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251 lines
11 KiB
251 lines
11 KiB
/*
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MicroDexed
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MicroDexed is a port of the Dexed sound engine
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(https://github.com/asb2m10/dexed) for the Teensy-3.5/3.6/4.x with audio shield.
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Dexed ist heavily based on https://github.com/google/music-synthesizer-for-android
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(c)2018-2021 M. Koslowski <positionhigh@gmx.de>
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H. Wirtz <wirtz@parasitstudio.de>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software Foundation,
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Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "config.h"
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#include "sequencer.h"
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#include <LCDMenuLib2.h>
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#include <LiquidCrystal_I2C.h>
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extern LCDMenuLib2 LCDML;
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//extern LiquidCrystal_I2C lcd;
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extern config_t configuration;
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extern uint8_t drum_midi_channel;
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extern uint8_t activesample;
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extern uint8_t get_sample_note(uint8_t sample);
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extern void handleNoteOn(byte , byte , byte );
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extern void handleNoteOff(byte , byte , byte );
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extern void UI_func_seq_pattern_editor(uint8_t);
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extern void UI_func_arpeggio(uint8_t);
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extern const char* seq_find_shortname(uint8_t);
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extern void set_sample_pitch (uint8_t, float); //float32_t not working
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extern float get_sample_vol_max(uint8_t);
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extern float get_sample_p_offset(uint8_t);
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boolean interrupt_swapper = false;
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sequencer_t seq;
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void seq_live_recording(void)
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{
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//record to sequencer if sequencer menu is active and recording is active
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if (seq.note_in > 0 && seq.recording == true && LCDML.FUNC_getID() == LCDML.OTHER_getIDFromFunction(UI_func_seq_pattern_editor))
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{
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seq.note_data[seq.active_track][seq.step] = seq.note_in;
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if ( get_sample_note(activesample) > 209 ) // pitched sample
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{
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seq.vel[seq.active_track][seq.step] = get_sample_note(activesample);
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}
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else
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seq.vel[seq.active_track][seq.step] = seq.note_in_velocity;
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seq.note_in = 0;
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seq.note_in_velocity = 0;
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}
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}
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void sequencer_part1(void)
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{
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//if (seq.note_in > 0 && seq.note_in < 62 && seq.recording == false ) {
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//handleNoteOff(configuration.dexed[0].midi_channel, seq.note_data[3][seq.step] + seq.transpose , 0);
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//handleNoteOff(configuration.dexed[0].midi_channel, seq.note_data[3][seq.step - 1] + seq.transpose , 0);
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//if (seq.note_in>65)seq.note_in=seq.note_in-12;
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//seq.transpose = seq.note_in % 12 ;
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//seq.transpose=seq.transpose-12;
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//seq.note_in = 0;
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//}
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seq_live_recording();
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for (uint8_t d = 0; d < NUM_SEQ_TRACKS; d++)
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{
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if (seq.patternchain[seq.chain_active_step][d] < NUM_SEQ_PATTERN ) // sequence not empty or muted
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{
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if ( seq.track_type[d] == 0)
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{ // drum track (drum samples and pitched one-shot samples)
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if (seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step] > 0 )
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{
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if (seq.vel[ seq.patternchain[seq.chain_active_step][d] ][seq.step] > 209) // it is a pitched sample
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{
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// Drum[slot]->setPlaybackRate( pow (2, (inNote - 72) / 12.00) * drum_config[sample].pitch ); get_sample_vol_max(sample)
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set_sample_pitch(seq.vel[ seq.patternchain[seq.chain_active_step][d] ][seq.step] - 210 , (float)pow (2, (seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step] - 72) / 12.00) * get_sample_p_offset( seq.vel[ seq.patternchain[seq.chain_active_step][d] ][seq.step] - 210 ) );
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handleNoteOn(drum_midi_channel, seq.vel[ seq.patternchain[seq.chain_active_step][d] ][seq.step] , 90 );
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}
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else // else play normal drum sample
