mirror of
https://git.kernel.org/pub/scm/bluetooth/bluez.git
synced 2024-12-22 10:23:27 +08:00
e457ba2989
Handlers are registered on service register and unregistered on unregister.
410 lines
9.3 KiB
C
410 lines
9.3 KiB
C
/*
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*
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* BlueZ - Bluetooth protocol stack for Linux
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*
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* Copyright (C) 2013 Intel Corporation. All rights reserved.
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*
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*
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*/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <stdint.h>
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#include <stdbool.h>
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#include <stdlib.h>
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#include <errno.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <glib.h>
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#include "btio/btio.h"
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#include "lib/bluetooth.h"
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#include "lib/sdp.h"
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#include "lib/sdp_lib.h"
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#include "log.h"
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#include "a2dp.h"
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#include "hal-msg.h"
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#include "ipc.h"
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#include "utils.h"
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#include "bluetooth.h"
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#include "avdtp.h"
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#define L2CAP_PSM_AVDTP 0x19
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#define SVC_HINT_CAPTURING 0x08
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static GIOChannel *server = NULL;
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static GSList *devices = NULL;
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static bdaddr_t adapter_addr;
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static uint32_t record_id = 0;
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struct a2dp_device {
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bdaddr_t dst;
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uint8_t state;
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GIOChannel *io;
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guint watch;
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struct avdtp *session;
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};
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static int device_cmp(gconstpointer s, gconstpointer user_data)
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{
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const struct a2dp_device *dev = s;
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const bdaddr_t *dst = user_data;
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return bacmp(&dev->dst, dst);
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}
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static void a2dp_device_free(struct a2dp_device *dev)
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{
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if (dev->session)
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avdtp_unref(dev->session);
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if (dev->watch > 0)
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g_source_remove(dev->watch);
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if (dev->io)
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g_io_channel_unref(dev->io);
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devices = g_slist_remove(devices, dev);
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g_free(dev);
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}
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static struct a2dp_device *a2dp_device_new(const bdaddr_t *dst)
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{
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struct a2dp_device *dev;
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dev = g_new0(struct a2dp_device, 1);
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bacpy(&dev->dst, dst);
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devices = g_slist_prepend(devices, dev);
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return dev;
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}
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static void bt_a2dp_notify_state(struct a2dp_device *dev, uint8_t state)
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{
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struct hal_ev_a2dp_conn_state ev;
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char address[18];
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if (dev->state == state)
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return;
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dev->state = state;
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ba2str(&dev->dst, address);
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DBG("device %s state %u", address, state);
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bdaddr2android(&dev->dst, ev.bdaddr);
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ev.state = state;
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ipc_send_notif(HAL_SERVICE_ID_A2DP, HAL_EV_A2DP_CONN_STATE, sizeof(ev),
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&ev);
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if (state != HAL_A2DP_STATE_DISCONNECTED)
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return;
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a2dp_device_free(dev);
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}
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static gboolean watch_cb(GIOChannel *chan, GIOCondition cond, gpointer data)
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{
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struct a2dp_device *dev = data;
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bt_a2dp_notify_state(dev, HAL_A2DP_STATE_DISCONNECTED);
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return FALSE;
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}
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static void signaling_connect_cb(GIOChannel *chan, GError *err,
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gpointer user_data)
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{
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struct a2dp_device *dev = user_data;
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uint16_t imtu, omtu;
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GError *gerr = NULL;
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int fd;
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if (err) {
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bt_a2dp_notify_state(dev, HAL_A2DP_STATE_DISCONNECTED);
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error("%s", err->message);
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return;
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}
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bt_io_get(chan, &gerr,
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BT_IO_OPT_IMTU, &imtu,
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BT_IO_OPT_OMTU, &omtu,
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BT_IO_OPT_INVALID);
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if (gerr) {
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bt_a2dp_notify_state(dev, HAL_A2DP_STATE_DISCONNECTED);
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error("%s", gerr->message);
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g_error_free(gerr);
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return;
