redir.c revision 1.74 1 1.74 kre /* $NetBSD: redir.c,v 1.74 2024/11/10 05:21:24 kre Exp $ */
2 1.11 cgd
3 1.1 cgd /*-
4 1.7 jtc * Copyright (c) 1991, 1993
5 1.7 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 1.28 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 1.16 christos #include <sys/cdefs.h>
36 1.1 cgd #ifndef lint
37 1.11 cgd #if 0
38 1.12 christos static char sccsid[] = "@(#)redir.c 8.2 (Berkeley) 5/4/95";
39 1.11 cgd #else
40 1.74 kre __RCSID("$NetBSD: redir.c,v 1.74 2024/11/10 05:21:24 kre Exp $");
41 1.11 cgd #endif
42 1.1 cgd #endif /* not lint */
43 1.1 cgd
44 1.12 christos #include <sys/types.h>
45 1.17 christos #include <sys/param.h> /* PIPE_BUF */
46 1.48 christos #include <sys/stat.h>
47 1.12 christos #include <signal.h>
48 1.12 christos #include <string.h>
49 1.12 christos #include <fcntl.h>
50 1.12 christos #include <errno.h>
51 1.12 christos #include <unistd.h>
52 1.12 christos #include <stdlib.h>
53 1.12 christos
54 1.1 cgd /*
55 1.1 cgd * Code for dealing with input/output redirection.
56 1.1 cgd */
57 1.1 cgd
58 1.25 christos #include "main.h"
59 1.50 christos #include "builtins.h"
60 1.1 cgd #include "shell.h"
61 1.1 cgd #include "nodes.h"
62 1.1 cgd #include "jobs.h"
63 1.23 christos #include "options.h"
64 1.1 cgd #include "expand.h"
65 1.1 cgd #include "redir.h"
66 1.1 cgd #include "output.h"
67 1.1 cgd #include "memalloc.h"
68 1.51 kre #include "mystring.h"
69 1.1 cgd #include "error.h"
70 1.59 kre #include "show.h"
71 1.1 cgd
72 1.1 cgd
73 1.44 kre #define CLOSED -1 /* fd was not open before redir */
74 1.73 kre
75 1.17 christos #ifndef PIPE_BUF
76 1.17 christos # define PIPESIZE 4096 /* amount of buffering in a pipe */
77 1.17 christos #else
78 1.17 christos # define PIPESIZE PIPE_BUF
79 1.17 christos #endif
80 1.1 cgd
81 1.65 kre #ifndef FD_CLOEXEC
82 1.65 kre # define FD_CLOEXEC 1 /* well known from before there was a name */
83 1.65 kre #endif
84 1.65 kre
85 1.65 kre #ifndef F_DUPFD_CLOEXEC
86 1.65 kre #define F_DUPFD_CLOEXEC F_DUPFD
87 1.73 kre #define CLOEXEC(fd) (fcntl((fd), F_SETFD, \
88 1.73 kre (fcntl_int)(fcntl((fd), F_GETFD) | FD_CLOEXEC)))
89 1.65 kre #else
90 1.73 kre #define CLOEXEC(fd) __nothing
91 1.65 kre #endif
92 1.65 kre
93 1.73 kre /* yes, this is correct, bizarre parens and all -- used only as a cast */
94 1.74 kre #define fcntl_int void *)(intptr_t
95 1.74 kre #undef fcntl_int
96 1.74 kre #define fcntl_int int
97 1.73 kre
98 1.1 cgd
99 1.1 cgd MKINIT
100 1.43 christos struct renamelist {
101 1.43 christos struct renamelist *next;
102 1.43 christos int orig;
103 1.43 christos int into;
104 1.73 kre int cloexec; /* orig had FD_CLOEXEC set (into always does) */
105 1.43 christos };
106 1.43 christos
107 1.43 christos MKINIT
108 1.1 cgd struct redirtab {
109 1.1 cgd struct redirtab *next;
110 1.43 christos struct renamelist *renamed;
111 1.1 cgd };
112 1.1 cgd
113 1.1 cgd
114 1.1 cgd MKINIT struct redirtab *redirlist;
115 1.1 cgd
116 1.13 christos /*
117 1.7 jtc * We keep track of whether or not fd0 has been redirected. This is for
118 1.7 jtc * background commands, where we want to redirect fd0 to /dev/null only
119 1.13 christos * if it hasn't already been redirected.
120 1.43 christos */
121 1.43 christos STATIC int fd0_redirected = 0;
122 1.1 cgd
123 1.43 christos /*
124 1.43 christos * And also where to put internal use fds that should be out of the
125 1.43 christos * way of user defined fds (normally)
126 1.43 christos */
127 1.43 christos STATIC int big_sh_fd = 0;
128 1.73 kre STATIC int biggest_sh_fd = 2;
129 1.43 christos
130 1.43 christos STATIC const struct renamelist *is_renamed(const struct renamelist *, int);
131 1.73 kre STATIC void fd_rename(struct redirtab *, int, int, int);
132 1.68 kre STATIC int * saved_redirected_fd(int);
133 1.43 christos STATIC void free_rl(struct redirtab *, int);
134 1.29 christos STATIC void openredirect(union node *, char[10], int);
135 1.34 yamt STATIC int openhere(const union node *);
136 1.47 kre STATIC int copyfd(int, int, int);
137 1.43 christos STATIC void find_big_fd(void);
138 1.43 christos
139 1.54 kre
140 1.54 kre struct shell_fds { /* keep track of internal shell fds */
141 1.54 kre struct shell_fds *nxt;
142 1.54 kre void (*cb)(int, int);
143 1.54 kre int fd;
144 1.54 kre };
145 1.54 kre
146 1.54 kre STATIC struct shell_fds *sh_fd_list;
147 1.54 kre
148 1.68 kre STATIC int pick_new_fd(int);
149 1.54 kre STATIC void renumber_sh_fd(struct shell_fds *);
150 1.54 kre STATIC struct shell_fds *sh_fd(int);
151 1.54 kre
152 1.43 christos STATIC const struct renamelist *
153 1.43 christos is_renamed(const struct renamelist *rl, int fd)
154 1.43 christos {
155 1.43 christos while (rl != NULL) {
156 1.43 christos if (rl->orig == fd)
157 1.43 christos return rl;
158 1.43 christos rl = rl->next;
159 1.43 christos }
160 1.43 christos return NULL;
161 1.43 christos }
162 1.43 christos
163 1.68 kre STATIC int *
164 1.68 kre saved_redirected_fd(int fd)
165 1.68 kre {
166 1.68 kre struct redirtab *rt;
167 1.68 kre struct renamelist *rl;
168 1.68 kre
169 1.68 kre for (rt = redirlist; rt != NULL; rt = rt->next) {
170 1.68 kre for (rl = rt->renamed; rl != NULL; rl = rl->next) {
171 1.68 kre if (rl->into == fd)
172 1.68 kre return &rl->into;
