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author | marha <marha@users.sourceforge.net> | 2012-07-02 08:47:42 +0200 |
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committer | marha <marha@users.sourceforge.net> | 2012-07-02 08:47:42 +0200 |
commit | fdef5bff99e6079f64bc6b91c91b42195c85adeb (patch) | |
tree | 5d9c311d9f36cfa26850d02801388953ccc17b54 /mesalib/src/gallium/auxiliary/util/u_half.h | |
parent | f6d1847eef027266daa0f75ee92ceb09698b2761 (diff) | |
download | vcxsrv-fdef5bff99e6079f64bc6b91c91b42195c85adeb.tar.gz vcxsrv-fdef5bff99e6079f64bc6b91c91b42195c85adeb.tar.bz2 vcxsrv-fdef5bff99e6079f64bc6b91c91b42195c85adeb.zip |
mesa pixman xserver git update 2 Jul 2012
Diffstat (limited to 'mesalib/src/gallium/auxiliary/util/u_half.h')
-rw-r--r-- | mesalib/src/gallium/auxiliary/util/u_half.h | 101 |
1 files changed, 67 insertions, 34 deletions
diff --git a/mesalib/src/gallium/auxiliary/util/u_half.h b/mesalib/src/gallium/auxiliary/util/u_half.h index ad030e90c..f7009f548 100644 --- a/mesalib/src/gallium/auxiliary/util/u_half.h +++ b/mesalib/src/gallium/auxiliary/util/u_half.h @@ -35,51 +35,84 @@ extern "C" { #endif -extern const uint32_t util_half_to_float_mantissa_table[2048]; -extern const uint32_t util_half_to_float_exponent_table[64]; -extern const uint32_t util_half_to_float_offset_table[64]; -extern const uint16_t util_float_to_half_base_table[512]; -extern const uint8_t util_float_to_half_shift_table[512]; - /* - * Note that if the half float is a signaling NaN, the x87 FPU will turn - * it into a quiet NaN immediately upon loading into a float. - * - * Additionally, denormals may be flushed to zero. + * References for float <-> half conversions * - * To avoid this, use the floatui functions instead of the float ones - * when just doing conversion rather than computation on the resulting - * floats. + * http://fgiesen.wordpress.com/2012/03/28/half-to-float-done-quic/ + * https://gist.github.com/2156668 + * https://gist.github.com/2144712 */ -static INLINE uint32_t -util_half_to_floatui(uint16_t h) +static INLINE uint16_t +util_float_to_half(float f) { - unsigned exp = h >> 10; - return util_half_to_float_mantissa_table[util_half_to_float_offset_table[exp] + (h & 0x3ff)] + util_half_to_float_exponent_table[exp]; + uint32_t sign_mask = 0x80000000; + uint32_t round_mask = ~0xfff; + uint32_t f32inf = 0xff << 23; + uint32_t f16inf = 0x1f << 23; + uint32_t sign; + union fi magic; + union fi f32; + uint16_t f16; + + magic.ui = 0xf << 23; + + f32.f = f; + + /* Sign */ + sign = f32.ui & sign_mask; + f32.ui ^= sign; + + if (f32.ui == f32inf) { + /* Inf */ + f16 = 0x7c00; + } else if (f32.ui > f32inf) { + /* NaN */ + f16 = 0x7e00; + } else { + /* Number */ + f32.ui &= round_mask; + f32.f *= magic.f; + f32.ui -= round_mask; + + /* Clamp to infinity if overflowed */ + if (f32.ui > f16inf) + f32.ui = f16inf; + + f16 = f32.ui >> 13; + } + + /* Sign */ + f16 |= sign >> 16; + + return f16; } static INLINE float -util_half_to_float(uint16_t h) +util_half_to_float(uint16_t f16) { - union fi r; - r.ui = util_half_to_floatui(h); - return r.f; -} + union fi infnan; + union fi magic; + union fi f32; -static INLINE uint16_t -util_floatui_to_half(uint32_t v) -{ - unsigned signexp = v >> 23; - return util_float_to_half_base_table[signexp] + ((v & 0x007fffff) >> util_float_to_half_shift_table[signexp]); -} + infnan.ui = 0x8f << 23; + infnan.f = 65536.0f; + magic.ui = 0xef << 23; -static INLINE uint16_t -util_float_to_half(float f) -{ - union fi i; - i.f = f; - return util_floatui_to_half(i.ui); + /* Exponent / Mantissa */ + f32.ui = (f16 & 0x7fff) << 13; + + /* Adjust */ + f32.f *= magic.f; + + /* Inf / NaN */ + if (f32.f >= infnan.f) + f32.ui |= 0xff << 23; + + /* Sign */ + f32.ui |= (f16 & 0x8000) << 16; + + return f32.f; } #ifdef __cplusplus |