blob: f07d1a1ad0f152cafc7fd256a965e69fbb420568 [file] [log] [blame]
Dmitry V. Levinef5c3d62006-10-16 00:26:47 +00001/*
2 * Copyright (c) 1991, 1992 Paul Kranenburg <pk@cs.few.eur.nl>
3 * Copyright (c) 1993 Branko Lankester <branko@hacktic.nl>
4 * Copyright (c) 1993, 1994, 1995, 1996 Rick Sladkey <jrs@world.std.com>
5 * Copyright (c) 1996-1999 Wichert Akkerman <wichert@cistron.nl>
6 * Copyright (c) 2005, 2006 Dmitry V. Levin <ldv@altlinux.org>
7 * All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions and the following disclaimer.
14 * 2. Redistributions in binary form must reproduce the above copyright
15 * notice, this list of conditions and the following disclaimer in the
16 * documentation and/or other materials provided with the distribution.
17 * 3. The name of the author may not be used to endorse or promote products
18 * derived from this software without specific prior written permission.
19 *
20 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
21 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
22 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
23 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
24 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
25 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
26 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
27 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
28 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
29 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30 *
31 * $Id$
32 */
33
34#include "defs.h"
35
36#ifdef LINUX
37
38#include <inttypes.h>
39
40#define SUBCMDMASK 0x00ff
41#define SUBCMDSHIFT 8
42#define QCMD_CMD(cmd) ((u_int32_t)(cmd) >> SUBCMDSHIFT)
43#define QCMD_TYPE(cmd) ((u_int32_t)(cmd) & SUBCMDMASK)
44
45#define OLD_CMD(cmd) ((u_int32_t)(cmd) << 8)
46#define NEW_CMD(cmd) ((u_int32_t)(cmd) | 0x800000)
47#define XQM_CMD(cmd) ((u_int32_t)(cmd) | ('X'<<8))
48
49#define Q_V1_QUOTAON OLD_CMD(0x1)
50#define Q_V1_QUOTAOFF OLD_CMD(0x2)
51#define Q_V1_GETQUOTA OLD_CMD(0x3)
52#define Q_V1_SETQUOTA OLD_CMD(0x4)
53#define Q_V1_SETUSE OLD_CMD(0x5)
54#define Q_V1_SYNC OLD_CMD(0x6)
55#define Q_SETQLIM OLD_CMD(0x7)
56#define Q_V1_GETSTATS OLD_CMD(0x8)
57#define Q_V1_RSQUASH OLD_CMD(0x10)
58
59#define Q_V2_GETQUOTA OLD_CMD(0xD)
60#define Q_V2_SETQUOTA OLD_CMD(0xE)
61#define Q_V2_SETUSE OLD_CMD(0xF)
62#define Q_V2_GETINFO OLD_CMD(0x9)
63#define Q_V2_SETINFO OLD_CMD(0xA)
64#define Q_V2_SETGRACE OLD_CMD(0xB)
65#define Q_V2_SETFLAGS OLD_CMD(0xC)
66#define Q_V2_GETSTATS OLD_CMD(0x11)
67
68#define Q_SYNC NEW_CMD(0x1)
69#define Q_QUOTAON NEW_CMD(0x2)
70#define Q_QUOTAOFF NEW_CMD(0x3)
