1 /* 2 * Copyright (c) 2000-2019 Apple Inc. All rights reserved. 3 * 4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@ 5 * 6 * This file contains Original Code and/or Modifications of Original Code 7 * as defined in and that are subject to the Apple Public Source License 8 * Version 2.0 (the 'License'). You may not use this file except in 9 * compliance with the License. The rights granted to you under the License 10 * may not be used to create, or enable the creation or redistribution of, 11 * unlawful or unlicensed copies of an Apple operating system, or to 12 * circumvent, violate, or enable the circumvention or violation of, any 13 * terms of an Apple operating system software license agreement. 14 * 15 * Please obtain a copy of the License at 16 * http://www.opensource.apple.com/apsl/ and read it before using this file. 17 * 18 * The Original Code and all software distributed under the License are 19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER 20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES, 21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY, 22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT. 23 * Please see the License for the specific language governing rights and 24 * limitations under the License. 25 * 26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@ 27 */ 28 /* Copyright (c) 1995 NeXT Computer, Inc. All Rights Reserved */ 29 /* 30 * Copyright (c) 1989, 1993 31 * The Regents of the University of California. All rights reserved. 32 * 33 * This code is derived from software contributed to Berkeley by 34 * Rick Macklem at The University of Guelph. 35 * 36 * Redistribution and use in source and binary forms, with or without 37 * modification, are permitted provided that the following conditions 38 * are met: 39 * 1. Redistributions of source code must retain the above copyright 40 * notice, this list of conditions and the following disclaimer. 41 * 2. Redistributions in binary form must reproduce the above copyright 42 * notice, this list of conditions and the following disclaimer in the 43 * documentation and/or other materials provided with the distribution. 44 * 3. All advertising materials mentioning features or use of this software 45 * must display the following acknowledgement: 46 * This product includes software developed by the University of 47 * California, Berkeley and its contributors. 48 * 4. Neither the name of the University nor the names of its contributors 49 * may be used to endorse or promote products derived from this software 50 * without specific prior written permission. 51 * 52 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 53 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 54 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 55 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 56 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 57 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 58 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 59 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 60 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 61 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 62 * SUCH DAMAGE. 63 * 64 * @(#)nfsnode.h 8.9 (Berkeley) 5/14/95 65 * FreeBSD-Id: nfsnode.h,v 1.24 1997/10/28 14:06:25 bde Exp $ 66 */ 67 68 69 #ifndef _NFS_NFSNODE_H_ 70 #define _NFS_NFSNODE_H_ 71 72 #include <sys/appleapiopts.h> 73 74 #ifdef __APPLE_API_PRIVATE 75 #ifndef _NFS_NFS_H_ 76 #include <nfs/nfs.h> 77 #endif 78 #include <sys/kauth.h> 79 #include <os/refcnt.h> 80 81 /* 82 * Silly rename structure that hangs off the nfsnode until the name 83 * can be removed by nfs_vnop_inactive() 84 */ 85 struct nfs_sillyrename { 86 kauth_cred_t nsr_cred; 87 struct nfsnode *nsr_dnp; 88 int nsr_namlen; 89 char nsr_name[20]; 90 }; 91 92 /* 93 * NFS buf pages struct 94 */ 95 typedef struct { 96 uint64_t pages[8]; 97 } nfsbufpgs; 98 99 /* 100 * The nfsbuf is the nfs equivalent to a struct buf. 101 */ 102 struct nfsbuf { 103 LIST_ENTRY(nfsbuf) nb_hash; /* hash chain */ 104 LIST_ENTRY(nfsbuf) nb_vnbufs; /* nfsnode's nfsbuf chain */ 105 TAILQ_ENTRY(nfsbuf) nb_free; /* free list position if not active. */ 106 os_refcnt_t nb_refs; /* outstanding references. */ 107 daddr64_t nb_lblkno; /* logical block number. */ 108 uint64_t nb_verf; /* V3 write verifier */ 109 time_t nb_timestamp; /* buffer timestamp */ 110 nfsbufpgs nb_valid; /* valid pages in buf */ 111 nfsbufpgs nb_dirty; /* dirty pages in buf */ 112 caddr_t nb_data; /* mapped buffer */ 113 nfsnode_t nb_np; /* nfsnode buffer belongs to */ 114 kauth_cred_t nb_rcred; /* read credentials reference */ 115 kauth_cred_t nb_wcred; /* write credentials reference */ 116 void * nb_pagelist; /* upl */ 117 volatile uint32_t nb_flags; /* NB_* flags. */ 118 volatile uint32_t nb_lflags; /* NBL_* flags. */ 119 uint32_t nb_bufsize; /* buffer size */ 120 int nb_error; /* errno value. */ 121 int nb_commitlevel; /* lowest write commit level */ 122 off_t nb_validoff; /* offset in buffer of valid region. */ 123 off_t nb_validend; /* offset of end of valid region. */ 124 off_t nb_dirtyoff; /* offset in buffer of dirty region. */ 125 off_t nb_dirtyend; /* offset of end of dirty region. */ 126 off_t nb_offio; /* offset in buffer of I/O region. */ 127 off_t nb_endio; /* offset of end of I/O region. */ 128 uint64_t nb_rpcs; /* Count of RPCs remaining for this buffer. */ 129 }; 130 131 #define NFS_MAXBSIZE (8 * 64 * PAGE_SIZE) /* valid/dirty page masks limit buffer size */ 132 133 #define NFS_A_LOT_OF_NEEDCOMMITS 256 /* max# uncommitted buffers for a node */ 134 #define NFS_A_LOT_OF_DELAYED_WRITES MAX(nfsbufcnt/8,512) /* max# "delwri" buffers in system */ 135 136 /* 137 * These flags are kept in b_lflags... 