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main.cpp
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main.cpp
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/// bedrock/main.cpp
/// =================
/// Process entry point for Bedrock server.
///
#include <dlfcn.h>
#include <iostream>
#include <signal.h>
#include <sys/resource.h>
#include <sys/stat.h>
#include <bedrockVersion.h>
#include <BedrockServer.h>
#include <BedrockPlugin.h>
#include <plugins/Cache.h>
#include <plugins/DB.h>
#include <plugins/Jobs.h>
#include <plugins/MySQL.h>
#include <libstuff/libstuff.h>
#include <sqlitecluster/SQLite.h>
/////////////////////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////////////////////
void RetrySystem(const string& command) {
// We might be waiting for some threads to unlink, so retry a few times
int numRetries = 3;
SINFO("Trying to run '" << command << "' up to " << numRetries << " times...");
while (numRetries--) {
// Try it and see if it works
int returnCode = system(command.c_str());
if (returnCode) {
// Didn't work
SWARN("'" << command << "' failed with return code " << returnCode << ", waiting 5s and retrying "
<< numRetries << " more times");
this_thread::sleep_for(chrono::seconds(5));
} else
{
// Done!
SINFO("Successfully ran '" << command << "'");
return;
}
}
// Didn't work -- fatal error
SERROR("Failed to run '" << command << "', aborting.");
}
/////////////////////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////////////////////
void VacuumDB(const string& db) { RetrySystem("sqlite3 " + db + " 'VACUUM;'"); }
/////////////////////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////////////////////
#define BACKUP_DIR "/var/tmp/"
void BackupDB(const string& dbPath) {
const string& dbFile = string(basename((char*)dbPath.c_str()));
SINFO("Starting " << dbFile << " database backup.");
SASSERT(SFileCopy(dbPath, BACKUP_DIR + dbFile));
SINFO("Finished " << dbFile << " database backup.");
const string& dbWalPath = dbPath + "-wal";
SINFO("Checking for existence of " << dbWalPath);
if (SFileExists(dbWalPath)) {
SALERT("WAL file exists for " << dbFile << ". Backing up");
SASSERT(SFileCopy(dbWalPath, BACKUP_DIR + string(basename((char*)dbWalPath.c_str()))));
SINFO("Finished " << dbFile << "-wal database backup.");
}
const string& dbShmPath = dbPath + "-shm";
SINFO("Checking for existence of " << dbShmPath);
if (SFileExists(dbShmPath)) {
SALERT("SHM file exists for " << dbFile << ". Backing up");
SASSERT(SFileCopy(dbShmPath, BACKUP_DIR + string(basename((char*)dbShmPath.c_str()))));
SINFO("Finished " << dbFile << "-shm database backup.");
}
}
set<string> loadPlugins(SData& args) {
list<string> plugins = SParseList(args["-plugins"]);
// We'll return the names of the plugins we've loaded, which don't necessarily match the file names we're passed.
// Those are stored here.
set <string> postProcessedNames;
// Register all of our built-in plugins.
BedrockPlugin::g_registeredPluginList.emplace(make_pair("DB", [](BedrockServer& s){return new BedrockPlugin_DB(s);}));
BedrockPlugin::g_registeredPluginList.emplace(make_pair("JOBS", [](BedrockServer& s){return new BedrockPlugin_Jobs(s);}));
BedrockPlugin::g_registeredPluginList.emplace(make_pair("CACHE", [](BedrockServer& s){return new BedrockPlugin_Cache(s);}));
BedrockPlugin::g_registeredPluginList.emplace(make_pair("MYSQL", [](BedrockServer& s){return new BedrockPlugin_MySQL(s);}));
for (string pluginName : plugins) {
// If it's one of our standard plugins, just move on to the next one.
if (BedrockPlugin::g_registeredPluginList.find(SToUpper(pluginName)) != BedrockPlugin::g_registeredPluginList.end()) {
postProcessedNames.emplace(SToUpper(pluginName));
continue;
}
// Any non-standard plugin is loaded from a shared library. If a name is passed without a trailing '.so', we
// will add it, and look for a file with that name. A file should be passed with either a complete absolute
// path, or the file should exist in a place that dlopen() can find it (like, /usr/lib).
