diff options
Diffstat (limited to 'prilohy/nrfdemo_source/src/bme680')
| -rw-r--r-- | prilohy/nrfdemo_source/src/bme680/CMakeLists.txt | 9 | ||||
| -rw-r--r-- | prilohy/nrfdemo_source/src/bme680/Kconfig | 118 | ||||
| -rw-r--r-- | prilohy/nrfdemo_source/src/bme680/bme680.c | 477 | ||||
| -rw-r--r-- | prilohy/nrfdemo_source/src/bme680/bme680.h | 220 | ||||
| -rw-r--r-- | prilohy/nrfdemo_source/src/bme680/bme680_i2c.c | 43 | ||||
| -rw-r--r-- | prilohy/nrfdemo_source/src/bme680/bme680_spi.c | 146 |
6 files changed, 1013 insertions, 0 deletions
diff --git a/prilohy/nrfdemo_source/src/bme680/CMakeLists.txt b/prilohy/nrfdemo_source/src/bme680/CMakeLists.txt new file mode 100644 index 0000000..e7d6f89 --- /dev/null +++ b/prilohy/nrfdemo_source/src/bme680/CMakeLists.txt @@ -0,0 +1,9 @@ +# Copyright (c) 2018 Bosch Sensortec GmbH +# Copyright (c) 2022, Leonard Pollak +# +# SPDX-License-Identifier: Apache-2.0 +# + +zephyr_library() + +zephyr_library_sources(bme680.c bme680_i2c.c bme680_spi.c) diff --git a/prilohy/nrfdemo_source/src/bme680/Kconfig b/prilohy/nrfdemo_source/src/bme680/Kconfig new file mode 100644 index 0000000..6f3343d --- /dev/null +++ b/prilohy/nrfdemo_source/src/bme680/Kconfig @@ -0,0 +1,118 @@ +# BME680 temperature, pressure, humidity and gas sensor configuration options + +# Copyright (c) 2018 Bosch Sensortec GmbH +# Copyright (c) 2022, Leonard Pollak +# +# SPDX-License-Identifier: Apache-2.0 + +menuconfig BME680 + bool "BME680 sensor" + default y + depends on DT_HAS_BOSCH_BME680_ENABLED + select I2C if $(dt_compat_on_bus,$(DT_COMPAT_BOSCH_BME680),i2c) + select SPI if $(dt_compat_on_bus,$(DT_COMPAT_BOSCH_BME680),spi) + help + Enable driver for BME680 I2C- or SPI- based temperature, pressure, humidity and gas sensor. + +if BME680 + +choice + prompt "BME680 temperature oversampling" + default BME680_TEMP_OVER_2X + help + Select temperature oversampling for the BME680 sensor. Higher values + lead to more accurate readings, but higher power consumption. +config BME680_TEMP_OVER_1X + bool "x1" +config BME680_TEMP_OVER_2X + bool "x2" +config BME680_TEMP_OVER_4X + bool "x4" +config BME680_TEMP_OVER_8X + bool "x8" +config BME680_TEMP_OVER_16X + bool "x16" +endchoice + +choice + prompt "BME680 pressure oversampling" + default BME680_PRESS_OVER_16X + help + Select pressure oversampling for the BME680 sensor. Higher values + lead to more accurate readings, but higher power consumption. +config BME680_PRESS_OVER_1X + bool "x1" +config BME680_PRESS_OVER_2X + bool "x2" +config BME680_PRESS_OVER_4X + bool "x4" +config BME680_PRESS_OVER_8X + bool "x8" +config BME680_PRESS_OVER_16X + bool "x16" +endchoice + +choice + prompt "BME680 humidity oversampling" + default BME680_HUMIDITY_OVER_1X + help + Select humidity oversampling for the BME680 sensor. Higher values + lead to more accurate readings, but higher power consumption. +config BME680_HUMIDITY_OVER_1X + bool "x1" +config BME680_HUMIDITY_OVER_2X + bool "x2" +config BME680_HUMIDITY_OVER_4X + bool "x4" +config BME680_HUMIDITY_OVER_8X + bool "x8" +config BME680_HUMIDITY_OVER_16X + bool "x16" +endchoice + +choice + prompt "BME680 IIR low-pass filter coefficient" + default BME680_FILTER_OFF + help + Select the filter coefficient for the BME680 sensor. +config BME680_FILTER_OFF + bool "filter off" +config BME680_FILTER_2 + bool "2" +config BME680_FILTER_4 + bool "4" +config BME680_FILTER_8 + bool "8" +config BME680_FILTER_16 + bool "16" +config BME680_FILTER_32 + bool "32" +config BME680_FILTER_64 + bool "64" +config BME680_FILTER_128 + bool "128" +endchoice + +choice + prompt "BME680 gas