001/**
002 * Licensed to the Apache Software Foundation (ASF) under one or more
003 * contributor license agreements.  See the NOTICE file distributed with
004 * this work for additional information regarding copyright ownership.
005 * The ASF licenses this file to You under the Apache License, Version 2.0
006 * (the "License"); you may not use this file except in compliance with
007 * the License.  You may obtain a copy of the License at
008 *
009 *      http://www.apache.org/licenses/LICENSE-2.0
010 *
011 * Unless required by applicable law or agreed to in writing, software
012 * distributed under the License is distributed on an "AS IS" BASIS,
013 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
014 * See the License for the specific language governing permissions and
015 * limitations under the License.
016 */
017package org.apache.activemq.store.kahadb.disk.journal;
018
019import java.io.EOFException;
020import java.io.File;
021import java.io.FileNotFoundException;
022import java.io.FilenameFilter;
023import java.io.IOException;
024import java.io.RandomAccessFile;
025import java.io.UnsupportedEncodingException;
026import java.nio.ByteBuffer;
027import java.nio.channels.ClosedByInterruptException;
028import java.nio.channels.FileChannel;
029import java.util.Collections;
030import java.util.HashMap;
031import java.util.Iterator;
032import java.util.LinkedHashMap;
033import java.util.LinkedList;
034import java.util.Map;
035import java.util.Set;
036import java.util.TreeMap;
037import java.util.concurrent.ConcurrentHashMap;
038import java.util.concurrent.Executors;
039import java.util.concurrent.Future;
040import java.util.concurrent.ScheduledExecutorService;
041import java.util.concurrent.ScheduledFuture;
042import java.util.concurrent.ThreadFactory;
043import java.util.concurrent.TimeUnit;
044import java.util.concurrent.atomic.AtomicLong;
045import java.util.concurrent.atomic.AtomicReference;
046import java.util.zip.Adler32;
047import java.util.zip.Checksum;
048
049import org.apache.activemq.store.kahadb.disk.util.LinkedNode;
050import org.apache.activemq.store.kahadb.disk.util.LinkedNodeList;
051import org.apache.activemq.store.kahadb.disk.util.Sequence;
052import org.apache.activemq.util.ByteSequence;
053import org.apache.activemq.util.DataByteArrayInputStream;
054import org.apache.activemq.util.DataByteArrayOutputStream;
055import org.apache.activemq.util.IOHelper;
056import org.apache.activemq.util.RecoverableRandomAccessFile;
057import org.apache.activemq.util.ThreadPoolUtils;
058import org.slf4j.Logger;
059import org.slf4j.LoggerFactory;
060
061/**
062 * Manages DataFiles
063 */
064public class Journal {
065    public static final String CALLER_BUFFER_APPENDER = "org.apache.kahadb.journal.CALLER_BUFFER_APPENDER";
066    public static final boolean callerBufferAppender = Boolean.parseBoolean(System.getProperty(CALLER_BUFFER_APPENDER, "false"));
067
068    private static final int PREALLOC_CHUNK_SIZE = 1024*1024;
069
070    // ITEM_HEAD_SPACE = length + type+ reserved space + SOR
071    public static final int RECORD_HEAD_SPACE = 4 + 1;
072
073    public static final byte USER_RECORD_TYPE = 1;
074    public static final byte BATCH_CONTROL_RECORD_TYPE = 2;
075    // Batch Control Item holds a 4 byte size of the batch and a 8 byte checksum of the batch.
076    public static final byte[] BATCH_CONTROL_RECORD_MAGIC = bytes("WRITE BATCH");
077    public static final int BATCH_CONTROL_RECORD_SIZE = RECORD_HEAD_SPACE + BATCH_CONTROL_RECORD_MAGIC.length + 4 + 8;
078    public static final byte[] BATCH_CONTROL_RECORD_HEADER = createBatchControlRecordHeader();
079    public static final byte[] EMPTY_BATCH_CONTROL_RECORD = createEmptyBatchControlRecordHeader();
080    public static final int EOF_INT = ByteBuffer.wrap(new byte[]{'-', 'q', 'M', 'a'}).getInt();
081    public static final byte EOF_EOT = '4';
082    public static final byte[] EOF_RECORD = createEofBatchAndLocationRecord();
083
084    private ScheduledExecutorService scheduler;
085
086    // tackle corruption when checksum is disabled or corrupt with zeros, minimize data loss
087    public void corruptRecoveryLocation(Location recoveryPosition) throws IOException {
088        DataFile dataFile = getDataFile(recoveryPosition);
089        // with corruption on recovery we have no faith in the content - slip to the next batch record or eof
090        DataFileAccessor reader = accessorPool.openDataFileAccessor(dataFile);
091        try {
092            RandomAccessFile randomAccessFile = reader.getRaf().getRaf();
093            randomAccessFile.seek(recoveryPosition.getOffset() + 1);
094            byte[] data = new byte[getWriteBatchSize()];
095            ByteSequence bs = new ByteSequence(data, 0, randomAccessFile.read(data));
096            int nextOffset = 0;
097            if (findNextBatchRecord(bs, randomAccessFile) >= 0) {
098                nextOffset = Math.toIntExact(randomAccessFile.getFilePointer() - bs.remaining());
099            } else {
100                nextOffset = Math.toIntExact(randomAccessFile.length());
101            }
102            Sequence sequence = new Sequence(recoveryPosition.getOffset(), nextOffset - 1);
103            LOG.warn("Corrupt journal records found in '{}' between offsets: {}", dataFile.getFile(), sequence);
104
105            // skip corruption on getNextLocation
106            recoveryPosition.setOffset(nextOffset);
107            recoveryPosition.setSize(-1);
108
109            dataFile.corruptedBlocks.add(sequence);
110        } catch (IOException e) {
111        } finally {
112            accessorPool.closeDataFileAccessor(reader);
113        }
114    }
115
116    public DataFileAccessorPool getAccessorPool() {
117        return accessorPool;
118    }
119
120    public void allowIOResumption() {
121        if (appender instanceof DataFileAppender) {
122            DataFileAppender dataFileAppender = (DataFileAppender)appender;
123            dataFileAppender.shutdown = false;
124        }
125    }
126
127    public void setCleanupInterval(long cleanupInterval) {
128        this.cleanupInterval = cleanupInterval;
129    }
130
131    public long getCleanupInterval() {
132        return cleanupInterval;
133    }
134
135    public enum PreallocationStrategy {
136        SPARSE_FILE,
