function.c revision 1.61 1 1.61 christos /* $NetBSD: function.c,v 1.61 2007/02/02 15:48:54 christos Exp $ */
2 1.18 tls
3 1.1 cgd /*-
4 1.10 jtc * Copyright (c) 1990, 1993
5 1.10 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 * Cimarron D. Taylor of the University of California, Berkeley.
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 1.46 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 1.21 lukem #include <sys/cdefs.h>
36 1.1 cgd #ifndef lint
37 1.21 lukem #if 0
38 1.22 mrg static char sccsid[] = "from: @(#)function.c 8.10 (Berkeley) 5/4/95";
39 1.21 lukem #else
40 1.61 christos __RCSID("$NetBSD: function.c,v 1.61 2007/02/02 15:48:54 christos Exp $");
41 1.21 lukem #endif
42 1.1 cgd #endif /* not lint */
43 1.1 cgd
44 1.1 cgd #include <sys/param.h>
45 1.1 cgd #include <sys/stat.h>
46 1.1 cgd #include <sys/wait.h>
47 1.1 cgd #include <sys/mount.h>
48 1.10 jtc
49 1.41 provos #include <dirent.h>
50 1.10 jtc #include <err.h>
51 1.1 cgd #include <errno.h>
52 1.10 jtc #include <fnmatch.h>
53 1.10 jtc #include <fts.h>
54 1.1 cgd #include <grp.h>
55 1.30 kleink #include <inttypes.h>
56 1.56 apb #include <limits.h>
57 1.1 cgd #include <pwd.h>
58 1.1 cgd #include <stdio.h>
59 1.1 cgd #include <stdlib.h>
60 1.1 cgd #include <string.h>
61 1.10 jtc #include <tzfile.h>
62 1.10 jtc #include <unistd.h>
63 1.55 christos #include <util.h>
64 1.10 jtc
65 1.1 cgd #include "find.h"
66 1.1 cgd
67 1.10 jtc #define COMPARE(a, b) { \
68 1.10 jtc switch (plan->flags) { \
69 1.10 jtc case F_EQUAL: \
70 1.10 jtc return (a == b); \
71 1.10 jtc case F_LESSTHAN: \
72 1.10 jtc return (a < b); \
73 1.10 jtc case F_GREATER: \
74 1.10 jtc return (a > b); \
75 1.10 jtc default: \
76 1.10 jtc abort(); \
77 1.10 jtc } \
78 1.1 cgd }
79 1.1 cgd
80 1.57 apb static int64_t find_parsenum(PLAN *, const char *, const char *, char *);
81 1.57 apb static void run_f_exec(PLAN *);
82 1.57 apb int f_always_true(PLAN *, FTSENT *);
83 1.57 apb int f_amin(PLAN *, FTSENT *);
84 1.57 apb int f_anewer(PLAN *, FTSENT *);
85 1.57 apb int f_atime(PLAN *, FTSENT *);
86 1.57 apb int f_cmin(PLAN *, FTSENT *);
87 1.57 apb int f_cnewer(PLAN *, FTSENT *);
88 1.57 apb int f_ctime(PLAN *, FTSENT *);
89 1.57 apb int f_empty(PLAN *, FTSENT *);
90 1.57 apb int f_exec(PLAN *, FTSENT *);
91 1.57 apb int f_execdir(PLAN *, FTSENT *);
92 1.57 apb int f_false(PLAN *, FTSENT *);
93 1.57 apb int f_flags(PLAN *, FTSENT *);
94 1.57 apb int f_fprint(PLAN *, FTSENT *);
95 1.57 apb int f_fstype(PLAN *, FTSENT *);
96 1.57 apb int f_group(PLAN *, FTSENT *);
97 1.57 apb int f_iname(PLAN *, FTSENT *);
98 1.57 apb int f_inum(PLAN *, FTSENT *);
99 1.57 apb int f_links(PLAN *, FTSENT *);
100 1.57 apb int f_ls(PLAN *, FTSENT *);
101 1.57 apb int f_mindepth(PLAN *, FTSENT *);
102 1.57 apb int f_maxdepth(PLAN *, FTSENT *);
103 1.57 apb int f_mmin(PLAN *, FTSENT *);
104 1.57 apb int f_mtime(PLAN *, FTSENT *);
105 1.57 apb int f_name(PLAN *, FTSENT *);
106 1.57 apb int f_newer(PLAN *, FTSENT *);
107 1.57 apb int f_nogroup(PLAN *, FTSENT *);
108 1.57 apb int f_nouser(PLAN *, FTSENT *);
109 1.57 apb int f_path(PLAN *, FTSENT *);
110 1.57 apb int f_perm(PLAN *, FTSENT *);
111 1.57 apb int f_print(PLAN *, FTSENT *);
112 1.57 apb int f_print0(PLAN *, FTSENT *);
113 1.57 apb int f_printx(PLAN *, FTSENT *);
114 1.57 apb int f_prune(PLAN *, FTSENT *);
115 1.57 apb int f_regex(PLAN *, FTSENT *);
116 1.57 apb int f_size(PLAN *, FTSENT *);
117 1.57 apb int f_type(PLAN *, FTSENT *);
118 1.57 apb int f_user(PLAN *, FTSENT *);
119 1.57 apb int f_not(PLAN *, FTSENT *);
120 1.57 apb int f_or(PLAN *, FTSENT *);
121 1.57 apb static PLAN *c_regex_common(char ***, int, enum ntype, int);
122 1.57 apb static PLAN *palloc(enum ntype, int (*)(PLAN *, FTSENT *));
123 1.1 cgd
124 1.35 christos extern int dotfd;
125 1.35 christos extern FTS *tree;
126 1.35 christos extern time_t now;
127 1.35 christos
128 1.1 cgd /*
129 1.1 cgd * find_parsenum --
130 1.1 cgd * Parse a string of the form [+-]# and return the value.
131 1.1 cgd */
132 1.30 kleink static int64_t
133 1.57 apb find_parsenum(PLAN *plan, const char *option, const char *vp, char *endch)
134 1.1 cgd {
135 1.30 kleink int64_t value;
136 1.57 apb const char *str;
137 1.57 apb char *endchar; /* Pointer to character ending conversion. */
138 1.57 apb
139 1.10 jtc /* Determine comparison from leading + or -. */
140 1.10 jtc str = vp;
141 1.10 jtc switch (*str) {
142 1.1 cgd case '+':
143 1.1 cgd ++str;
144 1.10 jtc plan->flags = F_GREATER;
145 1.1 cgd break;
146 1.1 cgd case '-':
147 1.1 cgd ++str;
148 1.10 jtc plan->flags = F_LESSTHAN;
149 1.1 cgd break;
150 1.1 cgd default:
151 1.10 jtc plan->flags = F_EQUAL;
152 1.1 cgd break;
153 1.1 cgd }
154 1.57 apb
155 1.1 cgd /*
156 1.10 jtc * Convert the string with strtol(). Note, if strtol() returns zero
157 1.1 cgd * and endchar points to the beginning of the string we know we have
158 1.1 cgd * a syntax error.
159 1.1 cgd */
160 1.30 kleink value = strtoq(str, &endchar, 10);
161 1.10 jtc if (value == 0 && endchar == str)
162 1.10 jtc errx(1, "%s: %s: illegal numeric value", option, vp);
163 1.10 jtc if (endchar[0] && (endch == NULL || endchar[0] != *endch))
164 1.10 jtc errx(1, "%s: %s: illegal trailing character", option, vp);
165 1.1 cgd if (endch)
166 1.1 cgd *endch = endchar[0];
167 1.10 jtc return (value);
168 1.1 cgd }
169 1.1 cgd
170 1.1 cgd /*
171 1.10 jtc * The value of n for the inode times (atime, ctime, and mtime) is a range,
172 1.10 jtc * i.e. n matches from (n - 1) to n 24 hour periods. This interacts with
173 1.10 jtc * -n, such that "-mtime -1" would be less than 0 days, which isn't what the
174 1.10 jtc * user wanted. Correct so that -1 is "less than 1".
175 1.10 jtc */
176 1.10 jtc #define TIME_CORRECT(p, ttype) \
177 1.10 jtc if ((p)->type == ttype && (p)->flags == F_LESSTHAN) \
178 1.10 jtc ++((p)->t_data);
179 1.10 jtc
180 1.10 jtc /*
181 1.29 simonb * -amin n functions --
182 1.29 simonb *
183 1.29 simonb * True if the difference between the file access time and the
184 1.29 simonb * current time is n 1 minute periods.
185 1.29 simonb */
186 1.29 simonb int
187 1.57 apb f_amin(PLAN *plan, FTSENT *entry)
188 1.29 simonb {
189 1.29 simonb COMPARE((now - entry->fts_statp->st_atime +
190 1.29 simonb SECSPERMIN - 1) / SECSPERMIN, plan->t_data);
191 1.29 simonb }
192 1.57 apb
193 1.29 simonb PLAN *
194 1.57 apb c_amin(char ***argvp, int isok)
195 1.29 simonb {
196 1.29 simonb char *arg = **argvp;
197 1.29 simonb PLAN *new;
198 1.29 simonb
199 1.29 simonb (*argvp)++;
200 1.29 simonb ftsoptions &= ~FTS_NOSTAT;
201 1.29 simonb
202 1.29 simonb new = palloc(N_AMIN, f_amin);
203 1.29 simonb new->t_data = find_parsenum(new, "-amin", arg, NULL);
204 1.29 simonb TIME_CORRECT(new, N_AMIN);
205 1.29 simonb return (new);
206 1.29 simonb }
207 1.40 kleink
208 1.40 kleink /*
209 1.40 kleink * -anewer file functions --
210 1.40 kleink *
211 1.40 kleink * True if the current file has been accessed more recently
212 1.40 kleink * than the access time of the file named by the pathname
213 1.40 kleink * file.
214 1.40 kleink */
215 1.40 kleink int
216 1.40 kleink f_anewer(plan, entry)
217 1.40 kleink PLAN *plan;
218 1.40 kleink FTSENT *entry;
219 1.40 kleink {
220 1.40 kleink
221 1.40 kleink return (entry->fts_statp->st_atime > plan->t_data);
222 1.40 kleink }
223 1.57 apb
224 1.40 kleink PLAN *
225 1.57 apb c_anewer(char ***argvp, int isok)
226 1.40 kleink {
227 1.40 kleink char *filename = **argvp;
228 1.40 kleink PLAN *new;
229 1.40 kleink struct stat sb;
230 1.57 apb
231 1.40 kleink (*argvp)++;
232 1.40 kleink ftsoptions &= ~FTS_NOSTAT;
233 1.40 kleink
234 1.40 kleink if (stat(filename, &sb))
235 1.40 kleink err(1, "%s", filename);
236 1.40 kleink new = palloc(N_ANEWER, f_anewer);
237 1.40 kleink new->t_data = sb.st_atime;
238 1.40 kleink return (new);
239 1.40 kleink }
240 1.57 apb
241 1.29 simonb /*
242 1.1 cgd * -atime n functions --
243 1.1 cgd *
244 1.1 cgd * True if the difference between the file access time and the
245 1.1 cgd * current time is n 24 hour periods.