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handleNoteOn(drum_midi_channel, seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step] , seq.vel[ seq.patternchain[seq.chain_active_step][d] ][seq.step]);
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}
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}
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else {
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if (seq.note_data[seq.patternchain[seq.chain_active_step][d]][seq.step] > 0 ) // instrument track
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{
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if (seq.track_type[d] == 1 || (seq.track_type[d] == 3 && seq.arp_play_basenote) )
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{
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if (seq.note_data[seq.patternchain[seq.chain_active_step][d]][seq.step] != 130 )
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{
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handleNoteOn(configuration.dexed[seq.inst_dexed[d]].midi_channel, seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step], seq.vel[ seq.patternchain[seq.chain_active_step][d] ][seq.step]);
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seq.prev_note[d] = seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step];
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seq.prev_vel[d] = seq.vel[ seq.patternchain[seq.chain_active_step][d] ][seq.step];
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}
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}
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else if (seq.track_type[d] == 2 ) //Chords
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{
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if (seq.vel[ seq.patternchain[seq.chain_active_step][d]][seq.step] > 199)
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{
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//handleNoteOn(configuration.dexed[seq.inst_dexed[d]].midi_channel, seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step], seq.chord_velocity); // basenote
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for (uint8_t x = seq.element_shift; x < seq.element_shift + seq.chord_key_ammount; x++) //play chord notes
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{
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handleNoteOn(configuration.dexed[seq.chord_dexed_inst].midi_channel, seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step] + (seq.oct_shift * 12) + seq.arps[seq.vel[ seq.patternchain[seq.chain_active_step][d] ][seq.step] - 200][x], seq.chord_velocity);
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}
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seq.prev_note[d] = seq.note_data[seq.patternchain[seq.chain_active_step][d]][seq.step] + (seq.oct_shift * 12);
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seq.prev_vel[d] = seq.vel[seq.patternchain[seq.chain_active_step][d]][seq.step];
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}
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}
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if (seq.track_type[d] == 3) { //Arp
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seq.arp_step = 0;
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seq.arp_counter = 0;
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seq.arp_note = seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step] + (seq.oct_shift * 12);
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seq.arp_chord = seq.vel[seq.patternchain[seq.chain_active_step][d] ][seq.step] - 200;
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}
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}
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// after here not triggered by a key input - arp only
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if (seq.track_type[d] == 3)
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{ //Arp
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if (seq.arp_speed == 0 || (seq.arp_speed == 1 && seq.arp_counter == 0) ) {
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{ if (seq.arp_style == 0) { //arp up
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handleNoteOn(configuration.dexed[seq.chord_dexed_inst].midi_channel, seq.arp_note + seq.arps[seq.arp_chord][seq.arp_step + seq.element_shift], seq.chord_velocity);
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seq.arp_note_prev = seq.arp_note + seq.arps[seq.arp_chord][seq.arp_step + seq.element_shift] ;
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}
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else if (seq.arp_style == 1) { //arp down
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handleNoteOn(configuration.dexed[seq.chord_dexed_inst].midi_channel, seq.arp_note + seq.arps[seq.arp_chord][seq.arp_lenght - seq.arp_step + seq.element_shift], seq.chord_velocity);
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seq.arp_note_prev = seq.arp_note + seq.arps[seq.arp_chord][seq.arp_lenght - seq.arp_step + seq.element_shift] ;
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}
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else if (seq.arp_style == 2) { //arp up & down
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if (seq.arp_step <= seq.arp_lenght) {
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handleNoteOn(configuration.dexed[seq.chord_dexed_inst].midi_channel, seq.arp_note + seq.arps[seq.arp_chord][seq.arp_step ], seq.chord_velocity);
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seq.arp_note_prev = seq.arp_note + seq.arps[seq.arp_chord][seq.arp_step ] ;
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}
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else {
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handleNoteOn(configuration.dexed[seq.chord_dexed_inst].midi_channel, seq.arp_note + seq.arps[seq.arp_chord][seq.arp_lenght * 2 - seq.arp_step ], seq.chord_velocity);
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seq.arp_note_prev = seq.arp_note + seq.arps[seq.arp_chord][seq.arp_lenght * 2 - seq.arp_step ] ;
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}
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}
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else if (seq.arp_style == 3) { //arp random
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uint8_t rnd1 = random(seq.arp_lenght);
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handleNoteOn(configuration.dexed[seq.chord_dexed_inst].midi_channel, seq.arp_note + seq.arps[seq.arp_chord][rnd1 + seq.element_shift] + (seq.oct_shift * 12), seq.chord_velocity);
