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@ -37,8 +37,9 @@ |
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#include "dexed_sysex.h" |
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#include "effect_modulated_delay.h" |
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#include "PluginFx.h" |
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#include "SoftenValue.hpp" |
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AudioPlayQueue dexed1; |
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AudioPlayQueue queue1; |
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AudioAnalyzePeak peak1; |
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AudioEffectDelay delay1; |
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#ifdef USE_REVERB |
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@ -59,15 +60,15 @@ AudioAmplifier volume_l; |
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#ifdef MIDI_DEVICE_USB |
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AudioOutputUSB usb1; |
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#endif |
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AudioConnection patchCord0(dexed1, peak1); |
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AudioConnection patchCord1(dexed1, 0, chorus_mixer, 0); |
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AudioConnection patchCord3(dexed1, 0, delay_mixer, 0); |
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AudioConnection patchCord4(dexed1, 0, delay_fb_mixer, 0); |
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AudioConnection patchCord0(queue1, peak1); |
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AudioConnection patchCord1(queue1, 0, chorus_mixer, 0); |
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AudioConnection patchCord3(queue1, 0, delay_mixer, 0); |
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AudioConnection patchCord4(queue1, 0, delay_fb_mixer, 0); |
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#ifdef USE_REVERB |
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AudioConnection patchCord5(dexed1, 0, reverb_mixer_r, 0); |
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AudioConnection patchCord6(dexed1, 0, reverb_mixer_l, 0); |
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AudioConnection patchCord5(queue1, 0, reverb_mixer_r, 0); |
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AudioConnection patchCord6(queue1, 0, reverb_mixer_l, 0); |
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#endif |
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AudioConnection patchCord7(dexed1, 0, modchorus, 0); |
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AudioConnection patchCord7(queue1, 0, modchorus, 0); |
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AudioConnection patchCord8(modulator, 0, modchorus, 1); |
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#if MOD_FILTER_OUTPUT != MOD_NO_FILTER_OUTPUT |
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AudioConnection patchCord9(modchorus, modchorus_filter); |
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@ -112,7 +113,8 @@ AudioConnection patchCord29(volume_r, 0, pt8211_1, 0); |
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AudioConnection patchCord30(volume_l, 0, pt8211_1, 1); |
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#endif |
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Dexed* dexed = new Dexed(SAMPLE_RATE); |
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Dexed* MicroDexed[NUM_DEXED]; |
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bool sd_card_available = false; |
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uint32_t xrun = 0; |
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uint32_t overload = 0; |
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@ -128,6 +130,9 @@ uint8_t midi_timing_counter = 0; // 24 per qarter |
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elapsedMillis midi_timing_timestep; |
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uint16_t midi_timing_quarter = 0; |
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elapsedMillis long_button_pressed; |
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//SoftenValue <uint8_t> effect_filter_volume[NUM_DEXED](SOFTEN_VALUE_CHANGE_STEPS);
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//SoftenValue <uint8_t> soften_filter_res[NUM_DEXED](SOFTEN_VALUE_CHANGE_STEPS);
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//SoftenValue <uint8_t> soften_filter_cut[NUM_DEXED](SOFTEN_VALUE_CHANGE_STEPS);
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uint8_t effect_filter_cutoff = 0; |
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uint8_t effect_filter_resonance = 0; |
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uint8_t effect_delay_time = 0; |
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@ -193,6 +198,13 @@ void setup() |
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Serial.println(F("NO LCD DISPLAY ENABLED!")); |
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#endif |
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for (uint8_t i = 0; i < NUM_DEXED; i++) |
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{ |
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Serial.print(F("Creating MicroDexed engine ")); |
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Serial.println(i, DEC); |
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MicroDexed[i] = new Dexed(SAMPLE_RATE); |
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} |
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delay(220); |
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Serial.println(F("MicroDexed based on https://github.com/asb2m10/dexed")); |
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@ -334,9 +346,12 @@ void setup() |
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reverb_mixer_r.gain(1, 0.0); |
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reverb_mixer_l.gain(1, 0.0); |
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dexed->fx.Gain = 1.0; |
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dexed->fx.Reso = 1.0 - float(effect_filter_resonance) / ENC_FILTER_RES_STEPS; |
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dexed->fx.Cutoff = 1.0 - float(effect_filter_cutoff) / ENC_FILTER_CUT_STEPS; |
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for (uint8_t i = 0; i < NUM_DEXED; i++) |
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{ |
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MicroDexed[i]->fx.Gain = 1.0; |
