1 /*-
2 * Copyright (c) 1993
3 * The Regents of the University of California. All rights reserved.
4 * Copyright (c) 1997-2005
5 * Herbert Xu <herbert@gondor.apana.org.au>. 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 <zircon/process.h>
36 #include <zircon/status.h>
37 #include <zircon/syscalls.h>
38 #include <stdlib.h>
39 #include <signal.h>
40 #include <unistd.h>
41 #include <sys/types.h>
42
43 /*
44 * Evaluate a command.
45 */
46
47 #include "process.h"
48 #include "shell.h"
49 #include "nodes.h"
50 #include "syntax.h"
51 #include "expand.h"
52 #include "parser.h"
53 #include "jobs.h"
54 #include "eval.h"
55 #include "builtins.h"
56 #include "options.h"
57 #include "exec.h"
58 #include "redir.h"
59 #include "input.h"
60 #include "output.h"
61 #include "trap.h"
62 #include "var.h"
63 #include "memalloc.h"
64 #include "error.h"
65 #include "show.h"
66 #include "mystring.h"
67
68
69 int evalskip; /* set if we are skipping commands */
70 STATIC int skipcount; /* number of levels to skip */
71 MKINIT int loopnest; /* current loop nesting level */
72 static int funcline; /* starting line number of current function, or 0 if not in a function */
73
74
75 char *commandname;
76 int exitstatus; /* exit status of last command */
77 int back_exitstatus; /* exit status of backquoted command */
78 int savestatus = -1; /* exit status of last command outside traps */
79
80
81 STATIC int evalloop(union node *, int);
82 STATIC int evalfor(union node *, int);
83 STATIC int evalcase(union node *, int);
84 STATIC int evalsubshell(union node *, int);
85 STATIC void expredir(union node *);
86 STATIC int evalpipe(union node *, int);
87 #ifdef notyet
88 STATIC int evalcommand(union node *, int, struct backcmd *);
89 #else
90 STATIC int evalcommand(union node *, int);
91 #endif
92 STATIC int evalbltin(const struct builtincmd *, int, char **, int);
93 STATIC int evalfun(struct funcnode *, int, char **, int);
94 STATIC void prehash(union node *);
95 STATIC int eprintlist(struct output *, struct strlist *, int);
96 STATIC int bltincmd(int, char **);
97
98
99 STATIC const struct builtincmd bltin = {
100 name: nullstr,
101 builtin: bltincmd
102 };
103
104
105 /*
106 * Called to reset things after an exception.
107 */
108
109 #ifdef mkinit
110 INCLUDE "eval.h"
111
112 RESET {
113 evalskip = 0;
114 loopnest = 0;
115 if (savestatus >= 0) {
116 exitstatus = savestatus;
117 savestatus = -1;
118 }
119 }
120 #endif
121
122
123 /*
124 * The eval commmand.
125 */
126
evalcmd(int argc,char ** argv,int flags)127 static int evalcmd(int argc, char **argv, int flags)
128 {
129 char *p;
130 char *concat;
131 char **ap;
132
133 if (argc > 1) {
134 p = argv[1];
135 if (argc > 2) {
136 STARTSTACKSTR(concat);
137 ap = argv + 2;
138 for (;;) {
139 concat = stputs(p, concat);
140 if ((p = *ap++) == NULL)
141 break;
142 STPUTC(' ', concat);
143 }
144 STPUTC('\0', concat);
145 p = grabstackstr(concat);
146 }
147 return evalstring(p, flags & EV_TESTED);
148 }
149 return 0;
150 }
151
152
153 /*
154 * Execute a command or commands contained in a string.
155 */
156
157 int
evalstring(char * s,int flags)158 evalstring(char *s, int flags)
159 {
160 union node *n;
161 struct stackmark smark;
162 int status;
163
164 s = sstrdup(s);
165 setinputstring(s);
166 setstackmark(&smark);
167
168 status = 0;
169 for (; (n = parsecmd(0)) != NEOF; popstackmark(&smark)) {
170 int i;
171
172 i = evaltree(n, flags & ~(parser_eof() ? 0 : EV_EXIT));
173 if (n)
174 status = i;
175
176 if (evalskip)
177 break;
178 }
179 popstackmark(&smark);
180 popfile();
181 stunalloc(s);
182
183 return status;
184 }
185
186
187
188 /*
189 * Evaluate a parse tree. The value is left in the global variable
190 * exitstatus.
