1 /* 2 * Copyright (c) 1982, 1986, 1990, 1993, 1995 3 * The Regents of the University of California. All rights reserved. 4 * 5 * This code is derived from software contributed to Berkeley by 6 * Robert Elz at The University of Melbourne. 7 * 8 * Redistribution and use in source and binary forms, with or without 9 * modification, are permitted provided that the following conditions 10 * are met: 11 * 1. Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * 2. Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in the 15 * documentation and/or other materials provided with the distribution. 16 * 3. Neither the name of the University nor the names of its contributors 17 * may be used to endorse or promote products derived from this software 18 * without specific prior written permission. 19 * 20 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 21 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 22 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 23 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 24 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 25 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 26 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 27 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 28 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 29 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 30 * SUCH DAMAGE. 31 * 32 * @(#)ufs_quota.c 8.5 (Berkeley) 5/20/95 33 * $FreeBSD: src/sys/ufs/ufs/ufs_quota.c,v 1.27.2.3 2002/01/15 10:33:32 phk Exp $ 34 */ 35 36 #include <sys/param.h> 37 #include <sys/systm.h> 38 #include <sys/kernel.h> 39 #include <sys/malloc.h> 40 #include <sys/fcntl.h> 41 #include <sys/proc.h> 42 #include <sys/nlookup.h> 43 #include <sys/vnode.h> 44 #include <sys/mount.h> 45 #include <vm/vm_zone.h> 46 47 #include "quota.h" 48 #include "inode.h" 49 #include "ufsmount.h" 50 51 static MALLOC_DEFINE(M_DQUOT, "UFS quota", "UFS quota entries"); 52 53 /* 54 * Quota name to error message mapping. 55 */ 56 static char *quotatypes[] = INITQFNAMES; 57 58 static int ufs_chkdqchg (struct inode *, long, struct ucred *, int); 59 static int ufs_chkiqchg (struct inode *, long, struct ucred *, int); 60 static int ufs_dqget (struct vnode *, 61 u_long, struct ufsmount *, int, struct ufs_dquot **); 62 static int ufs_dqsync (struct vnode *, struct ufs_dquot *); 63 static void ufs_dqflush (struct vnode *); 64 static void ufs_quotawarn(struct ufs_dquot *dq); 65 66 #ifdef DIAGNOSTIC 67 static void ufs_dqref (struct ufs_dquot *); 68 static void ufs_chkdquot (struct inode *); 69 #endif 70 71 /* 72 * Set up the quotas for an inode. 73 * 74 * This routine completely defines the semantics of quotas. 75 * If other criterion want to be used to establish quotas, the 76 * MAXQUOTAS value in quotas.h should be increased, and the 77 * additional dquots set up here. 78 */ 79 int 80 ufs_getinoquota(struct inode *ip) 81 { 82 struct ufsmount *ump; 83 struct vnode *vp = ITOV(ip); 84 int error; 85 86 ump = VFSTOUFS(vp->v_mount); 87 /* 88 * Set up the user quota based on file uid. 89 * EINVAL means that quotas are not enabled. 90 */ 91 if (ip->i_dquot[USRQUOTA] == NODQUOT && 92 (error = ufs_dqget(vp, ip->i_uid, ump, USRQUOTA, &ip->i_dquot[USRQUOTA])) && 93 error != EINVAL) 94 return (error); 95 /* 96 * Set up the group quota based on file gid. 97 * EINVAL means that quotas are not enabled. 