1 /*
2 * Copyright (C) 2021-2022 Huawei Device Co., Ltd.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15 #ifndef LOG_TAG
16 #define LOG_TAG "bt_fwk_host"
17 #endif
18
19 #include "bluetooth_host.h"
20 #include <memory>
21 #include <mutex>
22 #include <unistd.h>
23 #include <thread>
24 #include "bluetooth_ble_peripheral_observer_stub.h"
25 #include "bluetooth_host_load_callback.h"
26 #include "bluetooth_host_observer_stub.h"
27 #include "bluetooth_host_proxy.h"
28 #include "bluetooth_profile_manager.h"
29 #include "bluetooth_log.h"
30 #include "bluetooth_utils.h"
31 #include "bluetooth_observer_list.h"
32 #include "bluetooth_remote_device_observer_stub.h"
33 #include "bluetooth_resource_manager_observer_stub.h"
34 #include "iservice_registry.h"
35 #include "parameter.h"
36 #include "system_ability_definition.h"
37 #include "bluetooth_switch_module.h"
38 #include "ffrt_inner.h"
39 #include "common_event.h"
40 #include "common_event_data.h"
41 #include "common_event_manager.h"
42
43 using namespace OHOS::EventFwk;
44
45 namespace OHOS {
46 namespace Bluetooth {
47 namespace {
48 constexpr int32_t LOAD_SA_TIMEOUT_MS = 4000;
49 }
50
51 struct BluetoothHost::impl {
52 impl();
53 ~impl();
54
55 bool LoadBluetoothHostService();
56 void LoadSystemAbilitySuccess(const sptr<IRemoteObject> &remoteObject);
57 void LoadSystemAbilityFail();
58 int EnableBluetoothAfterFactoryReset(void);
59
60 // host observer
61 class BluetoothHostObserverImp;
62 sptr<BluetoothHostObserverImp> observerImp_ = nullptr;
63 sptr<BluetoothHostObserverImp> bleObserverImp_ = nullptr;
64
65 // remote device observer
66 class BluetoothRemoteDeviceObserverImp;
67 sptr<BluetoothRemoteDeviceObserverImp> remoteObserverImp_ = nullptr;
68
69 // remote device observer
70 class BluetoothBlePeripheralCallbackImp;
71 sptr<BluetoothBlePeripheralCallbackImp> bleRemoteObserverImp_ = nullptr;
72
73 // bluetooth resource manager observer
74 class BluetoothResourceManagerObserverImp;
75 sptr<BluetoothResourceManagerObserverImp> resourceManagerObserverImp_ = nullptr;
76
77 // user regist observers
78 BluetoothObserverList<BluetoothHostObserver> observers_;
79
80 // user regist remote observers
81 BluetoothObserverList<BluetoothRemoteDeviceObserver> remoteObservers_;
82
83 // user regist resource manager observers
84 BluetoothObserverList<BluetoothResourceManagerObserver> resourceManagerObservers_;
85
86 void SyncRandomAddrToService(void);
87 int ConvertBluetoothStateToBtStateID(BluetoothState state);
88
89 std::mutex proxyMutex_;
90 std::string stagingRealAddr_;
91 std::string stagingRandomAddr_;
92 int32_t profileRegisterId = 0;
93 std::atomic_bool isFactoryReseting_ { false };
94
95 class BluetoothSwitchAction;
96 std::mutex switchModuleMutex_ {}; // used for serial execute enableBluetoothToRestrictMode.
97 std::shared_ptr<BluetoothSwitchModule> switchModule_ { nullptr };
98
99 private:
100 SaManagerStatus saManagerStatus_ = SaManagerStatus::WAIT_NOTIFY;
101 std::condition_variable proxyConVar_;
102 };
103
104 class BluetoothHost::impl::BluetoothHostObserverImp : public BluetoothHostObserverStub {
105 public:
BluetoothHostObserverImp(BluetoothHost::impl & host)106 explicit BluetoothHostObserverImp(BluetoothHost::impl &host) : host_(host){};
~BluetoothHostObserverImp()107 ~BluetoothHostObserverImp() override{};
108
Register(std::shared_ptr<BluetoothHostObserver> & observer)109 void Register(std::shared_ptr<BluetoothHostObserver> &observer)
110 {
111 host_.observers_.Register(observer);
112 }
113
Deregister(std::shared_ptr<BluetoothHostObserver> & observer)114 void Deregister(std::shared_ptr<BluetoothHostObserver> &observer)
115 {
116 host_.observers_.Deregister(observer);
117 }
118
OnStateChanged(int32_t transport,int32_t status)119 void OnStateChanged(int32_t transport, int32_t status) override
120 {
121 if (status == BTStateID::STATE_TURN_ON) {
122 host_.SyncRandomAddrToService();
123 }
124 CHECK_AND_RETURN_LOG(!isNeedInterceptSwitchStatus(transport, status), "No Need transform same status");
125 BluetoothProfileManager::GetInstance().NotifyBluetoothStateChange(transport, status);
126 host_.observers_.ForEach([transport, status](std::shared_ptr<BluetoothHostObserver> observer) {
127 observer->OnStateChanged(transport, status);
128 });
129 }
130
OnBluetoothStateChanged(int32_t state)131 void OnBluetoothStateChanged(int32_t state) override
132 {
133 std::lock_guard<std::mutex> lock(host_.switchModuleMutex_);
134 CHECK_AND_RETURN_LOG(host_.switchModule_, "switchModule is nullptr");
135 if (state == bluetooth::BluetoothSwitchState::STATE_ON) {
136 host_.switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::BLUETOOTH_ON);
137 }
138 if (state == bluetooth::BluetoothSwitchState::STATE_OFF) {
139 host_.switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::BLUETOOTH_OFF);
140 }
141 if (state == bluetooth::BluetoothSwitchState::STATE_HALF) {
142 host_.switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::BLUETOOTH_HALF);
143 }
144 }
145
OnDiscoveryStateChanged(int32_t status)146 void OnDiscoveryStateChanged(int32_t status) override
147 {
148 HILOGD("enter, status: %{public}d", status);
149 host_.observers_.ForEach(
150 [status](std::shared_ptr<BluetoothHostObserver> observer) { observer->OnDiscoveryStateChanged(status); });
151 }
152
OnDiscoveryResult(const BluetoothRawAddress & device,int rssi,const std::string deviceName,int deviceClass)153 void OnDiscoveryResult(
154 const BluetoothRawAddress &device, int rssi, const std::string deviceName, int deviceClass) override
155 {
156 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BREDR);
157 host_.observers_.ForEach([remoteDevice, rssi, deviceName, deviceClass](
158 std::shared_ptr<BluetoothHostObserver> observer) {
159 observer->OnDiscoveryResult(remoteDevice, rssi, deviceName, deviceClass);
160 });
161 }
162
OnPairRequested(const int32_t transport,const BluetoothRawAddress & device)163 void OnPairRequested(const int32_t transport, const BluetoothRawAddress &device) override
164 {
165 HILOGI("enter, transport: %{public}d, device: %{public}s",
166 transport, GET_ENCRYPT_RAW_ADDR(device));
167 BluetoothRemoteDevice remoteDevice(device.GetAddress(), transport);
168 host_.observers_.ForEach([remoteDevice](std::shared_ptr<BluetoothHostObserver> observer) {
169 observer->OnPairRequested(remoteDevice);
170 });
171 }
172
OnPairConfirmed(const int32_t transport,const BluetoothRawAddress & device,int reqType,int number)173 void OnPairConfirmed(const int32_t transport, const BluetoothRawAddress &device, int reqType, int number) override
