1789Sahrens /* 2789Sahrens * CDDL HEADER START 3789Sahrens * 4789Sahrens * The contents of this file are subject to the terms of the 51460Smarks * Common Development and Distribution License (the "License"). 61460Smarks * You may not use this file except in compliance with the License. 7789Sahrens * 8789Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9789Sahrens * or http://www.opensolaris.org/os/licensing. 10789Sahrens * See the License for the specific language governing permissions 11789Sahrens * and limitations under the License. 12789Sahrens * 13789Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14789Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15789Sahrens * If applicable, add the following below this CDDL HEADER, with the 16789Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17789Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18789Sahrens * 19789Sahrens * CDDL HEADER END 20789Sahrens */ 21789Sahrens /* 225771Sjp151216 * Copyright 2008 Sun Microsystems, Inc. All rights reserved. 23789Sahrens * Use is subject to license terms. 24789Sahrens */ 25789Sahrens 264144Speteh /* Portions Copyright 2007 Jeremy Teo */ 274144Speteh 28789Sahrens #pragma ident "%Z%%M% %I% %E% SMI" 29789Sahrens 30789Sahrens #include <sys/types.h> 31789Sahrens #include <sys/param.h> 32789Sahrens #include <sys/time.h> 33789Sahrens #include <sys/systm.h> 34789Sahrens #include <sys/sysmacros.h> 35789Sahrens #include <sys/resource.h> 36789Sahrens #include <sys/vfs.h> 373898Srsb #include <sys/vfs_opreg.h> 38789Sahrens #include <sys/vnode.h> 39789Sahrens #include <sys/file.h> 40789Sahrens #include <sys/stat.h> 41789Sahrens #include <sys/kmem.h> 42789Sahrens #include <sys/taskq.h> 43789Sahrens #include <sys/uio.h> 44789Sahrens #include <sys/vmsystm.h> 45789Sahrens #include <sys/atomic.h> 462688Smaybee #include <sys/vm.h> 47789Sahrens #include <vm/seg_vn.h> 48789Sahrens #include <vm/pvn.h> 49789Sahrens #include <vm/as.h> 50789Sahrens #include <sys/mman.h> 51789Sahrens #include <sys/pathname.h> 52789Sahrens #include <sys/cmn_err.h> 53789Sahrens #include <sys/errno.h> 54789Sahrens #include <sys/unistd.h> 55789Sahrens #include <sys/zfs_dir.h> 56789Sahrens #include <sys/zfs_acl.h> 57789Sahrens #include <sys/zfs_ioctl.h> 58789Sahrens #include <sys/fs/zfs.h> 59789Sahrens #include <sys/dmu.h> 60789Sahrens #include <sys/spa.h> 61789Sahrens #include <sys/txg.h> 62789Sahrens #include <sys/dbuf.h> 63789Sahrens #include <sys/zap.h> 64789Sahrens #include <sys/dirent.h> 65789Sahrens #include <sys/policy.h> 66789Sahrens #include <sys/sunddi.h> 67789Sahrens #include <sys/filio.h> 68789Sahrens #include "fs/fs_subr.h" 69789Sahrens #include <sys/zfs_ctldir.h> 705331Samw #include <sys/zfs_fuid.h> 711484Sek110237 #include <sys/dnlc.h> 721669Sperrin #include <sys/zfs_rlock.h> 735331Samw #include <sys/extdirent.h> 745331Samw #include <sys/kidmap.h> 755331Samw #include <sys/cred_impl.h> 765663Sck153898 #include <sys/attr.h> 77789Sahrens 78789Sahrens /* 79789Sahrens * Programming rules. 80789Sahrens * 81789Sahrens * Each vnode op performs some logical unit of work. To do this, the ZPL must 82789Sahrens * properly lock its in-core state, create a DMU transaction, do the work, 83789Sahrens * record this work in the intent log (ZIL), commit the DMU transaction, 845331Samw * and wait for the intent log to commit if it is a synchronous operation. 855331Samw * Moreover, the vnode ops must work in both normal and log replay context. 86789Sahrens * The ordering of events is important to avoid deadlocks and references 87789Sahrens * to freed memory. The example below illustrates the following Big Rules: 88789Sahrens * 89789Sahrens * (1) A check must be made in each zfs thread for a mounted file system. 905367Sahrens * This is done avoiding races using ZFS_ENTER(zfsvfs). 915367Sahrens * A ZFS_EXIT(zfsvfs) is needed before all returns. Any znodes 925367Sahrens * must be checked with ZFS_VERIFY_ZP(zp). Both of these macros 935367Sahrens * can return EIO from the calling function. 94789Sahrens * 95789Sahrens * (2) VN_RELE() should always be the last thing except for zil_commit() 962638Sperrin * (if necessary) and ZFS_EXIT(). This is for 3 reasons: 97789Sahrens * First, if it's the last reference, the vnode/znode 98789Sahrens * can be freed, so the zp may point to freed memory. Second, the last 99789Sahrens * reference will call zfs_zinactive(), which may induce a lot of work -- 1001669Sperrin * pushing cached pages (which acquires range locks) and syncing out 101789Sahrens * cached atime changes. Third, zfs_zinactive() may require a new tx, 102789Sahrens * which could deadlock the system if you were already holding one. 103789Sahrens * 1041757Sperrin * (3) All range locks must be grabbed before calling dmu_tx_assign(), 1051757Sperrin * as they can span dmu_tx_assign() calls. 1061757Sperrin * 1071757Sperrin * (4) Always pass zfsvfs->z_assign as the second argument to dmu_tx_assign(). 108789Sahrens * In normal operation, this will be TXG_NOWAIT. During ZIL replay, 109789Sahrens * it will be a specific txg. Either way, dmu_tx_assign() never blocks. 110789Sahrens * This is critical because we don't want to block while holding locks. 111789Sahrens * Note, in particular, that if a lock is sometimes acquired before 112789Sahrens * the tx assigns, and sometimes after (e.g. z_lock), then failing to 113789Sahrens * use a non-blocking assign can deadlock the system. The scenario: 114789Sahrens * 115789Sahrens * Thread A has grabbed a lock before calling dmu_tx_assign(). 116789Sahrens * Thread B is in an already-assigned tx, and blocks for this lock. 117789Sahrens * Thread A calls dmu_tx_assign(TXG_WAIT) and blocks in txg_wait_open() 118789Sahrens * forever, because the previous txg can't quiesce until B's tx commits. 119789Sahrens * 120789Sahrens * If dmu_tx_assign() returns ERESTART and zfsvfs->z_assign is TXG_NOWAIT, 1212113Sahrens * then drop all locks, call dmu_tx_wait(), and try again. 122789Sahrens * 1231757Sperrin * (5) If the operation succeeded, generate the intent log entry for it 124789Sahrens * before dropping locks. This ensures that the ordering of events 125789Sahrens * in the intent log matches the order in which they actually occurred. 126789Sahrens * 1271757Sperrin * (6) At the end of each vnode op, the DMU tx must always commit, 128789Sahrens * regardless of whether there were any errors. 129789Sahrens * 1302638Sperrin * (7) After dropping all locks, invoke zil_commit(zilog, seq, foid) 131789Sahrens * to ensure that synchronous semantics are provided when necessary. 132789Sahrens * 133789Sahrens * In general, this is how things should be ordered in each vnode op: 134789Sahrens * 135789Sahrens * ZFS_ENTER(zfsvfs); // exit if unmounted 136789Sahrens * top: 137789Sahrens * zfs_dirent_lock(&dl, ...) // lock directory entry (may VN_HOLD()) 138789Sahrens * rw_enter(...); // grab any other locks you need 139789Sahrens * tx = dmu_tx_create(...); // get DMU tx 140789Sahrens * dmu_tx_hold_*(); // hold each object you might modify 141789Sahrens * error = dmu_tx_assign(tx, zfsvfs->z_assign); // try to assign 142789Sahrens * if (error) { 143789Sahrens * rw_exit(...); // drop locks 144789Sahrens * zfs_dirent_unlock(dl); // unlock directory entry 145789Sahrens * VN_RELE(...); // release held vnodes 146789Sahrens * if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 1472113Sahrens * dmu_tx_wait(tx); 1482113Sahrens * dmu_tx_abort(tx); 149789Sahrens * goto top; 150789Sahrens * } 1512113Sahrens * dmu_tx_abort(tx); // abort DMU tx 152789Sahrens * ZFS_EXIT(zfsvfs); // finished in zfs 153789Sahrens * return (error); // really out of space 154789Sahrens * } 155789Sahrens * error = do_real_work(); // do whatever this VOP does 156789Sahrens * if (error == 0) 1572638Sperrin * zfs_log_*(...); // on success, make ZIL entry 158789Sahrens * dmu_tx_commit(tx); // commit DMU tx -- error or not 159789Sahrens * rw_exit(...); // drop locks 160789Sahrens * zfs_dirent_unlock(dl); // unlock directory entry 161789Sahrens * VN_RELE(...); // release held vnodes 1622638Sperrin * zil_commit(zilog, seq, foid); // synchronous when necessary 163789Sahrens * ZFS_EXIT(zfsvfs); // finished in zfs 164789Sahrens * return (error); // done, report error 165789Sahrens */ 1665367Sahrens 167789Sahrens /* ARGSUSED */ 168789Sahrens static int 1695331Samw zfs_open(vnode_t **vpp, int flag, cred_t *cr, caller_context_t *ct) 170789Sahrens { 1713063Sperrin znode_t *zp = VTOZ(*vpp); 1723063Sperrin 1735331Samw if ((flag & FWRITE) && (zp->z_phys->zp_flags & ZFS_APPENDONLY) && 1745331Samw ((flag & FAPPEND) == 0)) { 1755331Samw return (EPERM); 1765331Samw } 1775331Samw 1785331Samw if (!zfs_has_ctldir(zp) && zp->z_zfsvfs->z_vscan && 1795331Samw ZTOV(zp)->v_type == VREG && 1805331Samw !(zp->z_phys->zp_flags & ZFS_AV_QUARANTINED) && 1815331Samw zp->z_phys->zp_size > 0) 1825331Samw if (fs_vscan(*vpp, cr, 0) != 0) 1835331Samw return (EACCES); 1845331Samw 1853063Sperrin /* Keep a count of the synchronous opens in the znode */ 1863063Sperrin if (flag & (FSYNC | FDSYNC)) 1873063Sperrin atomic_inc_32(&zp->z_sync_cnt); 1885331Samw 189789Sahrens return (0); 190789Sahrens } 191789Sahrens 192789Sahrens /* ARGSUSED */ 193789Sahrens static int 1945331Samw zfs_close(vnode_t *vp, int flag, int count, offset_t offset, cred_t *cr, 1955331Samw caller_context_t *ct) 196789Sahrens { 1973063Sperrin znode_t *zp = VTOZ(vp); 1983063Sperrin 1993063Sperrin /* Decrement the synchronous opens in the znode */ 2004339Sperrin if ((flag & (FSYNC | FDSYNC)) && (count == 1)) 2013063Sperrin atomic_dec_32(&zp->z_sync_cnt); 2023063Sperrin 203789Sahrens /* 204789Sahrens * Clean up any locks held by this process on the vp. 205789Sahrens */ 206789Sahrens cleanlocks(vp, ddi_get_pid(), 0); 207789Sahrens cleanshares(vp, ddi_get_pid()); 208789Sahrens 2095331Samw if (!zfs_has_ctldir(zp) && zp->z_zfsvfs->z_vscan && 2105331Samw ZTOV(zp)->v_type == VREG && 2115331Samw !(zp->z_phys->zp_flags & ZFS_AV_QUARANTINED) && 2125331Samw zp->z_phys->zp_size > 0) 2135331Samw VERIFY(fs_vscan(vp, cr, 1) == 0); 2145331Samw 215789Sahrens return (0); 216789Sahrens } 217789Sahrens 218789Sahrens /* 219789Sahrens * Lseek support for finding holes (cmd == _FIO_SEEK_HOLE) and 220789Sahrens * data (cmd == _FIO_SEEK_DATA). "off" is an in/out parameter. 221789Sahrens */ 222789Sahrens static int 223789Sahrens zfs_holey(vnode_t *vp, int cmd, offset_t *off) 224789Sahrens { 225789Sahrens znode_t *zp = VTOZ(vp); 226789Sahrens uint64_t noff = (uint64_t)*off; /* new offset */ 227789Sahrens uint64_t file_sz; 228789Sahrens int error; 229789Sahrens boolean_t hole; 230789Sahrens 231789Sahrens file_sz = zp->z_phys->zp_size; 232789Sahrens if (noff >= file_sz) { 233789Sahrens return (ENXIO); 234789Sahrens } 235789Sahrens 236789Sahrens if (cmd == _FIO_SEEK_HOLE) 237789Sahrens hole = B_TRUE; 238789Sahrens else 239789Sahrens hole = B_FALSE; 240789Sahrens 241789Sahrens error = dmu_offset_next(zp->z_zfsvfs->z_os, zp->z_id, hole, &noff); 242789Sahrens 243789Sahrens /* end of file? */ 244789Sahrens if ((error == ESRCH) || (noff > file_sz)) { 245789Sahrens /* 246789Sahrens * Handle the virtual hole at the end of file. 247789Sahrens */ 248789Sahrens if (hole) { 249789Sahrens *off = file_sz; 250789Sahrens return (0); 251789Sahrens } 252789Sahrens return (ENXIO); 253789Sahrens } 254789Sahrens 255789Sahrens if (noff < *off) 256789Sahrens return (error); 257789Sahrens *off = noff; 258789Sahrens return (error); 259789Sahrens } 260789Sahrens 261789Sahrens /* ARGSUSED */ 262789Sahrens static int 263789Sahrens zfs_ioctl(vnode_t *vp, int com, intptr_t data, int flag, cred_t *cred, 2645331Samw int *rvalp, caller_context_t *ct) 265789Sahrens { 266789Sahrens offset_t off; 267789Sahrens int error; 268789Sahrens zfsvfs_t *zfsvfs; 2695326Sek110237 znode_t *zp; 270789Sahrens 271789Sahrens switch (com) { 2724339Sperrin case _FIOFFS: 273789Sahrens return (zfs_sync(vp->v_vfsp, 0, cred)); 274789Sahrens 2751544Seschrock /* 2761544Seschrock * The following two ioctls are used by bfu. Faking out, 2771544Seschrock * necessary to avoid bfu errors. 2781544Seschrock */ 2794339Sperrin case _FIOGDIO: 2804339Sperrin case _FIOSDIO: 2811544Seschrock return (0); 2821544Seschrock 2834339Sperrin case _FIO_SEEK_DATA: 2844339Sperrin case _FIO_SEEK_HOLE: 285789Sahrens if (ddi_copyin((void *)data, &off, sizeof (off), flag)) 286789Sahrens return (EFAULT); 287789Sahrens 2885326Sek110237 zp = VTOZ(vp); 2895326Sek110237 zfsvfs = zp->z_zfsvfs; 2905367Sahrens ZFS_ENTER(zfsvfs); 2915367Sahrens ZFS_VERIFY_ZP(zp); 292789Sahrens 293789Sahrens /* offset parameter is in/out */ 294789Sahrens error = zfs_holey(vp, com, &off); 295789Sahrens ZFS_EXIT(zfsvfs); 296789Sahrens if (error) 297789Sahrens return (error); 298789Sahrens if (ddi_copyout(&off, (void *)data, sizeof (off), flag)) 299789Sahrens return (EFAULT); 300789Sahrens return (0); 301789Sahrens } 302789Sahrens return (ENOTTY); 303789Sahrens } 304789Sahrens 305789Sahrens /* 306789Sahrens * When a file is memory mapped, we must keep the IO data synchronized 307789Sahrens * between the DMU cache and the memory mapped pages. What this means: 308789Sahrens * 309789Sahrens * On Write: If we find a memory mapped page, we write to *both* 310789Sahrens * the page and the dmu buffer. 311789Sahrens * 312789Sahrens * NOTE: We will always "break up" the IO into PAGESIZE uiomoves when 313789Sahrens * the file is memory mapped. 314789Sahrens */ 315789Sahrens static int 3163638Sbillm mappedwrite(vnode_t *vp, int nbytes, uio_t *uio, dmu_tx_t *tx) 317789Sahrens { 318789Sahrens znode_t *zp = VTOZ(vp); 319789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 320789Sahrens int64_t start, off; 321789Sahrens int len = nbytes; 322789Sahrens int error = 0; 323789Sahrens 324789Sahrens start = uio->uio_loffset; 325789Sahrens off = start & PAGEOFFSET; 326789Sahrens for (start &= PAGEMASK; len > 0; start += PAGESIZE) { 327789Sahrens page_t *pp; 328789Sahrens uint64_t bytes = MIN(PAGESIZE - off, len); 3293638Sbillm uint64_t woff = uio->uio_loffset; 330789Sahrens 331789Sahrens /* 332789Sahrens * We don't want a new page to "appear" in the middle of 333789Sahrens * the file update (because it may not get the write 334789Sahrens * update data), so we grab a lock to block 335789Sahrens * zfs_getpage(). 336789Sahrens */ 337789Sahrens rw_enter(&zp->z_map_lock, RW_WRITER); 338789Sahrens if (pp = page_lookup(vp, start, SE_SHARED)) { 339789Sahrens caddr_t va; 340789Sahrens 341789Sahrens rw_exit(&zp->z_map_lock); 342789Sahrens va = ppmapin(pp, PROT_READ | PROT_WRITE, (caddr_t)-1L); 343789Sahrens error = uiomove(va+off, bytes, UIO_WRITE, uio); 344789Sahrens if (error == 0) { 345789Sahrens dmu_write(zfsvfs->z_os, zp->z_id, 346789Sahrens woff, bytes, va+off, tx); 347789Sahrens } 348789Sahrens ppmapout(va); 349789Sahrens page_unlock(pp); 350789Sahrens } else { 351789Sahrens error = dmu_write_uio(zfsvfs->z_os, zp->z_id, 3523638Sbillm uio, bytes, tx); 353789Sahrens rw_exit(&zp->z_map_lock); 354789Sahrens } 355789Sahrens len -= bytes; 356789Sahrens off = 0; 357789Sahrens if (error) 358789Sahrens break; 359789Sahrens } 360789Sahrens return (error); 361789Sahrens } 362789Sahrens 363789Sahrens /* 364789Sahrens * When a file is memory mapped, we must keep the IO data synchronized 365789Sahrens * between the DMU cache and the memory mapped pages. What this means: 366789Sahrens * 367789Sahrens * On Read: We "read" preferentially from memory mapped pages, 368789Sahrens * else we default from the dmu buffer. 369789Sahrens * 370789Sahrens * NOTE: We will always "break up" the IO into PAGESIZE uiomoves when 371789Sahrens * the file is memory mapped. 372789Sahrens */ 373789Sahrens static int 3743638Sbillm mappedread(vnode_t *vp, int nbytes, uio_t *uio) 375789Sahrens { 3763638Sbillm znode_t *zp = VTOZ(vp); 3773638Sbillm objset_t *os = zp->z_zfsvfs->z_os; 3783638Sbillm int64_t start, off; 379789Sahrens int len = nbytes; 380789Sahrens int error = 0; 381789Sahrens 382789Sahrens start = uio->uio_loffset; 383789Sahrens off = start & PAGEOFFSET; 384789Sahrens for (start &= PAGEMASK; len > 0; start += PAGESIZE) { 385789Sahrens page_t *pp; 3863638Sbillm uint64_t bytes = MIN(PAGESIZE - off, len); 3873638Sbillm 388789Sahrens if (pp = page_lookup(vp, start, SE_SHARED)) { 389789Sahrens caddr_t va; 390789Sahrens 3912688Smaybee va = ppmapin(pp, PROT_READ, (caddr_t)-1L); 392789Sahrens error = uiomove(va + off, bytes, UIO_READ, uio); 393789Sahrens ppmapout(va); 394789Sahrens page_unlock(pp); 395789Sahrens } else { 3963638Sbillm error = dmu_read_uio(os, zp->z_id, uio, bytes); 397789Sahrens } 398789Sahrens len -= bytes; 399789Sahrens off = 0; 400789Sahrens if (error) 401789Sahrens break; 402789Sahrens } 403789Sahrens return (error); 404789Sahrens } 405789Sahrens 4063638Sbillm offset_t zfs_read_chunk_size = 1024 * 1024; /* Tunable */ 407789Sahrens 408789Sahrens /* 409789Sahrens * Read bytes from specified file into supplied buffer. 410789Sahrens * 411789Sahrens * IN: vp - vnode of file to be read from. 412789Sahrens * uio - structure supplying read location, range info, 413789Sahrens * and return buffer. 414789Sahrens * ioflag - SYNC flags; used to provide FRSYNC semantics. 415789Sahrens * cr - credentials of caller. 4165331Samw * ct - caller context 417789Sahrens * 418789Sahrens * OUT: uio - updated offset and range, buffer filled. 419789Sahrens * 420789Sahrens * RETURN: 0 if success 421789Sahrens * error code if failure 422789Sahrens * 423789Sahrens * Side Effects: 424789Sahrens * vp - atime updated if byte count > 0 425789Sahrens */ 426789Sahrens /* ARGSUSED */ 427789Sahrens static int 428789Sahrens zfs_read(vnode_t *vp, uio_t *uio, int ioflag, cred_t *cr, caller_context_t *ct) 429789Sahrens { 430789Sahrens znode_t *zp = VTOZ(vp); 431789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 4325326Sek110237 objset_t *os; 4333638Sbillm ssize_t n, nbytes; 4343638Sbillm int error; 4351669Sperrin rl_t *rl; 436789Sahrens 4375367Sahrens ZFS_ENTER(zfsvfs); 4385367Sahrens ZFS_VERIFY_ZP(zp); 4395326Sek110237 os = zfsvfs->z_os; 440789Sahrens 4415929Smarks if (zp->z_phys->zp_flags & ZFS_AV_QUARANTINED) { 4425929Smarks ZFS_EXIT(zfsvfs); 4435929Smarks return (EACCES); 4445929Smarks } 4455929Smarks 446789Sahrens /* 447789Sahrens * Validate file offset 448789Sahrens */ 449789Sahrens if (uio->uio_loffset < (offset_t)0) { 450789Sahrens ZFS_EXIT(zfsvfs); 451789Sahrens return (EINVAL); 452789Sahrens } 453789Sahrens 454789Sahrens /* 455789Sahrens * Fasttrack empty reads 456789Sahrens */ 457789Sahrens if (uio->uio_resid == 0) { 458789Sahrens ZFS_EXIT(zfsvfs); 459789Sahrens return (0); 460789Sahrens } 461789Sahrens 462789Sahrens /* 4631669Sperrin * Check for mandatory locks 464789Sahrens */ 465789Sahrens if (MANDMODE((mode_t)zp->z_phys->zp_mode)) { 466789Sahrens if (error = chklock(vp, FREAD, 467789Sahrens uio->uio_loffset, uio->uio_resid, uio->uio_fmode, ct)) { 468789Sahrens ZFS_EXIT(zfsvfs); 469789Sahrens return (error); 470789Sahrens } 471789Sahrens } 472789Sahrens 473789Sahrens /* 474789Sahrens * If we're in FRSYNC mode, sync out this znode before reading it. 475789Sahrens */ 4762638Sperrin if (ioflag & FRSYNC) 4772638Sperrin zil_commit(zfsvfs->z_log, zp->z_last_itx, zp->z_id); 478789Sahrens 479789Sahrens /* 4801669Sperrin * Lock the range against changes. 481789Sahrens */ 4821669Sperrin rl = zfs_range_lock(zp, uio->uio_loffset, uio->uio_resid, RL_READER); 4831669Sperrin 484789Sahrens /* 485789Sahrens * If we are reading past end-of-file we can skip 486789Sahrens * to the end; but we might still need to set atime. 487789Sahrens */ 488789Sahrens if (uio->uio_loffset >= zp->z_phys->zp_size) { 489789Sahrens error = 0; 490789Sahrens goto out; 491789Sahrens } 492789Sahrens 4933638Sbillm ASSERT(uio->uio_loffset < zp->z_phys->zp_size); 4943638Sbillm n = MIN(uio->uio_resid, zp->z_phys->zp_size - uio->uio_loffset); 4953638Sbillm 4963638Sbillm while (n > 0) { 4973638Sbillm nbytes = MIN(n, zfs_read_chunk_size - 4983638Sbillm P2PHASE(uio->uio_loffset, zfs_read_chunk_size)); 4993638Sbillm 5003638Sbillm if (vn_has_cached_data(vp)) 5013638Sbillm error = mappedread(vp, nbytes, uio); 5023638Sbillm else 5033638Sbillm error = dmu_read_uio(os, zp->z_id, uio, nbytes); 5041544Seschrock if (error) 5053638Sbillm break; 5063638Sbillm 5073638Sbillm n -= nbytes; 508789Sahrens } 5093638Sbillm 510789Sahrens out: 5112237Smaybee zfs_range_unlock(rl); 512789Sahrens 513789Sahrens ZFS_ACCESSTIME_STAMP(zfsvfs, zp); 514789Sahrens ZFS_EXIT(zfsvfs); 515789Sahrens return (error); 516789Sahrens } 517789Sahrens 518789Sahrens /* 519789Sahrens * Fault in the pages of the first n bytes specified by the uio structure. 520789Sahrens * 1 byte in each page is touched and the uio struct is unmodified. 521789Sahrens * Any error will exit this routine as this is only a best 522789Sahrens * attempt to get the pages resident. This is a copy of ufs_trans_touch(). 523789Sahrens */ 524789Sahrens static void 525789Sahrens zfs_prefault_write(ssize_t n, struct uio *uio) 526789Sahrens { 527789Sahrens struct iovec *iov; 528789Sahrens ulong_t cnt, incr; 529789Sahrens caddr_t p; 530789Sahrens uint8_t tmp; 531789Sahrens 532789Sahrens iov = uio->uio_iov; 533789Sahrens 534789Sahrens while (n) { 535789Sahrens cnt = MIN(iov->iov_len, n); 536789Sahrens if (cnt == 0) { 537789Sahrens /* empty iov entry */ 538789Sahrens iov++; 539789Sahrens continue; 540789Sahrens } 541789Sahrens n -= cnt; 542789Sahrens /* 543789Sahrens * touch each page in this segment. 