gvfs/daemon/gvfsmonitor.c

374 lines
11 KiB
C

/* GIO - GLib Input, Output and Streaming Library
*
* Copyright (C) 2006-2007 Red Hat, Inc.
*
* 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 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 Street, Fifth Floor,
* Boston, MA 02110-1301, USA.
*
* Author: Alexander Larsson <alexl@redhat.com>
*/
#include <config.h>
#include <strings.h>
#include <unistd.h>
#include <errno.h>
#include <sys/types.h>
#include <sys/socket.h>
#include <sys/un.h>
#include <fcntl.h>
#include <glib.h>
#include <glib-object.h>
#include <glib/gi18n.h>
#include <gvfsmonitor.h>
#include <gvfsdaemonprotocol.h>
#include <gvfsdaemonutils.h>
#include <gvfsjobcloseread.h>
#include <gvfsjobclosewrite.h>
#include <gvfsdbus.h>
#define OBJ_PATH_PREFIX "/org/gtk/vfs/daemon/dirmonitor/"
typedef struct {
GDBusConnection *connection;
char *id;
char *object_path;
GVfsMonitor *monitor;
} Subscriber;
struct _GVfsMonitorPrivate
{
GVfsDaemon *daemon;
GVfsBackend *backend; /* weak ref */
GMountSpec *mount_spec;
char *object_path;
GList *subscribers;
};
/* atomic */
static volatile gint path_counter = 1;
G_DEFINE_TYPE_WITH_PRIVATE (GVfsMonitor, g_vfs_monitor, G_TYPE_OBJECT)
static void unsubscribe (Subscriber *subscriber);
static void
backend_died (GVfsMonitor *monitor,
GObject *old_backend)
{
Subscriber *subscriber;
/*
* Take an extra ref on the monitor because
* unsubscribing may lead to the last ref
* being released.
*/
g_object_ref (G_OBJECT (monitor));
monitor->priv->backend = NULL;
while (monitor->priv->subscribers != NULL)
{
subscriber = monitor->priv->subscribers->data;
unsubscribe (subscriber);
}
g_object_unref (G_OBJECT (monitor));
}
static void
g_vfs_monitor_finalize (GObject *object)
{
GVfsMonitor *monitor;
monitor = G_VFS_MONITOR (object);
if (monitor->priv->backend)
g_object_weak_unref (G_OBJECT (monitor->priv->backend),
(GWeakNotify)backend_died,
monitor);
g_vfs_daemon_unregister_path (monitor->priv->daemon, monitor->priv->object_path);
g_object_unref (monitor->priv->daemon);
g_mount_spec_unref (monitor->priv->mount_spec);
g_free (monitor->priv->object_path);
if (G_OBJECT_CLASS (g_vfs_monitor_parent_class)->finalize)
(*G_OBJECT_CLASS (g_vfs_monitor_parent_class)->finalize) (object);
}
static void
g_vfs_monitor_class_init (GVfsMonitorClass *klass)
{
GObjectClass *gobject_class = G_OBJECT_CLASS (klass);
gobject_class->finalize = g_vfs_monitor_finalize;
}
static void
g_vfs_monitor_init (GVfsMonitor *monitor)
{
gint id;
monitor->priv = g_vfs_monitor_get_instance_private (monitor);
id = g_atomic_int_add (&path_counter, 1);
monitor->priv->object_path = g_strdup_printf (OBJ_PATH_PREFIX"%d", id);
}
static gboolean
matches_subscriber (Subscriber *subscriber,
GDBusConnection *connection,
const char *object_path,
const char *dbus_id)
{
return (subscriber->connection == connection &&
strcmp (subscriber->object_path, object_path) == 0 &&
((dbus_id == NULL && subscriber->id == NULL) ||
(dbus_id != NULL && subscriber->id != NULL &&
strcmp (subscriber->id, dbus_id) == 0)));
}
static void
unsubscribe (Subscriber *subscriber)
{
subscriber->monitor->priv->subscribers = g_list_remove (subscriber->monitor->priv->subscribers, subscriber);
g_signal_handlers_disconnect_by_data (subscriber->connection, subscriber);
g_object_unref (subscriber->connection);
g_free (subscriber->id);
g_free (subscriber->object_path);
g_object_unref (subscriber->monitor);
g_free (subscriber);
}
static void
subscriber_connection_closed (GDBusConnection *connection,
gboolean remote_peer_vanished,
GError *error,
Subscriber *subscriber)
{
unsubscribe (subscriber);
}
static gboolean
handle_subscribe (GVfsDBusMonitor *object,
GDBusMethodInvocation *invocation,
const gchar *arg_object_path,
GVfsMonitor *monitor)
{
Subscriber *subscriber;
subscriber = g_new0 (Subscriber, 1);
subscriber->connection = g_object_ref (g_dbus_method_invocation_get_connection (invocation));
subscriber->id = g_strdup (g_dbus_method_invocation_get_sender (invocation));
subscriber->object_path = g_strdup (arg_object_path);
subscriber->monitor = g_object_ref (monitor);
g_signal_connect (subscriber->connection, "closed", G_CALLBACK (subscriber_connection_closed), subscriber);