173 1.68 kre }
174 1.68 kre }
175 1.68 kre return NULL;
176 1.68 kre }
177 1.68 kre
178 1.43 christos STATIC void
179 1.43 christos free_rl(struct redirtab *rt, int reset)
180 1.43 christos {
181 1.43 christos struct renamelist *rl, *rn = rt->renamed;
182 1.43 christos
183 1.43 christos while ((rl = rn) != NULL) {
184 1.43 christos rn = rl->next;
185 1.43 christos if (rl->orig == 0)
186 1.43 christos fd0_redirected--;
187 1.60 kre VTRACE(DBG_REDIR, ("popredir %d%s: %s",
188 1.60 kre rl->orig, rl->orig==0 ? " (STDIN)" : "",
189 1.73 kre reset == 1 ? "" :
190 1.73 kre reset == 2 ? "make permanent" :
191 1.73 kre "no reset\n"));
192 1.73 kre
193 1.73 kre switch (reset) {
194 1.73 kre case 1:
195 1.60 kre if (rl->into < 0) {
196 1.73 kre VTRACE(DBG_REDIR, (" closed\n"));
197 1.43 christos close(rl->orig);
198 1.60 kre } else {
199 1.73 kre VTRACE(DBG_REDIR,
200 1.73 kre (" from %d%s\n", rl->into,
201 1.73 kre rl->cloexec ? " (colexec)" : ""));
202 1.73 kre copyfd(rl->into, rl->orig, rl->cloexec);
203 1.60 kre }
204 1.73 kre break;
205 1.73 kre case 2:
206 1.73 kre if (rl->into < 0) {
207 1.73 kre VTRACE(DBG_REDIR, (" was closed\n"));
208 1.73 kre /* nothing to do */
209 1.73 kre } else {
210 1.73 kre VTRACE(DBG_REDIR,
211 1.73 kre (" close savefd %d\n", rl->into));
212 1.73 kre close(rl->into);
213 1.73 kre }
214 1.73 kre break;
215 1.73 kre default:
216 1.73 kre /* nothing to do */
217 1.73 kre break;
218 1.43 christos }
219 1.43 christos ckfree(rl);
220 1.43 christos }
221 1.43 christos rt->renamed = NULL;
222 1.43 christos }
223 1.1 cgd
224 1.43 christos STATIC void
225 1.73 kre fd_rename(struct redirtab *rt, int from, int to, int cloexec)
226 1.43 christos {
227 1.60 kre /* XXX someday keep a short list (8..10) of freed renamelists XXX */
228 1.43 christos struct renamelist *rl = ckmalloc(sizeof(struct renamelist));
229 1.43 christos
230 1.73 kre /*
231 1.73 kre * Note this list is operated as LIFO so saved fd's are
232 1.73 kre * undone in the opposite order to that they were saved
233 1.73 kre * (needed to ensure correct results)
234 1.73 kre */
235 1.43 christos rl->next = rt->renamed;
236 1.43 christos rt->renamed = rl;
237 1.43 christos
238 1.43 christos rl->orig = from;
239 1.43 christos rl->into = to;
240 1.73 kre rl->cloexec = cloexec;
241 1.43 christos }
242 1.1 cgd
243 1.1 cgd /*
244 1.1 cgd * Process a list of redirection commands. If the REDIR_PUSH flag is set,
245 1.1 cgd * old file descriptors are stashed away so that the redirection can be
246 1.1 cgd * undone by calling popredir. If the REDIR_BACKQ flag is set, then the
247 1.1 cgd * standard output, and the standard error if it becomes a duplicate of
248 1.1 cgd * stdout, is saved in memory.
249 1.1 cgd */
250 1.1 cgd
251 1.1 cgd void
252 1.27 christos redirect(union node *redir, int flags)
253 1.27 christos {
254 1.1 cgd union node *n;
255 1.16 christos struct redirtab *sv = NULL;
256 1.1 cgd int i;
257 1.1 cgd int fd;
258 1.13 christos char memory[10]; /* file descriptors to write to memory */
259 1.1 cgd
260 1.60 kre CTRACE(DBG_REDIR, ("redirect(F=0x%x):%s\n", flags, redir?"":" NONE"));
261 1.73 kre
262 1.1 cgd for (i = 10 ; --i >= 0 ; )
263 1.1 cgd memory[i] = 0;
264 1.1 cgd memory[1] = flags & REDIR_BACKQ;
265 1.1 cgd if (flags & REDIR_PUSH) {
266 1.60 kre /*
267 1.60 kre * We don't have to worry about REDIR_VFORK here, as
268 1.24 christos * flags & REDIR_PUSH is never true if REDIR_VFORK is set.
269 1.24 christos */
270 1.1 cgd sv = ckmalloc(sizeof (struct redirtab));
271 1.43 christos sv->renamed = NULL;
272 1.1 cgd sv->next = redirlist;
273 1.1 cgd redirlist = sv;
274 1.1 cgd }
275 1.1 cgd for (n = redir ; n ; n = n->nfile.next) {
276 1.68 kre int *renamed;
277 1.68 kre
278 1.1 cgd fd = n->nfile.fd;
279 1.68 kre VTRACE(DBG_REDIR, ("redir %d (max=%d limit=%ld) ",
280 1.68 kre fd, max_user_fd, user_fd_limit));
281 1.68 kre if (fd < user_fd_limit && fd > max_user_fd)
282 1.53 kre max_user_fd = fd;
283 1.69 kre if ((n->nfile.type == NTOFD || n->nfile.type == NFROMFD) &&
284 1.69 kre n->ndup.dupfd == fd) {
285 1.69 kre VTRACE(DBG_REDIR, ("!cloexec\n"));
286 1.69 kre if (sh_fd(fd) != NULL ||
287 1.69 kre saved_redirected_fd(fd) != NULL)
288 1.69 kre error("fd %d: %s", fd, strerror(EBADF));
289 1.69 kre /* redirect from/to same file descriptor */
290 1.69 kre /* make sure it stays open */
291 1.73 kre if (fcntl(fd, F_SETFD, (fcntl_int)0) < 0)
292 1.69 kre error("fd %d: %s", fd, strerror(errno));
293 1.69 kre continue;
294 1.69 kre }
295 1.68 kre if ((renamed = saved_redirected_fd(fd)) != NULL) {
296 1.68 kre int to = pick_new_fd(fd);
297 1.68 kre
298 1.68 kre VTRACE(DBG_REDIR,
299 1.68 kre ("redirect: moved holding fd %d to %d\n", fd, to));
300 1.68 kre *renamed = to;
301 1.68 kre if (to != fd) /* always... */
302 1.68 kre (void)close(fd);
303 1.68 kre }
304 1.54 kre renumber_sh_fd(sh_fd(fd));
305 1.15 christos
306 1.43 christos if ((flags & REDIR_PUSH) && !is_renamed(sv->renamed, fd)) {
307 1.67 kre int bigfd;
308 1.73 kre int cloexec;
309 1.73 kre
310 1.73 kre cloexec = fcntl(fd, F_GETFD);
311 1.73 kre if (cloexec >= 0)
312 1.73 kre cloexec &= FD_CLOEXEC;
313 1.73 kre else
314 1.73 kre cloexec = 0;
315 1.67 kre
316 1.1 cgd INTOFF;
