bluetooth: Register endpoints with BlueZ 5 adapter
[platform/upstream/pulseaudio.git] / src / modules / bluetooth / bluez5-util.c
1 /***
2   This file is part of PulseAudio.
3
4   Copyright 2008-2013 João Paulo Rechi Vita
5
6   PulseAudio is free software; you can redistribute it and/or modify
7   it under the terms of the GNU Lesser General Public License as
8   published by the Free Software Foundation; either version 2.1 of the
9   License, or (at your option) any later version.
10
11   PulseAudio is distributed in the hope that it will be useful, but
12   WITHOUT ANY WARRANTY; without even the implied warranty of
13   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14   General Public License for more details.
15
16   You should have received a copy of the GNU Lesser General Public
17   License along with PulseAudio; if not, write to the Free Software
18   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
19   USA.
20 ***/
21
22 #ifdef HAVE_CONFIG_H
23 #include <config.h>
24 #endif
25
26 #include <pulse/xmalloc.h>
27
28 #include <pulsecore/core.h>
29 #include <pulsecore/core-util.h>
30 #include <pulsecore/dbus-shared.h>
31 #include <pulsecore/log.h>
32 #include <pulsecore/macro.h>
33 #include <pulsecore/refcnt.h>
34 #include <pulsecore/shared.h>
35
36 #include "a2dp-codecs.h"
37
38 #include "bluez5-util.h"
39
40 #define BLUEZ_SERVICE "org.bluez"
41 #define BLUEZ_ADAPTER_INTERFACE BLUEZ_SERVICE ".Adapter1"
42 #define BLUEZ_DEVICE_INTERFACE BLUEZ_SERVICE ".Device1"
43 #define BLUEZ_MEDIA_INTERFACE BLUEZ_SERVICE ".Media1"
44 #define BLUEZ_MEDIA_ENDPOINT_INTERFACE BLUEZ_SERVICE ".MediaEndpoint1"
45 #define BLUEZ_MEDIA_TRANSPORT_INTERFACE BLUEZ_SERVICE ".MediaTransport1"
46
47 #define BLUEZ_ERROR_NOT_SUPPORTED "org.bluez.Error.NotSupported"
48
49 #define A2DP_SOURCE_ENDPOINT "/MediaEndpoint/A2DPSource"
50 #define A2DP_SINK_ENDPOINT "/MediaEndpoint/A2DPSink"
51
52 #define ENDPOINT_INTROSPECT_XML                                         \
53     DBUS_INTROSPECT_1_0_XML_DOCTYPE_DECL_NODE                           \
54     "<node>"                                                            \
55     " <interface name=\"" BLUEZ_MEDIA_ENDPOINT_INTERFACE "\">"          \
56     "  <method name=\"SetConfiguration\">"                              \
57     "   <arg name=\"transport\" direction=\"in\" type=\"o\"/>"          \
58     "   <arg name=\"properties\" direction=\"in\" type=\"ay\"/>"        \
59     "  </method>"                                                       \
60     "  <method name=\"SelectConfiguration\">"                           \
61     "   <arg name=\"capabilities\" direction=\"in\" type=\"ay\"/>"      \
62     "   <arg name=\"configuration\" direction=\"out\" type=\"ay\"/>"    \
63     "  </method>"                                                       \
64     "  <method name=\"ClearConfiguration\">"                            \
65     "   <arg name=\"transport\" direction=\"in\" type=\"o\"/>"          \
66     "  </method>"                                                       \
67     "  <method name=\"Release\">"                                       \
68     "  </method>"                                                       \
69     " </interface>"                                                     \
70     " <interface name=\"org.freedesktop.DBus.Introspectable\">"         \
71     "  <method name=\"Introspect\">"                                    \
72     "   <arg name=\"data\" type=\"s\" direction=\"out\"/>"              \
73     "  </method>"                                                       \
74     " </interface>"                                                     \
75     "</node>"
76
77 struct pa_bluetooth_discovery {
78     PA_REFCNT_DECLARE;
79
80     pa_core *core;
81     pa_dbus_connection *connection;
82     bool filter_added;
83     bool matches_added;
84     bool objects_listed;
85     pa_hook hooks[PA_BLUETOOTH_HOOK_MAX];
86     pa_hashmap *adapters;
87     pa_hashmap *devices;
88     pa_hashmap *transports;
89
90     PA_LLIST_HEAD(pa_dbus_pending, pending);
91 };
92
93 static pa_dbus_pending* send_and_add_to_pending(pa_bluetooth_discovery *y, DBusMessage *m,
94                                                                   DBusPendingCallNotifyFunction func, void *call_data) {
95     pa_dbus_pending *p;
96     DBusPendingCall *call;
97
98     pa_assert(y);
99     pa_assert(m);
100
101     pa_assert_se(dbus_connection_send_with_reply(pa_dbus_connection_get(y->connection), m, &call, -1));
102
103     p = pa_dbus_pending_new(pa_dbus_connection_get(y->connection), m, call, y, call_data);
104     PA_LLIST_PREPEND(pa_dbus_pending, y->pending, p);
105     dbus_pending_call_set_notify(call, func, p, NULL);
106
107     return p;
108 }
109
110 static const char *check_variant_property(DBusMessageIter *i) {
111     const char *key;
112
113     pa_assert(i);
114
115     if (dbus_message_iter_get_arg_type(i) != DBUS_TYPE_STRING) {
116         pa_log_error("Property name not a string.");
117         return NULL;
118     }
119
120     dbus_message_iter_get_basic(i, &key);
121
122     if (!dbus_message_iter_next(i)) {
123         pa_log_error("Property value missing");
124         return NULL;
125     }
126
127     if (dbus_message_iter_get_arg_type(i) != DBUS_TYPE_VARIANT) {
128         pa_log_error("Property value not a variant.");
129         return NULL;
130     }
131
132     return key;
133 }
134
135 pa_bluetooth_transport *pa_bluetooth_transport_new(pa_bluetooth_device *d, const char *owner, const char *path,
136                                                    pa_bluetooth_profile_t p, const uint8_t *config, size_t size) {
137     pa_bluetooth_transport *t;
138
139     t = pa_xnew0(pa_bluetooth_transport, 1);
140     t->device = d;
141     t->owner = pa_xstrdup(owner);
142     t->path = pa_xstrdup(path);
143     t->profile = p;
144     t->config_size = size;
145
146     if (size > 0) {
147         t->config = pa_xnew(uint8_t, size);
148         memcpy(t->config, config, size);
149     }
150
151     pa_assert_se(pa_hashmap_put(d->discovery->transports, t->path, t) >= 0);
152
153     return t;
154 }
155
156 static const char *transport_state_to_string(pa_bluetooth_transport_state_t state) {
157     switch(state) {
158         case PA_BLUETOOTH_TRANSPORT_STATE_DISCONNECTED:
159             return "disconnected";
160         case PA_BLUETOOTH_TRANSPORT_STATE_IDLE:
