source: branches/samba-3.2.x/source/printing/printing.c@ 736

Last change on this file since 736 was 257, checked in by Herwig Bauernfeind, 16 years ago

printing.c:start_background_queue loop fix in 3.2 branch

File size: 80.0 KB
Line 
1/*
2 Unix SMB/Netbios implementation.
3 Version 3.0
4 printing backend routines
5 Copyright (C) Andrew Tridgell 1992-2000
6 Copyright (C) Jeremy Allison 2002
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3 of the License, or
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program. If not, see <http://www.gnu.org/licenses/>.
20*/
21
22#include "includes.h"
23#include "printing.h"
24
25extern SIG_ATOMIC_T got_sig_term;
26extern SIG_ATOMIC_T reload_after_sighup;
27extern struct current_user current_user;
28extern userdom_struct current_user_info;
29
30/* Current printer interface */
31static bool remove_from_jobs_changed(const char* sharename, uint32 jobid);
32
33/*
34 the printing backend revolves around a tdb database that stores the
35 SMB view of the print queue
36
37 The key for this database is a jobid - a internally generated number that
38 uniquely identifies a print job
39
40 reading the print queue involves two steps:
41 - possibly running lpq and updating the internal database from that
42 - reading entries from the database
43
44 jobids are assigned when a job starts spooling.
45*/
46
47static TDB_CONTEXT *rap_tdb;
48static uint16 next_rap_jobid;
49struct rap_jobid_key {
50 fstring sharename;
51 uint32 jobid;
52};
53
54/***************************************************************************
55 Nightmare. LANMAN jobid's are 16 bit numbers..... We must map them to 32
56 bit RPC jobids.... JRA.
57***************************************************************************/
58
59uint16 pjobid_to_rap(const char* sharename, uint32 jobid)
60{
61 uint16 rap_jobid;
62 TDB_DATA data, key;
63 struct rap_jobid_key jinfo;
64 uint8 buf[2];
65
66 DEBUG(10,("pjobid_to_rap: called.\n"));
67
68 if (!rap_tdb) {
69 /* Create the in-memory tdb. */
70 rap_tdb = tdb_open_log(NULL, 0, TDB_INTERNAL, (O_RDWR|O_CREAT), 0644);
71 if (!rap_tdb)
72 return 0;
73 }
74
75 ZERO_STRUCT( jinfo );
76 fstrcpy( jinfo.sharename, sharename );
77 jinfo.jobid = jobid;
78 key.dptr = (uint8 *)&jinfo;
79 key.dsize = sizeof(jinfo);
80
81 data = tdb_fetch(rap_tdb, key);
82 if (data.dptr && data.dsize == sizeof(uint16)) {
83 rap_jobid = SVAL(data.dptr, 0);
84 SAFE_FREE(data.dptr);
85 DEBUG(10,("pjobid_to_rap: jobid %u maps to RAP jobid %u\n",
86 (unsigned int)jobid, (unsigned int)rap_jobid));
87 return rap_jobid;
88 }
89 SAFE_FREE(data.dptr);
90 /* Not found - create and store mapping. */
91 rap_jobid = ++next_rap_jobid;
92 if (rap_jobid == 0)
93 rap_jobid = ++next_rap_jobid;
94 SSVAL(buf,0,rap_jobid);
95 data.dptr = buf;
96 data.dsize = sizeof(rap_jobid);
97 tdb_store(rap_tdb, key, data, TDB_REPLACE);
98 tdb_store(rap_tdb, data, key, TDB_REPLACE);
99
100 DEBUG(10,("pjobid_to_rap: created jobid %u maps to RAP jobid %u\n",
101 (unsigned int)jobid, (unsigned int)rap_jobid));
102 return rap_jobid;
103}
104
105bool rap_to_pjobid(uint16 rap_jobid, fstring sharename, uint32 *pjobid)
106{
107 TDB_DATA data, key;
108 uint8 buf[2];
109
110 DEBUG(10,("rap_to_pjobid called.\n"));
111
112 if (!rap_tdb)
113 return False;
114
115 SSVAL(buf,0,rap_jobid);
116 key.dptr = buf;
117 key.dsize = sizeof(rap_jobid);
118 data = tdb_fetch(rap_tdb, key);
119 if ( data.dptr && data.dsize == sizeof(struct rap_jobid_key) )
120 {
121 struct rap_jobid_key *jinfo = (struct rap_jobid_key*)data.dptr;
122 fstrcpy( sharename, jinfo->sharename );
123 *pjobid = jinfo->jobid;
124 DEBUG(10,("rap_to_pjobid: jobid %u maps to RAP jobid %u\n",
125 (unsigned int)*pjobid, (unsigned int)rap_jobid));
126 SAFE_FREE(data.dptr);
127 return True;
128 }
129
130 DEBUG(10,("rap_to_pjobid: Failed to lookup RAP jobid %u\n",
131 (unsigned int)rap_jobid));
132 SAFE_FREE(data.dptr);
133 return False;
134}
135
136static void rap_jobid_delete(const char* sharename, uint32 jobid)
137{
138 TDB_DATA key, data;
139 uint16 rap_jobid;
140 struct rap_jobid_key jinfo;
141 uint8 buf[2];
142
143 DEBUG(10,("rap_jobid_delete: called.\n"));
144
145 if (!rap_tdb)
146 return;
147
148 ZERO_STRUCT( jinfo );
149 fstrcpy( jinfo.sharename, sharename );
150 jinfo.jobid = jobid;
151 key.dptr = (uint8 *)&jinfo;
152 key.dsize = sizeof(jinfo);
153
154 data = tdb_fetch(rap_tdb, key);
155 if (!data.dptr || (data.dsize != sizeof(uint16))) {
156 DEBUG(10,("rap_jobid_delete: cannot find jobid %u\n",
157 (unsigned int)jobid ));
158 SAFE_FREE(data.dptr);
159 return;
160 }
161
162 DEBUG(10,("rap_jobid_delete: deleting jobid %u\n",
163 (unsigned int)jobid ));
164
165 rap_jobid = SVAL(data.dptr, 0);
166 SAFE_FREE(data.dptr);
167 SSVAL(buf,0,rap_jobid);
168 data.dptr = buf;
169 data.dsize = sizeof(rap_jobid);
170 tdb_delete(rap_tdb, key);
171 tdb_delete(rap_tdb, data);
172}
173
174static int get_queue_status(const char* sharename, print_status_struct *);
175
176/****************************************************************************
177 Initialise the printing backend. Called once at startup before the fork().
178****************************************************************************/
179
180bool print_backend_init(struct messaging_context *msg_ctx)
181{
182 const char *sversion = "INFO/version";
183 int services = lp_numservices();
184 int snum;
185
186 unlink(lock_path("printing.tdb"));
187 mkdir(lock_path("printing"),0755);
188
189 /* handle a Samba upgrade */
190
191 for (snum = 0; snum < services; snum++) {
192 struct tdb_print_db *pdb;
193 if (!lp_print_ok(snum))
194 continue;
195
196 pdb = get_print_db_byname(lp_const_servicename(snum));
197 if (!pdb)
198 continue;
199 if (tdb_lock_bystring(pdb->tdb, sversion) == -1) {
200 DEBUG(0,("print_backend_init: Failed to open printer %s database\n", lp_const_servicename(snum) ));
201 release_print_db(pdb);
202 return False;
203 }
204 if (tdb_fetch_int32(pdb->tdb, sversion) != PRINT_DATABASE_VERSION) {
205 tdb_wipe_all(pdb->tdb);
206 tdb_store_int32(pdb->tdb, sversion, PRINT_DATABASE_VERSION);
207 }
208 tdb_unlock_bystring(pdb->tdb, sversion);
209 release_print_db(pdb);
210 }
211
212 close_all_print_db(); /* Don't leave any open. */
213
214 /* do NT print initialization... */
215 return nt_printing_init(msg_ctx);
216}
217
218/****************************************************************************
219 Shut down printing backend. Called once at shutdown to close the tdb.
220****************************************************************************/
221
222void printing_end(void)
223{
224 close_all_print_db(); /* Don't leave any open. */
225}
226
227/****************************************************************************
228 Retrieve the set of printing functions for a given service. This allows
229 us to set the printer function table based on the value of the 'printing'
230 service parameter.
231
232 Use the generic interface as the default and only use cups interface only
233 when asked for (and only when supported)
234****************************************************************************/
235
236static struct printif *get_printer_fns_from_type( enum printing_types type )
237{
238 struct printif *printer_fns = &generic_printif;
239
240#ifdef HAVE_CUPS
241 if ( type == PRINT_CUPS ) {
242 printer_fns = &cups_printif;
243 }
244#endif /* HAVE_CUPS */
245
246#ifdef HAVE_IPRINT
247 if ( type == PRINT_IPRINT ) {
248 printer_fns = &iprint_printif;
249 }
250#endif /* HAVE_IPRINT */
251
252 printer_fns->type = type;
253
254 return printer_fns;
255}
256
257static struct printif *get_printer_fns( int snum )
258{
259 return get_printer_fns_from_type( (enum printing_types)lp_printing(snum) );
260}
261
262
263/****************************************************************************
264 Useful function to generate a tdb key.
265****************************************************************************/
266
267static TDB_DATA print_key(uint32 jobid, uint32 *tmp)
268{
269 TDB_DATA ret;
270
271 SIVAL(tmp, 0, jobid);
272 ret.dptr = (uint8 *)tmp;
273 ret.dsize = sizeof(*tmp);
274 return ret;
275}
276
277/***********************************************************************
278 unpack a pjob from a tdb buffer
279***********************************************************************/
280
281int unpack_pjob( uint8 *buf, int buflen, struct printjob *pjob )
282{
283 int len = 0;
284 int used;
285 uint32 pjpid, pjsysjob, pjfd, pjstarttime, pjstatus;
286 uint32 pjsize, pjpage_count, pjspooled, pjsmbjob;
287
288 if ( !buf || !pjob )
289 return -1;
290
291 len += tdb_unpack(buf+len, buflen-len, "dddddddddffff",
292 &pjpid,
293 &pjsysjob,
294 &pjfd,
295 &pjstarttime,
296 &pjstatus,
297 &pjsize,
298 &pjpage_count,
299 &pjspooled,
300 &pjsmbjob,
301 pjob->filename,
302 pjob->jobname,
303 pjob->user,
304 pjob->queuename);
305
306 if ( len == -1 )
307 return -1;
308
309 if ( (used = unpack_devicemode(&pjob->nt_devmode, buf+len, buflen-len)) == -1 )
310 return -1;
311
312 len += used;
313
314 pjob->pid = pjpid;
315 pjob->sysjob = pjsysjob;
316 pjob->fd = pjfd;
317 pjob->starttime = pjstarttime;
318 pjob->status = pjstatus;
319 pjob->size = pjsize;
320 pjob->page_count = pjpage_count;
321 pjob->spooled = pjspooled;
322 pjob->smbjob = pjsmbjob;
323
324 return len;
325
326}
327
328/****************************************************************************
329 Useful function to find a print job in the database.
330****************************************************************************/
331
332static struct printjob *print_job_find(const char *sharename, uint32 jobid)
333{
334 static struct printjob pjob;
335 uint32_t tmp;
336 TDB_DATA ret;
337 struct tdb_print_db *pdb = get_print_db_byname(sharename);
338
339 DEBUG(10,("print_job_find: looking up job %u for share %s\n",
340 (unsigned int)jobid, sharename ));
341
342 if (!pdb) {
343 return NULL;
344 }
345
346 ret = tdb_fetch(pdb->tdb, print_key(jobid, &tmp));
347 release_print_db(pdb);
348
349 if (!ret.dptr) {
350 DEBUG(10,("print_job_find: failed to find jobid %u.\n", (unsigned int)jobid ));
351 return NULL;
352 }
353
354 if ( pjob.nt_devmode ) {
355 free_nt_devicemode( &pjob.nt_devmode );
356 }
357
358 ZERO_STRUCT( pjob );
359
360 if ( unpack_pjob( ret.dptr, ret.dsize, &pjob ) == -1 ) {
361 DEBUG(10,("print_job_find: failed to unpack jobid %u.\n", (unsigned int)jobid ));
362 SAFE_FREE(ret.dptr);
363 return NULL;
364 }
365
366 SAFE_FREE(ret.dptr);
367
368 DEBUG(10,("print_job_find: returning system job %d for jobid %u.\n",
369 (int)pjob.sysjob, (unsigned int)jobid ));
370
371 return &pjob;
372}
373
374/* Convert a unix jobid to a smb jobid */
375
376struct unixjob_traverse_state {
377 int sysjob;
378 uint32 sysjob_to_jobid_value;
379};
380
381static int unixjob_traverse_fn(TDB_CONTEXT *the_tdb, TDB_DATA key,
382 TDB_DATA data, void *private_data)
383{
384 struct printjob *pjob;
385 struct unixjob_traverse_state *state =
386 (struct unixjob_traverse_state *)private_data;
387
388 if (!data.dptr || data.dsize == 0)
389 return 0;
390
391 pjob = (struct printjob *)data.dptr;
392 if (key.dsize != sizeof(uint32))
393 return 0;
394
395 if (state->sysjob == pjob->sysjob) {
396 uint32 jobid = IVAL(key.dptr,0);
397
398 state->sysjob_to_jobid_value = jobid;
399 return 1;
400 }
401
402 return 0;
403}
404
405/****************************************************************************
406 This is a *horribly expensive call as we have to iterate through all the
407 current printer tdb's. Don't do this often ! JRA.