137        OS_KERNEL_COPY,
138        ZEROS,
139        CHUNKED_ZEROS;
140    }
141
142    public enum PreallocationScope {
143        ENTIRE_JOURNAL,
144        ENTIRE_JOURNAL_ASYNC,
145        NONE;
146    }
147
148    public enum JournalDiskSyncStrategy {
149        ALWAYS,
150        PERIODIC,
151        NEVER;
152    }
153
154    private static byte[] createBatchControlRecordHeader() {
155        try (DataByteArrayOutputStream os = new DataByteArrayOutputStream();) {
156            os.writeInt(BATCH_CONTROL_RECORD_SIZE);
157            os.writeByte(BATCH_CONTROL_RECORD_TYPE);
158            os.write(BATCH_CONTROL_RECORD_MAGIC);
159            ByteSequence sequence = os.toByteSequence();
160            sequence.compact();
161            return sequence.getData();
162        } catch (IOException e) {
163            throw new RuntimeException("Could not create batch control record header.", e);
164        }
165    }
166
167    private static byte[] createEmptyBatchControlRecordHeader() {
168        try (DataByteArrayOutputStream os = new DataByteArrayOutputStream();) {
169            os.writeInt(BATCH_CONTROL_RECORD_SIZE);
170            os.writeByte(BATCH_CONTROL_RECORD_TYPE);
171            os.write(BATCH_CONTROL_RECORD_MAGIC);
172            os.writeInt(0);
173            os.writeLong(0l);
174            ByteSequence sequence = os.toByteSequence();
175            sequence.compact();
176            return sequence.getData();
177        } catch (IOException e) {
178            throw new RuntimeException("Could not create empty batch control record header.", e);
179        }
180    }
181
182    private static byte[] createEofBatchAndLocationRecord() {
183        try (DataByteArrayOutputStream os = new DataByteArrayOutputStream();) {
184            os.writeInt(EOF_INT);
185            os.writeByte(EOF_EOT);
186            ByteSequence sequence = os.toByteSequence();
187            sequence.compact();
188            return sequence.getData();
189        } catch (IOException e) {
190            throw new RuntimeException("Could not create eof header.", e);
191        }
192    }
193
194    public static final String DEFAULT_DIRECTORY = ".";
195    public static final String DEFAULT_ARCHIVE_DIRECTORY = "data-archive";
196    public static final String DEFAULT_FILE_PREFIX = "db-";
197    public static final String DEFAULT_FILE_SUFFIX = ".log";
198    public static final int DEFAULT_MAX_FILE_LENGTH = 1024 * 1024 * 32;
199    public static final int DEFAULT_CLEANUP_INTERVAL = 1000 * 30;
200    public static final int DEFAULT_MAX_WRITE_BATCH_SIZE = 1024 * 1024 * 4;
201
202    private static final Logger LOG = LoggerFactory.getLogger(Journal.class);
203
204    protected final Map<WriteKey, WriteCommand> inflightWrites = new ConcurrentHashMap<WriteKey, WriteCommand>();
205
206    protected File directory = new File(DEFAULT_DIRECTORY);
207    protected File directoryArchive;
208    private boolean directoryArchiveOverridden = false;
209
210    protected String filePrefix = DEFAULT_FILE_PREFIX;
211    protected String fileSuffix = DEFAULT_FILE_SUFFIX;
212    protected boolean started;
213
214    protected int maxFileLength = DEFAULT_MAX_FILE_LENGTH;
215    protected int writeBatchSize = DEFAULT_MAX_WRITE_BATCH_SIZE;
216
217    protected FileAppender appender;
218    protected DataFileAccessorPool accessorPool;
219
220    protected Map<Integer, DataFile> fileMap = new HashMap<Integer, DataFile>();
221    protected Map<File, DataFile> fileByFileMap = new LinkedHashMap<File, DataFile>();
222    protected LinkedNodeList<DataFile> dataFiles = new LinkedNodeList<DataFile>();
223
224    protected final AtomicReference<Location> lastAppendLocation = new AtomicReference<Location>();
225    protected ScheduledFuture cleanupTask;
226    protected AtomicLong totalLength = new AtomicLong();
227    protected boolean archiveDataLogs;
228    private ReplicationTarget replicationTarget;
229    protected boolean checksum;
230    protected boolean checkForCorruptionOnStartup;
231    protected boolean enableAsyncDiskSync = true;
232    private int nextDataFileId = 1;
233    private Object dataFileIdLock = new Object();
234    private final AtomicReference<DataFile> currentDataFile = new AtomicReference<>(null);
235    private volatile DataFile nextDataFile;
236
237    protected PreallocationScope preallocationScope = PreallocationScope.ENTIRE_JOURNAL;
238    protected PreallocationStrategy preallocationStrategy = PreallocationStrategy.SPARSE_FILE;
239    private File osKernelCopyTemplateFile = null;
240    private ByteBuffer preAllocateDirectBuffer = null;
241    private long cleanupInterval = DEFAULT_CLEANUP_INTERVAL;
242
243    protected JournalDiskSyncStrategy journalDiskSyncStrategy = JournalDiskSyncStrategy.ALWAYS;
244
245    public interface DataFileRemovedListener {
246        void fileRemoved(DataFile datafile);
247    }
248
249    private DataFileRemovedListener dataFileRemovedListener;
250
251    public synchronized void start() throws IOException {
252        if (started) {
253            return;
254        }
255
256        long start = System.currentTimeMillis();
257        accessorPool = new DataFileAccessorPool(this);
258        started = true;
259
260        appender = callerBufferAppender ? new CallerBufferingDataFileAppender(this) : new DataFileAppender(this);
261
262        File[] files = directory.listFiles(new FilenameFilter() {
263            @Override
264            public boolean accept(File dir, String n) {
265                return dir.equals(directory) && n.startsWith(filePrefix) && n.endsWith(fileSuffix);
266            }
267        });
268
269        if (files != null) {
270            for (File file : files) {
271                try {
272                    String n = file.getName();
273                    String numStr = n.substring(filePrefix.length(), n.length()-fileSuffix.length());
274                    int num = Integer.parseInt(numStr);
275                    DataFile dataFile = new DataFile(file, num);
276                    fileMap.put(dataFile.getDataFileId(), dataFile);
277                    totalLength.addAndGet(dataFile.getLength());
278                } catch (NumberFormatException e) {
279                    // Ignore file that do not match the pattern.
