bluez: merge file nm-bluez5-device.c into nm-bluez-device.c

The files nm-bluez-device.c and nm-bluez5-device.c are similar.
Merge them together into one file and handle the differences
using #if directives.

This commit does not actually change any functionality. All it does, is
merging the files together and separating the differences with #if#else.

The next commit will further add common functionality, so this
reduces code duplication for now.

Signed-off-by: Thomas Haller <thaller@redhat.com>
This commit is contained in:
Thomas Haller
2013-09-06 21:03:28 +02:00
parent daef45bdc0
commit 0cec10c013
3 changed files with 291 additions and 664 deletions

View File

@@ -260,18 +260,17 @@ nm_sources = \
nm_sources += \
bluez-manager/nm-bluez-common.h \
bluez-manager/nm-bluez-device.c \
bluez-manager/nm-bluez-device.h \
bluez-manager/nm-bluez-manager.h
if WITH_BLUEZ5
nm_sources += \
bluez-manager/nm-bluez5-device.c \
bluez-manager/nm-bluez5-manager.c
else
nm_sources += \
bluez-manager/nm-bluez-adapter.h \
bluez-manager/nm-bluez-adapter.c \
bluez-manager/nm-bluez-device.c \
bluez-manager/nm-bluez-manager.c
endif

View File

@@ -16,6 +16,7 @@
* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*
* Copyright (C) 2009 - 2012 Red Hat, Inc.
* Copyright (C) 2013 Intel Corporation.
*/
#include <glib.h>
@@ -28,8 +29,10 @@
#include "nm-setting-bluetooth.h"
#include "nm-bluez-common.h"
#if ! WITH_BLUEZ5
#include "nm-dbus-manager.h"
#include "nm-dbus-glib-types.h"
#endif
#include "nm-bluez-device.h"
#include "nm-logging.h"
@@ -40,8 +43,14 @@ G_DEFINE_TYPE (NMBluezDevice, nm_bluez_device, G_TYPE_OBJECT)
typedef struct {
char *path;
#if WITH_BLUEZ5
GDBusProxy *proxy5;
GDBusProxy *adapter;
GDBusConnection *dbus_connection;
#else
DBusGProxy *proxy4;
DBusGProxy *connection_proxy;
#endif
gboolean initialized;
gboolean usable;
@@ -56,8 +65,10 @@ typedef struct {
char *bt_iface;
#if ! WITH_BLUEZ5
NMConnectionProvider *provider;
GSList *connections;
#endif
} NMBluezDevicePrivate;
@@ -155,7 +166,11 @@ check_emit_usable (NMBluezDevice *self)
new_usable = (priv->initialized && priv->capabilities && priv->name &&
priv->address &&
#if WITH_BLUEZ5
priv->adapter && priv->dbus_connection
#else
priv->connections
#endif
);
if (new_usable != priv->usable) {
priv->usable = new_usable;
@@ -165,6 +180,7 @@ check_emit_usable (NMBluezDevice *self)
/********************************************************************/
#if ! WITH_BLUEZ5
static gboolean
connection_compatible (NMBluezDevice *self, NMConnection *connection)
{
@@ -254,12 +270,28 @@ cp_connections_loaded (NMConnectionProvider *provider, NMBluezDevice *self)
}
/***********************************************************/
#endif
void
nm_bluez_device_call_disconnect (NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
#if WITH_BLUEZ5
g_return_if_fail (priv->dbus_connection);
g_return_if_fail (priv->connection_bt_type == NM_BT_CAPABILITY_NAP);
g_dbus_connection_call (priv->dbus_connection,
BLUEZ_SERVICE,
priv->path,
BLUEZ_NETWORK_INTERFACE,
"Disconnect",
g_variant_new ("()"),
NULL,
G_DBUS_CALL_FLAGS_NONE,
-1,
NULL, NULL, NULL);
#else
g_return_if_fail (priv->connection_bt_type == NM_BT_CAPABILITY_NAP || priv->connection_bt_type == NM_BT_CAPABILITY_DUN);
if (!priv->connection_proxy)
@@ -279,13 +311,20 @@ nm_bluez_device_call_disconnect (NMBluezDevice *self)
