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1/* $Id$
2 *
3 * Query followup routines
4 *
5 * Copyright (C) 1987-1998 by the Massachusetts Institute of Technology
6 * For copying and distribution information, please see the file
7 * <mit-copyright.h>.
8 *
9 */
10
11#include <mit-copyright.h>
12#include "mr_server.h"
13#include "query.h"
14#include "qrtn.h"
15
16#include <errno.h>
17#include <ctype.h>
18#include <stdlib.h>
19#include <string.h>
20
21EXEC SQL INCLUDE sqlca;
22
23RCSID("$Header$");
24
25extern char *whoami, *table_name[];
26extern int dbms_errno, mr_errcode;
27
28EXEC SQL BEGIN DECLARE SECTION;
29extern char stmt_buf[];
30EXEC SQL END DECLARE SECTION;
31
32EXEC SQL WHENEVER SQLERROR DO dbmserr();
33
34
35/* FOLLOWUP ROUTINES */
36
37/* generic set_modtime routine. This takes the table id from the query,
38 * and will update the modtime, modby, and modwho fields in the entry in
39 * the table whose name field matches argv[0].
40 */
41
42int set_modtime(struct query *q, char *argv[], client *cl)
43{
44 char *name, *entity, *table;
45 int who;
46
47 entity = cl->entity;
48 who = cl->client_id;
49 table = table_name[q->rtable];
50 name = argv[0];
51
52 sprintf(stmt_buf, "UPDATE %s SET modtime = SYSDATE, modby = %d, "
53 "modwith = '%s' WHERE name = '%s'", table, who, entity, name);
54 EXEC SQL EXECUTE IMMEDIATE :stmt_buf;
55
56 return MR_SUCCESS;
57}
58
59/* generic set_modtime_by_id routine. This takes the table id from
60 * the query, and the id name from the validate record,
61 * and will update the modtime, modby, and modwho fields in the entry in
62 * the table whose id matches argv[0].
63 */
64
65int set_modtime_by_id(struct query *q, char *argv[], client *cl)
66{
67 char *entity, *table, *id_name;
68 int who, id;
69
70 entity = cl->entity;
71 who = cl->client_id;
72 table = table_name[q->rtable];
73 id_name = q->validate->object_id;
74
75 id = *(int *)argv[0];
76 sprintf(stmt_buf, "UPDATE %s SET modtime = SYSDATE, modby = %d, "
77 "modwith = '%s' WHERE %s = %d", table, who, entity, id_name, id);
78 EXEC SQL EXECUTE IMMEDIATE :stmt_buf;
79 return MR_SUCCESS;
80}
81
82
83/* Sets the finger modtime on a user record. The users_id will be in argv[0].
84 */
85
86int set_finger_modtime(struct query *q, char *argv[], client *cl)
87{
88 EXEC SQL BEGIN DECLARE SECTION;
89 int users_id, who;
90 char *entity;
91 EXEC SQL END DECLARE SECTION;
92
93 entity = cl->entity;
94 who = cl->client_id;
95 users_id = *(int *)argv[0];
96
97 EXEC SQL UPDATE users SET fmodtime = SYSDATE, fmodby = :who,
98 fmodwith = :entity WHERE users_id = :users_id;
99
100 return MR_SUCCESS;
101}
102
103
104/* Sets the pobox modtime on a user record. The users_id will be in argv[0].
105 */
106
107int set_pobox_modtime(struct query *q, char *argv[], client *cl)
108{
109 EXEC SQL BEGIN DECLARE SECTION;
110 int users_id, who;
111 char *entity;
112 EXEC SQL END DECLARE SECTION;
113
114 entity = cl->entity;
115 who = cl->client_id;
116 users_id = *(int *)argv[0];
117
118 EXEC SQL UPDATE users SET pmodtime = SYSDATE, pmodby = :who,
119 pmodwith = :entity WHERE users_id = :users_id;
120
121 return MR_SUCCESS;
122}
123
124
125/* Like set_modtime, but uppercases the name first.
