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1 /*
2  * Copyright 2018 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include "connection_handler.h"
18 
19 #include <base/bind.h>
20 #include <base/logging.h>
21 
22 #include <map>
23 
24 #include "avrc_defs.h"
25 #include "avrcp_message_converter.h"
26 #include "packet/avrcp/avrcp_packet.h"
27 // TODO (apanicke): Remove dependency on this header once we cleanup feature
28 // handling.
29 #include "bta/include/bta_av_api.h"
30 #include "device/include/interop.h"
31 #include "osi/include/allocator.h"
32 #include "osi/include/properties.h"
33 #include "stack/include/bt_hdr.h"
34 #include "types/raw_address.h"
35 
36 namespace bluetooth {
37 namespace avrcp {
38 
39 ConnectionHandler* ConnectionHandler::instance_ = nullptr;
40 
Get()41 ConnectionHandler* ConnectionHandler::Get() {
42   CHECK(instance_);
43 
44   return instance_;
45 }
46 
IsAbsoluteVolumeEnabled(const RawAddress * bdaddr)47 bool IsAbsoluteVolumeEnabled(const RawAddress* bdaddr) {
48   char volume_disabled[PROPERTY_VALUE_MAX] = {0};
49   osi_property_get("persist.bluetooth.disableabsvol", volume_disabled, "false");
50   if (strncmp(volume_disabled, "true", 4) == 0) {
51     LOG(INFO) << "Absolute volume disabled by property";
52     return false;
53   }
54   if (interop_match_addr(INTEROP_DISABLE_ABSOLUTE_VOLUME, bdaddr)) {
55     LOG(INFO) << "Absolute volume disabled by IOP table";
56     return false;
57   }
58   return true;
59 }
60 
Initialize(const ConnectionCallback & callback,AvrcpInterface * avrcp,SdpInterface * sdp,VolumeInterface * vol)61 bool ConnectionHandler::Initialize(const ConnectionCallback& callback,
62                                    AvrcpInterface* avrcp, SdpInterface* sdp,
63                                    VolumeInterface* vol) {
64   CHECK(instance_ == nullptr);
65   CHECK(avrcp != nullptr);
66   CHECK(sdp != nullptr);
67 
68   // TODO (apanicke): When transitioning to using this service, implement
69   // SDP Initialization for AVRCP Here.
70   instance_ = new ConnectionHandler();
71   instance_->connection_cb_ = callback;
72   instance_->avrc_ = avrcp;
73   instance_->sdp_ = sdp;
74   instance_->vol_ = vol;
75 
76   // Set up the AVRCP acceptor connection
77   if (!instance_->AvrcpConnect(false, RawAddress::kAny)) {
78     instance_->CleanUp();
79     return false;
80   }
81 
82   return true;
83 }
84 
CleanUp()85 bool ConnectionHandler::CleanUp() {
86   CHECK(instance_ != nullptr);
87 
88   // TODO (apanicke): Cleanup the SDP Entries here
89   for (auto entry = instance_->device_map_.begin();
90        entry != instance_->device_map_.end();) {
91     auto curr = entry;
92     entry++;
93     curr->second->DeviceDisconnected();
94     instance_->avrc_->Close(curr->first);
95   }
96   instance_->device_map_.clear();
97   instance_->feature_map_.clear();
98 
99   instance_->weak_ptr_factory_.InvalidateWeakPtrs();
100 
101   delete instance_;
102   instance_ = nullptr;
103 
104   return true;
105 }
106 
InitForTesting(ConnectionHandler * handler)107 void ConnectionHandler::InitForTesting(ConnectionHandler* handler) {
108   CHECK(instance_ == nullptr);
109   instance_ = handler;
110 }
111 
ConnectDevice(const RawAddress & bdaddr)112 bool ConnectionHandler::ConnectDevice(const RawAddress& bdaddr) {
113   LOG(INFO) << "Attempting to connect to device " << bdaddr;
114 
115   for (const auto& pair : device_map_) {
116     if (bdaddr == pair.second->GetAddress()) {
117       LOG(WARNING) << "Already connected to device with address " << bdaddr;
118       return false;
119     }
120   }
121 
122   auto connection_lambda = [](ConnectionHandler* instance_,
123                               const RawAddress& bdaddr, uint16_t status,
124                               uint16_t version, uint16_t features) {
125     LOG(INFO) << __PRETTY_FUNCTION__
126               << " SDP Completed features=" << loghex(features);
