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315 lines
7.9 KiB
315 lines
7.9 KiB
/* |
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* Copyright (c) 2023 Antmicro <www.antmicro.com> |
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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 silabs_gecko_adc |
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#include <zephyr/drivers/adc.h> |
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#include <em_adc.h> |
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#include <em_cmu.h> |
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#define ADC_CONTEXT_USES_KERNEL_TIMER |
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#include "adc_context.h" |
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#include <zephyr/logging/log.h> |
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LOG_MODULE_REGISTER(adc_gecko, CONFIG_ADC_LOG_LEVEL); |
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/* Number of channels available. */ |
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#define GECKO_CHANNEL_COUNT 16 |
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struct adc_gecko_channel_config { |
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bool initialized; |
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ADC_Ref_TypeDef reference; |
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ADC_PosSel_TypeDef input_select; |
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}; |
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struct adc_gecko_data { |
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const struct device *dev; |
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struct adc_context ctx; |
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uint16_t *buffer; |
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uint16_t *repeat_buffer; |
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uint32_t channels; |
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uint8_t channel_id; |
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ADC_Res_TypeDef resolution; |
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struct adc_gecko_channel_config channel_config[GECKO_CHANNEL_COUNT]; |
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}; |
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struct adc_gecko_config { |
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ADC_TypeDef *base; |
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void (*irq_cfg_func)(void); |
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uint32_t frequency; |
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}; |
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static void adc_gecko_set_config(const struct device *dev) |
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{ |
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struct adc_gecko_data *data = dev->data; |
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struct adc_gecko_channel_config *channel_config = NULL; |
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const struct adc_gecko_config *config = dev->config; |
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ADC_TypeDef *adc_base = (ADC_TypeDef *)config->base; |
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ADC_Init_TypeDef init = ADC_INIT_DEFAULT; |
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ADC_InitSingle_TypeDef initSingle = ADC_INITSINGLE_DEFAULT; |
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channel_config = &data->channel_config[data->channel_id]; |
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init.prescale = ADC_PrescaleCalc(config->frequency, 0); |
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init.timebase = ADC_TimebaseCalc(0); |
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initSingle.diff = false; |
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initSingle.reference = channel_config->reference; |
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initSingle.resolution = data->resolution; |
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initSingle.acqTime = adcAcqTime4; |
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initSingle.posSel = channel_config->input_select; |
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ADC_Init(adc_base, &init); |
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ADC_InitSingle(adc_base, &initSingle); |
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} |
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static int adc_gecko_check_buffer_size(const struct adc_sequence *sequence, |
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uint8_t active_channels) |
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{ |
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size_t needed_buffer_size; |
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needed_buffer_size = active_channels * sizeof(uint16_t); |
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if (sequence->options) { |
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needed_buffer_size *= (1 + sequence->options->extra_samplings); |
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} |
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if (sequence->buffer_size < needed_buffer_size) { |
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LOG_DBG("Provided buffer is too small (%u/%u)", |
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sequence->buffer_size, needed_buffer_size); |
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return -ENOMEM; |
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} |
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return 0; |
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} |
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static int start_read(const struct device *dev, const struct adc_sequence *sequence) |
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{ |
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struct adc_gecko_data *data = dev->data; |
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uint32_t channels; |
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uint8_t channel_count; |
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uint8_t index; |
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int res; |
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/* Check if at least 1 channel is requested */ |
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if (sequence->channels == 0) { |
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LOG_DBG("No channel requested"); |
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return -EINVAL; |
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} |
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if (sequence->oversampling) { |
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LOG_ERR("Oversampling is not supported"); |
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return -ENOTSUP; |
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} |
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/* Verify all requested channels are initialized and store resolution */ |
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channels = sequence->channels; |
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channel_count = 0; |
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while (channels) { |
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/* Iterate through all channels and check if they are initialized */ |
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index = find_lsb_set(channels) - 1; |
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if (index >= GECKO_CHANNEL_COUNT) { |
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LOG_DBG("Requested channel index not available: %d", index); |
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return -EINVAL; |
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} |
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if (!data->channel_config[index].initialized) { |
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LOG_DBG("Channel not initialized"); |
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return -EINVAL; |
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} |
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channel_count++; |
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channels &= ~BIT(index); |
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} |
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res = adc_gecko_check_buffer_size(sequence, channel_count); |
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if (res < 0) { |
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return res; |
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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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res = adc_context_wait_for_completion(&data->ctx); |
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return res; |
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} |
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static void adc_gecko_start_channel(const struct device *dev) |
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{ |
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const struct adc_gecko_config *config = dev->config; |
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struct adc_gecko_data *data = dev->data; |
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ADC_TypeDef *adc_base = (ADC_TypeDef *)config->base; |
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data->channel_id = find_lsb_set(data->channels) - 1; |
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adc_gecko_set_config(data->dev); |
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ADC_IntEnable(adc_base, ADC_IEN_SINGLE); |
