Files
viseq/src/app-manager.h
T

194 lines
5.2 KiB
C++

#pragma once
#include <filesystem>
#include <fstream>
#include "interaction-manager.h"
#include "nlohmann/json.hpp"
#include "datatypes.h"
#include "canvas.h"
#include "graph-manager.h"
#include "midi-node.h"
#include "node.h"
#include "raylib.h"
#include "signal-manager.h"
#include "state.h"
#include "ui.h"
#include <memory>
using json = nlohmann::json;
namespace VISEQ::APP {
class AppManager{
public:
AppManager() : im(gm->getPtr(), sm->getPtr(), canvas), ui(sm->getPtr(), gm->getPtr()) {}
std::mutex mutex;
std::shared_ptr<APP::State> state = APP::State::get();
std::shared_ptr<CANVAS::Canvas> canvas = std::make_shared<CANVAS::Canvas>();
//VISEQ::GRAPH::GraphManager gm;
//VISEQ::SIGNAL::SignalManager sm;
std::shared_ptr<GraphManager> gm = std::make_shared<GraphManager>();
std::shared_ptr<SIGNAL::SignalManager> sm = std::make_shared<SIGNAL::SignalManager>(gm->getPtr(), &mutex);
VISEQ::INTERACTION::InteractionManager im;
// VISEQ::APP::Mouse mouse;
UI::AppUI ui;
NLOHMANN_DEFINE_TYPE_INTRUSIVE(AppManager, gm, sm);
void init(){
canvas->camera.target = (Vector2){ state->settings.width/2.0f, state->settings.height/2.0f };
canvas->camera.offset = (Vector2){ state->settings.width/2.0f, state->settings.height/2.0f };
canvas->camera.rotation = 0.0f;
canvas->camera.zoom = 1.0f;
}
void close(){
std::ofstream file("state.json");
file << json(*this);
std::cout << std::setw(4) << json(*this) << std::endl;
}
void startSignals(){
sm->startSignalThread();
}
void loadState(){
if(std::filesystem::exists("state.json")){
std::ifstream f("state.json");
json graph = json::parse(f);
for(auto n : graph.at("gm").at("nodes")){
std::cout << "object? " << n.is_object() << std::endl;
if(n.is_object()){
std::cout << "nodeType = " << n.at("nodeType").get<int>() << std::endl;
if(n.at("nodeType").get<int>() == NodeType::MIDINODE) gm->addNode(n.template get<std::shared_ptr<MidiNode>>());
if(n.at("nodeType").get<int>() == NodeType::CONFIGNODE) gm->addNode(n.template get<std::shared_ptr<ConfigNode>>());
}
}
int highest_id = 0;
Node hid;
for(auto n : graph.at("gm").at("nodes")){
std::cout << n << std::endl;
if(n.is_object()){
Node mn = n.template get<Node>();
if(mn.id > highest_id) {
highest_id = mn.id;
hid = mn;
}
}
}
for(auto e : graph.at("gm").at("edges")){
if(e.at("id") > highest_id){
highest_id = e.at("id");
}
}
for(auto e : graph.at("gm").at("edges")){
int start_id = e.at("start").get<int>();
int end_id = e.at("end").get<int>();
VEC_WPTR_Node start = gm->getNodesByID(start_id);
VEC_WPTR_Node end = gm->getNodesByID(end_id);
if(!start.empty() && !end.empty()) {
std::cout << std::format("connection {} to {}", start_id, end_id) << std::endl;
gm->addConnection(start.front(), end.front());
}
}
gm->lastEdge().lock()->newId(highest_id);
for(auto s : graph.at("sm").at("signals")){
int start_id = s.at("start").get<int>();
int next_id = s.at("next").get<int>();
int last_id = s.at("last").get<int>();
std::shared_ptr<VISEQ::SIGNAL::Signal> ms = s;
VEC_WPTR_Node start = gm->getNodesByID(start_id);
VEC_WPTR_Node last = gm->getNodesByID(last_id);
VEC_WPTR_Node next = gm->getNodesByID(next_id);
ms->start = start.front();
ms->next = next.front();
ms->last = last.front();
sm->signals.push_back(ms);
std::cout << std::format("adding signal with start node {}", start_id) << std::endl;
}
} else {
for(int i = 0; i < 4; ++i){
gm->createMidiNode(Vec2Df{(float)i * state->settings.grid*4 + 7 * state->settings.grid, 2 * state->settings.grid*4});
}
for(int i = 3; i >= 0; --i){
gm->createMidiNode(Vec2Df{(float)i * state->settings.grid*4 + 7 * state->settings.grid, 3 * state->settings.grid*4});
}
for(int i = 0; i < 8; ++i){
gm->addConnection(gm->getNode(i), gm->getNode((i+1) % 8));
}
sm->addSignalAtNode(gm->getFirstNode());
}
}
void updateMidiPorts(){
for(auto& n : gm->getMidiNodes()){
auto nc = std::dynamic_pointer_cast<MidiNode>(n.lock());
for(auto& mo : sm->midi.midi_out_ports){
if(!nc->midi_outs.contains(mo.number) && mo.enabled){
nc->midi_outs[mo.number] = {mo.number, mo.port.port_name, false};
}
if(nc->midi_outs.contains(mo.number) && !mo.enabled){
nc->midi_outs.erase(mo.number);
}
}
}
}
void update(){
state->update(canvas->camera);
canvas->update();
gm->update();
mutex.lock();
updateMidiPorts();
mutex.unlock();
im.update();
}
void draw(){
BeginDrawing();
ClearBackground((Color){46,46,46});
canvas->drawStart();
canvas->draw();
gm->drawNodes(SCREEN_MOUSE, canvas->camera);
gm->drawEdges(SCREEN_MOUSE, canvas->camera);
sm->drawSignals(SCREEN_MOUSE, canvas->camera);
im.draw();
canvas->drawEnd();
drawUI();
EndDrawing();
}
void drawUI(){
mutex.lock();
ui.draw(SCREEN_MOUSE, canvas->camera);
mutex.unlock();
}
};
}