151a7b740SScott Long /*- 251a7b740SScott Long * Copyright (c) 2001, 2002 Scott Long <scottl@freebsd.org> 351a7b740SScott Long * All rights reserved. 451a7b740SScott Long * 551a7b740SScott Long * Redistribution and use in source and binary forms, with or without 651a7b740SScott Long * modification, are permitted provided that the following conditions 751a7b740SScott Long * are met: 851a7b740SScott Long * 1. Redistributions of source code must retain the above copyright 951a7b740SScott Long * notice, this list of conditions and the following disclaimer. 1051a7b740SScott Long * 2. Redistributions in binary form must reproduce the above copyright 1151a7b740SScott Long * notice, this list of conditions and the following disclaimer in the 1251a7b740SScott Long * documentation and/or other materials provided with the distribution. 1351a7b740SScott Long * 1451a7b740SScott Long * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 1551a7b740SScott Long * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 1651a7b740SScott Long * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 1751a7b740SScott Long * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 1851a7b740SScott Long * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 1951a7b740SScott Long * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 2051a7b740SScott Long * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 2151a7b740SScott Long * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 2251a7b740SScott Long * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 2351a7b740SScott Long * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 2451a7b740SScott Long * SUCH DAMAGE. 2551a7b740SScott Long * 2651a7b740SScott Long * $FreeBSD$ 2751a7b740SScott Long */ 2851a7b740SScott Long 2951a7b740SScott Long /* udf_vnops.c */ 3051a7b740SScott Long /* Take care of the vnode side of things */ 3151a7b740SScott Long 3251a7b740SScott Long #include <sys/param.h> 3351a7b740SScott Long #include <sys/systm.h> 3451a7b740SScott Long #include <sys/namei.h> 3551a7b740SScott Long #include <sys/kernel.h> 3651a7b740SScott Long #include <sys/malloc.h> 3751a7b740SScott Long #include <sys/stat.h> 3851a7b740SScott Long #include <sys/bio.h> 3951a7b740SScott Long #include <sys/buf.h> 406565282cSScott Long #include <sys/iconv.h> 4151a7b740SScott Long #include <sys/mount.h> 4251a7b740SScott Long #include <sys/vnode.h> 4351a7b740SScott Long #include <sys/dirent.h> 4451a7b740SScott Long #include <sys/queue.h> 4551a7b740SScott Long #include <sys/unistd.h> 4689ec2c3cSScott Long #include <sys/endian.h> 4751a7b740SScott Long 4851a7b740SScott Long #include <vm/uma.h> 4951a7b740SScott Long 5051a7b740SScott Long #include <fs/udf/ecma167-udf.h> 5151a7b740SScott Long #include <fs/udf/osta.h> 5251a7b740SScott Long #include <fs/udf/udf.h> 536565282cSScott Long #include <fs/udf/udf_mount.h> 546565282cSScott Long 556565282cSScott Long extern struct iconv_functions *udf_iconv; 5651a7b740SScott Long 5751a7b740SScott Long static int udf_access(struct vop_access_args *); 5851a7b740SScott Long static int udf_getattr(struct vop_getattr_args *); 5951a7b740SScott Long static int udf_ioctl(struct vop_ioctl_args *); 6051a7b740SScott Long static int udf_pathconf(struct vop_pathconf_args *); 6151a7b740SScott Long static int udf_read(struct vop_read_args *); 6251a7b740SScott Long static int udf_readdir(struct vop_readdir_args *); 6351a7b740SScott Long static int udf_readlink(struct vop_readlink_args *ap); 6451a7b740SScott Long static int udf_strategy(struct vop_strategy_args *); 6551a7b740SScott Long static int udf_bmap(struct vop_bmap_args *); 6651a7b740SScott Long static int udf_lookup(struct vop_cachedlookup_args *); 6751a7b740SScott Long static int udf_reclaim(struct vop_reclaim_args *); 68c2d6947dSJeroen Ruigrok van der Werven static int udf_readatoffset(struct udf_node *, int *, int, struct buf **, uint8_t **); 6998b0c789SPoul-Henning Kamp static int udf_bmap_internal(struct udf_node *, uint32_t, daddr_t *, uint32_t *); 7051a7b740SScott Long 7151a7b740SScott Long vop_t **udf_vnodeop_p; 7251a7b740SScott Long static struct vnodeopv_entry_desc udf_vnodeop_entries[] = { 7351a7b740SScott Long { &vop_default_desc, (vop_t *) vop_defaultop }, 7451a7b740SScott Long { &vop_access_desc, (vop_t *) udf_access }, 7551a7b740SScott Long { &vop_bmap_desc, (vop_t *) udf_bmap }, 7651a7b740SScott Long { &vop_cachedlookup_desc, (vop_t *) udf_lookup }, 7751a7b740SScott Long { &vop_getattr_desc, (vop_t *) udf_getattr }, 7851a7b740SScott Long { &vop_ioctl_desc, (vop_t *) udf_ioctl }, 7951a7b740SScott Long { &vop_lookup_desc, (vop_t *) vfs_cache_lookup }, 8051a7b740SScott Long { &vop_pathconf_desc, (vop_t *) udf_pathconf }, 8151a7b740SScott Long { &vop_read_desc, (vop_t *) udf_read }, 8251a7b740SScott Long { &vop_readdir_desc, (vop_t *) udf_readdir }, 8351a7b740SScott Long { &vop_readlink_desc, (vop_t *) udf_readlink }, 8451a7b740SScott Long { &vop_reclaim_desc, (vop_t *) udf_reclaim }, 8551a7b740SScott Long { &vop_strategy_desc, (vop_t *) udf_strategy }, 8651a7b740SScott Long { NULL, NULL } 8751a7b740SScott Long }; 8851a7b740SScott Long static struct vnodeopv_desc udf_vnodeop_opv_desc = 8951a7b740SScott Long { &udf_vnodeop_p, udf_vnodeop_entries }; 9051a7b740SScott Long VNODEOP_SET(udf_vnodeop_opv_desc); 9151a7b740SScott Long 9251a7b740SScott Long MALLOC_DEFINE(M_UDFFID, "UDF FID", "UDF FileId structure"); 931703656aSScott Long MALLOC_DEFINE(M_UDFDS, "UDF DS", "UDF Dirstream structure"); 9451a7b740SScott Long 954576293dSScott Long #define UDF_INVALID_BMAP -1 968db4c2f2SScott Long 9751a7b740SScott Long /* Look up a udf_node based on the ino_t passed in and return it's vnode */ 9851a7b740SScott Long int 9951a7b740SScott Long udf_hashlookup(struct udf_mnt *udfmp, ino_t id, int flags, struct vnode **vpp) 10051a7b740SScott Long { 10151a7b740SScott Long struct udf_node *node; 102c9c0dc5bSScott Long struct udf_hash_lh *lh; 10351a7b740SScott Long int error; 10451a7b740SScott Long 10551a7b740SScott Long *vpp = NULL; 10651a7b740SScott Long 10751a7b740SScott Long loop: 10851a7b740SScott Long mtx_lock(&udfmp->hash_mtx); 109c9c0dc5bSScott Long lh = &udfmp->hashtbl[id % udfmp->hashsz]; 110c9c0dc5bSScott Long if (lh == NULL) 111c9c0dc5bSScott Long return (ENOENT); 112c9c0dc5bSScott Long LIST_FOREACH(node, lh, le) { 11351a7b740SScott Long if (node->hash_id == id) { 11451a7b740SScott Long VI_LOCK(node->i_vnode); 11551a7b740SScott Long mtx_unlock(&udfmp->hash_mtx); 11651a7b740SScott Long error = vget(node->i_vnode, flags | LK_INTERLOCK, 11751a7b740SScott Long curthread); 11851a7b740SScott Long if (error == ENOENT) 11951a7b740SScott Long goto loop; 12051a7b740SScott Long if (error) 12151a7b740SScott Long return (error); 12251a7b740SScott Long *vpp = node->i_vnode; 12351a7b740SScott Long return (0); 12451a7b740SScott Long } 12551a7b740SScott Long } 12651a7b740SScott Long 12751a7b740SScott Long mtx_unlock(&udfmp->hash_mtx); 12851a7b740SScott Long return (0); 12951a7b740SScott Long } 