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d5bd531d96
This is a substantial ABI break. Rebuild dconf.
666 lines
19 KiB
C
666 lines
19 KiB
C
/*
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* Copyright © 2010 Codethink Limited
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* Copyright © 2010 Novell, Inc.
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the licence, or (at your option) any later version.
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*
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* This library 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 GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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* Boston, MA 02111-1307, USA.
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*
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* Authors: Vincent Untz <vuntz@gnome.org>
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* Ryan Lortie <desrt@desrt.ca>
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*/
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#include "config.h"
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#include <stdio.h>
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#include <string.h>
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#include "gfile.h"
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#include "gfileinfo.h"
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#include "gfilemonitor.h"
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#include "gsimplepermission.h"
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#include "gsettingsbackend.h"
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#define G_TYPE_KEYFILE_SETTINGS_BACKEND (g_keyfile_settings_backend_get_type ())
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#define G_KEYFILE_SETTINGS_BACKEND(inst) (G_TYPE_CHECK_INSTANCE_CAST ((inst), \
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G_TYPE_KEYFILE_SETTINGS_BACKEND, \
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GKeyfileSettingsBackend))
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#define G_IS_KEYFILE_SETTINGS_BACKEND(inst) (G_TYPE_CHECK_INSTANCE_TYPE ((inst), \
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G_TYPE_KEYFILE_SETTINGS_BACKEND))
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typedef GSettingsBackendClass GKeyfileSettingsBackendClass;
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typedef struct
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{
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GSettingsBackend parent_instance;
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GKeyFile *keyfile;
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GPermission *permission;
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gboolean writable;
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gchar *prefix;
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gint prefix_len;
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gchar *root_group;
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gint root_group_len;
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GFile *file;
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GFileMonitor *file_monitor;
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guint8 digest[32];
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GFile *dir;
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GFileMonitor *dir_monitor;
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} GKeyfileSettingsBackend;
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static GType g_keyfile_settings_backend_get_type (void);
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G_DEFINE_TYPE (GKeyfileSettingsBackend,
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g_keyfile_settings_backend,
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G_TYPE_SETTINGS_BACKEND)
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static void
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compute_checksum (guint8 *digest,
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gconstpointer contents,
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gsize length)
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{
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GChecksum *checksum;
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gsize len = 32;
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checksum = g_checksum_new (G_CHECKSUM_SHA256);
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g_checksum_update (checksum, contents, length);
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g_checksum_get_digest (checksum, digest, &len);
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g_checksum_free (checksum);
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g_assert (len == 32);
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}
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static void
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g_keyfile_settings_backend_keyfile_write (GKeyfileSettingsBackend *kfsb)
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{
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gchar *contents;
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gsize length;
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contents = g_key_file_to_data (kfsb->keyfile, &length, NULL);
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g_file_replace_contents (kfsb->file, contents, length, NULL, FALSE,
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G_FILE_CREATE_REPLACE_DESTINATION,
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NULL, NULL, NULL);
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compute_checksum (kfsb->digest, contents, length);
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g_free (contents);
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}
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static gboolean
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group_name_matches (const gchar *group_name,
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const gchar *prefix)
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{
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/* sort of like g_str_has_prefix() except that it must be an exact
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* match or the prefix followed by '/'.
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*
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* for example 'a' is a prefix of 'a' and 'a/b' but not 'ab'.
