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|
/*
* A pseudo-plugin that stores/fetches accounts in/from the SSO via libaccounts
*
* Copyright © 2010-2011 Nokia Corporation
* Copyright © 2010-2011 Collabora Ltd.
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "config.h"
#include "mcd-account-manager-sso.h"
#include "mcd-debug.h"
#include <telepathy-glib/util.h>
#include <string.h>
#include <ctype.h>
#define PLUGIN_PRIORITY (MCP_ACCOUNT_STORAGE_PLUGIN_PRIO_KEYRING + 10)
#define PLUGIN_NAME "maemo-libaccounts"
#define PLUGIN_DESCRIPTION \
"Account storage in the Maemo SSO store via libaccounts-glib API"
#define PLUGIN_PROVIDER "org.maemo.Telepathy.Account.Storage.LibAccounts"
#define MCPP "param-"
#define AGPP "parameters/"
#define LIBACCT_ID_KEY "libacct-uid"
#define MC_ENABLED_KEY "Enabled"
#define AG_ENABLED_KEY "enabled"
#define AG_LABEL_KEY "name"
#define MC_LABEL_KEY "DisplayName"
#define AG_ACCOUNT_KEY "username"
#define MC_ACCOUNT_KEY "account"
#define PASSWORD_KEY "password"
#define AG_ACCOUNT_ALT_KEY AGPP "account"
#define MC_CMANAGER_KEY "manager"
#define MC_PROTOCOL_KEY "protocol"
#define MC_IDENTITY_KEY "tmc-uid"
#define SERVICES_KEY "sso-services"
#define MC_SERVICE_KEY "Service"
#define AG_ACCOUNT_WRITE_INTERVAL 5
static const gchar *exported_settings[] = { "CredentialsId", NULL };
typedef enum {
DELAYED_CREATE,
DELAYED_DELETE,
} DelayedSignal;
typedef struct {
gchar *mc_name;
gchar *ag_name;
gboolean global; /* global ag setting or service specific? */
gboolean readable; /* does the _standard_ read method copy this into MC? */
gboolean writable; /* does the _standard_ write method copy this into AG? */
gboolean freeable; /* should clear_setting_data deallocate the names? */
} Setting;
#define GLOBAL TRUE
#define SERVICE FALSE
#define READABLE TRUE
#define UNREADABLE FALSE
#define WRITABLE TRUE
#define UNWRITABLE FALSE
typedef enum {
SETTING_MC,
SETTING_AG,
} SettingType;
/* IMPORTANT IMPLEMENTATION NOTE:
*
* The mapping between telepathy settings and parameter names
* and ag account (libaccounts) settings, and whether those settings
* are stored in the global or service specific ag section is a
* finicky beast - the mapping below has been arrived at empirically
* Take care when altering it.
*
* Settings not mentioned explicitly are:
* • given the same name on both MC and AG sides
* • assigned to the service specific section
* • automatically prefixed (param- vs parameters/) for each side if necessary
*
* So if your setting fits these criteria, you do not need to add it at all.
*/
Setting setting_map[] = {
{ MC_ENABLED_KEY , AG_ENABLED_KEY , GLOBAL , UNREADABLE, UNWRITABLE },
{ MCPP MC_ACCOUNT_KEY, AG_ACCOUNT_KEY , GLOBAL , READABLE , UNWRITABLE },
{ MCPP PASSWORD_KEY , PASSWORD_KEY , GLOBAL , READABLE , WRITABLE },
{ MC_LABEL_KEY , AG_LABEL_KEY , GLOBAL , READABLE , WRITABLE },
{ LIBACCT_ID_KEY , LIBACCT_ID_KEY , GLOBAL , UNREADABLE, UNWRITABLE },
{ MC_IDENTITY_KEY , MC_IDENTITY_KEY, SERVICE, READABLE , WRITABLE },
{ MC_CMANAGER_KEY , MC_CMANAGER_KEY, SERVICE, READABLE , UNWRITABLE },
{ MC_PROTOCOL_KEY , MC_PROTOCOL_KEY, SERVICE, READABLE , UNWRITABLE },
{ MC_SERVICE_KEY , MC_SERVICE_KEY , SERVICE, UNREADABLE, UNWRITABLE },
{ SERVICES_KEY , SERVICES_KEY , GLOBAL , UNREADABLE, UNWRITABLE },
{ NULL }
};
typedef struct {
DelayedSignal signal;
AgAccountId account_id;
} DelayedSignalData;
typedef struct {
McdAccountManagerSso *sso;
struct {
AgAccountWatch service;
AgAccountWatch global;
} watch;
} WatchData;
static Setting *
setting_data (const gchar *name, SettingType type)
{
guint i = 0;
static Setting parameter = { NULL, NULL, SERVICE, READABLE, WRITABLE, TRUE };
const gchar *prefix;
for (; setting_map[i].mc_name != NULL; i++)
{
const gchar *setting_name = NULL;
if (type == SETTING_MC)
setting_name = setting_map[i].mc_name;
else
setting_name = setting_map[i].ag_name;
if (g_strcmp0 (name, setting_name) == 0)
return &setting_map[i];
}
prefix = (type == SETTING_MC) ? MCPP : AGPP;
if (!g_str_has_prefix (name, prefix))
{ /* a non-parameter setting */
parameter.mc_name = g_strdup (name);
parameter.ag_name = g_strdup (name);
}
else
{ /* a setting that is a parameter on both sides (AG & MC) */
const guint plength = strlen (prefix);
parameter.mc_name = g_strdup_printf ("%s%s", MCPP, name + plength);
parameter.ag_name = g_strdup_printf ("%s%s", AGPP, name + plength);
}
return ¶meter;
}
static void
clear_setting_data (Setting *setting)
{
if (setting == NULL)
return;
if (!setting->freeable)
return;
g_free (setting->mc_name);
g_free (setting->ag_name);
setting->mc_name = NULL;
setting->ag_name = NULL;
}
static gboolean _sso_account_enabled (
McdAccountManagerSso *self,
AgAccount *account,
AgService *service);
static void account_storage_iface_init (McpAccountStorageIface *,
gpointer);
static gchar *
_ag_accountid_to_mc_key (McdAccountManagerSso *sso,
AgAccountId id,
gboolean create);
static void _ag_account_stored_cb (AgAccount *acct,
const GError *err,
gpointer ignore);
static void _sso_created (GObject *object,
AgAccountId id,
gpointer user_data);
static void _sso_toggled (GObject *object,
AgAccountId id,
gpointer data);
static gboolean save_setting (
McdAccountManagerSso *self,
AgAccount *account,
const Setting *setting,
const gchar *val);
G_DEFINE_TYPE_WITH_CODE (McdAccountManagerSso, mcd_account_manager_sso,
G_TYPE_OBJECT,
G_IMPLEMENT_INTERFACE (MCP_TYPE_ACCOUNT_STORAGE,
account_storage_iface_init));
static gchar *
_gvalue_to_string (const GValue *val)
{
switch (G_VALUE_TYPE (val))
{
case G_TYPE_STRING:
return g_value_dup_string (val);
case G_TYPE_BOOLEAN:
return g_strdup (g_value_get_boolean (val) ? "true" : "false");
case G_TYPE_CHAR:
return g_strdup_printf ("%c", g_value_get_uchar (val));
case G_TYPE_UCHAR:
return g_strdup_printf ("%c", g_value_get_char (val));
case G_TYPE_INT:
return g_strdup_printf ("%i", g_value_get_int (val));
case G_TYPE_UINT:
return g_strdup_printf ("%u", g_value_get_uint (val));
case G_TYPE_LONG:
return g_strdup_printf ("%ld", g_value_get_long (val));
case G_TYPE_ULONG:
return g_strdup_printf ("%lu", g_value_get_ulong (val));
case G_TYPE_INT64:
return g_strdup_printf ("%" G_GINT64_FORMAT, g_value_get_int64 (val));
case G_TYPE_UINT64:
return g_strdup_printf ("%" G_GUINT64_FORMAT, g_value_get_uint64 (val));
case G_TYPE_ENUM:
return g_strdup_printf ("%d" , g_value_get_enum (val));
case G_TYPE_FLAGS:
return g_strdup_printf ("%u", g_value_get_flags (val));
case G_TYPE_FLOAT:
return g_strdup_printf ("%f", g_value_get_float (val));
case G_TYPE_DOUBLE:
return g_strdup_printf ("%g", g_value_get_double (val));
default:
DEBUG ("Unsupported type %s", G_VALUE_TYPE_NAME (val));
return NULL;
}
}
static const gchar *
account_manager_sso_get_service_type (McdAccountManagerSso *self)
{
McdAccountManagerSsoClass *klass = MCD_ACCOUNT_MANAGER_SSO_GET_CLASS (self);
g_assert (klass->service_type != NULL);
return klass->service_type;
}
static gboolean
_ag_account_select_default_im_service (
McdAccountManagerSso *self,
AgAccount *account)
{
const gchar *service_type = account_manager_sso_get_service_type (self);
gboolean have_service = FALSE;
GList *first = ag_account_list_services_by_type (account, service_type);
if (first != NULL && first->data != NULL)
{
have_service = TRUE;
DEBUG ("default %s service %s", service_type,
ag_service_get_name (first->data));
ag_account_select_service (account, first->data);
}
ag_service_list_free (first);
return have_service;
}
static AgSettingSource
_ag_account_global_value (AgAccount *account,
const gchar *key,
GValue *value)
{
AgSettingSource src = AG_SETTING_SOURCE_NONE;
AgService *service = ag_account_get_selected_service (account);
if (service != NULL)
{
ag_account_select_service (account, NULL);
src = ag_account_get_value (account, key, value);
ag_account_select_service (account, service);
}
else
{
src = ag_account_get_value (account, key, value);
}
return src;
}
static AgSettingSource
_ag_account_local_value (
McdAccountManagerSso *self,
AgAccount *account,
const gchar *key,
GValue *value)
{
AgSettingSource src = AG_SETTING_SOURCE_NONE;
AgService *service = ag_account_get_selected_service (account);
if (service != NULL)
{
src = ag_account_get_value (account, key, value);
}
else
{
_ag_account_select_default_im_service (self, account);
src = ag_account_get_value (account, key, value);
ag_account_select_service (account, NULL);
}
return src;
}
/* AG_ACCOUNT_ALT_KEY from service overrides global AG_ACCOUNT_KEY if set */
static void
_maybe_set_account_param_from_service (
McdAccountManagerSso *self,
const McpAccountManager *am,
AgAccount *ag_account,
const gchar *mc_account)
{
Setting *setting = setting_data (AG_ACCOUNT_KEY, SETTING_AG);
AgSettingSource source = AG_SETTING_SOURCE_NONE;
GValue ag_value = { 0 };
g_return_if_fail (setting != NULL);
g_return_if_fail (ag_account != NULL);
g_value_init (&ag_value, G_TYPE_STRING);
source = _ag_account_local_value (self, ag_account, AG_ACCOUNT_ALT_KEY,
&ag_value);
if (source != AG_SETTING_SOURCE_NONE)
{
gchar *value = _gvalue_to_string (&ag_value);
DEBUG ("overriding global %s param with %s: %s",
AG_ACCOUNT_KEY, AG_ACCOUNT_ALT_KEY, value);
mcp_account_manager_set_value (am, mc_account, setting->mc_name, value);
g_free (value);
}
g_value_unset (&ag_value);
clear_setting_data (setting);
}
static WatchData *
make_watch_data (McdAccountManagerSso *sso)
{
WatchData *data = g_slice_new0 (WatchData);
data->sso = g_object_ref (sso);
return data;
}
static void
free_watch_data (gpointer data)
{
WatchData *wd = data;
if (wd == NULL)
return;
tp_clear_object (&wd->sso);
g_slice_free (WatchData, wd);
}
static void unwatch_account_keys (McdAccountManagerSso *sso,
AgAccountId id)
{
gpointer watch_key = GUINT_TO_POINTER (id);
WatchData *wd = g_hash_table_lookup (sso->watches, watch_key);
AgAccount *account = ag_manager_get_account (sso->ag_manager, id);
if (wd != NULL && account != NULL)
{
ag_account_remove_watch (account, wd->watch.global);
ag_account_remove_watch (account, wd->watch.service);
}
g_hash_table_remove (sso->watches, watch_key);
}
/* There are two types of ag watch: ag_account_watch_key and *
* ag_account_watch_dir. _key passees us the watched key when invoking this *
* callback, dir watches only a prefix, and passes the watched prefix *
* (not the actual updated setting) - we now watch with _dir since _key *
* doesn't allow us to watch for keys-that-are-not-set at creation time *
* (since those cannot be known in advance): This means that in this *
* callback we must compare what we have in MC with what's in AG and issue *
* update notices accordingly (and remember to handle deleted keys). *
* It also means the const gchar *what-was-updated parameter is not useful */
static void _sso_updated (AgAccount *account,
const gchar *unused,
gpointer data)
{
WatchData *wd = data;
McdAccountManagerSso *sso = wd->sso;
McpAccountManager *am = sso->manager_interface;
McpAccountStorage *mcpa = MCP_ACCOUNT_STORAGE (sso);
gpointer id = GUINT_TO_POINTER (account->id);
const gchar *name = g_hash_table_lookup (sso->id_name_map, id);
