jobs.c revision 1.116 1 1.116 kre /* $NetBSD: jobs.c,v 1.116 2022/04/18 06:02:27 kre Exp $ */
2 1.15 cgd
3 1.1 cgd /*-
4 1.8 jtc * Copyright (c) 1991, 1993
5 1.8 jtc * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * This code is derived from software contributed to Berkeley by
8 1.1 cgd * Kenneth Almquist.
9 1.1 cgd *
10 1.1 cgd * Redistribution and use in source and binary forms, with or without
11 1.1 cgd * modification, are permitted provided that the following conditions
12 1.1 cgd * are met:
13 1.1 cgd * 1. Redistributions of source code must retain the above copyright
14 1.1 cgd * notice, this list of conditions and the following disclaimer.
15 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 cgd * notice, this list of conditions and the following disclaimer in the
17 1.1 cgd * documentation and/or other materials provided with the distribution.
18 1.58 agc * 3. Neither the name of the University nor the names of its contributors
19 1.1 cgd * may be used to endorse or promote products derived from this software
20 1.1 cgd * without specific prior written permission.
21 1.1 cgd *
22 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 cgd * SUCH DAMAGE.
33 1.1 cgd */
34 1.1 cgd
35 1.22 christos #include <sys/cdefs.h>
36 1.1 cgd #ifndef lint
37 1.15 cgd #if 0
38 1.16 christos static char sccsid[] = "@(#)jobs.c 8.5 (Berkeley) 5/4/95";
39 1.15 cgd #else
40 1.116 kre __RCSID("$NetBSD: jobs.c,v 1.116 2022/04/18 06:02:27 kre Exp $");
41 1.15 cgd #endif
42 1.1 cgd #endif /* not lint */
43 1.1 cgd
44 1.95 kre #include <stdio.h>
45 1.16 christos #include <fcntl.h>
46 1.16 christos #include <signal.h>
47 1.16 christos #include <errno.h>
48 1.16 christos #include <unistd.h>
49 1.16 christos #include <stdlib.h>
50 1.26 fair #include <paths.h>
51 1.16 christos #include <sys/types.h>
52 1.16 christos #include <sys/param.h>
53 1.16 christos #ifdef BSD
54 1.16 christos #include <sys/wait.h>
55 1.16 christos #include <sys/time.h>
56 1.16 christos #include <sys/resource.h>
57 1.16 christos #endif
58 1.19 christos #include <sys/ioctl.h>
59 1.16 christos
60 1.1 cgd #include "shell.h"
61 1.1 cgd #if JOBS
62 1.19 christos #if OLD_TTY_DRIVER
63 1.1 cgd #include "sgtty.h"
64 1.19 christos #else
65 1.19 christos #include <termios.h>
66 1.19 christos #endif
67 1.1 cgd #undef CEOF /* syntax.h redefines this */
68 1.1 cgd #endif
69 1.16 christos #include "redir.h"
70 1.16 christos #include "show.h"
71 1.1 cgd #include "main.h"
72 1.1 cgd #include "parser.h"
73 1.1 cgd #include "nodes.h"
74 1.1 cgd #include "jobs.h"
75 1.95 kre #include "var.h"
76 1.1 cgd #include "options.h"
77 1.69 christos #include "builtins.h"
78 1.1 cgd #include "trap.h"
79 1.1 cgd #include "syntax.h"
80 1.1 cgd #include "input.h"
81 1.1 cgd #include "output.h"
82 1.1 cgd #include "memalloc.h"
83 1.1 cgd #include "error.h"
84 1.1 cgd #include "mystring.h"
85 1.1 cgd
86 1.1 cgd
87 1.91 kre #ifndef WCONTINUED
88 1.91 kre #define WCONTINUED 0 /* So we can compile on old systems */
89 1.91 kre #endif
90 1.91 kre #ifndef WIFCONTINUED
91 1.91 kre #define WIFCONTINUED(x) (0) /* ditto */
92 1.91 kre #endif
93 1.91 kre
94 1.91 kre
95 1.55 christos static struct job *jobtab; /* array of jobs */
96 1.55 christos static int njobs; /* size of array */
97 1.55 christos static int jobs_invalid; /* set in child */
98 1.55 christos MKINIT pid_t backgndpid = -1; /* pid of last background process */
99 1.1 cgd #if JOBS
100 1.1 cgd int initialpgrp; /* pgrp of shell on invocation */
101 1.55 christos static int curjob = -1; /* current job */
102 1.1 cgd #endif
103 1.44 christos static int ttyfd = -1;
104 1.1 cgd
105 1.55 christos STATIC void restartjob(struct job *);
106 1.55 christos STATIC void freejob(struct job *);
107 1.55 christos STATIC struct job *getjob(const char *, int);
108 1.95 kre STATIC int dowait(int, struct job *, struct job **);
109 1.68 christos #define WBLOCK 1
110 1.68 christos #define WNOFREE 2
111 1.91 kre #define WSILENT 4
112 1.90 kre STATIC int jobstatus(const struct job *, int);
113 1.55 christos STATIC int waitproc(int, struct job *, int *);
114 1.55 christos STATIC void cmdtxt(union node *);
115 1.55 christos STATIC void cmdlist(union node *, int);
116 1.55 christos STATIC void cmdputs(const char *);
117 1.78 kre inline static void cmdputi(int);
118 1.1 cgd
119 1.116 kre #define JNUM(j) ((int)((j) != NULL ? ((j) - jobtab) + 1 : 0))
120 1.116 kre
121 1.66 dholland #ifdef SYSV
122 1.66 dholland STATIC int onsigchild(void);
123 1.66 dholland #endif
124 1.66 dholland
125 1.44 christos #ifdef OLD_TTY_DRIVER
126 1.55 christos static pid_t tcgetpgrp(int fd);
127 1.55 christos static int tcsetpgrp(int fd, pid_t pgrp);
128 1.44 christos
129 1.44 christos static pid_t
130 1.55 christos tcgetpgrp(int fd)
131 1.44 christos {
132 1.44 christos pid_t pgrp;
133 1.44 christos if (ioctl(fd, TIOCGPGRP, (char *)&pgrp) == -1)
134 1.44 christos return -1;
135 1.44 christos else
136 1.44 christos return pgrp;
137 1.44 christos }
138 1.44 christos
139 1.44 christos static int
140 1.55 christos tcsetpgrp(int fd, pid_tpgrp)
141 1.44 christos {
142 1.44 christos return ioctl(fd, TIOCSPGRP, (char *)&pgrp);
143 1.44 christos }
144 1.44 christos #endif
145 1.8 jtc
146 1.80 kre static void
147 1.80 kre ttyfd_change(int from, int to)
148 1.80 kre {
149 1.80 kre if (ttyfd == from)
150 1.80 kre ttyfd = to;
151 1.80 kre }
152 1.80 kre
153 1.1 cgd /*
154 1.1 cgd * Turn job control on and off.
155 1.1 cgd *
156 1.1 cgd * Note: This code assumes that the third arg to ioctl is a character
157 1.1 cgd * pointer, which is true on Berkeley systems but not System V. Since
158 1.1 cgd * System V doesn't have job control yet, this isn't a problem now.
159 1.1 cgd */
160 1.1 cgd
161 1.1 cgd MKINIT int jobctl;
162 1.1 cgd
163 1.1 cgd void
164 1.55 christos setjobctl(int on)
165 1.13 cgd {
166 1.8 jtc #ifdef OLD_TTY_DRIVER
167 1.1 cgd int ldisc;
168 1.8 jtc #endif
169 1.1 cgd
170 1.1 cgd if (on == jobctl || rootshell == 0)
171 1.1 cgd return;
172 1.1 cgd if (on) {
173 1.44 christos #if defined(FIOCLEX) || defined(FD_CLOEXEC)
174 1.57 christos int i;
175 1.80 kre
176 1.44 christos if (ttyfd != -1)
177 1.80 kre sh_close(ttyfd);
178 1.45 christos if ((ttyfd = open("/dev/tty", O_RDWR)) == -1) {
179 1.45 christos for (i = 0; i < 3; i++) {
180 1.45 christos if (isatty(i) && (ttyfd = dup(i)) != -1)
181 1.45 christos break;
182 1.45 christos }
183 1.45 christos if (i == 3)
184 1.45 christos goto out;
185 1.45 christos }
186 1.76 christos ttyfd = to_upper_fd(ttyfd); /* Move to a high fd */
187 1.80 kre register_sh_fd(ttyfd, ttyfd_change);
188 1.18 mycroft #else
189 1.44 christos out2str("sh: Need FIOCLEX or FD_CLOEXEC to support job control");
190 1.44 christos goto out;
191 1.18 mycroft #endif
192 1.114 rillig if ((initialpgrp = tcgetpgrp(ttyfd)) < 0) {
193 1.80 kre out:
194 1.114 rillig out2str("sh: can't access tty; job control turned off\n");
195 1.114 rillig mflag = 0;
196 1.114 rillig return;
197 1.114 rillig }
198 1.114 rillig if (initialpgrp == -1)
199 1.114 rillig initialpgrp = getpgrp();
200 1.114 rillig else if (initialpgrp != getpgrp())
201 1.114 rillig killpg(0, SIGTTIN);
202 1.44 christos
203 1.8 jtc #ifdef OLD_TTY_DRIVER
204 1.44 christos if (ioctl(ttyfd, TIOCGETD, (char *)&ldisc) < 0
205 1.44 christos || ldisc != NTTYDISC) {
206 1.8 jtc out2str("sh: need new tty driver to run job control; job control turned off\n");
207 1.8 jtc mflag = 0;
208 1.1 cgd return;
209 1.1 cgd }
210 1.8 jtc #endif
211 1.47 christos setsignal(SIGTSTP, 0);
212 1.47 christos setsignal(SIGTTOU, 0);
213 1.47 christos setsignal(SIGTTIN, 0);
214 1.64 tv if (getpgrp() != rootpid && setpgid(0, rootpid) == -1)
215 1.47 christos error("Cannot set process group (%s) at %d",
216 1.47 christos strerror(errno), __LINE__);
217 1.47 christos if (tcsetpgrp(ttyfd, rootpid) == -1)
218 1.47 christos error("Cannot set tty process group (%s) at %d",
219 1.47 christos strerror(errno), __LINE__);
220 1.1 cgd } else { /* turning job control off */
221 1.64 tv if (getpgrp() != initialpgrp && setpgid(0, initialpgrp) == -1)
222 1.47 christos error("Cannot set process group (%s) at %d",
223 1.47 christos strerror(errno), __LINE__);
224 1.47 christos if (tcsetpgrp(ttyfd, initialpgrp) == -1)
225 1.47 christos error("Cannot set tty process group (%s) at %d",
226 1.47 christos strerror(errno), __LINE__);
227 1.80 kre sh_close(ttyfd);
228 1.44 christos ttyfd = -1;
229 1.47 christos setsignal(SIGTSTP, 0);
230 1.47 christos setsignal(SIGTTOU, 0);
231 1.47 christos setsignal(SIGTTIN, 0);
232 1.1 cgd }
