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udf_subr.c revision 1.91
      1  1.91   reinoud /* $NetBSD: udf_subr.c,v 1.91 2009/05/20 15:30:26 reinoud Exp $ */
      2   1.1   reinoud 
      3   1.1   reinoud /*
      4  1.45   reinoud  * Copyright (c) 2006, 2008 Reinoud Zandijk
      5   1.1   reinoud  * All rights reserved.
      6   1.1   reinoud  *
      7   1.1   reinoud  * Redistribution and use in source and binary forms, with or without
      8   1.1   reinoud  * modification, are permitted provided that the following conditions
      9   1.1   reinoud  * are met:
     10   1.1   reinoud  * 1. Redistributions of source code must retain the above copyright
     11   1.1   reinoud  *    notice, this list of conditions and the following disclaimer.
     12   1.1   reinoud  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1   reinoud  *    notice, this list of conditions and the following disclaimer in the
     14   1.1   reinoud  *    documentation and/or other materials provided with the distribution.
     15   1.1   reinoud  *
     16   1.1   reinoud  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17   1.1   reinoud  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18   1.1   reinoud  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19   1.1   reinoud  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20   1.1   reinoud  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     21   1.1   reinoud  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     22   1.1   reinoud  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     23   1.1   reinoud  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     24   1.1   reinoud  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     25   1.1   reinoud  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     26   1.1   reinoud  *
     27   1.1   reinoud  */
     28   1.1   reinoud 
     29   1.1   reinoud 
     30   1.1   reinoud #include <sys/cdefs.h>
     31   1.1   reinoud #ifndef lint
     32  1.91   reinoud __KERNEL_RCSID(0, "$NetBSD: udf_subr.c,v 1.91 2009/05/20 15:30:26 reinoud Exp $");
     33   1.1   reinoud #endif /* not lint */
     34   1.1   reinoud 
     35   1.1   reinoud 
     36   1.1   reinoud #if defined(_KERNEL_OPT)
     37   1.1   reinoud #include "opt_compat_netbsd.h"
     38   1.1   reinoud #endif
     39   1.1   reinoud 
     40   1.1   reinoud #include <sys/param.h>
     41   1.1   reinoud #include <sys/systm.h>
     42   1.1   reinoud #include <sys/sysctl.h>
     43   1.1   reinoud #include <sys/namei.h>
     44   1.1   reinoud #include <sys/proc.h>
     45   1.1   reinoud #include <sys/kernel.h>
     46   1.1   reinoud #include <sys/vnode.h>
     47   1.1   reinoud #include <miscfs/genfs/genfs_node.h>
     48   1.1   reinoud #include <sys/mount.h>
     49   1.1   reinoud #include <sys/buf.h>
     50   1.1   reinoud #include <sys/file.h>
     51   1.1   reinoud #include <sys/device.h>
     52   1.1   reinoud #include <sys/disklabel.h>
     53   1.1   reinoud #include <sys/ioctl.h>
     54   1.1   reinoud #include <sys/malloc.h>
     55   1.1   reinoud #include <sys/dirent.h>
     56   1.1   reinoud #include <sys/stat.h>
     57   1.1   reinoud #include <sys/conf.h>
     58   1.8  christos #include <sys/kauth.h>
     59  1.48   reinoud #include <fs/unicode.h>
     60  1.30   reinoud #include <dev/clock_subr.h>
     61   1.1   reinoud 
     62   1.1   reinoud #include <fs/udf/ecma167-udf.h>
     63   1.1   reinoud #include <fs/udf/udf_mount.h>
     64  1.73   reinoud #include <sys/dirhash.h>
     65   1.1   reinoud 
     66   1.1   reinoud #include "udf.h"
     67   1.1   reinoud #include "udf_subr.h"
     68   1.1   reinoud #include "udf_bswap.h"
     69   1.1   reinoud 
     70   1.1   reinoud 
     71  1.45   reinoud #define VTOI(vnode) ((struct udf_node *) (vnode)->v_data)
     72  1.45   reinoud 
     73  1.45   reinoud #define UDF_SET_SYSTEMFILE(vp) \
     74  1.45   reinoud 	/* XXXAD Is the vnode locked? */	\
     75  1.45   reinoud 	(vp)->v_vflag |= VV_SYSTEM;		\
     76  1.45   reinoud 	vref(vp);			\
     77  1.45   reinoud 	vput(vp);			\
     78   1.1   reinoud 
     79  1.45   reinoud extern int syncer_maxdelay;     /* maximum delay time */
     80  1.45   reinoud extern int (**udf_vnodeop_p)(void *);
     81   1.1   reinoud 
     82  1.45   reinoud /* --------------------------------------------------------------------- */
     83   1.1   reinoud 
     84  1.45   reinoud //#ifdef DEBUG
     85  1.45   reinoud #if 1
     86   1.1   reinoud 
     87   1.1   reinoud #if 0
     88  1.45   reinoud static void
     89  1.45   reinoud udf_dumpblob(boid *blob, uint32_t dlen)
     90   1.1   reinoud {
     91  1.45   reinoud 	int i, j;
     92   1.1   reinoud 
     93   1.1   reinoud 	printf("blob = %p\n", blob);
     94   1.1   reinoud 	printf("dump of %d bytes\n", dlen);
     95   1.1   reinoud 
     96   1.1   reinoud 	for (i = 0; i < dlen; i+ = 16) {
     97   1.1   reinoud 		printf("%04x ", i);
     98   1.1   reinoud 		for (j = 0; j < 16; j++) {
     99   1.1   reinoud 			if (i+j < dlen) {
    100   1.1   reinoud 				printf("%02x ", blob[i+j]);
    101   1.1   reinoud 			} else {
    102   1.1   reinoud 				printf("   ");
    103   1.9  christos 			}
    104   1.9  christos 		}
    105   1.1   reinoud 		for (j = 0; j < 16; j++) {
    106   1.1   reinoud 			if (i+j < dlen) {
    107   1.1   reinoud 				if (blob[i+j]>32 && blob[i+j]! = 127) {
    108   1.1   reinoud 					printf("%c", blob[i+j]);
    109   1.1   reinoud 				} else {
    110   1.1   reinoud 					printf(".");
    111   1.9  christos 				}
    112   1.9  christos 			}
    113   1.9  christos 		}
    114   1.1   reinoud 		printf("\n");
    115   1.9  christos 	}
    116   1.1   reinoud 	printf("\n");
    117  1.45   reinoud 	Debugger();
    118   1.9  christos }
    119   1.1   reinoud #endif
    120   1.1   reinoud 
    121   1.1   reinoud static void
    122   1.1   reinoud udf_dump_discinfo(struct udf_mount *ump)
    123   1.1   reinoud {
    124   1.1   reinoud 	char   bits[128];
    125   1.1   reinoud 	struct mmc_discinfo *di = &ump->discinfo;
    126   1.1   reinoud 
    127   1.1   reinoud 	if ((udf_verbose & UDF_DEBUG_VOLUMES) == 0)
    128   1.1   reinoud 		return;
    129   1.1   reinoud 
    130   1.1   reinoud 	printf("Device/media info  :\n");
    131   1.1   reinoud 	printf("\tMMC profile        0x%02x\n", di->mmc_profile);
    132   1.1   reinoud 	printf("\tderived class      %d\n", di->mmc_class);
    133   1.1   reinoud 	printf("\tsector size        %d\n", di->sector_size);
    134   1.1   reinoud 	printf("\tdisc state         %d\n", di->disc_state);
    135   1.1   reinoud 	printf("\tlast ses state     %d\n", di->last_session_state);
    136   1.1   reinoud 	printf("\tbg format state    %d\n", di->bg_format_state);
    137   1.1   reinoud 	printf("\tfrst track         %d\n", di->first_track);
    138   1.1   reinoud 	printf("\tfst on last ses    %d\n", di->first_track_last_session);
    139   1.1   reinoud 	printf("\tlst on last ses    %d\n", di->last_track_last_session);
    140   1.1   reinoud 	printf("\tlink block penalty %d\n", di->link_block_penalty);
    141  1.80  christos 	snprintb(bits, sizeof(bits), MMC_DFLAGS_FLAGBITS, di->disc_flags);
    142   1.1   reinoud 	printf("\tdisc flags         %s\n", bits);
    143   1.1   reinoud 	printf("\tdisc id            %x\n", di->disc_id);
    144   1.1   reinoud 	printf("\tdisc barcode       %"PRIx64"\n", di->disc_barcode);
    145   1.1   reinoud 
    146   1.1   reinoud 	printf("\tnum sessions       %d\n", di->num_sessions);
    147   1.1   reinoud 	printf("\tnum tracks         %d\n", di->num_tracks);
    148   1.1   reinoud 
    149  1.80  christos 	snprintb(bits, sizeof(bits), MMC_CAP_FLAGBITS, di->mmc_cur);
    150   1.1   reinoud 	printf("\tcapabilities cur   %s\n", bits);
    151  1.80  christos 	snprintb(bits, sizeof(bits), MMC_CAP_FLAGBITS, di->mmc_cap);
    152   1.1   reinoud 	printf("\tcapabilities cap   %s\n", bits);
    153   1.1   reinoud }
    154  1.85   reinoud 
    155  1.85   reinoud static void
    156  1.85   reinoud udf_dump_trackinfo(struct mmc_trackinfo *trackinfo)
    157  1.85   reinoud {
    158  1.85   reinoud 	char   bits[128];
    159  1.85   reinoud 
    160  1.85   reinoud 	if ((udf_verbose & UDF_DEBUG_VOLUMES) == 0)
    161  1.85   reinoud 		return;
    162  1.85   reinoud 
    163  1.85   reinoud 	printf("Trackinfo for track %d:\n", trackinfo->tracknr);
    164  1.85   reinoud 	printf("\tsessionnr           %d\n", trackinfo->sessionnr);
    165  1.85   reinoud 	printf("\ttrack mode          %d\n", trackinfo->track_mode);
    166  1.85   reinoud 	printf("\tdata mode           %d\n", trackinfo->data_mode);
    167  1.85   reinoud 	snprintb(bits, sizeof(bits), MMC_TRACKINFO_FLAGBITS, trackinfo->flags);
    168  1.85   reinoud 	printf("\tflags               %s\n", bits);
    169  1.85   reinoud 
    170  1.85   reinoud 	printf("\ttrack start         %d\n", trackinfo->track_start);
    171  1.85   reinoud 	printf("\tnext_writable       %d\n", trackinfo->next_writable);
    172  1.85   reinoud 	printf("\tfree_blocks         %d\n", trackinfo->free_blocks);
    173  1.85   reinoud 	printf("\tpacket_size         %d\n", trackinfo->packet_size);
    174  1.85   reinoud 	printf("\ttrack size          %d\n", trackinfo->track_size);
    175  1.85   reinoud 	printf("\tlast recorded block %d\n", trackinfo->last_recorded);
    176  1.85   reinoud }
    177  1.85   reinoud 
    178   1.1   reinoud #else
    179   1.1   reinoud #define udf_dump_discinfo(a);
    180  1.85   reinoud #define udf_dump_trackinfo(a);
    181   1.1   reinoud #endif
    182   1.1   reinoud 
    183  1.45   reinoud 
    184  1.45   reinoud /* --------------------------------------------------------------------- */
    185  1.45   reinoud 
    186   1.1   reinoud /* not called often */
    187   1.1   reinoud int
    188   1.1   reinoud udf_update_discinfo(struct udf_mount *ump)
    189   1.1   reinoud {
    190   1.1   reinoud 	struct vnode *devvp = ump->devvp;
    191   1.1   reinoud 	struct partinfo dpart;
    192   1.1   reinoud 	struct mmc_discinfo *di;
    193   1.1   reinoud 	int error;
    194   1.1   reinoud 
    195   1.1   reinoud 	DPRINTF(VOLUMES, ("read/update disc info\n"));
    196   1.1   reinoud 	di = &ump->discinfo;
    197   1.1   reinoud 	memset(di, 0, sizeof(struct mmc_discinfo));
    198   1.1   reinoud 
    199   1.1   reinoud 	/* check if we're on a MMC capable device, i.e. CD/DVD */
    200  1.41     pooka 	error = VOP_IOCTL(devvp, MMCGETDISCINFO, di, FKIOCTL, NOCRED);
    201   1.1   reinoud 	if (error == 0) {
    202   1.1   reinoud 		udf_dump_discinfo(ump);
    203   1.1   reinoud 		return 0;
    204   1.9  christos 	}
    205   1.1   reinoud 
    206   1.1   reinoud 	/* disc partition support */
    207  1.41     pooka 	error = VOP_IOCTL(devvp, DIOCGPART, &dpart, FREAD, NOCRED);
    208   1.1   reinoud 	if (error)
    209   1.1   reinoud 		return ENODEV;
    210   1.1   reinoud 
    211   1.1   reinoud 	/* set up a disc info profile for partitions */
    212   1.1   reinoud 	di->mmc_profile		= 0x01;	/* disc type */
    213   1.1   reinoud 	di->mmc_class		= MMC_CLASS_DISC;
    214   1.1   reinoud 	di->disc_state		= MMC_STATE_CLOSED;
    215   1.1   reinoud 	di->last_session_state	= MMC_STATE_CLOSED;
    216   1.1   reinoud 	di->bg_format_state	= MMC_BGFSTATE_COMPLETED;
    217   1.1   reinoud 	di->link_block_penalty	= 0;
    218   1.1   reinoud 
    219   1.1   reinoud 	di->mmc_cur     = MMC_CAP_RECORDABLE | MMC_CAP_REWRITABLE |
    220   1.4   reinoud 		MMC_CAP_ZEROLINKBLK | MMC_CAP_HW_DEFECTFREE;
    221   1.1   reinoud 	di->mmc_cap    = di->mmc_cur;
    222   1.1   reinoud 	di->disc_flags = MMC_DFLAGS_UNRESTRICTED;
    223   1.1   reinoud 
    224   1.1   reinoud 	/* TODO problem with last_possible_lba on resizable VND; request */
    225   1.1   reinoud 	di->last_possible_lba = dpart.part->p_size;
    226   1.1   reinoud 	di->sector_size       = dpart.disklab->d_secsize;
    227   1.1   reinoud 
    228   1.1   reinoud 	di->num_sessions = 1;
    229   1.1   reinoud 	di->num_tracks   = 1;
    230   1.1   reinoud 
    231   1.1   reinoud 	di->first_track  = 1;
    232   1.1   reinoud 	di->first_track_last_session = di->last_track_last_session = 1;
    233   1.1   reinoud 
    234   1.1   reinoud 	udf_dump_discinfo(ump);
    235   1.1   reinoud 	return 0;
    236   1.1   reinoud }
    237   1.1   reinoud 
    238   1.1   reinoud 
    239   1.1   reinoud int
    240   1.1   reinoud udf_update_trackinfo(struct udf_mount *ump, struct mmc_trackinfo *ti)
    241   1.1   reinoud {
    242   1.1   reinoud 	struct vnode *devvp = ump->devvp;
    243   1.1   reinoud 	struct mmc_discinfo *di = &ump->discinfo;
    244   1.1   reinoud 	int error, class;
    245   1.1   reinoud 
    246   1.1   reinoud 	DPRINTF(VOLUMES, ("read track info\n"));
    247   1.1   reinoud 
    248   1.1   reinoud 	class = di->mmc_class;
    249   1.1   reinoud 	if (class != MMC_CLASS_DISC) {
    250   1.1   reinoud 		/* tracknr specified in struct ti */
    251  1.41     pooka 		error = VOP_IOCTL(devvp, MMCGETTRACKINFO, ti, FKIOCTL, NOCRED);
    252   1.1   reinoud 		return error;
    253   1.9  christos 	}
    254   1.1   reinoud 
    255   1.1   reinoud 	/* disc partition support */
    256   1.1   reinoud 	if (ti->tracknr != 1)
    257   1.1   reinoud 		return EIO;
    258   1.1   reinoud 
    259   1.1   reinoud 	/* create fake ti (TODO check for resized vnds) */
    260   1.1   reinoud 	ti->sessionnr  = 1;
    261   1.1   reinoud 
    262   1.1   reinoud 	ti->track_mode = 0;	/* XXX */
    263   1.1   reinoud 	ti->data_mode  = 0;	/* XXX */
    264   1.1   reinoud 	ti->flags = MMC_TRACKINFO_LRA_VALID | MMC_TRACKINFO_NWA_VALID;
    265   1.1   reinoud 
    266   1.1   reinoud 	ti->track_start    = 0;
    267   1.1   reinoud 	ti->packet_size    = 1;
    268   1.1   reinoud 
    269   1.1   reinoud 	/* TODO support for resizable vnd */
    270   1.1   reinoud 	ti->track_size    = di->last_possible_lba;
    271   1.1   reinoud 	ti->next_writable = di->last_possible_lba;
    272   1.1   reinoud 	ti->last_recorded = ti->next_writable;
    273   1.1   reinoud 	ti->free_blocks   = 0;
    274   1.1   reinoud 
    275   1.1   reinoud 	return 0;
    276   1.1   reinoud }
    277   1.1   reinoud 
    278   1.1   reinoud 
    279  1.45   reinoud int
    280  1.45   reinoud udf_setup_writeparams(struct udf_mount *ump)
    281   1.1   reinoud {
    282  1.45   reinoud 	struct mmc_writeparams mmc_writeparams;
    283  1.45   reinoud 	int error;
    284  1.45   reinoud 
    285  1.45   reinoud 	if (ump->discinfo.mmc_class == MMC_CLASS_DISC)
    286  1.45   reinoud 		return 0;
    287  1.45   reinoud 
    288  1.45   reinoud 	/*
    289  1.45   reinoud 	 * only CD burning normally needs setting up, but other disc types
    290  1.45   reinoud 	 * might need other settings to be made. The MMC framework will set up
    291  1.45   reinoud 	 * the nessisary recording parameters according to the disc
    292  1.45   reinoud 	 * characteristics read in. Modifications can be made in the discinfo
    293  1.45   reinoud 	 * structure passed to change the nature of the disc.
    294  1.45   reinoud 	 */
    295  1.45   reinoud 
    296  1.45   reinoud 	memset(&mmc_writeparams, 0, sizeof(struct mmc_writeparams));
    297  1.45   reinoud 	mmc_writeparams.mmc_class  = ump->discinfo.mmc_class;
    298  1.45   reinoud 	mmc_writeparams.mmc_cur    = ump->discinfo.mmc_cur;
    299  1.45   reinoud 
    300  1.45   reinoud 	/*
    301  1.45   reinoud 	 * UDF dictates first track to determine track mode for the whole
    302  1.45   reinoud 	 * disc. [UDF 1.50/6.10.1.1, UDF 1.50/6.10.2.1]
    303  1.45   reinoud 	 * To prevent problems with a `reserved' track in front we start with
    304  1.45   reinoud 	 * the 2nd track and if that is not valid, go for the 1st.
    305  1.45   reinoud 	 */
    306  1.45   reinoud 	mmc_writeparams.tracknr = 2;
    307  1.45   reinoud 	mmc_writeparams.data_mode  = MMC_DATAMODE_DEFAULT;	/* XA disc */
    308  1.45   reinoud 	mmc_writeparams.track_mode = MMC_TRACKMODE_DEFAULT;	/* data */
    309  1.45   reinoud 
    310  1.45   reinoud 	error = VOP_IOCTL(ump->devvp, MMCSETUPWRITEPARAMS, &mmc_writeparams,
    311  1.45   reinoud 			FKIOCTL, NOCRED);
    312  1.45   reinoud 	if (error) {
    313  1.45   reinoud 		mmc_writeparams.tracknr = 1;
    314  1.45   reinoud 		error = VOP_IOCTL(ump->devvp, MMCSETUPWRITEPARAMS,
    315  1.45   reinoud 				&mmc_writeparams, FKIOCTL, NOCRED);
    316  1.45   reinoud 	}
    317  1.45   reinoud 	return error;
    318  1.45   reinoud }
    319  1.45   reinoud 
    320  1.45   reinoud 
    321  1.45   reinoud int
    322  1.45   reinoud udf_synchronise_caches(struct udf_mount *ump)
    323  1.45   reinoud {
    324  1.45   reinoud 	struct mmc_op mmc_op;
    325  1.45   reinoud 
    326  1.45   reinoud 	DPRINTF(CALL, ("udf_synchronise_caches()\n"));
    327  1.45   reinoud 
    328  1.45   reinoud 	if (ump->vfs_mountp->mnt_flag & MNT_RDONLY)
    329  1.45   reinoud 		return 0;
    330  1.45   reinoud 
    331  1.45   reinoud 	/* discs are done now */
    332  1.45   reinoud 	if (ump->discinfo.mmc_class == MMC_CLASS_DISC)
    333  1.45   reinoud 		return 0;
    334  1.45   reinoud 
    335  1.87    cegger 	memset(&mmc_op, 0, sizeof(struct mmc_op));
    336  1.45   reinoud 	mmc_op.operation = MMC_OP_SYNCHRONISECACHE;
    337  1.45   reinoud 
    338  1.45   reinoud 	/* ignore return code */
    339  1.45   reinoud 	(void) VOP_IOCTL(ump->devvp, MMCOP, &mmc_op, FKIOCTL, NOCRED);
    340  1.45   reinoud 
    341  1.45   reinoud 	return 0;
    342  1.45   reinoud }
    343  1.45   reinoud 
    344  1.45   reinoud /* --------------------------------------------------------------------- */
    345  1.45   reinoud 
    346  1.45   reinoud /* track/session searching for mounting */
    347  1.45   reinoud int
    348  1.45   reinoud udf_search_tracks(struct udf_mount *ump, struct udf_args *args,
    349  1.45   reinoud 		  int *first_tracknr, int *last_tracknr)
    350  1.45   reinoud {
    351  1.45   reinoud 	struct mmc_trackinfo trackinfo;
    352  1.45   reinoud 	uint32_t tracknr, start_track, num_tracks;
    353   1.1   reinoud 	int error;
    354   1.1   reinoud 
    355   1.1   reinoud 	/* if negative, sessionnr is relative to last session */
    356   1.1   reinoud 	if (args->sessionnr < 0) {
    357   1.1   reinoud 		args->sessionnr += ump->discinfo.num_sessions;
    358   1.9  christos 	}
    359   1.1   reinoud 
    360   1.1   reinoud 	/* sanity */
    361  1.45   reinoud 	if (args->sessionnr < 0)
    362  1.45   reinoud 		args->sessionnr = 0;
    363   1.1   reinoud 	if (args->sessionnr > ump->discinfo.num_sessions)
    364   1.1   reinoud 		args->sessionnr = ump->discinfo.num_sessions;
    365   1.1   reinoud 
    366   1.1   reinoud 	/* search the tracks for this session, zero session nr indicates last */
    367  1.42   reinoud 	if (args->sessionnr == 0)
    368   1.1   reinoud 		args->sessionnr = ump->discinfo.num_sessions;
    369  1.42   reinoud 	if (ump->discinfo.last_session_state == MMC_STATE_EMPTY)
    370  1.42   reinoud 		args->sessionnr--;
    371  1.42   reinoud 
    372  1.45   reinoud 	/* sanity again */
    373  1.45   reinoud 	if (args->sessionnr < 0)
    374  1.45   reinoud 		args->sessionnr = 0;
    375   1.1   reinoud 
    376   1.1   reinoud 	/* search the first and last track of the specified session */
    377   1.1   reinoud 	num_tracks  = ump->discinfo.num_tracks;
    378   1.1   reinoud 	start_track = ump->discinfo.first_track;
    379   1.1   reinoud 
    380   1.1   reinoud 	/* search for first track of this session */
    381   1.1   reinoud 	for (tracknr = start_track; tracknr <= num_tracks; tracknr++) {
    382   1.1   reinoud 		/* get track info */
    383   1.1   reinoud 		trackinfo.tracknr = tracknr;
    384   1.1   reinoud 		error = udf_update_trackinfo(ump, &trackinfo);
    385   1.1   reinoud 		if (error)
    386   1.1   reinoud 			return error;
    387   1.1   reinoud 
    388   1.1   reinoud 		if (trackinfo.sessionnr == args->sessionnr)
    389   1.1   reinoud 			break;
    390   1.1   reinoud 	}
    391   1.1   reinoud 	*first_tracknr = tracknr;
    392   1.1   reinoud 
    393   1.1   reinoud 	/* search for last track of this session */
    394   1.1   reinoud 	for (;tracknr <= num_tracks; tracknr++) {
    395   1.1   reinoud 		/* get track info */
    396   1.1   reinoud 		trackinfo.tracknr = tracknr;
    397   1.1   reinoud 		error = udf_update_trackinfo(ump, &trackinfo);
    398   1.1   reinoud 		if (error || (trackinfo.sessionnr != args->sessionnr)) {
    399   1.1   reinoud 			tracknr--;
    400   1.1   reinoud 			break;
    401   1.9  christos 		}
    402   1.9  christos 	}
    403   1.1   reinoud 	if (tracknr > num_tracks)
    404   1.1   reinoud 		tracknr--;
    405   1.1   reinoud 
    406   1.1   reinoud 	*last_tracknr = tracknr;
    407   1.1   reinoud 
    408  1.45   reinoud 	if (*last_tracknr < *first_tracknr) {
    409  1.45   reinoud 		printf( "udf_search_tracks: sanity check on drive+disc failed, "
    410  1.45   reinoud 			"drive returned garbage\n");
    411  1.45   reinoud 		return EINVAL;
    412  1.45   reinoud 	}
    413  1.45   reinoud 
    414   1.1   reinoud 	assert(*last_tracknr >= *first_tracknr);
    415   1.1   reinoud 	return 0;
    416   1.1   reinoud }
    417   1.1   reinoud 
    418   1.1   reinoud 
    419  1.45   reinoud /*
    420  1.45   reinoud  * NOTE: this is the only routine in this file that directly peeks into the
    421  1.45   reinoud  * metadata file but since its at a larval state of the mount it can't hurt.
    422  1.45   reinoud  *
    423  1.45   reinoud  * XXX candidate for udf_allocation.c
    424  1.45   reinoud  * XXX clean me up!, change to new node reading code.
    425  1.45   reinoud  */
    426  1.45   reinoud 
    427  1.45   reinoud static void
    428  1.45   reinoud udf_check_track_metadata_overlap(struct udf_mount *ump,
    429  1.45   reinoud 	struct mmc_trackinfo *trackinfo)
    430   1.1   reinoud {
    431  1.45   reinoud 	struct part_desc *part;
    432  1.45   reinoud 	struct file_entry      *fe;
    433  1.45   reinoud 	struct extfile_entry   *efe;
    434  1.45   reinoud 	struct short_ad        *s_ad;
    435  1.45   reinoud 	struct long_ad         *l_ad;
    436  1.45   reinoud 	uint32_t track_start, track_end;
    437  1.45   reinoud 	uint32_t phys_part_start, phys_part_end, part_start, part_end;
    438  1.45   reinoud 	uint32_t sector_size, len, alloclen, plb_num;
    439  1.45   reinoud 	uint8_t *pos;
    440  1.45   reinoud 	int addr_type, icblen, icbflags, flags;
    441   1.1   reinoud 
    442  1.45   reinoud 	/* get our track extents */
    443  1.45   reinoud 	track_start = trackinfo->track_start;
    444  1.45   reinoud 	track_end   = track_start + trackinfo->track_size;
    445  1.45   reinoud 
    446  1.45   reinoud 	/* get our base partition extent */
    447  1.71   reinoud 	KASSERT(ump->node_part == ump->fids_part);
    448  1.71   reinoud 	part = ump->partitions[ump->node_part];
    449  1.45   reinoud 	phys_part_start = udf_rw32(part->start_loc);
    450  1.45   reinoud 	phys_part_end   = phys_part_start + udf_rw32(part->part_len);
    451   1.1   reinoud 
    452  1.45   reinoud 	/* no use if its outside the physical partition */
    453  1.45   reinoud 	if ((phys_part_start >= track_end) || (phys_part_end < track_start))
    454  1.45   reinoud 		return;
    455   1.1   reinoud 
    456  1.45   reinoud 	/*
    457  1.45   reinoud 	 * now follow all extents in the fe/efe to see if they refer to this
    458  1.45   reinoud 	 * track
    459  1.45   reinoud 	 */
    460   1.1   reinoud 
    461  1.45   reinoud 	sector_size = ump->discinfo.sector_size;
    462   1.1   reinoud 
    463  1.45   reinoud 	/* XXX should we claim exclusive access to the metafile ? */
    464  1.45   reinoud 	/* TODO: move to new node read code */
    465  1.45   reinoud 	fe  = ump->metadata_node->fe;
    466  1.45   reinoud 	efe = ump->metadata_node->efe;
    467  1.45   reinoud 	if (fe) {
    468  1.45   reinoud 		alloclen = udf_rw32(fe->l_ad);
    469  1.45   reinoud 		pos      = &fe->data[0] + udf_rw32(fe->l_ea);
    470  1.45   reinoud 		icbflags = udf_rw16(fe->icbtag.flags);
    471  1.45   reinoud 	} else {
    472  1.45   reinoud 		assert(efe);
    473  1.45   reinoud 		alloclen = udf_rw32(efe->l_ad);
    474  1.45   reinoud 		pos      = &efe->data[0] + udf_rw32(efe->l_ea);
    475  1.45   reinoud 		icbflags = udf_rw16(efe->icbtag.flags);
    476   1.9  christos 	}
    477  1.45   reinoud 	addr_type = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
    478  1.45   reinoud 
    479  1.45   reinoud 	while (alloclen) {
    480  1.45   reinoud 		if (addr_type == UDF_ICB_SHORT_ALLOC) {
    481  1.45   reinoud 			icblen = sizeof(struct short_ad);
    482  1.45   reinoud 			s_ad   = (struct short_ad *) pos;
    483  1.45   reinoud 			len        = udf_rw32(s_ad->len);
    484  1.45   reinoud 			plb_num    = udf_rw32(s_ad->lb_num);
    485  1.45   reinoud 		} else {
    486  1.45   reinoud 			/* should not be present, but why not */
    487  1.45   reinoud 			icblen = sizeof(struct long_ad);
    488  1.45   reinoud 			l_ad   = (struct long_ad *) pos;
    489  1.45   reinoud 			len        = udf_rw32(l_ad->len);
    490  1.45   reinoud 			plb_num    = udf_rw32(l_ad->loc.lb_num);
    491  1.45   reinoud 			/* pvpart_num = udf_rw16(l_ad->loc.part_num); */
    492  1.45   reinoud 		}
    493  1.45   reinoud 		/* process extent */
    494  1.45   reinoud 		flags   = UDF_EXT_FLAGS(len);
    495  1.45   reinoud 		len     = UDF_EXT_LEN(len);
    496   1.1   reinoud 
    497  1.45   reinoud 		part_start = phys_part_start + plb_num;
    498  1.45   reinoud 		part_end   = part_start + (len / sector_size);
    499   1.1   reinoud 
    500  1.45   reinoud 		if ((part_start >= track_start) && (part_end <= track_end)) {
    501  1.45   reinoud 			/* extent is enclosed within this track */
    502  1.45   reinoud 			ump->metadata_track = *trackinfo;
    503  1.45   reinoud 			return;
    504  1.45   reinoud 		}
    505   1.1   reinoud 
    506  1.45   reinoud 		pos        += icblen;
    507  1.45   reinoud 		alloclen   -= icblen;
    508   1.9  christos 	}
    509  1.45   reinoud }
    510  1.45   reinoud 
    511   1.1   reinoud 
    512  1.45   reinoud int
    513  1.45   reinoud udf_search_writing_tracks(struct udf_mount *ump)
    514  1.45   reinoud {
    515  1.82   reinoud 	struct vnode *devvp = ump->devvp;
    516  1.45   reinoud 	struct mmc_trackinfo trackinfo;
    517  1.85   reinoud 	struct mmc_op        mmc_op;
    518  1.45   reinoud 	struct part_desc *part;
    519  1.45   reinoud 	uint32_t tracknr, start_track, num_tracks;
    520  1.45   reinoud 	uint32_t track_start, track_end, part_start, part_end;
    521  1.71   reinoud 	int node_alloc, error;
    522   1.1   reinoud 
    523  1.45   reinoud 	/*
    524  1.45   reinoud 	 * in the CD/(HD)DVD/BD recordable device model a few tracks within
    525  1.45   reinoud 	 * the last session might be open but in the UDF device model at most
    526  1.45   reinoud 	 * three tracks can be open: a reserved track for delayed ISO VRS
    527  1.45   reinoud 	 * writing, a data track and a metadata track. We search here for the
    528  1.45   reinoud 	 * data track and the metadata track. Note that the reserved track is
    529  1.45   reinoud 	 * troublesome but can be detected by its small size of < 512 sectors.
    530  1.45   reinoud 	 */
    531   1.1   reinoud 
    532  1.85   reinoud 	/* update discinfo since it might have changed */
    533  1.85   reinoud 	error = udf_update_discinfo(ump);
    534  1.85   reinoud 	if (error)
    535  1.85   reinoud 		return error;
    536  1.85   reinoud 
    537  1.45   reinoud 	num_tracks  = ump->discinfo.num_tracks;
    538  1.45   reinoud 	start_track = ump->discinfo.first_track;
    539   1.1   reinoud 
    540  1.45   reinoud 	/* fetch info on first and possibly only track */
    541  1.45   reinoud 	trackinfo.tracknr = start_track;
    542  1.45   reinoud 	error = udf_update_trackinfo(ump, &trackinfo);
    543  1.45   reinoud 	if (error)
    544  1.45   reinoud 		return error;
    545  1.13   reinoud 
    546  1.45   reinoud 	/* copy results to our mount point */
    547  1.45   reinoud 	ump->data_track     = trackinfo;
    548  1.45   reinoud 	ump->metadata_track = trackinfo;
    549   1.1   reinoud 
    550  1.45   reinoud 	/* if not sequential, we're done */
    551  1.45   reinoud 	if (num_tracks == 1)
    552  1.45   reinoud 		return 0;
    553   1.1   reinoud 
    554  1.45   reinoud 	for (tracknr = start_track;tracknr <= num_tracks; tracknr++) {
    555  1.45   reinoud 		/* get track info */
    556  1.45   reinoud 		trackinfo.tracknr = tracknr;
    557  1.45   reinoud 		error = udf_update_trackinfo(ump, &trackinfo);
    558  1.45   reinoud 		if (error)
    559  1.45   reinoud 			return error;
    560   1.1   reinoud 
    561  1.82   reinoud 		/*
    562  1.82   reinoud 		 * If this track is marked damaged, ask for repair. This is an
    563  1.82   reinoud 		 * optional command, so ignore its error but report warning.
    564  1.82   reinoud 		 */
    565  1.82   reinoud 		if (trackinfo.flags & MMC_TRACKINFO_DAMAGED) {
    566  1.85   reinoud 			memset(&mmc_op, 0, sizeof(mmc_op));
    567  1.85   reinoud 			mmc_op.operation   = MMC_OP_REPAIRTRACK;
    568  1.85   reinoud 			mmc_op.mmc_profile = ump->discinfo.mmc_profile;
    569  1.85   reinoud 			mmc_op.tracknr     = tracknr;
    570  1.85   reinoud 			error = VOP_IOCTL(devvp, MMCOP, &mmc_op, FKIOCTL, NOCRED);
    571  1.82   reinoud 			if (error)
    572  1.82   reinoud 				(void)printf("Drive can't explicitly repair "
    573  1.82   reinoud 					"damaged track %d, but it might "
    574  1.82   reinoud 					"autorepair\n", tracknr);
    575  1.82   reinoud 
    576  1.82   reinoud 			/* reget track info */
    577  1.82   reinoud 			error = udf_update_trackinfo(ump, &trackinfo);
    578  1.82   reinoud 			if (error)
    579  1.82   reinoud 				return error;
    580  1.82   reinoud 		}
    581  1.45   reinoud 		if ((trackinfo.flags & MMC_TRACKINFO_NWA_VALID) == 0)
    582  1.45   reinoud 			continue;
    583  1.85   reinoud 
    584  1.45   reinoud 		track_start = trackinfo.track_start;
    585  1.45   reinoud 		track_end   = track_start + trackinfo.track_size;
    586   1.1   reinoud 
    587  1.45   reinoud 		/* check for overlap on data partition */
    588  1.45   reinoud 		part = ump->partitions[ump->data_part];
    589  1.45   reinoud 		part_start = udf_rw32(part->start_loc);
    590  1.45   reinoud 		part_end   = part_start + udf_rw32(part->part_len);
    591  1.45   reinoud 		if ((part_start < track_end) && (part_end > track_start)) {
    592  1.45   reinoud 			ump->data_track = trackinfo;
    593  1.45   reinoud 			/* TODO check if UDF partition data_part is writable */
    594  1.45   reinoud 		}
    595  1.45   reinoud 
    596  1.45   reinoud 		/* check for overlap on metadata partition */
    597  1.71   reinoud 		node_alloc = ump->vtop_alloc[ump->node_part];
    598  1.71   reinoud 		if ((node_alloc == UDF_ALLOC_METASEQUENTIAL) ||
    599  1.71   reinoud 		    (node_alloc == UDF_ALLOC_METABITMAP)) {
    600  1.45   reinoud 			udf_check_track_metadata_overlap(ump, &trackinfo);
    601  1.45   reinoud 		} else {
    602  1.45   reinoud 			ump->metadata_track = trackinfo;
    603   1.9  christos 		}
    604  1.45   reinoud 	}
    605   1.1   reinoud 
    606  1.45   reinoud 	if ((ump->data_track.flags & MMC_TRACKINFO_NWA_VALID) == 0)
    607  1.45   reinoud 		return EROFS;
    608   1.1   reinoud 
    609  1.45   reinoud 	if ((ump->metadata_track.flags & MMC_TRACKINFO_NWA_VALID) == 0)
    610  1.45   reinoud 		return EROFS;
    611   1.1   reinoud 
    612   1.1   reinoud 	return 0;
    613   1.1   reinoud }
    614   1.1   reinoud 
    615   1.1   reinoud /* --------------------------------------------------------------------- */
    616   1.1   reinoud 
    617  1.45   reinoud /*
    618  1.45   reinoud  * Check if the blob starts with a good UDF tag. Tags are protected by a
    619  1.45   reinoud  * checksum over the reader except one byte at position 4 that is the checksum
    620  1.45   reinoud  * itself.
    621  1.45   reinoud  */
    622  1.45   reinoud 
    623  1.45   reinoud int
    624  1.45   reinoud udf_check_tag(void *blob)
    625   1.1   reinoud {
    626  1.45   reinoud 	struct desc_tag *tag = blob;
    627  1.45   reinoud 	uint8_t *pos, sum, cnt;
    628   1.1   reinoud 
    629  1.45   reinoud 	/* check TAG header checksum */
    630  1.45   reinoud 	pos = (uint8_t *) tag;
    631  1.45   reinoud 	sum = 0;
    632  1.45   reinoud 
    633  1.45   reinoud 	for(cnt = 0; cnt < 16; cnt++) {
    634  1.45   reinoud 		if (cnt != 4)
    635  1.45   reinoud 			sum += *pos;
    636  1.45   reinoud 		pos++;
    637  1.45   reinoud 	}
    638  1.45   reinoud 	if (sum != tag->cksum) {
    639  1.45   reinoud 		/* bad tag header checksum; this is not a valid tag */
    640  1.45   reinoud 		return EINVAL;
    641  1.45   reinoud 	}
    642  1.45   reinoud 
    643  1.45   reinoud 	return 0;
    644  1.45   reinoud }
    645  1.45   reinoud 
    646  1.45   reinoud 
    647  1.45   reinoud /*
    648  1.45   reinoud  * check tag payload will check descriptor CRC as specified.
    649  1.45   reinoud  * If the descriptor is too long, it will return EIO otherwise EINVAL.
    650  1.45   reinoud  */
    651   1.1   reinoud 
    652  1.45   reinoud int
    653  1.45   reinoud udf_check_tag_payload(void *blob, uint32_t max_length)
    654  1.45   reinoud {
    655  1.45   reinoud 	struct desc_tag *tag = blob;
    656  1.45   reinoud 	uint16_t crc, crc_len;
    657   1.1   reinoud 
    658  1.45   reinoud 	crc_len = udf_rw16(tag->desc_crc_len);
    659   1.1   reinoud 
    660  1.45   reinoud 	/* check payload CRC if applicable */
    661  1.45   reinoud 	if (crc_len == 0)
    662  1.45   reinoud 		return 0;
    663   1.1   reinoud 
    664  1.45   reinoud 	if (crc_len > max_length)
    665  1.45   reinoud 		return EIO;
    666   1.1   reinoud 
    667  1.45   reinoud 	crc = udf_cksum(((uint8_t *) tag) + UDF_DESC_TAG_LENGTH, crc_len);
    668  1.45   reinoud 	if (crc != udf_rw16(tag->desc_crc)) {
    669  1.45   reinoud 		/* bad payload CRC; this is a broken tag */
    670  1.45   reinoud 		return EINVAL;
    671   1.9  christos 	}
    672   1.1   reinoud 
    673  1.45   reinoud 	return 0;
    674   1.1   reinoud }
    675   1.1   reinoud 
    676   1.1   reinoud 
    677  1.45   reinoud void
    678  1.45   reinoud udf_validate_tag_sum(void *blob)
    679   1.1   reinoud {
    680  1.45   reinoud 	struct desc_tag *tag = blob;
    681  1.45   reinoud 	uint8_t *pos, sum, cnt;
    682   1.1   reinoud 
    683  1.45   reinoud 	/* calculate TAG header checksum */
    684  1.45   reinoud 	pos = (uint8_t *) tag;
    685  1.45   reinoud 	sum = 0;
    686   1.1   reinoud 
    687  1.45   reinoud 	for(cnt = 0; cnt < 16; cnt++) {
    688  1.45   reinoud 		if (cnt != 4) sum += *pos;
    689  1.45   reinoud 		pos++;
    690  1.45   reinoud 	}
    691  1.45   reinoud 	tag->cksum = sum;	/* 8 bit */
    692  1.45   reinoud }
    693   1.1   reinoud 
    694   1.1   reinoud 
    695  1.45   reinoud /* assumes sector number of descriptor to be saved already present */
    696  1.45   reinoud void
    697  1.45   reinoud udf_validate_tag_and_crc_sums(void *blob)
    698  1.45   reinoud {
    699  1.45   reinoud 	struct desc_tag *tag  = blob;
    700  1.45   reinoud 	uint8_t         *btag = (uint8_t *) tag;
    701  1.45   reinoud 	uint16_t crc, crc_len;
    702   1.1   reinoud 
    703  1.45   reinoud 	crc_len = udf_rw16(tag->desc_crc_len);
    704   1.1   reinoud 
    705  1.45   reinoud 	/* check payload CRC if applicable */
    706  1.45   reinoud 	if (crc_len > 0) {
    707  1.45   reinoud 		crc = udf_cksum(btag + UDF_DESC_TAG_LENGTH, crc_len);
    708  1.45   reinoud 		tag->desc_crc = udf_rw16(crc);
    709   1.9  christos 	}
    710   1.1   reinoud 
    711  1.45   reinoud 	/* calculate TAG header checksum */
    712  1.45   reinoud 	udf_validate_tag_sum(blob);
    713   1.1   reinoud }
    714   1.1   reinoud 
    715   1.1   reinoud /* --------------------------------------------------------------------- */
    716   1.1   reinoud 
    717   1.1   reinoud /*
    718  1.45   reinoud  * XXX note the different semantics from udfclient: for FIDs it still rounds
    719  1.45   reinoud  * up to sectors. Use udf_fidsize() for a correct length.
    720   1.1   reinoud  */
    721   1.1   reinoud 
    722  1.45   reinoud int
    723  1.45   reinoud udf_tagsize(union dscrptr *dscr, uint32_t lb_size)
    724   1.1   reinoud {
    725  1.45   reinoud 	uint32_t size, tag_id, num_lb, elmsz;
    726   1.1   reinoud 
    727  1.45   reinoud 	tag_id = udf_rw16(dscr->tag.id);
    728   1.1   reinoud 
    729  1.45   reinoud 	switch (tag_id) {
    730  1.45   reinoud 	case TAGID_LOGVOL :
    731  1.45   reinoud 		size  = sizeof(struct logvol_desc) - 1;
    732  1.45   reinoud 		size += udf_rw32(dscr->lvd.mt_l);
    733  1.45   reinoud 		break;
    734  1.45   reinoud 	case TAGID_UNALLOC_SPACE :
    735  1.45   reinoud 		elmsz = sizeof(struct extent_ad);
    736  1.45   reinoud 		size  = sizeof(struct unalloc_sp_desc) - elmsz;
    737  1.45   reinoud 		size += udf_rw32(dscr->usd.alloc_desc_num) * elmsz;
    738  1.45   reinoud 		break;
    739  1.45   reinoud 	case TAGID_FID :
    740  1.45   reinoud 		size = UDF_FID_SIZE + dscr->fid.l_fi + udf_rw16(dscr->fid.l_iu);
    741  1.45   reinoud 		size = (size + 3) & ~3;
    742  1.45   reinoud 		break;
    743  1.45   reinoud 	case TAGID_LOGVOL_INTEGRITY :
    744  1.45   reinoud 		size  = sizeof(struct logvol_int_desc) - sizeof(uint32_t);
    745  1.45   reinoud 		size += udf_rw32(dscr->lvid.l_iu);
    746  1.45   reinoud 		size += (2 * udf_rw32(dscr->lvid.num_part) * sizeof(uint32_t));
    747  1.45   reinoud 		break;
    748  1.45   reinoud 	case TAGID_SPACE_BITMAP :
    749  1.45   reinoud 		size  = sizeof(struct space_bitmap_desc) - 1;
    750  1.45   reinoud 		size += udf_rw32(dscr->sbd.num_bytes);
    751  1.45   reinoud 		break;
    752  1.45   reinoud 	case TAGID_SPARING_TABLE :
    753  1.45   reinoud 		elmsz = sizeof(struct spare_map_entry);
    754  1.45   reinoud 		size  = sizeof(struct udf_sparing_table) - elmsz;
    755  1.45   reinoud 		size += udf_rw16(dscr->spt.rt_l) * elmsz;
    756  1.45   reinoud 		break;
    757  1.45   reinoud 	case TAGID_FENTRY :
    758  1.45   reinoud 		size  = sizeof(struct file_entry);
    759  1.45   reinoud 		size += udf_rw32(dscr->fe.l_ea) + udf_rw32(dscr->fe.l_ad)-1;
    760  1.45   reinoud 		break;
    761  1.45   reinoud 	case TAGID_EXTFENTRY :
    762  1.45   reinoud 		size  = sizeof(struct extfile_entry);
    763  1.45   reinoud 		size += udf_rw32(dscr->efe.l_ea) + udf_rw32(dscr->efe.l_ad)-1;
    764  1.45   reinoud 		break;
    765  1.45   reinoud 	case TAGID_FSD :
    766  1.45   reinoud 		size  = sizeof(struct fileset_desc);
    767  1.45   reinoud 		break;
    768  1.45   reinoud 	default :
    769  1.45   reinoud 		size = sizeof(union dscrptr);
    770  1.45   reinoud 		break;
    771  1.45   reinoud 	}
    772   1.1   reinoud 
    773  1.70   reinoud 	if ((size == 0) || (lb_size == 0))
    774  1.70   reinoud 		return 0;
    775  1.70   reinoud 
    776  1.70   reinoud 	if (lb_size == 1)
    777  1.70   reinoud 		return size;
    778   1.1   reinoud 
    779  1.45   reinoud 	/* round up in sectors */
    780  1.45   reinoud 	num_lb = (size + lb_size -1) / lb_size;
    781  1.45   reinoud 	return num_lb * lb_size;
    782  1.45   reinoud }
    783   1.1   reinoud 
    784   1.1   reinoud 
    785  1.45   reinoud int
    786  1.45   reinoud udf_fidsize(struct fileid_desc *fid)
    787  1.45   reinoud {
    788  1.45   reinoud 	uint32_t size;
    789   1.3   reinoud 
    790  1.45   reinoud 	if (udf_rw16(fid->tag.id) != TAGID_FID)
    791  1.45   reinoud 		panic("got udf_fidsize on non FID\n");
    792   1.1   reinoud 
    793  1.45   reinoud 	size = UDF_FID_SIZE + fid->l_fi + udf_rw16(fid->l_iu);
    794  1.45   reinoud 	size = (size + 3) & ~3;
    795   1.1   reinoud 
    796  1.45   reinoud 	return size;
    797   1.1   reinoud }
    798   1.1   reinoud 
    799   1.1   reinoud /* --------------------------------------------------------------------- */
    800   1.1   reinoud 
    801  1.45   reinoud void
    802  1.45   reinoud udf_lock_node(struct udf_node *udf_node, int flag, char const *fname, const int lineno)
    803  1.45   reinoud {
    804  1.45   reinoud 	int ret;
    805  1.45   reinoud 
    806  1.45   reinoud 	mutex_enter(&udf_node->node_mutex);
    807  1.45   reinoud 	/* wait until free */
    808  1.45   reinoud 	while (udf_node->i_flags & IN_LOCKED) {
    809  1.45   reinoud 		ret = cv_timedwait(&udf_node->node_lock, &udf_node->node_mutex, hz/8);
    810  1.45   reinoud 		/* TODO check if we should return error; abort */
    811  1.45   reinoud 		if (ret == EWOULDBLOCK) {
    812  1.45   reinoud 			DPRINTF(LOCKING, ( "udf_lock_node: udf_node %p would block "
    813  1.45   reinoud 				"wanted at %s:%d, previously locked at %s:%d\n",
    814  1.45   reinoud 				udf_node, fname, lineno,
    815  1.45   reinoud 				udf_node->lock_fname, udf_node->lock_lineno));
    816  1.45   reinoud 		}
    817  1.45   reinoud 	}
    818  1.45   reinoud 	/* grab */
    819  1.45   reinoud 	udf_node->i_flags |= IN_LOCKED | flag;
    820  1.45   reinoud 	/* debug */
    821  1.45   reinoud 	udf_node->lock_fname  = fname;
    822  1.45   reinoud 	udf_node->lock_lineno = lineno;
    823  1.45   reinoud 
    824  1.45   reinoud 	mutex_exit(&udf_node->node_mutex);
    825  1.45   reinoud }
    826  1.45   reinoud 
    827   1.1   reinoud 
    828  1.45   reinoud void
    829  1.45   reinoud udf_unlock_node(struct udf_node *udf_node, int flag)
    830  1.22  christos {
    831  1.45   reinoud 	mutex_enter(&udf_node->node_mutex);
    832  1.45   reinoud 	udf_node->i_flags &= ~(IN_LOCKED | flag);
    833  1.45   reinoud 	cv_broadcast(&udf_node->node_lock);
    834  1.45   reinoud 	mutex_exit(&udf_node->node_mutex);
    835  1.45   reinoud }
    836   1.1   reinoud 
    837   1.1   reinoud 
    838  1.45   reinoud /* --------------------------------------------------------------------- */
    839   1.1   reinoud 
    840  1.45   reinoud static int
    841  1.45   reinoud udf_read_anchor(struct udf_mount *ump, uint32_t sector, struct anchor_vdp **dst)
    842  1.45   reinoud {
    843  1.45   reinoud 	int error;
    844  1.45   reinoud 
    845  1.45   reinoud 	error = udf_read_phys_dscr(ump, sector, M_UDFVOLD,
    846  1.45   reinoud 			(union dscrptr **) dst);
    847  1.45   reinoud 	if (!error) {
    848  1.45   reinoud 		/* blank terminator blocks are not allowed here */
    849  1.45   reinoud 		if (*dst == NULL)
    850  1.45   reinoud 			return ENOENT;
    851  1.45   reinoud 		if (udf_rw16((*dst)->tag.id) != TAGID_ANCHOR) {
    852  1.45   reinoud 			error = ENOENT;
    853  1.45   reinoud 			free(*dst, M_UDFVOLD);
    854  1.45   reinoud 			*dst = NULL;
    855  1.45   reinoud 			DPRINTF(VOLUMES, ("Not an anchor\n"));
    856  1.45   reinoud 		}
    857  1.45   reinoud 	}
    858  1.45   reinoud 
    859  1.45   reinoud 	return error;
    860  1.45   reinoud }
    861  1.45   reinoud 
    862  1.45   reinoud 
    863  1.45   reinoud int
    864  1.45   reinoud udf_read_anchors(struct udf_mount *ump)
    865  1.45   reinoud {
    866  1.45   reinoud 	struct udf_args *args = &ump->mount_args;
    867  1.45   reinoud 	struct mmc_trackinfo first_track;
    868  1.45   reinoud 	struct mmc_trackinfo second_track;
    869  1.45   reinoud 	struct mmc_trackinfo last_track;
    870  1.45   reinoud 	struct anchor_vdp **anchorsp;
    871  1.45   reinoud 	uint32_t track_start;
    872  1.45   reinoud 	uint32_t track_end;
    873  1.45   reinoud 	uint32_t positions[4];
    874  1.45   reinoud 	int first_tracknr, last_tracknr;
    875  1.45   reinoud 	int error, anch, ok, first_anchor;
    876  1.45   reinoud 
    877  1.45   reinoud 	/* search the first and last track of the specified session */
    878  1.45   reinoud 	error = udf_search_tracks(ump, args, &first_tracknr, &last_tracknr);
    879  1.45   reinoud 	if (!error) {
    880  1.45   reinoud 		first_track.tracknr = first_tracknr;
    881  1.45   reinoud 		error = udf_update_trackinfo(ump, &first_track);
    882  1.45   reinoud 	}
    883  1.45   reinoud 	if (!error) {
    884  1.45   reinoud 		last_track.tracknr = last_tracknr;
    885  1.45   reinoud 		error = udf_update_trackinfo(ump, &last_track);
    886  1.45   reinoud 	}
    887  1.45   reinoud 	if ((!error) && (first_tracknr != last_tracknr)) {
    888  1.45   reinoud 		second_track.tracknr = first_tracknr+1;
    889  1.45   reinoud 		error = udf_update_trackinfo(ump, &second_track);
    890  1.45   reinoud 	}
    891  1.45   reinoud 	if (error) {
    892  1.45   reinoud 		printf("UDF mount: reading disc geometry failed\n");
    893  1.45   reinoud 		return 0;
    894  1.45   reinoud 	}
    895  1.45   reinoud 
    896  1.45   reinoud 	track_start = first_track.track_start;
    897   1.1   reinoud 
    898  1.45   reinoud 	/* `end' is not as straitforward as start. */
    899  1.45   reinoud 	track_end =   last_track.track_start
    900  1.45   reinoud 		    + last_track.track_size - last_track.free_blocks - 1;
    901   1.1   reinoud 
    902  1.45   reinoud 	if (ump->discinfo.mmc_cur & MMC_CAP_SEQUENTIAL) {
    903  1.45   reinoud 		/* end of track is not straitforward here */
    904  1.45   reinoud 		if (last_track.flags & MMC_TRACKINFO_LRA_VALID)
    905  1.45   reinoud 			track_end = last_track.last_recorded;
    906  1.45   reinoud 		else if (last_track.flags & MMC_TRACKINFO_NWA_VALID)
    907  1.45   reinoud 			track_end = last_track.next_writable
    908  1.45   reinoud 				    - ump->discinfo.link_block_penalty;
    909   1.9  christos 	}
    910   1.1   reinoud 
    911  1.45   reinoud 	/* its no use reading a blank track */
    912  1.45   reinoud 	first_anchor = 0;
    913  1.45   reinoud 	if (first_track.flags & MMC_TRACKINFO_BLANK)
    914  1.45   reinoud 		first_anchor = 1;
    915  1.45   reinoud 
    916  1.45   reinoud 	/* get our packet size */
    917  1.45   reinoud 	ump->packet_size = first_track.packet_size;
    918  1.45   reinoud 	if (first_track.flags & MMC_TRACKINFO_BLANK)
    919  1.45   reinoud 		ump->packet_size = second_track.packet_size;
    920  1.45   reinoud 
    921  1.45   reinoud 	if (ump->packet_size <= 1) {
    922  1.45   reinoud 		/* take max, but not bigger than 64 */
    923  1.45   reinoud 		ump->packet_size = MAXPHYS / ump->discinfo.sector_size;
    924  1.45   reinoud 		ump->packet_size = MIN(ump->packet_size, 64);
    925   1.9  christos 	}
    926  1.45   reinoud 	KASSERT(ump->packet_size >= 1);
    927   1.1   reinoud 
    928  1.45   reinoud 	/* read anchors start+256, start+512, end-256, end */
    929  1.45   reinoud 	positions[0] = track_start+256;
    930  1.45   reinoud 	positions[1] =   track_end-256;
    931  1.45   reinoud 	positions[2] =   track_end;
    932  1.45   reinoud 	positions[3] = track_start+512;	/* [UDF 2.60/6.11.2] */
    933  1.45   reinoud 	/* XXX shouldn't +512 be prefered above +256 for compat with Roxio CD */
    934   1.1   reinoud 
    935  1.45   reinoud 	ok = 0;
    936  1.45   reinoud 	anchorsp = ump->anchors;
    937  1.45   reinoud 	for (anch = first_anchor; anch < 4; anch++) {
    938  1.45   reinoud 		DPRINTF(VOLUMES, ("Read anchor %d at sector %d\n", anch,
    939  1.45   reinoud 		    positions[anch]));
    940  1.45   reinoud 		error = udf_read_anchor(ump, positions[anch], anchorsp);
    941  1.45   reinoud 		if (!error) {
    942  1.45   reinoud 			anchorsp++;
    943  1.45   reinoud 			ok++;
    944  1.45   reinoud 		}
    945  1.45   reinoud 	}
    946   1.1   reinoud 
    947  1.45   reinoud 	/* VATs are only recorded on sequential media, but initialise */
    948  1.45   reinoud 	ump->first_possible_vat_location = track_start + 2;
    949  1.45   reinoud 	ump->last_possible_vat_location  = track_end + last_track.packet_size;
    950   1.1   reinoud 
    951  1.45   reinoud 	return ok;
    952  1.45   reinoud }
    953   1.1   reinoud 
    954  1.45   reinoud /* --------------------------------------------------------------------- */
    955   1.1   reinoud 
    956  1.45   reinoud /* we dont try to be smart; we just record the parts */
    957  1.45   reinoud #define UDF_UPDATE_DSCR(name, dscr) \
    958  1.45   reinoud 	if (name) \
    959  1.45   reinoud 		free(name, M_UDFVOLD); \
    960  1.45   reinoud 	name = dscr;
    961   1.1   reinoud 
    962  1.45   reinoud static int
    963  1.45   reinoud udf_process_vds_descriptor(struct udf_mount *ump, union dscrptr *dscr)
    964  1.45   reinoud {
    965  1.45   reinoud 	struct part_desc *part;
    966  1.45   reinoud 	uint16_t phys_part, raw_phys_part;
    967   1.1   reinoud 
    968  1.45   reinoud 	DPRINTF(VOLUMES, ("\tprocessing VDS descr %d\n",
    969  1.45   reinoud 	    udf_rw16(dscr->tag.id)));
    970  1.45   reinoud 	switch (udf_rw16(dscr->tag.id)) {
    971  1.45   reinoud 	case TAGID_PRI_VOL :		/* primary partition		*/
    972  1.45   reinoud 		UDF_UPDATE_DSCR(ump->primary_vol, &dscr->pvd);
    973  1.45   reinoud 		break;
    974  1.45   reinoud 	case TAGID_LOGVOL :		/* logical volume		*/
    975  1.45   reinoud 		UDF_UPDATE_DSCR(ump->logical_vol, &dscr->lvd);
    976  1.45   reinoud 		break;
    977  1.45   reinoud 	case TAGID_UNALLOC_SPACE :	/* unallocated space		*/
    978  1.45   reinoud 		UDF_UPDATE_DSCR(ump->unallocated, &dscr->usd);
    979  1.45   reinoud 		break;
    980  1.45   reinoud 	case TAGID_IMP_VOL :		/* implementation		*/
    981  1.45   reinoud 		/* XXX do we care about multiple impl. descr ? */
    982  1.45   reinoud 		UDF_UPDATE_DSCR(ump->implementation, &dscr->ivd);
    983  1.45   reinoud 		break;
    984  1.45   reinoud 	case TAGID_PARTITION :		/* physical partition		*/
    985  1.45   reinoud 		/* not much use if its not allocated */
    986  1.45   reinoud 		if ((udf_rw16(dscr->pd.flags) & UDF_PART_FLAG_ALLOCATED) == 0) {
    987  1.45   reinoud 			free(dscr, M_UDFVOLD);
    988   1.1   reinoud 			break;
    989   1.9  christos 		}
    990   1.1   reinoud 
    991  1.33   reinoud 		/*
    992  1.33   reinoud 		 * BUGALERT: some rogue implementations use random physical
    993  1.33   reinoud 		 * partion numbers to break other implementations so lookup
    994  1.33   reinoud 		 * the number.