71#define Q_GETFMT NEW_CMD(0x4)
72#define Q_GETINFO NEW_CMD(0x5)
73#define Q_SETINFO NEW_CMD(0x6)
74#define Q_GETQUOTA NEW_CMD(0x7)
75#define Q_SETQUOTA NEW_CMD(0x8)
76
77#define Q_XQUOTAON XQM_CMD(0x1)
78#define Q_XQUOTAOFF XQM_CMD(0x2)
79#define Q_XGETQUOTA XQM_CMD(0x3)
80#define Q_XSETQLIM XQM_CMD(0x4)
81#define Q_XGETQSTAT XQM_CMD(0x5)
82#define Q_XQUOTARM XQM_CMD(0x6)
83#define Q_XQUOTASYNC XQM_CMD(0x7)
84
85static const struct xlat quotacmds[] = {
86 {Q_V1_QUOTAON, "Q_V1_QUOTAON"},
87 {Q_V1_QUOTAOFF, "Q_V1_QUOTAOFF"},
88 {Q_V1_GETQUOTA, "Q_V1_GETQUOTA"},
89 {Q_V1_SETQUOTA, "Q_V1_SETQUOTA"},
90 {Q_V1_SETUSE, "Q_V1_SETUSE"},
91 {Q_V1_SYNC, "Q_V1_SYNC"},
92 {Q_SETQLIM, "Q_SETQLIM"},
93 {Q_V1_GETSTATS, "Q_V1_GETSTATS"},
94 {Q_V1_RSQUASH, "Q_V1_RSQUASH"},
95
96 {Q_V2_GETQUOTA, "Q_V2_GETQUOTA"},
97 {Q_V2_SETQUOTA, "Q_V2_SETQUOTA"},
98 {Q_V2_SETUSE, "Q_V2_SETUSE"},
99 {Q_V2_GETINFO, "Q_V2_GETINFO"},
100 {Q_V2_SETINFO, "Q_V2_SETINFO"},
101 {Q_V2_SETGRACE, "Q_V2_SETGRACE"},
102 {Q_V2_SETFLAGS, "Q_V2_SETFLAGS"},
103 {Q_V2_GETSTATS, "Q_V2_GETSTATS"},
104
105 {Q_SYNC, "Q_SYNC"},
106 {Q_QUOTAON, "Q_QUOTAON"},
107 {Q_QUOTAOFF, "Q_QUOTAOFF"},
108 {Q_GETFMT, "Q_GETFMT"},
109 {Q_GETINFO, "Q_GETINFO"},
110 {Q_SETINFO, "Q_SETINFO"},
111 {Q_GETQUOTA, "Q_GETQUOTA"},
112 {Q_SETQUOTA, "Q_SETQUOTA"},
113
114 {Q_XQUOTAON, "Q_XQUOTAON"},
115 {Q_XQUOTAOFF, "Q_XQUOTAOFF"},
116 {Q_XGETQUOTA, "Q_XGETQUOTA"},
117 {Q_XSETQLIM, "Q_XSETQLIM"},
118 {Q_XGETQSTAT, "Q_XGETQSTAT"},
119 {Q_XQUOTARM, "Q_XQUOTARM"},
120 {Q_XQUOTASYNC, "Q_XQUOTASYNC"},
121
122 {0, NULL},
123};
124
125#define USRQUOTA 0
126#define GRPQUOTA 1
127
128static const struct xlat quotatypes[] = {
129 {USRQUOTA, "USRQUOTA"},
130 {GRPQUOTA, "GRPQUOTA"},
131 {0, NULL},
132};
133
134/* Quota format identifiers */
135#define QFMT_VFS_OLD 1
136#define QFMT_VFS_V0 2
137
138static const struct xlat quota_formats[] = {
139 {QFMT_VFS_OLD, "QFMT_VFS_OLD"},
140 {QFMT_VFS_V0, "QFMT_VFS_V0"},
141 {0, NULL},
142};
143
144#define XFS_QUOTA_UDQ_ACCT (1<<0) /* user quota accounting */
145#define XFS_QUOTA_UDQ_ENFD (1<<1) /* user quota limits enforcement */
146#define XFS_QUOTA_GDQ_ACCT (1<<2) /* group quota accounting */
147#define XFS_QUOTA_GDQ_ENFD (1<<3) /* group quota limits enforcement */
148
149#define XFS_USER_QUOTA (1<<0) /* user quota type */
150#define XFS_PROJ_QUOTA (1<<1) /* (IRIX) project quota type */
151#define XFS_GROUP_QUOTA (1<<2) /* group quota type */
152
153static const struct xlat xfs_quota_flags[] = {
154 {XFS_QUOTA_UDQ_ACCT, "XFS_QUOTA_UDQ_ACCT"},
155 {XFS_QUOTA_UDQ_ENFD, "XFS_QUOTA_UDQ_ENFD"},
156 {XFS_QUOTA_GDQ_ACCT, "XFS_QUOTA_GDQ_ACCT"},
