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15 Commits

Author SHA1 Message Date
Gilles Boccon-Gibod 54f2981267 fix uninitialized variable 2024-01-16 16:49:06 -08:00
Charlie Boutier bb025514e7 PandoraHost: compute advertising_interval_max with interval_range 2024-01-12 14:36:22 -08:00
Charlie Boutier e228597269 Pandora host: support advertising interval in advertise 2024-01-12 14:36:22 -08:00
Gilles Boccon-Gibod 95b0d6c6f2 Merge pull request #398 from google/gbg/rfcomm-no-sink
update credits even without a sink
2024-01-11 13:18:15 -08:00
zxzxwu 46ceea7ecd Merge pull request #391 from zxzxwu/remote_feature
LE read remote features
2024-01-10 15:51:32 +08:00
Gilles Boccon-Gibod 30f89d5739 simplify 2024-01-09 18:01:34 -08:00
Gilles Boccon-Gibod 481cf40831 update credits even without a sink 2024-01-09 17:58:52 -08:00
Josh Wu eff05afb7a LE read remote features 2024-01-09 11:30:08 +08:00
zxzxwu d8e6700611 Merge pull request #383 from zxzxwu/controller
Controller: SCO implementation
2024-01-09 09:39:13 +08:00
Gilles Boccon-Gibod 56eb5a933b Merge pull request #394 from google/gbg/hci-latency
add support for HCI latency probing
2024-01-08 09:21:00 -08:00
Gilles Boccon-Gibod caacc0c133 Merge pull request #395 from google/gbg/loopback-quick-fix
compatibility with recent host ACL property changes
2024-01-08 09:20:45 -08:00
Gilles Boccon-Gibod 00cd8fbdd0 compatibility with recent host ACL property changes 2024-01-05 12:17:09 -08:00
Michael Mogenson c48e3f5e9c Merge pull request #393 from mogenson/controller-loopback
apps: Add a controller loopback throughput test app
2024-01-05 13:13:30 -05:00
Michael Mogenson d6bbc1145a apps: Add a controller loopback throughput test app
Add a command line utility to open a transport to a BT controller, put
the controller into local loopback mode, and send and receive ACL data
packets. Record the time it takes to send and receive all packets and
calculate a throughput measurement in kB/s.

This utility is usefull for characterizing the speed of a transport to a
BT controller (such as a TCP socket or serial port) without having to
deal with a connected peer or the variability of over the air
transmissions.

The transport CLI argument is required. The packet size and packet
count arguments are optional. They default to the same values as the
bumble-bench app.
2024-01-05 10:01:24 -05:00
Josh Wu 8d46bc04d2 Controller: SCO implementation 2023-12-30 14:22:58 +08:00
18 changed files with 687 additions and 115 deletions
+1
View File
@@ -33,6 +33,7 @@
"dhkey",
"diversifier",
"endianness",
"ESCO",
"Fitbit",
"GATTLINK",
"HANDSFREE",
+2 -2
View File
@@ -27,8 +27,8 @@ from bumble.colors import color
from bumble.core import name_or_number
from bumble.hci import (
map_null_terminated_utf8_string,
LeFeatureMask,
HCI_SUCCESS,
HCI_LE_SUPPORTED_FEATURES_NAMES,
HCI_VERSION_NAMES,
LMP_VERSION_NAMES,
HCI_Command,
@@ -140,7 +140,7 @@ async def get_le_info(host: Host) -> None:
print(color('LE Features:', 'yellow'))
for feature in host.supported_le_features:
print(' ', name_or_number(HCI_LE_SUPPORTED_FEATURES_NAMES, feature))
print(LeFeatureMask(feature).name)
# -----------------------------------------------------------------------------
+200
View File
@@ -0,0 +1,200 @@
# Copyright 2024 Google LLC
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# https://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
# -----------------------------------------------------------------------------
# Imports
# -----------------------------------------------------------------------------
import asyncio
import logging
import os
import time
from typing import Optional
from bumble.colors import color
from bumble.hci import (
HCI_READ_LOOPBACK_MODE_COMMAND,
HCI_Read_Loopback_Mode_Command,
HCI_WRITE_LOOPBACK_MODE_COMMAND,
HCI_Write_Loopback_Mode_Command,
LoopbackMode,
)
from bumble.host import Host
from bumble.transport import open_transport_or_link
import click
class Loopback:
"""Send and receive ACL data packets in local loopback mode"""
def __init__(self, packet_size: int, packet_count: int, transport: str):
self.transport = transport
self.packet_size = packet_size
self.packet_count = packet_count
self.connection_handle: Optional[int] = None
self.connection_event = asyncio.Event()
self.done = asyncio.Event()
self.expected_cid = 0
self.bytes_received = 0
self.start_timestamp = 0.0
self.last_timestamp = 0.0
def on_connection(self, connection_handle: int, *args):
"""Retrieve connection handle from new connection event"""
if not self.connection_event.is_set():
# save first connection handle for ACL
# subsequent connections are SCO
self.connection_handle = connection_handle
self.connection_event.set()
def on_l2cap_pdu(self, connection_handle: int, cid: int, pdu: bytes):
"""Calculate packet receive speed"""
now = time.time()
print(f'<<< Received packet {cid}: {len(pdu)} bytes')
assert connection_handle == self.connection_handle
assert cid == self.expected_cid
self.expected_cid += 1
if cid == 0:
self.start_timestamp = now
else:
elapsed_since_start = now - self.start_timestamp
elapsed_since_last = now - self.last_timestamp
self.bytes_received += len(pdu)
instant_rx_speed = len(pdu) / elapsed_since_last
average_rx_speed = self.bytes_received / elapsed_since_start
print(
color(
f'@@@ RX speed: instant={instant_rx_speed:.4f},'
f' average={average_rx_speed:.4f}',
'cyan',
)
)
self.last_timestamp = now
if self.expected_cid == self.packet_count:
print(color('@@@ Received last packet', 'green'))
self.done.set()
async def run(self):
"""Run a loopback throughput test"""
print(color('>>> Connecting to HCI...', 'green'))
async with await open_transport_or_link(self.transport) as (
hci_source,
hci_sink,
):
print(color('>>> Connected', 'green'))
host = Host(hci_source, hci_sink)
await host.reset()
# make sure data can fit in one l2cap pdu
l2cap_header_size = 4
max_packet_size = host.acl_packet_queue.max_packet_size - l2cap_header_size
if self.packet_size > max_packet_size:
