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function.c revision 1.77
      1  1.77       kre /*	$NetBSD: function.c,v 1.77 2018/09/04 15:16:15 kre 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  1.77       kre __RCSID("$NetBSD: function.c,v 1.77 2018/09/04 15:16:15 kre 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  1.64    daniel #include <stdbool.h>
     59   1.1       cgd #include <stdio.h>
     60   1.1       cgd #include <stdlib.h>
     61   1.1       cgd #include <string.h>
     62  1.10       jtc #include <tzfile.h>
     63  1.10       jtc #include <unistd.h>
     64  1.55  christos #include <util.h>
     65  1.10       jtc 
     66   1.1       cgd #include "find.h"
     67   1.1       cgd 
     68  1.10       jtc #define	COMPARE(a, b) {							\
     69  1.10       jtc 	switch (plan->flags) {						\
     70  1.10       jtc 	case F_EQUAL:							\
     71  1.10       jtc 		return (a == b);					\
     72  1.10       jtc 	case F_LESSTHAN:						\
     73  1.10       jtc 		return (a < b);						\
     74  1.10       jtc 	case F_GREATER:							\
     75  1.10       jtc 		return (a > b);						\
     76  1.10       jtc 	default:							\
     77  1.10       jtc 		abort();						\
     78  1.10       jtc 	}								\
     79   1.1       cgd }
     80   1.1       cgd 
     81  1.57       apb static	int64_t	find_parsenum(PLAN *, const char *, const char *, char *);
     82  1.57       apb static	void	run_f_exec(PLAN *);
     83  1.57       apb 	int	f_always_true(PLAN *, FTSENT *);
     84  1.57       apb 	int	f_amin(PLAN *, FTSENT *);
     85  1.57       apb 	int	f_anewer(PLAN *, FTSENT *);
     86  1.74  pgoyette 	int	f_asince(PLAN *, FTSENT *);
     87  1.57       apb 	int	f_atime(PLAN *, FTSENT *);
     88  1.57       apb 	int	f_cmin(PLAN *, FTSENT *);
     89  1.57       apb 	int	f_cnewer(PLAN *, FTSENT *);
     90  1.74  pgoyette 	int	f_csince(PLAN *, FTSENT *);
     91  1.57       apb 	int	f_ctime(PLAN *, FTSENT *);
     92  1.62      elad 	int	f_delete(PLAN *, FTSENT *);
     93  1.57       apb 	int	f_empty(PLAN *, FTSENT *);
     94  1.57       apb 	int	f_exec(PLAN *, FTSENT *);
     95  1.57       apb 	int	f_execdir(PLAN *, FTSENT *);
     96  1.57       apb 	int	f_false(PLAN *, FTSENT *);
     97  1.57       apb 	int	f_flags(PLAN *, FTSENT *);
     98  1.57       apb 	int	f_fprint(PLAN *, FTSENT *);
     99  1.57       apb 	int	f_fstype(PLAN *, FTSENT *);
    100  1.57       apb 	int	f_group(PLAN *, FTSENT *);
    101  1.57       apb 	int	f_iname(PLAN *, FTSENT *);
    102  1.57       apb 	int	f_inum(PLAN *, FTSENT *);
    103  1.57       apb 	int	f_links(PLAN *, FTSENT *);
    104  1.57       apb 	int	f_ls(PLAN *, FTSENT *);
    105  1.57       apb 	int	f_mindepth(PLAN *, FTSENT *);
    106  1.57       apb 	int	f_maxdepth(PLAN *, FTSENT *);
    107  1.57       apb 	int	f_mmin(PLAN *, FTSENT *);
    108  1.57       apb 	int	f_mtime(PLAN *, FTSENT *);
    109  1.57       apb 	int	f_name(PLAN *, FTSENT *);
    110  1.57       apb 	int	f_newer(PLAN *, FTSENT *);
    111  1.74  pgoyette /*
    112  1.74  pgoyette  * Unimplemented Gnu findutils options
    113  1.74  pgoyette  *
    114  1.74  pgoyette 	int	f_newerBB(PLAN *, FTSENT *);
    115  1.74  pgoyette 	int	f_newerBa(PLAN *, FTSENT *);
    116  1.74  pgoyette 	int	f_newerBc(PLAN *, FTSENT *);
    117  1.74  pgoyette 	int	f_newerBm(PLAN *, FTSENT *);
    118  1.74  pgoyette 	int	f_newerBt(PLAN *, FTSENT *);
    119  1.74  pgoyette 	int	f_neweraB(PLAN *, FTSENT *);
    120  1.74  pgoyette 	int	f_newerac(PLAN *, FTSENT *);
    121  1.74  pgoyette 	int	f_neweram(PLAN *, FTSENT *);
    122  1.74  pgoyette 	int	f_newerca(PLAN *, FTSENT *);
    123  1.74  pgoyette 	int	f_newercm(PLAN *, FTSENT *);
    124  1.74  pgoyette 	int	f_newercB(PLAN *, FTSENT *);
    125  1.74  pgoyette 	int	f_newermB(PLAN *, FTSENT *);
    126  1.74  pgoyette 	int	f_newerma(PLAN *, FTSENT *);
    127  1.74  pgoyette 	int	f_newermc(PLAN *, FTSENT *);
    128  1.74  pgoyette  *
    129  1.74  pgoyette  */
    130  1.57       apb 	int	f_nogroup(PLAN *, FTSENT *);
    131  1.57       apb 	int	f_nouser(PLAN *, FTSENT *);
    132  1.57       apb 	int	f_path(PLAN *, FTSENT *);
    133  1.57       apb 	int	f_perm(PLAN *, FTSENT *);
    134  1.57       apb 	int	f_print(PLAN *, FTSENT *);
    135  1.57       apb 	int	f_print0(PLAN *, FTSENT *);
    136  1.57       apb 	int	f_printx(PLAN *, FTSENT *);
    137  1.57       apb 	int	f_prune(PLAN *, FTSENT *);
    138  1.57       apb 	int	f_regex(PLAN *, FTSENT *);
    139  1.74  pgoyette 	int	f_since(PLAN *, FTSENT *);
    140  1.57       apb 	int	f_size(PLAN *, FTSENT *);
    141  1.57       apb 	int	f_type(PLAN *, FTSENT *);
    142  1.57       apb 	int	f_user(PLAN *, FTSENT *);
    143  1.57       apb 	int	f_not(PLAN *, FTSENT *);
    144  1.57       apb 	int	f_or(PLAN *, FTSENT *);
    145  1.64    daniel static	PLAN   *c_regex_common(char ***, int, enum ntype, bool);
    146  1.57       apb static	PLAN   *palloc(enum ntype, int (*)(PLAN *, FTSENT *));
    147   1.1       cgd 
    148  1.35  christos extern int dotfd;
    149  1.35  christos extern FTS *tree;
    150  1.35  christos extern time_t now;
    151  1.35  christos 
    152   1.1       cgd /*
    153   1.1       cgd  * find_parsenum --
    154   1.1       cgd  *	Parse a string of the form [+-]# and return the value.
    155   1.1       cgd  */
    156  1.30    kleink static int64_t
    157  1.57       apb find_parsenum(PLAN *plan, const char *option, const char *vp, char *endch)
    158   1.1       cgd {
    159  1.30    kleink 	int64_t value;
    160  1.57       apb 	const char *str;
    161  1.57       apb 	char *endchar; /* Pointer to character ending conversion. */
    162  1.57       apb 
    163  1.10       jtc 	/* Determine comparison from leading + or -. */
    164  1.10       jtc 	str = vp;
    165  1.10       jtc 	switch (*str) {
    166   1.1       cgd 	case '+':
    167   1.1       cgd 		++str;
    168  1.10       jtc 		plan->flags = F_GREATER;
    169   1.1       cgd 		break;
    170   1.1       cgd 	case '-':
    171   1.1       cgd 		++str;
    172  1.10       jtc 		plan->flags = F_LESSTHAN;
    173   1.1       cgd 		break;
    174   1.1       cgd 	default:
    175  1.10       jtc 		plan->flags = F_EQUAL;
    176   1.1       cgd 		break;
    177   1.1       cgd 	}
    178  1.57       apb 
    179   1.1       cgd 	/*
    180  1.10       jtc 	 * Convert the string with strtol().  Note, if strtol() returns zero
    181   1.1       cgd 	 * and endchar points to the beginning of the string we know we have
    182   1.1       cgd 	 * a syntax error.
    183   1.1       cgd 	 */
    184  1.30    kleink 	value = strtoq(str, &endchar, 10);
    185  1.10       jtc 	if (value == 0 && endchar == str)
    186  1.10       jtc 		errx(1, "%s: %s: illegal numeric value", option, vp);
    187  1.10       jtc 	if (endchar[0] && (endch == NULL || endchar[0] != *endch))
    188  1.10       jtc 		errx(1, "%s: %s: illegal trailing character", option, vp);
    189   1.1       cgd 	if (endch)
    190   1.1       cgd 		*endch = endchar[0];
    191  1.10       jtc 	return (value);
    192   1.1       cgd }
    193   1.1       cgd 
    194   1.1       cgd /*
    195  1.74  pgoyette  * find_parsedate --
    196  1.74  pgoyette  *
    197  1.74  pgoyette  * Validate the timestamp argument or report an error
    198  1.74  pgoyette  */
    199  1.74  pgoyette static time_t
    200  1.74  pgoyette find_parsedate(PLAN *plan, const char *option, const char *vp)
    201  1.74  pgoyette {
    202  1.74  pgoyette 	time_t timestamp;
    203  1.74  pgoyette 
    204  1.74  pgoyette 	errno = 0;
    205  1.74  pgoyette 	timestamp = parsedate(vp, NULL, NULL);
    206  1.74  pgoyette 	if (timestamp == -1 && errno != 0)
    207  1.74  pgoyette 		errx(1, "%s: %s: invalid timestamp value", option, vp);
    208  1.74  pgoyette 	return timestamp;
    209  1.74  pgoyette }
    210  1.74  pgoyette 
    211  1.74  pgoyette /*
    212  1.10       jtc  * The value of n for the inode times (atime, ctime, and mtime) is a range,
    213  1.10       jtc  * i.e. n matches from (n - 1) to n 24 hour periods.  This interacts with
    214  1.10       jtc  * -n, such that "-mtime -1" would be less than 0 days, which isn't what the
    215  1.10       jtc  * user wanted.  Correct so that -1 is "less than 1".
    216  1.10       jtc  */
    217  1.10       jtc #define	TIME_CORRECT(p, ttype)						\
    218  1.10       jtc 	if ((p)->type == ttype && (p)->flags == F_LESSTHAN)		\
    219  1.10       jtc 		++((p)->t_data);
    220  1.10       jtc 
    221  1.10       jtc /*
    222  1.29    simonb  * -amin n functions --
    223  1.29    simonb  *
    224  1.29    simonb  *	True if the difference between the file access time and the
    225  1.29    simonb  *	current time is n 1 minute periods.
    226  1.29    simonb  */
    227  1.29    simonb int
    228  1.57       apb f_amin(PLAN *plan, FTSENT *entry)
    229  1.29    simonb {
    230  1.29    simonb 	COMPARE((now - entry->fts_statp->st_atime +
    231  1.29    simonb 	    SECSPERMIN - 1) / SECSPERMIN, plan->t_data);
    232  1.29    simonb }
    233  1.57       apb 
    234  1.29    simonb PLAN *
    235  1.74  pgoyette c_amin(char ***argvp, int isok, char *opt)
    236  1.29    simonb {
    237  1.29    simonb 	char *arg = **argvp;
    238  1.29    simonb 	PLAN *new;
    239  1.29    simonb 
    240  1.29    simonb 	(*argvp)++;
    241  1.29    simonb 	ftsoptions &= ~FTS_NOSTAT;
    242  1.29    simonb 
    243  1.29    simonb 	new = palloc(N_AMIN, f_amin);
    244  1.74  pgoyette 	new->t_data = find_parsenum(new, opt, arg, NULL);
    245  1.29    simonb 	TIME_CORRECT(new, N_AMIN);
    246  1.29    simonb 	return (new);
    247  1.29    simonb }
    248  1.40    kleink 
    249  1.40    kleink /*
    250  1.40    kleink  * -anewer file functions --
    251  1.40    kleink  *
    252  1.40    kleink  *	True if the current file has been accessed more recently
    253  1.40    kleink  *	than the access time of the file named by the pathname
    254  1.40    kleink  *	file.
