mirror of
https://github.com/vcmi/vcmi.git
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545 lines
18 KiB
C++
545 lines
18 KiB
C++
/*
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* CObjectClassesHandler.cpp, part of VCMI engine
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*
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* Authors: listed in file AUTHORS in main folder
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*
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* License: GNU General Public License v2.0 or later
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* Full text of license available in license.txt file, in main folder
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*
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*/
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#include "StdInc.h"
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#include "CObjectClassesHandler.h"
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#include "../filesystem/Filesystem.h"
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#include "../filesystem/CBinaryReader.h"
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#include "../json/JsonUtils.h"
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#include "../VCMI_Lib.h"
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#include "../GameConstants.h"
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#include "../constants/StringConstants.h"
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#include "../GameSettings.h"
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#include "../CSoundBase.h"
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#include "../mapObjectConstructors/CBankInstanceConstructor.h"
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#include "../mapObjectConstructors/CRewardableConstructor.h"
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#include "../mapObjectConstructors/CommonConstructors.h"
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#include "../mapObjectConstructors/DwellingInstanceConstructor.h"
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#include "../mapObjectConstructors/HillFortInstanceConstructor.h"
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#include "../mapObjectConstructors/ShipyardInstanceConstructor.h"
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#include "../mapObjects/CGCreature.h"
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#include "../mapObjects/CGPandoraBox.h"
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#include "../mapObjects/CQuest.h"
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#include "../mapObjects/ObjectTemplate.h"
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#include "../mapObjects/CGMarket.h"
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#include "../mapObjects/MiscObjects.h"
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#include "../mapObjects/CGHeroInstance.h"
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#include "../mapObjects/CGTownInstance.h"
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#include "../mapObjects/ObstacleSetHandler.h"
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#include "../modding/IdentifierStorage.h"
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#include "../modding/CModHandler.h"
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#include "../modding/ModScope.h"
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#include "../texts/CGeneralTextHandler.h"
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#include "../texts/CLegacyConfigParser.h"
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VCMI_LIB_NAMESPACE_BEGIN
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CObjectClassesHandler::CObjectClassesHandler()
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{
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#define SET_HANDLER_CLASS(STRING, CLASSNAME) handlerConstructors[STRING] = std::make_shared<CLASSNAME>
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#define SET_HANDLER(STRING, TYPENAME) handlerConstructors[STRING] = std::make_shared<CDefaultObjectTypeHandler<TYPENAME>>
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// list of all known handlers, hardcoded for now since the only way to add new objects is via C++ code
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//Note: should be in sync with registerTypesMapObjectTypes function
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SET_HANDLER_CLASS("configurable", CRewardableConstructor);
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SET_HANDLER_CLASS("dwelling", DwellingInstanceConstructor);
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SET_HANDLER_CLASS("hero", CHeroInstanceConstructor);
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SET_HANDLER_CLASS("town", CTownInstanceConstructor);
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SET_HANDLER_CLASS("bank", CBankInstanceConstructor);
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SET_HANDLER_CLASS("boat", BoatInstanceConstructor);
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SET_HANDLER_CLASS("market", MarketInstanceConstructor);
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SET_HANDLER_CLASS("hillFort", HillFortInstanceConstructor);
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SET_HANDLER_CLASS("shipyard", ShipyardInstanceConstructor);
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SET_HANDLER_CLASS("monster", CreatureInstanceConstructor);
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SET_HANDLER_CLASS("resource", ResourceInstanceConstructor);
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SET_HANDLER_CLASS("static", CObstacleConstructor);
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SET_HANDLER_CLASS("", CObstacleConstructor);
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SET_HANDLER("randomArtifact", CGArtifact);
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SET_HANDLER("randomHero", CGHeroInstance);
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SET_HANDLER("randomResource", CGResource);
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SET_HANDLER("randomTown", CGTownInstance);
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SET_HANDLER("randomMonster", CGCreature);
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SET_HANDLER("randomDwelling", CGDwelling);
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SET_HANDLER("generic", CGObjectInstance);
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SET_HANDLER("artifact", CGArtifact);
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SET_HANDLER("borderGate", CGBorderGate);
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SET_HANDLER("borderGuard", CGBorderGuard);
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SET_HANDLER("denOfThieves", CGDenOfthieves);
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SET_HANDLER("event", CGEvent);
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SET_HANDLER("garrison", CGGarrison);
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SET_HANDLER("heroPlaceholder", CGHeroPlaceholder);
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SET_HANDLER("keymaster", CGKeymasterTent);
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SET_HANDLER("lighthouse", CGLighthouse);
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SET_HANDLER("magi", CGMagi);
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SET_HANDLER("mine", CGMine);
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SET_HANDLER("obelisk", CGObelisk);
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SET_HANDLER("pandora", CGPandoraBox);
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SET_HANDLER("prison", CGHeroInstance);
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SET_HANDLER("questGuard", CGQuestGuard);
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SET_HANDLER("seerHut", CGSeerHut);
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SET_HANDLER("sign", CGSignBottle);
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SET_HANDLER("siren", CGSirens);
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SET_HANDLER("monolith", CGMonolith);
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SET_HANDLER("subterraneanGate", CGSubterraneanGate);
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SET_HANDLER("whirlpool", CGWhirlpool);
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SET_HANDLER("terrain", CGTerrainPatch);
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#undef SET_HANDLER_CLASS
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#undef SET_HANDLER
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}
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CObjectClassesHandler::~CObjectClassesHandler() = default;
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std::vector<JsonNode> CObjectClassesHandler::loadLegacyData()
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{