280                }
281            }
282
283            // Sort the list so that we can link the DataFiles together in the
284            // right order.
285            LinkedList<DataFile> l = new LinkedList<>(fileMap.values());
286            Collections.sort(l);
287            for (DataFile df : l) {
288                if (df.getLength() == 0) {
289                    // possibly the result of a previous failed write
290                    LOG.info("ignoring zero length, partially initialised journal data file: " + df);
291                    continue;
292                } else if (l.getLast().equals(df) && isUnusedPreallocated(df)) {
293                    continue;
294                }
295                dataFiles.addLast(df);
296                fileByFileMap.put(df.getFile(), df);
297
298                if( isCheckForCorruptionOnStartup() ) {
299                    lastAppendLocation.set(recoveryCheck(df));
300                }
301            }
302        }
303
304        if (preallocationScope != PreallocationScope.NONE) {
305            switch (preallocationStrategy) {
306                case SPARSE_FILE:
307                    break;
308                case OS_KERNEL_COPY: {
309                    osKernelCopyTemplateFile = createJournalTemplateFile();
310                }
311                break;
312                case CHUNKED_ZEROS: {
313                    preAllocateDirectBuffer = allocateDirectBuffer(PREALLOC_CHUNK_SIZE);
314                }
315                break;
316                case ZEROS: {
317                    preAllocateDirectBuffer = allocateDirectBuffer(getMaxFileLength());
318                }
319                break;
320            }
321        }
322        scheduler = Executors.newScheduledThreadPool(1, new ThreadFactory() {
323            @Override
324            public Thread newThread(Runnable r) {
325                Thread schedulerThread = new Thread(r);
326                schedulerThread.setName("ActiveMQ Journal Scheduled executor");
327                schedulerThread.setDaemon(true);
328                return schedulerThread;
329            }
330        });
331
332        // init current write file
333        if (dataFiles.isEmpty()) {
334            nextDataFileId = 1;
335            rotateWriteFile();
336        } else {
337            currentDataFile.set(dataFiles.getTail());
338            nextDataFileId = currentDataFile.get().dataFileId + 1;
339        }
340
341        if( lastAppendLocation.get()==null ) {
342            DataFile df = dataFiles.getTail();
343            lastAppendLocation.set(recoveryCheck(df));
344        }
345
346        // ensure we don't report unused space of last journal file in size metric
347        int lastFileLength = dataFiles.getTail().getLength();
348        if (totalLength.get() > lastFileLength && lastAppendLocation.get().getOffset() > 0) {
349            totalLength.addAndGet(lastAppendLocation.get().getOffset() - lastFileLength);
350        }
351
352        cleanupTask = scheduler.scheduleAtFixedRate(new Runnable() {
353            @Override
354            public void run() {
355                cleanup();
356            }
357        }, cleanupInterval, cleanupInterval, TimeUnit.MILLISECONDS);
358
359        long end = System.currentTimeMillis();
360        LOG.trace("Startup took: "+(end-start)+" ms");
361    }
362
363    private ByteBuffer allocateDirectBuffer(int size) {
364        ByteBuffer buffer = ByteBuffer.allocateDirect(size);
365        buffer.put(EOF_RECORD);
366        return buffer;
367    }
368
369    public void preallocateEntireJournalDataFile(RecoverableRandomAccessFile file) {
370
371        if (PreallocationScope.NONE != preallocationScope) {
372
373            try {
374                if (PreallocationStrategy.OS_KERNEL_COPY == preallocationStrategy) {
375                    doPreallocationKernelCopy(file);
376                } else if (PreallocationStrategy.ZEROS == preallocationStrategy) {
377                    doPreallocationZeros(file);
378                } else if (PreallocationStrategy.CHUNKED_ZEROS == preallocationStrategy) {
379                    doPreallocationChunkedZeros(file);
380                } else {
381                    doPreallocationSparseFile(file);
382                }
383            } catch (Throwable continueWithNoPrealloc) {
384                // error on preallocation is non fatal, and we don't want to leak the journal handle
385                LOG.error("cound not preallocate journal data file", continueWithNoPrealloc);
386            }
387        }
388    }
389
390    private void doPreallocationSparseFile(RecoverableRandomAccessFile file) {
391        final ByteBuffer journalEof = ByteBuffer.wrap(EOF_RECORD);
392        try {
393            FileChannel channel = file.getChannel();
394            channel.position(0);
395            channel.write(journalEof);
396            channel.position(maxFileLength - 5);
397            journalEof.rewind();
398            channel.write(journalEof);
399            channel.force(false);
400            channel.position(0);
401        } catch (ClosedByInterruptException ignored) {
402            LOG.trace("Could not preallocate journal file with sparse file", ignored);
403        } catch (IOException e) {
404            LOG.error("Could not preallocate journal file with sparse file", e);
405        }
406    }
407
408    private void doPreallocationZeros(RecoverableRandomAccessFile file) {
409        preAllocateDirectBuffer.rewind();
410        try {