138 * nfs_buf_mutex must be held before examining/updating 139 */ 140 #define NBL_BUSY 0x00000001 /* I/O in progress. */ 141 #define NBL_WANTED 0x00000002 /* Process wants this buffer. */ 142 143 /* 144 * These flags are kept in nb_flags and they're (purposefully) 145 * very similar to the B_* flags for struct buf. 146 * nfs_buf_mutex is not needed to examine/update these. 147 */ 148 #define NB_STALEWVERF 0x00000001 /* write verifier changed on us */ 149 #define NB_NEEDCOMMIT 0x00000002 /* buffer needs to be committed */ 150 #define NB_ASYNC 0x00000004 /* Start I/O, do not wait. */ 151 #define NB_CACHE 0x00000020 /* buffer data found in the cache */ 152 #define NB_STABLE 0x00000040 /* write FILESYNC not UNSTABLE */ 153 #define NB_DELWRI 0x00000080 /* delayed write: dirty range needs to be written */ 154 #define NB_DONE 0x00000200 /* I/O completed. */ 155 #define NB_EINTR 0x00000400 /* I/O was interrupted */ 156 #define NB_ERROR 0x00000800 /* I/O error occurred. */ 157 #define NB_INVAL 0x00002000 /* Does not contain valid info. */ 158 #define NB_NCRDAHEAD 0x00004000 /* "nocache readahead" data */ 159 #define NB_NOCACHE 0x00008000 /* Do not cache block after use. */ 160 #define NB_WRITE 0x00000000 /* Write buffer (pseudo flag). */ 161 #define NB_READ 0x00100000 /* Read buffer. */ 162 #define NB_MULTASYNCRPC 0x00200000 /* multiple async RPCs issued for buffer */ 163 #define NB_PAGELIST 0x00400000 /* Buffer describes pagelist I/O. */ 164 #define NB_WRITEINPROG 0x01000000 /* Write in progress. */ 165 #define NB_META 0x40000000 /* buffer contains meta-data. */ 166 167 /* Flags for operation type in nfs_buf_get() */ 168 #define NBLK_READ 0x00000001 /* buffer for read */ 169 #define NBLK_WRITE 0x00000002 /* buffer for write */ 170 #define NBLK_META 0x00000004 /* buffer for metadata */ 171 #define NBLK_OPMASK 0x00000007 /* operation mask */ 172 /* modifiers for above flags... */ 173 #define NBLK_NOWAIT 0x40000000 /* don't wait on busy buffer */ 174 #define NBLK_ONLYVALID 0x80000000 /* only return cached buffer */ 175 176 /* These flags are used for nfsbuf iterating */ 177 #define NBI_ITER 0x01 /* iteration in progress */ 178 #define NBI_ITERWANT 0x02 /* waiting to iterate */ 179 #define NBI_CLEAN 0x04 /* requesting clean buffers */ 180 #define NBI_DIRTY 0x08 /* requesting dirty buffers */ 181 #define NBI_NOWAIT 0x10 /* don't block on NBI_ITER */ 182 183 /* Flags for nfs_buf_acquire */ 184 #define NBAC_NOWAIT 0x01 /* Don't wait if buffer is busy */ 185 #define NBAC_REMOVE 0x02 /* Remove from free list once buffer is acquired */ 186 187 /* macros for nfsbufpgs */ 188 #define NBPGS_STRUCT_SIZE sizeof(nfsbufpgs) 189 #define NBPGS_ELEMENT_SIZE sizeof(((nfsbufpgs *)0)->pages[0]) 190 #define NBPGS_ELEMENT_PAGES (8 * NBPGS_ELEMENT_SIZE) 191 #define NBPGS_ELEMENTS (NBPGS_STRUCT_SIZE / NBPGS_ELEMENT_SIZE) 192 #define NBPGS_ERASE(NFSBP) bzero((NFSBP), NBPGS_STRUCT_SIZE) 193 #define NBPGS_COPY(NFSBPDST, NFSBPSRC) memcpy((NFSBPDST), (NFSBPSRC), NBPGS_STRUCT_SIZE) 194 #define NBPGS_IS_EQUAL(NFSBP1, NFSBP2) (memcmp((NFSBP1), (NFSBP2), NBPGS_STRUCT_SIZE) == 0) 195 #define NBPGS_GET(NFSBP, P) ((NFSBP)->pages[((P)/NBPGS_ELEMENT_PAGES)] & (1LLU << ((P) % NBPGS_ELEMENT_PAGES))) 196 #define NBPGS_SET(NFSBP, P) ((NFSBP)->pages[((P)/NBPGS_ELEMENT_PAGES)] |= (1LLU << ((P) % NBPGS_ELEMENT_PAGES))) 197 #define NBPGS_UNSET(NFSBP, P) ((NFSBP)->pages[((P)/NBPGS_ELEMENT_PAGES)] &= ~(1LLU << ((P) % NBPGS_ELEMENT_PAGES))) 198 199 /* some convenience macros... */ 200 #define NBOFF(BP) ((off_t)(BP)->nb_lblkno * (off_t)(BP)->nb_bufsize) 201 #define NBPGVALID(BP, P) NBPGS_GET(&((BP)->nb_valid), (P)) 202 #define NBPGDIRTY(BP, P) NBPGS_GET(&((BP)->nb_dirty), (P)) 203 #define NBPGVALID_SET(BP, P) NBPGS_SET(&((BP)->nb_valid), (P)) 204 #define NBPGDIRTY_SET(BP, P) NBPGS_SET(&((BP)->nb_dirty), (P)) 205 206 #define NBUFSTAMPVALID(BP) ((BP)->nb_timestamp != ~0) 207 #define NBUFSTAMPINVALIDATE(BP) ((BP)->nb_timestamp = ~0) 208 209 #define NFS_BUF_MAP(BP) \ 210 do { \ 211 if (!