aria2/src/AbstractSingleDiskAdaptor.cc

211 lines
6.3 KiB
C++

/* <!-- copyright */
/*
* aria2 - The high speed download utility
*
* Copyright (C) 2006 Tatsuhiro Tsujikawa
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*
* In addition, as a special exception, the copyright holders give
* permission to link the code of portions of this program with the
* OpenSSL library under certain conditions as described in each
* individual source file, and distribute linked combinations
* including the two.
* You must obey the GNU General Public License in all respects
* for all of the code used other than OpenSSL. If you modify
* file(s) with this exception, you may extend this exception to your
* version of the file(s), but you are not obligated to do so. If you
* do not wish to do so, delete this exception statement from your
* version. If you delete this exception statement from all source
* files in the program, then also delete it here.
*/
/* copyright --> */
#include "AbstractSingleDiskAdaptor.h"
#include "File.h"
#include "AdaptiveFileAllocationIterator.h"
#include "DiskWriter.h"
#include "FileEntry.h"
#include "TruncFileAllocationIterator.h"
#include "WrDiskCacheEntry.h"
#include "LogFactory.h"
#ifdef HAVE_SOME_FALLOCATE
# include "FallocFileAllocationIterator.h"
#endif // HAVE_SOME_FALLOCATE
namespace aria2 {
AbstractSingleDiskAdaptor::AbstractSingleDiskAdaptor():
totalLength_(0), readOnly_(false) {}
AbstractSingleDiskAdaptor::~AbstractSingleDiskAdaptor() {}
void AbstractSingleDiskAdaptor::initAndOpenFile()
{
diskWriter_->initAndOpenFile(totalLength_);
}
void AbstractSingleDiskAdaptor::openFile()
{
diskWriter_->openFile(totalLength_);
}
void AbstractSingleDiskAdaptor::closeFile()
{
diskWriter_->closeFile();
}
void AbstractSingleDiskAdaptor::openExistingFile()
{
diskWriter_->openExistingFile(totalLength_);
}
void AbstractSingleDiskAdaptor::writeData
(const unsigned char* data, size_t len, int64_t offset)
{
diskWriter_->writeData(data, len, offset);
}
ssize_t AbstractSingleDiskAdaptor::readData
(unsigned char* data, size_t len, int64_t offset)
{
return diskWriter_->readData(data, len, offset);
}
void AbstractSingleDiskAdaptor::writeCache(const WrDiskCacheEntry* entry)
{
// Write cached data in 4KiB aligned offset. This reduces disk
// activity especially on Windows 7 NTFS. In this code, we assume
// that maximum length of DataCell data is 16KiB to simplify the
// code.
unsigned char buf[16*1024];
int64_t start = 0;
size_t buflen = 0;
size_t buffoffset = 0;
const WrDiskCacheEntry::DataCellSet& dataSet = entry->getDataSet();
for(WrDiskCacheEntry::DataCellSet::const_iterator i = dataSet.begin(),
eoi = dataSet.end(); i != eoi; ++i) {
if(start+static_cast<ssize_t>(buflen) < (*i)->goff) {
A2_LOG_DEBUG(fmt("Cache flush goff=%"PRId64", len=%lu",
start, static_cast<unsigned long>(buflen)));
writeData(buf+buffoffset, buflen-buffoffset, start);
start = (*i)->goff;
buflen = buffoffset = 0;
}
if(buflen == 0 && ((*i)->goff & 0xfff) == 0 && ((*i)->len & 0xfff) == 0) {
// Already aligned. Write it without copy.
A2_LOG_DEBUG(fmt("Cache flush goff=%"PRId64", len=%lu",
start, static_cast<unsigned long>((*i)->len)));
writeData((*i)->data + (*i)->offset, (*i)->len, start);
start += (*i)->len;
} else {
if(buflen == 0) {
buflen = buffoffset = (*i)->goff & 0xfff;
}
size_t wlen = std::min(sizeof(buf) - buflen, (*i)->len);
memcpy(buf+buflen, (*i)->data+(*i)->offset, wlen);
buflen += wlen;
if(buflen == sizeof(buf)) {
A2_LOG_DEBUG(fmt("Cache flush goff=%"PRId64", len=%lu",
start, static_cast<unsigned long>(buflen)));
writeData(buf+buffoffset, buflen-buffoffset, start);
memcpy(buf, (*i)->data + (*i)->offset + wlen, (*i)->len - wlen);
start += sizeof(buf) - buffoffset;
buflen = (*i)->len - wlen;
buffoffset = 0;
}
}
}
writeData(buf+buffoffset, buflen-buffoffset, start);
}
bool AbstractSingleDiskAdaptor::fileExists()
{
return File(getFilePath()).exists();
}
int64_t AbstractSingleDiskAdaptor::size()
{
return File(getFilePath()).size();
}
void AbstractSingleDiskAdaptor::truncate(int64_t length)
{
diskWriter_->truncate(length);
}
SharedHandle<FileAllocationIterator>
AbstractSingleDiskAdaptor::fileAllocationIterator()
{
switch(getFileAllocationMethod()) {
#ifdef HAVE_SOME_FALLOCATE
case(DiskAdaptor::FILE_ALLOC_FALLOC): {
SharedHandle<FallocFileAllocationIterator> h
(new FallocFileAllocationIterator
(diskWriter_.get(), size() ,totalLength_));
return h;
}
#endif // HAVE_SOME_FALLOCATE
case(DiskAdaptor::FILE_ALLOC_TRUNC): {
SharedHandle<TruncFileAllocationIterator> h
(new TruncFileAllocationIterator
(diskWriter_.get(), size(), totalLength_));
return h;
}
default: {
SharedHandle<AdaptiveFileAllocationIterator> h
(new AdaptiveFileAllocationIterator
(diskWriter_.get(), size(), totalLength_));
return h;
}
}
}
void AbstractSingleDiskAdaptor::enableReadOnly()
{
diskWriter_->enableReadOnly();
readOnly_ = true;
}
void AbstractSingleDiskAdaptor::disableReadOnly()
{
diskWriter_->disableReadOnly();
readOnly_ = false;
}
void AbstractSingleDiskAdaptor::enableMmap()
{
diskWriter_->enableMmap();
}
void AbstractSingleDiskAdaptor::cutTrailingGarbage()
{
if(File(getFilePath()).size() > totalLength_) {
diskWriter_->truncate(totalLength_);
}
}
void AbstractSingleDiskAdaptor::setDiskWriter
(const SharedHandle<DiskWriter>& diskWriter)
{
diskWriter_ = diskWriter;
}
void AbstractSingleDiskAdaptor::setTotalLength(int64_t totalLength)
{
totalLength_ = totalLength;
}
} // namespace aria2