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MicroDexed[i]->fx.Reso = 1.0 - float(effect_filter_resonance) / ENC_FILTER_RES_STEPS; |
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MicroDexed[i]->fx.Cutoff = 1.0 - float(effect_filter_cutoff) / ENC_FILTER_CUT_STEPS; |
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} |
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// set initial volume and pan (read from EEPROM)
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set_volume(configuration.vol, configuration.pan); |
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@ -379,14 +394,17 @@ void loop() |
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while (42 == 42) |
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{ |
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// Main sound calculation
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if (dexed1.available() && fill_audio_buffer > audio_block_time_us - 10) |
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if (queue1.available() && fill_audio_buffer > audio_block_time_us - 10) |
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{ |
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fill_audio_buffer = 0; |
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audio_buffer = dexed1.getBuffer(); |
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audio_buffer = queue1.getBuffer(); |
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elapsedMicros t1; |
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dexed->getSamples(AUDIO_BLOCK_SAMPLES, audio_buffer); |
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for (uint8_t i = 0; i < NUM_DEXED; i++) |
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{ |
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MicroDexed[i]->getSamples(AUDIO_BLOCK_SAMPLES, audio_buffer); |
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} |
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if (t1 > audio_block_time_us) // everything greater 2.9ms is a buffer underrun!
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xrun++; |
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if (t1 > render_time_max) |
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@ -400,7 +418,7 @@ void loop() |
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for (uint8_t i = 0; i < AUDIO_BLOCK_SAMPLES; i++) |
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audio_buffer[i] *= configuration.vol; |
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#endif |
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dexed1.playBuffer(); |
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queue1.playBuffer(); |
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} |
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// EEPROM update handling
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@ -430,7 +448,10 @@ void loop() |
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control_rate = 0; |
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// Shutdown unused voices
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active_voices = dexed->getNumNotesPlaying(); |
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for (uint8_t i = 0; i < NUM_DEXED; i++) |
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{ |
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active_voices = MicroDexed[i]->getNumNotesPlaying(); |
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} |
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// check for value changes
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if (soften_volume.steps > 0) |
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@ -451,29 +472,36 @@ void loop() |
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{ |
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// soften filter resonance value
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soften_filter_res.steps--; |
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dexed->fx.Reso = dexed->fx.Reso + soften_filter_res.diff; |
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for (uint8_t i = 0; i < NUM_DEXED; i++) |
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{ |
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MicroDexed[i]->fx.Reso = MicroDexed[i]->fx.Reso + soften_filter_res.diff; |
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#ifdef DEBUG |
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Serial.print(F("Filter-Resonance: ")); |
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Serial.print(dexed->fx.Reso, 5); |
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Serial.print(F(" Filter-Resonance step: ")); |
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Serial.print(soften_filter_res.steps); |
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Serial.print(F(" Filter-Resonance diff: ")); |
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Serial.println(soften_filter_res.diff, 5); |
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Serial.print(F("Filter-Resonance: ")); |
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Serial.print(MicroDexed[i]->fx.Reso, 5); |
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Serial.print(F(" Filter-Resonance step: ")); |
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Serial.print(soften_filter_res.steps); |
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Serial.print(F(" Filter-Resonance diff: ")); |
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Serial.println(soften_filter_res.diff, 5); |
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#endif |
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} |
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} |
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if (soften_filter_cut.steps > 0) |
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{ |
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// soften filter cutoff value
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soften_filter_cut.steps--; |
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dexed->fx.Cutoff = dexed->fx.Cutoff + soften_filter_cut.diff; |
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for (uint8_t i = 0; i < NUM_DEXED; i++) |
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{ |
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MicroDexed[i]->fx.Cutoff = MicroDexed[i]->fx.Cutoff + soften_filter_cut.diff; |
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#ifdef DEBUG |
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Serial.print(F("Filter-Cutoff: ")); |
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Serial.print(dexed->fx.Cutoff, 5); |
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Serial.print(F(" Filter-Cutoff step: ")); |
