14d3c95f5SJorgen Lundman /*
24d3c95f5SJorgen Lundman *
34d3c95f5SJorgen Lundman * ZFS filesystem ported to u-boot by
44d3c95f5SJorgen Lundman * Jorgen Lundman <lundman at lundman.net>
54d3c95f5SJorgen Lundman *
64d3c95f5SJorgen Lundman * GRUB -- GRand Unified Bootloader
74d3c95f5SJorgen Lundman * Copyright (C) 1999,2000,2001,2002,2003,2004
84d3c95f5SJorgen Lundman * Free Software Foundation, Inc.
94d3c95f5SJorgen Lundman * Copyright 2004 Sun Microsystems, Inc.
104d3c95f5SJorgen Lundman *
111a459660SWolfgang Denk * SPDX-License-Identifier: GPL-2.0+
124d3c95f5SJorgen Lundman */
134d3c95f5SJorgen Lundman
144d3c95f5SJorgen Lundman #include <common.h>
154d3c95f5SJorgen Lundman #include <malloc.h>
164d3c95f5SJorgen Lundman #include <linux/stat.h>
174d3c95f5SJorgen Lundman #include <linux/time.h>
184d3c95f5SJorgen Lundman #include <linux/ctype.h>
194d3c95f5SJorgen Lundman #include <asm/byteorder.h>
204d3c95f5SJorgen Lundman #include "zfs_common.h"
21624c721fSAlejandro Mery #include "div64.h"
224d3c95f5SJorgen Lundman
23*4101f687SSimon Glass struct blk_desc *zfs_dev_desc;
244d3c95f5SJorgen Lundman
254d3c95f5SJorgen Lundman /*
264d3c95f5SJorgen Lundman * The zfs plug-in routines for GRUB are:
274d3c95f5SJorgen Lundman *
284d3c95f5SJorgen Lundman * zfs_mount() - locates a valid uberblock of the root pool and reads
294d3c95f5SJorgen Lundman * in its MOS at the memory address MOS.
304d3c95f5SJorgen Lundman *
314d3c95f5SJorgen Lundman * zfs_open() - locates a plain file object by following the MOS
324d3c95f5SJorgen Lundman * and places its dnode at the memory address DNODE.
334d3c95f5SJorgen Lundman *
344d3c95f5SJorgen Lundman * zfs_read() - read in the data blocks pointed by the DNODE.
354d3c95f5SJorgen Lundman *
364d3c95f5SJorgen Lundman */
374d3c95f5SJorgen Lundman
384d3c95f5SJorgen Lundman #include <zfs/zfs.h>
394d3c95f5SJorgen Lundman #include <zfs/zio.h>
404d3c95f5SJorgen Lundman #include <zfs/dnode.h>
414d3c95f5SJorgen Lundman #include <zfs/uberblock_impl.h>
424d3c95f5SJorgen Lundman #include <zfs/vdev_impl.h>
434d3c95f5SJorgen Lundman #include <zfs/zio_checksum.h>
444d3c95f5SJorgen Lundman #include <zfs/zap_impl.h>
454d3c95f5SJorgen Lundman #include <zfs/zap_leaf.h>
464d3c95f5SJorgen Lundman #include <zfs/zfs_znode.h>
474d3c95f5SJorgen Lundman #include <zfs/dmu.h>
484d3c95f5SJorgen Lundman #include <zfs/dmu_objset.h>
494d3c95f5SJorgen Lundman #include <zfs/sa_impl.h>
504d3c95f5SJorgen Lundman #include <zfs/dsl_dir.h>
514d3c95f5SJorgen Lundman #include <zfs/dsl_dataset.h>
524d3c95f5SJorgen Lundman
534d3c95f5SJorgen Lundman
544d3c95f5SJorgen Lundman #define ZPOOL_PROP_BOOTFS "bootfs"
554d3c95f5SJorgen Lundman
564d3c95f5SJorgen Lundman
574d3c95f5SJorgen Lundman /*
584d3c95f5SJorgen Lundman * For nvlist manipulation. (from nvpair.h)
594d3c95f5SJorgen Lundman */
604d3c95f5SJorgen Lundman #define NV_ENCODE_NATIVE 0
614d3c95f5SJorgen Lundman #define NV_ENCODE_XDR 1
624d3c95f5SJorgen Lundman #define NV_BIG_ENDIAN 0
634d3c95f5SJorgen Lundman #define NV_LITTLE_ENDIAN 1
644d3c95f5SJorgen Lundman #define DATA_TYPE_UINT64 8
654d3c95f5SJorgen Lundman #define DATA_TYPE_STRING 9
664d3c95f5SJorgen Lundman #define DATA_TYPE_NVLIST 19
674d3c95f5SJorgen Lundman #define DATA_TYPE_NVLIST_ARRAY 20
684d3c95f5SJorgen Lundman
694d3c95f5SJorgen Lundman
704d3c95f5SJorgen Lundman /*
714d3c95f5SJorgen Lundman * Macros to get fields in a bp or DVA.
724d3c95f5SJorgen Lundman */
734d3c95f5SJorgen Lundman #define P2PHASE(x, align) ((x) & ((align) - 1))
744d3c95f5SJorgen Lundman #define DVA_OFFSET_TO_PHYS_SECTOR(offset) \
754d3c95f5SJorgen Lundman ((offset + VDEV_LABEL_START_SIZE) >> SPA_MINBLOCKSHIFT)
764d3c95f5SJorgen Lundman
774d3c95f5SJorgen Lundman /*
784d3c95f5SJorgen Lundman * return x rounded down to an align boundary
794d3c95f5SJorgen Lundman * eg, P2ALIGN(1200, 1024) == 1024 (1*align)
804d3c95f5SJorgen Lundman * eg, P2ALIGN(1024, 1024) == 1024 (1*align)
814d3c95f5SJorgen Lundman * eg, P2ALIGN(0x1234, 0x100) == 0x1200 (0x12*align)
824d3c95f5SJorgen Lundman * eg, P2ALIGN(0x5600, 0x100) == 0x5600 (0x56*align)
834d3c95f5SJorgen Lundman */
844d3c95f5SJorgen Lundman #define P2ALIGN(x, align) ((x) & -(align))
854d3c95f5SJorgen Lundman
864d3c95f5SJorgen Lundman /*
874d3c95f5SJorgen Lundman * FAT ZAP data structures
884d3c95f5SJorgen Lundman */
894d3c95f5SJorgen Lundman #define ZFS_CRC64_POLY 0xC96C5795D7870F42ULL /* ECMA-182, reflected form */
904d3c95f5SJorgen Lundman #define ZAP_HASH_IDX(hash, n) (((n) == 0) ? 0 : ((hash) >> (64 - (n))))
914d3c95f5SJorgen Lundman #define CHAIN_END 0xffff /* end of the chunk chain */
924d3c95f5SJorgen Lundman
934d3c95f5SJorgen Lundman /*
944d3c95f5SJorgen Lundman * The amount of space within the chunk available for the array is:
954d3c95f5SJorgen Lundman * chunk size - space for type (1) - space for next pointer (2)
964d3c95f5SJorgen Lundman */
974d3c95f5SJorgen Lundman #define ZAP_LEAF_ARRAY_BYTES (ZAP_LEAF_CHUNKSIZE - 3)
984d3c95f5SJorgen Lundman
994d3c95f5SJorgen Lundman #define ZAP_LEAF_HASH_SHIFT(bs) (bs - 5)
1004d3c95f5SJorgen Lundman #define ZAP_LEAF_HASH_NUMENTRIES(bs) (1 << ZAP_LEAF_HASH_SHIFT(bs))
1014d3c95f5SJorgen Lundman #define LEAF_HASH(bs, h) \
1024d3c95f5SJorgen Lundman ((ZAP_LEAF_HASH_NUMENTRIES(bs)-1) & \
1034d3c95f5SJorgen Lundman ((h) >> (64 - ZAP_LEAF_HASH_SHIFT(bs)-l->l_hdr.lh_prefix_len)))
1044d3c95f5SJorgen Lundman
1054d3c95f5SJorgen Lundman /*
1064d3c95f5SJorgen Lundman * The amount of space available for chunks is:
1074d3c95f5SJorgen Lundman * block size shift - hash entry size (2) * number of hash
1084d3c95f5SJorgen Lundman * entries - header space (2*chunksize)
1094d3c95f5SJorgen Lundman */
1104d3c95f5SJorgen Lundman #define ZAP_LEAF_NUMCHUNKS(bs) \
1114d3c95f5SJorgen Lundman (((1<<bs) - 2*ZAP_LEAF_HASH_NUMENTRIES(bs)) / \
1124d3c95f5SJorgen Lundman ZAP_LEAF_CHUNKSIZE - 2)
1134d3c95f5SJorgen Lundman
1144d3c95f5SJorgen Lundman /*
1154d3c95f5SJorgen Lundman * The chunks start immediately after the hash table. The end of the
1164d3c95f5SJorgen Lundman * hash table is at l_hash + HASH_NUMENTRIES, which we simply cast to a
1174d3c95f5SJorgen Lundman * chunk_t.
1184d3c95f5SJorgen Lundman */
1194d3c95f5SJorgen Lundman #define ZAP_LEAF_CHUNK(l, bs, idx) \
1204d3c95f5SJorgen Lundman ((zap_leaf_chunk_t *)(l->l_hash + ZAP_LEAF_HASH_NUMENTRIES(bs)))[idx]
1214d3c95f5SJorgen Lundman #define ZAP_LEAF_ENTRY(l, bs, idx) (&ZAP_LEAF_CHUNK(l, bs, idx).l_entry)
1224d3c95f5SJorgen Lundman
1234d3c95f5SJorgen Lundman
1244d3c95f5SJorgen Lundman /*
1254d3c95f5SJorgen Lundman * Decompression Entry - lzjb
1264d3c95f5SJorgen Lundman */
1274d3c95f5SJorgen Lundman #ifndef NBBY
1284d3c95f5SJorgen Lundman #define NBBY 8
1294d3c95f5SJorgen Lundman #endif
1304d3c95f5SJorgen Lundman
1314d3c95f5SJorgen Lundman
1324d3c95f5SJorgen Lundman
1334d3c95f5SJorgen Lundman typedef int zfs_decomp_func_t(void *s_start, void *d_start,
1344d3c95f5SJorgen Lundman uint32_t s_len, uint32_t d_len);
1354d3c95f5SJorgen Lundman typedef struct decomp_entry {
1364d3c95f5SJorgen Lundman char *name;
1374d3c95f5SJorgen Lundman zfs_decomp_func_t *decomp_func;
1384d3c95f5SJorgen Lundman } decomp_entry_t;
1394d3c95f5SJorgen Lundman
1404d3c95f5SJorgen Lundman typedef struct dnode_end {
1414d3c95f5SJorgen Lundman dnode_phys_t dn;
1424d3c95f5SJorgen Lundman zfs_endian_t endian;
1434d3c95f5SJorgen Lundman } dnode_end_t;
1444d3c95f5SJorgen Lundman
1454d3c95f5SJorgen Lundman struct zfs_data {
1464d3c95f5SJorgen Lundman /* cache for a file block of the currently zfs_open()-ed file */
1474d3c95f5SJorgen Lundman char *file_buf;
1484d3c95f5SJorgen Lundman uint64_t file_start;
1494d3c95f5SJorgen Lundman uint64_t file_end;
1504d3c95f5SJorgen Lundman
1514d3c95f5SJorgen Lundman /* XXX: ashift is per vdev, not per pool. We currently only ever touch
1524d3c95f5SJorgen Lundman * a single vdev, but when/if raid-z or stripes are supported, this
1534d3c95f5SJorgen Lundman * may need revision.
1544d3c95f5SJorgen Lundman */
1554d3c95f5SJorgen Lundman uint64_t vdev_ashift;
1564d3c95f5SJorgen Lundman uint64_t label_txg;
1574d3c95f5SJorgen Lundman uint64_t pool_guid;
1584d3c95f5SJorgen Lundman
1594d3c95f5SJorgen Lundman /* cache for a dnode block */
1604d3c95f5SJorgen Lundman dnode_phys_t *dnode_buf;
1614d3c95f5SJorgen Lundman dnode_phys_t *dnode_mdn;
1624d3c95f5SJorgen Lundman uint64_t dnode_start;
1634d3c95f5SJorgen Lundman uint64_t dnode_end;
1644d3c95f5SJorgen Lundman zfs_endian_t dnode_endian;
1654d3c95f5SJorgen Lundman
1664d3c95f5SJorgen Lundman uberblock_t current_uberblock;
1674d3c95f5SJorgen Lundman
1684d3c95f5SJorgen Lundman dnode_end_t mos;
1694d3c95f5SJorgen Lundman dnode_end_t mdn;
1704d3c95f5SJorgen Lundman dnode_end_t dnode;
1714d3c95f5SJorgen Lundman
1724d3c95f5SJorgen Lundman uint64_t vdev_phys_sector;
1734d3c95f5SJorgen Lundman
1744d3c95f5SJorgen Lundman int (*userhook)(const char *, const struct zfs_dirhook_info *);
1754d3c95f5SJorgen Lundman struct zfs_dirhook_info *dirinfo;
1764d3c95f5SJorgen Lundman
1774d3c95f5SJorgen Lundman };
1784d3c95f5SJorgen Lundman
1794d3c95f5SJorgen Lundman
1804d3c95f5SJorgen Lundman
1814d3c95f5SJorgen Lundman
1824d3c95f5SJorgen Lundman static int
zlib_decompress(void * s,void * d,uint32_t slen,uint32_t dlen)1834d3c95f5SJorgen Lundman zlib_decompress(void *s, void *d,
1844d3c95f5SJorgen Lundman uint32_t slen, uint32_t dlen)
1854d3c95f5SJorgen Lundman {
1864d3c95f5SJorgen Lundman if (zlib_decompress(s, d, slen, dlen) < 0)
1874d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
1884d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
1894d3c95f5SJorgen Lundman }
1904d3c95f5SJorgen Lundman
1914d3c95f5SJorgen Lundman static decomp_entry_t decomp_table[ZIO_COMPRESS_FUNCTIONS] = {
1924d3c95f5SJorgen Lundman {"inherit", NULL}, /* ZIO_COMPRESS_INHERIT */
1934d3c95f5SJorgen Lundman {"on", lzjb_decompress}, /* ZIO_COMPRESS_ON */
1944d3c95f5SJorgen Lundman {"off", NULL}, /* ZIO_COMPRESS_OFF */
1954d3c95f5SJorgen Lundman {"lzjb", lzjb_decompress}, /* ZIO_COMPRESS_LZJB */
1964d3c95f5SJorgen Lundman {"empty", NULL}, /* ZIO_COMPRESS_EMPTY */
1974d3c95f5SJorgen Lundman {"gzip-1", zlib_decompress}, /* ZIO_COMPRESS_GZIP1 */
1984d3c95f5SJorgen Lundman {"gzip-2", zlib_decompress}, /* ZIO_COMPRESS_GZIP2 */
1994d3c95f5SJorgen Lundman {"gzip-3", zlib_decompress}, /* ZIO_COMPRESS_GZIP3 */
2004d3c95f5SJorgen Lundman {"gzip-4", zlib_decompress}, /* ZIO_COMPRESS_GZIP4 */
2014d3c95f5SJorgen Lundman {"gzip-5", zlib_decompress}, /* ZIO_COMPRESS_GZIP5 */
2024d3c95f5SJorgen Lundman {"gzip-6", zlib_decompress}, /* ZIO_COMPRESS_GZIP6 */
2034d3c95f5SJorgen Lundman {"gzip-7", zlib_decompress}, /* ZIO_COMPRESS_GZIP7 */
2044d3c95f5SJorgen Lundman {"gzip-8", zlib_decompress}, /* ZIO_COMPRESS_GZIP8 */
2054d3c95f5SJorgen Lundman {"gzip-9", zlib_decompress}, /* ZIO_COMPRESS_GZIP9 */
2064d3c95f5SJorgen Lundman };
2074d3c95f5SJorgen Lundman
2084d3c95f5SJorgen Lundman
2094d3c95f5SJorgen Lundman
2104d3c95f5SJorgen Lundman static int zio_read_data(blkptr_t *bp, zfs_endian_t endian,
2114d3c95f5SJorgen Lundman void *buf, struct zfs_data *data);
2124d3c95f5SJorgen Lundman
2134d3c95f5SJorgen Lundman static int
2144d3c95f5SJorgen Lundman zio_read(blkptr_t *bp, zfs_endian_t endian, void **buf,
2154d3c95f5SJorgen Lundman size_t *size, struct zfs_data *data);
2164d3c95f5SJorgen Lundman
2174d3c95f5SJorgen Lundman /*
2184d3c95f5SJorgen Lundman * Our own version of log2(). Same thing as highbit()-1.
2194d3c95f5SJorgen Lundman */
2204d3c95f5SJorgen Lundman static int
zfs_log2(uint64_t num)2214d3c95f5SJorgen Lundman zfs_log2(uint64_t num)
2224d3c95f5SJorgen Lundman {
2234d3c95f5SJorgen Lundman int i = 0;
2244d3c95f5SJorgen Lundman
2254d3c95f5SJorgen Lundman while (num > 1) {
2264d3c95f5SJorgen Lundman i++;
2274d3c95f5SJorgen Lundman num = num >> 1;
2284d3c95f5SJorgen Lundman }
2294d3c95f5SJorgen Lundman
2304d3c95f5SJorgen Lundman return i;
2314d3c95f5SJorgen Lundman }
2324d3c95f5SJorgen Lundman
2334d3c95f5SJorgen Lundman
2344d3c95f5SJorgen Lundman /* Checksum Functions */
2354d3c95f5SJorgen Lundman static void
zio_checksum_off(const void * buf,uint64_t size,zfs_endian_t endian,zio_cksum_t * zcp)2364d3c95f5SJorgen Lundman zio_checksum_off(const void *buf __attribute__ ((unused)),
2374d3c95f5SJorgen Lundman uint64_t size __attribute__ ((unused)),
2384d3c95f5SJorgen Lundman zfs_endian_t endian __attribute__ ((unused)),
2394d3c95f5SJorgen Lundman zio_cksum_t *zcp)
2404d3c95f5SJorgen Lundman {
2414d3c95f5SJorgen Lundman ZIO_SET_CHECKSUM(zcp, 0, 0, 0, 0);
2424d3c95f5SJorgen Lundman }
2434d3c95f5SJorgen Lundman
2444d3c95f5SJorgen Lundman /* Checksum Table and Values */
2454d3c95f5SJorgen Lundman static zio_checksum_info_t zio_checksum_table[ZIO_CHECKSUM_FUNCTIONS] = {
2464d3c95f5SJorgen Lundman {NULL, 0, 0, "inherit"},
2474d3c95f5SJorgen Lundman {NULL, 0, 0, "on"},
2484d3c95f5SJorgen Lundman {zio_checksum_off, 0, 0, "off"},
2494d3c95f5SJorgen Lundman {zio_checksum_SHA256, 1, 1, "label"},
2504d3c95f5SJorgen Lundman {zio_checksum_SHA256, 1, 1, "gang_header"},
2514d3c95f5SJorgen Lundman {NULL, 0, 0, "zilog"},
2524d3c95f5SJorgen Lundman {fletcher_2_endian, 0, 0, "fletcher2"},
2534d3c95f5SJorgen Lundman {fletcher_4_endian, 1, 0, "fletcher4"},
2544d3c95f5SJorgen Lundman {zio_checksum_SHA256, 1, 0, "SHA256"},
2554d3c95f5SJorgen Lundman {NULL, 0, 0, "zilog2"},
2564d3c95f5SJorgen Lundman };
2574d3c95f5SJorgen Lundman
2584d3c95f5SJorgen Lundman /*
2594d3c95f5SJorgen Lundman * zio_checksum_verify: Provides support for checksum verification.
2604d3c95f5SJorgen Lundman *
2614d3c95f5SJorgen Lundman * Fletcher2, Fletcher4, and SHA256 are supported.
