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521 lines
12 KiB
C
521 lines
12 KiB
C
/*
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Unix SMB/CIFS implementation.
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Registry interface
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Copyright (C) Jelmer Vernooij 2004-2007.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "includes.h"
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#include "registry.h"
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#include "lib/ldb/include/ldb.h"
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#include "lib/ldb/include/ldb_errors.h"
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#include "db_wrap.h"
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#include "librpc/gen_ndr/winreg.h"
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#include "param/param.h"
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static struct hive_operations reg_backend_ldb;
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struct ldb_key_data
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{
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struct hive_key key;
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struct ldb_context *ldb;
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struct ldb_dn *dn;
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struct ldb_message **subkeys, **values;
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int subkey_count, value_count;
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};
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static void reg_ldb_unpack_value(TALLOC_CTX *mem_ctx, struct ldb_message *msg,
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const char **name, uint32_t *type,
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DATA_BLOB *data)
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{
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const struct ldb_val *val;
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if (name != NULL)
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*name = talloc_strdup(mem_ctx,
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ldb_msg_find_attr_as_string(msg, "value",
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NULL));
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if (type != NULL)
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*type = ldb_msg_find_attr_as_uint(msg, "type", 0);
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val = ldb_msg_find_ldb_val(msg, "data");
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switch (*type)
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{
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case REG_SZ:
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case REG_EXPAND_SZ:
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data->length = convert_string_talloc(mem_ctx, CH_UTF8, CH_UTF16,
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val->data, val->length,
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(void **)&data->data);
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break;
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case REG_DWORD: {
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uint32_t tmp = strtoul((char *)val->data, NULL, 0);
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*data = data_blob_talloc(mem_ctx, &tmp, 4);
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}
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break;
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default:
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*data = data_blob_talloc(mem_ctx, val->data, val->length);
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break;
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}
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}
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static struct ldb_message *reg_ldb_pack_value(struct ldb_context *ctx,
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TALLOC_CTX *mem_ctx,
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const char *name,
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uint32_t type, DATA_BLOB data)
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{
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struct ldb_val val;
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struct ldb_message *msg = talloc_zero(mem_ctx, struct ldb_message);
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char *type_s;
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ldb_msg_add_string(msg, "value", talloc_strdup(mem_ctx, name));
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switch (type) {
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case REG_SZ:
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case REG_EXPAND_SZ:
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val.length = convert_string_talloc(mem_ctx, CH_UTF16, CH_UTF8,
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(void *)data.data,
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data.length,
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(void **)&val.data);
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ldb_msg_add_value(msg, "data", &val, NULL);
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break;
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case REG_DWORD:
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ldb_msg_add_string(msg, "data",
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talloc_asprintf(mem_ctx, "0x%x",
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IVAL(data.data, 0)));
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break;
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default:
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ldb_msg_add_value(msg, "data", &data, NULL);
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}
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type_s = talloc_asprintf(mem_ctx, "%u", type);
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ldb_msg_add_string(msg, "type", type_s);
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return msg;
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}
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static int reg_close_ldb_key(struct ldb_key_data *key)
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{
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if (key->subkeys != NULL) {
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talloc_free(key->subkeys);
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key->subkeys = NULL;
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}
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if (key->values != NULL) {
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talloc_free(key->values);
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key->values = NULL;
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}
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return 0;
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}
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static struct ldb_dn *reg_path_to_ldb(TALLOC_CTX *mem_ctx,
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const struct hive_key *from,
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const char *path, const char *add)
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{
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TALLOC_CTX *local_ctx;
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struct ldb_dn *ret;
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char *mypath = talloc_strdup(mem_ctx, path);
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char *begin;
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struct ldb_key_data *kd = talloc_get_type(from, struct ldb_key_data);