print(
color(
f'!!! Packet size ({self.packet_size}) larger than max supported'
f' size ({max_packet_size})',
'red',
)
)
return
if not host.supports_command(
HCI_WRITE_LOOPBACK_MODE_COMMAND
) or not host.supports_command(HCI_READ_LOOPBACK_MODE_COMMAND):
print(color('!!! Loopback mode not supported', 'red'))
return
# set event callbacks
host.on('connection', self.on_connection)
host.on('l2cap_pdu', self.on_l2cap_pdu)
loopback_mode = LoopbackMode.LOCAL
print(color('### Setting loopback mode', 'blue'))
await host.send_command(
HCI_Write_Loopback_Mode_Command(loopback_mode=LoopbackMode.LOCAL),
check_result=True,
)
print(color('### Checking loopback mode', 'blue'))
response = await host.send_command(
HCI_Read_Loopback_Mode_Command(), check_result=True
)
if response.return_parameters.loopback_mode != loopback_mode:
print(color('!!! Loopback mode mismatch', 'red'))
return
await self.connection_event.wait()
print(color('### Connected', 'cyan'))
print(color('=== Start sending', 'magenta'))
start_time = time.time()
bytes_sent = 0
for cid in range(0, self.packet_count):
# using the cid as an incremental index
host.send_l2cap_pdu(
self.connection_handle, cid, bytes(self.packet_size)
)
print(
color(
f'>>> Sending packet {cid}: {self.packet_size} bytes', 'yellow'
)
)
bytes_sent += self.packet_size # don't count L2CAP or HCI header sizes
await asyncio.sleep(0) # yield to allow packet receive
await self.done.wait()
print(color('=== Done!', 'magenta'))
elapsed = time.time() - start_time
average_tx_speed = bytes_sent / elapsed
print(
color(
f'@@@ TX speed: average={average_tx_speed:.4f} ({bytes_sent} bytes'
f' in {elapsed:.2f} seconds)',
'green',
)
)
# -----------------------------------------------------------------------------
@click.command()
@click.option(
'--packet-size',
'-s',
metavar='SIZE',
type=click.IntRange(8, 4096),
default=500,
help='Packet size',
)
@click.option(
'--packet-count',
'-c',
metavar='COUNT',
type=int,
default=10,
help='Packet count',
)
@click.argument('transport')
def main(packet_size, packet_count, transport):
logging.basicConfig(level=os.environ.get('BUMBLE_LOGLEVEL', 'WARNING').upper())
loopback = Loopback(packet_size, packet_count, transport)
asyncio.run(loopback.run())
# -----------------------------------------------------------------------------
if __name__ == '__main__':
main()
+144 -24
View File
@@ -19,6 +19,7 @@ from __future__ import annotations
import logging
import asyncio
import dataclasses
import itertools
import random
import struct
@@ -42,6 +43,7 @@ from bumble.hci import (
HCI_LE_1M_PHY,
HCI_SUCCESS,
HCI_UNKNOWN_HCI_COMMAND_ERROR,
HCI_UNKNOWN_CONNECTION_IDENTIFIER_ERROR,
HCI_REMOTE_USER_TERMINATED_CONNECTION_ERROR,
HCI_VERSION_BLUETOOTH_CORE_5_0,
Address,
@@ -53,6 +55,7 @@ from bumble.hci import (
HCI_Connection_Request_Event,
HCI_Disconnection_Complete_Event,
HCI_Encryption_Change_Event,
HCI_Synchronous_Connection_Complete_Event,
HCI_LE_Advertising_Report_Event,
HCI_LE_Connection_Complete_Event,
HCI_LE_Read_Remote_Features_Complete_Event,
@@ -60,10 +63,11 @@ from bumble.hci import (
HCI_Packet,
HCI_Role_Change_Event,
)
from typing import Optional, Union, Dict, TYPE_CHECKING
from typing import Optional, Union, Dict, Any, TYPE_CHECKING
if TYPE_CHECKING:
from bumble.transport.common import TransportSink, TransportSource
from bumble.link import LocalLink
from bumble.transport.common import TransportSink
# -----------------------------------------------------------------------------
# Logging
@@ -79,15 +83,18 @@ class DataObject:
# -----------------------------------------------------------------------------
@dataclasses.dataclass
class Connection:
def __init__(self, controller, handle, role, peer_address, link, transport):
self.controller = controller
self.handle = handle
self.role = role
self.peer_address = peer_address
self.link = link
controller: Controller
handle: int
role: int
peer_address: Address
link: Any
transport: int
link_type: int
def __post_init__(self):
self.assembler = HCI_AclDataPacketAssembler(self.on_acl_pdu)
self.transport = transport
def on_hci_acl_data_packet(self, packet):
self.assembler.feed_packet(packet)
@@ -106,10 +113,10 @@ class Connection:
class Controller:
def __init__(
self,
name,
name: str,
host_source=None,
host_sink: Optional[TransportSink] = None,
link=None,
link: Optional[LocalLink] = None,
public_address: Optional[Union[bytes, str, Address]] = None,
):
self.name = name
@@ -359,12 +366,13 @@ class Controller:
if connection is None:
connection_handle = self.allocate_connection_handle()
connection = Connection(
self,
connection_handle,
BT_PERIPHERAL_ROLE,
peer_address,
self.link,
BT_LE_TRANSPORT,
controller=self,
handle=connection_handle,
role=BT_PERIPHERAL_ROLE,
peer_address=peer_address,
link=self.link,
transport=BT_LE_TRANSPORT,
link_type=HCI_Connection_Complete_Event.ACL_LINK_TYPE,
)
self.peripheral_connections[peer_address] = connection
logger.debug(f'New PERIPHERAL connection handle: 0x{connection_handle:04X}')
@@ -418,12 +426,13 @@ class Controller:
if connection is None:
connection_handle = self.allocate_connection_handle()
connection = Connection(
self,
connection_handle,
BT_CENTRAL_ROLE,
peer_address,
self.link,
BT_LE_TRANSPORT,
controller=self,
handle=connection_handle,
role=BT_CENTRAL_ROLE,
peer_address=peer_address,
link=self.link,
transport=BT_LE_TRANSPORT,
link_type=HCI_Connection_Complete_Event.ACL_LINK_TYPE,
)
self.central_connections[peer_address] = connection
logger.debug(
@@ -568,6 +577,7 @@ class Controller:
peer_address=peer_address,
link=self.link,
transport=BT_BR_EDR_TRANSPORT,
link_type=HCI_Connection_Complete_Event.ACL_LINK_TYPE,
)
self.classic_connections[peer_address] = connection
logger.debug(
@@ -621,6 +631,42 @@ class Controller:
)
)
def on_classic_sco_connection_complete(
self, peer_address: Address, status: int, link_type: int
):
if status == HCI_SUCCESS:
# Allocate (or reuse) a connection handle
connection_handle = self.allocate_connection_handle()
