mirror of
https://github.com/vcmi/vcmi.git
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360 lines
9.9 KiB
C++
360 lines
9.9 KiB
C++
/*
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* CommonConstructors.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 "CommonConstructors.h"
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#include "../CCreatureHandler.h"
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#include "../CGeneralTextHandler.h"
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#include "../CHeroHandler.h"
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#include "../CModHandler.h"
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#include "../IGameCallback.h"
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#include "../StringConstants.h"
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#include "../TerrainHandler.h"
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#include "../mapObjects/CBank.h"
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#include "../mapObjects/CGHeroInstance.h"
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#include "../mapObjects/CGTownInstance.h"
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#include "../mapObjects/ObjectTemplate.h"
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#include "../mapping/CMapDefines.h"
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#include "../JsonRandom.h"
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VCMI_LIB_NAMESPACE_BEGIN
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bool CObstacleConstructor::isStaticObject()
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{
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return true;
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}
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void CTownInstanceConstructor::initTypeData(const JsonNode & input)
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{
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VLC->modh->identifiers.requestIdentifier("faction", input["faction"], [&](si32 index)
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{
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faction = (*VLC->townh)[index];
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});
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filtersJson = input["filters"];
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// change scope of "filters" to scope of object that is being loaded
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// since this filters require to resolve building ID's
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filtersJson.setMeta(input["faction"].meta);
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}
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void CTownInstanceConstructor::afterLoadFinalization()
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{
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assert(faction);
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for(const auto & entry : filtersJson.Struct())
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{
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filters[entry.first] = LogicalExpression<BuildingID>(entry.second, [this](const JsonNode & node)
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{
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return BuildingID(VLC->modh->identifiers.getIdentifier("building." + faction->getJsonKey(), node.Vector()[0]).value());
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});
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}
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}
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bool CTownInstanceConstructor::objectFilter(const CGObjectInstance * object, std::shared_ptr<const ObjectTemplate> templ) const
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{
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const auto * town = dynamic_cast<const CGTownInstance *>(object);
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auto buildTest = [&](const BuildingID & id)
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{
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return town->hasBuilt(id);
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};
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return filters.count(templ->stringID) != 0 && filters.at(templ->stringID).test(buildTest);
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}
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CGObjectInstance * CTownInstanceConstructor::create(std::shared_ptr<const ObjectTemplate> tmpl) const
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{
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CGTownInstance * obj = createTyped(tmpl);
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obj->town = faction->town;
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obj->tempOwner = PlayerColor::NEUTRAL;
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return obj;
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}
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void CTownInstanceConstructor::configureObject(CGObjectInstance * object, CRandomGenerator & rng) const
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{
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auto templ = getOverride(CGObjectInstance::cb->getTile(object->pos)->terType->getId(), object);
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if(templ)
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object->appearance = templ;
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}
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void CHeroInstanceConstructor::initTypeData(const JsonNode & input)
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{
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VLC->modh->identifiers.requestIdentifier(
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"heroClass",
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input["heroClass"],
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[&](si32 index) { heroClass = VLC->heroh->classes[index]; });
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filtersJson = input["filters"];
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}
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void CHeroInstanceConstructor::afterLoadFinalization()
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{
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for(const auto & entry : filtersJson.Struct())
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{
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filters[entry.first] = LogicalExpression<HeroTypeID>(entry.second, [](const JsonNode & node)
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{
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return HeroTypeID(VLC->modh->identifiers.getIdentifier("hero", node.Vector()[0]).value());
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});
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}
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}
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bool CHeroInstanceConstructor::objectFilter(const CGObjectInstance * object, std::shared_ptr<const ObjectTemplate> templ) const
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{
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const auto * hero = dynamic_cast<const CGHeroInstance *>(object);
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auto heroTest = [&](const HeroTypeID & id)
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{
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return hero->type->getId() == id;
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};
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if(filters.count(templ->stringID))
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{
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return filters.at(templ->stringID).test(heroTest);
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}
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return false;
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}
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CGObjectInstance * CHeroInstanceConstructor::create(std::shared_ptr<const ObjectTemplate> tmpl) const
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{
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CGHeroInstance * obj = createTyped(tmpl);
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obj->type = nullptr; //FIXME: set to valid value. somehow.