174 {
175 HILOGI("enter, transport: %{public}d, device: %{public}s, reqType: %{public}d, number: %{public}d",
176 transport, GET_ENCRYPT_RAW_ADDR(device), reqType, number);
177 BluetoothRemoteDevice remoteDevice(device.GetAddress(), transport);
178 host_.observers_.ForEach([remoteDevice, reqType, number](std::shared_ptr<BluetoothHostObserver> observer) {
179 observer->OnPairConfirmed(remoteDevice, reqType, number);
180 });
181 }
182
OnScanModeChanged(int mode)183 void OnScanModeChanged(int mode) override
184 {
185 HILOGI("enter, mode: %{public}d", mode);
186 host_.observers_.ForEach(
187 [mode](std::shared_ptr<BluetoothHostObserver> observer) { observer->OnScanModeChanged(mode); });
188 }
189
OnDeviceNameChanged(const std::string & deviceName)190 void OnDeviceNameChanged(const std::string &deviceName) override
191 {
192 HILOGI("enter, deviceName: %{public}s", deviceName.c_str());
193 host_.observers_.ForEach([deviceName](std::shared_ptr<BluetoothHostObserver> observer) {
194 observer->OnDeviceNameChanged(deviceName);
195 });
196 }
197
OnDeviceAddrChanged(const std::string & address)198 void OnDeviceAddrChanged(const std::string &address) override
199 {
200 HILOGD("enter");
201 host_.observers_.ForEach(
202 [address](std::shared_ptr<BluetoothHostObserver> observer) { observer->OnDeviceAddrChanged(address); });
203 }
204
205 private:
isNeedInterceptSwitchStatus(int32_t transport,int32_t status)206 bool isNeedInterceptSwitchStatus(int32_t transport, int32_t status)
207 {
208 bool isBluetoothSeriviceOn = BluetoothProfileManager::GetInstance().IsBluetoothServiceOn();
209 if (status == BTStateID::STATE_TURN_OFF) {
210 if (transport == BTTransport::ADAPTER_BLE &&
211 preBleState_ == BTStateID::STATE_TURN_OFF && !isBluetoothSeriviceOn) {
212 return true;
213 }
214 if (transport == BTTransport::ADAPTER_BREDR &&
215 preBrState_ == BTStateID::STATE_TURN_OFF && !isBluetoothSeriviceOn) {
216 return true;
217 }
218 }
219 if (transport == BTTransport::ADAPTER_BREDR) {
220 preBrState_ = status;
221 } else {
222 preBleState_ = status;
223 }
224 return false;
225 }
226 BluetoothHost::impl &host_;
227 const int32_t INVALID_STATE = -1;
228 int32_t preBrState_ = INVALID_STATE;
229 int32_t preBleState_ = INVALID_STATE;
230 BLUETOOTH_DISALLOW_COPY_AND_ASSIGN(BluetoothHostObserverImp);
231 };
232
233 class BluetoothHost::impl::BluetoothRemoteDeviceObserverImp : public BluetoothRemoteDeviceObserverstub {
234 public:
BluetoothRemoteDeviceObserverImp(BluetoothHost::impl & host)235 explicit BluetoothRemoteDeviceObserverImp(BluetoothHost::impl &host) : host_(host){};
236 ~BluetoothRemoteDeviceObserverImp() override = default;
237
OnAclStateChanged(const BluetoothRawAddress & device,int32_t state,uint32_t reason)238 void OnAclStateChanged(const BluetoothRawAddress &device, int32_t state, uint32_t reason) override
239 {
240 HILOGD("enter, device: %{public}s, state: %{public}d, reason: %{public}u",
241 GET_ENCRYPT_RAW_ADDR(device), state, reason);
242 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BREDR);
243 host_.remoteObservers_.ForEach(
244 [remoteDevice, state, reason](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
245 observer->OnAclStateChanged(remoteDevice, state, reason);
246 });
247 }
248
OnPairStatusChanged(const int32_t transport,const BluetoothRawAddress & device,int32_t status,int32_t cause)249 void OnPairStatusChanged(const int32_t transport, const BluetoothRawAddress &device,
250 int32_t status, int32_t cause) override
251 {
252 HILOGD("enter, transport: %{public}d, device: %{public}s, status: %{public}d, cause: %{public}d",
253 transport, GET_ENCRYPT_RAW_ADDR(device), status, cause);
254 BluetoothRemoteDevice remoteDevice(device.GetAddress(), transport);
255 host_.remoteObservers_.ForEach(
256 [remoteDevice, status, cause](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
257 observer->OnPairStatusChanged(remoteDevice, status, cause);
258 });
259 }
260
OnRemoteUuidChanged(const BluetoothRawAddress & device,const std::vector<bluetooth::Uuid> uuids)261 void OnRemoteUuidChanged(const BluetoothRawAddress &device, const std::vector<bluetooth::Uuid> uuids) override
262 {
263 HILOGD("enter, device: %{public}s", GET_ENCRYPT_RAW_ADDR(device));
264 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BREDR);
265 host_.remoteObservers_.ForEach(
266 [remoteDevice, uuids](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
267 std::vector<ParcelUuid> parcelUuids;
268 for (auto &uuid : uuids) {
269 ParcelUuid parcelUuid = UUID::ConvertFrom128Bits(uuid.ConvertTo128Bits());
270 parcelUuids.push_back(parcelUuid);
271 }
272 observer->OnRemoteUuidChanged(remoteDevice, parcelUuids);
273 });
274 }
275
OnRemoteNameChanged(const BluetoothRawAddress & device,const std::string deviceName)276 void OnRemoteNameChanged(const BluetoothRawAddress &device, const std::string deviceName) override
277 {
278 HILOGD("enter, device: %{public}s, deviceName: %{public}s",
279 GET_ENCRYPT_RAW_ADDR(device), deviceName.c_str());
280 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BREDR);
281 host_.remoteObservers_.ForEach(
282 [remoteDevice, deviceName](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
283 observer->OnRemoteNameChanged(remoteDevice, deviceName);
284 });
285 }
286
OnRemoteAliasChanged(const BluetoothRawAddress & device,const std::string alias)287 void OnRemoteAliasChanged(const BluetoothRawAddress &device, const std::string alias) override
288 {
289 HILOGI("enter, device: %{public}s, alias: %{public}s",
290 GET_ENCRYPT_RAW_ADDR(device), alias.c_str());
291 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BREDR);
292 host_.remoteObservers_.ForEach(
293 [remoteDevice, alias](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
294 observer->OnRemoteAliasChanged(remoteDevice, alias);
295 });
296 }
297
OnRemoteCodChanged(const BluetoothRawAddress & device,int32_t cod)298 void OnRemoteCodChanged(const BluetoothRawAddress &device, int32_t cod) override
299 {
300 HILOGD("enter, device: %{public}s, cod: %{public}d", GET_ENCRYPT_RAW_ADDR(device), cod);
301 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BREDR);
302 BluetoothDeviceClass deviceClass(cod);
303 host_.remoteObservers_.ForEach(
304 [remoteDevice, deviceClass](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
305 observer->OnRemoteCodChanged(remoteDevice, deviceClass);
306 });
307 }
308
OnRemoteBatteryChanged(const BluetoothRawAddress & device,const BluetoothBatteryInfo & batteryInfo)309 void OnRemoteBatteryChanged(const BluetoothRawAddress &device, const BluetoothBatteryInfo &batteryInfo) override