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struct ldb_context *ldb = kd->ldb;
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local_ctx = talloc_new(mem_ctx);
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if (add) {
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ret = ldb_dn_new(mem_ctx, ldb, add);
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} else {
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ret = ldb_dn_new(mem_ctx, ldb, NULL);
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}
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if (!ldb_dn_validate(ret)) {
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talloc_free(ret);
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talloc_free(local_ctx);
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return NULL;
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}
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while (mypath) {
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char *keyname;
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begin = strrchr(mypath, '\\');
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if (begin) keyname = begin + 1;
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else keyname = mypath;
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if(strlen(keyname)) {
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ldb_dn_add_base_fmt(ret, "key=%s", keyname);
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}
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if(begin) {
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*begin = '\0';
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} else {
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break;
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}
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}
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ldb_dn_add_base(ret, kd->dn);
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talloc_free(local_ctx);
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return ret;
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}
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static WERROR cache_subkeys(struct ldb_key_data *kd)
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{
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struct ldb_context *c = kd->ldb;
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struct ldb_result *res;
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int ret;
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ret = ldb_search(c, kd->dn, LDB_SCOPE_ONELEVEL, "(key=*)", NULL, &res);
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if (ret != LDB_SUCCESS) {
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DEBUG(0, ("Error getting subkeys for '%s': %s\n",
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ldb_dn_get_linearized(kd->dn), ldb_errstring(c)));
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return WERR_FOOBAR;
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}
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kd->subkey_count = res->count;
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kd->subkeys = talloc_steal(kd, res->msgs);
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talloc_free(res);
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return WERR_OK;
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}
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static WERROR cache_values(struct ldb_key_data *kd)
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{
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struct ldb_context *c = kd->ldb;
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struct ldb_result *res;
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int ret;
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ret = ldb_search(c, kd->dn, LDB_SCOPE_ONELEVEL,
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"(value=*)", NULL, &res);
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if (ret != LDB_SUCCESS) {
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DEBUG(0, ("Error getting values for '%s': %s\n",
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ldb_dn_get_linearized(kd->dn), ldb_errstring(c)));
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return WERR_FOOBAR;
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}
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kd->value_count = res->count;
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kd->values = talloc_steal(kd, res->msgs);
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talloc_free(res);
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return WERR_OK;
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}
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static WERROR ldb_get_subkey_by_id(TALLOC_CTX *mem_ctx,
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const struct hive_key *k, uint32_t idx,
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const char **name,
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const char **classname,
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NTTIME *last_mod_time)
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{
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struct ldb_message_element *el;
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struct ldb_key_data *kd = talloc_get_type(k, struct ldb_key_data);
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/* Do a search if necessary */
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if (kd->subkeys == NULL) {
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W_ERROR_NOT_OK_RETURN(cache_subkeys(kd));
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}
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if (idx >= kd->subkey_count)
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return WERR_NO_MORE_ITEMS;
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el = ldb_msg_find_element(kd->subkeys[idx], "key");
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SMB_ASSERT(el != NULL);
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SMB_ASSERT(el->num_values != 0);
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if (name != NULL)
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*name = talloc_strdup(mem_ctx, (char *)el->values[0].data);
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if (classname != NULL)
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*classname = NULL; /* TODO: Store properly */
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if (last_mod_time != NULL)
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*last_mod_time = 0; /* TODO: we need to add this to the
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ldb backend properly */
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return WERR_OK;
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}
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static WERROR ldb_get_value_by_id(TALLOC_CTX *mem_ctx, const struct hive_key *k,
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int idx, const char **name,
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uint32_t *data_type, DATA_BLOB *data)
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{
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struct ldb_key_data *kd = talloc_get_type(k, struct ldb_key_data);
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/* Do the search if necessary */
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if (kd->values == NULL) {
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W_ERROR_NOT_OK_RETURN(cache_values(kd));
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}
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if (idx >= kd->value_count)