191 */
192
193 int
evaltree(union node * n,int flags)194 evaltree(union node *n, int flags)
195 {
196 int checkexit = 0;
197 int (*evalfn)(union node *, int);
198 unsigned isor;
199 int status = 0;
200 if (n == NULL) {
201 TRACE(("evaltree(NULL) called\n"));
202 goto out;
203 }
204
205 dotrap();
206
207 TRACE(("pid %d, evaltree(%p: %d, %d) called\n",
208 getpid(), n, n->type, flags));
209 switch (n->type) {
210 default:
211 #ifdef DEBUG
212 out1fmt("Node type = %d\n", n->type);
213 #ifndef USE_GLIBC_STDIO
214 flushout(out1);
215 #endif
216 break;
217 #endif
218 case NNOT:
219 status = !evaltree(n->nnot.com, EV_TESTED);
220 goto setstatus;
221 case NREDIR:
222 errlinno = lineno = n->nredir.linno;
223 if (funcline)
224 lineno -= funcline - 1;
225 expredir(n->nredir.redirect);
226 pushredir(n->nredir.redirect);
227 status = redirectsafe(n->nredir.redirect, REDIR_PUSH) ?:
228 evaltree(n->nredir.n, flags & EV_TESTED);
229 if (n->nredir.redirect)
230 popredir(0);
231 goto setstatus;
232 case NCMD:
233 #ifdef notyet
234 if (eflag && !(flags & EV_TESTED))
235 checkexit = ~0;
236 status = evalcommand(n, flags, (struct backcmd *)NULL);
237 goto setstatus;
238 #else
239 evalfn = evalcommand;
240 checkexit:
241 if (eflag && !(flags & EV_TESTED))
242 checkexit = ~0;
243 goto calleval;
244 #endif
245 case NFOR:
246 evalfn = evalfor;
247 goto calleval;
248 case NWHILE:
249 case NUNTIL:
250 evalfn = evalloop;
251 goto calleval;
252 case NSUBSHELL:
253 case NBACKGND:
254 evalfn = evalsubshell;
255 goto checkexit;
256 case NPIPE:
257 evalfn = evalpipe;
258 goto checkexit;
259 case NCASE:
260 evalfn = evalcase;
261 goto calleval;
262 case NAND:
263 case NOR:
264 case NSEMI:
265 #if NAND + 1 != NOR
266 #error NAND + 1 != NOR
267 #endif
268 #if NOR + 1 != NSEMI
269 #error NOR + 1 != NSEMI
270 #endif
271 isor = n->type - NAND;
272 status = evaltree(n->nbinary.ch1,
273 (flags | ((isor >> 1) - 1)) & EV_TESTED);
274 if (!status == isor || evalskip)
275 break;
276 n = n->nbinary.ch2;
277 evaln:
278 evalfn = evaltree;
279 calleval:
280 status = evalfn(n, flags);
281 goto setstatus;
282 case NIF:
283 status = evaltree(n->nif.test, EV_TESTED);
284 if (evalskip)
285 break;
286 if (!status) {
287 n = n->nif.ifpart;
288 goto evaln;
289 } else if (n->nif.elsepart) {
290 n = n->nif.elsepart;
291 goto evaln;
292 }
293 status = 0;
294 goto setstatus;
295 case NDEFUN:
296 defun(n);
297 setstatus:
298 exitstatus = status;
299 break;
300 }
301 out:
302 if (checkexit & status)
303 goto exexit;
304
305 dotrap();
306
307 if (flags & EV_EXIT) {
308 exexit:
309 exraise(EXEXIT);
310 }
311
312 return exitstatus;
313 }
314
315
316 void evaltreenr(union node *n, int flags)
317 #ifdef HAVE_ATTRIBUTE_ALIAS
318 __attribute__ ((alias("evaltree")));
319 #else
320 {
321 evaltree(n, flags);
322 abort();
323 }
324 #endif
325
326
