forked from I2P_Developers/i2p.i2p
828 lines
28 KiB
Java
828 lines
28 KiB
Java
package net.i2p;
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import java.io.File;
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import java.util.HashSet;
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import java.util.Properties;
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import java.util.Set;
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import net.i2p.client.naming.NamingService;
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import net.i2p.client.naming.PetNameDB;
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import net.i2p.crypto.AESEngine;
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import net.i2p.crypto.CryptixAESEngine;
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import net.i2p.crypto.DSAEngine;
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import net.i2p.crypto.DummyDSAEngine;
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import net.i2p.crypto.DummyElGamalEngine;
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//import net.i2p.crypto.DummyPooledRandomSource;
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import net.i2p.crypto.ElGamalAESEngine;
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import net.i2p.crypto.ElGamalEngine;
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import net.i2p.crypto.HMAC256Generator;
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import net.i2p.crypto.HMACGenerator;
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import net.i2p.crypto.KeyGenerator;
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import net.i2p.crypto.SHA256Generator;
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import net.i2p.crypto.SessionKeyManager;
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import net.i2p.crypto.TransientSessionKeyManager;
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import net.i2p.data.RoutingKeyGenerator;
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import net.i2p.stat.StatManager;
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import net.i2p.util.Clock;
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import net.i2p.util.ConcurrentHashSet;
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import net.i2p.util.FileUtil;
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import net.i2p.util.FortunaRandomSource;
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import net.i2p.util.KeyRing;
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import net.i2p.util.LogManager;
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//import net.i2p.util.PooledRandomSource;
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import net.i2p.util.RandomSource;
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/**
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* <p>Provide a base scope for accessing singletons that I2P exposes. Rather than
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* using the traditional singleton, where any component can access the component
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* in question directly, all of those I2P related singletons are exposed through
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* a particular I2PAppContext. This helps not only with understanding their use
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* and the components I2P exposes, but it also allows multiple isolated
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* environments to operate concurrently within the same JVM - particularly useful
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* for stubbing out implementations of the rooted components and simulating the
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* software's interaction between multiple instances.</p>
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*
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* As a simplification, there is also a global context - if some component needs
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* access to one of the singletons but doesn't have its own context from which
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* to root itself, it binds to the I2PAppContext's globalAppContext(), which is
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* the first context that was created within the JVM, or a new one if no context
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* existed already. This functionality is often used within the I2P core for
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* logging - e.g. <pre>
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* private static final Log _log = new Log(someClass.class);
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* </pre>
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* It is for this reason that applications that care about working with multiple
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* contexts should build their own context as soon as possible (within the main(..))
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* so that any referenced components will latch on to that context instead of
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* instantiating a new one. However, there are situations in which both can be
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* relevent.
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*
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*/
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public class I2PAppContext {
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/** the context that components without explicit root are bound */
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protected static I2PAppContext _globalAppContext;
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private Properties _overrideProps;
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private StatManager _statManager;
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private SessionKeyManager _sessionKeyManager;
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private NamingService _namingService;
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private PetNameDB _petnameDb;
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private ElGamalEngine _elGamalEngine;
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private ElGamalAESEngine _elGamalAESEngine;
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private AESEngine _AESEngine;
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private LogManager _logManager;
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private HMACGenerator _hmac;
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private HMAC256Generator _hmac256;
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private SHA256Generator _sha;
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protected Clock _clock; // overridden in RouterContext
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private DSAEngine _dsa;
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private RoutingKeyGenerator _routingKeyGenerator;
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private RandomSource _random;
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private KeyGenerator _keyGenerator;
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protected KeyRing _keyRing; // overridden in RouterContext
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private volatile boolean _statManagerInitialized;
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private volatile boolean _sessionKeyManagerInitialized;
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private volatile boolean _namingServiceInitialized;
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private volatile boolean _petnameDbInitialized;
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private volatile boolean _elGamalEngineInitialized;
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private volatile boolean _elGamalAESEngineInitialized;
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private volatile boolean _AESEngineInitialized;
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private volatile boolean _logManagerInitialized;
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private volatile boolean _hmacInitialized;
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private volatile boolean _hmac256Initialized;
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private volatile boolean _shaInitialized;
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protected volatile boolean _clockInitialized; // used in RouterContext
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private volatile boolean _dsaInitialized;
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private volatile boolean _routingKeyGeneratorInitialized;
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private volatile boolean _randomInitialized;
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private volatile boolean _keyGeneratorInitialized;
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protected volatile boolean _keyRingInitialized; // used in RouterContext
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private Set<Runnable> _shutdownTasks;
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private File _baseDir;
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private File _configDir;
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private File _routerDir;
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private File _pidDir;
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private File _logDir;
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private File _appDir;
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private File _tmpDir;
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/**
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* Pull the default context, creating a new one if necessary, else using
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* the first one created.