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*/
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gint i;
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for (i = 0; prefix[i]; i++)
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if (prefix[i] != group_name[i])
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return FALSE;
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return group_name[i] == '\0' || group_name[i] == '/';
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}
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static gboolean
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convert_path (GKeyfileSettingsBackend *kfsb,
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const gchar *key,
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gchar **group,
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gchar **basename)
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{
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gint key_len = strlen (key);
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gint i;
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if (key_len < kfsb->prefix_len ||
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memcmp (key, kfsb->prefix, kfsb->prefix_len) != 0)
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return FALSE;
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key_len -= kfsb->prefix_len;
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key += kfsb->prefix_len;
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for (i = key_len; i >= 0; i--)
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if (key[i] == '/')
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break;
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if (kfsb->root_group)
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{
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/* if a root_group was specified, make sure the user hasn't given
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* a path that ghosts that group name
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*/
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if (i == kfsb->root_group_len && memcmp (key, kfsb->root_group, i) == 0)
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return FALSE;
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}
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else
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{
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/* if no root_group was given, ensure that the user gave a path */
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if (i == -1)
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return FALSE;
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}
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if (group)
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{
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if (i >= 0)
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{
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*group = g_memdup (key, i + 1);
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(*group)[i] = '\0';
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}
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else
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*group = g_strdup (kfsb->root_group);
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}
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if (basename)
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*basename = g_memdup (key + i + 1, key_len - i);
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return TRUE;
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}
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gboolean
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path_is_valid (GKeyfileSettingsBackend *kfsb,
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const gchar *path)
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{
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return convert_path (kfsb, path, NULL, NULL);
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}
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static GVariant *
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get_from_keyfile (GKeyfileSettingsBackend *kfsb,
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const GVariantType *type,
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const gchar *key)
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{
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GVariant *return_value = NULL;
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gchar *group, *name;
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if (convert_path (kfsb, key, &group, &name))
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{
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gchar *str;
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g_assert (*name);
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str = g_key_file_get_value (kfsb->keyfile, group, name, NULL);
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if (str)
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{
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return_value = g_variant_parse (type, str, NULL, NULL, NULL);
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g_free (str);
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}
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g_free (group);
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g_free (name);
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}
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return return_value;
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}
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static gboolean
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set_to_keyfile (GKeyfileSettingsBackend *kfsb,
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const gchar *key,
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GVariant *value)
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{
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gchar *group, *name;
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if (convert_path (kfsb, key, &group, &name))
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{
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if (value)
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{
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gchar *str = g_variant_print (value, FALSE);
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g_key_file_set_value (kfsb->keyfile, group, name, str);
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g_variant_unref (g_variant_ref_sink (value));
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g_free (str);
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}
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else
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{
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if (*name == '\0')
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{
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gchar **groups;
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gint i;
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groups = g_key_file_get_groups (kfsb->keyfile, NULL);
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for (i = 0; groups[i]; i++)
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if (group_name_matches (groups[i], group))
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g_key_file_remove_group (kfsb->keyfile, groups[i], NULL);
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g_strfreev (groups);
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}
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else
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g_key_file_remove_key (kfsb->keyfile, group, name, NULL);
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}
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g_free (group);
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g_free (name);
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return TRUE;
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}
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return FALSE;
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}
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static GVariant *
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g_keyfile_settings_backend_read (GSettingsBackend *backend,
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const gchar *key,
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const GVariantType *expected_type,
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gboolean default_value)
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{
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GKeyfileSettingsBackend *kfsb = G_KEYFILE_SETTINGS_BACKEND (backend);
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if (default_value)
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return NULL;
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return get_from_keyfile (kfsb, expected_type, key);
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}
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typedef struct
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{
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GKeyfileSettingsBackend *kfsb;
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gboolean failed;
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} WriteManyData;
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static gboolean
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g_keyfile_settings_backend_write_one (gpointer key,