}
g_clear_object (&priv->connection_proxy);
#endif
priv->connection_bt_type = NM_BT_CAPABILITY_NONE;
}
static void
#if WITH_BLUEZ5
bluez_connect_pan_cb (GDBusConnection *dbus_connection,
GAsyncResult *res,
gpointer user_data)
#else
bluez_connect_cb (DBusGProxy *proxy4,
DBusGProxyCall *call_id,
gpointer user_data)
#endif
{
GSimpleAsyncResult *result = G_SIMPLE_ASYNC_RESULT (user_data);
NMBluezDevice *self = NM_BLUEZ_DEVICE (g_async_result_get_source_object (G_ASYNC_RESULT (result)));
@@ -293,6 +332,23 @@ bluez_connect_cb (DBusGProxy *proxy4,
GError *error = NULL;
char *device;
#if WITH_BLUEZ5
GVariant *variant;
variant = g_dbus_connection_call_finish (dbus_connection, res, &error);
if (!variant) {
g_simple_async_result_take_error (result, error);
} else {
g_variant_get (variant, "(s)", &device);
g_simple_async_result_set_op_res_gpointer (result,
g_strdup (device),
g_free);
priv->bt_iface = device;
g_variant_unref (variant);
}
#else
if (dbus_g_proxy_end_call (proxy4, call_id, &error,
G_TYPE_STRING, &device,
G_TYPE_INVALID) == FALSE)
@@ -307,6 +363,7 @@ bluez_connect_cb (DBusGProxy *proxy4,
g_free);
priv->bt_iface = device;
}
#endif
g_simple_async_result_complete (result);
g_object_unref (result);
@@ -320,12 +377,37 @@ nm_bluez_device_connect_async (NMBluezDevice *self,
{
GSimpleAsyncResult *simple;
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
#if ! WITH_BLUEZ5
DBusGConnection *connection;
g_return_if_fail (connection_bt_type == NM_BT_CAPABILITY_NAP || connection_bt_type == NM_BT_CAPABILITY_DUN);
connection = nm_dbus_manager_get_connection (nm_dbus_manager_get ());
#endif
#if WITH_BLUEZ5
g_return_if_fail (connection_bt_type == NM_BT_CAPABILITY_NAP);
simple = g_simple_async_result_new (G_OBJECT (self),
callback,
user_data,
nm_bluez_device_connect_async);
/* For PAN we call Connect() on org.bluez.Network1 */
g_dbus_connection_call (priv->dbus_connection,
BLUEZ_SERVICE,
priv->path,
BLUEZ_NETWORK_INTERFACE,
"Connect",
g_variant_new ("(s)", BLUETOOTH_CONNECT_NAP),
NULL,
G_DBUS_CALL_FLAGS_NONE,
20000,
NULL,
(GAsyncReadyCallback) bluez_connect_pan_cb,
simple);
priv->connection_bt_type = connection_bt_type;
#else
g_return_if_fail (connection_bt_type == NM_BT_CAPABILITY_NAP || connection_bt_type == NM_BT_CAPABILITY_DUN);
if (priv->connection_proxy) {
g_simple_async_report_error_in_idle (G_OBJECT (self),
@@ -362,6 +444,7 @@ nm_bluez_device_connect_async (NMBluezDevice *self,
G_TYPE_INVALID);
priv->connection_bt_type = connection_bt_type;
}
#endif
}
const char *
@@ -400,9 +483,11 @@ convert_uuids_to_capabilities (const char **strings)
parts = g_strsplit (*iter, "-", -1);
if (parts && parts[0]) {
switch (g_ascii_strtoull (parts[0], NULL, 16)) {
#if ! WITH_BLUEZ5
case 0x1103:
capabilities |= NM_BT_CAPABILITY_DUN;
break;
#endif
case 0x1116:
capabilities |= NM_BT_CAPABILITY_NAP;
break;
@@ -416,6 +501,76 @@ convert_uuids_to_capabilities (const char **strings)
return capabilities;
}
#if WITH_BLUEZ5
static void
on_adapter_acquired (GObject *object, GAsyncResult *res, NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GError *error;
priv->adapter = g_dbus_proxy_new_for_bus_finish (res, &error);
if (!priv->adapter) {
nm_log_warn (LOGD_BT, "failed to acquire adapter proxy: %s.", error->message);
g_clear_error (&error);
return;
}
check_emit_usable (self);
}
static void
properties_changed (GDBusProxy *proxy5,
