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https://github.com/hyprwm/Hyprland.git
synced 2025-08-03 21:51:55 -07:00
@@ -5,13 +5,13 @@ void CBezierCurve::setup(std::vector<Vector2D>* pVec) {
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const auto BEGIN = std::chrono::high_resolution_clock::now();
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m_dPoints.emplace_back(Vector2D(0,0));
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m_dPoints.emplace_back(Vector2D(0, 0));
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for (auto& p : *pVec) {
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m_dPoints.push_back(p);
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}
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m_dPoints.emplace_back(Vector2D(1,1));
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m_dPoints.emplace_back(Vector2D(1, 1));
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RASSERT(m_dPoints.size() == 4, "CBezierCurve only supports cubic beziers! (points num: %i)", m_dPoints.size());
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@@ -21,7 +21,7 @@ void CBezierCurve::setup(std::vector<Vector2D>* pVec) {
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m_aPointsBaked[i] = Vector2D(getXForT((i + 1) / (float)BAKEDPOINTS), getYForT((i + 1) / (float)BAKEDPOINTS));
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}
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const auto ELAPSEDUS = std::chrono::duration_cast<std::chrono::nanoseconds>(std::chrono::high_resolution_clock::now() - BEGIN).count() / 1000.f;
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const auto ELAPSEDUS = std::chrono::duration_cast<std::chrono::nanoseconds>(std::chrono::high_resolution_clock::now() - BEGIN).count() / 1000.f;
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const auto POINTSSIZE = m_aPointsBaked.size() * sizeof(m_aPointsBaked[0]) / 1000.f;
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const auto BEGINCALC = std::chrono::high_resolution_clock::now();
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@@ -29,9 +29,8 @@ void CBezierCurve::setup(std::vector<Vector2D>* pVec) {
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getYForPoint(i);
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const auto ELAPSEDCALCAVG = std::chrono::duration_cast<std::chrono::nanoseconds>(std::chrono::high_resolution_clock::now() - BEGINCALC).count() / 1000.f / 10.f;
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Debug::log(LOG, "Created a bezier curve, baked %i points, mem usage: %.2fkB, time to bake: %.2fµs. Estimated average calc time: %.2fµs.",
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BAKEDPOINTS, POINTSSIZE, ELAPSEDUS, ELAPSEDCALCAVG);
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Debug::log(LOG, "Created a bezier curve, baked %i points, mem usage: %.2fkB, time to bake: %.2fµs. Estimated average calc time: %.2fµs.", BAKEDPOINTS, POINTSSIZE, ELAPSEDUS,
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ELAPSEDCALCAVG);
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}
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float CBezierCurve::getYForT(float t) {
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@@ -47,9 +46,9 @@ float CBezierCurve::getYForPoint(float x) {
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// binary search for the range UPDOWN X
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float upperT = 1;
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float lowerT = 0;
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float mid = 0.5;
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float mid = 0.5;
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while(std::abs(upperT - lowerT) > INVBAKEDPOINTS) {
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while (std::abs(upperT - lowerT) > INVBAKEDPOINTS) {
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if (m_aPointsBaked[((int)(mid * (float)BAKEDPOINTS))].x > x) {
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upperT = mid;
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} else {
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@@ -65,7 +64,7 @@ float CBezierCurve::getYForPoint(float x) {
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const auto PERCINDELTA = (x - LOWERPOINT->x) / (UPPERPOINT->x - LOWERPOINT->x);
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if (std::isnan(PERCINDELTA) || std::isinf(PERCINDELTA)) // can sometimes happen for VERY small x
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if (std::isnan(PERCINDELTA) || std::isinf(PERCINDELTA)) // can sometimes happen for VERY small x
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return 0.f;
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return LOWERPOINT->y + (UPPERPOINT->y - UPPERPOINT->y) * PERCINDELTA;
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