mirror of
https://github.com/scummvm/scummvm.git
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241 lines
6.2 KiB
C++
241 lines
6.2 KiB
C++
/* ScummVM - Graphic Adventure Engine
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*
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* ScummVM is the legal property of its developers, whose names
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* are too numerous to list here. Please refer to the COPYRIGHT
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* file distributed with this source distribution.
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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 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*
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*/
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#include "common/formats/winexe_pe.h"
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#include "scumm/he/intern_he.h"
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#include "scumm/he/moonbase/moonbase.h"
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#include "scumm/he/moonbase/ai_main.h"
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#ifdef USE_LIBCURL
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#include "scumm/he/moonbase/net_main.h"
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#endif
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namespace Scumm {
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Moonbase::Moonbase(ScummEngine_v100he *vm) : _vm(vm) {
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_exe = new Common::PEResources();
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initFOW();
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_ai = new AI(_vm);
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#ifdef USE_LIBCURL
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_net = new Net(_vm);
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#endif
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}
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Moonbase::~Moonbase() {
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delete _exe;
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delete _ai;
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#ifdef USE_LIBCURL
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delete _net;
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#endif
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}
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int Moonbase::readFromArray(int array, int y, int x) {
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_vm->VAR(_vm->VAR_U32_ARRAY_UNK) = array;
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return _vm->readArray(_vm->VAR_U32_ARRAY_UNK, y, x);
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}
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void Moonbase::deallocateArray(int array) {
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_vm->VAR(_vm->VAR_U32_ARRAY_UNK) = array;
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return _vm->nukeArray(_vm->VAR_U32_ARRAY_UNK);
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}
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int Moonbase::callScummFunction(int scriptNumber, int paramCount,...) {
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va_list va_params;
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va_start(va_params, paramCount);
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int args[25];
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memset(args, 0, sizeof(args));
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Common::String str;
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str = Common::String::format("Moonbase::callScummFunction(%d, [", scriptNumber);
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for (int i = 0; i < paramCount; i++) {
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args[i] = va_arg(va_params, int);
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str += Common::String::format("%d ", args[i]);
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}
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str += "])";
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debug(3, "%s", str.c_str());
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va_end(va_params);
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_vm->runScript(scriptNumber, 0, 1, args);
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return _vm->pop();
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}
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void Moonbase::blitT14WizImage(uint8 *dst, int dstw, int dsth, int dstPitch, const Common::Rect *clipBox,
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uint8 *wizd, int x, int y, int rawROP, int paramROP) {
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bool premulAlpa = false;
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if (rawROP == 1)
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premulAlpa = true;
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Common::Rect clippedDstRect(dstw, dsth);
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if (clipBox) {
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Common::Rect clip(clipBox->left, clipBox->top, clipBox->right, clipBox->bottom);
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if (clippedDstRect.intersects(clip)) {
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clippedDstRect.clip(clip);
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} else {
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return;
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}
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}
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int width = READ_LE_UINT16(wizd + 0x8 + 0);
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int height = READ_LE_UINT16(wizd + 0x8 + 2);
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Common::Rect srcLimitsRect(width, height);
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Common::Rect dstOperation(x, y, x + width, y + height);
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if (!clippedDstRect.intersects(dstOperation))
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return;
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Common::Rect clippedRect = clippedDstRect.findIntersectingRect(dstOperation);
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int cx = clippedRect.right - clippedRect.left;
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int cy = clippedRect.bottom - clippedRect.top;
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int sx = ((clippedRect.left - x) + srcLimitsRect.left);
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int sy = ((clippedRect.top - y) + srcLimitsRect.top);
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dst += clippedRect.top * dstPitch + clippedRect.left * 2;
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int headerSize = READ_LE_UINT32(wizd + 0x4);
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uint8 *dataPointer = wizd + 0x8 + headerSize;
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for (int i = 0; i < sy; i++) {
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uint16 lineSize = READ_LE_UINT16(dataPointer + 0);