GVariant *changed_properties,
GStrv invalidated_properties,
gpointer user_data)
{
NMBluezDevice *self = NM_BLUEZ_DEVICE (user_data);
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GVariantIter i;
const char *property;
const char *str;
GVariant *v;
guint32 uint_val;
gint int_val;
const char **strv;
g_variant_iter_init (&i, changed_properties);
while (g_variant_iter_next (&i, "{&sv}", &property, &v)) {
if (!strcmp (property, "Name")) {
str = g_variant_get_string (v, NULL);
if (g_strcmp0 (priv->name, str)) {
g_free (priv->name);
priv->name = g_strdup (str);
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_NAME);
}
} else if (!strcmp (property, "RSSI")) {
int_val = g_variant_get_int16 (v);
if (priv->rssi != int_val) {
priv->rssi = int_val;
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_RSSI);
}
} else if (!strcmp (property, "UUIDs")) {
strv = g_variant_get_strv (v, NULL);
uint_val = convert_uuids_to_capabilities (strv);
g_free (strv);
if (priv->capabilities != uint_val) {
priv->capabilities = uint_val;
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_CAPABILITIES);
}
} else if (!strcmp (property, "Connected")) {
gboolean connected = g_variant_get_boolean (v);
if (priv->connected != connected) {
priv->connected = connected;
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_CONNECTED);
}
}
g_variant_unref (v);
}
check_emit_usable (self);
}
#else
static void
property_changed (DBusGProxy *proxy4,
const char *property,
@@ -461,7 +616,65 @@ property_changed (DBusGProxy *proxy4,
check_emit_usable (self);
}
#endif
#if WITH_BLUEZ5
static void
query_properties (NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GVariant *v;
const char **uuids;
struct ether_addr *tmp;
v = g_dbus_proxy_get_cached_property (priv->proxy5, "Address");
priv->address = v ? g_variant_dup_string (v, NULL) : NULL;
if (v)
g_variant_unref (v);
if (priv->address) {
tmp = ether_aton (priv->address);
g_assert (tmp);
memcpy (priv->bin_address, tmp->ether_addr_octet, ETH_ALEN);
}
v = g_dbus_proxy_get_cached_property (priv->proxy5, "Name");
priv->name = v ? g_variant_dup_string (v, NULL) : NULL;
if (v)
g_variant_unref (v);
v = g_dbus_proxy_get_cached_property (priv->proxy5, "RSSI");
priv->rssi = v ? g_variant_get_int16 (v) : 0;
if (v)
g_variant_unref (v);
v = g_dbus_proxy_get_cached_property (priv->proxy5, "UUIDs");
if (v) {
uuids = g_variant_get_strv (v, NULL);
priv->capabilities = convert_uuids_to_capabilities (uuids);
g_variant_unref (v);
} else
priv->capabilities = NM_BT_CAPABILITY_NONE;
v = g_dbus_proxy_get_cached_property (priv->proxy5, "Adapter");
if (v) {
g_dbus_proxy_new_for_bus (G_BUS_TYPE_SYSTEM,
G_DBUS_PROXY_FLAGS_NONE,
NULL,
BLUEZ_SERVICE,
g_variant_get_string (v, NULL),
BLUEZ_ADAPTER_INTERFACE,
NULL,
(GAsyncReadyCallback) on_adapter_acquired,
self);
g_variant_unref (v);
}
priv->initialized = TRUE;
g_signal_emit (self, signals[INITIALIZED], 0, TRUE);
check_emit_usable (self);
}
#else
static void
get_properties_cb (DBusGProxy *proxy4, DBusGProxyCall *call, gpointer user_data)
{
@@ -530,20 +743,69 @@ query_properties (NMBluezDevice *self)
priv->path);
}
}
#endif
#if WITH_BLUEZ5
static void
on_proxy_acquired (GObject *object, GAsyncResult *res, NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GError *error;
priv->proxy5 = g_dbus_proxy_new_for_bus_finish (res, &error);