126 */
127
128int set_uppercase_modtime(struct query *q, char *argv[], client *cl)
129{
130 char *name, *entity, *table;
131 int who;
132
133 entity = cl->entity;
134 who = cl->client_id;
135 table = table_name[q->rtable];
136 name = argv[0];
137
138 sprintf(stmt_buf, "UPDATE %s SET modtime = SYSDATE, modby = %d, "
139 "modwith = '%s' WHERE name = UPPER('%s')", table, who, entity, name);
140 EXEC SQL EXECUTE IMMEDIATE :stmt_buf;
141
142 return MR_SUCCESS;
143}
144
145
146/* Sets the modtime on the machine whose mach_id is in argv[0]. This routine
147 * is necessary for add_machine_to_cluster becuase the table that query
148 * operates on is "mcm", not "machine".
149 */
150
151int set_mach_modtime_by_id(struct query *q, char *argv[], client *cl)
152{
153 EXEC SQL BEGIN DECLARE SECTION;
154 char *entity;
155 int who, id;
156 EXEC SQL END DECLARE SECTION;
157
158 entity = cl->entity;
159 who = cl->client_id;
160 id = *(int *)argv[0];
161 EXEC SQL UPDATE machine SET modtime = SYSDATE, modby = :who,
162 modwith = :entity WHERE mach_id = :id;
163
164 return MR_SUCCESS;
165}
166
167
168/* Sets the modtime on the cluster whose mach_id is in argv[0]. This routine
169 * is necessary for add_cluster_data and delete_cluster_data becuase the
170 * table that query operates on is "svc", not "cluster".
171 */
172
173int set_cluster_modtime_by_id(struct query *q, char *argv[], client *cl)
174{
175 EXEC SQL BEGIN DECLARE SECTION;
176 char *entity;
177 int who, id;
178 EXEC SQL END DECLARE SECTION;
179
180 entity = cl->entity;
181 who = cl->client_id;
182
183 id = *(int *)argv[0];
184 EXEC SQL UPDATE clusters SET modtime = SYSDATE, modby = :who,
185 modwith = :entity WHERE clu_id = :id;
186 return MR_SUCCESS;
187}
188
189
190/* sets the modtime on the serverhost where the service name is in argv[0]
191 * and the mach_id is in argv[1].
192 */
193
194int set_serverhost_modtime(struct query *q, char *argv[], client *cl)
195{
196 EXEC SQL BEGIN DECLARE SECTION;
197 char *entity, *serv;
198 int who, id;
199 EXEC SQL END DECLARE SECTION;
200
201 entity = cl->entity;
202 who = cl->client_id;
203
204 serv = argv[0];
205 id = *(int *)argv[1];
206 EXEC SQL UPDATE serverhosts
207 SET modtime = SYSDATE, modby = :who, modwith = :entity
208 WHERE service = :serv AND mach_id = :id;
209 return MR_SUCCESS;
210}
211
212
213/* sets the modtime on the nfsphys where the mach_id is in argv[0] and the
214 * directory name is in argv[1].
215 */
216
217int set_nfsphys_modtime(struct query *q, char *argv[], client *cl)
218{
219 EXEC SQL BEGIN DECLARE SECTION;
220 char *entity, *dir;
221 int who, id;
222 EXEC SQL END DECLARE SECTION;
223
224 entity = cl->entity;
225 who = cl->client_id;
226
227 id = *(int *)argv[0];
228 dir = argv[1];
229 EXEC SQL UPDATE nfsphys SET modtime = SYSDATE, modby = :who,
230 modwith = :entity WHERE dir = :dir AND mach_id = :id;
231 return MR_SUCCESS;
232}
233
234
235/* sets the modtime on a filesystem, where argv[0] contains the filesys
236 * label.
237 */
238
239int set_filesys_modtime(struct query *q, char *argv[], client *cl)
240{
241 EXEC SQL BEGIN DECLARE SECTION;
242 char *label, *entity;
243 int who;
244 extern int _var_phys_id;
245 EXEC SQL END DECLARE SECTION;
246
247 entity = cl->entity;
248 who = cl->client_id;
249
250 label = argv[0];
251 if (!strcmp(q->shortname, "ufil"))
252 label = argv[1];
253
254 EXEC SQL UPDATE filesys SET modtime = SYSDATE, modby = :who,
255 modwith = :entity, phys_id = :_var_phys_id
256 WHERE label = :label;
257 return MR_SUCCESS;
258}
259
260
261/* sets the modtime on a zephyr class, where argv[0] contains the class
262 * name.