skiploop(void)327 static int skiploop(void)
328 {
329 int skip = evalskip;
330
331 switch (skip) {
332 case 0:
333 break;
334
335 case SKIPBREAK:
336 case SKIPCONT:
337 if (likely(--skipcount <= 0)) {
338 evalskip = 0;
339 break;
340 }
341
342 skip = SKIPBREAK;
343 break;
344 }
345
346 return skip;
347 }
348
349
350 STATIC int
evalloop(union node * n,int flags)351 evalloop(union node *n, int flags)
352 {
353 int skip;
354 int status;
355
356 loopnest++;
357 status = 0;
358 flags &= EV_TESTED;
359 do {
360 int i;
361
362 i = evaltree(n->nbinary.ch1, EV_TESTED);
363 skip = skiploop();
364 if (skip == SKIPFUNC)
365 status = i;
366 if (skip)
367 continue;
368 if (n->type != NWHILE)
369 i = !i;
370 if (i != 0)
371 break;
372 status = evaltree(n->nbinary.ch2, flags);
373 if (status == ZX_ERR_CANCELED) {
374 evalskip = SKIPBREAK;
375 }
376 skip = skiploop();
377 } while (!(skip & ~SKIPCONT));
378 loopnest--;
379
380 return status;
381 }
382
383
384
385 STATIC int
evalfor(union node * n,int flags)386 evalfor(union node *n, int flags)
387 {
388 struct arglist arglist;
389 union node *argp;
390 struct strlist *sp;
391 struct stackmark smark;
392 int status;
393
394 errlinno = lineno = n->nfor.linno;
395 if (funcline)
396 lineno -= funcline - 1;
397
398 setstackmark(&smark);
399 arglist.lastp = &arglist.list;
400 for (argp = n->nfor.args ; argp ; argp = argp->narg.next) {
401 expandarg(argp, &arglist, EXP_FULL | EXP_TILDE);
402 }
403 *arglist.lastp = NULL;
404
405 status = 0;
406 loopnest++;
407 flags &= EV_TESTED;
408 for (sp = arglist.list ; sp ; sp = sp->next) {
409 setvar(n->nfor.var, sp->text, 0);
410 status = evaltree(n->nfor.body, flags);
411 if (status == ZX_ERR_CANCELED) {
412 evalskip = SKIPBREAK;
413 }
414 if (skiploop() & ~SKIPCONT)
415 break;
416 }
417 loopnest--;
418 popstackmark(&smark);
419
420 return status;
421 }
422
423
424
425 STATIC int
evalcase(union node * n,int flags)426 evalcase(union node *n, int flags)
427 {
428 union node *cp;
429 union node *patp;
430 struct arglist arglist;
431 struct stackmark smark;
432 int status = 0;
433
434 errlinno = lineno = n->ncase.linno;
435 if (funcline)
436 lineno -= funcline - 1;
437
438 setstackmark(&smark);
439 arglist.lastp = &arglist.list;
440 expandarg(n->ncase.expr, &arglist, EXP_TILDE);
441 for (cp = n->ncase.cases ; cp && evalskip == 0 ; cp = cp->nclist.next) {
442 for (patp = cp->nclist.pattern ; patp ; patp = patp->narg.next) {
443 if (casematch(patp, arglist.list->text)) {
444 /* Ensure body is non-empty as otherwise
445 * EV_EXIT may prevent us from setting the
446 * exit status.
447 */
448 if (evalskip == 0 && cp->nclist.body) {
449 status = evaltree(cp->nclist.body,
450 flags);
451 }
452 goto out;
453 }
454 }
455 }
456 out:
457 popstackmark(&smark);
458
459 return status;
460 }
461
462
463
464 /*
465 * Kick off a subshell to evaluate a tree.
