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boards/frdm-k64f: fixes long lines and comma separated by whitespaces warnings
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@ -1,6 +1,7 @@
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/*
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* Copyright (C) 2014 Freie Universität Berlin
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* Copyright (C) 2015 PHYTEC Messtechnik GmbH
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* 2015 PHYTEC Messtechnik GmbH
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* 2023 Hugues Larrive
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*
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* This file is subject to the terms and conditions of the GNU Lesser General
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* Public License v2.1. See the file LICENSE in the top level directory for more
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@ -15,6 +16,7 @@
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* @name Peripheral MCU configuration for the FRDM-K64F
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*
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* @author Johann Fischer <j.fischer@phytec.de>
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* @author Hugues Larrive <hugues.larrive@pm.me>
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*/
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#ifndef PERIPH_CONF_H
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@ -127,32 +129,94 @@ static const uart_conf_t uart_config[] = {
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* @{
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*/
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static const adc_conf_t adc_config[] = {
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[ 0] = { .dev = ADC0, .pin = GPIO_PIN(PORT_B, 2), .chan = 12, .avg = ADC_AVG_MAX }, /* PTB2 (Arduino A0) */
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[ 1] = { .dev = ADC0, .pin = GPIO_PIN(PORT_B, 3), .chan = 13, .avg = ADC_AVG_MAX }, /* PTB3 (Arduino A1) */
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[ 2] = { .dev = ADC1, .pin = GPIO_PIN(PORT_B, 10), .chan = 14, .avg = ADC_AVG_MAX }, /* PTB10 (Arduino A2) */
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[ 3] = { .dev = ADC1, .pin = GPIO_PIN(PORT_B, 11), .chan = 15, .avg = ADC_AVG_MAX }, /* PTB11 (Arduino A3) */
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[ 4] = { .dev = ADC1, .pin = GPIO_PIN(PORT_C, 11), .chan = 7, .avg = ADC_AVG_MAX }, /* PTC11 (Arduino A4) */
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[ 5] = { .dev = ADC1, .pin = GPIO_PIN(PORT_C, 10), .chan = 6, .avg = ADC_AVG_MAX }, /* PTC10 (Arduino A5) */
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[ 6] = { .dev = ADC0, .pin = GPIO_UNDEF , .chan = 0, .avg = ADC_AVG_MAX }, /* ADC0_DP0 */
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[ 7] = { .dev = ADC0, .pin = GPIO_UNDEF , .chan = 19, .avg = ADC_AVG_MAX }, /* ADC0_DM0 */
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[ 8] = { .dev = ADC0, .pin = GPIO_UNDEF , .chan = (0 | ADC_SC1_DIFF_MASK), .avg = ADC_AVG_MAX }, /* ADC0_DP0 - ADC0_DM0 */
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[ 9] = { .dev = ADC1, .pin = GPIO_UNDEF , .chan = 0, .avg = ADC_AVG_MAX }, /* ADC1_DP0 */
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[10] = { .dev = ADC1, .pin = GPIO_UNDEF , .chan = 19, .avg = ADC_AVG_MAX }, /* ADC1_DM0 */
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[11] = { .dev = ADC1, .pin = GPIO_UNDEF , .chan = (0 | ADC_SC1_DIFF_MASK), .avg = ADC_AVG_MAX }, /* ADC1_DP0 - ADC1_DM0 */
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[12] = { .dev = ADC0, .pin = GPIO_UNDEF , .chan = 1, .avg = ADC_AVG_MAX }, /* ADC0_DP1 */
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[13] = { .dev = ADC0, .pin = GPIO_UNDEF , .chan = 20, .avg = ADC_AVG_MAX }, /* ADC0_DM1 */
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[14] = { .dev = ADC0, .pin = GPIO_UNDEF , .chan = (1 | ADC_SC1_DIFF_MASK), .avg = ADC_AVG_MAX }, /* ADC0_DP1 - ADC0_DM1 */
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[15] = { .dev = ADC1, .pin = GPIO_UNDEF , .chan = 1, .avg = ADC_AVG_MAX }, /* ADC1_DP1 */
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[16] = { .dev = ADC1, .pin = GPIO_UNDEF , .chan = 20, .avg = ADC_AVG_MAX }, /* ADC1_DM1 */
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[17] = { .dev = ADC1, .pin = GPIO_UNDEF , .chan = (1 | ADC_SC1_DIFF_MASK), .avg = ADC_AVG_MAX }, /* ADC1_DP1 - ADC1_DM1 */
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[ 0] = { /* PTB2 (Arduino A0) */
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.dev = ADC0, .pin = GPIO_PIN(PORT_B, 2),
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.chan = 12, .avg = ADC_AVG_MAX
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},
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[ 1] = { /* PTB3 (Arduino A1) */
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.dev = ADC0, .pin = GPIO_PIN(PORT_B, 3),
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.chan = 13, .avg = ADC_AVG_MAX
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},
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[ 2] = { /* PTB10 (Arduino A2) */
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.dev = ADC1, .pin = GPIO_PIN(PORT_B, 10),
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.chan = 14, .avg = ADC_AVG_MAX
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},
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[ 3] = { /* PTB11 (Arduino A3) */
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.dev = ADC1, .pin = GPIO_PIN(PORT_B, 11),
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.chan = 15, .avg = ADC_AVG_MAX
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},
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[ 4] = { /* PTC11 (Arduino A4) */
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.dev = ADC1, .pin = GPIO_PIN(PORT_C, 11),
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.chan = 7, .avg = ADC_AVG_MAX
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},
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[ 5] = { /* PTC10 (Arduino A5) */
