PIBinaryLog createIndexOnFly, loadIndex, saveIndex features

PIFile readAll and writeAll static methods
This commit is contained in:
2023-05-11 21:44:31 +03:00
parent 96e8ef2b23
commit 1de4304e30
5 changed files with 228 additions and 69 deletions

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@@ -2,8 +2,8 @@ cmake_minimum_required(VERSION 3.0)
cmake_policy(SET CMP0017 NEW) # need include() with .cmake cmake_policy(SET CMP0017 NEW) # need include() with .cmake
project(PIP) project(PIP)
set(PIP_MAJOR 3) set(PIP_MAJOR 3)
set(PIP_MINOR 10) set(PIP_MINOR 11)
set(PIP_REVISION 3) set(PIP_REVISION 0)
set(PIP_SUFFIX ) set(PIP_SUFFIX )
set(PIP_COMPANY SHS) set(PIP_COMPANY SHS)
set(PIP_DOMAIN org.SHS) set(PIP_DOMAIN org.SHS)

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@@ -60,6 +60,7 @@ PIBinaryLog::PIBinaryLog() {
setThreadedReadBufferSize(65536); setThreadedReadBufferSize(65536);
#endif #endif
is_started = is_indexed = is_pause = false; is_started = is_indexed = is_pause = false;
create_index_on_fly = false;
current_index = -1; current_index = -1;
log_size = 0; log_size = 0;
f_new_path = nullptr; f_new_path = nullptr;
@@ -95,7 +96,6 @@ bool PIBinaryLog::openDevice() {
is_indexed = false; is_indexed = false;
is_pause = false; is_pause = false;
index.clear(); index.clear();
index_pos.clear();
log_size = 0; log_size = 0;
if (mode_ == ReadWrite) { if (mode_ == ReadWrite) {
piCoutObj << "Error: ReadWrite mode not supported, use WriteOnly or ReadOnly"; piCoutObj << "Error: ReadWrite mode not supported, use WriteOnly or ReadOnly";
@@ -162,7 +162,6 @@ bool PIBinaryLog::closeDevice() {
moveIndex(-1); moveIndex(-1);
is_indexed = false; is_indexed = false;
index.clear(); index.clear();
index_pos.clear();
bool e = isEmpty(); bool e = isEmpty();
log_size = 0; log_size = 0;
if (canWrite() && e) { if (canWrite() && e) {
@@ -293,6 +292,11 @@ void PIBinaryLog::createNewFile(const PIString & path) {
} }
void PIBinaryLog::setCreateIndexOnFly(bool yes) {
create_index_on_fly = yes;
}
void PIBinaryLog::setPause(bool pause) { void PIBinaryLog::setPause(bool pause) {
pausemutex.lock(); pausemutex.lock();
is_pause = pause; is_pause = pause;
@@ -313,12 +317,7 @@ int PIBinaryLog::writeBinLog(int id, const void * data, int size) {
} }
if (is_pause) return 0; if (is_pause) return 0;
logmutex.lock(); logmutex.lock();
PIByteArray logdata; int res = writeRecord(id, PISystemTime::current() - startlogtime, data, size);
logdata << id << size << (PISystemTime::current() - startlogtime) << PIMemoryBlock(data, size);
int res = file.write(logdata.data(), logdata.size());
file.flush();
write_count++;
log_size = file.size();
switch (split_mode) { switch (split_mode) {
case SplitSize: case SplitSize:
if (log_size > split_size) createNewFile(); if (log_size > split_size) createNewFile();
@@ -341,13 +340,8 @@ int PIBinaryLog::writeBinLog(int id, const void * data, int size) {
int PIBinaryLog::writeBinLog_raw(int id, const PISystemTime & time, const void * data, int size) { int PIBinaryLog::writeBinLog_raw(int id, const PISystemTime & time, const void * data, int size) {
if (size <= 0 || !canWrite()) return -1; if (size <= 0 || !canWrite()) return -1;
PIByteArray logdata;
logdata << id << size << time << PIMemoryBlock(data, size);