233 1.1 cgd jobctl = on;
234 1.1 cgd }
235 1.1 cgd
236 1.1 cgd
237 1.1 cgd #ifdef mkinit
238 1.16 christos INCLUDE <stdlib.h>
239 1.1 cgd
240 1.1 cgd SHELLPROC {
241 1.1 cgd backgndpid = -1;
242 1.1 cgd #if JOBS
243 1.1 cgd jobctl = 0;
244 1.1 cgd #endif
245 1.1 cgd }
246 1.1 cgd
247 1.1 cgd #endif
248 1.1 cgd
249 1.1 cgd
250 1.1 cgd
251 1.1 cgd #if JOBS
252 1.71 dsl static int
253 1.71 dsl do_fgcmd(const char *arg_ptr)
254 1.13 cgd {
255 1.1 cgd struct job *jp;
256 1.47 christos int i;
257 1.1 cgd int status;
258 1.1 cgd
259 1.91 kre if (jobs_invalid)
260 1.91 kre error("No current jobs");
261 1.71 dsl jp = getjob(arg_ptr, 0);
262 1.1 cgd if (jp->jobctl == 0)
263 1.1 cgd error("job not created under job control");
264 1.55 christos out1fmt("%s", jp->ps[0].cmd);
265 1.55 christos for (i = 1; i < jp->nprocs; i++)
266 1.55 christos out1fmt(" | %s", jp->ps[i].cmd );
267 1.55 christos out1c('\n');
268 1.55 christos flushall();
269 1.47 christos
270 1.48 christos for (i = 0; i < jp->nprocs; i++)
271 1.47 christos if (tcsetpgrp(ttyfd, jp->ps[i].pid) != -1)
272 1.47 christos break;
273 1.47 christos
274 1.48 christos if (i >= jp->nprocs) {
275 1.47 christos error("Cannot set tty process group (%s) at %d",
276 1.47 christos strerror(errno), __LINE__);
277 1.47 christos }
278 1.104 kre INTOFF;
279 1.1 cgd restartjob(jp);
280 1.1 cgd status = waitforjob(jp);
281 1.1 cgd INTON;
282 1.1 cgd return status;
283 1.1 cgd }
284 1.1 cgd
285 1.71 dsl int
286 1.71 dsl fgcmd(int argc, char **argv)
287 1.71 dsl {
288 1.71 dsl nextopt("");
289 1.71 dsl return do_fgcmd(*argptr);
290 1.71 dsl }
291 1.71 dsl
292 1.71 dsl int
293 1.71 dsl fgcmd_percent(int argc, char **argv)
294 1.71 dsl {
295 1.71 dsl nextopt("");
296 1.71 dsl return do_fgcmd(*argv);
297 1.71 dsl }
298 1.71 dsl
299 1.55 christos static void
300 1.55 christos set_curjob(struct job *jp, int mode)
301 1.55 christos {
302 1.55 christos struct job *jp1, *jp2;
303 1.55 christos int i, ji;
304 1.55 christos
305 1.55 christos ji = jp - jobtab;
306 1.55 christos
307 1.55 christos /* first remove from list */
308 1.55 christos if (ji == curjob)
309 1.55 christos curjob = jp->prev_job;
310 1.55 christos else {
311 1.55 christos for (i = 0; i < njobs; i++) {
312 1.55 christos if (jobtab[i].prev_job != ji)
313 1.55 christos continue;
314 1.55 christos jobtab[i].prev_job = jp->prev_job;
315 1.55 christos break;
316 1.55 christos }
317 1.55 christos }
318 1.55 christos
319 1.55 christos /* Then re-insert in correct position */
320 1.55 christos switch (mode) {
321 1.55 christos case 0: /* job being deleted */
322 1.55 christos jp->prev_job = -1;
323 1.55 christos break;
324 1.55 christos case 1: /* newly created job or backgrounded job,
325 1.55 christos put after all stopped jobs. */
326 1.55 christos if (curjob != -1 && jobtab[curjob].state == JOBSTOPPED) {
327 1.55 christos for (jp1 = jobtab + curjob; ; jp1 = jp2) {
328 1.55 christos if (jp1->prev_job == -1)
329 1.55 christos break;
330 1.55 christos jp2 = jobtab + jp1->prev_job;
331 1.55 christos if (jp2->state != JOBSTOPPED)
332 1.55 christos break;
333 1.55 christos }
334 1.55 christos jp->prev_job = jp1->prev_job;
335 1.55 christos jp1->prev_job = ji;
336 1.55 christos break;
337 1.55 christos }
338 1.55 christos /* FALLTHROUGH */
339 1.55 christos case 2: /* newly stopped job - becomes curjob */
340 1.55 christos jp->prev_job = curjob;
341 1.55 christos curjob = ji;
342 1.55 christos break;
343 1.55 christos }
344 1.55 christos }
345 1.1 cgd
346 1.13 cgd int
347 1.55 christos bgcmd(int argc, char **argv)
348 1.13 cgd {
349 1.1 cgd struct job *jp;
350 1.55 christos int i;
351 1.1 cgd
352 1.55 christos nextopt("");
353 1.91 kre if (jobs_invalid)
354 1.91 kre error("No current jobs");
355 1.1 cgd do {
356 1.55 christos jp = getjob(*argptr, 0);
357 1.1 cgd if (jp->jobctl == 0)
358 1.1 cgd error("job not created under job control");
359 1.55 christos set_curjob(jp, 1);
360 1.116 kre out1fmt("[%d] %s", JNUM(jp), jp->ps[0].cmd);
361 1.55 christos for (i = 1; i < jp->nprocs; i++)
362 1.55 christos out1fmt(" | %s", jp->ps[i].cmd );
363 1.55 christos out1c('\n');
364 1.55 christos flushall();
365 1.1 cgd restartjob(jp);
366 1.55 christos } while (*argptr && *++argptr);
367 1.1 cgd return 0;
368 1.1 cgd }
369 1.1 cgd
370 1.1 cgd
371 1.1 cgd STATIC void
372 1.55 christos restartjob(struct job *jp)
373 1.13 cgd {
374 1.1 cgd struct procstat *ps;
375 1.105 kre int i, e;
376 1.1 cgd
377 1.1 cgd if (jp->state == JOBDONE)
378 1.1 cgd return;
379 1.1 cgd INTOFF;
380 1.105 kre for (e = i = 0; i < jp->nprocs; i++) {
381 1.108 kre /*
382 1.108 kre * Don't touch a process we already waited for and collected
383 1.108 kre * exit status, that pid may have been reused for something
384 1.108 kre * else - even another of our jobs
385 1.108 kre */
386 1.108 kre if (jp->ps[i].status != -1 && !WIFSTOPPED(jp->ps[i].status))
387 1.108 kre continue;
388 1.108 kre
389 1.108 kre /*
390 1.108 kre * Otherwise tell it to continue, if it worked, we're done
391 1.108 kre * (we signal the whole process group)
392 1.108 kre */
393 1.47 christos if (killpg(jp->ps[i].pid, SIGCONT) != -1)
394 1.47 christos break;
395 1.105 kre if (e == 0 && errno != ESRCH)
396 1.105 kre e = errno;
397 1.105 kre }
398 1.48 christos if (i >= jp->nprocs)
399 1.105 kre error("Cannot continue job (%s)", strerror(e ? e : ESRCH));
400 1.108 kre
401 1.108 kre /*
402 1.108 kre * Now change state of all stopped processes in the job to running
403 1.108 kre * If there were any, the job is now running as well.
404 1.108 kre */
405 1.1 cgd for (ps = jp->ps, i = jp->nprocs ; --i >= 0 ; ps++) {
406 1.23 christos if (WIFSTOPPED(ps->status)) {
407 1.92 kre VTRACE(DBG_JOBS, (
408 1.116 kre "restartjob: [%d] pid %d status change"
409 1.92 kre " from %#x (stopped) to -1 (running)\n",
410 1.116 kre JNUM(jp), ps->pid, ps->status));
411 1.1 cgd ps->status = -1;
412 1.55 christos jp->state = JOBRUNNING;
413 1.1 cgd }
414 1.1 cgd }
415 1.1 cgd INTON;
416 1.1 cgd }
417 1.1 cgd #endif
418 1.1 cgd
419 1.78 kre inline static void
420 1.77 kre cmdputi(int n)
421 1.77 kre {
422 1.77 kre char str[20];
423 1.77 kre
424 1.77 kre fmtstr(str, sizeof str, "%d", n);
425 1.77 kre cmdputs(str);
426 1.77 kre }
427 1.77 kre
428 1.55 christos static void
429 1.55 christos showjob(struct output *out, struct job *jp, int mode)
430 1.55 christos {
431 1.55 christos int procno;
432 1.55 christos int st;
433 1.55 christos struct procstat *ps;
434 1.55 christos int col;
435 1.55 christos char s[64];
436 1.55 christos
437 1.55 christos #if JOBS
438 1.55 christos if (mode & SHOW_PGID) {
439 1.55 christos /* just output process (group) id of pipeline */
440 1.55 christos outfmt(out, "%ld\n", (long)jp->ps->pid);
441 1.55 christos return;
442 1.55 christos }
443 1.55 christos #endif
444 1.55 christos
445 1.55 christos procno = jp->nprocs;
446 1.55 christos if (!procno)
447 1.55 christos return;
448 1.55 christos
449 1.55 christos if (mode & SHOW_PID)
450 1.55 christos mode |= SHOW_MULTILINE;
451 1.55 christos
452 1.55 christos if ((procno > 1 && !(mode & SHOW_MULTILINE))
453 1.55 christos || (mode & SHOW_SIGNALLED)) {
454 1.55 christos /* See if we have more than one status to report */
455 1.55 christos ps = jp->ps;
456 1.55 christos st = ps->status;
457 1.55 christos do {
458 1.55 christos int st1 = ps->status;
459 1.55 christos if (st1 != st)
460 1.55 christos /* yes - need multi-line output */
461 1.55 christos mode |= SHOW_MULTILINE;
462 1.55 christos if (st1 == -1 || !(mode & SHOW_SIGNALLED) || WIFEXITED(st1))
463 1.55 christos continue;
464 1.55 christos if (WIFSTOPPED(st1) || ((st1 = WTERMSIG(st1) & 0x7f)
465 1.55 christos && st1 != SIGINT && st1 != SIGPIPE))
466 1.55 christos mode |= SHOW_ISSIG;
467 1.55 christos
468 1.55 christos } while (ps++, --procno);
469 1.55 christos procno = jp->nprocs;
470 1.55 christos }
471 1.55 christos
472 1.55 christos if (mode & SHOW_SIGNALLED && !(mode & SHOW_ISSIG)) {
473 1.55 christos if (jp->state == JOBDONE && !(mode & SHOW_NO_FREE)) {
474 1.87 kre VTRACE(DBG_JOBS, ("showjob: freeing job %d\n",
475 1.116 kre JNUM(jp)));
476 1.55 christos freejob(jp);
477 1.55 christos }
478 1.55 christos return;
479 1.55 christos }
480 1.55 christos
481 1.55 christos for (ps = jp->ps; --procno >= 0; ps++) { /* for each process */
482 1.55 christos if (ps == jp->ps)
483 1.116 kre fmtstr(s, 16, "[%d] %c ",
484 1.116 kre JNUM(jp),
485 1.55 christos #if JOBS
486 1.98 kre jp - jobtab == curjob ?
487 1.98 kre '+' :
488 1.98 kre curjob != -1 &&
489 1.98 kre jp - jobtab == jobtab[curjob].prev_job ?
