1ad3638eeSXin LI /* $NetBSD: tmpfs.h,v 1.26 2007/02/22 06:37:00 thorpej Exp $ */ 2d1fa59e9SXin LI 3e08d5567SXin LI /*- 4d63027b6SPedro F. Giffuni * SPDX-License-Identifier: BSD-2-Clause-NetBSD 5d63027b6SPedro F. Giffuni * 6ad3638eeSXin LI * Copyright (c) 2005, 2006 The NetBSD Foundation, Inc. 7d1fa59e9SXin LI * All rights reserved. 8d1fa59e9SXin LI * 9d1fa59e9SXin LI * This code is derived from software contributed to The NetBSD Foundation 10d1fa59e9SXin LI * by Julio M. Merino Vidal, developed as part of Google's Summer of Code 11d1fa59e9SXin LI * 2005 program. 12d1fa59e9SXin LI * 13d1fa59e9SXin LI * Redistribution and use in source and binary forms, with or without 14d1fa59e9SXin LI * modification, are permitted provided that the following conditions 15d1fa59e9SXin LI * are met: 16d1fa59e9SXin LI * 1. Redistributions of source code must retain the above copyright 17d1fa59e9SXin LI * notice, this list of conditions and the following disclaimer. 18d1fa59e9SXin LI * 2. Redistributions in binary form must reproduce the above copyright 19d1fa59e9SXin LI * notice, this list of conditions and the following disclaimer in the 20d1fa59e9SXin LI * documentation and/or other materials provided with the distribution. 21d1fa59e9SXin LI * 22d1fa59e9SXin LI * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 23d1fa59e9SXin LI * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 24d1fa59e9SXin LI * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 25d1fa59e9SXin LI * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 26d1fa59e9SXin LI * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 27d1fa59e9SXin LI * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 28d1fa59e9SXin LI * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 29d1fa59e9SXin LI * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 30d1fa59e9SXin LI * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 31d1fa59e9SXin LI * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 32d1fa59e9SXin LI * POSSIBILITY OF SUCH DAMAGE. 33d1fa59e9SXin LI * 34d1fa59e9SXin LI * $FreeBSD$ 35d1fa59e9SXin LI */ 36d1fa59e9SXin LI 37d1fa59e9SXin LI #ifndef _FS_TMPFS_TMPFS_H_ 38d1fa59e9SXin LI #define _FS_TMPFS_TMPFS_H_ 39d1fa59e9SXin LI 40693d10a2SRyan Moeller #include <sys/cdefs.h> 41d1fa59e9SXin LI #include <sys/queue.h> 424fd5efe7SGleb Kurtsou #include <sys/tree.h> 43d1fa59e9SXin LI 44135beaf6SGleb Smirnoff #ifdef _SYS_MALLOC_H_ 459b258fcaSXin LI MALLOC_DECLARE(M_TMPFSNAME); 46135beaf6SGleb Smirnoff #endif 47d1fa59e9SXin LI 48128e2584SMateusz Guzik #define OBJ_TMPFS OBJ_PAGERPRIV1 /* has tmpfs vnode allocated */ 49eec2e4efSMateusz Guzik #define OBJ_TMPFS_VREF OBJ_PAGERPRIV2 /* vnode is referenced */ 5028bc23abSKonstantin Belousov 51d1fa59e9SXin LI /* 52d1fa59e9SXin LI * Internal representation of a tmpfs directory entry. 53d1fa59e9SXin LI */ 544fd5efe7SGleb Kurtsou 554fd5efe7SGleb Kurtsou LIST_HEAD(tmpfs_dir_duphead, tmpfs_dirent); 564fd5efe7SGleb Kurtsou 57d1fa59e9SXin LI struct tmpfs_dirent { 584fd5efe7SGleb Kurtsou /* 594fd5efe7SGleb Kurtsou * Depending on td_cookie flag entry can be of 3 types: 604fd5efe7SGleb Kurtsou * - regular -- no hash collisions, stored in RB-Tree 614fd5efe7SGleb Kurtsou * - duphead -- synthetic linked list head for dup entries 624fd5efe7SGleb Kurtsou * - dup -- stored in linked list instead of RB-Tree 634fd5efe7SGleb Kurtsou */ 644fd5efe7SGleb Kurtsou union { 654fd5efe7SGleb Kurtsou /* regular and duphead entry types */ 664fd5efe7SGleb Kurtsou RB_ENTRY(tmpfs_dirent) td_entries; 67d1fa59e9SXin LI 684fd5efe7SGleb Kurtsou /* dup entry type */ 694fd5efe7SGleb Kurtsou struct { 704fd5efe7SGleb Kurtsou LIST_ENTRY(tmpfs_dirent) entries; 714fd5efe7SGleb Kurtsou LIST_ENTRY(tmpfs_dirent) index_entries; 724fd5efe7SGleb Kurtsou } td_dup; 734fd5efe7SGleb Kurtsou } uh; 74d1fa59e9SXin LI 754fd5efe7SGleb Kurtsou uint32_t td_cookie; 764fd5efe7SGleb Kurtsou uint32_t td_hash; 774fd5efe7SGleb Kurtsou u_int td_namelen; 78d1fa59e9SXin LI 79bba7ed20SKonstantin Belousov /* 80bba7ed20SKonstantin Belousov * Pointer to the node this entry refers to. In case this field 81bba7ed20SKonstantin Belousov * is NULL, the node is a whiteout. 