/* Copyright (c) 2001-2010, The HSQL Development Group * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions are met: * * Redistributions of source code must retain the above copyright notice, this * list of conditions and the following disclaimer. * * Redistributions in binary form must reproduce the above copyright notice, * this list of conditions and the following disclaimer in the documentation * and/or other materials provided with the distribution. * * Neither the name of the HSQL Development Group nor the names of its * contributors may be used to endorse or promote products derived from this * software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL HSQL DEVELOPMENT GROUP, HSQLDB.ORG, * OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ package org.hsqldb.persist; import java.io.IOException; import org.hsqldb.Database; import org.hsqldb.HsqlException; import org.hsqldb.Row; import org.hsqldb.RowAVL; import org.hsqldb.RowAVLDisk; import org.hsqldb.RowAction; import org.hsqldb.Session; import org.hsqldb.Table; import org.hsqldb.TransactionManager; import org.hsqldb.error.Error; import org.hsqldb.error.ErrorCode; import org.hsqldb.index.Index; import org.hsqldb.index.IndexAVL; import org.hsqldb.index.NodeAVL; import org.hsqldb.lib.ArrayUtil; import org.hsqldb.rowio.RowInputInterface; import org.hsqldb.rowio.RowOutputInterface; /* * Implementation of PersistentStore for CACHED tables. * * @author Fred Toussi (fredt@users dot sourceforge.net) * @version 1.9.0 * @since 1.9.0 */ public class RowStoreAVLDisk extends RowStoreAVL { DataFileCache cache; RowOutputInterface rowOut; Database database; public RowStoreAVLDisk(PersistentStoreCollection manager, DataFileCache cache, Table table) { this.database = table.database; this.manager = manager; this.table = table; this.indexList = table.getIndexList(); this.accessorList = new CachedObject[indexList.length]; this.cache = cache; if (cache != null) { rowOut = cache.rowOut.duplicate(); } manager.setStore(table, this); } public boolean isMemory() { return false; } public int getAccessCount() { return cache.getAccessCount(); } public void set(CachedObject object) { Row row = ((Row) object); database.txManager.setTransactionInfo(row); } public CachedObject get(int key) { CachedObject object = cache.get(key, this, false); return object; } public CachedObject getKeep(int key) { CachedObject object = cache.get(key, this, true); return object; } public CachedObject get(int key, boolean keep) { CachedObject object = cache.get(key, this, keep); return object; } public CachedObject get(CachedObject object, boolean keep) { object = cache.get(object, this, keep); return object; } public int getStorageSize(int i) { return cache.get(i, this, false).getStorageSize(); } public void add(CachedObject object) { int size = object.getRealSize(rowOut); size = rowOut.getStorageSize(size); object.setStorageSize(size); cache.add(object); } public CachedObject get(RowInputInterface in) { try { return new RowAVLDisk(table, in); } catch (IOException e) { throw Error.error(ErrorCode.DATA_FILE_ERROR, e); } } public CachedObject getNewInstance(int size) { return null; } public CachedObject getNewCachedObject(Session session, Object object) { Row row = new RowAVLDisk(table, (Object[]) object); add(row); if (session != null) { RowAction action = new RowAction(session, table, RowAction.ACTION_INSERT, row, null); row.rowAction = action; } return row; } public void indexRow(Session session, Row row) { int i = 0; try { for (; i < indexList.length; i++) { indexList[i].insert(session, this, row); } } catch (HsqlException e) { // unique index violation - rollback insert for (--i; i >= 0; i--) { indexList[i].delete(session, this, row); } remove(row.getPos()); database.txManager.removeTransactionInfo(row); throw e; } } public void removeAll() { elementCount = 0; ArrayUtil.fillArray(accessorList, null); } public void remove(int i) { cache.remove(i, this); } public void removePersistence(int i) {} public void release(int i) { cache.release(i); } public void commitPersistence(CachedObject row) {} public void commitRow(Session session, Row row, int changeAction, int txModel) { Object[] data = row.getData(); switch (changeAction) { case RowAction.ACTION_DELETE : database.logger.writeDeleteStatement(session, (Table) table, data); if (txModel == TransactionManager.LOCKS) { remove(row.getPos()); } break; case RowAction.ACTION_INSERT : database.logger.writeInsertStatement(session, (Table) table, data); break; case RowAction.ACTION_INSERT_DELETE : // INSERT + DELETE if (txModel == TransactionManager.LOCKS) { remove(row.getPos()); } break; case RowAction.ACTION_DELETE_FINAL : delete(session, row); // remove after delete database.txManager.removeTransactionInfo(row); remove(row.getPos()); break; } } public void rollbackRow(Session session, Row row, int changeAction, int txModel) { switch (changeAction) { case RowAction.ACTION_DELETE : if (txModel == TransactionManager.LOCKS) { row = (Row) get(row, true); ((RowAVL) row).setNewNodes(); row.keepInMemory(false); indexRow(session, row); } break; case RowAction.ACTION_INSERT : if (txModel == TransactionManager.LOCKS) { delete(session, row); remove(row.getPos()); } break; case RowAction.ACTION_INSERT_DELETE : // INSERT + DELETE if (txModel == TransactionManager.LOCKS) { remove(row.getPos()); } break; } } // public DataFileCache getCache() { return cache; } public void setCache(DataFileCache cache) { this.cache = cache; } public void release() { ArrayUtil.fillArray(accessorList, null); cache = null; } public CachedObject getAccessor(Index key) { NodeAVL node = (NodeAVL) accessorList[key.getPosition()]; if (node == null) { return null; } if (!node.isInMemory()) { RowAVL row = (RowAVL) get(node.getPos(), false); node = row.getNode(key.getPosition()); accessorList[key.getPosition()] = node; } return node; } public void setAccessor(Index key, CachedObject accessor) { Index index = (Index) key; accessorList[index.getPosition()] = accessor; } public void setAccessor(Index key, int accessor) { CachedObject object = get(accessor, false); if (object != null) { NodeAVL node = ((RowAVL) object).getNode(key.getPosition()); object = node; } setAccessor(key, object); } public void resetAccessorKeys(Index[] keys) { if (indexList.length == 0 || indexList[0] == null || accessorList[0] == null) { indexList = keys; accessorList = new CachedObject[indexList.length]; return; } throw Error.runtimeError(ErrorCode.U_S0500, "RowStoreAVLDisk"); } public int elementCount(Session session) { Index index = this.indexList[0]; if (elementCount < 0) { if (index == null) { elementCount = 0; } else { elementCount = ((IndexAVL) index).getNodeCount(session, this); } } if (session != null && index != null && database.txManager.getTransactionControl() != TransactionManager.LOCKS) { return ((IndexAVL) index).getNodeCount(session, this); } return elementCount; } public void lock() { cache.writeLock.lock(); } public void unlock() { cache.writeLock.unlock(); } }