544789Sahrens */ 545789Sahrens p = iov->iov_base; 546789Sahrens while (cnt) { 547789Sahrens switch (uio->uio_segflg) { 548789Sahrens case UIO_USERSPACE: 549789Sahrens case UIO_USERISPACE: 550789Sahrens if (fuword8(p, &tmp)) 551789Sahrens return; 552789Sahrens break; 553789Sahrens case UIO_SYSSPACE: 554789Sahrens if (kcopy(p, &tmp, 1)) 555789Sahrens return; 556789Sahrens break; 557789Sahrens } 558789Sahrens incr = MIN(cnt, PAGESIZE); 559789Sahrens p += incr; 560789Sahrens cnt -= incr; 561789Sahrens } 562789Sahrens /* 563789Sahrens * touch the last byte in case it straddles a page. 564789Sahrens */ 565789Sahrens p--; 566789Sahrens switch (uio->uio_segflg) { 567789Sahrens case UIO_USERSPACE: 568789Sahrens case UIO_USERISPACE: 569789Sahrens if (fuword8(p, &tmp)) 570789Sahrens return; 571789Sahrens break; 572789Sahrens case UIO_SYSSPACE: 573789Sahrens if (kcopy(p, &tmp, 1)) 574789Sahrens return; 575789Sahrens break; 576789Sahrens } 577789Sahrens iov++; 578789Sahrens } 579789Sahrens } 580789Sahrens 581789Sahrens /* 582789Sahrens * Write the bytes to a file. 583789Sahrens * 584789Sahrens * IN: vp - vnode of file to be written to. 585789Sahrens * uio - structure supplying write location, range info, 586789Sahrens * and data buffer. 587789Sahrens * ioflag - FAPPEND flag set if in append mode. 588789Sahrens * cr - credentials of caller. 5895331Samw * ct - caller context (NFS/CIFS fem monitor only) 590789Sahrens * 591789Sahrens * OUT: uio - updated offset and range. 592789Sahrens * 593789Sahrens * RETURN: 0 if success 594789Sahrens * error code if failure 595789Sahrens * 596789Sahrens * Timestamps: 597789Sahrens * vp - ctime|mtime updated if byte count > 0 598789Sahrens */ 599789Sahrens /* ARGSUSED */ 600789Sahrens static int 601789Sahrens zfs_write(vnode_t *vp, uio_t *uio, int ioflag, cred_t *cr, caller_context_t *ct) 602789Sahrens { 603789Sahrens znode_t *zp = VTOZ(vp); 604789Sahrens rlim64_t limit = uio->uio_llimit; 605789Sahrens ssize_t start_resid = uio->uio_resid; 606789Sahrens ssize_t tx_bytes; 607789Sahrens uint64_t end_size; 608789Sahrens dmu_tx_t *tx; 609789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 6105326Sek110237 zilog_t *zilog; 611789Sahrens offset_t woff; 612789Sahrens ssize_t n, nbytes; 6131669Sperrin rl_t *rl; 614789Sahrens int max_blksz = zfsvfs->z_max_blksz; 6156743Smarks uint64_t pflags; 6161669Sperrin int error; 617789Sahrens 618789Sahrens /* 619789Sahrens * Fasttrack empty write 620789Sahrens */ 6211669Sperrin n = start_resid; 622789Sahrens if (n == 0) 623789Sahrens return (0); 624789Sahrens 6251669Sperrin if (limit == RLIM64_INFINITY || limit > MAXOFFSET_T) 6261669Sperrin limit = MAXOFFSET_T; 6271669Sperrin 6285367Sahrens ZFS_ENTER(zfsvfs); 6295367Sahrens ZFS_VERIFY_ZP(zp); 6306743Smarks 6316743Smarks /* 6326743Smarks * If immutable or not appending then return EPERM 6336743Smarks */ 6346743Smarks pflags = zp->z_phys->zp_flags; 6356743Smarks if ((pflags & (ZFS_IMMUTABLE | ZFS_READONLY)) || 6366743Smarks ((pflags & ZFS_APPENDONLY) && !(ioflag & FAPPEND) && 6376743Smarks (uio->uio_loffset < zp->z_phys->zp_size))) { 6386743Smarks ZFS_EXIT(zfsvfs); 6396743Smarks return (EPERM); 6406743Smarks } 6416743Smarks 6425326Sek110237 zilog = zfsvfs->z_log; 643789Sahrens 644789Sahrens /* 6452237Smaybee * Pre-fault the pages to ensure slow (eg NFS) pages 6461669Sperrin * don't hold up txg. 647789Sahrens */ 6482237Smaybee zfs_prefault_write(n, uio); 649789Sahrens 650789Sahrens /* 651789Sahrens * If in append mode, set the io offset pointer to eof. 652789Sahrens */ 6531669Sperrin if (ioflag & FAPPEND) { 6541669Sperrin /* 6551669Sperrin * Range lock for a file append: 6561669Sperrin * The value for the start of range will be determined by 6571669Sperrin * zfs_range_lock() (to guarantee append semantics). 6581669Sperrin * If this write will cause the block size to increase, 6591669Sperrin * zfs_range_lock() will lock the entire file, so we must 6601669Sperrin * later reduce the range after we grow the block size. 6611669Sperrin */ 6621669Sperrin rl = zfs_range_lock(zp, 0, n, RL_APPEND); 6631669Sperrin if (rl->r_len == UINT64_MAX) { 6641669Sperrin /* overlocked, zp_size can't change */ 6651669Sperrin woff = uio->uio_loffset = zp->z_phys->zp_size; 6661669Sperrin } else { 6671669Sperrin woff = uio->uio_loffset = rl->r_off; 6681669Sperrin } 669789Sahrens } else { 670789Sahrens woff = uio->uio_loffset; 671789Sahrens /* 672789Sahrens * Validate file offset 673789Sahrens */ 674789Sahrens if (woff < 0) { 675789Sahrens ZFS_EXIT(zfsvfs); 676789Sahrens return (EINVAL); 677789Sahrens } 678789Sahrens 679789Sahrens /* 6801669Sperrin * If we need to grow the block size then zfs_range_lock() 6811669Sperrin * will lock a wider range than we request here. 6821669Sperrin * Later after growing the block size we reduce the range. 683789Sahrens */ 6841669Sperrin rl = zfs_range_lock(zp, woff, n, RL_WRITER); 685789Sahrens } 686789Sahrens 687789Sahrens if (woff >= limit) { 6883638Sbillm zfs_range_unlock(rl); 6893638Sbillm ZFS_EXIT(zfsvfs); 6903638Sbillm return (EFBIG); 691789Sahrens } 692789Sahrens 693789Sahrens if ((woff + n) > limit || woff > (limit - n)) 694789Sahrens n = limit - woff; 695789Sahrens 696789Sahrens /* 6971669Sperrin * Check for mandatory locks 698789Sahrens */ 699789Sahrens if (MANDMODE((mode_t)zp->z_phys->zp_mode) && 7003638Sbillm (error = chklock(vp, FWRITE, woff, n, uio->uio_fmode, ct)) != 0) { 7013638Sbillm zfs_range_unlock(rl); 7023638Sbillm ZFS_EXIT(zfsvfs); 7033638Sbillm return (error); 7043638Sbillm } 7051669Sperrin end_size = MAX(zp->z_phys->zp_size, woff + n); 706789Sahrens 7071669Sperrin /* 7083638Sbillm * Write the file in reasonable size chunks. Each chunk is written 7093638Sbillm * in a separate transaction; this keeps the intent log records small 7103638Sbillm * and allows us to do more fine-grained space accounting. 711789Sahrens */ 712789Sahrens while (n > 0) { 713789Sahrens /* 7143638Sbillm * Start a transaction. 715789Sahrens */ 716789Sahrens woff = uio->uio_loffset; 717789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 718789Sahrens dmu_tx_hold_bonus(tx, zp->z_id); 719789Sahrens dmu_tx_hold_write(tx, zp->z_id, woff, MIN(n, max_blksz)); 720789Sahrens error = dmu_tx_assign(tx, zfsvfs->z_assign); 721789Sahrens if (error) { 722789Sahrens if (error == ERESTART && 723789Sahrens zfsvfs->z_assign == TXG_NOWAIT) { 7242113Sahrens dmu_tx_wait(tx); 7252113Sahrens dmu_tx_abort(tx); 7263638Sbillm continue; 727789Sahrens } 7282113Sahrens dmu_tx_abort(tx); 7293638Sbillm break; 7303638Sbillm } 7313638Sbillm 7323638Sbillm /* 7333638Sbillm * If zfs_range_lock() over-locked we grow the blocksize 7343638Sbillm * and then reduce the lock range. This will only happen 7353638Sbillm * on the first iteration since zfs_range_reduce() will 7363638Sbillm * shrink down r_len to the appropriate size. 7373638Sbillm */ 7383638Sbillm if (rl->r_len == UINT64_MAX) { 7393638Sbillm uint64_t new_blksz; 7403638Sbillm 7413638Sbillm if (zp->z_blksz > max_blksz) { 7423638Sbillm ASSERT(!ISP2(zp->z_blksz)); 7433638Sbillm new_blksz = MIN(end_size, SPA_MAXBLOCKSIZE); 7443638Sbillm } else { 7453638Sbillm new_blksz = MIN(end_size, max_blksz); 7463638Sbillm } 7473638Sbillm zfs_grow_blocksize(zp, new_blksz, tx); 7483638Sbillm zfs_range_reduce(rl, woff, n); 7493638Sbillm } 7503638Sbillm 7513638Sbillm /* 7523638Sbillm * XXX - should we really limit each write to z_max_blksz? 7533638Sbillm * Perhaps we should use SPA_MAXBLOCKSIZE chunks? 7543638Sbillm */ 7553638Sbillm nbytes = MIN(n, max_blksz - P2PHASE(woff, max_blksz)); 7563638Sbillm rw_enter(&zp->z_map_lock, RW_READER); 7573638Sbillm 7583638Sbillm tx_bytes = uio->uio_resid; 7593638Sbillm if (vn_has_cached_data(vp)) { 7603638Sbillm rw_exit(&zp->z_map_lock); 7613638Sbillm error = mappedwrite(vp, nbytes, uio, tx); 7623638Sbillm } else { 7633638Sbillm error = dmu_write_uio(zfsvfs->z_os, zp->z_id, 7643638Sbillm uio, nbytes, tx); 7653638Sbillm rw_exit(&zp->z_map_lock); 766789Sahrens } 7673638Sbillm tx_bytes -= uio->uio_resid; 7683638Sbillm 7693638Sbillm /* 7703638Sbillm * If we made no progress, we're done. If we made even 7713638Sbillm * partial progress, update the znode and ZIL accordingly. 7723638Sbillm */ 7733638Sbillm if (tx_bytes == 0) { 7743897Smaybee dmu_tx_commit(tx); 7753638Sbillm ASSERT(error != 0); 7763638Sbillm break; 7773638Sbillm } 7783638Sbillm 779789Sahrens /* 7803638Sbillm * Clear Set-UID/Set-GID bits on successful write if not 7813638Sbillm * privileged and at least one of the excute bits is set. 7823638Sbillm * 7833638Sbillm * It would be nice to to this after all writes have 7843638Sbillm * been done, but that would still expose the ISUID/ISGID 7853638Sbillm * to another app after the partial write is committed. 7865331Samw * 7875331Samw * Note: we don't call zfs_fuid_map_id() here because 7885331Samw * user 0 is not an ephemeral uid. 789789Sahrens */ 7903638Sbillm mutex_enter(&zp->z_acl_lock); 7913638Sbillm if ((zp->z_phys->zp_mode & (S_IXUSR | (S_IXUSR >> 3) | 7923638Sbillm (S_IXUSR >> 6))) != 0 && 7933638Sbillm (zp->z_phys->zp_mode & (S_ISUID | S_ISGID)) != 0 && 7943638Sbillm secpolicy_vnode_setid_retain(cr, 7953638Sbillm (zp->z_phys->zp_mode & S_ISUID) != 0 && 7963638Sbillm zp->z_phys->zp_uid == 0) != 0) { 7974339Sperrin zp->z_phys->zp_mode &= ~(S_ISUID | S_ISGID); 7983638Sbillm } 7993638Sbillm mutex_exit(&zp->z_acl_lock); 8003638Sbillm 8013638Sbillm /* 8023638Sbillm * Update time stamp. NOTE: This marks the bonus buffer as 8033638Sbillm * dirty, so we don't have to do it again for zp_size. 8043638Sbillm */ 8053638Sbillm zfs_time_stamper(zp, CONTENT_MODIFIED, tx); 8063638Sbillm 8073638Sbillm /* 8083638Sbillm * Update the file size (zp_size) if it has changed; 8093638Sbillm * account for possible concurrent updates. 8103638Sbillm */ 8113638Sbillm while ((end_size = zp->z_phys->zp_size) < uio->uio_loffset) 812789Sahrens (void) atomic_cas_64(&zp->z_phys->zp_size, end_size, 813789Sahrens uio->uio_loffset); 8143638Sbillm zfs_log_write(zilog, tx, TX_WRITE, zp, woff, tx_bytes, ioflag); 8153638Sbillm dmu_tx_commit(tx); 8163638Sbillm 8173638Sbillm if (error != 0) 8183638Sbillm break; 8193638Sbillm ASSERT(tx_bytes == nbytes); 8203638Sbillm n -= nbytes; 821789Sahrens } 822789Sahrens 8232237Smaybee zfs_range_unlock(rl); 824789Sahrens 825789Sahrens /* 826789Sahrens * If we're in replay mode, or we made no progress, return error. 827789Sahrens * Otherwise, it's at least a partial write, so it's successful. 828789Sahrens */ 829789Sahrens if (zfsvfs->z_assign >= TXG_INITIAL || uio->uio_resid == start_resid) { 830789Sahrens ZFS_EXIT(zfsvfs); 831789Sahrens return (error); 832789Sahrens } 833789Sahrens 8342638Sperrin if (ioflag & (FSYNC | FDSYNC)) 8352638Sperrin zil_commit(zilog, zp->z_last_itx, zp->z_id); 836789Sahrens 837789Sahrens ZFS_EXIT(zfsvfs); 838789Sahrens return (0); 839789Sahrens } 840789Sahrens 8412237Smaybee void 8423063Sperrin zfs_get_done(dmu_buf_t *db, void *vzgd) 8432237Smaybee { 8443063Sperrin zgd_t *zgd = (zgd_t *)vzgd; 8453063Sperrin rl_t *rl = zgd->zgd_rl; 8462237Smaybee vnode_t *vp = ZTOV(rl->r_zp); 8472237Smaybee 8483063Sperrin dmu_buf_rele(db, vzgd); 8492237Smaybee zfs_range_unlock(rl); 8502237Smaybee VN_RELE(vp); 8515688Sbonwick zil_add_block(zgd->zgd_zilog, zgd->zgd_bp); 8523063Sperrin kmem_free(zgd, sizeof (zgd_t)); 8532237Smaybee } 8542237Smaybee 855789Sahrens /* 856789Sahrens * Get data to generate a TX_WRITE intent log record. 857789Sahrens */ 858789Sahrens int 8592237Smaybee zfs_get_data(void *arg, lr_write_t *lr, char *buf, zio_t *zio) 860789Sahrens { 861789Sahrens zfsvfs_t *zfsvfs = arg; 862789Sahrens objset_t *os = zfsvfs->z_os; 863789Sahrens znode_t *zp; 864789Sahrens uint64_t off = lr->lr_offset; 8652237Smaybee dmu_buf_t *db; 8661669Sperrin rl_t *rl; 8673063Sperrin zgd_t *zgd; 8683638Sbillm int dlen = lr->lr_length; /* length of user data */ 869789Sahrens int error = 0; 870789Sahrens 8713063Sperrin ASSERT(zio); 872789Sahrens ASSERT(dlen != 0); 873789Sahrens 874789Sahrens /* 8751669Sperrin * Nothing to do if the file has been removed 876789Sahrens */ 877789Sahrens if (zfs_zget(zfsvfs, lr->lr_foid, &zp) != 0) 878789Sahrens return (ENOENT); 8793461Sahrens if (zp->z_unlinked) { 880789Sahrens VN_RELE(ZTOV(zp)); 881789Sahrens return (ENOENT); 882789Sahrens } 883789Sahrens 884789Sahrens /* 885789Sahrens * Write records come in two flavors: immediate and indirect. 886789Sahrens * For small writes it's cheaper to store the data with the 887789Sahrens * log record (immediate); for large writes it's cheaper to 888789Sahrens * sync the data and get a pointer to it (indirect) so that 889789Sahrens * we don't have to write the data twice. 890789Sahrens */ 8911669Sperrin if (buf != NULL) { /* immediate write */ 8921669Sperrin rl = zfs_range_lock(zp, off, dlen, RL_READER); 8931669Sperrin /* test for truncation needs to be done while range locked */ 8941669Sperrin if (off >= zp->z_phys->zp_size) { 8951669Sperrin error = ENOENT; 8961669Sperrin goto out; 8971669Sperrin } 8982449Smaybee VERIFY(0 == dmu_read(os, lr->lr_foid, off, dlen, buf)); 8991669Sperrin } else { /* indirect write */ 9001669Sperrin uint64_t boff; /* block starting offset */ 9011669Sperrin 902789Sahrens /* 9031669Sperrin * Have to lock the whole block to ensure when it's 9041669Sperrin * written out and it's checksum is being calculated 9051669Sperrin * that no one can change the data. We need to re-check 9061669Sperrin * blocksize after we get the lock in case it's changed! 907789Sahrens */ 9081669Sperrin for (;;) { 9091941Sperrin if (ISP2(zp->z_blksz)) { 9101941Sperrin boff = P2ALIGN_TYPED(off, zp->z_blksz, 9111941Sperrin uint64_t); 9121941Sperrin } else { 9131941Sperrin boff = 0; 9141941Sperrin } 9151669Sperrin dlen = zp->z_blksz; 9161669Sperrin rl = zfs_range_lock(zp, boff, dlen, RL_READER); 9171669Sperrin if (zp->z_blksz == dlen) 9181669Sperrin break; 9192237Smaybee zfs_range_unlock(rl); 9201669Sperrin } 9211669Sperrin /* test for truncation needs to be done while range locked */ 9221669Sperrin if (off >= zp->z_phys->zp_size) { 9231669Sperrin error = ENOENT; 9241669Sperrin goto out; 9251669Sperrin } 9263063Sperrin zgd = (zgd_t *)kmem_alloc(sizeof (zgd_t), KM_SLEEP); 9273063Sperrin zgd->zgd_rl = rl; 9283063Sperrin zgd->zgd_zilog = zfsvfs->z_log; 9293063Sperrin zgd->zgd_bp = &lr->lr_blkptr; 9303063Sperrin VERIFY(0 == dmu_buf_hold(os, lr->lr_foid, boff, zgd, &db)); 9312237Smaybee ASSERT(boff == db->db_offset); 9322237Smaybee lr->lr_blkoff = off - boff; 9332237Smaybee error = dmu_sync(zio, db, &lr->lr_blkptr, 9343063Sperrin lr->lr_common.lrc_txg, zfs_get_done, zgd); 9354709Smaybee ASSERT((error && error != EINPROGRESS) || 9364709Smaybee lr->lr_length <= zp->z_blksz); 9375688Sbonwick if (error == 0) 9385688Sbonwick zil_add_block(zfsvfs->z_log, &lr->lr_blkptr); 9392237Smaybee /* 9402237Smaybee * If we get EINPROGRESS, then we need to wait for a 9412237Smaybee * write IO initiated by dmu_sync() to complete before 9422638Sperrin * we can release this dbuf. We will finish everything 9432237Smaybee * up in the zfs_get_done() callback. 9442237Smaybee */ 9452237Smaybee if (error == EINPROGRESS) 9462237Smaybee return (0); 9473063Sperrin dmu_buf_rele(db, zgd); 9483063Sperrin kmem_free(zgd, sizeof (zgd_t)); 949789Sahrens } 9501669Sperrin out: 9512237Smaybee zfs_range_unlock(rl); 952789Sahrens VN_RELE(ZTOV(zp)); 953789Sahrens return (error); 954789Sahrens } 955789Sahrens 956789Sahrens /*ARGSUSED*/ 957789Sahrens static int 9585331Samw zfs_access(vnode_t *vp, int mode, int flag, cred_t *cr, 9595331Samw caller_context_t *ct) 960789Sahrens { 961789Sahrens znode_t *zp = VTOZ(vp); 962789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 963789Sahrens int error; 964789Sahrens 9655367Sahrens ZFS_ENTER(zfsvfs); 9665367Sahrens ZFS_VERIFY_ZP(zp); 9675331Samw 9685331Samw if (flag & V_ACE_MASK) 9695331Samw error = zfs_zaccess(zp, mode, flag, B_FALSE, cr); 9705331Samw else 9715331Samw error = zfs_zaccess_rwx(zp, mode, flag, cr); 9725331Samw 973789Sahrens ZFS_EXIT(zfsvfs); 974789Sahrens return (error); 975789Sahrens } 976789Sahrens 977789Sahrens /* 978789Sahrens * Lookup an entry in a directory, or an extended attribute directory. 979789Sahrens * If it exists, return a held vnode reference for it. 980789Sahrens * 981789Sahrens * IN: dvp - vnode of directory to search. 982789Sahrens * nm - name of entry to lookup. 983789Sahrens * pnp - full pathname to lookup [UNUSED]. 984789Sahrens * flags - LOOKUP_XATTR set if looking for an attribute. 985789Sahrens * rdir - root directory vnode [UNUSED]. 986789Sahrens * cr - credentials of caller. 9875331Samw * ct - caller context 9885331Samw * direntflags - directory lookup flags 9895331Samw * realpnp - returned pathname. 990789Sahrens * 991789Sahrens * OUT: vpp - vnode of located entry, NULL if not found. 992789Sahrens * 993789Sahrens * RETURN: 0 if success 994789Sahrens * error code if failure 995789Sahrens * 996789Sahrens * Timestamps: 997789Sahrens * NA 998789Sahrens */ 999789Sahrens /* ARGSUSED */ 1000789Sahrens static int 1001789Sahrens zfs_lookup(vnode_t *dvp, char *nm, vnode_t **vpp, struct pathname *pnp, 10025331Samw int flags, vnode_t *rdir, cred_t *cr, caller_context_t *ct, 10035331Samw int *direntflags, pathname_t *realpnp) 1004789Sahrens { 1005789Sahrens znode_t *zdp = VTOZ(dvp); 1006789Sahrens zfsvfs_t *zfsvfs = zdp->z_zfsvfs; 1007789Sahrens int error; 1008789Sahrens 10095367Sahrens ZFS_ENTER(zfsvfs); 10105367Sahrens ZFS_VERIFY_ZP(zdp); 1011789Sahrens 1012789Sahrens *vpp = NULL; 1013789Sahrens 1014789Sahrens if (flags & LOOKUP_XATTR) { 1015789Sahrens /* 10163234Sck153898 * If the xattr property is off, refuse the lookup request. 10173234Sck153898 */ 10183234Sck153898 if (!(zfsvfs->z_vfs->vfs_flag & VFS_XATTR)) { 10193234Sck153898 ZFS_EXIT(zfsvfs); 10203234Sck153898 return (EINVAL); 10213234Sck153898 } 10223234Sck153898 10233234Sck153898 /* 1024789Sahrens * We don't allow recursive attributes.. 1025789Sahrens * Maybe someday we will. 1026789Sahrens */ 1027789Sahrens if (zdp->z_phys->zp_flags & ZFS_XATTR) { 1028789Sahrens ZFS_EXIT(zfsvfs); 1029789Sahrens return (EINVAL); 1030789Sahrens } 1031789Sahrens 10323280Sck153898 if (error = zfs_get_xattrdir(VTOZ(dvp), vpp, cr, flags)) { 1033789Sahrens ZFS_EXIT(zfsvfs); 1034789Sahrens return (error); 1035789Sahrens } 1036789Sahrens 1037789Sahrens /* 1038789Sahrens * Do we have permission to get into attribute directory? 1039789Sahrens */ 1040789Sahrens 10415331Samw if (error = zfs_zaccess(VTOZ(*vpp), ACE_EXECUTE, 0, 10425331Samw B_FALSE, cr)) { 1043789Sahrens VN_RELE(*vpp); 10445331Samw *vpp = NULL; 1045789Sahrens } 1046789Sahrens 1047789Sahrens ZFS_EXIT(zfsvfs); 1048789Sahrens return (error); 1049789Sahrens } 1050789Sahrens 10511512Sek110237 if (dvp->v_type != VDIR) { 10521512Sek110237 ZFS_EXIT(zfsvfs); 10531460Smarks return (ENOTDIR); 10541512Sek110237 } 10551460Smarks 1056789Sahrens /* 1057789Sahrens * Check accessibility of directory. 1058789Sahrens */ 1059789Sahrens 10605331Samw if (error = zfs_zaccess(zdp, ACE_EXECUTE, 0, B_FALSE, cr)) { 1061789Sahrens ZFS_EXIT(zfsvfs); 1062789Sahrens return (error); 1063789Sahrens } 1064789Sahrens 10655498Stimh if (zfsvfs->z_utf8 && u8_validate(nm, strlen(nm), 10665331Samw NULL, U8_VALIDATE_ENTIRE, &error) < 0) { 10675331Samw ZFS_EXIT(zfsvfs); 10685331Samw return (EILSEQ); 10695331Samw } 10705331Samw 10715331Samw error = zfs_dirlook(zdp, nm, vpp, flags, direntflags, realpnp); 10725331Samw if (error == 0) { 1073789Sahrens /* 1074789Sahrens * Convert device special files 1075789Sahrens */ 1076789Sahrens if (IS_DEVVP(*vpp)) { 1077789Sahrens vnode_t *svp; 1078789Sahrens 1079789Sahrens svp = specvp(*vpp, (*vpp)->v_rdev, (*vpp)->v_type, cr); 1080789Sahrens VN_RELE(*vpp); 1081789Sahrens if (svp == NULL) 1082789Sahrens error = ENOSYS; 1083789Sahrens else 1084789Sahrens *vpp = svp; 1085789Sahrens } 1086789Sahrens } 1087789Sahrens 1088789Sahrens ZFS_EXIT(zfsvfs); 1089789Sahrens return (error); 1090789Sahrens } 1091789Sahrens 1092789Sahrens /* 1093789Sahrens * Attempt to create a new entry in a directory. If the entry 1094789Sahrens * already exists, truncate the file if permissible, else return 1095789Sahrens * an error. Return the vp of the created or trunc'd file. 1096789Sahrens * 1097789Sahrens * IN: dvp - vnode of directory to put new file entry in. 1098789Sahrens * name - name of new file entry. 1099789Sahrens * vap - attributes of new file. 1100789Sahrens * excl - flag indicating exclusive or non-exclusive mode. 1101789Sahrens * mode - mode to open file with. 1102789Sahrens * cr - credentials of caller. 1103789Sahrens * flag - large file flag [UNUSED]. 11045331Samw * ct - caller context 11055331Samw * vsecp - ACL to be set 1106789Sahrens * 1107789Sahrens * OUT: vpp - vnode of created or trunc'd entry. 