263 */
264
265int set_zephyr_modtime(struct query *q, char *argv[], client *cl)
266{
267 EXEC SQL BEGIN DECLARE SECTION;
268 char *class, *entity;
269 int who;
270 EXEC SQL END DECLARE SECTION;
271
272 entity = cl->entity;
273 who = cl->client_id;
274
275 class = argv[0];
276
277 EXEC SQL UPDATE zephyr SET modtime = SYSDATE, modby = :who,
278 modwith = :entity WHERE class = :class;
279
280 return MR_SUCCESS;
281}
282
283/* sets the modtime on an entry in services table, where argv[0] contains
284 * the service name.
285 */
286
287int set_service_modtime(struct query *q, char *argv[], client *cl)
288{
289 EXEC SQL BEGIN DECLARE SECTION;
290 char *service, *protocol, *entity;
291 int who;
292 EXEC SQL END DECLARE SECTION;
293
294 entity = cl->entity;
295 who = cl->client_id;
296
297 service = argv[0];
298 protocol = argv[1];
299
300 EXEC SQL UPDATE services SET modtime = SYSDATE, modby = :who,
301 modwith = :entity WHERE name = :service AND protocol = :protocol;
302
303 return MR_SUCCESS;
304}
305
306/* fixes the modby field. This will be the second to last thing in the
307 * argv, the argv length is determined from the query structure. It is
308 * passed as a pointer to an integer. This will either turn it into a
309 * username, or # + the users_id.
310 */
311int followup_fix_modby(struct query *q, struct save_queue *sq,
312 struct validate *v, int (*action)(int, char *[], void *),
313 void *actarg, client *cl)
314{
315 int i, j;
316 char **argv;
317 int id, status;
318
319 i = q->vcnt - 2;
320 while (sq_get_data(sq, &argv))
321 {
322 id = atoi(argv[i]);
323 if (id > 0)
324 status = id_to_name(id, USERS_TABLE, &argv[i]);
325 else
326 status = id_to_name(-id, STRINGS_TABLE, &argv[i]);
327 if (status && status != MR_NO_MATCH)
328 return status;
329 (*action)(q->vcnt, argv, actarg);
330 for (j = 0; j < q->vcnt; j++)
331 free(argv[j]);
332 free(argv);
333 }
334 sq_destroy(sq);
335 return MR_SUCCESS;
336}
337
338/**
339 ** followup_ausr - add finger and pobox entries, set_user_modtime
340 **
341 ** Inputs:
342 ** argv[0] - login (add_user)
343 ** argv[U_LAST] - last name
344 ** argv[U_FIRST] - first name
345 ** argv[U_MIDDLE] - middle name
346 **
347 **/
348
349int followup_ausr(struct query *q, char *argv[], client *cl)
350{
351 EXEC SQL BEGIN DECLARE SECTION;
352 int who, status;
353 char *login, *entity, *name;
354 char fullname[USERS_FIRST_SIZE + USERS_MIDDLE_SIZE + USERS_LAST_SIZE];
355 EXEC SQL END DECLARE SECTION;
356
357 /* build fullname */
358 if (strlen(argv[U_FIRST]) && strlen(argv[U_MIDDLE]))
359 sprintf(fullname, "%s %s %s", argv[U_FIRST], argv[U_MIDDLE],
360 argv[U_LAST]);
361 else if (strlen(argv[U_FIRST]))
362 sprintf(fullname, "%s %s", argv[U_FIRST], argv[U_LAST]);
363 else
364 sprintf(fullname, "%s", argv[U_LAST]);
365
366 login = argv[0];
367 who = cl->client_id;
368 entity = cl->entity;
369
370 /* create finger entry, pobox & set modtime on user */
371 EXEC SQL UPDATE users
372 SET modtime = SYSDATE, modby = :who, modwith = :entity,
373 fullname = NVL(:fullname, CHR(0)), affiliation = type,
374 fmodtime = SYSDATE, fmodby = :who, fmodwith = :entity,
375 potype = 'NONE', pmodtime = SYSDATE, pmodby = :who, pmodwith = :entity
376 WHERE login = :login;
377
378 return MR_SUCCESS;
379}
380
381/* followup_gpob: fixes argv[2] and argv[3] based on the pobox type.