161             return "idle";
162         case PA_BLUETOOTH_TRANSPORT_STATE_PLAYING:
163             return "playing";
164     }
165
166     return "invalid";
167 }
168
169 static void transport_state_changed(pa_bluetooth_transport *t, pa_bluetooth_transport_state_t state) {
170     bool old_any_connected;
171
172     pa_assert(t);
173
174     if (t->state == state)
175         return;
176
177     old_any_connected = pa_bluetooth_device_any_transport_connected(t->device);
178
179     pa_log_debug("Transport %s state changed from %s to %s",
180                  t->path, transport_state_to_string(t->state), transport_state_to_string(state));
181
182     t->state = state;
183     if (state == PA_BLUETOOTH_TRANSPORT_STATE_DISCONNECTED)
184         t->device->transports[t->profile] = NULL;
185
186     pa_hook_fire(&t->device->discovery->hooks[PA_BLUETOOTH_HOOK_TRANSPORT_STATE_CHANGED], t);
187
188     if (old_any_connected != pa_bluetooth_device_any_transport_connected(t->device))
189         pa_hook_fire(&t->device->discovery->hooks[PA_BLUETOOTH_HOOK_DEVICE_CONNECTION_CHANGED], t->device);
190 }
191
192 void pa_bluetooth_transport_put(pa_bluetooth_transport *t) {
193     transport_state_changed(t, PA_BLUETOOTH_TRANSPORT_STATE_IDLE);
194 }
195
196 void pa_bluetooth_transport_free(pa_bluetooth_transport *t) {
197     pa_assert(t);
198
199     pa_hashmap_remove(t->device->discovery->transports, t->path);
200     pa_xfree(t->owner);
201     pa_xfree(t->path);
202     pa_xfree(t->config);
203     pa_xfree(t);
204 }
205
206 static int bluez5_transport_acquire_cb(pa_bluetooth_transport *t, bool optional, size_t *imtu, size_t *omtu) {
207     DBusMessage *m, *r;
208     DBusError err;
209     int ret;
210     uint16_t i, o;
211     const char *method = optional ? "TryAcquire" : "Acquire";
212
213     pa_assert(t);
214     pa_assert(t->device);
215     pa_assert(t->device->discovery);
216
217     pa_assert_se(m = dbus_message_new_method_call(t->owner, t->path, BLUEZ_MEDIA_TRANSPORT_INTERFACE, method));
218
219     dbus_error_init(&err);
220
221     r = dbus_connection_send_with_reply_and_block(pa_dbus_connection_get(t->device->discovery->connection), m, -1, &err);
222     if (!r) {
223         if (optional && pa_streq(err.name, "org.bluez.Error.NotAvailable"))
224             pa_log_info("Failed optional acquire of unavailable transport %s", t->path);
225         else
226             pa_log_error("Transport %s() failed for transport %s (%s)", method, t->path, err.message);
227
228         dbus_error_free(&err);
229         return -1;
230     }
231
232     if (!dbus_message_get_args(r, &err, DBUS_TYPE_UNIX_FD, &ret, DBUS_TYPE_UINT16, &i, DBUS_TYPE_UINT16, &o,
233                                DBUS_TYPE_INVALID)) {
234         pa_log_error("Failed to parse %s() reply: %s", method, err.message);
235         dbus_error_free(&err);
236         ret = -1;
237         goto finish;
238     }
239
240     if (imtu)
241         *imtu = i;
242
243     if (omtu)
244         *omtu = o;
245
246 finish:
247     dbus_message_unref(r);
248     return ret;
249 }
250
251 static void bluez5_transport_release_cb(pa_bluetooth_transport *t) {
252     DBusMessage *m;
253     DBusError err;
254
255     pa_assert(t);
256     pa_assert(t->device);
257     pa_assert(t->device->discovery);
258
259     dbus_error_init(&err);
260
261     if (t->state <= PA_BLUETOOTH_TRANSPORT_STATE_IDLE) {
262         pa_log_info("Transport %s auto-released by BlueZ or already released", t->path);
263         return;
264     }
265
266     pa_assert_se(m = dbus_message_new_method_call(t->owner, t->path, BLUEZ_MEDIA_TRANSPORT_INTERFACE, "Release"));
267     dbus_connection_send_with_reply_and_block(pa_dbus_connection_get(t->device->discovery->connection), m, -1, &err);
268
269     if (dbus_error_is_set(&err)) {
270         pa_log_error("Failed to release transport %s: %s", t->path, err.message);
271         dbus_error_free(&err);
272     } else
273         pa_log_info("Transport %s released", t->path);
274 }
275
276 bool pa_bluetooth_device_any_transport_connected(const pa_bluetooth_device *d) {
277     unsigned i;
278
279     pa_assert(d);
280
281     if (d->device_info_valid != 1)
282         return false;
283
284     for (i = 0; i < PA_BLUETOOTH_PROFILE_COUNT; i++)
285         if (d->transports[i] && d->transports[i]->state != PA_BLUETOOTH_TRANSPORT_STATE_DISCONNECTED)
286             return true;
287
288     return false;
289 }
290
291 static pa_bluetooth_device* device_create(pa_bluetooth_discovery *y, const char *path) {
292     pa_bluetooth_device *d;
293
294     pa_assert(y);
295     pa_assert(path);
296
297     d = pa_xnew0(pa_bluetooth_device, 1);
298     d->discovery = y;
299     d->path = pa_xstrdup(path);
300
301     pa_hashmap_put(y->devices, d->path, d);
302
303     return d;
304 }
305
306 pa_bluetooth_device* pa_bluetooth_discovery_get_device_by_path(pa_bluetooth_discovery *y, const char *path) {
307     pa_bluetooth_device *d;
308
309     pa_assert(y);
310     pa_assert(PA_REFCNT_VALUE(y) > 0);
311     pa_assert(path);
312
313     if ((d = pa_hashmap_get(y->devices, path)))
314         if (d->device_info_valid == 1)
315             return d;
316
317     return NULL;
318 }
319
320 pa_bluetooth_device* pa_bluetooth_discovery_get_device_by_address(pa_bluetooth_discovery *y, const char *remote, const char *local) {
321     pa_bluetooth_device *d;
322     void *state = NULL;
323
324     pa_assert(y);
325     pa_assert(PA_REFCNT_VALUE(y) > 0);
326     pa_assert(remote);
327     pa_assert(local);
328
329     while ((d = pa_hashmap_iterate(y->devices, &state, NULL)))
330         if (pa_streq(d->address, remote) && pa_streq(d->adapter->address, local))
331             return d->device_info_valid == 1 ? d : NULL;
332
333     return NULL;
334 }
335
336 static void device_free(pa_bluetooth_device *d) {
337     unsigned i;
338
339     pa_assert(d);
340
341     for (i = 0; i < PA_BLUETOOTH_PROFILE_COUNT; i++) {
342         pa_bluetooth_transport *t;
343
344         if (!(t = d->transports[i]))
345             continue;
346
347         transport_state_changed(t, PA_BLUETOOTH_TRANSPORT_STATE_DISCONNECTED);
348         pa_bluetooth_transport_free(t);
349     }
350
351     d->discovery = NULL;
352     d->adapter = NULL;
353     pa_xfree(d->path);
354     pa_xfree(d->alias);
355     pa_xfree(d->address);
356     pa_xfree(d);
357 }
358
359 static void device_remove(pa_bluetooth_discovery *y, const char *path) {
