lbrycrd/src/logging.cpp
practicalswift 0bd4cd398b logging: remove unused return value from LogPrintStr
`LogPrintStr` returns the number of characters printed. This number is
doubled if both logging to console and logging to file is enabled. As
the return value is never used, I've opted to remove it instead of try
to fix it.

Credit: @laanwj
2018-05-02 11:25:20 +02:00

269 lines
7.6 KiB
C++

// Copyright (c) 2009-2010 Satoshi Nakamoto
// Copyright (c) 2009-2018 The Bitcoin Core developers
// Distributed under the MIT software license, see the accompanying
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
#include <logging.h>
#include <utiltime.h>
const char * const DEFAULT_DEBUGLOGFILE = "debug.log";
/**
* NOTE: the logger instances is leaked on exit. This is ugly, but will be
* cleaned up by the OS/libc. Defining a logger as a global object doesn't work
* since the order of destruction of static/global objects is undefined.
* Consider if the logger gets destroyed, and then some later destructor calls
* LogPrintf, maybe indirectly, and you get a core dump at shutdown trying to
* access the logger. When the shutdown sequence is fully audited and tested,
* explicit destruction of these objects can be implemented by changing this
* from a raw pointer to a std::unique_ptr.
*
* This method of initialization was originally introduced in
* ee3374234c60aba2cc4c5cd5cac1c0aefc2d817c.
*/
BCLog::Logger* const g_logger = new BCLog::Logger();
bool fLogIPs = DEFAULT_LOGIPS;
static int FileWriteStr(const std::string &str, FILE *fp)
{
return fwrite(str.data(), 1, str.size(), fp);
}
bool BCLog::Logger::OpenDebugLog()
{
std::lock_guard<std::mutex> scoped_lock(m_file_mutex);
assert(m_fileout == nullptr);
assert(!m_file_path.empty());
m_fileout = fsbridge::fopen(m_file_path, "a");
if (!m_fileout) {
return false;
}
setbuf(m_fileout, nullptr); // unbuffered
// dump buffered messages from before we opened the log
while (!m_msgs_before_open.empty()) {
FileWriteStr(m_msgs_before_open.front(), m_fileout);
m_msgs_before_open.pop_front();
}
return true;
}
void BCLog::Logger::EnableCategory(BCLog::LogFlags flag)
{
m_categories |= flag;
}
bool BCLog::Logger::EnableCategory(const std::string& str)
{
BCLog::LogFlags flag;
if (!GetLogCategory(flag, str)) return false;
EnableCategory(flag);
return true;
}
void BCLog::Logger::DisableCategory(BCLog::LogFlags flag)
{
m_categories &= ~flag;
}
bool BCLog::Logger::DisableCategory(const std::string& str)
{
BCLog::LogFlags flag;
if (!GetLogCategory(flag, str)) return false;
DisableCategory(flag);
return true;
}
bool BCLog::Logger::WillLogCategory(BCLog::LogFlags category) const
{
return (m_categories.load(std::memory_order_relaxed) & category) != 0;
}
bool BCLog::Logger::DefaultShrinkDebugFile() const
{
return m_categories == BCLog::NONE;
}
struct CLogCategoryDesc
{
BCLog::LogFlags flag;
std::string category;
};
const CLogCategoryDesc LogCategories[] =
{
{BCLog::NONE, "0"},
{BCLog::NONE, "none"},
{BCLog::NET, "net"},
{BCLog::TOR, "tor"},
{BCLog::MEMPOOL, "mempool"},
{BCLog::HTTP, "http"},
{BCLog::BENCH, "bench"},
{BCLog::ZMQ, "zmq"},
{BCLog::DB, "db"},
{BCLog::RPC, "rpc"},
{BCLog::ESTIMATEFEE, "estimatefee"},
{BCLog::ADDRMAN, "addrman"},
{BCLog::SELECTCOINS, "selectcoins"},
{BCLog::REINDEX, "reindex"},
{BCLog::CMPCTBLOCK, "cmpctblock"},
{BCLog::RAND, "rand"},
{BCLog::PRUNE, "prune"},
{BCLog::PROXY, "proxy"},
{BCLog::MEMPOOLREJ, "mempoolrej"},
{BCLog::LIBEVENT, "libevent"},
{BCLog::COINDB, "coindb"},
{BCLog::QT, "qt"},
