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279 lines
8.7 KiB
279 lines
8.7 KiB
/***************************************************************************
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recording-monitor-widget.cpp - description
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-------------------
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begin : So Sep 7 2003
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copyright : (C) 2003 by Martin Witte
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email : witte@kawo1.rwth-aachen.de
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***************************************************************************/
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/***************************************************************************
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* *
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* This program is free software; you can redistribute it and/or modify *
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* it under the terms of the GNU General Public License as published by *
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* the Free Software Foundation; either version 2 of the License, or *
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* (at your option) any later version. *
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* *
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***************************************************************************/
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#include "recording-datamonitor.h"
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//#include "recording-context.h"
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#include <math.h>
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#include <tqpainter.h>
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#include <tqimage.h>
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#include <tqpixmap.h>
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#include <kimageeffect.h> // fading, blending, ...
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#include <kpixmapio.h> // fast conversion between TQPixmap/TQImage
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#include <limits.h>
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#include <stdlib.h>
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#include <tdelocale.h>
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#define CHANNEL_H_MIN 20
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#define BLOCK_W_MIN 10
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#define W_MIN (20 * (BLOCK_W_MIN))
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RecordingDataMonitor::RecordingDataMonitor(TQWidget *parent, const char *name)
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: TQFrame(parent, name),
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m_channelsMax(NULL),
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m_channelsAvg(NULL),
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m_maxValue(INT_MAX),
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m_channels(0),
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m_pActiveBlocks(NULL)
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{
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setFrameStyle(Box | Sunken);
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setLineWidth(1);
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setMidLineWidth(1);
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setChannels(2);
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setColors(TQColor(20, 244, 20),
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TQColor(10, 117, 10));
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setSizePolicy(TQSizePolicy(TQSizePolicy::Expanding, TQSizePolicy::Expanding));
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}
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RecordingDataMonitor::~RecordingDataMonitor()
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{
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if (m_channelsMax) delete[] m_channelsMax;
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if (m_channelsAvg) delete[] m_channelsAvg;
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if (m_pActiveBlocks) delete[] m_pActiveBlocks;
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}
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// own stuff
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void RecordingDataMonitor::setChannels(int n)
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{
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if (n != m_channels) {
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if (m_channelsMax) delete[] m_channelsMax;
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if (m_channelsAvg) delete[] m_channelsAvg;
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if (m_pActiveBlocks) delete[] m_pActiveBlocks;
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m_channels = n > 0 ? n : 0;
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if (m_channels > 0) {
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m_channelsMax = new int[m_channels];
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m_channelsAvg = new double[m_channels];
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m_pActiveBlocks = new int[m_channels];
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for (int i = 0; i < m_channels; ++i) {
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m_pActiveBlocks[i] = 0;
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}
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} else {
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m_channelsMax = NULL;
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m_channelsAvg = NULL;
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m_pActiveBlocks = NULL;
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}
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}
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for (int i = 0; i < m_channels; ++i) {
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m_channelsMax[i] = 0;
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m_channelsAvg[i] = 0;
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}
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setMinimumSize(TQSize(W_MIN, (m_channels + 1 )* CHANNEL_H_MIN));
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}
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// TQt/TDE ...
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void RecordingDataMonitor::drawContents(TQPainter *painter)
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{
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if (painter)
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internalDrawContents(*painter, true);
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}
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void RecordingDataMonitor::internalDrawContents(TQPainter &painter, bool repaintAll)
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{
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if (m_channels <= 0) return;
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TQRect r = contentsRect();
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TQPen activePen (colorGroup().color(TQColorGroup::Text), 1);
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TQPen inactivePen (colorGroup().color(TQColorGroup::Mid), 1);
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TQBrush activeBrush = colorGroup().brush(TQColorGroup::Text);
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TQBrush inactiveBrush = colorGroup().brush(TQColorGroup::Mid);
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TQBrush yellowBrush(TQColor(255,255,0));
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TQBrush orangeBrush(TQColor(255,192,0));
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TQBrush redBrush (TQColor(255,0, 0));
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double ranges [5] = { 0.75, 0.83, 0.91, 1.0, 999 };
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TQBrush *brushes[5] = { &activeBrush, &yellowBrush, &orangeBrush, &redBrush, &redBrush };
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painter.setBrush( isEnabled() ? activeBrush : inactiveBrush);
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int nBlocks = (r.width()-1) / BLOCK_W_MIN;
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int xoffs = (r.width()-1) % BLOCK_W_MIN;
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int chHeight = (r.height()-1-CHANNEL_H_MIN) / m_channels;
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int yoffs = (r.height()-1) % m_channels;
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double min_dB = 20*log10(1 / (double)m_maxValue );
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int x0 = xoffs/2 + r.top();
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int y = yoffs/2 + r.left();
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for (int c = 0; c < m_channels; ++c) {
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int x = x0;
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int startBlock = 0;
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int endBlock = nBlocks - 1;
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int oldActiveBlocks = m_pActiveBlocks[c];