// We look for the 'base name' of the plugin. I.e., the filename excluding a path or extension. We'll look for
// a symbol based on this name to call to instantiate our plugin.
size_t slash = pluginName.rfind('/');
size_t dot = pluginName.find('.', slash);
string name = pluginName.substr(slash + 1, dot - slash - 1);
string symbolName = "BEDROCK_PLUGIN_REGISTER_" + SToUpper(name);
// Save the base name of the plugin.
if(postProcessedNames.find(SToUpper(name)) != postProcessedNames.end()) {
SWARN("Duplicate entry for plugin " << name << ", skipping.");
continue;
}
postProcessedNames.insert(SToUpper(name));
// Add the file extension if it's missing.
if (!SEndsWith(pluginName, ".so")) {
pluginName += ".so";
}
// Open the library.
void* lib = dlopen(pluginName.c_str(), RTLD_NOW);
if(!lib) {
SWARN("Error loading bedrock plugin " << pluginName << ": " << dlerror());
} else {
void* sym = dlsym(lib, symbolName.c_str());
if (!sym) {
SWARN("Couldn't find symbol " << symbolName);
} else {
// Call the plugin registration function with the same name.
BedrockPlugin::g_registeredPluginList.emplace(make_pair(SToUpper(name), (BedrockPlugin*(*)(BedrockServer&))sym));
}
}
}
return postProcessedNames;
}
/////////////////////////////////////////////////////////////////////////////
int main(int argc, char* argv[]) {
// Process the command line
SData args = SParseCommandLine(argc, argv);
if (args.empty()) {
// It's valid to run bedrock with no parameters provided, but unusual
// -- let's provide some help just in case
cout << "Protip: check syslog for details, or run 'bedrock -?' for help" << endl;
}
// Initialize the sqlite library before any other code has a chance to do anything with it.
// Set the logging callback for sqlite errors.
SASSERT(sqlite3_config(SQLITE_CONFIG_LOG, SQLite::_sqliteLogCallback, 0) == SQLITE_OK);
// Enable memory-mapped files.
int64_t mmapSizeGB = args.isSet("-mmapSizeGB") ? stoll(args["-mmapSizeGB"]) : 0;
if (mmapSizeGB) {
SINFO("Enabling Memory-Mapped I/O with " << mmapSizeGB << " GB.");
const int64_t GB = 1024 * 1024 * 1024;
SASSERT(sqlite3_config(SQLITE_CONFIG_MMAP_SIZE, mmapSizeGB * GB, 16 * 1024 * GB) == SQLITE_OK); // Max is 16TB
}
// Disable a mutex around `malloc`, which is *EXTREMELY IMPORTANT* for multi-threaded performance. Without this
// setting, all reads are essentially single-threaded as they'll all fight with each other for this mutex.
SASSERT(sqlite3_config(SQLITE_CONFIG_MEMSTATUS, 0) == SQLITE_OK);
sqlite3_initialize();
SASSERT(sqlite3_threadsafe());
// Disabled by default, but lets really beat it in. This way checkpointing does not need to wait on locks
// created in this thread.
