mirror of
https://github.com/worldforge/cyphesis
synced 2026-08-13 12:26:04 -04:00
Used to resolve entities from soft properties which refer to entities. This is then used to check that a tool is wielded before use.
288 lines
8.1 KiB
C++
288 lines
8.1 KiB
C++
/*
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Copyright (C) 2018 Erik Ogenvik
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "CyPy_MemMap.h"
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#include "CyPy_MemEntity.h"
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#include "CyPy_RootEntity.h"
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#include "CyPy_EntityFilter.h"
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#include <Atlas/Objects/objectFactory.h>
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#include <rulesets/entityfilter/Providers.h>
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#include <rulesets/BaseWorld.h>
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using Atlas::Objects::Root;
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using Atlas::Objects::Factories;
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using Atlas::Objects::Entity::RootEntity;
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CyPy_MemMap::CyPy_MemMap(Py::PythonClassInstance* self, Py::Tuple& args, Py::Dict& kwds)
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: WrapperBase(self, args, kwds), m_owned(true)
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{
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m_value = new MemMap();
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}
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CyPy_MemMap::CyPy_MemMap(Py::PythonClassInstance* self, MemMap* value)
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: WrapperBase(self, value), m_owned(false)
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{
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}
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CyPy_MemMap::~CyPy_MemMap()
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{
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if (m_owned) {
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delete m_value;
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}
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}
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void CyPy_MemMap::init_type()
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{
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behaviors().name("MemMap");
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behaviors().doc("");
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PYCXX_ADD_VARARGS_METHOD(find_by_location, find_by_location, "");
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PYCXX_ADD_VARARGS_METHOD(find_by_type, find_by_type, "");
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PYCXX_ADD_VARARGS_METHOD(add, updateAdd, "");
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PYCXX_ADD_VARARGS_METHOD(update, updateAdd, "");
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PYCXX_ADD_VARARGS_METHOD(delete, delete_, "");
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PYCXX_ADD_VARARGS_METHOD(get, get, "");
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PYCXX_ADD_VARARGS_METHOD(get_add, get_add, "");
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PYCXX_ADD_VARARGS_METHOD(add_hooks_append, add_hooks_append, "");
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PYCXX_ADD_VARARGS_METHOD(update_hooks_append, update_hooks_append, "");
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PYCXX_ADD_VARARGS_METHOD(delete_hooks_append, delete_hooks_append, "");
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PYCXX_ADD_VARARGS_METHOD(find_by_filter, find_by_filter, "");
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PYCXX_ADD_VARARGS_METHOD(find_by_location_query, find_by_location_query, "");
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PYCXX_ADD_VARARGS_METHOD(add_entity_memory, add_entity_memory, "");
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PYCXX_ADD_VARARGS_METHOD(recall_entity_memory, recall_entity_memory, "");
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behaviors().readyType();
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}
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Py::Object CyPy_MemMap::find_by_location(const Py::Tuple& args)
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{
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Py::List list;
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args.verify_length(3);
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auto& location = verifyObject<CyPy_Location>(args[0]);
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if (!location.isValid()) {
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throw Py::RuntimeError("Location is incomplete");
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}
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auto radius = verifyNumeric(args[1]);
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auto type = verifyString(args[2]);
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auto res = m_value->findByLocation(location, radius, type);
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for (auto& entry : res) {
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list.append(CyPy_LocatedEntity::wrap(entry));
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}
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return list;
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}
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Py::Object CyPy_MemMap::find_by_type(const Py::Tuple& args)
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{
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Py::List list;
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args.verify_length(1);
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auto what = verifyString(args.front());
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auto res = m_value->findByType(what);
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for (auto& entry : res) {
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list.append(CyPy_LocatedEntity::wrap(entry));
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}
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return list;
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}
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Py::Object CyPy_MemMap::updateAdd(const Py::Tuple& args)
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{
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args.verify_length(2);
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double time = verifyNumeric(args[1]);
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if (CyPy_Element::check(args[0])) {
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auto& element = CyPy_Element::value(args[0]);
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if (!element.isMap()) {
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throw Py::TypeError("arg is a Message that is not a map");
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}
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try {
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Root obj = Factories::instance()->createObject(element.Map());
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RootEntity ent = Atlas::Objects::smart_dynamic_cast<RootEntity>(obj);
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if (!ent.isValid()) {
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throw Py::TypeError("arg is a Message that does not represent an entity");
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}
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auto ret = m_value->updateAdd(ent, time);
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if (!ret) {
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throw Py::TypeError("arg is a Message that does not have an ID");
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}
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return CyPy_MemEntity::wrap(ret.get());
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}
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catch (Atlas::Message::WrongTypeException&) {
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throw Py::TypeError("arg is a Message that contains malformed attributes");
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}
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} else if (CyPy_RootEntity::check(args[0])) {
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auto& ent = CyPy_RootEntity::value(args[0]);
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auto ret = m_value->updateAdd(ent, time);
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if (!ret) {
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throw Py::TypeError("arg is a Message that does not have an ID");