157 {XFS_QUOTA_GDQ_ENFD, "XFS_QUOTA_GDQ_ENFD"},
158 {0, NULL}
159};
160
161static const struct xlat xfs_dqblk_flags[] = {
162 {XFS_USER_QUOTA, "XFS_USER_QUOTA"},
163 {XFS_PROJ_QUOTA, "XFS_PROJ_QUOTA"},
164 {XFS_GROUP_QUOTA, "XFS_GROUP_QUOTA"},
165 {0, NULL}
166};
167
168/*
169 * Following flags are used to specify which fields are valid
170 */
171#define QIF_BLIMITS 1
172#define QIF_SPACE 2
173#define QIF_ILIMITS 4
174#define QIF_INODES 8
175#define QIF_BTIME 16
176#define QIF_ITIME 32
177
178static const struct xlat if_dqblk_valid[] = {
179 {QIF_BLIMITS, "QIF_BLIMITS"},
180 {QIF_SPACE, "QIF_SPACE"},
181 {QIF_ILIMITS, "QIF_ILIMITS"},
182 {QIF_INODES, "QIF_INODES"},
183 {QIF_BTIME, "QIF_BTIME"},
184 {QIF_ITIME, "QIF_ITIME"},
185 {0, NULL}
186};
187
188struct if_dqblk
189{
190 u_int64_t dqb_bhardlimit;
191 u_int64_t dqb_bsoftlimit;
192 u_int64_t dqb_curspace;
193 u_int64_t dqb_ihardlimit;
194 u_int64_t dqb_isoftlimit;
195 u_int64_t dqb_curinodes;
196 u_int64_t dqb_btime;
197 u_int64_t dqb_itime;
198 u_int32_t dqb_valid;
199};
200
201struct v1_dqblk
202{
203 u_int32_t dqb_bhardlimit; /* absolute limit on disk blks alloc */
204 u_int32_t dqb_bsoftlimit; /* preferred limit on disk blks */
205 u_int32_t dqb_curblocks; /* current block count */
206 u_int32_t dqb_ihardlimit; /* maximum # allocated inodes */
207 u_int32_t dqb_isoftlimit; /* preferred inode limit */
208 u_int32_t dqb_curinodes; /* current # allocated inodes */
209 time_t dqb_btime; /* time limit for excessive disk use */
210 time_t dqb_itime; /* time limit for excessive files */
211};
212
213struct v2_dqblk
214{
215 unsigned int dqb_ihardlimit;
216 unsigned int dqb_isoftlimit;
217 unsigned int dqb_curinodes;
218 unsigned int dqb_bhardlimit;
219 unsigned int dqb_bsoftlimit;
220 u_int64_t dqb_curspace;
221 time_t dqb_btime;
222 time_t dqb_itime;
223};
224
225struct xfs_dqblk
226{
227 int8_t d_version; /* version of this structure */
228 int8_t d_flags; /* XFS_{USER,PROJ,GROUP}_QUOTA */
229 u_int16_t d_fieldmask; /* field specifier */
230 u_int32_t d_id; /* user, project, or group ID */
231 u_int64_t d_blk_hardlimit; /* absolute limit on disk blks */
232 u_int64_t d_blk_softlimit; /* preferred limit on disk blks */
233 u_int64_t d_ino_hardlimit; /* maximum # allocated inodes */
234 u_int64_t d_ino_softlimit; /* preferred inode limit */
235 u_int64_t d_bcount; /* # disk blocks owned by the user */
236 u_int64_t d_icount; /* # inodes owned by the user */
237 int32_t d_itimer; /* zero if within inode limits */
238 int32_t d_btimer; /* similar to above; for disk blocks */
239 u_int16_t d_iwarns; /* # warnings issued wrt num inodes */
