xref: /freebsd/usr.sbin/lpr/lpc/cmds.c (revision 8fa113e5fc65fe6abc757f0089f477a87ee4d185)
1 /*
2  * Copyright (c) 1983, 1993
3  *	The Regents of the University of California.  All rights reserved.
4  *
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  * 3. All advertising materials mentioning features or use of this software
15  *    must display the following acknowledgement:
16  *	This product includes software developed by the University of
17  *	California, Berkeley and its contributors.
18  * 4. Neither the name of the University nor the names of its contributors
19  *    may be used to endorse or promote products derived from this software
20  *    without specific prior written permission.
21  *
22  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32  * SUCH DAMAGE.
33  */
34 
35 #ifndef lint
36 static const char copyright[] =
37 "@(#) Copyright (c) 1983, 1993\n\
38 	The Regents of the University of California.  All rights reserved.\n";
39 #endif /* not lint */
40 
41 #ifndef lint
42 /*
43 static char sccsid[] = "@(#)cmds.c	8.2 (Berkeley) 4/28/95";
44 */
45 static const char rcsid[] =
46   "$FreeBSD$";
47 #endif /* not lint */
48 
49 /*
50  * lpc -- line printer control program -- commands:
51  */
52 
53 #include <sys/param.h>
54 #include <sys/time.h>
55 #include <sys/stat.h>
56 #include <sys/file.h>
57 
58 #include <signal.h>
59 #include <fcntl.h>
60 #include <errno.h>
61 #include <dirent.h>
62 #include <unistd.h>
63 #include <stdlib.h>
64 #include <stdio.h>
65 #include <ctype.h>
66 #include <string.h>
67 #include "lp.h"
68 #include "lp.local.h"
69 #include "lpc.h"
70 #include "extern.h"
71 #include "pathnames.h"
72 
73 static void	 abortpr(struct printer *_pp, int _dis);
74 static int	 doarg(char *_job);
75 static int	 doselect(struct dirent *_d);
76 static void	 putmsg(struct printer *_pp, int _argc, char **_argv);
77 static int	 sortq(const void *_a, const void *_b);
78 static void	 startpr(struct printer *_pp, int _chgenable);
79 static int	 touch(struct jobqueue *_jq);
80 static void	 unlinkf(char *_name);
81 static void	 upstat(struct printer *_pp, const char *_msg);
82 static void	 wrapup_clean(int _laststatus);
83 
84 /*
85  * generic framework for commands which operate on all or a specified
86  * set of printers
87  */
88 enum	qsel_val {			/* how a given ptr was selected */
89 	QSEL_UNKNOWN = -1,		/* ... not selected yet */
90 	QSEL_BYNAME = 0,		/* ... user specifed it by name */
91 	QSEL_ALL = 1			/* ... user wants "all" printers */
92 					/*     (with more to come)    */
93 };
94 
95 static enum qsel_val generic_qselect;	/* indicates how ptr was selected */
96 static int generic_initerr;		/* result of initrtn processing */
97 static char *generic_nullarg;
98 static void (*generic_wrapup)(int _last_status);   /* perform rtn wrap-up */
99 
100 void
101 generic(void (*specificrtn)(struct printer *_pp),
102     void (*initrtn)(int _argc, char *_argv[]), int argc, char *argv[])
103 {
104 	int cmdstatus, more, targc;
105 	struct printer myprinter, *pp;
106 	char **targv;
107 
108 	if (argc == 1) {
109 		printf("Usage: %s {all | printer ...}\n", argv[0]);
110 		return;
111 	}
112 
113 	/*
114 	 * The initialization routine for a command might set a generic
115 	 * "wrapup" routine, which should be called after processing all
116 	 * the printers in the command.  This might print summary info.
117 	 *
118 	 * Note that the initialization routine may also parse (and
119 	 * nullify) some of the parameters given on the command, leaving
120 	 * only the parameters which have to do with printer names.
121 	 */
122 	pp = &myprinter;
123 	generic_wrapup = NULL;
124 	generic_qselect = QSEL_UNKNOWN;
125 	cmdstatus = 0;
126 	/* this just needs to be a distinct value of type 'char *' */
127 	if (generic_nullarg == NULL)
128 		generic_nullarg = strdup("");
129 
130 	/* call initialization routine, if there is one for this cmd */
131 	if (initrtn != NULL) {
132 		generic_initerr = 0;
133 		(*initrtn)(argc, argv);
134 		if (generic_initerr)
135 			return;
136 		/* skip any initial arguments null-ified by initrtn */
137 		targc = argc;
138 		targv = argv;
139 		while (--targc) {
140 			if (targv[1] != generic_nullarg)
141 				break;
142 			++targv;
143 		}
144 		if (targv != argv) {
145 			targv[0] = argv[0];	/* copy the command-name */
146 			argv = targv;
147 			argc = targc + 1;
148 		}
149 	}
150 
151 	if (argc == 2 && strcmp(argv[1], "all") == 0) {
152 		generic_qselect = QSEL_ALL;
153 		more = firstprinter(pp, &cmdstatus);
154 		if (cmdstatus)
155 			goto looperr;
156 		while (more) {
157 			(*specificrtn)(pp);
158 			do {
159 				more = nextprinter(pp, &cmdstatus);
160 looperr:
161 				switch (cmdstatus) {
162 				case PCAPERR_TCOPEN:
163 					printf("warning: %s: unresolved "
164 					       "tc= reference(s) ",
165 					       pp->printer);
166 				case PCAPERR_SUCCESS:
167 					break;
168 				default:
169 					fatal(pp, "%s", pcaperr(cmdstatus));
170 				}
171 			} while (more && cmdstatus);
172 		}
173 		goto wrapup;
174 	}
175 
176 	generic_qselect = QSEL_BYNAME;		/* specifically-named ptrs */
177 	while (--argc) {
178 		++argv;
179 		if (*argv == generic_nullarg)
180 			continue;
181 		init_printer(pp);
182 		cmdstatus = getprintcap(*argv, pp);
183 		switch (cmdstatus) {
184 		default:
185 			fatal(pp, "%s", pcaperr(cmdstatus));
186 		case PCAPERR_NOTFOUND:
187 			printf("unknown printer %s\n", *argv);
188 			continue;
189 		case PCAPERR_TCOPEN:
190 			printf("warning: %s: unresolved tc= reference(s)\n",
191 			       *argv);
192 			break;
193 		case PCAPERR_SUCCESS:
194 			break;
195 		}
196 		(*specificrtn)(pp);
197 	}
198 
199 wrapup:
200 	if (generic_wrapup) {
201 		(*generic_wrapup)(cmdstatus);
202 	}
203 
204 }
205 
206 /*
207  * kill an existing daemon and disable printing.