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*
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*/
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public static I2PAppContext getGlobalContext() {
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synchronized (I2PAppContext.class) {
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if (_globalAppContext == null) {
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_globalAppContext = new I2PAppContext(false, null);
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}
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}
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return _globalAppContext;
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}
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/**
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* Lets root a brand new context
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*
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*/
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public I2PAppContext() {
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this(true, null);
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}
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/**
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* Lets root a brand new context
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*
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*/
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public I2PAppContext(Properties envProps) {
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this(true, envProps);
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}
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/**
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* @param doInit should this context be used as the global one (if necessary)?
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*/
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private I2PAppContext(boolean doInit, Properties envProps) {
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if (doInit) {
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synchronized (I2PAppContext.class) {
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if (_globalAppContext == null)
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_globalAppContext = this;
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}
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}
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_overrideProps = envProps;
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_statManager = null;
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_sessionKeyManager = null;
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_namingService = null;
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_petnameDb = null;
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_elGamalEngine = null;
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_elGamalAESEngine = null;
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_logManager = null;
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_keyRing = null;
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_statManagerInitialized = false;
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_sessionKeyManagerInitialized = false;
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_namingServiceInitialized = false;
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_elGamalEngineInitialized = false;
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_elGamalAESEngineInitialized = false;
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_logManagerInitialized = false;
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_keyRingInitialized = false;
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_shutdownTasks = new ConcurrentHashSet(0);
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initializeDirs();
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}
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/**
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* Directories. These are all set at instantiation and will not be changed by
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* subsequent property changes.
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* All properties, if set, should be absolute paths.
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*
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* Name Property Method Files
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* ----- -------- ----- -----
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* Base i2p.dir.base getBaseDir() lib/, webapps/, docs/, geoip/, licenses/, ...
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* Temp i2p.dir.temp getTempDir() Temporary files
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* Config i2p.dir.config getConfigDir() *.config, hosts.txt, addressbook/, ...
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* PID i2p.dir.pid getPIDDir() router.ping
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*
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* (the following all default to the same as Config)
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*
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* Router i2p.dir.router getRouterDir() netDb/, peerProfiles/, router.*, keyBackup/, ...
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* Log i2p.dir.log getLogDir() logs/
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* App i2p.dir.app getAppDir() eepsite/, ...
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*
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* Note that we can't control where the wrapper puts its files.
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*
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* The app dir is where all data files should be. Apps should always read and write files here,
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* using a constructor such as:
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*
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* String path = mypath;
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* File f = new File(path);
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* if (!f.isAbsolute())
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* f = new File(_context.geAppDir(), path);
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*
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* and never attempt to access files in the CWD using
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*
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* File f = new File("foo");
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*
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* An app should assume the CWD is not writable.
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*
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* Here in I2PAppContext, all the dirs default to CWD.
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* However these will be different in RouterContext, as Router.java will set
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* the properties in the RouterContext constructor.
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*
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* Apps should never need to access the base dir, which is the location of the base I2P install.
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* However this is provided for the router's use, and for backward compatibility should an app
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* need to look there as well.
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*
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* All dirs except the base are created if they don't exist, but the creation will fail silently.