logmutex.lock(); logmutex.lock();
int res = file.write(logdata.data(), logdata.size()); int res = writeRecord(id, time, data, size);
file.flush();
write_count++;
log_size = file.size();
logmutex.unlock(); logmutex.unlock();
if (res > 0) if (res > 0)
return size; return size;
@@ -359,7 +353,7 @@ int PIBinaryLog::writeBinLog_raw(int id, const PISystemTime & time, const void *
PIByteArray PIBinaryLog::readBinLog(int id, PISystemTime * time, int * readed_id) { PIByteArray PIBinaryLog::readBinLog(int id, PISystemTime * time, int * readed_id) {
if (!canRead()) return PIByteArray(); if (!canRead()) return PIByteArray();
logmutex.lock(); logmutex.lock();
BinLogRecord br = readRecord(); Record br = readRecord();
logmutex.unlock(); logmutex.unlock();
if (br.id == -1) { if (br.id == -1) {
piCoutObj << "End of BinLog file"; piCoutObj << "End of BinLog file";
@@ -411,7 +405,7 @@ void PIBinaryLog::setHeader(const PIByteArray & header) {
PIByteArray PIBinaryLog::getHeader() { PIByteArray PIBinaryLog::getHeader() {
return binfo.user_header; return index.info.user_header;
} }
@@ -421,7 +415,7 @@ ssize_t PIBinaryLog::readDevice(void * read_to, ssize_t max_size) {
if (!is_thread_ok && lastrecord.id > 0) return lastrecord.data.size(); if (!is_thread_ok && lastrecord.id > 0) return lastrecord.data.size();
if (!canRead()) return -1; if (!canRead()) return -1;
if (max_size <= 0 || read_to == 0) return -1; if (max_size <= 0 || read_to == 0) return -1;
BinLogRecord br; Record br;
br.id = 0; br.id = 0;
if (filterID.isEmpty()) { if (filterID.isEmpty()) {
br = readRecord(); br = readRecord();
@@ -476,12 +470,16 @@ bool PIBinaryLog::writeFileHeader() {
file.write(&sz, 4); file.write(&sz, 4);
file.write(user_header); file.write(user_header);
file.flush(); file.flush();
if (create_index_on_fly) {
index.info.user_header = user_header;
index.info.path = file.path();
}
return true; return true;
} }
bool PIBinaryLog::checkFileHeader() { bool PIBinaryLog::checkFileHeader() {
binfo.user_header.clear(); index.info.user_header.clear();
uchar read_sig[PIBINARYLOG_SIGNATURE_SIZE]; uchar read_sig[PIBINARYLOG_SIGNATURE_SIZE];
for (uint i = 0; i < PIBINARYLOG_SIGNATURE_SIZE; i++) for (uint i = 0; i < PIBINARYLOG_SIGNATURE_SIZE; i++)
read_sig[i] = 0; read_sig[i] = 0;
@@ -504,7 +502,7 @@ bool PIBinaryLog::checkFileHeader() {
uint32_t sz = 0; uint32_t sz = 0;
file.read(&sz, 4); file.read(&sz, 4);
if (sz > 0) { if (sz > 0) {
binfo.user_header = file.read(sz); index.info.user_header = file.read(sz);
} }
return true; return true;
} }
@@ -515,15 +513,15 @@ bool PIBinaryLog::checkFileHeader() {
} }
PIBinaryLog::BinLogRecord PIBinaryLog::readRecord() { PIBinaryLog::Record PIBinaryLog::readRecord() {
// piCoutObj << "readRecord pos =" << file.pos(); // piCoutObj << "readRecord pos =" << file.pos();
logmutex.lock(); logmutex.lock();
PIByteArray ba; PIByteArray ba;
BinLogRecord br; Record br;
lastrecord.id = 0; lastrecord.id = 0;
lastrecord.data.clear(); lastrecord.data.clear();
lastrecord.timestamp = PISystemTime(); lastrecord.timestamp = PISystemTime();
ba.resize(sizeof(BinLogRecord) - sizeof(PIByteArray)); ba.resize(sizeof(Record) - sizeof(PIByteArray));
if (file.read(ba.data(), ba.size_s()) > 0) { if (file.read(ba.data(), ba.size_s()) > 0) {