82bba7ed20SKonstantin Belousov */ 83d1fa59e9SXin LI struct tmpfs_node * td_node; 844fd5efe7SGleb Kurtsou 854fd5efe7SGleb Kurtsou union { 864fd5efe7SGleb Kurtsou /* 874fd5efe7SGleb Kurtsou * The name of the entry, allocated from a string pool. This 884fd5efe7SGleb Kurtsou * string is not required to be zero-terminated. 894fd5efe7SGleb Kurtsou */ 904fd5efe7SGleb Kurtsou char * td_name; /* regular, dup */ 914fd5efe7SGleb Kurtsou struct tmpfs_dir_duphead td_duphead; /* duphead */ 924fd5efe7SGleb Kurtsou } ud; 93d1fa59e9SXin LI }; 94d1fa59e9SXin LI 95bba7ed20SKonstantin Belousov /* 96bba7ed20SKonstantin Belousov * A directory in tmpfs holds a collection of directory entries, which 97bba7ed20SKonstantin Belousov * in turn point to other files (which can be directories themselves). 98d1fa59e9SXin LI * 99bba7ed20SKonstantin Belousov * In tmpfs, this collection is managed by a RB-Tree, whose head is 100bba7ed20SKonstantin Belousov * defined by the struct tmpfs_dir type. 101d1fa59e9SXin LI * 1024fd5efe7SGleb Kurtsou * It is important to notice that directories do not have entries for . and 103d1fa59e9SXin LI * .. as other file systems do. These can be generated when requested 104d1fa59e9SXin LI * based on information available by other means, such as the pointer to 105d1fa59e9SXin LI * the node itself in the former case or the pointer to the parent directory 106d1fa59e9SXin LI * in the latter case. This is done to simplify tmpfs's code and, more 107bba7ed20SKonstantin Belousov * importantly, to remove redundancy. 108bba7ed20SKonstantin Belousov */ 1094fd5efe7SGleb Kurtsou RB_HEAD(tmpfs_dir, tmpfs_dirent); 110d1fa59e9SXin LI 111bba7ed20SKonstantin Belousov /* 112bba7ed20SKonstantin Belousov * Each entry in a directory has a cookie that identifies it. Cookies 113ad3638eeSXin LI * supersede offsets within directories because, given how tmpfs stores 1144fd5efe7SGleb Kurtsou * directories in memory, there is no such thing as an offset. 115ad3638eeSXin LI * 116ad3638eeSXin LI * The '.', '..' and the end of directory markers have fixed cookies which 117ad3638eeSXin LI * cannot collide with the cookies generated by other entries. The cookies 1184fd5efe7SGleb Kurtsou * for the other entries are generated based on the file name hash value or 1194fd5efe7SGleb Kurtsou * unique number in case of name hash collision. 120ad3638eeSXin LI * 1214fd5efe7SGleb Kurtsou * To preserve compatibility cookies are limited to 31 bits. 1224fd5efe7SGleb Kurtsou */ 1234fd5efe7SGleb Kurtsou 124d1fa59e9SXin LI #define TMPFS_DIRCOOKIE_DOT 0 125d1fa59e9SXin LI #define TMPFS_DIRCOOKIE_DOTDOT 1 126d1fa59e9SXin LI #define TMPFS_DIRCOOKIE_EOF 2 1274fd5efe7SGleb Kurtsou #define TMPFS_DIRCOOKIE_MASK ((off_t)0x3fffffffU) 1284fd5efe7SGleb Kurtsou #define TMPFS_DIRCOOKIE_MIN ((off_t)0x00000004U) 1294fd5efe7SGleb Kurtsou #define TMPFS_DIRCOOKIE_DUP ((off_t)0x40000000U) 1304fd5efe7SGleb Kurtsou #define TMPFS_DIRCOOKIE_DUPHEAD ((off_t)0x80000000U) 1314fd5efe7SGleb Kurtsou #define TMPFS_DIRCOOKIE_DUP_MIN TMPFS_DIRCOOKIE_DUP 1324fd5efe7SGleb Kurtsou #define TMPFS_DIRCOOKIE_DUP_MAX \ 1334fd5efe7SGleb Kurtsou (TMPFS_DIRCOOKIE_DUP | TMPFS_DIRCOOKIE_MASK) 134d1fa59e9SXin LI 135d1fa59e9SXin LI /* 136d1fa59e9SXin LI * Internal representation of a tmpfs file system node. 137d1fa59e9SXin LI * 138d1fa59e9SXin LI * This structure is splitted in two parts: one holds attributes common 139d1fa59e9SXin LI * to all file types and the other holds data that is only applicable to 140d1fa59e9SXin LI * a particular type. The code must be careful to only access those 141d1fa59e9SXin LI * attributes that are actually allowed by the node's type. 142d1fa59e9SXin LI * 143d1fa59e9SXin LI * Below is the key of locks used to protected the fields in the following 144d1fa59e9SXin LI * structures. 