360     pa_bluetooth_device *d;
361
362     if (!(d = pa_hashmap_remove(y->devices, path)))
363         pa_log_warn("Unknown device removed %s", path);
364     else {
365         pa_log_debug("Device %s removed", path);
366         device_free(d);
367     }
368 }
369
370 static void device_remove_all(pa_bluetooth_discovery *y) {
371     pa_bluetooth_device *d;
372
373     pa_assert(y);
374
375     while ((d = pa_hashmap_steal_first(y->devices))) {
376         d->device_info_valid = -1;
377         pa_hook_fire(&y->hooks[PA_BLUETOOTH_HOOK_DEVICE_CONNECTION_CHANGED], d);
378         device_free(d);
379    }
380 }
381
382 static pa_bluetooth_adapter* adapter_create(pa_bluetooth_discovery *y, const char *path) {
383     pa_bluetooth_adapter *a;
384
385     pa_assert(y);
386     pa_assert(path);
387
388     a = pa_xnew0(pa_bluetooth_adapter, 1);
389     a->discovery = y;
390     a->path = pa_xstrdup(path);
391
392     pa_hashmap_put(y->adapters, a->path, a);
393
394     return a;
395 }
396
397 static void adapter_free(pa_bluetooth_adapter *a) {
398     pa_bluetooth_device *d;
399     void *state;
400
401     pa_assert(a);
402     pa_assert(a->discovery);
403
404     PA_HASHMAP_FOREACH(d, a->discovery->devices, state)
405         if (d->adapter == a)
406             d->adapter = NULL;
407
408     pa_xfree(a->path);
409     pa_xfree(a->address);
410     pa_xfree(a);
411 }
412
413 static void adapter_remove(pa_bluetooth_discovery *y, const char *path) {
414     pa_bluetooth_adapter *a;
415
416     if (!(a = pa_hashmap_remove(y->adapters, path)))
417         pa_log_warn("Unknown adapter removed %s", path);
418     else {
419         pa_log_debug("Adapter %s removed", path);
420         adapter_free(a);
421     }
422 }
423
424 static void adapter_remove_all(pa_bluetooth_discovery *y) {
425     pa_bluetooth_adapter *a;
426
427     pa_assert(y);
428
429     /* When this function is called all devices have already been freed */
430
431     while ((a = pa_hashmap_steal_first(y->adapters)))
432         adapter_free(a);
433 }
434
435 static void parse_adapter_properties(pa_bluetooth_adapter *a, DBusMessageIter *i, bool is_property_change) {
436     DBusMessageIter element_i;
437
438     pa_assert(a);
439
440     dbus_message_iter_recurse(i, &element_i);
441
442     while (dbus_message_iter_get_arg_type(&element_i) == DBUS_TYPE_DICT_ENTRY) {
443         DBusMessageIter dict_i, variant_i;
444         const char *key;
445
446         dbus_message_iter_recurse(&element_i, &dict_i);
447
448         key = check_variant_property(&dict_i);
449         if (key == NULL) {
450             pa_log_error("Received invalid property for adapter %s", a->path);
451             return;
452         }
453
454         dbus_message_iter_recurse(&dict_i, &variant_i);
455
456         if (dbus_message_iter_get_arg_type(&variant_i) == DBUS_TYPE_STRING && pa_streq(key, "Address")) {
457             char *value;
458
459             if (is_property_change) {
460                 pa_log_warn("Adapter property 'Address' expected to be constant but changed for %s, ignoring", a->path);
461                 return;
462             }
463
464             if (a->address) {
465                 pa_log_warn("Adapter %s received a duplicate 'Address' property, ignoring", a->path);
466                 return;
467             }
468
469             dbus_message_iter_get_basic(&variant_i, &value);
470             a->address = pa_xstrdup(value);
471         }
472
473         dbus_message_iter_next(&element_i);
474     }
475 }
476
477 static void register_endpoint_reply(DBusPendingCall *pending, void *userdata) {
478     DBusMessage *r;
479     pa_dbus_pending *p;
480     pa_bluetooth_discovery *y;
481     char *endpoint;
482
483     pa_assert(pending);
484     pa_assert_se(p = userdata);
485     pa_assert_se(y = p->context_data);
486     pa_assert_se(endpoint = p->call_data);
487     pa_assert_se(r = dbus_pending_call_steal_reply(pending));
488
489     if (dbus_message_is_error(r, BLUEZ_ERROR_NOT_SUPPORTED)) {
490         pa_log_info("Couldn't register endpoint %s because it is disabled in BlueZ", endpoint);
491         goto finish;
492     }
493
494     if (dbus_message_get_type(r) == DBUS_MESSAGE_TYPE_ERROR) {
495         pa_log_error(BLUEZ_MEDIA_INTERFACE ".RegisterEndpoint() failed: %s: %s", dbus_message_get_error_name(r),
496                      pa_dbus_get_error_message(r));
497         goto finish;
498     }
499
500 finish:
501     dbus_message_unref(r);
502
503     PA_LLIST_REMOVE(pa_dbus_pending, y->pending, p);
504     pa_dbus_pending_free(p);
505
506     pa_xfree(endpoint);
507 }
508
509 static void register_endpoint(pa_bluetooth_discovery *y, const char *path, const char *endpoint, const char *uuid) {
510     DBusMessage *m;
511     DBusMessageIter i, d;
512     uint8_t codec = 0;
513
514     pa_log_debug("Registering %s on adapter %s", endpoint, path);
515
516     pa_assert_se(m = dbus_message_new_method_call(BLUEZ_SERVICE, path, BLUEZ_MEDIA_INTERFACE, "RegisterEndpoint"));
517
518     dbus_message_iter_init_append(m, &i);
519     dbus_message_iter_append_basic(&i, DBUS_TYPE_OBJECT_PATH, &endpoint);
520     dbus_message_iter_open_container(&i, DBUS_TYPE_ARRAY, DBUS_DICT_ENTRY_BEGIN_CHAR_AS_STRING DBUS_TYPE_STRING_AS_STRING
521                                          DBUS_TYPE_VARIANT_AS_STRING DBUS_DICT_ENTRY_END_CHAR_AS_STRING, &d);
522     pa_dbus_append_basic_variant_dict_entry(&d, "UUID", DBUS_TYPE_STRING, &uuid);
523     pa_dbus_append_basic_variant_dict_entry(&d, "Codec", DBUS_TYPE_BYTE, &codec);
524
525     if (pa_streq(uuid, PA_BLUETOOTH_UUID_A2DP_SOURCE) || pa_streq(uuid, PA_BLUETOOTH_UUID_A2DP_SINK)) {
526         a2dp_sbc_t capabilities;
527
528         capabilities.channel_mode = SBC_CHANNEL_MODE_MONO | SBC_CHANNEL_MODE_DUAL_CHANNEL | SBC_CHANNEL_MODE_STEREO |
529                                     SBC_CHANNEL_MODE_JOINT_STEREO;
530         capabilities.frequency = SBC_SAMPLING_FREQ_16000 | SBC_SAMPLING_FREQ_32000 | SBC_SAMPLING_FREQ_44100 |
531                                  SBC_SAMPLING_FREQ_48000;
532         capabilities.allocation_method = SBC_ALLOCATION_SNR | SBC_ALLOCATION_LOUDNESS;
533         capabilities.subbands = SBC_SUBBANDS_4 | SBC_SUBBANDS_8;
534         capabilities.block_length = SBC_BLOCK_LENGTH_4 | SBC_BLOCK_LENGTH_8 | SBC_BLOCK_LENGTH_12 | SBC_BLOCK_LENGTH_16;
535         capabilities.min_bitpool = MIN_BITPOOL;