490 1.98 kre '-' :
491 1.55 christos #endif
492 1.55 christos ' ');
493 1.55 christos else
494 1.55 christos fmtstr(s, 16, " " );
495 1.55 christos col = strlen(s);
496 1.55 christos if (mode & SHOW_PID) {
497 1.55 christos fmtstr(s + col, 16, "%ld ", (long)ps->pid);
498 1.55 christos col += strlen(s + col);
499 1.55 christos }
500 1.55 christos if (ps->status == -1) {
501 1.55 christos scopy("Running", s + col);
502 1.55 christos } else if (WIFEXITED(ps->status)) {
503 1.55 christos st = WEXITSTATUS(ps->status);
504 1.55 christos if (st)
505 1.55 christos fmtstr(s + col, 16, "Done(%d)", st);
506 1.55 christos else
507 1.55 christos fmtstr(s + col, 16, "Done");
508 1.55 christos } else {
509 1.55 christos #if JOBS
510 1.91 kre if (WIFSTOPPED(ps->status))
511 1.55 christos st = WSTOPSIG(ps->status);
512 1.55 christos else /* WIFSIGNALED(ps->status) */
513 1.55 christos #endif
514 1.55 christos st = WTERMSIG(ps->status);
515 1.102 kre scopyn(strsignal(st), s + col, 32);
516 1.55 christos if (WCOREDUMP(ps->status)) {
517 1.55 christos col += strlen(s + col);
518 1.55 christos scopyn(" (core dumped)", s + col, 64 - col);
519 1.55 christos }
520 1.55 christos }
521 1.55 christos col += strlen(s + col);
522 1.55 christos outstr(s, out);
523 1.55 christos do {
524 1.55 christos outc(' ', out);
525 1.55 christos col++;
526 1.55 christos } while (col < 30);
527 1.55 christos outstr(ps->cmd, out);
528 1.55 christos if (mode & SHOW_MULTILINE) {
529 1.55 christos if (procno > 0) {
530 1.55 christos outc(' ', out);
531 1.55 christos outc('|', out);
532 1.55 christos }
533 1.55 christos } else {
534 1.55 christos while (--procno >= 0)
535 1.55 christos outfmt(out, " | %s", (++ps)->cmd );
536 1.55 christos }
537 1.55 christos outc('\n', out);
538 1.55 christos }
539 1.55 christos flushout(out);
540 1.95 kre jp->flags &= ~JOBCHANGED;
541 1.55 christos if (jp->state == JOBDONE && !(mode & SHOW_NO_FREE))
542 1.55 christos freejob(jp);
543 1.55 christos }
544 1.55 christos
545 1.1 cgd int
546 1.55 christos jobscmd(int argc, char **argv)
547 1.13 cgd {
548 1.55 christos int mode, m;
549 1.55 christos
550 1.55 christos mode = 0;
551 1.111 christos while ((m = nextopt("lpZ")))
552 1.111 christos switch (m) {
553 1.111 christos case 'l':
554 1.55 christos mode = SHOW_PID;
555 1.111 christos break;
556 1.111 christos case 'p':
557 1.55 christos mode = SHOW_PGID;
558 1.111 christos break;
559 1.111 christos case 'Z':
560 1.111 christos mode = SHOW_PROCTITLE;
561 1.111 christos break;
562 1.111 christos }
563 1.111 christos
564 1.111 christos if (mode == SHOW_PROCTITLE) {
565 1.112 kre if (*argptr && **argptr)
566 1.112 kre setproctitle("%s", *argptr);
567 1.112 kre else
568 1.112 kre setproctitle(NULL);
569 1.111 christos return 0;
570 1.111 christos }
571 1.105 kre
572 1.105 kre if (!iflag && !posix)
573 1.91 kre mode |= SHOW_NO_FREE;
574 1.105 kre
575 1.105 kre if (*argptr) {
576 1.55 christos do
577 1.55 christos showjob(out1, getjob(*argptr,0), mode);
578 1.55 christos while (*++argptr);
579 1.105 kre } else
580 1.55 christos showjobs(out1, mode);
581 1.1 cgd return 0;
582 1.1 cgd }
583 1.1 cgd
584 1.1 cgd
585 1.1 cgd /*
586 1.1 cgd * Print a list of jobs. If "change" is nonzero, only print jobs whose
587 1.1 cgd * statuses have changed since the last call to showjobs.
588 1.1 cgd *
589 1.1 cgd * If the shell is interrupted in the process of creating a job, the
590 1.1 cgd * result may be a job structure containing zero processes. Such structures
591 1.1 cgd * will be freed here.
592 1.1 cgd */
593 1.1 cgd
594 1.1 cgd void
595 1.55 christos showjobs(struct output *out, int mode)
596 1.13 cgd {
597 1.1 cgd int jobno;
598 1.1 cgd struct job *jp;
599 1.47 christos int silent = 0, gotpid;
600 1.1 cgd
601 1.87 kre CTRACE(DBG_JOBS, ("showjobs(%x) called\n", mode));
602 1.47 christos
603 1.108 kre /* Collect everything pending in the kernel */
604 1.108 kre if ((gotpid = dowait(WSILENT, NULL, NULL)) > 0)
605 1.108 kre while (dowait(WSILENT, NULL, NULL) > 0)
606 1.108 kre continue;
607 1.47 christos #ifdef JOBS
608 1.47 christos /*
609 1.47 christos * Check if we are not in our foreground group, and if not
610 1.47 christos * put us in it.
611 1.47 christos */
612 1.54 christos if (mflag && gotpid != -1 && tcgetpgrp(ttyfd) != getpid()) {
613 1.47 christos if (tcsetpgrp(ttyfd, getpid()) == -1)
614 1.47 christos error("Cannot set tty process group (%s) at %d",
615 1.47 christos strerror(errno), __LINE__);
616 1.87 kre VTRACE(DBG_JOBS|DBG_INPUT, ("repaired tty process group\n"));
617 1.47 christos silent = 1;
618 1.47 christos }
619 1.47 christos #endif
620 1.55 christos
621 1.1 cgd for (jobno = 1, jp = jobtab ; jobno <= njobs ; jobno++, jp++) {
622 1.55 christos if (!jp->used)
623 1.1 cgd continue;
624 1.1 cgd if (jp->nprocs == 0) {
625 1.101 kre if (!jobs_invalid)
626 1.101 kre freejob(jp);
627 1.1 cgd continue;
628 1.1 cgd }
629 1.95 kre if ((mode & SHOW_CHANGED) && !(jp->flags & JOBCHANGED))
630 1.1 cgd continue;
631 1.95 kre if (silent && (jp->flags & JOBCHANGED)) {
632 1.95 kre jp->flags &= ~JOBCHANGED;
633 1.47 christos continue;
634 1.47 christos }
635 1.55 christos showjob(out, jp, mode);
636 1.1 cgd }
637 1.1 cgd }
638 1.1 cgd
639 1.1 cgd /*
640 1.1 cgd * Mark a job structure as unused.
641 1.1 cgd */
642 1.1 cgd
643 1.1 cgd STATIC void
644 1.55 christos freejob(struct job *jp)
645 1.55 christos {
646 1.1 cgd INTOFF;
647 1.41 christos if (jp->ps != &jp->ps0) {
648 1.1 cgd ckfree(jp->ps);
649 1.41 christos jp->ps = &jp->ps0;
650 1.41 christos }
651 1.41 christos jp->nprocs = 0;
652 1.1 cgd jp->used = 0;
653 1.1 cgd #if JOBS
654 1.55 christos set_curjob(jp, 0);
655 1.1 cgd #endif
656 1.1 cgd INTON;
657 1.1 cgd }
658 1.1 cgd
659 1.90 kre /*
660 1.90 kre * Extract the status of a completed job (for $?)
661 1.90 kre */
662 1.90 kre STATIC int
663 1.90 kre jobstatus(const struct job *jp, int raw)
664 1.90 kre {
665 1.90 kre int status = 0;
666 1.90 kre int retval;
667 1.90 kre
668 1.100 kre if ((jp->flags & JPIPEFAIL) && jp->nprocs) {
669 1.90 kre int i;
670 1.90 kre
671 1.90 kre for (i = 0; i < jp->nprocs; i++)
672 1.90 kre if (jp->ps[i].status != 0)
673 1.90 kre status = jp->ps[i].status;
674 1.90 kre } else
675 1.90 kre status = jp->ps[jp->nprocs ? jp->nprocs - 1 : 0].status;
676 1.90 kre
677 1.90 kre if (raw)
678 1.90 kre return status;
679 1.90 kre
680 1.90 kre if (WIFEXITED(status))
681 1.90 kre retval = WEXITSTATUS(status);
682 1.90 kre #if JOBS
683 1.90 kre else if (WIFSTOPPED(status))
684 1.90 kre retval = WSTOPSIG(status) + 128;
685 1.90 kre #endif
686 1.90 kre else {
687 1.90 kre /* XXX: limits number of signals */
688 1.90 kre retval = WTERMSIG(status) + 128;
689 1.90 kre }
690 1.90 kre
691 1.90 kre return retval;
692 1.90 kre }
693 1.90 kre
694 1.1 cgd
695 1.1 cgd
696 1.1 cgd int
697 1.55 christos waitcmd(int argc, char **argv)
698 1.13 cgd {
699 1.95 kre struct job *job, *last;
700 1.90 kre int retval;
701 1.1 cgd struct job *jp;
702 1.95 kre int i;
703 1.95 kre int any = 0;
704 1.95 kre int found;
705 1.95 kre char *pid = NULL, *fpid;
706 1.95 kre char **arg;
707 1.95 kre char idstring[20];
708 1.95 kre
709 1.95 kre while ((i = nextopt("np:")) != '\0') {
710 1.95 kre switch (i) {
711 1.95 kre case 'n':
712 1.95 kre any = 1;
713 1.95 kre break;
714 1.95 kre case 'p':
715 1.95 kre if (pid)
716 1.95 kre error("more than one -p unsupported");
717 1.95 kre pid = optionarg;
718 1.95 kre break;
719 1.95 kre }
720 1.95 kre }
721 1.1 cgd
722 1.95 kre if (pid != NULL) {
723 1.95 kre if (!validname(pid, '\0', NULL))
724 1.95 kre error("invalid name: -p '%s'", pid);
725 1.95 kre if (unsetvar(pid, 0))
726 1.95 kre error("%s readonly", pid);
727 1.95 kre }
728 1.55 christos
729 1.91 kre /*
730 1.91 kre * If we have forked, and not yet created any new jobs, then
731 1.91 kre * we have no children, whatever jobtab claims,
732 1.91 kre * so simply return in that case.
733 1.91 kre *
734 1.91 kre * The return code is 127 if we had any pid args (none are found)
735 1.95 kre * or if we had -n (nothing exited), but 0 for plain old "wait".
736 1.91 kre */
737 1.95 kre if (jobs_invalid) {
738 1.95 kre CTRACE(DBG_WAIT, ("builtin wait%s%s in child, invalid jobtab\n",
739 1.95 kre any ? " -n" : "", *argptr ? " pid..." : ""));
740 1.95 kre return (any || *argptr) ? 127 : 0;
741 1.95 kre }
742 1.91 kre
743 1.106 kre /*
744 1.106 kre * clear stray flags left from previous waitcmd
745 1.106 kre * or set them instead if anything will do ("wait -n")
746 1.106 kre */
747 1.95 kre for (jp = jobtab, i = njobs ; --i >= 0 ; jp++) {
748 1.106 kre if (any && *argptr == NULL)
749 1.106 kre jp->flags |= JOBWANTED;
750 1.106 kre else
751 1.106 kre jp->flags &= ~JOBWANTED;
752 1.95 kre jp->ref = NULL;
753 1.1 cgd }
754 1.55 christos
755 1.95 kre CTRACE(DBG_WAIT,
756 1.95 kre ("builtin wait%s%s\n", any ? " -n" : "", *argptr ? " pid..." : ""));
757 1.95 kre
758 1.95 kre /*
759 1.95 kre * First, validate the jobnum args, count how many refer to
760 1.95 kre * (different) running jobs, and if we had -n, and found that one has
761 1.95 kre * already finished, we return that one. Otherwise remember
762 1.95 kre * which ones we are looking for (JOBWANTED).
763 1.95 kre */
764 1.95 kre found = 0;
765 1.95 kre last = NULL;
766 1.95 kre for (arg = argptr; *arg; arg++) {
767 1.95 kre last = jp = getjob(*arg, 1);
768 1.95 kre if (!jp)
769 1.55 christos continue;
770 1.95 kre if (jp->ref == NULL)
771 1.95 kre jp->ref = *arg;
772 1.95 kre if (any && jp->state == JOBDONE) {
773 1.95 kre /*
774 1.95 kre * We just want any of them, and this one is
775 1.95 kre * ready for consumption, bon apetit ...
