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@@ -5390,13 +5390,19 @@ static float HalfToFloat(unsigned short x)
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{
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{
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float result = 0.0f;
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float result = 0.0f;
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+ union
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+ {
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+ float fm;
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+ unsigned int ui;
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+ } uni;
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+
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const unsigned int e = (x & 0x7C00) >> 10; // Exponent
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const unsigned int e = (x & 0x7C00) >> 10; // Exponent
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const unsigned int m = (x & 0x03FF) << 13; // Mantissa
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const unsigned int m = (x & 0x03FF) << 13; // Mantissa
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- const float fm = (float)m;
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- const unsigned int v = (*(unsigned int *)&fm) >> 23; // Evil log2 bit hack to count leading zeros in denormalized format
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- const unsigned int r = (x & 0x8000) << 16 | (e != 0)*((e + 112) << 23 | m) | ((e == 0)&(m != 0))*((v - 37) << 23 | ((m << (150 - v)) & 0x007FE000)); // sign : normalized : denormalized
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+ uni.fm = (float)m;
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+ const unsigned int v = uni.ui >> 23; // Evil log2 bit hack to count leading zeros in denormalized format
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+ uni.ui = (x & 0x8000) << 16 | (e != 0)*((e + 112) << 23 | m) | ((e == 0)&(m != 0))*((v - 37) << 23 | ((m << (150 - v)) & 0x007FE000)); // sign : normalized : denormalized
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- result = *(float *)&r;
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+ result = uni.fm;
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return result;
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return result;
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}
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}
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@@ -5406,7 +5412,14 @@ static unsigned short FloatToHalf(float x)
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{
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{
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unsigned short result = 0;
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unsigned short result = 0;
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- const unsigned int b = (*(unsigned int *) & x) + 0x00001000; // Round-to-nearest-even: add last bit after truncated mantissa
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+ union
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+ {
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+ float fm;
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+ unsigned int ui;
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+ } uni;
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+ uni.fm = x;
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+
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+ const unsigned int b = uni.ui + 0x00001000; // Round-to-nearest-even: add last bit after truncated mantissa
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const unsigned int e = (b & 0x7F800000) >> 23; // Exponent
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const unsigned int e = (b & 0x7F800000) >> 23; // Exponent
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const unsigned int m = b & 0x007FFFFF; // Mantissa; in line below: 0x007FF000 = 0x00800000-0x00001000 = decimal indicator flag - initial rounding
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const unsigned int m = b & 0x007FFFFF; // Mantissa; in line below: 0x007FF000 = 0x00800000-0x00001000 = decimal indicator flag - initial rounding
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