310 {
311 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BREDR);
312 DeviceBatteryInfo info;
313 info.deviceId_ = device.GetAddress();
314 info.batteryLevel_ = batteryInfo.batteryLevel_;
315 info.leftEarBatteryLevel_ = batteryInfo.leftEarBatteryLevel_;
316 info.leftEarChargeState_ = static_cast<DeviceChargeState>(batteryInfo.leftEarChargeState_);
317 info.rightEarBatteryLevel_ = batteryInfo.rightEarBatteryLevel_;
318 info.rightEarChargeState_ = static_cast<DeviceChargeState>(batteryInfo.rightEarChargeState_);
319 info.boxBatteryLevel_ = batteryInfo.boxBatteryLevel_;
320 info.boxChargeState_ = static_cast<DeviceChargeState>(batteryInfo.boxChargeState_);
321 host_.remoteObservers_.ForEach(
322 [remoteDevice, info](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
323 observer->OnRemoteBatteryChanged(remoteDevice, info);
324 });
325 }
326
OnRemoteDeviceCommonInfoReport(const BluetoothRawAddress & device,const std::vector<uint8_t> & value)327 void OnRemoteDeviceCommonInfoReport(const BluetoothRawAddress &device, const std::vector<uint8_t> &value) override
328 {
329 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BREDR);
330 host_.remoteObservers_.ForEach(
331 [remoteDevice, value](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
332 observer->OnRemoteDeviceCommonInfoReport(remoteDevice, value);
333 });
334 }
335
336 private:
337 BluetoothHost::impl &host_;
338 BLUETOOTH_DISALLOW_COPY_AND_ASSIGN(BluetoothRemoteDeviceObserverImp);
339 };
340
341 class BluetoothHost::impl::BluetoothBlePeripheralCallbackImp : public BluetoothBlePeripheralObserverStub {
342 public:
BluetoothBlePeripheralCallbackImp(BluetoothHost::impl & host)343 explicit BluetoothBlePeripheralCallbackImp(BluetoothHost::impl &host) : host_(host){};
344 ~BluetoothBlePeripheralCallbackImp() override = default;
345
OnAclStateChanged(const BluetoothRawAddress & device,int state,unsigned int reason)346 void OnAclStateChanged(const BluetoothRawAddress &device, int state, unsigned int reason) override
347 {
348 HILOGD("enter, device: %{public}s, state: %{public}d, reason: %{public}u",
349 GET_ENCRYPT_RAW_ADDR(device), state, reason);
350 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BLE);
351 host_.remoteObservers_.ForEach(
352 [remoteDevice, state, reason](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
353 observer->OnAclStateChanged(remoteDevice, state, reason);
354 });
355 }
356
OnPairStatusChanged(const int32_t transport,const BluetoothRawAddress & device,int status,int cause)357 void OnPairStatusChanged(const int32_t transport, const BluetoothRawAddress &device, int status, int cause) override
358 {
359 HILOGI("enter, transport: %{public}d, device: %{public}s, status: %{public}d, cause: %{public}d",
360 transport, GET_ENCRYPT_RAW_ADDR(device), status, cause);
361 BluetoothRemoteDevice remoteDevice(device.GetAddress(), transport);
362 host_.remoteObservers_.ForEach(
363 [remoteDevice, status, cause](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
364 observer->OnPairStatusChanged(remoteDevice, status, cause);
365 });
366 }
367
OnReadRemoteRssiEvent(const BluetoothRawAddress & device,int rssi,int status)368 void OnReadRemoteRssiEvent(const BluetoothRawAddress &device, int rssi, int status) override
369 {
370 HILOGI("enter, device: %{public}s, rssi: %{public}d, status: %{public}d",
371 GET_ENCRYPT_RAW_ADDR(device), rssi, status);
372 BluetoothRemoteDevice remoteDevice(device.GetAddress(), BTTransport::ADAPTER_BLE);
373 host_.remoteObservers_.ForEach(
374 [remoteDevice, rssi, status](std::shared_ptr<BluetoothRemoteDeviceObserver> observer) {
375 observer->OnReadRemoteRssiEvent(remoteDevice, rssi, status);
376 });
377 }
378
379 private:
380 BluetoothHost::impl &host_;
381 BLUETOOTH_DISALLOW_COPY_AND_ASSIGN(BluetoothBlePeripheralCallbackImp);
382 };
383
384 class BluetoothHost::impl::BluetoothResourceManagerObserverImp : public BluetoothResourceManagerObserverStub {
385 public:
BluetoothResourceManagerObserverImp(BluetoothHost::impl & host)386 explicit BluetoothResourceManagerObserverImp(BluetoothHost::impl &host) : host_(host){};
387 ~BluetoothResourceManagerObserverImp() override = default;
388
OnSensingStateChanged(uint8_t eventId,const BluetoothSensingInfo & info)389 void OnSensingStateChanged(uint8_t eventId, const BluetoothSensingInfo &info) override
390 {
391 HILOGD("enter, eventId: %{public}d", eventId);
392 SensingInfo sensingInfo;
393 sensingInfo.addr_ = info.addr_;
394 sensingInfo.uuid_ = info.uuid_;
395 sensingInfo.resourceId_ = info.resourceId_;
396 sensingInfo.pkgName_ = info.pkgName_;
397 sensingInfo.isServer_ = info.isServer_;
398 sensingInfo.interval_ = info.interval_;
399 host_.resourceManagerObservers_.ForEach(
400 [eventId, sensingInfo](std::shared_ptr<BluetoothResourceManagerObserver> observer) {
401 observer->OnSensingStateChanged(eventId, sensingInfo);
402 });
403 }
404
OnBluetoothResourceDecision(uint8_t eventId,const BluetoothSensingInfo & info,uint32_t & result)405 void OnBluetoothResourceDecision(uint8_t eventId, const BluetoothSensingInfo &info, uint32_t &result) override
406 {
407 HILOGD("enter, eventId: %{public}d, result: %{public}d", eventId, result);
408 SensingInfo sensingInfo;
409 sensingInfo.addr_ = info.addr_;
410 sensingInfo.uuid_ = info.uuid_;
411 sensingInfo.resourceId_ = info.resourceId_;
412 sensingInfo.pkgName_ = info.pkgName_;
413 sensingInfo.isServer_ = info.isServer_;
414 sensingInfo.interval_ = info.interval_;
415 host_.resourceManagerObservers_.ForEach(
416 [eventId, sensingInfo, &result](std::shared_ptr<BluetoothResourceManagerObserver> observer) {
417 observer->OnBluetoothResourceDecision(eventId, sensingInfo, result);
418 });
419 }
420
421 private:
422 BluetoothHost::impl &host_;
423 BLUETOOTH_DISALLOW_COPY_AND_ASSIGN(BluetoothResourceManagerObserverImp);
424 };
425
426 class BluetoothHost::impl::BluetoothSwitchAction : public IBluetoothSwitchAction {
427 public:
428 BluetoothSwitchAction() = default;
429 ~BluetoothSwitchAction() override = default;
430
EnableBluetooth(void)431 int EnableBluetooth(void) override
432 {
433 CHECK_AND_RETURN_LOG_RET(!BluetoothHost::GetDefaultHost().IsBtProhibitedByEdm(),
434 BT_ERR_PROHIBITED_BY_EDM, "bluetooth is prohibited !");
435 CHECK_AND_RETURN_LOG_RET(BluetoothHost::GetDefaultHost().pimpl->LoadBluetoothHostService(),
436 BT_ERR_INTERNAL_ERROR, "pimpl is null or load bluetooth service failed.");
437
438 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