408****************************************************************************/
409
410uint32 sysjob_to_jobid(int unix_jobid)
411{
412 int services = lp_numservices();
413 int snum;
414 struct unixjob_traverse_state state;
415
416 state.sysjob = unix_jobid;
417 state.sysjob_to_jobid_value = (uint32)-1;
418
419 for (snum = 0; snum < services; snum++) {
420 struct tdb_print_db *pdb;
421 if (!lp_print_ok(snum))
422 continue;
423 pdb = get_print_db_byname(lp_const_servicename(snum));
424 if (!pdb) {
425 continue;
426 }
427 tdb_traverse(pdb->tdb, unixjob_traverse_fn, &state);
428 release_print_db(pdb);
429 if (state.sysjob_to_jobid_value != (uint32)-1)
430 return state.sysjob_to_jobid_value;
431 }
432 return (uint32)-1;
433}
434
435/****************************************************************************
436 Send notifications based on what has changed after a pjob_store.
437****************************************************************************/
438
439static const struct {
440 uint32 lpq_status;
441 uint32 spoolss_status;
442} lpq_to_spoolss_status_map[] = {
443 { LPQ_QUEUED, JOB_STATUS_QUEUED },
444 { LPQ_PAUSED, JOB_STATUS_PAUSED },
445 { LPQ_SPOOLING, JOB_STATUS_SPOOLING },
446 { LPQ_PRINTING, JOB_STATUS_PRINTING },
447 { LPQ_DELETING, JOB_STATUS_DELETING },
448 { LPQ_OFFLINE, JOB_STATUS_OFFLINE },
449 { LPQ_PAPEROUT, JOB_STATUS_PAPEROUT },
450 { LPQ_PRINTED, JOB_STATUS_PRINTED },
451 { LPQ_DELETED, JOB_STATUS_DELETED },
452 { LPQ_BLOCKED, JOB_STATUS_BLOCKED },
453 { LPQ_USER_INTERVENTION, JOB_STATUS_USER_INTERVENTION },
454 { -1, 0 }
455};
456
457/* Convert a lpq status value stored in printing.tdb into the
458 appropriate win32 API constant. */
459
460static uint32 map_to_spoolss_status(uint32 lpq_status)
461{
462 int i = 0;
463
464 while (lpq_to_spoolss_status_map[i].lpq_status != -1) {
465 if (lpq_to_spoolss_status_map[i].lpq_status == lpq_status)
466 return lpq_to_spoolss_status_map[i].spoolss_status;
467 i++;
468 }
469
470 return 0;
471}
472
473static void pjob_store_notify(const char* sharename, uint32 jobid, struct printjob *old_data,
474 struct printjob *new_data)
475{
476 bool new_job = False;
477
478 if (!old_data)
479 new_job = True;
480
481 /* Job attributes that can't be changed. We only send
482 notification for these on a new job. */
483
484 /* ACHTUNG! Due to a bug in Samba's spoolss parsing of the
485 NOTIFY_INFO_DATA buffer, we *have* to send the job submission
486 time first or else we'll end up with potential alignment
487 errors. I don't think the systemtime should be spooled as
488 a string, but this gets us around that error.
489 --jerry (i'll feel dirty for this) */
490
491 if (new_job) {
492 notify_job_submitted(sharename, jobid, new_data->starttime);
493 notify_job_username(sharename, jobid, new_data->user);
494 }
495
496 if (new_job || !strequal(old_data->jobname, new_data->jobname))
497 notify_job_name(sharename, jobid, new_data->jobname);
498
499 /* Job attributes of a new job or attributes that can be
500 modified. */
501
502 if (new_job || !strequal(old_data->jobname, new_data->jobname))
503 notify_job_name(sharename, jobid, new_data->jobname);
504
505 if (new_job || old_data->status != new_data->status)
506 notify_job_status(sharename, jobid, map_to_spoolss_status(new_data->status));
507
508 if (new_job || old_data->size != new_data->size)
509 notify_job_total_bytes(sharename, jobid, new_data->size);
510
511 if (new_job || old_data->page_count != new_data->page_count)
512 notify_job_total_pages(sharename, jobid, new_data->page_count);
513}
514
515/****************************************************************************
516 Store a job structure back to the database.
517****************************************************************************/
518
519static bool pjob_store(const char* sharename, uint32 jobid, struct printjob *pjob)
520{
521 uint32_t tmp;
522 TDB_DATA old_data, new_data;
523 bool ret = False;
524 struct tdb_print_db *pdb = get_print_db_byname(sharename);
525 uint8 *buf = NULL;
526 int len, newlen, buflen;
527
528
529 if (!pdb)
530 return False;
531
532 /* Get old data */
533
534 old_data = tdb_fetch(pdb->tdb, print_key(jobid, &tmp));
535
536 /* Doh! Now we have to pack/unpack data since the NT_DEVICEMODE was added */
537
538 newlen = 0;
539
540 do {
541 len = 0;
542 buflen = newlen;
543 len += tdb_pack(buf+len, buflen-len, "dddddddddffff",
544 (uint32)pjob->pid,
545 (uint32)pjob->sysjob,
546 (uint32)pjob->fd,
547 (uint32)pjob->starttime,
548 (uint32)pjob->status,
549 (uint32)pjob->size,
550 (uint32)pjob->page_count,
551 (uint32)pjob->spooled,
552 (uint32)pjob->smbjob,
553 pjob->filename,
554 pjob->jobname,
555 pjob->user,
556 pjob->queuename);
557
558 len += pack_devicemode(pjob->nt_devmode, buf+len, buflen-len);
559
560 if (buflen != len) {
561 buf = (uint8 *)SMB_REALLOC(buf, len);
562 if (!buf) {
563 DEBUG(0,("pjob_store: failed to enlarge buffer!\n"));
564 goto done;
565 }
566 newlen = len;
567 }
568 } while ( buflen != len );
569
570
571 /* Store new data */
572
573 new_data.dptr = buf;
574 new_data.dsize = len;
575 ret = (tdb_store(pdb->tdb, print_key(jobid, &tmp), new_data,
576 TDB_REPLACE) == 0);
577
578 release_print_db(pdb);
579
580 /* Send notify updates for what has changed */
581
582 if ( ret ) {
583 struct printjob old_pjob;
584
585 if ( old_data.dsize )
586 {
587 if ( unpack_pjob( old_data.dptr, old_data.dsize, &old_pjob ) != -1 )
588 {
589 pjob_store_notify( sharename, jobid, &old_pjob , pjob );
590 free_nt_devicemode( &old_pjob.nt_devmode );
591 }
592 }
593 else {
594 /* new job */
595 pjob_store_notify( sharename, jobid, NULL, pjob );
596 }
597 }
598
599done:
600 SAFE_FREE( old_data.dptr );
601 SAFE_FREE( buf );
602
603 return ret;
604}
605
606/****************************************************************************
607 Remove a job structure from the database.
608****************************************************************************/
609
610void pjob_delete(const char* sharename, uint32 jobid)
611{
612 uint32_t tmp;
613 struct printjob *pjob;
614 uint32 job_status = 0;
615 struct tdb_print_db *pdb;
616
617 pdb = get_print_db_byname( sharename );
618
619 if (!pdb)
620 return;
621
622 pjob = print_job_find( sharename, jobid );
623
624 if (!pjob) {
625 DEBUG(5, ("pjob_delete: we were asked to delete nonexistent job %u\n",
626 (unsigned int)jobid));
627 release_print_db(pdb);
628 return;
629 }
630
631 /* We must cycle through JOB_STATUS_DELETING and
632 JOB_STATUS_DELETED for the port monitor to delete the job
633 properly. */
634
635 job_status = JOB_STATUS_DELETING|JOB_STATUS_DELETED;
636 notify_job_status(sharename, jobid, job_status);
637
638 /* Remove from printing.tdb */
639
640 tdb_delete(pdb->tdb, print_key(jobid, &tmp));
641 remove_from_jobs_changed(sharename, jobid);
642 release_print_db( pdb );
643 rap_jobid_delete(sharename, jobid);
644}
645
646/****************************************************************************
647 Parse a file name from the system spooler to generate a jobid.
648****************************************************************************/
649
650static uint32 print_parse_jobid(char *fname)
651{
652 int jobid;
653
654 if (strncmp(fname,PRINT_SPOOL_PREFIX,strlen(PRINT_SPOOL_PREFIX)) != 0)
655 return (uint32)-1;
656 fname += strlen(PRINT_SPOOL_PREFIX);
657
658 jobid = atoi(fname);
659 if (jobid <= 0)
660 return (uint32)-1;
661
662 return (uint32)jobid;
663}
664
665/****************************************************************************
666 List a unix job in the print database.
667****************************************************************************/
668
669static void print_unix_job(const char *sharename, print_queue_struct *q, uint32 jobid)
670{
671 struct printjob pj, *old_pj;
672
673 if (jobid == (uint32)-1)
674 jobid = q->job + UNIX_JOB_START;
675
676 /* Preserve the timestamp on an existing unix print job */
677
678 old_pj = print_job_find(sharename, jobid);
679
680 ZERO_STRUCT(pj);
681
682 pj.pid = (pid_t)-1;
683 pj.sysjob = q->job;
684 pj.fd = -1;
685 pj.starttime = old_pj ? old_pj->starttime : q->time;
686 pj.status = q->status;
687 pj.size = q->size;
688 pj.spooled = True;
689 fstrcpy(pj.filename, old_pj ? old_pj->filename : "");
690 if (jobid < UNIX_JOB_START) {
691 pj.smbjob = True;
692 fstrcpy(pj.jobname, old_pj ? old_pj->jobname : "Remote Downlevel Document");
693 } else {
694 pj.smbjob = False;
695 fstrcpy(pj.jobname, old_pj ? old_pj->jobname : q->fs_file);
696 }
697 fstrcpy(pj.user, old_pj ? old_pj->user : q->fs_user);
698 fstrcpy(pj.queuename, old_pj ? old_pj->queuename : sharename );
699
700 pjob_store(sharename, jobid, &pj);
701}
702
703
704struct traverse_struct {
705 print_queue_struct *queue;
706 int qcount, snum, maxcount, total_jobs;
707 const char *sharename;
708 time_t lpq_time;
709 const char *lprm_command;
710 struct printif *print_if;
711};