382 * Then completes the upcall to the user.
383 *
384 * argv[2] is the users_id on input and should be converted to the
385 * pobox name on output. argv[3] is empty on input and should be
386 * converted to an email address on output.
387 */
388
389int followup_gpob(struct query *q, struct save_queue *sq, struct validate *v,
390 int (*action)(int, char *[], void *), void *actarg,
391 client *cl)
392{
393 char **argv;
394 char *ptype, *p;
395 int mid, sid, status, i;
396 EXEC SQL BEGIN DECLARE SECTION;
397 int users_id, pid, iid, bid;
398 char mach[MACHINE_NAME_SIZE], fs[FILESYS_LABEL_SIZE];
399 char str[STRINGS_STRING_SIZE];
400 EXEC SQL END DECLARE SECTION;
401
402 /* for each row */
403 while (sq_get_data(sq, &argv))
404 {
405 mr_trim_args(4, argv);
406 ptype = argv[1];
407 users_id = atoi(argv[2]);
408
409 EXEC SQL SELECT pop_id, imap_id, box_id INTO :pid, :iid, :bid
410 FROM users WHERE users_id = :users_id;
411 if (sqlca.sqlcode)
412 return MR_USER;
413
414 if (ptype[0] == 'S')
415 {
416 /* SMTP or SPLIT */
417 EXEC SQL SELECT string INTO :str FROM strings
418 WHERE string_id = :bid;
419 if (sqlca.sqlcode)
420 return MR_STRING;
421
422 /* If SMTP, don't bother fetching IMAP and POP boxes. */
423 if (ptype[1] == 'M')
424 pid = iid = 0;
425 }
426 if (iid)
427 {
428 /* IMAP, or SPLIT with IMAP */
429 EXEC SQL SELECT f.label, m.name INTO :fs, :mach
430 FROM filesys f, machine m
431 WHERE f.filsys_id = :iid AND f.mach_id = m.mach_id;
432 if (sqlca.sqlcode)
433 return MR_FILESYS;
434 }
435 if (pid)
436 {
437 /* POP, or SPLIT with POP */
438 EXEC SQL SELECT m.name INTO :mach FROM machine m, users u
439 WHERE u.users_id = :users_id AND u.pop_id = m.mach_id;
440 if (sqlca.sqlcode)
441 return MR_MACHINE;
442 }
443
444 free(argv[2]);
445 free(argv[3]);
446
447 /* Now assemble the right answer. */
448 if (!strcmp(ptype, "POP"))
449 {
450 argv[2] = xstrdup(strtrim(mach));
451 argv[3] = xmalloc(strlen(argv[0]) + strlen(argv[2]) + 2);
452 sprintf(argv[3], "%s@%s", argv[0], argv[2]);
453 }
454 else if (!strcmp(ptype, "SMTP"))
455 {
456 argv[2] = xstrdup(strtrim(str));
457 argv[3] = xstrdup(str);
458 }
459 else if (!strcmp(ptype, "IMAP"))
460 {
461 argv[2] = xstrdup(strtrim(fs));
462 argv[3] = xmalloc(strlen(argv[0]) + strlen(strtrim(mach)) + 2);
463 sprintf(argv[3], "%s@%s", argv[0], mach);
464 }
465 else if (!strcmp(ptype, "SPLIT"))
466 {
467 argv[2] = xstrdup(strtrim(str));
468 argv[3] = xmalloc(strlen(argv[0]) + strlen(strtrim(mach)) +
469 strlen(str) + 4);
470 sprintf(argv[3], "%s@%s, %s", argv[0], mach, str);
471 }
472 else /* ptype == "NONE" */
473 goto skip;
474
475 if (!strcmp(q->shortname, "gpob"))
476 {
477 sid = atoi(argv[5]);
478 if (sid > 0)
479 status = id_to_name(sid, USERS_TABLE, &argv[5]);
480 else
481 status = id_to_name(-sid, STRINGS_TABLE, &argv[5]);
482 if (status && status != MR_NO_MATCH)
483 return status;
484 }
485
486 (*action)(q->vcnt, argv, actarg);
487 skip:
488 /* free saved data */
489 for (i = 0; i < q->vcnt; i++)
490 free(argv[i]);
491 free(argv);
492 }
493
494 sq_destroy(sq);
495 return MR_SUCCESS;