208  */
209 void
210 doabort(struct printer *pp)
211 {
212 	abortpr(pp, 1);
213 }
214 
215 static void
216 abortpr(struct printer *pp, int dis)
217 {
218 	register FILE *fp;
219 	struct stat stbuf;
220 	int pid, fd;
221 	char lf[MAXPATHLEN];
222 
223 	lock_file_name(pp, lf, sizeof lf);
224 	printf("%s:\n", pp->printer);
225 
226 	/*
227 	 * Turn on the owner execute bit of the lock file to disable printing.
228 	 */
229 	if (dis) {
230 		seteuid(euid);
231 		if (stat(lf, &stbuf) >= 0) {
232 			if (chmod(lf, stbuf.st_mode | LFM_PRINT_DIS) < 0)
233 				printf("\tcannot disable printing: %s\n",
234 				       strerror(errno));
235 			else {
236 				upstat(pp, "printing disabled\n");
237 				printf("\tprinting disabled\n");
238 			}
239 		} else if (errno == ENOENT) {
240 			if ((fd = open(lf, O_WRONLY|O_CREAT,
241 				       LOCK_FILE_MODE | LFM_PRINT_DIS)) < 0)
242 				printf("\tcannot create lock file: %s\n",
243 				       strerror(errno));
244 			else {
245 				(void) close(fd);
246 				upstat(pp, "printing disabled\n");
247 				printf("\tprinting disabled\n");
248 				printf("\tno daemon to abort\n");
249 			}
250 			goto out;
251 		} else {
252 			printf("\tcannot stat lock file\n");
253 			goto out;
254 		}
255 	}
256 	/*
257 	 * Kill the current daemon to stop printing now.
258 	 */
259 	if ((fp = fopen(lf, "r")) == NULL) {
260 		printf("\tcannot open lock file\n");
261 		goto out;
262 	}
263 	if (!getline(fp) || flock(fileno(fp), LOCK_SH|LOCK_NB) == 0) {
264 		(void) fclose(fp);	/* unlocks as well */
265 		printf("\tno daemon to abort\n");
266 		goto out;
267 	}
268 	(void) fclose(fp);
269 	if (kill(pid = atoi(line), SIGTERM) < 0) {
270 		if (errno == ESRCH)
271 			printf("\tno daemon to abort\n");
272 		else
273 			printf("\tWarning: daemon (pid %d) not killed\n", pid);
274 	} else
275 		printf("\tdaemon (pid %d) killed\n", pid);
276 out:
277 	seteuid(uid);
278 }
279 
280 /*
281  * Write a message into the status file.
282  */
283 static void
284 upstat(struct printer *pp, const char *msg)
285 {
286 	register int fd;
287 	char statfile[MAXPATHLEN];
288 
289 	status_file_name(pp, statfile, sizeof statfile);
290 	umask(0);
291 	fd = open(statfile, O_WRONLY|O_CREAT|O_EXLOCK, STAT_FILE_MODE);
292 	if (fd < 0) {
293 		printf("\tcannot create status file: %s\n", strerror(errno));
294 		return;
295 	}
296 	(void) ftruncate(fd, 0);
297 	if (msg == (char *)NULL)
298 		(void) write(fd, "\n", 1);
299 	else
300 		(void) write(fd, msg, strlen(msg));
301 	(void) close(fd);
302 }
303 
304 /*
305  * "global" variables for all the routines related to 'clean' and 'tclean'
306  */
307 static time_t	 cln_now;		/* current time */
308 static double	 cln_minage;		/* minimum age before file is removed */
309 static long	 cln_sizecnt;		/* amount of space freed up */
310 static int 	 cln_debug;		/* print extra debugging msgs */
311 static int	 cln_filecnt;		/* number of files destroyed */
312 static int	 cln_foundcore;		/* found a core file! */
313 static int	 cln_queuecnt;		/* number of queues checked */
314 static int 	 cln_testonly;		/* remove-files vs just-print-info */
315 
316 static int
317 doselect(struct dirent *d)
318 {
319 	int c = d->d_name[0];
320 
321 	if ((c == 'c' || c == 'd' || c == 'r' || c == 't') &&
322 	    d->d_name[1] == 'f')
323 		return 1;
324 	if (c == 'c') {
325 		if (!strcmp(d->d_name, "core"))
326 			cln_foundcore = 1;
327 	}
328 	if (c == 'e') {
329 		if (!strncmp(d->d_name, "errs.", 5))
330 			return 1;
331 	}
332 	return 0;
333 }
334 
335 /*
336  * Comparison routine that clean_q() uses for scandir.