246 1.1 cgd */
247 1.10 jtc int
248 1.57 apb f_atime(PLAN *plan, FTSENT *entry)
249 1.1 cgd {
250 1.7 deraadt COMPARE((now - entry->fts_statp->st_atime +
251 1.1 cgd SECSPERDAY - 1) / SECSPERDAY, plan->t_data);
252 1.1 cgd }
253 1.57 apb
254 1.1 cgd PLAN *
255 1.57 apb c_atime(char ***argvp, int isok)
256 1.1 cgd {
257 1.24 christos char *arg = **argvp;
258 1.1 cgd PLAN *new;
259 1.1 cgd
260 1.24 christos (*argvp)++;
261 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
262 1.1 cgd
263 1.1 cgd new = palloc(N_ATIME, f_atime);
264 1.1 cgd new->t_data = find_parsenum(new, "-atime", arg, NULL);
265 1.10 jtc TIME_CORRECT(new, N_ATIME);
266 1.10 jtc return (new);
267 1.1 cgd }
268 1.1 cgd /*
269 1.29 simonb * -cmin n functions --
270 1.29 simonb *
271 1.29 simonb * True if the difference between the last change of file
272 1.29 simonb * status information and the current time is n 24 hour periods.
273 1.29 simonb */
274 1.29 simonb int
275 1.57 apb f_cmin(PLAN *plan, FTSENT *entry)
276 1.29 simonb {
277 1.29 simonb COMPARE((now - entry->fts_statp->st_ctime +
278 1.29 simonb SECSPERMIN - 1) / SECSPERMIN, plan->t_data);
279 1.29 simonb }
280 1.57 apb
281 1.29 simonb PLAN *
282 1.57 apb c_cmin(char ***argvp, int isok)
283 1.29 simonb {
284 1.29 simonb char *arg = **argvp;
285 1.29 simonb PLAN *new;
286 1.29 simonb
287 1.29 simonb (*argvp)++;
288 1.29 simonb ftsoptions &= ~FTS_NOSTAT;
289 1.29 simonb
290 1.29 simonb new = palloc(N_CMIN, f_cmin);
291 1.29 simonb new->t_data = find_parsenum(new, "-cmin", arg, NULL);
292 1.29 simonb TIME_CORRECT(new, N_CMIN);
293 1.29 simonb return (new);
294 1.29 simonb }
295 1.39 kleink
296 1.39 kleink /*
297 1.39 kleink * -cnewer file functions --
298 1.39 kleink *
299 1.39 kleink * True if the current file has been changed more recently
300 1.40 kleink * than the changed time of the file named by the pathname
301 1.39 kleink * file.
302 1.39 kleink */
303 1.39 kleink int
304 1.57 apb f_cnewer(PLAN *plan, FTSENT *entry)
305 1.39 kleink {
306 1.39 kleink
307 1.39 kleink return (entry->fts_statp->st_ctime > plan->t_data);
308 1.39 kleink }
309 1.57 apb
310 1.39 kleink PLAN *
311 1.57 apb c_cnewer(char ***argvp, int isok)
312 1.39 kleink {
313 1.39 kleink char *filename = **argvp;
314 1.39 kleink PLAN *new;
315 1.39 kleink struct stat sb;
316 1.57 apb
317 1.39 kleink (*argvp)++;
318 1.39 kleink ftsoptions &= ~FTS_NOSTAT;
319 1.39 kleink
320 1.39 kleink if (stat(filename, &sb))
321 1.39 kleink err(1, "%s", filename);
322 1.39 kleink new = palloc(N_CNEWER, f_cnewer);
323 1.39 kleink new->t_data = sb.st_ctime;
324 1.39 kleink return (new);
325 1.39 kleink }
326 1.57 apb
327 1.29 simonb /*
328 1.1 cgd * -ctime n functions --
329 1.1 cgd *
330 1.1 cgd * True if the difference between the last change of file
331 1.1 cgd * status information and the current time is n 24 hour periods.
332 1.1 cgd */
333 1.10 jtc int
334 1.57 apb f_ctime(PLAN *plan, FTSENT *entry)
335 1.1 cgd {
336 1.7 deraadt COMPARE((now - entry->fts_statp->st_ctime +
337 1.1 cgd SECSPERDAY - 1) / SECSPERDAY, plan->t_data);
338 1.1 cgd }
339 1.57 apb
340 1.1 cgd PLAN *
341 1.57 apb c_ctime(char ***argvp, int isok)
342 1.1 cgd {
343 1.24 christos char *arg = **argvp;
344 1.1 cgd PLAN *new;
345 1.1 cgd
346 1.24 christos (*argvp)++;
347 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
348 1.1 cgd
349 1.1 cgd new = palloc(N_CTIME, f_ctime);
350 1.10 jtc new->t_data = find_parsenum(new, "-ctime", arg, NULL);
351 1.10 jtc TIME_CORRECT(new, N_CTIME);
352 1.10 jtc return (new);
353 1.1 cgd }
354 1.1 cgd
355 1.1 cgd /*
356 1.1 cgd * -depth functions --
357 1.1 cgd *
358 1.1 cgd * Always true, causes descent of the directory hierarchy to be done
359 1.1 cgd * so that all entries in a directory are acted on before the directory
360 1.1 cgd * itself.
361 1.1 cgd */
362 1.10 jtc int
363 1.57 apb f_always_true(PLAN *plan, FTSENT *entry)
364 1.1 cgd {
365 1.33 enami
366 1.10 jtc return (1);
367 1.1 cgd }
368 1.57 apb
369 1.1 cgd PLAN *
370 1.57 apb c_depth(char ***argvp, int isok)
371 1.1 cgd {
372 1.1 cgd isdepth = 1;
373 1.1 cgd
374 1.10 jtc return (palloc(N_DEPTH, f_always_true));
375 1.1 cgd }
376 1.57 apb
377 1.1 cgd /*
378 1.41 provos * -empty functions --
379 1.41 provos *
380 1.41 provos * True if the file or directory is empty
381 1.41 provos */
382 1.41 provos int
383 1.57 apb f_empty(PLAN *plan, FTSENT *entry)
384 1.41 provos {
385 1.41 provos if (S_ISREG(entry->fts_statp->st_mode) &&
386 1.41 provos entry->fts_statp->st_size == 0)
387 1.41 provos return (1);
388 1.41 provos if (S_ISDIR(entry->fts_statp->st_mode)) {
389 1.41 provos struct dirent *dp;
390 1.41 provos int empty;
391 1.41 provos DIR *dir;
392 1.41 provos
393 1.41 provos empty = 1;
394 1.41 provos dir = opendir(entry->fts_accpath);
395 1.41 provos if (dir == NULL)
396 1.41 provos err(1, "%s", entry->fts_accpath);
397 1.41 provos for (dp = readdir(dir); dp; dp = readdir(dir))
398 1.41 provos if (dp->d_name[0] != '.' ||
399 1.41 provos (dp->d_name[1] != '\0' &&
400 1.41 provos (dp->d_name[1] != '.' || dp->d_name[2] != '\0'))) {
401 1.41 provos empty = 0;
402 1.41 provos break;
403 1.41 provos }
404 1.41 provos closedir(dir);
405 1.41 provos return (empty);
406 1.41 provos }
407 1.41 provos return (0);
408 1.41 provos }
409 1.41 provos
410 1.41 provos PLAN *
411 1.57 apb c_empty(char ***argvp, int isok)
412 1.41 provos {
413 1.41 provos ftsoptions &= ~FTS_NOSTAT;
414 1.41 provos
415 1.41 provos return (palloc(N_EMPTY, f_empty));
416 1.41 provos }
417 1.41 provos
418 1.41 provos /*
419 1.1 cgd * [-exec | -ok] utility [arg ... ] ; functions --
420 1.56 apb * [-exec | -ok] utility [arg ... ] {} + functions --
421 1.1 cgd *
422 1.56 apb * If the end of the primary expression is delimited by a
423 1.56 apb * semicolon: true if the executed utility returns a zero value
424 1.56 apb * as exit status. If "{}" occurs anywhere, it gets replaced by
425 1.56 apb * the current pathname.
426 1.56 apb *
427 1.56 apb * If the end of the primary expression is delimited by a plus
428 1.56 apb * sign: always true. Pathnames for which the primary is
429 1.56 apb * evaluated shall be aggregated into sets. The utility will be
430 1.56 apb * executed once per set, with "{}" replaced by the entire set of
431 1.56 apb * pathnames (as if xargs). "{}" must appear last.
432 1.56 apb *
433 1.56 apb * The current directory for the execution of utility is the same
434 1.56 apb * as the current directory when the find utility was started.
435 1.1 cgd *
436 1.56 apb * The primary -ok is different in that it requests affirmation
437 1.56 apb * of the user before executing the utility.
438 1.1 cgd */
439 1.10 jtc int
440 1.57 apb f_exec(PLAN *plan, FTSENT *entry)
441 1.1 cgd {
442 1.56 apb int cnt, l;
443 1.1 cgd pid_t pid;
444 1.1 cgd int status;
445 1.1 cgd
446 1.56 apb if (plan->flags & F_PLUSSET) {
447 1.56 apb /*
448 1.56 apb * Confirm sufficient buffer space, then copy the path
449 1.56 apb * to the buffer.
450 1.56 apb */
451 1.56 apb l = strlen(entry->fts_path);
452 1.56 apb if (plan->ep_p + l < plan->ep_ebp) {
453 1.56 apb plan->ep_bxp[plan->ep_narg++] =
454 1.56 apb strcpy(plan->ep_p, entry->fts_path);
455 1.56 apb plan->ep_p += l + 1;
456 1.56 apb
457 1.56 apb if (plan->ep_narg == plan->ep_maxargs)
458 1.56 apb run_f_exec(plan);
459 1.56 apb } else {
460 1.56 apb /*
461 1.56 apb * Without sufficient space to copy in the next
462 1.56 apb * argument, run the command to empty out the
463 1.56 apb * buffer before re-attepting the copy.