127     if (status != AVRC_SUCCESS || !(features & BTA_AV_FEAT_RCCT)) {
128       LOG(ERROR) << "Failed to do SDP: status=" << loghex(status)
129                  << " features=" << loghex(features)
130                  << " supports controller: " << (features & BTA_AV_FEAT_RCCT);
131       instance_->connection_cb_.Run(std::shared_ptr<Device>());
132     }
133 
134     instance_->feature_map_.emplace(bdaddr, features);
135     instance_->AvrcpConnect(true, bdaddr);
136     return;
137   };
138 
139   return SdpLookup(bdaddr, base::Bind(connection_lambda, this, bdaddr), false);
140 }
141 
DisconnectDevice(const RawAddress & bdaddr)142 bool ConnectionHandler::DisconnectDevice(const RawAddress& bdaddr) {
143   for (auto it = device_map_.begin(); it != device_map_.end(); it++) {
144     if (bdaddr == it->second->GetAddress()) {
145       uint8_t handle = it->first;
146       return avrc_->Close(handle) == AVRC_SUCCESS;
147     }
148   }
149 
150   return false;
151 }
152 
SetBipClientStatus(const RawAddress & bdaddr,bool connected)153 void ConnectionHandler::SetBipClientStatus(const RawAddress& bdaddr,
154                                            bool connected) {
155   for (auto it = device_map_.begin(); it != device_map_.end(); it++) {
156     if (bdaddr == it->second->GetAddress()) {
157       it->second->SetBipClientStatus(connected);
158       return;
159     }
160   }
161 }
162 
GetListOfDevices() const163 std::vector<std::shared_ptr<Device>> ConnectionHandler::GetListOfDevices()
164     const {
165   std::vector<std::shared_ptr<Device>> list;
166   for (const auto& device : device_map_) {
167     list.push_back(device.second);
168   }
169   return list;
170 }
171 
SdpLookup(const RawAddress & bdaddr,SdpCallback cb,bool retry)172 bool ConnectionHandler::SdpLookup(const RawAddress& bdaddr, SdpCallback cb,
173                                   bool retry) {
174   LOG(INFO) << __PRETTY_FUNCTION__;
175 
176   tAVRC_SDP_DB_PARAMS db_params;
177   // TODO (apanicke): This needs to be replaced with smarter memory management.
178   tSDP_DISCOVERY_DB* disc_db =
179       (tSDP_DISCOVERY_DB*)osi_malloc(BT_DEFAULT_BUFFER_SIZE);
180   uint16_t attr_list[] = {ATTR_ID_SERVICE_CLASS_ID_LIST,
181                           ATTR_ID_BT_PROFILE_DESC_LIST,
182                           ATTR_ID_SUPPORTED_FEATURES};
183 
184   db_params.db_len =
185       BT_DEFAULT_BUFFER_SIZE;  // Some magic number found in the AVRCP code
186   db_params.num_attr = sizeof(attr_list) / sizeof(attr_list[0]);
187   db_params.p_db = disc_db;
188   db_params.p_attrs = attr_list;
189 
190   return avrc_->FindService(UUID_SERVCLASS_AV_REMOTE_CONTROL, bdaddr,
191                             &db_params,
192                             base::Bind(&ConnectionHandler::SdpCb,
193                                        weak_ptr_factory_.GetWeakPtr(), bdaddr,
194                                        cb, disc_db, retry)) == AVRC_SUCCESS;
195 }
196 
AvrcpConnect(bool initiator,const RawAddress & bdaddr)197 bool ConnectionHandler::AvrcpConnect(bool initiator, const RawAddress& bdaddr) {
198   LOG(INFO) << "Connect to device " << bdaddr.ToString();
199 
200   tAVRC_CONN_CB open_cb;
201   if (initiator) {
202     open_cb.ctrl_cback = base::Bind(&ConnectionHandler::InitiatorControlCb,
203                                     weak_ptr_factory_.GetWeakPtr());
204   } else {
205     open_cb.ctrl_cback = base::Bind(&ConnectionHandler::AcceptorControlCb,
206                                     weak_ptr_factory_.GetWeakPtr());
207   }
208   open_cb.msg_cback =
209       base::Bind(&ConnectionHandler::MessageCb, weak_ptr_factory_.GetWeakPtr());
210   open_cb.company_id = AVRC_CO_GOOGLE;
211   open_cb.conn = initiator ? AVRC_CONN_INT
212                            : AVRC_CONN_ACP;  // 0 if initiator, 1 if acceptor
213   // TODO (apanicke): We shouldn't need RCCT to do absolute volume. The current
214   // AVRC_API requires it though.