ba >> br.id >> br.size >> br.timestamp; ba >> br.id >> br.size >> br.timestamp;
} else { } else {
@@ -542,13 +540,55 @@ PIBinaryLog::BinLogRecord PIBinaryLog::readRecord() {
br.id = 0; br.id = 0;
lastrecord = br; lastrecord = br;
if (br.id == 0) fileError(); if (br.id == 0) fileError();
moveIndex(index_pos.value(file.pos(), -1)); moveIndex(index.index_pos.value(file.pos(), -1));
logmutex.unlock(); logmutex.unlock();
// piCoutObj << "readRecord done"; // piCoutObj << "readRecord done";
return br; return br;
} }
int PIBinaryLog::writeRecord(int id, PISystemTime time, const void * data, int size) {
PIByteArray logdata;
logdata << id << size << time << PIMemoryBlock(data, size);
if (create_index_on_fly) {
BinLogIndex bi;
bi.id = id;
bi.data_size = size;
bi.pos = file.pos();
bi.timestamp = time;
index.index << bi;
auto & rinfo(index.info.records[id]);
if (rinfo.count == 0) {
rinfo.id = id;
rinfo.start_time = rinfo.end_time = time;
rinfo.minimum_size = rinfo.maximum_size = size;
} else {
rinfo.start_time = piMin(rinfo.start_time, time);
rinfo.end_time = piMax(rinfo.end_time, time);
rinfo.minimum_size = piMin(rinfo.minimum_size, size);
rinfo.maximum_size = piMax(rinfo.maximum_size, size);
}
++rinfo.count;
if (index.info.records_count == 0) {
index.info.start_time = index.info.end_time = time;
} else {
index.info.start_time = piMin(index.info.start_time, time);
index.info.end_time = piMax(index.info.end_time, time);
}
++index.info.records_count;
is_indexed = true;
}
int ret = file.write(logdata.data(), logdata.size());
file.flush();
write_count++;
log_size = file.size();
if (create_index_on_fly) {
index.info.log_size = log_size;
}
return ret;
}
void PIBinaryLog::parseLog(PIFile * f, PIBinaryLog::BinLogInfo * info, PIVector<PIBinaryLog::BinLogIndex> * index) { void PIBinaryLog::parseLog(PIFile * f, PIBinaryLog::BinLogInfo * info, PIVector<PIBinaryLog::BinLogIndex> * index) {
if (!info && !index) return; if (!info && !index) return;
if (info) { if (info) {
@@ -596,16 +636,17 @@ void PIBinaryLog::parseLog(PIFile * f, PIBinaryLog::BinLogInfo * info, PIVector<
if (read_version == PIBINARYLOG_VERSION) { if (read_version == PIBINARYLOG_VERSION) {
uint32_t sz = 0; uint32_t sz = 0;
f->read(&sz, 4); f->read(&sz, 4);
if (sz > 0 && info) { if (sz > 0) {
info->user_header = f->read(sz); PIByteArray user_hdr = f->read(sz);
if (info) info->user_header = user_hdr;
} }
} }
PIByteArray ba; PIByteArray ba;
BinLogRecord br; Record br;
br.id = 0; br.id = 0;
br.size = 0; br.size = 0;
bool first = true; bool first = true;
size_t hdr_size = sizeof(BinLogRecord) - sizeof(PIByteArray); size_t hdr_size = sizeof(Record) - sizeof(PIByteArray);
ba.resize(hdr_size); ba.resize(hdr_size);
while (1) { while (1) {
ba.resize(hdr_size); ba.resize(hdr_size);
@@ -690,7 +731,7 @@ bool PIBinaryLog::cutBinLog(const PIBinaryLog::BinLogInfo & src, const PIString
return false; return false;
} }
bool first = true; bool first = true;
BinLogRecord br; Record br;
PISystemTime st; PISystemTime st;
PITimeMeasurer tm; PITimeMeasurer tm;
while (!slog.isEnd() && ((slog.pos() <= to) || to < 0)) { while (!slog.isEnd() && ((slog.pos() <= to) || to < 0)) {
@@ -746,7 +787,7 @@ bool PIBinaryLog::joinBinLogsSerial(const PIStringList & src,
dtime = lt; dtime = lt;
} }