13051a7b740SScott Long 13151a7b740SScott Long int 13251a7b740SScott Long udf_hashins(struct udf_node *node) 13351a7b740SScott Long { 13451a7b740SScott Long struct udf_mnt *udfmp; 135c9c0dc5bSScott Long struct udf_hash_lh *lh; 13651a7b740SScott Long 13751a7b740SScott Long udfmp = node->udfmp; 13851a7b740SScott Long 139bf6ac110STim J. Robbins vn_lock(node->i_vnode, LK_EXCLUSIVE | LK_RETRY, curthread); 14051a7b740SScott Long mtx_lock(&udfmp->hash_mtx); 141c9c0dc5bSScott Long lh = &udfmp->hashtbl[node->hash_id % udfmp->hashsz]; 142c9c0dc5bSScott Long if (lh == NULL) 143c9c0dc5bSScott Long LIST_INIT(lh); 144c9c0dc5bSScott Long LIST_INSERT_HEAD(lh, node, le); 14551a7b740SScott Long mtx_unlock(&udfmp->hash_mtx); 14651a7b740SScott Long 14751a7b740SScott Long return (0); 14851a7b740SScott Long } 14951a7b740SScott Long 15051a7b740SScott Long int 15151a7b740SScott Long udf_hashrem(struct udf_node *node) 15251a7b740SScott Long { 15351a7b740SScott Long struct udf_mnt *udfmp; 154c9c0dc5bSScott Long struct udf_hash_lh *lh; 15551a7b740SScott Long 15651a7b740SScott Long udfmp = node->udfmp; 15751a7b740SScott Long 15851a7b740SScott Long mtx_lock(&udfmp->hash_mtx); 159c9c0dc5bSScott Long lh = &udfmp->hashtbl[node->hash_id % udfmp->hashsz]; 160c9c0dc5bSScott Long if (lh == NULL) 161c9c0dc5bSScott Long panic("hash entry is NULL, node->hash_id= %d\n", node->hash_id); 162c9c0dc5bSScott Long LIST_REMOVE(node, le); 16351a7b740SScott Long mtx_unlock(&udfmp->hash_mtx); 16451a7b740SScott Long 16551a7b740SScott Long return (0); 16651a7b740SScott Long } 16751a7b740SScott Long 16851a7b740SScott Long int 16951a7b740SScott Long udf_allocv(struct mount *mp, struct vnode **vpp, struct thread *td) 17051a7b740SScott Long { 17151a7b740SScott Long int error; 17251a7b740SScott Long struct vnode *vp; 17351a7b740SScott Long 17406be2aaaSNate Lawson error = getnewvnode("udf", mp, udf_vnodeop_p, &vp); 17551a7b740SScott Long if (error) { 17651a7b740SScott Long printf("udf_allocv: failed to allocate new vnode\n"); 17751a7b740SScott Long return (error); 17851a7b740SScott Long } 17951a7b740SScott Long 18051a7b740SScott Long *vpp = vp; 18151a7b740SScott Long return (0); 18251a7b740SScott Long } 18351a7b740SScott Long 18451a7b740SScott Long /* Convert file entry permission (5 bits per owner/group/user) to a mode_t */ 18551a7b740SScott Long static mode_t 18651a7b740SScott Long udf_permtomode(struct udf_node *node) 18751a7b740SScott Long { 188c2d6947dSJeroen Ruigrok van der Werven uint32_t perm; 189bf1c3dddSScott Long uint16_t flags; 19051a7b740SScott Long mode_t mode; 19151a7b740SScott Long 192bf1c3dddSScott Long perm = le32toh(node->fentry->perm); 193bf1c3dddSScott Long flags = le16toh(node->fentry->icbtag.flags); 19451a7b740SScott Long 19551a7b740SScott Long mode = perm & UDF_FENTRY_PERM_USER_MASK; 19651a7b740SScott Long mode |= ((perm & UDF_FENTRY_PERM_GRP_MASK) >> 2); 19751a7b740SScott Long mode |= ((perm & UDF_FENTRY_PERM_OWNER_MASK) >> 4); 19851a7b740SScott Long mode |= ((flags & UDF_ICB_TAG_FLAGS_STICKY) << 4); 19951a7b740SScott Long mode |= ((flags & UDF_ICB_TAG_FLAGS_SETGID) << 6); 20051a7b740SScott Long mode |= ((flags & UDF_ICB_TAG_FLAGS_SETUID) << 8); 20151a7b740SScott Long 20251a7b740SScott Long return (mode); 20351a7b740SScott Long } 20451a7b740SScott Long 20551a7b740SScott Long static int 20651a7b740SScott Long udf_access(struct vop_access_args *a) 20751a7b740SScott Long { 20851a7b740SScott Long struct vnode *vp; 20951a7b740SScott Long struct udf_node *node; 21051a7b740SScott Long mode_t a_mode, mode; 21151a7b740SScott Long 21251a7b740SScott Long vp = a->a_vp; 21351a7b740SScott Long node = VTON(vp); 21451a7b740SScott Long a_mode = a->a_mode; 21551a7b740SScott Long 21651a7b740SScott Long if (a_mode & VWRITE) { 21751a7b740SScott Long switch (vp->v_type) { 21851a7b740SScott Long case VDIR: 21951a7b740SScott Long case VLNK: 22051a7b740SScott Long case VREG: 22151a7b740SScott Long return (EROFS); 22251a7b740SScott Long /* NOT REACHED */ 22351a7b740SScott Long default: 22451a7b740SScott Long break; 22551a7b740SScott Long } 22651a7b740SScott Long } 22751a7b740SScott Long 22851a7b740SScott Long mode = udf_permtomode(node); 22951a7b740SScott Long 23051a7b740SScott Long return (vaccess(vp->v_type, mode, node->fentry->uid, node->fentry->gid, 23151a7b740SScott Long a_mode, a->a_cred, NULL)); 23251a7b740SScott Long } 23351a7b740SScott Long 23451a7b740SScott Long static int mon_lens[2][12] = { 23551a7b740SScott Long {31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31}, 23651a7b740SScott Long {31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31} 23751a7b740SScott Long }; 23851a7b740SScott Long 23951a7b740SScott Long static int 24051a7b740SScott Long udf_isaleapyear(int year) 24151a7b740SScott Long { 24251a7b740SScott Long int i; 24351a7b740SScott Long 24451a7b740SScott Long i = (year % 4) ? 0 : 1; 24551a7b740SScott Long i &= (year % 100) ? 1 : 0; 24651a7b740SScott Long i |= (year % 400) ? 0 : 1; 24751a7b740SScott Long 24851a7b740SScott Long return i; 24951a7b740SScott Long } 25051a7b740SScott Long 25151a7b740SScott Long /* 25251a7b740SScott Long * XXX This is just a rough hack. Daylight savings isn't calculated and tv_nsec 25351a7b740SScott Long * is ignored. 25451a7b740SScott Long * Timezone calculation compliments of Julian Elischer <julian@elischer.org>. 25551a7b740SScott Long */ 25651a7b740SScott Long static void 25751a7b740SScott Long udf_timetotimespec(struct timestamp *time, struct timespec *t) 25851a7b740SScott Long { 259bf1c3dddSScott Long int i, lpyear, daysinyear, year; 26051a7b740SScott Long union { 261c2d6947dSJeroen Ruigrok van der Werven uint16_t u_tz_offset; 26251a7b740SScott Long int16_t s_tz_offset; 26351a7b740SScott Long } tz; 26451a7b740SScott Long 26551a7b740SScott Long t->tv_nsec = 0; 26651a7b740SScott Long 26751a7b740SScott Long /* DirectCD seems to like using bogus year values */ 268bf1c3dddSScott Long year = le16toh(time->year); 269bf1c3dddSScott Long if (year < 1970) { 27051a7b740SScott Long t->tv_sec = 0; 27151a7b740SScott Long return; 27251a7b740SScott Long } 27351a7b740SScott Long 27451a7b740SScott Long /* Calculate the time and day */ 27551a7b740SScott Long t->tv_sec = time->second; 27651a7b740SScott Long t->tv_sec += time->minute * 60; 27751a7b740SScott Long t->tv_sec += time->hour * 3600; 27851a7b740SScott Long t->tv_sec += time->day * 3600 * 24; 27951a7b740SScott Long 28051a7b740SScott Long /* Calclulate the month */ 281bf1c3dddSScott Long lpyear = udf_isaleapyear(year); 28251a7b740SScott Long for (i = 1; i < time->month; i++) 28351a7b740SScott Long t->tv_sec += mon_lens[lpyear][i] * 3600 * 24; 28451a7b740SScott Long 28551a7b740SScott Long /* Speed up the calculation */ 286bf1c3dddSScott Long if (year > 1979) 28751a7b740SScott Long t->tv_sec += 315532800; 288bf1c3dddSScott Long if (year > 1989) 28951a7b740SScott Long t->tv_sec += 315619200; 290bf1c3dddSScott Long if (year > 1999) 29151a7b740SScott Long t->tv_sec += 315532800; 292bf1c3dddSScott Long for (i = 2000; i < year; i++) { 29351a7b740SScott Long daysinyear = udf_isaleapyear(i) + 365 ; 29451a7b740SScott Long t->tv_sec += daysinyear * 3600 * 24; 29551a7b740SScott Long } 29651a7b740SScott Long 29751a7b740SScott Long /* 29851a7b740SScott Long * Calculate the time zone. The timezone is 12 bit signed 2's 29951a7b740SScott Long * compliment, so we gotta do some extra magic to handle it right. 