mirror of https://github.com/ArduPilot/ardupilot
AP_InertialSensor: MPU9250: Remove methods not used anymore
Those methods were used by AK8963 before it started to use auxiliary bus.
This commit is contained in:
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1fc29a2654
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c3dae6fcec
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@ -283,33 +283,6 @@ AP_HAL::Semaphore* AP_MPU9250_BusDriver_SPI::get_semaphore()
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return _spi->get_semaphore();
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}
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void AP_MPU9250_BusDriver_SPI::get_driver_state(bool &initialized, bool &working)
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{
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AP_HAL::SPIDeviceDriver::State state = _spi->get_state();
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if (state == AP_HAL::SPIDeviceDriver::State::FAILED) {
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initialized = true;
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working = false;
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return;
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}
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if (state == AP_HAL::SPIDeviceDriver::State::RUNNING) {
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initialized = true;
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working = true;
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return;
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}
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initialized = false;
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}
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void AP_MPU9250_BusDriver_SPI::set_driver_state(bool working)
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{
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if (working) {
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_spi->set_state(AP_HAL::SPIDeviceDriver::State::RUNNING);
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} else {
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_spi->set_state(AP_HAL::SPIDeviceDriver::State::FAILED);
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}
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}
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bool AP_MPU9250_BusDriver_SPI::has_auxiliary_bus()
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{
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return true;
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@ -372,96 +345,6 @@ AP_InertialSensor_Backend *AP_InertialSensor_MPU9250::_detect(AP_InertialSensor
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return sensor;
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}
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bool AP_InertialSensor_MPU9250::initialize_driver_state(AP_HAL::SPIDeviceDriver *spi)
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{
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if (!spi)
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return false;
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AP_MPU9250_BusDriver_SPI *bus = new AP_MPU9250_BusDriver_SPI(spi);
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if (!bus)
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return false;
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bool initialized = initialize_driver_state(bus);
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delete bus;
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return initialized;
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}
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bool AP_InertialSensor_MPU9250::initialize_driver_state(AP_MPU9250_BusDriver *bus)
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{
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bool initialized, working;
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bus->get_driver_state(initialized, working);
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if (initialized) {
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return working;
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}
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bus->set_driver_state(false);
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// initially run the bus at low speed
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bus->set_bus_speed(AP_HAL::SPIDeviceDriver::SPI_SPEED_LOW);
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uint8_t whoami = _register_read(bus, MPUREG_WHOAMI);
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if (whoami != MPUREG_WHOAMI_MPU9250 && whoami != MPUREG_WHOAMI_MPU9255) {
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hal.console->printf("MPU9250: unexpected WHOAMI 0x%x\n", (unsigned)whoami);
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goto fail_whoami;
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}
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// Chip reset
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uint8_t tries;
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for (tries = 0; tries < 5; tries++) {
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uint8_t user_ctrl = _register_read(bus, MPUREG_USER_CTRL);
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/* First disable the master I2C to avoid hanging the slaves on the
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* auxiliary I2C bus */
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if (user_ctrl & BIT_USER_CTRL_I2C_MST_EN) {
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_register_write(bus, MPUREG_USER_CTRL, user_ctrl & ~BIT_USER_CTRL_I2C_MST_EN);
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hal.scheduler->delay(10);
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}
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// reset device
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_register_write(bus, MPUREG_PWR_MGMT_1, BIT_PWR_MGMT_1_DEVICE_RESET);
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hal.scheduler->delay(100);
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// bus-dependent initialization
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bus->init();
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// Wake up device and select GyroZ clock. Note that the
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// MPU9250 starts up in sleep mode, and it can take some time
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// for it to come out of sleep
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_register_write(bus, MPUREG_PWR_MGMT_1, BIT_PWR_MGMT_1_CLK_ZGYRO);
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hal.scheduler->delay(5);
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// check it has woken up
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if (_register_read(bus, MPUREG_PWR_MGMT_1) == BIT_PWR_MGMT_1_CLK_ZGYRO) {
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break;
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}
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hal.scheduler->delay(10);
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uint8_t status = _register_read(bus, MPUREG_INT_STATUS);
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if ((status & BIT_RAW_RDY_INT) != 0) {
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break;
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}
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#if MPU9250_DEBUG
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_dump_registers(bus);
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#endif
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}
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if (tries == 5) {
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hal.console->println("Failed to boot MPU9250 5 times");
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goto fail_tries;
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}
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bus->set_driver_state(true);
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return true;
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fail_tries:
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fail_whoami:
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bus->set_bus_speed(AP_HAL::SPIDeviceDriver::SPI_SPEED_HIGH);
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return false;
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}
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/*
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initialise the sensor
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*/
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@ -484,7 +367,7 @@ bool AP_InertialSensor_MPU9250::_init_sensor()
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_set_gyro_raw_sample_rate(_gyro_instance, DEFAULT_SAMPLE_RATE);
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#if MPU9250_DEBUG
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_dump_registers(_bus);
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_dump_registers();
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#endif
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return true;
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}
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@ -582,31 +465,19 @@ void AP_InertialSensor_MPU9250::_read_data_transaction()
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/*
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read an 8 bit register
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*/
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uint8_t AP_InertialSensor_MPU9250::_register_read(AP_MPU9250_BusDriver *bus,
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uint8_t reg)
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uint8_t AP_InertialSensor_MPU9250::_register_read(uint8_t reg)
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{
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uint8_t val;
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bus->read8(reg, &val);
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_bus->read8(reg, &val);
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return val;
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}
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/*
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write an 8 bit register
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*/
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void AP_InertialSensor_MPU9250::_register_write(AP_MPU9250_BusDriver *bus,