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* @since 0.7.6
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*/
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private void initializeDirs() {
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String s = getProperty("i2p.dir.base", System.getProperty("user.dir"));
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_baseDir = new File(s);
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// config defaults to base
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s = getProperty("i2p.dir.config");
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if (s != null) {
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_configDir = new File(s);
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if (!_configDir.exists())
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_configDir.mkdir();
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} else {
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_configDir = _baseDir;
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}
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// router defaults to config
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s = getProperty("i2p.dir.router");
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if (s != null) {
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_routerDir = new File(s);
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if (!_routerDir.exists())
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_routerDir.mkdir();
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} else {
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_routerDir = _configDir;
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}
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// pid defaults to system temp directory
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s = getProperty("i2p.dir.pid", System.getProperty("java.io.tmpdir"));
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_pidDir = new File(s);
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if (!_pidDir.exists())
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_pidDir.mkdir();
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// these all default to router
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s = getProperty("i2p.dir.log");
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if (s != null) {
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_logDir = new File(s);
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if (!_logDir.exists())
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_logDir.mkdir();
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} else {
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_logDir = _routerDir;
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}
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s = getProperty("i2p.dir.app");
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if (s != null) {
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_appDir = new File(s);
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if (!_appDir.exists())
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_appDir.mkdir();
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} else {
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_appDir = _routerDir;
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}
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/******
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System.err.println("Base directory: " + _baseDir.getAbsolutePath());
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System.err.println("Config directory: " + _configDir.getAbsolutePath());
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System.err.println("Router directory: " + _routerDir.getAbsolutePath());
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System.err.println("App directory: " + _appDir.getAbsolutePath());
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System.err.println("Log directory: " + _logDir.getAbsolutePath());
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System.err.println("PID directory: " + _pidDir.getAbsolutePath());
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System.err.println("Temp directory: " + getTempDir().getAbsolutePath());
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******/
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}
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/**
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* This is the installation dir, often referred to as $I2P.
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* Applilcations should consider this directory read-only and never
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* attempt to write to it.
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* It may actually be read-only on a multi-user installation.
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* The config files in this directory are templates for user
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* installations and should not be accessed by applications.
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* The only thing that may be useful in here is the lib/ dir
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* containing the .jars.
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* @since 0.7.6
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* @return dir constant for the life of the context
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*/
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public File getBaseDir() { return _baseDir; }
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/**
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* The base dir for config files.
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* Applications may use this to access router configuration files if necessary.
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* Usually ~/.i2p on Linux and %APPDIR%\I2P on Windows.
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* In installations originally installed with 0.7.5 or earlier, and in
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* "portable" installations, this will be the same as the base dir.
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* @since 0.7.6
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* @return dir constant for the life of the context
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*/
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public File getConfigDir() { return _configDir; }
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/**
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* Where the router keeps its files.
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* Applications should not use this.
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* The same as the config dir for now.
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* @since 0.7.6
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* @return dir constant for the life of the context
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*/
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public File getRouterDir() { return _routerDir; }
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/**
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* Where router.ping goes.
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* Applications should not use this.
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* The same as the system temp dir for now.
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* Which is a problem for multi-user installations.
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* @since 0.7.6
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* @return dir constant for the life of the context
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*/
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public File getPIDDir() { return _pidDir; }
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/**
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* Where the router keeps its log directory.
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* Applications should not use this.
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* The same as the config dir for now.
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* (i.e. ~/.i2p, NOT ~/.i2p/logs)
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* @since 0.7.6
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* @return dir constant for the life of the context
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*/
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public File getLogDir() { return _logDir; }
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/**
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* Where applications may store data.
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* The same as the config dir for now, but may change in the future.
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* Apps should be careful not to overwrite router files.
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* @since 0.7.6
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* @return dir constant for the life of the context
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*/
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public File getAppDir() { return _appDir; }
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/**
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* Where anybody may store temporary data.
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* This is a directory created in the system temp dir on the
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* first call in this context, and is deleted on JVM exit.
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* Applications should create their own directory inside this directory
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* to avoid collisions with other apps.
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* @since 0.7.6
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* @return dir constant for the life of the context
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*/
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public File getTempDir() {
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// fixme don't synchronize every time
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synchronized (this) {
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if (_tmpDir == null) {
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String d = getProperty("i2p.dir.temp", System.getProperty("java.io.tmpdir"));
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// our random() probably isn't warmed up yet
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String f = "i2p-" + Math.abs((new java.util.Random()).nextInt()) + ".tmp";
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_tmpDir = new File(d, f);
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if (_tmpDir.exists()) {
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// good or bad ?
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} else if (_tmpDir.mkdir()) {
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_tmpDir.deleteOnExit();
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} else {
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System.err.println("Could not create temp dir " + _tmpDir.getAbsolutePath());
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_tmpDir = new File(_routerDir, "tmp");
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_tmpDir.mkdir();
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}
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}
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}
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return _tmpDir;
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}
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/** don't rely on deleteOnExit() */
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public void deleteTempDir() {
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synchronized (this) {
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if (_tmpDir != null) {
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FileUtil.rmdir(_tmpDir, false);
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_tmpDir = null;
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}
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}
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}
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/**
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* Access the configuration attributes of this context, using properties
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* provided during the context construction, or falling back on
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* System.getProperty if no properties were provided during construction
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* (or the specified prop wasn't included).
