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* Merge examples repo into library * Change grepTest to be more fault-tolerant * Update examples macro file * Exclude all Fortran examples from doxygen
171 lines
4.8 KiB
C
171 lines
4.8 KiB
C
/************************************************************
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This example shows how to read and write array datatypes
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to a dataset. The program first writes integers arrays of
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dimension ADIM0xADIM1 to a dataset with a dataspace of
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DIM0, then closes the file. Next, it reopens the file,
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reads back the data, and outputs it to the screen.
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************************************************************/
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#include "hdf5.h"
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#include <stdio.h>
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#include <stdlib.h>
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#define FILE "h5ex_t_array.h5"
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#define DATASET "DS1"
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#define DIM0 4
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#define ADIM0 3
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#define ADIM1 5
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int
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main(void)
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{
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hid_t file = H5I_INVALID_HID; /* File Handle */
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hid_t space = H5I_INVALID_HID; /* Dataspace Handle */
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hid_t dset = H5I_INVALID_HID; /* Dataset Handle */
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hid_t filetype = H5I_INVALID_HID;
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hid_t memtype = H5I_INVALID_HID;
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/* Handles */
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herr_t status;
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hsize_t dims[1] = {DIM0};
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hsize_t adims[2] = {ADIM0, ADIM1};
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int wdata[DIM0][ADIM0][ADIM1]; /* Write buffer */
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int ***rdata = NULL; /* Read buffer */
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int ndims;
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hsize_t i, j, k;
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/*
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* Initialize data. i is the element in the dataspace, j and k the
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* elements within the array datatype.
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*/
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for (i = 0; i < DIM0; i++)
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for (j = 0; j < ADIM0; j++)
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for (k = 0; k < ADIM1; k++)
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wdata[i][j][k] = i * j - j * k + i * k;
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/*
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* Create a new file using the default properties.
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*/
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file = H5Fcreate(FILE, H5F_ACC_TRUNC, H5P_DEFAULT, H5P_DEFAULT);
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/*
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* Create array datatypes for file and memory.
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*/
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filetype = H5Tarray_create(H5T_STD_I64LE, 2, adims);
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memtype = H5Tarray_create(H5T_NATIVE_INT, 2, adims);
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/*
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* Create dataspace. Setting maximum size to NULL sets the maximum
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* size to be the current size.
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*/
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space = H5Screate_simple(1, dims, NULL);
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/*
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* Create the dataset and write the array data to it.
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*/
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dset = H5Dcreate(file, DATASET, filetype, space, H5P_DEFAULT, H5P_DEFAULT, H5P_DEFAULT);
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status = H5Dwrite(dset, memtype, H5S_ALL, H5S_ALL, H5P_DEFAULT, wdata[0][0]);
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/*
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* Close and release resources.
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*/
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status = H5Dclose(dset);
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status = H5Sclose(space);
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status = H5Tclose(filetype);
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status = H5Tclose(memtype);
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status = H5Fclose(file);
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/*
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* Now we begin the read section of this example. Here we assume
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* the dataset and array have the same name and rank, but can have
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* any size. Therefore we must allocate a new array to read in
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* data using malloc().
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*/
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/*
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* Open file and dataset.
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*/
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file = H5Fopen(FILE, H5F_ACC_RDONLY, H5P_DEFAULT);
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dset = H5Dopen(file, DATASET, H5P_DEFAULT);
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/*
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* Get the datatype and its dimensions.
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*/
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filetype = H5Dget_type(dset);
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ndims = H5Tget_array_dims(filetype, adims);
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/*
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* Get dataspace and allocate memory for read buffer. This is a
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* three dimensional dataset when the array datatype is included so
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* the dynamic allocation must be done in steps.
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*/
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space = H5Dget_space(dset);
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ndims = H5Sget_simple_extent_dims(space, dims, NULL);
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/*
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* Allocate array of pointers to two-dimensional arrays (the
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* elements of the dataset.
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*/
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rdata = (int ***)malloc(dims[0] * sizeof(int **));
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/*
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* Allocate two dimensional array of pointers to rows in the data
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* elements.
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*/
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rdata[0] = (int **)malloc(dims[0] * adims[0] * sizeof(int *));
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/*
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* Allocate space for integer data.
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*/
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rdata[0][0] = (int *)malloc(dims[0] * adims[0] * adims[1] * sizeof(int));
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/*
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* Set the members of the pointer arrays allocated above to point
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* to the correct locations in their respective arrays.
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*/
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for (i = 0; i < dims[0]; i++) {
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rdata[i] = rdata[0] + i * adims[0];
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for (j = 0; j < adims[0]; j++)
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rdata[i][j] = rdata[0][0] + (adims[0] * adims[1] * i) + (adims[1] * j);
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}
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/*
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* Create the memory datatype.
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*/
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memtype = H5Tarray_create(H5T_NATIVE_INT, 2, adims);
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/*
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* Read the data.
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*/
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status = H5Dread(dset, memtype, H5S_ALL, H5S_ALL, H5P_DEFAULT, rdata[0][0]);
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/*
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* Output the data to the screen.
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*/
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for (i = 0; i < dims[0]; i++) {
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printf("%s[%llu]:\n", DATASET, i);
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for (j = 0; j < adims[0]; j++) {
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printf(" [");
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for (k = 0; k < adims[1]; k++)
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printf(" %3d", rdata[i][j][k]);
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printf("]\n");
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}
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printf("\n");
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}
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/*
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* Close and release resources.
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*/
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free(rdata[0][0]);
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free(rdata[0]);
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free(rdata);
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status = H5Dclose(dset);
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status = H5Sclose(space);
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status = H5Tclose(filetype);
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status = H5Tclose(memtype);
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status = H5Fclose(file);
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return 0;
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}
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