215   open_cb.control = BTA_AV_FEAT_RCTG | BTA_AV_FEAT_RCCT | BTA_AV_FEAT_METADATA
216                     | AVRC_CT_PASSIVE;
217 
218   uint8_t handle = 0;
219   uint16_t status = avrc_->Open(&handle, &open_cb, bdaddr);
220   LOG(INFO) << __PRETTY_FUNCTION__ << ": handle=" << loghex(handle)
221             << " status= " << loghex(status);
222   return status == AVRC_SUCCESS;
223 }
224 
InitiatorControlCb(uint8_t handle,uint8_t event,uint16_t result,const RawAddress * peer_addr)225 void ConnectionHandler::InitiatorControlCb(uint8_t handle, uint8_t event,
226                                            uint16_t result,
227                                            const RawAddress* peer_addr) {
228   DCHECK(!connection_cb_.is_null());
229 
230   LOG(INFO) << __PRETTY_FUNCTION__ << ": handle=" << loghex(handle)
231             << " result=" << loghex(result)
232             << " addr=" << (peer_addr ? peer_addr->ToString() : "none");
233 
234   switch (event) {
235     case AVRC_OPEN_IND_EVT: {
236       LOG(INFO) << __PRETTY_FUNCTION__ << ": Connection Opened Event";
237 
238       const auto& feature_iter = feature_map_.find(*peer_addr);
239       if (feature_iter == feature_map_.end()) {
240         LOG(ERROR) << "Features do not exist even though SDP should have been "
241                       "done first";
242         return;
243       }
244 
245       bool supports_browsing = feature_iter->second & BTA_AV_FEAT_BROWSE;
246 
247       if (supports_browsing) {
248         avrc_->OpenBrowse(handle, AVCT_INT);
249       }
250 
251       // TODO (apanicke): Implement a system to cache SDP entries. For most
252       // devices SDP is completed after the device connects AVRCP so that
253       // information isn't very useful when trying to control our
254       // capabilities. For now always use AVRCP 1.6.
255       auto&& callback = base::Bind(&ConnectionHandler::SendMessage,
256                                    base::Unretained(this), handle);
257       auto&& ctrl_mtu = avrc_->GetPeerMtu(handle) - AVCT_HDR_LEN;
258       auto&& browse_mtu = avrc_->GetBrowseMtu(handle) - AVCT_HDR_LEN;
259       std::shared_ptr<Device> newDevice = std::make_shared<Device>(
260           *peer_addr, !supports_browsing, callback, ctrl_mtu, browse_mtu);
261 
262       device_map_[handle] = newDevice;
263       // TODO (apanicke): Create the device with all of the interfaces it
264       // needs. Return the new device where the service will register the
265       // interfaces it needs.