439 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_INTERNAL_ERROR, "proxy is nullptr");
440 return proxy->EnableBle();
441 }
442
DisableBluetooth(void)443 int DisableBluetooth(void) override
444 {
445 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
446 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_INTERNAL_ERROR, "proxy is nullptr");
447 return proxy->DisableBt();
448 }
449
EnableBluetoothToRestrictMode(void)450 int EnableBluetoothToRestrictMode(void) override
451 {
452 CHECK_AND_RETURN_LOG_RET(!BluetoothHost::GetDefaultHost().IsBtProhibitedByEdm(),
453 BT_ERR_PROHIBITED_BY_EDM, "bluetooth is prohibited !");
454 CHECK_AND_RETURN_LOG_RET(BluetoothHost::GetDefaultHost().pimpl->LoadBluetoothHostService(),
455 BT_ERR_INTERNAL_ERROR, "pimpl is null or load bluetooth service failed.");
456
457 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
458 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_INTERNAL_ERROR, "proxy is nullptr");
459 return proxy->EnableBluetoothToRestrictMode();
460 }
461 };
462
impl()463 BluetoothHost::impl::impl()
464 {
465 observerImp_ = new BluetoothHostObserverImp(*this);
466 remoteObserverImp_ = new BluetoothRemoteDeviceObserverImp(*this);
467 bleRemoteObserverImp_ = new BluetoothBlePeripheralCallbackImp(*this);
468 bleObserverImp_ = new BluetoothHostObserverImp(*this);
469 resourceManagerObserverImp_ = new BluetoothResourceManagerObserverImp(*this);
470
471 auto switchActionPtr = std::make_unique<BluetoothSwitchAction>();
472 switchModule_ = std::make_shared<BluetoothSwitchModule>(std::move(switchActionPtr));
473
474 profileRegisterId = BluetoothProfileManager::GetInstance().RegisterFunc(BLUETOOTH_HOST,
475 [this](sptr<IRemoteObject> remote) {
476 sptr<IBluetoothHost> proxy = iface_cast<IBluetoothHost>(remote);
477 CHECK_AND_RETURN_LOG(proxy != nullptr, "proxy is nullptr");
478 proxy->RegisterObserver(observerImp_);
479 proxy->RegisterBleAdapterObserver(bleObserverImp_);
480 proxy->RegisterRemoteDeviceObserver(remoteObserverImp_);
481 proxy->RegisterBlePeripheralCallback(bleRemoteObserverImp_);
482 proxy->RegisterBtResourceManagerObserver(resourceManagerObserverImp_);
483 });
484 }
485
~impl()486 BluetoothHost::impl::~impl()
487 {
488 HILOGI("starts");
489 BluetoothProfileManager::GetInstance().DeregisterFunc(profileRegisterId);
490 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
491 CHECK_AND_RETURN_LOG(proxy != nullptr, "proxy is nullptr");
492 proxy->DeregisterObserver(observerImp_);
493 proxy->DeregisterBleAdapterObserver(bleObserverImp_);
494 proxy->DeregisterRemoteDeviceObserver(remoteObserverImp_);
495 proxy->DeregisterBlePeripheralCallback(bleRemoteObserverImp_);
496 proxy->DeregisterBtResourceManagerObserver(resourceManagerObserverImp_);
497 }
498
LoadBluetoothHostService()499 bool BluetoothHost::impl::LoadBluetoothHostService()
500 {
501 std::unique_lock<std::mutex> lock(proxyMutex_);
502 auto samgrProxy = SystemAbilityManagerClient::GetInstance().GetSystemAbilityManager();
503 if (samgrProxy == nullptr) {
504 HILOGE("samgrProxy is nullptr.");
505 return false;
506 }
507 sptr<IRemoteObject> hostRemote = BluetoothProfileManager::GetInstance().GetProfileRemote(BLUETOOTH_HOST);
508 //当蓝牙服务已经起来的时候。这时的hostRemote不为空, 不需要进行后续的从sa拉起蓝牙服务的动作
509 if (hostRemote != nullptr) {
510 return true;
511 }
512
513 sptr<BluetoothHostLoadCallBack> loadCallback = new BluetoothHostLoadCallBack();
514 if (loadCallback == nullptr) {
515 HILOGE("loadCallback is nullptr.");
516 return false;
517 }
518 int32_t ret = samgrProxy->LoadSystemAbility(BLUETOOTH_HOST_SYS_ABILITY_ID, loadCallback);
519 if (ret != ERR_OK) {
520 HILOGE("Failed to load bluetooth systemAbility");
521 return false;
522 }
523 auto waitStatus = proxyConVar_.wait_for(
524 lock, std::chrono::milliseconds(LOAD_SA_TIMEOUT_MS), [this]() {
525 HILOGI("bluetooth_service load systemAbility finished");
526 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
527 return proxy != nullptr || saManagerStatus_ == SaManagerStatus::LOAD_FAIL;
528 });
529 if (!waitStatus) {
530 HILOGE("load bluetooth systemAbility timeout");
531 return false;
532 }
533 if (saManagerStatus_ == SaManagerStatus::LOAD_FAIL) {
534 HILOGE("load bluetooth_service fail");
535 saManagerStatus_ = SaManagerStatus::WAIT_NOTIFY;
536 return false;
537 }
538 saManagerStatus_ = SaManagerStatus::WAIT_NOTIFY;
539 return true;
540 }
541
LoadSystemAbilitySuccess(const sptr<IRemoteObject> & remoteObject)542 void BluetoothHost::impl::LoadSystemAbilitySuccess(const sptr<IRemoteObject> &remoteObject)
543 {
544 HILOGI("LoadSystemAbilitySuccess FinishStart SA");
545 saManagerStatus_ = SaManagerStatus::LOAD_SUCCESS;
546 proxyConVar_.notify_one();
547 }
548
LoadSystemAbilityFail()549 void BluetoothHost::impl::LoadSystemAbilityFail()
550 {
551 HILOGI("LoadSystemAbilityFail FinishStart SA");
552 saManagerStatus_ = SaManagerStatus::LOAD_FAIL;
553 proxyConVar_.notify_one();
554 }
555
SyncRandomAddrToService(void)556 void BluetoothHost::impl::SyncRandomAddrToService(void)
557 {
558 if (!IsValidBluetoothAddr(stagingRealAddr_)) {
559 HILOGD("stagingRealAddr_ is invalid.");
560 return;
561 }
562 if (!IsValidBluetoothAddr(stagingRandomAddr_)) {
563 HILOGE("stagingRandomAddr_ is invalid.");
564 return;
565 }
566 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
567 CHECK_AND_RETURN_LOG(proxy != nullptr, "proxy is nullptr");
568 proxy->SyncRandomAddress(stagingRealAddr_, stagingRandomAddr_);
569 stagingRealAddr_ = "";
570 stagingRandomAddr_ = "";
571 }
572
ConvertBluetoothStateToBtStateID(BluetoothState state)573 int BluetoothHost::impl::ConvertBluetoothStateToBtStateID(BluetoothState state)
574 {
575 int ret = BTStateID::STATE_TURN_OFF;
576 switch (state) {
577 case BluetoothState::STATE_ON: ret = BTStateID::STATE_TURN_ON; break;
578 case BluetoothState::STATE_TURNING_ON: ret = BTStateID::STATE_TURNING_ON; break;
579 case BluetoothState::STATE_TURNING_OFF: ret = BTStateID::STATE_TURNING_OFF; break;
580 case BluetoothState::STATE_OFF: ret = BTStateID::STATE_TURN_OFF; break;
581 default: break;
582 }
583 return ret;
584 }
585
BluetoothHost()586 BluetoothHost::BluetoothHost()
587 {
588 pimpl = std::make_unique<impl>();
589 if (!pimpl) {
590 HILOGE("fails: no pimpl");
591 }
592 }
593
~BluetoothHost()594 BluetoothHost::~BluetoothHost() {}
595
GetDefaultHost()596 BluetoothHost &BluetoothHost::GetDefaultHost()
597 {
598 #ifdef DTFUZZ_TEST
599 static BluetoothNoDestructor<BluetoothHost> instance;
600 return *instance;
601 #else
602 // C++11 static local variable initialization is thread-safe.