SASSERT(sqlite3_enable_shared_cache(0) == SQLITE_OK);
// Fork if requested
if (args.isSet("-fork")) {
// Do the fork
int pid = fork();
SASSERT(pid >= 0);
if (pid > 0) {
// Successful fork -- write the pidfile (if requested) and exit
if (args.isSet("-pidfile"))
SASSERT(SFileSave(args["-pidfile"], SToStr(pid)));
return 0;
}
// Daemonize
// **NOTE: See http://www-theorie.physik.unizh.ch/~dpotter/howto/daemonize
umask(0);
SASSERT(setsid() >= 0);
SASSERT(chdir("/") >= 0);
if (!freopen("/dev/null", "r", stdin) ||
!freopen("/dev/null", "w", stdout) ||
!freopen("/dev/null", "w", stderr)
) {
cout << "Couldn't daemonize." << endl;
return -1;
}
}
if (args.isSet("-version")) {
// Just output the version
cout << VERSION << endl;
return 0;
}
if (args.isSet("-h") || args.isSet("-?") || args.isSet("-help")) {
// Ouput very basic documentation
cout << "Usage:" << endl;
cout << "------" << endl;
cout << "bedrock [-? | -h | -help]" << endl;
cout << "bedrock -version" << endl;
cout << "bedrock [-clean] [-v] [-db <filename>] [-serverHost <host:port>] [-nodeHost <host:port>] [-nodeName "
"<name>] [-peerList <list>] [-priority <value>] [-plugins <list>] [-cacheSize <kb>] [-workerThreads <#>] "
"[-versionOverride <version>]"
<< endl;
cout << endl;
cout << "Common Commands:" << endl;
cout << "----------------" << endl;
cout << "-?, -h, -help Outputs instructions and exits" << endl;
cout << "-version Outputs version and exits" << endl;
cout << "-v Enables verbose logging" << endl;
cout << "-q Enables quiet logging" << endl;
cout << "-clean Recreate a new database from scratch" << endl;
cout << "-enableMultiWrite Enable multi-write mode (default: true)" << endl;
cout << "-versionOverride <version> Pretends to be a different version when talking to peers" << endl;
cout << "-db <filename> Use a database with the given name (default 'bedrock.db')" << endl;
cout
<< "-serverHost <host:port> Listen on this host:port for cluster connections (default 'localhost:8888')"
<< endl;
cout << "-nodeName <name> Name this specfic node in the cluster as indicated (defaults to '"
<< SGetHostName() << "')" << endl;
cout << "-nodeHost <host:port> Listen on this host:port for connections from other nodes" << endl;
cout << "-peerList <list> See below" << endl;
cout << "-priority <value> See '-peerList Details' below (defaults to 100)" << endl;
cout << "-plugins <list> Enable these plugins (defaults to 'db,jobs,cache,mysql')" << endl;
cout << "-cacheSize <kb> number of KB to allocate for a page cache (defaults to 1GB)" << endl;
cout << "-workerThreads <#> Number of worker threads to start (min 1, defaults to # of cores)" << endl;
cout << "-queryLog <filename> Set the query log filename (default 'queryLog.csv', SIGUSR2/SIGQUIT to "
"enable/disable)"
<< endl;
cout << "-maxJournalSize <#commits> Number of commits to retain in the historical journal (default 1000000)"
<< endl;
cout << "-synchronous <value> Set the PRAGMA schema.synchronous "
"(defaults see https://sqlite.org/pragma.html#pragma_synchronous)"
<< endl;
cout << endl;
cout << "Quick Start Tips:" << endl;
cout << "-----------------" << endl;
cout << "In a hurry? Just run 'bedrock -clean' the first time, and it'll create a new database called "
"'bedrock.db', then use all the defaults listed above. (After the first time, leave out the '-clean' "
"to reuse the same database.) Once running, you can verify it's working using NetCat to manualy send "
"a Ping request as follows:"
<< endl;
cout << endl;
cout << "$ bedrock -clean &" << endl;
cout << "$ nc local 8888" << endl;
cout << "Ping" << endl;
cout << endl;
cout << "200 OK" << endl;
cout << endl;
cout << "-peerList Details:" << endl;
cout << "------------------" << endl;
cout << "The -peerList parameter enables you to configure multiple Bedrock nodes into a redundant cluster. "
"Bedrock supports any number of nodes: simply start each node with a comma-separated list of the "
"'-nodeHost' of all other nodes. You can safely send any command to any node. Some best practices:"
<< endl;
cout << endl;
cout << "- Put each Bedrock node on a different server." << endl;
cout << endl;
cout << "- Assign each node a different priority (greater than 0). The highest priority node will be the "
"'leader', which will coordinate distributed transactions."
<< endl;
cout << endl;
return 1;
}
// Start libstuff. Generally, we want to initialize libstuff immediately on any new thread, but we wait until after
// the `fork` above has completed, as we can get strange behaviors from signal handlers across forked processes.
SInitialize("main", (args.isSet("-overrideProcessName") ? args["-overrideProcessName"].c_str() : 0));
SLogLevel(LOG_INFO);
if (args.isSet("-v")) {
// Verbose logging
SINFO("Enabling verbose logging");
SLogLevel(LOG_DEBUG);
} else if (args.isSet("-q")) {
// Quiet logging
SLogLevel(LOG_WARNING);
}
// Set the defaults
#define SETDEFAULT(_NAME_, _VAL_) \
do { \
if (!args.isSet(_NAME_)) \
args[_NAME_] = _VAL_; \
} while (false)
SETDEFAULT("-db", "bedrock.db");
SETDEFAULT("-serverHost", "localhost:8888");
SETDEFAULT("-nodeHost", "localhost:8889");
SETDEFAULT("-controlPort", "localhost:9999");
SETDEFAULT("-nodeName", SGetHostName());
SETDEFAULT("-cacheSize", SToStr(1024 * 1024)); // 1024 * 1024KB = 1GB.