AgService *service = ag_account_get_selected_service (account);
GStrv keys = NULL;
GHashTable *unseen = NULL;
GHashTableIter deleted_iter = { 0 };
const gchar *deleted_key;
guint i;
gboolean params_updated = FALSE;
const gchar *immutables[] = { MC_SERVICE_KEY, SERVICES_KEY, NULL };
/* account has no name yet: might be time to create it */
if (name == NULL)
return _sso_created (G_OBJECT (sso->ag_manager), account->id, sso);
DEBUG ("update for account %s", name);
/* list the keys we know about so we can tell if one has been deleted */
keys = mcp_account_manager_list_keys (am, name);
unseen = g_hash_table_new (g_str_hash, g_str_equal);
for (i = 0; keys != NULL && keys[i] != NULL; i++)
g_hash_table_insert (unseen, keys[i], GUINT_TO_POINTER (TRUE));
/* now iterate over ag settings, global then service specific: */
ag_account_select_service (account, NULL);
for (i = 0; i < 2; i++)
{
AgAccountSettingIter iter = { 0 };
const gchar *ag_key = NULL;
const GValue *ag_val = NULL;
if (i == 1)
_ag_account_select_default_im_service (sso, account);
ag_account_settings_iter_init (account, &iter, NULL);
while (ag_account_settings_iter_next (&iter, &ag_key, &ag_val))
{
Setting *setting = setting_data (ag_key, SETTING_AG);
const gchar *mc_key;
gchar *ag_str;
gchar *mc_str;
if (setting == NULL)
continue;
mc_key = setting->mc_name;
mc_str = mcp_account_manager_get_value (am, name, mc_key);
ag_str = _gvalue_to_string (ag_val);
g_hash_table_remove (unseen, mc_key);
if (tp_strdiff (ag_str, mc_str))
{
mcp_account_manager_set_value (am, name, mc_key, ag_str);
if (sso->ready)
{
if (g_str_has_prefix (mc_key, MCPP))
params_updated = TRUE;
else
g_signal_emit_by_name (mcpa, "altered-one", name, mc_key);
}
}
g_free (mc_str);
g_free (ag_str);
clear_setting_data (setting);
}
}
/* special case values always exist and therefore cannot be deleted */
for (i = 0; immutables[i] != NULL; i++)
{
Setting *immutable = setting_data (immutables[i], SETTING_AG);
g_hash_table_remove (unseen, immutable->ag_name);
clear_setting_data (immutable);
}
/* signal (and update) deleted settings: */
g_hash_table_iter_init (&deleted_iter, unseen);
while (g_hash_table_iter_next (&deleted_iter, (gpointer *)&deleted_key, NULL))
{
mcp_account_manager_set_value (am, name, deleted_key, NULL);
if (g_str_has_prefix (deleted_key, MCPP))
params_updated = TRUE;
else
g_signal_emit_by_name (mcpa, "altered-one", name, deleted_key);
}
g_hash_table_unref (unseen);
g_strfreev (keys);
if (params_updated)
g_signal_emit_by_name (mcpa, "altered-one", name, "Parameters");
/* put the selected service back the way it was when we found it */
ag_account_select_service (account, service);
}
static void watch_for_updates (McdAccountManagerSso *sso,
AgAccount *account)
{
WatchData *data;
gpointer id = GUINT_TO_POINTER (account->id);
AgService *service;
/* already watching account? let's be idempotent */
if (g_hash_table_lookup (sso->watches, id) != NULL)
return;
DEBUG ("watching AG ID %u for updates", account->id);
service = ag_account_get_selected_service (account);
data = make_watch_data (sso);
ag_account_select_service (account, NULL);
data->watch.global = ag_account_watch_dir (account, "", _sso_updated, data);
_ag_account_select_default_im_service (sso, account);
data->watch.service = ag_account_watch_dir (account, "", _sso_updated, data);
g_hash_table_insert (sso->watches, id, data);
ag_account_select_service (account, service);
}
static void _sso_toggled (GObject *object,
AgAccountId id,
gpointer data)
{
AgManager *manager = AG_MANAGER (object);
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (data);
McpAccountStorage *mcpa = MCP_ACCOUNT_STORAGE (sso);
AgAccount *account = NULL;
gboolean on = FALSE;
const gchar *name = NULL;
/* If the account manager isn't ready, account state changes are of no *
* interest to us: it will pick up the then-current state of the account *
* when it does become ready, and anything that happens between now and *
* then is not important: */
if (!sso->ready)
return;
account = ag_manager_get_account (manager, id);
if (account != NULL)
{
on = _sso_account_enabled (sso, account, NULL);
name = g_hash_table_lookup (sso->id_name_map, GUINT_TO_POINTER (id));
}
if (name != NULL)
{
const gchar *value = on ? "true" : "false";
McpAccountManager *am = sso->manager_interface;
mcp_account_manager_set_value (am, name, "Enabled", value);
g_signal_emit_by_name (mcpa, "toggled", name, on);
}
else
{
DEBUG ("received enabled=%u signal for unknown SSO account %u", on, id);
}
}
static void _sso_deleted (GObject *object,
AgAccountId id,
gpointer user_data)
{
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (user_data);
if (sso->ready)
{
const gchar *name =
g_hash_table_lookup (sso->id_name_map, GUINT_TO_POINTER (id));
/* if the account was in our cache, then this was a 3rd party delete *
* op that someone did behind our back: fire the signal and clean up */
if (name != NULL)
{
McpAccountStorage *mcpa = MCP_ACCOUNT_STORAGE (sso);
gchar *signalled_name = g_strdup (name);
/* forget id->name map first, so the signal can't start a loop */
g_hash_table_remove (sso->id_name_map, GUINT_TO_POINTER (id));
g_hash_table_remove (sso->accounts, signalled_name);
/* stop watching for updates */
unwatch_account_keys (sso, id);
g_signal_emit_by_name (mcpa, "deleted", signalled_name);
g_free (signalled_name);
}
}
else
{
DelayedSignalData *sig_data = g_slice_new0 (DelayedSignalData);
sig_data->signal = DELAYED_DELETE;
sig_data->account_id = id;
g_queue_push_tail (sso->pending_signals, sig_data);
}
}
/* return TRUE if we actually changed any state, FALSE otherwise */
