mirror of
https://github.com/Unidata/netcdf-c.git
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3db4f013bf
Specific changes: 1. Add dap4 code: libdap4 and dap4_test. Note that until the d4ts server problem is solved, dap4 is turned off. 2. Modify various files to support dap4 flags: configure.ac, Makefile.am, CMakeLists.txt, etc. 3. Add nc_test/test_common.sh. This centralizes the handling of the locations of various things in the build tree: e.g. where is ncgen.exe located. See nc_test/test_common.sh for details. 4. Modify .sh files to use test_common.sh 5. Obsolete separate oc2 by moving it to be part of netcdf-c. This means replacing code with netcdf-c equivalents. 5. Add --with-testserver to configure.ac to allow override of the servers to be used for --enable-dap-remote-tests. 6. There were multiple versions of nctypealignment code. Try to centralize in libdispatch/doffset.c and include/ncoffsets.h 7. Add a unit test for the ncuri code because of its complexity. 8. Move the findserver code out of libdispatch and into a separate, self contained program in ncdap_test and dap4_test. 9. Move the dispatch header files (nc{3,4}dispatch.h) to .../include because they are now shared by modules. 10. Revamp the handling of TOPSRCDIR and TOPBUILDDIR for shell scripts. 11. Make use of MREMAP if available 12. Misc. minor changes e.g. - #include <config.h> -> #include "config.h" - Add some no-install headers to /include - extern -> EXTERNL and vice versa as needed - misc header cleanup - clean up checking for misc. unix vs microsoft functions 13. Change copyright decls in some files to point to LICENSE file. 14. Add notes to RELEASENOTES.md
292 lines
10 KiB
C
292 lines
10 KiB
C
/* This is part of the netCDF package.
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Copyright 2005 University Corporation for Atmospheric Research/Unidata
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See COPYRIGHT file for conditions of use.
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Test netcdf-4 variables.
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$Id: tst_chunks.c,v 1.3 2010/01/21 16:00:18 ed Exp $
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*/
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#include <nc_tests.h>
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#include "err_macros.h"
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#define FILE_NAME "tst_chunks.nc"
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#define NDIMS1 1
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#define D_SMALL "small_dim"
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#define D_SMALL_LEN 16
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#define D_MEDIUM "medium_dim"
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#define D_MEDIUM_LEN 65546
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#define D_LARGE "large_dim"
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#define D_LARGE_LEN 1048586
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#define V_SMALL "small_var"
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#define V_MEDIUM "medium_var"
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#define V_LARGE "large_var"
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int
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main(int argc, char **argv)
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{
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printf("\n*** Testing netcdf-4 variable chunking.\n");
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printf("**** testing that fixed vars with filter end up being chunked, with good sizes...");
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{
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int ncid;
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int nvars, ndims, ngatts, unlimdimid;
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int contig;
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int ndims_in, natts_in, dimids_in;
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int small_dimid, medium_dimid, large_dimid;
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int small_varid, medium_varid, large_varid;
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char var_name_in[NC_MAX_NAME + 1];
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size_t chunksize_in[NDIMS1];
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nc_type xtype_in;
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/* Create a netcdf-4 file with three dimensions. */
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if (nc_create(FILE_NAME, NC_NETCDF4, &ncid)) ERR;
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if (nc_def_dim(ncid, D_SMALL, D_SMALL_LEN, &small_dimid)) ERR;
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if (nc_def_dim(ncid, D_MEDIUM, D_MEDIUM_LEN, &medium_dimid)) ERR;
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if (nc_def_dim(ncid, D_LARGE, D_LARGE_LEN, &large_dimid)) ERR;
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/* Add three vars, with filters to force chunking. */
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if (nc_def_var(ncid, V_SMALL, NC_INT64, NDIMS1, &small_dimid, &small_varid)) ERR;
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if (nc_def_var_deflate(ncid, small_varid, 0, 1, 4)) ERR;
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if (nc_def_var(ncid, V_MEDIUM, NC_INT64, NDIMS1, &medium_dimid, &medium_varid)) ERR;
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if (nc_def_var_deflate(ncid, medium_varid, 1, 0, 0)) ERR;
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if (nc_def_var(ncid, V_LARGE, NC_INT64, NDIMS1, &large_dimid, &large_varid)) ERR;
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if (nc_def_var_fletcher32(ncid, large_varid, 1)) ERR;
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if (nc_close(ncid)) ERR;
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/* Open the file and check. */
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if (nc_open(FILE_NAME, NC_WRITE, &ncid)) ERR;
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if (nc_inq(ncid, &ndims, &nvars, &ngatts, &unlimdimid)) ERR;