(BP)->nb_data && nfs_buf_map(BP)) \ 212 panic("nfs_buf_map failed"); \ 213 } while (0) 214 215 LIST_HEAD(nfsbuflists, nfsbuf); 216 TAILQ_HEAD(nfsbuffreehead, nfsbuf); 217 218 extern lck_mtx_t nfs_buf_mutex; 219 extern int nfsbufcnt, nfsbufmin, nfsbufmax, nfsbufmetacnt, nfsbufmetamax; 220 extern int nfsbuffreecnt, nfsbuffreemetacnt, nfsbufdelwricnt, nfsneedbuffer; 221 extern int nfs_nbdwrite; 222 extern struct nfsbuffreehead nfsbuffree, nfsbufdelwri; 223 224 #ifdef NFSBUFDEBUG 225 #define NFSBUFCNTCHK() \ 226 do { \ 227 if ( (nfsbufcnt < 0) || \ 228 (nfsbufcnt > nfsbufmax) || \ 229 (nfsbufmetacnt < 0) || \ 230 (nfsbufmetacnt > nfsbufmetamax) || \ 231 (nfsbufmetacnt > nfsbufcnt) || \ 232 (nfsbuffreecnt < 0) || \ 233 (nfsbuffreecnt > nfsbufmax) || \ 234 (nfsbuffreecnt > nfsbufcnt) || \ 235 (nfsbuffreemetacnt < 0) || \ 236 (nfsbuffreemetacnt > nfsbufmax) || \ 237 (nfsbuffreemetacnt > nfsbufcnt) || \ 238 (nfsbuffreemetacnt > nfsbufmetamax) || \ 239 (nfsbuffreemetacnt > nfsbufmetacnt) || \ 240 (nfsbufdelwricnt < 0) || \ 241 (nfsbufdelwricnt > nfsbufmax) || \ 242 (nfsbufdelwricnt > nfsbufcnt) || \ 243 (nfs_nbdwrite < 0) || \ 244 (nfs_nbdwrite > nfsbufcnt) || \ 245 0) \ 246 panic("nfsbuf count error: max %d meta %d cnt %d meta %d free %d meta %d delwr %d bdw %d\n", \ 247 nfsbufmax, nfsbufmetamax, nfsbufcnt, nfsbufmetacnt, nfsbuffreecnt, nfsbuffreemetacnt, \ 248 nfsbufdelwricnt, nfs_nbdwrite); \ 249 } while (0) 250 #else 251 #define NFSBUFCNTCHK() 252 #endif 253 254 /* 255 * NFS directory buffer 256 * 257 * Each buffer for a directory consists of: 258 * 259 * - a small header 260 * - a packed list of direntry structures 261 * (if RDIRPLUS is enabled, a file handle and attrstamp are 262 * packed after the direntry name.) 263 * - free/unused space 264 * - if RDIRPLUS is enabled, an array of attributes 265 * that is indexed backwards from the end of the buffer. 266 */ 267 struct nfs_dir_buf_header { 268 uint16_t ndbh_flags; /* flags (see below) */ 269 uint16_t ndbh_count; /* # of entries */ 270 off_t ndbh_entry_end; /* end offset of direntry data */ 271 uint32_t ndbh_ncgen; /* name cache generation# */ 272 uint32_t ndbh_pad; /* reserved */ 273 }; 274 /* ndbh_flags */ 275 #define NDB_FULL 0x0001 /* buffer has been filled */ 276 #define NDB_EOF 0x0002 /* buffer contains EOF */ 277 #define NDB_PLUS 0x0004 /* buffer contains RDIRPLUS data */ 278 279 #define NFS_DIR_BUF_FIRST_DIRENTRY(BP) \ 280 ((struct direntry*)((char*)((BP)->nb_data) + sizeof(*ndbhp))) 281 #define NFS_DIR_BUF_NVATTR(BP, IDX) \ 282 (&((struct nfs_vattr*)((char*)((BP)->nb_data) + (BP)->nb_bufsize))[-((IDX)+1)]) 283 #define NFS_DIRENTRY_LEN(namlen) \ 284 ((sizeof(struct direntry) + (namlen) - (MAXPATHLEN-1) + 7) & ~7) 285 #define NFS_DIRENTRY_LEN_16(namlen) \ 286 (uint16_t)(NFS_DIRENTRY_LEN(namlen)); assert((namlen) <= UINT16_MAX); 287 #define NFS_DIRENT_LEN(namlen) \ 288 ((sizeof(struct dirent) - (NAME_MAX+1)) + (((namlen) + 1 + 3) &~ 3)) 289 #define NFS_DIRENTRY_NEXT(DP) \ 290 ((struct direntry*)((char*)(DP) + (DP)->d_reclen)) 291 #define NFS_DIR_COOKIE_POTENTIALLY_TRUNCATED(C) \ 292 ((C) && ((((C) >> 32) == 0) || (((C) & 0x80000000ULL) && (((C) >> 32) == 0xffffffff)))) 293 #define NFS_DIR_COOKIE_SAME32(C1, C2) \ 294 (((C1) & 0xffffffffULL) == ((C2) & 0xffffffffULL)) 295 296 /* 297 * NFS directory cookie cache 298 * 299 * This structure is used to cache cookie-to-buffer mappings for 300 * cookies recently returned from READDIR. The entries are kept in an 301 * array. The most-recently-used (MRU) list is headed by the entry at 302 * index "mru". The index of the next entry in the list is kept in the 303 * "next" array. (An index value of -1 marks an invalid entry.) 304 */ 305 #define NFSNUMCOOKIES 14 306 struct nfsdmap { 307 int8_t free; /* next unused slot */ 308 int8_t mru; /* head of MRU list */ 309 int8_t next[NFSNUMCOOKIES]; /* MRU list links */ 310 struct { 311 uint64_t key; /* cookie */ 312 uint64_t lbn; /* lbn of buffer */ 313 } cookies[NFSNUMCOOKIES]; /* MRU list entries */ 314 }; 315 316 /* 317 * NFS vnode attribute structure 318 */ 319 #define NFSTIME_ACCESS 0 /* time of last access */ 320 #define NFSTIME_MODIFY 1 /* time of last modification */ 321 #define NFSTIME_CHANGE 2 /* time file changed */ 322 #define NFSTIME_CREATE 3 /* time file created */ 323 #define NFSTIME_BACKUP 4 /* time of last backup */ 324 #define NFSTIME_COUNT 6 325 326 #define NFS_COMPARE_MTIME(TVP, NVAP, CMP) \ 327 (((TVP)->tv_sec == (NVAP)->nva_timesec[NFSTIME_MODIFY]) ? \ 328 ((TVP)->tv_nsec CMP (NVAP)->nva_timensec[NFSTIME_MODIFY]) : \ 329 ((TVP)->tv_sec CMP (NVAP)->nva_timesec[NFSTIME_MODIFY])) 330 #define NFS_COPY_TIME(TVP, NVAP, WHICH) \ 331 do { \ 332 (TVP)->tv_sec = (NVAP)->nva_timesec[NFSTIME_##WHICH]; \ 333 (TVP)->tv_nsec = (NVAP)->nva_timensec[NFSTIME_##WHICH]; \ 334 } while (0) 335 336 struct nfs_vattr { 337 enum vtype nva_type; /* vnode type (for create) */ 338 mode_t nva_mode; /* file's access mode (and type) */ 339 uid_t nva_uid; /* owner user id */ 340 gid_t nva_gid; /* owner group id */ 341 guid_t nva_uuuid; /* owner user UUID */ 342 guid_t nva_guuid; /* owner group UUID */ 343 kauth_acl_t nva_acl; /* access control list */ 344 nfs_specdata nva_rawdev; /* device the special file represents */ 345 uint32_t nva_flags; /* file flags (see below) */ 346 uint32_t nva_maxlink; /* maximum # of links (v4) */ 347 uint64_t nva_nlink; /* number of references to file */ 348 