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			422 lines
		
	
	
		
			13 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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/*****************************************************************************
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 * $Id: we_getfilesizes.cpp 4450 2013-01-21 14:13:24Z rdempsey $
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 *
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 ****************************************************************************/
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#include "we_getfilesizes.h"
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#include <iostream>
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#include <stdexcept>
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using namespace std;
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#include "calpontsystemcatalog.h"
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using namespace execplan;
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#include "threadpool.h"
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using namespace threadpool;
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#include "bytestream.h"
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using namespace messageqcpp;
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#include "we_fileop.h"
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#include "idbcompress.h"
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using namespace compress;
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#include "IDBFileSystem.h"
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#include "IDBPolicy.h"
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using namespace idbdatafile;
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namespace WriteEngine
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{
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struct FileInfo
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{
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    uint32_t      partition;          /** @brief Partition for a file*/
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    uint16_t      segment;            /** @brief Segment for a file */
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    uint16_t      dbRoot;             /** @brief DbRoot for a file */
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    std::string    segFileName;        /** @brief seg file path */
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    double  	   fileSize;		   /** @brief seg file size in giga bytes */
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    void serialize(messageqcpp::ByteStream& bs)
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    {
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        bs << partition;
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        bs << segment;
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        bs << dbRoot;
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        bs << segFileName;
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        bs << (*(uint64_t*)(&fileSize));
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    }
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};
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typedef std::vector<FileInfo> Files;
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typedef std::map<uint32_t, Files> columnMap;
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typedef std::map<int, columnMap*> allColumnMap;
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allColumnMap wholeMap;
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boost::mutex columnMapLock;
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ActiveThreadCounter* activeThreadCounter;
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size_t readFillBuffer(
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    idbdatafile::IDBDataFile* pFile,
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    char*   buffer,
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    size_t  bytesReq)
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{
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    char*   pBuf = buffer;
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    ssize_t nBytes;
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    size_t  bytesToRead = bytesReq;
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    size_t  totalBytesRead = 0;
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    while (1)
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    {
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        nBytes = pFile->read(pBuf, bytesToRead);
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        if (nBytes > 0)
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            totalBytesRead += nBytes;
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        else
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            break;
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        if ((size_t)nBytes == bytesToRead)
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            break;
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        pBuf        += nBytes;
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        bytesToRead  =  bytesToRead - (size_t)nBytes;
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    }
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    return totalBytesRead;
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}
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off64_t getCompressedDataSize(string& fileName)
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{
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    off64_t dataSize = 0;
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    IDBDataFile* pFile = 0;
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    size_t nBytes;
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    // Some IDBPolicy functions can throw exceptions, caller will catch it
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    IDBPolicy::configIDBPolicy();
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    bool bHdfsFile = IDBPolicy::useHdfs();
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    if (bHdfsFile)
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        pFile = IDBDataFile::open(IDBDataFile::HDFS,
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                                  fileName.c_str(), "r", 0);
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    else
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        pFile = IDBDataFile::open(IDBDataFile::BUFFERED,
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                                  fileName.c_str(), "r", 0);
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    if (!pFile)
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    {
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        std::ostringstream oss;
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        oss << "Cannot open file " << fileName << " for read.";
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        throw std::runtime_error(oss.str());
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    }
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    IDBCompressInterface decompressor;
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    //--------------------------------------------------------------------------
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    // Read headers and extract compression pointers
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    //--------------------------------------------------------------------------
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    char hdr1[IDBCompressInterface::HDR_BUF_LEN];
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    nBytes = readFillBuffer( pFile, hdr1, IDBCompressInterface::HDR_BUF_LEN);
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    if ( nBytes != IDBCompressInterface::HDR_BUF_LEN )
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    {
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        std::ostringstream oss;
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        oss << "Error reading first header from file " << fileName;
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        throw std::runtime_error(oss.str());
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    }
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    int64_t ptrSecSize = decompressor.getHdrSize(hdr1) - IDBCompressInterface::HDR_BUF_LEN;
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    char* hdr2 = new char[ptrSecSize];
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    nBytes = readFillBuffer( pFile, hdr2, ptrSecSize);
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    if ( (int64_t)nBytes != ptrSecSize )
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    {
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        std::ostringstream oss;
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        oss << "Error reading second header from file " << fileName;
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        throw std::runtime_error(oss.str());
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    }
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    CompChunkPtrList chunkPtrs;
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    int rc = decompressor.getPtrList(hdr2, ptrSecSize, chunkPtrs);
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    delete[] hdr2;
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    if (rc != 0)
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    {
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        std::ostringstream oss;
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        oss << "Error decompressing second header from file " << fileName;
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        throw std::runtime_error(oss.str());
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    }
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    unsigned k = chunkPtrs.size();
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    // last header's offset + length will be the data bytes
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    dataSize = chunkPtrs[k - 1].first + chunkPtrs[k - 1].second;
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    delete pFile;
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    return dataSize;
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}
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struct ColumnThread
