mirror of
https://github.com/HDFGroup/hdf5.git
synced 2024-11-27 02:10:55 +08:00
ed7d456e51
Tested platform: Kagiso only since it is only a comment block change. If it works in one machine, it should work in all, I hope. Still need to check the parallel build on copper.
247 lines
12 KiB
C
247 lines
12 KiB
C
/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
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* Copyright by The HDF Group. *
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* Copyright by the Board of Trustees of the University of Illinois. *
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* All rights reserved. *
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* *
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* This file is part of HDF5. The full HDF5 copyright notice, including *
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* terms governing use, modification, and redistribution, is contained in *
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* the files COPYING and Copyright.html. COPYING can be found at the root *
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* of the source code distribution tree; Copyright.html can be found at the *
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* root level of an installed copy of the electronic HDF5 document set and *
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* is linked from the top-level documents page. It can also be found at *
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* http://hdfgroup.org/HDF5/doc/Copyright.html. If you do not have *
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* access to either file, you may request a copy from help@hdfgroup.org. *
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* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
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/* common definitions used by all parallel hdf5 test programs. */
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#ifndef PHDF5TEST_H
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#define PHDF5TEST_H
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#include "testpar.h"
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enum H5TEST_COLL_CHUNK_API {API_NONE=0,API_LINK_HARD,
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API_MULTI_HARD,API_LINK_TRUE,API_LINK_FALSE,
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API_MULTI_COLL,API_MULTI_IND};
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#ifndef FALSE
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#define FALSE 0
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#endif
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#ifndef TRUE
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#define TRUE 1
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#endif
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/* Constants definitions */
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#define DIM0 600 /* Default dataset sizes. */
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#define DIM1 1200 /* Values are from a monitor pixel sizes */
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#define RANK 2
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#define DATASETNAME1 "Data1"
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#define DATASETNAME2 "Data2"
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#define DATASETNAME3 "Data3"
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#define DATASETNAME4 "Data4"
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/* Hyperslab layout styles */
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#define BYROW 1 /* divide into slabs of rows */
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#define BYCOL 2 /* divide into blocks of columns */
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#define ZROW 3 /* same as BYCOL except process 0 gets 0 rows */
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#define ZCOL 4 /* same as BYCOL except process 0 gets 0 columns */
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/* File_Access_type bits */
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#define FACC_DEFAULT 0x0 /* default */
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#define FACC_MPIO 0x1 /* MPIO */
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#define FACC_SPLIT 0x2 /* Split File */
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#define FACC_MULTI 0x4 /* Multi File */
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#define FACC_MPIPOSIX 0x8 /* MPIPOSIX */
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#define DXFER_COLLECTIVE_IO 0x1 /* Collective IO*/
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#define DXFER_INDEPENDENT_IO 0x2 /* Independent IO collectively */
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/*Constants for collective chunk definitions */
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#define SPACE_DIM1 24
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#define SPACE_DIM2 4
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#define BYROW_CONT 1
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#define BYROW_DISCONT 2
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#define BYROW_SELECTNONE 3
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#define BYROW_SELECTUNBALANCE 4
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#define BYROW_SELECTINCHUNK 5
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#define DIMO_NUM_CHUNK 4
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#define DIM1_NUM_CHUNK 2
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#define LINK_TRUE_NUM_CHUNK 2
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#define LINK_FALSE_NUM_CHUNK 6
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#define MULTI_TRUE_PERCENT 50
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#define LINK_TRUE_CHUNK_NAME "h5_link_chunk_true"
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#define LINK_FALSE_CHUNK_NAME "h5_link_chunk_false"
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#define LINK_HARD_CHUNK_NAME "h5_link_chunk_hard"
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#define MULTI_HARD_CHUNK_NAME "h5_multi_chunk_hard"
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#define MULTI_COLL_CHUNK_NAME "h5_multi_chunk_coll"
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#define MULTI_INDP_CHUNK_NAME "h5_multi_chunk_indp"
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#define DSET_COLLECTIVE_CHUNK_NAME "coll_chunk_name"
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/*Constants for MPI derived data type generated from span tree */
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#define MSPACE1_RANK 1 /* Rank of the first dataset in memory */
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#define MSPACE1_DIM 27000 /* Dataset size in memory */
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#define FSPACE_RANK 2 /* Dataset rank as it is stored in the file */
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#define FSPACE_DIM1 9 /* Dimension sizes of the dataset as it is stored in the file */
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#define FSPACE_DIM2 3600 /* We will read dataset back from the file to the dataset in memory with these dataspace parameters. */
