mirror of https://github.com/ecmwf/eccodes.git
323 lines
11 KiB
C
Executable File
323 lines
11 KiB
C
Executable File
/*
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* Copyright 2005-2014 ECMWF.
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*
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* This software is licensed under the terms of the Apache Licence Version 2.0
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* which can be obtained at http://www.apache.org/licenses/LICENSE-2.0.
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*
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* In applying this licence, ECMWF does not waive the privileges and immunities granted to it by
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* virtue of its status as an intergovernmental organisation nor does it submit to any jurisdiction.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <assert.h>
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#include "grib_api_internal.h"
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#define NO_PRINT 1
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#define PRINT_ALL (1<<1)
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#define PRINT_ROUND_ERRORS (1<<2)
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#define PRINT_TRUNCATION (1<<3)
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#define NO_NEAREST_SMALLER_IBM_FLOAT (1<<4)
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void test_bits(double x,unsigned long mode) {
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double y=0,z=0,w=0,t=0;
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double dy=0,dz=0,dw=0,dt=0;
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unsigned long i=0,j=0,k=0,l=0;
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i=grib_ibm_to_long(x);
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y=grib_long_to_ibm(i);
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dy=y-x;
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z=grib_long_to_ibm(j);
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dz=z-x;
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k=grib_ibm_nearest_smaller_to_long(x);
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w=grib_long_to_ibm(k);
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dw=w-x;
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if ( !(mode & NO_NEAREST_SMALLER_IBM_FLOAT) ) {
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t=grib_nearest_smaller_ibm_float(x);
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l=grib_ibm_to_long(y);
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dt=t-x;
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}
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if (mode & PRINT_ALL) {
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printf("x=%.20e \n",x);
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printf("grib_ibm_to_long %lu (0x%lx) -> %.20e diff=%.20e\n",i,i,y,dy);
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printf("grib_nearest_smaller_ibm_float %lu (0x%lx) -> %.20e diff=%.20e\n",l,l,t,dt);
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printf("grib_ibm_nearest_smaller_to_long %lu (0x%lx) -> %.20e diff=%.20e\n",k,k,w,dw);
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}
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if (fabs(dz) < fabs(dy) && ( (mode & PRINT_ROUND_ERRORS )| (mode & PRINT_ALL ) )) {
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printf("!!!!!!!!!!-------------- Rounding error \n");
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printf("x=%.20e \n",x);
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printf("grib_ibm_to_long %lu (0x%lx) -> %.20e diff=%.20e\n",i,i,y,dy);
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printf("grib_ibm_to_long_trunc %lu (0x%lx) -> %.20e diff=%.20e\n",j,j,z,dz);
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printf("grib_nearest_smaller_ibm_float %lu (0x%lx) -> %.20e diff=%.20e\n",l,l,t,dt);
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printf("grib_ibm_nearest_smaller_to_long %lu (0x%lx) -> %.20e diff=%.20e\n",k,k,w,dw);
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}
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if (( w != t) && ( (mode & PRINT_TRUNCATION ) | ( mode & PRINT_ALL ) ) ) {
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printf("!!!!!!!!!!--------------- Different nearest smaller \n");
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printf("x=%.20e \n",x);
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printf("grib_ibm_to_long %lu (0x%lx) -> %.20e diff=%.20e\n",i,i,y,dy);
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printf("grib_ibm_to_long_trunc %lu (0x%lx) -> %.20e diff=%.20e\n",j,j,z,dz);
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printf("grib_nearest_smaller_ibm_float %lu (0x%lx) -> %.20e diff=%.20e\n",l,l,t,dt);
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printf("grib_ibm_nearest_smaller_to_long %lu (0x%lx) -> %.20e diff=%.20e\n",k,k,w,dw);
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}
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}
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void print_machine_parameters() {
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int ibeta=0, it=0, irnd=0, ngrd=0, machep=0, negep=0, iexp=0, minexp=0, maxexp=0;
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float eps=0, epsneg=0, xmin=0, xmax=0;
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printf("-- Machine parameters ---\n");
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printf("ibeta=%d\n",ibeta);
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printf("it=%d\n",it);
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printf("irnd=%d\n",irnd);
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printf("ngrd=%d\n",ngrd);
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printf("machep=%d\n",machep);
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printf("negep=%d\n",negep);
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printf("iexp=%d\n",iexp);
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printf("minexp=%d\n",minexp);
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printf("maxexp=%d\n",maxexp);
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printf("eps=%g\n",eps);
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printf("epsneg=%g\n",epsneg);
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printf("xmin=%.20e\n",xmin);
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printf("xmax=%.20e\n",xmax);
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printf("-------------------------\n\n");
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}
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int main(int argc, char *argv[])
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{
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double x,y,z,w,d,eps,epst,epsh;
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double dt=0;
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unsigned long i,j,n,nc,c,m;
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unsigned long seed=123;
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unsigned char ibm[4];
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float xf=0;
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int r;
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unsigned long iminp=0x00100000, imaxp=0x7fffffff;
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unsigned long iminn=0x80100000, imaxn=0xffffffff;
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double dminp=0,dmaxp=0,dminn=0,dmaxn=0;
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double dminpn=0,dmaxpp=0,dminnn=0,dmaxnp=0;
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unsigned long A;
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long e;
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int k,cc;
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dminp=grib_long_to_ibm(iminp);