30051a7b740SScott Long */ 301bf1c3dddSScott Long tz.u_tz_offset = le16toh(time->type_tz); 30251a7b740SScott Long tz.u_tz_offset &= 0x0fff; 30351a7b740SScott Long if (tz.u_tz_offset & 0x0800) 30451a7b740SScott Long tz.u_tz_offset |= 0xf000; /* extend the sign to 16 bits */ 30551a7b740SScott Long if ((time->type_tz & 0x1000) && (tz.s_tz_offset != -2047)) 30651a7b740SScott Long t->tv_sec -= tz.s_tz_offset * 60; 30751a7b740SScott Long 30851a7b740SScott Long return; 30951a7b740SScott Long } 31051a7b740SScott Long 31151a7b740SScott Long static int 31251a7b740SScott Long udf_getattr(struct vop_getattr_args *a) 31351a7b740SScott Long { 31451a7b740SScott Long struct vnode *vp; 31551a7b740SScott Long struct udf_node *node; 31651a7b740SScott Long struct vattr *vap; 31751a7b740SScott Long struct file_entry *fentry; 31851a7b740SScott Long struct timespec ts; 31951a7b740SScott Long 32051a7b740SScott Long ts.tv_sec = 0; 32151a7b740SScott Long 32251a7b740SScott Long vp = a->a_vp; 32351a7b740SScott Long vap = a->a_vap; 32451a7b740SScott Long node = VTON(vp); 32551a7b740SScott Long fentry = node->fentry; 32651a7b740SScott Long 32751a7b740SScott Long vap->va_fsid = dev2udev(node->i_dev); 32851a7b740SScott Long vap->va_fileid = node->hash_id; 32951a7b740SScott Long vap->va_mode = udf_permtomode(node); 330bf1c3dddSScott Long vap->va_nlink = le16toh(fentry->link_cnt); 33151a7b740SScott Long /* 33251a7b740SScott Long * XXX The spec says that -1 is valid for uid/gid and indicates an 33351a7b740SScott Long * invalid uid/gid. How should this be represented? 33451a7b740SScott Long */ 335bf1c3dddSScott Long vap->va_uid = (le32toh(fentry->uid) == -1) ? 0 : le32toh(fentry->uid); 336bf1c3dddSScott Long vap->va_gid = (le32toh(fentry->gid) == -1) ? 0 : le32toh(fentry->gid); 33751a7b740SScott Long udf_timetotimespec(&fentry->atime, &vap->va_atime); 33851a7b740SScott Long udf_timetotimespec(&fentry->mtime, &vap->va_mtime); 33951a7b740SScott Long vap->va_ctime = vap->va_mtime; /* XXX Stored as an Extended Attribute */ 34051a7b740SScott Long vap->va_rdev = 0; /* XXX */ 34151a7b740SScott Long if (vp->v_type & VDIR) { 34251a7b740SScott Long /* 34351a7b740SScott Long * Directories that are recorded within their ICB will show 34451a7b740SScott Long * as having 0 blocks recorded. Since tradition dictates 34551a7b740SScott Long * that directories consume at least one logical block, 34651a7b740SScott Long * make it appear so. 34751a7b740SScott Long */ 34851a7b740SScott Long if (fentry->logblks_rec != 0) { 349bf1c3dddSScott Long vap->va_size = 350bf1c3dddSScott Long le64toh(fentry->logblks_rec) * node->udfmp->bsize; 35151a7b740SScott Long } else { 35251a7b740SScott Long vap->va_size = node->udfmp->bsize; 35351a7b740SScott Long } 35451a7b740SScott Long } else { 355bf1c3dddSScott Long vap->va_size = le64toh(fentry->inf_len); 35651a7b740SScott Long } 35751a7b740SScott Long vap->va_flags = 0; 35851a7b740SScott Long vap->va_gen = 1; 35951a7b740SScott Long vap->va_blocksize = node->udfmp->bsize; 360bf1c3dddSScott Long vap->va_bytes = le64toh(fentry->inf_len); 36151a7b740SScott Long vap->va_type = vp->v_type; 36251a7b740SScott Long vap->va_filerev = 0; /* XXX */ 36351a7b740SScott Long return (0); 36451a7b740SScott Long } 36551a7b740SScott Long 36651a7b740SScott Long /* 367bf1c3dddSScott Long * File specific ioctls. 36851a7b740SScott Long */ 36951a7b740SScott Long static int 37051a7b740SScott Long udf_ioctl(struct vop_ioctl_args *a) 37151a7b740SScott Long { 372c80a90c5SScott Long printf("%s called\n", __func__); 3731d02d910SPoul-Henning Kamp return (ENOTTY); 37451a7b740SScott Long } 37551a7b740SScott Long 37651a7b740SScott Long /* 37751a7b740SScott Long * I'm not sure that this has much value in a read-only filesystem, but 37851a7b740SScott Long * cd9660 has it too. 37951a7b740SScott Long */ 38051a7b740SScott Long static int 38151a7b740SScott Long udf_pathconf(struct vop_pathconf_args *a) 38251a7b740SScott Long { 38351a7b740SScott Long 38451a7b740SScott Long switch (a->a_name) { 38551a7b740SScott Long case _PC_LINK_MAX: 38651a7b740SScott Long *a->a_retval = 65535; 38751a7b740SScott Long return (0); 38851a7b740SScott Long case _PC_NAME_MAX: 38951a7b740SScott Long *a->a_retval = NAME_MAX; 39051a7b740SScott Long return (0); 39151a7b740SScott Long case _PC_PATH_MAX: 39251a7b740SScott Long *a->a_retval = PATH_MAX; 39351a7b740SScott Long return (0); 39451a7b740SScott Long case _PC_NO_TRUNC: 39551a7b740SScott Long *a->a_retval = 1; 39651a7b740SScott Long return (0); 39751a7b740SScott Long default: 39851a7b740SScott Long return (EINVAL); 39951a7b740SScott Long } 40051a7b740SScott Long } 40151a7b740SScott Long 40251a7b740SScott Long static int 40351a7b740SScott Long udf_read(struct vop_read_args *a) 40451a7b740SScott Long { 40551a7b740SScott Long struct vnode *vp = a->a_vp; 40651a7b740SScott Long struct uio *uio = a->a_uio; 40751a7b740SScott Long struct udf_node *node = VTON(vp); 40851a7b740SScott Long struct buf *bp; 409c2d6947dSJeroen Ruigrok van der Werven uint8_t *data; 41051a7b740SScott Long int error = 0; 411d1def83bSScott Long int size, fsize, offset; 41251a7b740SScott Long 41351a7b740SScott Long if (uio->uio_offset < 0) 41451a7b740SScott Long return (EINVAL); 41551a7b740SScott Long 416bf1c3dddSScott Long fsize = le64toh(node->fentry->inf_len); 417d1def83bSScott Long 41851a7b740SScott Long while (uio->uio_offset < fsize && uio->uio_resid > 0) { 41951a7b740SScott Long offset = uio->uio_offset; 420d1def83bSScott Long size = uio->uio_resid; 42151a7b740SScott Long error = udf_readatoffset(node, &size, offset, &bp, &data); 422744bb56dSScott Long if (error == 0) 423c9524588SDag-Erling Smørgrav error = uiomove(data, size, uio); 42451a7b740SScott Long if (bp != NULL) 42551a7b740SScott Long brelse(bp); 42651a7b740SScott Long if (error) 42751a7b740SScott Long break; 42851a7b740SScott Long }; 42951a7b740SScott Long 43051a7b740SScott Long return (error); 43151a7b740SScott Long } 43251a7b740SScott Long 43351a7b740SScott Long /* 43451a7b740SScott Long * Call the OSTA routines to translate the name from a CS0 dstring to a 43551a7b740SScott Long * 16-bit Unicode String. Hooks need to be placed in here to translate from 4366565282cSScott Long * Unicode to the encoding that the kernel/user expects. Return the length 4376565282cSScott Long * of the translated string. 