337  *
338  * The purpose of this sort is to have all `df' files end up immediately
339  * after the matching `cf' file.  For files matching `cf', `df', `rf', or
340  * `tf', it sorts by job number and machine, then by `cf', `df', `rf', or
341  * `tf', and then by the sequence letter (which is A-Z, or a-z).    This
342  * routine may also see filenames which do not start with `cf', `df', `rf',
343  * or `tf' (such as `errs.*'), and those are simply sorted by the full
344  * filename.
345  *
346  * XXX
347  *   This assumes that all control files start with `cfA*', and it turns
348  *   out there are a few implementations of lpr which will create `cfB*'
349  *   filenames (they will have datafile names which start with `dfB*').
350  */
351 static int
352 sortq(const void *a, const void *b)
353 {
354 	const int a_lt_b = -1, a_gt_b = 1, cat_other = 10;
355 	const char *fname_a, *fname_b, *jnum_a, *jnum_b;
356 	int cat_a, cat_b, ch, res, seq_a, seq_b;
357 
358 	fname_a = (*(const struct dirent **)a)->d_name;
359 	fname_b = (*(const struct dirent **)b)->d_name;
360 
361 	/*
362 	 * First separate filenames into cagatories.  Catagories are
363 	 * legitimate `cf', `df', `rf' & `tf' filenames, and "other" - in
364 	 * that order.  It is critical that the mapping be exactly the
365 	 * same for 'a' vs 'b', so define a macro for the job.
366 	 *
367 	 * [aside: the standard `cf' file has the jobnumber start in
368 	 * position 4, but some implementations have that as an extra
369 	 * file-sequence letter, and start the job number in position 5.]
370 	 */
371 #define MAP_TO_CAT(fname_X,cat_X,jnum_X,seq_X) do { \
372 	cat_X = cat_other;    \
373 	ch = *(fname_X + 2);  \
374 	jnum_X = fname_X + 3; \
375 	seq_X = 0;            \
376 	if ((*(fname_X + 1) == 'f') && (isalpha(ch))) { \
377 		seq_X = ch; \
378 		if (*fname_X == 'c') \
379 			cat_X = 1; \
380 		else if (*fname_X == 'd') \
381 			cat_X = 2; \
382 		else if (*fname_X == 'r') \
383 			cat_X = 3; \
384 		else if (*fname_X == 't') \
385 			cat_X = 4; \
386 		if (cat_X != cat_other) { \
387 			ch = *jnum_X; \
388 			if (!isdigit(ch)) { \
389 				if (isalpha(ch)) { \
390 					jnum_X++; \
391 					ch = *jnum_X; \
392 					seq_X = (seq_X << 8) + ch; \
393 				} \
394 				if (!isdigit(ch)) \
395 					cat_X = cat_other; \
396 			} \
397 		} \
398 	} \
399 } while (0)
400 
401 	MAP_TO_CAT(fname_a, cat_a, jnum_a, seq_a);
402 	MAP_TO_CAT(fname_b, cat_b, jnum_b, seq_b);
403 
404 #undef MAP_TO_CAT
405 
406 	/* First handle all cases which have "other" files */
407 	if ((cat_a >= cat_other) || (cat_b >= cat_other)) {
408 		/* for two "other" files, just compare the full name */
409 		if (cat_a == cat_b)
410 			res = strcmp(fname_a, fname_b);
411 		else if (cat_a < cat_b)
412 			res = a_lt_b;
413 		else
414 			res = a_gt_b;
415 		goto have_res;
416 	}
417 
418 	/*
419 	 * At this point, we know both files are legitimate `cf', `df', `rf',
420 	 * or `tf' files.  Compare them by job-number and machine name.
421 	 */
422 	res = strcmp(jnum_a, jnum_b);
423 	if (res != 0)
424 		goto have_res;
425 
426 	/*
427 	 * We have two files which belong to the same job.  Sort based
428 	 * on the catagory of file (`c' before `d', etc).
429 	 */
430 	if (cat_a < cat_b) {
431 		res = a_lt_b;
432 		goto have_res;
433 	} else if (cat_a > cat_b) {
434 		res = a_gt_b;
435 		goto have_res;
436 	}
437 
438 	/*
439 	 * Two files in the same catagory for a single job.  Sort based
440 	 * on the sequence letter(s).  (usually `A' thru `Z', etc).
441 	 */
442 	if (seq_a < seq_b) {
443 		res = a_lt_b;
444 		goto have_res;
445 	} else if (seq_a > seq_b) {
446 		res = a_gt_b;
447 		goto have_res;
448 	}
449 
450 	/*
451 	 * Given that the filenames in a directory are unique, this SHOULD
452 	 * never happen (unless there are logic errors in this routine).
453 	 * But if it does happen, we must return "is equal" or the caller
454 	 * might see inconsistent results in the sorting order, and that
455 	 * can trigger other problems.