if (!priv->proxy5) {
nm_log_warn (LOGD_BT, "failed to acquire device proxy: %s.", error->message);
g_clear_error (&error);
g_signal_emit (self, signals[INITIALIZED], 0, FALSE);
return;
}
g_signal_connect (priv->proxy5, "g-properties-changed",
G_CALLBACK (properties_changed), self);
query_properties (self);
}
static void
on_bus_acquired (GObject *object, GAsyncResult *res, NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GError *error = NULL;
priv->dbus_connection = g_bus_get_finish (res, &error);
if (!priv->dbus_connection) {
nm_log_warn (LOGD_BT, "failed to acquire bus connection: %s.", error->message);
g_clear_error (&error);
g_signal_emit (self, signals[INITIALIZED], 0, FALSE);
return;
}
check_emit_usable (self);
}
#endif
/********************************************************************/
NMBluezDevice *
nm_bluez_device_new (const char *path
#if ! WITH_BLUEZ5
, NMConnectionProvider *provider
#endif
)
{
NMBluezDevice *self;
NMBluezDevicePrivate *priv;
#if ! WITH_BLUEZ5
DBusGConnection *connection;
#endif
g_return_val_if_fail (path != NULL, NULL);
#if ! WITH_BLUEZ5
g_return_val_if_fail (provider != NULL, NULL);
#endif
self = (NMBluezDevice *) g_object_new (NM_TYPE_BLUEZ_DEVICE,
NM_BLUEZ_DEVICE_PATH, path,
@@ -553,6 +815,22 @@ nm_bluez_device_new (const char *path
priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
#if WITH_BLUEZ5
g_bus_get (G_BUS_TYPE_SYSTEM,
NULL,
(GAsyncReadyCallback) on_bus_acquired,
self);
g_dbus_proxy_new_for_bus (G_BUS_TYPE_SYSTEM,
G_DBUS_PROXY_FLAGS_NONE,
NULL,
BLUEZ_SERVICE,
priv->path,
BLUEZ_DEVICE_INTERFACE,
NULL,
(GAsyncReadyCallback) on_proxy_acquired,
self);
#else
priv->provider = provider;
g_signal_connect (priv->provider,
@@ -592,6 +870,7 @@ nm_bluez_device_new (const char *path
G_CALLBACK (property_changed), self, NULL);
query_properties (self);
#endif
return self;
}
@@ -606,6 +885,10 @@ dispose (GObject *object)
NMBluezDevice *self = NM_BLUEZ_DEVICE (object);
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
#if WITH_BLUEZ5
g_clear_object (&priv->adapter);
g_clear_object (&priv->dbus_connection);
#else
g_slist_foreach (priv->connections, (GFunc) g_object_unref, NULL);
g_slist_free (priv->connections);
priv->connections = NULL;
@@ -616,6 +899,7 @@ dispose (GObject *object)
g_signal_handlers_disconnect_by_func (priv->provider, cp_connections_loaded, self);
g_clear_object (&priv->connection_proxy);
#endif
G_OBJECT_CLASS (nm_bluez_device_parent_class)->dispose (object);
}
@@ -629,7 +913,11 @@ finalize (GObject *object)
g_free (priv->address);
g_free (priv->name);
g_free (priv->bt_iface);
#if WITH_BLUEZ5
g_object_unref (priv->proxy5);
#else
g_object_unref (priv->proxy4);
#endif
G_OBJECT_CLASS (nm_bluez_device_parent_class)->finalize (object);
}

View File

@@ -1,660 +0,0 @@
/* -*- Mode: C; tab-width: 4; indent-tabs-mode: t; c-basic-offset: 4 -*- */
/* NetworkManager -- Network link manager
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program 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 General Public License for more details.
*
* You should have received a copy of the GNU General Public License along
* with this program; if not, write to the Free Software Foundation, Inc.,
* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*
* Copyright (C) 2009 - 2012 Red Hat, Inc.
* Copyright (C) 2013 Intel Corporation.