603 static BluetoothHost hostAdapter;
604 return hostAdapter;
605 #endif
606 }
607
RegisterObserver(std::shared_ptr<BluetoothHostObserver> observer)608 void BluetoothHost::RegisterObserver(std::shared_ptr<BluetoothHostObserver> observer)
609 {
610 HILOGD("enter");
611 CHECK_AND_RETURN_LOG(pimpl != nullptr, "pimpl is null.");
612 pimpl->observers_.Register(observer);
613 }
614
DeregisterObserver(std::shared_ptr<BluetoothHostObserver> observer)615 void BluetoothHost::DeregisterObserver(std::shared_ptr<BluetoothHostObserver> observer)
616 {
617 HILOGD("enter");
618 CHECK_AND_RETURN_LOG(pimpl != nullptr, "pimpl is null.");
619 pimpl->observers_.Deregister(observer);
620 }
621
EnableBt()622 int BluetoothHost::EnableBt()
623 {
624 HILOGD("enter");
625 CHECK_AND_RETURN_LOG_RET(!IsBtProhibitedByEdm(), BT_ERR_PROHIBITED_BY_EDM, "bluetooth is prohibited");
626 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
627 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_INTERNAL_ERROR, "proxy is nullptr");
628
629 return proxy->EnableBt();
630 }
631
DisableBt()632 int BluetoothHost::DisableBt()
633 {
634 HILOGI("enter");
635 std::lock_guard<std::mutex> lock(pimpl->switchModuleMutex_);
636 CHECK_AND_RETURN_LOG_RET(pimpl->switchModule_, BT_ERR_INTERNAL_ERROR, "switchModule is nullptr");
637 return pimpl->switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::DISABLE_BLUETOOTH);
638 }
639
PublishBtSwitchRestrictBluetoothEvent(void)640 static void PublishBtSwitchRestrictBluetoothEvent(void)
641 {
642 OHOS::AAFwk::Want want;
643 want.SetAction("usual.event.bluetooth.BT_SWITCH_RESTRICT_BLUETOOTH");
644
645 OHOS::EventFwk::CommonEventData data;
646 data.SetWant(want);
647
648 OHOS::EventFwk::CommonEventPublishInfo publishInfo;
649 publishInfo.SetSubscriberPermissions({"ohos.permission.ACCESS_BLUETOOTH"});
650 bool ret = OHOS::EventFwk::CommonEventManager::PublishCommonEvent(data, publishInfo);
651 if (!ret) {
652 HILOGE("Publish usual.event.bluetooth.BT_SWITCH_RESTRICT_BLUETOOTH event failed");
653 return;
654 }
655 }
656
RestrictBluetooth()657 int BluetoothHost::RestrictBluetooth()
658 {
659 HILOGI("enter");
660 std::lock_guard<std::mutex> lock(pimpl->switchModuleMutex_);
661 PublishBtSwitchRestrictBluetoothEvent();
662 CHECK_AND_RETURN_LOG_RET(pimpl->switchModule_, BT_ERR_INTERNAL_ERROR, "switchModule is nullptr");
663 int ret = pimpl->switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::DISABLE_BLUETOOTH);
664 if (ret != BT_NO_ERROR) {
665 return ret;
666 }
667 ret = pimpl->switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::ENABLE_BLUETOOTH_TO_RESTRICE_MODE);
668 return ret;
669 }
670
SatelliteControl(int type,int state)671 int BluetoothHost::SatelliteControl(int type, int state)
672 {
673 HILOGI("type: %{public}d, state: %{public}d", type, state);
674 if (type == static_cast<int>(SATELLITE_CONTROL_MODE::ANTENNA)) {
675 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
676 } else if (type == static_cast<int>(SATELLITE_CONTROL_MODE::BLUETOOTH_SWITCH)) {
677 pimpl->LoadBluetoothHostService();
678 } else {
679 HILOGE("Invalid control type: %{public}d", type);
680 return BT_ERR_INVALID_PARAM;
681 }
682 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
683 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_INTERNAL_ERROR, "proxy is nullptr");
684 return proxy->SatelliteControl(type, state);
685 }
686
UpdateVirtualDevice(int32_t action,const std::string & address)687 void BluetoothHost::UpdateVirtualDevice(int32_t action, const std::string &address)
688 {
689 HILOGD("enter");
690 CHECK_AND_RETURN_LOG(IS_BT_ENABLED(), "bluetooth is off");
691 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
692 CHECK_AND_RETURN_LOG(proxy != nullptr, "proxy is nullptr");
693 proxy->UpdateVirtualDevice(action, address);
694 }
695
GetBtState() const696 int BluetoothHost::GetBtState() const
697 {
698 BluetoothState state = GetBluetoothState();
699 return pimpl->ConvertBluetoothStateToBtStateID(state);
700 }
701
GetBtState(int & state) const702 int BluetoothHost::GetBtState(int &state) const
703 {
704 state = GetBtState();
705 return BT_NO_ERROR;
706 }
707
GetBluetoothState(void) const708 BluetoothState BluetoothHost::GetBluetoothState(void) const
709 {
710 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
711 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BluetoothState::STATE_OFF, "proxy is nullptr");
712 int state = static_cast<int>(BluetoothState::STATE_OFF);
713 proxy->GetBtState(state);
714 return static_cast<BluetoothState>(state);
715 }
716
EnableBluetoothAfterFactoryReset(void)717 int BluetoothHost::impl::EnableBluetoothAfterFactoryReset(void)
718 {
719 HILOGI("Attempt to enable bluetooth after factory reset");
720 isFactoryReseting_ = false;
721 SetParameter("persist.bluetooth.switch_enable", "2"); // 2 means bluetooth auto enter restricted mode
722 return BT_NO_ERROR;
723 }
724
BluetoothFactoryReset()725 int BluetoothHost::BluetoothFactoryReset()
726 {
727 HILOGI("enter");
728 constexpr const char* BLUETOOTH_FACTORY_RESET_KEY = "persist.bluetooth.factoryreset";
729 int ret = SetParameter(BLUETOOTH_FACTORY_RESET_KEY, "true");
730 CHECK_AND_RETURN_LOG_RET(ret == 0, BT_ERR_INTERNAL_ERROR, "SetParameter failed");
731
732 pimpl->isFactoryReseting_ = true;
733
734 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
735 if (proxy == nullptr) {
736 return pimpl->EnableBluetoothAfterFactoryReset();
737 }
738 CHECK_AND_RETURN_LOG_RET(IS_BLE_ENABLED(), BT_NO_ERROR, "bluetooth is off.");
739 return proxy->BluetoothFactoryReset();
740 }
741
IsValidBluetoothAddr(const std::string & addr)742 bool BluetoothHost::IsValidBluetoothAddr(const std::string &addr)
743 {
744 #if defined(IOS_PLATFORM)
745 const std::regex deviceIdRegex("^[0-9A-Fa-f]{8}-[0-9A-Fa-f]{4}-[0-9A-Fa-f]{4}-[0-9A-Fa-f]{4}-[0-9A-Fa-f]{12}$");
