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viseq/src/midi-node.h
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#pragma once
#include "config-node.h"
#include "datatypes.h"
#include "edge.h"
#include "node.h"
#include "raymath.h"
#include <map>
#define RADIUS 14.0f
namespace VISEQ::APP::UI{
class AppUI;
}
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namespace VISEQ::GRAPH::NODES {
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class MidiNode : public Node{
friend class APP::UI::AppUI;
private:
MIDI::MidiNote midiNote;
MIDI::MidiCC midiCC;
MIDI::MidiPitchBend midiPitchBend;
MIDI::MidiAftertouch midiAftertouch;
MIDI::MidiPolyPressure midiPolyPressure;
MIDI::MidiPC midiPC;
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public:
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struct NodeMidiOut{
int i;
std::string name;
bool enabled;
};
MidiNode() : Node() {std::cout << "MidiNode Constructor std" << std::endl;}
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MidiNode(Vec2Df position) : Node(position) {}
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NodeType nodeType = NodeType::MIDINODE;
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bool send_note = true;
bool send_cc = false;
bool send_pc = false;
bool send_pitch_bend = false;
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int midi_out = -1;
std::map<int, NodeMidiOut> midi_outs;
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bool gui_midi_channel_edit = false;
bool gui_midi_note_edit = false;
bool gui_midi_velocity_edit = false;
bool gui_midi_gate_edit = false;
bool triggered = false;
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int mode = 0;
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float start = 0;
float fade = 0;
float time = 0;
float last = 0;
std::shared_ptr<MidiNode> getPtr(){
return std::static_pointer_cast<MidiNode>(shared_from_this());
}
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virtual NodeType getNodeType() const override {return nodeType;}
void setMidiPort(int midi_port, bool _state){
midi_outs[midi_port].enabled = _state;
}
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void trigger() override {
triggered = true;
start = GetTime();
fade = midiNote.gate;
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}
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void SMode(int _mode) override{
mode = _mode;
}
int GGate(){
return midiNote.gate;
}
MIDI::MidiNote getNotes() const {
MIDI::MidiNote cNote;
for(auto cn : getConnectedConfigNodes()){
cNote += cn.lock()->getNotes();
}
std::cout << cNote.note << std::endl;
return midiNote + cNote;
}
MIDI::MidiCC getCC() const {
MIDI::MidiCC cCC;
for(auto cn : getConnectedConfigNodes()){
cCC += cn.lock()->getCC();
}
return midiCC + cCC;
}
MIDI::MidiPC getPC() const {
MIDI::MidiPC cPC;
for(auto cn : getConnectedConfigNodes()){
cPC += cn.lock()->getPC();
}
return midiPC + cPC;
}
MIDI::MidiPitchBend getPitchBend() const {
MIDI::MidiPitchBend cPitchBend;
for(auto cn : getConnectedConfigNodes()){
cPitchBend += cn.lock()->getPitchBend();
}
return midiPitchBend + cPitchBend;
}
MIDI::MidiAftertouch getAftertouch() const {
MIDI::MidiAftertouch cAftertouch;
for(auto cn : getConnectedConfigNodes()){
cAftertouch += cn.lock()->getAftertouch();
}
return midiAftertouch + cAftertouch;
}
MIDI::MidiPolyPressure getPolyPressure() const {
MIDI::MidiPolyPressure cPolyPressure;
for(auto cn : getConnectedConfigNodes()){
cPolyPressure += cn.lock()->getPolyPressure();
}
return midiPolyPressure + cPolyPressure;
}
std::vector<std::weak_ptr<ConfigNode>> getConnectedConfigNodes() const {
auto config_conns = connections | RANGE_FILTER([](EDGES::SPTR_Edge c){ return c->start.lock()->getNodeType() == NodeType::CONFIGNODE || c->end.lock()->getNodeType() == NodeType::CONFIGNODE;}) | std::ranges::to<std::vector<std::shared_ptr<EDGES::Edge>>>();
std::vector<std::weak_ptr<ConfigNode>> config_nodes;
for(auto e : config_conns){
if(e->start.lock()->getNodeType() == NodeType::CONFIGNODE) config_nodes.push_back(std::dynamic_pointer_cast<ConfigNode>(e->start.lock()));
if(e->end.lock()->getNodeType() == NodeType::CONFIGNODE) config_nodes.push_back(std::dynamic_pointer_cast<ConfigNode>(e->end.lock()));
}
return config_nodes;
}
void update() override {
Node::update();
mode = state->node_mode;
}
int getMidiNote(){
int mod_notes = 0;