2624d3c95f5SJorgen Lundman *
2634d3c95f5SJorgen Lundman */
2644d3c95f5SJorgen Lundman static int
zio_checksum_verify(zio_cksum_t zc,uint32_t checksum,zfs_endian_t endian,char * buf,int size)2654d3c95f5SJorgen Lundman zio_checksum_verify(zio_cksum_t zc, uint32_t checksum,
2664d3c95f5SJorgen Lundman zfs_endian_t endian, char *buf, int size)
2674d3c95f5SJorgen Lundman {
2684d3c95f5SJorgen Lundman zio_eck_t *zec = (zio_eck_t *) (buf + size) - 1;
2694d3c95f5SJorgen Lundman zio_checksum_info_t *ci = &zio_checksum_table[checksum];
2704d3c95f5SJorgen Lundman zio_cksum_t actual_cksum, expected_cksum;
2714d3c95f5SJorgen Lundman
2724d3c95f5SJorgen Lundman if (checksum >= ZIO_CHECKSUM_FUNCTIONS || ci->ci_func == NULL) {
2734d3c95f5SJorgen Lundman printf("zfs unknown checksum function %d\n", checksum);
2744d3c95f5SJorgen Lundman return ZFS_ERR_NOT_IMPLEMENTED_YET;
2754d3c95f5SJorgen Lundman }
2764d3c95f5SJorgen Lundman
2774d3c95f5SJorgen Lundman if (ci->ci_eck) {
2784d3c95f5SJorgen Lundman expected_cksum = zec->zec_cksum;
2794d3c95f5SJorgen Lundman zec->zec_cksum = zc;
2804d3c95f5SJorgen Lundman ci->ci_func(buf, size, endian, &actual_cksum);
2814d3c95f5SJorgen Lundman zec->zec_cksum = expected_cksum;
2824d3c95f5SJorgen Lundman zc = expected_cksum;
2834d3c95f5SJorgen Lundman } else {
2844d3c95f5SJorgen Lundman ci->ci_func(buf, size, endian, &actual_cksum);
2854d3c95f5SJorgen Lundman }
2864d3c95f5SJorgen Lundman
2874d3c95f5SJorgen Lundman if ((actual_cksum.zc_word[0] != zc.zc_word[0])
2884d3c95f5SJorgen Lundman || (actual_cksum.zc_word[1] != zc.zc_word[1])
2894d3c95f5SJorgen Lundman || (actual_cksum.zc_word[2] != zc.zc_word[2])
2904d3c95f5SJorgen Lundman || (actual_cksum.zc_word[3] != zc.zc_word[3])) {
2914d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
2924d3c95f5SJorgen Lundman }
2934d3c95f5SJorgen Lundman
2944d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
2954d3c95f5SJorgen Lundman }
2964d3c95f5SJorgen Lundman
2974d3c95f5SJorgen Lundman /*
2984d3c95f5SJorgen Lundman * vdev_uberblock_compare takes two uberblock structures and returns an integer
2994d3c95f5SJorgen Lundman * indicating the more recent of the two.
3004d3c95f5SJorgen Lundman * Return Value = 1 if ub2 is more recent
3014d3c95f5SJorgen Lundman * Return Value = -1 if ub1 is more recent
3024d3c95f5SJorgen Lundman * The most recent uberblock is determined using its transaction number and
3034d3c95f5SJorgen Lundman * timestamp. The uberblock with the highest transaction number is
3044d3c95f5SJorgen Lundman * considered "newer". If the transaction numbers of the two blocks match, the
3054d3c95f5SJorgen Lundman * timestamps are compared to determine the "newer" of the two.
3064d3c95f5SJorgen Lundman */
3074d3c95f5SJorgen Lundman static int
vdev_uberblock_compare(uberblock_t * ub1,uberblock_t * ub2)3084d3c95f5SJorgen Lundman vdev_uberblock_compare(uberblock_t *ub1, uberblock_t *ub2)
3094d3c95f5SJorgen Lundman {
3104d3c95f5SJorgen Lundman zfs_endian_t ub1_endian, ub2_endian;
3114d3c95f5SJorgen Lundman if (zfs_to_cpu64(ub1->ub_magic, LITTLE_ENDIAN) == UBERBLOCK_MAGIC)
3124d3c95f5SJorgen Lundman ub1_endian = LITTLE_ENDIAN;
3134d3c95f5SJorgen Lundman else
3144d3c95f5SJorgen Lundman ub1_endian = BIG_ENDIAN;
3154d3c95f5SJorgen Lundman if (zfs_to_cpu64(ub2->ub_magic, LITTLE_ENDIAN) == UBERBLOCK_MAGIC)
3164d3c95f5SJorgen Lundman ub2_endian = LITTLE_ENDIAN;
3174d3c95f5SJorgen Lundman else
3184d3c95f5SJorgen Lundman ub2_endian = BIG_ENDIAN;
3194d3c95f5SJorgen Lundman
3204d3c95f5SJorgen Lundman if (zfs_to_cpu64(ub1->ub_txg, ub1_endian)
3214d3c95f5SJorgen Lundman < zfs_to_cpu64(ub2->ub_txg, ub2_endian))
3224d3c95f5SJorgen Lundman return -1;
3234d3c95f5SJorgen Lundman if (zfs_to_cpu64(ub1->ub_txg, ub1_endian)
3244d3c95f5SJorgen Lundman > zfs_to_cpu64(ub2->ub_txg, ub2_endian))
3254d3c95f5SJorgen Lundman return 1;
3264d3c95f5SJorgen Lundman
3274d3c95f5SJorgen Lundman if (zfs_to_cpu64(ub1->ub_timestamp, ub1_endian)
3284d3c95f5SJorgen Lundman < zfs_to_cpu64(ub2->ub_timestamp, ub2_endian))
3294d3c95f5SJorgen Lundman return -1;
3304d3c95f5SJorgen Lundman if (zfs_to_cpu64(ub1->ub_timestamp, ub1_endian)
3314d3c95f5SJorgen Lundman > zfs_to_cpu64(ub2->ub_timestamp, ub2_endian))
3324d3c95f5SJorgen Lundman return 1;
3334d3c95f5SJorgen Lundman
3344d3c95f5SJorgen Lundman return 0;
3354d3c95f5SJorgen Lundman }
3364d3c95f5SJorgen Lundman
3374d3c95f5SJorgen Lundman /*
3384d3c95f5SJorgen Lundman * Three pieces of information are needed to verify an uberblock: the magic
3394d3c95f5SJorgen Lundman * number, the version number, and the checksum.
3404d3c95f5SJorgen Lundman *
3414d3c95f5SJorgen Lundman * Currently Implemented: version number, magic number, label txg
3424d3c95f5SJorgen Lundman * Need to Implement: checksum
3434d3c95f5SJorgen Lundman *
3444d3c95f5SJorgen Lundman */
3454d3c95f5SJorgen Lundman static int
uberblock_verify(uberblock_t * uber,int offset,struct zfs_data * data)3464d3c95f5SJorgen Lundman uberblock_verify(uberblock_t *uber, int offset, struct zfs_data *data)
3474d3c95f5SJorgen Lundman {
3484d3c95f5SJorgen Lundman int err;
3494d3c95f5SJorgen Lundman zfs_endian_t endian = UNKNOWN_ENDIAN;
3504d3c95f5SJorgen Lundman zio_cksum_t zc;
3514d3c95f5SJorgen Lundman
3524d3c95f5SJorgen Lundman if (uber->ub_txg < data->label_txg) {
3534d3c95f5SJorgen Lundman debug("ignoring partially written label: uber_txg < label_txg %llu %llu\n",
3544d3c95f5SJorgen Lundman uber->ub_txg, data->label_txg);
3554d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
3564d3c95f5SJorgen Lundman }
3574d3c95f5SJorgen Lundman
3584d3c95f5SJorgen Lundman if (zfs_to_cpu64(uber->ub_magic, LITTLE_ENDIAN) == UBERBLOCK_MAGIC
3594d3c95f5SJorgen Lundman && zfs_to_cpu64(uber->ub_version, LITTLE_ENDIAN) > 0
3604d3c95f5SJorgen Lundman && zfs_to_cpu64(uber->ub_version, LITTLE_ENDIAN) <= SPA_VERSION)
3614d3c95f5SJorgen Lundman endian = LITTLE_ENDIAN;
3624d3c95f5SJorgen Lundman
3634d3c95f5SJorgen Lundman if (zfs_to_cpu64(uber->ub_magic, BIG_ENDIAN) == UBERBLOCK_MAGIC
3644d3c95f5SJorgen Lundman && zfs_to_cpu64(uber->ub_version, BIG_ENDIAN) > 0
3654d3c95f5SJorgen Lundman && zfs_to_cpu64(uber->ub_version, BIG_ENDIAN) <= SPA_VERSION)
3664d3c95f5SJorgen Lundman endian = BIG_ENDIAN;
3674d3c95f5SJorgen Lundman
3684d3c95f5SJorgen Lundman if (endian == UNKNOWN_ENDIAN) {
3694d3c95f5SJorgen Lundman printf("invalid uberblock magic\n");
3704d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
3714d3c95f5SJorgen Lundman }
3724d3c95f5SJorgen Lundman
3734d3c95f5SJorgen Lundman memset(&zc, 0, sizeof(zc));
3744d3c95f5SJorgen Lundman zc.zc_word[0] = cpu_to_zfs64(offset, endian);
3754d3c95f5SJorgen Lundman err = zio_checksum_verify(zc, ZIO_CHECKSUM_LABEL, endian,
3764d3c95f5SJorgen Lundman (char *) uber, UBERBLOCK_SIZE(data->vdev_ashift));
3774d3c95f5SJorgen Lundman
3784d3c95f5SJorgen Lundman if (!err) {
3794d3c95f5SJorgen Lundman /* Check that the data pointed by the rootbp is usable. */
3804d3c95f5SJorgen Lundman void *osp = NULL;
3814d3c95f5SJorgen Lundman size_t ospsize;
3824d3c95f5SJorgen Lundman err = zio_read(&uber->ub_rootbp, endian, &osp, &ospsize, data);
3834d3c95f5SJorgen Lundman free(osp);
3844d3c95f5SJorgen Lundman
3854d3c95f5SJorgen Lundman if (!err && ospsize < OBJSET_PHYS_SIZE_V14) {
3864d3c95f5SJorgen Lundman printf("uberblock rootbp points to invalid data\n");
3874d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
3884d3c95f5SJorgen Lundman }
3894d3c95f5SJorgen Lundman }
3904d3c95f5SJorgen Lundman
3914d3c95f5SJorgen Lundman return err;
3924d3c95f5SJorgen Lundman }
3934d3c95f5SJorgen Lundman
3944d3c95f5SJorgen Lundman /*
3954d3c95f5SJorgen Lundman * Find the best uberblock.
3964d3c95f5SJorgen Lundman * Return:
3974d3c95f5SJorgen Lundman * Success - Pointer to the best uberblock.
3984d3c95f5SJorgen Lundman * Failure - NULL
3994d3c95f5SJorgen Lundman */
find_bestub(char * ub_array,struct zfs_data * data)4004d3c95f5SJorgen Lundman static uberblock_t *find_bestub(char *ub_array, struct zfs_data *data)
4014d3c95f5SJorgen Lundman {
4024d3c95f5SJorgen Lundman const uint64_t sector = data->vdev_phys_sector;
4034d3c95f5SJorgen Lundman uberblock_t *ubbest = NULL;
4044d3c95f5SJorgen Lundman uberblock_t *ubnext;
4054d3c95f5SJorgen Lundman unsigned int i, offset, pickedub = 0;
4064d3c95f5SJorgen Lundman int err = ZFS_ERR_NONE;
4074d3c95f5SJorgen Lundman
4084d3c95f5SJorgen Lundman const unsigned int UBCOUNT = UBERBLOCK_COUNT(data->vdev_ashift);
4094d3c95f5SJorgen Lundman const uint64_t UBBYTES = UBERBLOCK_SIZE(data->vdev_ashift);
4104d3c95f5SJorgen Lundman
4114d3c95f5SJorgen Lundman for (i = 0; i < UBCOUNT; i++) {
4124d3c95f5SJorgen Lundman ubnext = (uberblock_t *) (i * UBBYTES + ub_array);
4134d3c95f5SJorgen Lundman offset = (sector << SPA_MINBLOCKSHIFT) + VDEV_PHYS_SIZE + (i * UBBYTES);
4144d3c95f5SJorgen Lundman
4154d3c95f5SJorgen Lundman err = uberblock_verify(ubnext, offset, data);
4164d3c95f5SJorgen Lundman if (err)
4174d3c95f5SJorgen Lundman continue;
4184d3c95f5SJorgen Lundman
4194d3c95f5SJorgen Lundman if (ubbest == NULL || vdev_uberblock_compare(ubnext, ubbest) > 0) {
4204d3c95f5SJorgen Lundman ubbest = ubnext;
4214d3c95f5SJorgen Lundman pickedub = i;
4224d3c95f5SJorgen Lundman }
4234d3c95f5SJorgen Lundman }
4244d3c95f5SJorgen Lundman
4254d3c95f5SJorgen Lundman if (ubbest)
4264d3c95f5SJorgen Lundman debug("zfs Found best uberblock at idx %d, txg %llu\n",
4274d3c95f5SJorgen Lundman pickedub, (unsigned long long) ubbest->ub_txg);
4284d3c95f5SJorgen Lundman
4294d3c95f5SJorgen Lundman return ubbest;
4304d3c95f5SJorgen Lundman }
4314d3c95f5SJorgen Lundman
4324d3c95f5SJorgen Lundman static inline size_t
get_psize(blkptr_t * bp,zfs_endian_t endian)4334d3c95f5SJorgen Lundman get_psize(blkptr_t *bp, zfs_endian_t endian)
4344d3c95f5SJorgen Lundman {
4354d3c95f5SJorgen Lundman return (((zfs_to_cpu64((bp)->blk_prop, endian) >> 16) & 0xffff) + 1)
4364d3c95f5SJorgen Lundman << SPA_MINBLOCKSHIFT;
4374d3c95f5SJorgen Lundman }
4384d3c95f5SJorgen Lundman
4394d3c95f5SJorgen Lundman static uint64_t
dva_get_offset(dva_t * dva,zfs_endian_t endian)4404d3c95f5SJorgen Lundman dva_get_offset(dva_t *dva, zfs_endian_t endian)
4414d3c95f5SJorgen Lundman {
4424d3c95f5SJorgen Lundman return zfs_to_cpu64((dva)->dva_word[1],
4434d3c95f5SJorgen Lundman endian) << SPA_MINBLOCKSHIFT;
4444d3c95f5SJorgen Lundman }
4454d3c95f5SJorgen Lundman
4464d3c95f5SJorgen Lundman /*
4474d3c95f5SJorgen Lundman * Read a block of data based on the gang block address dva,
4484d3c95f5SJorgen Lundman * and put its data in buf.
4494d3c95f5SJorgen Lundman *
4504d3c95f5SJorgen Lundman */
4514d3c95f5SJorgen Lundman static int
zio_read_gang(blkptr_t * bp,zfs_endian_t endian,dva_t * dva,void * buf,struct zfs_data * data)4524d3c95f5SJorgen Lundman zio_read_gang(blkptr_t *bp, zfs_endian_t endian, dva_t *dva, void *buf,
4534d3c95f5SJorgen Lundman struct zfs_data *data)
4544d3c95f5SJorgen Lundman {
4554d3c95f5SJorgen Lundman zio_gbh_phys_t *zio_gb;
4564d3c95f5SJorgen Lundman uint64_t offset, sector;
4574d3c95f5SJorgen Lundman unsigned i;
4584d3c95f5SJorgen Lundman int err;
4594d3c95f5SJorgen Lundman zio_cksum_t zc;
4604d3c95f5SJorgen Lundman
4614d3c95f5SJorgen Lundman memset(&zc, 0, sizeof(zc));
4624d3c95f5SJorgen Lundman
4634d3c95f5SJorgen Lundman zio_gb = malloc(SPA_GANGBLOCKSIZE);
4644d3c95f5SJorgen Lundman if (!zio_gb)
4654d3c95f5SJorgen Lundman return ZFS_ERR_OUT_OF_MEMORY;
4664d3c95f5SJorgen Lundman
4674d3c95f5SJorgen Lundman offset = dva_get_offset(dva, endian);
4684d3c95f5SJorgen Lundman sector = DVA_OFFSET_TO_PHYS_SECTOR(offset);
4694d3c95f5SJorgen Lundman
4704d3c95f5SJorgen Lundman /* read in the gang block header */
4714d3c95f5SJorgen Lundman err = zfs_devread(sector, 0, SPA_GANGBLOCKSIZE, (char *) zio_gb);
4724d3c95f5SJorgen Lundman
4734d3c95f5SJorgen Lundman if (err) {
4744d3c95f5SJorgen Lundman free(zio_gb);
4754d3c95f5SJorgen Lundman return err;
4764d3c95f5SJorgen Lundman }
4774d3c95f5SJorgen Lundman
4784d3c95f5SJorgen Lundman /* XXX */
4794d3c95f5SJorgen Lundman /* self checksuming the gang block header */
4804d3c95f5SJorgen Lundman ZIO_SET_CHECKSUM(&zc, DVA_GET_VDEV(dva),
4814d3c95f5SJorgen Lundman dva_get_offset(dva, endian), bp->blk_birth, 0);
4824d3c95f5SJorgen Lundman err = zio_checksum_verify(zc, ZIO_CHECKSUM_GANG_HEADER, endian,
4834d3c95f5SJorgen Lundman (char *) zio_gb, SPA_GANGBLOCKSIZE);
4844d3c95f5SJorgen Lundman if (err) {
4854d3c95f5SJorgen Lundman free(zio_gb);
4864d3c95f5SJorgen Lundman return err;
4874d3c95f5SJorgen Lundman }
4884d3c95f5SJorgen Lundman
4894d3c95f5SJorgen Lundman endian = (zfs_to_cpu64(bp->blk_prop, endian) >> 63) & 1;
4904d3c95f5SJorgen Lundman
4914d3c95f5SJorgen Lundman for (i = 0; i < SPA_GBH_NBLKPTRS; i++) {
4924d3c95f5SJorgen Lundman if (zio_gb->zg_blkptr[i].blk_birth == 0)
4934d3c95f5SJorgen Lundman continue;
4944d3c95f5SJorgen Lundman
4954d3c95f5SJorgen Lundman err = zio_read_data(&zio_gb->zg_blkptr[i], endian, buf, data);
4964d3c95f5SJorgen Lundman if (err) {
4974d3c95f5SJorgen Lundman free(zio_gb);
4984d3c95f5SJorgen Lundman return err;
4994d3c95f5SJorgen Lundman }
5004d3c95f5SJorgen Lundman buf = (char *) buf + get_psize(&zio_gb->zg_blkptr[i], endian);
5014d3c95f5SJorgen Lundman }
5024d3c95f5SJorgen Lundman free(zio_gb);
5034d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
5044d3c95f5SJorgen Lundman }
5054d3c95f5SJorgen Lundman
5064d3c95f5SJorgen Lundman /*
5074d3c95f5SJorgen Lundman * Read in a block of raw data to buf.
5084d3c95f5SJorgen Lundman */
5094d3c95f5SJorgen Lundman static int
zio_read_data(blkptr_t * bp,zfs_endian_t endian,void * buf,struct zfs_data * data)5104d3c95f5SJorgen Lundman zio_read_data(blkptr_t *bp, zfs_endian_t endian, void *buf,
5114d3c95f5SJorgen Lundman struct zfs_data *data)
5124d3c95f5SJorgen Lundman {
5134d3c95f5SJorgen Lundman int i, psize;
5144d3c95f5SJorgen Lundman int err = ZFS_ERR_NONE;
5154d3c95f5SJorgen Lundman
5164d3c95f5SJorgen Lundman psize = get_psize(bp, endian);
5174d3c95f5SJorgen Lundman
5184d3c95f5SJorgen Lundman /* pick a good dva from the block pointer */
5194d3c95f5SJorgen Lundman for (i = 0; i < SPA_DVAS_PER_BP; i++) {
5204d3c95f5SJorgen Lundman uint64_t offset, sector;
5214d3c95f5SJorgen Lundman
5224d3c95f5SJorgen Lundman if (bp->blk_dva[i].dva_word[0] == 0 && bp->blk_dva[i].dva_word[1] == 0)
5234d3c95f5SJorgen Lundman continue;
5244d3c95f5SJorgen Lundman
5254d3c95f5SJorgen Lundman if ((zfs_to_cpu64(bp->blk_dva[i].dva_word[1], endian)>>63) & 1) {
5264d3c95f5SJorgen Lundman err = zio_read_gang(bp, endian, &bp->blk_dva[i], buf, data);
5274d3c95f5SJorgen Lundman } else {
5284d3c95f5SJorgen Lundman /* read in a data block */
5294d3c95f5SJorgen Lundman offset = dva_get_offset(&bp->blk_dva[i], endian);
5304d3c95f5SJorgen Lundman sector = DVA_OFFSET_TO_PHYS_SECTOR(offset);
5314d3c95f5SJorgen Lundman
5324d3c95f5SJorgen Lundman err = zfs_devread(sector, 0, psize, buf);
5334d3c95f5SJorgen Lundman }
5344d3c95f5SJorgen Lundman
5354d3c95f5SJorgen Lundman if (!err) {
5364d3c95f5SJorgen Lundman /*Check the underlying checksum before we rule this DVA as "good"*/
5374d3c95f5SJorgen Lundman uint32_t checkalgo = (zfs_to_cpu64((bp)->blk_prop, endian) >> 40) & 0xff;
5384d3c95f5SJorgen Lundman
5394d3c95f5SJorgen Lundman err = zio_checksum_verify(bp->blk_cksum, checkalgo, endian, buf, psize);
5404d3c95f5SJorgen Lundman if (!err)
5414d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
5424d3c95f5SJorgen Lundman }
5434d3c95f5SJorgen Lundman
5444d3c95f5SJorgen Lundman /* If read failed or checksum bad, reset the error. Hopefully we've got some more DVA's to try.*/
5454d3c95f5SJorgen Lundman }
5464d3c95f5SJorgen Lundman
5474d3c95f5SJorgen Lundman if (!err) {
5484d3c95f5SJorgen Lundman printf("couldn't find a valid DVA\n");
5494d3c95f5SJorgen Lundman err = ZFS_ERR_BAD_FS;
5504d3c95f5SJorgen Lundman }
5514d3c95f5SJorgen Lundman
5524d3c95f5SJorgen Lundman return err;
5534d3c95f5SJorgen Lundman }
5544d3c95f5SJorgen Lundman
5554d3c95f5SJorgen Lundman /*
5564d3c95f5SJorgen Lundman * Read in a block of data, verify its checksum, decompress if needed,
5574d3c95f5SJorgen Lundman * and put the uncompressed data in buf.
