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authorQuincey Koziol <koziol@hdfgroup.org>2005-08-13 20:53:35 (GMT)
committerQuincey Koziol <koziol@hdfgroup.org>2005-08-13 20:53:35 (GMT)
commit6b45f5172ccb4311e0be9ae15da3758abb6b0e67 (patch)
tree5a7a112fe7a8a98c6fecb45b513789d15962eb3d /examples/ph5example.c
parent6562465a2c2a58cfbc2f47bf60bb538f7a783933 (diff)
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[svn-r11245] Purpose:
Code cleanup Description: Trim trailing whitespace, which is making 'diff'ing the two branches difficult. Solution: Ran this script in each directory: foreach f (*.[ch] *.cpp) sed 's/[[:blank:]]*$//' $f > sed.out && mv sed.out $f end Platforms tested: FreeBSD 4.11 (sleipnir) Too minor to require h5committest
Diffstat (limited to 'examples/ph5example.c')
-rw-r--r--examples/ph5example.c84
1 files changed, 42 insertions, 42 deletions
diff --git a/examples/ph5example.c b/examples/ph5example.c
index b2929ab..09ad7c2 100644
--- a/examples/ph5example.c
+++ b/examples/ph5example.c
@@ -26,7 +26,7 @@
* each dataset in an independent mode and prints them out.
* All processes collectively close the datasets and the file.
*
- * The need of requirement of parallel file prefix is that in general
+ * The need of requirement of parallel file prefix is that in general
* the current working directory in which compiling is done, is not suitable
* for parallel I/O and there is no standard pathname for parallel file
* systems. In some cases, the parallel file name may even needs some
@@ -250,7 +250,7 @@ phdf5writeInd(char *filename)
hsize_t count[SPACE1_RANK], stride[SPACE1_RANK]; /* for hyperslab setting */
herr_t ret; /* Generic return value */
-
+
MPI_Comm comm = MPI_COMM_WORLD;
MPI_Info info = MPI_INFO_NULL;
@@ -258,14 +258,14 @@ phdf5writeInd(char *filename)
printf("Independent write test on file %s\n", filename);
/* -------------------
- * START AN HDF5 FILE
+ * START AN HDF5 FILE
* -------------------*/
/* setup file access template with parallel IO access. */
acc_tpl1 = H5Pcreate (H5P_FILE_ACCESS);
assert(acc_tpl1 != FAIL);
MESG("H5Pcreate access succeed");
/* set Parallel access with communicator */
- ret = H5Pset_fapl_mpio(acc_tpl1, comm, info);
+ ret = H5Pset_fapl_mpio(acc_tpl1, comm, info);
assert(ret != FAIL);
MESG("H5Pset_fapl_mpio succeed");
@@ -288,7 +288,7 @@ phdf5writeInd(char *filename)
assert (sid1 != FAIL);
MESG("H5Screate_simple succeed");
-
+
/* create a dataset collectively */
dataset1 = H5Dcreate(fid1, DATASETNAME1, H5T_NATIVE_INT, sid1,
H5P_DEFAULT);
@@ -321,8 +321,8 @@ if (verbose)
MESG("data_array initialized");
/* create a file dataspace independently */
- file_dataspace = H5Dget_space (dataset1);
- assert(file_dataspace != FAIL);
+ file_dataspace = H5Dget_space (dataset1);
+ assert(file_dataspace != FAIL);
MESG("H5Dget_space succeed");
ret=H5Sselect_hyperslab(file_dataspace, H5S_SELECT_SET, start, stride,
count, NULL);
@@ -334,21 +334,21 @@ if (verbose)
assert (mem_dataspace != FAIL);
/* write data independently */
- ret = H5Dwrite(dataset1, H5T_NATIVE_INT, mem_dataspace, file_dataspace,
- H5P_DEFAULT, data_array1);
+ ret = H5Dwrite(dataset1, H5T_NATIVE_INT, mem_dataspace, file_dataspace,
