393 lines
12 KiB
C
393 lines
12 KiB
C
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/**
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* \file
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*
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* \brief SAM I<SUP>2</SUP>S - Inter-IC Sound Controller
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*
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* Copyright (C) 2014-2015 Atmel Corporation. All rights reserved.
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*
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* \asf_license_start
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*
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* \page License
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, 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,
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* this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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*
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* 3. The name of Atmel may not be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* 4. This software may only be redistributed and used in connection with an
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* Atmel microcontroller product.
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*
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* THIS SOFTWARE IS PROVIDED BY ATMEL "AS IS" AND ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT ARE
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* EXPRESSLY AND SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR
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* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* 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,
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* STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
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* ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*
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* \asf_license_stop
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*
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*/
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/*
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* Support and FAQ: visit <a href="http://www.atmel.com/design-support/">Atmel Support</a>
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*/
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#include "i2s_callback.h"
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struct i2s_module *_i2s_instances[I2S_INST_NUM];
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static void _i2s_interrupt_handler(const uint8_t instance)
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{
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struct i2s_module *module = _i2s_instances[instance];
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struct i2s_serializer_module *data_module;
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/* Get interrupt flags */
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uint32_t intflag = module->hw->INTFLAG.reg;
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uint32_t inten = intflag & module->hw->INTENSET.reg;
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uint32_t run_flags = (I2S_INTFLAG_TXUR0 | I2S_INTFLAG_RXOR0);
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uint32_t ready_flags = (I2S_INTFLAG_TXRDY0 | I2S_INTFLAG_RXRDY0);
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uint32_t call_mask;
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uint8_t serializer;
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for (serializer = 0; serializer < 2; serializer ++) {
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data_module = &module->serializer[serializer];
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call_mask = data_module->registered_callback_mask &
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data_module->enabled_callback_mask;
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if (intflag & (run_flags | ready_flags)) {
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/* Serializer Tx ready */
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if ((I2S_INTFLAG_TXRDY0 << serializer) & inten) {
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if (data_module->transferred_words <
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data_module->requested_words) {
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/* Write data word */
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while (module->hw->SYNCBUSY.reg &
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(I2S_SYNCBUSY_DATA0 << serializer)) {
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/* Wait sync */
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}
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switch(data_module->data_size) {
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case I2S_DATA_SIZE_32BIT:
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case I2S_DATA_SIZE_24BIT:
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case I2S_DATA_SIZE_20BIT:
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case I2S_DATA_SIZE_18BIT:
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module->hw->DATA[serializer].reg =
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((uint32_t*)data_module->job_buffer) \
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[data_module->transferred_words];
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break;
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case I2S_DATA_SIZE_16BIT:
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case I2S_DATA_SIZE_16BIT_COMPACT:
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module->hw->DATA[serializer].reg =
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((uint16_t*)data_module->job_buffer) \
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[data_module->transferred_words];
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break;
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default:
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module->hw->DATA[serializer].reg =
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((uint8_t*)data_module->job_buffer) \
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[data_module->transferred_words];
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}
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/* Clear interrupt status */
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module->hw->INTFLAG.reg = I2S_INTFLAG_TXRDY0 << serializer;
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/* Count data */
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data_module->transferred_words ++;
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}
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/* Check if the buffer is done */
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if (data_module->transferred_words >=
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data_module->requested_words) {
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/* It's done */
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data_module->job_status = STATUS_OK;
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/* Disable interrupt */
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module->hw->INTENCLR.reg =
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I2S_INTFLAG_TXRDY0 << serializer;
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/* Invoke callback */
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if ((1 << I2S_SERIALIZER_CALLBACK_BUFFER_DONE) &
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call_mask) {
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(data_module->callback \
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[I2S_SERIALIZER_CALLBACK_BUFFER_DONE])(module);
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}
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}
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return;
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}
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/* Serializer Rx ready */
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if ((I2S_INTFLAG_RXRDY0 << serializer) & inten) {
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/* Read data word */
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switch(data_module->data_size) {
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case I2S_DATA_SIZE_32BIT:
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case I2S_DATA_SIZE_24BIT:
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case I2S_DATA_SIZE_20BIT:
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case I2S_DATA_SIZE_18BIT:
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((uint32_t*)data_module->job_buffer) \
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[data_module->transferred_words] =
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module->hw->DATA[serializer].reg;
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break;
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case I2S_DATA_SIZE_16BIT:
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case I2S_DATA_SIZE_16BIT_COMPACT:
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((uint16_t*)data_module->job_buffer) \
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[data_module->transferred_words] =