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return obj;
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}
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void CHeroInstanceConstructor::configureObject(CGObjectInstance * object, CRandomGenerator & rng) const
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{
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}
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bool CDwellingInstanceConstructor::hasNameTextID() const
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{
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return true;
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}
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void CDwellingInstanceConstructor::initTypeData(const JsonNode & input)
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{
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if (input.Struct().count("name") == 0)
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logMod->warn("Dwelling %s missing name!", getJsonKey());
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VLC->generaltexth->registerString( input.meta, getNameTextID(), input["name"].String());
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const JsonVector & levels = input["creatures"].Vector();
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const auto totalLevels = levels.size();
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availableCreatures.resize(totalLevels);
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for(auto currentLevel = 0; currentLevel < totalLevels; currentLevel++)
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{
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const JsonVector & creaturesOnLevel = levels[currentLevel].Vector();
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const auto creaturesNumber = creaturesOnLevel.size();
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availableCreatures[currentLevel].resize(creaturesNumber);
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for(auto currentCreature = 0; currentCreature < creaturesNumber; currentCreature++)
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{
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VLC->modh->identifiers.requestIdentifier("creature", creaturesOnLevel[currentCreature], [=] (si32 index)
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{
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availableCreatures[currentLevel][currentCreature] = VLC->creh->objects[index];
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});
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}
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assert(!availableCreatures[currentLevel].empty());
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}
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guards = input["guards"];
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}
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bool CDwellingInstanceConstructor::objectFilter(const CGObjectInstance * obj, std::shared_ptr<const ObjectTemplate> tmpl) const
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{
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return false;
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}
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CGObjectInstance * CDwellingInstanceConstructor::create(std::shared_ptr<const ObjectTemplate> tmpl) const
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{
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CGDwelling * obj = createTyped(tmpl);
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obj->creatures.resize(availableCreatures.size());
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for(const auto & entry : availableCreatures)
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{
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for(const CCreature * cre : entry)
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obj->creatures.back().second.push_back(cre->getId());
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}
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return obj;
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}
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void CDwellingInstanceConstructor::configureObject(CGObjectInstance * object, CRandomGenerator &rng) const
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{
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auto * dwelling = dynamic_cast<CGDwelling *>(object);
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dwelling->creatures.clear();
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dwelling->creatures.reserve(availableCreatures.size());
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for(const auto & entry : availableCreatures)
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{
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dwelling->creatures.resize(dwelling->creatures.size() + 1);
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for(const CCreature * cre : entry)
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dwelling->creatures.back().second.push_back(cre->getId());
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}
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bool guarded = false; //TODO: serialize for sanity
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if(guards.getType() == JsonNode::JsonType::DATA_BOOL) //simple switch
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{
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if(guards.Bool())
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{
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guarded = true;
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}
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}
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else if(guards.getType() == JsonNode::JsonType::DATA_VECTOR) //custom guards (eg. Elemental Conflux)
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{
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for(auto & stack : JsonRandom::loadCreatures(guards, rng))
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{
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dwelling->putStack(SlotID(dwelling->stacksCount()), new CStackInstance(stack.type->getId(), stack.count));
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}
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}
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else //default condition - creatures are of level 5 or higher
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{
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for(auto creatureEntry : availableCreatures)
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{
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if(creatureEntry.at(0)->getLevel() >= 5)
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{
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guarded = true;
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break;
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}
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}
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}
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if(guarded)
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{
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for(auto creatureEntry : availableCreatures)
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{
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const CCreature * crea = creatureEntry.at(0);
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dwelling->putStack(SlotID(dwelling->stacksCount()), new CStackInstance(crea->getId(), crea->getGrowth() * 3));
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}
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}
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}
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bool CDwellingInstanceConstructor::producesCreature(const CCreature * crea) const
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{
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for(const auto & entry : availableCreatures)
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{
