477 lines
14 KiB
C++
477 lines
14 KiB
C++
/*! \file pibinarylog.h
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* \ingroup IO
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* \~\brief
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* \~english Binary log
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* \~russian Бинарный лог
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*/
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/*
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PIP - Platform Independent Primitives
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Class for write binary data to logfile, and read or playback this data
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Andrey Bychkov work.a.b@yandex.ru
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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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 Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef PIBINARYLOG_H
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#define PIBINARYLOG_H
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#include "pichunkstream.h"
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#include "pifile.h"
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//! \ingroup IO
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//! \~\brief
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//! \~english Binary log
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//! \~russian Бинарный лог
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class PIP_EXPORT PIBinaryLog: public PIIODevice {
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PIIODEVICE(PIBinaryLog, "binlog");
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public:
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explicit PIBinaryLog();
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virtual ~PIBinaryLog();
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//! \brief Play modes for \a PIBinaryLog
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enum PlayMode {
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PlayRealTime /*! Play in system realtime, default mode */,
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PlayVariableSpeed /*! Play in software realtime with speed, set by \a setSpeed */,
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PlayStaticDelay /*! Play with custom static delay, ignoring timestamp */
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};
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//! \brief Different split modes for writing \a PIBinaryLog, which can separate files by size, by time or by records count
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enum SplitMode {
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SplitNone /*! Without separate, default mode */,
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SplitTime /*! Separate files by record time */,
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SplitSize /*! Separate files by size */,
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SplitCount /*! Separate files by records count */
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};
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#pragma pack(push, 8)
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//! \brief Struct contains information about all records with same ID
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struct PIP_EXPORT BinLogRecordInfo {
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BinLogRecordInfo() {
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id = count = 0;
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minimum_size = maximum_size = 0;
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}
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int id;
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int count;
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int minimum_size;
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int maximum_size;
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PISystemTime start_time;
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PISystemTime end_time;
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};
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//! \brief Struct contains position, ID and timestamp of record in file
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struct PIP_EXPORT BinLogIndex {
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int id;
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int data_size;
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llong pos;
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PISystemTime timestamp;
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};
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#pragma pack(pop)
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//! \brief Struct contains full information about Binary Log file and about all Records using map of \a BinLogRecordInfo
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struct PIP_EXPORT BinLogInfo {
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PIString path;
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int records_count = 0;
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llong log_size = 0L;
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PISystemTime start_time;
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PISystemTime end_time;
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PIMap<int, BinLogRecordInfo> records;
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PIByteArray user_header;
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};
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//! Current \a PlayMode
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PlayMode playMode() const { return play_mode; }
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//! Current \a SplitMode
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SplitMode splitMode() const { return split_mode; }
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//! Current directory where billogs wiil be saved
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PIString logDir() const { return property("logDir").toString(); }
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//! Returns current file prefix
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PIString filePrefix() const { return property("filePrefix").toString(); }
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//! Default ID, used in \a write function
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int defaultID() const { return default_id; }
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//! Returns current play speed
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double playSpeed() const { return play_speed > 0 ? 1. / play_speed : 0.; }
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//! Returns current play delay
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PISystemTime playDelay() const { return play_delay; }
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//! Returns current binlog file split time
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PISystemTime splitTime() const { return split_time; }
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//! Returns current binlog file split size
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llong splitFileSize() const { return split_size; }
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//! Returns current binlog file split records count
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int splitRecordCount() const { return split_count; }
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//! Returns if rapid start enabled
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bool rapidStart() const { return rapid_start; }
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//! Returns if index creates while writing
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bool createIndexOnFly() const { return create_index_on_fly; }
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//! Create binlog file with Filename = path
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void createNewFile(const PIString & path);