uint64_t nva_fileid; /* file id */ 349 nfs_fsid nva_fsid; /* file system id */ 350 uint64_t nva_size; /* file size in bytes */ 351 uint64_t nva_bytes; /* bytes of disk space held by file */ 352 uint64_t nva_change; /* change attribute */ 353 time_t nva_timesec[NFSTIME_COUNT]; 354 long nva_timensec[NFSTIME_COUNT]; 355 uint32_t nva_bitmap[NFS_ATTR_BITMAP_LEN]; /* attributes that are valid */ 356 }; 357 358 /* nva_flags */ 359 #define NFS_FFLAG_ARCHIVED 0x0001 360 #define NFS_FFLAG_HIDDEN 0x0002 361 #define NFS_FFLAG_HAS_NAMED_ATTRS 0x0004 /* file has named attributes */ 362 #define NFS_FFLAG_TRIGGER 0x0008 /* node is a trigger/mirror mount point */ 363 #define NFS_FFLAG_TRIGGER_REFERRAL 0x0010 /* trigger is a referral */ 364 #define NFS_FFLAG_PARTIAL_WRITE 0x0020 /* partial attribute for NFSv4 writes */ 365 #define NFS_FFLAG_FILEID_CONTAINS_XID 0x0040 /* xid might be stashed in nva_fileid is rdirplus is enabled */ 366 #define NFS_FFLAG_IS_ATTR 0x8000 /* file is a named attribute file/directory */ 367 368 /* flags for nfs_getattr() */ 369 #define NGA_CACHED 0x0001 /* use cached attributes (if still valid) */ 370 #define NGA_UNCACHED 0x0002 /* fetch new attributes */ 371 #define NGA_ACL 0x0004 /* fetch ACL */ 372 #define NGA_MONITOR 0x0008 /* vnode monitor attr update poll */ 373 #define NGA_SOFT 0x0010 /* use cached attributes if ETIMEOUT */ 374 375 /* macros for initting/cleaning up nfs_vattr structures */ 376 #define NVATTR_INIT(NVAP) \ 377 do { \ 378 NFS_CLEAR_ATTRIBUTES((NVAP)->nva_bitmap); \ 379 (NVAP)->nva_flags = 0; \ 380 (NVAP)->nva_acl = NULL; \ 381 } while (0) 382 #define NVATTR_CLEANUP(NVAP) \ 383 do { \ 384 NFS_CLEAR_ATTRIBUTES((NVAP)->nva_bitmap); \ 385 if ((NVAP)->nva_acl) { \ 386 kauth_acl_free((NVAP)->nva_acl); \ 387 (NVAP)->nva_acl = NULL; \ 388 } \ 389 } while (0) 390 391 /* 392 * macros for detecting node changes 393 * 394 * These macros help us determine if a file has been changed on the server and 395 * thus whether or not we need to invalidate any cached data. 396 * 397 * For NFSv2/v3, the modification time is used. 398 * For NFSv4, the change attribute is used. 399 */ 400 #define NFS_CHANGED(VERS, NP, NVAP) \ 401 (((VERS) >= NFS_VER4) ? \ 402 ((NP)->n_change != (NVAP)->nva_change) : \ 403 NFS_COMPARE_MTIME(&(NP)->n_mtime, (NVAP), !=)) 404 #define NFS_CHANGED_NC(VERS, NP, NVAP) \ 405 (((VERS) >= NFS_VER4) ? \ 406 ((NP)->n_ncchange != (NVAP)->nva_change) : \ 407 NFS_COMPARE_MTIME(&(NP)->n_ncmtime, (NVAP), !=)) 408 #define NFS_CHANGED_UPDATE(VERS, NP, NVAP) \ 409 do { \ 410 if ((VERS) >= NFS_VER4) \ 411 (NP)->n_change = (NVAP)->nva_change; \ 412 else \ 413 NFS_COPY_TIME(&(NP)->n_mtime, (NVAP), MODIFY); \ 414 } while (0) 415 #define NFS_CHANGED_UPDATE_NC(VERS, NP, NVAP) \ 416 do { \ 417 if ((VERS) >= NFS_VER4) \ 418 (NP)->n_ncchange = (NVAP)->nva_change; \ 419 else \ 420 NFS_COPY_TIME(&(NP)->n_ncmtime, (NVAP), MODIFY); \ 421 } while (0) 422 423 424 extern lck_grp_t nfs_open_grp; 425 extern uint32_t nfs_open_owner_seqnum, nfs_lock_owner_seqnum; 426 427 /* 428 * NFSv4 open owner structure - one per cred per mount 429 */ 430 struct nfs_open_owner { 431 TAILQ_ENTRY(nfs_open_owner) noo_link; /* List of open owners (on mount) */ 432 lck_mtx_t noo_lock; /* owner mutex */ 433 struct nfsmount * noo_mount; /* NFS mount */ 434 os_refcnt_t noo_refcnt; /* # outstanding references */ 435 uint32_t noo_flags; /* see below */ 436 kauth_cred_t noo_cred; /* credentials of open owner */ 437 pid_t noo_pid; /* process pid of this owner */ 438 uint32_t noo_name; /* unique name used otw */ 439 uint32_t noo_seqid; /* client-side sequence ID */ 440 TAILQ_HEAD(, nfs_open_file) noo_opens; /* list of open files */ 441 }; 442 /* noo_flags */ 443 #define NFS_OPEN_OWNER_LINK 0x1 /* linked into mount's open owner list */ 444 #define NFS_OPEN_OWNER_BUSY 0x2 /* open state-modifying operation in progress */ 445 #define NFS_OPEN_OWNER_WANT 0x4 /* someone else wants to mark busy */ 446 447 /* 448 * NFS open file structure - one per open owner per nfsnode 449 */ 450 struct nfs_open_file { 451 lck_mtx_t nof_lock; /* open file mutex */ 452 TAILQ_ENTRY(nfs_open_file) nof_link; /* list of open files */ 453 TAILQ_ENTRY(nfs_open_file) nof_oolink; /* list of open owner's open files */ 454 struct nfs_open_owner * nof_owner; /* open owner */ 455 nfsnode_t nof_np; /* nfsnode this open is for */ 456 nfs_stateid nof_stateid; /* open stateid */ 457 thread_t nof_creator; /* thread that created file */ 458 uint32_t nof_opencnt; /* open file count */ 459 uint16_t nof_flags; /* see below */ 460 uint8_t nof_access:4; /* access mode for this open */ 461 uint8_t nof_deny:4; /* deny mode for this open */ 462 uint8_t nof_mmap_access:4; /* mmap open access mode */ 463 uint8_t nof_mmap_deny:4; /* mmap open deny mode */ 464 /* counts of access/deny mode open combinations */ 465 uint32_t nof_r; /* read opens (deny none) */ 466 uint32_t nof_w; /* write opens (deny none) */ 467 uint32_t nof_rw; /* read/write opens (deny none) */ 468 uint32_t nof_r_dw; /* read deny-write opens */ 469 /* the rest of the