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https://github.com/cmur2/python-bme680.git
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403 lines
10 KiB
Python
403 lines
10 KiB
Python
"""BME680 constants, structures and utilities."""
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# BME680 General config
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POLL_PERIOD_MS = 10
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# BME680 I2C addresses
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I2C_ADDR_PRIMARY = 0x76
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I2C_ADDR_SECONDARY = 0x77
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# BME680 unique chip identifier
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CHIP_ID = 0x61
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# BME680 coefficients related defines
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COEFF_SIZE = 41
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COEFF_ADDR1_LEN = 25
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COEFF_ADDR2_LEN = 16
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# BME680 field_x related defines
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FIELD_LENGTH = 15
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FIELD_ADDR_OFFSET = 17
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# Soft reset command
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SOFT_RESET_CMD = 0xb6
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# Error code definitions
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OK = 0
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# Errors
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E_NULL_PTR = -1
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E_COM_FAIL = -2
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E_DEV_NOT_FOUND = -3
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E_INVALID_LENGTH = -4
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# Warnings
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W_DEFINE_PWR_MODE = 1
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W_NO_NEW_DATA = 2
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# Info's
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I_MIN_CORRECTION = 1
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I_MAX_CORRECTION = 2
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# Register map
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# Other coefficient's address
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ADDR_RES_HEAT_VAL_ADDR = 0x00
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ADDR_RES_HEAT_RANGE_ADDR = 0x02
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ADDR_RANGE_SW_ERR_ADDR = 0x04
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ADDR_SENS_CONF_START = 0x5A
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ADDR_GAS_CONF_START = 0x64
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# Field settings
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FIELD0_ADDR = 0x1d
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# Heater settings
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RES_HEAT0_ADDR = 0x5a
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GAS_WAIT0_ADDR = 0x64
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# Sensor configuration registers
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CONF_HEAT_CTRL_ADDR = 0x70
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CONF_ODR_RUN_GAS_NBC_ADDR = 0x71
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CONF_OS_H_ADDR = 0x72
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MEM_PAGE_ADDR = 0xf3
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CONF_T_P_MODE_ADDR = 0x74
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CONF_ODR_FILT_ADDR = 0x75
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# Coefficient's address
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COEFF_ADDR1 = 0x89
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COEFF_ADDR2 = 0xe1
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# Chip identifier
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CHIP_ID_ADDR = 0xd0
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# Soft reset register
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SOFT_RESET_ADDR = 0xe0
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# Heater control settings
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ENABLE_HEATER = 0x00
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DISABLE_HEATER = 0x08
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# Gas measurement settings
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DISABLE_GAS_MEAS = 0x00
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ENABLE_GAS_MEAS = 0x01
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# Over-sampling settings
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OS_NONE = 0
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OS_1X = 1
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OS_2X = 2
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OS_4X = 3
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OS_8X = 4
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OS_16X = 5
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# IIR filter settings
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FILTER_SIZE_0 = 0
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FILTER_SIZE_1 = 1
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FILTER_SIZE_3 = 2
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FILTER_SIZE_7 = 3
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FILTER_SIZE_15 = 4
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FILTER_SIZE_31 = 5
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FILTER_SIZE_63 = 6
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FILTER_SIZE_127 = 7
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# Power mode settings
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SLEEP_MODE = 0
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FORCED_MODE = 1
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# Delay related macro declaration
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RESET_PERIOD = 10
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# SPI memory page settings
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MEM_PAGE0 = 0x10
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MEM_PAGE1 = 0x00
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# Ambient humidity shift value for compensation
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HUM_REG_SHIFT_VAL = 4
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# Run gas enable and disable settings
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RUN_GAS_DISABLE = 0
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RUN_GAS_ENABLE = 1
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# Buffer length macro declaration
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TMP_BUFFER_LENGTH = 40
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REG_BUFFER_LENGTH = 6
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FIELD_DATA_LENGTH = 3
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GAS_REG_BUF_LENGTH = 20
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GAS_HEATER_PROF_LEN_MAX = 10
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# Settings selector
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OST_SEL = 1
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OSP_SEL = 2
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OSH_SEL = 4
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GAS_MEAS_SEL = 8
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FILTER_SEL = 16
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HCNTRL_SEL = 32
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RUN_GAS_SEL = 64
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NBCONV_SEL = 128
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GAS_SENSOR_SEL = GAS_MEAS_SEL | RUN_GAS_SEL | NBCONV_SEL
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# Number of conversion settings
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NBCONV_MIN = 0
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NBCONV_MAX = 9 # Was 10, but there are only 10 settings: 0 1 2 ... 8 9
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# Mask definitions
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GAS_MEAS_MSK = 0x30
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NBCONV_MSK = 0X0F
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FILTER_MSK = 0X1C
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OST_MSK = 0XE0
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OSP_MSK = 0X1C
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OSH_MSK = 0X07
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HCTRL_MSK = 0x08
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RUN_GAS_MSK = 0x10
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MODE_MSK = 0x03
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RHRANGE_MSK = 0x30
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RSERROR_MSK = 0xf0
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NEW_DATA_MSK = 0x80
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GAS_INDEX_MSK = 0x0f
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GAS_RANGE_MSK = 0x0f
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GASM_VALID_MSK = 0x20
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HEAT_STAB_MSK = 0x10
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MEM_PAGE_MSK = 0x10
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SPI_RD_MSK = 0x80
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SPI_WR_MSK = 0x7f
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BIT_H1_DATA_MSK = 0x0F
