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ardupilot/libraries/AP_Compass/AP_Compass_LIS2MDL.cpp
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/*
* This file is free software: you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the
* Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This file is distributed in the hope that it will be useful, but
* WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
* See the GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License along
* with this program. If not, see <http://www.gnu.org/licenses/>.
*/
/*
Driver for the LIS2MDL magnetometer.
*/
#include "AP_Compass_config.h"
#if AP_COMPASS_LIS2MDL_ENABLED
#include "AP_Compass_LIS2MDL.h"
#include <AP_HAL/AP_HAL.h>
#include <utility>
#include <AP_Math/AP_Math.h>
#include <stdio.h>
// Register addresses
#define ADDR_WHO_AM_I 0x4F
#define ADDR_CFG_REG_A 0x60
#define ADDR_CFG_REG_B 0x61
#define ADDR_CFG_REG_C 0x62
#define ADDR_STATUS_REG 0x67
#define ADDR_OUT_X_L 0x68
// WHO_AM_I device ID
#define ID_WHO_AM_I 0x40
AP_Compass_Backend *AP_Compass_LIS2MDL::probe(AP_HAL::OwnPtr<AP_HAL::Device> dev,
bool force_external,
enum Rotation rotation)
{
if (!dev) {
return nullptr;
}
AP_Compass_LIS2MDL *sensor = NEW_NOTHROW AP_Compass_LIS2MDL(std::move(dev), force_external, rotation);
if (!sensor || !sensor->init()) {
delete sensor;
return nullptr;
}
return sensor;
}
AP_Compass_LIS2MDL::AP_Compass_LIS2MDL(AP_HAL::OwnPtr<AP_HAL::Device> _dev,
bool _force_external,
enum Rotation _rotation)
: dev(std::move(_dev))
, force_external(_force_external)
, rotation(_rotation)
{
}
// @brief Initialize the sensor
bool AP_Compass_LIS2MDL::init()
{
WITH_SEMAPHORE(dev->get_semaphore());
if (dev->bus_type() == AP_HAL::Device::BUS_TYPE_SPI) {
// LIS2MDL SPI reads are MSb=1, autoincrement.
dev->set_read_flag(0xC0);
}
// high retries for init
dev->set_retries(10);
uint8_t whoami;
if (!dev->read_registers(ADDR_WHO_AM_I, &whoami, 1) ||
whoami != ID_WHO_AM_I) {
// not a LIS2MDL
return false;
}
dev->setup_checked_registers(3);
// Configure for 100Hz continuous mode, with temperature compensation.
dev->write_register(ADDR_CFG_REG_A, 0b10001100, true); // ODR=100Hz, continuous mode, temp comp on
// Default settings for CFG_REG_B are fine.
dev->write_register(ADDR_CFG_REG_B, 0x00, true);
// Enable Block Data Update (BDU)
dev->write_register(ADDR_CFG_REG_C, 0b00010000, true);
// lower retries for run
dev->set_retries(3);
/* register the compass instance in the frontend */
dev->set_device_type(DEVTYPE_LIS2MDL);
if (!register_compass(dev->get_bus_id())) {
return false;
}
printf("Found a LIS2MDL on 0x%x as compass %u\n", unsigned(dev->get_bus_id()), instance);
set_rotation(rotation);
if (force_external) {
set_external(force_external);
}
// call timer() at 100Hz
dev->register_periodic_callback(1000000U/100U,
FUNCTOR_BIND_MEMBER(&AP_Compass_LIS2MDL::timer, void));
return true;
}
// @brief Read data from the sensor and accumulate it
void AP_Compass_LIS2MDL::timer()
{
struct PACKED {
int16_t magx;
int16_t magy;
int16_t magz;
} data;
// Sensitivity is 1.5 mgauss/LSB
const float range_scale = 1.5f;
// check data ready
uint8_t status;
if (!dev->read_registers(ADDR_STATUS_REG, &status, 1)) {
goto check_registers;
}
if (!(status & 0x08)) { // ZYXDA bit
// data not available yet
goto check_registers;
}
if (!dev->read_registers(ADDR_OUT_X_L, (uint8_t *)&data, sizeof(data))) {
goto check_registers;
}
{
Vector3f field{
(float)data.magx * range_scale,
(float)data.magy * range_scale,
(float)-data.magz * range_scale, // for unknown reasons the Z axis appears to be reversed, without this it is impossible to orient correctly
};
accumulate_sample(field, instance);
}
check_registers:
dev->check_next_register();
}
// @brief Publish accumulated data to the frontend
void AP_Compass_LIS2MDL::read()
{
drain_accumulated_samples();
}
#endif // AP_COMPASS_LIS2MDL_ENABLED