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use continued fractions to approximate a fraction if its numerator or denominator is too large
Originally committed as revision 2405 to svn://svn.ffmpeg.org/ffmpeg/trunk
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1c0dcc391a
commit
5ed9f2e5aa
@ -684,7 +684,7 @@ char av_get_pict_type_char(int pict_type){
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int av_reduce(int *dst_nom, int *dst_den, int64_t nom, int64_t den, int64_t max){
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int exact=1, sign=0;
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int64_t gcd, larger;
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int64_t gcd;
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assert(den != 0);
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@ -698,22 +698,34 @@ int av_reduce(int *dst_nom, int *dst_den, int64_t nom, int64_t den, int64_t max)
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sign= 1;
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}
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for(;;){ //note is executed 1 or 2 times
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gcd = ff_gcd(nom, den);
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nom /= gcd;
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den /= gcd;
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gcd = ff_gcd(nom, den);
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nom /= gcd;
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den /= gcd;
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larger= FFMAX(nom, den);
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if(larger > max){
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int64_t div= (larger + max - 1) / max;
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nom = (nom + div/2)/div;
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den = (den + div/2)/div;
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exact=0;
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}else
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break;
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if(nom > max || den > max){
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AVRational a0={0,1}, a1={1,0};
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exact=0;
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for(;;){
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int64_t x= nom / den;
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int64_t a2n= x*a1.num + a0.num;
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int64_t a2d= x*a1.den + a0.den;
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if(a2n > max || a2d > max) break;
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nom %= den;
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a0= a1;
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a1= (AVRational){a2n, a2d};
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if(nom==0) break;
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x= nom; nom=den; den=x;
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}
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nom= a1.num;
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den= a1.den;
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}
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assert(ff_gcd(nom, den) == 1);
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if(sign) nom= -nom;
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*dst_nom = nom;
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