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190 lines
3.8 KiB
190 lines
3.8 KiB
#include <cl_number.h>
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#include <cl_io.h>
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#include <cl_integer.h>
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#include <cl_float.h>
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#include <cl_float_io.h>
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#include <cl_real.h>
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#include <cl_real_io.h>
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#include <cl_complex.h>
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#include <cl_complex_io.h>
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#include <stdlib.h>
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#include <string.h>
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#include <cl_timing.h>
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int main (int argc, char * argv[])
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{
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int digits = 100;
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int repetitions = 1;
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while (argc >= 3) {
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if (!strcmp(argv[1],"-r")) {
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repetitions = atoi(argv[2]);
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argc -= 2; argv += 2;
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continue;
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}
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if (!strcmp(argv[1],"-n")) {
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digits = atoi(argv[2]);
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argc -= 2; argv += 2;
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continue;
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}
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break;
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}
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if (argc < 1)
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exit(1);
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fprint(cl_stderr, "Number of digits: ");
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fprintdecimal(cl_stderr, digits);
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fprint(cl_stderr, "\n");
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fprint(cl_stderr, "Number of repetitions (except for pi,euler,e): ");
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fprintdecimal(cl_stderr, repetitions);
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fprint(cl_stderr, "\n");
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cl_float_format_t prec = cl_float_format(digits);
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cl_F x1 = sqrt(cl_float(2,prec));
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cl_F x2 = sqrt(cl_float(3,prec));
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cl_F x3 = The(cl_F)(log(cl_float(2,prec)));
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fprint(cl_stderr, "multiplication\n");
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{ cl_F r = x1*x2;
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = x1*x2; }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "sqrt\n");
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{ cl_F r = sqrt(x3);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = sqrt(x3); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "pi\n");
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{ cl_F r;
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{ CL_TIMING; r = cl_pi(prec); }
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "eulerconst\n");
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{ cl_F r;
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{ CL_TIMING; r = cl_eulerconst(prec); }
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "e\n");
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{ cl_F r;
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{ CL_TIMING; r = cl_exp1(prec); }
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "exp\n");
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{ cl_F r = exp(-x1);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = exp(-x1); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "log\n");
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{ cl_N r = log(x2);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = log(x2); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "sin\n");
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{ cl_R r = sin(5*x1);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = sin(5*x1); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "cos\n");
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{ cl_R r = cos(5*x1);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = cos(5*x1); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "asin\n");
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{ cl_N r = asin(x3);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = asin(x3); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "acos\n");
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{ cl_N r = acos(x3);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = acos(x3); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "atan\n");
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{ cl_F r = atan(x3);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = atan(x3); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "sinh\n");
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{ cl_F r = sinh(x2);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = sinh(x2); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "cosh\n");
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{ cl_F r = cosh(x2);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = cosh(x2); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "asinh\n");
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{ cl_N r = asinh(x3);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = asinh(x3); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "acosh\n");
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{ cl_N r = acosh(1+x3);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = acosh(1+x3); }
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}
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cout << r << endl << endl;
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}
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fprint(cl_stderr, "atanh\n");
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{ cl_N r = atanh(x3);
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{ CL_TIMING;
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for (int rep = repetitions; rep > 0; rep--)
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{ r = atanh(x3); }
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}
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cout << r << endl << endl;
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}
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}
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