+ H5P_DEFAULT, data_array1);
assert(ret != FAIL);
MESG("H5Dwrite succeed");
/* write data independently */
- ret = H5Dwrite(dataset2, H5T_NATIVE_INT, mem_dataspace, file_dataspace,
- H5P_DEFAULT, data_array1);
+ ret = H5Dwrite(dataset2, H5T_NATIVE_INT, mem_dataspace, file_dataspace,
+ H5P_DEFAULT, data_array1);
assert(ret != FAIL);
MESG("H5Dwrite succeed");
/* release dataspace ID */
H5Sclose(file_dataspace);
- /* close dataset collectively */
+ /* close dataset collectively */
ret=H5Dclose(dataset1);
assert(ret != FAIL);
MESG("H5Dclose1 succeed");
@@ -359,8 +359,8 @@ if (verbose)
/* release all IDs created */
H5Sclose(sid1);
- /* close the file collectively */
- H5Fclose(fid1);
+ /* close the file collectively */
+ H5Fclose(fid1);
}
/* Example of using the parallel HDF5 library to read a dataset */
@@ -390,7 +390,7 @@ phdf5readInd(char *filename)
acc_tpl1 = H5Pcreate (H5P_FILE_ACCESS);
assert(acc_tpl1 != FAIL);
/* set Parallel access with communicator */
- ret = H5Pset_fapl_mpio(acc_tpl1, comm, info);
+ ret = H5Pset_fapl_mpio(acc_tpl1, comm, info);
assert(ret != FAIL);
@@ -497,7 +497,7 @@ phdf5writeAll(char *filename)
hsize_t count[SPACE1_RANK], stride[SPACE1_RANK]; /* for hyperslab setting */
herr_t ret; /* Generic return value */
-
+
MPI_Comm comm = MPI_COMM_WORLD;
MPI_Info info = MPI_INFO_NULL;
@@ -505,14 +505,14 @@ phdf5writeAll(char *filename)
printf("Collective write test on file %s\n", filename);
/* -------------------
- * START AN HDF5 FILE
+ * START AN HDF5 FILE
* -------------------*/
/* setup file access template with parallel IO access. */
acc_tpl1 = H5Pcreate (H5P_FILE_ACCESS);
assert(acc_tpl1 != FAIL);
MESG("H5Pcreate access succeed");
/* set Parallel access with communicator */
- ret = H5Pset_fapl_mpio(acc_tpl1, comm, info);
+ ret = H5Pset_fapl_mpio(acc_tpl1, comm, info);
assert(ret != FAIL);
MESG("H5Pset_fapl_mpio succeed");
@@ -535,7 +535,7 @@ phdf5writeAll(char *filename)
assert (sid1 != FAIL);
MESG("H5Screate_simple succeed");
-
+
/* create a dataset collectively */
dataset1 = H5Dcreate(fid1, DATASETNAME1, H5T_NATIVE_INT, sid1, H5P_DEFAULT);
assert(dataset1 != FAIL);
@@ -559,8 +559,8 @@ if (verbose)
(unsigned long)(count[0]*count[1]));
/* create a file dataspace independently */
- file_dataspace = H5Dget_space (dataset1);
- assert(file_dataspace != FAIL);
+ file_dataspace = H5Dget_space (dataset1);
+ assert(file_dataspace != FAIL);
MESG("H5Dget_space succeed");
ret=H5Sselect_hyperslab(file_dataspace, H5S_SELECT_SET, start, stride,
count, NULL);
@@ -588,7 +588,7 @@ if (verbose)
/* write data collectively */
ret = H5Dwrite(dataset1, H5T_NATIVE_INT, mem_dataspace, file_dataspace,
- xfer_plist, data_array1);
+ xfer_plist, data_array1);
assert(ret != FAIL);
MESG("H5Dwrite succeed");
@@ -616,8 +616,8 @@ if (verbose)
}
/* create a file dataspace independently */
- file_dataspace = H5Dget_space (dataset1);
- assert(file_dataspace != FAIL);
+ file_dataspace = H5Dget_space (dataset1);
+ assert(file_dataspace != FAIL);
MESG("H5Dget_space succeed");
ret=H5Sselect_hyperslab(file_dataspace, H5S_SELECT_SET, start, stride,
count, NULL);
@@ -645,7 +645,7 @@ if (verbose)
/* write data independently */