411            FileChannel channel = file.getChannel();
412            channel.write(preAllocateDirectBuffer);
413            channel.force(false);
414            channel.position(0);
415        } catch (ClosedByInterruptException ignored) {
416            LOG.trace("Could not preallocate journal file with zeros", ignored);
417        } catch (IOException e) {
418            LOG.error("Could not preallocate journal file with zeros", e);
419        }
420    }
421
422    private void doPreallocationKernelCopy(RecoverableRandomAccessFile file) {
423        try (RandomAccessFile templateRaf = new RandomAccessFile(osKernelCopyTemplateFile, "rw");){
424            templateRaf.getChannel().transferTo(0, getMaxFileLength(), file.getChannel());
425        } catch (ClosedByInterruptException ignored) {
426            LOG.trace("Could not preallocate journal file with kernel copy", ignored);
427        } catch (FileNotFoundException e) {
428            LOG.error("Could not find the template file on disk at " + osKernelCopyTemplateFile.getAbsolutePath(), e);
429        } catch (IOException e) {
430            LOG.error("Could not transfer the template file to journal, transferFile=" + osKernelCopyTemplateFile.getAbsolutePath(), e);
431        }
432    }
433
434    private File createJournalTemplateFile() {
435        String fileName = "db-log.template";
436        File rc = new File(directory, fileName);
437        try (RandomAccessFile templateRaf = new RandomAccessFile(rc, "rw");) {
438            templateRaf.getChannel().write(ByteBuffer.wrap(EOF_RECORD));
439            templateRaf.setLength(maxFileLength);
440            templateRaf.getChannel().force(true);
441        } catch (FileNotFoundException e) {
442            LOG.error("Could not find the template file on disk at " + osKernelCopyTemplateFile.getAbsolutePath(), e);
443        } catch (IOException e) {
444            LOG.error("Could not transfer the template file to journal, transferFile=" + osKernelCopyTemplateFile.getAbsolutePath(), e);
445        }
446        return rc;
447    }
448
449    private void doPreallocationChunkedZeros(RecoverableRandomAccessFile file) {
450        preAllocateDirectBuffer.limit(preAllocateDirectBuffer.capacity());
451        preAllocateDirectBuffer.rewind();
452        try {
453            FileChannel channel = file.getChannel();
454
455            int remLen = maxFileLength;
456            while (remLen > 0) {
457                if (remLen < preAllocateDirectBuffer.remaining()) {
458                    preAllocateDirectBuffer.limit(remLen);
459                }
460                int writeLen = channel.write(preAllocateDirectBuffer);
461                remLen -= writeLen;
462                preAllocateDirectBuffer.rewind();
463            }
464
465            channel.force(false);
466            channel.position(0);
467        } catch (ClosedByInterruptException ignored) {
468            LOG.trace("Could not preallocate journal file with zeros", ignored);
469        } catch (IOException e) {
470            LOG.error("Could not preallocate journal file with zeros! Will continue without preallocation", e);
471        }
472    }
473
474    private static byte[] bytes(String string) {
475        try {
476            return string.getBytes("UTF-8");
477        } catch (UnsupportedEncodingException e) {
478            throw new RuntimeException(e);
479        }
480    }
481
482    public boolean isUnusedPreallocated(DataFile dataFile) throws IOException {
483        if (preallocationScope == PreallocationScope.ENTIRE_JOURNAL_ASYNC) {
484            DataFileAccessor reader = accessorPool.openDataFileAccessor(dataFile);
485            try {
486                byte[] firstFewBytes = new byte[BATCH_CONTROL_RECORD_HEADER.length];
487                reader.readFully(0, firstFewBytes);
488                ByteSequence bs = new ByteSequence(firstFewBytes);
489                return bs.startsWith(EOF_RECORD);
490            } catch (Exception ignored) {
491            } finally {
492                accessorPool.closeDataFileAccessor(reader);
493            }
494        }
495        return false;
496    }
497
498    protected Location recoveryCheck(DataFile dataFile) throws IOException {
499        Location location = new Location();
500        location.setDataFileId(dataFile.getDataFileId());
501        location.setOffset(0);
502
503        DataFileAccessor reader = accessorPool.openDataFileAccessor(dataFile);
504        try {
505            RandomAccessFile randomAccessFile = reader.getRaf().getRaf();
506            randomAccessFile.seek(0);
507            final long totalFileLength = randomAccessFile.length();
508            byte[] data = new byte[getWriteBatchSize()];
509            ByteSequence bs = new ByteSequence(data, 0, randomAccessFile.read(data));
510
511            while (true) {
512                int size = checkBatchRecord(bs, randomAccessFile);
513                if (size >= 0 && location.getOffset() + BATCH_CONTROL_RECORD_SIZE + size <= totalFileLength) {
514                    if (size == 0) {
515                        // eof batch record
516                        break;
517                    }
518                    location.setOffset(location.getOffset() + BATCH_CONTROL_RECORD_SIZE + size);
519                } else {
520
521                    // Perhaps it's just some corruption... scan through the
522                    // file to find the next valid batch record. We
523                    // may have subsequent valid batch records.