496}
497
498/* Fix an ace_name, based on its type. */
499
500static int fix_ace(char *type, char **name)
501{
502 int id = atoi(*name);
503
504 if (!strcmp(type, "LIST"))
505 return id_to_name(id, LIST_TABLE, name);
506 else if (!strcmp(type, "USER"))
507 return id_to_name(id, USERS_TABLE, name);
508 else if (!strcmp(type, "KERBEROS"))
509 return id_to_name(id, STRINGS_TABLE, name);
510 else
511 {
512 free(*name);
513 if (!strcmp(type, "NONE"))
514 *name = xstrdup("NONE");
515 else
516 *name = xstrdup("???");
517 return MR_SUCCESS;
518 }
519}
520
521
522/* followup_gsnt: fix the ace_name and modby */
523
524int followup_gsnt(struct query *q, struct save_queue *sq, struct validate *v,
525 int (*action)(int, char *[], void *), void *actarg,
526 client *cl)
527{
528 char **argv;
529 int status;
530
531 while (sq_get_data(sq, &argv))
532 {
533 mr_trim_args(q->vcnt, argv);
534
535 status = fix_ace(argv[7], &argv[8]);
536 if (status && status != MR_NO_MATCH)
537 return status;
538 }
539
540 return followup_fix_modby(q, sq, v, action, actarg, cl);
541}
542
543
544/* followup_ghst: fix the ace_name, strings and modby */
545
546int followup_ghst(struct query *q, struct save_queue *sq, struct validate *v,
547 int (*action)(int, char *[], void *), void *actarg,
548 client *cl)
549{
550 char **argv;
551 int id, status, idx;
552
553 if (q->version < 6)
554 idx = 0;
555 else if (q->version >= 6 && q->version < 8)
556 idx = 1;
557 else
558 idx = 2;
559
560 while (sq_get_data(sq, &argv))
561 {
562 mr_trim_args(q->vcnt, argv);
563
564 id = atoi(argv[13 + idx]);
565 status = id_to_name(id, STRINGS_TABLE, &argv[13 + idx]);
566 if (status)
567 return status;
568 id = atoi(argv[14 + idx]);
569 status = id_to_name(id, STRINGS_TABLE, &argv[14 + idx]);
570 if (status)
571 return status;
572 id = atoi(argv[16 + idx]);
573 if (id < 0)
574 status = id_to_name(-id, STRINGS_TABLE, &argv[16 + idx]);
575 else
576 status = id_to_name(id, USERS_TABLE, &argv[16 + idx]);
577 if (status && status != MR_NO_MATCH)
578 return status;
579
580 status = fix_ace(argv[11 + idx], &argv[12 + idx]);
581 if (status && status != MR_NO_MATCH)
582 return status;
583 }
584
585 return followup_fix_modby(q, sq, v, action, actarg, cl);
586}
587
588
589/* followup_glin: fix the ace_name, modace_name, expiration, and modby */
590
591int followup_glin(struct query *q, struct save_queue *sq, struct validate *v,
592 int (*action)(int, char *[], void *), void *actarg,
593 client *cl)
594{
595 char **argv;
596 int status;
597
598 while (sq_get_data(sq, &argv))
599 {
600 mr_trim_args(q->vcnt, argv);
601
602 if (q->version == 2)
603 status = fix_ace(argv[7], &argv[8]);
604 else
605 status = fix_ace(argv[8], &argv[9]);
606 if (status && status != MR_NO_MATCH)
607 return status;
608 if (q->version > 3)
609 {
610 status = fix_ace(argv[10], &argv[11]);
611 if (status && status != MR_NO_MATCH)
612 return status;
613 }
614
615 if (atoi(argv[6]) == -1)
616 {
617 argv[6] = xrealloc(argv[6], strlen(UNIQUE_GID) + 1);
618 strcpy(argv[6], UNIQUE_GID);
619 }
620 }
621