    995  1.33   reinoud 		 */
    996  1.45   reinoud 		raw_phys_part = udf_rw16(dscr->pd.part_num);
    997  1.33   reinoud 		for (phys_part = 0; phys_part < UDF_PARTITIONS; phys_part++) {
    998  1.33   reinoud 			part = ump->partitions[phys_part];
    999  1.33   reinoud 			if (part == NULL)
   1000  1.45   reinoud 				break;
   1001  1.33   reinoud 			if (udf_rw16(part->part_num) == raw_phys_part)
   1002  1.33   reinoud 				break;
   1003  1.33   reinoud 		}
   1004  1.45   reinoud 		if (phys_part == UDF_PARTITIONS) {
   1005  1.45   reinoud 			free(dscr, M_UDFVOLD);
   1006   1.1   reinoud 			return EINVAL;
   1007  1.45   reinoud 		}
   1008   1.1   reinoud 
   1009  1.45   reinoud 		UDF_UPDATE_DSCR(ump->partitions[phys_part], &dscr->pd);
   1010  1.45   reinoud 		break;
   1011  1.45   reinoud 	case TAGID_VOL :		/* volume space extender; rare	*/
   1012  1.45   reinoud 		DPRINTF(VOLUMES, ("VDS extender ignored\n"));
   1013  1.45   reinoud 		free(dscr, M_UDFVOLD);
   1014  1.45   reinoud 		break;
   1015  1.45   reinoud 	default :
   1016  1.45   reinoud 		DPRINTF(VOLUMES, ("Unhandled VDS type %d\n",
   1017  1.45   reinoud 		    udf_rw16(dscr->tag.id)));
   1018  1.45   reinoud 		free(dscr, M_UDFVOLD);
   1019   1.9  christos 	}
   1020   1.1   reinoud 
   1021  1.45   reinoud 	return 0;
   1022  1.45   reinoud }
   1023  1.45   reinoud #undef UDF_UPDATE_DSCR
   1024   1.1   reinoud 
   1025  1.45   reinoud /* --------------------------------------------------------------------- */
   1026   1.1   reinoud 
   1027  1.45   reinoud static int
   1028  1.45   reinoud udf_read_vds_extent(struct udf_mount *ump, uint32_t loc, uint32_t len)
   1029  1.45   reinoud {
   1030  1.45   reinoud 	union dscrptr *dscr;
   1031  1.45   reinoud 	uint32_t sector_size, dscr_size;
   1032  1.45   reinoud 	int error;
   1033   1.1   reinoud 
   1034  1.45   reinoud 	sector_size = ump->discinfo.sector_size;
   1035   1.1   reinoud 
   1036  1.45   reinoud 	/* loc is sectornr, len is in bytes */
   1037  1.45   reinoud 	error = EIO;
   1038  1.45   reinoud 	while (len) {
   1039  1.45   reinoud 		error = udf_read_phys_dscr(ump, loc, M_UDFVOLD, &dscr);
   1040  1.45   reinoud 		if (error)
   1041  1.45   reinoud 			return error;
   1042  1.45   reinoud 
   1043  1.45   reinoud 		/* blank block is a terminator */
   1044  1.45   reinoud 		if (dscr == NULL)
   1045  1.45   reinoud 			return 0;
   1046  1.45   reinoud 
   1047  1.45   reinoud 		/* TERM descriptor is a terminator */
   1048  1.45   reinoud 		if (udf_rw16(dscr->tag.id) == TAGID_TERM) {
   1049  1.45   reinoud 			free(dscr, M_UDFVOLD);
   1050  1.45   reinoud 			return 0;
   1051  1.45   reinoud 		}
   1052  1.45   reinoud 
   1053  1.45   reinoud 		/* process all others */
   1054  1.45   reinoud 		dscr_size = udf_tagsize(dscr, sector_size);
   1055  1.45   reinoud 		error = udf_process_vds_descriptor(ump, dscr);
   1056  1.45   reinoud 		if (error) {
   1057  1.45   reinoud 			free(dscr, M_UDFVOLD);
   1058  1.45   reinoud 			break;
   1059  1.45   reinoud 		}
   1060  1.45   reinoud 		assert((dscr_size % sector_size) == 0);
   1061  1.45   reinoud 
   1062  1.45   reinoud 		len -= dscr_size;
   1063  1.45   reinoud 		loc += dscr_size / sector_size;
   1064  1.45   reinoud 	}
   1065  1.45   reinoud 
   1066  1.45   reinoud 	return error;
   1067  1.45   reinoud }
   1068  1.45   reinoud 
   1069  1.45   reinoud 
   1070  1.45   reinoud int
   1071  1.45   reinoud udf_read_vds_space(struct udf_mount *ump)
   1072  1.45   reinoud {
   1073  1.45   reinoud 	/* struct udf_args *args = &ump->mount_args; */
   1074  1.45   reinoud 	struct anchor_vdp *anchor, *anchor2;
   1075  1.45   reinoud 	size_t size;
   1076  1.45   reinoud 	uint32_t main_loc, main_len;
   1077  1.45   reinoud 	uint32_t reserve_loc, reserve_len;
   1078  1.45   reinoud 	int error;
   1079  1.45   reinoud 
   1080  1.45   reinoud 	/*
   1081  1.45   reinoud 	 * read in VDS space provided by the anchors; if one descriptor read
   1082  1.45   reinoud 	 * fails, try the mirror sector.
   1083  1.45   reinoud 	 *
   1084  1.45   reinoud 	 * check if 2nd anchor is different from 1st; if so, go for 2nd. This
   1085  1.45   reinoud 	 * avoids the `compatibility features' of DirectCD that may confuse
   1086  1.45   reinoud 	 * stuff completely.
   1087  1.45   reinoud 	 */
   1088  1.45   reinoud 
   1089  1.45   reinoud 	anchor  = ump->anchors[0];
   1090  1.45   reinoud 	anchor2 = ump->anchors[1];
   1091  1.45   reinoud 	assert(anchor);
   1092  1.45   reinoud 
   1093  1.45   reinoud 	if (anchor2) {
   1094  1.45   reinoud 		size = sizeof(struct extent_ad);
   1095  1.45   reinoud 		if (memcmp(&anchor->main_vds_ex, &anchor2->main_vds_ex, size))
   1096  1.45   reinoud 			anchor = anchor2;
   1097  1.45   reinoud 		/* reserve is specified to be a literal copy of main */
   1098  1.45   reinoud 	}
   1099  1.45   reinoud 
   1100  1.45   reinoud 	main_loc    = udf_rw32(anchor->main_vds_ex.loc);
   1101  1.45   reinoud 	main_len    = udf_rw32(anchor->main_vds_ex.len);
   1102  1.45   reinoud 
   1103  1.45   reinoud 	reserve_loc = udf_rw32(anchor->reserve_vds_ex.loc);
   1104  1.45   reinoud 	reserve_len = udf_rw32(anchor->reserve_vds_ex.len);
   1105  1.45   reinoud 
   1106  1.45   reinoud 	error = udf_read_vds_extent(ump, main_loc, main_len);
   1107  1.45   reinoud 	if (error) {
   1108  1.45   reinoud 		printf("UDF mount: reading in reserve VDS extent\n");
   1109  1.45   reinoud 		error = udf_read_vds_extent(ump, reserve_loc, reserve_len);
   1110  1.45   reinoud 	}
   1111  1.45   reinoud 
   1112  1.45   reinoud 	return error;
   1113  1.45   reinoud }
   1114  1.45   reinoud 
   1115  1.45   reinoud /* --------------------------------------------------------------------- */
   1116  1.45   reinoud 
   1117  1.45   reinoud /*
   1118  1.45   reinoud  * Read in the logical volume integrity sequence pointed to by our logical
   1119  1.45   reinoud  * volume descriptor. Its a sequence that can be extended using fields in the
   1120  1.45   reinoud  * integrity descriptor itself. On sequential media only one is found, on
   1121  1.45   reinoud  * rewritable media a sequence of descriptors can be found as a form of
   1122  1.45   reinoud  * history keeping and on non sequential write-once media the chain is vital
   1123  1.45   reinoud  * to allow more and more descriptors to be written. The last descriptor
   1124  1.45   reinoud  * written in an extent needs to claim space for a new extent.
   1125  1.45   reinoud  */
   1126  1.45   reinoud 
   1127  1.45   reinoud static int
   1128  1.45   reinoud udf_retrieve_lvint(struct udf_mount *ump)
   1129  1.45   reinoud {
   1130  1.45   reinoud 	union dscrptr *dscr;
   1131  1.45   reinoud 	struct logvol_int_desc *lvint;
   1132  1.45   reinoud 	struct udf_lvintq *trace;
   1133  1.45   reinoud 	uint32_t lb_size, lbnum, len;
   1134  1.45   reinoud 	int dscr_type, error, trace_len;
   1135  1.45   reinoud 
   1136  1.45   reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   1137  1.45   reinoud 	len     = udf_rw32(ump->logical_vol->integrity_seq_loc.len);
   1138  1.45   reinoud 	lbnum   = udf_rw32(ump->logical_vol->integrity_seq_loc.loc);
   1139  1.45   reinoud 
   1140  1.45   reinoud 	/* clean trace */
   1141  1.45   reinoud 	memset(ump->lvint_trace, 0,
   1142  1.45   reinoud 	    UDF_LVDINT_SEGMENTS * sizeof(struct udf_lvintq));
   1143  1.45   reinoud 
   1144  1.45   reinoud 	trace_len    = 0;
   1145  1.45   reinoud 	trace        = ump->lvint_trace;
   1146  1.45   reinoud 	trace->start = lbnum;
   1147  1.45   reinoud 	trace->end   = lbnum + len/lb_size;
   1148  1.45   reinoud 	trace->pos   = 0;
   1149  1.45   reinoud 	trace->wpos  = 0;
   1150  1.45   reinoud 
   1151  1.45   reinoud 	lvint = NULL;
   1152  1.45   reinoud 	dscr  = NULL;
   1153  1.45   reinoud 	error = 0;
   1154  1.45   reinoud 	while (len) {
   1155  1.45   reinoud 		trace->pos  = lbnum - trace->start;
   1156  1.45   reinoud 		trace->wpos = trace->pos + 1;
   1157  1.45   reinoud 
   1158  1.45   reinoud 		/* read in our integrity descriptor */
   1159  1.45   reinoud 		error = udf_read_phys_dscr(ump, lbnum, M_UDFVOLD, &dscr);
   1160  1.45   reinoud 		if (!error) {
   1161  1.45   reinoud 			if (dscr == NULL) {
   1162  1.45   reinoud 				trace->wpos = trace->pos;
   1163  1.45   reinoud 				break;		/* empty terminates */
   1164  1.45   reinoud 			}
   1165  1.45   reinoud 			dscr_type = udf_rw16(dscr->tag.id);
   1166  1.45   reinoud 			if (dscr_type == TAGID_TERM) {
   1167  1.45   reinoud 				trace->wpos = trace->pos;
   1168  1.45   reinoud 				break;		/* clean terminator */
   1169  1.45   reinoud 			}
   1170  1.45   reinoud 			if (dscr_type != TAGID_LOGVOL_INTEGRITY) {
   1171  1.45   reinoud 				/* fatal... corrupt disc */
   1172  1.45   reinoud 				error = ENOENT;
   1173  1.45   reinoud 				break;
   1174  1.45   reinoud 			}
   1175  1.45   reinoud 			if (lvint)
   1176  1.45   reinoud 				free(lvint, M_UDFVOLD);
   1177  1.45   reinoud 			lvint = &dscr->lvid;
   1178  1.45   reinoud 			dscr = NULL;
   1179  1.45   reinoud 		} /* else hope for the best... maybe the next is ok */
   1180  1.45   reinoud 
   1181  1.45   reinoud 		DPRINTFIF(VOLUMES, lvint, ("logvol integrity read, state %s\n",
   1182  1.45   reinoud 		    udf_rw32(lvint->integrity_type) ? "CLOSED" : "OPEN"));
   1183  1.45   reinoud 
   1184  1.45   reinoud 		/* proceed sequential */
   1185  1.45   reinoud 		lbnum += 1;
   1186  1.45   reinoud 		len    -= lb_size;
   1187  1.45   reinoud 
   1188  1.45   reinoud 		/* are we linking to a new piece? */
   1189  1.45   reinoud 		if (dscr && lvint->next_extent.len) {
   1190  1.45   reinoud 			len    = udf_rw32(lvint->next_extent.len);
   1191  1.45   reinoud 			lbnum = udf_rw32(lvint->next_extent.loc);
   1192  1.45   reinoud 
   1193  1.45   reinoud 			if (trace_len >= UDF_LVDINT_SEGMENTS-1) {
   1194  1.45   reinoud 				/* IEK! segment link full... */
   1195  1.45   reinoud 				DPRINTF(VOLUMES, ("lvdint segments full\n"));
   1196  1.45   reinoud 				error = EINVAL;
   1197  1.45   reinoud 			} else {
   1198  1.45   reinoud 				trace++;
   1199  1.45   reinoud 				trace_len++;
   1200  1.45   reinoud 
   1201  1.45   reinoud 				trace->start = lbnum;
   1202  1.45   reinoud 				trace->end   = lbnum + len/lb_size;
   1203  1.45   reinoud 				trace->pos   = 0;
   1204  1.45   reinoud 				trace->wpos  = 0;
   1205  1.45   reinoud 			}
   1206  1.45   reinoud 		}
   1207  1.45   reinoud 	}
   1208  1.45   reinoud 
   1209  1.45   reinoud 	/* clean up the mess, esp. when there is an error */
   1210  1.45   reinoud 	if (dscr)
   1211  1.45   reinoud 		free(dscr, M_UDFVOLD);
   1212  1.45   reinoud 
   1213  1.45   reinoud 	if (error && lvint) {
   1214  1.45   reinoud 		free(lvint, M_UDFVOLD);
   1215  1.45   reinoud 		lvint = NULL;
   1216  1.45   reinoud 	}
   1217  1.45   reinoud 
   1218  1.45   reinoud 	if (!lvint)
   1219  1.45   reinoud 		error = ENOENT;
   1220  1.45   reinoud 
   1221  1.45   reinoud 	ump->logvol_integrity = lvint;
   1222  1.45   reinoud 	return error;
   1223  1.45   reinoud }
   1224  1.45   reinoud 
   1225  1.45   reinoud 
   1226  1.45   reinoud static int
   1227  1.45   reinoud udf_loose_lvint_history(struct udf_mount *ump)
   1228  1.45   reinoud {
   1229  1.45   reinoud 	union dscrptr **bufs, *dscr, *last_dscr;
   1230  1.45   reinoud 	struct udf_lvintq *trace, *in_trace, *out_trace;
   1231  1.45   reinoud 	struct logvol_int_desc *lvint;
   1232  1.45   reinoud 	uint32_t in_ext, in_pos, in_len;
   1233  1.45   reinoud 	uint32_t out_ext, out_wpos, out_len;
   1234  1.45   reinoud 	uint32_t lb_size, packet_size, lb_num;
   1235  1.45   reinoud 	uint32_t len, start;
   1236  1.45   reinoud 	int ext, minext, extlen, cnt, cpy_len, dscr_type;
   1237  1.45   reinoud 	int losing;
   1238  1.45   reinoud 	int error;
   1239  1.45   reinoud 
   1240  1.45   reinoud 	DPRINTF(VOLUMES, ("need to lose some lvint history\n"));
   1241  1.45   reinoud 
   1242  1.45   reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   1243  1.45   reinoud 	packet_size = ump->data_track.packet_size;	/* XXX data track */
   1244  1.45   reinoud 
   1245  1.45   reinoud 	/* search smallest extent */
   1246  1.45   reinoud 	trace = &ump->lvint_trace[0];
   1247  1.45   reinoud 	minext = trace->end - trace->start;
   1248  1.45   reinoud 	for (ext = 1; ext < UDF_LVDINT_SEGMENTS; ext++) {
   1249  1.45   reinoud 		trace = &ump->lvint_trace[ext];
   1250  1.45   reinoud 		extlen = trace->end - trace->start;
   1251  1.45   reinoud 		if (extlen == 0)
   1252  1.45   reinoud 			break;
   1253  1.45   reinoud 		minext = MIN(minext, extlen);
   1254  1.45   reinoud 	}
   1255  1.45   reinoud 	losing = MIN(minext, UDF_LVINT_LOSSAGE);
   1256  1.45   reinoud 	/* no sense wiping all */
   1257  1.45   reinoud 	if (losing == minext)
   1258  1.45   reinoud 		losing--;
   1259  1.45   reinoud 
   1260  1.45   reinoud 	DPRINTF(VOLUMES, ("\tlosing %d entries\n", losing));
   1261  1.45   reinoud 
   1262  1.45   reinoud 	/* get buffer for pieces */
   1263  1.45   reinoud 	bufs = malloc(UDF_LVDINT_SEGMENTS * sizeof(void *), M_TEMP, M_WAITOK);
   1264  1.45   reinoud 
   1265  1.45   reinoud 	in_ext    = 0;
   1266  1.45   reinoud 	in_pos    = losing;
   1267  1.45   reinoud 	in_trace  = &ump->lvint_trace[in_ext];
   1268  1.45   reinoud 	in_len    = in_trace->end - in_trace->start;
   1269  1.45   reinoud 	out_ext   = 0;
   1270  1.45   reinoud 	out_wpos  = 0;
   1271  1.45   reinoud 	out_trace = &ump->lvint_trace[out_ext];
   1272  1.45   reinoud 	out_len   = out_trace->end - out_trace->start;
   1273  1.45   reinoud 
   1274  1.45   reinoud 	last_dscr = NULL;
   1275  1.45   reinoud 	for(;;) {
   1276  1.45   reinoud 		out_trace->pos  = out_wpos;
   1277  1.45   reinoud 		out_trace->wpos = out_trace->pos;
   1278  1.45   reinoud 		if (in_pos >= in_len) {
   1279  1.45   reinoud 			in_ext++;
   1280  1.45   reinoud 			in_pos = 0;
   1281  1.45   reinoud 			in_trace = &ump->lvint_trace[in_ext];
   1282  1.45   reinoud 			in_len   = in_trace->end - in_trace->start;
   1283  1.45   reinoud 		}
   1284  1.45   reinoud 		if (out_wpos >= out_len) {
   1285  1.45   reinoud 			out_ext++;
   1286  1.45   reinoud 			out_wpos = 0;
   1287  1.45   reinoud 			out_trace = &ump->lvint_trace[out_ext];
   1288  1.45   reinoud 			out_len   = out_trace->end - out_trace->start;
   1289  1.45   reinoud 		}
   1290  1.45   reinoud 		/* copy overlap contents */
   1291  1.45   reinoud 		cpy_len = MIN(in_len - in_pos, out_len - out_wpos);
   1292  1.45   reinoud 		cpy_len = MIN(cpy_len, in_len - in_trace->pos);
   1293  1.45   reinoud 		if (cpy_len == 0)
   1294  1.45   reinoud 			break;
   1295  1.45   reinoud 
   1296  1.45   reinoud 		/* copy */
   1297  1.45   reinoud 		DPRINTF(VOLUMES, ("\treading %d lvid descriptors\n", cpy_len));
   1298  1.45   reinoud 		for (cnt = 0; cnt < cpy_len; cnt++) {
   1299  1.45   reinoud 			/* read in our integrity descriptor */
   1300  1.45   reinoud 			lb_num = in_trace->start + in_pos + cnt;
   1301  1.45   reinoud 			error = udf_read_phys_dscr(ump, lb_num, M_UDFVOLD,
   1302  1.45   reinoud 				&dscr);
   1303  1.45   reinoud 			if (error) {
   1304  1.45   reinoud 				/* copy last one */
   1305  1.45   reinoud 				dscr = last_dscr;
   1306  1.45   reinoud 			}
   1307  1.45   reinoud 			bufs[cnt] = dscr;
   1308  1.45   reinoud 			if (!error) {
   1309  1.45   reinoud 				if (dscr == NULL) {
   1310  1.45   reinoud 					out_trace->pos  = out_wpos + cnt;
   1311  1.45   reinoud 					out_trace->wpos = out_trace->pos;
   1312  1.45   reinoud 					break;		/* empty terminates */
   1313  1.45   reinoud 				}
   1314  1.45   reinoud 				dscr_type = udf_rw16(dscr->tag.id);
   1315  1.45   reinoud 				if (dscr_type == TAGID_TERM) {
   1316  1.45   reinoud 					out_trace->pos  = out_wpos + cnt;
   1317  1.45   reinoud 					out_trace->wpos = out_trace->pos;
   1318  1.45   reinoud 					break;		/* clean terminator */
   1319  1.45   reinoud 				}
   1320  1.45   reinoud 				if (dscr_type != TAGID_LOGVOL_INTEGRITY) {
   1321  1.45   reinoud 					panic(  "UDF integrity sequence "
   1322  1.45   reinoud 						"corrupted while mounted!\n");
   1323  1.45   reinoud 				}
   1324  1.45   reinoud 				last_dscr = dscr;
   1325  1.45   reinoud 			}
   1326  1.45   reinoud 		}
   1327  1.45   reinoud 
   1328  1.45   reinoud 		/* patch up if first entry was on error */
   1329  1.45   reinoud 		if (bufs[0] == NULL) {
   1330  1.45   reinoud 			for (cnt = 0; cnt < cpy_len; cnt++)
   1331  1.45   reinoud 				if (bufs[cnt] != NULL)
   1332  1.45   reinoud 					break;
   1333  1.45   reinoud 			last_dscr = bufs[cnt];
   1334  1.45   reinoud 			for (; cnt > 0; cnt--) {
   1335  1.45   reinoud 				bufs[cnt] = last_dscr;
   1336  1.45   reinoud 			}
   1337  1.45   reinoud 		}
   1338  1.45   reinoud 
   1339  1.45   reinoud 		/* glue + write out */
   1340  1.45   reinoud 		DPRINTF(VOLUMES, ("\twriting %d lvid descriptors\n", cpy_len));
   1341  1.45   reinoud 		for (cnt = 0; cnt < cpy_len; cnt++) {
   1342  1.45   reinoud 			lb_num = out_trace->start + out_wpos + cnt;
   1343  1.45   reinoud 			lvint  = &bufs[cnt]->lvid;
   1344  1.45   reinoud 
   1345  1.45   reinoud 			/* set continuation */
   1346  1.45   reinoud 			len = 0;
   1347  1.45   reinoud 			start = 0;
   1348  1.45   reinoud 			if (out_wpos + cnt == out_len) {
   1349  1.45   reinoud 				/* get continuation */
   1350  1.45   reinoud 				trace = &ump->lvint_trace[out_ext+1];
   1351  1.45   reinoud 				len   = trace->end - trace->start;
   1352  1.45   reinoud 				start = trace->start;
   1353  1.45   reinoud 			}
   1354  1.45   reinoud 			lvint->next_extent.len = udf_rw32(len);
   1355  1.45   reinoud 			lvint->next_extent.loc = udf_rw32(start);
   1356  1.45   reinoud 
   1357  1.45   reinoud 			lb_num = trace->start + trace->wpos;
   1358  1.45   reinoud 			error = udf_write_phys_dscr_sync(ump, NULL, UDF_C_DSCR,
   1359  1.45   reinoud 				bufs[cnt], lb_num, lb_num);
   1360  1.45   reinoud 			DPRINTFIF(VOLUMES, error,
   1361  1.45   reinoud 				("error writing lvint lb_num\n"));
   1362  1.45   reinoud 		}
   1363  1.45   reinoud 
   1364  1.45   reinoud 		/* free non repeating descriptors */
   1365  1.45   reinoud 		last_dscr = NULL;
   1366  1.45   reinoud 		for (cnt = 0; cnt < cpy_len; cnt++) {
   1367  1.45   reinoud 			if (bufs[cnt] != last_dscr)
   1368  1.45   reinoud 				free(bufs[cnt], M_UDFVOLD);
   1369  1.45   reinoud 			last_dscr = bufs[cnt];
   1370  1.45   reinoud 		}
   1371  1.45   reinoud 
   1372  1.45   reinoud 		/* advance */
   1373  1.45   reinoud 		in_pos   += cpy_len;
   1374  1.45   reinoud 		out_wpos += cpy_len;
   1375  1.45   reinoud 	}
   1376  1.45   reinoud 
   1377  1.45   reinoud 	free(bufs, M_TEMP);
   1378  1.45   reinoud 
   1379  1.45   reinoud 	return 0;
   1380  1.45   reinoud }
   1381  1.45   reinoud 
   1382  1.45   reinoud 
   1383  1.45   reinoud static int
   1384  1.45   reinoud udf_writeout_lvint(struct udf_mount *ump, int lvflag)
   1385  1.45   reinoud {
   1386  1.45   reinoud 	struct udf_lvintq *trace;
   1387  1.45   reinoud 	struct timeval  now_v;
   1388  1.45   reinoud 	struct timespec now_s;
   1389  1.45   reinoud 	uint32_t sector;
   1390  1.45   reinoud 	int logvol_integrity;
   1391  1.45   reinoud 	int space, error;
   1392  1.45   reinoud 
   1393  1.45   reinoud 	DPRINTF(VOLUMES, ("writing out logvol integrity descriptor\n"));
   1394  1.45   reinoud 
   1395  1.45   reinoud again:
   1396  1.45   reinoud 	/* get free space in last chunk */
   1397  1.45   reinoud 	trace = ump->lvint_trace;
   1398  1.45   reinoud 	while (trace->wpos > (trace->end - trace->start)) {
   1399  1.45   reinoud 		DPRINTF(VOLUMES, ("skip : start = %d, end = %d, pos = %d, "
   1400  1.45   reinoud 				  "wpos = %d\n", trace->start, trace->end,
   1401  1.45   reinoud 				  trace->pos, trace->wpos));
   1402  1.45   reinoud 		trace++;
   1403  1.45   reinoud 	}
   1404  1.45   reinoud 
   1405  1.45   reinoud 	/* check if there is space to append */
   1406  1.45   reinoud 	space = (trace->end - trace->start) - trace->wpos;
   1407  1.45   reinoud 	DPRINTF(VOLUMES, ("write start = %d, end = %d, pos = %d, wpos = %d, "
   1408  1.45   reinoud 			  "space = %d\n", trace->start, trace->end, trace->pos,
   1409  1.45   reinoud 			  trace->wpos, space));
   1410  1.45   reinoud 
   1411  1.45   reinoud 	/* get state */
   1412  1.45   reinoud 	logvol_integrity = udf_rw32(ump->logvol_integrity->integrity_type);
   1413  1.45   reinoud 	if (logvol_integrity == UDF_INTEGRITY_CLOSED) {
   1414  1.45   reinoud 		if ((space < 3) && (lvflag & UDF_APPENDONLY_LVINT)) {
   1415  1.45   reinoud 			/* don't allow this logvol to be opened */
   1416  1.45   reinoud 			/* TODO extent LVINT space if possible */
   1417  1.45   reinoud 			return EROFS;
   1418  1.45   reinoud 		}
   1419  1.45   reinoud 	}
   1420  1.45   reinoud 
   1421  1.45   reinoud 	if (space < 1) {
   1422  1.45   reinoud 		if (lvflag & UDF_APPENDONLY_LVINT)
   1423  1.45   reinoud 			return EROFS;
   1424  1.45   reinoud 		/* loose history by re-writing extents */
   1425  1.45   reinoud 		error = udf_loose_lvint_history(ump);
   1426  1.45   reinoud 		if (error)
   1427  1.45   reinoud 			return error;
   1428  1.45   reinoud 		goto again;
   1429  1.45   reinoud 	}
   1430  1.45   reinoud 
   1431  1.45   reinoud 	/* update our integrity descriptor to identify us and timestamp it */
   1432  1.45   reinoud 	DPRINTF(VOLUMES, ("updating integrity descriptor\n"));
   1433  1.45   reinoud 	microtime(&now_v);
   1434  1.45   reinoud 	TIMEVAL_TO_TIMESPEC(&now_v, &now_s);
   1435  1.45   reinoud 	udf_timespec_to_timestamp(&now_s, &ump->logvol_integrity->time);
   1436  1.45   reinoud 	udf_set_regid(&ump->logvol_info->impl_id, IMPL_NAME);
   1437  1.45   reinoud 	udf_add_impl_regid(ump, &ump->logvol_info->impl_id);
   1438  1.45   reinoud 
   1439  1.45   reinoud 	/* writeout integrity descriptor */
   1440  1.45   reinoud 	sector = trace->start + trace->wpos;
   1441  1.45   reinoud 	error = udf_write_phys_dscr_sync(ump, NULL, UDF_C_DSCR,
   1442  1.45   reinoud 			(union dscrptr *) ump->logvol_integrity,
   1443  1.45   reinoud 			sector, sector);
   1444  1.45   reinoud 	DPRINTF(VOLUMES, ("writeout lvint : error = %d\n", error));
   1445  1.45   reinoud 	if (error)
   1446  1.45   reinoud 		return error;
   1447  1.45   reinoud 
   1448  1.45   reinoud 	/* advance write position */
   1449  1.45   reinoud 	trace->wpos++; space--;
   1450  1.45   reinoud 	if (space >= 1) {
   1451  1.45   reinoud 		/* append terminator */
   1452  1.45   reinoud 		sector = trace->start + trace->wpos;
   1453  1.45   reinoud 		error = udf_write_terminator(ump, sector);
   1454  1.45   reinoud 
   1455  1.45   reinoud 		DPRINTF(VOLUMES, ("write terminator : error = %d\n", error));
   1456  1.45   reinoud 	}
   1457  1.45   reinoud 
   1458  1.45   reinoud 	space = (trace->end - trace->start) - trace->wpos;
   1459  1.45   reinoud 	DPRINTF(VOLUMES, ("write start = %d, end = %d, pos = %d, wpos = %d, "
   1460  1.45   reinoud 		"space = %d\n", trace->start, trace->end, trace->pos,
   1461  1.45   reinoud 		trace->wpos, space));
   1462  1.45   reinoud 	DPRINTF(VOLUMES, ("finished writing out logvol integrity descriptor "
   1463  1.45   reinoud 		"successfull\n"));
   1464  1.45   reinoud 
   1465  1.45   reinoud 	return error;
   1466  1.45   reinoud }
   1467  1.45   reinoud 
   1468  1.45   reinoud /* --------------------------------------------------------------------- */
   1469  1.45   reinoud 
   1470  1.45   reinoud static int
   1471  1.68   reinoud udf_read_physical_partition_spacetables(struct udf_mount *ump)
   1472  1.45   reinoud {
   1473  1.45   reinoud 	union dscrptr        *dscr;
   1474  1.45   reinoud 	/* struct udf_args *args = &ump->mount_args; */
   1475  1.45   reinoud 	struct part_desc     *partd;
   1476  1.45   reinoud 	struct part_hdr_desc *parthdr;
   1477  1.45   reinoud 	struct udf_bitmap    *bitmap;
   1478  1.45   reinoud 	uint32_t phys_part;
   1479  1.45   reinoud 	uint32_t lb_num, len;
   1480  1.45   reinoud 	int error, dscr_type;
   1481  1.45   reinoud 
   1482  1.45   reinoud 	/* unallocated space map */
   1483  1.45   reinoud 	for (phys_part = 0; phys_part < UDF_PARTITIONS; phys_part++) {
   1484  1.45   reinoud 		partd = ump->partitions[phys_part];
   1485  1.45   reinoud 		if (partd == NULL)
   1486  1.45   reinoud 			continue;
   1487  1.45   reinoud 		parthdr = &partd->_impl_use.part_hdr;
   1488  1.45   reinoud 
   1489  1.45   reinoud 		lb_num  = udf_rw32(partd->start_loc);
   1490  1.45   reinoud 		lb_num += udf_rw32(parthdr->unalloc_space_bitmap.lb_num);
   1491  1.45   reinoud 		len     = udf_rw32(parthdr->unalloc_space_bitmap.len);
   1492  1.45   reinoud 		if (len == 0)
   1493  1.45   reinoud 			continue;
   1494  1.45   reinoud 
   1495  1.45   reinoud 		DPRINTF(VOLUMES, ("Read unalloc. space bitmap %d\n", lb_num));
   1496  1.45   reinoud 		error = udf_read_phys_dscr(ump, lb_num, M_UDFVOLD, &dscr);
   1497  1.45   reinoud 		if (!error && dscr) {
   1498  1.45   reinoud 			/* analyse */
   1499  1.45   reinoud 			dscr_type = udf_rw16(dscr->tag.id);
   1500  1.45   reinoud 			if (dscr_type == TAGID_SPACE_BITMAP) {
   1501  1.45   reinoud 				DPRINTF(VOLUMES, ("Accepting space bitmap\n"));
   1502  1.45   reinoud 				ump->part_unalloc_dscr[phys_part] = &dscr->sbd;
   1503  1.45   reinoud 
   1504  1.45   reinoud 				/* fill in ump->part_unalloc_bits */
   1505  1.45   reinoud 				bitmap = &ump->part_unalloc_bits[phys_part];
   1506  1.45   reinoud 				bitmap->blob  = (uint8_t *) dscr;
   1507  1.45   reinoud 				bitmap->bits  = dscr->sbd.data;
   1508  1.45   reinoud 				bitmap->max_offset = udf_rw32(dscr->sbd.num_bits);
   1509  1.45   reinoud 				bitmap->pages = NULL;	/* TODO */
   1510  1.45   reinoud 				bitmap->data_pos     = 0;
   1511  1.45   reinoud 				bitmap->metadata_pos = 0;
   1512  1.45   reinoud 			} else {
   1513  1.45   reinoud 				free(dscr, M_UDFVOLD);
   1514  1.45   reinoud 
   1515  1.45   reinoud 				printf( "UDF mount: error reading unallocated "
   1516  1.45   reinoud 					"space bitmap\n");
   1517  1.45   reinoud 				return EROFS;
   1518  1.45   reinoud 			}
   1519  1.45   reinoud 		} else {
   1520  1.45   reinoud 			/* blank not allowed */
   1521  1.45   reinoud 			printf("UDF mount: blank unallocated space bitmap\n");
   1522  1.45   reinoud 			return EROFS;
   1523  1.45   reinoud 		}
   1524  1.45   reinoud 	}
   1525  1.45   reinoud 
   1526  1.45   reinoud 	/* unallocated space table (not supported) */
   1527  1.45   reinoud 	for (phys_part = 0; phys_part < UDF_PARTITIONS; phys_part++) {
   1528  1.45   reinoud 		partd = ump->partitions[phys_part];
   1529  1.45   reinoud 		if (partd == NULL)
   1530  1.45   reinoud 			continue;
   1531  1.45   reinoud 		parthdr = &partd->_impl_use.part_hdr;
   1532  1.45   reinoud 
   1533  1.45   reinoud 		len     = udf_rw32(parthdr->unalloc_space_table.len);
   1534  1.45   reinoud 		if (len) {
   1535  1.45   reinoud 			printf("UDF mount: space tables not supported\n");
   1536  1.45   reinoud 			return EROFS;
   1537  1.45   reinoud 		}
   1538  1.45   reinoud 	}
   1539  1.45   reinoud 
   1540  1.45   reinoud 	/* freed space map */
   1541  1.45   reinoud 	for (phys_part = 0; phys_part < UDF_PARTITIONS; phys_part++) {
   1542  1.45   reinoud 		partd = ump->partitions[phys_part];
   1543  1.45   reinoud 		if (partd == NULL)
   1544  1.45   reinoud 			continue;
   1545  1.45   reinoud 		parthdr = &partd->_impl_use.part_hdr;
   1546  1.45   reinoud 
   1547  1.45   reinoud 		/* freed space map */
   1548  1.45   reinoud 		lb_num  = udf_rw32(partd->start_loc);
   1549  1.45   reinoud 		lb_num += udf_rw32(parthdr->freed_space_bitmap.lb_num);
   1550  1.45   reinoud 		len     = udf_rw32(parthdr->freed_space_bitmap.len);
   1551  1.45   reinoud 		if (len == 0)
   1552  1.45   reinoud 			continue;
   1553  1.45   reinoud 
   1554  1.45   reinoud 		DPRINTF(VOLUMES, ("Read unalloc. space bitmap %d\n", lb_num));
   1555  1.45   reinoud 		error = udf_read_phys_dscr(ump, lb_num, M_UDFVOLD, &dscr);
   1556  1.45   reinoud 		if (!error && dscr) {
   1557  1.45   reinoud 			/* analyse */
   1558  1.45   reinoud 			dscr_type = udf_rw16(dscr->tag.id);
   1559  1.45   reinoud 			if (dscr_type == TAGID_SPACE_BITMAP) {
   1560  1.45   reinoud 				DPRINTF(VOLUMES, ("Accepting space bitmap\n"));
   1561  1.45   reinoud 				ump->part_freed_dscr[phys_part] = &dscr->sbd;
   1562  1.45   reinoud 
   1563  1.45   reinoud 				/* fill in ump->part_freed_bits */
   1564  1.45   reinoud 				bitmap = &ump->part_unalloc_bits[phys_part];
   1565  1.45   reinoud 				bitmap->blob  = (uint8_t *) dscr;
   1566  1.45   reinoud 				bitmap->bits  = dscr->sbd.data;
   1567  1.45   reinoud 				bitmap->max_offset = udf_rw32(dscr->sbd.num_bits);
   1568  1.45   reinoud 				bitmap->pages = NULL;	/* TODO */
   1569  1.45   reinoud 				bitmap->data_pos     = 0;
   1570  1.45   reinoud 				bitmap->metadata_pos = 0;
   1571  1.45   reinoud 			} else {
   1572  1.45   reinoud 				free(dscr, M_UDFVOLD);
   1573  1.45   reinoud 
   1574  1.45   reinoud 				printf( "UDF mount: error reading freed  "
   1575  1.45   reinoud 					"space bitmap\n");
   1576  1.45   reinoud 				return EROFS;
   1577  1.45   reinoud 			}
   1578  1.45   reinoud 		} else {
   1579  1.45   reinoud 			/* blank not allowed */
   1580  1.45   reinoud 			printf("UDF mount: blank freed space bitmap\n");
   1581  1.45   reinoud 			return EROFS;
   1582  1.45   reinoud 		}
   1583  1.45   reinoud 	}
   1584  1.45   reinoud 
   1585  1.45   reinoud 	/* freed space table (not supported) */
   1586  1.45   reinoud 	for (phys_part = 0; phys_part < UDF_PARTITIONS; phys_part++) {
   1587  1.45   reinoud 		partd = ump->partitions[phys_part];
   1588  1.45   reinoud 		if (partd == NULL)
   1589  1.45   reinoud 			continue;
   1590  1.45   reinoud 		parthdr = &partd->_impl_use.part_hdr;
   1591  1.45   reinoud 
   1592  1.45   reinoud 		len     = udf_rw32(parthdr->freed_space_table.len);
   1593  1.45   reinoud 		if (len) {
   1594  1.45   reinoud 			printf("UDF mount: space tables not supported\n");
   1595  1.45   reinoud 			return EROFS;
   1596  1.45   reinoud 		}
   1597  1.45   reinoud 	}
   1598  1.45   reinoud 
   1599  1.45   reinoud 	return 0;
   1600  1.45   reinoud }
   1601  1.45   reinoud 
   1602  1.45   reinoud 
   1603  1.45   reinoud /* TODO implement async writeout */
   1604  1.45   reinoud int
   1605  1.68   reinoud udf_write_physical_partition_spacetables(struct udf_mount *ump, int waitfor)
   1606  1.45   reinoud {
   1607  1.45   reinoud 	union dscrptr        *dscr;
   1608  1.45   reinoud 	/* struct udf_args *args = &ump->mount_args; */
   1609  1.45   reinoud 	struct part_desc     *partd;
   1610  1.45   reinoud 	struct part_hdr_desc *parthdr;
   1611  1.45   reinoud 	uint32_t phys_part;
   1612  1.45   reinoud 	uint32_t lb_num, len, ptov;
   1613  1.45   reinoud 	int error_all, error;
   1614  1.45   reinoud 
   1615  1.45   reinoud 	error_all = 0;
   1616  1.45   reinoud 	/* unallocated space map */
   1617  1.45   reinoud 	for (phys_part = 0; phys_part < UDF_PARTITIONS; phys_part++) {
   1618  1.45   reinoud 		partd = ump->partitions[phys_part];
   1619  1.45   reinoud 		if (partd == NULL)
   1620  1.45   reinoud 			continue;
   1621  1.45   reinoud 		parthdr = &partd->_impl_use.part_hdr;
   1622  1.45   reinoud 
   1623  1.45   reinoud 		ptov   = udf_rw32(partd->start_loc);
   1624  1.45   reinoud 		lb_num = udf_rw32(parthdr->unalloc_space_bitmap.lb_num);
   1625  1.45   reinoud 		len    = udf_rw32(parthdr->unalloc_space_bitmap.len);
   1626  1.45   reinoud 		if (len == 0)
   1627  1.45   reinoud 			continue;
   1628  1.45   reinoud 
   1629  1.45   reinoud 		DPRINTF(VOLUMES, ("Write unalloc. space bitmap %d\n",
   1630  1.45   reinoud 			lb_num + ptov));
   1631  1.45   reinoud 		dscr = (union dscrptr *) ump->part_unalloc_dscr[phys_part];
   1632  1.45   reinoud 		error = udf_write_phys_dscr_sync(ump, NULL, UDF_C_DSCR,
   1633  1.45   reinoud 				(union dscrptr *) dscr,
   1634  1.45   reinoud 				ptov + lb_num, lb_num);
   1635  1.45   reinoud 		if (error) {
   1636  1.45   reinoud 			DPRINTF(VOLUMES, ("\tfailed!! (error %d)\n", error));
   1637  1.45   reinoud 			error_all = error;
   1638  1.45   reinoud 		}
   1639  1.45   reinoud 	}
   1640  1.45   reinoud 
   1641  1.45   reinoud 	/* freed space map */
   1642  1.45   reinoud 	for (phys_part = 0; phys_part < UDF_PARTITIONS; phys_part++) {
   1643  1.45   reinoud 		partd = ump->partitions[phys_part];
   1644  1.45   reinoud 		if (partd == NULL)
   1645  1.45   reinoud 			continue;
   1646  1.45   reinoud 		parthdr = &partd->_impl_use.part_hdr;
   1647  1.45   reinoud 
   1648  1.45   reinoud 		/* freed space map */
   1649  1.45   reinoud 		ptov   = udf_rw32(partd->start_loc);
   1650  1.45   reinoud 		lb_num = udf_rw32(parthdr->freed_space_bitmap.lb_num);
   1651  1.45   reinoud 		len    = udf_rw32(parthdr->freed_space_bitmap.len);
   1652  1.45   reinoud 		if (len == 0)
   1653  1.45   reinoud 			continue;
   1654  1.45   reinoud 
   1655  1.45   reinoud 		DPRINTF(VOLUMES, ("Write freed space bitmap %d\n",
   1656  1.45   reinoud 			lb_num + ptov));
   1657  1.45   reinoud 		dscr = (union dscrptr *) ump->part_freed_dscr[phys_part];
   1658  1.45   reinoud 		error = udf_write_phys_dscr_sync(ump, NULL, UDF_C_DSCR,
   1659  1.45   reinoud 				(union dscrptr *) dscr,
   1660  1.45   reinoud 				ptov + lb_num, lb_num);
   1661  1.45   reinoud 		if (error) {
   1662  1.45   reinoud 			DPRINTF(VOLUMES, ("\tfailed!! (error %d)\n", error));
   1663  1.45   reinoud 			error_all = error;
   1664  1.45   reinoud 		}
   1665  1.45   reinoud 	}
   1666  1.45   reinoud 
   1667  1.45   reinoud 	return error_all;
   1668  1.45   reinoud }
   1669  1.45   reinoud 
   1670  1.70   reinoud 
   1671  1.70   reinoud static int
   1672  1.70   reinoud udf_read_metadata_partition_spacetable(struct udf_mount *ump)
   1673  1.70   reinoud {
   1674  1.70   reinoud 	struct udf_node	     *bitmap_node;
   1675  1.70   reinoud 	union dscrptr        *dscr;
   1676  1.70   reinoud 	struct udf_bitmap    *bitmap;
   1677  1.70   reinoud 	uint64_t inflen;
   1678  1.70   reinoud 	int error, dscr_type;
   1679  1.70   reinoud 
   1680  1.70   reinoud 	bitmap_node = ump->metadatabitmap_node;
   1681  1.70   reinoud 
   1682  1.70   reinoud 	/* only read in when metadata bitmap node is read in */
   1683  1.70   reinoud 	if (bitmap_node == NULL)
   1684  1.70   reinoud 		return 0;
   1685  1.70   reinoud 
   1686  1.70   reinoud 	if (bitmap_node->fe) {
   1687  1.70   reinoud 		inflen = udf_rw64(bitmap_node->fe->inf_len);
   1688  1.70   reinoud 	} else {
   1689  1.70   reinoud 		KASSERT(bitmap_node->efe);
   1690  1.70   reinoud 		inflen = udf_rw64(bitmap_node->efe->inf_len);
   1691  1.70   reinoud 	}
   1692  1.70   reinoud 
   1693  1.70   reinoud 	DPRINTF(VOLUMES, ("Reading metadata space bitmap for "
   1694  1.70   reinoud 		"%"PRIu64" bytes\n", inflen));
   1695  1.70   reinoud 
   1696  1.70   reinoud 	/* allocate space for bitmap */
   1697  1.70   reinoud 	dscr = malloc(inflen, M_UDFVOLD, M_CANFAIL | M_WAITOK);
   1698  1.70   reinoud 	if (!dscr)
   1699  1.70   reinoud 		return ENOMEM;
   1700  1.70   reinoud 
   1701  1.70   reinoud 	/* set vnode type to regular file or we can't read from it! */
   1702  1.70   reinoud 	bitmap_node->vnode->v_type = VREG;
   1703  1.70   reinoud 
   1704  1.70   reinoud 	/* read in complete metadata bitmap file */
   1705  1.70   reinoud 	error = vn_rdwr(UIO_READ, bitmap_node->vnode,
   1706  1.70   reinoud 			dscr,
   1707  1.70   reinoud 			inflen, 0,
   1708  1.70   reinoud 			UIO_SYSSPACE,
   1709  1.70   reinoud 			IO_SYNC | IO_NODELOCKED | IO_ALTSEMANTICS, FSCRED,
   1710  1.70   reinoud 			NULL, NULL);
   1711  1.70   reinoud 	if (error) {
   1712  1.70   reinoud 		DPRINTF(VOLUMES, ("Error reading metadata space bitmap\n"));
   1713  1.70   reinoud 		goto errorout;
   1714  1.70   reinoud 	}
   1715  1.70   reinoud 
   1716  1.70   reinoud 	/* analyse */
   1717  1.70   reinoud 	dscr_type = udf_rw16(dscr->tag.id);
   1718  1.70   reinoud 	if (dscr_type == TAGID_SPACE_BITMAP) {
   1719  1.70   reinoud 		DPRINTF(VOLUMES, ("Accepting metadata space bitmap\n"));
   1720  1.70   reinoud 		ump->metadata_unalloc_dscr = &dscr->sbd;
   1721  1.70   reinoud 
   1722  1.70   reinoud 		/* fill in bitmap bits */
   1723  1.70   reinoud 		bitmap = &ump->metadata_unalloc_bits;
   1724  1.70   reinoud 		bitmap->blob  = (uint8_t *) dscr;
   1725  1.70   reinoud 		bitmap->bits  = dscr->sbd.data;
   1726  1.70   reinoud 		bitmap->max_offset = udf_rw32(dscr->sbd.num_bits);
   1727  1.70   reinoud 		bitmap->pages = NULL;	/* TODO */
   1728  1.70   reinoud 		bitmap->data_pos     = 0;
   1729  1.70   reinoud 		bitmap->metadata_pos = 0;
   1730  1.70   reinoud 	} else {
   1731  1.70   reinoud 		DPRINTF(VOLUMES, ("No valid bitmap found!\n"));
   1732  1.70   reinoud 		goto errorout;
   1733  1.70   reinoud 	}
   1734  1.70   reinoud 
   1735  1.70   reinoud 	return 0;
   1736  1.70   reinoud 
   1737  1.70   reinoud errorout:
   1738  1.70   reinoud 	free(dscr, M_UDFVOLD);
   1739  1.70   reinoud 	printf( "UDF mount: error reading unallocated "
   1740  1.70   reinoud 		"space bitmap for metadata partition\n");
   1741  1.70   reinoud 	return EROFS;
   1742  1.70   reinoud }
   1743  1.70   reinoud 
   1744  1.70   reinoud 
   1745  1.70   reinoud int
   1746  1.70   reinoud udf_write_metadata_partition_spacetable(struct udf_mount *ump, int waitfor)
   1747  1.70   reinoud {
   1748  1.70   reinoud 	struct udf_node	     *bitmap_node;
   1749  1.70   reinoud 	union dscrptr        *dscr;
   1750  1.70   reinoud 	uint64_t inflen, new_inflen;
   1751  1.70   reinoud 	int dummy, error;
   1752  1.70   reinoud 
   1753  1.70   reinoud 	bitmap_node = ump->metadatabitmap_node;
   1754  1.70   reinoud 
   1755  1.70   reinoud 	/* only write out when metadata bitmap node is known */
   1756  1.70   reinoud 	if (bitmap_node == NULL)
   1757  1.70   reinoud 		return 0;
   1758  1.70   reinoud 
   1759  1.70   reinoud 	if (bitmap_node->fe) {
   1760  1.70   reinoud 		inflen = udf_rw64(bitmap_node->fe->inf_len);
   1761  1.70   reinoud 	} else {
   1762  1.70   reinoud 		KASSERT(bitmap_node->efe);
   1763  1.70   reinoud 		inflen = udf_rw64(bitmap_node->efe->inf_len);
   1764  1.70   reinoud 	}
   1765  1.70   reinoud 
   1766  1.70   reinoud 	/* reduce length to zero */
   1767  1.70   reinoud 	dscr = (union dscrptr *) ump->metadata_unalloc_dscr;
   1768  1.70   reinoud 	new_inflen = udf_tagsize(dscr, 1);
   1769  1.70   reinoud 
   1770  1.70   reinoud 	DPRINTF(VOLUMES, ("Resize and write out metadata space bitmap from "
   1771  1.70   reinoud 		"%"PRIu64" to %"PRIu64" bytes\n", inflen, new_inflen));
   1772  1.70   reinoud 
   1773  1.71   reinoud 	error = udf_resize_node(bitmap_node, new_inflen, &dummy);
   1774  1.70   reinoud 	if (error)
   1775  1.70   reinoud 		printf("Error resizing metadata space bitmap\n");
   1776  1.70   reinoud 
   1777  1.70   reinoud 	error = vn_rdwr(UIO_WRITE, bitmap_node->vnode,
   1778  1.70   reinoud 			dscr,
   1779  1.70   reinoud 			new_inflen, 0,
   1780  1.70   reinoud 			UIO_SYSSPACE,
   1781  1.70   reinoud 			IO_NODELOCKED | IO_ALTSEMANTICS, FSCRED,
   1782  1.70   reinoud 			NULL, NULL);
   1783  1.70   reinoud 
   1784  1.70   reinoud 	bitmap_node->i_flags |= IN_MODIFIED;
   1785  1.70   reinoud 	vflushbuf(bitmap_node->vnode, 1 /* sync */);
   1786  1.71   reinoud 
   1787  1.70   reinoud 	error = VOP_FSYNC(bitmap_node->vnode,
   1788  1.70   reinoud 			FSCRED, FSYNC_WAIT, 0, 0);
   1789  1.70   reinoud 
   1790  1.70   reinoud 	if (error)
   1791  1.70   reinoud 		printf( "Error writing out metadata partition unalloced "
   1792  1.70   reinoud 			"space bitmap!\n");
   1793  1.70   reinoud 
   1794  1.70   reinoud 	return error;
   1795  1.70   reinoud }
   1796  1.70   reinoud 
   1797  1.70   reinoud 
   1798  1.70   reinoud /* --------------------------------------------------------------------- */
   1799  1.70   reinoud 
   1800  1.45   reinoud /*
   1801  1.45   reinoud  * Checks if ump's vds information is correct and complete
   1802  1.45   reinoud  */
   1803  1.45   reinoud 
   1804  1.45   reinoud int
   1805  1.45   reinoud udf_process_vds(struct udf_mount *ump) {
   1806  1.45   reinoud 	union udf_pmap *mapping;
   1807  1.45   reinoud 	/* struct udf_args *args = &ump->mount_args; */
   1808  1.45   reinoud 	struct logvol_int_desc *lvint;
   1809  1.45   reinoud 	struct udf_logvol_info *lvinfo;
   1810  1.45   reinoud 	struct part_desc *part;
   1811  1.45   reinoud 	uint32_t n_pm, mt_l;
   1812  1.45   reinoud 	uint8_t *pmap_pos;
   1813  1.45   reinoud 	char *domain_name, *map_name;
   1814  1.45   reinoud 	const char *check_name;
   1815  1.45   reinoud 	char bits[128];
   1816  1.45   reinoud 	int pmap_stype, pmap_size;
   1817  1.71   reinoud 	int pmap_type, log_part, phys_part, raw_phys_part, maps_on;
   1818  1.45   reinoud 	int n_phys, n_virt, n_spar, n_meta;
   1819  1.45   reinoud 	int len, error;
   1820  1.45   reinoud 
   1821  1.45   reinoud 	if (ump == NULL)
   1822  1.45   reinoud 		return ENOENT;
   1823  1.45   reinoud 
   1824  1.45   reinoud 	/* we need at least an anchor (trivial, but for safety) */
   1825  1.45   reinoud 	if (ump->anchors[0] == NULL)
   1826  1.45   reinoud 		return EINVAL;
   1827  1.45   reinoud 
   1828  1.45   reinoud 	/* we need at least one primary and one logical volume descriptor */
   1829  1.45   reinoud 	if ((ump->primary_vol == NULL) || (ump->logical_vol) == NULL)
   1830  1.45   reinoud 		return EINVAL;
   1831  1.45   reinoud 
   1832  1.45   reinoud 	/* we need at least one partition descriptor */
   1833  1.45   reinoud 	if (ump->partitions[0] == NULL)
   1834  1.45   reinoud 		return EINVAL;
   1835  1.45   reinoud 
   1836  1.45   reinoud 	/* check logical volume sector size verses device sector size */
   1837  1.45   reinoud 	if (udf_rw32(ump->logical_vol->lb_size) != ump->discinfo.sector_size) {
   1838  1.45   reinoud 		printf("UDF mount: format violation, lb_size != sector size\n");
   1839  1.45   reinoud 		return EINVAL;
   1840  1.45   reinoud 	}
   1841  1.45   reinoud 
   1842  1.45   reinoud 	/* check domain name */
   1843  1.45   reinoud 	domain_name = ump->logical_vol->domain_id.id;
   1844  1.45   reinoud 	if (strncmp(domain_name, "*OSTA UDF Compliant", 20)) {
   1845  1.45   reinoud 		printf("mount_udf: disc not OSTA UDF Compliant, aborting\n");
   1846  1.45   reinoud 		return EINVAL;
   1847  1.45   reinoud 	}
   1848  1.45   reinoud 
   1849  1.45   reinoud 	/* retrieve logical volume integrity sequence */
   1850  1.45   reinoud 	error = udf_retrieve_lvint(ump);
   1851  1.45   reinoud 
   1852  1.45   reinoud 	/*
   1853  1.45   reinoud 	 * We need at least one logvol integrity descriptor recorded.  Note
   1854  1.45   reinoud 	 * that its OK to have an open logical volume integrity here. The VAT
   1855  1.45   reinoud 	 * will close/update the integrity.