98 */ 99 if (ip->i_dquot[GRPQUOTA] == NODQUOT && 100 (error = ufs_dqget(vp, ip->i_gid, ump, GRPQUOTA, &ip->i_dquot[GRPQUOTA])) && 101 error != EINVAL) 102 return (error); 103 return (0); 104 } 105 106 /* 107 * Update disk usage, and take corrective action. 108 */ 109 int 110 ufs_chkdq(struct inode *ip, long change, struct ucred *cred, int flags) 111 { 112 struct ufs_dquot *dq; 113 int i; 114 int ncurblocks, error; 115 116 #ifdef DIAGNOSTIC 117 if ((flags & CHOWN) == 0) 118 ufs_chkdquot(ip); 119 #endif 120 if (change == 0) 121 return (0); 122 if (change < 0) { 123 for (i = 0; i < MAXQUOTAS; i++) { 124 if ((dq = ip->i_dquot[i]) == NODQUOT) 125 continue; 126 if (dq->dq_ump->um_quotas[dq->dq_type] == ip->i_vnode) { 127 ufs_quotawarn(dq); 128 continue; 129 } 130 while (dq->dq_flags & DQ_LOCK) { 131 dq->dq_flags |= DQ_WANT; 132 (void) tsleep((caddr_t)dq, 0, "chkdq1", 0); 133 } 134 ncurblocks = dq->dq_curblocks + change; 135 if (ncurblocks >= 0) 136 dq->dq_curblocks = ncurblocks; 137 else 138 dq->dq_curblocks = 0; 139 dq->dq_flags &= ~DQ_BLKS; 140 dq->dq_flags |= DQ_MOD; 141 } 142 return (0); 143 } 144 if ((flags & FORCE) == 0 && cred->cr_uid != 0) { 145 for (i = 0; i < MAXQUOTAS; i++) { 146 if ((dq = ip->i_dquot[i]) == NODQUOT) 147 continue; 148 if (dq->dq_ump->um_quotas[dq->dq_type] == ip->i_vnode) { 149 ufs_quotawarn(dq); 150 continue; 151 } 152 error = ufs_chkdqchg(ip, change, cred, i); 153 if (error) 154 return (error); 155 } 156 } 157 for (i = 0; i < MAXQUOTAS; i++) { 158 if ((dq = ip->i_dquot[i]) == NODQUOT) 159 continue; 160 if (dq->dq_ump->um_quotas[dq->dq_type] == ip->i_vnode) { 161 ufs_quotawarn(dq); 162 continue; 163 } 164 while (dq->dq_flags & DQ_LOCK) { 165 dq->dq_flags |= DQ_WANT; 166 (void) tsleep((caddr_t)dq, 0, "chkdq2", 0); 167 } 168 /* Reset timer when crossing soft limit */ 169 if (dq->dq_curblocks + change >= dq->dq_bsoftlimit && 170 dq->dq_curblocks < dq->dq_bsoftlimit) 171 dq->dq_btime = time_second + 172 VFSTOUFS(ITOV(ip)->v_mount)->um_btime[i]; 173 dq->dq_curblocks += change; 174 dq->dq_flags |= DQ_MOD; 175 } 176 return (0); 177 } 178 179 /* 180 * Check for a valid change to a users allocation. 181 * Issue an error message if appropriate. 182 */ 183 static int 184 ufs_chkdqchg(struct inode *ip, long change, struct ucred *cred, int type) 185 { 186 struct ufs_dquot *dq = ip->i_dquot[type]; 187 long ncurblocks = dq->dq_curblocks + change; 188 189 /* 190 * If user would exceed their hard limit, disallow space allocation. 191 */ 192 if (ncurblocks >= dq->dq_bhardlimit && dq->dq_bhardlimit) { 193 if ((dq->dq_flags & DQ_BLKS) == 0 && 194 ip->i_uid == cred->cr_uid) { 195 uprintf("\n%s: write failed, %s disk limit reached\n", 196 ITOV(ip)->v_mount->mnt_stat.f_mntfromname, 197 quotatypes[type]); 198 dq->dq_flags |= DQ_BLKS; 199 } 200 return (EDQUOT); 201 } 202 /* 203 * If user is over their soft limit for too long, disallow space 204 * allocation. Reset time limit as they cross their soft limit. 205 */ 206 if (ncurblocks >= dq->dq_bsoftlimit && dq->dq_bsoftlimit) { 207 if (dq->dq_curblocks < dq->dq_bsoftlimit) { 208 dq->dq_btime = time_second + 209 VFSTOUFS(ITOV(ip)->v_mount)->um_btime[type]; 210 if (ip->i_uid == cred->cr_uid) 211 uprintf("\n%s: warning, %s %s\n", 212 ITOV(ip)->v_mount->mnt_stat.f_mntfromname, 213 quotatypes[type], "disk quota exceeded"); 214 return (0); 215 } 216 if (time_second > dq->dq_btime) { 217 if ((dq->dq_flags & DQ_BLKS) == 0 && 218 ip->i_uid == cred->cr_uid) { 219 uprintf("\n%s: write failed, %s %s\n", 220 ITOV(ip)->v_mount->mnt_stat.f_mntfromname, 221 quotatypes[type], 222 "disk quota exceeded for too long"); 223 dq->dq_flags |= DQ_BLKS; 224 } 225 return (EDQUOT); 226 } 227 } 228 return (0); 229 } 230 231 /* 232 * Check the inode limit, applying corrective action. 