240 u_int16_t d_bwarns; /* # warnings issued wrt disk blocks */
241 int32_t d_padding2; /* padding2 - for future use */
242 u_int64_t d_rtb_hardlimit; /* absolute limit on realtime blks */
243 u_int64_t d_rtb_softlimit; /* preferred limit on RT disk blks */
244 u_int64_t d_rtbcount; /* # realtime blocks owned */
245 int32_t d_rtbtimer; /* similar to above; for RT disk blks */
246 u_int16_t d_rtbwarns; /* # warnings issued wrt RT disk blks */
247 int16_t d_padding3; /* padding3 - for future use */
248 char d_padding4[8]; /* yet more padding */
249};
250
251/*
252 * Following flags are used to specify which fields are valid
253 */
254#define IIF_BGRACE 1
255#define IIF_IGRACE 2
256#define IIF_FLAGS 4
257
258static const struct xlat if_dqinfo_valid[] = {
259 {IIF_BGRACE, "IIF_BGRACE"},
260 {IIF_IGRACE, "IIF_IGRACE"},
261 {IIF_FLAGS, "IIF_FLAGS"},
262 {0, NULL}
263};
264
265struct if_dqinfo
266{
267 u_int64_t dqi_bgrace;
268 u_int64_t dqi_igrace;
269 u_int32_t dqi_flags;
270 u_int32_t dqi_valid;
271};
272
273struct v2_dqinfo
274{
275 unsigned int dqi_bgrace;
276 unsigned int dqi_igrace;
277 unsigned int dqi_flags;
278 unsigned int dqi_blocks;
279 unsigned int dqi_free_blk;
280 unsigned int dqi_free_entry;
281};
282
283struct v1_dqstats
284{
285 u_int32_t lookups;
286 u_int32_t drops;
287 u_int32_t reads;
288 u_int32_t writes;
289 u_int32_t cache_hits;
290 u_int32_t allocated_dquots;
291 u_int32_t free_dquots;
292 u_int32_t syncs;
293};
294
295struct v2_dqstats
296{
297 u_int32_t lookups;
298 u_int32_t drops;
299 u_int32_t reads;
300 u_int32_t writes;
301 u_int32_t cache_hits;
302 u_int32_t allocated_dquots;
303 u_int32_t free_dquots;
304 u_int32_t syncs;
305 u_int32_t version;
306};
307
308typedef struct fs_qfilestat
309{
310 u_int64_t qfs_ino; /* inode number */
311 u_int64_t qfs_nblks; /* number of BBs 512-byte-blks */
312 u_int32_t qfs_nextents; /* number of extents */
313} fs_qfilestat_t;
314
315struct xfs_dqstats
316{
317 int8_t qs_version; /* version number for future changes */
318 u_int16_t qs_flags; /* XFS_QUOTA_{U,P,G}DQ_{ACCT,ENFD} */
319 int8_t qs_pad; /* unused */
320 fs_qfilestat_t qs_uquota; /* user quota storage information */
321 fs_qfilestat_t qs_gquota; /* group quota storage information */
322 u_int32_t qs_incoredqs; /* number of dquots incore */
323 int32_t qs_btimelimit; /* limit for blks timer */
324 int32_t qs_itimelimit; /* limit for inodes timer */
325 int32_t qs_rtbtimelimit; /* limit for rt blks timer */
326 u_int16_t qs_bwarnlimit; /* limit for num warnings */
327 u_int16_t qs_iwarnlimit; /* limit for num warnings */
328};
329
330static void
