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@@ -83,7 +83,7 @@ static inline av_const SoftFloat av_mul_sf(SoftFloat a, SoftFloat b){ |
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a.exp += b.exp; |
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av_assert2((int32_t)((a.mant * (int64_t)b.mant) >> ONE_BITS) == (a.mant * (int64_t)b.mant) >> ONE_BITS); |
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a.mant = (a.mant * (int64_t)b.mant) >> ONE_BITS; |
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return av_normalize1_sf(a); |
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return av_normalize1_sf((SoftFloat){a.mant, a.exp - 1}); |
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} |
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/** |
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@@ -91,7 +91,7 @@ static inline av_const SoftFloat av_mul_sf(SoftFloat a, SoftFloat b){ |
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* @return Will not be more denormalized than a. |
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*/ |
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static av_const SoftFloat av_div_sf(SoftFloat a, SoftFloat b){ |
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a.exp -= b.exp+1; |
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a.exp -= b.exp; |
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a.mant = ((int64_t)a.mant<<(ONE_BITS+1)) / b.mant; |
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return av_normalize1_sf(a); |
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} |
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@@ -121,14 +121,14 @@ static inline av_const SoftFloat av_sub_sf(SoftFloat a, SoftFloat b){ |
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* @returns a SoftFloat with value v * 2^frac_bits |
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*/ |
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static inline av_const SoftFloat av_int2sf(int v, int frac_bits){ |
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return av_normalize_sf((SoftFloat){v, ONE_BITS-frac_bits}); |
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return av_normalize_sf((SoftFloat){v, ONE_BITS + 1 - frac_bits}); |
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} |
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/** |
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* Rounding is to -inf. |
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*/ |
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static inline av_const int av_sf2int(SoftFloat v, int frac_bits){ |
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v.exp += frac_bits - ONE_BITS; |
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v.exp += frac_bits - (ONE_BITS + 1); |
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if(v.exp >= 0) return v.mant << v.exp ; |
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else return v.mant >>(-v.exp); |
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} |
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