Files
MuditaOS/module-bluetooth/Bluetooth/interface/BluetoothDriverImpl.cpp
Bartosz Cichocki 8145a88401 [EGD-7077] Rework of BT connection status in AppSettings
Reworked AppSettings handling of BT devices to be prepared for
handling the HFP profile, eliminating by the way few bugs and
speeding up the flow (by getting rid of few refreshes).

Added unit tests for handling the BT devices flow
2021-09-10 13:19:29 +02:00

216 lines
7.3 KiB
C++

// Copyright (c) 2017-2021, Mudita Sp. z.o.o. All rights reserved.
// For licensing, see https://github.com/mudita/MuditaOS/LICENSE.md
#include "BluetoothDriverImpl.hpp"
extern "C"
{
#include <btstack_event.h>
#include <btstack_util.h>
#include <bluetooth_company_id.h>
#include <btstack_memory.h>
#include <btstack_run_loop.h>
#include <hci.h>
#include <hci_dump.h>
#include <btstack_chipset_cc256x.h>
#include <btstack_link_key_db_memory.h>
}
#include <service-bluetooth/ServiceBluetooth.hpp>
#include <BtKeysStorage.hpp>
#ifdef TARGET_RT1051
#include <Bluetooth/glucode/btstack_uart_block_rt1051.h>
#else
extern "C"
{
#include <btstack_uart.h>
#include <btstack_run_loop_posix.h>
#include <btstack_tlv_posix.h>
}
#endif
namespace bluetooth
{
hci_transport_config_uart_t Driver::config;
#ifdef TARGET_RT1051
[[maybe_unused]] auto Driver::runLoopInitTarget(const btstack_run_loop *loop) -> const btstack_uart_block_t *
{
btstack_run_loop_init(loop);
const btstack_uart_block_t *uartDriver = btstack_uart_block_rt1051_instance();
return uartDriver;
}
#else
[[maybe_unused]] auto Driver::runLoopInitLinux(const btstack_run_loop *) -> const btstack_uart_block_t *
{
btstack_run_loop_init(btstack_run_loop_posix_get_instance());
config.device_name = "/dev/telit";
LOG_INFO("H4 device: %s", config.device_name);
const btstack_uart_block_t *uartDriver = btstack_uart_block_posix_instance();
return uartDriver;
}
#endif
Driver::Driver(const btstack_run_loop *runLoop, sys::Service *ownerService)
: runLoop{runLoop}, gap{std::make_unique<bluetooth::GAP>(ownerService)}
{}
auto Driver::init() -> Error::Code
{
btstack_memory_init();
config = {
.type = HCI_TRANSPORT_CONFIG_UART,
.baudrate_init = 115200,
.baudrate_main = 0,
.flowcontrol = 1,
.device_name = nullptr,
};
#ifdef TARGET_RT1051
auto uartDriver = runLoopInitTarget(runLoop);
#else
auto uartDriver = runLoopInitLinux(runLoop);
#endif
const hci_transport_t *transport = hci_transport_h4_instance_for_uart(uartDriver);
hci_init(transport, (void *)&config);
hci_set_link_key_db(bluetooth::KeyStorage::getKeyStorage());
hci_event_callback_registration.callback = &hci_packet_handler;
hci_add_event_handler(&hci_event_callback_registration);
LOG_DEBUG("BT worker run success");
return Error::Success;
}
void Driver::hci_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size)
{
bd_addr_t addr;
if (packet_type != HCI_EVENT_PACKET) {
return;
}
switch (hci_event_packet_get_type(packet)) {
case BTSTACK_EVENT_STATE:
if (btstack_event_state_get_state(packet) != HCI_STATE_WORKING) {
break;
}
gap_local_bd_addr(addr);
LOG_INFO("BTstack up and running");
bluetooth::KeyStorage::settings->setValue(bluetooth::Settings::State,
static_cast<int>(BluetoothStatus::State::On));
break;
case HCI_EVENT_COMMAND_COMPLETE:
if (HCI_EVENT_IS_COMMAND_COMPLETE(packet, hci_read_local_name)) {
if (hci_event_command_complete_get_return_parameters(packet)[0] != 0u) {
break;
}
// terminate, name 248 chars
packet[6 + 248] = 0;
}
if (HCI_EVENT_IS_COMMAND_COMPLETE(packet, hci_read_local_version_information)) {
local_version_information_handler(packet);
}
break;
default:
break;
}
}
void Driver::local_version_information_handler(uint8_t *packet)
{
LOG_INFO("Local version information:");
uint16_t hci_version = packet[6];
uint16_t hci_revision = little_endian_read_16(packet, 7);
uint16_t lmp_version = packet[9];
uint16_t manufacturer = little_endian_read_16(packet, 10);
uint16_t lmp_subversion = little_endian_read_16(packet, 12);
LOG_INFO("- HCI Version 0x%04x", hci_version);
LOG_INFO("- HCI Revision 0x%04x", hci_revision);
LOG_INFO("- LMP Version 0x%04x", lmp_version);
LOG_INFO("- LMP Subversion 0x%04x", lmp_subversion);
LOG_INFO("- Manufacturer 0x%04x", manufacturer);
switch (manufacturer) {
case BLUETOOTH_COMPANY_ID_TEXAS_INSTRUMENTS_INC:
LOG_INFO("Texas Instruments - CC256x compatible chipset.");
if (lmp_subversion != btstack_chipset_cc256x_lmp_subversion()) {
LOG_INFO("Error: LMP Subversion does not match initscript! ");
LOG_INFO("Your initscripts is for %s chipset",
btstack_chipset_cc256x_lmp_subversion() < lmp_subversion ? "an older" : "a newer");
LOG_INFO("Please update Makefile to include the appropriate bluetooth_init_cc256???.c file");
exit(10);
}
LOG_INFO("Using 921600 baud");
config.baudrate_main = 921600;
hci_set_chipset(btstack_chipset_cc256x_instance());
#ifdef ENABLE_EHCILL
LOG_INFO("eHCILL enabled.");
#else
LOG_INFO("eHCILL disable.");
#endif
break;
case BLUETOOTH_COMPANY_ID_NORDIC_SEMICONDUCTOR_ASA:
LOG_INFO("Nordic Semiconductor nRF5 chipset.");
break;
default:
LOG_INFO("Unknown manufacturer / manufacturer not supported yet.\n");
break;
}
}
auto Driver::run() -> Error::Code
{
auto ret = hci_power_control(HCI_POWER_ON);
if (ret != 0) {
LOG_ERROR("HCI power on failed, can't start Bluetooth!");
return Error::LibraryError;
}
LOG_INFO("HCI turned on - run BtStack loop\n");
btstack_run_loop_execute();
return Error::Success;
}
void Driver::registerErrorCallback(const ErrorCallback &newCallback)
{
static ErrorCallback callback;
callback = newCallback;
hci_set_hardware_error_callback([](uint8_t val) -> void {
LOG_ERROR("Bluetooth HW ERROR! %d", val);
if (callback) {
callback(val);
}
});
}
auto Driver::stop() -> Error::Code
{
auto ret = hci_power_control(HCI_POWER_OFF);
if (ret != 0) {
LOG_ERROR("Can't turn off Bluetooth Stack!");
}
bluetooth::KeyStorage::settings->setValue(bluetooth::Settings::State,
static_cast<int>(BluetoothStatus::State::Off));
return ret != 0 ? Error::LibraryError : Error::Success;
}
auto Driver::scan() -> Error
{
return gap->scan();
}
void Driver::stopScan()
{
gap->stopScan();
}
void Driver::setVisibility(bool visibility)
{
gap->setVisibility(visibility);
}
auto Driver::pair(Devicei device, std::uint8_t protectionLevel) -> bool
{
LOG_FATAL("Device: %s, addr: %s", device.name.c_str(), device.address_str());
return gap->pair(device, protectionLevel);
}
auto Driver::unpair(Devicei device) -> bool
{
return gap->unpair(device);
}
} // namespace bluetooth