sensor's heater temperature in degree Celsius" + default BME680_HEATR_TEMP_LP + help + Select the gas sensor's heater temperature for the BME680 sensor. +config BME680_HEATR_TEMP_LP + bool "320" +config BME680_HEATR_TEMP_ULP + bool "400" +endchoice + +choice + prompt "BME680 gas sensor's heating duration in milliseconds" + default BME680_HEATR_DUR_LP + help + Select the gas sensor's heating duration for the BME680 sensor. +config BME680_HEATR_DUR_LP + bool "197" +config BME680_HEATR_DUR_ULP + bool "1943" +endchoice + +endif # BME680 diff --git a/prilohy/nrfdemo_source/src/bme680/bme680.c b/prilohy/nrfdemo_source/src/bme680/bme680.c new file mode 100644 index 0000000..2a9a21d --- /dev/null +++ b/prilohy/nrfdemo_source/src/bme680/bme680.c @@ -0,0 +1,477 @@ +/* bme680.c - Driver for Bosch Sensortec's BME680 temperature, pressure, + * humidity and gas sensor + * + * https://www.bosch-sensortec.com/bst/products/all_products/bme680 + */ + +/* + * Copyright (c) 2018 Bosch Sensortec GmbH + * Copyright (c) 2022, Leonard Pollak + * + * SPDX-License-Identifier: Apache-2.0 + */ + +#include <zephyr/drivers/gpio.h> +#include <zephyr/init.h> +#include <zephyr/kernel.h> +#include <zephyr/sys/byteorder.h> +#include <zephyr/sys/__assert.h> +#include <zephyr/drivers/sensor.h> +#include <zephyr/logging/log.h> + +#include "bme680.h" + +LOG_MODULE_REGISTER(bme680, CONFIG_SENSOR_LOG_LEVEL); + + +#if BME680_BUS_SPI +static inline bool bme680_is_on_spi(const struct device *dev) +{ + const struct bme680_config *config = dev->config; + + return config->bus_io == &bme680_bus_io_spi; +} +#endif + +static inline int bme680_bus_check(const struct device *dev) +{ + const struct bme680_config *config = dev->config; + + return config->bus_io->check(&config->bus); +} + +static inline int bme680_reg_read(const struct device *dev, + uint8_t start, uint8_t *buf, int size) +{ + const struct bme680_config *config = dev->config; + + return config->bus_io->read(dev, start, buf, size); +} + +static inline int bme680_reg_write(const struct device *dev, uint8_t reg, + uint8_t val) +{ + const struct bme680_config *config = dev->config; + + return config->bus_io->write(dev, reg, val); +} + +static void bme680_calc_temp(struct bme680_data *data, uint32_t adc_temp) +{ + int64_t var1, var2, var3; + + var1 = ((int32_t)adc_temp >> 3) - ((int32_t)data->par_t1 << 1); + var2 = (var1 * (int32_t)data->par_t2) >> 11; + var3 = ((var1 >> 1) * (var1 >> 1)) >> 12; + var3 = ((var3) * ((int32_t)data->par_t3 << 4)) >> 14; + data->t_fine = var2 + var3; + data->calc_temp = ((data->t_fine * 5) + 128) >> 8; +} + +static void bme680_calc_press(struct bme680_data *data, uint32_t adc_press) +{ + int32_t var1, var2, var3, calc_press; + + var1 = (((int32_t)data->t_fine) >> 1) - 64000; + var2 = ((((var1 >> 2) * (var1 >> 2)) >> 11) * + (int32_t)data->par_p6) >> 2; + var2 = var2 + ((var1 * (int32_t)data->par_p5) << 1); + var2 = (var2 >> 2) + ((int32_t)data->par_p4 << 16); + var1 = (((((var1 >> 2) * (var1 >> 2)) >> 13) * + ((int32_t)data->par_p3 << 5)) >> 3) + + (((int32_t)data->par_p2 * var1) >> 1); + var1 = var1 >> 18; + var1 = ((32768 + var1) * (int32_t)data->par_p1) >> 15; + calc_press = 1048576 - adc_press; + calc_press = (calc_press - (var2 >> 12)) * ((uint32_t)3125); + /* This max value is used to provide precedence to multiplication or + * division in the pressure calculation equation to achieve least + * loss of precision and avoiding overflows. + * i.e Comparing value, signed int 32bit (1 << 30) + */ + if (calc_press >= (int32_t)0x40000000) { + calc_press = ((calc_press / var1) << 1); + } else { + calc_press = ((calc_press << 1) / var1); + } + var1 = ((int32_t)data->par_p9 * + (int32_t)(((calc_press >> 3) + * (calc_press >> 3)) >> 13)) >> 12; + var2 = ((int32_t)(calc_press >> 2) * (int32_t)data->par_p8) >> 13; + var3 = ((int32_t)(calc_press >> 8) * (int32_t)(calc_press >> 8) + * (int32_t)(calc_press >> 8) + * (int32_t)data->par_p10) >> 17; + + data->calc_press = calc_press + + ((var1 + var2 + var3 + + ((int32_t)data->par_p7 << 7)) >> 4); +} + +static void bme680_calc_humidity(struct bme680_data *data, uint16_t adc_humidity) +{ + int32_t var1, var2_1, var2_2, var2, var3, var4, var5, var6; + int32_t temp_scaled, calc_hum; + + temp_scaled = (((int32_t)data->t_fine * 5) + 128) >> 8; + var1 = (int32_t)(adc_humidity - ((int32_t)((int32_t)data->par_h1 * 16))) - + (((temp_scaled * (int32_t)data->par_h3) + / ((int32_t)100)) >> 1); + var2_1 = (int32_t)data->par_h2; + var2_2 = ((temp_scaled * (int32_t)data->par_h4) / (int32_t)100) + + (((temp_scaled * ((temp_scaled * (int32_t)data->par_h5) + / ((int32_t)100))) >> 6) / ((int32_t)100)) + + (int32_t)(1 << 14); + var2 = (var2_1 * var2_2) >> 10; + var3 = var1 * var2; + var4 = (int32_t)data->par_h6 << 7; + var4 = ((var4) + ((temp_scaled * (int32_t)data->par_h7) / + ((int32_t)100))) >> 4; + var5 = ((var3 >> 14) * (var3 >> 14)) >> 10; + var6 = (var4 * var5) >> 1; + calc_hum = (((var3 + var6) >> 10) * ((int32_t)1000)) >> 12; + + if (calc_hum > 100000) { /* Cap at 100%rH */ + calc_hum = 100000; + } else if (calc_hum < 0) { + calc_hum = 0; + } + + data->calc_humidity = calc_hum; +} + +static void bme680_calc_gas_resistance(struct bme680_data *data, uint8_t gas_range, + uint16_t adc_gas_res) +{ + int64_t var1, var3; + uint64_t var2; + + static const uint32_t look_up1[16] = { 2147483647, 2147483647, 2147483647, + 2147483647, 2147483647, 2126008810, 2147483647, + 2130303777, 2147483647, 2147483647, 2143188679, + 2136746228, 2147483647, 2126008810, 2147483647, + 2147483647 }; + + static const uint32_t look_up2[16] = { 4096000000, 2048000000, 1024000000, + 512000000, 255744255, 127110228, 64000000, + 32258064, 16016016, 8000000, 4000000, 2000000, + 1000000, 500000, 250000, 125000 }; + + var1 = (int64_t)((1340 + (5 * (int64_t)data->range_sw_err)) * + ((int64_t)look_up1[gas_range])) >> 16; + var2 = (((int64_t)((int64_t)adc_gas_res << 15) - (int64_t)(16777216)) + var1); + var3 = (((int64_t)look_up2[gas_range] * (int64_t)var1) >> 9); + data->calc_gas_resistance = (uint32_t)((var3 + ((int64_t)var2 >> 1)) + / (int64_t)var2); +} + +static uint8_t bme680_calc_res_heat(struct bme680_data *data, uint16_t heatr_temp) +{ + uint8_t heatr_res; + int32_t var1, var2, var3, var4, var5; + int32_t heatr_res_x100; + int32_t amb_temp = 25; /* Assume ambient temperature to be 25 deg C */ + + if (heatr_temp > 400) { /* Cap temperature */ + heatr_temp = 400; + } + + var1 = ((amb_temp * data->par_gh3) / 1000) * 256; + var2 = (data->par_gh1 + 784) * (((((data->par_gh2 + 154009) + * heatr_temp * 5) / 100) + + 3276800) / 10); + var3 = var1 + (var2 / 2); + var4 = (var3 / (data->res_heat_range + 4)); + var5 = (131 * data->res_heat_val) + 65536; + heatr_res_x100 = ((var4 / var5) - 250) * 34; + heatr_res = (heatr_res_x100 + 50) / 100; + + return heatr_res; +} + +static uint8_t bme680_calc_gas_wait(uint16_t dur) +{ + uint8_t factor = 0, durval; + + if (dur >= 0xfc0) { + durval = 0xff; /* Max duration*/ + } else { + while (dur > 0x3F) { + dur = dur / 4; + factor += 1; + } + durval = dur + (factor * 64); + } + + return durval; +} + +static int bme680_sample_fetch(const struct device *dev, + enum sensor_channel chan) +{ + struct