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dataPointer += lineSize;
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}
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for (int i = 0; i < cy; i++) {
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uint16 lineSize = READ_LE_UINT16(dataPointer + 0);
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uint8 *singlesOffset = READ_LE_UINT16(dataPointer + 2) + dataPointer;
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uint8 *quadsOffset = READ_LE_UINT16(dataPointer + 4) + dataPointer;
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int pixels = 0;
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byte *dst1 = dst;
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byte *codes = dataPointer + 6;
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while (1) {
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int code = *codes - 2;
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codes++;
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if (code <= 0) { // quad or single
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uint8 *src;
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int cnt;
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if (code == 0) { // quad
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src = quadsOffset;
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quadsOffset += 8;
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cnt = 4; // 4 pixels
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} else { // single
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src = singlesOffset;
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singlesOffset += 2;
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cnt = 1;
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}
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for (int c = 0; c < cnt; c++) {
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if (pixels >= sx) {
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if (rawROP == 1) { // MMX_PREMUL_ALPHA_COPY
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WRITE_LE_UINT16(dst1, READ_LE_UINT16(src));
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} else if (rawROP == 2) { // MMX_ADDITIVE
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uint16 color = READ_LE_UINT16(src);
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uint16 orig = READ_LE_UINT16(dst1);
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uint32 r = MIN<uint32>(0x7c00, (orig & 0x7c00) + (color & 0x7c00));
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uint32 g = MIN<uint32>(0x03e0, (orig & 0x03e0) + (color & 0x03e0));
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uint32 b = MIN<uint32>(0x001f, (orig & 0x001f) + (color & 0x001f));
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WRITE_LE_UINT16(dst1, (r | g | b));
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} else if (rawROP == 5) { // MMX_CHEAP_50_50
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uint16 color = (READ_LE_UINT16(src) >> 1) & 0x3DEF;
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uint16 orig = (READ_LE_UINT16(dst1) >> 1) & 0x3DEF;
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WRITE_LE_UINT16(dst1, (color + orig));
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}
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dst1 += 2;
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}
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src += 2;
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pixels++;
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if (pixels >= cx + sx)
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break;
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}
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} else { // skip
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if ((code & 1) == 0) {
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code >>= 1;
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for (int j = 0; j < code; j++) {
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if (pixels >= sx)
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dst1 += 2;
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pixels++;
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if (pixels >= cx + sx)
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break;
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}
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} else { // special case
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if (pixels >= sx) {
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int alpha = code >> 1;
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uint16 color = READ_LE_UINT16(singlesOffset);
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uint32 orig = READ_LE_UINT16(dst1);
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if (!premulAlpa) {
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WRITE_LE_UINT16(dst1, color); // ENABLE_PREMUL_ALPHA = 0
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} else {
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if (alpha > 32) {
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alpha -= 32;
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uint32 oR = orig & 0x7c00;
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uint32 oG = orig & 0x03e0;
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uint32 oB = orig & 0x1f;
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uint32 dR = ((((color & 0x7c00) - oR) * alpha) >> 5) + oR;
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uint32 dG = ((((color & 0x3e0) - oG) * alpha) >> 5) + oG;
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uint32 dB = ((((color & 0x1f) - oB) * alpha) >> 5) + oB;
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WRITE_LE_UINT16(dst1, (dR & 0x7c00) | (dG & 0x3e0) | (dB & 0x1f));
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} else {
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uint32 pix = ((orig << 16) | orig) & 0x3e07c1f;
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pix = (((pix * alpha) & 0xffffffff) >> 5) & 0x3e07c1f;
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pix = ((pix >> 16) + pix + color) & 0xffff;
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WRITE_LE_UINT16(dst1, pix);
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}
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}
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dst1 += 2;
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}
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singlesOffset += 2;
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pixels++;
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}
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}
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if (pixels >= cx + sx)
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break;
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}
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dataPointer += lineSize;
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dst += dstPitch;
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}
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}
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} // End of namespace Scumm
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