776 1.95 kre */
777 1.95 kre retval = jobstatus(jp, 0);
778 1.95 kre if (pid)
779 1.95 kre setvar(pid, *arg, 0);
780 1.95 kre if (!iflag)
781 1.95 kre freejob(jp);
782 1.95 kre CTRACE(DBG_WAIT, ("wait -n found %s already done: %d\n", *arg, retval));
783 1.95 kre return retval;
784 1.55 christos }
785 1.95 kre if (!(jp->flags & JOBWANTED)) {
786 1.95 kre /*
787 1.95 kre * It is possible to list the same job several
788 1.95 kre * times - the obvious "wait 1 1 1" or
789 1.95 kre * "wait %% %2 102" where job 2 is current and pid 102
790 1.95 kre * However many times it is requested, it is found once.
791 1.95 kre */
792 1.95 kre found++;
793 1.95 kre jp->flags |= JOBWANTED;
794 1.95 kre }
795 1.95 kre job = jp;
796 1.95 kre }
797 1.95 kre
798 1.95 kre VTRACE(DBG_WAIT, ("wait %s%s%sfound %d candidates (last %s)\n",
799 1.95 kre any ? "-n " : "", *argptr ? *argptr : "",
800 1.95 kre argptr[0] && argptr[1] ? "... " : " ", found,
801 1.110 kre job && job->used ? (job->ref ? job->ref : "<no-arg>") : "none"));
802 1.95 kre
803 1.95 kre /*
804 1.95 kre * If we were given a list of jobnums:
805 1.95 kre * and none of those exist, then we're done.
806 1.95 kre */
807 1.95 kre if (*argptr && found == 0)
808 1.95 kre return 127;
809 1.95 kre
810 1.95 kre /*
811 1.95 kre * Otherwise we need to wait for something to complete
812 1.95 kre * When it does, we check and see if it is one of the
813 1.95 kre * jobs we're waiting on, and if so, we clean it up.
814 1.95 kre * If we had -n, then we're done, otherwise we do it all again
815 1.95 kre * until all we had listed are done, of if there were no
816 1.95 kre * jobnum args, all are done.
817 1.95 kre */
818 1.95 kre
819 1.95 kre retval = any || *argptr ? 127 : 0;
820 1.95 kre fpid = NULL;
821 1.95 kre for (;;) {
822 1.95 kre VTRACE(DBG_WAIT, ("wait waiting (%d remain): ", found));
823 1.106 kre job = NULL;
824 1.95 kre for (jp = jobtab, i = njobs; --i >= 0; jp++) {
825 1.95 kre if (jp->used && jp->flags & JOBWANTED &&
826 1.106 kre jp->state == JOBDONE) {
827 1.106 kre job = jp;
828 1.95 kre break;
829 1.106 kre }
830 1.95 kre if (jp->used && jp->state == JOBRUNNING)
831 1.106 kre job = jp;
832 1.95 kre }
833 1.106 kre if (i < 0 && job == NULL) {
834 1.95 kre CTRACE(DBG_WAIT, ("nothing running (ret: %d) fpid %s\n",
835 1.95 kre retval, fpid ? fpid : "unset"));
836 1.95 kre if (pid && fpid)
837 1.95 kre setvar(pid, fpid, 0);
838 1.95 kre return retval;
839 1.95 kre }
840 1.106 kre jp = job;
841 1.95 kre VTRACE(DBG_WAIT, ("found @%d/%d state: %d\n", njobs-i, njobs,
842 1.95 kre jp->state));
843 1.95 kre
844 1.95 kre /*
845 1.95 kre * There is at least 1 job running, so we can
846 1.108 kre * safely wait() (blocking) for something to exit.
847 1.95 kre */
848 1.95 kre if (jp->state == JOBRUNNING) {
849 1.95 kre job = NULL;
850 1.95 kre if ((i = dowait(WBLOCK|WNOFREE, NULL, &job)) == -1)
851 1.75 christos return 128 + lastsig();
852 1.95 kre
853 1.108 kre /*
854 1.108 kre * This happens if an interloper has died
855 1.108 kre * (eg: a child of the executable that exec'd us)
856 1.108 kre * Simply go back and start all over again
857 1.108 kre * (this is rare).
858 1.108 kre */
859 1.108 kre if (job == NULL)
860 1.107 kre continue;
861 1.107 kre
862 1.95 kre /*
863 1.108 kre * one of the reported job's processes exited,
864 1.108 kre * but there are more still running, back for more
865 1.95 kre */
866 1.95 kre if (job->state == JOBRUNNING)
867 1.95 kre continue;
868 1.95 kre } else
869 1.95 kre job = jp; /* we want this, and it is done */
870 1.95 kre
871 1.106 kre if (job->flags & JOBWANTED) {
872 1.95 kre int rv;
873 1.95 kre
874 1.95 kre job->flags &= ~JOBWANTED; /* got it */
875 1.95 kre rv = jobstatus(job, 0);
876 1.95 kre VTRACE(DBG_WAIT, (
877 1.95 kre "wanted %d (%s) done: st=%d", i,
878 1.95 kre job->ref ? job->ref : "", rv));
879 1.95 kre if (any || job == last) {
880 1.95 kre retval = rv;
881 1.95 kre fpid = job->ref;
882 1.95 kre
883 1.95 kre VTRACE(DBG_WAIT, (" save"));
884 1.95 kre if (pid) {
885 1.95 kre /*
886 1.95 kre * don't need fpid unless we are going
887 1.95 kre * to return it.
888 1.95 kre */
889 1.95 kre if (fpid == NULL) {
890 1.95 kre /*
891 1.95 kre * this only happens with "wait -n"
892 1.95 kre * (that is, no pid args)
893 1.95 kre */
894 1.95 kre snprintf(idstring, sizeof idstring,
895 1.95 kre "%d", job->ps[ job->nprocs ?
896 1.95 kre job->nprocs-1 :
897 1.95 kre 0 ].pid);
898 1.95 kre fpid = idstring;
899 1.95 kre }
900 1.95 kre VTRACE(DBG_WAIT, (" (for %s)", fpid));
901 1.95 kre }
902 1.95 kre }
903 1.95 kre
904 1.95 kre if (job->state == JOBDONE) {
905 1.95 kre VTRACE(DBG_WAIT, (" free"));
906 1.95 kre freejob(job);
907 1.95 kre }
908 1.95 kre
909 1.95 kre if (any || (found > 0 && --found == 0)) {
910 1.95 kre if (pid && fpid)
911 1.95 kre setvar(pid, fpid, 0);
912 1.95 kre VTRACE(DBG_WAIT, (" return %d\n", retval));
913 1.95 kre return retval;
914 1.95 kre }
915 1.95 kre VTRACE(DBG_WAIT, ("\n"));
916 1.95 kre continue;
917 1.55 christos }
918 1.95 kre
919 1.95 kre /* this is to handle "wait" (no args) */
920 1.95 kre if (found == 0 && job->state == JOBDONE) {
921 1.95 kre VTRACE(DBG_JOBS|DBG_WAIT, ("Cleanup: %d\n", i));
922 1.55 christos freejob(job);
923 1.95 kre }
924 1.1 cgd }
925 1.1 cgd }
926 1.1 cgd
927 1.1 cgd
928 1.13 cgd int
929 1.55 christos jobidcmd(int argc, char **argv)
930 1.13 cgd {
931 1.1 cgd struct job *jp;
932 1.1 cgd int i;
933 1.92 kre int pg = 0, onep = 0, job = 0;
934 1.92 kre
935 1.92 kre while ((i = nextopt("gjp"))) {
936 1.92 kre switch (i) {
937 1.92 kre case 'g': pg = 1; break;
938 1.92 kre case 'j': job = 1; break;
939 1.92 kre case 'p': onep = 1; break;
940 1.92 kre }
941 1.92 kre }
942 1.92 kre CTRACE(DBG_JOBS, ("jobidcmd%s%s%s%s %s\n", pg ? " -g" : "",
943 1.92 kre onep ? " -p" : "", job ? " -j" : "", jobs_invalid ? " [inv]" : "",
944 1.92 kre *argptr ? *argptr : "<implicit %%>"));
945 1.92 kre if (pg + onep + job > 1)
946 1.92 kre error("-g -j and -p options cannot be combined");
947 1.92 kre
948 1.92 kre if (argptr[0] && argptr[1])
949 1.92 kre error("usage: jobid [-g|-p|-r] jobid");
950 1.1 cgd
951 1.55 christos jp = getjob(*argptr, 0);
952 1.92 kre if (job) {
953 1.116 kre out1fmt("%%%d\n", JNUM(jp));
954 1.92 kre return 0;
955 1.92 kre }
956 1.92 kre if (pg) {
957 1.92 kre if (jp->pgrp != 0) {
958 1.92 kre out1fmt("%ld\n", (long)jp->pgrp);
959 1.92 kre return 0;
960 1.92 kre }
961 1.92 kre return 1;
962 1.92 kre }
963 1.92 kre if (onep) {
964 1.92 kre i = jp->nprocs - 1;
965 1.92 kre if (i < 0)
966 1.92 kre return 1;
967 1.92 kre out1fmt("%ld\n", (long)jp->ps[i].pid);
968 1.92 kre return 0;
969 1.92 kre }
970 1.1 cgd for (i = 0 ; i < jp->nprocs ; ) {
971 1.27 christos out1fmt("%ld", (long)jp->ps[i].pid);
972 1.55 christos out1c(++i < jp->nprocs ? ' ' : '\n');
973 1.1 cgd }
974 1.1 cgd return 0;
975 1.1 cgd }
976 1.1 cgd
977 1.55 christos int
978 1.55 christos getjobpgrp(const char *name)
979 1.55 christos {
980 1.55 christos struct job *jp;
981 1.1 cgd
982 1.91 kre if (jobs_invalid)
983 1.91 kre error("No such job: %s", name);
984 1.55 christos jp = getjob(name, 1);
985 1.55 christos if (jp == 0)
986 1.55 christos return 0;
987 1.109 kre return -jp->pgrp;
988 1.55 christos }
989 1.1 cgd
990 1.1 cgd /*
991 1.1 cgd * Convert a job name to a job structure.
992 1.1 cgd */
993 1.1 cgd
994 1.1 cgd STATIC struct job *
995 1.55 christos getjob(const char *name, int noerror)
996 1.55 christos {
997 1.55 christos int jobno = -1;
998 1.21 tls struct job *jp;
999 1.1 cgd int pid;
1000 1.1 cgd int i;
1001 1.55 christos const char *err_msg = "No such job: %s";
1002 1.91 kre
1003 1.1 cgd if (name == NULL) {
1004 1.1 cgd #if JOBS
1005 1.55 christos jobno = curjob;
1006 1.1 cgd #endif
1007 1.55 christos err_msg = "No current job";
1008 1.1 cgd } else if (name[0] == '%') {
1009 1.55 christos if (is_number(name + 1)) {
1010 1.55 christos jobno = number(name + 1) - 1;
1011 1.95 kre } else if (!name[1] || !name[2]) {
1012 1.55 christos switch (name[1]) {
1013 1.1 cgd #if JOBS
1014 1.55 christos case 0:
1015 1.55 christos case '+':
1016 1.55 christos case '%':
1017 1.55 christos jobno = curjob;
1018 1.55 christos err_msg = "No current job";
1019 1.55 christos break;
1020 1.55 christos case '-':
1021 1.55 christos jobno = curjob;
1022 1.55 christos if (jobno != -1)
1023 1.55 christos jobno = jobtab[jobno].prev_job;
1024 1.55 christos err_msg = "No previous job";
1025 1.55 christos break;
1026 1.1 cgd #endif
1027 1.55 christos default:
1028 1.55 christos goto check_pattern;
1029 1.55 christos }
1030 1.1 cgd } else {
1031 1.55 christos struct job *found;
1032 1.55 christos check_pattern:
1033 1.55 christos found = NULL;
1034 1.1 cgd for (jp = jobtab, i = njobs ; --i >= 0 ; jp++) {
1035 1.55 christos if (!jp->used || jp->nprocs <= 0)
1036 1.55 christos continue;
1037 1.55 christos if ((name[1] == '?'