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size_t dataSize = VLC->settings()->getInteger(EGameSettings::TEXTS_OBJECT);
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CLegacyConfigParser parser(TextPath::builtin("Data/Objects.txt"));
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auto totalNumber = static_cast<size_t>(parser.readNumber()); // first line contains number of objects to read and nothing else
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parser.endLine();
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for (size_t i = 0; i < totalNumber; i++)
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{
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auto tmpl = std::make_shared<ObjectTemplate>();
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tmpl->readTxt(parser);
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parser.endLine();
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std::pair key(tmpl->id, tmpl->subid);
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legacyTemplates.insert(std::make_pair(key, tmpl));
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}
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mapObjectTypes.resize(256);
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std::vector<JsonNode> ret(dataSize);// create storage for 256 objects
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assert(dataSize == 256);
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CLegacyConfigParser namesParser(TextPath::builtin("Data/ObjNames.txt"));
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for (size_t i=0; i<256; i++)
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{
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ret[i]["name"].String() = namesParser.readString();
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namesParser.endLine();
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}
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JsonNode cregen1;
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JsonNode cregen4;
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CLegacyConfigParser cregen1Parser(TextPath::builtin("data/crgen1"));
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do
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{
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JsonNode subObject;
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subObject["name"].String() = cregen1Parser.readString();
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cregen1.Vector().push_back(subObject);
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}
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while(cregen1Parser.endLine());
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CLegacyConfigParser cregen4Parser(TextPath::builtin("data/crgen4"));
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do
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{
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JsonNode subObject;
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subObject["name"].String() = cregen4Parser.readString();
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cregen4.Vector().push_back(subObject);
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}
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while(cregen4Parser.endLine());
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ret[Obj::CREATURE_GENERATOR1]["subObjects"] = cregen1;
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ret[Obj::CREATURE_GENERATOR4]["subObjects"] = cregen4;
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ret[Obj::REFUGEE_CAMP]["subObjects"].Vector().push_back(ret[Obj::REFUGEE_CAMP]);
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ret[Obj::WAR_MACHINE_FACTORY]["subObjects"].Vector().push_back(ret[Obj::WAR_MACHINE_FACTORY]);
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return ret;
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}
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void CObjectClassesHandler::loadSubObject(const std::string & scope, const std::string & identifier, const JsonNode & entry, ObjectClass * baseObject)
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{
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auto subObject = loadSubObjectFromJson(scope, identifier, entry, baseObject, baseObject->objectTypeHandlers.size());
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assert(subObject);
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baseObject->objectTypeHandlers.push_back(subObject);
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registerObject(scope, baseObject->getJsonKey(), subObject->getSubTypeName(), subObject->subtype);
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for(const auto & compatID : entry["compatibilityIdentifiers"].Vector())
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registerObject(scope, baseObject->getJsonKey(), compatID.String(), subObject->subtype);
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}
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void CObjectClassesHandler::loadSubObject(const std::string & scope, const std::string & identifier, const JsonNode & entry, ObjectClass * baseObject, size_t index)
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{
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auto subObject = loadSubObjectFromJson(scope, identifier, entry, baseObject, index);
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assert(subObject);
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if (baseObject->objectTypeHandlers.at(index) != nullptr)
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throw std::runtime_error("Attempt to load already loaded object:" + identifier);
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baseObject->objectTypeHandlers.at(index) = subObject;
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registerObject(scope, baseObject->getJsonKey(), subObject->getSubTypeName(), subObject->subtype);
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for(const auto & compatID : entry["compatibilityIdentifiers"].Vector())
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registerObject(scope, baseObject->getJsonKey(), compatID.String(), subObject->subtype);
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}
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TObjectTypeHandler CObjectClassesHandler::loadSubObjectFromJson(const std::string & scope, const std::string & identifier, const JsonNode & entry, ObjectClass * baseObject, size_t index)
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{
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assert(identifier.find(':') == std::string::npos);
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assert(!scope.empty());
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std::string handler = baseObject->handlerName;
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if(!handlerConstructors.count(handler))
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{
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logMod->error("Handler with name %s was not found!", handler);
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// workaround for potential crash - if handler does not exists, continue with generic handler that is used for objects without any custom logc
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handler = "generic";
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assert(handlerConstructors.count(handler) != 0);
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}
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auto createdObject = handlerConstructors.at(handler)();
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createdObject->modScope = scope;
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createdObject->typeName = baseObject->identifier;
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createdObject->subTypeName = identifier;
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createdObject->type = baseObject->id;
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createdObject->subtype = index;
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createdObject->init(entry);
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bool staticObject = createdObject->isStaticObject();
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if (staticObject)
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{
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for (auto & templ : createdObject->getTemplates())
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{
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// Register templates for new objects from mods
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VLC->biomeHandler->addTemplate(scope, templ->stringID, templ);
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}
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}
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auto range = legacyTemplates.equal_range(std::make_pair(baseObject->id, index));