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# Bit position definitions for sensor settings
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GAS_MEAS_POS = 4
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FILTER_POS = 2
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OST_POS = 5
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OSP_POS = 2
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OSH_POS = 0
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RUN_GAS_POS = 4
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MODE_POS = 0
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NBCONV_POS = 0
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# Array Index to Field data mapping for Calibration Data
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T2_LSB_REG = 1
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T2_MSB_REG = 2
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T3_REG = 3
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P1_LSB_REG = 5
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P1_MSB_REG = 6
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P2_LSB_REG = 7
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P2_MSB_REG = 8
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P3_REG = 9
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P4_LSB_REG = 11
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P4_MSB_REG = 12
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P5_LSB_REG = 13
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P5_MSB_REG = 14
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P7_REG = 15
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P6_REG = 16
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P8_LSB_REG = 19
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P8_MSB_REG = 20
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P9_LSB_REG = 21
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P9_MSB_REG = 22
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P10_REG = 23
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H2_MSB_REG = 25
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H2_LSB_REG = 26
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H1_LSB_REG = 26
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H1_MSB_REG = 27
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H3_REG = 28
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H4_REG = 29
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H5_REG = 30
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H6_REG = 31
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H7_REG = 32
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T1_LSB_REG = 33
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T1_MSB_REG = 34
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GH2_LSB_REG = 35
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GH2_MSB_REG = 36
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GH1_REG = 37
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GH3_REG = 38
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# BME680 register buffer index settings
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REG_FILTER_INDEX = 5
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REG_TEMP_INDEX = 4
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REG_PRES_INDEX = 4
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REG_HUM_INDEX = 2
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REG_NBCONV_INDEX = 1
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REG_RUN_GAS_INDEX = 1
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REG_HCTRL_INDEX = 0
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# Look up tables for the possible gas range values
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lookupTable1 = [2147483647, 2147483647, 2147483647, 2147483647,
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2147483647, 2126008810, 2147483647, 2130303777, 2147483647,
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2147483647, 2143188679, 2136746228, 2147483647, 2126008810,
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2147483647, 2147483647]
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lookupTable2 = [4096000000, 2048000000, 1024000000, 512000000,
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255744255, 127110228, 64000000, 32258064,
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16016016, 8000000, 4000000, 2000000,
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1000000, 500000, 250000, 125000]
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def bytes_to_word(msb, lsb, bits=16, signed=False):
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"""Convert a most and least significant byte into a word."""
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# TODO: Reimpliment with struct
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word = (msb << 8) | lsb
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if signed:
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word = twos_comp(word, bits)
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return word
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def twos_comp(val, bits=16):
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"""Convert two bytes into a two's compliment signed word."""
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# TODO: Reimpliment with struct
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if val & (1 << (bits - 1)) != 0:
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val = val - (1 << bits)
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return val
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class FieldData:
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"""Structure for storing BME680 sensor data."""
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def __init__(self): # noqa D107
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# Contains new_data, gasm_valid & heat_stab
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self.status = None
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self.heat_stable = False
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# The index of the heater profile used
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self.gas_index = None
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# Measurement index to track order
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self.meas_index = None
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# Temperature in degree celsius x100
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self.temperature = None
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# Pressure in Pascal
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self.pressure = None
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# Humidity in % relative humidity x1000
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self.humidity = None
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# Gas resistance in Ohms
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self.gas_resistance = None
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class CalibrationData:
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"""Structure for storing BME680 calibration data."""
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def __init__(self): # noqa D107
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self.par_h1 = None
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self.par_h2 = None
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self.par_h3 = None
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self.par_h4 = None
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self.par_h5 = None
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self.par_h6 = None
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self.par_h7 = None
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self.par_gh1 = None
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self.par_gh2 = None
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self.par_gh3 = None
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self.par_t1 = None
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self.par_t2 = None
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self.par_t3 = None
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self.par_p1 = None
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self.par_p2 = None
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self.par_p3 = None
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self.par_p4 = None
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self.par_p5 = None
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self.par_p6 = None
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self.par_p7 = None
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self.par_p8 = None
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self.par_p9 = None
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self.par_p10 = None
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# Variable to store t_fine size
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self.t_fine = None
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# Variable to store heater resistance range
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self.res_heat_range = None
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# Variable to store heater resistance value
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self.res_heat_val = None
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# Variable to store error range
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self.range_sw_err = None
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def set_from_array(self, calibration):
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"""Set paramaters from an array of bytes."""