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Serial.print(soften_filter_cut.steps); |
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Serial.print(F(" Filter-Cutoff diff: ")); |
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Serial.println(soften_filter_cut.diff, 5); |
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Serial.print(F("Filter-Cutoff: ")); |
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Serial.print(MicroDexed[i]->fx.Cutoff, 5); |
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Serial.print(F(" Filter-Cutoff step: ")); |
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Serial.print(soften_filter_cut.steps); |
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Serial.print(F(" Filter-Cutoff diff: ")); |
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Serial.println(soften_filter_cut.diff, 5); |
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#endif |
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} |
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} |
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} |
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@ -494,7 +522,7 @@ void handleNoteOn(byte inChannel, byte inNumber, byte inVelocity) |
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{ |
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if (checkMidiChannel(inChannel)) |
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{ |
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dexed->keydown(inNumber, inVelocity); |
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MicroDexed[0]->keydown(inNumber, inVelocity); |
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} |
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} |
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@ -502,7 +530,7 @@ void handleNoteOff(byte inChannel, byte inNumber, byte inVelocity) |
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{ |
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if (checkMidiChannel(inChannel)) |
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{ |
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dexed->keyup(inNumber); |
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MicroDexed[0]->keyup(inNumber); |
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} |
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} |
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@ -525,16 +553,16 @@ void handleControlChange(byte inChannel, byte inCtrl, byte inValue) |
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} |
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break; |
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case 1: |
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dexed->controllers.modwheel_cc = inValue; |
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dexed->controllers.refresh(); |
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MicroDexed[0]->controllers.modwheel_cc = inValue; |
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MicroDexed[0]->controllers.refresh(); |
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break; |
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case 2: |
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dexed->controllers.breath_cc = inValue; |
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dexed->controllers.refresh(); |
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MicroDexed[0]->controllers.breath_cc = inValue; |
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MicroDexed[0]->controllers.refresh(); |
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break; |
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case 4: |
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dexed->controllers.foot_cc = inValue; |
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dexed->controllers.refresh(); |
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MicroDexed[0]->controllers.foot_cc = inValue; |
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MicroDexed[0]->controllers.refresh(); |
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break; |
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case 7: // Volume
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configuration.vol = float(inValue) / 0x7f; |
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@ -548,23 +576,23 @@ void handleControlChange(byte inChannel, byte inCtrl, byte inValue) |
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configuration.bank = inValue; |
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break; |
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case 64: |
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dexed->setSustain(inValue > 63); |
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if (!dexed->getSustain()) { |
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for (uint8_t note = 0; note < dexed->getMaxNotes(); note++) { |
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if (dexed->voices[note].sustained && !dexed->voices[note].keydown) { |
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dexed->voices[note].dx7_note->keyup(); |
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dexed->voices[note].sustained = false; |
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MicroDexed[0]->setSustain(inValue > 63); |
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if (!MicroDexed[0]->getSustain()) { |
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for (uint8_t note = 0; note < MicroDexed[0]->getMaxNotes(); note++) { |
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if (MicroDexed[0]->voices[note].sustained && !MicroDexed[0]->voices[note].keydown) { |
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MicroDexed[0]->voices[note].dx7_note->keyup(); |
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MicroDexed[0]->voices[note].sustained = false; |
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} |
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} |
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} |
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break; |
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case 103: // CC 103: filter resonance
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effect_filter_resonance = map(inValue, 0, 127, 0, ENC_FILTER_RES_STEPS); |
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dexed->fx.Reso = 1.0 - float(effect_filter_resonance) / ENC_FILTER_RES_STEPS; |
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MicroDexed[0]->fx.Reso = 1.0 - float(effect_filter_resonance) / ENC_FILTER_RES_STEPS; |
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break; |