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for (auto & templ : boost::make_iterator_range(range.first, range.second))
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{
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if (staticObject)
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{
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// Register legacy templates as "core"
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// FIXME: Why does it clear stringID?
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VLC->biomeHandler->addTemplate("core", templ.second->stringID, templ.second);
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}
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createdObject->addTemplate(templ.second);
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}
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legacyTemplates.erase(range.first, range.second);
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logGlobal->debug("Loaded object %s(%d)::%s(%d)", baseObject->getJsonKey(), baseObject->id, identifier, index);
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return createdObject;
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}
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ObjectClass::ObjectClass() = default;
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ObjectClass::~ObjectClass() = default;
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std::string ObjectClass::getJsonKey() const
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{
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return modScope + ':' + identifier;
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}
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std::string ObjectClass::getNameTextID() const
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{
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return TextIdentifier("object", modScope, identifier, "name").get();
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}
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std::string ObjectClass::getNameTranslated() const
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{
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return VLC->generaltexth->translate(getNameTextID());
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}
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std::unique_ptr<ObjectClass> CObjectClassesHandler::loadFromJson(const std::string & scope, const JsonNode & json, const std::string & name, size_t index)
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{
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auto newObject = std::make_unique<ObjectClass>();
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newObject->modScope = scope;
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newObject->identifier = name;
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newObject->handlerName = json["handler"].String();
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newObject->base = json["base"];
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newObject->id = index;
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VLC->generaltexth->registerString(scope, newObject->getNameTextID(), json["name"].String());
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newObject->objectTypeHandlers.resize(json["lastReservedIndex"].Float() + 1);
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for (auto subData : json["types"].Struct())
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{
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if (!subData.second["index"].isNull())
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{
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const std::string & subMeta = subData.second["index"].getModScope();
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if ( subMeta == "core")
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{
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size_t subIndex = subData.second["index"].Integer();
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loadSubObject(subData.second.getModScope(), subData.first, subData.second, newObject.get(), subIndex);
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}
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else
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{
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logMod->error("Object %s:%s.%s - attempt to load object with preset index! This option is reserved for built-in mod", subMeta, name, subData.first );
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loadSubObject(subData.second.getModScope(), subData.first, subData.second, newObject.get());
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}
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}
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else
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loadSubObject(subData.second.getModScope(), subData.first, subData.second, newObject.get());
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}
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if (newObject->id == MapObjectID::MONOLITH_TWO_WAY)
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generateExtraMonolithsForRMG(newObject.get());
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return newObject;
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}
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void CObjectClassesHandler::loadObject(std::string scope, std::string name, const JsonNode & data)
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{
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mapObjectTypes.push_back(loadFromJson(scope, data, name, mapObjectTypes.size()));
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VLC->identifiersHandler->registerObject(scope, "object", name, mapObjectTypes.back()->id);
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}
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void CObjectClassesHandler::loadObject(std::string scope, std::string name, const JsonNode & data, size_t index)
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{
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assert(mapObjectTypes.at(index) == nullptr); // ensure that this id was not loaded before
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mapObjectTypes.at(index) = loadFromJson(scope, data, name, index);
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VLC->identifiersHandler->registerObject(scope, "object", name, mapObjectTypes.at(index)->id);
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}
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void CObjectClassesHandler::loadSubObject(const std::string & identifier, JsonNode config, MapObjectID ID, MapObjectSubID subID)
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{
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config.setType(JsonNode::JsonType::DATA_STRUCT); // ensure that input is not NULL
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assert(mapObjectTypes.at(ID.getNum()));
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if (subID.getNum() >= mapObjectTypes.at(ID.getNum())->objectTypeHandlers.size())
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{
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mapObjectTypes.at(ID.getNum())->objectTypeHandlers.resize(subID.getNum() + 1);
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}
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JsonUtils::inherit(config, mapObjectTypes.at(ID.getNum())->base);
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loadSubObject(config.getModScope(), identifier, config, mapObjectTypes.at(ID.getNum()).get(), subID.getNum());
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}
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void CObjectClassesHandler::removeSubObject(MapObjectID ID, MapObjectSubID subID)
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{
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assert(mapObjectTypes.at(ID.getNum()));
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mapObjectTypes.at(ID.getNum())->objectTypeHandlers.at(subID.getNum()) = nullptr;
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}
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TObjectTypeHandler CObjectClassesHandler::getHandlerFor(MapObjectID type, MapObjectSubID subtype) const
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{
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try
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{
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if (mapObjectTypes.at(type.getNum()) == nullptr)
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return mapObjectTypes.front()->objectTypeHandlers.front();
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auto subID = subtype.getNum();
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if (type == Obj::PRISON)