266       connection_cb_.Run(newDevice);
267 
268       if (feature_iter->second & BTA_AV_FEAT_ADV_CTRL) {
269         newDevice->RegisterVolumeChanged();
270       } else if (instance_->vol_ != nullptr) {
271         instance_->vol_->DeviceConnected(newDevice->GetAddress());
272       }
273 
274     } break;
275 
276     case AVRC_CLOSE_IND_EVT: {
277       LOG(INFO) << __PRETTY_FUNCTION__ << ": Connection Closed Event";
278 
279       if (device_map_.find(handle) == device_map_.end()) {
280         LOG(WARNING)
281             << "Connection Close received from device that doesn't exist";
282         return;
283       }
284       avrc_->Close(handle);
285       feature_map_.erase(device_map_[handle]->GetAddress());
286       device_map_[handle]->DeviceDisconnected();
287       device_map_.erase(handle);
288     } break;
289 
290     case AVRC_BROWSE_OPEN_IND_EVT: {
291       LOG(INFO) << __PRETTY_FUNCTION__ << ": Browse Open Event";
292       // NOTE (apanicke): We don't need to explicitly handle this message
293       // since the AVCTP Layer will still send us browsing messages
294       // regardless. It would be useful to note this though for future
295       // compatibility issues.
296       if (device_map_.find(handle) == device_map_.end()) {
297         LOG(WARNING) << "Browse Opened received from device that doesn't exist";
298         return;
299       }
300 
301       auto browse_mtu = avrc_->GetBrowseMtu(handle) - AVCT_HDR_LEN;
302       device_map_[handle]->SetBrowseMtu(browse_mtu);
303     } break;
304     case AVRC_BROWSE_CLOSE_IND_EVT:
305       LOG(INFO) << __PRETTY_FUNCTION__ << ": Browse Close Event";
306       break;
307     default:
308       LOG(ERROR) << "Unknown AVRCP Control event";
309       break;
310   }
311 }
312 
AcceptorControlCb(uint8_t handle,uint8_t event,uint16_t result,const RawAddress * peer_addr)313 void ConnectionHandler::AcceptorControlCb(uint8_t handle, uint8_t event,
314                                           uint16_t result,
315                                           const RawAddress* peer_addr) {
316   DCHECK(!connection_cb_.is_null());
317 
318   LOG(INFO) << __PRETTY_FUNCTION__ << ": handle=" << loghex(handle)
319             << " result=" << loghex(result)
320             << " addr=" << (peer_addr ? peer_addr->ToString() : "none");
321 
322   switch (event) {
323     case AVRC_OPEN_IND_EVT: {
324       LOG(INFO) << __PRETTY_FUNCTION__ << ": Connection Opened Event";
325 
326       auto&& callback = base::Bind(&ConnectionHandler::SendMessage,
327                                    weak_ptr_factory_.GetWeakPtr(), handle);
328       auto&& ctrl_mtu = avrc_->GetPeerMtu(handle) - AVCT_HDR_LEN;
329       auto&& browse_mtu = avrc_->GetBrowseMtu(handle) - AVCT_HDR_LEN;
330       std::shared_ptr<Device> newDevice = std::make_shared<Device>(
331           *peer_addr, false, callback, ctrl_mtu, browse_mtu);
332 
333       device_map_[handle] = newDevice;
334       connection_cb_.Run(newDevice);
335 
336       LOG(INFO) << __PRETTY_FUNCTION__
337                 << ": Performing SDP on connected device. address="
338                 << peer_addr->ToString();
339       auto sdp_lambda = [](ConnectionHandler* instance_, uint8_t handle,
340                            uint16_t status, uint16_t version,
341                            uint16_t features) {
342         if (instance_->device_map_.find(handle) ==
343             instance_->device_map_.end()) {
344           LOG(WARNING) << __PRETTY_FUNCTION__
345                        << ": No device found for handle: " << loghex(handle);
346           return;
347         }
348 
349         auto device = instance_->device_map_[handle];
350         instance_->feature_map_.emplace(device->GetAddress(), features);
351 
352         // TODO (apanicke): Report to the VolumeInterface that a new Device is
353         // connected that doesn't support absolute volume.
