/** * \file format_utils.h * A collection of format conversion utility functions. */ /* * Mesa 3-D graphics library * * Copyright (C) 1999-2006 Brian Paul All Rights Reserved. * Copyright (C) 2014 Intel Corporation All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), * to deal in the Software without restriction, including without limitation * the rights to use, copy, modify, merge, publish, distribute, sublicense, * and/or sell copies of the Software, and to permit persons to whom the * Software is furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice shall be included * in all copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR * OTHER DEALINGS IN THE SOFTWARE. */ #ifndef UTIL_FORMAT_UTILS_H #define UTIL_FORMAT_UTILS_H #include "util/half_float.h" #include "util/rounding.h" /* Extends an integer of size SRC_BITS to one of size DST_BITS linearly */ #define EXTEND_NORMALIZED_INT(X, SRC_BITS, DST_BITS) \ (((X) * (int)(u_uintN_max(DST_BITS) / u_uintN_max(SRC_BITS))) + \ ((DST_BITS % SRC_BITS) ? ((X) >> (SRC_BITS - DST_BITS % SRC_BITS)) : 0)) static inline float _mesa_unorm_to_float(unsigned x, unsigned src_bits) { return x * (1.0f / (float)u_uintN_max(src_bits)); } static inline float _mesa_snorm_to_float(int x, unsigned src_bits) { if (x <= -u_intN_max(src_bits)) return -1.0f; else return x * (1.0f / (float)u_intN_max(src_bits)); } static inline uint16_t _mesa_unorm_to_half(unsigned x, unsigned src_bits) { return _mesa_float_to_half(_mesa_unorm_to_float(x, src_bits)); } static inline uint16_t _mesa_snorm_to_half(int x, unsigned src_bits) { return _mesa_float_to_half(_mesa_snorm_to_float(x, src_bits)); } static inline unsigned _mesa_float_to_unorm(float x, unsigned dst_bits) { if (x < 0.0f) return 0; else if (x > 1.0f) return u_uintN_max(dst_bits); else return _mesa_i64roundevenf(x * u_uintN_max(dst_bits)); } static inline unsigned _mesa_half_to_unorm(uint16_t x, unsigned dst_bits) { return _mesa_float_to_unorm(_mesa_half_to_float(x), dst_bits); } static inline unsigned _mesa_unorm_to_unorm(unsigned x, unsigned src_bits, unsigned dst_bits) { if (src_bits < dst_bits) { return EXTEND_NORMALIZED_INT(x, src_bits, dst_bits); } else if (src_bits > dst_bits) { unsigned src_half = (1u << (src_bits - 1)) - 1; if (src_bits + dst_bits > sizeof(x) * 8) { assert(src_bits + dst_bits <= sizeof(uint64_t) * 8); return (((uint64_t) x * u_uintN_max(dst_bits) + src_half) / u_uintN_max(src_bits)); } else { return (x * u_uintN_max(dst_bits) + src_half) / u_uintN_max(src_bits); } } else { return x; } } static inline unsigned _mesa_snorm_to_unorm(int x, unsigned src_bits, unsigned dst_bits) { if (x < 0) return 0; else return _mesa_unorm_to_unorm(x, src_bits - 1, dst_bits); } static inline int _mesa_float_to_snorm(float x, unsigned dst_bits) { if (x < -1.0f) return -u_intN_max(dst_bits); else if (x > 1.0f) return u_intN_max(dst_bits); else return _mesa_lroundevenf(x * u_intN_max(dst_bits)); } static inline int _mesa_half_to_snorm(uint16_t x, unsigned dst_bits) { return _mesa_float_to_snorm(_mesa_half_to_float(x), dst_bits); } static inline int _mesa_unorm_to_snorm(unsigned x, unsigned src_bits, unsigned dst_bits) { return _mesa_unorm_to_unorm(x, src_bits, dst_bits - 1); } static inline int _mesa_snorm_to_snorm(int x, unsigned src_bits, unsigned dst_bits) { if (x < -u_intN_max(src_bits)) return -u_intN_max(dst_bits); else if (src_bits < dst_bits) return EXTEND_NORMALIZED_INT(x, src_bits - 1, dst_bits - 1); else return x >> (src_bits - dst_bits); } static inline unsigned _mesa_unsigned_to_unsigned(unsigned src, unsigned dst_size) { return MIN2(src, u_uintN_max(dst_size)); } static inline int _mesa_unsigned_to_signed(unsigned src, unsigned dst_size) { return MIN2(src, (unsigned)u_intN_max(dst_size)); } static inline int _mesa_signed_to_signed(int src, unsigned dst_size) { return CLAMP(src, u_intN_min(dst_size), u_intN_max(dst_size)); } static inline unsigned _mesa_signed_to_unsigned(int src, unsigned dst_size) { return CLAMP(src, 0, u_uintN_max(dst_size)); } static inline unsigned _mesa_float_to_unsigned(float src, unsigned dst_bits) { if (src < 0.0f) return 0; if (src > (float)u_uintN_max(dst_bits)) return u_uintN_max(dst_bits); return _mesa_signed_to_unsigned(src, dst_bits); } static inline unsigned _mesa_float_to_signed(float src, unsigned dst_bits) { if (src < (float)(-u_intN_max(dst_bits))) return -u_intN_max(dst_bits); if (src > (float)u_intN_max(dst_bits)) return u_intN_max(dst_bits); return _mesa_signed_to_signed(src, dst_bits); } static inline unsigned _mesa_half_to_unsigned(uint16_t src, unsigned dst_bits) { if (_mesa_half_is_negative(src)) return 0; return _mesa_unsigned_to_unsigned(_mesa_float_to_half(src), dst_bits); } static inline unsigned _mesa_half_to_signed(uint16_t src, unsigned dst_bits) { return _mesa_float_to_signed(_mesa_half_to_float(src), dst_bits); } #endif /* UTIL_FORMAT_UTILS_H */