#ifndef CCAN_TDB2_TDB1_PRIVATE_H #define CCAN_TDB2_TDB1_PRIVATE_H /* Unix SMB/CIFS implementation. trivial database library - private includes Copyright (C) Andrew Tridgell 2005 ** NOTE! The following LGPL license applies to the tdb ** library. This does NOT imply that all of Samba is released ** under the LGPL This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 3 of the License, or (at your option) any later version. This library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with this library; if not, see . */ #include "private.h" #include "tdb1.h" /**** FIXME: Type overrides for tdb2, for transition! */ #define tdb_logerr(tdb, ecode, level, ...) \ tdb_logerr((struct tdb_context *)(tdb), (ecode), (level), __VA_ARGS__) #define tdb_error(tdb) \ tdb_error((struct tdb_context *)(tdb)) /***** END FIXME ***/ #include /* #define TDB_TRACE 1 */ #ifndef HAVE_GETPAGESIZE #define getpagesize() 0x2000 #endif #ifndef __STRING #define __STRING(x) #x #endif #ifndef __STRINGSTRING #define __STRINGSTRING(x) __STRING(x) #endif #ifndef __location__ #define __location__ __FILE__ ":" __STRINGSTRING(__LINE__) #endif typedef uint32_t tdb1_len_t; typedef uint32_t tdb1_off_t; #ifndef offsetof #define offsetof(t,f) ((unsigned int)&((t *)0)->f) #endif #define TDB1_MAGIC_FOOD "TDB file\n" #define TDB1_VERSION (0x26011967 + 6) #define TDB1_MAGIC (0x26011999U) #define TDB1_FREE_MAGIC (~TDB1_MAGIC) #define TDB1_DEAD_MAGIC (0xFEE1DEAD) #define TDB1_RECOVERY_MAGIC (0xf53bc0e7U) #define TDB1_RECOVERY_INVALID_MAGIC (0x0) #define TDB1_HASH_RWLOCK_MAGIC (0xbad1a51U) #define TDB1_ALIGNMENT 4 #define TDB1_DEFAULT_HASH_SIZE 131 #define TDB1_FREELIST_TOP (sizeof(struct tdb1_header)) #define TDB1_ALIGN(x,a) (((x) + (a)-1) & ~((a)-1)) #define TDB1_BYTEREV(x) (((((x)&0xff)<<24)|((x)&0xFF00)<<8)|(((x)>>8)&0xFF00)|((x)>>24)) #define TDB1_DEAD(r) ((r)->magic == TDB1_DEAD_MAGIC) #define TDB1_BAD_MAGIC(r) ((r)->magic != TDB1_MAGIC && !TDB1_DEAD(r)) #define TDB1_HASH_TOP(hash) (TDB1_FREELIST_TOP + (TDB1_BUCKET(hash)+1)*sizeof(tdb1_off_t)) #define TDB1_HASHTABLE_SIZE(tdb) ((tdb->header.hash_size+1)*sizeof(tdb1_off_t)) #define TDB1_DATA_START(hash_size) (TDB1_HASH_TOP(hash_size-1) + sizeof(tdb1_off_t)) #define TDB1_RECOVERY_HEAD offsetof(struct tdb1_header, recovery_start) #define TDB1_SEQNUM_OFS offsetof(struct tdb1_header, sequence_number) #define TDB1_PAD_BYTE 0x42 #define TDB1_PAD_U32 0x42424242 /* lock offsets */ #define TDB1_OPEN_LOCK 0 #define TDB1_ACTIVE_LOCK 4 #define TDB1_TRANSACTION_LOCK 8 /* free memory if the pointer is valid and zero the pointer */ #ifndef SAFE_FREE #define SAFE_FREE(x) do { if ((x) != NULL) {free(x); (x)=NULL;} } while(0) #endif #define TDB1_BUCKET(hash) ((hash) % tdb->header.hash_size) #define TDB1_DOCONV() (tdb->flags & TDB1_CONVERT) #define TDB1_CONV(x) (TDB1_DOCONV() ? tdb1_convert(&x, sizeof(x)) : &x) /* the body of the database is made of one tdb1_record for the free space plus a separate data list for each hash value */ struct tdb1_record { tdb1_off_t next; /* offset of the next record in the list */ tdb1_len_t rec_len; /* total byte length of record */ tdb1_len_t key_len; /* byte