536         capabilities.max_bitpool = MAX_BITPOOL;
537
538         pa_dbus_append_basic_array_variant_dict_entry(&d, "Capabilities", DBUS_TYPE_BYTE, &capabilities, sizeof(capabilities));
539     }
540
541     dbus_message_iter_close_container(&i, &d);
542
543     send_and_add_to_pending(y, m, register_endpoint_reply, pa_xstrdup(endpoint));
544 }
545
546 static void parse_interfaces_and_properties(pa_bluetooth_discovery *y, DBusMessageIter *dict_i) {
547     DBusMessageIter element_i;
548     const char *path;
549
550     pa_assert(dbus_message_iter_get_arg_type(dict_i) == DBUS_TYPE_OBJECT_PATH);
551     dbus_message_iter_get_basic(dict_i, &path);
552
553     pa_assert_se(dbus_message_iter_next(dict_i));
554     pa_assert(dbus_message_iter_get_arg_type(dict_i) == DBUS_TYPE_ARRAY);
555
556     dbus_message_iter_recurse(dict_i, &element_i);
557
558     while (dbus_message_iter_get_arg_type(&element_i) == DBUS_TYPE_DICT_ENTRY) {
559         DBusMessageIter iface_i;
560         const char *interface;
561
562         dbus_message_iter_recurse(&element_i, &iface_i);
563
564         pa_assert(dbus_message_iter_get_arg_type(&iface_i) == DBUS_TYPE_STRING);
565         dbus_message_iter_get_basic(&iface_i, &interface);
566
567         pa_assert_se(dbus_message_iter_next(&iface_i));
568         pa_assert(dbus_message_iter_get_arg_type(&iface_i) == DBUS_TYPE_ARRAY);
569
570         if (pa_streq(interface, BLUEZ_ADAPTER_INTERFACE)) {
571             pa_bluetooth_adapter *a;
572
573             if ((a = pa_hashmap_get(y->adapters, path))) {
574                 pa_log_error("Found duplicated D-Bus path for device %s", path);
575                 return;
576             } else
577                 a = adapter_create(y, path);
578
579             pa_log_debug("Adapter %s found", path);
580
581             parse_adapter_properties(a, &iface_i, false);
582             if (!a->address)
583                 return;
584
585             register_endpoint(y, path, A2DP_SOURCE_ENDPOINT, PA_BLUETOOTH_UUID_A2DP_SOURCE);
586             register_endpoint(y, path, A2DP_SINK_ENDPOINT, PA_BLUETOOTH_UUID_A2DP_SINK);
587
588         } else if (pa_streq(interface, BLUEZ_DEVICE_INTERFACE)) {
589             pa_bluetooth_device *d;
590
591             if ((d = pa_hashmap_get(y->devices, path))) {
592                 if (d->device_info_valid != 0) {
593                     pa_log_error("Found duplicated D-Bus path for device %s", path);
594                     return;
595                 }
596             } else
597                 d = device_create(y, path);
598
599             pa_log_debug("Device %s found", d->path);
600
601             /* TODO: parse device properties */
602
603         } else
604             pa_log_debug("Unknown interface %s found, skipping", interface);
605
606         dbus_message_iter_next(&element_i);
607     }
608
609     return;
610 }
611
612 static void get_managed_objects_reply(DBusPendingCall *pending, void *userdata) {
613     pa_dbus_pending *p;
614     pa_bluetooth_discovery *y;
615     DBusMessage *r;
616     DBusMessageIter arg_i, element_i;
617
618     pa_assert_se(p = userdata);
619     pa_assert_se(y = p->context_data);
620     pa_assert_se(r = dbus_pending_call_steal_reply(pending));
621
622     if (dbus_message_is_error(r, DBUS_ERROR_UNKNOWN_METHOD)) {
623         pa_log_warn("BlueZ D-Bus ObjectManager not available");
624         goto finish;
625     }
626
627     if (dbus_message_get_type(r) == DBUS_MESSAGE_TYPE_ERROR) {
628         pa_log_error("GetManagedObjects() failed: %s: %s", dbus_message_get_error_name(r), pa_dbus_get_error_message(r));
629         goto finish;
630     }
631
632     if (!dbus_message_iter_init(r, &arg_i) || !pa_streq(dbus_message_get_signature(r), "a{oa{sa{sv}}}")) {
633         pa_log_error("Invalid reply signature for GetManagedObjects()");
634         goto finish;
635     }
636
637     dbus_message_iter_recurse(&arg_i, &element_i);
638     while (dbus_message_iter_get_arg_type(&element_i) == DBUS_TYPE_DICT_ENTRY) {
639         DBusMessageIter dict_i;
640
641         dbus_message_iter_recurse(&element_i, &dict_i);
642
643         parse_interfaces_and_properties(y, &dict_i);
644
645         dbus_message_iter_next(&element_i);
646     }
647
648     y->objects_listed = true;
649
650 finish:
651     dbus_message_unref(r);
652
653     PA_LLIST_REMOVE(pa_dbus_pending, y->pending, p);
654     pa_dbus_pending_free(p);
655 }
656
657 static void get_managed_objects(pa_bluetooth_discovery *y) {
658     DBusMessage *m;
659
660     pa_assert(y);
661
662     pa_assert_se(m = dbus_message_new_method_call(BLUEZ_SERVICE, "/", "org.freedesktop.DBus.ObjectManager",
663                                                   "GetManagedObjects"));
664     send_and_add_to_pending(y, m, get_managed_objects_reply, NULL);
665 }
666
667 pa_hook* pa_bluetooth_discovery_hook(pa_bluetooth_discovery *y, pa_bluetooth_hook_t hook) {
668     pa_assert(y);
669     pa_assert(PA_REFCNT_VALUE(y) > 0);
670
671     return &y->hooks[hook];
672 }
673
674 static DBusHandlerResult filter_cb(DBusConnection *bus, DBusMessage *m, void *userdata) {
675     pa_bluetooth_discovery *y;
676     DBusError err;
677
678     pa_assert(bus);
679     pa_assert(m);
680     pa_assert_se(y = userdata);
681
682     dbus_error_init(&err);
683
684     if (dbus_message_is_signal(m, "org.freedesktop.DBus", "NameOwnerChanged")) {
685         const char *name, *old_owner, *new_owner;
686
687         if (!dbus_message_get_args(m, &err,
688                                    DBUS_TYPE_STRING, &name,
689                                    DBUS_TYPE_STRING, &old_owner,
690                                    DBUS_TYPE_STRING, &new_owner,
691                                    DBUS_TYPE_INVALID)) {
692             pa_log_error("Failed to parse org.freedesktop.DBus.NameOwnerChanged: %s", err.message);
693             goto fail;
694         }
695
696         if (pa_streq(name, BLUEZ_SERVICE)) {
697             if (old_owner && *old_owner) {
698                 pa_log_debug("Bluetooth daemon disappeared");
699                 device_remove_all(y);
700                 adapter_remove_all(y);
701                 y->objects_listed = false;
702             }
703
704             if (new_owner && *new_owner) {
705                 pa_log_debug("Bluetooth daemon appeared");
706                 get_managed_objects(y);
707             }
708         }
709