317 1.43 christos if (big_sh_fd < 10)
318 1.43 christos find_big_fd();
319 1.67 kre if ((bigfd = big_sh_fd) < max_user_fd)
320 1.67 kre bigfd = max_user_fd;
321 1.73 kre if ((i = fcntl(fd, F_DUPFD,
322 1.73 kre (fcntl_int)(bigfd + 1))) == -1) {
323 1.15 christos switch (errno) {
324 1.15 christos case EBADF:
325 1.35 yamt i = CLOSED;
326 1.35 yamt break;
327 1.43 christos case EMFILE:
328 1.43 christos case EINVAL:
329 1.43 christos find_big_fd();
330 1.73 kre i = fcntl(fd, F_DUPFD,
331 1.73 kre (fcntl_int) big_sh_fd);
332 1.43 christos if (i >= 0)
333 1.43 christos break;
334 1.68 kre if (errno == EMFILE || errno == EINVAL)
335 1.73 kre i = fcntl(fd, F_DUPFD,
336 1.73 kre (fcntl_int) 3);
337 1.68 kre if (i >= 0)
338 1.68 kre break;
339 1.43 christos /* FALLTHRU */
340 1.15 christos default:
341 1.67 kre error("%d: %s", fd, strerror(errno));
342 1.19 mycroft /* NOTREACHED */
343 1.15 christos }
344 1.43 christos }
345 1.73 kre if (i > biggest_sh_fd)
346 1.73 kre biggest_sh_fd = i;
347 1.43 christos if (i >= 0)
348 1.73 kre (void)fcntl(i, F_SETFD, (fcntl_int) FD_CLOEXEC);
349 1.73 kre fd_rename(sv, fd, i, cloexec);
350 1.73 kre VTRACE(DBG_REDIR, ("fd %d saved as %d%s ", fd, i,
351 1.73 kre cloexec ? "+" : ""));
352 1.1 cgd INTON;
353 1.1 cgd }
354 1.60 kre VTRACE(DBG_REDIR, ("%s\n", fd == 0 ? "STDIN" : ""));
355 1.44 kre if (fd == 0)
356 1.44 kre fd0_redirected++;
357 1.35 yamt openredirect(n, memory, flags);
358 1.1 cgd }
359 1.1 cgd if (memory[1])
360 1.1 cgd out1 = &memout;
361 1.1 cgd if (memory[2])
362 1.1 cgd out2 = &memout;
363 1.1 cgd }
364 1.1 cgd
365 1.1 cgd
366 1.1 cgd STATIC void
367 1.29 christos openredirect(union node *redir, char memory[10], int flags)
368 1.27 christos {
369 1.36 christos struct stat sb;
370 1.1 cgd int fd = redir->nfile.fd;
371 1.1 cgd char *fname;
372 1.1 cgd int f;
373 1.42 christos int eflags, cloexec;
374 1.1 cgd
375 1.1 cgd /*
376 1.1 cgd * We suppress interrupts so that we won't leave open file
377 1.1 cgd * descriptors around. This may not be such a good idea because
378 1.1 cgd * an open of a device or a fifo can block indefinitely.
379 1.1 cgd */
380 1.1 cgd INTOFF;
381 1.43 christos if (fd < 10)
382 1.43 christos memory[fd] = 0;
383 1.1 cgd switch (redir->nfile.type) {
384 1.1 cgd case NFROM:
385 1.1 cgd fname = redir->nfile.expfname;
386 1.29 christos if (flags & REDIR_VFORK)
387 1.29 christos eflags = O_NONBLOCK;
388 1.29 christos else
389 1.29 christos eflags = 0;
390 1.29 christos if ((f = open(fname, O_RDONLY|eflags)) < 0)
391 1.20 christos goto eopen;
392 1.59 kre VTRACE(DBG_REDIR, ("openredirect(< '%s') -> %d [%#x]",
393 1.59 kre fname, f, eflags));
394 1.29 christos if (eflags)
395 1.73 kre (void)fcntl(f, F_SETFL,
396 1.73 kre (fcntl_int)(fcntl(f, F_GETFL) & ~eflags));
397 1.20 christos break;
398 1.20 christos case NFROMTO:
399 1.20 christos fname = redir->nfile.expfname;
400 1.61 kre if ((f = open(fname, O_RDWR|O_CREAT, 0666)) < 0)
401 1.20 christos goto ecreate;
402 1.59 kre VTRACE(DBG_REDIR, ("openredirect(<> '%s') -> %d", fname, f));
403 1.1 cgd break;
404 1.1 cgd case NTO:
405 1.36 christos if (Cflag) {
406 1.36 christos fname = redir->nfile.expfname;
407 1.37 christos if ((f = open(fname, O_WRONLY)) == -1) {
408 1.36 christos if ((f = open(fname, O_WRONLY|O_CREAT|O_EXCL,
409 1.36 christos 0666)) < 0)
410 1.36 christos goto ecreate;
411 1.37 christos } else if (fstat(f, &sb) == -1) {
412 1.37 christos int serrno = errno;
413 1.37 christos close(f);
414 1.37 christos errno = serrno;
415 1.37 christos goto ecreate;
416 1.37 christos } else if (S_ISREG(sb.st_mode)) {
417 1.37 christos close(f);
418 1.36 christos errno = EEXIST;
419 1.36 christos goto ecreate;
420 1.36 christos }
421 1.60 kre VTRACE(DBG_REDIR, ("openredirect(>| '%s') -> %d",
422 1.60 kre fname, f));
423 1.36 christos break;
424 1.36 christos }
425 1.23 christos /* FALLTHROUGH */
426 1.23 christos case NCLOBBER:
427 1.1 cgd fname = redir->nfile.expfname;
428 1.36 christos if ((f = open(fname, O_WRONLY|O_CREAT|O_TRUNC, 0666)) < 0)
429 1.20 christos goto ecreate;
430 1.59 kre VTRACE(DBG_REDIR, ("openredirect(> '%s') -> %d", fname, f));
431 1.20 christos break;
432 1.1 cgd case NAPPEND:
433 1.1 cgd fname = redir->nfile.expfname;
434 1.1 cgd if ((f = open(fname, O_WRONLY|O_CREAT|O_APPEND, 0666)) < 0)
435 1.20 christos goto ecreate;
436 1.59 kre VTRACE(DBG_REDIR, ("openredirect(>> '%s') -> %d", fname, f));
437 1.20 christos break;
438 1.1 cgd case NTOFD:
439 1.1 cgd case NFROMFD:
440 1.1 cgd if (redir->ndup.dupfd >= 0) { /* if not ">&-" */
441 1.68 kre if (sh_fd(redir->ndup.dupfd) != NULL ||
442 1.68 kre saved_redirected_fd(redir->ndup.dupfd) != NULL)
443 1.67 kre error("Redirect (from %d to %d) failed: %s",
444 1.67 kre redir->ndup.dupfd, fd, strerror(EBADF));
445 1.43 christos if (fd < 10 && redir->ndup.dupfd < 10 &&
446 1.43 christos memory[redir->ndup.dupfd])
447 1.1 cgd memory[fd] = 1;
448 1.47 kre else if (copyfd(redir->ndup.dupfd, fd,
449 1.49 christos (flags & REDIR_KEEP) == 0) < 0)
450 1.47 kre error("Redirect (from %d to %d) failed: %s",
451 1.47 kre redir->ndup.dupfd, fd, strerror(errno));
452 1.59 kre VTRACE(DBG_REDIR, ("openredirect: %d%c&%d\n", fd,
453 1.59 kre "<>"[redir->nfile.type==NTOFD], redir->ndup.dupfd));