counts have a max of 2 (1 for open + 1 for mmap) */ 470 uint32_t nof_w_dw:2; /* write deny-write opens (max 2) */ 471 uint32_t nof_rw_dw:2; /* read/write deny-write opens (max 2) */ 472 uint32_t nof_r_drw:2; /* read deny-read/write opens (max 2) */ 473 uint32_t nof_w_drw:2; /* write deny-read/write opens (max 2) */ 474 uint32_t nof_rw_drw:2; /* read/write deny-read/write opens (max 2) */ 475 /* counts of DELEGATED access/deny mode open combinations */ 476 uint32_t nof_d_w_dw:2; /* write deny-write opens (max 2) */ 477 uint32_t nof_d_rw_dw:2; /* read/write deny-write opens (max 2) */ 478 uint32_t nof_d_r_drw:2; /* read deny-read/write opens (max 2) */ 479 uint32_t nof_d_w_drw:2; /* write deny-read/write opens (max 2) */ 480 uint32_t nof_d_rw_drw:2; /* read/write deny-read/write opens (max 2) */ 481 uint32_t nof_d_r; /* read opens (deny none) */ 482 uint32_t nof_d_w; /* write opens (deny none) */ 483 uint32_t nof_d_rw; /* read/write opens (deny none) */ 484 uint32_t nof_d_r_dw; /* read deny-write opens */ 485 }; 486 /* nof_flags */ 487 #define NFS_OPEN_FILE_BUSY 0x0001 /* open state-modifying operation in progress */ 488 #define NFS_OPEN_FILE_WANT 0x0002 /* someone else wants to mark busy */ 489 #define NFS_OPEN_FILE_CREATE 0x0004 /* has an open(RW) from a "CREATE" call */ 490 #define NFS_OPEN_FILE_NEEDCLOSE 0x0008 /* has an open(R) from an (unopen) VNOP_READ or VNOP_MMAP call */ 491 #define NFS_OPEN_FILE_SETATTR 0x0020 /* has an open(W) to perform a SETATTR(size) */ 492 #define NFS_OPEN_FILE_POSIXLOCK 0x0040 /* server supports POSIX locking semantics */ 493 #define NFS_OPEN_FILE_LOST 0x0080 /* open state has been lost */ 494 #define NFS_OPEN_FILE_REOPEN 0x0100 /* file needs to be reopened */ 495 #define NFS_OPEN_FILE_REOPENING 0x0200 /* file is being reopened */ 496 497 struct nfs_lock_owner; 498 /* 499 * NFS file lock 500 * 501 * Each lock request (pending or granted) has an 502 * nfs_file_lock structure representing its state. 503 */ 504 struct nfs_file_lock { 505 TAILQ_ENTRY(nfs_file_lock) nfl_link; /* List of locks on nfsnode */ 506 TAILQ_ENTRY(nfs_file_lock) nfl_lolink; /* List of locks held by locker */ 507 struct nfs_lock_owner * nfl_owner; /* lock owner that holds this lock */ 508 uint64_t nfl_start; /* starting offset */ 509 uint64_t nfl_end; /* ending offset (inclusive) */ 510 uint32_t nfl_blockcnt; /* # locks blocked on this lock */ 511 uint16_t nfl_flags; /* see below */ 512 uint16_t nfl_type; /* lock type: read/write */ 513 }; 514 /* nfl_flags */ 515 #define NFS_FILE_LOCK_ALLOC 0x01 /* lock was allocated */ 516 #define NFS_FILE_LOCK_STYLE_POSIX 0x02 /* POSIX-style fcntl() lock */ 517 #define NFS_FILE_LOCK_STYLE_FLOCK 0x04 /* flock(2)-style lock */ 518 #define NFS_FILE_LOCK_STYLE_MASK 0x06 /* lock style mask */ 519 #define NFS_FILE_LOCK_WAIT 0x08 /* may block on conflicting locks */ 520 #define NFS_FILE_LOCK_BLOCKED 0x10 /* request is blocked */ 521 #define NFS_FILE_LOCK_DEAD 0x20 /* lock (request) no longer exists */ 522 #define NFS_FILE_LOCK_DELEGATED 0x40 /* lock acquired via delegation */ 523 524 TAILQ_HEAD(nfs_file_lock_queue, nfs_file_lock); 525 526 /* 527 * Calculate length of lock range given the endpoints. 528 * Note that struct flock has "to EOF" reported as 0 but 529 * the NFSv4 protocol has "to EOF" reported as UINT64_MAX. 530 */ 531 #define NFS_FLOCK_LENGTH(S, E) (((E) == UINT64_MAX) ? 0 : ((E) - (S) + 1)) 532 #define NFS_LOCK_LENGTH(S, E) (((E) == UINT64_MAX) ? UINT64_MAX : ((E) - (S) + 1)) 533 534 /* nfs_lock_owner_find flags */ 535 #define NFS_LOCK_OWNER_FIND_ALLOC 0x01 536 #define NFS_LOCK_OWNER_FIND_DEQUEUE 0x02 537 538 /* 539 * NFSv4 lock owner structure - per open owner per process per nfsnode 540 * 541 * A lock owner is a process + an nfsnode. 542 * 543 * Note that flock(2) locks technically should have the lock owner be 544 * an fglob pointer instead of a process. However, implementing that 545 * correctly would not be trivial. So, for now, flock(2) locks are 546 * essentially treated like whole-file POSIX locks. 547 */ 548 struct nfs_lock_owner { 549 lck_mtx_t nlo_lock; /* owner mutex */ 550 TAILQ_ENTRY(nfs_lock_owner) nlo_link; /* List of lock owners (on nfsnode) */ 551 struct nfs_open_owner * nlo_open_owner; /* corresponding open owner */ 552 struct nfs_file_lock_queue nlo_locks; /* list of locks held */ 553 struct nfs_file_lock nlo_alock; /* most lockers will only ever have one */ 554 struct timeval nlo_pid_start; /* Start time of process id */ 555 caddr_t nlo_lockid; /* lock identifier received by VNOP_ADVLOCK */ 556 pid_t nlo_pid; /* lock-owning process ID */ 557 os_refcnt_t nlo_refcnt; /* # outstanding references */ 558 uint32_t nlo_flags; /* see below */ 559 uint32_t nlo_name; /* unique name used otw */ 560 uint32_t nlo_seqid; /* client-side sequence ID */ 561 uint32_t nlo_stategenid; /* mount state generation ID */ 562 nfs_stateid nlo_stateid; /* lock stateid */ 563 }; 564 /* nlo_flags */ 565 #define NFS_LOCK_OWNER_LINK 0x1 /* linked into mount's lock owner list */ 566 #define NFS_LOCK_OWNER_BUSY 0x2 /* lock state-modifying operation in progress */ 567 #define NFS_LOCK_OWNER_WANT 0x4 /* someone else wants to mark busy */ 568 569 /* 570 * The nfsnode is the NFS equivalent of an inode. 