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Author SHA1 Message Date
cc5158eef0 common TimeWarp things was detected 2025-09-04 16:46:03 +03:00
c4995cf075 common frameRate Timer was detected 2025-09-04 16:41:56 +03:00

84
Tween.h
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@ -11,22 +11,18 @@ namespace EasingFunc {
// typedef float (*eFunc)(float); // тип easing-функции, как у Вас
// Статические данные для обёртки
static const TimeWarp* g_warp = nullptr;
static eFunc g_baseEasing = nullptr;
// Обёртка с модификатором времени (вызывается Tween'ом)
inline float _easingWithWarp(float t) {
if (!g_warp || !g_baseEasing) return t;
float warpedT = g_warp->apply(t);
return g_baseEasing(warpedT);
inline float _easingWithWarp(float t, const TimeWarp* warp, eFunc baseEasing) {
if (!warp || !baseEasing) return t;
float warpedT = warp->apply(t);
return baseEasing(warpedT);
}
// Установить текущий модификатор времени
inline eFunc withTimeWarp(eFunc easing, const TimeWarp& warp) {
g_warp = &warp;
g_baseEasing = easing;
return _easingWithWarp;
// Создать обёртку с модификатором времени
inline std::function<float(float)> withTimeWarp(eFunc easing, const TimeWarp& warp) {
return [easing, &warp](float t) -> float {
return _easingWithWarp(t, &warp, easing);
};
}
}; // namespace EasingFunc
@ -50,7 +46,6 @@ class Tween {
private:
static inline Tween* head = nullptr;
static inline Tween* last = nullptr;
static inline uint32_t frameRateTimer;
Tween* next;
TweenListener* listener = nullptr;
@ -58,6 +53,7 @@ private:
public:
Tween(uint16_t fps = 30) {
setFps(fps);
frameRateTimer = millis();
if (Tween::head == nullptr) {
Tween::head = this;
}
@ -68,9 +64,10 @@ public:
}
static void tick() {
uint32_t now = millis();
Tween* current = Tween::head;
while (current != nullptr) {
current->update();
current->update(now);
current = current->next;
}
}
@ -84,11 +81,13 @@ private:
uint16_t frameTime;
float dt;
uint32_t oldMillis;
uint32_t frameRateTimer;
float from;
float to;
float duration;
EasingFunc::eFunc easing = nullptr;
std::function<float(float)> easingFunc = nullptr;
float progress;
bool isPlayingF;
bool triggerLastTick = false; // Флаг последнего тика
@ -102,9 +101,8 @@ public:
oldMillis = loopStartTime;
}
void update() {
if (millis() - frameRateTimer > frameTime) {
uint32_t now = millis();
void update(uint32_t now) {
if (now - frameRateTimer > frameTime) {
dt = (now - oldMillis) / 1000.0;
oldMillis = now;
@ -120,7 +118,13 @@ public:
progress = constrain(progress + dt, 0, duration);
float normProgress = constrain(progress / duration, 0, 1);
current = Tween::lerp(from, to, easing(normProgress));
if (easingFunc) {
current = Tween::lerp(from, to, easingFunc(normProgress));
} else if (easing) {
current = Tween::lerp(from, to, easing(normProgress));
} else {
current = Tween::lerp(from, to, normProgress);
}
if (progress >= duration) {
current = to;
@ -130,7 +134,7 @@ public:
if (listener != nullptr) listener->onTweenUpdate(*this);
frameRateTimer = millis();
frameRateTimer = now;
}
}
@ -141,13 +145,32 @@ public:
void start(float from_, float to_, uint16_t durationMs, EasingFunc::eFunc easing_ = nullptr) {
// если easing не задан, используем линейную
easing = (easing_ != nullptr) ? easing_ : EasingFunc::easeLinear;
easingFunc = nullptr; // сбрасываем функцию с TimeWarp
from = from_;
to = to_;
duration = durationMs / 1000.0f;
progress = 0;
current = from;
oldMillis = millis();
uint32_t now = millis();
oldMillis = now;
frameRateTimer = now;
isPlayingF = true;
triggerLastTick = false;
}
void start(float from_, float to_, uint16_t durationMs, std::function<float(float)> easingFunc_) {
easing = nullptr; // сбрасываем обычную функцию
easingFunc = easingFunc_;
from = from_;
to = to_;
duration = durationMs / 1000.0f;
progress = 0;
current = from;
uint32_t now = millis();
oldMillis = now;
frameRateTimer = now;
isPlayingF = true;
triggerLastTick = false;
}
@ -218,7 +241,8 @@ class AnimationChain : public TweenListener {
FromFunc fromFunc = nullptr;
float to;
uint16_t duration; // мс
EasingFunc::eFunc easing;
EasingFunc::eFunc easing = nullptr;
std::function<float(float)> easingFunc = nullptr;
};
private:
@ -230,7 +254,11 @@ class AnimationChain : public TweenListener {
void launchCurrent() {
const Anim& a = animations[currentIndex];
tween.start(a.fromFunc ? a.fromFunc() : a.from, a.to, a.duration, a.easing);
if (a.easingFunc) {
tween.start(a.fromFunc ? a.fromFunc() : a.from, a.to, a.duration, a.easingFunc);
} else {
tween.start(a.fromFunc ? a.fromFunc() : a.from, a.to, a.duration, a.easing);
}
}
public:
@ -245,10 +273,16 @@ class AnimationChain : public TweenListener {
//------------------------------------------------------------------
void addAnim(float from, float to, uint16_t duration, EasingFunc::eFunc easing = nullptr) {
animations.push_back({from, {}, to, duration, easing});
animations.push_back({from, {}, to, duration, easing, nullptr});
}
void addAnim(FromFunc fromF, float to, uint16_t duration, EasingFunc::eFunc easing = nullptr) {
animations.push_back({0, fromF, to, duration, easing});
animations.push_back({0, fromF, to, duration, easing, nullptr});
}
void addAnim(float from, float to, uint16_t duration, std::function<float(float)> easingFunc) {
animations.push_back({from, {}, to, duration, nullptr, easingFunc});
}
void addAnim(FromFunc fromF, float to, uint16_t duration, std::function<float(float)> easingFunc) {
animations.push_back({0, fromF, to, duration, nullptr, easingFunc});
}
void clear() { animations.clear(); }