin command [%d]%s: ", argc,
1296 vforked ? " VF" : ""), trargs(argv));
1297 mode = (cmdentry.u.bltin == execcmd) ? 0 : REDIR_PUSH;
1298 if (flags == EV_BACKCMD) {
1299 memout.nleft = 0;
1300 memout.nextc = memout.buf;
1301 memout.bufsize = 64;
1302 mode |= REDIR_BACKQ;
1303 }
1304 e = -1;
1305 savecmdname = commandname;
1306 savetopfile = getcurrentfile();
1307 savehandler = handler;
1308 temp_path = 0;
1309 if (!setjmp(jmploc.loc)) {
1310 handler = &jmploc;
1311
1312 /*
1313 * We need to ensure the command hash table isn't
1314 * corrupted by temporary PATH assignments.
1315 * However we must ensure the 'local' command works!
1316 */
1317 if (path != pathval() && (cmdentry.u.bltin == hashcmd ||
1318 cmdentry.u.bltin == typecmd)) {
1319 savelocalvars = localvars;
1320 localvars = 0;
1321 temp_path = 1;
1322 mklocal(path - 5 /* PATH= */, 0);
1323 }
1324 redirect(cmd->ncmd.redirect, mode);
1325
1326 /*
1327 * the empty command is regarded as a normal
1328 * builtin for the purposes of redirects, but
1329 * is a special builtin for var assigns.
1330 * (unless we are the "command" command.)
1331 */
1332 if (argc == 0 && !(cmd_flags & DO_NOFUNC))
1333 cmdentry.cmdtype = CMDSPLBLTIN;
1334
1335 /* exec is a special builtin, but needs this list... */
1336 cmdenviron = varlist.list;
1337 /* we must check 'readonly' flag for all builtins */
1338 listsetvar(varlist.list,
1339 cmdentry.cmdtype == CMDSPLBLTIN ? 0 : VNOSET);
1340 commandname = argv[0];
1341 /* initialize nextopt */
1342 argptr = argv + 1;
1343 optptr = NULL;
1344 /* and getopt */
1345 optreset = 1;
1346 optind = 1;
1347 builtin_flags = flags;
1348 exitstatus = cmdentry.u.bltin(argc, argv);
1349 } else {
1350 e = exception;
1351 if (e == EXINT)
1352 exitstatus = SIGINT + 128;
1353 else if (e == EXEXEC)
1354 exitstatus = exerrno;
1355 else if (e != EXEXIT)
1356 exitstatus = 2;
1357 }
1358 handler = savehandler;
1359 flushall();
1360 out1 = &output;
1361 out2 = &errout;
1362 freestdout();
1363 if (temp_path) {
1364 poplocalvars();
1365 localvars = savelocalvars;
1366 }
1367 cmdenviron = NULL;
1368 if (e != EXSHELLPROC) {
1369 commandname = savecmdname;
1370 if (flags & EV_EXIT)
1371 exitshell(exitstatus);
1372 }
1373 if (e != -1) {
1374 if ((e != EXERROR && e != EXEXEC)
1375 || cmdentry.cmdtype == CMDSPLBLTIN)
1376 exraise(e);
1377 popfilesupto(savetopfile);
1378 FORCEINTON;
1379 }
1380 if (cmdentry.u.bltin != execcmd)
1381 popredir();
1382 if (flags == EV_BACKCMD) {
1383 backcmd->buf = memout.buf;
1384 backcmd->nleft = memout.nextc - memout.buf;
1385 memout.buf = NULL;
1386 }
1387 break;
1388
1389 default:
1390 VXTRACE(DBG_EVAL, ("normal command%s: ", vforked?" VF":""),
1391 trargs(argv));
1392 redirect(cmd->ncmd.redirect,
1393 (vforked ? REDIR_VFORK : 0) | REDIR_KEEP);
1394 if (!vforked)
1395 for (sp = varlist.list ; sp ; sp = sp->next)
1396 setvareq(sp->text, VDOEXPORT|VEXPORT|VSTACK);
1397 envp = environment();
1398 shellexec(argv, envp, path, cmdentry.u.index, vforked);
1399 break;
1400 }
1401 goto out;
1402
1403 parent: /* parent process gets here (if we forked) */
1404
1405 exitstatus = 0; /* if not altered just below */
1406 if (mode == FORK_FG) { /* argument to fork */
1407 exitstatus = waitforjob(jp);
1408 } else if (mode == FORK_NOJOB) {
1409 backcmd->fd = pip[0];
1410 close(pip[1]);
1411 backcmd->jp = jp;
1412 }
1413 FORCEINTON;
1414
1415 out:
1416 if (lastarg)
1417 /* implement $_ for whatever use that really is */
1418 (void) setvarsafe("_", lastarg, VNOERROR);
1419 popstackmark(&smark);
1420 }
1421
1422
1423 /*
1424 * Search for a command. This is called before we fork so that the
1425 * location of the command will be available in the parent as well as
1426 * the child. The check for "goodname" is an overly conservative
1427 * check that the name will not be subject to expansion.
