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03ea068193
modrdn to run, but masks the underlying subtree index bug (which I haven't found yet). Apply modrdn/dn2id changes to BDB2.
251 lines
7.9 KiB
C
251 lines
7.9 KiB
C
#ifndef _PROTO_BACK_BDB2
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#define _PROTO_BACK_BDB2
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#include <ldap_cdefs.h>
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#include <ac/time.h> /* Needed in add.c compare.c struct timeval */
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#include "external.h"
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LDAP_BEGIN_DECL
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/*
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* add.c
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*/
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int bdb2i_release_add_lock LDAP_P(());
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/*
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* alias.c
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*/
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Entry * bdb2i_deref_r LDAP_P((
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Backend *be,
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Entry *e,
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char *dn,
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int *err,
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Entry **matched,
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char **text ));
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#define deref_entry_r( be, e, err, matched, text ) \
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bdb2i_deref_r( be, e, NULL, err, matched, text )
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#define deref_dn_r( be, dn, err, matched, text ) \
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bdb2i_deref_r( be, NULL, dn, err, matched, text )
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/*
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* attr.c
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*/
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void bdb2i_attr_masks LDAP_P(( struct ldbminfo *li, char *type, int *indexmask,
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int *syntaxmask ));
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void bdb2i_attr_index_config LDAP_P(( struct ldbminfo *li,
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const char *fname,
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int lineno, int argc, char **argv, int init ));
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/*
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* cache.c
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*/
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int bdb2i_cache_add_entry_rw LDAP_P(( struct cache *cache, Entry *e, int rw ));
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int bdb2i_cache_update_entry LDAP_P(( struct cache *cache, Entry *e ));
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void bdb2i_cache_return_entry_rw LDAP_P(( struct cache *cache, Entry *e,
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int rw ));
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#define bdb2i_cache_return_entry_r(c, e) bdb2i_cache_return_entry_rw((c), (e), 0)
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#define bdb2i_cache_return_entry_w(c, e) bdb2i_cache_return_entry_rw((c), (e), 1)
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ID bdb2i_cache_find_entry_dn2id LDAP_P(( BackendDB *be, struct cache *cache,
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const char *dn ));
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Entry * bdb2i_cache_find_entry_id LDAP_P(( struct cache *cache, ID id, int rw ));
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int bdb2i_cache_delete_entry LDAP_P(( struct cache *cache, Entry *e ));
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/*
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* dbcache.c
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*/
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struct dbcache * bdb2i_cache_open LDAP_P(( BackendDB *be, char *name, char *suffix,
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int flags ));
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void bdb2i_cache_close LDAP_P(( BackendDB *be, struct dbcache *db ));
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void bdb2i_cache_really_close LDAP_P(( BackendDB *be, struct dbcache *db ));
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void bdb2i_cache_flush_all LDAP_P(( BackendDB *be ));
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Datum bdb2i_cache_fetch LDAP_P(( struct dbcache *db, Datum key ));
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int bdb2i_cache_store LDAP_P(( struct dbcache *db, Datum key, Datum data, int flags ));
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int bdb2i_cache_delete LDAP_P(( struct dbcache *db, Datum key ));
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/*
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* dn2id.c
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*/
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int bdb2i_dn2id_add LDAP_P(( BackendDB *be, const char *dn, ID id ));
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ID bdb2i_dn2id LDAP_P(( BackendDB *be, const char *dn ));
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int bdb2i_dn2id_delete LDAP_P(( BackendDB *be, const char *dn, ID id ));
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ID_BLOCK *
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bdb2i_dn2idl LDAP_P((
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BackendDB *be,
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const char *dn,