746 return regex_match(addr, deviceIdRegex);
747 #elif defined(ANDROID_PLATFORM)
748 const std::regex deviceIdRegex("^[0-9a-fA-F]{2}(:[0-9a-fA-F]{2}){5}$");
749 return regex_match(addr, deviceIdRegex);
750 #else
751 if (addr.length() != ADDRESS_LENGTH) {
752 HILOGD("invalid address len.");
753 return false;
754 }
755
756 for (int i = 0; i < ADDRESS_LENGTH; i++) {
757 char c = addr[i];
758 switch (i % ADDRESS_SEPARATOR_UNIT) {
759 case 0:
760 case 1:
761 if ((c >= '0' && c <= '9') || (c >= 'A' && c <= 'F')) {
762 break;
763 }
764 return false;
765 case ADDRESS_COLON_INDEX:
766 default:
767 if (c == ':') {
768 break;
769 }
770 return false;
771 }
772 }
773 return true;
774 #endif
775 }
776
GetRemoteDevice(const std::string & addr,int transport) const777 BluetoothRemoteDevice BluetoothHost::GetRemoteDevice(const std::string &addr, int transport) const
778 {
779 BluetoothRemoteDevice remoteDevice(addr, transport);
780 return remoteDevice;
781 }
782
EnableBle()783 int BluetoothHost::EnableBle()
784 {
785 HILOGI("enter");
786 std::lock_guard<std::mutex> lock(pimpl->switchModuleMutex_);
787 CHECK_AND_RETURN_LOG_RET(pimpl->switchModule_, BT_ERR_INTERNAL_ERROR, "switchModule is nullptr");
788 return pimpl->switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::ENABLE_BLUETOOTH);
789 }
790
DisableBle()791 int BluetoothHost::DisableBle()
792 {
793 HILOGD("enter");
794 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
795 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_INTERNAL_ERROR, "proxy is nullptr");
796
797 return proxy->DisableBle();
798 }
799
EnableBluetoothToRestrictMode(void)800 int BluetoothHost::EnableBluetoothToRestrictMode(void)
801 {
802 HILOGI("enter");
803 std::lock_guard<std::mutex> lock(pimpl->switchModuleMutex_);
804 CHECK_AND_RETURN_LOG_RET(pimpl->switchModule_, BT_ERR_INTERNAL_ERROR, "switchModule is nullptr");
805 return pimpl->switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::ENABLE_BLUETOOTH_TO_RESTRICE_MODE);
806 }
807
IsBrEnabled() const808 bool BluetoothHost::IsBrEnabled() const
809 {
810 BluetoothState state = GetBluetoothState();
811 return state == BluetoothState::STATE_ON;
812 }
813
IsBleEnabled() const814 bool BluetoothHost::IsBleEnabled() const
815 {
816 BluetoothState state = GetBluetoothState();
817 return (state == BluetoothState::STATE_ON ||
818 state == BluetoothState::STATE_BLE_ON ||
819 state == BluetoothState::STATE_TURNING_ON ||
820 state == BluetoothState::STATE_TURNING_OFF);
821 }
822
GetLocalAddress(std::string & addr) const823 int BluetoothHost::GetLocalAddress(std::string &addr) const
824 {
825 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
826 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "failed: no proxy");
827
828 return proxy->GetLocalAddress(addr);
829 }
830
GetProfileList() const831 std::vector<uint32_t> BluetoothHost::GetProfileList() const
832 {
833 HILOGD("enter");
834 std::vector<uint32_t> profileList;
835 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
836 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, profileList, "proxy is nullptr");
837
838 profileList = proxy->GetProfileList();
839 return profileList;
840 }
841
GetMaxNumConnectedAudioDevices() const842 int BluetoothHost::GetMaxNumConnectedAudioDevices() const
843 {
844 HILOGD("enter");
845 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
846 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, INVALID_VALUE, "proxy is nullptr");
847
848 return proxy->GetMaxNumConnectedAudioDevices();
849 }
850
GetBtConnectionState() const851 int BluetoothHost::GetBtConnectionState() const
852 {
853 HILOGD("enter");
854 int state = static_cast<int>(BTConnectState::DISCONNECTED);
855 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), state, "bluetooth is off.");
856
857 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
858 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, state, "proxy is nullptr");
859
860 proxy->GetBtConnectionState(state);
861 HILOGI("state: %{public}d", state);
862 return state;
863 }
864
GetBtConnectionState(int & state) const865 int BluetoothHost::GetBtConnectionState(int &state) const
866 {
867 HILOGD("enter");
868 state = static_cast<int>(BTConnectState::DISCONNECTED);
869 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
870
871 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
872 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
873
874 int ret = proxy->GetBtConnectionState(state);
875 HILOGI("state: %{public}d", state);
876 return ret;
877 }
878
GetBtProfileConnState(uint32_t profileId,int & state) const879 int BluetoothHost::GetBtProfileConnState(uint32_t profileId, int &state) const
880 {
881 HILOGI("profileId: %{public}d", profileId);
882 state = static_cast<int>(BTConnectState::DISCONNECTED);
883 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
884
885 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
886 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
887
888 return proxy->GetBtProfileConnState(profileId, state);
889 }
890
GetLocalSupportedUuids(std::vector<ParcelUuid> & uuids)891 void BluetoothHost::GetLocalSupportedUuids(std::vector<ParcelUuid> &uuids)
892 {
893 HILOGD("enter");
894 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
895 CHECK_AND_RETURN_LOG(proxy != nullptr, "proxy is nullptr");
896
897 std::vector<std::string> stringUuids;
898 proxy->GetLocalSupportedUuids(stringUuids);
899
900 for (auto uuid : stringUuids) {
901 uuids.push_back(UUID::FromString(uuid));
902 }
903 }
904
Start()905 bool BluetoothHost::Start()
906 {
907 // / This function only used for passthrough, so this is empty.
908 return true;
909 }
910
Stop()911 void BluetoothHost::Stop()
912 {
913 // / This function only used for passthrough, so this is empty.