331decode_cmd_data(struct tcb *tcp, u_int32_t cmd, unsigned long data)
332{
333 switch (cmd)
334 {
335 case Q_GETQUOTA:
336 case Q_SETQUOTA:
337 {
338 struct if_dqblk dq;
339
340 if (cmd == Q_GETQUOTA && syserror(tcp))
341 {
342 tprintf("%#lx", data);
343 break;
344 }
345 if (umove(tcp, data, &dq) < 0)
346 {
347 tprintf("{???} %#lx", data);
348 break;
349 }
350 tprintf("{bhardlimit=%" PRIu64 ", ", dq.dqb_bhardlimit);
351 tprintf("bsoftlimit=%" PRIu64 ", ", dq.dqb_bsoftlimit);
352 tprintf("curspace=%" PRIu64 ", ", dq.dqb_curspace);
353 tprintf("ihardlimit=%" PRIu64 ", ", dq.dqb_ihardlimit);
354 tprintf("isoftlimit=%" PRIu64 ", ", dq.dqb_isoftlimit);
355 tprintf("curinodes=%" PRIu64 ", ", dq.dqb_curinodes);
356 if (!abbrev(tcp))
357 {
358 tprintf("btime=%" PRIu64 ", ", dq.dqb_btime);
359 tprintf("itime=%" PRIu64 ", ", dq.dqb_itime);
360 tprintf("valid=");
361 printflags(if_dqblk_valid,
362 dq.dqb_valid, "QIF_???");
363 tprintf("}");
364 } else
365 tprintf("...}");
366 break;
367 }
368 case Q_V1_GETQUOTA:
369 case Q_V1_SETQUOTA:
370 {
371 struct v1_dqblk dq;
372
373 if (cmd == Q_V1_GETQUOTA && syserror(tcp))
374 {
375 tprintf("%#lx", data);
376 break;
377 }
378 if (umove(tcp, data, &dq) < 0)
379 {
380 tprintf("{???} %#lx", data);
381 break;
382 }
383 tprintf("{bhardlimit=%u, ", dq.dqb_bhardlimit);
384 tprintf("bsoftlimit=%u, ", dq.dqb_bsoftlimit);
385 tprintf("curblocks=%u, ", dq.dqb_curblocks);
386 tprintf("ihardlimit=%u, ", dq.dqb_ihardlimit);
387 tprintf("isoftlimit=%u, ", dq.dqb_isoftlimit);
388 tprintf("curinodes=%u, ", dq.dqb_curinodes);
389 tprintf("btime=%lu, ", dq.dqb_btime);
390 tprintf("itime=%lu}", dq.dqb_itime);
391 break;
392 }
393 case Q_V2_GETQUOTA:
394 case Q_V2_SETQUOTA:
395 {
396 struct v2_dqblk dq;
397
398 if (cmd == Q_V2_GETQUOTA && syserror(tcp))
399 {
400 tprintf("%#lx", data);
401 break;
402 }
403 if (umove(tcp, data, &dq) < 0)
404 {
405 tprintf("{???} %#lx", data);
406 break;
407 }
408 tprintf("{ihardlimit=%u, ", dq.dqb_ihardlimit);
409 tprintf("isoftlimit=%u, ", dq.dqb_isoftlimit);
410 tprintf("curinodes=%u, ", dq.dqb_curinodes);
411 tprintf("bhardlimit=%u, ", dq.dqb_bhardlimit);
412 tprintf("bsoftlimit=%u, ", dq.dqb_bsoftlimit);
413 tprintf("curspace=%" PRIu64 ", ", dq.dqb_curspace);
414 tprintf("btime=%lu, ", dq.dqb_btime);
415 tprintf("itime=%lu}", dq.dqb_itime);
416 break;
417 }
418 case Q_XGETQUOTA:
419 case Q_XSETQLIM:
420 {
421 struct xfs_dqblk dq;
422
423 if (cmd == Q_XGETQUOTA && syserror(tcp))
424 {
425 tprintf("%#lx", data);
426 break;
427 }
428 if (umove(tcp, data, &dq) < 0)
429 {
430 tprintf("{???} %#lx", data);
431 break;
432 }
433 tprintf("{version=%d, ", dq.d_version);
