mirror of
https://github.com/JGRennison/OpenTTD-patches.git
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237 lines
7.4 KiB
C++
237 lines
7.4 KiB
C++
/* $Id$ */
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/*
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* This file is part of OpenTTD.
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* OpenTTD is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, version 2.
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* OpenTTD is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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* See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with OpenTTD. If not, see <http://www.gnu.org/licenses/>.
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*/
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/** @file station_base.h Base classes/functions for stations. */
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#ifndef STATION_BASE_H
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#define STATION_BASE_H
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#include "base_station_base.h"
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#include "newgrf_airport.h"
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#include "cargopacket.h"
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#include "industry_type.h"
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#include "newgrf_storage.h"
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typedef Pool<BaseStation, StationID, 32, 64000> StationPool;
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extern StationPool _station_pool;
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static const byte INITIAL_STATION_RATING = 175;
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struct GoodsEntry {
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enum AcceptancePickup {
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ACCEPTANCE,
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PICKUP
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};
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GoodsEntry() :
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acceptance_pickup(0),
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days_since_pickup(255),
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rating(INITIAL_STATION_RATING),
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last_speed(0),
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last_age(255)
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{}
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byte acceptance_pickup;
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byte days_since_pickup;
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byte rating;
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byte last_speed;
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byte last_age;
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byte amount_fract; ///< Fractional part of the amount in the cargo list
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StationCargoList cargo; ///< The cargo packets of cargo waiting in this station
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};
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/** All airport-related information. Only valid if tile != INVALID_TILE. */
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struct Airport : public TileArea {
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typedef PersistentStorageArray<int32, 16> PersistentStorage;
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Airport() : TileArea(INVALID_TILE, 0, 0) {}
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uint64 flags; ///< stores which blocks on the airport are taken. was 16 bit earlier on, then 32
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byte type; ///< Type of this airport, @see AirportTypes.
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byte layout; ///< Airport layout number.
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Direction rotation; ///< How this airport is rotated.
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PersistentStorage psa; ///< Persistent storage for NewGRF airports
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/**
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* Get the AirportSpec that from the airport type of this airport. If there
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* is no airport (\c tile == INVALID_TILE) then return the dummy AirportSpec.
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* @return The AirportSpec for this airport.
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*/
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const AirportSpec *GetSpec() const
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{
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if (this->tile == INVALID_TILE) return &AirportSpec::dummy;
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return AirportSpec::Get(this->type);
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}
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/**
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* Get the finite-state machine for this airport or the finite-state machine
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* for the dummy airport in case this isn't an airport.
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* @pre this->type < NEW_AIRPORT_OFFSET.
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* @return The state machine for this airport.
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*/
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const AirportFTAClass *GetFTA() const
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{
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return this->GetSpec()->fsm;
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}
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/** Check if this airport has at least one hangar. */
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FORCEINLINE bool HasHangar() const
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{
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return this->GetSpec()->nof_depots > 0;
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}
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/**
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* Add the tileoffset to the base tile of this airport but rotate it first.
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* The base tile is the northernmost tile of this airport. This function
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* helps to make sure that getting the tile of a hangar works even for
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* rotated airport layouts without requiring a rotated array of hangar tiles.
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* @param tidc The tilediff to add to the airport tile.
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* @return The tile of this airport plus the rotated offset.
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*/
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FORCEINLINE TileIndex GetRotatedTileFromOffset(TileIndexDiffC tidc) const
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{
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const AirportSpec *as = this->GetSpec();
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switch (this->rotation) {
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case DIR_N: return this->tile + ToTileIndexDiff(tidc);
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case DIR_E: return this->tile + TileDiffXY(tidc.y, as->size_x - 1 - tidc.x);
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case DIR_S: return this->tile + TileDiffXY(as->size_x - 1 - tidc.x, as->size_y - 1 - tidc.y);
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case DIR_W: return this->tile + TileDiffXY(as->size_y - 1 - tidc.y, tidc.x);
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default: NOT_REACHED();
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}
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}
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/**
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* Get the first tile of the given hangar.
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* @param hangar_num The hangar to get the location of.
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* @pre hangar_num < GetNumHangars().
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* @return A tile with the given hangar.