tm.reset(); tm.reset();
BinLogRecord br; Record br;
PISystemTime st; PISystemTime st;
while (!slog.isEnd()) { while (!slog.isEnd()) {
br = slog.readRecord(); br = slog.readRecord();
@@ -787,12 +828,10 @@ bool PIBinaryLog::createIndex() {
llong cp = file.pos(); llong cp = file.pos();
file.seekToBegin(); file.seekToBegin();
index.clear(); index.clear();
index_pos.clear(); parseLog(&file, &index.info, &index.index);
parseLog(&file, &binfo, &index); index.makeIndexPos();
file.seek(cp); file.seek(cp);
is_indexed = !index.isEmpty(); is_indexed = !index.index.isEmpty();
for (uint i = 0; i < index.size(); i++)
index_pos[index[i].pos] = i;
logmutex.unlock(); logmutex.unlock();
return is_indexed; return is_indexed;
} }
@@ -800,8 +839,8 @@ bool PIBinaryLog::createIndex() {
int PIBinaryLog::posForTime(const PISystemTime & time) { int PIBinaryLog::posForTime(const PISystemTime & time) {
int ci = -1; int ci = -1;
for (uint i = 0; i < index.size(); i++) { for (uint i = 0; i < index.index.size(); i++) {
if (time <= index[i].timestamp && (filterID.contains(index[i].id) || filterID.isEmpty())) { if (time <= index.index[i].timestamp && (filterID.contains(index.index[i].id) || filterID.isEmpty())) {
ci = i; ci = i;
break; break;
} }
@@ -814,12 +853,12 @@ void PIBinaryLog::seekTo(int rindex) {
// piCoutObj << "seekTo"; // piCoutObj << "seekTo";
logmutex.lock(); logmutex.lock();
pausemutex.lock(); pausemutex.lock();
if (rindex < index.size_s() && rindex >= 0) { if (rindex < index.index.size_s() && rindex >= 0) {
file.seek(index[rindex].pos); file.seek(index.index[rindex].pos);
moveIndex(index_pos.value(file.pos(), -1)); moveIndex(index.index_pos.value(file.pos(), -1));
// double prev_pt = play_time; // double prev_pt = play_time;
play_time = index[rindex].timestamp.toMilliseconds(); play_time = index.index[rindex].timestamp.toMilliseconds();
lastrecord.timestamp = index[rindex].timestamp; lastrecord.timestamp = index.index[rindex].timestamp;
if (play_mode == PlayRealTime) { if (play_mode == PlayRealTime) {
startlogtime = PISystemTime::current() - lastrecord.timestamp; startlogtime = PISystemTime::current() - lastrecord.timestamp;
} }
@@ -842,8 +881,8 @@ bool PIBinaryLog::seek(const PISystemTime & time) {
bool PIBinaryLog::seek(llong filepos) { bool PIBinaryLog::seek(llong filepos) {
int ci = -1; int ci = -1;
for (uint i = 0; i < index.size(); i++) { for (uint i = 0; i < index.index.size(); i++) {
if (filepos <= index[i].pos && (filterID.contains(index[i].id) || filterID.isEmpty())) { if (filepos <= index.index[i].pos && (filterID.contains(index.index[i].id) || filterID.isEmpty())) {
ci = i; ci = i;
break; break;
} }
@@ -856,6 +895,27 @@ bool PIBinaryLog::seek(llong filepos) {
} }
int PIBinaryLog::pos() const {
if (is_indexed) return current_index;
return -1;
}
PIByteArray PIBinaryLog::saveIndex() const {
if (!is_indexed) return PIByteArray();
return piSerialize(index);
}
bool PIBinaryLog::loadIndex(PIByteArray saved) {
if (!canRead() || saved.isEmpty()) return false;
index = piDeserialize<CompleteIndex>(saved);
index.makeIndexPos();
is_indexed = index.index.isNotEmpty();
return is_indexed;
}
PIString PIBinaryLog::constructFullPathDevice() const { PIString PIBinaryLog::constructFullPathDevice() const {
