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Internals: Added ImBoolVector helper.
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@ -236,6 +236,18 @@ static inline ImVec2 ImRotate(const ImVec2& v, float cos_a, float sin_a)
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static inline float ImLinearSweep(float current, float target, float speed) { if (current < target) return ImMin(current + speed, target); if (current > target) return ImMax(current - speed, target); return current; }
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static inline float ImLinearSweep(float current, float target, float speed) { if (current < target) return ImMin(current + speed, target); if (current > target) return ImMax(current - speed, target); return current; }
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static inline ImVec2 ImMul(const ImVec2& lhs, const ImVec2& rhs) { return ImVec2(lhs.x * rhs.x, lhs.y * rhs.y); }
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static inline ImVec2 ImMul(const ImVec2& lhs, const ImVec2& rhs) { return ImVec2(lhs.x * rhs.x, lhs.y * rhs.y); }
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// Helper: ImBoolVector. Store 1-bit per value.
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// Note that Resize() currently clears the whole vector.
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struct ImBoolVector
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{
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ImVector<int> Storage;
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ImBoolVector() { }
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void Resize(int sz) { Storage.resize((sz + 31) >> 5); memset(Storage.Data, 0, (size_t)Storage.Size * sizeof(Storage.Data[0])); }
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void Clear() { Storage.clear(); }
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bool GetBit(int n) const { int off = (n >> 5); int mask = 1 << (n & 31); return (Storage[off] & mask) != 0; }
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void SetBit(int n, bool v) { int off = (n >> 5); int mask = 1 << (n & 31); if (v) Storage[off] |= mask; else Storage[off] &= ~mask; }
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};
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// Helper: ImPool<>. Basic keyed storage for contiguous instances, slow/amortized insertion, O(1) indexable, O(Log N) queries by ID over a dense/hot buffer,
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// Helper: ImPool<>. Basic keyed storage for contiguous instances, slow/amortized insertion, O(1) indexable, O(Log N) queries by ID over a dense/hot buffer,
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// Honor constructor/destructor. Add/remove invalidate all pointers. Indexes have the same lifetime as the associated object.
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// Honor constructor/destructor. Add/remove invalidate all pointers. Indexes have the same lifetime as the associated object.
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typedef int ImPoolIdx;
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typedef int ImPoolIdx;
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