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*/
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FORCEINLINE TileIndex GetHangarTile(uint hangar_num) const
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{
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const AirportSpec *as = this->GetSpec();
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for (uint i = 0; i < as->nof_depots; i++) {
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if (as->depot_table[i].hangar_num == hangar_num) {
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return this->GetRotatedTileFromOffset(as->depot_table[i].ti);
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}
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}
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NOT_REACHED();
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}
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/**
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* Get the hangar number of the hangar on a specific tile.
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* @param tile The tile to query.
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* @pre IsHangarTile(tile).
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* @return The hangar number of the hangar at the given tile.
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*/
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FORCEINLINE uint GetHangarNum(TileIndex tile) const
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{
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const AirportSpec *as = this->GetSpec();
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for (uint i = 0; i < as->nof_depots; i++) {
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if (this->GetRotatedTileFromOffset(as->depot_table[i].ti) == tile) {
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return as->depot_table[i].hangar_num;
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}
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}
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NOT_REACHED();
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}
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/** Get the number of hangars on this airport. */
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FORCEINLINE uint GetNumHangars() const
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{
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uint num = 0;
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uint counted = 0;
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const AirportSpec *as = this->GetSpec();
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for (uint i = 0; i < as->nof_depots; i++) {
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if (!HasBit(counted, as->depot_table[i].hangar_num)) {
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num++;
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SetBit(counted, as->depot_table[i].hangar_num);
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}
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}
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return num;
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}
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};
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typedef SmallVector<Industry *, 2> IndustryVector;
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/** Station data structure */
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struct Station : SpecializedStation<Station, false> {
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public:
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RoadStop *GetPrimaryRoadStop(RoadStopType type) const
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{
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return type == ROADSTOP_BUS ? bus_stops : truck_stops;
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}
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RoadStop *GetPrimaryRoadStop(const struct RoadVehicle *v) const;
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RoadStop *bus_stops; ///< All the road stops
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TileArea bus_station; ///< Tile area the bus 'station' part covers
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RoadStop *truck_stops; ///< All the truck stops
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TileArea truck_station; ///< Tile area the truck 'station' part covers
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Airport airport; ///< Tile area the airport covers
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TileIndex dock_tile; ///< The location of the dock
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IndustryType indtype; ///< Industry type to get the name from
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StationHadVehicleOfTypeByte had_vehicle_of_type;
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byte time_since_load;
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byte time_since_unload;
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byte last_vehicle_type;
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std::list<Vehicle *> loading_vehicles;
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GoodsEntry goods[NUM_CARGO]; ///< Goods at this station
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uint32 always_accepted; ///< Bitmask of always accepted cargo types (by houses, HQs, industry tiles when industry doesn't accept cargo)
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IndustryVector industries_near; ///< Cached list of industries near the station that can accept cargo, @see DeliverGoodsToIndustry()
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Station(TileIndex tile = INVALID_TILE);
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~Station();
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void AddFacility(StationFacility new_facility_bit, TileIndex facil_xy);
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/**
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* Marks the tiles of the station as dirty.
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*
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* @ingroup dirty
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*/
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void MarkTilesDirty(bool cargo_change) const;
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void UpdateVirtCoord();
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/* virtual */ uint GetPlatformLength(TileIndex tile, DiagDirection dir) const;
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/* virtual */ uint GetPlatformLength(TileIndex tile) const;
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void RecomputeIndustriesNear();
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static void RecomputeIndustriesNearForAll();
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uint GetCatchmentRadius() const;
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Rect GetCatchmentRect() const;
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/* virtual */ FORCEINLINE bool TileBelongsToRailStation(TileIndex tile) const
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{
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return IsRailStationTile(tile) && GetStationIndex(tile) == this->index;
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}
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FORCEINLINE bool TileBelongsToAirport(TileIndex tile) const
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{
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return IsAirportTile(tile) && GetStationIndex(tile) == this->index;
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}
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/* virtual */ uint32 GetNewGRFVariable(const ResolverObject *object, byte variable, byte parameter, bool *available) const;
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/* virtual */ void GetTileArea(TileArea *ta, StationType type) const;
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};
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#define FOR_ALL_STATIONS(var) FOR_ALL_BASE_STATIONS_OF_TYPE(Station, var)
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#endif /* STATION_BASE_H */
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