354         if (features & BTA_AV_FEAT_ADV_CTRL) {
355           device->RegisterVolumeChanged();
356         } else if (instance_->vol_ != nullptr) {
357           instance_->vol_->DeviceConnected(device->GetAddress());
358         }
359       };
360 
361       SdpLookup(*peer_addr, base::Bind(sdp_lambda, this, handle), false);
362 
363       avrc_->OpenBrowse(handle, AVCT_ACP);
364       AvrcpConnect(false, RawAddress::kAny);
365     } break;
366 
367     case AVRC_CLOSE_IND_EVT: {
368       LOG(INFO) << __PRETTY_FUNCTION__ << ": Connection Closed Event";
369 
370       if (device_map_.find(handle) == device_map_.end()) {
371         LOG(WARNING)
372             << "Connection Close received from device that doesn't exist";
373         return;
374       }
375       avrc_->Close(handle);
376       feature_map_.erase(device_map_[handle]->GetAddress());
377       device_map_[handle]->DeviceDisconnected();
378       device_map_.erase(handle);
379     } break;
380 
381     case AVRC_BROWSE_OPEN_IND_EVT: {
382       LOG(INFO) << __PRETTY_FUNCTION__ << ": Browse Open Event";
383       // NOTE (apanicke): We don't need to explicitly handle this message
384       // since the AVCTP Layer will still send us browsing messages
385       // regardless. It would be useful to note this though for future
386       // compatibility issues.
387       if (device_map_.find(handle) == device_map_.end()) {
388         LOG(WARNING) << "Browse Opened received from device that doesn't exist";
389         return;
390       }
391 
392       auto browse_mtu = avrc_->GetBrowseMtu(handle) - AVCT_HDR_LEN;
393       device_map_[handle]->SetBrowseMtu(browse_mtu);
394     } break;
395     case AVRC_BROWSE_CLOSE_IND_EVT:
396       LOG(INFO) << __PRETTY_FUNCTION__ << ": Browse Close Event";
397       break;
398     default:
399       LOG(ERROR) << "Unknown AVRCP Control event";
400       break;
401   }
402 }
403 
MessageCb(uint8_t handle,uint8_t label,uint8_t opcode,tAVRC_MSG * p_msg)404 void ConnectionHandler::MessageCb(uint8_t handle, uint8_t label, uint8_t opcode,
405                                   tAVRC_MSG* p_msg) {
406   if (device_map_.find(handle) == device_map_.end()) {
407     LOG(ERROR) << "Message received for unconnected device: handle="
408                << loghex(handle);
409     return;
410   }
411 
412   auto pkt = AvrcpMessageConverter::Parse(p_msg);
413 
414   if (opcode == AVRC_OP_BROWSE) {
415     VLOG(4) << "Browse Message received on handle " << (unsigned int)handle;
416     device_map_[handle]->BrowseMessageReceived(label, BrowsePacket::Parse(pkt));
417     return;
418   }
419 
420   VLOG(4) << "Message received on handle " << (unsigned int)handle;
421   device_map_[handle]->MessageReceived(label, Packet::Parse(pkt));
422 }
423 
SdpCb(RawAddress bdaddr,SdpCallback cb,tSDP_DISCOVERY_DB * disc_db,bool retry,uint16_t status)424 void ConnectionHandler::SdpCb(RawAddress bdaddr, SdpCallback cb,
425                               tSDP_DISCOVERY_DB* disc_db, bool retry,
426                               uint16_t status) {
427   VLOG(1) << __PRETTY_FUNCTION__ << ": SDP lookup callback received";
428 
429   if (status == SDP_CONN_FAILED and !retry) {
430     LOG(WARNING) << __PRETTY_FUNCTION__ << ": SDP Failure retry again";
431     SdpLookup(bdaddr, cb, true);
432     return;
433   } else if (status != AVRC_SUCCESS) {
434     LOG(ERROR) << __PRETTY_FUNCTION__
435                << ": SDP Failure: status = " << (unsigned int)status;
436     cb.Run(status, 0, 0);
437     osi_free(disc_db);
438     return;
439   }
440 
441   // Check the peer features
442   tSDP_DISC_REC* sdp_record = nullptr;
443   uint16_t peer_features = 0;
444   uint16_t peer_avrcp_version = 0;
445 
446   // TODO (apanicke): Replace this in favor of our own supported features.