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subID = 0;
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auto result = mapObjectTypes.at(type.getNum())->objectTypeHandlers.at(subID);
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if (result != nullptr)
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return result;
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}
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catch (std::out_of_range & e)
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{
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// Leave catch block silently and handle error in block outside of try ... catch - all valid values should use 'return' in try block
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}
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std::string errorString = "Failed to find object of type " + std::to_string(type.getNum()) + "::" + std::to_string(subtype.getNum());
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logGlobal->error(errorString);
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throw std::out_of_range(errorString);
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}
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TObjectTypeHandler CObjectClassesHandler::getHandlerFor(const std::string & scope, const std::string & type, const std::string & subtype) const
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{
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std::optional<si32> id = VLC->identifiers()->getIdentifier(scope, "object", type);
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if(id)
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{
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const auto & object = mapObjectTypes.at(id.value());
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std::optional<si32> subID = VLC->identifiers()->getIdentifier(scope, object->getJsonKey(), subtype);
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if (subID)
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return object->objectTypeHandlers.at(subID.value());
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}
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std::string errorString = "Failed to find object of type " + type + "::" + subtype;
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logGlobal->error(errorString);
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throw std::runtime_error(errorString);
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}
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TObjectTypeHandler CObjectClassesHandler::getHandlerFor(CompoundMapObjectID compoundIdentifier) const
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{
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return getHandlerFor(compoundIdentifier.primaryID, compoundIdentifier.secondaryID);
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}
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std::set<MapObjectID> CObjectClassesHandler::knownObjects() const
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{
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std::set<MapObjectID> ret;
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for(auto & entry : mapObjectTypes)
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if (entry)
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ret.insert(entry->id);
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return ret;
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}
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std::set<MapObjectSubID> CObjectClassesHandler::knownSubObjects(MapObjectID primaryID) const
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{
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std::set<MapObjectSubID> ret;
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if (!mapObjectTypes.at(primaryID.getNum()))
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{
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logGlobal->error("Failed to find object %d", primaryID);
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return ret;
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}
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for(const auto & entry : mapObjectTypes.at(primaryID.getNum())->objectTypeHandlers)
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if (entry)
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ret.insert(entry->subtype);
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return ret;
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}
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void CObjectClassesHandler::beforeValidate(JsonNode & object)
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{
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for (auto & entry : object["types"].Struct())
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{
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if (object.Struct().count("subObjects"))
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{
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const auto & vector = object["subObjects"].Vector();
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if (entry.second.Struct().count("index"))
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{
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size_t index = entry.second["index"].Integer();
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if (index < vector.size())
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JsonUtils::inherit(entry.second, vector[index]);
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}
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}
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JsonUtils::inherit(entry.second, object["base"]);
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for (auto & templ : entry.second["templates"].Struct())
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JsonUtils::inherit(templ.second, entry.second["base"]);
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}
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object.Struct().erase("subObjects");
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}
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void CObjectClassesHandler::afterLoadFinalization()
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{
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for(auto & entry : mapObjectTypes)
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{
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if (!entry)
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continue;
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for(const auto & obj : entry->objectTypeHandlers)
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{
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if (!obj)
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continue;
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obj->afterLoadFinalization();
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if(obj->getTemplates().empty())
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logGlobal->warn("No templates found for %s:%s", entry->getJsonKey(), obj->getJsonKey());
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}
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}
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}
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void CObjectClassesHandler::generateExtraMonolithsForRMG(ObjectClass * container)
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{
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//duplicate existing two-way portals to make reserve for RMG
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auto& portalVec = container->objectTypeHandlers;
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//FIXME: Monoliths in this vector can be already not useful for every terrain
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const size_t portalCount = portalVec.size();
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//Invalid portals will be skipped and portalVec size stays unchanged
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for (size_t i = portalCount; portalVec.size() < 100; ++i)
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{
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auto index = static_cast<si32>(i % portalCount);
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auto portal = portalVec[index];
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auto templates = portal->getTemplates();
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if (templates.empty() || !templates[0]->canBePlacedAtAnyTerrain())
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{
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continue; //Do not clone HoTA water-only portals or any others we can't use
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}
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//deep copy of noncopyable object :?
