mirror of
https://github.com/DarkflameUniverse/DarkflameServer.git
synced 2024-11-26 23:47:21 +00:00
4a6f3e44ee
* First iteration of pack reader and interface * Fix memory leak and remove logs * Complete packed asset interface and begin on file loading replacement * Implement proper BinaryIO error * Improve AssetMemoryBuffer for reading and implement more reading * Repair more file loading code and improve how navmeshes are loaded * Missing checks implementation * Revert addition of Manifest class and migration changes * Resolved all feedback.
352 lines
10 KiB
C++
352 lines
10 KiB
C++
#include "Game.h"
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#include "Level.h"
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#include <fstream>
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#include <iostream>
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#include <sstream>
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#include <string>
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#include "BinaryIO.h"
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#include "dLogger.h"
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#include "Spawner.h"
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#include "dZoneManager.h"
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#include "GeneralUtils.h"
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#include "Entity.h"
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#include "EntityManager.h"
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#include "CDFeatureGatingTable.h"
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#include "CDClientManager.h"
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#include "AssetManager.h"
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Level::Level(Zone* parentZone, const std::string& filepath) {
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m_ParentZone = parentZone;
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auto buffer = Game::assetManager->GetFileAsBuffer(filepath.c_str());
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if (!buffer.m_Success) {
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Game::logger->Log("Level", "Failed to load %s", filepath.c_str());
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return;
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}
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std::istream file(&buffer);
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ReadChunks(file);
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buffer.close();
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}
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Level::~Level() {
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for (std::map<uint32_t, Header>::iterator it = m_ChunkHeaders.begin(); it != m_ChunkHeaders.end(); ++it) {
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if (it->second.id == Level::ChunkTypeID::FileInfo) delete it->second.fileInfo;
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if (it->second.id == Level::ChunkTypeID::SceneObjectData) delete it->second.sceneObjects;
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}
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}
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const void Level::PrintAllObjects() {
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for (std::map<uint32_t, Header>::iterator it = m_ChunkHeaders.begin(); it != m_ChunkHeaders.end(); ++it) {
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if (it->second.id == Level::ChunkTypeID::SceneObjectData) {
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it->second.sceneObjects->PrintAllObjects();
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}
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}
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}
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void Level::ReadChunks(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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Header 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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ReadSceneObjectDataChunk(file, header);
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}
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m_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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Header header;
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header.id = ChunkTypeID::FileInfo; //I guess?
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FileInfoChunk* fileInfo = new FileInfoChunk();
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BinaryIO::BinaryRead(file, header.chunkVersion);
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BinaryIO::BinaryRead(file, header.chunkType);
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file.ignore(1);
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BinaryIO::BinaryRead(file, fileInfo->revision);
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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); //a uint
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file.ignore(4); //two floats
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file.ignore(4);
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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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for (uint32_t i = 0; i < 6; ++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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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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header.fileInfo = fileInfo;
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m_ChunkHeaders.insert(std::make_pair(header.id, header));
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//Now pretend to be a normal file and read Objects chunk:
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Header hdr;
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hdr.id = ChunkTypeID::SceneObjectData;
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ReadSceneObjectDataChunk(file, hdr);
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m_ChunkHeaders.insert(std::make_pair(hdr.id, hdr));
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} break;
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}
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}
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}
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void Level::ReadFileInfoChunk(std::istream& file, Header& header) {
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FileInfoChunk* fi = new FileInfoChunk;
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BinaryIO::BinaryRead(file, fi->version);
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BinaryIO::BinaryRead(file, fi->revision);
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BinaryIO::BinaryRead(file, fi->enviromentChunkStart);
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BinaryIO::BinaryRead(file, fi->objectChunkStart);
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BinaryIO::BinaryRead(file, fi->particleChunkStart);
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header.fileInfo = fi;
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//PATCH FOR AG: (messed up file?)
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if (header.fileInfo->revision == 3452816845 && m_ParentZone->GetZoneID().GetMapID() == 1100) header.fileInfo->revision = 26;
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}
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void Level::ReadSceneObjectDataChunk(std::istream& file, Header& header) {
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SceneObjectDataChunk* chunk = new SceneObjectDataChunk;
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uint32_t objectsCount = 0;
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BinaryIO::BinaryRead(file, objectsCount);
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CDFeatureGatingTable* featureGatingTable = CDClientManager::Instance()->GetTable<CDFeatureGatingTable>("FeatureGating");
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for (uint32_t i = 0; i < objectsCount; ++i) {
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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 (header.fileInfo->version >= 0x26)*/ BinaryIO::BinaryRead(file, obj.value1);
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/*if (header.fileInfo->version >= 0x20)*/ BinaryIO::BinaryRead(file, obj.value2);
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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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//This is a little bit of a bodge, but because the alpha client (HF) doesn't store the
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//spawn position / rotation like the later versions do, we need to check the LOT for the spawn pos & set it.