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#define MSPACE_RANK 2
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#define MSPACE_DIM1 9
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#define MSPACE_DIM2 3600
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#define FHCOUNT0 1 /* Count of the first dimension of the first hyperslab selection*/
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#define FHCOUNT1 768 /* Count of the second dimension of the first hyperslab selection*/
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#define FHSTRIDE0 4 /* Stride of the first dimension of the first hyperslab selection*/
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#define FHSTRIDE1 3 /* Stride of the second dimension of the first hyperslab selection*/
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#define FHBLOCK0 3 /* Block of the first dimension of the first hyperslab selection*/
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#define FHBLOCK1 2 /* Block of the second dimension of the first hyperslab selection*/
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#define FHSTART0 0 /* start of the first dimension of the first hyperslab selection*/
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#define FHSTART1 1 /* start of the second dimension of the first hyperslab selection*/
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#define SHCOUNT0 1 /* Count of the first dimension of the first hyperslab selection*/
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#define SHCOUNT1 1 /* Count of the second dimension of the first hyperslab selection*/
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#define SHSTRIDE0 1 /* Stride of the first dimension of the first hyperslab selection*/
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#define SHSTRIDE1 1 /* Stride of the second dimension of the first hyperslab selection*/
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#define SHBLOCK0 3 /* Block of the first dimension of the first hyperslab selection*/
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#define SHBLOCK1 768 /* Block of the second dimension of the first hyperslab selection*/
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#define SHSTART0 4 /* start of the first dimension of the first hyperslab selection*/
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#define SHSTART1 0 /* start of the second dimension of the first hyperslab selection*/
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#define MHCOUNT0 6912 /* Count of the first dimension of the first hyperslab selection*/
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#define MHSTRIDE0 1 /* Stride of the first dimension of the first hyperslab selection*/
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#define MHBLOCK0 1 /* Block of the first dimension of the first hyperslab selection*/
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#define MHSTART0 1 /* start of the first dimension of the first hyperslab selection*/
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#define RFFHCOUNT0 3 /* Count of the first dimension of the first hyperslab selection*/
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#define RFFHCOUNT1 768 /* Count of the second dimension of the first hyperslab selection*/
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#define RFFHSTRIDE0 1 /* Stride of the first dimension of the first hyperslab selection*/
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#define RFFHSTRIDE1 1 /* Stride of the second dimension of the first hyperslab selection*/
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#define RFFHBLOCK0 1 /* Block of the first dimension of the first hyperslab selection*/
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#define RFFHBLOCK1 1 /* Block of the second dimension of the first hyperslab selection*/
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#define RFFHSTART0 1 /* start of the first dimension of the first hyperslab selection*/
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#define RFFHSTART1 2 /* start of the second dimension of the first hyperslab selection*/
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#define RFSHCOUNT0 3 /* Count of the first dimension of the first hyperslab selection*/
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#define RFSHCOUNT1 1536 /* Count of the second dimension of the first hyperslab selection*/
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#define RFSHSTRIDE0 1 /* Stride of the first dimension of the first hyperslab selection*/
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#define RFSHSTRIDE1 1 /* Stride of the second dimension of the first hyperslab selection*/
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#define RFSHBLOCK0 1 /* Block of the first dimension of the first hyperslab selection*/
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#define RFSHBLOCK1 1 /* Block of the second dimension of the first hyperslab selection*/
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#define RFSHSTART0 2 /* start of the first dimension of the first hyperslab selection*/
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#define RFSHSTART1 4 /* start of the second dimension of the first hyperslab selection*/
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#define RMFHCOUNT0 3 /* Count of the first dimension of the first hyperslab selection*/
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#define RMFHCOUNT1 768 /* Count of the second dimension of the first hyperslab selection*/
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#define RMFHSTRIDE0 1 /* Stride of the first dimension of the first hyperslab selection*/
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#define RMFHSTRIDE1 1 /* Stride of the second dimension of the first hyperslab selection*/
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#define RMFHBLOCK0 1 /* Block of the first dimension of the first hyperslab selection*/
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#define RMFHBLOCK1 1 /* Block of the second dimension of the first hyperslab selection*/
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#define RMFHSTART0 0 /* start of the first dimension of the first hyperslab selection*/
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#define RMFHSTART1 0 /* start of the second dimension of the first hyperslab selection*/
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#define RMSHCOUNT0 3 /* Count of the first dimension of the first hyperslab selection*/
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#define RMSHCOUNT1 1536 /* Count of the second dimension of the first hyperslab selection*/
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#define RMSHSTRIDE0 1 /* Stride of the first dimension of the first hyperslab selection*/
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#define RMSHSTRIDE1 1 /* Stride of the second dimension of the first hyperslab selection*/
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#define RMSHBLOCK0 1 /* Block of the first dimension of the first hyperslab selection*/
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#define RMSHBLOCK1 1 /* Block of the second dimension of the first hyperslab selection*/
