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348 lines
10 KiB
348 lines
10 KiB
// |
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// Copyright (C) 2015 Google, Inc. |
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// |
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// Licensed under the Apache License, Version 2.0 (the "License"); |
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// you may not use this file except in compliance with the License. |
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// You may obtain a copy of the License at: |
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// |
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// http://www.apache.org/licenses/LICENSE-2.0 |
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// |
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// Unless required by applicable law or agreed to in writing, software |
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// distributed under the License is distributed on an "AS IS" BASIS, |
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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// See the License for the specific language governing permissions and |
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// limitations under the License. |
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// |
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#include "service/low_energy_advertiser.h" |
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#include <base/bind.h> |
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#include <base/logging.h> |
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#include "service/adapter.h" |
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#include "service/logging_helpers.h" |
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#include "stack/include/bt_types.h" |
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#include "stack/include/hcidefs.h" |
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using std::lock_guard; |
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using std::mutex; |
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namespace bluetooth { |
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namespace { |
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BLEStatus GetBLEStatus(int status) { |
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if (status == BT_STATUS_FAIL) return BLE_STATUS_FAILURE; |
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return static_cast<BLEStatus>(status); |
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} |
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// The Bluetooth Core Specification defines time interval (e.g. Page Scan |
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// Interval, Advertising Interval, etc) units as 0.625 milliseconds (or 1 |
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// Baseband slot). The HAL advertising functions expect the interval in this |
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// unit. This function maps an AdvertiseSettings::Mode value to the |
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// corresponding time unit. |
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int GetAdvertisingIntervalUnit(AdvertiseSettings::Mode mode) { |
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int ms; |
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switch (mode) { |
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case AdvertiseSettings::MODE_BALANCED: |
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ms = kAdvertisingIntervalMediumMs; |
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break; |
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case AdvertiseSettings::MODE_LOW_LATENCY: |
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ms = kAdvertisingIntervalLowMs; |
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break; |
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case AdvertiseSettings::MODE_LOW_POWER: |
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// Fall through |
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default: |
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ms = kAdvertisingIntervalHighMs; |
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break; |
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} |
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// Convert milliseconds to Bluetooth units. |
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return (ms * 1000) / 625; |
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} |
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int8_t GetAdvertisingTxPower(AdvertiseSettings::TxPowerLevel tx_power) { |
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int8_t power; |
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switch (tx_power) { |
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case AdvertiseSettings::TX_POWER_LEVEL_ULTRA_LOW: |
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power = -21; |
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break; |
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case AdvertiseSettings::TX_POWER_LEVEL_LOW: |
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power = -15; |
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break; |
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case AdvertiseSettings::TX_POWER_LEVEL_MEDIUM: |
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power = -7; |
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break; |
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case AdvertiseSettings::TX_POWER_LEVEL_HIGH: |
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// Fall through |
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default: |
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power = 1; |
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break; |
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} |
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return power; |
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} |
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void GetAdvertiseParams(const AdvertiseSettings& settings, bool has_scan_rsp, |
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AdvertiseParameters* out_params) { |
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CHECK(out_params); |
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out_params->min_interval = GetAdvertisingIntervalUnit(settings.mode()); |
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out_params->max_interval = |
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out_params->min_interval + kAdvertisingIntervalDeltaUnit; |
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if (settings.connectable()) |
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out_params->advertising_event_properties = |
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kAdvertisingEventTypeLegacyConnectable; |
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else if (has_scan_rsp) |
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out_params->advertising_event_properties = |
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kAdvertisingEventTypeLegacyScannable; |
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else |
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out_params->advertising_event_properties = |
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kAdvertisingEventTypeLegacyNonConnectable; |
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out_params->channel_map = kAdvertisingChannelAll; |
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out_params->tx_power = GetAdvertisingTxPower(settings.tx_power_level()); |
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// TODO: expose those new setting through AdvertiseSettings |
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out_params->primary_advertising_phy = 0x01; |
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out_params->secondary_advertising_phy = 0x01; |
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out_params->scan_request_notification_enable = 0; |