connection = Connection(
controller=self,
handle=connection_handle,
# Role doesn't matter in SCO.
role=BT_CENTRAL_ROLE,
peer_address=peer_address,
link=self.link,
transport=BT_BR_EDR_TRANSPORT,
link_type=link_type,
)
self.classic_connections[peer_address] = connection
logger.debug(f'New SCO connection handle: 0x{connection_handle:04X}')
else:
connection_handle = 0
self.send_hci_packet(
HCI_Synchronous_Connection_Complete_Event(
status=status,
connection_handle=connection_handle,
bd_addr=peer_address,
link_type=link_type,
# TODO: Provide SCO connection parameters.
transmission_interval=0,
retransmission_window=0,
rx_packet_length=0,
tx_packet_length=0,
air_mode=0,
)
)
############################################################
# Advertising support
############################################################
@@ -740,6 +786,68 @@ class Controller:
)
self.link.classic_accept_connection(self, command.bd_addr, command.role)
def on_hci_enhanced_setup_synchronous_connection_command(self, command):
'''
See Bluetooth spec Vol 4, Part E - 7.1.45 Enhanced Setup Synchronous Connection command
'''
if self.link is None:
return
if not (
connection := self.find_classic_connection_by_handle(
command.connection_handle
)
):
self.send_hci_packet(
HCI_Command_Status_Event(
status=HCI_UNKNOWN_CONNECTION_IDENTIFIER_ERROR,
num_hci_command_packets=1,
command_opcode=command.op_code,
)
)
return
self.send_hci_packet(
HCI_Command_Status_Event(
status=HCI_SUCCESS,
num_hci_command_packets=1,
command_opcode=command.op_code,
)
)
self.link.classic_sco_connect(
self, connection.peer_address, HCI_Connection_Complete_Event.ESCO_LINK_TYPE
)
def on_hci_enhanced_accept_synchronous_connection_request_command(self, command):
'''
See Bluetooth spec Vol 4, Part E - 7.1.46 Enhanced Accept Synchronous Connection Request command
'''
if self.link is None:
return
if not (connection := self.find_classic_connection_by_address(command.bd_addr)):
self.send_hci_packet(
HCI_Command_Status_Event(
status=HCI_UNKNOWN_CONNECTION_IDENTIFIER_ERROR,
num_hci_command_packets=1,
command_opcode=command.op_code,
)
)
return
self.send_hci_packet(
HCI_Command_Status_Event(
status=HCI_SUCCESS,
num_hci_command_packets=1,
command_opcode=command.op_code,
)
)
self.link.classic_accept_sco_connection(
self, connection.peer_address, HCI_Connection_Complete_Event.ESCO_LINK_TYPE
)
def on_hci_switch_role_command(self, command):
'''
See Bluetooth spec Vol 4, Part E - 7.2.8 Switch Role command
@@ -1104,6 +1212,18 @@ class Controller:
See Bluetooth spec Vol 4, Part E - 7.8.21 LE Read Remote Features Command
'''
handle = command.connection_handle
if not self.find_connection_by_handle(handle):
self.send_hci_packet(
HCI_Command_Status_Event(
status=HCI_INVALID_HCI_COMMAND_PARAMETERS_ERROR,
num_hci_command_packets=1,
command_opcode=command.op_code,
)
)
return
# First, say that the command is pending
self.send_hci_packet(
HCI_Command_Status_Event(
@@ -1117,7 +1237,7 @@ class Controller:
self.send_hci_packet(
HCI_LE_Read_Remote_Features_Complete_Event(
status=HCI_SUCCESS,
connection_handle=0,
connection_handle=handle,
le_features=bytes.fromhex('dd40000000000000'),
)
)
+64 -19
View File
@@ -49,7 +49,6 @@ from .hci import (
HCI_AUTHENTICATED_COMBINATION_KEY_GENERATED_FROM_P_256_TYPE,
HCI_CENTRAL_ROLE,
HCI_COMMAND_STATUS_PENDING,
HCI_CONNECTED_ISOCHRONOUS_STREAM_LE_SUPPORTED_FEATURE,
HCI_CONNECTION_REJECTED_DUE_TO_LIMITED_RESOURCES_ERROR,
HCI_DISPLAY_YES_NO_IO_CAPABILITY,
HCI_DISPLAY_ONLY_IO_CAPABILITY,
@@ -60,12 +59,8 @@ from .hci import (
HCI_LE_1M_PHY,
HCI_LE_1M_PHY_BIT,
HCI_LE_2M_PHY,
HCI_LE_2M_PHY_LE_SUPPORTED_FEATURE,
HCI_LE_CLEAR_RESOLVING_LIST_COMMAND,
HCI_LE_CODED_PHY,
HCI_LE_CODED_PHY_BIT,
HCI_LE_CODED_PHY_LE_SUPPORTED_FEATURE,
HCI_LE_EXTENDED_ADVERTISING_LE_SUPPORTED_FEATURE,
HCI_LE_EXTENDED_CREATE_CONNECTION_COMMAND,
HCI_LE_RAND_COMMAND,
HCI_LE_READ_PHY_COMMAND,
@@ -86,7 +81,7 @@ from .hci import (
HCI_Constant,
HCI_Create_Connection_Cancel_Command,
HCI_Create_Connection_Command,
HCI_Create_Connection_Command,
HCI_Connection_Complete_Event,
HCI_Disconnect_Command,
HCI_Encryption_Change_Event,
HCI_Error,
@@ -107,6 +102,7 @@ from .hci import (
HCI_LE_Extended_Create_Connection_Command,
HCI_LE_Rand_Command,
HCI_LE_Read_PHY_Command,
HCI_LE_Read_Remote_Features_Command,
HCI_LE_Reject_CIS_Request_Command,
HCI_LE_Remove_Advertising_Set_Command,
HCI_LE_Set_Address_Resolution_Enable_Command,
@@ -152,6 +148,7 @@ from .hci import (
HCI_Write_Secure_Connections_Host_Support_Command,
HCI_Write_Simple_Pairing_Mode_Command,
OwnAddressType,
LeFeatureMask,
phy_list_to_bits,
)
from .host import Host
@@ -682,6 +679,7 @@ class Connection(CompositeEventEmitter):
self_address: Address
peer_address: Address
peer_resolvable_address: Optional[Address]
peer_le_features: Optional[LeFeatureMask]
role: int
encryption: int
authenticated: bool
@@ -758,6 +756,7 @@ class Connection(CompositeEventEmitter):
) # By default, use the device's shared server
self.pairing_peer_io_capability = None
self.pairing_peer_authentication_requirements = None
self.peer_le_features = None
# [Classic only]
@classmethod
@@ -906,6 +905,15 @@ class Connection(CompositeEventEmitter):
async def request_remote_name(self):
return await self.device.request_remote_name(self)
async def get_remote_le_features(self) -> LeFeatureMask:
"""[LE Only] Reads remote LE supported features.