712
713/****************************************************************************
714 Utility fn to delete any jobs that are no longer active.
715****************************************************************************/
716
717static int traverse_fn_delete(TDB_CONTEXT *t, TDB_DATA key, TDB_DATA data, void *state)
718{
719 struct traverse_struct *ts = (struct traverse_struct *)state;
720 struct printjob pjob;
721 uint32 jobid;
722 int i = 0;
723
724 if ( key.dsize != sizeof(jobid) )
725 return 0;
726
727 jobid = IVAL(key.dptr, 0);
728 if ( unpack_pjob( data.dptr, data.dsize, &pjob ) == -1 )
729 return 0;
730 free_nt_devicemode( &pjob.nt_devmode );
731
732
733 if (!pjob.smbjob) {
734 /* remove a unix job if it isn't in the system queue any more */
735
736 for (i=0;i<ts->qcount;i++) {
737 uint32 u_jobid = (ts->queue[i].job + UNIX_JOB_START);
738 if (jobid == u_jobid)
739 break;
740 }
741 if (i == ts->qcount) {
742 DEBUG(10,("traverse_fn_delete: pjob %u deleted due to !smbjob\n",
743 (unsigned int)jobid ));
744 pjob_delete(ts->sharename, jobid);
745 return 0;
746 }
747
748 /* need to continue the the bottom of the function to
749 save the correct attributes */
750 }
751
752 /* maybe it hasn't been spooled yet */
753 if (!pjob.spooled) {
754 /* if a job is not spooled and the process doesn't
755 exist then kill it. This cleans up after smbd
756 deaths */
757 if (!process_exists_by_pid(pjob.pid)) {
758 DEBUG(10,("traverse_fn_delete: pjob %u deleted due to !process_exists (%u)\n",
759 (unsigned int)jobid, (unsigned int)pjob.pid ));
760 pjob_delete(ts->sharename, jobid);
761 } else
762 ts->total_jobs++;
763 return 0;
764 }
765
766 /* this check only makes sense for jobs submitted from Windows clients */
767
768 if ( pjob.smbjob ) {
769 for (i=0;i<ts->qcount;i++) {
770 uint32 curr_jobid;
771
772 if ( pjob.status == LPQ_DELETED )
773 continue;
774
775 curr_jobid = print_parse_jobid(ts->queue[i].fs_file);
776
777 if (jobid == curr_jobid) {
778
779 /* try to clean up any jobs that need to be deleted */
780
781 if ( pjob.status == LPQ_DELETING ) {
782 int result;
783
784 result = (*(ts->print_if->job_delete))(
785 ts->sharename, ts->lprm_command, &pjob );
786
787 if ( result != 0 ) {
788 /* if we can't delete, then reset the job status */
789 pjob.status = LPQ_QUEUED;
790 pjob_store(ts->sharename, jobid, &pjob);
791 }
792 else {
793 /* if we deleted the job, the remove the tdb record */
794 pjob_delete(ts->sharename, jobid);
795 pjob.status = LPQ_DELETED;
796 }
797
798 }
799
800 break;
801 }
802 }
803 }
804
805 /* The job isn't in the system queue - we have to assume it has
806 completed, so delete the database entry. */
807
808 if (i == ts->qcount) {
809
810 /* A race can occur between the time a job is spooled and
811 when it appears in the lpq output. This happens when
812 the job is added to printing.tdb when another smbd
813 running print_queue_update() has completed a lpq and
814 is currently traversing the printing tdb and deleting jobs.
815 Don't delete the job if it was submitted after the lpq_time. */
816
817 if (pjob.starttime < ts->lpq_time) {
818 DEBUG(10,("traverse_fn_delete: pjob %u deleted due to pjob.starttime (%u) < ts->lpq_time (%u)\n",
819 (unsigned int)jobid,
820 (unsigned int)pjob.starttime,
821 (unsigned int)ts->lpq_time ));
822 pjob_delete(ts->sharename, jobid);
823 } else
824 ts->total_jobs++;
825 return 0;
826 }
827
828 /* Save the pjob attributes we will store.
829 FIXME!!! This is the only place where queue->job
830 represents the SMB jobid --jerry */
831
832 ts->queue[i].job = jobid;
833 ts->queue[i].size = pjob.size;
834 ts->queue[i].page_count = pjob.page_count;
835 ts->queue[i].status = pjob.status;
836 ts->queue[i].priority = 1;
837 ts->queue[i].time = pjob.starttime;
838 fstrcpy(ts->queue[i].fs_user, pjob.user);
839 fstrcpy(ts->queue[i].fs_file, pjob.jobname);
840
841 ts->total_jobs++;
842
843 return 0;
844}
845
846/****************************************************************************
847 Check if the print queue has been updated recently enough.
848****************************************************************************/
849
850static void print_cache_flush(const char *sharename)
851{
852 fstring key;
853 struct tdb_print_db *pdb = get_print_db_byname(sharename);
854
855 if (!pdb)
856 return;
857 slprintf(key, sizeof(key)-1, "CACHE/%s", sharename);
858 tdb_store_int32(pdb->tdb, key, -1);
859 release_print_db(pdb);
860}
861
862/****************************************************************************
863 Check if someone already thinks they are doing the update.
864****************************************************************************/
865
866static pid_t get_updating_pid(const char *sharename)
867{
868 fstring keystr;
869 TDB_DATA data, key;
870 pid_t updating_pid;
871 struct tdb_print_db *pdb = get_print_db_byname(sharename);
872
873 if (!pdb)
874 return (pid_t)-1;
875 slprintf(keystr, sizeof(keystr)-1, "UPDATING/%s", sharename);
876 key = string_tdb_data(keystr);
877
878 data = tdb_fetch(pdb->tdb, key);
879 release_print_db(pdb);
880 if (!data.dptr || data.dsize != sizeof(pid_t)) {
881 SAFE_FREE(data.dptr);
882 return (pid_t)-1;
883 }
884
885 updating_pid = IVAL(data.dptr, 0);
886 SAFE_FREE(data.dptr);
887
888 if (process_exists_by_pid(updating_pid))
889 return updating_pid;
890
891 return (pid_t)-1;
892}
893
894/****************************************************************************
895 Set the fact that we're doing the update, or have finished doing the update
896 in the tdb.
897****************************************************************************/
898
899static void set_updating_pid(const fstring sharename, bool updating)
900{
901 fstring keystr;
902 TDB_DATA key;
903 TDB_DATA data;
904 pid_t updating_pid = sys_getpid();
905 uint8 buffer[4];
906
907 struct tdb_print_db *pdb = get_print_db_byname(sharename);
908
909 if (!pdb)
910 return;
911
912 slprintf(keystr, sizeof(keystr)-1, "UPDATING/%s", sharename);
913 key = string_tdb_data(keystr);
914
915 DEBUG(5, ("set_updating_pid: %s updating lpq cache for print share %s\n",
916 updating ? "" : "not ",
917 sharename ));
918
919 if ( !updating ) {
920 tdb_delete(pdb->tdb, key);
921 release_print_db(pdb);
922 return;
923 }
924
925 SIVAL( buffer, 0, updating_pid);
926 data.dptr = buffer;
927 data.dsize = 4; /* we always assume this is a 4 byte value */
928
929 tdb_store(pdb->tdb, key, data, TDB_REPLACE);
930 release_print_db(pdb);
931}
932
933/****************************************************************************
934 Sort print jobs by submittal time.
935****************************************************************************/
936
937static int printjob_comp(print_queue_struct *j1, print_queue_struct *j2)
938{
939 /* Silly cases */
940
941 if (!j1 && !j2)
942 return 0;
943 if (!j1)
944 return -1;
945 if (!j2)
946 return 1;
947
948 /* Sort on job start time */
949
950 if (j1->time == j2->time)
951 return 0;
952 return (j1->time > j2->time) ? 1 : -1;
953}
954
955/****************************************************************************
956 Store the sorted queue representation for later portmon retrieval.
957 Skip deleted jobs
958****************************************************************************/
959
960static void store_queue_struct(struct tdb_print_db *pdb, struct traverse_struct *pts)
961{
962 TDB_DATA data;
963 int max_reported_jobs = lp_max_reported_jobs(pts->snum);
964 print_queue_struct *queue = pts->queue;
965 size_t len;
966 size_t i;
967 unsigned int qcount;
968
969 if (max_reported_jobs && (max_reported_jobs < pts->qcount))
970 pts->qcount = max_reported_jobs;
971 qcount = 0;
972
973 /* Work out the size. */
974 data.dsize = 0;
975 data.dsize += tdb_pack(NULL, 0, "d", qcount);
976
977 for (i = 0; i < pts->qcount; i++) {
978 if ( queue[i].status == LPQ_DELETED )
979 continue;
980
981 qcount++;
982 data.dsize += tdb_pack(NULL, 0, "ddddddff",
983 (uint32)queue[i].job,
984 (uint32)queue[i].size,
985 (uint32)queue[i].page_count,
986 (uint32)queue[i].status,
987 (uint32)queue[i].priority,
988 (uint32)queue[i].time,
989 queue[i].fs_user,
990 queue[i].fs_file);
991 }
992
993 if ((data.dptr = (uint8 *)SMB_MALLOC(data.dsize)) == NULL)
994 return;
995
996 len = 0;
997 len += tdb_pack(data.dptr + len, data.dsize - len, "d", qcount);
998 for (i = 0; i < pts->qcount; i++) {
999 if ( queue[i].status == LPQ_DELETED )
1000 continue;
1001
1002 len += tdb_pack(data.dptr + len, data.dsize - len, "ddddddff",
1003 (uint32)queue[i].job,
1004 (uint32)queue[i].size,
1005 (uint32)queue[i].page_count,
1006 (uint32)queue[i].status,
1007 (uint32)queue[i].priority,
1008 (uint32)queue[i].time,
1009 queue[i].fs_user,
1010 queue[i].fs_file);
1011 }
1012
1013 tdb_store(pdb->tdb, string_tdb_data("INFO/linear_queue_array"), data,
1014 TDB_REPLACE);
1015 SAFE_FREE(data.dptr);
1016 return;
1017}
1018
1019static TDB_DATA get_jobs_changed_data(struct tdb_print_db *pdb)
1020{
1021 TDB_DATA data;
1022
1023 ZERO_STRUCT(data);
1024
1025 data = tdb_fetch(pdb->tdb, string_tdb_data("INFO/jobs_changed"));
1026 if (data.dptr == NULL || data.dsize == 0 || (data.dsize % 4 != 0)) {
1027 SAFE_FREE(data.dptr);
1028 ZERO_STRUCT(data);
1029 }
1030
1031 return data;
1032}
1033
1034static void check_job_changed(const char *sharename, TDB_DATA data, uint32 jobid)
1035{
1036 unsigned int i;
1037 unsigned int job_count = data.dsize / 4;
1038
1039 for (i = 0; i < job_count; i++) {
1040 uint32 ch_jobid;
1041
1042 ch_jobid = IVAL(data.dptr, i*4);
1043 if (ch_jobid == jobid)
1044 remove_from_jobs_changed(sharename, jobid);
1045 }
1046}
1047
1048/****************************************************************************
1049 Check if the print queue has been updated recently enough.
1050****************************************************************************/
1051
1052static bool print_cache_expired(const char *sharename, bool check_pending)
1053{
1054 fstring key;
1055 time_t last_qscan_time, time_now = time(NULL);
1056 struct tdb_print_db *pdb = get_print_db_byname(sharename);
1057 bool result = False;
1058
1059 if (!pdb)
1060 return False;
1061
1062 snprintf(key, sizeof(key), "CACHE/%s", sharename);
1063 last_qscan_time = (time_t)tdb_fetch_int32(pdb->tdb, key);
1064
1065 /*
1066 * Invalidate the queue for 3 reasons.
1067 * (1). last queue scan time == -1.
1068 * (2). Current time - last queue scan time > allowed cache time.
1069 * (3). last queue scan time > current time + MAX_CACHE_VALID_TIME (1 hour by default).
1070 * This last test picks up machines for which the clock has been moved
1071 * forward, an lpq scan done and then the clock moved back. Otherwise
1072 * that last lpq scan would stay around for a loooong loooong time... :-). JRA.
1073 */
1074
1075 if (last_qscan_time == ((time_t)-1)
1076 || (time_now - last_qscan_time) >= lp_lpqcachetime()
1077 || last_qscan_time > (time_now + MAX_CACHE_VALID_TIME))
1078 {
1079 uint32 u;
1080 time_t msg_pending_time;
1081
1082 DEBUG(4, ("print_cache_expired: cache expired for queue %s "
1083 "(last_qscan_time = %d, time now = %d, qcachetime = %d)\n",
1084 sharename, (int)last_qscan_time, (int)time_now,
1085 (int)lp_lpqcachetime() ));
1086
1087 /* check if another smbd has already sent a message to update the
1088 queue. Give the pending message one minute to clear and
1089 then send another message anyways. Make sure to check for
1090 clocks that have been run forward and then back again. */
1091
1092 snprintf(key, sizeof(key), "MSG_PENDING/%s", sharename);
1093
1094 if ( check_pending
1095 && tdb_fetch_uint32( pdb->tdb, key, &u )
1096 && (msg_pending_time=u) > 0
1097 && msg_pending_time <= time_now
1098 && (time_now - msg_pending_time) < 60 )
1099 {
1100 DEBUG(4,("print_cache_expired: message already pending for %s. Accepting cache\n",
1101 sharename));
1102 goto done;
1103 }
1104
1105 result = True;
1106 }
1107
1108done:
1109 release_print_db(pdb);
1110 return result;
1111}
1112
1113/****************************************************************************
1114 main work for updating the lpq cahe for a printer queue
1115****************************************************************************/
1116
1117static void print_queue_update_internal( const char *sharename,
1118 struct printif *current_printif,
1119 char *lpq_command, char *lprm_command )
1120{
1121 int i, qcount;
1122 print_queue_struct *queue = NULL;
1123 print_status_struct status;
1124 print_status_struct old_status;
1125 struct printjob *pjob;
1126 struct traverse_struct tstruct;
1127 TDB_DATA data, key;
1128 TDB_DATA jcdata;
1129 fstring keystr, cachestr;
1130 struct tdb_print_db *pdb = get_print_db_byname(sharename);
1131
1132 if (!pdb) {
1133 return;
1134 }
1135
1136 DEBUG(5,("print_queue_update_internal: printer = %s, type = %d, lpq command = [%s]\n",
1137 sharename, current_printif->type, lpq_command));
1138
1139 /*
1140 * Update the cache time FIRST ! Stops others even
1141 * attempting to get the lock and doing this
1142 * if the lpq takes a long time.