    255  1.40    kleink  */
    256  1.40    kleink int
    257  1.68      matt f_anewer(PLAN *plan, FTSENT *entry)
    258  1.40    kleink {
    259  1.40    kleink 
    260  1.72  uebayasi 	return timespeccmp(&entry->fts_statp->st_atim, &plan->ts_data, >);
    261  1.40    kleink }
    262  1.57       apb 
    263  1.40    kleink PLAN *
    264  1.74  pgoyette c_anewer(char ***argvp, int isok, char *opt)
    265  1.40    kleink {
    266  1.40    kleink 	char *filename = **argvp;
    267  1.40    kleink 	PLAN *new;
    268  1.40    kleink 	struct stat sb;
    269  1.57       apb 
    270  1.40    kleink 	(*argvp)++;
    271  1.40    kleink 	ftsoptions &= ~FTS_NOSTAT;
    272  1.40    kleink 
    273  1.40    kleink 	if (stat(filename, &sb))
    274  1.74  pgoyette 		err(1, "%s: %s", opt, filename);
    275  1.40    kleink 	new = palloc(N_ANEWER, f_anewer);
    276  1.72  uebayasi 	new->ts_data = sb.st_atim;
    277  1.40    kleink 	return (new);
    278  1.40    kleink }
    279  1.57       apb 
    280  1.29    simonb /*
    281  1.74  pgoyette  * -asince "timestamp" functions --
    282  1.74  pgoyette  *
    283  1.74  pgoyette  *	True if the file access time is greater than the timestamp value
    284  1.74  pgoyette  */
    285  1.74  pgoyette int
    286  1.74  pgoyette f_asince(PLAN *plan, FTSENT *entry)
    287  1.74  pgoyette {
    288  1.74  pgoyette 	COMPARE(entry->fts_statp->st_atime, plan->t_data);
    289  1.74  pgoyette }
    290  1.74  pgoyette 
    291  1.74  pgoyette PLAN *
    292  1.74  pgoyette c_asince(char ***argvp, int isok, char *opt)
    293  1.74  pgoyette {
    294  1.74  pgoyette 	char *arg = **argvp;
    295  1.74  pgoyette 	PLAN *new;
    296  1.74  pgoyette 
    297  1.74  pgoyette 	(*argvp)++;
    298  1.74  pgoyette 	ftsoptions &= ~FTS_NOSTAT;
    299  1.74  pgoyette 
    300  1.74  pgoyette 	new = palloc(N_ASINCE, f_asince);
    301  1.74  pgoyette 	new->t_data = find_parsedate(new, opt, arg);
    302  1.74  pgoyette 	new->flags = F_GREATER;
    303  1.74  pgoyette 	return (new);
    304  1.74  pgoyette }
    305  1.74  pgoyette 
    306  1.74  pgoyette /*
    307   1.1       cgd  * -atime n functions --
    308   1.1       cgd  *
    309   1.1       cgd  *	True if the difference between the file access time and the
    310   1.1       cgd  *	current time is n 24 hour periods.
    311   1.1       cgd  */
    312  1.10       jtc int
    313  1.57       apb f_atime(PLAN *plan, FTSENT *entry)
    314   1.1       cgd {
    315   1.7   deraadt 	COMPARE((now - entry->fts_statp->st_atime +
    316   1.1       cgd 	    SECSPERDAY - 1) / SECSPERDAY, plan->t_data);
    317   1.1       cgd }
    318  1.57       apb 
    319   1.1       cgd PLAN *
    320  1.74  pgoyette c_atime(char ***argvp, int isok, char *opt)
    321   1.1       cgd {
    322  1.24  christos 	char *arg = **argvp;
    323   1.1       cgd 	PLAN *new;
    324   1.1       cgd 
    325  1.24  christos 	(*argvp)++;
    326   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
    327   1.1       cgd 
    328   1.1       cgd 	new = palloc(N_ATIME, f_atime);
    329  1.74  pgoyette 	new->t_data = find_parsenum(new, opt, arg, NULL);
    330  1.10       jtc 	TIME_CORRECT(new, N_ATIME);
    331  1.10       jtc 	return (new);
    332   1.1       cgd }
    333  1.72  uebayasi 
    334   1.1       cgd /*
    335  1.29    simonb  * -cmin n functions --
    336  1.29    simonb  *
    337  1.29    simonb  *	True if the difference between the last change of file
    338  1.29    simonb  *	status information and the current time is n 24 hour periods.
    339  1.29    simonb  */
    340  1.29    simonb int
    341  1.57       apb f_cmin(PLAN *plan, FTSENT *entry)
    342  1.29    simonb {
    343  1.29    simonb 	COMPARE((now - entry->fts_statp->st_ctime +
    344  1.29    simonb 	    SECSPERMIN - 1) / SECSPERMIN, plan->t_data);
    345  1.29    simonb }
    346  1.57       apb 
    347  1.29    simonb PLAN *
    348  1.74  pgoyette c_cmin(char ***argvp, int isok, char *opt)
    349  1.29    simonb {
    350  1.29    simonb 	char *arg = **argvp;
    351  1.29    simonb 	PLAN *new;
    352  1.29    simonb 
    353  1.29    simonb 	(*argvp)++;
    354  1.29    simonb 	ftsoptions &= ~FTS_NOSTAT;
    355  1.29    simonb 
    356  1.29    simonb 	new = palloc(N_CMIN, f_cmin);
    357  1.74  pgoyette 	new->t_data = find_parsenum(new, opt, arg, NULL);
    358  1.29    simonb 	TIME_CORRECT(new, N_CMIN);
    359  1.29    simonb 	return (new);
    360  1.29    simonb }
    361  1.39    kleink 
    362  1.39    kleink /*
    363  1.39    kleink  * -cnewer file functions --
    364  1.39    kleink  *
    365  1.39    kleink  *	True if the current file has been changed more recently
    366  1.40    kleink  *	than the changed time of the file named by the pathname
    367  1.39    kleink  *	file.
    368  1.39    kleink  */
    369  1.39    kleink int
    370  1.57       apb f_cnewer(PLAN *plan, FTSENT *entry)
    371  1.39    kleink {
    372  1.39    kleink 
    373  1.72  uebayasi 	return timespeccmp(&entry->fts_statp->st_ctim, &plan->ts_data, >);
    374  1.39    kleink }
    375  1.57       apb 
    376  1.39    kleink PLAN *
    377  1.74  pgoyette c_cnewer(char ***argvp, int isok, char *opt)
    378  1.39    kleink {
    379  1.39    kleink 	char *filename = **argvp;
    380  1.39    kleink 	PLAN *new;
    381  1.39    kleink 	struct stat sb;
    382  1.57       apb 
    383  1.39    kleink 	(*argvp)++;
    384  1.39    kleink 	ftsoptions &= ~FTS_NOSTAT;
    385  1.39    kleink 
    386  1.39    kleink 	if (stat(filename, &sb))
    387  1.74  pgoyette 		err(1, "%s: %s ", opt, filename);
    388  1.39    kleink 	new = palloc(N_CNEWER, f_cnewer);
    389  1.72  uebayasi 	new->ts_data = sb.st_ctim;
    390  1.39    kleink 	return (new);
    391  1.39    kleink }
    392  1.57       apb 
    393  1.29    simonb /*
    394  1.74  pgoyette  * -csince "timestamp" functions --
    395  1.74  pgoyette  *
    396  1.74  pgoyette  *	True if the file status change time is greater than the timestamp value
    397  1.74  pgoyette  */
    398  1.74  pgoyette int
    399  1.74  pgoyette f_csince(PLAN *plan, FTSENT *entry)
    400  1.74  pgoyette {
    401  1.74  pgoyette 	COMPARE(entry->fts_statp->st_ctime, plan->t_data);
    402  1.74  pgoyette }
    403  1.74  pgoyette 
    404  1.74  pgoyette PLAN *
    405  1.74  pgoyette c_csince(char ***argvp, int isok, char *opt)
    406  1.74  pgoyette {
    407  1.74  pgoyette 	char *arg = **argvp;
    408  1.74  pgoyette 	PLAN *new;
    409  1.74  pgoyette 
    410  1.74  pgoyette 	(*argvp)++;
    411  1.74  pgoyette 	ftsoptions &= ~FTS_NOSTAT;
    412  1.74  pgoyette 
    413  1.74  pgoyette 	new = palloc(N_CSINCE, f_csince);
    414  1.74  pgoyette 	new->t_data = find_parsedate(new, opt, arg);
    415  1.74  pgoyette 	new->flags = F_GREATER;
    416  1.74  pgoyette 	return (new);
    417  1.74  pgoyette }
    418  1.74  pgoyette 
    419  1.74  pgoyette /*
    420   1.1       cgd  * -ctime n functions --
    421   1.1       cgd  *
    422   1.1       cgd  *	True if the difference between the last change of file
    423   1.1       cgd  *	status information and the current time is n 24 hour periods.
    424   1.1       cgd  */
    425  1.10       jtc int
    426  1.57       apb f_ctime(PLAN *plan, FTSENT *entry)
    427   1.1       cgd {
    428   1.7   deraadt 	COMPARE((now - entry->fts_statp->st_ctime +
    429   1.1       cgd 	    SECSPERDAY - 1) / SECSPERDAY, plan->t_data);
    430   1.1       cgd }
    431  1.57       apb 
    432   1.1       cgd PLAN *
    433  1.74  pgoyette c_ctime(char ***argvp, int isok, char *opt)
    434   1.1       cgd {
    435  1.24  christos 	char *arg = **argvp;
    436   1.1       cgd 	PLAN *new;
    437   1.1       cgd 
    438  1.24  christos 	(*argvp)++;
    439   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
    440   1.1       cgd 
    441   1.1       cgd 	new = palloc(N_CTIME, f_ctime);
    442  1.74  pgoyette 	new->t_data = find_parsenum(new, opt, arg, NULL);
    443  1.10       jtc 	TIME_CORRECT(new, N_CTIME);
    444  1.10       jtc 	return (new);
    445   1.1       cgd }
    446   1.1       cgd 
    447   1.1       cgd /*
    448  1.62      elad  * -delete functions --
    449  1.62      elad  *
    450  1.71       wiz  *	Always true.  Makes its best shot and continues on regardless.
    451  1.62      elad  */
    452  1.62      elad int
    453  1.62      elad f_delete(PLAN *plan __unused, FTSENT *entry)
    454  1.62      elad {
    455  1.62      elad 	/* ignore these from fts */
    456  1.62      elad 	if (strcmp(entry->fts_accpath, ".") == 0 ||
    457  1.62      elad 	    strcmp(entry->fts_accpath, "..") == 0)
    458  1.62      elad 		return 1;
    459  1.62      elad 
    460  1.62      elad 	/* sanity check */
    461  1.62      elad 	if (isdepth == 0 ||			/* depth off */
    462  1.62      elad 	    (ftsoptions & FTS_NOSTAT) ||	/* not stat()ing */
    463  1.62      elad 	    !(ftsoptions & FTS_PHYSICAL) ||	/* physical off */
    464  1.62      elad 	    (ftsoptions & FTS_LOGICAL))		/* or finally, logical on */
    465  1.62      elad 		errx(1, "-delete: insecure options got turned on");
    466  1.62      elad 
    467  1.62      elad 	/* Potentially unsafe - do not accept relative paths whatsoever */
    468  1.76  christos 	if (entry->fts_level > 0 && strchr(entry->fts_accpath, '/') != NULL)
    469  1.62      elad 		errx(1, "-delete: %s: relative path potentially not safe",
    470  1.62      elad 			entry->fts_accpath);
    471  1.62      elad 
    472  1.62      elad 	/* Turn off user immutable bits if running as root */
    473  1.62      elad 	if ((entry->fts_statp->st_flags & (UF_APPEND|UF_IMMUTABLE)) &&
    474  1.62      elad 	    !(entry->fts_statp->st_flags & (SF_APPEND|SF_IMMUTABLE)) &&
    475  1.62      elad 	    geteuid() == 0)
    476  1.62      elad 		chflags(entry->fts_accpath,
    477  1.62      elad 		       entry->fts_statp->st_flags &= ~(UF_APPEND|UF_IMMUTABLE));
    478  1.62      elad 
    479  1.62      elad 	/* rmdir directories, unlink everything else */
    480  1.62      elad 	if (S_ISDIR(entry->fts_statp->st_mode)) {
    481  1.62      elad 		if (rmdir(entry->fts_accpath) < 0 && errno != ENOTEMPTY)
    482  1.62      elad 			warn("-delete: rmdir(%s)", entry->fts_path);
    483  1.62      elad 	} else {
    484  1.62      elad 		if (unlink(entry->fts_accpath) < 0)
    485  1.62      elad 			warn("-delete: unlink(%s)", entry->fts_path);
    486  1.62      elad 	}
    487  1.62      elad 
    488  1.62      elad 	/* "succeed" */
    489  1.62      elad 	return 1;
    490  1.62      elad }
    491  1.62      elad 
    492  1.62      elad PLAN *
    493  1.74  pgoyette c_delete(char ***argvp __unused, int isok, char *opt)
    494  1.62      elad {
    495  1.62      elad 
    496  1.62      elad 	ftsoptions &= ~FTS_NOSTAT;	/* no optimize */
    497  1.62      elad 	ftsoptions |= FTS_PHYSICAL;	/* disable -follow */
    498  1.62      elad 	ftsoptions &= ~FTS_LOGICAL;	/* disable -follow */
    499  1.62      elad 	isoutput = 1;			/* possible output */
    500  1.62      elad 	isdepth = 1;			/* -depth implied */
    501  1.62      elad 
    502  1.62      elad 	return palloc(N_DELETE, f_delete);
    503  1.62      elad }
    504  1.62      elad 
    505  1.62      elad /*
    506   1.1       cgd  * -depth functions --
    507   1.1       cgd  *
    508   1.1       cgd  *	Always true, causes descent of the directory hierarchy to be done
    509   1.1       cgd  *	so that all entries in a directory are acted on before the directory
    510   1.1       cgd  *	itself.