Returns:
LE features supported by the remote device.
"""
self.peer_le_features = await self.device.get_remote_le_features(self)
return self.peer_le_features
async def __aenter__(self):
return self
@@ -1538,9 +1546,7 @@ class Device(CompositeEventEmitter):
if self.cis_enabled:
await self.send_command(
HCI_LE_Set_Host_Feature_Command(
bit_number=(
HCI_CONNECTED_ISOCHRONOUS_STREAM_LE_SUPPORTED_FEATURE
),
bit_number=LeFeatureMask.CONNECTED_ISOCHRONOUS_STREAM,
bit_value=1,
)
)
@@ -1596,21 +1602,21 @@ class Device(CompositeEventEmitter):
)
)
def supports_le_feature(self, feature):
return self.host.supports_le_feature(feature)
def supports_le_features(self, feature: LeFeatureMask) -> bool:
return self.host.supports_le_features(feature)
def supports_le_phy(self, phy):
if phy == HCI_LE_1M_PHY:
return True
feature_map = {
HCI_LE_2M_PHY: HCI_LE_2M_PHY_LE_SUPPORTED_FEATURE,
HCI_LE_CODED_PHY: HCI_LE_CODED_PHY_LE_SUPPORTED_FEATURE,
HCI_LE_2M_PHY: LeFeatureMask.LE_2M_PHY,
HCI_LE_CODED_PHY: LeFeatureMask.LE_CODED_PHY,
}
if phy not in feature_map:
raise ValueError('invalid PHY')
return self.host.supports_le_feature(feature_map[phy])
return self.host.supports_le_features(feature_map[phy])
@deprecated("Please use start_legacy_advertising.")
async def start_advertising(
@@ -1920,8 +1926,8 @@ class Device(CompositeEventEmitter):
self.advertisement_accumulators = {}
# Enable scanning
if not legacy and self.supports_le_feature(
HCI_LE_EXTENDED_ADVERTISING_LE_SUPPORTED_FEATURE
if not legacy and self.supports_le_features(
LeFeatureMask.LE_EXTENDED_ADVERTISING
):
# Set the scanning parameters
scan_type = (
@@ -1939,7 +1945,7 @@ class Device(CompositeEventEmitter):
scanning_phys_bits |= 1 << HCI_LE_1M_PHY_BIT
scanning_phy_count += 1
if HCI_LE_CODED_PHY in scanning_phys:
if self.supports_le_feature(HCI_LE_CODED_PHY_LE_SUPPORTED_FEATURE):
if self.supports_le_features(LeFeatureMask.LE_CODED_PHY):
scanning_phys_bits |= 1 << HCI_LE_CODED_PHY_BIT
scanning_phy_count += 1
@@ -2000,7 +2006,7 @@ class Device(CompositeEventEmitter):
async def stop_scanning(self) -> None:
# Disable scanning
if self.supports_le_feature(HCI_LE_EXTENDED_ADVERTISING_LE_SUPPORTED_FEATURE):
if self.supports_le_features(LeFeatureMask.LE_EXTENDED_ADVERTISING):
await self.send_command(
HCI_LE_Set_Extended_Scan_Enable_Command(
enable=0, filter_duplicates=0, duration=0, period=0
@@ -3142,6 +3148,32 @@ class Device(CompositeEventEmitter):
)
raise HCI_StatusError(result)
async def get_remote_le_features(self, connection: Connection) -> LeFeatureMask:
"""[LE Only] Reads remote LE supported features.
Args:
handle: connection handle to read LE features.
Returns:
LE features supported by the remote device.
"""
with closing(EventWatcher()) as watcher:
read_feature_future: asyncio.Future[
LeFeatureMask
] = asyncio.get_running_loop().create_future()
def on_le_remote_features(handle: int, features: int):
if handle == connection.handle:
read_feature_future.set_result(LeFeatureMask(features))
watcher.on(self.host, 'le_remote_features', on_le_remote_features)
await self.send_command(
HCI_LE_Read_Remote_Features_Command(
connection_handle=connection.handle
),
)
return await read_feature_future
@host_event_handler
def on_flush(self):
self.emit('flush')
@@ -3319,8 +3351,21 @@ class Device(CompositeEventEmitter):
def on_connection_request(self, bd_addr, class_of_device, link_type):
logger.debug(f'*** Connection request: {bd_addr}')