43851a7b740SScott Long */ 43951a7b740SScott Long static int 4406565282cSScott Long udf_transname(char *cs0string, char *destname, int len, struct udf_mnt *udfmp) 44151a7b740SScott Long { 44251a7b740SScott Long unicode_t *transname; 4436565282cSScott Long char *unibuf, *unip; 4446565282cSScott Long int i, unilen = 0, destlen; 4456565282cSScott Long size_t destleft = MAXNAMLEN; 44651a7b740SScott Long 4476565282cSScott Long /* Convert 16-bit Unicode to destname */ 4486565282cSScott Long if (udfmp->im_flags & UDFMNT_KICONV && udf_iconv) { 4496565282cSScott Long /* allocate a buffer big enough to hold an 8->16 bit expansion */ 4506565282cSScott Long unibuf = uma_zalloc(udf_zone_trans, M_WAITOK); 4516565282cSScott Long unip = unibuf; 4526565282cSScott Long if ((unilen = udf_UncompressUnicodeByte(len, cs0string, unibuf)) == -1) { 4536565282cSScott Long printf("udf: Unicode translation failed\n"); 4546565282cSScott Long uma_zfree(udf_zone_trans, unibuf); 4556565282cSScott Long return 0; 4566565282cSScott Long } 4576565282cSScott Long 4586565282cSScott Long while (unilen > 0 && destleft > 0) { 4596565282cSScott Long udf_iconv->conv(udfmp->im_d2l, (const char **)&unibuf, 4606565282cSScott Long (size_t *)&unilen, (char **)&destname, &destleft); 4616565282cSScott Long /* Unconverted character found */ 4626565282cSScott Long if (unilen > 0 && destleft > 0) { 4636565282cSScott Long *destname++ = '?'; 4646565282cSScott Long destleft--; 4656565282cSScott Long unibuf += 2; 4666565282cSScott Long unilen -= 2; 4676565282cSScott Long } 4686565282cSScott Long } 4696565282cSScott Long uma_zfree(udf_zone_trans, unip); 4706565282cSScott Long *destname = '\0'; 4716565282cSScott Long destlen = MAXNAMLEN - (int)destleft; 4726565282cSScott Long } else { 47351a7b740SScott Long /* allocate a buffer big enough to hold an 8->16 bit expansion */ 474a163d034SWarner Losh transname = uma_zalloc(udf_zone_trans, M_WAITOK); 47551a7b740SScott Long 47651a7b740SScott Long if ((unilen = udf_UncompressUnicode(len, cs0string, transname)) == -1) { 47751a7b740SScott Long printf("udf: Unicode translation failed\n"); 47851a7b740SScott Long uma_zfree(udf_zone_trans, transname); 47951a7b740SScott Long return 0; 48051a7b740SScott Long } 48151a7b740SScott Long 48251a7b740SScott Long for (i = 0; i < unilen ; i++) { 48351a7b740SScott Long if (transname[i] & 0xff00) { 48451a7b740SScott Long destname[i] = '.'; /* Fudge the 16bit chars */ 48551a7b740SScott Long } else { 48651a7b740SScott Long destname[i] = transname[i] & 0xff; 48751a7b740SScott Long } 48851a7b740SScott Long } 48951a7b740SScott Long uma_zfree(udf_zone_trans, transname); 4906565282cSScott Long destname[unilen] = 0; 4916565282cSScott Long destlen = unilen; 4926565282cSScott Long } 49351a7b740SScott Long 4946565282cSScott Long return (destlen); 49551a7b740SScott Long } 49651a7b740SScott Long 49751a7b740SScott Long /* 49851a7b740SScott Long * Compare a CS0 dstring with a name passed in from the VFS layer. Return 49951a7b740SScott Long * 0 on a successful match, nonzero therwise. Unicode work may need to be done 50051a7b740SScott Long * here also. 50151a7b740SScott Long */ 50251a7b740SScott Long static int 5036565282cSScott Long udf_cmpname(char *cs0string, char *cmpname, int cs0len, int cmplen, struct udf_mnt *udfmp) 50451a7b740SScott Long { 50595ec5961SScott Long char *transname; 50695ec5961SScott Long int error = 0; 50751a7b740SScott Long 50895ec5961SScott Long /* This is overkill, but not worth creating a new zone */ 509a163d034SWarner Losh transname = uma_zalloc(udf_zone_trans, M_WAITOK); 51095ec5961SScott Long 5116565282cSScott Long cs0len = udf_transname(cs0string, transname, cs0len, udfmp); 51251a7b740SScott Long 51351a7b740SScott Long /* Easy check. If they aren't the same length, they aren't equal */ 51495ec5961SScott Long if ((cs0len == 0) || (cs0len != cmplen)) 51595ec5961SScott Long error = -1; 51695ec5961SScott Long else 51795ec5961SScott Long error = bcmp(transname, cmpname, cmplen); 51851a7b740SScott Long 51995ec5961SScott Long uma_zfree(udf_zone_trans, transname); 52095ec5961SScott Long return (error); 52151a7b740SScott Long } 52251a7b740SScott Long 52351a7b740SScott Long struct udf_uiodir { 52451a7b740SScott Long struct dirent *dirent; 52551a7b740SScott Long u_long *cookies; 52651a7b740SScott Long int ncookies; 52751a7b740SScott Long int acookies; 52851a7b740SScott Long int eofflag; 52951a7b740SScott Long }; 53051a7b740SScott Long 53151a7b740SScott Long static int 53251a7b740SScott Long udf_uiodir(struct udf_uiodir *uiodir, int de_size, struct uio *uio, long cookie) 53351a7b740SScott Long { 53451a7b740SScott Long if (uiodir->cookies != NULL) { 53551a7b740SScott Long if (++uiodir->acookies > uiodir->ncookies) { 53651a7b740SScott Long uiodir->eofflag = 0; 53751a7b740SScott Long return (-1); 53851a7b740SScott Long } 53951a7b740SScott Long *uiodir->cookies++ = cookie; 54051a7b740SScott Long } 54151a7b740SScott Long 54251a7b740SScott Long if (uio->uio_resid < de_size) { 54351a7b740SScott Long uiodir->eofflag = 0; 54451a7b740SScott Long return (-1); 54551a7b740SScott Long } 54651a7b740SScott Long 547c9524588SDag-Erling Smørgrav return (uiomove(uiodir->dirent, de_size, uio)); 54851a7b740SScott Long } 54951a7b740SScott Long 5501703656aSScott Long static struct udf_dirstream * 5511703656aSScott Long udf_opendir(struct udf_node *node, int offset, int fsize, struct udf_mnt *udfmp) 5521703656aSScott Long { 5531703656aSScott Long struct udf_dirstream *ds; 5541703656aSScott Long 555a163d034SWarner Losh ds = uma_zalloc(udf_zone_ds, M_WAITOK | M_ZERO); 5561703656aSScott Long 5571703656aSScott Long ds->node = node; 5581703656aSScott Long ds->offset = offset; 5591703656aSScott Long ds->udfmp = udfmp; 5601703656aSScott Long ds->fsize = fsize; 5611703656aSScott Long 5621703656aSScott Long return (ds); 5631703656aSScott Long } 5641703656aSScott Long 5651703656aSScott Long static struct fileid_desc * 5661703656aSScott Long udf_getfid(struct udf_dirstream *ds) 5671703656aSScott Long { 5681703656aSScott Long struct fileid_desc *fid; 5691703656aSScott Long int error, frag_size = 0, total_fid_size; 5701703656aSScott Long 5711703656aSScott Long /* End of directory? */ 5721703656aSScott Long if (ds->offset + ds->off >= ds->fsize) { 5731703656aSScott Long ds->error = 0; 5741703656aSScott Long return (NULL); 5751703656aSScott Long } 5761703656aSScott Long 5771703656aSScott Long /* Grab the first extent of the directory */ 5781703656aSScott Long if (ds->off == 0) { 5791703656aSScott Long ds->size = 0; 5801703656aSScott Long error = udf_readatoffset(ds->node, &ds->size, ds->offset, 5811703656aSScott Long &ds->bp, &ds->data); 5821703656aSScott Long if (error) { 5831703656aSScott Long ds->error = error; 584744bb56dSScott Long if (ds->bp != NULL) 585744bb56dSScott Long brelse(ds->bp); 5861703656aSScott Long return (NULL); 5871703656aSScott Long } 5881703656aSScott Long } 5891703656aSScott Long 5904576293dSScott Long /* 5914576293dSScott Long * Clean up from a previous fragmented FID. 5924576293dSScott Long * XXX Is this the right place for this? 5934576293dSScott Long */ 5941703656aSScott Long if (ds->fid_fragment && ds->buf != NULL) { 5951703656aSScott Long ds->fid_fragment = 0; 5961703656aSScott Long FREE(ds->buf, M_UDFFID); 5971703656aSScott Long } 5981703656aSScott Long 5991703656aSScott Long fid = (struct fileid_desc*)&ds->data[ds->off]; 6001703656aSScott Long 6011703656aSScott Long /* 6021703656aSScott Long * Check to see if the fid is fragmented. The first test 6031703656aSScott Long * ensures that we don't wander off the end of the buffer 6041703656aSScott Long * looking for the l_iu and l_fi fields. 