length of key */ tdb1_len_t data_len; /* byte length of data */ uint32_t full_hash; /* the full 32 bit hash of the key */ uint32_t magic; /* try to catch errors */ /* the following union is implied: union { char record[rec_len]; struct { char key[key_len]; char data[data_len]; } uint32_t totalsize; (tailer) } */ }; /* this is stored at the front of every database */ struct tdb1_header { char magic_food[32]; /* for /etc/magic */ uint32_t version; /* version of the code */ uint32_t hash_size; /* number of hash entries */ tdb1_off_t rwlocks; /* obsolete - kept to detect old formats */ tdb1_off_t recovery_start; /* offset of transaction recovery region */ tdb1_off_t sequence_number; /* used when TDB1_SEQNUM is set */ uint32_t magic1_hash; /* hash of TDB1_MAGIC_FOOD. */ uint32_t magic2_hash; /* hash of TDB1_MAGIC. */ tdb1_off_t reserved[27]; }; struct tdb1_lock_type { uint32_t off; uint32_t count; uint32_t ltype; }; struct tdb1_traverse_lock { struct tdb1_traverse_lock *next; uint32_t off; uint32_t hash; int lock_rw; }; enum tdb1_lock_flags { /* WAIT == F_SETLKW, NOWAIT == F_SETLK */ TDB1_LOCK_NOWAIT = 0, TDB1_LOCK_WAIT = 1, /* If set, don't log an error on failure. */ TDB1_LOCK_PROBE = 2, }; struct tdb1_context; struct tdb1_methods { int (*tdb1_read)(struct tdb1_context *, tdb1_off_t , void *, tdb1_len_t , int ); int (*tdb1_write)(struct tdb1_context *, tdb1_off_t, const void *, tdb1_len_t); void (*next_hash_chain)(struct tdb1_context *, uint32_t *); int (*tdb1_oob)(struct tdb1_context *, tdb1_off_t , int ); int (*tdb1_expand_file)(struct tdb1_context *, tdb1_off_t , tdb1_off_t ); }; struct tdb1_context { struct tdb1_context *next; char *name; /* the name of the database */ /* Logging function */ void (*log_fn)(struct tdb1_context *tdb, enum tdb_log_level level, enum TDB_ERROR ecode, const char *message, void *data); void *log_data; /* Last error we returned. */ enum TDB_ERROR last_error; /* error code for last tdb error */ void *map_ptr; /* where it is currently mapped */ int fd; /* open file descriptor for the database */ tdb1_len_t map_size; /* how much space has been mapped */ int read_only; /* opened read-only */ int traverse_read; /* read-only traversal */ int traverse_write; /* read-write traversal */ struct tdb1_lock_type allrecord_lock; /* .offset == upgradable */ int num_lockrecs; struct tdb1_lock_type *lockrecs; /* only real locks, all with count>0 */ struct tdb1_header header; /* a cached copy of the header */ uint32_t flags; /* the flags passed to tdb1_open */ struct tdb1_traverse_lock travlocks; /* current traversal locks */ dev_t device; /* uniquely identifies this tdb */ ino_t inode; /* uniquely identifies this tdb */ unsigned int (*hash_fn)(TDB1_DATA *key); int open_flags; /* flags used in the open - needed by reopen */ const struct tdb1_methods *methods; struct tdb1_transaction *transaction; int page_size; int max_dead_records; }; /* internal prototypes */ int tdb1_munmap(struct tdb1_context *tdb); void tdb1_mmap(struct tdb1_context *tdb); int tdb1_lock(struct tdb1_context *tdb, int list, int ltype); int tdb1_nest_lock(struct tdb1_context *tdb, uint32_t