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@ -77,13 +77,15 @@ bool glissando = true;
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#endif
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float startup_song[][2] = STARTUP_SONG;
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#define DAC_BUFFER_SIZE 100
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#define DAC_BUFFER_SIZE 100U
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#ifndef DAC_SAMPLE_MAX
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#define DAC_SAMPLE_MAX 65535U
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#define DAC_SAMPLE_MAX 4095U
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#endif
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GPTConfig gpt6cfg1 = {
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.frequency = 44100U,
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#define DAC_SAMPLE_RATE 30000U
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GPTConfig gpt7cfg1 = {
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.frequency = DAC_SAMPLE_RATE,
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.callback = NULL,
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.cr2 = TIM_CR2_MMS_1, /* MMS = 010 = TRGO on Update Event. */
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.dier = 0U
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@ -94,22 +96,6 @@ static const dacsample_t dac_buffer[DAC_BUFFER_SIZE] = {
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// [0 ... DAC_BUFFER_SIZE/2-1] = DAC_SAMPLE_MAX,
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// [DAC_BUFFER_SIZE/2 ... DAC_BUFFER_SIZE -1] = 0,
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// max 65535
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// 0x8000,0x8809,0x900a,0x97fc,0x9fd4,0xa78d,0xaf1e,0xb67f,
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// 0xbda9,0xc495,0xcb3c,0xd196,0xd79e,0xdd4e,0xe29f,0xe78d,
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// 0xec12,0xf02a,0xf3d0,0xf702,0xf9bb,0xfbfa,0xfdbb,0xfefd,
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// 0xffbe,0xffff,0xffbe,0xfefd,0xfdbb,0xfbfa,0xf9bb,0xf702,
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// 0xf3d0,0xf02a,0xec12,0xe78d,0xe29f,0xdd4e,0xd79e,0xd196,
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// 0xcb3c,0xc495,0xbda9,0xb67f,0xaf1e,0xa78d,0x9fd4,0x97fc,
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// 0x900a,0x8809,0x8000,0x77f6,0x6ff5,0x6803,0x602b,0x5872,
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// 0x50e1,0x4980,0x4256,0x3b6a,0x34c3,0x2e69,0x2861,0x22b1,
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// 0x1d60,0x1872,0x13ed,0xfd5,0xc2f,0x8fd,0x644,0x405,
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// 0x244,0x102,0x41,0x0,0x41,0x102,0x244,0x405,
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// 0x644,0x8fd,0xc2f,0xfd5,0x13ed,0x1872,0x1d60,0x22b1,
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// 0x2861,0x2e69,0x34c3,0x3b6a,0x4256,0x4980,0x50e1,0x5872,
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// 0x602b,0x6803,0x6ff5,0x77f6
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// max 4095
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0x800,0x880,0x900,0x97f,0x9fd,0xa78,0xaf1,0xb67,
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0xbda,0xc49,0xcb3,0xd19,0xd79,0xdd4,0xe29,0xe78,
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@ -126,10 +112,9 @@ static const dacsample_t dac_buffer[DAC_BUFFER_SIZE] = {
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0x602,0x680,0x6ff,0x77f
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};
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dacsample_t dac_buffer_lr[1];
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dacsample_t dac_buffer_lr[1] = { DAC_SAMPLE_MAX / 2 };
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int dac_i = 0;
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int dac_j = 0;
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float dac_if[8] = {0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0};
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/*
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* DAC streaming callback.
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@ -138,14 +123,23 @@ static void end_cb1(DACDriver * dacp, dacsample_t * samples, size_t pos) {
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(void)dacp;
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(void)pos;
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//for (uint8_t i = 0; i < DAC_BUFFER_SIZE; i++) {
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samples[0] = (dac_buffer[dac_i] + dac_buffer[dac_j]) / 2;
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//samples[0] = (dac_buffer[dac_i] + dac_buffer[dac_j]) / 2;
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//}
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dac_i = (dac_i + (uint32_t)round(880.0 / 300)) % DAC_BUFFER_SIZE;
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dac_j = (dac_j + (uint32_t)round(2217.46 / 300)) % DAC_BUFFER_SIZE;
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uint16_t sample_sum = 0;
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for (int i = 0; i < voices; i++) {
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dac_if[i] = dac_if[i] + ((frequencies[i]*(float)DAC_BUFFER_SIZE)/(float)DAC_SAMPLE_RATE*1.5);
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while(dac_if[i] >= DAC_BUFFER_SIZE)
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dac_if[i] = dac_if[i] - DAC_BUFFER_SIZE;
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sample_sum += dac_buffer[(uint8_t)round(dac_if[i]) % DAC_BUFFER_SIZE] / voices;
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}
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if (voices > 0) {
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samples[0] = sample_sum;
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} else {
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samples[0] = DAC_SAMPLE_MAX;
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}
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}
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/*
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@ -190,15 +184,20 @@ void audio_init() {
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#endif
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#endif // ARM EEPROM
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palSetPadMode(GPIOA, 4, PAL_MODE_INPUT_ANALOG );
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palSetPadMode(GPIOA, 5, PAL_MODE_OUTPUT_PUSHPULL );
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palSetPad(GPIOA, 5);
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palSetPadMode(GPIOA, 5, PAL_MODE_INPUT_ANALOG );
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// palSetPadMode(GPIOA, 4, PAL_MODE_INPUT_ANALOG );
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palSetPadMode(GPIOA, 4, PAL_MODE_OUTPUT_PUSHPULL );
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palSetPad(GPIOA, 4);
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dacStart(&DACD1, &dac1cfg1);
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dacStartConversion(&DACD1, &dacgrpcfg1, dac_buffer_lr, 1);
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// dacStart(&DACD1, &dac1cfg1);
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// dacStartConversion(&DACD1, &dacgrpcfg1, dac_buffer_lr, 1);
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dacStart(&DACD2, &dac1cfg1);
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dacStartConversion(&DACD2, &dacgrpcfg1, dac_buffer_lr, 1);
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gptStart(&GPTD6, &gpt6cfg1);
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gptStart(&GPTD6, &gpt7cfg1);
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gptStartContinuous(&GPTD6, 2U);
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// gptStart(&GPTD7, &gpt7cfg1);
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// gptStartContinuous(&GPTD7, 2U);
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audio_initialized = true;
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@ -261,7 +260,6 @@ void stop_note(float freq) {
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voice_place = 0;
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}
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if (voices == 0) {
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gptStopTimer(&GPTD8);
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frequency = 0;
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frequency_alt = 0;
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volume = 0;
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