145bba7ed20SKonstantin Belousov * (v) vnode lock in exclusive mode 146bba7ed20SKonstantin Belousov * (vi) vnode lock in exclusive mode, or vnode lock in shared vnode and 147bba7ed20SKonstantin Belousov * tn_interlock 148bba7ed20SKonstantin Belousov * (i) tn_interlock 149280ffa5eSKonstantin Belousov * (m) tmpfs_mount tm_allnode_lock 150bba7ed20SKonstantin Belousov * (c) stable after creation 151*37aea264SKonstantin Belousov * (v) tn_reg.tn_aobj vm_object lock 152d1fa59e9SXin LI */ 153d1fa59e9SXin LI struct tmpfs_node { 154bba7ed20SKonstantin Belousov /* 155bba7ed20SKonstantin Belousov * Doubly-linked list entry which links all existing nodes for 156bba7ed20SKonstantin Belousov * a single file system. This is provided to ease the removal 157bba7ed20SKonstantin Belousov * of all nodes during the unmount operation, and to support 15864c25043SKonstantin Belousov * the implementation of VOP_VNTOCNP(). tn_attached is false 15964c25043SKonstantin Belousov * when the node is removed from list and unlocked. 160bba7ed20SKonstantin Belousov */ 161bba7ed20SKonstantin Belousov LIST_ENTRY(tmpfs_node) tn_entries; /* (m) */ 162f24aa01fSMateusz Guzik 163f24aa01fSMateusz Guzik /* Node identifier. */ 164f24aa01fSMateusz Guzik ino_t tn_id; /* (c) */ 165d1fa59e9SXin LI 166bba7ed20SKonstantin Belousov /* 167bba7ed20SKonstantin Belousov * The node's type. Any of 'VBLK', 'VCHR', 'VDIR', 'VFIFO', 168d1fa59e9SXin LI * 'VLNK', 'VREG' and 'VSOCK' is allowed. The usage of vnode 169d1fa59e9SXin LI * types instead of a custom enumeration is to make things simpler 170bba7ed20SKonstantin Belousov * and faster, as we do not need to convert between two types. 171bba7ed20SKonstantin Belousov */ 172bba7ed20SKonstantin Belousov enum vtype tn_type; /* (c) */ 173d1fa59e9SXin LI 174f24aa01fSMateusz Guzik /* 175f24aa01fSMateusz Guzik * See the top comment. Reordered here to fill LP64 hole. 176f24aa01fSMateusz Guzik */ 177f24aa01fSMateusz Guzik bool tn_attached; /* (m) */ 178d1fa59e9SXin LI 179bba7ed20SKonstantin Belousov /* 180bba7ed20SKonstantin Belousov * Node's internal status. This is used by several file system 181d1fa59e9SXin LI * operations to do modifications to the node in a delayed 182bba7ed20SKonstantin Belousov * fashion. 183016b7c7eSKonstantin Belousov * 184016b7c7eSKonstantin Belousov * tn_accessed has a dedicated byte to allow update by store without 185016b7c7eSKonstantin Belousov * using atomics. This provides a micro-optimization to e.g. 186016b7c7eSKonstantin Belousov * tmpfs_read_pgcache(). 187bba7ed20SKonstantin Belousov */ 188016b7c7eSKonstantin Belousov uint8_t tn_status; /* (vi) */ 189016b7c7eSKonstantin Belousov uint8_t tn_accessed; /* unlocked */ 190d1fa59e9SXin LI 191bba7ed20SKonstantin Belousov /* 192bba7ed20SKonstantin Belousov * The node size. It does not necessarily match the real amount 193bba7ed20SKonstantin Belousov * of memory consumed by it. 194bba7ed20SKonstantin Belousov */ 195bba7ed20SKonstantin Belousov off_t tn_size; /* (v) */ 196d1fa59e9SXin LI 197d1fa59e9SXin LI /* Generic node attributes. */ 198bba7ed20SKonstantin Belousov uid_t tn_uid; /* (v) */ 199bba7ed20SKonstantin Belousov gid_t tn_gid; /* (v) */ 200bba7ed20SKonstantin Belousov mode_t tn_mode; /* (v) */ 20135b1a3abSJohn Baldwin int tn_links; /* (v) */ 202bba7ed20SKonstantin Belousov u_long tn_flags; /* (v) */ 203bba7ed20SKonstantin Belousov struct timespec tn_atime; /* (vi) */ 204bba7ed20SKonstantin Belousov struct timespec tn_mtime; /* (vi) */ 205bba7ed20SKonstantin Belousov struct timespec tn_ctime; /* (vi) */ 206bba7ed20SKonstantin Belousov struct timespec tn_birthtime; /* (v) */ 207bba7ed20SKonstantin Belousov unsigned long tn_gen; /* (c) */ 208d1fa59e9SXin LI 209bba7ed20SKonstantin Belousov /* 210bba7ed20SKonstantin Belousov * As there is a single vnode for each active file within the 211d1fa59e9SXin LI * system, care has to be taken to avoid allocating more than one 212d1fa59e9SXin LI * vnode per file. In order to do this, a bidirectional association 213d1fa59e9SXin LI * is kept between vnodes and nodes. 214d1fa59e9SXin LI * 215d1fa59e9SXin LI * Whenever a vnode is allocated, its v_data field is updated to 216d1fa59e9SXin LI * point to the node it references. At the same time, the node's 217d1fa59e9SXin LI * tn_vnode field is modified to point to the new vnode representing 218d1fa59e9SXin LI * it. Further attempts to allocate a vnode for this same node will 219d1fa59e9SXin LI * result in returning a new reference to the value stored in 220d1fa59e9SXin LI * tn_vnode. 221d1fa59e9SXin LI * 222d1fa59e9SXin LI * May be NULL when the node is unused (that is, no vnode has been 223bba7ed20SKonstantin Belousov * allocated for it or it has been reclaimed). 