   1856  1.45   reinoud 	 */
   1857  1.45   reinoud 	if (ump->logvol_integrity == NULL)
   1858  1.45   reinoud 		return EINVAL;
   1859  1.45   reinoud 
   1860  1.45   reinoud 	/* process derived structures */
   1861  1.45   reinoud 	n_pm   = udf_rw32(ump->logical_vol->n_pm);   /* num partmaps         */
   1862  1.45   reinoud 	lvint  = ump->logvol_integrity;
   1863  1.45   reinoud 	lvinfo = (struct udf_logvol_info *) (&lvint->tables[2 * n_pm]);
   1864  1.45   reinoud 	ump->logvol_info = lvinfo;
   1865  1.45   reinoud 
   1866  1.45   reinoud 	/* TODO check udf versions? */
   1867  1.45   reinoud 
   1868  1.45   reinoud 	/*
   1869  1.45   reinoud 	 * check logvol mappings: effective virt->log partmap translation
   1870  1.45   reinoud 	 * check and recording of the mapping results. Saves expensive
   1871  1.45   reinoud 	 * strncmp() in tight places.
   1872  1.45   reinoud 	 */
   1873  1.45   reinoud 	DPRINTF(VOLUMES, ("checking logvol mappings\n"));
   1874  1.45   reinoud 	n_pm = udf_rw32(ump->logical_vol->n_pm);   /* num partmaps         */
   1875  1.45   reinoud 	mt_l = udf_rw32(ump->logical_vol->mt_l);   /* partmaps data length */
   1876  1.45   reinoud 	pmap_pos =  ump->logical_vol->maps;
   1877  1.45   reinoud 
   1878  1.45   reinoud 	if (n_pm > UDF_PMAPS) {
   1879  1.45   reinoud 		printf("UDF mount: too many mappings\n");
   1880  1.45   reinoud 		return EINVAL;
   1881  1.45   reinoud 	}
   1882  1.45   reinoud 
   1883  1.71   reinoud 	/* count types and set partition numbers */
   1884  1.71   reinoud 	ump->data_part = ump->node_part = ump->fids_part = 0;
   1885  1.45   reinoud 	n_phys = n_virt = n_spar = n_meta = 0;
   1886  1.45   reinoud 	for (log_part = 0; log_part < n_pm; log_part++) {
   1887  1.45   reinoud 		mapping = (union udf_pmap *) pmap_pos;
   1888  1.45   reinoud 		pmap_stype = pmap_pos[0];
   1889  1.45   reinoud 		pmap_size  = pmap_pos[1];
   1890  1.45   reinoud 		switch (pmap_stype) {
   1891  1.45   reinoud 		case 1:	/* physical mapping */
   1892  1.45   reinoud 			/* volseq    = udf_rw16(mapping->pm1.vol_seq_num); */
   1893  1.45   reinoud 			raw_phys_part = udf_rw16(mapping->pm1.part_num);
   1894  1.45   reinoud 			pmap_type = UDF_VTOP_TYPE_PHYS;
   1895  1.45   reinoud 			n_phys++;
   1896  1.71   reinoud 			ump->data_part = log_part;
   1897  1.71   reinoud 			ump->node_part = log_part;
   1898  1.71   reinoud 			ump->fids_part = log_part;
   1899  1.45   reinoud 			break;
   1900  1.45   reinoud 		case 2: /* virtual/sparable/meta mapping */
   1901  1.45   reinoud 			map_name  = mapping->pm2.part_id.id;
   1902  1.45   reinoud 			/* volseq  = udf_rw16(mapping->pm2.vol_seq_num); */
   1903  1.45   reinoud 			raw_phys_part = udf_rw16(mapping->pm2.part_num);
   1904  1.45   reinoud 			pmap_type = UDF_VTOP_TYPE_UNKNOWN;
   1905  1.45   reinoud 			len = UDF_REGID_ID_SIZE;
   1906  1.45   reinoud 
   1907  1.45   reinoud 			check_name = "*UDF Virtual Partition";
   1908  1.45   reinoud 			if (strncmp(map_name, check_name, len) == 0) {
   1909  1.45   reinoud 				pmap_type = UDF_VTOP_TYPE_VIRT;
   1910  1.45   reinoud 				n_virt++;
   1911  1.71   reinoud 				ump->node_part = log_part;
   1912  1.45   reinoud 				break;
   1913  1.45   reinoud 			}
   1914  1.45   reinoud 			check_name = "*UDF Sparable Partition";
   1915  1.45   reinoud 			if (strncmp(map_name, check_name, len) == 0) {
   1916  1.45   reinoud 				pmap_type = UDF_VTOP_TYPE_SPARABLE;
   1917  1.45   reinoud 				n_spar++;
   1918  1.71   reinoud 				ump->data_part = log_part;
   1919  1.71   reinoud 				ump->node_part = log_part;
   1920  1.71   reinoud 				ump->fids_part = log_part;
   1921  1.45   reinoud 				break;
   1922  1.45   reinoud 			}
   1923  1.45   reinoud 			check_name = "*UDF Metadata Partition";
   1924  1.45   reinoud 			if (strncmp(map_name, check_name, len) == 0) {
   1925  1.45   reinoud 				pmap_type = UDF_VTOP_TYPE_META;
   1926  1.45   reinoud 				n_meta++;
   1927  1.71   reinoud 				ump->node_part = log_part;
   1928  1.71   reinoud 				ump->fids_part = log_part;
   1929  1.45   reinoud 				break;
   1930  1.45   reinoud 			}
   1931  1.45   reinoud 			break;
   1932  1.45   reinoud 		default:
   1933  1.45   reinoud 			return EINVAL;
   1934  1.45   reinoud 		}
   1935  1.45   reinoud 
   1936  1.45   reinoud 		/*
   1937  1.45   reinoud 		 * BUGALERT: some rogue implementations use random physical
   1938  1.45   reinoud 		 * partion numbers to break other implementations so lookup
   1939  1.45   reinoud 		 * the number.
   1940  1.45   reinoud 		 */
   1941  1.45   reinoud 		for (phys_part = 0; phys_part < UDF_PARTITIONS; phys_part++) {
   1942  1.45   reinoud 			part = ump->partitions[phys_part];
   1943  1.45   reinoud 			if (part == NULL)
   1944  1.45   reinoud 				continue;
   1945  1.45   reinoud 			if (udf_rw16(part->part_num) == raw_phys_part)
   1946  1.45   reinoud 				break;
   1947  1.45   reinoud 		}
   1948  1.45   reinoud 
   1949  1.45   reinoud 		DPRINTF(VOLUMES, ("\t%d -> %d(%d) type %d\n", log_part,
   1950  1.45   reinoud 		    raw_phys_part, phys_part, pmap_type));
   1951  1.45   reinoud 
   1952  1.45   reinoud 		if (phys_part == UDF_PARTITIONS)
   1953  1.45   reinoud 			return EINVAL;
   1954  1.45   reinoud 		if (pmap_type == UDF_VTOP_TYPE_UNKNOWN)
   1955  1.45   reinoud 			return EINVAL;
   1956  1.45   reinoud 
   1957  1.45   reinoud 		ump->vtop   [log_part] = phys_part;
   1958  1.45   reinoud 		ump->vtop_tp[log_part] = pmap_type;
   1959  1.45   reinoud 
   1960  1.45   reinoud 		pmap_pos += pmap_size;
   1961  1.45   reinoud 	}
   1962  1.45   reinoud 	/* not winning the beauty contest */
   1963  1.45   reinoud 	ump->vtop_tp[UDF_VTOP_RAWPART] = UDF_VTOP_TYPE_RAW;
   1964  1.45   reinoud 
   1965  1.45   reinoud 	/* test some basic UDF assertions/requirements */
   1966  1.45   reinoud 	if ((n_virt > 1) || (n_spar > 1) || (n_meta > 1))
   1967  1.45   reinoud 		return EINVAL;
   1968  1.45   reinoud 
   1969  1.45   reinoud 	if (n_virt) {
   1970  1.45   reinoud 		if ((n_phys == 0) || n_spar || n_meta)
   1971  1.45   reinoud 			return EINVAL;
   1972  1.45   reinoud 	}
   1973  1.45   reinoud 	if (n_spar + n_phys == 0)
   1974  1.45   reinoud 		return EINVAL;
   1975  1.45   reinoud 
   1976  1.71   reinoud 	/* select allocation type for each logical partition */
   1977  1.71   reinoud 	for (log_part = 0; log_part < n_pm; log_part++) {
   1978  1.71   reinoud 		maps_on = ump->vtop[log_part];
   1979  1.71   reinoud 		switch (ump->vtop_tp[log_part]) {
   1980  1.71   reinoud 		case UDF_VTOP_TYPE_PHYS :
   1981  1.71   reinoud 			assert(maps_on == log_part);
   1982  1.71   reinoud 			ump->vtop_alloc[log_part] = UDF_ALLOC_SPACEMAP;
   1983  1.71   reinoud 			break;
   1984  1.71   reinoud 		case UDF_VTOP_TYPE_VIRT :
   1985  1.71   reinoud 			ump->vtop_alloc[log_part] = UDF_ALLOC_VAT;
   1986  1.71   reinoud 			ump->vtop_alloc[maps_on]  = UDF_ALLOC_SEQUENTIAL;
   1987  1.71   reinoud 			break;
   1988  1.71   reinoud 		case UDF_VTOP_TYPE_SPARABLE :
   1989  1.71   reinoud 			assert(maps_on == log_part);
   1990  1.71   reinoud 			ump->vtop_alloc[log_part] = UDF_ALLOC_SPACEMAP;
   1991  1.71   reinoud 			break;
   1992  1.71   reinoud 		case UDF_VTOP_TYPE_META :
   1993  1.71   reinoud 			ump->vtop_alloc[log_part] = UDF_ALLOC_METABITMAP;
   1994  1.71   reinoud 			if (ump->discinfo.mmc_cur & MMC_CAP_PSEUDOOVERWRITE) {
   1995  1.71   reinoud 				/* special case for UDF 2.60 */
   1996  1.71   reinoud 				ump->vtop_alloc[log_part] = UDF_ALLOC_METASEQUENTIAL;
   1997  1.71   reinoud 				ump->vtop_alloc[maps_on]  = UDF_ALLOC_SEQUENTIAL;
   1998  1.71   reinoud 			}
   1999  1.71   reinoud 			break;
   2000  1.71   reinoud 		default:
   2001  1.71   reinoud 			panic("bad alloction type in udf's ump->vtop\n");
   2002  1.45   reinoud 		}
   2003  1.45   reinoud 	}
   2004  1.45   reinoud 
   2005  1.45   reinoud 	/* determine logical volume open/closure actions */
   2006  1.45   reinoud 	if (n_virt) {
   2007  1.45   reinoud 		ump->lvopen  = 0;
   2008  1.85   reinoud 		if (ump->discinfo.last_session_state == MMC_STATE_EMPTY)
   2009  1.45   reinoud 			ump->lvopen |= UDF_OPEN_SESSION ;
   2010  1.45   reinoud 		ump->lvclose = UDF_WRITE_VAT;
   2011  1.45   reinoud 		if (ump->mount_args.udfmflags & UDFMNT_CLOSESESSION)
   2012  1.45   reinoud 			ump->lvclose |= UDF_CLOSE_SESSION;
   2013  1.45   reinoud 	} else {
   2014  1.45   reinoud 		/* `normal' rewritable or non sequential media */
   2015  1.45   reinoud 		ump->lvopen  = UDF_WRITE_LVINT;
   2016  1.45   reinoud 		ump->lvclose = UDF_WRITE_LVINT;
   2017  1.45   reinoud 		if ((ump->discinfo.mmc_cur & MMC_CAP_REWRITABLE) == 0)
   2018  1.45   reinoud 			ump->lvopen  |= UDF_APPENDONLY_LVINT;
   2019  1.45   reinoud 	}
   2020  1.45   reinoud 
   2021  1.45   reinoud 	/*
   2022  1.45   reinoud 	 * Determine sheduler error behaviour. For virtual partions, update
   2023  1.45   reinoud 	 * the trackinfo; for sparable partitions replace a whole block on the
   2024  1.45   reinoud 	 * sparable table. Allways requeue.
   2025  1.45   reinoud 	 */
   2026  1.45   reinoud 	ump->lvreadwrite = 0;
   2027  1.45   reinoud 	if (n_virt)
   2028  1.45   reinoud 		ump->lvreadwrite = UDF_UPDATE_TRACKINFO;
   2029  1.45   reinoud 	if (n_spar)
   2030  1.45   reinoud 		ump->lvreadwrite = UDF_REMAP_BLOCK;
   2031  1.45   reinoud 
   2032  1.45   reinoud 	/*
   2033  1.45   reinoud 	 * Select our sheduler
   2034  1.45   reinoud 	 */
   2035  1.45   reinoud 	ump->strategy = &udf_strat_rmw;
   2036  1.45   reinoud 	if (n_virt || (ump->discinfo.mmc_cur & MMC_CAP_PSEUDOOVERWRITE))
   2037  1.45   reinoud 		ump->strategy = &udf_strat_sequential;
   2038  1.45   reinoud 	if ((ump->discinfo.mmc_class == MMC_CLASS_DISC) ||
   2039  1.45   reinoud 		(ump->discinfo.mmc_class == MMC_CLASS_UNKN))
   2040  1.45   reinoud 			ump->strategy = &udf_strat_direct;
   2041  1.45   reinoud 	if (n_spar)
   2042  1.45   reinoud 		ump->strategy = &udf_strat_rmw;
   2043  1.45   reinoud 
   2044  1.75   reinoud #if 0
   2045  1.75   reinoud 	/* read-only access won't benefit from the other shedulers */
   2046  1.75   reinoud 	if (ump->vfs_mountp->mnt_flag & MNT_RDONLY)
   2047  1.75   reinoud 		ump->strategy = &udf_strat_direct;
   2048  1.75   reinoud #endif
   2049  1.75   reinoud 
   2050  1.45   reinoud 	/* print results */
   2051  1.71   reinoud 	DPRINTF(VOLUMES, ("\tdata partition    %d\n", ump->data_part));
   2052  1.71   reinoud 	DPRINTF(VOLUMES, ("\t\talloc scheme %d\n", ump->vtop_alloc[ump->data_part]));
   2053  1.71   reinoud 	DPRINTF(VOLUMES, ("\tnode partition    %d\n", ump->node_part));
   2054  1.71   reinoud 	DPRINTF(VOLUMES, ("\t\talloc scheme %d\n", ump->vtop_alloc[ump->node_part]));
   2055  1.71   reinoud 	DPRINTF(VOLUMES, ("\tfids partition    %d\n", ump->fids_part));
   2056  1.71   reinoud 	DPRINTF(VOLUMES, ("\t\talloc scheme %d\n", ump->vtop_alloc[ump->fids_part]));
   2057  1.45   reinoud 
   2058  1.80  christos 	snprintb(bits, sizeof(bits), UDFLOGVOL_BITS, ump->lvopen);
   2059  1.45   reinoud 	DPRINTF(VOLUMES, ("\tactions on logvol open  %s\n", bits));
   2060  1.80  christos 	snprintb(bits, sizeof(bits), UDFLOGVOL_BITS, ump->lvclose);
   2061  1.45   reinoud 	DPRINTF(VOLUMES, ("\tactions on logvol close %s\n", bits));
   2062  1.80  christos 	snprintb(bits, sizeof(bits), UDFONERROR_BITS, ump->lvreadwrite);
   2063  1.45   reinoud 	DPRINTF(VOLUMES, ("\tactions on logvol errors %s\n", bits));
   2064  1.45   reinoud 
   2065  1.45   reinoud 	DPRINTF(VOLUMES, ("\tselected sheduler `%s`\n",
   2066  1.45   reinoud 		(ump->strategy == &udf_strat_direct) ? "Direct" :
   2067  1.45   reinoud 		(ump->strategy == &udf_strat_sequential) ? "Sequential" :
   2068  1.45   reinoud 		(ump->strategy == &udf_strat_rmw) ? "RMW" : "UNKNOWN!"));
   2069  1.45   reinoud 
   2070  1.45   reinoud 	/* signal its OK for now */
   2071  1.45   reinoud 	return 0;
   2072  1.45   reinoud }
   2073  1.45   reinoud 
   2074  1.45   reinoud /* --------------------------------------------------------------------- */
   2075  1.45   reinoud 
   2076  1.45   reinoud /*
   2077  1.45   reinoud  * Update logical volume name in all structures that keep a record of it. We
   2078  1.45   reinoud  * use memmove since each of them might be specified as a source.
   2079  1.45   reinoud  *
   2080  1.45   reinoud  * Note that it doesn't update the VAT structure!
   2081  1.45   reinoud  */
   2082  1.45   reinoud 
   2083  1.45   reinoud static void
   2084  1.45   reinoud udf_update_logvolname(struct udf_mount *ump, char *logvol_id)
   2085  1.45   reinoud {
   2086  1.45   reinoud 	struct logvol_desc     *lvd = NULL;
   2087  1.45   reinoud 	struct fileset_desc    *fsd = NULL;
   2088  1.45   reinoud 	struct udf_lv_info     *lvi = NULL;
   2089  1.45   reinoud 
   2090  1.45   reinoud 	DPRINTF(VOLUMES, ("Updating logical volume name\n"));
   2091  1.45   reinoud 	lvd = ump->logical_vol;
   2092  1.45   reinoud 	fsd = ump->fileset_desc;
   2093  1.45   reinoud 	if (ump->implementation)
   2094  1.45   reinoud 		lvi = &ump->implementation->_impl_use.lv_info;
   2095  1.45   reinoud 
   2096  1.45   reinoud 	/* logvol's id might be specified as origional so use memmove here */
   2097  1.45   reinoud 	memmove(lvd->logvol_id, logvol_id, 128);
   2098  1.45   reinoud 	if (fsd)
   2099  1.45   reinoud 		memmove(fsd->logvol_id, logvol_id, 128);
   2100  1.45   reinoud 	if (lvi)
   2101  1.45   reinoud 		memmove(lvi->logvol_id, logvol_id, 128);
   2102  1.45   reinoud }
   2103  1.45   reinoud 
   2104  1.45   reinoud /* --------------------------------------------------------------------- */
   2105  1.45   reinoud 
   2106  1.55   reinoud void
   2107  1.51   reinoud udf_inittag(struct udf_mount *ump, struct desc_tag *tag, int tagid,
   2108  1.51   reinoud 	uint32_t sector)
   2109  1.51   reinoud {
   2110  1.51   reinoud 	assert(ump->logical_vol);
   2111  1.51   reinoud 
   2112  1.51   reinoud 	tag->id 		= udf_rw16(tagid);
   2113  1.51   reinoud 	tag->descriptor_ver	= ump->logical_vol->tag.descriptor_ver;
   2114  1.51   reinoud 	tag->cksum		= 0;
   2115  1.51   reinoud 	tag->reserved		= 0;
   2116  1.51   reinoud 	tag->serial_num		= ump->logical_vol->tag.serial_num;
   2117  1.51   reinoud 	tag->tag_loc            = udf_rw32(sector);
   2118  1.51   reinoud }
   2119  1.51   reinoud 
   2120  1.51   reinoud 
   2121  1.51   reinoud uint64_t
   2122  1.51   reinoud udf_advance_uniqueid(struct udf_mount *ump)
   2123  1.51   reinoud {
   2124  1.51   reinoud 	uint64_t unique_id;
   2125  1.51   reinoud 
   2126  1.51   reinoud 	mutex_enter(&ump->logvol_mutex);
   2127  1.51   reinoud 	unique_id = udf_rw64(ump->logvol_integrity->lvint_next_unique_id);
   2128  1.51   reinoud 	if (unique_id < 0x10)
   2129  1.51   reinoud 		unique_id = 0x10;
   2130  1.51   reinoud 	ump->logvol_integrity->lvint_next_unique_id = udf_rw64(unique_id + 1);
   2131  1.51   reinoud 	mutex_exit(&ump->logvol_mutex);
   2132  1.51   reinoud 
   2133  1.51   reinoud 	return unique_id;
   2134  1.51   reinoud }
   2135  1.51   reinoud 
   2136  1.51   reinoud 
   2137  1.51   reinoud static void
   2138  1.51   reinoud udf_adjust_filecount(struct udf_node *udf_node, int sign)
   2139  1.51   reinoud {
   2140  1.51   reinoud 	struct udf_mount *ump = udf_node->ump;
   2141  1.51   reinoud 	uint32_t num_dirs, num_files;
   2142  1.51   reinoud 	int udf_file_type;
   2143  1.51   reinoud 
   2144  1.51   reinoud 	/* get file type */
   2145  1.51   reinoud 	if (udf_node->fe) {
   2146  1.51   reinoud 		udf_file_type = udf_node->fe->icbtag.file_type;
   2147  1.51   reinoud 	} else {
   2148  1.51   reinoud 		udf_file_type = udf_node->efe->icbtag.file_type;
   2149  1.51   reinoud 	}
   2150  1.51   reinoud 
   2151  1.51   reinoud 	/* adjust file count */
   2152  1.51   reinoud 	mutex_enter(&ump->allocate_mutex);
   2153  1.51   reinoud 	if (udf_file_type == UDF_ICB_FILETYPE_DIRECTORY) {
   2154  1.51   reinoud 		num_dirs = udf_rw32(ump->logvol_info->num_directories);
   2155  1.51   reinoud 		ump->logvol_info->num_directories =
   2156  1.51   reinoud 			udf_rw32((num_dirs + sign));
   2157  1.51   reinoud 	} else {
   2158  1.51   reinoud 		num_files = udf_rw32(ump->logvol_info->num_files);
   2159  1.51   reinoud 		ump->logvol_info->num_files =
   2160  1.51   reinoud 			udf_rw32((num_files + sign));
   2161  1.51   reinoud 	}
   2162  1.51   reinoud 	mutex_exit(&ump->allocate_mutex);
   2163  1.51   reinoud }
   2164  1.51   reinoud 
   2165  1.51   reinoud 
   2166  1.51   reinoud void
   2167  1.51   reinoud udf_osta_charset(struct charspec *charspec)
   2168  1.51   reinoud {
   2169  1.87    cegger 	memset(charspec, 0, sizeof(struct charspec));
   2170  1.51   reinoud 	charspec->type = 0;
   2171  1.51   reinoud 	strcpy((char *) charspec->inf, "OSTA Compressed Unicode");
   2172  1.51   reinoud }
   2173  1.51   reinoud 
   2174  1.51   reinoud 
   2175  1.51   reinoud /* first call udf_set_regid and then the suffix */
   2176  1.51   reinoud void
   2177  1.51   reinoud udf_set_regid(struct regid *regid, char const *name)
   2178  1.51   reinoud {
   2179  1.87    cegger 	memset(regid, 0, sizeof(struct regid));
   2180  1.51   reinoud 	regid->flags    = 0;		/* not dirty and not protected */
   2181  1.51   reinoud 	strcpy((char *) regid->id, name);
   2182  1.51   reinoud }
   2183  1.51   reinoud 
   2184  1.51   reinoud 
   2185  1.51   reinoud void
   2186  1.51   reinoud udf_add_domain_regid(struct udf_mount *ump, struct regid *regid)
   2187  1.51   reinoud {
   2188  1.51   reinoud 	uint16_t *ver;
   2189  1.51   reinoud 
   2190  1.51   reinoud 	ver  = (uint16_t *) regid->id_suffix;
   2191  1.51   reinoud 	*ver = ump->logvol_info->min_udf_readver;
   2192  1.51   reinoud }
   2193  1.51   reinoud 
   2194  1.51   reinoud 
   2195  1.51   reinoud void
   2196  1.51   reinoud udf_add_udf_regid(struct udf_mount *ump, struct regid *regid)
   2197  1.51   reinoud {
   2198  1.51   reinoud 	uint16_t *ver;
   2199  1.51   reinoud 
   2200  1.51   reinoud 	ver  = (uint16_t *) regid->id_suffix;
   2201  1.51   reinoud 	*ver = ump->logvol_info->min_udf_readver;
   2202  1.51   reinoud 
   2203  1.51   reinoud 	regid->id_suffix[2] = 4;	/* unix */
   2204  1.51   reinoud 	regid->id_suffix[3] = 8;	/* NetBSD */
   2205  1.51   reinoud }
   2206  1.51   reinoud 
   2207  1.51   reinoud 
   2208  1.51   reinoud void
   2209  1.51   reinoud udf_add_impl_regid(struct udf_mount *ump, struct regid *regid)
   2210  1.51   reinoud {
   2211  1.51   reinoud 	regid->id_suffix[0] = 4;	/* unix */
   2212  1.51   reinoud 	regid->id_suffix[1] = 8;	/* NetBSD */
   2213  1.51   reinoud }
   2214  1.51   reinoud 
   2215  1.51   reinoud 
   2216  1.51   reinoud void
   2217  1.51   reinoud udf_add_app_regid(struct udf_mount *ump, struct regid *regid)
   2218  1.51   reinoud {
   2219  1.51   reinoud 	regid->id_suffix[0] = APP_VERSION_MAIN;
   2220  1.51   reinoud 	regid->id_suffix[1] = APP_VERSION_SUB;
   2221  1.51   reinoud }
   2222  1.51   reinoud 
   2223  1.51   reinoud static int
   2224  1.51   reinoud udf_create_parentfid(struct udf_mount *ump, struct fileid_desc *fid,
   2225  1.51   reinoud 	struct long_ad *parent, uint64_t unique_id)
   2226  1.51   reinoud {
   2227  1.51   reinoud 	/* the size of an empty FID is 38 but needs to be a multiple of 4 */
   2228  1.51   reinoud 	int fidsize = 40;
   2229  1.51   reinoud 
   2230  1.51   reinoud 	udf_inittag(ump, &fid->tag, TAGID_FID, udf_rw32(parent->loc.lb_num));
   2231  1.51   reinoud 	fid->file_version_num = udf_rw16(1);	/* UDF 2.3.4.1 */
   2232  1.51   reinoud 	fid->file_char = UDF_FILE_CHAR_DIR | UDF_FILE_CHAR_PAR;
   2233  1.51   reinoud 	fid->icb = *parent;
   2234  1.51   reinoud 	fid->icb.longad_uniqueid = udf_rw32((uint32_t) unique_id);
   2235  1.88   reinoud 	fid->tag.desc_crc_len = udf_rw16(fidsize - UDF_DESC_TAG_LENGTH);
   2236  1.51   reinoud 	(void) udf_validate_tag_and_crc_sums((union dscrptr *) fid);
   2237  1.51   reinoud 
   2238  1.51   reinoud 	return fidsize;
   2239  1.51   reinoud }
   2240  1.51   reinoud 
   2241  1.51   reinoud /* --------------------------------------------------------------------- */
   2242  1.51   reinoud 
   2243  1.45   reinoud /*
   2244  1.51   reinoud  * Extended attribute support. UDF knows of 3 places for extended attributes:
   2245  1.45   reinoud  *
   2246  1.51   reinoud  * (a) inside the file's (e)fe in the length of the extended attribute area
   2247  1.51   reinoud  * before the allocation descriptors/filedata
   2248  1.45   reinoud  *
   2249  1.45   reinoud  * (b) in a file referenced by (e)fe->ext_attr_icb and
   2250  1.45   reinoud  *
   2251  1.45   reinoud  * (c) in the e(fe)'s associated stream directory that can hold various
   2252  1.45   reinoud  * sub-files. In the stream directory a few fixed named subfiles are reserved
   2253  1.45   reinoud  * for NT/Unix ACL's and OS/2 attributes.
   2254  1.45   reinoud  *
   2255  1.45   reinoud  * NOTE: Extended attributes are read randomly but allways written
   2256  1.45   reinoud  * *atomicaly*. For ACL's this interface is propably different but not known
   2257  1.45   reinoud  * to me yet.
   2258  1.51   reinoud  *
   2259  1.51   reinoud  * Order of extended attributes in a space :
   2260  1.51   reinoud  *   ECMA 167 EAs
   2261  1.51   reinoud  *   Non block aligned Implementation Use EAs
   2262  1.51   reinoud  *   Block aligned Implementation Use EAs
   2263  1.51   reinoud  *   Application Use EAs
   2264  1.45   reinoud  */
   2265  1.45   reinoud 
   2266  1.45   reinoud static int
   2267  1.45   reinoud udf_impl_extattr_check(struct impl_extattr_entry *implext)
   2268  1.45   reinoud {
   2269  1.45   reinoud 	uint16_t   *spos;
   2270  1.45   reinoud 
   2271  1.45   reinoud 	if (strncmp(implext->imp_id.id, "*UDF", 4) == 0) {
   2272  1.45   reinoud 		/* checksum valid? */
   2273  1.45   reinoud 		DPRINTF(EXTATTR, ("checking UDF impl. attr checksum\n"));
   2274  1.45   reinoud 		spos = (uint16_t *) implext->data;
   2275  1.45   reinoud 		if (udf_rw16(*spos) != udf_ea_cksum((uint8_t *) implext))
   2276  1.45   reinoud 			return EINVAL;
   2277  1.45   reinoud 	}
   2278  1.45   reinoud 	return 0;
   2279  1.45   reinoud }
   2280  1.45   reinoud 
   2281  1.45   reinoud static void
   2282  1.45   reinoud udf_calc_impl_extattr_checksum(struct impl_extattr_entry *implext)
   2283  1.45   reinoud {
   2284  1.45   reinoud 	uint16_t   *spos;
   2285  1.45   reinoud 
   2286  1.45   reinoud 	if (strncmp(implext->imp_id.id, "*UDF", 4) == 0) {
   2287  1.45   reinoud 		/* set checksum */
   2288  1.45   reinoud 		spos = (uint16_t *) implext->data;
   2289  1.45   reinoud 		*spos = udf_rw16(udf_ea_cksum((uint8_t *) implext));
   2290  1.45   reinoud 	}
   2291  1.45   reinoud }
   2292  1.45   reinoud 
   2293  1.45   reinoud 
   2294  1.45   reinoud int
   2295  1.45   reinoud udf_extattr_search_intern(struct udf_node *node,
   2296  1.45   reinoud 	uint32_t sattr, char const *sattrname,
   2297  1.45   reinoud 	uint32_t *offsetp, uint32_t *lengthp)
   2298  1.45   reinoud {
   2299  1.45   reinoud 	struct extattrhdr_desc    *eahdr;
   2300  1.45   reinoud 	struct extattr_entry      *attrhdr;
   2301  1.45   reinoud 	struct impl_extattr_entry *implext;
   2302  1.45   reinoud 	uint32_t    offset, a_l, sector_size;
   2303  1.45   reinoud 	 int32_t    l_ea;
   2304  1.45   reinoud 	uint8_t    *pos;
   2305  1.45   reinoud 	int         error;
   2306  1.45   reinoud 
   2307  1.45   reinoud 	/* get mountpoint */
   2308  1.45   reinoud 	sector_size = node->ump->discinfo.sector_size;
   2309  1.45   reinoud 
   2310  1.45   reinoud 	/* get information from fe/efe */
   2311  1.45   reinoud 	if (node->fe) {
   2312  1.45   reinoud 		l_ea  = udf_rw32(node->fe->l_ea);
   2313  1.45   reinoud 		eahdr = (struct extattrhdr_desc *) node->fe->data;
   2314  1.45   reinoud 	} else {
   2315  1.45   reinoud 		assert(node->efe);
   2316  1.45   reinoud 		l_ea  = udf_rw32(node->efe->l_ea);
   2317  1.45   reinoud 		eahdr = (struct extattrhdr_desc *) node->efe->data;
   2318  1.45   reinoud 	}
   2319  1.45   reinoud 
   2320  1.45   reinoud 	/* something recorded here? */
   2321  1.45   reinoud 	if (l_ea == 0)
   2322  1.45   reinoud 		return ENOENT;
   2323  1.45   reinoud 
   2324  1.45   reinoud 	/* check extended attribute tag; what to do if it fails? */
   2325  1.45   reinoud 	error = udf_check_tag(eahdr);
   2326  1.45   reinoud 	if (error)
   2327  1.45   reinoud 		return EINVAL;
   2328  1.45   reinoud 	if (udf_rw16(eahdr->tag.id) != TAGID_EXTATTR_HDR)
   2329  1.45   reinoud 		return EINVAL;
   2330  1.45   reinoud 	error = udf_check_tag_payload(eahdr, sizeof(struct extattrhdr_desc));
   2331  1.45   reinoud 	if (error)
   2332  1.45   reinoud 		return EINVAL;
   2333  1.45   reinoud 
   2334  1.45   reinoud 	DPRINTF(EXTATTR, ("Found %d bytes of extended attributes\n", l_ea));
   2335  1.45   reinoud 
   2336  1.45   reinoud 	/* looking for Ecma-167 attributes? */
   2337  1.45   reinoud 	offset = sizeof(struct extattrhdr_desc);
   2338  1.45   reinoud 
   2339  1.45   reinoud 	/* looking for either implemenation use or application use */
   2340  1.45   reinoud 	if (sattr == 2048) {				/* [4/48.10.8] */
   2341  1.45   reinoud 		offset = udf_rw32(eahdr->impl_attr_loc);
   2342  1.45   reinoud 		if (offset == UDF_IMPL_ATTR_LOC_NOT_PRESENT)
   2343  1.45   reinoud 			return ENOENT;
   2344  1.45   reinoud 	}
   2345  1.45   reinoud 	if (sattr == 65536) {				/* [4/48.10.9] */
   2346  1.45   reinoud 		offset = udf_rw32(eahdr->appl_attr_loc);
   2347  1.45   reinoud 		if (offset == UDF_APPL_ATTR_LOC_NOT_PRESENT)
   2348  1.45   reinoud 			return ENOENT;
   2349  1.45   reinoud 	}
   2350  1.45   reinoud 
   2351  1.45   reinoud 	/* paranoia check offset and l_ea */
   2352  1.45   reinoud 	if (l_ea + offset >= sector_size - sizeof(struct extattr_entry))
   2353  1.45   reinoud 		return EINVAL;
   2354  1.45   reinoud 
   2355  1.45   reinoud 	DPRINTF(EXTATTR, ("Starting at offset %d\n", offset));
   2356  1.45   reinoud 
   2357  1.45   reinoud 	/* find our extended attribute  */
   2358  1.45   reinoud 	l_ea -= offset;
   2359  1.45   reinoud 	pos = (uint8_t *) eahdr + offset;
   2360  1.45   reinoud 
   2361  1.45   reinoud 	while (l_ea >= sizeof(struct extattr_entry)) {
   2362  1.45   reinoud 		DPRINTF(EXTATTR, ("%d extended attr bytes left\n", l_ea));
   2363  1.45   reinoud 		attrhdr = (struct extattr_entry *) pos;
   2364  1.45   reinoud 		implext = (struct impl_extattr_entry *) pos;
   2365  1.45   reinoud 
   2366  1.45   reinoud 		/* get complete attribute length and check for roque values */
   2367  1.45   reinoud 		a_l = udf_rw32(attrhdr->a_l);
   2368  1.45   reinoud 		DPRINTF(EXTATTR, ("attribute %d:%d, len %d/%d\n",
   2369  1.45   reinoud 				udf_rw32(attrhdr->type),
   2370  1.45   reinoud 				attrhdr->subtype, a_l, l_ea));
   2371  1.45   reinoud 		if ((a_l == 0) || (a_l > l_ea))
   2372  1.45   reinoud 			return EINVAL;
   2373  1.45   reinoud 
   2374  1.45   reinoud 		if (attrhdr->type != sattr)
   2375  1.45   reinoud 			goto next_attribute;
   2376  1.45   reinoud 
   2377  1.45   reinoud 		/* we might have found it! */
   2378  1.45   reinoud 		if (attrhdr->type < 2048) {	/* Ecma-167 attribute */
   2379  1.45   reinoud 			*offsetp = offset;
   2380  1.45   reinoud 			*lengthp = a_l;
   2381  1.45   reinoud 			return 0;		/* success */
   2382  1.45   reinoud 		}
   2383  1.45   reinoud 
   2384  1.45   reinoud 		/*
   2385  1.45   reinoud 		 * Implementation use and application use extended attributes
   2386  1.45   reinoud 		 * have a name to identify. They share the same structure only
   2387  1.45   reinoud 		 * UDF implementation use extended attributes have a checksum
   2388  1.45   reinoud 		 * we need to check
   2389  1.45   reinoud 		 */
   2390  1.45   reinoud 
   2391  1.45   reinoud 		DPRINTF(EXTATTR, ("named attribute %s\n", implext->imp_id.id));
   2392  1.45   reinoud 		if (strcmp(implext->imp_id.id, sattrname) == 0) {
   2393  1.45   reinoud 			/* we have found our appl/implementation attribute */
   2394  1.45   reinoud 			*offsetp = offset;
   2395  1.45   reinoud 			*lengthp = a_l;
   2396  1.45   reinoud 			return 0;		/* success */
   2397  1.45   reinoud 		}
   2398  1.45   reinoud 
   2399  1.45   reinoud next_attribute:
   2400  1.45   reinoud 		/* next attribute */
   2401  1.45   reinoud 		pos    += a_l;
   2402  1.45   reinoud 		l_ea   -= a_l;
   2403  1.45   reinoud 		offset += a_l;
   2404  1.45   reinoud 	}
   2405  1.45   reinoud 	/* not found */
   2406  1.45   reinoud 	return ENOENT;
   2407  1.45   reinoud }
   2408  1.45   reinoud 
   2409  1.45   reinoud 
   2410  1.51   reinoud static void
   2411  1.51   reinoud udf_extattr_insert_internal(struct udf_mount *ump, union dscrptr *dscr,
   2412  1.51   reinoud 	struct extattr_entry *extattr)
   2413  1.51   reinoud {
   2414  1.51   reinoud 	struct file_entry      *fe;
   2415  1.51   reinoud 	struct extfile_entry   *efe;
   2416  1.51   reinoud 	struct extattrhdr_desc *extattrhdr;
   2417  1.51   reinoud 	struct impl_extattr_entry *implext;
   2418  1.51   reinoud 	uint32_t impl_attr_loc, appl_attr_loc, l_ea, a_l, exthdr_len;
   2419  1.51   reinoud 	uint32_t *l_eap, l_ad;
   2420  1.51   reinoud 	uint16_t *spos;
   2421  1.51   reinoud 	uint8_t *bpos, *data;
   2422  1.51   reinoud 
   2423  1.51   reinoud 	if (udf_rw16(dscr->tag.id) == TAGID_FENTRY) {
   2424  1.51   reinoud 		fe    = &dscr->fe;
   2425  1.51   reinoud 		data  = fe->data;
   2426  1.51   reinoud 		l_eap = &fe->l_ea;
   2427  1.51   reinoud 		l_ad  = udf_rw32(fe->l_ad);
   2428  1.51   reinoud 	} else if (udf_rw16(dscr->tag.id) == TAGID_EXTFENTRY) {
   2429  1.51   reinoud 		efe   = &dscr->efe;
   2430  1.51   reinoud 		data  = efe->data;
   2431  1.51   reinoud 		l_eap = &efe->l_ea;
   2432  1.51   reinoud 		l_ad  = udf_rw32(efe->l_ad);
   2433  1.51   reinoud 	} else {
   2434  1.51   reinoud 		panic("Bad tag passed to udf_extattr_insert_internal");
   2435  1.51   reinoud 	}
   2436  1.51   reinoud 
   2437  1.51   reinoud 	/* can't append already written to file descriptors yet */
   2438  1.51   reinoud 	assert(l_ad == 0);
   2439  1.51   reinoud 
   2440  1.51   reinoud 	/* should have a header! */
   2441  1.51   reinoud 	extattrhdr = (struct extattrhdr_desc *) data;
   2442  1.51   reinoud 	l_ea = udf_rw32(*l_eap);
   2443  1.51   reinoud 	if (l_ea == 0) {
   2444  1.51   reinoud 		/* create empty extended attribute header */
   2445  1.51   reinoud 		exthdr_len = sizeof(struct extattrhdr_desc);
   2446  1.51   reinoud 
   2447  1.51   reinoud 		udf_inittag(ump, &extattrhdr->tag, TAGID_EXTATTR_HDR,
   2448  1.51   reinoud 			/* loc */ 0);
   2449  1.51   reinoud 		extattrhdr->impl_attr_loc = udf_rw32(exthdr_len);
   2450  1.51   reinoud 		extattrhdr->appl_attr_loc = udf_rw32(exthdr_len);
   2451  1.51   reinoud 		extattrhdr->tag.desc_crc_len = udf_rw16(8);
   2452  1.51   reinoud 
   2453  1.51   reinoud 		/* record extended attribute header length */
   2454  1.51   reinoud 		l_ea = exthdr_len;
   2455  1.51   reinoud 		*l_eap = udf_rw32(l_ea);
   2456  1.51   reinoud 	}
   2457  1.51   reinoud 
   2458  1.51   reinoud 	/* extract locations */
   2459  1.51   reinoud 	impl_attr_loc = udf_rw32(extattrhdr->impl_attr_loc);
   2460  1.51   reinoud 	appl_attr_loc = udf_rw32(extattrhdr->appl_attr_loc);
   2461  1.51   reinoud 	if (impl_attr_loc == UDF_IMPL_ATTR_LOC_NOT_PRESENT)
   2462  1.51   reinoud 		impl_attr_loc = l_ea;
   2463  1.51   reinoud 	if (appl_attr_loc == UDF_IMPL_ATTR_LOC_NOT_PRESENT)
   2464  1.51   reinoud 		appl_attr_loc = l_ea;
   2465  1.51   reinoud 
   2466  1.51   reinoud 	/* Ecma 167 EAs */
   2467  1.51   reinoud 	if (udf_rw32(extattr->type) < 2048) {
   2468  1.51   reinoud 		assert(impl_attr_loc == l_ea);
   2469  1.51   reinoud 		assert(appl_attr_loc == l_ea);
   2470  1.51   reinoud 	}
   2471  1.51   reinoud 
   2472  1.51   reinoud 	/* implementation use extended attributes */
   2473  1.51   reinoud 	if (udf_rw32(extattr->type) == 2048) {
   2474  1.51   reinoud 		assert(appl_attr_loc == l_ea);
   2475  1.51   reinoud 
   2476  1.51   reinoud 		/* calculate and write extended attribute header checksum */
   2477  1.51   reinoud 		implext = (struct impl_extattr_entry *) extattr;
   2478  1.51   reinoud 		assert(udf_rw32(implext->iu_l) == 4);	/* [UDF 3.3.4.5] */
   2479  1.51   reinoud 		spos = (uint16_t *) implext->data;
   2480  1.51   reinoud 		*spos = udf_rw16(udf_ea_cksum((uint8_t *) implext));
   2481  1.51   reinoud 	}
   2482  1.51   reinoud 
   2483  1.51   reinoud 	/* application use extended attributes */
   2484  1.51   reinoud 	assert(udf_rw32(extattr->type) != 65536);
   2485  1.51   reinoud 	assert(appl_attr_loc == l_ea);
   2486  1.51   reinoud 
   2487  1.51   reinoud 	/* append the attribute at the end of the current space */
   2488  1.51   reinoud 	bpos = data + udf_rw32(*l_eap);
   2489  1.51   reinoud 	a_l  = udf_rw32(extattr->a_l);
   2490  1.51   reinoud 
   2491  1.51   reinoud 	/* update impl. attribute locations */
   2492  1.51   reinoud 	if (udf_rw32(extattr->type) < 2048) {
   2493  1.51   reinoud 		impl_attr_loc = l_ea + a_l;
   2494  1.51   reinoud 		appl_attr_loc = l_ea + a_l;
   2495  1.51   reinoud 	}
   2496  1.51   reinoud 	if (udf_rw32(extattr->type) == 2048) {
   2497  1.51   reinoud 		appl_attr_loc = l_ea + a_l;
   2498  1.51   reinoud 	}
   2499  1.51   reinoud 
   2500  1.51   reinoud 	/* copy and advance */
   2501  1.51   reinoud 	memcpy(bpos, extattr, a_l);
   2502  1.51   reinoud 	l_ea += a_l;
   2503  1.51   reinoud 	*l_eap = udf_rw32(l_ea);
   2504  1.51   reinoud 
   2505  1.51   reinoud 	/* do the `dance` again backwards */
   2506  1.51   reinoud 	if (udf_rw16(ump->logical_vol->tag.descriptor_ver) != 2) {
   2507  1.51   reinoud 		if (impl_attr_loc == l_ea)
   2508  1.51   reinoud 			impl_attr_loc = UDF_IMPL_ATTR_LOC_NOT_PRESENT;
   2509  1.51   reinoud 		if (appl_attr_loc == l_ea)
   2510  1.51   reinoud 			appl_attr_loc = UDF_APPL_ATTR_LOC_NOT_PRESENT;
   2511  1.51   reinoud 	}
   2512  1.51   reinoud 
   2513  1.51   reinoud 	/* store offsets */
   2514  1.51   reinoud 	extattrhdr->impl_attr_loc = udf_rw32(impl_attr_loc);
   2515  1.51   reinoud 	extattrhdr->appl_attr_loc = udf_rw32(appl_attr_loc);
   2516  1.51   reinoud }
   2517  1.51   reinoud 
   2518  1.45   reinoud 
   2519  1.45   reinoud /* --------------------------------------------------------------------- */
   2520  1.45   reinoud 
   2521  1.45   reinoud static int
   2522  1.45   reinoud udf_update_lvid_from_vat_extattr(struct udf_node *vat_node)
   2523  1.45   reinoud {
   2524  1.45   reinoud 	struct udf_mount       *ump;
   2525  1.45   reinoud 	struct udf_logvol_info *lvinfo;
   2526  1.45   reinoud 	struct impl_extattr_entry     *implext;
   2527  1.45   reinoud 	struct vatlvext_extattr_entry  lvext;
   2528  1.45   reinoud 	const char *extstr = "*UDF VAT LVExtension";
   2529  1.45   reinoud 	uint64_t    vat_uniqueid;
   2530  1.45   reinoud 	uint32_t    offset, a_l;
   2531  1.45   reinoud 	uint8_t    *ea_start, *lvextpos;
   2532  1.45   reinoud 	int         error;
   2533  1.45   reinoud 
   2534  1.45   reinoud 	/* get mountpoint and lvinfo */
   2535  1.45   reinoud 	ump    = vat_node->ump;
   2536  1.45   reinoud 	lvinfo = ump->logvol_info;
   2537  1.45   reinoud 
   2538  1.45   reinoud 	/* get information from fe/efe */
   2539  1.45   reinoud 	if (vat_node->fe) {
   2540  1.45   reinoud 		vat_uniqueid = udf_rw64(vat_node->fe->unique_id);
   2541  1.45   reinoud 		ea_start     = vat_node->fe->data;
   2542  1.45   reinoud 	} else {
   2543  1.45   reinoud 		vat_uniqueid = udf_rw64(vat_node->efe->unique_id);
   2544  1.45   reinoud 		ea_start     = vat_node->efe->data;
   2545  1.45   reinoud 	}
   2546  1.45   reinoud 
   2547  1.45   reinoud 	error = udf_extattr_search_intern(vat_node, 2048, extstr, &offset, &a_l);
   2548  1.45   reinoud 	if (error)
   2549  1.45   reinoud 		return error;
   2550  1.45   reinoud 
   2551  1.45   reinoud 	implext = (struct impl_extattr_entry *) (ea_start + offset);
   2552  1.45   reinoud 	error = udf_impl_extattr_check(implext);
   2553  1.45   reinoud 	if (error)
   2554  1.45   reinoud 		return error;
   2555  1.45   reinoud 
   2556  1.45   reinoud 	/* paranoia */
   2557  1.45   reinoud 	if (a_l != sizeof(*implext) -1 + udf_rw32(implext->iu_l) + sizeof(lvext)) {
   2558  1.45   reinoud 		DPRINTF(VOLUMES, ("VAT LVExtension size doesn't compute\n"));
   2559  1.45   reinoud 		return EINVAL;
   2560  1.45   reinoud 	}
   2561  1.45   reinoud 
   2562  1.45   reinoud 	/*
   2563  1.45   reinoud 	 * we have found our "VAT LVExtension attribute. BUT due to a
   2564  1.45   reinoud 	 * bug in the specification it might not be word aligned so
   2565  1.45   reinoud 	 * copy first to avoid panics on some machines (!!)
