- BLE peripheral applications - dr_piezo and bladder_patch projects Co-Authored-By: Claude Opus 4.5 <noreply@anthropic.com>
341 lines
11 KiB
C
341 lines
11 KiB
C
/**
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* Copyright (c) 2015 - 2021, Nordic Semiconductor ASA
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*
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without modification,
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* are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice, this
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* list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form, except as embedded into a Nordic
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* Semiconductor ASA integrated circuit in a product or a software update for
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* such product, must reproduce the above copyright notice, this list of
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* conditions and the following disclaimer in the documentation and/or other
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* materials provided with the distribution.
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*
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* 3. Neither the name of Nordic Semiconductor ASA nor the names of its
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* contributors may be used to endorse or promote products derived from this
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* software without specific prior written permission.
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*
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* 4. This software, with or without modification, must only be used with a
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* Nordic Semiconductor ASA integrated circuit.
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*
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* 5. Any software provided in binary form under this license must not be reverse
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* engineered, decompiled, modified and/or disassembled.
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*
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* THIS SOFTWARE IS PROVIDED BY NORDIC SEMICONDUCTOR ASA "AS IS" AND ANY EXPRESS
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* OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY, NONINFRINGEMENT, AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL NORDIC SEMICONDUCTOR ASA OR CONTRIBUTORS BE
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
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* GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
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* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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*/
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#include <nrfx.h>
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#if NRFX_CHECK(NRFX_ADC_ENABLED)
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#include <nrfx_adc.h>
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#define NRFX_LOG_MODULE ADC
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#include <nrfx_log.h>
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#define EVT_TO_STR(event) (event == NRF_ADC_EVENT_END ? "NRF_ADC_EVENT_END" : "UNKNOWN EVENT")
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typedef struct
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{
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nrfx_adc_event_handler_t event_handler;
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nrfx_adc_channel_t * p_head;
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nrfx_adc_channel_t * p_current_conv;
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nrf_adc_value_t * p_buffer;
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uint16_t size;
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uint16_t idx;
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nrfx_drv_state_t state;
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} adc_cb_t;
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static adc_cb_t m_cb;
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nrfx_err_t nrfx_adc_init(nrfx_adc_config_t const * p_config,
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nrfx_adc_event_handler_t event_handler)
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{
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NRFX_ASSERT(p_config);
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nrfx_err_t err_code;
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if (m_cb.state != NRFX_DRV_STATE_UNINITIALIZED)
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{
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err_code = NRFX_ERROR_INVALID_STATE;
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NRFX_LOG_WARNING("Function: %s, error code: %s.",
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__func__,
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NRFX_LOG_ERROR_STRING_GET(err_code));
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return err_code;
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}
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nrf_adc_event_clear(NRF_ADC_EVENT_END);
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if (event_handler)
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{
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NRFX_IRQ_PRIORITY_SET(ADC_IRQn, p_config->interrupt_priority);
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NRFX_IRQ_ENABLE(ADC_IRQn);
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}
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m_cb.event_handler = event_handler;
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m_cb.state = NRFX_DRV_STATE_INITIALIZED;
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err_code = NRFX_SUCCESS;
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NRFX_LOG_INFO("Function: %s, error code: %s.", __func__, NRFX_LOG_ERROR_STRING_GET(err_code));
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return err_code;
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}
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void nrfx_adc_uninit(void)
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{
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NRFX_IRQ_DISABLE(ADC_IRQn);
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nrf_adc_int_disable(NRF_ADC_INT_END_MASK);
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nrf_adc_task_trigger(NRF_ADC_TASK_STOP);
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// Disable all channels. This must be done after the interrupt is disabled
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// because adc_sample_process() dereferences this pointer when it needs to
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// switch back to the first channel in the list (when the number of samples
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// to read is bigger than the number of enabled channels).
