/* * Copyright 2008 The Android Open Source Project * * Use of this source code is governed by a BSD-style license that can be * found in the LICENSE file. */ #ifndef SkFloatBits_DEFINED #define SkFloatBits_DEFINED #include "include/private/base/SkMath.h" #include <cstdint> #include <cstring> /** Convert a sign-bit int (i.e. float interpreted as int) into a 2s compliement int. This also converts -0 (0x80000000) to 0. Doing this to a float allows it to be compared using normal C operators (<, <=, etc.) */ static inline int32_t SkSignBitTo2sCompliment(int32_t x) { … } /** Convert a 2s compliment int to a sign-bit (i.e. int interpreted as float). This undoes the result of SkSignBitTo2sCompliment(). */ static inline int32_t Sk2sComplimentToSignBit(int32_t x) { … } // Helper to see a float as its bit pattern (w/o aliasing warnings) static inline uint32_t SkFloat2Bits(float value) { … } // Helper to see a bit pattern as a float (w/o aliasing warnings) static inline float SkBits2Float(uint32_t bits) { … } /** Return the float as a 2s compliment int. Just to be used to compare floats to each other or against positive float-bit-constants (like 0). This does not return the int equivalent of the float, just something cheaper for compares-only. */ static inline int32_t SkFloatAs2sCompliment(float x) { … } /** Return the 2s compliment int as a float. This undos the result of SkFloatAs2sCompliment */ static inline float Sk2sComplimentAsFloat(int32_t x) { … } // Scalar wrappers for float-bit routines #define SkScalarAs2sCompliment(x) … #endif