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int prefix ));
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Entry * bdb2i_dn2entry_rw LDAP_P((
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BackendDB *be,
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const char *dn,
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Entry **matched,
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int rw ));
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#define bdb2i_dn2entry_r(be, dn, m) bdb2i_dn2entry_rw((be), (dn), (m), 0)
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#define bdb2i_dn2entry_w(be, dn, m) bdb2i_dn2entry_rw((be), (dn), (m), 1)
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/*
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* entry.c
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*/
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int bdb2_back_entry_release_rw LDAP_P(( BackendDB *be, Entry *e, int rw ));
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/*
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* filterindex.c
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*/
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ID_BLOCK * bdb2i_filter_candidates LDAP_P(( BackendDB *be, Filter *f ));
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/*
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* id2children.c
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*/
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int bdb2i_has_children LDAP_P(( BackendDB *be, Entry *p ));
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/*
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* id2entry.c
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*/
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int bdb2i_id2entry_add LDAP_P(( BackendDB *be, Entry *e ));
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int bdb2i_id2entry_delete LDAP_P(( BackendDB *be, Entry *e ));
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Entry * bdb2i_id2entry_rw LDAP_P(( BackendDB *be, ID id, int rw ));
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#define bdb2i_id2entry_r(be, id) bdb2i_id2entry_rw((be), (id), 0)
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#define bdb2i_id2entry_w(be, id) bdb2i_id2entry_rw((be), (id), 1)
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/*
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* idl.c
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*/
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ID_BLOCK * bdb2i_idl_alloc LDAP_P(( unsigned int nids ));
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ID_BLOCK * bdb2i_idl_allids LDAP_P(( BackendDB *be ));
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void bdb2i_idl_free LDAP_P(( ID_BLOCK *idl ));
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ID_BLOCK * bdb2i_idl_fetch LDAP_P(( BackendDB *be, struct dbcache *db, Datum key ));
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int bdb2i_idl_insert_key LDAP_P(( BackendDB *be, struct dbcache *db, Datum key, ID id ));
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int bdb2i_idl_insert LDAP_P(( ID_BLOCK **idl, ID id, unsigned int maxids ));
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int bdb2i_idl_delete_key LDAP_P(( BackendDB *be, struct dbcache *db, Datum key, ID id ));
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ID_BLOCK * bdb2i_idl_intersection LDAP_P(( BackendDB *be, ID_BLOCK *a, ID_BLOCK *b ));
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ID_BLOCK * bdb2i_idl_union LDAP_P(( BackendDB *be, ID_BLOCK *a, ID_BLOCK *b ));
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ID_BLOCK * bdb2i_idl_notin LDAP_P(( BackendDB *be, ID_BLOCK *a, ID_BLOCK *b ));
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ID bdb2i_idl_firstid LDAP_P(( ID_BLOCK *idl, ID *cursor ));
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ID bdb2i_idl_nextid LDAP_P(( ID_BLOCK *idl, ID *cursor ));
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/*
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* index.c
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*/
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int bdb2i_index_add_entry LDAP_P(( BackendDB *be, Entry *e ));
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int bdb2i_index_add_mods LDAP_P(( BackendDB *be, LDAPModList *ml, ID id ));
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ID_BLOCK * bdb2i_index_read LDAP_P(( BackendDB *be, char *type, int indextype, char *val ));
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int bdb2i_index_add_values LDAP_P(( BackendDB *be, char *type, struct berval **vals, ID id ));
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/*
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* kerberos.c
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*/
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#ifdef HAVE_KERBEROS
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/* bdb2i_krbv4_ldap_auth LDAP_P(( BackendDB *be, struct berval *cred, AUTH_DAT *ad )); */
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#endif
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/*
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* modify.c
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* These prototypes are placed here because they are used by modify and
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* modify rdn which are implemented in different files.
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*
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* We need bdb2i_back_modify_internal here because of LDAP modrdn & modify use
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* it. If we do not add this, there would be a bunch of code replication
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* here and there and of course the likelihood of bugs increases.