224bba7ed20SKonstantin Belousov */ 225bba7ed20SKonstantin Belousov struct vnode * tn_vnode; /* (i) */ 226d1fa59e9SXin LI 227bba7ed20SKonstantin Belousov /* 228bba7ed20SKonstantin Belousov * Interlock to protect tn_vpstate, and tn_status under shared 2295dc11286SKonstantin Belousov * vnode lock. 2305dc11286SKonstantin Belousov */ 231d1fa59e9SXin LI struct mtx tn_interlock; 232d1fa59e9SXin LI 233bba7ed20SKonstantin Belousov /* 234bba7ed20SKonstantin Belousov * Identify if current node has vnode assiocate with 235d1fa59e9SXin LI * or allocating vnode. 236d1fa59e9SXin LI */ 237bba7ed20SKonstantin Belousov int tn_vpstate; /* (i) */ 238d1fa59e9SXin LI 23964c25043SKonstantin Belousov /* Transient refcounter on this node. */ 2404601f5f5SKonstantin Belousov u_int tn_refcount; /* 0<->1 (m) + (i) */ 24164c25043SKonstantin Belousov 242d1fa59e9SXin LI /* misc data field for different tn_type node */ 243d1fa59e9SXin LI union { 244d1fa59e9SXin LI /* Valid when tn_type == VBLK || tn_type == VCHR. */ 245bba7ed20SKonstantin Belousov dev_t tn_rdev; /* (c) */ 246d1fa59e9SXin LI 247d1fa59e9SXin LI /* Valid when tn_type == VDIR. */ 248d1fa59e9SXin LI struct tn_dir { 249bba7ed20SKonstantin Belousov /* 250bba7ed20SKonstantin Belousov * Pointer to the parent directory. The root 251d1fa59e9SXin LI * directory has a pointer to itself in this field; 252bba7ed20SKonstantin Belousov * this property identifies the root node. 253bba7ed20SKonstantin Belousov */ 254d1fa59e9SXin LI struct tmpfs_node * tn_parent; 255d1fa59e9SXin LI 256bba7ed20SKonstantin Belousov /* 257bba7ed20SKonstantin Belousov * Head of a tree that links the contents of 258bba7ed20SKonstantin Belousov * the directory together. 259bba7ed20SKonstantin Belousov */ 260d1fa59e9SXin LI struct tmpfs_dir tn_dirhead; 261d1fa59e9SXin LI 262bba7ed20SKonstantin Belousov /* 263bba7ed20SKonstantin Belousov * Head of a list the contains fake directory entries 2644fd5efe7SGleb Kurtsou * heads, i.e. entries with TMPFS_DIRCOOKIE_DUPHEAD 265bba7ed20SKonstantin Belousov * flag. 266bba7ed20SKonstantin Belousov */ 2674fd5efe7SGleb Kurtsou struct tmpfs_dir_duphead tn_dupindex; 2684fd5efe7SGleb Kurtsou 269bba7ed20SKonstantin Belousov /* 270bba7ed20SKonstantin Belousov * Number and pointer of the first directory entry 271d1fa59e9SXin LI * returned by the readdir operation if it were 272d1fa59e9SXin LI * called again to continue reading data from the 273d1fa59e9SXin LI * same directory as before. This is used to speed 274d1fa59e9SXin LI * up reads of long directories, assuming that no 275d1fa59e9SXin LI * more than one read is in progress at a given time. 276bba7ed20SKonstantin Belousov * Otherwise, these values are discarded. 277bba7ed20SKonstantin Belousov */ 278d1fa59e9SXin LI off_t tn_readdir_lastn; 279d1fa59e9SXin LI struct tmpfs_dirent * tn_readdir_lastp; 280d1fa59e9SXin LI } tn_dir; 281d1fa59e9SXin LI 282d1fa59e9SXin LI /* Valid when tn_type == VLNK. */ 283d1fa59e9SXin LI /* The link's target, allocated from a string pool. */ 284618029afSMateusz Guzik struct tn_link { 285618029afSMateusz Guzik char * tn_link_target; /* (c) */ 286618029afSMateusz Guzik char tn_link_smr; /* (c) */ 287618029afSMateusz Guzik } tn_link; 288d1fa59e9SXin LI 289d1fa59e9SXin LI /* Valid when tn_type == VREG. */ 290d1fa59e9SXin LI struct tn_reg { 291bba7ed20SKonstantin Belousov /* 292bba7ed20SKonstantin Belousov * The contents of regular files stored in a 293bba7ed20SKonstantin Belousov * tmpfs file system are represented by a 294bba7ed20SKonstantin Belousov * single anonymous memory object (aobj, for 295bba7ed20SKonstantin Belousov * short). The aobj provides direct access to 296bba7ed20SKonstantin Belousov * any position within the file. It is a task 297bba7ed20SKonstantin Belousov * of the memory management subsystem to issue 298bba7ed20SKonstantin Belousov * the required page ins or page outs whenever 299bba7ed20SKonstantin Belousov * a position within the file is accessed. 