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m_cb.p_head = NULL;
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m_cb.state = NRFX_DRV_STATE_UNINITIALIZED;
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}
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void nrfx_adc_channel_enable(nrfx_adc_channel_t * const p_channel)
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{
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NRFX_ASSERT(!nrfx_adc_is_busy());
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p_channel->p_next = NULL;
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if (m_cb.p_head == NULL)
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{
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m_cb.p_head = p_channel;
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}
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else
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{
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nrfx_adc_channel_t * p_curr_channel = m_cb.p_head;
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while (p_curr_channel->p_next != NULL)
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{
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NRFX_ASSERT(p_channel != p_curr_channel);
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p_curr_channel = p_curr_channel->p_next;
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}
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p_curr_channel->p_next = p_channel;
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}
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NRFX_LOG_INFO("Enabled.");
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}
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void nrfx_adc_channel_disable(nrfx_adc_channel_t * const p_channel)
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{
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NRFX_ASSERT(m_cb.p_head);
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NRFX_ASSERT(!nrfx_adc_is_busy());
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nrfx_adc_channel_t * p_curr_channel = m_cb.p_head;
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nrfx_adc_channel_t * p_prev_channel = NULL;
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while (p_curr_channel != p_channel)
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{
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p_prev_channel = p_curr_channel;
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p_curr_channel = p_curr_channel->p_next;
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NRFX_ASSERT(p_curr_channel != NULL);
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}
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if (p_prev_channel)
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{
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p_prev_channel->p_next = p_curr_channel->p_next;
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}
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else
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{
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m_cb.p_head = p_curr_channel->p_next;
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}
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NRFX_LOG_INFO("Disabled.");
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}
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void nrfx_adc_all_channels_disable(void)
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{
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NRFX_ASSERT(!nrfx_adc_is_busy());
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m_cb.p_head = NULL;
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}
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void nrfx_adc_sample(void)
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{
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NRFX_ASSERT(m_cb.state != NRFX_DRV_STATE_UNINITIALIZED);
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NRFX_ASSERT(!nrf_adc_busy_check());
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nrf_adc_task_trigger(NRF_ADC_TASK_START);
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}
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nrfx_err_t nrfx_adc_sample_convert(nrfx_adc_channel_t const * const p_channel,
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nrf_adc_value_t * p_value)
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{
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nrfx_err_t err_code;
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NRFX_ASSERT(m_cb.state != NRFX_DRV_STATE_UNINITIALIZED);
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if (m_cb.state == NRFX_DRV_STATE_POWERED_ON)
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{
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err_code = NRFX_ERROR_BUSY;
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NRFX_LOG_WARNING("Function: %s, error code: %s.",
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__func__,
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NRFX_LOG_ERROR_STRING_GET(err_code));
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return err_code;
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}
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else
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{
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m_cb.state = NRFX_DRV_STATE_POWERED_ON;
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nrf_adc_init(&p_channel->config);
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nrf_adc_enable();
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nrf_adc_int_disable(NRF_ADC_INT_END_MASK);
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nrf_adc_task_trigger(NRF_ADC_TASK_START);
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if (p_value)
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{
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while (!nrf_adc_event_check(NRF_ADC_EVENT_END)) {}
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nrf_adc_event_clear(NRF_ADC_EVENT_END);
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*p_value = (nrf_adc_value_t)nrf_adc_result_get();
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nrf_adc_disable();
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m_cb.state = NRFX_DRV_STATE_INITIALIZED;
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}
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else
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{
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NRFX_ASSERT(m_cb.event_handler);
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m_cb.p_buffer = NULL;
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nrf_adc_int_enable(NRF_ADC_INT_END_MASK);
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}
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err_code = NRFX_SUCCESS;
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NRFX_LOG_INFO("Function: %s, error code: %s.",
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__func__,
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NRFX_LOG_ERROR_STRING_GET(err_code));
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return err_code;
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}
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}
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static bool adc_sample_process()
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{
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nrf_adc_event_clear(NRF_ADC_EVENT_END);
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nrf_adc_disable();
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m_cb.p_buffer[m_cb.idx] = (nrf_adc_value_t)nrf_adc_result_get();
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m_cb.idx++;
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if (m_cb.idx < m_cb.size)
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{
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bool task_trigger = false;
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if (m_cb.p_current_conv->p_next == NULL)
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{
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// Make sure the list of channels has not been somehow removed
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// (it is when all channels are disabled).
