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https://github.com/kidfromjupiter/nearby.git
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Signed-off-by: Alexey Polyudov <apolyudov@google.com> Change-Id: I9850950db8bd84f0904ea1a413151887f52098cf
393 lines
15 KiB
C++
393 lines
15 KiB
C++
#ifndef PLATFORM_API_BLE_V2_H_
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#define PLATFORM_API_BLE_V2_H_
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#include <cstdint>
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#include <limits>
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#include <map>
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#include <memory>
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#include <set>
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#include <string>
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#include "platform/base/byte_array.h"
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#include "platform/base/exception.h"
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#include "absl/strings/string_view.h"
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#include "absl/types/optional.h"
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namespace location {
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namespace nearby {
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namespace api {
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namespace ble_v2 {
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// https://developer.android.com/reference/android/bluetooth/le/AdvertiseData
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//
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// Bundle of data found in a BLE advertisement.
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//
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// All service UUIDs will conform to the 16-bit Bluetooth base UUID,
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// 0000xxxx-0000-1000-8000-00805F9B34FB. This makes it possible to store two
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// byte service UUIDs in the advertisement.
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struct BleAdvertisementData {
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using TxPowerLevel = int8_t;
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static const TxPowerLevel kUnspecifiedTxPowerLevel =
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std::numeric_limits<TxPowerLevel>::min();
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bool is_connectable;
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// When set to kUnspecifiedTxPowerLevel, TX power should not be included in
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// the advertisement data.
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TxPowerLevel tx_power_level;
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// When set to an empty string, local name should not be included in the
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// advertisement data.
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std::string local_name;
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// When set to an empty vector, the set of 16-bit service class UUIDs should
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// not be included in the advertisement data.
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std::set<std::string> service_uuids;
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// Maps service UUIDs to their service data.
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std::map<std::string, ByteArray> service_data;
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};
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// Opaque wrapper over a BLE peripheral. Must be able to uniquely identify a
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// peripheral so that we can connect to its GATT server.
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class BlePeripheral {
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public:
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virtual ~BlePeripheral() {}
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// https://developer.android.com/reference/android/bluetooth/BluetoothDevice#getAddress()
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//
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// This should be the MAC address when possible. If the implementation is
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// unable to retrieve that, any unique identifier should suffice.
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virtual std::string GetId() const = 0;
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};
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattCharacteristic
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//
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// Representation of a GATT characteristic.
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class GattCharacteristic {
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public:
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virtual ~GattCharacteristic() {}
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// Possible permissions of a GATT characteristic.
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enum class Permission {
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kUnknown = 0,
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kRead = 1,
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kWrite = 2,
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kLast,
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};
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// Possible properties of a GATT characteristic.
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enum class Property {
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kUnknown = 0,
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kRead = 1,
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kWrite = 2,
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kIndicate = 3,
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kLast,
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};
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// Returns the UUID of this characteristic.
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virtual std::string GetUuid() = 0;
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// Returns the UUID of the containing GATT service.
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virtual std::string GetServiceUuid() = 0;
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};
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt
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//
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// Representation of a client GATT connection to a remote GATT server.
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class ClientGattConnection {
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public:
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virtual ~ClientGattConnection() {}
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt.html#getDevice()
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//
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// Retrieves the BLE peripheral that this connection is tied to.
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virtual BlePeripheral& GetPeripheral() = 0;
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt.html#discoverServices()
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//
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// Discovers all available services and characteristics on this connection.
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// Returns whether or not discovery finished successfully.
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//
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// This function should block until discovery has finished.
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virtual bool DiscoverServices() = 0;
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt.html#getService(java.util.UUID)
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattService.html#getCharacteristic(java.util.UUID)
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//
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// Retrieves a GATT characteristic. On error, does not return a value.
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//
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// DiscoverServices() should be called before this method to fetch all
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// available services and characteristics first.
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//
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// It is okay for duplicate services to exist, as long as the specified
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// characteristic UUID is unique among all services of the same UUID.
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virtual absl::optional<GattCharacteristic> GetCharacteristic(
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absl::string_view service_uuid,
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absl::string_view characteristic_uuid) = 0;
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt.html#readCharacteristic(android.bluetooth.BluetoothGattCharacteristic)
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattCharacteristic.html#getValue()
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//
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// Reads a GATT characteristic. No value is returned upon error.
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virtual absl::optional<ByteArray> ReadCharacteristic(
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const GattCharacteristic& characteristic) = 0;
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattCharacteristic.html#setValue(byte[])
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt.html#writeCharacteristic(android.bluetooth.BluetoothGattCharacteristic)
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//
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// Sends a remote characteristic write request to the server and returns
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// whether or not it was successful.
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virtual bool WriteCharacteristic(const GattCharacteristic& characteristic,
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const ByteArray& value) = 0;
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt.html#disconnect()
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//
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// Disconnects a GATT connection.
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virtual void Disconnect() = 0;
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};
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattServer
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//
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// Representation of a server GATT connection to a remote GATT client.