   2566  1.45   reinoud 	 */
   2567  1.45   reinoud 	DPRINTF(VOLUMES, ("Found VAT LVExtension attr\n"));
   2568  1.45   reinoud 	lvextpos = implext->data + udf_rw32(implext->iu_l);
   2569  1.45   reinoud 	memcpy(&lvext, lvextpos, sizeof(lvext));
   2570  1.45   reinoud 
   2571  1.45   reinoud 	/* check if it was updated the last time */
   2572  1.45   reinoud 	if (udf_rw64(lvext.unique_id_chk) == vat_uniqueid) {
   2573  1.45   reinoud 		lvinfo->num_files       = lvext.num_files;
   2574  1.45   reinoud 		lvinfo->num_directories = lvext.num_directories;
   2575  1.45   reinoud 		udf_update_logvolname(ump, lvext.logvol_id);
   2576  1.45   reinoud 	} else {
   2577  1.45   reinoud 		DPRINTF(VOLUMES, ("VAT LVExtension out of date\n"));
   2578  1.45   reinoud 		/* replace VAT LVExt by free space EA */
   2579  1.45   reinoud 		memset(implext->imp_id.id, 0, UDF_REGID_ID_SIZE);
   2580  1.45   reinoud 		strcpy(implext->imp_id.id, "*UDF FreeEASpace");
   2581  1.45   reinoud 		udf_calc_impl_extattr_checksum(implext);
   2582  1.45   reinoud 	}
   2583  1.45   reinoud 
   2584  1.45   reinoud 	return 0;
   2585  1.45   reinoud }
   2586  1.45   reinoud 
   2587  1.45   reinoud 
   2588  1.45   reinoud static int
   2589  1.45   reinoud udf_update_vat_extattr_from_lvid(struct udf_node *vat_node)
   2590  1.45   reinoud {
   2591  1.45   reinoud 	struct udf_mount       *ump;
   2592  1.45   reinoud 	struct udf_logvol_info *lvinfo;
   2593  1.45   reinoud 	struct impl_extattr_entry     *implext;
   2594  1.45   reinoud 	struct vatlvext_extattr_entry  lvext;
   2595  1.45   reinoud 	const char *extstr = "*UDF VAT LVExtension";
   2596  1.45   reinoud 	uint64_t    vat_uniqueid;
   2597  1.45   reinoud 	uint32_t    offset, a_l;
   2598  1.45   reinoud 	uint8_t    *ea_start, *lvextpos;
   2599  1.45   reinoud 	int         error;
   2600  1.45   reinoud 
   2601  1.45   reinoud 	/* get mountpoint and lvinfo */
   2602  1.45   reinoud 	ump    = vat_node->ump;
   2603  1.45   reinoud 	lvinfo = ump->logvol_info;
   2604  1.45   reinoud 
   2605  1.45   reinoud 	/* get information from fe/efe */
   2606  1.45   reinoud 	if (vat_node->fe) {
   2607  1.45   reinoud 		vat_uniqueid = udf_rw64(vat_node->fe->unique_id);
   2608  1.45   reinoud 		ea_start     = vat_node->fe->data;
   2609  1.45   reinoud 	} else {
   2610  1.45   reinoud 		vat_uniqueid = udf_rw64(vat_node->efe->unique_id);
   2611  1.45   reinoud 		ea_start     = vat_node->efe->data;
   2612  1.45   reinoud 	}
   2613  1.45   reinoud 
   2614  1.45   reinoud 	error = udf_extattr_search_intern(vat_node, 2048, extstr, &offset, &a_l);
   2615  1.45   reinoud 	if (error)
   2616  1.45   reinoud 		return error;
   2617  1.45   reinoud 	/* found, it existed */
   2618  1.45   reinoud 
   2619  1.45   reinoud 	/* paranoia */
   2620  1.45   reinoud 	implext = (struct impl_extattr_entry *) (ea_start + offset);
   2621  1.45   reinoud 	error = udf_impl_extattr_check(implext);
   2622  1.45   reinoud 	if (error) {
   2623  1.45   reinoud 		DPRINTF(VOLUMES, ("VAT LVExtension bad on update\n"));
   2624  1.45   reinoud 		return error;
   2625  1.45   reinoud 	}
   2626  1.45   reinoud 	/* it is correct */
   2627  1.45   reinoud 
   2628  1.45   reinoud 	/*
   2629  1.45   reinoud 	 * we have found our "VAT LVExtension attribute. BUT due to a
   2630  1.45   reinoud 	 * bug in the specification it might not be word aligned so
   2631  1.45   reinoud 	 * copy first to avoid panics on some machines (!!)
   2632  1.45   reinoud 	 */
   2633  1.45   reinoud 	DPRINTF(VOLUMES, ("Updating VAT LVExtension attr\n"));
   2634  1.45   reinoud 	lvextpos = implext->data + udf_rw32(implext->iu_l);
   2635  1.45   reinoud 
   2636  1.45   reinoud 	lvext.unique_id_chk   = vat_uniqueid;
   2637  1.45   reinoud 	lvext.num_files       = lvinfo->num_files;
   2638  1.45   reinoud 	lvext.num_directories = lvinfo->num_directories;
   2639  1.45   reinoud 	memmove(lvext.logvol_id, ump->logical_vol->logvol_id, 128);
   2640  1.45   reinoud 
   2641  1.45   reinoud 	memcpy(lvextpos, &lvext, sizeof(lvext));
   2642  1.45   reinoud 
   2643  1.45   reinoud 	return 0;
   2644  1.45   reinoud }
   2645  1.45   reinoud 
   2646  1.45   reinoud /* --------------------------------------------------------------------- */
   2647  1.45   reinoud 
   2648  1.45   reinoud int
   2649  1.45   reinoud udf_vat_read(struct udf_node *vat_node, uint8_t *blob, int size, uint32_t offset)
   2650  1.45   reinoud {
   2651  1.45   reinoud 	struct udf_mount *ump = vat_node->ump;
   2652  1.45   reinoud 
   2653  1.45   reinoud 	if (offset + size > ump->vat_offset + ump->vat_entries * 4)
   2654  1.45   reinoud 		return EINVAL;
   2655  1.45   reinoud 
   2656  1.45   reinoud 	memcpy(blob, ump->vat_table + offset, size);
   2657  1.45   reinoud 	return 0;
   2658  1.45   reinoud }
   2659  1.45   reinoud 
   2660  1.45   reinoud int
   2661  1.45   reinoud udf_vat_write(struct udf_node *vat_node, uint8_t *blob, int size, uint32_t offset)
   2662  1.45   reinoud {
   2663  1.45   reinoud 	struct udf_mount *ump = vat_node->ump;
   2664  1.45   reinoud 	uint32_t offset_high;
   2665  1.45   reinoud 	uint8_t *new_vat_table;
   2666  1.45   reinoud 
   2667  1.45   reinoud 	/* extent VAT allocation if needed */
   2668  1.45   reinoud 	offset_high = offset + size;
   2669  1.45   reinoud 	if (offset_high >= ump->vat_table_alloc_len) {
   2670  1.45   reinoud 		/* realloc */
   2671  1.45   reinoud 		new_vat_table = realloc(ump->vat_table,
   2672  1.45   reinoud 			ump->vat_table_alloc_len + UDF_VAT_CHUNKSIZE,
   2673  1.45   reinoud 			M_UDFVOLD, M_WAITOK | M_CANFAIL);
   2674  1.45   reinoud 		if (!new_vat_table) {
   2675  1.45   reinoud 			printf("udf_vat_write: can't extent VAT, out of mem\n");
   2676  1.45   reinoud 			return ENOMEM;
   2677  1.45   reinoud 		}
   2678  1.45   reinoud 		ump->vat_table = new_vat_table;
   2679  1.45   reinoud 		ump->vat_table_alloc_len += UDF_VAT_CHUNKSIZE;
   2680  1.45   reinoud 	}
   2681  1.45   reinoud 	ump->vat_table_len = MAX(ump->vat_table_len, offset_high);
   2682  1.45   reinoud 
   2683  1.45   reinoud 	memcpy(ump->vat_table + offset, blob, size);
   2684  1.45   reinoud 	return 0;
   2685  1.45   reinoud }
   2686  1.45   reinoud 
   2687  1.45   reinoud /* --------------------------------------------------------------------- */
   2688  1.45   reinoud 
   2689  1.45   reinoud /* TODO support previous VAT location writeout */
   2690  1.45   reinoud static int
   2691  1.45   reinoud udf_update_vat_descriptor(struct udf_mount *ump)
   2692  1.45   reinoud {
   2693  1.45   reinoud 	struct udf_node *vat_node = ump->vat_node;
   2694  1.45   reinoud 	struct udf_logvol_info *lvinfo = ump->logvol_info;
   2695  1.45   reinoud 	struct icb_tag *icbtag;
   2696  1.45   reinoud 	struct udf_oldvat_tail *oldvat_tl;
   2697  1.45   reinoud 	struct udf_vat *vat;
   2698  1.45   reinoud 	uint64_t unique_id;
   2699  1.45   reinoud 	uint32_t lb_size;
   2700  1.45   reinoud 	uint8_t *raw_vat;
   2701  1.45   reinoud 	int filetype, error;
   2702  1.45   reinoud 
   2703  1.45   reinoud 	KASSERT(vat_node);
   2704  1.45   reinoud 	KASSERT(lvinfo);
   2705  1.45   reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   2706  1.45   reinoud 
   2707  1.45   reinoud 	/* get our new unique_id */
   2708  1.45   reinoud 	unique_id = udf_advance_uniqueid(ump);
   2709  1.45   reinoud 
   2710  1.45   reinoud 	/* get information from fe/efe */
   2711  1.45   reinoud 	if (vat_node->fe) {
   2712  1.45   reinoud 		icbtag    = &vat_node->fe->icbtag;
   2713  1.45   reinoud 		vat_node->fe->unique_id = udf_rw64(unique_id);
   2714  1.45   reinoud 	} else {
   2715  1.45   reinoud 		icbtag = &vat_node->efe->icbtag;
   2716  1.45   reinoud 		vat_node->efe->unique_id = udf_rw64(unique_id);
   2717  1.45   reinoud 	}
   2718  1.45   reinoud 
   2719  1.45   reinoud 	/* Check icb filetype! it has to be 0 or UDF_ICB_FILETYPE_VAT */
   2720  1.45   reinoud 	filetype = icbtag->file_type;
   2721  1.45   reinoud 	KASSERT((filetype == 0) || (filetype == UDF_ICB_FILETYPE_VAT));
   2722  1.45   reinoud 
   2723  1.45   reinoud 	/* allocate piece to process head or tail of VAT file */
   2724  1.45   reinoud 	raw_vat = malloc(lb_size, M_TEMP, M_WAITOK);
   2725  1.45   reinoud 
   2726  1.45   reinoud 	if (filetype == 0) {
   2727  1.45   reinoud 		/*
   2728  1.45   reinoud 		 * Update "*UDF VAT LVExtension" extended attribute from the
   2729  1.45   reinoud 		 * lvint if present.
   2730  1.45   reinoud 		 */
   2731  1.45   reinoud 		udf_update_vat_extattr_from_lvid(vat_node);
   2732  1.45   reinoud 
   2733  1.45   reinoud 		/* setup identifying regid */
   2734  1.45   reinoud 		oldvat_tl = (struct udf_oldvat_tail *) raw_vat;
   2735  1.45   reinoud 		memset(oldvat_tl, 0, sizeof(struct udf_oldvat_tail));
   2736  1.45   reinoud 
   2737  1.45   reinoud 		udf_set_regid(&oldvat_tl->id, "*UDF Virtual Alloc Tbl");
   2738  1.45   reinoud 		udf_add_udf_regid(ump, &oldvat_tl->id);
   2739  1.45   reinoud 		oldvat_tl->prev_vat = udf_rw32(0xffffffff);
   2740  1.45   reinoud 
   2741  1.45   reinoud 		/* write out new tail of virtual allocation table file */
   2742  1.45   reinoud 		error = udf_vat_write(vat_node, raw_vat,
   2743  1.45   reinoud 			sizeof(struct udf_oldvat_tail), ump->vat_entries * 4);
   2744  1.45   reinoud 	} else {
   2745  1.45   reinoud 		/* compose the VAT2 header */
   2746  1.45   reinoud 		vat = (struct udf_vat *) raw_vat;
   2747  1.45   reinoud 		memset(vat, 0, sizeof(struct udf_vat));
   2748  1.45   reinoud 
   2749  1.45   reinoud 		vat->header_len       = udf_rw16(152);	/* as per spec */
   2750  1.45   reinoud 		vat->impl_use_len     = udf_rw16(0);
   2751  1.45   reinoud 		memmove(vat->logvol_id, ump->logical_vol->logvol_id, 128);
   2752  1.45   reinoud 		vat->prev_vat         = udf_rw32(0xffffffff);
   2753  1.45   reinoud 		vat->num_files        = lvinfo->num_files;
   2754  1.45   reinoud 		vat->num_directories  = lvinfo->num_directories;
   2755  1.45   reinoud 		vat->min_udf_readver  = lvinfo->min_udf_readver;
   2756  1.45   reinoud 		vat->min_udf_writever = lvinfo->min_udf_writever;
   2757  1.45   reinoud 		vat->max_udf_writever = lvinfo->max_udf_writever;
   2758  1.45   reinoud 
   2759  1.45   reinoud 		error = udf_vat_write(vat_node, raw_vat,
   2760  1.45   reinoud 			sizeof(struct udf_vat), 0);
   2761  1.45   reinoud 	}
   2762  1.45   reinoud 	free(raw_vat, M_TEMP);
   2763  1.45   reinoud 
   2764  1.45   reinoud 	return error;	/* success! */
   2765  1.45   reinoud }
   2766  1.45   reinoud 
   2767  1.45   reinoud 
   2768  1.45   reinoud int
   2769  1.45   reinoud udf_writeout_vat(struct udf_mount *ump)
   2770  1.45   reinoud {
   2771  1.45   reinoud 	struct udf_node *vat_node = ump->vat_node;
   2772  1.45   reinoud 	uint32_t vat_length;
   2773  1.45   reinoud 	int error;
   2774  1.45   reinoud 
   2775  1.45   reinoud 	KASSERT(vat_node);
   2776  1.45   reinoud 
   2777  1.45   reinoud 	DPRINTF(CALL, ("udf_writeout_vat\n"));
   2778  1.45   reinoud 
   2779  1.45   reinoud 	mutex_enter(&ump->allocate_mutex);
   2780  1.45   reinoud 	udf_update_vat_descriptor(ump);
   2781  1.45   reinoud 
   2782  1.45   reinoud 	/* write out the VAT contents ; TODO intelligent writing */
   2783  1.45   reinoud 	vat_length = ump->vat_table_len;
   2784  1.45   reinoud 	error = vn_rdwr(UIO_WRITE, vat_node->vnode,
   2785  1.45   reinoud 		ump->vat_table, ump->vat_table_len, 0,
   2786  1.45   reinoud 		UIO_SYSSPACE, IO_NODELOCKED, FSCRED, NULL, NULL);
   2787  1.45   reinoud 	if (error) {
   2788  1.45   reinoud 		printf("udf_writeout_vat: failed to write out VAT contents\n");
   2789  1.45   reinoud 		goto out;
   2790  1.45   reinoud 	}
   2791  1.45   reinoud 
   2792  1.45   reinoud 	mutex_exit(&ump->allocate_mutex);
   2793  1.45   reinoud 
   2794  1.45   reinoud 	vflushbuf(ump->vat_node->vnode, 1 /* sync */);
   2795  1.45   reinoud 	error = VOP_FSYNC(ump->vat_node->vnode,
   2796  1.45   reinoud 			FSCRED, FSYNC_WAIT, 0, 0);
   2797  1.45   reinoud 	if (error)
   2798  1.45   reinoud 		printf("udf_writeout_vat: error writing VAT node!\n");
   2799  1.45   reinoud out:
   2800  1.45   reinoud 
   2801  1.45   reinoud 	return error;
   2802  1.45   reinoud }
   2803  1.45   reinoud 
   2804  1.45   reinoud /* --------------------------------------------------------------------- */
   2805  1.45   reinoud 
   2806  1.45   reinoud /*
   2807  1.45   reinoud  * Read in relevant pieces of VAT file and check if its indeed a VAT file
   2808  1.45   reinoud  * descriptor. If OK, read in complete VAT file.
   2809  1.45   reinoud  */
   2810  1.45   reinoud 
   2811  1.45   reinoud static int
   2812  1.45   reinoud udf_check_for_vat(struct udf_node *vat_node)
   2813  1.45   reinoud {
   2814  1.45   reinoud 	struct udf_mount *ump;
   2815  1.45   reinoud 	struct icb_tag   *icbtag;
   2816  1.45   reinoud 	struct timestamp *mtime;
   2817  1.45   reinoud 	struct udf_vat   *vat;
   2818  1.45   reinoud 	struct udf_oldvat_tail *oldvat_tl;
   2819  1.45   reinoud 	struct udf_logvol_info *lvinfo;
   2820  1.45   reinoud 	uint64_t  unique_id;
   2821  1.45   reinoud 	uint32_t  vat_length;
   2822  1.45   reinoud 	uint32_t  vat_offset, vat_entries, vat_table_alloc_len;
   2823  1.45   reinoud 	uint32_t  sector_size;
   2824  1.45   reinoud 	uint32_t *raw_vat;
   2825  1.45   reinoud 	uint8_t  *vat_table;
   2826  1.45   reinoud 	char     *regid_name;
   2827  1.45   reinoud 	int filetype;
   2828  1.45   reinoud 	int error;
   2829  1.45   reinoud 
   2830  1.45   reinoud 	/* vat_length is really 64 bits though impossible */
   2831  1.45   reinoud 
   2832  1.45   reinoud 	DPRINTF(VOLUMES, ("Checking for VAT\n"));
   2833  1.45   reinoud 	if (!vat_node)
   2834  1.45   reinoud 		return ENOENT;
   2835  1.45   reinoud 
   2836  1.45   reinoud 	/* get mount info */
   2837  1.45   reinoud 	ump = vat_node->ump;
   2838  1.45   reinoud 	sector_size = udf_rw32(ump->logical_vol->lb_size);
   2839  1.45   reinoud 
   2840  1.45   reinoud 	/* check assertions */
   2841  1.45   reinoud 	assert(vat_node->fe || vat_node->efe);
   2842  1.45   reinoud 	assert(ump->logvol_integrity);
   2843  1.45   reinoud 
   2844  1.45   reinoud 	/* set vnode type to regular file or we can't read from it! */
   2845  1.45   reinoud 	vat_node->vnode->v_type = VREG;
   2846  1.45   reinoud 
   2847  1.45   reinoud 	/* get information from fe/efe */
   2848  1.45   reinoud 	if (vat_node->fe) {
   2849  1.45   reinoud 		vat_length = udf_rw64(vat_node->fe->inf_len);
   2850  1.45   reinoud 		icbtag    = &vat_node->fe->icbtag;
   2851  1.45   reinoud 		mtime     = &vat_node->fe->mtime;
   2852  1.45   reinoud 		unique_id = udf_rw64(vat_node->fe->unique_id);
   2853  1.45   reinoud 	} else {
   2854  1.45   reinoud 		vat_length = udf_rw64(vat_node->efe->inf_len);
   2855  1.45   reinoud 		icbtag = &vat_node->efe->icbtag;
   2856  1.45   reinoud 		mtime  = &vat_node->efe->mtime;
   2857  1.45   reinoud 		unique_id = udf_rw64(vat_node->efe->unique_id);
   2858  1.45   reinoud 	}
   2859  1.45   reinoud 
   2860  1.45   reinoud 	/* Check icb filetype! it has to be 0 or UDF_ICB_FILETYPE_VAT */
   2861  1.45   reinoud 	filetype = icbtag->file_type;
   2862  1.45   reinoud 	if ((filetype != 0) && (filetype != UDF_ICB_FILETYPE_VAT))
   2863  1.45   reinoud 		return ENOENT;
   2864  1.45   reinoud 
   2865  1.45   reinoud 	DPRINTF(VOLUMES, ("\tPossible VAT length %d\n", vat_length));
   2866  1.45   reinoud 
   2867  1.45   reinoud 	vat_table_alloc_len =
   2868  1.45   reinoud 		((vat_length + UDF_VAT_CHUNKSIZE-1) / UDF_VAT_CHUNKSIZE)
   2869  1.45   reinoud 			* UDF_VAT_CHUNKSIZE;
   2870  1.45   reinoud 
   2871  1.45   reinoud 	vat_table = malloc(vat_table_alloc_len, M_UDFVOLD,
   2872  1.45   reinoud 		M_CANFAIL | M_WAITOK);
   2873  1.45   reinoud 	if (vat_table == NULL) {
   2874  1.45   reinoud 		printf("allocation of %d bytes failed for VAT\n",
   2875  1.45   reinoud 			vat_table_alloc_len);
   2876  1.45   reinoud 		return ENOMEM;
   2877  1.45   reinoud 	}
   2878  1.45   reinoud 
   2879  1.45   reinoud 	/* allocate piece to read in head or tail of VAT file */
   2880  1.45   reinoud 	raw_vat = malloc(sector_size, M_TEMP, M_WAITOK);
   2881  1.45   reinoud 
   2882  1.45   reinoud 	/*
   2883  1.45   reinoud 	 * check contents of the file if its the old 1.50 VAT table format.
   2884  1.45   reinoud 	 * Its notoriously broken and allthough some implementations support an
   2885  1.45   reinoud 	 * extention as defined in the UDF 1.50 errata document, its doubtfull
   2886  1.45   reinoud 	 * to be useable since a lot of implementations don't maintain it.
   2887  1.45   reinoud 	 */
   2888  1.45   reinoud 	lvinfo = ump->logvol_info;
   2889  1.45   reinoud 
   2890  1.45   reinoud 	if (filetype == 0) {
   2891  1.45   reinoud 		/* definition */
   2892  1.45   reinoud 		vat_offset  = 0;
   2893  1.45   reinoud 		vat_entries = (vat_length-36)/4;
   2894  1.45   reinoud 
   2895  1.45   reinoud 		/* read in tail of virtual allocation table file */
   2896  1.45   reinoud 		error = vn_rdwr(UIO_READ, vat_node->vnode,
   2897  1.45   reinoud 				(uint8_t *) raw_vat,
   2898  1.45   reinoud 				sizeof(struct udf_oldvat_tail),
   2899  1.45   reinoud 				vat_entries * 4,
   2900  1.45   reinoud 				UIO_SYSSPACE, IO_SYNC | IO_NODELOCKED, FSCRED,
   2901  1.45   reinoud 				NULL, NULL);
   2902  1.45   reinoud 		if (error)
   2903  1.45   reinoud 			goto out;
   2904  1.45   reinoud 
   2905  1.45   reinoud 		/* check 1.50 VAT */
   2906  1.45   reinoud 		oldvat_tl = (struct udf_oldvat_tail *) raw_vat;
   2907  1.45   reinoud 		regid_name = (char *) oldvat_tl->id.id;
   2908  1.45   reinoud 		error = strncmp(regid_name, "*UDF Virtual Alloc Tbl", 22);
   2909  1.45   reinoud 		if (error) {
   2910  1.45   reinoud 			DPRINTF(VOLUMES, ("VAT format 1.50 rejected\n"));
   2911  1.45   reinoud 			error = ENOENT;
   2912  1.45   reinoud 			goto out;
   2913  1.45   reinoud 		}
   2914  1.45   reinoud 
   2915  1.45   reinoud 		/*
   2916  1.45   reinoud 		 * update LVID from "*UDF VAT LVExtension" extended attribute
   2917  1.45   reinoud 		 * if present.
   2918  1.45   reinoud 		 */
   2919  1.45   reinoud 		udf_update_lvid_from_vat_extattr(vat_node);
   2920  1.45   reinoud 	} else {
   2921  1.45   reinoud 		/* read in head of virtual allocation table file */
   2922  1.45   reinoud 		error = vn_rdwr(UIO_READ, vat_node->vnode,
   2923  1.45   reinoud 				(uint8_t *) raw_vat,
   2924  1.45   reinoud 				sizeof(struct udf_vat), 0,
   2925  1.45   reinoud 				UIO_SYSSPACE, IO_SYNC | IO_NODELOCKED, FSCRED,
   2926  1.45   reinoud 				NULL, NULL);
   2927  1.45   reinoud 		if (error)
   2928  1.45   reinoud 			goto out;
   2929  1.45   reinoud 
   2930  1.45   reinoud 		/* definition */
   2931  1.45   reinoud 		vat = (struct udf_vat *) raw_vat;
   2932  1.45   reinoud 		vat_offset  = vat->header_len;
   2933  1.45   reinoud 		vat_entries = (vat_length - vat_offset)/4;
   2934  1.45   reinoud 
   2935  1.45   reinoud 		assert(lvinfo);
   2936  1.45   reinoud 		lvinfo->num_files        = vat->num_files;
   2937  1.45   reinoud 		lvinfo->num_directories  = vat->num_directories;
   2938  1.45   reinoud 		lvinfo->min_udf_readver  = vat->min_udf_readver;
   2939  1.45   reinoud 		lvinfo->min_udf_writever = vat->min_udf_writever;
   2940  1.45   reinoud 		lvinfo->max_udf_writever = vat->max_udf_writever;
   2941  1.45   reinoud 
   2942  1.45   reinoud 		udf_update_logvolname(ump, vat->logvol_id);
   2943  1.45   reinoud 	}
   2944  1.45   reinoud 
   2945  1.45   reinoud 	/* read in complete VAT file */
   2946  1.45   reinoud 	error = vn_rdwr(UIO_READ, vat_node->vnode,
   2947  1.45   reinoud 			vat_table,
   2948  1.45   reinoud 			vat_length, 0,
   2949  1.45   reinoud 			UIO_SYSSPACE, IO_SYNC | IO_NODELOCKED, FSCRED,
   2950  1.45   reinoud 			NULL, NULL);
   2951  1.45   reinoud 	if (error)
   2952  1.45   reinoud 		printf("read in of complete VAT file failed (error %d)\n",
   2953  1.45   reinoud 			error);
   2954  1.45   reinoud 	if (error)
   2955  1.45   reinoud 		goto out;
   2956  1.45   reinoud 
   2957  1.45   reinoud 	DPRINTF(VOLUMES, ("VAT format accepted, marking it closed\n"));
   2958  1.90   reinoud 	ump->logvol_integrity->lvint_next_unique_id = udf_rw64(unique_id);
   2959  1.45   reinoud 	ump->logvol_integrity->integrity_type = udf_rw32(UDF_INTEGRITY_CLOSED);
   2960  1.45   reinoud 	ump->logvol_integrity->time           = *mtime;
   2961  1.45   reinoud 
   2962  1.45   reinoud 	ump->vat_table_len = vat_length;
   2963  1.45   reinoud 	ump->vat_table_alloc_len = vat_table_alloc_len;
   2964  1.45   reinoud 	ump->vat_table   = vat_table;
   2965  1.45   reinoud 	ump->vat_offset  = vat_offset;
   2966  1.45   reinoud 	ump->vat_entries = vat_entries;
   2967  1.45   reinoud 	ump->vat_last_free_lb = 0;		/* start at beginning */
   2968  1.45   reinoud 
   2969  1.45   reinoud out:
   2970  1.45   reinoud 	if (error) {
   2971  1.45   reinoud 		if (vat_table)
   2972  1.45   reinoud 			free(vat_table, M_UDFVOLD);
   2973  1.45   reinoud 	}
   2974  1.45   reinoud 	free(raw_vat, M_TEMP);
   2975  1.45   reinoud 
   2976  1.45   reinoud 	return error;
   2977  1.45   reinoud }
   2978  1.45   reinoud 
   2979  1.45   reinoud /* --------------------------------------------------------------------- */
   2980  1.45   reinoud 
   2981  1.45   reinoud static int
   2982  1.45   reinoud udf_search_vat(struct udf_mount *ump, union udf_pmap *mapping)
   2983  1.45   reinoud {
   2984  1.45   reinoud 	struct udf_node *vat_node;
   2985  1.45   reinoud 	struct long_ad	 icb_loc;
   2986  1.45   reinoud 	uint32_t early_vat_loc, late_vat_loc, vat_loc;
   2987  1.45   reinoud 	int error;
   2988  1.45   reinoud 
   2989  1.45   reinoud 	/* mapping info not needed */
   2990  1.45   reinoud 	mapping = mapping;
   2991  1.45   reinoud 
   2992  1.45   reinoud 	vat_loc = ump->last_possible_vat_location;
   2993  1.45   reinoud 	early_vat_loc = vat_loc - 256;	/* 8 blocks of 32 sectors */
   2994  1.45   reinoud 
   2995  1.45   reinoud 	DPRINTF(VOLUMES, ("1) last possible %d, early_vat_loc %d \n",
   2996  1.45   reinoud 		vat_loc, early_vat_loc));
   2997  1.45   reinoud 	early_vat_loc = MAX(early_vat_loc, ump->first_possible_vat_location);
   2998  1.45   reinoud 	late_vat_loc  = vat_loc + 1024;
   2999  1.45   reinoud 
   3000  1.45   reinoud 	DPRINTF(VOLUMES, ("2) last possible %d, early_vat_loc %d \n",
   3001  1.45   reinoud 		vat_loc, early_vat_loc));
   3002  1.45   reinoud 
   3003  1.45   reinoud 	/* start looking from the end of the range */
   3004  1.45   reinoud 	do {
   3005  1.45   reinoud 		DPRINTF(VOLUMES, ("Checking for VAT at sector %d\n", vat_loc));
   3006  1.45   reinoud 		icb_loc.loc.part_num = udf_rw16(UDF_VTOP_RAWPART);
   3007  1.45   reinoud 		icb_loc.loc.lb_num   = udf_rw32(vat_loc);
   3008  1.45   reinoud 
   3009  1.45   reinoud 		error = udf_get_node(ump, &icb_loc, &vat_node);
   3010  1.45   reinoud 		if (!error) {
   3011  1.45   reinoud 			error = udf_check_for_vat(vat_node);
   3012  1.45   reinoud 			DPRINTFIF(VOLUMES, !error,
   3013  1.45   reinoud 				("VAT accepted at %d\n", vat_loc));
   3014  1.45   reinoud 			if (!error)
   3015  1.45   reinoud 				break;
   3016  1.45   reinoud 		}
   3017  1.45   reinoud 		if (vat_node) {
   3018  1.45   reinoud 			vput(vat_node->vnode);
   3019  1.45   reinoud 			vat_node = NULL;
   3020  1.45   reinoud 		}
   3021  1.45   reinoud 		vat_loc--;	/* walk backwards */
   3022  1.45   reinoud 	} while (vat_loc >= early_vat_loc);
   3023  1.45   reinoud 
   3024  1.45   reinoud 	/* keep our VAT node around */
   3025  1.45   reinoud 	if (vat_node) {
   3026  1.45   reinoud 		UDF_SET_SYSTEMFILE(vat_node->vnode);
   3027  1.45   reinoud 		ump->vat_node = vat_node;
   3028  1.45   reinoud 	}
   3029  1.45   reinoud 
   3030  1.45   reinoud 	return error;
   3031  1.45   reinoud }
   3032  1.45   reinoud 
   3033  1.45   reinoud /* --------------------------------------------------------------------- */
   3034  1.45   reinoud 
   3035  1.45   reinoud static int
   3036  1.45   reinoud udf_read_sparables(struct udf_mount *ump, union udf_pmap *mapping)
   3037  1.45   reinoud {
   3038  1.45   reinoud 	union dscrptr *dscr;
   3039  1.45   reinoud 	struct part_map_spare *pms = &mapping->pms;
   3040  1.45   reinoud 	uint32_t lb_num;
   3041  1.45   reinoud 	int spar, error;
   3042  1.45   reinoud 
   3043  1.45   reinoud 	/*
   3044  1.45   reinoud 	 * The partition mapping passed on to us specifies the information we
   3045  1.45   reinoud 	 * need to locate and initialise the sparable partition mapping
   3046  1.45   reinoud 	 * information we need.
   3047  1.45   reinoud 	 */
   3048  1.45   reinoud 
   3049  1.45   reinoud 	DPRINTF(VOLUMES, ("Read sparable table\n"));
   3050  1.45   reinoud 	ump->sparable_packet_size = udf_rw16(pms->packet_len);
   3051  1.45   reinoud 	KASSERT(ump->sparable_packet_size >= ump->packet_size);	/* XXX */
   3052  1.45   reinoud 
   3053  1.45   reinoud 	for (spar = 0; spar < pms->n_st; spar++) {
   3054  1.45   reinoud 		lb_num = pms->st_loc[spar];
   3055  1.45   reinoud 		DPRINTF(VOLUMES, ("Checking for sparing table %d\n", lb_num));
   3056  1.45   reinoud 		error = udf_read_phys_dscr(ump, lb_num, M_UDFVOLD, &dscr);
   3057  1.45   reinoud 		if (!error && dscr) {
   3058  1.45   reinoud 			if (udf_rw16(dscr->tag.id) == TAGID_SPARING_TABLE) {
   3059  1.45   reinoud 				if (ump->sparing_table)
   3060  1.45   reinoud 					free(ump->sparing_table, M_UDFVOLD);
   3061  1.45   reinoud 				ump->sparing_table = &dscr->spt;
   3062  1.45   reinoud 				dscr = NULL;
   3063  1.45   reinoud 				DPRINTF(VOLUMES,
   3064  1.45   reinoud 				    ("Sparing table accepted (%d entries)\n",
   3065  1.45   reinoud 				     udf_rw16(ump->sparing_table->rt_l)));
   3066  1.45   reinoud 				break;	/* we're done */
   3067  1.45   reinoud 			}
   3068  1.45   reinoud 		}
   3069  1.45   reinoud 		if (dscr)
   3070  1.45   reinoud 			free(dscr, M_UDFVOLD);
   3071  1.45   reinoud 	}
   3072  1.45   reinoud 
   3073  1.45   reinoud 	if (ump->sparing_table)
   3074  1.45   reinoud 		return 0;
   3075  1.45   reinoud 
   3076  1.45   reinoud 	return ENOENT;
   3077  1.45   reinoud }
   3078  1.45   reinoud 
   3079  1.45   reinoud /* --------------------------------------------------------------------- */
   3080  1.45   reinoud 
   3081  1.45   reinoud static int
   3082  1.45   reinoud udf_read_metadata_nodes(struct udf_mount *ump, union udf_pmap *mapping)
   3083  1.45   reinoud {
   3084  1.45   reinoud 	struct part_map_meta *pmm = &mapping->pmm;
   3085  1.45   reinoud 	struct long_ad	 icb_loc;
   3086  1.45   reinoud 	struct vnode *vp;
   3087  1.45   reinoud 	int error;
   3088  1.45   reinoud 
   3089  1.45   reinoud 	DPRINTF(VOLUMES, ("Reading in Metadata files\n"));
   3090  1.45   reinoud 	icb_loc.loc.part_num = pmm->part_num;
   3091  1.45   reinoud 	icb_loc.loc.lb_num   = pmm->meta_file_lbn;
   3092  1.45   reinoud 	DPRINTF(VOLUMES, ("Metadata file\n"));
   3093  1.45   reinoud 	error = udf_get_node(ump, &icb_loc, &ump->metadata_node);
   3094  1.45   reinoud 	if (ump->metadata_node) {
   3095  1.45   reinoud 		vp = ump->metadata_node->vnode;
   3096  1.45   reinoud 		UDF_SET_SYSTEMFILE(vp);
   3097  1.45   reinoud 	}
   3098  1.45   reinoud 
   3099  1.45   reinoud 	icb_loc.loc.lb_num   = pmm->meta_mirror_file_lbn;
   3100  1.45   reinoud 	if (icb_loc.loc.lb_num != -1) {
   3101  1.45   reinoud 		DPRINTF(VOLUMES, ("Metadata copy file\n"));
   3102  1.45   reinoud 		error = udf_get_node(ump, &icb_loc, &ump->metadatamirror_node);
   3103  1.45   reinoud 		if (ump->metadatamirror_node) {
   3104  1.45   reinoud 			vp = ump->metadatamirror_node->vnode;
   3105  1.45   reinoud 			UDF_SET_SYSTEMFILE(vp);
   3106  1.45   reinoud 		}
   3107  1.45   reinoud 	}
   3108  1.45   reinoud 
   3109  1.45   reinoud 	icb_loc.loc.lb_num   = pmm->meta_bitmap_file_lbn;
   3110  1.45   reinoud 	if (icb_loc.loc.lb_num != -1) {
   3111  1.45   reinoud 		DPRINTF(VOLUMES, ("Metadata bitmap file\n"));
   3112  1.45   reinoud 		error = udf_get_node(ump, &icb_loc, &ump->metadatabitmap_node);
   3113  1.45   reinoud 		if (ump->metadatabitmap_node) {
   3114  1.45   reinoud 			vp = ump->metadatabitmap_node->vnode;
   3115  1.45   reinoud 			UDF_SET_SYSTEMFILE(vp);
   3116  1.45   reinoud 		}
   3117  1.45   reinoud 	}
   3118  1.45   reinoud 
   3119  1.45   reinoud 	/* if we're mounting read-only we relax the requirements */
   3120  1.45   reinoud 	if (ump->vfs_mountp->mnt_flag & MNT_RDONLY) {
   3121  1.45   reinoud 		error = EFAULT;
   3122  1.45   reinoud 		if (ump->metadata_node)
   3123  1.45   reinoud 			error = 0;
   3124  1.45   reinoud 		if ((ump->metadata_node == NULL) && (ump->metadatamirror_node)) {
   3125  1.45   reinoud 			printf( "udf mount: Metadata file not readable, "
   3126  1.45   reinoud 				"substituting Metadata copy file\n");
   3127  1.45   reinoud 			ump->metadata_node = ump->metadatamirror_node;
   3128  1.45   reinoud 			ump->metadatamirror_node = NULL;
   3129  1.45   reinoud 			error = 0;
   3130  1.45   reinoud 		}
   3131  1.45   reinoud 	} else {
   3132  1.45   reinoud 		/* mounting read/write */
   3133  1.70   reinoud 		/* XXX DISABLED! metadata writing is not working yet XXX */
   3134  1.71   reinoud 		if (error)
   3135  1.53   reinoud 			error = EROFS;
   3136  1.45   reinoud 	}
   3137  1.45   reinoud 	DPRINTFIF(VOLUMES, error, ("udf mount: failed to read "
   3138  1.45   reinoud 				   "metadata files\n"));
   3139  1.45   reinoud 	return error;
   3140  1.45   reinoud }
   3141  1.45   reinoud 
   3142  1.45   reinoud /* --------------------------------------------------------------------- */
   3143  1.45   reinoud 
   3144  1.45   reinoud int
   3145  1.45   reinoud udf_read_vds_tables(struct udf_mount *ump)
   3146  1.45   reinoud {
   3147  1.45   reinoud 	union udf_pmap *mapping;
   3148  1.45   reinoud 	/* struct udf_args *args = &ump->mount_args; */
   3149  1.45   reinoud 	uint32_t n_pm, mt_l;
   3150  1.45   reinoud 	uint32_t log_part;
   3151  1.45   reinoud 	uint8_t *pmap_pos;
   3152  1.45   reinoud 	int pmap_size;
   3153  1.45   reinoud 	int error;
   3154  1.45   reinoud 
   3155  1.69   reinoud 	/* Iterate (again) over the part mappings for locations   */
   3156  1.45   reinoud 	n_pm = udf_rw32(ump->logical_vol->n_pm);   /* num partmaps         */
   3157  1.45   reinoud 	mt_l = udf_rw32(ump->logical_vol->mt_l);   /* partmaps data length */
   3158  1.45   reinoud 	pmap_pos =  ump->logical_vol->maps;
   3159  1.45   reinoud 
   3160  1.45   reinoud 	for (log_part = 0; log_part < n_pm; log_part++) {
   3161  1.45   reinoud 		mapping = (union udf_pmap *) pmap_pos;
   3162  1.45   reinoud 		switch (ump->vtop_tp[log_part]) {
   3163  1.45   reinoud 		case UDF_VTOP_TYPE_PHYS :
   3164  1.45   reinoud 			/* nothing */
   3165  1.45   reinoud 			break;
   3166  1.45   reinoud 		case UDF_VTOP_TYPE_VIRT :
   3167  1.45   reinoud 			/* search and load VAT */
   3168  1.45   reinoud 			error = udf_search_vat(ump, mapping);
   3169  1.45   reinoud 			if (error)
   3170  1.45   reinoud 				return ENOENT;
   3171  1.45   reinoud 			break;
   3172  1.45   reinoud 		case UDF_VTOP_TYPE_SPARABLE :
   3173  1.45   reinoud 			/* load one of the sparable tables */
   3174  1.45   reinoud 			error = udf_read_sparables(ump, mapping);
   3175  1.45   reinoud 			if (error)
   3176  1.45   reinoud 				return ENOENT;
   3177  1.45   reinoud 			break;
   3178  1.45   reinoud 		case UDF_VTOP_TYPE_META :
   3179  1.45   reinoud 			/* load the associated file descriptors */
   3180  1.45   reinoud 			error = udf_read_metadata_nodes(ump, mapping);
   3181  1.45   reinoud 			if (error)
   3182  1.45   reinoud 				return ENOENT;
   3183  1.45   reinoud 			break;
   3184  1.45   reinoud 		default:
   3185  1.45   reinoud 			break;
   3186  1.45   reinoud 		}
   3187  1.45   reinoud 		pmap_size  = pmap_pos[1];
   3188  1.45   reinoud 		pmap_pos  += pmap_size;
   3189  1.45   reinoud 	}
   3190  1.45   reinoud 
   3191  1.70   reinoud 	/* read in and check unallocated and free space info if writing */
   3192  1.70   reinoud 	if ((ump->vfs_mountp->mnt_flag & MNT_RDONLY) == 0) {
   3193  1.70   reinoud 		error = udf_read_physical_partition_spacetables(ump);
   3194  1.70   reinoud 		if (error)
   3195  1.70   reinoud 			return error;
   3196  1.70   reinoud 
   3197  1.70   reinoud 		/* also read in metadata partion spacebitmap if defined */
   3198  1.70   reinoud 		error = udf_read_metadata_partition_spacetable(ump);
   3199  1.70   reinoud 			return error;
   3200  1.70   reinoud 	}
   3201  1.70   reinoud 
   3202  1.45   reinoud 	return 0;
   3203  1.45   reinoud }
   3204  1.45   reinoud 
   3205  1.45   reinoud /* --------------------------------------------------------------------- */
   3206  1.45   reinoud 
   3207  1.45   reinoud int
   3208  1.45   reinoud udf_read_rootdirs(struct udf_mount *ump)
   3209  1.45   reinoud {
   3210  1.45   reinoud 	union dscrptr *dscr;
   3211  1.45   reinoud 	/* struct udf_args *args = &ump->mount_args; */
   3212  1.45   reinoud 	struct udf_node *rootdir_node, *streamdir_node;
   3213  1.45   reinoud 	struct long_ad  fsd_loc, *dir_loc;
   3214  1.45   reinoud 	uint32_t lb_num, dummy;
   3215  1.45   reinoud 	uint32_t fsd_len;
   3216  1.45   reinoud 	int dscr_type;
   3217  1.45   reinoud 	int error;
   3218  1.45   reinoud 
   3219  1.45   reinoud 	/* TODO implement FSD reading in separate function like integrity? */
   3220  1.45   reinoud 	/* get fileset descriptor sequence */
   3221  1.45   reinoud 	fsd_loc = ump->logical_vol->lv_fsd_loc;
   3222  1.45   reinoud 	fsd_len = udf_rw32(fsd_loc.len);
   3223  1.45   reinoud 
   3224  1.45   reinoud 	dscr  = NULL;
   3225  1.45   reinoud 	error = 0;
   3226  1.45   reinoud 	while (fsd_len || error) {
   3227  1.45   reinoud 		DPRINTF(VOLUMES, ("fsd_len = %d\n", fsd_len));
   3228  1.45   reinoud 		/* translate fsd_loc to lb_num */
   3229  1.45   reinoud 		error = udf_translate_vtop(ump, &fsd_loc, &lb_num, &dummy);
   3230  1.45   reinoud 		if (error)
   3231  1.45   reinoud 			break;
   3232  1.45   reinoud 		DPRINTF(VOLUMES, ("Reading FSD at lb %d\n", lb_num));
   3233  1.45   reinoud 		error = udf_read_phys_dscr(ump, lb_num, M_UDFVOLD, &dscr);
   3234  1.45   reinoud 		/* end markers */
   3235  1.45   reinoud 		if (error || (dscr == NULL))
   3236  1.45   reinoud 			break;
   3237  1.45   reinoud 
   3238  1.45   reinoud 		/* analyse */
   3239  1.45   reinoud 		dscr_type = udf_rw16(dscr->tag.id);
   3240  1.45   reinoud 		if (dscr_type == TAGID_TERM)
   3241  1.45   reinoud 			break;
   3242  1.45   reinoud 		if (dscr_type != TAGID_FSD) {
   3243  1.45   reinoud 			free(dscr, M_UDFVOLD);
   3244  1.45   reinoud 			return ENOENT;
   3245  1.45   reinoud 		}
   3246  1.45   reinoud 
   3247  1.45   reinoud 		/*
   3248  1.45   reinoud 		 * TODO check for multiple fileset descriptors; its only
   3249  1.45   reinoud 		 * picking the last now. Also check for FSD
   3250  1.45   reinoud 		 * correctness/interpretability
   3251  1.45   reinoud 		 */
   3252  1.45   reinoud 
   3253  1.45   reinoud 		/* update */
   3254  1.45   reinoud 		if (ump->fileset_desc) {
   3255  1.45   reinoud 			free(ump->fileset_desc, M_UDFVOLD);
   3256  1.45   reinoud 		}
   3257  1.45   reinoud 		ump->fileset_desc = &dscr->fsd;
   3258  1.45   reinoud 		dscr = NULL;
   3259  1.45   reinoud 
   3260  1.45   reinoud 		/* continue to the next fsd */
   3261  1.45   reinoud 		fsd_len -= ump->discinfo.sector_size;
   3262  1.45   reinoud 		fsd_loc.loc.lb_num = udf_rw32(udf_rw32(fsd_loc.loc.lb_num)+1);
   3263  1.45   reinoud 
   3264  1.45   reinoud 		/* follow up to fsd->next_ex (long_ad) if its not null */
   3265  1.45   reinoud 		if (udf_rw32(ump->fileset_desc->next_ex.len)) {
   3266  1.45   reinoud 			DPRINTF(VOLUMES, ("follow up FSD extent\n"));
   3267  1.45   reinoud 			fsd_loc = ump->fileset_desc->next_ex;
   3268  1.45   reinoud 			fsd_len = udf_rw32(ump->fileset_desc->next_ex.len);
   3269  1.45   reinoud 		}
   3270  1.45   reinoud 	}
   3271  1.45   reinoud 	if (dscr)
   3272  1.45   reinoud 		free(dscr, M_UDFVOLD);
   3273  1.45   reinoud 
   3274  1.45   reinoud 	/* there has to be one */
   3275  1.45   reinoud 	if (ump->fileset_desc == NULL)
   3276  1.45   reinoud 		return ENOENT;
   3277  1.45   reinoud 
   3278  1.45   reinoud 	DPRINTF(VOLUMES, ("FSD read in fine\n"));
   3279  1.45   reinoud 	DPRINTF(VOLUMES, ("Updating fsd logical volume id\n"));
   3280  1.45   reinoud 	udf_update_logvolname(ump, ump->logical_vol->logvol_id);
   3281  1.45   reinoud 
   3282  1.45   reinoud 	/*
   3283  1.45   reinoud 	 * Now the FSD is known, read in the rootdirectory and if one exists,
   3284  1.45   reinoud 	 * the system stream dir. Some files in the system streamdir are not
   3285  1.45   reinoud 	 * wanted in this implementation since they are not maintained. If
   3286  1.45   reinoud 	 * writing is enabled we'll delete these files if they exist.
   3287  1.45   reinoud 	 */
   3288  1.45   reinoud 
   3289  1.45   reinoud 	rootdir_node = streamdir_node = NULL;
   3290  1.45   reinoud 	dir_loc = NULL;
   3291  1.45   reinoud 
   3292  1.45   reinoud 	/* try to read in the rootdir */
   3293  1.45   reinoud 	dir_loc = &ump->fileset_desc->rootdir_icb;
   3294  1.45   reinoud 	error = udf_get_node(ump, dir_loc, &rootdir_node);
   3295  1.45   reinoud 	if (error)
   3296  1.45   reinoud 		return ENOENT;
   3297  1.45   reinoud 
   3298  1.45   reinoud 	/* aparently it read in fine */
   3299  1.45   reinoud 
   3300  1.45   reinoud 	/*
   3301  1.45   reinoud 	 * Try the system stream directory; not very likely in the ones we
   3302  1.45   reinoud 	 * test, but for completeness.
