| /kernel/linux/linux-4.19/drivers/gpu/drm/omapdrm/ |
| D | omap_dmm_tiler.h | 58 0 0 0 0-degree view Natural view 59 0 0 1 0-degree view with vertical mirror 180-degree view with horizontal mirror 60 0 1 0 0-degree view with horizontal mirror 180-degree view with vertical mirror 61 0 1 1 180-degree view 62 1 0 0 90-degree view with vertical mirror 270-degree view with horizontal mirror 63 1 0 1 270-degree view 64 1 1 0 90-degree view 65 1 1 1 90-degree view with horizontal mirror 270-degree view with vertical mirror
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| /kernel/linux/linux-5.10/drivers/gpu/drm/omapdrm/ |
| D | omap_dmm_tiler.h | 58 0 0 0 0-degree view Natural view 59 0 0 1 0-degree view with vertical mirror 180-degree view with horizontal mirror 60 0 1 0 0-degree view with horizontal mirror 180-degree view with vertical mirror 61 0 1 1 180-degree view 62 1 0 0 90-degree view with vertical mirror 270-degree view with horizontal mirror 63 1 0 1 270-degree view 64 1 1 0 90-degree view 65 1 1 1 90-degree view with horizontal mirror 270-degree view with vertical mirror
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| /kernel/linux/linux-4.19/Documentation/hwmon/ |
| D | amc6821 | 65 0 degree C to 124 degree C in steps of 66 4 degree C. Read it out after writing to get 75 temp2_auto_point1_temp rw Must be between 0 degree C and 63 degree C and 82 0 degree C to 124 degree C in steps 83 of 4 degree C.
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| D | nct7904 | 32 temp1_input Local temperature (1/1000 degree, 33 0.125 degree resolution) 35 temp[2-9]_input CPU temperatures (1/1000 degree, 36 0.125 degree resolution)
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| D | ds1621 | 48 degree Celsius to +125 in 0.5 increments. You may convert this into a 64 1.0 degree Celsius to avoid Tout "bouncing", though! 104 DS1621: +/- 0.5 degree Celsius (from 0 to +70 degrees) 105 DS1625: +/- 0.5 degree Celsius (from 0 to +70 degrees) 106 DS1631: +/- 0.5 degree Celsius (from 0 to +70 degrees) 107 DS1721: +/- 1.0 degree Celsius (from -10 to +85 degrees) 108 DS1731: +/- 1.0 degree Celsius (from -10 to +85 degrees)
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| D | tmp102 | 18 sensor is accurate to 0.5 degree over the range of -25 to +85 C, and to 1.0 19 degree from -40 to +125 C. Resolution of the sensor is 0.0625 degree. The
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| D | sht21 | 26 0.2 degree Celsius) compared with the SHT21 (2.0% relative humidity, 27 0.3 degree Celsius). 45 humidity and 66 ms for temperature. To keep self heating below 0.1 degree
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| D | tmp401 | 39 Celsius. Resolution of the remote sensor is 0.0625 degree. Local 40 sensor resolution can be set to 0.5, 0.25, 0.125 or 0.0625 degree (not 42 degree).
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| /kernel/linux/linux-5.10/Documentation/hwmon/ |
| D | amc6821.rst | 70 0 degree C to 124 degree C in steps of 71 4 degree C. Read it out after writing to get 80 temp2_auto_point1_temp rw Must be between 0 degree C and 63 degree C and 87 0 degree C to 124 degree C in steps 88 of 4 degree C.
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| D | nct7904.rst | 38 temp1_input Local temperature (1/1000 degree, 39 0.125 degree resolution) 41 temp[2-9]_input CPU temperatures (1/1000 degree, 42 0.125 degree resolution)
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| D | ds1621.rst | 67 degree Celsius to +125 in 0.5 increments. You may convert this into a 83 1.0 degree Celsius to avoid Tout "bouncing", though! 125 - DS1621: +/- 0.5 degree Celsius (from 0 to +70 degrees) 126 - DS1625: +/- 0.5 degree Celsius (from 0 to +70 degrees) 127 - DS1631: +/- 0.5 degree Celsius (from 0 to +70 degrees) 128 - DS1721: +/- 1.0 degree Celsius (from -10 to +85 degrees) 129 - DS1731: +/- 1.0 degree Celsius (from -10 to +85 degrees)
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| D | tmp102.rst | 23 sensor is accurate to 0.5 degree over the range of -25 to +85 C, and to 1.0 24 degree from -40 to +125 C. Resolution of the sensor is 0.0625 degree. The
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| D | sht21.rst | 40 0.2 degree Celsius) compared with the SHT21 (2.0% relative humidity, 41 0.3 degree Celsius). 63 humidity and 66 ms for temperature. To keep self heating below 0.1 degree
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| D | tmp401.rst | 65 Celsius. Resolution of the remote sensor is 0.0625 degree. Local 66 sensor resolution can be set to 0.5, 0.25, 0.125 or 0.0625 degree (not 68 degree).