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if (nvars != 3 || ndims != 3 || ngatts != 0 || unlimdimid != -1) ERR;
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if (nc_inq_var(ncid, 0, var_name_in, &xtype_in, &ndims_in, &dimids_in, &natts_in)) ERR;
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if (strcmp(var_name_in, V_SMALL) || xtype_in != NC_INT64 || ndims_in != 1 ||
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natts_in != 0) ERR;
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/* Make sure chunking sizes are what we expect. */
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if (nc_inq_var_chunking(ncid, small_varid, &contig, chunksize_in)) ERR;
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if (contig || chunksize_in[0] != D_SMALL_LEN) ERR;
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if (nc_inq_var_chunking(ncid, medium_varid, &contig, chunksize_in)) ERR;
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if (contig || chunksize_in[0] * sizeof(long long) > DEFAULT_CHUNK_SIZE) ERR;
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if (nc_inq_var_chunking(ncid, large_varid, &contig, chunksize_in)) ERR;
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if (contig || chunksize_in[0] * sizeof(long long) > DEFAULT_CHUNK_SIZE) ERR;
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if (nc_close(ncid)) ERR;
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}
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SUMMARIZE_ERR;
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printf("**** testing default chunksizes...");
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{
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int nvars, ndims, ngatts, unlimdimid;
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int contig;
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#define NUM_DIM 4
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#define NUM_TYPE 2
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int ncid;
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int dim_len[NUM_DIM] = {NC_UNLIMITED, 100, 1000, 2000};
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size_t chunksize_in[NUM_DIM];
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int type_id[NUM_TYPE] = {NC_BYTE, NC_INT};
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int dimid[NUM_DIM], varid[NUM_TYPE];
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char dim_name[NC_MAX_NAME + 1], var_name[NC_MAX_NAME + 1];
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int d, t;
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/* Create a netcdf-4 file with NUM_DIM dimensions. */
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if (nc_create(FILE_NAME, NC_NETCDF4, &ncid)) ERR;
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for (d = 0; d < NUM_DIM; d++)
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{
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sprintf(dim_name, "dim_%d", dim_len[d]);
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#ifdef PRINT_DEFAULT_CHUNKSIZE_TABLE
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printf("creating dim %s\n", dim_name);
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#endif
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if (nc_def_dim(ncid, dim_name, dim_len[d], &dimid[d])) ERR;
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}
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for (t = 0; t < NUM_TYPE; t++)
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{
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sprintf(var_name, "var_%d", type_id[t]);
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if (nc_def_var(ncid, var_name, type_id[t], NUM_DIM, dimid, &varid[t])) ERR;
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if (nc_inq_var_chunking(ncid, varid[t], &contig, chunksize_in)) ERR;
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#ifdef PRINT_DEFAULT_CHUNKSIZE_TABLE
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printf("chunksizes for %d x %d x %d x %d var: %d x %d x %d x %d (=%d)\n",
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dim_len[0], dim_len[1], dim_len[2], dim_len[3],
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(int)chunksize_in[0], (int)chunksize_in[1], (int)chunksize_in[2],
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(int)chunksize_in[3],
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(int)(chunksize_in[0] * chunksize_in[1] * chunksize_in[2] * chunksize_in[3]));
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#endif
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}
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if (nc_close(ncid)) ERR;
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/* Open the file and check. */
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if (nc_open(FILE_NAME, NC_WRITE, &ncid)) ERR;
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if (nc_inq(ncid, &ndims, &nvars, &ngatts, &unlimdimid)) ERR;
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if (nvars != NUM_TYPE || ndims != NUM_DIM || ngatts != 0 || unlimdimid != 0) ERR;
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for (t = 0; t < NUM_TYPE; t++)
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{
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sprintf(var_name, "var_%d", type_id[t]);
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if (nc_inq_var_chunking(ncid, varid[t], &contig, chunksize_in)) ERR;
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if (contig) ERR;
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#ifdef PRINT_DEFAULT_CHUNKSIZE_TABLE
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printf("chunksizes for %d x %d x %d x %d var: %d x %d x %d x %d (=%d)\n",
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dim_len[0], dim_len[1], dim_len[2], dim_len[3],
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(int)chunksize_in[0], (int)chunksize_in[1], (int)chunksize_in[2],
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(int)chunksize_in[3],
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(int)(chunksize_in[0] * chunksize_in[1] * chunksize_in[2] * chunksize_in[3]));