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if (obj.lot == LOT_MARKER_PLAYER_START) {
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dZoneManager::Instance()->GetZone()->SetSpawnPos(obj.position);
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dZoneManager::Instance()->GetZone()->SetSpawnRot(obj.rotation);
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}
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std::u16string ldfString = u"";
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uint32_t length = 0;
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BinaryIO::BinaryRead(file, length);
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for (uint32_t i = 0; i < length; ++i) {
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uint16_t data;
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BinaryIO::BinaryRead(file, data);
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ldfString.push_back(data);
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}
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std::string sData = GeneralUtils::UTF16ToWTF8(ldfString);
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std::stringstream ssData(sData);
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std::string token;
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char deliminator = '\n';
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while (std::getline(ssData, token, deliminator)) {
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LDFBaseData* ldfData = LDFBaseData::DataFromString(token);
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obj.settings.push_back(ldfData);
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}
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BinaryIO::BinaryRead(file, obj.value3);
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// Feature gating
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bool gated = false;
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for (LDFBaseData* data : obj.settings) {
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if (data->GetKey() == u"gatingOnFeature") {
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std::string featureGate = data->GetValueAsString();
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if (!featureGatingTable->FeatureUnlocked(featureGate)) {
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gated = true;
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break;
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}
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}
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}
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if (gated) {
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for (auto* setting : obj.settings) {
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delete setting;
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}
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obj.settings.clear();
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continue;
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}
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if (obj.lot == 176) { //Spawner
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SpawnerInfo spawnInfo = SpawnerInfo();
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SpawnerNode* node = new SpawnerNode();
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spawnInfo.templateID = obj.lot;
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spawnInfo.spawnerID = obj.id;
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spawnInfo.templateScale = obj.scale;
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node->position = obj.position;
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node->rotation = obj.rotation;
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node->config = obj.settings;
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spawnInfo.nodes.push_back(node);
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for (LDFBaseData* data : obj.settings) {
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if (data) {
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if (data->GetKey() == u"spawntemplate") {
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spawnInfo.templateID = std::stoi(data->GetValueAsString());
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}
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if (data->GetKey() == u"spawner_node_id") {
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node->nodeID = std::stoi(data->GetValueAsString());
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}
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if (data->GetKey() == u"spawner_name") {
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spawnInfo.name = data->GetValueAsString();
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}
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if (data->GetKey() == u"max_to_spawn") {
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spawnInfo.maxToSpawn = std::stoi(data->GetValueAsString());
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}
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if (data->GetKey() == u"spawner_active_on_load") {
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spawnInfo.activeOnLoad = std::stoi(data->GetValueAsString());
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}
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if (data->GetKey() == u"active_on_load") {
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spawnInfo.activeOnLoad = std::stoi(data->GetValueAsString());
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}
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if (data->GetKey() == u"respawn") {
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if (data->GetValueType() == eLDFType::LDF_TYPE_FLOAT) // Floats are in seconds
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{
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spawnInfo.respawnTime = std::stof(data->GetValueAsString());
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} else if (data->GetValueType() == eLDFType::LDF_TYPE_U32) // Ints are in ms?
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{
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spawnInfo.respawnTime = std::stoul(data->GetValueAsString()) / 1000;
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}
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}
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if (data->GetKey() == u"spawnsGroupOnSmash") {
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spawnInfo.spawnsOnSmash = std::stoi(data->GetValueAsString());
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}
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if (data->GetKey() == u"spawnNetNameForSpawnGroupOnSmash") {
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spawnInfo.spawnOnSmashGroupName = data->GetValueAsString();
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}
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if (data->GetKey() == u"groupID") { // Load object groups
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std::string groupStr = data->GetValueAsString();
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spawnInfo.groups = GeneralUtils::SplitString(groupStr, ';');
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spawnInfo.groups.erase(spawnInfo.groups.end() - 1);
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}
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if (data->GetKey() == u"no_auto_spawn") {
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spawnInfo.noAutoSpawn = static_cast<LDFData<bool>*>(data)->GetValue();
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}
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if (data->GetKey() == u"no_timed_spawn") {
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spawnInfo.noTimedSpawn = static_cast<LDFData<bool>*>(data)->GetValue();
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}
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if (data->GetKey() == u"spawnActivator") {
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spawnInfo.spawnActivator = static_cast<LDFData<bool>*>(data)->GetValue();
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}
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}
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}
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Spawner* spawner = new Spawner(spawnInfo);
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dZoneManager::Instance()->AddSpawner(obj.id, spawner);
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} else { //Regular object
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EntityInfo info;
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info.spawnerID = 0;
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info.id = obj.id;
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info.lot = obj.lot;
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info.pos = obj.position;
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info.rot = obj.rotation;
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info.settings = obj.settings;
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info.scale = obj.scale;
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//Check to see if we shouldn't be loading this:
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bool clientOnly = false;
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bool serverOnly = false;
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std::string featureGate = "";
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for (LDFBaseData* data : obj.settings) {
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if (data) {
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if (data->GetKey() == u"loadOnClientOnly") {
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clientOnly = (bool)std::stoi(data->GetValueAsString());
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break;
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}
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if (data->GetKey() == u"loadSrvrOnly") {
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serverOnly = (bool)std::stoi(data->GetValueAsString());
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break;
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}
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}
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}
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if (!clientOnly) {
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// We should never have more than 1 zone control object
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const auto zoneControlObject = dZoneManager::Instance()->GetZoneControlObject();
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if (zoneControlObject != nullptr && info.lot == zoneControlObject->GetLOT())
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goto deleteSettings;
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EntityManager::Instance()->CreateEntity(info, nullptr);
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} else {
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deleteSettings:
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for (auto* setting : info.settings) {
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delete setting;
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setting = nullptr;
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}
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info.settings.clear();
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obj.settings.clear();
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}
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}
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}
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header.sceneObjects = chunk;
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}
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