for(auto cn : getConnectedConfigNodes()){
mod_notes += cn.lock()->midiNote.note;
}
return midiNote.note + mod_notes;
}
void modMidiNote(int incr){
midiNote.note += incr;
if(midiNote.note < 0 ) midiNote.note = VISEQ::MIDI::Notes.size()-1;
if(midiNote.note >= (int)VISEQ::MIDI::Notes.size()) midiNote.note = 0;
}
void modMidiCC(int incr){
midiCC.control += incr;
if(midiCC.control < 0 ) midiCC.control = 127;
if(midiCC.control > 127 ) midiCC.control = 0;
}
void modMidiPitchBend(int incr){
midiPitchBend.value += incr;
if(midiPitchBend.value < 0 ) midiPitchBend.value = 0;
if(midiPitchBend.value > 16383 ) midiPitchBend.value = 16383;
}
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void interact(){
float wheel = GetMouseWheelMove();
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if(KEYS_DOWN.ctrl && !KEYS_DOWN.alt){
switch(state->node_mode){
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case 0:{
modMidiNote(wheel);
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break;}
case 1:{
modMidiCC(wheel);
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break;}
case 2:{
modMidiPitchBend(wheel);
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break;}
};
} else if(KEYS_DOWN.shift && !KEYS_DOWN.alt) {
midiNote.velocity += wheel;
if(midiNote.velocity < 0 ) midiNote.velocity = 127;
if(midiNote.velocity > 127 ) midiNote.velocity = 0;
} else if(KEYS_DOWN.alt) {
switch(state->node_mode){
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case 0:{
float incr = (float)wheel * (KEYS_DOWN.shift ? 100.0f : KEYS_DOWN.ctrl ? 1000.0f : 10.0f);
midiNote.gate += incr;
if(midiNote.gate < 0 ) midiNote.gate = 0;
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break;}
case 1:{
midiCC.value += wheel;
if(midiCC.value < 0 ) midiCC.value = 0;
if(midiCC.value > 127 ) midiCC.value = 127;
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break;}
case 2:{
float incr = (float)wheel * (KEYS_DOWN.shift ? 100.0f : KEYS_DOWN.ctrl ? 1000.0f : 10.0f);
midiPitchBend.value += incr;
if(midiPitchBend.value < 0 ) midiPitchBend.value = 0;
if(midiPitchBend.value > 16383 ) midiPitchBend.value = 16383;
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break;}
};
}
}
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void draw(Vec2Df mouse, Camera2D cam) override {
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Node::draw();
if(hovering() || selected) interact();
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last = time;
time = GetTime();
if(time - start >= (float)midiNote.gate / 1000.0f){
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triggered = false;
fade = 0;
} else {
fade -= (time - last)*1000.0f;
}
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DrawRing(position, radius, radius+4, 0, 360, 24, (Color){60, 60, 60, 255});
DrawRing(position, radius, radius+4, 0.0f - 90.0f, (360.0f/127.0f) * midiNote.velocity - 90.0f, 24, (Color){158, 134, 200, 255});
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DrawCircleLinesV(position, radius + 4, (Color){100, 100, 100, 255});
float midi_gate_map = round((255.f / midiNote.gate) * fade);
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Color gate_color = VS_COLOR_GREEN;
switch(mode){
case 0:{
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gate_color = ColorAlphaBlend(VS_COLOR_RED, (Color){180, 210, 115, (unsigned char)Clamp(255 - midi_gate_map, 0, 255)}, WHITE);
break;}
case 1:{
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gate_color = ColorAlphaBlend(VS_COLOR_RED, (Color){229, 181, 103, (unsigned char)Clamp(255 - midi_gate_map, 0, 255)}, WHITE);
break;}
case 2:{
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gate_color = ColorAlphaBlend(VS_COLOR_RED, (Color){232, 125, 62, (unsigned char)Clamp(255 - midi_gate_map, 0, 255)}, WHITE);
break;}
}
if(!picked_up && !selected && !in_selection_rect && !hovering()) DrawCircle(position.x, position.y, radius, gate_color);
if(picked_up || in_selection_rect || hovering()) DrawCircle(position.x, position.y, radius, (Color){108, 153, 187, 255});
if(selected) DrawCircle(position.x, position.y, radius, (Color){255, 153, 187, 255});
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if(distributionMode == Distribution::RANDOM) DrawCircle(position.x, position.y, radius/2.0f, VS_COLOR_PINK);
if(distributionMode == Distribution::ROUNDROBIN) DrawCircle(position.x, position.y, radius/2.0f, VS_COLOR_YELLOW);