447   sdp_record =
448       sdp_->FindServiceInDb(disc_db, UUID_SERVCLASS_AV_REMOTE_CONTROL, nullptr);
449   if (sdp_record != nullptr) {
450     LOG(INFO) << __PRETTY_FUNCTION__ << ": Device " << bdaddr.ToString()
451               << " supports remote control";
452     peer_features |= BTA_AV_FEAT_RCCT;
453 
454     if ((sdp_->FindAttributeInRec(sdp_record, ATTR_ID_BT_PROFILE_DESC_LIST)) !=
455         NULL) {
456       /* get profile version (if failure, version parameter is not updated) */
457       sdp_->FindProfileVersionInRec(
458           sdp_record, UUID_SERVCLASS_AV_REMOTE_CONTROL, &peer_avrcp_version);
459       VLOG(1) << __PRETTY_FUNCTION__ << ": Device " << bdaddr.ToString()
460               << " peer avrcp version=" << loghex(peer_avrcp_version);
461 
462       if (peer_avrcp_version >= AVRC_REV_1_3) {
463         // These are the standard features, another way to check this is to
464         // search for CAT1 on the remote device
465         VLOG(1) << __PRETTY_FUNCTION__ << ": Device " << bdaddr.ToString()
466                 << " supports metadata";
467         peer_features |= (BTA_AV_FEAT_VENDOR | BTA_AV_FEAT_METADATA);
468       }
469       if (peer_avrcp_version >= AVRC_REV_1_4) {
470         /* get supported categories */
471         VLOG(1) << __PRETTY_FUNCTION__ << " Get Supported categories";
472         tSDP_DISC_ATTR* sdp_attribute =
473             sdp_->FindAttributeInRec(sdp_record, ATTR_ID_SUPPORTED_FEATURES);
474         if (sdp_attribute != NULL) {
475           VLOG(1) << __PRETTY_FUNCTION__
476                   << "Get Supported categories SDP ATTRIBUTES != null";
477           uint16_t categories = sdp_attribute->attr_value.v.u16;
478           if (categories & AVRC_SUPF_CT_CAT2) {
479             VLOG(1) << __PRETTY_FUNCTION__ << ": Device " << bdaddr.ToString()
480                     << " supports advanced control";
481             if (IsAbsoluteVolumeEnabled(&bdaddr)) {
482               peer_features |= (BTA_AV_FEAT_ADV_CTRL);
483             }
484           }
485           if (categories & AVRC_SUPF_CT_BROWSE) {
486             VLOG(1) << __PRETTY_FUNCTION__ << ": Device " << bdaddr.ToString()
487                     << " supports browsing";
488             peer_features |= (BTA_AV_FEAT_BROWSE);
489           }
490         }
491       }
492 
493       if (osi_property_get_bool(AVRC_DYNAMIC_AVRCP_ENABLE_PROPERTY, true)) {
494         avrc_->SaveControllerVersion(bdaddr, peer_avrcp_version);
495       }
496     }
497   }
498 
499   sdp_record = sdp_->FindServiceInDb(disc_db, UUID_SERVCLASS_AV_REM_CTRL_TARGET,
500                                      nullptr);
501   if (sdp_record != nullptr) {
502     VLOG(1) << __PRETTY_FUNCTION__ << ": Device " << bdaddr.ToString()
503             << " supports remote control target";
504 
505     uint16_t peer_avrcp_target_version = 0;
506     sdp_->FindProfileVersionInRec(sdp_record, UUID_SERVCLASS_AV_REMOTE_CONTROL,
507                                   &peer_avrcp_target_version);
508     VLOG(1) << __PRETTY_FUNCTION__ << ": Device " << bdaddr.ToString()