PIString ret; PIString ret;
ret += logDir() + ":" + filePrefix() + ":" + PIString::fromNumber(defaultID()) + ":"; ret += logDir() + ":" + filePrefix() + ":" + PIString::fromNumber(defaultID()) + ":";
@@ -928,3 +988,17 @@ void PIBinaryLog::propertyChanged(const char * s) {
split_count = property("splitRecordCount").toInt(); split_count = property("splitRecordCount").toInt();
// piCoutObj << "propertyChanged" << s << play_mode; // piCoutObj << "propertyChanged" << s << play_mode;
} }
void PIBinaryLog::CompleteIndex::clear() {
info = BinLogInfo();
index.clear();
index_pos.clear();
}
void PIBinaryLog::CompleteIndex::makeIndexPos() {
index_pos.clear();
for (uint i = 0; i < index.size(); i++)
index_pos[index[i].pos] = i;
}

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@@ -26,6 +26,7 @@
#ifndef PIBINARYLOG_H #ifndef PIBINARYLOG_H
#define PIBINARYLOG_H #define PIBINARYLOG_H
#include "pichunkstream.h"
#include "pifile.h" #include "pifile.h"
//! \ingroup IO //! \ingroup IO
@@ -54,6 +55,8 @@ public:
SplitCount /*! Separate files by records count */ SplitCount /*! Separate files by records count */
}; };
#pragma pack(push, 8)
//! \brief Struct contains information about all records with same ID //! \brief Struct contains information about all records with same ID
struct PIP_EXPORT BinLogRecordInfo { struct PIP_EXPORT BinLogRecordInfo {
BinLogRecordInfo() { BinLogRecordInfo() {
@@ -68,17 +71,6 @@ public:
PISystemTime end_time; PISystemTime end_time;
}; };
//! \brief Struct contains full information about Binary Log file and about all Records using map of \a BinLogRecordInfo
struct PIP_EXPORT BinLogInfo {
PIString path;
int records_count;
llong log_size;
PISystemTime start_time;
PISystemTime end_time;
PIMap<int, BinLogRecordInfo> records;
PIByteArray user_header;
};
//! \brief Struct contains position, ID and timestamp of record in file //! \brief Struct contains position, ID and timestamp of record in file
struct PIP_EXPORT BinLogIndex { struct PIP_EXPORT BinLogIndex {
int id; int id;
@@ -87,6 +79,19 @@ public:
PISystemTime timestamp; PISystemTime timestamp;
}; };
#pragma pack(pop)
//! \brief Struct contains full information about Binary Log file and about all Records using map of \a BinLogRecordInfo
struct PIP_EXPORT BinLogInfo {
PIString path;
int records_count = 0;
llong log_size = 0L;
PISystemTime start_time;
PISystemTime end_time;
PIMap<int, BinLogRecordInfo> records;
PIByteArray user_header;
};
//! Current \a PlayMode //! Current \a PlayMode
PlayMode playMode() const { return play_mode; } PlayMode playMode() const { return play_mode; }
@@ -121,6 +126,9 @@ public:
//! Returns if rapid start enabled //! Returns if rapid start enabled
bool rapidStart() const { return rapid_start; } bool rapidStart() const { return rapid_start; }
//! Returns if index creates while writing
bool createIndexOnFly() const { return create_index_on_fly; }
//! Create binlog file with Filename = path //! Create binlog file with Filename = path
void createNewFile(const PIString & path); void createNewFile(const PIString & path);
@@ -142,6 +150,9 @@ public:
//! If enabled BinLog \a ThreadedRead starts without delay for first record, i.e. first record will be readed immediately //! If enabled BinLog \a ThreadedRead starts without delay for first record, i.e. first record will be readed immediately
