spdlog/include/spdlog/details/registry.h

193 lines
4.5 KiB
C++

//
// Copyright(c) 2015 Gabi Melman.
// Distributed under the MIT License (http://opensource.org/licenses/MIT)
//
#pragma once
// Loggers registy of unique name->logger pointer
// An attempt to create a logger with an already existing name will be ignored
// If user requests a non existing logger, nullptr will be returned
// This class is thread safe
#include "spdlog/common.h"
#include "spdlog/logger.h"
#include <chrono>
#include <functional>
#include <memory>
#include <string>
#include <unordered_map>
namespace spdlog {
namespace details {
class thread_pool;
template<class Mutex>
class registry_t
{
public:
using MutexT = Mutex;
registry_t<Mutex>(const registry_t<Mutex> &) = delete;
registry_t<Mutex> &operator=(const registry_t<Mutex> &) = delete;
void register_logger(std::shared_ptr<logger> new_logger)
{
std::lock_guard<Mutex> lock(mutex_);
auto logger_name = new_logger->name();
throw_if_exists(logger_name);
loggers_[logger_name] = new_logger;
}
void register_and_init(std::shared_ptr<logger> new_logger)
{
std::lock_guard<Mutex> lock(mutex_);
auto logger_name = new_logger->name();
throw_if_exists(logger_name);
// create default formatter if not exists
new_logger->set_pattern(formatter_pattern_);
if (err_handler_)
{
new_logger->set_error_handler(err_handler_);
}
new_logger->set_level(level_);
new_logger->flush_on(flush_level_);
// Add to registry
loggers_[logger_name] = new_logger;
}
std::shared_ptr<logger> get(const std::string &logger_name)
{
std::lock_guard<Mutex> lock(mutex_);
auto found = loggers_.find(logger_name);
return found == loggers_.end() ? nullptr : found->second;
}
void set_thread_pool(std::shared_ptr<thread_pool> tp)
{
std::lock_guard<Mutex> lock(mutex_);
tp_ = std::move(tp);
}
std::shared_ptr<thread_pool> get_thread_pool()
{
std::lock_guard<Mutex> lock(mutex_);
return tp_;
}
void set_pattern(const std::string &pattern)
{
std::lock_guard<Mutex> lock(mutex_);
formatter_pattern_ = pattern;
for (auto &l : loggers_)
{
l.second->set_pattern(pattern);
}
}
void set_level(level::level_enum log_level)
{
std::lock_guard<Mutex> lock(mutex_);
for (auto &l : loggers_)
{
l.second->set_level(log_level);
}
level_ = log_level;
}
void flush_on(level::level_enum log_level)
{
std::lock_guard<Mutex> lock(mutex_);
for (auto &l : loggers_)
{
l.second->flush_on(log_level);
}
flush_level_ = log_level;
}
void set_error_handler(log_err_handler handler)
{
for (auto &l : loggers_)
{
l.second->set_error_handler(handler);
}
err_handler_ = handler;
}
void apply_all(std::function<void(std::shared_ptr<logger>)> fun)
{
std::lock_guard<Mutex> lock(mutex_);
for (auto &l : loggers_)
{
fun(l.second);
}
}
void drop(const std::string &logger_name)
{
std::lock_guard<Mutex> lock(mutex_);
loggers_.erase(logger_name);
}
void drop_all()
{
{
std::lock_guard<Mutex> lock(mutex_);
loggers_.clear();
}
{
std::lock_guard<Mutex> lock(tp_mutex_);
tp_.reset();
}
}
Mutex &tp_mutex()
{
return tp_mutex_;
}
static registry_t<Mutex> &instance()
{
static registry_t<Mutex> s_instance;
return s_instance;
}
private:
registry_t<Mutex>() = default;
void throw_if_exists(const std::string &logger_name)
{
if (loggers_.find(logger_name) != loggers_.end())
{
throw spdlog_ex("logger with name '" + logger_name + "' already exists");
}
}
Mutex mutex_;
Mutex tp_mutex_;
std::unordered_map<std::string, std::shared_ptr<logger>> loggers_;
std::string formatter_pattern_ = "%+";
level::level_enum level_ = level::info;
level::level_enum flush_level_ = level::off;
log_err_handler err_handler_;
std::shared_ptr<thread_pool> tp_;
};
#ifdef SPDLOG_NO_REGISTRY_MUTEX
#include "spdlog/details/null_mutex.h"
using registry = registry_t<spdlog::details::null_mutex>;
#else
#include <mutex>
using registry = registry_t<std::mutex>;
#endif
} // namespace details
} // namespace spdlog