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udf_allocation.c revision 1.32
      1  1.32  hannken /* $NetBSD: udf_allocation.c,v 1.32 2011/06/16 09:21:02 hannken Exp $ */
      2   1.1  reinoud 
      3   1.1  reinoud /*
      4   1.1  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 #include <sys/cdefs.h>
     30   1.1  reinoud #ifndef lint
     31  1.32  hannken __KERNEL_RCSID(0, "$NetBSD: udf_allocation.c,v 1.32 2011/06/16 09:21:02 hannken Exp $");
     32   1.1  reinoud #endif /* not lint */
     33   1.1  reinoud 
     34   1.1  reinoud 
     35   1.1  reinoud #if defined(_KERNEL_OPT)
     36   1.1  reinoud #include "opt_compat_netbsd.h"
     37   1.1  reinoud #endif
     38   1.1  reinoud 
     39   1.1  reinoud /* TODO strip */
     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   1.1  reinoud #include <sys/kauth.h>
     59   1.1  reinoud #include <sys/kthread.h>
     60   1.1  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   1.1  reinoud 
     65   1.1  reinoud #include "udf.h"
     66   1.1  reinoud #include "udf_subr.h"
     67   1.1  reinoud #include "udf_bswap.h"
     68   1.1  reinoud 
     69   1.1  reinoud 
     70   1.1  reinoud #define VTOI(vnode) ((struct udf_node *) vnode->v_data)
     71   1.1  reinoud 
     72   1.1  reinoud static void udf_record_allocation_in_node(struct udf_mount *ump,
     73   1.1  reinoud 	struct buf *buf, uint16_t vpart_num, uint64_t *mapping,
     74   1.1  reinoud 	struct long_ad *node_ad_cpy);
     75   1.1  reinoud 
     76  1.28  reinoud static void udf_collect_free_space_for_vpart(struct udf_mount *ump,
     77  1.28  reinoud 	uint16_t vpart_num, uint32_t num_lb);
     78  1.28  reinoud 
     79  1.31  reinoud static int udf_ads_merge(uint32_t max_len, uint32_t lb_size, struct long_ad *a1, struct long_ad *a2);
     80  1.28  reinoud static void udf_wipe_adslots(struct udf_node *udf_node);
     81  1.28  reinoud static void udf_count_alloc_exts(struct udf_node *udf_node);
     82  1.28  reinoud 
     83   1.1  reinoud 
     84   1.1  reinoud /* --------------------------------------------------------------------- */
     85  1.11  reinoud 
     86  1.12  reinoud #if 0
     87   1.1  reinoud #if 1
     88   1.1  reinoud static void
     89   1.1  reinoud udf_node_dump(struct udf_node *udf_node) {
     90   1.1  reinoud 	struct file_entry    *fe;
     91   1.1  reinoud 	struct extfile_entry *efe;
     92   1.1  reinoud 	struct icb_tag *icbtag;
     93  1.11  reinoud 	struct long_ad s_ad;
     94   1.1  reinoud 	uint64_t inflen;
     95  1.11  reinoud 	uint32_t icbflags, addr_type;
     96   1.1  reinoud 	uint32_t len, lb_num;
     97  1.11  reinoud 	uint32_t flags;
     98   1.1  reinoud 	int part_num;
     99  1.11  reinoud 	int lb_size, eof, slot;
    100   1.1  reinoud 
    101  1.10  reinoud 	if ((udf_verbose & UDF_DEBUG_NODEDUMP) == 0)
    102   1.1  reinoud 		return;
    103   1.1  reinoud 
    104   1.1  reinoud 	lb_size = udf_rw32(udf_node->ump->logical_vol->lb_size);
    105   1.1  reinoud 
    106   1.1  reinoud 	fe  = udf_node->fe;
    107   1.1  reinoud 	efe = udf_node->efe;
    108   1.1  reinoud 	if (fe) {
    109   1.1  reinoud 		icbtag = &fe->icbtag;
    110   1.1  reinoud 		inflen = udf_rw64(fe->inf_len);
    111   1.1  reinoud 	} else {
    112   1.1  reinoud 		icbtag = &efe->icbtag;
    113   1.1  reinoud 		inflen = udf_rw64(efe->inf_len);
    114   1.1  reinoud 	}
    115   1.1  reinoud 
    116   1.1  reinoud 	icbflags   = udf_rw16(icbtag->flags);
    117   1.1  reinoud 	addr_type  = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
    118   1.1  reinoud 
    119  1.11  reinoud 	printf("udf_node_dump %p :\n", udf_node);
    120   1.1  reinoud 
    121   1.1  reinoud 	if (addr_type == UDF_ICB_INTERN_ALLOC) {
    122  1.11  reinoud 		printf("\tIntern alloc, len = %"PRIu64"\n", inflen);
    123   1.1  reinoud 		return;
    124   1.1  reinoud 	}
    125   1.1  reinoud 
    126  1.11  reinoud 	printf("\tInflen  = %"PRIu64"\n", inflen);
    127  1.11  reinoud 	printf("\t\t");
    128   1.1  reinoud 
    129  1.11  reinoud 	slot = 0;
    130  1.11  reinoud 	for (;;) {
    131  1.11  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
    132  1.11  reinoud 		if (eof)
    133  1.11  reinoud 			break;
    134  1.11  reinoud 		part_num = udf_rw16(s_ad.loc.part_num);
    135  1.11  reinoud 		lb_num = udf_rw32(s_ad.loc.lb_num);
    136  1.11  reinoud 		len   = udf_rw32(s_ad.len);
    137  1.11  reinoud 		flags = UDF_EXT_FLAGS(len);
    138  1.11  reinoud 		len   = UDF_EXT_LEN(len);
    139   1.1  reinoud 
    140   1.1  reinoud 		printf("[");
    141   1.1  reinoud 		if (part_num >= 0)
    142   1.1  reinoud 			printf("part %d, ", part_num);
    143   1.1  reinoud 		printf("lb_num %d, len %d", lb_num, len);
    144   1.1  reinoud 		if (flags)
    145  1.10  reinoud 			printf(", flags %d", flags>>30);
    146   1.1  reinoud 		printf("] ");
    147  1.11  reinoud 
    148  1.11  reinoud 		if (flags == UDF_EXT_REDIRECT) {
    149  1.11  reinoud 			printf("\n\textent END\n\tallocation extent\n\t\t");
    150  1.11  reinoud 		}
    151  1.11  reinoud 
    152  1.11  reinoud 		slot++;
    153   1.1  reinoud 	}
    154  1.11  reinoud 	printf("\n\tl_ad END\n\n");
    155   1.1  reinoud }
    156   1.1  reinoud #else
    157   1.1  reinoud #define udf_node_dump(a)
    158   1.1  reinoud #endif
    159   1.1  reinoud 
    160   1.9  reinoud 
    161   1.9  reinoud static void
    162   1.9  reinoud udf_assert_allocated(struct udf_mount *ump, uint16_t vpart_num,
    163   1.9  reinoud 	uint32_t lb_num, uint32_t num_lb)
    164   1.9  reinoud {
    165   1.9  reinoud 	struct udf_bitmap *bitmap;
    166   1.9  reinoud 	struct part_desc *pdesc;
    167   1.9  reinoud 	uint32_t ptov;
    168   1.9  reinoud 	uint32_t bitval;
    169   1.9  reinoud 	uint8_t *bpos;
    170   1.9  reinoud 	int bit;
    171   1.9  reinoud 	int phys_part;
    172   1.9  reinoud 	int ok;
    173   1.9  reinoud 
    174  1.10  reinoud 	DPRINTF(PARANOIA, ("udf_assert_allocated: check virt lbnum %d "
    175   1.9  reinoud 			  "part %d + %d sect\n", lb_num, vpart_num, num_lb));
    176   1.9  reinoud 
    177   1.9  reinoud 	/* get partition backing up this vpart_num */
    178   1.9  reinoud 	pdesc = ump->partitions[ump->vtop[vpart_num]];
    179   1.9  reinoud 
    180   1.9  reinoud 	switch (ump->vtop_tp[vpart_num]) {
    181   1.9  reinoud 	case UDF_VTOP_TYPE_PHYS :
    182   1.9  reinoud 	case UDF_VTOP_TYPE_SPARABLE :
    183   1.9  reinoud 		/* free space to freed or unallocated space bitmap */
    184   1.9  reinoud 		ptov      = udf_rw32(pdesc->start_loc);
    185   1.9  reinoud 		phys_part = ump->vtop[vpart_num];
    186   1.9  reinoud 
    187   1.9  reinoud 		/* use unallocated bitmap */
    188   1.9  reinoud 		bitmap = &ump->part_unalloc_bits[phys_part];
    189   1.9  reinoud 
    190   1.9  reinoud 		/* if no bitmaps are defined, bail out */
    191   1.9  reinoud 		if (bitmap->bits == NULL)
    192   1.9  reinoud 			break;
    193   1.9  reinoud 
    194   1.9  reinoud 		/* check bits */
    195   1.9  reinoud 		KASSERT(bitmap->bits);
    196   1.9  reinoud 		ok = 1;
    197   1.9  reinoud 		bpos = bitmap->bits + lb_num/8;
    198   1.9  reinoud 		bit  = lb_num % 8;
    199   1.9  reinoud 		while (num_lb > 0) {
    200   1.9  reinoud 			bitval = (1 << bit);
    201   1.9  reinoud 			DPRINTF(PARANOIA, ("XXX : check %d, %p, bit %d\n",
    202   1.9  reinoud 				lb_num, bpos, bit));
    203   1.9  reinoud 			KASSERT(bitmap->bits + lb_num/8 == bpos);
    204   1.9  reinoud 			if (*bpos & bitval) {
    205   1.9  reinoud 				printf("\tlb_num %d is NOT marked busy\n",
    206   1.9  reinoud 					lb_num);
    207   1.9  reinoud 				ok = 0;
    208   1.9  reinoud 			}
    209   1.9  reinoud 			lb_num++; num_lb--;
    210   1.9  reinoud 			bit = (bit + 1) % 8;
    211   1.9  reinoud 			if (bit == 0)
    212   1.9  reinoud 				bpos++;
    213   1.9  reinoud 		}
    214   1.9  reinoud 		if (!ok) {
    215   1.9  reinoud 			/* KASSERT(0); */
    216   1.9  reinoud 		}
    217   1.9  reinoud 
    218   1.9  reinoud 		break;
    219   1.9  reinoud 	case UDF_VTOP_TYPE_VIRT :
    220   1.9  reinoud 		/* TODO check space */
    221   1.9  reinoud 		KASSERT(num_lb == 1);
    222   1.9  reinoud 		break;
    223   1.9  reinoud 	case UDF_VTOP_TYPE_META :
    224   1.9  reinoud 		/* TODO check space in the metadata bitmap */
    225   1.9  reinoud 	default:
    226   1.9  reinoud 		/* not implemented */
    227   1.9  reinoud 		break;
    228   1.9  reinoud 	}
    229   1.9  reinoud }
    230   1.9  reinoud 
    231   1.9  reinoud 
    232   1.1  reinoud static void
    233   1.1  reinoud udf_node_sanity_check(struct udf_node *udf_node,
    234  1.17  reinoud 		uint64_t *cnt_inflen, uint64_t *cnt_logblksrec)
    235  1.17  reinoud {
    236  1.17  reinoud 	union dscrptr *dscr;
    237   1.1  reinoud 	struct file_entry    *fe;
    238   1.1  reinoud 	struct extfile_entry *efe;
    239   1.1  reinoud 	struct icb_tag *icbtag;
    240  1.11  reinoud 	struct long_ad  s_ad;
    241   1.1  reinoud 	uint64_t inflen, logblksrec;
    242  1.11  reinoud 	uint32_t icbflags, addr_type;
    243  1.11  reinoud 	uint32_t len, lb_num, l_ea, l_ad, max_l_ad;
    244   1.9  reinoud 	uint16_t part_num;
    245  1.17  reinoud 	uint8_t *data_pos;
    246  1.11  reinoud 	int dscr_size, lb_size, flags, whole_lb;
    247  1.17  reinoud 	int i, slot, eof;
    248   1.1  reinoud 
    249   1.9  reinoud //	KASSERT(mutex_owned(&udf_node->ump->allocate_mutex));
    250   1.1  reinoud 
    251  1.10  reinoud 	if (1)
    252  1.10  reinoud 		udf_node_dump(udf_node);
    253  1.10  reinoud 
    254   1.1  reinoud 	lb_size = udf_rw32(udf_node->ump->logical_vol->lb_size);
    255   1.1  reinoud 
    256   1.1  reinoud 	fe  = udf_node->fe;
    257   1.1  reinoud 	efe = udf_node->efe;
    258   1.1  reinoud 	if (fe) {
    259  1.17  reinoud 		dscr       = (union dscrptr *) fe;
    260  1.17  reinoud 		icbtag     = &fe->icbtag;
    261  1.17  reinoud 		inflen     = udf_rw64(fe->inf_len);
    262  1.11  reinoud 		dscr_size  = sizeof(struct file_entry) -1;
    263   1.1  reinoud 		logblksrec = udf_rw64(fe->logblks_rec);
    264  1.11  reinoud 		l_ad       = udf_rw32(fe->l_ad);
    265   1.1  reinoud 		l_ea       = udf_rw32(fe->l_ea);
    266   1.1  reinoud 	} else {
    267  1.17  reinoud 		dscr       = (union dscrptr *) efe;
    268  1.17  reinoud 		icbtag     = &efe->icbtag;
    269  1.17  reinoud 		inflen     = udf_rw64(efe->inf_len);
    270  1.11  reinoud 		dscr_size  = sizeof(struct extfile_entry) -1;
    271   1.1  reinoud 		logblksrec = udf_rw64(efe->logblks_rec);
    272  1.11  reinoud 		l_ad       = udf_rw32(efe->l_ad);
    273   1.1  reinoud 		l_ea       = udf_rw32(efe->l_ea);
    274   1.1  reinoud 	}
    275  1.17  reinoud 	data_pos  = (uint8_t *) dscr + dscr_size + l_ea;
    276  1.11  reinoud 	max_l_ad   = lb_size - dscr_size - l_ea;
    277   1.1  reinoud 	icbflags   = udf_rw16(icbtag->flags);
    278   1.1  reinoud 	addr_type  = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
    279   1.1  reinoud 
    280  1.17  reinoud 	/* check if tail is zero */
    281  1.17  reinoud 	DPRINTF(PARANOIA, ("Sanity check blank tail\n"));
    282  1.17  reinoud 	for (i = l_ad; i < max_l_ad; i++) {
    283  1.17  reinoud 		if (data_pos[i] != 0)
    284  1.17  reinoud 			printf( "sanity_check: violation: node byte %d "
    285  1.17  reinoud 				"has value %d\n", i, data_pos[i]);
    286  1.17  reinoud 	}
    287  1.17  reinoud 
    288   1.1  reinoud 	/* reset counters */
    289   1.1  reinoud 	*cnt_inflen     = 0;
    290   1.1  reinoud 	*cnt_logblksrec = 0;
    291   1.1  reinoud 
    292   1.1  reinoud 	if (addr_type == UDF_ICB_INTERN_ALLOC) {
    293   1.1  reinoud 		KASSERT(l_ad <= max_l_ad);
    294   1.1  reinoud 		KASSERT(l_ad == inflen);
    295   1.1  reinoud 		*cnt_inflen = inflen;
    296   1.1  reinoud 		return;
    297   1.1  reinoud 	}
    298   1.1  reinoud 
    299   1.1  reinoud 	/* start counting */
    300   1.1  reinoud 	whole_lb = 1;
    301  1.11  reinoud 	slot = 0;
    302  1.11  reinoud 	for (;;) {
    303  1.11  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
    304  1.11  reinoud 		if (eof)
    305  1.11  reinoud 			break;
    306   1.1  reinoud 		KASSERT(whole_lb == 1);
    307  1.11  reinoud 
    308  1.11  reinoud 		part_num = udf_rw16(s_ad.loc.part_num);
    309  1.11  reinoud 		lb_num = udf_rw32(s_ad.loc.lb_num);
    310  1.11  reinoud 		len   = udf_rw32(s_ad.len);
    311  1.11  reinoud 		flags = UDF_EXT_FLAGS(len);
    312  1.11  reinoud 		len   = UDF_EXT_LEN(len);
    313  1.11  reinoud 
    314   1.6  reinoud 		if (flags != UDF_EXT_REDIRECT) {
    315   1.6  reinoud 			*cnt_inflen += len;
    316   1.6  reinoud 			if (flags == UDF_EXT_ALLOCATED) {
    317   1.6  reinoud 				*cnt_logblksrec += (len + lb_size -1) / lb_size;
    318   1.6  reinoud 			}
    319   1.6  reinoud 		} else {
    320   1.6  reinoud 			KASSERT(len == lb_size);
    321   1.1  reinoud 		}
    322   1.9  reinoud 		/* check allocation */
    323   1.9  reinoud 		if (flags == UDF_EXT_ALLOCATED)
    324   1.9  reinoud 			udf_assert_allocated(udf_node->ump, part_num, lb_num,
    325   1.9  reinoud 				(len + lb_size - 1) / lb_size);
    326   1.8  reinoud 
    327   1.8  reinoud 		/* check whole lb */
    328   1.1  reinoud 		whole_lb = ((len % lb_size) == 0);
    329  1.11  reinoud 
    330  1.11  reinoud 		slot++;
    331   1.1  reinoud 	}
    332   1.1  reinoud 	/* rest should be zero (ad_off > l_ad < max_l_ad - adlen) */
    333   1.1  reinoud 
    334   1.1  reinoud 	KASSERT(*cnt_inflen == inflen);
    335   1.1  reinoud 	KASSERT(*cnt_logblksrec == logblksrec);
    336   1.1  reinoud 
    337   1.9  reinoud //	KASSERT(mutex_owned(&udf_node->ump->allocate_mutex));
    338   1.1  reinoud }
    339   1.1  reinoud #else
    340  1.12  reinoud static void
    341  1.12  reinoud udf_node_sanity_check(struct udf_node *udf_node,
    342  1.12  reinoud 		uint64_t *cnt_inflen, uint64_t *cnt_logblksrec) {
    343  1.12  reinoud 	struct file_entry    *fe;
    344  1.12  reinoud 	struct extfile_entry *efe;
    345  1.12  reinoud 	struct icb_tag *icbtag;
    346  1.12  reinoud 	uint64_t inflen, logblksrec;
    347  1.12  reinoud 	int dscr_size, lb_size;
    348  1.12  reinoud 
    349  1.12  reinoud 	lb_size = udf_rw32(udf_node->ump->logical_vol->lb_size);
    350  1.12  reinoud 
    351  1.12  reinoud 	fe  = udf_node->fe;
    352  1.12  reinoud 	efe = udf_node->efe;
    353  1.12  reinoud 	if (fe) {
    354  1.12  reinoud 		icbtag = &fe->icbtag;
    355  1.12  reinoud 		inflen = udf_rw64(fe->inf_len);
    356  1.12  reinoud 		dscr_size  = sizeof(struct file_entry) -1;
    357  1.12  reinoud 		logblksrec = udf_rw64(fe->logblks_rec);
    358  1.12  reinoud 	} else {
    359  1.12  reinoud 		icbtag = &efe->icbtag;
    360  1.12  reinoud 		inflen = udf_rw64(efe->inf_len);
    361  1.12  reinoud 		dscr_size  = sizeof(struct extfile_entry) -1;
    362  1.12  reinoud 		logblksrec = udf_rw64(efe->logblks_rec);
    363  1.12  reinoud 	}
    364  1.12  reinoud 	*cnt_logblksrec = logblksrec;
    365  1.12  reinoud 	*cnt_inflen     = inflen;
    366  1.12  reinoud }
    367   1.1  reinoud #endif
    368   1.1  reinoud 
    369   1.1  reinoud /* --------------------------------------------------------------------- */
    370   1.1  reinoud 
    371  1.26  reinoud void
    372  1.26  reinoud udf_calc_freespace(struct udf_mount *ump, uint64_t *sizeblks, uint64_t *freeblks)
    373  1.26  reinoud {
    374  1.26  reinoud 	struct logvol_int_desc *lvid;
    375  1.26  reinoud 	uint32_t *pos1, *pos2;
    376  1.26  reinoud 	int vpart, num_vpart;
    377  1.26  reinoud 
    378  1.26  reinoud 	lvid = ump->logvol_integrity;
    379  1.26  reinoud 	*freeblks = *sizeblks = 0;
    380  1.26  reinoud 
    381  1.26  reinoud 	/*
    382  1.26  reinoud 	 * Sequentials media report free space directly (CD/DVD/BD-R), for the
    383  1.26  reinoud 	 * other media we need the logical volume integrity.
    384  1.26  reinoud 	 *
    385  1.26  reinoud 	 * We sum all free space up here regardless of type.
    386  1.26  reinoud 	 */
    387  1.26  reinoud 
    388  1.26  reinoud 	KASSERT(lvid);
    389  1.26  reinoud 	num_vpart = udf_rw32(lvid->num_part);
    390  1.26  reinoud 
    391  1.26  reinoud 	if (ump->discinfo.mmc_cur & MMC_CAP_SEQUENTIAL) {
    392  1.26  reinoud 		/* use track info directly summing if there are 2 open */
    393  1.26  reinoud 		/* XXX assumption at most two tracks open */
    394  1.26  reinoud 		*freeblks = ump->data_track.free_blocks;
    395  1.26  reinoud 		if (ump->data_track.tracknr != ump->metadata_track.tracknr)
    396  1.26  reinoud 			*freeblks += ump->metadata_track.free_blocks;
    397  1.26  reinoud 		*sizeblks = ump->discinfo.last_possible_lba;
    398  1.26  reinoud 	} else {
    399  1.26  reinoud 		/* free and used space for mountpoint based on logvol integrity */
    400  1.26  reinoud 		for (vpart = 0; vpart < num_vpart; vpart++) {
    401  1.26  reinoud 			pos1 = &lvid->tables[0] + vpart;
    402  1.26  reinoud 			pos2 = &lvid->tables[0] + num_vpart + vpart;
    403  1.26  reinoud 			if (udf_rw32(*pos1) != (uint32_t) -1) {
    404  1.26  reinoud 				*freeblks += udf_rw32(*pos1);
    405  1.26  reinoud 				*sizeblks += udf_rw32(*pos2);
    406  1.26  reinoud 			}
    407  1.26  reinoud 		}
    408  1.26  reinoud 	}
    409  1.26  reinoud 	/* adjust for accounted uncommitted blocks */
    410  1.26  reinoud 	for (vpart = 0; vpart < num_vpart; vpart++)
    411  1.26  reinoud 		*freeblks -= ump->uncommitted_lbs[vpart];
    412  1.26  reinoud 
    413  1.26  reinoud 	if (*freeblks > UDF_DISC_SLACK) {
    414  1.26  reinoud 		*freeblks -= UDF_DISC_SLACK;
    415  1.26  reinoud 	} else {
    416  1.26  reinoud 		*freeblks = 0;
    417  1.26  reinoud 	}
    418  1.26  reinoud }
    419  1.26  reinoud 
    420  1.26  reinoud 
    421  1.26  reinoud static void
    422  1.26  reinoud udf_calc_vpart_freespace(struct udf_mount *ump, uint16_t vpart_num, uint64_t *freeblks)
    423  1.26  reinoud {
    424  1.26  reinoud 	struct logvol_int_desc *lvid;
    425  1.26  reinoud 	uint32_t *pos1;
    426  1.26  reinoud 
    427  1.26  reinoud 	lvid = ump->logvol_integrity;
    428  1.26  reinoud 	*freeblks = 0;
    429  1.26  reinoud 
    430  1.26  reinoud 	/*
    431  1.26  reinoud 	 * Sequentials media report free space directly (CD/DVD/BD-R), for the
    432  1.26  reinoud 	 * other media we need the logical volume integrity.
    433  1.26  reinoud 	 *
    434  1.26  reinoud 	 * We sum all free space up here regardless of type.