233 */ 234 int 235 ufs_chkiq(struct inode *ip, long change, struct ucred *cred, int flags) 236 { 237 struct ufs_dquot *dq; 238 int i; 239 int ncurinodes, error; 240 241 #ifdef DIAGNOSTIC 242 if ((flags & CHOWN) == 0) 243 ufs_chkdquot(ip); 244 #endif 245 if (change == 0) 246 return (0); 247 if (change < 0) { 248 for (i = 0; i < MAXQUOTAS; i++) { 249 if ((dq = ip->i_dquot[i]) == NODQUOT) 250 continue; 251 if (dq->dq_ump->um_quotas[dq->dq_type] == ip->i_vnode) { 252 ufs_quotawarn(dq); 253 continue; 254 } 255 while (dq->dq_flags & DQ_LOCK) { 256 dq->dq_flags |= DQ_WANT; 257 (void) tsleep((caddr_t)dq, 0, "chkiq1", 0); 258 } 259 ncurinodes = dq->dq_curinodes + change; 260 if (ncurinodes >= 0) 261 dq->dq_curinodes = ncurinodes; 262 else 263 dq->dq_curinodes = 0; 264 dq->dq_flags &= ~DQ_INODS; 265 dq->dq_flags |= DQ_MOD; 266 } 267 return (0); 268 } 269 if ((flags & FORCE) == 0 && cred->cr_uid != 0) { 270 for (i = 0; i < MAXQUOTAS; i++) { 271 if ((dq = ip->i_dquot[i]) == NODQUOT) 272 continue; 273 if (dq->dq_ump->um_quotas[dq->dq_type] == ip->i_vnode) { 274 ufs_quotawarn(dq); 275 continue; 276 } 277 error = ufs_chkiqchg(ip, change, cred, i); 278 if (error) 279 return (error); 280 } 281 } 282 for (i = 0; i < MAXQUOTAS; i++) { 283 if ((dq = ip->i_dquot[i]) == NODQUOT) 284 continue; 285 if (dq->dq_ump->um_quotas[dq->dq_type] == ip->i_vnode) { 286 ufs_quotawarn(dq); 287 continue; 288 } 289 while (dq->dq_flags & DQ_LOCK) { 290 dq->dq_flags |= DQ_WANT; 291 (void) tsleep((caddr_t)dq, 0, "chkiq2", 0); 292 } 293 /* Reset timer when crossing soft limit */ 294 if (dq->dq_curinodes + change >= dq->dq_isoftlimit && 295 dq->dq_curinodes < dq->dq_isoftlimit) 296 dq->dq_itime = time_second + 297 VFSTOUFS(ITOV(ip)->v_mount)->um_itime[i]; 298 dq->dq_curinodes += change; 299 dq->dq_flags |= DQ_MOD; 300 } 301 return (0); 302 } 303 304 /* 305 * Check for a valid change to a users allocation. 306 * Issue an error message if appropriate. 307 */ 308 static int 309 ufs_chkiqchg(struct inode *ip, long change, struct ucred *cred, int type) 310 { 311 struct ufs_dquot *dq = ip->i_dquot[type]; 312 long ncurinodes = dq->dq_curinodes + change; 313 314 /* 315 * If user would exceed their hard limit, disallow inode allocation. 316 */ 317 if (ncurinodes >= dq->dq_ihardlimit && dq->dq_ihardlimit) { 318 if ((dq->dq_flags & DQ_INODS) == 0 && 319 ip->i_uid == cred->cr_uid) { 320 uprintf("\n%s: write failed, %s inode limit reached\n", 321 ITOV(ip)->v_mount->mnt_stat.f_mntfromname, 322 quotatypes[type]); 323 dq->dq_flags |= DQ_INODS; 324 } 325 return (EDQUOT); 326 } 327 /* 328 * If user is over their soft limit for too long, disallow inode 329 * allocation. Reset time limit as they cross their soft limit. 