ret = H5Dwrite(dataset2, H5T_NATIVE_INT, mem_dataspace, file_dataspace,
- xfer_plist, data_array1);
+ xfer_plist, data_array1);
assert(ret != FAIL);
MESG("H5Dwrite succeed");
@@ -657,7 +657,7 @@ if (verbose)
/*
* All writes completed. Close datasets collectively
- */
+ */
ret=H5Dclose(dataset1);
assert(ret != FAIL);
MESG("H5Dclose1 succeed");
@@ -668,8 +668,8 @@ if (verbose)
/* release all IDs created */
H5Sclose(sid1);
- /* close the file collectively */
- H5Fclose(fid1);
+ /* close the file collectively */
+ H5Fclose(fid1);
}
/*
@@ -705,14 +705,14 @@ phdf5readAll(char *filename)
printf("Collective read test on file %s\n", filename);
/* -------------------
- * OPEN AN HDF5 FILE
+ * OPEN AN HDF5 FILE
* -------------------*/
/* setup file access template with parallel IO access. */
acc_tpl1 = H5Pcreate (H5P_FILE_ACCESS);
assert(acc_tpl1 != FAIL);
MESG("H5Pcreate access succeed");
/* set Parallel access with communicator */
- ret = H5Pset_fapl_mpio(acc_tpl1, comm, info);
+ ret = H5Pset_fapl_mpio(acc_tpl1, comm, info);
assert(ret != FAIL);
MESG("H5Pset_fapl_mpio succeed");
@@ -752,8 +752,8 @@ if (verbose)
(unsigned long)(count[0]*count[1]));
/* create a file dataspace independently */
- file_dataspace = H5Dget_space (dataset1);
- assert(file_dataspace != FAIL);
+ file_dataspace = H5Dget_space (dataset1);
+ assert(file_dataspace != FAIL);
MESG("H5Dget_space succeed");
ret=H5Sselect_hyperslab(file_dataspace, H5S_SELECT_SET, start, stride,
count, NULL);
@@ -781,7 +781,7 @@ if (verbose)
/* read data collectively */
ret = H5Dread(dataset1, H5T_NATIVE_INT, mem_dataspace, file_dataspace,
- xfer_plist, data_array1);
+ xfer_plist, data_array1);
assert(ret != FAIL);
MESG("H5Dread succeed");
@@ -805,8 +805,8 @@ if (verbose)
(unsigned long)(count[0]*count[1]));
/* create a file dataspace independently */
- file_dataspace = H5Dget_space (dataset1);
- assert(file_dataspace != FAIL);
+ file_dataspace = H5Dget_space (dataset1);
+ assert(file_dataspace != FAIL);
MESG("H5Dget_space succeed");
ret=H5Sselect_hyperslab(file_dataspace, H5S_SELECT_SET, start, stride,
count, NULL);
@@ -834,7 +834,7 @@ if (verbose)
/* read data independently */
ret = H5Dread(dataset2, H5T_NATIVE_INT, mem_dataspace, file_dataspace,
- xfer_plist, data_array1);
+ xfer_plist, data_array1);
assert(ret != FAIL);
MESG("H5Dread succeed");
@@ -850,7 +850,7 @@ if (verbose)
/*
* All reads completed. Close datasets collectively
- */
+ */
ret=H5Dclose(dataset1);
assert(ret != FAIL);
MESG("H5Dclose1 succeed");
@@ -858,8 +858,8 @@ if (verbose)
assert(ret != FAIL);
MESG("H5Dclose2 succeed");
- /* close the file collectively */
- H5Fclose(fid1);
+ /* close the file collectively */
+ H5Fclose(fid1);
}
/*
@@ -903,9 +903,9 @@ test_split_comm_access(char filenames[][PATH_MAX])
/* setup file access template */
acc_tpl = H5Pcreate (H5P_FILE_ACCESS);
assert(acc_tpl != FAIL);
-
+
/* set Parallel access with communicator */
- ret = H5Pset_fapl_mpio(acc_tpl, comm, info);
+ ret = H5Pset_fapl_mpio(acc_tpl, comm, info);
assert(ret != FAIL);
/* create the file collectively */
@@ -1055,7 +1055,7 @@ cleanup(void)
int
main(int argc, char **argv)
{
- int mpi_namelen;
+ int mpi_namelen;
char mpi_name[MPI_MAX_PROCESSOR_NAME];
int i, n;