710         return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
711     } else if (dbus_message_is_signal(m, "org.freedesktop.DBus.ObjectManager", "InterfacesAdded")) {
712         DBusMessageIter arg_i;
713
714         if (!y->objects_listed)
715             return DBUS_HANDLER_RESULT_NOT_YET_HANDLED; /* No reply received yet from GetManagedObjects */
716
717         if (!dbus_message_iter_init(m, &arg_i) || !pa_streq(dbus_message_get_signature(m), "oa{sa{sv}}")) {
718             pa_log_error("Invalid signature found in InterfacesAdded");
719             goto fail;
720         }
721
722         parse_interfaces_and_properties(y, &arg_i);
723
724         return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
725     } else if (dbus_message_is_signal(m, "org.freedesktop.DBus.ObjectManager", "InterfacesRemoved")) {
726         const char *p;
727         DBusMessageIter arg_i;
728         DBusMessageIter element_i;
729
730         if (!y->objects_listed)
731             return DBUS_HANDLER_RESULT_NOT_YET_HANDLED; /* No reply received yet from GetManagedObjects */
732
733         if (!dbus_message_iter_init(m, &arg_i) || !pa_streq(dbus_message_get_signature(m), "oas")) {
734             pa_log_error("Invalid signature found in InterfacesRemoved");
735             goto fail;
736         }
737
738         dbus_message_iter_get_basic(&arg_i, &p);
739
740         pa_assert_se(dbus_message_iter_next(&arg_i));
741         pa_assert(dbus_message_iter_get_arg_type(&arg_i) == DBUS_TYPE_ARRAY);
742
743         dbus_message_iter_recurse(&arg_i, &element_i);
744
745         while (dbus_message_iter_get_arg_type(&element_i) == DBUS_TYPE_STRING) {
746             const char *iface;
747
748             dbus_message_iter_get_basic(&element_i, &iface);
749
750             if (pa_streq(iface, BLUEZ_DEVICE_INTERFACE))
751                 device_remove(y, p);
752             else if (pa_streq(iface, BLUEZ_ADAPTER_INTERFACE))
753                 adapter_remove(y, p);
754
755             dbus_message_iter_next(&element_i);
756         }
757
758         return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
759
760     }
761
762 fail:
763     dbus_error_free(&err);
764
765     return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
766 }
767
768 static uint8_t a2dp_default_bitpool(uint8_t freq, uint8_t mode) {
769     /* These bitpool values were chosen based on the A2DP spec recommendation */
770     switch (freq) {
771         case SBC_SAMPLING_FREQ_16000:
772         case SBC_SAMPLING_FREQ_32000:
773             return 53;
774
775         case SBC_SAMPLING_FREQ_44100:
776
777             switch (mode) {
778                 case SBC_CHANNEL_MODE_MONO:
779                 case SBC_CHANNEL_MODE_DUAL_CHANNEL:
780                     return 31;
781
782                 case SBC_CHANNEL_MODE_STEREO:
783                 case SBC_CHANNEL_MODE_JOINT_STEREO:
784                     return 53;
785             }
786
787             pa_log_warn("Invalid channel mode %u", mode);
788             return 53;
789
790         case SBC_SAMPLING_FREQ_48000:
791
792             switch (mode) {
793                 case SBC_CHANNEL_MODE_MONO:
794                 case SBC_CHANNEL_MODE_DUAL_CHANNEL:
795                     return 29;
796
797                 case SBC_CHANNEL_MODE_STEREO:
798                 case SBC_CHANNEL_MODE_JOINT_STEREO:
799                     return 51;
800             }
801
802             pa_log_warn("Invalid channel mode %u", mode);
803             return 51;
804     }
805
806     pa_log_warn("Invalid sampling freq %u", freq);
807     return 53;
808 }
809
810 const char *pa_bluetooth_profile_to_string(pa_bluetooth_profile_t profile) {
811     switch(profile) {
812         case PA_BLUETOOTH_PROFILE_A2DP_SINK:
813             return "a2dp_sink";
814         case PA_BLUETOOTH_PROFILE_A2DP_SOURCE:
815             return "a2dp_source";
816         case PA_BLUETOOTH_PROFILE_OFF:
817             return "off";
818     }
819
820     return NULL;
821 }
822
823 static DBusMessage *endpoint_set_configuration(DBusConnection *conn, DBusMessage *m, void *userdata) {
824     pa_bluetooth_discovery *y = userdata;
825     pa_bluetooth_device *d;
826     pa_bluetooth_transport *t;
827     const char *sender, *path, *endpoint_path, *dev_path = NULL, *uuid = NULL;
828     const uint8_t *config = NULL;
829     int size = 0;
830     pa_bluetooth_profile_t p = PA_BLUETOOTH_PROFILE_OFF;
831     DBusMessageIter args, props;
832     DBusMessage *r;
833
834     if (!dbus_message_iter_init(m, &args) || !pa_streq(dbus_message_get_signature(m), "oa{sv}")) {
835         pa_log_error("Invalid signature for method SetConfiguration()");
836         goto fail2;
837     }
838
839     dbus_message_iter_get_basic(&args, &path);
840
841     if (pa_hashmap_get(y->transports, path)) {
842         pa_log_error("Endpoint SetConfiguration(): Transport %s is already configured.", path);
843         goto fail2;
844     }
845
846     pa_assert_se(dbus_message_iter_next(&args));
847
848     dbus_message_iter_recurse(&args, &props);
849     if (dbus_message_iter_get_arg_type(&props) != DBUS_TYPE_DICT_ENTRY)
850         goto fail;
851
852     /* Read transport properties */
853     while (dbus_message_iter_get_arg_type(&props) == DBUS_TYPE_DICT_ENTRY) {
854         const char *key;
855         DBusMessageIter value, entry;
856         int var;
857
858         dbus_message_iter_recurse(&props, &entry);
859         dbus_message_iter_get_basic(&entry, &key);
860
861         dbus_message_iter_next(&entry);
862         dbus_message_iter_recurse(&entry, &value);
863
864         var = dbus_message_iter_get_arg_type(&value);
865
866         if (pa_streq(key, "UUID")) {
867             if (var != DBUS_TYPE_STRING) {
868                 pa_log_error("Property %s of wrong type %c", key, (char)var);
869                 goto fail;
870             }
871
872             dbus_message_iter_get_basic(&value, &uuid);
873
874             endpoint_path = dbus_message_get_path(m);
875             if (pa_streq(endpoint_path, A2DP_SOURCE_ENDPOINT)) {
876                 if (pa_streq(uuid, PA_BLUETOOTH_UUID_A2DP_SOURCE))
877                     p = PA_BLUETOOTH_PROFILE_A2DP_SINK;
878             } else if (pa_streq(endpoint_path, A2DP_SINK_ENDPOINT)) {
879                 if (pa_streq(uuid, PA_BLUETOOTH_UUID_A2DP_SINK))
880                     p = PA_BLUETOOTH_PROFILE_A2DP_SOURCE;
881             }
882
