Randomize direction even when filling gaps, fixes bug when all windows are the same size.
svn path=/trunk/KDE/kdebase/workspace/; revision=861791
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1 changed files with 23 additions and 25 deletions
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@ -917,33 +917,31 @@ void PresentWindowsEffect::calculateWindowTransformationsNatural(EffectWindowLis
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// alternate between each corner on that edge. We don't want to determine it
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// randomly as it will not produce consistant locations when using the filter.
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// Only move one window so we don't cause large amounts of unnecessary zooming
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// in some situations. We only need to do this if we are not expanding later.
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// in some situations. We need to do this even when expanding later just in case
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// all windows are the same size.
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// (We are using an old bounding rect for this, hopefully it doesn't matter)
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if( !fillGaps )
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int xSection = ( mWindowData[ w ].area.x() - bounds.x() ) / ( bounds.width() / 3 );
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int ySection = ( mWindowData[ w ].area.y() - bounds.y() ) / ( bounds.height() / 3 );
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diff = QPoint( 0, 0 );
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if( xSection != 1 || ySection != 1 ) // Remove this if you want the center to pull as well
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{
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int xSection = ( mWindowData[ w ].area.x() - bounds.x() ) / ( bounds.width() / 3 );
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int ySection = ( mWindowData[ w ].area.y() - bounds.y() ) / ( bounds.height() / 3 );
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diff = QPoint( 0, 0 );
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if( xSection != 1 || ySection != 1 ) // Remove this if you want the center to pull as well
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{
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if( xSection == 1 )
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xSection = ( mWindowData[ w ].slot / 2 ? 2 : 0 );
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if( ySection == 1 )
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ySection = ( mWindowData[ w ].slot % 2 ? 2 : 0 );
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}
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if( xSection == 0 && ySection == 0 )
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diff = QPoint( bounds.topLeft() - mWindowData[ w ].area.center() );
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if( xSection == 2 && ySection == 0 )
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diff = QPoint( bounds.topRight() - mWindowData[ w ].area.center() );
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if( xSection == 2 && ySection == 2 )
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diff = QPoint( bounds.bottomRight() - mWindowData[ w ].area.center() );
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if( xSection == 0 && ySection == 2 )
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diff = QPoint( bounds.bottomLeft() - mWindowData[ w ].area.center() );
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if( diff.x() != 0 || diff.y() != 0 )
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{
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diff *= accuracy / double( diff.manhattanLength() );
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mWindowData[ w ].area.translate( diff );
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}
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if( xSection == 1 )
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xSection = ( mWindowData[ w ].slot / 2 ? 2 : 0 );
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if( ySection == 1 )
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ySection = ( mWindowData[ w ].slot % 2 ? 2 : 0 );
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}
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if( xSection == 0 && ySection == 0 )
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diff = QPoint( bounds.topLeft() - mWindowData[ w ].area.center() );
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if( xSection == 2 && ySection == 0 )
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diff = QPoint( bounds.topRight() - mWindowData[ w ].area.center() );
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if( xSection == 2 && ySection == 2 )
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diff = QPoint( bounds.bottomRight() - mWindowData[ w ].area.center() );
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if( xSection == 0 && ySection == 2 )
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diff = QPoint( bounds.bottomLeft() - mWindowData[ w ].area.center() );
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if( diff.x() != 0 || diff.y() != 0 )
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{
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diff *= accuracy / double( diff.manhattanLength() );
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mWindowData[ w ].area.translate( diff );
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}
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// Update bounding rect
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