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} |
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void DoNothing(uint8_t status) {} |
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} // namespace |
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// LowEnergyAdvertiser implementation |
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// ======================================================== |
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LowEnergyAdvertiser::LowEnergyAdvertiser(const UUID& uuid, int advertiser_id) |
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: app_identifier_(uuid), |
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advertiser_id_(advertiser_id), |
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adv_started_(false), |
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adv_start_callback_(nullptr), |
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adv_stop_callback_(nullptr) {} |
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LowEnergyAdvertiser::~LowEnergyAdvertiser() { |
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// Automatically unregister the advertiser. |
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VLOG(1) << "LowEnergyAdvertiser unregistering advertiser: " << advertiser_id_; |
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// Stop advertising and ignore the result. |
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hal::BluetoothGattInterface::Get()->GetAdvertiserHALInterface()->Enable( |
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advertiser_id_, false, base::Bind(&DoNothing), 0, 0, |
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base::Bind(&DoNothing)); |
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hal::BluetoothGattInterface::Get()->GetAdvertiserHALInterface()->Unregister( |
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advertiser_id_); |
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} |
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bool LowEnergyAdvertiser::StartAdvertising(const AdvertiseSettings& settings, |
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const AdvertiseData& advertise_data, |
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const AdvertiseData& scan_response, |
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const StatusCallback& callback) { |
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VLOG(2) << __func__; |
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lock_guard<mutex> lock(adv_fields_lock_); |
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if (IsAdvertisingStarted()) { |
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LOG(WARNING) << "Already advertising"; |
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return false; |
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} |
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if (IsStartingAdvertising()) { |
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LOG(WARNING) << "StartAdvertising already pending"; |
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return false; |
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} |
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if (!advertise_data.IsValid()) { |
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LOG(ERROR) << "Invalid advertising data"; |
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return false; |
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} |
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if (!scan_response.IsValid()) { |
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LOG(ERROR) << "Invalid scan response data"; |
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return false; |
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} |
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advertise_settings_ = settings; |
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AdvertiseParameters params; |
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GetAdvertiseParams(settings, !scan_response.data().empty(), ¶ms); |
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hal::BluetoothGattInterface::Get() |
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->GetAdvertiserHALInterface() |
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->StartAdvertising( |
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advertiser_id_, |
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base::Bind(&LowEnergyAdvertiser::EnableCallback, |
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base::Unretained(this), true, advertiser_id_), |
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params, advertise_data.data(), scan_response.data(), |
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settings.timeout().InSeconds(), |
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base::Bind(&LowEnergyAdvertiser::EnableCallback, |
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base::Unretained(this), false, advertiser_id_)); |
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; |
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adv_start_callback_.reset(new StatusCallback(callback)); |
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return true; |
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} |
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bool LowEnergyAdvertiser::StopAdvertising(const StatusCallback& callback) { |
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VLOG(2) << __func__; |
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lock_guard<mutex> lock(adv_fields_lock_); |
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if (!IsAdvertisingStarted()) { |
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LOG(ERROR) << "Not advertising"; |
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return false; |
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} |
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if (IsStoppingAdvertising()) { |
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LOG(ERROR) << "StopAdvertising already pending"; |
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return false; |
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} |
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hal::BluetoothGattInterface::Get()->GetAdvertiserHALInterface()->Enable( |
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advertiser_id_, false, |
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base::Bind(&LowEnergyAdvertiser::EnableCallback, base::Unretained(this), |
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false, advertiser_id_), |
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0, 0, base::Bind(&LowEnergyAdvertiser::EnableCallback, |
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base::Unretained(this), false, advertiser_id_)); |
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// OK to set this at the end since we're still holding |adv_fields_lock_|. |
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adv_stop_callback_.reset(new StatusCallback(callback)); |
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return true; |
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} |
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bool LowEnergyAdvertiser::IsAdvertisingStarted() const { |
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return adv_started_.load(); |
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} |
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bool LowEnergyAdvertiser::IsStartingAdvertising() const { |
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return !IsAdvertisingStarted() && adv_start_callback_; |
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} |
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bool LowEnergyAdvertiser::IsStoppingAdvertising() const { |
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return IsAdvertisingStarted() && adv_stop_callback_; |
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} |
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const UUID& LowEnergyAdvertiser::GetAppIdentifier() const { |