524                    if (findNextBatchRecord(bs, randomAccessFile) >= 0) {
525                        int nextOffset = Math.toIntExact(randomAccessFile.getFilePointer() - bs.remaining());
526                        Sequence sequence = new Sequence(location.getOffset(), nextOffset - 1);
527                        LOG.warn("Corrupt journal records found in '{}' between offsets: {}", dataFile.getFile(), sequence);
528                        dataFile.corruptedBlocks.add(sequence);
529                        location.setOffset(nextOffset);
530                    } else {
531                        break;
532                    }
533                }
534            }
535
536        } catch (IOException e) {
537        } finally {
538            accessorPool.closeDataFileAccessor(reader);
539        }
540
541        int existingLen = dataFile.getLength();
542        dataFile.setLength(location.getOffset());
543        if (existingLen > dataFile.getLength()) {
544            totalLength.addAndGet(dataFile.getLength() - existingLen);
545        }
546
547        if (!dataFile.corruptedBlocks.isEmpty()) {
548            // Is the end of the data file corrupted?
549            if (dataFile.corruptedBlocks.getTail().getLast() + 1 == location.getOffset()) {
550                dataFile.setLength((int) dataFile.corruptedBlocks.removeLastSequence().getFirst());
551            }
552        }
553
554        return location;
555    }
556
557    private int findNextBatchRecord(ByteSequence bs, RandomAccessFile reader) throws IOException {
558        final ByteSequence header = new ByteSequence(BATCH_CONTROL_RECORD_HEADER);
559        int pos = 0;
560        while (true) {
561            pos = bs.indexOf(header, 0);
562            if (pos >= 0) {
563                bs.setOffset(bs.offset + pos);
564                return pos;
565            } else {
566                // need to load the next data chunck in..
567                if (bs.length != bs.data.length) {
568                    // If we had a short read then we were at EOF
569                    return -1;
570                }
571                bs.setOffset(bs.length - BATCH_CONTROL_RECORD_HEADER.length);
572                bs.reset();
573                bs.setLength(bs.length + reader.read(bs.data, bs.length, bs.data.length - BATCH_CONTROL_RECORD_HEADER.length));
574            }
575        }
576    }
577
578    private int checkBatchRecord(ByteSequence bs, RandomAccessFile reader) throws IOException {
579        ensureAvailable(bs, reader, EOF_RECORD.length);
580        if (bs.startsWith(EOF_RECORD)) {
581            return 0; // eof
582        }
583        ensureAvailable(bs, reader, BATCH_CONTROL_RECORD_SIZE);
584        try (DataByteArrayInputStream controlIs = new DataByteArrayInputStream(bs)) {
585
586            // Assert that it's a batch record.
587            for (int i = 0; i < BATCH_CONTROL_RECORD_HEADER.length; i++) {
588                if (controlIs.readByte() != BATCH_CONTROL_RECORD_HEADER[i]) {
589                    return -1;
590                }
591            }
592
593            int size = controlIs.readInt();
594            if (size < 0 || size > Integer.MAX_VALUE - (BATCH_CONTROL_RECORD_SIZE + EOF_RECORD.length)) {
595                return -2;
596            }
597
598            long expectedChecksum = controlIs.readLong();
599            Checksum checksum = null;
600            if (isChecksum() && expectedChecksum > 0) {
601                checksum = new Adler32();
602            }
603
604            // revert to bs to consume data
605            bs.setOffset(controlIs.position());
606            int toRead = size;
607            while (toRead > 0) {
608                if (bs.remaining() >= toRead) {
609                    if (checksum != null) {
610                        checksum.update(bs.getData(), bs.getOffset(), toRead);
611                    }
612                    bs.setOffset(bs.offset + toRead);
613                    toRead = 0;
614                } else {
615                    if (bs.length != bs.data.length) {
616                        // buffer exhausted
617                        return  -3;
618                    }
619
620                    toRead -= bs.remaining();
621                    if (checksum != null) {
622                        checksum.update(bs.getData(), bs.getOffset(), bs.remaining());
623                    }
624                    bs.setLength(reader.read(bs.data));
625                    bs.setOffset(0);
626                }
627            }
628            if (checksum != null && expectedChecksum != checksum.getValue()) {
629                return -4;
630            }
631
632            return size;
633        }
634    }
635
636    private void ensureAvailable(ByteSequence bs, RandomAccessFile reader, int required) throws IOException {
637        if (bs.remaining() < required) {
638            bs.reset();
639            int read = reader.read(bs.data, bs.length, bs.data.length - bs.length);
640            if (read < 0) {
641                if (bs.remaining() == 0) {
642                    throw new EOFException("request for " + required + " bytes reached EOF");
643                }
644            }
645            bs.setLength(bs.length + read);
646        }
647    }
648
649    void addToTotalLength(int size) {
650        totalLength.addAndGet(size);
651    }
652
653    public long length() {
654        return totalLength.get();
655    }
656
657    private void rotateWriteFile() throws IOException {
658       synchronized (dataFileIdLock) {
659            DataFile dataFile = nextDataFile;
660            if (dataFile == null) {
661                dataFile = newDataFile();
662            }
663            synchronized (currentDataFile) {
664                fileMap.put(dataFile.getDataFileId(), dataFile);
665                fileByFileMap.put(dataFile.getFile(), dataFile);
666                dataFiles.addLast(dataFile);
667                currentDataFile.set(dataFile);
668            }
669            nextDataFile = null;
670        }
671        if (PreallocationScope.ENTIRE_JOURNAL_ASYNC == preallocationScope) {
672            preAllocateNextDataFileFuture = scheduler.submit(preAllocateNextDataFileTask);
673        }
674    }
675
676    private Runnable preAllocateNextDataFileTask = new Runnable() {
677        @Override
678        public void run() {
679            if (nextDataFile == null) {
680                synchronized (dataFileIdLock){
681                    try {
682                        nextDataFile = newDataFile();
683                    } catch (IOException e) {
684                        LOG.warn("Failed to proactively allocate data file", e);
685                    }
686                }
687            }
688        }
689    };
690
691    private volatile Future preAllocateNextDataFileFuture;
692
693    private DataFile newDataFile() throws IOException {
694        int nextNum = nextDataFileId++;
695        File file = getFile(nextNum);
696        DataFile nextWriteFile = new DataFile(file, nextNum);
697        preallocateEntireJournalDataFile(nextWriteFile.appendRandomAccessFile());
698        return nextWriteFile;
699    }
700
701
702    public DataFile reserveDataFile() {
703        synchronized (dataFileIdLock) {