5584d3c95f5SJorgen Lundman */
5594d3c95f5SJorgen Lundman static int
zio_read(blkptr_t * bp,zfs_endian_t endian,void ** buf,size_t * size,struct zfs_data * data)5604d3c95f5SJorgen Lundman zio_read(blkptr_t *bp, zfs_endian_t endian, void **buf,
5614d3c95f5SJorgen Lundman size_t *size, struct zfs_data *data)
5624d3c95f5SJorgen Lundman {
5634d3c95f5SJorgen Lundman size_t lsize, psize;
5644d3c95f5SJorgen Lundman unsigned int comp;
5654d3c95f5SJorgen Lundman char *compbuf = NULL;
5664d3c95f5SJorgen Lundman int err;
5674d3c95f5SJorgen Lundman
5684d3c95f5SJorgen Lundman *buf = NULL;
5694d3c95f5SJorgen Lundman
5704d3c95f5SJorgen Lundman comp = (zfs_to_cpu64((bp)->blk_prop, endian)>>32) & 0xff;
5714d3c95f5SJorgen Lundman lsize = (BP_IS_HOLE(bp) ? 0 :
5724d3c95f5SJorgen Lundman (((zfs_to_cpu64((bp)->blk_prop, endian) & 0xffff) + 1)
5734d3c95f5SJorgen Lundman << SPA_MINBLOCKSHIFT));
5744d3c95f5SJorgen Lundman psize = get_psize(bp, endian);
5754d3c95f5SJorgen Lundman
5764d3c95f5SJorgen Lundman if (size)
5774d3c95f5SJorgen Lundman *size = lsize;
5784d3c95f5SJorgen Lundman
5794d3c95f5SJorgen Lundman if (comp >= ZIO_COMPRESS_FUNCTIONS) {
5804d3c95f5SJorgen Lundman printf("compression algorithm %u not supported\n", (unsigned int) comp);
5814d3c95f5SJorgen Lundman return ZFS_ERR_NOT_IMPLEMENTED_YET;
5824d3c95f5SJorgen Lundman }
5834d3c95f5SJorgen Lundman
5844d3c95f5SJorgen Lundman if (comp != ZIO_COMPRESS_OFF && decomp_table[comp].decomp_func == NULL) {
5854d3c95f5SJorgen Lundman printf("compression algorithm %s not supported\n", decomp_table[comp].name);
5864d3c95f5SJorgen Lundman return ZFS_ERR_NOT_IMPLEMENTED_YET;
5874d3c95f5SJorgen Lundman }
5884d3c95f5SJorgen Lundman
5894d3c95f5SJorgen Lundman if (comp != ZIO_COMPRESS_OFF) {
5904d3c95f5SJorgen Lundman compbuf = malloc(psize);
5914d3c95f5SJorgen Lundman if (!compbuf)
5924d3c95f5SJorgen Lundman return ZFS_ERR_OUT_OF_MEMORY;
5934d3c95f5SJorgen Lundman } else {
5944d3c95f5SJorgen Lundman compbuf = *buf = malloc(lsize);
5954d3c95f5SJorgen Lundman }
5964d3c95f5SJorgen Lundman
5974d3c95f5SJorgen Lundman err = zio_read_data(bp, endian, compbuf, data);
5984d3c95f5SJorgen Lundman if (err) {
5994d3c95f5SJorgen Lundman free(compbuf);
6004d3c95f5SJorgen Lundman *buf = NULL;
6014d3c95f5SJorgen Lundman return err;
6024d3c95f5SJorgen Lundman }
6034d3c95f5SJorgen Lundman
6044d3c95f5SJorgen Lundman if (comp != ZIO_COMPRESS_OFF) {
6054d3c95f5SJorgen Lundman *buf = malloc(lsize);
6064d3c95f5SJorgen Lundman if (!*buf) {
6074d3c95f5SJorgen Lundman free(compbuf);
6084d3c95f5SJorgen Lundman return ZFS_ERR_OUT_OF_MEMORY;
6094d3c95f5SJorgen Lundman }
6104d3c95f5SJorgen Lundman
6114d3c95f5SJorgen Lundman err = decomp_table[comp].decomp_func(compbuf, *buf, psize, lsize);
6124d3c95f5SJorgen Lundman free(compbuf);
6134d3c95f5SJorgen Lundman if (err) {
6144d3c95f5SJorgen Lundman free(*buf);
6154d3c95f5SJorgen Lundman *buf = NULL;
6164d3c95f5SJorgen Lundman return err;
6174d3c95f5SJorgen Lundman }
6184d3c95f5SJorgen Lundman }
6194d3c95f5SJorgen Lundman
6204d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
6214d3c95f5SJorgen Lundman }
6224d3c95f5SJorgen Lundman
6234d3c95f5SJorgen Lundman /*
6244d3c95f5SJorgen Lundman * Get the block from a block id.
6254d3c95f5SJorgen Lundman * push the block onto the stack.
6264d3c95f5SJorgen Lundman *
6274d3c95f5SJorgen Lundman */
6284d3c95f5SJorgen Lundman static int
dmu_read(dnode_end_t * dn,uint64_t blkid,void ** buf,zfs_endian_t * endian_out,struct zfs_data * data)6294d3c95f5SJorgen Lundman dmu_read(dnode_end_t *dn, uint64_t blkid, void **buf,
6304d3c95f5SJorgen Lundman zfs_endian_t *endian_out, struct zfs_data *data)
6314d3c95f5SJorgen Lundman {
6324d3c95f5SJorgen Lundman int idx, level;
6334d3c95f5SJorgen Lundman blkptr_t *bp_array = dn->dn.dn_blkptr;
6344d3c95f5SJorgen Lundman int epbs = dn->dn.dn_indblkshift - SPA_BLKPTRSHIFT;
6354d3c95f5SJorgen Lundman blkptr_t *bp;
6364d3c95f5SJorgen Lundman void *tmpbuf = 0;
6374d3c95f5SJorgen Lundman zfs_endian_t endian;
6384d3c95f5SJorgen Lundman int err = ZFS_ERR_NONE;
6394d3c95f5SJorgen Lundman
6404d3c95f5SJorgen Lundman bp = malloc(sizeof(blkptr_t));
6414d3c95f5SJorgen Lundman if (!bp)
6424d3c95f5SJorgen Lundman return ZFS_ERR_OUT_OF_MEMORY;
6434d3c95f5SJorgen Lundman
6444d3c95f5SJorgen Lundman endian = dn->endian;
6454d3c95f5SJorgen Lundman for (level = dn->dn.dn_nlevels - 1; level >= 0; level--) {
6464d3c95f5SJorgen Lundman idx = (blkid >> (epbs * level)) & ((1 << epbs) - 1);
6474d3c95f5SJorgen Lundman *bp = bp_array[idx];
6484d3c95f5SJorgen Lundman if (bp_array != dn->dn.dn_blkptr) {
6494d3c95f5SJorgen Lundman free(bp_array);
6504d3c95f5SJorgen Lundman bp_array = 0;
6514d3c95f5SJorgen Lundman }
6524d3c95f5SJorgen Lundman
6534d3c95f5SJorgen Lundman if (BP_IS_HOLE(bp)) {
6544d3c95f5SJorgen Lundman size_t size = zfs_to_cpu16(dn->dn.dn_datablkszsec,
6554d3c95f5SJorgen Lundman dn->endian)
6564d3c95f5SJorgen Lundman << SPA_MINBLOCKSHIFT;
6574d3c95f5SJorgen Lundman *buf = malloc(size);
6584d3c95f5SJorgen Lundman if (*buf) {
6594d3c95f5SJorgen Lundman err = ZFS_ERR_OUT_OF_MEMORY;
6604d3c95f5SJorgen Lundman break;
6614d3c95f5SJorgen Lundman }
6624d3c95f5SJorgen Lundman memset(*buf, 0, size);
6634d3c95f5SJorgen Lundman endian = (zfs_to_cpu64(bp->blk_prop, endian) >> 63) & 1;
6644d3c95f5SJorgen Lundman break;
6654d3c95f5SJorgen Lundman }
6664d3c95f5SJorgen Lundman if (level == 0) {
6674d3c95f5SJorgen Lundman err = zio_read(bp, endian, buf, 0, data);
6684d3c95f5SJorgen Lundman endian = (zfs_to_cpu64(bp->blk_prop, endian) >> 63) & 1;
6694d3c95f5SJorgen Lundman break;
6704d3c95f5SJorgen Lundman }
6714d3c95f5SJorgen Lundman err = zio_read(bp, endian, &tmpbuf, 0, data);
6724d3c95f5SJorgen Lundman endian = (zfs_to_cpu64(bp->blk_prop, endian) >> 63) & 1;
6734d3c95f5SJorgen Lundman if (err)
6744d3c95f5SJorgen Lundman break;
6754d3c95f5SJorgen Lundman bp_array = tmpbuf;
6764d3c95f5SJorgen Lundman }
6774d3c95f5SJorgen Lundman if (bp_array != dn->dn.dn_blkptr)
6784d3c95f5SJorgen Lundman free(bp_array);
6794d3c95f5SJorgen Lundman if (endian_out)
6804d3c95f5SJorgen Lundman *endian_out = endian;
6814d3c95f5SJorgen Lundman
6824d3c95f5SJorgen Lundman free(bp);
6834d3c95f5SJorgen Lundman return err;
6844d3c95f5SJorgen Lundman }
6854d3c95f5SJorgen Lundman
6864d3c95f5SJorgen Lundman /*
6874d3c95f5SJorgen Lundman * mzap_lookup: Looks up property described by "name" and returns the value
6884d3c95f5SJorgen Lundman * in "value".
6894d3c95f5SJorgen Lundman */
6904d3c95f5SJorgen Lundman static int
mzap_lookup(mzap_phys_t * zapobj,zfs_endian_t endian,int objsize,char * name,uint64_t * value)6914d3c95f5SJorgen Lundman mzap_lookup(mzap_phys_t *zapobj, zfs_endian_t endian,
6924d3c95f5SJorgen Lundman int objsize, char *name, uint64_t * value)
6934d3c95f5SJorgen Lundman {
6944d3c95f5SJorgen Lundman int i, chunks;
6954d3c95f5SJorgen Lundman mzap_ent_phys_t *mzap_ent = zapobj->mz_chunk;
6964d3c95f5SJorgen Lundman
6974d3c95f5SJorgen Lundman chunks = objsize / MZAP_ENT_LEN - 1;
6984d3c95f5SJorgen Lundman for (i = 0; i < chunks; i++) {
6994d3c95f5SJorgen Lundman if (strcmp(mzap_ent[i].mze_name, name) == 0) {
7004d3c95f5SJorgen Lundman *value = zfs_to_cpu64(mzap_ent[i].mze_value, endian);
7014d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
7024d3c95f5SJorgen Lundman }
7034d3c95f5SJorgen Lundman }
7044d3c95f5SJorgen Lundman
7054d3c95f5SJorgen Lundman printf("couldn't find '%s'\n", name);
7064d3c95f5SJorgen Lundman return ZFS_ERR_FILE_NOT_FOUND;
7074d3c95f5SJorgen Lundman }
7084d3c95f5SJorgen Lundman
7094d3c95f5SJorgen Lundman static int
mzap_iterate(mzap_phys_t * zapobj,zfs_endian_t endian,int objsize,int (* hook)(const char * name,uint64_t val,struct zfs_data * data),struct zfs_data * data)7104d3c95f5SJorgen Lundman mzap_iterate(mzap_phys_t *zapobj, zfs_endian_t endian, int objsize,
7114d3c95f5SJorgen Lundman int (*hook)(const char *name,
7124d3c95f5SJorgen Lundman uint64_t val,
7134d3c95f5SJorgen Lundman struct zfs_data *data),
7144d3c95f5SJorgen Lundman struct zfs_data *data)
7154d3c95f5SJorgen Lundman {
7164d3c95f5SJorgen Lundman int i, chunks;
7174d3c95f5SJorgen Lundman mzap_ent_phys_t *mzap_ent = zapobj->mz_chunk;
7184d3c95f5SJorgen Lundman
7194d3c95f5SJorgen Lundman chunks = objsize / MZAP_ENT_LEN - 1;
7204d3c95f5SJorgen Lundman for (i = 0; i < chunks; i++) {
7214d3c95f5SJorgen Lundman if (hook(mzap_ent[i].mze_name,
7224d3c95f5SJorgen Lundman zfs_to_cpu64(mzap_ent[i].mze_value, endian),
7234d3c95f5SJorgen Lundman data))
7244d3c95f5SJorgen Lundman return 1;
7254d3c95f5SJorgen Lundman }
7264d3c95f5SJorgen Lundman
7274d3c95f5SJorgen Lundman return 0;
7284d3c95f5SJorgen Lundman }
7294d3c95f5SJorgen Lundman
7304d3c95f5SJorgen Lundman static uint64_t
zap_hash(uint64_t salt,const char * name)7314d3c95f5SJorgen Lundman zap_hash(uint64_t salt, const char *name)
7324d3c95f5SJorgen Lundman {
7334d3c95f5SJorgen Lundman static uint64_t table[256];
7344d3c95f5SJorgen Lundman const uint8_t *cp;
7354d3c95f5SJorgen Lundman uint8_t c;
7364d3c95f5SJorgen Lundman uint64_t crc = salt;
7374d3c95f5SJorgen Lundman
7384d3c95f5SJorgen Lundman if (table[128] == 0) {
739e183de0dSJorgen Lundman uint64_t *ct = NULL;
7404d3c95f5SJorgen Lundman int i, j;
7414d3c95f5SJorgen Lundman for (i = 0; i < 256; i++) {
7424d3c95f5SJorgen Lundman for (ct = table + i, *ct = i, j = 8; j > 0; j--)
7434d3c95f5SJorgen Lundman *ct = (*ct >> 1) ^ (-(*ct & 1) & ZFS_CRC64_POLY);
7444d3c95f5SJorgen Lundman }
7454d3c95f5SJorgen Lundman }
7464d3c95f5SJorgen Lundman
7474d3c95f5SJorgen Lundman for (cp = (const uint8_t *) name; (c = *cp) != '\0'; cp++)
7484d3c95f5SJorgen Lundman crc = (crc >> 8) ^ table[(crc ^ c) & 0xFF];
7494d3c95f5SJorgen Lundman
7504d3c95f5SJorgen Lundman /*
7514d3c95f5SJorgen Lundman * Only use 28 bits, since we need 4 bits in the cookie for the
7524d3c95f5SJorgen Lundman * collision differentiator. We MUST use the high bits, since
7534d3c95f5SJorgen Lundman * those are the onces that we first pay attention to when
7544d3c95f5SJorgen Lundman * chosing the bucket.
7554d3c95f5SJorgen Lundman */
7564d3c95f5SJorgen Lundman crc &= ~((1ULL << (64 - ZAP_HASHBITS)) - 1);
7574d3c95f5SJorgen Lundman
7584d3c95f5SJorgen Lundman return crc;
7594d3c95f5SJorgen Lundman }
7604d3c95f5SJorgen Lundman
7614d3c95f5SJorgen Lundman /*
7624d3c95f5SJorgen Lundman * Only to be used on 8-bit arrays.
7634d3c95f5SJorgen Lundman * array_len is actual len in bytes (not encoded le_value_length).
7644d3c95f5SJorgen Lundman * buf is null-terminated.
7654d3c95f5SJorgen Lundman */
7664d3c95f5SJorgen Lundman /* XXX */
7674d3c95f5SJorgen Lundman static int
zap_leaf_array_equal(zap_leaf_phys_t * l,zfs_endian_t endian,int blksft,int chunk,int array_len,const char * buf)7684d3c95f5SJorgen Lundman zap_leaf_array_equal(zap_leaf_phys_t *l, zfs_endian_t endian,
7694d3c95f5SJorgen Lundman int blksft, int chunk, int array_len, const char *buf)
7704d3c95f5SJorgen Lundman {
7714d3c95f5SJorgen Lundman int bseen = 0;
7724d3c95f5SJorgen Lundman
7734d3c95f5SJorgen Lundman while (bseen < array_len) {
7744d3c95f5SJorgen Lundman struct zap_leaf_array *la = &ZAP_LEAF_CHUNK(l, blksft, chunk).l_array;
775c79cba37SMasahiro Yamada int toread = min(array_len - bseen, ZAP_LEAF_ARRAY_BYTES);
7764d3c95f5SJorgen Lundman
7774d3c95f5SJorgen Lundman if (chunk >= ZAP_LEAF_NUMCHUNKS(blksft))
7784d3c95f5SJorgen Lundman return 0;
7794d3c95f5SJorgen Lundman
7804d3c95f5SJorgen Lundman if (memcmp(la->la_array, buf + bseen, toread) != 0)
7814d3c95f5SJorgen Lundman break;
7824d3c95f5SJorgen Lundman chunk = zfs_to_cpu16(la->la_next, endian);
7834d3c95f5SJorgen Lundman bseen += toread;
7844d3c95f5SJorgen Lundman }
7854d3c95f5SJorgen Lundman return (bseen == array_len);
7864d3c95f5SJorgen Lundman }
7874d3c95f5SJorgen Lundman
7884d3c95f5SJorgen Lundman /* XXX */
7894d3c95f5SJorgen Lundman static int
zap_leaf_array_get(zap_leaf_phys_t * l,zfs_endian_t endian,int blksft,int chunk,int array_len,char * buf)7904d3c95f5SJorgen Lundman zap_leaf_array_get(zap_leaf_phys_t *l, zfs_endian_t endian, int blksft,
7914d3c95f5SJorgen Lundman int chunk, int array_len, char *buf)
7924d3c95f5SJorgen Lundman {
7934d3c95f5SJorgen Lundman int bseen = 0;
7944d3c95f5SJorgen Lundman
7954d3c95f5SJorgen Lundman while (bseen < array_len) {
7964d3c95f5SJorgen Lundman struct zap_leaf_array *la = &ZAP_LEAF_CHUNK(l, blksft, chunk).l_array;
797c79cba37SMasahiro Yamada int toread = min(array_len - bseen, ZAP_LEAF_ARRAY_BYTES);
7984d3c95f5SJorgen Lundman
7994d3c95f5SJorgen Lundman if (chunk >= ZAP_LEAF_NUMCHUNKS(blksft))
8004d3c95f5SJorgen Lundman /* Don't use errno because this error is to be ignored. */
8014d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8024d3c95f5SJorgen Lundman
8034d3c95f5SJorgen Lundman memcpy(buf + bseen, la->la_array, toread);
8044d3c95f5SJorgen Lundman chunk = zfs_to_cpu16(la->la_next, endian);
8054d3c95f5SJorgen Lundman bseen += toread;
8064d3c95f5SJorgen Lundman }
8074d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
8084d3c95f5SJorgen Lundman }
8094d3c95f5SJorgen Lundman
8104d3c95f5SJorgen Lundman
8114d3c95f5SJorgen Lundman /*
8124d3c95f5SJorgen Lundman * Given a zap_leaf_phys_t, walk thru the zap leaf chunks to get the
8134d3c95f5SJorgen Lundman * value for the property "name".