914 }
915
GetLocalDeviceClass() const916 BluetoothDeviceClass BluetoothHost::GetLocalDeviceClass() const
917 {
918 HILOGD("enter");
919 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
920 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BluetoothDeviceClass(0), "proxy is nullptr");
921
922 int LocalDeviceClass = proxy->GetLocalDeviceClass();
923 return BluetoothDeviceClass(LocalDeviceClass);
924 }
925
SetLocalDeviceClass(const BluetoothDeviceClass & deviceClass)926 bool BluetoothHost::SetLocalDeviceClass(const BluetoothDeviceClass &deviceClass)
927 {
928 HILOGD("enter");
929 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
930 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, false, "proxy is nullptr");
931
932 int cod = deviceClass.GetClassOfDevice();
933 return proxy->SetLocalDeviceClass(cod);
934 }
935
GetLocalName() const936 std::string BluetoothHost::GetLocalName() const
937 {
938 HILOGD("enter");
939 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
940 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, std::string(), "proxy is nullptr");
941
942 std::string name = INVALID_NAME;
943 proxy->GetLocalName(name);
944 return name;
945 }
946
GetLocalName(std::string & name) const947 int BluetoothHost::GetLocalName(std::string &name) const
948 {
949 HILOGD("enter");
950 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
951 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
952
953 return proxy->GetLocalName(name);
954 }
955
SetLocalName(const std::string & name)956 int BluetoothHost::SetLocalName(const std::string &name)
957 {
958 HILOGD("enter");
959 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
960
961 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
962 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
963
964 return proxy->SetLocalName(name);
965 }
966
GetBtScanMode(int32_t & scanMode) const967 int BluetoothHost::GetBtScanMode(int32_t &scanMode) const
968 {
969 HILOGD("enter");
970 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
971
972 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
973 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
974
975 return proxy->GetBtScanMode(scanMode);
976 }
977
SetBtScanMode(int mode,int duration)978 int BluetoothHost::SetBtScanMode(int mode, int duration)
979 {
980 HILOGD("mode: %{public}d, duration: %{public}d", mode, duration);
981 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
982
983 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
984 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
985
986 return proxy->SetBtScanMode(mode, duration);
987 }
988
GetBondableMode(int transport) const989 int BluetoothHost::GetBondableMode(int transport) const
990 {
991 HILOGI("transport: %{public}d", transport);
992 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
993 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, INVALID_VALUE, "proxy is nullptr");
994
995 return proxy->GetBondableMode(transport);
996 }
997
SetBondableMode(int transport,int mode)998 bool BluetoothHost::SetBondableMode(int transport, int mode)
999 {
1000 HILOGD("transport: %{public}d, mode: %{public}d", transport, mode);
1001 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1002 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, false, "proxy is nullptr");
1003
1004 return proxy->SetBondableMode(transport, mode);
1005 }
1006
StartBtDiscovery()1007 int BluetoothHost::StartBtDiscovery()
1008 {
1009 HILOGD("enter");
1010 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
1011
1012 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1013 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
1014
1015 return proxy->StartBtDiscovery();
1016 }
1017
CancelBtDiscovery()1018 int BluetoothHost::CancelBtDiscovery()
1019 {
1020 HILOGD("enter");
1021 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
1022
1023 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1024 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
1025
1026 return proxy->CancelBtDiscovery();
1027 }
1028
IsBtDiscovering(bool & isDiscovering,int transport) const1029 int32_t BluetoothHost::IsBtDiscovering(bool &isDiscovering, int transport) const
1030 {
1031 HILOGI("transport: %{public}d", transport);
1032 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
1033
1034 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1035 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_INVALID_STATE, "proxy is nullptr");
1036
1037 return proxy->IsBtDiscovering(isDiscovering, transport);
1038 }
1039
GetBtDiscoveryEndMillis() const1040 long BluetoothHost::GetBtDiscoveryEndMillis() const
1041 {
1042 HILOGD("enter");
1043 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), 0, "bluetooth is off.");
1044
1045 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1046 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, 0, "proxy is nullptr");
1047
1048 return proxy->GetBtDiscoveryEndMillis();
1049 }
1050
GetPairedDevices(int transport,std::vector<BluetoothRemoteDevice> & pairedDevices) const1051 int32_t BluetoothHost::GetPairedDevices(int transport, std::vector<BluetoothRemoteDevice> &pairedDevices) const
1052 {
1053 HILOGI("transport: %{public}d", transport);
1054 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
1055
1056 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1057 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
1058
1059 std::vector<BluetoothRawAddress> pairedAddr;
1060 int32_t ret = proxy->GetPairedDevices(pairedAddr);
1061
1062 for (auto it = pairedAddr.begin(); it != pairedAddr.end(); it++) {
1063 BluetoothRemoteDevice device((*it).GetAddress(), transport);
1064 pairedDevices.emplace_back(device);
1065 }
1066 return ret;
1067 }
1068
RemovePair(const BluetoothRemoteDevice & device)1069 int32_t BluetoothHost::RemovePair(const BluetoothRemoteDevice &device)
1070 {
1071 HILOGI("device: %{public}s", GET_ENCRYPT_ADDR(device));
1072 CHECK_AND_RETURN_LOG_RET(device.IsValidBluetoothRemoteDevice(), BT_ERR_INTERNAL_ERROR, "Invalid remote device.");
1073
1074 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1075 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
1076
1077 sptr<BluetoothRawAddress> rawAddrSptr = new BluetoothRawAddress(device.GetDeviceAddr());
1078 return proxy->RemovePair(device.GetTransportType(), rawAddrSptr);
1079 }
1080
RemoveAllPairs()1081 bool BluetoothHost::RemoveAllPairs()
1082 {
1083 HILOGD("enter");
1084 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1085 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, false, "proxy is nullptr");
1086
1087 return proxy->RemoveAllPairs();
1088 }
1089
RegisterRemoteDeviceObserver(std::shared_ptr<BluetoothRemoteDeviceObserver> observer)1090 void BluetoothHost::RegisterRemoteDeviceObserver(std::shared_ptr<BluetoothRemoteDeviceObserver> observer)
1091 {
1092 HILOGD("enter");
1093 CHECK_AND_RETURN_LOG(pimpl != nullptr, "pimpl is null.");
1094
1095 pimpl->remoteObservers_.Register(observer);
1096 }
1097
