Those are generally very accurate, but slow, and introduce a dependency on the C standard library. To avoid that you can override those definitions with your custom implementations, like: #define SIMSIMD_RSQRT(x) (1 / sqrt(x)). Algorithms & Design Decisions 📚 In general there are a ...
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Those are generally very accurate, but slow, and introduce a dependency on the C standard library. To avoid that you can override those definitions with your custom implementations, like: #define SIMSIMD_RSQRT(x) (1 / sqrt(x)). Algorithms & Design Decisions 📚 In general there are a ...
Those are generally very accurate, but slow, and introduce a dependency on the C standard library. To avoid that you can override those definitions with your custom implementations, like: #define SIMSIMD_RSQRT(x) (1 / sqrt(x)). Algorithms & Design Decisions 📚 In general there are a ...
Those are generally very accurate, but slow, and introduce a dependency on the C standard library. To avoid that you can override those definitions with your custom implementations, like: #define SIMSIMD_RSQRT(x) (1 / sqrt(x)). Algorithms & Design Decisions 📚 In general there are a ...