monitor->priv->subscribers = g_list_prepend (monitor->priv->subscribers, subscriber);
gvfs_dbus_monitor_complete_subscribe (object, invocation);
return TRUE;
}
static gboolean
handle_unsubscribe (GVfsDBusMonitor *object,
GDBusMethodInvocation *invocation,
const gchar *arg_object_path,
GVfsMonitor *monitor)
{
Subscriber *subscriber;
GList *l;
g_object_ref (monitor); /* Keep alive during possible last remove */
for (l = monitor->priv->subscribers; l != NULL; l = l->next)
{
subscriber = l->data;
if (matches_subscriber (subscriber,
g_dbus_method_invocation_get_connection (invocation),
arg_object_path,
g_dbus_method_invocation_get_sender (invocation)))
{
unsubscribe (subscriber);
break;
}
}
g_object_unref (monitor);
gvfs_dbus_monitor_complete_unsubscribe (object, invocation);
return TRUE;
}
static GDBusInterfaceSkeleton *
register_path_cb (GDBusConnection *conn,
const char *obj_path,
gpointer data)
{
GError *error;
GVfsDBusMonitor *skeleton;
skeleton = gvfs_dbus_monitor_skeleton_new ();
g_signal_connect (skeleton, "handle-subscribe", G_CALLBACK (handle_subscribe), data);
g_signal_connect (skeleton, "handle-unsubscribe", G_CALLBACK (handle_unsubscribe), data);
error = NULL;
if (!g_dbus_interface_skeleton_export (G_DBUS_INTERFACE_SKELETON (skeleton),
conn,
obj_path,
&error))
{
g_warning ("Error registering path: %s (%s, %d)\n",
error->message, g_quark_to_string (error->domain), error->code);
g_error_free (error);
}
return G_DBUS_INTERFACE_SKELETON (skeleton);
}
GVfsMonitor *
g_vfs_monitor_new (GVfsBackend *backend)
{
GVfsMonitor *monitor;
monitor = g_object_new (G_TYPE_VFS_MONITOR, NULL);
monitor->priv->backend = backend;
g_object_weak_ref (G_OBJECT (backend),
(GWeakNotify)backend_died,
monitor);
monitor->priv->daemon = g_object_ref (g_vfs_backend_get_daemon (backend));
monitor->priv->mount_spec = g_mount_spec_ref (g_vfs_backend_get_mount_spec (backend));
g_vfs_daemon_register_path (monitor->priv->daemon,
monitor->priv->object_path,
register_path_cb,
monitor);
return monitor;
}
const char *
g_vfs_monitor_get_object_path (GVfsMonitor *monitor)
{
return monitor->priv->object_path;
}
typedef struct {
GVfsMonitor *monitor;
GFileMonitorEvent event_type;
gchar *file_path;
gchar *other_file_path;
} EmitEventData;
static void
emit_event_data_free (EmitEventData *data)
{
g_object_unref (data->monitor);
g_free (data->file_path);
g_free (data->other_file_path);
g_free (data);
}
static void
changed_cb (GVfsDBusMonitorClient *proxy,
GAsyncResult *res,
EmitEventData *data)
{
GError *error = NULL;
if (! gvfs_dbus_monitor_client_call_changed_finish (proxy, res, &error))
{
g_dbus_error_strip_remote_error (error);
g_printerr ("Error calling org.gtk.vfs.MonitorClient.Changed(): %s (%s, %d)\n",
error->message, g_quark_to_string (error->domain), error->code);
g_error_free (error);
}
emit_event_data_free (data);
}
static void
got_proxy_cb (GObject *source_object,
GAsyncResult *res,
EmitEventData *data)
{
GError *error = NULL;
GVfsDBusMonitorClient *proxy;
proxy = gvfs_dbus_monitor_client_proxy_new_finish (res, &error);
if (proxy == NULL)
{
g_printerr ("Error creating proxy: %s (%s, %d)\n",
error->message, g_quark_to_string (error->domain), error->code);
g_error_free (error);
emit_event_data_free (data);
return;
}
gvfs_dbus_monitor_client_call_changed (proxy,
data->event_type,
g_mount_spec_to_dbus (data->monitor->priv->mount_spec),
data->file_path,
g_mount_spec_to_dbus (data->monitor->priv->mount_spec),
data->other_file_path ? data->other_file_path : "",
NULL,
(GAsyncReadyCallback) changed_cb,
data);
g_object_unref (proxy);
}
void
g_vfs_monitor_emit_event (GVfsMonitor *monitor,
GFileMonitorEvent event_type,
const char *file_path,
const char *other_file_path)
{
GList *l;
Subscriber *subscriber;
for (l = monitor->priv->subscribers; l != NULL; l = l->next)
{
EmitEventData *data;
subscriber = l->data;
data = g_new0 (EmitEventData, 1);
data->monitor = g_object_ref (monitor);
data->event_type = event_type;
data->file_path = g_strdup (file_path);
data->other_file_path = g_strdup (other_file_path);
gvfs_dbus_monitor_client_proxy_new (subscriber->connection,
G_DBUS_PROXY_FLAGS_DO_NOT_LOAD_PROPERTIES | G_DBUS_PROXY_FLAGS_DO_NOT_CONNECT_SIGNALS,
subscriber->id,
subscriber->object_path,
NULL,
(GAsyncReadyCallback) got_proxy_cb,
data);
}
}