1108789Sahrens * 1109789Sahrens * RETURN: 0 if success 1110789Sahrens * error code if failure 1111789Sahrens * 1112789Sahrens * Timestamps: 1113789Sahrens * dvp - ctime|mtime updated if new entry created 1114789Sahrens * vp - ctime|mtime always, atime if new 1115789Sahrens */ 11165331Samw 1117789Sahrens /* ARGSUSED */ 1118789Sahrens static int 1119789Sahrens zfs_create(vnode_t *dvp, char *name, vattr_t *vap, vcexcl_t excl, 11205331Samw int mode, vnode_t **vpp, cred_t *cr, int flag, caller_context_t *ct, 11215331Samw vsecattr_t *vsecp) 1122789Sahrens { 1123789Sahrens znode_t *zp, *dzp = VTOZ(dvp); 1124789Sahrens zfsvfs_t *zfsvfs = dzp->z_zfsvfs; 11255326Sek110237 zilog_t *zilog; 11265326Sek110237 objset_t *os; 1127789Sahrens zfs_dirlock_t *dl; 1128789Sahrens dmu_tx_t *tx; 1129789Sahrens int error; 11305331Samw zfs_acl_t *aclp = NULL; 11315331Samw zfs_fuid_info_t *fuidp = NULL; 11325331Samw 11335331Samw /* 11345331Samw * If we have an ephemeral id, ACL, or XVATTR then 11355331Samw * make sure file system is at proper version 11365331Samw */ 11375331Samw 11385331Samw if (zfsvfs->z_use_fuids == B_FALSE && 11395331Samw (vsecp || (vap->va_mask & AT_XVATTR) || 11405331Samw IS_EPHEMERAL(crgetuid(cr)) || IS_EPHEMERAL(crgetgid(cr)))) 11415331Samw return (EINVAL); 1142789Sahrens 11435367Sahrens ZFS_ENTER(zfsvfs); 11445367Sahrens ZFS_VERIFY_ZP(dzp); 11455326Sek110237 os = zfsvfs->z_os; 11465326Sek110237 zilog = zfsvfs->z_log; 1147789Sahrens 11485498Stimh if (zfsvfs->z_utf8 && u8_validate(name, strlen(name), 11495331Samw NULL, U8_VALIDATE_ENTIRE, &error) < 0) { 11505331Samw ZFS_EXIT(zfsvfs); 11515331Samw return (EILSEQ); 11525331Samw } 11535331Samw 11545331Samw if (vap->va_mask & AT_XVATTR) { 11555331Samw if ((error = secpolicy_xvattr((xvattr_t *)vap, 11565331Samw crgetuid(cr), cr, vap->va_type)) != 0) { 11575331Samw ZFS_EXIT(zfsvfs); 11585331Samw return (error); 11595331Samw } 11605331Samw } 1161789Sahrens top: 1162789Sahrens *vpp = NULL; 1163789Sahrens 1164789Sahrens if ((vap->va_mode & VSVTX) && secpolicy_vnode_stky_modify(cr)) 1165789Sahrens vap->va_mode &= ~VSVTX; 1166789Sahrens 1167789Sahrens if (*name == '\0') { 1168789Sahrens /* 1169789Sahrens * Null component name refers to the directory itself. 1170789Sahrens */ 1171789Sahrens VN_HOLD(dvp); 1172789Sahrens zp = dzp; 1173789Sahrens dl = NULL; 1174789Sahrens error = 0; 1175789Sahrens } else { 1176789Sahrens /* possible VN_HOLD(zp) */ 11775331Samw int zflg = 0; 11785331Samw 11795331Samw if (flag & FIGNORECASE) 11805331Samw zflg |= ZCILOOK; 11815331Samw 11825331Samw error = zfs_dirent_lock(&dl, dzp, name, &zp, zflg, 11835331Samw NULL, NULL); 11845331Samw if (error) { 1185789Sahrens if (strcmp(name, "..") == 0) 1186789Sahrens error = EISDIR; 1187789Sahrens ZFS_EXIT(zfsvfs); 11885331Samw if (aclp) 11895331Samw zfs_acl_free(aclp); 1190789Sahrens return (error); 1191789Sahrens } 1192789Sahrens } 11935331Samw if (vsecp && aclp == NULL) { 11945331Samw error = zfs_vsec_2_aclp(zfsvfs, vap->va_type, vsecp, &aclp); 11955331Samw if (error) { 11965331Samw ZFS_EXIT(zfsvfs); 11975331Samw if (dl) 11985331Samw zfs_dirent_unlock(dl); 11995331Samw return (error); 12005331Samw } 12015331Samw } 1202789Sahrens 1203789Sahrens if (zp == NULL) { 12045331Samw uint64_t txtype; 12055331Samw 1206789Sahrens /* 1207789Sahrens * Create a new file object and update the directory 1208789Sahrens * to reference it. 1209789Sahrens */ 12105331Samw if (error = zfs_zaccess(dzp, ACE_ADD_FILE, 0, B_FALSE, cr)) { 1211789Sahrens goto out; 1212789Sahrens } 1213789Sahrens 1214789Sahrens /* 1215789Sahrens * We only support the creation of regular files in 1216789Sahrens * extended attribute directories. 1217789Sahrens */ 1218789Sahrens if ((dzp->z_phys->zp_flags & ZFS_XATTR) && 1219789Sahrens (vap->va_type != VREG)) { 1220789Sahrens error = EINVAL; 1221789Sahrens goto out; 1222789Sahrens } 1223789Sahrens 1224789Sahrens tx = dmu_tx_create(os); 1225789Sahrens dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT); 12265959Smarks if ((aclp && aclp->z_has_fuids) || IS_EPHEMERAL(crgetuid(cr)) || 12275959Smarks IS_EPHEMERAL(crgetgid(cr))) { 12285824Smarks if (zfsvfs->z_fuid_obj == 0) { 12295824Smarks dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT); 12305824Smarks dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, 12315824Smarks FUID_SIZE_ESTIMATE(zfsvfs)); 12325824Smarks dmu_tx_hold_zap(tx, MASTER_NODE_OBJ, 12335824Smarks FALSE, NULL); 12345824Smarks } else { 12355824Smarks dmu_tx_hold_bonus(tx, zfsvfs->z_fuid_obj); 12365824Smarks dmu_tx_hold_write(tx, zfsvfs->z_fuid_obj, 0, 12375824Smarks FUID_SIZE_ESTIMATE(zfsvfs)); 12385824Smarks } 12395331Samw } 1240789Sahrens dmu_tx_hold_bonus(tx, dzp->z_id); 12411544Seschrock dmu_tx_hold_zap(tx, dzp->z_id, TRUE, name); 12425331Samw if ((dzp->z_phys->zp_flags & ZFS_INHERIT_ACE) || aclp) { 1243789Sahrens dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 1244789Sahrens 0, SPA_MAXBLOCKSIZE); 12455331Samw } 1246789Sahrens error = dmu_tx_assign(tx, zfsvfs->z_assign); 1247789Sahrens if (error) { 1248789Sahrens zfs_dirent_unlock(dl); 1249789Sahrens if (error == ERESTART && 1250789Sahrens zfsvfs->z_assign == TXG_NOWAIT) { 12512113Sahrens dmu_tx_wait(tx); 12522113Sahrens dmu_tx_abort(tx); 1253789Sahrens goto top; 1254789Sahrens } 12552113Sahrens dmu_tx_abort(tx); 1256789Sahrens ZFS_EXIT(zfsvfs); 12575331Samw if (aclp) 12585331Samw zfs_acl_free(aclp); 1259789Sahrens return (error); 1260789Sahrens } 12615446Sahrens zfs_mknode(dzp, vap, tx, cr, 0, &zp, 0, aclp, &fuidp); 1262789Sahrens (void) zfs_link_create(dl, zp, tx, ZNEW); 12635331Samw txtype = zfs_log_create_txtype(Z_FILE, vsecp, vap); 12645331Samw if (flag & FIGNORECASE) 12655331Samw txtype |= TX_CI; 12665331Samw zfs_log_create(zilog, tx, txtype, dzp, zp, name, 12675331Samw vsecp, fuidp, vap); 12685331Samw if (fuidp) 12695331Samw zfs_fuid_info_free(fuidp); 1270789Sahrens dmu_tx_commit(tx); 1271789Sahrens } else { 12725331Samw int aflags = (flag & FAPPEND) ? V_APPEND : 0; 12735331Samw 1274789Sahrens /* 1275789Sahrens * A directory entry already exists for this name. 1276789Sahrens */ 1277789Sahrens /* 1278789Sahrens * Can't truncate an existing file if in exclusive mode. 1279789Sahrens */ 1280789Sahrens if (excl == EXCL) { 1281789Sahrens error = EEXIST; 1282789Sahrens goto out; 1283789Sahrens } 1284789Sahrens /* 1285789Sahrens * Can't open a directory for writing. 1286789Sahrens */ 1287789Sahrens if ((ZTOV(zp)->v_type == VDIR) && (mode & S_IWRITE)) { 1288789Sahrens error = EISDIR; 1289789Sahrens goto out; 1290789Sahrens } 1291789Sahrens /* 1292789Sahrens * Verify requested access to file. 1293789Sahrens */ 12945331Samw if (mode && (error = zfs_zaccess_rwx(zp, mode, aflags, cr))) { 1295789Sahrens goto out; 1296789Sahrens } 1297789Sahrens 1298789Sahrens mutex_enter(&dzp->z_lock); 1299789Sahrens dzp->z_seq++; 1300789Sahrens mutex_exit(&dzp->z_lock); 1301789Sahrens 13021878Smaybee /* 13031878Smaybee * Truncate regular files if requested. 13041878Smaybee */ 13051878Smaybee if ((ZTOV(zp)->v_type == VREG) && 1306789Sahrens (vap->va_mask & AT_SIZE) && (vap->va_size == 0)) { 1307*6992Smaybee /* we can't hold any locks when calling zfs_freesp() */ 1308*6992Smaybee zfs_dirent_unlock(dl); 1309*6992Smaybee dl = NULL; 13101878Smaybee error = zfs_freesp(zp, 0, 0, mode, TRUE); 13114863Spraks if (error == 0) { 13125331Samw vnevent_create(ZTOV(zp), ct); 13134863Spraks } 1314789Sahrens } 1315789Sahrens } 1316789Sahrens out: 1317789Sahrens 1318789Sahrens if (dl) 1319789Sahrens zfs_dirent_unlock(dl); 1320789Sahrens 1321789Sahrens if (error) { 1322789Sahrens if (zp) 1323789Sahrens VN_RELE(ZTOV(zp)); 1324789Sahrens } else { 1325789Sahrens *vpp = ZTOV(zp); 1326789Sahrens /* 1327789Sahrens * If vnode is for a device return a specfs vnode instead. 1328789Sahrens */ 1329789Sahrens if (IS_DEVVP(*vpp)) { 1330789Sahrens struct vnode *svp; 1331789Sahrens 1332789Sahrens svp = specvp(*vpp, (*vpp)->v_rdev, (*vpp)->v_type, cr); 1333789Sahrens VN_RELE(*vpp); 1334789Sahrens if (svp == NULL) { 1335789Sahrens error = ENOSYS; 1336789Sahrens } 1337789Sahrens *vpp = svp; 1338789Sahrens } 1339789Sahrens } 13405331Samw if (aclp) 13415331Samw zfs_acl_free(aclp); 1342789Sahrens 1343789Sahrens ZFS_EXIT(zfsvfs); 1344789Sahrens return (error); 1345789Sahrens } 1346789Sahrens 1347789Sahrens /* 1348789Sahrens * Remove an entry from a directory. 1349789Sahrens * 1350789Sahrens * IN: dvp - vnode of directory to remove entry from. 1351789Sahrens * name - name of entry to remove. 1352789Sahrens * cr - credentials of caller. 13535331Samw * ct - caller context 13545331Samw * flags - case flags 1355789Sahrens * 1356789Sahrens * RETURN: 0 if success 1357789Sahrens * error code if failure 1358789Sahrens * 1359789Sahrens * Timestamps: 1360789Sahrens * dvp - ctime|mtime 1361789Sahrens * vp - ctime (if nlink > 0) 1362789Sahrens */ 13635331Samw /*ARGSUSED*/ 1364789Sahrens static int 13655331Samw zfs_remove(vnode_t *dvp, char *name, cred_t *cr, caller_context_t *ct, 13665331Samw int flags) 1367789Sahrens { 1368789Sahrens znode_t *zp, *dzp = VTOZ(dvp); 1369789Sahrens znode_t *xzp = NULL; 1370789Sahrens vnode_t *vp; 1371789Sahrens zfsvfs_t *zfsvfs = dzp->z_zfsvfs; 13725326Sek110237 zilog_t *zilog; 1373789Sahrens uint64_t acl_obj, xattr_obj; 1374789Sahrens zfs_dirlock_t *dl; 1375789Sahrens dmu_tx_t *tx; 13763461Sahrens boolean_t may_delete_now, delete_now = FALSE; 1377*6992Smaybee boolean_t unlinked, toobig = FALSE; 13785331Samw uint64_t txtype; 13795331Samw pathname_t *realnmp = NULL; 13805331Samw pathname_t realnm; 1381789Sahrens int error; 13825331Samw int zflg = ZEXISTS; 1383789Sahrens 13845367Sahrens ZFS_ENTER(zfsvfs); 13855367Sahrens ZFS_VERIFY_ZP(dzp); 13865326Sek110237 zilog = zfsvfs->z_log; 1387789Sahrens 13885331Samw if (flags & FIGNORECASE) { 13895331Samw zflg |= ZCILOOK; 13905331Samw pn_alloc(&realnm); 13915331Samw realnmp = &realnm; 13925331Samw } 13935331Samw 1394789Sahrens top: 1395789Sahrens /* 1396789Sahrens * Attempt to lock directory; fail if entry doesn't exist. 1397789Sahrens */ 13985331Samw if (error = zfs_dirent_lock(&dl, dzp, name, &zp, zflg, 13995331Samw NULL, realnmp)) { 14005331Samw if (realnmp) 14015331Samw pn_free(realnmp); 1402789Sahrens ZFS_EXIT(zfsvfs); 1403789Sahrens return (error); 1404789Sahrens } 1405789Sahrens 1406789Sahrens vp = ZTOV(zp); 1407789Sahrens 1408789Sahrens if (error = zfs_zaccess_delete(dzp, zp, cr)) { 1409789Sahrens goto out; 1410789Sahrens } 1411789Sahrens 1412789Sahrens /* 1413789Sahrens * Need to use rmdir for removing directories. 1414789Sahrens */ 1415789Sahrens if (vp->v_type == VDIR) { 1416789Sahrens error = EPERM; 1417789Sahrens goto out; 1418789Sahrens } 1419789Sahrens 14205331Samw vnevent_remove(vp, dvp, name, ct); 14215331Samw 14225331Samw if (realnmp) 14236492Stimh dnlc_remove(dvp, realnmp->pn_buf); 14245331Samw else 14255331Samw dnlc_remove(dvp, name); 14261484Sek110237 1427789Sahrens mutex_enter(&vp->v_lock); 1428789Sahrens may_delete_now = vp->v_count == 1 && !vn_has_cached_data(vp); 1429789Sahrens mutex_exit(&vp->v_lock); 1430789Sahrens 1431789Sahrens /* 14323461Sahrens * We may delete the znode now, or we may put it in the unlinked set; 1433789Sahrens * it depends on whether we're the last link, and on whether there are 1434789Sahrens * other holds on the vnode. So we dmu_tx_hold() the right things to 1435789Sahrens * allow for either case. 1436789Sahrens */ 1437789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 14381544Seschrock dmu_tx_hold_zap(tx, dzp->z_id, FALSE, name); 1439789Sahrens dmu_tx_hold_bonus(tx, zp->z_id); 1440*6992Smaybee if (may_delete_now) { 1441*6992Smaybee toobig = 1442*6992Smaybee zp->z_phys->zp_size > zp->z_blksz * DMU_MAX_DELETEBLKCNT; 1443*6992Smaybee /* if the file is too big, only hold_free a token amount */ 1444*6992Smaybee dmu_tx_hold_free(tx, zp->z_id, 0, 1445*6992Smaybee (toobig ? DMU_MAX_ACCESS : DMU_OBJECT_END)); 1446*6992Smaybee } 1447789Sahrens 1448789Sahrens /* are there any extended attributes? */ 1449789Sahrens if ((xattr_obj = zp->z_phys->zp_xattr) != 0) { 1450789Sahrens /* XXX - do we need this if we are deleting? */ 1451789Sahrens dmu_tx_hold_bonus(tx, xattr_obj); 1452789Sahrens } 1453789Sahrens 1454789Sahrens /* are there any additional acls */ 1455789Sahrens if ((acl_obj = zp->z_phys->zp_acl.z_acl_extern_obj) != 0 && 1456789Sahrens may_delete_now) 1457789Sahrens dmu_tx_hold_free(tx, acl_obj, 0, DMU_OBJECT_END); 1458789Sahrens 1459789Sahrens /* charge as an update -- would be nice not to charge at all */ 14603461Sahrens dmu_tx_hold_zap(tx, zfsvfs->z_unlinkedobj, FALSE, NULL); 1461789Sahrens 1462789Sahrens error = dmu_tx_assign(tx, zfsvfs->z_assign); 1463789Sahrens if (error) { 1464789Sahrens zfs_dirent_unlock(dl); 1465789Sahrens VN_RELE(vp); 1466789Sahrens if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 14672113Sahrens dmu_tx_wait(tx); 14682113Sahrens dmu_tx_abort(tx); 1469789Sahrens goto top; 1470789Sahrens } 14715331Samw if (realnmp) 14725331Samw pn_free(realnmp); 14732113Sahrens dmu_tx_abort(tx); 1474789Sahrens ZFS_EXIT(zfsvfs); 1475789Sahrens return (error); 1476789Sahrens } 1477789Sahrens 1478789Sahrens /* 1479789Sahrens * Remove the directory entry. 1480789Sahrens */ 14815331Samw error = zfs_link_destroy(dl, zp, tx, zflg, &unlinked); 1482789Sahrens 1483789Sahrens if (error) { 1484789Sahrens dmu_tx_commit(tx); 1485789Sahrens goto out; 1486789Sahrens } 1487789Sahrens 14883461Sahrens if (unlinked) { 1489789Sahrens mutex_enter(&vp->v_lock); 1490*6992Smaybee delete_now = may_delete_now && !toobig && 1491789Sahrens vp->v_count == 1 && !vn_has_cached_data(vp) && 1492789Sahrens zp->z_phys->zp_xattr == xattr_obj && 1493789Sahrens zp->z_phys->zp_acl.z_acl_extern_obj == acl_obj; 1494789Sahrens mutex_exit(&vp->v_lock); 1495789Sahrens } 1496789Sahrens 1497789Sahrens if (delete_now) { 1498789Sahrens if (zp->z_phys->zp_xattr) { 1499789Sahrens error = zfs_zget(zfsvfs, zp->z_phys->zp_xattr, &xzp); 1500789Sahrens ASSERT3U(error, ==, 0); 1501789Sahrens ASSERT3U(xzp->z_phys->zp_links, ==, 2); 1502789Sahrens dmu_buf_will_dirty(xzp->z_dbuf, tx); 1503789Sahrens mutex_enter(&xzp->z_lock); 15043461Sahrens xzp->z_unlinked = 1; 1505789Sahrens xzp->z_phys->zp_links = 0; 1506789Sahrens mutex_exit(&xzp->z_lock); 15073461Sahrens zfs_unlinked_add(xzp, tx); 1508789Sahrens zp->z_phys->zp_xattr = 0; /* probably unnecessary */ 1509789Sahrens } 1510789Sahrens mutex_enter(&zp->z_lock); 1511789Sahrens mutex_enter(&vp->v_lock); 1512789Sahrens vp->v_count--; 1513789Sahrens ASSERT3U(vp->v_count, ==, 0); 1514789Sahrens mutex_exit(&vp->v_lock); 1515789Sahrens mutex_exit(&zp->z_lock); 1516789Sahrens zfs_znode_delete(zp, tx); 15173461Sahrens } else if (unlinked) { 15183461Sahrens zfs_unlinked_add(zp, tx); 1519789Sahrens } 1520789Sahrens 15215331Samw txtype = TX_REMOVE; 15225331Samw if (flags & FIGNORECASE) 15235331Samw txtype |= TX_CI; 15245331Samw zfs_log_remove(zilog, tx, txtype, dzp, name); 1525789Sahrens 1526789Sahrens dmu_tx_commit(tx); 1527789Sahrens out: 15285331Samw if (realnmp) 15295331Samw pn_free(realnmp); 15305331Samw 1531789Sahrens zfs_dirent_unlock(dl); 1532789Sahrens 1533789Sahrens if (!delete_now) { 1534789Sahrens VN_RELE(vp); 1535789Sahrens } else if (xzp) { 1536*6992Smaybee /* this rele is delayed to prevent nesting transactions */ 1537789Sahrens VN_RELE(ZTOV(xzp)); 1538789Sahrens } 1539789Sahrens 1540789Sahrens ZFS_EXIT(zfsvfs); 1541789Sahrens return (error); 1542789Sahrens } 1543789Sahrens 1544789Sahrens /* 1545789Sahrens * Create a new directory and insert it into dvp using the name 1546789Sahrens * provided. Return a pointer to the inserted directory. 1547789Sahrens * 1548789Sahrens * IN: dvp - vnode of directory to add subdir to. 1549789Sahrens * dirname - name of new directory. 1550789Sahrens * vap - attributes of new directory. 1551789Sahrens * cr - credentials of caller. 15525331Samw * ct - caller context 15535331Samw * vsecp - ACL to be set 1554789Sahrens * 1555789Sahrens * OUT: vpp - vnode of created directory. 1556789Sahrens * 1557789Sahrens * RETURN: 0 if success 1558789Sahrens * error code if failure 1559789Sahrens * 1560789Sahrens * Timestamps: 1561789Sahrens * dvp - ctime|mtime updated 1562789Sahrens * vp - ctime|mtime|atime updated 1563789Sahrens */ 15645331Samw /*ARGSUSED*/ 1565789Sahrens static int 15665331Samw zfs_mkdir(vnode_t *dvp, char *dirname, vattr_t *vap, vnode_t **vpp, cred_t *cr, 15675331Samw caller_context_t *ct, int flags, vsecattr_t *vsecp) 1568789Sahrens { 1569789Sahrens znode_t *zp, *dzp = VTOZ(dvp); 1570789Sahrens zfsvfs_t *zfsvfs = dzp->z_zfsvfs; 15715326Sek110237 zilog_t *zilog; 1572789Sahrens zfs_dirlock_t *dl; 15735331Samw uint64_t txtype; 1574789Sahrens dmu_tx_t *tx; 1575789Sahrens int error; 15765331Samw zfs_acl_t *aclp = NULL; 15775331Samw zfs_fuid_info_t *fuidp = NULL; 15785331Samw int zf = ZNEW; 1579789Sahrens 1580789Sahrens ASSERT(vap->va_type == VDIR); 1581789Sahrens 15825331Samw /* 15835331Samw * If we have an ephemeral id, ACL, or XVATTR then 15845331Samw * make sure file system is at proper version 15855331Samw */ 15865331Samw 15875331Samw if (zfsvfs->z_use_fuids == B_FALSE && 15885331Samw (vsecp || (vap->va_mask & AT_XVATTR) || IS_EPHEMERAL(crgetuid(cr))|| 15895331Samw IS_EPHEMERAL(crgetgid(cr)))) 15905331Samw return (EINVAL); 15915331Samw 15925367Sahrens ZFS_ENTER(zfsvfs); 15935367Sahrens ZFS_VERIFY_ZP(dzp); 15945326Sek110237 zilog = zfsvfs->z_log; 1595789Sahrens 1596789Sahrens if (dzp->z_phys->zp_flags & ZFS_XATTR) { 1597789Sahrens ZFS_EXIT(zfsvfs); 1598789Sahrens return (EINVAL); 1599789Sahrens } 16005331Samw 16015498Stimh if (zfsvfs->z_utf8 && u8_validate(dirname, 16025331Samw strlen(dirname), NULL, U8_VALIDATE_ENTIRE, &error) < 0) { 16035331Samw ZFS_EXIT(zfsvfs); 16045331Samw return (EILSEQ); 16055331Samw } 16065331Samw if (flags & FIGNORECASE) 16075331Samw zf |= ZCILOOK; 16085331Samw 16095331Samw if (vap->va_mask & AT_XVATTR) 16105331Samw if ((error = secpolicy_xvattr((xvattr_t *)vap, 16115331Samw crgetuid(cr), cr, vap->va_type)) != 0) { 16125331Samw ZFS_EXIT(zfsvfs); 16135331Samw return (error); 16145331Samw } 1615789Sahrens 1616789Sahrens /* 1617789Sahrens * First make sure the new directory doesn't exist. 1618789Sahrens */ 16195331Samw top: 16205331Samw *vpp = NULL; 16215331Samw 16225331Samw if (error = zfs_dirent_lock(&dl, dzp, dirname, &zp, zf, 16235331Samw NULL, NULL)) { 1624789Sahrens ZFS_EXIT(zfsvfs); 1625789Sahrens return (error); 1626789Sahrens } 1627789Sahrens 16285331Samw if (error = zfs_zaccess(dzp, ACE_ADD_SUBDIRECTORY, 0, B_FALSE, cr)) { 16291231Smarks zfs_dirent_unlock(dl); 16301231Smarks ZFS_EXIT(zfsvfs); 16311231Smarks return (error); 16321231Smarks } 16331231Smarks 16345331Samw if (vsecp && aclp == NULL) { 16355331Samw error = zfs_vsec_2_aclp(zfsvfs, vap->va_type, vsecp, &aclp); 16365331Samw if (error) { 16375331Samw zfs_dirent_unlock(dl); 16385331Samw ZFS_EXIT(zfsvfs); 16395331Samw return (error); 16405331Samw } 16415331Samw } 1642789Sahrens /* 1643789Sahrens * Add a new entry to the directory. 1644789Sahrens */ 1645789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 16461544Seschrock dmu_tx_hold_zap(tx, dzp->z_id, TRUE, dirname); 16471544Seschrock dmu_tx_hold_zap(tx, DMU_NEW_OBJECT, FALSE, NULL); 16485959Smarks if ((aclp && aclp->z_has_fuids) || IS_EPHEMERAL(crgetuid(cr)) || 16495959Smarks IS_EPHEMERAL(crgetgid(cr))) { 16505824Smarks if (zfsvfs->z_fuid_obj == 0) { 16515824Smarks dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT); 16525824Smarks dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, 16535824Smarks FUID_SIZE_ESTIMATE(zfsvfs)); 16545824Smarks dmu_tx_hold_zap(tx, MASTER_NODE_OBJ, FALSE, NULL); 16555824Smarks } else { 16565824Smarks dmu_tx_hold_bonus(tx, zfsvfs->z_fuid_obj); 16575824Smarks dmu_tx_hold_write(tx, zfsvfs->z_fuid_obj, 0, 16585824Smarks FUID_SIZE_ESTIMATE(zfsvfs)); 16595824Smarks } 16605331Samw } 16615331Samw if ((dzp->z_phys->zp_flags & ZFS_INHERIT_ACE) || aclp) 1662789Sahrens dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 1663789Sahrens 0, SPA_MAXBLOCKSIZE); 1664789Sahrens error = dmu_tx_assign(tx, zfsvfs->z_assign); 1665789Sahrens if (error) { 1666789Sahrens zfs_dirent_unlock(dl); 1667789Sahrens if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 16682113Sahrens dmu_tx_wait(tx); 16692113Sahrens dmu_tx_abort(tx); 1670789Sahrens goto top; 1671789Sahrens } 16722113Sahrens dmu_tx_abort(tx); 1673789Sahrens ZFS_EXIT(zfsvfs); 16745331Samw if (aclp) 16755331Samw zfs_acl_free(aclp); 1676789Sahrens return (error); 1677789Sahrens } 1678789Sahrens 1679789Sahrens /* 1680789Sahrens * Create new node. 1681789Sahrens */ 16825446Sahrens zfs_mknode(dzp, vap, tx, cr, 0, &zp, 0, aclp, &fuidp); 16835331Samw 16845331Samw if (aclp) 16855331Samw zfs_acl_free(aclp); 1686789Sahrens 1687789Sahrens /* 1688789Sahrens * Now put new name in parent dir. 1689789Sahrens */ 1690789Sahrens (void) zfs_link_create(dl, zp, tx, ZNEW); 1691789Sahrens 1692789Sahrens *vpp = ZTOV(zp); 1693789Sahrens 16945331Samw txtype = zfs_log_create_txtype(Z_DIR, vsecp, vap); 16955331Samw if (flags & FIGNORECASE) 16965331Samw txtype |= TX_CI; 16975331Samw zfs_log_create(zilog, tx, txtype, dzp, zp, dirname, vsecp, fuidp, vap); 16985331Samw 16995331Samw if (fuidp) 17005331Samw zfs_fuid_info_free(fuidp); 1701789Sahrens dmu_tx_commit(tx); 1702789Sahrens 1703789Sahrens zfs_dirent_unlock(dl); 1704789Sahrens 1705789Sahrens ZFS_EXIT(zfsvfs); 1706789Sahrens return (0); 1707789Sahrens } 1708789Sahrens 1709789Sahrens /* 1710789Sahrens * Remove a directory subdir entry. If the current working 1711789Sahrens * directory is the same as the subdir to be removed, the 1712789Sahrens * remove will fail. 1713789Sahrens * 1714789Sahrens * IN: dvp - vnode of directory to remove from. 1715789Sahrens * name - name of directory to be removed. 1716789Sahrens * cwd - vnode of current working directory. 1717789Sahrens * cr - credentials of caller. 