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(uint16_t)module->hw->DATA[serializer].reg;
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break;
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default:
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((uint8_t*)data_module->job_buffer) \
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[data_module->transferred_words] =
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(uint8_t)module->hw->DATA[serializer].reg;
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}
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/* Clear interrupt status */
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module->hw->INTFLAG.reg = I2S_INTFLAG_RXRDY0 << serializer;
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/* Count data */
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data_module->transferred_words ++;
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/* Check if the buffer is done */
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if (data_module->transferred_words >=
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data_module->requested_words) {
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if (data_module->job_status == STATUS_BUSY) {
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data_module->job_status = STATUS_OK;
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/* Disable interrupt */
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module->hw->INTENCLR.reg =
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I2S_INTFLAG_RXRDY0 << serializer;
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/* Invoke callback */
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if ((1 << I2S_SERIALIZER_CALLBACK_BUFFER_DONE) &
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call_mask) {
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(data_module->callback \
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[I2S_SERIALIZER_CALLBACK_BUFFER_DONE])(module);
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}
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}
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}
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return;
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}
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/* Serializer Tx undrerun or Rx overrun */
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if (run_flags & inten) {
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module->hw->INTFLAG.reg = I2S_INTFLAG_TXUR0 << serializer;
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if ((1 << I2S_SERIALIZER_CALLBACK_OVER_UNDER_RUN) &
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call_mask) {
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(data_module->callback \
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[I2S_SERIALIZER_CALLBACK_OVER_UNDER_RUN])(module);
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}
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return;
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}
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}
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run_flags <<= 1;
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ready_flags <<= 1;
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}
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}
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/** Interrupt handler for the I<SUP>2</SUP>S module */
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void I2S_Handler(void)
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{
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_i2s_interrupt_handler(0);
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}
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/**
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* \brief Write buffer to the specified Serializer of I<SUP>2</SUP>S module
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*
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* \param[in] module_inst Pointer to the software module instance struct
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* \param[in] serializer The serializer to write to
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* \param[in] buffer The data buffer to write
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* \param[in] size Number of data words to write
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*
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* \return Status of the initialization procedure.
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*
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* \retval STATUS_OK The data was sent successfully
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* \retval STATUS_ERR_DENIED The serializer is not in transmit mode
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* \retval STATUS_ERR_INVALID_ARG An invalid buffer pointer was supplied
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*/
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enum status_code i2s_serializer_write_buffer_job(
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struct i2s_module *const module_inst,
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const enum i2s_serializer serializer,
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const void *buffer,
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const uint32_t size)
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{
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struct i2s_serializer_module *data_module;
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/* Sanity check arguments */
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Assert(module_inst);
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Assert(module_inst->hw);
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Assert(serializer < I2S_SERIALIZER_N);
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data_module = &module_inst->serializer[serializer];
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/* Serializer must in transmit mode */
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if (data_module->mode != I2S_SERIALIZER_TRANSMIT) {
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return STATUS_ERR_DENIED;
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}
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/* Buffer should be aligned */
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switch(data_module->data_size) {
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case I2S_DATA_SIZE_32BIT:
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case I2S_DATA_SIZE_24BIT:
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case I2S_DATA_SIZE_20BIT:
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case I2S_DATA_SIZE_18BIT:
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if ((uint32_t)buffer & 0x3) {
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return STATUS_ERR_INVALID_ARG;
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}
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break;
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case I2S_DATA_SIZE_16BIT:
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case I2S_DATA_SIZE_16BIT_COMPACT:
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if ((uint32_t)buffer & 0x1) {
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return STATUS_ERR_INVALID_ARG;
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}
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break;
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default:
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break;
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}
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data_module = &module_inst->serializer[serializer];
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if (data_module->job_status == STATUS_BUSY) {
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return STATUS_BUSY;
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}
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data_module->job_status = STATUS_BUSY;
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data_module->requested_words = size;
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data_module->transferred_words = 0;
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data_module->job_buffer = (void*)buffer;
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module_inst->hw->INTENSET.reg = (I2S_INTENSET_TXRDY0 << serializer);
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return STATUS_OK;
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}
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/**
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* \brief Read from the specified Serializer of I<SUP>2</SUP>S module to a buffer
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*
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* \param[in] module_inst Pointer to the software module instance struct
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* \param[in] serializer The serializer to write to
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* \param[out] buffer The buffer to fill read data
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* \param[in] size Number of data words to read
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*
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* \return Status of the initialization procedure.