454 1.59 kre } else {
455 1.47 kre (void) close(fd);
456 1.59 kre VTRACE(DBG_REDIR, ("openredirect: %d%c&-\n", fd,
457 1.59 kre "<>"[redir->nfile.type==NTOFD]));
458 1.59 kre }
459 1.20 christos INTON;
460 1.20 christos return;
461 1.1 cgd case NHERE:
462 1.1 cgd case NXHERE:
463 1.60 kre VTRACE(DBG_REDIR, ("openredirect: %d<<...", fd));
464 1.1 cgd f = openhere(redir);
465 1.20 christos break;
466 1.1 cgd default:
467 1.1 cgd abort();
468 1.1 cgd }
469 1.20 christos
470 1.73 kre if (f > biggest_sh_fd)
471 1.73 kre biggest_sh_fd = f;
472 1.73 kre
473 1.55 kre cloexec = fd > 2 && (flags & REDIR_KEEP) == 0 && !posix;
474 1.20 christos if (f != fd) {
475 1.59 kre VTRACE(DBG_REDIR, (" -> %d", fd));
476 1.47 kre if (copyfd(f, fd, cloexec) < 0) {
477 1.47 kre int e = errno;
478 1.47 kre
479 1.69 kre VTRACE(DBG_REDIR, (" failed: %s\n", strerror(e)));
480 1.47 kre close(f);
481 1.47 kre error("redirect reassignment (fd %d) failed: %s", fd,
482 1.47 kre strerror(e));
483 1.47 kre }
484 1.20 christos close(f);
485 1.42 christos } else if (cloexec)
486 1.73 kre (void)fcntl(f, F_SETFD, (fcntl_int) FD_CLOEXEC);
487 1.59 kre VTRACE(DBG_REDIR, ("%s\n", cloexec ? " cloexec" : ""));
488 1.38 christos
489 1.1 cgd INTON;
490 1.20 christos return;
491 1.60 kre ecreate:
492 1.30 msaitoh exerrno = 1;
493 1.20 christos error("cannot create %s: %s", fname, errmsg(errno, E_CREAT));
494 1.60 kre eopen:
495 1.30 msaitoh exerrno = 1;
496 1.20 christos error("cannot open %s: %s", fname, errmsg(errno, E_OPEN));
497 1.1 cgd }
498 1.1 cgd
499 1.1 cgd
500 1.1 cgd /*
501 1.1 cgd * Handle here documents. Normally we fork off a process to write the
502 1.1 cgd * data to a pipe. If the document is short, we can stuff the data in
503 1.1 cgd * the pipe without forking.
504 1.1 cgd */
505 1.1 cgd
506 1.1 cgd STATIC int
507 1.34 yamt openhere(const union node *redir)
508 1.27 christos {
509 1.1 cgd int pip[2];
510 1.12 christos int len = 0;
511 1.1 cgd
512 1.1 cgd if (pipe(pip) < 0)
513 1.1 cgd error("Pipe call failed");
514 1.73 kre if (pip[1] > biggest_sh_fd)
515 1.73 kre biggest_sh_fd = pip[1];
516 1.72 kre len = strlen(redir->nhere.text);
517 1.72 kre VTRACE(DBG_REDIR, ("openhere(%p) [%d] \"%.*s\"%s\n", redir, len,
518 1.72 kre (len < 40 ? len : 40), redir->nhere.text, (len < 40 ? "" : "...")));
519 1.72 kre if (len <= PIPESIZE) { /* XXX eventually copy FreeBSD method */
520 1.72 kre xwrite(pip[1], redir->nhere.text, len);
521 1.72 kre goto out;
522 1.1 cgd }
523 1.60 kre VTRACE(DBG_REDIR, (" forking [%d,%d]\n", pip[0], pip[1]));
524 1.32 plunky if (forkshell(NULL, NULL, FORK_NOJOB) == 0) {
525 1.1 cgd close(pip[0]);
526 1.1 cgd signal(SIGINT, SIG_IGN);
527 1.1 cgd signal(SIGQUIT, SIG_IGN);
528 1.1 cgd signal(SIGHUP, SIG_IGN);
529 1.1 cgd #ifdef SIGTSTP
530 1.1 cgd signal(SIGTSTP, SIG_IGN);
531 1.1 cgd #endif
532 1.1 cgd signal(SIGPIPE, SIG_DFL);
533 1.72 kre xwrite(pip[1], redir->nhere.text, len);
534 1.70 kre VTRACE(DBG_PROCS|DBG_REDIR, ("wrote here doc. exiting(0)\n"));
535 1.1 cgd _exit(0);
536 1.1 cgd }
537 1.60 kre VTRACE(DBG_REDIR, ("openhere (closing %d)", pip[1]));
538 1.73 kre out:;
539 1.1 cgd close(pip[1]);
540 1.60 kre VTRACE(DBG_REDIR, (" (pipe fd=%d)", pip[0]));
541 1.1 cgd return pip[0];
542 1.1 cgd }
543 1.1 cgd
544 1.1 cgd
545 1.1 cgd
546 1.1 cgd /*
547 1.73 kre * if (reset == POPREDIR_UNDO)
548 1.73 kre * Undo the effects of the last redirection.
549 1.73 kre * else if (reset == POPREDIR_PERMANENT)
550 1.73 kre * Make the last redirection permanent
551 1.73 kre * else / * reset == POPREDIR_DISCARD * /
552 1.73 kre * Just throw away the redirection
553 1.1 cgd */
554 1.1 cgd
555 1.1 cgd void
556 1.73 kre popredir(int reset)
557 1.27 christos {
558 1.14 tls struct redirtab *rp = redirlist;
559 1.1 cgd
560 1.1 cgd INTOFF;
561 1.73 kre free_rl(rp, reset);
562 1.1 cgd redirlist = rp->next;
563 1.1 cgd ckfree(rp);
564 1.1 cgd INTON;
565 1.1 cgd }
566 1.1 cgd
567 1.1 cgd /*
568 1.1 cgd * Undo all redirections. Called on error or interrupt.
569 1.1 cgd */
570 1.1 cgd
571 1.1 cgd #ifdef mkinit
572 1.1 cgd
573 1.1 cgd INCLUDE "redir.h"
574 1.1 cgd
575 1.1 cgd RESET {
576 1.1 cgd while (redirlist)
577 1.73 kre popredir(POPREDIR_UNDO);
578 1.1 cgd }
579 1.1 cgd
580 1.1 cgd SHELLPROC {
581 1.24 christos clearredir(0);
582 1.1 cgd }
583 1.1 cgd
584 1.1 cgd #endif
585 1.1 cgd
586 1.7 jtc /* Return true if fd 0 has already been redirected at least once. */
587 1.7 jtc int
588 1.43 christos fd0_redirected_p(void)
589 1.43 christos {
590 1.44 kre return fd0_redirected != 0;
591 1.7 jtc }
592 1.1 cgd
593 1.1 cgd /*
594 1.1 cgd * Discard all saved file descriptors.
595 1.1 cgd */
596 1.1 cgd
597 1.1 cgd void
598 1.33 matt clearredir(int vforked)
599 1.24 christos {
600 1.14 tls struct redirtab *rp;
601 1.43 christos struct renamelist *rl;
602 1.1 cgd
603 1.1 cgd for (rp = redirlist ; rp ; rp = rp->next) {
604 1.43 christos if (!vforked)
605 1.73 kre free_rl(rp, POPREDIR_DISCARD);
606 1.43 christos else for (rl = rp->renamed; rl; rl = rl->next)
607 1.43 christos if (rl->into >= 0)
608 1.43 christos close(rl->into);
609 1.1 cgd }
610 1.1 cgd }
611 1.1 cgd
612 1.1 cgd
613 1.1 cgd
614 1.1 cgd /*
615 1.47 kre * Copy a file descriptor to be == to.