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gpointer value,
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gpointer user_data)
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{
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WriteManyData *data = user_data;
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gboolean success;
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success = set_to_keyfile (data->kfsb, key, value);
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g_assert (success);
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return FALSE;
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}
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static gboolean
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g_keyfile_settings_backend_check_one (gpointer key,
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gpointer value,
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gpointer user_data)
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{
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WriteManyData *data = user_data;
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return data->failed = !path_is_valid (data->kfsb, key);
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}
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static gboolean
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g_keyfile_settings_backend_write_tree (GSettingsBackend *backend,
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GTree *tree,
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gpointer origin_tag)
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{
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WriteManyData data = { G_KEYFILE_SETTINGS_BACKEND (backend) };
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if (!data.kfsb->writable)
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return FALSE;
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g_tree_foreach (tree, g_keyfile_settings_backend_check_one, &data);
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if (data.failed)
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return FALSE;
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g_tree_foreach (tree, g_keyfile_settings_backend_write_one, &data);
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g_keyfile_settings_backend_keyfile_write (data.kfsb);
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g_settings_backend_changed_tree (backend, tree, origin_tag);
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return TRUE;
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}
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static gboolean
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g_keyfile_settings_backend_write (GSettingsBackend *backend,
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const gchar *key,
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GVariant *value,
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gpointer origin_tag)
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{
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GKeyfileSettingsBackend *kfsb = G_KEYFILE_SETTINGS_BACKEND (backend);
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gboolean success;
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if (!kfsb->writable)
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return FALSE;
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success = set_to_keyfile (kfsb, key, value);
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if (success)
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{
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g_settings_backend_changed (backend, key, origin_tag);
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g_keyfile_settings_backend_keyfile_write (kfsb);
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}
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return success;
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}
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static void
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g_keyfile_settings_backend_reset (GSettingsBackend *backend,
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const gchar *key,
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gpointer origin_tag)
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{
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GKeyfileSettingsBackend *kfsb = G_KEYFILE_SETTINGS_BACKEND (backend);
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if (set_to_keyfile (kfsb, key, NULL))
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g_keyfile_settings_backend_keyfile_write (kfsb);
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g_settings_backend_changed (backend, key, origin_tag);
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}
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static gboolean
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g_keyfile_settings_backend_get_writable (GSettingsBackend *backend,
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const gchar *name)
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{
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GKeyfileSettingsBackend *kfsb = G_KEYFILE_SETTINGS_BACKEND (backend);
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return kfsb->writable && path_is_valid (kfsb, name);
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}
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static GPermission *
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g_keyfile_settings_backend_get_permission (GSettingsBackend *backend,
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const gchar *path)
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{
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GKeyfileSettingsBackend *kfsb = G_KEYFILE_SETTINGS_BACKEND (backend);
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return g_object_ref (kfsb->permission);
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}
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static void
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keyfile_to_tree (GKeyfileSettingsBackend *kfsb,
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GTree *tree,
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GKeyFile *keyfile,
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gboolean dup_check)
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{
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gchar **groups;
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gint i;
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groups = g_key_file_get_groups (keyfile, NULL);
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for (i = 0; groups[i]; i++)
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{
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gboolean is_root_group;
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gchar **keys;
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gint j;
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is_root_group = g_strcmp0 (kfsb->root_group, groups[i]) == 0;
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/* reject group names that will form invalid key names */
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if (!is_root_group &&
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(g_str_has_prefix (groups[i], "/") ||
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g_str_has_suffix (groups[i], "/") || strstr (groups[i], "//")))
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continue;
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keys = g_key_file_get_keys (keyfile, groups[i], NULL, NULL);
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for (j = 0; keys[j]; j++)
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{
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gchar *path, *value;
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/* reject key names with slashes in them */
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if (strchr (keys[j], '/'))
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continue;
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if (is_root_group)
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path = g_strdup_printf ("%s%s", kfsb->prefix, keys[j]);
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else
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path = g_strdup_printf ("%s%s/%s", kfsb->prefix, groups[i], keys[j]);
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value = g_key_file_get_value (keyfile, groups[i], keys[j], NULL);
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if (dup_check && g_strcmp0 (g_tree_lookup (tree, path), value) == 0)
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{
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g_tree_remove (tree, path);
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g_free (value);
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g_free (path);
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}
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else
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g_tree_insert (tree, path, value);
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}
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g_strfreev (keys);
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}
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g_strfreev (groups);
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}
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static void
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g_keyfile_settings_backend_keyfile_reload (GKeyfileSettingsBackend *kfsb)