330 */ 331 if (ncurinodes >= dq->dq_isoftlimit && dq->dq_isoftlimit) { 332 if (dq->dq_curinodes < dq->dq_isoftlimit) { 333 dq->dq_itime = time_second + 334 VFSTOUFS(ITOV(ip)->v_mount)->um_itime[type]; 335 if (ip->i_uid == cred->cr_uid) 336 uprintf("\n%s: warning, %s %s\n", 337 ITOV(ip)->v_mount->mnt_stat.f_mntfromname, 338 quotatypes[type], "inode quota exceeded"); 339 return (0); 340 } 341 if (time_second > dq->dq_itime) { 342 if ((dq->dq_flags & DQ_INODS) == 0 && 343 ip->i_uid == cred->cr_uid) { 344 uprintf("\n%s: write failed, %s %s\n", 345 ITOV(ip)->v_mount->mnt_stat.f_mntfromname, 346 quotatypes[type], 347 "inode quota exceeded for too long"); 348 dq->dq_flags |= DQ_INODS; 349 } 350 return (EDQUOT); 351 } 352 } 353 return (0); 354 } 355 356 /* 357 * To avoid a deadlock we disallow quota operations on the quota file itself. 358 * This generally means that quotacheck was not run on the filesystem. 359 */ 360 static 361 void 362 ufs_quotawarn(struct ufs_dquot *dq) 363 { 364 static int dqticks; 365 366 if (dqticks != ticks / hz) { 367 dqticks = ticks / hz; 368 uprintf("%s: warning, quota file expanded, quotacheck " 369 "was not run!\n", 370 dq->dq_ump->um_mountp->mnt_stat.f_mntfromname); 371 } 372 } 373 374 #ifdef DIAGNOSTIC 375 /* 376 * On filesystems with quotas enabled, it is an error for a file to change 377 * size and not to have a dquot structure associated with it. 378 */ 379 static void 380 ufs_chkdquot(struct inode *ip) 381 { 382 struct ufsmount *ump = VFSTOUFS(ITOV(ip)->v_mount); 383 int i; 384 385 for (i = 0; i < MAXQUOTAS; i++) { 386 if (ump->um_quotas[i] == NULLVP || 387 (ump->um_qflags[i] & (QTF_OPENING|QTF_CLOSING))) 388 continue; 389 if (ip->i_dquot[i] == NODQUOT) { 390 vprint("chkdquot: missing dquot", ITOV(ip)); 391 panic("chkdquot: missing dquot"); 392 } 393 } 394 } 395 #endif 396 397 /* 398 * Code to process quotactl commands. 399 */ 400 401 struct scaninfo { 402 int rescan; 403 int type; 404 }; 405 406 /* 407 * Q_QUOTAON - set up a quota file for a particular filesystem. 408 */ 409 static int ufs_quotaon_scan(struct mount *mp, struct vnode *vp, void *data); 410 411 int 412 ufs_quotaon(struct ucred *cred, struct mount *mp, int type, caddr_t fname) 413 { 414 struct ufsmount *ump = VFSTOUFS(mp); 415 struct vnode *vp, **vpp; 416 struct ufs_dquot *dq; 417 int error; 418 struct nlookupdata nd; 419 struct scaninfo scaninfo; 420 421 vpp = &ump->um_quotas[type]; 422 error = nlookup_init(&nd, fname, UIO_USERSPACE, NLC_FOLLOW|NLC_LOCKVP); 423 if (error == 0) 424 error = vn_open(&nd, NULL, FREAD|FWRITE, 0); 425 if (error == 0 && nd.nl_open_vp->v_type != VREG) 426 error = EACCES; 427 if (error) { 428 nlookup_done(&nd); 429 return (error); 430 } 431 vp = nd.nl_open_vp; 432 nd.nl_open_vp = NULL; 433 nlookup_done(&nd); 434 435 vn_unlock(vp); 436 if (*vpp != vp) 437 ufs_quotaoff(mp, type); 438 ump->um_qflags[type] |= QTF_OPENING; 439 mp->mnt_flag |= MNT_QUOTA; 440 vsetflags(vp, VSYSTEM); 441 *vpp = vp; 442 /* XXX release duplicate vp if *vpp == vp? */ 443 /* 444 * Save the credential of the process that turned on quotas. 445 * Set up the time limits for this quota. 446 */ 447 ump->um_cred[type] = crhold(cred); 448 ump->um_btime[type] = MAX_DQ_TIME; 449 ump->um_itime[type] = MAX_IQ_TIME; 450 if (ufs_dqget(NULLVP, 0, ump, type, &dq) == 0) { 451 if (dq->dq_btime > 0) 452 ump->um_btime[type] = dq->dq_btime; 453 if (dq->dq_itime > 0) 454 ump->um_itime[type] = dq->dq_itime; 455 ufs_dqrele(NULLVP, dq); 456 } 457 /* 458 * Search vnodes associated with this mount point, 459 * adding references to quota file being opened. 460 * NB: only need to add dquot's for inodes being modified. 