8144d3c95f5SJorgen Lundman *
8154d3c95f5SJorgen Lundman */
8164d3c95f5SJorgen Lundman /* XXX */
8174d3c95f5SJorgen Lundman static int
zap_leaf_lookup(zap_leaf_phys_t * l,zfs_endian_t endian,int blksft,uint64_t h,const char * name,uint64_t * value)8184d3c95f5SJorgen Lundman zap_leaf_lookup(zap_leaf_phys_t *l, zfs_endian_t endian,
8194d3c95f5SJorgen Lundman int blksft, uint64_t h,
8204d3c95f5SJorgen Lundman const char *name, uint64_t *value)
8214d3c95f5SJorgen Lundman {
8224d3c95f5SJorgen Lundman uint16_t chunk;
8234d3c95f5SJorgen Lundman struct zap_leaf_entry *le;
8244d3c95f5SJorgen Lundman
8254d3c95f5SJorgen Lundman /* Verify if this is a valid leaf block */
8264d3c95f5SJorgen Lundman if (zfs_to_cpu64(l->l_hdr.lh_block_type, endian) != ZBT_LEAF) {
8274d3c95f5SJorgen Lundman printf("invalid leaf type\n");
8284d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8294d3c95f5SJorgen Lundman }
8304d3c95f5SJorgen Lundman if (zfs_to_cpu32(l->l_hdr.lh_magic, endian) != ZAP_LEAF_MAGIC) {
8314d3c95f5SJorgen Lundman printf("invalid leaf magic\n");
8324d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8334d3c95f5SJorgen Lundman }
8344d3c95f5SJorgen Lundman
8354d3c95f5SJorgen Lundman for (chunk = zfs_to_cpu16(l->l_hash[LEAF_HASH(blksft, h)], endian);
8364d3c95f5SJorgen Lundman chunk != CHAIN_END; chunk = le->le_next) {
8374d3c95f5SJorgen Lundman
8384d3c95f5SJorgen Lundman if (chunk >= ZAP_LEAF_NUMCHUNKS(blksft)) {
8394d3c95f5SJorgen Lundman printf("invalid chunk number\n");
8404d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8414d3c95f5SJorgen Lundman }
8424d3c95f5SJorgen Lundman
8434d3c95f5SJorgen Lundman le = ZAP_LEAF_ENTRY(l, blksft, chunk);
8444d3c95f5SJorgen Lundman
8454d3c95f5SJorgen Lundman /* Verify the chunk entry */
8464d3c95f5SJorgen Lundman if (le->le_type != ZAP_CHUNK_ENTRY) {
8474d3c95f5SJorgen Lundman printf("invalid chunk entry\n");
8484d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8494d3c95f5SJorgen Lundman }
8504d3c95f5SJorgen Lundman
8514d3c95f5SJorgen Lundman if (zfs_to_cpu64(le->le_hash, endian) != h)
8524d3c95f5SJorgen Lundman continue;
8534d3c95f5SJorgen Lundman
8544d3c95f5SJorgen Lundman if (zap_leaf_array_equal(l, endian, blksft,
8554d3c95f5SJorgen Lundman zfs_to_cpu16(le->le_name_chunk, endian),
8564d3c95f5SJorgen Lundman zfs_to_cpu16(le->le_name_length, endian),
8574d3c95f5SJorgen Lundman name)) {
8584d3c95f5SJorgen Lundman struct zap_leaf_array *la;
8594d3c95f5SJorgen Lundman
8604d3c95f5SJorgen Lundman if (le->le_int_size != 8 || le->le_value_length != 1) {
8614d3c95f5SJorgen Lundman printf("invalid leaf chunk entry\n");
8624d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8634d3c95f5SJorgen Lundman }
8644d3c95f5SJorgen Lundman /* get the uint64_t property value */
8654d3c95f5SJorgen Lundman la = &ZAP_LEAF_CHUNK(l, blksft, le->le_value_chunk).l_array;
8664d3c95f5SJorgen Lundman
8674d3c95f5SJorgen Lundman *value = be64_to_cpu(la->la_array64);
8684d3c95f5SJorgen Lundman
8694d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
8704d3c95f5SJorgen Lundman }
8714d3c95f5SJorgen Lundman }
8724d3c95f5SJorgen Lundman
8734d3c95f5SJorgen Lundman printf("couldn't find '%s'\n", name);
8744d3c95f5SJorgen Lundman return ZFS_ERR_FILE_NOT_FOUND;
8754d3c95f5SJorgen Lundman }
8764d3c95f5SJorgen Lundman
8774d3c95f5SJorgen Lundman
8784d3c95f5SJorgen Lundman /* Verify if this is a fat zap header block */
8794d3c95f5SJorgen Lundman static int
zap_verify(zap_phys_t * zap)8804d3c95f5SJorgen Lundman zap_verify(zap_phys_t *zap)
8814d3c95f5SJorgen Lundman {
8824d3c95f5SJorgen Lundman if (zap->zap_magic != (uint64_t) ZAP_MAGIC) {
8834d3c95f5SJorgen Lundman printf("bad ZAP magic\n");
8844d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8854d3c95f5SJorgen Lundman }
8864d3c95f5SJorgen Lundman
8874d3c95f5SJorgen Lundman if (zap->zap_flags != 0) {
8884d3c95f5SJorgen Lundman printf("bad ZAP flags\n");
8894d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8904d3c95f5SJorgen Lundman }
8914d3c95f5SJorgen Lundman
8924d3c95f5SJorgen Lundman if (zap->zap_salt == 0) {
8934d3c95f5SJorgen Lundman printf("bad ZAP salt\n");
8944d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
8954d3c95f5SJorgen Lundman }
8964d3c95f5SJorgen Lundman
8974d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
8984d3c95f5SJorgen Lundman }
8994d3c95f5SJorgen Lundman
9004d3c95f5SJorgen Lundman /*
9014d3c95f5SJorgen Lundman * Fat ZAP lookup
9024d3c95f5SJorgen Lundman *
9034d3c95f5SJorgen Lundman */
9044d3c95f5SJorgen Lundman /* XXX */
9054d3c95f5SJorgen Lundman static int
fzap_lookup(dnode_end_t * zap_dnode,zap_phys_t * zap,char * name,uint64_t * value,struct zfs_data * data)9064d3c95f5SJorgen Lundman fzap_lookup(dnode_end_t *zap_dnode, zap_phys_t *zap,
9074d3c95f5SJorgen Lundman char *name, uint64_t *value, struct zfs_data *data)
9084d3c95f5SJorgen Lundman {
9094d3c95f5SJorgen Lundman void *l;
9104d3c95f5SJorgen Lundman uint64_t hash, idx, blkid;
9114d3c95f5SJorgen Lundman int blksft = zfs_log2(zfs_to_cpu16(zap_dnode->dn.dn_datablkszsec,
9124d3c95f5SJorgen Lundman zap_dnode->endian) << DNODE_SHIFT);
9134d3c95f5SJorgen Lundman int err;
9144d3c95f5SJorgen Lundman zfs_endian_t leafendian;
9154d3c95f5SJorgen Lundman
9164d3c95f5SJorgen Lundman err = zap_verify(zap);
9174d3c95f5SJorgen Lundman if (err)
9184d3c95f5SJorgen Lundman return err;
9194d3c95f5SJorgen Lundman
9204d3c95f5SJorgen Lundman hash = zap_hash(zap->zap_salt, name);
9214d3c95f5SJorgen Lundman
9224d3c95f5SJorgen Lundman /* get block id from index */
9234d3c95f5SJorgen Lundman if (zap->zap_ptrtbl.zt_numblks != 0) {
9244d3c95f5SJorgen Lundman printf("external pointer tables not supported\n");
9254d3c95f5SJorgen Lundman return ZFS_ERR_NOT_IMPLEMENTED_YET;
9264d3c95f5SJorgen Lundman }
9274d3c95f5SJorgen Lundman idx = ZAP_HASH_IDX(hash, zap->zap_ptrtbl.zt_shift);
9284d3c95f5SJorgen Lundman blkid = ((uint64_t *) zap)[idx + (1 << (blksft - 3 - 1))];
9294d3c95f5SJorgen Lundman
9304d3c95f5SJorgen Lundman /* Get the leaf block */
9314d3c95f5SJorgen Lundman if ((1U << blksft) < sizeof(zap_leaf_phys_t)) {
9324d3c95f5SJorgen Lundman printf("ZAP leaf is too small\n");
9334d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
9344d3c95f5SJorgen Lundman }
9354d3c95f5SJorgen Lundman err = dmu_read(zap_dnode, blkid, &l, &leafendian, data);
9364d3c95f5SJorgen Lundman if (err)
9374d3c95f5SJorgen Lundman return err;
9384d3c95f5SJorgen Lundman
9394d3c95f5SJorgen Lundman err = zap_leaf_lookup(l, leafendian, blksft, hash, name, value);
9404d3c95f5SJorgen Lundman free(l);
9414d3c95f5SJorgen Lundman return err;
9424d3c95f5SJorgen Lundman }
9434d3c95f5SJorgen Lundman
9444d3c95f5SJorgen Lundman /* XXX */
9454d3c95f5SJorgen Lundman static int
fzap_iterate(dnode_end_t * zap_dnode,zap_phys_t * zap,int (* hook)(const char * name,uint64_t val,struct zfs_data * data),struct zfs_data * data)9464d3c95f5SJorgen Lundman fzap_iterate(dnode_end_t *zap_dnode, zap_phys_t *zap,
9474d3c95f5SJorgen Lundman int (*hook)(const char *name,
9484d3c95f5SJorgen Lundman uint64_t val,
9494d3c95f5SJorgen Lundman struct zfs_data *data),
9504d3c95f5SJorgen Lundman struct zfs_data *data)
9514d3c95f5SJorgen Lundman {
9524d3c95f5SJorgen Lundman zap_leaf_phys_t *l;
9534d3c95f5SJorgen Lundman void *l_in;
9544d3c95f5SJorgen Lundman uint64_t idx, blkid;
9554d3c95f5SJorgen Lundman uint16_t chunk;
9564d3c95f5SJorgen Lundman int blksft = zfs_log2(zfs_to_cpu16(zap_dnode->dn.dn_datablkszsec,
9574d3c95f5SJorgen Lundman zap_dnode->endian) << DNODE_SHIFT);
9584d3c95f5SJorgen Lundman int err;
9594d3c95f5SJorgen Lundman zfs_endian_t endian;
9604d3c95f5SJorgen Lundman
9614d3c95f5SJorgen Lundman if (zap_verify(zap))
9624d3c95f5SJorgen Lundman return 0;
9634d3c95f5SJorgen Lundman
9644d3c95f5SJorgen Lundman /* get block id from index */
9654d3c95f5SJorgen Lundman if (zap->zap_ptrtbl.zt_numblks != 0) {
9664d3c95f5SJorgen Lundman printf("external pointer tables not supported\n");
9674d3c95f5SJorgen Lundman return 0;
9684d3c95f5SJorgen Lundman }
9694d3c95f5SJorgen Lundman /* Get the leaf block */
9704d3c95f5SJorgen Lundman if ((1U << blksft) < sizeof(zap_leaf_phys_t)) {
9714d3c95f5SJorgen Lundman printf("ZAP leaf is too small\n");
9724d3c95f5SJorgen Lundman return 0;
9734d3c95f5SJorgen Lundman }
9744d3c95f5SJorgen Lundman for (idx = 0; idx < zap->zap_ptrtbl.zt_numblks; idx++) {
9754d3c95f5SJorgen Lundman blkid = ((uint64_t *) zap)[idx + (1 << (blksft - 3 - 1))];
9764d3c95f5SJorgen Lundman
9774d3c95f5SJorgen Lundman err = dmu_read(zap_dnode, blkid, &l_in, &endian, data);
9784d3c95f5SJorgen Lundman l = l_in;
9794d3c95f5SJorgen Lundman if (err)
9804d3c95f5SJorgen Lundman continue;
9814d3c95f5SJorgen Lundman
9824d3c95f5SJorgen Lundman /* Verify if this is a valid leaf block */
9834d3c95f5SJorgen Lundman if (zfs_to_cpu64(l->l_hdr.lh_block_type, endian) != ZBT_LEAF) {
9844d3c95f5SJorgen Lundman free(l);
9854d3c95f5SJorgen Lundman continue;
9864d3c95f5SJorgen Lundman }
9874d3c95f5SJorgen Lundman if (zfs_to_cpu32(l->l_hdr.lh_magic, endian) != ZAP_LEAF_MAGIC) {
9884d3c95f5SJorgen Lundman free(l);
9894d3c95f5SJorgen Lundman continue;
9904d3c95f5SJorgen Lundman }
9914d3c95f5SJorgen Lundman
9924d3c95f5SJorgen Lundman for (chunk = 0; chunk < ZAP_LEAF_NUMCHUNKS(blksft); chunk++) {
9934d3c95f5SJorgen Lundman char *buf;
9944d3c95f5SJorgen Lundman struct zap_leaf_array *la;
9954d3c95f5SJorgen Lundman struct zap_leaf_entry *le;
9964d3c95f5SJorgen Lundman uint64_t val;
9974d3c95f5SJorgen Lundman le = ZAP_LEAF_ENTRY(l, blksft, chunk);
9984d3c95f5SJorgen Lundman
9994d3c95f5SJorgen Lundman /* Verify the chunk entry */
10004d3c95f5SJorgen Lundman if (le->le_type != ZAP_CHUNK_ENTRY)
10014d3c95f5SJorgen Lundman continue;
10024d3c95f5SJorgen Lundman
10034d3c95f5SJorgen Lundman buf = malloc(zfs_to_cpu16(le->le_name_length, endian)
10044d3c95f5SJorgen Lundman + 1);
10054d3c95f5SJorgen Lundman if (zap_leaf_array_get(l, endian, blksft, le->le_name_chunk,
10064d3c95f5SJorgen Lundman le->le_name_length, buf)) {
10074d3c95f5SJorgen Lundman free(buf);
10084d3c95f5SJorgen Lundman continue;
10094d3c95f5SJorgen Lundman }
10104d3c95f5SJorgen Lundman buf[le->le_name_length] = 0;
10114d3c95f5SJorgen Lundman
10124d3c95f5SJorgen Lundman if (le->le_int_size != 8
10134d3c95f5SJorgen Lundman || zfs_to_cpu16(le->le_value_length, endian) != 1)
10144d3c95f5SJorgen Lundman continue;
10154d3c95f5SJorgen Lundman
10164d3c95f5SJorgen Lundman /* get the uint64_t property value */
10174d3c95f5SJorgen Lundman la = &ZAP_LEAF_CHUNK(l, blksft, le->le_value_chunk).l_array;
10184d3c95f5SJorgen Lundman val = be64_to_cpu(la->la_array64);
10194d3c95f5SJorgen Lundman if (hook(buf, val, data))
10204d3c95f5SJorgen Lundman return 1;
10214d3c95f5SJorgen Lundman free(buf);
10224d3c95f5SJorgen Lundman }
10234d3c95f5SJorgen Lundman }
10244d3c95f5SJorgen Lundman return 0;
10254d3c95f5SJorgen Lundman }
10264d3c95f5SJorgen Lundman
10274d3c95f5SJorgen Lundman
10284d3c95f5SJorgen Lundman /*
10294d3c95f5SJorgen Lundman * Read in the data of a zap object and find the value for a matching
10304d3c95f5SJorgen Lundman * property name.
10314d3c95f5SJorgen Lundman *
10324d3c95f5SJorgen Lundman */
10334d3c95f5SJorgen Lundman static int
zap_lookup(dnode_end_t * zap_dnode,char * name,uint64_t * val,struct zfs_data * data)10344d3c95f5SJorgen Lundman zap_lookup(dnode_end_t *zap_dnode, char *name, uint64_t *val,
10354d3c95f5SJorgen Lundman struct zfs_data *data)
10364d3c95f5SJorgen Lundman {
10374d3c95f5SJorgen Lundman uint64_t block_type;
10384d3c95f5SJorgen Lundman int size;
10394d3c95f5SJorgen Lundman void *zapbuf;
10404d3c95f5SJorgen Lundman int err;
10414d3c95f5SJorgen Lundman zfs_endian_t endian;
10424d3c95f5SJorgen Lundman
10434d3c95f5SJorgen Lundman /* Read in the first block of the zap object data. */
10444d3c95f5SJorgen Lundman size = zfs_to_cpu16(zap_dnode->dn.dn_datablkszsec,
10454d3c95f5SJorgen Lundman zap_dnode->endian) << SPA_MINBLOCKSHIFT;
10464d3c95f5SJorgen Lundman err = dmu_read(zap_dnode, 0, &zapbuf, &endian, data);
10474d3c95f5SJorgen Lundman if (err)
10484d3c95f5SJorgen Lundman return err;
10494d3c95f5SJorgen Lundman block_type = zfs_to_cpu64(*((uint64_t *) zapbuf), endian);
10504d3c95f5SJorgen Lundman
10514d3c95f5SJorgen Lundman if (block_type == ZBT_MICRO) {
10524d3c95f5SJorgen Lundman err = (mzap_lookup(zapbuf, endian, size, name, val));
10534d3c95f5SJorgen Lundman free(zapbuf);
10544d3c95f5SJorgen Lundman return err;
10554d3c95f5SJorgen Lundman } else if (block_type == ZBT_HEADER) {
10564d3c95f5SJorgen Lundman /* this is a fat zap */
10574d3c95f5SJorgen Lundman err = (fzap_lookup(zap_dnode, zapbuf, name, val, data));
10584d3c95f5SJorgen Lundman free(zapbuf);
10594d3c95f5SJorgen Lundman return err;
10604d3c95f5SJorgen Lundman }
10614d3c95f5SJorgen Lundman
10624d3c95f5SJorgen Lundman printf("unknown ZAP type\n");
1063e183de0dSJorgen Lundman free(zapbuf);
10644d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
10654d3c95f5SJorgen Lundman }
10664d3c95f5SJorgen Lundman
10674d3c95f5SJorgen Lundman static int
zap_iterate(dnode_end_t * zap_dnode,int (* hook)(const char * name,uint64_t val,struct zfs_data * data),struct zfs_data * data)10684d3c95f5SJorgen Lundman zap_iterate(dnode_end_t *zap_dnode,
10694d3c95f5SJorgen Lundman int (*hook)(const char *name, uint64_t val,
10704d3c95f5SJorgen Lundman struct zfs_data *data),
10714d3c95f5SJorgen Lundman struct zfs_data *data)
10724d3c95f5SJorgen Lundman {
10734d3c95f5SJorgen Lundman uint64_t block_type;
10744d3c95f5SJorgen Lundman int size;
10754d3c95f5SJorgen Lundman void *zapbuf;
10764d3c95f5SJorgen Lundman int err;
10774d3c95f5SJorgen Lundman int ret;
10784d3c95f5SJorgen Lundman zfs_endian_t endian;
10794d3c95f5SJorgen Lundman
10804d3c95f5SJorgen Lundman /* Read in the first block of the zap object data. */
10814d3c95f5SJorgen Lundman size = zfs_to_cpu16(zap_dnode->dn.dn_datablkszsec, zap_dnode->endian) << SPA_MINBLOCKSHIFT;
10824d3c95f5SJorgen Lundman err = dmu_read(zap_dnode, 0, &zapbuf, &endian, data);
10834d3c95f5SJorgen Lundman if (err)
10844d3c95f5SJorgen Lundman return 0;
10854d3c95f5SJorgen Lundman block_type = zfs_to_cpu64(*((uint64_t *) zapbuf), endian);
10864d3c95f5SJorgen Lundman
10874d3c95f5SJorgen Lundman if (block_type == ZBT_MICRO) {
10884d3c95f5SJorgen Lundman ret = mzap_iterate(zapbuf, endian, size, hook, data);
10894d3c95f5SJorgen Lundman free(zapbuf);
10904d3c95f5SJorgen Lundman return ret;
10914d3c95f5SJorgen Lundman } else if (block_type == ZBT_HEADER) {
10924d3c95f5SJorgen Lundman /* this is a fat zap */
10934d3c95f5SJorgen Lundman ret = fzap_iterate(zap_dnode, zapbuf, hook, data);
10944d3c95f5SJorgen Lundman free(zapbuf);
10954d3c95f5SJorgen Lundman return ret;
10964d3c95f5SJorgen Lundman }
10974d3c95f5SJorgen Lundman printf("unknown ZAP type\n");
1098e183de0dSJorgen Lundman free(zapbuf);
10994d3c95f5SJorgen Lundman return 0;
11004d3c95f5SJorgen Lundman }
11014d3c95f5SJorgen Lundman
11024d3c95f5SJorgen Lundman
11034d3c95f5SJorgen Lundman /*
11044d3c95f5SJorgen Lundman * Get the dnode of an object number from the metadnode of an object set.