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return WERR_NO_MORE_ITEMS;
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reg_ldb_unpack_value(mem_ctx, kd->values[idx],
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name, data_type, data);
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return WERR_OK;
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}
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static WERROR ldb_get_value(TALLOC_CTX *mem_ctx, struct hive_key *k,
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const char *name, uint32_t *data_type,
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DATA_BLOB *data)
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{
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struct ldb_key_data *kd = talloc_get_type(k, struct ldb_key_data);
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struct ldb_context *c = kd->ldb;
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struct ldb_result *res;
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int ret;
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char *query = talloc_asprintf(mem_ctx, "(value=%s)", name);
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ret = ldb_search(c, kd->dn, LDB_SCOPE_ONELEVEL, query, NULL, &res);
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talloc_free(query);
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if (ret != LDB_SUCCESS) {
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DEBUG(0, ("Error getting values for '%s': %s\n",
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ldb_dn_get_linearized(kd->dn), ldb_errstring(c)));
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return WERR_FOOBAR;
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}
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if (res->count == 0)
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return WERR_NOT_FOUND;
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reg_ldb_unpack_value(mem_ctx, res->msgs[0], NULL, data_type, data);
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return WERR_OK;
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}
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static WERROR ldb_open_key(TALLOC_CTX *mem_ctx, const struct hive_key *h,
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const char *name, struct hive_key **key)
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{
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struct ldb_result *res;
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struct ldb_dn *ldap_path;
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int ret;
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struct ldb_key_data *newkd;
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struct ldb_key_data *kd = talloc_get_type(h, struct ldb_key_data);
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struct ldb_context *c = kd->ldb;
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ldap_path = reg_path_to_ldb(mem_ctx, h, name, NULL);
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ret = ldb_search(c, ldap_path, LDB_SCOPE_BASE, "(key=*)", NULL, &res);
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if (ret != LDB_SUCCESS) {
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DEBUG(3, ("Error opening key '%s': %s\n",
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ldb_dn_get_linearized(ldap_path), ldb_errstring(c)));
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return WERR_FOOBAR;
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} else if (res->count == 0) {
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DEBUG(3, ("Key '%s' not found\n",
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ldb_dn_get_linearized(ldap_path)));
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talloc_free(res);
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return WERR_NOT_FOUND;
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}
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newkd = talloc_zero(mem_ctx, struct ldb_key_data);
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newkd->key.ops = ®_backend_ldb;
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newkd->ldb = talloc_reference(newkd, kd->ldb);
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newkd->dn = ldb_dn_copy(mem_ctx, res->msgs[0]->dn);
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*key = (struct hive_key *)newkd;
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talloc_free(res);
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return WERR_OK;
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}
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WERROR reg_open_ldb_file(TALLOC_CTX *parent_ctx, const char *location,
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struct auth_session_info *session_info,
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struct cli_credentials *credentials,
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struct hive_key **k)
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{
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struct ldb_key_data *kd;
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struct ldb_context *wrap;
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if (location == NULL)
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return WERR_INVALID_PARAM;
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wrap = ldb_wrap_connect(parent_ctx, global_loadparm,
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location, session_info, credentials, 0, NULL);
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if (wrap == NULL) {
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DEBUG(1, (__FILE__": unable to connect\n"));
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return WERR_FOOBAR;
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}
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ldb_set_debug_stderr(wrap);
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kd = talloc_zero(parent_ctx, struct ldb_key_data);
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kd->key.ops = ®_backend_ldb;
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kd->ldb = talloc_reference(kd, wrap);
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talloc_set_destructor (kd, reg_close_ldb_key);
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kd->dn = ldb_dn_new(kd, wrap, "hive=NONE");
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*k = (struct hive_key *)kd;
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return WERR_OK;
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}
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static WERROR ldb_add_key(TALLOC_CTX *mem_ctx, const struct hive_key *parent,
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const char *name, const char *classname,
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struct security_descriptor *sd,
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struct hive_key **newkey)
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{
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const struct ldb_key_data *parentkd = (const struct ldb_key_data *)parent;
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struct ldb_message *msg;
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struct ldb_key_data *newkd;
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int ret;
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msg = ldb_msg_new(mem_ctx);
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msg->dn = reg_path_to_ldb(msg, parent, name, NULL);
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ldb_msg_add_string(msg, "key", talloc_strdup(mem_ctx, name));
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if (classname != NULL)