static gboolean _sso_account_enable (
McdAccountManagerSso *self,
AgAccount *account,
AgService *service,
gboolean on)
{
AgService *original = ag_account_get_selected_service (account);
/* the setting account is already in one of the global+service
configurations that corresponds to our current state: don't touch it */
if (_sso_account_enabled (self, account, service) == on)
return FALSE;
/* turn the local enabled flag on/off as required */
if (service != NULL)
ag_account_select_service (account, service);
else
_ag_account_select_default_im_service (self, account);
ag_account_set_enabled (account, on);
/* if we are turning the account on, the global flag must also be set *
* NOTE: this isn't needed when turning the account off */
if (on)
{
ag_account_select_service (account, NULL);
ag_account_set_enabled (account, on);
}
ag_account_select_service (account, original);
return TRUE;
}
static gboolean _sso_account_enabled (
McdAccountManagerSso *self,
AgAccount *account,
AgService *service)
{
gboolean local = FALSE;
gboolean global = FALSE;
AgService *original = ag_account_get_selected_service (account);
if (service == NULL)
{
_ag_account_select_default_im_service (self, account);
local = ag_account_get_enabled (account);
}
else
{
if (original != service)
ag_account_select_service (account, service);
local = ag_account_get_enabled (account);
}
ag_account_select_service (account, NULL);
global = ag_account_get_enabled (account);
ag_account_select_service (account, original);
DEBUG ("_sso_account_enabled: global:%d && local:%d", global, local);
return local && global;
}
static void _sso_created (GObject *object,
AgAccountId id,
gpointer user_data)
{
AgManager *ag_manager = AG_MANAGER (object);
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (user_data);
gchar *name =
g_hash_table_lookup (sso->id_name_map, GUINT_TO_POINTER (id));
if (sso->ready)
{
/* if we already know the account's name, we shouldn't fire the new *
* account signal as it is one we (and our superiors) already have *
* This could happen as a result of multiple updates being set off *
* before we are ready, for example */
if (name == NULL)
{
McpAccountStorage *mcpa = MCP_ACCOUNT_STORAGE (sso);
AgAccount *account = ag_manager_get_account (ag_manager, id);
if (account != NULL)
{
/* this will be owned by the ag account hash, do not free it */
name = _ag_accountid_to_mc_key (sso, id, TRUE);
if (name != NULL)
{
Setting *setting = setting_data (MC_IDENTITY_KEY, SETTING_MC);
g_hash_table_insert (sso->accounts, name, account);
g_hash_table_insert (sso->id_name_map, GUINT_TO_POINTER (id),
g_strdup (name));
save_setting (sso, account, setting, name);
ag_account_store (account, _ag_account_stored_cb, sso);
g_signal_emit_by_name (mcpa, "created", name);
clear_setting_data (setting);
}
else
{
/* not enough data to name the account: wait for an update */
DEBUG ("SSO account #%u is currently unnameable", id);
}
/* in either case, add the account to the watched list */
watch_for_updates (sso, account);
}
}
}
else
{
DelayedSignalData *sig_data = g_slice_new0 (DelayedSignalData);
sig_data->signal = DELAYED_CREATE;
sig_data->account_id = id;
g_queue_push_tail (sso->pending_signals, sig_data);
}
}
static void
mcd_account_manager_sso_init (McdAccountManagerSso *self)
{
self->accounts =
g_hash_table_new_full (g_str_hash, g_str_equal, g_free, g_object_unref);
self->id_name_map =
g_hash_table_new_full (g_direct_hash, g_direct_equal, NULL, g_free);
self->watches =
g_hash_table_new_full (g_direct_hash, g_direct_equal, NULL,
(GDestroyNotify) free_watch_data);
self->pending_signals = g_queue_new ();
}
static void
mcd_account_manager_sso_constructed (GObject *object)
{
McdAccountManagerSso *self = MCD_ACCOUNT_MANAGER_SSO (object);
GObjectClass *parent_class =
G_OBJECT_CLASS (mcd_account_manager_sso_parent_class);
const gchar *service_type = account_manager_sso_get_service_type (self);
if (parent_class->constructed != NULL)
parent_class->constructed (object);
DEBUG ("Watching for services of type '%s'", service_type);
self->ag_manager = ag_manager_new_for_service_type (service_type);
g_signal_connect(self->ag_manager, "enabled-event",
G_CALLBACK (_sso_toggled), self);
g_signal_connect(self->ag_manager, "account-deleted",
G_CALLBACK (_sso_deleted), self);
g_signal_connect(self->ag_manager, "account-created",
G_CALLBACK (_sso_created), self);
}
static void
mcd_account_manager_sso_class_init (McdAccountManagerSsoClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS (klass);
object_class->constructed = mcd_account_manager_sso_constructed;
klass->service_type = "IM";
}
static void
_ag_account_stored_cb (
AgAccount *account,
const GError *err,
gpointer user_data)
{
McdAccountManagerSso *self = MCD_ACCOUNT_MANAGER_SSO (user_data);
GValue uid = { 0 };
const gchar *name = NULL;
AgSettingSource src = AG_SETTING_SOURCE_NONE;
g_value_init (&uid, G_TYPE_STRING);
src = _ag_account_local_value (self, account, MC_IDENTITY_KEY, &uid);
if (src != AG_SETTING_SOURCE_NONE && G_VALUE_HOLDS_STRING (&uid))
{
name = g_value_get_string (&uid);
DEBUG ("%p:%s stored: %s", account, name, err ? err->message : "-");
g_value_unset (&uid);
}
else
{
DEBUG ("%p:%s not stored? %s", acct,
ag_account_get_display_name (account), err ? err->message : "-");
}
}
static gchar *
_ag_accountid_to_mc_key (McdAccountManagerSso *sso,
AgAccountId id,
gboolean create)
{
AgAccount *account = ag_manager_get_account (sso->ag_manager, id);
AgSettingSource src = AG_SETTING_SOURCE_NONE;
AgService *service = NULL;
