315 lines
9.0 KiB
C
315 lines
9.0 KiB
C
/* TI ADS7052 ADC
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*
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* Copyright (c) 2023 Google, LLC
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#define DT_DRV_COMPAT ti_ads7052
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#include <zephyr/device.h>
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#include <zephyr/drivers/adc.h>
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#include <zephyr/drivers/spi.h>
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#include <zephyr/logging/log.h>
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#include <zephyr/kernel.h>
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LOG_MODULE_REGISTER(adc_ads7052);
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#define ADC_CONTEXT_USES_KERNEL_TIMER
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#include "adc_context.h"
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#define ADS7052_RESOLUTION 14U
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struct ads7052_config {
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struct spi_dt_spec bus;
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uint8_t channels;
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};
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struct ads7052_data {
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struct adc_context ctx;
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const struct device *dev;
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uint16_t *buffer;
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uint16_t *repeat_buffer;
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uint8_t channels;
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struct k_thread thread;
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struct k_sem sem;
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K_KERNEL_STACK_MEMBER(stack, CONFIG_ADC_ADS7052_ACQUISITION_THREAD_STACK_SIZE);
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};
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static int adc_ads7052_channel_setup(const struct device *dev,
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const struct adc_channel_cfg *channel_cfg)
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{
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const struct ads7052_config *config = dev->config;
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if (channel_cfg->gain != ADC_GAIN_1) {
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LOG_ERR("unsupported channel gain '%d'", channel_cfg->gain);
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return -ENOTSUP;
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}
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if (channel_cfg->reference != ADC_REF_VDD_1) {
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LOG_ERR("unsupported channel reference '%d'", channel_cfg->reference);
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return -ENOTSUP;
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}
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if (channel_cfg->acquisition_time != ADC_ACQ_TIME_DEFAULT) {
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LOG_ERR("unsupported acquisition_time '%d'", channel_cfg->acquisition_time);
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return -ENOTSUP;
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}
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if (channel_cfg->channel_id >= config->channels) {
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LOG_ERR("unsupported channel id '%d'", channel_cfg->channel_id);
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return -ENOTSUP;
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}
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return 0;
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}
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static int ads7052_validate_buffer_size(const struct device *dev,
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const struct adc_sequence *sequence)
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{
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uint8_t channels = 0;
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size_t needed;
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channels = POPCOUNT(sequence->channels);
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needed = channels * sizeof(uint16_t);
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if (sequence->options) {
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needed *= (1 + sequence->options->extra_samplings);
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}
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if (sequence->buffer_size < needed) {
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return -ENOMEM;
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}
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return 0;
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}
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/**
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* @brief Send ADS7052 Offset calibration request
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*
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* On power-up, the host must provide 24 SCLKs in the first serial transfer to enter the OFFCAL
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* state. During normal operation, the host must provide 64 SCLKs in the serial transfer frame to
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* enter the OFFCAL state.
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*/
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static int ads7052_send_calibration(const struct device *dev, bool power_up)
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{
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const struct ads7052_config *config = dev->config;
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int err;
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uint8_t sclks_needed = power_up ? 24 : 64;
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uint8_t num_bytes = sclks_needed / 8;
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uint8_t tx_bytes[8] = {0};
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const struct spi_buf tx_buf = {.buf = tx_bytes, .len = num_bytes};
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const struct spi_buf_set tx = {.buffers = &tx_buf, .count = 1};
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err = spi_write_dt(&config->bus, &tx);
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return err;
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}
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static int ads7052_start_read(const struct device *dev, const struct adc_sequence *sequence)
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{
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const struct ads7052_config *config = dev->config;
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struct ads7052_data *data = dev->data;
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int err;
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if (sequence->resolution != ADS7052_RESOLUTION) {
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LOG_ERR("unsupported resolution %d", sequence->resolution);
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return -ENOTSUP;
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}
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if (find_msb_set(sequence->channels) > config->channels) {
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LOG_ERR("unsupported channels in mask: 0x%08x", sequence->channels);
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return -ENOTSUP;
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}
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if (sequence->calibrate) {
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ads7052_send_calibration(dev, false);
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}
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err = ads7052_validate_buffer_size(dev, sequence);
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if (err) {
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LOG_ERR("buffer size too small");
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return err;
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}
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data->buffer = sequence->buffer;
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adc_context_start_read(&data->ctx, sequence);
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return adc_context_wait_for_completion(&data->ctx);
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}
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static int adc_ads7052_read_async(const struct device *dev, const struct adc_sequence *sequence,
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struct k_poll_signal *async)
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{
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struct ads7052_data *data = dev->data;
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int error;
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adc_context_lock(&data->ctx, async ? true : false, async);
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error = ads7052_start_read(dev, sequence);
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adc_context_release(&data->ctx, error);
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return error;
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}
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static int adc_ads7052_read(const struct device *dev, const struct adc_sequence *sequence)
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{
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return adc_ads7052_read_async(dev, sequence, NULL);
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}
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static void adc_context_start_sampling(struct adc_context *ctx)
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{
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struct ads7052_data *data = CONTAINER_OF(ctx, struct ads7052_data, ctx);
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data->channels = ctx->sequence.channels;
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data->repeat_buffer = data->buffer;
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k_sem_give(&data->sem);
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}
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static void adc_context_update_buffer_pointer(struct adc_context *ctx, bool repeat_sampling)
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{
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struct ads7052_data *data = CONTAINER_OF(ctx, struct ads7052_data, ctx);
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if (repeat_sampling) {
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data->buffer = data->repeat_buffer;
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}
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}
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/**
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* @brief Get a 14-bit integer from raw ADC data.
