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2024-01-08 19:01:29 +00:00

489 lines
11 KiB
C++

/*
* Copyright (C) 2005-2013 Team XBMC
* http://xbmc.org
*
* 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, 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 XBMC; see the file COPYING. If not, see
* <http://www.gnu.org/licenses/>.
*
*/
#include "utils/log.h"
#include "AutoPtrHandle.h"
#include "FileCache.h"
#include "utils/Thread.h"
#include "File.h"
#include "URL.h"
#include "utils/TimeUtils.h"
#include "settings/Settings.h"
#include "MemBufferCache.h"
#include "CircularCache.h"
#include "utils/SingleLock.h"
using namespace AUTOPTR;
using namespace XFILE;
#define READ_CACHE_CHUNK_SIZE (64*1024)
class CWriteRate
{
public:
CWriteRate()
{
m_stamp = CTimeUtils::GetTimeMS();
m_pos = 0;
m_pause = 0;
}
void Reset(int64_t pos)
{
m_stamp = CTimeUtils::GetTimeMS();
m_pos = pos;
}
unsigned Rate(int64_t pos, unsigned int time_bias = 0)
{
const unsigned ts = CTimeUtils::GetTimeMS() + time_bias;
if (ts == m_stamp)
return 0;
return (unsigned)(1000 * (pos - m_pos) / (ts - m_stamp));
}
void Pause()
{
m_pause = CTimeUtils::GetTimeMS();
}
void Resume()
{
m_stamp += CTimeUtils::GetTimeMS() - m_pause;
m_pause = 0;
}
private:
unsigned m_stamp;
int64_t m_pos;
unsigned m_pause;
};
CFileCache::CFileCache()
{
m_bDeleteCache = true;
m_nSeekResult = 0;
m_seekPos = 0;
m_readPos = 0;
m_writePos = 0;
if (g_advancedSettings.m_cacheMemBufferSize == 0)
m_pCache = new CSimpleFileCache();
else
m_pCache = new CCircularCache(g_advancedSettings.m_cacheMemBufferSize, g_advancedSettings.m_cacheMemBufferSize);
m_seekPossible = 0;
m_cacheFull = false;
}
CFileCache::CFileCache(CCacheStrategy *pCache, bool bDeleteCache)
{
m_pCache = pCache;
m_bDeleteCache = bDeleteCache;
m_seekPos = 0;
m_readPos = 0;
m_writePos = 0;
m_nSeekResult = 0;
m_chunkSize = 0;
}
CFileCache::~CFileCache()
{
Close();
if (m_bDeleteCache && m_pCache)
delete m_pCache;
m_pCache = NULL;
}
void CFileCache::SetCacheStrategy(CCacheStrategy *pCache, bool bDeleteCache)
{
if (m_bDeleteCache && m_pCache)
delete m_pCache;
m_pCache = pCache;
m_bDeleteCache = bDeleteCache;
}
IFile *CFileCache::GetFileImp()
{
return m_source.GetImplemenation();
}
bool CFileCache::Open(const CURL& url)
{
Close();
CSingleLock lock(m_sync);
CLog::Log(LOGDEBUG,"CFileCache::Open - opening <%s> using cache", url.GetFileName().c_str());
if (!m_pCache)
{
CLog::Log(LOGERROR,"CFileCache::Open - no cache strategy defined");
return false;
}
m_sourcePath = url.Get();
// open cache strategy
if (m_pCache->Open() != CACHE_RC_OK)
{
CLog::Log(LOGERROR,"CFileCache::Open - failed to open cache");
Close();
return false;
}
// opening the source file.