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dminpn=grib_long_to_ibm(iminp+1);
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dmaxp=grib_long_to_ibm(imaxp);
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dmaxpp=grib_long_to_ibm(imaxp-1);
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dminn=grib_long_to_ibm(iminn);
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dminnn=grib_long_to_ibm(iminn+1);
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dmaxn=grib_long_to_ibm(imaxn);
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dmaxnp=grib_long_to_ibm(imaxn-1);
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x=-1.33642013258103330000e-83;
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i=grib_ibm_to_long(x);
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j=grib_ibm_nearest_smaller_to_long(x);
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printf("grib_ibm_to_long(%.20e)=0x%lX grib_long_to_ibm(0x%lX)=%.20e grib_ibm_nearest_smaller_to_long(%.20e)=0x%lX\n",
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x,i,i,grib_long_to_ibm(i),x,j);
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printf("grib_long_to_ibm(grib_ibm_nearest_smaller_to_long(%.20e))=%.20e\n",x,grib_long_to_ibm(j));
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exit(0);
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/*
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if (argc > 1 ) {
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x=atof(argv[1]);
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test_bits(x,PRINT_ALL);
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printf("-----------------\n");
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exit(0);
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}
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*/
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/*
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i=0x49800000;
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x=grib_long_to_ibm(i);
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j=grib_ibm_to_long(x);
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printf(" grib_long_to_ibm(0x%lX)=%.8e grib_ibm_to_long(grib_long_to_ibm(0x%lX))=0x%lX\n",i,x,i,j);
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exit(0);
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*/
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printf("-------------------------------- ibm float -------------------------------\n");
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printf("Min positive 0x%lX -> %.8e ",iminp,dminp);
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printf("-- next 0x%lX -> %.8e diff=%.3e\n",iminp+1,dminpn,dminp-dminpn);
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printf("Max positive 0x%lX -> %.8e ",imaxp,dmaxp);
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printf("-- prev 0x%lX -> %.8e diff= %.3e\n",imaxp-1,dmaxpp,dmaxp-dmaxpp);
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printf("Min negative 0x%lX -> %.8e ",iminn,dminn);
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printf("-- next 0x%lX -> %.8e diff= %.3e\n",iminn+1,dminnn,dminn-dminnn);
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printf("Max negative 0x%lX -> %.8e ",imaxn,dmaxn);
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printf("-- prev 0x%lX -> %.8e diff=%.3e\n",imaxn-1,dmaxnp,dmaxn-dmaxnp);
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printf("%lu negative values, %lu positive values\n",(imaxn-iminn),(imaxp-iminp));
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printf("--------------------------------------------------------------------------\n");
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fflush(stdout);
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#if 0
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if (0) {
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printf("---- Test --------- ibm_to_long(long_to_ibm()) ---------------------------\n");
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nc=((imaxn-iminp))/100;
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c=0;
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for (i=iminp;i<imaxn;i++) {
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if (c==nc) { printf("%lu \n",i-iminp);fflush(stdout); c=0; }
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if ( (i & 0x00800000) != 0 && i != grib_ibm_to_long(grib_long_to_ibm(i))) {
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printf("test failed: 0x%lX != ibm_to_long(long_to_ibm(0x%lX)) \n",grib_ibm_to_long(grib_long_to_ibm(i)),i);
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exit(1);
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}
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c++;
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}
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printf("%lu \n",i-iminp);
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printf("---- Test passed ---------------------------------------------------------\n");
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}
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printf("\n--- Negative Underflow test --------------\n");
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x=1;
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y=fabs(x)/2;
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while ( grib_long_to_ibm(grib_ibm_to_long(x)) != 0 ) {
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/* test_bits(x,PRINT_ALL); */
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test_bits(x,PRINT_TRUNCATION | PRINT_ROUND_ERRORS);
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x*=y;
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}
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test_bits(x,PRINT_ALL);
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printf("----------------------------------\n");
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printf("\n--- Positive Underflow test --------------\n");
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x=1;
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y=fabs(x)/2;
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w=0;
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while ( grib_long_to_ibm(grib_ibm_to_long(x)) != 0 ) {
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test_bits(x,PRINT_TRUNCATION | PRINT_ROUND_ERRORS);
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/* test_bits(x,PRINT_ALL); */
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w=x;
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x*=y;
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}
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test_bits(x,PRINT_ALL);
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printf("----------------------------------\n");
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printf("\n--- Positive Overflow test --------------\n");
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x=grib_long_to_ibm(0x7fffffff);
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test_bits(x,PRINT_ALL);
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x=7.237005145973e75;
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test_bits(x,PRINT_ALL);
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x=7.237005145974e75;
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test_bits(x,PRINT_ALL);
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printf("----------------------------------\n");
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printf("\n--- Negative Overflow test --------------\n");
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x=grib_long_to_ibm(0xffffffff);
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test_bits(x,PRINT_ALL );
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x=-7.237005145974e75;
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test_bits(x,PRINT_ALL | NO_NEAREST_SMALLER_IBM_FLOAT);