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{
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guint8 digest[32];
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gchar *contents;
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gsize length;
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contents = NULL;
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length = 0;
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g_file_load_contents (kfsb->file, NULL, &contents, &length, NULL, NULL);
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compute_checksum (digest, contents, length);
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if (memcmp (kfsb->digest, digest, sizeof digest) != 0)
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{
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GKeyFile *keyfiles[2];
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GTree *tree;
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tree = g_tree_new_full ((GCompareDataFunc) strcmp, NULL,
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g_free, g_free);
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keyfiles[0] = kfsb->keyfile;
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keyfiles[1] = g_key_file_new ();
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if (length > 0)
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g_key_file_load_from_data (keyfiles[1], contents, length,
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G_KEY_FILE_KEEP_COMMENTS |
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G_KEY_FILE_KEEP_TRANSLATIONS, NULL);
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keyfile_to_tree (kfsb, tree, keyfiles[0], FALSE);
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keyfile_to_tree (kfsb, tree, keyfiles[1], TRUE);
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g_key_file_free (keyfiles[0]);
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kfsb->keyfile = keyfiles[1];
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if (g_tree_nnodes (tree) > 0)
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g_settings_backend_changed_tree (&kfsb->parent_instance, tree, NULL);
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g_tree_unref (tree);
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memcpy (kfsb->digest, digest, sizeof digest);
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}
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g_free (contents);
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}
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static void
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g_keyfile_settings_backend_keyfile_writable (GKeyfileSettingsBackend *kfsb)
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{
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GFileInfo *fileinfo;
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gboolean writable;
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fileinfo = g_file_query_info (kfsb->dir, "access::*", 0, NULL, NULL);
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if (fileinfo)
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{
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writable =
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g_file_info_get_attribute_boolean (fileinfo, G_FILE_ATTRIBUTE_ACCESS_CAN_WRITE) &&
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g_file_info_get_attribute_boolean (fileinfo, G_FILE_ATTRIBUTE_ACCESS_CAN_EXECUTE);
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g_object_unref (fileinfo);
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}
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else
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writable = FALSE;
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if (writable != kfsb->writable)
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{
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kfsb->writable = writable;
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g_settings_backend_path_writable_changed (&kfsb->parent_instance, "/");
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}
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}
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static void
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g_keyfile_settings_backend_finalize (GObject *object)
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{
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GKeyfileSettingsBackend *kfsb = G_KEYFILE_SETTINGS_BACKEND (object);
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g_key_file_free (kfsb->keyfile);
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g_object_unref (kfsb->permission);
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g_file_monitor_cancel (kfsb->file_monitor);
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g_object_unref (kfsb->file_monitor);
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g_object_unref (kfsb->file);
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g_file_monitor_cancel (kfsb->dir_monitor);
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g_object_unref (kfsb->dir_monitor);
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g_object_unref (kfsb->dir);
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g_free (kfsb->root_group);
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g_free (kfsb->prefix);
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G_OBJECT_CLASS (g_keyfile_settings_backend_parent_class)
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->finalize (object);
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}
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static void
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g_keyfile_settings_backend_init (GKeyfileSettingsBackend *kfsb)
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{
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}
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static void
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g_keyfile_settings_backend_class_init (GKeyfileSettingsBackendClass *class)
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{
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GObjectClass *object_class = G_OBJECT_CLASS (class);
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object_class->finalize = g_keyfile_settings_backend_finalize;
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class->read = g_keyfile_settings_backend_read;
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class->write = g_keyfile_settings_backend_write;
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class->write_tree = g_keyfile_settings_backend_write_tree;
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class->reset = g_keyfile_settings_backend_reset;
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class->get_writable = g_keyfile_settings_backend_get_writable;
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class->get_permission = g_keyfile_settings_backend_get_permission;
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/* No need to implement subscribed/unsubscribe: the only point would be to
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* stop monitoring the file when there's no GSettings anymore, which is no
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* big win. */
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}
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static void
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file_changed (GFileMonitor *monitor,
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GFile *file,
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GFile *other_file,
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GFileMonitorEvent event_type,
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gpointer user_data)
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{
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GKeyfileSettingsBackend *kfsb = user_data;
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g_keyfile_settings_backend_keyfile_reload (kfsb);
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}
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static void
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dir_changed (GFileMonitor *monitor,
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GFile *file,
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GFile *other_file,
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GFileMonitorEvent event_type,
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gpointer user_data)
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{
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GKeyfileSettingsBackend *kfsb = user_data;
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g_keyfile_settings_backend_keyfile_writable (kfsb);
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}
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/**
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* g_keyfile_settings_backend_new:
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* @filename: the filename of the keyfile
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* @root_path: the path under which all settings keys appear
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* @root_group: (allow-none): the group name corresponding to
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* @root_path, or %NULL
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* @returns: a keyfile-backed #GSettingsBackend
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*
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* Creates a keyfile-backed #GSettingsBackend.
