70 lines
		
	
	
		
			1.7 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
			
		
		
	
	
			70 lines
		
	
	
		
			1.7 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
#include <stdio.h>
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#include <limits.h>
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/* Original code copied from 
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   http://rosettacode.org/wiki/Evaluate_binomial_coefficients
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*/
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/* We go to some effort to handle overflow situations */
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static unsigned long gcd_ui(unsigned long x, unsigned long y) {
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  unsigned long t;
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  if (y < x) { t = x; x = y; y = t; }
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  while (y > 0) {
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    t = y;  y = x % y;  x = t;  /* y1 <- x0 % y0 ; x1 <- y0 */
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  }
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  return x;
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}
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unsigned long binomial(unsigned long n, unsigned long k) {
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  unsigned long d, g, r = 1;
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  if (k == 0) return 1;
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  if (k == 1) return n;
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  if (k >= n) return (k == n);
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  if (k > n/2) k = n-k;
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  for (d = 1; d <= k; d++) {
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    if (r >= ULONG_MAX/n) {  /* Possible overflow */
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      unsigned long nr, dr;  /* reduced numerator / denominator */
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      g = gcd_ui(n, d);  nr = n/g;  dr = d/g;
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      g = gcd_ui(r, dr);  r = r/g;  dr = dr/g;
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      if (r >= ULONG_MAX/nr) return 0;  /* Unavoidable overflow */
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      r *= nr;
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      r /= dr;
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      n--;
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    } else {
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      r *= n--;
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      r /= d;
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    }
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  }
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  return r;
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}
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int main() {
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  //Get test results
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  printf("%lu\n", binomial(5, 3));     // 10
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  printf("%lu\n", binomial(40, 19));   // 131282408400
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  printf("%lu\n", binomial(67, 31));   // 11923179284862717872
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  // Compute special cases for paper on TF soft-decision RS decoder:
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  double a,b,c,p;
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  a=(double)binomial(40, 35);
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  b=(double)binomial(23, 5);
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  c=(double)binomial(63, 40);
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  p=a*b/c;
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  printf("%e   %e   %e   %e\n",a,b,c,p);
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  a=(double)binomial(40, 36);
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  b=(double)binomial(23, 4);
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  c=(double)binomial(63, 40);
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  p=a*b/c;
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  printf("%e   %e   %e   %e\n",a,b,c,p);
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  a=(double)binomial(40, 37);
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  b=(double)binomial(23, 8);
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  c=(double)binomial(63, 45);
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  p=a*b/c;
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  printf("%e   %e   %e   %e\n",a,b,c,p);
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  return 0;
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}
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