11054d3c95f5SJorgen Lundman *
11064d3c95f5SJorgen Lundman * Input
11074d3c95f5SJorgen Lundman * mdn - metadnode to get the object dnode
11084d3c95f5SJorgen Lundman * objnum - object number for the object dnode
11094d3c95f5SJorgen Lundman * buf - data buffer that holds the returning dnode
11104d3c95f5SJorgen Lundman */
11114d3c95f5SJorgen Lundman static int
dnode_get(dnode_end_t * mdn,uint64_t objnum,uint8_t type,dnode_end_t * buf,struct zfs_data * data)11124d3c95f5SJorgen Lundman dnode_get(dnode_end_t *mdn, uint64_t objnum, uint8_t type,
11134d3c95f5SJorgen Lundman dnode_end_t *buf, struct zfs_data *data)
11144d3c95f5SJorgen Lundman {
11154d3c95f5SJorgen Lundman uint64_t blkid, blksz; /* the block id this object dnode is in */
11164d3c95f5SJorgen Lundman int epbs; /* shift of number of dnodes in a block */
11174d3c95f5SJorgen Lundman int idx; /* index within a block */
11184d3c95f5SJorgen Lundman void *dnbuf;
11194d3c95f5SJorgen Lundman int err;
11204d3c95f5SJorgen Lundman zfs_endian_t endian;
11214d3c95f5SJorgen Lundman
11224d3c95f5SJorgen Lundman blksz = zfs_to_cpu16(mdn->dn.dn_datablkszsec,
11234d3c95f5SJorgen Lundman mdn->endian) << SPA_MINBLOCKSHIFT;
11244d3c95f5SJorgen Lundman
11254d3c95f5SJorgen Lundman epbs = zfs_log2(blksz) - DNODE_SHIFT;
11264d3c95f5SJorgen Lundman blkid = objnum >> epbs;
11274d3c95f5SJorgen Lundman idx = objnum & ((1 << epbs) - 1);
11284d3c95f5SJorgen Lundman
11294d3c95f5SJorgen Lundman if (data->dnode_buf != NULL && memcmp(data->dnode_mdn, mdn,
11304d3c95f5SJorgen Lundman sizeof(*mdn)) == 0
11314d3c95f5SJorgen Lundman && objnum >= data->dnode_start && objnum < data->dnode_end) {
11324d3c95f5SJorgen Lundman memmove(&(buf->dn), &(data->dnode_buf)[idx], DNODE_SIZE);
11334d3c95f5SJorgen Lundman buf->endian = data->dnode_endian;
11344d3c95f5SJorgen Lundman if (type && buf->dn.dn_type != type) {
11354d3c95f5SJorgen Lundman printf("incorrect dnode type: %02X != %02x\n", buf->dn.dn_type, type);
11364d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
11374d3c95f5SJorgen Lundman }
11384d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
11394d3c95f5SJorgen Lundman }
11404d3c95f5SJorgen Lundman
11414d3c95f5SJorgen Lundman err = dmu_read(mdn, blkid, &dnbuf, &endian, data);
11424d3c95f5SJorgen Lundman if (err)
11434d3c95f5SJorgen Lundman return err;
11444d3c95f5SJorgen Lundman
11454d3c95f5SJorgen Lundman free(data->dnode_buf);
11464d3c95f5SJorgen Lundman free(data->dnode_mdn);
11474d3c95f5SJorgen Lundman data->dnode_mdn = malloc(sizeof(*mdn));
11484d3c95f5SJorgen Lundman if (!data->dnode_mdn) {
11494d3c95f5SJorgen Lundman data->dnode_buf = 0;
11504d3c95f5SJorgen Lundman } else {
11514d3c95f5SJorgen Lundman memcpy(data->dnode_mdn, mdn, sizeof(*mdn));
11524d3c95f5SJorgen Lundman data->dnode_buf = dnbuf;
11534d3c95f5SJorgen Lundman data->dnode_start = blkid << epbs;
11544d3c95f5SJorgen Lundman data->dnode_end = (blkid + 1) << epbs;
11554d3c95f5SJorgen Lundman data->dnode_endian = endian;
11564d3c95f5SJorgen Lundman }
11574d3c95f5SJorgen Lundman
11584d3c95f5SJorgen Lundman memmove(&(buf->dn), (dnode_phys_t *) dnbuf + idx, DNODE_SIZE);
11594d3c95f5SJorgen Lundman buf->endian = endian;
11604d3c95f5SJorgen Lundman if (type && buf->dn.dn_type != type) {
11614d3c95f5SJorgen Lundman printf("incorrect dnode type\n");
11624d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
11634d3c95f5SJorgen Lundman }
11644d3c95f5SJorgen Lundman
11654d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
11664d3c95f5SJorgen Lundman }
11674d3c95f5SJorgen Lundman
11684d3c95f5SJorgen Lundman /*
11694d3c95f5SJorgen Lundman * Get the file dnode for a given file name where mdn is the meta dnode
11704d3c95f5SJorgen Lundman * for this ZFS object set. When found, place the file dnode in dn.
11714d3c95f5SJorgen Lundman * The 'path' argument will be mangled.
11724d3c95f5SJorgen Lundman *
11734d3c95f5SJorgen Lundman */
11744d3c95f5SJorgen Lundman static int
dnode_get_path(dnode_end_t * mdn,const char * path_in,dnode_end_t * dn,struct zfs_data * data)11754d3c95f5SJorgen Lundman dnode_get_path(dnode_end_t *mdn, const char *path_in, dnode_end_t *dn,
11764d3c95f5SJorgen Lundman struct zfs_data *data)
11774d3c95f5SJorgen Lundman {
11784d3c95f5SJorgen Lundman uint64_t objnum, version;
11794d3c95f5SJorgen Lundman char *cname, ch;
11804d3c95f5SJorgen Lundman int err = ZFS_ERR_NONE;
11814d3c95f5SJorgen Lundman char *path, *path_buf;
11824d3c95f5SJorgen Lundman struct dnode_chain {
11834d3c95f5SJorgen Lundman struct dnode_chain *next;
11844d3c95f5SJorgen Lundman dnode_end_t dn;
11854d3c95f5SJorgen Lundman };
11864d3c95f5SJorgen Lundman struct dnode_chain *dnode_path = 0, *dn_new, *root;
11874d3c95f5SJorgen Lundman
11884d3c95f5SJorgen Lundman dn_new = malloc(sizeof(*dn_new));
11894d3c95f5SJorgen Lundman if (!dn_new)
11904d3c95f5SJorgen Lundman return ZFS_ERR_OUT_OF_MEMORY;
11914d3c95f5SJorgen Lundman dn_new->next = 0;
11924d3c95f5SJorgen Lundman dnode_path = root = dn_new;
11934d3c95f5SJorgen Lundman
11944d3c95f5SJorgen Lundman err = dnode_get(mdn, MASTER_NODE_OBJ, DMU_OT_MASTER_NODE,
11954d3c95f5SJorgen Lundman &(dnode_path->dn), data);
11964d3c95f5SJorgen Lundman if (err) {
11974d3c95f5SJorgen Lundman free(dn_new);
11984d3c95f5SJorgen Lundman return err;
11994d3c95f5SJorgen Lundman }
12004d3c95f5SJorgen Lundman
12014d3c95f5SJorgen Lundman err = zap_lookup(&(dnode_path->dn), ZPL_VERSION_STR, &version, data);
12024d3c95f5SJorgen Lundman if (err) {
12034d3c95f5SJorgen Lundman free(dn_new);
12044d3c95f5SJorgen Lundman return err;
12054d3c95f5SJorgen Lundman }
12064d3c95f5SJorgen Lundman if (version > ZPL_VERSION) {
12074d3c95f5SJorgen Lundman free(dn_new);
12084d3c95f5SJorgen Lundman printf("too new ZPL version\n");
12094d3c95f5SJorgen Lundman return ZFS_ERR_NOT_IMPLEMENTED_YET;
12104d3c95f5SJorgen Lundman }
12114d3c95f5SJorgen Lundman
12124d3c95f5SJorgen Lundman err = zap_lookup(&(dnode_path->dn), ZFS_ROOT_OBJ, &objnum, data);
12134d3c95f5SJorgen Lundman if (err) {
12144d3c95f5SJorgen Lundman free(dn_new);
12154d3c95f5SJorgen Lundman return err;
12164d3c95f5SJorgen Lundman }
12174d3c95f5SJorgen Lundman
12184d3c95f5SJorgen Lundman err = dnode_get(mdn, objnum, 0, &(dnode_path->dn), data);
12194d3c95f5SJorgen Lundman if (err) {
12204d3c95f5SJorgen Lundman free(dn_new);
12214d3c95f5SJorgen Lundman return err;
12224d3c95f5SJorgen Lundman }
12234d3c95f5SJorgen Lundman
12244d3c95f5SJorgen Lundman path = path_buf = strdup(path_in);
12254d3c95f5SJorgen Lundman if (!path_buf) {
12264d3c95f5SJorgen Lundman free(dn_new);
12274d3c95f5SJorgen Lundman return ZFS_ERR_OUT_OF_MEMORY;
12284d3c95f5SJorgen Lundman }
12294d3c95f5SJorgen Lundman
12304d3c95f5SJorgen Lundman while (1) {
12314d3c95f5SJorgen Lundman /* skip leading slashes */
12324d3c95f5SJorgen Lundman while (*path == '/')
12334d3c95f5SJorgen Lundman path++;
12344d3c95f5SJorgen Lundman if (!*path)
12354d3c95f5SJorgen Lundman break;
12364d3c95f5SJorgen Lundman /* get the next component name */
12374d3c95f5SJorgen Lundman cname = path;
12384d3c95f5SJorgen Lundman while (*path && *path != '/')
12394d3c95f5SJorgen Lundman path++;
12404d3c95f5SJorgen Lundman /* Skip dot. */
12414d3c95f5SJorgen Lundman if (cname + 1 == path && cname[0] == '.')
12424d3c95f5SJorgen Lundman continue;
12434d3c95f5SJorgen Lundman /* Handle double dot. */
12444d3c95f5SJorgen Lundman if (cname + 2 == path && cname[0] == '.' && cname[1] == '.') {
12454d3c95f5SJorgen Lundman if (dn_new->next) {
12464d3c95f5SJorgen Lundman dn_new = dnode_path;
12474d3c95f5SJorgen Lundman dnode_path = dn_new->next;
12484d3c95f5SJorgen Lundman free(dn_new);
12494d3c95f5SJorgen Lundman } else {
12504d3c95f5SJorgen Lundman printf("can't resolve ..\n");
12514d3c95f5SJorgen Lundman err = ZFS_ERR_FILE_NOT_FOUND;
12524d3c95f5SJorgen Lundman break;
12534d3c95f5SJorgen Lundman }
12544d3c95f5SJorgen Lundman continue;
12554d3c95f5SJorgen Lundman }
12564d3c95f5SJorgen Lundman
12574d3c95f5SJorgen Lundman ch = *path;
12584d3c95f5SJorgen Lundman *path = 0; /* ensure null termination */
12594d3c95f5SJorgen Lundman
12604d3c95f5SJorgen Lundman if (dnode_path->dn.dn.dn_type != DMU_OT_DIRECTORY_CONTENTS) {
12614d3c95f5SJorgen Lundman free(path_buf);
12624d3c95f5SJorgen Lundman printf("not a directory\n");
12634d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FILE_TYPE;
12644d3c95f5SJorgen Lundman }
12654d3c95f5SJorgen Lundman err = zap_lookup(&(dnode_path->dn), cname, &objnum, data);
12664d3c95f5SJorgen Lundman if (err)
12674d3c95f5SJorgen Lundman break;
12684d3c95f5SJorgen Lundman
12694d3c95f5SJorgen Lundman dn_new = malloc(sizeof(*dn_new));
12704d3c95f5SJorgen Lundman if (!dn_new) {
12714d3c95f5SJorgen Lundman err = ZFS_ERR_OUT_OF_MEMORY;
12724d3c95f5SJorgen Lundman break;
12734d3c95f5SJorgen Lundman }
12744d3c95f5SJorgen Lundman dn_new->next = dnode_path;
12754d3c95f5SJorgen Lundman dnode_path = dn_new;
12764d3c95f5SJorgen Lundman
12774d3c95f5SJorgen Lundman objnum = ZFS_DIRENT_OBJ(objnum);
12784d3c95f5SJorgen Lundman err = dnode_get(mdn, objnum, 0, &(dnode_path->dn), data);
12794d3c95f5SJorgen Lundman if (err)
12804d3c95f5SJorgen Lundman break;
12814d3c95f5SJorgen Lundman
12824d3c95f5SJorgen Lundman *path = ch;
12834d3c95f5SJorgen Lundman }
12844d3c95f5SJorgen Lundman
12854d3c95f5SJorgen Lundman if (!err)
12864d3c95f5SJorgen Lundman memcpy(dn, &(dnode_path->dn), sizeof(*dn));
12874d3c95f5SJorgen Lundman
12884d3c95f5SJorgen Lundman while (dnode_path) {
12894d3c95f5SJorgen Lundman dn_new = dnode_path->next;
12904d3c95f5SJorgen Lundman free(dnode_path);
12914d3c95f5SJorgen Lundman dnode_path = dn_new;
12924d3c95f5SJorgen Lundman }
12934d3c95f5SJorgen Lundman free(path_buf);
12944d3c95f5SJorgen Lundman return err;
12954d3c95f5SJorgen Lundman }
12964d3c95f5SJorgen Lundman
12974d3c95f5SJorgen Lundman
12984d3c95f5SJorgen Lundman /*
12994d3c95f5SJorgen Lundman * Given a MOS metadnode, get the metadnode of a given filesystem name (fsname),
13004d3c95f5SJorgen Lundman * e.g. pool/rootfs, or a given object number (obj), e.g. the object number
13014d3c95f5SJorgen Lundman * of pool/rootfs.
13024d3c95f5SJorgen Lundman *
13034d3c95f5SJorgen Lundman * If no fsname and no obj are given, return the DSL_DIR metadnode.
13044d3c95f5SJorgen Lundman * If fsname is given, return its metadnode and its matching object number.
13054d3c95f5SJorgen Lundman * If only obj is given, return the metadnode for this object number.
13064d3c95f5SJorgen Lundman *
13074d3c95f5SJorgen Lundman */
13084d3c95f5SJorgen Lundman static int
get_filesystem_dnode(dnode_end_t * mosmdn,char * fsname,dnode_end_t * mdn,struct zfs_data * data)13094d3c95f5SJorgen Lundman get_filesystem_dnode(dnode_end_t *mosmdn, char *fsname,
13104d3c95f5SJorgen Lundman dnode_end_t *mdn, struct zfs_data *data)
13114d3c95f5SJorgen Lundman {
13124d3c95f5SJorgen Lundman uint64_t objnum;
13134d3c95f5SJorgen Lundman int err;
13144d3c95f5SJorgen Lundman
13154d3c95f5SJorgen Lundman err = dnode_get(mosmdn, DMU_POOL_DIRECTORY_OBJECT,
13164d3c95f5SJorgen Lundman DMU_OT_OBJECT_DIRECTORY, mdn, data);
13174d3c95f5SJorgen Lundman if (err)
13184d3c95f5SJorgen Lundman return err;
13194d3c95f5SJorgen Lundman
13204d3c95f5SJorgen Lundman err = zap_lookup(mdn, DMU_POOL_ROOT_DATASET, &objnum, data);
13214d3c95f5SJorgen Lundman if (err)
13224d3c95f5SJorgen Lundman return err;
13234d3c95f5SJorgen Lundman
13244d3c95f5SJorgen Lundman err = dnode_get(mosmdn, objnum, DMU_OT_DSL_DIR, mdn, data);
13254d3c95f5SJorgen Lundman if (err)
13264d3c95f5SJorgen Lundman return err;
13274d3c95f5SJorgen Lundman
13284d3c95f5SJorgen Lundman while (*fsname) {
13294d3c95f5SJorgen Lundman uint64_t childobj;
13304d3c95f5SJorgen Lundman char *cname, ch;
13314d3c95f5SJorgen Lundman
13324d3c95f5SJorgen Lundman while (*fsname == '/')
13334d3c95f5SJorgen Lundman fsname++;
13344d3c95f5SJorgen Lundman
13354d3c95f5SJorgen Lundman if (!*fsname || *fsname == '@')
13364d3c95f5SJorgen Lundman break;
13374d3c95f5SJorgen Lundman
13384d3c95f5SJorgen Lundman cname = fsname;
13394d3c95f5SJorgen Lundman while (*fsname && !isspace(*fsname) && *fsname != '/')
13404d3c95f5SJorgen Lundman fsname++;
13414d3c95f5SJorgen Lundman ch = *fsname;
13424d3c95f5SJorgen Lundman *fsname = 0;
13434d3c95f5SJorgen Lundman
13444d3c95f5SJorgen Lundman childobj = zfs_to_cpu64((((dsl_dir_phys_t *) DN_BONUS(&mdn->dn)))->dd_child_dir_zapobj, mdn->endian);
13454d3c95f5SJorgen Lundman err = dnode_get(mosmdn, childobj,
13464d3c95f5SJorgen Lundman DMU_OT_DSL_DIR_CHILD_MAP, mdn, data);
13474d3c95f5SJorgen Lundman if (err)
13484d3c95f5SJorgen Lundman return err;
13494d3c95f5SJorgen Lundman
13504d3c95f5SJorgen Lundman err = zap_lookup(mdn, cname, &objnum, data);
13514d3c95f5SJorgen Lundman if (err)
13524d3c95f5SJorgen Lundman return err;
13534d3c95f5SJorgen Lundman
13544d3c95f5SJorgen Lundman err = dnode_get(mosmdn, objnum, DMU_OT_DSL_DIR, mdn, data);
13554d3c95f5SJorgen Lundman if (err)
13564d3c95f5SJorgen Lundman return err;
13574d3c95f5SJorgen Lundman
13584d3c95f5SJorgen Lundman *fsname = ch;
13594d3c95f5SJorgen Lundman }
13604d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
13614d3c95f5SJorgen Lundman }
13624d3c95f5SJorgen Lundman
13634d3c95f5SJorgen Lundman static int
make_mdn(dnode_end_t * mdn,struct zfs_data * data)13644d3c95f5SJorgen Lundman make_mdn(dnode_end_t *mdn, struct zfs_data *data)
13654d3c95f5SJorgen Lundman {
13664d3c95f5SJorgen Lundman void *osp;
13674d3c95f5SJorgen Lundman blkptr_t *bp;
13684d3c95f5SJorgen Lundman size_t ospsize;
13694d3c95f5SJorgen Lundman int err;
13704d3c95f5SJorgen Lundman
13714d3c95f5SJorgen Lundman bp = &(((dsl_dataset_phys_t *) DN_BONUS(&mdn->dn))->ds_bp);
13724d3c95f5SJorgen Lundman err = zio_read(bp, mdn->endian, &osp, &ospsize, data);
13734d3c95f5SJorgen Lundman if (err)
13744d3c95f5SJorgen Lundman return err;
13754d3c95f5SJorgen Lundman if (ospsize < OBJSET_PHYS_SIZE_V14) {
13764d3c95f5SJorgen Lundman free(osp);
13774d3c95f5SJorgen Lundman printf("too small osp\n");
13784d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
13794d3c95f5SJorgen Lundman }
13804d3c95f5SJorgen Lundman
13814d3c95f5SJorgen Lundman mdn->endian = (zfs_to_cpu64(bp->blk_prop, mdn->endian)>>63) & 1;
13824d3c95f5SJorgen Lundman memmove((char *) &(mdn->dn),
13834d3c95f5SJorgen Lundman (char *) &((objset_phys_t *) osp)->os_meta_dnode, DNODE_SIZE);
13844d3c95f5SJorgen Lundman free(osp);
13854d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
13864d3c95f5SJorgen Lundman }
13874d3c95f5SJorgen Lundman
13884d3c95f5SJorgen Lundman static int
dnode_get_fullpath(const char * fullpath,dnode_end_t * mdn,uint64_t * mdnobj,dnode_end_t * dn,int * isfs,struct zfs_data * data)13894d3c95f5SJorgen Lundman dnode_get_fullpath(const char *fullpath, dnode_end_t *mdn,
13904d3c95f5SJorgen Lundman uint64_t *mdnobj, dnode_end_t *dn, int *isfs,
13914d3c95f5SJorgen Lundman struct zfs_data *data)
13924d3c95f5SJorgen Lundman {
13934d3c95f5SJorgen Lundman char *fsname, *snapname;
13944d3c95f5SJorgen Lundman const char *ptr_at, *filename;
13954d3c95f5SJorgen Lundman uint64_t headobj;
13964d3c95f5SJorgen Lundman int err;
13974d3c95f5SJorgen Lundman
13984d3c95f5SJorgen Lundman ptr_at = strchr(fullpath, '@');
13994d3c95f5SJorgen Lundman if (!ptr_at) {
14004d3c95f5SJorgen Lundman *isfs = 1;
14014d3c95f5SJorgen Lundman filename = 0;
14024d3c95f5SJorgen Lundman snapname = 0;
14034d3c95f5SJorgen Lundman fsname = strdup(fullpath);
14044d3c95f5SJorgen Lundman } else {
14054d3c95f5SJorgen Lundman const char *ptr_slash = strchr(ptr_at, '/');
14064d3c95f5SJorgen Lundman
14074d3c95f5SJorgen Lundman *isfs = 0;
14084d3c95f5SJorgen Lundman fsname = malloc(ptr_at - fullpath + 1);
14094d3c95f5SJorgen Lundman if (!fsname)
14104d3c95f5SJorgen Lundman return ZFS_ERR_OUT_OF_MEMORY;
14114d3c95f5SJorgen Lundman memcpy(fsname, fullpath, ptr_at - fullpath);
14124d3c95f5SJorgen Lundman fsname[ptr_at - fullpath] = 0;
14134d3c95f5SJorgen Lundman if (ptr_at[1] && ptr_at[1] != '/') {
14144d3c95f5SJorgen Lundman snapname = malloc(ptr_slash - ptr_at);
14154d3c95f5SJorgen Lundman if (!snapname) {
14164d3c95f5SJorgen Lundman free(fsname);
14174d3c95f5SJorgen Lundman return ZFS_ERR_OUT_OF_MEMORY;
14184d3c95f5SJorgen Lundman }
14194d3c95f5SJorgen Lundman memcpy(snapname, ptr_at + 1, ptr_slash - ptr_at - 1);
14204d3c95f5SJorgen Lundman snapname[ptr_slash - ptr_at - 1] = 0;
14214d3c95f5SJorgen Lundman } else {
14224d3c95f5SJorgen Lundman snapname = 0;
14234d3c95f5SJorgen Lundman }
14244d3c95f5SJorgen Lundman if (ptr_slash)
14254d3c95f5SJorgen Lundman filename = ptr_slash;
14264d3c95f5SJorgen Lundman else
14274d3c95f5SJorgen Lundman filename = "/";
14284d3c95f5SJorgen Lundman printf("zfs fsname = '%s' snapname='%s' filename = '%s'\n",
14294d3c95f5SJorgen Lundman fsname, snapname, filename);
14304d3c95f5SJorgen Lundman }
14314d3c95f5SJorgen Lundman
14324d3c95f5SJorgen Lundman
14334d3c95f5SJorgen Lundman err = get_filesystem_dnode(&(data->mos), fsname, dn, data);
14344d3c95f5SJorgen Lundman
14354d3c95f5SJorgen Lundman if (err) {
14364d3c95f5SJorgen Lundman free(fsname);
14374d3c95f5SJorgen Lundman free(snapname);
14384d3c95f5SJorgen Lundman return err;
14394d3c95f5SJorgen Lundman }
14404d3c95f5SJorgen Lundman
14414d3c95f5SJorgen Lundman headobj = zfs_to_cpu64(((dsl_dir_phys_t *) DN_BONUS(&dn->dn))->dd_head_dataset_obj, dn->endian);
14424d3c95f5SJorgen Lundman
14434d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), headobj, DMU_OT_DSL_DATASET, mdn, data);
14444d3c95f5SJorgen Lundman if (err) {
14454d3c95f5SJorgen Lundman free(fsname);
14464d3c95f5SJorgen Lundman free(snapname);
14474d3c95f5SJorgen Lundman return err;
14484d3c95f5SJorgen Lundman }
14494d3c95f5SJorgen Lundman
14504d3c95f5SJorgen Lundman if (snapname) {
14514d3c95f5SJorgen Lundman uint64_t snapobj;
14524d3c95f5SJorgen Lundman
14534d3c95f5SJorgen Lundman snapobj = zfs_to_cpu64(((dsl_dataset_phys_t *) DN_BONUS(&mdn->dn))->ds_snapnames_zapobj, mdn->endian);
14544d3c95f5SJorgen Lundman
14554d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), snapobj,
14564d3c95f5SJorgen Lundman DMU_OT_DSL_DS_SNAP_MAP, mdn, data);
14574d3c95f5SJorgen Lundman if (!err)
14584d3c95f5SJorgen Lundman err = zap_lookup(mdn, snapname, &headobj, data);
14594d3c95f5SJorgen Lundman if (!err)
14604d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), headobj, DMU_OT_DSL_DATASET, mdn, data);
14614d3c95f5SJorgen Lundman if (err) {
14624d3c95f5SJorgen Lundman free(fsname);
14634d3c95f5SJorgen Lundman free(snapname);
14644d3c95f5SJorgen Lundman return err;
14654d3c95f5SJorgen Lundman }
14664d3c95f5SJorgen Lundman }
14674d3c95f5SJorgen Lundman
14684d3c95f5SJorgen Lundman if (mdnobj)
14694d3c95f5SJorgen Lundman *mdnobj = headobj;
14704d3c95f5SJorgen Lundman
14714d3c95f5SJorgen Lundman make_mdn(mdn, data);
14724d3c95f5SJorgen Lundman
14734d3c95f5SJorgen Lundman if (*isfs) {
14744d3c95f5SJorgen Lundman free(fsname);
14754d3c95f5SJorgen Lundman free(snapname);
14764d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
14774d3c95f5SJorgen Lundman }
14784d3c95f5SJorgen Lundman err = dnode_get_path(mdn, filename, dn, data);
14794d3c95f5SJorgen Lundman free(fsname);
14804d3c95f5SJorgen Lundman free(snapname);
14814d3c95f5SJorgen Lundman return err;
14824d3c95f5SJorgen Lundman }
14834d3c95f5SJorgen Lundman
14844d3c95f5SJorgen Lundman /*
14854d3c95f5SJorgen Lundman * For a given XDR packed nvlist, verify the first 4 bytes and move on.