*/
#include <glib.h>
#include <gio/gio.h>
#include <string.h>
#include <net/ethernet.h>
#include <netinet/ether.h>
#include "NetworkManager.h"
#include "nm-setting-bluetooth.h"
#include "nm-bluez-common.h"
#include "nm-bluez-device.h"
#include "nm-logging.h"
G_DEFINE_TYPE (NMBluezDevice, nm_bluez_device, G_TYPE_OBJECT)
#define NM_BLUEZ_DEVICE_GET_PRIVATE(o) (G_TYPE_INSTANCE_GET_PRIVATE ((o), NM_TYPE_BLUEZ_DEVICE, NMBluezDevicePrivate))
typedef struct {
char *path;
GDBusProxy *proxy5;
GDBusProxy *adapter;
GDBusConnection *dbus_connection;
gboolean initialized;
gboolean usable;
NMBluetoothCapabilities connection_bt_type;
char *address;
guint8 bin_address[ETH_ALEN];
char *name;
guint32 capabilities;
gint rssi;
gboolean connected;
char *bt_iface;
} NMBluezDevicePrivate;
enum {
PROP_0,
PROP_PATH,
PROP_ADDRESS,
PROP_NAME,
PROP_CAPABILITIES,
PROP_RSSI,
PROP_USABLE,
PROP_CONNECTED,
LAST_PROP
};
/* Signals */
enum {
INITIALIZED,
LAST_SIGNAL
};
static guint signals[LAST_SIGNAL] = { 0 };
/***********************************************************/
const char *
nm_bluez_device_get_path (NMBluezDevice *self)
{
g_return_val_if_fail (NM_IS_BLUEZ_DEVICE (self), NULL);
return NM_BLUEZ_DEVICE_GET_PRIVATE (self)->path;
}
const char *
nm_bluez_device_get_address (NMBluezDevice *self)
{
g_return_val_if_fail (NM_IS_BLUEZ_DEVICE (self), NULL);
return NM_BLUEZ_DEVICE_GET_PRIVATE (self)->address;
}
gboolean
nm_bluez_device_get_initialized (NMBluezDevice *self)
{
g_return_val_if_fail (NM_IS_BLUEZ_DEVICE (self), FALSE);
return NM_BLUEZ_DEVICE_GET_PRIVATE (self)->initialized;
}
gboolean
nm_bluez_device_get_usable (NMBluezDevice *self)
{
g_return_val_if_fail (NM_IS_BLUEZ_DEVICE (self), FALSE);
return NM_BLUEZ_DEVICE_GET_PRIVATE (self)->usable;
}
const char *
nm_bluez_device_get_name (NMBluezDevice *self)
{
g_return_val_if_fail (NM_IS_BLUEZ_DEVICE (self), NULL);
return NM_BLUEZ_DEVICE_GET_PRIVATE (self)->name;
}
guint32
nm_bluez_device_get_capabilities (NMBluezDevice *self)
{
g_return_val_if_fail (NM_IS_BLUEZ_DEVICE (self), 0);
return NM_BLUEZ_DEVICE_GET_PRIVATE (self)->capabilities;
}
gint
nm_bluez_device_get_rssi (NMBluezDevice *self)
{
g_return_val_if_fail (NM_IS_BLUEZ_DEVICE (self), 0);
return NM_BLUEZ_DEVICE_GET_PRIVATE (self)->rssi;
}
gboolean
nm_bluez_device_get_connected (NMBluezDevice *self)
{
g_return_val_if_fail (NM_IS_BLUEZ_DEVICE (self), FALSE);
return NM_BLUEZ_DEVICE_GET_PRIVATE (self)->connected;
}
static void
check_emit_usable (NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
gboolean new_usable;
new_usable = (priv->initialized && priv->capabilities && priv->name &&
priv->address &&
priv->adapter && priv->dbus_connection
);
if (new_usable != priv->usable) {
priv->usable = new_usable;
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_USABLE);
}
}
/********************************************************************/
void
nm_bluez_device_call_disconnect (NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
g_return_if_fail (priv->dbus_connection);
g_return_if_fail (priv->connection_bt_type == NM_BT_CAPABILITY_NAP);
g_dbus_connection_call (priv->dbus_connection,
BLUEZ_SERVICE,
priv->path,
BLUEZ_NETWORK_INTERFACE,
"Disconnect",
g_variant_new ("()"),
NULL,
G_DBUS_CALL_FLAGS_NONE,
-1,
NULL, NULL, NULL);
priv->connection_bt_type = NM_BT_CAPABILITY_NONE;
}
static void
bluez_connect_pan_cb (GDBusConnection *dbus_connection,
GAsyncResult *res,
gpointer user_data)
{
GSimpleAsyncResult *result = G_SIMPLE_ASYNC_RESULT (user_data);