883             if (p == PA_BLUETOOTH_PROFILE_OFF) {
884                 pa_log_error("UUID %s of transport %s incompatible with endpoint %s", uuid, path, endpoint_path);
885                 goto fail;
886             }
887         } else if (pa_streq(key, "Device")) {
888             if (var != DBUS_TYPE_OBJECT_PATH) {
889                 pa_log_error("Property %s of wrong type %c", key, (char)var);
890                 goto fail;
891             }
892
893             dbus_message_iter_get_basic(&value, &dev_path);
894         } else if (pa_streq(key, "Configuration")) {
895             DBusMessageIter array;
896             a2dp_sbc_t *c;
897
898             if (var != DBUS_TYPE_ARRAY) {
899                 pa_log_error("Property %s of wrong type %c", key, (char)var);
900                 goto fail;
901             }
902
903             dbus_message_iter_recurse(&value, &array);
904             var = dbus_message_iter_get_arg_type(&array);
905             if (var != DBUS_TYPE_BYTE) {
906                 pa_log_error("%s is an array of wrong type %c", key, (char)var);
907                 goto fail;
908             }
909
910             dbus_message_iter_get_fixed_array(&array, &config, &size);
911             if (size != sizeof(a2dp_sbc_t)) {
912                 pa_log_error("Configuration array of invalid size");
913                 goto fail;
914             }
915
916             c = (a2dp_sbc_t *) config;
917
918             if (c->frequency != SBC_SAMPLING_FREQ_16000 && c->frequency != SBC_SAMPLING_FREQ_32000 &&
919                 c->frequency != SBC_SAMPLING_FREQ_44100 && c->frequency != SBC_SAMPLING_FREQ_48000) {
920                 pa_log_error("Invalid sampling frequency in configuration");
921                 goto fail;
922             }
923
924             if (c->channel_mode != SBC_CHANNEL_MODE_MONO && c->channel_mode != SBC_CHANNEL_MODE_DUAL_CHANNEL &&
925                 c->channel_mode != SBC_CHANNEL_MODE_STEREO && c->channel_mode != SBC_CHANNEL_MODE_JOINT_STEREO) {
926                 pa_log_error("Invalid channel mode in configuration");
927                 goto fail;
928             }
929
930             if (c->allocation_method != SBC_ALLOCATION_SNR && c->allocation_method != SBC_ALLOCATION_LOUDNESS) {
931                 pa_log_error("Invalid allocation method in configuration");
932                 goto fail;
933             }
934
935             if (c->subbands != SBC_SUBBANDS_4 && c->subbands != SBC_SUBBANDS_8) {
936                 pa_log_error("Invalid SBC subbands in configuration");
937                 goto fail;
938             }
939
940             if (c->block_length != SBC_BLOCK_LENGTH_4 && c->block_length != SBC_BLOCK_LENGTH_8 &&
941                 c->block_length != SBC_BLOCK_LENGTH_12 && c->block_length != SBC_BLOCK_LENGTH_16) {
942                 pa_log_error("Invalid block length in configuration");
943                 goto fail;
944             }
945         }
946
947         dbus_message_iter_next(&props);
948     }
949
950     if ((d = pa_hashmap_get(y->devices, dev_path))) {
951         if (d->device_info_valid == -1) {
952             pa_log_error("Information about device %s is invalid", dev_path);
953             goto fail2;
954         }
955     } else {
956         /* InterfacesAdded signal is probably on it's way, device_info_valid is kept as 0. */
957         pa_log_warn("SetConfiguration() received for unknown device %s", dev_path);
958         d = device_create(y, dev_path);
959     }
960
961     if (d->transports[p] != NULL) {
962         pa_log_error("Cannot configure transport %s because profile %s is already used", path, pa_bluetooth_profile_to_string(p));
963         goto fail2;
964     }
965
966     sender = dbus_message_get_sender(m);
967
968     pa_assert_se(r = dbus_message_new_method_return(m));
969     pa_assert_se(dbus_connection_send(pa_dbus_connection_get(y->connection), r, NULL));
970     dbus_message_unref(r);
971
972     d->transports[p] = t = pa_bluetooth_transport_new(d, sender, path, p, config, size);
973     t->acquire = bluez5_transport_acquire_cb;
974     t->release = bluez5_transport_release_cb;
975     pa_bluetooth_transport_put(t);
976
977     pa_log_debug("Transport %s available for profile %s", t->path, pa_bluetooth_profile_to_string(t->profile));
978
979     return NULL;
980
981 fail:
982     pa_log_error("Endpoint SetConfiguration(): invalid arguments");
983
984 fail2:
985     pa_assert_se(r = dbus_message_new_error(m, "org.bluez.Error.InvalidArguments", "Unable to set configuration"));
986     return r;
987 }
988
989 static DBusMessage *endpoint_select_configuration(DBusConnection *conn, DBusMessage *m, void *userdata) {
990     pa_bluetooth_discovery *y = userdata;
991     a2dp_sbc_t *cap, config;
992     uint8_t *pconf = (uint8_t *) &config;
993     int i, size;
994     DBusMessage *r;
995     DBusError err;
996
997     static const struct {
998         uint32_t rate;
999         uint8_t cap;
1000     } freq_table[] = {
1001         { 16000U, SBC_SAMPLING_FREQ_16000 },
1002         { 32000U, SBC_SAMPLING_FREQ_32000 },
1003         { 44100U, SBC_SAMPLING_FREQ_44100 },
1004         { 48000U, SBC_SAMPLING_FREQ_48000 }
1005     };
1006
1007     dbus_error_init(&err);
1008
1009     if (!dbus_message_get_args(m, &err, DBUS_TYPE_ARRAY, DBUS_TYPE_BYTE, &cap, &size, DBUS_TYPE_INVALID)) {
1010         pa_log_error("Endpoint SelectConfiguration(): %s", err.message);
1011         dbus_error_free(&err);
1012         goto fail;
1013     }
1014
1015     if (size != sizeof(config)) {
1016         pa_log_error("Capabilities array has invalid size");
1017         goto fail;
1018     }
1019
1020     pa_zero(config);
1021
1022     /* Find the lowest freq that is at least as high as the requested sampling rate */
1023     for (i = 0; (unsigned) i < PA_ELEMENTSOF(freq_table); i++)
1024         if (freq_table[i].rate >= y->core->default_sample_spec.rate && (cap->frequency & freq_table[i].cap)) {
1025             config.frequency = freq_table[i].cap;
1026             break;
1027         }
1028
1029     if ((unsigned) i == PA_ELEMENTSOF(freq_table)) {
1030         for (--i; i >= 0; i--) {
1031             if (cap->frequency & freq_table[i].cap) {
1032                 config.frequency = freq_table[i].cap;
1033                 break;
1034             }
1035         }
1036
1037         if (i < 0) {
1038             pa_log_error("Not suitable sample rate");
1039             goto fail;