456 	 */
457 	printf("\t*** Error in sortq: %s == %s !\n", fname_a, fname_b);
458 	printf("\t***       cat %d == %d ; seq = %d %d\n", cat_a, cat_b,
459 	    seq_a, seq_b);
460 	res = 0;
461 
462 have_res:
463 	return res;
464 }
465 
466 /*
467  * Remove all spool files and temporaries from the spooling area.
468  * Or, perhaps:
469  * Remove incomplete jobs from spooling area.
470  */
471 
472 void
473 init_clean(int argc, char *argv[])
474 {
475 
476 	/* init some fields before 'clean' is called for each queue */
477 	cln_queuecnt = 0;
478 	cln_now = time(NULL);
479 	cln_minage = 3600.0;		/* only delete files >1h old */
480 	cln_filecnt = 0;
481 	cln_sizecnt = 0;
482 	cln_debug = 0;
483 	cln_testonly = 0;
484 	generic_wrapup = &wrapup_clean;
485 
486 	/* see if there are any options specified before the ptr list */
487 	while (--argc) {
488 		++argv;
489 		if (**argv != '-')
490 			break;
491 		if (strcmp(*argv, "-d") == 0) {
492 			/* just an example of an option... */
493 			cln_debug++;
494 			*argv = generic_nullarg;	/* "erase" it */
495 		} else {
496 			printf("Invalid option '%s'\n", *argv);
497 			generic_initerr = 1;
498 		}
499 	}
500 
501 	return;
502 }
503 
504 void
505 init_tclean(int argc, char *argv[])
506 {
507 
508 	/* only difference between 'clean' and 'tclean' is one value */
509 	/* (...and the fact that 'clean' is priv and 'tclean' is not) */
510 	init_clean(argc, argv);
511 	cln_testonly = 1;
512 
513 	return;
514 }
515 
516 void
517 clean_q(struct printer *pp)
518 {
519 	char *cp, *cp1, *lp;
520 	struct dirent **queue;
521 	size_t linerem;
522 	int didhead, i, n, nitems, rmcp;
523 
524 	cln_queuecnt++;
525 
526 	didhead = 0;
527 	if (generic_qselect == QSEL_BYNAME) {
528 		printf("%s:\n", pp->printer);
529 		didhead = 1;
530 	}
531 
532 	lp = line;
533 	cp = pp->spool_dir;
534 	while (lp < &line[sizeof(line) - 1]) {
535 		if ((*lp++ = *cp++) == 0)
536 			break;
537 	}
538 	lp[-1] = '/';
539 	linerem = sizeof(line) - (lp - line);
540 
541 	cln_foundcore = 0;
542 	seteuid(euid);
543 	nitems = scandir(pp->spool_dir, &queue, doselect, sortq);
544 	seteuid(uid);
545 	if (nitems < 0) {
546 		if (!didhead) {
547 			printf("%s:\n", pp->printer);
548 			didhead = 1;
549 		}
550 		printf("\tcannot examine spool directory\n");
551 		return;
552 	}
553 	if (cln_foundcore) {
554 		if (!didhead) {
555 			printf("%s:\n", pp->printer);
556 			didhead = 1;
557 		}
558 		printf("\t** found a core file in %s !\n", pp->spool_dir);
559 	}
560 	if (nitems == 0)
561 		return;
562 	if (!didhead)
563 		printf("%s:\n", pp->printer);
564 	if (cln_debug) {
565 		printf("\t** ----- Sorted list of files being checked:\n");
566 		i = 0;
567 		do {
568 			cp = queue[i]->d_name;
569 			printf("\t** [%3d] = %s\n", i, cp);
570 		} while (++i < nitems);
571 		printf("\t** ----- end of sorted list\n");
572 	}
573 	i = 0;
574 	do {
575 		cp = queue[i]->d_name;
576 		rmcp = 0;
577 		if (*cp == 'c') {
578 			/*
579 			 * A control file.  Look for matching data-files.
580 			 */
581 			/* XXX
582 			 *  Note the logic here assumes that the hostname
583 			 *  part of cf-filenames match the hostname part
584 			 *  in df-filenames, and that is not necessarily
585 			 *  true (eg: for multi-homed hosts).  This needs
586 			 *  some further thought...
587 			 */
588 			n = 0;
589 			while (i + 1 < nitems) {
590 				cp1 = queue[i + 1]->d_name;
591 				if (*cp1 != 'd' || strcmp(cp + 3, cp1 + 3))
592 					break;
593 				i++;
594 				n++;
595 			}
596 			if (n == 0) {
597 				rmcp = 1;
598 			}
599 		} else if (*cp == 'e') {
600 			/*
601 			 * Must be an errrs or email temp file.
602 			 */
603 			rmcp = 1;
604 		} else {
605 			/*
606 			 * Must be a df with no cf (otherwise, it would have
607 			 * been skipped above) or an rf or tf file (which can
608 			 * always be removed if it is old enough).
