mirror of
https://github.com/libretro/scummvm.git
synced 2024-12-30 14:14:43 +00:00
485 lines
14 KiB
C++
485 lines
14 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
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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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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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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*/
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#include "common/scummsys.h"
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#include "mads/scene_data.h"
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#include "mads/mads.h"
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#include "mads/compression.h"
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#include "mads/screen.h"
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#include "mads/resources.h"
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#include "mads/dragonsphere/dragonsphere_scenes.h"
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#include "mads/nebular/nebular_scenes.h"
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#include "mads/phantom/phantom_scenes.h"
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namespace MADS {
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KernelMessage::KernelMessage() {
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_flags = 0;
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_sequenceIndex = 0;
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_color1 = 0;
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_color2 = 0;
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_msgOffset = 0;
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_numTicks = 0;
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_frameTimer2 = 0;
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_frameTimer = 0;
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_timeout = 0;
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_trigger = 0;
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_abortMode = SEQUENCE_TRIGGER_PARSER;
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_actionDetails._verbId = VERB_NONE;
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_actionDetails._objectNameId = 0;
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_actionDetails._indirectObjectId = 0;
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_textDisplayIndex = 0;
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}
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/*------------------------------------------------------------------------*/
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void ARTHeader::load(Common::SeekableReadStream *f, bool isV2) {
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if (!isV2) {
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// Read in dimensions of image
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_width = f->readUint16LE();
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_height = f->readUint16LE();
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}
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// Read in palette information
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int palCount = f->readUint16LE();
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for (int i = 0; i < palCount; ++i) {
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RGB6 rgb;
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rgb.load(f);
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_palette.push_back(rgb);
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}
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f->skip(6 * (256 - palCount));
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// Read palette animations
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int cycleCount = f->readUint16LE();
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for (int i = 0; i < cycleCount; ++i) {
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PaletteCycle cycle;
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cycle._colorCount = f->readByte();
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cycle._firstListColor = f->readByte();
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cycle._firstColorIndex = f->readByte();
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cycle._ticks = f->readByte();
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_paletteCycles.push_back(cycle);
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}
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}
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/*------------------------------------------------------------------------*/
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void SceneInfo::SpriteInfo::load(Common::SeekableReadStream *f) {
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f->skip(3);
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_spriteSetIndex = f->readByte();
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_frameNumber = f->readSByte();
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f->skip(1);
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_position.x = f->readSint16LE();
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_position.y = f->readSint16LE();
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_depth = f->readByte();
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_scale = f->readByte();
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}
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/*------------------------------------------------------------------------*/
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SceneInfo::SceneInfo(MADSEngine *vm) : _vm(vm) {
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_sceneId = 0;
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_artFileNum = 0;
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_depthStyle = 0;
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_width = 0;
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_height = 0;
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_yBandsEnd = 0;
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_yBandsStart = 0;
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_maxScale = 0;
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_minScale = 0;
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_field4A = 0;
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_usageIndex = 0;
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for (int i = 0; i < 15; ++i)
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_depthList[i] = 0;
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}
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SceneInfo *SceneInfo::init(MADSEngine *vm) {
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switch (vm->getGameID()) {
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case GType_RexNebular:
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return new Nebular::SceneInfoNebular(vm);
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case GType_Dragonsphere:
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return new Dragonsphere::SceneInfoDragonsphere(vm);
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case GType_Phantom:
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return new Phantom::SceneInfoPhantom(vm);
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default:
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error("SceneInfo: Unknown game");
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}
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return nullptr;
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}
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void SceneInfo::load(int sceneId, int variant, const Common::String &resName,
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int flags, DepthSurface &depthSurface, MSurface &bgSurface) {
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bool sceneFlag = sceneId >= 0;
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// Figure out the resource to use
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Common::String resourceName;
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if (sceneFlag) {