464 1.56 apb */
465 1.56 apb run_f_exec(plan);
466 1.56 apb if ((plan->ep_p + l < plan->ep_ebp)) {
467 1.56 apb plan->ep_bxp[plan->ep_narg++]
468 1.56 apb = strcpy(plan->ep_p, entry->fts_path);
469 1.56 apb plan->ep_p += l + 1;
470 1.56 apb } else
471 1.56 apb errx(1, "insufficient space for argument");
472 1.56 apb }
473 1.56 apb return (1);
474 1.56 apb } else {
475 1.56 apb for (cnt = 0; plan->e_argv[cnt]; ++cnt)
476 1.56 apb if (plan->e_len[cnt])
477 1.56 apb brace_subst(plan->e_orig[cnt],
478 1.56 apb &plan->e_argv[cnt],
479 1.56 apb entry->fts_path,
480 1.56 apb &plan->e_len[cnt]);
481 1.56 apb if (plan->flags & F_NEEDOK && !queryuser(plan->e_argv))
482 1.56 apb return (0);
483 1.56 apb
484 1.56 apb /* Don't mix output of command with find output. */
485 1.56 apb fflush(stdout);
486 1.56 apb fflush(stderr);
487 1.56 apb
488 1.56 apb switch (pid = vfork()) {
489 1.56 apb case -1:
490 1.56 apb err(1, "vfork");
491 1.56 apb /* NOTREACHED */
492 1.56 apb case 0:
493 1.56 apb if (fchdir(dotfd)) {
494 1.56 apb warn("chdir");
495 1.56 apb _exit(1);
496 1.56 apb }
497 1.56 apb execvp(plan->e_argv[0], plan->e_argv);
498 1.56 apb warn("%s", plan->e_argv[0]);
499 1.56 apb _exit(1);
500 1.56 apb }
501 1.56 apb pid = waitpid(pid, &status, 0);
502 1.56 apb return (pid != -1 && WIFEXITED(status)
503 1.56 apb && !WEXITSTATUS(status));
504 1.56 apb }
505 1.56 apb }
506 1.56 apb
507 1.56 apb static void
508 1.57 apb run_f_exec(PLAN *plan)
509 1.56 apb {
510 1.56 apb pid_t pid;
511 1.56 apb int rval, status;
512 1.1 cgd
513 1.56 apb /* Ensure arg list is null terminated. */
514 1.56 apb plan->ep_bxp[plan->ep_narg] = NULL;
515 1.11 jtc
516 1.56 apb /* Don't mix output of command with find output. */
517 1.11 jtc fflush(stdout);
518 1.11 jtc fflush(stderr);
519 1.1 cgd
520 1.37 simonb switch (pid = vfork()) {
521 1.1 cgd case -1:
522 1.37 simonb err(1, "vfork");
523 1.1 cgd /* NOTREACHED */
524 1.1 cgd case 0:
525 1.1 cgd if (fchdir(dotfd)) {
526 1.10 jtc warn("chdir");
527 1.1 cgd _exit(1);
528 1.1 cgd }
529 1.1 cgd execvp(plan->e_argv[0], plan->e_argv);
530 1.10 jtc warn("%s", plan->e_argv[0]);
531 1.1 cgd _exit(1);
532 1.1 cgd }
533 1.56 apb
534 1.56 apb /* Clear out the argument list. */
535 1.56 apb plan->ep_narg = 0;
536 1.56 apb plan->ep_bxp[plan->ep_narg] = NULL;
537 1.56 apb /* As well as the argument buffer. */
538 1.56 apb plan->ep_p = plan->ep_bbp;
539 1.56 apb *plan->ep_p = '\0';
540 1.56 apb
541 1.1 cgd pid = waitpid(pid, &status, 0);
542 1.56 apb if (WIFEXITED(status))
543 1.56 apb rval = WEXITSTATUS(status);
544 1.56 apb else
545 1.56 apb rval = -1;
546 1.56 apb
547 1.56 apb /*
548 1.56 apb * If we have a non-zero exit status, preserve it so find(1) can
549 1.56 apb * later exit with it.
550 1.56 apb */
551 1.56 apb if (rval)
552 1.56 apb plan->ep_rval = rval;
553 1.1 cgd }
554 1.56 apb
555 1.1 cgd /*
556 1.1 cgd * c_exec --
557 1.1 cgd * build three parallel arrays, one with pointers to the strings passed
558 1.1 cgd * on the command line, one with (possibly duplicated) pointers to the
559 1.1 cgd * argv array, and one with integer values that are lengths of the
560 1.1 cgd * strings, but also flags meaning that the string has to be massaged.
561 1.56 apb *
562 1.56 apb * If -exec ... {} +, use only the first array, but make it large
563 1.56 apb * enough to hold 5000 args (cf. src/usr.bin/xargs/xargs.c for a
564 1.56 apb * discussion), and then allocate ARG_MAX - 4K of space for args.
565 1.1 cgd */
566 1.1 cgd PLAN *
567 1.57 apb c_exec(char ***argvp, int isok)
568 1.1 cgd {
569 1.1 cgd PLAN *new; /* node returned */
570 1.56 apb int cnt, brace, lastbrace;
571 1.21 lukem char **argv, **ap, *p;
572 1.1 cgd
573 1.1 cgd isoutput = 1;
574 1.57 apb
575 1.1 cgd new = palloc(N_EXEC, f_exec);
576 1.10 jtc if (isok)
577 1.56 apb new->flags |= F_NEEDOK;
578 1.1 cgd
579 1.56 apb /*
580 1.56 apb * Terminate if we encounter an arg exacty equal to ";", or an
581 1.56 apb * arg exacty equal to "+" following an arg exacty equal to
582 1.56 apb * "{}".
583 1.56 apb */
584 1.56 apb for (ap = argv = *argvp, brace = 0;; ++ap) {
585 1.1 cgd if (!*ap)
586 1.56 apb errx(1, "%s: no terminating \";\" or \"+\"",
587 1.56 apb isok ? "-ok" : "-exec");
588 1.56 apb lastbrace = brace;
589 1.56 apb if (strcmp(*ap, "{}") == 0)
590 1.56 apb brace = 1;
591 1.56 apb if (strcmp(*ap, ";") == 0)
592 1.56 apb break;
593 1.56 apb if (strcmp(*ap, "+") == 0 && lastbrace) {
594 1.56 apb new->flags |= F_PLUSSET;
595 1.1 cgd break;
596 1.56 apb }
597 1.1 cgd }
598 1.1 cgd
599 1.56 apb /*
600 1.56 apb * POSIX says -ok ... {} + "need not be supported," and it does
601 1.56 apb * not make much sense anyway.
602 1.56 apb */
603 1.56 apb if (new->flags & F_NEEDOK && new->flags & F_PLUSSET)
604 1.56 apb errx(1, "-ok: terminating \"+\" not permitted.");
605 1.56 apb
606 1.56 apb if (new->flags & F_PLUSSET) {
607 1.56 apb u_int c, bufsize;
608 1.56 apb
609 1.56 apb cnt = ap - *argvp - 1; /* units are words */
610 1.56 apb new->ep_maxargs = 5000;
611 1.56 apb new->e_argv = (char **)emalloc((u_int)(cnt + new->ep_maxargs)
612 1.56 apb * sizeof(char **));
613 1.56 apb
614 1.56 apb /* We start stuffing arguments after the user's last one. */
615 1.56 apb new->ep_bxp = &new->e_argv[cnt];
616 1.56 apb new->ep_narg = 0;
617 1.56 apb
618 1.56 apb /*
619 1.56 apb * Count up the space of the user's arguments, and
620 1.56 apb * subtract that from what we allocate.
621 1.56 apb */
622 1.56 apb for (argv = *argvp, c = 0, cnt = 0;
623 1.56 apb argv < ap;
624 1.56 apb ++argv, ++cnt) {
625 1.56 apb c += strlen(*argv) + 1;
626 1.56 apb new->e_argv[cnt] = *argv;
627 1.56 apb }
628 1.56 apb bufsize = ARG_MAX - 4 * 1024 - c;
629 1.56 apb
630 1.1 cgd
631 1.56 apb /*
632 1.56 apb * Allocate, and then initialize current, base, and
633 1.56 apb * end pointers.
634 1.56 apb */
635 1.56 apb new->ep_p = new->ep_bbp = malloc(bufsize + 1);
636 1.56 apb new->ep_ebp = new->ep_bbp + bufsize - 1;
637 1.56 apb new->ep_rval = 0;
638 1.56 apb } else { /* !F_PLUSSET */
639 1.56 apb cnt = ap - *argvp + 1;
640 1.56 apb new->e_argv = (char **)emalloc((u_int)cnt * sizeof(char *));
641 1.56 apb new->e_orig = (char **)emalloc((u_int)cnt * sizeof(char *));
642 1.56 apb new->e_len = (int *)emalloc((u_int)cnt * sizeof(int));
643 1.56 apb
644 1.56 apb for (argv = *argvp, cnt = 0; argv < ap; ++argv, ++cnt) {
645 1.56 apb new->e_orig[cnt] = *argv;
646 1.56 apb for (p = *argv; *p; ++p)
647 1.56 apb if (p[0] == '{' && p[1] == '}') {
648 1.56 apb new->e_argv[cnt] =
649 1.56 apb emalloc((u_int)MAXPATHLEN);
650 1.56 apb new->e_len[cnt] = MAXPATHLEN;
651 1.56 apb break;
652 1.56 apb }
653 1.56 apb if (!*p) {
654 1.56 apb new->e_argv[cnt] = *argv;
655 1.56 apb new->e_len[cnt] = 0;
656 1.1 cgd }
657 1.1 cgd }
658 1.56 apb new->e_orig[cnt] = NULL;
659 1.1 cgd }
660 1.1 cgd
661 1.56 apb new->e_argv[cnt] = NULL;
662 1.1 cgd *argvp = argv + 1;
663 1.10 jtc return (new);
664 1.1 cgd }
665 1.41 provos
666 1.41 provos /*
667 1.41 provos * -execdir utility [arg ... ] ; functions --
668 1.41 provos *
669 1.41 provos * True if the executed utility returns a zero value as exit status.
670 1.41 provos * The end of the primary expression is delimited by a semicolon. If
671 1.41 provos * "{}" occurs anywhere, it gets replaced by the unqualified pathname.
672 1.41 provos * The current directory for the execution of utility is the same as
673 1.41 provos * the directory where the file lives.