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* Juan C. Gomez (gomez@engr.sgi.com) 05/18/99
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*
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*/
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int bdb2i_add_values LDAP_P(( Entry *e, LDAPMod *mod, char *dn ));
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int bdb2i_delete_values LDAP_P(( Entry *e, LDAPMod *mod, char *dn ));
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int bdb2i_replace_values LDAP_P(( Entry *e, LDAPMod *mod, char *dn ));
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int bdb2i_back_modify_internal LDAP_P((Backend *be, Connection *conn, Operation *op,
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char *dn, LDAPModList *mods, Entry *e));
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/*
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* nextid.c
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*/
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ID bdb2i_next_id LDAP_P(( BackendDB *be ));
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void bdb2i_next_id_return LDAP_P(( BackendDB *be, ID id ));
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ID bdb2i_next_id_get LDAP_P(( BackendDB *be ));
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int bdb2i_next_id_save LDAP_P(( BackendDB *be ));
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/*
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* startup.c
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*/
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int bdb2i_back_startup LDAP_P(( BackendInfo *bi ));
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int bdb2i_back_shutdown LDAP_P(( BackendInfo *bi ));
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int bdb2i_back_db_startup LDAP_P(( BackendDB *be ));
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int bdb2i_back_db_shutdown LDAP_P(( BackendDB *be ));
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/*
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* timing.c
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*/
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void bdb2i_uncond_start_timing LDAP_P(( struct timeval *time1 ));
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#define bdb2i_start_timing(bi,time1) if ( with_timing( bi )) bdb2i_uncond_start_timing( (time1) )
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void bdb2i_uncond_stop_timing LDAP_P(( struct timeval time1,
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char *func, Connection *conn, Operation *op, int level ));
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#define bdb2i_stop_timing(bi,time1,func,conn,op) if ( with_timing( bi )) bdb2i_uncond_stop_timing( (time1), (func), (conn), (op), LDAP_DEBUG_ANY )
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/*
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* porter.c
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*/
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int bdb2i_enter_backend_rw LDAP_P(( DB_LOCK *lock, int writer ));
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#define bdb2i_enter_backend_r(lock) bdb2i_enter_backend_rw((lock), 0 )
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#define bdb2i_enter_backend_w(lock) bdb2i_enter_backend_rw((lock), 1 )
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int bdb2i_leave_backend_rw LDAP_P(( DB_LOCK lock, int writer ));
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#define bdb2i_leave_backend_r(lock) bdb2i_leave_backend_rw((lock), 0 )
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#define bdb2i_leave_backend_w(lock) bdb2i_leave_backend_rw((lock), 1 )
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/*
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* txn.c
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*/
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int bdb2i_txn_head_init LDAP_P(( BDB2_TXN_HEAD *head ));
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void bdb2i_txn_attr_config LDAP_P((
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struct ldbminfo *li,
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char *attr,
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int open ));
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int bdb2i_txn_open_files LDAP_P(( BackendDB *be ));
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void bdb2i_txn_close_files LDAP_P(( BackendDB *be ));
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BDB2_TXN_FILES *bdb2i_get_db_file_cache LDAP_P((
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struct ldbminfo *li,
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char *name ));
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int bdb2i_check_additional_attr_index LDAP_P(( struct ldbminfo *li ));
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void bdb2i_check_default_attr_index_add LDAP_P((
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struct ldbminfo *li,
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Entry *e ));
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void bdb2i_check_default_attr_index_mod LDAP_P((
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struct ldbminfo *li,
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LDAPModList *modlist ));
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ID bdb2i_get_nextid LDAP_P(( BackendDB *be ));
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int bdb2i_put_nextid LDAP_P(( BackendDB *be, ID id ));
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LDBM bdb2i_db_open LDAP_P(( char *name, int type, int rw, int mode,
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int dbcachesize ));
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int bdb2i_db_store LDAP_P(( LDBM ldbm, Datum key, Datum data, int flags ));
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int bdb2i_db_delete LDAP_P(( LDBM ldbm, Datum key ));
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Datum bdb2i_db_fetch LDAP_P(( LDBM ldbm, Datum key ));
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Datum bdb2i_db_firstkey LDAP_P(( LDBM ldbm, DBC **dbch ));
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Datum bdb2i_db_nextkey LDAP_P(( LDBM ldbm, Datum key, DBC *dbcp ));
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int bdb2i_start_transction LDAP_P(( DB_TXNMGR *txmgr ));
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int bdb2i_finish_transaction LDAP_P(( ));
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int bdb2i_set_txn_checkpoint LDAP_P(( DB_TXNMGR *txmgr, int forced ));
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LDAP_END_DECL
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#endif
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