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resourceName = Resources::formatName(RESPREFIX_RM, sceneId, ".DAT");
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} else {
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resourceName = "*" + Resources::formatResource(resName, resName);
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}
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// Open the scene info resource for access
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File infoFile(resourceName);
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MadsPack infoPack(&infoFile);
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// Read in basic data
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Common::SeekableReadStream *infoStream = infoPack.getItemStream(0);
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if (_vm->getGameID() == GType_RexNebular) {
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_sceneId = infoStream->readUint16LE();
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} else {
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infoStream->skip(6); // actual scene ID (string)
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_sceneId = sceneId;
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}
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int nodeCount = 20;
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if (_vm->getGameID() == GType_RexNebular) {
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_artFileNum = infoStream->readUint16LE();
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_depthStyle = infoStream->readUint16LE();
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_width = infoStream->readUint16LE();
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_height = infoStream->readUint16LE();
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infoStream->skip(24);
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nodeCount = infoStream->readUint16LE();
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_yBandsEnd = infoStream->readUint16LE();
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_yBandsStart = infoStream->readUint16LE();
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_maxScale = infoStream->readUint16LE();
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_minScale = infoStream->readUint16LE();
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for (int i = 0; i < DEPTH_BANDS_SIZE; ++i)
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_depthList[i] = infoStream->readUint16LE();
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_field4A = infoStream->readUint16LE();
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} else {
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_artFileNum = sceneId;
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_depthStyle = 0;
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_width = 320;
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_height = 156;
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infoStream->skip(140);
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}
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// Load the scene's walk nodes
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for (int i = 0; i < 20; ++i) {
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WalkNode node;
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node.load(infoStream);
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if (i < nodeCount)
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_nodes.push_back(node);
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}
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int spriteSetsCount = infoStream->readUint16LE();
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int spriteInfoCount = infoStream->readUint16LE();
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// Load in sprite sets
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Common::StringArray setNames;
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for (int i = 0; i < 10; ++i) {
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char name[64];
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infoStream->read(name, 64);
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if (i < spriteSetsCount)
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setNames.push_back(Common::String(name));
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}
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// Load in sprite draw information
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Common::Array<SpriteInfo> spriteInfo;
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// TODO: The following isn't quite right for V2 games
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if (_vm->getGameID() == GType_RexNebular) {
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for (int i = 0; i < 50; ++i) {
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SpriteInfo info;
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info.load(infoStream);
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if (i < spriteInfoCount)
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spriteInfo.push_back(info);
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}
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}
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delete infoStream;
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int width = _width;
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int height = _height;
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if (!bgSurface.getPixels() || (bgSurface.w != width) || (bgSurface.h != height)) {
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bgSurface.setSize(width, height);
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}
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if (_depthStyle == 2)
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width >>= 2;
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if (!depthSurface.getPixels()) {
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depthSurface.setSize(width, height);
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}
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loadCodes(depthSurface, variant);
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depthSurface._depthStyle = _depthStyle;
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infoFile.close();
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if (_vm->getGameID() == GType_RexNebular) {
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loadMadsV1Background(_artFileNum, resName, flags, bgSurface);
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loadPalette(_sceneId, _artFileNum, resName, flags, bgSurface);
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} else {
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loadMadsV2Background(_sceneId, resName, flags, bgSurface);
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loadPalette(_sceneId, _sceneId, resName, flags, bgSurface);
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}
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Common::Array<SpriteAsset *> spriteSets;
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Common::Array<int> usageList;
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// TODO: The following isn't quite right for V2 games
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if (_vm->getGameID() == GType_RexNebular) {
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for (uint i = 0; i < setNames.size(); ++i) {
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Common::String setResName;
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if (sceneFlag || resName.hasPrefix("*"))
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setResName += "*";
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setResName += setNames[i];
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SpriteAsset *sprites = new SpriteAsset(_vm, setResName, flags);
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spriteSets.push_back(sprites);
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usageList.push_back(sprites->_usageIndex);
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}
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}