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{
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    ColumnThread(uint32_t oid, int32_t compressionType, bool reportRealUse, int key)
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        : fOid(oid), fCompressionType(compressionType), fReportRealUse(reportRealUse), fKey(key)
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    {}
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    void operator()()
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    {
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        Config config;
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        config.initConfigCache();
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        std::vector<uint16_t> rootList;
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        config.getRootIdList( rootList );
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        FileOp fileOp;
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        Files aFiles;
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        // This function relies on IDBPolicy being initialized by
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        // IDBPolicy::init().  This is done when WriteEngineServer main() calls
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        // IDBPolicy::configIDBPolicy();
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        IDBDataFile::Types fileType;
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        bool bUsingHdfs = IDBPolicy::useHdfs();
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        if (bUsingHdfs)
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            fileType = IDBDataFile::HDFS;
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        else
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            fileType = IDBDataFile::UNBUFFERED;
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        IDBFileSystem& fs = IDBFileSystem::getFs( fileType );
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        for (uint32_t i = 0; i < rootList.size(); i++)
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        {
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            std::vector<struct BRM::EMEntry> entries;
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            (void)BRMWrapper::getInstance()->getExtents_dbroot(fOid, entries, rootList[i]);
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            std::vector<struct BRM::EMEntry>::const_iterator iter = entries.begin();
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            while ( iter != entries.end() ) //organize extents into files
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            {
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                //Find the size of this file
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                //string fileName;
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                char fileName[200];
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                (void)fileOp.getFileName( fOid, fileName, rootList[i], entries[0].partitionNum, entries[0].segmentNum);
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                string aFile(fileName); //convert between char* and string
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                off64_t fileSize = 0;
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                if (fReportRealUse && (fCompressionType > 0))
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                {
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                    try
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                    {
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                        fileSize = getCompressedDataSize(aFile);
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                    }
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                    catch (std::exception& ex)
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                    {
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                        cerr << ex.what();
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                    }
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                }
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                else
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                    fileSize = fs.size( fileName );
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                if (fileSize > 0) // File exists, add to list
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                {
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                    FileInfo aFileInfo;
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                    aFileInfo.partition = entries[0].partitionNum;
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                    aFileInfo.segment = entries[0].segmentNum;
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                    aFileInfo.dbRoot = rootList[i];
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                    aFileInfo.segFileName = aFile;
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                    aFileInfo.fileSize = (double)fileSize / (1024 * 1024 * 1024);
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                    aFiles.push_back(aFileInfo);
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                    //cout.precision(15);
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                    //cout << "The file " << aFileInfo.segFileName << " has size " << fixed << aFileInfo.fileSize << "GB" << endl;
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                }
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                //erase the entries from this dbroot.
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                std::vector<struct BRM::EMEntry> entriesTrimed;
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                for (uint32_t m = 0; m < entries.size(); m++)
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                {
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                    if ((entries[0].partitionNum != entries[m].partitionNum) || (entries[0].segmentNum != entries[m].segmentNum))
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                        entriesTrimed.push_back(entries[m]);
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                }
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                entriesTrimed.swap(entries);
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                iter = entries.begin();
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            }
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        }
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        boost::mutex::scoped_lock lk(columnMapLock);
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        //cout << "Current size of columnsMap is " << columnsMap.size() << endl;
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        allColumnMap::iterator colMapiter = wholeMap.find(fKey);
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        if (colMapiter != wholeMap.end())
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        {
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            (colMapiter->second)->insert(make_pair(fOid, aFiles));
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            activeThreadCounter->decr();
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            //cout << "Added to columnsMap aFiles with size " << aFiles.size() << " for oid " << fOid << endl;
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        }
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    }
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    uint32_t fOid;
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    int32_t fCompressionType;
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    bool fReportRealUse;
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    int fKey;
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};
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//------------------------------------------------------------------------------
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// Get file size from file name in bytestream object
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//------------------------------------------------------------------------------
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int WE_GetFileSizes::processFileName(
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    messageqcpp::ByteStream& bs,
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    std::string& errMsg, int key)
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{
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    uint8_t rc = 0;
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    off_t fileSize;
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    off_t compressedFileSize;
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    errMsg.clear();
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    try
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    {
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        std::string fileName;
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        bs >> fileName;
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        fileSize = IDBPolicy::size(fileName.c_str());
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        compressedFileSize = IDBPolicy::compressedSize(fileName.c_str());
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    }
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    catch (std::exception& ex)
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    {
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        errMsg = ex.what();
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        rc     = 1;
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    }
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    bs.reset();
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    bs << fileSize;
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    bs << compressedFileSize;
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    return rc;
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}
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//------------------------------------------------------------------------------
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// Process a table size based on input from the
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// bytestream object.