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NRFX_ASSERT(m_cb.p_head);
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m_cb.p_current_conv = m_cb.p_head;
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}
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else
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{
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m_cb.p_current_conv = m_cb.p_current_conv->p_next;
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task_trigger = true;
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}
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nrf_adc_init(&m_cb.p_current_conv->config);
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nrf_adc_enable();
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if (task_trigger)
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{
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nrf_adc_task_trigger(NRF_ADC_TASK_START);
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}
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return false;
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}
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else
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{
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return true;
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}
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}
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nrfx_err_t nrfx_adc_buffer_convert(nrf_adc_value_t * buffer, uint16_t size)
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{
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NRFX_ASSERT(m_cb.state != NRFX_DRV_STATE_UNINITIALIZED);
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nrfx_err_t err_code;
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NRFX_LOG_INFO("Number of samples requested to convert: %d.", size);
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if (m_cb.state == NRFX_DRV_STATE_POWERED_ON)
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{
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err_code = NRFX_ERROR_BUSY;
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NRFX_LOG_WARNING("Function: %s, error code: %s.",
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__func__,
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NRFX_LOG_ERROR_STRING_GET(err_code));
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return err_code;
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}
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else
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{
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m_cb.state = NRFX_DRV_STATE_POWERED_ON;
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m_cb.p_current_conv = m_cb.p_head;
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m_cb.size = size;
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m_cb.idx = 0;
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m_cb.p_buffer = buffer;
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nrf_adc_init(&m_cb.p_current_conv->config);
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nrf_adc_event_clear(NRF_ADC_EVENT_END);
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nrf_adc_enable();
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if (m_cb.event_handler)
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{
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nrf_adc_int_enable(NRF_ADC_INT_END_MASK);
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}
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else
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{
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while (1)
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{
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while (!nrf_adc_event_check(NRF_ADC_EVENT_END)){}
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if (adc_sample_process())
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{
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m_cb.state = NRFX_DRV_STATE_INITIALIZED;
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break;
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}
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}
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}
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err_code = NRFX_SUCCESS;
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NRFX_LOG_INFO("Function: %s, error code: %s.",
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__func__,
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NRFX_LOG_ERROR_STRING_GET(err_code));
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return err_code;
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}
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}
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bool nrfx_adc_is_busy(void)
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{
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NRFX_ASSERT(m_cb.state != NRFX_DRV_STATE_UNINITIALIZED);
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return (m_cb.state == NRFX_DRV_STATE_POWERED_ON) ? true : false;
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}
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void nrfx_adc_irq_handler(void)
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{
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if (m_cb.p_buffer == NULL)
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{
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nrf_adc_event_clear(NRF_ADC_EVENT_END);
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NRFX_LOG_DEBUG("Event: %s.",NRFX_LOG_ERROR_STRING_GET(NRF_ADC_EVENT_END));
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nrf_adc_int_disable(NRF_ADC_INT_END_MASK);
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nrf_adc_disable();
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nrfx_adc_evt_t evt;
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evt.type = NRFX_ADC_EVT_SAMPLE;
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evt.data.sample.sample = (nrf_adc_value_t)nrf_adc_result_get();
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NRFX_LOG_DEBUG("ADC data:");
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NRFX_LOG_HEXDUMP_DEBUG((uint8_t *)(&evt.data.sample.sample), sizeof(nrf_adc_value_t));
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m_cb.state = NRFX_DRV_STATE_INITIALIZED;
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m_cb.event_handler(&evt);
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}
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else if (adc_sample_process())
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{
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NRFX_LOG_DEBUG("Event: %s.", NRFX_LOG_ERROR_STRING_GET(NRF_ADC_EVENT_END));
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nrf_adc_int_disable(NRF_ADC_INT_END_MASK);
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nrfx_adc_evt_t evt;
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evt.type = NRFX_ADC_EVT_DONE;
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evt.data.done.p_buffer = m_cb.p_buffer;
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evt.data.done.size = m_cb.size;
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m_cb.state = NRFX_DRV_STATE_INITIALIZED;
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NRFX_LOG_DEBUG("ADC data:");
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NRFX_LOG_HEXDUMP_DEBUG((uint8_t *)m_cb.p_buffer, m_cb.size * sizeof(nrf_adc_value_t));
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m_cb.event_handler(&evt);
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}
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}
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#endif // NRFX_CHECK(NRFX_ADC_ENABLED)
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