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return app_identifier_; |
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} |
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int LowEnergyAdvertiser::GetInstanceId() const { return advertiser_id_; } |
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void LowEnergyAdvertiser::EnableCallback(bool enable, uint8_t advertiser_id, |
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uint8_t status) { |
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if (advertiser_id != advertiser_id_) return; |
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lock_guard<mutex> lock(adv_fields_lock_); |
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VLOG(1) << __func__ << "advertiser_id: " << advertiser_id |
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<< " status: " << status << " enable: " << enable; |
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if (enable) { |
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CHECK(adv_start_callback_); |
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CHECK(!adv_stop_callback_); |
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// Terminate operation in case of error. |
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if (status != BT_STATUS_SUCCESS) { |
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LOG(ERROR) << "Failed to enable multi-advertising"; |
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InvokeAndClearStartCallback(GetBLEStatus(status)); |
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return; |
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} |
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// All pending tasks are complete. Report success. |
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adv_started_ = true; |
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InvokeAndClearStartCallback(BLE_STATUS_SUCCESS); |
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} else { |
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CHECK(!adv_start_callback_); |
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CHECK(adv_stop_callback_); |
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if (status == BT_STATUS_SUCCESS) { |
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VLOG(1) << "Multi-advertising stopped for advertiser_id: " |
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<< advertiser_id; |
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adv_started_ = false; |
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} else { |
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LOG(ERROR) << "Failed to stop multi-advertising"; |
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} |
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InvokeAndClearStopCallback(GetBLEStatus(status)); |
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} |
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} |
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void LowEnergyAdvertiser::InvokeAndClearStartCallback(BLEStatus status) { |
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// We allow NULL callbacks. |
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if (*adv_start_callback_) (*adv_start_callback_)(status); |
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adv_start_callback_ = nullptr; |
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} |
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void LowEnergyAdvertiser::InvokeAndClearStopCallback(BLEStatus status) { |
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// We allow NULL callbacks. |
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if (*adv_stop_callback_) (*adv_stop_callback_)(status); |
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adv_stop_callback_ = nullptr; |
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} |
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// LowEnergyAdvertiserFactory implementation |
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// ======================================================== |
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LowEnergyAdvertiserFactory::LowEnergyAdvertiserFactory() {} |
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LowEnergyAdvertiserFactory::~LowEnergyAdvertiserFactory() {} |
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bool LowEnergyAdvertiserFactory::RegisterInstance( |
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const UUID& app_uuid, const RegisterCallback& callback) { |
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VLOG(1) << __func__; |
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lock_guard<mutex> lock(pending_calls_lock_); |
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if (pending_calls_.find(app_uuid) != pending_calls_.end()) { |
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LOG(ERROR) << "Low-Energy advertiser with given UUID already registered - " |
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<< "UUID: " << app_uuid.ToString(); |
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return false; |
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} |
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BleAdvertiserInterface* hal_iface = |
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hal::BluetoothGattInterface::Get()->GetAdvertiserHALInterface(); |
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VLOG(1) << __func__ << " calling register!"; |
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hal_iface->RegisterAdvertiser( |
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base::Bind(&LowEnergyAdvertiserFactory::RegisterAdvertiserCallback, |
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base::Unretained(this), callback, app_uuid)); |
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VLOG(1) << __func__ << " call finished!"; |
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pending_calls_.insert(app_uuid); |
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return true; |
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} |
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void LowEnergyAdvertiserFactory::RegisterAdvertiserCallback( |
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const RegisterCallback& callback, const UUID& app_uuid, |
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uint8_t advertiser_id, uint8_t status) { |
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VLOG(1) << __func__; |
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lock_guard<mutex> lock(pending_calls_lock_); |
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auto iter = pending_calls_.find(app_uuid); |
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if (iter == pending_calls_.end()) { |
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VLOG(1) << "Ignoring callback for unknown app_id: " << app_uuid.ToString(); |
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return; |
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} |
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// No need to construct a advertiser if the call wasn't successful. |
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std::unique_ptr<LowEnergyAdvertiser> advertiser; |
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BLEStatus result = BLE_STATUS_FAILURE; |
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if (status == BT_STATUS_SUCCESS) { |
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advertiser.reset(new LowEnergyAdvertiser(app_uuid, advertiser_id)); |
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result = BLE_STATUS_SUCCESS; |
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} |
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// Notify the result via the result callback. |
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callback(result, app_uuid, std::move(advertiser)); |
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pending_calls_.erase(iter); |
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} |
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} // namespace bluetooth
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