300bba7ed20SKonstantin Belousov */ 301bba7ed20SKonstantin Belousov vm_object_t tn_aobj; /* (c) */ 302081e36e7SKonstantin Belousov struct tmpfs_mount *tn_tmp; /* (c) */ 303*37aea264SKonstantin Belousov vm_pindex_t tn_pages; /* (v) */ 304d1fa59e9SXin LI } tn_reg; 305bba7ed20SKonstantin Belousov } tn_spec; /* (v) */ 306d1fa59e9SXin LI }; 307d1fa59e9SXin LI LIST_HEAD(tmpfs_node_list, tmpfs_node); 308d1fa59e9SXin LI 309d1fa59e9SXin LI #define tn_rdev tn_spec.tn_rdev 310d1fa59e9SXin LI #define tn_dir tn_spec.tn_dir 311618029afSMateusz Guzik #define tn_link_target tn_spec.tn_link.tn_link_target 312618029afSMateusz Guzik #define tn_link_smr tn_spec.tn_link.tn_link_smr 313d1fa59e9SXin LI #define tn_reg tn_spec.tn_reg 314d1fa59e9SXin LI #define tn_fifo tn_spec.tn_fifo 315d1fa59e9SXin LI 31635b1a3abSJohn Baldwin #define TMPFS_LINK_MAX INT_MAX 31735b1a3abSJohn Baldwin 318d1fa59e9SXin LI #define TMPFS_NODE_LOCK(node) mtx_lock(&(node)->tn_interlock) 319d1fa59e9SXin LI #define TMPFS_NODE_UNLOCK(node) mtx_unlock(&(node)->tn_interlock) 320fb755714SXin LI #define TMPFS_NODE_MTX(node) (&(node)->tn_interlock) 321d2ca06cdSKonstantin Belousov #define TMPFS_NODE_ASSERT_LOCKED(node) mtx_assert(TMPFS_NODE_MTX(node), \ 322d2ca06cdSKonstantin Belousov MA_OWNED) 323d1fa59e9SXin LI 32482cf92d4SXin LI #ifdef INVARIANTS 32582cf92d4SXin LI #define TMPFS_ASSERT_LOCKED(node) do { \ 3264960d0d4SKonstantin Belousov MPASS((node) != NULL); \ 3274960d0d4SKonstantin Belousov MPASS((node)->tn_vnode != NULL); \ 3284960d0d4SKonstantin Belousov ASSERT_VOP_LOCKED((node)->tn_vnode, "tmpfs assert"); \ 32982cf92d4SXin LI } while (0) 33082cf92d4SXin LI #else 33182cf92d4SXin LI #define TMPFS_ASSERT_LOCKED(node) (void)0 33282cf92d4SXin LI #endif 33382cf92d4SXin LI 334016b7c7eSKonstantin Belousov /* tn_vpstate */ 335d1fa59e9SXin LI #define TMPFS_VNODE_ALLOCATING 1 336d1fa59e9SXin LI #define TMPFS_VNODE_WANT 2 33782cf92d4SXin LI #define TMPFS_VNODE_DOOMED 4 3388239a7a8SKonstantin Belousov #define TMPFS_VNODE_WRECLAIM 8 339d1fa59e9SXin LI 340016b7c7eSKonstantin Belousov /* tn_status */ 341016b7c7eSKonstantin Belousov #define TMPFS_NODE_MODIFIED 0x01 342016b7c7eSKonstantin Belousov #define TMPFS_NODE_CHANGED 0x02 343016b7c7eSKonstantin Belousov 344d1fa59e9SXin LI /* 345d1fa59e9SXin LI * Internal representation of a tmpfs mount point. 346d1fa59e9SXin LI */ 347d1fa59e9SXin LI struct tmpfs_mount { 348bba7ed20SKonstantin Belousov /* 349ac1a10efSMaxim Sobolev * Original value of the "size" parameter, for reference purposes, 350ac1a10efSMaxim Sobolev * mostly. 351ac1a10efSMaxim Sobolev */ 352ac1a10efSMaxim Sobolev off_t tm_size_max; 353ac1a10efSMaxim Sobolev /* 354bba7ed20SKonstantin Belousov * Maximum number of memory pages available for use by the file 355d1fa59e9SXin LI * system, set during mount time. This variable must never be 356974fd8c6SXin LI * used directly as it may be bigger than the current amount of 357ed2159c9SMateusz Guzik * free memory; in the extreme case, it will hold the ULONG_MAX 358bba7ed20SKonstantin Belousov * value. 359bba7ed20SKonstantin Belousov */ 360ed2159c9SMateusz Guzik u_long tm_pages_max; 361d1fa59e9SXin LI 362da7aa277SGleb Kurtsou /* Number of pages in use by the file system. */ 363ed2159c9SMateusz Guzik u_long tm_pages_used; 364d1fa59e9SXin LI 365bba7ed20SKonstantin Belousov /* 366bba7ed20SKonstantin Belousov * Pointer to the node representing the root directory of this 367bba7ed20SKonstantin Belousov * file system. 368bba7ed20SKonstantin Belousov */ 369d1fa59e9SXin LI struct tmpfs_node * tm_root; 370d1fa59e9SXin LI 371bba7ed20SKonstantin Belousov /* 372bba7ed20SKonstantin Belousov * Maximum number of possible nodes for this file system; set 373d1fa59e9SXin LI * during mount time. We need a hard limit on the maximum number 374d1fa59e9SXin LI * of nodes to avoid allocating too much of them; their objects 375d1fa59e9SXin LI * cannot be released until the file system is unmounted. 376d1fa59e9SXin LI * Otherwise, we could easily run out of memory by creating lots 377bba7ed20SKonstantin Belousov * of empty files and then simply removing them. 378bba7ed20SKonstantin Belousov */ 379d1fa59e9SXin LI ino_t tm_nodes_max; 380d1fa59e9SXin LI 3818d9a89a3SXin LI /* unrhdr used to allocate inode numbers */ 38230e0cf49SMateusz Guzik struct unrhdr64 tm_ino_unr; 383d1fa59e9SXin LI 384d1fa59e9SXin LI /* Number of nodes currently that are in use. */ 385d1fa59e9SXin LI ino_t tm_nodes_inuse; 386d1fa59e9SXin LI 38764c25043SKonstantin Belousov /* Refcounter on this struct tmpfs_mount. */ 38864c25043SKonstantin Belousov uint64_t tm_refcount; 38964c25043SKonstantin Belousov 390d1fa59e9SXin LI /* maximum representable file size */ 391d1fa59e9SXin LI u_int64_t tm_maxfilesize; 392d1fa59e9SXin LI 393bba7ed20SKonstantin Belousov /* 394bba7ed20SKonstantin Belousov * The used list contains all nodes that are currently used by 395bba7ed20SKonstantin Belousov * the file system; i.e., they refer to existing files. 