DeregisterRemoteDeviceObserver(std::shared_ptr<BluetoothRemoteDeviceObserver> observer)1098 void BluetoothHost::DeregisterRemoteDeviceObserver(std::shared_ptr<BluetoothRemoteDeviceObserver> observer)
1099 {
1100 HILOGD("enter");
1101 CHECK_AND_RETURN_LOG(pimpl != nullptr, "pimpl is null.");
1102
1103 pimpl->remoteObservers_.Deregister(observer);
1104 }
1105
GetBleMaxAdvertisingDataLength() const1106 int BluetoothHost::GetBleMaxAdvertisingDataLength() const
1107 {
1108 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1109 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, INVALID_VALUE, "proxy is nullptr");
1110
1111 return proxy->GetBleMaxAdvertisingDataLength();
1112 }
1113
LoadSystemAbilitySuccess(const sptr<IRemoteObject> & remoteObject)1114 void BluetoothHost::LoadSystemAbilitySuccess(const sptr<IRemoteObject> &remoteObject)
1115 {
1116 CHECK_AND_RETURN_LOG(pimpl, "pimpl is null.");
1117
1118 pimpl->LoadSystemAbilitySuccess(remoteObject);
1119 }
1120
LoadSystemAbilityFail()1121 void BluetoothHost::LoadSystemAbilityFail()
1122 {
1123 CHECK_AND_RETURN_LOG(pimpl, "pimpl is null.");
1124
1125 pimpl->LoadSystemAbilityFail();
1126 }
1127
GetLocalProfileUuids(std::vector<std::string> & uuids)1128 int32_t BluetoothHost::GetLocalProfileUuids(std::vector<std::string> &uuids)
1129 {
1130 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INTERNAL_ERROR, "bluetooth is off.");
1131
1132 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1133 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
1134
1135 return proxy->GetLocalProfileUuids(uuids);
1136 }
1137
SetFastScan(bool isEnable)1138 int BluetoothHost::SetFastScan(bool isEnable)
1139 {
1140 HILOGI("isEnable: %{public}d", isEnable);
1141 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
1142
1143 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1144 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "proxy is nullptr");
1145
1146 return proxy->SetFastScan(isEnable);
1147 }
1148
GetRandomAddress(const std::string & realAddr,std::string & randomAddr) const1149 int BluetoothHost::GetRandomAddress(const std::string &realAddr, std::string &randomAddr) const
1150 {
1151 randomAddr = realAddr;
1152 return BT_NO_ERROR;
1153 }
1154
ConnectAllowedProfiles(const std::string & remoteAddr) const1155 int BluetoothHost::ConnectAllowedProfiles(const std::string &remoteAddr) const
1156 {
1157 HILOGI("enter");
1158 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
1159
1160 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1161 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "pimpl or bluetooth host is nullptr");
1162
1163 return proxy->ConnectAllowedProfiles(remoteAddr);
1164 }
1165
DisconnectAllowedProfiles(const std::string & remoteAddr) const1166 int BluetoothHost::DisconnectAllowedProfiles(const std::string &remoteAddr) const
1167 {
1168 HILOGI("enter");
1169 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
1170
1171 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1172 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "pimpl or bluetooth host is nullptr");
1173
1174 return proxy->DisconnectAllowedProfiles(remoteAddr);
1175 }
1176
SetFastScanLevel(int level)1177 int BluetoothHost::SetFastScanLevel(int level)
1178 {
1179 CHECK_AND_RETURN_LOG_RET(IS_BT_ENABLED(), BT_ERR_INVALID_STATE, "bluetooth is off.");
1180 sptr<IBluetoothHost> proxy = GetRemoteProxy<IBluetoothHost>(BLUETOOTH_HOST);
1181 CHECK_AND_RETURN_LOG_RET(proxy != nullptr, BT_ERR_UNAVAILABLE_PROXY, "pimpl or bluetooth host is nullptr");
1182 return proxy->SetFastScanLevel(level);
1183 }
1184
RegisterBtResourceManagerObserver(std::shared_ptr<BluetoothResourceManagerObserver> observer)1185 void BluetoothHost::RegisterBtResourceManagerObserver(std::shared_ptr<BluetoothResourceManagerObserver> observer)
1186 {
1187 CHECK_AND_RETURN_LOG(pimpl != nullptr, "pimpl is null.");
1188
1189 pimpl->resourceManagerObservers_.Register(observer);
1190 }
1191
DeregisterBtResourceManagerObserver(std::shared_ptr<BluetoothResourceManagerObserver> observer)1192 void BluetoothHost::DeregisterBtResourceManagerObserver(std::shared_ptr<BluetoothResourceManagerObserver> observer)
1193 {
1194 CHECK_AND_RETURN_LOG(pimpl != nullptr, "pimpl is null.");
1195
1196 pimpl->resourceManagerObservers_.Deregister(observer);
1197 }
1198
IsBtProhibitedByEdm(void)1199 bool BluetoothHost::IsBtProhibitedByEdm(void)
1200 {
1201 constexpr const char* BLUETOOTH_EDM_KEY = "persist.edm.prohibit_bluetooth";
1202 constexpr const uint32_t PARAM_TRUE_LEN = 4; // "true" 4bytes
1203 constexpr const uint32_t PARAM_FALSE_LEN = 5; // "false" 5bytes
1204 constexpr const char* PARAM_TRUE = "true";
1205 constexpr const char* PARAM_FALSE = "false";
1206
1207 char result[PARAM_FALSE_LEN + 1] = {0};
1208 // Returns the number of bytes of the system parameter if the operation is successful.
1209 int len = GetParameter(BLUETOOTH_EDM_KEY, PARAM_FALSE, result, PARAM_FALSE_LEN + 1);
1210 CHECK_AND_RETURN_LOG_RET(len == PARAM_FALSE_LEN || len == PARAM_TRUE_LEN, false, "GetParameter len is invalid.");
1211
1212 if (strncmp(result, PARAM_TRUE, PARAM_TRUE_LEN) == 0) {
1213 HILOGW("bluetooth is prohibited by EDM. You won't be able to turn on bluetooth !");
1214 return true;
1215 }
1216 return false;
1217 }
1218
IsBluetoothSystemAbilityOn(void)1219 static bool IsBluetoothSystemAbilityOn(void)
1220 {
1221 auto samgrProxy = SystemAbilityManagerClient::GetInstance().GetSystemAbilityManager();
1222 CHECK_AND_RETURN_LOG_RET(samgrProxy != nullptr, false, "samgrProxy is nullptr");
1223 auto object = samgrProxy->CheckSystemAbility(BLUETOOTH_HOST_SYS_ABILITY_ID);
1224 return object != nullptr;
1225 }
1226
OnRemoveBluetoothSystemAbility()1227 void BluetoothHost::OnRemoveBluetoothSystemAbility()
1228 {
1229 // Notify the upper layer that bluetooth is disabled.
1230 bool isBluetoothSystemAbilityOn = IsBluetoothSystemAbilityOn();
1231 if (isBluetoothSystemAbilityOn) {
1232 HILOGW("Bluetooth SA is started, the hap application may be freezed by rss");
1233 // Notify profile manager bluetooth off once.
1234 BluetoothProfileManager::GetInstance().NotifyBluetoothStateChange(
1235 BTTransport::ADAPTER_BLE, BTStateID::STATE_TURN_OFF);
1236 } else if (pimpl->observerImp_ && pimpl->bleObserverImp_) {
1237 HILOGD("bluetooth_servi died and send state off to app");
1238 pimpl->observerImp_->OnStateChanged(BTTransport::ADAPTER_BREDR, BTStateID::STATE_TURN_OFF);
1239 pimpl->bleObserverImp_->OnStateChanged(BTTransport::ADAPTER_BLE, BTStateID::STATE_TURN_OFF);
1240 }
1241 if (pimpl->isFactoryReseting_.load()) {
1242 pimpl->EnableBluetoothAfterFactoryReset();
1243 }
1244 std::lock_guard<std::mutex> lock(pimpl->switchModuleMutex_);
1245 if (pimpl->switchModule_) {
1246 pimpl->switchModule_->ProcessBluetoothSwitchEvent(BluetoothSwitchEvent::BLUETOOTH_OFF);
1247 }
1248 }
1249
Close(void)1250 void BluetoothHost::Close(void)
1251 {
1252 std::lock_guard<std::mutex> lock(pimpl->switchModuleMutex_);
1253 pimpl->switchModule_ = nullptr;
1254 }
1255 } // namespace Bluetooth
1256 } // namespace OHOS
1257