434 tprintf("flags=");
435 printflags(xfs_dqblk_flags,
436 dq.d_flags, "XFS_???_QUOTA");
437 tprintf(", fieldmask=%#x, ", dq.d_fieldmask);
438 tprintf("id=%u, ", dq.d_id);
439 tprintf("blk_hardlimit=%" PRIu64 ", ", dq.d_blk_hardlimit);
440 tprintf("blk_softlimit=%" PRIu64 ", ", dq.d_blk_softlimit);
441 tprintf("ino_hardlimit=%" PRIu64 ", ", dq.d_ino_hardlimit);
442 tprintf("ino_softlimit=%" PRIu64 ", ", dq.d_ino_softlimit);
443 tprintf("bcount=%" PRIu64 ", ", dq.d_bcount);
444 tprintf("icount=%" PRIu64 ", ", dq.d_icount);
445 if (!abbrev(tcp))
446 {
447 tprintf("itimer=%d, ", dq.d_itimer);
448 tprintf("btimer=%d, ", dq.d_btimer);
449 tprintf("iwarns=%u, ", dq.d_iwarns);
450 tprintf("bwarns=%u, ", dq.d_bwarns);
451 tprintf("rtbcount=%" PRIu64 ", ", dq.d_rtbcount);
452 tprintf("rtbtimer=%d, ", dq.d_rtbtimer);
453 tprintf("rtbwarns=%u}", dq.d_rtbwarns);
454 } else
455 tprintf("...}");
456 break;
457 }
458 case Q_GETFMT:
459 {
460 u_int32_t fmt;
461
462 if (syserror(tcp))
463 {
464 tprintf("%#lx", data);
465 break;
466 }
467 if (umove(tcp, data, &fmt) < 0)
468 {
469 tprintf("{???} %#lx", data);
470 break;
471 }
472 tprintf("{");
473 printxval(quota_formats, fmt, "QFMT_VFS_???");
474 tprintf("}");
475 break;
476 }
477 case Q_GETINFO:
478 case Q_SETINFO:
479 {
480 struct if_dqinfo dq;
481
482 if (cmd == Q_GETINFO && syserror(tcp))
483 {
484 tprintf("%#lx", data);
485 break;
486 }
487 if (umove(tcp, data, &dq) < 0)
488 {
489 tprintf("{???} %#lx", data);
490 break;
491 }
492 tprintf("{bgrace=%" PRIu64 ", ", dq.dqi_bgrace);
493 tprintf("igrace=%" PRIu64 ", ", dq.dqi_igrace);
494 tprintf("flags=%#x, ", dq.dqi_flags);
495 tprintf("valid=");
496 printflags(if_dqinfo_valid, dq.dqi_valid, "IIF_???");
497 tprintf("}");
498 break;
499 }
500 case Q_V2_GETINFO:
501 case Q_V2_SETINFO:
502 {
503 struct v2_dqinfo dq;
504
505 if (cmd == Q_V2_GETINFO && syserror(tcp))
506 {
507 tprintf("%#lx", data);
508 break;
509 }
510 if (umove(tcp, data, &dq) < 0)
511 {
512 tprintf("{???} %#lx", data);
513 break;
514 }
515 tprintf("{bgrace=%u, ", dq.dqi_bgrace);
516 tprintf("igrace=%u, ", dq.dqi_igrace);
517 tprintf("flags=%#x, ", dq.dqi_flags);
518 tprintf("blocks=%u, ", dq.dqi_blocks);
519 tprintf("free_blk=%u, ", dq.dqi_free_blk);
520 tprintf("free_entry=%u}", dq.dqi_free_entry);
521 break;
522 }
523 case Q_V1_GETSTATS:
524 {
525 struct v1_dqstats dq;
526
527 if (syserror(tcp))
528 {
529 tprintf("%#lx", data);
530 break;
531 }
532 if (umove(tcp, data, &dq) < 0)
533 {
534 tprintf("{???} %#lx", data);
535 break;
536 }
537 tprintf("{lookups=%u, ", dq.lookups);
538 tprintf("drops=%u, ", dq.drops);
539 tprintf("reads=%u, ", dq.reads);