# Handle SCO request.
if link_type in (
HCI_Connection_Complete_Event.SCO_LINK_TYPE,
HCI_Connection_Complete_Event.ESCO_LINK_TYPE,
):
if connection := self.find_connection_by_bd_addr(
bd_addr, transport=BT_BR_EDR_TRANSPORT
):
self.emit('sco_request', connection, link_type)
else:
logger.error(f'SCO request from a non-connected device {bd_addr}')
return
# match a pending future using `bd_addr`
if bd_addr in self.classic_pending_accepts:
elif bd_addr in self.classic_pending_accepts:
future, *_ = self.classic_pending_accepts.pop(bd_addr)
future.set_result((bd_addr, class_of_device, link_type))
+82 -50
View File
@@ -1360,55 +1360,51 @@ HCI_SUPPORTED_COMMANDS_FLAGS = (
# LE Supported Features
# See Bluetooth spec @ Vol 6, Part B, 4.6 FEATURE SUPPORT
HCI_LE_ENCRYPTION_LE_SUPPORTED_FEATURE = 0
HCI_CONNECTION_PARAMETERS_REQUEST_PROCEDURE_LE_SUPPORTED_FEATURE = 1
HCI_EXTENDED_REJECT_INDICATION_LE_SUPPORTED_FEATURE = 2
HCI_PERIPHERAL_INITIATED_FEATURE_EXCHANGE_LE_SUPPORTED_FEATURE = 3
HCI_LE_PING_LE_SUPPORTED_FEATURE = 4
HCI_LE_DATA_PACKET_LENGTH_EXTENSION_LE_SUPPORTED_FEATURE = 5
HCI_LL_PRIVACY_LE_SUPPORTED_FEATURE = 6
HCI_EXTENDED_SCANNER_FILTER_POLICIES_LE_SUPPORTED_FEATURE = 7
HCI_LE_2M_PHY_LE_SUPPORTED_FEATURE = 8
HCI_STABLE_MODULATION_INDEX_TRANSMITTER_LE_SUPPORTED_FEATURE = 9
HCI_STABLE_MODULATION_INDEX_RECEIVER_LE_SUPPORTED_FEATURE = 10
HCI_LE_CODED_PHY_LE_SUPPORTED_FEATURE = 11
HCI_LE_EXTENDED_ADVERTISING_LE_SUPPORTED_FEATURE = 12
HCI_LE_PERIODIC_ADVERTISING_LE_SUPPORTED_FEATURE = 13
HCI_CHANNEL_SELECTION_ALGORITHM_2_LE_SUPPORTED_FEATURE = 14
HCI_LE_POWER_CLASS_1_LE_SUPPORTED_FEATURE = 15
HCI_MINIMUM_NUMBER_OF_USED_CHANNELS_PROCEDURE_LE_SUPPORTED_FEATURE = 16
HCI_CONNECTION_CTE_REQUEST_LE_SUPPORTED_FEATURE = 17
HCI_CONNECTION_CTE_RESPONSE_LE_SUPPORTED_FEATURE = 18
HCI_CONNECTIONLESS_CTE_TRANSMITTER_LE_SUPPORTED_FEATURE = 19
HCI_CONNECTIONLESS_CTR_RECEIVER_LE_SUPPORTED_FEATURE = 20
HCI_ANTENNA_SWITCHING_DURING_CTE_TRANSMISSION_LE_SUPPORTED_FEATURE = 21
HCI_ANTENNA_SWITCHING_DURING_CTE_RECEPTION_LE_SUPPORTED_FEATURE = 22
HCI_RECEIVING_CONSTANT_TONE_EXTENSIONS_LE_SUPPORTED_FEATURE = 23
HCI_PERIODIC_ADVERTISING_SYNC_TRANSFER_SENDER_LE_SUPPORTED_FEATURE = 24
HCI_PERIODIC_ADVERTISING_SYNC_TRANSFER_RECIPIENT_LE_SUPPORTED_FEATURE = 25
HCI_SLEEP_CLOCK_ACCURACY_UPDATES_LE_SUPPORTED_FEATURE = 26
HCI_REMOTE_PUBLIC_KEY_VALIDATION_LE_SUPPORTED_FEATURE = 27
HCI_CONNECTED_ISOCHRONOUS_STREAM_CENTRAL_LE_SUPPORTED_FEATURE = 28
HCI_CONNECTED_ISOCHRONOUS_STREAM_PERIPHERAL_LE_SUPPORTED_FEATURE = 29
HCI_ISOCHRONOUS_BROADCASTER_LE_SUPPORTED_FEATURE = 30
HCI_SYNCHRONIZED_RECEIVER_LE_SUPPORTED_FEATURE = 31
HCI_CONNECTED_ISOCHRONOUS_STREAM_LE_SUPPORTED_FEATURE = 32
HCI_LE_POWER_CONTROL_REQUEST_LE_SUPPORTED_FEATURE = 33
HCI_LE_POWER_CONTROL_REQUEST_DUP_LE_SUPPORTED_FEATURE = 34
HCI_LE_PATH_LOSS_MONITORING_LE_SUPPORTED_FEATURE = 35
HCI_PERIODIC_ADVERTISING_ADI_SUPPORT_LE_SUPPORTED_FEATURE = 36
HCI_CONNECTION_SUBRATING_LE_SUPPORTED_FEATURE = 37
HCI_CONNECTION_SUBRATING_HOST_SUPPORT_LE_SUPPORTED_FEATURE = 38
HCI_CHANNEL_CLASSIFICATION_LE_SUPPORTED_FEATURE = 39
HCI_ADVERTISING_CODING_SELECTION_LE_SUPPORTED_FEATURE = 40
HCI_ADVERTISING_CODING_SELECTION_HOST_SUPPORT_LE_SUPPORTED_FEATURE = 41
HCI_PERIODIC_ADVERTISING_WITH_RESPONSES_ADVERTISER_LE_SUPPORTED_FEATURE = 43
HCI_PERIODIC_ADVERTISING_WITH_RESPONSES_SCANNER_LE_SUPPORTED_FEATURE = 44
HCI_LE_SUPPORTED_FEATURES_NAMES = {
flag: feature_name for (feature_name, flag) in globals().items()
if feature_name.startswith('HCI_') and feature_name.endswith('_LE_SUPPORTED_FEATURE')
}
class LeFeatureMask(enum.IntFlag):
LE_ENCRYPTION = 1 << 0
CONNECTION_PARAMETERS_REQUEST_PROCEDURE = 1 << 1
EXTENDED_REJECT_INDICATION = 1 << 2
PERIPHERAL_INITIATED_FEATURE_EXCHANGE = 1 << 3
LE_PING = 1 << 4
LE_DATA_PACKET_LENGTH_EXTENSION = 1 << 5
LL_PRIVACY = 1 << 6
EXTENDED_SCANNER_FILTER_POLICIES = 1 << 7
LE_2M_PHY = 1 << 8
STABLE_MODULATION_INDEX_TRANSMITTER = 1 << 9
STABLE_MODULATION_INDEX_RECEIVER = 1 << 10
LE_CODED_PHY = 1 << 11
LE_EXTENDED_ADVERTISING = 1 << 12
LE_PERIODIC_ADVERTISING = 1 << 13
CHANNEL_SELECTION_ALGORITHM_2 = 1 << 14
LE_POWER_CLASS_1 = 1 << 15
MINIMUM_NUMBER_OF_USED_CHANNELS_PROCEDURE = 1 << 16
CONNECTION_CTE_REQUEST = 1 << 17
CONNECTION_CTE_RESPONSE = 1 << 18
CONNECTIONLESS_CTE_TRANSMITTER = 1 << 19
CONNECTIONLESS_CTR_RECEIVER = 1 << 20
ANTENNA_SWITCHING_DURING_CTE_TRANSMISSION = 1 << 21
ANTENNA_SWITCHING_DURING_CTE_RECEPTION = 1 << 22
RECEIVING_CONSTANT_TONE_EXTENSIONS = 1 << 23
PERIODIC_ADVERTISING_SYNC_TRANSFER_SENDER = 1 << 24
PERIODIC_ADVERTISING_SYNC_TRANSFER_RECIPIENT = 1 << 25
SLEEP_CLOCK_ACCURACY_UPDATES = 1 << 26
REMOTE_PUBLIC_KEY_VALIDATION = 1 << 27
CONNECTED_ISOCHRONOUS_STREAM_CENTRAL = 1 << 28
CONNECTED_ISOCHRONOUS_STREAM_PERIPHERAL = 1 << 29
ISOCHRONOUS_BROADCASTER = 1 << 30
SYNCHRONIZED_RECEIVER = 1 << 31
CONNECTED_ISOCHRONOUS_STREAM = 1 << 32
LE_POWER_CONTROL_REQUEST = 1 << 33
LE_POWER_CONTROL_REQUEST_DUP = 1 << 34
LE_PATH_LOSS_MONITORING = 1 << 35
PERIODIC_ADVERTISING_ADI_SUPPORT = 1 << 36
CONNECTION_SUBRATING = 1 << 37
CONNECTION_SUBRATING_HOST_SUPPORT = 1 << 38
CHANNEL_CLASSIFICATION = 1 << 39
ADVERTISING_CODING_SELECTION = 1 << 40