   3303  1.45   reinoud 	 */
   3304  1.45   reinoud 	dir_loc = &ump->fileset_desc->streamdir_icb;
   3305  1.45   reinoud 	if (udf_rw32(dir_loc->len)) {
   3306  1.45   reinoud 		printf("udf_read_rootdirs: streamdir defined ");
   3307  1.45   reinoud 		error = udf_get_node(ump, dir_loc, &streamdir_node);
   3308  1.45   reinoud 		if (error) {
   3309  1.45   reinoud 			printf("but error in streamdir reading\n");
   3310   1.1   reinoud 		} else {
   3311  1.45   reinoud 			printf("but ignored\n");
   3312  1.45   reinoud 			/*
   3313  1.45   reinoud 			 * TODO process streamdir `baddies' i.e. files we dont
   3314  1.45   reinoud 			 * want if R/W
   3315  1.45   reinoud 			 */
   3316  1.45   reinoud 		}
   3317  1.45   reinoud 	}
   3318  1.45   reinoud 
   3319  1.45   reinoud 	DPRINTF(VOLUMES, ("Rootdir(s) read in fine\n"));
   3320  1.45   reinoud 
   3321  1.45   reinoud 	/* release the vnodes again; they'll be auto-recycled later */
   3322  1.45   reinoud 	if (streamdir_node) {
   3323  1.45   reinoud 		vput(streamdir_node->vnode);
   3324  1.45   reinoud 	}
   3325  1.45   reinoud 	if (rootdir_node) {
   3326  1.45   reinoud 		vput(rootdir_node->vnode);
   3327  1.45   reinoud 	}
   3328  1.45   reinoud 
   3329  1.45   reinoud 	return 0;
   3330  1.45   reinoud }
   3331  1.45   reinoud 
   3332  1.45   reinoud /* --------------------------------------------------------------------- */
   3333  1.45   reinoud 
   3334  1.45   reinoud /* To make absolutely sure we are NOT returning zero, add one :) */
   3335  1.45   reinoud 
   3336  1.45   reinoud long
   3337  1.45   reinoud udf_calchash(struct long_ad *icbptr)
   3338  1.45   reinoud {
   3339  1.45   reinoud 	/* ought to be enough since each mountpoint has its own chain */
   3340  1.45   reinoud 	return udf_rw32(icbptr->loc.lb_num) + 1;
   3341  1.45   reinoud }
   3342  1.45   reinoud 
   3343  1.45   reinoud 
   3344  1.45   reinoud static struct udf_node *
   3345  1.45   reinoud udf_hash_lookup(struct udf_mount *ump, struct long_ad *icbptr)
   3346  1.45   reinoud {
   3347  1.45   reinoud 	struct udf_node *node;
   3348  1.45   reinoud 	struct vnode *vp;
   3349  1.45   reinoud 	uint32_t hashline;
   3350  1.45   reinoud 
   3351  1.45   reinoud loop:
   3352  1.45   reinoud 	mutex_enter(&ump->ihash_lock);
   3353  1.45   reinoud 
   3354  1.45   reinoud 	hashline = udf_calchash(icbptr) & UDF_INODE_HASHMASK;
   3355  1.45   reinoud 	LIST_FOREACH(node, &ump->udf_nodes[hashline], hashchain) {
   3356  1.45   reinoud 		assert(node);
   3357  1.45   reinoud 		if (node->loc.loc.lb_num   == icbptr->loc.lb_num &&
   3358  1.45   reinoud 		    node->loc.loc.part_num == icbptr->loc.part_num) {
   3359  1.45   reinoud 			vp = node->vnode;
   3360  1.45   reinoud 			assert(vp);
   3361  1.45   reinoud 			mutex_enter(&vp->v_interlock);
   3362  1.45   reinoud 			mutex_exit(&ump->ihash_lock);
   3363  1.45   reinoud 			if (vget(vp, LK_EXCLUSIVE | LK_INTERLOCK))
   3364  1.45   reinoud 				goto loop;
   3365  1.45   reinoud 			return node;
   3366  1.45   reinoud 		}
   3367  1.45   reinoud 	}
   3368  1.45   reinoud 	mutex_exit(&ump->ihash_lock);
   3369  1.45   reinoud 
   3370  1.45   reinoud 	return NULL;
   3371  1.45   reinoud }
   3372  1.45   reinoud 
   3373  1.45   reinoud 
   3374  1.45   reinoud static void
   3375  1.45   reinoud udf_sorted_list_insert(struct udf_node *node)
   3376  1.45   reinoud {
   3377  1.45   reinoud 	struct udf_mount *ump;
   3378  1.45   reinoud 	struct udf_node  *s_node, *last_node;
   3379  1.45   reinoud 	uint32_t loc, s_loc;
   3380  1.45   reinoud 
   3381  1.45   reinoud 	ump = node->ump;
   3382  1.47   reinoud 	last_node = NULL;	/* XXX gcc */
   3383  1.45   reinoud 
   3384  1.45   reinoud 	if (LIST_EMPTY(&ump->sorted_udf_nodes)) {
   3385  1.45   reinoud 		LIST_INSERT_HEAD(&ump->sorted_udf_nodes, node, sortchain);
   3386  1.45   reinoud 		return;
   3387  1.45   reinoud 	}
   3388  1.45   reinoud 
   3389  1.45   reinoud 	/*
   3390  1.45   reinoud 	 * We sort on logical block number here and not on physical block
   3391  1.45   reinoud 	 * number here. Ideally we should go for the physical block nr to get
   3392  1.45   reinoud 	 * better sync performance though this sort will ensure that packets
   3393  1.45   reinoud 	 * won't get spit up unnessisarily.
   3394  1.45   reinoud 	 */
   3395  1.45   reinoud 
   3396  1.45   reinoud 	loc = udf_rw32(node->loc.loc.lb_num);
   3397  1.45   reinoud 	LIST_FOREACH(s_node, &ump->sorted_udf_nodes, sortchain) {
   3398  1.45   reinoud 		s_loc = udf_rw32(s_node->loc.loc.lb_num);
   3399  1.45   reinoud 		if (s_loc > loc) {
   3400  1.45   reinoud 			LIST_INSERT_BEFORE(s_node, node, sortchain);
   3401  1.45   reinoud 			return;
   3402  1.45   reinoud 		}
   3403  1.45   reinoud 		last_node = s_node;
   3404  1.45   reinoud 	}
   3405  1.45   reinoud 	LIST_INSERT_AFTER(last_node, node, sortchain);
   3406  1.45   reinoud }
   3407  1.45   reinoud 
   3408  1.45   reinoud 
   3409  1.45   reinoud static void
   3410  1.45   reinoud udf_register_node(struct udf_node *node)
   3411  1.45   reinoud {
   3412  1.45   reinoud 	struct udf_mount *ump;
   3413  1.45   reinoud 	struct udf_node *chk;
   3414  1.45   reinoud 	uint32_t hashline;
   3415  1.45   reinoud 
   3416  1.45   reinoud 	ump = node->ump;
   3417  1.45   reinoud 	mutex_enter(&ump->ihash_lock);
   3418  1.45   reinoud 
   3419  1.45   reinoud 	/* add to our hash table */
   3420  1.45   reinoud 	hashline = udf_calchash(&node->loc) & UDF_INODE_HASHMASK;
   3421  1.45   reinoud #ifdef DEBUG
   3422  1.45   reinoud 	LIST_FOREACH(chk, &ump->udf_nodes[hashline], hashchain) {
   3423  1.45   reinoud 		assert(chk);
   3424  1.45   reinoud 		if (chk->loc.loc.lb_num   == node->loc.loc.lb_num &&
   3425  1.45   reinoud 		    chk->loc.loc.part_num == node->loc.loc.part_num)
   3426  1.45   reinoud 			panic("Double node entered\n");
   3427  1.45   reinoud 	}
   3428  1.45   reinoud #else
   3429  1.45   reinoud 	chk = NULL;
   3430  1.45   reinoud #endif
   3431  1.45   reinoud 	LIST_INSERT_HEAD(&ump->udf_nodes[hashline], node, hashchain);
   3432  1.45   reinoud 
   3433  1.45   reinoud 	/* add to our sorted list */
   3434  1.45   reinoud 	udf_sorted_list_insert(node);
   3435  1.45   reinoud 
   3436  1.45   reinoud 	mutex_exit(&ump->ihash_lock);
   3437  1.45   reinoud }
   3438  1.45   reinoud 
   3439  1.45   reinoud 
   3440  1.45   reinoud static void
   3441  1.45   reinoud udf_deregister_node(struct udf_node *node)
   3442  1.45   reinoud {
   3443  1.45   reinoud 	struct udf_mount *ump;
   3444  1.45   reinoud 
   3445  1.45   reinoud 	ump = node->ump;
   3446  1.45   reinoud 	mutex_enter(&ump->ihash_lock);
   3447  1.45   reinoud 
   3448  1.45   reinoud 	/* from hash and sorted list */
   3449  1.45   reinoud 	LIST_REMOVE(node, hashchain);
   3450  1.45   reinoud 	LIST_REMOVE(node, sortchain);
   3451  1.45   reinoud 
   3452  1.45   reinoud 	mutex_exit(&ump->ihash_lock);
   3453  1.45   reinoud }
   3454  1.45   reinoud 
   3455  1.45   reinoud /* --------------------------------------------------------------------- */
   3456  1.45   reinoud 
   3457  1.85   reinoud static int
   3458  1.85   reinoud udf_validate_session_start(struct udf_mount *ump)
   3459  1.85   reinoud {
   3460  1.85   reinoud 	struct mmc_trackinfo trackinfo;
   3461  1.85   reinoud 	struct vrs_desc *vrs;
   3462  1.85   reinoud 	uint32_t tracknr, sessionnr, sector, sector_size;
   3463  1.85   reinoud 	uint32_t iso9660_vrs, write_track_start;
   3464  1.85   reinoud 	uint8_t *buffer, *blank, *pos;
   3465  1.85   reinoud 	int blks, max_sectors, vrs_len;
   3466  1.85   reinoud 	int error;
   3467  1.85   reinoud 
   3468  1.85   reinoud 	/* disc appendable? */
   3469  1.85   reinoud 	if (ump->discinfo.disc_state == MMC_STATE_FULL)
   3470  1.85   reinoud 		return EROFS;
   3471  1.85   reinoud 
   3472  1.85   reinoud 	/* already written here? if so, there should be an ISO VDS */
   3473  1.85   reinoud 	if (ump->discinfo.last_session_state == MMC_STATE_INCOMPLETE)
   3474  1.85   reinoud 		return 0;
   3475  1.85   reinoud 
   3476  1.85   reinoud 	/*
   3477  1.85   reinoud 	 * Check if the first track of the session is blank and if so, copy or
   3478  1.85   reinoud 	 * create a dummy ISO descriptor so the disc is valid again.
   3479  1.85   reinoud 	 */
   3480  1.85   reinoud 
   3481  1.85   reinoud 	tracknr = ump->discinfo.first_track_last_session;
   3482  1.85   reinoud 	memset(&trackinfo, 0, sizeof(struct mmc_trackinfo));
   3483  1.85   reinoud 	trackinfo.tracknr = tracknr;
   3484  1.85   reinoud 	error = udf_update_trackinfo(ump, &trackinfo);
   3485  1.85   reinoud 	if (error)
   3486  1.85   reinoud 		return error;
   3487  1.85   reinoud 
   3488  1.85   reinoud 	udf_dump_trackinfo(&trackinfo);
   3489  1.85   reinoud 	KASSERT(trackinfo.flags & (MMC_TRACKINFO_BLANK | MMC_TRACKINFO_RESERVED));
   3490  1.85   reinoud 	KASSERT(trackinfo.sessionnr > 1);
   3491  1.85   reinoud 
   3492  1.85   reinoud 	KASSERT(trackinfo.flags & MMC_TRACKINFO_NWA_VALID);
   3493  1.85   reinoud 	write_track_start = trackinfo.next_writable;
   3494  1.85   reinoud 
   3495  1.85   reinoud 	/* we have to copy the ISO VRS from a former session */
   3496  1.85   reinoud 	DPRINTF(VOLUMES, ("validate_session_start: "
   3497  1.85   reinoud 			"blank or reserved track, copying VRS\n"));
   3498  1.85   reinoud 
   3499  1.85   reinoud 	/* sessionnr should be the session we're mounting */
   3500  1.85   reinoud 	sessionnr = ump->mount_args.sessionnr;
   3501  1.85   reinoud 
   3502  1.85   reinoud 	/* start at the first track */
   3503  1.85   reinoud 	tracknr   = ump->discinfo.first_track;
   3504  1.85   reinoud 	while (tracknr <= ump->discinfo.num_tracks) {
   3505  1.85   reinoud 		trackinfo.tracknr = tracknr;
   3506  1.85   reinoud 		error = udf_update_trackinfo(ump, &trackinfo);
   3507  1.85   reinoud 		if (error) {
   3508  1.85   reinoud 			DPRINTF(VOLUMES, ("failed to get trackinfo; aborting\n"));
   3509  1.85   reinoud 			return error;
   3510  1.85   reinoud 		}
   3511  1.85   reinoud 		if (trackinfo.sessionnr == sessionnr)
   3512  1.85   reinoud 			break;
   3513  1.85   reinoud 		tracknr++;
   3514  1.85   reinoud 	}
   3515  1.85   reinoud 	if (trackinfo.sessionnr != sessionnr) {
   3516  1.85   reinoud 		DPRINTF(VOLUMES, ("failed to get trackinfo; aborting\n"));
   3517  1.85   reinoud 		return ENOENT;
   3518  1.85   reinoud 	}
   3519  1.85   reinoud 
   3520  1.85   reinoud 	DPRINTF(VOLUMES, ("found possible former ISO VRS at\n"));
   3521  1.85   reinoud 	udf_dump_trackinfo(&trackinfo);
   3522  1.85   reinoud 
   3523  1.85   reinoud         /*
   3524  1.85   reinoud          * location of iso9660 vrs is defined as first sector AFTER 32kb,
   3525  1.85   reinoud          * minimum ISO `sector size' 2048
   3526  1.85   reinoud          */
   3527  1.85   reinoud 	sector_size = ump->discinfo.sector_size;
   3528  1.85   reinoud 	iso9660_vrs = ((32*1024 + sector_size - 1) / sector_size)
   3529  1.85   reinoud 		 + trackinfo.track_start;
   3530  1.85   reinoud 
   3531  1.85   reinoud 	buffer = malloc(UDF_ISO_VRS_SIZE, M_TEMP, M_WAITOK);
   3532  1.85   reinoud 	max_sectors = UDF_ISO_VRS_SIZE / sector_size;
   3533  1.85   reinoud 	blks = MAX(1, 2048 / sector_size);
   3534  1.85   reinoud 
   3535  1.85   reinoud 	error = 0;
   3536  1.85   reinoud 	for (sector = 0; sector < max_sectors; sector += blks) {
   3537  1.85   reinoud 		pos = buffer + sector * sector_size;
   3538  1.85   reinoud 		error = udf_read_phys_sectors(ump, UDF_C_DSCR, pos,
   3539  1.85   reinoud 			iso9660_vrs + sector, blks);
   3540  1.85   reinoud 		if (error)
   3541  1.85   reinoud 			break;
   3542  1.85   reinoud 		/* check this ISO descriptor */
   3543  1.85   reinoud 		vrs = (struct vrs_desc *) pos;
   3544  1.85   reinoud 		DPRINTF(VOLUMES, ("got VRS id `%4s`\n", vrs->identifier));
   3545  1.85   reinoud 		if (strncmp(vrs->identifier, VRS_CD001, 5) == 0)
   3546  1.85   reinoud 			continue;
   3547  1.85   reinoud 		if (strncmp(vrs->identifier, VRS_CDW02, 5) == 0)
   3548  1.85   reinoud 			continue;
   3549  1.85   reinoud 		if (strncmp(vrs->identifier, VRS_BEA01, 5) == 0)
   3550  1.85   reinoud 			continue;
   3551  1.85   reinoud 		if (strncmp(vrs->identifier, VRS_NSR02, 5) == 0)
   3552  1.85   reinoud 			continue;
   3553  1.85   reinoud 		if (strncmp(vrs->identifier, VRS_NSR03, 5) == 0)
   3554  1.85   reinoud 			continue;
   3555  1.85   reinoud 		if (strncmp(vrs->identifier, VRS_TEA01, 5) == 0)
   3556  1.85   reinoud 			break;
   3557  1.85   reinoud 		/* now what? for now, end of sequence */
   3558  1.85   reinoud 		break;
   3559  1.85   reinoud 	}
   3560  1.85   reinoud 	vrs_len = sector + blks;
   3561  1.85   reinoud 	if (error) {
   3562  1.85   reinoud 		DPRINTF(VOLUMES, ("error reading old ISO VRS\n"));
   3563  1.85   reinoud 		DPRINTF(VOLUMES, ("creating minimal ISO VRS\n"));
   3564  1.85   reinoud 
   3565  1.85   reinoud 		memset(buffer, 0, UDF_ISO_VRS_SIZE);
   3566  1.85   reinoud 
   3567  1.85   reinoud 		vrs = (struct vrs_desc *) (buffer);
   3568  1.85   reinoud 		vrs->struct_type = 0;
   3569  1.85   reinoud 		vrs->version     = 1;
   3570  1.85   reinoud 		memcpy(vrs->identifier,VRS_BEA01, 5);
   3571  1.85   reinoud 
   3572  1.85   reinoud 		vrs = (struct vrs_desc *) (buffer + 2048);
   3573  1.85   reinoud 		vrs->struct_type = 0;
   3574  1.85   reinoud 		vrs->version     = 1;
   3575  1.90   reinoud 		if (udf_rw16(ump->logical_vol->tag.descriptor_ver) == 2) {
   3576  1.85   reinoud 			memcpy(vrs->identifier,VRS_NSR02, 5);
   3577  1.85   reinoud 		} else {
   3578  1.85   reinoud 			memcpy(vrs->identifier,VRS_NSR03, 5);
   3579  1.85   reinoud 		}
   3580  1.85   reinoud 
   3581  1.85   reinoud 		vrs = (struct vrs_desc *) (buffer + 4096);
   3582  1.85   reinoud 		vrs->struct_type = 0;
   3583  1.85   reinoud 		vrs->version     = 1;
   3584  1.85   reinoud 		memcpy(vrs->identifier, VRS_TEA01, 5);
   3585  1.85   reinoud 
   3586  1.85   reinoud 		vrs_len = 3*blks;
   3587  1.85   reinoud 	}
   3588  1.85   reinoud 
   3589  1.85   reinoud 	DPRINTF(VOLUMES, ("Got VRS of %d sectors long\n", vrs_len));
   3590  1.85   reinoud 
   3591  1.85   reinoud         /*
   3592  1.85   reinoud          * location of iso9660 vrs is defined as first sector AFTER 32kb,
   3593  1.85   reinoud          * minimum ISO `sector size' 2048
   3594  1.85   reinoud          */
   3595  1.85   reinoud 	sector_size = ump->discinfo.sector_size;
   3596  1.85   reinoud 	iso9660_vrs = ((32*1024 + sector_size - 1) / sector_size)
   3597  1.85   reinoud 		 + write_track_start;
   3598  1.85   reinoud 
   3599  1.85   reinoud 	/* write out 32 kb */
   3600  1.85   reinoud 	blank = malloc(sector_size, M_TEMP, M_WAITOK);
   3601  1.85   reinoud 	memset(blank, 0, sector_size);
   3602  1.85   reinoud 	error = 0;
   3603  1.85   reinoud 	for (sector = write_track_start; sector < iso9660_vrs; sector ++) {
   3604  1.85   reinoud 		error = udf_write_phys_sectors(ump, UDF_C_ABSOLUTE,
   3605  1.85   reinoud 			blank, sector, 1);
   3606  1.85   reinoud 		if (error)
   3607  1.85   reinoud 			break;
   3608  1.85   reinoud 	}
   3609  1.85   reinoud 	if (!error) {
   3610  1.85   reinoud 		/* write out our ISO VRS */
   3611  1.85   reinoud 		KASSERT(sector == iso9660_vrs);
   3612  1.85   reinoud 		error = udf_write_phys_sectors(ump, UDF_C_ABSOLUTE, buffer,
   3613  1.85   reinoud 				sector, vrs_len);
   3614  1.85   reinoud 		sector += vrs_len;
   3615  1.85   reinoud 	}
   3616  1.85   reinoud 	if (!error) {
   3617  1.85   reinoud 		/* fill upto the first anchor at S+256 */
   3618  1.85   reinoud 		for (; sector < write_track_start+256; sector++) {
   3619  1.85   reinoud 			error = udf_write_phys_sectors(ump, UDF_C_ABSOLUTE,
   3620  1.85   reinoud 				blank, sector, 1);
   3621  1.85   reinoud 			if (error)
   3622  1.85   reinoud 				break;
   3623  1.85   reinoud 		}
   3624  1.85   reinoud 	}
   3625  1.85   reinoud 	if (!error) {
   3626  1.85   reinoud 		/* write out anchor; write at ABSOLUTE place! */
   3627  1.85   reinoud 		error = udf_write_phys_dscr_sync(ump, NULL, UDF_C_ABSOLUTE,
   3628  1.85   reinoud 			(union dscrptr *) ump->anchors[0], sector, sector);
   3629  1.85   reinoud 		if (error)
   3630  1.85   reinoud 			printf("writeout of anchor failed!\n");
   3631  1.85   reinoud 	}
   3632  1.85   reinoud 
   3633  1.85   reinoud 	free(blank, M_TEMP);
   3634  1.85   reinoud 	free(buffer, M_TEMP);
   3635  1.85   reinoud 
   3636  1.85   reinoud 	if (error)
   3637  1.85   reinoud 		printf("udf_open_session: error writing iso vrs! : "
   3638  1.85   reinoud 				"leaving disc in compromised state!\n");
   3639  1.85   reinoud 
   3640  1.85   reinoud 	/* synchronise device caches */
   3641  1.85   reinoud 	(void) udf_synchronise_caches(ump);
   3642  1.85   reinoud 
   3643  1.85   reinoud 	return error;
   3644  1.85   reinoud }
   3645  1.85   reinoud 
   3646  1.85   reinoud 
   3647  1.45   reinoud int
   3648  1.45   reinoud udf_open_logvol(struct udf_mount *ump)
   3649  1.45   reinoud {
   3650  1.45   reinoud 	int logvol_integrity;
   3651  1.45   reinoud 	int error;
   3652  1.45   reinoud 
   3653  1.45   reinoud 	/* already/still open? */
   3654  1.45   reinoud 	logvol_integrity = udf_rw32(ump->logvol_integrity->integrity_type);
   3655  1.45   reinoud 	if (logvol_integrity == UDF_INTEGRITY_OPEN)
   3656  1.45   reinoud 		return 0;
   3657  1.45   reinoud 
   3658  1.45   reinoud 	/* can we open it ? */
   3659  1.45   reinoud 	if (ump->vfs_mountp->mnt_flag & MNT_RDONLY)
   3660  1.45   reinoud 		return EROFS;
   3661  1.45   reinoud 
   3662  1.45   reinoud 	/* setup write parameters */
   3663  1.45   reinoud 	DPRINTF(VOLUMES, ("Setting up write parameters\n"));
   3664  1.45   reinoud 	if ((error = udf_setup_writeparams(ump)) != 0)
   3665  1.45   reinoud 		return error;
   3666  1.45   reinoud 
   3667  1.45   reinoud 	/* determine data and metadata tracks (most likely same) */
   3668  1.45   reinoud 	error = udf_search_writing_tracks(ump);
   3669  1.45   reinoud 	if (error) {
   3670  1.45   reinoud 		/* most likely lack of space */
   3671  1.45   reinoud 		printf("udf_open_logvol: error searching writing tracks\n");
   3672  1.45   reinoud 		return EROFS;
   3673  1.45   reinoud 	}
   3674  1.45   reinoud 
   3675  1.45   reinoud 	/* writeout/update lvint on disc or only in memory */
   3676  1.45   reinoud 	DPRINTF(VOLUMES, ("Opening logical volume\n"));
   3677  1.45   reinoud 	if (ump->lvopen & UDF_OPEN_SESSION) {
   3678  1.85   reinoud 		/* TODO optional track reservation opening */
   3679  1.85   reinoud 		error = udf_validate_session_start(ump);
   3680  1.85   reinoud 		if (error)
   3681  1.85   reinoud 			return error;
   3682  1.45   reinoud 
   3683  1.45   reinoud 		/* determine data and metadata tracks again */
   3684  1.45   reinoud 		error = udf_search_writing_tracks(ump);
   3685  1.45   reinoud 	}
   3686  1.45   reinoud 
   3687  1.45   reinoud 	/* mark it open */
   3688  1.45   reinoud 	ump->logvol_integrity->integrity_type = udf_rw32(UDF_INTEGRITY_OPEN);
   3689  1.45   reinoud 
   3690  1.45   reinoud 	/* do we need to write it out? */
   3691  1.45   reinoud 	if (ump->lvopen & UDF_WRITE_LVINT) {
   3692  1.45   reinoud 		error = udf_writeout_lvint(ump, ump->lvopen);
   3693  1.45   reinoud 		/* if we couldn't write it mark it closed again */
   3694  1.45   reinoud 		if (error) {
   3695  1.45   reinoud 			ump->logvol_integrity->integrity_type =
   3696  1.45   reinoud 						udf_rw32(UDF_INTEGRITY_CLOSED);
   3697  1.45   reinoud 			return error;
   3698  1.45   reinoud 		}
   3699  1.45   reinoud 	}
   3700  1.45   reinoud 
   3701  1.45   reinoud 	return 0;
   3702  1.45   reinoud }
   3703  1.45   reinoud 
   3704  1.45   reinoud 
   3705  1.45   reinoud int
   3706  1.45   reinoud udf_close_logvol(struct udf_mount *ump, int mntflags)
   3707  1.45   reinoud {
   3708  1.85   reinoud 	struct vnode *devvp = ump->devvp;
   3709  1.85   reinoud 	struct mmc_op mmc_op;
   3710  1.45   reinoud 	int logvol_integrity;
   3711  1.70   reinoud 	int error = 0, error1 = 0, error2 = 0;
   3712  1.85   reinoud 	int tracknr;
   3713  1.85   reinoud 	int nvats, n, nok;
   3714  1.45   reinoud 
   3715  1.45   reinoud 	/* already/still closed? */
   3716  1.45   reinoud 	logvol_integrity = udf_rw32(ump->logvol_integrity->integrity_type);
   3717  1.45   reinoud 	if (logvol_integrity == UDF_INTEGRITY_CLOSED)
   3718  1.45   reinoud 		return 0;
   3719  1.45   reinoud 
   3720  1.45   reinoud 	/* writeout/update lvint or write out VAT */
   3721  1.85   reinoud 	DPRINTF(VOLUMES, ("udf_close_logvol: closing logical volume\n"));
   3722  1.85   reinoud #ifdef DIAGNOSTIC
   3723  1.85   reinoud 	if (ump->lvclose & UDF_CLOSE_SESSION)
   3724  1.85   reinoud 		KASSERT(ump->lvclose & UDF_WRITE_VAT);
   3725  1.85   reinoud #endif
   3726  1.85   reinoud 
   3727  1.45   reinoud 	if (ump->lvclose & UDF_WRITE_VAT) {
   3728  1.45   reinoud 		DPRINTF(VOLUMES, ("lvclose & UDF_WRITE_VAT\n"));
   3729  1.45   reinoud 
   3730  1.85   reinoud 		/* write out the VAT data and all its descriptors */
   3731  1.45   reinoud 		DPRINTF(VOLUMES, ("writeout vat_node\n"));
   3732  1.71   reinoud 		udf_writeout_vat(ump);
   3733  1.85   reinoud 		vflushbuf(ump->vat_node->vnode, 1 /* sync */);
   3734  1.85   reinoud 
   3735  1.85   reinoud 		(void) VOP_FSYNC(ump->vat_node->vnode,
   3736  1.85   reinoud 				FSCRED, FSYNC_WAIT, 0, 0);
   3737  1.45   reinoud 
   3738  1.85   reinoud 		if (ump->lvclose & UDF_CLOSE_SESSION) {
   3739  1.85   reinoud 			DPRINTF(VOLUMES, ("udf_close_logvol: closing session "
   3740  1.85   reinoud 				"as requested\n"));
   3741  1.85   reinoud 		}
   3742  1.85   reinoud 
   3743  1.85   reinoud 		/* at least two DVD packets and 3 CD-R packets */
   3744  1.85   reinoud 		nvats = 32;
   3745  1.85   reinoud 
   3746  1.85   reinoud #if notyet
   3747  1.85   reinoud 		/*
   3748  1.85   reinoud 		 * TODO calculate the available space and if the disc is
   3749  1.85   reinoud 		 * allmost full, write out till end-256-1 with banks, write
   3750  1.85   reinoud 		 * AVDP and fill up with VATs, then close session and close
   3751  1.85   reinoud 		 * disc.
   3752  1.85   reinoud 		 */
   3753  1.85   reinoud 		if (ump->lvclose & UDF_FINALISE_DISC) {
   3754  1.85   reinoud 			error = udf_write_phys_dscr_sync(ump, NULL,
   3755  1.85   reinoud 					UDF_C_FLOAT_DSCR,
   3756  1.85   reinoud 					(union dscrptr *) ump->anchors[0],
   3757  1.85   reinoud 					0, 0);
   3758  1.85   reinoud 			if (error)
   3759  1.85   reinoud 				printf("writeout of anchor failed!\n");
   3760  1.85   reinoud 
   3761  1.85   reinoud 			/* pad space with VAT ICBs */
   3762  1.85   reinoud 			nvats = 256;
   3763  1.85   reinoud 		}
   3764  1.85   reinoud #endif
   3765  1.85   reinoud 
   3766  1.85   reinoud 		/* write out a number of VAT nodes */
   3767  1.85   reinoud 		nok = 0;
   3768  1.85   reinoud 		for (n = 0; n < nvats; n++) {
   3769  1.85   reinoud 			/* will now only write last FE/EFE */
   3770  1.45   reinoud 			ump->vat_node->i_flags |= IN_MODIFIED;
   3771  1.45   reinoud 			error = VOP_FSYNC(ump->vat_node->vnode,
   3772  1.45   reinoud 					FSCRED, FSYNC_WAIT, 0, 0);
   3773  1.85   reinoud 			if (!error)
   3774  1.85   reinoud 				nok++;
   3775  1.85   reinoud 		}
   3776  1.85   reinoud 		if (nok < 14) {
   3777  1.85   reinoud 			/* arbitrary; but at least one or two CD frames */
   3778  1.85   reinoud 			printf("writeout of at least 14 VATs failed\n");
   3779  1.85   reinoud 			return error;
   3780  1.85   reinoud 		}
   3781  1.85   reinoud 	}
   3782  1.85   reinoud 
   3783  1.85   reinoud 	/* NOTE the disc is in a (minimal) valid state now; no erroring out */
   3784  1.85   reinoud 
   3785  1.85   reinoud 	/* finish closing of session */
   3786  1.85   reinoud 	if (ump->lvclose & UDF_CLOSE_SESSION) {
   3787  1.85   reinoud 		error = udf_validate_session_start(ump);
   3788  1.85   reinoud 		if (error)
   3789  1.85   reinoud 			return error;
   3790  1.85   reinoud 
   3791  1.85   reinoud 		/* close all associated tracks */
   3792  1.85   reinoud 		tracknr = ump->discinfo.first_track_last_session;
   3793  1.85   reinoud 		error = 0;
   3794  1.85   reinoud 		while (tracknr <= ump->discinfo.last_track_last_session) {
   3795  1.85   reinoud 			DPRINTF(VOLUMES, ("\tclosing possible open "
   3796  1.85   reinoud 				"track %d\n", tracknr));
   3797  1.85   reinoud 			memset(&mmc_op, 0, sizeof(mmc_op));
   3798  1.85   reinoud 			mmc_op.operation   = MMC_OP_CLOSETRACK;
   3799  1.85   reinoud 			mmc_op.mmc_profile = ump->discinfo.mmc_profile;
   3800  1.85   reinoud 			mmc_op.tracknr     = tracknr;
   3801  1.85   reinoud 			error = VOP_IOCTL(devvp, MMCOP, &mmc_op,
   3802  1.85   reinoud 					FKIOCTL, NOCRED);
   3803  1.85   reinoud 			if (error)
   3804  1.85   reinoud 				printf("udf_close_logvol: closing of "
   3805  1.85   reinoud 					"track %d failed\n", tracknr);
   3806  1.85   reinoud 			tracknr ++;
   3807  1.85   reinoud 		}
   3808  1.85   reinoud 		if (!error) {
   3809  1.85   reinoud 			DPRINTF(VOLUMES, ("closing session\n"));
   3810  1.85   reinoud 			memset(&mmc_op, 0, sizeof(mmc_op));
   3811  1.85   reinoud 			mmc_op.operation   = MMC_OP_CLOSESESSION;
   3812  1.85   reinoud 			mmc_op.mmc_profile = ump->discinfo.mmc_profile;
   3813  1.85   reinoud 			mmc_op.sessionnr   = ump->discinfo.num_sessions;
   3814  1.85   reinoud 			error = VOP_IOCTL(devvp, MMCOP, &mmc_op,
   3815  1.85   reinoud 					FKIOCTL, NOCRED);
   3816  1.85   reinoud 			if (error)
   3817  1.85   reinoud 				printf("udf_close_logvol: closing of session"
   3818  1.85   reinoud 						"failed\n");
   3819  1.45   reinoud 		}
   3820  1.85   reinoud 		if (!error)
   3821  1.85   reinoud 			ump->lvopen |= UDF_OPEN_SESSION;
   3822  1.45   reinoud 		if (error) {
   3823  1.85   reinoud 			printf("udf_close_logvol: leaving disc as it is\n");
   3824  1.85   reinoud 			ump->lvclose &= ~UDF_FINALISE_DISC;
   3825  1.45   reinoud 		}
   3826  1.45   reinoud 	}
   3827  1.45   reinoud 
   3828  1.85   reinoud 	if (ump->lvclose & UDF_FINALISE_DISC) {
   3829  1.85   reinoud 		memset(&mmc_op, 0, sizeof(mmc_op));
   3830  1.85   reinoud 		mmc_op.operation   = MMC_OP_FINALISEDISC;
   3831  1.85   reinoud 		mmc_op.mmc_profile = ump->discinfo.mmc_profile;
   3832  1.85   reinoud 		mmc_op.sessionnr   = ump->discinfo.num_sessions;
   3833  1.85   reinoud 		error = VOP_IOCTL(devvp, MMCOP, &mmc_op,
   3834  1.85   reinoud 				FKIOCTL, NOCRED);
   3835  1.85   reinoud 		if (error)
   3836  1.85   reinoud 			printf("udf_close_logvol: finalising disc"
   3837  1.85   reinoud 					"failed\n");
   3838  1.85   reinoud 	}
   3839  1.85   reinoud 
   3840  1.85   reinoud 	/* write out partition bitmaps if requested */
   3841  1.45   reinoud 	if (ump->lvclose & UDF_WRITE_PART_BITMAPS) {
   3842  1.70   reinoud 		/* sync writeout metadata spacetable if existing */
   3843  1.70   reinoud 		error1 = udf_write_metadata_partition_spacetable(ump, true);
   3844  1.70   reinoud 		if (error1)
   3845  1.70   reinoud 			printf( "udf_close_logvol: writeout of metadata space "
   3846  1.70   reinoud 				"bitmap failed\n");
   3847  1.70   reinoud 
   3848  1.68   reinoud 		/* sync writeout partition spacetables */
   3849  1.70   reinoud 		error2 = udf_write_physical_partition_spacetables(ump, true);
   3850  1.70   reinoud 		if (error2)
   3851  1.45   reinoud 			printf( "udf_close_logvol: writeout of space tables "
   3852  1.45   reinoud 				"failed\n");
   3853  1.70   reinoud 
   3854  1.70   reinoud 		if (error1 || error2)
   3855  1.70   reinoud 			return (error1 | error2);
   3856  1.70   reinoud 
   3857  1.45   reinoud 		ump->lvclose &= ~UDF_WRITE_PART_BITMAPS;
   3858  1.45   reinoud 	}
   3859  1.45   reinoud 
   3860  1.45   reinoud 	/* mark it closed */
   3861  1.45   reinoud 	ump->logvol_integrity->integrity_type = udf_rw32(UDF_INTEGRITY_CLOSED);
   3862  1.45   reinoud 
   3863  1.85   reinoud 	/* do we need to write out the logical volume integrity? */
   3864  1.45   reinoud 	if (ump->lvclose & UDF_WRITE_LVINT)
   3865  1.45   reinoud 		error = udf_writeout_lvint(ump, ump->lvopen);
   3866  1.45   reinoud 	if (error) {
   3867  1.45   reinoud 		/* HELP now what? mark it open again for now */
   3868  1.45   reinoud 		ump->logvol_integrity->integrity_type =
   3869  1.45   reinoud 			udf_rw32(UDF_INTEGRITY_OPEN);
   3870  1.45   reinoud 		return error;
   3871   1.9  christos 	}
   3872   1.1   reinoud 
   3873  1.45   reinoud 	(void) udf_synchronise_caches(ump);
   3874   1.1   reinoud 
   3875   1.1   reinoud 	return 0;
   3876   1.1   reinoud }
   3877   1.1   reinoud 
   3878   1.1   reinoud /* --------------------------------------------------------------------- */
   3879   1.1   reinoud 
   3880   1.1   reinoud /*
   3881  1.45   reinoud  * Genfs interfacing
   3882  1.45   reinoud  *
   3883  1.45   reinoud  * static const struct genfs_ops udf_genfsops = {
   3884  1.45   reinoud  * 	.gop_size = genfs_size,
   3885  1.45   reinoud  * 		size of transfers
   3886  1.45   reinoud  * 	.gop_alloc = udf_gop_alloc,
   3887  1.45   reinoud  * 		allocate len bytes at offset
   3888  1.45   reinoud  * 	.gop_write = genfs_gop_write,
   3889  1.45   reinoud  * 		putpages interface code
   3890  1.45   reinoud  * 	.gop_markupdate = udf_gop_markupdate,
   3891  1.45   reinoud  * 		set update/modify flags etc.
   3892  1.45   reinoud  * }
   3893  1.45   reinoud  */
   3894  1.45   reinoud 
   3895  1.45   reinoud /*
   3896  1.45   reinoud  * Genfs interface. These four functions are the only ones defined though not
   3897  1.45   reinoud  * documented... great....
   3898   1.1   reinoud  */
   3899   1.1   reinoud 
   3900  1.45   reinoud /*
   3901  1.45   reinoud  * Callback from genfs to allocate len bytes at offset off; only called when
   3902  1.45   reinoud  * filling up gaps in the allocation.
   3903  1.45   reinoud  */
   3904  1.63   reinoud /* XXX should we check if there is space enough in udf_gop_alloc? */
   3905   1.1   reinoud static int
   3906  1.45   reinoud udf_gop_alloc(struct vnode *vp, off_t off,
   3907  1.45   reinoud     off_t len, int flags, kauth_cred_t cred)
   3908  1.45   reinoud {
   3909  1.45   reinoud #if 0
   3910  1.45   reinoud 	struct udf_node *udf_node = VTOI(vp);
   3911  1.45   reinoud 	struct udf_mount *ump = udf_node->ump;
   3912  1.45   reinoud 	uint32_t lb_size, num_lb;
   3913  1.45   reinoud #endif
   3914  1.45   reinoud 
   3915  1.45   reinoud 	DPRINTF(NOTIMPL, ("udf_gop_alloc not implemented\n"));
   3916  1.45   reinoud 	DPRINTF(ALLOC, ("udf_gop_alloc called for %"PRIu64" bytes\n", len));
   3917  1.45   reinoud 
   3918  1.45   reinoud 	return 0;
   3919  1.45   reinoud }
   3920  1.45   reinoud 
   3921  1.45   reinoud 
   3922  1.45   reinoud /*
   3923  1.45   reinoud  * callback from genfs to update our flags
   3924  1.45   reinoud  */
   3925  1.45   reinoud static void
   3926  1.45   reinoud udf_gop_markupdate(struct vnode *vp, int flags)
   3927  1.45   reinoud {
   3928  1.45   reinoud 	struct udf_node *udf_node = VTOI(vp);
   3929  1.45   reinoud 	u_long mask = 0;
   3930  1.45   reinoud 
   3931  1.45   reinoud 	if ((flags & GOP_UPDATE_ACCESSED) != 0) {
   3932  1.45   reinoud 		mask = IN_ACCESS;
   3933  1.45   reinoud 	}
   3934  1.45   reinoud 	if ((flags & GOP_UPDATE_MODIFIED) != 0) {
   3935  1.45   reinoud 		if (vp->v_type == VREG) {
   3936  1.45   reinoud 			mask |= IN_CHANGE | IN_UPDATE;
   3937  1.45   reinoud 		} else {
   3938  1.45   reinoud 			mask |= IN_MODIFY;
   3939  1.45   reinoud 		}
   3940  1.45   reinoud 	}
   3941  1.45   reinoud 	if (mask) {
   3942  1.45   reinoud 		udf_node->i_flags |= mask;
   3943  1.45   reinoud 	}
   3944  1.45   reinoud }
   3945  1.45   reinoud 
   3946  1.45   reinoud 
   3947  1.45   reinoud static const struct genfs_ops udf_genfsops = {
   3948  1.45   reinoud 	.gop_size = genfs_size,
   3949  1.45   reinoud 	.gop_alloc = udf_gop_alloc,
   3950  1.45   reinoud 	.gop_write = genfs_gop_write_rwmap,
   3951  1.45   reinoud 	.gop_markupdate = udf_gop_markupdate,
   3952  1.45   reinoud };
   3953  1.45   reinoud 
   3954  1.45   reinoud 
   3955  1.45   reinoud /* --------------------------------------------------------------------- */
   3956  1.45   reinoud 
   3957  1.45   reinoud int
   3958  1.45   reinoud udf_write_terminator(struct udf_mount *ump, uint32_t sector)
   3959   1.1   reinoud {
   3960  1.45   reinoud 	union dscrptr *dscr;
   3961   1.1   reinoud 	int error;
   3962   1.1   reinoud 
   3963  1.83    cegger 	dscr = malloc(ump->discinfo.sector_size, M_TEMP, M_WAITOK|M_ZERO);
   3964  1.45   reinoud 	udf_inittag(ump, &dscr->tag, TAGID_TERM, sector);
   3965  1.45   reinoud 
   3966  1.45   reinoud 	/* CRC length for an anchor is 512 - tag length; defined in Ecma 167 */
   3967  1.45   reinoud 	dscr->tag.desc_crc_len = udf_rw16(512-UDF_DESC_TAG_LENGTH);
   3968  1.45   reinoud 	(void) udf_validate_tag_and_crc_sums(dscr);
   3969  1.45   reinoud 
   3970  1.45   reinoud 	error = udf_write_phys_dscr_sync(ump, NULL, UDF_C_DSCR,
   3971  1.45   reinoud 			dscr, sector, sector);
   3972  1.45   reinoud 
   3973  1.45   reinoud 	free(dscr, M_TEMP);
   3974  1.45   reinoud 
   3975  1.45   reinoud 	return error;
   3976  1.45   reinoud }
   3977  1.45   reinoud 
   3978  1.45   reinoud 
   3979  1.45   reinoud /* --------------------------------------------------------------------- */
   3980  1.45   reinoud 
   3981  1.45   reinoud /* UDF<->unix converters */
   3982  1.45   reinoud 
   3983  1.45   reinoud /* --------------------------------------------------------------------- */
   3984  1.45   reinoud 
   3985  1.45   reinoud static mode_t
   3986  1.45   reinoud udf_perm_to_unix_mode(uint32_t perm)
   3987  1.45   reinoud {
   3988  1.45   reinoud 	mode_t mode;
   3989  1.45   reinoud 
   3990  1.45   reinoud 	mode  = ((perm & UDF_FENTRY_PERM_USER_MASK)      );
   3991  1.45   reinoud 	mode |= ((perm & UDF_FENTRY_PERM_GRP_MASK  ) >> 2);
   3992  1.45   reinoud 	mode |= ((perm & UDF_FENTRY_PERM_OWNER_MASK) >> 4);
   3993  1.45   reinoud 
   3994  1.45   reinoud 	return mode;
   3995  1.45   reinoud }
   3996  1.45   reinoud 
   3997  1.45   reinoud /* --------------------------------------------------------------------- */
   3998  1.45   reinoud 
   3999  1.45   reinoud static uint32_t
   4000  1.45   reinoud unix_mode_to_udf_perm(mode_t mode)
   4001  1.45   reinoud {
   4002  1.45   reinoud 	uint32_t perm;
   4003  1.45   reinoud 
   4004  1.45   reinoud 	perm  = ((mode & S_IRWXO)     );
   4005  1.45   reinoud 	perm |= ((mode & S_IRWXG) << 2);
   4006  1.45   reinoud 	perm |= ((mode & S_IRWXU) << 4);
   4007  1.45   reinoud 	perm |= ((mode & S_IWOTH) << 3);
   4008  1.45   reinoud 	perm |= ((mode & S_IWGRP) << 5);
   4009  1.45   reinoud 	perm |= ((mode & S_IWUSR) << 7);
   4010  1.45   reinoud 
   4011  1.45   reinoud 	return perm;
   4012  1.45   reinoud }
   4013  1.45   reinoud 
   4014  1.45   reinoud /* --------------------------------------------------------------------- */
   4015  1.45   reinoud 
   4016  1.45   reinoud static uint32_t
   4017  1.45   reinoud udf_icb_to_unix_filetype(uint32_t icbftype)
   4018  1.45   reinoud {
   4019  1.45   reinoud 	switch (icbftype) {
   4020  1.45   reinoud 	case UDF_ICB_FILETYPE_DIRECTORY :
   4021  1.45   reinoud 	case UDF_ICB_FILETYPE_STREAMDIR :
   4022  1.45   reinoud 		return S_IFDIR;
   4023  1.45   reinoud 	case UDF_ICB_FILETYPE_FIFO :
   4024  1.45   reinoud 		return S_IFIFO;
   4025  1.45   reinoud 	case UDF_ICB_FILETYPE_CHARDEVICE :
   4026  1.45   reinoud 		return S_IFCHR;
   4027  1.45   reinoud 	case UDF_ICB_FILETYPE_BLOCKDEVICE :
   4028  1.45   reinoud 		return S_IFBLK;
   4029  1.45   reinoud 	case UDF_ICB_FILETYPE_RANDOMACCESS :
   4030  1.45   reinoud 	case UDF_ICB_FILETYPE_REALTIME :
   4031  1.45   reinoud 		return S_IFREG;
   4032  1.45   reinoud 	case UDF_ICB_FILETYPE_SYMLINK :
   4033  1.45   reinoud 		return S_IFLNK;
   4034  1.45   reinoud 	case UDF_ICB_FILETYPE_SOCKET :
   4035  1.45   reinoud 		return S_IFSOCK;
   4036  1.45   reinoud 	}
   4037  1.45   reinoud 	/* no idea what this is */
   4038  1.45   reinoud 	return 0;
   4039  1.45   reinoud }
   4040   1.1   reinoud 
   4041  1.45   reinoud /* --------------------------------------------------------------------- */
   4042   1.1   reinoud 
   4043  1.45   reinoud void
   4044  1.48   reinoud udf_to_unix_name(char *result, int result_len, char *id, int len,
   4045  1.48   reinoud 	struct charspec *chsp)
   4046  1.45   reinoud {
   4047  1.45   reinoud 	uint16_t   *raw_name, *unix_name;
   4048  1.45   reinoud 	uint16_t   *inchp, ch;
   4049  1.45   reinoud 	uint8_t	   *outchp;
   4050  1.45   reinoud 	const char *osta_id = "OSTA Compressed Unicode";
   4051  1.48   reinoud 	int         ucode_chars, nice_uchars, is_osta_typ0, nout;
   4052   1.1   reinoud 
   4053  1.45   reinoud 	raw_name = malloc(2048 * sizeof(uint16_t), M_UDFTEMP, M_WAITOK);
   4054  1.45   reinoud 	unix_name = raw_name + 1024;			/* split space in half */
   4055  1.45   reinoud 	assert(sizeof(char) == sizeof(uint8_t));
   4056  1.45   reinoud 	outchp = (uint8_t *) result;
   4057   1.1   reinoud 
   4058  1.45   reinoud 	is_osta_typ0  = (chsp->type == 0);
   4059  1.45   reinoud 	is_osta_typ0 &= (strcmp((char *) chsp->inf, osta_id) == 0);
   4060  1.45   reinoud 	if (is_osta_typ0) {
   4061  1.48   reinoud 		/* TODO clean up */
   4062  1.45   reinoud 		*raw_name = *unix_name = 0;
   4063  1.45   reinoud 		ucode_chars = udf_UncompressUnicode(len, (uint8_t *) id, raw_name);
   4064  1.45   reinoud 		ucode_chars = MIN(ucode_chars, UnicodeLength((unicode_t *) raw_name));
   4065  1.45   reinoud 		nice_uchars = UDFTransName(unix_name, raw_name, ucode_chars);
   4066  1.48   reinoud 		/* output UTF8 */
   4067  1.45   reinoud 		for (inchp = unix_name; nice_uchars>0; inchp++, nice_uchars--) {
   4068  1.45   reinoud 			ch = *inchp;
   4069  1.48   reinoud 			nout = wput_utf8(outchp, result_len, ch);
   4070  1.48   reinoud 			outchp += nout; result_len -= nout;
   4071  1.45   reinoud 			if (!ch) break;
   4072  1.45   reinoud 		}
   4073  1.45   reinoud 		*outchp++ = 0;
   4074   1.1   reinoud 	} else {
   4075  1.45   reinoud 		/* assume 8bit char length byte latin-1 */
   4076  1.45   reinoud 		assert(*id == 8);
   4077  1.48   reinoud 		assert(strlen((char *) (id+1)) <= MAXNAMLEN);
   4078  1.45   reinoud 		strncpy((char *) result, (char *) (id+1), strlen((char *) (id+1)));
   4079   1.9  christos 	}
   4080  1.45   reinoud 	free(raw_name, M_UDFTEMP);
   4081  1.45   reinoud }
   4082  1.45   reinoud 
   4083  1.45   reinoud /* --------------------------------------------------------------------- */
   4084   1.1   reinoud 
   4085  1.45   reinoud void
   4086  1.45   reinoud unix_to_udf_name(char *result, uint8_t *result_len, char const *name, int name_len,
   4087  1.45   reinoud 	struct charspec *chsp)
   4088  1.45   reinoud {
   4089  1.45   reinoud 	uint16_t   *raw_name;
   4090  1.45   reinoud 	uint16_t   *outchp;
   4091  1.45   reinoud 	const char *inchp;
   4092  1.45   reinoud 	const char *osta_id = "OSTA Compressed Unicode";
   4093  1.49  christos 	int         udf_chars, is_osta_typ0, bits;
   4094  1.49  christos 	size_t      cnt;
   4095   1.1   reinoud 
   4096  1.45   reinoud 	/* allocate temporary unicode-16 buffer */
   4097  1.45   reinoud 	raw_name = malloc(1024, M_UDFTEMP, M_WAITOK);
   4098   1.1   reinoud 
   4099  1.48   reinoud 	/* convert utf8 to unicode-16 */
   4100  1.45   reinoud 	*raw_name = 0;
   4101  1.45   reinoud 	inchp  = name;
   4102  1.45   reinoud 	outchp = raw_name;
   4103  1.48   reinoud 	bits = 8;
   4104  1.48   reinoud 	for (cnt = name_len, udf_chars = 0; cnt;) {
   4105  1.49  christos /*###3490 [cc] warning: passing argument 2 of 'wget_utf8' from incompatible pointer type%%%*/
   4106  1.48   reinoud 		*outchp = wget_utf8(&inchp, &cnt);
   4107  1.48   reinoud 		if (*outchp > 0xff)
   4108  1.48   reinoud 			bits=16;
   4109  1.48   reinoud 		outchp++;
   4110  1.48   reinoud 		udf_chars++;
   4111  1.45   reinoud 	}
   4112  1.48   reinoud 	/* null terminate just in case */
   4113  1.48   reinoud 	*outchp++ = 0;
   4114   1.1   reinoud 
   4115  1.45   reinoud 	is_osta_typ0  = (chsp->type == 0);
   4116  1.45   reinoud 	is_osta_typ0 &= (strcmp((char *) chsp->inf, osta_id) == 0);
   4117  1.45   reinoud 	if (is_osta_typ0) {
   4118  1.48   reinoud 		udf_chars = udf_CompressUnicode(udf_chars, bits,
   4119  1.45   reinoud 				(unicode_t *) raw_name,
   4120  1.45   reinoud 				(byte *) result);
   4121  1.45   reinoud 	} else {
   4122  1.48   reinoud 		printf("unix to udf name: no CHSP0 ?\n");
   4123  1.45   reinoud 		/* XXX assume 8bit char length byte latin-1 */
   4124  1.45   reinoud 		*result++ = 8; udf_chars = 1;
   4125  1.45   reinoud 		strncpy(result, name + 1, name_len);
   4126  1.45   reinoud 		udf_chars += name_len;
   4127   1.9  christos 	}
   4128  1.45   reinoud 	*result_len = udf_chars;
   4129  1.45   reinoud 	free(raw_name, M_UDFTEMP);
   4130  1.45   reinoud }
   4131  1.45   reinoud 
   4132  1.45   reinoud /* --------------------------------------------------------------------- */
   4133  1.45   reinoud 
   4134  1.45   reinoud void
   4135  1.45   reinoud udf_timestamp_to_timespec(struct udf_mount *ump,
   4136  1.45   reinoud 			  struct timestamp *timestamp,
   4137  1.45   reinoud 			  struct timespec  *timespec)
   4138  1.45   reinoud {
   4139  1.45   reinoud 	struct clock_ymdhms ymdhms;
   4140  1.45   reinoud 	uint32_t usecs, secs, nsecs;
   4141  1.45   reinoud 	uint16_t tz;
   4142  1.45   reinoud 
   4143  1.45   reinoud 	/* fill in ymdhms structure from timestamp */
   4144  1.45   reinoud 	memset(&ymdhms, 0, sizeof(ymdhms));
   4145  1.45   reinoud 	ymdhms.dt_year = udf_rw16(timestamp->year);
   4146  1.45   reinoud 	ymdhms.dt_mon  = timestamp->month;
   4147  1.45   reinoud 	ymdhms.dt_day  = timestamp->day;
   4148  1.45   reinoud 	ymdhms.dt_wday = 0; /* ? */
   4149  1.45   reinoud 	ymdhms.dt_hour = timestamp->hour;
   4150  1.45   reinoud 	ymdhms.dt_min  = timestamp->minute;
   4151  1.45   reinoud 	ymdhms.dt_sec  = timestamp->second;
   4152  1.45   reinoud 
   4153  1.45   reinoud 	secs = clock_ymdhms_to_secs(&ymdhms);
   4154  1.45   reinoud 	usecs = timestamp->usec +
   4155  1.45   reinoud 		100*timestamp->hund_usec + 10000*timestamp->centisec;
   4156  1.45   reinoud 	nsecs = usecs * 1000;
   4157   1.1   reinoud 
   4158   1.1   reinoud 	/*
   4159  1.45   reinoud 	 * Calculate the time zone.  The timezone is 12 bit signed 2's
   4160  1.45   reinoud 	 * compliment, so we gotta do some extra magic to handle it right.