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case 104: // CC 104: filter cutoff
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effect_filter_cutoff = map(inValue, 0, 127, 0, ENC_FILTER_CUT_STEPS); |
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dexed->fx.Cutoff = 1.0 - float(effect_filter_cutoff) / ENC_FILTER_CUT_STEPS; |
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MicroDexed[0]->fx.Cutoff = 1.0 - float(effect_filter_cutoff) / ENC_FILTER_CUT_STEPS; |
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break; |
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case 105: // CC 105: delay time
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effect_delay_time = map(inValue, 0, 127, 0, ENC_DELAY_TIME_STEPS); |
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@ -579,19 +607,19 @@ void handleControlChange(byte inChannel, byte inCtrl, byte inValue) |
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////delay_mixer_l.gain(1, mapfloat(effect_delay_volume, 0, ENC_DELAY_VOLUME_STEPS, 0.0, 1.0)); // delay tap1 signal (with added feedback)
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break; |
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case 120: |
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dexed->panic(); |
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MicroDexed[0]->panic(); |
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break; |
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case 121: |
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dexed->resetControllers(); |
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MicroDexed[0]->resetControllers(); |
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break; |
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case 123: |
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dexed->notesOff(); |
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MicroDexed[0]->notesOff(); |
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break; |
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case 126: |
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dexed->setMonoMode(true); |
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MicroDexed[0]->setMonoMode(true); |
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break; |
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case 127: |
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dexed->setMonoMode(false); |
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MicroDexed[0]->setMonoMode(false); |
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break; |
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} |
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} |
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@ -599,13 +627,13 @@ void handleControlChange(byte inChannel, byte inCtrl, byte inValue) |
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void handleAfterTouch(byte inChannel, byte inPressure) |
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{ |
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dexed->controllers.aftertouch_cc = inPressure; |
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dexed->controllers.refresh(); |
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MicroDexed[0]->controllers.aftertouch_cc = inPressure; |
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MicroDexed[0]->controllers.refresh(); |
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} |
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void handlePitchBend(byte inChannel, int inPitch) |
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{ |
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dexed->controllers.values_[kControllerPitch] = inPitch + 0x2000; // -8192 to +8191 --> 0 to 16383
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MicroDexed[0]->controllers.values_[kControllerPitch] = inPitch + 0x2000; // -8192 to +8191 --> 0 to 16383
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} |
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void handleProgramChange(byte inChannel, byte inProgram) |
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@ -695,26 +723,26 @@ void handleSystemExclusive(byte * sysex, uint len) |
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if (((sysex[3] & 0x7c) >> 2) == 0) |
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{ |
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dexed->notesOff(); |
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dexed->data[sysex[4] + ((sysex[3] & 0x03) * 128)] = sysex[5]; // set parameter
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dexed->doRefreshVoice(); |
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MicroDexed[0]->notesOff(); |
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MicroDexed[0]->data[sysex[4] + ((sysex[3] & 0x03) * 128)] = sysex[5]; // set parameter
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MicroDexed[0]->doRefreshVoice(); |
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data_index = sysex[4] + ((sysex[3] & 0x03) * 128); |
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} |
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else |
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{ |
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dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET - 63 + sysex[4]] = sysex[5]; // set function parameter
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dexed->controllers.values_[kControllerPitchRange] = dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_PITCHBEND_RANGE]; |
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dexed->controllers.values_[kControllerPitchStep] = dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_PITCHBEND_STEP]; |
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dexed->controllers.wheel.setRange(dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_MODWHEEL_RANGE]); |
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dexed->controllers.wheel.setTarget(dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_MODWHEEL_ASSIGN]); |
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dexed->controllers.foot.setRange(dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_FOOTCTRL_RANGE]); |
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dexed->controllers.foot.setTarget(dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_FOOTCTRL_ASSIGN]); |
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dexed->controllers.breath.setRange(dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_BREATHCTRL_RANGE]); |
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dexed->controllers.breath.setTarget(dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_BREATHCTRL_ASSIGN]); |