14864d3c95f5SJorgen Lundman *
14874d3c95f5SJorgen Lundman * An XDR packed nvlist is encoded as (comments from nvs_xdr_create) :
14884d3c95f5SJorgen Lundman *
14894d3c95f5SJorgen Lundman * encoding method/host endian (4 bytes)
14904d3c95f5SJorgen Lundman * nvl_version (4 bytes)
14914d3c95f5SJorgen Lundman * nvl_nvflag (4 bytes)
14924d3c95f5SJorgen Lundman * encoded nvpairs:
14934d3c95f5SJorgen Lundman * encoded size of the nvpair (4 bytes)
14944d3c95f5SJorgen Lundman * decoded size of the nvpair (4 bytes)
14954d3c95f5SJorgen Lundman * name string size (4 bytes)
14964d3c95f5SJorgen Lundman * name string data (sizeof(NV_ALIGN4(string))
14974d3c95f5SJorgen Lundman * data type (4 bytes)
14984d3c95f5SJorgen Lundman * # of elements in the nvpair (4 bytes)
14994d3c95f5SJorgen Lundman * data
15004d3c95f5SJorgen Lundman * 2 zero's for the last nvpair
15014d3c95f5SJorgen Lundman * (end of the entire list) (8 bytes)
15024d3c95f5SJorgen Lundman *
15034d3c95f5SJorgen Lundman */
15044d3c95f5SJorgen Lundman
15054d3c95f5SJorgen Lundman static int
nvlist_find_value(char * nvlist,char * name,int valtype,char ** val,size_t * size_out,size_t * nelm_out)15064d3c95f5SJorgen Lundman nvlist_find_value(char *nvlist, char *name, int valtype, char **val,
15074d3c95f5SJorgen Lundman size_t *size_out, size_t *nelm_out)
15084d3c95f5SJorgen Lundman {
15094d3c95f5SJorgen Lundman int name_len, type, encode_size;
15104d3c95f5SJorgen Lundman char *nvpair, *nvp_name;
15114d3c95f5SJorgen Lundman
15124d3c95f5SJorgen Lundman /* Verify if the 1st and 2nd byte in the nvlist are valid. */
15134d3c95f5SJorgen Lundman /* NOTE: independently of what endianness header announces all
15144d3c95f5SJorgen Lundman subsequent values are big-endian. */
15154d3c95f5SJorgen Lundman if (nvlist[0] != NV_ENCODE_XDR || (nvlist[1] != NV_LITTLE_ENDIAN
15164d3c95f5SJorgen Lundman && nvlist[1] != NV_BIG_ENDIAN)) {
15174d3c95f5SJorgen Lundman printf("zfs incorrect nvlist header\n");
15184d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
15194d3c95f5SJorgen Lundman }
15204d3c95f5SJorgen Lundman
15214d3c95f5SJorgen Lundman /* skip the header, nvl_version, and nvl_nvflag */
15224d3c95f5SJorgen Lundman nvlist = nvlist + 4 * 3;
15234d3c95f5SJorgen Lundman /*
15244d3c95f5SJorgen Lundman * Loop thru the nvpair list
15254d3c95f5SJorgen Lundman * The XDR representation of an integer is in big-endian byte order.
15264d3c95f5SJorgen Lundman */
15274d3c95f5SJorgen Lundman while ((encode_size = be32_to_cpu(*(uint32_t *) nvlist))) {
15284d3c95f5SJorgen Lundman int nelm;
15294d3c95f5SJorgen Lundman
15304d3c95f5SJorgen Lundman nvpair = nvlist + 4 * 2; /* skip the encode/decode size */
15314d3c95f5SJorgen Lundman
15324d3c95f5SJorgen Lundman name_len = be32_to_cpu(*(uint32_t *) nvpair);
15334d3c95f5SJorgen Lundman nvpair += 4;
15344d3c95f5SJorgen Lundman
15354d3c95f5SJorgen Lundman nvp_name = nvpair;
15364d3c95f5SJorgen Lundman nvpair = nvpair + ((name_len + 3) & ~3); /* align */
15374d3c95f5SJorgen Lundman
15384d3c95f5SJorgen Lundman type = be32_to_cpu(*(uint32_t *) nvpair);
15394d3c95f5SJorgen Lundman nvpair += 4;
15404d3c95f5SJorgen Lundman
15414d3c95f5SJorgen Lundman nelm = be32_to_cpu(*(uint32_t *) nvpair);
15424d3c95f5SJorgen Lundman if (nelm < 1) {
15434d3c95f5SJorgen Lundman printf("empty nvpair\n");
15444d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
15454d3c95f5SJorgen Lundman }
15464d3c95f5SJorgen Lundman
15474d3c95f5SJorgen Lundman nvpair += 4;
15484d3c95f5SJorgen Lundman
15494d3c95f5SJorgen Lundman if ((strncmp(nvp_name, name, name_len) == 0) && type == valtype) {
15504d3c95f5SJorgen Lundman *val = nvpair;
15514d3c95f5SJorgen Lundman *size_out = encode_size;
15524d3c95f5SJorgen Lundman if (nelm_out)
15534d3c95f5SJorgen Lundman *nelm_out = nelm;
15544d3c95f5SJorgen Lundman return 1;
15554d3c95f5SJorgen Lundman }
15564d3c95f5SJorgen Lundman
15574d3c95f5SJorgen Lundman nvlist += encode_size; /* goto the next nvpair */
15584d3c95f5SJorgen Lundman }
15594d3c95f5SJorgen Lundman return 0;
15604d3c95f5SJorgen Lundman }
15614d3c95f5SJorgen Lundman
15624d3c95f5SJorgen Lundman int
zfs_nvlist_lookup_uint64(char * nvlist,char * name,uint64_t * out)15634d3c95f5SJorgen Lundman zfs_nvlist_lookup_uint64(char *nvlist, char *name, uint64_t *out)
15644d3c95f5SJorgen Lundman {
15654d3c95f5SJorgen Lundman char *nvpair;
15664d3c95f5SJorgen Lundman size_t size;
15674d3c95f5SJorgen Lundman int found;
15684d3c95f5SJorgen Lundman
15694d3c95f5SJorgen Lundman found = nvlist_find_value(nvlist, name, DATA_TYPE_UINT64, &nvpair, &size, 0);
15704d3c95f5SJorgen Lundman if (!found)
15714d3c95f5SJorgen Lundman return 0;
15724d3c95f5SJorgen Lundman if (size < sizeof(uint64_t)) {
15734d3c95f5SJorgen Lundman printf("invalid uint64\n");
15744d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
15754d3c95f5SJorgen Lundman }
15764d3c95f5SJorgen Lundman
15774d3c95f5SJorgen Lundman *out = be64_to_cpu(*(uint64_t *) nvpair);
15784d3c95f5SJorgen Lundman return 1;
15794d3c95f5SJorgen Lundman }
15804d3c95f5SJorgen Lundman
15814d3c95f5SJorgen Lundman char *
zfs_nvlist_lookup_string(char * nvlist,char * name)15824d3c95f5SJorgen Lundman zfs_nvlist_lookup_string(char *nvlist, char *name)
15834d3c95f5SJorgen Lundman {
15844d3c95f5SJorgen Lundman char *nvpair;
15854d3c95f5SJorgen Lundman char *ret;
15864d3c95f5SJorgen Lundman size_t slen;
15874d3c95f5SJorgen Lundman size_t size;
15884d3c95f5SJorgen Lundman int found;
15894d3c95f5SJorgen Lundman
15904d3c95f5SJorgen Lundman found = nvlist_find_value(nvlist, name, DATA_TYPE_STRING, &nvpair, &size, 0);
15914d3c95f5SJorgen Lundman if (!found)
15924d3c95f5SJorgen Lundman return 0;
15934d3c95f5SJorgen Lundman if (size < 4) {
15944d3c95f5SJorgen Lundman printf("invalid string\n");
15954d3c95f5SJorgen Lundman return 0;
15964d3c95f5SJorgen Lundman }
15974d3c95f5SJorgen Lundman slen = be32_to_cpu(*(uint32_t *) nvpair);
15984d3c95f5SJorgen Lundman if (slen > size - 4)
15994d3c95f5SJorgen Lundman slen = size - 4;
16004d3c95f5SJorgen Lundman ret = malloc(slen + 1);
16014d3c95f5SJorgen Lundman if (!ret)
16024d3c95f5SJorgen Lundman return 0;
16034d3c95f5SJorgen Lundman memcpy(ret, nvpair + 4, slen);
16044d3c95f5SJorgen Lundman ret[slen] = 0;
16054d3c95f5SJorgen Lundman return ret;
16064d3c95f5SJorgen Lundman }
16074d3c95f5SJorgen Lundman
16084d3c95f5SJorgen Lundman char *
zfs_nvlist_lookup_nvlist(char * nvlist,char * name)16094d3c95f5SJorgen Lundman zfs_nvlist_lookup_nvlist(char *nvlist, char *name)
16104d3c95f5SJorgen Lundman {
16114d3c95f5SJorgen Lundman char *nvpair;
16124d3c95f5SJorgen Lundman char *ret;
16134d3c95f5SJorgen Lundman size_t size;
16144d3c95f5SJorgen Lundman int found;
16154d3c95f5SJorgen Lundman
16164d3c95f5SJorgen Lundman found = nvlist_find_value(nvlist, name, DATA_TYPE_NVLIST, &nvpair,
16174d3c95f5SJorgen Lundman &size, 0);
16184d3c95f5SJorgen Lundman if (!found)
16194d3c95f5SJorgen Lundman return 0;
16204d3c95f5SJorgen Lundman ret = calloc(1, size + 3 * sizeof(uint32_t));
16214d3c95f5SJorgen Lundman if (!ret)
16224d3c95f5SJorgen Lundman return 0;
16234d3c95f5SJorgen Lundman memcpy(ret, nvlist, sizeof(uint32_t));
16244d3c95f5SJorgen Lundman
16254d3c95f5SJorgen Lundman memcpy(ret + sizeof(uint32_t), nvpair, size);
16264d3c95f5SJorgen Lundman return ret;
16274d3c95f5SJorgen Lundman }
16284d3c95f5SJorgen Lundman
16294d3c95f5SJorgen Lundman int
zfs_nvlist_lookup_nvlist_array_get_nelm(char * nvlist,char * name)16304d3c95f5SJorgen Lundman zfs_nvlist_lookup_nvlist_array_get_nelm(char *nvlist, char *name)
16314d3c95f5SJorgen Lundman {
16324d3c95f5SJorgen Lundman char *nvpair;
16334d3c95f5SJorgen Lundman size_t nelm, size;
16344d3c95f5SJorgen Lundman int found;
16354d3c95f5SJorgen Lundman
16364d3c95f5SJorgen Lundman found = nvlist_find_value(nvlist, name, DATA_TYPE_NVLIST, &nvpair,
16374d3c95f5SJorgen Lundman &size, &nelm);
16384d3c95f5SJorgen Lundman if (!found)
16394d3c95f5SJorgen Lundman return -1;
16404d3c95f5SJorgen Lundman return nelm;
16414d3c95f5SJorgen Lundman }
16424d3c95f5SJorgen Lundman
16434d3c95f5SJorgen Lundman char *
zfs_nvlist_lookup_nvlist_array(char * nvlist,char * name,size_t index)16444d3c95f5SJorgen Lundman zfs_nvlist_lookup_nvlist_array(char *nvlist, char *name,
16454d3c95f5SJorgen Lundman size_t index)
16464d3c95f5SJorgen Lundman {
16474d3c95f5SJorgen Lundman char *nvpair, *nvpairptr;
16484d3c95f5SJorgen Lundman int found;
16494d3c95f5SJorgen Lundman char *ret;
16504d3c95f5SJorgen Lundman size_t size;
16514d3c95f5SJorgen Lundman unsigned i;
16524d3c95f5SJorgen Lundman size_t nelm;
16534d3c95f5SJorgen Lundman
16544d3c95f5SJorgen Lundman found = nvlist_find_value(nvlist, name, DATA_TYPE_NVLIST, &nvpair,
16554d3c95f5SJorgen Lundman &size, &nelm);
16564d3c95f5SJorgen Lundman if (!found)
16574d3c95f5SJorgen Lundman return 0;
16584d3c95f5SJorgen Lundman if (index >= nelm) {
16594d3c95f5SJorgen Lundman printf("trying to lookup past nvlist array\n");
16604d3c95f5SJorgen Lundman return 0;
16614d3c95f5SJorgen Lundman }
16624d3c95f5SJorgen Lundman
16634d3c95f5SJorgen Lundman nvpairptr = nvpair;
16644d3c95f5SJorgen Lundman
16654d3c95f5SJorgen Lundman for (i = 0; i < index; i++) {
16664d3c95f5SJorgen Lundman uint32_t encode_size;
16674d3c95f5SJorgen Lundman
16684d3c95f5SJorgen Lundman /* skip the header, nvl_version, and nvl_nvflag */
16694d3c95f5SJorgen Lundman nvpairptr = nvpairptr + 4 * 2;
16704d3c95f5SJorgen Lundman
16714d3c95f5SJorgen Lundman while (nvpairptr < nvpair + size
16724d3c95f5SJorgen Lundman && (encode_size = be32_to_cpu(*(uint32_t *) nvpairptr)))
16734d3c95f5SJorgen Lundman nvlist += encode_size; /* goto the next nvpair */
16744d3c95f5SJorgen Lundman
16754d3c95f5SJorgen Lundman nvlist = nvlist + 4 * 2; /* skip the ending 2 zeros - 8 bytes */
16764d3c95f5SJorgen Lundman }
16774d3c95f5SJorgen Lundman
16784d3c95f5SJorgen Lundman if (nvpairptr >= nvpair + size
16794d3c95f5SJorgen Lundman || nvpairptr + be32_to_cpu(*(uint32_t *) (nvpairptr + 4 * 2))
16804d3c95f5SJorgen Lundman >= nvpair + size) {
16814d3c95f5SJorgen Lundman printf("incorrect nvlist array\n");
16824d3c95f5SJorgen Lundman return 0;
16834d3c95f5SJorgen Lundman }
16844d3c95f5SJorgen Lundman
16854d3c95f5SJorgen Lundman ret = calloc(1, be32_to_cpu(*(uint32_t *) (nvpairptr + 4 * 2))
16864d3c95f5SJorgen Lundman + 3 * sizeof(uint32_t));
16874d3c95f5SJorgen Lundman if (!ret)
16884d3c95f5SJorgen Lundman return 0;
16894d3c95f5SJorgen Lundman memcpy(ret, nvlist, sizeof(uint32_t));
16904d3c95f5SJorgen Lundman
16914d3c95f5SJorgen Lundman memcpy(ret + sizeof(uint32_t), nvpairptr, size);
16924d3c95f5SJorgen Lundman return ret;
16934d3c95f5SJorgen Lundman }
16944d3c95f5SJorgen Lundman
16954d3c95f5SJorgen Lundman static int
int_zfs_fetch_nvlist(struct zfs_data * data,char ** nvlist)16964d3c95f5SJorgen Lundman int_zfs_fetch_nvlist(struct zfs_data *data, char **nvlist)
16974d3c95f5SJorgen Lundman {
16984d3c95f5SJorgen Lundman int err;
16994d3c95f5SJorgen Lundman
17004d3c95f5SJorgen Lundman *nvlist = malloc(VDEV_PHYS_SIZE);
17014d3c95f5SJorgen Lundman /* Read in the vdev name-value pair list (112K). */
17024d3c95f5SJorgen Lundman err = zfs_devread(data->vdev_phys_sector, 0, VDEV_PHYS_SIZE, *nvlist);
17034d3c95f5SJorgen Lundman if (err) {
17044d3c95f5SJorgen Lundman free(*nvlist);
17054d3c95f5SJorgen Lundman *nvlist = 0;
17064d3c95f5SJorgen Lundman return err;
17074d3c95f5SJorgen Lundman }
17084d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
17094d3c95f5SJorgen Lundman }
17104d3c95f5SJorgen Lundman
17114d3c95f5SJorgen Lundman /*
17124d3c95f5SJorgen Lundman * Check the disk label information and retrieve needed vdev name-value pairs.