    435  1.26  reinoud 	 */
    436  1.26  reinoud 
    437  1.26  reinoud 	KASSERT(lvid);
    438  1.26  reinoud 	if (ump->discinfo.mmc_cur & MMC_CAP_SEQUENTIAL) {
    439  1.26  reinoud 		/* XXX assumption at most two tracks open */
    440  1.26  reinoud 		if (vpart_num == ump->data_part) {
    441  1.26  reinoud 			*freeblks = ump->data_track.free_blocks;
    442  1.26  reinoud 		} else {
    443  1.26  reinoud 			*freeblks = ump->metadata_track.free_blocks;
    444  1.26  reinoud 		}
    445  1.26  reinoud 	} else {
    446  1.26  reinoud 		/* free and used space for mountpoint based on logvol integrity */
    447  1.26  reinoud 		pos1 = &lvid->tables[0] + vpart_num;
    448  1.26  reinoud 		if (udf_rw32(*pos1) != (uint32_t) -1)
    449  1.26  reinoud 			*freeblks += udf_rw32(*pos1);
    450  1.26  reinoud 	}
    451  1.26  reinoud 
    452  1.26  reinoud 	/* adjust for accounted uncommitted blocks */
    453  1.28  reinoud 	if (*freeblks > ump->uncommitted_lbs[vpart_num]) {
    454  1.28  reinoud 		*freeblks -= ump->uncommitted_lbs[vpart_num];
    455  1.28  reinoud 	} else {
    456  1.28  reinoud 		*freeblks = 0;
    457  1.28  reinoud 	}
    458  1.26  reinoud }
    459  1.26  reinoud 
    460  1.26  reinoud /* --------------------------------------------------------------------- */
    461  1.26  reinoud 
    462   1.1  reinoud int
    463   1.1  reinoud udf_translate_vtop(struct udf_mount *ump, struct long_ad *icb_loc,
    464   1.1  reinoud 		   uint32_t *lb_numres, uint32_t *extres)
    465   1.1  reinoud {
    466   1.1  reinoud 	struct part_desc       *pdesc;
    467   1.1  reinoud 	struct spare_map_entry *sme;
    468   1.1  reinoud 	struct long_ad s_icb_loc;
    469   1.1  reinoud 	uint64_t foffset, end_foffset;
    470   1.1  reinoud 	uint32_t lb_size, len;
    471   1.1  reinoud 	uint32_t lb_num, lb_rel, lb_packet;
    472   1.1  reinoud 	uint32_t udf_rw32_lbmap, ext_offset;
    473   1.1  reinoud 	uint16_t vpart;
    474   1.1  reinoud 	int rel, part, error, eof, slot, flags;
    475   1.1  reinoud 
    476   1.1  reinoud 	assert(ump && icb_loc && lb_numres);
    477   1.1  reinoud 
    478   1.1  reinoud 	vpart  = udf_rw16(icb_loc->loc.part_num);
    479   1.1  reinoud 	lb_num = udf_rw32(icb_loc->loc.lb_num);
    480   1.1  reinoud 	if (vpart > UDF_VTOP_RAWPART)
    481   1.1  reinoud 		return EINVAL;
    482   1.1  reinoud 
    483   1.1  reinoud translate_again:
    484   1.1  reinoud 	part = ump->vtop[vpart];
    485   1.1  reinoud 	pdesc = ump->partitions[part];
    486   1.1  reinoud 
    487   1.1  reinoud 	switch (ump->vtop_tp[vpart]) {
    488   1.1  reinoud 	case UDF_VTOP_TYPE_RAW :
    489   1.1  reinoud 		/* 1:1 to the end of the device */
    490   1.1  reinoud 		*lb_numres = lb_num;
    491   1.1  reinoud 		*extres = INT_MAX;
    492   1.1  reinoud 		return 0;
    493   1.1  reinoud 	case UDF_VTOP_TYPE_PHYS :
    494   1.1  reinoud 		/* transform into its disc logical block */
    495   1.1  reinoud 		if (lb_num > udf_rw32(pdesc->part_len))
    496   1.1  reinoud 			return EINVAL;
    497   1.1  reinoud 		*lb_numres = lb_num + udf_rw32(pdesc->start_loc);
    498   1.1  reinoud 
    499   1.1  reinoud 		/* extent from here to the end of the partition */
    500   1.1  reinoud 		*extres = udf_rw32(pdesc->part_len) - lb_num;
    501   1.1  reinoud 		return 0;
    502   1.1  reinoud 	case UDF_VTOP_TYPE_VIRT :
    503   1.1  reinoud 		/* only maps one logical block, lookup in VAT */
    504   1.1  reinoud 		if (lb_num >= ump->vat_entries)		/* XXX > or >= ? */
    505   1.1  reinoud 			return EINVAL;
    506   1.1  reinoud 
    507   1.1  reinoud 		/* lookup in virtual allocation table file */
    508   1.1  reinoud 		mutex_enter(&ump->allocate_mutex);
    509   1.1  reinoud 		error = udf_vat_read(ump->vat_node,
    510   1.1  reinoud 				(uint8_t *) &udf_rw32_lbmap, 4,
    511   1.1  reinoud 				ump->vat_offset + lb_num * 4);
    512   1.1  reinoud 		mutex_exit(&ump->allocate_mutex);
    513   1.1  reinoud 
    514   1.1  reinoud 		if (error)
    515   1.1  reinoud 			return error;
    516   1.1  reinoud 
    517   1.1  reinoud 		lb_num = udf_rw32(udf_rw32_lbmap);
    518   1.1  reinoud 
    519   1.1  reinoud 		/* transform into its disc logical block */
    520   1.1  reinoud 		if (lb_num > udf_rw32(pdesc->part_len))
    521   1.1  reinoud 			return EINVAL;
    522   1.1  reinoud 		*lb_numres = lb_num + udf_rw32(pdesc->start_loc);
    523   1.1  reinoud 
    524   1.1  reinoud 		/* just one logical block */
    525   1.1  reinoud 		*extres = 1;
    526   1.1  reinoud 		return 0;
    527   1.1  reinoud 	case UDF_VTOP_TYPE_SPARABLE :
    528   1.1  reinoud 		/* check if the packet containing the lb_num is remapped */
    529   1.1  reinoud 		lb_packet = lb_num / ump->sparable_packet_size;
    530   1.1  reinoud 		lb_rel    = lb_num % ump->sparable_packet_size;
    531   1.1  reinoud 
    532   1.1  reinoud 		for (rel = 0; rel < udf_rw16(ump->sparing_table->rt_l); rel++) {
    533   1.1  reinoud 			sme = &ump->sparing_table->entries[rel];
    534   1.1  reinoud 			if (lb_packet == udf_rw32(sme->org)) {
    535   1.1  reinoud 				/* NOTE maps to absolute disc logical block! */
    536   1.1  reinoud 				*lb_numres = udf_rw32(sme->map) + lb_rel;
    537   1.1  reinoud 				*extres    = ump->sparable_packet_size - lb_rel;
    538   1.1  reinoud 				return 0;
    539   1.1  reinoud 			}
    540   1.1  reinoud 		}
    541   1.1  reinoud 
    542   1.1  reinoud 		/* transform into its disc logical block */
    543   1.1  reinoud 		if (lb_num > udf_rw32(pdesc->part_len))
    544   1.1  reinoud 			return EINVAL;
    545   1.1  reinoud 		*lb_numres = lb_num + udf_rw32(pdesc->start_loc);
    546   1.1  reinoud 
    547   1.1  reinoud 		/* rest of block */
    548   1.1  reinoud 		*extres = ump->sparable_packet_size - lb_rel;
    549   1.1  reinoud 		return 0;
    550   1.1  reinoud 	case UDF_VTOP_TYPE_META :
    551   1.1  reinoud 		/* we have to look into the file's allocation descriptors */
    552   1.1  reinoud 
    553   1.1  reinoud 		/* use metadatafile allocation mutex */
    554   1.1  reinoud 		lb_size = udf_rw32(ump->logical_vol->lb_size);
    555   1.1  reinoud 
    556   1.1  reinoud 		UDF_LOCK_NODE(ump->metadata_node, 0);
    557   1.1  reinoud 
    558   1.1  reinoud 		/* get first overlapping extent */
    559   1.1  reinoud 		foffset = 0;
    560   1.1  reinoud 		slot    = 0;
    561   1.1  reinoud 		for (;;) {
    562   1.1  reinoud 			udf_get_adslot(ump->metadata_node,
    563   1.1  reinoud 				slot, &s_icb_loc, &eof);
    564   1.5  reinoud 			DPRINTF(ADWLK, ("slot %d, eof = %d, flags = %d, "
    565   1.5  reinoud 				"len = %d, lb_num = %d, part = %d\n",
    566   1.5  reinoud 				slot, eof,
    567   1.5  reinoud 				UDF_EXT_FLAGS(udf_rw32(s_icb_loc.len)),
    568   1.5  reinoud 				UDF_EXT_LEN(udf_rw32(s_icb_loc.len)),
    569   1.5  reinoud 				udf_rw32(s_icb_loc.loc.lb_num),
    570   1.5  reinoud 				udf_rw16(s_icb_loc.loc.part_num)));
    571   1.1  reinoud 			if (eof) {
    572   1.1  reinoud 				DPRINTF(TRANSLATE,
    573   1.1  reinoud 					("Meta partition translation "
    574   1.1  reinoud 					 "failed: can't seek location\n"));
    575   1.1  reinoud 				UDF_UNLOCK_NODE(ump->metadata_node, 0);
    576   1.1  reinoud 				return EINVAL;
    577   1.1  reinoud 			}
    578   1.1  reinoud 			len   = udf_rw32(s_icb_loc.len);
    579   1.1  reinoud 			flags = UDF_EXT_FLAGS(len);
    580   1.1  reinoud 			len   = UDF_EXT_LEN(len);
    581   1.1  reinoud 
    582   1.5  reinoud 			if (flags == UDF_EXT_REDIRECT) {
    583   1.5  reinoud 				slot++;
    584   1.5  reinoud 				continue;
    585   1.5  reinoud 			}
    586   1.5  reinoud 
    587   1.1  reinoud 			end_foffset = foffset + len;
    588   1.1  reinoud 
    589   1.1  reinoud 			if (end_foffset > lb_num * lb_size)
    590   1.1  reinoud 				break;	/* found */
    591   1.5  reinoud 			foffset = end_foffset;
    592   1.1  reinoud 			slot++;
    593   1.1  reinoud 		}
    594   1.1  reinoud 		/* found overlapping slot */
    595   1.1  reinoud 		ext_offset = lb_num * lb_size - foffset;
    596   1.1  reinoud 
    597   1.1  reinoud 		/* process extent offset */
    598   1.1  reinoud 		lb_num   = udf_rw32(s_icb_loc.loc.lb_num);
    599   1.1  reinoud 		vpart    = udf_rw16(s_icb_loc.loc.part_num);
    600   1.1  reinoud 		lb_num  += (ext_offset + lb_size -1) / lb_size;
    601   1.1  reinoud 		ext_offset = 0;
    602   1.1  reinoud 
    603   1.1  reinoud 		UDF_UNLOCK_NODE(ump->metadata_node, 0);
    604   1.1  reinoud 		if (flags != UDF_EXT_ALLOCATED) {
    605   1.1  reinoud 			DPRINTF(TRANSLATE, ("Metadata partition translation "
    606   1.1  reinoud 					    "failed: not allocated\n"));
    607   1.1  reinoud 			return EINVAL;
    608   1.1  reinoud 		}
    609   1.1  reinoud 
    610   1.1  reinoud 		/*
    611   1.1  reinoud 		 * vpart and lb_num are updated, translate again since we
    612   1.1  reinoud 		 * might be mapped on sparable media
    613   1.1  reinoud 		 */
    614   1.1  reinoud 		goto translate_again;
    615   1.1  reinoud 	default:
    616   1.1  reinoud 		printf("UDF vtop translation scheme %d unimplemented yet\n",
    617   1.1  reinoud 			ump->vtop_tp[vpart]);
    618   1.1  reinoud 	}
    619   1.1  reinoud 
    620   1.1  reinoud 	return EINVAL;
    621   1.1  reinoud }
    622   1.1  reinoud 
    623  1.16  reinoud 
    624  1.16  reinoud /* XXX  provisional primitive braindead version */
    625  1.16  reinoud /* TODO use ext_res */
    626  1.16  reinoud void
    627  1.16  reinoud udf_translate_vtop_list(struct udf_mount *ump, uint32_t sectors,
    628  1.16  reinoud 	uint16_t vpart_num, uint64_t *lmapping, uint64_t *pmapping)
    629  1.16  reinoud {
    630  1.16  reinoud 	struct long_ad loc;
    631  1.16  reinoud 	uint32_t lb_numres, ext_res;
    632  1.16  reinoud 	int sector;
    633  1.16  reinoud 
    634  1.16  reinoud 	for (sector = 0; sector < sectors; sector++) {
    635  1.16  reinoud 		memset(&loc, 0, sizeof(struct long_ad));
    636  1.16  reinoud 		loc.loc.part_num = udf_rw16(vpart_num);
    637  1.16  reinoud 		loc.loc.lb_num   = udf_rw32(*lmapping);
    638  1.16  reinoud 		udf_translate_vtop(ump, &loc, &lb_numres, &ext_res);
    639  1.16  reinoud 		*pmapping = lb_numres;
    640  1.16  reinoud 		lmapping++; pmapping++;
    641  1.16  reinoud 	}
    642  1.16  reinoud }
    643  1.16  reinoud 
    644  1.16  reinoud 
    645   1.1  reinoud /* --------------------------------------------------------------------- */
    646   1.1  reinoud 
    647   1.1  reinoud /*
    648   1.1  reinoud  * Translate an extent (in logical_blocks) into logical block numbers; used
    649   1.1  reinoud  * for read and write operations. DOESNT't check extents.
    650   1.1  reinoud  */
    651   1.1  reinoud 
    652   1.1  reinoud int
    653   1.1  reinoud udf_translate_file_extent(struct udf_node *udf_node,
    654   1.1  reinoud 		          uint32_t from, uint32_t num_lb,
    655   1.1  reinoud 			  uint64_t *map)
    656   1.1  reinoud {
    657   1.1  reinoud 	struct udf_mount *ump;
    658   1.1  reinoud 	struct icb_tag *icbtag;
    659   1.1  reinoud 	struct long_ad t_ad, s_ad;
    660   1.1  reinoud 	uint64_t transsec;
    661   1.1  reinoud 	uint64_t foffset, end_foffset;
    662   1.1  reinoud 	uint32_t transsec32;
    663   1.1  reinoud 	uint32_t lb_size;
    664   1.1  reinoud 	uint32_t ext_offset;
    665   1.1  reinoud 	uint32_t lb_num, len;
    666   1.1  reinoud 	uint32_t overlap, translen;
    667   1.1  reinoud 	uint16_t vpart_num;
    668   1.1  reinoud 	int eof, error, flags;
    669   1.1  reinoud 	int slot, addr_type, icbflags;
    670   1.1  reinoud 
    671   1.1  reinoud 	if (!udf_node)
    672   1.1  reinoud 		return ENOENT;
    673   1.1  reinoud 
    674   1.1  reinoud 	KASSERT(num_lb > 0);
    675   1.1  reinoud 
    676   1.1  reinoud 	UDF_LOCK_NODE(udf_node, 0);
    677   1.1  reinoud 
    678   1.1  reinoud 	/* initialise derivative vars */
    679   1.1  reinoud 	ump = udf_node->ump;
    680   1.1  reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
    681   1.1  reinoud 
    682   1.1  reinoud 	if (udf_node->fe) {
    683   1.1  reinoud 		icbtag = &udf_node->fe->icbtag;
    684   1.1  reinoud 	} else {
    685   1.1  reinoud 		icbtag = &udf_node->efe->icbtag;
    686   1.1  reinoud 	}
    687   1.1  reinoud 	icbflags  = udf_rw16(icbtag->flags);
    688   1.1  reinoud 	addr_type = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
    689   1.1  reinoud 
    690   1.1  reinoud 	/* do the work */
    691   1.1  reinoud 	if (addr_type == UDF_ICB_INTERN_ALLOC) {
    692   1.1  reinoud 		*map = UDF_TRANS_INTERN;
    693   1.1  reinoud 		UDF_UNLOCK_NODE(udf_node, 0);
    694   1.1  reinoud 		return 0;
    695   1.1  reinoud 	}
    696   1.1  reinoud 
    697   1.1  reinoud 	/* find first overlapping extent */
    698   1.1  reinoud 	foffset = 0;
    699   1.1  reinoud 	slot    = 0;
    700   1.1  reinoud 	for (;;) {
    701   1.1  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
    702   1.4  reinoud 		DPRINTF(ADWLK, ("slot %d, eof = %d, flags = %d, len = %d, "
    703   1.4  reinoud 			"lb_num = %d, part = %d\n", slot, eof,
    704   1.4  reinoud 			UDF_EXT_FLAGS(udf_rw32(s_ad.len)),
    705   1.4  reinoud 			UDF_EXT_LEN(udf_rw32(s_ad.len)),
    706   1.4  reinoud 			udf_rw32(s_ad.loc.lb_num),
    707   1.4  reinoud 			udf_rw16(s_ad.loc.part_num)));
    708   1.1  reinoud 		if (eof) {
    709   1.1  reinoud 			DPRINTF(TRANSLATE,
    710   1.1  reinoud 				("Translate file extent "
    711   1.1  reinoud 				 "failed: can't seek location\n"));
    712   1.1  reinoud 			UDF_UNLOCK_NODE(udf_node, 0);
    713   1.1  reinoud 			return EINVAL;
    714   1.1  reinoud 		}
    715   1.1  reinoud 		len    = udf_rw32(s_ad.len);
    716   1.1  reinoud 		flags  = UDF_EXT_FLAGS(len);
    717   1.1  reinoud 		len    = UDF_EXT_LEN(len);
    718   1.1  reinoud 		lb_num = udf_rw32(s_ad.loc.lb_num);
    719   1.1  reinoud 
    720   1.1  reinoud 		if (flags == UDF_EXT_REDIRECT) {
    721   1.1  reinoud 			slot++;
    722   1.1  reinoud 			continue;
    723   1.1  reinoud 		}
    724   1.1  reinoud 
    725   1.1  reinoud 		end_foffset = foffset + len;
    726   1.1  reinoud 
    727   1.1  reinoud 		if (end_foffset > from * lb_size)
    728   1.1  reinoud 			break;	/* found */
    729   1.1  reinoud 		foffset = end_foffset;
    730   1.1  reinoud 		slot++;
    731   1.1  reinoud 	}
    732   1.1  reinoud 	/* found overlapping slot */
    733   1.1  reinoud 	ext_offset = from * lb_size - foffset;
    734   1.1  reinoud 
    735   1.1  reinoud 	for (;;) {
    736   1.1  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
    737   1.4  reinoud 		DPRINTF(ADWLK, ("slot %d, eof = %d, flags = %d, len = %d, "
    738   1.4  reinoud 			"lb_num = %d, part = %d\n", slot, eof,
    739   1.4  reinoud 			UDF_EXT_FLAGS(udf_rw32(s_ad.len)),
    740   1.4  reinoud 			UDF_EXT_LEN(udf_rw32(s_ad.len)),
    741   1.4  reinoud 			udf_rw32(s_ad.loc.lb_num),
    742   1.4  reinoud 			udf_rw16(s_ad.loc.part_num)));
    743   1.1  reinoud 		if (eof) {
    744   1.1  reinoud 			DPRINTF(TRANSLATE,
    745   1.1  reinoud 				("Translate file extent "
    746   1.1  reinoud 				 "failed: past eof\n"));
    747   1.1  reinoud 			UDF_UNLOCK_NODE(udf_node, 0);
    748   1.1  reinoud 			return EINVAL;
    749   1.1  reinoud 		}
    750   1.1  reinoud 
    751   1.1  reinoud 		len    = udf_rw32(s_ad.len);
    752   1.1  reinoud 		flags  = UDF_EXT_FLAGS(len);
    753   1.1  reinoud 		len    = UDF_EXT_LEN(len);
    754   1.1  reinoud 
    755   1.1  reinoud 		lb_num    = udf_rw32(s_ad.loc.lb_num);
    756   1.1  reinoud 		vpart_num = udf_rw16(s_ad.loc.part_num);
    757   1.1  reinoud 
    758   1.1  reinoud 		end_foffset = foffset + len;
    759   1.1  reinoud 
    760   1.1  reinoud 		/* process extent, don't forget to advance on ext_offset! */
    761   1.1  reinoud 		lb_num  += (ext_offset + lb_size -1) / lb_size;
    762   1.1  reinoud 		overlap  = (len - ext_offset + lb_size -1) / lb_size;
    763   1.1  reinoud 		ext_offset = 0;
    764   1.1  reinoud 
    765   1.1  reinoud 		/*
    766   1.1  reinoud 		 * note that the while(){} is nessisary for the extent that
    767   1.1  reinoud 		 * the udf_translate_vtop() returns doens't have to span the
    768   1.1  reinoud 		 * whole extent.
    769   1.1  reinoud 		 */
    770   1.1  reinoud 
    771   1.1  reinoud 		overlap = MIN(overlap, num_lb);
    772   1.4  reinoud 		while (overlap && (flags != UDF_EXT_REDIRECT)) {
    773   1.1  reinoud 			switch (flags) {
    774   1.1  reinoud 			case UDF_EXT_FREE :
    775   1.1  reinoud 			case UDF_EXT_ALLOCATED_BUT_NOT_USED :
    776   1.1  reinoud 				transsec = UDF_TRANS_ZERO;
    777   1.1  reinoud 				translen = overlap;
    778   1.1  reinoud 				while (overlap && num_lb && translen) {
    779   1.1  reinoud 					*map++ = transsec;
    780   1.1  reinoud 					lb_num++;
    781   1.1  reinoud 					overlap--; num_lb--; translen--;
    782   1.1  reinoud 				}
    783   1.1  reinoud 				break;
    784   1.1  reinoud 			case UDF_EXT_ALLOCATED :
    785   1.1  reinoud 				t_ad.loc.lb_num   = udf_rw32(lb_num);
    786   1.1  reinoud 				t_ad.loc.part_num = udf_rw16(vpart_num);
    787   1.1  reinoud 				error = udf_translate_vtop(ump,
    788   1.1  reinoud 						&t_ad, &transsec32, &translen);
    789   1.1  reinoud 				transsec = transsec32;
    790   1.1  reinoud 				if (error) {
    791   1.1  reinoud 					UDF_UNLOCK_NODE(udf_node, 0);
    792   1.1  reinoud 					return error;
    793   1.1  reinoud 				}
    794   1.1  reinoud 				while (overlap && num_lb && translen) {
    795   1.1  reinoud 					*map++ = transsec;
    796   1.1  reinoud 					lb_num++; transsec++;
    797   1.1  reinoud 					overlap--; num_lb--; translen--;
    798   1.1  reinoud 				}
    799   1.1  reinoud 				break;
    800   1.4  reinoud 			default:
    801   1.4  reinoud 				DPRINTF(TRANSLATE,
    802   1.4  reinoud 					("Translate file extent "
    803   1.4  reinoud 					 "failed: bad flags %x\n", flags));
    804   1.4  reinoud 				UDF_UNLOCK_NODE(udf_node, 0);
    805   1.4  reinoud 				return EINVAL;
    806   1.1  reinoud 			}
    807   1.1  reinoud 		}
    808   1.1  reinoud 		if (num_lb == 0)
    809   1.1  reinoud 			break;
    810   1.1  reinoud 
    811   1.1  reinoud 		if (flags != UDF_EXT_REDIRECT)
    812   1.1  reinoud 			foffset = end_foffset;
    813   1.1  reinoud 		slot++;
    814   1.1  reinoud 	}
    815   1.1  reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
    816   1.1  reinoud 
    817   1.1  reinoud 	return 0;
    818   1.1  reinoud }
    819   1.1  reinoud 
    820   1.1  reinoud /* --------------------------------------------------------------------- */
    821   1.1  reinoud 
    822   1.1  reinoud static int
    823   1.1  reinoud udf_search_free_vatloc(struct udf_mount *ump, uint32_t *lbnumres)
    824   1.1  reinoud {
    825   1.1  reinoud 	uint32_t lb_size, lb_num, lb_map, udf_rw32_lbmap;
    826   1.1  reinoud 	uint8_t *blob;
    827   1.1  reinoud 	int entry, chunk, found, error;
    828   1.1  reinoud 
    829   1.1  reinoud 	KASSERT(ump);
    830   1.1  reinoud 	KASSERT(ump->logical_vol);
    831   1.1  reinoud 
    832   1.1  reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
    833   1.1  reinoud 	blob = malloc(lb_size, M_UDFTEMP, M_WAITOK);
    834   1.1  reinoud 
    835   1.1  reinoud 	/* TODO static allocation of search chunk */
    836   1.1  reinoud 
    837   1.1  reinoud 	lb_num = MIN(ump->vat_entries, ump->vat_last_free_lb);
    838   1.1  reinoud 	found  = 0;
    839   1.1  reinoud 	error  = 0;
    840   1.1  reinoud 	entry  = 0;
    841   1.1  reinoud 	do {
    842   1.1  reinoud 		chunk = MIN(lb_size, (ump->vat_entries - lb_num) * 4);
    843   1.1  reinoud 		if (chunk <= 0)
    844   1.1  reinoud 			break;
    845   1.1  reinoud 		/* load in chunk */
    846   1.1  reinoud 		error = udf_vat_read(ump->vat_node, blob, chunk,
    847   1.1  reinoud 				ump->vat_offset + lb_num * 4);
    848   1.1  reinoud 
    849   1.1  reinoud 		if (error)
    850   1.1  reinoud 			break;
    851   1.1  reinoud 
    852   1.1  reinoud 		/* search this chunk */
    853   1.1  reinoud 		for (entry=0; entry < chunk /4; entry++, lb_num++) {
    854   1.1  reinoud 			udf_rw32_lbmap = *((uint32_t *) (blob + entry * 4));
    855   1.1  reinoud 			lb_map = udf_rw32(udf_rw32_lbmap);
    856   1.1  reinoud 			if (lb_map == 0xffffffff) {
    857   1.1  reinoud 				found = 1;
    858   1.1  reinoud 				break;
    859   1.1  reinoud 			}
    860   1.1  reinoud 		}
    861   1.1  reinoud 	} while (!found);
    862   1.1  reinoud 	if (error) {
    863   1.1  reinoud 		printf("udf_search_free_vatloc: error reading in vat chunk "
    864   1.1  reinoud 			"(lb %d, size %d)\n", lb_num, chunk);
    865   1.1  reinoud 	}
    866   1.1  reinoud 
    867   1.1  reinoud 	if (!found) {
    868   1.1  reinoud 		/* extend VAT */
    869   1.1  reinoud 		DPRINTF(WRITE, ("udf_search_free_vatloc: extending\n"));
    870   1.1  reinoud 		lb_num = ump->vat_entries;
    871   1.1  reinoud 		ump->vat_entries++;
    872   1.1  reinoud 	}
    873   1.1  reinoud 
    874   1.1  reinoud 	/* mark entry with initialiser just in case */
    875   1.1  reinoud 	lb_map = udf_rw32(0xfffffffe);
    876   1.1  reinoud 	udf_vat_write(ump->vat_node, (uint8_t *) &lb_map, 4,
    877   1.1  reinoud 		ump->vat_offset + lb_num *4);
    878   1.1  reinoud 	ump->vat_last_free_lb = lb_num;
    879   1.1  reinoud 
    880   1.1  reinoud 	free(blob, M_UDFTEMP);
    881   1.1  reinoud 	*lbnumres = lb_num;
    882   1.1  reinoud 	return 0;
    883   1.1  reinoud }
    884   1.1  reinoud 
    885   1.1  reinoud 
    886   1.1  reinoud static void
    887   1.1  reinoud udf_bitmap_allocate(struct udf_bitmap *bitmap, int ismetadata,
    888  1.16  reinoud 	uint32_t *num_lb, uint64_t *lmappos)
    889   1.1  reinoud {
    890   1.1  reinoud 	uint32_t offset, lb_num, bit;
    891   1.1  reinoud 	int32_t  diff;
    892   1.1  reinoud 	uint8_t *bpos;
    893   1.1  reinoud 	int pass;
    894   1.1  reinoud 
    895   1.1  reinoud 	if (!ismetadata) {
    896   1.1  reinoud 		/* heuristic to keep the two pointers not too close */
    897   1.1  reinoud 		diff = bitmap->data_pos - bitmap->metadata_pos;
    898   1.1  reinoud 		if ((diff >= 0) && (diff < 1024))
    899   1.1  reinoud 			bitmap->data_pos = bitmap->metadata_pos + 1024;
    900   1.1  reinoud 	}
    901   1.1  reinoud 	offset = ismetadata ? bitmap->metadata_pos : bitmap->data_pos;
    902   1.1  reinoud 	offset &= ~7;
    903   1.1  reinoud 	for (pass = 0; pass < 2; pass++) {
    904   1.1  reinoud 		if (offset >= bitmap->max_offset)
    905   1.1  reinoud 			offset = 0;
    906   1.1  reinoud 
    907   1.1  reinoud 		while (offset < bitmap->max_offset) {
    908   1.1  reinoud 			if (*num_lb == 0)
    909   1.1  reinoud 				break;
    910   1.1  reinoud 
    911   1.1  reinoud 			/* use first bit not set */
    912   1.1  reinoud 			bpos  = bitmap->bits + offset/8;
    913   1.9  reinoud 			bit = ffs(*bpos);	/* returns 0 or 1..8 */
    914   1.1  reinoud 			if (bit == 0) {
    915   1.1  reinoud 				offset += 8;
    916   1.1  reinoud 				continue;
    917   1.1  reinoud 			}
    918  1.20  reinoud 
    919  1.20  reinoud 			/* check for ffs overshoot */
    920  1.20  reinoud 			if (offset + bit-1 >= bitmap->max_offset) {
    921  1.20  reinoud 				offset = bitmap->max_offset;
    922  1.20  reinoud 				break;
    923  1.20  reinoud 			}
    924  1.20  reinoud 
    925   1.9  reinoud 			DPRINTF(PARANOIA, ("XXX : allocate %d, %p, bit %d\n",
    926   1.9  reinoud 				offset + bit -1, bpos, bit-1));
    927   1.1  reinoud 			*bpos &= ~(1 << (bit-1));
    928   1.1  reinoud 			lb_num = offset + bit-1;
    929   1.1  reinoud 			*lmappos++ = lb_num;
    930   1.1  reinoud 			*num_lb = *num_lb - 1;
    931   1.1  reinoud 			// offset = (offset & ~7);
    932   1.1  reinoud 		}
    933   1.1  reinoud 	}
    934   1.1  reinoud 
    935   1.1  reinoud 	if (ismetadata) {
    936   1.1  reinoud 		bitmap->metadata_pos = offset;
    937   1.1  reinoud 	} else {
    938   1.1  reinoud 		bitmap->data_pos = offset;
    939   1.1  reinoud 	}
    940   1.1  reinoud }
    941   1.1  reinoud 
    942   1.1  reinoud 
    943   1.1  reinoud static void
    944   1.1  reinoud udf_bitmap_free(struct udf_bitmap *bitmap, uint32_t lb_num, uint32_t num_lb)
    945   1.1  reinoud {
    946   1.1  reinoud 	uint32_t offset;
    947   1.1  reinoud 	uint32_t bit, bitval;
    948   1.1  reinoud 	uint8_t *bpos;
    949   1.1  reinoud 
    950   1.1  reinoud 	offset = lb_num;
    951   1.1  reinoud 
    952   1.1  reinoud 	/* starter bits */
    953   1.1  reinoud 	bpos = bitmap->bits + offset/8;
    954   1.1  reinoud 	bit = offset % 8;
    955   1.1  reinoud 	while ((bit != 0) && (num_lb > 0)) {
    956   1.1  reinoud 		bitval = (1 << bit);
    957   1.1  reinoud 		KASSERT((*bpos & bitval) == 0);
    958   1.9  reinoud 		DPRINTF(PARANOIA, ("XXX : free %d, %p, %d\n",
    959   1.9  reinoud 			offset, bpos, bit));
    960   1.1  reinoud 		*bpos |= bitval;
    961   1.1  reinoud 		offset++; num_lb--;
    962   1.1  reinoud 		bit = (bit + 1) % 8;
    963   1.1  reinoud 	}
    964   1.1  reinoud 	if (num_lb == 0)
    965   1.1  reinoud 		return;
    966   1.1  reinoud 
    967   1.1  reinoud 	/* whole bytes */
    968   1.1  reinoud 	KASSERT(bit == 0);
    969   1.1  reinoud 	bpos = bitmap->bits + offset / 8;
    970   1.1  reinoud 	while (num_lb >= 8) {
    971   1.1  reinoud 		KASSERT((*bpos == 0));
    972   1.9  reinoud 		DPRINTF(PARANOIA, ("XXX : free %d + 8, %p\n", offset, bpos));
    973   1.1  reinoud 		*bpos = 255;
    974   1.1  reinoud 		offset += 8; num_lb -= 8;
    975   1.1  reinoud 		bpos++;
    976   1.1  reinoud 	}
    977   1.1  reinoud 
    978   1.1  reinoud 	/* stop bits */
    979   1.1  reinoud 	KASSERT(num_lb < 8);
    980   1.1  reinoud 	bit = 0;
    981   1.1  reinoud 	while (num_lb > 0) {
    982   1.1  reinoud 		bitval = (1 << bit);
    983   1.1  reinoud 		KASSERT((*bpos & bitval) == 0);
    984   1.9  reinoud 		DPRINTF(PARANOIA, ("XXX : free %d, %p, %d\n",
    985   1.9  reinoud 			offset, bpos, bit));
    986   1.1  reinoud 		*bpos |= bitval;
    987   1.1  reinoud 		offset++; num_lb--;
    988   1.1  reinoud 		bit = (bit + 1) % 8;
    989   1.1  reinoud 	}
    990   1.1  reinoud }
    991   1.1  reinoud 
    992  1.28  reinoud 
    993  1.28  reinoud static uint32_t
    994  1.28  reinoud udf_bitmap_check_trunc_free(struct udf_bitmap *bitmap, uint32_t to_trunc)
    995  1.28  reinoud {
    996  1.28  reinoud 	uint32_t seq_free, offset;
    997  1.28  reinoud 	uint8_t *bpos;
    998  1.28  reinoud 	uint8_t  bit, bitval;
    999  1.28  reinoud 
   1000  1.28  reinoud 	DPRINTF(RESERVE, ("\ttrying to trunc %d bits from bitmap\n", to_trunc));
   1001  1.28  reinoud 	offset = bitmap->max_offset - to_trunc;
   1002  1.28  reinoud 
   1003  1.28  reinoud 	/* starter bits (if any) */
   1004  1.28  reinoud 	bpos = bitmap->bits + offset/8;
   1005  1.28  reinoud 	bit = offset % 8;
   1006  1.28  reinoud 	seq_free = 0;
   1007  1.28  reinoud 	while (to_trunc > 0) {
   1008  1.28  reinoud 		seq_free++;
   1009  1.28  reinoud 		bitval = (1 << bit);
   1010  1.28  reinoud 		if (!(*bpos & bitval))
   1011  1.28  reinoud 			seq_free = 0;
   1012  1.28  reinoud 		offset++; to_trunc--;
   1013  1.28  reinoud 		bit++;
   1014  1.28  reinoud 		if (bit == 8) {
   1015  1.28  reinoud 			bpos++;
   1016  1.28  reinoud 			bit = 0;
   1017  1.28  reinoud 		}
   1018  1.28  reinoud 	}
   1019  1.28  reinoud 
   1020  1.28  reinoud 	DPRINTF(RESERVE, ("\tfound %d sequential free bits in bitmap\n", seq_free));
   1021  1.28  reinoud 	return seq_free;
   1022  1.28  reinoud }
   1023  1.28  reinoud 
   1024  1.26  reinoud /* --------------------------------------------------------------------- */
   1025  1.26  reinoud 
   1026  1.26  reinoud /*
   1027  1.26  reinoud  * We check for overall disc space with a margin to prevent critical
   1028  1.26  reinoud  * conditions.  If disc space is low we try to force a sync() to improve our
   1029  1.26  reinoud  * estimates.  When confronted with meta-data partition size shortage we know
   1030  1.26  reinoud  * we have to check if it can be extended and we need to extend it when
   1031  1.26  reinoud  * needed.