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for(const CCreature * cre : entry)
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if(crea == cre)
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return true;
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}
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return false;
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}
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std::vector<const CCreature *> CDwellingInstanceConstructor::getProducedCreatures() const
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{
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std::vector<const CCreature *> creatures; //no idea why it's 2D, to be honest
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for(const auto & entry : availableCreatures)
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{
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for(const CCreature * cre : entry)
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creatures.push_back(cre);
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}
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return creatures;
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}
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void BoatInstanceConstructor::initTypeData(const JsonNode & input)
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{
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layer = EPathfindingLayer::SAIL;
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int pos = vstd::find_pos(NPathfindingLayer::names, input["layer"].String());
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if(pos != -1)
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layer = EPathfindingLayer(pos);
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onboardAssaultAllowed = input["onboardAssaultAllowed"].Bool();
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onboardVisitAllowed = input["onboardVisitAllowed"].Bool();
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actualAnimation = input["actualAnimation"].String();
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overlayAnimation = input["overlayAnimation"].String();
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for(int i = 0; i < flagAnimations.size() && i < input["flagAnimations"].Vector().size(); ++i)
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flagAnimations[i] = input["flagAnimations"].Vector()[i].String();
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bonuses = JsonRandom::loadBonuses(input["bonuses"]);
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}
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CGObjectInstance * BoatInstanceConstructor::create(std::shared_ptr<const ObjectTemplate> tmpl) const
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{
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CGBoat * boat = createTyped(tmpl);
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boat->layer = layer;
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boat->actualAnimation = actualAnimation;
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boat->overlayAnimation = overlayAnimation;
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boat->flagAnimations = flagAnimations;
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boat->onboardAssaultAllowed = onboardAssaultAllowed;
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boat->onboardVisitAllowed = onboardVisitAllowed;
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for(auto & b : bonuses)
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boat->addNewBonus(std::make_shared<Bonus>(b));
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return boat;
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}
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void BoatInstanceConstructor::configureObject(CGObjectInstance * object, CRandomGenerator & rng) const
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{
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}
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void MarketInstanceConstructor::initTypeData(const JsonNode & input)
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{
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for(auto & element : input["modes"].Vector())
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{
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if(MappedKeys::MARKET_NAMES_TO_TYPES.count(element.String()))
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marketModes.insert(MappedKeys::MARKET_NAMES_TO_TYPES.at(element.String()));
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}
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marketEfficiency = input["efficiency"].isNull() ? 5 : input["efficiency"].Integer();
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predefinedOffer = input["offer"];
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title = input["title"].String();
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speech = input["speech"].String();
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}
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CGObjectInstance * MarketInstanceConstructor::create(std::shared_ptr<const ObjectTemplate> tmpl) const
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{
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CGMarket * market = nullptr;
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if(marketModes.size() == 1)
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{
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switch(*marketModes.begin())
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{
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case EMarketMode::ARTIFACT_RESOURCE:
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case EMarketMode::RESOURCE_ARTIFACT:
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market = new CGBlackMarket;
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break;
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case EMarketMode::RESOURCE_SKILL:
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market = new CGUniversity;
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break;
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}
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}
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if(!market)
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market = new CGMarket;
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preInitObject(market);
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if(tmpl)
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market->appearance = tmpl;
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market->marketModes = marketModes;
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market->marketEfficiency = marketEfficiency;
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market->title = market->getObjectName();
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if(!title.empty())
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market->title = VLC->generaltexth->translate(title);
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if (!speech.empty())
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market->speech = VLC->generaltexth->translate(speech);
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return market;
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}
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void MarketInstanceConstructor::configureObject(CGObjectInstance * object, CRandomGenerator & rng) const
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{
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if(auto * university = dynamic_cast<CGUniversity *>(object))
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{
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for(auto skill : JsonRandom::loadSecondary(predefinedOffer, rng))
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university->skills.push_back(skill.first.getNum());
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}
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}
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VCMI_LIB_NAMESPACE_END
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