NMBluezDevice *self = NM_BLUEZ_DEVICE (g_async_result_get_source_object (G_ASYNC_RESULT (result)));
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GError *error = NULL;
char *device;
GVariant *variant;
variant = g_dbus_connection_call_finish (dbus_connection, res, &error);
if (!variant) {
g_simple_async_result_take_error (result, error);
} else {
g_variant_get (variant, "(s)", &device);
g_simple_async_result_set_op_res_gpointer (result,
g_strdup (device),
g_free);
priv->bt_iface = device;
g_variant_unref (variant);
}
g_simple_async_result_complete (result);
g_object_unref (result);
}
void
nm_bluez_device_connect_async (NMBluezDevice *self,
NMBluetoothCapabilities connection_bt_type,
GAsyncReadyCallback callback,
gpointer user_data)
{
GSimpleAsyncResult *simple;
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
g_return_if_fail (connection_bt_type == NM_BT_CAPABILITY_NAP);
simple = g_simple_async_result_new (G_OBJECT (self),
callback,
user_data,
nm_bluez_device_connect_async);
/* For PAN we call Connect() on org.bluez.Network1 */
g_dbus_connection_call (priv->dbus_connection,
BLUEZ_SERVICE,
priv->path,
BLUEZ_NETWORK_INTERFACE,
"Connect",
g_variant_new ("(s)", BLUETOOTH_CONNECT_NAP),
NULL,
G_DBUS_CALL_FLAGS_NONE,
20000,
NULL,
(GAsyncReadyCallback) bluez_connect_pan_cb,
simple);
priv->connection_bt_type = connection_bt_type;
}
const char *
nm_bluez_device_connect_finish (NMBluezDevice *self,
GAsyncResult *result,
GError **error)
{
GSimpleAsyncResult *simple;
const char *device;
g_return_val_if_fail (g_simple_async_result_is_valid (result,
G_OBJECT (self),
nm_bluez_device_connect_async),
NULL);
simple = (GSimpleAsyncResult *) result;
if (g_simple_async_result_propagate_error (simple, error))
return NULL;
device = (const char *) g_simple_async_result_get_op_res_gpointer (simple);
return device;
}
/***********************************************************/
static guint32
convert_uuids_to_capabilities (const char **strings)
{
const char **iter;
guint32 capabilities = 0;
for (iter = strings; iter && *iter; iter++) {
char **parts;
parts = g_strsplit (*iter, "-", -1);
if (parts && parts[0]) {
switch (g_ascii_strtoull (parts[0], NULL, 16)) {
case 0x1116:
capabilities |= NM_BT_CAPABILITY_NAP;
break;
default:
break;
}
}
g_strfreev (parts);
}
return capabilities;
}
static void
on_adapter_acquired (GObject *object, GAsyncResult *res, NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GError *error;
priv->adapter = g_dbus_proxy_new_for_bus_finish (res, &error);
if (!priv->adapter) {
nm_log_warn (LOGD_BT, "failed to acquire adapter proxy: %s.", error->message);
g_clear_error (&error);
return;
}
check_emit_usable (self);
}
static void
properties_changed (GDBusProxy *proxy5,
GVariant *changed_properties,
GStrv invalidated_properties,
gpointer user_data)
{
NMBluezDevice *self = NM_BLUEZ_DEVICE (user_data);
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GVariantIter i;
const char *property;
const char *str;
GVariant *v;
guint32 uint_val;
gint int_val;
const char **strv;
g_variant_iter_init (&i, changed_properties);
while (g_variant_iter_next (&i, "{&sv}", &property, &v)) {
if (!strcmp (property, "Name")) {
str = g_variant_get_string (v, NULL);
if (g_strcmp0 (priv->name, str)) {
g_free (priv->name);
priv->name = g_strdup (str);
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_NAME);
}
} else if (!strcmp (property, "RSSI")) {
int_val = g_variant_get_int16 (v);
if (priv->rssi != int_val) {
priv->rssi = int_val;