622 return followup_fix_modby(q, sq, v, action, actarg, cl);
623}
624
625/* followup_gsin: fix the ace_name and modby. */
626int followup_gsin(struct query *q, struct save_queue *sq, struct validate *v,
627 int (*action)(int, char *[], void *), void *actarg,
628 client *cl)
629{
630 char **argv;
631 int status;
632
633 while (sq_get_data(sq, &argv))
634 {
635 mr_trim_args(q->vcnt, argv);
636
637 status = fix_ace(argv[11], &argv[12]);
638 if (status && status != MR_NO_MATCH)
639 return status;
640 }
641
642 return followup_fix_modby(q, sq, v, action, actarg, cl);
643}
644
645int followup_gpsv(struct query *q, struct save_queue *sq, struct validate *v,
646 int (*action)(int, char *[], void *), void *actarg,
647 client *cl)
648{
649 char **argv;
650 int status;
651
652 while (sq_get_data(sq, &argv))
653 {
654 mr_trim_args(q->vcnt, argv);
655
656 status = fix_ace(argv[PRINTSERVER_OWNER_TYPE],
657 &argv[PRINTSERVER_OWNER_NAME]);
658 if (status && status != MR_NO_MATCH)
659 return status;
660 }
661
662 return followup_fix_modby(q, sq, v, action, actarg, cl);
663}
664
665
666/* followup_gqot: Fix the entity name, directory name & modby fields
667 * argv[0] = filsys_id
668 * argv[1] = type
669 * argv[2] = entity_id
670 * argv[3] = ascii(quota)
671 */
672
673int followup_gqot(struct query *q, struct save_queue *sq, struct validate *v,
674 int (*action)(int, char *[], void *), void *actarg,
675 client *cl)
676{
677 int j;
678 char **argv;
679 EXEC SQL BEGIN DECLARE SECTION;
680 int id;
681 char *name, *label;
682 EXEC SQL END DECLARE SECTION;
683 int status, idx;
684
685 if (!strcmp(q->name, "get_quota") ||
686 !strcmp(q->name, "get_quota_by_filesys"))
687 idx = 4;
688 else
689 idx = 3;
690
691 while (sq_get_data(sq, &argv))
692 {
693 if (idx == 4)
694 {
695 switch (argv[1][0])
696 {
697 case 'U':
698 status = id_to_name(atoi(argv[2]), USERS_TABLE, &argv[2]);
699 break;
700 case 'G':
701 case 'L':
702 status = id_to_name(atoi(argv[2]), LIST_TABLE, &argv[2]);
703 break;
704 case 'A':
705 free(argv[2]);
706 argv[2] = xstrdup("system:anyuser");
707 break;
708 default:
709 id = atoi(argv[2]);
710 argv[2] = xmalloc(8);
711 sprintf(argv[2], "%d", id);
712 }
713 }
714 id = atoi(argv[idx]);
715 free(argv[idx]);
716 argv[idx] = xmalloc(id ? NFSPHYS_DIR_SIZE : FILESYS_NAME_SIZE);
717 name = argv[idx];
718 name[0] = '\0';
719 if (id == 0)
720 {
721 label = argv[0];
722 EXEC SQL SELECT name INTO :name FROM filesys
723 WHERE label = :label;
724 }
725 else
726 {
727 EXEC SQL SELECT dir INTO :name FROM nfsphys
728 WHERE nfsphys_id = :id;
729 }
730 if (sqlca.sqlerrd[2] != 1)
731 sprintf(argv[idx], "#%d", id);
732
733 id = atoi(argv[idx + 3]);
734 if (id > 0)
735 status = id_to_name(id, USERS_TABLE, &argv[idx + 3]);
736 else
737 status = id_to_name(-id, STRINGS_TABLE, &argv[idx + 3]);
738 if (status && status != MR_NO_MATCH)
739 return status;
740 (*action)(q->vcnt, argv, actarg);
741 for (j = 0; j < q->vcnt; j++)
742 free(argv[j]);
743 free(argv);
744 }
745 sq_destroy(sq);
746 return MR_SUCCESS;
747}
748
749
750/* followup_aqot: Add allocation to nfsphys after creating quota.