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double dBMax = isEnabled() ? 20*log10(m_channelsMax[c] / (double)m_maxValue ) : min_dB;
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m_pActiveBlocks[c] = m_channelsMax[c] ? (int)rint(nBlocks * (min_dB - dBMax) / min_dB) : 0;
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if (!repaintAll) {
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if (oldActiveBlocks > m_pActiveBlocks[c]) {
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startBlock = m_pActiveBlocks[c];
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endBlock = oldActiveBlocks - 1;
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} else {
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startBlock = oldActiveBlocks;
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endBlock = m_pActiveBlocks[c]-1;
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}
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}
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int range = 0;
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x += BLOCK_W_MIN * startBlock;
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for (int b = startBlock; b <= endBlock; ++b) {
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while (b >= nBlocks * ranges[range]) ++range;
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painter.fillRect(x+1, y+1, BLOCK_W_MIN-1, chHeight-1,
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b < m_pActiveBlocks[c] ? *brushes[range] : inactiveBrush);
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x += BLOCK_W_MIN;
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}
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y += chHeight;
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}
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if (repaintAll) {
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TQFont f("Helvetica");
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painter.setPen (activePen);
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f.setPixelSize(CHANNEL_H_MIN);
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painter.setFont(f);
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int maxW = TQFontMetrics(f).width(i18n("%1 dB").arg((int)min_dB));
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int delta_dB = 5;
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while (abs((long)min_dB) / delta_dB * maxW * 2 > r.width()) delta_dB *= 2;
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for (int dB = 0; dB >= min_dB; dB -= delta_dB) {
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TQString txt = i18n("%1 dB").arg(dB);
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int w = TQFontMetrics(f).width(txt);
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int x = x0 + (int)(nBlocks * BLOCK_W_MIN * (min_dB - dB) / min_dB) - w;
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if (x < x0) continue;
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painter.drawText(x, y + CHANNEL_H_MIN, txt);
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}
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}
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}
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bool RecordingDataMonitor::setColors(const TQColor &activeText,
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const TQColor &button)
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{
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m_colorActiveText = activeText;
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m_colorButton = button;
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TQPalette pl = palette();
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TQColorGroup cg = pl.inactive();
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TQBrush fg = cg.brush(TQColorGroup::Foreground),
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btn = cg.brush(TQColorGroup::Button),
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lgt = cg.brush(TQColorGroup::Light),
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drk = cg.brush(TQColorGroup::Dark),
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mid = cg.brush(TQColorGroup::Mid),
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txt = cg.brush(TQColorGroup::Text),
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btx = cg.brush(TQColorGroup::BrightText),
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bas = cg.brush(TQColorGroup::Base),
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bg = cg.brush(TQColorGroup::Background);
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fg.setColor (m_colorActiveText);
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btn.setColor(m_colorButton);
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lgt.setColor(m_colorButton.light(180));
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drk.setColor(m_colorButton.light( 50));
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mid.setColor(m_colorButton.light( 75));
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txt.setColor(m_colorActiveText);
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btx.setColor(m_colorActiveText);
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bas.setColor(m_colorButton);
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bg.setColor (m_colorButton);
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TQColorGroup ncg(fg, btn, lgt, drk, mid, txt, btx, bas, bg);
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pl.setInactive(ncg);
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pl.setActive(ncg);
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setPalette(pl);
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if (parentWidget() && parentWidget()->backgroundPixmap() ){
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KPixmapIO io;
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TQImage i = io.convertToImage(*parentWidget()->backgroundPixmap());
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KImageEffect::fade(i, 0.5, colorGroup().color(TQColorGroup::Dark));
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setPaletteBackgroundPixmap(io.convertToPixmap(i));
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setBackgroundOrigin(WindowOrigin);
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} else {
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setBackgroundColor(colorGroup().color(TQColorGroup::Button));
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}
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return true;
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}
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bool RecordingDataMonitor::noticeSoundStreamData(SoundStreamID /*id*/,
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const SoundFormat &sf, const char *data, size_t size, size_t &/*consumed_size*/,
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const SoundMetaData &/*md*/
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)
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{
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if (!isEnabled())
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return false;
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int nSamples = size / sf.frameSize();
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int sample_size = sf.sampleSize();
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int bias = 0;
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setChannels(sf.m_Channels);
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int old_max = m_maxValue;
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m_maxValue = sf.maxValue();
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if (!sf.m_IsSigned) {
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m_maxValue /= 2;
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bias = -m_maxValue;
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}
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int c = 0;
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for (int s = 0; s < nSamples; ++s, ++c, data += sample_size) {
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if (c >= m_channels) c -= m_channels; // avoid slow c = s % m_channels
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int &m = m_channelsMax[c];
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int x = abs(sf.convertSampleToInt(data, false) + bias);
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if (m < x) m = x;
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m_channelsAvg[c] += x;
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}
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for (int i = 0; i < m_channels; ++i)
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m_channelsAvg[i] /= nSamples;
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TQPainter paint(this);
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if (m_maxValue != old_max) {
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repaint(true);
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} else {
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internalDrawContents(paint, false);
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}
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return true;
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}
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#include "recording-datamonitor.moc"
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