1143 */
1144
1145 slprintf(cachestr, sizeof(cachestr)-1, "CACHE/%s", sharename);
1146 tdb_store_int32(pdb->tdb, cachestr, (int)time(NULL));
1147
1148 /* get the current queue using the appropriate interface */
1149 ZERO_STRUCT(status);
1150
1151 qcount = (*(current_printif->queue_get))(sharename,
1152 current_printif->type,
1153 lpq_command, &queue, &status);
1154
1155 DEBUG(3, ("print_queue_update_internal: %d job%s in queue for %s\n",
1156 qcount, (qcount != 1) ? "s" : "", sharename));
1157
1158 /* Sort the queue by submission time otherwise they are displayed
1159 in hash order. */
1160
1161 qsort(queue, qcount, sizeof(print_queue_struct),
1162 QSORT_CAST(printjob_comp));
1163
1164 /*
1165 any job in the internal database that is marked as spooled
1166 and doesn't exist in the system queue is considered finished
1167 and removed from the database
1168
1169 any job in the system database but not in the internal database
1170 is added as a unix job
1171
1172 fill in any system job numbers as we go
1173 */
1174
1175 jcdata = get_jobs_changed_data(pdb);
1176
1177 for (i=0; i<qcount; i++) {
1178 uint32 jobid = print_parse_jobid(queue[i].fs_file);
1179
1180 if (jobid == (uint32)-1) {
1181 /* assume its a unix print job */
1182 print_unix_job(sharename, &queue[i], jobid);
1183 continue;
1184 }
1185
1186 /* we have an active SMB print job - update its status */
1187 pjob = print_job_find(sharename, jobid);
1188 if (!pjob) {
1189 /* err, somethings wrong. Probably smbd was restarted
1190 with jobs in the queue. All we can do is treat them
1191 like unix jobs. Pity. */
1192 print_unix_job(sharename, &queue[i], jobid);
1193 continue;
1194 }
1195
1196 pjob->sysjob = queue[i].job;
1197
1198 /* don't reset the status on jobs to be deleted */
1199
1200 if ( pjob->status != LPQ_DELETING )
1201 pjob->status = queue[i].status;
1202
1203 pjob_store(sharename, jobid, pjob);
1204
1205 check_job_changed(sharename, jcdata, jobid);
1206 }
1207
1208 SAFE_FREE(jcdata.dptr);
1209
1210 /* now delete any queued entries that don't appear in the
1211 system queue */
1212 tstruct.queue = queue;
1213 tstruct.qcount = qcount;
1214 tstruct.snum = -1;
1215 tstruct.total_jobs = 0;
1216 tstruct.lpq_time = time(NULL);
1217 tstruct.sharename = sharename;
1218 tstruct.lprm_command = lprm_command;
1219 tstruct.print_if = current_printif;
1220
1221 tdb_traverse(pdb->tdb, traverse_fn_delete, (void *)&tstruct);
1222
1223 /* Store the linearised queue, max jobs only. */
1224 store_queue_struct(pdb, &tstruct);
1225
1226 SAFE_FREE(tstruct.queue);
1227
1228 DEBUG(10,("print_queue_update_internal: printer %s INFO/total_jobs = %d\n",
1229 sharename, tstruct.total_jobs ));
1230
1231 tdb_store_int32(pdb->tdb, "INFO/total_jobs", tstruct.total_jobs);
1232
1233 get_queue_status(sharename, &old_status);
1234 if (old_status.qcount != qcount)
1235 DEBUG(10,("print_queue_update_internal: queue status change %d jobs -> %d jobs for printer %s\n",
1236 old_status.qcount, qcount, sharename));
1237
1238 /* store the new queue status structure */
1239 slprintf(keystr, sizeof(keystr)-1, "STATUS/%s", sharename);
1240 key = string_tdb_data(keystr);
1241
1242 status.qcount = qcount;
1243 data.dptr = (uint8 *)&status;
1244 data.dsize = sizeof(status);
1245 tdb_store(pdb->tdb, key, data, TDB_REPLACE);
1246
1247 /*
1248 * Update the cache time again. We want to do this call
1249 * as little as possible...
1250 */
1251
1252 slprintf(keystr, sizeof(keystr)-1, "CACHE/%s", sharename);
1253 tdb_store_int32(pdb->tdb, keystr, (int32)time(NULL));
1254
1255 /* clear the msg pending record for this queue */
1256
1257 snprintf(keystr, sizeof(keystr), "MSG_PENDING/%s", sharename);
1258
1259 if ( !tdb_store_uint32( pdb->tdb, keystr, 0 ) ) {
1260 /* log a message but continue on */
1261
1262 DEBUG(0,("print_queue_update: failed to store MSG_PENDING flag for [%s]!\n",
1263 sharename));
1264 }
1265
1266 release_print_db( pdb );
1267
1268 return;
1269}
1270
1271/****************************************************************************
1272 Update the internal database from the system print queue for a queue.
1273 obtain a lock on the print queue before proceeding (needed when mutiple
1274 smbd processes maytry to update the lpq cache concurrently).
1275****************************************************************************/
1276
1277static void print_queue_update_with_lock( const char *sharename,
1278 struct printif *current_printif,
1279 char *lpq_command, char *lprm_command )
1280{
1281 fstring keystr;
1282 struct tdb_print_db *pdb;
1283
1284 DEBUG(5,("print_queue_update_with_lock: printer share = %s\n", sharename));
1285 pdb = get_print_db_byname(sharename);
1286 if (!pdb)
1287 return;
1288
1289 if ( !print_cache_expired(sharename, False) ) {
1290 DEBUG(5,("print_queue_update_with_lock: print cache for %s is still ok\n", sharename));
1291 release_print_db(pdb);
1292 return;
1293 }
1294
1295 /*
1296 * Check to see if someone else is doing this update.
1297 * This is essentially a mutex on the update.
1298 */
1299
1300 if (get_updating_pid(sharename) != -1) {
1301 release_print_db(pdb);
1302 return;
1303 }
1304
1305 /* Lock the queue for the database update */
1306
1307 slprintf(keystr, sizeof(keystr) - 1, "LOCK/%s", sharename);
1308 /* Only wait 10 seconds for this. */
1309 if (tdb_lock_bystring_with_timeout(pdb->tdb, keystr, 10) == -1) {
1310 DEBUG(0,("print_queue_update_with_lock: Failed to lock printer %s database\n", sharename));
1311 release_print_db(pdb);
1312 return;
1313 }
1314
1315 /*
1316 * Ensure that no one else got in here.
1317 * If the updating pid is still -1 then we are
1318 * the winner.
1319 */
1320
1321 if (get_updating_pid(sharename) != -1) {
1322 /*
1323 * Someone else is doing the update, exit.
1324 */
1325 tdb_unlock_bystring(pdb->tdb, keystr);
1326 release_print_db(pdb);
1327 return;
1328 }
1329
1330 /*
1331 * We're going to do the update ourselves.
1332 */
1333
1334 /* Tell others we're doing the update. */
1335 set_updating_pid(sharename, True);
1336
1337 /*
1338 * Allow others to enter and notice we're doing
1339 * the update.
1340 */
1341
1342 tdb_unlock_bystring(pdb->tdb, keystr);
1343
1344 /* do the main work now */
1345
1346 print_queue_update_internal( sharename, current_printif,
1347 lpq_command, lprm_command );
1348
1349 /* Delete our pid from the db. */
1350 set_updating_pid(sharename, False);
1351 release_print_db(pdb);
1352}
1353
1354/****************************************************************************
1355this is the receive function of the background lpq updater
1356****************************************************************************/
1357static void print_queue_receive(struct messaging_context *msg,
1358 void *private_data,
1359 uint32_t msg_type,
1360 struct server_id server_id,
1361 DATA_BLOB *data)
1362{
1363 fstring sharename;
1364 char *lpqcommand = NULL, *lprmcommand = NULL;
1365 int printing_type;
1366 size_t len;
1367
1368 len = tdb_unpack( (uint8 *)data->data, data->length, "fdPP",
1369 sharename,
1370 &printing_type,
1371 &lpqcommand,
1372 &lprmcommand );
1373
1374 if ( len == -1 ) {
1375 SAFE_FREE(lpqcommand);
1376 SAFE_FREE(lprmcommand);
1377 DEBUG(0,("print_queue_receive: Got invalid print queue update message\n"));
1378 return;
1379 }
1380
1381 print_queue_update_with_lock(sharename,
1382 get_printer_fns_from_type((enum printing_types)printing_type),
1383 lpqcommand, lprmcommand );
1384
1385 SAFE_FREE(lpqcommand);
1386 SAFE_FREE(lprmcommand);
1387 return;
1388}
1389
1390static pid_t background_lpq_updater_pid = -1;
1391
1392/****************************************************************************
1393main thread of the background lpq updater
1394****************************************************************************/
1395void start_background_queue(void)
1396{
1397 /* Use local variables for this as we don't
1398 * need to save the parent side of this, just
1399 * ensure it closes when the process exits.
1400 */
1401 int pause_pipe[2];
1402
1403 DEBUG(3,("start_background_queue: Starting background LPQ thread\n"));
1404
1405#ifndef __OS2__
1406 if (pipe(pause_pipe) == -1) {
1407#else
1408 // on OS2 we have no select() on pipes, so we use socketpair() instead
1409 if (socketpair(AF_UNIX, SOCK_STREAM,0, pause_pipe) < 0) {
1410#endif
1411 DEBUG(5,("start_background_queue: cannot create pipe. %s\n", strerror(errno) ));
1412 exit(1);
1413 }
1414
1415 background_lpq_updater_pid = sys_fork();
1416
1417 if (background_lpq_updater_pid == -1) {
1418 DEBUG(5,("start_background_queue: background LPQ thread failed to start. %s\n", strerror(errno) ));
1419 exit(1);
1420 }
1421
1422 if(background_lpq_updater_pid == 0) {
1423 /* Child. */
1424 DEBUG(5,("start_background_queue: background LPQ thread started\n"));
1425
1426 close(pause_pipe[0]);
1427 pause_pipe[0] = -1;
1428
1429 if (!reinit_after_fork(smbd_messaging_context(),
1430 smbd_event_context(), true)) {
1431 DEBUG(0,("reinit_after_fork() failed\n"));
1432 smb_panic("reinit_after_fork() failed");
1433 }
1434
1435 claim_connection( NULL, "smbd lpq backend",
1436 FLAG_MSG_GENERAL|FLAG_MSG_SMBD|FLAG_MSG_PRINT_GENERAL);
1437
1438 if (!locking_init()) {
1439 exit(1);
1440 }
1441
1442 messaging_register(smbd_messaging_context(), NULL,
1443 MSG_PRINTER_UPDATE, print_queue_receive);
1444
1445 DEBUG(5,("start_background_queue: background LPQ thread waiting for messages\n"));
1446 while (1) {
1447 fd_set pause_fds;
1448 int pause_select;
1449
1450 FD_ZERO(&pause_fds);
1451 FD_SET(pause_pipe[1], &pause_fds);
1452 pause_select = sys_select(pause_pipe[1]+1, &pause_fds, NULL, NULL, NULL);
1453 /* If pause_pipe[0] is closed it means the parent smbd
1454 * and children exited or aborted. */
1455 if (pause_select == 1) {
1456 exit_server_cleanly(NULL);
1457 }
1458
1459 /* check for some essential signals first */
1460
1461 if (got_sig_term) {
1462 exit_server_cleanly(NULL);
1463 }
1464
1465 if (reload_after_sighup) {
1466 change_to_root_user();
1467 DEBUG(1,("Reloading services after SIGHUP\n"));
1468 reload_services(False);
1469 reload_after_sighup = 0;
1470 }
1471
1472 /* now check for messages */
1473
1474 DEBUG(10,("start_background_queue: background LPQ thread got a message\n"));
1475 message_dispatch(smbd_messaging_context());
1476
1477 /* process any pending print change notify messages */
1478
1479 print_notify_send_messages(smbd_messaging_context(),
1480 0);
1481 }
1482 }
1483
1484 close(pause_pipe[1]);
1485}
1486
1487/****************************************************************************
1488update the internal database from the system print queue for a queue
1489****************************************************************************/
1490
1491static void print_queue_update(int snum, bool force)
1492{
1493 fstring key;
1494 fstring sharename;
1495 char *lpqcommand = NULL;
1496 char *lprmcommand = NULL;
1497 uint8 *buffer = NULL;
1498 size_t len = 0;
1499 size_t newlen;
1500 struct tdb_print_db *pdb;
1501 int type;
1502 struct printif *current_printif;
1503 TALLOC_CTX *ctx = talloc_tos();
1504
1505 fstrcpy( sharename, lp_const_servicename(snum));
1506
1507 /* don't strip out characters like '$' from the printername */
1508
1509 lpqcommand = talloc_string_sub2(ctx,
1510 lp_lpqcommand(snum),
1511 "%p",
1512 PRINTERNAME(snum),
1513 false, false, false);
1514 if (!lpqcommand) {
1515 return;
1516 }
1517 lpqcommand = talloc_sub_advanced(ctx,
1518 lp_servicename(snum),
1519 current_user_info.unix_name,
1520 "",
1521 current_user.ut.gid,
1522 get_current_username(),
1523 current_user_info.domain,
1524 lpqcommand);
1525 if (!lpqcommand) {
1526 return;
1527 }
1528
1529 lprmcommand = talloc_string_sub2(ctx,
1530 lp_lprmcommand(snum),
1531 "%p",
1532 PRINTERNAME(snum),
1533 false, false, false);
1534 if (!lprmcommand) {
1535 return;
1536 }
1537 lprmcommand = talloc_sub_advanced(ctx,
1538 lp_servicename(snum),
1539 current_user_info.unix_name,
1540 "",
1541 current_user.ut.gid,
1542 get_current_username(),
1543 current_user_info.domain,
1544 lprmcommand);
1545 if (!lprmcommand) {
1546 return;
1547 }
1548
1549 /*
1550 * Make sure that the background queue process exists.