1038 1.55 christos && strstr(jp->ps[0].cmd, name + 2))
1039 1.55 christos || prefix(name + 1, jp->ps[0].cmd)) {
1040 1.55 christos if (found) {
1041 1.55 christos err_msg = "%s: ambiguous";
1042 1.55 christos found = 0;
1043 1.55 christos break;
1044 1.55 christos }
1045 1.1 cgd found = jp;
1046 1.1 cgd }
1047 1.1 cgd }
1048 1.1 cgd if (found)
1049 1.1 cgd return found;
1050 1.1 cgd }
1051 1.55 christos
1052 1.1 cgd } else if (is_number(name)) {
1053 1.1 cgd pid = number(name);
1054 1.1 cgd for (jp = jobtab, i = njobs ; --i >= 0 ; jp++) {
1055 1.1 cgd if (jp->used && jp->nprocs > 0
1056 1.1 cgd && jp->ps[jp->nprocs - 1].pid == pid)
1057 1.1 cgd return jp;
1058 1.1 cgd }
1059 1.1 cgd }
1060 1.55 christos
1061 1.91 kre if (jobno >= 0 && jobno < njobs) {
1062 1.55 christos jp = jobtab + jobno;
1063 1.55 christos if (jp->used)
1064 1.55 christos return jp;
1065 1.55 christos }
1066 1.55 christos if (!noerror)
1067 1.55 christos error(err_msg, name);
1068 1.55 christos return 0;
1069 1.1 cgd }
1070 1.1 cgd
1071 1.1 cgd
1072 1.110 kre /*
1073 1.110 kre * Find out if there are any running (that is, unwaited upon)
1074 1.110 kre * background children of the current shell.
1075 1.110 kre *
1076 1.110 kre * Return 1/0 (yes, no).
1077 1.110 kre *
1078 1.110 kre * Needed as we cannot optimise away sub-shell creation if
1079 1.110 kre * we have such a child, or a "wait" in that sub-shell would
1080 1.110 kre * observe the already existing job.
1081 1.110 kre */
1082 1.110 kre int
1083 1.110 kre anyjobs(void)
1084 1.110 kre {
1085 1.110 kre struct job *jp;
1086 1.110 kre int i;
1087 1.110 kre
1088 1.110 kre if (jobs_invalid)
1089 1.110 kre return 0;
1090 1.110 kre
1091 1.110 kre for (i = njobs, jp = jobtab ; --i >= 0 ; jp++) {
1092 1.110 kre if (jp->used)
1093 1.110 kre return 1;
1094 1.110 kre }
1095 1.110 kre
1096 1.110 kre return 0;
1097 1.110 kre }
1098 1.1 cgd
1099 1.1 cgd /*
1100 1.1 cgd * Return a new job structure,
1101 1.1 cgd */
1102 1.1 cgd
1103 1.1 cgd struct job *
1104 1.55 christos makejob(union node *node, int nprocs)
1105 1.13 cgd {
1106 1.1 cgd int i;
1107 1.1 cgd struct job *jp;
1108 1.1 cgd
1109 1.55 christos if (jobs_invalid) {
1110 1.110 kre VTRACE(DBG_JOBS, ("makejob(%p, %d) clearing jobtab (%d)\n",
1111 1.110 kre (void *)node, nprocs, njobs));
1112 1.55 christos for (i = njobs, jp = jobtab ; --i >= 0 ; jp++) {
1113 1.55 christos if (jp->used)
1114 1.55 christos freejob(jp);
1115 1.55 christos }
1116 1.55 christos jobs_invalid = 0;
1117 1.55 christos }
1118 1.55 christos
1119 1.1 cgd for (i = njobs, jp = jobtab ; ; jp++) {
1120 1.1 cgd if (--i < 0) {
1121 1.1 cgd INTOFF;
1122 1.1 cgd if (njobs == 0) {
1123 1.1 cgd jobtab = ckmalloc(4 * sizeof jobtab[0]);
1124 1.1 cgd } else {
1125 1.1 cgd jp = ckmalloc((njobs + 4) * sizeof jobtab[0]);
1126 1.12 mycroft memcpy(jp, jobtab, njobs * sizeof jp[0]);
1127 1.17 pk /* Relocate `ps' pointers */
1128 1.17 pk for (i = 0; i < njobs; i++)
1129 1.17 pk if (jp[i].ps == &jobtab[i].ps0)
1130 1.17 pk jp[i].ps = &jp[i].ps0;
1131 1.1 cgd ckfree(jobtab);
1132 1.1 cgd jobtab = jp;
1133 1.1 cgd }
1134 1.1 cgd jp = jobtab + njobs;
1135 1.97 christos for (i = 4 ; --i >= 0 ; njobs++) {
1136 1.97 christos jobtab[njobs].used = 0;
1137 1.97 christos jobtab[njobs].prev_job = -1;
1138 1.97 christos }
1139 1.1 cgd INTON;
1140 1.1 cgd break;
1141 1.1 cgd }
1142 1.1 cgd if (jp->used == 0)
1143 1.1 cgd break;
1144 1.1 cgd }
1145 1.1 cgd INTOFF;
1146 1.55 christos jp->state = JOBRUNNING;
1147 1.1 cgd jp->used = 1;
1148 1.100 kre jp->flags = pipefail ? JPIPEFAIL : 0;
1149 1.1 cgd jp->nprocs = 0;
1150 1.92 kre jp->pgrp = 0;
1151 1.1 cgd #if JOBS
1152 1.1 cgd jp->jobctl = jobctl;
1153 1.55 christos set_curjob(jp, 1);
1154 1.1 cgd #endif
1155 1.1 cgd if (nprocs > 1) {
1156 1.1 cgd jp->ps = ckmalloc(nprocs * sizeof (struct procstat));
1157 1.1 cgd } else {
1158 1.1 cgd jp->ps = &jp->ps0;
1159 1.1 cgd }
1160 1.1 cgd INTON;
1161 1.100 kre VTRACE(DBG_JOBS, ("makejob(%p, %d)%s returns %%%d\n", (void *)node,
1162 1.116 kre nprocs, (jp->flags & JPIPEFAIL) ? " PF" : "", JNUM(jp)));
1163 1.1 cgd return jp;
1164 1.19 christos }
1165 1.1 cgd
1166 1.1 cgd
1167 1.1 cgd /*
1168 1.37 lukem * Fork off a subshell. If we are doing job control, give the subshell its
1169 1.1 cgd * own process group. Jp is a job structure that the job is to be added to.
1170 1.1 cgd * N is the command that will be evaluated by the child. Both jp and n may
1171 1.1 cgd * be NULL. The mode parameter can be one of the following:
1172 1.1 cgd * FORK_FG - Fork off a foreground process.
1173 1.1 cgd * FORK_BG - Fork off a background process.
1174 1.1 cgd * FORK_NOJOB - Like FORK_FG, but don't give the process its own
1175 1.1 cgd * process group even if job control is on.
1176 1.1 cgd *
1177 1.1 cgd * When job control is turned off, background processes have their standard
1178 1.1 cgd * input redirected to /dev/null (except for the second and later processes
1179 1.1 cgd * in a pipeline).
1180 1.1 cgd */
1181 1.1 cgd
1182 1.1 cgd int
1183 1.55 christos forkshell(struct job *jp, union node *n, int mode)
1184 1.13 cgd {
1185 1.72 christos pid_t pid;
1186 1.72 christos int serrno;
1187 1.1 cgd
1188 1.87 kre CTRACE(DBG_JOBS, ("forkshell(%%%d, %p, %d) called\n",
1189 1.116 kre JNUM(jp), n, mode));
1190 1.87 kre
1191 1.47 christos switch ((pid = fork())) {
1192 1.47 christos case -1:
1193 1.72 christos serrno = errno;
1194 1.87 kre VTRACE(DBG_JOBS, ("Fork failed, errno=%d\n", serrno));
1195 1.72 christos error("Cannot fork (%s)", strerror(serrno));
1196 1.47 christos break;
1197 1.47 christos case 0:
1198 1.85 kre SHELL_FORKED();
1199 1.51 christos forkchild(jp, n, mode, 0);
1200 1.47 christos return 0;
1201 1.47 christos default:
1202 1.51 christos return forkparent(jp, n, mode, pid);
1203 1.1 cgd }
1204 1.47 christos }
1205 1.47 christos
1206 1.47 christos int
1207 1.55 christos forkparent(struct job *jp, union node *n, int mode, pid_t pid)
1208 1.47 christos {
1209 1.53 mycroft int pgrp;
1210 1.1 cgd
1211 1.53 mycroft if (rootshell && mode != FORK_NOJOB && mflag) {
1212 1.53 mycroft if (jp == NULL || jp->nprocs == 0)
1213 1.53 mycroft pgrp = pid;
1214 1.53 mycroft else
1215 1.53 mycroft pgrp = jp->ps[0].pid;
1216 1.92 kre jp->pgrp = pgrp;
1217 1.53 mycroft /* This can fail because we are doing it in the child also */
1218 1.53 mycroft (void)setpgid(pid, pgrp);
1219 1.53 mycroft }
1220 1.1 cgd if (mode == FORK_BG)
1221 1.1 cgd backgndpid = pid; /* set $! */
1222 1.1 cgd if (jp) {
1223 1.1 cgd struct procstat *ps = &jp->ps[jp->nprocs++];
1224 1.1 cgd ps->pid = pid;
1225 1.1 cgd ps->status = -1;
1226 1.55 christos ps->cmd[0] = 0;
1227 1.55 christos if (/* iflag && rootshell && */ n)
1228 1.55 christos commandtext(ps, n);
1229 1.1 cgd }
1230 1.89 kre CTRACE(DBG_JOBS, ("In parent shell: child = %d (mode %d)\n",pid,mode));
1231 1.1 cgd return pid;
1232 1.1 cgd }
1233 1.1 cgd
1234 1.47 christos void
1235 1.55 christos forkchild(struct job *jp, union node *n, int mode, int vforked)
1236 1.47 christos {
1237 1.47 christos int wasroot;
1238 1.47 christos int pgrp;
1239 1.47 christos const char *devnull = _PATH_DEVNULL;
1240 1.47 christos const char *nullerr = "Can't open %s";
1241 1.47 christos
1242 1.51 christos wasroot = rootshell;
1243 1.91 kre CTRACE(DBG_JOBS, ("Child shell %d %sforked from %d (mode %d)\n",
1244 1.91 kre getpid(), vforked?"v":"", getppid(), mode));
1245 1.103 kre
1246 1.103 kre if (!vforked) {
1247 1.51 christos rootshell = 0;
1248 1.103 kre handler = &main_handler;
1249 1.103 kre }
1250 1.55 christos
1251 1.47 christos closescript(vforked);
1252 1.47 christos clear_traps(vforked);
1253 1.47 christos #if JOBS
1254 1.47 christos if (!vforked)
1255 1.47 christos jobctl = 0; /* do job control only in root shell */
1256 1.47 christos if (wasroot && mode != FORK_NOJOB && mflag) {
1257 1.47 christos if (jp == NULL || jp->nprocs == 0)
1258 1.47 christos pgrp = getpid();
1259 1.47 christos else
1260 1.47 christos pgrp = jp->ps[0].pid;
1261 1.53 mycroft /* This can fail because we are doing it in the parent also */
1262 1.53 mycroft (void)setpgid(0, pgrp);
1263 1.47 christos if (mode == FORK_FG) {
1264 1.47 christos if (tcsetpgrp(ttyfd, pgrp) == -1)
1265 1.47 christos error("Cannot set tty process group (%s) at %d",
1266 1.47 christos strerror(errno), __LINE__);
1267 1.47 christos }
1268 1.47 christos setsignal(SIGTSTP, vforked);
1269 1.47 christos setsignal(SIGTTOU, vforked);
1270 1.47 christos } else if (mode == FORK_BG) {
1271 1.47 christos ignoresig(SIGINT, vforked);
1272 1.47 christos ignoresig(SIGQUIT, vforked);
1273 1.47 christos if ((jp == NULL || jp->nprocs == 0) &&
1274 1.47 christos ! fd0_redirected_p ()) {
1275 1.47 christos close(0);
1276 1.47 christos if (open(devnull, O_RDONLY) != 0)
1277 1.47 christos error(nullerr, devnull);
1278 1.47 christos }
1279 1.47 christos }
1280 1.47 christos #else
1281 1.47 christos if (mode == FORK_BG) {
1282 1.47 christos ignoresig(SIGINT, vforked);
1283 1.47 christos ignoresig(SIGQUIT, vforked);
1284 1.47 christos if ((jp == NULL || jp->nprocs == 0) &&
1285 1.47 christos ! fd0_redirected_p ()) {
1286 1.47 christos close(0);
1287 1.47 christos if (open(devnull, O_RDONLY) != 0)
1288 1.47 christos error(nullerr, devnull);
1289 1.47 christos }
1290 1.47 christos }
1291 1.47 christos #endif
1292 1.47 christos if (wasroot && iflag) {
1293 1.47 christos setsignal(SIGINT, vforked);
1294 1.47 christos setsignal(SIGQUIT, vforked);
1295 1.47 christos setsignal(SIGTERM, vforked);
1296 1.47 christos }
1297 1.55 christos
1298 1.55 christos if (!vforked)
1299 1.55 christos jobs_invalid = 1;
1300 1.47 christos }
1301 1.47 christos
1302 1.1 cgd /*
1303 1.1 cgd * Wait for job to finish.