GValue value = { 0 };
if (account == NULL)
{
DEBUG ("AG Account ID %u invalid", id);
return NULL;
}
service = ag_account_get_selected_service (account);
DEBUG ("AG Account ID: %u", id);
g_value_init (&value, G_TYPE_STRING);
/* first look for the stored TMC uid */
src = _ag_account_local_value (sso, account, MC_IDENTITY_KEY, &value);
/* if we found something, our work here is done: */
if (src != AG_SETTING_SOURCE_NONE)
{
gchar *uid = g_value_dup_string (&value);
g_value_unset (&value);
return uid;
}
else
{
g_value_unset (&value);
}
if (!create)
return NULL;
DEBUG ("no " MC_IDENTITY_KEY " found, synthesising one:");
src = _ag_account_global_value (account, AG_ACCOUNT_KEY, &value);
/* fall back to the alernative account-naming setting if necessary: */
if (src == AG_SETTING_SOURCE_NONE)
{
_ag_account_select_default_im_service (sso, account);
src = _ag_account_local_value (sso, account, AG_ACCOUNT_ALT_KEY, &value);
}
if (src != AG_SETTING_SOURCE_NONE && G_VALUE_HOLDS_STRING (&value))
{
AgAccountSettingIter iter;
const gchar *k;
const GValue *v;
GValue cmanager = { 0 };
GValue protocol = { 0 };
const gchar *cman, *proto;
McpAccountManager *am = sso->manager_interface;
GHashTable *params = g_hash_table_new_full (g_str_hash, g_str_equal,
g_free, NULL);
gchar *name = NULL;
g_value_init (&cmanager, G_TYPE_STRING);
g_value_init (&protocol, G_TYPE_STRING);
/* if we weren't on a service when got here, pick the most likely one: */
if (service == NULL)
_ag_account_select_default_im_service (sso, account);
ag_account_get_value (account, MC_CMANAGER_KEY, &cmanager);
cman = g_value_get_string (&cmanager);
if (cman == NULL)
goto cleanup;
ag_account_get_value (account, MC_PROTOCOL_KEY, &protocol);
proto = g_value_get_string (&protocol);
if (proto == NULL)
goto cleanup;
/* prepare the hash of MC param keys -> GValue */
/* NOTE: some AG bare settings map to MC parameters, *
* so we must iterate over all AG settings, parameters *
* and bare settings included */
/* first any matching global values: */
ag_account_select_service (account, NULL);
ag_account_settings_iter_init (account, &iter, NULL);
while (ag_account_settings_iter_next (&iter, &k, &v))
{
Setting *setting = setting_data (k, SETTING_AG);
if (setting != NULL && g_str_has_prefix (setting->mc_name, MCPP))
{
gchar *param_key = g_strdup (setting->mc_name + strlen (MCPP));
g_hash_table_insert (params, param_key, (gpointer) v);
}
clear_setting_data (setting);
}
/* then any service specific settings */
if (service != NULL)
ag_account_select_service (account, service);
else
_ag_account_select_default_im_service (sso, account);
ag_account_settings_iter_init (account, &iter, NULL);
while (ag_account_settings_iter_next (&iter, &k, &v))
{
Setting *setting = setting_data (k, SETTING_AG);
if (setting != NULL && g_str_has_prefix (setting->mc_name, MCPP))
{
gchar *param_key = g_strdup (setting->mc_name + strlen (MCPP));
g_hash_table_insert (params, param_key, (gpointer) v);
}
clear_setting_data (setting);
}
/* we want this to override any other settings for uid generation */
g_hash_table_insert (params, g_strdup (MC_ACCOUNT_KEY), &value);
name = mcp_account_manager_get_unique_name (am, cman, proto, params);
cleanup:
ag_account_select_service (account, service);
g_hash_table_unref (params);
g_value_unset (&value);
g_value_unset (&cmanager);
g_value_unset (&protocol);
DEBUG (MC_IDENTITY_KEY " value %p:%s synthesised", name, name);
return name;
}
DEBUG (MC_IDENTITY_KEY " not synthesised, returning NULL");
return NULL;
}
static AgAccount *
get_ag_account (const McdAccountManagerSso *sso,
const McpAccountManager *am,
const gchar *name,
AgAccountId *id)
{
AgAccount *account;
g_return_val_if_fail (id != NULL, NULL);
/* we have a cached account, just return that */
account = g_hash_table_lookup (sso->accounts, name);
if (account != NULL)
{
*id = account->id;
return account;
}
*id = 0;
return NULL;
}
/* returns true if it actually changed an account's state */
static gboolean
save_setting (
McdAccountManagerSso *self,
AgAccount *account,
const Setting *setting,
const gchar *val)
{
gboolean changed = FALSE;
AgService *service = ag_account_get_selected_service (account);
if (!setting->writable)
return FALSE;
if (setting->global)
ag_account_select_service (account, NULL);
else if (service == NULL)
_ag_account_select_default_im_service (self, account);
if (setting->readable)
{
GValue old = { 0 };
AgSettingSource src = AG_SETTING_SOURCE_NONE;
g_value_init (&old, G_TYPE_STRING);
if (setting->global)
src = _ag_account_global_value (account, setting->ag_name, &old);
else
src = _ag_account_local_value (self, account, setting->ag_name, &old);
/* unsetting an already unset value, bail out */
if (val == NULL && src == AG_SETTING_SOURCE_NONE)
goto done;
/* assigning a value to one which _is_ set: check it actually changed */
if (val != NULL && src != AG_SETTING_SOURCE_NONE)
{
gchar *str = _gvalue_to_string (&old);
gboolean noop = g_strcmp0 (str, val) == 0;
g_value_unset (&old);
g_free (str);
if (noop)
goto done;
}
}
/* if we got this far, we're changing the stored state: */
changed = TRUE;
if (val != NULL)
{
GValue value = { 0 };
g_value_init (&value, G_TYPE_STRING);
g_value_set_string (&value, val);
ag_account_set_value (account, setting->ag_name, &value);
g_value_unset (&value);
}
else
{
ag_account_set_value (account, setting->ag_name, NULL);
}
/* leave the selected service as we found it: */
done:
ag_account_select_service (account, service);
return changed;
}
static gboolean
_set (const McpAccountStorage *self,