SETDEFAULT("-plugins", "db,jobs,cache,mysql");
SETDEFAULT("-priority", "100");
SETDEFAULT("-maxJournalSize", "1000000");
SETDEFAULT("-queryLog", "queryLog.csv");
SETDEFAULT("-enableMultiWrite", "true");
args["-plugins"] = SComposeList(loadPlugins(args));
// Reset the database if requested
if (args.isSet("-clean")) {
// Remove it
SDEBUG("Resetting database");
string db = args["-db"];
unlink(db.c_str());
} else if (args.isSet("-bootstrap")) {
// Allow for bootstraping a node with no database file in place.
SINFO("Loading in bootstrap mode, skipping check for database existance.");
} else {
// Otherwise verify the database exists
SDEBUG("Verifying database exists");
SASSERT(SFileExists(args["-db"]));
}
// Set our soft limit to the same as our hard limit to allow for more file handles.
struct rlimit limits;
if (!getrlimit(RLIMIT_NOFILE, &limits)) {
limits.rlim_cur = limits.rlim_max;
if (setrlimit(RLIMIT_NOFILE, &limits)) {
SERROR("Couldn't set FD limit");
}
} else {
SERROR("Couldn't get FD limit");
}
// Log stack traces if we have unhandled exceptions.
set_terminate(STerminateHandler);
// Create our BedrockServer object so we can keep it for the life of the
// program.
SINFO("Starting bedrock server");
BedrockServer* _server = new BedrockServer(args);
BedrockServer& server = *_server;
// Keep going until someone kills it (either via TERM or Control^C)
while (!(SGetSignal(SIGTERM) || SGetSignal(SIGINT))) {
if (SGetSignals()) {
// Log and clear any outstanding signals.
SALERT("Uncaught signals (" << SGetSignalDescription() << "), ignoring.");
SClearSignals();
}
// Counters for seeing how long we spend in postPoll.
chrono::steady_clock::duration pollCounter(0);
chrono::steady_clock::duration postPollCounter(0);
chrono::steady_clock::time_point start = chrono::steady_clock::now();
uint64_t nextActivity = STimeNow();
while (!server.shutdownComplete()) {
if (server.shouldBackup() && server.isDetached()) {
BackupDB(args["-db"]);
server.setDetach(false);
}
// Wait and process
fd_map fdm;
server.prePoll(fdm);
const uint64_t now = STimeNow();
auto timeBeforePoll = chrono::steady_clock::now();
S_poll(fdm, max(nextActivity, now) - now);
nextActivity = STimeNow() + STIME_US_PER_S; // 1s max period
auto timeAfterPoll = chrono::steady_clock::now();
server.postPoll(fdm, nextActivity);
auto timeAfterPostPoll = chrono::steady_clock::now();
pollCounter += timeAfterPoll - timeBeforePoll;
postPollCounter += timeAfterPostPoll - timeAfterPoll;
// Every 10s, log and reset.
if (timeAfterPostPoll > (start + 10s)) {
SINFO("[performance] main poll loop timing: "
<< chrono::duration_cast<chrono::milliseconds>(timeAfterPostPoll - start).count() << " ms elapsed. "
<< chrono::duration_cast<chrono::milliseconds>(pollCounter).count() << " ms in poll. "
<< chrono::duration_cast<chrono::milliseconds>(postPollCounter).count() << " ms in postPoll.");
pollCounter = chrono::microseconds::zero();
postPollCounter = chrono::microseconds::zero();
start = timeAfterPostPoll;
}
}
if (server.shutdownWhileDetached) {
// We need to actually shut down here.
break;
}
}
SINFO("Deleting BedrockServer");
delete _server;
SINFO("BedrockServer deleted");
// Finished with our signal handler.
SStopSignalThread();
// All done
SINFO("Graceful process shutdown complete");
return 0;
}