/* * This file is part of the KDE project * * Copyright (c) 2006 Cyrille Berger * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; version 2 of the License. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. */ #include "kis_random_sub_accessor.h" #include "kis_paint_device.h" KisRandomSubAccessorPixel::KisRandomSubAccessorPixel(KisPaintDeviceSP device) : m_device(device), m_currentPoint( 0, 0 ), m_randomAccessor(device->createRandomAccessor(0,0, false)) { } KisRandomSubAccessorPixel::~KisRandomSubAccessorPixel() { } void KisRandomSubAccessorPixel::sampledOldRawData(TQ_UINT8* dst) { const TQ_UINT8* pixels[4]; TQ_UINT8 weights[4]; int x = (int)floor(m_currentPoint.x()); int y = (int)floor(m_currentPoint.y()); double hsub = m_currentPoint.x() - x; if(hsub < 0.0 ) hsub = 1.0 + hsub; double vsub = m_currentPoint.y() - y; if(vsub < 0.0 ) vsub = 1.0 + vsub; weights[0] = (int)tqRound( ( 1.0 - hsub) * ( 1.0 - vsub) * 255 ); m_randomAccessor.moveTo(x, y); pixels[0] = m_randomAccessor.oldRawData(); weights[1] = (int)tqRound( ( 1.0 - vsub) * hsub * 255 ); m_randomAccessor.moveTo(x+1, y); pixels[1] = m_randomAccessor.oldRawData(); weights[2] = (int)tqRound( vsub * ( 1.0 - hsub) * 255 ); m_randomAccessor.moveTo(x, y+1); pixels[2] = m_randomAccessor.oldRawData(); weights[3] = (int)tqRound( hsub * vsub * 255 ); m_randomAccessor.moveTo(x+1, y+1); pixels[3] = m_randomAccessor.oldRawData(); m_device->colorSpace()->mixColors(pixels, weights, 4, dst); } void KisRandomSubAccessorPixel::sampledRawData(TQ_UINT8* dst) { const TQ_UINT8* pixels[4]; TQ_UINT8 weights[4]; int x = (int)floor(m_currentPoint.x()); int y = (int)floor(m_currentPoint.y()); double hsub = m_currentPoint.x() - x; if(hsub < 0.0 ) hsub = 1.0 + hsub; double vsub = m_currentPoint.y() - y; if(vsub < 0.0 ) vsub = 1.0 + vsub; weights[0] = (int)tqRound( ( 1.0 - hsub) * ( 1.0 - vsub) * 255 ); m_randomAccessor.moveTo(x, y); pixels[0] = m_randomAccessor.rawData(); weights[1] = (int)tqRound( ( 1.0 - vsub) * hsub * 255 ); m_randomAccessor.moveTo(x+1, y); pixels[1] = m_randomAccessor.rawData(); weights[2] = (int)tqRound( vsub * ( 1.0 - hsub) * 255 ); m_randomAccessor.moveTo(x, y+1); pixels[2] = m_randomAccessor.rawData(); weights[3] = (int)tqRound( hsub * vsub * 255 ); m_randomAccessor.moveTo(x+1, y+1); pixels[3] = m_randomAccessor.rawData(); m_device->colorSpace()->mixColors(pixels, weights, 4, dst); }