1551 * Otherwise just do the update ourselves
1552 */
1553
1554 if ( force || background_lpq_updater_pid == -1 ) {
1555 DEBUG(4,("print_queue_update: updating queue [%s] myself\n", sharename));
1556 current_printif = get_printer_fns( snum );
1557 print_queue_update_with_lock( sharename, current_printif, lpqcommand, lprmcommand );
1558
1559 return;
1560 }
1561
1562 type = lp_printing(snum);
1563
1564 /* get the length */
1565
1566 len = tdb_pack( NULL, 0, "fdPP",
1567 sharename,
1568 type,
1569 lpqcommand,
1570 lprmcommand );
1571
1572 buffer = SMB_XMALLOC_ARRAY( uint8, len );
1573
1574 /* now pack the buffer */
1575 newlen = tdb_pack( buffer, len, "fdPP",
1576 sharename,
1577 type,
1578 lpqcommand,
1579 lprmcommand );
1580
1581 SMB_ASSERT( newlen == len );
1582
1583 DEBUG(10,("print_queue_update: Sending message -> printer = %s, "
1584 "type = %d, lpq command = [%s] lprm command = [%s]\n",
1585 sharename, type, lpqcommand, lprmcommand ));
1586
1587 /* here we set a msg pending record for other smbd processes
1588 to throttle the number of duplicate print_queue_update msgs
1589 sent. */
1590
1591 pdb = get_print_db_byname(sharename);
1592 if (!pdb) {
1593 SAFE_FREE(buffer);
1594 return;
1595 }
1596
1597 snprintf(key, sizeof(key), "MSG_PENDING/%s", sharename);
1598
1599 if ( !tdb_store_uint32( pdb->tdb, key, time(NULL) ) ) {
1600 /* log a message but continue on */
1601
1602 DEBUG(0,("print_queue_update: failed to store MSG_PENDING flag for [%s]!\n",
1603 sharename));
1604 }
1605
1606 release_print_db( pdb );
1607
1608 /* finally send the message */
1609
1610 messaging_send_buf(smbd_messaging_context(),
1611 pid_to_procid(background_lpq_updater_pid),
1612 MSG_PRINTER_UPDATE, (uint8 *)buffer, len);
1613
1614 SAFE_FREE( buffer );
1615
1616 return;
1617}
1618
1619/****************************************************************************
1620 Create/Update an entry in the print tdb that will allow us to send notify
1621 updates only to interested smbd's.
1622****************************************************************************/
1623
1624bool print_notify_register_pid(int snum)
1625{
1626 TDB_DATA data;
1627 struct tdb_print_db *pdb = NULL;
1628 TDB_CONTEXT *tdb = NULL;
1629 const char *printername;
1630 uint32 mypid = (uint32)sys_getpid();
1631 bool ret = False;
1632 size_t i;
1633
1634 /* if (snum == -1), then the change notify request was
1635 on a print server handle and we need to register on
1636 all print queus */
1637
1638 if (snum == -1)
1639 {
1640 int num_services = lp_numservices();
1641 int idx;
1642
1643 for ( idx=0; idx<num_services; idx++ ) {
1644 if (lp_snum_ok(idx) && lp_print_ok(idx) )
1645 print_notify_register_pid(idx);
1646 }
1647
1648 return True;
1649 }
1650 else /* register for a specific printer */
1651 {
1652 printername = lp_const_servicename(snum);
1653 pdb = get_print_db_byname(printername);
1654 if (!pdb)
1655 return False;
1656 tdb = pdb->tdb;
1657 }
1658
1659 if (tdb_lock_bystring_with_timeout(tdb, NOTIFY_PID_LIST_KEY, 10) == -1) {
1660 DEBUG(0,("print_notify_register_pid: Failed to lock printer %s\n",
1661 printername));
1662 if (pdb)
1663 release_print_db(pdb);
1664 return False;
1665 }
1666
1667 data = get_printer_notify_pid_list( tdb, printername, True );
1668
1669 /* Add ourselves and increase the refcount. */
1670
1671 for (i = 0; i < data.dsize; i += 8) {
1672 if (IVAL(data.dptr,i) == mypid) {
1673 uint32 new_refcount = IVAL(data.dptr, i+4) + 1;
1674 SIVAL(data.dptr, i+4, new_refcount);
1675 break;
1676 }
1677 }
1678
1679 if (i == data.dsize) {
1680 /* We weren't in the list. Realloc. */
1681 data.dptr = (uint8 *)SMB_REALLOC(data.dptr, data.dsize + 8);
1682 if (!data.dptr) {
1683 DEBUG(0,("print_notify_register_pid: Relloc fail for printer %s\n",
1684 printername));
1685 goto done;
1686 }
1687 data.dsize += 8;
1688 SIVAL(data.dptr,data.dsize - 8,mypid);
1689 SIVAL(data.dptr,data.dsize - 4,1); /* Refcount. */
1690 }
1691
1692 /* Store back the record. */
1693 if (tdb_store_bystring(tdb, NOTIFY_PID_LIST_KEY, data, TDB_REPLACE) == -1) {
1694 DEBUG(0,("print_notify_register_pid: Failed to update pid \
1695list for printer %s\n", printername));
1696 goto done;
1697 }
1698
1699 ret = True;
1700
1701 done:
1702
1703 tdb_unlock_bystring(tdb, NOTIFY_PID_LIST_KEY);
1704 if (pdb)
1705 release_print_db(pdb);
1706 SAFE_FREE(data.dptr);
1707 return ret;
1708}
1709
1710/****************************************************************************
1711 Update an entry in the print tdb that will allow us to send notify
1712 updates only to interested smbd's.
1713****************************************************************************/
1714
1715bool print_notify_deregister_pid(int snum)
1716{
1717 TDB_DATA data;
1718 struct tdb_print_db *pdb = NULL;
1719 TDB_CONTEXT *tdb = NULL;
1720 const char *printername;
1721 uint32 mypid = (uint32)sys_getpid();
1722 size_t i;
1723 bool ret = False;
1724
1725 /* if ( snum == -1 ), we are deregister a print server handle
1726 which means to deregister on all print queues */
1727
1728 if (snum == -1)
1729 {
1730 int num_services = lp_numservices();
1731 int idx;
1732
1733 for ( idx=0; idx<num_services; idx++ ) {
1734 if ( lp_snum_ok(idx) && lp_print_ok(idx) )
1735 print_notify_deregister_pid(idx);
1736 }
1737
1738 return True;
1739 }
1740 else /* deregister a specific printer */
1741 {
1742 printername = lp_const_servicename(snum);
1743 pdb = get_print_db_byname(printername);
1744 if (!pdb)
1745 return False;
1746 tdb = pdb->tdb;
1747 }
1748
1749 if (tdb_lock_bystring_with_timeout(tdb, NOTIFY_PID_LIST_KEY, 10) == -1) {
1750 DEBUG(0,("print_notify_register_pid: Failed to lock \
1751printer %s database\n", printername));
1752 if (pdb)
1753 release_print_db(pdb);
1754 return False;
1755 }
1756
1757 data = get_printer_notify_pid_list( tdb, printername, True );
1758
1759 /* Reduce refcount. Remove ourselves if zero. */
1760
1761 for (i = 0; i < data.dsize; ) {
1762 if (IVAL(data.dptr,i) == mypid) {
1763 uint32 refcount = IVAL(data.dptr, i+4);
1764
1765 refcount--;
1766
1767 if (refcount == 0) {
1768 if (data.dsize - i > 8)
1769 memmove( &data.dptr[i], &data.dptr[i+8], data.dsize - i - 8);
1770 data.dsize -= 8;
1771 continue;
1772 }
1773 SIVAL(data.dptr, i+4, refcount);
1774 }
1775
1776 i += 8;
1777 }
1778
1779 if (data.dsize == 0)
1780 SAFE_FREE(data.dptr);
1781
1782 /* Store back the record. */
1783 if (tdb_store_bystring(tdb, NOTIFY_PID_LIST_KEY, data, TDB_REPLACE) == -1) {
1784 DEBUG(0,("print_notify_register_pid: Failed to update pid \
1785list for printer %s\n", printername));
1786 goto done;
1787 }
1788
1789 ret = True;
1790
1791 done:
1792
1793 tdb_unlock_bystring(tdb, NOTIFY_PID_LIST_KEY);
1794 if (pdb)
1795 release_print_db(pdb);
1796 SAFE_FREE(data.dptr);
1797 return ret;
1798}
1799
1800/****************************************************************************
1801 Check if a jobid is valid. It is valid if it exists in the database.
1802****************************************************************************/
1803
1804bool print_job_exists(const char* sharename, uint32 jobid)
1805{
1806 struct tdb_print_db *pdb = get_print_db_byname(sharename);
1807 bool ret;
1808 uint32_t tmp;
1809
1810 if (!pdb)
1811 return False;
1812 ret = tdb_exists(pdb->tdb, print_key(jobid, &tmp));
1813 release_print_db(pdb);
1814 return ret;
1815}
1816
1817/****************************************************************************
1818 Give the fd used for a jobid.
1819****************************************************************************/
1820
1821int print_job_fd(const char* sharename, uint32 jobid)
1822{
1823 struct printjob *pjob = print_job_find(sharename, jobid);
1824 if (!pjob)
1825 return -1;
1826 /* don't allow another process to get this info - it is meaningless */
1827 if (pjob->pid != sys_getpid())
1828 return -1;
1829 return pjob->fd;
1830}
1831
1832/****************************************************************************
1833 Give the filename used for a jobid.
1834 Only valid for the process doing the spooling and when the job
1835 has not been spooled.
1836****************************************************************************/
1837
1838char *print_job_fname(const char* sharename, uint32 jobid)
1839{
1840 struct printjob *pjob = print_job_find(sharename, jobid);
1841 if (!pjob || pjob->spooled || pjob->pid != sys_getpid())
1842 return NULL;
1843 return pjob->filename;
1844}
1845
1846
1847/****************************************************************************
1848 Give the filename used for a jobid.
1849 Only valid for the process doing the spooling and when the job
1850 has not been spooled.
