Files correlati : cg0.exe cg0700a.msk cg0700b.msk cg3.exe cg4.exe Bug : Commento: Merge 1.0 libraries
437 lines
14 KiB
C++
437 lines
14 KiB
C++
/****************************************************************************
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**
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** Copyright (C) 2015 The Qt Company Ltd.
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** Contact: http://www.qt.io/licensing/
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**
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** This file is part of the examples of the Qt Toolkit.
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**
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** $QT_BEGIN_LICENSE:BSD$
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** You may use this file under the terms of the BSD license as follows:
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**
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** "Redistribution and use in source and binary forms, with or without
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** modification, are permitted provided that the following conditions are
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** met:
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** * Redistributions of source code must retain the above copyright
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** notice, this list of conditions and the following disclaimer.
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** * Redistributions in binary form must reproduce the above copyright
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** notice, this list of conditions and the following disclaimer in
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** the documentation and/or other materials provided with the
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** distribution.
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** * Neither the name of The Qt Company Ltd nor the names of its
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** contributors may be used to endorse or promote products derived
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** from this software without specific prior written permission.
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**
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**
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** THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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** "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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** LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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** A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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** OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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** SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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** LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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** DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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** THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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** (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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** OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE."
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**
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** $QT_END_LICENSE$
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**
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****************************************************************************/
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#include "waveform.h"
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#include "utils.h"
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#include <QPainter>
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#include <QResizeEvent>
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#include <QDebug>
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//#define PAINT_EVENT_TRACE
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#ifdef PAINT_EVENT_TRACE
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# define WAVEFORM_PAINT_DEBUG qDebug()
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#else
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# define WAVEFORM_PAINT_DEBUG nullDebug()
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#endif
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Waveform::Waveform(QWidget *parent)
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: QWidget(parent)
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, m_bufferPosition(0)
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, m_bufferLength(0)
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, m_audioPosition(0)
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, m_active(false)
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, m_tileLength(0)
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, m_tileArrayStart(0)
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, m_windowPosition(0)
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, m_windowLength(0)
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{
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setSizePolicy(QSizePolicy::Preferred, QSizePolicy::Fixed);
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setMinimumHeight(50);
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}
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Waveform::~Waveform()
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{
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deletePixmaps();
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}
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void Waveform::paintEvent(QPaintEvent * /*event*/)
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{
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QPainter painter(this);
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painter.fillRect(rect(), Qt::black);
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if (m_active) {
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WAVEFORM_PAINT_DEBUG << "Waveform::paintEvent"
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<< "windowPosition" << m_windowPosition
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<< "windowLength" << m_windowLength;
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qint64 pos = m_windowPosition;
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const qint64 windowEnd = m_windowPosition + m_windowLength;
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int destLeft = 0;
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int destRight = 0;
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while (pos < windowEnd) {
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const TilePoint point = tilePoint(pos);
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WAVEFORM_PAINT_DEBUG << "Waveform::paintEvent" << "pos" << pos
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<< "tileIndex" << point.index
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<< "positionOffset" << point.positionOffset
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<< "pixelOffset" << point.pixelOffset;
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if (point.index != NullIndex) {
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const Tile &tile = m_tiles[point.index];
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if (tile.painted) {
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const qint64 sectionLength = qMin((m_tileLength - point.positionOffset),
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(windowEnd - pos));
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Q_ASSERT(sectionLength > 0);
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const int sourceRight = tilePixelOffset(point.positionOffset + sectionLength);
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destRight = windowPixelOffset(pos - m_windowPosition + sectionLength);
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QRect destRect = rect();
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destRect.setLeft(destLeft);
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destRect.setRight(destRight);
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QRect sourceRect(QPoint(), m_pixmapSize);
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sourceRect.setLeft(point.pixelOffset);
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sourceRect.setRight(sourceRight);
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WAVEFORM_PAINT_DEBUG << "Waveform::paintEvent" << "tileIndex" << point.index
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<< "source" << point.pixelOffset << sourceRight
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<< "dest" << destLeft << destRight;
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painter.drawPixmap(destRect, *tile.pixmap, sourceRect);
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destLeft = destRight;
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if (point.index < m_tiles.count()) {
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pos = tilePosition(point.index + 1);
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WAVEFORM_PAINT_DEBUG << "Waveform::paintEvent" << "pos ->" << pos;
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} else {
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// Reached end of tile array
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WAVEFORM_PAINT_DEBUG << "Waveform::paintEvent" << "reached end of tile array";
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break;
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}
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} else {
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// Passed last tile which is painted