571 * There is a unique nfsnode for each NFS vnode. 572 * An nfsnode is 'named' by its file handle. (nget/nfs_node.c) 573 * NB: Hopefully the current order of the fields is such that everything will 574 * be well aligned and, therefore, tightly packed. 575 */ 576 577 #define NFS_ACCESS_CACHE_SIZE 3 578 579 struct nfsnode { 580 lck_mtx_t n_lock; /* nfs node lock */ 581 lck_rw_t n_datalock; /* nfs node data lock */ 582 void *n_datalockowner;/* nfs node data lock owner (exclusive) */ 583 LIST_ENTRY(nfsnode) n_hash; /* Hash chain */ 584 LIST_ENTRY(nfsnode) n_monlink; /* list of monitored nodes */ 585 u_quad_t n_size; /* Current size of file */ 586 u_quad_t n_newsize; /* new size of file (pending update) */ 587 u_int64_t n_xid; /* last xid to loadattr */ 588 struct nfs_vattr n_vattr; /* Vnode attribute cache */ 589 time_t n_attrstamp; /* Attr. cache timestamp */ 590 time_t n_aclstamp; /* ACL cache timestamp */ 591 time_t n_evtstamp; /* last vnode event timestamp */ 592 uint32_t n_events; /* pending vnode events */ 593 uint32_t n_access[NFS_ACCESS_CACHE_SIZE + 1]; /* ACCESS cache */ 594 uid_t n_accessuid[NFS_ACCESS_CACHE_SIZE]; /* credentials having access */ 595 time_t n_accessstamp[NFS_ACCESS_CACHE_SIZE]; /* access cache timestamp */ 596 time_t n_rdirplusstamp_sof; /* Readdirplus sof timestamp */ 597 time_t n_rdirplusstamp_eof; /* Readdirplus eof timestamp */ 598 union { 599 struct { 600 struct timespec n3_mtime; /* Prev modify time. */ 601 struct timespec n3_ncmtime; /* namecache modify time. */ 602 } v3; 603 struct { 604 uint64_t n4_change;/* prev change attribute */ 605 uint64_t n4_ncchange;/* namecache change attribute */ 606 u_char *n4_attrdirfh;/* associated attr directory fh */ 607 struct timeval n4_lastio;/* time of most recent I/O on attr */ 608 } v4; 609 } n_un4; 610 vnode_t n_parent; /* this node's parent */ 611 u_char *n_fhp; /* NFS File Handle */ 612 vnode_t n_vnode; /* associated vnode */ 613 mount_t n_mount; /* associated mount (NHINIT) */ 614 int n_error; /* Save write error value */ 615 union { 616 struct timespec ns_atim; /* Special file times */ 617 struct timespec nl_rltim; /* Time of last readlink */ 618 daddr64_t nf_lastread; /* last block# read from (for readahead) */ 619 uint64_t nd_cookieverf; /* Cookie verifier (dir only) */ 620 } n_un1; 621 union { 622 struct timespec ns_mtim; /* Special file times */ 623 daddr64_t nf_lastrahead; /* last block# read ahead */ 624 uint64_t nd_eofcookie; /* Dir. EOF cookie cache */ 625 } n_un2; 626 union { 627 struct nfs_sillyrename *nf_silly;/* Ptr to silly rename struct */ 628 struct nfsdmap *nd_cookiecache; /* dir cookie cache */ 629 } n_un3; 630 uint32_t n_flag; /* node flags */ 631 uint32_t n_fhsize; /* size in bytes, of fh */ 632 u_short n_hflag; /* node hash flags */ 633 u_short n_bflag; /* node buffer flags */ 634 u_short n_mflag; /* node mount flags */ 635 u_char n_fh[NFS_SMALLFH];/* Small File Handle */ 636 uint32_t n_auth; /* security flavor used for this node */ 637 struct nfsbuflists n_cleanblkhd; /* clean blocklist head */ 638 struct nfsbuflists n_dirtyblkhd; /* dirty blocklist head */ 639 union { 640 int nf_wrbusy; /* # threads in write/fsync */ 641 uint32_t nd_ncgen; /* dir name cache generation# */ 642 } n_un5; 643 union { 644 int nf_needcommitcnt;/* # bufs that need committing */ 645 daddr64_t nd_lastdbl; /* last dir buf lookup block# */ 646 } n_un6; 647 int n_bufiterflags; /* buf iterator flags */ 648 union { 649 int nf_numoutput; /* write I/Os in progress */ 650 int nd_trigseq; /* vnode trigger seq# */ 651 } n_un7; 652 /* open state */ 653 lck_mtx_t n_openlock; /* nfs node open lock */ 654 uint32_t n_openflags; /* open state flags */ 655 uint32_t n_openrefcnt; /* # non-file opens */ 656 TAILQ_HEAD(, nfs_open_file) n_opens; /* list of open files */ 657 /* lock state */ 658 TAILQ_HEAD(, nfs_lock_owner) n_lock_owners; /* list of lock owners */ 659 struct nfs_file_lock_queue n_locks; /* list of locks */ 660 /* delegation state */ 661 nfs_stateid n_dstateid; /* delegation stateid */ 662 TAILQ_ENTRY(nfsnode) n_dlink; /* delegation list link */ 663 TAILQ_ENTRY(nfsnode) n_dreturn; /* delegation return list link */ 664 struct kauth_ace n_dace; /* delegation ACE */ 665 }; 666 667 #define NFS_DATA_LOCK_SHARED 1 668 #define NFS_DATA_LOCK_EXCLUSIVE 2 669 670 #define nfstimespeccmp(tvp, uvp, cmp) \ 671 (((tvp)->tv_sec == (uvp)->tv_sec) ? \ 672 ((tvp)->tv_nsec cmp (uvp)->tv_nsec) : \ 673 ((tvp)->tv_sec cmp (uvp)->tv_sec)) 674 675 #define CHECK_NEEDCOMMITCNT(np) \ 676 do { \ 677 if ((np)->n_needcommitcnt < 0) { \ 678 printf("nfs: n_needcommitcnt negative\n"); \ 679 (np)->n_needcommitcnt = 0; \ 680 } \ 681 } while (0) 682 683 #define n_atim n_un1.ns_atim 684 #define n_mtim n_un2.ns_mtim 685 #define n_rltim n_un1.nl_rltim 686 #define n_lastread n_un1.nf_lastread 687 #define n_lastrahead n_un2.nf_lastrahead 688 #define n_sillyrename