    511   1.1       cgd  */
    512  1.10       jtc int
    513  1.57       apb f_always_true(PLAN *plan, FTSENT *entry)
    514   1.1       cgd {
    515  1.33     enami 
    516  1.10       jtc 	return (1);
    517   1.1       cgd }
    518  1.57       apb 
    519   1.1       cgd PLAN *
    520  1.74  pgoyette c_depth(char ***argvp, int isok, char *opt)
    521   1.1       cgd {
    522   1.1       cgd 	isdepth = 1;
    523   1.1       cgd 
    524  1.10       jtc 	return (palloc(N_DEPTH, f_always_true));
    525   1.1       cgd }
    526  1.57       apb 
    527   1.1       cgd /*
    528  1.41    provos  * -empty functions --
    529  1.41    provos  *
    530  1.41    provos  *	True if the file or directory is empty
    531  1.41    provos  */
    532  1.41    provos int
    533  1.57       apb f_empty(PLAN *plan, FTSENT *entry)
    534  1.41    provos {
    535  1.41    provos 	if (S_ISREG(entry->fts_statp->st_mode) &&
    536  1.41    provos 	    entry->fts_statp->st_size == 0)
    537  1.41    provos 		return (1);
    538  1.41    provos 	if (S_ISDIR(entry->fts_statp->st_mode)) {
    539  1.41    provos 		struct dirent *dp;
    540  1.41    provos 		int empty;
    541  1.41    provos 		DIR *dir;
    542  1.41    provos 
    543  1.41    provos 		empty = 1;
    544  1.41    provos 		dir = opendir(entry->fts_accpath);
    545  1.41    provos 		if (dir == NULL)
    546  1.66  jmcneill 			return (0);
    547  1.41    provos 		for (dp = readdir(dir); dp; dp = readdir(dir))
    548  1.41    provos 			if (dp->d_name[0] != '.' ||
    549  1.41    provos 			    (dp->d_name[1] != '\0' &&
    550  1.41    provos 				(dp->d_name[1] != '.' || dp->d_name[2] != '\0'))) {
    551  1.41    provos 				empty = 0;
    552  1.41    provos 				break;
    553  1.41    provos 			}
    554  1.41    provos 		closedir(dir);
    555  1.41    provos 		return (empty);
    556  1.41    provos 	}
    557  1.41    provos 	return (0);
    558  1.41    provos }
    559  1.41    provos 
    560  1.41    provos PLAN *
    561  1.74  pgoyette c_empty(char ***argvp, int isok, char *opt)
    562  1.41    provos {
    563  1.41    provos 	ftsoptions &= ~FTS_NOSTAT;
    564  1.41    provos 
    565  1.41    provos 	return (palloc(N_EMPTY, f_empty));
    566  1.41    provos }
    567  1.41    provos 
    568  1.41    provos /*
    569   1.1       cgd  * [-exec | -ok] utility [arg ... ] ; functions --
    570  1.56       apb  * [-exec | -ok] utility [arg ... ] {} + functions --
    571   1.1       cgd  *
    572  1.56       apb  *	If the end of the primary expression is delimited by a
    573  1.56       apb  *	semicolon: true if the executed utility returns a zero value
    574  1.56       apb  *	as exit status.  If "{}" occurs anywhere, it gets replaced by
    575  1.56       apb  *	the current pathname.
    576  1.56       apb  *
    577  1.56       apb  *	If the end of the primary expression is delimited by a plus
    578  1.56       apb  *	sign: always true. Pathnames for which the primary is
    579  1.56       apb  *	evaluated shall be aggregated into sets. The utility will be
    580  1.56       apb  *	executed once per set, with "{}" replaced by the entire set of
    581  1.56       apb  *	pathnames (as if xargs). "{}" must appear last.
    582  1.56       apb  *
    583  1.56       apb  *	The current directory for the execution of utility is the same
    584  1.56       apb  *	as the current directory when the find utility was started.
    585   1.1       cgd  *
    586  1.56       apb  *	The primary -ok is different in that it requests affirmation
    587  1.56       apb  *	of the user before executing the utility.
    588   1.1       cgd  */
    589  1.10       jtc int
    590  1.57       apb f_exec(PLAN *plan, FTSENT *entry)
    591   1.1       cgd {
    592  1.67  christos 	size_t cnt;
    593  1.67  christos 	int l;
    594   1.1       cgd 	pid_t pid;
    595   1.1       cgd 	int status;
    596   1.1       cgd 
    597  1.56       apb 	if (plan->flags & F_PLUSSET) {
    598  1.56       apb 		/*
    599  1.56       apb 		 * Confirm sufficient buffer space, then copy the path
    600  1.56       apb 		 * to the buffer.
    601  1.56       apb 		 */
    602  1.56       apb 		l = strlen(entry->fts_path);
    603  1.56       apb 		if (plan->ep_p + l < plan->ep_ebp) {
    604  1.56       apb 			plan->ep_bxp[plan->ep_narg++] =
    605  1.56       apb 			    strcpy(plan->ep_p, entry->fts_path);
    606  1.56       apb 			plan->ep_p += l + 1;
    607  1.56       apb 
    608  1.56       apb 			if (plan->ep_narg == plan->ep_maxargs)
    609  1.56       apb 				run_f_exec(plan);
    610  1.56       apb 		} else {
    611  1.56       apb 			/*
    612  1.56       apb 			 * Without sufficient space to copy in the next
    613  1.56       apb 			 * argument, run the command to empty out the
    614  1.56       apb 			 * buffer before re-attepting the copy.
    615  1.56       apb 			 */
    616  1.56       apb 			run_f_exec(plan);
    617  1.56       apb 			if ((plan->ep_p + l < plan->ep_ebp)) {
    618  1.56       apb 				plan->ep_bxp[plan->ep_narg++]
    619  1.56       apb 				    = strcpy(plan->ep_p, entry->fts_path);
    620  1.56       apb 				plan->ep_p += l + 1;
    621  1.56       apb 			} else
    622  1.56       apb 				errx(1, "insufficient space for argument");
    623  1.56       apb 		}
    624  1.56       apb 		return (1);
    625  1.56       apb 	} else {
    626  1.56       apb 		for (cnt = 0; plan->e_argv[cnt]; ++cnt)
    627  1.56       apb 			if (plan->e_len[cnt])
    628  1.56       apb 				brace_subst(plan->e_orig[cnt],
    629  1.56       apb 				    &plan->e_argv[cnt],
    630  1.56       apb 				    entry->fts_path,
    631  1.56       apb 				    &plan->e_len[cnt]);
    632  1.56       apb 		if (plan->flags & F_NEEDOK && !queryuser(plan->e_argv))
    633  1.56       apb 			return (0);
    634  1.56       apb 
    635  1.56       apb 		/* Don't mix output of command with find output. */
    636  1.56       apb 		fflush(stdout);
    637  1.56       apb 		fflush(stderr);
    638  1.56       apb 
    639  1.56       apb 		switch (pid = vfork()) {
    640  1.56       apb 		case -1:
    641  1.56       apb 			err(1, "vfork");
    642  1.56       apb 			/* NOTREACHED */
    643  1.56       apb 		case 0:
    644  1.56       apb 			if (fchdir(dotfd)) {
    645  1.56       apb 				warn("chdir");
    646  1.56       apb 				_exit(1);
    647  1.56       apb 			}
    648  1.56       apb 			execvp(plan->e_argv[0], plan->e_argv);
    649  1.56       apb 			warn("%s", plan->e_argv[0]);
    650  1.56       apb 			_exit(1);
    651  1.56       apb 		}
    652  1.56       apb 		pid = waitpid(pid, &status, 0);
    653  1.56       apb 		return (pid != -1 && WIFEXITED(status)
    654  1.56       apb 		    && !WEXITSTATUS(status));
    655  1.56       apb 	}
    656  1.56       apb }
    657  1.56       apb 
    658  1.56       apb static void
    659  1.57       apb run_f_exec(PLAN *plan)
    660  1.56       apb {
    661  1.56       apb 	pid_t pid;
    662  1.56       apb 	int rval, status;
    663   1.1       cgd 
    664  1.56       apb 	/* Ensure arg list is null terminated. */
    665  1.56       apb 	plan->ep_bxp[plan->ep_narg] = NULL;
    666  1.11       jtc 
    667  1.56       apb 	/* Don't mix output of command with find output. */
    668  1.11       jtc 	fflush(stdout);
    669  1.11       jtc 	fflush(stderr);
    670   1.1       cgd 
    671  1.37    simonb 	switch (pid = vfork()) {
    672   1.1       cgd 	case -1:
    673  1.37    simonb 		err(1, "vfork");
    674   1.1       cgd 		/* NOTREACHED */
    675   1.1       cgd 	case 0:
    676   1.1       cgd 		if (fchdir(dotfd)) {
    677  1.10       jtc 			warn("chdir");
    678   1.1       cgd 			_exit(1);
    679   1.1       cgd 		}
    680   1.1       cgd 		execvp(plan->e_argv[0], plan->e_argv);
    681  1.10       jtc 		warn("%s", plan->e_argv[0]);
    682   1.1       cgd 		_exit(1);
    683   1.1       cgd 	}
    684  1.56       apb 
    685  1.56       apb 	/* Clear out the argument list. */
    686  1.56       apb 	plan->ep_narg = 0;
    687  1.56       apb 	plan->ep_bxp[plan->ep_narg] = NULL;
    688  1.56       apb 	/* As well as the argument buffer. */
    689  1.56       apb 	plan->ep_p = plan->ep_bbp;
    690  1.56       apb 	*plan->ep_p = '\0';
    691  1.56       apb 
    692   1.1       cgd 	pid = waitpid(pid, &status, 0);
    693  1.56       apb 	if (WIFEXITED(status))
    694  1.56       apb 		rval = WEXITSTATUS(status);
    695  1.56       apb 	else
    696  1.56       apb 		rval = -1;
    697  1.56       apb 
    698  1.56       apb 	/*
    699  1.56       apb 	 * If we have a non-zero exit status, preserve it so find(1) can
    700  1.56       apb 	 * later exit with it.
    701  1.56       apb 	 */
    702  1.56       apb 	if (rval)
    703  1.56       apb 		plan->ep_rval = rval;
    704   1.1       cgd }
    705  1.56       apb 
    706   1.1       cgd /*
    707   1.1       cgd  * c_exec --
    708   1.1       cgd  *	build three parallel arrays, one with pointers to the strings passed
    709   1.1       cgd  *	on the command line, one with (possibly duplicated) pointers to the
    710   1.1       cgd  *	argv array, and one with integer values that are lengths of the
    711   1.1       cgd  *	strings, but also flags meaning that the string has to be massaged.
    712  1.56       apb  *
    713  1.56       apb  *	If -exec ... {} +, use only the first array, but make it large
    714  1.56       apb  *	enough to hold 5000 args (cf. src/usr.bin/xargs/xargs.c for a
    715  1.56       apb  *	discussion), and then allocate ARG_MAX - 4K of space for args.
    716   1.1       cgd  */
    717   1.1       cgd PLAN *
    718  1.74  pgoyette c_exec(char ***argvp, int isok, char *opt)
    719   1.1       cgd {
    720   1.1       cgd 	PLAN *new;			/* node returned */
    721  1.67  christos 	size_t cnt;
    722  1.67  christos 	int brace, lastbrace;
    723  1.21     lukem 	char **argv, **ap, *p;
    724   1.1       cgd 
    725   1.1       cgd 	isoutput = 1;
    726  1.57       apb 
    727   1.1       cgd 	new = palloc(N_EXEC, f_exec);
    728  1.10       jtc 	if (isok)
    729  1.56       apb 		new->flags |= F_NEEDOK;
    730   1.1       cgd 
    731  1.56       apb 	/*
    732  1.70  dholland 	 * Terminate if we encounter an arg exactly equal to ";", or an
    733  1.70  dholland 	 * arg exactly equal to "+" following an arg exactly equal to
    734  1.56       apb 	 * "{}".
    735  1.56       apb 	 */
    736  1.56       apb 	for (ap = argv = *argvp, brace = 0;; ++ap) {
    737   1.1       cgd 		if (!*ap)
    738  1.74  pgoyette 			errx(1, "%s: no terminating \";\" or \"+\"", opt);
    739  1.56       apb 		lastbrace = brace;
    740  1.65  dholland 		brace = 0;
    741  1.56       apb 		if (strcmp(*ap, "{}") == 0)
    742  1.56       apb 			brace = 1;
    743  1.56       apb 		if (strcmp(*ap, ";") == 0)
    744  1.56       apb 			break;
    745  1.56       apb 		if (strcmp(*ap, "+") == 0 && lastbrace) {
    746  1.56       apb 			new->flags |= F_PLUSSET;
    747   1.1       cgd 			break;
    748  1.56       apb 		}
    749   1.1       cgd 	}
    750   1.1       cgd 
    751  1.56       apb 	/*
    752  1.56       apb 	 * POSIX says -ok ... {} + "need not be supported," and it does
    753  1.56       apb 	 * not make much sense anyway.