|
|
auto newPortal = std::make_shared<CDefaultObjectTypeHandler<CGMonolith>>();
|
|
newPortal->rmgInfo = portal->getRMGInfo();
|
|
newPortal->templates = portal->getTemplates();
|
|
newPortal->sounds = portal->getSounds();
|
|
newPortal->aiValue = portal->getAiValue();
|
|
newPortal->battlefield = portal->battlefield; //getter is not initialized at this point
|
|
newPortal->modScope = portal->modScope; //private
|
|
newPortal->typeName = portal->getTypeName();
|
|
newPortal->subTypeName = std::string("monolith") + std::to_string(portalVec.size());
|
|
newPortal->type = portal->getIndex();
|
|
|
|
// Inconsintent original indexing: monolith1 has index 0
|
|
newPortal->subtype = portalVec.size() - 1; //indexes must be unique, they are returned as a set
|
|
newPortal->blockVisit = portal->blockVisit;
|
|
newPortal->removable = portal->removable;
|
|
|
|
portalVec.push_back(newPortal);
|
|
|
|
registerObject(newPortal->modScope, container->getJsonKey(), newPortal->subTypeName, newPortal->subtype);
|
|
}
|
|
}
|
|
|
|
std::string CObjectClassesHandler::getObjectName(MapObjectID type, MapObjectSubID subtype) const
|
|
{
|
|
const auto handler = getHandlerFor(type, subtype);
|
|
if (handler && handler->hasNameTextID())
|
|
return handler->getNameTranslated();
|
|
|
|
if (mapObjectTypes.at(type.getNum()))
|
|
return mapObjectTypes.at(type.getNum())->getNameTranslated();
|
|
|
|
return mapObjectTypes.front()->getNameTranslated();
|
|
}
|
|
|
|
SObjectSounds CObjectClassesHandler::getObjectSounds(MapObjectID type, MapObjectSubID subtype) const
|
|
{
|
|
// TODO: these objects may have subID's that does not have associated handler:
|
|
// Prison: uses hero type as subID
|
|
// Hero: uses hero type as subID, but registers hero classes as subtypes
|
|
// Spell scroll: uses spell ID as subID
|
|
if(type == Obj::PRISON || type == Obj::HERO || type == Obj::SPELL_SCROLL)
|
|
subtype = 0;
|
|
|
|
if(mapObjectTypes.at(type.getNum()))
|
|
return getHandlerFor(type, subtype)->getSounds();
|
|
else
|
|
return mapObjectTypes.front()->objectTypeHandlers.front()->getSounds();
|
|
}
|
|
|
|
std::string CObjectClassesHandler::getObjectHandlerName(MapObjectID type) const
|
|
{
|
|
if (mapObjectTypes.at(type.getNum()))
|
|
return mapObjectTypes.at(type.getNum())->handlerName;
|
|
else
|
|
return mapObjectTypes.front()->handlerName;
|
|
}
|
|
|
|
std::string CObjectClassesHandler::getJsonKey(MapObjectID type) const
|
|
{
|
|
if (mapObjectTypes.at(type.getNum()) != nullptr)
|
|
return mapObjectTypes.at(type.getNum())->getJsonKey();
|
|
|
|
logGlobal->warn("Unknown object of type %d!", type);
|
|
return mapObjectTypes.front()->getJsonKey();
|
|
}
|
|
|
|
VCMI_LIB_NAMESPACE_END
|