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_RSSI);
}
} else if (!strcmp (property, "UUIDs")) {
strv = g_variant_get_strv (v, NULL);
uint_val = convert_uuids_to_capabilities (strv);
g_free (strv);
if (priv->capabilities != uint_val) {
priv->capabilities = uint_val;
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_CAPABILITIES);
}
} else if (!strcmp (property, "Connected")) {
gboolean connected = g_variant_get_boolean (v);
if (priv->connected != connected) {
priv->connected = connected;
g_object_notify (G_OBJECT (self), NM_BLUEZ_DEVICE_CONNECTED);
}
}
g_variant_unref (v);
}
check_emit_usable (self);
}
static void
query_properties (NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GVariant *v;
const char **uuids;
struct ether_addr *tmp;
v = g_dbus_proxy_get_cached_property (priv->proxy5, "Address");
priv->address = v ? g_variant_dup_string (v, NULL) : NULL;
if (v)
g_variant_unref (v);
if (priv->address) {
tmp = ether_aton (priv->address);
g_assert (tmp);
memcpy (priv->bin_address, tmp->ether_addr_octet, ETH_ALEN);
}
v = g_dbus_proxy_get_cached_property (priv->proxy5, "Name");
priv->name = v ? g_variant_dup_string (v, NULL) : NULL;
if (v)
g_variant_unref (v);
v = g_dbus_proxy_get_cached_property (priv->proxy5, "RSSI");
priv->rssi = v ? g_variant_get_int16 (v) : 0;
if (v)
g_variant_unref (v);
v = g_dbus_proxy_get_cached_property (priv->proxy5, "UUIDs");
if (v) {
uuids = g_variant_get_strv (v, NULL);
priv->capabilities = convert_uuids_to_capabilities (uuids);
g_variant_unref (v);
} else
priv->capabilities = NM_BT_CAPABILITY_NONE;
v = g_dbus_proxy_get_cached_property (priv->proxy5, "Adapter");
if (v) {
g_dbus_proxy_new_for_bus (G_BUS_TYPE_SYSTEM,
G_DBUS_PROXY_FLAGS_NONE,
NULL,
BLUEZ_SERVICE,
g_variant_get_string (v, NULL),
BLUEZ_ADAPTER_INTERFACE,
NULL,
(GAsyncReadyCallback) on_adapter_acquired,
self);
g_variant_unref (v);
}
priv->initialized = TRUE;
g_signal_emit (self, signals[INITIALIZED], 0, TRUE);
check_emit_usable (self);
}
static void
on_proxy_acquired (GObject *object, GAsyncResult *res, NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GError *error;
priv->proxy5 = g_dbus_proxy_new_for_bus_finish (res, &error);
if (!priv->proxy5) {
nm_log_warn (LOGD_BT, "failed to acquire device proxy: %s.", error->message);
g_clear_error (&error);
g_signal_emit (self, signals[INITIALIZED], 0, FALSE);
return;
}
g_signal_connect (priv->proxy5, "g-properties-changed",
G_CALLBACK (properties_changed), self);
query_properties (self);
}
static void
on_bus_acquired (GObject *object, GAsyncResult *res, NMBluezDevice *self)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
GError *error = NULL;
priv->dbus_connection = g_bus_get_finish (res, &error);
if (!priv->dbus_connection) {
nm_log_warn (LOGD_BT, "failed to acquire bus connection: %s.", error->message);
g_clear_error (&error);
g_signal_emit (self, signals[INITIALIZED], 0, FALSE);
return;
}
check_emit_usable (self);
}
/********************************************************************/
NMBluezDevice *
nm_bluez_device_new (const char *path
)
{
NMBluezDevice *self;
NMBluezDevicePrivate *priv;
g_return_val_if_fail (path != NULL, NULL);
self = (NMBluezDevice *) g_object_new (NM_TYPE_BLUEZ_DEVICE,
NM_BLUEZ_DEVICE_PATH, path,
NULL);
if (!self)
return NULL;
priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
g_bus_get (G_BUS_TYPE_SYSTEM,
NULL,
(GAsyncReadyCallback) on_bus_acquired,
self);
g_dbus_proxy_new_for_bus (G_BUS_TYPE_SYSTEM,
G_DBUS_PROXY_FLAGS_NONE,
NULL,
BLUEZ_SERVICE,
priv->path,