void setRapidStart(bool enabled) { setProperty("rapidStart", enabled); } void setRapidStart(bool enabled) { setProperty("rapidStart", enabled); }
//! Set index creation while writing
void setCreateIndexOnFly(bool yes);
//! Set play speed to "speed", default value is 1.0x //! Set play speed to "speed", default value is 1.0x
//! Also this function set \a playMode to \a PlayVariableSpeed //! Also this function set \a playMode to \a PlayVariableSpeed
void setPlaySpeed(double speed) { void setPlaySpeed(double speed) {
@@ -258,12 +269,12 @@ public:
//! Get binlog info \a BinLogInfo //! Get binlog info \a BinLogInfo
BinLogInfo logInfo() const { BinLogInfo logInfo() const {
if (is_indexed) return binfo; if (is_indexed) return index.info;
return getLogInfo(path()); return getLogInfo(path());
} }
//! Get binlog index \a BinLogIndex, need \a createIndex before getting index //! Get binlog index \a BinLogIndex, need \a createIndex before getting index
const PIVector<BinLogIndex> & logIndex() const { return index; } const PIVector<BinLogIndex> & logIndex() const { return index.index; }
//! Create index of current binlog file //! Create index of current binlog file
bool createIndex(); bool createIndex();
@@ -284,10 +295,10 @@ public:
bool seek(llong filepos); bool seek(llong filepos);
//! Get current record index (position record in file) //! Get current record index (position record in file)
int pos() const { int pos() const;
if (is_indexed) return current_index;
return -1; PIByteArray saveIndex() const;
} bool loadIndex(PIByteArray saved);
//! \handlers //! \handlers
//! \{ //! \{
@@ -342,38 +353,89 @@ protected:
DeviceInfoFlags deviceInfoFlags() const override { return PIIODevice::Reliable; } DeviceInfoFlags deviceInfoFlags() const override { return PIIODevice::Reliable; }
private: private:
struct PIP_EXPORT BinLogRecord { struct PIP_EXPORT Record {
int id; int id;
int size; int size;
PISystemTime timestamp; PISystemTime timestamp;
PIByteArray data; PIByteArray data;
}; };
struct PIP_EXPORT CompleteIndex {
void clear();
void makeIndexPos();
BinLogInfo info;
PIVector<BinLogIndex> index;
PIMap<llong, int> index_pos;
};
BINARY_STREAM_FRIEND(CompleteIndex)
bool writeFileHeader(); bool writeFileHeader();
bool checkFileHeader(); bool checkFileHeader();
BinLogRecord readRecord(); Record readRecord();
int writeRecord(int id, PISystemTime time, const void * data, int size);
static void parseLog(PIFile * f, BinLogInfo * info, PIVector<BinLogIndex> * index); static void parseLog(PIFile * f, BinLogInfo * info, PIVector<BinLogIndex> * index);
void moveIndex(int i); void moveIndex(int i);
static PIString getLogfilePath(const PIString & log_dir, const PIString & prefix); static PIString getLogfilePath(const PIString & log_dir, const PIString & prefix);
PIVector<BinLogIndex> index; CompleteIndex index;
PIMap<llong, int> index_pos;
BinLogInfo binfo;
PlayMode play_mode; PlayMode play_mode;
SplitMode split_mode; SplitMode split_mode;
PIFile file; PIFile file;
BinLogRecord lastrecord; Record lastrecord;
PISystemTime startlogtime, play_delay, split_time, pause_time; PISystemTime startlogtime, play_delay, split_time, pause_time;
mutable PIMutex logmutex, pausemutex; mutable PIMutex logmutex, pausemutex;