6051703656aSScott Long */ 6061703656aSScott Long if (ds->off + UDF_FID_SIZE > ds->size || 607bf1c3dddSScott Long ds->off + le16toh(fid->l_iu) + fid->l_fi + UDF_FID_SIZE > ds->size){ 6081703656aSScott Long 6091703656aSScott Long /* Copy what we have of the fid into a buffer */ 6101703656aSScott Long frag_size = ds->size - ds->off; 6111703656aSScott Long if (frag_size >= ds->udfmp->bsize) { 6121703656aSScott Long printf("udf: invalid FID fragment\n"); 6131703656aSScott Long ds->error = EINVAL; 6141703656aSScott Long return (NULL); 6151703656aSScott Long } 6161703656aSScott Long 6171703656aSScott Long /* 6181703656aSScott Long * File ID descriptors can only be at most one 6191703656aSScott Long * logical sector in size. 6201703656aSScott Long */ 6211703656aSScott Long MALLOC(ds->buf, uint8_t*, ds->udfmp->bsize, M_UDFFID, 622a163d034SWarner Losh M_WAITOK | M_ZERO); 6231703656aSScott Long bcopy(fid, ds->buf, frag_size); 6241703656aSScott Long 6251703656aSScott Long /* Reduce all of the casting magic */ 6261703656aSScott Long fid = (struct fileid_desc*)ds->buf; 6271703656aSScott Long 6281703656aSScott Long if (ds->bp != NULL) 6291703656aSScott Long brelse(ds->bp); 6301703656aSScott Long 6311703656aSScott Long /* Fetch the next allocation */ 6321703656aSScott Long ds->offset += ds->size; 6331703656aSScott Long ds->size = 0; 6341703656aSScott Long error = udf_readatoffset(ds->node, &ds->size, ds->offset, 6351703656aSScott Long &ds->bp, &ds->data); 6361703656aSScott Long if (error) { 6371703656aSScott Long ds->error = error; 6381703656aSScott Long return (NULL); 6391703656aSScott Long } 6401703656aSScott Long 6411703656aSScott Long /* 6421703656aSScott Long * If the fragment was so small that we didn't get 6431703656aSScott Long * the l_iu and l_fi fields, copy those in. 6441703656aSScott Long */ 6451703656aSScott Long if (frag_size < UDF_FID_SIZE) 6461703656aSScott Long bcopy(ds->data, &ds->buf[frag_size], 6471703656aSScott Long UDF_FID_SIZE - frag_size); 6481703656aSScott Long 6491703656aSScott Long /* 6501703656aSScott Long * Now that we have enough of the fid to work with, 6511703656aSScott Long * copy in the rest of the fid from the new 6521703656aSScott Long * allocation. 6531703656aSScott Long */ 654bf1c3dddSScott Long total_fid_size = UDF_FID_SIZE + le16toh(fid->l_iu) + fid->l_fi; 6551703656aSScott Long if (total_fid_size > ds->udfmp->bsize) { 6561703656aSScott Long printf("udf: invalid FID\n"); 6571703656aSScott Long ds->error = EIO; 6581703656aSScott Long return (NULL); 6591703656aSScott Long } 6601703656aSScott Long bcopy(ds->data, &ds->buf[frag_size], 6611703656aSScott Long total_fid_size - frag_size); 6621703656aSScott Long 6631703656aSScott Long ds->fid_fragment = 1; 6641703656aSScott Long } else { 665bf1c3dddSScott Long total_fid_size = le16toh(fid->l_iu) + fid->l_fi + UDF_FID_SIZE; 6661703656aSScott Long } 6671703656aSScott Long 6681703656aSScott Long /* 6691703656aSScott Long * Update the offset. Align on a 4 byte boundary because the 6704576293dSScott Long * UDF spec says so. 6711703656aSScott Long */ 6721703656aSScott Long ds->this_off = ds->off; 6731703656aSScott Long if (!ds->fid_fragment) { 6741703656aSScott Long ds->off += (total_fid_size + 3) & ~0x03; 6751703656aSScott Long } else { 6761703656aSScott Long ds->off = (total_fid_size - frag_size + 3) & ~0x03; 6771703656aSScott Long } 6781703656aSScott Long 6791703656aSScott Long return (fid); 6801703656aSScott Long } 6811703656aSScott Long 6821703656aSScott Long static void 6831703656aSScott Long udf_closedir(struct udf_dirstream *ds) 6841703656aSScott Long { 6851703656aSScott Long 6861703656aSScott Long if (ds->bp != NULL) 6871703656aSScott Long brelse(ds->bp); 6881703656aSScott Long 6891703656aSScott Long if (ds->fid_fragment && ds->buf != NULL) 6901703656aSScott Long FREE(ds->buf, M_UDFFID); 6911703656aSScott Long 6921703656aSScott Long uma_zfree(udf_zone_ds, ds); 6931703656aSScott Long } 6941703656aSScott Long 69551a7b740SScott Long static int 69651a7b740SScott Long udf_readdir(struct vop_readdir_args *a) 69751a7b740SScott Long { 69851a7b740SScott Long struct vnode *vp; 69951a7b740SScott Long struct uio *uio; 70051a7b740SScott Long struct dirent dir; 70151a7b740SScott Long struct udf_node *node; 7026565282cSScott Long struct udf_mnt *udfmp; 70351a7b740SScott Long struct fileid_desc *fid; 70451a7b740SScott Long struct udf_uiodir uiodir; 7051703656aSScott Long struct udf_dirstream *ds; 70651a7b740SScott Long u_long *cookies = NULL; 70751a7b740SScott Long int ncookies; 708c8eeea2fSScott Long int error = 0; 70951a7b740SScott Long 71051a7b740SScott Long vp = a->a_vp; 71151a7b740SScott Long uio = a->a_uio; 71251a7b740SScott Long node = VTON(vp); 7136565282cSScott Long udfmp = node->udfmp; 71451a7b740SScott Long uiodir.eofflag = 1; 71551a7b740SScott Long 71651a7b740SScott Long if (a->a_ncookies != NULL) { 71751a7b740SScott Long /* 71851a7b740SScott Long * Guess how many entries are needed. If we run out, this 71951a7b740SScott Long * function will be called again and thing will pick up were 72051a7b740SScott Long * it left off. 72151a7b740SScott Long */ 72251a7b740SScott Long ncookies = uio->uio_resid / 8; 72351a7b740SScott Long MALLOC(cookies, u_long *, sizeof(u_long) * ncookies, 724a163d034SWarner Losh M_TEMP, M_WAITOK); 72551a7b740SScott Long if (cookies == NULL) 72651a7b740SScott Long return (ENOMEM); 72751a7b740SScott Long uiodir.ncookies = ncookies; 72851a7b740SScott Long uiodir.cookies = cookies; 72951a7b740SScott Long uiodir.acookies = 0; 73051a7b740SScott Long } else { 73151a7b740SScott Long uiodir.cookies = NULL; 73251a7b740SScott Long } 73351a7b740SScott Long 73451a7b740SScott Long /* 73551a7b740SScott Long * Iterate through the file id descriptors. Give the parent dir 7364576293dSScott Long * entry special attention. 