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*
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* The filename of the keyfile to use is given by @filename.
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*
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* All settings read to or written from the backend must fall under the
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* path given in @root_path (which must start and end with a slash and
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* not contain two consecutive slashes). @root_path may be "/".
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*
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* If @root_group is non-%NULL then it specifies the name of the keyfile
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* group used for keys that are written directly below @root_path. For
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* example, if @root_path is "/apps/example/" and @root_group is
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* "toplevel", then settings the key "/apps/example/enabled" to a value
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* of %TRUE will cause the following to appear in the keyfile:
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*
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* |[
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* [toplevel]
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* enabled=true
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* ]|
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*
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* If @root_group is %NULL then it is not permitted to store keys
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* directly below the @root_path.
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*
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* For keys not stored directly below @root_path (ie: in a sub-path),
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* the name of the subpath (with the final slash stripped) is used as
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* the name of the keyfile group. To continue the example, if
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* "/apps/example/profiles/default/font-size" were set to
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* 12 then the following would appear in the keyfile:
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*
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* |[
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* [profiles/default]
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* font-size=12
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* ]|
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*
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* The backend will refuse writes (and return writability as being
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* %FALSE) for keys outside of @root_path and, in the event that
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* @root_group is %NULL, also for keys directly under @root_path.
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* Writes will also be refused if the backend detects that it has the
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* inability to rewrite the keyfile (ie: the containing directory is not
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* writable).
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*
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* There is no checking done for your key namespace clashing with the
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* syntax of the key file format. For example, if you have '[' or ']'
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* characters in your path names or '=' in your key names you may be in
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* trouble.
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**/
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GSettingsBackend *
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g_keyfile_settings_backend_new (const gchar *filename,
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const gchar *root_path,
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const gchar *root_group)
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{
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GKeyfileSettingsBackend *kfsb;
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g_return_val_if_fail (filename != NULL, NULL);
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g_return_val_if_fail (root_path != NULL, NULL);
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g_return_val_if_fail (g_str_has_prefix (root_path, "/"), NULL);
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g_return_val_if_fail (g_str_has_suffix (root_path, "/"), NULL);
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g_return_val_if_fail (strstr (root_path, "//") == NULL, NULL);
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kfsb = g_object_new (G_TYPE_KEYFILE_SETTINGS_BACKEND, NULL);
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kfsb->keyfile = g_key_file_new ();
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kfsb->permission = g_simple_permission_new (TRUE);
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kfsb->file = g_file_new_for_path (filename);
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kfsb->dir = g_file_get_parent (kfsb->file);
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g_file_make_directory_with_parents (kfsb->dir, NULL, NULL);
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kfsb->file_monitor = g_file_monitor_file (kfsb->file, 0, NULL, NULL);
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kfsb->dir_monitor = g_file_monitor_file (kfsb->dir, 0, NULL, NULL);
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kfsb->prefix_len = strlen (root_path);
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kfsb->prefix = g_strdup (root_path);
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if (root_group)
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{
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kfsb->root_group_len = strlen (root_group);
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kfsb->root_group = g_strdup (root_group);
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}
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compute_checksum (kfsb->digest, NULL, 0);
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g_signal_connect (kfsb->file_monitor, "changed",
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G_CALLBACK (file_changed), kfsb);
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g_signal_connect (kfsb->dir_monitor, "changed",
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G_CALLBACK (dir_changed), kfsb);
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g_keyfile_settings_backend_keyfile_writable (kfsb);
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g_keyfile_settings_backend_keyfile_reload (kfsb);
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return G_SETTINGS_BACKEND (kfsb);
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}
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