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#endif
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}
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if (nc_close(ncid)) ERR;
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}
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SUMMARIZE_ERR;
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printf("**** testing that chunking works on classic mode files...");
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{
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#define D_SMALL_LEN2 66
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int ncid;
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int nvars, ndims, ngatts, unlimdimid;
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int contig;
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int ndims_in, natts_in, dimids_in;
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int small_dimid, medium_dimid, large_dimid;
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int small_varid, medium_varid, large_varid;
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char var_name_in[NC_MAX_NAME + 1];
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size_t chunks[1], chunksize_in;
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nc_type xtype_in;
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/* Create a netcdf-4 file with three dimensions. */
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if (nc_create(FILE_NAME, NC_NETCDF4, &ncid)) ERR;
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if (nc_def_dim(ncid, D_SMALL, D_SMALL_LEN2, &small_dimid)) ERR;
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if (nc_def_dim(ncid, D_MEDIUM, D_MEDIUM_LEN, &medium_dimid)) ERR;
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if (nc_def_dim(ncid, D_LARGE, D_LARGE_LEN, &large_dimid)) ERR;
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/* Add three vars. */
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if (nc_def_var(ncid, V_SMALL, NC_INT64, NDIMS1, &small_dimid, &small_varid)) ERR;
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if (nc_def_var_chunking(ncid, small_varid, 1, NULL)) ERR;
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if (nc_def_var(ncid, V_MEDIUM, NC_INT64, NDIMS1, &medium_dimid, &medium_varid)) ERR;
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chunks[0] = D_MEDIUM_LEN / 100;
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if (nc_def_var_chunking(ncid, medium_varid, 0, chunks)) ERR;
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if (nc_def_var_deflate(ncid, medium_varid, 1, 0, 0)) ERR;
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if (nc_def_var(ncid, V_LARGE, NC_INT64, NDIMS1, &large_dimid, &large_varid)) ERR;
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chunks[0] = D_LARGE_LEN / 1000;
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if (nc_def_var_chunking(ncid, large_varid, 0, chunks)) ERR;
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if (nc_def_var_fletcher32(ncid, large_varid, 1)) ERR;
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if (nc_close(ncid)) ERR;
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/* Open the file and check. */
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if (nc_open(FILE_NAME, NC_WRITE, &ncid)) ERR;
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if (nc_inq(ncid, &ndims, &nvars, &ngatts, &unlimdimid)) ERR;
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if (nvars != 3 || ndims != 3 || ngatts != 0 || unlimdimid != -1) ERR;
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if (nc_inq_var(ncid, 0, var_name_in, &xtype_in, &ndims_in, &dimids_in, &natts_in)) ERR;
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if (strcmp(var_name_in, V_SMALL) || xtype_in != NC_INT64 || ndims_in != 1 ||
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natts_in != 0) ERR;
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/* Make sure chunking settings are what we expect. */
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if (nc_inq_var_chunking(ncid, small_varid, &contig, &chunksize_in)) ERR;
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if (!contig) ERR;
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if (nc_inq_var_chunking(ncid, medium_varid, &contig, &chunksize_in)) ERR;
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if (contig || chunksize_in != D_MEDIUM_LEN / 100) ERR;
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if (nc_inq_var_chunking(ncid, large_varid, &contig, &chunksize_in)) ERR;
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if (contig || chunksize_in != D_LARGE_LEN / 1000) ERR;
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if (nc_close(ncid)) ERR;
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}
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SUMMARIZE_ERR;
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printf("**** testing many chunking and contiguous variables...");
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{
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#define NDIMS_3 3
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#define NUM_PLANS 30
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#define D_SNEAKINESS "sneakiness"
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#define D_SNEAKINESS_LEN 5
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#define D_CLEVERNESS "clevernesss"
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#define D_CLEVERNESS_LEN 3
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#define D_EFFECTIVENESS "effectiveness"
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#define D_EFFECTIVENESS_LEN 2
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int ncid, dimids[NDIMS_3], varid[NUM_PLANS];
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size_t chunksize[NDIMS_3] = {D_SNEAKINESS_LEN, D_CLEVERNESS_LEN,
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D_EFFECTIVENESS_LEN};
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char plan_name[NC_MAX_NAME + 1];
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int contig;
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size_t chunksize_in[NDIMS_3];
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int i, j;