ADVERTISING_CODING_SELECTION_HOST_SUPPORT = 1 << 41
PERIODIC_ADVERTISING_WITH_RESPONSES_ADVERTISER = 1 << 43
PERIODIC_ADVERTISING_WITH_RESPONSES_SCANNER = 1 << 44
# fmt: on
@@ -2026,6 +2022,17 @@ class OwnAddressType(enum.IntEnum):
return {'size': 1, 'mapper': lambda x: OwnAddressType(x).name}
# -----------------------------------------------------------------------------
class LoopbackMode(enum.IntEnum):
DISABLED = 0
LOCAL = 1
REMOTE = 2
@classmethod
def type_spec(cls):
return {'size': 1, 'mapper': lambda x: LoopbackMode(x).name}
# -----------------------------------------------------------------------------
class HCI_Packet:
'''
@@ -3352,6 +3359,27 @@ class HCI_Read_Encryption_Key_Size_Command(HCI_Command):
'''
# -----------------------------------------------------------------------------
@HCI_Command.command(
return_parameters_fields=[
('status', STATUS_SPEC),
('loopback_mode', LoopbackMode.type_spec()),
],
)
class HCI_Read_Loopback_Mode_Command(HCI_Command):
'''
See Bluetooth spec @ 7.6.1 Read Loopback Mode Command
'''
# -----------------------------------------------------------------------------
@HCI_Command.command([('loopback_mode', 1)])
class HCI_Write_Loopback_Mode_Command(HCI_Command):
'''
See Bluetooth spec @ 7.6.2 Write Loopback Mode Command
'''
# -----------------------------------------------------------------------------
@HCI_Command.command([('le_event_mask', 8)])
class HCI_LE_Set_Event_Mask_Command(HCI_Command):
@@ -4733,7 +4761,11 @@ class HCI_Event(HCI_Packet):
HCI_Object.init_from_bytes(self, parameters, 0, fields)
return self
def __init__(self, event_code, parameters=None, **kwargs):
def __init__(self, event_code=-1, parameters=None, **kwargs):
# Since the legacy implementation relies on an __init__ injector, typing always
# complains that positional argument event_code is not passed, so here sets a
# default value to allow building derived HCI_Event without event_code.
assert event_code != -1
super().__init__(HCI_Event.event_name(event_code))
if (fields := getattr(self, 'fields', None)) and kwargs:
HCI_Object.init_from_fields(self, fields, kwargs)
+3 -2
View File
@@ -18,7 +18,7 @@
from __future__ import annotations
from collections.abc import Callable, MutableMapping
from typing import cast, Any
from typing import cast, Any, Optional
import logging
from bumble import avdtp
@@ -69,7 +69,7 @@ PSM_NAMES = {
class PacketTracer:
class AclStream:
psms: MutableMapping[int, int]
peer: PacketTracer.AclStream
peer: Optional[PacketTracer.AclStream]
avdtp_assemblers: MutableMapping[int, avdtp.MessageAssembler]
def __init__(self, analyzer: PacketTracer.Analyzer) -> None:
@@ -77,6 +77,7 @@ class PacketTracer:
self.packet_assembler = HCI_AclDataPacketAssembler(self.on_acl_pdu)
self.avdtp_assemblers = {} # AVDTP assemblers, by source_cid
self.psms = {} # PSM, by source_cid
self.peer = None
# pylint: disable=too-many-nested-blocks
def on_acl_pdu(self, pdu: bytes) -> None:
+15 -2
View File
@@ -70,6 +70,7 @@ from .hci import (
HCI_Reset_Command,
HCI_Set_Event_Mask_Command,
HCI_SynchronousDataPacket,
LeFeatureMask,
)
from .core import (
BT_BR_EDR_TRANSPORT,
@@ -487,8 +488,8 @@ class Host(AbortableEventEmitter):
return commands
def supports_le_feature(self, feature):
return (self.local_le_features & (1 << feature)) != 0
def supports_le_features(self, feature: LeFeatureMask) -> bool:
return (self.local_le_features & feature) == feature
@property
def supported_le_features(self):
@@ -1033,3 +1034,15 @@ class Host(AbortableEventEmitter):
event.bd_addr,
event.host_supported_features,
)
def on_hci_le_read_remote_features_complete_event(self, event):
if event.status != HCI_SUCCESS:
self.emit(
'le_remote_features_failure', event.connection_handle, event.status
)
else:
self.emit(
'le_remote_features',
event.connection_handle,
int.from_bytes(event.le_features, 'little'),
)
+55 -1
View File
@@ -26,9 +26,13 @@ from bumble.hci import (
HCI_SUCCESS,
HCI_CONNECTION_ACCEPT_TIMEOUT_ERROR,
HCI_CONNECTION_TIMEOUT_ERROR,
HCI_UNKNOWN_CONNECTION_IDENTIFIER_ERROR,
HCI_PAGE_TIMEOUT_ERROR,
HCI_Connection_Complete_Event,
)
from bumble import controller
from typing import Optional, Set
# -----------------------------------------------------------------------------
# Logging
@@ -57,6 +61,8 @@ class LocalLink:
Link bus for controllers to communicate with each other
'''
controllers: Set[controller.Controller]
def __init__(self):
self.controllers = set()
self.pending_connection = None
@@ -79,7 +85,9 @@ class LocalLink:
return controller
return None
def find_classic_controller(self, address):
def find_classic_controller(
self, address: Address
) -> Optional[controller.Controller]:
for controller in self.controllers:
if controller.public_address == address:
return controller
@@ -271,6 +279,52 @@ class LocalLink:
initiator_controller.public_address, int(not (initiator_new_role))
)
def classic_sco_connect(
self,
initiator_controller: controller.Controller,
responder_address: Address,
link_type: int,
):
logger.debug(
f'[Classic] {initiator_controller.public_address} connects SCO to {responder_address}'
)
responder_controller = self.find_classic_controller(responder_address)