461 */ 462 scaninfo.rescan = 1; 463 while (scaninfo.rescan) { 464 scaninfo.rescan = 0; 465 error = vmntvnodescan(mp, VMSC_GETVP, 466 NULL, ufs_quotaon_scan, &scaninfo); 467 if (error) 468 break; 469 } 470 ump->um_qflags[type] &= ~QTF_OPENING; 471 if (error) 472 ufs_quotaoff(mp, type); 473 return (error); 474 } 475 476 static int 477 ufs_quotaon_scan(struct mount *mp, struct vnode *vp, void *data) 478 { 479 int error; 480 /*struct scaninfo *info = data;*/ 481 482 if (vp->v_writecount == 0) 483 return(0); 484 error = ufs_getinoquota(VTOI(vp)); 485 return(error); 486 } 487 488 /* 489 * Q_QUOTAOFF - turn off disk quotas for a filesystem. 490 */ 491 492 static int ufs_quotaoff_scan(struct mount *mp, struct vnode *vp, void *data); 493 494 int 495 ufs_quotaoff(struct mount *mp, int type) 496 { 497 struct vnode *qvp; 498 struct ufsmount *ump = VFSTOUFS(mp); 499 int error; 500 struct scaninfo scaninfo; 501 502 if ((qvp = ump->um_quotas[type]) == NULLVP) 503 return (0); 504 ump->um_qflags[type] |= QTF_CLOSING; 505 506 /* 507 * Search vnodes associated with this mount point, 508 * deleting any references to quota file being closed. 509 */ 510 scaninfo.rescan = 1; 511 scaninfo.type = type; 512 while (scaninfo.rescan) { 513 scaninfo.rescan = 0; 514 vmntvnodescan(mp, VMSC_GETVP, NULL, ufs_quotaoff_scan, &scaninfo); 515 } 516 ufs_dqflush(qvp); 517 vclrflags(qvp, VSYSTEM); 518 error = vn_close(qvp, FREAD|FWRITE); 519 ump->um_quotas[type] = NULLVP; 520 crfree(ump->um_cred[type]); 521 ump->um_cred[type] = NOCRED; 522 ump->um_qflags[type] &= ~QTF_CLOSING; 523 for (type = 0; type < MAXQUOTAS; type++) { 524 if (ump->um_quotas[type] != NULLVP) 525 break; 526 } 527 if (type == MAXQUOTAS) 528 mp->mnt_flag &= ~MNT_QUOTA; 529 return (error); 530 } 531 532 static int 533 ufs_quotaoff_scan(struct mount *mp, struct vnode *vp, void *data) 534 { 535 struct scaninfo *info = data; 536 struct ufs_dquot *dq; 537 struct inode *ip; 538 539 if (vp->v_type == VNON) { 540 return(0); 541 } 542 ip = VTOI(vp); 543 dq = ip->i_dquot[info->type]; 544 ip->i_dquot[info->type] = NODQUOT; 545 ufs_dqrele(vp, dq); 546 return(0); 547 } 548 549 /* 550 * Q_GETQUOTA - return current values in a dqblk structure. 551 */ 552 int 553 ufs_getquota(struct mount *mp, u_long id, int type, caddr_t addr) 554 { 555 struct ufs_dquot *dq; 556 int error; 557 558 error = ufs_dqget(NULLVP, id, VFSTOUFS(mp), type, &dq); 559 if (error) 560 return (error); 561 error = copyout((caddr_t)&dq->dq_dqb, addr, sizeof (struct ufs_dqblk)); 562 ufs_dqrele(NULLVP, dq); 563 return (error); 564 } 565 566 /* 567 * Q_SETQUOTA - assign an entire dqblk structure. 568 */ 569 int 570 ufs_setquota(struct mount *mp, u_long id, int type, caddr_t addr) 571 { 572 struct ufs_dquot *dq; 573 struct ufs_dquot *ndq; 574 struct ufsmount *ump = VFSTOUFS(mp); 575 struct ufs_dqblk newlim; 576 int error; 577 578 error = copyin(addr, (caddr_t)&newlim, sizeof (struct ufs_dqblk)); 579 if (error) 580 return (error); 581 error = ufs_dqget(NULLVP, id, ump, type, &ndq); 582 if (error) 583 return (error); 584 dq = ndq; 585 while (dq->dq_flags & DQ_LOCK) { 586 dq->dq_flags |= DQ_WANT; 587 (void) tsleep((caddr_t)dq, 0, "setqta", 0); 588 } 589 /* 590 * Copy all but the current values. 