704            int nextNum = nextDataFileId++;
705            File file = getFile(nextNum);
706            DataFile reservedDataFile = new DataFile(file, nextNum);
707            synchronized (currentDataFile) {
708                fileMap.put(reservedDataFile.getDataFileId(), reservedDataFile);
709                fileByFileMap.put(file, reservedDataFile);
710                if (dataFiles.isEmpty()) {
711                    dataFiles.addLast(reservedDataFile);
712                } else {
713                    dataFiles.getTail().linkBefore(reservedDataFile);
714                }
715            }
716            return reservedDataFile;
717        }
718    }
719
720    public File getFile(int nextNum) {
721        String fileName = filePrefix + nextNum + fileSuffix;
722        File file = new File(directory, fileName);
723        return file;
724    }
725
726    DataFile getDataFile(Location item) throws IOException {
727        Integer key = Integer.valueOf(item.getDataFileId());
728        DataFile dataFile = null;
729        synchronized (currentDataFile) {
730            dataFile = fileMap.get(key);
731        }
732        if (dataFile == null) {
733            LOG.error("Looking for key " + key + " but not found in fileMap: " + fileMap);
734            throw new IOException("Could not locate data file " + getFile(item.getDataFileId()));
735        }
736        return dataFile;
737    }
738
739    public void close() throws IOException {
740        synchronized (this) {
741            if (!started) {
742                return;
743            }
744            cleanupTask.cancel(true);
745            if (preAllocateNextDataFileFuture != null) {
746                preAllocateNextDataFileFuture.cancel(true);
747            }
748            ThreadPoolUtils.shutdownGraceful(scheduler, 4000);
749            accessorPool.close();
750        }
751        // the appender can be calling back to to the journal blocking a close AMQ-5620
752        appender.close();
753        synchronized (currentDataFile) {
754            fileMap.clear();
755            fileByFileMap.clear();
756            dataFiles.clear();
757            lastAppendLocation.set(null);
758            started = false;
759        }
760    }
761
762    public synchronized void cleanup() {
763        if (accessorPool != null) {
764            accessorPool.disposeUnused();
765        }
766    }
767
768    public synchronized boolean delete() throws IOException {
769
770        // Close all open file handles...
771        appender.close();
772        accessorPool.close();
773
774        boolean result = true;
775        for (Iterator<DataFile> i = fileMap.values().iterator(); i.hasNext();) {
776            DataFile dataFile = i.next();
777            result &= dataFile.delete();
778        }
779
780        if (preAllocateNextDataFileFuture != null) {
781            preAllocateNextDataFileFuture.cancel(true);
782        }
783        synchronized (dataFileIdLock) {
784            if (nextDataFile != null) {
785                nextDataFile.delete();
786                nextDataFile = null;
787            }
788        }
789
790        totalLength.set(0);
791        synchronized (currentDataFile) {
792            fileMap.clear();
793            fileByFileMap.clear();
794            lastAppendLocation.set(null);
795            dataFiles = new LinkedNodeList<DataFile>();
796        }
797        // reopen open file handles...
798        accessorPool = new DataFileAccessorPool(this);
799        appender = new DataFileAppender(this);
800        return result;
801    }
802
803    public void removeDataFiles(Set<Integer> files) throws IOException {
804        for (Integer key : files) {
805            // Can't remove the data file (or subsequent files) that is currently being written to.
806            if (key >= lastAppendLocation.get().getDataFileId()) {
807                continue;
808            }
809            DataFile dataFile = null;
810            synchronized (currentDataFile) {
811                dataFile = fileMap.remove(key);
812                if (dataFile != null) {
813                    fileByFileMap.remove(dataFile.getFile());
814                    dataFile.unlink();
815                }
816            }
817            if (dataFile != null) {
818                forceRemoveDataFile(dataFile);
819            }
820        }
821    }
822
823    private void forceRemoveDataFile(DataFile dataFile) throws IOException {
824        accessorPool.disposeDataFileAccessors(dataFile);
825        totalLength.addAndGet(-dataFile.getLength());
826        if (archiveDataLogs) {
827            File directoryArchive = getDirectoryArchive();
828            if (directoryArchive.exists()) {
829                LOG.debug("Archive directory exists: {}", directoryArchive);
830            } else {
831                if (directoryArchive.isAbsolute())
832                if (LOG.isDebugEnabled()) {
833                    LOG.debug("Archive directory [{}] does not exist - creating it now",
834                            directoryArchive.getAbsolutePath());
835                }
836                IOHelper.mkdirs(directoryArchive);
837            }
838            LOG.debug("Moving data file {} to {} ", dataFile, directoryArchive.getCanonicalPath());
839            dataFile.move(directoryArchive);
840            LOG.debug("Successfully moved data file");
841        } else {
842            LOG.debug("Deleting data file: {}", dataFile);
843            if (dataFile.delete()) {
844                LOG.debug("Discarded data file: {}", dataFile);
845            } else {
846                LOG.warn("Failed to discard data file : {}", dataFile.getFile());
847            }
848        }
849        if (dataFileRemovedListener != null) {
850            dataFileRemovedListener.fileRemoved(dataFile);
851        }
852    }
853
854    /**
855     * @return the maxFileLength
856     */
857    public int getMaxFileLength() {
858        return maxFileLength;
859    }
860
861    /**
862     * @param maxFileLength the maxFileLength to set
863     */
864    public void setMaxFileLength(int maxFileLength) {
865        this.maxFileLength = maxFileLength;
866    }
867
868    @Override
869    public String toString() {
870        return directory.toString();
871    }
872
873    public Location getNextLocation(Location location) throws IOException, IllegalStateException {
874        return getNextLocation(location, null);
875    }
876
877    public Location getNextLocation(Location location, Location limit) throws IOException, IllegalStateException {
878        Location cur = null;
879        while (true) {
880            if (cur == null) {
881                if (location == null) {
882                    DataFile head = null;
883                    synchronized (currentDataFile) {
884                        head = dataFiles.getHead();
885                    }
886                    if (head == null) {
887                        return null;
888                    }
889                    cur = new Location();
890                    cur.setDataFileId(head.getDataFileId());
891                    cur.setOffset(0);
892                } else {
893                    // Set to the next offset..