    754  1.56       apb 	 */
    755  1.56       apb 	if (new->flags & F_NEEDOK && new->flags & F_PLUSSET)
    756  1.74  pgoyette 		errx(1, "%s: terminating \"+\" not permitted.", opt);
    757  1.56       apb 
    758  1.56       apb 	if (new->flags & F_PLUSSET) {
    759  1.67  christos 		size_t c, bufsize;
    760  1.56       apb 
    761  1.56       apb 		cnt = ap - *argvp - 1;			/* units are words */
    762  1.77       kre 		new->ep_maxargs = ARG_MAX / (sizeof (char *) + 16);
    763  1.77       kre 		if (new->ep_maxargs > 5000)
    764  1.77       kre 			new->ep_maxargs = 5000;
    765  1.67  christos 		new->e_argv = emalloc((cnt + new->ep_maxargs)
    766  1.67  christos 		    * sizeof(*new->e_argv));
    767  1.56       apb 
    768  1.56       apb 		/* We start stuffing arguments after the user's last one. */
    769  1.56       apb 		new->ep_bxp = &new->e_argv[cnt];
    770  1.56       apb 		new->ep_narg = 0;
    771  1.56       apb 
    772  1.56       apb 		/*
    773  1.56       apb 		 * Count up the space of the user's arguments, and
    774  1.56       apb 		 * subtract that from what we allocate.
    775  1.56       apb 		 */
    776  1.67  christos #define MAXARG (ARG_MAX - 4 * 1024)
    777  1.56       apb 		for (argv = *argvp, c = 0, cnt = 0;
    778  1.56       apb 		     argv < ap;
    779  1.56       apb 		     ++argv, ++cnt) {
    780  1.56       apb 			c += strlen(*argv) + 1;
    781  1.67  christos 			if (c >= MAXARG)
    782  1.67  christos 				errx(1, "Arguments too long");
    783  1.56       apb 			new->e_argv[cnt] = *argv;
    784  1.56       apb 		}
    785  1.77       kre 		if (c + new->ep_maxargs * sizeof (char *) >= MAXARG)
    786  1.77       kre 			errx(1, "Arguments too long");
    787  1.77       kre 		bufsize = MAXARG - c - new->ep_maxargs * sizeof (char *);
    788   1.1       cgd 
    789  1.56       apb 		/*
    790  1.56       apb 		 * Allocate, and then initialize current, base, and
    791  1.56       apb 		 * end pointers.
    792  1.56       apb 		 */
    793  1.67  christos 		new->ep_p = new->ep_bbp = emalloc(bufsize + 1);
    794  1.56       apb 		new->ep_ebp = new->ep_bbp + bufsize - 1;
    795  1.56       apb 		new->ep_rval = 0;
    796  1.56       apb 	} else { /* !F_PLUSSET */
    797  1.56       apb 		cnt = ap - *argvp + 1;
    798  1.67  christos 		new->e_argv = emalloc(cnt * sizeof(*new->e_argv));
    799  1.67  christos 		new->e_orig = emalloc(cnt * sizeof(*new->e_orig));
    800  1.67  christos 		new->e_len = emalloc(cnt * sizeof(*new->e_len));
    801  1.56       apb 
    802  1.56       apb 		for (argv = *argvp, cnt = 0; argv < ap; ++argv, ++cnt) {
    803  1.56       apb 			new->e_orig[cnt] = *argv;
    804  1.56       apb 			for (p = *argv; *p; ++p)
    805  1.56       apb 				if (p[0] == '{' && p[1] == '}') {
    806  1.56       apb 					new->e_argv[cnt] =
    807  1.67  christos 						emalloc(MAXPATHLEN);
    808  1.56       apb 					new->e_len[cnt] = MAXPATHLEN;
    809  1.56       apb 					break;
    810  1.56       apb 				}
    811  1.56       apb 			if (!*p) {
    812  1.56       apb 				new->e_argv[cnt] = *argv;
    813  1.56       apb 				new->e_len[cnt] = 0;
    814   1.1       cgd 			}
    815   1.1       cgd 		}
    816  1.56       apb 		new->e_orig[cnt] = NULL;
    817   1.1       cgd 	}
    818   1.1       cgd 
    819  1.56       apb 	new->e_argv[cnt] = NULL;
    820   1.1       cgd 	*argvp = argv + 1;
    821  1.10       jtc 	return (new);
    822   1.1       cgd }
    823  1.41    provos 
    824  1.41    provos /*
    825  1.41    provos  * -execdir utility [arg ... ] ; functions --
    826  1.41    provos  *
    827  1.41    provos  *	True if the executed utility returns a zero value as exit status.
    828  1.41    provos  *	The end of the primary expression is delimited by a semicolon.  If
    829  1.41    provos  *	"{}" occurs anywhere, it gets replaced by the unqualified pathname.
    830  1.41    provos  *	The current directory for the execution of utility is the same as
    831  1.41    provos  *	the directory where the file lives.
    832  1.41    provos  */
    833  1.41    provos int
    834  1.57       apb f_execdir(PLAN *plan, FTSENT *entry)
    835  1.41    provos {
    836  1.67  christos 	size_t cnt;
    837  1.41    provos 	pid_t pid;
    838  1.41    provos 	int status;
    839  1.41    provos 	char *file;
    840  1.41    provos 
    841  1.41    provos 	/* XXX - if file/dir ends in '/' this will not work -- can it? */
    842  1.41    provos 	if ((file = strrchr(entry->fts_path, '/')))
    843  1.41    provos 		file++;
    844  1.41    provos 	else
    845  1.41    provos 		file = entry->fts_path;
    846  1.41    provos 
    847  1.41    provos 	for (cnt = 0; plan->e_argv[cnt]; ++cnt)
    848  1.41    provos 		if (plan->e_len[cnt])
    849  1.41    provos 			brace_subst(plan->e_orig[cnt], &plan->e_argv[cnt],
    850  1.41    provos 			    file, &plan->e_len[cnt]);
    851  1.41    provos 
    852  1.41    provos 	/* don't mix output of command with find output */
    853  1.41    provos 	fflush(stdout);
    854  1.41    provos 	fflush(stderr);
    855  1.41    provos 
    856  1.41    provos 	switch (pid = vfork()) {
    857  1.41    provos 	case -1:
    858  1.41    provos 		err(1, "fork");
    859  1.41    provos 		/* NOTREACHED */
    860  1.41    provos 	case 0:
    861  1.41    provos 		execvp(plan->e_argv[0], plan->e_argv);
    862  1.41    provos 		warn("%s", plan->e_argv[0]);
    863  1.41    provos 		_exit(1);
    864  1.41    provos 	}
    865  1.41    provos 	pid = waitpid(pid, &status, 0);
    866  1.41    provos 	return (pid != -1 && WIFEXITED(status) && !WEXITSTATUS(status));
    867  1.41    provos }
    868  1.57       apb 
    869  1.41    provos /*
    870  1.41    provos  * c_execdir --
    871  1.41    provos  *	build three parallel arrays, one with pointers to the strings passed
    872  1.41    provos  *	on the command line, one with (possibly duplicated) pointers to the
    873  1.41    provos  *	argv array, and one with integer values that are lengths of the
    874  1.41    provos  *	strings, but also flags meaning that the string has to be massaged.
    875  1.41    provos  */
    876  1.41    provos PLAN *
    877  1.74  pgoyette c_execdir(char ***argvp, int isok, char *opt)
    878  1.41    provos {
    879  1.41    provos 	PLAN *new;			/* node returned */
    880  1.67  christos 	size_t cnt;
    881  1.41    provos 	char **argv, **ap, *p;
    882  1.41    provos 
    883  1.41    provos 	ftsoptions &= ~FTS_NOSTAT;
    884  1.41    provos 	isoutput = 1;
    885  1.57       apb 
    886  1.41    provos 	new = palloc(N_EXECDIR, f_execdir);
    887  1.41    provos 
    888  1.41    provos 	for (ap = argv = *argvp;; ++ap) {
    889  1.41    provos 		if (!*ap)
    890  1.74  pgoyette 			errx(1, "%s: no terminating \";\"", opt);
    891  1.41    provos 		if (**ap == ';')
    892  1.41    provos 			break;
    893  1.41    provos 	}
    894  1.41    provos 
    895  1.41    provos 	cnt = ap - *argvp + 1;
    896  1.67  christos 	new->e_argv = emalloc(cnt * sizeof(*new->e_argv));
    897  1.67  christos 	new->e_orig = emalloc(cnt * sizeof(*new->e_orig));
    898  1.67  christos 	new->e_len = emalloc(cnt * sizeof(*new->e_len));
    899  1.41    provos 
    900  1.41    provos 	for (argv = *argvp, cnt = 0; argv < ap; ++argv, ++cnt) {
    901  1.41    provos 		new->e_orig[cnt] = *argv;
    902  1.41    provos 		for (p = *argv; *p; ++p)
    903  1.41    provos 			if (p[0] == '{' && p[1] == '}') {
    904  1.67  christos 				new->e_argv[cnt] = emalloc(MAXPATHLEN);
    905  1.41    provos 				new->e_len[cnt] = MAXPATHLEN;
    906  1.41    provos 				break;
    907  1.41    provos 			}
    908  1.41    provos 		if (!*p) {
    909  1.41    provos 			new->e_argv[cnt] = *argv;
    910  1.41    provos 			new->e_len[cnt] = 0;
    911  1.41    provos 		}
    912  1.41    provos 	}
    913  1.41    provos 	new->e_argv[cnt] = new->e_orig[cnt] = NULL;
    914  1.41    provos 
    915  1.41    provos 	*argvp = argv + 1;
    916  1.41    provos 	return (new);
    917  1.41    provos }
    918  1.52      reed 
    919  1.53  jschauma PLAN *
    920  1.74  pgoyette c_exit(char ***argvp, int isok, char *opt)
    921  1.53  jschauma {
    922  1.53  jschauma 	char *arg = **argvp;
    923  1.53  jschauma 	PLAN *new;
    924  1.53  jschauma 
    925  1.53  jschauma 	/* not technically true, but otherwise '-print' is implied */
    926  1.53  jschauma 	isoutput = 1;
    927  1.53  jschauma 
    928  1.53  jschauma 	new = palloc(N_EXIT, f_always_true);
    929  1.53  jschauma 
    930  1.53  jschauma 	if (arg) {
    931  1.53  jschauma 		(*argvp)++;
    932  1.74  pgoyette 		new->exit_val = find_parsenum(new, opt, arg, NULL);
    933  1.53  jschauma 	} else
    934  1.53  jschauma 		new->exit_val = 0;
    935  1.53  jschauma 
    936  1.53  jschauma 	return (new);
    937  1.53  jschauma }
    938  1.53  jschauma 
    939  1.53  jschauma 
    940  1.52      reed /*
    941  1.52      reed  * -false function
    942  1.52      reed  */
    943  1.52      reed int
    944  1.57       apb f_false(PLAN *plan, FTSENT *entry)
    945  1.52      reed {
    946  1.52      reed 
    947  1.52      reed 	return (0);
    948  1.52      reed }
    949  1.57       apb 
    950  1.52      reed PLAN *
    951  1.74  pgoyette c_false(char ***argvp, int isok, char *opt)
    952  1.52      reed {
    953  1.52      reed 	return (palloc(N_FALSE, f_false));
    954  1.52      reed }
    955  1.52      reed 
    956  1.57       apb 
    957  1.27     lukem /*
    958  1.27     lukem  * -flags [-]flags functions --
    959  1.27     lukem  */
    960  1.27     lukem int
    961  1.57       apb f_flags(PLAN *plan, FTSENT *entry)
    962  1.27     lukem {
    963  1.27     lukem 	u_int32_t flags;
    964  1.27     lukem 
    965  1.27     lukem 	flags = entry->fts_statp->st_flags;
    966  1.27     lukem 	if (plan->flags == F_ATLEAST)
    967  1.27     lukem 		return ((plan->f_data | flags) == flags);
    968  1.27     lukem 	else
    969  1.27     lukem 		return (flags == plan->f_data);
    970  1.27     lukem 	/* NOTREACHED */
    971  1.27     lukem }
    972  1.57       apb 
    973  1.27     lukem PLAN *
    974  1.74  pgoyette c_flags(char ***argvp, int isok, char *opt)
    975  1.27     lukem {
    976  1.27     lukem 	char *flags = **argvp;
    977  1.27     lukem 	PLAN *new;
    978  1.27     lukem 	u_long flagset;
    979  1.27     lukem 
    980  1.27     lukem 	(*argvp)++;
    981  1.27     lukem 	ftsoptions &= ~FTS_NOSTAT;
    982  1.27     lukem 
    983  1.27     lukem 	new = palloc(N_FLAGS, f_flags);
    984  1.27     lukem 
    985  1.27     lukem 	if (*flags == '-') {
    986  1.27     lukem 		new->flags = F_ATLEAST;
    987  1.27     lukem 		++flags;
    988  1.27     lukem 	}
    989  1.27     lukem 
    990  1.27     lukem 	flagset = 0;
    991  1.27     lukem 	if ((strcmp(flags, "none") != 0) &&
    992  1.27     lukem 	    (string_to_flags(&flags, &flagset, NULL) != 0))
    993  1.74  pgoyette 		errx(1, "%s: %s: illegal flags string", opt, flags);
    994  1.27     lukem 	new->f_data = flagset;
    995  1.27     lukem 	return (new);
    996  1.27     lukem }
    997  1.57       apb 
    998   1.1       cgd /*
    999   1.1       cgd  * -follow functions --
   1000   1.1       cgd  *
   1001   1.1       cgd  *	Always true, causes symbolic links to be followed on a global
   1002   1.1       cgd  *	basis.