751 * argv[0] = filsys_id
752 * argv[1] = type if "add_quota" or "update_quota"
753 * argv[2 or 1] = id
754 * argv[3 or 2] = ascii(quota)
755 */
756
757int followup_aqot(struct query *q, char *argv[], client *cl)
758{
759 EXEC SQL BEGIN DECLARE SECTION;
760 int quota, id, fs, who, physid, table;
761 char *entity, *qtype, *tname;
762 EXEC SQL END DECLARE SECTION;
763 char incr_qual[60];
764 char *incr_argv[2];
765 int status;
766
767 table = q->rtable;
768 tname = table_name[table];
769 fs = *(int *)argv[0];
770 EXEC SQL SELECT phys_id INTO :physid FROM filesys
771 WHERE filsys_id = :fs;
772 if (dbms_errno)
773 return mr_errcode;
774
775 if (!strcmp(q->shortname, "aqot") || !strcmp(q->shortname, "uqot"))
776 {
777 qtype = argv[1];
778 id = *(int *)argv[2];
779 quota = atoi(argv[3]);
780 sprintf(incr_qual, "q.filsys_id = %d", fs);
781 }
782 else
783 {
784 qtype = "USER";
785 id = *(int *)argv[1];
786 quota = atoi(argv[2]);
787 sprintf(incr_qual, "q.filsys_id = %d AND q.type = '%s' AND "
788 "q.entity_id = %d", fs, qtype, id);
789 }
790
791 /* quota case of incremental_{before|after} only looks at slot 1 */
792 incr_argv[1] = qtype;
793
794 /* Follows one of many possible gross hacks to fix these particular
795 * conflicts between what is possible in the query table and what
796 * is possible in SQL.
797 */
798 if (q->type == APPEND)
799 {
800 incremental_clear_before();
801 EXEC SQL INSERT INTO quota
802 (filsys_id, type, entity_id, quota, phys_id)
803 VALUES (:fs, NVL(:qtype, CHR(0)), :id, :quota, :physid);
804 incremental_after(table, incr_qual, incr_argv);
805 }
806 else
807 {
808 incremental_before(table, incr_qual, incr_argv);
809 EXEC SQL UPDATE quota SET quota = :quota
810 WHERE filsys_id = :fs AND type = :qtype AND entity_id = :id;
811 status = mr_errcode;
812 incremental_after(table, incr_qual, incr_argv);
813 }
814
815 if (dbms_errno)
816 return mr_errcode;
817 if (q->type == APPEND)
818 {
819 EXEC SQL UPDATE tblstats SET appends = appends + 1, modtime = SYSDATE
820 WHERE table_name = :tname;
821 }
822 else
823 {
824 EXEC SQL UPDATE tblstats SET updates = updates + 1, modtime = SYSDATE
825 WHERE table_name = :tname;
826 }
827
828 /* Proceed with original followup */
829 who = cl->client_id;
830 entity = cl->entity;
831
832 EXEC SQL UPDATE quota
833 SET modtime = SYSDATE, modby = :who, modwith = :entity
834 WHERE filsys_id = :fs and type = :qtype and entity_id = :id;
835 EXEC SQL UPDATE nfsphys SET allocated = allocated + :quota
836 WHERE nfsphys_id = :physid;
837 if (dbms_errno)
838 return mr_errcode;
839 return MR_SUCCESS;
840}
841
842
843/* Necessitated by the requirement of a correlation name by the incremental
844 * routines, since query table deletes don't provide one.