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}
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/* FIXME: Add proper version */
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fd = g_io_channel_unix_get_fd(chan);
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dev->session = avdtp_new(fd, imtu, omtu, 0x0100);
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dev->watch = g_io_add_watch(dev->io, G_IO_HUP | G_IO_ERR | G_IO_NVAL,
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watch_cb, dev);
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bt_a2dp_notify_state(dev, HAL_A2DP_STATE_CONNECTED);
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}
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static void bt_a2dp_connect(const void *buf, uint16_t len)
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{
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const struct hal_cmd_a2dp_connect *cmd = buf;
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struct a2dp_device *dev;
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uint8_t status;
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char addr[18];
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bdaddr_t dst;
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GSList *l;
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GError *err = NULL;
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DBG("");
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android2bdaddr(&cmd->bdaddr, &dst);
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l = g_slist_find_custom(devices, &dst, device_cmp);
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if (l) {
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status = HAL_STATUS_FAILED;
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goto failed;
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}
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dev = a2dp_device_new(&dst);
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dev->io = bt_io_connect(signaling_connect_cb, dev, NULL, &err,
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BT_IO_OPT_SOURCE_BDADDR, &adapter_addr,
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BT_IO_OPT_DEST_BDADDR, &dev->dst,
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BT_IO_OPT_PSM, L2CAP_PSM_AVDTP,
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BT_IO_OPT_SEC_LEVEL, BT_IO_SEC_MEDIUM,
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BT_IO_OPT_INVALID);
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if (err) {
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error("%s", err->message);
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g_error_free(err);
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a2dp_device_free(dev);
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status = HAL_STATUS_FAILED;
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goto failed;
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}
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ba2str(&dev->dst, addr);
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DBG("connecting to %s", addr);
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bt_a2dp_notify_state(dev, HAL_A2DP_STATE_CONNECTING);
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status = HAL_STATUS_SUCCESS;
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failed:
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ipc_send_rsp(HAL_SERVICE_ID_A2DP, HAL_OP_A2DP_CONNECT, status);
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}
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static void bt_a2dp_disconnect(const void *buf, uint16_t len)
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{
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const struct hal_cmd_a2dp_connect *cmd = buf;
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uint8_t status;
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struct a2dp_device *dev;
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GSList *l;
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bdaddr_t dst;
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DBG("");
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android2bdaddr(&cmd->bdaddr, &dst);
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l = g_slist_find_custom(devices, &dst, device_cmp);
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if (!l) {
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status = HAL_STATUS_FAILED;
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goto failed;
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}
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dev = l->data;
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/* Wait signaling channel to HUP */
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if (dev->io)
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g_io_channel_shutdown(dev->io, TRUE, NULL);
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bt_a2dp_notify_state(dev, HAL_A2DP_STATE_DISCONNECTING);
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status = HAL_STATUS_SUCCESS;
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failed:
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ipc_send_rsp(HAL_SERVICE_ID_A2DP, HAL_OP_A2DP_DISCONNECT, status);
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}
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static const struct ipc_handler cmd_handlers[] = {
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/* HAL_OP_A2DP_CONNECT */
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{ bt_a2dp_connect, false, sizeof(struct hal_cmd_a2dp_connect) },
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/* HAL_OP_A2DP_DISCONNECT */
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{ bt_a2dp_disconnect, false, sizeof(struct hal_cmd_a2dp_disconnect) },
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};
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static void connect_cb(GIOChannel *chan, GError *err, gpointer user_data)
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{
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struct a2dp_device *dev;
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bdaddr_t src, dst;
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char address[18];
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GError *gerr = NULL;
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GSList *l;
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if (err) {
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error("%s", err->message);
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return;
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}
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bt_io_get(chan, &gerr,
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BT_IO_OPT_SOURCE_BDADDR, &src,
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BT_IO_OPT_DEST_BDADDR, &dst,
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BT_IO_OPT_INVALID);
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if (gerr) {
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error("%s", gerr->message);
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g_error_free(gerr);
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g_io_channel_shutdown(chan, TRUE, NULL);
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return;
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}
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l = g_slist_find_custom(devices, &dst, device_cmp);
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if (l)
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return;
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ba2str(&dst, address);
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DBG("Incoming connection from %s", address);
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dev = a2dp_device_new(&dst);
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signaling_connect_cb(chan, err, dev);
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}
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static sdp_record_t *a2dp_record(void)