offset, int ltype, enum tdb1_lock_flags flags); int tdb1_nest_unlock(struct tdb1_context *tdb, uint32_t offset, int ltype); int tdb1_unlock(struct tdb1_context *tdb, int list, int ltype); int tdb1_brlock(struct tdb1_context *tdb, int rw_type, tdb1_off_t offset, size_t len, enum tdb1_lock_flags flags); int tdb1_brunlock(struct tdb1_context *tdb, int rw_type, tdb1_off_t offset, size_t len); bool tdb1_have_extra_locks(struct tdb1_context *tdb); void tdb1_release_transaction_locks(struct tdb1_context *tdb); int tdb1_transaction_lock(struct tdb1_context *tdb, int ltype, enum tdb1_lock_flags lockflags); int tdb1_transaction_unlock(struct tdb1_context *tdb, int ltype); int tdb1_recovery_area(struct tdb1_context *tdb, const struct tdb1_methods *methods, tdb1_off_t *recovery_offset, struct tdb1_record *rec); int tdb1_allrecord_lock(struct tdb1_context *tdb, int ltype, enum tdb1_lock_flags flags, bool upgradable); int tdb1_allrecord_unlock(struct tdb1_context *tdb, int ltype); int tdb1_allrecord_upgrade(struct tdb1_context *tdb); int tdb1_write_lock_record(struct tdb1_context *tdb, tdb1_off_t off); int tdb1_write_unlock_record(struct tdb1_context *tdb, tdb1_off_t off); int tdb1_ofs_read(struct tdb1_context *tdb, tdb1_off_t offset, tdb1_off_t *d); int tdb1_ofs_write(struct tdb1_context *tdb, tdb1_off_t offset, tdb1_off_t *d); void *tdb1_convert(void *buf, uint32_t size); int tdb1_free(struct tdb1_context *tdb, tdb1_off_t offset, struct tdb1_record *rec); tdb1_off_t tdb1_allocate(struct tdb1_context *tdb, tdb1_len_t length, struct tdb1_record *rec); int tdb1_ofs_read(struct tdb1_context *tdb, tdb1_off_t offset, tdb1_off_t *d); int tdb1_ofs_write(struct tdb1_context *tdb, tdb1_off_t offset, tdb1_off_t *d); int tdb1_lock_record(struct tdb1_context *tdb, tdb1_off_t off); int tdb1_unlock_record(struct tdb1_context *tdb, tdb1_off_t off); bool tdb1_needs_recovery(struct tdb1_context *tdb); int tdb1_rec_read(struct tdb1_context *tdb, tdb1_off_t offset, struct tdb1_record *rec); int tdb1_rec_write(struct tdb1_context *tdb, tdb1_off_t offset, struct tdb1_record *rec); int tdb1_do_delete(struct tdb1_context *tdb, tdb1_off_t rec_ptr, struct tdb1_record *rec); unsigned char *tdb1_alloc_read(struct tdb1_context *tdb, tdb1_off_t offset, tdb1_len_t len); int tdb1_parse_data(struct tdb1_context *tdb, TDB1_DATA key, tdb1_off_t offset, tdb1_len_t len, int (*parser)(TDB1_DATA key, TDB1_DATA data, void *private_data), void *private_data); tdb1_off_t tdb1_find_lock_hash(struct tdb1_context *tdb, TDB1_DATA key, uint32_t hash, int locktype, struct tdb1_record *rec); void tdb1_io_init(struct tdb1_context *tdb); int tdb1_expand(struct tdb1_context *tdb, tdb1_off_t size); int tdb1_rec_free_read(struct tdb1_context *tdb, tdb1_off_t off, struct tdb1_record *rec); bool tdb1_write_all(int fd, const void *buf, size_t count); int tdb1_transaction_recover(struct tdb1_context *tdb); void tdb1_header_hash(struct tdb1_context *tdb, uint32_t *magic1_hash, uint32_t *magic2_hash); unsigned int tdb1_old_hash(TDB1_DATA *key); size_t tdb1_dead_space(struct tdb1_context *tdb, tdb1_off_t off); #endif /* CCAN_TDB2_TDB1_PRIVATE_H */