609 			 */
610 			rmcp = 1;
611 		}
612 		if (rmcp) {
613 			if (strlen(cp) >= linerem) {
614 				printf("\t** internal error: 'line' overflow!\n");
615 				printf("\t**   spooldir = %s\n", pp->spool_dir);
616 				printf("\t**   cp = %s\n", cp);
617 				return;
618 			}
619 			strlcpy(lp, cp, linerem);
620 			unlinkf(line);
621 		}
622      	} while (++i < nitems);
623 }
624 
625 static void
626 wrapup_clean(int laststatus __unused)
627 {
628 
629 	printf("Checked %d queues, and ", cln_queuecnt);
630 	if (cln_filecnt < 1) {
631 		printf("no cruft was found\n");
632 		return;
633 	}
634 	if (cln_testonly) {
635 		printf("would have ");
636 	}
637 	printf("removed %d files (%ld bytes).\n", cln_filecnt, cln_sizecnt);
638 }
639 
640 static void
641 unlinkf(char *name)
642 {
643 	struct stat stbuf;
644 	double agemod, agestat;
645 	int res;
646 	char linkbuf[BUFSIZ];
647 
648 	/*
649 	 * We have to use lstat() instead of stat(), in case this is a df*
650 	 * "file" which is really a symlink due to 'lpr -s' processing.  In
651 	 * that case, we need to check the last-mod time of the symlink, and
652 	 * not the file that the symlink is pointed at.
653 	 */
654 	seteuid(euid);
655 	res = lstat(name, &stbuf);
656 	seteuid(uid);
657 	if (res < 0) {
658 		printf("\terror return from stat(%s):\n", name);
659 		printf("\t      %s\n", strerror(errno));
660 		return;
661 	}
662 
663 	agemod = difftime(cln_now, stbuf.st_mtime);
664 	agestat = difftime(cln_now,  stbuf.st_ctime);
665 	if (cln_debug > 1) {
666 		/* this debugging-aid probably is not needed any more... */
667 		printf("\t\t  modify age=%g secs, stat age=%g secs\n",
668 		    agemod, agestat);
669 	}
670 	if ((agemod <= cln_minage) && (agestat <= cln_minage))
671 		return;
672 
673 	/*
674 	 * if this file is a symlink, then find out the target of the
675 	 * symlink before unlink-ing the file itself
676 	 */
677 	if (S_ISLNK(stbuf.st_mode)) {
678 		seteuid(euid);
679 		res = readlink(name, linkbuf, sizeof(linkbuf));
680 		seteuid(uid);
681 		if (res < 0) {
682 			printf("\terror return from readlink(%s):\n", name);
683 			printf("\t      %s\n", strerror(errno));
684 			return;
685 		}
686 		if (res == sizeof(linkbuf))
687 			res--;
688 		linkbuf[res] = '\0';
689 	}
690 
691 	cln_filecnt++;
692 	cln_sizecnt += stbuf.st_size;
693 
694 	if (cln_testonly) {
695 		printf("\twould remove %s\n", name);
696 		if (S_ISLNK(stbuf.st_mode)) {
697 			printf("\t    (which is a symlink to %s)\n", linkbuf);
698 		}
699 	} else {
700 		seteuid(euid);
701 		res = unlink(name);
702 		seteuid(uid);
703 		if (res < 0)
704 			printf("\tcannot remove %s (!)\n", name);
705 		else
706 			printf("\tremoved %s\n", name);
707 		/* XXX
708 		 *  Note that for a df* file, this code should also check to see
709 		 *  if it is a symlink to some other file, and if the original
710 		 *  lpr command included '-r' ("remove file").  Of course, this
711 		 *  code would not be removing the df* file unless there was no
712 		 *  matching cf* file, and without the cf* file it is currently
713 		 *  impossible to determine if '-r' had been specified...
714 		 *
715 		 *  As a result of this quandry, we may be leaving behind a
716 		 *  user's file that was supposed to have been removed after
717 		 *  being printed.  This may effect services such as CAP or
718 		 *  samba, if they were configured to use 'lpr -r', and if
719 		 *  datafiles are not being properly removed.
720 		*/
721 		if (S_ISLNK(stbuf.st_mode)) {
722 			printf("\t    (which was a symlink to %s)\n", linkbuf);
723 		}
724 	}
725 }
726 
727 /*
728  * Enable queuing to the printer (allow lpr's).
729  */
730 void
731 enable(struct printer *pp)
732 {
733 	struct stat stbuf;
734 	char lf[MAXPATHLEN];
735 
736 	lock_file_name(pp, lf, sizeof lf);
737 	printf("%s:\n", pp->printer);
738 
739 	/*
740 	 * Turn off the group execute bit of the lock file to enable queuing.
741 	 */
742 	seteuid(euid);
743 	if (stat(lf, &stbuf) >= 0) {
744 		if (chmod(lf, stbuf.st_mode & ~LFM_QUEUE_DIS) < 0)
745 			printf("\tcannot enable queuing\n");
746 		else
747 			printf("\tqueuing enabled\n");
748 	}
749 	seteuid(uid);
750 }
751 
752 /*
753  * Disable queuing.
754  */
755 void
756 disable(struct printer *pp)
757 {
758 	register int fd;
759 	struct stat stbuf;
760 	char lf[MAXPATHLEN];
761 
762 	lock_file_name(pp, lf, sizeof lf);
763 	printf("%s:\n", pp->printer);
764 	/*
765 	 * Turn on the group execute bit of the lock file to disable queuing.
766 	 */
767 	seteuid(euid);
768 	if (stat(lf, &stbuf) >= 0) {
769 		if (chmod(lf, stbuf.st_mode | LFM_QUEUE_DIS) < 0)
770 			printf("\tcannot disable queuing: %s\n",
771 			       strerror(errno));
772 		else
773 			printf("\tqueuing disabled\n");
774 	} else if (errno == ENOENT) {
775 		if ((fd = open(lf, O_WRONLY|O_CREAT,
776 			       LOCK_FILE_MODE | LFM_QUEUE_DIS)) < 0)
777 			printf("\tcannot create lock file: %s\n",
778 			       strerror(errno));
779 		else {
780 			(void) close(fd);
781 			printf("\tqueuing disabled\n");
782 		}
783 	} else
784 		printf("\tcannot stat lock file\n");
785 	seteuid(uid);
786 }
787 
788 /*
789  * Disable queuing and printing and put a message into the status file
790  * (reason for being down).