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| D | xgene-hwmon.rst | 19 - SoC on-die temperature in milli-degree C 30 - SoC on-die temperature (milli-degree C)
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| /kernel/linux/linux-4.19/include/linux/power/ |
| D | smb347-charger.h | 56 * current [%100 - %130] (in degree C) 57 * @soft_cold_temp_limit: soft cold temperature limit [%0 - %15] (in degree C), 59 * @soft_hot_temp_limit: soft hot temperature limit [%40 - %55] (in degree C), 61 * @hard_cold_temp_limit: hard cold temperature limit [%-5 - %10] (in degree C), 63 * @hard_hot_temp_limit: hard hot temperature limit [%50 - %65] (in degree C),
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| /kernel/linux/linux-4.19/Documentation/thermal/ |
| D | exynos_thermal | 32 TI1: Trimming info for 25 degree Celsius (stored at TRIMINFO register) 33 Temperature code measured at 25 degree Celsius which is unchanged 34 TI2: Trimming info for 85 degree Celsius (stored at TRIMINFO register) 35 Temperature code measured at 85 degree Celsius which is unchanged
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| /kernel/linux/linux-5.10/Documentation/driver-api/thermal/ |
| D | exynos_thermal.rst | 40 Trimming info for 25 degree Celsius (stored at TRIMINFO register) 41 Temperature code measured at 25 degree Celsius which is unchanged 43 Trimming info for 85 degree Celsius (stored at TRIMINFO register) 44 Temperature code measured at 85 degree Celsius which is unchanged
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| /kernel/linux/linux-5.10/Documentation/devicetree/bindings/power/supply/ |
| D | battery.yaml | 75 An array providing the temperature in degree Celsius 82 An array containing the temperature in degree Celsius, 147 /* table for -10 degree Celsius */ 149 /* table for 0 degree Celsius */ 151 /* table for 10 degree Celsius */
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| /kernel/linux/linux-5.10/include/linux/ |
| D | bch.h | 24 * @ecc_bits: ecc exact size in bits, i.e. generator polynomial degree (<=m*t) 31 * @xi_tab: GF(2^m) base for solving degree 2 polynomial roots 35 * @poly_2t: temporary polynomials of degree 2t
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| /kernel/linux/linux-5.10/drivers/mtd/nand/raw/atmel/ |
| D | pmecc.c | 188 /* polynomial degree is the most-significant bit index */ in deg() 199 /* primitive polynomial must be of degree m */ in atmel_pmecc_build_gf_tables() 223 unsigned int poly, degree, table_size; in atmel_pmecc_create_gf_tables() local 227 degree = PMECC_GF_DIMENSION_13; in atmel_pmecc_create_gf_tables() 231 degree = PMECC_GF_DIMENSION_14; in atmel_pmecc_create_gf_tables() 245 ret = atmel_pmecc_build_gf_tables(degree, poly, gf_tables); in atmel_pmecc_create_gf_tables() 448 int degree = get_sectorsize(user) == 512 ? 13 : 14; in atmel_pmecc_substitute() local 449 int cw_len = BIT(degree) - 1; in atmel_pmecc_substitute() 468 for (j = 0; j < degree; j++) { in atmel_pmecc_substitute() 494 int degree = get_sectorsize(user) == 512 ? 13 : 14; in atmel_pmecc_get_sigma() local [all …]
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| /kernel/linux/linux-4.19/drivers/mtd/nand/raw/atmel/ |
| D | pmecc.c | 191 /* polynomial degree is the most-significant bit index */ in deg() 202 /* primitive polynomial must be of degree m */ in atmel_pmecc_build_gf_tables() 226 unsigned int poly, degree, table_size; in atmel_pmecc_create_gf_tables() local 230 degree = PMECC_GF_DIMENSION_13; in atmel_pmecc_create_gf_tables() 234 degree = PMECC_GF_DIMENSION_14; in atmel_pmecc_create_gf_tables() 248 ret = atmel_pmecc_build_gf_tables(degree, poly, gf_tables); in atmel_pmecc_create_gf_tables() 451 int degree = get_sectorsize(user) == 512 ? 13 : 14; in atmel_pmecc_substitute() local 452 int cw_len = BIT(degree) - 1; in atmel_pmecc_substitute() 471 for (j = 0; j < degree; j++) { in atmel_pmecc_substitute() 497 int degree = get_sectorsize(user) == 512 ? 13 : 14; in atmel_pmecc_get_sigma() local [all …]
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| /kernel/linux/linux-4.19/include/linux/ |
| D | bch.h | 36 * @ecc_bits: ecc exact size in bits, i.e. generator polynomial degree (<=m*t) 43 * @xi_tab: GF(2^m) base for solving degree 2 polynomial roots 47 * @poly_2t: temporary polynomials of degree 2t
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| /kernel/linux/linux-5.10/drivers/iio/gyro/ |
| D | adis16080.c | 176 /* 80 degree = 819, 819 rad = 46925 degree */ 181 /* 300 degree = 1230, 1230 rad = 70474 degree */
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| /kernel/linux/linux-4.19/drivers/iio/gyro/ |
| D | adis16080.c | 175 /* 80 degree = 819, 819 rad = 46925 degree */ 180 /* 300 degree = 1230, 1230 rad = 70474 degree */
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