466 */
467
468 STATIC int
evalsubshell(union node * n,int flags)469 evalsubshell(union node *n, int flags)
470 {
471 struct job *jp;
472 int backgnd = (n->type == NBACKGND);
473 int status;
474
475 errlinno = lineno = n->nredir.linno;
476 if (funcline)
477 lineno -= funcline - 1;
478
479 expredir(n->nredir.redirect);
480 if (!backgnd && flags & EV_EXIT && !have_traps()) {
481 redirect(n->nredir.redirect, 0);
482 evaltreenr(n->nredir.n, flags);
483 /* never returns */
484 }
485 INTOFF;
486 jp = makejob(n, 1);
487 zx_handle_t process;
488 const char* const* envp = (const char* const*)environment();
489
490 // Run in the foreground (of the subshell running in the background)
491 if (backgnd)
492 n->type = NSUBSHELL;
493
494 char err_msg[FDIO_SPAWN_ERR_MSG_MAX_LENGTH];
495 zx_status_t exec_result = process_subshell(n, envp, &process, jp->zx_job_hndl, NULL, err_msg);
496 if (exec_result == ZX_OK) {
497 /* Process-tracking management */
498 forkparent(jp, n, backgnd, process);
499 } else {
500 freejob(jp);
501 sh_error("Failed to create subshell: %d (%s): %s", exec_result, zx_status_get_string(exec_result), err_msg);
502 return exec_result;
503 }
504 status = 0;
505 if (! backgnd) {
506 status = process_await_termination(process, jp->zx_job_hndl, true);
507 zx_handle_close(process);
508 }
509 INTON;
510 freejob(jp);
511 return status;
512 }
513
514
515 /*
516 * Compute the names of the files in a redirection list.
517 */
518
519 STATIC void
expredir(union node * n)520 expredir(union node *n)
521 {
522 union node *redir;
523
524 for (redir = n ; redir ; redir = redir->nfile.next) {
525 struct arglist fn;
526 fn.lastp = &fn.list;
527 switch (redir->type) {
528 case NFROMTO:
529 case NFROM:
530 case NTO:
531 case NCLOBBER:
532 case NAPPEND:
533 expandarg(redir->nfile.fname, &fn, EXP_TILDE | EXP_REDIR);
534 redir->nfile.expfname = fn.list->text;
535 break;
536 case NFROMFD:
537 case NTOFD:
538 if (redir->ndup.vname) {
539 expandarg(redir->ndup.vname, &fn, EXP_FULL | EXP_TILDE);
540 fixredir(redir, fn.list->text, 1);
541 }
542 break;
543 }
544 }
545 }
546
547
548
549 /*
550 * Evaluate a pipeline. All the processes in the pipeline are children
551 * of the process creating the pipeline. (This differs from some versions
552 * of the shell, which make the last process in a pipeline the parent
553 * of all the rest.)
554 */
555
556 STATIC int
evalpipe(union node * n,int flags)557 evalpipe(union node *n, int flags)
558 {
559 struct job *jp;
560 struct nodelist *lp;
561 int pipelen;
562 int fds[3] = { STDIN_FILENO, STDOUT_FILENO, STDERR_FILENO };
563 int pip[2] = { -1, -1 };
564 int status = 0;
565
566 TRACE(("evalpipe(0x%lx) called\n", (long)n));
567 pipelen = 0;
568 for (lp = n->npipe.cmdlist ; lp ; lp = lp->next)
569 pipelen++;
570 flags |= EV_EXIT;
571 INTOFF;
572 jp = makejob(n, pipelen);
573
574 const size_t processes_size = pipelen * sizeof(zx_handle_t);
575 zx_handle_t* processes = ckmalloc(processes_size);
576 memset(processes, 0, processes_size);
577
578 size_t idx = 0u;
579 for (lp = n->npipe.cmdlist ; lp ; lp = lp->next, ++idx) {
580 prehash(lp->n);
581 if (pip[0] > 0)
582 fds[0] = pip[0];
583 if (lp->next) {
584 if (pipe(pip) < 0)
585 sh_error("Pipe call failed");
586 fds[1] = pip[1];
587 } else {
588 fds[1] = STDOUT_FILENO;
589 }
590 char err_msg[FDIO_SPAWN_ERR_MSG_MAX_LENGTH];
591 const char* const* envp = (const char* const*)environment();
592 zx_status_t status = process_subshell(lp->n, envp, &processes[idx], jp->zx_job_hndl, fds, err_msg);
593 if (fds[0] != STDIN_FILENO)
594 close(fds[0]);
595 if (fds[1] != STDOUT_FILENO)
596 close(fds[1]);
597 if (status == ZX_OK) {
598 /* Process-tracking management */
599 forkparent(jp, lp->n, FORK_NOJOB, processes[idx]);
600 } else {
601 freejob(jp);
602 sh_error("Failed to create shell: %d (%s): %s", status, zx_status_get_string(status), err_msg);
603 }
604 }
605
606 if (n->npipe.backgnd == 0) {
607 status = waitforjob(jp);
608 TRACE(("evalpipe: job done exit status: %d (%s)\n", status, zx_status_get_string(status)));
609 }
610 INTON;
611
612 zx_handle_close_many(processes, pipelen);
613 ckfree(processes);
614
615 return status;
616 }
617
618
619
620 /*
621 * Execute a command inside back quotes. If it's a builtin command, we
622 * want to save its output in a block obtained from malloc. Otherwise
623 * we fork off a subprocess and get the output of the command via a pipe.