791  */
792 void
793 down(int argc, char *argv[])
794 {
795         int cmdstatus, more;
796 	struct printer myprinter, *pp = &myprinter;
797 
798 	if (argc == 1) {
799 		printf("Usage: down {all | printer} [message ...]\n");
800 		return;
801 	}
802 	if (!strcmp(argv[1], "all")) {
803 		more = firstprinter(pp, &cmdstatus);
804 		if (cmdstatus)
805 			goto looperr;
806 		while (more) {
807 			putmsg(pp, argc - 2, argv + 2);
808 			do {
809 				more = nextprinter(pp, &cmdstatus);
810 looperr:
811 				switch (cmdstatus) {
812 				case PCAPERR_TCOPEN:
813 					printf("warning: %s: unresolved "
814 					       "tc= reference(s) ",
815 					       pp->printer);
816 				case PCAPERR_SUCCESS:
817 					break;
818 				default:
819 					fatal(pp, "%s", pcaperr(cmdstatus));
820 				}
821 			} while (more && cmdstatus);
822 		}
823 		return;
824 	}
825 	init_printer(pp);
826 	cmdstatus = getprintcap(argv[1], pp);
827 	switch (cmdstatus) {
828 	default:
829 		fatal(pp, "%s", pcaperr(cmdstatus));
830 	case PCAPERR_NOTFOUND:
831 		printf("unknown printer %s\n", argv[1]);
832 		return;
833 	case PCAPERR_TCOPEN:
834 		printf("warning: %s: unresolved tc= reference(s)", argv[1]);
835 		break;
836 	case PCAPERR_SUCCESS:
837 		break;
838 	}
839 	putmsg(pp, argc - 2, argv + 2);
840 }
841 
842 static void
843 putmsg(struct printer *pp, int argc, char **argv)
844 {
845 	register int fd;
846 	register char *cp1, *cp2;
847 	char buf[1024];
848 	char file[MAXPATHLEN];
849 	struct stat stbuf;
850 
851 	printf("%s:\n", pp->printer);
852 	/*
853 	 * Turn on the group execute bit of the lock file to disable queuing;
854 	 * turn on the owner execute bit of the lock file to disable printing.
855 	 */
856 	lock_file_name(pp, file, sizeof file);
857 	seteuid(euid);
858 	if (stat(file, &stbuf) >= 0) {
859 		if (chmod(file, stbuf.st_mode|LFM_PRINT_DIS|LFM_QUEUE_DIS) < 0)
860 			printf("\tcannot disable queuing: %s\n",
861 			       strerror(errno));
862 		else
863 			printf("\tprinter and queuing disabled\n");
864 	} else if (errno == ENOENT) {
865 		if ((fd = open(file, O_WRONLY|O_CREAT,
866 			       LOCK_FILE_MODE|LFM_PRINT_DIS|LFM_QUEUE_DIS)) < 0)
867 			printf("\tcannot create lock file: %s\n",
868 			       strerror(errno));
869 		else {
870 			(void) close(fd);
871 			printf("\tprinter and queuing disabled\n");
872 		}
873 		seteuid(uid);
874 		return;
875 	} else
876 		printf("\tcannot stat lock file\n");
877 	/*
878 	 * Write the message into the status file.
879 	 */
880 	status_file_name(pp, file, sizeof file);
881 	fd = open(file, O_WRONLY|O_CREAT|O_EXLOCK, STAT_FILE_MODE);
882 	if (fd < 0) {
883 		printf("\tcannot create status file: %s\n", strerror(errno));
884 		seteuid(uid);
885 		return;
886 	}
887 	seteuid(uid);
888 	(void) ftruncate(fd, 0);
889 	if (argc <= 0) {
890 		(void) write(fd, "\n", 1);
891 		(void) close(fd);
892 		return;
893 	}
894 	cp1 = buf;
895 	while (--argc >= 0) {
896 		cp2 = *argv++;
897 		while ((size_t)(cp1 - buf) < sizeof(buf) && (*cp1++ = *cp2++))
898 			;
899 		cp1[-1] = ' ';
900 	}
901 	cp1[-1] = '\n';
902 	*cp1 = '\0';
903 	(void) write(fd, buf, strlen(buf));
904 	(void) close(fd);
905 }
906 
907 /*
908  * Exit lpc
909  */
910 void
911 quit(int argc __unused, char *argv[] __unused)
912 {
913 	exit(0);
914 }
915 
916 /*
917  * Kill and restart the daemon.
918  */
919 void
920 restart(struct printer *pp)
921 {
922 	abortpr(pp, 0);
923 	startpr(pp, 0);
924 }
925 
926 /*
927  * Enable printing on the specified printer and startup the daemon.
928  */
929 void
930 startcmd(struct printer *pp)
931 {
932 	startpr(pp, 1);
933 }
934 
935 static void
936 startpr(struct printer *pp, int chgenable)
937 {
938 	struct stat stbuf;
939 	char lf[MAXPATHLEN];
940 
941 	lock_file_name(pp, lf, sizeof lf);
942 	printf("%s:\n", pp->printer);
943 
944 	/*
945 	 * For chgenable==1 ('start'), turn off the LFM_PRINT_DIS bit of the
946 	 * lock file to re-enable printing.  For chgenable==2 ('up'), also
947 	 * turn off the LFM_QUEUE_DIS bit to re-enable queueing.
