timermanager now creates its own timers
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+16
-5
@@ -49,11 +49,10 @@ vector<int> dataprovider(){
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}
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void setupsorttimers(TimerManager &mytimermanager, unique_ptr<Steppable> &mysession){
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unique_ptr<Timer> mytimer = make_unique<Timer>(
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"sort1", 0,
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mytimermanager.add_timer(
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0,
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[&mysession](){return mysession->step();},
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milliseconds(250));
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mytimermanager.add_timer(std::move(mytimer));
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}
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//list of inputs, manually assign them to sorts
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@@ -63,14 +62,27 @@ struct SortSession {
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TimerManager SortTimer;
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SortSession(vector<SortInput> &inputs): inputs(inputs), sorts(make_unique<SteppedBsort>(inputs[0])) {
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setupsorttimers(SortTimer, sorts);
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//setupsorttimers(SortTimer, sorts);
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add_session(sorts);
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}
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void add_session(unique_ptr<Steppable> &mysteppable){
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SortTimer.add_timer(0,
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[&mysteppable]() {return mysteppable->step();},
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milliseconds(250));
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}
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void update_sorts(){
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SortTimer.update_timers();
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}
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};
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struct ViewSession{
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sf::RenderWindow mywindow;
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sf::Font myfont;
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sf::Text text;
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};
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struct App{
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sf::RenderWindow mywindow;
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sf::Font myfont;
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@@ -118,7 +130,6 @@ struct App{
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displaySortInput(input);
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}
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mywindow.display();
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this_thread::sleep_for(milliseconds(250));
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}
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+7
-6
@@ -8,8 +8,8 @@
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using namespace std::chrono;
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using namespace std;
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Timer::Timer(string name, int triggercount, function<bool()> myaction, milliseconds triggerinterval)
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: name(name), triggeramount(triggercount), timeraction(myaction), triggerinterval(triggerinterval) {}
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Timer::Timer(size_t triggeramount, function<bool()> myaction, milliseconds triggerinterval)
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:triggeramount(triggeramount), timeraction(myaction), triggerinterval(triggerinterval) {}
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void Timer::add_time(milliseconds deltatime) {
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accumulator += deltatime;
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@@ -23,16 +23,17 @@ void Timer::add_time(milliseconds deltatime) {
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}
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};
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void TimerManager::add_timer(unique_ptr<Timer> newtimer) {
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timers.push_back(std::move(newtimer));
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void TimerManager::add_timer(size_t triggeramount, function<bool()> myaction, std::chrono::milliseconds triggerinterval) {
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Timer mynewtimer(triggeramount, myaction, triggerinterval);
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timers.push_back(mynewtimer);
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};
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void TimerManager::update_timers() {
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steady_clock::time_point currenttime =
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steady_clock::now();
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milliseconds deltatime = duration_cast<milliseconds>(currenttime-previoustime);
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for(unique_ptr<Timer> &mytimer: timers){
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mytimer->add_time(deltatime);
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for(Timer &mytimer: timers){
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mytimer.add_time(deltatime);
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}
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previoustime = currenttime;
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}
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+5
-6
@@ -11,9 +11,9 @@
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using namespace std;
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//check if the timer is still valid, check if enough time has passed and if so, actuate action
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class Timer {
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public:
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string name;
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size_t triggeramount;
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bool isexpired = false;
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@@ -21,22 +21,21 @@ public:
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size_t triggercount = 0;
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function<bool()> timeraction;
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Timer(string name, int triggercount, function<bool()> myaction, std::chrono::milliseconds triggerinterval);
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Timer(size_t triggeramount, function<bool()> myaction, std::chrono::milliseconds triggerinterval);
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void add_time(std::chrono::milliseconds deltatime);
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private:
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std::chrono::milliseconds accumulator = std::chrono::milliseconds(0);
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std::chrono::milliseconds triggerinterval = std::chrono::milliseconds(1000); //default to 1 sec
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};
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//CRUD timers and give them dt on update
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class TimerManager {
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public:
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vector<unique_ptr<Timer>> timers;
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vector<Timer> timers;
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TimerManager(){previoustime = std::chrono::steady_clock::now();}
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void add_timer(unique_ptr<Timer> newtimer);
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void add_timer(size_t triggeramount, function<bool()> myaction, std::chrono::milliseconds triggerinterval);
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void delete_timer();
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void update_timers();
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