BLUEZ_DEVICE_INTERFACE,
NULL,
(GAsyncReadyCallback) on_proxy_acquired,
self);
return self;
}
static void
nm_bluez_device_init (NMBluezDevice *self)
{
}
static void
dispose (GObject *object)
{
NMBluezDevice *self = NM_BLUEZ_DEVICE (object);
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (self);
g_clear_object (&priv->adapter);
g_clear_object (&priv->dbus_connection);
G_OBJECT_CLASS (nm_bluez_device_parent_class)->dispose (object);
}
static void
finalize (GObject *object)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (object);
g_free (priv->path);
g_free (priv->address);
g_free (priv->name);
g_free (priv->bt_iface);
g_object_unref (priv->proxy5);
G_OBJECT_CLASS (nm_bluez_device_parent_class)->finalize (object);
}
static void
get_property (GObject *object, guint prop_id,
GValue *value, GParamSpec *pspec)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (object);
switch (prop_id) {
case PROP_PATH:
g_value_set_string (value, priv->path);
break;
case PROP_ADDRESS:
g_value_set_string (value, priv->address);
break;
case PROP_NAME:
g_value_set_string (value, priv->name);
break;
case PROP_CAPABILITIES:
g_value_set_uint (value, priv->capabilities);
break;
case PROP_RSSI:
g_value_set_int (value, priv->rssi);
break;
case PROP_USABLE:
g_value_set_boolean (value, priv->usable);
break;
case PROP_CONNECTED:
g_value_set_boolean (value, priv->connected);
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
set_property (GObject *object, guint prop_id,
const GValue *value, GParamSpec *pspec)
{
NMBluezDevicePrivate *priv = NM_BLUEZ_DEVICE_GET_PRIVATE (object);
switch (prop_id) {
case PROP_PATH:
/* construct only */
priv->path = g_value_dup_string (value);
break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
}
}
static void
nm_bluez_device_class_init (NMBluezDeviceClass *config_class)
{
GObjectClass *object_class = G_OBJECT_CLASS (config_class);
g_type_class_add_private (config_class, sizeof (NMBluezDevicePrivate));
/* virtual methods */
object_class->get_property = get_property;
object_class->set_property = set_property;
object_class->dispose = dispose;
object_class->finalize = finalize;
/* Properties */
g_object_class_install_property
(object_class, PROP_PATH,
g_param_spec_string (NM_BLUEZ_DEVICE_PATH,
"DBus Path",
"DBus Path",
NULL,
G_PARAM_READWRITE | G_PARAM_CONSTRUCT_ONLY));
g_object_class_install_property
(object_class, PROP_ADDRESS,
g_param_spec_string (NM_BLUEZ_DEVICE_ADDRESS,
"Address",
"Address",
NULL,
G_PARAM_READABLE));
g_object_class_install_property
(object_class, PROP_NAME,
g_param_spec_string (NM_BLUEZ_DEVICE_NAME,
"Name",
"Name",
NULL,
G_PARAM_READABLE));
g_object_class_install_property
(object_class, PROP_CAPABILITIES,
g_param_spec_uint (NM_BLUEZ_DEVICE_CAPABILITIES,
"Capabilities",
"Capabilities",
0, G_MAXUINT, 0,
G_PARAM_READABLE));
g_object_class_install_property
(object_class, PROP_RSSI,
g_param_spec_int (NM_BLUEZ_DEVICE_RSSI,
"RSSI",
"RSSI",
G_MININT, G_MAXINT, 0,
G_PARAM_READABLE));
g_object_class_install_property
(object_class, PROP_USABLE,
g_param_spec_boolean (NM_BLUEZ_DEVICE_USABLE,
"Usable",
"Usable",
FALSE,
G_PARAM_READABLE));
g_object_class_install_property
(object_class, PROP_CONNECTED,
g_param_spec_boolean (NM_BLUEZ_DEVICE_CONNECTED,
"Connected",
"Connected",
FALSE,
G_PARAM_READABLE));
/* Signals */
signals[INITIALIZED] = g_signal_new ("initialized",
G_OBJECT_CLASS_TYPE (object_class),
G_SIGNAL_RUN_LAST,
G_STRUCT_OFFSET (NMBluezDeviceClass, initialized),
NULL, NULL, NULL,
G_TYPE_NONE, 1, G_TYPE_BOOLEAN);
}