674 1.41 provos */
675 1.41 provos int
676 1.57 apb f_execdir(PLAN *plan, FTSENT *entry)
677 1.41 provos {
678 1.41 provos int cnt;
679 1.41 provos pid_t pid;
680 1.41 provos int status;
681 1.41 provos char *file;
682 1.41 provos
683 1.41 provos /* XXX - if file/dir ends in '/' this will not work -- can it? */
684 1.41 provos if ((file = strrchr(entry->fts_path, '/')))
685 1.41 provos file++;
686 1.41 provos else
687 1.41 provos file = entry->fts_path;
688 1.41 provos
689 1.41 provos for (cnt = 0; plan->e_argv[cnt]; ++cnt)
690 1.41 provos if (plan->e_len[cnt])
691 1.41 provos brace_subst(plan->e_orig[cnt], &plan->e_argv[cnt],
692 1.41 provos file, &plan->e_len[cnt]);
693 1.41 provos
694 1.41 provos /* don't mix output of command with find output */
695 1.41 provos fflush(stdout);
696 1.41 provos fflush(stderr);
697 1.41 provos
698 1.41 provos switch (pid = vfork()) {
699 1.41 provos case -1:
700 1.41 provos err(1, "fork");
701 1.41 provos /* NOTREACHED */
702 1.41 provos case 0:
703 1.41 provos execvp(plan->e_argv[0], plan->e_argv);
704 1.41 provos warn("%s", plan->e_argv[0]);
705 1.41 provos _exit(1);
706 1.41 provos }
707 1.41 provos pid = waitpid(pid, &status, 0);
708 1.41 provos return (pid != -1 && WIFEXITED(status) && !WEXITSTATUS(status));
709 1.41 provos }
710 1.57 apb
711 1.41 provos /*
712 1.41 provos * c_execdir --
713 1.41 provos * build three parallel arrays, one with pointers to the strings passed
714 1.41 provos * on the command line, one with (possibly duplicated) pointers to the
715 1.41 provos * argv array, and one with integer values that are lengths of the
716 1.41 provos * strings, but also flags meaning that the string has to be massaged.
717 1.41 provos */
718 1.41 provos PLAN *
719 1.57 apb c_execdir(char ***argvp, int isok)
720 1.41 provos {
721 1.41 provos PLAN *new; /* node returned */
722 1.41 provos int cnt;
723 1.41 provos char **argv, **ap, *p;
724 1.41 provos
725 1.41 provos ftsoptions &= ~FTS_NOSTAT;
726 1.41 provos isoutput = 1;
727 1.57 apb
728 1.41 provos new = palloc(N_EXECDIR, f_execdir);
729 1.41 provos
730 1.41 provos for (ap = argv = *argvp;; ++ap) {
731 1.41 provos if (!*ap)
732 1.41 provos errx(1,
733 1.41 provos "-execdir: no terminating \";\"");
734 1.41 provos if (**ap == ';')
735 1.41 provos break;
736 1.41 provos }
737 1.41 provos
738 1.41 provos cnt = ap - *argvp + 1;
739 1.41 provos new->e_argv = (char **)emalloc((u_int)cnt * sizeof(char *));
740 1.41 provos new->e_orig = (char **)emalloc((u_int)cnt * sizeof(char *));
741 1.41 provos new->e_len = (int *)emalloc((u_int)cnt * sizeof(int));
742 1.41 provos
743 1.41 provos for (argv = *argvp, cnt = 0; argv < ap; ++argv, ++cnt) {
744 1.41 provos new->e_orig[cnt] = *argv;
745 1.41 provos for (p = *argv; *p; ++p)
746 1.41 provos if (p[0] == '{' && p[1] == '}') {
747 1.41 provos new->e_argv[cnt] = emalloc((u_int)MAXPATHLEN);
748 1.41 provos new->e_len[cnt] = MAXPATHLEN;
749 1.41 provos break;
750 1.41 provos }
751 1.41 provos if (!*p) {
752 1.41 provos new->e_argv[cnt] = *argv;
753 1.41 provos new->e_len[cnt] = 0;
754 1.41 provos }
755 1.41 provos }
756 1.41 provos new->e_argv[cnt] = new->e_orig[cnt] = NULL;
757 1.41 provos
758 1.41 provos *argvp = argv + 1;
759 1.41 provos return (new);
760 1.41 provos }
761 1.52 reed
762 1.53 jschauma PLAN *
763 1.57 apb c_exit(char ***argvp, int isok)
764 1.53 jschauma {
765 1.53 jschauma char *arg = **argvp;
766 1.53 jschauma PLAN *new;
767 1.53 jschauma
768 1.53 jschauma /* not technically true, but otherwise '-print' is implied */
769 1.53 jschauma isoutput = 1;
770 1.53 jschauma
771 1.53 jschauma new = palloc(N_EXIT, f_always_true);
772 1.53 jschauma
773 1.53 jschauma if (arg) {
774 1.53 jschauma (*argvp)++;
775 1.53 jschauma new->exit_val = find_parsenum(new, "-exit", arg, NULL);
776 1.53 jschauma } else
777 1.53 jschauma new->exit_val = 0;
778 1.53 jschauma
779 1.53 jschauma return (new);
780 1.53 jschauma }
781 1.53 jschauma
782 1.53 jschauma
783 1.52 reed /*
784 1.52 reed * -false function
785 1.52 reed */
786 1.52 reed int
787 1.57 apb f_false(PLAN *plan, FTSENT *entry)
788 1.52 reed {
789 1.52 reed
790 1.52 reed return (0);
791 1.52 reed }
792 1.57 apb
793 1.52 reed PLAN *
794 1.57 apb c_false(char ***argvp, int isok)
795 1.52 reed {
796 1.52 reed return (palloc(N_FALSE, f_false));
797 1.52 reed }
798 1.52 reed
799 1.57 apb
800 1.27 lukem /*
801 1.27 lukem * -flags [-]flags functions --
802 1.27 lukem */
803 1.27 lukem int
804 1.57 apb f_flags(PLAN *plan, FTSENT *entry)
805 1.27 lukem {
806 1.27 lukem u_int32_t flags;
807 1.27 lukem
808 1.27 lukem flags = entry->fts_statp->st_flags;
809 1.27 lukem if (plan->flags == F_ATLEAST)
810 1.27 lukem return ((plan->f_data | flags) == flags);
811 1.27 lukem else
812 1.27 lukem return (flags == plan->f_data);
813 1.27 lukem /* NOTREACHED */
814 1.27 lukem }
815 1.57 apb
816 1.27 lukem PLAN *
817 1.57 apb c_flags(char ***argvp, int isok)
818 1.27 lukem {
819 1.27 lukem char *flags = **argvp;
820 1.27 lukem PLAN *new;
821 1.27 lukem u_long flagset;
822 1.27 lukem
823 1.27 lukem (*argvp)++;
824 1.27 lukem ftsoptions &= ~FTS_NOSTAT;
825 1.27 lukem
826 1.27 lukem new = palloc(N_FLAGS, f_flags);
827 1.27 lukem
828 1.27 lukem if (*flags == '-') {
829 1.27 lukem new->flags = F_ATLEAST;
830 1.27 lukem ++flags;
831 1.27 lukem }
832 1.27 lukem
833 1.27 lukem flagset = 0;
834 1.27 lukem if ((strcmp(flags, "none") != 0) &&
835 1.27 lukem (string_to_flags(&flags, &flagset, NULL) != 0))
836 1.27 lukem errx(1, "-flags: %s: illegal flags string", flags);
837 1.27 lukem new->f_data = flagset;
838 1.27 lukem return (new);
839 1.27 lukem }
840 1.57 apb
841 1.1 cgd /*
842 1.1 cgd * -follow functions --
843 1.1 cgd *
844 1.1 cgd * Always true, causes symbolic links to be followed on a global
845 1.1 cgd * basis.
846 1.1 cgd */
847 1.1 cgd PLAN *
848 1.57 apb c_follow(char ***argvp, int isok)
849 1.1 cgd {
850 1.1 cgd ftsoptions &= ~FTS_PHYSICAL;
851 1.1 cgd ftsoptions |= FTS_LOGICAL;
852 1.1 cgd
853 1.10 jtc return (palloc(N_FOLLOW, f_always_true));
854 1.1 cgd }
855 1.57 apb
856 1.51 reed /* -fprint functions --
857 1.51 reed *
858 1.51 reed * Causes the current pathame to be written to the defined output file.
859 1.51 reed */
860 1.51 reed int
861 1.57 apb f_fprint(PLAN *plan, FTSENT *entry)
862 1.51 reed {
863 1.51 reed
864 1.51 reed if (-1 == fprintf(plan->fprint_file, "%s\n", entry->fts_path))
865 1.51 reed warn("fprintf");
866 1.51 reed
867 1.51 reed return(1);
868 1.51 reed
869 1.51 reed /* no descriptors are closed; they will be closed by
870 1.51 reed operating system when this find command exits. */
871 1.51 reed }
872 1.57 apb
873 1.51 reed PLAN *
874 1.57 apb c_fprint(char ***argvp, int isok)
875 1.51 reed {
876 1.51 reed PLAN *new;
877 1.51 reed
878 1.51 reed isoutput = 1; /* do not assume -print */
879 1.51 reed
880 1.51 reed new = palloc(N_FPRINT, f_fprint);
881 1.51 reed
882 1.51 reed if (NULL == (new->fprint_file = fopen(**argvp, "w")))
883 1.51 reed err(1, "-fprint: %s: cannot create file", **argvp);
884 1.51 reed
885 1.51 reed (*argvp)++;
886 1.51 reed return (new);
887 1.51 reed }
888 1.51 reed
889 1.1 cgd /*
890 1.1 cgd * -fstype functions --
891 1.1 cgd *
892 1.1 cgd * True if the file is of a certain type.
893 1.1 cgd */
894 1.10 jtc int
895 1.57 apb f_fstype(PLAN *plan, FTSENT *entry)
896 1.1 cgd {
897 1.1 cgd static dev_t curdev; /* need a guaranteed illegal dev value */
898 1.1 cgd static int first = 1;
899 1.48 christos struct statvfs sb;
900 1.10 jtc static short val;
901 1.16 cgd static char fstype[MFSNAMELEN];
902 1.1 cgd char *p, save[2];
903 1.1 cgd
904 1.54 mrg memset(&save, 0, sizeof save); /* XXX gcc */
905 1.54 mrg
906 1.10 jtc /* Only check when we cross mount point. */
907 1.7 deraadt if (first || curdev != entry->fts_statp->st_dev) {
908 1.7 deraadt curdev = entry->fts_statp->st_dev;
909 1.1 cgd
910 1.1 cgd /*
911 1.1 cgd * Statfs follows symlinks; find wants the link's file system,
912 1.1 cgd * not where it points.