1304 1.1 cgd *
1305 1.1 cgd * Under job control we have the problem that while a child process is
1306 1.1 cgd * running interrupts generated by the user are sent to the child but not
1307 1.1 cgd * to the shell. This means that an infinite loop started by an inter-
1308 1.1 cgd * active user may be hard to kill. With job control turned off, an
1309 1.1 cgd * interactive user may place an interactive program inside a loop. If
1310 1.1 cgd * the interactive program catches interrupts, the user doesn't want
1311 1.1 cgd * these interrupts to also abort the loop. The approach we take here
1312 1.1 cgd * is to have the shell ignore interrupt signals while waiting for a
1313 1.115 andvar * foreground process to terminate, and then send itself an interrupt
1314 1.1 cgd * signal if the child process was terminated by an interrupt signal.
1315 1.1 cgd * Unfortunately, some programs want to do a bit of cleanup and then
1316 1.1 cgd * exit on interrupt; unless these processes terminate themselves by
1317 1.1 cgd * sending a signal to themselves (instead of calling exit) they will
1318 1.1 cgd * confuse this approach.
1319 1.1 cgd */
1320 1.1 cgd
1321 1.1 cgd int
1322 1.55 christos waitforjob(struct job *jp)
1323 1.55 christos {
1324 1.1 cgd #if JOBS
1325 1.10 jtc int mypgrp = getpgrp();
1326 1.1 cgd #endif
1327 1.1 cgd int status;
1328 1.1 cgd int st;
1329 1.1 cgd
1330 1.1 cgd INTOFF;
1331 1.116 kre VTRACE(DBG_JOBS, ("waitforjob(%%%d) called\n", JNUM(jp)));
1332 1.55 christos while (jp->state == JOBRUNNING) {
1333 1.95 kre dowait(WBLOCK, jp, NULL);
1334 1.1 cgd }
1335 1.1 cgd #if JOBS
1336 1.1 cgd if (jp->jobctl) {
1337 1.47 christos if (tcsetpgrp(ttyfd, mypgrp) == -1)
1338 1.47 christos error("Cannot set tty process group (%s) at %d",
1339 1.47 christos strerror(errno), __LINE__);
1340 1.1 cgd }
1341 1.55 christos if (jp->state == JOBSTOPPED && curjob != jp - jobtab)
1342 1.55 christos set_curjob(jp, 2);
1343 1.1 cgd #endif
1344 1.90 kre status = jobstatus(jp, 1);
1345 1.90 kre
1346 1.1 cgd /* convert to 8 bits */
1347 1.23 christos if (WIFEXITED(status))
1348 1.23 christos st = WEXITSTATUS(status);
1349 1.1 cgd #if JOBS
1350 1.23 christos else if (WIFSTOPPED(status))
1351 1.23 christos st = WSTOPSIG(status) + 128;
1352 1.1 cgd #endif
1353 1.1 cgd else
1354 1.23 christos st = WTERMSIG(status) + 128;
1355 1.87 kre
1356 1.87 kre VTRACE(DBG_JOBS, ("waitforjob: job %d, nproc %d, status %d, st %x\n",
1357 1.116 kre JNUM(jp), jp->nprocs, status, st));
1358 1.32 mycroft #if JOBS
1359 1.32 mycroft if (jp->jobctl) {
1360 1.32 mycroft /*
1361 1.32 mycroft * This is truly gross.
1362 1.32 mycroft * If we're doing job control, then we did a TIOCSPGRP which
1363 1.32 mycroft * caused us (the shell) to no longer be in the controlling
1364 1.32 mycroft * session -- so we wouldn't have seen any ^C/SIGINT. So, we
1365 1.32 mycroft * intuit from the subprocess exit status whether a SIGINT
1366 1.40 wiz * occurred, and if so interrupt ourselves. Yuck. - mycroft
1367 1.32 mycroft */
1368 1.32 mycroft if (WIFSIGNALED(status) && WTERMSIG(status) == SIGINT)
1369 1.32 mycroft raise(SIGINT);
1370 1.32 mycroft }
1371 1.32 mycroft #endif
1372 1.1 cgd if (! JOBS || jp->state == JOBDONE)
1373 1.1 cgd freejob(jp);
1374 1.1 cgd INTON;
1375 1.1 cgd return st;
1376 1.1 cgd }
1377 1.1 cgd
1378 1.1 cgd
1379 1.1 cgd
1380 1.1 cgd /*
1381 1.108 kre * Wait for a process (any process) to terminate.
1382 1.108 kre *
1383 1.108 kre * If "job" is given (not NULL), then its jobcontrol status (and mflag)
1384 1.108 kre * are used to determine if we wait for stopping/continuing processes or
1385 1.108 kre * only terminating ones, and the decision whether to report to stdout
1386 1.108 kre * or not varies depending what happened, and whether the affected job
1387 1.108 kre * is the one that was requested or not.
1388 1.108 kre *
1389 1.108 kre * If "changed" is not NULL, then the job which changed because a
1390 1.108 kre * process terminated/stopped will be reported by setting *changed,
1391 1.108 kre * if there is any such job, otherwise we set *changed = NULL.
1392 1.1 cgd */
1393 1.1 cgd
1394 1.1 cgd STATIC int
1395 1.95 kre dowait(int flags, struct job *job, struct job **changed)
1396 1.13 cgd {
1397 1.1 cgd int pid;
1398 1.1 cgd int status;
1399 1.1 cgd struct procstat *sp;
1400 1.1 cgd struct job *jp;
1401 1.1 cgd struct job *thisjob;
1402 1.1 cgd int done;
1403 1.1 cgd int stopped;
1404 1.108 kre int err;
1405 1.1 cgd
1406 1.108 kre VTRACE(DBG_JOBS|DBG_PROCS, ("dowait(%x) called for job %d%s\n",
1407 1.116 kre flags, JNUM(job), changed ? " [report change]" : ""));
1408 1.95 kre
1409 1.95 kre if (changed != NULL)
1410 1.95 kre *changed = NULL;
1411 1.95 kre
1412 1.108 kre /*
1413 1.108 kre * First deal with the kernel, collect info on any (one) of our
1414 1.108 kre * children that has changed state since we last asked.
1415 1.108 kre * (loop if we're interrupted by a signal that we aren't processing)
1416 1.108 kre */
1417 1.1 cgd do {
1418 1.108 kre err = 0;
1419 1.68 christos pid = waitproc(flags & WBLOCK, job, &status);
1420 1.108 kre if (pid == -1)
1421 1.108 kre err = errno;
1422 1.108 kre VTRACE(DBG_JOBS|DBG_PROCS,
1423 1.108 kre ("wait returns pid %d (e:%d), status %#x (ps=%d)\n",
1424 1.108 kre pid, err, status, pendingsigs));
1425 1.108 kre } while (pid == -1 && err == EINTR && pendingsigs == 0);
1426 1.108 kre
1427 1.108 kre /*
1428 1.108 kre * if nothing exited/stopped/..., we have nothing else to do
1429 1.108 kre */
1430 1.1 cgd if (pid <= 0)
1431 1.1 cgd return pid;
1432 1.108 kre
1433 1.108 kre /*
1434 1.108 kre * Otherwise, try to find the process, somewhere in our job table
1435 1.108 kre */
1436 1.1 cgd INTOFF;
1437 1.1 cgd thisjob = NULL;
1438 1.1 cgd for (jp = jobtab ; jp < jobtab + njobs ; jp++) {
1439 1.1 cgd if (jp->used) {
1440 1.108 kre /*
1441 1.108 kre * For each job that is in use (this is one)
1442 1.108 kre */
1443 1.108 kre done = 1; /* assume it is finished */
1444 1.108 kre stopped = 1; /* and has stopped */
1445 1.108 kre
1446 1.108 kre /*
1447 1.108 kre * Now scan all our child processes of the job
1448 1.108 kre */
1449 1.1 cgd for (sp = jp->ps ; sp < jp->ps + jp->nprocs ; sp++) {
1450 1.1 cgd if (sp->pid == -1)
1451 1.1 cgd continue;
1452 1.108 kre /*
1453 1.108 kre * If the process that changed is the one
1454 1.108 kre * we're looking at, and it was previously
1455 1.108 kre * running (-1) or was stopped (anything else
1456 1.108 kre * and it must have already finished earlier,
1457 1.108 kre * so cannot be the process that just changed)
1458 1.108 kre * then we update its status
1459 1.108 kre */
1460 1.91 kre if (sp->pid == pid &&
1461 1.91 kre (sp->status==-1 || WIFSTOPPED(sp->status))) {
1462 1.87 kre VTRACE(DBG_JOBS | DBG_PROCS,
1463 1.116 kre ("Job %d: changing status of proc %d from %#x to ",
1464 1.116 kre JNUM(jp), pid, sp->status));
1465 1.108 kre
1466 1.108 kre /*
1467 1.108 kre * If the process continued,
1468 1.108 kre * then update its status to running
1469 1.108 kre * and mark the job running as well.
1470 1.108 kre *
1471 1.108 kre * If it was anything but running
1472 1.108 kre * before, flag it as a change for
1473 1.108 kre * reporting purposes later
1474 1.108 kre */
1475 1.91 kre if (WIFCONTINUED(status)) {
1476 1.91 kre if (sp->status != -1)
1477 1.95 kre jp->flags |= JOBCHANGED;
1478 1.91 kre sp->status = -1;
1479 1.116 kre jp->state = JOBRUNNING;
1480 1.116 kre VTRACE(DBG_JOBS|DBG_PROCS,
1481 1.116 kre ("running\n"));
1482 1.108 kre } else {
1483 1.108 kre /* otherwise update status */
1484 1.91 kre sp->status = status;
1485 1.116 kre VTRACE(DBG_JOBS|DBG_PROCS,
1486 1.116 kre ("%#x\n", status));
1487 1.108 kre }
1488 1.108 kre
1489 1.108 kre /*
1490 1.108 kre * We now know the affected job
1491 1.108 kre */
1492 1.1 cgd thisjob = jp;
1493 1.95 kre if (changed != NULL)
1494 1.95 kre *changed = jp;
1495 1.1 cgd }
1496 1.108 kre /*
1497 1.108 kre * After any update that might have just
1498 1.108 kre * happened, if this process is running,
1499 1.108 kre * the job is not stopped, or if the process
1500 1.108 kre * simply stopped (not terminated) then the
1501 1.108 kre * job is certainly not completed (done).
