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Two fields of the scene files from before chunks were read for versions the client does not read them for (SceneLoader::ReadLvlFile, 1.10.64): - the "important" byte after the version and type is there only from version 32 (SceneLoader::ReadLvlHeader, 0x010117d0: headerVersion < 32 sets it to 0); - the five strings after the skydome's file are there only from version 34 (SceneLoader::ReadSkydomeInfo, 0x0102f550: headerVersion > 33); the reader took them from version 33. Seven scenes of the alpha leak (versions 31 and 33: Gnarled_assetsMIKET, dennis_gnarled_forest_02/_03-ninja/_03-pirate_0, scale_TEST_2, scale_test_2_0, scale_test_general) now read with all their objects. Every other scene file on disk reads the same objects as before. Check in game: every world spawns its objects as before. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
159 lines
4.6 KiB
C++
159 lines
4.6 KiB
C++
#include "LevelFile.h"
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#include <istream>
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#include <stdexcept>
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#include "BinaryIO.h"
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#include "GeneralUtils.h"
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void LevelFile::Read(std::istream& file) {
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const uint32_t CHNK_HEADER = ('C' + ('H' << 8) + ('N' << 16) + ('K' << 24));
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while (!file.eof()) {
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uint32_t initPos = uint32_t(file.tellg());
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uint32_t header = 0;
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BinaryIO::BinaryRead(file, header);
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if (header == CHNK_HEADER) { //Make sure we're reading a valid CHNK
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ChunkHeader header;
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BinaryIO::BinaryRead(file, header.id);
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BinaryIO::BinaryRead(file, header.chunkVersion);
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BinaryIO::BinaryRead(file, header.chunkType);
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BinaryIO::BinaryRead(file, header.size);
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BinaryIO::BinaryRead(file, header.startPosition);
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uint32_t target = initPos + header.size;
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file.seekg(header.startPosition);
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//We're currently not loading env or particle data
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if (header.id == ChunkTypeID::FileInfo) {
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ReadFileInfoChunk(file, header);
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} else if (header.id == ChunkTypeID::SceneObjectData) {
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// The objects are laid out by the file's version, from its file info chunk
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const auto fileInfo = chunkHeaders.find(ChunkTypeID::FileInfo);
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ReadSceneObjectDataChunk(file, fileInfo == chunkHeaders.end() ? 0 : fileInfo->second.fileInfo.version);
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}
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chunkHeaders.insert(std::make_pair(header.id, header));
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file.seekg(target);
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} else {
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if (initPos == std::streamoff(0)) { //Really old chunk version
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file.seekg(0);
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ChunkHeader header;
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header.id = ChunkTypeID::FileInfo;
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BinaryIO::BinaryRead(file, header.chunkVersion);
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BinaryIO::BinaryRead(file, header.chunkType);
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// Only from version 32 (SceneLoader::ReadLvlHeader)
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uint8_t important = 0;
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if (header.chunkVersion >= 32) BinaryIO::BinaryRead(file, important);
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if (header.chunkVersion > 36) {
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BinaryIO::BinaryRead(file, header.fileInfo.revision);
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}
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// HARDCODED 3
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if (header.chunkVersion >= 45) file.ignore(4);
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file.ignore(4 * (4 * 3));
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if (header.chunkVersion >= 31) {
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if (header.chunkVersion >= 39) {
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file.ignore(12 * 4);
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if (header.chunkVersion >= 40) {
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uint32_t s = 0;
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BinaryIO::BinaryRead(file, s);
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for (uint32_t i = 0; i < s; ++i) {
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file.ignore(4 * 3); //a uint and two floats
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}
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}
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} else {
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file.ignore(8);
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}
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file.ignore(3 * 4);
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}
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if (header.chunkVersion >= 36) {
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file.ignore(3 * 4);
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}
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if (header.chunkVersion < 42) {
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file.ignore(3 * 4);
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if (header.chunkVersion >= 33) {
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file.ignore(4 * 4);
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}
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}
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// skydome info
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uint32_t count = 0;
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BinaryIO::BinaryRead(file, count);
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file.ignore(count);
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// Five more strings from version 34 (SceneLoader::ReadSkydomeInfo)
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if (header.chunkVersion >= 34) {
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for (uint32_t i = 0; i < 5; ++i) {
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uint32_t count = 0;
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BinaryIO::BinaryRead(file, count);
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file.ignore(count);
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}
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}
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// editor settings
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if (!important && header.chunkVersion >= 37){
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file.ignore(4);
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uint32_t count = 0;
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BinaryIO::BinaryRead(file, count);
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file.ignore(count * 12);
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}
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header.id = ChunkTypeID::SceneObjectData;
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header.fileInfo.version = header.chunkVersion;
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ReadSceneObjectDataChunk(file, header.fileInfo.version);
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chunkHeaders.insert(std::make_pair(header.id, header));
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} break;
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}
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}
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}
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void LevelFile::ReadFileInfoChunk(std::istream& file, ChunkHeader& header) {
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BinaryIO::BinaryRead(file, header.fileInfo.version);
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BinaryIO::BinaryRead(file, header.fileInfo.revision);
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BinaryIO::BinaryRead(file, header.fileInfo.enviromentChunkStart);
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BinaryIO::BinaryRead(file, header.fileInfo.objectChunkStart);
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BinaryIO::BinaryRead(file, header.fileInfo.particleChunkStart);
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}
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void LevelFile::ReadSceneObjectDataChunk(std::istream& file, uint32_t version) {
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uint32_t objectsCount = 0;
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BinaryIO::BinaryRead(file, objectsCount);
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for (uint32_t i = 0; i < objectsCount; ++i) {
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std::u16string ldfString;
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SceneObject obj;
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BinaryIO::BinaryRead(file, obj.id);
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BinaryIO::BinaryRead(file, obj.lot);
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if (version >= 38) {
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int32_t tmp = 1;
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BinaryIO::BinaryRead(file, tmp);
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if (tmp > -1 && tmp < 11) obj.nodeType = tmp;
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}
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if (version >= 32) {
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BinaryIO::BinaryRead(file, obj.glomId);
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}
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BinaryIO::BinaryRead(file, obj.position);
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BinaryIO::BinaryRead(file, obj.rotation);
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BinaryIO::BinaryRead(file, obj.scale);
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BinaryIO::ReadString<uint32_t>(file, ldfString);
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BinaryIO::BinaryRead(file, obj.value3);
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if (file.fail()) throw std::runtime_error("Failed to read from istream.");
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for (const auto& token : GeneralUtils::SplitString(GeneralUtils::UTF16ToWTF8(ldfString), '\n')) {
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obj.settings.ParseInsert(token);
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}
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objects.push_back(std::move(obj));
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}
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}
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