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WAVEFORM_PAINT_DEBUG << "Waveform::paintEvent" << "tile" << point.index << "not painted";
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break;
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}
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} else {
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// pos is past end of tile array
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WAVEFORM_PAINT_DEBUG << "Waveform::paintEvent" << "pos" << pos << "past end of tile array";
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break;
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}
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}
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WAVEFORM_PAINT_DEBUG << "Waveform::paintEvent" << "final pos" << pos << "final x" << destRight;
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}
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}
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void Waveform::resizeEvent(QResizeEvent *event)
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{
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if (event->size() != event->oldSize())
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createPixmaps(event->size());
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}
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void Waveform::initialize(const QAudioFormat &format, qint64 audioBufferSize, qint64 windowDurationUs)
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{
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WAVEFORM_DEBUG << "Waveform::initialize"
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<< "audioBufferSize" << audioBufferSize
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<< "windowDurationUs" << windowDurationUs;
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reset();
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m_format = format;
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// Calculate tile size
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m_tileLength = audioBufferSize;
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// Calculate window size
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m_windowLength = audioLength(m_format, windowDurationUs);
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// Calculate number of tiles required
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int nTiles;
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if (m_tileLength > m_windowLength) {
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nTiles = 2;
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} else {
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nTiles = m_windowLength / m_tileLength + 1;
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if (m_windowLength % m_tileLength)
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++nTiles;
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}
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WAVEFORM_DEBUG << "Waveform::initialize"
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<< "tileLength" << m_tileLength
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<< "windowLength" << m_windowLength
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<< "nTiles" << nTiles;
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m_pixmaps.fill(0, nTiles);
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m_tiles.resize(nTiles);
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createPixmaps(rect().size());
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m_active = true;
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}
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void Waveform::reset()
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{
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WAVEFORM_DEBUG << "Waveform::reset";
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m_bufferPosition = 0;
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m_buffer = QByteArray();
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m_audioPosition = 0;
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m_format = QAudioFormat();
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m_active = false;
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deletePixmaps();
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m_tiles.clear();
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m_tileLength = 0;
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m_tileArrayStart = 0;
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m_windowPosition = 0;
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m_windowLength = 0;
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}
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void Waveform::bufferChanged(qint64 position, qint64 length, const QByteArray &buffer)
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{
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WAVEFORM_DEBUG << "Waveform::bufferChanged"
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<< "audioPosition" << m_audioPosition
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<< "bufferPosition" << position
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<< "bufferLength" << length;
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m_bufferPosition = position;
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m_bufferLength = length;
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m_buffer = buffer;
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paintTiles();
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}
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void Waveform::audioPositionChanged(qint64 position)
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{
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WAVEFORM_DEBUG << "Waveform::audioPositionChanged"
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<< "audioPosition" << position
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<< "bufferPosition" << m_bufferPosition
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<< "bufferLength" << m_bufferLength;
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if (position >= m_bufferPosition) {
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if (position + m_windowLength > m_bufferPosition + m_bufferLength)
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position = qMax(qint64(0), m_bufferPosition + m_bufferLength - m_windowLength);
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m_audioPosition = position;
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setWindowPosition(position);
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}
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}
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void Waveform::deletePixmaps()
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{
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QPixmap *pixmap;
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foreach (pixmap, m_pixmaps)
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delete pixmap;
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m_pixmaps.clear();
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}
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void Waveform::createPixmaps(const QSize &widgetSize)
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{
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m_pixmapSize = widgetSize;
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m_pixmapSize.setWidth(qreal(widgetSize.width()) * m_tileLength / m_windowLength);
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WAVEFORM_DEBUG << "Waveform::createPixmaps"
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<< "widgetSize" << widgetSize
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<< "pixmapSize" << m_pixmapSize;
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Q_ASSERT(m_tiles.count() == m_pixmaps.count());
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// (Re)create pixmaps
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for (int i=0; i<m_pixmaps.size(); ++i) {
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delete m_pixmaps[i];
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m_pixmaps[i] = 0;
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m_pixmaps[i] = new QPixmap(m_pixmapSize);
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}
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// Update tile pixmap pointers, and mark for repainting
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for (int i=0; i<m_tiles.count(); ++i) {
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m_tiles[i].pixmap = m_pixmaps[i];
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m_tiles[i].painted = false;
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}
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}
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void Waveform::setWindowPosition(qint64 position)
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{
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WAVEFORM_DEBUG << "Waveform::setWindowPosition"
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<< "old" << m_windowPosition << "new" << position
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<< "tileArrayStart" << m_tileArrayStart;
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const qint64 oldPosition = m_windowPosition;
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m_windowPosition = position;
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if((m_windowPosition >= oldPosition) &&
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(m_windowPosition - m_tileArrayStart < (m_tiles.count() * m_tileLength))) {
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// Work out how many tiles need to be shuffled
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const qint64 offset = m_windowPosition - m_tileArrayStart;
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const int nTiles = offset / m_tileLength;
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shuffleTiles(nTiles);
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} else {
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resetTiles(m_windowPosition);