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*
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* \retval STATUS_OK The data was sent successfully
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* \retval STATUS_ERR_DENIED The serializer is not in receive mode
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* \retval STATUS_ERR_INVALID_ARG An invalid buffer pointer was supplied
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*/
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enum status_code i2s_serializer_read_buffer_job(
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struct i2s_module *const module_inst,
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const enum i2s_serializer serializer,
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void *buffer,
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const uint32_t size)
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{
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struct i2s_serializer_module *data_module;
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/* Sanity check arguments */
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Assert(module_inst);
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Assert(module_inst->hw);
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Assert(serializer < I2S_SERIALIZER_N);
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data_module = &module_inst->serializer[serializer];
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/* Serializer must in receive mode */
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if (data_module->mode == I2S_SERIALIZER_TRANSMIT) {
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return STATUS_ERR_DENIED;
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}
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/* Data buffer must be aligned */
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switch(data_module->data_size) {
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case I2S_DATA_SIZE_32BIT:
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case I2S_DATA_SIZE_24BIT:
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case I2S_DATA_SIZE_20BIT:
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case I2S_DATA_SIZE_18BIT:
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if ((uint32_t)buffer & 0x3) {
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return STATUS_ERR_INVALID_ARG;
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}
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break;
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case I2S_DATA_SIZE_16BIT:
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case I2S_DATA_SIZE_16BIT_COMPACT:
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if ((uint32_t)buffer & 0x1) {
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return STATUS_ERR_INVALID_ARG;
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}
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break;
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default:
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break;
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}
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data_module = &module_inst->serializer[serializer];
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if (data_module->job_status == STATUS_BUSY) {
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return STATUS_BUSY;
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}
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data_module->job_status = STATUS_BUSY;
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data_module->requested_words = size;
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data_module->transferred_words = 0;
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data_module->job_buffer = (void*)buffer;
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module_inst->hw->INTENCLR.reg = (I2S_INTENSET_RXRDY0 << serializer);
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module_inst->hw->INTENSET.reg = (I2S_INTENSET_RXRDY0 << serializer);
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return STATUS_OK;
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}
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/**
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* \brief Aborts an ongoing job running on serializer
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*
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* Aborts an ongoing job.
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*
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* \param[in] module_inst Pointer to the software module instance struct
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* \param[in] serializer The serializer which runs the job
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* \param[in] job_type Type of job to abort
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*/
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void i2s_serializer_abort_job(
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struct i2s_module *const module_inst,
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const enum i2s_serializer serializer,
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const enum i2s_job_type job_type)
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{
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/* Sanity check arguments */
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Assert(module_inst);
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Assert(module_inst->hw);
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Assert(serializer < I2S_SERIALIZER_N);
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if (job_type == I2S_JOB_WRITE_BUFFER) {
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/* Disable interrupt */
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module_inst->hw->INTENCLR.reg = (I2S_INTENCLR_TXRDY0 << serializer);
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/* Mark job as aborted */
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module_inst->serializer[serializer].job_status = STATUS_ABORTED;
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} else if (job_type == I2S_JOB_READ_BUFFER) {
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/* Disable interrupt */
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module_inst->hw->INTENCLR.reg = (I2S_INTENCLR_RXRDY0 << serializer);
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/* Mark job as aborted */
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module_inst->serializer[serializer].job_status = STATUS_ABORTED;
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}
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}
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/**
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* \brief Gets the status of a job running on serializer
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*
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* Gets the status of an ongoing or the last job.
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*
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* \param[in] module_inst Pointer to the software module instance struct
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* \param[in] serializer The serializer which runs the job
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* \param[in] job_type Type of job to abort
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*
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* \return Status of the job.
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*/
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enum status_code i2s_serializer_get_job_status(
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const struct i2s_module *const module_inst,
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const enum i2s_serializer serializer,
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const enum i2s_job_type job_type)
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{
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/* Sanity check arguments */
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Assert(module_inst);
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Assert(serializer < I2S_SERIALIZER_N);
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if (job_type == I2S_JOB_WRITE_BUFFER || job_type == I2S_JOB_READ_BUFFER) {
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return module_inst->serializer[serializer].job_status;
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} else {
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return STATUS_ERR_INVALID_ARG;
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}
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}
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