n_un3.nf_silly 689 #define n_wrbusy n_un5.nf_wrbusy 690 #define n_needcommitcnt n_un6.nf_needcommitcnt 691 #define n_numoutput n_un7.nf_numoutput 692 #define n_cookieverf n_un1.nd_cookieverf 693 #define n_eofcookie n_un2.nd_eofcookie 694 #define n_cookiecache n_un3.nd_cookiecache 695 #define n_ncgen n_un5.nd_ncgen 696 #define n_lastdbl n_un6.nd_lastdbl 697 #define n_trigseq n_un7.nd_trigseq 698 #define n_mtime n_un4.v3.n3_mtime 699 #define n_ncmtime n_un4.v3.n3_ncmtime 700 #define n_change n_un4.v4.n4_change 701 #define n_ncchange n_un4.v4.n4_ncchange 702 #define n_attrdirfh n_un4.v4.n4_attrdirfh 703 #define n_lastio n_un4.v4.n4_lastio 704 705 /* 706 * Flags for n_flag 707 */ 708 #define NUPDATESIZE 0x00001 /* size of file needs updating */ 709 #define NREVOKE 0x00002 /* node revoked */ 710 #define NMODIFIED 0x00004 /* Might have a modified buffer in bio */ 711 #define NWRITEERR 0x00008 /* Flag write errors so close will know */ 712 #define NNEEDINVALIDATE 0x00010 /* need to call vinvalbuf() */ 713 #define NGETATTRINPROG 0x00020 /* GETATTR RPC in progress */ 714 #define NGETATTRWANT 0x00040 /* waiting for GETATTR RPC */ 715 #define NACC 0x00100 /* Special file accessed */ 716 #define NUPD 0x00200 /* Special file updated */ 717 #define NCHG 0x00400 /* Special file times changed */ 718 #define NNEGNCENTRIES 0x00800 /* directory has negative name cache entries */ 719 #define NBUSY 0x01000 /* node is busy */ 720 #define NBUSYWANT 0x02000 /* waiting on busy node */ 721 #define NISDOTZFS 0x04000 /* a ".zfs" directory */ 722 #define NISDOTZFSCHILD 0x08000 /* a child of a ".zfs" directory */ 723 #define NISMAPPED 0x10000 /* node is mmapped */ 724 #define NREFRESH 0x20000 /* node's fh needs to be refreshed */ 725 #define NREFRESHWANT 0x40000 /* Waiting for fh to be refreshed */ 726 #define NDISARMTRIGGER 0x80000 /* Ignore node's mirror mount trigger */ 727 728 /* 729 * Flags for n_hflag 730 * Note: protected by nfs_node_hash_mutex 731 */ 732 #define NHHASHED 0x0001 /* node is in hash table */ 733 #define NHINIT 0x0002 /* node is being initialized */ 734 #define NHLOCKED 0x0004 /* node is locked (initting or deleting) */ 735 #define NHLOCKWANT 0x0008 /* someone wants to lock */ 736 737 /* 738 * Flags for n_bflag 739 * Note: protected by nfs_buf_mutex 740 */ 741 #define NBFLUSHINPROG 0x0001 /* Avoid multiple calls to nfs_flush() */ 742 #define NBFLUSHWANT 0x0002 /* waiting for nfs_flush() to complete */ 743 #define NBINVALINPROG 0x0004 /* Avoid multiple calls to nfs_vinvalbuf() */ 744 #define NBINVALWANT 0x0008 /* waiting for nfs_vinvalbuf() to complete */ 745 746 /* 747 * Flags for n_mflag 748 * Note: protected by nfsmount's nm_lock 749 */ 750 #define NMMONSCANINPROG 0x0001 /* monitored node is currently updating attributes */ 751 #define NMMONSCANWANT 0x0002 /* waiting for attribute update to complete */ 752 753 /* 754 * n_openflags 755 * Note: protected by n_openlock 756 */ 757 #define N_OPENBUSY 0x0001 /* open state is busy - being updated */ 758 #define N_OPENWANT 0x0002 /* someone wants to mark busy */ 759 #define N_DELEG_READ 0x0004 /* we have a read delegation */ 760 #define N_DELEG_WRITE 0x0008 /* we have a write delegation */ 761 #define N_DELEG_MASK 0x000c /* delegation mask */ 762 #define N_DELEG_RETURN 0x0010 /* delegation queued for return */ 763 #define N_DELEG_RETURNING 0x0020 /* delegation being returned */ 764 765 /* attr/access/ACL cache timestamp macros */ 766 #define NATTRVALID(np) ((np)->n_attrstamp != ~0) 767 #define NATTRINVALIDATE(np) ((np)->n_attrstamp = ~0) 768 #define NACCESSVALID(np, slot) (((slot) >= 0) && ((slot) < NFS_ACCESS_CACHE_SIZE) && ((np)->n_accessstamp[(slot)] != ~0)) 769 #define NACCESSINVALIDATE(np) \ 770 do { \ 771 int __i; \ 772 for (__i=0; __i < NFS_ACCESS_CACHE_SIZE; __i++) \ 773 (np)->n_accessstamp[__i] = ~0; \ 774 (np)->n_access[NFS_ACCESS_CACHE_SIZE] = 0; \ 775 } while (0) 776 #define NACLVALID(np) ((np)->n_aclstamp != ~0) 777 #define NACLINVALIDATE(np) ((np)->n_aclstamp = ~0) 778 779 /* 780 * NFS-specific flags for nfs_vinvalbuf/nfs_flush 781 */ 782 #define V_IGNORE_WRITEERR 0x8000 783 784 /* 785 * Flags for nfs_nget() 786 */ 787 #define NG_MARKROOT 0x0001 /* mark vnode as root of FS */ 788 #define NG_MAKEENTRY 0x0002 /* add name cache entry for vnode */ 789 #define NG_NOCREATE 0x0004 /* don't create a new node, return existing one */ 790 791 /* 792 * Convert between nfsnode pointers and vnode pointers 793 */ 794 #define VTONFS(vp) ((nfsnode_t)vnode_fsnode(vp)) 795 #define NFSTOV(np) ((np)->n_vnode) 796 797 /* nfsnode hash table mutex */ 798 extern lck_mtx_t nfs_node_hash_mutex; 799 800 /* 801 * printf-like helper macro that also outputs node name. 802 */ 803 #define NP(NP, FMT, ...) \ 804 do { \ 805 const char *__vname = (NP) ? vnode_getname(NFSTOV(NP)) : NULL; \ 806 printf(FMT " %s\n", ##__VA_ARGS__, __vname ? __vname : "???"); \ 807 if (__vname) vnode_putname(__vname); \ 808 } while (0) 809 810 /* 811 * nfsiod structures 812 */ 813 struct nfsiod { 814 TAILQ_ENTRY(nfsiod) niod_link; /* List of nfsiods */ 815 