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class ServerGattConnection {
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public:
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virtual ~ServerGattConnection() {}
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattCharacteristic.html#setValue(byte[])
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattServer.html#notifyCharacteristicChanged(android.bluetooth.BluetoothDevice,%20android.bluetooth.BluetoothGattCharacteristic,%20boolean)
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//
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// Sends a notification (via indication) to the client that a characteristic
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// has changed with the given value. Returns whether or not it was successful.
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//
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// The value sent does not have to reflect the locally stored characteristic
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// value. To update the local value, call GattServer::UpdateCharacteristic.
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virtual bool SendCharacteristic(const GattCharacteristic& characteristic,
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const ByteArray& value) = 0;
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};
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// Callback for asynchronous events on the client side of a GATT connection.
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class ClientGattConnectionLifeCycleCallback {
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public:
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virtual ~ClientGattConnectionLifeCycleCallback() {}
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// Called when the client is disconnected from the GATT server.
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virtual void OnDisconnected(ClientGattConnection* connection) = 0;
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};
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// Callback for asynchronous events on the server side of a GATT connection.
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class ServerGattConnectionLifeCycleCallback {
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public:
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virtual ~ServerGattConnectionLifeCycleCallback() {}
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// Called when a remote peripheral connected to us and subscribed to one of
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// our characteristics.
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virtual void OnCharacteristicSubscription(
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ServerGattConnection* connection,
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const GattCharacteristic& characteristic) = 0;
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// Called when a remote peripheral unsubscribed from one of our
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// characteristics.
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virtual void OnCharacteristicUnsubscription(
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ServerGattConnection* connection,
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const GattCharacteristic& characteristic) = 0;
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};
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattServer
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//
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// Representation of a BLE GATT server.
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class GattServer {
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public:
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virtual ~GattServer() {}
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// Creates a characteristic and adds it to the GATT server under the given
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// characteristic and service UUIDs. Returns no value upon error.
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//
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// Characteristics of the same service UUID should be put under one
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// service rather than many services with the same UUID.
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//
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// If the INDICATE property is included, the characteristic should include the
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// official Bluetooth Client Characteristic Configuration descriptor with UUID
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// 0x2902 and a WRITE permission. This allows remote clients to write to this
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// descriptor and subscribe for characteristic changes. For more information
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// about this descriptor, please go to:
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// https://www.bluetooth.com/specifications/Gatt/viewer?attributeXmlFile=org.bluetooth.descriptor.Gatt.client_characteristic_configuration.xml
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virtual absl::optional<GattCharacteristic> CreateCharacteristic(
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absl::string_view service_uuid, absl::string_view characteristic_uuid,
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const std::set<GattCharacteristic::Permission>& permissions,
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const std::set<GattCharacteristic::Property>& properties) = 0;
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// https://developer.android.com/reference/android/bluetooth/BluetoothGattCharacteristic.html#setValue(byte[])
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//
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// Locally updates the value of a characteristic and returns whether or not it
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// was successful.
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// Takes ownership of (and is responsible for destroying) the passed-in
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// 'value'.
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virtual bool UpdateCharacteristic(const GattCharacteristic& characteristic,
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const ByteArray& value) = 0;
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// Stops a GATT server.
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virtual void Stop() = 0;
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};
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// A BLE socket representation.
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class BleSocket {
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public:
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virtual ~BleSocket() {}
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// Returns the remote BLE peripheral tied to this socket.
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virtual BlePeripheral& GetRemotePeripheral() = 0;
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// Writes a message on the socket and blocks until finished. Returns
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// Exception::kIo upon error, and Exception::kSuccess otherwise.
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virtual Exception Write(const ByteArray& message) = 0;
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// Closes the socket and blocks until finished. Returns Exception::kIo upon
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// error, and Exception::kSuccess otherwise.
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virtual Exception Close() = 0;
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};
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// Callback for asynchronous events on a BleSocket object.
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class BleSocketLifeCycleCallback {
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public:
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virtual ~BleSocketLifeCycleCallback() {}
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// Called when a message arrives on a socket.
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virtual void OnMessageReceived(BleSocket* socket,
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const ByteArray& message) = 0;
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// Called when a socket gets disconnected.
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virtual void OnDisconnected(BleSocket* socket) = 0;
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};
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// Callback for asynchronous events on the server side of a BleSocket object.
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class ServerBleSocketLifeCycleCallback : public BleSocketLifeCycleCallback {
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public:
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~ServerBleSocketLifeCycleCallback() override {}
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// Called when a new incoming socket has been established.
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virtual void OnSocketEstablished(BleSocket* socket) = 0;
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};
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// The main BLE medium used inside of Nearby. This serves as the entry point for
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// all BLE and GATT related operations.
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class BleMedium {
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public:
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using Mtu = uint32_t;
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virtual ~BleMedium() {}
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// Coarse representation of power settings throughout all BLE operations.