1502 1.108 kre */
1503 1.1 cgd if (sp->status == -1)
1504 1.1 cgd stopped = 0;
1505 1.23 christos else if (WIFSTOPPED(sp->status))
1506 1.1 cgd done = 0;
1507 1.1 cgd }
1508 1.108 kre
1509 1.108 kre /*
1510 1.108 kre * Once we have examined all processes for the
1511 1.108 kre * job, if we still show it as stopped, then...
1512 1.108 kre */
1513 1.1 cgd if (stopped) { /* stopped or done */
1514 1.108 kre /*
1515 1.108 kre * it might be stopped, or finished, decide:
1516 1.108 kre */
1517 1.55 christos int state = done ? JOBDONE : JOBSTOPPED;
1518 1.91 kre
1519 1.108 kre /*
1520 1.108 kre * If that wasn't the same as it was before
1521 1.108 kre * then update its state, and if it just
1522 1.108 kre * completed, make it be the current job (%%)
1523 1.108 kre */
1524 1.1 cgd if (jp->state != state) {
1525 1.87 kre VTRACE(DBG_JOBS,
1526 1.87 kre ("Job %d: changing state from %d to %d\n",
1527 1.116 kre JNUM(jp), jp->state, state));
1528 1.1 cgd jp->state = state;
1529 1.1 cgd #if JOBS
1530 1.55 christos if (done)
1531 1.55 christos set_curjob(jp, 0);
1532 1.1 cgd #endif
1533 1.1 cgd }
1534 1.1 cgd }
1535 1.1 cgd }
1536 1.1 cgd }
1537 1.23 christos
1538 1.108 kre /*
1539 1.108 kre * Now we have scanned all jobs. If we found the job that
1540 1.108 kre * the process that changed state belonged to (we occasionally
1541 1.108 kre * fork processes without associating them with a job, when one
1542 1.108 kre * of those finishes, we simply ignore it, the zombie has been
1543 1.108 kre * cleaned up, which is all that matters) then we need to
1544 1.108 kre * determine if we should say something about it to stdout
1545 1.108 kre */
1546 1.108 kre
1547 1.95 kre if (thisjob &&
1548 1.95 kre (thisjob->state != JOBRUNNING || thisjob->flags & JOBCHANGED)) {
1549 1.55 christos int mode = 0;
1550 1.91 kre
1551 1.55 christos if (!rootshell || !iflag)
1552 1.55 christos mode = SHOW_SIGNALLED;
1553 1.68 christos if ((job == thisjob && (flags & WNOFREE) == 0) ||
1554 1.91 kre job != thisjob)
1555 1.55 christos mode = SHOW_SIGNALLED | SHOW_NO_FREE;
1556 1.91 kre if (mode && (flags & WSILENT) == 0)
1557 1.55 christos showjob(out2, thisjob, mode);
1558 1.55 christos else {
1559 1.87 kre VTRACE(DBG_JOBS,
1560 1.108 kre ("Not printing status for %p [%d], "
1561 1.108 kre "mode=%#x rootshell=%d, job=%p [%d]\n",
1562 1.116 kre thisjob, JNUM(thisjob), mode, rootshell,
1563 1.116 kre job, JNUM(job)));
1564 1.95 kre thisjob->flags |= JOBCHANGED;
1565 1.1 cgd }
1566 1.1 cgd }
1567 1.55 christos
1568 1.47 christos INTON;
1569 1.108 kre /*
1570 1.108 kre * Finally tell our caller that something happened (in general all
1571 1.108 kre * anyone tests for is <= 0 (or >0) so the actual pid value here
1572 1.116 kre * doesn't matter much, but we know pid is >0 so we may as well
1573 1.108 kre * give back something meaningful
1574 1.108 kre */
1575 1.1 cgd return pid;
1576 1.1 cgd }
1577 1.1 cgd
1578 1.1 cgd
1579 1.1 cgd
1580 1.1 cgd /*
1581 1.1 cgd * Do a wait system call. If job control is compiled in, we accept
1582 1.1 cgd * stopped processes. If block is zero, we return a value of zero
1583 1.1 cgd * rather than blocking.
1584 1.1 cgd *
1585 1.1 cgd * System V doesn't have a non-blocking wait system call. It does
1586 1.65 snj * have a SIGCLD signal that is sent to a process when one of its
1587 1.1 cgd * children dies. The obvious way to use SIGCLD would be to install
1588 1.1 cgd * a handler for SIGCLD which simply bumped a counter when a SIGCLD
1589 1.1 cgd * was received, and have waitproc bump another counter when it got
1590 1.1 cgd * the status of a process. Waitproc would then know that a wait
1591 1.1 cgd * system call would not block if the two counters were different.
1592 1.1 cgd * This approach doesn't work because if a process has children that
1593 1.1 cgd * have not been waited for, System V will send it a SIGCLD when it
1594 1.1 cgd * installs a signal handler for SIGCLD. What this means is that when
1595 1.1 cgd * a child exits, the shell will be sent SIGCLD signals continuously
1596 1.1 cgd * until is runs out of stack space, unless it does a wait call before
1597 1.1 cgd * restoring the signal handler. The code below takes advantage of
1598 1.1 cgd * this (mis)feature by installing a signal handler for SIGCLD and
1599 1.1 cgd * then checking to see whether it was called. If there are any
1600 1.1 cgd * children to be waited for, it will be.
1601 1.1 cgd *
1602 1.1 cgd * If neither SYSV nor BSD is defined, we don't implement nonblocking
1603 1.1 cgd * waits at all. In this case, the user will not be informed when
1604 1.116 kre * a background process ends until the next time she runs a real program
1605 1.1 cgd * (as opposed to running a builtin command or just typing return),
1606 1.1 cgd * and the jobs command may give out of date information.
1607 1.1 cgd */
1608 1.1 cgd
1609 1.1 cgd #ifdef SYSV
1610 1.1 cgd STATIC int gotsigchild;
1611 1.1 cgd
1612 1.1 cgd STATIC int onsigchild() {
1613 1.1 cgd gotsigchild = 1;
1614 1.1 cgd }
1615 1.1 cgd #endif
1616 1.1 cgd
1617 1.1 cgd
1618 1.1 cgd STATIC int
1619 1.55 christos waitproc(int block, struct job *jp, int *status)
1620 1.13 cgd {
1621 1.1 cgd #ifdef BSD
1622 1.38 christos int flags = 0;
1623 1.1 cgd
1624 1.1 cgd #if JOBS
1625 1.91 kre if (mflag || (jp != NULL && jp->jobctl))
1626 1.91 kre flags |= WUNTRACED | WCONTINUED;
1627 1.1 cgd #endif
1628 1.1 cgd if (block == 0)
1629 1.1 cgd flags |= WNOHANG;
1630 1.91 kre VTRACE(DBG_WAIT, ("waitproc: doing waitpid(flags=%#x)\n", flags));
1631 1.64 tv return waitpid(-1, status, flags);
1632 1.1 cgd #else
1633 1.1 cgd #ifdef SYSV
1634 1.1 cgd int (*save)();
1635 1.1 cgd
1636 1.1 cgd if (block == 0) {
1637 1.1 cgd gotsigchild = 0;
1638 1.1 cgd save = signal(SIGCLD, onsigchild);
1639 1.1 cgd signal(SIGCLD, save);
1640 1.1 cgd if (gotsigchild == 0)
1641 1.1 cgd return 0;
1642 1.1 cgd }
1643 1.1 cgd return wait(status);
1644 1.1 cgd #else
1645 1.1 cgd if (block == 0)
1646 1.1 cgd return 0;
1647 1.1 cgd return wait(status);
1648 1.1 cgd #endif
1649 1.1 cgd #endif
1650 1.1 cgd }
1651 1.1 cgd
1652 1.8 jtc /*
1653 1.8 jtc * return 1 if there are stopped jobs, otherwise 0
1654 1.8 jtc */
1655 1.8 jtc int job_warning = 0;
1656 1.8 jtc int
1657 1.55 christos stoppedjobs(void)
1658 1.8 jtc {
1659 1.21 tls int jobno;
1660 1.21 tls struct job *jp;
1661 1.8 jtc
1662 1.55 christos if (job_warning || jobs_invalid)
1663 1.8 jtc return (0);
1664 1.8 jtc for (jobno = 1, jp = jobtab; jobno <= njobs; jobno++, jp++) {
1665 1.8 jtc if (jp->used == 0)
1666 1.8 jtc continue;
1667 1.8 jtc if (jp->state == JOBSTOPPED) {
1668 1.8 jtc out2str("You have stopped jobs.\n");
1669 1.8 jtc job_warning = 2;
1670 1.8 jtc return (1);
1671 1.8 jtc }
1672 1.8 jtc }
1673 1.1 cgd
1674 1.8 jtc return (0);
1675 1.8 jtc }
1676 1.1 cgd
1677 1.1 cgd /*
1678 1.1 cgd * Return a string identifying a command (to be printed by the
1679 1.55 christos * jobs command).
