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author | Quincey Koziol <koziol@hdfgroup.org> | 2010-08-24 21:03:32 (GMT) |
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committer | Quincey Koziol <koziol@hdfgroup.org> | 2010-08-24 21:03:32 (GMT) |
commit | 0cd7123fb6ef25fe2be44e53e16b6214c32fb3b9 (patch) | |
tree | 26793fd552f75dd0cc6646b7ed8d366d00376c47 /src | |
parent | 9fbdf8f07aeb41e04108e369196c426b7403881a (diff) | |
download | hdf5-0cd7123fb6ef25fe2be44e53e16b6214c32fb3b9.zip hdf5-0cd7123fb6ef25fe2be44e53e16b6214c32fb3b9.tar.gz hdf5-0cd7123fb6ef25fe2be44e53e16b6214c32fb3b9.tar.bz2 |
[svn-r19292] Description:
Merge r19290 & r19291 from 1.8 branch to trunk:
r19290:
Correct another error in metadata accumulator dirty region calculations
(this time with a corner case when freeing data in the file).
r19291:
Avoid getting object information for soft/external links if we aren't
going to traverse across the link itself.
Tested on:
FreeBSD/32 6.3 (duty) in debug mode
FreeBSD/64 6.3 (liberty) w/C++ & FORTRAN, in debug mode
Linux/32 2.6 (jam) w/PGI compilers, w/default API=1.8.x,
w/C++ & FORTRAN, w/threadsafe, in debug mode
Linux/64-amd64 2.6 (amani) w/Intel compilers, w/default API=1.6.x,
w/C++ & FORTRAN, in production mode
Solaris/32 2.10 (linew) w/deprecated symbols disabled, w/C++ & FORTRAN,
w/szip filter, w/threadsafe, in production mode
Linux/PPC 2.6 (heiwa) w/C++ & FORTRAN, w/threadsafe, in debug mode
Linux/64-ia64 2.6 (cobalt) w/Intel compilers, w/C++ & FORTRAN,
in production mode
Linux/64-amd64 2.6 (abe) w/parallel, w/FORTRAN, in debug mode
Mac OS X/32 10.6.4 (amazon) in debug mode
Mac OS X/32 10.6.4 (amazon) w/C++ & FORTRAN, w/threadsafe,
in production mode
Mac OS X/32 10.6.4 (amazon) w/parallel, in debug mode
Diffstat (limited to 'src')
-rw-r--r-- | src/H5Faccum.c | 70 |
1 files changed, 43 insertions, 27 deletions
diff --git a/src/H5Faccum.c b/src/H5Faccum.c index f74925a..2fc53ea 100644 --- a/src/H5Faccum.c +++ b/src/H5Faccum.c @@ -766,50 +766,66 @@ H5F_accum_free(H5F_t *f, hid_t dxpl_id, H5FD_mem_t UNUSED type, haddr_t addr, /* Calculate the address of the tail to write */ tail_addr = addr + size; - /* Check if there's dirty data after the block to free */ - if(H5F_addr_lt(tail_addr, dirty_end)) { - /* Check if the dirty region falls entirely after block to free */ - if(tail_addr < dirty_start) { - /* Write out the dirty region of the accumulator */ + /* Check if the block to free begins before dirty region */ + if(H5F_addr_lt(addr, dirty_start)) { + /* Check if block to free is entirely before dirty region */ + if(H5F_addr_le(tail_addr, dirty_start)) { + /* Write out the entire dirty region of the accumulator */ if(H5FD_write(f->shared->lf, dxpl_id, H5FD_MEM_DEFAULT, dirty_start, f->shared->accum.dirty_len, f->shared->accum.buf + f->shared->accum.dirty_off) < 0) HGOTO_ERROR(H5E_IO, H5E_WRITEERROR, FAIL, "file write failed") - - /* Reset dirty flag */ - f->shared->accum.dirty = FALSE; } /* end if */ - /* Dirty region overlaps block to free */ + /* Block to free overlaps with some/all of dirty region */ else { - size_t tail_size; size_t write_size; - /* Calculate the size of the tail to write */ - H5_ASSIGN_OVERFLOW(tail_size, dirty_end - tail_addr, haddr_t, size_t); write_size = (size_t)(dirty_end - tail_addr); - /* Write out the dirty part of the accumulator after the block to free */ - if(H5FD_write(f->shared->lf, dxpl_id, H5FD_MEM_DEFAULT, tail_addr, write_size, f->shared->accum.buf + (tail_addr - f->shared->accum.loc)) < 0) - HGOTO_ERROR(H5E_IO, H5E_WRITEERROR, FAIL, "file write failed") + /* Check for unfreed dirty region to write */ + if(write_size > 0) { + size_t dirty_delta; - /* Check if block to free falls within dirty region */ - if(addr == dirty_start) - /* Reset dirty flag */ - f->shared->accum.dirty = FALSE; - else - /* Truncate dirty region */ - f->shared->accum.dirty_len = (size_t)(addr - dirty_start); + dirty_delta = f->shared->accum.dirty_len - write_size; + + /* Write out the unfreed dirty region of the accumulator */ + if(H5FD_write(f->shared->lf, dxpl_id, H5FD_MEM_DEFAULT, dirty_start + dirty_delta, write_size, f->shared->accum.buf + f->shared->accum.dirty_off + dirty_delta) < 0) + HGOTO_ERROR(H5E_IO, H5E_WRITEERROR, FAIL, "file write failed") + } /* end if */ } /* end else */ + + /* Reset dirty flag */ + f->shared->accum.dirty = FALSE; } /* end if */ + /* Block to free begins at beginning of or in middle of dirty region */ else { - /* Check if entire dirty region is in block to free */ - if(addr < dirty_start) + /* Check if block to free ends before end of dirty region */ + if(H5F_addr_lt(tail_addr, dirty_end)) { + size_t write_size; + + write_size = (size_t)(dirty_end - tail_addr); + + /* Check for unfreed dirty region to write */ + if(write_size > 0) { + size_t dirty_delta; + + dirty_delta = f->shared->accum.dirty_len - write_size; + + /* Write out the unfreed end of the dirty region of the accumulator */ + if(H5FD_write(f->shared->lf, dxpl_id, H5FD_MEM_DEFAULT, dirty_start + dirty_delta, write_size, f->shared->accum.buf + f->shared->accum.dirty_off + dirty_delta) < 0) + HGOTO_ERROR(H5E_IO, H5E_WRITEERROR, FAIL, "file write failed") + } /* end if */ + } /* end if */ + + /* Check for block to free beginning at same location as dirty region */ + if(H5F_addr_eq(addr, dirty_start)) { /* Reset dirty flag */ f->shared->accum.dirty = FALSE; - /* Block to free truncates dirty region */ + } /* end if */ + /* Block to free eliminates end of dirty region */ else { - /* Truncate dirty region */ - f->shared->accum.dirty_len = (size_t)(addr - dirty_start); + f->shared->accum.dirty_len = (addr - dirty_start); } /* end else */ } /* end else */ + } /* end if */ /* Adjust the accumulator information */ |