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enum class PowerMode {
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kUnknown = 0,
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kLow = 1,
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kHigh = 2,
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kLast,
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};
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// https://developer.android.com/reference/android/bluetooth/le/BluetoothLeAdvertiser.html#startAdvertising(android.bluetooth.le.AdvertiseSettings,%20android.bluetooth.le.AdvertiseData,%20android.bluetooth.le.AdvertiseData,%20android.bluetooth.le.AdvertiseCallback)
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//
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// Starts BLE advertising and returns whether or not it was successful.
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//
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// Power mode should be interpreted in the following way:
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// LOW:
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// - Advertising interval = ~1000ms
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// - TX power = low
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// HIGH:
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// - Advertising interval = ~100ms
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// - TX power = high
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virtual bool StartAdvertising(const BleAdvertisementData& advertisement_data,
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const BleAdvertisementData& scan_response,
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PowerMode power_mode) = 0;
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// https://developer.android.com/reference/android/bluetooth/le/BluetoothLeAdvertiser.html#stopAdvertising(android.bluetooth.le.AdvertiseCallback)
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//
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// Stops advertising.
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virtual void StopAdvertising() = 0;
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// https://developer.android.com/reference/android/bluetooth/le/ScanCallback
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//
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// Callback for BLE scan results.
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class ScanCallback {
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public:
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virtual ~ScanCallback() {}
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// https://developer.android.com/reference/android/bluetooth/le/ScanCallback.html#onScanResult(int,%20android.bluetooth.le.ScanResult)
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//
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// Called when a BLE advertisement is discovered.
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//
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// The passed in advertisement_data is the merged combination of both
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// advertisement data and scan response.
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//
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// Every discovery of an advertisement should be reported, even if the
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// advertisement was discovered before.
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//
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// Ownership of the BleAdvertisementData transfers to the caller at this
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// point.
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virtual void OnAdvertisementFound(
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BlePeripheral* peripheral,
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const BleAdvertisementData& advertisement_data) = 0;
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};
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// https://developer.android.com/reference/android/bluetooth/le/BluetoothLeScanner.html#startScan(java.util.List%3Candroid.bluetooth.le.ScanFilter%3E,%20android.bluetooth.le.ScanSettings,%20android.bluetooth.le.ScanCallback)
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//
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// Starts scanning and returns whether or not it was successful.
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//
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// Power mode should be interpreted in the following way:
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// LOW:
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// - Scan window = ~512ms
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// - Scan interval = ~5120ms
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// HIGH:
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// - Scan window = ~4096ms
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// - Scan interval = ~4096ms
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virtual bool StartScanning(const std::set<std::string>& service_uuids,
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PowerMode power_mode,
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const ScanCallback& scan_callback) = 0;
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// https://developer.android.com/reference/android/bluetooth/le/BluetoothLeScanner.html#stopScan(android.bluetooth.le.ScanCallback)
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//
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// Stops scanning.
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virtual void StopScanning() = 0;
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// https://developer.android.com/reference/android/bluetooth/BluetoothManager#openGattServer(android.content.Context,%20android.bluetooth.BluetoothGattServerCallback)
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//
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// Starts a GATT server. Returns a nullptr upon error.
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virtual std::unique_ptr<GattServer> StartGattServer(
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const ServerGattConnectionLifeCycleCallback& callback) = 0;
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// Starts listening for incoming BLE sockets and returns false upon error.
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virtual bool StartListeningForIncomingBleSockets(
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const ServerBleSocketLifeCycleCallback& callback) = 0;
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// Stops listening for incoming BLE sockets.
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virtual void StopListeningForIncomingBleSockets() = 0;
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// https://developer.android.com/reference/android/bluetooth/BluetoothDevice.html#connectGatt(android.content.Context,%20boolean,%20android.bluetooth.BluetoothGattCallback)
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt.html#requestConnectionPriority(int)
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// https://developer.android.com/reference/android/bluetooth/BluetoothGatt.html#requestMtu(int)
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//
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// Connects to a GATT server and negotiates the specified connection
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// parameters. Returns nullptr upon error.
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//
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// Both connection interval and MTU can be negotiated on a best-effort basis.
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//
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// Power mode should be interpreted in the following way:
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// LOW:
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// - Connection interval = ~11.25ms - 15ms
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// HIGH:
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// - Connection interval = ~100ms - 125ms
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virtual std::unique_ptr<ClientGattConnection> ConnectToGattServer(
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BlePeripheral* peripheral, Mtu mtu, PowerMode power_mode,
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const ClientGattConnectionLifeCycleCallback& callback) = 0;
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// Establishes a BLE socket to the specified remote peripheral. Returns
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// nullptr on error.
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virtual std::unique_ptr<BleSocket> EstablishBleSocket(
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BlePeripheral* peripheral,
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const BleSocketLifeCycleCallback& callback) = 0;
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};
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} // namespace ble_v2
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} // namespace api
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} // namespace nearby
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} // namespace location
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#endif // PLATFORM_API_BLE_V2_H_
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