845 */
846int followup_dqot(struct query *q, char **argv, client *cl)
847{
848 char *qtype;
849 int id, fs, table;
850 char *incr_argv[2];
851 EXEC SQL BEGIN DECLARE SECTION;
852 char incr_qual[80], *tname;
853 EXEC SQL END DECLARE SECTION;
854
855 table = q->rtable;
856 tname = table_name[table];
857 fs = *(int *)argv[0];
858 if (!strcmp(q->shortname, "dqot"))
859 {
860 qtype = argv[1];
861 id = *(int *)argv[2];
862 }
863 else
864 {
865 qtype = "USER";
866 id = *(int *)argv[1];
867 }
868 sprintf(incr_qual, "q.filsys_id = %d AND q.type = '%s' AND q.entity_id = %d",
869 fs, qtype, id);
870
871 /* quota case of incremental_{before|after} only looks at slot 1 */
872 incr_argv[1] = qtype;
873
874 incremental_before(table, incr_qual, incr_argv);
875 EXEC SQL DELETE FROM quota q WHERE q.filsys_id = :fs AND q.type = :qtype
876 AND q.entity_id = :id;
877 incremental_clear_after();
878
879 if (dbms_errno)
880 return mr_errcode;
881
882 EXEC SQL UPDATE tblstats SET deletes = deletes + 1, modtime = SYSDATE
883 WHERE table_name = :tname;
884 return MR_SUCCESS;
885}
886
887/* followup_gzcl:
888 */
889
890int followup_gzcl(struct query *q, struct save_queue *sq, struct validate *v,
891 int (*action)(int, char *[], void *), void *actarg,
892 client *cl)
893{
894 int i, n, status;
895 char **argv;
896
897 if (q->version < 5)
898 n = 8;
899 else
900 n = 10;
901
902 while (sq_get_data(sq, &argv))
903 {
904 mr_trim_args(q->vcnt, argv);
905
906 for (i = 1; i < n; i += 2)
907 {
908 status = fix_ace(argv[i], &argv[i + 1]);
909 if (status && status != MR_NO_MATCH)
910 return status;
911 }
912 }
913
914 return followup_fix_modby(q, sq, v, action, actarg, cl);
915}
916
917
918/* followup_gsha:
919 */
920
921int followup_gsha(struct query *q, struct save_queue *sq, struct validate *v,
922 int (*action)(int, char *[], void *), void *actarg,
923 client *cl)
924{
925 char **argv;
926 int status;
927
928 while (sq_get_data(sq, &argv))
929 {
930 mr_trim_args(q->vcnt, argv);
931
932 status = fix_ace(argv[1], &argv[2]);
933 if (status && status != MR_NO_MATCH)
934 return status;
935 }
936
937 return followup_fix_modby(q, sq, v, action, actarg, cl);
938}
939
940
941int _sdl_followup(struct query *q, char *argv[], client *cl)
942{
943 if (atoi(argv[0]))
944 EXEC SQL ALTER SESSION SET SQL_TRACE TRUE;
945 else
946 EXEC SQL ALTER SESSION SET SQL_TRACE FALSE;
947
948 return MR_SUCCESS;
949}
950
951
952int trigger_dcm(struct query *q, char *argv[], client *cl)
953{
954 pid_t pid;
955 char prog[MAXPATHLEN];
956
957 sprintf(prog, "%s/startdcm", BIN_DIR);
958 pid = vfork();
959 switch (pid)
960 {
961 case 0:
962 execl(prog, "startdcm", 0);
963 exit(1);
964
965 case -1:
966 return errno;
967
968 default:
969 return MR_SUCCESS;
970 }
971}
972
973/* followup_gcon: fix the ace_name, memace_name, and modby */
974
975int followup_gcon(struct query *q, struct save_queue *sq, struct validate *v,
976 int (*action)(int, char *[], void *), void *actarg,
977 client *cl)
978{
979 char **argv;
980 int status;
981
982 while (sq_get_data(sq, &argv))
983 {
984 mr_trim_args(q->vcnt, argv);
985
986 status = fix_ace(argv[4], &argv[5]);
987 if (status && status != MR_NO_MATCH)
988 return status;
989
990 status = fix_ace(argv[6], &argv[7]);
991 if (status && status != MR_NO_MATCH)
992 return status;
993 }
994
995 return followup_fix_modby(q, sq, v, action, actarg, cl);
996}
997
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