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_vm->_palette->_paletteUsage.updateUsage(usageList, _usageIndex);
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for (uint i = 0; i < spriteInfo.size(); ++i) {
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SpriteInfo &si = spriteInfo[i];
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SpriteAsset *asset = spriteSets[si._spriteSetIndex];
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assert(asset && _depthStyle != 2);
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MSprite *spr = asset->getFrame(si._frameNumber);
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bgSurface.copyFrom(spr, si._position, si._depth, &depthSurface,
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si._scale, false, spr->getTransparencyIndex());
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}
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// Free the sprite sets
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for (int i = (int)spriteSets.size() - 1; i >= 0; --i) {
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_vm->_palette->_paletteUsage.resetPalFlags(spriteSets[i]->_usageIndex);
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delete spriteSets[i];
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}
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}
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void SceneInfo::loadPalette(int sceneId, int artFileNum, const Common::String &resName, int flags, MSurface &bgSurface) {
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bool sceneFlag = sceneId >= 0;
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Common::String resourceName;
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bool isV2 = (_vm->getGameID() != GType_RexNebular);
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Common::String extension = !isV2 ? ".ART" : ".TT";
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int paletteStream = !isV2 ? 0 : 2;
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// Get the ART resource
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if (sceneFlag) {
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resourceName = Resources::formatName(RESPREFIX_RM, artFileNum, extension);
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} else {
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resourceName = "*" + Resources::formatResource(resName, resName);
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}
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// Load in the ART header and palette
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File artFile(resourceName);
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MadsPack artResource(&artFile);
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Common::SeekableReadStream *stream = artResource.getItemStream(paletteStream);
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ARTHeader artHeader;
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artHeader.load(stream, isV2);
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delete stream;
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// Copy out the palette animation data
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_paletteCycles.clear();
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for (uint i = 0; i < artHeader._paletteCycles.size(); ++i)
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_paletteCycles.push_back(artHeader._paletteCycles[i]);
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if (!(flags & 1)) {
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if (!_vm->_palette->_paletteUsage.empty()) {
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_vm->_palette->_paletteUsage.getKeyEntries(artHeader._palette);
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_vm->_palette->_paletteUsage.prioritize(artHeader._palette);
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}
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_usageIndex = _vm->_palette->_paletteUsage.process(artHeader._palette,
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(flags & 0xF800) | 0x8000);
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if (_usageIndex > 0) {
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_vm->_palette->_paletteUsage.transform(artHeader._palette);
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for (uint i = 0; i < _paletteCycles.size(); ++i) {
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byte listColor = _paletteCycles[i]._firstListColor;
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_paletteCycles[i]._firstColorIndex = artHeader._palette[listColor]._palIndex;
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}
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}
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}
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if (!(flags & 1)) {
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// Translate the background to use the correct palette indexes
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bgSurface.translate(artHeader._palette);
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}
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}
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void SceneInfo::loadMadsV1Background(int sceneId, const Common::String &resName, int flags, MSurface &bgSurface) {
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bool sceneFlag = sceneId >= 0;
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Common::String resourceName;
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Common::SeekableReadStream *stream;
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// Get the ART resource
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if (sceneFlag) {
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resourceName = Resources::formatName(RESPREFIX_RM, sceneId, ".ART");
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} else {
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resourceName = "*" + Resources::formatResource(resName, resName);
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}
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// Load in the ART data
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File artFile(resourceName);
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MadsPack artResource(&artFile);
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// Read inhh the background surface data
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assert(_width && _height == bgSurface.h);
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stream = artResource.getItemStream(1);
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stream->read(bgSurface.getPixels(), bgSurface.w * bgSurface.h);
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delete stream;
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if (flags & SCENEFLAG_TRANSLATE) {
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// Load in the palette and translate it
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Common::SeekableReadStream *palStream = artResource.getItemStream(0);
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Common::Array<RGB6> palette;
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_width = palStream->readUint16LE();
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_height = palStream->readUint16LE();
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int numColors = palStream->readUint16LE();
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assert(numColors <= 252);
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palette.resize(numColors);
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for (int i = 0; i < numColors; ++i)
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palette[i].load(palStream);
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delete palStream;
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// Translate the surface
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_vm->_palette->_paletteUsage.process(palette, 0);
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bgSurface.translate(palette);
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}
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// Close the ART file
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artFile.close();
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}