591 * Reset time limit if previously had no soft limit or were 592 * under it, but now have a soft limit and are over it. 593 */ 594 newlim.dqb_curblocks = dq->dq_curblocks; 595 newlim.dqb_curinodes = dq->dq_curinodes; 596 if (dq->dq_id != 0) { 597 newlim.dqb_btime = dq->dq_btime; 598 newlim.dqb_itime = dq->dq_itime; 599 } 600 if (newlim.dqb_bsoftlimit && 601 dq->dq_curblocks >= newlim.dqb_bsoftlimit && 602 (dq->dq_bsoftlimit == 0 || dq->dq_curblocks < dq->dq_bsoftlimit)) 603 newlim.dqb_btime = time_second + ump->um_btime[type]; 604 if (newlim.dqb_isoftlimit && 605 dq->dq_curinodes >= newlim.dqb_isoftlimit && 606 (dq->dq_isoftlimit == 0 || dq->dq_curinodes < dq->dq_isoftlimit)) 607 newlim.dqb_itime = time_second + ump->um_itime[type]; 608 dq->dq_dqb = newlim; 609 if (dq->dq_curblocks < dq->dq_bsoftlimit) 610 dq->dq_flags &= ~DQ_BLKS; 611 if (dq->dq_curinodes < dq->dq_isoftlimit) 612 dq->dq_flags &= ~DQ_INODS; 613 if (dq->dq_isoftlimit == 0 && dq->dq_bsoftlimit == 0 && 614 dq->dq_ihardlimit == 0 && dq->dq_bhardlimit == 0) 615 dq->dq_flags |= DQ_FAKE; 616 else 617 dq->dq_flags &= ~DQ_FAKE; 618 dq->dq_flags |= DQ_MOD; 619 ufs_dqrele(NULLVP, dq); 620 return (0); 621 } 622 623 /* 624 * Q_SETUSE - set current inode and block usage. 625 */ 626 int 627 ufs_setuse(struct mount *mp, u_long id, int type, caddr_t addr) 628 { 629 struct ufs_dquot *dq; 630 struct ufsmount *ump = VFSTOUFS(mp); 631 struct ufs_dquot *ndq; 632 struct ufs_dqblk usage; 633 int error; 634 635 error = copyin(addr, (caddr_t)&usage, sizeof (struct ufs_dqblk)); 636 if (error) 637 return (error); 638 error = ufs_dqget(NULLVP, id, ump, type, &ndq); 639 if (error) 640 return (error); 641 dq = ndq; 642 while (dq->dq_flags & DQ_LOCK) { 643 dq->dq_flags |= DQ_WANT; 644 (void) tsleep((caddr_t)dq, 0, "setuse", 0); 645 } 646 /* 647 * Reset time limit if have a soft limit and were 648 * previously under it, but are now over it. 649 */ 650 if (dq->dq_bsoftlimit && dq->dq_curblocks < dq->dq_bsoftlimit && 651 usage.dqb_curblocks >= dq->dq_bsoftlimit) 652 dq->dq_btime = time_second + ump->um_btime[type]; 653 if (dq->dq_isoftlimit && dq->dq_curinodes < dq->dq_isoftlimit && 654 usage.dqb_curinodes >= dq->dq_isoftlimit) 655 dq->dq_itime = time_second + ump->um_itime[type]; 656 dq->dq_curblocks = usage.dqb_curblocks; 657 dq->dq_curinodes = usage.dqb_curinodes; 658 if (dq->dq_curblocks < dq->dq_bsoftlimit) 659 dq->dq_flags &= ~DQ_BLKS; 660 if (dq->dq_curinodes < dq->dq_isoftlimit) 661 dq->dq_flags &= ~DQ_INODS; 662 dq->dq_flags |= DQ_MOD; 663 ufs_dqrele(NULLVP, dq); 664 return (0); 665 } 666 667 /* 668 * Q_SYNC - sync quota files to disk. 669 */ 670 671 static int ufs_qsync_scan(struct mount *mp, struct vnode *vp, void *data); 672 673 int 674 ufs_qsync(struct mount *mp) 675 { 676 struct ufsmount *ump = VFSTOUFS(mp); 677 struct scaninfo scaninfo; 678 int i; 679 680 /* 681 * Check if the mount point has any quotas. 682 * If not, simply return. 683 */ 684 for (i = 0; i < MAXQUOTAS; i++) 685 if (ump->um_quotas[i] != NULLVP) 686 break; 687 if (i == MAXQUOTAS) 688 return (0); 689 /* 690 * Search vnodes associated with this mount point, 691 * synchronizing any modified ufs_dquot structures. 692 */ 693 scaninfo.rescan = 1; 694 while (scaninfo.rescan) { 695 scaninfo.rescan = 0; 696 vmntvnodescan(mp, VMSC_GETVP|VMSC_NOWAIT, 697 NULL, ufs_qsync_scan, &scaninfo); 698 } 699 return (0); 700 } 701 702 static int 703 ufs_qsync_scan(struct mount *mp, struct vnode *vp, void *data) 704 { 705 /*struct scaninfo *info = data;*/ 706 struct ufs_dquot *dq; 707 /* int error;*/ 708 int i; 709 710 for (i = 0; i < MAXQUOTAS; i++) { 711 dq = VTOI(vp)->i_dquot[i]; 712 if (dq != NODQUOT && (dq->dq_flags & DQ_MOD)) 713 ufs_dqsync(vp, dq); 714 } 715 return(0); 716 } 717 718 /* 719 * Code pertaining to management of the in-core dquot data structures. 