176 lines
6.6 KiB
Python
176 lines
6.6 KiB
Python
# Copyright 2021-2022 Google LLC
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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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# https://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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# Imports
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# -----------------------------------------------------------------------------
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import asyncio
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import sys
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import os
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import logging
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from colors import color
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from bumble.device import Device
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from bumble.transport import open_transport_or_link
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from bumble.core import BT_BR_EDR_TRANSPORT
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from bumble.avdtp import (
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find_avdtp_service_with_connection,
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AVDTP_AUDIO_MEDIA_TYPE,
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MediaCodecCapabilities,
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MediaPacketPump,
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Protocol,
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Listener
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)
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from bumble.a2dp import (
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SBC_JOINT_STEREO_CHANNEL_MODE,
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SBC_LOUDNESS_ALLOCATION_METHOD,
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make_audio_source_service_sdp_records,
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A2DP_SBC_CODEC_TYPE,
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SbcMediaCodecInformation,
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SbcPacketSource
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)
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# -----------------------------------------------------------------------------
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def sdp_records():
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service_record_handle = 0x00010001
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return {
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service_record_handle: make_audio_source_service_sdp_records(service_record_handle)
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}
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# -----------------------------------------------------------------------------
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def codec_capabilities():
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# NOTE: this shouldn't be hardcoded, but should be inferred from the input file instead
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return MediaCodecCapabilities(
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media_type = AVDTP_AUDIO_MEDIA_TYPE,
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media_codec_type = A2DP_SBC_CODEC_TYPE,
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media_codec_information = SbcMediaCodecInformation.from_discrete_values(
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sampling_frequency = 44100,
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channel_mode = SBC_JOINT_STEREO_CHANNEL_MODE,
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block_length = 16,
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subbands = 8,
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allocation_method = SBC_LOUDNESS_ALLOCATION_METHOD,
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minimum_bitpool_value = 2,
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maximum_bitpool_value = 53
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)
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)
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# -----------------------------------------------------------------------------
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def on_avdtp_connection(read_function, protocol):
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packet_source = SbcPacketSource(read_function, protocol.l2cap_channel.mtu, codec_capabilities())
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packet_pump = MediaPacketPump(packet_source.packets)
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protocol.add_source(packet_source.codec_capabilities, packet_pump)
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# -----------------------------------------------------------------------------
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async def stream_packets(read_function, protocol):
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# Discover all endpoints on the remote device
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endpoints = await protocol.discover_remote_endpoints()
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for endpoint in endpoints:
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print('@@@', endpoint)
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# Select a sink
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sink = protocol.find_remote_sink_by_codec(AVDTP_AUDIO_MEDIA_TYPE, A2DP_SBC_CODEC_TYPE)
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if sink is None:
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print(color('!!! no SBC sink found', 'red'))
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return
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print(f'### Selected sink: {sink.seid}')
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# Stream the packets
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packet_source = SbcPacketSource(read_function, protocol.l2cap_channel.mtu, codec_capabilities())
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packet_pump = MediaPacketPump(packet_source.packets)
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source = protocol.add_source(packet_source.codec_capabilities, packet_pump)
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stream = await protocol.create_stream(source, sink)
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await stream.start()
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await asyncio.sleep(5)
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await stream.stop()
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await asyncio.sleep(5)
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await stream.start()
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await asyncio.sleep(5)
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await stream.stop()
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await stream.close()
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# -----------------------------------------------------------------------------
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async def main():
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if len(sys.argv) < 4:
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print('Usage: run_a2dp_source.py <device-config> <transport-spec> <sbc-file> [<bluetooth-address>]')
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print('example: run_a2dp_source.py classic1.json usb:0 test.sbc E1:CA:72:48:C4:E8')
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return
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print('<<< connecting to HCI...')
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async with await open_transport_or_link(sys.argv[2]) as (hci_source, hci_sink):
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print('<<< connected')
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# Create a device
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device = Device.from_config_file_with_hci(sys.argv[1], hci_source, hci_sink)
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device.classic_enabled = True
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# Setup the SDP to expose the SRC service
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device.sdp_service_records = sdp_records()
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# Start
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await device.power_on()
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with open(sys.argv[3], 'rb') as sbc_file:
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# NOTE: this should be using asyncio file reading, but blocking reads are good enough for testing
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async def read(byte_count):
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return sbc_file.read(byte_count)
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if len(sys.argv) > 4:
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# Connect to a peer
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target_address = sys.argv[4]
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print(f'=== Connecting to {target_address}...')
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connection = await device.connect(target_address, transport=BT_BR_EDR_TRANSPORT)
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print(f'=== Connected to {connection.peer_address}!')
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# Request authentication
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print('*** Authenticating...')
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await connection.authenticate()
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print('*** Authenticated')
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# Enable encryption
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print('*** Enabling encryption...')
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await connection.encrypt()
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print('*** Encryption on')
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# Look for an A2DP service
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avdtp_version = await find_avdtp_service_with_connection(device, connection)
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if not avdtp_version:
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print(color('!!! no A2DP service found'))
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return
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# Create a client to interact with the remote device
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protocol = await Protocol.connect(connection, avdtp_version)
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# Start streaming
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await stream_packets(read, protocol)
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else:
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# Create a listener to wait for AVDTP connections
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listener = Listener(Listener.create_registrar(device), version=(1, 2))
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listener.on('connection', lambda protocol: on_avdtp_connection(read, protocol))
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# Become connectable and wait for a connection
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await device.set_discoverable(True)
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await device.set_connectable(True)
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await hci_source.wait_for_termination()
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# -----------------------------------------------------------------------------
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logging.basicConfig(level = os.environ.get('BUMBLE_LOGLEVEL', 'DEBUG').upper())
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asyncio.run(main())
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