1851****************************************************************************/
1852
1853NT_DEVICEMODE *print_job_devmode(const char* sharename, uint32 jobid)
1854{
1855 struct printjob *pjob = print_job_find(sharename, jobid);
1856
1857 if ( !pjob )
1858 return NULL;
1859
1860 return pjob->nt_devmode;
1861}
1862
1863/****************************************************************************
1864 Set the place in the queue for a job.
1865****************************************************************************/
1866
1867bool print_job_set_place(const char *sharename, uint32 jobid, int place)
1868{
1869 DEBUG(2,("print_job_set_place not implemented yet\n"));
1870 return False;
1871}
1872
1873/****************************************************************************
1874 Set the name of a job. Only possible for owner.
1875****************************************************************************/
1876
1877bool print_job_set_name(const char *sharename, uint32 jobid, char *name)
1878{
1879 struct printjob *pjob;
1880
1881 pjob = print_job_find(sharename, jobid);
1882 if (!pjob || pjob->pid != sys_getpid())
1883 return False;
1884
1885 fstrcpy(pjob->jobname, name);
1886 return pjob_store(sharename, jobid, pjob);
1887}
1888
1889/***************************************************************************
1890 Remove a jobid from the 'jobs changed' list.
1891***************************************************************************/
1892
1893static bool remove_from_jobs_changed(const char* sharename, uint32 jobid)
1894{
1895 struct tdb_print_db *pdb = get_print_db_byname(sharename);
1896 TDB_DATA data, key;
1897 size_t job_count, i;
1898 bool ret = False;
1899 bool gotlock = False;
1900
1901 if (!pdb) {
1902 return False;
1903 }
1904
1905 ZERO_STRUCT(data);
1906
1907 key = string_tdb_data("INFO/jobs_changed");
1908
1909 if (tdb_chainlock_with_timeout(pdb->tdb, key, 5) == -1)
1910 goto out;
1911
1912 gotlock = True;
1913
1914 data = tdb_fetch(pdb->tdb, key);
1915
1916 if (data.dptr == NULL || data.dsize == 0 || (data.dsize % 4 != 0))
1917 goto out;
1918
1919 job_count = data.dsize / 4;
1920 for (i = 0; i < job_count; i++) {
1921 uint32 ch_jobid;
1922
1923 ch_jobid = IVAL(data.dptr, i*4);
1924 if (ch_jobid == jobid) {
1925 if (i < job_count -1 )
1926 memmove(data.dptr + (i*4), data.dptr + (i*4) + 4, (job_count - i - 1)*4 );
1927 data.dsize -= 4;
1928 if (tdb_store(pdb->tdb, key, data, TDB_REPLACE) == -1)
1929 goto out;
1930 break;
1931 }
1932 }
1933
1934 ret = True;
1935 out:
1936
1937 if (gotlock)
1938 tdb_chainunlock(pdb->tdb, key);
1939 SAFE_FREE(data.dptr);
1940 release_print_db(pdb);
1941 if (ret)
1942 DEBUG(10,("remove_from_jobs_changed: removed jobid %u\n", (unsigned int)jobid ));
1943 else
1944 DEBUG(10,("remove_from_jobs_changed: Failed to remove jobid %u\n", (unsigned int)jobid ));
1945 return ret;
1946}
1947
1948/****************************************************************************
1949 Delete a print job - don't update queue.
1950****************************************************************************/
1951
1952static bool print_job_delete1(int snum, uint32 jobid)
1953{
1954 const char* sharename = lp_const_servicename(snum);
1955 struct printjob *pjob = print_job_find(sharename, jobid);
1956 int result = 0;
1957 struct printif *current_printif = get_printer_fns( snum );
1958
1959 if (!pjob)
1960 return False;
1961
1962 /*
1963 * If already deleting just return.
1964 */
1965
1966 if (pjob->status == LPQ_DELETING)
1967 return True;
1968
1969 /* Hrm - we need to be able to cope with deleting a job before it
1970 has reached the spooler. Just mark it as LPQ_DELETING and
1971 let the print_queue_update() code rmeove the record */
1972
1973
1974 if (pjob->sysjob == -1) {
1975 DEBUG(5, ("attempt to delete job %u not seen by lpr\n", (unsigned int)jobid));
1976 }
1977
1978 /* Set the tdb entry to be deleting. */
1979
1980 pjob->status = LPQ_DELETING;
1981 pjob_store(sharename, jobid, pjob);
1982
1983 if (pjob->spooled && pjob->sysjob != -1)
1984 {
1985 result = (*(current_printif->job_delete))(
1986 PRINTERNAME(snum),
1987 lp_lprmcommand(snum),
1988 pjob);
1989
1990 /* Delete the tdb entry if the delete succeeded or the job hasn't
1991 been spooled. */
1992
1993 if (result == 0) {
1994 struct tdb_print_db *pdb = get_print_db_byname(sharename);
1995 int njobs = 1;
1996
1997 if (!pdb)
1998 return False;
1999 pjob_delete(sharename, jobid);
2000 /* Ensure we keep a rough count of the number of total jobs... */
2001 tdb_change_int32_atomic(pdb->tdb, "INFO/total_jobs", &njobs, -1);
2002 release_print_db(pdb);
2003 }
2004 }
2005
2006 remove_from_jobs_changed( sharename, jobid );
2007
2008 return (result == 0);
2009}
2010
2011/****************************************************************************
2012 Return true if the current user owns the print job.
2013****************************************************************************/
2014
2015static bool is_owner(struct current_user *user, const char *servicename,
2016 uint32 jobid)
2017{
2018 struct printjob *pjob = print_job_find(servicename, jobid);
2019 user_struct *vuser;
2020
2021 if (!pjob || !user)
2022 return False;
2023
2024 if ((vuser = get_valid_user_struct(user->vuid)) != NULL) {
2025 return strequal(pjob->user, vuser->user.smb_name);
2026 } else {
2027 return strequal(pjob->user, uidtoname(user->ut.uid));
2028 }
2029}
2030
2031/****************************************************************************
2032 Delete a print job.
2033****************************************************************************/
2034
2035bool print_job_delete(struct current_user *user, int snum, uint32 jobid, WERROR *errcode)
2036{
2037 const char* sharename = lp_const_servicename( snum );
2038 struct printjob *pjob;
2039 bool owner;
2040 char *fname;
2041
2042 *errcode = WERR_OK;
2043
2044 owner = is_owner(user, lp_const_servicename(snum), jobid);
2045
2046 /* Check access against security descriptor or whether the user
2047 owns their job. */
2048
2049 if (!owner &&
2050 !print_access_check(user, snum, JOB_ACCESS_ADMINISTER)) {
2051 DEBUG(3, ("delete denied by security descriptor\n"));
2052 *errcode = WERR_ACCESS_DENIED;
2053
2054 /* BEGIN_ADMIN_LOG */
2055 sys_adminlog( LOG_ERR,
2056 "Permission denied-- user not allowed to delete, \
2057pause, or resume print job. User name: %s. Printer name: %s.",
2058 uidtoname(user->ut.uid), PRINTERNAME(snum) );
2059 /* END_ADMIN_LOG */
2060
2061 return False;
2062 }
2063
2064 /*
2065 * get the spooled filename of the print job
2066 * if this works, then the file has not been spooled
2067 * to the underlying print system. Just delete the
2068 * spool file & return.
2069 */
2070
2071 if ( (fname = print_job_fname( sharename, jobid )) != NULL )
2072 {
2073 /* remove the spool file */
2074 DEBUG(10,("print_job_delete: Removing spool file [%s]\n", fname ));
2075 if ( unlink( fname ) == -1 ) {
2076 *errcode = map_werror_from_unix(errno);
2077 return False;
2078 }
2079 }
2080
2081 if (!print_job_delete1(snum, jobid)) {
2082 *errcode = WERR_ACCESS_DENIED;
2083 return False;
2084 }
2085
2086 /* force update the database and say the delete failed if the
2087 job still exists */
2088
2089 print_queue_update(snum, True);
2090
2091 pjob = print_job_find(sharename, jobid);
2092 if ( pjob && (pjob->status != LPQ_DELETING) )
2093 *errcode = WERR_ACCESS_DENIED;
2094
2095 return (pjob == NULL );
2096}
2097
2098/****************************************************************************
2099 Pause a job.
2100****************************************************************************/
2101
2102bool print_job_pause(struct current_user *user, int snum, uint32 jobid, WERROR *errcode)
2103{
2104 const char* sharename = lp_const_servicename(snum);
2105 struct printjob *pjob;
2106 int ret = -1;
2107 struct printif *current_printif = get_printer_fns( snum );
2108
2109 pjob = print_job_find(sharename, jobid);
2110
2111 if (!pjob || !user) {
2112 DEBUG(10, ("print_job_pause: no pjob or user for jobid %u\n",
2113 (unsigned int)jobid ));
2114 return False;
2115 }
2116
2117 if (!pjob->spooled || pjob->sysjob == -1) {
2118 DEBUG(10, ("print_job_pause: not spooled or bad sysjob = %d for jobid %u\n",
2119 (int)pjob->sysjob, (unsigned int)jobid ));
2120 return False;
2121 }
2122
2123 if (!is_owner(user, lp_const_servicename(snum), jobid) &&
2124 !print_access_check(user, snum, JOB_ACCESS_ADMINISTER)) {
2125 DEBUG(3, ("pause denied by security descriptor\n"));
2126
2127 /* BEGIN_ADMIN_LOG */
2128 sys_adminlog( LOG_ERR,
2129 "Permission denied-- user not allowed to delete, \
2130pause, or resume print job. User name: %s. Printer name: %s.",
2131 uidtoname(user->ut.uid), PRINTERNAME(snum) );
2132 /* END_ADMIN_LOG */
2133
2134 *errcode = WERR_ACCESS_DENIED;
2135 return False;
2136 }
2137
2138 /* need to pause the spooled entry */
2139 ret = (*(current_printif->job_pause))(snum, pjob);
2140
2141 if (ret != 0) {
2142 *errcode = WERR_INVALID_PARAM;
2143 return False;
2144 }
2145
2146 /* force update the database */
2147 print_cache_flush(lp_const_servicename(snum));
2148
2149 /* Send a printer notify message */
2150
2151 notify_job_status(sharename, jobid, JOB_STATUS_PAUSED);
2152
2153 /* how do we tell if this succeeded? */
2154
2155 return True;
2156}
2157
2158/****************************************************************************
2159 Resume a job.
2160****************************************************************************/
2161
2162bool print_job_resume(struct current_user *user, int snum, uint32 jobid, WERROR *errcode)
2163{
2164 const char *sharename = lp_const_servicename(snum);
2165 struct printjob *pjob;
2166 int ret;
2167 struct printif *current_printif = get_printer_fns( snum );
2168
2169 pjob = print_job_find(sharename, jobid);
2170
2171 if (!pjob || !user) {
2172 DEBUG(10, ("print_job_resume: no pjob or user for jobid %u\n",
2173 (unsigned int)jobid ));
2174 return False;
2175 }
2176
2177 if (!pjob->spooled || pjob->sysjob == -1) {
2178 DEBUG(10, ("print_job_resume: not spooled or bad sysjob = %d for jobid %u\n",
2179 (int)pjob->sysjob, (unsigned int)jobid ));
2180 return False;
2181 }
2182
2183 if (!is_owner(user, lp_const_servicename(snum), jobid) &&
2184 !print_access_check(user, snum, JOB_ACCESS_ADMINISTER)) {
2185 DEBUG(3, ("resume denied by security descriptor\n"));
2186 *errcode = WERR_ACCESS_DENIED;
2187
2188 /* BEGIN_ADMIN_LOG */
2189 sys_adminlog( LOG_ERR,
2190 "Permission denied-- user not allowed to delete, \
2191pause, or resume print job. User name: %s. Printer name: %s.",
2192 uidtoname(user->ut.uid), PRINTERNAME(snum) );
2193 /* END_ADMIN_LOG */
2194 return False;
2195 }
2196
2197 ret = (*(current_printif->job_resume))(snum, pjob);
2198
2199 if (ret != 0) {
2200 *errcode = WERR_INVALID_PARAM;
2201 return False;
2202 }
2203
2204 /* force update the database */
2205 print_cache_flush(lp_const_servicename(snum));
2206
2207 /* Send a printer notify message */
2208
2209 notify_job_status(sharename, jobid, JOB_STATUS_QUEUED);
2210
2211 return True;
2212}
2213
2214/****************************************************************************