17134d3c95f5SJorgen Lundman *
17144d3c95f5SJorgen Lundman */
17154d3c95f5SJorgen Lundman static int
check_pool_label(struct zfs_data * data)17164d3c95f5SJorgen Lundman check_pool_label(struct zfs_data *data)
17174d3c95f5SJorgen Lundman {
17184d3c95f5SJorgen Lundman uint64_t pool_state;
17194d3c95f5SJorgen Lundman char *nvlist; /* for the pool */
17204d3c95f5SJorgen Lundman char *vdevnvlist; /* for the vdev */
17214d3c95f5SJorgen Lundman uint64_t diskguid;
17224d3c95f5SJorgen Lundman uint64_t version;
17234d3c95f5SJorgen Lundman int found;
17244d3c95f5SJorgen Lundman int err;
17254d3c95f5SJorgen Lundman
17264d3c95f5SJorgen Lundman err = int_zfs_fetch_nvlist(data, &nvlist);
17274d3c95f5SJorgen Lundman if (err)
17284d3c95f5SJorgen Lundman return err;
17294d3c95f5SJorgen Lundman
17304d3c95f5SJorgen Lundman found = zfs_nvlist_lookup_uint64(nvlist, ZPOOL_CONFIG_POOL_STATE,
17314d3c95f5SJorgen Lundman &pool_state);
17324d3c95f5SJorgen Lundman if (!found) {
17334d3c95f5SJorgen Lundman free(nvlist);
17344d3c95f5SJorgen Lundman printf("zfs pool state not found\n");
17354d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
17364d3c95f5SJorgen Lundman }
17374d3c95f5SJorgen Lundman
17384d3c95f5SJorgen Lundman if (pool_state == POOL_STATE_DESTROYED) {
17394d3c95f5SJorgen Lundman free(nvlist);
17404d3c95f5SJorgen Lundman printf("zpool is marked as destroyed\n");
17414d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
17424d3c95f5SJorgen Lundman }
17434d3c95f5SJorgen Lundman
17444d3c95f5SJorgen Lundman data->label_txg = 0;
17454d3c95f5SJorgen Lundman found = zfs_nvlist_lookup_uint64(nvlist, ZPOOL_CONFIG_POOL_TXG,
17464d3c95f5SJorgen Lundman &data->label_txg);
17474d3c95f5SJorgen Lundman if (!found) {
17484d3c95f5SJorgen Lundman free(nvlist);
17494d3c95f5SJorgen Lundman printf("zfs pool txg not found\n");
17504d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
17514d3c95f5SJorgen Lundman }
17524d3c95f5SJorgen Lundman
17534d3c95f5SJorgen Lundman /* not an active device */
17544d3c95f5SJorgen Lundman if (data->label_txg == 0) {
17554d3c95f5SJorgen Lundman free(nvlist);
17564d3c95f5SJorgen Lundman printf("zpool is not active\n");
17574d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
17584d3c95f5SJorgen Lundman }
17594d3c95f5SJorgen Lundman
17604d3c95f5SJorgen Lundman found = zfs_nvlist_lookup_uint64(nvlist, ZPOOL_CONFIG_VERSION,
17614d3c95f5SJorgen Lundman &version);
17624d3c95f5SJorgen Lundman if (!found) {
17634d3c95f5SJorgen Lundman free(nvlist);
17644d3c95f5SJorgen Lundman printf("zpool config version not found\n");
17654d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
17664d3c95f5SJorgen Lundman }
17674d3c95f5SJorgen Lundman
17684d3c95f5SJorgen Lundman if (version > SPA_VERSION) {
17694d3c95f5SJorgen Lundman free(nvlist);
17704d3c95f5SJorgen Lundman printf("SPA version too new %llu > %llu\n",
17714d3c95f5SJorgen Lundman (unsigned long long) version,
17724d3c95f5SJorgen Lundman (unsigned long long) SPA_VERSION);
17734d3c95f5SJorgen Lundman return ZFS_ERR_NOT_IMPLEMENTED_YET;
17744d3c95f5SJorgen Lundman }
17754d3c95f5SJorgen Lundman
17764d3c95f5SJorgen Lundman vdevnvlist = zfs_nvlist_lookup_nvlist(nvlist, ZPOOL_CONFIG_VDEV_TREE);
17774d3c95f5SJorgen Lundman if (!vdevnvlist) {
17784d3c95f5SJorgen Lundman free(nvlist);
17794d3c95f5SJorgen Lundman printf("ZFS config vdev tree not found\n");
17804d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
17814d3c95f5SJorgen Lundman }
17824d3c95f5SJorgen Lundman
17834d3c95f5SJorgen Lundman found = zfs_nvlist_lookup_uint64(vdevnvlist, ZPOOL_CONFIG_ASHIFT,
17844d3c95f5SJorgen Lundman &data->vdev_ashift);
17854d3c95f5SJorgen Lundman free(vdevnvlist);
17864d3c95f5SJorgen Lundman if (!found) {
17874d3c95f5SJorgen Lundman free(nvlist);
17884d3c95f5SJorgen Lundman printf("ZPOOL config ashift not found\n");
17894d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
17904d3c95f5SJorgen Lundman }
17914d3c95f5SJorgen Lundman
17924d3c95f5SJorgen Lundman found = zfs_nvlist_lookup_uint64(nvlist, ZPOOL_CONFIG_GUID, &diskguid);
17934d3c95f5SJorgen Lundman if (!found) {
17944d3c95f5SJorgen Lundman free(nvlist);
17954d3c95f5SJorgen Lundman printf("ZPOOL config guid not found\n");
17964d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
17974d3c95f5SJorgen Lundman }
17984d3c95f5SJorgen Lundman
17994d3c95f5SJorgen Lundman found = zfs_nvlist_lookup_uint64(nvlist, ZPOOL_CONFIG_POOL_GUID, &data->pool_guid);
18004d3c95f5SJorgen Lundman if (!found) {
18014d3c95f5SJorgen Lundman free(nvlist);
18024d3c95f5SJorgen Lundman printf("ZPOOL config pool guid not found\n");
18034d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
18044d3c95f5SJorgen Lundman }
18054d3c95f5SJorgen Lundman
18064d3c95f5SJorgen Lundman free(nvlist);
18074d3c95f5SJorgen Lundman
18084d3c95f5SJorgen Lundman printf("ZFS Pool GUID: %llu (%016llx) Label: GUID: %llu (%016llx), txg: %llu, SPA v%llu, ashift: %llu\n",
18094d3c95f5SJorgen Lundman (unsigned long long) data->pool_guid,
18104d3c95f5SJorgen Lundman (unsigned long long) data->pool_guid,
18114d3c95f5SJorgen Lundman (unsigned long long) diskguid,
18124d3c95f5SJorgen Lundman (unsigned long long) diskguid,
18134d3c95f5SJorgen Lundman (unsigned long long) data->label_txg,
18144d3c95f5SJorgen Lundman (unsigned long long) version,
18154d3c95f5SJorgen Lundman (unsigned long long) data->vdev_ashift);
18164d3c95f5SJorgen Lundman
18174d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
18184d3c95f5SJorgen Lundman }
18194d3c95f5SJorgen Lundman
18204d3c95f5SJorgen Lundman /*
18214d3c95f5SJorgen Lundman * vdev_label_start returns the physical disk offset (in bytes) of
18224d3c95f5SJorgen Lundman * label "l".
18234d3c95f5SJorgen Lundman */
vdev_label_start(uint64_t psize,int l)18244d3c95f5SJorgen Lundman static uint64_t vdev_label_start(uint64_t psize, int l)
18254d3c95f5SJorgen Lundman {
18264d3c95f5SJorgen Lundman return (l * sizeof(vdev_label_t) + (l < VDEV_LABELS / 2 ?
18274d3c95f5SJorgen Lundman 0 : psize -
18284d3c95f5SJorgen Lundman VDEV_LABELS * sizeof(vdev_label_t)));
18294d3c95f5SJorgen Lundman }
18304d3c95f5SJorgen Lundman
18314d3c95f5SJorgen Lundman void
zfs_unmount(struct zfs_data * data)18324d3c95f5SJorgen Lundman zfs_unmount(struct zfs_data *data)
18334d3c95f5SJorgen Lundman {
18344d3c95f5SJorgen Lundman free(data->dnode_buf);
18354d3c95f5SJorgen Lundman free(data->dnode_mdn);
18364d3c95f5SJorgen Lundman free(data->file_buf);
18374d3c95f5SJorgen Lundman free(data);
18384d3c95f5SJorgen Lundman }
18394d3c95f5SJorgen Lundman
18404d3c95f5SJorgen Lundman /*
18414d3c95f5SJorgen Lundman * zfs_mount() locates a valid uberblock of the root pool and read in its MOS
18424d3c95f5SJorgen Lundman * to the memory address MOS.
18434d3c95f5SJorgen Lundman *
18444d3c95f5SJorgen Lundman */
18454d3c95f5SJorgen Lundman struct zfs_data *
zfs_mount(device_t dev)18464d3c95f5SJorgen Lundman zfs_mount(device_t dev)
18474d3c95f5SJorgen Lundman {
18484d3c95f5SJorgen Lundman struct zfs_data *data = 0;
18494d3c95f5SJorgen Lundman int label = 0, bestlabel = -1;
18504d3c95f5SJorgen Lundman char *ub_array;
18514d3c95f5SJorgen Lundman uberblock_t *ubbest;
18524d3c95f5SJorgen Lundman uberblock_t *ubcur = NULL;
18534d3c95f5SJorgen Lundman void *osp = 0;
18544d3c95f5SJorgen Lundman size_t ospsize;
18554d3c95f5SJorgen Lundman int err;
18564d3c95f5SJorgen Lundman
18574d3c95f5SJorgen Lundman data = malloc(sizeof(*data));
18584d3c95f5SJorgen Lundman if (!data)
18594d3c95f5SJorgen Lundman return 0;
18604d3c95f5SJorgen Lundman memset(data, 0, sizeof(*data));
18614d3c95f5SJorgen Lundman
18624d3c95f5SJorgen Lundman ub_array = malloc(VDEV_UBERBLOCK_RING);
18634d3c95f5SJorgen Lundman if (!ub_array) {
18644d3c95f5SJorgen Lundman zfs_unmount(data);
18654d3c95f5SJorgen Lundman return 0;
18664d3c95f5SJorgen Lundman }
18674d3c95f5SJorgen Lundman
18684d3c95f5SJorgen Lundman ubbest = malloc(sizeof(*ubbest));
18694d3c95f5SJorgen Lundman if (!ubbest) {
1870e183de0dSJorgen Lundman free(ub_array);
18714d3c95f5SJorgen Lundman zfs_unmount(data);
18724d3c95f5SJorgen Lundman return 0;
18734d3c95f5SJorgen Lundman }
18744d3c95f5SJorgen Lundman memset(ubbest, 0, sizeof(*ubbest));
18754d3c95f5SJorgen Lundman
18764d3c95f5SJorgen Lundman /*
18774d3c95f5SJorgen Lundman * some eltorito stacks don't give us a size and
18784d3c95f5SJorgen Lundman * we end up setting the size to MAXUINT, further
18794d3c95f5SJorgen Lundman * some of these devices stop working once a single
18804d3c95f5SJorgen Lundman * read past the end has been issued. Checking
18814d3c95f5SJorgen Lundman * for a maximum part_length and skipping the backup
18824d3c95f5SJorgen Lundman * labels at the end of the slice/partition/device
18834d3c95f5SJorgen Lundman * avoids breaking down on such devices.
18844d3c95f5SJorgen Lundman */
18854d3c95f5SJorgen Lundman const int vdevnum =
18864d3c95f5SJorgen Lundman dev->part_length == 0 ?
18874d3c95f5SJorgen Lundman VDEV_LABELS / 2 : VDEV_LABELS;
18884d3c95f5SJorgen Lundman
18894d3c95f5SJorgen Lundman /* Size in bytes of the device (disk or partition) aligned to label size*/
18904d3c95f5SJorgen Lundman uint64_t device_size =
18914d3c95f5SJorgen Lundman dev->part_length << SECTOR_BITS;
18924d3c95f5SJorgen Lundman
18934d3c95f5SJorgen Lundman const uint64_t alignedbytes =
18944d3c95f5SJorgen Lundman P2ALIGN(device_size, (uint64_t) sizeof(vdev_label_t));
18954d3c95f5SJorgen Lundman
18964d3c95f5SJorgen Lundman for (label = 0; label < vdevnum; label++) {
18974d3c95f5SJorgen Lundman uint64_t labelstartbytes = vdev_label_start(alignedbytes, label);
18984d3c95f5SJorgen Lundman uint64_t labelstart = labelstartbytes >> SECTOR_BITS;
18994d3c95f5SJorgen Lundman
19004d3c95f5SJorgen Lundman debug("zfs reading label %d at sector %llu (byte %llu)\n",
19014d3c95f5SJorgen Lundman label, (unsigned long long) labelstart,
19024d3c95f5SJorgen Lundman (unsigned long long) labelstartbytes);
19034d3c95f5SJorgen Lundman
19044d3c95f5SJorgen Lundman data->vdev_phys_sector = labelstart +
19054d3c95f5SJorgen Lundman ((VDEV_SKIP_SIZE + VDEV_BOOT_HEADER_SIZE) >> SECTOR_BITS);
19064d3c95f5SJorgen Lundman
19074d3c95f5SJorgen Lundman err = check_pool_label(data);
19084d3c95f5SJorgen Lundman if (err) {
19094d3c95f5SJorgen Lundman printf("zfs error checking label %d\n", label);
19104d3c95f5SJorgen Lundman continue;
19114d3c95f5SJorgen Lundman }
19124d3c95f5SJorgen Lundman
19134d3c95f5SJorgen Lundman /* Read in the uberblock ring (128K). */
19144d3c95f5SJorgen Lundman err = zfs_devread(data->vdev_phys_sector +
19154d3c95f5SJorgen Lundman (VDEV_PHYS_SIZE >> SECTOR_BITS),
19164d3c95f5SJorgen Lundman 0, VDEV_UBERBLOCK_RING, ub_array);
19174d3c95f5SJorgen Lundman if (err) {
19184d3c95f5SJorgen Lundman printf("zfs error reading uberblock ring for label %d\n", label);
19194d3c95f5SJorgen Lundman continue;
19204d3c95f5SJorgen Lundman }
19214d3c95f5SJorgen Lundman
19224d3c95f5SJorgen Lundman ubcur = find_bestub(ub_array, data);
19234d3c95f5SJorgen Lundman if (!ubcur) {
19244d3c95f5SJorgen Lundman printf("zfs No good uberblocks found in label %d\n", label);
19254d3c95f5SJorgen Lundman continue;
19264d3c95f5SJorgen Lundman }
19274d3c95f5SJorgen Lundman
19284d3c95f5SJorgen Lundman if (vdev_uberblock_compare(ubcur, ubbest) > 0) {
19294d3c95f5SJorgen Lundman /* Looks like the block is good, so use it.*/
19304d3c95f5SJorgen Lundman memcpy(ubbest, ubcur, sizeof(*ubbest));
19314d3c95f5SJorgen Lundman bestlabel = label;
19324d3c95f5SJorgen Lundman debug("zfs Current best uberblock found in label %d\n", label);
19334d3c95f5SJorgen Lundman }
19344d3c95f5SJorgen Lundman }
19354d3c95f5SJorgen Lundman free(ub_array);
19364d3c95f5SJorgen Lundman
19374d3c95f5SJorgen Lundman /* We zero'd the structure to begin with. If we never assigned to it,
19384d3c95f5SJorgen Lundman magic will still be zero. */
19394d3c95f5SJorgen Lundman if (!ubbest->ub_magic) {
19404d3c95f5SJorgen Lundman printf("couldn't find a valid ZFS label\n");
19414d3c95f5SJorgen Lundman zfs_unmount(data);
19424d3c95f5SJorgen Lundman free(ubbest);
19434d3c95f5SJorgen Lundman return 0;
19444d3c95f5SJorgen Lundman }
19454d3c95f5SJorgen Lundman
19464d3c95f5SJorgen Lundman debug("zfs ubbest %p in label %d\n", ubbest, bestlabel);
19474d3c95f5SJorgen Lundman
19484d3c95f5SJorgen Lundman zfs_endian_t ub_endian =
19494d3c95f5SJorgen Lundman zfs_to_cpu64(ubbest->ub_magic, LITTLE_ENDIAN) == UBERBLOCK_MAGIC
19504d3c95f5SJorgen Lundman ? LITTLE_ENDIAN : BIG_ENDIAN;
19514d3c95f5SJorgen Lundman
19524d3c95f5SJorgen Lundman debug("zfs endian set to %s\n", !ub_endian ? "big" : "little");
19534d3c95f5SJorgen Lundman
19544d3c95f5SJorgen Lundman err = zio_read(&ubbest->ub_rootbp, ub_endian, &osp, &ospsize, data);
19554d3c95f5SJorgen Lundman
19564d3c95f5SJorgen Lundman if (err) {
19574d3c95f5SJorgen Lundman printf("couldn't zio_read object directory\n");
19584d3c95f5SJorgen Lundman zfs_unmount(data);
1959e183de0dSJorgen Lundman free(osp);
19604d3c95f5SJorgen Lundman free(ubbest);
19614d3c95f5SJorgen Lundman return 0;
19624d3c95f5SJorgen Lundman }
19634d3c95f5SJorgen Lundman
19644d3c95f5SJorgen Lundman if (ospsize < OBJSET_PHYS_SIZE_V14) {
19654d3c95f5SJorgen Lundman printf("osp too small\n");
19664d3c95f5SJorgen Lundman zfs_unmount(data);
19674d3c95f5SJorgen Lundman free(osp);
19684d3c95f5SJorgen Lundman free(ubbest);
19694d3c95f5SJorgen Lundman return 0;
19704d3c95f5SJorgen Lundman }
19714d3c95f5SJorgen Lundman
19724d3c95f5SJorgen Lundman /* Got the MOS. Save it at the memory addr MOS. */
19734d3c95f5SJorgen Lundman memmove(&(data->mos.dn), &((objset_phys_t *) osp)->os_meta_dnode, DNODE_SIZE);
19744d3c95f5SJorgen Lundman data->mos.endian =
19754d3c95f5SJorgen Lundman (zfs_to_cpu64(ubbest->ub_rootbp.blk_prop, ub_endian) >> 63) & 1;
19764d3c95f5SJorgen Lundman memmove(&(data->current_uberblock), ubbest, sizeof(uberblock_t));
19774d3c95f5SJorgen Lundman
19784d3c95f5SJorgen Lundman free(osp);
19794d3c95f5SJorgen Lundman free(ubbest);
19804d3c95f5SJorgen Lundman
19814d3c95f5SJorgen Lundman return data;
19824d3c95f5SJorgen Lundman }
19834d3c95f5SJorgen Lundman
19844d3c95f5SJorgen Lundman int
zfs_fetch_nvlist(device_t dev,char ** nvlist)19854d3c95f5SJorgen Lundman zfs_fetch_nvlist(device_t dev, char **nvlist)
19864d3c95f5SJorgen Lundman {
19874d3c95f5SJorgen Lundman struct zfs_data *zfs;
19884d3c95f5SJorgen Lundman int err;
19894d3c95f5SJorgen Lundman
19904d3c95f5SJorgen Lundman zfs = zfs_mount(dev);
19914d3c95f5SJorgen Lundman if (!zfs)
19924d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
19934d3c95f5SJorgen Lundman err = int_zfs_fetch_nvlist(zfs, nvlist);
19944d3c95f5SJorgen Lundman zfs_unmount(zfs);
19954d3c95f5SJorgen Lundman return err;
19964d3c95f5SJorgen Lundman }
19974d3c95f5SJorgen Lundman
19984d3c95f5SJorgen Lundman /*
19994d3c95f5SJorgen Lundman * zfs_open() locates a file in the rootpool by following the
20004d3c95f5SJorgen Lundman * MOS and places the dnode of the file in the memory address DNODE.
20014d3c95f5SJorgen Lundman */
20024d3c95f5SJorgen Lundman int
zfs_open(struct zfs_file * file,const char * fsfilename)20034d3c95f5SJorgen Lundman zfs_open(struct zfs_file *file, const char *fsfilename)
20044d3c95f5SJorgen Lundman {
20054d3c95f5SJorgen Lundman struct zfs_data *data;
20064d3c95f5SJorgen Lundman int err;
20074d3c95f5SJorgen Lundman int isfs;
20084d3c95f5SJorgen Lundman
20094d3c95f5SJorgen Lundman data = zfs_mount(file->device);
20104d3c95f5SJorgen Lundman if (!data)
20114d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
20124d3c95f5SJorgen Lundman
20134d3c95f5SJorgen Lundman err = dnode_get_fullpath(fsfilename, &(data->mdn), 0,
20144d3c95f5SJorgen Lundman &(data->dnode), &isfs, data);
20154d3c95f5SJorgen Lundman if (err) {
20164d3c95f5SJorgen Lundman zfs_unmount(data);
20174d3c95f5SJorgen Lundman return err;
20184d3c95f5SJorgen Lundman }
20194d3c95f5SJorgen Lundman
20204d3c95f5SJorgen Lundman if (isfs) {
20214d3c95f5SJorgen Lundman zfs_unmount(data);
20224d3c95f5SJorgen Lundman printf("Missing @ or / separator\n");
20234d3c95f5SJorgen Lundman return ZFS_ERR_FILE_NOT_FOUND;
20244d3c95f5SJorgen Lundman }
20254d3c95f5SJorgen Lundman
20264d3c95f5SJorgen Lundman /* We found the dnode for this file. Verify if it is a plain file. */
20274d3c95f5SJorgen Lundman if (data->dnode.dn.dn_type != DMU_OT_PLAIN_FILE_CONTENTS) {
20284d3c95f5SJorgen Lundman zfs_unmount(data);
20294d3c95f5SJorgen Lundman printf("not a file\n");
20304d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FILE_TYPE;
20314d3c95f5SJorgen Lundman }
20324d3c95f5SJorgen Lundman
20334d3c95f5SJorgen Lundman /* get the file size and set the file position to 0 */
20344d3c95f5SJorgen Lundman
20354d3c95f5SJorgen Lundman /*
20364d3c95f5SJorgen Lundman * For DMU_OT_SA we will need to locate the SIZE attribute
20374d3c95f5SJorgen Lundman * attribute, which could be either in the bonus buffer
20384d3c95f5SJorgen Lundman * or the "spill" block.
