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00020
00021 #ifndef AVUTIL_INTMATH_H
00022 #define AVUTIL_INTMATH_H
00023
00024 #include <stdint.h>
00025 #include "config.h"
00026 #include "attributes.h"
00027
00028 extern const uint32_t ff_inverse[257];
00029
00030 #if ARCH_ARM
00031 # include "arm/intmath.h"
00032 #elif ARCH_X86
00033 # include "x86/intmath.h"
00034 #endif
00035
00036 #if HAVE_FAST_CLZ && AV_GCC_VERSION_AT_LEAST(3,4)
00037
00038 #ifndef av_log2
00039
00040 #define av_log2(x) (31 - __builtin_clz((x)|1))
00041
00042 #ifndef av_log2_16bit
00043 #define av_log2_16bit av_log2
00044 #endif
00045
00046 #endif
00047
00048 #endif
00049
00050 #ifndef FASTDIV
00051
00052 #if CONFIG_FASTDIV
00053 # define FASTDIV(a,b) ((uint32_t)((((uint64_t)a) * ff_inverse[b]) >> 32))
00054 #else
00055 # define FASTDIV(a,b) ((a) / (b))
00056 #endif
00057
00058 #endif
00059
00060
00061
00062
00063
00064
00065
00066
00067 #include "common.h"
00068
00069 #ifndef av_log2
00070 # define av_log2 av_log2_c
00071 #endif
00072 #ifndef av_log2_16bit
00073 # define av_log2_16bit av_log2_16bit_c
00074 #endif
00075
00076 extern const uint8_t ff_sqrt_tab[256];
00077
00078 static inline av_const unsigned int ff_sqrt(unsigned int a)
00079 {
00080 unsigned int b;
00081
00082 if (a < 255) return (ff_sqrt_tab[a + 1] - 1) >> 4;
00083 else if (a < (1 << 12)) b = ff_sqrt_tab[a >> 4] >> 2;
00084 #if !CONFIG_SMALL
00085 else if (a < (1 << 14)) b = ff_sqrt_tab[a >> 6] >> 1;
00086 else if (a < (1 << 16)) b = ff_sqrt_tab[a >> 8] ;
00087 #endif
00088 else {
00089 int s = av_log2_16bit(a >> 16) >> 1;
00090 unsigned int c = a >> (s + 2);
00091 b = ff_sqrt_tab[c >> (s + 8)];
00092 b = FASTDIV(c,b) + (b << s);
00093 }
00094
00095 return b - (a < b * b);
00096 }
00097
00098 #endif