   1032  1.26  reinoud  *
   1033  1.26  reinoud  * A 2nd strategy we could use when disc space is getting low on a disc
   1034  1.26  reinoud  * formatted with a meta-data partition is to see if there are sparse areas in
   1035  1.26  reinoud  * the meta-data partition and free blocks there for extra data.
   1036  1.26  reinoud  */
   1037  1.26  reinoud 
   1038  1.26  reinoud void
   1039  1.26  reinoud udf_do_reserve_space(struct udf_mount *ump, struct udf_node *udf_node,
   1040  1.26  reinoud 	uint16_t vpart_num, uint32_t num_lb)
   1041  1.26  reinoud {
   1042  1.26  reinoud 	ump->uncommitted_lbs[vpart_num] += num_lb;
   1043  1.26  reinoud 	if (udf_node)
   1044  1.26  reinoud 		udf_node->uncommitted_lbs += num_lb;
   1045  1.26  reinoud }
   1046  1.26  reinoud 
   1047  1.26  reinoud 
   1048  1.26  reinoud void
   1049  1.26  reinoud udf_do_unreserve_space(struct udf_mount *ump, struct udf_node *udf_node,
   1050  1.26  reinoud 	uint16_t vpart_num, uint32_t num_lb)
   1051  1.26  reinoud {
   1052  1.26  reinoud 	ump->uncommitted_lbs[vpart_num] -= num_lb;
   1053  1.26  reinoud 	if (ump->uncommitted_lbs[vpart_num] < 0) {
   1054  1.26  reinoud 		DPRINTF(RESERVE, ("UDF: underflow on partition reservation, "
   1055  1.26  reinoud 			"part %d: %d\n", vpart_num,
   1056  1.26  reinoud 			ump->uncommitted_lbs[vpart_num]));
   1057  1.26  reinoud 		ump->uncommitted_lbs[vpart_num] = 0;
   1058  1.26  reinoud 	}
   1059  1.26  reinoud 	if (udf_node) {
   1060  1.26  reinoud 		udf_node->uncommitted_lbs -= num_lb;
   1061  1.26  reinoud 		if (udf_node->uncommitted_lbs < 0) {
   1062  1.26  reinoud 			DPRINTF(RESERVE, ("UDF: underflow of node "
   1063  1.26  reinoud 				"reservation : %d\n",
   1064  1.26  reinoud 				udf_node->uncommitted_lbs));
   1065  1.26  reinoud 			udf_node->uncommitted_lbs = 0;
   1066  1.26  reinoud 		}
   1067  1.26  reinoud 	}
   1068  1.26  reinoud }
   1069  1.26  reinoud 
   1070  1.26  reinoud 
   1071  1.26  reinoud int
   1072  1.26  reinoud udf_reserve_space(struct udf_mount *ump, struct udf_node *udf_node,
   1073  1.26  reinoud 	int udf_c_type, uint16_t vpart_num, uint32_t num_lb, int can_fail)
   1074  1.26  reinoud {
   1075  1.26  reinoud 	uint64_t freeblks;
   1076  1.26  reinoud 	uint64_t slack;
   1077  1.26  reinoud 	int i, error;
   1078  1.26  reinoud 
   1079  1.26  reinoud 	slack = 0;
   1080  1.26  reinoud 	if (can_fail)
   1081  1.26  reinoud 		slack = UDF_DISC_SLACK;
   1082  1.26  reinoud 
   1083  1.26  reinoud 	error = 0;
   1084  1.26  reinoud 	mutex_enter(&ump->allocate_mutex);
   1085  1.26  reinoud 
   1086  1.26  reinoud 	/* check if there is enough space available */
   1087  1.28  reinoud 	for (i = 0; i < 3; i++) {	/* XXX arbitrary number */
   1088  1.26  reinoud 		udf_calc_vpart_freespace(ump, vpart_num, &freeblks);
   1089  1.26  reinoud 		if (num_lb + slack < freeblks)
   1090  1.26  reinoud 			break;
   1091  1.26  reinoud 		/* issue SYNC */
   1092  1.26  reinoud 		DPRINTF(RESERVE, ("udf_reserve_space: issuing sync\n"));
   1093  1.26  reinoud 		mutex_exit(&ump->allocate_mutex);
   1094  1.26  reinoud 		udf_do_sync(ump, FSCRED, 0);
   1095  1.26  reinoud 		mutex_enter(&mntvnode_lock);
   1096  1.28  reinoud 		/* 1/8 second wait */
   1097  1.26  reinoud 		cv_timedwait(&ump->dirtynodes_cv, &mntvnode_lock,
   1098  1.28  reinoud 			hz/8);
   1099  1.26  reinoud 		mutex_exit(&mntvnode_lock);
   1100  1.26  reinoud 		mutex_enter(&ump->allocate_mutex);
   1101  1.26  reinoud 	}
   1102  1.26  reinoud 
   1103  1.26  reinoud 	/* check if there is enough space available now */
   1104  1.26  reinoud 	udf_calc_vpart_freespace(ump, vpart_num, &freeblks);
   1105  1.26  reinoud 	if (num_lb + slack >= freeblks) {
   1106  1.28  reinoud 		DPRINTF(RESERVE, ("udf_reserve_space: try to redistribute "
   1107  1.28  reinoud 				  "partition space\n"));
   1108  1.28  reinoud 		DPRINTF(RESERVE, ("\tvpart %d, type %d is full\n",
   1109  1.28  reinoud 				vpart_num, ump->vtop_alloc[vpart_num]));
   1110  1.28  reinoud 		/* Try to redistribute space if possible */
   1111  1.28  reinoud 		udf_collect_free_space_for_vpart(ump, vpart_num, num_lb + slack);
   1112  1.26  reinoud 	}
   1113  1.26  reinoud 
   1114  1.26  reinoud 	/* check if there is enough space available now */
   1115  1.26  reinoud 	udf_calc_vpart_freespace(ump, vpart_num, &freeblks);
   1116  1.26  reinoud 	if (num_lb + slack <= freeblks) {
   1117  1.26  reinoud 		udf_do_reserve_space(ump, udf_node, vpart_num, num_lb);
   1118  1.26  reinoud 	} else {
   1119  1.26  reinoud 		DPRINTF(RESERVE, ("udf_reserve_space: out of disc space\n"));
   1120  1.26  reinoud 		error = ENOSPC;
   1121  1.26  reinoud 	}
   1122  1.26  reinoud 
   1123  1.26  reinoud 	mutex_exit(&ump->allocate_mutex);
   1124  1.26  reinoud 	return error;
   1125  1.26  reinoud }
   1126  1.26  reinoud 
   1127  1.26  reinoud 
   1128  1.26  reinoud void
   1129  1.26  reinoud udf_cleanup_reservation(struct udf_node *udf_node)
   1130  1.26  reinoud {
   1131  1.26  reinoud 	struct udf_mount *ump = udf_node->ump;
   1132  1.26  reinoud 	int vpart_num;
   1133  1.26  reinoud 
   1134  1.26  reinoud 	mutex_enter(&ump->allocate_mutex);
   1135  1.26  reinoud 
   1136  1.26  reinoud 	/* compensate for overlapping blocks */
   1137  1.26  reinoud 	DPRINTF(RESERVE, ("UDF: overlapped %d blocks in count\n", udf_node->uncommitted_lbs));
   1138  1.26  reinoud 
   1139  1.26  reinoud 	vpart_num = udf_get_record_vpart(ump, udf_get_c_type(udf_node));
   1140  1.26  reinoud 	udf_do_unreserve_space(ump, udf_node, vpart_num, udf_node->uncommitted_lbs);
   1141  1.26  reinoud 
   1142  1.26  reinoud 	DPRINTF(RESERVE, ("\ttotal now %d\n", ump->uncommitted_lbs[vpart_num]));
   1143  1.26  reinoud 
   1144  1.26  reinoud 	/* sanity */
   1145  1.26  reinoud 	if (ump->uncommitted_lbs[vpart_num] < 0)
   1146  1.26  reinoud 		ump->uncommitted_lbs[vpart_num] = 0;
   1147  1.26  reinoud 
   1148  1.26  reinoud 	mutex_exit(&ump->allocate_mutex);
   1149  1.26  reinoud }
   1150  1.26  reinoud 
   1151  1.26  reinoud /* --------------------------------------------------------------------- */
   1152  1.26  reinoud 
   1153  1.26  reinoud /*
   1154  1.26  reinoud  * Allocate an extent of given length on given virt. partition. It doesn't
   1155  1.26  reinoud  * have to be one stretch.
   1156  1.26  reinoud  */
   1157   1.1  reinoud 
   1158  1.26  reinoud int
   1159  1.26  reinoud udf_allocate_space(struct udf_mount *ump, struct udf_node *udf_node,
   1160  1.26  reinoud 	int udf_c_type, uint16_t vpart_num, uint32_t num_lb, uint64_t *lmapping)
   1161   1.1  reinoud {
   1162   1.1  reinoud 	struct mmc_trackinfo *alloc_track, *other_track;
   1163   1.1  reinoud 	struct udf_bitmap *bitmap;
   1164   1.1  reinoud 	struct part_desc *pdesc;
   1165   1.1  reinoud 	struct logvol_int_desc *lvid;
   1166  1.16  reinoud 	uint64_t *lmappos;
   1167   1.1  reinoud 	uint32_t ptov, lb_num, *freepos, free_lbs;
   1168   1.1  reinoud 	int lb_size, alloc_num_lb;
   1169  1.17  reinoud 	int alloc_type, error;
   1170  1.17  reinoud 	int is_node;
   1171   1.1  reinoud 
   1172  1.17  reinoud 	DPRINTF(CALL, ("udf_allocate_space(ctype %d, vpart %d, num_lb %d\n",
   1173  1.17  reinoud 		udf_c_type, vpart_num, num_lb));
   1174   1.1  reinoud 	mutex_enter(&ump->allocate_mutex);
   1175  1.16  reinoud 
   1176   1.1  reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   1177   1.1  reinoud 	KASSERT(lb_size == ump->discinfo.sector_size);
   1178   1.1  reinoud 
   1179  1.17  reinoud 	alloc_type =  ump->vtop_alloc[vpart_num];
   1180  1.17  reinoud 	is_node    = (udf_c_type == UDF_C_NODE);
   1181   1.1  reinoud 
   1182   1.1  reinoud 	lmappos = lmapping;
   1183  1.16  reinoud 	error = 0;
   1184   1.1  reinoud 	switch (alloc_type) {
   1185   1.1  reinoud 	case UDF_ALLOC_VAT :
   1186   1.1  reinoud 		/* search empty slot in VAT file */
   1187   1.1  reinoud 		KASSERT(num_lb == 1);
   1188   1.1  reinoud 		error = udf_search_free_vatloc(ump, &lb_num);
   1189  1.26  reinoud 		if (!error) {
   1190   1.1  reinoud 			*lmappos = lb_num;
   1191  1.26  reinoud 
   1192  1.26  reinoud 			/* reserve on the backing sequential partition since
   1193  1.26  reinoud 			 * that partition is credited back later */
   1194  1.26  reinoud 			udf_do_reserve_space(ump, udf_node,
   1195  1.26  reinoud 				ump->vtop[vpart_num], num_lb);
   1196  1.26  reinoud 		}
   1197   1.1  reinoud 		break;
   1198   1.1  reinoud 	case UDF_ALLOC_SEQUENTIAL :
   1199   1.1  reinoud 		/* sequential allocation on recordable media */
   1200  1.17  reinoud 		/* get partition backing up this vpart_num_num */
   1201  1.17  reinoud 		pdesc = ump->partitions[ump->vtop[vpart_num]];
   1202  1.16  reinoud 
   1203   1.1  reinoud 		/* calculate offset from physical base partition */
   1204   1.1  reinoud 		ptov  = udf_rw32(pdesc->start_loc);
   1205   1.1  reinoud 
   1206  1.17  reinoud 		/* get our track descriptors */
   1207  1.17  reinoud 		if (vpart_num == ump->node_part) {
   1208  1.17  reinoud 			alloc_track = &ump->metadata_track;
   1209  1.17  reinoud 			other_track = &ump->data_track;
   1210  1.17  reinoud 		} else {
   1211  1.17  reinoud 			alloc_track = &ump->data_track;
   1212  1.17  reinoud 			other_track = &ump->metadata_track;
   1213  1.17  reinoud 		}
   1214  1.17  reinoud 
   1215  1.17  reinoud 		/* allocate */
   1216   1.1  reinoud 		for (lb_num = 0; lb_num < num_lb; lb_num++) {
   1217   1.1  reinoud 			*lmappos++ = alloc_track->next_writable - ptov;
   1218   1.1  reinoud 			alloc_track->next_writable++;
   1219   1.1  reinoud 			alloc_track->free_blocks--;
   1220   1.1  reinoud 		}
   1221  1.17  reinoud 
   1222  1.17  reinoud 		/* keep other track up-to-date */
   1223   1.1  reinoud 		if (alloc_track->tracknr == other_track->tracknr)
   1224   1.1  reinoud 			memcpy(other_track, alloc_track,
   1225   1.1  reinoud 				sizeof(struct mmc_trackinfo));
   1226   1.1  reinoud 		break;
   1227   1.1  reinoud 	case UDF_ALLOC_SPACEMAP :
   1228  1.16  reinoud 		/* try to allocate on unallocated bits */
   1229   1.1  reinoud 		alloc_num_lb = num_lb;
   1230  1.17  reinoud 		bitmap = &ump->part_unalloc_bits[vpart_num];
   1231  1.17  reinoud 		udf_bitmap_allocate(bitmap, is_node, &alloc_num_lb, lmappos);
   1232   1.1  reinoud 		ump->lvclose |= UDF_WRITE_PART_BITMAPS;
   1233  1.16  reinoud 
   1234  1.16  reinoud 		/* have we allocated all? */
   1235   1.1  reinoud 		if (alloc_num_lb) {
   1236   1.1  reinoud 			/* TODO convert freed to unalloc and try again */
   1237   1.1  reinoud 			/* free allocated piece for now */
   1238   1.1  reinoud 			lmappos = lmapping;
   1239   1.1  reinoud 			for (lb_num=0; lb_num < num_lb-alloc_num_lb; lb_num++) {
   1240   1.1  reinoud 				udf_bitmap_free(bitmap, *lmappos++, 1);
   1241   1.1  reinoud 			}
   1242   1.1  reinoud 			error = ENOSPC;
   1243   1.1  reinoud 		}
   1244   1.1  reinoud 		if (!error) {
   1245   1.1  reinoud 			/* adjust freecount */
   1246   1.1  reinoud 			lvid = ump->logvol_integrity;
   1247  1.17  reinoud 			freepos = &lvid->tables[0] + vpart_num;
   1248   1.1  reinoud 			free_lbs = udf_rw32(*freepos);
   1249   1.1  reinoud 			*freepos = udf_rw32(free_lbs - num_lb);
   1250   1.1  reinoud 		}
   1251   1.1  reinoud 		break;
   1252  1.15  reinoud 	case UDF_ALLOC_METABITMAP :		/* UDF 2.50, 2.60 BluRay-RE */
   1253  1.16  reinoud 		/* allocate on metadata unallocated bits */
   1254  1.16  reinoud 		alloc_num_lb = num_lb;
   1255  1.16  reinoud 		bitmap = &ump->metadata_unalloc_bits;
   1256  1.17  reinoud 		udf_bitmap_allocate(bitmap, is_node, &alloc_num_lb, lmappos);
   1257  1.16  reinoud 		ump->lvclose |= UDF_WRITE_PART_BITMAPS;
   1258  1.16  reinoud 
   1259  1.16  reinoud 		/* have we allocated all? */
   1260  1.17  reinoud 		if (alloc_num_lb) {
   1261  1.16  reinoud 			/* YIKES! TODO we need to extend the metadata partition */
   1262  1.16  reinoud 			/* free allocated piece for now */
   1263  1.16  reinoud 			lmappos = lmapping;
   1264  1.16  reinoud 			for (lb_num=0; lb_num < num_lb-alloc_num_lb; lb_num++) {
   1265  1.16  reinoud 				udf_bitmap_free(bitmap, *lmappos++, 1);
   1266  1.16  reinoud 			}
   1267  1.16  reinoud 			error = ENOSPC;
   1268  1.16  reinoud 		}
   1269  1.16  reinoud 		if (!error) {
   1270  1.16  reinoud 			/* adjust freecount */
   1271  1.16  reinoud 			lvid = ump->logvol_integrity;
   1272  1.17  reinoud 			freepos = &lvid->tables[0] + vpart_num;
   1273  1.16  reinoud 			free_lbs = udf_rw32(*freepos);
   1274  1.16  reinoud 			*freepos = udf_rw32(free_lbs - num_lb);
   1275  1.16  reinoud 		}
   1276  1.16  reinoud 		break;
   1277  1.15  reinoud 	case UDF_ALLOC_METASEQUENTIAL :		/* UDF 2.60       BluRay-R  */
   1278  1.15  reinoud 	case UDF_ALLOC_RELAXEDSEQUENTIAL :	/* UDF 2.50/~meta BluRay-R  */
   1279   1.1  reinoud 		printf("ALERT: udf_allocate_space : allocation %d "
   1280   1.1  reinoud 				"not implemented yet!\n", alloc_type);
   1281   1.1  reinoud 		/* TODO implement, doesn't have to be contiguous */
   1282   1.1  reinoud 		error = ENOSPC;
   1283   1.1  reinoud 		break;
   1284   1.1  reinoud 	}
   1285   1.1  reinoud 
   1286  1.26  reinoud 	if (!error) {
   1287  1.26  reinoud 		/* credit our partition since we have committed the space */
   1288  1.26  reinoud 		udf_do_unreserve_space(ump, udf_node, vpart_num, num_lb);
   1289  1.26  reinoud 	}
   1290  1.26  reinoud 
   1291   1.1  reinoud #ifdef DEBUG
   1292   1.1  reinoud 	if (udf_verbose & UDF_DEBUG_ALLOC) {
   1293   1.1  reinoud 		lmappos = lmapping;
   1294  1.16  reinoud 		printf("udf_allocate_space, allocated logical lba :\n");
   1295   1.1  reinoud 		for (lb_num = 0; lb_num < num_lb; lb_num++) {
   1296  1.25  reinoud 			printf("%s %"PRIu64, (lb_num > 0)?",":"",
   1297  1.16  reinoud 				*lmappos++);
   1298   1.1  reinoud 		}
   1299  1.16  reinoud 		printf("\n");
   1300   1.1  reinoud 	}
   1301   1.1  reinoud #endif
   1302   1.1  reinoud 	mutex_exit(&ump->allocate_mutex);
   1303   1.1  reinoud 
   1304   1.1  reinoud 	return error;
   1305   1.1  reinoud }
   1306   1.1  reinoud 
   1307   1.1  reinoud /* --------------------------------------------------------------------- */
   1308   1.1  reinoud 
   1309   1.1  reinoud void
   1310   1.1  reinoud udf_free_allocated_space(struct udf_mount *ump, uint32_t lb_num,
   1311   1.1  reinoud 	uint16_t vpart_num, uint32_t num_lb)
   1312   1.1  reinoud {
   1313   1.1  reinoud 	struct udf_bitmap *bitmap;
   1314   1.1  reinoud 	struct part_desc *pdesc;
   1315   1.1  reinoud 	struct logvol_int_desc *lvid;
   1316   1.1  reinoud 	uint32_t ptov, lb_map, udf_rw32_lbmap;
   1317   1.1  reinoud 	uint32_t *freepos, free_lbs;
   1318   1.1  reinoud 	int phys_part;
   1319   1.1  reinoud 	int error;
   1320   1.1  reinoud 
   1321   1.1  reinoud 	DPRINTF(ALLOC, ("udf_free_allocated_space: freeing virt lbnum %d "
   1322   1.1  reinoud 			  "part %d + %d sect\n", lb_num, vpart_num, num_lb));
   1323   1.1  reinoud 
   1324  1.10  reinoud 	/* no use freeing zero length */
   1325  1.10  reinoud 	if (num_lb == 0)
   1326  1.10  reinoud 		return;
   1327  1.10  reinoud 
   1328   1.1  reinoud 	mutex_enter(&ump->allocate_mutex);
   1329   1.1  reinoud 
   1330   1.1  reinoud 	/* get partition backing up this vpart_num */
   1331   1.1  reinoud 	pdesc = ump->partitions[ump->vtop[vpart_num]];
   1332   1.1  reinoud 
   1333   1.1  reinoud 	switch (ump->vtop_tp[vpart_num]) {
   1334   1.1  reinoud 	case UDF_VTOP_TYPE_PHYS :
   1335   1.1  reinoud 	case UDF_VTOP_TYPE_SPARABLE :
   1336   1.1  reinoud 		/* free space to freed or unallocated space bitmap */
   1337   1.1  reinoud 		ptov      = udf_rw32(pdesc->start_loc);
   1338   1.1  reinoud 		phys_part = ump->vtop[vpart_num];
   1339   1.1  reinoud 
   1340   1.1  reinoud 		/* first try freed space bitmap */
   1341   1.1  reinoud 		bitmap    = &ump->part_freed_bits[phys_part];
   1342   1.1  reinoud 
   1343   1.1  reinoud 		/* if not defined, use unallocated bitmap */
   1344   1.1  reinoud 		if (bitmap->bits == NULL)
   1345   1.1  reinoud 			bitmap = &ump->part_unalloc_bits[phys_part];
   1346   1.1  reinoud 
   1347  1.17  reinoud 		/* if no bitmaps are defined, bail out; XXX OK? */
   1348   1.1  reinoud 		if (bitmap->bits == NULL)
   1349   1.1  reinoud 			break;
   1350   1.1  reinoud 
   1351   1.1  reinoud 		/* free bits if its defined */
   1352   1.1  reinoud 		KASSERT(bitmap->bits);
   1353   1.1  reinoud 		ump->lvclose |= UDF_WRITE_PART_BITMAPS;
   1354   1.1  reinoud 		udf_bitmap_free(bitmap, lb_num, num_lb);
   1355   1.1  reinoud 
   1356   1.1  reinoud 		/* adjust freecount */
   1357   1.1  reinoud 		lvid = ump->logvol_integrity;
   1358   1.1  reinoud 		freepos = &lvid->tables[0] + vpart_num;
   1359   1.1  reinoud 		free_lbs = udf_rw32(*freepos);
   1360   1.1  reinoud 		*freepos = udf_rw32(free_lbs + num_lb);
   1361   1.1  reinoud 		break;
   1362   1.1  reinoud 	case UDF_VTOP_TYPE_VIRT :
   1363   1.1  reinoud 		/* free this VAT entry */
   1364   1.1  reinoud 		KASSERT(num_lb == 1);
   1365   1.1  reinoud 
   1366   1.1  reinoud 		lb_map = 0xffffffff;
   1367   1.1  reinoud 		udf_rw32_lbmap = udf_rw32(lb_map);
   1368   1.1  reinoud 		error = udf_vat_write(ump->vat_node,
   1369   1.1  reinoud 			(uint8_t *) &udf_rw32_lbmap, 4,
   1370   1.1  reinoud 			ump->vat_offset + lb_num * 4);
   1371   1.1  reinoud 		KASSERT(error == 0);
   1372   1.1  reinoud 		ump->vat_last_free_lb = MIN(ump->vat_last_free_lb, lb_num);
   1373   1.1  reinoud 		break;
   1374   1.1  reinoud 	case UDF_VTOP_TYPE_META :
   1375   1.1  reinoud 		/* free space in the metadata bitmap */
   1376  1.17  reinoud 		bitmap = &ump->metadata_unalloc_bits;
   1377  1.17  reinoud 		KASSERT(bitmap->bits);
   1378  1.17  reinoud 
   1379  1.17  reinoud 		ump->lvclose |= UDF_WRITE_PART_BITMAPS;
   1380  1.17  reinoud 		udf_bitmap_free(bitmap, lb_num, num_lb);
   1381  1.17  reinoud 
   1382  1.17  reinoud 		/* adjust freecount */
   1383  1.17  reinoud 		lvid = ump->logvol_integrity;
   1384  1.17  reinoud 		freepos = &lvid->tables[0] + vpart_num;
   1385  1.17  reinoud 		free_lbs = udf_rw32(*freepos);
   1386  1.17  reinoud 		*freepos = udf_rw32(free_lbs + num_lb);
   1387  1.17  reinoud 		break;
   1388   1.1  reinoud 	default:
   1389   1.1  reinoud 		printf("ALERT: udf_free_allocated_space : allocation %d "
   1390   1.1  reinoud 			"not implemented yet!\n", ump->vtop_tp[vpart_num]);
   1391   1.1  reinoud 		break;
   1392   1.1  reinoud 	}
   1393   1.1  reinoud 
   1394   1.1  reinoud 	mutex_exit(&ump->allocate_mutex);
   1395   1.1  reinoud }
   1396   1.1  reinoud 
   1397   1.1  reinoud /* --------------------------------------------------------------------- */
   1398   1.1  reinoud 
   1399   1.1  reinoud /*
   1400  1.28  reinoud  * Special function to synchronise the metadatamirror file when they change on
   1401  1.28  reinoud  * resizing. When the metadatafile is actually duplicated, this action is a
   1402  1.28  reinoud  * no-op since they describe different extents on the disc.