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{
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sdp_list_t *svclass_id, *pfseq, *apseq, *root;
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uuid_t root_uuid, l2cap_uuid, avdtp_uuid, a2dp_uuid;
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sdp_profile_desc_t profile[1];
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sdp_list_t *aproto, *proto[2];
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sdp_record_t *record;
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sdp_data_t *psm, *version, *features;
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uint16_t lp = AVDTP_UUID;
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uint16_t a2dp_ver = 0x0103, avdtp_ver = 0x0103, feat = 0x000f;
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record = sdp_record_alloc();
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if (!record)
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return NULL;
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sdp_uuid16_create(&root_uuid, PUBLIC_BROWSE_GROUP);
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root = sdp_list_append(NULL, &root_uuid);
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sdp_set_browse_groups(record, root);
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sdp_uuid16_create(&a2dp_uuid, AUDIO_SOURCE_SVCLASS_ID);
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svclass_id = sdp_list_append(NULL, &a2dp_uuid);
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sdp_set_service_classes(record, svclass_id);
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sdp_uuid16_create(&profile[0].uuid, ADVANCED_AUDIO_PROFILE_ID);
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profile[0].version = a2dp_ver;
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pfseq = sdp_list_append(NULL, &profile[0]);
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sdp_set_profile_descs(record, pfseq);
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sdp_uuid16_create(&l2cap_uuid, L2CAP_UUID);
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proto[0] = sdp_list_append(NULL, &l2cap_uuid);
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psm = sdp_data_alloc(SDP_UINT16, &lp);
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proto[0] = sdp_list_append(proto[0], psm);
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apseq = sdp_list_append(NULL, proto[0]);
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sdp_uuid16_create(&avdtp_uuid, AVDTP_UUID);
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proto[1] = sdp_list_append(NULL, &avdtp_uuid);
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version = sdp_data_alloc(SDP_UINT16, &avdtp_ver);
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proto[1] = sdp_list_append(proto[1], version);
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apseq = sdp_list_append(apseq, proto[1]);
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aproto = sdp_list_append(NULL, apseq);
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sdp_set_access_protos(record, aproto);
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features = sdp_data_alloc(SDP_UINT16, &feat);
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sdp_attr_add(record, SDP_ATTR_SUPPORTED_FEATURES, features);
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sdp_set_info_attr(record, "Audio Source", NULL, NULL);
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sdp_data_free(psm);
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sdp_data_free(version);
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sdp_list_free(proto[0], NULL);
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sdp_list_free(proto[1], NULL);
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sdp_list_free(apseq, NULL);
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sdp_list_free(pfseq, NULL);
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sdp_list_free(aproto, NULL);
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sdp_list_free(root, NULL);
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sdp_list_free(svclass_id, NULL);
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return record;
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}
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bool bt_a2dp_register(const bdaddr_t *addr)
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{
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GError *err = NULL;
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sdp_record_t *rec;
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DBG("");
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bacpy(&adapter_addr, addr);
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server = bt_io_listen(connect_cb, NULL, NULL, NULL, &err,
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BT_IO_OPT_SOURCE_BDADDR, &adapter_addr,
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BT_IO_OPT_PSM, L2CAP_PSM_AVDTP,
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BT_IO_OPT_SEC_LEVEL, BT_IO_SEC_MEDIUM,
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BT_IO_OPT_INVALID);
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if (!server) {
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error("Failed to listen on AVDTP channel: %s", err->message);
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g_error_free(err);
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return false;
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}
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rec = a2dp_record();
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if (bt_adapter_add_record(rec, SVC_HINT_CAPTURING) < 0) {
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error("Failed to register on A2DP record");
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sdp_record_free(rec);
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g_io_channel_shutdown(server, TRUE, NULL);
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g_io_channel_unref(server);
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server = NULL;
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return false;
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}
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record_id = rec->handle;
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ipc_register(HAL_SERVICE_ID_A2DP, cmd_handlers,
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sizeof(cmd_handlers)/sizeof(cmd_handlers[0]));
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return true;
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}
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static void a2dp_device_disconnected(gpointer data, gpointer user_data)
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{
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struct a2dp_device *dev = data;
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bt_a2dp_notify_state(dev, HAL_A2DP_STATE_DISCONNECTED);
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}
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void bt_a2dp_unregister(void)
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{
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DBG("");
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g_slist_foreach(devices, a2dp_device_disconnected, NULL);
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devices = NULL;
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ipc_unregister(HAL_SERVICE_ID_A2DP);
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bt_adapter_remove_record(record_id);
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record_id = 0;
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if (server) {
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g_io_channel_shutdown(server, TRUE, NULL);
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g_io_channel_unref(server);
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server = NULL;
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}
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}
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