   4161   1.1   reinoud 	 */
   4162  1.45   reinoud 	tz  = udf_rw16(timestamp->type_tz);
   4163  1.45   reinoud 	tz &= 0x0fff;			/* only lower 12 bits are significant */
   4164  1.45   reinoud 	if (tz & 0x0800)		/* sign extention */
   4165  1.45   reinoud 		tz |= 0xf000;
   4166   1.1   reinoud 
   4167  1.45   reinoud 	/* TODO check timezone conversion */
   4168  1.45   reinoud 	/* check if we are specified a timezone to convert */
   4169  1.45   reinoud 	if (udf_rw16(timestamp->type_tz) & 0x1000) {
   4170  1.45   reinoud 		if ((int16_t) tz != -2047)
   4171  1.45   reinoud 			secs -= (int16_t) tz * 60;
   4172   1.1   reinoud 	} else {
   4173  1.45   reinoud 		secs -= ump->mount_args.gmtoff;
   4174  1.45   reinoud 	}
   4175   1.1   reinoud 
   4176  1.45   reinoud 	timespec->tv_sec  = secs;
   4177  1.45   reinoud 	timespec->tv_nsec = nsecs;
   4178  1.45   reinoud }
   4179   1.1   reinoud 
   4180   1.1   reinoud 
   4181  1.45   reinoud void
   4182  1.45   reinoud udf_timespec_to_timestamp(struct timespec *timespec, struct timestamp *timestamp)
   4183  1.45   reinoud {
   4184  1.45   reinoud 	struct clock_ymdhms ymdhms;
   4185  1.45   reinoud 	uint32_t husec, usec, csec;
   4186   1.1   reinoud 
   4187  1.45   reinoud 	(void) clock_secs_to_ymdhms(timespec->tv_sec, &ymdhms);
   4188   1.1   reinoud 
   4189  1.58   reinoud 	usec   = timespec->tv_nsec / 1000;
   4190  1.58   reinoud 	husec  =  usec / 100;
   4191  1.58   reinoud 	usec  -= husec * 100;				/* only 0-99 in usec  */
   4192  1.58   reinoud 	csec   = husec / 100;				/* only 0-99 in csec  */
   4193  1.58   reinoud 	husec -=  csec * 100;				/* only 0-99 in husec */
   4194  1.45   reinoud 
   4195  1.45   reinoud 	/* set method 1 for CUT/GMT */
   4196  1.45   reinoud 	timestamp->type_tz	= udf_rw16((1<<12) + 0);
   4197  1.45   reinoud 	timestamp->year		= udf_rw16(ymdhms.dt_year);
   4198  1.45   reinoud 	timestamp->month	= ymdhms.dt_mon;
   4199  1.45   reinoud 	timestamp->day		= ymdhms.dt_day;
   4200  1.45   reinoud 	timestamp->hour		= ymdhms.dt_hour;
   4201  1.45   reinoud 	timestamp->minute	= ymdhms.dt_min;
   4202  1.45   reinoud 	timestamp->second	= ymdhms.dt_sec;
   4203  1.45   reinoud 	timestamp->centisec	= csec;
   4204  1.45   reinoud 	timestamp->hund_usec	= husec;
   4205  1.45   reinoud 	timestamp->usec		= usec;
   4206   1.1   reinoud }
   4207   1.1   reinoud 
   4208   1.1   reinoud /* --------------------------------------------------------------------- */
   4209   1.1   reinoud 
   4210  1.45   reinoud /*
   4211  1.45   reinoud  * Attribute and filetypes converters with get/set pairs
   4212  1.45   reinoud  */
   4213  1.45   reinoud 
   4214  1.45   reinoud uint32_t
   4215  1.45   reinoud udf_getaccessmode(struct udf_node *udf_node)
   4216   1.1   reinoud {
   4217  1.45   reinoud 	struct file_entry     *fe = udf_node->fe;;
   4218  1.45   reinoud 	struct extfile_entry *efe = udf_node->efe;
   4219  1.45   reinoud 	uint32_t udf_perm, icbftype;
   4220  1.45   reinoud 	uint32_t mode, ftype;
   4221  1.45   reinoud 	uint16_t icbflags;
   4222   1.1   reinoud 
   4223  1.45   reinoud 	UDF_LOCK_NODE(udf_node, 0);
   4224  1.45   reinoud 	if (fe) {
   4225  1.45   reinoud 		udf_perm = udf_rw32(fe->perm);
   4226  1.45   reinoud 		icbftype = fe->icbtag.file_type;
   4227  1.45   reinoud 		icbflags = udf_rw16(fe->icbtag.flags);
   4228  1.45   reinoud 	} else {
   4229  1.45   reinoud 		assert(udf_node->efe);
   4230  1.45   reinoud 		udf_perm = udf_rw32(efe->perm);
   4231  1.45   reinoud 		icbftype = efe->icbtag.file_type;
   4232  1.45   reinoud 		icbflags = udf_rw16(efe->icbtag.flags);
   4233  1.45   reinoud 	}
   4234   1.1   reinoud 
   4235  1.45   reinoud 	mode  = udf_perm_to_unix_mode(udf_perm);
   4236  1.45   reinoud 	ftype = udf_icb_to_unix_filetype(icbftype);
   4237   1.1   reinoud 
   4238  1.45   reinoud 	/* set suid, sgid, sticky from flags in fe/efe */
   4239  1.45   reinoud 	if (icbflags & UDF_ICB_TAG_FLAGS_SETUID)
   4240  1.45   reinoud 		mode |= S_ISUID;
   4241  1.45   reinoud 	if (icbflags & UDF_ICB_TAG_FLAGS_SETGID)
   4242  1.45   reinoud 		mode |= S_ISGID;
   4243  1.45   reinoud 	if (icbflags & UDF_ICB_TAG_FLAGS_STICKY)
   4244  1.45   reinoud 		mode |= S_ISVTX;
   4245   1.1   reinoud 
   4246  1.45   reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
   4247   1.1   reinoud 
   4248  1.45   reinoud 	return mode | ftype;
   4249   1.1   reinoud }
   4250   1.1   reinoud 
   4251   1.1   reinoud 
   4252  1.45   reinoud void
   4253  1.45   reinoud udf_setaccessmode(struct udf_node *udf_node, mode_t mode)
   4254   1.1   reinoud {
   4255  1.45   reinoud 	struct file_entry    *fe  = udf_node->fe;
   4256  1.45   reinoud 	struct extfile_entry *efe = udf_node->efe;
   4257  1.45   reinoud 	uint32_t udf_perm;
   4258  1.45   reinoud 	uint16_t icbflags;
   4259  1.45   reinoud 
   4260  1.45   reinoud 	UDF_LOCK_NODE(udf_node, 0);
   4261  1.45   reinoud 	udf_perm = unix_mode_to_udf_perm(mode & ALLPERMS);
   4262  1.45   reinoud 	if (fe) {
   4263  1.45   reinoud 		icbflags = udf_rw16(fe->icbtag.flags);
   4264  1.45   reinoud 	} else {
   4265  1.45   reinoud 		icbflags = udf_rw16(efe->icbtag.flags);
   4266  1.45   reinoud 	}
   4267   1.1   reinoud 
   4268  1.45   reinoud 	icbflags &= ~UDF_ICB_TAG_FLAGS_SETUID;
   4269  1.45   reinoud 	icbflags &= ~UDF_ICB_TAG_FLAGS_SETGID;
   4270  1.45   reinoud 	icbflags &= ~UDF_ICB_TAG_FLAGS_STICKY;
   4271  1.45   reinoud 	if (mode & S_ISUID)
   4272  1.45   reinoud 		icbflags |= UDF_ICB_TAG_FLAGS_SETUID;
   4273  1.45   reinoud 	if (mode & S_ISGID)
   4274  1.45   reinoud 		icbflags |= UDF_ICB_TAG_FLAGS_SETGID;
   4275  1.45   reinoud 	if (mode & S_ISVTX)
   4276  1.45   reinoud 		icbflags |= UDF_ICB_TAG_FLAGS_STICKY;
   4277   1.1   reinoud 
   4278  1.45   reinoud 	if (fe) {
   4279  1.45   reinoud 		fe->perm  = udf_rw32(udf_perm);
   4280  1.45   reinoud 		fe->icbtag.flags  = udf_rw16(icbflags);
   4281  1.45   reinoud 	} else {
   4282  1.45   reinoud 		efe->perm = udf_rw32(udf_perm);
   4283  1.45   reinoud 		efe->icbtag.flags = udf_rw16(icbflags);
   4284   1.9  christos 	}
   4285   1.1   reinoud 
   4286  1.45   reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
   4287   1.1   reinoud }
   4288   1.1   reinoud 
   4289   1.1   reinoud 
   4290  1.45   reinoud void
   4291  1.45   reinoud udf_getownership(struct udf_node *udf_node, uid_t *uidp, gid_t *gidp)
   4292  1.26   reinoud {
   4293  1.45   reinoud 	struct udf_mount     *ump = udf_node->ump;
   4294  1.45   reinoud 	struct file_entry    *fe  = udf_node->fe;
   4295  1.45   reinoud 	struct extfile_entry *efe = udf_node->efe;
   4296  1.45   reinoud 	uid_t uid;
   4297  1.45   reinoud 	gid_t gid;
   4298  1.26   reinoud 
   4299  1.45   reinoud 	UDF_LOCK_NODE(udf_node, 0);
   4300  1.45   reinoud 	if (fe) {
   4301  1.45   reinoud 		uid = (uid_t)udf_rw32(fe->uid);
   4302  1.45   reinoud 		gid = (gid_t)udf_rw32(fe->gid);
   4303  1.45   reinoud 	} else {
   4304  1.45   reinoud 		assert(udf_node->efe);
   4305  1.45   reinoud 		uid = (uid_t)udf_rw32(efe->uid);
   4306  1.45   reinoud 		gid = (gid_t)udf_rw32(efe->gid);
   4307  1.45   reinoud 	}
   4308  1.45   reinoud 
   4309  1.45   reinoud 	/* do the uid/gid translation game */
   4310  1.76   reinoud 	if (uid == (uid_t) -1)
   4311  1.45   reinoud 		uid = ump->mount_args.anon_uid;
   4312  1.76   reinoud 	if (gid == (gid_t) -1)
   4313  1.45   reinoud 		gid = ump->mount_args.anon_gid;
   4314  1.76   reinoud 
   4315  1.45   reinoud 	*uidp = uid;
   4316  1.45   reinoud 	*gidp = gid;
   4317  1.45   reinoud 
   4318  1.45   reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
   4319  1.45   reinoud }
   4320  1.26   reinoud 
   4321  1.26   reinoud 
   4322  1.45   reinoud void
   4323  1.45   reinoud udf_setownership(struct udf_node *udf_node, uid_t uid, gid_t gid)
   4324  1.45   reinoud {
   4325  1.45   reinoud 	struct udf_mount     *ump = udf_node->ump;
   4326  1.45   reinoud 	struct file_entry    *fe  = udf_node->fe;
   4327  1.45   reinoud 	struct extfile_entry *efe = udf_node->efe;
   4328  1.45   reinoud 	uid_t nobody_uid;
   4329  1.45   reinoud 	gid_t nobody_gid;
   4330  1.45   reinoud 
   4331  1.45   reinoud 	UDF_LOCK_NODE(udf_node, 0);
   4332  1.45   reinoud 
   4333  1.45   reinoud 	/* do the uid/gid translation game */
   4334  1.45   reinoud 	nobody_uid = ump->mount_args.nobody_uid;
   4335  1.45   reinoud 	nobody_gid = ump->mount_args.nobody_gid;
   4336  1.76   reinoud 	if (uid == nobody_uid)
   4337  1.45   reinoud 		uid = (uid_t) -1;
   4338  1.76   reinoud 	if (gid == nobody_gid)
   4339  1.45   reinoud 		gid = (gid_t) -1;
   4340  1.26   reinoud 
   4341  1.45   reinoud 	if (fe) {
   4342  1.45   reinoud 		fe->uid  = udf_rw32((uint32_t) uid);
   4343  1.45   reinoud 		fe->gid  = udf_rw32((uint32_t) gid);
   4344  1.26   reinoud 	} else {
   4345  1.45   reinoud 		efe->uid = udf_rw32((uint32_t) uid);
   4346  1.45   reinoud 		efe->gid = udf_rw32((uint32_t) gid);
   4347  1.26   reinoud 	}
   4348  1.45   reinoud 
   4349  1.45   reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
   4350  1.26   reinoud }
   4351  1.45   reinoud 
   4352  1.26   reinoud 
   4353  1.26   reinoud /* --------------------------------------------------------------------- */
   4354  1.26   reinoud 
   4355  1.59   reinoud 
   4356  1.59   reinoud static int
   4357  1.73   reinoud dirhash_fill(struct udf_node *dir_node)
   4358   1.1   reinoud {
   4359  1.59   reinoud 	struct vnode *dvp = dir_node->vnode;
   4360  1.73   reinoud 	struct dirhash *dirh;
   4361  1.45   reinoud 	struct file_entry    *fe  = dir_node->fe;
   4362  1.45   reinoud 	struct extfile_entry *efe = dir_node->efe;
   4363  1.45   reinoud 	struct fileid_desc *fid;
   4364  1.45   reinoud 	struct dirent *dirent;
   4365  1.59   reinoud 	uint64_t file_size, pre_diroffset, diroffset;
   4366  1.45   reinoud 	uint32_t lb_size;
   4367  1.59   reinoud 	int error;
   4368  1.59   reinoud 
   4369  1.66   reinoud 	/* make sure we have a dirhash to work on */
   4370  1.66   reinoud 	dirh = dir_node->dir_hash;
   4371  1.66   reinoud 	KASSERT(dirh);
   4372  1.66   reinoud 	KASSERT(dirh->refcnt > 0);
   4373  1.66   reinoud 
   4374  1.73   reinoud 	if (dirh->flags & DIRH_BROKEN)
   4375  1.59   reinoud 		return EIO;
   4376  1.73   reinoud 	if (dirh->flags & DIRH_COMPLETE)
   4377  1.59   reinoud 		return 0;
   4378  1.59   reinoud 
   4379  1.66   reinoud 	/* make sure we have a clean dirhash to add to */
   4380  1.73   reinoud 	dirhash_purge_entries(dirh);
   4381  1.45   reinoud 
   4382  1.45   reinoud 	/* get directory filesize */
   4383  1.45   reinoud 	if (fe) {
   4384  1.45   reinoud 		file_size = udf_rw64(fe->inf_len);
   4385  1.45   reinoud 	} else {
   4386  1.45   reinoud 		assert(efe);
   4387  1.45   reinoud 		file_size = udf_rw64(efe->inf_len);
   4388  1.45   reinoud 	}
   4389  1.45   reinoud 
   4390  1.45   reinoud 	/* allocate temporary space for fid */
   4391  1.45   reinoud 	lb_size = udf_rw32(dir_node->ump->logical_vol->lb_size);
   4392  1.45   reinoud 	fid = malloc(lb_size, M_UDFTEMP, M_WAITOK);
   4393   1.1   reinoud 
   4394  1.59   reinoud 	/* allocate temporary space for dirent */
   4395  1.59   reinoud 	dirent = malloc(sizeof(struct dirent), M_UDFTEMP, M_WAITOK);
   4396  1.59   reinoud 
   4397  1.59   reinoud 	error = 0;
   4398  1.59   reinoud 	diroffset = 0;
   4399  1.59   reinoud 	while (diroffset < file_size) {
   4400  1.59   reinoud 		/* transfer a new fid/dirent */
   4401  1.59   reinoud 		pre_diroffset = diroffset;
   4402  1.59   reinoud 		error = udf_read_fid_stream(dvp, &diroffset, fid, dirent);
   4403  1.59   reinoud 		if (error) {
   4404  1.59   reinoud 			/* TODO what to do? continue but not add? */
   4405  1.73   reinoud 			dirh->flags |= DIRH_BROKEN;
   4406  1.73   reinoud 			dirhash_purge_entries(dirh);
   4407  1.59   reinoud 			break;
   4408  1.59   reinoud 		}
   4409   1.1   reinoud 
   4410  1.59   reinoud 		if ((fid->file_char & UDF_FILE_CHAR_DEL)) {
   4411  1.59   reinoud 			/* register deleted extent for reuse */
   4412  1.73   reinoud 			dirhash_enter_freed(dirh, pre_diroffset,
   4413  1.59   reinoud 				udf_fidsize(fid));
   4414  1.59   reinoud 		} else {
   4415  1.59   reinoud 			/* append to the dirhash */
   4416  1.73   reinoud 			dirhash_enter(dirh, dirent, pre_diroffset,
   4417  1.59   reinoud 				udf_fidsize(fid), 0);
   4418  1.59   reinoud 		}
   4419   1.9  christos 	}
   4420  1.73   reinoud 	dirh->flags |= DIRH_COMPLETE;
   4421  1.59   reinoud 
   4422  1.59   reinoud 	free(fid, M_UDFTEMP);
   4423  1.59   reinoud 	free(dirent, M_UDFTEMP);
   4424  1.59   reinoud 
   4425  1.59   reinoud 	return error;
   4426  1.59   reinoud }
   4427  1.59   reinoud 
   4428  1.59   reinoud 
   4429  1.59   reinoud /* --------------------------------------------------------------------- */
   4430  1.59   reinoud 
   4431  1.59   reinoud /*
   4432  1.59   reinoud  * Directory read and manipulation functions.
   4433  1.59   reinoud  *
   4434  1.59   reinoud  */
   4435  1.59   reinoud 
   4436  1.59   reinoud int
   4437  1.59   reinoud udf_lookup_name_in_dir(struct vnode *vp, const char *name, int namelen,
   4438  1.59   reinoud        struct long_ad *icb_loc, int *found)
   4439  1.59   reinoud {
   4440  1.59   reinoud 	struct udf_node  *dir_node = VTOI(vp);
   4441  1.73   reinoud 	struct dirhash       *dirh;
   4442  1.73   reinoud 	struct dirhash_entry *dirh_ep;
   4443  1.59   reinoud 	struct fileid_desc *fid;
   4444  1.59   reinoud 	struct dirent *dirent;
   4445  1.59   reinoud 	uint64_t diroffset;
   4446  1.59   reinoud 	uint32_t lb_size;
   4447  1.59   reinoud 	int hit, error;
   4448  1.59   reinoud 
   4449  1.59   reinoud 	/* set default return */
   4450  1.59   reinoud 	*found = 0;
   4451  1.59   reinoud 
   4452  1.66   reinoud 	/* get our dirhash and make sure its read in */
   4453  1.73   reinoud 	dirhash_get(&dir_node->dir_hash);
   4454  1.73   reinoud 	error = dirhash_fill(dir_node);
   4455  1.66   reinoud 	if (error) {
   4456  1.73   reinoud 		dirhash_put(dir_node->dir_hash);
   4457  1.59   reinoud 		return error;
   4458  1.66   reinoud 	}
   4459  1.73   reinoud 	dirh = dir_node->dir_hash;
   4460   1.1   reinoud 
   4461  1.59   reinoud 	/* allocate temporary space for fid */
   4462  1.59   reinoud 	lb_size = udf_rw32(dir_node->ump->logical_vol->lb_size);
   4463  1.59   reinoud 	fid     = malloc(lb_size, M_UDFTEMP, M_WAITOK);
   4464  1.59   reinoud 	dirent  = malloc(sizeof(struct dirent), M_UDFTEMP, M_WAITOK);
   4465  1.59   reinoud 
   4466  1.59   reinoud 	DPRINTF(DIRHASH, ("dirhash_lookup looking for `%*.*s`\n",
   4467  1.59   reinoud 		namelen, namelen, name));
   4468   1.1   reinoud 
   4469  1.59   reinoud 	/* search our dirhash hits */
   4470  1.59   reinoud 	memset(icb_loc, 0, sizeof(*icb_loc));
   4471  1.59   reinoud 	dirh_ep = NULL;
   4472  1.59   reinoud 	for (;;) {
   4473  1.73   reinoud 		hit = dirhash_lookup(dirh, name, namelen, &dirh_ep);
   4474  1.59   reinoud 		/* if no hit, abort the search */
   4475  1.59   reinoud 		if (!hit)
   4476  1.59   reinoud 			break;
   4477   1.1   reinoud 
   4478  1.59   reinoud 		/* check this hit */
   4479  1.59   reinoud 		diroffset = dirh_ep->offset;
   4480   1.1   reinoud 
   4481  1.45   reinoud 		/* transfer a new fid/dirent */
   4482  1.45   reinoud 		error = udf_read_fid_stream(vp, &diroffset, fid, dirent);
   4483   1.1   reinoud 		if (error)
   4484   1.1   reinoud 			break;
   4485   1.1   reinoud 
   4486  1.59   reinoud 		DPRINTF(DIRHASH, ("dirhash_lookup\tchecking `%*.*s`\n",
   4487  1.59   reinoud 			dirent->d_namlen, dirent->d_namlen, dirent->d_name));
   4488   1.1   reinoud 
   4489  1.59   reinoud 		/* see if its our entry */
   4490  1.59   reinoud 		KASSERT(dirent->d_namlen == namelen);
   4491  1.59   reinoud 		if (strncmp(dirent->d_name, name, namelen) == 0) {
   4492  1.59   reinoud 			*found = 1;
   4493  1.59   reinoud 			*icb_loc = fid->icb;
   4494  1.45   reinoud 			break;
   4495   1.9  christos 		}
   4496  1.45   reinoud 	}
   4497  1.45   reinoud 	free(fid, M_UDFTEMP);
   4498  1.45   reinoud 	free(dirent, M_UDFTEMP);
   4499   1.1   reinoud 
   4500  1.73   reinoud 	dirhash_put(dir_node->dir_hash);
   4501  1.66   reinoud 
   4502  1.59   reinoud 	return error;
   4503  1.45   reinoud }
   4504   1.1   reinoud 
   4505  1.45   reinoud /* --------------------------------------------------------------------- */
   4506   1.1   reinoud 
   4507  1.45   reinoud static int
   4508  1.45   reinoud udf_create_new_fe(struct udf_mount *ump, struct file_entry *fe, int file_type,
   4509  1.45   reinoud 	struct long_ad *node_icb, struct long_ad *parent_icb,
   4510  1.45   reinoud 	uint64_t parent_unique_id)
   4511  1.45   reinoud {
   4512  1.45   reinoud 	struct timespec now;
   4513  1.45   reinoud 	struct icb_tag *icb;
   4514  1.51   reinoud 	struct filetimes_extattr_entry *ft_extattr;
   4515  1.45   reinoud 	uint64_t unique_id;
   4516  1.45   reinoud 	uint32_t fidsize, lb_num;
   4517  1.51   reinoud 	uint8_t *bpos;
   4518  1.51   reinoud 	int crclen, attrlen;
   4519  1.45   reinoud 
   4520  1.45   reinoud 	lb_num = udf_rw32(node_icb->loc.lb_num);
   4521  1.45   reinoud 	udf_inittag(ump, &fe->tag, TAGID_FENTRY, lb_num);
   4522  1.45   reinoud 	icb = &fe->icbtag;
   4523   1.1   reinoud 
   4524   1.1   reinoud 	/*
   4525  1.45   reinoud 	 * Always use strategy type 4 unless on WORM wich we don't support
   4526  1.45   reinoud 	 * (yet). Fill in defaults and set for internal allocation of data.
   4527   1.1   reinoud 	 */
   4528  1.45   reinoud 	icb->strat_type      = udf_rw16(4);
   4529  1.45   reinoud 	icb->max_num_entries = udf_rw16(1);
   4530  1.45   reinoud 	icb->file_type       = file_type;	/* 8 bit */
   4531  1.45   reinoud 	icb->flags           = udf_rw16(UDF_ICB_INTERN_ALLOC);
   4532  1.45   reinoud 
   4533  1.45   reinoud 	fe->perm     = udf_rw32(0x7fff);	/* all is allowed   */
   4534  1.45   reinoud 	fe->link_cnt = udf_rw16(0);		/* explicit setting */
   4535   1.1   reinoud 
   4536  1.45   reinoud 	fe->ckpoint  = udf_rw32(1);		/* user supplied file version */
   4537  1.45   reinoud 
   4538  1.45   reinoud 	vfs_timestamp(&now);
   4539  1.45   reinoud 	udf_timespec_to_timestamp(&now, &fe->atime);
   4540  1.45   reinoud 	udf_timespec_to_timestamp(&now, &fe->attrtime);
   4541  1.45   reinoud 	udf_timespec_to_timestamp(&now, &fe->mtime);
   4542   1.1   reinoud 
   4543  1.45   reinoud 	udf_set_regid(&fe->imp_id, IMPL_NAME);
   4544  1.45   reinoud 	udf_add_impl_regid(ump, &fe->imp_id);
   4545   1.1   reinoud 
   4546  1.45   reinoud 	unique_id = udf_advance_uniqueid(ump);
   4547  1.45   reinoud 	fe->unique_id = udf_rw64(unique_id);
   4548  1.51   reinoud 	fe->l_ea = udf_rw32(0);
   4549  1.51   reinoud 
   4550  1.51   reinoud 	/* create extended attribute to record our creation time */
   4551  1.51   reinoud 	attrlen = UDF_FILETIMES_ATTR_SIZE(1);
   4552  1.51   reinoud 	ft_extattr = malloc(attrlen, M_UDFTEMP, M_WAITOK);
   4553  1.51   reinoud 	memset(ft_extattr, 0, attrlen);
   4554  1.51   reinoud 	ft_extattr->hdr.type = udf_rw32(UDF_FILETIMES_ATTR_NO);
   4555  1.51   reinoud 	ft_extattr->hdr.subtype = 1;	/* [4/48.10.5] */
   4556  1.51   reinoud 	ft_extattr->hdr.a_l = udf_rw32(UDF_FILETIMES_ATTR_SIZE(1));
   4557  1.51   reinoud 	ft_extattr->d_l     = udf_rw32(UDF_TIMESTAMP_SIZE); /* one item */
   4558  1.51   reinoud 	ft_extattr->existence = UDF_FILETIMES_FILE_CREATION;
   4559  1.51   reinoud 	udf_timespec_to_timestamp(&now, &ft_extattr->times[0]);
   4560  1.51   reinoud 
   4561  1.51   reinoud 	udf_extattr_insert_internal(ump, (union dscrptr *) fe,
   4562  1.51   reinoud 		(struct extattr_entry *) ft_extattr);
   4563  1.51   reinoud 	free(ft_extattr, M_UDFTEMP);
   4564   1.1   reinoud 
   4565  1.51   reinoud 	/* if its a directory, create '..' */
   4566  1.51   reinoud 	bpos = (uint8_t *) fe->data + udf_rw32(fe->l_ea);
   4567  1.45   reinoud 	fidsize = 0;
   4568  1.45   reinoud 	if (file_type == UDF_ICB_FILETYPE_DIRECTORY) {
   4569  1.45   reinoud 		fidsize = udf_create_parentfid(ump,
   4570  1.51   reinoud 			(struct fileid_desc *) bpos, parent_icb,
   4571  1.45   reinoud 			parent_unique_id);
   4572   1.9  christos 	}
   4573   1.1   reinoud 
   4574  1.45   reinoud 	/* record fidlength information */
   4575  1.45   reinoud 	fe->inf_len = udf_rw64(fidsize);
   4576  1.45   reinoud 	fe->l_ad    = udf_rw32(fidsize);
   4577  1.45   reinoud 	fe->logblks_rec = udf_rw64(0);		/* intern */
   4578  1.45   reinoud 
   4579  1.45   reinoud 	crclen  = sizeof(struct file_entry) - 1 - UDF_DESC_TAG_LENGTH;
   4580  1.51   reinoud 	crclen += udf_rw32(fe->l_ea) + fidsize;
   4581  1.45   reinoud 	fe->tag.desc_crc_len = udf_rw16(crclen);
   4582   1.1   reinoud 
   4583  1.45   reinoud 	(void) udf_validate_tag_and_crc_sums((union dscrptr *) fe);
   4584   1.1   reinoud 
   4585  1.45   reinoud 	return fidsize;
   4586   1.1   reinoud }
   4587   1.1   reinoud 
   4588   1.1   reinoud /* --------------------------------------------------------------------- */
   4589   1.1   reinoud 
   4590  1.45   reinoud static int
   4591  1.45   reinoud udf_create_new_efe(struct udf_mount *ump, struct extfile_entry *efe,
   4592  1.45   reinoud 	int file_type, struct long_ad *node_icb, struct long_ad *parent_icb,
   4593  1.45   reinoud 	uint64_t parent_unique_id)
   4594  1.45   reinoud {
   4595  1.45   reinoud 	struct timespec now;
   4596  1.45   reinoud 	struct icb_tag *icb;
   4597  1.45   reinoud 	uint64_t unique_id;
   4598  1.45   reinoud 	uint32_t fidsize, lb_num;
   4599  1.51   reinoud 	uint8_t *bpos;
   4600  1.45   reinoud 	int crclen;
   4601  1.45   reinoud 
   4602  1.45   reinoud 	lb_num = udf_rw32(node_icb->loc.lb_num);
   4603  1.45   reinoud 	udf_inittag(ump, &efe->tag, TAGID_EXTFENTRY, lb_num);
   4604  1.45   reinoud 	icb = &efe->icbtag;
   4605  1.45   reinoud 
   4606  1.45   reinoud 	/*
   4607  1.45   reinoud 	 * Always use strategy type 4 unless on WORM wich we don't support
   4608  1.45   reinoud 	 * (yet). Fill in defaults and set for internal allocation of data.
   4609  1.45   reinoud 	 */
   4610  1.45   reinoud 	icb->strat_type      = udf_rw16(4);
   4611  1.45   reinoud 	icb->max_num_entries = udf_rw16(1);
   4612  1.45   reinoud 	icb->file_type       = file_type;	/* 8 bit */
   4613  1.45   reinoud 	icb->flags           = udf_rw16(UDF_ICB_INTERN_ALLOC);
   4614   1.1   reinoud 
   4615  1.45   reinoud 	efe->perm     = udf_rw32(0x7fff);	/* all is allowed   */
   4616  1.45   reinoud 	efe->link_cnt = udf_rw16(0);		/* explicit setting */
   4617   1.1   reinoud 
   4618  1.45   reinoud 	efe->ckpoint  = udf_rw32(1);		/* user supplied file version */
   4619   1.1   reinoud 
   4620  1.45   reinoud 	vfs_timestamp(&now);
   4621  1.45   reinoud 	udf_timespec_to_timestamp(&now, &efe->ctime);
   4622  1.45   reinoud 	udf_timespec_to_timestamp(&now, &efe->atime);
   4623  1.45   reinoud 	udf_timespec_to_timestamp(&now, &efe->attrtime);
   4624  1.45   reinoud 	udf_timespec_to_timestamp(&now, &efe->mtime);
   4625  1.26   reinoud 
   4626  1.45   reinoud 	udf_set_regid(&efe->imp_id, IMPL_NAME);
   4627  1.45   reinoud 	udf_add_impl_regid(ump, &efe->imp_id);
   4628   1.1   reinoud 
   4629  1.45   reinoud 	unique_id = udf_advance_uniqueid(ump);
   4630  1.45   reinoud 	efe->unique_id = udf_rw64(unique_id);
   4631  1.51   reinoud 	efe->l_ea = udf_rw32(0);
   4632   1.1   reinoud 
   4633  1.51   reinoud 	/* if its a directory, create '..' */
   4634  1.51   reinoud 	bpos = (uint8_t *) efe->data + udf_rw32(efe->l_ea);
   4635  1.45   reinoud 	fidsize = 0;
   4636  1.45   reinoud 	if (file_type == UDF_ICB_FILETYPE_DIRECTORY) {
   4637  1.45   reinoud 		fidsize = udf_create_parentfid(ump,
   4638  1.51   reinoud 			(struct fileid_desc *) bpos, parent_icb,
   4639  1.45   reinoud 			parent_unique_id);
   4640  1.45   reinoud 	}
   4641   1.1   reinoud 
   4642  1.45   reinoud 	/* record fidlength information */
   4643  1.45   reinoud 	efe->obj_size = udf_rw64(fidsize);
   4644  1.45   reinoud 	efe->inf_len  = udf_rw64(fidsize);
   4645  1.45   reinoud 	efe->l_ad     = udf_rw32(fidsize);
   4646  1.45   reinoud 	efe->logblks_rec = udf_rw64(0);		/* intern */
   4647   1.1   reinoud 
   4648  1.45   reinoud 	crclen  = sizeof(struct extfile_entry) - 1 - UDF_DESC_TAG_LENGTH;
   4649  1.51   reinoud 	crclen += udf_rw32(efe->l_ea) + fidsize;
   4650  1.45   reinoud 	efe->tag.desc_crc_len = udf_rw16(crclen);
   4651   1.1   reinoud 
   4652  1.45   reinoud 	(void) udf_validate_tag_and_crc_sums((union dscrptr *) efe);
   4653   1.1   reinoud 
   4654  1.45   reinoud 	return fidsize;
   4655   1.1   reinoud }
   4656   1.1   reinoud 
   4657   1.1   reinoud /* --------------------------------------------------------------------- */
   4658   1.1   reinoud 
   4659  1.45   reinoud int
   4660  1.45   reinoud udf_dir_detach(struct udf_mount *ump, struct udf_node *dir_node,
   4661  1.45   reinoud 	struct udf_node *udf_node, struct componentname *cnp)
   4662   1.1   reinoud {
   4663  1.59   reinoud 	struct vnode *dvp = dir_node->vnode;
   4664  1.73   reinoud 	struct dirhash       *dirh;
   4665  1.73   reinoud 	struct dirhash_entry *dirh_ep;
   4666  1.45   reinoud 	struct file_entry    *fe  = dir_node->fe;
   4667  1.45   reinoud 	struct extfile_entry *efe = dir_node->efe;
   4668  1.45   reinoud 	struct fileid_desc *fid;
   4669  1.45   reinoud 	struct dirent *dirent;
   4670  1.45   reinoud 	uint64_t file_size, diroffset;
   4671  1.45   reinoud 	uint32_t lb_size, fidsize;
   4672  1.45   reinoud 	int found, error;
   4673  1.45   reinoud 	char const *name  = cnp->cn_nameptr;
   4674  1.45   reinoud 	int namelen = cnp->cn_namelen;
   4675  1.59   reinoud 	int hit, refcnt;
   4676   1.1   reinoud 
   4677  1.66   reinoud 	/* get our dirhash and make sure its read in */
   4678  1.73   reinoud 	dirhash_get(&dir_node->dir_hash);
   4679  1.73   reinoud 	error = dirhash_fill(dir_node);
   4680  1.66   reinoud 	if (error) {
   4681  1.73   reinoud 		dirhash_put(dir_node->dir_hash);
   4682  1.66   reinoud 		return error;
   4683  1.66   reinoud 	}
   4684  1.73   reinoud 	dirh = dir_node->dir_hash;
   4685  1.66   reinoud 
   4686  1.45   reinoud 	/* get directory filesize */
   4687  1.45   reinoud 	if (fe) {
   4688  1.45   reinoud 		file_size = udf_rw64(fe->inf_len);
   4689  1.45   reinoud 	} else {
   4690  1.45   reinoud 		assert(efe);
   4691  1.45   reinoud 		file_size = udf_rw64(efe->inf_len);
   4692  1.45   reinoud 	}
   4693   1.1   reinoud 
   4694  1.45   reinoud 	/* allocate temporary space for fid */
   4695  1.45   reinoud 	lb_size = udf_rw32(dir_node->ump->logical_vol->lb_size);
   4696  1.59   reinoud 	fid     = malloc(lb_size, M_UDFTEMP, M_WAITOK);
   4697  1.59   reinoud 	dirent  = malloc(sizeof(struct dirent), M_UDFTEMP, M_WAITOK);
   4698   1.1   reinoud 
   4699  1.59   reinoud 	/* search our dirhash hits */
   4700  1.45   reinoud 	found = 0;
   4701  1.59   reinoud 	dirh_ep = NULL;
   4702  1.59   reinoud 	for (;;) {
   4703  1.73   reinoud 		hit = dirhash_lookup(dirh, name, namelen, &dirh_ep);
   4704  1.59   reinoud 		/* if no hit, abort the search */
   4705  1.59   reinoud 		if (!hit)
   4706  1.59   reinoud 			break;
   4707   1.1   reinoud 
   4708  1.59   reinoud 		/* check this hit */
   4709  1.59   reinoud 		diroffset = dirh_ep->offset;
   4710   1.1   reinoud 
   4711  1.45   reinoud 		/* transfer a new fid/dirent */
   4712  1.59   reinoud 		error = udf_read_fid_stream(dvp, &diroffset, fid, dirent);
   4713  1.45   reinoud 		if (error)
   4714  1.45   reinoud 			break;
   4715   1.1   reinoud 
   4716  1.59   reinoud 		/* see if its our entry */
   4717  1.59   reinoud 		KASSERT(dirent->d_namlen == namelen);
   4718  1.59   reinoud 		if (strncmp(dirent->d_name, name, namelen) == 0) {
   4719  1.59   reinoud 			found = 1;
   4720  1.45   reinoud 			break;
   4721  1.45   reinoud 		}
   4722  1.45   reinoud 	}
   4723  1.59   reinoud 
   4724  1.59   reinoud 	if (!found)
   4725  1.59   reinoud 		error = ENOENT;
   4726  1.59   reinoud 	if (error)
   4727  1.59   reinoud 		goto error_out;
   4728   1.1   reinoud 
   4729  1.45   reinoud 	/* mark deleted */
   4730  1.45   reinoud 	fid->file_char |= UDF_FILE_CHAR_DEL;
   4731  1.45   reinoud #ifdef UDF_COMPLETE_DELETE
   4732  1.45   reinoud 	memset(&fid->icb, 0, sizeof(fid->icb));
   4733  1.45   reinoud #endif
   4734  1.45   reinoud 	(void) udf_validate_tag_and_crc_sums((union dscrptr *) fid);
   4735   1.1   reinoud 
   4736  1.59   reinoud 	/* get size of fid and compensate for the read_fid_stream advance */
   4737  1.45   reinoud 	fidsize = udf_fidsize(fid);
   4738  1.45   reinoud 	diroffset -= fidsize;
   4739  1.45   reinoud 
   4740  1.45   reinoud 	/* write out */
   4741  1.45   reinoud 	error = vn_rdwr(UIO_WRITE, dir_node->vnode,
   4742  1.45   reinoud 			fid, fidsize, diroffset,
   4743  1.45   reinoud 			UIO_SYSSPACE, IO_ALTSEMANTICS | IO_NODELOCKED,
   4744  1.45   reinoud 			FSCRED, NULL, NULL);
   4745  1.59   reinoud 	if (error)
   4746  1.59   reinoud 		goto error_out;
   4747  1.59   reinoud 
   4748  1.59   reinoud 	/* get reference count of attached node */
   4749  1.59   reinoud 	if (udf_node->fe) {
   4750  1.59   reinoud 		refcnt = udf_rw16(udf_node->fe->link_cnt);
   4751  1.59   reinoud 	} else {
   4752  1.59   reinoud 		KASSERT(udf_node->efe);
   4753  1.59   reinoud 		refcnt = udf_rw16(udf_node->efe->link_cnt);
   4754  1.59   reinoud 	}
   4755  1.45   reinoud #ifdef UDF_COMPLETE_DELETE
   4756  1.59   reinoud 	/* substract reference counter in attached node */
   4757  1.59   reinoud 	refcnt -= 1;
   4758  1.59   reinoud 	if (udf_node->fe) {
   4759  1.59   reinoud 		udf_node->fe->link_cnt = udf_rw16(refcnt);
   4760  1.59   reinoud 	} else {
   4761  1.59   reinoud 		udf_node->efe->link_cnt = udf_rw16(refcnt);
   4762  1.59   reinoud 	}
   4763  1.59   reinoud 
   4764  1.59   reinoud 	/* prevent writeout when refcnt == 0 */
   4765  1.59   reinoud 	if (refcnt == 0)
   4766  1.59   reinoud 		udf_node->i_flags |= IN_DELETED;
   4767  1.59   reinoud 
   4768  1.59   reinoud 	if (fid->file_char & UDF_FILE_CHAR_DIR) {
   4769  1.59   reinoud 		int drefcnt;
   4770  1.59   reinoud 
   4771  1.59   reinoud 		/* substract reference counter in directory node */
   4772  1.59   reinoud 		/* note subtract 2 (?) for its was also backreferenced */
   4773  1.59   reinoud 		if (dir_node->fe) {
   4774  1.59   reinoud 			drefcnt  = udf_rw16(dir_node->fe->link_cnt);
   4775  1.59   reinoud 			drefcnt -= 1;
   4776  1.59   reinoud 			dir_node->fe->link_cnt = udf_rw16(drefcnt);
   4777  1.45   reinoud 		} else {
   4778  1.59   reinoud 			KASSERT(dir_node->efe);
   4779  1.59   reinoud 			drefcnt  = udf_rw16(dir_node->efe->link_cnt);
   4780  1.59   reinoud 			drefcnt -= 1;
   4781  1.59   reinoud 			dir_node->efe->link_cnt = udf_rw16(drefcnt);
   4782  1.45   reinoud 		}
   4783  1.59   reinoud 	}
   4784   1.1   reinoud 
   4785  1.59   reinoud 	udf_node->i_flags |= IN_MODIFIED;
   4786  1.59   reinoud 	dir_node->i_flags |= IN_MODIFIED;
   4787  1.45   reinoud #endif
   4788  1.59   reinoud 	/* if it is/was a hardlink adjust the file count */
   4789  1.59   reinoud 	if (refcnt > 0)
   4790  1.59   reinoud 		udf_adjust_filecount(udf_node, -1);
   4791  1.59   reinoud 
   4792  1.59   reinoud 	/* remove from the dirhash */
   4793  1.73   reinoud 	dirhash_remove(dirh, dirent, diroffset,
   4794  1.59   reinoud 		udf_fidsize(fid));
   4795   1.1   reinoud 
   4796  1.59   reinoud error_out:
   4797  1.45   reinoud 	free(fid, M_UDFTEMP);
   4798  1.45   reinoud 	free(dirent, M_UDFTEMP);
   4799   1.1   reinoud 
   4800  1.73   reinoud 	dirhash_put(dir_node->dir_hash);
   4801  1.66   reinoud 
   4802  1.45   reinoud 	return error;
   4803   1.1   reinoud }
   4804   1.1   reinoud 
   4805   1.1   reinoud /* --------------------------------------------------------------------- */
   4806   1.1   reinoud 
   4807  1.45   reinoud /*
   4808  1.45   reinoud  * We are not allowed to split the fid tag itself over an logical block so
   4809  1.45   reinoud  * check the space remaining in the logical block.
   4810  1.45   reinoud  *
   4811  1.45   reinoud  * We try to select the smallest candidate for recycling or when none is
   4812  1.45   reinoud  * found, append a new one at the end of the directory.
   4813  1.45   reinoud  */
   4814  1.45   reinoud 
   4815   1.1   reinoud int
   4816  1.45   reinoud udf_dir_attach(struct udf_mount *ump, struct udf_node *dir_node,
   4817  1.45   reinoud 	struct udf_node *udf_node, struct vattr *vap, struct componentname *cnp)
   4818   1.1   reinoud {
   4819  1.45   reinoud 	struct vnode *dvp = dir_node->vnode;
   4820  1.73   reinoud 	struct dirhash       *dirh;
   4821  1.73   reinoud 	struct dirhash_entry *dirh_ep;
   4822  1.45   reinoud 	struct fileid_desc   *fid;
   4823  1.45   reinoud 	struct icb_tag       *icbtag;
   4824  1.45   reinoud 	struct charspec osta_charspec;
   4825  1.45   reinoud 	struct dirent   dirent;
   4826  1.74   reinoud 	uint64_t unique_id, dir_size;
   4827  1.45   reinoud 	uint64_t fid_pos, end_fid_pos, chosen_fid_pos;
   4828  1.45   reinoud 	uint32_t chosen_size, chosen_size_diff;
   4829  1.45   reinoud 	int lb_size, lb_rest, fidsize, this_fidsize, size_diff;
   4830  1.59   reinoud 	int file_char, refcnt, icbflags, addr_type, hit, error;
   4831  1.45   reinoud 
   4832  1.66   reinoud 	/* get our dirhash and make sure its read in */
   4833  1.73   reinoud 	dirhash_get(&dir_node->dir_hash);
   4834  1.73   reinoud 	error = dirhash_fill(dir_node);
   4835  1.66   reinoud 	if (error) {
   4836  1.73   reinoud 		dirhash_put(dir_node->dir_hash);
   4837  1.66   reinoud 		return error;
   4838  1.66   reinoud 	}
   4839  1.73   reinoud 	dirh = dir_node->dir_hash;
   4840  1.66   reinoud 
   4841  1.66   reinoud 	/* get info */
   4842  1.45   reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   4843  1.45   reinoud 	udf_osta_charset(&osta_charspec);
   4844  1.45   reinoud 
   4845  1.45   reinoud 	if (dir_node->fe) {
   4846  1.45   reinoud 		dir_size = udf_rw64(dir_node->fe->inf_len);
   4847  1.59   reinoud 		icbtag   = &dir_node->fe->icbtag;
   4848  1.45   reinoud 	} else {
   4849  1.45   reinoud 		dir_size = udf_rw64(dir_node->efe->inf_len);
   4850  1.59   reinoud 		icbtag   = &dir_node->efe->icbtag;
   4851  1.45   reinoud 	}
   4852   1.1   reinoud 
   4853  1.45   reinoud 	icbflags   = udf_rw16(icbtag->flags);
   4854  1.45   reinoud 	addr_type  = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   4855   1.1   reinoud 
   4856  1.45   reinoud 	if (udf_node->fe) {
   4857  1.45   reinoud 		unique_id = udf_rw64(udf_node->fe->unique_id);
   4858  1.59   reinoud 		refcnt    = udf_rw16(udf_node->fe->link_cnt);
   4859  1.45   reinoud 	} else {
   4860  1.45   reinoud 		unique_id = udf_rw64(udf_node->efe->unique_id);
   4861  1.59   reinoud 		refcnt    = udf_rw16(udf_node->efe->link_cnt);
   4862  1.45   reinoud 	}
   4863   1.1   reinoud 
   4864  1.45   reinoud 	if (refcnt > 0) {
   4865  1.45   reinoud 		unique_id = udf_advance_uniqueid(ump);
   4866  1.45   reinoud 		udf_adjust_filecount(udf_node, 1);
   4867   1.9  christos 	}
   4868   1.1   reinoud 
   4869  1.45   reinoud 	/* determine file characteristics */
   4870  1.45   reinoud 	file_char = 0;	/* visible non deleted file and not stream metadata */
   4871  1.45   reinoud 	if (vap->va_type == VDIR)
   4872  1.45   reinoud 		file_char = UDF_FILE_CHAR_DIR;
   4873  1.45   reinoud 
   4874  1.45   reinoud 	/* malloc scrap buffer */
   4875  1.83    cegger 	fid = malloc(lb_size, M_TEMP, M_WAITOK|M_ZERO);
   4876  1.45   reinoud 
   4877  1.45   reinoud 	/* calculate _minimum_ fid size */
   4878  1.45   reinoud 	unix_to_udf_name((char *) fid->data, &fid->l_fi,
   4879  1.45   reinoud 		cnp->cn_nameptr, cnp->cn_namelen, &osta_charspec);
   4880  1.45   reinoud 	fidsize = UDF_FID_SIZE + fid->l_fi;
   4881  1.45   reinoud 	fidsize = (fidsize + 3) & ~3;		/* multiple of 4 */
   4882   1.1   reinoud 
   4883  1.45   reinoud 	/* find position that will fit the FID */
   4884  1.59   reinoud 	chosen_fid_pos   = dir_size;
   4885  1.45   reinoud 	chosen_size      = 0;
   4886  1.45   reinoud 	chosen_size_diff = UINT_MAX;
   4887   1.1   reinoud 
   4888  1.59   reinoud 	/* shut up gcc */
   4889  1.59   reinoud 	dirent.d_namlen = 0;
   4890  1.59   reinoud 
   4891  1.59   reinoud 	/* search our dirhash hits */
   4892  1.59   reinoud 	error = 0;
   4893  1.59   reinoud 	dirh_ep = NULL;
   4894  1.45   reinoud 	for (;;) {
   4895  1.73   reinoud 		hit = dirhash_lookup_freed(dirh, fidsize, &dirh_ep);
   4896  1.59   reinoud 		/* if no hit, abort the search */
   4897  1.59   reinoud 		if (!hit)
   4898  1.45   reinoud 			break;
   4899   1.1   reinoud 
   4900  1.59   reinoud 		/* check this hit for size */
   4901  1.73   reinoud 		this_fidsize = dirh_ep->entry_size;
   4902   1.1   reinoud 
   4903  1.59   reinoud 		/* check this hit */
   4904  1.59   reinoud 		fid_pos     = dirh_ep->offset;
   4905  1.59   reinoud 		end_fid_pos = fid_pos + this_fidsize;
   4906  1.59   reinoud 		size_diff   = this_fidsize - fidsize;
   4907  1.59   reinoud 		lb_rest = lb_size - (end_fid_pos % lb_size);
   4908  1.45   reinoud 
   4909  1.45   reinoud #ifndef UDF_COMPLETE_DELETE
   4910  1.59   reinoud 		/* transfer a new fid/dirent */
   4911  1.59   reinoud 		error = udf_read_fid_stream(vp, &fid_pos, fid, dirent);
   4912  1.59   reinoud 		if (error)
   4913  1.59   reinoud 			goto error_out;
   4914  1.59   reinoud 
   4915  1.59   reinoud 		/* only reuse entries that are wiped */
   4916  1.59   reinoud 		/* check if the len + loc are marked zero */
   4917  1.88   reinoud 		if (udf_rw32(fid->icb.len) != 0)
   4918  1.59   reinoud 			continue;
   4919  1.59   reinoud 		if (udf_rw32(fid->icb.loc.lb_num) != 0)
   4920  1.59   reinoud 			continue;
   4921  1.88   reinoud 		if (udf_rw16(fid->icb.loc.part_num) != 0)
   4922  1.59   reinoud 			continue;
   4923  1.59   reinoud #endif	/* UDF_COMPLETE_DELETE */
   4924  1.59   reinoud 
   4925  1.59   reinoud 		/* select if not splitting the tag and its smaller */
   4926  1.59   reinoud 		if ((size_diff >= 0)  &&
   4927  1.59   reinoud 			(size_diff < chosen_size_diff) &&
   4928  1.59   reinoud 			(lb_rest >= sizeof(struct desc_tag)))
   4929  1.59   reinoud 		{
   4930  1.59   reinoud 			/* UDF 2.3.4.2+3 specifies rules for iu size */
   4931  1.59   reinoud 			if ((size_diff == 0) || (size_diff >= 32)) {
   4932  1.59   reinoud 				chosen_fid_pos   = fid_pos;
   4933  1.59   reinoud 				chosen_size      = this_fidsize;
   4934  1.59   reinoud 				chosen_size_diff = size_diff;
   4935  1.45   reinoud 			}
   4936  1.45   reinoud 		}
   4937  1.59   reinoud 	}
   4938   1.1   reinoud 
   4939   1.1   reinoud 
   4940  1.45   reinoud 	/* extend directory if no other candidate found */
   4941  1.45   reinoud 	if (chosen_size == 0) {
   4942  1.45   reinoud 		chosen_fid_pos   = dir_size;
   4943  1.45   reinoud 		chosen_size      = fidsize;
   4944  1.45   reinoud 		chosen_size_diff = 0;
   4945   1.1   reinoud 
   4946  1.45   reinoud 		/* special case UDF 2.00+ 2.3.4.4, no splitting up fid tag */
   4947  1.45   reinoud 		if (addr_type == UDF_ICB_INTERN_ALLOC) {
   4948  1.45   reinoud 			/* pre-grow directory to see if we're to switch */
   4949  1.45   reinoud 			udf_grow_node(dir_node, dir_size + chosen_size);
   4950   1.1   reinoud 
   4951  1.45   reinoud 			icbflags   = udf_rw16(icbtag->flags);
   4952  1.45   reinoud 			addr_type  = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   4953  1.45   reinoud 		}
   4954   1.1   reinoud 
   4955  1.45   reinoud 		/* make sure the next fid desc_tag won't be splitted */
   4956  1.45   reinoud 		if (addr_type != UDF_ICB_INTERN_ALLOC) {
   4957  1.45   reinoud 			end_fid_pos = chosen_fid_pos + chosen_size;
   4958  1.45   reinoud 			lb_rest = lb_size - (end_fid_pos % lb_size);
   4959   1.1   reinoud 
   4960  1.45   reinoud 			/* pad with implementation use regid if needed */
   4961  1.45   reinoud 			if (lb_rest < sizeof(struct desc_tag))
   4962  1.45   reinoud 				chosen_size += 32;
   4963  1.45   reinoud 		}
   4964   1.1   reinoud 	}
   4965  1.45   reinoud 	chosen_size_diff = chosen_size - fidsize;
   4966  1.45   reinoud 
   4967  1.45   reinoud 	/* populate the FID */
   4968  1.45   reinoud 	memset(fid, 0, lb_size);
   4969  1.45   reinoud 	udf_inittag(ump, &fid->tag, TAGID_FID, 0);
   4970  1.45   reinoud 	fid->file_version_num    = udf_rw16(1);	/* UDF 2.3.4.1 */
   4971  1.45   reinoud 	fid->file_char           = file_char;
   4972  1.45   reinoud 	fid->icb                 = udf_node->loc;
   4973  1.45   reinoud 	fid->icb.longad_uniqueid = udf_rw32((uint32_t) unique_id);
   4974  1.45   reinoud 	fid->l_iu                = udf_rw16(0);
   4975  1.45   reinoud 
   4976  1.45   reinoud 	if (chosen_size > fidsize) {
   4977  1.45   reinoud 		/* insert implementation-use regid to space it correctly */
   4978  1.45   reinoud 		fid->l_iu = udf_rw16(chosen_size_diff);
   4979  1.45   reinoud 
   4980  1.45   reinoud 		/* set implementation use */
   4981  1.45   reinoud 		udf_set_regid((struct regid *) fid->data, IMPL_NAME);
   4982  1.45   reinoud 		udf_add_impl_regid(ump, (struct regid *) fid->data);
   4983  1.45   reinoud 	}
   4984  1.45   reinoud 
   4985  1.45   reinoud 	/* fill in name */
   4986  1.45   reinoud 	unix_to_udf_name((char *) fid->data + udf_rw16(fid->l_iu),
   4987  1.45   reinoud 		&fid->l_fi, cnp->cn_nameptr, cnp->cn_namelen, &osta_charspec);
   4988  1.45   reinoud 
   4989  1.88   reinoud 	fid->tag.desc_crc_len = udf_rw16(chosen_size - UDF_DESC_TAG_LENGTH);
   4990  1.45   reinoud 	(void) udf_validate_tag_and_crc_sums((union dscrptr *) fid);
   4991  1.45   reinoud 
   4992  1.45   reinoud 	/* writeout FID/update parent directory */
   4993  1.45   reinoud 	error = vn_rdwr(UIO_WRITE, dvp,
   4994  1.45   reinoud 			fid, chosen_size, chosen_fid_pos,
   4995  1.45   reinoud 			UIO_SYSSPACE, IO_ALTSEMANTICS | IO_NODELOCKED,
   4996  1.45   reinoud 			FSCRED, NULL, NULL);
   4997  1.45   reinoud 
   4998  1.59   reinoud 	if (error)
   4999  1.59   reinoud 		goto error_out;
   5000  1.45   reinoud 
   5001  1.45   reinoud 	/* add reference counter in attached node */
   5002  1.45   reinoud 	if (udf_node->fe) {
   5003  1.45   reinoud 		refcnt = udf_rw16(udf_node->fe->link_cnt);
   5004  1.45   reinoud 		udf_node->fe->link_cnt = udf_rw16(refcnt+1);
   5005  1.45   reinoud 	} else {
   5006  1.45   reinoud 		KASSERT(udf_node->efe);
   5007  1.45   reinoud 		refcnt = udf_rw16(udf_node->efe->link_cnt);
   5008  1.45   reinoud 		udf_node->efe->link_cnt = udf_rw16(refcnt+1);
   5009  1.45   reinoud 	}
   5010  1.45   reinoud 
   5011  1.45   reinoud 	/* mark not deleted if it was... just in case, but do warn */
   5012  1.45   reinoud 	if (udf_node->i_flags & IN_DELETED) {
   5013  1.45   reinoud 		printf("udf: warning, marking a file undeleted\n");
   5014  1.45   reinoud 		udf_node->i_flags &= ~IN_DELETED;
   5015  1.45   reinoud 	}
   5016  1.45   reinoud 
   5017  1.45   reinoud 	if (file_char & UDF_FILE_CHAR_DIR) {
   5018  1.45   reinoud 		/* add reference counter in directory node for '..' */
   5019  1.45   reinoud 		if (dir_node->fe) {
   5020  1.45   reinoud 			refcnt = udf_rw16(dir_node->fe->link_cnt);
   5021  1.45   reinoud 			refcnt++;
   5022  1.45   reinoud 			dir_node->fe->link_cnt = udf_rw16(refcnt);
   5023  1.45   reinoud 		} else {
   5024  1.45   reinoud 			KASSERT(dir_node->efe);
   5025  1.45   reinoud 			refcnt = udf_rw16(dir_node->efe->link_cnt);
   5026  1.45   reinoud 			refcnt++;
   5027  1.45   reinoud 			dir_node->efe->link_cnt = udf_rw16(refcnt);
   5028  1.45   reinoud 		}
   5029   1.1   reinoud 	}
   5030   1.1   reinoud 
   5031  1.59   reinoud 	/* append to the dirhash */
   5032  1.59   reinoud 	dirent.d_namlen = cnp->cn_namelen;
   5033  1.59   reinoud 	memcpy(dirent.d_name, cnp->cn_nameptr, cnp->cn_namelen);
   5034  1.73   reinoud 	dirhash_enter(dirh, &dirent, chosen_fid_pos,
   5035  1.59   reinoud 		udf_fidsize(fid), 1);
   5036  1.45   reinoud 
   5037  1.59   reinoud 	/* note updates */
   5038  1.45   reinoud 	udf_node->i_flags |= IN_CHANGE | IN_MODIFY; /* | IN_CREATE? */
   5039  1.45   reinoud 	/* VN_KNOTE(udf_node,  ...) */
   5040  1.50   reinoud 	udf_update(udf_node->vnode, NULL, NULL, NULL, 0);
   5041  1.45   reinoud 
   5042  1.59   reinoud error_out:
   5043  1.45   reinoud 	free(fid, M_TEMP);
   5044   1.1   reinoud 
   5045  1.73   reinoud 	dirhash_put(dir_node->dir_hash);
   5046  1.66   reinoud 
   5047  1.59   reinoud 	return error;
   5048  1.45   reinoud }
   5049   1.1   reinoud 
   5050   1.1   reinoud /* --------------------------------------------------------------------- */
   5051   1.1   reinoud 
   5052   1.1   reinoud /*
   5053  1.45   reinoud  * Each node can have an attached streamdir node though not recursively. These
   5054  1.45   reinoud  * are otherwise known as named substreams/named extended attributes that have
   5055  1.45   reinoud  * no size limitations.