720 */ 721 #define DQHASH(dqvp, id) \ 722 (&ufs_dqhashtbl[((((intptr_t)(dqvp)) >> 8) + id) & ufs_dqhash]) 723 static LIST_HEAD(ufs_dqhash, ufs_dquot) *ufs_dqhashtbl; 724 static u_long ufs_dqhash; 725 726 /* 727 * Dquot free list. 728 */ 729 #define DQUOTINC 5 /* minimum free dquots desired */ 730 static TAILQ_HEAD(ufs_dqfreelist, ufs_dquot) ufs_dqfreelist; 731 static long ufs_numdquot, ufs_desireddquot = DQUOTINC; 732 733 /* 734 * Initialize the quota system. 735 */ 736 void 737 ufs_dqinit(void) 738 { 739 ufs_dqhashtbl = hashinit(desiredvnodes, M_DQUOT, &ufs_dqhash); 740 TAILQ_INIT(&ufs_dqfreelist); 741 } 742 743 /* 744 * Obtain a dquot structure for the specified identifier and quota file 745 * reading the information from the file if necessary. 746 */ 747 static int 748 ufs_dqget(struct vnode *vp, u_long id, struct ufsmount *ump, int type, 749 struct ufs_dquot **dqp) 750 { 751 struct ufs_dquot *dq; 752 struct ufs_dqhash *dqh; 753 struct vnode *dqvp; 754 struct iovec aiov; 755 struct uio auio; 756 int error; 757 758 dqvp = ump->um_quotas[type]; 759 if (dqvp == NULLVP || (ump->um_qflags[type] & QTF_CLOSING)) { 760 *dqp = NODQUOT; 761 return (EINVAL); 762 } 763 /* 764 * Check the cache first. 765 */ 766 dqh = DQHASH(dqvp, id); 767 LIST_FOREACH(dq, dqh, dq_hash) { 768 if (dq->dq_id != id || 769 dq->dq_ump->um_quotas[dq->dq_type] != dqvp) 770 continue; 771 /* 772 * Cache hit with no references. Take 773 * the structure off the free list. 774 */ 775 if (dq->dq_cnt == 0) 776 TAILQ_REMOVE(&ufs_dqfreelist, dq, dq_freelist); 777 DQREF(dq); 778 *dqp = dq; 779 return (0); 780 } 781 /* 782 * Not in cache, allocate a new one. 783 */ 784 if (TAILQ_EMPTY(&ufs_dqfreelist) && ufs_numdquot < MAXQUOTAS * desiredvnodes) 785 ufs_desireddquot += DQUOTINC; 786 if (ufs_numdquot < ufs_desireddquot) { 787 dq = (struct ufs_dquot *) 788 kmalloc(sizeof *dq, M_DQUOT, M_WAITOK | M_ZERO); 789 ufs_numdquot++; 790 } else { 791 if ((dq = TAILQ_FIRST(&ufs_dqfreelist)) == NULL) { 792 tablefull("dquot"); 793 *dqp = NODQUOT; 794 return (EUSERS); 795 } 796 if (dq->dq_cnt || (dq->dq_flags & DQ_MOD)) 797 panic("dqget: free dquot isn't"); 798 TAILQ_REMOVE(&ufs_dqfreelist, dq, dq_freelist); 799 if (dq->dq_ump != NULL) 800 LIST_REMOVE(dq, dq_hash); 801 } 802 /* 803 * Initialize the contents of the dquot structure. 804 */ 805 if (vp != dqvp) 806 vn_lock(dqvp, LK_EXCLUSIVE | LK_RETRY); 807 LIST_INSERT_HEAD(dqh, dq, dq_hash); 808 DQREF(dq); 809 dq->dq_flags = DQ_LOCK; 810 dq->dq_id = id; 811 dq->dq_ump = ump; 812 dq->dq_type = type; 813 auio.uio_iov = &aiov; 814 auio.uio_iovcnt = 1; 815 aiov.iov_base = (caddr_t)&dq->dq_dqb; 816 aiov.iov_len = sizeof (struct ufs_dqblk); 817 auio.uio_resid = sizeof (struct ufs_dqblk); 818 auio.uio_offset = (off_t)(id * sizeof (struct ufs_dqblk)); 819 auio.uio_segflg = UIO_SYSSPACE; 820 auio.uio_rw = UIO_READ; 821 auio.uio_td = NULL; 822 error = VOP_READ(dqvp, &auio, 0, ump->um_cred[type]); 823 if (auio.uio_resid == sizeof(struct ufs_dqblk) && error == 0) 824 bzero((caddr_t)&dq->dq_dqb, sizeof(struct ufs_dqblk)); 825 if (vp != dqvp) 826 vn_unlock(dqvp); 827 if (dq->dq_flags & DQ_WANT) 828 wakeup((caddr_t)dq); 829 dq->dq_flags = 0; 830 /* 831 * I/O error in reading quota file, release 832 * quota structure and reflect problem to caller. 