   1403  1.28  reinoud  */
   1404  1.28  reinoud 
   1405  1.31  reinoud void
   1406  1.31  reinoud udf_synchronise_metadatamirror_node(struct udf_mount *ump)
   1407  1.28  reinoud {
   1408  1.28  reinoud 	struct udf_node *meta_node, *metamirror_node;
   1409  1.28  reinoud 	struct long_ad s_ad;
   1410  1.31  reinoud 	uint32_t len, flags;
   1411  1.28  reinoud 	int slot, cpy_slot;
   1412  1.28  reinoud 	int error, eof;
   1413  1.28  reinoud 
   1414  1.28  reinoud 	if (ump->metadata_flags & METADATA_DUPLICATED)
   1415  1.28  reinoud 		return;
   1416  1.28  reinoud 
   1417  1.28  reinoud 	meta_node       = ump->metadata_node;
   1418  1.28  reinoud 	metamirror_node = ump->metadatamirror_node;
   1419  1.28  reinoud 
   1420  1.28  reinoud 	/* 1) wipe mirror node */
   1421  1.28  reinoud 	udf_wipe_adslots(metamirror_node);
   1422  1.28  reinoud 
   1423  1.28  reinoud 	/* 2) copy all node descriptors from the meta_node */
   1424  1.28  reinoud 	slot     = 0;
   1425  1.28  reinoud 	cpy_slot = 0;
   1426  1.28  reinoud 	for (;;) {
   1427  1.28  reinoud 		udf_get_adslot(meta_node, slot, &s_ad, &eof);
   1428  1.28  reinoud 		if (eof)
   1429  1.28  reinoud 			break;
   1430  1.31  reinoud 		len   = udf_rw32(s_ad.len);
   1431  1.31  reinoud 		flags = UDF_EXT_FLAGS(len);
   1432  1.31  reinoud 		len   = UDF_EXT_LEN(len);
   1433  1.31  reinoud 
   1434  1.31  reinoud 		if (flags == UDF_EXT_REDIRECT) {
   1435  1.31  reinoud 			slot++;
   1436  1.31  reinoud 			continue;
   1437  1.31  reinoud 		}
   1438  1.31  reinoud 
   1439  1.28  reinoud 		error = udf_append_adslot(metamirror_node, &cpy_slot, &s_ad);
   1440  1.28  reinoud 		if (error) {
   1441  1.28  reinoud 			/* WTF, this shouldn't happen, what to do now? */
   1442  1.28  reinoud 			panic("udf_synchronise_metadatamirror_node failed!");
   1443  1.28  reinoud 		}
   1444  1.31  reinoud 		cpy_slot++;
   1445  1.28  reinoud 		slot++;
   1446  1.28  reinoud 	}
   1447  1.28  reinoud 
   1448  1.28  reinoud 	/* 3) adjust metamirror_node size */
   1449  1.28  reinoud 	if (meta_node->fe) {
   1450  1.28  reinoud 		KASSERT(metamirror_node->fe);
   1451  1.28  reinoud 		metamirror_node->fe->inf_len = meta_node->fe->inf_len;
   1452  1.28  reinoud 	} else {
   1453  1.28  reinoud 		KASSERT(meta_node->efe);
   1454  1.28  reinoud 		KASSERT(metamirror_node->efe);
   1455  1.28  reinoud 		metamirror_node->efe->inf_len  = meta_node->efe->inf_len;
   1456  1.28  reinoud 		metamirror_node->efe->obj_size = meta_node->efe->obj_size;
   1457  1.28  reinoud 	}
   1458  1.28  reinoud 
   1459  1.28  reinoud 	/* for sanity */
   1460  1.28  reinoud 	udf_count_alloc_exts(metamirror_node);
   1461  1.28  reinoud }
   1462  1.28  reinoud 
   1463  1.28  reinoud /* --------------------------------------------------------------------- */
   1464  1.28  reinoud 
   1465  1.28  reinoud /*
   1466  1.28  reinoud  * When faced with an out of space but there is still space available on other
   1467  1.28  reinoud  * partitions, try to redistribute the space. This is only defined for media
   1468  1.28  reinoud  * using Metadata partitions.
   1469  1.28  reinoud  *
   1470  1.28  reinoud  * There are two formats to deal with. Either its a `normal' metadata
   1471  1.28  reinoud  * partition and we can move blocks between a metadata bitmap and its
   1472  1.28  reinoud  * companion data spacemap OR its a UDF 2.60 formatted BluRay-R disc with POW
   1473  1.28  reinoud  * and a metadata partition.
   1474  1.28  reinoud  */
   1475  1.28  reinoud 
   1476  1.31  reinoud /* implementation limit: ump->datapart is the companion partition */
   1477  1.28  reinoud static uint32_t
   1478  1.28  reinoud udf_trunc_metadatapart(struct udf_mount *ump, uint32_t num_lb)
   1479  1.28  reinoud {
   1480  1.28  reinoud 	struct udf_node *bitmap_node;
   1481  1.28  reinoud 	struct udf_bitmap *bitmap;
   1482  1.28  reinoud 	struct space_bitmap_desc *sbd, *new_sbd;
   1483  1.28  reinoud 	struct logvol_int_desc *lvid;
   1484  1.28  reinoud 	uint64_t inf_len;
   1485  1.31  reinoud 	uint64_t meta_free_lbs, data_free_lbs, to_trunc;
   1486  1.28  reinoud 	uint32_t *freepos, *sizepos;
   1487  1.31  reinoud 	uint32_t unit, lb_size;
   1488  1.28  reinoud 	uint16_t meta_vpart_num, data_vpart_num, num_vpart;
   1489  1.28  reinoud 	int err;
   1490  1.28  reinoud 
   1491  1.28  reinoud 	unit = ump->metadata_alloc_unit_size;
   1492  1.28  reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   1493  1.28  reinoud 	lvid = ump->logvol_integrity;
   1494  1.28  reinoud 
   1495  1.31  reinoud 	/* XXX
   1496  1.31  reinoud 	 *
   1497  1.31  reinoud 	 * the following checks will fail for BD-R UDF 2.60! but they are
   1498  1.31  reinoud 	 * read-only for now anyway! Its even doubtfull if it is to be allowed
   1499  1.31  reinoud 	 * for these discs.
   1500  1.31  reinoud 	 */
   1501  1.31  reinoud 
   1502  1.28  reinoud 	/* lookup vpart for metadata partition */
   1503  1.28  reinoud 	meta_vpart_num = ump->node_part;
   1504  1.28  reinoud 	KASSERT(ump->vtop_alloc[meta_vpart_num] == UDF_ALLOC_METABITMAP);
   1505  1.28  reinoud 
   1506  1.28  reinoud 	/* lookup vpart for data partition */
   1507  1.28  reinoud 	data_vpart_num = ump->data_part;
   1508  1.28  reinoud 	KASSERT(ump->vtop_alloc[data_vpart_num] == UDF_ALLOC_SPACEMAP);
   1509  1.28  reinoud 
   1510  1.28  reinoud 	udf_calc_vpart_freespace(ump, data_vpart_num, &data_free_lbs);
   1511  1.28  reinoud 	udf_calc_vpart_freespace(ump, meta_vpart_num, &meta_free_lbs);
   1512  1.28  reinoud 
   1513  1.28  reinoud 	DPRINTF(RESERVE, ("\tfree space on data partition     %"PRIu64" blks\n", data_free_lbs));
   1514  1.28  reinoud 	DPRINTF(RESERVE, ("\tfree space on metadata partition %"PRIu64" blks\n", meta_free_lbs));
   1515  1.28  reinoud 
   1516  1.28  reinoud 	/* give away some of the free meta space, in unit block sizes */
   1517  1.29  reinoud 	to_trunc = meta_free_lbs/4;			/* give out a quarter */
   1518  1.28  reinoud 	to_trunc = MAX(to_trunc, num_lb);
   1519  1.28  reinoud 	to_trunc = unit * ((to_trunc + unit-1) / unit);	/* round up */
   1520  1.28  reinoud 
   1521  1.28  reinoud 	/* scale down if needed and bail out when out of space */
   1522  1.28  reinoud 	if (to_trunc >= meta_free_lbs)
   1523  1.28  reinoud 		return num_lb;
   1524  1.28  reinoud 
   1525  1.28  reinoud 	/* check extent of bits marked free at the end of the map */
   1526  1.28  reinoud 	bitmap = &ump->metadata_unalloc_bits;
   1527  1.28  reinoud 	to_trunc = udf_bitmap_check_trunc_free(bitmap, to_trunc);
   1528  1.28  reinoud 	to_trunc = unit * (to_trunc / unit);		/* round down again */
   1529  1.28  reinoud 	if (to_trunc == 0)
   1530  1.28  reinoud 		return num_lb;
   1531  1.28  reinoud 
   1532  1.31  reinoud 	DPRINTF(RESERVE, ("\ttruncating %"PRIu64" lbs from the metadata bitmap\n",
   1533  1.28  reinoud 		to_trunc));
   1534  1.28  reinoud 
   1535  1.28  reinoud 	/* get length of the metadata bitmap node file */
   1536  1.28  reinoud 	bitmap_node = ump->metadatabitmap_node;
   1537  1.28  reinoud 	if (bitmap_node->fe) {
   1538  1.28  reinoud 		inf_len = udf_rw64(bitmap_node->fe->inf_len);
   1539  1.28  reinoud 	} else {
   1540  1.28  reinoud 		KASSERT(bitmap_node->efe);
   1541  1.28  reinoud 		inf_len = udf_rw64(bitmap_node->efe->inf_len);
   1542  1.28  reinoud 	}
   1543  1.28  reinoud 	inf_len -= to_trunc/8;
   1544  1.28  reinoud 
   1545  1.28  reinoud 	/* as per [UDF 2.60/2.2.13.6] : */
   1546  1.28  reinoud 	/* 1) update the SBD in the metadata bitmap file */
   1547  1.28  reinoud 	sbd = (struct space_bitmap_desc *) bitmap->blob;
   1548  1.31  reinoud 	sbd->num_bits  = udf_rw32(udf_rw32(sbd->num_bits)  - to_trunc);
   1549  1.31  reinoud 	sbd->num_bytes = udf_rw32(udf_rw32(sbd->num_bytes) - to_trunc/8);
   1550  1.28  reinoud 	bitmap->max_offset = udf_rw32(sbd->num_bits);
   1551  1.28  reinoud 
   1552  1.28  reinoud 	num_vpart = udf_rw32(lvid->num_part);
   1553  1.28  reinoud 	freepos = &lvid->tables[0] + meta_vpart_num;
   1554  1.28  reinoud 	sizepos = &lvid->tables[0] + num_vpart + meta_vpart_num;
   1555  1.28  reinoud 	*freepos = udf_rw32(*freepos) - to_trunc;
   1556  1.28  reinoud 	*sizepos = udf_rw32(*sizepos) - to_trunc;
   1557  1.28  reinoud 
   1558  1.28  reinoud 	/* realloc bitmap for better memory usage */
   1559  1.28  reinoud 	new_sbd = realloc(sbd, inf_len, M_UDFVOLD,
   1560  1.28  reinoud 		M_CANFAIL | M_WAITOK);
   1561  1.28  reinoud 	if (new_sbd) {
   1562  1.28  reinoud 		/* update pointers */
   1563  1.28  reinoud 		ump->metadata_unalloc_dscr = new_sbd;
   1564  1.28  reinoud 		bitmap->blob = (uint8_t *) new_sbd;
   1565  1.28  reinoud 	}
   1566  1.28  reinoud 	ump->lvclose |= UDF_WRITE_PART_BITMAPS;
   1567  1.28  reinoud 
   1568  1.28  reinoud 	/*
   1569  1.31  reinoud 	 * The truncated space is secured now and can't be allocated anymore.
   1570  1.31  reinoud 	 * Release the allocate mutex so we can shrink the nodes the normal
   1571  1.31  reinoud 	 * way.
   1572  1.28  reinoud 	 */
   1573  1.28  reinoud 	mutex_exit(&ump->allocate_mutex);
   1574  1.28  reinoud 
   1575  1.28  reinoud 	/* 2) trunc the metadata bitmap information file, freeing blocks */
   1576  1.28  reinoud 	err = udf_shrink_node(bitmap_node, inf_len);
   1577  1.28  reinoud 	KASSERT(err == 0);
   1578  1.28  reinoud 
   1579  1.28  reinoud 	/* 3) trunc the metadata file and mirror file, freeing blocks */
   1580  1.31  reinoud 	inf_len = (uint64_t) udf_rw32(sbd->num_bits) * lb_size;	/* [4/14.12.4] */
   1581  1.28  reinoud 	err = udf_shrink_node(ump->metadata_node, inf_len);
   1582  1.28  reinoud 	KASSERT(err == 0);
   1583  1.31  reinoud 	if (ump->metadatamirror_node) {
   1584  1.31  reinoud 		if (ump->metadata_flags & METADATA_DUPLICATED) {
   1585  1.31  reinoud 			err = udf_shrink_node(ump->metadatamirror_node, inf_len);
   1586  1.31  reinoud 		} else {
   1587  1.31  reinoud 			/* extents will be copied on writeout */
   1588  1.31  reinoud 		}
   1589  1.28  reinoud 		KASSERT(err == 0);
   1590  1.28  reinoud 	}
   1591  1.28  reinoud 	ump->lvclose |= UDF_WRITE_METAPART_NODES;
   1592  1.28  reinoud 
   1593  1.28  reinoud 	/* relock before exit */
   1594  1.28  reinoud 	mutex_enter(&ump->allocate_mutex);
   1595  1.28  reinoud 
   1596  1.28  reinoud 	if (to_trunc > num_lb)
   1597  1.28  reinoud 		return 0;
   1598  1.28  reinoud 	return num_lb - to_trunc;
   1599  1.28  reinoud }
   1600  1.28  reinoud 
   1601  1.28  reinoud 
   1602  1.28  reinoud static void
   1603  1.28  reinoud udf_sparsify_metadatapart(struct udf_mount *ump, uint32_t num_lb)
   1604  1.28  reinoud {
   1605  1.28  reinoud 	/* NOT IMPLEMENTED, fail */
   1606  1.28  reinoud }
   1607  1.28  reinoud 
   1608  1.28  reinoud 
   1609  1.28  reinoud static void
   1610  1.28  reinoud udf_collect_free_space_for_vpart(struct udf_mount *ump,
   1611  1.28  reinoud 	uint16_t vpart_num, uint32_t num_lb)
   1612  1.28  reinoud {
   1613  1.28  reinoud 	/* allocate mutex is helt */
   1614  1.28  reinoud 
   1615  1.28  reinoud 	/* only defined for metadata partitions */
   1616  1.28  reinoud 	if (ump->vtop_tp[ump->node_part] != UDF_VTOP_TYPE_META) {
   1617  1.28  reinoud 		DPRINTF(RESERVE, ("\tcan't grow/shrink; no metadata partitioning\n"));
   1618  1.28  reinoud 		return;
   1619  1.28  reinoud 	}
   1620  1.28  reinoud 
   1621  1.28  reinoud 	/* UDF 2.60 BD-R+POW? */
   1622  1.28  reinoud 	if (ump->vtop_alloc[ump->node_part] == UDF_ALLOC_METASEQUENTIAL) {
   1623  1.28  reinoud 		DPRINTF(RESERVE, ("\tUDF 2.60 BD-R+POW track grow not implemented yet\n"));
   1624  1.28  reinoud 		return;
   1625  1.28  reinoud 	}
   1626  1.28  reinoud 
   1627  1.28  reinoud 	if (ump->vtop_tp[vpart_num] == UDF_VTOP_TYPE_META) {
   1628  1.28  reinoud 		/* try to grow the meta partition */
   1629  1.28  reinoud 		DPRINTF(RESERVE, ("\ttrying to grow the meta partition\n"));
   1630  1.28  reinoud 		/* as per [UDF 2.60/2.2.13.5] : extend bitmap and metadata file(s) */
   1631  1.30  reinoud 		DPRINTF(NOTIMPL, ("\tgrowing meta partition not implemented yet\n"));
   1632  1.28  reinoud 	} else {
   1633  1.28  reinoud 		/* try to shrink the metadata partition */
   1634  1.28  reinoud 		DPRINTF(RESERVE, ("\ttrying to shrink the meta partition\n"));
   1635  1.28  reinoud 		/* as per [UDF 2.60/2.2.13.6] : either trunc or make sparse */
   1636  1.28  reinoud 		num_lb = udf_trunc_metadatapart(ump, num_lb);
   1637  1.28  reinoud 		if (num_lb)
   1638  1.28  reinoud 			udf_sparsify_metadatapart(ump, num_lb);
   1639  1.28  reinoud 	}
   1640  1.28  reinoud 
   1641  1.28  reinoud 	/* allocate mutex should still be helt */
   1642  1.28  reinoud }
   1643  1.28  reinoud 
   1644  1.28  reinoud /* --------------------------------------------------------------------- */
   1645  1.28  reinoud 
   1646  1.28  reinoud /*
   1647   1.1  reinoud  * Allocate a buf on disc for direct write out. The space doesn't have to be
   1648   1.1  reinoud  * contiguous as the caller takes care of this.
   1649   1.1  reinoud  */
   1650   1.1  reinoud 
   1651   1.1  reinoud void
   1652   1.1  reinoud udf_late_allocate_buf(struct udf_mount *ump, struct buf *buf,
   1653  1.17  reinoud 	uint64_t *lmapping, struct long_ad *node_ad_cpy, uint16_t *vpart_nump)
   1654   1.1  reinoud {
   1655   1.1  reinoud 	struct udf_node  *udf_node = VTOI(buf->b_vp);
   1656   1.1  reinoud 	int lb_size, blks, udf_c_type;
   1657  1.17  reinoud 	int vpart_num, num_lb;
   1658   1.1  reinoud 	int error, s;
   1659   1.1  reinoud 
   1660   1.1  reinoud 	/*
   1661   1.1  reinoud 	 * for each sector in the buf, allocate a sector on disc and record
   1662   1.1  reinoud 	 * its position in the provided mapping array.
   1663   1.1  reinoud 	 *
   1664   1.1  reinoud 	 * If its userdata or FIDs, record its location in its node.
   1665   1.1  reinoud 	 */
   1666   1.1  reinoud 
   1667   1.1  reinoud 	lb_size    = udf_rw32(ump->logical_vol->lb_size);
   1668   1.1  reinoud 	num_lb     = (buf->b_bcount + lb_size -1) / lb_size;
   1669   1.1  reinoud 	blks       = lb_size / DEV_BSIZE;
   1670   1.1  reinoud 	udf_c_type = buf->b_udf_c_type;
   1671   1.1  reinoud 
   1672   1.1  reinoud 	KASSERT(lb_size == ump->discinfo.sector_size);
   1673   1.1  reinoud 
   1674  1.17  reinoud 	/* select partition to record the buffer on */
   1675  1.26  reinoud 	vpart_num = *vpart_nump = udf_get_record_vpart(ump, udf_c_type);
   1676   1.1  reinoud 
   1677   1.1  reinoud 	if (udf_c_type == UDF_C_NODE) {
   1678   1.1  reinoud 		/* if not VAT, its allready allocated */
   1679  1.17  reinoud 		if (ump->vtop_alloc[ump->node_part] != UDF_ALLOC_VAT)
   1680   1.1  reinoud 			return;
   1681   1.1  reinoud 
   1682  1.17  reinoud 		/* allocate on its backing sequential partition */
   1683  1.17  reinoud 		vpart_num = ump->data_part;
   1684   1.1  reinoud 	}
   1685   1.1  reinoud 
   1686  1.26  reinoud 	/* XXX can this still happen? */
   1687  1.17  reinoud 	/* do allocation on the selected partition */
   1688  1.26  reinoud 	error = udf_allocate_space(ump, udf_node, udf_c_type,
   1689  1.17  reinoud 			vpart_num, num_lb, lmapping);
   1690   1.1  reinoud 	if (error) {
   1691  1.26  reinoud 		/*
   1692  1.26  reinoud 		 * ARGH! we haven't done our accounting right! it should
   1693  1.26  reinoud 		 * allways succeed.
