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083fa734a3
Purpose: C++ API for 1.3.x branch Description: The *.C files are the sample code that perform some common operations to an HDF5 file and its components. The *.h5 files are the HDF5 files that are generated/used by the sample programs. Platforms tested: Solaris (arabica) and Linux
195 lines
4.5 KiB
C
195 lines
4.5 KiB
C
/*
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* This example shows how to create a compound datatype,
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* write an array which has the compound datatype to the file,
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* and read back fields' subsets.
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*/
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#include <string>
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#ifndef H5_NO_NAMESPACE
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using namespace std;
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#endif
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#ifdef OLD_HEADER_FILENAME
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#include <iostream.h>
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#else
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#include <iostream>
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#endif
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#include "H5Cpp.h"
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#ifndef H5_NO_NAMESPACE
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using namespace H5;
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#endif
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const string FILE_NAME( "SDScompound.h5" );
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const string DATASET_NAME( "ArrayOfStructures" );
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const string MEMBER1( "a_name" );
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const string MEMBER2( "b_name" );
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const string MEMBER3( "c_name" );
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const int LENGTH = 10;
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const int RANK = 1;
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int main(void)
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{
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/* First structure and dataset*/
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typedef struct s1_t {
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int a;
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float b;
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double c;
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} s1_t;
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/* Second structure (subset of s1_t) and dataset*/
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typedef struct s2_t {
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double c;
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int a;
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} s2_t;
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// Try block to detect exceptions raised by any of the calls inside it
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try
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{
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/*
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* Initialize the data
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*/
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int i;
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s1_t s1[LENGTH];
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for (i = 0; i< LENGTH; i++)
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{
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s1[i].a = i;
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s1[i].b = i*i;
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s1[i].c = 1./(i+1);
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}
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/*
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* Create the data space.
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*/
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hsize_t dim[] = {LENGTH}; /* Dataspace dimensions */
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DataSpace space( RANK, dim );
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/*
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* Create the file.
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*/
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H5File* file = new H5File( FILE_NAME, H5F_ACC_TRUNC );
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/*
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* Create the memory datatype.
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*/
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CompType mtype1( sizeof(s1_t) );
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mtype1.insertMember( MEMBER1, HOFFSET(s1_t, a), PredType::NATIVE_INT);
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mtype1.insertMember( MEMBER3, HOFFSET(s1_t, c), PredType::NATIVE_DOUBLE);
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mtype1.insertMember( MEMBER2, HOFFSET(s1_t, b), PredType::NATIVE_FLOAT);
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/*
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* Create the dataset.
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*/
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DataSet* dataset;
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dataset = new DataSet( file->createDataSet( DATASET_NAME, mtype1, space ));
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/*
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* Wtite data to the dataset;
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*/
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dataset->write( s1, mtype1 );
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/*
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* Release resources
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*/
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delete dataset;
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delete file;
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// Get the class of the first member in mtype1, then get its type
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H5T_class_t member1_class = mtype1.getMemberClass( 2 );
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if( member1_class == H5T_FLOAT )
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{
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FloatType member2 = mtype1.getMemberFloatType( 2 );
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string norm_string;
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H5T_norm_t norm = member2.getNorm( norm_string );
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cout << "Normalization type is " << norm_string << endl;
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}
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/*
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* Open the file and the dataset.
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*/
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file = new H5File( FILE_NAME, H5F_ACC_RDONLY );
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dataset = new DataSet (file->openDataSet( DATASET_NAME ));
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/*
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* Create a datatype for s2
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*/
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CompType mtype2( sizeof(s2_t) );
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mtype2.insertMember( MEMBER3, HOFFSET(s2_t, c), PredType::NATIVE_DOUBLE);
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mtype2.insertMember( MEMBER1, HOFFSET(s2_t, a), PredType::NATIVE_INT);
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/*
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* Read two fields c and a from s1 dataset. Fields in the file
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* are found by their names "c_name" and "a_name".
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*/
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s2_t s2[LENGTH];
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dataset->read( s2, mtype2 );
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/*
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* Display the fields
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*/
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cout << endl << "Field c : " << endl;
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for( i = 0; i < LENGTH; i++)
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cout << s2[i].c << " ";
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cout << endl;
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cout << endl << "Field a : " << endl;
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for( i = 0; i < LENGTH; i++)
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cout << s2[i].a << " ";
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cout << endl;
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/*
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* Create a datatype for s3.
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*/
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CompType mtype3( sizeof(float) );
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mtype3.insertMember( MEMBER2, 0, PredType::NATIVE_FLOAT);
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/*
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* Read field b from s1 dataset. Field in the file is found by its name.
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*/
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float s3[LENGTH]; // Third "structure" - used to read float field of s1)
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dataset->read( s3, mtype3 );
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/*
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* Display the field
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*/
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cout << endl << "Field b : " << endl;
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for( i = 0; i < LENGTH; i++)
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cout << s3[i] << " ";
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cout << endl;
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/*
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* Release resources
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*/
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delete dataset;
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delete file;
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} // end of try block
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// catch failure caused by the H5File operations
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catch( FileIException error )
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{
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error.printError();
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}
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// catch failure caused by the DataSet operations
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catch( DataSetIException error )
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{
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error.printError();
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}
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// catch failure caused by the DataSpace operations
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catch( DataSpaceIException error )
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{
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error.printError();
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}
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// catch failure caused by the DataSpace operations
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catch( DataTypeIException error )
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{
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error.printError();
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}
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return 0;
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}
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