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ADC_Start(adc_base, adcStartSingle); |
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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 adc_gecko_data *data = CONTAINER_OF(ctx, struct adc_gecko_data, ctx); |
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data->channels = ctx->sequence.channels; |
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adc_gecko_start_channel(data->dev); |
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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 adc_gecko_data *data = CONTAINER_OF(ctx, struct adc_gecko_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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static void adc_gecko_isr(void *arg) |
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{ |
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const struct device *dev = (const struct device *)arg; |
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const struct adc_gecko_config *config = dev->config; |
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struct adc_gecko_data *data = dev->data; |
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ADC_TypeDef *adc_base = config->base; |
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uint32_t sample = 0; |
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uint32_t flags, err; |
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flags = ADC_IntGet(adc_base); |
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__ASSERT(flags & ADC_IF_SINGLE, "unexpected ADC IRQ (flags=0x%08x)!", flags); |
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err = flags & (ADC_IF_EM23ERR | ADC_IF_PROGERR | ADC_IF_VREFOV | ADC_IF_SINGLEOF); |
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if (!err) { |
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sample = ADC_DataSingleGet(adc_base); |
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*data->buffer++ = (uint16_t)sample; |
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data->channels &= ~BIT(data->channel_id); |
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if (data->channels) { |
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adc_gecko_start_channel(dev); |
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} else { |
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adc_context_on_sampling_done(&data->ctx, dev); |
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} |
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} else { |
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LOG_ERR("ADC conversion error, flags=%08x", err); |
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adc_context_complete(&data->ctx, -EIO); |
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} |
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ADC_IntClear(adc_base, ADC_IF_SINGLE | err); |
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} |
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static int adc_gecko_read(const struct device *dev, |
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const struct adc_sequence *sequence) |
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{ |
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struct adc_gecko_data *data = dev->data; |
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int error; |
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adc_context_lock(&data->ctx, false, NULL); |
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error = 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_gecko_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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struct adc_gecko_data *data = dev->data; |
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struct adc_gecko_channel_config *channel_config = NULL; |
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if (channel_cfg->channel_id < GECKO_CHANNEL_COUNT) { |
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channel_config = &data->channel_config[channel_cfg->channel_id]; |
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} else { |
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LOG_DBG("Requested channel index not available: %d", channel_cfg->channel_id); |
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return -EINVAL; |
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} |
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channel_config->initialized = false; |
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channel_config->input_select = channel_cfg->input_positive; |
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switch (channel_cfg->gain) { |
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case ADC_GAIN_1: |
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break; |
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default: |
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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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switch (channel_cfg->reference) { |
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case ADC_REF_VDD_1: |
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channel_config->reference = adcRef5V; |
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break; |
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case ADC_REF_VDD_1_2: |
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channel_config->reference = adcRef2V5; |
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break; |
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case ADC_REF_VDD_1_4: |
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channel_config->reference = adcRef1V25; |
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break; |
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default: |
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LOG_ERR("unsupported channel reference type '%d'", channel_cfg->reference); |
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return -ENOTSUP; |
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} |
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channel_config->initialized = true; |
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return 0; |
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} |
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static int adc_gecko_init(const struct device *dev) |
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{ |
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const struct adc_gecko_config *config = dev->config; |
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struct adc_gecko_data *data = dev->data; |
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CMU_ClockEnable(cmuClock_HFPER, true); |
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CMU_ClockEnable(cmuClock_ADC0, true); |
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data->dev = dev; |
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data->resolution = adcRes12Bit; |
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config->irq_cfg_func(); |
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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 DEVICE_API(adc, api_gecko_adc_driver_api) = { |
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.channel_setup = adc_gecko_channel_setup, |
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.read = adc_gecko_read, |
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}; |
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#define GECKO_ADC_INIT(n) \ |
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\ |
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static void adc_gecko_config_func_##n(void); \ |
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\ |
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const static struct adc_gecko_config adc_gecko_config_##n = { \ |
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.base = (ADC_TypeDef *)DT_INST_REG_ADDR(n), \ |
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.irq_cfg_func = adc_gecko_config_func_##n, \ |
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.frequency = DT_INST_PROP(n, frequency), \ |
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}; \ |
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static struct adc_gecko_data adc_gecko_data_##n = { \ |
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ADC_CONTEXT_INIT_TIMER(adc_gecko_data_##n, ctx), \ |
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ADC_CONTEXT_INIT_LOCK(adc_gecko_data_##n, ctx), \ |
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ADC_CONTEXT_INIT_SYNC(adc_gecko_data_##n, ctx), \ |
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}; \ |
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static void adc_gecko_config_func_##n(void) \ |
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{ \ |
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IRQ_CONNECT(DT_INST_IRQN(n), \ |
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DT_INST_IRQ(n, priority), \ |
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adc_gecko_isr, DEVICE_DT_INST_GET(n), 0); \ |
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irq_enable(DT_INST_IRQN(n)); \ |
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}; \ |
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DEVICE_DT_INST_DEFINE(n, \ |
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&adc_gecko_init, NULL, \ |
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&adc_gecko_data_##n, &adc_gecko_config_##n,\ |
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POST_KERNEL, CONFIG_ADC_INIT_PRIORITY, \ |
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&api_gecko_adc_driver_api); |
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DT_INST_FOREACH_STATUS_OKAY(GECKO_ADC_INIT)
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