# Initiator controller should handle it.
assert responder_controller
responder_controller.on_classic_connection_request(
initiator_controller.public_address,
link_type,
)
def classic_accept_sco_connection(
self,
responder_controller: controller.Controller,
initiator_address: Address,
link_type: int,
):
logger.debug(
f'[Classic] {responder_controller.public_address} accepts to connect SCO {initiator_address}'
)
initiator_controller = self.find_classic_controller(initiator_address)
if initiator_controller is None:
responder_controller.on_classic_sco_connection_complete(
responder_controller.public_address,
HCI_UNKNOWN_CONNECTION_IDENTIFIER_ERROR,
link_type,
)
return
async def task():
initiator_controller.on_classic_sco_connection_complete(
responder_controller.public_address, HCI_SUCCESS, link_type
)
asyncio.create_task(task())
responder_controller.on_classic_sco_connection_complete(
initiator_controller.public_address, HCI_SUCCESS, link_type
)
# -----------------------------------------------------------------------------
class RemoteLink:
+5 -4
View File
@@ -285,10 +285,11 @@ class HostService(HostServicer):
raise NotImplementedError(
"TODO: add support for extended advertising in Bumble"
)
if request.interval:
raise NotImplementedError("TODO: add support for `request.interval`")
if request.interval_range:
raise NotImplementedError("TODO: add support for `request.interval_range`")
if advertising_interval := request.interval:
self.device.config.advertising_interval_min = int(advertising_interval)
self.device.config.advertising_interval_max = int(advertising_interval)
if interval_range := request.interval_range:
self.device.config.advertising_interval_max += int(interval_range)
if request.primary_phy:
raise NotImplementedError("TODO: add support for `request.primary_phy`")
if request.secondary_phy:
+3 -2
View File
@@ -538,8 +538,9 @@ class DLC(EventEmitter):
f'[{self.dlci}] {len(data)} bytes, '
f'rx_credits={self.rx_credits}: {data.hex()}'
)
if len(data) and self.sink:
self.sink(data) # pylint: disable=not-callable
if data:
if self.sink:
self.sink(data) # pylint: disable=not-callable
# Update the credits
if self.rx_credits > 0:
+3 -3
View File
@@ -82,14 +82,13 @@ async def open_transport(name: str) -> Transport:
scheme, *tail = name.split(':', 1)
spec = tail[0] if tail else None
metadata = None
if spec:
# Metadata may precede the spec
if spec.startswith('['):
metadata_str, *tail = spec[1:].split(']')
spec = tail[0] if tail else None
metadata = dict([entry.split('=') for entry in metadata_str.split(',')])
else:
metadata = None
transport = await _open_transport(scheme, spec)
if metadata:
@@ -198,12 +197,13 @@ async def open_transport_or_link(name: str) -> Transport:
"""
if name.startswith('link-relay:'):
logger.warning('Link Relay has been deprecated.')
from ..controller import Controller
from ..link import RemoteLink # lazy import
link = RemoteLink(name[11:])
await link.wait_until_connected()
controller = Controller('remote', link=link)
controller = Controller('remote', link=link) # type:ignore[arg-type]
class LinkTransport(Transport):
async def close(self):
@@ -10,7 +10,7 @@ android {
defaultConfig {
applicationId = "com.github.google.bumble.remotehci"
minSdk = 26
minSdk = 29
targetSdk = 33
versionCode = 1
versionName = "1.0"
@@ -4,6 +4,7 @@ import android.hardware.bluetooth.V1_0.Status;
import android.os.IBinder;
import android.os.RemoteException;
import android.os.ServiceManager;
import android.os.Trace;
import android.util.Log;
import java.util.ArrayList;
@@ -53,6 +54,7 @@ class HciHidlHal extends android.hardware.bluetooth.V1_0.IBluetoothHciCallbacks.
private final android.hardware.bluetooth.V1_0.IBluetoothHci mHciService;
private final HciHalCallback mHciCallbacks;
private int mInitializationStatus = -1;
private final boolean mTracingEnabled = Trace.isEnabled();
public static HciHidlHal create(HciHalCallback hciCallbacks) {
@@ -89,6 +91,7 @@ class HciHidlHal extends android.hardware.bluetooth.V1_0.IBluetoothHciCallbacks.
}
// Map the status code.
Log.d(TAG, "Initialization status = " + mInitializationStatus);
switch (mInitializationStatus) {
case android.hardware.bluetooth.V1_0.Status.SUCCESS:
return Status.SUCCESS;
@@ -108,6 +111,10 @@ class HciHidlHal extends android.hardware.bluetooth.V1_0.IBluetoothHciCallbacks.
public void sendPacket(HciPacket.Type type, byte[] packet) {
ArrayList<Byte> data = HciPacket.byteArrayToList(packet);
if (mTracingEnabled) {
Trace.beginAsyncSection("SEND_PACKET_TO_HAL", 1);
}
try {
switch (type) {
case COMMAND:
@@ -125,6 +132,10 @@ class HciHidlHal extends android.hardware.bluetooth.V1_0.IBluetoothHciCallbacks.