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# Temperature related coefficients
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self.par_t1 = bytes_to_word(calibration[T1_MSB_REG], calibration[T1_LSB_REG])
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self.par_t2 = bytes_to_word(calibration[T2_MSB_REG], calibration[T2_LSB_REG], bits=16, signed=True)
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self.par_t3 = twos_comp(calibration[T3_REG], bits=8)
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# Pressure related coefficients
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self.par_p1 = bytes_to_word(calibration[P1_MSB_REG], calibration[P1_LSB_REG])
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self.par_p2 = bytes_to_word(calibration[P2_MSB_REG], calibration[P2_LSB_REG], bits=16, signed=True)
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self.par_p3 = twos_comp(calibration[P3_REG], bits=8)
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self.par_p4 = bytes_to_word(calibration[P4_MSB_REG], calibration[P4_LSB_REG], bits=16, signed=True)
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self.par_p5 = bytes_to_word(calibration[P5_MSB_REG], calibration[P5_LSB_REG], bits=16, signed=True)
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self.par_p6 = twos_comp(calibration[P6_REG], bits=8)
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self.par_p7 = twos_comp(calibration[P7_REG], bits=8)
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self.par_p8 = bytes_to_word(calibration[P8_MSB_REG], calibration[P8_LSB_REG], bits=16, signed=True)
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self.par_p9 = bytes_to_word(calibration[P9_MSB_REG], calibration[P9_LSB_REG], bits=16, signed=True)
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self.par_p10 = calibration[P10_REG]
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# Humidity related coefficients
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self.par_h1 = (calibration[H1_MSB_REG] << HUM_REG_SHIFT_VAL) | (calibration[H1_LSB_REG] & BIT_H1_DATA_MSK)
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self.par_h2 = (calibration[H2_MSB_REG] << HUM_REG_SHIFT_VAL) | (calibration[H2_LSB_REG] >> HUM_REG_SHIFT_VAL)
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self.par_h3 = twos_comp(calibration[H3_REG], bits=8)
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self.par_h4 = twos_comp(calibration[H4_REG], bits=8)
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self.par_h5 = twos_comp(calibration[H5_REG], bits=8)
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self.par_h6 = calibration[H6_REG]
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self.par_h7 = twos_comp(calibration[H7_REG], bits=8)
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# Gas heater related coefficients
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self.par_gh1 = twos_comp(calibration[GH1_REG], bits=8)
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self.par_gh2 = bytes_to_word(calibration[GH2_MSB_REG], calibration[GH2_LSB_REG], bits=16, signed=True)
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self.par_gh3 = twos_comp(calibration[GH3_REG], bits=8)
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def set_other(self, heat_range, heat_value, sw_error):
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"""Set other values."""
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self.res_heat_range = (heat_range & RHRANGE_MSK) // 16
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self.res_heat_val = heat_value
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self.range_sw_err = (sw_error & RSERROR_MSK) // 16
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class TPHSettings:
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"""Structure for storing BME680 sensor settings.
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Comprises of output data rate, over-sampling and filter settings.
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"""
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def __init__(self): # noqa D107
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# Humidity oversampling
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self.os_hum = None
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# Temperature oversampling
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self.os_temp = None
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# Pressure oversampling
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self.os_pres = None
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# Filter coefficient
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self.filter = None
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class GasSettings:
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"""Structure for storing BME680 gas settings and status."""
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def __init__(self): # noqa D107
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# Variable to store nb conversion
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self.nb_conv = None
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# Variable to store heater control
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self.heatr_ctrl = None
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# Run gas enable value
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self.run_gas = None
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# Pointer to store heater temperature
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self.heatr_temp = None
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# Pointer to store duration profile
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self.heatr_dur = None
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class BME680Data:
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"""Structure to represent BME680 device."""
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def __init__(self): # noqa D107
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# Chip Id
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self.chip_id = None
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# Device Id
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self.dev_id = None
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# SPI/I2C interface
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self.intf = None
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# Memory page used
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self.mem_page = None
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# Ambient temperature in Degree C
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self.ambient_temperature = None
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# Field Data
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self.data = FieldData()
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# Sensor calibration data
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self.calibration_data = CalibrationData()
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# Sensor settings
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self.tph_settings = TPHSettings()
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# Gas Sensor settings
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self.gas_settings = GasSettings()
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# Sensor power modes
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self.power_mode = None
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# New sensor fields
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self.new_fields = None
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