   1694  1.26  reinoud 		 */
   1695   1.1  reinoud 		panic("UDF disc allocation accounting gone wrong");
   1696   1.1  reinoud 	}
   1697   1.1  reinoud 
   1698   1.1  reinoud 	/* If its userdata or FIDs, record its allocation in its node. */
   1699  1.16  reinoud 	if ((udf_c_type == UDF_C_USERDATA) ||
   1700  1.16  reinoud 	    (udf_c_type == UDF_C_FIDS) ||
   1701  1.16  reinoud 	    (udf_c_type == UDF_C_METADATA_SBM))
   1702  1.16  reinoud 	{
   1703  1.17  reinoud 		udf_record_allocation_in_node(ump, buf, vpart_num, lmapping,
   1704   1.1  reinoud 			node_ad_cpy);
   1705   1.1  reinoud 		/* decrement our outstanding bufs counter */
   1706   1.1  reinoud 		s = splbio();
   1707   1.1  reinoud 			udf_node->outstanding_bufs--;
   1708   1.1  reinoud 		splx(s);
   1709   1.1  reinoud 	}
   1710   1.1  reinoud }
   1711   1.1  reinoud 
   1712   1.1  reinoud /* --------------------------------------------------------------------- */
   1713   1.1  reinoud 
   1714   1.1  reinoud /*
   1715   1.1  reinoud  * Try to merge a1 with the new piece a2. udf_ads_merge returns error when not
   1716   1.1  reinoud  * possible (anymore); a2 returns the rest piece.
   1717   1.1  reinoud  */
   1718   1.1  reinoud 
   1719   1.1  reinoud static int
   1720  1.31  reinoud udf_ads_merge(uint32_t max_len, uint32_t lb_size, struct long_ad *a1, struct long_ad *a2)
   1721   1.1  reinoud {
   1722  1.31  reinoud 	uint32_t merge_len;
   1723   1.1  reinoud 	uint32_t a1_len, a2_len;
   1724   1.1  reinoud 	uint32_t a1_flags, a2_flags;
   1725   1.1  reinoud 	uint32_t a1_lbnum, a2_lbnum;
   1726   1.1  reinoud 	uint16_t a1_part, a2_part;
   1727   1.1  reinoud 
   1728   1.1  reinoud 	a1_flags = UDF_EXT_FLAGS(udf_rw32(a1->len));
   1729   1.1  reinoud 	a1_len   = UDF_EXT_LEN(udf_rw32(a1->len));
   1730   1.1  reinoud 	a1_lbnum = udf_rw32(a1->loc.lb_num);
   1731   1.1  reinoud 	a1_part  = udf_rw16(a1->loc.part_num);
   1732   1.1  reinoud 
   1733   1.1  reinoud 	a2_flags = UDF_EXT_FLAGS(udf_rw32(a2->len));
   1734   1.1  reinoud 	a2_len   = UDF_EXT_LEN(udf_rw32(a2->len));
   1735   1.1  reinoud 	a2_lbnum = udf_rw32(a2->loc.lb_num);
   1736   1.1  reinoud 	a2_part  = udf_rw16(a2->loc.part_num);
   1737   1.1  reinoud 
   1738   1.1  reinoud 	/* defines same space */
   1739   1.1  reinoud 	if (a1_flags != a2_flags)
   1740   1.1  reinoud 		return 1;
   1741   1.1  reinoud 
   1742   1.1  reinoud 	if (a1_flags != UDF_EXT_FREE) {
   1743   1.1  reinoud 		/* the same partition */
   1744   1.1  reinoud 		if (a1_part != a2_part)
   1745   1.1  reinoud 			return 1;
   1746   1.1  reinoud 
   1747   1.1  reinoud 		/* a2 is successor of a1 */
   1748   1.1  reinoud 		if (a1_lbnum * lb_size + a1_len != a2_lbnum * lb_size)
   1749   1.1  reinoud 			return 1;
   1750   1.1  reinoud 	}
   1751   1.9  reinoud 
   1752   1.1  reinoud 	/* merge as most from a2 if possible */
   1753   1.1  reinoud 	merge_len = MIN(a2_len, max_len - a1_len);
   1754   1.1  reinoud 	a1_len   += merge_len;
   1755   1.1  reinoud 	a2_len   -= merge_len;
   1756   1.1  reinoud 	a2_lbnum += merge_len/lb_size;
   1757   1.1  reinoud 
   1758   1.1  reinoud 	a1->len = udf_rw32(a1_len | a1_flags);
   1759   1.1  reinoud 	a2->len = udf_rw32(a2_len | a2_flags);
   1760   1.1  reinoud 	a2->loc.lb_num = udf_rw32(a2_lbnum);
   1761   1.1  reinoud 
   1762   1.1  reinoud 	if (a2_len > 0)
   1763   1.1  reinoud 		return 1;
   1764   1.1  reinoud 
   1765   1.1  reinoud 	/* there is space over to merge */
   1766   1.1  reinoud 	return 0;
   1767   1.1  reinoud }
   1768   1.1  reinoud 
   1769   1.1  reinoud /* --------------------------------------------------------------------- */
   1770   1.1  reinoud 
   1771   1.1  reinoud static void
   1772   1.1  reinoud udf_wipe_adslots(struct udf_node *udf_node)
   1773   1.1  reinoud {
   1774   1.1  reinoud 	struct file_entry      *fe;
   1775   1.1  reinoud 	struct extfile_entry   *efe;
   1776   1.1  reinoud 	struct alloc_ext_entry *ext;
   1777   1.1  reinoud 	uint64_t inflen, objsize;
   1778   1.1  reinoud 	uint32_t lb_size, dscr_size, l_ea, l_ad, max_l_ad, crclen;
   1779   1.1  reinoud 	uint8_t *data_pos;
   1780   1.1  reinoud 	int extnr;
   1781   1.1  reinoud 
   1782   1.1  reinoud 	lb_size = udf_rw32(udf_node->ump->logical_vol->lb_size);
   1783   1.1  reinoud 
   1784   1.1  reinoud 	fe  = udf_node->fe;
   1785   1.1  reinoud 	efe = udf_node->efe;
   1786   1.1  reinoud 	if (fe) {
   1787   1.1  reinoud 		inflen  = udf_rw64(fe->inf_len);
   1788   1.1  reinoud 		objsize = inflen;
   1789   1.1  reinoud 		dscr_size  = sizeof(struct file_entry) -1;
   1790   1.1  reinoud 		l_ea       = udf_rw32(fe->l_ea);
   1791   1.1  reinoud 		l_ad       = udf_rw32(fe->l_ad);
   1792   1.1  reinoud 		data_pos = (uint8_t *) fe + dscr_size + l_ea;
   1793   1.1  reinoud 	} else {
   1794   1.1  reinoud 		inflen  = udf_rw64(efe->inf_len);
   1795   1.1  reinoud 		objsize = udf_rw64(efe->obj_size);
   1796   1.1  reinoud 		dscr_size  = sizeof(struct extfile_entry) -1;
   1797   1.1  reinoud 		l_ea       = udf_rw32(efe->l_ea);
   1798   1.1  reinoud 		l_ad       = udf_rw32(efe->l_ad);
   1799   1.1  reinoud 		data_pos = (uint8_t *) efe + dscr_size + l_ea;
   1800   1.1  reinoud 	}
   1801   1.1  reinoud 	max_l_ad = lb_size - dscr_size - l_ea;
   1802   1.1  reinoud 
   1803   1.1  reinoud 	/* wipe fe/efe */
   1804   1.1  reinoud 	memset(data_pos, 0, max_l_ad);
   1805   1.1  reinoud 	crclen = dscr_size - UDF_DESC_TAG_LENGTH + l_ea;
   1806   1.1  reinoud 	if (fe) {
   1807   1.1  reinoud 		fe->l_ad         = udf_rw32(0);
   1808   1.1  reinoud 		fe->logblks_rec  = udf_rw64(0);
   1809  1.22  reinoud 		fe->tag.desc_crc_len = udf_rw16(crclen);
   1810   1.1  reinoud 	} else {
   1811   1.1  reinoud 		efe->l_ad        = udf_rw32(0);
   1812   1.1  reinoud 		efe->logblks_rec = udf_rw64(0);
   1813  1.22  reinoud 		efe->tag.desc_crc_len = udf_rw16(crclen);
   1814   1.1  reinoud 	}
   1815   1.1  reinoud 
   1816   1.1  reinoud 	/* wipe all allocation extent entries */
   1817   1.1  reinoud 	for (extnr = 0; extnr < udf_node->num_extensions; extnr++) {
   1818   1.1  reinoud 		ext = udf_node->ext[extnr];
   1819   1.1  reinoud 		dscr_size  = sizeof(struct alloc_ext_entry) -1;
   1820  1.11  reinoud 		data_pos = (uint8_t *) ext->data;
   1821   1.1  reinoud 		max_l_ad = lb_size - dscr_size;
   1822   1.1  reinoud 		memset(data_pos, 0, max_l_ad);
   1823   1.1  reinoud 		ext->l_ad = udf_rw32(0);
   1824   1.1  reinoud 
   1825   1.1  reinoud 		crclen = dscr_size - UDF_DESC_TAG_LENGTH;
   1826  1.22  reinoud 		ext->tag.desc_crc_len = udf_rw16(crclen);
   1827   1.1  reinoud 	}
   1828  1.11  reinoud 	udf_node->i_flags |= IN_NODE_REBUILD;
   1829   1.1  reinoud }
   1830   1.1  reinoud 
   1831   1.1  reinoud /* --------------------------------------------------------------------- */
   1832   1.1  reinoud 
   1833   1.1  reinoud void
   1834   1.1  reinoud udf_get_adslot(struct udf_node *udf_node, int slot, struct long_ad *icb,
   1835   1.1  reinoud 	int *eof) {
   1836   1.1  reinoud 	struct file_entry      *fe;
   1837   1.1  reinoud 	struct extfile_entry   *efe;
   1838   1.1  reinoud 	struct alloc_ext_entry *ext;
   1839   1.1  reinoud 	struct icb_tag *icbtag;
   1840   1.1  reinoud 	struct short_ad *short_ad;
   1841  1.11  reinoud 	struct long_ad *long_ad, l_icb;
   1842   1.1  reinoud 	uint32_t offset;
   1843  1.11  reinoud 	uint32_t lb_size, dscr_size, l_ea, l_ad, flags;
   1844   1.1  reinoud 	uint8_t *data_pos;
   1845   1.1  reinoud 	int icbflags, addr_type, adlen, extnr;
   1846   1.1  reinoud 
   1847   1.1  reinoud 	/* determine what descriptor we are in */
   1848   1.1  reinoud 	lb_size = udf_rw32(udf_node->ump->logical_vol->lb_size);
   1849   1.1  reinoud 
   1850   1.1  reinoud 	fe  = udf_node->fe;
   1851   1.1  reinoud 	efe = udf_node->efe;
   1852   1.1  reinoud 	if (fe) {
   1853   1.1  reinoud 		icbtag  = &fe->icbtag;
   1854   1.1  reinoud 		dscr_size  = sizeof(struct file_entry) -1;
   1855   1.1  reinoud 		l_ea       = udf_rw32(fe->l_ea);
   1856   1.1  reinoud 		l_ad       = udf_rw32(fe->l_ad);
   1857   1.1  reinoud 		data_pos = (uint8_t *) fe + dscr_size + l_ea;
   1858   1.1  reinoud 	} else {
   1859   1.1  reinoud 		icbtag  = &efe->icbtag;
   1860   1.1  reinoud 		dscr_size  = sizeof(struct extfile_entry) -1;
   1861   1.1  reinoud 		l_ea       = udf_rw32(efe->l_ea);
   1862   1.1  reinoud 		l_ad       = udf_rw32(efe->l_ad);
   1863   1.1  reinoud 		data_pos = (uint8_t *) efe + dscr_size + l_ea;
   1864   1.1  reinoud 	}
   1865   1.1  reinoud 
   1866   1.1  reinoud 	icbflags  = udf_rw16(icbtag->flags);
   1867   1.1  reinoud 	addr_type = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   1868   1.1  reinoud 
   1869   1.1  reinoud 	/* just in case we're called on an intern, its EOF */
   1870   1.1  reinoud 	if (addr_type == UDF_ICB_INTERN_ALLOC) {
   1871   1.1  reinoud 		memset(icb, 0, sizeof(struct long_ad));
   1872   1.1  reinoud 		*eof = 1;
   1873   1.1  reinoud 		return;
   1874   1.1  reinoud 	}
   1875   1.1  reinoud 
   1876   1.1  reinoud 	adlen = 0;
   1877   1.1  reinoud 	if (addr_type == UDF_ICB_SHORT_ALLOC) {
   1878   1.1  reinoud 		adlen = sizeof(struct short_ad);
   1879   1.1  reinoud 	} else if (addr_type == UDF_ICB_LONG_ALLOC) {
   1880   1.1  reinoud 		adlen = sizeof(struct long_ad);
   1881   1.1  reinoud 	}
   1882   1.1  reinoud 
   1883   1.1  reinoud 	/* if offset too big, we go to the allocation extensions */
   1884   1.1  reinoud 	offset = slot * adlen;
   1885   1.3  reinoud 	extnr  = -1;
   1886  1.11  reinoud 	while (offset >= l_ad) {
   1887  1.11  reinoud 		/* check if our last entry is a redirect */
   1888  1.11  reinoud 		if (addr_type == UDF_ICB_SHORT_ALLOC) {
   1889  1.11  reinoud 			short_ad = (struct short_ad *) (data_pos + l_ad-adlen);
   1890  1.11  reinoud 			l_icb.len          = short_ad->len;
   1891  1.11  reinoud 			l_icb.loc.part_num = udf_node->loc.loc.part_num;
   1892  1.11  reinoud 			l_icb.loc.lb_num   = short_ad->lb_num;
   1893  1.11  reinoud 		} else {
   1894  1.11  reinoud 			KASSERT(addr_type == UDF_ICB_LONG_ALLOC);
   1895  1.11  reinoud 			long_ad = (struct long_ad *) (data_pos + l_ad-adlen);
   1896  1.11  reinoud 			l_icb = *long_ad;
   1897  1.11  reinoud 		}
   1898  1.11  reinoud 		flags = UDF_EXT_FLAGS(udf_rw32(l_icb.len));
   1899  1.11  reinoud 		if (flags != UDF_EXT_REDIRECT) {
   1900  1.11  reinoud 			l_ad = 0;	/* force EOF */
   1901  1.11  reinoud 			break;
   1902  1.11  reinoud 		}
   1903  1.11  reinoud 
   1904  1.11  reinoud 		/* advance to next extent */
   1905   1.3  reinoud 		extnr++;
   1906  1.11  reinoud 		if (extnr >= udf_node->num_extensions) {
   1907  1.11  reinoud 			l_ad = 0;	/* force EOF */
   1908  1.11  reinoud 			break;
   1909  1.11  reinoud 		}
   1910  1.11  reinoud 		offset = offset - l_ad;
   1911   1.1  reinoud 		ext  = udf_node->ext[extnr];
   1912   1.1  reinoud 		dscr_size  = sizeof(struct alloc_ext_entry) -1;
   1913   1.1  reinoud 		l_ad = udf_rw32(ext->l_ad);
   1914   1.3  reinoud 		data_pos = (uint8_t *) ext + dscr_size;
   1915   1.1  reinoud 	}
   1916   1.1  reinoud 
   1917  1.11  reinoud 	/* XXX l_ad == 0 should be enough to check */
   1918   1.1  reinoud 	*eof = (offset >= l_ad) || (l_ad == 0);
   1919   1.1  reinoud 	if (*eof) {
   1920  1.11  reinoud 		DPRINTF(PARANOIDADWLK, ("returning EOF, extnr %d, offset %d, "
   1921  1.11  reinoud 			"l_ad %d\n", extnr, offset, l_ad));
   1922   1.1  reinoud 		memset(icb, 0, sizeof(struct long_ad));
   1923   1.1  reinoud 		return;
   1924   1.1  reinoud 	}
   1925   1.1  reinoud 
   1926   1.1  reinoud 	/* get the element */
   1927   1.1  reinoud 	if (addr_type == UDF_ICB_SHORT_ALLOC) {
   1928   1.1  reinoud 		short_ad = (struct short_ad *) (data_pos + offset);
   1929   1.1  reinoud 		icb->len          = short_ad->len;
   1930   1.5  reinoud 		icb->loc.part_num = udf_node->loc.loc.part_num;
   1931   1.1  reinoud 		icb->loc.lb_num   = short_ad->lb_num;
   1932   1.1  reinoud 	} else if (addr_type == UDF_ICB_LONG_ALLOC) {
   1933   1.1  reinoud 		long_ad = (struct long_ad *) (data_pos + offset);
   1934   1.1  reinoud 		*icb = *long_ad;
   1935   1.1  reinoud 	}
   1936  1.11  reinoud 	DPRINTF(PARANOIDADWLK, ("returning element : v %d, lb %d, len %d, "
   1937  1.11  reinoud 		"flags %d\n", icb->loc.part_num, icb->loc.lb_num,
   1938  1.11  reinoud 		UDF_EXT_LEN(icb->len), UDF_EXT_FLAGS(icb->len)));
   1939   1.1  reinoud }
   1940   1.1  reinoud 
   1941   1.1  reinoud /* --------------------------------------------------------------------- */
   1942   1.1  reinoud 
   1943   1.1  reinoud int
   1944  1.11  reinoud udf_append_adslot(struct udf_node *udf_node, int *slot, struct long_ad *icb) {
   1945  1.11  reinoud 	struct udf_mount *ump = udf_node->ump;
   1946  1.13  reinoud 	union dscrptr          *dscr, *extdscr;
   1947   1.1  reinoud 	struct file_entry      *fe;
   1948   1.1  reinoud 	struct extfile_entry   *efe;
   1949   1.1  reinoud 	struct alloc_ext_entry *ext;
   1950   1.1  reinoud 	struct icb_tag *icbtag;
   1951   1.1  reinoud 	struct short_ad *short_ad;
   1952  1.11  reinoud 	struct long_ad *long_ad, o_icb, l_icb;
   1953   1.1  reinoud 	uint64_t logblks_rec, *logblks_rec_p;
   1954  1.16  reinoud 	uint64_t lmapping;
   1955  1.11  reinoud 	uint32_t offset, rest, len, lb_num;
   1956   1.1  reinoud 	uint32_t lb_size, dscr_size, l_ea, l_ad, *l_ad_p, max_l_ad, crclen;
   1957  1.11  reinoud 	uint32_t flags;
   1958  1.11  reinoud 	uint16_t vpart_num;
   1959   1.1  reinoud 	uint8_t *data_pos;
   1960   1.1  reinoud 	int icbflags, addr_type, adlen, extnr;
   1961  1.11  reinoud 	int error;
   1962   1.1  reinoud 
   1963  1.11  reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   1964  1.17  reinoud 	vpart_num = udf_rw16(udf_node->loc.loc.part_num);
   1965   1.1  reinoud 
   1966  1.17  reinoud 	/* determine what descriptor we are in */
   1967   1.1  reinoud 	fe  = udf_node->fe;
   1968   1.1  reinoud 	efe = udf_node->efe;
   1969   1.1  reinoud 	if (fe) {
   1970   1.1  reinoud 		icbtag  = &fe->icbtag;
   1971   1.1  reinoud 		dscr      = (union dscrptr *) fe;
   1972   1.1  reinoud 		dscr_size = sizeof(struct file_entry) -1;
   1973   1.1  reinoud 
   1974   1.1  reinoud 		l_ea      = udf_rw32(fe->l_ea);
   1975   1.1  reinoud 		l_ad_p    = &fe->l_ad;
   1976   1.1  reinoud 		logblks_rec_p = &fe->logblks_rec;
   1977   1.1  reinoud 	} else {
   1978   1.1  reinoud 		icbtag    = &efe->icbtag;
   1979   1.1  reinoud 		dscr      = (union dscrptr *) efe;
   1980   1.1  reinoud 		dscr_size = sizeof(struct extfile_entry) -1;
   1981   1.1  reinoud 
   1982   1.1  reinoud 		l_ea      = udf_rw32(efe->l_ea);
   1983   1.1  reinoud 		l_ad_p    = &efe->l_ad;
   1984   1.1  reinoud 		logblks_rec_p = &efe->logblks_rec;
   1985   1.1  reinoud 	}
   1986   1.1  reinoud 	data_pos  = (uint8_t *) dscr + dscr_size + l_ea;
   1987   1.1  reinoud 	max_l_ad = lb_size - dscr_size - l_ea;
   1988   1.1  reinoud 
   1989   1.1  reinoud 	icbflags  = udf_rw16(icbtag->flags);
   1990   1.1  reinoud 	addr_type = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   1991   1.1  reinoud 
   1992   1.1  reinoud 	/* just in case we're called on an intern, its EOF */
   1993   1.1  reinoud 	if (addr_type == UDF_ICB_INTERN_ALLOC) {
   1994   1.1  reinoud 		panic("udf_append_adslot on UDF_ICB_INTERN_ALLOC\n");
   1995   1.1  reinoud 	}
   1996   1.1  reinoud 
   1997   1.1  reinoud 	adlen = 0;
   1998   1.1  reinoud 	if (addr_type == UDF_ICB_SHORT_ALLOC) {
   1999   1.1  reinoud 		adlen = sizeof(struct short_ad);
   2000   1.1  reinoud 	} else if (addr_type == UDF_ICB_LONG_ALLOC) {
   2001   1.1  reinoud 		adlen = sizeof(struct long_ad);
   2002   1.1  reinoud 	}
   2003   1.1  reinoud 
   2004  1.17  reinoud 	/* clean up given long_ad since it can be a synthesized one */
   2005  1.11  reinoud 	flags = UDF_EXT_FLAGS(udf_rw32(icb->len));
   2006  1.11  reinoud 	if (flags == UDF_EXT_FREE) {
   2007   1.9  reinoud 		icb->loc.part_num = udf_rw16(0);
   2008   1.9  reinoud 		icb->loc.lb_num   = udf_rw32(0);
   2009   1.9  reinoud 	}
   2010   1.9  reinoud 
   2011   1.1  reinoud 	/* if offset too big, we go to the allocation extensions */
   2012  1.11  reinoud 	l_ad   = udf_rw32(*l_ad_p);
   2013  1.11  reinoud 	offset = (*slot) * adlen;
   2014  1.11  reinoud 	extnr  = -1;
   2015  1.11  reinoud 	while (offset >= l_ad) {
   2016  1.11  reinoud 		/* check if our last entry is a redirect */
   2017  1.11  reinoud 		if (addr_type == UDF_ICB_SHORT_ALLOC) {
   2018  1.11  reinoud 			short_ad = (struct short_ad *) (data_pos + l_ad-adlen);
   2019  1.11  reinoud 			l_icb.len          = short_ad->len;
   2020  1.11  reinoud 			l_icb.loc.part_num = udf_node->loc.loc.part_num;
   2021  1.11  reinoud 			l_icb.loc.lb_num   = short_ad->lb_num;
   2022  1.11  reinoud 		} else {
   2023  1.11  reinoud 			KASSERT(addr_type == UDF_ICB_LONG_ALLOC);
   2024  1.11  reinoud 			long_ad = (struct long_ad *) (data_pos + l_ad-adlen);
   2025  1.11  reinoud 			l_icb = *long_ad;
   2026  1.11  reinoud 		}
   2027  1.11  reinoud 		flags = UDF_EXT_FLAGS(udf_rw32(l_icb.len));
   2028  1.11  reinoud 		if (flags != UDF_EXT_REDIRECT) {
   2029  1.11  reinoud 			/* only one past the last one is adressable */
   2030  1.11  reinoud 			break;
   2031  1.11  reinoud 		}
   2032  1.11  reinoud 
   2033  1.11  reinoud 		/* advance to next extent */
   2034  1.11  reinoud 		extnr++;
   2035  1.11  reinoud 		KASSERT(extnr < udf_node->num_extensions);
   2036  1.11  reinoud 		offset = offset - l_ad;
   2037  1.11  reinoud 
   2038   1.1  reinoud 		ext  = udf_node->ext[extnr];
   2039   1.1  reinoud 		dscr = (union dscrptr *) ext;
   2040   1.1  reinoud 		dscr_size  = sizeof(struct alloc_ext_entry) -1;
   2041  1.11  reinoud 		max_l_ad = lb_size - dscr_size;
   2042   1.1  reinoud 		l_ad_p = &ext->l_ad;
   2043  1.11  reinoud 		l_ad   = udf_rw32(*l_ad_p);
   2044  1.11  reinoud 		data_pos = (uint8_t *) ext + dscr_size;
   2045  1.11  reinoud 	}
   2046  1.11  reinoud 	DPRINTF(PARANOIDADWLK, ("append, ext %d, offset %d, l_ad %d\n",
   2047  1.11  reinoud 		extnr, offset, udf_rw32(*l_ad_p)));
   2048  1.11  reinoud 	KASSERT(l_ad == udf_rw32(*l_ad_p));
   2049   1.1  reinoud 
   2050   1.1  reinoud 	/* offset is offset within the current (E)FE/AED */
   2051   1.1  reinoud 	l_ad   = udf_rw32(*l_ad_p);
   2052  1.22  reinoud 	crclen = udf_rw16(dscr->tag.desc_crc_len);
   2053   1.1  reinoud 	logblks_rec = udf_rw64(*logblks_rec_p);
   2054   1.1  reinoud 
   2055   1.1  reinoud 	/* overwriting old piece? */
   2056   1.1  reinoud 	if (offset < l_ad) {
   2057   1.1  reinoud 		/* overwrite entry; compensate for the old element */
   2058   1.1  reinoud 		if (addr_type == UDF_ICB_SHORT_ALLOC) {
   2059   1.1  reinoud 			short_ad = (struct short_ad *) (data_pos + offset);
   2060   1.1  reinoud 			o_icb.len          = short_ad->len;
   2061   1.1  reinoud 			o_icb.loc.part_num = udf_rw16(0);	/* ignore */
   2062   1.1  reinoud 			o_icb.loc.lb_num   = short_ad->lb_num;
   2063   1.1  reinoud 		} else if (addr_type == UDF_ICB_LONG_ALLOC) {
   2064   1.1  reinoud 			long_ad = (struct long_ad *) (data_pos + offset);
   2065   1.1  reinoud 			o_icb = *long_ad;
   2066   1.1  reinoud 		} else {
   2067   1.1  reinoud 			panic("Invalid address type in udf_append_adslot\n");
   2068   1.1  reinoud 		}
   2069   1.1  reinoud 
   2070   1.1  reinoud 		len = udf_rw32(o_icb.len);