if(selected) DrawCircleLinesV(position, radius+8, (Color){158, 255, 210, 255});
if(KEYS_DOWN.alt){
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float value = 0;
int offset_gate = 0;
switch(mode){
case 0:
value = (float)getNotes().gate/1000.0f;
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offset_gate = MeasureText(std::format("{:.2f}", value).c_str(), 12);
DrawText(std::format("{:.2f}",value).c_str(), position.x-offset_gate/2.0f, position.y-5, 12, WHITE );
break;
case 1:
value = (float)getCC().value;
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offset_gate = MeasureText(std::format("{}", value).c_str(), 12);
DrawText(std::format("{}",value).c_str(), position.x-offset_gate/2.0f, position.y-5, 12, WHITE );
break;
case 2:
value = (float)getPitchBend().value;
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offset_gate = MeasureText(std::format("{}", value).c_str(), 12);
DrawText(std::format("{}",value).c_str(), position.x-offset_gate/2.0f, position.y-5, 12, WHITE );
break;
}
} else {
switch(mode){
case 0:{
int offset = MeasureText(MIDI::Notes[(int)getNotes().note].c_str(), 12);
DrawText(MIDI::Notes[getNotes().note].c_str(), position.x-offset/2.0f, position.y-5, 12, WHITE );
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break;}
case 1:{
int offset = MeasureText(std::format("{}", getCC().control).c_str(), 12);
DrawText(std::format("{}", getCC().control).c_str(), position.x-offset/2.0f, position.y-5, 12, WHITE );
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break;}
case 2:{
int offset = MeasureText(std::format("{}", getPitchBend().value).c_str(), 12);
DrawText(std::format("{}", getPitchBend().value).c_str(), position.x-offset/2.0f, position.y-5, 12, WHITE );
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break;}
}
}
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if(highlighted) DrawCircleLinesV(position, radius+2, (Color){255, 0, 0, 200});
DrawText(std::format("{}", id).c_str(), position.x + 20.0f, position.y + 20.0f, 10, WHITE);
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}
friend void to_json(json& j, const MidiNode& N){
std::vector<int> conns;
std::ranges::transform(N.connections.begin(), N.connections.end(), std::back_inserter(conns), [](VISEQ::GRAPH::EDGES::SPTR_Edge e){ return e->id;});
j = json{
{"id", N.id},
{"position", N.position},
{"distributionMode", N.distributionMode},
{"nodeType", N.nodeType},
{"midi_note_channel",N.midiNote.channel},
{"midi_note_note",N.midiNote.note},
{"midi_note_velocity",N.midiNote.velocity},
{"midi_note_gate",N.midiNote.gate},
{"midi_cc_channel",N.midiCC.channel},
{"midi_cc_control",N.midiCC.control},
{"midi_cc_value",N.midiCC.value},
{"midi_pc_channel",N.midiPC.channel},
{"midi_pc_program",N.midiPC.program},
{"midi_pc_value",N.midiPC.value},
{"midi_pitch_bend_channel",N.midiPitchBend.channel},
{"midi_pitch_bend_value",N.midiPitchBend.value},
{"midi_aftertouch_channel",N.midiAftertouch.channel},
{"midi_aftertouch_value",N.midiAftertouch.value},
{"midi_polypressure_channel",N.midiPolyPressure.channel},
{"midi_polypressure_value",N.midiPolyPressure.value},
{"connections",conns}};
}
friend void from_json(const json& j, MidiNode& N){
std::cout << "MidiNode" << std::endl;
j.at("id").get_to(N.id);
j.at("position").get_to<Vec2Df>(N.position);
j.at("distributionMode").get_to(N.distributionMode);
j.at("nodeType").get_to(N.nodeType);
j.at("midi_note_channel").get_to(N.midiNote.channel);
j.at("midi_note_note").get_to(N.midiNote.note);
j.at("midi_note_velocity").get_to(N.midiNote.velocity);
j.at("midi_note_gate").get_to(N.midiNote.gate);
j.at("midi_cc_channel").get_to(N.midiCC.channel);
j.at("midi_cc_control").get_to(N.midiCC.control);
j.at("midi_cc_value").get_to(N.midiCC.value);
j.at("midi_pc_channel").get_to(N.midiPC.channel);
j.at("midi_pc_program").get_to(N.midiPC.program);
j.at("midi_pc_value").get_to(N.midiPC.value);
j.at("midi_pitch_bend_channel").get_to(N.midiPitchBend.channel);
j.at("midi_pitch_bend_value").get_to(N.midiPitchBend.value);
j.at("midi_aftertouch_channel").get_to(N.midiAftertouch.channel);
j.at("midi_aftertouch_value").get_to(N.midiAftertouch.value);
j.at("midi_polypressure_channel").get_to(N.midiPolyPressure.channel);
j.at("midi_polypressure_value").get_to(N.midiPolyPressure.value);
//j.at("connections").get_to(N.connections);
}
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};
}