73751a7b740SScott Long */ 738bf1c3dddSScott Long ds = udf_opendir(node, uio->uio_offset, le64toh(node->fentry->inf_len), 7391703656aSScott Long node->udfmp); 74051a7b740SScott Long 7411703656aSScott Long while ((fid = udf_getfid(ds)) != NULL) { 74251a7b740SScott Long 74351a7b740SScott Long /* XXX Should we return an error on a bad fid? */ 74451a7b740SScott Long if (udf_checktag(&fid->tag, TAGID_FID)) { 74551a7b740SScott Long printf("Invalid FID tag\n"); 74677411499SScott Long hexdump(fid, UDF_FID_SIZE, NULL, 0); 7471703656aSScott Long error = EIO; 74851a7b740SScott Long break; 74951a7b740SScott Long } 75051a7b740SScott Long 75151a7b740SScott Long /* Is this a deleted file? */ 7522bbe0d36SScott Long if (fid->file_char & UDF_FILE_CHAR_DEL) 7531703656aSScott Long continue; 75451a7b740SScott Long 7552bbe0d36SScott Long if ((fid->l_fi == 0) && (fid->file_char & UDF_FILE_CHAR_PAR)) { 75651a7b740SScott Long /* Do up the '.' and '..' entries. Dummy values are 75751a7b740SScott Long * used for the cookies since the offset here is 75851a7b740SScott Long * usually zero, and NFS doesn't like that value 75951a7b740SScott Long */ 760c8eeea2fSScott Long dir.d_fileno = node->hash_id; 761c8eeea2fSScott Long dir.d_type = DT_DIR; 762c8eeea2fSScott Long dir.d_name[0] = '.'; 763c8eeea2fSScott Long dir.d_namlen = 1; 764c8eeea2fSScott Long dir.d_reclen = GENERIC_DIRSIZ(&dir); 765c8eeea2fSScott Long uiodir.dirent = &dir; 766c8eeea2fSScott Long error = udf_uiodir(&uiodir, dir.d_reclen, uio, 1); 76751a7b740SScott Long if (error) 76851a7b740SScott Long break; 76951a7b740SScott Long 770c8eeea2fSScott Long dir.d_fileno = udf_getid(&fid->icb); 771c8eeea2fSScott Long dir.d_type = DT_DIR; 772c8eeea2fSScott Long dir.d_name[0] = '.'; 773c8eeea2fSScott Long dir.d_name[1] = '.'; 774c8eeea2fSScott Long dir.d_namlen = 2; 775c8eeea2fSScott Long dir.d_reclen = GENERIC_DIRSIZ(&dir); 776c8eeea2fSScott Long uiodir.dirent = &dir; 777c8eeea2fSScott Long error = udf_uiodir(&uiodir, dir.d_reclen, uio, 2); 77851a7b740SScott Long } else { 77951a7b740SScott Long dir.d_namlen = udf_transname(&fid->data[fid->l_iu], 7806565282cSScott Long &dir.d_name[0], fid->l_fi, udfmp); 78151a7b740SScott Long dir.d_fileno = udf_getid(&fid->icb); 7822bbe0d36SScott Long dir.d_type = (fid->file_char & UDF_FILE_CHAR_DIR) ? 7832bbe0d36SScott Long DT_DIR : DT_UNKNOWN; 78451a7b740SScott Long dir.d_reclen = GENERIC_DIRSIZ(&dir); 78551a7b740SScott Long uiodir.dirent = &dir; 7861703656aSScott Long error = udf_uiodir(&uiodir, dir.d_reclen, uio, 7871703656aSScott Long ds->this_off); 78851a7b740SScott Long } 78951a7b740SScott Long if (error) { 79051a7b740SScott Long printf("uiomove returned %d\n", error); 79151a7b740SScott Long break; 79251a7b740SScott Long } 79351a7b740SScott Long 79451a7b740SScott Long } 79551a7b740SScott Long 79651a7b740SScott Long /* tell the calling layer whether we need to be called again */ 79751a7b740SScott Long *a->a_eofflag = uiodir.eofflag; 7981703656aSScott Long uio->uio_offset = ds->offset + ds->off; 79951a7b740SScott Long 8001703656aSScott Long if (!error) 8011703656aSScott Long error = ds->error; 8021703656aSScott Long 8031703656aSScott Long udf_closedir(ds); 80451a7b740SScott Long 80551a7b740SScott Long if (a->a_ncookies != NULL) { 80651a7b740SScott Long if (error) 8071703656aSScott Long FREE(cookies, M_TEMP); 80851a7b740SScott Long else { 80951a7b740SScott Long *a->a_ncookies = uiodir.acookies; 81051a7b740SScott Long *a->a_cookies = cookies; 81151a7b740SScott Long } 81251a7b740SScott Long } 81351a7b740SScott Long 81451a7b740SScott Long return (error); 81551a7b740SScott Long } 81651a7b740SScott Long 81751a7b740SScott Long /* Are there any implementations out there that do soft-links? */ 81851a7b740SScott Long static int 81951a7b740SScott Long udf_readlink(struct vop_readlink_args *ap) 82051a7b740SScott Long { 821c80a90c5SScott Long printf("%s called\n", __func__); 82251a7b740SScott Long return (EOPNOTSUPP); 82351a7b740SScott Long } 82451a7b740SScott Long 82551a7b740SScott Long static int 82651a7b740SScott Long udf_strategy(struct vop_strategy_args *a) 82751a7b740SScott Long { 82851a7b740SScott Long struct buf *bp; 82951a7b740SScott Long struct vnode *vp; 83051a7b740SScott Long struct udf_node *node; 83151a7b740SScott Long int maxsize; 832429c018aSPoul-Henning Kamp struct bufobj *bo; 83351a7b740SScott Long 83451a7b740SScott Long bp = a->a_bp; 835d83b7498SPoul-Henning Kamp vp = a->a_vp; 83651a7b740SScott Long node = VTON(vp); 83751a7b740SScott Long 83851a7b740SScott Long /* cd9660 has this test reversed, but it seems more logical this way */ 83951a7b740SScott Long if (bp->b_blkno != bp->b_lblkno) { 84051a7b740SScott Long /* 84151a7b740SScott Long * Files that are embedded in the fentry don't translate well 84251a7b740SScott Long * to a block number. Reject. 84351a7b740SScott Long */ 84451a7b740SScott Long if (udf_bmap_internal(node, bp->b_lblkno * node->udfmp->bsize, 84551a7b740SScott Long &bp->b_lblkno, &maxsize)) { 84651a7b740SScott Long clrbuf(bp); 84751a7b740SScott Long bp->b_blkno = -1; 84851a7b740SScott Long } 84951a7b740SScott Long } 85051a7b740SScott Long if ((long)bp->b_blkno == -1) { 85151a7b740SScott Long bufdone(bp); 85251a7b740SScott Long return (0); 85351a7b740SScott Long } 854429c018aSPoul-Henning Kamp bo = node->udfmp->im_bo; 8552c18019fSPoul-Henning Kamp bp->b_iooffset = dbtob(bp->b_blkno); 856429c018aSPoul-Henning Kamp bo->bo_ops->bop_strategy(bo, bp); 85751a7b740SScott Long return (0); 85851a7b740SScott Long } 85951a7b740SScott Long 86051a7b740SScott Long static int 86151a7b740SScott Long udf_bmap(struct vop_bmap_args *a) 86251a7b740SScott Long { 86351a7b740SScott Long struct udf_node *node; 864c2d6947dSJeroen Ruigrok van der Werven uint32_t max_size; 86598b0c789SPoul-Henning Kamp daddr_t lsector; 86651a7b740SScott Long int error; 86751a7b740SScott Long 86851a7b740SScott Long node = VTON(a->a_vp); 86951a7b740SScott Long 87051a7b740SScott Long if (a->a_vpp != NULL) 87151a7b740SScott Long *a->a_vpp = node->i_devvp; 87251a7b740SScott Long if (a->a_bnp == NULL) 87351a7b740SScott Long return (0); 87451a7b740SScott Long if (a->a_runb) 87551a7b740SScott Long *a->a_runb = 0; 87651a7b740SScott Long 877cd1b1a1dSScott Long error = udf_bmap_internal(node, a->a_bn * node->udfmp->bsize, &lsector, 87851a7b740SScott Long &max_size); 8798db4c2f2SScott Long if (error) 88051a7b740SScott Long return (error); 88151a7b740SScott Long 882cd1b1a1dSScott Long /* Translate logical to physical sector number */ 883cd1b1a1dSScott Long *a->a_bnp = lsector << (node->udfmp->bshift - DEV_BSHIFT); 884cd1b1a1dSScott Long 88551a7b740SScott Long /* Punt on read-ahead for now */ 88651a7b740SScott Long if (a->a_runp) 88751a7b740SScott Long *a->a_runp = 0; 88851a7b740SScott Long 88951a7b740SScott Long return (0); 89051a7b740SScott Long } 89151a7b740SScott Long 89251a7b740SScott Long /* 89351a7b740SScott Long * The all powerful VOP_LOOKUP(). 