948 	 */
949 	seteuid(euid);
950 	if (chgenable && stat(lf, &stbuf) >= 0) {
951 		mode_t bits = (chgenable == 2 ? 0 : LFM_QUEUE_DIS);
952 		if (chmod(lf, stbuf.st_mode & (LOCK_FILE_MODE | bits)) < 0)
953 			printf("\tcannot enable printing\n");
954 		else
955 			printf("\tprinting enabled\n");
956 	}
957 	if (!startdaemon(pp))
958 		printf("\tcouldn't start daemon\n");
959 	else
960 		printf("\tdaemon started\n");
961 	seteuid(uid);
962 }
963 
964 /*
965  * Print the status of the printer queue.
966  */
967 void
968 status(struct printer *pp)
969 {
970 	struct stat stbuf;
971 	register int fd, i;
972 	register struct dirent *dp;
973 	DIR *dirp;
974 	char file[MAXPATHLEN];
975 
976 	printf("%s:\n", pp->printer);
977 	lock_file_name(pp, file, sizeof file);
978 	if (stat(file, &stbuf) >= 0) {
979 		printf("\tqueuing is %s\n",
980 		       ((stbuf.st_mode & LFM_QUEUE_DIS) ? "disabled"
981 			: "enabled"));
982 		printf("\tprinting is %s\n",
983 		       ((stbuf.st_mode & LFM_PRINT_DIS) ? "disabled"
984 			: "enabled"));
985 	} else {
986 		printf("\tqueuing is enabled\n");
987 		printf("\tprinting is enabled\n");
988 	}
989 	if ((dirp = opendir(pp->spool_dir)) == NULL) {
990 		printf("\tcannot examine spool directory\n");
991 		return;
992 	}
993 	i = 0;
994 	while ((dp = readdir(dirp)) != NULL) {
995 		if (*dp->d_name == 'c' && dp->d_name[1] == 'f')
996 			i++;
997 	}
998 	closedir(dirp);
999 	if (i == 0)
1000 		printf("\tno entries in spool area\n");
1001 	else if (i == 1)
1002 		printf("\t1 entry in spool area\n");
1003 	else
1004 		printf("\t%d entries in spool area\n", i);
1005 	fd = open(file, O_RDONLY);
1006 	if (fd < 0 || flock(fd, LOCK_SH|LOCK_NB) == 0) {
1007 		(void) close(fd);	/* unlocks as well */
1008 		printf("\tprinter idle\n");
1009 		return;
1010 	}
1011 	(void) close(fd);
1012 	/* print out the contents of the status file, if it exists */
1013 	status_file_name(pp, file, sizeof file);
1014 	fd = open(file, O_RDONLY|O_SHLOCK);
1015 	if (fd >= 0) {
1016 		(void) fstat(fd, &stbuf);
1017 		if (stbuf.st_size > 0) {
1018 			putchar('\t');
1019 			while ((i = read(fd, line, sizeof(line))) > 0)
1020 				(void) fwrite(line, 1, i, stdout);
1021 		}
1022 		(void) close(fd);	/* unlocks as well */
1023 	}
1024 }
1025 
1026 /*
1027  * Stop the specified daemon after completing the current job and disable
1028  * printing.
1029  */
1030 void
1031 stop(struct printer *pp)
1032 {
1033 	register int fd;
1034 	struct stat stbuf;
1035 	char lf[MAXPATHLEN];
1036 
1037 	lock_file_name(pp, lf, sizeof lf);
1038 	printf("%s:\n", pp->printer);
1039 
1040 	/*
1041 	 * Turn on the owner execute bit of the lock file to disable printing.
1042 	 */
1043 	seteuid(euid);
1044 	if (stat(lf, &stbuf) >= 0) {
1045 		if (chmod(lf, stbuf.st_mode | LFM_PRINT_DIS) < 0)
1046 			printf("\tcannot disable printing: %s\n",
1047 			       strerror(errno));
1048 		else {
1049 			upstat(pp, "printing disabled\n");
1050 			printf("\tprinting disabled\n");
1051 		}
1052 	} else if (errno == ENOENT) {
1053 		if ((fd = open(lf, O_WRONLY|O_CREAT,
1054 			       LOCK_FILE_MODE | LFM_PRINT_DIS)) < 0)
1055 			printf("\tcannot create lock file: %s\n",
1056 			       strerror(errno));
1057 		else {
1058 			(void) close(fd);
1059 			upstat(pp, "printing disabled\n");
1060 			printf("\tprinting disabled\n");
1061 		}
1062 	} else
1063 		printf("\tcannot stat lock file\n");
1064 	seteuid(uid);
1065 }
1066 
1067 struct	jobqueue **queue;
1068 int	nitems;
1069 time_t	mtime;
1070 
1071 /*
1072  * Put the specified jobs at the top of printer queue.