if (!m_source.Open(m_sourcePath, READ_NO_CACHE | READ_TRUNCATED | READ_CHUNKED))
{
CLog::Log(LOGERROR,"%s - failed to open source <%s>", __FUNCTION__, m_sourcePath.c_str());
Close();
return false;
}
// check if source can seek
m_seekPossible = m_source.IoControl(IOCTRL_SEEK_POSSIBLE, NULL);
m_chunkSize = CFile::GetChunkSize(m_source.GetChunkSize(), READ_CACHE_CHUNK_SIZE);
m_readPos = 0;
m_writePos = 0;
m_writeRate = 1024 * 1024;
m_writeRateActual = 0;
m_cacheFull = false;
m_seekEvent.Reset();
m_seekEnded.Reset();
CThread::Create(false);
return true;
}
void CFileCache::Process()
{
if (!m_pCache)
{
CLog::Log(LOGERROR,"CFileCache::Process - sanity failed. no cache strategy");
return;
}
// create our read buffer
auto_aptr<char> buffer(new char[m_chunkSize]);
if (buffer.get() == NULL)
{
CLog::Log(LOGERROR, "%s - failed to allocate read buffer", __FUNCTION__);
return;
}
CWriteRate limiter;
CWriteRate average;
while (!m_bStop)
{
// check for seek events
if (m_seekEvent.WaitMSec(0))
{
m_seekEvent.Reset();
CLog::Log(LOGDEBUG,"%s, request seek on source to %"PRId64, __FUNCTION__, m_seekPos);
m_nSeekResult = m_source.Seek(m_seekPos, SEEK_SET);
if (m_nSeekResult != m_seekPos)
{
CLog::Log(LOGERROR,"%s, error %d seeking. seek returned %"PRId64, __FUNCTION__, (int)GetLastError(), m_nSeekResult);
m_seekPossible = m_source.IoControl(IOCTRL_SEEK_POSSIBLE, NULL);
}
else
{
m_pCache->Reset(m_seekPos);
average.Reset(m_seekPos);
limiter.Reset(m_seekPos);
m_writePos = m_seekPos;
m_readPos = m_seekPos;
m_cacheFull = false;
}
m_seekEnded.Set();
}
while (m_writeRate)
{
if (m_writePos - m_readPos < m_writeRate)
{
limiter.Reset(m_writePos);
break;
}
if (limiter.Rate(m_writePos) < m_writeRate)
break;
if (m_seekEvent.WaitMSec(100))
{
m_seekEvent.Set();
break;
}
}
int iRead = m_source.Read(buffer.get(), m_chunkSize);
if (iRead == 0)
{
CLog::Log(LOGINFO, "CFileCache::Process - Hit eof.");
m_pCache->EndOfInput();
// since there is no more to read - wait either for seek or close
// WaitForSingleObject is CThread::WaitForSingleObject that will also listen to the
// end thread event.
int nRet = CThread::WaitForSingleObject(m_seekEvent.GetHandle(), INFINITE);
if (nRet == WAIT_OBJECT_0)
{
m_pCache->ClearEndOfInput();
m_seekEvent.Set(); // hack so that later we realize seek is needed
}
else
break;
}
else if (iRead < 0)
m_bStop = true;
int iTotalWrite=0;
while (!m_bStop && (iTotalWrite < iRead))
{
int iWrite = 0;
iWrite = m_pCache->WriteToCache(buffer.get()+iTotalWrite, iRead - iTotalWrite);
// write should always work. all handling of buffering and errors should be
// done inside the cache strategy. only if unrecoverable error happened, WriteToCache would return error and we break.
if (iWrite < 0)
{
CLog::Log(LOGERROR,"CFileCache::Process - error writing to cache");
m_bStop = true;
break;
}
else if (iWrite == 0)
{
m_cacheFull = true;
average.Pause();
m_pCache->m_space.WaitMSec(5);
average.Resume();
}
else
m_cacheFull = false;
iTotalWrite += iWrite;
// check if seek was asked. otherwise if cache is full we'll freeze.
if (m_seekEvent.WaitMSec(0))
{
m_seekEvent.Set(); // make sure we get the seek event later.
break;
}
}
m_writePos += iTotalWrite;
// under estimate write rate by a second, to
// avoid uncertainty at start of caching
m_writeRateActual = average.Rate(m_writePos, 1000);
}
}
void CFileCache::OnExit()
{
m_bStop = true;
// make sure cache is set to mark end of file (read may be waiting).
if (m_pCache)
m_pCache->EndOfInput();
// just in case someone's waiting...
