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fec30e37ac
Improve documentation Read old formats Fix free ID function. Return first gap in map
198 lines
5.5 KiB
C++
198 lines
5.5 KiB
C++
/*
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Minetest
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Copyright (C) 2015 est31 <mtest31@outlook.com>
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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 Lesser General Public License as published by
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the Free Software Foundation; either version 2.1 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 Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#pragma once
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#include "irr_v3d.h"
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#include "noise.h" // for PcgRandom
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#include <map>
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#include <list>
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#include <vector>
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#include <istream>
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#include "util/container.h"
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#include "util/numeric.h"
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#ifndef ANDROID
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#include "cmake_config.h"
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#endif
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#if USE_SPATIAL
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#include <spatialindex/SpatialIndex.h>
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#include "util/serialize.h"
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#endif
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struct Area {
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Area(u32 area_id) : id(area_id) {}
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Area(const v3s16 &mine, const v3s16 &maxe, u32 area_id = U32_MAX) :
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id(area_id), minedge(mine), maxedge(maxe)
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{
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sortBoxVerticies(minedge, maxedge);
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}
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u32 id;
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v3s16 minedge, maxedge;
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std::string data;
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};
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class AreaStore {
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public:
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AreaStore() :
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m_res_cache(1000, &cacheMiss, this)
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{}
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virtual ~AreaStore() = default;
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static AreaStore *getOptimalImplementation();
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virtual void reserve(size_t count) {};
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size_t size() const { return areas_map.size(); }
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/// Add an area to the store.
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/// Updates the area's ID if it hasn't already been set.
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/// @return Whether the area insertion was successful.
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virtual bool insertArea(Area *a) = 0;
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/// Removes an area from the store by ID.
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/// @return Whether the area was in the store and removed.
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virtual bool removeArea(u32 id) = 0;
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/// Finds areas that the passed position is contained in.
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/// Stores output in passed vector.
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void getAreasForPos(std::vector<Area *> *result, v3s16 pos);
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/// Finds areas that are completely contained inside the area defined
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/// by the passed edges. If @p accept_overlap is true this finds any
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/// areas that intersect with the passed area at any point.
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virtual void getAreasInArea(std::vector<Area *> *result,
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v3s16 minedge, v3s16 maxedge, bool accept_overlap) = 0;
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/// Sets cache parameters.
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void setCacheParams(bool enabled, u8 block_radius, size_t limit);
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/// Returns a pointer to the area coresponding to the passed ID,
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/// or NULL if it doesn't exist.
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const Area *getArea(u32 id) const;
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/// Serializes the store's areas to a binary ostream.
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void serialize(std::ostream &is) const;
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/// Deserializes the Areas from a binary istream.
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/// This does not currently clear the AreaStore before adding the
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/// areas, making it possible to deserialize multiple serialized
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/// AreaStores.
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void deserialize(std::istream &is);
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protected:
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/// Invalidates the getAreasForPos cache.
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/// Call after adding or removing an area.
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void invalidateCache();
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/// Implementation of getAreasForPos.
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/// getAreasForPos calls this if the cache is disabled.
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virtual void getAreasForPosImpl(std::vector<Area *> *result, v3s16 pos) = 0;
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/// Returns the next area ID and increments it.
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u32 getNextId() const;
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// Note: This can't be an unordered_map, since all
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// references would be invalidated on rehash.
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typedef std::map<u32, Area> AreaMap;
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AreaMap areas_map;
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private:
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/// Called by the cache when a value isn't found in the cache.
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static void cacheMiss(void *data, const v3s16 &mpos, std::vector<Area *> *dest);
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bool m_cache_enabled = true;
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/// Range, in nodes, of the getAreasForPos cache.
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/// If you modify this, call invalidateCache()
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u8 m_cacheblock_radius = 64;
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LRUCache<v3s16, std::vector<Area *> > m_res_cache;
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};
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class VectorAreaStore : public AreaStore {
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public:
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virtual void reserve(size_t count) { m_areas.reserve(count); }
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virtual bool insertArea(Area *a);
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virtual bool removeArea(u32 id);
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virtual void getAreasInArea(std::vector<Area *> *result,
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v3s16 minedge, v3s16 maxedge, bool accept_overlap);
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protected:
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virtual void getAreasForPosImpl(std::vector<Area *> *result, v3s16 pos);
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private:
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std::vector<Area *> m_areas;
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};
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#if USE_SPATIAL
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class SpatialAreaStore : public AreaStore {
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public:
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SpatialAreaStore();
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virtual ~SpatialAreaStore();
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virtual bool insertArea(Area *a);
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virtual bool removeArea(u32 id);
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virtual void getAreasInArea(std::vector<Area *> *result,
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v3s16 minedge, v3s16 maxedge, bool accept_overlap);
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protected:
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virtual void getAreasForPosImpl(std::vector<Area *> *result, v3s16 pos);
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private:
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SpatialIndex::ISpatialIndex *m_tree = nullptr;
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SpatialIndex::IStorageManager *m_storagemanager = nullptr;
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class VectorResultVisitor : public SpatialIndex::IVisitor {
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public:
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VectorResultVisitor(std::vector<Area *> *result, SpatialAreaStore *store) :
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m_store(store),
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m_result(result)
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{}
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~VectorResultVisitor() {}
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virtual void visitNode(const SpatialIndex::INode &in) {}
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virtual void visitData(const SpatialIndex::IData &in)
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{
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u32 id = in.getIdentifier();
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std::map<u32, Area>::iterator itr = m_store->areas_map.find(id);
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assert(itr != m_store->areas_map.end());
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m_result->push_back(&itr->second);
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}
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virtual void visitData(std::vector<const SpatialIndex::IData *> &v)
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{
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for (size_t i = 0; i < v.size(); i++)
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visitData(*(v[i]));
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}
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private:
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SpatialAreaStore *m_store = nullptr;
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std::vector<Area *> *m_result = nullptr;
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};
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};
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#endif // USE_SPATIAL
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