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*
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*/
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public String getProperty(String propName) {
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if (_overrideProps != null) {
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if (_overrideProps.containsKey(propName))
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return _overrideProps.getProperty(propName);
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}
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return System.getProperty(propName);
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}
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/**
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* Access the configuration attributes of this context, using properties
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* provided during the context construction, or falling back on
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* System.getProperty if no properties were provided during construction
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* (or the specified prop wasn't included).
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*
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*/
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public String getProperty(String propName, String defaultValue) {
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if (_overrideProps != null) {
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if (_overrideProps.containsKey(propName))
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return _overrideProps.getProperty(propName, defaultValue);
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}
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return System.getProperty(propName, defaultValue);
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}
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/**
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* Return an int with an int default
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*/
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public int getProperty(String propName, int defaultVal) {
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String val = null;
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if (_overrideProps != null) {
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val = _overrideProps.getProperty(propName);
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if (val == null)
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val = System.getProperty(propName);
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}
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int ival = defaultVal;
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if (val != null) {
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try {
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ival = Integer.parseInt(val);
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} catch (NumberFormatException nfe) {}
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}
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return ival;
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}
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/**
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* Return a boolean with a boolean default
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* @since 0.7.12
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*/
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public boolean getProperty(String propName, boolean defaultVal) {
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String val = getProperty(propName);
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if (val == null)
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return defaultVal;
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return Boolean.valueOf(val).booleanValue();
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}
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/**
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* Default false
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* @since 0.7.12
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*/
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public boolean getBooleanProperty(String propName) {
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return Boolean.valueOf(getProperty(propName)).booleanValue();
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}
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/**
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* @since 0.7.12
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*/
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public boolean getBooleanPropertyDefaultTrue(String propName) {
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return getProperty(propName, true);
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}
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/**
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* Access the configuration attributes of this context, listing the properties
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* provided during the context construction, as well as the ones included in
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* System.getProperties.
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*
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* @return set of Strings containing the names of defined system properties
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*/
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public Set getPropertyNames() {
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Set names = new HashSet(System.getProperties().keySet());
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if (_overrideProps != null)
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names.addAll(_overrideProps.keySet());
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return names;
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}
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/**
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* The statistics component with which we can track various events
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* over time.
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*/
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public StatManager statManager() {
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if (!_statManagerInitialized)
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initializeStatManager();
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return _statManager;
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}
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private void initializeStatManager() {
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synchronized (this) {
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if (_statManager == null)
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_statManager = new StatManager(this);
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_statManagerInitialized = true;
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}
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}
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/**
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* The session key manager which coordinates the sessionKey / sessionTag
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* data. This component allows transparent operation of the
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* ElGamal/AES+SessionTag algorithm, and contains all of the session tags
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* for one particular application.
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*
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* This is deprecated for client use, it should be used only by the router
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* as its own key manager. Not that clients are doing end-to-end crypto anyway.
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*
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* For client crypto within the router,
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* use RouterContext.clientManager.getClientSessionKeyManager(dest)
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*
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*/
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public SessionKeyManager sessionKeyManager() {
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if (!_sessionKeyManagerInitialized)
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initializeSessionKeyManager();
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return _sessionKeyManager;
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}
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private void initializeSessionKeyManager() {
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synchronized (this) {
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if (_sessionKeyManager == null)
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//_sessionKeyManager = new PersistentSessionKeyManager(this);
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_sessionKeyManager = new TransientSessionKeyManager(this);
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_sessionKeyManagerInitialized = true;
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}
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}
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/**
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* Pull up the naming service used in this context. The naming service itself
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* works by querying the context's properties, so those props should be
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* specified to customize the naming service exposed.