double play_time, play_speed; double play_time, play_speed;
llong split_size, log_size; llong split_size, log_size;
int write_count, split_count, default_id, current_index; int write_count, split_count, default_id, current_index;
bool is_started, is_thread_ok, is_indexed, rapid_start, is_pause; bool is_started, is_thread_ok, is_indexed, rapid_start, is_pause, create_index_on_fly;
PIByteArray user_header; PIByteArray user_header;
std::function<PIString()> f_new_path; std::function<PIString()> f_new_path;
}; };
BINARY_STREAM_WRITE(PIBinaryLog::BinLogInfo) {
PIChunkStream cs;
cs.add(1, v.path)
.add(2, v.records_count)
.add(3, v.log_size)
.add(4, v.start_time)
.add(5, v.end_time)
.add(6, v.records)
.add(7, v.user_header);
s << cs.data();
return s;
}
BINARY_STREAM_READ(PIBinaryLog::BinLogInfo) {
PIByteArray csba;
s >> csba;
PIChunkStream cs(csba);
while (!cs.atEnd()) {
switch (cs.read()) {
case 1: cs.get(v.path); break;
case 2: cs.get(v.records_count); break;
case 3: cs.get(v.log_size); break;
case 4: cs.get(v.start_time); break;
case 5: cs.get(v.end_time); break;
case 6: cs.get(v.records); break;
case 7: cs.get(v.user_header); break;
}
}
return s;
}
BINARY_STREAM_WRITE(PIBinaryLog::CompleteIndex) {
s << v.info << v.index;
return s;
}
BINARY_STREAM_READ(PIBinaryLog::CompleteIndex) {
s >> v.info >> v.index;
return s;
}
//! \relatesalso PICout \brief Output operator PIBinaryLog::BinLogInfo to PICout //! \relatesalso PICout \brief Output operator PIBinaryLog::BinLogInfo to PICout
inline PICout operator<<(PICout s, const PIBinaryLog::BinLogInfo & bi) { inline PICout operator<<(PICout s, const PIBinaryLog::BinLogInfo & bi) {
s.space(); s.space();

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@@ -622,3 +622,18 @@ bool PIFile::applyFileInfo(const PIString & path, const PIFile::FileInfo & info)
#endif #endif
return true; return true;
} }
PIByteArray PIFile::readAll(const PIString & path, bool forceRead) {
PIFile f(path, PIIODevice::ReadOnly);
if (!f.isOpened()) return PIByteArray();
return f.readAll(forceRead);
}
int PIFile::writeAll(const PIString & path, const PIByteArray & data) {
PIFile f(path, PIIODevice::ReadWrite);
if (!f.isOpened()) return 0;
f.clear();
return f.write(data.data(), data.size_s());
}

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@@ -293,6 +293,14 @@ public:
//! \~russian Применяет параметры "info" к файлу или директории с путём "info".path //! \~russian Применяет параметры "info" к файлу или директории с путём "info".path
static bool applyFileInfo(const FileInfo & info) { return applyFileInfo(info.path, info); } static bool applyFileInfo(const FileInfo & info) { return applyFileInfo(info.path, info); }
//! \~english Read all file content at path "path" to byte array and return it.
//! \~russian Читает всё содержимое файла по пути "path" и возвращает его как массив байтов.
static PIByteArray readAll(const PIString & path, bool forceRead = false);
//! \~english Clear file at path "path" and write "data", returns written bytes.
//! \~russian Очищает файл по пути "path", пишет туда "data" и возвращает количество записанных байт.
static int writeAll(const PIString & path, const PIByteArray & data);
//! \handlers //! \handlers
//! \{ //! \{