89451a7b740SScott Long */ 89551a7b740SScott Long static int 89651a7b740SScott Long udf_lookup(struct vop_cachedlookup_args *a) 89751a7b740SScott Long { 89851a7b740SScott Long struct vnode *dvp; 89951a7b740SScott Long struct vnode *tdp = NULL; 90051a7b740SScott Long struct vnode **vpp = a->a_vpp; 90151a7b740SScott Long struct udf_node *node; 90251a7b740SScott Long struct udf_mnt *udfmp; 90351a7b740SScott Long struct fileid_desc *fid = NULL; 9041703656aSScott Long struct udf_dirstream *ds; 90551a7b740SScott Long struct thread *td; 90651a7b740SScott Long u_long nameiop; 90751a7b740SScott Long u_long flags; 90851a7b740SScott Long char *nameptr; 90951a7b740SScott Long long namelen; 91051a7b740SScott Long ino_t id = 0; 9111703656aSScott Long int offset, error = 0; 9121703656aSScott Long int numdirpasses, fsize; 91351a7b740SScott Long 91451a7b740SScott Long dvp = a->a_dvp; 91551a7b740SScott Long node = VTON(dvp); 91651a7b740SScott Long udfmp = node->udfmp; 91751a7b740SScott Long nameiop = a->a_cnp->cn_nameiop; 91851a7b740SScott Long flags = a->a_cnp->cn_flags; 91951a7b740SScott Long nameptr = a->a_cnp->cn_nameptr; 92051a7b740SScott Long namelen = a->a_cnp->cn_namelen; 921bf1c3dddSScott Long fsize = le64toh(node->fentry->inf_len); 92251a7b740SScott Long td = a->a_cnp->cn_thread; 92351a7b740SScott Long 92451a7b740SScott Long /* 92551a7b740SScott Long * If this is a LOOKUP and we've already partially searched through 92651a7b740SScott Long * the directory, pick up where we left off and flag that the 92751a7b740SScott Long * directory may need to be searched twice. For a full description, 92851a7b740SScott Long * see /sys/isofs/cd9660/cd9660_lookup.c:cd9660_lookup() 92951a7b740SScott Long */ 9301703656aSScott Long if (nameiop != LOOKUP || node->diroff == 0 || node->diroff > fsize) { 93151a7b740SScott Long offset = 0; 93251a7b740SScott Long numdirpasses = 1; 93351a7b740SScott Long } else { 93451a7b740SScott Long offset = node->diroff; 93551a7b740SScott Long numdirpasses = 2; 93651a7b740SScott Long nchstats.ncs_2passes++; 93751a7b740SScott Long } 93851a7b740SScott Long 93951a7b740SScott Long lookloop: 9401703656aSScott Long ds = udf_opendir(node, offset, fsize, udfmp); 94151a7b740SScott Long 9421703656aSScott Long while ((fid = udf_getfid(ds)) != NULL) { 94351a7b740SScott Long 94451a7b740SScott Long /* XXX Should we return an error on a bad fid? */ 9451703656aSScott Long if (udf_checktag(&fid->tag, TAGID_FID)) { 9461703656aSScott Long printf("udf_lookup: Invalid tag\n"); 9471703656aSScott Long error = EIO; 9481703656aSScott Long break; 9491703656aSScott Long } 950678d5effSScott Long 951678d5effSScott Long /* Is this a deleted file? */ 9522bbe0d36SScott Long if (fid->file_char & UDF_FILE_CHAR_DEL) 9531703656aSScott Long continue; 95451a7b740SScott Long 9552bbe0d36SScott Long if ((fid->l_fi == 0) && (fid->file_char & UDF_FILE_CHAR_PAR)) { 95651a7b740SScott Long if (flags & ISDOTDOT) { 95751a7b740SScott Long id = udf_getid(&fid->icb); 95851a7b740SScott Long break; 95951a7b740SScott Long } 96051a7b740SScott Long } else { 96151a7b740SScott Long if (!(udf_cmpname(&fid->data[fid->l_iu], 9626565282cSScott Long nameptr, fid->l_fi, namelen, udfmp))) { 96351a7b740SScott Long id = udf_getid(&fid->icb); 96451a7b740SScott Long break; 96551a7b740SScott Long } 96651a7b740SScott Long } 96751a7b740SScott Long } 9681703656aSScott Long 9691703656aSScott Long if (!error) 9701703656aSScott Long error = ds->error; 9711703656aSScott Long 9721703656aSScott Long /* XXX Bail out here? */ 9731703656aSScott Long if (error) { 9741703656aSScott Long udf_closedir(ds); 9751703656aSScott Long return (error); 97651a7b740SScott Long } 97751a7b740SScott Long 97851a7b740SScott Long /* Did we have a match? */ 97951a7b740SScott Long if (id) { 98051a7b740SScott Long error = udf_vget(udfmp->im_mountp, id, LK_EXCLUSIVE, &tdp); 9811703656aSScott Long if (!error) { 9821703656aSScott Long /* 9831703656aSScott Long * Remember where this entry was if it's the final 9841703656aSScott Long * component. 9851703656aSScott Long */ 98651a7b740SScott Long if ((flags & ISLASTCN) && nameiop == LOOKUP) 9871703656aSScott Long node->diroff = ds->offset + ds->off; 98851a7b740SScott Long if (numdirpasses == 2) 98951a7b740SScott Long nchstats.ncs_pass2++; 99051a7b740SScott Long if (!(flags & LOCKPARENT) || !(flags & ISLASTCN)) { 99151a7b740SScott Long a->a_cnp->cn_flags |= PDIRUNLOCK; 99251a7b740SScott Long VOP_UNLOCK(dvp, 0, td); 99351a7b740SScott Long } 99451a7b740SScott Long 99551a7b740SScott Long *vpp = tdp; 99651a7b740SScott Long 99751a7b740SScott Long /* Put this entry in the cache */ 99851a7b740SScott Long if (flags & MAKEENTRY) 99951a7b740SScott Long cache_enter(dvp, *vpp, a->a_cnp); 100051a7b740SScott Long } 10011703656aSScott Long } else { 100251a7b740SScott Long /* Name wasn't found on this pass. Do another pass? */ 100351a7b740SScott Long if (numdirpasses == 2) { 100451a7b740SScott Long numdirpasses--; 100551a7b740SScott Long offset = 0; 10061703656aSScott Long udf_closedir(ds); 100751a7b740SScott Long goto lookloop; 100851a7b740SScott Long } 100951a7b740SScott Long 101051a7b740SScott Long /* Enter name into cache as non-existant */ 101151a7b740SScott Long if (flags & MAKEENTRY) 101251a7b740SScott Long cache_enter(dvp, *vpp, a->a_cnp); 101351a7b740SScott Long 10141703656aSScott Long if ((flags & ISLASTCN) && 10151703656aSScott Long (nameiop == CREATE || nameiop == RENAME)) { 10161703656aSScott Long error = EROFS; 10171703656aSScott Long } else { 10181703656aSScott Long error = ENOENT; 10191703656aSScott Long } 10201703656aSScott Long } 102151a7b740SScott Long 10221703656aSScott Long udf_closedir(ds); 10231703656aSScott Long return (error); 102451a7b740SScott Long } 102551a7b740SScott Long 102651a7b740SScott Long static int 102751a7b740SScott Long udf_reclaim(struct vop_reclaim_args *a) 102851a7b740SScott Long { 102951a7b740SScott Long struct vnode *vp; 103051a7b740SScott Long struct udf_node *unode; 103151a7b740SScott Long 103251a7b740SScott Long vp = a->a_vp; 103351a7b740SScott Long unode = VTON(vp); 103451a7b740SScott Long 103551a7b740SScott Long if (unode != NULL) { 103651a7b740SScott Long udf_hashrem(unode); 103751a7b740SScott Long if (unode->i_devvp) { 103851a7b740SScott Long vrele(unode->i_devvp); 103951a7b740SScott Long unode->i_devvp = 0; 104051a7b740SScott Long } 104151a7b740SScott Long 104251a7b740SScott Long if (unode->fentry != NULL) 104351a7b740SScott Long FREE(unode->fentry, M_UDFFENTRY); 104451a7b740SScott Long uma_zfree(udf_zone_node, unode); 104551a7b740SScott Long vp->v_data = NULL; 104651a7b740SScott Long } 104751a7b740SScott Long 104851a7b740SScott Long return (0); 104951a7b740SScott Long } 105051a7b740SScott Long 105151a7b740SScott Long /* 105251a7b740SScott Long * Read the block and then set the data pointer to correspond with the 105351a7b740SScott Long * offset passed in. Only read in at most 'size' bytes, and then set 'size' 105451a7b740SScott Long * to the number of bytes pointed to. If 'size' is zero, try to read in a 105551a7b740SScott Long * whole extent. 1056744bb56dSScott Long * 1057744bb56dSScott Long * Note that *bp may be assigned error or not. 1058744bb56dSScott Long * 105951a7b740SScott Long */ 106051a7b740SScott Long static int 1061c2d6947dSJeroen Ruigrok van der Werven udf_readatoffset(struct udf_node *node, int *size, int offset, struct buf **bp, uint8_t **data) 106251a7b740SScott Long { 106351a7b740SScott Long struct udf_mnt *udfmp; 106451a7b740SScott Long struct file_entry *fentry = NULL; 106551a7b740SScott Long struct buf *bp1; 1066c2d6947dSJeroen Ruigrok van der Werven uint32_t max_size; 106798b0c789SPoul-Henning Kamp daddr_t sector; 106851a7b740SScott Long int error; 106951a7b740SScott Long 107051a7b740SScott Long udfmp = node->udfmp; 107151a7b740SScott Long 1072744bb56dSScott Long *bp = NULL; 107351a7b740SScott Long error = udf_bmap_internal(node, offset, §or, &max_size); 10744576293dSScott Long if (error == UDF_INVALID_BMAP) { 107551a7b740SScott Long /* 107651a7b740SScott Long * This error means that the file *data* is stored in the 107751a7b740SScott Long * allocation descriptor field of the file entry. 