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void SceneInfo::loadMadsV2Background(int sceneId, const Common::String &resName, int flags, MSurface &bgSurface) {
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Common::String tileMapResourceName = Resources::formatName(RESPREFIX_RM, sceneId, ".MM");
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File tileMapFile(tileMapResourceName);
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MadsPack tileMapPack(&tileMapFile);
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Common::SeekableReadStream *mapStream = tileMapPack.getItemStream(0);
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// Get the details of the tiles and map
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mapStream->readUint32LE();
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int tileCountX = mapStream->readUint16LE();
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int tileCountY = mapStream->readUint16LE();
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int tileWidthMap = mapStream->readUint16LE();
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int tileHeightMap = mapStream->readUint16LE();
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int screenWidth = mapStream->readUint16LE();
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int screenHeight = mapStream->readUint16LE();
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int tileCountMap = tileCountX * tileCountY;
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delete mapStream;
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// Obtain tile map information
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typedef Common::List<Common::SharedPtr<MSurface> > TileSetList;
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typedef TileSetList::iterator TileSetIterator;
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TileSetList tileSet;
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uint16 *tileMap = new uint16[tileCountMap];
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mapStream = tileMapPack.getItemStream(1);
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for (int i = 0; i < tileCountMap; ++i)
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tileMap[i] = mapStream->readUint16LE();
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delete mapStream;
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tileMapFile.close();
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// --------------------------------------------------------------------------------
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// Tile data, which needs to be kept compressed, as the tile map offsets refer to
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// the compressed data. Each tile is then uncompressed separately
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Common::String tileDataResourceName = Resources::formatName(RESPREFIX_RM, sceneId, ".TT");
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File tileDataFile(tileDataResourceName);
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MadsPack tileDataPack(&tileDataFile);
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Common::SeekableReadStream *tileDataUncomp = tileDataPack.getItemStream(0);
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// Validate that the data matches between the tiles and tile map file and is valid
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int tileCount = tileDataUncomp->readUint16LE();
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int tileWidth = tileDataUncomp->readUint16LE();
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int tileHeight = tileDataUncomp->readUint16LE();
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delete tileDataUncomp;
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assert(tileCountMap == tileCount);
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assert(tileWidth == tileWidthMap);
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assert(tileHeight == tileHeightMap);
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assert(screenWidth == _width);
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assert(screenHeight <= _height);
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// --------------------------------------------------------------------------------
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// Get tile data
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tileDataUncomp = tileDataPack.getItemStream(1);
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FabDecompressor fab;
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uint32 compressedTileDataSize = 0;
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for (int i = 0; i < tileCount; i++) {
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tileDataUncomp->seek(i * 4, SEEK_SET);
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uint32 tileOfs = tileDataUncomp->readUint32LE();
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MSurface* newTile = new MSurface(tileWidth, tileHeight);
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if (i == tileCount - 1)
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compressedTileDataSize = tileDataFile.size() - tileOfs;
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else
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compressedTileDataSize = tileDataUncomp->readUint32LE() - tileOfs;
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//debugCN(kDebugGraphics, "Tile: %i, compressed size: %i\n", i, compressedTileDataSize);
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newTile->empty();
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byte *compressedTileData = new byte[compressedTileDataSize];
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tileDataFile.seek(tileDataPack.getDataOffset() + tileOfs, SEEK_SET);
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tileDataFile.read(compressedTileData, compressedTileDataSize);
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fab.decompress(compressedTileData, compressedTileDataSize, (byte*)newTile->getPixels(), tileWidth * tileHeight);
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tileSet.push_back(TileSetList::value_type(newTile));
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delete[] compressedTileData;
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}
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delete tileDataUncomp;
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// --------------------------------------------------------------------------------
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// Loop through the mapping data to place the tiles on the screen
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uint16 *tIndex = &tileMap[0];
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for (int y = 0; y < tileCountY; y++) {
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for (int x = 0; x < tileCountX; x++) {
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int tileIndex = *tIndex++;
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assert(tileIndex < tileCount);
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TileSetIterator tile = tileSet.begin();
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for (int i = 0; i < tileIndex; i++)
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++tile;
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((*tile).get())->copyTo(&bgSurface, Common::Point(x * tileWidth, y * tileHeight));
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}
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}
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tileSet.clear();
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tileDataFile.close();
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}
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/*------------------------------------------------------------------------*/
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SceneLogic::SceneLogic(MADSEngine *vm) : _vm(vm) {
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_scene = &_vm->_game->_scene;
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}
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} // End of namespace MADS
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