833 */ 834 if (error) { 835 LIST_REMOVE(dq, dq_hash); 836 ufs_dqrele(vp, dq); 837 *dqp = NODQUOT; 838 return (error); 839 } 840 /* 841 * Check for no limit to enforce. 842 * Initialize time values if necessary. 843 */ 844 if (dq->dq_isoftlimit == 0 && dq->dq_bsoftlimit == 0 && 845 dq->dq_ihardlimit == 0 && dq->dq_bhardlimit == 0) 846 dq->dq_flags |= DQ_FAKE; 847 if (dq->dq_id != 0) { 848 if (dq->dq_btime == 0) 849 dq->dq_btime = time_second + ump->um_btime[type]; 850 if (dq->dq_itime == 0) 851 dq->dq_itime = time_second + ump->um_itime[type]; 852 } 853 *dqp = dq; 854 return (0); 855 } 856 857 #ifdef DIAGNOSTIC 858 /* 859 * Obtain a reference to a dquot. 860 */ 861 static void 862 ufs_dqref(struct ufs_dquot *dq) 863 { 864 dq->dq_cnt++; 865 } 866 #endif 867 868 /* 869 * Release a reference to a dquot. 870 */ 871 void 872 ufs_dqrele(struct vnode *vp, struct ufs_dquot *dq) 873 { 874 if (dq == NODQUOT) 875 return; 876 if (dq->dq_cnt > 1) { 877 dq->dq_cnt--; 878 return; 879 } 880 if (dq->dq_flags & DQ_MOD) 881 (void)ufs_dqsync(vp, dq); 882 if (--dq->dq_cnt > 0) 883 return; 884 TAILQ_INSERT_TAIL(&ufs_dqfreelist, dq, dq_freelist); 885 } 886 887 /* 888 * Update the disk quota in the quota file. 889 */ 890 static int 891 ufs_dqsync(struct vnode *vp, struct ufs_dquot *dq) 892 { 893 struct vnode *dqvp; 894 struct iovec aiov; 895 struct uio auio; 896 int error; 897 898 if (dq == NODQUOT) 899 panic("dqsync: dquot"); 900 if ((dq->dq_flags & DQ_MOD) == 0) 901 return (0); 902 if ((dqvp = dq->dq_ump->um_quotas[dq->dq_type]) == NULLVP) 903 panic("dqsync: file"); 904 if (vp != dqvp) 905 vn_lock(dqvp, LK_EXCLUSIVE | LK_RETRY); 906 while (dq->dq_flags & DQ_LOCK) { 907 dq->dq_flags |= DQ_WANT; 908 (void) tsleep((caddr_t)dq, 0, "dqsync", 0); 909 if ((dq->dq_flags & DQ_MOD) == 0) { 910 if (vp != dqvp) 911 vn_unlock(dqvp); 912 return (0); 913 } 914 } 915 dq->dq_flags |= DQ_LOCK; 916 auio.uio_iov = &aiov; 917 auio.uio_iovcnt = 1; 918 aiov.iov_base = (caddr_t)&dq->dq_dqb; 919 aiov.iov_len = sizeof (struct ufs_dqblk); 920 auio.uio_resid = sizeof (struct ufs_dqblk); 921 auio.uio_offset = (off_t)(dq->dq_id * sizeof (struct ufs_dqblk)); 922 auio.uio_segflg = UIO_SYSSPACE; 923 auio.uio_rw = UIO_WRITE; 924 auio.uio_td = NULL; 925 error = VOP_WRITE(dqvp, &auio, 0, dq->dq_ump->um_cred[dq->dq_type]); 926 if (auio.uio_resid && error == 0) 927 error = EIO; 928 if (dq->dq_flags & DQ_WANT) 929 wakeup((caddr_t)dq); 930 dq->dq_flags &= ~(DQ_MOD|DQ_LOCK|DQ_WANT); 931 if (vp != dqvp) 932 vn_unlock(dqvp); 933 return (error); 934 } 935 936 /* 937 * Flush all entries from the cache for a particular vnode. 938 */ 939 static void 940 ufs_dqflush(struct vnode *vp) 941 { 942 struct ufs_dquot *dq, *nextdq; 943 struct ufs_dqhash *dqh; 944 945 /* 946 * Move all dquot's that used to refer to this quota 947 * file off their hash chains (they will eventually 948 * fall off the head of the free list and be re-used). 949 */ 950 for (dqh = &ufs_dqhashtbl[ufs_dqhash]; dqh >= ufs_dqhashtbl; dqh--) { 951 for (dq = dqh->lh_first; dq; dq = nextdq) { 952 nextdq = dq->dq_hash.le_next; 953 if (dq->dq_ump->um_quotas[dq->dq_type] != vp) 954 continue; 955 if (dq->dq_cnt) 956 panic("dqflush: stray dquot"); 957 LIST_REMOVE(dq, dq_hash); 958 dq->dq_ump = NULL; 959 } 960 } 961 } 962