1040         }
1041     }
1042
1043     pa_assert((unsigned) i < PA_ELEMENTSOF(freq_table));
1044
1045     if (y->core->default_sample_spec.channels <= 1) {
1046         if (cap->channel_mode & SBC_CHANNEL_MODE_MONO)
1047             config.channel_mode = SBC_CHANNEL_MODE_MONO;
1048         else if (cap->channel_mode & SBC_CHANNEL_MODE_JOINT_STEREO)
1049             config.channel_mode = SBC_CHANNEL_MODE_JOINT_STEREO;
1050         else if (cap->channel_mode & SBC_CHANNEL_MODE_STEREO)
1051             config.channel_mode = SBC_CHANNEL_MODE_STEREO;
1052         else if (cap->channel_mode & SBC_CHANNEL_MODE_DUAL_CHANNEL)
1053             config.channel_mode = SBC_CHANNEL_MODE_DUAL_CHANNEL;
1054         else {
1055             pa_log_error("No supported channel modes");
1056             goto fail;
1057         }
1058     }
1059
1060     if (y->core->default_sample_spec.channels >= 2) {
1061         if (cap->channel_mode & SBC_CHANNEL_MODE_JOINT_STEREO)
1062             config.channel_mode = SBC_CHANNEL_MODE_JOINT_STEREO;
1063         else if (cap->channel_mode & SBC_CHANNEL_MODE_STEREO)
1064             config.channel_mode = SBC_CHANNEL_MODE_STEREO;
1065         else if (cap->channel_mode & SBC_CHANNEL_MODE_DUAL_CHANNEL)
1066             config.channel_mode = SBC_CHANNEL_MODE_DUAL_CHANNEL;
1067         else if (cap->channel_mode & SBC_CHANNEL_MODE_MONO)
1068             config.channel_mode = SBC_CHANNEL_MODE_MONO;
1069         else {
1070             pa_log_error("No supported channel modes");
1071             goto fail;
1072         }
1073     }
1074
1075     if (cap->block_length & SBC_BLOCK_LENGTH_16)
1076         config.block_length = SBC_BLOCK_LENGTH_16;
1077     else if (cap->block_length & SBC_BLOCK_LENGTH_12)
1078         config.block_length = SBC_BLOCK_LENGTH_12;
1079     else if (cap->block_length & SBC_BLOCK_LENGTH_8)
1080         config.block_length = SBC_BLOCK_LENGTH_8;
1081     else if (cap->block_length & SBC_BLOCK_LENGTH_4)
1082         config.block_length = SBC_BLOCK_LENGTH_4;
1083     else {
1084         pa_log_error("No supported block lengths");
1085         goto fail;
1086     }
1087
1088     if (cap->subbands & SBC_SUBBANDS_8)
1089         config.subbands = SBC_SUBBANDS_8;
1090     else if (cap->subbands & SBC_SUBBANDS_4)
1091         config.subbands = SBC_SUBBANDS_4;
1092     else {
1093         pa_log_error("No supported subbands");
1094         goto fail;
1095     }
1096
1097     if (cap->allocation_method & SBC_ALLOCATION_LOUDNESS)
1098         config.allocation_method = SBC_ALLOCATION_LOUDNESS;
1099     else if (cap->allocation_method & SBC_ALLOCATION_SNR)
1100         config.allocation_method = SBC_ALLOCATION_SNR;
1101
1102     config.min_bitpool = (uint8_t) PA_MAX(MIN_BITPOOL, cap->min_bitpool);
1103     config.max_bitpool = (uint8_t) PA_MIN(a2dp_default_bitpool(config.frequency, config.channel_mode), cap->max_bitpool);
1104
1105     if (config.min_bitpool > config.max_bitpool)
1106         goto fail;
1107
1108     pa_assert_se(r = dbus_message_new_method_return(m));
1109     pa_assert_se(dbus_message_append_args(r, DBUS_TYPE_ARRAY, DBUS_TYPE_BYTE, &pconf, size, DBUS_TYPE_INVALID));
1110
1111     return r;
1112
1113 fail:
1114     pa_assert_se(r = dbus_message_new_error(m, "org.bluez.Error.InvalidArguments", "Unable to select configuration"));
1115     return r;
1116 }
1117
1118 static DBusMessage *endpoint_clear_configuration(DBusConnection *conn, DBusMessage *m, void *userdata) {
1119     pa_bluetooth_discovery *y = userdata;
1120     pa_bluetooth_transport *t;
1121     DBusMessage *r;
1122     DBusError err;
1123     const char *path;
1124
1125     dbus_error_init(&err);
1126
1127     if (!dbus_message_get_args(m, &err, DBUS_TYPE_OBJECT_PATH, &path, DBUS_TYPE_INVALID)) {
1128         pa_log_error("Endpoint ClearConfiguration(): %s", err.message);
1129         dbus_error_free(&err);
1130         goto fail;
1131     }
1132
1133     if ((t = pa_hashmap_get(y->transports, path))) {
1134         pa_log_debug("Clearing transport %s profile %s", t->path, pa_bluetooth_profile_to_string(t->profile));
1135         transport_state_changed(t, PA_BLUETOOTH_TRANSPORT_STATE_DISCONNECTED);
1136         pa_bluetooth_transport_free(t);
1137     }
1138
1139     pa_assert_se(r = dbus_message_new_method_return(m));
1140
1141     return r;
1142
1143 fail:
1144     pa_assert_se(r = dbus_message_new_error(m, "org.bluez.Error.InvalidArguments", "Unable to clear configuration"));
1145     return r;
1146 }
1147
1148 static DBusMessage *endpoint_release(DBusConnection *conn, DBusMessage *m, void *userdata) {
1149     DBusMessage *r;
1150
1151     pa_assert_se(r = dbus_message_new_error(m, BLUEZ_MEDIA_ENDPOINT_INTERFACE ".Error.NotImplemented",
1152                                             "Method not implemented"));
1153
1154     return r;
1155 }
1156
1157 static DBusHandlerResult endpoint_handler(DBusConnection *c, DBusMessage *m, void *userdata) {
1158     struct pa_bluetooth_discovery *y = userdata;
1159     DBusMessage *r = NULL;
1160     const char *path, *interface, *member;
1161
1162     pa_assert(y);
1163
1164     path = dbus_message_get_path(m);
1165     interface = dbus_message_get_interface(m);
1166     member = dbus_message_get_member(m);
1167
1168     pa_log_debug("dbus: path=%s, interface=%s, member=%s", path, interface, member);
1169
1170     if (!pa_streq(path, A2DP_SOURCE_ENDPOINT) && !pa_streq(path, A2DP_SINK_ENDPOINT))
1171         return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
1172
1173     if (dbus_message_is_method_call(m, "org.freedesktop.DBus.Introspectable", "Introspect")) {
1174         const char *xml = ENDPOINT_INTROSPECT_XML;
1175
1176         pa_assert_se(r = dbus_message_new_method_return(m));
1177         pa_assert_se(dbus_message_append_args(r, DBUS_TYPE_STRING, &xml, DBUS_TYPE_INVALID));
1178
1179     } else if (dbus_message_is_method_call(m, BLUEZ_MEDIA_ENDPOINT_INTERFACE, "SetConfiguration"))
1180         r = endpoint_set_configuration(c, m, userdata);
1181     else if (dbus_message_is_method_call(m, BLUEZ_MEDIA_ENDPOINT_INTERFACE, "SelectConfiguration"))
1182         r = endpoint_select_configuration(c, m, userdata);
1183     else if (dbus_message_is_method_call(m, BLUEZ_MEDIA_ENDPOINT_INTERFACE, "ClearConfiguration"))
1184         r = endpoint_clear_configuration(c, m, userdata);
1185     else if (dbus_message_is_method_call(m, BLUEZ_MEDIA_ENDPOINT_INTERFACE, "Release"))