} catch (RemoteException error) {
Log.w(TAG, "failed to forward packet: " + error);
}
if (mTracingEnabled) {
Trace.endAsyncSection("SEND_PACKET_TO_HAL", 1);
}
}
@Override
@@ -157,6 +168,7 @@ class HciAidlHal extends android.hardware.bluetooth.IBluetoothHciCallbacks.Stub
private final android.hardware.bluetooth.IBluetoothHci mHciService;
private final HciHalCallback mHciCallbacks;
private int mInitializationStatus = android.hardware.bluetooth.Status.SUCCESS;
private final boolean mTracingEnabled = Trace.isEnabled();
public static HciAidlHal create(HciHalCallback hciCallbacks) {
IBinder binder = ServiceManager.getService("android.hardware.bluetooth.IBluetoothHci/default");
@@ -187,6 +199,7 @@ class HciAidlHal extends android.hardware.bluetooth.IBluetoothHciCallbacks.Stub
}
// Map the status code.
Log.d(TAG, "Initialization status = " + mInitializationStatus);
switch (mInitializationStatus) {
case android.hardware.bluetooth.Status.SUCCESS:
return Status.SUCCESS;
@@ -208,6 +221,10 @@ class HciAidlHal extends android.hardware.bluetooth.IBluetoothHciCallbacks.Stub
// HciHal methods.
@Override
public void sendPacket(HciPacket.Type type, byte[] packet) {
if (mTracingEnabled) {
Trace.beginAsyncSection("SEND_PACKET_TO_HAL", 1);
}
try {
switch (type) {
case COMMAND:
@@ -229,6 +246,10 @@ class HciAidlHal extends android.hardware.bluetooth.IBluetoothHciCallbacks.Stub
} catch (RemoteException error) {
Log.w(TAG, "failed to forward packet: " + error);
}
if (mTracingEnabled) {
Trace.endAsyncSection("SEND_PACKET_TO_HAL", 1);
}
}
// IBluetoothHciCallbacks methods.
@@ -1,5 +1,6 @@
package com.github.google.bumble.remotehci;
import android.os.Trace;
import android.util.Log;
import java.io.IOException;
@@ -15,6 +16,7 @@ public class HciServer {
private final int mPort;
private final Listener mListener;
private OutputStream mOutputStream;
private final boolean mTracingEnabled = Trace.isEnabled();
public interface Listener extends HciParser.Sink {
void onHostConnectionState(boolean connected);
@@ -27,6 +29,8 @@ public class HciServer {
}
public void run() throws IOException {
Log.i(TAG, "Tracing enabled: " + mTracingEnabled);
for (;;) {
try {
loop();
@@ -73,6 +77,10 @@ public class HciServer {
}
public void sendPacket(HciPacket.Type type, byte[] packet) {
if (mTracingEnabled) {
Trace.beginAsyncSection("SEND_PACKET_FROM_HAL", 2);
}
// Create a combined data buffer so we can write it out in a single call.
byte[] data = new byte[packet.length + 1];
data[0] = type.value;
@@ -89,5 +97,9 @@ public class HciServer {
Log.d(TAG, "no client, dropping packet");
}
}
if (mTracingEnabled) {
Trace.endAsyncSection("SEND_PACKET_FROM_HAL", 2);
}
}
}
+11
View File
@@ -50,6 +50,8 @@ from bumble.gatt import (
GATT_APPEARANCE_CHARACTERISTIC,
)
from .test_utils import TwoDevices
# -----------------------------------------------------------------------------
# Logging
# -----------------------------------------------------------------------------
@@ -412,6 +414,15 @@ async def test_extended_advertising_disconnection(auto_restart):
device.start_extended_advertising.assert_not_called()
# -----------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_get_remote_le_features():
devices = TwoDevices()
await devices.setup_connection()
assert (await devices.connections[0].get_remote_le_features()) is not None
# -----------------------------------------------------------------------------
def test_gatt_services_with_gas():
device = Device(host=Host(None, None))
+60 -1
View File
@@ -23,9 +23,11 @@ import pytest
from typing import Tuple
from .test_utils import TwoDevices
from bumble import core
from bumble import device
from bumble import hfp
from bumble import rfcomm
from bumble import hci
# -----------------------------------------------------------------------------
# Logging
@@ -87,6 +89,63 @@ async def test_slc():
ag_task.cancel()
# -----------------------------------------------------------------------------
@pytest.mark.asyncio
async def test_sco_setup():
devices = TwoDevices()
# Enable Classic connections
devices[0].classic_enabled = True
devices[1].classic_enabled = True
# Start
await devices[0].power_on()
await devices[1].power_on()
connections = await asyncio.gather(
devices[0].connect(
devices[1].public_address, transport=core.BT_BR_EDR_TRANSPORT
),
devices[1].accept(devices[0].public_address),
)
def on_sco_request(_connection: device.Connection, _link_type: int):
connections[1].abort_on(
'disconnection',
devices[1].send_command(
hci.HCI_Enhanced_Accept_Synchronous_Connection_Request_Command(
bd_addr=connections[1].peer_address,
**hfp.ESCO_PARAMETERS[
hfp.DefaultCodecParameters.ESCO_CVSD_S1
].asdict(),
)
),
)
devices[1].on('sco_request', on_sco_request)
sco_connections = [
asyncio.get_running_loop().create_future(),
asyncio.get_running_loop().create_future(),
]
devices[0].on(
'sco_connection', lambda sco_link: sco_connections[0].set_result(sco_link)
)
devices[1].on(
'sco_connection', lambda sco_link: sco_connections[1].set_result(sco_link)
)
await devices[0].send_command(
hci.HCI_Enhanced_Setup_Synchronous_Connection_Command(
connection_handle=connections[0].handle,
**hfp.ESCO_PARAMETERS[hfp.DefaultCodecParameters.ESCO_CVSD_S1].asdict(),
)
)
await asyncio.gather(*sco_connections)
# -----------------------------------------------------------------------------
async def run():
await test_slc()
+5 -4
View File
@@ -29,17 +29,18 @@ class TwoDevices:
self.connections = [None, None]
self.link = LocalLink()
addresses = ['F0:F1:F2:F3:F4:F5', 'F5:F4:F3:F2:F1:F0']
self.controllers = [
Controller('C1', link=self.link),
Controller('C2', link=self.link),
Controller('C1', link=self.link, public_address=addresses[0]),
Controller('C2', link=self.link, public_address=addresses[1]),
]
self.devices = [
Device(
address=Address('F0:F1:F2:F3:F4:F5'),
address=Address(addresses[0]),
host=Host(self.controllers[0], AsyncPipeSink(self.controllers[0])),
),
Device(
address=Address('F5:F4:F3:F2:F1:F0'),
address=Address(addresses[1]),
host=Host(self.controllers[1], AsyncPipeSink(self.controllers[1])),
),
]