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https://github.com/TheAlgorithms/C
synced 2024-11-29 16:53:12 +03:00
make uswe "long double" precisions
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@ -16,9 +16,9 @@
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/**
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* define polynomial function
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**/
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double complex function(double *coeffs, unsigned int degree, double complex x)
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long double complex function(double *coeffs, unsigned int degree, long double complex x)
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{
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double complex out = 0.;
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long double complex out = 0.;
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unsigned int n;
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for (n = 0; n < degree; n++)
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@ -27,7 +27,7 @@ double complex function(double *coeffs, unsigned int degree, double complex x)
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return out;
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}
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const char *complex_str(double complex x)
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const char *complex_str(long double complex x)
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{
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static char msg[50];
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double r = creal(x);
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@ -38,9 +38,9 @@ const char *complex_str(double complex x)
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return msg;
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}
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double get_rand()
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double get_rand(double lim)
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{
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const double max = 10, min = -10;
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const double max = fabs(lim), min = -max;
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return (double)rand() / (double)RAND_MAX * (max - min + 1.0);
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}
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@ -50,7 +50,7 @@ double get_rand()
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int main(int argc, char **argv)
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{
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double *coeffs = NULL;
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double complex *s0 = NULL;
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long double complex *s0 = NULL;
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unsigned int degree = 0;
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unsigned int n, i;
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@ -60,9 +60,9 @@ int main(int argc, char **argv)
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return 0;
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}
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degree = argc - 1; /*< detected polynomial degree */
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coeffs = (double *)malloc(degree * sizeof(double)); /**< store all input coefficients */
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s0 = (double complex *)malloc((degree - 1) * sizeof(double complex)); /**< number of roots = degree-1 */
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degree = argc - 1; /*< detected polynomial degree */
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coeffs = (double *)malloc(degree * sizeof(double)); /**< store all input coefficients */
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s0 = (long double complex *)malloc((degree - 1) * sizeof(long double complex)); /**< number of roots = degree-1 */
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/* initialize random seed: */
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srand(time(NULL));
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@ -104,7 +104,8 @@ int main(int argc, char **argv)
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/* initialize root approximations with random values */
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if (n < degree - 1)
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{
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s0[n] = get_rand() + get_rand() * I;
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s0[n] = get_rand(coeffs[n]);
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//+get_rand(coeffs[n]) * I;
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#if defined(DEBUG) || !defined(NDEBUG)
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fprintf(log_file, "root_%d,", n);
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#endif
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@ -123,7 +124,7 @@ int main(int argc, char **argv)
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while (tol_condition > ACCURACY && iter < INT_MAX)
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{
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double complex delta = 0;
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long double complex delta = 0;
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tol_condition = 0;
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iter++;
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@ -133,23 +134,23 @@ int main(int argc, char **argv)
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for (n = 0; n < degree - 1; n++)
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{
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double complex numerator = function(coeffs, degree, s0[n]);
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double complex denominator = 1.0;
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long double complex numerator = function(coeffs, degree, s0[n]);
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long double complex denominator = 1.0;
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for (i = 0; i < degree - 1; i++)
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if (i != n)
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denominator *= s0[n] - s0[i];
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if (cabs(denominator) == 0)
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delta = numerator / denominator;
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if (isnan(cabsl(delta)) || isinf(cabsl(delta)))
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{
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printf("denominatpr = 0\n");
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printf("Overflow/underrun error - got value = %Lg\n", cabsl(delta));
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goto end;
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}
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delta = numerator / denominator;
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s0[n] -= delta;
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tol_condition += fabs(cabs(delta));
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tol_condition += fabsl(cabsl(delta));
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#if defined(DEBUG) || !defined(NDEBUG)
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fprintf(log_file, "%s,", complex_str(s0[n]));
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@ -176,7 +177,7 @@ end:
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fclose(log_file);
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#endif
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printf("Iterations: %lu\n", iter);
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printf("\nIterations: %lu\n", iter);
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for (n = 0; n < degree - 1; n++)
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printf("\t%s\n", complex_str(s0[n]));
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printf("absolute average change: %.4g\n", tol_condition);
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