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//! Set \a PlayMode
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void setPlayMode(PlayMode mode) { setProperty("playMode", (int)mode); }
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//! Set \a SplitMode
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void setSplitMode(SplitMode mode) { setProperty("splitMode", (int)mode); }
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//! Set path to directory where binlogs will be saved
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void setLogDir(const PIString & path) { setProperty("logDir", path); }
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//! Set file prefix, used to
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void setFilePrefix(const PIString & prefix) { setProperty("filePrefix", prefix); }
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//! Set defaultID, used in \a write function
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void setDefaultID(int id) { setProperty("defaultID", id); }
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//! If enabled BinLog \a ThreadedRead starts without delay for first record, i.e. first record will be readed immediately
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void setRapidStart(bool enabled) { setProperty("rapidStart", enabled); }
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//! Set index creation while writing
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void setCreateIndexOnFly(bool yes);
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//! Set play speed to "speed", default value is 1.0x
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//! Also this function set \a playMode to \a PlayVariableSpeed
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void setPlaySpeed(double speed) {
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setPlayMode(PlayVariableSpeed);
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setProperty("playSpeed", speed);
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}
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//! Setting static delay between records, default value is 1 sec
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//! Also this function set \a playMode to \a PlayStaticDelay
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void setPlayDelay(const PISystemTime & delay) {
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setPlayMode(PlayStaticDelay);
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setProperty("playDelay", delay);
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}
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//! Set \a playMode to \a PlayRealTime
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void setPlayRealTime() { setPlayMode(PlayRealTime); }
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//! Set binlog file split time
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//! Also this function set \a splitMode to \a SplitTime
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void setSplitTime(const PISystemTime & time) {
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setSplitMode(SplitTime);
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setProperty("splitTime", time);
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}
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//! Set binlog file split size
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//! Also this function set \a splitMode to \a SplitSize
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void setSplitFileSize(llong size) {
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setSplitMode(SplitSize);
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setProperty("splitFileSize", size);
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}
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//! Set binlog file split records count
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//! Also this function set \a splitMode to \a SplitCount
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void setSplitRecordCount(int count) {
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setSplitMode(SplitCount);
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setProperty("splitRecordCount", count);
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}
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//! Set pause while playing via \a threadedRead or writing via write
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void setPause(bool pause);
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//! Set function wich returns new binlog file path when using split mode.
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//! Overrides internal file path generator (logdir() + prefix() + current_time()).
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//! To restore internal file path generator set this function to "nullptr".
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void setFuncGetNewFilePath(std::function<PIString()> f) { f_new_path = f; }
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//! Write one record to BinLog file, with ID = id, id must be greather than 0
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int writeBinLog(int id, PIByteArray data) { return writeBinLog(id, data.data(), data.size_s()); }
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//! Write one record to BinLog file, with ID = id, id must be greather than 0
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int writeBinLog(int id, const void * data, int size);
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//! Write one RAW record to BinLog file, with ID = id, Timestamp = time
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int writeBinLog_raw(int id, const PISystemTime & time, const PIByteArray & data) {
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return writeBinLog_raw(id, time, data.data(), data.size_s());
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}
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int writeBinLog_raw(int id, const PISystemTime & time, const void * data, int size);
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//! Returns count of writed records
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int writeCount() const { return write_count; }
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//! Read one record from BinLog file, with ID = id, if id = 0 than any id will be readed
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PIByteArray readBinLog(int id = 0, PISystemTime * time = 0, int * readed_id = 0);
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//! Read one record from BinLog file, with ID = id, if id = 0 than any id will be readed
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int readBinLog(int id, void * read_to, int max_size, PISystemTime * time = 0, int * readed_id = 0);
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//! Returns binary log file size
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llong logSize() const { return log_size; }
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//! Return position in current binlog file
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llong logPos() const { return file.pos(); }
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//! Return true, if position at the end of BinLog file
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bool isEnd() const {
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if (isClosed()) return true;
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return file.isEnd();
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}
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//! Returns if BinLog file is empty
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bool isEmpty() const;
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//! Returns BinLog pause status
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bool isPause() const { return is_pause; }
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//! Returns id of last readed record
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int lastReadedID() const { return lastrecord.id; }
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//! Returns timestamp of last readed record
