Draft implementation of PreparedStatementsCompilationPhantomCache

This commit is contained in:
Andrew Golovashevich 2025-03-25 05:28:11 +03:00
parent 0c553c7c3d
commit 356c36a514
3 changed files with 210 additions and 3 deletions

View File

@ -30,14 +30,18 @@ internal abstract class PreparedStatementWrapper(protected val _orig: PreparedSt
private val _refcnt = CloseableReferenceCounter("This prepared statement was returned to pool to be used in future")
private var _currentQuery: ResultSetWrapper? = null
private var _closeOnCompletion: Boolean = false
private var _isClosed = false
protected abstract fun _onClose()
override fun close() {
this._refcnt.close("Can't close prepared statement while it's in use")
this._isClosed = true
this._onClose()
}
override fun isClosed(): Boolean = this._isClosed
override fun closeOnCompletion() =
this._refcnt.withRef { this._closeOnCompletion = true }
@ -344,9 +348,6 @@ internal abstract class PreparedStatementWrapper(protected val _orig: PreparedSt
override fun getResultSetHoldability(): Int =
this._refcnt.withRef(this._orig::getResultSetHoldability)
override fun isClosed(): Boolean =
this._refcnt.withRef(this._orig::isClosed)
override fun setPoolable(poolable: Boolean) {
if (poolable)
return

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@ -0,0 +1,132 @@
package ru.langrafhomyak.db.jdbc_resources_manager
import java.sql.Connection
import java.sql.PreparedStatement
import java.util.concurrent.locks.ReentrantLock
import kotlin.concurrent.withLock
import kotlin.properties.ReadOnlyProperty
import kotlin.reflect.KProperty
import org.intellij.lang.annotations.Language
public class PreparedStatementsCompilationPhantomCache(
@Language("SQL")
private val _statementSource: String
) : ReadOnlyProperty<Any?, PreparedStatementsCompilationPhantomCache.Accessor> {
private val _mapSync = ReentrantLock()
private val _map = arrayOfNulls<ConnectionsMapNode>(7)
private var _connectionsCount = 0
override fun getValue(thisRef: Any?, property: KProperty<*>): Accessor =
this.Accessor()
public inner class Accessor {
public operator fun invoke(connection: Connection): PreparedStatement =
this@PreparedStatementsCompilationPhantomCache.getForConnection(connection)
}
private class ConnectionsMapNode(
owner: PreparedStatementsCompilationPhantomCache,
connection: Connection,
@JvmField
var nextNode: ConnectionsMapNode?,
@JvmField
val connectionHashCode: Int
) {
@JvmField
val connection = owner.BoundPhantomReference(connection, this)
@JvmField
var statement: PreparedStatement? = null
@JvmField
val lock = ReentrantLock()
@JvmField
var wrapper: BoundPreparedStatementWrapper? = null
}
private fun _resizeIfNeeded() {
if (this._connectionsCount / 0.75 > this._map.size) {
val newMap = arrayOfNulls<ConnectionsMapNode>(this._map.size * 2)
for (s in this._map) {
var p = s
while (p != null) {
val i = Integer.remainderUnsigned(p.connectionHashCode, this._map.size)
val n = p.nextNode
p.nextNode = newMap[i]
newMap[i] = p
p = n
}
}
}
}
private fun _getNode(connection: Connection): ConnectionsMapNode {
val newNode = this._mapSync.withLock {
val connectionHashCode = connection.hashCode()
val index = Integer.remainderUnsigned(connectionHashCode, this._map.size)
var p = this._map[index]
while (p != null) {
if (p.connection.refersTo(connection))
return@_getNode p
p = p.nextNode
}
val node = ConnectionsMapNode(this, connection, this._map[index], connectionHashCode)
this._map[index] = node
this._connectionsCount++
this._resizeIfNeeded()
return@withLock node
}
newNode.statement = connection.prepareStatement(this._statementSource)
return newNode
}
public fun getForConnection(connection: Connection): PreparedStatement {
val node = this._getNode(connection)
val wrapper: PreparedStatement
node.lock.withLock {
if (node.wrapper != null)
throw IllegalStateException("Requested prepared statement already used by this connection (or not closed after using)")
wrapper = BoundPreparedStatementWrapper(node.statement!!, node)
node.wrapper = wrapper
}
return wrapper
}
private inner class BoundPhantomReference(
ref: Connection,
private val descriptor: ConnectionsMapNode
) : _PhantomCacheCleanup.CleanablePhantomReference<Connection>(ref) {
override fun cleanup() {
this@PreparedStatementsCompilationPhantomCache._mapSync.withLock {
val i = Integer.remainderUnsigned(this.descriptor.connectionHashCode, this@PreparedStatementsCompilationPhantomCache._map.size)
var r = this@PreparedStatementsCompilationPhantomCache._map[i]
if (r === this.descriptor) {
this@PreparedStatementsCompilationPhantomCache._map[i] = r.nextNode
}
while (r != null) {
val n = r.nextNode
if (n === this.descriptor) {
r.nextNode = n.nextNode
break
}
r = n
}
}
}
}
private class BoundPreparedStatementWrapper(orig: PreparedStatement, private val _node: ConnectionsMapNode) : PreparedStatementWrapper(orig) {
override fun _onClose() {
this._orig.clearParameters()
this._orig.clearBatch()
this._orig.clearWarnings()
this._orig.close()
this._node.lock.withLock {
this._node.wrapper = null
}
}
}
}

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@ -0,0 +1,74 @@
package ru.langrafhomyak.db.jdbc_resources_manager
import java.lang.ref.PhantomReference
import java.lang.ref.ReferenceQueue
internal object _PhantomCacheCleanup {
private val _thread: Thread
@Suppress("MAY_BE_CONST")
private val _virtualThreadProperty = "ru.langrafhomyak.db.jdbc_resources_manager._PhantomCacheCleanup.USE_VIRTUAL_THREAD"
private val _referenceQueue = ReferenceQueue<Any?>()
init {
if (this._isVirtualThreadsSupported() && System.getProperty(this._virtualThreadProperty)?.lowercase() != "false")
this._thread = this._startVirtualThread()
else
this._thread = this._startSystemThreadBeforeJ21()
}
private fun _isVirtualThreadsSupported(): Boolean {
try {
Thread::ofVirtual
return true
} catch (_: NoSuchMethodError) {
return false
}
}
@Suppress("MAY_BE_CONST")
private val _threadName = "ru.langrafhomyak.db.jdbc_resources_manager._PhantomCacheCleanup"
private fun _startSystemThreadBeforeJ21(): Thread {
val t = Thread(
null,
CleanupRoutine, this._threadName,
1024 * 16, false
)
t.isDaemon = true
t.priority = Thread.MIN_PRIORITY + 1
t.start()
return t
}
private fun _startVirtualThread(): Thread {
val b = Thread.ofVirtual()
b.name(this._threadName)
return b.start(CleanupRoutine)
}
private object CleanupRoutine : Runnable {
override fun run() {
while (true) {
// (Thread.currentThread() as? InnocuousThread)?.eraseThreadLocals()
try {
(this@_PhantomCacheCleanup._referenceQueue.remove(60 * 60) as CleanablePhantomReference<*>).cleanup()
} /* catch (_: LinkageError) {
return
} */ catch (_: InterruptedException) {
return
} catch (e: Throwable) {
e.printStackTrace()
}
}
}
}
abstract class CleanablePhantomReference<T>(ref: T) : PhantomReference<T>(ref, this@_PhantomCacheCleanup._referenceQueue) {
abstract fun cleanup()
}
}