bme680_data *data = dev->data; + uint8_t buff[BME680_LEN_FIELD] = { 0 }; + uint8_t gas_range; + uint32_t adc_temp, adc_press; + uint16_t adc_hum, adc_gas_res; + int size = BME680_LEN_FIELD; + int ret; + + __ASSERT_NO_MSG(chan == SENSOR_CHAN_ALL); + + ret = bme680_reg_read(dev, BME680_REG_FIELD0, buff, size); + if (ret < 0) { + return ret; + } + + data->new_data = buff[0] & BME680_MSK_NEW_DATA; + data->heatr_stab = buff[14] & BME680_MSK_HEATR_STAB; + + adc_press = (uint32_t)(((uint32_t)buff[2] << 12) | ((uint32_t)buff[3] << 4) + | ((uint32_t)buff[4] >> 4)); + adc_temp = (uint32_t)(((uint32_t)buff[5] << 12) | ((uint32_t)buff[6] << 4) + | ((uint32_t)buff[7] >> 4)); + adc_hum = (uint16_t)(((uint32_t)buff[8] << 8) | (uint32_t)buff[9]); + adc_gas_res = (uint16_t)((uint32_t)buff[13] << 2 | (((uint32_t)buff[14]) >> 6)); + gas_range = buff[14] & BME680_MSK_GAS_RANGE; + + if (data->new_data) { + bme680_calc_temp(data, adc_temp); + bme680_calc_press(data, adc_press); + bme680_calc_humidity(data, adc_hum); + bme680_calc_gas_resistance(data, gas_range, adc_gas_res); + } + + /* Trigger the next measurement */ + ret = bme680_reg_write(dev, BME680_REG_CTRL_MEAS, + BME680_CTRL_MEAS_VAL); + if (ret < 0) { + return ret; + } + + return 0; +} + +static int bme680_channel_get(const struct device *dev, + enum sensor_channel chan, + struct sensor_value *val) +{ + struct bme680_data *data = dev->data; + + switch (chan) { + case SENSOR_CHAN_AMBIENT_TEMP: + /* + * data->calc_temp has a resolution of 0.01 degC. + * So 5123 equals 51.23 degC. + */ + val->val1 = data->calc_temp / 100; + val->val2 = data->calc_temp % 100 * 10000; + break; + case SENSOR_CHAN_PRESS: + /* + * data->calc_press has a resolution of 1 Pa. + * So 96321 equals 96.321 kPa. + */ + val->val1 = data->calc_press / 1000; + val->val2 = (data->calc_press % 1000) * 1000; + break; + case SENSOR_CHAN_HUMIDITY: + /* + * data->calc_humidity has a resolution of 0.001 %RH. + * So 46333 equals 46.333 %RH. + */ + val->val1 = data->calc_humidity / 1000; + val->val2 = (data->calc_humidity % 1000) * 1000; + break; + case SENSOR_CHAN_GAS_RES: + /* + * data->calc_gas_resistance has a resolution of 1 ohm. + * So 100000 equals 100000 ohms. + */ + val->val1 = data->calc_gas_resistance; + val->val2 = 0; + break; + default: + return -ENOTSUP; + } + + return 0; +} + +static int bme680_read_compensation(const struct device *dev) +{ + struct bme680_data *data = dev->data; + uint8_t buff[BME680_LEN_COEFF_ALL]; + int err = 0; + + err = bme680_reg_read(dev, BME680_REG_COEFF1, buff, BME680_LEN_COEFF1); + if (err < 0) { + return err; + } + + err = bme680_reg_read(dev, BME680_REG_COEFF2, &buff[BME680_LEN_COEFF1], + BME680_LEN_COEFF2); + if (err < 0) { + return err; + } + + err = bme680_reg_read(dev, BME680_REG_COEFF3, + &buff[BME680_LEN_COEFF1 + BME680_LEN_COEFF2], + BME680_LEN_COEFF3); + if (err < 0) { + return err; + } + + /* Temperature related coefficients */ + data->par_t1 = (uint16_t)(BME680_CONCAT_BYTES(buff[32], buff[31])); + data->par_t2 = (int16_t)(BME680_CONCAT_BYTES(buff[1], buff[0])); + data->par_t3 = (uint8_t)(buff[2]); + + /* Pressure related coefficients */ + data->par_p1 = (uint16_t)(BME680_CONCAT_BYTES(buff[5], buff[4])); + data->par_p2 = (int16_t)(BME680_CONCAT_BYTES(buff[7], buff[6])); + data->par_p3 = (int8_t)buff[8]; + data->par_p4 = (int16_t)(BME680_CONCAT_BYTES(buff[11], buff[10])); + data->par_p5 = (int16_t)(BME680_CONCAT_BYTES(buff[13], buff[12])); + data->par_p6 = (int8_t)(buff[15]); + data->par_p7 = (int8_t)(buff[14]); + data->par_p8 = (int16_t)(BME680_CONCAT_BYTES(buff[19], buff[18])); + data->par_p9 = (int16_t)(BME680_CONCAT_BYTES(buff[21], buff[20])); + data->par_p10 = (uint8_t)(buff[22]); + + /* Humidity related coefficients */ + data->par_h1 = (uint16_t)(((uint16_t)buff[25] << 4) | (buff[24] & 0x0f)); + data->par_h2 = (uint16_t)(((uint16_t)buff[23] << 4) | ((buff[24]) >> 4)); + data->par_h3 = (int8_t)buff[26]; + data->par_h4 = (int8_t)buff[27]; + data->par_h5 = (int8_t)buff[28]; + data->par_h6 = (uint8_t)buff[29]; + data->par_h7 = (int8_t)buff[30]; + + /* Gas heater related coefficients */ + data->par_gh1 = (int8_t)buff[35]; + data->par_gh2 = (int16_t)(BME680_CONCAT_BYTES(buff[34], buff[33])); + data->par_gh3 = (int8_t)buff[36]; + + data->res_heat_val = (int8_t)buff[37]; + data->res_heat_range = ((buff[39] & BME680_MSK_RH_RANGE) >> 4); + data->range_sw_err = ((int8_t)(buff[41] & BME680_MSK_RANGE_SW_ERR)) / 16; + + return 0; +} + +static int bme680_init(const struct device *dev) +{ + struct bme680_data *data = dev->data; + int err; + + err = bme680_bus_check(dev); + if (err < 0) { + LOG_ERR("Bus not ready for '%s'", dev->name); + return err; + } + +#if BME680_BUS_SPI + if (bme680_is_on_spi(dev)) { + uint8_t mem_page; + + err = bme680_reg_read(dev, BME680_REG_STATUS, &mem_page, 1); + if (err < 0) { + return err; + } + + data->mem_page = (mem_page & BME680_SPI_MEM_PAGE_MSK) >> BME680_SPI_MEM_PAGE_POS; + } +#endif + + err = bme680_reg_read(dev, BME680_REG_CHIP_ID, &data->chip_id, 1); + if (err < 0) { + return err; + } + + if (data->chip_id == BME680_CHIP_ID) { + LOG_DBG("BME680 chip detected"); + } else { + LOG_ERR("Bad BME680 chip id: 0x%x", data->chip_id); + return -ENOTSUP; + } + + err = bme680_read_compensation(dev); + if (err < 0) { + return err; + } + + err = bme680_reg_write(dev, BME680_REG_CTRL_HUM, BME680_HUMIDITY_OVER); + if (err < 0) { + return err; + } + + err = bme680_reg_write(dev, BME680_REG_CONFIG, BME680_CONFIG_VAL); + if (err < 0) { + return err; + } + + err = bme680_reg_write(dev, BME680_REG_CTRL_GAS_1, + BME680_CTRL_GAS_1_VAL); + if (err < 0) { + return err; + } + + err = bme680_reg_write(dev, BME680_REG_RES_HEAT0, + bme680_calc_res_heat(data, BME680_HEATR_TEMP)); + if (err < 0) { + return err; + } + + err = bme680_reg_write(dev, BME680_REG_GAS_WAIT0, + bme680_calc_gas_wait(BME680_HEATR_DUR_MS)); + if (err < 0) { + return err; + } + + err = bme680_reg_write(dev, BME680_REG_CTRL_MEAS, + BME680_CTRL_MEAS_VAL); + + return err; +} + +static const struct sensor_driver_api bme680_api_funcs = { + .sample_fetch = bme680_sample_fetch, + .channel_get = bme680_channel_get, +}; + +/* Initializes a struct bme680_config for an instance on a SPI bus. */ +#define BME680_CONFIG_SPI(inst) \ + { \ + .bus.spi = SPI_DT_SPEC_INST_GET( \ + inst, BME680_SPI_OPERATION, 0), \ + .bus_io = &bme680_bus_io_spi, \ + } + +/* Initializes a struct bme680_config for an instance on an I2C bus. */ +#define BME680_CONFIG_I2C(inst) \ + { \ + .bus.i2c = I2C_DT_SPEC_INST_GET(inst), \ + .bus_io = &bme680_bus_io_i2c, \ + } + +/* + * Main instantiation macro, which selects the correct bus-specific + * instantiation macros for the instance. + */ +#define BME680_DEFINE(inst) \ + static struct bme680_data bme680_data_##inst; \ + static const struct bme680_config bme680_config_##inst = \ + COND_CODE_1(DT_INST_ON_BUS(inst, spi), \ + (BME680_CONFIG_SPI(inst)), \ + (BME680_CONFIG_I2C(inst))); \ + SENSOR_DEVICE_DT_INST_DEFINE(inst, \ + bme680_init, \ + NULL, \ + &bme680_data_##inst, \ + &bme680_config_##inst, \ + POST_KERNEL, \ + CONFIG_SENSOR_INIT_PRIORITY, \ + &bme680_api_funcs); + +/* Create the struct device for every status "okay" node in the