107851a7b740SScott Long */ 107951a7b740SScott Long fentry = node->fentry; 1080bf1c3dddSScott Long *data = &fentry->data[le32toh(fentry->l_ea)]; 1081bf1c3dddSScott Long *size = le32toh(fentry->l_ad); 108251a7b740SScott Long return (0); 108351a7b740SScott Long } else if (error != 0) { 108451a7b740SScott Long return (error); 108551a7b740SScott Long } 108651a7b740SScott Long 1087d1def83bSScott Long /* Adjust the size so that it is within range */ 108851a7b740SScott Long if (*size == 0 || *size > max_size) 108951a7b740SScott Long *size = max_size; 1090d1def83bSScott Long *size = min(*size, MAXBSIZE); 109151a7b740SScott Long 109251a7b740SScott Long if ((error = udf_readlblks(udfmp, sector, *size, bp))) { 10931830bca1SScott Long printf("warning: udf_readlblks returned error %d\n", error); 1094744bb56dSScott Long /* note: *bp may be non-NULL */ 109551a7b740SScott Long return (error); 109651a7b740SScott Long } 109751a7b740SScott Long 109851a7b740SScott Long bp1 = *bp; 1099c2d6947dSJeroen Ruigrok van der Werven *data = (uint8_t *)&bp1->b_data[offset % udfmp->bsize]; 110051a7b740SScott Long return (0); 110151a7b740SScott Long } 110251a7b740SScott Long 110351a7b740SScott Long /* 110451a7b740SScott Long * Translate a file offset into a logical block and then into a physical 110551a7b740SScott Long * block. 110651a7b740SScott Long */ 110751a7b740SScott Long static int 110898b0c789SPoul-Henning Kamp udf_bmap_internal(struct udf_node *node, uint32_t offset, daddr_t *sector, uint32_t *max_size) 110951a7b740SScott Long { 111051a7b740SScott Long struct udf_mnt *udfmp; 111151a7b740SScott Long struct file_entry *fentry; 111251a7b740SScott Long void *icb; 111351a7b740SScott Long struct icb_tag *tag; 1114c2d6947dSJeroen Ruigrok van der Werven uint32_t icblen = 0; 111598b0c789SPoul-Henning Kamp daddr_t lsector; 111651a7b740SScott Long int ad_offset, ad_num = 0; 111751a7b740SScott Long int i, p_offset; 111851a7b740SScott Long 111951a7b740SScott Long udfmp = node->udfmp; 112051a7b740SScott Long fentry = node->fentry; 112151a7b740SScott Long tag = &fentry->icbtag; 112251a7b740SScott Long 1123bf1c3dddSScott Long switch (le16toh(tag->strat_type)) { 112451a7b740SScott Long case 4: 112551a7b740SScott Long break; 112651a7b740SScott Long 112751a7b740SScott Long case 4096: 112851a7b740SScott Long printf("Cannot deal with strategy4096 yet!\n"); 112951a7b740SScott Long return (ENODEV); 113051a7b740SScott Long 113151a7b740SScott Long default: 113251a7b740SScott Long printf("Unknown strategy type %d\n", tag->strat_type); 113351a7b740SScott Long return (ENODEV); 113451a7b740SScott Long } 113551a7b740SScott Long 1136bf1c3dddSScott Long switch (le16toh(tag->flags) & 0x7) { 113751a7b740SScott Long case 0: 113851a7b740SScott Long /* 113951a7b740SScott Long * The allocation descriptor field is filled with short_ad's. 114051a7b740SScott Long * If the offset is beyond the current extent, look for the 114151a7b740SScott Long * next extent. 114251a7b740SScott Long */ 114351a7b740SScott Long do { 114451a7b740SScott Long offset -= icblen; 114551a7b740SScott Long ad_offset = sizeof(struct short_ad) * ad_num; 1146bf1c3dddSScott Long if (ad_offset > le32toh(fentry->l_ad)) { 114751a7b740SScott Long printf("File offset out of bounds\n"); 114851a7b740SScott Long return (EINVAL); 114951a7b740SScott Long } 1150bf1c3dddSScott Long icb = GETICB(long_ad, fentry, 1151bf1c3dddSScott Long le32toh(fentry->l_ea) + ad_offset); 115251a7b740SScott Long icblen = GETICBLEN(short_ad, icb); 115351a7b740SScott Long ad_num++; 115451a7b740SScott Long } while(offset >= icblen); 115551a7b740SScott Long 115651a7b740SScott Long lsector = (offset >> udfmp->bshift) + 115751a7b740SScott Long ((struct short_ad *)(icb))->pos; 115851a7b740SScott Long 11591830bca1SScott Long *max_size = GETICBLEN(short_ad, icb); 116051a7b740SScott Long 116151a7b740SScott Long break; 116251a7b740SScott Long case 1: 116351a7b740SScott Long /* 116451a7b740SScott Long * The allocation descriptor field is filled with long_ad's 116551a7b740SScott Long * If the offset is beyond the current extent, look for the 116651a7b740SScott Long * next extent. 116751a7b740SScott Long */ 116851a7b740SScott Long do { 116951a7b740SScott Long offset -= icblen; 117051a7b740SScott Long ad_offset = sizeof(struct long_ad) * ad_num; 1171bf1c3dddSScott Long if (ad_offset > le32toh(fentry->l_ad)) { 117251a7b740SScott Long printf("File offset out of bounds\n"); 117351a7b740SScott Long return (EINVAL); 117451a7b740SScott Long } 1175bf1c3dddSScott Long icb = GETICB(long_ad, fentry, 1176bf1c3dddSScott Long le32toh(fentry->l_ea) + ad_offset); 117751a7b740SScott Long icblen = GETICBLEN(long_ad, icb); 117851a7b740SScott Long ad_num++; 117951a7b740SScott Long } while(offset >= icblen); 118051a7b740SScott Long 118151a7b740SScott Long lsector = (offset >> udfmp->bshift) + 1182bf1c3dddSScott Long le32toh(((struct long_ad *)(icb))->loc.lb_num); 118351a7b740SScott Long 11841830bca1SScott Long *max_size = GETICBLEN(long_ad, icb); 118551a7b740SScott Long 118651a7b740SScott Long break; 118751a7b740SScott Long case 3: 118851a7b740SScott Long /* 118951a7b740SScott Long * This type means that the file *data* is stored in the 119051a7b740SScott Long * allocation descriptor field of the file entry. 119151a7b740SScott Long */ 119251a7b740SScott Long *max_size = 0; 11938db4c2f2SScott Long *sector = node->hash_id + udfmp->part_start; 119451a7b740SScott Long 11954576293dSScott Long return (UDF_INVALID_BMAP); 119651a7b740SScott Long case 2: 119751a7b740SScott Long /* DirectCD does not use extended_ad's */ 119851a7b740SScott Long default: 119951a7b740SScott Long printf("Unsupported allocation descriptor %d\n", 120051a7b740SScott Long tag->flags & 0x7); 120151a7b740SScott Long return (ENODEV); 120251a7b740SScott Long } 120351a7b740SScott Long 120451a7b740SScott Long *sector = lsector + udfmp->part_start; 120551a7b740SScott Long 120651a7b740SScott Long /* 120751a7b740SScott Long * Check the sparing table. Each entry represents the beginning of 120851a7b740SScott Long * a packet. 120951a7b740SScott Long */ 121051a7b740SScott Long if (udfmp->s_table != NULL) { 121151a7b740SScott Long for (i = 0; i< udfmp->s_table_entries; i++) { 1212bf1c3dddSScott Long p_offset = 1213bf1c3dddSScott Long lsector - le32toh(udfmp->s_table->entries[i].org); 121451a7b740SScott Long if ((p_offset < udfmp->p_sectors) && (p_offset >= 0)) { 1215bf1c3dddSScott Long *sector = 1216bf1c3dddSScott Long le32toh(udfmp->s_table->entries[i].map) + 121751a7b740SScott Long p_offset; 121851a7b740SScott Long break; 121951a7b740SScott Long } 122051a7b740SScott Long } 122151a7b740SScott Long } 122251a7b740SScott Long 122351a7b740SScott Long return (0); 122451a7b740SScott Long } 1225