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|
*/
|
|
public NamingService namingService() {
|
|
if (!_namingServiceInitialized)
|
|
initializeNamingService();
|
|
return _namingService;
|
|
}
|
|
|
|
private void initializeNamingService() {
|
|
synchronized (this) {
|
|
if (_namingService == null) {
|
|
_namingService = NamingService.createInstance(this);
|
|
}
|
|
_namingServiceInitialized = true;
|
|
}
|
|
}
|
|
|
|
/** @deprecated unused */
|
|
public PetNameDB petnameDb() {
|
|
if (!_petnameDbInitialized)
|
|
initializePetnameDb();
|
|
return _petnameDb;
|
|
}
|
|
|
|
/** @deprecated unused */
|
|
private void initializePetnameDb() {
|
|
synchronized (this) {
|
|
if (_petnameDb == null) {
|
|
_petnameDb = new PetNameDB();
|
|
}
|
|
_petnameDbInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* This is the ElGamal engine used within this context. While it doesn't
|
|
* really have anything substantial that is context specific (the algorithm
|
|
* just does the algorithm), it does transparently use the context for logging
|
|
* its performance and activity. In addition, the engine can be swapped with
|
|
* the context's properties (though only someone really crazy should mess with
|
|
* it ;)
|
|
*/
|
|
public ElGamalEngine elGamalEngine() {
|
|
if (!_elGamalEngineInitialized)
|
|
initializeElGamalEngine();
|
|
return _elGamalEngine;
|
|
}
|
|
|
|
private void initializeElGamalEngine() {
|
|
synchronized (this) {
|
|
if (_elGamalEngine == null) {
|
|
if ("off".equals(getProperty("i2p.encryption", "on")))
|
|
_elGamalEngine = new DummyElGamalEngine(this);
|
|
else
|
|
_elGamalEngine = new ElGamalEngine(this);
|
|
}
|
|
_elGamalEngineInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Access the ElGamal/AES+SessionTag engine for this context. The algorithm
|
|
* makes use of the context's sessionKeyManager to coordinate transparent
|
|
* access to the sessionKeys and sessionTags, as well as the context's elGamal
|
|
* engine (which in turn keeps stats, etc).
|
|
*
|
|
*/
|
|
public ElGamalAESEngine elGamalAESEngine() {
|
|
if (!_elGamalAESEngineInitialized)
|
|
initializeElGamalAESEngine();
|
|
return _elGamalAESEngine;
|
|
}
|
|
|
|
private void initializeElGamalAESEngine() {
|
|
synchronized (this) {
|
|
if (_elGamalAESEngine == null)
|
|
_elGamalAESEngine = new ElGamalAESEngine(this);
|
|
_elGamalAESEngineInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Ok, I'll admit it. there is no good reason for having a context specific
|
|
* AES engine. We dont really keep stats on it, since its just too fast to
|
|
* matter. Though for the crazy people out there, we do expose a way to
|
|
* disable it.
|
|
*/
|
|
public AESEngine aes() {
|
|
if (!_AESEngineInitialized)
|
|
initializeAESEngine();
|
|
return _AESEngine;
|
|
}
|
|
|
|
private void initializeAESEngine() {
|
|
synchronized (this) {
|
|
if (_AESEngine == null) {
|
|
if ("off".equals(getProperty("i2p.encryption", "on")))
|
|
_AESEngine = new AESEngine(this);
|
|
else
|
|
_AESEngine = new CryptixAESEngine(this);
|
|
}
|
|
_AESEngineInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Query the log manager for this context, which may in turn have its own
|
|
* set of configuration settings (loaded from the context's properties).
|
|
* Each context's logManager keeps its own isolated set of Log instances with
|
|
* their own log levels, output locations, and rotation configuration.
|
|
*/
|
|
public LogManager logManager() {
|
|
if (!_logManagerInitialized)
|
|
initializeLogManager();
|
|
return _logManager;
|
|
}
|
|
|
|
private void initializeLogManager() {
|
|
synchronized (this) {
|
|
if (_logManager == null)
|
|
_logManager = new LogManager(this);
|
|
_logManagerInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* There is absolutely no good reason to make this context specific,
|
|
* other than for consistency, and perhaps later we'll want to
|
|
* include some stats.