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//------------------------------------------------------------------------------
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int WE_GetFileSizes::processTable(
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    messageqcpp::ByteStream& bs,
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    std::string& errMsg, int key)
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{
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    uint8_t rc = 0;
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    errMsg.clear();
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    try
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    {
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        std::string aTableName;
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        std::string schemaName;
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        bool reportRealUse = false;
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        ByteStream::byte tmp8;
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        bs >> schemaName;
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        //cout << "schema: "<< schemaName << endl;
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        bs >> aTableName;
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        //cout << "tableName: " << aTableName << endl;
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        bs >> tmp8;
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        reportRealUse = (tmp8 != 0);
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        //get column oids
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        boost::shared_ptr<CalpontSystemCatalog> systemCatalogPtr = CalpontSystemCatalog::makeCalpontSystemCatalog(0);
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        CalpontSystemCatalog::TableName tableName;
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        tableName.schema = schemaName;
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        tableName.table = aTableName;
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        CalpontSystemCatalog::RIDList columnList = systemCatalogPtr->columnRIDs(tableName);
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        CalpontSystemCatalog::ColType colType;
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        CalpontSystemCatalog::DictOIDList dictOidList = systemCatalogPtr->dictOIDs(tableName);
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        int serverThreads = 20;
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        int serverQueueSize = serverThreads * 100;
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        threadpool::ThreadPool tp(serverThreads, serverQueueSize);
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        int totalSize = columnList.size() + dictOidList.size();
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        activeThreadCounter = new ActiveThreadCounter(totalSize);
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        columnMap* columnsMap = new columnMap();
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        {
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            boost::mutex::scoped_lock lk(columnMapLock);
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            wholeMap[key] = columnsMap;
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        }
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        for (uint32_t i = 0; i < columnList.size(); i++)
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        {
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            colType = systemCatalogPtr->colType(columnList[i].objnum);
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            tp.invoke(ColumnThread(columnList[i].objnum, colType.compressionType, reportRealUse, key));
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            if (colType.ddn.dictOID > 0)
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                tp.invoke(ColumnThread(colType.ddn.dictOID, colType.compressionType, reportRealUse, key));
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        }
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        /*	for (uint32_t i=0; i < dictOidList.size(); i++)
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        	{
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        		tp.invoke(ColumnThread(dictOidList[i].dictOID));
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        	} */
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        //check whether all threads finish
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        int sleepTime = 100; // sleep 100 milliseconds between checks
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        struct timespec rm_ts;
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        rm_ts.tv_sec = sleepTime / 1000;
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        rm_ts.tv_nsec = sleepTime % 1000 * 1000000;
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        uint32_t currentActiveThreads = 10;
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        while (currentActiveThreads > 0)
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        {
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#ifdef _MSC_VER
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            Sleep(sleepTime);
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#else
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            struct timespec abs_ts;
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            do
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            {
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                abs_ts.tv_sec = rm_ts.tv_sec;
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                abs_ts.tv_nsec = rm_ts.tv_nsec;
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            }
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            while (nanosleep(&abs_ts, &rm_ts) < 0);
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#endif
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            currentActiveThreads = activeThreadCounter->cur();
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        }
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    }
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    catch (std::exception& ex)
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    {
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        //cout << "WE_GetFileSizes got exception-" << ex.what() <<
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        //	std::endl;
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        errMsg = ex.what();
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        rc     = 1;
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    }
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    //Build the message to send to the caller
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    bs.reset();
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    boost::mutex::scoped_lock lk(columnMapLock);
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    allColumnMap::iterator colMapiter = wholeMap.find(key);
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    if (colMapiter != wholeMap.end())
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    {
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        columnMap::iterator iter = colMapiter->second->begin();
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        uint64_t size;
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        Files::iterator it;
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        while ( iter != colMapiter->second->end())
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        {
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            bs << iter->first;
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            //cout << "processTable::coloid = " << iter->first << endl;
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            size = iter->second.size();
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            bs << size;
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            for (it = iter->second.begin(); it != iter->second.end(); it++)
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                it->serialize(bs);
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            //cout << "length now is " << bs.length() << endl;
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            iter++;
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        }
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        wholeMap.erase(colMapiter);
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    }
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    return rc;
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}
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}
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