1680 1.1 cgd */
1681 1.1 cgd
1682 1.1 cgd STATIC char *cmdnextc;
1683 1.1 cgd STATIC int cmdnleft;
1684 1.1 cgd
1685 1.55 christos void
1686 1.55 christos commandtext(struct procstat *ps, union node *n)
1687 1.55 christos {
1688 1.55 christos int len;
1689 1.1 cgd
1690 1.55 christos cmdnextc = ps->cmd;
1691 1.99 kre if (iflag || mflag || sizeof(ps->cmd) <= 60)
1692 1.55 christos len = sizeof(ps->cmd);
1693 1.99 kre else if (sizeof ps->cmd <= 400)
1694 1.99 kre len = 50;
1695 1.99 kre else if (sizeof ps->cmd <= 800)
1696 1.99 kre len = 80;
1697 1.55 christos else
1698 1.55 christos len = sizeof(ps->cmd) / 10;
1699 1.55 christos cmdnleft = len;
1700 1.1 cgd cmdtxt(n);
1701 1.55 christos if (cmdnleft <= 0) {
1702 1.55 christos char *p = ps->cmd + len - 4;
1703 1.55 christos p[0] = '.';
1704 1.55 christos p[1] = '.';
1705 1.55 christos p[2] = '.';
1706 1.55 christos p[3] = 0;
1707 1.55 christos } else
1708 1.55 christos *cmdnextc = '\0';
1709 1.87 kre
1710 1.87 kre VTRACE(DBG_JOBS,
1711 1.99 kre ("commandtext: ps->cmd %p, end %p, left %d\n\t\"%s\"\n",
1712 1.87 kre ps->cmd, cmdnextc, cmdnleft, ps->cmd));
1713 1.1 cgd }
1714 1.1 cgd
1715 1.1 cgd
1716 1.1 cgd STATIC void
1717 1.55 christos cmdtxt(union node *n)
1718 1.55 christos {
1719 1.1 cgd union node *np;
1720 1.1 cgd struct nodelist *lp;
1721 1.31 christos const char *p;
1722 1.1 cgd int i;
1723 1.1 cgd
1724 1.55 christos if (n == NULL || cmdnleft <= 0)
1725 1.8 jtc return;
1726 1.1 cgd switch (n->type) {
1727 1.1 cgd case NSEMI:
1728 1.1 cgd cmdtxt(n->nbinary.ch1);
1729 1.1 cgd cmdputs("; ");
1730 1.1 cgd cmdtxt(n->nbinary.ch2);
1731 1.1 cgd break;
1732 1.1 cgd case NAND:
1733 1.1 cgd cmdtxt(n->nbinary.ch1);
1734 1.1 cgd cmdputs(" && ");
1735 1.1 cgd cmdtxt(n->nbinary.ch2);
1736 1.1 cgd break;
1737 1.1 cgd case NOR:
1738 1.1 cgd cmdtxt(n->nbinary.ch1);
1739 1.1 cgd cmdputs(" || ");
1740 1.1 cgd cmdtxt(n->nbinary.ch2);
1741 1.1 cgd break;
1742 1.83 kre case NDNOT:
1743 1.83 kre cmdputs("! ");
1744 1.83 kre /* FALLTHROUGH */
1745 1.81 kre case NNOT:
1746 1.81 kre cmdputs("! ");
1747 1.81 kre cmdtxt(n->nnot.com);
1748 1.81 kre break;
1749 1.1 cgd case NPIPE:
1750 1.1 cgd for (lp = n->npipe.cmdlist ; lp ; lp = lp->next) {
1751 1.1 cgd cmdtxt(lp->n);
1752 1.1 cgd if (lp->next)
1753 1.1 cgd cmdputs(" | ");
1754 1.1 cgd }
1755 1.79 kre if (n->npipe.backgnd)
1756 1.79 kre cmdputs(" &");
1757 1.1 cgd break;
1758 1.1 cgd case NSUBSHELL:
1759 1.1 cgd cmdputs("(");
1760 1.1 cgd cmdtxt(n->nredir.n);
1761 1.1 cgd cmdputs(")");
1762 1.1 cgd break;
1763 1.1 cgd case NREDIR:
1764 1.1 cgd case NBACKGND:
1765 1.1 cgd cmdtxt(n->nredir.n);
1766 1.1 cgd break;
1767 1.1 cgd case NIF:
1768 1.1 cgd cmdputs("if ");
1769 1.1 cgd cmdtxt(n->nif.test);
1770 1.1 cgd cmdputs("; then ");
1771 1.1 cgd cmdtxt(n->nif.ifpart);
1772 1.55 christos if (n->nif.elsepart) {
1773 1.55 christos cmdputs("; else ");
1774 1.55 christos cmdtxt(n->nif.elsepart);
1775 1.55 christos }
1776 1.55 christos cmdputs("; fi");
1777 1.1 cgd break;
1778 1.1 cgd case NWHILE:
1779 1.1 cgd cmdputs("while ");
1780 1.1 cgd goto until;
1781 1.1 cgd case NUNTIL:
1782 1.1 cgd cmdputs("until ");
1783 1.80 kre until:
1784 1.1 cgd cmdtxt(n->nbinary.ch1);
1785 1.1 cgd cmdputs("; do ");
1786 1.1 cgd cmdtxt(n->nbinary.ch2);
1787 1.1 cgd cmdputs("; done");
1788 1.1 cgd break;
1789 1.1 cgd case NFOR:
1790 1.1 cgd cmdputs("for ");
1791 1.1 cgd cmdputs(n->nfor.var);
1792 1.55 christos cmdputs(" in ");
1793 1.55 christos cmdlist(n->nfor.args, 1);
1794 1.55 christos cmdputs("; do ");
1795 1.55 christos cmdtxt(n->nfor.body);
1796 1.55 christos cmdputs("; done");
1797 1.1 cgd break;
1798 1.1 cgd case NCASE:
1799 1.1 cgd cmdputs("case ");
1800 1.1 cgd cmdputs(n->ncase.expr->narg.text);
1801 1.55 christos cmdputs(" in ");
1802 1.55 christos for (np = n->ncase.cases; np; np = np->nclist.next) {
1803 1.55 christos cmdtxt(np->nclist.pattern);
1804 1.55 christos cmdputs(") ");
1805 1.55 christos cmdtxt(np->nclist.body);
1806 1.82 kre switch (n->type) { /* switch (not if) for later */
1807 1.82 kre case NCLISTCONT:
1808 1.82 kre cmdputs(";& ");
1809 1.82 kre break;
1810 1.82 kre default:
1811 1.82 kre cmdputs(";; ");
1812 1.82 kre break;
1813 1.82 kre }
1814 1.55 christos }
1815 1.55 christos cmdputs("esac");
1816 1.1 cgd break;
1817 1.1 cgd case NDEFUN:
1818 1.1 cgd cmdputs(n->narg.text);
1819 1.55 christos cmdputs("() { ... }");
1820 1.1 cgd break;
1821 1.1 cgd case NCMD:
1822 1.55 christos cmdlist(n->ncmd.args, 1);
1823 1.55 christos cmdlist(n->ncmd.redirect, 0);
1824 1.79 kre if (n->ncmd.backgnd)
1825 1.79 kre cmdputs(" &");
1826 1.1 cgd break;
1827 1.1 cgd case NARG:
1828 1.1 cgd cmdputs(n->narg.text);
1829 1.1 cgd break;
1830 1.1 cgd case NTO:
1831 1.1 cgd p = ">"; i = 1; goto redir;
1832 1.46 christos case NCLOBBER:
1833 1.46 christos p = ">|"; i = 1; goto redir;
1834 1.1 cgd case NAPPEND:
1835 1.1 cgd p = ">>"; i = 1; goto redir;
1836 1.1 cgd case NTOFD:
1837 1.1 cgd p = ">&"; i = 1; goto redir;
1838 1.1 cgd case NFROM:
1839 1.1 cgd p = "<"; i = 0; goto redir;
1840 1.1 cgd case NFROMFD:
1841 1.1 cgd p = "<&"; i = 0; goto redir;
1842 1.29 christos case NFROMTO:
1843 1.29 christos p = "<>"; i = 0; goto redir;
1844 1.80 kre redir:
1845 1.77 kre if (n->nfile.fd != i)
1846 1.77 kre cmdputi(n->nfile.fd);
1847 1.1 cgd cmdputs(p);
1848 1.1 cgd if (n->type == NTOFD || n->type == NFROMFD) {
1849 1.77 kre if (n->ndup.dupfd < 0)
1850 1.77 kre cmdputs("-");
1851 1.77 kre else
1852 1.77 kre cmdputi(n->ndup.dupfd);
1853 1.1 cgd } else {
1854 1.1 cgd cmdtxt(n->nfile.fname);
1855 1.1 cgd }
1856 1.1 cgd break;
1857 1.1 cgd case NHERE:
1858 1.1 cgd case NXHERE:
1859 1.1 cgd cmdputs("<<...");
1860 1.1 cgd break;
1861 1.1 cgd default:
1862 1.1 cgd cmdputs("???");
1863 1.1 cgd break;
1864 1.1 cgd }
1865 1.1 cgd }
1866 1.1 cgd
1867 1.55 christos STATIC void
1868 1.55 christos cmdlist(union node *np, int sep)
1869 1.55 christos {
1870 1.55 christos for (; np; np = np->narg.next) {
1871 1.55 christos if (!sep)
1872 1.55 christos cmdputs(" ");
1873 1.55 christos cmdtxt(np);
1874 1.55 christos if (sep && np->narg.next)
1875 1.55 christos cmdputs(" ");
1876 1.55 christos }
1877 1.55 christos }
1878 1.1 cgd
1879 1.1 cgd
1880 1.1 cgd STATIC void
1881 1.55 christos cmdputs(const char *s)
1882 1.55 christos {
1883 1.55 christos const char *p, *str = 0;
1884 1.55 christos char c, cc[2] = " ";
1885 1.55 christos char *nextc;
1886 1.55 christos int nleft;
1887 1.1 cgd int subtype = 0;
1888 1.55 christos int quoted = 0;
1889 1.55 christos static char vstype[16][4] = { "", "}", "-", "+", "?", "=",
1890 1.84 kre "#", "##", "%", "%%", "}" };
1891 1.1 cgd
1892 1.1 cgd p = s;
1893 1.55 christos nextc = cmdnextc;
1894 1.55 christos nleft = cmdnleft;
1895 1.55 christos while (nleft > 0 && (c = *p++) != 0) {
1896 1.55 christos switch (c) {
1897 1.86 kre case CTLNONL:
1898 1.86 kre c = '\0';
1899 1.86 kre break;
1900 1.55 christos case CTLESC:
1901 1.55 christos c = *p++;
1902 1.55 christos break;
1903 1.55 christos case CTLVAR:
1904 1.1 cgd subtype = *p++;
1905 1.86 kre if (subtype & VSLINENO) { /* undo LINENO hack */
1906 1.84 kre if ((subtype & VSTYPE) == VSLENGTH)
1907 1.86 kre str = "${#LINENO"; /*}*/
1908 1.84 kre else
1909 1.86 kre str = "${LINENO"; /*}*/
1910 1.84 kre while (is_digit(*p))
1911 1.84 kre p++;
1912 1.84 kre } else if ((subtype & VSTYPE) == VSLENGTH)
1913 1.86 kre str = "${#"; /*}*/
1914 1.55 christos else
1915 1.86 kre str = "${"; /*}*/
1916 1.55 christos if (!(subtype & VSQUOTE) != !(quoted & 1)) {
1917 1.55 christos quoted ^= 1;
1918 1.55 christos c = '"';
1919 1.84 kre } else {
1920 1.55 christos c = *str++;
1921 1.84 kre }
1922 1.55 christos break;
1923 1.86 kre case CTLENDVAR: /*{*/
1924 1.84 kre c = '}';
1925 1.84 kre if (quoted & 1)
1926 1.84 kre str = "\"";
1927 1.55 christos quoted >>= 1;
1928 1.1 cgd subtype = 0;
1929 1.55 christos break;
1930 1.55 christos case CTLBACKQ:
1931 1.55 christos c = '$';
1932 1.55 christos str = "(...)";
1933 1.55 christos break;
1934 1.55 christos case CTLBACKQ+CTLQUOTE:
1935 1.55 christos c = '"';
1936 1.55 christos str = "$(...)\"";
1937 1.55 christos break;
1938 1.55 christos case CTLARI:
1939 1.55 christos c = '$';
1940 1.86 kre if (*p == ' ')
1941 1.86 kre p++;
1942 1.86 kre str = "(("; /*))*/
1943 1.55 christos break;
1944 1.86 kre case CTLENDARI: /*((*/
1945 1.55 christos c = ')';
1946 1.55 christos str = ")";
1947 1.55 christos break;
1948 1.55 christos case CTLQUOTEMARK:
1949 1.55 christos quoted ^= 1;
1950 1.55 christos c = '"';
1951 1.55 christos break;
1952 1.84 kre case CTLQUOTEEND:
1953 1.84 kre quoted >>= 1;
1954 1.84 kre c = '"';
1955 1.84 kre break;
1956 1.55 christos case '=':
1957 1.55 christos if (subtype == 0)
1958 1.55 christos break;
1959 1.55 christos str = vstype[subtype & VSTYPE];
1960 1.55 christos if (subtype & VSNUL)
1961 1.55 christos c = ':';
1962 1.55 christos else
1963 1.86 kre c = *str++; /*{*/
1964 1.55 christos if (c != '}')
1965 1.55 christos quoted <<= 1;
1966 1.84 kre else if (*p == CTLENDVAR)
1967 1.84 kre c = *str++;
1968 1.84 kre subtype = 0;
1969 1.55 christos break;
1970 1.55 christos case '\'':
1971 1.55 christos case '\\':
1972 1.55 christos case '"':
1973 1.55 christos case '$':
1974 1.55 christos /* These can only happen inside quotes */
1975 1.55 christos cc[0] = c;
1976 1.55 christos str = cc;
1977 1.55 christos c = '\\';
1978 1.55 christos break;
1979 1.55 christos default:
1980 1.1 cgd break;
1981 1.1 cgd }
1982 1.84 kre if (c != '\0') do { /* c == 0 implies nothing in str */
1983 1.55 christos *nextc++ = c;
1984 1.55 christos } while (--nleft > 0 && str && (c = *str++));
1985 1.55 christos str = 0;
1986 1.55 christos }
1987 1.55 christos if ((quoted & 1) && nleft) {
1988 1.55 christos *nextc++ = '"';
1989 1.55 christos nleft--;
1990 1.1 cgd }
1991 1.55 christos cmdnleft = nleft;
1992 1.55 christos cmdnextc = nextc;
1993 1.1 cgd }
1994