expanded timer to infinite and limited timers.

simplified display.
This commit is contained in:
2026-07-09 18:37:35 +02:00
parent 02a12622c2
commit 0cc5d69c0a
+44 -31
View File
@@ -20,45 +20,56 @@
centralize into event sender and subscriber centralize into event sender and subscriber
*/ */
/*
find a way to eject timer
find a way to group timers into an object
*/
struct mysecondsdisplay {
int intervalcount = 10;
void myupdatedisplay() {
intervalcount -= 1;
mvprintw(intervalcount, intervalcount, "hello %d", intervalcount);
if (intervalcount < 1) {
intervalcount = 10;
}
}
};
// calls callbackfunc on specified interval based on accumulated deltatime // calls callbackfunc on specified interval based on accumulated deltatime
class timer { class timer {
private:
double accumulator = 0;
int triggeramount = 0;
double time_interval = 1; // only display every 1 seconds
public: public:
std::string name; std::string name;
std::function<void()> callbackfunc; int triggercounter = 0;
bool is_infinite = false;
std::function<void(const timer&)> callbackfunc;
bool is_expired = false;
timer(std::string name, size_t interval_input, std::function<void()> callback) //infinite timer
: name(name), callbackfunc(callback), time_interval(interval_input) {} timer(std::string name_input, size_t interval_input,
std::function<void(const timer &)> callback_input)
: time_interval(interval_input), name(name_input), is_infinite(true),
callbackfunc(callback_input) {}
//limited timer
timer(std::string name, size_t interval_input, int triggeramount,
std::function<void(const timer &)> callback)
: triggeramount(triggeramount), time_interval(interval_input), name(name),
callbackfunc(callback) {}
// callbackfunc once enough time has accumulated // callbackfunc once enough time has accumulated
void updatetime(double DeltaTime) { void updatetime(double DeltaTime) {
accumulator += DeltaTime; accumulator += DeltaTime;
if (accumulator >= time_interval) { if (!is_expired) {
accumulator -= time_interval; if (accumulator >= time_interval) {
callbackfunc(); callbackfunc(*this);
accumulator -= time_interval;
triggercounter++;
if (!is_infinite && triggercounter >= triggeramount) {
is_expired = true;
}
}
} }
} }
private:
double accumulator = 0;
double time_interval = 1; // only display every 1 seconds
}; };
void myupdatedisplay(const timer &timer_input) {
mvprintw(timer_input.triggercounter, timer_input.triggercounter, "hello %d",
timer_input.triggercounter);
}
// manage collection of timers // manage collection of timers
class timermanager { class timermanager {
std::vector<std::unique_ptr<timer>> timers; std::vector<std::unique_ptr<timer>> timers;
@@ -71,7 +82,12 @@ public:
for (auto &mytimer : timers) { for (auto &mytimer : timers) {
mytimer->updatetime(dtime); mytimer->updatetime(dtime);
mvprintw(12, 0, "updated timer %s", mytimer->name.c_str()); mvprintw(12, 0, "updated timer %s", mytimer->name.c_str());
}; }
timers.erase(std::remove_if(timers.begin(), timers.end(),
[](auto &timer) { return timer->is_expired; }),
timers.end());
// implement delete timers
;
refresh(); refresh();
} }
}; };
@@ -82,20 +98,17 @@ int main() {
refresh(); refresh();
// printf("verification\n"); // printf("verification\n");
auto starttime = std::chrono::system_clock::now(); // initial starttime auto starttime = std::chrono::steady_clock::now(); // initial starttime
mysecondsdisplay secdisp; auto clocktimer = std::make_unique<timer>("secondsprinter", 1, 10, myupdatedisplay);
auto clocktimer = std::make_unique<timer>("secondsprinter", 1, [&]() { secdisp.myupdatedisplay(); });
timermanager mytimermanager; timermanager mytimermanager;
mytimermanager.addtimer(std::move(clocktimer)); mytimermanager.addtimer(std::move(clocktimer));
mvprintw(5, 5, "timer added"); mvprintw(5, 5, "timer added");
// calculate delta between current and previous time // calculate delta between current and previous time
while (true) { while (true) {
auto currenttime = std::chrono::system_clock::now(); auto currenttime = std::chrono::steady_clock::now();
std::chrono::duration<double> myDeltaTime = currenttime - starttime; std::chrono::duration<double> myDeltaTime = currenttime - starttime;
double dtime = myDeltaTime.count(); double dtime = myDeltaTime.count();
// mvprintw(11, 11, "dtime: %f", dtime);
// clocktimer.updatetime(dtime);
mytimermanager.updatetimers(dtime); mytimermanager.updatetimers(dtime);
starttime = currenttime; starttime = currenttime;