616 1.47 kre * cloexec indicates if we want close-on-exec or not.
617 1.47 kre * Returns -1 if any error occurs.
618 1.1 cgd */
619 1.1 cgd
620 1.47 kre STATIC int
621 1.47 kre copyfd(int from, int to, int cloexec)
622 1.9 cgd {
623 1.1 cgd int newfd;
624 1.1 cgd
625 1.65 kre if (cloexec && to > 2) {
626 1.65 kre #ifdef O_CLOEXEC
627 1.47 kre newfd = dup3(from, to, O_CLOEXEC);
628 1.65 kre #else
629 1.65 kre newfd = dup2(from, to);
630 1.73 kre fcntl(newfd, F_SETFD,
631 1.73 kre (fcntl_int)(fcntl(newfd, F_GETFD) | FD_CLOEXEC));
632 1.65 kre #endif
633 1.65 kre } else
634 1.47 kre newfd = dup2(from, to);
635 1.47 kre
636 1.73 kre if (newfd > biggest_sh_fd)
637 1.73 kre biggest_sh_fd = newfd;
638 1.73 kre
639 1.1 cgd return newfd;
640 1.1 cgd }
641 1.43 christos
642 1.47 kre /*
643 1.47 kre * rename fd from to be fd to (closing from).
644 1.47 kre * close-on-exec is never set on 'to' (unless
645 1.47 kre * from==to and it was set on from) - ie: a no-op
646 1.60 kre * returns to (or errors() if an error occurs).
647 1.47 kre *
648 1.47 kre * This is mostly used for rearranging the
649 1.47 kre * results from pipe().
650 1.47 kre */
651 1.43 christos int
652 1.43 christos movefd(int from, int to)
653 1.43 christos {
654 1.73 kre if (from > biggest_sh_fd)
655 1.73 kre biggest_sh_fd = from;
656 1.73 kre if (to > biggest_sh_fd)
657 1.73 kre biggest_sh_fd = to;
658 1.73 kre
659 1.43 christos if (from == to)
660 1.43 christos return to;
661 1.43 christos
662 1.43 christos (void) close(to);
663 1.47 kre if (copyfd(from, to, 0) != to) {
664 1.47 kre int e = errno;
665 1.47 kre
666 1.47 kre (void) close(from);
667 1.47 kre error("Unable to make fd %d: %s", to, strerror(e));
668 1.47 kre }
669 1.43 christos (void) close(from);
670 1.43 christos
671 1.43 christos return to;
672 1.43 christos }
673 1.43 christos
674 1.43 christos STATIC void
675 1.43 christos find_big_fd(void)
676 1.43 christos {
677 1.43 christos int i, fd;
678 1.57 kre static int last_start = 3; /* aim to keep sh fd's under 20 */
679 1.43 christos
680 1.54 kre if (last_start < 10)
681 1.54 kre last_start++;
682 1.54 kre
683 1.54 kre for (i = (1 << last_start); i >= 10; i >>= 1) {
684 1.73 kre if ((fd = fcntl(0, F_DUPFD, (fcntl_int)(i - 1))) >= 0) {
685 1.73 kre if (fd > biggest_sh_fd)
686 1.73 kre biggest_sh_fd = fd;
687 1.43 christos close(fd);
688 1.43 christos break;
689 1.43 christos }
690 1.43 christos }
691 1.43 christos
692 1.43 christos fd = (i / 5) * 4;
693 1.54 kre if (fd < 10)
694 1.43 christos fd = 10;
695 1.43 christos
696 1.43 christos big_sh_fd = fd;
697 1.43 christos }
698 1.43 christos
699 1.47 kre /*
700 1.47 kre * If possible, move file descriptor fd out of the way
701 1.47 kre * of expected user fd values. Returns the new fd
702 1.47 kre * (which may be the input fd if things do not go well.)
703 1.47 kre * Always set close-on-exec on the result, and close
704 1.47 kre * the input fd unless it is to be our result.
705 1.47 kre */
706 1.43 christos int
707 1.43 christos to_upper_fd(int fd)
708 1.43 christos {
709 1.43 christos int i;
710 1.43 christos
711 1.59 kre VTRACE(DBG_REDIR|DBG_OUTPUT, ("to_upper_fd(%d)", fd));
712 1.68 kre if (big_sh_fd < 10 || big_sh_fd >= user_fd_limit)
713 1.43 christos find_big_fd();
714 1.43 christos do {
715 1.73 kre i = fcntl(fd, F_DUPFD_CLOEXEC, (fcntl_int) big_sh_fd);
716 1.43 christos if (i >= 0) {
717 1.73 kre if (i > biggest_sh_fd)
718 1.73 kre biggest_sh_fd = i;
719 1.43 christos if (fd != i)
720 1.43 christos close(fd);
721 1.59 kre VTRACE(DBG_REDIR|DBG_OUTPUT, ("-> %d\n", i));
722 1.43 christos return i;
723 1.43 christos }
724 1.54 kre if (errno != EMFILE && errno != EINVAL)
725 1.43 christos break;
726 1.43 christos find_big_fd();
727 1.43 christos } while (big_sh_fd > 10);
728 1.43 christos
729 1.46 kre /*
730 1.47 kre * If we wanted to move this fd to some random high number
731 1.46 kre * we certainly do not intend to pass it through exec, even
732 1.46 kre * if the reassignment failed.