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*
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* @param src Location of the big-endian 14-bit integer to get.
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*
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* @return 14-bit integer in host endianness.
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*/
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static inline int ads7052_get_be14(const uint8_t src[2])
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{
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return ((src[0] & 0x7F) << 7) | (src[1] >> 1);
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}
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/**
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* @brief Read ADS7052 over SPI interface
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*
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* A leading 0 is output on the SDO pin on the CS falling edge.
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* The most significant bit (MSB) of the output data is launched on the SDO pin on the rising edge
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* after the first SCLK falling edge. Subsequent output bits are launched on the subsequent rising
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* edges provided on SCLK. When all 14 output bits are shifted out, the device outputs 0's on the
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* subsequent SCLK rising edges. The device enters the ACQ state after 18 clocks and a minimum time
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* of tACQ must be provided for acquiring the next sample. If the device is provided with less than
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* 18 SCLK falling edges in the present serial transfer frame, the device provides an invalid
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* conversion result in the next serial transfer frame
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*/
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static int ads7052_read_channel(const struct device *dev, uint8_t channel, uint16_t *result)
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{
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const struct ads7052_config *config = dev->config;
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int err;
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uint8_t rx_bytes[3];
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const struct spi_buf rx_buf[1] = {{.buf = rx_bytes, .len = sizeof(rx_bytes)}};
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const struct spi_buf_set rx = {.buffers = rx_buf, .count = ARRAY_SIZE(rx_buf)};
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err = spi_read_dt(&config->bus, &rx);
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if (err) {
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return err;
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}
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*result = ads7052_get_be14(rx_bytes);
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*result &= BIT_MASK(ADS7052_RESOLUTION);
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return 0;
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}
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static void ads7052_acquisition_thread(void *p1, void *p2, void *p3)
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{
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ARG_UNUSED(p2);
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ARG_UNUSED(p3);
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struct ads7052_data *data = p1;
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uint16_t result = 0;
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uint8_t channel;
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int err = 0;
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err = ads7052_send_calibration(data->dev, true);
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if (err) {
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LOG_ERR("failed to send powerup sequence (err %d)", err);
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}
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while (true) {
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k_sem_take(&data->sem, K_FOREVER);
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while (data->channels != 0) {
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channel = find_lsb_set(data->channels) - 1;
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LOG_DBG("reading channel %d", channel);
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err = ads7052_read_channel(data->dev, channel, &result);
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if (err) {
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LOG_ERR("failed to read channel %d (err %d)", channel, err);
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adc_context_complete(&data->ctx, err);
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break;
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}
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LOG_DBG("read channel %d, result = %d", channel, result);
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*data->buffer++ = result;
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WRITE_BIT(data->channels, channel, 0);
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}
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adc_context_on_sampling_done(&data->ctx, data->dev);
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}
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}
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static int adc_ads7052_init(const struct device *dev)
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{
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const struct ads7052_config *config = dev->config;
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struct ads7052_data *data = dev->data;
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data->dev = dev;
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adc_context_init(&data->ctx);
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k_sem_init(&data->sem, 0, 1);
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if (!spi_is_ready_dt(&config->bus)) {
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LOG_ERR("SPI bus %s not ready", config->bus.bus->name);
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return -ENODEV;
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}
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k_thread_create(&data->thread, data->stack,
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K_KERNEL_STACK_SIZEOF(data->stack),
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ads7052_acquisition_thread, data, NULL, NULL,
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CONFIG_ADC_ADS7052_ACQUISITION_THREAD_PRIO, 0, K_NO_WAIT);
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adc_context_unlock_unconditionally(&data->ctx);
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return 0;
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}
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static const struct adc_driver_api ads7052_api = {
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.channel_setup = adc_ads7052_channel_setup,
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.read = adc_ads7052_read,
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#ifdef CONFIG_ADC_ASYNC
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.read_async = adc_ads7052_read_async,
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#endif
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};
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#define ADC_ADS7052_SPI_CFG \
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SPI_OP_MODE_MASTER | SPI_MODE_CPOL | SPI_MODE_CPHA | SPI_WORD_SET(8) | SPI_TRANSFER_MSB
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#define ADC_ADS7052_INIT(n) \
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\
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static const struct ads7052_config ads7052_cfg_##n = { \
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.bus = SPI_DT_SPEC_INST_GET(n, ADC_ADS7052_SPI_CFG, 1U), \
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.channels = 1, \
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}; \
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\
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static struct ads7052_data ads7052_data_##n = { \
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ADC_CONTEXT_INIT_TIMER(ads7052_data_##n, ctx), \
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ADC_CONTEXT_INIT_LOCK(ads7052_data_##n, ctx), \
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ADC_CONTEXT_INIT_SYNC(ads7052_data_##n, ctx), \
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}; \
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\
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DEVICE_DT_INST_DEFINE(n, adc_ads7052_init, NULL, &ads7052_data_##n, &ads7052_cfg_##n, \
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POST_KERNEL, CONFIG_ADC_ADS7052_INIT_PRIORITY, &ads7052_api);
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DT_INST_FOREACH_STATUS_OKAY(ADC_ADS7052_INIT)
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