509             << " peer avrcp target version="
510             << loghex(peer_avrcp_target_version);
511 
512     if ((sdp_->FindAttributeInRec(sdp_record, ATTR_ID_BT_PROFILE_DESC_LIST)) !=
513         NULL) {
514       if (peer_avrcp_target_version >= AVRC_REV_1_4) {
515         /* get supported categories */
516         VLOG(1) << __PRETTY_FUNCTION__ << " Get Supported categories";
517         tSDP_DISC_ATTR* sdp_attribute =
518             sdp_->FindAttributeInRec(sdp_record, ATTR_ID_SUPPORTED_FEATURES);
519         if (sdp_attribute != NULL) {
520           VLOG(1) << __PRETTY_FUNCTION__
521                   << "Get Supported categories SDP ATTRIBUTES != null";
522           uint16_t categories = sdp_attribute->attr_value.v.u16;
523           if (categories & AVRC_SUPF_CT_CAT2) {
524             VLOG(1) << __PRETTY_FUNCTION__ << ": Device " << bdaddr.ToString()
525                     << " supports advanced control";
526             if (IsAbsoluteVolumeEnabled(&bdaddr)) {
527               peer_features |= (BTA_AV_FEAT_ADV_CTRL);
528             }
529           }
530         }
531       }
532     }
533   }
534 
535   osi_free(disc_db);
536 
537   cb.Run(status, peer_avrcp_version, peer_features);
538 }
539 
SendMessage(uint8_t handle,uint8_t label,bool browse,std::unique_ptr<::bluetooth::PacketBuilder> message)540 void ConnectionHandler::SendMessage(
541     uint8_t handle, uint8_t label, bool browse,
542     std::unique_ptr<::bluetooth::PacketBuilder> message) {
543   std::shared_ptr<::bluetooth::Packet> packet = VectorPacket::Make();
544   message->Serialize(packet);
545 
546   uint8_t ctype = AVRC_RSP_ACCEPT;
547   if (!browse) {
548     ctype =
549         (uint8_t)(::bluetooth::Packet::Specialize<Packet>(packet)->GetCType());
550   }
551 
552   DLOG(INFO) << "SendMessage to handle=" << loghex(handle);
553 
554   BT_HDR* pkt = (BT_HDR*)osi_malloc(BT_DEFAULT_BUFFER_SIZE);
555 
556   pkt->offset = AVCT_MSG_OFFSET;
557   // TODO (apanicke): Update this constant. Currently this is a unique event
558   // used to tell the AVRCP API layer that the data is properly formatted and
559   // doesn't need to be processed. In the future, this is the only place sending
560   // the packet so none of these layer specific fields will be used.
561   pkt->event = 0xFFFF;
562   /* Handle for AVRCP fragment */
563   uint16_t op_code = (uint16_t)(::bluetooth::Packet::Specialize<Packet>(packet)->GetOpcode());
564   if (!browse && (op_code == (uint16_t)(Opcode::VENDOR))) {
565     pkt->event = op_code;
566   }
567 
568   // TODO (apanicke): This layer specific stuff can go away once we move over
569   // to the new service.
570   pkt->layer_specific = AVCT_DATA_CTRL;
571   if (browse) {
572     pkt->layer_specific = AVCT_DATA_BROWSE;
573   }
574 
575   pkt->len = packet->size();
576   uint8_t* p_data = (uint8_t*)(pkt + 1) + pkt->offset;
577   for (auto it = packet->begin(); it != packet->end(); it++) {
578     *p_data++ = *it;
579   }
580 
581   avrc_->MsgReq(handle, label, ctype, pkt);
582 }
583 
584 }  // namespace avrcp
585 }  // namespace bluetooth
586