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}
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if(!paintTiles() && m_windowPosition != oldPosition)
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update();
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}
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qint64 Waveform::tilePosition(int index) const
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{
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return m_tileArrayStart + index * m_tileLength;
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}
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Waveform::TilePoint Waveform::tilePoint(qint64 position) const
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{
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TilePoint result;
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if (position >= m_tileArrayStart) {
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const qint64 tileArrayEnd = m_tileArrayStart + m_tiles.count() * m_tileLength;
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if (position < tileArrayEnd) {
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const qint64 offsetIntoTileArray = position - m_tileArrayStart;
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result.index = offsetIntoTileArray / m_tileLength;
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Q_ASSERT(result.index >= 0 && result.index <= m_tiles.count());
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result.positionOffset = offsetIntoTileArray % m_tileLength;
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result.pixelOffset = tilePixelOffset(result.positionOffset);
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Q_ASSERT(result.pixelOffset >= 0 && result.pixelOffset <= m_pixmapSize.width());
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}
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}
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return result;
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}
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int Waveform::tilePixelOffset(qint64 positionOffset) const
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{
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Q_ASSERT(positionOffset >= 0 && positionOffset <= m_tileLength);
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const int result = (qreal(positionOffset) / m_tileLength) * m_pixmapSize.width();
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return result;
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}
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int Waveform::windowPixelOffset(qint64 positionOffset) const
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{
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Q_ASSERT(positionOffset >= 0 && positionOffset <= m_windowLength);
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const int result = (qreal(positionOffset) / m_windowLength) * rect().width();
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return result;
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}
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bool Waveform::paintTiles()
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{
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WAVEFORM_DEBUG << "Waveform::paintTiles";
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bool updateRequired = false;
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for (int i=0; i<m_tiles.count(); ++i) {
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const Tile &tile = m_tiles[i];
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if (!tile.painted) {
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const qint64 tileStart = m_tileArrayStart + i * m_tileLength;
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const qint64 tileEnd = tileStart + m_tileLength;
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if (m_bufferPosition <= tileStart && m_bufferPosition + m_bufferLength >= tileEnd) {
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paintTile(i);
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updateRequired = true;
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}
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}
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}
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if (updateRequired)
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update();
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return updateRequired;
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}
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void Waveform::paintTile(int index)
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{
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const qint64 tileStart = m_tileArrayStart + index * m_tileLength;
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WAVEFORM_DEBUG << "Waveform::paintTile"
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<< "index" << index
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<< "bufferPosition" << m_bufferPosition
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<< "bufferLength" << m_bufferLength
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<< "start" << tileStart
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<< "end" << tileStart + m_tileLength;
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Q_ASSERT(m_bufferPosition <= tileStart);
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Q_ASSERT(m_bufferPosition + m_bufferLength >= tileStart + m_tileLength);
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Tile &tile = m_tiles[index];
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Q_ASSERT(!tile.painted);
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const qint16* base = reinterpret_cast<const qint16*>(m_buffer.constData());
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const qint16* buffer = base + ((tileStart - m_bufferPosition) / 2);
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const int numSamples = m_tileLength / (2 * m_format.channels());
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QPainter painter(tile.pixmap);
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painter.fillRect(tile.pixmap->rect(), Qt::black);
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QPen pen(Qt::white);
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painter.setPen(pen);
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// Calculate initial PCM value
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qint16 previousPcmValue = 0;
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if (buffer > base)
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previousPcmValue = *(buffer - m_format.channels());
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// Calculate initial point
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const qreal previousRealValue = pcmToReal(previousPcmValue);
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const int originY = ((previousRealValue + 1.0) / 2) * m_pixmapSize.height();
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const QPoint origin(0, originY);
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QLine line(origin, origin);
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for (int i=0; i<numSamples; ++i) {
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const qint16* ptr = buffer + i * m_format.channels();
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const int offset = reinterpret_cast<const char*>(ptr) - m_buffer.constData();
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Q_ASSERT(offset >= 0);
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Q_ASSERT(offset < m_bufferLength);
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const qint16 pcmValue = *ptr;
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const qreal realValue = pcmToReal(pcmValue);
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const int x = tilePixelOffset(i * 2 * m_format.channels());
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const int y = ((realValue + 1.0) / 2) * m_pixmapSize.height();
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line.setP2(QPoint(x, y));
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painter.drawLine(line);
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line.setP1(line.p2());
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}
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tile.painted = true;
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}
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void Waveform::shuffleTiles(int n)
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{
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WAVEFORM_DEBUG << "Waveform::shuffleTiles" << "n" << n;
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while (n--) {
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Tile tile = m_tiles.first();
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tile.painted = false;
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m_tiles.erase(m_tiles.begin());
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m_tiles += tile;
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m_tileArrayStart += m_tileLength;
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}
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WAVEFORM_DEBUG << "Waveform::shuffleTiles" << "tileArrayStart" << m_tileArrayStart;
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}
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void Waveform::resetTiles(qint64 newStartPos)
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{
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WAVEFORM_DEBUG << "Waveform::resetTiles" << "newStartPos" << newStartPos;
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QVector<Tile>::iterator i = m_tiles.begin();
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for ( ; i != m_tiles.end(); ++i)
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i->painted = false;
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m_tileArrayStart = newStartPos;
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}
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