1186         r = endpoint_release(c, m, userdata);
1187     else
1188         return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
1189
1190     if (r) {
1191         pa_assert_se(dbus_connection_send(pa_dbus_connection_get(y->connection), r, NULL));
1192         dbus_message_unref(r);
1193     }
1194
1195     return DBUS_HANDLER_RESULT_HANDLED;
1196 }
1197
1198 static void endpoint_init(pa_bluetooth_discovery *y, pa_bluetooth_profile_t profile) {
1199     static const DBusObjectPathVTable vtable_endpoint = {
1200         .message_function = endpoint_handler,
1201     };
1202
1203     pa_assert(y);
1204
1205     switch(profile) {
1206         case PA_BLUETOOTH_PROFILE_A2DP_SINK:
1207             pa_assert_se(dbus_connection_register_object_path(pa_dbus_connection_get(y->connection), A2DP_SOURCE_ENDPOINT,
1208                                                               &vtable_endpoint, y));
1209             break;
1210         case PA_BLUETOOTH_PROFILE_A2DP_SOURCE:
1211             pa_assert_se(dbus_connection_register_object_path(pa_dbus_connection_get(y->connection), A2DP_SINK_ENDPOINT,
1212                                                               &vtable_endpoint, y));
1213             break;
1214         default:
1215             pa_assert_not_reached();
1216             break;
1217     }
1218 }
1219
1220 static void endpoint_done(pa_bluetooth_discovery *y, pa_bluetooth_profile_t profile) {
1221     pa_assert(y);
1222
1223     switch(profile) {
1224         case PA_BLUETOOTH_PROFILE_A2DP_SINK:
1225             dbus_connection_unregister_object_path(pa_dbus_connection_get(y->connection), A2DP_SOURCE_ENDPOINT);
1226             break;
1227         case PA_BLUETOOTH_PROFILE_A2DP_SOURCE:
1228             dbus_connection_unregister_object_path(pa_dbus_connection_get(y->connection), A2DP_SINK_ENDPOINT);
1229             break;
1230         default:
1231             pa_assert_not_reached();
1232             break;
1233     }
1234 }
1235
1236 pa_bluetooth_discovery* pa_bluetooth_discovery_get(pa_core *c) {
1237     pa_bluetooth_discovery *y;
1238     DBusError err;
1239     DBusConnection *conn;
1240     unsigned i;
1241
1242     if ((y = pa_shared_get(c, "bluetooth-discovery")))
1243         return pa_bluetooth_discovery_ref(y);
1244
1245     y = pa_xnew0(pa_bluetooth_discovery, 1);
1246     PA_REFCNT_INIT(y);
1247     y->core = c;
1248     y->adapters = pa_hashmap_new(pa_idxset_string_hash_func, pa_idxset_string_compare_func);
1249     y->devices = pa_hashmap_new(pa_idxset_string_hash_func, pa_idxset_string_compare_func);
1250     y->transports = pa_hashmap_new(pa_idxset_string_hash_func, pa_idxset_string_compare_func);
1251     PA_LLIST_HEAD_INIT(pa_dbus_pending, y->pending);
1252
1253     for (i = 0; i < PA_BLUETOOTH_HOOK_MAX; i++)
1254         pa_hook_init(&y->hooks[i], y);
1255
1256     pa_shared_set(c, "bluetooth-discovery", y);
1257
1258     dbus_error_init(&err);
1259
1260     if (!(y->connection = pa_dbus_bus_get(y->core, DBUS_BUS_SYSTEM, &err))) {
1261         pa_log_error("Failed to get D-Bus connection: %s", err.message);
1262         goto fail;
1263     }
1264
1265     conn = pa_dbus_connection_get(y->connection);
1266
1267     /* dynamic detection of bluetooth audio devices */
1268     if (!dbus_connection_add_filter(conn, filter_cb, y, NULL)) {
1269         pa_log_error("Failed to add filter function");
1270         goto fail;
1271     }
1272     y->filter_added = true;
1273
1274     if (pa_dbus_add_matches(conn, &err,
1275             "type='signal',sender='org.freedesktop.DBus',interface='org.freedesktop.DBus',member='NameOwnerChanged'"
1276             ",arg0='" BLUEZ_SERVICE "'",
1277             "type='signal',sender='" BLUEZ_SERVICE "',interface='org.freedesktop.DBus.ObjectManager',member='InterfacesAdded'",
1278             "type='signal',sender='" BLUEZ_SERVICE "',interface='org.freedesktop.DBus.ObjectManager',"
1279             "member='InterfacesRemoved'",
1280             NULL) < 0) {
1281         pa_log_error("Failed to add D-Bus matches: %s", err.message);
1282         goto fail;
1283     }
1284     y->matches_added = true;
1285
1286     endpoint_init(y, PA_BLUETOOTH_PROFILE_A2DP_SINK);
1287     endpoint_init(y, PA_BLUETOOTH_PROFILE_A2DP_SOURCE);
1288
1289     get_managed_objects(y);
1290
1291     return y;
1292
1293 fail:
1294     pa_bluetooth_discovery_unref(y);
1295     dbus_error_free(&err);
1296
1297     return NULL;
1298 }
1299
1300 pa_bluetooth_discovery* pa_bluetooth_discovery_ref(pa_bluetooth_discovery *y) {
1301     pa_assert(y);
1302     pa_assert(PA_REFCNT_VALUE(y) > 0);
1303
1304     PA_REFCNT_INC(y);
1305
1306     return y;
1307 }
1308
1309 void pa_bluetooth_discovery_unref(pa_bluetooth_discovery *y) {
1310     pa_assert(y);
1311     pa_assert(PA_REFCNT_VALUE(y) > 0);
1312
1313     if (PA_REFCNT_DEC(y) > 0)
1314         return;
1315
1316     pa_dbus_free_pending_list(&y->pending);
1317
1318     if (y->devices) {
1319         device_remove_all(y);
1320         pa_hashmap_free(y->devices);
1321     }
1322
1323     if (y->adapters) {
1324         adapter_remove_all(y);
1325         pa_hashmap_free(y->adapters);
1326     }
1327
1328     if (y->transports) {
1329         pa_assert(pa_hashmap_isempty(y->transports));
1330         pa_hashmap_free(y->transports);
1331     }
1332
1333     if (y->connection) {
1334
1335         if (y->matches_added)
1336             pa_dbus_remove_matches(pa_dbus_connection_get(y->connection),
1337                 "type='signal',sender='org.freedesktop.DBus',interface='org.freedesktop.DBus',member='NameOwnerChanged',"
1338                 "arg0='" BLUEZ_SERVICE "'",
1339                 "type='signal',sender='" BLUEZ_SERVICE "',interface='org.freedesktop.DBus.ObjectManager',"
1340                 "member='InterfacesAdded'",
1341                 "type='signal',sender='" BLUEZ_SERVICE "',interface='org.freedesktop.DBus.ObjectManager',"
1342                 "member='InterfacesRemoved'",
1343                 NULL);
1344
1345         if (y->filter_added)
1346             dbus_connection_remove_filter(pa_dbus_connection_get(y->connection), filter_cb, y);
1347
1348         endpoint_done(y, PA_BLUETOOTH_PROFILE_A2DP_SINK);
1349         endpoint_done(y, PA_BLUETOOTH_PROFILE_A2DP_SOURCE);
1350
1351         pa_dbus_connection_unref(y->connection);
1352     }
1353
1354     pa_shared_remove(y->core, "bluetooth-discovery");
1355     pa_xfree(y);
1356 }