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PISystemTime lastReadedTimestamp() const { return lastrecord.timestamp; }
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//! Returns timestamp of log start
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PISystemTime logStartTimestamp() const { return startlogtime; }
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//! Set custom file header, you can get it back when read this binlog
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void setHeader(const PIByteArray & header);
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//! Get custom file header
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PIByteArray getHeader();
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#ifdef DOXYGEN
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//! Read one message from binlog file, with ID contains in "filterID" or any ID, if "filterID" is empty
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int read(void * read_to, int max_size);
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//! Write one record to BinLog file, with ID = "defaultID"
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int write(const void * data, int size);
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#endif
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//! Array of ID, that BinLog can read from binlog file, when use \a read function, or in \a ThreadedRead
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PIVector<int> filterID;
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//! Go to begin of BinLog file
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void restart();
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//! Get binlog info \a BinLogInfo
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BinLogInfo logInfo() const {
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if (is_indexed) return index.info;
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return getLogInfo(path());
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}
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//! Get binlog index \a BinLogIndex, need \a createIndex before getting index
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const PIVector<BinLogIndex> & logIndex() const { return index.index; }
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//! Create index of current binlog file
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bool createIndex();
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//! Return if current binlog file is indexed
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bool isIndexed() { return is_indexed; }
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//! Find nearest record of time \"time\". Returns -1 if not indexed or time less than first record
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int posForTime(const PISystemTime & time);
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//! Go to record #index
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void seekTo(int rindex);
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//! Go to nearest record
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bool seek(const PISystemTime & time);
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//! Set position in file to reading/playing
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bool seek(llong filepos);
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//! Get current record index (position record in file)
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int pos() const;
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PIByteArray saveIndex() const;
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bool loadIndex(PIByteArray saved);
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//! \handlers
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//! \{
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//! \fn PIString createNewFile()
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//! \brief Create new binlog file in \a logDir, if successful returns filename, else returns empty string.
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//! Filename is like \a filePrefix + "yyyy_MM_dd__hh_mm_ss.binlog"
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//! \}
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//! \events
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//! \{
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//! \fn void fileEnd()
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//! \brief Raise on file end while reading
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//! \fn void fileError()
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//! \brief Raise on file creation error
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//! \fn void newFile(const PIString & filename)
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//! \brief Raise on new file created
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//! \}
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EVENT_HANDLER(PIString, createNewFile);
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EVENT(fileEnd);
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EVENT(fileError);
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EVENT1(newFile, const PIString &, filename);
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EVENT1(posChanged, int, pos);
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//! Get binlog info and statistic
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static BinLogInfo getLogInfo(const PIString & path);
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//! Create new binlog from part of "src" with allowed IDs and "from" to "to" file position
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static bool cutBinLog(const BinLogInfo & src, const PIString & dst, int from, int to);
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//! Create new binlog from serial splitted binlogs "src"
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static bool joinBinLogsSerial(const PIStringList & src,
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const PIString & dst,
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std::function<bool(const PIString &, PISystemTime)> progress = nullptr);
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protected:
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PIString constructFullPathDevice() const override;
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void configureFromFullPathDevice(const PIString & full_path) override;
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PIPropertyStorage constructVariantDevice() const override;
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void configureFromVariantDevice(const PIPropertyStorage & d) override;
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ssize_t readDevice(void * read_to, ssize_t max_size) override;
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ssize_t writeDevice(const void * data, ssize_t size) override;
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bool openDevice() override;
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bool closeDevice() override;
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void propertyChanged(const char * s) override;
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bool threadedRead(const uchar * readed, ssize_t size) override;
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DeviceInfoFlags deviceInfoFlags() const override { return PIIODevice::Reliable; }
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private:
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struct Record {
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int id;
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int size;
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PISystemTime timestamp;
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PIByteArray data;
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};
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struct CompleteIndex {
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void clear();
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void makeIndexPos();