913 1.1 cgd */
914 1.1 cgd if (entry->fts_info == FTS_SL ||
915 1.1 cgd entry->fts_info == FTS_SLNONE) {
916 1.21 lukem if ((p = strrchr(entry->fts_accpath, '/')) != NULL)
917 1.1 cgd ++p;
918 1.1 cgd else
919 1.1 cgd p = entry->fts_accpath;
920 1.1 cgd save[0] = p[0];
921 1.1 cgd p[0] = '.';
922 1.1 cgd save[1] = p[1];
923 1.1 cgd p[1] = '\0';
924 1.57 apb
925 1.57 apb } else
926 1.1 cgd p = NULL;
927 1.1 cgd
928 1.48 christos if (statvfs(entry->fts_accpath, &sb))
929 1.10 jtc err(1, "%s", entry->fts_accpath);
930 1.1 cgd
931 1.1 cgd if (p) {
932 1.1 cgd p[0] = save[0];
933 1.1 cgd p[1] = save[1];
934 1.1 cgd }
935 1.1 cgd
936 1.1 cgd first = 0;
937 1.15 mycroft
938 1.15 mycroft /*
939 1.15 mycroft * Further tests may need both of these values, so
940 1.15 mycroft * always copy both of them.
941 1.15 mycroft */
942 1.48 christos val = sb.f_flag;
943 1.44 itojun strlcpy(fstype, sb.f_fstypename, sizeof(fstype));
944 1.10 jtc }
945 1.14 mycroft switch (plan->flags) {
946 1.10 jtc case F_MTFLAG:
947 1.57 apb return (val & plan->mt_data);
948 1.10 jtc case F_MTTYPE:
949 1.13 cgd return (strncmp(fstype, plan->c_data, MFSNAMELEN) == 0);
950 1.10 jtc default:
951 1.10 jtc abort();
952 1.1 cgd }
953 1.1 cgd }
954 1.57 apb
955 1.1 cgd PLAN *
956 1.57 apb c_fstype(char ***argvp, int isok)
957 1.1 cgd {
958 1.24 christos char *arg = **argvp;
959 1.21 lukem PLAN *new;
960 1.57 apb
961 1.24 christos (*argvp)++;
962 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
963 1.57 apb
964 1.1 cgd new = palloc(N_FSTYPE, f_fstype);
965 1.22 mrg
966 1.10 jtc switch (*arg) {
967 1.1 cgd case 'l':
968 1.1 cgd if (!strcmp(arg, "local")) {
969 1.10 jtc new->flags = F_MTFLAG;
970 1.10 jtc new->mt_data = MNT_LOCAL;
971 1.10 jtc return (new);
972 1.1 cgd }
973 1.1 cgd break;
974 1.2 cgd case 'r':
975 1.2 cgd if (!strcmp(arg, "rdonly")) {
976 1.10 jtc new->flags = F_MTFLAG;
977 1.10 jtc new->mt_data = MNT_RDONLY;
978 1.10 jtc return (new);
979 1.1 cgd }
980 1.1 cgd break;
981 1.1 cgd }
982 1.13 cgd
983 1.13 cgd new->flags = F_MTTYPE;
984 1.13 cgd new->c_data = arg;
985 1.13 cgd return (new);
986 1.1 cgd }
987 1.57 apb
988 1.1 cgd /*
989 1.1 cgd * -group gname functions --
990 1.1 cgd *
991 1.1 cgd * True if the file belongs to the group gname. If gname is numeric and
992 1.1 cgd * an equivalent of the getgrnam() function does not return a valid group
993 1.1 cgd * name, gname is taken as a group ID.
994 1.1 cgd */
995 1.10 jtc int
996 1.57 apb f_group(PLAN *plan, FTSENT *entry)
997 1.1 cgd {
998 1.33 enami
999 1.10 jtc return (entry->fts_statp->st_gid == plan->g_data);
1000 1.1 cgd }
1001 1.57 apb
1002 1.1 cgd PLAN *
1003 1.57 apb c_group(char ***argvp, int isok)
1004 1.1 cgd {
1005 1.24 christos char *gname = **argvp;
1006 1.1 cgd PLAN *new;
1007 1.1 cgd struct group *g;
1008 1.1 cgd gid_t gid;
1009 1.57 apb
1010 1.24 christos (*argvp)++;
1011 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1012 1.1 cgd
1013 1.1 cgd g = getgrnam(gname);
1014 1.1 cgd if (g == NULL) {
1015 1.1 cgd gid = atoi(gname);
1016 1.1 cgd if (gid == 0 && gname[0] != '0')
1017 1.10 jtc errx(1, "-group: %s: no such group", gname);
1018 1.1 cgd } else
1019 1.1 cgd gid = g->gr_gid;
1020 1.57 apb
1021 1.1 cgd new = palloc(N_GROUP, f_group);
1022 1.1 cgd new->g_data = gid;
1023 1.10 jtc return (new);
1024 1.1 cgd }
1025 1.1 cgd
1026 1.1 cgd /*
1027 1.1 cgd * -inum n functions --
1028 1.1 cgd *
1029 1.1 cgd * True if the file has inode # n.
1030 1.1 cgd */
1031 1.10 jtc int
1032 1.57 apb f_inum(PLAN *plan, FTSENT *entry)
1033 1.1 cgd {
1034 1.33 enami
1035 1.7 deraadt COMPARE(entry->fts_statp->st_ino, plan->i_data);
1036 1.1 cgd }
1037 1.57 apb
1038 1.1 cgd PLAN *
1039 1.57 apb c_inum(char ***argvp, int isok)
1040 1.1 cgd {
1041 1.24 christos char *arg = **argvp;
1042 1.1 cgd PLAN *new;
1043 1.57 apb
1044 1.24 christos (*argvp)++;
1045 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1046 1.57 apb
1047 1.1 cgd new = palloc(N_INUM, f_inum);
1048 1.10 jtc new->i_data = find_parsenum(new, "-inum", arg, NULL);
1049 1.10 jtc return (new);
1050 1.1 cgd }
1051 1.57 apb
1052 1.1 cgd /*
1053 1.1 cgd * -links n functions --
1054 1.1 cgd *
1055 1.1 cgd * True if the file has n links.
1056 1.1 cgd */
1057 1.10 jtc int
1058 1.57 apb f_links(PLAN *plan, FTSENT *entry)
1059 1.1 cgd {
1060 1.33 enami
1061 1.7 deraadt COMPARE(entry->fts_statp->st_nlink, plan->l_data);
1062 1.1 cgd }
1063 1.57 apb
1064 1.1 cgd PLAN *
1065 1.57 apb c_links(char ***argvp, int isok)
1066 1.1 cgd {
1067 1.24 christos char *arg = **argvp;
1068 1.1 cgd PLAN *new;
1069 1.57 apb
1070 1.24 christos (*argvp)++;
1071 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1072 1.57 apb
1073 1.1 cgd new = palloc(N_LINKS, f_links);
1074 1.10 jtc new->l_data = (nlink_t)find_parsenum(new, "-links", arg, NULL);
1075 1.10 jtc return (new);
1076 1.1 cgd }
1077 1.57 apb
1078 1.1 cgd /*
1079 1.1 cgd * -ls functions --
1080 1.1 cgd *
1081 1.1 cgd * Always true - prints the current entry to stdout in "ls" format.
1082 1.1 cgd */
1083 1.10 jtc int
1084 1.57 apb f_ls(PLAN *plan, FTSENT *entry)
1085 1.1 cgd {
1086 1.33 enami
1087 1.7 deraadt printlong(entry->fts_path, entry->fts_accpath, entry->fts_statp);
1088 1.10 jtc return (1);
1089 1.1 cgd }
1090 1.57 apb
1091 1.1 cgd PLAN *
1092 1.57 apb c_ls(char ***argvp, int isok)
1093 1.1 cgd {
1094 1.33 enami
1095 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1096 1.1 cgd isoutput = 1;
1097 1.57 apb
1098 1.10 jtc return (palloc(N_LS, f_ls));
1099 1.10 jtc }
1100 1.10 jtc
1101 1.41 provos /*
1102 1.41 provos * - maxdepth n functions --
1103 1.41 provos *
1104 1.41 provos * True if the current search depth is less than or equal to the
1105 1.41 provos * maximum depth specified
1106 1.41 provos */
1107 1.41 provos int
1108 1.57 apb f_maxdepth(PLAN *plan, FTSENT *entry)
1109 1.41 provos {
1110 1.41 provos extern FTS *tree;
1111 1.41 provos
1112 1.41 provos if (entry->fts_level >= plan->max_data)
1113 1.41 provos fts_set(tree, entry, FTS_SKIP);
1114 1.41 provos return (entry->fts_level <= plan->max_data);
1115 1.41 provos }
1116 1.41 provos
1117 1.41 provos PLAN *
1118 1.57 apb c_maxdepth(char ***argvp, int isok)
1119 1.41 provos {
1120 1.41 provos char *arg = **argvp;
1121 1.41 provos PLAN *new;
1122 1.41 provos
1123 1.41 provos (*argvp)++;
1124 1.41 provos new = palloc(N_MAXDEPTH, f_maxdepth);
1125 1.41 provos new->max_data = atoi(arg);
1126 1.41 provos return (new);
1127 1.41 provos }
1128 1.41 provos
1129 1.41 provos /*
1130 1.41 provos * - mindepth n functions --
1131 1.41 provos *
1132 1.41 provos * True if the current search depth is greater than or equal to the
1133 1.41 provos * minimum depth specified
1134 1.41 provos */
1135 1.41 provos int
1136 1.57 apb f_mindepth(PLAN *plan, FTSENT *entry)
1137 1.41 provos {
1138 1.41 provos return (entry->fts_level >= plan->min_data);
1139 1.41 provos }
1140 1.41 provos
1141 1.41 provos PLAN *
1142 1.57 apb c_mindepth(char ***argvp, int isok)
1143 1.41 provos {
1144 1.41 provos char *arg = **argvp;
1145 1.41 provos PLAN *new;
1146 1.41 provos
1147 1.41 provos (*argvp)++;
1148 1.41 provos new = palloc(N_MINDEPTH, f_mindepth);
1149 1.41 provos new->min_data = atoi(arg);
1150 1.41 provos return (new);
1151 1.41 provos }
1152 1.29 simonb /*
1153 1.29 simonb * -mmin n functions --
1154 1.29 simonb *
1155 1.29 simonb * True if the difference between the file modification time and the
1156 1.29 simonb * current time is n 24 hour periods.