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ldb_msg_add_string(msg, "classname",
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talloc_strdup(mem_ctx, classname));
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ret = ldb_add(parentkd->ldb, msg);
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if (ret < 0) {
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DEBUG(1, ("ldb_msg_add: %s\n", ldb_errstring(parentkd->ldb)));
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return WERR_FOOBAR;
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}
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DEBUG(2, ("key added: %s\n", ldb_dn_get_linearized(msg->dn)));
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newkd = talloc_zero(mem_ctx, struct ldb_key_data);
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newkd->ldb = talloc_reference(newkd, parentkd->ldb);
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newkd->key.ops = ®_backend_ldb;
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newkd->dn = talloc_steal(newkd, msg->dn);
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*newkey = (struct hive_key *)newkd;
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return WERR_OK;
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}
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static WERROR ldb_del_key(const struct hive_key *key, const char *child)
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{
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int ret;
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struct ldb_key_data *parentkd = talloc_get_type(key, struct ldb_key_data);
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struct ldb_dn *childdn;
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childdn = ldb_dn_copy(parentkd->ldb, parentkd->dn);
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ldb_dn_add_child_fmt(childdn, "key=%s", child);
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ret = ldb_delete(parentkd->ldb, childdn);
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talloc_free(childdn);
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if (ret == LDB_ERR_NO_SUCH_OBJECT) {
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return WERR_NOT_FOUND;
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} else if (ret < 0) {
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DEBUG(1, ("ldb_del_key: %s\n", ldb_errstring(parentkd->ldb)));
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return WERR_FOOBAR;
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}
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return WERR_OK;
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}
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static WERROR ldb_del_value (struct hive_key *key, const char *child)
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{
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int ret;
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struct ldb_key_data *kd = talloc_get_type(key, struct ldb_key_data);
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struct ldb_dn *childdn;
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childdn = ldb_dn_copy(kd->ldb, kd->dn);
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ldb_dn_add_child_fmt(childdn, "value=%s", child);
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ret = ldb_delete(kd->ldb, childdn);
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talloc_free(childdn);
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if (ret == LDB_ERR_NO_SUCH_OBJECT) {
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return WERR_NOT_FOUND;
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} else if (ret < 0) {
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DEBUG(1, ("ldb_del_value: %s\n", ldb_errstring(kd->ldb)));
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return WERR_FOOBAR;
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}
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return WERR_OK;
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}
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static WERROR ldb_set_value(struct hive_key *parent,
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const char *name, uint32_t type,
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const DATA_BLOB data)
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{
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struct ldb_message *msg;
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struct ldb_key_data *kd = talloc_get_type(parent, struct ldb_key_data);
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int ret;
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TALLOC_CTX *mem_ctx = talloc_init("ldb_set_value");
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msg = reg_ldb_pack_value(kd->ldb, mem_ctx, name, type, data);
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msg->dn = ldb_dn_copy(msg, kd->dn);
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ldb_dn_add_child_fmt(msg->dn, "value=%s", name);
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ret = ldb_add(kd->ldb, msg);
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if (ret < 0) {
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ret = ldb_modify(kd->ldb, msg);
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if (ret < 0) {
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DEBUG(1, ("ldb_msg_add: %s\n", ldb_errstring(kd->ldb)));
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talloc_free(mem_ctx);
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return WERR_FOOBAR;
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}
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}
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talloc_free(mem_ctx);
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return WERR_OK;
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}
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static WERROR ldb_get_key_info(TALLOC_CTX *mem_ctx,
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const struct hive_key *key,
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const char **classname,
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uint32_t *num_subkeys,
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uint32_t *num_values,
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NTTIME *last_change_time)
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{
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struct ldb_key_data *kd = talloc_get_type(key, struct ldb_key_data);
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/* FIXME */
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if (classname != NULL)
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*classname = NULL;
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if (num_subkeys != NULL) {
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W_ERROR_NOT_OK_RETURN(cache_subkeys(kd));
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*num_subkeys = kd->subkey_count;
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}
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if (num_values != NULL) {
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W_ERROR_NOT_OK_RETURN(cache_values(kd));
|
|
*num_values = kd->value_count;
|
|
}
|
|
|
|
if (last_change_time != NULL)
|
|
*last_change_time = 0;
|
|
|
|
return WERR_OK;
|
|
}
|
|
|
|
static struct hive_operations reg_backend_ldb = {
|
|
.name = "ldb",
|
|
.add_key = ldb_add_key,
|
|
.del_key = ldb_del_key,
|
|
.get_key_by_name = ldb_open_key,
|
|
.enum_value = ldb_get_value_by_id,
|
|
.enum_key = ldb_get_subkey_by_id,
|
|
.set_value = ldb_set_value,
|
|
.get_value_by_name = ldb_get_value,
|
|
.delete_value = ldb_del_value,
|
|
.get_key_info = ldb_get_key_info,
|
|
};
|