733 1.46 kre */
734 1.73 kre (void)fcntl(fd, F_SETFD, (fcntl_int) FD_CLOEXEC);
735 1.59 kre VTRACE(DBG_REDIR|DBG_OUTPUT, (" fails ->%d\n", fd));
736 1.43 christos return fd;
737 1.43 christos }
738 1.50 christos
739 1.54 kre void
740 1.54 kre register_sh_fd(int fd, void (*cb)(int, int))
741 1.54 kre {
742 1.54 kre struct shell_fds *fp;
743 1.54 kre
744 1.54 kre fp = ckmalloc(sizeof (struct shell_fds));
745 1.54 kre if (fp != NULL) {
746 1.54 kre fp->nxt = sh_fd_list;
747 1.54 kre sh_fd_list = fp;
748 1.54 kre
749 1.54 kre fp->fd = fd;
750 1.54 kre fp->cb = cb;
751 1.54 kre }
752 1.54 kre }
753 1.54 kre
754 1.54 kre void
755 1.54 kre sh_close(int fd)
756 1.54 kre {
757 1.54 kre struct shell_fds **fpp, *fp;
758 1.54 kre
759 1.54 kre fpp = &sh_fd_list;
760 1.54 kre while ((fp = *fpp) != NULL) {
761 1.54 kre if (fp->fd == fd) {
762 1.54 kre *fpp = fp->nxt;
763 1.54 kre ckfree(fp);
764 1.54 kre break;
765 1.54 kre }
766 1.54 kre fpp = &fp->nxt;
767 1.54 kre }
768 1.54 kre (void)close(fd);
769 1.54 kre }
770 1.54 kre
771 1.54 kre STATIC struct shell_fds *
772 1.54 kre sh_fd(int fd)
773 1.54 kre {
774 1.54 kre struct shell_fds *fp;
775 1.54 kre
776 1.54 kre for (fp = sh_fd_list; fp != NULL; fp = fp->nxt)
777 1.54 kre if (fp->fd == fd)
778 1.54 kre return fp;
779 1.54 kre return NULL;
780 1.54 kre }
781 1.54 kre
782 1.68 kre STATIC int
783 1.68 kre pick_new_fd(int fd)
784 1.68 kre {
785 1.68 kre int to;
786 1.68 kre
787 1.73 kre to = fcntl(fd, F_DUPFD_CLOEXEC, (fcntl_int) big_sh_fd);
788 1.68 kre if (to == -1 && big_sh_fd >= 22)
789 1.73 kre to = fcntl(fd, F_DUPFD_CLOEXEC, (fcntl_int) (big_sh_fd / 2));
790 1.68 kre if (to == -1)
791 1.73 kre to = fcntl(fd, F_DUPFD_CLOEXEC, (fcntl_int) (fd + 1));
792 1.68 kre if (to == -1)
793 1.73 kre to = fcntl(fd, F_DUPFD_CLOEXEC, (fcntl_int) 10);
794 1.68 kre if (to == -1)
795 1.73 kre to = fcntl(fd, F_DUPFD_CLOEXEC, (fcntl_int) 3);
796 1.68 kre if (to == -1)
797 1.68 kre error("insufficient file descriptors available");
798 1.68 kre CLOEXEC(to);
799 1.73 kre if (to > biggest_sh_fd)
800 1.73 kre biggest_sh_fd = to;
801 1.68 kre return to;
802 1.68 kre }
803 1.68 kre
804 1.54 kre STATIC void
805 1.54 kre renumber_sh_fd(struct shell_fds *fp)
806 1.54 kre {
807 1.54 kre int to;
808 1.54 kre
809 1.54 kre if (fp == NULL)
810 1.54 kre return;
811 1.54 kre
812 1.57 kre /*
813 1.57 kre * if we have had a collision, and the sh fd was a "big" one
814 1.57 kre * try moving the sh fd base to a higher number (if possible)
815 1.57 kre * so future sh fds are less likely to be in the user's sights
816 1.57 kre * (incl this one when moved)
817 1.57 kre */
818 1.57 kre if (fp->fd >= big_sh_fd)
819 1.57 kre find_big_fd();
820 1.57 kre
821 1.68 kre to = pick_new_fd(fp->fd);
822 1.54 kre
823 1.54 kre if (fp->fd == to) /* impossible? */
824 1.54 kre return;
825 1.54 kre
826 1.68 kre VTRACE(DBG_REDIR, ("renumber_sh_fd: moved shell fd %d to %d\n",
827 1.68 kre fp->fd, to));
828 1.68 kre
829 1.54 kre (*fp->cb)(fp->fd, to);
830 1.54 kre (void)close(fp->fd);
831 1.54 kre fp->fd = to;
832 1.54 kre }
833 1.54 kre
834 1.51 kre static const struct flgnames {
835 1.50 christos const char *name;
836 1.56 kre uint16_t minch;
837 1.50 christos uint32_t value;
838 1.50 christos } nv[] = {
839 1.50 christos #ifdef O_APPEND
840 1.56 kre { "append", 2, O_APPEND },
841 1.65 kre #else
842 1.65 kre # define O_APPEND 0
843 1.50 christos #endif
844 1.50 christos #ifdef O_ASYNC
845 1.56 kre { "async", 2, O_ASYNC },
846 1.65 kre #else
847 1.65 kre # define O_ASYNC 0
848 1.50 christos #endif
849 1.50 christos #ifdef O_SYNC
850 1.56 kre { "sync", 2, O_SYNC },
851 1.65 kre #else
852 1.65 kre # define O_SYNC 0
853 1.50 christos #endif
854 1.50 christos #ifdef O_NONBLOCK
855 1.56 kre { "nonblock", 3, O_NONBLOCK },
856 1.65 kre #else
857 1.65 kre # define O_NONBLOCK 0
858 1.50 christos #endif
859 1.50 christos #ifdef O_FSYNC
860 1.56 kre { "fsync", 2, O_FSYNC },
861 1.65 kre #else
862 1.65 kre # define O_FSYNC 0
863 1.50 christos #endif
864 1.50 christos #ifdef O_DSYNC
865 1.56 kre { "dsync", 2, O_DSYNC },
866 1.65 kre #else
867 1.65 kre # define O_DSYNC 0
868 1.50 christos #endif
869 1.50 christos #ifdef O_RSYNC
870 1.56 kre { "rsync", 2, O_RSYNC },
871 1.65 kre #else
872 1.65 kre # define O_RSYNC 0
873 1.50 christos #endif
874 1.62 kamil #ifdef O_ALT_IO
875 1.56 kre { "altio", 2, O_ALT_IO },
876 1.65 kre #else
877 1.65 kre # define O_ALT_IO 0
878 1.50 christos #endif
879 1.50 christos #ifdef O_DIRECT
880 1.56 kre { "direct", 2, O_DIRECT },
881 1.65 kre #else
882 1.65 kre # define O_DIRECT 0
883 1.50 christos #endif
884 1.50 christos #ifdef O_NOSIGPIPE
885 1.56 kre { "nosigpipe", 3, O_NOSIGPIPE },
886 1.65 kre #else
887 1.65 kre # define O_NOSIGPIPE 0
888 1.50 christos #endif
889 1.65 kre
890 1.65 kre #define ALLFLAGS (O_APPEND|O_ASYNC|O_SYNC|O_NONBLOCK|O_DSYNC|O_RSYNC|\
891 1.65 kre O_ALT_IO|O_DIRECT|O_NOSIGPIPE)
892 1.65 kre
893 1.65 kre #ifndef O_CLOEXEC
894 1.66 kre # define O_CLOEXEC ((~ALLFLAGS) ^ ((~ALLFLAGS) & ((~ALLFLAGS) - 1)))
895 1.65 kre #endif
896 1.65 kre
897 1.65 kre /* for any system we support, close on exec is always defined */
898 1.56 kre { "cloexec", 2, O_CLOEXEC },
899 1.56 kre { 0, 0, 0 }
900 1.50 christos };
901 1.65 kre
902 1.65 kre #ifndef O_ACCMODE
903 1.65 kre # define O_ACCMODE 0
904 1.65 kre #endif
905 1.65 kre #ifndef O_RDONLY
906 1.65 kre # define O_RDONLY 0
907 1.65 kre #endif
908 1.65 kre #ifndef O_WRONLY
909 1.65 kre # define O_WRONLY 0
910 1.65 kre #endif
911 1.65 kre #ifndef O_RWDR
912 1.65 kre # define O_RWDR 0
913 1.65 kre #endif
914 1.65 kre #ifndef O_SHLOCK
915 1.65 kre # define O_SHLOCK 0
916 1.65 kre #endif
917 1.65 kre #ifndef O_EXLOCK
918 1.65 kre # define O_EXLOCK 0
919 1.65 kre #endif
920 1.65 kre #ifndef O_NOFOLLOW
921 1.65 kre # define O_NOFOLLOW 0
922 1.65 kre #endif
923 1.65 kre #ifndef O_CREAT
924 1.65 kre # define O_CREAT 0
925 1.65 kre #endif
926 1.65 kre #ifndef O_TRUNC
927 1.65 kre # define O_TRUNC 0
928 1.65 kre #endif
929 1.65 kre #ifndef O_EXCL
930 1.65 kre # define O_EXCL 0
931 1.65 kre #endif
932 1.65 kre #ifndef O_NOCTTY
933 1.65 kre # define O_NOCTTY 0
934 1.65 kre #endif
935 1.65 kre #ifndef O_DIRECTORY
936 1.65 kre # define O_DIRECTORY 0
937 1.65 kre #endif
938 1.65 kre #ifndef O_REGULAR
939 1.65 kre # define O_REGULAR 0
940 1.65 kre #endif
941 1.65 kre /*
942 1.65 kre * flags that F_GETFL might return that we want to ignore
943 1.65 kre *
944 1.65 kre * F_GETFL should not actually return these, they're all just open()
945 1.65 kre * modifiers, rather than state, but just in case...