17185331Samw * ct - caller context 17195331Samw * flags - case flags 1720789Sahrens * 1721789Sahrens * RETURN: 0 if success 1722789Sahrens * error code if failure 1723789Sahrens * 1724789Sahrens * Timestamps: 1725789Sahrens * dvp - ctime|mtime updated 1726789Sahrens */ 17275331Samw /*ARGSUSED*/ 1728789Sahrens static int 17295331Samw zfs_rmdir(vnode_t *dvp, char *name, vnode_t *cwd, cred_t *cr, 17305331Samw caller_context_t *ct, int flags) 1731789Sahrens { 1732789Sahrens znode_t *dzp = VTOZ(dvp); 1733789Sahrens znode_t *zp; 1734789Sahrens vnode_t *vp; 1735789Sahrens zfsvfs_t *zfsvfs = dzp->z_zfsvfs; 17365326Sek110237 zilog_t *zilog; 1737789Sahrens zfs_dirlock_t *dl; 1738789Sahrens dmu_tx_t *tx; 1739789Sahrens int error; 17405331Samw int zflg = ZEXISTS; 1741789Sahrens 17425367Sahrens ZFS_ENTER(zfsvfs); 17435367Sahrens ZFS_VERIFY_ZP(dzp); 17445326Sek110237 zilog = zfsvfs->z_log; 1745789Sahrens 17465331Samw if (flags & FIGNORECASE) 17475331Samw zflg |= ZCILOOK; 1748789Sahrens top: 1749789Sahrens zp = NULL; 1750789Sahrens 1751789Sahrens /* 1752789Sahrens * Attempt to lock directory; fail if entry doesn't exist. 1753789Sahrens */ 17545331Samw if (error = zfs_dirent_lock(&dl, dzp, name, &zp, zflg, 17555331Samw NULL, NULL)) { 1756789Sahrens ZFS_EXIT(zfsvfs); 1757789Sahrens return (error); 1758789Sahrens } 1759789Sahrens 1760789Sahrens vp = ZTOV(zp); 1761789Sahrens 1762789Sahrens if (error = zfs_zaccess_delete(dzp, zp, cr)) { 1763789Sahrens goto out; 1764789Sahrens } 1765789Sahrens 1766789Sahrens if (vp->v_type != VDIR) { 1767789Sahrens error = ENOTDIR; 1768789Sahrens goto out; 1769789Sahrens } 1770789Sahrens 1771789Sahrens if (vp == cwd) { 1772789Sahrens error = EINVAL; 1773789Sahrens goto out; 1774789Sahrens } 1775789Sahrens 17765331Samw vnevent_rmdir(vp, dvp, name, ct); 1777789Sahrens 1778789Sahrens /* 17793897Smaybee * Grab a lock on the directory to make sure that noone is 17803897Smaybee * trying to add (or lookup) entries while we are removing it. 17813897Smaybee */ 17823897Smaybee rw_enter(&zp->z_name_lock, RW_WRITER); 17833897Smaybee 17843897Smaybee /* 17853897Smaybee * Grab a lock on the parent pointer to make sure we play well 1786789Sahrens * with the treewalk and directory rename code. 1787789Sahrens */ 1788789Sahrens rw_enter(&zp->z_parent_lock, RW_WRITER); 1789789Sahrens 1790789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 17911544Seschrock dmu_tx_hold_zap(tx, dzp->z_id, FALSE, name); 1792789Sahrens dmu_tx_hold_bonus(tx, zp->z_id); 17933461Sahrens dmu_tx_hold_zap(tx, zfsvfs->z_unlinkedobj, FALSE, NULL); 1794789Sahrens error = dmu_tx_assign(tx, zfsvfs->z_assign); 1795789Sahrens if (error) { 1796789Sahrens rw_exit(&zp->z_parent_lock); 17973897Smaybee rw_exit(&zp->z_name_lock); 1798789Sahrens zfs_dirent_unlock(dl); 1799789Sahrens VN_RELE(vp); 1800789Sahrens if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 18012113Sahrens dmu_tx_wait(tx); 18022113Sahrens dmu_tx_abort(tx); 1803789Sahrens goto top; 1804789Sahrens } 18052113Sahrens dmu_tx_abort(tx); 1806789Sahrens ZFS_EXIT(zfsvfs); 1807789Sahrens return (error); 1808789Sahrens } 1809789Sahrens 18105331Samw error = zfs_link_destroy(dl, zp, tx, zflg, NULL); 18115331Samw 18125331Samw if (error == 0) { 18135331Samw uint64_t txtype = TX_RMDIR; 18145331Samw if (flags & FIGNORECASE) 18155331Samw txtype |= TX_CI; 18165331Samw zfs_log_remove(zilog, tx, txtype, dzp, name); 18175331Samw } 1818789Sahrens 1819789Sahrens dmu_tx_commit(tx); 1820789Sahrens 1821789Sahrens rw_exit(&zp->z_parent_lock); 18223897Smaybee rw_exit(&zp->z_name_lock); 1823789Sahrens out: 1824789Sahrens zfs_dirent_unlock(dl); 1825789Sahrens 1826789Sahrens VN_RELE(vp); 1827789Sahrens 1828789Sahrens ZFS_EXIT(zfsvfs); 1829789Sahrens return (error); 1830789Sahrens } 1831789Sahrens 1832789Sahrens /* 1833789Sahrens * Read as many directory entries as will fit into the provided 1834789Sahrens * buffer from the given directory cursor position (specified in 1835789Sahrens * the uio structure. 1836789Sahrens * 1837789Sahrens * IN: vp - vnode of directory to read. 1838789Sahrens * uio - structure supplying read location, range info, 1839789Sahrens * and return buffer. 1840789Sahrens * cr - credentials of caller. 18415331Samw * ct - caller context 18425331Samw * flags - case flags 1843789Sahrens * 1844789Sahrens * OUT: uio - updated offset and range, buffer filled. 1845789Sahrens * eofp - set to true if end-of-file detected. 1846789Sahrens * 1847789Sahrens * RETURN: 0 if success 1848789Sahrens * error code if failure 1849789Sahrens * 1850789Sahrens * Timestamps: 1851789Sahrens * vp - atime updated 1852789Sahrens * 1853789Sahrens * Note that the low 4 bits of the cookie returned by zap is always zero. 1854789Sahrens * This allows us to use the low range for "special" directory entries: 1855789Sahrens * We use 0 for '.', and 1 for '..'. If this is the root of the filesystem, 1856789Sahrens * we use the offset 2 for the '.zfs' directory. 1857789Sahrens */ 1858789Sahrens /* ARGSUSED */ 1859789Sahrens static int 18605331Samw zfs_readdir(vnode_t *vp, uio_t *uio, cred_t *cr, int *eofp, 18615331Samw caller_context_t *ct, int flags) 1862789Sahrens { 1863789Sahrens znode_t *zp = VTOZ(vp); 1864789Sahrens iovec_t *iovp; 18655331Samw edirent_t *eodp; 1866789Sahrens dirent64_t *odp; 1867789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 1868869Sperrin objset_t *os; 1869789Sahrens caddr_t outbuf; 1870789Sahrens size_t bufsize; 1871789Sahrens zap_cursor_t zc; 1872789Sahrens zap_attribute_t zap; 1873789Sahrens uint_t bytes_wanted; 1874789Sahrens uint64_t offset; /* must be unsigned; checks for < 1 */ 1875789Sahrens int local_eof; 1876869Sperrin int outcount; 1877869Sperrin int error; 1878869Sperrin uint8_t prefetch; 18795663Sck153898 boolean_t check_sysattrs; 1880789Sahrens 18815367Sahrens ZFS_ENTER(zfsvfs); 18825367Sahrens ZFS_VERIFY_ZP(zp); 1883789Sahrens 1884789Sahrens /* 1885789Sahrens * If we are not given an eof variable, 1886789Sahrens * use a local one. 1887789Sahrens */ 1888789Sahrens if (eofp == NULL) 1889789Sahrens eofp = &local_eof; 1890789Sahrens 1891789Sahrens /* 1892789Sahrens * Check for valid iov_len. 1893789Sahrens */ 1894789Sahrens if (uio->uio_iov->iov_len <= 0) { 1895789Sahrens ZFS_EXIT(zfsvfs); 1896789Sahrens return (EINVAL); 1897789Sahrens } 1898789Sahrens 1899789Sahrens /* 1900789Sahrens * Quit if directory has been removed (posix) 1901789Sahrens */ 19023461Sahrens if ((*eofp = zp->z_unlinked) != 0) { 1903789Sahrens ZFS_EXIT(zfsvfs); 1904789Sahrens return (0); 1905789Sahrens } 1906789Sahrens 1907869Sperrin error = 0; 1908869Sperrin os = zfsvfs->z_os; 1909869Sperrin offset = uio->uio_loffset; 1910869Sperrin prefetch = zp->z_zn_prefetch; 1911869Sperrin 1912789Sahrens /* 1913789Sahrens * Initialize the iterator cursor. 1914789Sahrens */ 1915789Sahrens if (offset <= 3) { 1916789Sahrens /* 1917789Sahrens * Start iteration from the beginning of the directory. 1918789Sahrens */ 1919869Sperrin zap_cursor_init(&zc, os, zp->z_id); 1920789Sahrens } else { 1921789Sahrens /* 1922789Sahrens * The offset is a serialized cursor. 1923789Sahrens */ 1924869Sperrin zap_cursor_init_serialized(&zc, os, zp->z_id, offset); 1925789Sahrens } 1926789Sahrens 1927789Sahrens /* 1928789Sahrens * Get space to change directory entries into fs independent format. 1929789Sahrens */ 1930789Sahrens iovp = uio->uio_iov; 1931789Sahrens bytes_wanted = iovp->iov_len; 1932789Sahrens if (uio->uio_segflg != UIO_SYSSPACE || uio->uio_iovcnt != 1) { 1933789Sahrens bufsize = bytes_wanted; 1934789Sahrens outbuf = kmem_alloc(bufsize, KM_SLEEP); 1935789Sahrens odp = (struct dirent64 *)outbuf; 1936789Sahrens } else { 1937789Sahrens bufsize = bytes_wanted; 1938789Sahrens odp = (struct dirent64 *)iovp->iov_base; 1939789Sahrens } 19405331Samw eodp = (struct edirent *)odp; 1941789Sahrens 1942789Sahrens /* 19435663Sck153898 * If this VFS supports system attributes; and we're looking at an 19445663Sck153898 * extended attribute directory; and we care about normalization 19455663Sck153898 * conflicts on this vfs; then we must check for normalization 19465663Sck153898 * conflicts with the sysattr name space. 19475663Sck153898 */ 19485663Sck153898 check_sysattrs = vfs_has_feature(vp->v_vfsp, VFSFT_XVATTR) && 19495663Sck153898 (vp->v_flag & V_XATTRDIR) && zfsvfs->z_norm && 19505663Sck153898 (flags & V_RDDIR_ENTFLAGS); 19515663Sck153898 19525663Sck153898 /* 1953789Sahrens * Transform to file-system independent format 1954789Sahrens */ 1955789Sahrens outcount = 0; 1956789Sahrens while (outcount < bytes_wanted) { 19573912Slling ino64_t objnum; 19583912Slling ushort_t reclen; 19593912Slling off64_t *next; 19603912Slling 1961789Sahrens /* 1962789Sahrens * Special case `.', `..', and `.zfs'. 1963789Sahrens */ 1964789Sahrens if (offset == 0) { 1965789Sahrens (void) strcpy(zap.za_name, "."); 19665331Samw zap.za_normalization_conflict = 0; 19673912Slling objnum = zp->z_id; 1968789Sahrens } else if (offset == 1) { 1969789Sahrens (void) strcpy(zap.za_name, ".."); 19705331Samw zap.za_normalization_conflict = 0; 19713912Slling objnum = zp->z_phys->zp_parent; 1972789Sahrens } else if (offset == 2 && zfs_show_ctldir(zp)) { 1973789Sahrens (void) strcpy(zap.za_name, ZFS_CTLDIR_NAME); 19745331Samw zap.za_normalization_conflict = 0; 19753912Slling objnum = ZFSCTL_INO_ROOT; 1976789Sahrens } else { 1977789Sahrens /* 1978789Sahrens * Grab next entry. 1979789Sahrens */ 1980789Sahrens if (error = zap_cursor_retrieve(&zc, &zap)) { 1981789Sahrens if ((*eofp = (error == ENOENT)) != 0) 1982789Sahrens break; 1983789Sahrens else 1984789Sahrens goto update; 1985789Sahrens } 1986789Sahrens 1987789Sahrens if (zap.za_integer_length != 8 || 1988789Sahrens zap.za_num_integers != 1) { 1989789Sahrens cmn_err(CE_WARN, "zap_readdir: bad directory " 1990789Sahrens "entry, obj = %lld, offset = %lld\n", 1991789Sahrens (u_longlong_t)zp->z_id, 1992789Sahrens (u_longlong_t)offset); 1993789Sahrens error = ENXIO; 1994789Sahrens goto update; 1995789Sahrens } 19963912Slling 19973912Slling objnum = ZFS_DIRENT_OBJ(zap.za_first_integer); 19983912Slling /* 19993912Slling * MacOS X can extract the object type here such as: 20003912Slling * uint8_t type = ZFS_DIRENT_TYPE(zap.za_first_integer); 20013912Slling */ 20025663Sck153898 20035663Sck153898 if (check_sysattrs && !zap.za_normalization_conflict) { 20045663Sck153898 zap.za_normalization_conflict = 20055663Sck153898 xattr_sysattr_casechk(zap.za_name); 20065663Sck153898 } 2007789Sahrens } 20085331Samw 20095331Samw if (flags & V_RDDIR_ENTFLAGS) 20105331Samw reclen = EDIRENT_RECLEN(strlen(zap.za_name)); 20115331Samw else 20125331Samw reclen = DIRENT64_RECLEN(strlen(zap.za_name)); 2013789Sahrens 2014789Sahrens /* 2015789Sahrens * Will this entry fit in the buffer? 2016789Sahrens */ 20173912Slling if (outcount + reclen > bufsize) { 2018789Sahrens /* 2019789Sahrens * Did we manage to fit anything in the buffer? 2020789Sahrens */ 2021789Sahrens if (!outcount) { 2022789Sahrens error = EINVAL; 2023789Sahrens goto update; 2024789Sahrens } 2025789Sahrens break; 2026789Sahrens } 20275331Samw if (flags & V_RDDIR_ENTFLAGS) { 20285331Samw /* 20295331Samw * Add extended flag entry: 20305331Samw */ 20315331Samw eodp->ed_ino = objnum; 20325331Samw eodp->ed_reclen = reclen; 20335331Samw /* NOTE: ed_off is the offset for the *next* entry */ 20345331Samw next = &(eodp->ed_off); 20355331Samw eodp->ed_eflags = zap.za_normalization_conflict ? 20365331Samw ED_CASE_CONFLICT : 0; 20375331Samw (void) strncpy(eodp->ed_name, zap.za_name, 20385331Samw EDIRENT_NAMELEN(reclen)); 20395331Samw eodp = (edirent_t *)((intptr_t)eodp + reclen); 20405331Samw } else { 20415331Samw /* 20425331Samw * Add normal entry: 20435331Samw */ 20445331Samw odp->d_ino = objnum; 20455331Samw odp->d_reclen = reclen; 20465331Samw /* NOTE: d_off is the offset for the *next* entry */ 20475331Samw next = &(odp->d_off); 20485331Samw (void) strncpy(odp->d_name, zap.za_name, 20495331Samw DIRENT64_NAMELEN(reclen)); 20505331Samw odp = (dirent64_t *)((intptr_t)odp + reclen); 20515331Samw } 20523912Slling outcount += reclen; 2053789Sahrens 2054789Sahrens ASSERT(outcount <= bufsize); 2055789Sahrens 2056789Sahrens /* Prefetch znode */ 2057869Sperrin if (prefetch) 20583912Slling dmu_prefetch(os, objnum, 0, 0); 2059789Sahrens 2060789Sahrens /* 2061789Sahrens * Move to the next entry, fill in the previous offset. 2062789Sahrens */ 2063789Sahrens if (offset > 2 || (offset == 2 && !zfs_show_ctldir(zp))) { 2064789Sahrens zap_cursor_advance(&zc); 2065789Sahrens offset = zap_cursor_serialize(&zc); 2066789Sahrens } else { 2067789Sahrens offset += 1; 2068789Sahrens } 2069789Sahrens *next = offset; 2070789Sahrens } 2071869Sperrin zp->z_zn_prefetch = B_FALSE; /* a lookup will re-enable pre-fetching */ 2072789Sahrens 2073789Sahrens if (uio->uio_segflg == UIO_SYSSPACE && uio->uio_iovcnt == 1) { 2074789Sahrens iovp->iov_base += outcount; 2075789Sahrens iovp->iov_len -= outcount; 2076789Sahrens uio->uio_resid -= outcount; 2077789Sahrens } else if (error = uiomove(outbuf, (long)outcount, UIO_READ, uio)) { 2078789Sahrens /* 2079789Sahrens * Reset the pointer. 2080789Sahrens */ 2081789Sahrens offset = uio->uio_loffset; 2082789Sahrens } 2083789Sahrens 2084789Sahrens update: 2085885Sahrens zap_cursor_fini(&zc); 2086789Sahrens if (uio->uio_segflg != UIO_SYSSPACE || uio->uio_iovcnt != 1) 2087789Sahrens kmem_free(outbuf, bufsize); 2088789Sahrens 2089789Sahrens if (error == ENOENT) 2090789Sahrens error = 0; 2091789Sahrens 2092789Sahrens ZFS_ACCESSTIME_STAMP(zfsvfs, zp); 2093789Sahrens 2094789Sahrens uio->uio_loffset = offset; 2095789Sahrens ZFS_EXIT(zfsvfs); 2096789Sahrens return (error); 2097789Sahrens } 2098789Sahrens 20994720Sfr157268 ulong_t zfs_fsync_sync_cnt = 4; 21004720Sfr157268 2101789Sahrens static int 21025331Samw zfs_fsync(vnode_t *vp, int syncflag, cred_t *cr, caller_context_t *ct) 2103789Sahrens { 2104789Sahrens znode_t *zp = VTOZ(vp); 2105789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 2106789Sahrens 21071773Seschrock /* 21081773Seschrock * Regardless of whether this is required for standards conformance, 21091773Seschrock * this is the logical behavior when fsync() is called on a file with 21101773Seschrock * dirty pages. We use B_ASYNC since the ZIL transactions are already 21111773Seschrock * going to be pushed out as part of the zil_commit(). 21121773Seschrock */ 21131773Seschrock if (vn_has_cached_data(vp) && !(syncflag & FNODSYNC) && 21141773Seschrock (vp->v_type == VREG) && !(IS_SWAPVP(vp))) 21155331Samw (void) VOP_PUTPAGE(vp, (offset_t)0, (size_t)0, B_ASYNC, cr, ct); 21161773Seschrock 21174720Sfr157268 (void) tsd_set(zfs_fsyncer_key, (void *)zfs_fsync_sync_cnt); 21184720Sfr157268 21195367Sahrens ZFS_ENTER(zfsvfs); 21205367Sahrens ZFS_VERIFY_ZP(zp); 21212638Sperrin zil_commit(zfsvfs->z_log, zp->z_last_itx, zp->z_id); 2122789Sahrens ZFS_EXIT(zfsvfs); 2123789Sahrens return (0); 2124789Sahrens } 2125789Sahrens 21265331Samw 2127789Sahrens /* 2128789Sahrens * Get the requested file attributes and place them in the provided 2129789Sahrens * vattr structure. 2130789Sahrens * 2131789Sahrens * IN: vp - vnode of file. 2132789Sahrens * vap - va_mask identifies requested attributes. 21335331Samw * If AT_XVATTR set, then optional attrs are requested 21345331Samw * flags - ATTR_NOACLCHECK (CIFS server context) 2135789Sahrens * cr - credentials of caller. 21365331Samw * ct - caller context 2137789Sahrens * 2138789Sahrens * OUT: vap - attribute values. 2139789Sahrens * 2140789Sahrens * RETURN: 0 (always succeeds) 2141789Sahrens */ 2142789Sahrens /* ARGSUSED */ 2143789Sahrens static int 21445331Samw zfs_getattr(vnode_t *vp, vattr_t *vap, int flags, cred_t *cr, 21455331Samw caller_context_t *ct) 2146789Sahrens { 2147789Sahrens znode_t *zp = VTOZ(vp); 2148789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 21495326Sek110237 znode_phys_t *pzp; 21505331Samw int error = 0; 21514543Smarks uint64_t links; 21525331Samw xvattr_t *xvap = (xvattr_t *)vap; /* vap may be an xvattr_t * */ 21535331Samw xoptattr_t *xoap = NULL; 21545331Samw boolean_t skipaclchk = (flags & ATTR_NOACLCHECK) ? B_TRUE : B_FALSE; 2155789Sahrens 21565367Sahrens ZFS_ENTER(zfsvfs); 21575367Sahrens ZFS_VERIFY_ZP(zp); 21585326Sek110237 pzp = zp->z_phys; 2159789Sahrens 21605331Samw mutex_enter(&zp->z_lock); 21615331Samw 21625331Samw /* 21635331Samw * If ACL is trivial don't bother looking for ACE_READ_ATTRIBUTES. 21645331Samw * Also, if we are the owner don't bother, since owner should 21655331Samw * always be allowed to read basic attributes of file. 21665331Samw */ 21675331Samw if (!(pzp->zp_flags & ZFS_ACL_TRIVIAL) && 21685331Samw (pzp->zp_uid != crgetuid(cr))) { 21695331Samw if (error = zfs_zaccess(zp, ACE_READ_ATTRIBUTES, 0, 21705331Samw skipaclchk, cr)) { 21715331Samw mutex_exit(&zp->z_lock); 21725331Samw ZFS_EXIT(zfsvfs); 21735331Samw return (error); 21745331Samw } 21755331Samw } 21765331Samw 2177789Sahrens /* 2178789Sahrens * Return all attributes. It's cheaper to provide the answer 2179789Sahrens * than to determine whether we were asked the question. 2180789Sahrens */ 2181789Sahrens 2182789Sahrens vap->va_type = vp->v_type; 2183789Sahrens vap->va_mode = pzp->zp_mode & MODEMASK; 21845771Sjp151216 zfs_fuid_map_ids(zp, cr, &vap->va_uid, &vap->va_gid); 2185789Sahrens vap->va_fsid = zp->z_zfsvfs->z_vfs->vfs_dev; 2186789Sahrens vap->va_nodeid = zp->z_id; 21874543Smarks if ((vp->v_flag & VROOT) && zfs_show_ctldir(zp)) 21884543Smarks links = pzp->zp_links + 1; 21894543Smarks else 21904543Smarks links = pzp->zp_links; 21914543Smarks vap->va_nlink = MIN(links, UINT32_MAX); /* nlink_t limit! */ 2192789Sahrens vap->va_size = pzp->zp_size; 21931816Smarks vap->va_rdev = vp->v_rdev; 2194789Sahrens vap->va_seq = zp->z_seq; 2195789Sahrens 21965331Samw /* 21975331Samw * Add in any requested optional attributes and the create time. 21985331Samw * Also set the corresponding bits in the returned attribute bitmap. 21995331Samw */ 22005331Samw if ((xoap = xva_getxoptattr(xvap)) != NULL && zfsvfs->z_use_fuids) { 22015331Samw if (XVA_ISSET_REQ(xvap, XAT_ARCHIVE)) { 22025331Samw xoap->xoa_archive = 22035331Samw ((pzp->zp_flags & ZFS_ARCHIVE) != 0); 22045331Samw XVA_SET_RTN(xvap, XAT_ARCHIVE); 22055331Samw } 22065331Samw 22075331Samw if (XVA_ISSET_REQ(xvap, XAT_READONLY)) { 22085331Samw xoap->xoa_readonly = 22095331Samw ((pzp->zp_flags & ZFS_READONLY) != 0); 22105331Samw XVA_SET_RTN(xvap, XAT_READONLY); 22115331Samw } 22125331Samw 22135331Samw if (XVA_ISSET_REQ(xvap, XAT_SYSTEM)) { 22145331Samw xoap->xoa_system = 22155331Samw ((pzp->zp_flags & ZFS_SYSTEM) != 0); 22165331Samw XVA_SET_RTN(xvap, XAT_SYSTEM); 22175331Samw } 22185331Samw 22195331Samw if (XVA_ISSET_REQ(xvap, XAT_HIDDEN)) { 22205331Samw xoap->xoa_hidden = 22215331Samw ((pzp->zp_flags & ZFS_HIDDEN) != 0); 22225331Samw XVA_SET_RTN(xvap, XAT_HIDDEN); 22235331Samw } 22245331Samw 22255331Samw if (XVA_ISSET_REQ(xvap, XAT_NOUNLINK)) { 22265331Samw xoap->xoa_nounlink = 22275331Samw ((pzp->zp_flags & ZFS_NOUNLINK) != 0); 22285331Samw XVA_SET_RTN(xvap, XAT_NOUNLINK); 22295331Samw } 22305331Samw 22315331Samw if (XVA_ISSET_REQ(xvap, XAT_IMMUTABLE)) { 22325331Samw xoap->xoa_immutable = 22335331Samw ((pzp->zp_flags & ZFS_IMMUTABLE) != 0); 22345331Samw XVA_SET_RTN(xvap, XAT_IMMUTABLE); 22355331Samw } 22365331Samw 22375331Samw if (XVA_ISSET_REQ(xvap, XAT_APPENDONLY)) { 22385331Samw xoap->xoa_appendonly = 22395331Samw ((pzp->zp_flags & ZFS_APPENDONLY) != 0); 22405331Samw XVA_SET_RTN(xvap, XAT_APPENDONLY); 22415331Samw } 22425331Samw 22435331Samw if (XVA_ISSET_REQ(xvap, XAT_NODUMP)) { 22445331Samw xoap->xoa_nodump = 22455331Samw ((pzp->zp_flags & ZFS_NODUMP) != 0); 22465331Samw XVA_SET_RTN(xvap, XAT_NODUMP); 22475331Samw } 22485331Samw 22495331Samw if (XVA_ISSET_REQ(xvap, XAT_OPAQUE)) { 22505331Samw xoap->xoa_opaque = 22515331Samw ((pzp->zp_flags & ZFS_OPAQUE) != 0); 22525331Samw XVA_SET_RTN(xvap, XAT_OPAQUE); 22535331Samw } 22545331Samw 22555331Samw if (XVA_ISSET_REQ(xvap, XAT_AV_QUARANTINED)) { 22565331Samw xoap->xoa_av_quarantined = 22575331Samw ((pzp->zp_flags & ZFS_AV_QUARANTINED) != 0); 22585331Samw XVA_SET_RTN(xvap, XAT_AV_QUARANTINED); 22595331Samw } 22605331Samw 22615331Samw if (XVA_ISSET_REQ(xvap, XAT_AV_MODIFIED)) { 22625331Samw xoap->xoa_av_modified = 22635331Samw ((pzp->zp_flags & ZFS_AV_MODIFIED) != 0); 22645331Samw XVA_SET_RTN(xvap, XAT_AV_MODIFIED); 22655331Samw } 22665331Samw 22675331Samw if (XVA_ISSET_REQ(xvap, XAT_AV_SCANSTAMP) && 22685331Samw vp->v_type == VREG && 22695331Samw (pzp->zp_flags & ZFS_BONUS_SCANSTAMP)) { 22705331Samw size_t len; 22715331Samw dmu_object_info_t doi; 22725331Samw 22735331Samw /* 22745331Samw * Only VREG files have anti-virus scanstamps, so we 22755331Samw * won't conflict with symlinks in the bonus buffer. 22765331Samw */ 22775331Samw dmu_object_info_from_db(zp->z_dbuf, &doi); 22785331Samw len = sizeof (xoap->xoa_av_scanstamp) + 22795331Samw sizeof (znode_phys_t); 22805331Samw if (len <= doi.doi_bonus_size) { 22815331Samw /* 22825331Samw * pzp points to the start of the 22835331Samw * znode_phys_t. pzp + 1 points to the 22845331Samw * first byte after the znode_phys_t. 22855331Samw */ 22865331Samw (void) memcpy(xoap->xoa_av_scanstamp, 22875331Samw pzp + 1, 22885331Samw sizeof (xoap->xoa_av_scanstamp)); 22895331Samw XVA_SET_RTN(xvap, XAT_AV_SCANSTAMP); 22905331Samw } 22915331Samw } 22925331Samw 22935331Samw if (XVA_ISSET_REQ(xvap, XAT_CREATETIME)) { 22945331Samw ZFS_TIME_DECODE(&xoap->xoa_createtime, pzp->zp_crtime); 22955331Samw XVA_SET_RTN(xvap, XAT_CREATETIME); 22965331Samw } 22975331Samw } 22985331Samw 2299789Sahrens ZFS_TIME_DECODE(&vap->va_atime, pzp->zp_atime); 2300789Sahrens ZFS_TIME_DECODE(&vap->va_mtime, pzp->zp_mtime); 2301789Sahrens ZFS_TIME_DECODE(&vap->va_ctime, pzp->zp_ctime); 2302789Sahrens 2303789Sahrens mutex_exit(&zp->z_lock); 2304789Sahrens 2305789Sahrens dmu_object_size_from_db(zp->z_dbuf, &vap->va_blksize, &vap->va_nblocks); 2306789Sahrens 2307789Sahrens if (zp->z_blksz == 0) { 2308789Sahrens /* 2309789Sahrens * Block size hasn't been set; suggest maximal I/O transfers. 