2215 Write to a print file.
2216****************************************************************************/
2217
2218ssize_t print_job_write(int snum, uint32 jobid, const char *buf, SMB_OFF_T pos, size_t size)
2219{
2220 const char* sharename = lp_const_servicename(snum);
2221 int return_code;
2222 struct printjob *pjob;
2223
2224 pjob = print_job_find(sharename, jobid);
2225
2226 if (!pjob)
2227 return -1;
2228 /* don't allow another process to get this info - it is meaningless */
2229 if (pjob->pid != sys_getpid())
2230 return -1;
2231
2232 return_code = write_data_at_offset(pjob->fd, buf, size, pos);
2233
2234 if (return_code>0) {
2235 pjob->size += size;
2236 pjob_store(sharename, jobid, pjob);
2237 }
2238 return return_code;
2239}
2240
2241/****************************************************************************
2242 Get the queue status - do not update if db is out of date.
2243****************************************************************************/
2244
2245static int get_queue_status(const char* sharename, print_status_struct *status)
2246{
2247 fstring keystr;
2248 TDB_DATA data;
2249 struct tdb_print_db *pdb = get_print_db_byname(sharename);
2250 int len;
2251
2252 if (status) {
2253 ZERO_STRUCTP(status);
2254 }
2255
2256 if (!pdb)
2257 return 0;
2258
2259 if (status) {
2260 fstr_sprintf(keystr, "STATUS/%s", sharename);
2261 data = tdb_fetch(pdb->tdb, string_tdb_data(keystr));
2262 if (data.dptr) {
2263 if (data.dsize == sizeof(print_status_struct))
2264 /* this memcpy is ok since the status struct was
2265 not packed before storing it in the tdb */
2266 memcpy(status, data.dptr, sizeof(print_status_struct));
2267 SAFE_FREE(data.dptr);
2268 }
2269 }
2270 len = tdb_fetch_int32(pdb->tdb, "INFO/total_jobs");
2271 release_print_db(pdb);
2272 return (len == -1 ? 0 : len);
2273}
2274
2275/****************************************************************************
2276 Determine the number of jobs in a queue.
2277****************************************************************************/
2278
2279int print_queue_length(int snum, print_status_struct *pstatus)
2280{
2281 const char* sharename = lp_const_servicename( snum );
2282 print_status_struct status;
2283 int len;
2284
2285 ZERO_STRUCT( status );
2286
2287 /* make sure the database is up to date */
2288 if (print_cache_expired(lp_const_servicename(snum), True))
2289 print_queue_update(snum, False);
2290
2291 /* also fetch the queue status */
2292 memset(&status, 0, sizeof(status));
2293 len = get_queue_status(sharename, &status);
2294
2295 if (pstatus)
2296 *pstatus = status;
2297
2298 return len;
2299}
2300
2301/***************************************************************************
2302 Allocate a jobid. Hold the lock for as short a time as possible.
2303***************************************************************************/
2304
2305static bool allocate_print_jobid(struct tdb_print_db *pdb, int snum, const char *sharename, uint32 *pjobid)
2306{
2307 int i;
2308 uint32 jobid;
2309
2310 *pjobid = (uint32)-1;
2311
2312 for (i = 0; i < 3; i++) {
2313 /* Lock the database - only wait 20 seconds. */
2314 if (tdb_lock_bystring_with_timeout(pdb->tdb, "INFO/nextjob", 20) == -1) {
2315 DEBUG(0,("allocate_print_jobid: failed to lock printing database %s\n", sharename));
2316 return False;
2317 }
2318
2319 if (!tdb_fetch_uint32(pdb->tdb, "INFO/nextjob", &jobid)) {
2320 if (tdb_error(pdb->tdb) != TDB_ERR_NOEXIST) {
2321 DEBUG(0, ("allocate_print_jobid: failed to fetch INFO/nextjob for print queue %s\n",
2322 sharename));
2323 return False;
2324 }
2325 jobid = 0;
2326 }
2327
2328 jobid = NEXT_JOBID(jobid);
2329
2330 if (tdb_store_int32(pdb->tdb, "INFO/nextjob", jobid)==-1) {
2331 DEBUG(3, ("allocate_print_jobid: failed to store INFO/nextjob.\n"));
2332 tdb_unlock_bystring(pdb->tdb, "INFO/nextjob");
2333 return False;
2334 }
2335
2336 /* We've finished with the INFO/nextjob lock. */
2337 tdb_unlock_bystring(pdb->tdb, "INFO/nextjob");
2338
2339 if (!print_job_exists(sharename, jobid))
2340 break;
2341 }
2342
2343 if (i > 2) {
2344 DEBUG(0, ("allocate_print_jobid: failed to allocate a print job for queue %s\n",
2345 sharename));
2346 /* Probably full... */
2347 errno = ENOSPC;
2348 return False;
2349 }
2350
2351 /* Store a dummy placeholder. */
2352 {
2353 uint32_t tmp;
2354 TDB_DATA dum;
2355 dum.dptr = NULL;
2356 dum.dsize = 0;
2357 if (tdb_store(pdb->tdb, print_key(jobid, &tmp), dum,
2358 TDB_INSERT) == -1) {
2359 DEBUG(3, ("allocate_print_jobid: jobid (%d) failed to store placeholder.\n",
2360 jobid ));
2361 return False;
2362 }
2363 }
2364
2365 *pjobid = jobid;
2366 return True;
2367}
2368
2369/***************************************************************************
2370 Append a jobid to the 'jobs changed' list.
2371***************************************************************************/
2372
2373static bool add_to_jobs_changed(struct tdb_print_db *pdb, uint32 jobid)
2374{
2375 TDB_DATA data;
2376 uint32 store_jobid;
2377
2378 SIVAL(&store_jobid, 0, jobid);
2379 data.dptr = (uint8 *)&store_jobid;
2380 data.dsize = 4;
2381
2382 DEBUG(10,("add_to_jobs_changed: Added jobid %u\n", (unsigned int)jobid ));
2383
2384 return (tdb_append(pdb->tdb, string_tdb_data("INFO/jobs_changed"),
2385 data) == 0);
2386}
2387
2388/***************************************************************************
2389 Start spooling a job - return the jobid.
2390***************************************************************************/
2391
2392uint32 print_job_start(struct current_user *user, int snum, char *jobname, NT_DEVICEMODE *nt_devmode )
2393{
2394 uint32 jobid;
2395 char *path;
2396 struct printjob pjob;
2397 user_struct *vuser;
2398 const char *sharename = lp_const_servicename(snum);
2399 struct tdb_print_db *pdb = get_print_db_byname(sharename);
2400 int njobs;
2401
2402 errno = 0;
2403
2404 if (!pdb)
2405 return (uint32)-1;
2406
2407 if (!print_access_check(user, snum, PRINTER_ACCESS_USE)) {
2408 DEBUG(3, ("print_job_start: job start denied by security descriptor\n"));
2409 release_print_db(pdb);
2410 return (uint32)-1;
2411 }
2412
2413 if (!print_time_access_check(lp_servicename(snum))) {
2414 DEBUG(3, ("print_job_start: job start denied by time check\n"));
2415 release_print_db(pdb);
2416 return (uint32)-1;
2417 }
2418
2419 path = lp_pathname(snum);
2420
2421 /* see if we have sufficient disk space */
2422 if (lp_minprintspace(snum)) {
2423 SMB_BIG_UINT dspace, dsize;
2424 if (sys_fsusage(path, &dspace, &dsize) == 0 &&
2425 dspace < 2*(SMB_BIG_UINT)lp_minprintspace(snum)) {
2426 DEBUG(3, ("print_job_start: disk space check failed.\n"));
2427 release_print_db(pdb);
2428 errno = ENOSPC;
2429 return (uint32)-1;
2430 }
2431 }
2432
2433 /* for autoloaded printers, check that the printcap entry still exists */
2434 if (lp_autoloaded(snum) && !pcap_printername_ok(lp_const_servicename(snum))) {
2435 DEBUG(3, ("print_job_start: printer name %s check failed.\n", lp_const_servicename(snum) ));
2436 release_print_db(pdb);
2437 errno = ENOENT;
2438 return (uint32)-1;
2439 }
2440
2441 /* Insure the maximum queue size is not violated */
2442 if ((njobs = print_queue_length(snum,NULL)) > lp_maxprintjobs(snum)) {
2443 DEBUG(3, ("print_job_start: Queue %s number of jobs (%d) larger than max printjobs per queue (%d).\n",
2444 sharename, njobs, lp_maxprintjobs(snum) ));
2445 release_print_db(pdb);
2446 errno = ENOSPC;
2447 return (uint32)-1;
2448 }
2449
2450 DEBUG(10,("print_job_start: Queue %s number of jobs (%d), max printjobs = %d\n",
2451 sharename, njobs, lp_maxprintjobs(snum) ));
2452
2453 if (!allocate_print_jobid(pdb, snum, sharename, &jobid))
2454 goto fail;
2455
2456 /* create the database entry */
2457
2458 ZERO_STRUCT(pjob);
2459
2460 pjob.pid = sys_getpid();
2461 pjob.sysjob = -1;
2462 pjob.fd = -1;
2463 pjob.starttime = time(NULL);
2464 pjob.status = LPQ_SPOOLING;
2465 pjob.size = 0;
2466 pjob.spooled = False;
2467 pjob.smbjob = True;
2468 pjob.nt_devmode = nt_devmode;
2469
2470 fstrcpy(pjob.jobname, jobname);
2471
2472 if ((vuser = get_valid_user_struct(user->vuid)) != NULL) {
2473 fstrcpy(pjob.user, lp_printjob_username(snum));
2474 standard_sub_advanced(sharename, vuser->user.smb_name, path,
2475 vuser->gid, vuser->user.smb_name,
2476 vuser->user.domain, pjob.user,
2477 sizeof(pjob.user) - 1);
2478 /* ensure NULL termination */
2479 pjob.user[sizeof(pjob.user)-1] = '\0';
2480 } else {
2481 fstrcpy(pjob.user, uidtoname(user->ut.uid));
2482 }
2483
2484 fstrcpy(pjob.queuename, lp_const_servicename(snum));
2485
2486 /* we have a job entry - now create the spool file */
2487 slprintf(pjob.filename, sizeof(pjob.filename)-1, "%s/%s%.8u.XXXXXX",
2488 path, PRINT_SPOOL_PREFIX, (unsigned int)jobid);
2489 pjob.fd = smb_mkstemp(pjob.filename);
2490
2491 if (pjob.fd == -1) {
2492 if (errno == EACCES) {
2493 /* Common setup error, force a report. */
2494 DEBUG(0, ("print_job_start: insufficient permissions \
2495to open spool file %s.\n", pjob.filename));
2496 } else {
2497 /* Normal case, report at level 3 and above. */
2498 DEBUG(3, ("print_job_start: can't open spool file %s,\n", pjob.filename));
2499 DEBUGADD(3, ("errno = %d (%s).\n", errno, strerror(errno)));
2500 }
2501 goto fail;
2502 }
2503
2504 pjob_store(sharename, jobid, &pjob);
2505
2506 /* Update the 'jobs changed' entry used by print_queue_status. */
2507 add_to_jobs_changed(pdb, jobid);
2508
2509 /* Ensure we keep a rough count of the number of total jobs... */
2510 tdb_change_int32_atomic(pdb->tdb, "INFO/total_jobs", &njobs, 1);
2511
2512 release_print_db(pdb);
2513
2514 return jobid;
2515
2516 fail:
2517 if (jobid != -1)
2518 pjob_delete(sharename, jobid);
2519
2520 release_print_db(pdb);
2521
2522 DEBUG(3, ("print_job_start: returning fail. Error = %s\n", strerror(errno) ));
2523 return (uint32)-1;
2524}
2525
2526/****************************************************************************
2527 Update the number of pages spooled to jobid
2528****************************************************************************/
2529
2530void print_job_endpage(int snum, uint32 jobid)
2531{
2532 const char* sharename = lp_const_servicename(snum);
2533 struct printjob *pjob;
2534
2535 pjob = print_job_find(sharename, jobid);
2536 if (!pjob)
2537 return;
2538 /* don't allow another process to get this info - it is meaningless */
2539 if (pjob->pid != sys_getpid())
2540 return;
2541
2542 pjob->page_count++;
2543 pjob_store(sharename, jobid, pjob);
2544}
2545
2546/****************************************************************************
2547 Print a file - called on closing the file. This spools the job.
2548 If normal close is false then we're tearing down the jobs - treat as an
2549 error.