1428 */
1429
1430 STATIC void
1431 prehash(union node *n)
1432 {
1433 struct cmdentry entry;
1434
1435 if (n && n->type == NCMD && n->ncmd.args)
1436 if (goodname(n->ncmd.args->narg.text))
1437 find_command(n->ncmd.args->narg.text, &entry, 0,
1438 pathval());
1439 }
1440
1441 int
1442 in_function(void)
1443 {
1444 return funcnest;
1445 }
1446
1447 enum skipstate
1448 current_skipstate(void)
1449 {
1450 return evalskip;
1451 }
1452
1453 void
1454 save_skipstate(struct skipsave *p)
1455 {
1456 *p = s_k_i_p;
1457 }
1458
1459 void
1460 restore_skipstate(const struct skipsave *p)
1461 {
1462 s_k_i_p = *p;
1463 }
1464
1465 void
1466 stop_skipping(void)
1467 {
1468 evalskip = SKIPNONE;
1469 skipcount = 0;
1470 }
1471
1472 /*
1473 * Builtin commands. Builtin commands whose functions are closely
1474 * tied to evaluation are implemented here.
1475 */
1476
1477 /*
1478 * No command given.
1479 */
1480
1481 int
1482 bltincmd(int argc, char **argv)
1483 {
1484 /*
1485 * Preserve exitstatus of a previous possible redirection
1486 * as POSIX mandates
1487 */
1488 return back_exitstatus;
1489 }
1490
1491
1492 /*
1493 * Handle break and continue commands. Break, continue, and return are
1494 * all handled by setting the evalskip flag. The evaluation routines
1495 * above all check this flag, and if it is set they start skipping
1496 * commands rather than executing them. The variable skipcount is
1497 * the number of loops to break/continue, or the number of function
1498 * levels to return. (The latter is always 1.) It should probably
1499 * be an error to break out of more loops than exist, but it isn't
1500 * in the standard shell so we don't make it one here.
1501 */
1502
1503 int
1504 breakcmd(int argc, char **argv)
1505 {
1506 int n = argc > 1 ? number(argv[1]) : 1;
1507
1508 if (n <= 0)
1509 error("invalid count: %d", n);
1510 if (n > loopnest)
1511 n = loopnest;
1512 if (n > 0) {
1513 evalskip = (**argv == 'c')? SKIPCONT : SKIPBREAK;
1514 skipcount = n;
1515 }
1516 return 0;
1517 }
1518
1519 int
1520 dotcmd(int argc, char **argv)
1521 {
1522 exitstatus = 0;
1523
1524 (void) nextopt(NULL); /* ignore a leading "--" */
1525
1526 if (*argptr != NULL) { /* That's what SVR2 does */
1527 char *fullname;
1528 /*
1529 * dot_funcnest needs to be 0 when not in a dotcmd, so it
1530 * cannot be restored with (funcnest + 1).
1531 */
1532 int dot_funcnest_old;
1533 struct stackmark smark;
1534
1535 setstackmark(&smark);
1536 fullname = find_dot_file(*argptr);
1537 setinputfile(fullname, 1);
1538 commandname = fullname;
1539 dot_funcnest_old = dot_funcnest;
1540 dot_funcnest = funcnest + 1;
1541 cmdloop(0);
1542 dot_funcnest = dot_funcnest_old;
1543 popfile();
1544 popstackmark(&smark);
1545 }
1546 return exitstatus;
1547 }
1548
1549 /*
1550 * allow dotfile function nesting to be manipulated
1551 * (for read_profile). This allows profile files to
1552 * be treated as if they were used as '.' commands,
1553 * (approximately) and in particular, for "return" to work.
1554 */
1555 int
1556 set_dot_funcnest(int new)
1557 {
1558 int rv = dot_funcnest;
1559
1560 if (new >= 0)
1561 dot_funcnest = new;
1562
1563 return rv;
1564 }
1565
1566 /*
1567 * Take commands from a file. To be compatible we should do a path
1568 * search for the file, which is necessary to find sub-commands.
1569 */
1570
1571 STATIC char *
1572 find_dot_file(char *basename)
1573 {
1574 char *fullname;
1575 const char *path = pathval();
1576 struct stat statb;
1577
1578 /* don't try this for absolute or relative paths */
1579 if (strchr(basename, '/')) {
1580 if (stat(basename, &statb) == 0) {
1581 if (S_ISDIR(statb.st_mode))
1582 error("%s: is a directory", basename);
1583 if (S_ISBLK(statb.st_mode))
1584 error("%s: is a block device", basename);
1585 return basename;
1586 }
1587 } else while ((fullname = padvance(&path, basename, 1)) != NULL) {
1588 if ((stat(fullname, &statb) == 0)) {
1589 /* weird format is to ease future code... */
1590 if (S_ISDIR(statb.st_mode) || S_ISBLK(statb.st_mode))
1591 ;
1592 #if notyet
1593 else if (unreadable()) {
1594 /*
1595 * testing this via st_mode is ugly to get
1596 * correct (and would ignore ACLs).