2310789Sahrens */ 2311789Sahrens vap->va_blksize = zfsvfs->z_max_blksz; 2312789Sahrens } 2313789Sahrens 2314789Sahrens ZFS_EXIT(zfsvfs); 2315789Sahrens return (0); 2316789Sahrens } 2317789Sahrens 2318789Sahrens /* 2319789Sahrens * Set the file attributes to the values contained in the 2320789Sahrens * vattr structure. 2321789Sahrens * 2322789Sahrens * IN: vp - vnode of file to be modified. 2323789Sahrens * vap - new attribute values. 23245331Samw * If AT_XVATTR set, then optional attrs are being set 2325789Sahrens * flags - ATTR_UTIME set if non-default time values provided. 23265331Samw * - ATTR_NOACLCHECK (CIFS context only). 2327789Sahrens * cr - credentials of caller. 23285331Samw * ct - caller context 2329789Sahrens * 2330789Sahrens * RETURN: 0 if success 2331789Sahrens * error code if failure 2332789Sahrens * 2333789Sahrens * Timestamps: 2334789Sahrens * vp - ctime updated, mtime updated if size changed. 2335789Sahrens */ 2336789Sahrens /* ARGSUSED */ 2337789Sahrens static int 2338789Sahrens zfs_setattr(vnode_t *vp, vattr_t *vap, int flags, cred_t *cr, 2339789Sahrens caller_context_t *ct) 2340789Sahrens { 23415326Sek110237 znode_t *zp = VTOZ(vp); 23425326Sek110237 znode_phys_t *pzp; 2343789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 23445326Sek110237 zilog_t *zilog; 2345789Sahrens dmu_tx_t *tx; 23461878Smaybee vattr_t oldva; 2347789Sahrens uint_t mask = vap->va_mask; 23481878Smaybee uint_t saved_mask; 23492796Smarks int trim_mask = 0; 2350789Sahrens uint64_t new_mode; 23511231Smarks znode_t *attrzp; 2352789Sahrens int need_policy = FALSE; 2353789Sahrens int err; 23545331Samw zfs_fuid_info_t *fuidp = NULL; 23555331Samw xvattr_t *xvap = (xvattr_t *)vap; /* vap may be an xvattr_t * */ 23565331Samw xoptattr_t *xoap; 23575824Smarks zfs_acl_t *aclp = NULL; 23585331Samw boolean_t skipaclchk = (flags & ATTR_NOACLCHECK) ? B_TRUE : B_FALSE; 2359789Sahrens 2360789Sahrens if (mask == 0) 2361789Sahrens return (0); 2362789Sahrens 2363789Sahrens if (mask & AT_NOSET) 2364789Sahrens return (EINVAL); 2365789Sahrens 23665367Sahrens ZFS_ENTER(zfsvfs); 23675367Sahrens ZFS_VERIFY_ZP(zp); 23685331Samw 23695331Samw pzp = zp->z_phys; 23705331Samw zilog = zfsvfs->z_log; 23715331Samw 23725331Samw /* 23735331Samw * Make sure that if we have ephemeral uid/gid or xvattr specified 23745331Samw * that file system is at proper version level 23755331Samw */ 23765331Samw 23775331Samw if (zfsvfs->z_use_fuids == B_FALSE && 23785331Samw (((mask & AT_UID) && IS_EPHEMERAL(vap->va_uid)) || 23795331Samw ((mask & AT_GID) && IS_EPHEMERAL(vap->va_gid)) || 23805386Stimh (mask & AT_XVATTR))) { 23815386Stimh ZFS_EXIT(zfsvfs); 23825331Samw return (EINVAL); 23835386Stimh } 23845386Stimh 23855386Stimh if (mask & AT_SIZE && vp->v_type == VDIR) { 23865386Stimh ZFS_EXIT(zfsvfs); 2387789Sahrens return (EISDIR); 23885386Stimh } 23895386Stimh 23905386Stimh if (mask & AT_SIZE && vp->v_type != VREG && vp->v_type != VFIFO) { 23915386Stimh ZFS_EXIT(zfsvfs); 23921308Smarks return (EINVAL); 23935386Stimh } 23941308Smarks 23955331Samw /* 23965331Samw * If this is an xvattr_t, then get a pointer to the structure of 23975331Samw * optional attributes. If this is NULL, then we have a vattr_t. 23985331Samw */ 23995331Samw xoap = xva_getxoptattr(xvap); 24005331Samw 24015331Samw /* 24025331Samw * Immutable files can only alter immutable bit and atime 24035331Samw */ 24045331Samw if ((pzp->zp_flags & ZFS_IMMUTABLE) && 24055331Samw ((mask & (AT_SIZE|AT_UID|AT_GID|AT_MTIME|AT_MODE)) || 24065386Stimh ((mask & AT_XVATTR) && XVA_ISSET_REQ(xvap, XAT_CREATETIME)))) { 24075386Stimh ZFS_EXIT(zfsvfs); 24085331Samw return (EPERM); 24095386Stimh } 24105386Stimh 24115386Stimh if ((mask & AT_SIZE) && (pzp->zp_flags & ZFS_READONLY)) { 24125386Stimh ZFS_EXIT(zfsvfs); 24135331Samw return (EPERM); 24145386Stimh } 2415789Sahrens 24166064Smarks /* 24176064Smarks * Verify timestamps doesn't overflow 32 bits. 24186064Smarks * ZFS can handle large timestamps, but 32bit syscalls can't 24196064Smarks * handle times greater than 2039. This check should be removed 24206064Smarks * once large timestamps are fully supported. 24216064Smarks */ 24226064Smarks if (mask & (AT_ATIME | AT_MTIME)) { 24236064Smarks if (((mask & AT_ATIME) && TIMESPEC_OVERFLOW(&vap->va_atime)) || 24246064Smarks ((mask & AT_MTIME) && TIMESPEC_OVERFLOW(&vap->va_mtime))) { 24256064Smarks ZFS_EXIT(zfsvfs); 24266064Smarks return (EOVERFLOW); 24276064Smarks } 24286064Smarks } 24296064Smarks 2430789Sahrens top: 24311231Smarks attrzp = NULL; 2432789Sahrens 2433789Sahrens if (zfsvfs->z_vfs->vfs_flag & VFS_RDONLY) { 2434789Sahrens ZFS_EXIT(zfsvfs); 2435789Sahrens return (EROFS); 2436789Sahrens } 2437789Sahrens 2438789Sahrens /* 2439789Sahrens * First validate permissions 2440789Sahrens */ 2441789Sahrens 2442789Sahrens if (mask & AT_SIZE) { 24435331Samw err = zfs_zaccess(zp, ACE_WRITE_DATA, 0, skipaclchk, cr); 2444789Sahrens if (err) { 2445789Sahrens ZFS_EXIT(zfsvfs); 2446789Sahrens return (err); 2447789Sahrens } 24481878Smaybee /* 24491878Smaybee * XXX - Note, we are not providing any open 24501878Smaybee * mode flags here (like FNDELAY), so we may 24511878Smaybee * block if there are locks present... this 24521878Smaybee * should be addressed in openat(). 24531878Smaybee */ 2454*6992Smaybee /* XXX - would it be OK to generate a log record here? */ 2455*6992Smaybee err = zfs_freesp(zp, vap->va_size, 0, 0, FALSE); 24561878Smaybee if (err) { 24571878Smaybee ZFS_EXIT(zfsvfs); 24581878Smaybee return (err); 24591878Smaybee } 2460789Sahrens } 2461789Sahrens 24625331Samw if (mask & (AT_ATIME|AT_MTIME) || 24635331Samw ((mask & AT_XVATTR) && (XVA_ISSET_REQ(xvap, XAT_HIDDEN) || 24645331Samw XVA_ISSET_REQ(xvap, XAT_READONLY) || 24655331Samw XVA_ISSET_REQ(xvap, XAT_ARCHIVE) || 24665331Samw XVA_ISSET_REQ(xvap, XAT_CREATETIME) || 24675331Samw XVA_ISSET_REQ(xvap, XAT_SYSTEM)))) 24685331Samw need_policy = zfs_zaccess(zp, ACE_WRITE_ATTRIBUTES, 0, 24695331Samw skipaclchk, cr); 2470789Sahrens 2471789Sahrens if (mask & (AT_UID|AT_GID)) { 2472789Sahrens int idmask = (mask & (AT_UID|AT_GID)); 2473789Sahrens int take_owner; 2474789Sahrens int take_group; 2475789Sahrens 2476789Sahrens /* 2477913Smarks * NOTE: even if a new mode is being set, 2478913Smarks * we may clear S_ISUID/S_ISGID bits. 2479913Smarks */ 2480913Smarks 2481913Smarks if (!(mask & AT_MODE)) 2482913Smarks vap->va_mode = pzp->zp_mode; 2483913Smarks 2484913Smarks /* 2485789Sahrens * Take ownership or chgrp to group we are a member of 2486789Sahrens */ 2487789Sahrens 2488789Sahrens take_owner = (mask & AT_UID) && (vap->va_uid == crgetuid(cr)); 24895331Samw take_group = (mask & AT_GID) && 24905331Samw zfs_groupmember(zfsvfs, vap->va_gid, cr); 2491789Sahrens 2492789Sahrens /* 2493789Sahrens * If both AT_UID and AT_GID are set then take_owner and 2494789Sahrens * take_group must both be set in order to allow taking 2495789Sahrens * ownership. 2496789Sahrens * 2497789Sahrens * Otherwise, send the check through secpolicy_vnode_setattr() 2498789Sahrens * 2499789Sahrens */ 2500789Sahrens 2501789Sahrens if (((idmask == (AT_UID|AT_GID)) && take_owner && take_group) || 2502789Sahrens ((idmask == AT_UID) && take_owner) || 2503789Sahrens ((idmask == AT_GID) && take_group)) { 25045331Samw if (zfs_zaccess(zp, ACE_WRITE_OWNER, 0, 25055331Samw skipaclchk, cr) == 0) { 2506789Sahrens /* 2507789Sahrens * Remove setuid/setgid for non-privileged users 2508789Sahrens */ 25091115Smarks secpolicy_setid_clear(vap, cr); 25102796Smarks trim_mask = (mask & (AT_UID|AT_GID)); 2511789Sahrens } else { 2512789Sahrens need_policy = TRUE; 2513789Sahrens } 2514789Sahrens } else { 2515789Sahrens need_policy = TRUE; 2516789Sahrens } 2517789Sahrens } 2518789Sahrens 25192796Smarks mutex_enter(&zp->z_lock); 25202796Smarks oldva.va_mode = pzp->zp_mode; 25215771Sjp151216 zfs_fuid_map_ids(zp, cr, &oldva.va_uid, &oldva.va_gid); 25225331Samw if (mask & AT_XVATTR) { 25235331Samw if ((need_policy == FALSE) && 25245331Samw (XVA_ISSET_REQ(xvap, XAT_APPENDONLY) && 25255331Samw xoap->xoa_appendonly != 25265331Samw ((pzp->zp_flags & ZFS_APPENDONLY) != 0)) || 25275331Samw (XVA_ISSET_REQ(xvap, XAT_NOUNLINK) && 25285331Samw xoap->xoa_nounlink != 25295331Samw ((pzp->zp_flags & ZFS_NOUNLINK) != 0)) || 25305331Samw (XVA_ISSET_REQ(xvap, XAT_IMMUTABLE) && 25315331Samw xoap->xoa_immutable != 25325331Samw ((pzp->zp_flags & ZFS_IMMUTABLE) != 0)) || 25335331Samw (XVA_ISSET_REQ(xvap, XAT_NODUMP) && 25345331Samw xoap->xoa_nodump != 25355331Samw ((pzp->zp_flags & ZFS_NODUMP) != 0)) || 25365331Samw (XVA_ISSET_REQ(xvap, XAT_AV_MODIFIED) && 25375331Samw xoap->xoa_av_modified != 25385331Samw ((pzp->zp_flags & ZFS_AV_MODIFIED) != 0)) || 25395545Smarks ((XVA_ISSET_REQ(xvap, XAT_AV_QUARANTINED) && 25405545Smarks ((vp->v_type != VREG && xoap->xoa_av_quarantined) || 25415331Samw xoap->xoa_av_quarantined != 25425545Smarks ((pzp->zp_flags & ZFS_AV_QUARANTINED) != 0)))) || 25435331Samw (XVA_ISSET_REQ(xvap, XAT_AV_SCANSTAMP)) || 25445331Samw (XVA_ISSET_REQ(xvap, XAT_OPAQUE))) { 25455331Samw need_policy = TRUE; 25465331Samw } 25475331Samw } 25485331Samw 25492796Smarks mutex_exit(&zp->z_lock); 25502796Smarks 25512796Smarks if (mask & AT_MODE) { 25525331Samw if (zfs_zaccess(zp, ACE_WRITE_ACL, 0, skipaclchk, cr) == 0) { 25532796Smarks err = secpolicy_setid_setsticky_clear(vp, vap, 25542796Smarks &oldva, cr); 25552796Smarks if (err) { 25562796Smarks ZFS_EXIT(zfsvfs); 25572796Smarks return (err); 25582796Smarks } 25592796Smarks trim_mask |= AT_MODE; 25602796Smarks } else { 25612796Smarks need_policy = TRUE; 25622796Smarks } 25632796Smarks } 2564789Sahrens 2565789Sahrens if (need_policy) { 25661115Smarks /* 25671115Smarks * If trim_mask is set then take ownership 25682796Smarks * has been granted or write_acl is present and user 25692796Smarks * has the ability to modify mode. In that case remove 25702796Smarks * UID|GID and or MODE from mask so that 25711115Smarks * secpolicy_vnode_setattr() doesn't revoke it. 25721115Smarks */ 25732796Smarks 25742796Smarks if (trim_mask) { 25752796Smarks saved_mask = vap->va_mask; 25762796Smarks vap->va_mask &= ~trim_mask; 25772796Smarks } 2578789Sahrens err = secpolicy_vnode_setattr(cr, vp, vap, &oldva, flags, 25795331Samw (int (*)(void *, int, cred_t *))zfs_zaccess_unix, zp); 2580789Sahrens if (err) { 2581789Sahrens ZFS_EXIT(zfsvfs); 2582789Sahrens return (err); 2583789Sahrens } 25841115Smarks 25851115Smarks if (trim_mask) 25862796Smarks vap->va_mask |= saved_mask; 2587789Sahrens } 2588789Sahrens 2589789Sahrens /* 2590789Sahrens * secpolicy_vnode_setattr, or take ownership may have 2591789Sahrens * changed va_mask 2592789Sahrens */ 2593789Sahrens mask = vap->va_mask; 2594789Sahrens 2595789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 2596789Sahrens dmu_tx_hold_bonus(tx, zp->z_id); 25975824Smarks if (((mask & AT_UID) && IS_EPHEMERAL(vap->va_uid)) || 25985824Smarks ((mask & AT_GID) && IS_EPHEMERAL(vap->va_gid))) { 25995824Smarks if (zfsvfs->z_fuid_obj == 0) { 26005824Smarks dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT); 26015824Smarks dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, 26025824Smarks FUID_SIZE_ESTIMATE(zfsvfs)); 26035824Smarks dmu_tx_hold_zap(tx, MASTER_NODE_OBJ, FALSE, NULL); 26045824Smarks } else { 26055824Smarks dmu_tx_hold_bonus(tx, zfsvfs->z_fuid_obj); 26065824Smarks dmu_tx_hold_write(tx, zfsvfs->z_fuid_obj, 0, 26075824Smarks FUID_SIZE_ESTIMATE(zfsvfs)); 26085824Smarks } 26095331Samw } 2610789Sahrens 2611789Sahrens if (mask & AT_MODE) { 26121576Smarks uint64_t pmode = pzp->zp_mode; 26131576Smarks 26141576Smarks new_mode = (pmode & S_IFMT) | (vap->va_mode & ~S_IFMT); 2615789Sahrens 26165824Smarks if (err = zfs_acl_chmod_setattr(zp, &aclp, new_mode)) { 26175824Smarks dmu_tx_abort(tx); 26185824Smarks ZFS_EXIT(zfsvfs); 26195824Smarks return (err); 26205824Smarks } 26215331Samw if (pzp->zp_acl.z_acl_extern_obj) { 26225331Samw /* Are we upgrading ACL from old V0 format to new V1 */ 26235331Samw if (zfsvfs->z_version <= ZPL_VERSION_FUID && 26245331Samw pzp->zp_acl.z_acl_version == 26255331Samw ZFS_ACL_VERSION_INITIAL) { 26265331Samw dmu_tx_hold_free(tx, 26275331Samw pzp->zp_acl.z_acl_extern_obj, 0, 26285331Samw DMU_OBJECT_END); 26295331Samw dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 26305824Smarks 0, aclp->z_acl_bytes); 26315331Samw } else { 26325331Samw dmu_tx_hold_write(tx, 26335331Samw pzp->zp_acl.z_acl_extern_obj, 0, 26345824Smarks aclp->z_acl_bytes); 26355331Samw } 26366180Smarks } else if (aclp->z_acl_bytes > ZFS_ACE_SPACE) { 26376180Smarks dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 26386180Smarks 0, aclp->z_acl_bytes); 26395331Samw } 2640789Sahrens } 2641789Sahrens 26425331Samw if ((mask & (AT_UID | AT_GID)) && pzp->zp_xattr != 0) { 26435331Samw err = zfs_zget(zp->z_zfsvfs, pzp->zp_xattr, &attrzp); 26441231Smarks if (err) { 26451231Smarks dmu_tx_abort(tx); 26461231Smarks ZFS_EXIT(zfsvfs); 26475824Smarks if (aclp) 26485824Smarks zfs_acl_free(aclp); 26491231Smarks return (err); 26501231Smarks } 26511231Smarks dmu_tx_hold_bonus(tx, attrzp->z_id); 26521231Smarks } 26531231Smarks 2654789Sahrens err = dmu_tx_assign(tx, zfsvfs->z_assign); 2655789Sahrens if (err) { 26561231Smarks if (attrzp) 26571231Smarks VN_RELE(ZTOV(attrzp)); 26585824Smarks 26595824Smarks if (aclp) { 26605824Smarks zfs_acl_free(aclp); 26615824Smarks aclp = NULL; 26625824Smarks } 26635824Smarks 2664789Sahrens if (err == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 26652113Sahrens dmu_tx_wait(tx); 26662113Sahrens dmu_tx_abort(tx); 2667789Sahrens goto top; 2668789Sahrens } 26692113Sahrens dmu_tx_abort(tx); 2670789Sahrens ZFS_EXIT(zfsvfs); 2671789Sahrens return (err); 2672789Sahrens } 2673789Sahrens 2674789Sahrens dmu_buf_will_dirty(zp->z_dbuf, tx); 2675789Sahrens 2676789Sahrens /* 2677789Sahrens * Set each attribute requested. 2678789Sahrens * We group settings according to the locks they need to acquire. 2679789Sahrens * 2680789Sahrens * Note: you cannot set ctime directly, although it will be 2681789Sahrens * updated as a side-effect of calling this function. 2682789Sahrens */ 2683789Sahrens 2684789Sahrens mutex_enter(&zp->z_lock); 2685789Sahrens 2686789Sahrens if (mask & AT_MODE) { 26875824Smarks mutex_enter(&zp->z_acl_lock); 26885824Smarks zp->z_phys->zp_mode = new_mode; 26895824Smarks err = zfs_aclset_common(zp, aclp, cr, &fuidp, tx); 2690789Sahrens ASSERT3U(err, ==, 0); 26915824Smarks mutex_exit(&zp->z_acl_lock); 2692789Sahrens } 2693789Sahrens 26941231Smarks if (attrzp) 26951231Smarks mutex_enter(&attrzp->z_lock); 26961231Smarks 26971231Smarks if (mask & AT_UID) { 26985331Samw pzp->zp_uid = zfs_fuid_create(zfsvfs, 26995771Sjp151216 vap->va_uid, cr, ZFS_OWNER, tx, &fuidp); 27001231Smarks if (attrzp) { 27015331Samw attrzp->z_phys->zp_uid = zfs_fuid_create(zfsvfs, 27025771Sjp151216 vap->va_uid, cr, ZFS_OWNER, tx, &fuidp); 27031231Smarks } 27041231Smarks } 27051231Smarks 27061231Smarks if (mask & AT_GID) { 27075331Samw pzp->zp_gid = zfs_fuid_create(zfsvfs, vap->va_gid, 27085771Sjp151216 cr, ZFS_GROUP, tx, &fuidp); 27091231Smarks if (attrzp) 27105331Samw attrzp->z_phys->zp_gid = zfs_fuid_create(zfsvfs, 27115771Sjp151216 vap->va_gid, cr, ZFS_GROUP, tx, &fuidp); 27121231Smarks } 27131231Smarks 27145824Smarks if (aclp) 27155824Smarks zfs_acl_free(aclp); 27165824Smarks 27171231Smarks if (attrzp) 27181231Smarks mutex_exit(&attrzp->z_lock); 2719789Sahrens 2720789Sahrens if (mask & AT_ATIME) 2721789Sahrens ZFS_TIME_ENCODE(&vap->va_atime, pzp->zp_atime); 2722789Sahrens 2723789Sahrens if (mask & AT_MTIME) 2724789Sahrens ZFS_TIME_ENCODE(&vap->va_mtime, pzp->zp_mtime); 2725789Sahrens 2726*6992Smaybee /* XXX - shouldn't this be done *before* the ATIME/MTIME checks? */ 27271878Smaybee if (mask & AT_SIZE) 2728789Sahrens zfs_time_stamper_locked(zp, CONTENT_MODIFIED, tx); 27291878Smaybee else if (mask != 0) 2730789Sahrens zfs_time_stamper_locked(zp, STATE_CHANGED, tx); 27315331Samw /* 27325331Samw * Do this after setting timestamps to prevent timestamp 27335331Samw * update from toggling bit 27345331Samw */ 27355331Samw 27365331Samw if (xoap && (mask & AT_XVATTR)) { 27375331Samw if (XVA_ISSET_REQ(xvap, XAT_AV_SCANSTAMP)) { 27385331Samw size_t len; 27395331Samw dmu_object_info_t doi; 27405331Samw 27415331Samw ASSERT(vp->v_type == VREG); 27425331Samw 27435331Samw /* Grow the bonus buffer if necessary. */ 27445331Samw dmu_object_info_from_db(zp->z_dbuf, &doi); 27455331Samw len = sizeof (xoap->xoa_av_scanstamp) + 27465331Samw sizeof (znode_phys_t); 27475331Samw if (len > doi.doi_bonus_size) 27485331Samw VERIFY(dmu_set_bonus(zp->z_dbuf, len, tx) == 0); 27495331Samw } 27505331Samw zfs_xvattr_set(zp, xvap); 27515331Samw } 2752789Sahrens 27531878Smaybee if (mask != 0) 27545331Samw zfs_log_setattr(zilog, tx, TX_SETATTR, zp, vap, mask, fuidp); 27555331Samw 27565331Samw if (fuidp) 27575331Samw zfs_fuid_info_free(fuidp); 2758789Sahrens mutex_exit(&zp->z_lock); 2759789Sahrens 27601231Smarks if (attrzp) 27611231Smarks VN_RELE(ZTOV(attrzp)); 27621231Smarks 2763789Sahrens dmu_tx_commit(tx); 2764789Sahrens 2765789Sahrens ZFS_EXIT(zfsvfs); 2766789Sahrens return (err); 2767789Sahrens } 2768789Sahrens 27693271Smaybee typedef struct zfs_zlock { 27703271Smaybee krwlock_t *zl_rwlock; /* lock we acquired */ 27713271Smaybee znode_t *zl_znode; /* znode we held */ 27723271Smaybee struct zfs_zlock *zl_next; /* next in list */ 27733271Smaybee } zfs_zlock_t; 27743271Smaybee 27753271Smaybee /* 27763271Smaybee * Drop locks and release vnodes that were held by zfs_rename_lock(). 27773271Smaybee */ 27783271Smaybee static void 27793271Smaybee zfs_rename_unlock(zfs_zlock_t **zlpp) 27803271Smaybee { 27813271Smaybee zfs_zlock_t *zl; 27823271Smaybee 27833271Smaybee while ((zl = *zlpp) != NULL) { 27843271Smaybee if (zl->zl_znode != NULL) 27853271Smaybee VN_RELE(ZTOV(zl->zl_znode)); 27863271Smaybee rw_exit(zl->zl_rwlock); 27873271Smaybee *zlpp = zl->zl_next; 27883271Smaybee kmem_free(zl, sizeof (*zl)); 27893271Smaybee } 27903271Smaybee } 27913271Smaybee 2792789Sahrens /* 2793789Sahrens * Search back through the directory tree, using the ".." entries. 2794789Sahrens * Lock each directory in the chain to prevent concurrent renames. 2795789Sahrens * Fail any attempt to move a directory into one of its own descendants. 2796789Sahrens * XXX - z_parent_lock can overlap with map or grow locks 2797789Sahrens */ 2798789Sahrens static int 2799789Sahrens zfs_rename_lock(znode_t *szp, znode_t *tdzp, znode_t *sdzp, zfs_zlock_t **zlpp) 2800789Sahrens { 2801789Sahrens zfs_zlock_t *zl; 28023638Sbillm znode_t *zp = tdzp; 2803789Sahrens uint64_t rootid = zp->z_zfsvfs->z_root; 2804789Sahrens uint64_t *oidp = &zp->z_id; 2805789Sahrens krwlock_t *rwlp = &szp->z_parent_lock; 2806789Sahrens krw_t rw = RW_WRITER; 2807789Sahrens 2808789Sahrens /* 2809789Sahrens * First pass write-locks szp and compares to zp->z_id. 2810789Sahrens * Later passes read-lock zp and compare to zp->z_parent. 2811789Sahrens */ 2812789Sahrens do { 28133271Smaybee if (!rw_tryenter(rwlp, rw)) { 28143271Smaybee /* 28153271Smaybee * Another thread is renaming in this path. 28163271Smaybee * Note that if we are a WRITER, we don't have any 28173271Smaybee * parent_locks held yet. 28183271Smaybee */ 28193271Smaybee if (rw == RW_READER && zp->z_id > szp->z_id) { 28203271Smaybee /* 28213271Smaybee * Drop our locks and restart 28223271Smaybee */ 28233271Smaybee zfs_rename_unlock(&zl); 28243271Smaybee *zlpp = NULL; 28253271Smaybee zp = tdzp; 28263271Smaybee oidp = &zp->z_id; 28273271Smaybee rwlp = &szp->z_parent_lock; 28283271Smaybee rw = RW_WRITER; 28293271Smaybee continue; 28303271Smaybee } else { 28313271Smaybee /* 28323271Smaybee * Wait for other thread to drop its locks 28333271Smaybee */ 28343271Smaybee rw_enter(rwlp, rw); 28353271Smaybee } 28363271Smaybee } 28373271Smaybee 2838789Sahrens zl = kmem_alloc(sizeof (*zl), KM_SLEEP); 2839789Sahrens zl->zl_rwlock = rwlp; 2840789Sahrens zl->zl_znode = NULL; 2841789Sahrens zl->zl_next = *zlpp; 2842789Sahrens *zlpp = zl; 2843789Sahrens 2844789Sahrens if (*oidp == szp->z_id) /* We're a descendant of szp */ 2845789Sahrens return (EINVAL); 2846789Sahrens 2847789Sahrens if (*oidp == rootid) /* We've hit the top */ 2848789Sahrens return (0); 2849789Sahrens 2850789Sahrens if (rw == RW_READER) { /* i.e. not the first pass */ 2851789Sahrens int error = zfs_zget(zp->z_zfsvfs, *oidp, &zp); 2852789Sahrens if (error) 2853789Sahrens return (error); 2854789Sahrens zl->zl_znode = zp; 2855789Sahrens } 2856789Sahrens oidp = &zp->z_phys->zp_parent; 2857789Sahrens rwlp = &zp->z_parent_lock; 2858789Sahrens rw = RW_READER; 2859789Sahrens 2860789Sahrens } while (zp->z_id != sdzp->z_id); 2861789Sahrens 2862789Sahrens return (0); 2863789Sahrens } 2864789Sahrens 2865789Sahrens /* 2866789Sahrens * Move an entry from the provided source directory to the target 2867789Sahrens * directory. Change the entry name as indicated. 2868789Sahrens * 2869789Sahrens * IN: sdvp - Source directory containing the "old entry". 2870789Sahrens * snm - Old entry name. 2871789Sahrens * tdvp - Target directory to contain the "new entry". 2872789Sahrens * tnm - New entry name. 2873789Sahrens * cr - credentials of caller. 