20394d3c95f5SJorgen Lundman */
20404d3c95f5SJorgen Lundman if (data->dnode.dn.dn_bonustype == DMU_OT_SA) {
20414d3c95f5SJorgen Lundman void *sahdrp;
20424d3c95f5SJorgen Lundman int hdrsize;
20434d3c95f5SJorgen Lundman
20444d3c95f5SJorgen Lundman if (data->dnode.dn.dn_bonuslen != 0) {
20454d3c95f5SJorgen Lundman sahdrp = (sa_hdr_phys_t *) DN_BONUS(&data->dnode.dn);
20464d3c95f5SJorgen Lundman } else if (data->dnode.dn.dn_flags & DNODE_FLAG_SPILL_BLKPTR) {
20474d3c95f5SJorgen Lundman blkptr_t *bp = &data->dnode.dn.dn_spill;
20484d3c95f5SJorgen Lundman
20494d3c95f5SJorgen Lundman err = zio_read(bp, data->dnode.endian, &sahdrp, NULL, data);
20504d3c95f5SJorgen Lundman if (err)
20514d3c95f5SJorgen Lundman return err;
20524d3c95f5SJorgen Lundman } else {
20534d3c95f5SJorgen Lundman printf("filesystem is corrupt :(\n");
20544d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
20554d3c95f5SJorgen Lundman }
20564d3c95f5SJorgen Lundman
20574d3c95f5SJorgen Lundman hdrsize = SA_HDR_SIZE(((sa_hdr_phys_t *) sahdrp));
20584d3c95f5SJorgen Lundman file->size = *(uint64_t *) ((char *) sahdrp + hdrsize + SA_SIZE_OFFSET);
2059e183de0dSJorgen Lundman if ((data->dnode.dn.dn_bonuslen == 0) &&
2060e183de0dSJorgen Lundman (data->dnode.dn.dn_flags & DNODE_FLAG_SPILL_BLKPTR))
2061e183de0dSJorgen Lundman free(sahdrp);
20624d3c95f5SJorgen Lundman } else {
20634d3c95f5SJorgen Lundman file->size = zfs_to_cpu64(((znode_phys_t *) DN_BONUS(&data->dnode.dn))->zp_size, data->dnode.endian);
20644d3c95f5SJorgen Lundman }
20654d3c95f5SJorgen Lundman
20664d3c95f5SJorgen Lundman file->data = data;
20674d3c95f5SJorgen Lundman file->offset = 0;
20684d3c95f5SJorgen Lundman
20694d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
20704d3c95f5SJorgen Lundman }
20714d3c95f5SJorgen Lundman
20724d3c95f5SJorgen Lundman uint64_t
zfs_read(zfs_file_t file,char * buf,uint64_t len)20734d3c95f5SJorgen Lundman zfs_read(zfs_file_t file, char *buf, uint64_t len)
20744d3c95f5SJorgen Lundman {
20754d3c95f5SJorgen Lundman struct zfs_data *data = (struct zfs_data *) file->data;
20764d3c95f5SJorgen Lundman int blksz, movesize;
20774d3c95f5SJorgen Lundman uint64_t length;
20784d3c95f5SJorgen Lundman int64_t red;
20794d3c95f5SJorgen Lundman int err;
20804d3c95f5SJorgen Lundman
20814d3c95f5SJorgen Lundman if (data->file_buf == NULL) {
20824d3c95f5SJorgen Lundman data->file_buf = malloc(SPA_MAXBLOCKSIZE);
20834d3c95f5SJorgen Lundman if (!data->file_buf)
20844d3c95f5SJorgen Lundman return -1;
20854d3c95f5SJorgen Lundman data->file_start = data->file_end = 0;
20864d3c95f5SJorgen Lundman }
20874d3c95f5SJorgen Lundman
20884d3c95f5SJorgen Lundman /*
20894d3c95f5SJorgen Lundman * If offset is in memory, move it into the buffer provided and return.
20904d3c95f5SJorgen Lundman */
20914d3c95f5SJorgen Lundman if (file->offset >= data->file_start
20924d3c95f5SJorgen Lundman && file->offset + len <= data->file_end) {
20934d3c95f5SJorgen Lundman memmove(buf, data->file_buf + file->offset - data->file_start,
20944d3c95f5SJorgen Lundman len);
20954d3c95f5SJorgen Lundman return len;
20964d3c95f5SJorgen Lundman }
20974d3c95f5SJorgen Lundman
20984d3c95f5SJorgen Lundman blksz = zfs_to_cpu16(data->dnode.dn.dn_datablkszsec,
20994d3c95f5SJorgen Lundman data->dnode.endian) << SPA_MINBLOCKSHIFT;
21004d3c95f5SJorgen Lundman
21014d3c95f5SJorgen Lundman /*
21024d3c95f5SJorgen Lundman * Entire Dnode is too big to fit into the space available. We
21034d3c95f5SJorgen Lundman * will need to read it in chunks. This could be optimized to
21044d3c95f5SJorgen Lundman * read in as large a chunk as there is space available, but for
21054d3c95f5SJorgen Lundman * now, this only reads in one data block at a time.
21064d3c95f5SJorgen Lundman */
21074d3c95f5SJorgen Lundman length = len;
21084d3c95f5SJorgen Lundman red = 0;
21094d3c95f5SJorgen Lundman while (length) {
21104d3c95f5SJorgen Lundman void *t;
21114d3c95f5SJorgen Lundman /*
21124d3c95f5SJorgen Lundman * Find requested blkid and the offset within that block.
21134d3c95f5SJorgen Lundman */
2114624c721fSAlejandro Mery uint64_t blkid = file->offset + red;
2115624c721fSAlejandro Mery blkid = do_div(blkid, blksz);
21164d3c95f5SJorgen Lundman free(data->file_buf);
21174d3c95f5SJorgen Lundman data->file_buf = 0;
21184d3c95f5SJorgen Lundman
21194d3c95f5SJorgen Lundman err = dmu_read(&(data->dnode), blkid, &t,
21204d3c95f5SJorgen Lundman 0, data);
21214d3c95f5SJorgen Lundman data->file_buf = t;
21224d3c95f5SJorgen Lundman if (err)
21234d3c95f5SJorgen Lundman return -1;
21244d3c95f5SJorgen Lundman
21254d3c95f5SJorgen Lundman data->file_start = blkid * blksz;
21264d3c95f5SJorgen Lundman data->file_end = data->file_start + blksz;
21274d3c95f5SJorgen Lundman
2128c79cba37SMasahiro Yamada movesize = min(length, data->file_end - (int)file->offset - red);
21294d3c95f5SJorgen Lundman
21304d3c95f5SJorgen Lundman memmove(buf, data->file_buf + file->offset + red
21314d3c95f5SJorgen Lundman - data->file_start, movesize);
21324d3c95f5SJorgen Lundman buf += movesize;
21334d3c95f5SJorgen Lundman length -= movesize;
21344d3c95f5SJorgen Lundman red += movesize;
21354d3c95f5SJorgen Lundman }
21364d3c95f5SJorgen Lundman
21374d3c95f5SJorgen Lundman return len;
21384d3c95f5SJorgen Lundman }
21394d3c95f5SJorgen Lundman
21404d3c95f5SJorgen Lundman int
zfs_close(zfs_file_t file)21414d3c95f5SJorgen Lundman zfs_close(zfs_file_t file)
21424d3c95f5SJorgen Lundman {
21434d3c95f5SJorgen Lundman zfs_unmount((struct zfs_data *) file->data);
21444d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
21454d3c95f5SJorgen Lundman }
21464d3c95f5SJorgen Lundman
21474d3c95f5SJorgen Lundman int
zfs_getmdnobj(device_t dev,const char * fsfilename,uint64_t * mdnobj)21484d3c95f5SJorgen Lundman zfs_getmdnobj(device_t dev, const char *fsfilename,
21494d3c95f5SJorgen Lundman uint64_t *mdnobj)
21504d3c95f5SJorgen Lundman {
21514d3c95f5SJorgen Lundman struct zfs_data *data;
21524d3c95f5SJorgen Lundman int err;
21534d3c95f5SJorgen Lundman int isfs;
21544d3c95f5SJorgen Lundman
21554d3c95f5SJorgen Lundman data = zfs_mount(dev);
21564d3c95f5SJorgen Lundman if (!data)
21574d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
21584d3c95f5SJorgen Lundman
21594d3c95f5SJorgen Lundman err = dnode_get_fullpath(fsfilename, &(data->mdn), mdnobj,
21604d3c95f5SJorgen Lundman &(data->dnode), &isfs, data);
21614d3c95f5SJorgen Lundman zfs_unmount(data);
21624d3c95f5SJorgen Lundman return err;
21634d3c95f5SJorgen Lundman }
21644d3c95f5SJorgen Lundman
21654d3c95f5SJorgen Lundman static void
fill_fs_info(struct zfs_dirhook_info * info,dnode_end_t mdn,struct zfs_data * data)21664d3c95f5SJorgen Lundman fill_fs_info(struct zfs_dirhook_info *info,
21674d3c95f5SJorgen Lundman dnode_end_t mdn, struct zfs_data *data)
21684d3c95f5SJorgen Lundman {
21694d3c95f5SJorgen Lundman int err;
21704d3c95f5SJorgen Lundman dnode_end_t dn;
21714d3c95f5SJorgen Lundman uint64_t objnum;
21724d3c95f5SJorgen Lundman uint64_t headobj;
21734d3c95f5SJorgen Lundman
21744d3c95f5SJorgen Lundman memset(info, 0, sizeof(*info));
21754d3c95f5SJorgen Lundman
21764d3c95f5SJorgen Lundman info->dir = 1;
21774d3c95f5SJorgen Lundman
21784d3c95f5SJorgen Lundman if (mdn.dn.dn_type == DMU_OT_DSL_DIR) {
21794d3c95f5SJorgen Lundman headobj = zfs_to_cpu64(((dsl_dir_phys_t *) DN_BONUS(&mdn.dn))->dd_head_dataset_obj, mdn.endian);
21804d3c95f5SJorgen Lundman
21814d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), headobj, DMU_OT_DSL_DATASET, &mdn, data);
21824d3c95f5SJorgen Lundman if (err) {
21834d3c95f5SJorgen Lundman printf("zfs failed here 1\n");
21844d3c95f5SJorgen Lundman return;
21854d3c95f5SJorgen Lundman }
21864d3c95f5SJorgen Lundman }
21874d3c95f5SJorgen Lundman make_mdn(&mdn, data);
21884d3c95f5SJorgen Lundman err = dnode_get(&mdn, MASTER_NODE_OBJ, DMU_OT_MASTER_NODE,
21894d3c95f5SJorgen Lundman &dn, data);
21904d3c95f5SJorgen Lundman if (err) {
21914d3c95f5SJorgen Lundman printf("zfs failed here 2\n");
21924d3c95f5SJorgen Lundman return;
21934d3c95f5SJorgen Lundman }
21944d3c95f5SJorgen Lundman
21954d3c95f5SJorgen Lundman err = zap_lookup(&dn, ZFS_ROOT_OBJ, &objnum, data);
21964d3c95f5SJorgen Lundman if (err) {
21974d3c95f5SJorgen Lundman printf("zfs failed here 3\n");
21984d3c95f5SJorgen Lundman return;
21994d3c95f5SJorgen Lundman }
22004d3c95f5SJorgen Lundman
22014d3c95f5SJorgen Lundman err = dnode_get(&mdn, objnum, 0, &dn, data);
22024d3c95f5SJorgen Lundman if (err) {
22034d3c95f5SJorgen Lundman printf("zfs failed here 4\n");
22044d3c95f5SJorgen Lundman return;
22054d3c95f5SJorgen Lundman }
22064d3c95f5SJorgen Lundman
22074d3c95f5SJorgen Lundman info->mtimeset = 1;
22084d3c95f5SJorgen Lundman info->mtime = zfs_to_cpu64(((znode_phys_t *) DN_BONUS(&dn.dn))->zp_mtime[0], dn.endian);
22094d3c95f5SJorgen Lundman
22104d3c95f5SJorgen Lundman return;
22114d3c95f5SJorgen Lundman }
22124d3c95f5SJorgen Lundman
iterate_zap(const char * name,uint64_t val,struct zfs_data * data)22134d3c95f5SJorgen Lundman static int iterate_zap(const char *name, uint64_t val, struct zfs_data *data)
22144d3c95f5SJorgen Lundman {
22154d3c95f5SJorgen Lundman struct zfs_dirhook_info info;
22164d3c95f5SJorgen Lundman dnode_end_t dn;
22174d3c95f5SJorgen Lundman
22184d3c95f5SJorgen Lundman memset(&info, 0, sizeof(info));
22194d3c95f5SJorgen Lundman
22204d3c95f5SJorgen Lundman dnode_get(&(data->mdn), val, 0, &dn, data);
22214d3c95f5SJorgen Lundman info.mtimeset = 1;
22224d3c95f5SJorgen Lundman info.mtime = zfs_to_cpu64(((znode_phys_t *) DN_BONUS(&dn.dn))->zp_mtime[0], dn.endian);
22234d3c95f5SJorgen Lundman info.dir = (dn.dn.dn_type == DMU_OT_DIRECTORY_CONTENTS);
22244d3c95f5SJorgen Lundman debug("zfs type=%d, name=%s\n",
22254d3c95f5SJorgen Lundman (int)dn.dn.dn_type, (char *)name);
22264d3c95f5SJorgen Lundman if (!data->userhook)
22274d3c95f5SJorgen Lundman return 0;
22284d3c95f5SJorgen Lundman return data->userhook(name, &info);
22294d3c95f5SJorgen Lundman }
22304d3c95f5SJorgen Lundman
iterate_zap_fs(const char * name,uint64_t val,struct zfs_data * data)22314d3c95f5SJorgen Lundman static int iterate_zap_fs(const char *name, uint64_t val, struct zfs_data *data)
22324d3c95f5SJorgen Lundman {
22334d3c95f5SJorgen Lundman struct zfs_dirhook_info info;
22344d3c95f5SJorgen Lundman dnode_end_t mdn;
22354d3c95f5SJorgen Lundman int err;
22364d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), val, 0, &mdn, data);
22374d3c95f5SJorgen Lundman if (err)
22384d3c95f5SJorgen Lundman return 0;
22394d3c95f5SJorgen Lundman if (mdn.dn.dn_type != DMU_OT_DSL_DIR)
22404d3c95f5SJorgen Lundman return 0;
22414d3c95f5SJorgen Lundman
22424d3c95f5SJorgen Lundman fill_fs_info(&info, mdn, data);
22434d3c95f5SJorgen Lundman
22444d3c95f5SJorgen Lundman if (!data->userhook)
22454d3c95f5SJorgen Lundman return 0;
22464d3c95f5SJorgen Lundman return data->userhook(name, &info);
22474d3c95f5SJorgen Lundman }
22484d3c95f5SJorgen Lundman
iterate_zap_snap(const char * name,uint64_t val,struct zfs_data * data)22494d3c95f5SJorgen Lundman static int iterate_zap_snap(const char *name, uint64_t val, struct zfs_data *data)
22504d3c95f5SJorgen Lundman {
22514d3c95f5SJorgen Lundman struct zfs_dirhook_info info;
22524d3c95f5SJorgen Lundman char *name2;
22534d3c95f5SJorgen Lundman int ret = 0;
22544d3c95f5SJorgen Lundman dnode_end_t mdn;
22554d3c95f5SJorgen Lundman int err;
22564d3c95f5SJorgen Lundman
22574d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), val, 0, &mdn, data);
22584d3c95f5SJorgen Lundman if (err)
22594d3c95f5SJorgen Lundman return 0;
22604d3c95f5SJorgen Lundman
22614d3c95f5SJorgen Lundman if (mdn.dn.dn_type != DMU_OT_DSL_DATASET)
22624d3c95f5SJorgen Lundman return 0;
22634d3c95f5SJorgen Lundman
22644d3c95f5SJorgen Lundman fill_fs_info(&info, mdn, data);
22654d3c95f5SJorgen Lundman
22664d3c95f5SJorgen Lundman name2 = malloc(strlen(name) + 2);
22674d3c95f5SJorgen Lundman name2[0] = '@';
22684d3c95f5SJorgen Lundman memcpy(name2 + 1, name, strlen(name) + 1);
22694d3c95f5SJorgen Lundman if (data->userhook)
22704d3c95f5SJorgen Lundman ret = data->userhook(name2, &info);
22714d3c95f5SJorgen Lundman free(name2);
22724d3c95f5SJorgen Lundman return ret;
22734d3c95f5SJorgen Lundman }
22744d3c95f5SJorgen Lundman
22754d3c95f5SJorgen Lundman int
zfs_ls(device_t device,const char * path,int (* hook)(const char *,const struct zfs_dirhook_info *))22764d3c95f5SJorgen Lundman zfs_ls(device_t device, const char *path,
22774d3c95f5SJorgen Lundman int (*hook)(const char *, const struct zfs_dirhook_info *))
22784d3c95f5SJorgen Lundman {
22794d3c95f5SJorgen Lundman struct zfs_data *data;
22804d3c95f5SJorgen Lundman int err;
22814d3c95f5SJorgen Lundman int isfs;
22824d3c95f5SJorgen Lundman
22834d3c95f5SJorgen Lundman data = zfs_mount(device);
22844d3c95f5SJorgen Lundman if (!data)
22854d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FS;
22864d3c95f5SJorgen Lundman
22874d3c95f5SJorgen Lundman data->userhook = hook;
22884d3c95f5SJorgen Lundman
22894d3c95f5SJorgen Lundman err = dnode_get_fullpath(path, &(data->mdn), 0, &(data->dnode), &isfs, data);
22904d3c95f5SJorgen Lundman if (err) {
22914d3c95f5SJorgen Lundman zfs_unmount(data);
22924d3c95f5SJorgen Lundman return err;
22934d3c95f5SJorgen Lundman }
22944d3c95f5SJorgen Lundman if (isfs) {
22954d3c95f5SJorgen Lundman uint64_t childobj, headobj;
22964d3c95f5SJorgen Lundman uint64_t snapobj;
22974d3c95f5SJorgen Lundman dnode_end_t dn;
22984d3c95f5SJorgen Lundman struct zfs_dirhook_info info;
22994d3c95f5SJorgen Lundman
23004d3c95f5SJorgen Lundman fill_fs_info(&info, data->dnode, data);
23014d3c95f5SJorgen Lundman hook("@", &info);
23024d3c95f5SJorgen Lundman
23034d3c95f5SJorgen Lundman childobj = zfs_to_cpu64(((dsl_dir_phys_t *) DN_BONUS(&data->dnode.dn))->dd_child_dir_zapobj, data->dnode.endian);
23044d3c95f5SJorgen Lundman headobj = zfs_to_cpu64(((dsl_dir_phys_t *) DN_BONUS(&data->dnode.dn))->dd_head_dataset_obj, data->dnode.endian);
23054d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), childobj,
23064d3c95f5SJorgen Lundman DMU_OT_DSL_DIR_CHILD_MAP, &dn, data);
23074d3c95f5SJorgen Lundman if (err) {
23084d3c95f5SJorgen Lundman zfs_unmount(data);
23094d3c95f5SJorgen Lundman return err;
23104d3c95f5SJorgen Lundman }
23114d3c95f5SJorgen Lundman
23124d3c95f5SJorgen Lundman
23134d3c95f5SJorgen Lundman zap_iterate(&dn, iterate_zap_fs, data);
23144d3c95f5SJorgen Lundman
23154d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), headobj, DMU_OT_DSL_DATASET, &dn, data);
23164d3c95f5SJorgen Lundman if (err) {
23174d3c95f5SJorgen Lundman zfs_unmount(data);
23184d3c95f5SJorgen Lundman return err;
23194d3c95f5SJorgen Lundman }
23204d3c95f5SJorgen Lundman
23214d3c95f5SJorgen Lundman snapobj = zfs_to_cpu64(((dsl_dataset_phys_t *) DN_BONUS(&dn.dn))->ds_snapnames_zapobj, dn.endian);
23224d3c95f5SJorgen Lundman
23234d3c95f5SJorgen Lundman err = dnode_get(&(data->mos), snapobj,
23244d3c95f5SJorgen Lundman DMU_OT_DSL_DS_SNAP_MAP, &dn, data);
23254d3c95f5SJorgen Lundman if (err) {
23264d3c95f5SJorgen Lundman zfs_unmount(data);
23274d3c95f5SJorgen Lundman return err;
23284d3c95f5SJorgen Lundman }
23294d3c95f5SJorgen Lundman
23304d3c95f5SJorgen Lundman zap_iterate(&dn, iterate_zap_snap, data);
23314d3c95f5SJorgen Lundman } else {
23324d3c95f5SJorgen Lundman if (data->dnode.dn.dn_type != DMU_OT_DIRECTORY_CONTENTS) {
23334d3c95f5SJorgen Lundman zfs_unmount(data);
23344d3c95f5SJorgen Lundman printf("not a directory\n");
23354d3c95f5SJorgen Lundman return ZFS_ERR_BAD_FILE_TYPE;
23364d3c95f5SJorgen Lundman }
23374d3c95f5SJorgen Lundman zap_iterate(&(data->dnode), iterate_zap, data);
23384d3c95f5SJorgen Lundman }
23394d3c95f5SJorgen Lundman zfs_unmount(data);
23404d3c95f5SJorgen Lundman return ZFS_ERR_NONE;
23414d3c95f5SJorgen Lundman }
2342