确保 capacity ispow2
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@@ -22,14 +22,28 @@ c_size_t round_up_to_pow2(c_size_t v) {
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return v;
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}
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C_STATIC_FORCE_INLINE
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c_bool_t c_FastByteRingBuffer_IsPow2(c_size_t capacity) {
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// A power of 2 must be greater than zero.
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// The bitwise trick (capacity & (capacity - 1)) works because a power of 2
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// has exactly one bit set (e.g., 01000). Subtracting 1 flips all bits up to
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// that set bit (e.g., 00111). Performing a bitwise AND yields exactly 0.
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if (capacity == 0) {
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return C_FALSE;
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}
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return ((capacity & (capacity - 1)) == 0) ? C_TRUE : C_FALSE;
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}
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/* ------------------------------------------------------------------------------------------------------------------ */
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/* */
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c_err_t c_FastByteRingBuffer_Init(c_FastByteRingBuffer_t* self, c_size_t capacity) {
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if (!self || capacity == 0) return C_ERR_PARAM;
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if (!c_FastByteRingBuffer_IsPow2(capacity)) {
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return C_ERR_PARAM;
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}
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// 自動向上對齊,確保符合 Power of Two
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self->capacity = round_up_to_pow2(capacity);
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self->capacity = capacity;
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self->mask = self->capacity - 1; // 建立遮罩
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self->head = 0;
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self->tail = 0;
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@@ -244,8 +244,9 @@ static void test_conditional_is_validator(void) {
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static void test_ring_buffer_memcmp(void) {
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c_FastByteRingBuffer_t ring;
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assert(c_FastByteRingBuffer_Init(&ring, 6) == C_SUCCESS); // Capacity = 6
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assert(c_FastByteRingBuffer_Init(&ring, 6) == C_ERR_INVALID_PARAM); // Capacity = 6
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assert(c_FastByteRingBuffer_Init(&ring, 8) == C_SUCCESS); // Capacity = 6
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uint8_t payload[] = {0x00, 0x11, 0x22, 0x33};
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c_FastByteRingBuffer_WriteBuffer(&ring, payload, 4);
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