946 1.65 kre */
947 1.65 kre #define IGNFLAGS (O_ACCMODE|O_RDONLY|O_WRONLY|O_RDWR|O_SHLOCK|O_EXLOCK| \
948 1.65 kre O_NOFOLLOW|O_CREAT|O_TRUNC|O_EXCL|O_NOCTTY|O_DIRECTORY|O_REGULAR)
949 1.50 christos
950 1.50 christos static int
951 1.73 kre getflags(int fd, int p, int all)
952 1.50 christos {
953 1.50 christos int c, f;
954 1.50 christos
955 1.73 kre if (!all && (sh_fd(fd) != NULL || saved_redirected_fd(fd) != NULL)) {
956 1.54 kre if (!p)
957 1.54 kre return -1;
958 1.67 kre error("Can't get status for fd=%d (%s)", fd, strerror(EBADF));
959 1.54 kre }
960 1.54 kre
961 1.50 christos if ((c = fcntl(fd, F_GETFD)) == -1) {
962 1.50 christos if (!p)
963 1.50 christos return -1;
964 1.50 christos error("Can't get status for fd=%d (%s)", fd, strerror(errno));
965 1.50 christos }
966 1.50 christos if ((f = fcntl(fd, F_GETFL)) == -1) {
967 1.50 christos if (!p)
968 1.50 christos return -1;
969 1.50 christos error("Can't get flags for fd=%d (%s)", fd, strerror(errno));
970 1.50 christos }
971 1.65 kre f &= ~IGNFLAGS; /* clear anything we know about, but ignore */
972 1.51 kre if (c & FD_CLOEXEC)
973 1.50 christos f |= O_CLOEXEC;
974 1.65 kre return f;
975 1.50 christos }
976 1.50 christos
977 1.50 christos static void
978 1.51 kre printone(int fd, int p, int verbose, int pfd)
979 1.50 christos {
980 1.73 kre int f = getflags(fd, p, verbose > 1);
981 1.51 kre const struct flgnames *fn;
982 1.50 christos
983 1.50 christos if (f == -1)
984 1.50 christos return;
985 1.50 christos
986 1.51 kre if (pfd)
987 1.51 kre outfmt(out1, "%d: ", fd);
988 1.51 kre for (fn = nv; fn->name; fn++) {
989 1.51 kre if (f & fn->value) {
990 1.51 kre outfmt(out1, "%s%s", verbose ? "+" : "", fn->name);
991 1.51 kre f &= ~fn->value;
992 1.50 christos } else if (verbose)
993 1.51 kre outfmt(out1, "-%s", fn->name);
994 1.50 christos else
995 1.50 christos continue;
996 1.51 kre if (f || (verbose && fn[1].name))
997 1.50 christos outfmt(out1, ",");
998 1.50 christos }
999 1.51 kre if (verbose && f) /* f should be normally be 0 */
1000 1.51 kre outfmt(out1, " +%#x", f);
1001 1.50 christos outfmt(out1, "\n");
1002 1.50 christos }
1003 1.50 christos
1004 1.51 kre static void
1005 1.50 christos parseflags(char *s, int *p, int *n)
1006 1.50 christos {
1007 1.51 kre int *v, *w;
1008 1.51 kre const struct flgnames *fn;
1009 1.56 kre size_t len;
1010 1.50 christos
1011 1.50 christos *p = 0;
1012 1.50 christos *n = 0;
1013 1.50 christos for (s = strtok(s, ","); s; s = strtok(NULL, ",")) {
1014 1.51 kre switch (*s++) {
1015 1.50 christos case '+':
1016 1.50 christos v = p;
1017 1.51 kre w = n;
1018 1.50 christos break;
1019 1.50 christos case '-':
1020 1.50 christos v = n;
1021 1.51 kre w = p;
1022 1.50 christos break;
1023 1.50 christos default:
1024 1.51 kre error("Missing +/- indicator before flag %s", s-1);
1025 1.50 christos }
1026 1.60 kre
1027 1.56 kre len = strlen(s);
1028 1.51 kre for (fn = nv; fn->name; fn++)
1029 1.56 kre if (len >= fn->minch && strncmp(s,fn->name,len) == 0) {
1030 1.51 kre *v |= fn->value;
1031 1.51 kre *w &=~ fn->value;
1032 1.50 christos break;
1033 1.50 christos }
1034 1.51 kre if (fn->name == 0)
1035 1.50 christos error("Bad flag `%s'", s);
1036 1.50 christos }
1037 1.50 christos }
1038 1.50 christos
1039 1.50 christos static void
1040 1.50 christos setone(int fd, int pos, int neg, int verbose)
1041 1.50 christos {
1042 1.73 kre int f = getflags(fd, 1, 0);
1043 1.51 kre int n, cloexec;
1044 1.51 kre
1045 1.50 christos if (f == -1)
1046 1.50 christos return;
1047 1.50 christos
1048 1.51 kre cloexec = -1;
1049 1.50 christos if ((pos & O_CLOEXEC) && !(f & O_CLOEXEC))
1050 1.50 christos cloexec = FD_CLOEXEC;
1051 1.50 christos if ((neg & O_CLOEXEC) && (f & O_CLOEXEC))
1052 1.50 christos cloexec = 0;
1053 1.50 christos
1054 1.73 kre /* Don't allow O_CLOEXEC on stdin, stdout, or stderr */
1055 1.73 kre if ((cloexec > 0 && fd <= 2 && (errno = EINVAL)) ||
1056 1.73 kre (cloexec != -1 && fcntl(fd, F_SETFD, (fcntl_int) cloexec) == -1))
1057 1.50 christos error("Can't set status for fd=%d (%s)", fd, strerror(errno));
1058 1.50 christos
1059 1.50 christos pos &= ~O_CLOEXEC;
1060 1.50 christos neg &= ~O_CLOEXEC;
1061 1.50 christos f &= ~O_CLOEXEC;
1062 1.51 kre n = f;
1063 1.50 christos n |= pos;
1064 1.50 christos n &= ~neg;
1065 1.73 kre if (n != f && fcntl(fd, F_SETFL, (fcntl_int)n) == -1)
1066 1.50 christos error("Can't set flags for fd=%d (%s)", fd, strerror(errno));
1067 1.50 christos if (verbose)
1068 1.51 kre printone(fd, 1, verbose, 1);
1069 1.50 christos }
1070 1.50 christos
1071 1.50 christos int
1072 1.50 christos fdflagscmd(int argc, char *argv[])
1073 1.50 christos {
1074 1.50 christos char *num;
1075 1.50 christos int verbose = 0, ch, pos = 0, neg = 0;