   2071   1.1  reinoud 		if (UDF_EXT_FLAGS(len) == UDF_EXT_ALLOCATED) {
   2072   1.1  reinoud 			/* adjust counts */
   2073   1.1  reinoud 			len = UDF_EXT_LEN(len);
   2074   1.1  reinoud 			logblks_rec -= (len + lb_size -1) / lb_size;
   2075   1.1  reinoud 		}
   2076   1.1  reinoud 	}
   2077   1.1  reinoud 
   2078  1.11  reinoud 	/* check if we're not appending a redirection */
   2079  1.11  reinoud 	flags = UDF_EXT_FLAGS(udf_rw32(icb->len));
   2080  1.11  reinoud 	KASSERT(flags != UDF_EXT_REDIRECT);
   2081  1.11  reinoud 
   2082  1.11  reinoud 	/* round down available space */
   2083  1.11  reinoud 	rest = adlen * ((max_l_ad - offset) / adlen);
   2084   1.1  reinoud 	if (rest <= adlen) {
   2085  1.11  reinoud 		/* have to append aed, see if we already have a spare one */
   2086  1.11  reinoud 		extnr++;
   2087  1.11  reinoud 		ext = udf_node->ext[extnr];
   2088  1.11  reinoud 		l_icb = udf_node->ext_loc[extnr];
   2089  1.11  reinoud 		if (ext == NULL) {
   2090  1.11  reinoud 			DPRINTF(ALLOC,("adding allocation extent %d\n", extnr));
   2091  1.17  reinoud 
   2092  1.26  reinoud 			error = udf_reserve_space(ump, NULL, UDF_C_NODE,
   2093  1.26  reinoud 					vpart_num, 1, /* can fail */ false);
   2094  1.26  reinoud 			if (error) {
   2095  1.26  reinoud 				printf("UDF: couldn't reserve space for AED!\n");
   2096  1.26  reinoud 				return error;
   2097  1.26  reinoud 			}
   2098  1.26  reinoud 			error = udf_allocate_space(ump, NULL, UDF_C_NODE,
   2099  1.26  reinoud 					vpart_num, 1, &lmapping);
   2100  1.11  reinoud 			lb_num = lmapping;
   2101  1.11  reinoud 			if (error)
   2102  1.26  reinoud 				panic("UDF: couldn't allocate AED!\n");
   2103  1.11  reinoud 
   2104  1.11  reinoud 			/* initialise pointer to location */
   2105  1.11  reinoud 			memset(&l_icb, 0, sizeof(struct long_ad));
   2106  1.11  reinoud 			l_icb.len = udf_rw32(lb_size | UDF_EXT_REDIRECT);
   2107  1.11  reinoud 			l_icb.loc.lb_num   = udf_rw32(lb_num);
   2108  1.11  reinoud 			l_icb.loc.part_num = udf_rw16(vpart_num);
   2109  1.11  reinoud 
   2110  1.11  reinoud 			/* create new aed descriptor */
   2111  1.13  reinoud 			udf_create_logvol_dscr(ump, udf_node, &l_icb, &extdscr);
   2112  1.13  reinoud 			ext = &extdscr->aee;
   2113  1.11  reinoud 
   2114  1.11  reinoud 			udf_inittag(ump, &ext->tag, TAGID_ALLOCEXTENT, lb_num);
   2115  1.11  reinoud 			dscr_size  = sizeof(struct alloc_ext_entry) -1;
   2116  1.11  reinoud 			max_l_ad = lb_size - dscr_size;
   2117  1.11  reinoud 			memset(ext->data, 0, max_l_ad);
   2118  1.11  reinoud 			ext->l_ad = udf_rw32(0);
   2119  1.11  reinoud 			ext->tag.desc_crc_len =
   2120  1.22  reinoud 				udf_rw16(dscr_size - UDF_DESC_TAG_LENGTH);
   2121  1.11  reinoud 
   2122  1.11  reinoud 			/* declare aed */
   2123  1.11  reinoud 			udf_node->num_extensions++;
   2124  1.11  reinoud 			udf_node->ext_loc[extnr] = l_icb;
   2125  1.11  reinoud 			udf_node->ext[extnr] = ext;
   2126  1.11  reinoud 		}
   2127  1.11  reinoud 		/* add redirect and adjust l_ad and crclen for old descr */
   2128  1.11  reinoud 		if (addr_type == UDF_ICB_SHORT_ALLOC) {
   2129  1.11  reinoud 			short_ad = (struct short_ad *) (data_pos + offset);
   2130  1.11  reinoud 			short_ad->len    = l_icb.len;
   2131  1.11  reinoud 			short_ad->lb_num = l_icb.loc.lb_num;
   2132  1.11  reinoud 		} else if (addr_type == UDF_ICB_LONG_ALLOC) {
   2133  1.11  reinoud 			long_ad = (struct long_ad *) (data_pos + offset);
   2134  1.11  reinoud 			*long_ad = l_icb;
   2135  1.11  reinoud 		}
   2136  1.11  reinoud 		l_ad   += adlen;
   2137  1.11  reinoud 		crclen += adlen;
   2138  1.22  reinoud 		dscr->tag.desc_crc_len = udf_rw16(crclen);
   2139  1.11  reinoud 		*l_ad_p = udf_rw32(l_ad);
   2140  1.11  reinoud 
   2141  1.11  reinoud 		/* advance to the new extension */
   2142  1.11  reinoud 		KASSERT(ext != NULL);
   2143  1.11  reinoud 		dscr = (union dscrptr *) ext;
   2144  1.11  reinoud 		dscr_size  = sizeof(struct alloc_ext_entry) -1;
   2145  1.11  reinoud 		max_l_ad = lb_size - dscr_size;
   2146  1.11  reinoud 		data_pos = (uint8_t *) dscr + dscr_size;
   2147  1.11  reinoud 
   2148  1.11  reinoud 		l_ad_p = &ext->l_ad;
   2149  1.11  reinoud 		l_ad   = udf_rw32(*l_ad_p);
   2150  1.22  reinoud 		crclen = udf_rw16(dscr->tag.desc_crc_len);
   2151  1.11  reinoud 		offset = 0;
   2152  1.11  reinoud 
   2153  1.11  reinoud 		/* adjust callees slot count for link insert */
   2154  1.11  reinoud 		*slot += 1;
   2155   1.1  reinoud 	}
   2156   1.1  reinoud 
   2157   1.1  reinoud 	/* write out the element */
   2158  1.11  reinoud 	DPRINTF(PARANOIDADWLK, ("adding element : %p : v %d, lb %d, "
   2159  1.11  reinoud 			"len %d, flags %d\n", data_pos + offset,
   2160  1.11  reinoud 			icb->loc.part_num, icb->loc.lb_num,
   2161  1.11  reinoud 			UDF_EXT_LEN(icb->len), UDF_EXT_FLAGS(icb->len)));
   2162   1.1  reinoud 	if (addr_type == UDF_ICB_SHORT_ALLOC) {
   2163   1.1  reinoud 		short_ad = (struct short_ad *) (data_pos + offset);
   2164   1.1  reinoud 		short_ad->len    = icb->len;
   2165   1.1  reinoud 		short_ad->lb_num = icb->loc.lb_num;
   2166   1.1  reinoud 	} else if (addr_type == UDF_ICB_LONG_ALLOC) {
   2167   1.1  reinoud 		long_ad = (struct long_ad *) (data_pos + offset);
   2168   1.1  reinoud 		*long_ad = *icb;
   2169   1.1  reinoud 	}
   2170   1.1  reinoud 
   2171   1.1  reinoud 	/* adjust logblks recorded count */
   2172  1.23  reinoud 	len = udf_rw32(icb->len);
   2173  1.23  reinoud 	flags = UDF_EXT_FLAGS(len);
   2174  1.11  reinoud 	if (flags == UDF_EXT_ALLOCATED)
   2175  1.23  reinoud 		logblks_rec += (UDF_EXT_LEN(len) + lb_size -1) / lb_size;
   2176   1.1  reinoud 	*logblks_rec_p = udf_rw64(logblks_rec);
   2177   1.1  reinoud 
   2178   1.1  reinoud 	/* adjust l_ad and crclen when needed */
   2179   1.1  reinoud 	if (offset >= l_ad) {
   2180   1.1  reinoud 		l_ad   += adlen;
   2181   1.1  reinoud 		crclen += adlen;
   2182  1.22  reinoud 		dscr->tag.desc_crc_len = udf_rw16(crclen);
   2183   1.1  reinoud 		*l_ad_p = udf_rw32(l_ad);
   2184   1.1  reinoud 	}
   2185   1.1  reinoud 
   2186   1.1  reinoud 	return 0;
   2187   1.1  reinoud }
   2188   1.1  reinoud 
   2189   1.1  reinoud /* --------------------------------------------------------------------- */
   2190   1.1  reinoud 
   2191  1.11  reinoud static void
   2192  1.11  reinoud udf_count_alloc_exts(struct udf_node *udf_node)
   2193  1.11  reinoud {
   2194  1.11  reinoud 	struct long_ad s_ad;
   2195  1.11  reinoud 	uint32_t lb_num, len, flags;
   2196  1.11  reinoud 	uint16_t vpart_num;
   2197  1.11  reinoud 	int slot, eof;
   2198  1.11  reinoud 	int num_extents, extnr;
   2199  1.11  reinoud 	int lb_size;
   2200  1.11  reinoud 
   2201  1.11  reinoud 	if (udf_node->num_extensions == 0)
   2202  1.11  reinoud 		return;
   2203  1.11  reinoud 
   2204  1.11  reinoud 	lb_size = udf_rw32(udf_node->ump->logical_vol->lb_size);
   2205  1.11  reinoud 	/* count number of allocation extents in use */
   2206  1.11  reinoud 	num_extents = 0;
   2207  1.11  reinoud 	slot = 0;
   2208  1.11  reinoud 	for (;;) {
   2209  1.11  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
   2210  1.11  reinoud 		if (eof)
   2211  1.11  reinoud 			break;
   2212  1.11  reinoud 		len   = udf_rw32(s_ad.len);
   2213  1.11  reinoud 		flags = UDF_EXT_FLAGS(len);
   2214  1.11  reinoud 
   2215  1.11  reinoud 		if (flags == UDF_EXT_REDIRECT)
   2216  1.11  reinoud 			num_extents++;
   2217  1.11  reinoud 
   2218  1.11  reinoud 		slot++;
   2219  1.11  reinoud 	}
   2220  1.11  reinoud 
   2221  1.11  reinoud 	DPRINTF(ALLOC, ("udf_count_alloc_ext counted %d live extents\n",
   2222  1.11  reinoud 		num_extents));
   2223  1.11  reinoud 
   2224  1.11  reinoud 	/* XXX choice: we could delay freeing them on node writeout */
   2225  1.11  reinoud 	/* free excess entries */
   2226  1.11  reinoud 	extnr = num_extents;
   2227  1.11  reinoud 	for (;extnr < udf_node->num_extensions; extnr++) {
   2228  1.11  reinoud 		DPRINTF(ALLOC, ("freeing alloc ext %d\n", extnr));
   2229  1.11  reinoud 		/* free dscriptor */
   2230  1.11  reinoud 		s_ad = udf_node->ext_loc[extnr];
   2231  1.11  reinoud 		udf_free_logvol_dscr(udf_node->ump, &s_ad,
   2232  1.11  reinoud 			udf_node->ext[extnr]);
   2233  1.11  reinoud 		udf_node->ext[extnr] = NULL;
   2234  1.11  reinoud 
   2235  1.11  reinoud 		/* free disc space */
   2236  1.11  reinoud 		lb_num    = udf_rw32(s_ad.loc.lb_num);
   2237  1.11  reinoud 		vpart_num = udf_rw16(s_ad.loc.part_num);
   2238  1.11  reinoud 		udf_free_allocated_space(udf_node->ump, lb_num, vpart_num, 1);
   2239  1.11  reinoud 
   2240  1.11  reinoud 		memset(&udf_node->ext_loc[extnr], 0, sizeof(struct long_ad));
   2241  1.11  reinoud 	}
   2242  1.11  reinoud 
   2243  1.11  reinoud 	/* set our new number of allocation extents */
   2244  1.11  reinoud 	udf_node->num_extensions = num_extents;
   2245  1.11  reinoud }
   2246  1.11  reinoud 
   2247  1.11  reinoud 
   2248  1.11  reinoud /* --------------------------------------------------------------------- */
   2249  1.11  reinoud 
   2250   1.1  reinoud /*
   2251   1.1  reinoud  * Adjust the node's allocation descriptors to reflect the new mapping; do
   2252   1.1  reinoud  * take note that we might glue to existing allocation descriptors.
   2253   1.1  reinoud  *
   2254   1.1  reinoud  * XXX Note there can only be one allocation being recorded/mount; maybe
   2255   1.1  reinoud  * explicit allocation in shedule thread?
   2256   1.1  reinoud  */
   2257   1.1  reinoud 
   2258   1.1  reinoud static void
   2259   1.1  reinoud udf_record_allocation_in_node(struct udf_mount *ump, struct buf *buf,
   2260   1.1  reinoud 	uint16_t vpart_num, uint64_t *mapping, struct long_ad *node_ad_cpy)
   2261   1.1  reinoud {
   2262   1.1  reinoud 	struct vnode    *vp = buf->b_vp;
   2263   1.1  reinoud 	struct udf_node *udf_node = VTOI(vp);
   2264   1.1  reinoud 	struct file_entry      *fe;
   2265   1.1  reinoud 	struct extfile_entry   *efe;
   2266   1.1  reinoud 	struct icb_tag  *icbtag;
   2267   1.1  reinoud 	struct long_ad   s_ad, c_ad;
   2268   1.1  reinoud 	uint64_t inflen, from, till;
   2269   1.1  reinoud 	uint64_t foffset, end_foffset, restart_foffset;
   2270   1.1  reinoud 	uint64_t orig_inflen, orig_lbrec, new_inflen, new_lbrec;
   2271  1.31  reinoud 	uint32_t max_len;
   2272   1.1  reinoud 	uint32_t num_lb, len, flags, lb_num;
   2273   1.1  reinoud 	uint32_t run_start;
   2274   1.9  reinoud 	uint32_t slot_offset, replace_len, replace;
   2275   1.1  reinoud 	int addr_type, icbflags;
   2276  1.16  reinoud //	int udf_c_type = buf->b_udf_c_type;
   2277   1.1  reinoud 	int lb_size, run_length, eof;
   2278   1.1  reinoud 	int slot, cpy_slot, cpy_slots, restart_slot;
   2279   1.1  reinoud 	int error;
   2280   1.1  reinoud 
   2281   1.1  reinoud 	DPRINTF(ALLOC, ("udf_record_allocation_in_node\n"));
   2282   1.1  reinoud 
   2283  1.16  reinoud #if 0
   2284  1.16  reinoud 	/* XXX disable sanity check for now */
   2285   1.1  reinoud 	/* sanity check ... should be panic ? */
   2286   1.1  reinoud 	if ((udf_c_type != UDF_C_USERDATA) && (udf_c_type != UDF_C_FIDS))
   2287   1.1  reinoud 		return;
   2288  1.16  reinoud #endif
   2289   1.1  reinoud 
   2290   1.1  reinoud 	lb_size = udf_rw32(udf_node->ump->logical_vol->lb_size);
   2291  1.31  reinoud 	max_len = ((UDF_EXT_MAXLEN / lb_size) * lb_size);
   2292   1.1  reinoud 
   2293   1.1  reinoud 	/* do the job */
   2294   1.1  reinoud 	UDF_LOCK_NODE(udf_node, 0);	/* XXX can deadlock ? */
   2295   1.9  reinoud 	udf_node_sanity_check(udf_node, &orig_inflen, &orig_lbrec);
   2296   1.1  reinoud 
   2297   1.1  reinoud 	fe  = udf_node->fe;
   2298   1.1  reinoud 	efe = udf_node->efe;
   2299   1.1  reinoud 	if (fe) {
   2300   1.1  reinoud 		icbtag = &fe->icbtag;
   2301   1.1  reinoud 		inflen = udf_rw64(fe->inf_len);
   2302   1.1  reinoud 	} else {
   2303   1.1  reinoud 		icbtag = &efe->icbtag;
   2304   1.1  reinoud 		inflen = udf_rw64(efe->inf_len);
   2305   1.1  reinoud 	}
   2306   1.1  reinoud 
   2307   1.1  reinoud 	/* do check if `till' is not past file information length */
   2308   1.1  reinoud 	from = buf->b_lblkno * lb_size;
   2309   1.1  reinoud 	till = MIN(inflen, from + buf->b_resid);
   2310   1.1  reinoud 
   2311   1.1  reinoud 	num_lb = (till - from + lb_size -1) / lb_size;
   2312   1.1  reinoud 
   2313   1.9  reinoud 	DPRINTF(ALLOC, ("record allocation from %"PRIu64" + %d\n", from, buf->b_bcount));
   2314   1.1  reinoud 
   2315   1.1  reinoud 	icbflags  = udf_rw16(icbtag->flags);
   2316   1.1  reinoud 	addr_type = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   2317   1.1  reinoud 
   2318   1.1  reinoud 	if (addr_type == UDF_ICB_INTERN_ALLOC) {
   2319   1.1  reinoud 		/* nothing to do */
   2320   1.1  reinoud 		/* XXX clean up rest of node? just in case? */
   2321   1.1  reinoud 		UDF_UNLOCK_NODE(udf_node, 0);
   2322   1.1  reinoud 		return;
   2323   1.1  reinoud 	}
   2324   1.1  reinoud 
   2325   1.1  reinoud 	slot     = 0;
   2326   1.1  reinoud 	cpy_slot = 0;
   2327   1.1  reinoud 	foffset  = 0;
   2328   1.1  reinoud 
   2329   1.1  reinoud 	/* 1) copy till first overlap piece to the rewrite buffer */
   2330   1.1  reinoud 	for (;;) {
   2331   1.1  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
   2332   1.1  reinoud 		if (eof) {
   2333   1.1  reinoud 			DPRINTF(WRITE,
   2334   1.1  reinoud 				("Record allocation in node "
   2335   1.1  reinoud 				 "failed: encountered EOF\n"));
   2336   1.1  reinoud 			UDF_UNLOCK_NODE(udf_node, 0);
   2337   1.1  reinoud 			buf->b_error = EINVAL;
   2338   1.1  reinoud 			return;
   2339   1.1  reinoud 		}
   2340   1.1  reinoud 		len   = udf_rw32(s_ad.len);
   2341   1.1  reinoud 		flags = UDF_EXT_FLAGS(len);
   2342   1.1  reinoud 		len   = UDF_EXT_LEN(len);
   2343   1.1  reinoud 
   2344   1.1  reinoud 		if (flags == UDF_EXT_REDIRECT) {
   2345   1.1  reinoud 			slot++;
   2346   1.1  reinoud 			continue;
   2347   1.1  reinoud 		}
   2348   1.1  reinoud 
   2349   1.1  reinoud 		end_foffset = foffset + len;
   2350   1.1  reinoud 		if (end_foffset > from)
   2351   1.1  reinoud 			break;	/* found */
   2352   1.1  reinoud 
   2353   1.1  reinoud 		node_ad_cpy[cpy_slot++] = s_ad;
   2354   1.1  reinoud 
   2355   1.1  reinoud 		DPRINTF(ALLOC, ("\t1: vp %d, lb %d, len %d, flags %d "
   2356   1.1  reinoud 			"-> stack\n",
   2357   1.1  reinoud 			udf_rw16(s_ad.loc.part_num),
   2358   1.1  reinoud 			udf_rw32(s_ad.loc.lb_num),
   2359   1.1  reinoud 			UDF_EXT_LEN(udf_rw32(s_ad.len)),
   2360   1.1  reinoud 			UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   2361   1.1  reinoud 
   2362   1.1  reinoud 		foffset = end_foffset;
   2363   1.1  reinoud 		slot++;
   2364   1.1  reinoud 	}
   2365   1.1  reinoud 	restart_slot    = slot;
   2366   1.1  reinoud 	restart_foffset = foffset;
   2367   1.1  reinoud 
   2368   1.1  reinoud 	/* 2) trunc overlapping slot at overlap and copy it */
   2369   1.1  reinoud 	slot_offset = from - foffset;
   2370   1.1  reinoud 	if (slot_offset > 0) {
   2371   1.1  reinoud 		DPRINTF(ALLOC, ("\tslot_offset = %d, flags = %d (%d)\n",
   2372   1.1  reinoud 				slot_offset, flags >> 30, flags));
   2373   1.1  reinoud 
   2374   1.1  reinoud 		s_ad.len = udf_rw32(slot_offset | flags);
   2375   1.1  reinoud 		node_ad_cpy[cpy_slot++] = s_ad;
   2376   1.1  reinoud 
   2377   1.1  reinoud 		DPRINTF(ALLOC, ("\t2: vp %d, lb %d, len %d, flags %d "
   2378   1.1  reinoud 			"-> stack\n",
   2379   1.1  reinoud 			udf_rw16(s_ad.loc.part_num),
   2380   1.1  reinoud 			udf_rw32(s_ad.loc.lb_num),
   2381   1.1  reinoud 			UDF_EXT_LEN(udf_rw32(s_ad.len)),
   2382   1.1  reinoud 			UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   2383   1.1  reinoud 	}
   2384   1.1  reinoud 	foffset += slot_offset;
   2385   1.1  reinoud 
   2386   1.1  reinoud 	/* 3) insert new mappings */
   2387   1.1  reinoud 	memset(&s_ad, 0, sizeof(struct long_ad));
   2388   1.1  reinoud 	lb_num = 0;
   2389   1.1  reinoud 	for (lb_num = 0; lb_num < num_lb; lb_num++) {
   2390   1.1  reinoud 		run_start  = mapping[lb_num];
   2391   1.1  reinoud 		run_length = 1;
   2392   1.1  reinoud 		while (lb_num < num_lb-1) {
   2393   1.1  reinoud 			if (mapping[lb_num+1] != mapping[lb_num]+1)
   2394   1.1  reinoud 				if (mapping[lb_num+1] != mapping[lb_num])
   2395   1.1  reinoud 					break;
   2396   1.1  reinoud 			run_length++;
   2397   1.1  reinoud 			lb_num++;
   2398   1.1  reinoud 		}
   2399   1.1  reinoud 		/* insert slot for this mapping */
   2400   1.1  reinoud 		len = run_length * lb_size;
   2401   1.1  reinoud 
   2402   1.1  reinoud 		/* bounds checking */
   2403   1.1  reinoud 		if (foffset + len > till)
   2404   1.1  reinoud 			len = till - foffset;
   2405   1.1  reinoud 		KASSERT(foffset + len <= inflen);
   2406   1.1  reinoud 
   2407   1.1  reinoud 		s_ad.len = udf_rw32(len | UDF_EXT_ALLOCATED);
   2408   1.1  reinoud 		s_ad.loc.part_num = udf_rw16(vpart_num);
   2409   1.1  reinoud 		s_ad.loc.lb_num   = udf_rw32(run_start);
   2410   1.1  reinoud 
   2411   1.1  reinoud 		foffset += len;
   2412   1.1  reinoud 
   2413   1.1  reinoud 		/* paranoia */
   2414   1.1  reinoud 		if (len == 0) {
   2415   1.1  reinoud 			DPRINTF(WRITE,
   2416   1.1  reinoud 				("Record allocation in node "
   2417   1.1  reinoud 				 "failed: insert failed\n"));
   2418   1.1  reinoud 			UDF_UNLOCK_NODE(udf_node, 0);
   2419   1.1  reinoud 			buf->b_error = EINVAL;
   2420   1.1  reinoud 			return;
   2421   1.1  reinoud 		}
   2422   1.1  reinoud 		node_ad_cpy[cpy_slot++] = s_ad;
   2423   1.1  reinoud 
   2424   1.1  reinoud 		DPRINTF(ALLOC, ("\t3: insert new mapping vp %d lb %d, len %d, "
   2425   1.1  reinoud 				"flags %d -> stack\n",
   2426   1.1  reinoud 			udf_rw16(s_ad.loc.part_num), udf_rw32(s_ad.loc.lb_num),
   2427   1.1  reinoud 			UDF_EXT_LEN(udf_rw32(s_ad.len)),
   2428   1.1  reinoud 			UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   2429   1.1  reinoud 	}
   2430   1.1  reinoud 
   2431   1.1  reinoud 	/* 4) pop replaced length */
   2432   1.9  reinoud 	slot    = restart_slot;
   2433   1.1  reinoud 	foffset = restart_foffset;
   2434   1.1  reinoud 
   2435   1.9  reinoud 	replace_len = till - foffset;	/* total amount of bytes to pop */
   2436   1.8  reinoud 	slot_offset = from - foffset;	/* offset in first encounted slot */
   2437   1.9  reinoud 	KASSERT((slot_offset % lb_size) == 0);
   2438   1.9  reinoud 
   2439   1.1  reinoud 	for (;;) {
   2440   1.1  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
   2441   1.1  reinoud 		if (eof)
   2442   1.1  reinoud 			break;
   2443   1.1  reinoud 
   2444   1.1  reinoud 		len    = udf_rw32(s_ad.len);
   2445   1.1  reinoud 		flags  = UDF_EXT_FLAGS(len);
   2446   1.1  reinoud 		len    = UDF_EXT_LEN(len);
   2447   1.1  reinoud 		lb_num = udf_rw32(s_ad.loc.lb_num);
   2448   1.1  reinoud 
   2449   1.1  reinoud 		if (flags == UDF_EXT_REDIRECT) {
   2450   1.1  reinoud 			slot++;
   2451   1.1  reinoud 			continue;
   2452   1.1  reinoud 		}
   2453   1.1  reinoud 
   2454   1.8  reinoud 		DPRINTF(ALLOC, ("\t4i: got slot %d, slot_offset %d, "
   2455   1.9  reinoud 				"replace_len %d, "
   2456   1.8  reinoud 				"vp %d, lb %d, len %d, flags %d\n",
   2457   1.9  reinoud 			slot, slot_offset, replace_len,
   2458   1.8  reinoud 			udf_rw16(s_ad.loc.part_num),
   2459   1.1  reinoud 			udf_rw32(s_ad.loc.lb_num),