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seq.arp_note_prev = seq.arp_note + seq.arps[seq.arp_chord][rnd1 + seq.element_shift] + (seq.oct_shift * 12);
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}
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}
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}
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}
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}
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}
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seq.noteoffsent[d] = false;
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}
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seq.arp_counter++;
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seq.step++;
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if (seq.arp_speed == 0) // Arp Speed 1/16
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{
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seq.arp_step++;
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}
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else
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{
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// Arp Speed 1/8
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if (seq.arp_counter > 1) {
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seq.arp_counter = 0;
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seq.arp_step++;
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}
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}
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if (seq.arp_style != 2) {
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if ( (seq.arp_step > 1 && seq.arps[seq.arp_chord][seq.arp_step] == 0) || seq.arp_step == seq.arp_lenght)
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{
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seq.arp_step = 0;
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}
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}
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if (seq.arp_style == 1 || seq.arp_style == 2 )
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{
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if (seq.arp_lenght == 0)seq.arp_lenght = 9;
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}
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if ( seq.arp_style == 2 ) //only for up&down
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{
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if ( (seq.arp_step > 1 && seq.arps[seq.arp_chord][seq.arp_step] == 0) || seq.arp_step == seq.arp_lenght * 2)
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{
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seq.arp_step = 0;
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}
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}
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if (seq.step > 15)
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{
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seq.step = 0;
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if (seq.chain_lenght > 0) {
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seq.chain_active_step++;
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if (seq.chain_active_step > seq.chain_lenght)
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{
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seq.chain_active_step = 0;
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}
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}
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}
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}
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void sequencer_part2(void)
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{
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seq_live_recording();
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for (uint8_t d = 0; d < NUM_SEQ_TRACKS; d++)
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{
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if (seq.noteoffsent[d] == false) {
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if ( seq.prev_note[d] > 0 && seq.track_type[d] > 0)
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{
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if (seq.note_data[ seq.patternchain[seq.chain_active_step][d] ][seq.step] != 130)
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{
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handleNoteOff(configuration.dexed[seq.inst_dexed[d]].midi_channel, seq.prev_note[d] , 0);
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seq.noteoffsent[d] = true;
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}
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if (seq.track_type[d] == 2) { //Chords
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if ( seq.prev_vel[d] > 199) {
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for (uint8_t x = seq.element_shift; x < seq.element_shift + seq.chord_key_ammount; x++) //play chord notes
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{
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handleNoteOff(configuration.dexed[seq.chord_dexed_inst].midi_channel, seq.prev_note[d] + seq.arps[seq.prev_vel[d] - 200][x], 0);
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seq.noteoffsent[d] = true;
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}
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}
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}
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else if (seq.track_type[d] == 3)
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{ //Arp
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handleNoteOff(configuration.dexed[seq.chord_dexed_inst].midi_channel, seq.arp_note_prev, 0);
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seq.noteoffsent[d] = true;
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}
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}
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}
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}
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}
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void sequencer(void)
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{ // Runs in Interrupt Timer. Switches between the Noteon and Noteoff Task, each cycle
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interrupt_swapper = !interrupt_swapper;
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if (interrupt_swapper) sequencer_part1();
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else sequencer_part2();
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}
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