1073  */
1074 void
1075 topq(int argc, char *argv[])
1076 {
1077 	register int i;
1078 	struct stat stbuf;
1079 	int cmdstatus, changed;
1080 	struct printer myprinter, *pp = &myprinter;
1081 
1082 	if (argc < 3) {
1083 		printf("Usage: topq printer [jobnum ...] [user ...]\n");
1084 		return;
1085 	}
1086 
1087 	--argc;
1088 	++argv;
1089 	init_printer(pp);
1090 	cmdstatus = getprintcap(*argv, pp);
1091 	switch(cmdstatus) {
1092 	default:
1093 		fatal(pp, "%s", pcaperr(cmdstatus));
1094 	case PCAPERR_NOTFOUND:
1095 		printf("unknown printer %s\n", *argv);
1096 		return;
1097 	case PCAPERR_TCOPEN:
1098 		printf("warning: %s: unresolved tc= reference(s)", *argv);
1099 		break;
1100 	case PCAPERR_SUCCESS:
1101 		break;
1102 	}
1103 	printf("%s:\n", pp->printer);
1104 
1105 	seteuid(euid);
1106 	if (chdir(pp->spool_dir) < 0) {
1107 		printf("\tcannot chdir to %s\n", pp->spool_dir);
1108 		goto out;
1109 	}
1110 	seteuid(uid);
1111 	nitems = getq(pp, &queue);
1112 	if (nitems == 0)
1113 		return;
1114 	changed = 0;
1115 	mtime = queue[0]->job_time;
1116 	for (i = argc; --i; ) {
1117 		if (doarg(argv[i]) == 0) {
1118 			printf("\tjob %s is not in the queue\n", argv[i]);
1119 			continue;
1120 		} else
1121 			changed++;
1122 	}
1123 	for (i = 0; i < nitems; i++)
1124 		free(queue[i]);
1125 	free(queue);
1126 	if (!changed) {
1127 		printf("\tqueue order unchanged\n");
1128 		return;
1129 	}
1130 	/*
1131 	 * Turn on the public execute bit of the lock file to
1132 	 * get lpd to rebuild the queue after the current job.
1133 	 */
1134 	seteuid(euid);
1135 	if (changed && stat(pp->lock_file, &stbuf) >= 0)
1136 		(void) chmod(pp->lock_file, stbuf.st_mode | LFM_RESET_QUE);
1137 
1138 out:
1139 	seteuid(uid);
1140 }
1141 
1142 /*
1143  * Reposition the job by changing the modification time of
1144  * the control file.
1145  */
1146 static int
1147 touch(struct jobqueue *jq)
1148 {
1149 	struct timeval tvp[2];
1150 	int ret;
1151 
1152 	tvp[0].tv_sec = tvp[1].tv_sec = --mtime;
1153 	tvp[0].tv_usec = tvp[1].tv_usec = 0;
1154 	seteuid(euid);
1155 	ret = utimes(jq->job_cfname, tvp);
1156 	seteuid(uid);
1157 	return (ret);
1158 }
1159 
1160 /*
1161  * Checks if specified job name is in the printer's queue.
1162  * Returns:  negative (-1) if argument name is not in the queue.
1163  */
1164 static int
1165 doarg(char *job)
1166 {
1167 	register struct jobqueue **qq;
1168 	register int jobnum, n;
1169 	register char *cp, *machine;
1170 	int cnt = 0;
1171 	FILE *fp;
1172 
1173 	/*
1174 	 * Look for a job item consisting of system name, colon, number
1175 	 * (example: ucbarpa:114)
1176 	 */
1177 	if ((cp = strchr(job, ':')) != NULL) {
1178 		machine = job;
1179 		*cp++ = '\0';
1180 		job = cp;
1181 	} else
1182 		machine = NULL;
1183 
1184 	/*
1185 	 * Check for job specified by number (example: 112 or 235ucbarpa).
1186 	 */
1187 	if (isdigit(*job)) {
1188 		jobnum = 0;
1189 		do
1190 			jobnum = jobnum * 10 + (*job++ - '0');
1191 		while (isdigit(*job));
1192 		for (qq = queue + nitems; --qq >= queue; ) {
1193 			n = 0;
1194 			for (cp = (*qq)->job_cfname+3; isdigit(*cp); )
1195 				n = n * 10 + (*cp++ - '0');
1196 			if (jobnum != n)
1197 				continue;
1198 			if (*job && strcmp(job, cp) != 0)
1199 				continue;
1200 			if (machine != NULL && strcmp(machine, cp) != 0)
1201 				continue;
1202 			if (touch(*qq) == 0) {
1203 				printf("\tmoved %s\n", (*qq)->job_cfname);
1204 				cnt++;
1205 			}
1206 		}
1207 		return(cnt);
1208 	}
1209 	/*
1210 	 * Process item consisting of owner's name (example: henry).
1211 	 */
1212 	for (qq = queue + nitems; --qq >= queue; ) {
1213 		seteuid(euid);
1214 		fp = fopen((*qq)->job_cfname, "r");
1215 		seteuid(uid);
1216 		if (fp == NULL)
1217 			continue;
1218 		while (getline(fp) > 0)
1219 			if (line[0] == 'P')
1220 				break;
1221 		(void) fclose(fp);
1222 		if (line[0] != 'P' || strcmp(job, line+1) != 0)
1223 			continue;
1224 		if (touch(*qq) == 0) {
1225 			printf("\tmoved %s\n", (*qq)->job_cfname);
1226 			cnt++;
1227 		}
1228 	}
1229 	return(cnt);
1230 }
1231 
1232 /*
1233  * Enable everything and start printer (undo `down').
1234  */
1235 void
1236 up(struct printer *pp)
1237 {
1238 	startpr(pp, 2);
1239 }
1240