{BCLog::LEVELDB, "leveldb"},
{BCLog::ALL, "1"},
{BCLog::ALL, "all"},
};
bool GetLogCategory(BCLog::LogFlags& flag, const std::string& str)
{
if (str == "") {
flag = BCLog::ALL;
return true;
}
for (const CLogCategoryDesc& category_desc : LogCategories) {
if (category_desc.category == str) {
flag = category_desc.flag;
return true;
}
}
return false;
}
std::string ListLogCategories()
{
std::string ret;
int outcount = 0;
for (const CLogCategoryDesc& category_desc : LogCategories) {
// Omit the special cases.
if (category_desc.flag != BCLog::NONE && category_desc.flag != BCLog::ALL) {
if (outcount != 0) ret += ", ";
ret += category_desc.category;
outcount++;
}
}
return ret;
}
std::vector<CLogCategoryActive> ListActiveLogCategories()
{
std::vector<CLogCategoryActive> ret;
for (const CLogCategoryDesc& category_desc : LogCategories) {
// Omit the special cases.
if (category_desc.flag != BCLog::NONE && category_desc.flag != BCLog::ALL) {
CLogCategoryActive catActive;
catActive.category = category_desc.category;
catActive.active = LogAcceptCategory(category_desc.flag);
ret.push_back(catActive);
}
}
return ret;
}
std::string BCLog::Logger::LogTimestampStr(const std::string &str)
{
std::string strStamped;
if (!m_log_timestamps)
return str;
if (m_started_new_line) {
int64_t nTimeMicros = GetTimeMicros();
strStamped = FormatISO8601DateTime(nTimeMicros/1000000);
if (m_log_time_micros) {
strStamped.pop_back();
strStamped += strprintf(".%06dZ", nTimeMicros%1000000);
}
int64_t mocktime = GetMockTime();
if (mocktime) {
strStamped += " (mocktime: " + FormatISO8601DateTime(mocktime) + ")";
}
strStamped += ' ' + str;
} else
strStamped = str;
if (!str.empty() && str[str.size()-1] == '\n')
m_started_new_line = true;
else
m_started_new_line = false;
return strStamped;
}
void BCLog::Logger::LogPrintStr(const std::string &str)
{
std::string strTimestamped = LogTimestampStr(str);
if (m_print_to_console) {
// print to console
fwrite(strTimestamped.data(), 1, strTimestamped.size(), stdout);
fflush(stdout);
}
if (m_print_to_file) {
std::lock_guard<std::mutex> scoped_lock(m_file_mutex);
// buffer if we haven't opened the log yet
if (m_fileout == nullptr) {
m_msgs_before_open.push_back(strTimestamped);
}
else
{
// reopen the log file, if requested
if (m_reopen_file) {
m_reopen_file = false;
m_fileout = fsbridge::freopen(m_file_path, "a", m_fileout);
if (!m_fileout) {
return;
}
setbuf(m_fileout, nullptr); // unbuffered
}
FileWriteStr(strTimestamped, m_fileout);
}
}
}
void BCLog::Logger::ShrinkDebugFile()
{
// Amount of debug.log to save at end when shrinking (must fit in memory)
constexpr size_t RECENT_DEBUG_HISTORY_SIZE = 10 * 1000000;
assert(!m_file_path.empty());
// Scroll debug.log if it's getting too big
FILE* file = fsbridge::fopen(m_file_path, "r");
// Special files (e.g. device nodes) may not have a size.
size_t log_size = 0;
try {
log_size = fs::file_size(m_file_path);
} catch (boost::filesystem::filesystem_error &) {}
// If debug.log file is more than 10% bigger the RECENT_DEBUG_HISTORY_SIZE
// trim it down by saving only the last RECENT_DEBUG_HISTORY_SIZE bytes
if (file && log_size > 11 * (RECENT_DEBUG_HISTORY_SIZE / 10))
{
// Restart the file with some of the end
std::vector<char> vch(RECENT_DEBUG_HISTORY_SIZE, 0);
fseek(file, -((long)vch.size()), SEEK_END);
int nBytes = fread(vch.data(), 1, vch.size(), file);
fclose(file);
file = fsbridge::fopen(m_file_path, "w");
if (file)
{
fwrite(vch.data(), 1, nBytes, file);
fclose(file);
}
}
else if (file != nullptr)
fclose(file);
}