m_seekEnded.Set();
}
bool CFileCache::Exists(const CURL& url)
{
return CFile::Exists(url.Get());
}
int CFileCache::Stat(const CURL& url, struct __stat64* buffer)
{
return CFile::Stat(url.Get(), buffer);
}
unsigned int CFileCache::Read(void* lpBuf, int64_t uiBufSize)
{
CSingleLock lock(m_sync);
if (!m_pCache)
{
CLog::Log(LOGERROR,"%s - sanity failed. no cache strategy!", __FUNCTION__);
return 0;
}
int64_t iRc;
retry:
// attempt to read
iRc = m_pCache->ReadFromCache((char *)lpBuf, (size_t)uiBufSize);
if (iRc > 0)
{
m_readPos += iRc;
return (int)iRc;
}
if (iRc == CACHE_RC_WOULD_BLOCK)
{
// just wait for some data to show up
iRc = m_pCache->WaitForData(1, 10000);
if (iRc > 0)
goto retry;
}
if (iRc == CACHE_RC_TIMEOUT)
{
CLog::Log(LOGWARNING, "%s - timeout waiting for data", __FUNCTION__);
return 0;
}
if (iRc == 0)
return 0;
// unknown error code
CLog::Log(LOGERROR, "%s - cache strategy returned unknown error code %d", __FUNCTION__, (int)iRc);
return 0;
}
int64_t CFileCache::Seek(int64_t iFilePosition, int iWhence)
{
CSingleLock lock(m_sync);
if (!m_pCache)
{
CLog::Log(LOGERROR,"%s - sanity failed. no cache strategy!", __FUNCTION__);
return -1;
}
int64_t iCurPos = m_readPos;
int64_t iTarget = iFilePosition;
if (iWhence == SEEK_END)
iTarget = GetLength() + iTarget;
else if (iWhence == SEEK_CUR)
iTarget = iCurPos + iTarget;
else if (iWhence != SEEK_SET)
return -1;
if (iTarget == m_readPos)
return m_readPos;
if ((m_nSeekResult = m_pCache->Seek(iTarget)) != iTarget)
{
if (m_seekPossible == 0)
return m_nSeekResult;
/* never request closer to end than 2k, speeds up tag reading */
m_seekPos = std::min(iTarget, std::max((int64_t)0, m_source.GetLength() - m_chunkSize));
m_seekEvent.Set();
if (!m_seekEnded.WaitMSec(INFINITE))
{
CLog::Log(LOGWARNING,"%s - seek to %"PRId64" failed.", __FUNCTION__, m_seekPos);
return -1;
}
/* wait for any remainin data */
if(m_seekPos < iTarget)
{
CLog::Log(LOGDEBUG,"%s - waiting for position %"PRId64".", __FUNCTION__, iTarget);
if(m_pCache->WaitForData((unsigned)(iTarget - m_seekPos), 10000) < iTarget - m_seekPos)
{
CLog::Log(LOGWARNING,"%s - failed to get remaining data", __FUNCTION__);
return -1;
}
m_pCache->Seek(iTarget);
}
m_readPos = iTarget;
m_seekEvent.Reset();
}
else
m_readPos = iTarget;
return m_nSeekResult;
}
void CFileCache::Close()
{
StopThread();
CSingleLock lock(m_sync);
if (m_pCache)
m_pCache->Close();
m_source.Close();
}
int64_t CFileCache::GetPosition()
{
return m_readPos;
}
int64_t CFileCache::GetLength()
{
return m_source.GetLength();
}
void CFileCache::StopThread(bool bWait /*= true*/)
{
m_bStop = true;
//Process could be waiting for seekEvent
m_seekEvent.Set();
CThread::StopThread(bWait);
}
CStdString CFileCache::GetContent()
{
if (!m_source.GetImplemenation())
return IFile::GetContent();
return m_source.GetImplemenation()->GetContent();
}
int CFileCache::IoControl(EIoControl request, void* param)
{
if (request == IOCTRL_CACHE_STATUS)
{
SCacheStatus* status = (SCacheStatus*)param;
status->forward = m_pCache->WaitForData(0, 0);
status->maxrate = m_writeRate;
status->currate = m_writeRateActual;
status->full = m_cacheFull;
return 0;
}
if (request == IOCTRL_CACHE_SETRATE)
{
m_writeRate = *(unsigned*)param;
return 0;
}
if (request == IOCTRL_SEEK_POSSIBLE)
return m_seekPossible;
return -1;
}