mirror of
https://github.com/mariadb-corporation/mariadb-columnstore-engine.git
synced 2025-04-18 21:44:02 +03:00
307 lines
9.4 KiB
C++
307 lines
9.4 KiB
C++
/* Copyright (C) 2014 InfiniDB, Inc.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; version 2 of
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the License.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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MA 02110-1301, USA. */
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#include <unistd.h>
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#include <iostream>
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#include <sstream>
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#include <boost/filesystem/path.hpp>
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#include <boost/filesystem/convenience.hpp>
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#include <boost/thread/thread.hpp>
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#include "configcpp.h" // for Config
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#include "oamcache.h"
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#include "liboamcpp.h"
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#include "IDBPolicy.h"
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#include "PosixFileSystem.h"
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//#include "HdfsFileSystem.h"
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//#include "HdfsFsCache.h"
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#include "IDBLogger.h"
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#include "IDBFactory.h"
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#include "installdir.h"
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#include "vlarray.h"
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using namespace std;
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namespace idbdatafile
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{
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bool IDBPolicy::s_usehdfs = false;
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bool IDBPolicy::s_usecloud = false;
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bool IDBPolicy::s_bUseRdwrMemBuffer = false;
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int64_t IDBPolicy::s_hdfsRdwrBufferMaxSize = 0;
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std::string IDBPolicy::s_hdfsRdwrScratch;
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bool IDBPolicy::s_configed = false;
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boost::mutex IDBPolicy::s_mutex;
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std::vector<uint16_t> IDBPolicy::s_PreallocSpace;
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void IDBPolicy::init(bool bEnableLogging, bool bUseRdwrMemBuffer, const string& hdfsRdwrScratch,
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int64_t hdfsRdwrBufferMaxSize)
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{
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IDBFactory::installDefaultPlugins();
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IDBLogger::enable(bEnableLogging);
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s_bUseRdwrMemBuffer = bUseRdwrMemBuffer;
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s_hdfsRdwrBufferMaxSize = hdfsRdwrBufferMaxSize;
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s_hdfsRdwrScratch = hdfsRdwrScratch;
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// Create our scratch directory
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if (hdfsRdwrScratch.length() > 0)
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{
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// TODO-check to make sure this directory has sufficient space, whatever that means.
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boost::filesystem::path tmpfilepath(hdfsRdwrScratch);
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if (boost::filesystem::exists(tmpfilepath))
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{
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if (!boost::filesystem::is_directory(tmpfilepath) && useHdfs())
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{
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// We found a file named what we want our scratch directory to be named.
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// Major issue, since we can't assume anything about where to put our tmp files
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ostringstream oss;
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oss << "IDBPolicy::init: scratch diretory setting " << hdfsRdwrScratch.c_str()
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<< " exists as a file. Can't create hdfs buffer files.";
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throw runtime_error(oss.str());
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}
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}
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else
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{
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cout << tmpfilepath << endl;
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bool itWorked = false;
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try
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{
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itWorked = boost::filesystem::create_directories(tmpfilepath);
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}
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catch (...)
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{
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}
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if (!itWorked)
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{
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// We failed to create the scratch directory
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ostringstream oss;
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oss << "IDBPolicy::init: failed to create hdfs scratch directory " << hdfsRdwrScratch.c_str()
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<< ". Can't create hdfs buffer files.";
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throw runtime_error(oss.str());
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}
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}
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}
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}
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bool IDBPolicy::installPlugin(const std::string& plugin)
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{
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bool ret = IDBFactory::installPlugin(plugin);
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vector<IDBDataFile::Types> plugins = IDBFactory::listPlugins();
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for (uint i = 0; i < plugins.size(); i++)
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if (plugins[i] == IDBDataFile::HDFS)
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s_usehdfs = true;
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else if (plugins[i] == IDBDataFile::CLOUD)
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s_usecloud = true;
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return ret;
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}
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bool IDBPolicy::isLocalFile(const std::string& path)
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{
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boost::filesystem::path filepath(path);
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// string fileExt = filepath.extension().c_str();
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bool isXml = filepath.extension() == ".xml";
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// bool isDbrm = path.find("dbrm") != string::npos; // StorageManager: debatable whether dbrm files should
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// go in the cloud
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bool isVb = filepath.filename() == "versionbuffer.cdf";
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bool isScratch = path.find(s_hdfsRdwrScratch) == 0;
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return isXml || isVb || isScratch;
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// return isXml || isDbrm || isVb || isScratch;
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}
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IDBDataFile::Types IDBPolicy::getType(const std::string& path, Contexts ctxt)
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{
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bool isLocal = isLocalFile(path);
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if (isLocal || (!useHdfs() && !useCloud()))
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if (ctxt == PRIMPROC)
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return IDBDataFile::UNBUFFERED;
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else
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return IDBDataFile::BUFFERED;
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else if (useHdfs())
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return IDBDataFile::HDFS;
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else if (useCloud())
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return IDBDataFile::CLOUD;
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throw runtime_error("IDBPolicy: No appropriate data file type");
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#if 0
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if ( ctxt == PRIMPROC )
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{
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if ( isLocal || !useHdfs() )
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return IDBDataFile::UNBUFFERED;
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else
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return IDBDataFile::HDFS;
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}
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else
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{
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if ( isLocal || !useHdfs() )
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return IDBDataFile::BUFFERED;
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else
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return IDBDataFile::HDFS;
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}
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#endif
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}
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IDBFileSystem& IDBPolicy::getFs(const std::string& path)
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{
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// for now context doesn't actually matter so just pass PRIMPROC
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// later the whole logic around file -> filesystem type mapping
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// needs to be data driven
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return IDBFactory::getFs(getType(path, PRIMPROC));
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}
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// ported from we_config.cpp
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void IDBPolicy::configIDBPolicy()
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{
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// make sure this is done once.