624 * Should be called with interrupts off.
625 */
626
627 void
evalbackcmd(union node * n,struct backcmd * result)628 evalbackcmd(union node *n, struct backcmd *result)
629 {
630 int pip[2];
631 struct job *jp;
632
633 result->fd = -1;
634 result->buf = NULL;
635 result->nleft = 0;
636 result->jp = NULL;
637 if (n == NULL) {
638 goto out;
639 }
640
641 if (pipe(pip) < 0)
642 sh_error("Pipe call failed");
643 jp = makejob(n, 1);
644 zx_handle_t process;
645 char err_msg[FDIO_SPAWN_ERR_MSG_MAX_LENGTH];
646 const char* const* envp = (const char* const*)environment();
647 int fds[3] = { STDIN_FILENO, pip[1], STDERR_FILENO };
648 zx_status_t status = process_subshell(n, envp, &process, jp->zx_job_hndl, &fds[0], err_msg);
649 close(pip[1]);
650 if (status != ZX_OK) {
651 freejob(jp);
652 sh_error("Failed to create subshell: %d (%s): %s", status, zx_status_get_string(status), err_msg);
653 } else {
654 /* Process-tracking management */
655 forkparent(jp, n, FORK_NOJOB, process);
656 result->fd = pip[0];
657 result->jp = jp;
658 }
659
660 out:
661 TRACE(("evalbackcmd done: fd=%d buf=0x%x nleft=%d jp=0x%x\n",
662 result->fd, result->buf, result->nleft, result->jp));
663 }
664
665 static char **
parse_command_args(char ** argv,const char ** path)666 parse_command_args(char **argv, const char **path)
667 {
668 char *cp, c;
669
670 for (;;) {
671 cp = *++argv;
672 if (!cp)
673 return 0;
674 if (*cp++ != '-')
675 break;
676 if (!(c = *cp++))
677 break;
678 if (c == '-' && !*cp) {
679 if (!*++argv)
680 return 0;
681 break;
682 }
683 do {
684 switch (c) {
685 case 'p':
686 *path = defpath;
687 break;
688 default:
689 /* run 'typecmd' for other options */
690 return 0;
691 }
692 } while ((c = *cp++));
693 }
694 return argv;
695 }
696
697
698
699 /*
700 * Execute a simple command.