devicetree. */ +DT_INST_FOREACH_STATUS_OKAY(BME680_DEFINE) diff --git a/prilohy/nrfdemo_source/src/bme680/bme680.h b/prilohy/nrfdemo_source/src/bme680/bme680.h new file mode 100644 index 0000000..125aea1 --- /dev/null +++ b/prilohy/nrfdemo_source/src/bme680/bme680.h @@ -0,0 +1,220 @@ +/* + * Copyright (c) 2018 Bosch Sensortec GmbH + * Copyright (c) 2022, Leonard Pollak + * + * SPDX-License-Identifier: Apache-2.0 + */ + +#ifndef __ZEPHYR_DRIVERS_SENSOR_BME680_H__ +#define __ZEPHYR_DRIVERS_SENSOR_BME680_H__ + +#include <zephyr/types.h> +#include <zephyr/device.h> +#include <zephyr/devicetree.h> +#include <zephyr/drivers/spi.h> +#include <zephyr/drivers/i2c.h> + +#define DT_DRV_COMPAT bosch_bme680 + +#define BME680_BUS_SPI DT_ANY_INST_ON_BUS_STATUS_OKAY(spi) +#define BME680_BUS_I2C DT_ANY_INST_ON_BUS_STATUS_OKAY(i2c) + +union bme680_bus { +#if BME680_BUS_SPI + struct spi_dt_spec spi; +#endif +#if BME680_BUS_I2C + struct i2c_dt_spec i2c; +#endif +}; + +typedef int (*bme680_bus_check_fn)(const union bme680_bus *bus); +typedef int (*bme680_reg_read_fn)(const struct device *dev, + uint8_t start, uint8_t *buf, int size); +typedef int (*bme680_reg_write_fn)(const struct device *dev, + uint8_t reg, uint8_t val); + +struct bme680_bus_io { + bme680_bus_check_fn check; + bme680_reg_read_fn read; + bme680_reg_write_fn write; +}; + +#if BME680_BUS_SPI +#define BME680_SPI_OPERATION (SPI_WORD_SET(8) | SPI_TRANSFER_MSB | SPI_MODE_CPOL \ + | SPI_MODE_CPHA | SPI_OP_MODE_MASTER) +extern const struct bme680_bus_io bme680_bus_io_spi; +#endif + +#if BME680_BUS_I2C +extern const struct bme680_bus_io bme680_bus_io_i2c; +#endif + +struct bme680_config { + union bme680_bus bus; + const struct bme680_bus_io *bus_io; +}; + +#define BME680_CHIP_ID 0x61 + +#define BME680_LEN_FIELD 15 +#define BME680_LEN_COEFF_ALL 42 +#define BME680_LEN_COEFF1 23 +#define BME680_LEN_COEFF2 14 +#define BME680_LEN_COEFF3 5 + +#define BME680_REG_COEFF3 0x00 +#define BME680_REG_FIELD0 0x1d +#define BME680_REG_IDAC_HEAT0 0x50 +#define BME680_REG_RES_HEAT0 0x5A +#define BME680_REG_GAS_WAIT0 0x64 +#define BME680_REG_SHD_HEATR_DUR 0x6E +#define BME680_REG_CTRL_GAS_0 0x70 +#define BME680_REG_CTRL_GAS_1 0x71 +#define BME680_REG_CTRL_HUM 0x72 +#define BME680_REG_CTRL_MEAS 0x74 +#define BME680_REG_CONFIG 0x75 +#define BME680_REG_STATUS 0x73 +#define BME680_REG_UNIQUE_ID 0x83 +#define BME680_REG_COEFF1 0x8a +#define BME680_REG_COEFF2 0xe1 +#define BME680_REG_CHIP_ID 0xd0 +#define BME680_REG_SOFT_RESET 0xe0 + +#define BME680_MSK_NEW_DATA 0x80 +#define BME680_MSK_GAS_RANGE 0x0f +#define BME680_MSK_RH_RANGE 0x30 +#define BME680_MSK_RANGE_SW_ERR 0xf0 +#define BME680_MSK_HEATR_STAB 0x10 + +#define BME680_SPI_MEM_PAGE_MSK 0x10 +#define BME680_SPI_MEM_PAGE_POS 4 +#define BME680_SPI_READ_BIT 0x80 +#define BME680_SPI_WRITE_MSK 0x7f + +#if defined CONFIG_BME680_TEMP_OVER_1X +#define BME680_TEMP_OVER (1 << 5) +#elif defined CONFIG_BME680_TEMP_OVER_2X +#define BME680_TEMP_OVER (2 << 5) +#elif defined CONFIG_BME680_TEMP_OVER_4X +#define BME680_TEMP_OVER (3 << 5) +#elif defined CONFIG_BME680_TEMP_OVER_8X +#define BME680_TEMP_OVER (4 << 5) +#elif defined CONFIG_BME680_TEMP_OVER_16X +#define BME680_TEMP_OVER (5 << 5) +#endif + +#if defined CONFIG_BME680_PRESS_OVER_1X +#define BME680_PRESS_OVER (1 << 2) +#elif defined CONFIG_BME680_PRESS_OVER_2X +#define BME680_PRESS_OVER (2 << 2) +#elif defined CONFIG_BME680_PRESS_OVER_4X +#define BME680_PRESS_OVER (3 << 2) +#elif defined CONFIG_BME680_PRESS_OVER_8X +#define BME680_PRESS_OVER (4 << 2) +#elif defined CONFIG_BME680_PRESS_OVER_16X +#define BME680_PRESS_OVER (5 << 2) +#endif + +#if defined CONFIG_BME680_HUMIDITY_OVER_1X +#define BME680_HUMIDITY_OVER 1 +#elif defined CONFIG_BME680_HUMIDITY_OVER_2X +#define BME680_HUMIDITY_OVER 2 +#elif defined CONFIG_BME680_HUMIDITY_OVER_4X +#define BME680_HUMIDITY_OVER 3 +#elif defined CONFIG_BME680_HUMIDITY_OVER_8X +#define BME680_HUMIDITY_OVER 4 +#elif defined CONFIG_BME680_HUMIDITY_OVER_16X +#define BME680_HUMIDITY_OVER 5 +#endif + +#if defined CONFIG_BME680_HEATR_TEMP_LP +#define BME680_HEATR_TEMP 320 +#elif defined CONFIG_BME680_HEATR_TEMP_ULP +#define BME680_HEATR_TEMP 400 +#endif + +#if defined CONFIG_BME680_HEATR_DUR_LP +#define BME680_HEATR_DUR_MS 197 +#elif defined CONFIG_BME680_HEATR_DUR_ULP +#define BME680_HEATR_DUR_MS 1943 +#endif + +#if defined CONFIG_BME680_FILTER_OFF +#define BME680_FILTER 0 +#elif defined CONFIG_BME680_FILTER_2 +#define BME680_FILTER (1 << 2) +#elif defined CONFIG_BME680_FILTER_4 +#define BME680_FILTER (2 << 2) +#elif defined CONFIG_BME680_FILTER_8 +#define BME680_FILTER (3 << 2) +#elif defined CONFIG_BME680_FILTER_16 +#define BME680_FILTER (4 << 2) +#elif defined CONFIG_BME680_FILTER_32 +#define BME680_FILTER (5 << 2) +#elif defined CONFIG_BME680_FILTER_64 +#define BME680_FILTER (6 << 2) +#elif defined CONFIG_BME680_FILTER_128 +#define BME680_FILTER (7 << 2) +#endif + +#define BME680_MODE_SLEEP 0 +#define BME680_MODE_FORCED 1 + +#define BME680_CTRL_MEAS_VAL (BME680_PRESS_OVER | BME680_TEMP_OVER \ + | BME680_MODE_FORCED) +#define BME680_CONFIG_VAL BME680_FILTER +#define BME680_CTRL_GAS_1_VAL 0x10 + +#define BME680_CONCAT_BYTES(msb, lsb) (((uint16_t)msb << 8) | (uint16_t)lsb) + +struct bme680_data { + /* Compensation parameters. */ + uint16_t par_h1; + uint16_t par_h2; + int8_t par_h3; + int8_t par_h4; + int8_t par_h5; + uint8_t par_h6; + int8_t par_h7; + int8_t par_gh1; + int16_t par_gh2; + int8_t par_gh3; + uint16_t par_t1; + int16_t par_t2; + int8_t par_t3; + uint16_t par_p1; + int16_t par_p2; + int8_t par_p3; + int16_t par_p4; + int16_t par_p5; + int8_t par_p6; + int8_t par_p7; + int16_t par_p8; + int16_t par_p9; + uint8_t par_p10; + uint8_t res_heat_range; + int8_t res_heat_val; + int8_t range_sw_err; + + /* Calculated sensor values. */ + int32_t calc_temp; + uint32_t calc_press; + uint32_t calc_humidity; + uint32_t calc_gas_resistance; + + /* Additional information */ + uint8_t new_data; + uint8_t heatr_stab; + + /* Carryover between temperature and pressure/humidity compensation. */ + int32_t t_fine; + + uint8_t chip_id; + +#if BME680_BUS_SPI + uint8_t mem_page; +#endif +}; + +#endif /* __ZEPHYR_DRIVERS_SENSOR_BME680_H__ */ diff --git a/prilohy/nrfdemo_source/src/bme680/bme680_i2c.c b/prilohy/nrfdemo_source/src/bme680/bme680_i2c.c new file mode 100644 index 0000000..faa8cea --- /dev/null +++ b/prilohy/nrfdemo_source/src/bme680/bme680_i2c.c @@ -0,0 +1,43 @@ +/* + * Copyright (c) 2016, 2017 Intel Corporation + * Copyright (c) 2017 IpTronix S.r.l. + * Copyright (c) 2021 Nordic Semiconductor ASA + * Copyright (c) 2022, Leonard Pollak + * + * SPDX-License-Identifier: Apache-2.0 + */ + +/* + * Bus-specific functionality for BME680s accessed via I2C. + */ + +#include "bme680.h" + +#if BME680_BUS_I2C +static int bme680_bus_check_i2c(const union bme680_bus *bus) +{ + return device_is_ready(bus->i2c.bus) ? 