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boost::mutex::scoped_lock lk(s_mutex);
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if (s_configed)
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return;
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config::Config* cf = config::Config::makeConfig();
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//--------------------------------------------------------------------------
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// IDBDataFile logging
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//--------------------------------------------------------------------------
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bool idblog = false;
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string idblogstr = cf->getConfig("SystemConfig", "DataFileLog");
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// Must be faster.
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if (idblogstr.size() == 2 && (idblogstr[0] == 'O' || idblogstr[0] == 'o') &&
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(idblogstr[1] == 'N' || idblogstr[1] == 'n'))
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{
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idblog = true;
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}
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//--------------------------------------------------------------------------
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// Optional File System Plugin - if a HDFS type plugin is loaded
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// then the system will use HDFS for all IDB data files
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//--------------------------------------------------------------------------
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string fsplugin = cf->getConfig("SystemConfig", "DataFilePlugin");
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if (fsplugin.length() != 0)
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{
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IDBPolicy::installPlugin(fsplugin);
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}
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//--------------------------------------------------------------------------
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// HDFS file buffering
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//--------------------------------------------------------------------------
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// Maximum amount of memory to use for hdfs buffering.
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bool bUseRdwrMemBuffer = true; // If true, use in-memory buffering, else use file buffering
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int64_t hdfsRdwrBufferMaxSize = 0;
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string strBufferMaxSize = cf->getConfig("SystemConfig", "hdfsRdwrBufferMaxSize");
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// Default is use membuf with no maximum size unless changed by config file.
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if (strBufferMaxSize.length() > 0)
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{
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hdfsRdwrBufferMaxSize = static_cast<int64_t>(cf->uFromText(strBufferMaxSize));
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if (hdfsRdwrBufferMaxSize == 0)
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{
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// If we're given a size of 0, turn off membuffering.
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bUseRdwrMemBuffer = false;
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}
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}
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// Directory in which to place file buffer temporary files.
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string tmpDir = startup::StartUp::tmpDir();
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string scratch = cf->getConfig("SystemConfig", "hdfsRdwrScratch");
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string hdfsRdwrScratch = tmpDir + scratch;
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// MCOL-498. Use DBRootX.PreallocSpace to disable
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// dbroots file space preallocation.
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// The feature is used in the FileOp code and enabled by default.
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char configSectionPref[] = "DBRoot";
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int confSectionLen = sizeof(configSectionPref) + oam::MAX_MODULE_ID_SIZE;
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utils::VLArray<char, 1024> configSection(confSectionLen);
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IDBPolicy::init(idblog, bUseRdwrMemBuffer, hdfsRdwrScratch, hdfsRdwrBufferMaxSize);
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s_configed = true;
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oam::OamCache* oamcache = oam::OamCache::makeOamCache();
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int PMId = oamcache->getLocalPMId();
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oam::OamCache::PMDbrootsMap_t pmDbrootsMap;
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pmDbrootsMap.reset(new oam::OamCache::PMDbrootsMap_t::element_type());
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oam::systemStorageInfo_t t;
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oam::Oam oamInst;
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t = oamInst.getStorageConfig();
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oam::DeviceDBRootList moduledbrootlist = boost::get<2>(t);
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oam::DeviceDBRootList::iterator pt = moduledbrootlist.begin();
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while (pt != moduledbrootlist.end() && (*pt).DeviceID != PMId)
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{
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pt++;
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continue;
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}
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// CS could return here b/c it initialised this singleton and
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// there is no DBRootX sections in XML.
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if (pt == moduledbrootlist.end())
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{
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return;
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}
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oam::DBRootConfigList& dbRootVec = (*pt).dbrootConfigList;
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s_PreallocSpace.reserve(dbRootVec.size() >> 1);
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{
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int rc;
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oam::DBRootConfigList::iterator dbRootIter = dbRootVec.begin();
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for (; dbRootIter != dbRootVec.end(); dbRootIter++)
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{
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::memset(configSection.data() + sizeof(configSectionPref), 0, oam::MAX_MODULE_ID_SIZE);
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rc = snprintf(configSection.data(), confSectionLen, "%s%d", configSectionPref, *dbRootIter);
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// gcc 8.2 warnings
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if (rc < 0 || rc >= confSectionLen)
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{
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ostringstream oss;
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oss << "IDBPolicy::configIDBPolicy: failed to parse DBRootX section.";
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throw runtime_error(oss.str());
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}
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string setting = cf->getConfig(configSection.data(), "PreallocSpace");
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if (setting.length() != 0)
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{
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if (setting.size() == 2 && (setting[0] == 'O' || setting[0] == 'o') &&
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(setting[1] == 'N' || setting[1] == 'n'))
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{
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// int into uint16_t implicit conversion
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s_PreallocSpace.push_back(*dbRootIter);
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}
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}
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}
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}
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}
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void IDBPolicy::enablePreallocSpace(uint16_t dbRoot)
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{
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s_PreallocSpace.push_back(dbRoot);
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}
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} // namespace idbdatafile
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