1597 * better way is just to open the file.
1598 * But doing that here would (currently)
1599 * mean opening the file twice, which
1600 * might not be safe. So, defer this
1601 * test until code is restructures so
1602 * we can return a fd. Then we also
1603 * get to fix the mem leak just below...
1604 */
1605 }
1606 #endif
1607 else {
1608 /*
1609 * Don't bother freeing here, since
1610 * it will be freed by the caller.
1611 * XXX no it won't - a bug for later.
1612 */
1613 return fullname;
1614 }
1615 }
1616 stunalloc(fullname);
1617 }
1618
1619 /* not found in the PATH */
1620 error("%s: not found", basename);
1621 /* NOTREACHED */
1622 }
1623
1624
1625
1626 /*
1627 * The return command.
1628 *
1629 * Quoth the POSIX standard:
1630 * The return utility shall cause the shell to stop executing the current
1631 * function or dot script. If the shell is not currently executing
1632 * a function or dot script, the results are unspecified.
1633 *
1634 * As for the unspecified part, there seems to be no de-facto standard: bash
1635 * ignores the return with a warning, zsh ignores the return in interactive
1636 * mode but seems to liken it to exit in a script. (checked May 2014)
1637 *
1638 * We choose to silently ignore the return. Older versions of this shell
1639 * set evalskip to SKIPFILE causing the shell to (indirectly) exit. This
1640 * had at least the problem of circumventing the check for stopped jobs,
1641 * which would occur for exit or ^D.
1642 */
1643
1644 int
1645 returncmd(int argc, char **argv)
1646 {
1647 int ret = argc > 1 ? number(argv[1]) : exitstatus;
1648
1649 if ((dot_funcnest == 0 && funcnest)
1650 || (dot_funcnest > 0 && funcnest - (dot_funcnest - 1) > 0)) {
1651 evalskip = SKIPFUNC;
1652 skipcount = 1;
1653 } else if (dot_funcnest > 0) {
1654 evalskip = SKIPFILE;
1655 skipcount = 1;
1656 } else {
1657 /* XXX: should a warning be issued? */
1658 ret = 0;
1659 }
1660
1661 return ret;
1662 }
1663
1664
1665 int
1666 falsecmd(int argc, char **argv)
1667 {
1668 return 1;
1669 }
1670
1671
1672 int
1673 truecmd(int argc, char **argv)
1674 {
1675 return 0;
1676 }
1677
1678
1679 int
1680 execcmd(int argc, char **argv)
1681 {
1682 (void) nextopt(NULL); /* ignore a leading "--" */
1683
1684 if (*argptr) {
1685 struct strlist *sp;
1686
1687 iflag = 0; /* exit on error */
1688 mflag = 0;
1689 optschanged();
1690 for (sp = cmdenviron; sp; sp = sp->next)
1691 setvareq(sp->text, VDOEXPORT|VEXPORT|VSTACK);
1692 shellexec(argptr, environment(), pathval(), 0, 0);
1693 }
1694 return 0;
1695 }
1696
1697 static int
1698 conv_time(clock_t ticks, char *seconds, size_t l)
1699 {
1700 static clock_t tpm = 0;
1701 clock_t mins;
1702 int i;
1703
1704 if (!tpm)
1705 tpm = sysconf(_SC_CLK_TCK) * 60;
1706
1707 mins = ticks / tpm;
1708 snprintf(seconds, l, "%.4f", (ticks - mins * tpm) * 60.0 / tpm );
1709
1710 if (seconds[0] == '6' && seconds[1] == '0') {
1711 /* 59.99995 got rounded up... */
1712 mins++;
1713 strlcpy(seconds, "0.0", l);
1714 return mins;
1715 }
1716
1717 /* suppress trailing zeros */
1718 i = strlen(seconds) - 1;
1719 for (; seconds[i] == '0' && seconds[i - 1] != '.'; i--)
1720 seconds[i] = 0;
1721 return mins;
1722 }
1723
1724 int
1725 timescmd(int argc, char **argv)
1726 {
1727 struct tms tms;
1728 int u, s, cu, cs;
1729 char us[8], ss[8], cus[8], css[8];
1730
1731 nextopt("");
1732
1733 times(&tms);
1734
1735 u = conv_time(tms.tms_utime, us, sizeof(us));
1736 s = conv_time(tms.tms_stime, ss, sizeof(ss));
1737 cu = conv_time(tms.tms_cutime, cus, sizeof(cus));
1738 cs = conv_time(tms.tms_cstime, css, sizeof(css));
1739
1740 outfmt(out1, "%dm%ss %dm%ss\n%dm%ss %dm%ss\n",
1741 u, us, s, ss, cu, cus, cs, css);
1742
1743 return 0;
1744 }
1745