701 */
702
703 STATIC int
704 #ifdef notyet
evalcommand(union node * cmd,int flags,struct backcmd * backcmd)705 evalcommand(union node *cmd, int flags, struct backcmd *backcmd)
706 #else
707 evalcommand(union node *cmd, int flags)
708 #endif
709 {
710 struct localvar_list *localvar_stop;
711 struct redirtab *redir_stop;
712 struct stackmark smark;
713 union node *argp;
714 struct arglist arglist;
715 struct arglist varlist;
716 char **argv;
717 int argc;
718 struct strlist *sp;
719 #ifdef notyet
720 int pip[2];
721 #endif
722 struct cmdentry cmdentry;
723 char *lastarg;
724 const char *path;
725 int spclbltin;
726 int execcmd;
727 int status;
728 char **nargv;
729
730 errlinno = lineno = cmd->ncmd.linno;
731 if (funcline)
732 lineno -= funcline - 1;
733
734 /* First expand the arguments. */
735 TRACE(("evalcommand(0x%lx, %d) called\n", (long)cmd, flags));
736 setstackmark(&smark);
737 localvar_stop = pushlocalvars();
738 back_exitstatus = 0;
739
740 cmdentry.cmdtype = CMDBUILTIN;
741 cmdentry.u.cmd = &bltin;
742 varlist.lastp = &varlist.list;
743 *varlist.lastp = NULL;
744 arglist.lastp = &arglist.list;
745 *arglist.lastp = NULL;
746
747 argc = 0;
748 for (argp = cmd->ncmd.args; argp; argp = argp->narg.next) {
749 struct strlist **spp;
750
751 spp = arglist.lastp;
752 expandarg(argp, &arglist, EXP_FULL | EXP_TILDE);
753 for (sp = *spp; sp; sp = sp->next)
754 argc++;
755 }
756
757 /* Reserve one extra spot at the front for shellexec. */
758 nargv = stalloc(sizeof (char *) * (argc + 2));
759 argv = ++nargv;
760 for (sp = arglist.list ; sp ; sp = sp->next) {
761 TRACE(("evalcommand arg: %s\n", sp->text));
762 *nargv++ = sp->text;
763 }
764 *nargv = NULL;
765
766 lastarg = NULL;
767 if (iflag && funcline == 0 && argc > 0)
768 lastarg = nargv[-1];
769
770 preverrout.fd = 2;
771 expredir(cmd->ncmd.redirect);
772 redir_stop = pushredir(cmd->ncmd.redirect);
773 status = redirectsafe(cmd->ncmd.redirect, REDIR_PUSH|REDIR_SAVEFD2);
774
775 path = vpath.text;
776 for (argp = cmd->ncmd.assign; argp; argp = argp->narg.next) {
777 struct strlist **spp;
778 char *p;
779
780 spp = varlist.lastp;
781 expandarg(argp, &varlist, EXP_VARTILDE);
782
783 mklocal((*spp)->text);
784
785 /*
786 * Modify the command lookup path, if a PATH= assignment
787 * is present
788 */
789 p = (*spp)->text;
790 if (varequal(p, path))
791 path = p;
792 }
793
794 /* Print the command if xflag is set. */
795 if (xflag) {
796 struct output *out;
797 int sep;
798
799 out = &preverrout;
800 outstr(expandstr(ps4val()), out);
801 sep = 0;
802 sep = eprintlist(out, varlist.list, sep);
803 eprintlist(out, arglist.list, sep);
804 outcslow('\n', out);
805 #ifdef FLUSHERR
806 flushout(out);
807 #endif
808 }
809
810 execcmd = 0;
811 spclbltin = -1;
812
813 /* Now locate the command. */
814 if (argc) {
815 const char *oldpath;
816 int cmd_flag = DO_ERR;
817
818 path += 5;
819 oldpath = path;
820 for (;;) {
821 find_command(argv[0], &cmdentry, cmd_flag, path);
822 if (cmdentry.cmdtype == CMDUNKNOWN) {
823 status = 127;
824 #ifdef FLUSHERR
825 flushout(&errout);
826 #endif
827 goto bail;
828 }
829
830 /* implement bltin and command here */
831 if (cmdentry.cmdtype != CMDBUILTIN)
832 break;
833 if (spclbltin < 0)
834 spclbltin =
835 cmdentry.u.cmd->flags &
836 BUILTIN_SPECIAL
837 ;
838 if (cmdentry.u.cmd == EXECCMD)
839 execcmd++;
840 if (cmdentry.u.cmd != COMMANDCMD)
841 break;
842
843 path = oldpath;
844 nargv = parse_command_args(argv, &path);
845 if (!nargv)
846 break;
847 argc -= nargv - argv;
848 argv = nargv;
849 cmd_flag |= DO_NOFUNC;
850 }
851 }
852
853 if (status) {
854 bail:
855 exitstatus = status;
856
857 /* We have a redirection error. */
858 if (spclbltin > 0)
859 exraise(EXERROR);
860
861 goto out;
862 }
863
864 /* Execute the command. */
865 switch (cmdentry.cmdtype) {
866 default: {
867 zx_handle_t process = ZX_HANDLE_INVALID;
868 zx_handle_t zx_job_hndl;