   5056   1.1   reinoud  *
   5057   1.1   reinoud  * `Normal' extended attributes are indicated with a number and are recorded
   5058   1.1   reinoud  * in either the fe/efe descriptor itself for small descriptors or recorded in
   5059  1.45   reinoud  * the attached extended attribute file. Since these spaces can get
   5060  1.45   reinoud  * fragmented, care ought to be taken.
   5061  1.45   reinoud  *
   5062  1.45   reinoud  * Since the size of the space reserved for allocation descriptors is limited,
   5063  1.45   reinoud  * there is a mechanim provided for extending this space; this is done by a
   5064  1.45   reinoud  * special extent to allow schrinking of the allocations without breaking the
   5065  1.45   reinoud  * linkage to the allocation extent descriptor.
   5066   1.1   reinoud  */
   5067   1.1   reinoud 
   5068   1.1   reinoud int
   5069   1.1   reinoud udf_get_node(struct udf_mount *ump, struct long_ad *node_icb_loc,
   5070  1.45   reinoud 	     struct udf_node **udf_noderes)
   5071   1.1   reinoud {
   5072  1.45   reinoud 	union dscrptr   *dscr;
   5073  1.45   reinoud 	struct udf_node *udf_node;
   5074   1.1   reinoud 	struct vnode    *nvp;
   5075  1.45   reinoud 	struct long_ad   icb_loc, last_fe_icb_loc;
   5076   1.1   reinoud 	uint64_t file_size;
   5077   1.1   reinoud 	uint32_t lb_size, sector, dummy;
   5078  1.45   reinoud 	uint8_t  *file_data;
   5079   1.1   reinoud 	int udf_file_type, dscr_type, strat, strat4096, needs_indirect;
   5080  1.45   reinoud 	int slot, eof, error;
   5081   1.1   reinoud 
   5082   1.1   reinoud 	DPRINTF(NODE, ("udf_get_node called\n"));
   5083  1.45   reinoud 	*udf_noderes = udf_node = NULL;
   5084   1.1   reinoud 
   5085  1.45   reinoud 	/* lock to disallow simultanious creation of same udf_node */
   5086  1.39        ad 	mutex_enter(&ump->get_node_lock);
   5087   1.1   reinoud 
   5088   1.1   reinoud 	DPRINTF(NODE, ("\tlookup in hash table\n"));
   5089   1.1   reinoud 	/* lookup in hash table */
   5090   1.1   reinoud 	assert(ump);
   5091   1.1   reinoud 	assert(node_icb_loc);
   5092  1.45   reinoud 	udf_node = udf_hash_lookup(ump, node_icb_loc);
   5093  1.45   reinoud 	if (udf_node) {
   5094   1.1   reinoud 		DPRINTF(NODE, ("\tgot it from the hash!\n"));
   5095   1.1   reinoud 		/* vnode is returned locked */
   5096  1.45   reinoud 		*udf_noderes = udf_node;
   5097  1.39        ad 		mutex_exit(&ump->get_node_lock);
   5098   1.1   reinoud 		return 0;
   5099   1.9  christos 	}
   5100   1.1   reinoud 
   5101  1.45   reinoud 	/* garbage check: translate udf_node_icb_loc to sectornr */
   5102   1.1   reinoud 	error = udf_translate_vtop(ump, node_icb_loc, &sector, &dummy);
   5103   1.1   reinoud 	if (error) {
   5104   1.1   reinoud 		/* no use, this will fail anyway */
   5105  1.39        ad 		mutex_exit(&ump->get_node_lock);
   5106   1.1   reinoud 		return EINVAL;
   5107   1.9  christos 	}
   5108   1.1   reinoud 
   5109  1.45   reinoud 	/* build udf_node (do initialise!) */
   5110  1.45   reinoud 	udf_node = pool_get(&udf_node_pool, PR_WAITOK);
   5111  1.45   reinoud 	memset(udf_node, 0, sizeof(struct udf_node));
   5112   1.1   reinoud 
   5113   1.1   reinoud 	DPRINTF(NODE, ("\tget new vnode\n"));
   5114   1.1   reinoud 	/* give it a vnode */
   5115   1.1   reinoud 	error = getnewvnode(VT_UDF, ump->vfs_mountp, udf_vnodeop_p, &nvp);
   5116   1.1   reinoud         if (error) {
   5117  1.45   reinoud 		pool_put(&udf_node_pool, udf_node);
   5118  1.39        ad 		mutex_exit(&ump->get_node_lock);
   5119   1.1   reinoud 		return error;
   5120   1.9  christos 	}
   5121   1.1   reinoud 
   5122  1.34   msaitoh 	/* always return locked vnode */
   5123   1.1   reinoud 	if ((error = vn_lock(nvp, LK_EXCLUSIVE | LK_RETRY))) {
   5124   1.1   reinoud 		/* recycle vnode and unlock; simultanious will fail too */
   5125   1.1   reinoud 		ungetnewvnode(nvp);
   5126  1.39        ad 		mutex_exit(&ump->get_node_lock);
   5127   1.1   reinoud 		return error;
   5128   1.9  christos 	}
   5129   1.1   reinoud 
   5130   1.1   reinoud 	/* initialise crosslinks, note location of fe/efe for hashing */
   5131  1.45   reinoud 	udf_node->ump    =  ump;
   5132  1.45   reinoud 	udf_node->vnode  =  nvp;
   5133  1.45   reinoud 	nvp->v_data      =  udf_node;
   5134  1.45   reinoud 	udf_node->loc    = *node_icb_loc;
   5135  1.45   reinoud 	udf_node->lockf  =  0;
   5136  1.45   reinoud 	mutex_init(&udf_node->node_mutex, MUTEX_DEFAULT, IPL_NONE);
   5137  1.45   reinoud 	cv_init(&udf_node->node_lock, "udf_nlk");
   5138  1.45   reinoud 	genfs_node_init(nvp, &udf_genfsops);	/* inititise genfs */
   5139  1.45   reinoud 	udf_node->outstanding_bufs = 0;
   5140  1.45   reinoud 	udf_node->outstanding_nodedscr = 0;
   5141   1.1   reinoud 
   5142  1.81   reinoud 	/* check if we're fetching the root */
   5143  1.81   reinoud 	if (ump->fileset_desc)
   5144  1.81   reinoud 		if (memcmp(&udf_node->loc, &ump->fileset_desc->rootdir_icb,
   5145  1.81   reinoud 		    sizeof(struct long_ad)) == 0)
   5146  1.81   reinoud 			nvp->v_vflag |= VV_ROOT;
   5147  1.79   reinoud 
   5148   1.1   reinoud 	/* insert into the hash lookup */
   5149  1.45   reinoud 	udf_register_node(udf_node);
   5150   1.1   reinoud 
   5151   1.1   reinoud 	/* safe to unlock, the entry is in the hash table, vnode is locked */
   5152  1.39        ad 	mutex_exit(&ump->get_node_lock);
   5153   1.1   reinoud 
   5154   1.1   reinoud 	icb_loc = *node_icb_loc;
   5155   1.1   reinoud 	needs_indirect = 0;
   5156   1.1   reinoud 	strat4096 = 0;
   5157   1.1   reinoud 	udf_file_type = UDF_ICB_FILETYPE_UNKNOWN;
   5158   1.1   reinoud 	file_size = 0;
   5159  1.45   reinoud 	file_data = NULL;
   5160   1.1   reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   5161   1.1   reinoud 
   5162  1.45   reinoud 	DPRINTF(NODE, ("\tstart reading descriptors\n"));
   5163   1.1   reinoud 	do {
   5164   1.1   reinoud 		/* try to read in fe/efe */
   5165  1.45   reinoud 		error = udf_read_logvol_dscr(ump, &icb_loc, &dscr);
   5166   1.1   reinoud 
   5167   1.1   reinoud 		/* blank sector marks end of sequence, check this */
   5168  1.45   reinoud 		if ((dscr == NULL) &&  (!strat4096))
   5169   1.1   reinoud 			error = ENOENT;
   5170   1.1   reinoud 
   5171   1.1   reinoud 		/* break if read error or blank sector */
   5172  1.45   reinoud 		if (error || (dscr == NULL))
   5173   1.1   reinoud 			break;
   5174   1.1   reinoud 
   5175   1.1   reinoud 		/* process descriptor based on the descriptor type */
   5176  1.45   reinoud 		dscr_type = udf_rw16(dscr->tag.id);
   5177  1.45   reinoud 		DPRINTF(NODE, ("\tread descriptor %d\n", dscr_type));
   5178   1.1   reinoud 
   5179   1.1   reinoud 		/* if dealing with an indirect entry, follow the link */
   5180  1.45   reinoud 		if (dscr_type == TAGID_INDIRECTENTRY) {
   5181   1.1   reinoud 			needs_indirect = 0;
   5182  1.45   reinoud 			udf_free_logvol_dscr(ump, &icb_loc, dscr);
   5183  1.45   reinoud 			icb_loc = dscr->inde.indirect_icb;
   5184   1.1   reinoud 			continue;
   5185   1.9  christos 		}
   5186   1.1   reinoud 
   5187   1.1   reinoud 		/* only file entries and extended file entries allowed here */
   5188   1.1   reinoud 		if ((dscr_type != TAGID_FENTRY) &&
   5189   1.1   reinoud 		    (dscr_type != TAGID_EXTFENTRY)) {
   5190  1.45   reinoud 			udf_free_logvol_dscr(ump, &icb_loc, dscr);
   5191   1.1   reinoud 			error = ENOENT;
   5192   1.1   reinoud 			break;
   5193   1.9  christos 		}
   5194   1.1   reinoud 
   5195  1.45   reinoud 		KASSERT(udf_tagsize(dscr, lb_size) == lb_size);
   5196   1.1   reinoud 
   5197  1.45   reinoud 		/* choose this one */
   5198  1.45   reinoud 		last_fe_icb_loc = icb_loc;
   5199  1.45   reinoud 
   5200   1.1   reinoud 		/* record and process/update (ext)fentry */
   5201  1.45   reinoud 		file_data = NULL;
   5202   1.1   reinoud 		if (dscr_type == TAGID_FENTRY) {
   5203  1.45   reinoud 			if (udf_node->fe)
   5204  1.45   reinoud 				udf_free_logvol_dscr(ump, &last_fe_icb_loc,
   5205  1.45   reinoud 					udf_node->fe);
   5206  1.45   reinoud 			udf_node->fe  = &dscr->fe;
   5207  1.45   reinoud 			strat = udf_rw16(udf_node->fe->icbtag.strat_type);
   5208  1.45   reinoud 			udf_file_type = udf_node->fe->icbtag.file_type;
   5209  1.45   reinoud 			file_size = udf_rw64(udf_node->fe->inf_len);
   5210  1.45   reinoud 			file_data = udf_node->fe->data;
   5211   1.1   reinoud 		} else {
   5212  1.45   reinoud 			if (udf_node->efe)
   5213  1.45   reinoud 				udf_free_logvol_dscr(ump, &last_fe_icb_loc,
   5214  1.45   reinoud 					udf_node->efe);
   5215  1.45   reinoud 			udf_node->efe = &dscr->efe;
   5216  1.45   reinoud 			strat = udf_rw16(udf_node->efe->icbtag.strat_type);
   5217  1.45   reinoud 			udf_file_type = udf_node->efe->icbtag.file_type;
   5218  1.45   reinoud 			file_size = udf_rw64(udf_node->efe->inf_len);
   5219  1.45   reinoud 			file_data = udf_node->efe->data;
   5220   1.9  christos 		}
   5221   1.1   reinoud 
   5222   1.1   reinoud 		/* check recording strategy (structure) */
   5223   1.1   reinoud 
   5224   1.1   reinoud 		/*
   5225   1.1   reinoud 		 * Strategy 4096 is a daisy linked chain terminating with an
   5226   1.1   reinoud 		 * unrecorded sector or a TERM descriptor. The next
   5227   1.1   reinoud 		 * descriptor is to be found in the sector that follows the
   5228   1.1   reinoud 		 * current sector.
   5229   1.1   reinoud 		 */
   5230   1.1   reinoud 		if (strat == 4096) {
   5231   1.1   reinoud 			strat4096 = 1;
   5232   1.1   reinoud 			needs_indirect = 1;
   5233   1.1   reinoud 
   5234   1.1   reinoud 			icb_loc.loc.lb_num = udf_rw32(icb_loc.loc.lb_num) + 1;
   5235   1.9  christos 		}
   5236   1.1   reinoud 
   5237   1.1   reinoud 		/*
   5238   1.1   reinoud 		 * Strategy 4 is the normal strategy and terminates, but if
   5239   1.1   reinoud 		 * we're in strategy 4096, we can't have strategy 4 mixed in
   5240   1.1   reinoud 		 */
   5241   1.1   reinoud 
   5242   1.1   reinoud 		if (strat == 4) {
   5243   1.1   reinoud 			if (strat4096) {
   5244   1.1   reinoud 				error = EINVAL;
   5245   1.1   reinoud 				break;
   5246   1.9  christos 			}
   5247   1.1   reinoud 			break;		/* done */
   5248   1.9  christos 		}
   5249   1.1   reinoud 	} while (!error);
   5250   1.1   reinoud 
   5251  1.45   reinoud 	/* first round of cleanup code */
   5252   1.1   reinoud 	if (error) {
   5253  1.45   reinoud 		DPRINTF(NODE, ("\tnode fe/efe failed!\n"));
   5254   1.1   reinoud 		/* recycle udf_node */
   5255  1.45   reinoud 		udf_dispose_node(udf_node);
   5256   1.1   reinoud 
   5257  1.45   reinoud 		vlockmgr(nvp->v_vnlock, LK_RELEASE);
   5258   1.1   reinoud 		nvp->v_data = NULL;
   5259   1.1   reinoud 		ungetnewvnode(nvp);
   5260   1.1   reinoud 
   5261   1.1   reinoud 		return EINVAL;		/* error code ok? */
   5262   1.9  christos 	}
   5263  1.45   reinoud 	DPRINTF(NODE, ("\tnode fe/efe read in fine\n"));
   5264   1.1   reinoud 
   5265   1.1   reinoud 	/* assert no references to dscr anymore beyong this point */
   5266  1.45   reinoud 	assert((udf_node->fe) || (udf_node->efe));
   5267   1.1   reinoud 	dscr = NULL;
   5268   1.1   reinoud 
   5269   1.1   reinoud 	/*
   5270  1.45   reinoud 	 * Remember where to record an updated version of the descriptor. If
   5271   1.1   reinoud 	 * there is a sequence of indirect entries, icb_loc will have been
   5272   1.1   reinoud 	 * updated. Its the write disipline to allocate new space and to make
   5273   1.1   reinoud 	 * sure the chain is maintained.
   5274   1.1   reinoud 	 *
   5275   1.1   reinoud 	 * `needs_indirect' flags if the next location is to be filled with
   5276   1.1   reinoud 	 * with an indirect entry.
   5277   1.1   reinoud 	 */
   5278  1.45   reinoud 	udf_node->write_loc = icb_loc;
   5279  1.45   reinoud 	udf_node->needs_indirect = needs_indirect;
   5280  1.45   reinoud 
   5281  1.45   reinoud 	/*
   5282  1.45   reinoud 	 * Go trough all allocations extents of this descriptor and when
   5283  1.45   reinoud 	 * encountering a redirect read in the allocation extension. These are
   5284  1.45   reinoud 	 * daisy-chained.
   5285  1.45   reinoud 	 */
   5286  1.45   reinoud 	UDF_LOCK_NODE(udf_node, 0);
   5287  1.45   reinoud 	udf_node->num_extensions = 0;
   5288  1.45   reinoud 
   5289  1.45   reinoud 	error   = 0;
   5290  1.45   reinoud 	slot    = 0;
   5291  1.45   reinoud 	for (;;) {
   5292  1.45   reinoud 		udf_get_adslot(udf_node, slot, &icb_loc, &eof);
   5293  1.52   reinoud 		DPRINTF(ADWLK, ("slot %d, eof = %d, flags = %d, len = %d, "
   5294  1.52   reinoud 			"lb_num = %d, part = %d\n", slot, eof,
   5295  1.52   reinoud 			UDF_EXT_FLAGS(udf_rw32(icb_loc.len)),
   5296  1.52   reinoud 			UDF_EXT_LEN(udf_rw32(icb_loc.len)),
   5297  1.52   reinoud 			udf_rw32(icb_loc.loc.lb_num),
   5298  1.52   reinoud 			udf_rw16(icb_loc.loc.part_num)));
   5299  1.45   reinoud 		if (eof)
   5300  1.45   reinoud 			break;
   5301  1.52   reinoud 		slot++;
   5302  1.45   reinoud 
   5303  1.52   reinoud 		if (UDF_EXT_FLAGS(udf_rw32(icb_loc.len)) != UDF_EXT_REDIRECT)
   5304  1.45   reinoud 			continue;
   5305  1.45   reinoud 
   5306  1.45   reinoud 		DPRINTF(NODE, ("\tgot redirect extent\n"));
   5307  1.45   reinoud 		if (udf_node->num_extensions >= UDF_MAX_ALLOC_EXTENTS) {
   5308  1.45   reinoud 			DPRINTF(ALLOC, ("udf_get_node: implementation limit, "
   5309  1.45   reinoud 					"too many allocation extensions on "
   5310  1.45   reinoud 					"udf_node\n"));
   5311  1.45   reinoud 			error = EINVAL;
   5312  1.45   reinoud 			break;
   5313  1.45   reinoud 		}
   5314  1.45   reinoud 
   5315  1.45   reinoud 		/* length can only be *one* lb : UDF 2.50/2.3.7.1 */
   5316  1.52   reinoud 		if (UDF_EXT_LEN(udf_rw32(icb_loc.len)) != lb_size) {
   5317  1.45   reinoud 			DPRINTF(ALLOC, ("udf_get_node: bad allocation "
   5318  1.45   reinoud 					"extension size in udf_node\n"));
   5319  1.45   reinoud 			error = EINVAL;
   5320  1.45   reinoud 			break;
   5321  1.45   reinoud 		}
   5322  1.45   reinoud 
   5323  1.52   reinoud 		DPRINTF(NODE, ("read allocation extent at lb_num %d\n",
   5324  1.52   reinoud 			UDF_EXT_LEN(udf_rw32(icb_loc.loc.lb_num))));
   5325  1.45   reinoud 		/* load in allocation extent */
   5326  1.45   reinoud 		error = udf_read_logvol_dscr(ump, &icb_loc, &dscr);
   5327  1.45   reinoud 		if (error || (dscr == NULL))
   5328  1.45   reinoud 			break;
   5329  1.45   reinoud 
   5330  1.45   reinoud 		/* process read-in descriptor */
   5331  1.45   reinoud 		dscr_type = udf_rw16(dscr->tag.id);
   5332  1.45   reinoud 
   5333  1.45   reinoud 		if (dscr_type != TAGID_ALLOCEXTENT) {
   5334  1.45   reinoud 			udf_free_logvol_dscr(ump, &icb_loc, dscr);
   5335  1.45   reinoud 			error = ENOENT;
   5336  1.45   reinoud 			break;
   5337  1.45   reinoud 		}
   5338  1.45   reinoud 
   5339  1.45   reinoud 		DPRINTF(NODE, ("\trecording redirect extent\n"));
   5340  1.45   reinoud 		udf_node->ext[udf_node->num_extensions] = &dscr->aee;
   5341  1.45   reinoud 		udf_node->ext_loc[udf_node->num_extensions] = icb_loc;
   5342  1.45   reinoud 
   5343  1.45   reinoud 		udf_node->num_extensions++;
   5344  1.45   reinoud 
   5345  1.45   reinoud 	} /* while */
   5346  1.45   reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
   5347  1.45   reinoud 
   5348  1.45   reinoud 	/* second round of cleanup code */
   5349  1.45   reinoud 	if (error) {
   5350  1.45   reinoud 		/* recycle udf_node */
   5351  1.45   reinoud 		udf_dispose_node(udf_node);
   5352  1.45   reinoud 
   5353  1.45   reinoud 		vlockmgr(nvp->v_vnlock, LK_RELEASE);
   5354  1.45   reinoud 		nvp->v_data = NULL;
   5355  1.45   reinoud 		ungetnewvnode(nvp);
   5356  1.45   reinoud 
   5357  1.45   reinoud 		return EINVAL;		/* error code ok? */
   5358  1.45   reinoud 	}
   5359  1.45   reinoud 
   5360  1.45   reinoud 	DPRINTF(NODE, ("\tnode read in fine\n"));
   5361   1.1   reinoud 
   5362   1.1   reinoud 	/*
   5363   1.1   reinoud 	 * Translate UDF filetypes into vnode types.
   5364   1.1   reinoud 	 *
   5365   1.1   reinoud 	 * Systemfiles like the meta main and mirror files are not treated as
   5366   1.1   reinoud 	 * normal files, so we type them as having no type. UDF dictates that
   5367   1.1   reinoud 	 * they are not allowed to be visible.
   5368   1.1   reinoud 	 */
   5369   1.1   reinoud 
   5370  1.45   reinoud 	switch (udf_file_type) {
   5371  1.45   reinoud 	case UDF_ICB_FILETYPE_DIRECTORY :
   5372  1.45   reinoud 	case UDF_ICB_FILETYPE_STREAMDIR :
   5373  1.45   reinoud 		nvp->v_type = VDIR;
   5374  1.45   reinoud 		break;
   5375  1.45   reinoud 	case UDF_ICB_FILETYPE_BLOCKDEVICE :
   5376  1.45   reinoud 		nvp->v_type = VBLK;
   5377  1.45   reinoud 		break;
   5378  1.45   reinoud 	case UDF_ICB_FILETYPE_CHARDEVICE :
   5379  1.45   reinoud 		nvp->v_type = VCHR;
   5380  1.45   reinoud 		break;
   5381  1.45   reinoud 	case UDF_ICB_FILETYPE_SOCKET :
   5382  1.45   reinoud 		nvp->v_type = VSOCK;
   5383  1.45   reinoud 		break;
   5384  1.45   reinoud 	case UDF_ICB_FILETYPE_FIFO :
   5385  1.45   reinoud 		nvp->v_type = VFIFO;
   5386  1.45   reinoud 		break;
   5387  1.45   reinoud 	case UDF_ICB_FILETYPE_SYMLINK :
   5388  1.45   reinoud 		nvp->v_type = VLNK;
   5389  1.45   reinoud 		break;
   5390  1.45   reinoud 	case UDF_ICB_FILETYPE_VAT :
   5391  1.45   reinoud 	case UDF_ICB_FILETYPE_META_MAIN :
   5392  1.45   reinoud 	case UDF_ICB_FILETYPE_META_MIRROR :
   5393  1.45   reinoud 		nvp->v_type = VNON;
   5394  1.45   reinoud 		break;
   5395  1.45   reinoud 	case UDF_ICB_FILETYPE_RANDOMACCESS :
   5396  1.45   reinoud 	case UDF_ICB_FILETYPE_REALTIME :
   5397  1.45   reinoud 		nvp->v_type = VREG;
   5398  1.45   reinoud 		break;
   5399  1.45   reinoud 	default:
   5400  1.45   reinoud 		/* YIKES, something else */
   5401  1.45   reinoud 		nvp->v_type = VNON;
   5402  1.45   reinoud 	}
   5403  1.45   reinoud 
   5404   1.1   reinoud 	/* TODO specfs, fifofs etc etc. vnops setting */
   5405  1.45   reinoud 
   5406  1.45   reinoud 	/* don't forget to set vnode's v_size */
   5407  1.45   reinoud 	uvm_vnp_setsize(nvp, file_size);
   5408  1.45   reinoud 
   5409  1.45   reinoud 	/* TODO ext attr and streamdir udf_nodes */
   5410  1.45   reinoud 
   5411  1.45   reinoud 	*udf_noderes = udf_node;
   5412  1.45   reinoud 
   5413  1.45   reinoud 	return 0;
   5414  1.45   reinoud }
   5415  1.45   reinoud 
   5416  1.45   reinoud /* --------------------------------------------------------------------- */
   5417  1.45   reinoud 
   5418  1.45   reinoud int
   5419  1.45   reinoud udf_writeout_node(struct udf_node *udf_node, int waitfor)
   5420  1.45   reinoud {
   5421  1.45   reinoud 	union dscrptr *dscr;
   5422  1.45   reinoud 	struct long_ad *loc;
   5423  1.91   reinoud 	int extnr, error;
   5424  1.45   reinoud 
   5425  1.45   reinoud 	DPRINTF(NODE, ("udf_writeout_node called\n"));
   5426  1.45   reinoud 
   5427  1.45   reinoud 	KASSERT(udf_node->outstanding_bufs == 0);
   5428  1.45   reinoud 	KASSERT(udf_node->outstanding_nodedscr == 0);
   5429  1.45   reinoud 
   5430  1.45   reinoud 	KASSERT(LIST_EMPTY(&udf_node->vnode->v_dirtyblkhd));
   5431  1.45   reinoud 
   5432  1.45   reinoud 	if (udf_node->i_flags & IN_DELETED) {
   5433  1.45   reinoud 		DPRINTF(NODE, ("\tnode deleted; not writing out\n"));
   5434  1.45   reinoud 		return 0;
   5435  1.45   reinoud 	}
   5436  1.45   reinoud 
   5437  1.55   reinoud 	/* lock node */
   5438  1.91   reinoud 	UDF_LOCK_NODE(udf_node, 0);
   5439  1.55   reinoud 
   5440  1.55   reinoud 	/* at least one descriptor writeout */
   5441  1.55   reinoud 	udf_node->outstanding_nodedscr = 1;
   5442  1.55   reinoud 
   5443  1.45   reinoud 	/* we're going to write out the descriptor so clear the flags */
   5444  1.45   reinoud 	udf_node->i_flags &= ~(IN_MODIFIED | IN_ACCESSED);
   5445  1.45   reinoud 
   5446  1.55   reinoud 	/* if we were rebuild, write out the allocation extents */
   5447  1.55   reinoud 	if (udf_node->i_flags & IN_NODE_REBUILD) {
   5448  1.71   reinoud 		/* mark outstanding node descriptors and issue them */
   5449  1.55   reinoud 		udf_node->outstanding_nodedscr += udf_node->num_extensions;
   5450  1.55   reinoud 		for (extnr = 0; extnr < udf_node->num_extensions; extnr++) {
   5451  1.55   reinoud 			loc = &udf_node->ext_loc[extnr];
   5452  1.55   reinoud 			dscr = (union dscrptr *) udf_node->ext[extnr];
   5453  1.55   reinoud 			error = udf_write_logvol_dscr(udf_node, dscr, loc, 0);
   5454  1.55   reinoud 			if (error)
   5455  1.55   reinoud 				return error;
   5456  1.55   reinoud 		}
   5457  1.55   reinoud 		/* mark allocation extents written out */
   5458  1.55   reinoud 		udf_node->i_flags &= ~(IN_NODE_REBUILD);
   5459  1.55   reinoud 	}
   5460  1.55   reinoud 
   5461  1.45   reinoud 	if (udf_node->fe) {
   5462  1.71   reinoud 		KASSERT(udf_node->efe == NULL);
   5463  1.45   reinoud 		dscr = (union dscrptr *) udf_node->fe;
   5464  1.45   reinoud 	} else {
   5465  1.45   reinoud 		KASSERT(udf_node->efe);
   5466  1.71   reinoud 		KASSERT(udf_node->fe == NULL);
   5467  1.45   reinoud 		dscr = (union dscrptr *) udf_node->efe;
   5468  1.45   reinoud 	}
   5469  1.45   reinoud 	KASSERT(dscr);
   5470  1.45   reinoud 
   5471  1.45   reinoud 	loc = &udf_node->write_loc;
   5472  1.45   reinoud 	error = udf_write_logvol_dscr(udf_node, dscr, loc, waitfor);
   5473  1.45   reinoud 	return error;
   5474  1.45   reinoud }
   5475  1.45   reinoud 
   5476  1.45   reinoud /* --------------------------------------------------------------------- */
   5477  1.45   reinoud 
   5478  1.45   reinoud int
   5479  1.45   reinoud udf_dispose_node(struct udf_node *udf_node)
   5480  1.45   reinoud {
   5481  1.45   reinoud 	struct vnode *vp;
   5482  1.52   reinoud 	int extnr;
   5483  1.45   reinoud 
   5484  1.45   reinoud 	DPRINTF(NODE, ("udf_dispose_node called on node %p\n", udf_node));
   5485  1.45   reinoud 	if (!udf_node) {
   5486  1.45   reinoud 		DPRINTF(NODE, ("UDF: Dispose node on node NULL, ignoring\n"));
   5487  1.45   reinoud 		return 0;
   5488  1.45   reinoud 	}
   5489  1.45   reinoud 
   5490  1.45   reinoud 	vp  = udf_node->vnode;
   5491  1.45   reinoud #ifdef DIAGNOSTIC
   5492  1.45   reinoud 	if (vp->v_numoutput)
   5493  1.45   reinoud 		panic("disposing UDF node with pending I/O's, udf_node = %p, "
   5494  1.45   reinoud 				"v_numoutput = %d", udf_node, vp->v_numoutput);
   5495  1.45   reinoud #endif
   5496  1.45   reinoud 
   5497  1.45   reinoud 	/* wait until out of sync (just in case we happen to stumble over one */
   5498  1.45   reinoud 	KASSERT(!mutex_owned(&mntvnode_lock));
   5499  1.45   reinoud 	mutex_enter(&mntvnode_lock);
   5500  1.45   reinoud 	while (udf_node->i_flags & IN_SYNCED) {
   5501  1.45   reinoud 		cv_timedwait(&udf_node->ump->dirtynodes_cv, &mntvnode_lock,
   5502  1.45   reinoud 			hz/16);
   5503  1.45   reinoud 	}
   5504  1.45   reinoud 	mutex_exit(&mntvnode_lock);
   5505  1.45   reinoud 
   5506  1.45   reinoud 	/* TODO extended attributes and streamdir */
   5507  1.45   reinoud 
   5508  1.59   reinoud 	/* remove dirhash if present */
   5509  1.73   reinoud 	dirhash_purge(&udf_node->dir_hash);
   5510  1.59   reinoud 
   5511  1.45   reinoud 	/* remove from our hash lookup table */
   5512  1.45   reinoud 	udf_deregister_node(udf_node);
   5513  1.45   reinoud 
   5514  1.45   reinoud 	/* destroy our lock */
   5515  1.45   reinoud 	mutex_destroy(&udf_node->node_mutex);
   5516  1.45   reinoud 	cv_destroy(&udf_node->node_lock);
   5517  1.45   reinoud 
   5518  1.45   reinoud 	/* dissociate our udf_node from the vnode */
   5519  1.45   reinoud 	genfs_node_destroy(udf_node->vnode);
   5520  1.45   reinoud 	vp->v_data = NULL;
   5521  1.45   reinoud 
   5522  1.45   reinoud 	/* free associated memory and the node itself */
   5523  1.52   reinoud 	for (extnr = 0; extnr < udf_node->num_extensions; extnr++) {
   5524  1.52   reinoud 		udf_free_logvol_dscr(udf_node->ump, &udf_node->ext_loc[extnr],
   5525  1.52   reinoud 			udf_node->ext[extnr]);
   5526  1.52   reinoud 		udf_node->ext[extnr] = (void *) 0xdeadcccc;
   5527  1.52   reinoud 	}
   5528  1.52   reinoud 
   5529  1.45   reinoud 	if (udf_node->fe)
   5530  1.52   reinoud 		udf_free_logvol_dscr(udf_node->ump, &udf_node->loc,
   5531  1.52   reinoud 			udf_node->fe);
   5532  1.45   reinoud 	if (udf_node->efe)
   5533  1.52   reinoud 		udf_free_logvol_dscr(udf_node->ump, &udf_node->loc,
   5534  1.52   reinoud 			udf_node->efe);
   5535  1.45   reinoud 
   5536  1.45   reinoud 	udf_node->fe  = (void *) 0xdeadaaaa;
   5537  1.45   reinoud 	udf_node->efe = (void *) 0xdeadbbbb;
   5538  1.45   reinoud 	udf_node->ump = (void *) 0xdeadbeef;
   5539  1.45   reinoud 	pool_put(&udf_node_pool, udf_node);
   5540  1.45   reinoud 
   5541  1.45   reinoud 	return 0;
   5542  1.45   reinoud }
   5543  1.45   reinoud 
   5544  1.45   reinoud 
   5545  1.45   reinoud 
   5546  1.45   reinoud /*
   5547  1.45   reinoud  * create a new node using the specified vnodeops, vap and cnp but with the
   5548  1.45   reinoud  * udf_file_type. This allows special files to be created. Use with care.
   5549  1.45   reinoud  */
   5550  1.45   reinoud 
   5551  1.45   reinoud static int
   5552  1.45   reinoud udf_create_node_raw(struct vnode *dvp, struct vnode **vpp, int udf_file_type,
   5553  1.45   reinoud 	int (**vnodeops)(void *), struct vattr *vap, struct componentname *cnp)
   5554  1.45   reinoud {
   5555  1.45   reinoud 	union dscrptr *dscr;
   5556  1.45   reinoud 	struct udf_node *dir_node = VTOI(dvp);;
   5557  1.45   reinoud 	struct udf_node *udf_node;
   5558  1.45   reinoud 	struct udf_mount *ump = dir_node->ump;
   5559  1.45   reinoud 	struct vnode *nvp;
   5560  1.45   reinoud 	struct long_ad node_icb_loc;
   5561  1.45   reinoud 	uint64_t parent_unique_id;
   5562  1.70   reinoud 	uint64_t lmapping;
   5563  1.45   reinoud 	uint32_t lb_size, lb_num;
   5564  1.45   reinoud 	uint16_t vpart_num;
   5565  1.56   reinoud 	uid_t uid;
   5566  1.56   reinoud 	gid_t gid, parent_gid;
   5567  1.45   reinoud 	int fid_size, error;
   5568  1.45   reinoud 
   5569  1.45   reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   5570  1.45   reinoud 	*vpp = NULL;
   5571  1.45   reinoud 
   5572  1.45   reinoud 	/* allocate vnode */
   5573  1.45   reinoud 	error = getnewvnode(VT_UDF, ump->vfs_mountp, vnodeops, &nvp);
   5574  1.45   reinoud         if (error)
   5575  1.45   reinoud 		return error;
   5576  1.45   reinoud 
   5577  1.45   reinoud 	/* lock node */
   5578  1.45   reinoud 	error = vn_lock(nvp, LK_EXCLUSIVE | LK_RETRY);
   5579  1.45   reinoud 	if (error) {
   5580  1.45   reinoud 		nvp->v_data = NULL;
   5581  1.45   reinoud 		ungetnewvnode(nvp);
   5582  1.45   reinoud 		return error;
   5583  1.45   reinoud 	}
   5584  1.45   reinoud 
   5585  1.45   reinoud 	/* get disc allocation for one logical block */
   5586  1.71   reinoud 	vpart_num = ump->node_part;
   5587  1.45   reinoud 	error = udf_pre_allocate_space(ump, UDF_C_NODE, 1,
   5588  1.71   reinoud 			vpart_num, &lmapping);
   5589  1.45   reinoud 	lb_num = lmapping;
   5590  1.45   reinoud 	if (error) {
   5591  1.45   reinoud 		vlockmgr(nvp->v_vnlock, LK_RELEASE);
   5592  1.45   reinoud 		ungetnewvnode(nvp);
   5593  1.45   reinoud 		return error;
   5594   1.9  christos 	}
   5595   1.1   reinoud 
   5596  1.45   reinoud 	/* initialise pointer to location */
   5597  1.45   reinoud 	memset(&node_icb_loc, 0, sizeof(struct long_ad));
   5598  1.89   reinoud 	node_icb_loc.len = udf_rw32(lb_size);
   5599  1.45   reinoud 	node_icb_loc.loc.lb_num   = udf_rw32(lb_num);
   5600  1.45   reinoud 	node_icb_loc.loc.part_num = udf_rw16(vpart_num);
   5601  1.45   reinoud 
   5602  1.45   reinoud 	/* build udf_node (do initialise!) */
   5603  1.45   reinoud 	udf_node = pool_get(&udf_node_pool, PR_WAITOK);
   5604  1.45   reinoud 	memset(udf_node, 0, sizeof(struct udf_node));
   5605  1.45   reinoud 
   5606  1.45   reinoud 	/* initialise crosslinks, note location of fe/efe for hashing */
   5607  1.45   reinoud 	/* bugalert: synchronise with udf_get_node() */
   5608  1.45   reinoud 	udf_node->ump       = ump;
   5609  1.45   reinoud 	udf_node->vnode     = nvp;
   5610  1.45   reinoud 	nvp->v_data         = udf_node;
   5611  1.45   reinoud 	udf_node->loc       = node_icb_loc;
   5612  1.45   reinoud 	udf_node->write_loc = node_icb_loc;
   5613  1.45   reinoud 	udf_node->lockf     = 0;
   5614  1.45   reinoud 	mutex_init(&udf_node->node_mutex, MUTEX_DEFAULT, IPL_NONE);
   5615  1.45   reinoud 	cv_init(&udf_node->node_lock, "udf_nlk");
   5616  1.45   reinoud 	udf_node->outstanding_bufs = 0;
   5617  1.45   reinoud 	udf_node->outstanding_nodedscr = 0;
   5618  1.45   reinoud 
   5619   1.1   reinoud 	/* initialise genfs */
   5620   1.1   reinoud 	genfs_node_init(nvp, &udf_genfsops);
   5621   1.1   reinoud 
   5622  1.45   reinoud 	/* insert into the hash lookup */
   5623  1.45   reinoud 	udf_register_node(udf_node);
   5624   1.1   reinoud 
   5625  1.45   reinoud 	/* get parent's unique ID for refering '..' if its a directory */
   5626  1.45   reinoud 	if (dir_node->fe) {
   5627  1.45   reinoud 		parent_unique_id = udf_rw64(dir_node->fe->unique_id);
   5628  1.56   reinoud 		parent_gid       = (gid_t) udf_rw32(dir_node->fe->gid);
   5629  1.45   reinoud 	} else {
   5630  1.45   reinoud 		parent_unique_id = udf_rw64(dir_node->efe->unique_id);
   5631  1.56   reinoud 		parent_gid       = (gid_t) udf_rw32(dir_node->efe->gid);
   5632  1.45   reinoud 	}
   5633   1.1   reinoud 
   5634  1.45   reinoud 	/* get descriptor */
   5635  1.45   reinoud 	udf_create_logvol_dscr(ump, udf_node, &node_icb_loc, &dscr);
   5636   1.1   reinoud 
   5637  1.45   reinoud 	/* choose a fe or an efe for it */
   5638  1.90   reinoud 	if (udf_rw16(ump->logical_vol->tag.descriptor_ver) == 2) {
   5639  1.45   reinoud 		udf_node->fe = &dscr->fe;
   5640  1.45   reinoud 		fid_size = udf_create_new_fe(ump, udf_node->fe,
   5641  1.45   reinoud 			udf_file_type, &udf_node->loc,
   5642  1.45   reinoud 			&dir_node->loc, parent_unique_id);
   5643  1.45   reinoud 		/* TODO add extended attribute for creation time */
   5644  1.45   reinoud 	} else {
   5645  1.45   reinoud 		udf_node->efe = &dscr->efe;
   5646  1.45   reinoud 		fid_size = udf_create_new_efe(ump, udf_node->efe,
   5647  1.45   reinoud 			udf_file_type, &udf_node->loc,
   5648  1.45   reinoud 			&dir_node->loc, parent_unique_id);
   5649  1.45   reinoud 	}
   5650  1.45   reinoud 	KASSERT(dscr->tag.tag_loc == udf_node->loc.loc.lb_num);
   5651   1.1   reinoud 
   5652  1.45   reinoud 	/* update vnode's size and type */
   5653  1.45   reinoud 	nvp->v_type = vap->va_type;
   5654  1.45   reinoud 	uvm_vnp_setsize(nvp, fid_size);
   5655   1.1   reinoud 
   5656  1.45   reinoud 	/* set access mode */
   5657  1.45   reinoud 	udf_setaccessmode(udf_node, vap->va_mode);
   5658   1.1   reinoud 
   5659  1.45   reinoud 	/* set ownership */
   5660  1.56   reinoud 	uid = kauth_cred_geteuid(cnp->cn_cred);
   5661  1.56   reinoud 	gid = parent_gid;
   5662  1.56   reinoud 	udf_setownership(udf_node, uid, gid);
   5663   1.1   reinoud 
   5664  1.45   reinoud 	error = udf_dir_attach(ump, dir_node, udf_node, vap, cnp);
   5665  1.45   reinoud 	if (error) {
   5666  1.45   reinoud 		/* free disc allocation for node */
   5667  1.45   reinoud 		udf_free_allocated_space(ump, lb_num, vpart_num, 1);
   5668   1.1   reinoud 
   5669  1.45   reinoud 		/* recycle udf_node */
   5670  1.45   reinoud 		udf_dispose_node(udf_node);
   5671  1.45   reinoud 		vput(nvp);
   5672   1.1   reinoud 
   5673  1.45   reinoud 		*vpp = NULL;
   5674  1.45   reinoud 		return error;
   5675  1.45   reinoud 	}
   5676   1.1   reinoud 
   5677  1.45   reinoud 	/* adjust file count */
   5678  1.45   reinoud 	udf_adjust_filecount(udf_node, 1);
   5679   1.1   reinoud 
   5680  1.45   reinoud 	/* return result */
   5681  1.45   reinoud 	*vpp = nvp;
   5682   1.1   reinoud 
   5683  1.45   reinoud 	return 0;
   5684   1.1   reinoud }
   5685   1.1   reinoud 
   5686   1.1   reinoud 
   5687  1.45   reinoud int
   5688  1.45   reinoud udf_create_node(struct vnode *dvp, struct vnode **vpp, struct vattr *vap,
   5689  1.45   reinoud 	struct componentname *cnp)
   5690   1.1   reinoud {
   5691  1.45   reinoud 	int (**vnodeops)(void *);
   5692  1.45   reinoud 	int udf_file_type;
   5693   1.1   reinoud 
   5694  1.45   reinoud 	DPRINTF(NODE, ("udf_create_node called\n"));
   5695   1.1   reinoud 
   5696  1.45   reinoud 	/* what type are we creating ? */
   5697  1.45   reinoud 	vnodeops = udf_vnodeop_p;
   5698  1.45   reinoud 	/* start with a default */
   5699  1.45   reinoud 	udf_file_type = UDF_ICB_FILETYPE_RANDOMACCESS;
   5700   1.1   reinoud 
   5701  1.45   reinoud 	*vpp = NULL;
   5702   1.1   reinoud 
   5703  1.45   reinoud 	switch (vap->va_type) {
   5704  1.45   reinoud 	case VREG :
   5705  1.45   reinoud 		udf_file_type = UDF_ICB_FILETYPE_RANDOMACCESS;
   5706  1.45   reinoud 		break;
   5707  1.45   reinoud 	case VDIR :
   5708  1.45   reinoud 		udf_file_type = UDF_ICB_FILETYPE_DIRECTORY;
   5709  1.45   reinoud 		break;
   5710  1.45   reinoud 	case VLNK :
   5711  1.45   reinoud 		udf_file_type = UDF_ICB_FILETYPE_SYMLINK;
   5712  1.45   reinoud 		break;
   5713  1.45   reinoud 	case VBLK :
   5714  1.45   reinoud 		udf_file_type = UDF_ICB_FILETYPE_BLOCKDEVICE;
   5715  1.45   reinoud 		/* specfs */
   5716  1.45   reinoud 		return ENOTSUP;
   5717  1.45   reinoud 		break;
   5718  1.45   reinoud 	case VCHR :
   5719  1.45   reinoud 		udf_file_type = UDF_ICB_FILETYPE_CHARDEVICE;
   5720  1.45   reinoud 		/* specfs */
   5721  1.45   reinoud 		return ENOTSUP;
   5722  1.45   reinoud 		break;
   5723  1.45   reinoud 	case VFIFO :
   5724  1.45   reinoud 		udf_file_type = UDF_ICB_FILETYPE_FIFO;
   5725  1.45   reinoud 		/* specfs */
   5726  1.45   reinoud 		return ENOTSUP;
   5727  1.45   reinoud 		break;
   5728  1.45   reinoud 	case VSOCK :
   5729  1.45   reinoud 		udf_file_type = UDF_ICB_FILETYPE_SOCKET;
   5730  1.45   reinoud 		/* specfs */
   5731  1.45   reinoud 		return ENOTSUP;
   5732  1.45   reinoud 		break;
   5733  1.45   reinoud 	case VNON :
   5734  1.45   reinoud 	case VBAD :
   5735  1.45   reinoud 	default :
   5736  1.45   reinoud 		/* nothing; can we even create these? */
   5737  1.45   reinoud 		return EINVAL;
   5738   1.9  christos 	}
   5739  1.45   reinoud 
   5740  1.45   reinoud 	return udf_create_node_raw(dvp, vpp, udf_file_type, vnodeops, vap, cnp);
   5741   1.1   reinoud }
   5742   1.1   reinoud 
   5743   1.1   reinoud /* --------------------------------------------------------------------- */
   5744   1.1   reinoud 
   5745  1.45   reinoud static void
   5746  1.45   reinoud udf_free_descriptor_space(struct udf_node *udf_node, struct long_ad *loc, void *mem)
   5747  1.45   reinoud {
   5748  1.45   reinoud 	struct udf_mount *ump = udf_node->ump;
   5749  1.45   reinoud 	uint32_t lb_size, lb_num, len, num_lb;
   5750  1.45   reinoud 	uint16_t vpart_num;
   5751  1.45   reinoud 
   5752  1.45   reinoud 	/* is there really one? */
   5753  1.45   reinoud 	if (mem == NULL)
   5754  1.45   reinoud 		return;
   5755   1.1   reinoud 
   5756  1.45   reinoud 	/* got a descriptor here */
   5757  1.55   reinoud 	len       = UDF_EXT_LEN(udf_rw32(loc->len));
   5758  1.45   reinoud 	lb_num    = udf_rw32(loc->loc.lb_num);
   5759  1.45   reinoud 	vpart_num = udf_rw16(loc->loc.part_num);
   5760   1.1   reinoud 
   5761  1.45   reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   5762  1.45   reinoud 	num_lb = (len + lb_size -1) / lb_size;
   5763   1.1   reinoud 
   5764  1.45   reinoud 	udf_free_allocated_space(ump, lb_num, vpart_num, num_lb);
   5765   1.1   reinoud }
   5766   1.1   reinoud 
   5767   1.1   reinoud void
   5768  1.45   reinoud udf_delete_node(struct udf_node *udf_node)
   5769   1.1   reinoud {
   5770  1.45   reinoud 	void *dscr;
   5771  1.45   reinoud 	struct udf_mount *ump;
   5772  1.45   reinoud 	struct long_ad *loc;
   5773  1.45   reinoud 	int extnr, lvint, dummy;
   5774  1.45   reinoud 
   5775  1.45   reinoud 	ump = udf_node->ump;
   5776  1.45   reinoud 
   5777  1.45   reinoud 	/* paranoia check on integrity; should be open!; we could panic */
   5778  1.45   reinoud 	lvint = udf_rw32(udf_node->ump->logvol_integrity->integrity_type);
   5779  1.45   reinoud 	if (lvint == UDF_INTEGRITY_CLOSED)
   5780  1.45   reinoud 		printf("\tIntegrity was CLOSED!\n");
   5781  1.45   reinoud 
   5782  1.45   reinoud 	/* whatever the node type, change its size to zero */
   5783  1.45   reinoud 	(void) udf_resize_node(udf_node, 0, &dummy);
   5784   1.1   reinoud 
   5785  1.45   reinoud 	/* force it to be `clean'; no use writing it out */
   5786  1.45   reinoud 	udf_node->i_flags &= ~(IN_MODIFIED | IN_ACCESSED | IN_ACCESS |
   5787  1.45   reinoud 		IN_CHANGE | IN_UPDATE | IN_MODIFY);
   5788   1.1   reinoud 
   5789  1.45   reinoud 	/* adjust file count */
   5790  1.45   reinoud 	udf_adjust_filecount(udf_node, -1);
   5791   1.1   reinoud 
   5792   1.1   reinoud 	/*
   5793  1.45   reinoud 	 * Free its allocated descriptors; memory will be released when
   5794  1.45   reinoud 	 * vop_reclaim() is called.