1157 1.29 simonb */
1158 1.29 simonb int
1159 1.57 apb f_mmin(PLAN *plan, FTSENT *entry)
1160 1.29 simonb {
1161 1.29 simonb COMPARE((now - entry->fts_statp->st_mtime + SECSPERMIN - 1) /
1162 1.29 simonb SECSPERMIN, plan->t_data);
1163 1.29 simonb }
1164 1.57 apb
1165 1.29 simonb PLAN *
1166 1.57 apb c_mmin(char ***argvp, int isok)
1167 1.29 simonb {
1168 1.29 simonb char *arg = **argvp;
1169 1.29 simonb PLAN *new;
1170 1.29 simonb
1171 1.29 simonb (*argvp)++;
1172 1.29 simonb ftsoptions &= ~FTS_NOSTAT;
1173 1.29 simonb
1174 1.29 simonb new = palloc(N_MMIN, f_mmin);
1175 1.29 simonb new->t_data = find_parsenum(new, "-mmin", arg, NULL);
1176 1.29 simonb TIME_CORRECT(new, N_MMIN);
1177 1.29 simonb return (new);
1178 1.29 simonb }
1179 1.10 jtc /*
1180 1.10 jtc * -mtime n functions --
1181 1.10 jtc *
1182 1.10 jtc * True if the difference between the file modification time and the
1183 1.10 jtc * current time is n 24 hour periods.
1184 1.10 jtc */
1185 1.10 jtc int
1186 1.57 apb f_mtime(PLAN *plan, FTSENT *entry)
1187 1.10 jtc {
1188 1.10 jtc COMPARE((now - entry->fts_statp->st_mtime + SECSPERDAY - 1) /
1189 1.10 jtc SECSPERDAY, plan->t_data);
1190 1.10 jtc }
1191 1.57 apb
1192 1.10 jtc PLAN *
1193 1.57 apb c_mtime(char ***argvp, int isok)
1194 1.10 jtc {
1195 1.24 christos char *arg = **argvp;
1196 1.10 jtc PLAN *new;
1197 1.10 jtc
1198 1.24 christos (*argvp)++;
1199 1.10 jtc ftsoptions &= ~FTS_NOSTAT;
1200 1.10 jtc
1201 1.10 jtc new = palloc(N_MTIME, f_mtime);
1202 1.10 jtc new->t_data = find_parsenum(new, "-mtime", arg, NULL);
1203 1.10 jtc TIME_CORRECT(new, N_MTIME);
1204 1.10 jtc return (new);
1205 1.1 cgd }
1206 1.1 cgd
1207 1.1 cgd /*
1208 1.1 cgd * -name functions --
1209 1.1 cgd *
1210 1.1 cgd * True if the basename of the filename being examined
1211 1.1 cgd * matches pattern using Pattern Matching Notation S3.14
1212 1.1 cgd */
1213 1.10 jtc int
1214 1.57 apb f_name(PLAN *plan, FTSENT *entry)
1215 1.1 cgd {
1216 1.33 enami
1217 1.10 jtc return (!fnmatch(plan->c_data, entry->fts_name, 0));
1218 1.1 cgd }
1219 1.57 apb
1220 1.1 cgd PLAN *
1221 1.57 apb c_name(char ***argvp, int isok)
1222 1.1 cgd {
1223 1.24 christos char *pattern = **argvp;
1224 1.1 cgd PLAN *new;
1225 1.1 cgd
1226 1.24 christos (*argvp)++;
1227 1.1 cgd new = palloc(N_NAME, f_name);
1228 1.45 provos new->c_data = pattern;
1229 1.45 provos return (new);
1230 1.45 provos }
1231 1.57 apb
1232 1.45 provos /*
1233 1.45 provos * -iname functions --
1234 1.45 provos *
1235 1.45 provos * Similar to -name, but does case insensitive matching
1236 1.57 apb *
1237 1.45 provos */
1238 1.45 provos int
1239 1.57 apb f_iname(PLAN *plan, FTSENT *entry)
1240 1.45 provos {
1241 1.45 provos return (!fnmatch(plan->c_data, entry->fts_name, FNM_CASEFOLD));
1242 1.45 provos }
1243 1.57 apb
1244 1.45 provos PLAN *
1245 1.57 apb c_iname(char ***argvp, int isok)
1246 1.45 provos {
1247 1.45 provos char *pattern = **argvp;
1248 1.45 provos PLAN *new;
1249 1.45 provos
1250 1.45 provos (*argvp)++;
1251 1.45 provos new = palloc(N_INAME, f_iname);
1252 1.1 cgd new->c_data = pattern;
1253 1.10 jtc return (new);
1254 1.1 cgd }
1255 1.57 apb
1256 1.1 cgd /*
1257 1.1 cgd * -newer file functions --
1258 1.1 cgd *
1259 1.1 cgd * True if the current file has been modified more recently
1260 1.40 kleink * than the modification time of the file named by the pathname
1261 1.1 cgd * file.
1262 1.1 cgd */
1263 1.10 jtc int
1264 1.57 apb f_newer(PLAN *plan, FTSENT *entry)
1265 1.1 cgd {
1266 1.33 enami
1267 1.10 jtc return (entry->fts_statp->st_mtime > plan->t_data);
1268 1.1 cgd }
1269 1.57 apb
1270 1.1 cgd PLAN *
1271 1.57 apb c_newer(char ***argvp, int isok)
1272 1.1 cgd {
1273 1.24 christos char *filename = **argvp;
1274 1.1 cgd PLAN *new;
1275 1.1 cgd struct stat sb;
1276 1.57 apb
1277 1.24 christos (*argvp)++;
1278 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1279 1.1 cgd
1280 1.1 cgd if (stat(filename, &sb))
1281 1.10 jtc err(1, "%s", filename);
1282 1.1 cgd new = palloc(N_NEWER, f_newer);
1283 1.1 cgd new->t_data = sb.st_mtime;
1284 1.10 jtc return (new);
1285 1.1 cgd }
1286 1.57 apb
1287 1.1 cgd /*
1288 1.1 cgd * -nogroup functions --
1289 1.1 cgd *
1290 1.1 cgd * True if file belongs to a user ID for which the equivalent
1291 1.1 cgd * of the getgrnam() 9.2.1 [POSIX.1] function returns NULL.
1292 1.1 cgd */
1293 1.10 jtc int
1294 1.57 apb f_nogroup(PLAN *plan, FTSENT *entry)
1295 1.1 cgd {
1296 1.22 mrg
1297 1.12 andrew return (group_from_gid(entry->fts_statp->st_gid, 1) ? 0 : 1);
1298 1.1 cgd }
1299 1.57 apb
1300 1.1 cgd PLAN *
1301 1.57 apb c_nogroup(char ***argvp, int isok)
1302 1.1 cgd {
1303 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1304 1.1 cgd
1305 1.10 jtc return (palloc(N_NOGROUP, f_nogroup));
1306 1.1 cgd }
1307 1.57 apb
1308 1.1 cgd /*
1309 1.1 cgd * -nouser functions --
1310 1.1 cgd *
1311 1.1 cgd * True if file belongs to a user ID for which the equivalent
1312 1.1 cgd * of the getpwuid() 9.2.2 [POSIX.1] function returns NULL.
1313 1.1 cgd */
1314 1.10 jtc int
1315 1.57 apb f_nouser(PLAN *plan, FTSENT *entry)
1316 1.1 cgd {
1317 1.22 mrg
1318 1.12 andrew return (user_from_uid(entry->fts_statp->st_uid, 1) ? 0 : 1);
1319 1.1 cgd }
1320 1.57 apb
1321 1.1 cgd PLAN *
1322 1.57 apb c_nouser(char ***argvp, int isok)
1323 1.1 cgd {
1324 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1325 1.1 cgd
1326 1.10 jtc return (palloc(N_NOUSER, f_nouser));
1327 1.10 jtc }
1328 1.57 apb
1329 1.10 jtc /*
1330 1.10 jtc * -path functions --
1331 1.10 jtc *
1332 1.10 jtc * True if the path of the filename being examined
1333 1.10 jtc * matches pattern using Pattern Matching Notation S3.14
1334 1.10 jtc */
1335 1.10 jtc int
1336 1.57 apb f_path(PLAN *plan, FTSENT *entry)
1337 1.10 jtc {
1338 1.33 enami
1339 1.10 jtc return (!fnmatch(plan->c_data, entry->fts_path, 0));
1340 1.10 jtc }
1341 1.57 apb
1342 1.10 jtc PLAN *
1343 1.57 apb c_path(char ***argvp, int isok)
1344 1.10 jtc {
1345 1.24 christos char *pattern = **argvp;
1346 1.10 jtc PLAN *new;
1347 1.10 jtc
1348 1.24 christos (*argvp)++;
1349 1.10 jtc new = palloc(N_NAME, f_path);
1350 1.10 jtc new->c_data = pattern;
1351 1.10 jtc return (new);
1352 1.1 cgd }
1353 1.57 apb
1354 1.1 cgd /*
1355 1.1 cgd * -perm functions --
1356 1.1 cgd *
1357 1.1 cgd * The mode argument is used to represent file mode bits. If it starts
1358 1.1 cgd * with a leading digit, it's treated as an octal mode, otherwise as a
1359 1.1 cgd * symbolic mode.
1360 1.1 cgd */
1361 1.10 jtc int
1362 1.57 apb f_perm(PLAN *plan, FTSENT *entry)
1363 1.1 cgd {
1364 1.1 cgd mode_t mode;
1365 1.1 cgd
1366 1.7 deraadt mode = entry->fts_statp->st_mode &
1367 1.1 cgd (S_ISUID|S_ISGID|S_ISTXT|S_IRWXU|S_IRWXG|S_IRWXO);
1368 1.10 jtc if (plan->flags == F_ATLEAST)
1369 1.10 jtc return ((plan->m_data | mode) == mode);
1370 1.1 cgd else
1371 1.10 jtc return (mode == plan->m_data);
1372 1.1 cgd /* NOTREACHED */
1373 1.1 cgd }
1374 1.57 apb
1375 1.1 cgd PLAN *
1376 1.57 apb c_perm(char ***argvp, int isok)
1377 1.1 cgd {
1378 1.24 christos char *perm = **argvp;
1379 1.1 cgd PLAN *new;
1380 1.1 cgd mode_t *set;
1381 1.1 cgd
1382 1.24 christos (*argvp)++;
1383 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1384 1.1 cgd
1385 1.1 cgd new = palloc(N_PERM, f_perm);
1386 1.1 cgd
1387 1.1 cgd if (*perm == '-') {
1388 1.10 jtc new->flags = F_ATLEAST;
1389 1.1 cgd ++perm;
1390 1.1 cgd }
1391 1.1 cgd
1392 1.1 cgd if ((set = setmode(perm)) == NULL)
1393 1.50 christos err(1, "-perm: Cannot set file mode `%s'", perm);
1394 1.1 cgd
1395 1.1 cgd new->m_data = getmode(set, 0);
1396 1.34 enami free(set);
1397 1.10 jtc return (new);
1398 1.1 cgd }
1399 1.57 apb
1400 1.1 cgd /*
1401 1.1 cgd * -print functions --
1402 1.1 cgd *
1403 1.1 cgd * Always true, causes the current pathame to be written to
1404 1.1 cgd * standard output.