28745331Samw * ct - caller context 28755331Samw * flags - case flags 2876789Sahrens * 2877789Sahrens * RETURN: 0 if success 2878789Sahrens * error code if failure 2879789Sahrens * 2880789Sahrens * Timestamps: 2881789Sahrens * sdvp,tdvp - ctime|mtime updated 2882789Sahrens */ 28835331Samw /*ARGSUSED*/ 2884789Sahrens static int 28855331Samw zfs_rename(vnode_t *sdvp, char *snm, vnode_t *tdvp, char *tnm, cred_t *cr, 28865331Samw caller_context_t *ct, int flags) 2887789Sahrens { 2888789Sahrens znode_t *tdzp, *szp, *tzp; 2889789Sahrens znode_t *sdzp = VTOZ(sdvp); 2890789Sahrens zfsvfs_t *zfsvfs = sdzp->z_zfsvfs; 28915326Sek110237 zilog_t *zilog; 2892789Sahrens vnode_t *realvp; 2893789Sahrens zfs_dirlock_t *sdl, *tdl; 2894789Sahrens dmu_tx_t *tx; 2895789Sahrens zfs_zlock_t *zl; 28965331Samw int cmp, serr, terr; 28975331Samw int error = 0; 28985331Samw int zflg = 0; 2899789Sahrens 29005367Sahrens ZFS_ENTER(zfsvfs); 29015367Sahrens ZFS_VERIFY_ZP(sdzp); 29025326Sek110237 zilog = zfsvfs->z_log; 2903789Sahrens 2904789Sahrens /* 2905789Sahrens * Make sure we have the real vp for the target directory. 2906789Sahrens */ 29075331Samw if (VOP_REALVP(tdvp, &realvp, ct) == 0) 2908789Sahrens tdvp = realvp; 2909789Sahrens 2910789Sahrens if (tdvp->v_vfsp != sdvp->v_vfsp) { 2911789Sahrens ZFS_EXIT(zfsvfs); 2912789Sahrens return (EXDEV); 2913789Sahrens } 2914789Sahrens 2915789Sahrens tdzp = VTOZ(tdvp); 29165367Sahrens ZFS_VERIFY_ZP(tdzp); 29175498Stimh if (zfsvfs->z_utf8 && u8_validate(tnm, 29185331Samw strlen(tnm), NULL, U8_VALIDATE_ENTIRE, &error) < 0) { 29195331Samw ZFS_EXIT(zfsvfs); 29205331Samw return (EILSEQ); 29215331Samw } 29225331Samw 29235331Samw if (flags & FIGNORECASE) 29245331Samw zflg |= ZCILOOK; 29255331Samw 2926789Sahrens top: 2927789Sahrens szp = NULL; 2928789Sahrens tzp = NULL; 2929789Sahrens zl = NULL; 2930789Sahrens 2931789Sahrens /* 2932789Sahrens * This is to prevent the creation of links into attribute space 2933789Sahrens * by renaming a linked file into/outof an attribute directory. 2934789Sahrens * See the comment in zfs_link() for why this is considered bad. 2935789Sahrens */ 2936789Sahrens if ((tdzp->z_phys->zp_flags & ZFS_XATTR) != 2937789Sahrens (sdzp->z_phys->zp_flags & ZFS_XATTR)) { 2938789Sahrens ZFS_EXIT(zfsvfs); 2939789Sahrens return (EINVAL); 2940789Sahrens } 2941789Sahrens 2942789Sahrens /* 2943789Sahrens * Lock source and target directory entries. To prevent deadlock, 2944789Sahrens * a lock ordering must be defined. We lock the directory with 2945789Sahrens * the smallest object id first, or if it's a tie, the one with 2946789Sahrens * the lexically first name. 2947789Sahrens */ 2948789Sahrens if (sdzp->z_id < tdzp->z_id) { 2949789Sahrens cmp = -1; 2950789Sahrens } else if (sdzp->z_id > tdzp->z_id) { 2951789Sahrens cmp = 1; 2952789Sahrens } else { 29535331Samw /* 29545331Samw * First compare the two name arguments without 29555331Samw * considering any case folding. 29565331Samw */ 29575331Samw int nofold = (zfsvfs->z_norm & ~U8_TEXTPREP_TOUPPER); 29585331Samw 29595331Samw cmp = u8_strcmp(snm, tnm, 0, nofold, U8_UNICODE_LATEST, &error); 29605498Stimh ASSERT(error == 0 || !zfsvfs->z_utf8); 2961789Sahrens if (cmp == 0) { 2962789Sahrens /* 2963789Sahrens * POSIX: "If the old argument and the new argument 2964789Sahrens * both refer to links to the same existing file, 2965789Sahrens * the rename() function shall return successfully 2966789Sahrens * and perform no other action." 2967789Sahrens */ 2968789Sahrens ZFS_EXIT(zfsvfs); 2969789Sahrens return (0); 2970789Sahrens } 29715331Samw /* 29725331Samw * If the file system is case-folding, then we may 29735331Samw * have some more checking to do. A case-folding file 29745331Samw * system is either supporting mixed case sensitivity 29755331Samw * access or is completely case-insensitive. Note 29765331Samw * that the file system is always case preserving. 29775331Samw * 29785331Samw * In mixed sensitivity mode case sensitive behavior 29795331Samw * is the default. FIGNORECASE must be used to 29805331Samw * explicitly request case insensitive behavior. 29815331Samw * 29825331Samw * If the source and target names provided differ only 29835331Samw * by case (e.g., a request to rename 'tim' to 'Tim'), 29845331Samw * we will treat this as a special case in the 29855331Samw * case-insensitive mode: as long as the source name 29865331Samw * is an exact match, we will allow this to proceed as 29875331Samw * a name-change request. 29885331Samw */ 29895498Stimh if ((zfsvfs->z_case == ZFS_CASE_INSENSITIVE || 29905498Stimh (zfsvfs->z_case == ZFS_CASE_MIXED && 29915498Stimh flags & FIGNORECASE)) && 29925331Samw u8_strcmp(snm, tnm, 0, zfsvfs->z_norm, U8_UNICODE_LATEST, 29935331Samw &error) == 0) { 29945331Samw /* 29955331Samw * case preserving rename request, require exact 29965331Samw * name matches 29975331Samw */ 29985331Samw zflg |= ZCIEXACT; 29995331Samw zflg &= ~ZCILOOK; 30005331Samw } 3001789Sahrens } 30025331Samw 3003789Sahrens if (cmp < 0) { 30045331Samw serr = zfs_dirent_lock(&sdl, sdzp, snm, &szp, 30055331Samw ZEXISTS | zflg, NULL, NULL); 30065331Samw terr = zfs_dirent_lock(&tdl, 30075331Samw tdzp, tnm, &tzp, ZRENAMING | zflg, NULL, NULL); 3008789Sahrens } else { 30095331Samw terr = zfs_dirent_lock(&tdl, 30105331Samw tdzp, tnm, &tzp, zflg, NULL, NULL); 30115331Samw serr = zfs_dirent_lock(&sdl, 30125331Samw sdzp, snm, &szp, ZEXISTS | ZRENAMING | zflg, 30135331Samw NULL, NULL); 3014789Sahrens } 3015789Sahrens 3016789Sahrens if (serr) { 3017789Sahrens /* 3018789Sahrens * Source entry invalid or not there. 3019789Sahrens */ 3020789Sahrens if (!terr) { 3021789Sahrens zfs_dirent_unlock(tdl); 3022789Sahrens if (tzp) 3023789Sahrens VN_RELE(ZTOV(tzp)); 3024789Sahrens } 3025789Sahrens if (strcmp(snm, "..") == 0) 3026789Sahrens serr = EINVAL; 3027789Sahrens ZFS_EXIT(zfsvfs); 3028789Sahrens return (serr); 3029789Sahrens } 3030789Sahrens if (terr) { 3031789Sahrens zfs_dirent_unlock(sdl); 3032789Sahrens VN_RELE(ZTOV(szp)); 3033789Sahrens if (strcmp(tnm, "..") == 0) 3034789Sahrens terr = EINVAL; 3035789Sahrens ZFS_EXIT(zfsvfs); 3036789Sahrens return (terr); 3037789Sahrens } 3038789Sahrens 3039789Sahrens /* 3040789Sahrens * Must have write access at the source to remove the old entry 3041789Sahrens * and write access at the target to create the new entry. 3042789Sahrens * Note that if target and source are the same, this can be 3043789Sahrens * done in a single check. 3044789Sahrens */ 3045789Sahrens 3046789Sahrens if (error = zfs_zaccess_rename(sdzp, szp, tdzp, tzp, cr)) 3047789Sahrens goto out; 3048789Sahrens 3049789Sahrens if (ZTOV(szp)->v_type == VDIR) { 3050789Sahrens /* 3051789Sahrens * Check to make sure rename is valid. 3052789Sahrens * Can't do a move like this: /usr/a/b to /usr/a/b/c/d 3053789Sahrens */ 3054789Sahrens if (error = zfs_rename_lock(szp, tdzp, sdzp, &zl)) 3055789Sahrens goto out; 3056789Sahrens } 3057789Sahrens 3058789Sahrens /* 3059789Sahrens * Does target exist? 3060789Sahrens */ 3061789Sahrens if (tzp) { 3062789Sahrens /* 3063789Sahrens * Source and target must be the same type. 3064789Sahrens */ 3065789Sahrens if (ZTOV(szp)->v_type == VDIR) { 3066789Sahrens if (ZTOV(tzp)->v_type != VDIR) { 3067789Sahrens error = ENOTDIR; 3068789Sahrens goto out; 3069789Sahrens } 3070789Sahrens } else { 3071789Sahrens if (ZTOV(tzp)->v_type == VDIR) { 3072789Sahrens error = EISDIR; 3073789Sahrens goto out; 3074789Sahrens } 3075789Sahrens } 3076789Sahrens /* 3077789Sahrens * POSIX dictates that when the source and target 3078789Sahrens * entries refer to the same file object, rename 3079789Sahrens * must do nothing and exit without error. 3080789Sahrens */ 3081789Sahrens if (szp->z_id == tzp->z_id) { 3082789Sahrens error = 0; 3083789Sahrens goto out; 3084789Sahrens } 3085789Sahrens } 3086789Sahrens 30875331Samw vnevent_rename_src(ZTOV(szp), sdvp, snm, ct); 3088789Sahrens if (tzp) 30895331Samw vnevent_rename_dest(ZTOV(tzp), tdvp, tnm, ct); 30904863Spraks 30914863Spraks /* 30924863Spraks * notify the target directory if it is not the same 30934863Spraks * as source directory. 30944863Spraks */ 30954863Spraks if (tdvp != sdvp) { 30965331Samw vnevent_rename_dest_dir(tdvp, ct); 30974863Spraks } 3098789Sahrens 3099789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 3100789Sahrens dmu_tx_hold_bonus(tx, szp->z_id); /* nlink changes */ 3101789Sahrens dmu_tx_hold_bonus(tx, sdzp->z_id); /* nlink changes */ 31021544Seschrock dmu_tx_hold_zap(tx, sdzp->z_id, FALSE, snm); 31031544Seschrock dmu_tx_hold_zap(tx, tdzp->z_id, TRUE, tnm); 31041544Seschrock if (sdzp != tdzp) 3105789Sahrens dmu_tx_hold_bonus(tx, tdzp->z_id); /* nlink changes */ 31061544Seschrock if (tzp) 31071544Seschrock dmu_tx_hold_bonus(tx, tzp->z_id); /* parent changes */ 31083461Sahrens dmu_tx_hold_zap(tx, zfsvfs->z_unlinkedobj, FALSE, NULL); 3109789Sahrens error = dmu_tx_assign(tx, zfsvfs->z_assign); 3110789Sahrens if (error) { 3111789Sahrens if (zl != NULL) 3112789Sahrens zfs_rename_unlock(&zl); 3113789Sahrens zfs_dirent_unlock(sdl); 3114789Sahrens zfs_dirent_unlock(tdl); 3115789Sahrens VN_RELE(ZTOV(szp)); 3116789Sahrens if (tzp) 3117789Sahrens VN_RELE(ZTOV(tzp)); 3118789Sahrens if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 31192113Sahrens dmu_tx_wait(tx); 31202113Sahrens dmu_tx_abort(tx); 3121789Sahrens goto top; 3122789Sahrens } 31232113Sahrens dmu_tx_abort(tx); 3124789Sahrens ZFS_EXIT(zfsvfs); 3125789Sahrens return (error); 3126789Sahrens } 3127789Sahrens 3128789Sahrens if (tzp) /* Attempt to remove the existing target */ 31295331Samw error = zfs_link_destroy(tdl, tzp, tx, zflg, NULL); 3130789Sahrens 3131789Sahrens if (error == 0) { 3132789Sahrens error = zfs_link_create(tdl, szp, tx, ZRENAMING); 3133789Sahrens if (error == 0) { 31345331Samw szp->z_phys->zp_flags |= ZFS_AV_MODIFIED; 31355331Samw 3136789Sahrens error = zfs_link_destroy(sdl, szp, tx, ZRENAMING, NULL); 3137789Sahrens ASSERT(error == 0); 31385331Samw 31395331Samw zfs_log_rename(zilog, tx, 31405331Samw TX_RENAME | (flags & FIGNORECASE ? TX_CI : 0), 31415331Samw sdzp, sdl->dl_name, tdzp, tdl->dl_name, szp); 31426976Seschrock 31436976Seschrock /* Update path information for the target vnode */ 31446976Seschrock vn_renamepath(tdvp, ZTOV(szp), tnm, strlen(tnm)); 3145789Sahrens } 3146789Sahrens } 3147789Sahrens 3148789Sahrens dmu_tx_commit(tx); 3149789Sahrens out: 3150789Sahrens if (zl != NULL) 3151789Sahrens zfs_rename_unlock(&zl); 3152789Sahrens 3153789Sahrens zfs_dirent_unlock(sdl); 3154789Sahrens zfs_dirent_unlock(tdl); 3155789Sahrens 3156789Sahrens VN_RELE(ZTOV(szp)); 3157789Sahrens if (tzp) 3158789Sahrens VN_RELE(ZTOV(tzp)); 3159789Sahrens 3160789Sahrens ZFS_EXIT(zfsvfs); 3161789Sahrens return (error); 3162789Sahrens } 3163789Sahrens 3164789Sahrens /* 3165789Sahrens * Insert the indicated symbolic reference entry into the directory. 3166789Sahrens * 3167789Sahrens * IN: dvp - Directory to contain new symbolic link. 3168789Sahrens * link - Name for new symlink entry. 3169789Sahrens * vap - Attributes of new entry. 3170789Sahrens * target - Target path of new symlink. 3171789Sahrens * cr - credentials of caller. 31725331Samw * ct - caller context 31735331Samw * flags - case flags 3174789Sahrens * 3175789Sahrens * RETURN: 0 if success 3176789Sahrens * error code if failure 3177789Sahrens * 3178789Sahrens * Timestamps: 3179789Sahrens * dvp - ctime|mtime updated 3180789Sahrens */ 31815331Samw /*ARGSUSED*/ 3182789Sahrens static int 31835331Samw zfs_symlink(vnode_t *dvp, char *name, vattr_t *vap, char *link, cred_t *cr, 31845331Samw caller_context_t *ct, int flags) 3185789Sahrens { 3186789Sahrens znode_t *zp, *dzp = VTOZ(dvp); 3187789Sahrens zfs_dirlock_t *dl; 3188789Sahrens dmu_tx_t *tx; 3189789Sahrens zfsvfs_t *zfsvfs = dzp->z_zfsvfs; 31905326Sek110237 zilog_t *zilog; 3191789Sahrens int len = strlen(link); 3192789Sahrens int error; 31935331Samw int zflg = ZNEW; 31945331Samw zfs_fuid_info_t *fuidp = NULL; 3195789Sahrens 3196789Sahrens ASSERT(vap->va_type == VLNK); 3197789Sahrens 31985367Sahrens ZFS_ENTER(zfsvfs); 31995367Sahrens ZFS_VERIFY_ZP(dzp); 32005326Sek110237 zilog = zfsvfs->z_log; 32015331Samw 32025498Stimh if (zfsvfs->z_utf8 && u8_validate(name, strlen(name), 32035331Samw NULL, U8_VALIDATE_ENTIRE, &error) < 0) { 32045331Samw ZFS_EXIT(zfsvfs); 32055331Samw return (EILSEQ); 32065331Samw } 32075331Samw if (flags & FIGNORECASE) 32085331Samw zflg |= ZCILOOK; 3209789Sahrens top: 32105331Samw if (error = zfs_zaccess(dzp, ACE_ADD_FILE, 0, B_FALSE, cr)) { 3211789Sahrens ZFS_EXIT(zfsvfs); 3212789Sahrens return (error); 3213789Sahrens } 3214789Sahrens 3215789Sahrens if (len > MAXPATHLEN) { 3216789Sahrens ZFS_EXIT(zfsvfs); 3217789Sahrens return (ENAMETOOLONG); 3218789Sahrens } 3219789Sahrens 3220789Sahrens /* 3221789Sahrens * Attempt to lock directory; fail if entry already exists. 3222789Sahrens */ 32235331Samw error = zfs_dirent_lock(&dl, dzp, name, &zp, zflg, NULL, NULL); 32245331Samw if (error) { 3225789Sahrens ZFS_EXIT(zfsvfs); 3226789Sahrens return (error); 3227789Sahrens } 3228789Sahrens 3229789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 3230789Sahrens dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, MAX(1, len)); 3231789Sahrens dmu_tx_hold_bonus(tx, dzp->z_id); 32321544Seschrock dmu_tx_hold_zap(tx, dzp->z_id, TRUE, name); 3233789Sahrens if (dzp->z_phys->zp_flags & ZFS_INHERIT_ACE) 3234789Sahrens dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, SPA_MAXBLOCKSIZE); 32355824Smarks if (IS_EPHEMERAL(crgetuid(cr)) || IS_EPHEMERAL(crgetgid(cr))) { 32365824Smarks if (zfsvfs->z_fuid_obj == 0) { 32375824Smarks dmu_tx_hold_bonus(tx, DMU_NEW_OBJECT); 32385824Smarks dmu_tx_hold_write(tx, DMU_NEW_OBJECT, 0, 32395824Smarks FUID_SIZE_ESTIMATE(zfsvfs)); 32405824Smarks dmu_tx_hold_zap(tx, MASTER_NODE_OBJ, FALSE, NULL); 32415824Smarks } else { 32425824Smarks dmu_tx_hold_bonus(tx, zfsvfs->z_fuid_obj); 32435824Smarks dmu_tx_hold_write(tx, zfsvfs->z_fuid_obj, 0, 32445824Smarks FUID_SIZE_ESTIMATE(zfsvfs)); 32455824Smarks } 32465331Samw } 3247789Sahrens error = dmu_tx_assign(tx, zfsvfs->z_assign); 3248789Sahrens if (error) { 3249789Sahrens zfs_dirent_unlock(dl); 3250789Sahrens if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 32512113Sahrens dmu_tx_wait(tx); 32522113Sahrens dmu_tx_abort(tx); 3253789Sahrens goto top; 3254789Sahrens } 32552113Sahrens dmu_tx_abort(tx); 3256789Sahrens ZFS_EXIT(zfsvfs); 3257789Sahrens return (error); 3258789Sahrens } 3259789Sahrens 3260789Sahrens dmu_buf_will_dirty(dzp->z_dbuf, tx); 3261789Sahrens 3262789Sahrens /* 3263789Sahrens * Create a new object for the symlink. 3264789Sahrens * Put the link content into bonus buffer if it will fit; 3265789Sahrens * otherwise, store it just like any other file data. 3266789Sahrens */ 3267789Sahrens if (sizeof (znode_phys_t) + len <= dmu_bonus_max()) { 32685446Sahrens zfs_mknode(dzp, vap, tx, cr, 0, &zp, len, NULL, &fuidp); 3269789Sahrens if (len != 0) 3270789Sahrens bcopy(link, zp->z_phys + 1, len); 3271789Sahrens } else { 3272789Sahrens dmu_buf_t *dbp; 32731669Sperrin 32745446Sahrens zfs_mknode(dzp, vap, tx, cr, 0, &zp, 0, NULL, &fuidp); 32751669Sperrin /* 32761669Sperrin * Nothing can access the znode yet so no locking needed 32771669Sperrin * for growing the znode's blocksize. 32781669Sperrin */ 32791669Sperrin zfs_grow_blocksize(zp, len, tx); 3280789Sahrens 32815446Sahrens VERIFY(0 == dmu_buf_hold(zfsvfs->z_os, 32825446Sahrens zp->z_id, 0, FTAG, &dbp)); 3283789Sahrens dmu_buf_will_dirty(dbp, tx); 3284789Sahrens 3285789Sahrens ASSERT3U(len, <=, dbp->db_size); 3286789Sahrens bcopy(link, dbp->db_data, len); 32871544Seschrock dmu_buf_rele(dbp, FTAG); 3288789Sahrens } 3289789Sahrens zp->z_phys->zp_size = len; 3290789Sahrens 3291789Sahrens /* 3292789Sahrens * Insert the new object into the directory. 3293789Sahrens */ 3294789Sahrens (void) zfs_link_create(dl, zp, tx, ZNEW); 3295789Sahrens out: 32965331Samw if (error == 0) { 32975331Samw uint64_t txtype = TX_SYMLINK; 32985331Samw if (flags & FIGNORECASE) 32995331Samw txtype |= TX_CI; 33005331Samw zfs_log_symlink(zilog, tx, txtype, dzp, zp, name, link); 33015331Samw } 33025331Samw if (fuidp) 33035331Samw zfs_fuid_info_free(fuidp); 3304789Sahrens 3305789Sahrens dmu_tx_commit(tx); 3306789Sahrens 3307789Sahrens zfs_dirent_unlock(dl); 3308789Sahrens 3309789Sahrens VN_RELE(ZTOV(zp)); 3310789Sahrens 3311789Sahrens ZFS_EXIT(zfsvfs); 3312789Sahrens return (error); 3313789Sahrens } 3314789Sahrens 3315789Sahrens /* 3316789Sahrens * Return, in the buffer contained in the provided uio structure, 3317789Sahrens * the symbolic path referred to by vp. 3318789Sahrens * 3319789Sahrens * IN: vp - vnode of symbolic link. 3320789Sahrens * uoip - structure to contain the link path. 3321789Sahrens * cr - credentials of caller. 33225331Samw * ct - caller context 3323789Sahrens * 3324789Sahrens * OUT: uio - structure to contain the link path. 3325789Sahrens * 3326789Sahrens * RETURN: 0 if success 3327789Sahrens * error code if failure 3328789Sahrens * 3329789Sahrens * Timestamps: 3330789Sahrens * vp - atime updated 3331789Sahrens */ 3332789Sahrens /* ARGSUSED */ 3333789Sahrens static int 33345331Samw zfs_readlink(vnode_t *vp, uio_t *uio, cred_t *cr, caller_context_t *ct) 3335789Sahrens { 3336789Sahrens znode_t *zp = VTOZ(vp); 3337789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 3338789Sahrens size_t bufsz; 3339789Sahrens int error; 3340789Sahrens 33415367Sahrens ZFS_ENTER(zfsvfs); 33425367Sahrens ZFS_VERIFY_ZP(zp); 3343789Sahrens 3344789Sahrens bufsz = (size_t)zp->z_phys->zp_size; 3345789Sahrens if (bufsz + sizeof (znode_phys_t) <= zp->z_dbuf->db_size) { 3346789Sahrens error = uiomove(zp->z_phys + 1, 3347789Sahrens MIN((size_t)bufsz, uio->uio_resid), UIO_READ, uio); 3348789Sahrens } else { 33491544Seschrock dmu_buf_t *dbp; 33501544Seschrock error = dmu_buf_hold(zfsvfs->z_os, zp->z_id, 0, FTAG, &dbp); 33511544Seschrock if (error) { 3352789Sahrens ZFS_EXIT(zfsvfs); 3353789Sahrens return (error); 3354789Sahrens } 3355789Sahrens error = uiomove(dbp->db_data, 3356789Sahrens MIN((size_t)bufsz, uio->uio_resid), UIO_READ, uio); 33571544Seschrock dmu_buf_rele(dbp, FTAG); 3358789Sahrens } 3359789Sahrens 3360789Sahrens ZFS_ACCESSTIME_STAMP(zfsvfs, zp); 3361789Sahrens ZFS_EXIT(zfsvfs); 3362789Sahrens return (error); 3363789Sahrens } 3364789Sahrens 3365789Sahrens /* 3366789Sahrens * Insert a new entry into directory tdvp referencing svp. 3367789Sahrens * 3368789Sahrens * IN: tdvp - Directory to contain new entry. 3369789Sahrens * svp - vnode of new entry. 3370789Sahrens * name - name of new entry. 3371789Sahrens * cr - credentials of caller. 33725331Samw * ct - caller context 3373789Sahrens * 3374789Sahrens * RETURN: 0 if success 3375789Sahrens * error code if failure 3376789Sahrens * 3377789Sahrens * Timestamps: 3378789Sahrens * tdvp - ctime|mtime updated 3379789Sahrens * svp - ctime updated 3380789Sahrens */ 3381789Sahrens /* ARGSUSED */ 3382789Sahrens static int 33835331Samw zfs_link(vnode_t *tdvp, vnode_t *svp, char *name, cred_t *cr, 33845331Samw caller_context_t *ct, int flags) 3385789Sahrens { 3386789Sahrens znode_t *dzp = VTOZ(tdvp); 3387789Sahrens znode_t *tzp, *szp; 3388789Sahrens zfsvfs_t *zfsvfs = dzp->z_zfsvfs; 33895326Sek110237 zilog_t *zilog; 3390789Sahrens zfs_dirlock_t *dl; 3391789Sahrens dmu_tx_t *tx; 3392789Sahrens vnode_t *realvp; 3393789Sahrens int error; 33945331Samw int zf = ZNEW; 33955331Samw uid_t owner; 3396789Sahrens 3397789Sahrens ASSERT(tdvp->v_type == VDIR); 3398789Sahrens 33995367Sahrens ZFS_ENTER(zfsvfs); 34005367Sahrens ZFS_VERIFY_ZP(dzp); 34015326Sek110237 zilog = zfsvfs->z_log; 3402789Sahrens 34035331Samw if (VOP_REALVP(svp, &realvp, ct) == 0) 3404789Sahrens svp = realvp; 3405789Sahrens 3406789Sahrens if (svp->v_vfsp != tdvp->v_vfsp) { 3407789Sahrens ZFS_EXIT(zfsvfs); 3408789Sahrens return (EXDEV); 3409789Sahrens } 34105367Sahrens szp = VTOZ(svp); 34115367Sahrens ZFS_VERIFY_ZP(szp); 3412789Sahrens 34135498Stimh if (zfsvfs->z_utf8 && u8_validate(name, 34145331Samw strlen(name), NULL, U8_VALIDATE_ENTIRE, &error) < 0) { 34155331Samw ZFS_EXIT(zfsvfs); 34165331Samw return (EILSEQ); 34175331Samw } 34185331Samw if (flags & FIGNORECASE) 34195331Samw zf |= ZCILOOK; 34205331Samw 3421789Sahrens top: 3422789Sahrens /* 3423789Sahrens * We do not support links between attributes and non-attributes 3424789Sahrens * because of the potential security risk of creating links 3425789Sahrens * into "normal" file space in order to circumvent restrictions 3426789Sahrens * imposed in attribute space. 3427789Sahrens */ 3428789Sahrens if ((szp->z_phys->zp_flags & ZFS_XATTR) != 3429789Sahrens (dzp->z_phys->zp_flags & ZFS_XATTR)) { 3430789Sahrens ZFS_EXIT(zfsvfs); 3431789Sahrens return (EINVAL); 3432789Sahrens } 3433789Sahrens 3434789Sahrens /* 3435789Sahrens * POSIX dictates that we return EPERM here. 3436789Sahrens * Better choices include ENOTSUP or EISDIR. 3437789Sahrens */ 3438789Sahrens if (svp->v_type == VDIR) { 3439789Sahrens ZFS_EXIT(zfsvfs); 3440789Sahrens return (EPERM); 3441789Sahrens } 3442789Sahrens 34435959Smarks owner = zfs_fuid_map_id(zfsvfs, szp->z_phys->zp_uid, cr, ZFS_OWNER); 34445331Samw if (owner != crgetuid(cr) && 3445789Sahrens secpolicy_basic_link(cr) != 0) { 3446789Sahrens ZFS_EXIT(zfsvfs); 3447789Sahrens return (EPERM); 3448789Sahrens } 3449789Sahrens 34505331Samw if (error = zfs_zaccess(dzp, ACE_ADD_FILE, 0, B_FALSE, cr)) { 3451789Sahrens ZFS_EXIT(zfsvfs); 3452789Sahrens return (error); 3453789Sahrens } 3454789Sahrens 3455789Sahrens /* 3456789Sahrens * Attempt to lock directory; fail if entry already exists. 