foundationdb/flow/FileTraceLogWriter.cpp

188 lines
5.7 KiB
C++

/*
* FileTraceLogWriter.cpp
*
* This source file is part of the FoundationDB open source project
*
* Copyright 2018 Apple Inc. and the FoundationDB project authors
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "flow/FileTraceLogWriter.h"
#include "flow/flow.h"
#include "flow/ThreadHelper.actor.h"
#if defined(__unixish__)
#define __open ::open
#define __write ::write
#define __close ::close
#define __fsync ::fsync
#define TRACEFILE_FLAGS O_WRONLY | O_CREAT | O_EXCL
#define TRACEFILE_MODE 0664
#elif defined(_WIN32)
#include <windows.h>
#undef max
#undef min
#include <io.h>
#include <stdio.h>
#include <sys/stat.h>
#define __open _open
#define __write _write
#define __close _close
#define __fsync _commit
#define TRACEFILE_FLAGS _O_WRONLY | _O_CREAT | _O_EXCL
#define TRACEFILE_MODE _S_IWRITE
#endif
#include <fcntl.h>
FileTraceLogWriter::FileTraceLogWriter(std::string directory, std::string processName, std::string basename, std::string extension, uint64_t maxLogsSize, std::function<void()> onError)
: directory(directory), processName(processName), basename(basename), extension(extension), maxLogsSize(maxLogsSize), traceFileFD(-1), index(0), onError(onError) {}
void FileTraceLogWriter::addref() {
ReferenceCounted<FileTraceLogWriter>::addref();
}
void FileTraceLogWriter::delref() {
ReferenceCounted<FileTraceLogWriter>::delref();
}
void FileTraceLogWriter::lastError(int err) {
// Whenever we get a serious error writing a trace log, all flush barriers posted between the operation encountering
// the error and the occurrence of the error are unblocked, even though we haven't actually succeeded in flushing.
// Otherwise a permanent write error would make the program block forever.
if (err != 0 && err != EINTR) {
onError();
}
}
void FileTraceLogWriter::write(const std::string& str) {
auto ptr = str.c_str();
int remaining = str.size();
while ( remaining ) {
int ret = __write( traceFileFD, ptr, remaining );
if ( ret > 0 ) {
lastError(0);
remaining -= ret;
ptr += ret;
} else {
lastError(errno);
threadSleep(0.1);
}
}
}
void FileTraceLogWriter::open() {
cleanupTraceFiles();
auto finalname = format("%s.%d.%s", basename.c_str(), ++index, extension.c_str());
while ( (traceFileFD = __open( finalname.c_str(), TRACEFILE_FLAGS, TRACEFILE_MODE )) == -1 ) {
lastError(errno);
if (errno == EEXIST)
finalname = format("%s.%d.%s", basename.c_str(), ++index, extension.c_str());
else {
fprintf(stderr, "ERROR: could not create trace log file `%s' (%d: %s)\n", finalname.c_str(), errno, strerror(errno));
int errorNum = errno;
onMainThreadVoid([finalname, errorNum]{
TraceEvent(SevWarnAlways, "TraceFileOpenError")
.detail("Filename", finalname)
.detail("ErrorCode", errorNum)
.detail("Error", strerror(errorNum))
.trackLatest("TraceFileOpenError"); }, NULL);
threadSleep(FLOW_KNOBS->TRACE_RETRY_OPEN_INTERVAL);
}
}
onMainThreadVoid([]{ latestEventCache.clear("TraceFileOpenError"); }, NULL);
lastError(0);
}
void FileTraceLogWriter::close() {
if (traceFileFD >= 0) {
while ( __close(traceFileFD) ) threadSleep(0.1);
}
}
void FileTraceLogWriter::roll() {
close();
open();
}
void FileTraceLogWriter::sync() {
__fsync(traceFileFD);
}
void FileTraceLogWriter::extractTraceFileNameInfo(std::string const& filename, std::string &root, int &index) {
int split = filename.find_last_of('.', filename.size() - 5);
root = filename.substr(0, split);
if(sscanf(filename.substr(split + 1, filename.size() - split - 4).c_str(), "%d", &index) == EOF) {
index = -1;
}
}
bool FileTraceLogWriter::compareTraceFileName (std::string const& f1, std::string const& f2) {
std::string root1;
std::string root2;
int index1;
int index2;
extractTraceFileNameInfo(f1, root1, index1);
extractTraceFileNameInfo(f2, root2, index2);
if(root1 != root2)
return root1 < root2;
if(index1 != index2)
return index1 < index2;
return f1 < f2;
}
bool FileTraceLogWriter::reverseCompareTraceFileName(std::string f1, std::string f2) {
return compareTraceFileName(f2, f1);
}
void FileTraceLogWriter::cleanupTraceFiles() {
// Setting maxLogsSize=0 disables trace file cleanup based on dir size
if(!g_network->isSimulated() && maxLogsSize > 0) {
try {
std::vector<std::string> existingFiles = platform::listFiles(directory, extension);
std::vector<std::string> existingTraceFiles;
for(auto f = existingFiles.begin(); f != existingFiles.end(); ++f) {
if(f->substr(0, processName.length()) == processName) {
existingTraceFiles.push_back(*f);
}
}
// reverse sort, so we preserve the most recent files and delete the oldest
std::sort(existingTraceFiles.begin(), existingTraceFiles.end(), FileTraceLogWriter::reverseCompareTraceFileName);
int64_t runningTotal = 0;
std::vector<std::string>::iterator fileListIterator = existingTraceFiles.begin();
while(runningTotal < maxLogsSize && fileListIterator != existingTraceFiles.end()) {
runningTotal += (fileSize(joinPath(directory, *fileListIterator)) + FLOW_KNOBS->ZERO_LENGTH_FILE_PAD);
++fileListIterator;
}
while(fileListIterator != existingTraceFiles.end()) {
deleteFile(joinPath(directory, *fileListIterator));
++fileListIterator;
}
} catch( Error & ) {}
}
}