   1003   1.1       cgd  */
   1004   1.1       cgd PLAN *
   1005  1.74  pgoyette c_follow(char ***argvp, int isok, char *opt)
   1006   1.1       cgd {
   1007   1.1       cgd 	ftsoptions &= ~FTS_PHYSICAL;
   1008   1.1       cgd 	ftsoptions |= FTS_LOGICAL;
   1009   1.1       cgd 
   1010  1.10       jtc 	return (palloc(N_FOLLOW, f_always_true));
   1011   1.1       cgd }
   1012  1.57       apb 
   1013  1.51      reed /* -fprint functions --
   1014  1.51      reed  *
   1015  1.51      reed  *	Causes the current pathame to be written to the defined output file.
   1016  1.51      reed  */
   1017  1.51      reed int
   1018  1.57       apb f_fprint(PLAN *plan, FTSENT *entry)
   1019  1.51      reed {
   1020  1.51      reed 
   1021  1.51      reed 	if (-1 == fprintf(plan->fprint_file, "%s\n", entry->fts_path))
   1022  1.51      reed 		warn("fprintf");
   1023  1.51      reed 
   1024  1.51      reed 	return(1);
   1025  1.51      reed 
   1026  1.51      reed 	/* no descriptors are closed; they will be closed by
   1027  1.51      reed 	   operating system when this find command exits.  */
   1028  1.51      reed }
   1029  1.57       apb 
   1030  1.51      reed PLAN *
   1031  1.74  pgoyette c_fprint(char ***argvp, int isok, char *opt)
   1032  1.51      reed {
   1033  1.51      reed 	PLAN *new;
   1034  1.51      reed 
   1035  1.51      reed 	isoutput = 1; /* do not assume -print */
   1036  1.51      reed 
   1037  1.51      reed 	new = palloc(N_FPRINT, f_fprint);
   1038  1.51      reed 
   1039  1.51      reed 	if (NULL == (new->fprint_file = fopen(**argvp, "w")))
   1040  1.74  pgoyette 		err(1, "%s: %s: cannot create file", opt, **argvp);
   1041  1.51      reed 
   1042  1.51      reed 	(*argvp)++;
   1043  1.51      reed 	return (new);
   1044  1.51      reed }
   1045  1.51      reed 
   1046   1.1       cgd /*
   1047   1.1       cgd  * -fstype functions --
   1048   1.1       cgd  *
   1049   1.1       cgd  *	True if the file is of a certain type.
   1050   1.1       cgd  */
   1051  1.10       jtc int
   1052  1.57       apb f_fstype(PLAN *plan, FTSENT *entry)
   1053   1.1       cgd {
   1054   1.1       cgd 	static dev_t curdev;	/* need a guaranteed illegal dev value */
   1055   1.1       cgd 	static int first = 1;
   1056  1.48  christos 	struct statvfs sb;
   1057  1.10       jtc 	static short val;
   1058  1.63  christos 	static char fstype[sizeof(sb.f_fstypename)];
   1059   1.1       cgd 	char *p, save[2];
   1060   1.1       cgd 
   1061  1.54       mrg 	memset(&save, 0, sizeof save);	/* XXX gcc */
   1062  1.54       mrg 
   1063  1.10       jtc 	/* Only check when we cross mount point. */
   1064   1.7   deraadt 	if (first || curdev != entry->fts_statp->st_dev) {
   1065   1.7   deraadt 		curdev = entry->fts_statp->st_dev;
   1066   1.1       cgd 
   1067   1.1       cgd 		/*
   1068   1.1       cgd 		 * Statfs follows symlinks; find wants the link's file system,
   1069   1.1       cgd 		 * not where it points.
   1070   1.1       cgd 		 */
   1071   1.1       cgd 		if (entry->fts_info == FTS_SL ||
   1072   1.1       cgd 		    entry->fts_info == FTS_SLNONE) {
   1073  1.21     lukem 			if ((p = strrchr(entry->fts_accpath, '/')) != NULL)
   1074   1.1       cgd 				++p;
   1075   1.1       cgd 			else
   1076   1.1       cgd 				p = entry->fts_accpath;
   1077   1.1       cgd 			save[0] = p[0];
   1078   1.1       cgd 			p[0] = '.';
   1079   1.1       cgd 			save[1] = p[1];
   1080   1.1       cgd 			p[1] = '\0';
   1081  1.57       apb 
   1082  1.57       apb 		} else
   1083   1.1       cgd 			p = NULL;
   1084   1.1       cgd 
   1085  1.48  christos 		if (statvfs(entry->fts_accpath, &sb))
   1086  1.10       jtc 			err(1, "%s", entry->fts_accpath);
   1087   1.1       cgd 
   1088   1.1       cgd 		if (p) {
   1089   1.1       cgd 			p[0] = save[0];
   1090   1.1       cgd 			p[1] = save[1];
   1091   1.1       cgd 		}
   1092   1.1       cgd 
   1093   1.1       cgd 		first = 0;
   1094  1.15   mycroft 
   1095  1.15   mycroft 		/*
   1096  1.15   mycroft 		 * Further tests may need both of these values, so
   1097  1.15   mycroft 		 * always copy both of them.
   1098  1.15   mycroft 		 */
   1099  1.48  christos 		val = sb.f_flag;
   1100  1.44    itojun 		strlcpy(fstype, sb.f_fstypename, sizeof(fstype));
   1101  1.10       jtc 	}
   1102  1.14   mycroft 	switch (plan->flags) {
   1103  1.10       jtc 	case F_MTFLAG:
   1104  1.57       apb 		return (val & plan->mt_data);
   1105  1.10       jtc 	case F_MTTYPE:
   1106  1.63  christos 		return (strncmp(fstype, plan->c_data, sizeof(fstype)) == 0);
   1107  1.10       jtc 	default:
   1108  1.10       jtc 		abort();
   1109   1.1       cgd 	}
   1110   1.1       cgd }
   1111  1.57       apb 
   1112   1.1       cgd PLAN *
   1113  1.74  pgoyette c_fstype(char ***argvp, int isok, char *opt)
   1114   1.1       cgd {
   1115  1.24  christos 	char *arg = **argvp;
   1116  1.21     lukem 	PLAN *new;
   1117  1.57       apb 
   1118  1.24  christos 	(*argvp)++;
   1119   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1120  1.57       apb 
   1121   1.1       cgd 	new = palloc(N_FSTYPE, f_fstype);
   1122  1.22       mrg 
   1123  1.10       jtc 	switch (*arg) {
   1124   1.1       cgd 	case 'l':
   1125   1.1       cgd 		if (!strcmp(arg, "local")) {
   1126  1.10       jtc 			new->flags = F_MTFLAG;
   1127  1.10       jtc 			new->mt_data = MNT_LOCAL;
   1128  1.10       jtc 			return (new);
   1129   1.1       cgd 		}
   1130   1.1       cgd 		break;
   1131   1.2       cgd 	case 'r':
   1132   1.2       cgd 		if (!strcmp(arg, "rdonly")) {
   1133  1.10       jtc 			new->flags = F_MTFLAG;
   1134  1.10       jtc 			new->mt_data = MNT_RDONLY;
   1135  1.10       jtc 			return (new);
   1136   1.1       cgd 		}
   1137   1.1       cgd 		break;
   1138   1.1       cgd 	}
   1139  1.13       cgd 
   1140  1.13       cgd 	new->flags = F_MTTYPE;
   1141  1.13       cgd 	new->c_data = arg;
   1142  1.13       cgd 	return (new);
   1143   1.1       cgd }
   1144  1.57       apb 
   1145   1.1       cgd /*
   1146   1.1       cgd  * -group gname functions --
   1147   1.1       cgd  *
   1148   1.1       cgd  *	True if the file belongs to the group gname.  If gname is numeric and
   1149   1.1       cgd  *	an equivalent of the getgrnam() function does not return a valid group
   1150   1.1       cgd  *	name, gname is taken as a group ID.
   1151   1.1       cgd  */
   1152  1.10       jtc int
   1153  1.57       apb f_group(PLAN *plan, FTSENT *entry)
   1154   1.1       cgd {
   1155  1.33     enami 
   1156  1.73  dholland 	COMPARE(entry->fts_statp->st_gid, plan->g_data);
   1157   1.1       cgd }
   1158  1.57       apb 
   1159   1.1       cgd PLAN *
   1160  1.74  pgoyette c_group(char ***argvp, int isok, char *opt)
   1161   1.1       cgd {
   1162  1.24  christos 	char *gname = **argvp;
   1163   1.1       cgd 	PLAN *new;
   1164   1.1       cgd 	struct group *g;
   1165   1.1       cgd 	gid_t gid;
   1166  1.57       apb 
   1167  1.24  christos 	(*argvp)++;
   1168   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1169   1.1       cgd 
   1170  1.73  dholland 	new = palloc(N_GROUP, f_group);
   1171   1.1       cgd 	g = getgrnam(gname);
   1172   1.1       cgd 	if (g == NULL) {
   1173  1.73  dholland 		if (atoi(gname) == 0 && gname[0] != '0' &&
   1174  1.73  dholland 		    strcmp(gname, "+0") && strcmp(gname, "-0"))
   1175  1.75  pgoyette 			errx(1, "%s: %s: no such group", opt, gname);
   1176  1.73  dholland 		gid = find_parsenum(new, "-group", gname, NULL);
   1177  1.73  dholland 
   1178  1.73  dholland 	} else {
   1179  1.73  dholland 		new->flags = F_EQUAL;
   1180   1.1       cgd 		gid = g->gr_gid;
   1181  1.73  dholland 	}
   1182  1.57       apb 
   1183   1.1       cgd 	new->g_data = gid;
   1184  1.10       jtc 	return (new);
   1185   1.1       cgd }
   1186   1.1       cgd 
   1187   1.1       cgd /*
   1188   1.1       cgd  * -inum n functions --
   1189   1.1       cgd  *
   1190   1.1       cgd  *	True if the file has inode # n.
   1191   1.1       cgd  */
   1192  1.10       jtc int
   1193  1.57       apb f_inum(PLAN *plan, FTSENT *entry)
   1194   1.1       cgd {
   1195  1.33     enami 
   1196   1.7   deraadt 	COMPARE(entry->fts_statp->st_ino, plan->i_data);
   1197   1.1       cgd }
   1198  1.57       apb 
   1199   1.1       cgd PLAN *
   1200  1.74  pgoyette c_inum(char ***argvp, int isok, char *opt)
   1201   1.1       cgd {
   1202  1.24  christos 	char *arg = **argvp;
   1203   1.1       cgd 	PLAN *new;
   1204  1.57       apb 
   1205  1.24  christos 	(*argvp)++;
   1206   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1207  1.57       apb 
   1208   1.1       cgd 	new = palloc(N_INUM, f_inum);
   1209  1.74  pgoyette 	new->i_data = find_parsenum(new, opt, arg, NULL);
   1210  1.10       jtc 	return (new);
   1211   1.1       cgd }
   1212  1.57       apb 
   1213   1.1       cgd /*
   1214   1.1       cgd  * -links n functions --
   1215   1.1       cgd  *
   1216   1.1       cgd  *	True if the file has n links.
   1217   1.1       cgd  */
   1218  1.10       jtc int
   1219  1.57       apb f_links(PLAN *plan, FTSENT *entry)
   1220   1.1       cgd {
   1221  1.33     enami 
   1222   1.7   deraadt 	COMPARE(entry->fts_statp->st_nlink, plan->l_data);
   1223   1.1       cgd }
   1224  1.57       apb 
   1225   1.1       cgd PLAN *
   1226  1.74  pgoyette c_links(char ***argvp, int isok, char *opt)
   1227   1.1       cgd {
   1228  1.24  christos 	char *arg = **argvp;
   1229   1.1       cgd 	PLAN *new;
   1230  1.57       apb 
   1231  1.24  christos 	(*argvp)++;
   1232   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1233  1.57       apb 
   1234   1.1       cgd 	new = palloc(N_LINKS, f_links);
   1235  1.74  pgoyette 	new->l_data = (nlink_t)find_parsenum(new, opt, arg, NULL);
   1236  1.10       jtc 	return (new);
   1237   1.1       cgd }
   1238  1.57       apb 
   1239   1.1       cgd /*
   1240   1.1       cgd  * -ls functions --
   1241   1.1       cgd  *
   1242   1.1       cgd  *	Always true - prints the current entry to stdout in "ls" format.