const McpAccountManager *am,
const gchar *account_suffix,
const gchar *key,
const gchar *val)
{
AgAccountId id;
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (self);
AgAccount *account = get_ag_account (sso, am, account_suffix, &id);
Setting *setting = NULL;
gboolean updated = FALSE;
/* can't store a setting with no name */
g_return_val_if_fail (key != NULL, FALSE);
/* we no longer create accounts in libaccount: either an account exists *
* in libaccount as a result of some 3rd party intervention, or it is *
* not an account that this plugin should ever concern itself with */
if (account != NULL)
setting = setting_data (key, SETTING_MC);
else
return FALSE;
if (setting != NULL)
{
/* Enabled is both a global and a local value, for extra fun: */
if (g_str_equal (setting->mc_name, MC_ENABLED_KEY))
{
gboolean on = g_str_equal (val, "true");
DEBUG ("setting enabled flag: '%d'", on);
updated = _sso_account_enable (sso, account, NULL, on);
}
else
{
updated = save_setting (sso, account, setting, val);
}
if (updated)
sso->save = TRUE;
clear_setting_data (setting);
}
/* whether or not we stored this value, if we got this far it's our *
* setting and no-one else is allowed to claim it: so return TRUE */
return TRUE;
}
/* Implements the half of the _get method where key is not NULL. */
static void
account_manager_sso_get_one (
McdAccountManagerSso *sso,
const McpAccountManager *am,
const gchar *account_suffix,
const gchar *key,
AgAccount *account,
AgService *service)
{
if (g_str_equal (key, MC_ENABLED_KEY))
{
const gchar *v = NULL;
v = _sso_account_enabled (sso, account, service) ? "true" : "false";
mcp_account_manager_set_value (am, account_suffix, key, v);
}
else if (g_str_equal (key, SERVICES_KEY))
{
GString *result = g_string_new ("");
AgManager * agm = ag_account_get_manager (account);
GList *services = ag_manager_list_services (agm);
GList *item = NULL;
for (item = services; item != NULL; item = g_list_next (item))
{
const gchar *name = ag_service_get_name (item->data);
g_string_append_printf (result, "%s;", name);
}
mcp_account_manager_set_value (am, account_suffix, key, result->str);
ag_service_list_free (services);
g_string_free (result, TRUE);
}
else if (g_str_equal (key, MC_SERVICE_KEY))
{
const gchar *service_name = NULL;
AgService *im_service = NULL;
_ag_account_select_default_im_service (sso, account);
im_service = ag_account_get_selected_service (account);
service_name = ag_service_get_name (im_service);
mcp_account_manager_set_value (am, account_suffix, key, service_name);
}
else
{
GValue v = { 0 };
AgSettingSource src = AG_SETTING_SOURCE_NONE;
Setting *setting = setting_data (key, SETTING_MC);
if (setting == NULL)
return;
g_value_init (&v, G_TYPE_STRING);
if (setting->global)
src = _ag_account_global_value (account, setting->ag_name, &v);
else
src = _ag_account_local_value (sso, account, setting->ag_name, &v);
if (src != AG_SETTING_SOURCE_NONE)
{
gchar *val = _gvalue_to_string (&v);
mcp_account_manager_set_value (am, account_suffix, key, val);
g_free (val);
}
if (g_str_equal (key, MCPP MC_ACCOUNT_KEY))
_maybe_set_account_param_from_service (sso, am, account,
account_suffix);
g_value_unset (&v);
clear_setting_data (setting);
}
}
/* Implements the half of the _get method where key == NULL, which is an
* instruction from MC that we should look up all of this account's properties
* and stash them with mcp_account_manager_set_value().
*/
static void
account_manager_sso_get_all (
McdAccountManagerSso *sso,
const McpAccountManager *am,
const gchar *account_suffix,
AgAccount *account,
AgService *service)
{
AgAccountSettingIter ag_setting;
const gchar *k;
const GValue *v;
const gchar *on = NULL;
AgService *im_service = NULL;
/* pick the IM service if we haven't got one set */
if (service == NULL)
_ag_account_select_default_im_service (sso, account);
/* special case, not stored as a normal setting */
im_service = ag_account_get_selected_service (account);
mcp_account_manager_set_value (am, account_suffix, MC_SERVICE_KEY,
ag_service_get_name (im_service));
ag_account_settings_iter_init (account, &ag_setting, NULL);
while (ag_account_settings_iter_next (&ag_setting, &k, &v))
{
Setting *setting = setting_data (k, SETTING_AG);
if (setting != NULL && setting->readable && !setting->global)
{
gchar *value = _gvalue_to_string (v);
mcp_account_manager_set_value (am, account_suffix,
setting->mc_name, value);
g_free (value);
}
clear_setting_data (setting);
}
/* deselect any service we may have to get global settings */
ag_account_select_service (account, NULL);
ag_account_settings_iter_init (account, &ag_setting, NULL);
while (ag_account_settings_iter_next (&ag_setting, &k, &v))
{
Setting *setting = setting_data (k, SETTING_AG);
if (setting != NULL && setting->readable && setting->global)
{
gchar *value = _gvalue_to_string (v);
mcp_account_manager_set_value (am, account_suffix,
setting->mc_name, value);
g_free (value);
}
clear_setting_data (setting);
}
/* special case, actually two separate but related flags in SSO */
on = _sso_account_enabled (sso, account, NULL) ? "true" : "false";
mcp_account_manager_set_value (am, account_suffix, MC_ENABLED_KEY, on);
_maybe_set_account_param_from_service (sso, am, account, account_suffix);
}
gboolean
_mcd_account_manager_sso_get (
const McpAccountStorage *self,
const McpAccountManager *am,
const gchar *account_suffix,
const gchar *key)
{
AgAccountId id;
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (self);
AgAccount *account = get_ag_account (sso, am, account_suffix, &id);