1405 1.1 cgd */
1406 1.10 jtc int
1407 1.57 apb f_print(PLAN *plan, FTSENT *entry)
1408 1.1 cgd {
1409 1.33 enami
1410 1.1 cgd (void)printf("%s\n", entry->fts_path);
1411 1.22 mrg return (1);
1412 1.1 cgd }
1413 1.9 jtc
1414 1.21 lukem int
1415 1.57 apb f_print0(PLAN *plan, FTSENT *entry)
1416 1.9 jtc {
1417 1.33 enami
1418 1.9 jtc (void)fputs(entry->fts_path, stdout);
1419 1.9 jtc (void)fputc('\0', stdout);
1420 1.22 mrg return (1);
1421 1.9 jtc }
1422 1.28 lukem
1423 1.28 lukem int
1424 1.57 apb f_printx(PLAN *plan, FTSENT *entry)
1425 1.28 lukem {
1426 1.28 lukem char *cp;
1427 1.28 lukem
1428 1.28 lukem for (cp = entry->fts_path; *cp; cp++) {
1429 1.28 lukem if (*cp == '\'' || *cp == '\"' || *cp == ' ' ||
1430 1.42 matt *cp == '$' || *cp == '`' ||
1431 1.28 lukem *cp == '\t' || *cp == '\n' || *cp == '\\')
1432 1.28 lukem fputc('\\', stdout);
1433 1.28 lukem
1434 1.28 lukem fputc(*cp, stdout);
1435 1.28 lukem }
1436 1.28 lukem
1437 1.28 lukem fputc('\n', stdout);
1438 1.33 enami return (1);
1439 1.28 lukem }
1440 1.57 apb
1441 1.1 cgd PLAN *
1442 1.57 apb c_print(char ***argvp, int isok)
1443 1.1 cgd {
1444 1.33 enami
1445 1.1 cgd isoutput = 1;
1446 1.1 cgd
1447 1.22 mrg return (palloc(N_PRINT, f_print));
1448 1.9 jtc }
1449 1.9 jtc
1450 1.9 jtc PLAN *
1451 1.57 apb c_print0(char ***argvp, int isok)
1452 1.9 jtc {
1453 1.33 enami
1454 1.9 jtc isoutput = 1;
1455 1.9 jtc
1456 1.22 mrg return (palloc(N_PRINT0, f_print0));
1457 1.28 lukem }
1458 1.28 lukem
1459 1.28 lukem PLAN *
1460 1.57 apb c_printx(char ***argvp, int isok)
1461 1.28 lukem {
1462 1.33 enami
1463 1.28 lukem isoutput = 1;
1464 1.28 lukem
1465 1.33 enami return (palloc(N_PRINTX, f_printx));
1466 1.1 cgd }
1467 1.57 apb
1468 1.1 cgd /*
1469 1.1 cgd * -prune functions --
1470 1.1 cgd *
1471 1.1 cgd * Prune a portion of the hierarchy.
1472 1.1 cgd */
1473 1.10 jtc int
1474 1.57 apb f_prune(PLAN *plan, FTSENT *entry)
1475 1.1 cgd {
1476 1.1 cgd if (fts_set(tree, entry, FTS_SKIP))
1477 1.10 jtc err(1, "%s", entry->fts_path);
1478 1.10 jtc return (1);
1479 1.1 cgd }
1480 1.57 apb
1481 1.1 cgd PLAN *
1482 1.57 apb c_prune(char ***argvp, int isok)
1483 1.1 cgd {
1484 1.33 enami
1485 1.10 jtc return (palloc(N_PRUNE, f_prune));
1486 1.1 cgd }
1487 1.31 cgd
1488 1.31 cgd /*
1489 1.31 cgd * -regex regexp (and related) functions --
1490 1.31 cgd *
1491 1.31 cgd * True if the complete file path matches the regular expression regexp.
1492 1.31 cgd * For -regex, regexp is a case-sensitive (basic) regular expression.
1493 1.31 cgd * For -iregex, regexp is a case-insensitive (basic) regular expression.
1494 1.31 cgd */
1495 1.31 cgd int
1496 1.57 apb f_regex(PLAN *plan, FTSENT *entry)
1497 1.31 cgd {
1498 1.31 cgd
1499 1.31 cgd return (regexec(&plan->regexp_data, entry->fts_path, 0, NULL, 0) == 0);
1500 1.31 cgd }
1501 1.57 apb
1502 1.31 cgd static PLAN *
1503 1.57 apb c_regex_common(char ***argvp, int isok, enum ntype type, int regcomp_flags)
1504 1.31 cgd {
1505 1.31 cgd char errbuf[LINE_MAX];
1506 1.31 cgd regex_t reg;
1507 1.31 cgd char *regexp = **argvp;
1508 1.31 cgd char *lineregexp;
1509 1.31 cgd PLAN *new;
1510 1.31 cgd int rv;
1511 1.59 christos size_t len;
1512 1.31 cgd
1513 1.31 cgd (*argvp)++;
1514 1.31 cgd
1515 1.59 christos len = strlen(regexp) + 1 + 6;
1516 1.59 christos lineregexp = malloc(len); /* max needed */
1517 1.59 christos if (lineregexp == NULL)
1518 1.59 christos err(1, NULL);
1519 1.59 christos snprintf(lineregexp, len, "^%s(%s%s)$",
1520 1.31 cgd (regcomp_flags & REG_EXTENDED) ? "" : "\\", regexp,
1521 1.31 cgd (regcomp_flags & REG_EXTENDED) ? "" : "\\");
1522 1.31 cgd rv = regcomp(®, lineregexp, REG_NOSUB|regcomp_flags);
1523 1.59 christos free(lineregexp);
1524 1.31 cgd if (rv != 0) {
1525 1.31 cgd regerror(rv, ®, errbuf, sizeof errbuf);
1526 1.31 cgd errx(1, "regexp %s: %s", regexp, errbuf);
1527 1.31 cgd }
1528 1.57 apb
1529 1.31 cgd new = palloc(type, f_regex);
1530 1.31 cgd new->regexp_data = reg;
1531 1.31 cgd return (new);
1532 1.31 cgd }
1533 1.31 cgd
1534 1.31 cgd PLAN *
1535 1.57 apb c_regex(char ***argvp, int isok)
1536 1.31 cgd {
1537 1.31 cgd
1538 1.31 cgd return (c_regex_common(argvp, isok, N_REGEX, REG_BASIC));
1539 1.31 cgd }
1540 1.31 cgd
1541 1.31 cgd PLAN *
1542 1.57 apb c_iregex(char ***argvp, int isok)
1543 1.31 cgd {
1544 1.31 cgd
1545 1.31 cgd return (c_regex_common(argvp, isok, N_IREGEX, REG_BASIC|REG_ICASE));
1546 1.31 cgd }
1547 1.31 cgd
1548 1.1 cgd /*
1549 1.1 cgd * -size n[c] functions --
1550 1.1 cgd *
1551 1.1 cgd * True if the file size in bytes, divided by an implementation defined
1552 1.1 cgd * value and rounded up to the next integer, is n. If n is followed by
1553 1.1 cgd * a c, the size is in bytes.
1554 1.1 cgd */
1555 1.1 cgd #define FIND_SIZE 512
1556 1.1 cgd static int divsize = 1;
1557 1.1 cgd
1558 1.10 jtc int
1559 1.57 apb f_size(PLAN *plan, FTSENT *entry)
1560 1.1 cgd {
1561 1.1 cgd off_t size;
1562 1.1 cgd
1563 1.7 deraadt size = divsize ? (entry->fts_statp->st_size + FIND_SIZE - 1) /
1564 1.7 deraadt FIND_SIZE : entry->fts_statp->st_size;
1565 1.1 cgd COMPARE(size, plan->o_data);
1566 1.1 cgd }
1567 1.57 apb
1568 1.1 cgd PLAN *
1569 1.57 apb c_size(char ***argvp, int isok)
1570 1.1 cgd {
1571 1.24 christos char *arg = **argvp;
1572 1.1 cgd PLAN *new;
1573 1.1 cgd char endch;
1574 1.57 apb
1575 1.24 christos (*argvp)++;
1576 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1577 1.1 cgd
1578 1.1 cgd new = palloc(N_SIZE, f_size);
1579 1.8 cgd endch = 'c';
1580 1.1 cgd new->o_data = find_parsenum(new, "-size", arg, &endch);
1581 1.1 cgd if (endch == 'c')
1582 1.1 cgd divsize = 0;
1583 1.10 jtc return (new);
1584 1.1 cgd }
1585 1.57 apb
1586 1.1 cgd /*
1587 1.1 cgd * -type c functions --
1588 1.1 cgd *
1589 1.22 mrg * True if the type of the file is c, where c is b, c, d, p, f or w
1590 1.22 mrg * for block special file, character special file, directory, FIFO,
1591 1.22 mrg * regular file or whiteout respectively.