540 tprintf("writes=%u, ", dq.writes);
541 tprintf("cache_hits=%u, ", dq.cache_hits);
542 tprintf("allocated_dquots=%u, ", dq.allocated_dquots);
543 tprintf("free_dquots=%u, ", dq.free_dquots);
544 tprintf("syncs=%u}", dq.syncs);
545 break;
546 }
547 case Q_V2_GETSTATS:
548 {
549 struct v2_dqstats dq;
550
551 if (syserror(tcp))
552 {
553 tprintf("%#lx", data);
554 break;
555 }
556 if (umove(tcp, data, &dq) < 0)
557 {
558 tprintf("{???} %#lx", data);
559 break;
560 }
561 tprintf("{lookups=%u, ", dq.lookups);
562 tprintf("drops=%u, ", dq.drops);
563 tprintf("reads=%u, ", dq.reads);
564 tprintf("writes=%u, ", dq.writes);
565 tprintf("cache_hits=%u, ", dq.cache_hits);
566 tprintf("allocated_dquots=%u, ", dq.allocated_dquots);
567 tprintf("free_dquots=%u, ", dq.free_dquots);
568 tprintf("syncs=%u, ", dq.syncs);
569 tprintf("version=%u}", dq.version);
570 break;
571 }
572 case Q_XGETQSTAT:
573 {
574 struct xfs_dqstats dq;
575
576 if (syserror(tcp))
577 {
578 tprintf("%#lx", data);
579 break;
580 }
581 if (umove(tcp, data, &dq) < 0)
582 {
583 tprintf("{???} %#lx", data);
584 break;
585 }
586 tprintf("{version=%d, ", dq.qs_version);
587 if (abbrev(tcp))
588 {
589 tprintf("...}");
590 break;
591 }
592 tprintf("flags=");
593 printflags(xfs_quota_flags,
594 dq.qs_flags, "XFS_QUOTA_???");
595 tprintf(", incoredqs=%u, ", dq.qs_incoredqs);
596 tprintf("u_ino=%" PRIu64 ", ", dq.qs_uquota.qfs_ino);
597 tprintf("u_nblks=%" PRIu64 ", ", dq.qs_uquota.qfs_nblks);
598 tprintf("u_nextents=%u, ", dq.qs_uquota.qfs_nextents);
599 tprintf("g_ino=%" PRIu64 ", ", dq.qs_gquota.qfs_ino);
600 tprintf("g_nblks=%" PRIu64 ", ", dq.qs_gquota.qfs_nblks);
601 tprintf("g_nextents=%u, ", dq.qs_gquota.qfs_nextents);
602 tprintf("btimelimit=%d, ", dq.qs_btimelimit);
603 tprintf("itimelimit=%d, ", dq.qs_itimelimit);
604 tprintf("rtbtimelimit=%d, ", dq.qs_rtbtimelimit);
605 tprintf("bwarnlimit=%u, ", dq.qs_bwarnlimit);
606 tprintf("iwarnlimit=%u}", dq.qs_iwarnlimit);
607 break;
608 }
609 case Q_XQUOTAON:
610 {
611 u_int32_t flag;
612
613 if (umove(tcp, data, &flag) < 0)
614 {
615 tprintf("{???} %#lx", data);
616 break;
617 }
618 tprintf("{");
619 printflags(xfs_quota_flags, flag, "XFS_QUOTA_???");
620 tprintf("}");
621 break;
622 }
623 default:
624 tprintf("%#lx", data);
625 break;
626 }
627}
628
629int
630sys_quotactl(struct tcb *tcp)
631{
632 /*
633 * The Linux kernel only looks at the low 32 bits of command and id
634 * arguments, but on some 64-bit architectures (s390x) this word
635 * will have been sign-extended when we see it. The high 1 bits
636 * don't mean anything, so don't confuse the output with them.