894                    if (location.getSize() == -1) {
895                        cur = new Location(location);
896                    } else {
897                        cur = new Location(location);
898                        cur.setOffset(location.getOffset() + location.getSize());
899                    }
900                }
901            } else {
902                cur.setOffset(cur.getOffset() + cur.getSize());
903            }
904
905            DataFile dataFile = getDataFile(cur);
906
907            // Did it go into the next file??
908            if (dataFile.getLength() <= cur.getOffset()) {
909                synchronized (currentDataFile) {
910                    dataFile = dataFile.getNext();
911                }
912                if (dataFile == null) {
913                    return null;
914                } else {
915                    cur.setDataFileId(dataFile.getDataFileId().intValue());
916                    cur.setOffset(0);
917                    if (limit != null && cur.compareTo(limit) >= 0) {
918                        LOG.trace("reached limit: {} at: {}", limit, cur);
919                        return null;
920                    }
921                }
922            }
923
924            // Load in location size and type.
925            DataFileAccessor reader = accessorPool.openDataFileAccessor(dataFile);
926            try {
927                reader.readLocationDetails(cur);
928            } catch (EOFException eof) {
929                LOG.trace("EOF on next: " + location + ", cur: " + cur);
930                throw eof;
931            } finally {
932                accessorPool.closeDataFileAccessor(reader);
933            }
934
935            Sequence corruptedRange = dataFile.corruptedBlocks.get(cur.getOffset());
936            if (corruptedRange != null) {
937                // skip corruption
938                cur.setSize((int) corruptedRange.range());
939            } else if (cur.getSize() == EOF_INT && cur.getType() == EOF_EOT ||
940                    (cur.getType() == 0 && cur.getSize() == 0)) {
941                // eof - jump to next datafile
942                // EOF_INT and EOF_EOT replace 0,0 - we need to react to both for
943                // replay of existing journals
944                // possibly journal is larger than maxFileLength after config change
945                cur.setSize(EOF_RECORD.length);
946                cur.setOffset(Math.max(maxFileLength, dataFile.getLength()));
947            } else if (cur.getType() == USER_RECORD_TYPE) {
948                // Only return user records.
949                return cur;
950            }
951        }
952    }
953
954    public ByteSequence read(Location location) throws IOException, IllegalStateException {
955        DataFile dataFile = getDataFile(location);
956        DataFileAccessor reader = accessorPool.openDataFileAccessor(dataFile);
957        ByteSequence rc = null;
958        try {
959            rc = reader.readRecord(location);
960        } finally {
961            accessorPool.closeDataFileAccessor(reader);
962        }
963        return rc;
964    }
965
966    public Location write(ByteSequence data, boolean sync) throws IOException, IllegalStateException {
967        Location loc = appender.storeItem(data, Location.USER_TYPE, sync);
968        return loc;
969    }
970
971    public Location write(ByteSequence data, Runnable onComplete) throws IOException, IllegalStateException {
972        Location loc = appender.storeItem(data, Location.USER_TYPE, onComplete);
973        return loc;
974    }
975
976    public void update(Location location, ByteSequence data, boolean sync) throws IOException {
977        DataFile dataFile = getDataFile(location);
978        DataFileAccessor updater = accessorPool.openDataFileAccessor(dataFile);
979        try {
980            updater.updateRecord(location, data, sync);
981        } finally {
982            accessorPool.closeDataFileAccessor(updater);
983        }
984    }
985
986    public PreallocationStrategy getPreallocationStrategy() {
987        return preallocationStrategy;
988    }
989
990    public void setPreallocationStrategy(PreallocationStrategy preallocationStrategy) {
991        this.preallocationStrategy = preallocationStrategy;
992    }
993
994    public PreallocationScope getPreallocationScope() {
995        return preallocationScope;
996    }
997
998    public void setPreallocationScope(PreallocationScope preallocationScope) {
999        this.preallocationScope = preallocationScope;
1000    }
1001
1002    public File getDirectory() {
1003        return directory;
1004    }
1005
1006    public void setDirectory(File directory) {
1007        this.directory = directory;
1008    }
1009
1010    public String getFilePrefix() {
1011        return filePrefix;
1012    }
1013
1014    public void setFilePrefix(String filePrefix) {
1015        this.filePrefix = filePrefix;
1016    }
1017
1018    public Map<WriteKey, WriteCommand> getInflightWrites() {
1019        return inflightWrites;
1020    }
1021
1022    public Location getLastAppendLocation() {
1023        return lastAppendLocation.get();
1024    }
1025
1026    public void setLastAppendLocation(Location lastSyncedLocation) {
1027        this.lastAppendLocation.set(lastSyncedLocation);
1028    }
1029
1030    public File getDirectoryArchive() {
1031        if (!directoryArchiveOverridden && (directoryArchive == null)) {
1032            // create the directoryArchive relative to the journal location
1033            directoryArchive = new File(directory.getAbsolutePath() +
1034                    File.separator + DEFAULT_ARCHIVE_DIRECTORY);
1035        }
1036        return directoryArchive;
1037    }
1038
1039    public void setDirectoryArchive(File directoryArchive) {
1040        directoryArchiveOverridden = true;
1041        this.directoryArchive = directoryArchive;