1592 1.1 cgd */
1593 1.10 jtc int
1594 1.57 apb f_type(PLAN *plan, FTSENT *entry)
1595 1.1 cgd {
1596 1.33 enami
1597 1.10 jtc return ((entry->fts_statp->st_mode & S_IFMT) == plan->m_data);
1598 1.1 cgd }
1599 1.57 apb
1600 1.1 cgd PLAN *
1601 1.57 apb c_type(char ***argvp, int isok)
1602 1.1 cgd {
1603 1.24 christos char *typestring = **argvp;
1604 1.1 cgd PLAN *new;
1605 1.25 wsanchez mode_t mask = (mode_t)0;
1606 1.57 apb
1607 1.24 christos (*argvp)++;
1608 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1609 1.1 cgd
1610 1.1 cgd switch (typestring[0]) {
1611 1.1 cgd case 'b':
1612 1.1 cgd mask = S_IFBLK;
1613 1.1 cgd break;
1614 1.1 cgd case 'c':
1615 1.1 cgd mask = S_IFCHR;
1616 1.1 cgd break;
1617 1.1 cgd case 'd':
1618 1.1 cgd mask = S_IFDIR;
1619 1.1 cgd break;
1620 1.1 cgd case 'f':
1621 1.1 cgd mask = S_IFREG;
1622 1.1 cgd break;
1623 1.1 cgd case 'l':
1624 1.1 cgd mask = S_IFLNK;
1625 1.1 cgd break;
1626 1.1 cgd case 'p':
1627 1.1 cgd mask = S_IFIFO;
1628 1.1 cgd break;
1629 1.1 cgd case 's':
1630 1.1 cgd mask = S_IFSOCK;
1631 1.1 cgd break;
1632 1.49 atatat #ifdef S_IFWHT
1633 1.49 atatat case 'W':
1634 1.22 mrg case 'w':
1635 1.22 mrg mask = S_IFWHT;
1636 1.49 atatat #ifdef FTS_WHITEOUT
1637 1.22 mrg ftsoptions |= FTS_WHITEOUT;
1638 1.49 atatat #endif
1639 1.22 mrg break;
1640 1.49 atatat #endif /* S_IFWHT */
1641 1.1 cgd default:
1642 1.10 jtc errx(1, "-type: %s: unknown type", typestring);
1643 1.1 cgd }
1644 1.57 apb
1645 1.1 cgd new = palloc(N_TYPE, f_type);
1646 1.1 cgd new->m_data = mask;
1647 1.10 jtc return (new);
1648 1.1 cgd }
1649 1.57 apb
1650 1.1 cgd /*
1651 1.1 cgd * -user uname functions --
1652 1.1 cgd *
1653 1.1 cgd * True if the file belongs to the user uname. If uname is numeric and
1654 1.1 cgd * an equivalent of the getpwnam() S9.2.2 [POSIX.1] function does not
1655 1.1 cgd * return a valid user name, uname is taken as a user ID.
1656 1.1 cgd */
1657 1.10 jtc int
1658 1.57 apb f_user(PLAN *plan, FTSENT *entry)
1659 1.1 cgd {
1660 1.33 enami
1661 1.43 jhawk COMPARE(entry->fts_statp->st_uid, plan->u_data);
1662 1.1 cgd }
1663 1.57 apb
1664 1.1 cgd PLAN *
1665 1.57 apb c_user(char ***argvp, int isok)
1666 1.1 cgd {
1667 1.24 christos char *username = **argvp;
1668 1.1 cgd PLAN *new;
1669 1.1 cgd struct passwd *p;
1670 1.1 cgd uid_t uid;
1671 1.57 apb
1672 1.24 christos (*argvp)++;
1673 1.1 cgd ftsoptions &= ~FTS_NOSTAT;
1674 1.1 cgd
1675 1.43 jhawk new = palloc(N_USER, f_user);
1676 1.1 cgd p = getpwnam(username);
1677 1.1 cgd if (p == NULL) {
1678 1.43 jhawk if (atoi(username) == 0 && username[0] != '0' &&
1679 1.43 jhawk strcmp(username, "+0") && strcmp(username, "-0"))
1680 1.10 jtc errx(1, "-user: %s: no such user", username);
1681 1.43 jhawk uid = find_parsenum(new, "-user", username, NULL);
1682 1.43 jhawk
1683 1.43 jhawk } else {
1684 1.56 apb new->flags = F_EQUAL;
1685 1.1 cgd uid = p->pw_uid;
1686 1.43 jhawk }
1687 1.1 cgd
1688 1.1 cgd new->u_data = uid;
1689 1.10 jtc return (new);
1690 1.1 cgd }
1691 1.57 apb
1692 1.1 cgd /*
1693 1.1 cgd * -xdev functions --
1694 1.1 cgd *
1695 1.61 christos * Always true, causes find not to descend past directories that have a
1696 1.1 cgd * different device ID (st_dev, see stat() S5.6.2 [POSIX.1])
1697 1.1 cgd */
1698 1.1 cgd PLAN *
1699 1.57 apb c_xdev(char ***argvp, int isok)
1700 1.1 cgd {
1701 1.1 cgd ftsoptions |= FTS_XDEV;
1702 1.1 cgd
1703 1.10 jtc return (palloc(N_XDEV, f_always_true));
1704 1.1 cgd }
1705 1.1 cgd
1706 1.1 cgd /*
1707 1.1 cgd * ( expression ) functions --
1708 1.1 cgd *
1709 1.1 cgd * True if expression is true.
1710 1.1 cgd */
1711 1.10 jtc int
1712 1.57 apb f_expr(PLAN *plan, FTSENT *entry)
1713 1.1 cgd {
1714 1.21 lukem PLAN *p;
1715 1.21 lukem int state;
1716 1.1 cgd
1717 1.21 lukem state = 0;
1718 1.1 cgd for (p = plan->p_data[0];
1719 1.1 cgd p && (state = (p->eval)(p, entry)); p = p->next);
1720 1.10 jtc return (state);
1721 1.1 cgd }
1722 1.57 apb
1723 1.1 cgd /*
1724 1.1 cgd * N_OPENPAREN and N_CLOSEPAREN nodes are temporary place markers. They are
1725 1.1 cgd * eliminated during phase 2 of find_formplan() --- the '(' node is converted
1726 1.1 cgd * to a N_EXPR node containing the expression and the ')' node is discarded.
1727 1.1 cgd */
1728 1.1 cgd PLAN *
1729 1.57 apb c_openparen(char ***argvp, int isok)
1730 1.1 cgd {
1731 1.33 enami
1732 1.57 apb return (palloc(N_OPENPAREN, (int (*)(PLAN *, FTSENT *))-1));
1733 1.1 cgd }
1734 1.57 apb
1735 1.1 cgd PLAN *
1736 1.57 apb c_closeparen(char ***argvp, int isok)
1737 1.1 cgd {
1738 1.33 enami
1739 1.57 apb return (palloc(N_CLOSEPAREN, (int (*)(PLAN *, FTSENT *))-1));
1740 1.1 cgd }
1741 1.57 apb
1742 1.1 cgd /*
1743 1.1 cgd * ! expression functions --
1744 1.1 cgd *
1745 1.1 cgd * Negation of a primary; the unary NOT operator.
1746 1.1 cgd */
1747 1.10 jtc int
1748 1.57 apb f_not(PLAN *plan, FTSENT *entry)
1749 1.1 cgd {
1750 1.21 lukem PLAN *p;
1751 1.21 lukem int state;
1752 1.1 cgd
1753 1.21 lukem state = 0;
1754 1.1 cgd for (p = plan->p_data[0];
1755 1.1 cgd p && (state = (p->eval)(p, entry)); p = p->next);
1756 1.10 jtc return (!state);
1757 1.1 cgd }
1758 1.57 apb
1759 1.1 cgd PLAN *
1760 1.57 apb c_not(char ***argvp, int isok)
1761 1.1 cgd {
1762 1.33 enami
1763 1.10 jtc return (palloc(N_NOT, f_not));
1764 1.1 cgd }
1765 1.57 apb
1766 1.1 cgd /*
1767 1.1 cgd * expression -o expression functions --
1768 1.1 cgd *
1769 1.1 cgd * Alternation of primaries; the OR operator. The second expression is
1770 1.1 cgd * not evaluated if the first expression is true.
1771 1.1 cgd */
1772 1.10 jtc int
1773 1.57 apb f_or(PLAN *plan, FTSENT *entry)
1774 1.1 cgd {
1775 1.21 lukem PLAN *p;
1776 1.21 lukem int state;
1777 1.1 cgd
1778 1.21 lukem state = 0;
1779 1.1 cgd for (p = plan->p_data[0];
1780 1.1 cgd p && (state = (p->eval)(p, entry)); p = p->next);
1781 1.1 cgd
1782 1.1 cgd if (state)
1783 1.10 jtc return (1);
1784 1.1 cgd
1785 1.1 cgd for (p = plan->p_data[1];
1786 1.1 cgd p && (state = (p->eval)(p, entry)); p = p->next);
1787 1.10 jtc return (state);
1788 1.1 cgd }
1789 1.1 cgd
1790 1.1 cgd PLAN *
1791 1.57 apb c_or(char ***argvp, int isok)
1792 1.1 cgd {
1793 1.33 enami
1794 1.10 jtc return (palloc(N_OR, f_or));
1795 1.1 cgd }
1796 1.1 cgd
1797 1.24 christos PLAN *
1798 1.57 apb c_null(char ***argvp, int isok)
1799 1.24 christos {
1800 1.33 enami
1801 1.33 enami return (NULL);
1802 1.24 christos }
1803 1.24 christos
1804 1.56 apb
1805 1.56 apb /*
1806 1.56 apb * plan_cleanup --
1807 1.56 apb * Check and see if the specified plan has any residual state,
1808 1.56 apb * and if so, clean it up as appropriate.
1809 1.56 apb *
1810 1.56 apb * At the moment, only N_EXEC has state. Two kinds: 1)
1811 1.56 apb * lists of files to feed to subprocesses 2) State on exit
1812 1.56 apb * statusses of past subprocesses.
1813 1.56 apb */
1814 1.56 apb /* ARGSUSED1 */
1815 1.56 apb int
1816 1.57 apb plan_cleanup(PLAN *plan, void *arg)
1817 1.56 apb {
1818 1.56 apb if (plan->type==N_EXEC && plan->ep_narg)
1819 1.56 apb run_f_exec(plan);
1820 1.56 apb
1821 1.56 apb return plan->ep_rval; /* Passed save exit-status up chain */
1822 1.56 apb }
1823 1.56 apb
1824 1.1 cgd static PLAN *
1825 1.57 apb palloc(enum ntype t, int (*f)(PLAN *, FTSENT *))
1826 1.1 cgd {
1827 1.1 cgd PLAN *new;
1828 1.1 cgd
1829 1.22 mrg if ((new = malloc(sizeof(PLAN))) == NULL)
1830 1.32 drochner err(1, NULL);
1831 1.58 tacha memset(new, 0, sizeof(PLAN));
1832 1.22 mrg new->type = t;
1833 1.22 mrg new->eval = f;
1834 1.22 mrg return (new);
1835 1.1 cgd }
1836