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/* Create a netcdf-4 file with three dimensions. */
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if (nc_create(FILE_NAME, NC_NETCDF4, &ncid)) ERR;
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if (nc_def_dim(ncid, D_SNEAKINESS, D_SNEAKINESS_LEN, &dimids[0])) ERR;
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if (nc_def_dim(ncid, D_CLEVERNESS, D_CLEVERNESS_LEN, &dimids[1])) ERR;
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if (nc_def_dim(ncid, D_EFFECTIVENESS, D_EFFECTIVENESS_LEN, &dimids[2])) ERR;
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/* Oh that tricky Cardinal Richelieu, he had many plans! */
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for (i = 0; i < NUM_PLANS; i++)
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{
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sprintf(plan_name, "Richelieu_sneaky_plan_%d", i);
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if (nc_def_var(ncid, plan_name, i % (NC_STRING - 1) + 1, NDIMS_3,
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dimids, &varid[i])) ERR;
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if (i % 2 && nc_def_var_chunking(ncid, varid[i], 0, chunksize)) ERR;
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}
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/* Check the chunking. */
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for (i = 0; i < NUM_PLANS; i++)
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{
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if (nc_inq_var_chunking(ncid, varid[i], &contig, chunksize_in)) ERR;
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if (i % 2)
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{
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for (j = 0; j < NDIMS_3; j++)
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if (chunksize_in[j] != chunksize[j]) ERR;
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}
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else
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if (!contig) ERR;
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}
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if (nc_close(ncid)) ERR;
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/* Open the file and check. */
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if (nc_open(FILE_NAME, NC_WRITE, &ncid)) ERR;
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/* Check the chunking. */
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for (i = 0; i < NUM_PLANS; i++)
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{
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if (nc_inq_var_chunking(ncid, varid[i], &contig, chunksize_in)) ERR;
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if (i % 2)
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{
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for (j = 0; j < NDIMS_3; j++)
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if (chunksize_in[j] != chunksize[j]) ERR;
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}
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else
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if (!contig) ERR;
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}
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if (nc_close(ncid)) ERR;
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}
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SUMMARIZE_ERR;
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printf("**** testing that too large chunksizes fail...");
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{
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#define D_SMALL_LEN2 66
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int stat = NC_NOERR;
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int ncid;
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int small_dimid;
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int small_varid;
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size_t chunks[1];
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/* Create a netcdf-4 file with three dimensions. */
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if (nc_create(FILE_NAME, NC_NETCDF4, &ncid)) ERR;
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if (nc_def_dim(ncid, D_SMALL, D_SMALL_LEN2, &small_dimid)) ERR;
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/* Add one var. */
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if (nc_def_var(ncid, V_SMALL, NC_INT64, NDIMS1, &small_dimid, &small_varid)) ERR;
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/* Attempt to set too large chunksizes */
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chunks[0] = D_SMALL_LEN2 + 1;
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stat = nc_def_var_chunking(ncid, small_varid, NC_CHUNKED, chunks);
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if(stat != NC_EBADCHUNK) {
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printf("Return code is '%s', expected NC_BADCHUNK",nc_strerror(stat));
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ERR;
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}
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/* try agains with proper chunksize */
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chunks[0] = D_SMALL_LEN2;
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stat = nc_def_var_chunking(ncid, small_varid, NC_CHUNKED, chunks);
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if(stat != NC_NOERR) {
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printf("Return code is '%s', expected NC_NOERR",nc_strerror(stat));
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ERR;
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}
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if (nc_abort(ncid)) ERR;
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}
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SUMMARIZE_ERR;
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FINAL_RESULTS;
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}
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