1076 1.50 christos char *setflags = NULL;
1077 1.50 christos
1078 1.50 christos optreset = 1; optind = 1; /* initialize getopt */
1079 1.73 kre while ((ch = getopt(argc, argv, ":vs:"
1080 1.73 kre #ifdef DEBUG
1081 1.73 kre "V"
1082 1.73 kre #endif
1083 1.73 kre )) != -1)
1084 1.50 christos switch ((char)ch) {
1085 1.73 kre #ifdef DEBUG
1086 1.73 kre case 'V':
1087 1.73 kre verbose = 2;
1088 1.73 kre break;
1089 1.73 kre #endif
1090 1.50 christos case 'v':
1091 1.50 christos verbose = 1;
1092 1.50 christos break;
1093 1.50 christos case 's':
1094 1.51 kre if (setflags)
1095 1.51 kre goto msg;
1096 1.50 christos setflags = optarg;
1097 1.50 christos break;
1098 1.50 christos case '?':
1099 1.50 christos default:
1100 1.50 christos msg:
1101 1.51 kre error("Usage: fdflags [-v] [-s <flags> fd] [fd...]");
1102 1.50 christos /* NOTREACHED */
1103 1.50 christos }
1104 1.50 christos
1105 1.50 christos argc -= optind, argv += optind;
1106 1.50 christos
1107 1.51 kre if (setflags)
1108 1.51 kre parseflags(setflags, &pos, &neg);
1109 1.50 christos
1110 1.50 christos if (argc == 0) {
1111 1.53 kre int i;
1112 1.51 kre
1113 1.50 christos if (setflags)
1114 1.50 christos goto msg;
1115 1.51 kre
1116 1.53 kre for (i = 0; i <= max_user_fd; i++)
1117 1.51 kre printone(i, 0, verbose, 1);
1118 1.73 kre if (verbose > 1)
1119 1.73 kre while (i <= biggest_sh_fd)
1120 1.73 kre printone(i++, 0, verbose, 1);
1121 1.50 christos
1122 1.71 kre } else while ((num = *argv++) != NULL) {
1123 1.51 kre int fd = number(num);
1124 1.51 kre
1125 1.52 kre while (num[0] == '0' && num[1] != '\0') /* skip 0's */
1126 1.52 kre num++;
1127 1.68 kre if (strlen(num) > 5 ||
1128 1.68 kre (fd >= user_fd_limit && fd > max_user_fd))
1129 1.68 kre error("%s: too big to be a file descriptor", num);
1130 1.51 kre
1131 1.50 christos if (setflags)
1132 1.50 christos setone(fd, pos, neg, verbose);
1133 1.50 christos else
1134 1.51 kre printone(fd, 1, verbose, argc > 1);
1135 1.50 christos }
1136 1.71 kre flushout(out1);
1137 1.71 kre if (io_err(out1)) {
1138 1.71 kre out2str("fdflags: I/O error\n");
1139 1.71 kre return 1;
1140 1.71 kre }
1141 1.50 christos return 0;
1142 1.50 christos }
1143 1.58 kre
1144 1.58 kre #undef MAX /* in case we inherited them from somewhere */
1145 1.58 kre #undef MIN
1146 1.58 kre
1147 1.58 kre #define MIN(a,b) (/*CONSTCOND*/((a)<=(b)) ? (a) : (b))
1148 1.58 kre #define MAX(a,b) (/*CONSTCOND*/((a)>=(b)) ? (a) : (b))
1149 1.58 kre
1150 1.58 kre /* now make the compiler work for us... */
1151 1.58 kre #define MIN_REDIR MIN(MIN(MIN(MIN(NTO,NFROM), MIN(NTOFD,NFROMFD)), \
1152 1.58 kre MIN(MIN(NCLOBBER,NAPPEND), MIN(NHERE,NXHERE))), NFROMTO)
1153 1.58 kre #define MAX_REDIR MAX(MAX(MAX(MAX(NTO,NFROM), MAX(NTOFD,NFROMFD)), \
1154 1.58 kre MAX(MAX(NCLOBBER,NAPPEND), MAX(NHERE,NXHERE))), NFROMTO)
1155 1.58 kre
1156 1.58 kre static const char *redir_sym[MAX_REDIR - MIN_REDIR + 1] = {
1157 1.58 kre [NTO - MIN_REDIR]= ">",
1158 1.58 kre [NFROM - MIN_REDIR]= "<",
1159 1.58 kre [NTOFD - MIN_REDIR]= ">&",
1160 1.58 kre [NFROMFD - MIN_REDIR]= "<&",
1161 1.58 kre [NCLOBBER - MIN_REDIR]= ">|",
1162 1.58 kre [NAPPEND - MIN_REDIR]= ">>",
1163 1.58 kre [NHERE - MIN_REDIR]= "<<",
1164 1.58 kre [NXHERE - MIN_REDIR]= "<<",
1165 1.58 kre [NFROMTO - MIN_REDIR]= "<>",
1166 1.58 kre };
1167 1.58 kre
1168 1.58 kre int
1169 1.58 kre outredir(struct output *out, union node *n, int sep)
1170 1.58 kre {
1171 1.58 kre if (n == NULL)
1172 1.58 kre return 0;
1173 1.58 kre if (n->type < MIN_REDIR || n->type > MAX_REDIR ||
1174 1.58 kre redir_sym[n->type - MIN_REDIR] == NULL)
1175 1.58 kre return 0;
1176 1.58 kre
1177 1.58 kre if (sep)
1178 1.58 kre outc(sep, out);
1179 1.58 kre
1180 1.58 kre /*
1181 1.58 kre * ugly, but all redir node types have "fd" in same slot...
1182 1.58 kre * (and code other places assumes it as well)
1183 1.58 kre */
1184 1.58 kre if ((redir_sym[n->type - MIN_REDIR][0] == '<' && n->nfile.fd != 0) ||
1185 1.58 kre (redir_sym[n->type - MIN_REDIR][0] == '>' && n->nfile.fd != 1))
1186 1.58 kre outfmt(out, "%d", n->nfile.fd);
1187 1.58 kre
1188 1.58 kre outstr(redir_sym[n->type - MIN_REDIR], out);
1189 1.58 kre
1190 1.58 kre switch (n->type) {
1191 1.58 kre case NHERE:
1192 1.58 kre outstr("'...'", out);
1193 1.58 kre break;
1194 1.58 kre case NXHERE:
1195 1.58 kre outstr("...", out);
1196 1.58 kre break;
1197 1.58 kre case NTOFD:
1198 1.58 kre case NFROMFD:
1199 1.58 kre if (n->ndup.dupfd < 0)
1200 1.58 kre outc('-', out);
1201 1.58 kre else
1202 1.58 kre outfmt(out, "%d", n->ndup.dupfd);
1203 1.58 kre break;
1204 1.58 kre default:
1205 1.58 kre outstr(n->nfile.expfname, out);
1206 1.58 kre break;
1207 1.58 kre }
1208 1.58 kre return 1;
1209 1.58 kre }
1210