OpenRTX/platform/drivers/audio/audio_CS7000.cpp
Ryan Turner 95fdcd5fe2 copyright-and-license: adopt SPDX-compliant header
This change removes the old copyright header from project sources and
replaces it with a new simplified SPDX-compliant header. Note that files
that were missing the header but reasonably understood to be licensed
according to the root license were not corrected.

Signed-off-by: Ryan Turner <ryan@turnrye.com>
2026-01-14 20:10:07 +01:00

212 lines
5 KiB
C++

/*
* SPDX-FileCopyrightText: Copyright 2020-2026 OpenRTX Contributors
*
* SPDX-License-Identifier: GPL-3.0-or-later
*/
#include "interfaces/platform.h"
#include "interfaces/delays.h"
#include "interfaces/audio.h"
#include "interfaces/radio.h"
#include "peripherals/gpio.h"
#include "hwconfig.h"
#include "core/threads.h"
#include "core/state.h"
#include "drivers/baseband/HR_C6000.h"
#include "drivers/SPI/spi_stm32.h"
#include "stm32_dac.h"
#include "stm32_adc.h"
#include "Cx000_dac.h"
#define PATH(x,y) ((x << 4) | y)
const struct audioDevice outputDevices[] =
{
{NULL, NULL, 0, SINK_MCU},
{&stm32_dac_audio_driver, NULL, STM32_DAC_CH2, SINK_RTX},
{&Cx000_dac_audio_driver, NULL, 0, SINK_SPK},
};
const struct audioDevice inputDevices[] =
{
{NULL, 0, 0, SOURCE_MCU},
{&stm32_adc_audio_driver, (const void *) ADC_RTX_CH, STM32_ADC_ADC2, SOURCE_RTX},
{&stm32_adc_audio_driver, (const void *) ADC_MIC_CH, STM32_ADC_ADC2, SOURCE_MIC},
};
HR_C6000 C6000((const struct spiDevice *) &c6000_spi, { C6K_CS });
static bool spkEnabled = false;
static inline void selectSpk()
{
if(spkEnabled == false)
{
gpioDev_set(INT_SPK_MUTE);
gpioDev_set(EXT_SPK_MUTE);
return;
}
// Phone detect pin is active low
if(gpio_readPin(PHONE_DETECT) == 0)
gpioDev_clear(EXT_SPK_MUTE);
else
gpioDev_clear(INT_SPK_MUTE);
}
static void *audio_thread(void *arg)
{
(void) arg;
unsigned long long now = getTick();
Cx000dac_init(&C6000);
while(state.devStatus != SHUTDOWN)
{
selectSpk();
Cx000dac_task();
now += 4;
sleepUntil(now);
}
Cx000dac_terminate();
return NULL;
}
void audio_init()
{
gpio_setMode(BEEP_OUT, ANALOG);
gpio_setMode(AIN_MIC, ANALOG);
gpio_setMode(AIN_RTX, ANALOG);
gpio_setMode(C6K_CLK, ALTERNATE | ALTERNATE_FUNC(5));
gpio_setMode(C6K_MOSI, ALTERNATE | ALTERNATE_FUNC(5));
gpio_setMode(C6K_MISO, ALTERNATE | ALTERNATE_FUNC(5));
gpio_setMode(PHONE_DETECT, INPUT_PULL_UP);
stm32dac_init(STM32_DAC_CH2, 2048);
stm32adc_init(STM32_ADC_ADC2);
gpioDev_set(INT_SPK_MUTE);
gpioDev_set(EXT_SPK_MUTE);
gpioDev_clear(INT_MIC_SEL);
gpioDev_clear(EXT_MIC_SEL);
gpioDev_set(RX_PWR_EN);
gpioDev_clear(C6K_SLEEP);
delayMs(10);
spiStm32_init(&c6000_spi, 12500000, SPI_FLAG_CPHA);
C6000.init();
C6000.fmMode();
pthread_attr_t attr;
pthread_t thread;
struct sched_param param;
pthread_attr_init(&attr);
pthread_attr_setstacksize(&attr, AUDIO_THREAD_STKSIZE);
param.sched_priority = THREAD_PRIO_RT;
pthread_attr_setschedparam(&attr, &param);
pthread_create(&thread, &attr, audio_thread, NULL);
}
void audio_terminate()
{
gpioDev_clear(AUDIO_AMP_EN);
gpioDev_clear(MIC_PWR_EN);
gpioDev_set(C6K_SLEEP);
stm32dac_terminate();
stm32adc_terminate();
C6000.terminate();
}
void audio_connect(const enum AudioSource source, const enum AudioSink sink)
{
uint32_t path = PATH(source, sink);
switch(path)
{
case PATH(SOURCE_MIC, SINK_SPK):
case PATH(SOURCE_MIC, SINK_RTX):
case PATH(SOURCE_MIC, SINK_MCU):
// Phone detect pin is active low
if(gpio_readPin(PHONE_DETECT) == 0)
gpioDev_set(EXT_MIC_SEL);
else
gpioDev_set(INT_MIC_SEL);
gpioDev_set(MIC_PWR_EN);
break;
case PATH(SOURCE_RTX, SINK_SPK):
radio_enableAfOutput();
// Fallthrough
case PATH(SOURCE_MCU, SINK_SPK):
gpioDev_set(AF_MUTE);
break;
default:
break;
}
if(sink == SINK_SPK)
{
// Anti-pop: unmute speaker after 10ms from amp. power on
gpioDev_set(AUDIO_AMP_EN);
sleepFor(0, 10);
spkEnabled = true;
}
}
void audio_disconnect(const enum AudioSource source, const enum AudioSink sink)
{
uint32_t path = PATH(source, sink);
if(sink == SINK_SPK)
{
gpioDev_clear(AUDIO_AMP_EN);
spkEnabled = false;
}
switch(path)
{
case PATH(SOURCE_MIC, SINK_SPK):
case PATH(SOURCE_MIC, SINK_RTX):
case PATH(SOURCE_MIC, SINK_MCU):
gpioDev_clear(MIC_PWR_EN);
gpioDev_clear(INT_MIC_SEL);
gpioDev_clear(EXT_MIC_SEL);
break;
case PATH(SOURCE_RTX, SINK_SPK):
radio_disableAfOutput();
// Fallthrough
case PATH(SOURCE_MCU, SINK_SPK):
gpioDev_clear(AF_MUTE);
break;
default:
break;
}
}
bool audio_checkPathCompatibility(const enum AudioSource p1Source,
const enum AudioSink p1Sink,
const enum AudioSource p2Source,
const enum AudioSink p2Sink)
{
if(p1Source == p2Source)
return false;
if(p1Sink == p2Sink)
return false;
return true;
}