120 lines
3.6 KiB
C++
120 lines
3.6 KiB
C++
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#ifndef STAR_SPAWNER_HPP
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#define STAR_SPAWNER_HPP
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#include "StarPeriodic.hpp"
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#include "StarIdMap.hpp"
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#include "StarTtlCache.hpp"
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#include "StarWorldGeometry.hpp"
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#include "StarMonsterDatabase.hpp"
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#include "StarGameTypes.hpp"
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#include "StarCollisionBlock.hpp"
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#include "StarSpawnTypeDatabase.hpp"
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namespace Star {
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STAR_CLASS(SpawnerFacade);
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STAR_CLASS(Spawner);
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class SpawnerFacade {
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public:
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virtual ~SpawnerFacade(){};
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virtual WorldGeometry geometry() const = 0;
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virtual List<RectF> clientWindows() const = 0;
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// Should return false if the given region is not ready yet for spawning
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virtual bool signalRegion(RectF const& region) const = 0;
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virtual bool isFreeSpace(RectF const& area) const = 0;
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virtual CollisionKind collision(Vec2I const& position) const = 0;
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virtual bool isBackgroundEmpty(Vec2I const& position) const = 0;
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virtual LiquidLevel liquidLevel(Vec2I const& pos) const = 0;
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virtual bool spawningProhibited(RectF const& area) const = 0;
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virtual uint64_t spawnSeed() const = 0;
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virtual SpawnProfile spawnProfile(Vec2F const& position) const = 0;
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virtual float dayLevel() const = 0;
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virtual float threatLevel() const = 0;
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// May return NullEntityId if spawning fails for some reason.
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virtual EntityId spawnEntity(EntityPtr entity) const = 0;
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virtual EntityPtr getEntity(EntityId entityId) const = 0;
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virtual void despawnEntity(EntityId entityId) = 0;
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};
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class Spawner {
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public:
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Spawner();
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void init(SpawnerFacadePtr facade);
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// Despawns all spawned entities before shutting down
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void uninit();
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// An inactive spawner will not spawn new entities into newly visited
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// regions.
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bool active() const;
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void setActive(bool active);
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// Activates the given spawn cells, spawning monsters in them if necessary.
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void activateRegion(RectF region);
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// Activates the given spawn cells *without* spawning monsters in them, does
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// nothing if they are already active.
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void activateEmptyRegion(RectF region);
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void update();
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private:
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struct SpawnCellDebugInfo {
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SpawnParameters spawnParameters;
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int spawns;
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int spawnAttempts;
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};
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Vec2I cellIndexForPosition(Vec2F const& position) const;
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List<Vec2I> cellIndexesForRange(RectF const& range) const;
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RectF cellRegion(Vec2I const& cellIndex) const;
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// Is the cell spawnable, and if so, what are the valid spawn parameters for it?
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Maybe<SpawnParameters> spawnParametersForCell(Vec2I const& cellIndex) const;
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// Finds a position for the given bounding box inside the given spawn cell
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// which matches the given spawn parameters.
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Maybe<Vec2F> adjustSpawnRegion(RectF const& spawnRegion, RectF const& boundBox, SpawnParameters const& spawnParameters) const;
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// Spawns monsters in a newly active cell
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void spawnInCell(Vec2I const& cell);
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void debugShowSpawnCells();
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unsigned m_spawnCellSize;
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unsigned m_spawnCellMinimumEmptyTiles;
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unsigned m_spawnCellMinimumLiquidTiles;
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unsigned m_spawnCellMinimumNearSurfaceTiles;
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unsigned m_spawnCellMinimumNearCeilingTiles;
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unsigned m_spawnCellMinimumAirTiles;
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unsigned m_spawnCellMinimumExposedTiles;
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unsigned m_spawnCellNearSurfaceDistance;
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unsigned m_spawnCellNearCeilingDistance;
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float m_minimumDayLevel;
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float m_minimumLiquidLevel;
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float m_spawnCheckResolution;
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int m_spawnSurfaceCheckDistance;
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int m_spawnCeilingCheckDistance;
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float m_spawnProhibitedCheckPadding;
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float m_spawnCellLifetime;
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unsigned m_windowActivationBorder;
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bool m_active;
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SpawnerFacadePtr m_facade;
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HashSet<EntityId> m_spawnedEntities;
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HashMap<Vec2I, float> m_activeSpawnCells;
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bool m_debug;
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HashMap<Vec2I, SpawnCellDebugInfo> m_debugSpawnInfo;
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};
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}
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#endif
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