mirror of
https://github.com/JGRennison/OpenTTD-patches.git
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184 lines
5.8 KiB
C++
184 lines
5.8 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 vehicle_func.h Functions related to vehicles. */
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#ifndef VEHICLE_FUNC_H
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#define VEHICLE_FUNC_H
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#include "gfx_type.h"
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#include "direction_type.h"
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#include "command_type.h"
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#include "vehicle_type.h"
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#include "engine_type.h"
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#include "transport_type.h"
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#include "newgrf_config.h"
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#include "track_type.h"
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#include "livery.h"
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#define is_custom_sprite(x) (x >= 0xFD)
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#define IS_CUSTOM_FIRSTHEAD_SPRITE(x) (x == 0xFD)
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#define IS_CUSTOM_SECONDHEAD_SPRITE(x) (x == 0xFE)
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static const int VEHICLE_PROFIT_MIN_AGE = DAYS_IN_YEAR * 2; ///< Only vehicles older than this have a meaningful profit.
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static const Money VEHICLE_PROFIT_THRESHOLD = 10000; ///< Threshold for a vehicle to be considered making good profit.
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/**
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* Helper to check whether an image index is valid for a particular vehicle.
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* @param <T> The type of vehicle.
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* @param image_index The image index to check.
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* @return True iff the image index is valid.
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*/
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template <VehicleType T>
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bool IsValidImageIndex(uint8 image_index);
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typedef Vehicle *VehicleFromPosProc(Vehicle *v, void *data);
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void VehicleServiceInDepot(Vehicle *v);
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uint CountVehiclesInChain(const Vehicle *v);
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void FindVehicleOnPos(TileIndex tile, void *data, VehicleFromPosProc *proc);
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void FindVehicleOnPosXY(int x, int y, void *data, VehicleFromPosProc *proc);
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bool HasVehicleOnPos(TileIndex tile, void *data, VehicleFromPosProc *proc);
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bool HasVehicleOnPosXY(int x, int y, void *data, VehicleFromPosProc *proc);
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void CallVehicleTicks();
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uint8 CalcPercentVehicleFilled(const Vehicle *v, StringID *colour);
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void VehicleLengthChanged(const Vehicle *u);
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byte VehicleRandomBits();
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void ResetVehicleHash();
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void ResetVehicleColourMap();
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byte GetBestFittingSubType(Vehicle *v_from, Vehicle *v_for, CargoID dest_cargo_type);
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void ViewportAddVehicles(DrawPixelInfo *dpi);
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void ShowNewGrfVehicleError(EngineID engine, StringID part1, StringID part2, GRFBugs bug_type, bool critical);
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CommandCost TunnelBridgeIsFree(TileIndex tile, TileIndex endtile, const Vehicle *ignore = NULL);
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void DecreaseVehicleValue(Vehicle *v);
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void CheckVehicleBreakdown(Vehicle *v);
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void AgeVehicle(Vehicle *v);
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void VehicleEnteredDepotThisTick(Vehicle *v);
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UnitID GetFreeUnitNumber(VehicleType type);
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void VehicleEnterDepot(Vehicle *v);
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bool CanBuildVehicleInfrastructure(VehicleType type);
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/** Position information of a vehicle after it moved */
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struct GetNewVehiclePosResult {
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int x, y; ///< x and y position of the vehicle after moving
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TileIndex old_tile; ///< Current tile of the vehicle
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TileIndex new_tile; ///< Tile of the vehicle after moving
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};
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GetNewVehiclePosResult GetNewVehiclePos(const Vehicle *v);
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Direction GetDirectionTowards(const Vehicle *v, int x, int y);
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/**
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* Is the given vehicle type buildable by a company?
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* @param type Vehicle type being queried.
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* @return Vehicle type is buildable by a company.
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*/
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static inline bool IsCompanyBuildableVehicleType(VehicleType type)
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{
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switch (type) {
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case VEH_TRAIN:
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case VEH_ROAD:
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case VEH_SHIP:
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case VEH_AIRCRAFT:
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return true;
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default: return false;
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}
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}
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/**
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* Is the given vehicle buildable by a company?
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* @param v Vehicle being queried.
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* @return Vehicle is buildable by a company.
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*/
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static inline bool IsCompanyBuildableVehicleType(const BaseVehicle *v)
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{
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return IsCompanyBuildableVehicleType(v->type);
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}
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LiveryScheme GetEngineLiveryScheme(EngineID engine_type, EngineID parent_engine_type, const Vehicle *v);
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const struct Livery *GetEngineLivery(EngineID engine_type, CompanyID company, EngineID parent_engine_type, const Vehicle *v, byte livery_setting);
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SpriteID GetEnginePalette(EngineID engine_type, CompanyID company);
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SpriteID GetVehiclePalette(const Vehicle *v);
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extern const uint32 _veh_build_proc_table[];
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extern const uint32 _veh_sell_proc_table[];
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extern const uint32 _veh_refit_proc_table[];
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extern const uint32 _send_to_depot_proc_table[];
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/* Functions to find the right command for certain vehicle type */
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static inline uint32 GetCmdBuildVeh(VehicleType type)
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{
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return _veh_build_proc_table[type];
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}
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static inline uint32 GetCmdBuildVeh(const BaseVehicle *v)
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{
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return GetCmdBuildVeh(v->type);
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}
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static inline uint32 GetCmdSellVeh(VehicleType type)
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{
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return _veh_sell_proc_table[type];
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}
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static inline uint32 GetCmdSellVeh(const BaseVehicle *v)
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{
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return GetCmdSellVeh(v->type);
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}
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static inline uint32 GetCmdRefitVeh(VehicleType type)
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{
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return _veh_refit_proc_table[type];
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}
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static inline uint32 GetCmdRefitVeh(const BaseVehicle *v)
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{
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return GetCmdRefitVeh(v->type);
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}
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static inline uint32 GetCmdSendToDepot(VehicleType type)
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{
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return _send_to_depot_proc_table[type];
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}
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static inline uint32 GetCmdSendToDepot(const BaseVehicle *v)
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{
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return GetCmdSendToDepot(v->type);
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}
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CommandCost EnsureNoVehicleOnGround(TileIndex tile);
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CommandCost EnsureNoTrainOnTrackBits(TileIndex tile, TrackBits track_bits);
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extern VehicleID _new_vehicle_id;
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extern uint16 _returned_refit_capacity;
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extern uint16 _returned_mail_refit_capacity;
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bool CanVehicleUseStation(EngineID engine_type, const struct Station *st);
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bool CanVehicleUseStation(const Vehicle *v, const struct Station *st);
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void ReleaseDisastersTargetingVehicle(VehicleID vehicle);
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typedef SmallVector<VehicleID, 2> VehicleSet;
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void GetVehicleSet(VehicleSet &set, Vehicle *v, uint8 num_vehicles);
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void CheckCargoCapacity(Vehicle *v);
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#endif /* VEHICLE_FUNC_H */
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