396bba7ed20SKonstantin Belousov */ 397d1fa59e9SXin LI struct tmpfs_node_list tm_nodes_used; 398d1fa59e9SXin LI 399bba7ed20SKonstantin Belousov /* All node lock to protect the node list and tmp_pages_used. */ 400280ffa5eSKonstantin Belousov struct mtx tm_allnode_lock; 401d1fa59e9SXin LI 402c5ab5ce3SJaakko Heinonen /* Read-only status. */ 40300ac6a98SKonstantin Belousov bool tm_ronly; 40400ac6a98SKonstantin Belousov /* Do not use namecache. */ 40500ac6a98SKonstantin Belousov bool tm_nonc; 406c1e84733SKonstantin Belousov /* Do not update mtime on writes through mmaped areas. */ 407c1e84733SKonstantin Belousov bool tm_nomtime; 408d1fa59e9SXin LI }; 409280ffa5eSKonstantin Belousov #define TMPFS_LOCK(tm) mtx_lock(&(tm)->tm_allnode_lock) 410280ffa5eSKonstantin Belousov #define TMPFS_UNLOCK(tm) mtx_unlock(&(tm)->tm_allnode_lock) 411280ffa5eSKonstantin Belousov #define TMPFS_MP_ASSERT_LOCKED(tm) mtx_assert(&(tm)->tm_allnode_lock, MA_OWNED) 412d1fa59e9SXin LI 413d1fa59e9SXin LI /* 414d1fa59e9SXin LI * This structure maps a file identifier to a tmpfs node. Used by the 415d1fa59e9SXin LI * NFS code. 416d1fa59e9SXin LI */ 417693d10a2SRyan Moeller struct tmpfs_fid_data { 418693d10a2SRyan Moeller ino_t tfd_id; 419693d10a2SRyan Moeller unsigned long tfd_gen; 420d1fa59e9SXin LI }; 421693d10a2SRyan Moeller _Static_assert(sizeof(struct tmpfs_fid_data) <= MAXFIDSZ, 422693d10a2SRyan Moeller "(struct tmpfs_fid_data) is larger than (struct fid).fid_data"); 423d1fa59e9SXin LI 4241c07d69bSKonstantin Belousov struct tmpfs_dir_cursor { 4251c07d69bSKonstantin Belousov struct tmpfs_dirent *tdc_current; 4261c07d69bSKonstantin Belousov struct tmpfs_dirent *tdc_tree; 4271c07d69bSKonstantin Belousov }; 4281c07d69bSKonstantin Belousov 429d1fa59e9SXin LI #ifdef _KERNEL 430d1fa59e9SXin LI /* 431d1fa59e9SXin LI * Prototypes for tmpfs_subr.c. 432d1fa59e9SXin LI */ 433d1fa59e9SXin LI 43464c25043SKonstantin Belousov void tmpfs_ref_node(struct tmpfs_node *node); 4354cda7f7eSKonstantin Belousov int tmpfs_alloc_node(struct mount *mp, struct tmpfs_mount *, enum vtype, 436d1fa59e9SXin LI uid_t uid, gid_t gid, mode_t mode, struct tmpfs_node *, 4371493c2eeSBrooks Davis const char *, dev_t, struct tmpfs_node **); 438081e36e7SKonstantin Belousov int tmpfs_fo_close(struct file *fp, struct thread *td); 439d1fa59e9SXin LI void tmpfs_free_node(struct tmpfs_mount *, struct tmpfs_node *); 44064c25043SKonstantin Belousov bool tmpfs_free_node_locked(struct tmpfs_mount *, struct tmpfs_node *, bool); 44164c25043SKonstantin Belousov void tmpfs_free_tmp(struct tmpfs_mount *); 442d1fa59e9SXin LI int tmpfs_alloc_dirent(struct tmpfs_mount *, struct tmpfs_node *, 4434fd5efe7SGleb Kurtsou const char *, u_int, struct tmpfs_dirent **); 4444fd5efe7SGleb Kurtsou void tmpfs_free_dirent(struct tmpfs_mount *, struct tmpfs_dirent *); 4454fd5efe7SGleb Kurtsou void tmpfs_dirent_init(struct tmpfs_dirent *, const char *, u_int); 446158cc900SKonstantin Belousov void tmpfs_destroy_vobject(struct vnode *vp, vm_object_t obj); 4470ae6383dSXin LI int tmpfs_alloc_vp(struct mount *, struct tmpfs_node *, int, 448dfd233edSAttilio Rao struct vnode **); 449d1fa59e9SXin LI void tmpfs_free_vp(struct vnode *); 450d1fa59e9SXin LI int tmpfs_alloc_file(struct vnode *, struct vnode **, struct vattr *, 4511493c2eeSBrooks Davis struct componentname *, const char *); 452f40cb1c6SKonstantin Belousov void tmpfs_check_mtime(struct vnode *); 453d1fa59e9SXin LI void tmpfs_dir_attach(struct vnode *, struct tmpfs_dirent *); 454d1fa59e9SXin LI void tmpfs_dir_detach(struct vnode *, struct tmpfs_dirent *); 4554fd5efe7SGleb Kurtsou void tmpfs_dir_destroy(struct tmpfs_mount *, struct tmpfs_node *); 456d1fa59e9SXin LI struct tmpfs_dirent * tmpfs_dir_lookup(struct tmpfs_node *node, 457e3c7e753SKonstantin Belousov struct tmpfs_node *f, 458d1fa59e9SXin LI struct componentname *cnp); 459e1cdc30fSKonstantin Belousov int tmpfs_dir_getdents(struct tmpfs_mount *, struct tmpfs_node *, 460b214fcceSAlan Somers struct uio *, int, uint64_t *, int *); 46199d57a6bSEd Schouten int tmpfs_dir_whiteout_add(struct vnode *, struct componentname *); 46299d57a6bSEd Schouten void tmpfs_dir_whiteout_remove(struct vnode *, struct componentname *); 4630b05cac3SAlan Cox int tmpfs_reg_resize(struct vnode *, off_t, boolean_t); 4648d7cd10bSKa Ho Ng int tmpfs_reg_punch_hole(struct vnode *vp, off_t *, off_t *); 465b4b2596bSPawel Jakub Dawidek int tmpfs_chflags(struct vnode *, u_long, struct ucred *, struct thread *); 466d1fa59e9SXin LI int tmpfs_chmod(struct vnode *, mode_t, struct ucred *, struct thread *); 467d1fa59e9SXin LI int tmpfs_chown(struct vnode *, uid_t, gid_t, struct ucred *, 468d1fa59e9SXin LI struct thread *); 469d1fa59e9SXin LI int tmpfs_chsize(struct vnode *, u_quad_t, struct ucred *, struct thread *); 4707b81a399SKonstantin Belousov int tmpfs_chtimes(struct vnode *, struct vattr *, struct ucred *cred, 4717b81a399SKonstantin Belousov struct thread *); 472d1fa59e9SXin LI void tmpfs_itimes(struct vnode *, const struct timespec *, 473d1fa59e9SXin LI const struct timespec *); 474d1fa59e9SXin LI 475016b7c7eSKonstantin Belousov void tmpfs_set_accessed(struct tmpfs_mount *tm, struct tmpfs_node *node); 476e1cdc30fSKonstantin Belousov void tmpfs_set_status(struct tmpfs_mount *tm, struct tmpfs_node *node, 477e1cdc30fSKonstantin Belousov int status); 478d1fa59e9SXin LI int tmpfs_truncate(struct vnode *, off_t); 4791c07d69bSKonstantin Belousov struct tmpfs_dirent *tmpfs_dir_first(struct tmpfs_node *dnode, 4801c07d69bSKonstantin Belousov struct tmpfs_dir_cursor *dc); 4811c07d69bSKonstantin Belousov struct tmpfs_dirent *tmpfs_dir_next(struct tmpfs_node *dnode, 4821c07d69bSKonstantin Belousov struct tmpfs_dir_cursor *dc); 4832abdae33SMateusz Guzik static __inline void 4842abdae33SMateusz Guzik tmpfs_update(struct vnode *vp) 4852abdae33SMateusz Guzik { 4862abdae33SMateusz Guzik 4872abdae33SMateusz Guzik tmpfs_itimes(vp, NULL, NULL); 4882abdae33SMateusz Guzik } 489d1fa59e9SXin LI 490d1fa59e9SXin LI /* 491d1fa59e9SXin LI * Convenience macros to simplify some logical expressions. 492d1fa59e9SXin LI */ 493d1fa59e9SXin LI #define IMPLIES(a, b) (!(a) || (b)) 494d1fa59e9SXin LI #define IFF(a, b) (IMPLIES(a, b) && IMPLIES(b, a)) 495d1fa59e9SXin LI 496d1fa59e9SXin LI /* 497d1fa59e9SXin LI * Checks that the directory entry pointed by 'de' matches the name 'name' 498d1fa59e9SXin LI * with a length of 'len'. 499d1fa59e9SXin LI */ 500d1fa59e9SXin LI #define TMPFS_DIRENT_MATCHES(de, name, len) \ 5014fd5efe7SGleb Kurtsou (de->td_namelen == len && \ 5024fd5efe7SGleb Kurtsou bcmp((de)->ud.td_name, (name), (de)->td_namelen) == 0) 503d1fa59e9SXin LI 504d1fa59e9SXin LI /* 505d1fa59e9SXin LI * Ensures that the node pointed by 'node' is a directory and that its 506d1fa59e9SXin LI * contents are consistent with respect to directories. 507d1fa59e9SXin LI */ 5084fd5efe7SGleb Kurtsou #define TMPFS_VALIDATE_DIR(node) do { \ 509d1fa59e9SXin LI MPASS((node)->tn_type == VDIR); \ 510d1fa59e9SXin LI MPASS((node)->tn_size % sizeof(struct tmpfs_dirent) == 0); \ 5114fd5efe7SGleb Kurtsou } while (0) 512d1fa59e9SXin LI 513d1fa59e9SXin LI /* 514da7aa277SGleb Kurtsou * Amount of memory pages to reserve for the system (e.g., to not use by 515da7aa277SGleb Kurtsou * tmpfs). 516d1fa59e9SXin LI */ 517b4b3e349SAllan Jude #if !defined(TMPFS_PAGES_MINRESERVED) 518da7aa277SGleb Kurtsou #define TMPFS_PAGES_MINRESERVED (4 * 1024 * 1024 / PAGE_SIZE) 519b4b3e349SAllan Jude #endif 520d1fa59e9SXin LI 521da7aa277SGleb Kurtsou size_t tmpfs_mem_avail(void); 522da7aa277SGleb Kurtsou size_t tmpfs_pages_used(struct tmpfs_mount *tmp); 52328bc23abSKonstantin Belousov int tmpfs_subr_init(void); 524a51c8071SKonstantin Belousov void tmpfs_subr_uninit(void); 525d1fa59e9SXin LI 52628bc23abSKonstantin Belousov extern int tmpfs_pager_type; 52728bc23abSKonstantin Belousov 528d1fa59e9SXin LI /* 529d1fa59e9SXin LI * Macros/functions to convert from generic data structures to tmpfs 530d1fa59e9SXin LI * specific ones. 531d1fa59e9SXin LI */ 532d1fa59e9SXin LI 533d9dc64f1SKonstantin Belousov static inline struct vnode * 534d9dc64f1SKonstantin Belousov VM_TO_TMPFS_VP(vm_object_t obj) 535d9dc64f1SKonstantin Belousov { 536d9dc64f1SKonstantin Belousov struct tmpfs_node *node; 537d9dc64f1SKonstantin Belousov 538*37aea264SKonstantin Belousov if ((obj->flags & OBJ_TMPFS) == 0) 539*37aea264SKonstantin Belousov return (NULL); 540d9dc64f1SKonstantin Belousov 541d9dc64f1SKonstantin Belousov /* 542d9dc64f1SKonstantin Belousov * swp_priv is the back-pointer to the tmpfs node, if any, 543d9dc64f1SKonstantin Belousov * which uses the vm object as backing store. The object 544d9dc64f1SKonstantin Belousov * handle is not used to avoid locking sw_alloc_sx on tmpfs 545d9dc64f1SKonstantin Belousov * node instantiation/destroy. 546d9dc64f1SKonstantin Belousov */ 547d9dc64f1SKonstantin Belousov node = obj->un_pager.swp.swp_priv; 548d9dc64f1SKonstantin Belousov return (node->tn_vnode); 549d9dc64f1SKonstantin Belousov } 550d9dc64f1SKonstantin Belousov 551bba7ed20SKonstantin Belousov static inline struct tmpfs_mount * 552*37aea264SKonstantin Belousov VM_TO_TMPFS_MP(vm_object_t obj) 553*37aea264SKonstantin Belousov { 554*37aea264SKonstantin Belousov struct tmpfs_node *node; 555*37aea264SKonstantin Belousov 556*37aea264SKonstantin Belousov if ((obj->flags & OBJ_TMPFS) == 0) 557*37aea264SKonstantin Belousov return (NULL); 558*37aea264SKonstantin Belousov 559*37aea264SKonstantin Belousov node = obj->un_pager.swp.swp_priv; 560*37aea264SKonstantin Belousov MPASS(node->tn_type == VREG); 561*37aea264SKonstantin Belousov return (node->tn_reg.tn_tmp); 562*37aea264SKonstantin Belousov } 563*37aea264SKonstantin Belousov 564*37aea264SKonstantin Belousov static inline struct tmpfs_mount * 565d1fa59e9SXin LI VFS_TO_TMPFS(struct mount *mp) 566d1fa59e9SXin LI { 567d1fa59e9SXin LI struct tmpfs_mount *tmp; 568d1fa59e9SXin LI 569bba7ed20SKonstantin Belousov MPASS(mp != NULL && mp->mnt_data != NULL); 570bba7ed20SKonstantin Belousov tmp = (struct tmpfs_mount *)mp->mnt_data; 571bba7ed20SKonstantin Belousov return (tmp); 572d1fa59e9SXin LI } 573d1fa59e9SXin LI 574bba7ed20SKonstantin Belousov static inline struct tmpfs_node * 575d1fa59e9SXin LI VP_TO_TMPFS_NODE(struct vnode *vp) 576d1fa59e9SXin LI { 577d1fa59e9SXin LI struct tmpfs_node *node; 578d1fa59e9SXin LI 579bba7ed20SKonstantin Belousov MPASS(vp != NULL && vp->v_data != NULL); 580d1fa59e9SXin LI node = (struct tmpfs_node *)vp->v_data; 581bba7ed20SKonstantin Belousov return (node); 582d1fa59e9SXin LI } 583d1fa59e9SXin LI 584172ffe70SMateusz Guzik #define VP_TO_TMPFS_NODE_SMR(vp) \ 585172ffe70SMateusz Guzik ((struct tmpfs_node *)vn_load_v_data_smr(vp)) 586172ffe70SMateusz Guzik 587bba7ed20SKonstantin Belousov static inline struct tmpfs_node * 588d1fa59e9SXin LI VP_TO_TMPFS_DIR(struct vnode *vp) 589d1fa59e9SXin LI { 590d1fa59e9SXin LI struct tmpfs_node *node; 591d1fa59e9SXin LI 592d1fa59e9SXin LI node = VP_TO_TMPFS_NODE(vp); 593d1fa59e9SXin LI TMPFS_VALIDATE_DIR(node); 594bba7ed20SKonstantin Belousov return (node); 595d1fa59e9SXin LI } 596d1fa59e9SXin LI 59700ac6a98SKonstantin Belousov static inline bool 59800ac6a98SKonstantin Belousov tmpfs_use_nc(struct vnode *vp) 59900ac6a98SKonstantin Belousov { 60000ac6a98SKonstantin Belousov 60100ac6a98SKonstantin Belousov return (!(VFS_TO_TMPFS(vp->v_mount)->tm_nonc)); 60200ac6a98SKonstantin Belousov } 6032abdae33SMateusz Guzik 6042abdae33SMateusz Guzik static inline void 6052abdae33SMateusz Guzik tmpfs_update_getattr(struct vnode *vp) 6062abdae33SMateusz Guzik { 6072abdae33SMateusz Guzik struct tmpfs_node *node; 6082abdae33SMateusz Guzik 6092abdae33SMateusz Guzik node = VP_TO_TMPFS_NODE(vp); 610016b7c7eSKonstantin Belousov if (__predict_false((node->tn_status & (TMPFS_NODE_MODIFIED | 611016b7c7eSKonstantin Belousov TMPFS_NODE_CHANGED)) != 0 || node->tn_accessed)) 6122abdae33SMateusz Guzik tmpfs_update(vp); 6132abdae33SMateusz Guzik } 6142abdae33SMateusz Guzik 615081e36e7SKonstantin Belousov extern struct fileops tmpfs_fnops; 616081e36e7SKonstantin Belousov 617f9f4c60aSDoug Moore #endif /* _KERNEL */ 61800ac6a98SKonstantin Belousov 619d1fa59e9SXin LI #endif /* _FS_TMPFS_TMPFS_H_ */ 620