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dexed->controllers.at.setRange(dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_AT_RANGE]); |
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dexed->controllers.at.setTarget(dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_AT_ASSIGN]); |
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dexed->controllers.masterTune = (dexed->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_MASTER_TUNE] * 0x4000 << 11) * (1.0 / 12); |
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dexed->controllers.refresh(); |
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MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET - 63 + sysex[4]] = sysex[5]; // set function parameter
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MicroDexed[0]->controllers.values_[kControllerPitchRange] = MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_PITCHBEND_RANGE]; |
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MicroDexed[0]->controllers.values_[kControllerPitchStep] = MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_PITCHBEND_STEP]; |
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MicroDexed[0]->controllers.wheel.setRange(MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_MODWHEEL_RANGE]); |
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MicroDexed[0]->controllers.wheel.setTarget(MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_MODWHEEL_ASSIGN]); |
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MicroDexed[0]->controllers.foot.setRange(MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_FOOTCTRL_RANGE]); |
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MicroDexed[0]->controllers.foot.setTarget(MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_FOOTCTRL_ASSIGN]); |
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MicroDexed[0]->controllers.breath.setRange(MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_BREATHCTRL_RANGE]); |
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MicroDexed[0]->controllers.breath.setTarget(MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_BREATHCTRL_ASSIGN]); |
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MicroDexed[0]->controllers.at.setRange(MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_AT_RANGE]); |
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MicroDexed[0]->controllers.at.setTarget(MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_AT_ASSIGN]); |
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MicroDexed[0]->controllers.masterTune = (MicroDexed[0]->data[DEXED_GLOBAL_PARAMETER_OFFSET + DEXED_MASTER_TUNE] * 0x4000 << 11) * (1.0 / 12); |
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MicroDexed[0]->controllers.refresh(); |
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|
data_index = DEXED_GLOBAL_PARAMETER_OFFSET - 63 + sysex[4]; |
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} |
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#ifdef DEBUG |
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@ -783,8 +811,8 @@ void handleSystemExclusive(byte * sysex, uint len) |
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} |
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// load sysex-data into voice memory
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|
dexed->loadVoiceParameters(&sysex[6]); |
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|
//dexed->initGlobalParameters();
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|
MicroDexed[0]->loadVoiceParameters(&sysex[6]); |
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|
//MicroDexed[0]->initGlobalParameters();
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|
// manipulate UI names and numbers
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|
strncpy(voice_name, (char *)&sysex[151], sizeof(voice_name) - 1); |
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|
@ -862,9 +890,9 @@ void handleSystemReset(void) |
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|
#ifdef DEBUG |
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|
Serial.println(F("MIDI SYSEX RESET")); |
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|
#endif |
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|
dexed->notesOff(); |
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|
dexed->panic(); |
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|
dexed->resetControllers(); |
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|
MicroDexed[0]->notesOff(); |
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|
MicroDexed[0]->panic(); |
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|
MicroDexed[0]->resetControllers(); |
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|
} |
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|
/******************************************************************************
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|
@ -901,7 +929,7 @@ void set_volume(float v, float p) |
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|
configuration.vol = v; |
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|
configuration.pan = p; |
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|
dexed->fx.Gain = v; |
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|
MicroDexed[0]->fx.Gain = v; |
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|
|
uint16_t tmp = v * 1023.0 + 0.5; |
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|
float tmp2 = configuration.pan; |
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|
|
@ -1061,81 +1089,81 @@ void show_patch(void) |
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|
Serial.print(6 - i, DEC); |
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|
Serial.println(F(": ")); |
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|
Serial.println(F("R1 | R2 | R3 | R4 | L1 | L2 | L3 | L4 LEV_SCL_BRK_PT | SCL_LEFT_DEPTH | SCL_RGHT_DEPTH")); |
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|
Serial.print(dexed->data[(i * 21) + DEXED_OP_EG_R1], DEC); |
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|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_EG_R1], DEC); |
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|
Serial.print(F(" ")); |
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|
Serial.print(dexed->data[(i * 21) + DEXED_OP_EG_R2], DEC); |
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|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_EG_R2], DEC); |
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|
|
Serial.print(F(" ")); |
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|