3457789Sahrens */ 34585331Samw error = zfs_dirent_lock(&dl, dzp, name, &tzp, zf, NULL, NULL); 34595331Samw if (error) { 3460789Sahrens ZFS_EXIT(zfsvfs); 3461789Sahrens return (error); 3462789Sahrens } 3463789Sahrens 3464789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 3465789Sahrens dmu_tx_hold_bonus(tx, szp->z_id); 34661544Seschrock dmu_tx_hold_zap(tx, dzp->z_id, TRUE, name); 3467789Sahrens error = dmu_tx_assign(tx, zfsvfs->z_assign); 3468789Sahrens if (error) { 3469789Sahrens zfs_dirent_unlock(dl); 3470789Sahrens if (error == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 34712113Sahrens dmu_tx_wait(tx); 34722113Sahrens dmu_tx_abort(tx); 3473789Sahrens goto top; 3474789Sahrens } 34752113Sahrens dmu_tx_abort(tx); 3476789Sahrens ZFS_EXIT(zfsvfs); 3477789Sahrens return (error); 3478789Sahrens } 3479789Sahrens 3480789Sahrens error = zfs_link_create(dl, szp, tx, 0); 3481789Sahrens 34825331Samw if (error == 0) { 34835331Samw uint64_t txtype = TX_LINK; 34845331Samw if (flags & FIGNORECASE) 34855331Samw txtype |= TX_CI; 34865331Samw zfs_log_link(zilog, tx, txtype, dzp, szp, name); 34875331Samw } 3488789Sahrens 3489789Sahrens dmu_tx_commit(tx); 3490789Sahrens 3491789Sahrens zfs_dirent_unlock(dl); 3492789Sahrens 34934863Spraks if (error == 0) { 34945331Samw vnevent_link(svp, ct); 34954863Spraks } 34964863Spraks 3497789Sahrens ZFS_EXIT(zfsvfs); 3498789Sahrens return (error); 3499789Sahrens } 3500789Sahrens 3501789Sahrens /* 3502789Sahrens * zfs_null_putapage() is used when the file system has been force 3503789Sahrens * unmounted. It just drops the pages. 3504789Sahrens */ 3505789Sahrens /* ARGSUSED */ 3506789Sahrens static int 3507789Sahrens zfs_null_putapage(vnode_t *vp, page_t *pp, u_offset_t *offp, 3508789Sahrens size_t *lenp, int flags, cred_t *cr) 3509789Sahrens { 3510789Sahrens pvn_write_done(pp, B_INVAL|B_FORCE|B_ERROR); 3511789Sahrens return (0); 3512789Sahrens } 3513789Sahrens 35142688Smaybee /* 35152688Smaybee * Push a page out to disk, klustering if possible. 35162688Smaybee * 35172688Smaybee * IN: vp - file to push page to. 35182688Smaybee * pp - page to push. 35192688Smaybee * flags - additional flags. 35202688Smaybee * cr - credentials of caller. 35212688Smaybee * 35222688Smaybee * OUT: offp - start of range pushed. 35232688Smaybee * lenp - len of range pushed. 35242688Smaybee * 35252688Smaybee * RETURN: 0 if success 35262688Smaybee * error code if failure 35272688Smaybee * 35282688Smaybee * NOTE: callers must have locked the page to be pushed. On 35292688Smaybee * exit, the page (and all other pages in the kluster) must be 35302688Smaybee * unlocked. 35312688Smaybee */ 3532789Sahrens /* ARGSUSED */ 3533789Sahrens static int 3534789Sahrens zfs_putapage(vnode_t *vp, page_t *pp, u_offset_t *offp, 3535789Sahrens size_t *lenp, int flags, cred_t *cr) 3536789Sahrens { 3537789Sahrens znode_t *zp = VTOZ(vp); 3538789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 3539789Sahrens zilog_t *zilog = zfsvfs->z_log; 3540789Sahrens dmu_tx_t *tx; 35411669Sperrin rl_t *rl; 35422688Smaybee u_offset_t off, koff; 35432688Smaybee size_t len, klen; 35444709Smaybee uint64_t filesz; 3545789Sahrens int err; 3546789Sahrens 35474709Smaybee filesz = zp->z_phys->zp_size; 35482688Smaybee off = pp->p_offset; 35492688Smaybee len = PAGESIZE; 35502688Smaybee /* 35512688Smaybee * If our blocksize is bigger than the page size, try to kluster 35522688Smaybee * muiltiple pages so that we write a full block (thus avoiding 35532688Smaybee * a read-modify-write). 35542688Smaybee */ 35554709Smaybee if (off < filesz && zp->z_blksz > PAGESIZE) { 35562688Smaybee if (!ISP2(zp->z_blksz)) { 35572688Smaybee /* Only one block in the file. */ 35582688Smaybee klen = P2ROUNDUP((ulong_t)zp->z_blksz, PAGESIZE); 35592688Smaybee koff = 0; 35602688Smaybee } else { 35612688Smaybee klen = zp->z_blksz; 35622688Smaybee koff = P2ALIGN(off, (u_offset_t)klen); 35632688Smaybee } 35642688Smaybee ASSERT(koff <= filesz); 35652688Smaybee if (koff + klen > filesz) 35662688Smaybee klen = P2ROUNDUP(filesz - koff, (uint64_t)PAGESIZE); 35672688Smaybee pp = pvn_write_kluster(vp, pp, &off, &len, koff, klen, flags); 35682688Smaybee } 35692688Smaybee ASSERT3U(btop(len), ==, btopr(len)); 3570789Sahrens top: 35712688Smaybee rl = zfs_range_lock(zp, off, len, RL_WRITER); 35721819Smaybee /* 35731819Smaybee * Can't push pages past end-of-file. 35741819Smaybee */ 35754709Smaybee filesz = zp->z_phys->zp_size; 35764709Smaybee if (off >= filesz) { 35774709Smaybee /* ignore all pages */ 35782688Smaybee err = 0; 35792688Smaybee goto out; 35804709Smaybee } else if (off + len > filesz) { 35814709Smaybee int npages = btopr(filesz - off); 35822688Smaybee page_t *trunc; 35832688Smaybee 35842688Smaybee page_list_break(&pp, &trunc, npages); 35854709Smaybee /* ignore pages past end of file */ 35862688Smaybee if (trunc) 35874709Smaybee pvn_write_done(trunc, flags); 35884709Smaybee len = filesz - off; 35891819Smaybee } 3590789Sahrens 3591789Sahrens tx = dmu_tx_create(zfsvfs->z_os); 3592789Sahrens dmu_tx_hold_write(tx, zp->z_id, off, len); 3593789Sahrens dmu_tx_hold_bonus(tx, zp->z_id); 3594789Sahrens err = dmu_tx_assign(tx, zfsvfs->z_assign); 3595789Sahrens if (err != 0) { 3596789Sahrens if (err == ERESTART && zfsvfs->z_assign == TXG_NOWAIT) { 35972688Smaybee zfs_range_unlock(rl); 35982113Sahrens dmu_tx_wait(tx); 35992113Sahrens dmu_tx_abort(tx); 36002688Smaybee err = 0; 3601789Sahrens goto top; 3602789Sahrens } 36032113Sahrens dmu_tx_abort(tx); 3604789Sahrens goto out; 3605789Sahrens } 3606789Sahrens 36072688Smaybee if (zp->z_blksz <= PAGESIZE) { 36082688Smaybee caddr_t va = ppmapin(pp, PROT_READ, (caddr_t)-1); 36092688Smaybee ASSERT3U(len, <=, PAGESIZE); 36102688Smaybee dmu_write(zfsvfs->z_os, zp->z_id, off, len, va, tx); 36112688Smaybee ppmapout(va); 36122688Smaybee } else { 36132688Smaybee err = dmu_write_pages(zfsvfs->z_os, zp->z_id, off, len, pp, tx); 36142688Smaybee } 36152688Smaybee 36162688Smaybee if (err == 0) { 36172688Smaybee zfs_time_stamper(zp, CONTENT_MODIFIED, tx); 36183638Sbillm zfs_log_write(zilog, tx, TX_WRITE, zp, off, len, 0); 36192688Smaybee dmu_tx_commit(tx); 36202688Smaybee } 36212688Smaybee 36222688Smaybee out: 36232237Smaybee zfs_range_unlock(rl); 36244709Smaybee pvn_write_done(pp, (err ? B_ERROR : 0) | flags); 3625789Sahrens if (offp) 3626789Sahrens *offp = off; 3627789Sahrens if (lenp) 3628789Sahrens *lenp = len; 3629789Sahrens 3630789Sahrens return (err); 3631789Sahrens } 3632789Sahrens 3633789Sahrens /* 3634789Sahrens * Copy the portion of the file indicated from pages into the file. 3635789Sahrens * The pages are stored in a page list attached to the files vnode. 3636789Sahrens * 3637789Sahrens * IN: vp - vnode of file to push page data to. 3638789Sahrens * off - position in file to put data. 3639789Sahrens * len - amount of data to write. 3640789Sahrens * flags - flags to control the operation. 3641789Sahrens * cr - credentials of caller. 36425331Samw * ct - caller context. 3643789Sahrens * 3644789Sahrens * RETURN: 0 if success 3645789Sahrens * error code if failure 3646789Sahrens * 3647789Sahrens * Timestamps: 3648789Sahrens * vp - ctime|mtime updated 3649789Sahrens */ 36505331Samw /*ARGSUSED*/ 3651789Sahrens static int 36525331Samw zfs_putpage(vnode_t *vp, offset_t off, size_t len, int flags, cred_t *cr, 36535331Samw caller_context_t *ct) 3654789Sahrens { 3655789Sahrens znode_t *zp = VTOZ(vp); 3656789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 3657789Sahrens page_t *pp; 3658789Sahrens size_t io_len; 3659789Sahrens u_offset_t io_off; 36601669Sperrin uint64_t filesz; 3661789Sahrens int error = 0; 3662789Sahrens 36635367Sahrens ZFS_ENTER(zfsvfs); 36645367Sahrens ZFS_VERIFY_ZP(zp); 3665789Sahrens 3666789Sahrens if (len == 0) { 3667789Sahrens /* 3668789Sahrens * Search the entire vp list for pages >= off. 3669789Sahrens */ 3670789Sahrens error = pvn_vplist_dirty(vp, (u_offset_t)off, zfs_putapage, 3671789Sahrens flags, cr); 36721472Sperrin goto out; 3673789Sahrens } 3674789Sahrens 36751669Sperrin filesz = zp->z_phys->zp_size; /* get consistent copy of zp_size */ 36761669Sperrin if (off > filesz) { 3677789Sahrens /* past end of file */ 3678789Sahrens ZFS_EXIT(zfsvfs); 3679789Sahrens return (0); 3680789Sahrens } 3681789Sahrens 36821669Sperrin len = MIN(len, filesz - off); 3683789Sahrens 36841472Sperrin for (io_off = off; io_off < off + len; io_off += io_len) { 3685789Sahrens if ((flags & B_INVAL) || ((flags & B_ASYNC) == 0)) { 36861669Sperrin pp = page_lookup(vp, io_off, 36874339Sperrin (flags & (B_INVAL | B_FREE)) ? SE_EXCL : SE_SHARED); 3688789Sahrens } else { 3689789Sahrens pp = page_lookup_nowait(vp, io_off, 36904339Sperrin (flags & B_FREE) ? SE_EXCL : SE_SHARED); 3691789Sahrens } 3692789Sahrens 3693789Sahrens if (pp != NULL && pvn_getdirty(pp, flags)) { 3694789Sahrens int err; 3695789Sahrens 3696789Sahrens /* 3697789Sahrens * Found a dirty page to push 3698789Sahrens */ 36991669Sperrin err = zfs_putapage(vp, pp, &io_off, &io_len, flags, cr); 37001669Sperrin if (err) 3701789Sahrens error = err; 3702789Sahrens } else { 3703789Sahrens io_len = PAGESIZE; 3704789Sahrens } 3705789Sahrens } 37061472Sperrin out: 37072638Sperrin if ((flags & B_ASYNC) == 0) 37082638Sperrin zil_commit(zfsvfs->z_log, UINT64_MAX, zp->z_id); 3709789Sahrens ZFS_EXIT(zfsvfs); 3710789Sahrens return (error); 3711789Sahrens } 3712789Sahrens 37135331Samw /*ARGSUSED*/ 3714789Sahrens void 37155331Samw zfs_inactive(vnode_t *vp, cred_t *cr, caller_context_t *ct) 3716789Sahrens { 3717789Sahrens znode_t *zp = VTOZ(vp); 3718789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 3719789Sahrens int error; 3720789Sahrens 37215326Sek110237 rw_enter(&zfsvfs->z_teardown_inactive_lock, RW_READER); 37225446Sahrens if (zp->z_dbuf == NULL) { 37235446Sahrens /* 37245642Smaybee * The fs has been unmounted, or we did a 37255642Smaybee * suspend/resume and this file no longer exists. 37265446Sahrens */ 3727789Sahrens if (vn_has_cached_data(vp)) { 3728789Sahrens (void) pvn_vplist_dirty(vp, 0, zfs_null_putapage, 3729789Sahrens B_INVAL, cr); 3730789Sahrens } 3731789Sahrens 37321544Seschrock mutex_enter(&zp->z_lock); 3733789Sahrens vp->v_count = 0; /* count arrives as 1 */ 37345446Sahrens mutex_exit(&zp->z_lock); 37355642Smaybee rw_exit(&zfsvfs->z_teardown_inactive_lock); 37365446Sahrens zfs_znode_free(zp); 3737789Sahrens return; 3738789Sahrens } 3739789Sahrens 3740789Sahrens /* 3741789Sahrens * Attempt to push any data in the page cache. If this fails 3742789Sahrens * we will get kicked out later in zfs_zinactive(). 3743789Sahrens */ 37441298Sperrin if (vn_has_cached_data(vp)) { 37451298Sperrin (void) pvn_vplist_dirty(vp, 0, zfs_putapage, B_INVAL|B_ASYNC, 37461298Sperrin cr); 37471298Sperrin } 3748789Sahrens 37493461Sahrens if (zp->z_atime_dirty && zp->z_unlinked == 0) { 3750789Sahrens dmu_tx_t *tx = dmu_tx_create(zfsvfs->z_os); 3751789Sahrens 3752789Sahrens dmu_tx_hold_bonus(tx, zp->z_id); 3753789Sahrens error = dmu_tx_assign(tx, TXG_WAIT); 3754789Sahrens if (error) { 3755789Sahrens dmu_tx_abort(tx); 3756789Sahrens } else { 3757789Sahrens dmu_buf_will_dirty(zp->z_dbuf, tx); 3758789Sahrens mutex_enter(&zp->z_lock); 3759789Sahrens zp->z_atime_dirty = 0; 3760789Sahrens mutex_exit(&zp->z_lock); 3761789Sahrens dmu_tx_commit(tx); 3762789Sahrens } 3763789Sahrens } 3764789Sahrens 3765789Sahrens zfs_zinactive(zp); 37665326Sek110237 rw_exit(&zfsvfs->z_teardown_inactive_lock); 3767789Sahrens } 3768789Sahrens 3769789Sahrens /* 3770789Sahrens * Bounds-check the seek operation. 3771789Sahrens * 3772789Sahrens * IN: vp - vnode seeking within 3773789Sahrens * ooff - old file offset 3774789Sahrens * noffp - pointer to new file offset 37755331Samw * ct - caller context 3776789Sahrens * 3777789Sahrens * RETURN: 0 if success 3778789Sahrens * EINVAL if new offset invalid 3779789Sahrens */ 3780789Sahrens /* ARGSUSED */ 3781789Sahrens static int 37825331Samw zfs_seek(vnode_t *vp, offset_t ooff, offset_t *noffp, 37835331Samw caller_context_t *ct) 3784789Sahrens { 3785789Sahrens if (vp->v_type == VDIR) 3786789Sahrens return (0); 3787789Sahrens return ((*noffp < 0 || *noffp > MAXOFFSET_T) ? EINVAL : 0); 3788789Sahrens } 3789789Sahrens 3790789Sahrens /* 3791789Sahrens * Pre-filter the generic locking function to trap attempts to place 3792789Sahrens * a mandatory lock on a memory mapped file. 3793789Sahrens */ 3794789Sahrens static int 3795789Sahrens zfs_frlock(vnode_t *vp, int cmd, flock64_t *bfp, int flag, offset_t offset, 37965331Samw flk_callback_t *flk_cbp, cred_t *cr, caller_context_t *ct) 3797789Sahrens { 3798789Sahrens znode_t *zp = VTOZ(vp); 3799789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 3800789Sahrens int error; 3801789Sahrens 38025367Sahrens ZFS_ENTER(zfsvfs); 38035367Sahrens ZFS_VERIFY_ZP(zp); 3804789Sahrens 3805789Sahrens /* 38061544Seschrock * We are following the UFS semantics with respect to mapcnt 38071544Seschrock * here: If we see that the file is mapped already, then we will 38081544Seschrock * return an error, but we don't worry about races between this 38091544Seschrock * function and zfs_map(). 3810789Sahrens */ 38111544Seschrock if (zp->z_mapcnt > 0 && MANDMODE((mode_t)zp->z_phys->zp_mode)) { 3812789Sahrens ZFS_EXIT(zfsvfs); 3813789Sahrens return (EAGAIN); 3814789Sahrens } 38155331Samw error = fs_frlock(vp, cmd, bfp, flag, offset, flk_cbp, cr, ct); 3816789Sahrens ZFS_EXIT(zfsvfs); 3817789Sahrens return (error); 3818789Sahrens } 3819789Sahrens 3820789Sahrens /* 3821789Sahrens * If we can't find a page in the cache, we will create a new page 3822789Sahrens * and fill it with file data. For efficiency, we may try to fill 38231669Sperrin * multiple pages at once (klustering). 3824789Sahrens */ 3825789Sahrens static int 3826789Sahrens zfs_fillpage(vnode_t *vp, u_offset_t off, struct seg *seg, 3827789Sahrens caddr_t addr, page_t *pl[], size_t plsz, enum seg_rw rw) 3828789Sahrens { 3829789Sahrens znode_t *zp = VTOZ(vp); 3830789Sahrens page_t *pp, *cur_pp; 3831789Sahrens objset_t *os = zp->z_zfsvfs->z_os; 3832789Sahrens caddr_t va; 3833789Sahrens u_offset_t io_off, total; 3834789Sahrens uint64_t oid = zp->z_id; 3835789Sahrens size_t io_len; 38361669Sperrin uint64_t filesz; 3837789Sahrens int err; 3838789Sahrens 3839789Sahrens /* 3840789Sahrens * If we are only asking for a single page don't bother klustering. 3841789Sahrens */ 38421669Sperrin filesz = zp->z_phys->zp_size; /* get consistent copy of zp_size */ 38432688Smaybee if (off >= filesz) 38442688Smaybee return (EFAULT); 38452688Smaybee if (plsz == PAGESIZE || zp->z_blksz <= PAGESIZE) { 3846789Sahrens io_off = off; 3847789Sahrens io_len = PAGESIZE; 3848789Sahrens pp = page_create_va(vp, io_off, io_len, PG_WAIT, seg, addr); 3849789Sahrens } else { 3850789Sahrens /* 3851789Sahrens * Try to fill a kluster of pages (a blocks worth). 3852789Sahrens */ 3853789Sahrens size_t klen; 3854789Sahrens u_offset_t koff; 3855789Sahrens 3856789Sahrens if (!ISP2(zp->z_blksz)) { 3857789Sahrens /* Only one block in the file. */ 3858789Sahrens klen = P2ROUNDUP((ulong_t)zp->z_blksz, PAGESIZE); 3859789Sahrens koff = 0; 3860789Sahrens } else { 38613131Sgw25295 /* 38623131Sgw25295 * It would be ideal to align our offset to the 38633131Sgw25295 * blocksize but doing so has resulted in some 38643131Sgw25295 * strange application crashes. For now, we 38653131Sgw25295 * leave the offset as is and only adjust the 38663131Sgw25295 * length if we are off the end of the file. 38673131Sgw25295 */ 38683131Sgw25295 koff = off; 3869789Sahrens klen = plsz; 3870789Sahrens } 38711819Smaybee ASSERT(koff <= filesz); 38721819Smaybee if (koff + klen > filesz) 38731819Smaybee klen = P2ROUNDUP(filesz, (uint64_t)PAGESIZE) - koff; 38742688Smaybee ASSERT3U(off, >=, koff); 38752688Smaybee ASSERT3U(off, <, koff + klen); 3876789Sahrens pp = pvn_read_kluster(vp, off, seg, addr, &io_off, 38774339Sperrin &io_len, koff, klen, 0); 3878789Sahrens } 3879789Sahrens if (pp == NULL) { 3880789Sahrens /* 3881789Sahrens * Some other thread entered the page before us. 3882789Sahrens * Return to zfs_getpage to retry the lookup. 3883789Sahrens */ 3884789Sahrens *pl = NULL; 3885789Sahrens return (0); 3886789Sahrens } 3887789Sahrens 3888789Sahrens /* 3889789Sahrens * Fill the pages in the kluster. 3890789Sahrens */ 3891789Sahrens cur_pp = pp; 3892789Sahrens for (total = io_off + io_len; io_off < total; io_off += PAGESIZE) { 38932688Smaybee ASSERT3U(io_off, ==, cur_pp->p_offset); 3894789Sahrens va = ppmapin(cur_pp, PROT_READ | PROT_WRITE, (caddr_t)-1); 38951544Seschrock err = dmu_read(os, oid, io_off, PAGESIZE, va); 3896789Sahrens ppmapout(va); 3897789Sahrens if (err) { 3898789Sahrens /* On error, toss the entire kluster */ 3899789Sahrens pvn_read_done(pp, B_ERROR); 3900789Sahrens return (err); 3901789Sahrens } 3902789Sahrens cur_pp = cur_pp->p_next; 3903789Sahrens } 3904789Sahrens out: 3905789Sahrens /* 3906789Sahrens * Fill in the page list array from the kluster. If 3907789Sahrens * there are too many pages in the kluster, return 3908789Sahrens * as many pages as possible starting from the desired 3909789Sahrens * offset `off'. 3910789Sahrens * NOTE: the page list will always be null terminated. 3911789Sahrens */ 3912789Sahrens pvn_plist_init(pp, pl, plsz, off, io_len, rw); 3913789Sahrens 3914789Sahrens return (0); 3915789Sahrens } 3916789Sahrens 3917789Sahrens /* 3918789Sahrens * Return pointers to the pages for the file region [off, off + len] 3919789Sahrens * in the pl array. If plsz is greater than len, this function may 3920789Sahrens * also return page pointers from before or after the specified 3921789Sahrens * region (i.e. some region [off', off' + plsz]). These additional 3922789Sahrens * pages are only returned if they are already in the cache, or were 3923789Sahrens * created as part of a klustered read. 3924789Sahrens * 3925789Sahrens * IN: vp - vnode of file to get data from. 3926789Sahrens * off - position in file to get data from. 3927789Sahrens * len - amount of data to retrieve. 3928789Sahrens * plsz - length of provided page list. 3929789Sahrens * seg - segment to obtain pages for. 3930789Sahrens * addr - virtual address of fault. 3931789Sahrens * rw - mode of created pages. 3932789Sahrens * cr - credentials of caller. 39335331Samw * ct - caller context. 3934789Sahrens * 3935789Sahrens * OUT: protp - protection mode of created pages. 3936789Sahrens * pl - list of pages created. 3937789Sahrens * 3938789Sahrens * RETURN: 0 if success 3939789Sahrens * error code if failure 3940789Sahrens * 3941789Sahrens * Timestamps: 3942789Sahrens * vp - atime updated 3943789Sahrens */ 3944789Sahrens /* ARGSUSED */ 3945789Sahrens static int 3946789Sahrens zfs_getpage(vnode_t *vp, offset_t off, size_t len, uint_t *protp, 3947789Sahrens page_t *pl[], size_t plsz, struct seg *seg, caddr_t addr, 39485331Samw enum seg_rw rw, cred_t *cr, caller_context_t *ct) 3949789Sahrens { 3950789Sahrens znode_t *zp = VTOZ(vp); 3951789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 3952789Sahrens page_t *pp, **pl0 = pl; 39532752Sperrin int need_unlock = 0, err = 0; 39542752Sperrin offset_t orig_off; 3955789Sahrens 39565367Sahrens ZFS_ENTER(zfsvfs); 39575367Sahrens ZFS_VERIFY_ZP(zp); 3958789Sahrens 3959789Sahrens if (protp) 3960789Sahrens *protp = PROT_ALL; 3961789Sahrens 3962789Sahrens /* no faultahead (for now) */ 3963789Sahrens if (pl == NULL) { 3964789Sahrens ZFS_EXIT(zfsvfs); 3965789Sahrens return (0); 3966789Sahrens } 3967789Sahrens 3968789Sahrens /* can't fault past EOF */ 3969789Sahrens if (off >= zp->z_phys->zp_size) { 3970789Sahrens ZFS_EXIT(zfsvfs); 3971789Sahrens return (EFAULT); 3972789Sahrens } 39732752Sperrin orig_off = off; 3974789Sahrens 3975789Sahrens /* 3976789Sahrens * If we already own the lock, then we must be page faulting 3977789Sahrens * in the middle of a write to this file (i.e., we are writing 3978789Sahrens * to this file using data from a mapped region of the file). 3979789Sahrens */ 39802752Sperrin if (rw_owner(&zp->z_map_lock) != curthread) { 3981789Sahrens rw_enter(&zp->z_map_lock, RW_WRITER); 3982789Sahrens need_unlock = TRUE; 3983789Sahrens } 3984789Sahrens 3985789Sahrens /* 3986789Sahrens * Loop through the requested range [off, off + len] looking 3987789Sahrens * for pages. If we don't find a page, we will need to create 3988789Sahrens * a new page and fill it with data from the file. 3989789Sahrens */ 3990789Sahrens while (len > 0) { 3991789Sahrens if (plsz < PAGESIZE) 3992789Sahrens break; 3993789Sahrens if (pp = page_lookup(vp, off, SE_SHARED)) { 3994789Sahrens *pl++ = pp; 3995789Sahrens off += PAGESIZE; 3996789Sahrens addr += PAGESIZE; 3997789Sahrens len -= PAGESIZE; 3998789Sahrens plsz -= PAGESIZE; 3999789Sahrens } else { 4000789Sahrens err = zfs_fillpage(vp, off, seg, addr, pl, plsz, rw); 40012752Sperrin if (err) 40022752Sperrin goto out; 4003789Sahrens /* 4004789Sahrens * klustering may have changed our region 4005789Sahrens * to be block aligned. 4006789Sahrens */ 4007789Sahrens if (((pp = *pl) != 0) && (off != pp->p_offset)) { 4008789Sahrens int delta = off - pp->p_offset; 4009789Sahrens len += delta; 4010789Sahrens off -= delta; 4011789Sahrens addr -= delta; 4012789Sahrens } 4013789Sahrens while (*pl) { 4014789Sahrens pl++; 4015789Sahrens off += PAGESIZE; 4016789Sahrens addr += PAGESIZE; 4017789Sahrens plsz -= PAGESIZE; 4018789Sahrens if (len > PAGESIZE) 4019789Sahrens len -= PAGESIZE; 4020789Sahrens else 4021789Sahrens len = 0; 4022789Sahrens } 4023789Sahrens } 4024789Sahrens } 4025789Sahrens 4026789Sahrens /* 4027789Sahrens * Fill out the page array with any pages already in the cache. 