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@ -554,7 +554,53 @@ bool queue_midi_event(uint8_t type, uint8_t data1, uint8_t data2) |
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} |
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} |
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else |
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else |
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#endif |
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#endif |
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ret = dexed->processMidiMessage(type, data1, data2); |
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{ |
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if (type == 0xb0) |
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{ |
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switch (data1) |
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{ |
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case 0x66: // CC 102: filter frequency
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effect_filter_frq = map(data2, 0, 127, 0, ENC_FILTER_FRQ_STEPS); |
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if (effect_filter_frq == ENC_FILTER_FRQ_STEPS) |
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{ |
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// turn "off" filter
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mixer1.gain(0, 0.0); // filtered signal off
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mixer1.gain(3, 1.0); // original signal on
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} |
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else |
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{ |
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// turn "on" filter
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mixer1.gain(0, 1.0); // filtered signal on
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mixer1.gain(3, 0.0); // original signal off
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} |
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filter1.frequency(EXP_FUNC((float)map(effect_filter_frq, 0, ENC_FILTER_FRQ_STEPS, 0, 1024) / 150.0) * 10.0 + 80.0); |
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break; |
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case 0x67: // CC 103: filter resonance
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effect_filter_resonance = map(data2, 0, 127, 0, ENC_FILTER_RES_STEPS); |
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filter1.resonance(EXP_FUNC(mapfloat(effect_filter_resonance, 0, ENC_FILTER_RES_STEPS, 0.7, 5.0)) * 0.044 + 0.61); |
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break; |
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case 0x68: // CC 104: filter octave
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effect_filter_octave = map(data2, 0, 127, 0, ENC_FILTER_OCT_STEPS); |
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filter1.octaveControl(mapfloat(effect_filter_octave, 0, ENC_FILTER_OCT_STEPS, 0.0, 7.0)); |
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break; |
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case 0x69: // CC 105: delay time
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effect_delay_time = map(data2, 0, 127, 0, ENC_DELAY_TIME_STEPS); |
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delay1.delay(0, mapfloat(effect_delay_time, 0, ENC_DELAY_TIME_STEPS, 0.0, DELAY_MAX_TIME)); |
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break; |
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case 0x6A: // CC 106: delay feedback
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effect_delay_feedback = map(data2, 0, 127, 0, ENC_DELAY_FB_STEPS); |
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mixer1.gain(1, mapfloat(float(effect_delay_feedback), 0, ENC_DELAY_FB_STEPS, 0.0, 1.0)); |
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break; |
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case 0x6B: // CC 107: delay volume
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effect_delay_volume = map(data2, 0, 127, 0, ENC_DELAY_VOLUME_STEPS); |
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mixer2.gain(1, mapfloat(effect_delay_volume, 0, 99, 0.0, 1.0)); // delay tap1 signal (with added feedback)
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break; |
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default: |
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ret = dexed->processMidiMessage(type, data1, data2); |
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break; |
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} |
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} |
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} |
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#ifdef MASTER_KEY_MIDI |
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#ifdef MASTER_KEY_MIDI |
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} |
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} |
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