1042    }
1043
1044    public boolean isArchiveDataLogs() {
1045        return archiveDataLogs;
1046    }
1047
1048    public void setArchiveDataLogs(boolean archiveDataLogs) {
1049        this.archiveDataLogs = archiveDataLogs;
1050    }
1051
1052    public DataFile getDataFileById(int dataFileId) {
1053        synchronized (currentDataFile) {
1054            return fileMap.get(Integer.valueOf(dataFileId));
1055        }
1056    }
1057
1058    public DataFile getCurrentDataFile(int capacity) throws IOException {
1059        //First just acquire the currentDataFile lock and return if no rotation needed
1060        synchronized (currentDataFile) {
1061            if (currentDataFile.get().getLength() + capacity < maxFileLength) {
1062                return currentDataFile.get();
1063            }
1064        }
1065
1066        //AMQ-6545 - if rotation needed, acquire dataFileIdLock first to prevent deadlocks
1067        //then re-check if rotation is needed
1068        synchronized (dataFileIdLock) {
1069            synchronized (currentDataFile) {
1070                if (currentDataFile.get().getLength() + capacity >= maxFileLength) {
1071                    rotateWriteFile();
1072                }
1073                return currentDataFile.get();
1074            }
1075        }
1076    }
1077
1078    public Integer getCurrentDataFileId() {
1079        synchronized (currentDataFile) {
1080            return currentDataFile.get().getDataFileId();
1081        }
1082    }
1083
1084    /**
1085     * Get a set of files - only valid after start()
1086     *
1087     * @return files currently being used
1088     */
1089    public Set<File> getFiles() {
1090        synchronized (currentDataFile) {
1091            return fileByFileMap.keySet();
1092        }
1093    }
1094
1095    public Map<Integer, DataFile> getFileMap() {
1096        synchronized (currentDataFile) {
1097            return new TreeMap<Integer, DataFile>(fileMap);
1098        }
1099    }
1100
1101    public long getDiskSize() {
1102        return totalLength.get();
1103    }
1104
1105    public void setReplicationTarget(ReplicationTarget replicationTarget) {
1106        this.replicationTarget = replicationTarget;
1107    }
1108
1109    public ReplicationTarget getReplicationTarget() {
1110        return replicationTarget;
1111    }
1112
1113    public String getFileSuffix() {
1114        return fileSuffix;
1115    }
1116
1117    public void setFileSuffix(String fileSuffix) {
1118        this.fileSuffix = fileSuffix;
1119    }
1120
1121    public boolean isChecksum() {
1122        return checksum;
1123    }
1124
1125    public void setChecksum(boolean checksumWrites) {
1126        this.checksum = checksumWrites;
1127    }
1128
1129    public boolean isCheckForCorruptionOnStartup() {
1130        return checkForCorruptionOnStartup;
1131    }
1132
1133    public void setCheckForCorruptionOnStartup(boolean checkForCorruptionOnStartup) {
1134        this.checkForCorruptionOnStartup = checkForCorruptionOnStartup;
1135    }
1136
1137    public void setWriteBatchSize(int writeBatchSize) {
1138        this.writeBatchSize = writeBatchSize;
1139    }
1140
1141    public int getWriteBatchSize() {
1142        return writeBatchSize;
1143    }
1144
1145    public void setSizeAccumulator(AtomicLong storeSizeAccumulator) {
1146       this.totalLength = storeSizeAccumulator;
1147    }
1148
1149    public void setEnableAsyncDiskSync(boolean val) {
1150        this.enableAsyncDiskSync = val;
1151    }
1152
1153    public boolean isEnableAsyncDiskSync() {
1154        return enableAsyncDiskSync;
1155    }
1156
1157    public JournalDiskSyncStrategy getJournalDiskSyncStrategy() {
1158        return journalDiskSyncStrategy;
1159    }
1160
1161    public void setJournalDiskSyncStrategy(JournalDiskSyncStrategy journalDiskSyncStrategy) {
1162        this.journalDiskSyncStrategy = journalDiskSyncStrategy;
1163    }
1164
1165    public boolean isJournalDiskSyncPeriodic() {
1166        return JournalDiskSyncStrategy.PERIODIC.equals(journalDiskSyncStrategy);
1167    }
1168
1169    public void setDataFileRemovedListener(DataFileRemovedListener dataFileRemovedListener) {
1170        this.dataFileRemovedListener = dataFileRemovedListener;
1171    }
1172
1173    public static class WriteCommand extends LinkedNode<WriteCommand> {
1174        public final Location location;
1175        public final ByteSequence data;
1176        final boolean sync;
1177        public final Runnable onComplete;
1178
1179        public WriteCommand(Location location, ByteSequence data, boolean sync) {
1180            this.location = location;
1181            this.data = data;
1182            this.sync = sync;
1183            this.onComplete = null;
1184        }
1185
1186        public WriteCommand(Location location, ByteSequence data, Runnable onComplete) {
1187            this.location = location;
1188            this.data = data;
1189            this.onComplete = onComplete;
1190            this.sync = false;
1191        }
1192    }
1193
1194    public static class WriteKey {
1195        private final int file;
1196        private final long offset;
1197        private final int hash;
1198
1199        public WriteKey(Location item) {
1200            file = item.getDataFileId();
1201            offset = item.getOffset();
1202            // TODO: see if we can build a better hash
1203            hash = (int)(file ^ offset);
1204        }
1205
1206        @Override
1207        public int hashCode() {
1208            return hash;
1209        }
1210
1211        @Override
1212        public boolean equals(Object obj) {
1213            if (obj instanceof WriteKey) {
1214                WriteKey di = (WriteKey)obj;
1215                return di.file == file && di.offset == offset;
1216            }
1217            return false;
1218        }
1219    }
1220}