netcdf-c/nc_test/tst_big_var2.c
Sean McBride dfc2ac7296 Replaced trivial uses of sprintf with snprintf
In all these cases the size of the buffer can be computed with sizeof.
2023-12-08 13:30:38 -05:00

136 lines
4.0 KiB
C

/*
Copyright 2018, UCAR/Unidata
See COPYRIGHT file for copying and redistribution conditions.
This program tests the fix for a large file bug in versions previous
to netCDF-4.1.2 for 32-bit platforms, writing to a variable with
more than 1 dimension and more than 2**32 values, where the write
starts after the first 2**32 elements.
$Id: tst_big_var2.c,v 1.3 2010/05/19 16:38:44 russ Exp $
*/
#include "config.h"
#include <nc_tests.h>
#include "err_macros.h"
#include <netcdf.h>
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#define FILE_NAME "tst_big_var2.nc"
/* Test with both classic and 64-bit offset files. If netcdf-4 is
* included, test with both netCDF-4 format variants also. */
#ifdef USE_HDF5
#define NUM_FORMATS (4)
#else
#define NUM_FORMATS (2)
#endif
#define NUMDIMS 3 /* rank of variable in tests */
#define DIM0 2149 /* just big enough to demonstrate bug */
#define DIM1 1000
#define DIM2 2000 /* DIM0*DIM1*DIM2 > 2**32 */
/*
* This program tests the fix for a large file bug in versions
* previous to netCDF-4.1.2 for 32-bit platforms, writing to a
* variable with more than 1 dimension and more than 2**32 values,
* where the write starts after the first 2**32 elements. The bug
* applies to record variables with more than 2**32 values per record
* as well, but that's not tested here.
*/
static int
test_big_var(const char *testfile)
{
int ncid, varid, dimids[NUMDIMS];
size_t start[NUMDIMS] = {0, 0, 0};
size_t count[NUMDIMS] = {1, DIM1, DIM2};
signed char data[DIM1][DIM2];
int i, j;
int nerrs = 0;
/* Create a file with one big variable. */
if (nc_create(testfile, NC_CLOBBER, &ncid)) ERR;
if (nc_set_fill(ncid, NC_NOFILL, NULL)) ERR;
if (nc_def_dim(ncid, "dim0", DIM0, &dimids[0])) ERR;
if (nc_def_dim(ncid, "dim1", DIM1, &dimids[1])) ERR;
/* if (nc_def_dim(ncid, "dim2", DIM2 - 1, &dimids[1])) ERR; */
if (nc_def_dim(ncid, "dim2", DIM2, &dimids[2])) ERR;
if (nc_def_var(ncid, "var", NC_BYTE, NUMDIMS, dimids, &varid)) ERR;
if (nc_enddef(ncid)) ERR;
/* Initialize slab of data. */
for (i = 0; i < DIM1; i++)
for (j = 0; j < DIM2; j++) {
data[i][j] = 42;
}
/* Just write the first and last slabs */
start[0] = 0;
if (nc_put_vara_schar(ncid, varid, start, count, &data[0][0])) ERR;
for (i = 0; i < DIM1; i++)
for (j = 0; j < DIM2; j++) {
data[i][j] = 19;
}
start[0] = DIM0 - 1;
if (nc_put_vara_schar(ncid, varid, start, count, &data[0][0])) ERR;
if (nc_close(ncid)) ERR;
/* Open the file and check it. */
if (nc_open(testfile, NC_NOWRITE, &ncid)) ERR;
if (nc_inq_varid(ncid, "var", &varid)) ERR;
/* Read and check data in the first and last slabs */
start[0] = 0;
if (nc_get_vara_schar(ncid, varid, start, count, &data[0][0])) ERR;
for (i = 0; i < DIM1; i++)
for (j = 0; j < DIM2; j++)
{
if (data[i][j] != 42 )
{
printf("error on start[0]: %ld i: %d j: %d expected %d got %d\n",
start[0], i, j, 42, data[i][j]);
ERR;
if(nerrs++ > 1)
return nerrs;
}
}
start[0] = DIM0 - 1;
if (nc_get_vara_schar(ncid, varid, start, count, &data[0][0])) ERR;
for (i = 0; i < DIM1; i++)
for (j = 0; j < DIM2; j++)
{
if (data[i][j] != 19 )
{
printf("error on start[0]: %ld i: %d j: %d expected %d got %d\n",
start[0], i, j, 19, data[i][j]);
ERR;
if(nerrs++ > 1)
return nerrs;
}
}
if (nc_close(ncid)) ERR;
return 0;
}
int
main(int argc, char **argv) {
int i;
char testfile[NC_MAX_NAME + 1];
printf("\n*** Testing multidimensional variable with more than 2**32 values\n");
snprintf(testfile, sizeof(testfile), "%s/%s", TEMP_LARGE, FILE_NAME);
for (i = NC_FORMAT_CLASSIC; i <= NUM_FORMATS; i++)
{
printf("*** testing format %d file with byte variable with > 2**32 values...", i);
nc_set_default_format(i, NULL);
test_big_var(testfile);
(void) remove(testfile);
SUMMARIZE_ERR;
}
FINAL_RESULTS;
}