   1243   1.1       cgd  */
   1244  1.10       jtc int
   1245  1.57       apb f_ls(PLAN *plan, FTSENT *entry)
   1246   1.1       cgd {
   1247  1.33     enami 
   1248   1.7   deraadt 	printlong(entry->fts_path, entry->fts_accpath, entry->fts_statp);
   1249  1.10       jtc 	return (1);
   1250   1.1       cgd }
   1251  1.57       apb 
   1252   1.1       cgd PLAN *
   1253  1.74  pgoyette c_ls(char ***argvp, int isok, char *opt)
   1254   1.1       cgd {
   1255  1.33     enami 
   1256   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1257   1.1       cgd 	isoutput = 1;
   1258  1.57       apb 
   1259  1.10       jtc 	return (palloc(N_LS, f_ls));
   1260  1.10       jtc }
   1261  1.10       jtc 
   1262  1.41    provos /*
   1263  1.41    provos  * - maxdepth n functions --
   1264  1.41    provos  *
   1265  1.41    provos  *	True if the current search depth is less than or equal to the
   1266  1.41    provos  *	maximum depth specified
   1267  1.41    provos  */
   1268  1.41    provos int
   1269  1.57       apb f_maxdepth(PLAN *plan, FTSENT *entry)
   1270  1.41    provos {
   1271  1.41    provos 	extern FTS *tree;
   1272  1.41    provos 
   1273  1.41    provos 	if (entry->fts_level >= plan->max_data)
   1274  1.41    provos 		fts_set(tree, entry, FTS_SKIP);
   1275  1.41    provos 	return (entry->fts_level <= plan->max_data);
   1276  1.41    provos }
   1277  1.41    provos 
   1278  1.41    provos PLAN *
   1279  1.74  pgoyette c_maxdepth(char ***argvp, int isok, char *opt)
   1280  1.41    provos {
   1281  1.41    provos 	char *arg = **argvp;
   1282  1.41    provos 	PLAN *new;
   1283  1.41    provos 
   1284  1.41    provos 	(*argvp)++;
   1285  1.41    provos 	new = palloc(N_MAXDEPTH, f_maxdepth);
   1286  1.41    provos 	new->max_data = atoi(arg);
   1287  1.41    provos 	return (new);
   1288  1.41    provos }
   1289  1.41    provos 
   1290  1.41    provos /*
   1291  1.41    provos  * - mindepth n functions --
   1292  1.41    provos  *
   1293  1.41    provos  *	True if the current search depth is greater than or equal to the
   1294  1.41    provos  *	minimum depth specified
   1295  1.41    provos  */
   1296  1.41    provos int
   1297  1.57       apb f_mindepth(PLAN *plan, FTSENT *entry)
   1298  1.41    provos {
   1299  1.41    provos 	return (entry->fts_level >= plan->min_data);
   1300  1.41    provos }
   1301  1.41    provos 
   1302  1.41    provos PLAN *
   1303  1.74  pgoyette c_mindepth(char ***argvp, int isok, char *opt)
   1304  1.41    provos {
   1305  1.41    provos 	char *arg = **argvp;
   1306  1.41    provos 	PLAN *new;
   1307  1.41    provos 
   1308  1.41    provos 	(*argvp)++;
   1309  1.41    provos 	new = palloc(N_MINDEPTH, f_mindepth);
   1310  1.41    provos 	new->min_data = atoi(arg);
   1311  1.41    provos 	return (new);
   1312  1.41    provos }
   1313  1.72  uebayasi 
   1314  1.29    simonb /*
   1315  1.29    simonb  * -mmin n functions --
   1316  1.29    simonb  *
   1317  1.29    simonb  *	True if the difference between the file modification time and the
   1318  1.29    simonb  *	current time is n 24 hour periods.
   1319  1.29    simonb  */
   1320  1.29    simonb int
   1321  1.57       apb f_mmin(PLAN *plan, FTSENT *entry)
   1322  1.29    simonb {
   1323  1.29    simonb 	COMPARE((now - entry->fts_statp->st_mtime + SECSPERMIN - 1) /
   1324  1.29    simonb 	    SECSPERMIN, plan->t_data);
   1325  1.29    simonb }
   1326  1.57       apb 
   1327  1.29    simonb PLAN *
   1328  1.74  pgoyette c_mmin(char ***argvp, int isok, char *opt)
   1329  1.29    simonb {
   1330  1.29    simonb 	char *arg = **argvp;
   1331  1.29    simonb 	PLAN *new;
   1332  1.29    simonb 
   1333  1.29    simonb 	(*argvp)++;
   1334  1.29    simonb 	ftsoptions &= ~FTS_NOSTAT;
   1335  1.29    simonb 
   1336  1.29    simonb 	new = palloc(N_MMIN, f_mmin);
   1337  1.74  pgoyette 	new->t_data = find_parsenum(new, opt, arg, NULL);
   1338  1.29    simonb 	TIME_CORRECT(new, N_MMIN);
   1339  1.29    simonb 	return (new);
   1340  1.29    simonb }
   1341  1.72  uebayasi 
   1342  1.10       jtc /*
   1343  1.10       jtc  * -mtime n functions --
   1344  1.10       jtc  *
   1345  1.10       jtc  *	True if the difference between the file modification time and the
   1346  1.10       jtc  *	current time is n 24 hour periods.
   1347  1.10       jtc  */
   1348  1.10       jtc int
   1349  1.57       apb f_mtime(PLAN *plan, FTSENT *entry)
   1350  1.10       jtc {
   1351  1.10       jtc 	COMPARE((now - entry->fts_statp->st_mtime + SECSPERDAY - 1) /
   1352  1.10       jtc 	    SECSPERDAY, plan->t_data);
   1353  1.10       jtc }
   1354  1.57       apb 
   1355  1.10       jtc PLAN *
   1356  1.74  pgoyette c_mtime(char ***argvp, int isok, char *opt)
   1357  1.10       jtc {
   1358  1.24  christos 	char *arg = **argvp;
   1359  1.10       jtc 	PLAN *new;
   1360  1.10       jtc 
   1361  1.24  christos 	(*argvp)++;
   1362  1.10       jtc 	ftsoptions &= ~FTS_NOSTAT;
   1363  1.10       jtc 
   1364  1.10       jtc 	new = palloc(N_MTIME, f_mtime);
   1365  1.74  pgoyette 	new->t_data = find_parsenum(new, opt, arg, NULL);
   1366  1.10       jtc 	TIME_CORRECT(new, N_MTIME);
   1367  1.10       jtc 	return (new);
   1368   1.1       cgd }
   1369   1.1       cgd 
   1370   1.1       cgd /*
   1371   1.1       cgd  * -name functions --
   1372   1.1       cgd  *
   1373   1.1       cgd  *	True if the basename of the filename being examined
   1374   1.1       cgd  *	matches pattern using Pattern Matching Notation S3.14
   1375   1.1       cgd  */
   1376  1.10       jtc int
   1377  1.57       apb f_name(PLAN *plan, FTSENT *entry)
   1378   1.1       cgd {
   1379  1.33     enami 
   1380  1.10       jtc 	return (!fnmatch(plan->c_data, entry->fts_name, 0));
   1381   1.1       cgd }
   1382  1.57       apb 
   1383   1.1       cgd PLAN *
   1384  1.74  pgoyette c_name(char ***argvp, int isok, char *opt)
   1385   1.1       cgd {
   1386  1.24  christos 	char *pattern = **argvp;
   1387   1.1       cgd 	PLAN *new;
   1388   1.1       cgd 
   1389  1.24  christos 	(*argvp)++;
   1390   1.1       cgd 	new = palloc(N_NAME, f_name);
   1391  1.45    provos 	new->c_data = pattern;
   1392  1.45    provos 	return (new);
   1393  1.45    provos }
   1394  1.57       apb 
   1395  1.45    provos /*
   1396  1.45    provos  * -iname functions --
   1397  1.45    provos  *
   1398  1.45    provos  *	Similar to -name, but does case insensitive matching
   1399  1.57       apb  *
   1400  1.45    provos  */
   1401  1.45    provos int
   1402  1.57       apb f_iname(PLAN *plan, FTSENT *entry)
   1403  1.45    provos {
   1404  1.45    provos 	return (!fnmatch(plan->c_data, entry->fts_name, FNM_CASEFOLD));
   1405  1.45    provos }
   1406  1.57       apb 
   1407  1.45    provos PLAN *
   1408  1.74  pgoyette c_iname(char ***argvp, int isok, char *opt)
   1409  1.45    provos {
   1410  1.45    provos 	char *pattern = **argvp;
   1411  1.45    provos 	PLAN *new;
   1412  1.45    provos 
   1413  1.45    provos 	(*argvp)++;
   1414  1.45    provos 	new = palloc(N_INAME, f_iname);
   1415   1.1       cgd 	new->c_data = pattern;
   1416  1.10       jtc 	return (new);
   1417   1.1       cgd }
   1418  1.57       apb 
   1419   1.1       cgd /*
   1420   1.1       cgd  * -newer file functions --
   1421   1.1       cgd  *
   1422   1.1       cgd  *	True if the current file has been modified more recently
   1423  1.40    kleink  *	than the modification time of the file named by the pathname
   1424   1.1       cgd  *	file.
   1425   1.1       cgd  */
   1426  1.10       jtc int
   1427  1.57       apb f_newer(PLAN *plan, FTSENT *entry)
   1428   1.1       cgd {
   1429  1.33     enami 
   1430  1.72  uebayasi 	return timespeccmp(&entry->fts_statp->st_mtim, &plan->ts_data, >);
   1431   1.1       cgd }
   1432  1.57       apb 
   1433   1.1       cgd PLAN *
   1434  1.74  pgoyette c_newer(char ***argvp, int isok, char *opt)
   1435   1.1       cgd {
   1436  1.24  christos 	char *filename = **argvp;
   1437   1.1       cgd 	PLAN *new;
   1438   1.1       cgd 	struct stat sb;
   1439  1.57       apb 
   1440  1.24  christos 	(*argvp)++;
   1441   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1442   1.1       cgd 
   1443   1.1       cgd 	if (stat(filename, &sb))
   1444  1.74  pgoyette 		err(1, "%s: %s", opt, filename);
   1445   1.1       cgd 	new = palloc(N_NEWER, f_newer);
   1446  1.72  uebayasi 	new->ts_data = sb.st_mtim;
   1447  1.10       jtc 	return (new);
   1448   1.1       cgd }
   1449  1.57       apb 
   1450   1.1       cgd /*
   1451   1.1       cgd  * -nogroup functions --
   1452   1.1       cgd  *
   1453   1.1       cgd  *	True if file belongs to a user ID for which the equivalent
   1454   1.1       cgd  *	of the getgrnam() 9.2.1 [POSIX.1] function returns NULL.
   1455   1.1       cgd  */
   1456  1.10       jtc int
   1457  1.57       apb f_nogroup(PLAN *plan, FTSENT *entry)
   1458   1.1       cgd {
   1459  1.22       mrg 
   1460  1.12    andrew 	return (group_from_gid(entry->fts_statp->st_gid, 1) ? 0 : 1);
   1461   1.1       cgd }
   1462  1.57       apb 
   1463   1.1       cgd PLAN *
   1464  1.74  pgoyette c_nogroup(char ***argvp, int isok, char *opt)
   1465   1.1       cgd {
   1466   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1467   1.1       cgd 
   1468  1.10       jtc 	return (palloc(N_NOGROUP, f_nogroup));
   1469   1.1       cgd }
   1470  1.57       apb 
   1471   1.1       cgd /*
   1472   1.1       cgd  * -nouser functions --
   1473   1.1       cgd  *
   1474   1.1       cgd  *	True if file belongs to a user ID for which the equivalent
   1475   1.1       cgd  *	of the getpwuid() 9.2.2 [POSIX.1] function returns NULL.
   1476   1.1       cgd  */
   1477  1.10       jtc int
   1478  1.57       apb f_nouser(PLAN *plan, FTSENT *entry)
   1479   1.1       cgd {
   1480  1.22       mrg 
   1481  1.12    andrew 	return (user_from_uid(entry->fts_statp->st_uid, 1) ? 0 : 1);
   1482   1.1       cgd }
   1483  1.57       apb 
   1484   1.1       cgd PLAN *
   1485  1.74  pgoyette c_nouser(char ***argvp, int isok, char *opt)
   1486   1.1       cgd {
   1487   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1488   1.1       cgd 
   1489  1.10       jtc 	return (palloc(N_NOUSER, f_nouser));
   1490  1.10       jtc }
   1491  1.57       apb 
   1492  1.10       jtc /*
   1493  1.10       jtc  * -path functions --
   1494  1.10       jtc  *
   1495  1.10       jtc  *	True if the path of the filename being examined
   1496  1.10       jtc  *	matches pattern using Pattern Matching Notation S3.14
   1497  1.10       jtc  */
   1498  1.10       jtc int
   1499  1.57       apb f_path(PLAN *plan, FTSENT *entry)
   1500  1.10       jtc {
   1501  1.33     enami 
   1502  1.10       jtc 	return (!fnmatch(plan->c_data, entry->fts_path, 0));
   1503  1.10       jtc }
   1504  1.57       apb 
   1505  1.10       jtc PLAN *
   1506  1.74  pgoyette c_path(char ***argvp, int isok, char *opt)
   1507  1.10       jtc {
   1508  1.24  christos 	char *pattern = **argvp;
   1509  1.10       jtc 	PLAN *new;
   1510  1.10       jtc 
   1511  1.24  christos 	(*argvp)++;
   1512  1.10       jtc 	new = palloc(N_NAME, f_path);
   1513  1.10       jtc 	new->c_data = pattern;
   1514  1.10       jtc 	return (new);
   1515   1.1       cgd }
   1516  1.57       apb 
   1517   1.1       cgd /*
   1518   1.1       cgd  * -perm functions --
   1519   1.1       cgd  *
   1520   1.1       cgd  *	The mode argument is used to represent file mode bits.  If it starts
   1521   1.1       cgd  *	with a leading digit, it's treated as an octal mode, otherwise as a
   1522   1.1       cgd  *	symbolic mode.