   2460   1.1  reinoud 			UDF_EXT_LEN(udf_rw32(s_ad.len)),
   2461   1.1  reinoud 			UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   2462   1.1  reinoud 
   2463   1.9  reinoud 		/* adjust for slot offset */
   2464   1.9  reinoud 		if (slot_offset) {
   2465   1.9  reinoud 			DPRINTF(ALLOC, ("\t4s: skipping %d\n", slot_offset));
   2466   1.9  reinoud 			lb_num += slot_offset / lb_size;
   2467   1.9  reinoud 			len    -= slot_offset;
   2468   1.9  reinoud 			foffset += slot_offset;
   2469   1.9  reinoud 			replace_len -= slot_offset;
   2470   1.9  reinoud 
   2471   1.9  reinoud 			/* mark adjusted */
   2472   1.9  reinoud 			slot_offset = 0;
   2473   1.9  reinoud 		}
   2474   1.9  reinoud 
   2475   1.9  reinoud 		/* advance for (the rest of) this slot */
   2476   1.9  reinoud 		replace = MIN(len, replace_len);
   2477   1.9  reinoud 		DPRINTF(ALLOC, ("\t4d: replacing %d\n", replace));
   2478   1.9  reinoud 
   2479   1.9  reinoud 		/* advance for this slot */
   2480   1.9  reinoud 		if (replace) {
   2481  1.10  reinoud 			/* note: dont round DOWN on num_lb since we then
   2482  1.10  reinoud 			 * forget the last partial one */
   2483   1.9  reinoud 			num_lb = (replace + lb_size - 1) / lb_size;
   2484   1.9  reinoud 			if (flags != UDF_EXT_FREE) {
   2485   1.9  reinoud 				udf_free_allocated_space(ump, lb_num,
   2486   1.9  reinoud 					udf_rw16(s_ad.loc.part_num), num_lb);
   2487   1.9  reinoud 			}
   2488   1.9  reinoud 			lb_num      += num_lb;
   2489   1.9  reinoud 			len         -= replace;
   2490   1.9  reinoud 			foffset     += replace;
   2491   1.9  reinoud 			replace_len -= replace;
   2492   1.9  reinoud 		}
   2493   1.1  reinoud 
   2494   1.9  reinoud 		/* do we have a slot tail ? */
   2495   1.1  reinoud 		if (len) {
   2496   1.9  reinoud 			KASSERT(foffset % lb_size == 0);
   2497   1.1  reinoud 
   2498   1.1  reinoud 			/* we arrived at our point, push remainder */
   2499   1.1  reinoud 			s_ad.len        = udf_rw32(len | flags);
   2500   1.1  reinoud 			s_ad.loc.lb_num = udf_rw32(lb_num);
   2501   1.9  reinoud 			if (flags == UDF_EXT_FREE)
   2502   1.9  reinoud 				s_ad.loc.lb_num = udf_rw32(0);
   2503   1.1  reinoud 			node_ad_cpy[cpy_slot++] = s_ad;
   2504   1.1  reinoud 			foffset += len;
   2505   1.1  reinoud 			slot++;
   2506   1.1  reinoud 
   2507   1.1  reinoud 			DPRINTF(ALLOC, ("\t4: vp %d, lb %d, len %d, flags %d "
   2508   1.1  reinoud 				"-> stack\n",
   2509   1.1  reinoud 				udf_rw16(s_ad.loc.part_num),
   2510   1.1  reinoud 				udf_rw32(s_ad.loc.lb_num),
   2511   1.1  reinoud 				UDF_EXT_LEN(udf_rw32(s_ad.len)),
   2512   1.1  reinoud 				UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   2513   1.1  reinoud 			break;
   2514   1.1  reinoud 		}
   2515   1.9  reinoud 
   2516   1.1  reinoud 		slot++;
   2517   1.1  reinoud 	}
   2518   1.1  reinoud 
   2519   1.1  reinoud 	/* 5) copy remainder */
   2520   1.1  reinoud 	for (;;) {
   2521   1.1  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
   2522   1.1  reinoud 		if (eof)
   2523   1.1  reinoud 			break;
   2524   1.1  reinoud 
   2525   1.1  reinoud 		len   = udf_rw32(s_ad.len);
   2526   1.1  reinoud 		flags = UDF_EXT_FLAGS(len);
   2527   1.1  reinoud 		len   = UDF_EXT_LEN(len);
   2528   1.1  reinoud 
   2529   1.1  reinoud 		if (flags == UDF_EXT_REDIRECT) {
   2530   1.1  reinoud 			slot++;
   2531   1.1  reinoud 			continue;
   2532   1.1  reinoud 		}
   2533   1.1  reinoud 
   2534   1.1  reinoud 		node_ad_cpy[cpy_slot++] = s_ad;
   2535   1.1  reinoud 
   2536   1.1  reinoud 		DPRINTF(ALLOC, ("\t5: insert new mapping "
   2537   1.1  reinoud 			"vp %d lb %d, len %d, flags %d "
   2538   1.1  reinoud 			"-> stack\n",
   2539   1.1  reinoud 		udf_rw16(s_ad.loc.part_num),
   2540   1.1  reinoud 		udf_rw32(s_ad.loc.lb_num),
   2541   1.1  reinoud 		UDF_EXT_LEN(udf_rw32(s_ad.len)),
   2542   1.1  reinoud 		UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   2543   1.1  reinoud 
   2544   1.1  reinoud 		slot++;
   2545   1.1  reinoud 	}
   2546   1.1  reinoud 
   2547   1.1  reinoud 	/* 6) reset node descriptors */
   2548   1.1  reinoud 	udf_wipe_adslots(udf_node);
   2549   1.1  reinoud 
   2550   1.1  reinoud 	/* 7) copy back extents; merge when possible. Recounting on the fly */
   2551   1.1  reinoud 	cpy_slots = cpy_slot;
   2552   1.1  reinoud 
   2553   1.1  reinoud 	c_ad = node_ad_cpy[0];
   2554   1.1  reinoud 	slot = 0;
   2555   1.1  reinoud 	DPRINTF(ALLOC, ("\t7s: stack -> got mapping vp %d "
   2556   1.1  reinoud 		"lb %d, len %d, flags %d\n",
   2557   1.1  reinoud 	udf_rw16(c_ad.loc.part_num),
   2558   1.1  reinoud 	udf_rw32(c_ad.loc.lb_num),
   2559   1.1  reinoud 	UDF_EXT_LEN(udf_rw32(c_ad.len)),
   2560   1.1  reinoud 	UDF_EXT_FLAGS(udf_rw32(c_ad.len)) >> 30));
   2561   1.1  reinoud 
   2562   1.1  reinoud 	for (cpy_slot = 1; cpy_slot < cpy_slots; cpy_slot++) {
   2563   1.1  reinoud 		s_ad = node_ad_cpy[cpy_slot];
   2564   1.1  reinoud 
   2565   1.1  reinoud 		DPRINTF(ALLOC, ("\t7i: stack -> got mapping vp %d "
   2566   1.1  reinoud 			"lb %d, len %d, flags %d\n",
   2567   1.1  reinoud 		udf_rw16(s_ad.loc.part_num),
   2568   1.1  reinoud 		udf_rw32(s_ad.loc.lb_num),
   2569   1.1  reinoud 		UDF_EXT_LEN(udf_rw32(s_ad.len)),
   2570   1.1  reinoud 		UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   2571   1.1  reinoud 
   2572   1.1  reinoud 		/* see if we can merge */
   2573  1.31  reinoud 		if (udf_ads_merge(max_len, lb_size, &c_ad, &s_ad)) {
   2574   1.1  reinoud 			/* not mergable (anymore) */
   2575   1.1  reinoud 			DPRINTF(ALLOC, ("\t7: appending vp %d lb %d, "
   2576   1.1  reinoud 				"len %d, flags %d\n",
   2577   1.1  reinoud 			udf_rw16(c_ad.loc.part_num),
   2578   1.1  reinoud 			udf_rw32(c_ad.loc.lb_num),
   2579   1.1  reinoud 			UDF_EXT_LEN(udf_rw32(c_ad.len)),
   2580   1.1  reinoud 			UDF_EXT_FLAGS(udf_rw32(c_ad.len)) >> 30));
   2581   1.1  reinoud 
   2582  1.11  reinoud 			error = udf_append_adslot(udf_node, &slot, &c_ad);
   2583   1.1  reinoud 			if (error) {
   2584   1.1  reinoud 				buf->b_error = error;
   2585   1.1  reinoud 				goto out;
   2586   1.1  reinoud 			}
   2587   1.1  reinoud 			c_ad = s_ad;
   2588   1.1  reinoud 			slot++;
   2589   1.1  reinoud 		}
   2590   1.1  reinoud 	}
   2591   1.1  reinoud 
   2592   1.1  reinoud 	/* 8) push rest slot (if any) */
   2593   1.1  reinoud 	if (UDF_EXT_LEN(c_ad.len) > 0) {
   2594   1.1  reinoud 		DPRINTF(ALLOC, ("\t8: last append vp %d lb %d, "
   2595   1.1  reinoud 				"len %d, flags %d\n",
   2596   1.1  reinoud 		udf_rw16(c_ad.loc.part_num),
   2597   1.1  reinoud 		udf_rw32(c_ad.loc.lb_num),
   2598   1.1  reinoud 		UDF_EXT_LEN(udf_rw32(c_ad.len)),
   2599   1.1  reinoud 		UDF_EXT_FLAGS(udf_rw32(c_ad.len)) >> 30));
   2600   1.1  reinoud 
   2601  1.11  reinoud 		error = udf_append_adslot(udf_node, &slot, &c_ad);
   2602   1.1  reinoud 		if (error) {
   2603   1.1  reinoud 			buf->b_error = error;
   2604   1.1  reinoud 			goto out;
   2605   1.1  reinoud 		}
   2606   1.1  reinoud 	}
   2607   1.1  reinoud 
   2608   1.1  reinoud out:
   2609  1.11  reinoud 	udf_count_alloc_exts(udf_node);
   2610  1.11  reinoud 
   2611   1.1  reinoud 	/* the node's descriptors should now be sane */
   2612   1.9  reinoud 	udf_node_sanity_check(udf_node, &new_inflen, &new_lbrec);
   2613   1.1  reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
   2614   1.1  reinoud 
   2615   1.1  reinoud 	KASSERT(orig_inflen == new_inflen);
   2616   1.1  reinoud 	KASSERT(new_lbrec >= orig_lbrec);
   2617   1.1  reinoud 
   2618   1.1  reinoud 	return;
   2619   1.1  reinoud }
   2620   1.1  reinoud 
   2621   1.1  reinoud /* --------------------------------------------------------------------- */
   2622   1.1  reinoud 
   2623   1.1  reinoud int
   2624   1.1  reinoud udf_grow_node(struct udf_node *udf_node, uint64_t new_size)
   2625   1.1  reinoud {
   2626   1.1  reinoud 	union dscrptr *dscr;
   2627   1.1  reinoud 	struct vnode *vp = udf_node->vnode;
   2628   1.1  reinoud 	struct udf_mount *ump = udf_node->ump;
   2629   1.1  reinoud 	struct file_entry    *fe;
   2630   1.1  reinoud 	struct extfile_entry *efe;
   2631   1.1  reinoud 	struct icb_tag  *icbtag;
   2632   1.1  reinoud 	struct long_ad c_ad, s_ad;
   2633   1.1  reinoud 	uint64_t size_diff, old_size, inflen, objsize, chunk, append_len;
   2634   1.1  reinoud 	uint64_t foffset, end_foffset;
   2635   1.1  reinoud 	uint64_t orig_inflen, orig_lbrec, new_inflen, new_lbrec;
   2636  1.31  reinoud 	uint32_t lb_size, unit_size, dscr_size, crclen, lastblock_grow;
   2637  1.17  reinoud 	uint32_t icbflags, len, flags, max_len;
   2638   1.1  reinoud 	uint32_t max_l_ad, l_ad, l_ea;
   2639  1.17  reinoud 	uint16_t my_part, dst_part;
   2640   1.1  reinoud 	uint8_t *data_pos, *evacuated_data;
   2641  1.17  reinoud 	int addr_type;
   2642   1.1  reinoud 	int slot, cpy_slot;
   2643  1.26  reinoud 	int eof, error;
   2644   1.1  reinoud 
   2645   1.1  reinoud 	DPRINTF(ALLOC, ("udf_grow_node\n"));
   2646   1.9  reinoud 
   2647   1.9  reinoud 	UDF_LOCK_NODE(udf_node, 0);
   2648   1.1  reinoud 	udf_node_sanity_check(udf_node, &orig_inflen, &orig_lbrec);
   2649   1.1  reinoud 
   2650   1.1  reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   2651  1.31  reinoud 
   2652  1.31  reinoud 	/* max_len in unit's IFF its a metadata node or metadata mirror node */
   2653  1.31  reinoud 	unit_size = lb_size;
   2654  1.31  reinoud 	if ((udf_node == ump->metadata_node) || (udf_node == ump->metadatamirror_node))
   2655  1.31  reinoud 		unit_size = ump->metadata_alloc_unit_size * lb_size;
   2656  1.31  reinoud 	max_len = ((UDF_EXT_MAXLEN / unit_size) * unit_size);
   2657   1.1  reinoud 
   2658   1.1  reinoud 	fe  = udf_node->fe;
   2659   1.1  reinoud 	efe = udf_node->efe;
   2660   1.1  reinoud 	if (fe) {
   2661   1.1  reinoud 		dscr       = (union dscrptr *) fe;
   2662   1.1  reinoud 		icbtag  = &fe->icbtag;
   2663   1.1  reinoud 		inflen  = udf_rw64(fe->inf_len);
   2664   1.1  reinoud 		objsize = inflen;
   2665   1.1  reinoud 		dscr_size  = sizeof(struct file_entry) -1;
   2666   1.1  reinoud 		l_ea       = udf_rw32(fe->l_ea);
   2667   1.1  reinoud 		l_ad       = udf_rw32(fe->l_ad);
   2668   1.1  reinoud 	} else {
   2669   1.1  reinoud 		dscr       = (union dscrptr *) efe;
   2670   1.1  reinoud 		icbtag  = &efe->icbtag;
   2671   1.1  reinoud 		inflen  = udf_rw64(efe->inf_len);
   2672   1.1  reinoud 		objsize = udf_rw64(efe->obj_size);
   2673   1.1  reinoud 		dscr_size  = sizeof(struct extfile_entry) -1;
   2674   1.1  reinoud 		l_ea       = udf_rw32(efe->l_ea);
   2675   1.1  reinoud 		l_ad       = udf_rw32(efe->l_ad);
   2676   1.1  reinoud 	}
   2677   1.1  reinoud 	data_pos  = (uint8_t *) dscr + dscr_size + l_ea;
   2678   1.1  reinoud 	max_l_ad = lb_size - dscr_size - l_ea;
   2679   1.1  reinoud 
   2680   1.1  reinoud 	icbflags   = udf_rw16(icbtag->flags);
   2681   1.1  reinoud 	addr_type  = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   2682   1.1  reinoud 
   2683   1.1  reinoud 	old_size  = inflen;
   2684   1.1  reinoud 	size_diff = new_size - old_size;
   2685   1.1  reinoud 
   2686   1.1  reinoud 	DPRINTF(ALLOC, ("\tfrom %"PRIu64" to %"PRIu64"\n", old_size, new_size));
   2687   1.1  reinoud 
   2688   1.1  reinoud 	evacuated_data = NULL;
   2689   1.1  reinoud 	if (addr_type == UDF_ICB_INTERN_ALLOC) {
   2690   1.1  reinoud 		if (l_ad + size_diff <= max_l_ad) {
   2691   1.1  reinoud 			/* only reflect size change directly in the node */
   2692   1.1  reinoud 			inflen  += size_diff;
   2693   1.1  reinoud 			objsize += size_diff;
   2694   1.1  reinoud 			l_ad    += size_diff;
   2695   1.1  reinoud 			crclen = dscr_size - UDF_DESC_TAG_LENGTH + l_ea + l_ad;
   2696   1.1  reinoud 			if (fe) {
   2697   1.1  reinoud 				fe->inf_len   = udf_rw64(inflen);
   2698   1.1  reinoud 				fe->l_ad      = udf_rw32(l_ad);
   2699  1.22  reinoud 				fe->tag.desc_crc_len = udf_rw16(crclen);
   2700   1.1  reinoud 			} else {
   2701   1.1  reinoud 				efe->inf_len  = udf_rw64(inflen);
   2702   1.1  reinoud 				efe->obj_size = udf_rw64(objsize);
   2703   1.1  reinoud 				efe->l_ad     = udf_rw32(l_ad);
   2704  1.22  reinoud 				efe->tag.desc_crc_len = udf_rw16(crclen);
   2705   1.1  reinoud 			}
   2706   1.1  reinoud 			error = 0;
   2707   1.1  reinoud 
   2708   1.1  reinoud 			/* set new size for uvm */
   2709   1.1  reinoud 			uvm_vnp_setsize(vp, old_size);
   2710   1.1  reinoud 			uvm_vnp_setwritesize(vp, new_size);
   2711   1.1  reinoud 
   2712   1.1  reinoud #if 0
   2713   1.1  reinoud 			/* zero append space in buffer */
   2714  1.32  hannken 			ubc_zerorange(&vp->v_uobj, old_size,
   2715  1.32  hannken 			    new_size - old_size, UBC_UNMAP_FLAG(vp));
   2716   1.1  reinoud #endif
   2717   1.1  reinoud 
   2718   1.9  reinoud 			udf_node_sanity_check(udf_node, &new_inflen, &new_lbrec);
   2719   1.9  reinoud 
   2720   1.1  reinoud 			/* unlock */
   2721   1.1  reinoud 			UDF_UNLOCK_NODE(udf_node, 0);
   2722   1.1  reinoud 
   2723   1.1  reinoud 			KASSERT(new_inflen == orig_inflen + size_diff);
   2724   1.1  reinoud 			KASSERT(new_lbrec == orig_lbrec);
   2725   1.1  reinoud 			KASSERT(new_lbrec == 0);
   2726   1.1  reinoud 			return 0;
   2727   1.1  reinoud 		}
   2728   1.1  reinoud 
   2729   1.1  reinoud 		DPRINTF(ALLOC, ("\tCONVERT from internal\n"));
   2730   1.1  reinoud 
   2731   1.1  reinoud 		if (old_size > 0) {
   2732   1.1  reinoud 			/* allocate some space and copy in the stuff to keep */
   2733   1.1  reinoud 			evacuated_data = malloc(lb_size, M_UDFTEMP, M_WAITOK);
   2734   1.1  reinoud 			memset(evacuated_data, 0, lb_size);
   2735   1.1  reinoud 
   2736   1.1  reinoud 			/* node is locked, so safe to exit mutex */
   2737   1.1  reinoud 			UDF_UNLOCK_NODE(udf_node, 0);
   2738   1.1  reinoud 
   2739   1.1  reinoud 			/* read in using the `normal' vn_rdwr() */
   2740   1.1  reinoud 			error = vn_rdwr(UIO_READ, udf_node->vnode,
   2741   1.1  reinoud 					evacuated_data, old_size, 0,
   2742   1.1  reinoud 					UIO_SYSSPACE, IO_ALTSEMANTICS | IO_NODELOCKED,
   2743   1.1  reinoud 					FSCRED, NULL, NULL);
   2744   1.1  reinoud 
   2745   1.1  reinoud 			/* enter again */
   2746   1.1  reinoud 			UDF_LOCK_NODE(udf_node, 0);
   2747   1.1  reinoud 		}
   2748   1.1  reinoud 
   2749  1.14  reinoud 		/* convert to a normal alloc and select type */
   2750  1.17  reinoud 		my_part  = udf_rw16(udf_node->loc.loc.part_num);
   2751  1.26  reinoud 		dst_part = udf_get_record_vpart(ump, udf_get_c_type(udf_node));
   2752  1.17  reinoud 		addr_type = UDF_ICB_SHORT_ALLOC;
   2753  1.17  reinoud 		if (dst_part != my_part)
   2754  1.17  reinoud 			addr_type = UDF_ICB_LONG_ALLOC;
   2755  1.14  reinoud 
   2756   1.1  reinoud 		icbflags &= ~UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   2757  1.17  reinoud 		icbflags |= addr_type;
   2758   1.1  reinoud 		icbtag->flags = udf_rw16(icbflags);
   2759   1.1  reinoud 
   2760   1.1  reinoud 		/* wipe old descriptor space */
   2761   1.1  reinoud 		udf_wipe_adslots(udf_node);
   2762   1.1  reinoud 
   2763   1.1  reinoud 		memset(&c_ad, 0, sizeof(struct long_ad));
   2764   1.1  reinoud 		c_ad.len          = udf_rw32(old_size | UDF_EXT_FREE);
   2765   1.1  reinoud 		c_ad.loc.part_num = udf_rw16(0); /* not relevant */
   2766   1.1  reinoud 		c_ad.loc.lb_num   = udf_rw32(0); /* not relevant */
   2767   1.1  reinoud 
   2768   1.1  reinoud 		slot = 0;
   2769   1.1  reinoud 	} else {
   2770   1.1  reinoud 		/* goto the last entry (if any) */
   2771   1.1  reinoud 		slot     = 0;
   2772   1.1  reinoud 		cpy_slot = 0;
   2773   1.1  reinoud 		foffset  = 0;
   2774   1.1  reinoud 		memset(&c_ad, 0, sizeof(struct long_ad));
   2775   1.1  reinoud 		for (;;) {
   2776   1.1  reinoud 			udf_get_adslot(udf_node, slot, &c_ad, &eof);
   2777   1.1  reinoud 			if (eof)
   2778   1.1  reinoud 				break;
   2779   1.1  reinoud 
   2780   1.1  reinoud 			len   = udf_rw32(c_ad.len);
   2781   1.1  reinoud 			flags = UDF_EXT_FLAGS(len);
   2782   1.1  reinoud 			len   = UDF_EXT_LEN(len);
   2783   1.1  reinoud 
   2784   1.1  reinoud 			end_foffset = foffset + len;
   2785   1.1  reinoud 			if (flags != UDF_EXT_REDIRECT)
   2786   1.1  reinoud 				foffset = end_foffset;
   2787   1.1  reinoud 
   2788   1.1  reinoud 			slot++;
   2789   1.1  reinoud 		}
   2790   1.1  reinoud 		/* at end of adslots */
   2791   1.1  reinoud 
   2792   1.1  reinoud 		/* special case if the old size was zero, then there is no last slot */
   2793   1.1  reinoud 		if (old_size == 0) {
   2794   1.1  reinoud 			c_ad.len          = udf_rw32(0 | UDF_EXT_FREE);
   2795   1.1  reinoud 			c_ad.loc.part_num = udf_rw16(0); /* not relevant */
   2796   1.1  reinoud 			c_ad.loc.lb_num   = udf_rw32(0); /* not relevant */
   2797   1.1  reinoud 		} else {
   2798   1.1  reinoud 			/* refetch last slot */
   2799   1.1  reinoud 			slot--;
   2800   1.1  reinoud 			udf_get_adslot(udf_node, slot, &c_ad, &eof);
   2801   1.1  reinoud 		}
   2802   1.1  reinoud 	}
   2803   1.1  reinoud 
   2804   1.1  reinoud 	/*
   2805   1.1  reinoud 	 * If the length of the last slot is not a multiple of lb_size, adjust
   2806   1.1  reinoud 	 * length so that it is; don't forget to adjust `append_len'! relevant for
   2807   1.1  reinoud 	 * extending existing files
   2808   1.1  reinoud 	 */
   2809   1.1  reinoud 	len   = udf_rw32(c_ad.len);
   2810   1.1  reinoud 	flags = UDF_EXT_FLAGS(len);
   2811   1.1  reinoud 	len   = UDF_EXT_LEN(len);
   2812   1.1  reinoud 
   2813   1.1  reinoud 	lastblock_grow = 0;
   2814   1.1  reinoud 	if (len % lb_size > 0) {
   2815   1.1  reinoud 		lastblock_grow = lb_size - (len % lb_size);
   2816   1.1  reinoud 		lastblock_grow = MIN(size_diff, lastblock_grow);
   2817   1.1  reinoud 		len += lastblock_grow;
   2818   1.1  reinoud 		c_ad.len = udf_rw32(len | flags);
   2819   1.1  reinoud 
   2820   1.1  reinoud 		/* TODO zero appened space in buffer! */
   2821  1.32  hannken 		/* using ubc_zerorange(&vp->v_uobj, old_size, */
   2822  1.32  hannken 		/*    new_size - old_size, UBC_UNMAP_FLAG(vp)); ? */
   2823   1.1  reinoud 	}
   2824   1.1  reinoud 	memset(&s_ad, 0, sizeof(struct long_ad));
   2825   1.1  reinoud 
   2826   1.1  reinoud 	/* size_diff can be bigger than allowed, so grow in chunks */
   2827   1.1  reinoud 	append_len = size_diff - lastblock_grow;
   2828   1.1  reinoud 	while (append_len > 0) {
   2829   1.1  reinoud 		chunk = MIN(append_len, max_len);
   2830   1.1  reinoud 		s_ad.len = udf_rw32(chunk | UDF_EXT_FREE);
   2831   1.1  reinoud 		s_ad.loc.part_num = udf_rw16(0);
   2832   1.1  reinoud 		s_ad.loc.lb_num   = udf_rw32(0);
   2833   1.1  reinoud 
   2834  1.31  reinoud 		if (udf_ads_merge(max_len, lb_size, &c_ad, &s_ad)) {
   2835   1.1  reinoud 			/* not mergable (anymore) */
   2836  1.11  reinoud 			error = udf_append_adslot(udf_node, &slot, &c_ad);
   2837   1.1  reinoud 			if (error)
   2838   1.1  reinoud 				goto errorout;
   2839   1.1  reinoud 			slot++;
   2840   1.1  reinoud 			c_ad = s_ad;
   2841   1.1  reinoud 			memset(&s_ad, 0, sizeof(struct long_ad));
   2842   1.1  reinoud 		}
   2843   1.1  reinoud 		append_len -= chunk;
   2844   1.1  reinoud 	}
   2845   1.1  reinoud 
   2846   1.1  reinoud 	/* if there is a rest piece in the accumulator, append it */
   2847   1.8  reinoud 	if (UDF_EXT_LEN(udf_rw32(c_ad.len)) > 0) {
   2848  1.11  reinoud 		error = udf_append_adslot(udf_node, &slot, &c_ad);