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printf("----------------------------------\n");
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#endif
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printf("\n--- Rounding & nearest smaller test --------------\n");
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fflush(stdout);
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nc=((imaxn-iminp))/100;
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printf("imaxn=%lu iminp=%lu nc=%lu\n",imaxn,iminp,nc);
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fflush(stdout);
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c=0;
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cc=1;
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i=0xCC100000;
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/* for (i=0x7F100000 ;i<imaxn;i++) */
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for (i=iminp;i<imaxn;i++)
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{
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if ( (i & 0x00100000) == 0 &&
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(i & 0x00200000) == 0 &&
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(i & 0x00400000) == 0 &&
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(i & 0x00800000) == 0
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) {c++;continue;}
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if (c>=nc) { printf("%d - %lu 0x%lX\n",cc,i-iminp,i);fflush(stdout); c=0;cc++; }
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A = (i & 0x7f000000) >> 24;
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e = A-70;
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eps=1;
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m = (i & 0xffffff);
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/* printf("---m=0x%lX\n",m); */
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eps=grib_ibm_table_e(A);
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epsh=eps/2;
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epst=eps/3;
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y=grib_long_to_ibm(i);
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if (grib_ibm_to_long(y) != i) {
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printf("------ grib_long_to_ibm(grib_ibm_to_long()) Failure -----------------\n");
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printf("i=0x%lX\n",i);
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i,grib_long_to_ibm(i));
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i-1,grib_long_to_ibm(i-1));
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i+1,grib_long_to_ibm(i+1));
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printf("eps=%.20e\n",eps);
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printf("y=%.20e grib_ibm_to_long(y)=0x%lX grib_long_to_ibm(grib_ibm_to_long(y))=%.20e\n",y,j,z);
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printf("fabs(grib_long_to_ibm(grib_ibm_to_long(y))-y)=%.20e \n",d);
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printf("--------------------------------------------------------\n");
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fflush(stdout);
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exit(1);
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}
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for (k=1;k<3;k++) {
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if (i == 0x7FFFFFFF) continue;
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if (y>0) y+=epst;
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else y-=epst;
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/* rounding test */
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j=grib_ibm_to_long(y);
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z=grib_long_to_ibm(j);
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d=fabs(z-y);
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if ( d > epsh ) {
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printf("---------------- Rounding Failure ----------------------\n");
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printf("i=0x%lX\n",i);
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i,grib_long_to_ibm(i));
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i-1,grib_long_to_ibm(i-1));
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i+1,grib_long_to_ibm(i+1));
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printf("eps=%.20e\n",eps);
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printf("y=%.20e grib_ibm_to_long(y)=0x%lX grib_long_to_ibm(grib_ibm_to_long(y))=%.20e\n",y,j,z);
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printf("fabs(grib_long_to_ibm(grib_ibm_to_long(y))-y)=%.20e \n",d);
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printf("--------------------------------------------------------\n");
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fflush(stdout);
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exit(1);
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}
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/* nearest smaller test */
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j=grib_ibm_nearest_smaller_to_long(y);
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z=grib_long_to_ibm(j);
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d=z-y;
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if ( d > 0 ) {
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printf("---------------- Nearest smaller Failure ---------------\n");
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printf("i=0x%lX\n",i);
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i-1,grib_long_to_ibm(i-1));
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i,grib_long_to_ibm(i));
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i+1,grib_long_to_ibm(i+1));
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printf("eps=%.20e d=%.20e\n",eps,d);
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printf(" y=%.20e grib_ibm_nearest_smaller_to_long(y)=0x%lX\n",y,j);
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printf("grib_long_to_ibm(0x%lX)=%.20e\n",j,z);
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printf("--------------------------------------------------------\n");
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fflush(stdout);
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exit(1);
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}
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if ( abs(d) > eps ) {
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printf("---------------- Nearest smaller warning ---------------\n");
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printf("i=0x%lX\n",i);
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i-1,grib_long_to_ibm(i-1));
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i,grib_long_to_ibm(i));
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printf("grib_long_to_ibm(0x%lX)=%.20e \n", i+1,grib_long_to_ibm(i+1));
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printf("eps=%.20e d=%.20e\n",eps,d);
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printf(" y=%.20e grib_ibm_nearest_smaller_to_long(y)=0x%lX\n",y,j);
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printf("grib_long_to_ibm(0x%lX)=%.20e\n",j,z);
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printf("--------------------------------------------------------\n");
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fflush(stdout);
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}
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}
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c++;
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}
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printf("\n--- test finished ---------------------------------\n");
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return 0;
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}
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