637 */
638 u_int32_t qcmd = tcp->u_arg[0];
639 u_int32_t cmd = QCMD_CMD(qcmd);
640 u_int32_t type = QCMD_TYPE(qcmd);
641 u_int32_t id = tcp->u_arg[2];
642
643 if (!verbose(tcp))
644 return printargs(tcp);
645
646 if (entering(tcp))
647 {
648 printxval(quotacmds, cmd, "Q_???");
649 tprintf("|");
650 printxval(quotatypes, type, "???QUOTA");
651 tprintf(", ");
652 printstr(tcp, tcp->u_arg[1], -1);
653 tprintf(", ");
654 switch (cmd)
655 {
656 case Q_V1_QUOTAON:
657 case Q_QUOTAON:
658 printxval(quota_formats, id, "QFMT_VFS_???");
659 break;
660 case Q_V1_GETQUOTA:
661 case Q_V2_GETQUOTA:
662 case Q_GETQUOTA:
663 case Q_V1_SETQUOTA:
664 case Q_V2_SETQUOTA:
665 case Q_V1_SETUSE:
666 case Q_V2_SETUSE:
667 case Q_SETQLIM:
668 case Q_SETQUOTA:
669 case Q_XGETQUOTA:
670 case Q_XSETQLIM:
671 tprintf("%u", id);
672 break;
673 default:
674 tprintf("%#lx", tcp->u_arg[2]);
675 break;
676 }
677 tprintf(", ");
678 } else
679 {
680 if (!tcp->u_arg[3])
681 tprintf("NULL");
682 else
683 decode_cmd_data(tcp, cmd, tcp->u_arg[3]);
684 }
685 return 0;
686}
687
688#endif /* Linux */
689
690#if defined(SUNOS4) || defined(FREEBSD)
691
692#ifdef SUNOS4
693#include <ufs/quota.h>
694#endif
695
696#ifdef FREEBSD
697#include <ufs/ufs/quota.h>
698#endif
699
700static const struct xlat quotacmds[] = {
701 {Q_QUOTAON, "Q_QUOTAON"},
702 {Q_QUOTAOFF, "Q_QUOTAOFF"},
703 {Q_GETQUOTA, "Q_GETQUOTA"},
704 {Q_SETQUOTA, "Q_SETQUOTA"},
705#ifdef Q_SETQLIM
706 {Q_SETQLIM, "Q_SETQLIM"},
707#endif
708#ifdef Q_SETUSE
709 {Q_SETUSE, "Q_SETUSE"},
710#endif
711 {Q_SYNC, "Q_SYNC"},
712 {0, NULL},
713};
714
715int
716sys_quotactl(struct tcb *tcp)
717{
718 /* fourth arg (addr) not interpreted here */
719 if (entering(tcp))
720 {
721#ifdef SUNOS4
722 printxval(quotacmds, tcp->u_arg[0], "Q_???");
723 tprintf(", ");
724 printstr(tcp, tcp->u_arg[1], -1);
725#endif
726#ifdef FREEBSD
727 printpath(tcp, tcp->u_arg[0]);
728 tprintf(", ");
729 printxval(quotacmds, tcp->u_arg[1], "Q_???");
730#endif
731 tprintf(", %lu, %#lx", tcp->u_arg[2], tcp->u_arg[3]);
732 }
733 return 0;
734}
735
736#endif /* SUNOS4 || FREEBSD */