Serial.print(dexed->data[(i * 21) + DEXED_OP_EG_R3], DEC); |
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|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_EG_R3], DEC); |
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|
|
Serial.print(F(" ")); |
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|
Serial.print(dexed->data[(i * 21) + DEXED_OP_EG_R4], DEC); |
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|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_EG_R4], DEC); |
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|
|
Serial.print(F(" ")); |
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|
Serial.print(dexed->data[(i * 21) + DEXED_OP_EG_L1], DEC); |
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|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_EG_L1], DEC); |
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|
|
Serial.print(F(" ")); |
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|
Serial.print(dexed->data[(i * 21) + DEXED_OP_EG_L2], DEC); |
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|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_EG_L2], DEC); |
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|
Serial.print(F(" ")); |
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|
Serial.print(dexed->data[(i * 21) + DEXED_OP_EG_L3], DEC); |
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|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_EG_L3], DEC); |
|
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|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_EG_L4], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_EG_L4], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_LEV_SCL_BRK_PT], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_LEV_SCL_BRK_PT], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_SCL_LEFT_DEPTH], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_SCL_LEFT_DEPTH], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.println(dexed->data[(i * 21) + DEXED_OP_SCL_RGHT_DEPTH], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[(i * 21) + DEXED_OP_SCL_RGHT_DEPTH], DEC); |
|
|
|
|
Serial.println(F("SCL_L_CURVE | SCL_R_CURVE | RT_SCALE | AMS | KVS | OUT_LEV | OP_MOD | FRQ_C | FRQ_F | DETUNE")); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_SCL_LEFT_CURVE], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_SCL_LEFT_CURVE], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_SCL_RGHT_CURVE], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_SCL_RGHT_CURVE], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_OSC_RATE_SCALE], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_OSC_RATE_SCALE], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_AMP_MOD_SENS], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_AMP_MOD_SENS], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_KEY_VEL_SENS], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_KEY_VEL_SENS], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_OUTPUT_LEV], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_OUTPUT_LEV], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_OSC_MODE], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_OSC_MODE], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_FREQ_COARSE], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_FREQ_COARSE], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.print(dexed->data[(i * 21) + DEXED_OP_FREQ_FINE], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[(i * 21) + DEXED_OP_FREQ_FINE], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
Serial.println(dexed->data[(i * 21) + DEXED_OP_OSC_DETUNE], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[(i * 21) + DEXED_OP_OSC_DETUNE], DEC); |
|
|
|
|
} |
|
|
|
|
Serial.println(F("PR1 | PR2 | PR3 | PR4 | PL1 | PL2 | PL3 | PL4")); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
for (i = 0; i < 8; i++) |
|
|
|
|
{ |
|
|
|
|
Serial.print(dexed->data[DEXED_VOICE_OFFSET + i], DEC); |
|
|
|
|
Serial.print(MicroDexed[0]->data[DEXED_VOICE_OFFSET + i], DEC); |
|
|
|
|
Serial.print(F(" ")); |
|
|
|
|
} |
|
|
|
|
Serial.println(); |
|
|
|
|
Serial.print(F("ALG: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_ALGORITHM], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_ALGORITHM], DEC); |
|
|
|
|
Serial.print(F("FB: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_FEEDBACK], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_FEEDBACK], DEC); |
|
|
|
|
Serial.print(F("OKS: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_OSC_KEY_SYNC], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_OSC_KEY_SYNC], DEC); |
|
|
|
|
Serial.print(F("LFO SPD: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_LFO_SPEED], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_LFO_SPEED], DEC); |
|
|
|
|
Serial.print(F("LFO_DLY: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_LFO_DELAY], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_LFO_DELAY], DEC); |
|
|
|
|
Serial.print(F("LFO PMD: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_LFO_PITCH_MOD_DEP], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_LFO_PITCH_MOD_DEP], DEC); |
|
|
|
|
Serial.print(F("LFO_AMD: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_LFO_AMP_MOD_DEP], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_LFO_AMP_MOD_DEP], DEC); |
|
|
|
|
Serial.print(F("LFO_SYNC: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_LFO_SYNC], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_LFO_SYNC], DEC); |
|
|
|
|
Serial.print(F("LFO_WAVEFRM: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_LFO_WAVE], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_LFO_WAVE], DEC); |
|
|
|
|
Serial.print(F("LFO_PMS: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_LFO_PITCH_MOD_SENS], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_LFO_PITCH_MOD_SENS], DEC); |
|
|
|
|
Serial.print(F("TRNSPSE: ")); |
|
|
|
|
Serial.println(dexed->data[DEXED_VOICE_OFFSET + DEXED_TRANSPOSE], DEC); |
|
|
|
|
Serial.println(MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_TRANSPOSE], DEC); |
|
|
|
|
Serial.print(F("NAME: ")); |
|
|
|
|
strncpy(voicename, (char *)&dexed->data[DEXED_VOICE_OFFSET + DEXED_NAME], sizeof(voicename) - 1); |
|
|
|
|
strncpy(voicename, (char *)&MicroDexed[0]->data[DEXED_VOICE_OFFSET + DEXED_NAME], sizeof(voicename) - 1); |
|
|
|
|
Serial.print(F("[")); |
|
|
|
|
Serial.print(voicename); |
|
|
|
|
Serial.println(F("]")); |
|
|
|
@ -1143,7 +1171,7 @@ void show_patch(void) |
|
|
|
|
{ |
|
|
|
|
Serial.print(i, DEC); |
|
|
|
|
Serial.print(F(": ")); |
|
|
|
|
Serial.println(dexed->data[i]); |
|
|
|
|
Serial.println(MicroDexed[0]->data[i]); |
|
|
|
|
} |
|
|
|
|
|
|
|
|
|
Serial.println(); |
|
|
|
|