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#define RMSHSTART0 1 /* start of the first dimension of the first hyperslab selection*/
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#define RMSHSTART1 2 /* start of the second dimension of the first hyperslab selection*/
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#define NPOINTS 4 /* Number of points that will be selected
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and overwritten */
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/* Don't erase these lines, they are put here for debugging purposes */
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/*
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#define MSPACE1_RANK 1
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#define MSPACE1_DIM 50
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#define MSPACE2_RANK 1
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#define MSPACE2_DIM 4
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#define FSPACE_RANK 2
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#define FSPACE_DIM1 8
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#define FSPACE_DIM2 12
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#define MSPACE_RANK 2
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#define MSPACE_DIM1 8
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#define MSPACE_DIM2 9
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#define NPOINTS 4
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*/ /* end of debugging macro */
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/* type definitions */
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typedef struct H5Ptest_param_t /* holds extra test parameters */
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{
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char *name;
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int count;
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} H5Ptest_param_t;
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/* Dataset data type. Int's can be easily octo dumped. */
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typedef int DATATYPE;
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/* Shared global variables */
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extern int dim0, dim1; /*Dataset dimensions */
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extern int chunkdim0, chunkdim1; /*Chunk dimensions */
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extern int nerrors; /*errors count */
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extern H5E_auto_t old_func; /* previous error handler */
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extern void *old_client_data; /*previous error handler arg.*/
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extern int facc_type; /*Test file access type */
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extern int dxfer_coll_type;
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/* Test program prototypes */
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void multiple_dset_write(void);
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void multiple_group_write(void);
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void multiple_group_read(void);
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void collective_group_write(void);
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void independent_group_read(void);
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void test_fapl_mpio_dup(void);
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void test_fapl_mpiposix_dup(void);
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void test_split_comm_access(void);
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void dataset_writeInd(void);
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void dataset_writeAll(void);
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void extend_writeInd(void);
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void extend_writeInd2(void);
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void extend_writeAll(void);
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void dataset_readInd(void);
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void dataset_readAll(void);
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void extend_readInd(void);
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void extend_readAll(void);
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void test_chunk_alloc(void);
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void compact_dataset(void);
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void null_dataset(void);
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void big_dataset(void);
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void dataset_fillvalue(void);
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void coll_chunk1(void);
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void coll_chunk2(void);
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void coll_chunk3(void);
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void coll_chunk4(void);
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void coll_chunk5(void);
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void coll_chunk6(void);
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void coll_chunk7(void);
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void coll_chunk8(void);
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void coll_chunk9(void);
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void coll_chunk10(void);
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void coll_irregular_cont_read(void);
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void coll_irregular_cont_write(void);
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void coll_irregular_simple_chunk_read(void);
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void coll_irregular_simple_chunk_write(void);
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void coll_irregular_complex_chunk_read(void);
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void coll_irregular_complex_chunk_write(void);
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void io_mode_confusion(void);
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#ifdef H5_HAVE_FILTER_DEFLATE
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void compress_readAll(void);
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#endif /* H5_HAVE_FILTER_DEFLATE */
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/* commonly used prototypes */
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hid_t create_faccess_plist(MPI_Comm comm, MPI_Info info, int l_facc_type, hbool_t use_gpfs);
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MPI_Offset h5_mpi_get_file_size(const char *filename, MPI_Comm comm, MPI_Info info);
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int dataset_vrfy(hsize_t start[], hsize_t count[], hsize_t stride[],
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hsize_t block[], DATATYPE *dataset, DATATYPE *original);
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#endif /* PHDF5TEST_H */
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