struct nfsmount * niod_nmp; /* mount point for this nfsiod */ 816 }; 817 TAILQ_HEAD(nfsiodlist, nfsiod); 818 TAILQ_HEAD(nfsiodmountlist, nfsmount); 819 extern struct nfsiodlist nfsiodfree, nfsiodwork; 820 extern struct nfsiodmountlist nfsiodmounts; 821 extern lck_mtx_t nfsiod_mutex; 822 823 #if defined(KERNEL) 824 825 typedef int vnop_t(void *); 826 extern vnop_t **fifo_nfsv2nodeop_p; 827 extern vnop_t **nfsv2_vnodeop_p; 828 extern vnop_t **spec_nfsv2nodeop_p; 829 #if CONFIG_NFS4 830 extern vnop_t **fifo_nfsv4nodeop_p; 831 extern vnop_t **nfsv4_vnodeop_p; 832 extern vnop_t **spec_nfsv4nodeop_p; 833 #endif 834 /* 835 * Prototypes for NFS vnode operations 836 */ 837 #define nfs_vnop_revoke nop_revoke 838 int nfs_vnop_inactive(struct vnop_inactive_args *); 839 int nfs_vnop_reclaim(struct vnop_reclaim_args *); 840 841 int nfs_node_lock(nfsnode_t); 842 int nfs_node_lock_internal(nfsnode_t, int); 843 void nfs_node_lock_force(nfsnode_t); 844 void nfs_node_unlock(nfsnode_t); 845 int nfs_node_lock2(nfsnode_t, nfsnode_t); 846 void nfs_node_unlock2(nfsnode_t, nfsnode_t); 847 int nfs_node_set_busy(nfsnode_t, thread_t); 848 int nfs_node_set_busy2(nfsnode_t, nfsnode_t, thread_t); 849 int nfs_node_set_busy4(nfsnode_t, nfsnode_t, nfsnode_t, nfsnode_t, thread_t); 850 void nfs_node_clear_busy(nfsnode_t); 851 void nfs_node_clear_busy2(nfsnode_t, nfsnode_t); 852 void nfs_node_clear_busy4(nfsnode_t, nfsnode_t, nfsnode_t, nfsnode_t); 853 void nfs_data_lock(nfsnode_t, int); 854 void nfs_data_lock_noupdate(nfsnode_t, int); 855 void nfs_data_lock_internal(nfsnode_t, int, int); 856 void nfs_data_unlock(nfsnode_t); 857 void nfs_data_unlock_noupdate(nfsnode_t); 858 void nfs_data_unlock_internal(nfsnode_t, int); 859 void nfs_data_update_size(nfsnode_t, int); 860 861 /* other stuff */ 862 int nfs_removeit(struct nfs_sillyrename *); 863 int nfs_nget(mount_t, nfsnode_t, struct componentname *, u_char *, uint32_t, struct nfs_vattr *, u_int64_t *, uint32_t, int, nfsnode_t*); 864 int nfs_mount_is_dirty(mount_t); 865 void nfs_dir_cookie_cache(nfsnode_t, uint64_t, uint64_t); 866 int nfs_dir_cookie_to_lbn(nfsnode_t, uint64_t, int *, uint64_t *); 867 void nfs_invaldir(nfsnode_t); 868 uint64_t nfs_dir_buf_freespace(struct nfsbuf *, int); 869 870 /* nfsbuf functions */ 871 void nfs_nbinit(void); 872 void nfs_buf_timer(void *, void *); 873 void nfs_buf_remfree(struct nfsbuf *); 874 boolean_t nfs_buf_is_incore(nfsnode_t, daddr64_t); 875 struct nfsbuf * nfs_buf_incore(nfsnode_t, daddr64_t); 876 int nfs_buf_get(nfsnode_t, daddr64_t, uint32_t, thread_t, int, struct nfsbuf **); 877 int nfs_buf_upl_setup(struct nfsbuf *bp); 878 void nfs_buf_upl_check(struct nfsbuf *bp); 879 void nfs_buf_normalize_valid_range(nfsnode_t, struct nfsbuf *); 880 int nfs_buf_map(struct nfsbuf *); 881 void nfs_buf_release(struct nfsbuf *, int); 882 int nfs_buf_iowait(struct nfsbuf *); 883 void nfs_buf_iodone(struct nfsbuf *); 884 void nfs_buf_write_delayed(struct nfsbuf *); 885 void nfs_buf_check_write_verifier(nfsnode_t, struct nfsbuf *); 886 void nfs_buf_freeup(int); 887 void nfs_buf_refget(struct nfsbuf *bp); 888 void nfs_buf_refrele(struct nfsbuf *bp); 889 void nfs_buf_drop(struct nfsbuf *); 890 errno_t nfs_buf_acquire(struct nfsbuf *, int, int, int); 891 int nfs_buf_iterprepare(nfsnode_t, struct nfsbuflists *, int); 892 void nfs_buf_itercomplete(nfsnode_t, struct nfsbuflists *, int); 893 894 void nfs_buf_pgs_get_page_mask(nfsbufpgs *, off_t); 895 void nfs_buf_pgs_bit_not(nfsbufpgs *); 896 void nfs_buf_pgs_bit_and(nfsbufpgs *, nfsbufpgs *, nfsbufpgs *); 897 void nfs_buf_pgs_set_pages_between(nfsbufpgs *, off_t, off_t); 898 int nfs_buf_pgs_is_set(nfsbufpgs *); 899 900 int nfs_bioread(nfsnode_t, uio_t, int, vfs_context_t); 901 int nfs_buf_readahead(nfsnode_t, int, daddr64_t *, daddr64_t, thread_t, kauth_cred_t); 902 int nfs_buf_readdir(struct nfsbuf *, vfs_context_t); 903 int nfs_buf_read(struct nfsbuf *); 904 void nfs_buf_read_finish(struct nfsbuf *); 905 int nfs_buf_read_rpc(struct nfsbuf *, thread_t, kauth_cred_t); 906 void nfs_buf_read_rpc_finish(struct nfsreq *); 907 int nfs_buf_write(struct nfsbuf *); 908 void nfs_buf_write_finish(struct nfsbuf *, thread_t, kauth_cred_t); 909 int nfs_buf_write_rpc(struct nfsbuf *, int, thread_t, kauth_cred_t); 910 void nfs_buf_write_rpc_finish(struct nfsreq *); 911 int nfs_buf_write_dirty_pages(struct nfsbuf *, thread_t, kauth_cred_t); 912 913 int nfs_flushcommits(nfsnode_t, int); 914 int nfs_flush(nfsnode_t, int, thread_t, int); 915 void nfs_buf_delwri_push(int); 916 void nfs_buf_delwri_service(void); 917 void nfs_buf_delwri_thread(void *, wait_result_t); 918 919 int nfsiod_start(void); 920 void nfsiod_terminate(struct nfsiod *); 921 void nfsiod_thread(void); 922 int nfsiod_continue(int); 923 void nfs_asyncio_finish(struct nfsreq *); 924 void nfs_asyncio_resend(struct nfsreq *); 925 int nfs_async_write_start(struct nfsmount *); 926 void nfs_async_write_done(struct nfsmount *); 927 928 #endif /* KERNEL */ 929 930 #endif /* __APPLE_API_PRIVATE */ 931 #endif /* _NFS_NFSNODE_H_ */ 932