4028789Sahrens */ 4029789Sahrens while (plsz > 0) { 4030789Sahrens pp = page_lookup_nowait(vp, off, SE_SHARED); 4031789Sahrens if (pp == NULL) 4032789Sahrens break; 4033789Sahrens *pl++ = pp; 4034789Sahrens off += PAGESIZE; 4035789Sahrens plsz -= PAGESIZE; 4036789Sahrens } 4037789Sahrens 4038789Sahrens ZFS_ACCESSTIME_STAMP(zfsvfs, zp); 4039789Sahrens out: 40402752Sperrin /* 40412752Sperrin * We can't grab the range lock for the page as reader which would 40422752Sperrin * stop truncation as this leads to deadlock. So we need to recheck 40432752Sperrin * the file size. 40442752Sperrin */ 40452752Sperrin if (orig_off >= zp->z_phys->zp_size) 40462752Sperrin err = EFAULT; 40472752Sperrin if (err) { 40482752Sperrin /* 40492752Sperrin * Release any pages we have previously locked. 40502752Sperrin */ 40512752Sperrin while (pl > pl0) 40522752Sperrin page_unlock(*--pl); 40532752Sperrin } 40542752Sperrin 4055789Sahrens *pl = NULL; 4056789Sahrens 4057789Sahrens if (need_unlock) 4058789Sahrens rw_exit(&zp->z_map_lock); 4059789Sahrens 4060789Sahrens ZFS_EXIT(zfsvfs); 4061789Sahrens return (err); 4062789Sahrens } 4063789Sahrens 40641544Seschrock /* 40651544Seschrock * Request a memory map for a section of a file. This code interacts 40661544Seschrock * with common code and the VM system as follows: 40671544Seschrock * 40681544Seschrock * common code calls mmap(), which ends up in smmap_common() 40691544Seschrock * 40701544Seschrock * this calls VOP_MAP(), which takes you into (say) zfs 40711544Seschrock * 40721544Seschrock * zfs_map() calls as_map(), passing segvn_create() as the callback 40731544Seschrock * 40741544Seschrock * segvn_create() creates the new segment and calls VOP_ADDMAP() 40751544Seschrock * 40761544Seschrock * zfs_addmap() updates z_mapcnt 40771544Seschrock */ 40785331Samw /*ARGSUSED*/ 4079789Sahrens static int 4080789Sahrens zfs_map(vnode_t *vp, offset_t off, struct as *as, caddr_t *addrp, 40815331Samw size_t len, uchar_t prot, uchar_t maxprot, uint_t flags, cred_t *cr, 40825331Samw caller_context_t *ct) 4083789Sahrens { 4084789Sahrens znode_t *zp = VTOZ(vp); 4085789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 4086789Sahrens segvn_crargs_t vn_a; 4087789Sahrens int error; 4088789Sahrens 40895929Smarks ZFS_ENTER(zfsvfs); 40905929Smarks ZFS_VERIFY_ZP(zp); 40915929Smarks 40925331Samw if ((prot & PROT_WRITE) && 40935331Samw (zp->z_phys->zp_flags & (ZFS_IMMUTABLE | ZFS_READONLY | 40945929Smarks ZFS_APPENDONLY))) { 40955929Smarks ZFS_EXIT(zfsvfs); 40965331Samw return (EPERM); 40975929Smarks } 40985929Smarks 40995929Smarks if ((prot & (PROT_READ | PROT_EXEC)) && 41005929Smarks (zp->z_phys->zp_flags & ZFS_AV_QUARANTINED)) { 41015929Smarks ZFS_EXIT(zfsvfs); 41025929Smarks return (EACCES); 41035929Smarks } 4104789Sahrens 4105789Sahrens if (vp->v_flag & VNOMAP) { 4106789Sahrens ZFS_EXIT(zfsvfs); 4107789Sahrens return (ENOSYS); 4108789Sahrens } 4109789Sahrens 4110789Sahrens if (off < 0 || len > MAXOFFSET_T - off) { 4111789Sahrens ZFS_EXIT(zfsvfs); 4112789Sahrens return (ENXIO); 4113789Sahrens } 4114789Sahrens 4115789Sahrens if (vp->v_type != VREG) { 4116789Sahrens ZFS_EXIT(zfsvfs); 4117789Sahrens return (ENODEV); 4118789Sahrens } 4119789Sahrens 4120789Sahrens /* 4121789Sahrens * If file is locked, disallow mapping. 4122789Sahrens */ 41231544Seschrock if (MANDMODE((mode_t)zp->z_phys->zp_mode) && vn_has_flocks(vp)) { 41241544Seschrock ZFS_EXIT(zfsvfs); 41251544Seschrock return (EAGAIN); 4126789Sahrens } 4127789Sahrens 4128789Sahrens as_rangelock(as); 41296036Smec error = choose_addr(as, addrp, len, off, ADDR_VACALIGN, flags); 41306036Smec if (error != 0) { 41316036Smec as_rangeunlock(as); 41326036Smec ZFS_EXIT(zfsvfs); 41336036Smec return (error); 4134789Sahrens } 4135789Sahrens 4136789Sahrens vn_a.vp = vp; 4137789Sahrens vn_a.offset = (u_offset_t)off; 4138789Sahrens vn_a.type = flags & MAP_TYPE; 4139789Sahrens vn_a.prot = prot; 4140789Sahrens vn_a.maxprot = maxprot; 4141789Sahrens vn_a.cred = cr; 4142789Sahrens vn_a.amp = NULL; 4143789Sahrens vn_a.flags = flags & ~MAP_TYPE; 41441417Skchow vn_a.szc = 0; 41451417Skchow vn_a.lgrp_mem_policy_flags = 0; 4146789Sahrens 4147789Sahrens error = as_map(as, *addrp, len, segvn_create, &vn_a); 4148789Sahrens 4149789Sahrens as_rangeunlock(as); 4150789Sahrens ZFS_EXIT(zfsvfs); 4151789Sahrens return (error); 4152789Sahrens } 4153789Sahrens 4154789Sahrens /* ARGSUSED */ 4155789Sahrens static int 4156789Sahrens zfs_addmap(vnode_t *vp, offset_t off, struct as *as, caddr_t addr, 41575331Samw size_t len, uchar_t prot, uchar_t maxprot, uint_t flags, cred_t *cr, 41585331Samw caller_context_t *ct) 4159789Sahrens { 41601544Seschrock uint64_t pages = btopr(len); 41611544Seschrock 41621544Seschrock atomic_add_64(&VTOZ(vp)->z_mapcnt, pages); 4163789Sahrens return (0); 4164789Sahrens } 4165789Sahrens 41661773Seschrock /* 41671773Seschrock * The reason we push dirty pages as part of zfs_delmap() is so that we get a 41681773Seschrock * more accurate mtime for the associated file. Since we don't have a way of 41691773Seschrock * detecting when the data was actually modified, we have to resort to 41701773Seschrock * heuristics. If an explicit msync() is done, then we mark the mtime when the 41711773Seschrock * last page is pushed. The problem occurs when the msync() call is omitted, 41721773Seschrock * which by far the most common case: 41731773Seschrock * 41741773Seschrock * open() 41751773Seschrock * mmap() 41761773Seschrock * <modify memory> 41771773Seschrock * munmap() 41781773Seschrock * close() 41791773Seschrock * <time lapse> 41801773Seschrock * putpage() via fsflush 41811773Seschrock * 41821773Seschrock * If we wait until fsflush to come along, we can have a modification time that 41831773Seschrock * is some arbitrary point in the future. In order to prevent this in the 41841773Seschrock * common case, we flush pages whenever a (MAP_SHARED, PROT_WRITE) mapping is 41851773Seschrock * torn down. 41861773Seschrock */ 4187789Sahrens /* ARGSUSED */ 4188789Sahrens static int 4189789Sahrens zfs_delmap(vnode_t *vp, offset_t off, struct as *as, caddr_t addr, 41905331Samw size_t len, uint_t prot, uint_t maxprot, uint_t flags, cred_t *cr, 41915331Samw caller_context_t *ct) 4192789Sahrens { 41931544Seschrock uint64_t pages = btopr(len); 41941544Seschrock 41951544Seschrock ASSERT3U(VTOZ(vp)->z_mapcnt, >=, pages); 41961544Seschrock atomic_add_64(&VTOZ(vp)->z_mapcnt, -pages); 41971773Seschrock 41981773Seschrock if ((flags & MAP_SHARED) && (prot & PROT_WRITE) && 41991773Seschrock vn_has_cached_data(vp)) 42005331Samw (void) VOP_PUTPAGE(vp, off, len, B_ASYNC, cr, ct); 42011773Seschrock 4202789Sahrens return (0); 4203789Sahrens } 4204789Sahrens 4205789Sahrens /* 4206789Sahrens * Free or allocate space in a file. Currently, this function only 4207789Sahrens * supports the `F_FREESP' command. However, this command is somewhat 4208789Sahrens * misnamed, as its functionality includes the ability to allocate as 4209789Sahrens * well as free space. 4210789Sahrens * 4211789Sahrens * IN: vp - vnode of file to free data in. 4212789Sahrens * cmd - action to take (only F_FREESP supported). 4213789Sahrens * bfp - section of file to free/alloc. 4214789Sahrens * flag - current file open mode flags. 4215789Sahrens * offset - current file offset. 4216789Sahrens * cr - credentials of caller [UNUSED]. 42175331Samw * ct - caller context. 4218789Sahrens * 4219789Sahrens * RETURN: 0 if success 4220789Sahrens * error code if failure 4221789Sahrens * 4222789Sahrens * Timestamps: 4223789Sahrens * vp - ctime|mtime updated 4224789Sahrens */ 4225789Sahrens /* ARGSUSED */ 4226789Sahrens static int 4227789Sahrens zfs_space(vnode_t *vp, int cmd, flock64_t *bfp, int flag, 4228789Sahrens offset_t offset, cred_t *cr, caller_context_t *ct) 4229789Sahrens { 4230789Sahrens znode_t *zp = VTOZ(vp); 4231789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 4232789Sahrens uint64_t off, len; 4233789Sahrens int error; 4234789Sahrens 42355367Sahrens ZFS_ENTER(zfsvfs); 42365367Sahrens ZFS_VERIFY_ZP(zp); 4237789Sahrens 4238789Sahrens if (cmd != F_FREESP) { 4239789Sahrens ZFS_EXIT(zfsvfs); 4240789Sahrens return (EINVAL); 4241789Sahrens } 4242789Sahrens 4243789Sahrens if (error = convoff(vp, bfp, 0, offset)) { 4244789Sahrens ZFS_EXIT(zfsvfs); 4245789Sahrens return (error); 4246789Sahrens } 4247789Sahrens 4248789Sahrens if (bfp->l_len < 0) { 4249789Sahrens ZFS_EXIT(zfsvfs); 4250789Sahrens return (EINVAL); 4251789Sahrens } 4252789Sahrens 4253789Sahrens off = bfp->l_start; 42541669Sperrin len = bfp->l_len; /* 0 means from off to end of file */ 42551878Smaybee 4256*6992Smaybee error = zfs_freesp(zp, off, len, flag, TRUE); 4257789Sahrens 4258789Sahrens ZFS_EXIT(zfsvfs); 4259789Sahrens return (error); 4260789Sahrens } 4261789Sahrens 42625331Samw /*ARGSUSED*/ 4263789Sahrens static int 42645331Samw zfs_fid(vnode_t *vp, fid_t *fidp, caller_context_t *ct) 4265789Sahrens { 4266789Sahrens znode_t *zp = VTOZ(vp); 4267789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 42685326Sek110237 uint32_t gen; 4269789Sahrens uint64_t object = zp->z_id; 4270789Sahrens zfid_short_t *zfid; 4271789Sahrens int size, i; 4272789Sahrens 42735367Sahrens ZFS_ENTER(zfsvfs); 42745367Sahrens ZFS_VERIFY_ZP(zp); 42755326Sek110237 gen = (uint32_t)zp->z_gen; 4276789Sahrens 4277789Sahrens size = (zfsvfs->z_parent != zfsvfs) ? LONG_FID_LEN : SHORT_FID_LEN; 4278789Sahrens if (fidp->fid_len < size) { 4279789Sahrens fidp->fid_len = size; 42801512Sek110237 ZFS_EXIT(zfsvfs); 4281789Sahrens return (ENOSPC); 4282789Sahrens } 4283789Sahrens 4284789Sahrens zfid = (zfid_short_t *)fidp; 4285789Sahrens 4286789Sahrens zfid->zf_len = size; 4287789Sahrens 4288789Sahrens for (i = 0; i < sizeof (zfid->zf_object); i++) 4289789Sahrens zfid->zf_object[i] = (uint8_t)(object >> (8 * i)); 4290789Sahrens 4291789Sahrens /* Must have a non-zero generation number to distinguish from .zfs */ 4292789Sahrens if (gen == 0) 4293789Sahrens gen = 1; 4294789Sahrens for (i = 0; i < sizeof (zfid->zf_gen); i++) 4295789Sahrens zfid->zf_gen[i] = (uint8_t)(gen >> (8 * i)); 4296789Sahrens 4297789Sahrens if (size == LONG_FID_LEN) { 4298789Sahrens uint64_t objsetid = dmu_objset_id(zfsvfs->z_os); 4299789Sahrens zfid_long_t *zlfid; 4300789Sahrens 4301789Sahrens zlfid = (zfid_long_t *)fidp; 4302789Sahrens 4303789Sahrens for (i = 0; i < sizeof (zlfid->zf_setid); i++) 4304789Sahrens zlfid->zf_setid[i] = (uint8_t)(objsetid >> (8 * i)); 4305789Sahrens 4306789Sahrens /* XXX - this should be the generation number for the objset */ 4307789Sahrens for (i = 0; i < sizeof (zlfid->zf_setgen); i++) 4308789Sahrens zlfid->zf_setgen[i] = 0; 4309789Sahrens } 4310789Sahrens 4311789Sahrens ZFS_EXIT(zfsvfs); 4312789Sahrens return (0); 4313789Sahrens } 4314789Sahrens 4315789Sahrens static int 43165331Samw zfs_pathconf(vnode_t *vp, int cmd, ulong_t *valp, cred_t *cr, 43175331Samw caller_context_t *ct) 4318789Sahrens { 4319789Sahrens znode_t *zp, *xzp; 4320789Sahrens zfsvfs_t *zfsvfs; 4321789Sahrens zfs_dirlock_t *dl; 4322789Sahrens int error; 4323789Sahrens 4324789Sahrens switch (cmd) { 4325789Sahrens case _PC_LINK_MAX: 4326789Sahrens *valp = ULONG_MAX; 4327789Sahrens return (0); 4328789Sahrens 4329789Sahrens case _PC_FILESIZEBITS: 4330789Sahrens *valp = 64; 4331789Sahrens return (0); 4332789Sahrens 4333789Sahrens case _PC_XATTR_EXISTS: 4334789Sahrens zp = VTOZ(vp); 4335789Sahrens zfsvfs = zp->z_zfsvfs; 43365367Sahrens ZFS_ENTER(zfsvfs); 43375367Sahrens ZFS_VERIFY_ZP(zp); 4338789Sahrens *valp = 0; 4339789Sahrens error = zfs_dirent_lock(&dl, zp, "", &xzp, 43405331Samw ZXATTR | ZEXISTS | ZSHARED, NULL, NULL); 4341789Sahrens if (error == 0) { 4342789Sahrens zfs_dirent_unlock(dl); 4343789Sahrens if (!zfs_dirempty(xzp)) 4344789Sahrens *valp = 1; 4345789Sahrens VN_RELE(ZTOV(xzp)); 4346789Sahrens } else if (error == ENOENT) { 4347789Sahrens /* 4348789Sahrens * If there aren't extended attributes, it's the 4349789Sahrens * same as having zero of them. 4350789Sahrens */ 4351789Sahrens error = 0; 4352789Sahrens } 4353789Sahrens ZFS_EXIT(zfsvfs); 4354789Sahrens return (error); 4355789Sahrens 43565331Samw case _PC_SATTR_ENABLED: 43575331Samw case _PC_SATTR_EXISTS: 43585331Samw *valp = vfs_has_feature(vp->v_vfsp, VFSFT_XVATTR) && 43595331Samw (vp->v_type == VREG || vp->v_type == VDIR); 43605331Samw return (0); 43615331Samw 4362789Sahrens case _PC_ACL_ENABLED: 4363789Sahrens *valp = _ACL_ACE_ENABLED; 4364789Sahrens return (0); 4365789Sahrens 4366789Sahrens case _PC_MIN_HOLE_SIZE: 4367789Sahrens *valp = (ulong_t)SPA_MINBLOCKSIZE; 4368789Sahrens return (0); 4369789Sahrens 4370789Sahrens default: 43715331Samw return (fs_pathconf(vp, cmd, valp, cr, ct)); 4372789Sahrens } 4373789Sahrens } 4374789Sahrens 4375789Sahrens /*ARGSUSED*/ 4376789Sahrens static int 43775331Samw zfs_getsecattr(vnode_t *vp, vsecattr_t *vsecp, int flag, cred_t *cr, 43785331Samw caller_context_t *ct) 4379789Sahrens { 4380789Sahrens znode_t *zp = VTOZ(vp); 4381789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 4382789Sahrens int error; 43835331Samw boolean_t skipaclchk = (flag & ATTR_NOACLCHECK) ? B_TRUE : B_FALSE; 4384789Sahrens 43855367Sahrens ZFS_ENTER(zfsvfs); 43865367Sahrens ZFS_VERIFY_ZP(zp); 43875331Samw error = zfs_getacl(zp, vsecp, skipaclchk, cr); 4388789Sahrens ZFS_EXIT(zfsvfs); 4389789Sahrens 4390789Sahrens return (error); 4391789Sahrens } 4392789Sahrens 4393789Sahrens /*ARGSUSED*/ 4394789Sahrens static int 43955331Samw zfs_setsecattr(vnode_t *vp, vsecattr_t *vsecp, int flag, cred_t *cr, 43965331Samw caller_context_t *ct) 4397789Sahrens { 4398789Sahrens znode_t *zp = VTOZ(vp); 4399789Sahrens zfsvfs_t *zfsvfs = zp->z_zfsvfs; 4400789Sahrens int error; 44015331Samw boolean_t skipaclchk = (flag & ATTR_NOACLCHECK) ? B_TRUE : B_FALSE; 4402789Sahrens 44035367Sahrens ZFS_ENTER(zfsvfs); 44045367Sahrens ZFS_VERIFY_ZP(zp); 44055331Samw error = zfs_setacl(zp, vsecp, skipaclchk, cr); 4406789Sahrens ZFS_EXIT(zfsvfs); 4407789Sahrens return (error); 4408789Sahrens } 4409789Sahrens 4410789Sahrens /* 4411789Sahrens * Predeclare these here so that the compiler assumes that 4412789Sahrens * this is an "old style" function declaration that does 4413789Sahrens * not include arguments => we won't get type mismatch errors 4414789Sahrens * in the initializations that follow. 4415789Sahrens */ 4416789Sahrens static int zfs_inval(); 4417789Sahrens static int zfs_isdir(); 4418789Sahrens 4419789Sahrens static int 4420789Sahrens zfs_inval() 4421789Sahrens { 4422789Sahrens return (EINVAL); 4423789Sahrens } 4424789Sahrens 4425789Sahrens static int 4426789Sahrens zfs_isdir() 4427789Sahrens { 4428789Sahrens return (EISDIR); 4429789Sahrens } 4430789Sahrens /* 4431789Sahrens * Directory vnode operations template 4432789Sahrens */ 4433789Sahrens vnodeops_t *zfs_dvnodeops; 4434789Sahrens const fs_operation_def_t zfs_dvnodeops_template[] = { 44353898Srsb VOPNAME_OPEN, { .vop_open = zfs_open }, 44363898Srsb VOPNAME_CLOSE, { .vop_close = zfs_close }, 44373898Srsb VOPNAME_READ, { .error = zfs_isdir }, 44383898Srsb VOPNAME_WRITE, { .error = zfs_isdir }, 44393898Srsb VOPNAME_IOCTL, { .vop_ioctl = zfs_ioctl }, 44403898Srsb VOPNAME_GETATTR, { .vop_getattr = zfs_getattr }, 44413898Srsb VOPNAME_SETATTR, { .vop_setattr = zfs_setattr }, 44423898Srsb VOPNAME_ACCESS, { .vop_access = zfs_access }, 44433898Srsb VOPNAME_LOOKUP, { .vop_lookup = zfs_lookup }, 44443898Srsb VOPNAME_CREATE, { .vop_create = zfs_create }, 44453898Srsb VOPNAME_REMOVE, { .vop_remove = zfs_remove }, 44463898Srsb VOPNAME_LINK, { .vop_link = zfs_link }, 44473898Srsb VOPNAME_RENAME, { .vop_rename = zfs_rename }, 44483898Srsb VOPNAME_MKDIR, { .vop_mkdir = zfs_mkdir }, 44493898Srsb VOPNAME_RMDIR, { .vop_rmdir = zfs_rmdir }, 44503898Srsb VOPNAME_READDIR, { .vop_readdir = zfs_readdir }, 44513898Srsb VOPNAME_SYMLINK, { .vop_symlink = zfs_symlink }, 44523898Srsb VOPNAME_FSYNC, { .vop_fsync = zfs_fsync }, 44533898Srsb VOPNAME_INACTIVE, { .vop_inactive = zfs_inactive }, 44543898Srsb VOPNAME_FID, { .vop_fid = zfs_fid }, 44553898Srsb VOPNAME_SEEK, { .vop_seek = zfs_seek }, 44563898Srsb VOPNAME_PATHCONF, { .vop_pathconf = zfs_pathconf }, 44573898Srsb VOPNAME_GETSECATTR, { .vop_getsecattr = zfs_getsecattr }, 44583898Srsb VOPNAME_SETSECATTR, { .vop_setsecattr = zfs_setsecattr }, 44594863Spraks VOPNAME_VNEVENT, { .vop_vnevent = fs_vnevent_support }, 44603898Srsb NULL, NULL 4461789Sahrens }; 4462789Sahrens 4463789Sahrens /* 4464789Sahrens * Regular file vnode operations template 4465789Sahrens */ 4466789Sahrens vnodeops_t *zfs_fvnodeops; 4467789Sahrens const fs_operation_def_t zfs_fvnodeops_template[] = { 44683898Srsb VOPNAME_OPEN, { .vop_open = zfs_open }, 44693898Srsb VOPNAME_CLOSE, { .vop_close = zfs_close }, 44703898Srsb VOPNAME_READ, { .vop_read = zfs_read }, 44713898Srsb VOPNAME_WRITE, { .vop_write = zfs_write }, 44723898Srsb VOPNAME_IOCTL, { .vop_ioctl = zfs_ioctl }, 44733898Srsb VOPNAME_GETATTR, { .vop_getattr = zfs_getattr }, 44743898Srsb VOPNAME_SETATTR, { .vop_setattr = zfs_setattr }, 44753898Srsb VOPNAME_ACCESS, { .vop_access = zfs_access }, 44763898Srsb VOPNAME_LOOKUP, { .vop_lookup = zfs_lookup }, 44773898Srsb VOPNAME_RENAME, { .vop_rename = zfs_rename }, 44783898Srsb VOPNAME_FSYNC, { .vop_fsync = zfs_fsync }, 44793898Srsb VOPNAME_INACTIVE, { .vop_inactive = zfs_inactive }, 44803898Srsb VOPNAME_FID, { .vop_fid = zfs_fid }, 44813898Srsb VOPNAME_SEEK, { .vop_seek = zfs_seek }, 44823898Srsb VOPNAME_FRLOCK, { .vop_frlock = zfs_frlock }, 44833898Srsb VOPNAME_SPACE, { .vop_space = zfs_space }, 44843898Srsb VOPNAME_GETPAGE, { .vop_getpage = zfs_getpage }, 44853898Srsb VOPNAME_PUTPAGE, { .vop_putpage = zfs_putpage }, 44863898Srsb VOPNAME_MAP, { .vop_map = zfs_map }, 44873898Srsb VOPNAME_ADDMAP, { .vop_addmap = zfs_addmap }, 44883898Srsb VOPNAME_DELMAP, { .vop_delmap = zfs_delmap }, 44893898Srsb VOPNAME_PATHCONF, { .vop_pathconf = zfs_pathconf }, 44903898Srsb VOPNAME_GETSECATTR, { .vop_getsecattr = zfs_getsecattr }, 44913898Srsb VOPNAME_SETSECATTR, { .vop_setsecattr = zfs_setsecattr }, 44923898Srsb VOPNAME_VNEVENT, { .vop_vnevent = fs_vnevent_support }, 44933898Srsb NULL, NULL 4494789Sahrens }; 4495789Sahrens 4496789Sahrens /* 4497789Sahrens * Symbolic link vnode operations template 4498789Sahrens */ 4499789Sahrens vnodeops_t *zfs_symvnodeops; 4500789Sahrens const fs_operation_def_t zfs_symvnodeops_template[] = { 45013898Srsb VOPNAME_GETATTR, { .vop_getattr = zfs_getattr }, 45023898Srsb VOPNAME_SETATTR, { .vop_setattr = zfs_setattr }, 45033898Srsb VOPNAME_ACCESS, { .vop_access = zfs_access }, 45043898Srsb VOPNAME_RENAME, { .vop_rename = zfs_rename }, 45053898Srsb VOPNAME_READLINK, { .vop_readlink = zfs_readlink }, 45063898Srsb VOPNAME_INACTIVE, { .vop_inactive = zfs_inactive }, 45073898Srsb VOPNAME_FID, { .vop_fid = zfs_fid }, 45083898Srsb VOPNAME_PATHCONF, { .vop_pathconf = zfs_pathconf }, 45093898Srsb VOPNAME_VNEVENT, { .vop_vnevent = fs_vnevent_support }, 45103898Srsb NULL, NULL 4511789Sahrens }; 4512789Sahrens 4513789Sahrens /* 4514789Sahrens * Extended attribute directory vnode operations template 4515789Sahrens * This template is identical to the directory vnodes 4516789Sahrens * operation template except for restricted operations: 4517789Sahrens * VOP_MKDIR() 4518789Sahrens * VOP_SYMLINK() 4519789Sahrens * Note that there are other restrictions embedded in: 4520789Sahrens * zfs_create() - restrict type to VREG 4521789Sahrens * zfs_link() - no links into/out of attribute space 4522789Sahrens * zfs_rename() - no moves into/out of attribute space 4523789Sahrens */ 4524789Sahrens vnodeops_t *zfs_xdvnodeops; 4525789Sahrens const fs_operation_def_t zfs_xdvnodeops_template[] = { 45263898Srsb VOPNAME_OPEN, { .vop_open = zfs_open }, 45273898Srsb VOPNAME_CLOSE, { .vop_close = zfs_close }, 45283898Srsb VOPNAME_IOCTL, { .vop_ioctl = zfs_ioctl }, 45293898Srsb VOPNAME_GETATTR, { .vop_getattr = zfs_getattr }, 45303898Srsb VOPNAME_SETATTR, { .vop_setattr = zfs_setattr }, 45313898Srsb VOPNAME_ACCESS, { .vop_access = zfs_access }, 45323898Srsb VOPNAME_LOOKUP, { .vop_lookup = zfs_lookup }, 45333898Srsb VOPNAME_CREATE, { .vop_create = zfs_create }, 45343898Srsb VOPNAME_REMOVE, { .vop_remove = zfs_remove }, 45353898Srsb VOPNAME_LINK, { .vop_link = zfs_link }, 45363898Srsb VOPNAME_RENAME, { .vop_rename = zfs_rename }, 45373898Srsb VOPNAME_MKDIR, { .error = zfs_inval }, 45383898Srsb VOPNAME_RMDIR, { .vop_rmdir = zfs_rmdir }, 45393898Srsb VOPNAME_READDIR, { .vop_readdir = zfs_readdir }, 45403898Srsb VOPNAME_SYMLINK, { .error = zfs_inval }, 45413898Srsb VOPNAME_FSYNC, { .vop_fsync = zfs_fsync }, 45423898Srsb VOPNAME_INACTIVE, { .vop_inactive = zfs_inactive }, 45433898Srsb VOPNAME_FID, { .vop_fid = zfs_fid }, 45443898Srsb VOPNAME_SEEK, { .vop_seek = zfs_seek }, 45453898Srsb VOPNAME_PATHCONF, { .vop_pathconf = zfs_pathconf }, 45463898Srsb VOPNAME_GETSECATTR, { .vop_getsecattr = zfs_getsecattr }, 45473898Srsb VOPNAME_SETSECATTR, { .vop_setsecattr = zfs_setsecattr }, 45483898Srsb VOPNAME_VNEVENT, { .vop_vnevent = fs_vnevent_support }, 45493898Srsb NULL, NULL 4550789Sahrens }; 4551789Sahrens 4552789Sahrens /* 4553789Sahrens * Error vnode operations template 4554789Sahrens */ 4555789Sahrens vnodeops_t *zfs_evnodeops; 4556789Sahrens const fs_operation_def_t zfs_evnodeops_template[] = { 45573898Srsb VOPNAME_INACTIVE, { .vop_inactive = zfs_inactive }, 45583898Srsb VOPNAME_PATHCONF, { .vop_pathconf = zfs_pathconf }, 45593898Srsb NULL, NULL 4560789Sahrens }; 4561