   1523   1.1       cgd  */
   1524  1.10       jtc int
   1525  1.57       apb f_perm(PLAN *plan, FTSENT *entry)
   1526   1.1       cgd {
   1527   1.1       cgd 	mode_t mode;
   1528   1.1       cgd 
   1529   1.7   deraadt 	mode = entry->fts_statp->st_mode &
   1530   1.1       cgd 	    (S_ISUID|S_ISGID|S_ISTXT|S_IRWXU|S_IRWXG|S_IRWXO);
   1531  1.10       jtc 	if (plan->flags == F_ATLEAST)
   1532  1.10       jtc 		return ((plan->m_data | mode) == mode);
   1533   1.1       cgd 	else
   1534  1.10       jtc 		return (mode == plan->m_data);
   1535   1.1       cgd 	/* NOTREACHED */
   1536   1.1       cgd }
   1537  1.57       apb 
   1538   1.1       cgd PLAN *
   1539  1.74  pgoyette c_perm(char ***argvp, int isok, char *opt)
   1540   1.1       cgd {
   1541  1.24  christos 	char *perm = **argvp;
   1542   1.1       cgd 	PLAN *new;
   1543   1.1       cgd 	mode_t *set;
   1544   1.1       cgd 
   1545  1.24  christos 	(*argvp)++;
   1546   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1547   1.1       cgd 
   1548   1.1       cgd 	new = palloc(N_PERM, f_perm);
   1549   1.1       cgd 
   1550   1.1       cgd 	if (*perm == '-') {
   1551  1.10       jtc 		new->flags = F_ATLEAST;
   1552   1.1       cgd 		++perm;
   1553   1.1       cgd 	}
   1554   1.1       cgd 
   1555   1.1       cgd 	if ((set = setmode(perm)) == NULL)
   1556  1.74  pgoyette 		err(1, "%s: Cannot set file mode `%s'", opt, perm);
   1557   1.1       cgd 
   1558   1.1       cgd 	new->m_data = getmode(set, 0);
   1559  1.34     enami 	free(set);
   1560  1.10       jtc 	return (new);
   1561   1.1       cgd }
   1562  1.57       apb 
   1563   1.1       cgd /*
   1564   1.1       cgd  * -print functions --
   1565   1.1       cgd  *
   1566   1.1       cgd  *	Always true, causes the current pathame to be written to
   1567   1.1       cgd  *	standard output.
   1568   1.1       cgd  */
   1569  1.10       jtc int
   1570  1.57       apb f_print(PLAN *plan, FTSENT *entry)
   1571   1.1       cgd {
   1572  1.33     enami 
   1573   1.1       cgd 	(void)printf("%s\n", entry->fts_path);
   1574  1.22       mrg 	return (1);
   1575   1.1       cgd }
   1576   1.9       jtc 
   1577  1.21     lukem int
   1578  1.57       apb f_print0(PLAN *plan, FTSENT *entry)
   1579   1.9       jtc {
   1580  1.33     enami 
   1581   1.9       jtc 	(void)fputs(entry->fts_path, stdout);
   1582   1.9       jtc 	(void)fputc('\0', stdout);
   1583  1.22       mrg 	return (1);
   1584   1.9       jtc }
   1585  1.28     lukem 
   1586  1.28     lukem int
   1587  1.57       apb f_printx(PLAN *plan, FTSENT *entry)
   1588  1.28     lukem {
   1589  1.28     lukem 	char *cp;
   1590  1.28     lukem 
   1591  1.28     lukem 	for (cp = entry->fts_path; *cp; cp++) {
   1592  1.28     lukem 		if (*cp == '\'' || *cp == '\"' || *cp == ' ' ||
   1593  1.42      matt 		    *cp == '$'  || *cp == '`'  ||
   1594  1.28     lukem 		    *cp == '\t' || *cp == '\n' || *cp == '\\')
   1595  1.28     lukem 			fputc('\\', stdout);
   1596  1.28     lukem 
   1597  1.28     lukem 		fputc(*cp, stdout);
   1598  1.28     lukem 	}
   1599  1.28     lukem 
   1600  1.28     lukem 	fputc('\n', stdout);
   1601  1.33     enami 	return (1);
   1602  1.28     lukem }
   1603  1.57       apb 
   1604   1.1       cgd PLAN *
   1605  1.74  pgoyette c_print(char ***argvp, int isok, char *opt)
   1606   1.1       cgd {
   1607  1.33     enami 
   1608   1.1       cgd 	isoutput = 1;
   1609   1.1       cgd 
   1610  1.22       mrg 	return (palloc(N_PRINT, f_print));
   1611   1.9       jtc }
   1612   1.9       jtc 
   1613   1.9       jtc PLAN *
   1614  1.74  pgoyette c_print0(char ***argvp, int isok, char *opt)
   1615   1.9       jtc {
   1616  1.33     enami 
   1617   1.9       jtc 	isoutput = 1;
   1618   1.9       jtc 
   1619  1.22       mrg 	return (palloc(N_PRINT0, f_print0));
   1620  1.28     lukem }
   1621  1.28     lukem 
   1622  1.28     lukem PLAN *
   1623  1.74  pgoyette c_printx(char ***argvp, int isok, char *opt)
   1624  1.28     lukem {
   1625  1.33     enami 
   1626  1.28     lukem 	isoutput = 1;
   1627  1.28     lukem 
   1628  1.33     enami 	return (palloc(N_PRINTX, f_printx));
   1629   1.1       cgd }
   1630  1.57       apb 
   1631   1.1       cgd /*
   1632   1.1       cgd  * -prune functions --
   1633   1.1       cgd  *
   1634   1.1       cgd  *	Prune a portion of the hierarchy.
   1635   1.1       cgd  */
   1636  1.10       jtc int
   1637  1.57       apb f_prune(PLAN *plan, FTSENT *entry)
   1638   1.1       cgd {
   1639   1.1       cgd 	if (fts_set(tree, entry, FTS_SKIP))
   1640  1.10       jtc 		err(1, "%s", entry->fts_path);
   1641  1.10       jtc 	return (1);
   1642   1.1       cgd }
   1643  1.57       apb 
   1644   1.1       cgd PLAN *
   1645  1.74  pgoyette c_prune(char ***argvp, int isok, char *opt)
   1646   1.1       cgd {
   1647  1.33     enami 
   1648  1.10       jtc 	return (palloc(N_PRUNE, f_prune));
   1649   1.1       cgd }
   1650  1.31       cgd 
   1651  1.31       cgd /*
   1652  1.31       cgd  * -regex regexp (and related) functions --
   1653  1.31       cgd  *
   1654  1.31       cgd  *	True if the complete file path matches the regular expression regexp.
   1655  1.31       cgd  *	For -regex, regexp is a case-sensitive (basic) regular expression.
   1656  1.31       cgd  *	For -iregex, regexp is a case-insensitive (basic) regular expression.
   1657  1.31       cgd  */
   1658  1.31       cgd int
   1659  1.57       apb f_regex(PLAN *plan, FTSENT *entry)
   1660  1.31       cgd {
   1661  1.31       cgd 
   1662  1.31       cgd 	return (regexec(&plan->regexp_data, entry->fts_path, 0, NULL, 0) == 0);
   1663  1.31       cgd }
   1664  1.57       apb 
   1665  1.31       cgd static PLAN *
   1666  1.64    daniel c_regex_common(char ***argvp, int isok, enum ntype type, bool icase)
   1667  1.31       cgd {
   1668  1.31       cgd 	char errbuf[LINE_MAX];
   1669  1.31       cgd 	regex_t reg;
   1670  1.31       cgd 	char *regexp = **argvp;
   1671  1.31       cgd 	char *lineregexp;
   1672  1.31       cgd 	PLAN *new;
   1673  1.31       cgd 	int rv;
   1674  1.59  christos 	size_t len;
   1675  1.31       cgd 
   1676  1.31       cgd 	(*argvp)++;
   1677  1.31       cgd 
   1678  1.59  christos 	len = strlen(regexp) + 1 + 6;
   1679  1.59  christos 	lineregexp = malloc(len);	/* max needed */
   1680  1.59  christos 	if (lineregexp == NULL)
   1681  1.59  christos 		err(1, NULL);
   1682  1.59  christos 	snprintf(lineregexp, len, "^%s(%s%s)$",
   1683  1.31       cgd 	    (regcomp_flags & REG_EXTENDED) ? "" : "\\", regexp,
   1684  1.31       cgd 	    (regcomp_flags & REG_EXTENDED) ? "" : "\\");
   1685  1.64    daniel 	rv = regcomp(&reg, lineregexp, REG_NOSUB|regcomp_flags|
   1686  1.64    daniel 	    (icase ? REG_ICASE : 0));
   1687  1.59  christos 	free(lineregexp);
   1688  1.31       cgd 	if (rv != 0) {
   1689  1.31       cgd 		regerror(rv, &reg, errbuf, sizeof errbuf);
   1690  1.31       cgd 		errx(1, "regexp %s: %s", regexp, errbuf);
   1691  1.31       cgd 	}
   1692  1.57       apb 
   1693  1.31       cgd 	new = palloc(type, f_regex);
   1694  1.31       cgd 	new->regexp_data = reg;
   1695  1.31       cgd 	return (new);
   1696  1.31       cgd }
   1697  1.31       cgd 
   1698  1.31       cgd PLAN *
   1699  1.74  pgoyette c_regex(char ***argvp, int isok, char *opt)
   1700  1.31       cgd {
   1701  1.31       cgd 
   1702  1.64    daniel 	return (c_regex_common(argvp, isok, N_REGEX, false));
   1703  1.31       cgd }
   1704  1.31       cgd 
   1705  1.31       cgd PLAN *
   1706  1.74  pgoyette c_iregex(char ***argvp, int isok, char *opt)
   1707  1.31       cgd {
   1708  1.31       cgd 
   1709  1.64    daniel 	return (c_regex_common(argvp, isok, N_IREGEX, true));
   1710  1.31       cgd }
   1711  1.31       cgd 
   1712   1.1       cgd /*
   1713  1.74  pgoyette  * -since "timestamp" functions --
   1714  1.74  pgoyette  *
   1715  1.74  pgoyette  *	True if the file modification time is greater than the timestamp value
   1716  1.74  pgoyette  */
   1717  1.74  pgoyette int
   1718  1.74  pgoyette f_since(PLAN *plan, FTSENT *entry)
   1719  1.74  pgoyette {
   1720  1.74  pgoyette 	COMPARE(entry->fts_statp->st_mtime, plan->t_data);
   1721  1.74  pgoyette }
   1722  1.74  pgoyette 
   1723  1.74  pgoyette PLAN *
   1724  1.74  pgoyette c_since(char ***argvp, int isok, char *opt)
   1725  1.74  pgoyette {
   1726  1.74  pgoyette 	char *arg = **argvp;
   1727  1.74  pgoyette 	PLAN *new;
   1728  1.74  pgoyette 
   1729  1.74  pgoyette 	(*argvp)++;
   1730  1.74  pgoyette 	ftsoptions &= ~FTS_NOSTAT;
   1731  1.74  pgoyette 
   1732  1.74  pgoyette 	new = palloc(N_SINCE, f_since);
   1733  1.74  pgoyette 	new->t_data = find_parsedate(new, opt, arg);
   1734  1.74  pgoyette 	new->flags = F_GREATER;
   1735  1.74  pgoyette 	return (new);
   1736  1.74  pgoyette }
   1737  1.74  pgoyette 
   1738  1.74  pgoyette /*
   1739   1.1       cgd  * -size n[c] functions --
   1740   1.1       cgd  *
   1741   1.1       cgd  *	True if the file size in bytes, divided by an implementation defined
   1742   1.1       cgd  *	value and rounded up to the next integer, is n.  If n is followed by
   1743   1.1       cgd  *	a c, the size is in bytes.
   1744   1.1       cgd  */
   1745   1.1       cgd #define	FIND_SIZE	512
   1746   1.1       cgd static int divsize = 1;
   1747   1.1       cgd 
   1748  1.10       jtc int
   1749  1.57       apb f_size(PLAN *plan, FTSENT *entry)
   1750   1.1       cgd {
   1751   1.1       cgd 	off_t size;
   1752   1.1       cgd 
   1753   1.7   deraadt 	size = divsize ? (entry->fts_statp->st_size + FIND_SIZE - 1) /
   1754   1.7   deraadt 	    FIND_SIZE : entry->fts_statp->st_size;
   1755   1.1       cgd 	COMPARE(size, plan->o_data);
   1756   1.1       cgd }
   1757  1.57       apb 
   1758   1.1       cgd PLAN *
   1759  1.74  pgoyette c_size(char ***argvp, int isok, char *opt)
   1760   1.1       cgd {
   1761  1.24  christos 	char *arg = **argvp;
   1762   1.1       cgd 	PLAN *new;
   1763   1.1       cgd 	char endch;
   1764  1.57       apb 
   1765  1.24  christos 	(*argvp)++;
   1766   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1767   1.1       cgd 
   1768   1.1       cgd 	new = palloc(N_SIZE, f_size);
   1769   1.8       cgd 	endch = 'c';
   1770  1.74  pgoyette 	new->o_data = find_parsenum(new, opt, arg, &endch);
   1771   1.1       cgd 	if (endch == 'c')
   1772   1.1       cgd 		divsize = 0;
   1773  1.10       jtc 	return (new);
   1774   1.1       cgd }
   1775  1.57       apb 
   1776   1.1       cgd /*
   1777   1.1       cgd  * -type c functions --
   1778   1.1       cgd  *
   1779  1.22       mrg  *	True if the type of the file is c, where c is b, c, d, p, f or w
   1780  1.22       mrg  *	for block special file, character special file, directory, FIFO,
   1781  1.22       mrg  *	regular file or whiteout respectively.