|
|
*/
|
|
public HMACGenerator hmac() {
|
|
if (!_hmacInitialized)
|
|
initializeHMAC();
|
|
return _hmac;
|
|
}
|
|
|
|
private void initializeHMAC() {
|
|
synchronized (this) {
|
|
if (_hmac == null) {
|
|
_hmac= new HMACGenerator(this);
|
|
}
|
|
_hmacInitialized = true;
|
|
}
|
|
}
|
|
|
|
/** @deprecated unused */
|
|
public HMAC256Generator hmac256() {
|
|
if (!_hmac256Initialized)
|
|
initializeHMAC256();
|
|
return _hmac256;
|
|
}
|
|
|
|
/** @deprecated unused */
|
|
private void initializeHMAC256() {
|
|
synchronized (this) {
|
|
if (_hmac256 == null) {
|
|
_hmac256 = new HMAC256Generator(this);
|
|
}
|
|
_hmac256Initialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Our SHA256 instance (see the hmac discussion for why its context specific)
|
|
*
|
|
*/
|
|
public SHA256Generator sha() {
|
|
if (!_shaInitialized)
|
|
initializeSHA();
|
|
return _sha;
|
|
}
|
|
|
|
private void initializeSHA() {
|
|
synchronized (this) {
|
|
if (_sha == null)
|
|
_sha= new SHA256Generator(this);
|
|
_shaInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Our DSA engine (see HMAC and SHA above)
|
|
*
|
|
*/
|
|
public DSAEngine dsa() {
|
|
if (!_dsaInitialized)
|
|
initializeDSA();
|
|
return _dsa;
|
|
}
|
|
|
|
private void initializeDSA() {
|
|
synchronized (this) {
|
|
if (_dsa == null) {
|
|
if ("off".equals(getProperty("i2p.encryption", "on")))
|
|
_dsa = new DummyDSAEngine(this);
|
|
else
|
|
_dsa = new DSAEngine(this);
|
|
}
|
|
_dsaInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Component to generate ElGamal, DSA, and Session keys. For why it is in
|
|
* the appContext, see the DSA, HMAC, and SHA comments above.
|
|
*/
|
|
public KeyGenerator keyGenerator() {
|
|
if (!_keyGeneratorInitialized)
|
|
initializeKeyGenerator();
|
|
return _keyGenerator;
|
|
}
|
|
|
|
private void initializeKeyGenerator() {
|
|
synchronized (this) {
|
|
if (_keyGenerator == null)
|
|
_keyGenerator = new KeyGenerator(this);
|
|
_keyGeneratorInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* The context's synchronized clock, which is kept context specific only to
|
|
* enable simulators to play with clock skew among different instances.
|
|
*
|
|
*/
|
|
public Clock clock() { // overridden in RouterContext
|
|
if (!_clockInitialized)
|
|
initializeClock();
|
|
return _clock;
|
|
}
|
|
|
|
protected void initializeClock() { // overridden in RouterContext
|
|
synchronized (this) {
|
|
if (_clock == null)
|
|
_clock = new Clock(this);
|
|
_clockInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Determine how much do we want to mess with the keys to turn them
|
|
* into something we can route. This is context specific because we
|
|
* may want to test out how things react when peers don't agree on
|
|
* how to skew.
|
|
*
|
|
*/
|
|
public RoutingKeyGenerator routingKeyGenerator() {
|
|
if (!_routingKeyGeneratorInitialized)
|
|
initializeRoutingKeyGenerator();
|
|
return _routingKeyGenerator;
|
|
}
|
|
|
|
private void initializeRoutingKeyGenerator() {
|
|
synchronized (this) {
|
|
if (_routingKeyGenerator == null)
|
|
_routingKeyGenerator = new RoutingKeyGenerator(this);
|
|
_routingKeyGeneratorInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Basic hash map
|
|
*/
|
|
public KeyRing keyRing() {
|
|
if (!_keyRingInitialized)
|
|
initializeKeyRing();
|
|
return _keyRing;
|
|
}
|
|
|
|
protected void initializeKeyRing() {
|
|
synchronized (this) {
|
|
if (_keyRing == null)
|
|
_keyRing = new KeyRing();
|
|
_keyRingInitialized = true;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* [insert snarky comment here]
|
|
*
|
|
*/
|
|
public RandomSource random() {
|
|
if (!_randomInitialized)
|
|
initializeRandom();
|
|
return _random;
|
|
}
|
|
|
|
private void initializeRandom() {
|
|
synchronized (this) {
|
|
if (_random == null) {
|
|
//if (true)
|
|
_random = new FortunaRandomSource(this);
|
|
//else if ("true".equals(getProperty("i2p.weakPRNG", "false")))
|
|
// _random = new DummyPooledRandomSource(this);
|
|
//else
|
|
// _random = new PooledRandomSource(this);
|
|
}
|
|
_randomInitialized = true;
|
|
}
|
|
}
|
|
|
|
public void addShutdownTask(Runnable task) {
|
|
_shutdownTasks.add(task);
|
|
}
|
|
|
|
public Set<Runnable> getShutdownTasks() {
|
|
return new HashSet(_shutdownTasks);
|
|
}
|
|
|
|
/**
|
|
* Use this instead of context instanceof RouterContext
|
|
* @since 0.7.9
|
|
*/
|
|
public boolean isRouterContext() {
|
|
return false;
|
|
}
|
|
}
|