AgService *service = ag_account_get_selected_service (account);
if (account == NULL)
return FALSE;
/* Delegate to one of the two relatively-orthogonal meanings of this
* method... */
if (key != NULL)
account_manager_sso_get_one (sso, am, account_suffix, key, account,
service);
else
account_manager_sso_get_all (sso, am, account_suffix, account, service);
/* leave the selected service as we found it */
ag_account_select_service (account, service);
return TRUE;
}
static gboolean
_delete (const McpAccountStorage *self,
const McpAccountManager *am,
const gchar *account_suffix,
const gchar *key)
{
AgAccountId id;
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (self);
AgAccount *account = get_ag_account (sso, am, account_suffix, &id);
gboolean updated = FALSE;
/* have no values for this account, nothing to do here: */
if (account == NULL)
return TRUE;
if (key == NULL)
{
ag_account_delete (account);
g_hash_table_remove (sso->accounts, account_suffix);
g_hash_table_remove (sso->id_name_map, GUINT_TO_POINTER (id));
/* stop watching for updates */
unwatch_account_keys (sso, id);
updated = TRUE;
}
else
{
Setting *setting = setting_data (key, SETTING_MC);
if (setting != NULL)
updated = save_setting (sso, account, setting, NULL);
clear_setting_data (setting);
}
if (updated)
sso->save = TRUE;
return TRUE;
}
static gboolean
_commit_real (gpointer user_data)
{
McpAccountStorage *self = MCP_ACCOUNT_STORAGE (user_data);
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (self);
GHashTableIter iter;
gchar *key;
AgAccount *account;
g_hash_table_iter_init (&iter, sso->accounts);
/* for each account, set its telepathy uid MC_IDENTITY_KEY in the *
* AgAccount structure, and then flush any changes to said account *
* to long term storage with ag_account_store() *
* The actual changes are those pushed into the AgAccount in _set *
* and _delete */
while (g_hash_table_iter_next (&iter, (gpointer) &key, (gpointer) &account))
{
Setting *setting = setting_data (MC_IDENTITY_KEY, SETTING_MC);
/* this value ties MC accounts to SSO accounts */
save_setting (sso, account, setting, key);
ag_account_store (account, _ag_account_stored_cb, sso);
}
sso->commit_source = 0;
/* any pending changes should now have been pushed, clear the save-me flag */
sso->save = FALSE;
return FALSE;
}
static gboolean
_commit (const McpAccountStorage *self,
const McpAccountManager *am)
{
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (self);
if (!sso->save)
return TRUE;
if (sso->commit_source == 0)
{
DEBUG ("Deferring commit for %d seconds", AG_ACCOUNT_WRITE_INTERVAL);
sso->commit_source = g_timeout_add_seconds_full (G_PRIORITY_DEFAULT,
AG_ACCOUNT_WRITE_INTERVAL,
_commit_real, g_object_ref (sso), g_object_unref);
}
else
{
DEBUG ("Already deferred commit");
}
return TRUE;
}
static void
_load_from_libaccounts (McdAccountManagerSso *sso,
const McpAccountManager *am)
{
GList *ag_ids = ag_manager_list_by_service_type (sso->ag_manager,
account_manager_sso_get_service_type (sso));
GList *ag_id;
for (ag_id = ag_ids; ag_id != NULL; ag_id = g_list_next (ag_id))
{
const gchar *key;
const GValue *val;
AgAccountSettingIter iter;
AgAccountId id = GPOINTER_TO_UINT (ag_id->data);
AgAccount *account = ag_manager_get_account (sso->ag_manager, id);
if (account != NULL)
{
AgService *service = ag_account_get_selected_service (account);
gchar *name = _ag_accountid_to_mc_key (sso, id, FALSE);
if (name != NULL)
{
AgService *im_service = NULL;
gchar *ident = g_strdup_printf ("%u", id);
GStrv mc_id = g_strsplit (name, "/", 3);
gboolean enabled;
/* cache the account object, and the ID->name maping: the *
* latter is required because we might receive an async *
* delete signal with the ID after libaccounts-glib has *
* purged all its account data, so we couldn't rely on the *
* MC_IDENTITY_KEY setting. */
g_hash_table_insert (sso->accounts, name, account);
g_hash_table_insert (sso->id_name_map, GUINT_TO_POINTER (id),
g_strdup (name));
if (service == NULL)
_ag_account_select_default_im_service (sso, account);
/* special case, not stored as a normal setting */
im_service = ag_account_get_selected_service (account);
mcp_account_manager_set_value (am, name, MC_SERVICE_KEY,
ag_service_get_name (im_service));
ag_account_settings_iter_init (account, &iter, NULL);
while (ag_account_settings_iter_next (&iter, &key, &val))
{
Setting *setting = setting_data (key, SETTING_AG);
if (setting != NULL && !setting->global && setting->readable)
{
gchar *value = _gvalue_to_string (val);
mcp_account_manager_set_value (am, name, setting->mc_name,
value);
g_free (value);
}
clear_setting_data (setting);
}
ag_account_select_service (account, NULL);
ag_account_settings_iter_init (account, &iter, NULL);
while (ag_account_settings_iter_next (&iter, &key, &val))
{
Setting *setting = setting_data (key, SETTING_AG);
if (setting != NULL && setting->global && setting->readable)
{
gchar *value = _gvalue_to_string (val);
mcp_account_manager_set_value (am, name, setting->mc_name,
value);
g_free (value);
}
clear_setting_data (setting);
}
/* special case, actually two separate but related flags in SSO */
enabled = _sso_account_enabled (sso, account, NULL);
mcp_account_manager_set_value (am, name, MC_ENABLED_KEY,
enabled ? "true" : "false");
mcp_account_manager_set_value (am, name, LIBACCT_ID_KEY, ident);
mcp_account_manager_set_value (am, name, MC_CMANAGER_KEY, mc_id[0]);
mcp_account_manager_set_value (am, name, MC_PROTOCOL_KEY, mc_id[1]);
mcp_account_manager_set_value (am, name, MC_IDENTITY_KEY, name);
_maybe_set_account_param_from_service (sso, am, account, name);