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}
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return CyPy_MemEntity::wrap(ret.get());
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} else {
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throw Py::TypeError("arg is not an Atlas Entity or Message");
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}
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}
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Py::Object CyPy_MemMap::delete_(const Py::Tuple& args)
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{
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args.verify_length(1);
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m_value->del(verifyString(args[0]));
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return Py::None();
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}
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Py::Object CyPy_MemMap::get(const Py::Tuple& args)
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{
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args.verify_length(1);
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auto ret = m_value->get(verifyString(args[0]));
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if (!ret) {
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return Py::None();
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}
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return CyPy_MemEntity::wrap(ret.get());
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}
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Py::Object CyPy_MemMap::get_add(const Py::Tuple& args)
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{
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args.verify_length(1);
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auto ret = m_value->getAdd(verifyString(args[0]));
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if (!ret) {
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return Py::None();
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}
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return CyPy_MemEntity::wrap(ret.get());
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}
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Py::Object CyPy_MemMap::add_hooks_append(const Py::Tuple& args)
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{
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args.verify_length(1);
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m_value->getAddHooks().push_back(verifyString(args[0]));
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return Py::None();
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}
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Py::Object CyPy_MemMap::update_hooks_append(const Py::Tuple& args)
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{
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args.verify_length(1);
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m_value->getUpdateHooks().push_back(verifyString(args[0]));
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return Py::None();
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}
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Py::Object CyPy_MemMap::delete_hooks_append(const Py::Tuple& args)
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{
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args.verify_length(1);
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m_value->getDeleteHooks().push_back(verifyString(args[0]));
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return Py::None();
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}
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///\brief Return Python list of entities that match a given Filter
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Py::Object CyPy_MemMap::find_by_filter(const Py::Tuple& args)
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{
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args.verify_length(1);
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auto& filter = verifyObject<CyPy_Filter>(args[0]);
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Py::List list;
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for (auto& entry : m_value->getEntities()) {
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EntityFilter::QueryContext queryContext{*entry.second};
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queryContext.entity_lookup_fn = [&](const std::string& id) { return m_value->get(id);};
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if (filter->match(queryContext)) {
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list.append(CyPy_MemEntity::wrap(entry.second.get()));
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}
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}
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return list;
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}
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///\brief find entities using a query in a specified location
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Py::Object CyPy_MemMap::find_by_location_query(const Py::Tuple& args)
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{
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args.verify_length(3);
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auto& location = verifyObject<CyPy_Location>(args[0]);
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auto radius = verifyNumeric(args[1]);
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auto& filter = verifyObject<CyPy_Filter>(args[2]);
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if (!location.isValid()) {
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throw Py::RuntimeError("Location is incomplete");
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}
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//Create a vector and fill it with entities that match the given filter and are in range
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float square_range = radius * radius;
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Py::List list;
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if (location.m_loc && location.m_loc->m_contains) {
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for (const auto& entry : *location.m_loc->m_contains) {
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EntityFilter::QueryContext queryContext{*entry};
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queryContext.entity_lookup_fn = [&](const std::string& id) { return m_value->get(id);};
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if (entry->isVisible() && filter->match(queryContext)) {
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if (squareDistance(location.pos(), entry->m_location.pos()) < square_range) {
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list.append(CyPy_LocatedEntity::wrap(entry));
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}
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}
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}
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}
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return list;
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}
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Py::Object CyPy_MemMap::add_entity_memory(const Py::Tuple& args)
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{
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args.verify_length(3);
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auto id = verifyString(args[0]);
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auto memory_name = verifyString(args[1]);
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m_value->addEntityMemory(id, memory_name, CyPy_Element::asElement(args[2]));
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return Py::None();
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}
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Py::Object CyPy_MemMap::recall_entity_memory(const Py::Tuple& args)
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{
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args.verify_length(2);
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auto id = verifyString(args[0]);
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auto memory_name = verifyString(args[1]);
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Atlas::Message::Element element_val;
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m_value->recallEntityMemory(id, memory_name, element_val);
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if (element_val.isNone()) {
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return Py::None();
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}
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return CyPy_Element::wrap(element_val);
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}
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