869 zx_status_t zx_status = zx_job_create(zx_job_default(), 0, &zx_job_hndl);
870 if (zx_status != ZX_OK) {
871 sh_error("Cannot create child process: %d (%s)", zx_status, zx_status_get_string(zx_status));
872 break;
873 }
874 char err_msg[FDIO_SPAWN_ERR_MSG_MAX_LENGTH];
875 status = process_launch((const char* const*)argv, path, cmdentry.u.index, &process, zx_job_hndl, &zx_status, err_msg);
876 if (status) {
877 sh_error("Cannot create child process: %d (%s): %s", zx_status, zx_status_get_string(zx_status), err_msg);
878 break;
879 }
880 settitle(argv[0]);
881 status = process_await_termination(process, zx_job_hndl, true);
882 zx_handle_close(process);
883 zx_handle_close(zx_job_hndl);
884 settitle("sh");
885 break;
886 }
887 case CMDBUILTIN:
888 if (spclbltin > 0 || argc == 0) {
889 poplocalvars(1);
890 if (execcmd && argc > 1)
891 listsetvar(varlist.list, VEXPORT);
892 }
893 if (evalbltin(cmdentry.u.cmd, argc, argv, flags)) {
894 if (exception == EXERROR && spclbltin <= 0) {
895 FORCEINTON;
896 goto readstatus;
897 }
898 raise:
899 longjmp(handler->loc, 1);
900 }
901 goto readstatus;
902
903 case CMDFUNCTION:
904 poplocalvars(1);
905 if (evalfun(cmdentry.u.func, argc, argv, flags))
906 goto raise;
907 readstatus:
908 status = exitstatus;
909 break;
910 }
911
912 out:
913 if (cmd->ncmd.redirect)
914 popredir(execcmd);
915 unwindredir(redir_stop);
916 unwindlocalvars(localvar_stop);
917 if (lastarg)
918 /* dsl: I think this is intended to be used to support
919 * '_' in 'vi' command mode during line editing...
920 * However I implemented that within libedit itself.
921 */
922 setvar("_", lastarg, 0);
923 popstackmark(&smark);
924
925 return status;
926 }
927
928 STATIC int
evalbltin(const struct builtincmd * cmd,int argc,char ** argv,int flags)929 evalbltin(const struct builtincmd *cmd, int argc, char **argv, int flags)
930 {
931 char *volatile savecmdname;
932 struct jmploc *volatile savehandler;
933 struct jmploc jmploc;
934 int status;
935 int i;
936
937 savecmdname = commandname;
938 savehandler = handler;
939 if ((i = setjmp(jmploc.loc)))
940 goto cmddone;
941 handler = &jmploc;
942 commandname = argv[0];
943 argptr = argv + 1;
944 optptr = NULL; /* initialize nextopt */
945 if (cmd == EVALCMD)
946 status = evalcmd(argc, argv, flags);
947 else
948 status = (*cmd->builtin)(argc, argv);
949 flushall();
950 status |= outerr(out1);
951 exitstatus = status;
952 cmddone:
953 freestdout();
954 commandname = savecmdname;
955 handler = savehandler;
956
957 return i;
958 }
959
960 STATIC int
evalfun(struct funcnode * func,int argc,char ** argv,int flags)961 evalfun(struct funcnode *func, int argc, char **argv, int flags)
962 {
963 volatile struct shparam saveparam;
964 struct jmploc *volatile savehandler;
965 struct jmploc jmploc;
966 int e;
967 int savefuncline;
968 int saveloopnest;
969
970 saveparam = shellparam;
971 savefuncline = funcline;
972 saveloopnest = loopnest;
973 savehandler = handler;
974 if ((e = setjmp(jmploc.loc))) {
975 goto funcdone;
976 }
977 INTOFF;
978 handler = &jmploc;
979 shellparam.malloc = 0;
980 func->count++;
981 funcline = func->n.ndefun.linno;
982 loopnest = 0;
983 INTON;
984 shellparam.nparam = argc - 1;
985 shellparam.p = argv + 1;
986 shellparam.optind = 1;
987 shellparam.optoff = -1;
988 pushlocalvars();
989 evaltree(func->n.ndefun.body, flags & EV_TESTED);
990 poplocalvars(0);
991 funcdone:
992 INTOFF;
993 loopnest = saveloopnest;
994 funcline = savefuncline;
995 freefunc(func);
996 freeparam(&shellparam);
997 shellparam = saveparam;
998 handler = savehandler;
999 INTON;
1000 evalskip &= ~(SKIPFUNC | SKIPFUNCDEF);
1001 return e;
1002 }
1003
1004
1005 /*
1006 * Search for a command. This is called before we fork so that the
1007 * location of the command will be available in the parent as well as
1008 * the child. The check for "goodname" is an overly conservative
1009 * check that the name will not be subject to expansion.