2550****************************************************************************/
2551
2552bool print_job_end(int snum, uint32 jobid, enum file_close_type close_type)
2553{
2554 const char* sharename = lp_const_servicename(snum);
2555 struct printjob *pjob;
2556 int ret;
2557 SMB_STRUCT_STAT sbuf;
2558 struct printif *current_printif = get_printer_fns( snum );
2559
2560 pjob = print_job_find(sharename, jobid);
2561
2562 if (!pjob)
2563 return False;
2564
2565 if (pjob->spooled || pjob->pid != sys_getpid())
2566 return False;
2567
2568 if ((close_type == NORMAL_CLOSE || close_type == SHUTDOWN_CLOSE) &&
2569 (sys_fstat(pjob->fd, &sbuf) == 0)) {
2570 pjob->size = sbuf.st_size;
2571 close(pjob->fd);
2572 pjob->fd = -1;
2573 } else {
2574
2575 /*
2576 * Not a normal close or we couldn't stat the job file,
2577 * so something has gone wrong. Cleanup.
2578 */
2579 close(pjob->fd);
2580 pjob->fd = -1;
2581 DEBUG(3,("print_job_end: failed to stat file for jobid %d\n", jobid ));
2582 goto fail;
2583 }
2584
2585 /* Technically, this is not quite right. If the printer has a separator
2586 * page turned on, the NT spooler prints the separator page even if the
2587 * print job is 0 bytes. 010215 JRR */
2588 if (pjob->size == 0 || pjob->status == LPQ_DELETING) {
2589 /* don't bother spooling empty files or something being deleted. */
2590 DEBUG(5,("print_job_end: canceling spool of %s (%s)\n",
2591 pjob->filename, pjob->size ? "deleted" : "zero length" ));
2592 unlink(pjob->filename);
2593 pjob_delete(sharename, jobid);
2594 return True;
2595 }
2596
2597 pjob->smbjob = jobid;
2598
2599 ret = (*(current_printif->job_submit))(snum, pjob);
2600
2601 if (ret)
2602 goto fail;
2603
2604 /* The print job has been successfully handed over to the back-end */
2605
2606 pjob->spooled = True;
2607 pjob->status = LPQ_QUEUED;
2608 pjob_store(sharename, jobid, pjob);
2609
2610 /* make sure the database is up to date */
2611 if (print_cache_expired(lp_const_servicename(snum), True))
2612 print_queue_update(snum, False);
2613
2614 return True;
2615
2616fail:
2617
2618 /* The print job was not successfully started. Cleanup */
2619 /* Still need to add proper error return propagation! 010122:JRR */
2620 unlink(pjob->filename);
2621 pjob_delete(sharename, jobid);
2622 return False;
2623}
2624
2625/****************************************************************************
2626 Get a snapshot of jobs in the system without traversing.
2627****************************************************************************/
2628
2629static bool get_stored_queue_info(struct tdb_print_db *pdb, int snum, int *pcount, print_queue_struct **ppqueue)
2630{
2631 TDB_DATA data, cgdata;
2632 print_queue_struct *queue = NULL;
2633 uint32 qcount = 0;
2634 uint32 extra_count = 0;
2635 int total_count = 0;
2636 size_t len = 0;
2637 uint32 i;
2638 int max_reported_jobs = lp_max_reported_jobs(snum);
2639 bool ret = False;
2640 const char* sharename = lp_servicename(snum);
2641
2642 /* make sure the database is up to date */
2643 if (print_cache_expired(lp_const_servicename(snum), True))
2644 print_queue_update(snum, False);
2645
2646 *pcount = 0;
2647 *ppqueue = NULL;
2648
2649 ZERO_STRUCT(data);
2650 ZERO_STRUCT(cgdata);
2651
2652 /* Get the stored queue data. */
2653 data = tdb_fetch(pdb->tdb, string_tdb_data("INFO/linear_queue_array"));
2654
2655 if (data.dptr && data.dsize >= sizeof(qcount))
2656 len += tdb_unpack(data.dptr + len, data.dsize - len, "d", &qcount);
2657
2658 /* Get the changed jobs list. */
2659 cgdata = tdb_fetch(pdb->tdb, string_tdb_data("INFO/jobs_changed"));
2660 if (cgdata.dptr != NULL && (cgdata.dsize % 4 == 0))
2661 extra_count = cgdata.dsize/4;
2662
2663 DEBUG(5,("get_stored_queue_info: qcount = %u, extra_count = %u\n", (unsigned int)qcount, (unsigned int)extra_count));
2664
2665 /* Allocate the queue size. */
2666 if (qcount == 0 && extra_count == 0)
2667 goto out;
2668
2669 if ((queue = SMB_MALLOC_ARRAY(print_queue_struct, qcount + extra_count)) == NULL)
2670 goto out;
2671
2672 /* Retrieve the linearised queue data. */
2673
2674 for( i = 0; i < qcount; i++) {
2675 uint32 qjob, qsize, qpage_count, qstatus, qpriority, qtime;
2676 len += tdb_unpack(data.dptr + len, data.dsize - len, "ddddddff",
2677 &qjob,
2678 &qsize,
2679 &qpage_count,
2680 &qstatus,
2681 &qpriority,
2682 &qtime,
2683 queue[i].fs_user,
2684 queue[i].fs_file);
2685 queue[i].job = qjob;
2686 queue[i].size = qsize;
2687 queue[i].page_count = qpage_count;
2688 queue[i].status = qstatus;
2689 queue[i].priority = qpriority;
2690 queue[i].time = qtime;
2691 }
2692
2693 total_count = qcount;
2694
2695 /* Add in the changed jobids. */
2696 for( i = 0; i < extra_count; i++) {
2697 uint32 jobid;
2698 struct printjob *pjob;
2699
2700 jobid = IVAL(cgdata.dptr, i*4);
2701 DEBUG(5,("get_stored_queue_info: changed job = %u\n", (unsigned int)jobid));
2702 pjob = print_job_find(lp_const_servicename(snum), jobid);
2703 if (!pjob) {
2704 DEBUG(5,("get_stored_queue_info: failed to find changed job = %u\n", (unsigned int)jobid));
2705 remove_from_jobs_changed(sharename, jobid);
2706 continue;
2707 }
2708
2709 queue[total_count].job = jobid;
2710 queue[total_count].size = pjob->size;
2711 queue[total_count].page_count = pjob->page_count;
2712 queue[total_count].status = pjob->status;
2713 queue[total_count].priority = 1;
2714 queue[total_count].time = pjob->starttime;
2715 fstrcpy(queue[total_count].fs_user, pjob->user);
2716 fstrcpy(queue[total_count].fs_file, pjob->jobname);
2717 total_count++;
2718 }
2719
2720 /* Sort the queue by submission time otherwise they are displayed
2721 in hash order. */
2722
2723 qsort(queue, total_count, sizeof(print_queue_struct), QSORT_CAST(printjob_comp));
2724
2725 DEBUG(5,("get_stored_queue_info: total_count = %u\n", (unsigned int)total_count));
2726
2727 if (max_reported_jobs && total_count > max_reported_jobs)
2728 total_count = max_reported_jobs;
2729
2730 *ppqueue = queue;
2731 *pcount = total_count;
2732
2733 ret = True;
2734
2735 out:
2736
2737 SAFE_FREE(data.dptr);
2738 SAFE_FREE(cgdata.dptr);
2739 return ret;
2740}
2741
2742/****************************************************************************
2743 Get a printer queue listing.
2744 set queue = NULL and status = NULL if you just want to update the cache
2745****************************************************************************/
2746
2747int print_queue_status(int snum,
2748 print_queue_struct **ppqueue,
2749 print_status_struct *status)
2750{
2751 fstring keystr;
2752 TDB_DATA data, key;
2753 const char *sharename;
2754 struct tdb_print_db *pdb;
2755 int count = 0;
2756
2757 /* make sure the database is up to date */
2758
2759 if (print_cache_expired(lp_const_servicename(snum), True))
2760 print_queue_update(snum, False);
2761
2762 /* return if we are done */
2763 if ( !ppqueue || !status )
2764 return 0;
2765
2766 *ppqueue = NULL;
2767 sharename = lp_const_servicename(snum);
2768 pdb = get_print_db_byname(sharename);
2769
2770 if (!pdb)
2771 return 0;
2772
2773 /*
2774 * Fetch the queue status. We must do this first, as there may
2775 * be no jobs in the queue.
2776 */
2777
2778 ZERO_STRUCTP(status);
2779 slprintf(keystr, sizeof(keystr)-1, "STATUS/%s", sharename);
2780 key = string_tdb_data(keystr);
2781
2782 data = tdb_fetch(pdb->tdb, key);
2783 if (data.dptr) {
2784 if (data.dsize == sizeof(*status)) {
2785 /* this memcpy is ok since the status struct was
2786 not packed before storing it in the tdb */
2787 memcpy(status, data.dptr, sizeof(*status));
2788 }
2789 SAFE_FREE(data.dptr);
2790 }
2791
2792 /*
2793 * Now, fetch the print queue information. We first count the number
2794 * of entries, and then only retrieve the queue if necessary.
2795 */
2796
2797 if (!get_stored_queue_info(pdb, snum, &count, ppqueue)) {
2798 release_print_db(pdb);
2799 return 0;
2800 }
2801
2802 release_print_db(pdb);
2803 return count;
2804}
2805
2806/****************************************************************************
2807 Pause a queue.
2808****************************************************************************/
2809
2810bool print_queue_pause(struct current_user *user, int snum, WERROR *errcode)
2811{
2812 int ret;
2813 struct printif *current_printif = get_printer_fns( snum );
2814
2815 if (!print_access_check(user, snum, PRINTER_ACCESS_ADMINISTER)) {
2816 *errcode = WERR_ACCESS_DENIED;
2817 return False;
2818 }
2819
2820
2821 become_root();
2822
2823 ret = (*(current_printif->queue_pause))(snum);
2824
2825 unbecome_root();
2826
2827 if (ret != 0) {
2828 *errcode = WERR_INVALID_PARAM;
2829 return False;
2830 }
2831
2832 /* force update the database */
2833 print_cache_flush(lp_const_servicename(snum));
2834
2835 /* Send a printer notify message */
2836
2837 notify_printer_status(snum, PRINTER_STATUS_PAUSED);
2838
2839 return True;
2840}
2841
2842/****************************************************************************
2843 Resume a queue.
2844****************************************************************************/
2845
2846bool print_queue_resume(struct current_user *user, int snum, WERROR *errcode)
2847{
2848 int ret;
2849 struct printif *current_printif = get_printer_fns( snum );
2850
2851 if (!print_access_check(user, snum, PRINTER_ACCESS_ADMINISTER)) {
2852 *errcode = WERR_ACCESS_DENIED;
2853 return False;
2854 }
2855
2856 become_root();
2857
2858 ret = (*(current_printif->queue_resume))(snum);
2859
2860 unbecome_root();
2861
2862 if (ret != 0) {
2863 *errcode = WERR_INVALID_PARAM;
2864 return False;
2865 }
2866
2867 /* make sure the database is up to date */
2868 if (print_cache_expired(lp_const_servicename(snum), True))
2869 print_queue_update(snum, True);
2870
2871 /* Send a printer notify message */
2872
2873 notify_printer_status(snum, PRINTER_STATUS_OK);
2874
2875 return True;
2876}
2877
2878/****************************************************************************
2879 Purge a queue - implemented by deleting all jobs that we can delete.
2880****************************************************************************/
2881
2882bool print_queue_purge(struct current_user *user, int snum, WERROR *errcode)
2883{
2884 print_queue_struct *queue;
2885 print_status_struct status;
2886 int njobs, i;
2887 bool can_job_admin;
2888
2889 /* Force and update so the count is accurate (i.e. not a cached count) */
2890 print_queue_update(snum, True);
2891
2892 can_job_admin = print_access_check(user, snum, JOB_ACCESS_ADMINISTER);
2893 njobs = print_queue_status(snum, &queue, &status);
2894
2895 if ( can_job_admin )
2896 become_root();
2897
2898 for (i=0;i<njobs;i++) {
2899 bool owner = is_owner(user, lp_const_servicename(snum), queue[i].job);
2900
2901 if (owner || can_job_admin) {
2902 print_job_delete1(snum, queue[i].job);
2903 }
2904 }
2905
2906 if ( can_job_admin )
2907 unbecome_root();
2908
2909 /* update the cache */
2910 print_queue_update( snum, True );
2911
2912 SAFE_FREE(queue);
2913
2914 return True;
2915}
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