   2849   1.1  reinoud 		if (error)
   2850   1.1  reinoud 			goto errorout;
   2851   1.1  reinoud 		slot++;
   2852   1.1  reinoud 	}
   2853   1.1  reinoud 
   2854   1.1  reinoud 	/* if there is a rest piece that didn't fit, append it */
   2855   1.8  reinoud 	if (UDF_EXT_LEN(udf_rw32(s_ad.len)) > 0) {
   2856  1.11  reinoud 		error = udf_append_adslot(udf_node, &slot, &s_ad);
   2857   1.1  reinoud 		if (error)
   2858   1.1  reinoud 			goto errorout;
   2859   1.1  reinoud 		slot++;
   2860   1.1  reinoud 	}
   2861   1.1  reinoud 
   2862   1.1  reinoud 	inflen  += size_diff;
   2863   1.1  reinoud 	objsize += size_diff;
   2864   1.1  reinoud 	if (fe) {
   2865   1.1  reinoud 		fe->inf_len   = udf_rw64(inflen);
   2866   1.1  reinoud 	} else {
   2867   1.1  reinoud 		efe->inf_len  = udf_rw64(inflen);
   2868   1.1  reinoud 		efe->obj_size = udf_rw64(objsize);
   2869   1.1  reinoud 	}
   2870   1.1  reinoud 	error = 0;
   2871   1.1  reinoud 
   2872   1.1  reinoud 	if (evacuated_data) {
   2873   1.1  reinoud 		/* set new write size for uvm */
   2874   1.1  reinoud 		uvm_vnp_setwritesize(vp, old_size);
   2875   1.1  reinoud 
   2876   1.1  reinoud 		/* write out evacuated data */
   2877   1.1  reinoud 		error = vn_rdwr(UIO_WRITE, udf_node->vnode,
   2878   1.1  reinoud 				evacuated_data, old_size, 0,
   2879   1.1  reinoud 				UIO_SYSSPACE, IO_ALTSEMANTICS | IO_NODELOCKED,
   2880   1.1  reinoud 				FSCRED, NULL, NULL);
   2881   1.1  reinoud 		uvm_vnp_setsize(vp, old_size);
   2882   1.1  reinoud 	}
   2883   1.1  reinoud 
   2884   1.1  reinoud errorout:
   2885   1.1  reinoud 	if (evacuated_data)
   2886   1.1  reinoud 		free(evacuated_data, M_UDFTEMP);
   2887   1.9  reinoud 
   2888  1.11  reinoud 	udf_count_alloc_exts(udf_node);
   2889  1.11  reinoud 
   2890   1.9  reinoud 	udf_node_sanity_check(udf_node, &new_inflen, &new_lbrec);
   2891   1.1  reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
   2892   1.1  reinoud 
   2893   1.1  reinoud 	KASSERT(new_inflen == orig_inflen + size_diff);
   2894   1.1  reinoud 	KASSERT(new_lbrec == orig_lbrec);
   2895   1.1  reinoud 
   2896   1.1  reinoud 	return error;
   2897   1.1  reinoud }
   2898   1.1  reinoud 
   2899   1.1  reinoud /* --------------------------------------------------------------------- */
   2900   1.1  reinoud 
   2901   1.1  reinoud int
   2902   1.1  reinoud udf_shrink_node(struct udf_node *udf_node, uint64_t new_size)
   2903   1.1  reinoud {
   2904   1.1  reinoud 	struct vnode *vp = udf_node->vnode;
   2905   1.1  reinoud 	struct udf_mount *ump = udf_node->ump;
   2906   1.1  reinoud 	struct file_entry    *fe;
   2907   1.1  reinoud 	struct extfile_entry *efe;
   2908   1.1  reinoud 	struct icb_tag  *icbtag;
   2909   1.1  reinoud 	struct long_ad c_ad, s_ad, *node_ad_cpy;
   2910   1.1  reinoud 	uint64_t size_diff, old_size, inflen, objsize;
   2911   1.1  reinoud 	uint64_t foffset, end_foffset;
   2912   1.1  reinoud 	uint64_t orig_inflen, orig_lbrec, new_inflen, new_lbrec;
   2913  1.31  reinoud 	uint32_t lb_size, unit_size, dscr_size, crclen;
   2914  1.27  reinoud 	uint32_t slot_offset, slot_offset_lb;
   2915   1.1  reinoud 	uint32_t len, flags, max_len;
   2916   1.1  reinoud 	uint32_t num_lb, lb_num;
   2917   1.1  reinoud 	uint32_t max_l_ad, l_ad, l_ea;
   2918   1.1  reinoud 	uint16_t vpart_num;
   2919   1.1  reinoud 	uint8_t *data_pos;
   2920   1.1  reinoud 	int icbflags, addr_type;
   2921   1.1  reinoud 	int slot, cpy_slot, cpy_slots;
   2922   1.1  reinoud 	int eof, error;
   2923   1.1  reinoud 
   2924   1.1  reinoud 	DPRINTF(ALLOC, ("udf_shrink_node\n"));
   2925   1.9  reinoud 
   2926   1.9  reinoud 	UDF_LOCK_NODE(udf_node, 0);
   2927   1.1  reinoud 	udf_node_sanity_check(udf_node, &orig_inflen, &orig_lbrec);
   2928   1.1  reinoud 
   2929   1.1  reinoud 	lb_size = udf_rw32(ump->logical_vol->lb_size);
   2930  1.31  reinoud 
   2931  1.31  reinoud 	/* max_len in unit's IFF its a metadata node or metadata mirror node */
   2932  1.31  reinoud 	unit_size = lb_size;
   2933  1.31  reinoud 	if ((udf_node == ump->metadata_node) || (udf_node == ump->metadatamirror_node))
   2934  1.31  reinoud 		unit_size = ump->metadata_alloc_unit_size * lb_size;
   2935  1.31  reinoud 	max_len = ((UDF_EXT_MAXLEN / unit_size) * unit_size);
   2936   1.1  reinoud 
   2937   1.1  reinoud 	/* do the work */
   2938   1.1  reinoud 	fe  = udf_node->fe;
   2939   1.1  reinoud 	efe = udf_node->efe;
   2940   1.1  reinoud 	if (fe) {
   2941   1.1  reinoud 		icbtag  = &fe->icbtag;
   2942   1.1  reinoud 		inflen  = udf_rw64(fe->inf_len);
   2943   1.1  reinoud 		objsize = inflen;
   2944   1.1  reinoud 		dscr_size  = sizeof(struct file_entry) -1;
   2945   1.1  reinoud 		l_ea       = udf_rw32(fe->l_ea);
   2946   1.1  reinoud 		l_ad       = udf_rw32(fe->l_ad);
   2947   1.1  reinoud 		data_pos = (uint8_t *) fe + dscr_size + l_ea;
   2948   1.1  reinoud 	} else {
   2949   1.1  reinoud 		icbtag  = &efe->icbtag;
   2950   1.1  reinoud 		inflen  = udf_rw64(efe->inf_len);
   2951   1.1  reinoud 		objsize = udf_rw64(efe->obj_size);
   2952   1.1  reinoud 		dscr_size  = sizeof(struct extfile_entry) -1;
   2953   1.1  reinoud 		l_ea       = udf_rw32(efe->l_ea);
   2954   1.1  reinoud 		l_ad       = udf_rw32(efe->l_ad);
   2955   1.1  reinoud 		data_pos = (uint8_t *) efe + dscr_size + l_ea;
   2956   1.1  reinoud 	}
   2957   1.1  reinoud 	max_l_ad = lb_size - dscr_size - l_ea;
   2958   1.1  reinoud 
   2959   1.1  reinoud 	icbflags   = udf_rw16(icbtag->flags);
   2960   1.1  reinoud 	addr_type  = icbflags & UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   2961   1.1  reinoud 
   2962   1.1  reinoud 	old_size  = inflen;
   2963   1.1  reinoud 	size_diff = old_size - new_size;
   2964   1.1  reinoud 
   2965   1.1  reinoud 	DPRINTF(ALLOC, ("\tfrom %"PRIu64" to %"PRIu64"\n", old_size, new_size));
   2966   1.1  reinoud 
   2967   1.1  reinoud 	/* shrink the node to its new size */
   2968   1.1  reinoud 	if (addr_type == UDF_ICB_INTERN_ALLOC) {
   2969   1.1  reinoud 		/* only reflect size change directly in the node */
   2970   1.1  reinoud 		KASSERT(new_size <= max_l_ad);
   2971   1.1  reinoud 		inflen  -= size_diff;
   2972   1.1  reinoud 		objsize -= size_diff;
   2973   1.1  reinoud 		l_ad    -= size_diff;
   2974   1.1  reinoud 		crclen = dscr_size - UDF_DESC_TAG_LENGTH + l_ea + l_ad;
   2975   1.1  reinoud 		if (fe) {
   2976   1.1  reinoud 			fe->inf_len   = udf_rw64(inflen);
   2977   1.1  reinoud 			fe->l_ad      = udf_rw32(l_ad);
   2978  1.22  reinoud 			fe->tag.desc_crc_len = udf_rw16(crclen);
   2979   1.1  reinoud 		} else {
   2980   1.1  reinoud 			efe->inf_len  = udf_rw64(inflen);
   2981   1.1  reinoud 			efe->obj_size = udf_rw64(objsize);
   2982   1.1  reinoud 			efe->l_ad     = udf_rw32(l_ad);
   2983  1.22  reinoud 			efe->tag.desc_crc_len = udf_rw16(crclen);
   2984   1.1  reinoud 		}
   2985   1.1  reinoud 		error = 0;
   2986   1.7  reinoud 
   2987   1.7  reinoud 		/* clear the space in the descriptor */
   2988   1.7  reinoud 		KASSERT(old_size > new_size);
   2989   1.7  reinoud 		memset(data_pos + new_size, 0, old_size - new_size);
   2990   1.7  reinoud 
   2991   1.1  reinoud 		/* TODO zero appened space in buffer! */
   2992  1.32  hannken 		/* using ubc_zerorange(&vp->v_uobj, old_size, */
   2993  1.32  hannken 		/*    old_size - new_size, UBC_UNMAP_FLAG(vp)); ? */
   2994   1.1  reinoud 
   2995   1.1  reinoud 		/* set new size for uvm */
   2996   1.1  reinoud 		uvm_vnp_setsize(vp, new_size);
   2997   1.9  reinoud 
   2998   1.9  reinoud 		udf_node_sanity_check(udf_node, &new_inflen, &new_lbrec);
   2999   1.1  reinoud 		UDF_UNLOCK_NODE(udf_node, 0);
   3000   1.1  reinoud 
   3001   1.1  reinoud 		KASSERT(new_inflen == orig_inflen - size_diff);
   3002   1.1  reinoud 		KASSERT(new_lbrec == orig_lbrec);
   3003   1.1  reinoud 		KASSERT(new_lbrec == 0);
   3004   1.1  reinoud 
   3005   1.1  reinoud 		return 0;
   3006   1.1  reinoud 	}
   3007   1.1  reinoud 
   3008   1.1  reinoud 	/* setup node cleanup extents copy space */
   3009   1.1  reinoud 	node_ad_cpy = malloc(lb_size * UDF_MAX_ALLOC_EXTENTS,
   3010   1.1  reinoud 		M_UDFMNT, M_WAITOK);
   3011   1.1  reinoud 	memset(node_ad_cpy, 0, lb_size * UDF_MAX_ALLOC_EXTENTS);
   3012   1.1  reinoud 
   3013   1.1  reinoud 	/*
   3014   1.1  reinoud 	 * Shrink the node by releasing the allocations and truncate the last
   3015   1.1  reinoud 	 * allocation to the new size. If the new size fits into the
   3016   1.1  reinoud 	 * allocation descriptor itself, transform it into an
   3017   1.1  reinoud 	 * UDF_ICB_INTERN_ALLOC.
   3018   1.1  reinoud 	 */
   3019   1.1  reinoud 	slot     = 0;
   3020   1.1  reinoud 	cpy_slot = 0;
   3021   1.1  reinoud 	foffset  = 0;
   3022   1.1  reinoud 
   3023   1.1  reinoud 	/* 1) copy till first overlap piece to the rewrite buffer */
   3024   1.1  reinoud 	for (;;) {
   3025   1.1  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
   3026   1.1  reinoud 		if (eof) {
   3027   1.1  reinoud 			DPRINTF(WRITE,
   3028   1.1  reinoud 				("Shrink node failed: "
   3029   1.1  reinoud 				 "encountered EOF\n"));
   3030   1.1  reinoud 			error = EINVAL;
   3031   1.1  reinoud 			goto errorout; /* panic? */
   3032   1.1  reinoud 		}
   3033   1.1  reinoud 		len   = udf_rw32(s_ad.len);
   3034   1.1  reinoud 		flags = UDF_EXT_FLAGS(len);
   3035   1.1  reinoud 		len   = UDF_EXT_LEN(len);
   3036   1.1  reinoud 
   3037   1.1  reinoud 		if (flags == UDF_EXT_REDIRECT) {
   3038   1.1  reinoud 			slot++;
   3039   1.1  reinoud 			continue;
   3040   1.1  reinoud 		}
   3041   1.1  reinoud 
   3042   1.1  reinoud 		end_foffset = foffset + len;
   3043   1.1  reinoud 		if (end_foffset > new_size)
   3044   1.1  reinoud 			break;	/* found */
   3045   1.1  reinoud 
   3046   1.1  reinoud 		node_ad_cpy[cpy_slot++] = s_ad;
   3047   1.1  reinoud 
   3048   1.1  reinoud 		DPRINTF(ALLOC, ("\t1: vp %d, lb %d, len %d, flags %d "
   3049   1.1  reinoud 			"-> stack\n",
   3050   1.1  reinoud 			udf_rw16(s_ad.loc.part_num),
   3051   1.1  reinoud 			udf_rw32(s_ad.loc.lb_num),
   3052   1.1  reinoud 			UDF_EXT_LEN(udf_rw32(s_ad.len)),
   3053   1.1  reinoud 			UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   3054   1.1  reinoud 
   3055   1.1  reinoud 		foffset = end_foffset;
   3056   1.1  reinoud 		slot++;
   3057   1.1  reinoud 	}
   3058   1.1  reinoud 	slot_offset = new_size - foffset;
   3059   1.1  reinoud 
   3060   1.1  reinoud 	/* 2) trunc overlapping slot at overlap and copy it */
   3061   1.1  reinoud 	if (slot_offset > 0) {
   3062   1.1  reinoud 		lb_num    = udf_rw32(s_ad.loc.lb_num);
   3063   1.1  reinoud 		vpart_num = udf_rw16(s_ad.loc.part_num);
   3064   1.1  reinoud 
   3065   1.1  reinoud 		if (flags == UDF_EXT_ALLOCATED) {
   3066  1.27  reinoud 			/* calculate extent in lb, and offset in lb */
   3067  1.27  reinoud 			num_lb = (len + lb_size -1) / lb_size;
   3068  1.27  reinoud 			slot_offset_lb = (slot_offset + lb_size -1) / lb_size;
   3069  1.27  reinoud 
   3070  1.27  reinoud 			/* adjust our slot */
   3071  1.27  reinoud 			lb_num += slot_offset_lb;
   3072  1.27  reinoud 			num_lb -= slot_offset_lb;
   3073   1.1  reinoud 
   3074   1.1  reinoud 			udf_free_allocated_space(ump, lb_num, vpart_num, num_lb);
   3075   1.1  reinoud 		}
   3076   1.1  reinoud 
   3077   1.1  reinoud 		s_ad.len = udf_rw32(slot_offset | flags);
   3078   1.1  reinoud 		node_ad_cpy[cpy_slot++] = s_ad;
   3079   1.1  reinoud 		slot++;
   3080   1.1  reinoud 
   3081   1.1  reinoud 		DPRINTF(ALLOC, ("\t2: vp %d, lb %d, len %d, flags %d "
   3082   1.1  reinoud 			"-> stack\n",
   3083   1.1  reinoud 			udf_rw16(s_ad.loc.part_num),
   3084   1.1  reinoud 			udf_rw32(s_ad.loc.lb_num),
   3085   1.1  reinoud 			UDF_EXT_LEN(udf_rw32(s_ad.len)),
   3086   1.1  reinoud 			UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   3087   1.1  reinoud 	}
   3088   1.1  reinoud 
   3089   1.1  reinoud 	/* 3) delete remainder */
   3090   1.1  reinoud 	for (;;) {
   3091   1.1  reinoud 		udf_get_adslot(udf_node, slot, &s_ad, &eof);
   3092   1.1  reinoud 		if (eof)
   3093   1.1  reinoud 			break;
   3094   1.1  reinoud 
   3095   1.1  reinoud 		len       = udf_rw32(s_ad.len);
   3096   1.1  reinoud 		flags     = UDF_EXT_FLAGS(len);
   3097   1.1  reinoud 		len       = UDF_EXT_LEN(len);
   3098   1.1  reinoud 
   3099   1.1  reinoud 		if (flags == UDF_EXT_REDIRECT) {
   3100   1.1  reinoud 			slot++;
   3101   1.1  reinoud 			continue;
   3102   1.1  reinoud 		}
   3103   1.1  reinoud 
   3104   1.1  reinoud 		DPRINTF(ALLOC, ("\t3: delete remainder "
   3105   1.1  reinoud 			"vp %d lb %d, len %d, flags %d\n",
   3106   1.1  reinoud 		udf_rw16(s_ad.loc.part_num),
   3107   1.1  reinoud 		udf_rw32(s_ad.loc.lb_num),
   3108   1.1  reinoud 		UDF_EXT_LEN(udf_rw32(s_ad.len)),
   3109   1.1  reinoud 		UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   3110   1.1  reinoud 
   3111   1.1  reinoud 		if (flags == UDF_EXT_ALLOCATED) {
   3112   1.1  reinoud 			lb_num    = udf_rw32(s_ad.loc.lb_num);
   3113   1.1  reinoud 			vpart_num = udf_rw16(s_ad.loc.part_num);
   3114   1.1  reinoud 			num_lb    = (len + lb_size - 1) / lb_size;
   3115   1.1  reinoud 
   3116   1.1  reinoud 			udf_free_allocated_space(ump, lb_num, vpart_num,
   3117   1.1  reinoud 				num_lb);
   3118   1.1  reinoud 		}
   3119   1.1  reinoud 
   3120   1.1  reinoud 		slot++;
   3121   1.1  reinoud 	}
   3122   1.1  reinoud 
   3123   1.1  reinoud 	/* 4) if it will fit into the descriptor then convert */
   3124   1.1  reinoud 	if (new_size < max_l_ad) {
   3125   1.1  reinoud 		/*
   3126   1.1  reinoud 		 * resque/evacuate old piece by reading it in, and convert it
   3127   1.1  reinoud 		 * to internal alloc.
   3128   1.1  reinoud 		 */
   3129   1.1  reinoud 		if (new_size == 0) {
   3130   1.1  reinoud 			/* XXX/TODO only for zero sizing now */
   3131   1.1  reinoud 			udf_wipe_adslots(udf_node);
   3132   1.1  reinoud 
   3133   1.1  reinoud 			icbflags &= ~UDF_ICB_TAG_FLAGS_ALLOC_MASK;
   3134   1.1  reinoud 			icbflags |=  UDF_ICB_INTERN_ALLOC;
   3135   1.1  reinoud 			icbtag->flags = udf_rw16(icbflags);
   3136   1.1  reinoud 
   3137   1.1  reinoud 			inflen  -= size_diff;	KASSERT(inflen == 0);
   3138   1.1  reinoud 			objsize -= size_diff;
   3139   1.1  reinoud 			l_ad     = new_size;
   3140   1.1  reinoud 			crclen = dscr_size - UDF_DESC_TAG_LENGTH + l_ea + l_ad;
   3141   1.1  reinoud 			if (fe) {
   3142   1.1  reinoud 				fe->inf_len   = udf_rw64(inflen);
   3143   1.1  reinoud 				fe->l_ad      = udf_rw32(l_ad);
   3144  1.22  reinoud 				fe->tag.desc_crc_len = udf_rw16(crclen);
   3145   1.1  reinoud 			} else {
   3146   1.1  reinoud 				efe->inf_len  = udf_rw64(inflen);
   3147   1.1  reinoud 				efe->obj_size = udf_rw64(objsize);
   3148   1.1  reinoud 				efe->l_ad     = udf_rw32(l_ad);
   3149  1.22  reinoud 				efe->tag.desc_crc_len = udf_rw16(crclen);
   3150   1.1  reinoud 			}
   3151   1.1  reinoud 			/* eventually copy in evacuated piece */
   3152   1.1  reinoud 			/* set new size for uvm */
   3153   1.1  reinoud 			uvm_vnp_setsize(vp, new_size);
   3154   1.1  reinoud 
   3155   1.1  reinoud 			free(node_ad_cpy, M_UDFMNT);
   3156   1.9  reinoud 			udf_node_sanity_check(udf_node, &new_inflen, &new_lbrec);
   3157   1.9  reinoud 
   3158   1.1  reinoud 			UDF_UNLOCK_NODE(udf_node, 0);
   3159   1.1  reinoud 
   3160   1.1  reinoud 			KASSERT(new_inflen == orig_inflen - size_diff);
   3161   1.1  reinoud 			KASSERT(new_inflen == 0);
   3162   1.1  reinoud 			KASSERT(new_lbrec == 0);
   3163   1.1  reinoud 
   3164   1.1  reinoud 			return 0;
   3165   1.1  reinoud 		}
   3166   1.1  reinoud 
   3167   1.1  reinoud 		printf("UDF_SHRINK_NODE: could convert to internal alloc!\n");
   3168   1.1  reinoud 	}
   3169   1.1  reinoud 
   3170   1.1  reinoud 	/* 5) reset node descriptors */
   3171   1.1  reinoud 	udf_wipe_adslots(udf_node);
   3172   1.1  reinoud 
   3173   1.1  reinoud 	/* 6) copy back extents; merge when possible. Recounting on the fly */
   3174   1.1  reinoud 	cpy_slots = cpy_slot;
   3175   1.1  reinoud 
   3176   1.1  reinoud 	c_ad = node_ad_cpy[0];
   3177   1.1  reinoud 	slot = 0;
   3178   1.1  reinoud 	for (cpy_slot = 1; cpy_slot < cpy_slots; cpy_slot++) {
   3179   1.1  reinoud 		s_ad = node_ad_cpy[cpy_slot];
   3180   1.1  reinoud 
   3181   1.1  reinoud 		DPRINTF(ALLOC, ("\t6: stack -> got mapping vp %d "
   3182   1.1  reinoud 			"lb %d, len %d, flags %d\n",
   3183   1.1  reinoud 		udf_rw16(s_ad.loc.part_num),
   3184   1.1  reinoud 		udf_rw32(s_ad.loc.lb_num),
   3185   1.1  reinoud 		UDF_EXT_LEN(udf_rw32(s_ad.len)),
   3186   1.1  reinoud 		UDF_EXT_FLAGS(udf_rw32(s_ad.len)) >> 30));
   3187   1.1  reinoud 
   3188   1.1  reinoud 		/* see if we can merge */
   3189  1.31  reinoud 		if (udf_ads_merge(max_len, lb_size, &c_ad, &s_ad)) {
   3190   1.1  reinoud 			/* not mergable (anymore) */
   3191   1.1  reinoud 			DPRINTF(ALLOC, ("\t6: appending vp %d lb %d, "
   3192   1.1  reinoud 				"len %d, flags %d\n",
   3193   1.1  reinoud 			udf_rw16(c_ad.loc.part_num),
   3194   1.1  reinoud 			udf_rw32(c_ad.loc.lb_num),
   3195   1.1  reinoud 			UDF_EXT_LEN(udf_rw32(c_ad.len)),
   3196   1.1  reinoud 			UDF_EXT_FLAGS(udf_rw32(c_ad.len)) >> 30));
   3197   1.1  reinoud 
   3198  1.11  reinoud 			error = udf_append_adslot(udf_node, &slot, &c_ad);
   3199   1.1  reinoud 			if (error)
   3200   1.1  reinoud 				goto errorout; /* panic? */
   3201   1.1  reinoud 			c_ad = s_ad;
   3202   1.1  reinoud 			slot++;
   3203   1.1  reinoud 		}
   3204   1.1  reinoud 	}
   3205   1.1  reinoud 
   3206   1.1  reinoud 	/* 7) push rest slot (if any) */
   3207   1.1  reinoud 	if (UDF_EXT_LEN(c_ad.len) > 0) {
   3208   1.1  reinoud 		DPRINTF(ALLOC, ("\t7: last append vp %d lb %d, "
   3209   1.1  reinoud 				"len %d, flags %d\n",
   3210   1.1  reinoud 		udf_rw16(c_ad.loc.part_num),
   3211   1.1  reinoud 		udf_rw32(c_ad.loc.lb_num),
   3212   1.1  reinoud 		UDF_EXT_LEN(udf_rw32(c_ad.len)),
   3213   1.1  reinoud 		UDF_EXT_FLAGS(udf_rw32(c_ad.len)) >> 30));
   3214   1.1  reinoud 
   3215  1.11  reinoud 		error = udf_append_adslot(udf_node, &slot, &c_ad);
   3216   1.1  reinoud 		if (error)
   3217   1.1  reinoud 			goto errorout; /* panic? */
   3218   1.1  reinoud 		;
   3219   1.1  reinoud 	}
   3220   1.1  reinoud 
   3221   1.1  reinoud 	inflen  -= size_diff;
   3222   1.1  reinoud 	objsize -= size_diff;
   3223   1.1  reinoud 	if (fe) {
   3224   1.1  reinoud 		fe->inf_len   = udf_rw64(inflen);
   3225   1.1  reinoud 	} else {
   3226   1.1  reinoud 		efe->inf_len  = udf_rw64(inflen);
   3227   1.1  reinoud 		efe->obj_size = udf_rw64(objsize);
   3228   1.1  reinoud 	}
   3229   1.1  reinoud 	error = 0;
   3230   1.1  reinoud 
   3231   1.1  reinoud 	/* set new size for uvm */
   3232   1.1  reinoud 	uvm_vnp_setsize(vp, new_size);
   3233   1.1  reinoud 
   3234   1.1  reinoud errorout:
   3235   1.1  reinoud 	free(node_ad_cpy, M_UDFMNT);
   3236   1.9  reinoud 
   3237  1.11  reinoud 	udf_count_alloc_exts(udf_node);
   3238  1.11  reinoud 
   3239   1.9  reinoud 	udf_node_sanity_check(udf_node, &new_inflen, &new_lbrec);
   3240   1.1  reinoud 	UDF_UNLOCK_NODE(udf_node, 0);
   3241   1.1  reinoud 
   3242   1.1  reinoud 	KASSERT(new_inflen == orig_inflen - size_diff);
   3243   1.1  reinoud 
   3244   1.1  reinoud 	return error;
   3245   1.1  reinoud }
   3246   1.1  reinoud 
   3247