   5795   1.1   reinoud 	 */
   5796  1.45   reinoud 	loc = &udf_node->loc;
   5797  1.45   reinoud 
   5798  1.45   reinoud 	dscr = udf_node->fe;
   5799  1.45   reinoud 	udf_free_descriptor_space(udf_node, loc, dscr);
   5800  1.45   reinoud 	dscr = udf_node->efe;
   5801  1.45   reinoud 	udf_free_descriptor_space(udf_node, loc, dscr);
   5802   1.1   reinoud 
   5803  1.45   reinoud 	for (extnr = 0; extnr < UDF_MAX_ALLOC_EXTENTS; extnr++) {
   5804  1.45   reinoud 		dscr =  udf_node->ext[extnr];
   5805  1.45   reinoud 		loc  = &udf_node->ext_loc[extnr];
   5806  1.45   reinoud 		udf_free_descriptor_space(udf_node, loc, dscr);
   5807   1.9  christos 	}
   5808   1.1   reinoud }
   5809   1.1   reinoud 
   5810   1.1   reinoud /* --------------------------------------------------------------------- */
   5811   1.1   reinoud 
   5812  1.45   reinoud /* set new filesize; node but be LOCKED on entry and is locked on exit */
   5813  1.45   reinoud int
   5814  1.45   reinoud udf_resize_node(struct udf_node *udf_node, uint64_t new_size, int *extended)
   5815   1.1   reinoud {
   5816  1.45   reinoud 	struct file_entry    *fe  = udf_node->fe;
   5817  1.45   reinoud 	struct extfile_entry *efe = udf_node->efe;
   5818  1.45   reinoud 	uint64_t file_size;
   5819  1.45   reinoud 	int error;
   5820   1.1   reinoud 
   5821  1.45   reinoud 	if (fe) {
   5822  1.45   reinoud 		file_size  = udf_rw64(fe->inf_len);
   5823   1.1   reinoud 	} else {
   5824   1.1   reinoud 		assert(udf_node->efe);
   5825  1.45   reinoud 		file_size  = udf_rw64(efe->inf_len);
   5826   1.9  christos 	}
   5827   1.1   reinoud 
   5828  1.45   reinoud 	DPRINTF(ATTR, ("\tchanging file length from %"PRIu64" to %"PRIu64"\n",
   5829  1.45   reinoud 			file_size, new_size));
   5830  1.45   reinoud 
   5831  1.45   reinoud 	/* if not changing, we're done */
   5832  1.45   reinoud 	if (file_size == new_size)
   5833  1.45   reinoud 		return 0;
   5834   1.1   reinoud 
   5835  1.45   reinoud 	*extended = (new_size > file_size);
   5836  1.45   reinoud 	if (*extended) {
   5837  1.45   reinoud 		error = udf_grow_node(udf_node, new_size);
   5838  1.45   reinoud 	} else {
   5839  1.45   reinoud 		error = udf_shrink_node(udf_node, new_size);
   5840  1.45   reinoud 	}
   5841   1.1   reinoud 
   5842  1.45   reinoud 	return error;
   5843   1.1   reinoud }
   5844   1.1   reinoud 
   5845  1.45   reinoud 
   5846   1.1   reinoud /* --------------------------------------------------------------------- */
   5847   1.1   reinoud 
   5848  1.45   reinoud void
   5849  1.45   reinoud udf_itimes(struct udf_node *udf_node, struct timespec *acc,
   5850  1.50   reinoud 	struct timespec *mod, struct timespec *birth)
   5851   1.1   reinoud {
   5852  1.45   reinoud 	struct timespec now;
   5853   1.1   reinoud 	struct file_entry    *fe;
   5854   1.1   reinoud 	struct extfile_entry *efe;
   5855  1.51   reinoud 	struct filetimes_extattr_entry *ft_extattr;
   5856  1.50   reinoud 	struct timestamp *atime, *mtime, *attrtime, *ctime;
   5857  1.50   reinoud 	struct timestamp  fe_ctime;
   5858  1.50   reinoud 	struct timespec   cur_birth;
   5859  1.51   reinoud 	uint32_t offset, a_l;
   5860  1.51   reinoud 	uint8_t *filedata;
   5861  1.51   reinoud 	int error;
   5862  1.45   reinoud 
   5863  1.45   reinoud 	/* protect against rogue values */
   5864  1.45   reinoud 	if (!udf_node)
   5865  1.45   reinoud 		return;
   5866  1.45   reinoud 
   5867  1.45   reinoud 	fe  = udf_node->fe;
   5868  1.45   reinoud 	efe = udf_node->efe;
   5869  1.45   reinoud 
   5870  1.45   reinoud 	if (!(udf_node->i_flags & (IN_ACCESS|IN_CHANGE|IN_UPDATE|IN_MODIFY)))
   5871  1.45   reinoud 		return;
   5872   1.1   reinoud 
   5873  1.45   reinoud 	/* get descriptor information */
   5874  1.45   reinoud 	if (fe) {
   5875  1.45   reinoud 		atime    = &fe->atime;
   5876  1.45   reinoud 		mtime    = &fe->mtime;
   5877  1.45   reinoud 		attrtime = &fe->attrtime;
   5878  1.51   reinoud 		filedata = fe->data;
   5879  1.51   reinoud 
   5880  1.51   reinoud 		/* initial save dummy setting */
   5881  1.50   reinoud 		ctime    = &fe_ctime;
   5882  1.51   reinoud 
   5883  1.51   reinoud 		/* check our extended attribute if present */
   5884  1.51   reinoud 		error = udf_extattr_search_intern(udf_node,
   5885  1.51   reinoud 			UDF_FILETIMES_ATTR_NO, "", &offset, &a_l);
   5886  1.51   reinoud 		if (!error) {
   5887  1.51   reinoud 			ft_extattr = (struct filetimes_extattr_entry *)
   5888  1.51   reinoud 				(filedata + offset);
   5889  1.51   reinoud 			if (ft_extattr->existence & UDF_FILETIMES_FILE_CREATION)
   5890  1.51   reinoud 				ctime = &ft_extattr->times[0];
   5891  1.51   reinoud 		}
   5892  1.51   reinoud 		/* TODO create the extended attribute if not found ? */
   5893   1.1   reinoud 	} else {
   5894  1.45   reinoud 		assert(udf_node->efe);
   5895  1.45   reinoud 		atime    = &efe->atime;
   5896  1.45   reinoud 		mtime    = &efe->mtime;
   5897  1.45   reinoud 		attrtime = &efe->attrtime;
   5898  1.50   reinoud 		ctime    = &efe->ctime;
   5899  1.45   reinoud 	}
   5900  1.45   reinoud 
   5901  1.45   reinoud 	vfs_timestamp(&now);
   5902  1.45   reinoud 
   5903  1.45   reinoud 	/* set access time */
   5904  1.45   reinoud 	if (udf_node->i_flags & IN_ACCESS) {
   5905  1.45   reinoud 		if (acc == NULL)
   5906  1.45   reinoud 			acc = &now;
   5907  1.45   reinoud 		udf_timespec_to_timestamp(acc, atime);
   5908  1.45   reinoud 	}
   5909  1.45   reinoud 
   5910  1.45   reinoud 	/* set modification time */
   5911  1.45   reinoud 	if (udf_node->i_flags & (IN_UPDATE | IN_MODIFY)) {
   5912  1.45   reinoud 		if (mod == NULL)
   5913  1.45   reinoud 			mod = &now;
   5914  1.45   reinoud 		udf_timespec_to_timestamp(mod, mtime);
   5915  1.50   reinoud 
   5916  1.50   reinoud 		/* ensure birthtime is older than set modification! */
   5917  1.50   reinoud 		udf_timestamp_to_timespec(udf_node->ump, ctime, &cur_birth);
   5918  1.50   reinoud 		if ((cur_birth.tv_sec > mod->tv_sec) ||
   5919  1.50   reinoud 			  ((cur_birth.tv_sec == mod->tv_sec) &&
   5920  1.50   reinoud 			     (cur_birth.tv_nsec > mod->tv_nsec))) {
   5921  1.50   reinoud 			udf_timespec_to_timestamp(mod, ctime);
   5922  1.50   reinoud 		}
   5923  1.45   reinoud 	}
   5924  1.45   reinoud 
   5925  1.50   reinoud 	/* update birthtime if specified */
   5926  1.50   reinoud 	/* XXX we asume here that given birthtime is older than mod */
   5927  1.51   reinoud 	if (birth && (birth->tv_sec != VNOVAL)) {
   5928  1.50   reinoud 		udf_timespec_to_timestamp(birth, ctime);
   5929  1.51   reinoud 	}
   5930  1.50   reinoud 
   5931  1.45   reinoud 	/* set change time */
   5932  1.50   reinoud 	if (udf_node->i_flags & (IN_CHANGE | IN_MODIFY))
   5933  1.50   reinoud 		udf_timespec_to_timestamp(&now, attrtime);
   5934   1.1   reinoud 
   5935  1.45   reinoud 	/* notify updates to the node itself */
   5936  1.45   reinoud 	if (udf_node->i_flags & (IN_ACCESS | IN_MODIFY))
   5937  1.45   reinoud 		udf_node->i_flags |= IN_ACCESSED;
   5938  1.45   reinoud 	if (udf_node->i_flags & (IN_UPDATE | IN_CHANGE))
   5939  1.45   reinoud 		udf_node->i_flags |= IN_MODIFIED;
   5940  1.45   reinoud 
   5941  1.45   reinoud 	/* clear modification flags */
   5942  1.45   reinoud 	udf_node->i_flags &= ~(IN_ACCESS | IN_CHANGE | IN_UPDATE | IN_MODIFY);
   5943  1.45   reinoud }
   5944  1.45   reinoud 
   5945  1.45   reinoud /* --------------------------------------------------------------------- */
   5946   1.1   reinoud 
   5947  1.45   reinoud int
   5948  1.45   reinoud udf_update(struct vnode *vp, struct timespec *acc,
   5949  1.50   reinoud 	struct timespec *mod, struct timespec *birth, int updflags)
   5950  1.45   reinoud {
   5951  1.71   reinoud 	union dscrptr *dscrptr;
   5952  1.45   reinoud 	struct udf_node  *udf_node = VTOI(vp);
   5953  1.45   reinoud 	struct udf_mount *ump = udf_node->ump;
   5954  1.45   reinoud 	struct regid     *impl_id;
   5955  1.45   reinoud 	int mnt_async = (vp->v_mount->mnt_flag & MNT_ASYNC);
   5956  1.45   reinoud 	int waitfor, flags;
   5957  1.31   reinoud 
   5958  1.45   reinoud #ifdef DEBUG
   5959  1.45   reinoud 	char bits[128];
   5960  1.50   reinoud 	DPRINTF(CALL, ("udf_update(node, %p, %p, %p, %d)\n", acc, mod, birth,
   5961  1.50   reinoud 		updflags));
   5962  1.80  christos 	snprintb(bits, sizeof(bits), IN_FLAGBITS, udf_node->i_flags);
   5963  1.45   reinoud 	DPRINTF(CALL, ("\tnode flags %s\n", bits));
   5964  1.45   reinoud 	DPRINTF(CALL, ("\t\tmnt_async = %d\n", mnt_async));
   5965  1.45   reinoud #endif
   5966  1.31   reinoud 
   5967  1.45   reinoud 	/* set our times */
   5968  1.51   reinoud 	udf_itimes(udf_node, acc, mod, birth);
   5969  1.37    rumble 
   5970  1.45   reinoud 	/* set our implementation id */
   5971  1.45   reinoud 	if (udf_node->fe) {
   5972  1.71   reinoud 		dscrptr = (union dscrptr *) udf_node->fe;
   5973  1.45   reinoud 		impl_id = &udf_node->fe->imp_id;
   5974  1.45   reinoud 	} else {
   5975  1.71   reinoud 		dscrptr = (union dscrptr *) udf_node->efe;
   5976  1.45   reinoud 		impl_id = &udf_node->efe->imp_id;
   5977  1.45   reinoud 	}
   5978  1.71   reinoud 
   5979  1.71   reinoud 	/* set our ID */
   5980  1.45   reinoud 	udf_set_regid(impl_id, IMPL_NAME);
   5981  1.45   reinoud 	udf_add_impl_regid(ump, impl_id);
   5982  1.18   reinoud 
   5983  1.71   reinoud 	/* update our crc! on RMW we are not allowed to change a thing */
   5984  1.71   reinoud 	udf_validate_tag_and_crc_sums(dscrptr);
   5985  1.71   reinoud 
   5986  1.45   reinoud 	/* if called when mounted readonly, never write back */
   5987  1.45   reinoud 	if (vp->v_mount->mnt_flag & MNT_RDONLY)
   5988  1.45   reinoud 		return 0;
   5989   1.1   reinoud 
   5990  1.45   reinoud 	/* check if the node is dirty 'enough'*/
   5991  1.45   reinoud 	if (updflags & UPDATE_CLOSE) {
   5992  1.45   reinoud 		flags = udf_node->i_flags & (IN_MODIFIED | IN_ACCESSED);
   5993  1.45   reinoud 	} else {
   5994  1.45   reinoud 		flags = udf_node->i_flags & IN_MODIFIED;
   5995  1.45   reinoud 	}
   5996  1.45   reinoud 	if (flags == 0)
   5997  1.45   reinoud 		return 0;
   5998  1.19   reinoud 
   5999  1.45   reinoud 	/* determine if we need to write sync or async */
   6000  1.45   reinoud 	waitfor = 0;
   6001  1.45   reinoud 	if ((flags & IN_MODIFIED) && (mnt_async == 0)) {
   6002  1.45   reinoud 		/* sync mounted */
   6003  1.45   reinoud 		waitfor = updflags & UPDATE_WAIT;
   6004  1.45   reinoud 		if (updflags & UPDATE_DIROP)
   6005  1.45   reinoud 			waitfor |= UPDATE_WAIT;
   6006   1.9  christos 	}
   6007  1.45   reinoud 	if (waitfor)
   6008  1.45   reinoud 		return VOP_FSYNC(vp, FSCRED, FSYNC_WAIT, 0,0);
   6009   1.1   reinoud 
   6010  1.45   reinoud 	return 0;
   6011   1.1   reinoud }
   6012   1.1   reinoud 
   6013  1.45   reinoud 
   6014   1.1   reinoud /* --------------------------------------------------------------------- */
   6015   1.1   reinoud 
   6016  1.59   reinoud 
   6017   1.1   reinoud /*
   6018   1.1   reinoud  * Read one fid and process it into a dirent and advance to the next (*fid)
   6019   1.1   reinoud  * has to be allocated a logical block in size, (*dirent) struct dirent length
   6020   1.1   reinoud  */
   6021   1.1   reinoud 
   6022   1.1   reinoud int
   6023   1.1   reinoud udf_read_fid_stream(struct vnode *vp, uint64_t *offset,
   6024   1.1   reinoud 		    struct fileid_desc *fid, struct dirent *dirent)
   6025   1.1   reinoud {
   6026   1.1   reinoud 	struct udf_node  *dir_node = VTOI(vp);
   6027   1.1   reinoud 	struct udf_mount *ump = dir_node->ump;
   6028  1.45   reinoud 	struct file_entry    *fe  = dir_node->fe;
   6029  1.45   reinoud 	struct extfile_entry *efe = dir_node->efe;
   6030  1.45   reinoud 	uint32_t      fid_size, lb_size;
   6031   1.1   reinoud 	uint64_t      file_size;
   6032   1.1   reinoud 	char         *fid_name;
   6033   1.1   reinoud 	int           enough, error;
   6034   1.1   reinoud 
   6035   1.1   reinoud 	assert(fid);
   6036   1.1   reinoud 	assert(dirent);
   6037   1.1   reinoud 	assert(dir_node);
   6038   1.1   reinoud 	assert(offset);
   6039   1.1   reinoud 	assert(*offset != 1);
   6040   1.1   reinoud 
   6041  1.45   reinoud 	DPRINTF(FIDS, ("read_fid_stream called at offset %"PRIu64"\n", *offset));
   6042   1.1   reinoud 	/* check if we're past the end of the directory */
   6043  1.45   reinoud 	if (fe) {
   6044   1.1   reinoud 		file_size = udf_rw64(fe->inf_len);
   6045   1.1   reinoud 	} else {
   6046   1.1   reinoud 		assert(dir_node->efe);
   6047   1.1   reinoud 		file_size = udf_rw64(efe->inf_len);
   6048   1.9  christos 	}
   6049   1.1   reinoud 	if (*offset >= file_size)
   6050   1.1   reinoud 		return EINVAL;
   6051   1.1   reinoud 
   6052   1.1   reinoud 	/* get maximum length of FID descriptor */
   6053   1.1   reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   6054   1.1   reinoud 
   6055   1.1   reinoud 	/* initialise return values */
   6056  1.45   reinoud 	fid_size = 0;
   6057   1.1   reinoud 	memset(dirent, 0, sizeof(struct dirent));
   6058   1.1   reinoud 	memset(fid, 0, lb_size);
   6059   1.1   reinoud 
   6060  1.45   reinoud 	enough  = (file_size - (*offset) >= UDF_FID_SIZE);
   6061  1.45   reinoud 	if (!enough) {
   6062  1.45   reinoud 		/* short dir ... */
   6063  1.45   reinoud 		return EIO;
   6064  1.45   reinoud 	}
   6065   1.1   reinoud 
   6066  1.45   reinoud 	error = vn_rdwr(UIO_READ, vp,
   6067  1.45   reinoud 			fid, MIN(file_size - (*offset), lb_size), *offset,
   6068  1.45   reinoud 			UIO_SYSSPACE, IO_ALTSEMANTICS | IO_NODELOCKED, FSCRED,
   6069  1.45   reinoud 			NULL, NULL);
   6070   1.1   reinoud 	if (error)
   6071   1.1   reinoud 		return error;
   6072   1.1   reinoud 
   6073  1.45   reinoud 	DPRINTF(FIDS, ("\tfid piece read in fine\n"));
   6074   1.1   reinoud 	/*
   6075   1.1   reinoud 	 * Check if we got a whole descriptor.
   6076  1.45   reinoud 	 * TODO Try to `resync' directory stream when something is very wrong.
   6077   1.1   reinoud 	 */
   6078   1.1   reinoud 
   6079   1.1   reinoud 	/* check if our FID header is OK */
   6080   1.1   reinoud 	error = udf_check_tag(fid);
   6081  1.45   reinoud 	if (error) {
   6082  1.45   reinoud 		goto brokendir;
   6083   1.9  christos 	}
   6084  1.45   reinoud 	DPRINTF(FIDS, ("\ttag check ok\n"));
   6085   1.1   reinoud 
   6086  1.45   reinoud 	if (udf_rw16(fid->tag.id) != TAGID_FID) {
   6087  1.45   reinoud 		error = EIO;
   6088  1.45   reinoud 		goto brokendir;
   6089   1.9  christos 	}
   6090  1.45   reinoud 	DPRINTF(FIDS, ("\ttag checked ok: got TAGID_FID\n"));
   6091   1.1   reinoud 
   6092  1.45   reinoud 	/* check for length */
   6093  1.45   reinoud 	fid_size = udf_fidsize(fid);
   6094  1.45   reinoud 	enough = (file_size - (*offset) >= fid_size);
   6095   1.1   reinoud 	if (!enough) {
   6096  1.45   reinoud 		error = EIO;
   6097  1.45   reinoud 		goto brokendir;
   6098   1.9  christos 	}
   6099  1.45   reinoud 	DPRINTF(FIDS, ("\tthe complete fid is read in\n"));
   6100   1.1   reinoud 
   6101   1.1   reinoud 	/* check FID contents */
   6102  1.45   reinoud 	error = udf_check_tag_payload((union dscrptr *) fid, lb_size);
   6103  1.45   reinoud brokendir:
   6104   1.1   reinoud 	if (error) {
   6105   1.1   reinoud 		/* note that is sometimes a bit quick to report */
   6106  1.84     pooka 		printf("UDF: BROKEN DIRECTORY ENTRY\n");
   6107   1.1   reinoud 		/* RESYNC? */
   6108   1.1   reinoud 		/* TODO: use udf_resync_fid_stream */
   6109   1.1   reinoud 		return EIO;
   6110   1.9  christos 	}
   6111  1.45   reinoud 	DPRINTF(FIDS, ("\tpayload checked ok\n"));
   6112   1.1   reinoud 
   6113   1.1   reinoud 	/* we got a whole and valid descriptor! */
   6114  1.45   reinoud 	DPRINTF(FIDS, ("\tinterpret FID\n"));
   6115   1.1   reinoud 
   6116   1.1   reinoud 	/* create resulting dirent structure */
   6117   1.1   reinoud 	fid_name = (char *) fid->data + udf_rw16(fid->l_iu);
   6118  1.48   reinoud 	udf_to_unix_name(dirent->d_name, MAXNAMLEN,
   6119   1.1   reinoud 		fid_name, fid->l_fi, &ump->logical_vol->desc_charset);
   6120   1.1   reinoud 
   6121   1.1   reinoud 	/* '..' has no name, so provide one */
   6122   1.1   reinoud 	if (fid->file_char & UDF_FILE_CHAR_PAR)
   6123   1.1   reinoud 		strcpy(dirent->d_name, "..");
   6124   1.1   reinoud 
   6125   1.1   reinoud 	dirent->d_fileno = udf_calchash(&fid->icb);	/* inode hash XXX */
   6126   1.1   reinoud 	dirent->d_namlen = strlen(dirent->d_name);
   6127   1.1   reinoud 	dirent->d_reclen = _DIRENT_SIZE(dirent);
   6128   1.1   reinoud 
   6129   1.1   reinoud 	/*
   6130   1.1   reinoud 	 * Note that its not worth trying to go for the filetypes now... its
   6131   1.1   reinoud 	 * too expensive too
   6132   1.1   reinoud 	 */
   6133   1.1   reinoud 	dirent->d_type = DT_UNKNOWN;
   6134   1.1   reinoud 
   6135   1.1   reinoud 	/* initial guess for filetype we can make */
   6136   1.1   reinoud 	if (fid->file_char & UDF_FILE_CHAR_DIR)
   6137   1.1   reinoud 		dirent->d_type = DT_DIR;
   6138   1.1   reinoud 
   6139   1.1   reinoud 	/* advance */
   6140  1.45   reinoud 	*offset += fid_size;
   6141   1.1   reinoud 
   6142   1.1   reinoud 	return error;
   6143   1.1   reinoud }
   6144   1.1   reinoud 
   6145  1.45   reinoud 
   6146  1.45   reinoud /* --------------------------------------------------------------------- */
   6147  1.45   reinoud 
   6148  1.45   reinoud static void
   6149  1.45   reinoud udf_sync_pass(struct udf_mount *ump, kauth_cred_t cred, int waitfor,
   6150  1.45   reinoud 	int pass, int *ndirty)
   6151  1.45   reinoud {
   6152  1.45   reinoud 	struct udf_node *udf_node, *n_udf_node;
   6153  1.45   reinoud 	struct vnode *vp;
   6154  1.45   reinoud 	int vdirty, error;
   6155  1.45   reinoud 	int on_type, on_flags, on_vnode;
   6156  1.45   reinoud 
   6157  1.45   reinoud derailed:
   6158  1.45   reinoud 	KASSERT(mutex_owned(&mntvnode_lock));
   6159  1.45   reinoud 
   6160  1.45   reinoud 	DPRINTF(SYNC, ("sync_pass %d\n", pass));
   6161  1.45   reinoud 	udf_node = LIST_FIRST(&ump->sorted_udf_nodes);
   6162  1.45   reinoud 	for (;udf_node; udf_node = n_udf_node) {
   6163  1.45   reinoud 		DPRINTF(SYNC, ("."));
   6164  1.45   reinoud 
   6165  1.45   reinoud 		udf_node->i_flags &= ~IN_SYNCED;
   6166  1.45   reinoud 		vp = udf_node->vnode;
   6167  1.45   reinoud 
   6168  1.45   reinoud 		mutex_enter(&vp->v_interlock);
   6169  1.45   reinoud 		n_udf_node = LIST_NEXT(udf_node, sortchain);
   6170  1.45   reinoud 		if (n_udf_node)
   6171  1.45   reinoud 			n_udf_node->i_flags |= IN_SYNCED;
   6172  1.45   reinoud 
   6173  1.45   reinoud 		/* system nodes are not synced this way */
   6174  1.45   reinoud 		if (vp->v_vflag & VV_SYSTEM) {
   6175  1.45   reinoud 			mutex_exit(&vp->v_interlock);
   6176  1.45   reinoud 			continue;
   6177  1.45   reinoud 		}
   6178  1.45   reinoud 
   6179  1.45   reinoud 		/* check if its dirty enough to even try */
   6180  1.45   reinoud 		on_type  = (waitfor == MNT_LAZY || vp->v_type == VNON);
   6181  1.45   reinoud 		on_flags = ((udf_node->i_flags &
   6182  1.45   reinoud 			(IN_ACCESSED | IN_UPDATE | IN_MODIFIED)) == 0);
   6183  1.45   reinoud 		on_vnode = LIST_EMPTY(&vp->v_dirtyblkhd)
   6184  1.45   reinoud 			&& UVM_OBJ_IS_CLEAN(&vp->v_uobj);
   6185  1.45   reinoud 		if (on_type || (on_flags || on_vnode)) { /* XXX */
   6186  1.45   reinoud 			/* not dirty (enough?) */
   6187  1.45   reinoud 			mutex_exit(&vp->v_interlock);
   6188  1.45   reinoud 			continue;
   6189  1.45   reinoud 		}
   6190  1.45   reinoud 
   6191  1.45   reinoud 		mutex_exit(&mntvnode_lock);
   6192  1.45   reinoud 		error = vget(vp, LK_EXCLUSIVE | LK_NOWAIT | LK_INTERLOCK);
   6193  1.45   reinoud 		if (error) {
   6194  1.45   reinoud 			mutex_enter(&mntvnode_lock);
   6195  1.45   reinoud 			if (error == ENOENT)
   6196  1.45   reinoud 				goto derailed;
   6197  1.45   reinoud 			*ndirty += 1;
   6198  1.45   reinoud 			continue;
   6199  1.45   reinoud 		}
   6200  1.45   reinoud 
   6201  1.45   reinoud 		switch (pass) {
   6202  1.45   reinoud 		case 1:
   6203  1.45   reinoud 			VOP_FSYNC(vp, cred, 0 | FSYNC_DATAONLY,0,0);
   6204  1.45   reinoud 			break;
   6205  1.45   reinoud 		case 2:
   6206  1.45   reinoud 			vdirty = vp->v_numoutput;
   6207  1.45   reinoud 			if (vp->v_tag == VT_UDF)
   6208  1.45   reinoud 				vdirty += udf_node->outstanding_bufs +
   6209  1.45   reinoud 					udf_node->outstanding_nodedscr;
   6210  1.45   reinoud 			if (vdirty == 0)
   6211  1.45   reinoud 				VOP_FSYNC(vp, cred, 0,0,0);
   6212  1.45   reinoud 			*ndirty += vdirty;
   6213  1.45   reinoud 			break;
   6214  1.45   reinoud 		case 3:
   6215  1.45   reinoud 			vdirty = vp->v_numoutput;
   6216  1.45   reinoud 			if (vp->v_tag == VT_UDF)
   6217  1.45   reinoud 				vdirty += udf_node->outstanding_bufs +
   6218  1.45   reinoud 					udf_node->outstanding_nodedscr;
   6219  1.45   reinoud 			*ndirty += vdirty;
   6220  1.45   reinoud 			break;
   6221  1.45   reinoud 		}
   6222  1.45   reinoud 
   6223  1.45   reinoud 		vput(vp);
   6224  1.45   reinoud 		mutex_enter(&mntvnode_lock);
   6225  1.45   reinoud 	}
   6226  1.45   reinoud 	DPRINTF(SYNC, ("END sync_pass %d\n", pass));
   6227  1.45   reinoud }
   6228  1.45   reinoud 
   6229  1.45   reinoud 
   6230  1.45   reinoud void
   6231  1.45   reinoud udf_do_sync(struct udf_mount *ump, kauth_cred_t cred, int waitfor)
   6232  1.45   reinoud {
   6233  1.45   reinoud 	int dummy, ndirty;
   6234  1.45   reinoud 
   6235  1.45   reinoud 	mutex_enter(&mntvnode_lock);
   6236  1.45   reinoud recount:
   6237  1.45   reinoud 	dummy = 0;
   6238  1.45   reinoud 	DPRINTF(CALL, ("issue VOP_FSYNC(DATA only) on all nodes\n"));
   6239  1.45   reinoud 	DPRINTF(SYNC, ("issue VOP_FSYNC(DATA only) on all nodes\n"));
   6240  1.45   reinoud 	udf_sync_pass(ump, cred, waitfor, 1, &dummy);
   6241  1.45   reinoud 
   6242  1.45   reinoud 	DPRINTF(CALL, ("issue VOP_FSYNC(COMPLETE) on all finished nodes\n"));
   6243  1.45   reinoud 	DPRINTF(SYNC, ("issue VOP_FSYNC(COMPLETE) on all finished nodes\n"));
   6244  1.45   reinoud 	udf_sync_pass(ump, cred, waitfor, 2, &dummy);
   6245  1.45   reinoud 
   6246  1.45   reinoud 	if (waitfor == MNT_WAIT) {
   6247  1.45   reinoud 		ndirty = ump->devvp->v_numoutput;
   6248  1.77   reinoud 		DPRINTF(SYNC, ("counting pending blocks: on devvp %d\n",
   6249  1.45   reinoud 			ndirty));
   6250  1.45   reinoud 		udf_sync_pass(ump, cred, waitfor, 3, &ndirty);
   6251  1.77   reinoud 		DPRINTF(SYNC, ("counted num dirty pending blocks %d\n",
   6252  1.45   reinoud 			ndirty));
   6253  1.45   reinoud 
   6254  1.45   reinoud 		if (ndirty) {
   6255  1.45   reinoud 			/* 1/4 second wait */
   6256  1.45   reinoud 			cv_timedwait(&ump->dirtynodes_cv, &mntvnode_lock,
   6257  1.45   reinoud 				hz/4);
   6258  1.45   reinoud 			goto recount;
   6259  1.45   reinoud 		}
   6260  1.45   reinoud 	}
   6261  1.45   reinoud 
   6262  1.45   reinoud 	mutex_exit(&mntvnode_lock);
   6263  1.45   reinoud }
   6264  1.45   reinoud 
   6265   1.1   reinoud /* --------------------------------------------------------------------- */
   6266   1.1   reinoud 
   6267   1.1   reinoud /*
   6268  1.45   reinoud  * Read and write file extent in/from the buffer.
   6269  1.45   reinoud  *
   6270  1.45   reinoud  * The splitup of the extent into seperate request-buffers is to minimise
   6271  1.45   reinoud  * copying around as much as possible.
   6272  1.45   reinoud  *
   6273   1.1   reinoud  * block based file reading and writing
   6274   1.1   reinoud  */
   6275   1.1   reinoud 
   6276   1.1   reinoud static int
   6277   1.1   reinoud udf_read_internal(struct udf_node *node, uint8_t *blob)
   6278   1.1   reinoud {
   6279   1.1   reinoud 	struct udf_mount *ump;
   6280  1.45   reinoud 	struct file_entry     *fe = node->fe;
   6281  1.45   reinoud 	struct extfile_entry *efe = node->efe;
   6282   1.1   reinoud 	uint64_t inflen;
   6283   1.1   reinoud 	uint32_t sector_size;
   6284   1.1   reinoud 	uint8_t  *pos;
   6285   1.1   reinoud 	int icbflags, addr_type;
   6286   1.1   reinoud 
   6287   1.1   reinoud 	/* get extent and do some paranoia checks */
   6288   1.1   reinoud 	ump = node->ump;
   6289   1.1   reinoud 	sector_size = ump->discinfo.sector_size;
   6290   1.1   reinoud 
   6291   1.1   reinoud 	if (fe) {
   6292   1.1   reinoud 		inflen   = udf_rw64(fe->inf_len);
   6293   1.1   reinoud 		pos      = &fe->data[0] + udf_rw32(fe->l_ea);
   6294   1.1   reinoud 		icbflags = udf_rw16(fe->icbtag.flags);
   6295  1.45   reinoud 	} else {
   6296  1.45   reinoud 		assert(node->efe);
   6297   1.1   reinoud 		inflen   = udf_rw64(efe->inf_len);
   6298   1.1   reinoud 		pos      = &efe->data[0] + udf_rw32(efe->l_ea);
   6299   1.1   reinoud 		icbflags = udf_rw16(efe->icbtag.flags);
   6300   1.9  christos 	}
   6301   1.1   reinoud 	addr_type = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   6302   1.1   reinoud 
   6303   1.1   reinoud 	assert(addr_type == UDF_ICB_INTERN_ALLOC);
   6304   1.1   reinoud 	assert(inflen < sector_size);
   6305   1.1   reinoud 
   6306   1.1   reinoud 	/* copy out info */
   6307   1.1   reinoud 	memset(blob, 0, sector_size);
   6308   1.1   reinoud 	memcpy(blob, pos, inflen);
   6309   1.1   reinoud 
   6310   1.1   reinoud 	return 0;
   6311   1.1   reinoud }
   6312   1.1   reinoud 
   6313   1.1   reinoud 
   6314  1.45   reinoud static int
   6315  1.45   reinoud udf_write_internal(struct udf_node *node, uint8_t *blob)
   6316   1.1   reinoud {
   6317  1.45   reinoud 	struct udf_mount *ump;
   6318  1.45   reinoud 	struct file_entry     *fe = node->fe;
   6319  1.45   reinoud 	struct extfile_entry *efe = node->efe;
   6320  1.45   reinoud 	uint64_t inflen;
   6321   1.1   reinoud 	uint32_t sector_size;
   6322  1.45   reinoud 	uint8_t  *pos;
   6323  1.45   reinoud 	int icbflags, addr_type;
   6324  1.45   reinoud 
   6325  1.45   reinoud 	/* get extent and do some paranoia checks */
   6326  1.45   reinoud 	ump = node->ump;
   6327  1.45   reinoud 	sector_size = ump->discinfo.sector_size;
   6328   1.1   reinoud 
   6329  1.45   reinoud 	if (fe) {
   6330  1.45   reinoud 		inflen   = udf_rw64(fe->inf_len);
   6331  1.45   reinoud 		pos      = &fe->data[0] + udf_rw32(fe->l_ea);
   6332  1.45   reinoud 		icbflags = udf_rw16(fe->icbtag.flags);
   6333  1.45   reinoud 	} else {
   6334  1.45   reinoud 		assert(node->efe);
   6335  1.45   reinoud 		inflen   = udf_rw64(efe->inf_len);
   6336  1.45   reinoud 		pos      = &efe->data[0] + udf_rw32(efe->l_ea);
   6337  1.45   reinoud 		icbflags = udf_rw16(efe->icbtag.flags);
   6338  1.45   reinoud 	}
   6339  1.45   reinoud 	addr_type = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   6340   1.1   reinoud 
   6341  1.45   reinoud 	assert(addr_type == UDF_ICB_INTERN_ALLOC);
   6342  1.45   reinoud 	assert(inflen < sector_size);
   6343   1.1   reinoud 
   6344  1.45   reinoud 	/* copy in blob */
   6345  1.45   reinoud 	/* memset(pos, 0, inflen); */
   6346  1.45   reinoud 	memcpy(pos, blob, inflen);
   6347   1.1   reinoud 
   6348  1.45   reinoud 	return 0;
   6349   1.1   reinoud }
   6350   1.1   reinoud 
   6351   1.1   reinoud 
   6352   1.1   reinoud void
   6353  1.45   reinoud udf_read_filebuf(struct udf_node *udf_node, struct buf *buf)
   6354   1.1   reinoud {
   6355   1.1   reinoud 	struct buf *nestbuf;
   6356  1.45   reinoud 	struct udf_mount *ump = udf_node->ump;
   6357  1.10  christos 	uint64_t   *mapping;
   6358   1.1   reinoud 	uint64_t    run_start;
   6359   1.1   reinoud 	uint32_t    sector_size;
   6360   1.1   reinoud 	uint32_t    buf_offset, sector, rbuflen, rblk;
   6361  1.45   reinoud 	uint32_t    from, lblkno;
   6362  1.45   reinoud 	uint32_t    sectors;
   6363   1.1   reinoud 	uint8_t    *buf_pos;
   6364  1.45   reinoud 	int error, run_length, isdir, what;
   6365   1.1   reinoud 
   6366  1.45   reinoud 	sector_size = udf_node->ump->discinfo.sector_size;
   6367   1.1   reinoud 
   6368   1.1   reinoud 	from    = buf->b_blkno;
   6369   1.1   reinoud 	sectors = buf->b_bcount / sector_size;
   6370   1.1   reinoud 
   6371  1.45   reinoud 	isdir   = (udf_node->vnode->v_type == VDIR);
   6372  1.45   reinoud 	what    = isdir ? UDF_C_FIDS : UDF_C_USERDATA;
   6373  1.45   reinoud 
   6374   1.1   reinoud 	/* assure we have enough translation slots */
   6375  1.45   reinoud 	KASSERT(buf->b_bcount / sector_size <= UDF_MAX_MAPPINGS);
   6376  1.45   reinoud 	KASSERT(MAXPHYS / sector_size <= UDF_MAX_MAPPINGS);
   6377   1.1   reinoud 
   6378  1.45   reinoud 	if (sectors > UDF_MAX_MAPPINGS) {
   6379   1.1   reinoud 		printf("udf_read_filebuf: implementation limit on bufsize\n");
   6380   1.1   reinoud 		buf->b_error  = EIO;
   6381   1.1   reinoud 		biodone(buf);
   6382   1.1   reinoud 		return;
   6383   1.9  christos 	}
   6384   1.1   reinoud 
   6385  1.45   reinoud 	mapping = malloc(sizeof(*mapping) * UDF_MAX_MAPPINGS, M_TEMP, M_WAITOK);
   6386  1.10  christos 
   6387   1.1   reinoud 	error = 0;
   6388   1.1   reinoud 	DPRINTF(READ, ("\ttranslate %d-%d\n", from, sectors));
   6389  1.45   reinoud 	error = udf_translate_file_extent(udf_node, from, sectors, mapping);
   6390   1.1   reinoud 	if (error) {
   6391   1.1   reinoud 		buf->b_error  = error;
   6392   1.1   reinoud 		biodone(buf);
   6393  1.10  christos 		goto out;
   6394   1.9  christos 	}
   6395   1.1   reinoud 	DPRINTF(READ, ("\ttranslate extent went OK\n"));
   6396   1.1   reinoud 
   6397  1.45   reinoud 	/* pre-check if its an internal */
   6398   1.1   reinoud 	if (*mapping == UDF_TRANS_INTERN) {
   6399  1.45   reinoud 		error = udf_read_internal(udf_node, (uint8_t *) buf->b_data);
   6400  1.45   reinoud 		if (error)
   6401   1.1   reinoud 			buf->b_error  = error;
   6402   1.1   reinoud 		biodone(buf);
   6403  1.10  christos 		goto out;
   6404   1.9  christos 	}
   6405   1.1   reinoud 	DPRINTF(READ, ("\tnot intern\n"));
   6406   1.1   reinoud 
   6407  1.45   reinoud #ifdef DEBUG
   6408  1.45   reinoud 	if (udf_verbose & UDF_DEBUG_TRANSLATE) {
   6409  1.45   reinoud 		printf("Returned translation table:\n");
   6410  1.45   reinoud 		for (sector = 0; sector < sectors; sector++) {
   6411  1.45   reinoud 			printf("%d : %"PRIu64"\n", sector, mapping[sector]);
   6412  1.45   reinoud 		}
   6413  1.45   reinoud 	}
   6414  1.45   reinoud #endif
   6415  1.45   reinoud 
   6416  1.45   reinoud 	/* request read-in of data from disc sheduler */
   6417   1.1   reinoud 	buf->b_resid = buf->b_bcount;
   6418   1.1   reinoud 	for (sector = 0; sector < sectors; sector++) {
   6419   1.1   reinoud 		buf_offset = sector * sector_size;
   6420   1.1   reinoud 		buf_pos    = (uint8_t *) buf->b_data + buf_offset;
   6421   1.1   reinoud 		DPRINTF(READ, ("\tprocessing rel sector %d\n", sector));
   6422   1.1   reinoud 
   6423  1.45   reinoud 		/* check if its zero or unmapped to stop reading */
   6424   1.1   reinoud 		switch (mapping[sector]) {
   6425   1.1   reinoud 		case UDF_TRANS_UNMAPPED:
   6426   1.1   reinoud 		case UDF_TRANS_ZERO:
   6427  1.45   reinoud 			/* copy zero sector TODO runlength like below */
   6428   1.1   reinoud 			memset(buf_pos, 0, sector_size);
   6429   1.1   reinoud 			DPRINTF(READ, ("\treturning zero sector\n"));
   6430   1.1   reinoud 			nestiobuf_done(buf, sector_size, 0);
   6431   1.1   reinoud 			break;
   6432   1.1   reinoud 		default :
   6433   1.1   reinoud 			DPRINTF(READ, ("\tread sector "
   6434   1.1   reinoud 			    "%"PRIu64"\n", mapping[sector]));
   6435   1.1   reinoud 
   6436  1.45   reinoud 			lblkno = from + sector;
   6437   1.1   reinoud 			run_start  = mapping[sector];
   6438   1.1   reinoud 			run_length = 1;
   6439   1.1   reinoud 			while (sector < sectors-1) {
   6440   1.1   reinoud 				if (mapping[sector+1] != mapping[sector]+1)
   6441   1.1   reinoud 					break;
   6442   1.1   reinoud 				run_length++;
   6443   1.1   reinoud 				sector++;
   6444   1.9  christos 			}
   6445   1.1   reinoud 
   6446   1.1   reinoud 			/*
   6447   1.1   reinoud 			 * nest an iobuf and mark it for async reading. Since
   6448   1.1   reinoud 			 * we're using nested buffers, they can't be cached by
   6449   1.1   reinoud 			 * design.
   6450   1.1   reinoud 			 */
   6451   1.1   reinoud 			rbuflen = run_length * sector_size;
   6452   1.1   reinoud 			rblk    = run_start  * (sector_size/DEV_BSIZE);
   6453   1.1   reinoud 
   6454  1.44        ad 			nestbuf = getiobuf(NULL, true);
   6455   1.1   reinoud 			nestiobuf_setup(buf, nestbuf, buf_offset, rbuflen);
   6456   1.1   reinoud 			/* nestbuf is B_ASYNC */
   6457   1.1   reinoud 
   6458  1.45   reinoud 			/* identify this nestbuf */
   6459  1.45   reinoud 			nestbuf->b_lblkno   = lblkno;
   6460  1.45   reinoud 			assert(nestbuf->b_vp == udf_node->vnode);
   6461  1.45   reinoud 
   6462  1.45   reinoud 			/* CD shedules on raw blkno */
   6463  1.45   reinoud 			nestbuf->b_blkno      = rblk;
   6464  1.45   reinoud 			nestbuf->b_proc       = NULL;
   6465  1.45   reinoud 			nestbuf->b_rawblkno   = rblk;
   6466  1.45   reinoud 			nestbuf->b_udf_c_type = what;
   6467  1.45   reinoud 
   6468  1.45   reinoud 			udf_discstrat_queuebuf(ump, nestbuf);
   6469   1.9  christos 		}
   6470   1.9  christos 	}
   6471  1.10  christos out:
   6472  1.45   reinoud 	/* if we're synchronously reading, wait for the completion */
   6473  1.45   reinoud 	if ((buf->b_flags & B_ASYNC) == 0)
   6474  1.45   reinoud 		biowait(buf);
   6475  1.45   reinoud 
   6476   1.1   reinoud 	DPRINTF(READ, ("\tend of read_filebuf\n"));
   6477  1.45   reinoud 	free(mapping, M_TEMP);
   6478  1.10  christos 	return;
   6479   1.1   reinoud }
   6480   1.1   reinoud 
   6481   1.1   reinoud 
   6482  1.45   reinoud void
   6483  1.45   reinoud udf_write_filebuf(struct udf_node *udf_node, struct buf *buf)
   6484  1.45   reinoud {
   6485  1.45   reinoud 	struct buf *nestbuf;
   6486  1.45   reinoud 	struct udf_mount *ump = udf_node->ump;
   6487  1.45   reinoud 	uint64_t   *mapping;
   6488  1.45   reinoud 	uint64_t    run_start;
   6489  1.45   reinoud 	uint32_t    lb_size;
   6490  1.45   reinoud 	uint32_t    buf_offset, lb_num, rbuflen, rblk;
   6491  1.45   reinoud 	uint32_t    from, lblkno;
   6492  1.45   reinoud 	uint32_t    num_lb;
   6493  1.45   reinoud 	int error, run_length, isdir, what, s;
   6494  1.45   reinoud 
   6495  1.45   reinoud 	lb_size = udf_rw32(udf_node->ump->logical_vol->lb_size);
   6496  1.45   reinoud 
   6497  1.45   reinoud 	from   = buf->b_blkno;
   6498  1.45   reinoud 	num_lb = buf->b_bcount / lb_size;
   6499   1.1   reinoud 
   6500  1.45   reinoud 	isdir  = (udf_node->vnode->v_type == VDIR);
   6501  1.45   reinoud 	what   = isdir ? UDF_C_FIDS : UDF_C_USERDATA;
   6502   1.1   reinoud 
   6503  1.70   reinoud 	if (udf_node == ump->metadatabitmap_node)
   6504  1.70   reinoud 		what = UDF_C_METADATA_SBM;
   6505  1.70   reinoud 
   6506  1.45   reinoud 	/* assure we have enough translation slots */
   6507  1.45   reinoud 	KASSERT(buf->b_bcount / lb_size <= UDF_MAX_MAPPINGS);
   6508  1.45   reinoud 	KASSERT(MAXPHYS / lb_size <= UDF_MAX_MAPPINGS);
   6509   1.1   reinoud 
   6510  1.45   reinoud 	if (num_lb > UDF_MAX_MAPPINGS) {
   6511  1.45   reinoud 		printf("udf_write_filebuf: implementation limit on bufsize\n");
   6512  1.45   reinoud 		buf->b_error  = EIO;
   6513  1.45   reinoud 		biodone(buf);
   6514  1.45   reinoud 		return;
   6515  1.45   reinoud 	}
   6516   1.1   reinoud 
   6517  1.45   reinoud 	mapping = malloc(sizeof(*mapping) * UDF_MAX_MAPPINGS, M_TEMP, M_WAITOK);
   6518   1.1   reinoud 
   6519  1.45   reinoud 	error = 0;
   6520  1.45   reinoud 	DPRINTF(WRITE, ("\ttranslate %d-%d\n", from, num_lb));
   6521  1.45   reinoud 	error = udf_translate_file_extent(udf_node, from, num_lb, mapping);
   6522  1.45   reinoud 	if (error) {
   6523  1.45   reinoud 		buf->b_error  = error;
   6524  1.45   reinoud 		biodone(buf);
   6525  1.45   reinoud 		goto out;
   6526   1.9  christos 	}
   6527  1.45   reinoud 	DPRINTF(WRITE, ("\ttranslate extent went OK\n"));
   6528  1.45   reinoud 
   6529  1.45   reinoud 	/* if its internally mapped, we can write it in the descriptor itself */
   6530  1.45   reinoud 	if (*mapping == UDF_TRANS_INTERN) {
   6531  1.45   reinoud 		/* TODO paranoia check if we ARE going to have enough space */
   6532  1.45   reinoud 		error = udf_write_internal(udf_node, (uint8_t *) buf->b_data);
   6533  1.45   reinoud 		if (error)
   6534  1.45   reinoud 			buf->b_error  = error;
   6535  1.45   reinoud 		biodone(buf);
   6536  1.45   reinoud 		goto out;
   6537   1.9  christos 	}
   6538  1.45   reinoud 	DPRINTF(WRITE, ("\tnot intern\n"));
   6539  1.45   reinoud 
   6540  1.45   reinoud 	/* request write out of data to disc sheduler */
   6541  1.45   reinoud 	buf->b_resid = buf->b_bcount;
   6542  1.45   reinoud 	for (lb_num = 0; lb_num < num_lb; lb_num++) {
   6543  1.45   reinoud 		buf_offset = lb_num * lb_size;
   6544  1.45   reinoud 		DPRINTF(WRITE, ("\tprocessing rel lb_num %d\n", lb_num));
   6545  1.45   reinoud 
   6546  1.45   reinoud 		/*
   6547  1.45   reinoud 		 * Mappings are not that important here. Just before we write
   6548  1.45   reinoud 		 * the lb_num we late-allocate them when needed and update the
   6549  1.45   reinoud 		 * mapping in the udf_node.
   6550  1.45   reinoud 		 */
   6551  1.45   reinoud 
   6552  1.45   reinoud 		/* XXX why not ignore the mapping altogether ? */
   6553  1.45   reinoud 		/* TODO estimate here how much will be late-allocated */
   6554  1.45   reinoud 		DPRINTF(WRITE, ("\twrite lb_num "
   6555  1.45   reinoud 		    "%"PRIu64, mapping[lb_num]));
   6556  1.45   reinoud 
   6557  1.45   reinoud 		lblkno = from + lb_num;
   6558  1.45   reinoud 		run_start  = mapping[lb_num];
   6559  1.45   reinoud 		run_length = 1;
   6560  1.45   reinoud 		while (lb_num < num_lb-1) {
   6561  1.45   reinoud 			if (mapping[lb_num+1] != mapping[lb_num]+1)
   6562  1.45   reinoud 				if (mapping[lb_num+1] != mapping[lb_num])
   6563  1.45   reinoud 					break;
   6564  1.45   reinoud 			run_length++;
   6565  1.45   reinoud 			lb_num++;
   6566  1.45   reinoud 		}
   6567  1.45   reinoud 		DPRINTF(WRITE, ("+ %d\n", run_length));
   6568   1.1   reinoud 
   6569  1.45   reinoud 		/* nest an iobuf on the master buffer for the extent */
   6570  1.45   reinoud 		rbuflen = run_length * lb_size;
   6571  1.45   reinoud 		rblk = run_start * (lb_size/DEV_BSIZE);
   6572   1.1   reinoud 
   6573  1.45   reinoud #if 0
   6574  1.45   reinoud 		/* if its zero or unmapped, our blknr gets -1 for unmapped */
   6575  1.45   reinoud 		switch (mapping[lb_num]) {
   6576  1.45   reinoud 		case UDF_TRANS_UNMAPPED:
   6577  1.45   reinoud 		case UDF_TRANS_ZERO:
   6578  1.45   reinoud 			rblk = -1;
   6579   1.1   reinoud 			break;
   6580  1.45   reinoud 		default:
   6581  1.45   reinoud 			rblk = run_start * (lb_size/DEV_BSIZE);
   6582   1.1   reinoud 			break;
   6583   1.9  christos 		}
   6584  1.45   reinoud #endif
   6585   1.1   reinoud 
   6586  1.45   reinoud 		nestbuf = getiobuf(NULL, true);
   6587  1.45   reinoud 		nestiobuf_setup(buf, nestbuf, buf_offset, rbuflen);
   6588  1.45   reinoud 		/* nestbuf is B_ASYNC */
   6589  1.45   reinoud 
   6590  1.45   reinoud 		/* identify this nestbuf */
   6591  1.45   reinoud 		nestbuf->b_lblkno   = lblkno;
   6592  1.45   reinoud 		KASSERT(nestbuf->b_vp == udf_node->vnode);
   6593  1.45   reinoud 
   6594  1.45   reinoud 		/* CD shedules on raw blkno */
   6595  1.45   reinoud 		nestbuf->b_blkno      = rblk;
   6596  1.45   reinoud 		nestbuf->b_proc       = NULL;
   6597  1.45   reinoud 		nestbuf->b_rawblkno   = rblk;
   6598  1.45   reinoud 		nestbuf->b_udf_c_type = what;
   6599  1.45   reinoud 
   6600  1.45   reinoud 		/* increment our outstanding bufs counter */
   6601  1.45   reinoud 		s = splbio();
   6602  1.45   reinoud 			udf_node->outstanding_bufs++;
   6603  1.45   reinoud 		splx(s);
   6604   1.1   reinoud 
   6605  1.45   reinoud 		udf_discstrat_queuebuf(ump, nestbuf);
   6606   1.9  christos 	}
   6607  1.45   reinoud out:
   6608  1.45   reinoud 	/* if we're synchronously writing, wait for the completion */
   6609  1.45   reinoud 	if ((buf->b_flags & B_ASYNC) == 0)
   6610  1.45   reinoud 		biowait(buf);
   6611  1.45   reinoud 
   6612  1.45   reinoud 	DPRINTF(WRITE, ("\tend of write_filebuf\n"));
   6613  1.45   reinoud 	free(mapping, M_TEMP);
   6614  1.45   reinoud 	return;
   6615   1.1   reinoud }
   6616   1.1   reinoud 
   6617   1.1   reinoud /* --------------------------------------------------------------------- */
   6618   1.1   reinoud 
   6619  1.45   reinoud 
   6620