   1782   1.1       cgd  */
   1783  1.10       jtc int
   1784  1.57       apb f_type(PLAN *plan, FTSENT *entry)
   1785   1.1       cgd {
   1786  1.33     enami 
   1787  1.10       jtc 	return ((entry->fts_statp->st_mode & S_IFMT) == plan->m_data);
   1788   1.1       cgd }
   1789  1.57       apb 
   1790   1.1       cgd PLAN *
   1791  1.74  pgoyette c_type(char ***argvp, int isok, char *opt)
   1792   1.1       cgd {
   1793  1.24  christos 	char *typestring = **argvp;
   1794   1.1       cgd 	PLAN *new;
   1795  1.25  wsanchez 	mode_t  mask = (mode_t)0;
   1796  1.57       apb 
   1797  1.24  christos 	(*argvp)++;
   1798   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1799   1.1       cgd 
   1800   1.1       cgd 	switch (typestring[0]) {
   1801   1.1       cgd 	case 'b':
   1802   1.1       cgd 		mask = S_IFBLK;
   1803   1.1       cgd 		break;
   1804   1.1       cgd 	case 'c':
   1805   1.1       cgd 		mask = S_IFCHR;
   1806   1.1       cgd 		break;
   1807   1.1       cgd 	case 'd':
   1808   1.1       cgd 		mask = S_IFDIR;
   1809   1.1       cgd 		break;
   1810   1.1       cgd 	case 'f':
   1811   1.1       cgd 		mask = S_IFREG;
   1812   1.1       cgd 		break;
   1813   1.1       cgd 	case 'l':
   1814   1.1       cgd 		mask = S_IFLNK;
   1815   1.1       cgd 		break;
   1816   1.1       cgd 	case 'p':
   1817   1.1       cgd 		mask = S_IFIFO;
   1818   1.1       cgd 		break;
   1819   1.1       cgd 	case 's':
   1820   1.1       cgd 		mask = S_IFSOCK;
   1821   1.1       cgd 		break;
   1822  1.49    atatat #ifdef S_IFWHT
   1823  1.49    atatat 	case 'W':
   1824  1.22       mrg 	case 'w':
   1825  1.22       mrg 		mask = S_IFWHT;
   1826  1.49    atatat #ifdef FTS_WHITEOUT
   1827  1.22       mrg 		ftsoptions |= FTS_WHITEOUT;
   1828  1.49    atatat #endif
   1829  1.22       mrg 		break;
   1830  1.49    atatat #endif /* S_IFWHT */
   1831   1.1       cgd 	default:
   1832  1.74  pgoyette 		errx(1, "%s: %s: unknown type", opt, typestring);
   1833   1.1       cgd 	}
   1834  1.57       apb 
   1835   1.1       cgd 	new = palloc(N_TYPE, f_type);
   1836   1.1       cgd 	new->m_data = mask;
   1837  1.10       jtc 	return (new);
   1838   1.1       cgd }
   1839  1.57       apb 
   1840   1.1       cgd /*
   1841   1.1       cgd  * -user uname functions --
   1842   1.1       cgd  *
   1843   1.1       cgd  *	True if the file belongs to the user uname.  If uname is numeric and
   1844   1.1       cgd  *	an equivalent of the getpwnam() S9.2.2 [POSIX.1] function does not
   1845   1.1       cgd  *	return a valid user name, uname is taken as a user ID.
   1846   1.1       cgd  */
   1847  1.10       jtc int
   1848  1.57       apb f_user(PLAN *plan, FTSENT *entry)
   1849   1.1       cgd {
   1850  1.33     enami 
   1851  1.43     jhawk 	COMPARE(entry->fts_statp->st_uid, plan->u_data);
   1852   1.1       cgd }
   1853  1.57       apb 
   1854   1.1       cgd PLAN *
   1855  1.74  pgoyette c_user(char ***argvp, int isok, char *opt)
   1856   1.1       cgd {
   1857  1.24  christos 	char *username = **argvp;
   1858   1.1       cgd 	PLAN *new;
   1859   1.1       cgd 	struct passwd *p;
   1860   1.1       cgd 	uid_t uid;
   1861  1.57       apb 
   1862  1.24  christos 	(*argvp)++;
   1863   1.1       cgd 	ftsoptions &= ~FTS_NOSTAT;
   1864   1.1       cgd 
   1865  1.43     jhawk 	new = palloc(N_USER, f_user);
   1866   1.1       cgd 	p = getpwnam(username);
   1867   1.1       cgd 	if (p == NULL) {
   1868  1.43     jhawk 		if (atoi(username) == 0 && username[0] != '0' &&
   1869  1.43     jhawk 		    strcmp(username, "+0") && strcmp(username, "-0"))
   1870  1.74  pgoyette 			errx(1, "%s: %s: no such user", opt, username);
   1871  1.74  pgoyette 		uid = find_parsenum(new, opt, username, NULL);
   1872  1.43     jhawk 
   1873  1.43     jhawk 	} else {
   1874  1.56       apb 		new->flags = F_EQUAL;
   1875   1.1       cgd 		uid = p->pw_uid;
   1876  1.43     jhawk 	}
   1877   1.1       cgd 
   1878   1.1       cgd 	new->u_data = uid;
   1879  1.10       jtc 	return (new);
   1880   1.1       cgd }
   1881  1.57       apb 
   1882   1.1       cgd /*
   1883   1.1       cgd  * -xdev functions --
   1884   1.1       cgd  *
   1885  1.61  christos  *	Always true, causes find not to descend past directories that have a
   1886   1.1       cgd  *	different device ID (st_dev, see stat() S5.6.2 [POSIX.1])
   1887   1.1       cgd  */
   1888   1.1       cgd PLAN *
   1889  1.74  pgoyette c_xdev(char ***argvp, int isok, char *opt)
   1890   1.1       cgd {
   1891   1.1       cgd 	ftsoptions |= FTS_XDEV;
   1892   1.1       cgd 
   1893  1.10       jtc 	return (palloc(N_XDEV, f_always_true));
   1894   1.1       cgd }
   1895   1.1       cgd 
   1896   1.1       cgd /*
   1897   1.1       cgd  * ( expression ) functions --
   1898   1.1       cgd  *
   1899   1.1       cgd  *	True if expression is true.
   1900   1.1       cgd  */
   1901  1.10       jtc int
   1902  1.57       apb f_expr(PLAN *plan, FTSENT *entry)
   1903   1.1       cgd {
   1904  1.21     lukem 	PLAN *p;
   1905  1.21     lukem 	int state;
   1906   1.1       cgd 
   1907  1.21     lukem 	state = 0;
   1908   1.1       cgd 	for (p = plan->p_data[0];
   1909   1.1       cgd 	    p && (state = (p->eval)(p, entry)); p = p->next);
   1910  1.10       jtc 	return (state);
   1911   1.1       cgd }
   1912  1.57       apb 
   1913   1.1       cgd /*
   1914   1.1       cgd  * N_OPENPAREN and N_CLOSEPAREN nodes are temporary place markers.  They are
   1915   1.1       cgd  * eliminated during phase 2 of find_formplan() --- the '(' node is converted
   1916   1.1       cgd  * to a N_EXPR node containing the expression and the ')' node is discarded.
   1917   1.1       cgd  */
   1918   1.1       cgd PLAN *
   1919  1.74  pgoyette c_openparen(char ***argvp, int isok, char *opt)
   1920   1.1       cgd {
   1921  1.33     enami 
   1922  1.57       apb 	return (palloc(N_OPENPAREN, (int (*)(PLAN *, FTSENT *))-1));
   1923   1.1       cgd }
   1924  1.57       apb 
   1925   1.1       cgd PLAN *
   1926  1.74  pgoyette c_closeparen(char ***argvp, int isok, char *opt)
   1927   1.1       cgd {
   1928  1.33     enami 
   1929  1.57       apb 	return (palloc(N_CLOSEPAREN, (int (*)(PLAN *, FTSENT *))-1));
   1930   1.1       cgd }
   1931  1.57       apb 
   1932   1.1       cgd /*
   1933   1.1       cgd  * ! expression functions --
   1934   1.1       cgd  *
   1935   1.1       cgd  *	Negation of a primary; the unary NOT operator.
   1936   1.1       cgd  */
   1937  1.10       jtc int
   1938  1.57       apb f_not(PLAN *plan, FTSENT *entry)
   1939   1.1       cgd {
   1940  1.21     lukem 	PLAN *p;
   1941  1.21     lukem 	int state;
   1942   1.1       cgd 
   1943  1.21     lukem 	state = 0;
   1944   1.1       cgd 	for (p = plan->p_data[0];
   1945   1.1       cgd 	    p && (state = (p->eval)(p, entry)); p = p->next);
   1946  1.10       jtc 	return (!state);
   1947   1.1       cgd }
   1948  1.57       apb 
   1949   1.1       cgd PLAN *
   1950  1.74  pgoyette c_not(char ***argvp, int isok, char *opt)
   1951   1.1       cgd {
   1952  1.33     enami 
   1953  1.10       jtc 	return (palloc(N_NOT, f_not));
   1954   1.1       cgd }
   1955  1.57       apb 
   1956   1.1       cgd /*
   1957   1.1       cgd  * expression -o expression functions --
   1958   1.1       cgd  *
   1959   1.1       cgd  *	Alternation of primaries; the OR operator.  The second expression is
   1960   1.1       cgd  * not evaluated if the first expression is true.
   1961   1.1       cgd  */
   1962  1.10       jtc int
   1963  1.57       apb f_or(PLAN *plan, FTSENT *entry)
   1964   1.1       cgd {
   1965  1.21     lukem 	PLAN *p;
   1966  1.21     lukem 	int state;
   1967   1.1       cgd 
   1968  1.21     lukem 	state = 0;
   1969   1.1       cgd 	for (p = plan->p_data[0];
   1970   1.1       cgd 	    p && (state = (p->eval)(p, entry)); p = p->next);
   1971   1.1       cgd 
   1972   1.1       cgd 	if (state)
   1973  1.10       jtc 		return (1);
   1974   1.1       cgd 
   1975   1.1       cgd 	for (p = plan->p_data[1];
   1976   1.1       cgd 	    p && (state = (p->eval)(p, entry)); p = p->next);
   1977  1.10       jtc 	return (state);
   1978   1.1       cgd }
   1979   1.1       cgd 
   1980   1.1       cgd PLAN *
   1981  1.74  pgoyette c_or(char ***argvp, int isok, char *opt)
   1982   1.1       cgd {
   1983  1.33     enami 
   1984  1.10       jtc 	return (palloc(N_OR, f_or));
   1985   1.1       cgd }
   1986   1.1       cgd 
   1987  1.24  christos PLAN *
   1988  1.74  pgoyette c_null(char ***argvp, int isok, char *opt)
   1989  1.24  christos {
   1990  1.33     enami 
   1991  1.33     enami 	return (NULL);
   1992  1.24  christos }
   1993  1.24  christos 
   1994  1.56       apb 
   1995  1.56       apb /*
   1996  1.56       apb  * plan_cleanup --
   1997  1.56       apb  *	Check and see if the specified plan has any residual state,
   1998  1.56       apb  *	and if so, clean it up as appropriate.
   1999  1.56       apb  *
   2000  1.56       apb  *	At the moment, only N_EXEC has state. Two kinds: 1)
   2001  1.56       apb  * 	lists of files to feed to subprocesses 2) State on exit
   2002  1.56       apb  *	statusses of past subprocesses.
   2003  1.56       apb  */
   2004  1.56       apb /* ARGSUSED1 */
   2005  1.56       apb int
   2006  1.57       apb plan_cleanup(PLAN *plan, void *arg)
   2007  1.56       apb {
   2008  1.56       apb 	if (plan->type==N_EXEC && plan->ep_narg)
   2009  1.56       apb 		run_f_exec(plan);
   2010  1.56       apb 
   2011  1.56       apb 	return plan->ep_rval;		/* Passed save exit-status up chain */
   2012  1.56       apb }
   2013  1.56       apb 
   2014   1.1       cgd static PLAN *
   2015  1.57       apb palloc(enum ntype t, int (*f)(PLAN *, FTSENT *))
   2016   1.1       cgd {
   2017   1.1       cgd 	PLAN *new;
   2018   1.1       cgd 
   2019  1.22       mrg 	if ((new = malloc(sizeof(PLAN))) == NULL)
   2020  1.32  drochner 		err(1, NULL);
   2021  1.58     tacha 	memset(new, 0, sizeof(PLAN));
   2022  1.22       mrg 	new->type = t;
   2023  1.22       mrg 	new->eval = f;
   2024  1.22       mrg 	return (new);
   2025   1.1       cgd }
   2026