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Audio: first draft
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104
hardware/arduino/sam/libraries/Audio/Audio.cpp
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104
hardware/arduino/sam/libraries/Audio/Audio.cpp
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#include "Audio.h"
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static void TC_SetRA(Tc *tc, uint32_t chan, uint32_t v) {
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tc->TC_CHANNEL[chan].TC_RA = v;
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}
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static void TC_SetRB(Tc *tc, uint32_t chan, uint32_t v) {
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tc->TC_CHANNEL[chan].TC_RB = v;
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}
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static void TC_SetRC(Tc *tc, uint32_t chan, uint32_t v) {
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tc->TC_CHANNEL[chan].TC_RC = v;
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}
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void AudioClass::begin(uint32_t sampleRate) {
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// Enable clock for DAC
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pmc_enable_periph_clk(dacId);
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dacc_reset(dac);
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// Set transfer mode to double word
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dacc_set_transfer_mode(dac, 1);
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// Power save:
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// sleep mode - 0 (disabled)
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// fast wakeup - 0 (disabled)
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dacc_set_power_save(dac, 0, 0);
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// ADC refresh/startup timings:
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// refresh - 0x08 (1024*8 dacc clocks)
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// max speed mode - 0 (disabled)
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// startup time - 0x10 (1024 dacc clocks)
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dacc_set_timing(dac, 0x08, 0, DACC_MR_STARTUP_1024);
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// Flexible channel selection with tags
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dacc_enable_flexible_selection(dac);
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// Set up analog current
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dacc_set_analog_control(dac,
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DACC_ACR_IBCTLCH0(0x02) |
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DACC_ACR_IBCTLCH1(0x02) |
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DACC_ACR_IBCTLDACCORE(0x01));
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// Enable output channels
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dacc_enable_channel(dac, 0);
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dacc_enable_channel(dac, 1);
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// Configure Timer Counter to trigger DAC
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// --------------------------------------
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pmc_enable_periph_clk(ID_TC0);
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TC_Configure(TC0, 1,
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TC_CMR_TCCLKS_TIMER_CLOCK2 |
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TC_CMR_WAVE | // Waveform mode
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TC_CMR_WAVSEL_UP_RC | // Counter running up and reset when equals to RC
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TC_CMR_ACPA_SET | TC_CMR_ACPC_CLEAR);
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const uint32_t TC = VARIANT_MCK / 8 / sampleRate;
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TC_SetRA(TC0, 1, TC / 2);
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TC_SetRC(TC0, 1, TC);
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TC_Start(TC0, 1);
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// Configure clock source for DAC (1 = TC0 Output Chan. 1)
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dacc_set_trigger(dac, 1);
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}
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void AudioClass::end() {
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TC_Stop(TC0, 1);
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dacc_disable_channel(dac, 0);
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dacc_disable_channel(dac, 1);
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}
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size_t AudioClass::write(const uint8_t *buffer, size_t size) {
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// Try the first PDC buffer
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if ((dac->DACC_TCR == 0) && (dac->DACC_TNCR == 0)) {
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dac->DACC_TPR = (uint32_t) buffer;
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dac->DACC_TCR = size;
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dac->DACC_PTCR = DACC_PTCR_TXTEN;
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return size;
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}
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// Try the second PDC buffer
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if (dac->DACC_TNCR == 0) {
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dac->DACC_TNPR = (uint32_t) buffer;
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dac->DACC_TNCR = size;
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dac->DACC_PTCR = DACC_PTCR_TXTEN;
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return size;
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}
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// PDC buffers full, try again later...
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return 0;
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}
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AudioClass Audio(DACC_INTERFACE, DACC_INTERFACE_ID);
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//void DACC_IrqHandler(void) {
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// uint32_t sr = DACC_INTERFACE->DACC_ISR;
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//
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// if (sr & DACC_ISR_ENDTX) {
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// /* End of transmission */
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// Audio.write(wBuffer, SAMPLES);
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// }
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//}
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24
hardware/arduino/sam/libraries/Audio/Audio.h
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24
hardware/arduino/sam/libraries/Audio/Audio.h
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#ifndef AUDIO_H
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#define AUDIO_H
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#include "Arduino.h"
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//#include <inttypes.h>
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#include "Print.h"
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class AudioClass : public Print {
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public:
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AudioClass(Dacc *_dac, uint32_t _dacId) : dac(_dac), dacId(_dacId) { };
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void begin(uint32_t sampleRate);
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void end();
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virtual size_t write(uint8_t c) { write(&c, 1); };
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virtual size_t write(const uint8_t *buffer, size_t size);
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private:
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Dacc *dac;
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uint32_t dacId;
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};
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extern AudioClass Audio;
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#endif
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0
hardware/arduino/sam/libraries/Audio/keywords.txt
Normal file
0
hardware/arduino/sam/libraries/Audio/keywords.txt
Normal file
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