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BinLogInfo info;
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PIVector<BinLogIndex> index;
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PIMap<llong, int> index_pos;
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};
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BINARY_STREAM_FRIEND(CompleteIndex)
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bool writeFileHeader();
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bool checkFileHeader();
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Record readRecord();
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int writeRecord(int id, PISystemTime time, const void * data, int size);
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static void parseLog(PIFile * f, BinLogInfo * info, PIVector<BinLogIndex> * index);
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void moveIndex(int i);
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static PIString getLogfilePath(const PIString & log_dir, const PIString & prefix);
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CompleteIndex index;
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PlayMode play_mode;
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SplitMode split_mode;
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PIFile file;
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Record lastrecord;
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PISystemTime startlogtime, play_delay, split_time, pause_time;
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mutable PIMutex logmutex, pausemutex;
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double play_time, play_speed;
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llong split_size, log_size;
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int write_count, split_count, default_id, current_index;
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bool is_started, is_thread_ok, is_indexed, rapid_start, is_pause, create_index_on_fly;
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PIByteArray user_header;
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std::function<PIString()> f_new_path;
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};
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BINARY_STREAM_WRITE(PIBinaryLog::BinLogInfo) {
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PIChunkStream cs;
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cs.add(1, v.path)
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.add(2, v.records_count)
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.add(3, v.log_size)
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.add(4, v.start_time)
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.add(5, v.end_time)
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.add(6, v.records)
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.add(7, v.user_header);
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s << cs.data();
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return s;
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}
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BINARY_STREAM_READ(PIBinaryLog::BinLogInfo) {
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PIByteArray csba;
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s >> csba;
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PIChunkStream cs(csba);
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while (!cs.atEnd()) {
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switch (cs.read()) {
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case 1: cs.get(v.path); break;
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case 2: cs.get(v.records_count); break;
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case 3: cs.get(v.log_size); break;
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case 4: cs.get(v.start_time); break;
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case 5: cs.get(v.end_time); break;
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case 6: cs.get(v.records); break;
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case 7: cs.get(v.user_header); break;
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}
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}
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return s;
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}
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BINARY_STREAM_WRITE(PIBinaryLog::CompleteIndex) {
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s << v.info << v.index;
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return s;
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}
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BINARY_STREAM_READ(PIBinaryLog::CompleteIndex) {
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s >> v.info >> v.index;
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return s;
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}
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//! \relatesalso PICout \brief Output operator PIBinaryLog::BinLogInfo to PICout
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inline PICout operator<<(PICout s, const PIBinaryLog::BinLogInfo & bi) {
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s.space();
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s.saveAndSetControls(0);
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s << "[PIBinaryLog] " << bi.path << "\n";
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if (bi.log_size < 0) {
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s << "invalid file path";
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s.restoreControls();
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return s;
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}
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if (bi.log_size == 0) {
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s << "Invalid empty file";
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s.restoreControls();
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return s;
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}
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if (bi.records_count < 0 && bi.records_count > -4) {
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s << "Invalid file or corrupted signature";
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s.restoreControls();
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return s;
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}
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if (bi.records_count < -3) {
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s << "Invalid binlog version";
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s.restoreControls();
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return s;
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}
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s << "read records " << bi.records_count << " in " << bi.records.size() << " types, log size " << bi.log_size;
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s << "\nlog start " << bi.start_time << " , log end " << bi.end_time;
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PIVector<int> keys = bi.records.keys();
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for (int i: keys) {
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PIBinaryLog::BinLogRecordInfo bri = bi.records.at(i);
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s << "\n record id " << bri.id << " , count " << bri.count;
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s << "\n record start " << bri.start_time << " , end " << bri.end_time;
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s << "\n record size " << bri.minimum_size << " - " << bri.maximum_size;
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}
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s.restoreControls();
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return s;
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}
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#endif // PIBINARYLOG_H
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