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.dev = ADC1, .pin = GPIO_PIN(PORT_C, 10),
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.chan = 6, .avg = ADC_AVG_MAX
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},
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[ 6] = { /* ADC0_DP0 */
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.dev = ADC0, .pin = GPIO_UNDEF,
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.chan = 0, .avg = ADC_AVG_MAX
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},
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[ 7] = { /* ADC0_DM0 */
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.dev = ADC0, .pin = GPIO_UNDEF,
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.chan = 19, .avg = ADC_AVG_MAX
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},
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[ 8] = { /* ADC0_DP0 - ADC0_DM0 */
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.dev = ADC0, .pin = GPIO_UNDEF,
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.chan = (0 | ADC_SC1_DIFF_MASK), .avg = ADC_AVG_MAX
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},
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[ 9] = { /* ADC1_DP0 */
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.dev = ADC1, .pin = GPIO_UNDEF,
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.chan = 0, .avg = ADC_AVG_MAX
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},
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[10] = { /* ADC1_DM0 */
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.dev = ADC1, .pin = GPIO_UNDEF,
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.chan = 19, .avg = ADC_AVG_MAX
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},
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[11] = { /* ADC1_DP0 - ADC1_DM0 */
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.dev = ADC1, .pin = GPIO_UNDEF,
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.chan = (0 | ADC_SC1_DIFF_MASK), .avg = ADC_AVG_MAX
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},
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[12] = { /* ADC0_DP1 */
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.dev = ADC0, .pin = GPIO_UNDEF,
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.chan = 1, .avg = ADC_AVG_MAX
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},
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[13] = { /* ADC0_DM1 */
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.dev = ADC0, .pin = GPIO_UNDEF,
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.chan = 20, .avg = ADC_AVG_MAX
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},
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[14] = { /* ADC0_DP1 - ADC0_DM1 */
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.dev = ADC0, .pin = GPIO_UNDEF,
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.chan = (1 | ADC_SC1_DIFF_MASK), .avg = ADC_AVG_MAX
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},
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[15] = { /* ADC1_DP1 */
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.dev = ADC1, .pin = GPIO_UNDEF,
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.chan = 1, .avg = ADC_AVG_MAX
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},
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[16] = { /* ADC1_DM1 */
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.dev = ADC1, .pin = GPIO_UNDEF,
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.chan = 20, .avg = ADC_AVG_MAX
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},
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[17] = { /* ADC1_DP1 - ADC1_DM1 */
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.dev = ADC1, .pin = GPIO_UNDEF,
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.chan = (1 | ADC_SC1_DIFF_MASK), .avg = ADC_AVG_MAX
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},
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/* internal: temperature sensor */
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/* The temperature sensor has a very high output impedance, it must not be
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* sampled using hardware averaging, or the sampled values will be garbage */
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[18] = { .dev = ADC0, .pin = GPIO_UNDEF, .chan = 26, .avg = ADC_AVG_NONE },
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/* The temperature sensor has a very high output impedance, it must
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* not be sampled using hardware averaging, or the sampled values
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* will be garbage */
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[18] = {
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.dev = ADC0, .pin = GPIO_UNDEF,
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.chan = 26, .avg = ADC_AVG_NONE
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},
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/* internal: band gap */
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/* Note: the band gap buffer uses a bit of current and is turned off by default,
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* Set PMC->REGSC |= PMC_REGSC_BGBE_MASK before reading or the input will be floating */
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[19] = { .dev = ADC0, .pin = GPIO_UNDEF, .chan = 27, .avg = ADC_AVG_MAX },
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/* Note: the band gap buffer uses a bit of current and is turned off
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* by default, set PMC->REGSC |= PMC_REGSC_BGBE_MASK before reading
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* or the input will be floating */
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[19] = {
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.dev = ADC0, .pin = GPIO_UNDEF,
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.chan = 27, .avg = ADC_AVG_MAX
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},
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};
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#define ADC_NUMOF ARRAY_SIZE(adc_config)
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