200 lines
7.1 KiB
C
200 lines
7.1 KiB
C
/***************************************************************************
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* Copyright (C) 2021 - 2023 by Federico Amedeo Izzo IU2NUO, *
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* Niccolò Izzo IU2KIN *
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* Frederik Saraci IU2NRO *
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* Silvano Seva IU2KWO *
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* *
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* This program is free software; you can redistribute it and/or modify *
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* it under the terms of the GNU General Public License as published by *
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* the Free Software Foundation; either version 3 of the License, or *
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* (at your option) any later version. *
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* *
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* This program is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* GNU General Public License for more details. *
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* *
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* You should have received a copy of the GNU General Public License *
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* along with this program; if not, see <http://www.gnu.org/licenses/> *
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***************************************************************************/
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#ifndef AUDIO_H
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#define AUDIO_H
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#include <stdbool.h>
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#include <stdint.h>
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#include <stddef.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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/**
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* This file provides a common interface for the platform-dependent low-level
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* audio driver.
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*/
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enum AudioSource
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{
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SOURCE_MIC = 0, ///< Receive audio signal from the microphone
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SOURCE_RTX = 1, ///< Receive audio signal from the transceiver
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SOURCE_MCU = 2 ///< Receive audio signal from a memory buffer
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};
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enum AudioSink
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{
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SINK_SPK = 0, ///< Send audio signal to the speaker
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SINK_RTX = 1, ///< Send audio signal to the transceiver
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SINK_MCU = 2 ///< Send audio signal to a memory buffer
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};
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enum AudioPriority
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{
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PRIO_BEEP = 1, ///< Priority level of system beeps
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PRIO_RX, ///< Priority level of incoming audio from RX stage
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PRIO_PROMPT, ///< Priority level of voice prompts
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PRIO_TX ///< Priority level of outward audio directed to TX stage
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};
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enum BufMode
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{
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BUF_LINEAR, ///< Linear buffer mode, conversion stops when full.
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BUF_CIRC_DOUBLE ///< Circular double buffer mode, conversion never stops,
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/// thread woken up whenever half of the buffer is full.
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};
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typedef int16_t stream_sample_t;
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/**
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* Data structure for audio stream context, to be used to configure audio
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* devices.
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*/
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struct streamCtx
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{
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void *priv; ///< Pointer to audio device private data.
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stream_sample_t *buffer; ///< Pointer to audio data buffer.
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size_t bufSize; ///< Size of the audio data buffer, in elements.
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uint8_t bufMode; ///< Buffer handling mode, linear or circular double.
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uint32_t sampleRate; ///< Sample rate, in Hz.
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uint8_t running; ///< Audio device status, set to 1 when active.
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}
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__attribute__((packed));
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/**
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* Driver interface for a generic audio device, either an input or output device,
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* bound to a specific input.
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*/
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struct audioDriver
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{
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/**
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* Start an audio stream to or from the device.
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*
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* @param instance: driver instance number.
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* @param config: driver configuration.
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* @param ctx: pointer to audio stream context.
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* @return zero on success, a negative error code on failure.
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*/
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int (*start)(const uint8_t instance, const void *config, struct streamCtx *ctx);
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/**
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* Get a pointer to the "free" data section, when running in circular double
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* buffered mode. For output streams the free data section is the one which
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* can be filled with new samples, for input streams is the section containing
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* the last acquired samples.
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*
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* @param ctx: pointer to audio stream context.
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* @param buf: pointer to the free section pointer.
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* @return size of the free data section.
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*/
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int (*data)(struct streamCtx *ctx, stream_sample_t **buf);
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/**
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* Synchronize the execution flow with the driver. Execution is blocked
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* until the driver reaches a syncpoint, either the end or the middle of the
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* data stream.
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*
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* @param ctx: pointer to audio stream context.
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* @param dirty: flag to signal to the driver that the "free" data section
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* contains new data. Meaningful only for output streams.
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* @return zero on success, -1 if the calling thread was not blocked.
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*/
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int (*sync)(struct streamCtx *ctx, uint8_t dirty);
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/**
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* Stop an ongoing data stream.
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* The stream is effectively stopped once it reaches the next syncpoint.
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*
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* @param ctx: pointer to audio stream context.
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*/
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void (*stop)(struct streamCtx *ctx);
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/**
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* Immediately stop an ongoing data stream.
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*
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* @param ctx: pointer to audio stream context.
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*/
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void (*terminate)(struct streamCtx *ctx);
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};
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/**
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* Audio device descriptor, grouping an audio driver, its configuration and
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* its input/output endpoint.
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*/
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struct audioDevice
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{
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const struct audioDriver *driver; ///< Audio driver functions
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const void *config; ///< Driver configuration
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const uint8_t instance; ///< Driver instance number
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const uint8_t endpoint; ///< Driver sink or source endpoint
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}
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__attribute__((packed));
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extern const struct audioDevice inputDevices[];
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extern const struct audioDevice outputDevices[];
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/**
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* Initialise low-level audio management module.
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*/
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void audio_init();
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/**
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* Shut down low-level audio management module.
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*/
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void audio_terminate();
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/**
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* Connect an audio source to an audio sink.
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*
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* @param source: identifier of the input audio peripheral.
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* @param sink: identifier of the output audio peripheral.
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*/
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void audio_connect(const enum AudioSource source, const enum AudioSink sink);
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/**
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* Disconnect an audio source from an audio sink.
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*
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* @param source: identifier of the input audio peripheral.
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* @param sink: identifier of the output audio peripheral.
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*/
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void audio_disconnect(const enum AudioSource source, const enum AudioSink sink);
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/**
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* Check if two audio paths are compatible that is, if they can be open at the
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* same time.
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*
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* @param p1Source: identifier of the input audio peripheral of the first path.
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* @param p1Sink: identifier of the output audio peripheral of the first path.
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* @param p2Source: identifier of the input audio peripheral of the second path.
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* @param p2Sink: identifier of the output audio peripheral of the second path.
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*/
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bool audio_checkPathCompatibility(const enum AudioSource p1Source,
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const enum AudioSink p1Sink,
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const enum AudioSource p2Source,
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const enum AudioSink p2Sink);
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#ifdef __cplusplus
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}
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#endif
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#endif /* AUDIO_H */
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