0 : -ENODEV; +} + +static int bme680_reg_read_i2c(const struct device *dev, + uint8_t start, uint8_t *buf, int size) +{ + const struct bme680_config *config = dev->config; + + return i2c_burst_read_dt(&config->bus.i2c, start, buf, size); +} + +static int bme680_reg_write_i2c(const struct device *dev, + uint8_t reg, uint8_t val) +{ + const struct bme680_config *config = dev->config; + + return i2c_reg_write_byte_dt(&config->bus.i2c, reg, val); +} + +const struct bme680_bus_io bme680_bus_io_i2c = { + .check = bme680_bus_check_i2c, + .read = bme680_reg_read_i2c, + .write = bme680_reg_write_i2c, +}; +#endif /* BME680_BUS_I2C */ diff --git a/prilohy/nrfdemo_source/src/bme680/bme680_spi.c b/prilohy/nrfdemo_source/src/bme680/bme680_spi.c new file mode 100644 index 0000000..54840a7 --- /dev/null +++ b/prilohy/nrfdemo_source/src/bme680/bme680_spi.c @@ -0,0 +1,146 @@ +/* + * Copyright (c) 2016, 2017 Intel Corporation + * Copyright (c) 2017 IpTronix S.r.l. + * Copyright (c) 2021 Nordic Semiconductor ASA + * Copyright (c) 2022, Leonard Pollak + * + * SPDX-License-Identifier: Apache-2.0 + */ + +/* + * Bus-specific functionality for BME680s accessed via SPI. + */ + +#include <zephyr/logging/log.h> +#include "bme680.h" + +#if BME680_BUS_SPI + +LOG_MODULE_DECLARE(bme680, CONFIG_SENSOR_LOG_LEVEL); + +static int bme680_bus_check_spi(const union bme680_bus *bus) +{ + return spi_is_ready_dt(&bus->spi) ? 0 : -ENODEV; +} + +static inline int bme680_set_mem_page(const struct device *dev, uint8_t addr) +{ + const struct bme680_config *config = dev->config; + struct bme680_data *data = dev->data; + uint8_t page = (addr > 0x7f) ? 0U : 1U; + int err = 0; + + if (data->mem_page != page) { + uint8_t buf[2]; + + struct spi_buf tx_buf = { + .buf = &buf[0], + .len = 1, + }; + const struct spi_buf_set tx = { + .buffers = &tx_buf, + .count = 1, + }; + + const struct spi_buf rx_buf[] = { + { .buf = NULL, .len = 1 }, + { .buf = &buf[1], .len = 1 }, + }; + const struct spi_buf_set rx = { + .buffers = rx_buf, + .count = ARRAY_SIZE(rx_buf), + }; + + buf[0] = BME680_REG_STATUS | BME680_SPI_READ_BIT; + err = spi_transceive_dt(&config->bus.spi, &tx, &rx); + if (err < 0) { + return err; + } + + if (data->mem_page == 1U) { + buf[1] &= ~BME680_SPI_MEM_PAGE_MSK; + } else { + buf[1] |= BME680_SPI_MEM_PAGE_MSK; + } + + buf[0] = BME680_REG_STATUS & BME680_SPI_WRITE_MSK; + tx_buf.len = 2; + err = spi_write_dt(&config->bus.spi, &tx); + if (err < 0) { + return err; + } + + data->mem_page = page; + } + + return err; +} + +static int bme680_reg_write_spi(const struct device *dev, + uint8_t reg, uint8_t val) +{ + const struct bme680_config *config = dev->config; + int err; + uint8_t cmd[] = { reg & BME680_SPI_WRITE_MSK, val }; + const struct spi_buf tx_buf = { + .buf = cmd, + .len = sizeof(cmd) + }; + const struct spi_buf_set tx = { + .buffers = &tx_buf, + .count = 1 + }; + + err = bme680_set_mem_page(dev, reg); + if (err) { + return err; + } + + err = spi_write_dt(&config->bus.spi, &tx); + + return err; +} + +static int bme680_reg_read_spi(const struct device *dev, + uint8_t start, uint8_t *buf, int size) +{ + const struct bme680_config *config = dev->config; + int err; + uint8_t addr; + const struct spi_buf tx_buf = { + .buf = &addr, + .len = 1 + }; + const struct spi_buf_set tx = { + .buffers = &tx_buf, + .count = 1 + }; + struct spi_buf rx_buf[2]; + const struct spi_buf_set rx = { + .buffers = rx_buf, + .count = ARRAY_SIZE(rx_buf) + }; + + rx_buf[0].buf = NULL; + rx_buf[0].len = 1; + + addr = start | BME680_SPI_READ_BIT; + rx_buf[1].buf = buf; + rx_buf[1].len = size; + + err = bme680_set_mem_page(dev, start); + if (err) { + return err; + } + + err = spi_transceive_dt(&config->bus.spi, &tx, &rx); + + return err; +} + +const struct bme680_bus_io bme680_bus_io_spi = { + .check = bme680_bus_check_spi, + .read = bme680_reg_read_spi, + .write = bme680_reg_write_spi, +}; +#endif /* BME680_BUS_SPI */ |