1010 */
1011
1012 STATIC void
prehash(union node * n)1013 prehash(union node *n)
1014 {
1015 struct cmdentry entry;
1016
1017 if (n->type == NCMD && n->ncmd.args)
1018 if (goodname(n->ncmd.args->narg.text))
1019 find_command(n->ncmd.args->narg.text, &entry, 0,
1020 pathval());
1021 }
1022
1023
1024
1025 /*
1026 * Builtin commands. Builtin commands whose functions are closely
1027 * tied to evaluation are implemented here.
1028 */
1029
1030 /*
1031 * No command given.
1032 */
1033
1034 STATIC int
bltincmd(int argc,char ** argv)1035 bltincmd(int argc, char **argv)
1036 {
1037 /*
1038 * Preserve exitstatus of a previous possible redirection
1039 * as POSIX mandates
1040 */
1041 return back_exitstatus;
1042 }
1043
1044
1045 /*
1046 * Handle break and continue commands. Break, continue, and return are
1047 * all handled by setting the evalskip flag. The evaluation routines
1048 * above all check this flag, and if it is set they start skipping
1049 * commands rather than executing them. The variable skipcount is
1050 * the number of loops to break/continue, or the number of function
1051 * levels to return. (The latter is always 1.) It should probably
1052 * be an error to break out of more loops than exist, but it isn't
1053 * in the standard shell so we don't make it one here.
1054 */
1055
1056 int
breakcmd(int argc,char ** argv)1057 breakcmd(int argc, char **argv)
1058 {
1059 int n = argc > 1 ? number(argv[1]) : 1;
1060
1061 if (n <= 0)
1062 badnum(argv[1]);
1063 if (n > loopnest)
1064 n = loopnest;
1065 if (n > 0) {
1066 evalskip = (**argv == 'c')? SKIPCONT : SKIPBREAK;
1067 skipcount = n;
1068 }
1069 return 0;
1070 }
1071
1072
1073 /*
1074 * The return command.
1075 */
1076
1077 int
returncmd(int argc,char ** argv)1078 returncmd(int argc, char **argv)
1079 {
1080 int skip;
1081 int status;
1082
1083 /*
1084 * If called outside a function, do what ksh does;
1085 * skip the rest of the file.
1086 */
1087 if (argv[1]) {
1088 skip = SKIPFUNC;
1089 status = number(argv[1]);
1090 } else {
1091 skip = SKIPFUNCDEF;
1092 status = exitstatus;
1093 }
1094 evalskip = skip;
1095
1096 return status;
1097 }
1098
1099
1100 int
falsecmd(int argc,char ** argv)1101 falsecmd(int argc, char **argv)
1102 {
1103 return 1;
1104 }
1105
1106
1107 int
truecmd(int argc,char ** argv)1108 truecmd(int argc, char **argv)
1109 {
1110 return 0;
1111 }
1112
1113
1114 int
execcmd(int argc,char ** argv)1115 execcmd(int argc, char **argv)
1116 {
1117 if (argc > 1) {
1118 iflag = 0; /* exit on error */
1119 mflag = 0;
1120 optschanged();
1121 shellexec(argv + 1, pathval(), 0);
1122 }
1123 return 0;
1124 }
1125
1126
1127 STATIC int
eprintlist(struct output * out,struct strlist * sp,int sep)1128 eprintlist(struct output *out, struct strlist *sp, int sep)
1129 {
1130 while (sp) {
1131 const char *p;
1132
1133 p = " %s" + (1 - sep);
1134 sep |= 1;
1135 outfmt(out, p, sp->text);
1136 sp = sp->next;
1137 }
1138
1139 return sep;
1140 }
1141