/* force the services value to be synthesised + cached */
_mcd_account_manager_sso_get (MCP_ACCOUNT_STORAGE (sso), am,
name, SERVICES_KEY);
ag_account_select_service (account, service);
watch_for_updates (sso, account);
g_strfreev (mc_id);
g_free (ident);
}
}
}
sso->loaded = TRUE;
ag_manager_list_free (ag_ids);
}
static GList *
_list (const McpAccountStorage *self,
const McpAccountManager *am)
{
GList *rval = NULL;
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (self);
GList *ag_ids = NULL;
GList *ag_id;
if (!sso->loaded)
_load_from_libaccounts (sso, am);
ag_ids = ag_manager_list_by_service_type (sso->ag_manager,
account_manager_sso_get_service_type (sso));
for (ag_id = ag_ids; ag_id != NULL; ag_id = g_list_next (ag_id))
{
AgAccountId id = GPOINTER_TO_UINT (ag_id->data);
gchar *name = NULL;
name = _ag_accountid_to_mc_key (sso, id, FALSE);
if (name != NULL)
{
DEBUG ("account %s listed", name);
rval = g_list_prepend (rval, name);
}
else
{
DelayedSignalData *data = g_slice_new0 (DelayedSignalData);
DEBUG ("account %u delayed", id);
data->signal = DELAYED_CREATE;
data->account_id = id;
g_queue_push_tail (sso->pending_signals, data);
}
}
ag_manager_list_free (ag_ids);
return rval;
}
static void
_ready (const McpAccountStorage *self,
const McpAccountManager *am)
{
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (self);
if (sso->ready)
return;
g_assert (sso->manager_interface == NULL);
sso->manager_interface = g_object_ref (G_OBJECT (am));
sso->ready = TRUE;
while (g_queue_get_length (sso->pending_signals) > 0)
{
DelayedSignalData *data = g_queue_pop_head (sso->pending_signals);
GObject *signal_source = G_OBJECT (sso->ag_manager);
switch (data->signal)
{
case DELAYED_CREATE:
_sso_created (signal_source, data->account_id, sso);
break;
case DELAYED_DELETE:
_sso_deleted (signal_source, data->account_id, sso);
break;
default:
g_assert_not_reached ();
}
g_slice_free (DelayedSignalData, data);
}
g_queue_free (sso->pending_signals);
sso->pending_signals = NULL;
}
static gboolean
_find_account (McdAccountManagerSso *sso,
const gchar *account_name,
AgAccountId *account_id)
{
GList *ag_ids = NULL;
GList *ag_id;
gboolean found = FALSE;
g_return_val_if_fail (account_id != NULL, found);
ag_ids = ag_manager_list_by_service_type (sso->ag_manager,
account_manager_sso_get_service_type (sso));
for (ag_id = ag_ids; ag_id != NULL; ag_id = g_list_next (ag_id))
{
AgAccountId id = GPOINTER_TO_UINT (ag_id->data);
gchar *name = NULL;
name = _ag_accountid_to_mc_key (sso, id, FALSE);
if (g_strcmp0 (name, account_name) == 0)
{
found = TRUE;
*account_id = id;
}
g_free (name);
if (found)
break;
}
ag_manager_list_free (ag_ids);
return found;
}
static void
_get_identifier (const McpAccountStorage *self,
const gchar *account,
GValue *identifier)
{
AgAccountId account_id = 0;
if (!_find_account (MCD_ACCOUNT_MANAGER_SSO (self), account, &account_id))
g_warning ("Didn't find account %s in %s", account, PLUGIN_NAME);
g_value_init (identifier, G_TYPE_UINT);
g_value_set_uint (identifier, account_id);
}
static GHashTable *
_get_additional_info (const McpAccountStorage *self,
const gchar *account_suffix)
{
AgAccountId account_id = 0;
McdAccountManagerSso *sso = MCD_ACCOUNT_MANAGER_SSO (self);
GHashTable *additional_info = NULL;
AgAccount *account;
AgService *service;
AgAccountSettingIter iter;
const GValue *val;
const gchar *key;
if (!_find_account (sso, account_suffix, &account_id))
{
g_warning ("Didn't find account %s in %s", account_suffix, PLUGIN_NAME);
return NULL;
}
account = ag_manager_get_account (sso->ag_manager, account_id);
g_return_val_if_fail (account != NULL, NULL);
service = ag_account_get_selected_service (account);
additional_info = g_hash_table_new_full (g_str_hash, g_str_equal,
(GDestroyNotify) g_free, (GDestroyNotify) tp_g_value_slice_free);
if (service == NULL)
_ag_account_select_default_im_service (sso, account);
ag_account_settings_iter_init (account, &iter, NULL);
while (ag_account_settings_iter_next (&iter, &key, &val))
{
if (tp_strv_contains (exported_settings, key))
g_hash_table_insert (additional_info, g_strdup (key),
tp_g_value_slice_dup (val));
}
ag_account_select_service (account, NULL);
ag_account_settings_iter_init (account, &iter, NULL);
while (ag_account_settings_iter_next (&iter, &key, &val))
{
if (tp_strv_contains (exported_settings, key))
g_hash_table_insert (additional_info, g_strdup (key),
tp_g_value_slice_dup (val));
}
ag_account_select_service (account, service);
g_object_unref (account);
return additional_info;
}
static void
account_storage_iface_init (McpAccountStorageIface *iface,
gpointer unused G_GNUC_UNUSED)
{
mcp_account_storage_iface_set_name (iface, PLUGIN_NAME);
mcp_account_storage_iface_set_desc (iface, PLUGIN_DESCRIPTION);
mcp_account_storage_iface_set_priority (iface, PLUGIN_PRIORITY);
mcp_account_storage_iface_set_provider (iface, PLUGIN_PROVIDER);
mcp_account_storage_iface_implement_get (iface,
_mcd_account_manager_sso_get);
mcp_account_storage_iface_implement_set (iface, _set);
mcp_account_storage_iface_implement_delete (iface, _delete);
mcp_account_storage_iface_implement_commit (iface, _commit);
mcp_account_storage_iface_implement_list (iface, _list);
mcp_account_storage_iface_implement_ready (iface, _ready);
mcp_account_storage_iface_implement_get_identifier (iface, _get_identifier);
mcp_account_storage_iface_implement_get_additional_info (iface,
_get_additional_info);
}
McdAccountManagerSso *
mcd_account_manager_sso_new (void)
{
return g_object_new (MCD_TYPE_ACCOUNT_MANAGER_SSO, NULL);
}
|