/** * Copyright 2013 JogAmp Community. All rights reserved. * * Redistribution and use in source and binary forms, with or without modification, are * permitted provided that the following conditions are met: * * 1. Redistributions of source code must retain the above copyright notice, this list of * conditions and the following disclaimer. * * 2. 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. * * THIS SOFTWARE IS PROVIDED BY JogAmp Community ``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 JogAmp Community 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. * * The views and conclusions contained in the software and documentation are those of the * authors and should not be interpreted as representing official policies, either expressed * or implied, of JogAmp Community. */ package com.jogamp.common.util; import java.io.PrintStream; import java.lang.reflect.Array; /** * Simple synchronized implementation of {@link Ringbuffer}. *
* All methods utilize global synchronization. *
** Characteristics: *
Empty | writePos == readPos | size == 0 |
Full | writePos == readPos | size == capacity |
* Integer[] source = new Integer[10]; * // fill source with content .. * Ringbuffer* *rb = new SyncedRingbuffer (source); *
* {@link #isFull()} returns true on the newly created full ring buffer. *
*
* Implementation will allocate an internal array with size of array copyFrom
* and copy all elements from array copyFrom
into the internal array.
*
copyFrom
is null
*/
@SuppressWarnings("unchecked")
public SyncedRingbuffer(final T[] copyFrom) throws IllegalArgumentException {
capacity = copyFrom.length;
array = (T[]) newArray(copyFrom.getClass(), capacity);
resetImpl(true, copyFrom);
}
/**
* Create an empty ring buffer instance w/ the given net capacity
.
* * Example for a 10 element Integer array: *
* Ringbuffer* *rb = new SyncedRingbuffer (10, Integer[].class); *
* {@link #isEmpty()} returns true on the newly created empty ring buffer. *
*
* Implementation will allocate an internal array of size capacity
.
*
* Implementation sets read and write position to zero. *
*/ @Override public final void clear() { synchronized ( syncGlobal ) { resetImpl(false, null); for(int i=0; i* Implementation returns the element at the current read position and advances it, if not empty. *
*/ @Override public final T getBlocking() throws InterruptedException { return getImpl(true, false); } @Override public final T peek() { try { return getImpl(false, true); } catch (final InterruptedException ie) { throw new RuntimeException(ie); } } @Override public final T peekBlocking() throws InterruptedException { return getImpl(true, true); } private final T getImpl(final boolean blocking, final boolean peek) throws InterruptedException { synchronized( syncGlobal ) { if( 0 == size ) { if( blocking ) { while( 0 == size ) { syncGlobal.wait(); } } else { return null; } } final int localReadPos = readPos; final T r = array[localReadPos]; if( !peek ) { array[localReadPos] = null; size--; readPos = (localReadPos + 1) % capacity; syncGlobal.notifyAll(); // notify waiting putter } return r; } } /** * {@inheritDoc} ** Implementation stores the element at the current write position and advances it, if not full. *
*/ @Override public final boolean put(final T e) { try { return putImpl(e, false, false); } catch (final InterruptedException ie) { throw new RuntimeException(ie); } } /** * {@inheritDoc} ** Implementation stores the element at the current write position and advances it, if not full. *
*/ @Override public final void putBlocking(final T e) throws InterruptedException { if( !putImpl(e, false, true) ) { throw new InternalError("Blocking put failed: "+this); } } /** * {@inheritDoc} ** Implementation keeps the element at the current write position and advances it, if not full. *
*/ @Override public final boolean putSame(final boolean blocking) throws InterruptedException { return putImpl(null, true, blocking); } private final boolean putImpl(final T e, final boolean sameRef, final boolean blocking) throws InterruptedException { synchronized( syncGlobal ) { if( capacity == size ) { if( blocking ) { while( capacity == size ) { syncGlobal.wait(); } } else { return false; } } final int localWritePos = writePos; if( !sameRef ) { array[localWritePos] = e; } size++; writePos = (localWritePos + 1) % capacity; syncGlobal.notifyAll(); // notify waiting getter return true; } } @Override public final void waitForFreeSlots(final int count) throws InterruptedException { synchronized ( syncGlobal ) { if( capacity - size < count ) { while( capacity - size < count ) { syncGlobal.wait(); } } } } @Override public final void growEmptyBuffer(final T[] newElements) throws IllegalStateException, IllegalArgumentException { synchronized ( syncGlobal ) { if( null == newElements ) { throw new IllegalArgumentException("newElements is null"); } @SuppressWarnings("unchecked") final Class extends T[]> arrayTypeInternal = (Class extends T[]>) array.getClass(); @SuppressWarnings("unchecked") final Class extends T[]> arrayTypeNew = (Class extends T[]>) newElements.getClass(); if( arrayTypeInternal != arrayTypeNew ) { throw new IllegalArgumentException("newElements array-type mismatch, internal "+arrayTypeInternal+", newElements "+arrayTypeNew); } if( 0 != size ) { throw new IllegalStateException("Buffer is not empty: "+this); } if( readPos != writePos ) { throw new InternalError("R/W pos not equal: "+this); } final int growAmount = newElements.length; final int newCapacity = capacity + growAmount; final T[] oldArray = array; final T[] newArray = newArray(arrayTypeInternal, newCapacity); // writePos == readPos writePos += growAmount; // warp writePos to the end of the new data location if( readPos > 0 ) { System.arraycopy(oldArray, 0, newArray, 0, readPos); } if( growAmount > 0 ) { System.arraycopy(newElements, 0, newArray, readPos, growAmount); } final int tail = capacity-readPos; if( tail > 0 ) { System.arraycopy(oldArray, readPos, newArray, writePos, tail); } size = growAmount; capacity = newCapacity; array = newArray; } } @Override public final void growFullBuffer(final int growAmount) throws IllegalStateException, IllegalArgumentException { synchronized ( syncGlobal ) { if( 0 > growAmount ) { throw new IllegalArgumentException("amount "+growAmount+" < 0 "); } if( capacity != size ) { throw new IllegalStateException("Buffer is not full: "+this); } if( readPos != writePos ) { throw new InternalError("R/W pos not equal: "+this); } @SuppressWarnings("unchecked") final Class extends T[]> arrayTypeInternal = (Class extends T[]>) array.getClass(); final int newCapacity = capacity + growAmount; final T[] oldArray = array; final T[] newArray = newArray(arrayTypeInternal, newCapacity); // writePos == readPos readPos += growAmount; // warp readPos to the end of the new data location if(writePos > 0) { System.arraycopy(oldArray, 0, newArray, 0, writePos); } final int tail = capacity-writePos; if( tail > 0 ) { System.arraycopy(oldArray, writePos, newArray, readPos, tail); } capacity = newCapacity; array = newArray; } } @SuppressWarnings("unchecked") private static