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uint8_t reg, uint8_t val)
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void AP_InertialSensor_MPU9250::_register_write(uint8_t reg, uint8_t val)
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{
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bus->write8(reg, val);
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}
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inline uint8_t AP_InertialSensor_MPU9250::_register_read(uint8_t reg)
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{
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return _register_read(_bus, reg);
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}
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inline void AP_InertialSensor_MPU9250::_register_write(uint8_t reg, uint8_t val)
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{
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_register_write(_bus, reg, val);
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_bus->write8(reg, val);
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}
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/*
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@ -640,8 +511,59 @@ bool AP_InertialSensor_MPU9250::_hardware_init(void)
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return false;
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}
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if (!initialize_driver_state(_bus))
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return false;
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// initially run the bus at low speed
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_bus->set_bus_speed(AP_HAL::SPIDeviceDriver::SPI_SPEED_LOW);
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uint8_t whoami = _register_read(MPUREG_WHOAMI);
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if (whoami != MPUREG_WHOAMI_MPU9250 && whoami != MPUREG_WHOAMI_MPU9255) {
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hal.console->printf("MPU9250: unexpected WHOAMI 0x%x\n", (unsigned)whoami);
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goto fail_whoami;
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}
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// Chip reset
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uint8_t tries;
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for (tries = 0; tries < 5; tries++) {
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uint8_t user_ctrl = _register_read(MPUREG_USER_CTRL);
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/* First disable the master I2C to avoid hanging the slaves on the
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* auxiliary I2C bus */
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if (user_ctrl & BIT_USER_CTRL_I2C_MST_EN) {
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_register_write(MPUREG_USER_CTRL, user_ctrl & ~BIT_USER_CTRL_I2C_MST_EN);
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hal.scheduler->delay(10);
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}
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// reset device
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_register_write(MPUREG_PWR_MGMT_1, BIT_PWR_MGMT_1_DEVICE_RESET);
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hal.scheduler->delay(100);
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// bus-dependent initialization
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_bus->init();
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// Wake up device and select GyroZ clock. Note that the
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// MPU9250 starts up in sleep mode, and it can take some time
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// for it to come out of sleep
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_register_write(MPUREG_PWR_MGMT_1, BIT_PWR_MGMT_1_CLK_ZGYRO);
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hal.scheduler->delay(5);
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// check it has woken up
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if (_register_read(MPUREG_PWR_MGMT_1) == BIT_PWR_MGMT_1_CLK_ZGYRO) {
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break;
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}
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hal.scheduler->delay(10);
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uint8_t status = _register_read(MPUREG_INT_STATUS);
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if ((status & BIT_RAW_RDY_INT) != 0) {
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break;
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}
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#if MPU9250_DEBUG
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_dump_registers();
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#endif
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}
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if (tries == 5) {
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hal.console->println("Failed to boot MPU9250 5 times");
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goto fail_tries;
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}
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_register_write(MPUREG_PWR_MGMT_2, 0x00); // only used for wake-up in accelerometer only low power mode
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@ -672,6 +594,13 @@ bool AP_InertialSensor_MPU9250::_hardware_init(void)
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hal.scheduler->resume_timer_procs();
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return true;
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fail_tries:
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fail_whoami:
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_bus_sem->give();
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hal.scheduler->resume_timer_procs();
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_bus->set_bus_speed(AP_HAL::SPIDeviceDriver::SPI_SPEED_HIGH);
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return false;
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}
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AuxiliaryBus *AP_InertialSensor_MPU9250::get_auxiliary_bus()
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@ -29,8 +29,6 @@ public:
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virtual bool read_data_transaction(uint8_t* samples,
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uint8_t &n_samples) = 0;
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virtual AP_HAL::Semaphore* get_semaphore() = 0;
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virtual void get_driver_state(bool &initialized, bool &working) = 0;
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virtual void set_driver_state(bool working) = 0;
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virtual bool has_auxiliary_bus() = 0;
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};
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@ -55,17 +53,6 @@ public:
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return static_cast<AP_InertialSensor_MPU9250&>(backend);
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}
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/* Put the MPU9250 in a known state so it can be
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* used both for the InertialSensor and as for backend of other drivers.
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*
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* The bus semaphore must be taken and timer_procs suspended.
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*
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* This method puts the bus in low speed. If the initialization is
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* successful the bus is left on low speed so the caller can finish the
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* initialization of its driver.
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*/
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static bool initialize_driver_state(AP_HAL::SPIDeviceDriver *spi);
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// detect the sensor
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static AP_InertialSensor_Backend *detect(AP_InertialSensor &imu, AP_HAL::SPIDeviceDriver *spi);
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@ -74,13 +61,6 @@ private:
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AP_MPU9250_BusDriver *bus,
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int16_t id);
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static bool initialize_driver_state(AP_MPU9250_BusDriver *bus);
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static uint8_t _register_read(AP_MPU9250_BusDriver *bus, uint8_t reg);
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static void _register_write(AP_MPU9250_BusDriver *bus, uint8_t reg,
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uint8_t val);
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bool _init_sensor();
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void _read_data_transaction();
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bool _data_ready();
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@ -128,7 +108,7 @@ private:
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enum Rotation _default_rotation;
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#if MPU9250_DEBUG
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static void _dump_registers(AP_MPU9250_BusDriver *bus);
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static void _dump_registers();
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#endif
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};
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@ -143,8 +123,6 @@ public:
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void set_bus_speed(AP_HAL::SPIDeviceDriver::bus_speed speed);
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bool read_data_transaction(uint8_t* samples, uint8_t &n_samples);
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AP_HAL::Semaphore* get_semaphore();
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void get_driver_state(bool &initialized, bool &working);
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void set_driver_state(bool working);
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bool has_auxiliary_bus();
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private:
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