mirror of
https://github.com/JGRennison/OpenTTD-patches.git
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143 lines
5.7 KiB
C++
143 lines
5.7 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 ground_vehicle.hpp Base class and functions for all vehicles that move through ground. */
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#ifndef GROUND_VEHICLE_HPP
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#define GROUND_VEHICLE_HPP
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#include "vehicle_base.h"
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#include "landscape.h"
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/** What is the status of our acceleration? */
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enum AccelStatus {
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AS_ACCEL, ///< We want to go faster, if possible of course.
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AS_BRAKE ///< We want to stop.
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};
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/**
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* Cached, frequently calculated values.
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* All of these values except cached_slope_resistance are set only for the first part of a vehicle.
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*/
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struct GroundVehicleCache {
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/* Cached acceleration values, recalculated when the cargo on a vehicle changes (in addition to the conditions below) */
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uint32 cached_weight; ///< Total weight of the consist (valid only for the first engine).
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uint32 cached_slope_resistance; ///< Resistance caused by weight when this vehicle part is at a slope.
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uint32 cached_max_te; ///< Maximum tractive effort of consist (valid only for the first engine).
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uint16 cached_axle_resistance; ///< Resistance caused by the axles of the vehicle (valid only for the first engine).
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/* Cached acceleration values, recalculated on load and each time a vehicle is added to/removed from the consist. */
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uint16 cached_max_track_speed; ///< Maximum consist speed limited by track type (valid only for the first engine).
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uint32 cached_power; ///< Total power of the consist (valid only for the first engine).
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uint32 cached_air_drag; ///< Air drag coefficient of the vehicle (valid only for the first engine).
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/* Cached NewGRF values, recalculated on load and each time a vehicle is added to/removed from the consist. */
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uint16 cached_total_length; ///< Length of the whole vehicle (valid only for the first engine).
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EngineID first_engine; ///< Cached EngineID of the front vehicle. INVALID_ENGINE for the front vehicle itself.
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uint8 cached_veh_length; ///< Length of this vehicle in units of 1/8 of normal length. It is cached because this can be set by a callback.
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};
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/** Ground vehicle flags. */
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enum GroundVehicleFlags {
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GVF_GOINGUP_BIT = 0,
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GVF_GOINGDOWN_BIT = 1,
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};
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/**
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* Base class for all vehicles that move through ground.
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*
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* Child classes must define all of the following functions.
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* These functions are not defined as pure virtual functions at this class to improve performance.
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*
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* virtual uint16 GetPower() const = 0;
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* virtual uint16 GetPoweredPartPower(const T *head) const = 0;
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* virtual uint16 GetWeight() const = 0;
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* virtual byte GetTractiveEffort() const = 0;
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* virtual byte GetAirDrag() const = 0;
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* virtual byte GetAirDragArea() const = 0;
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* virtual AccelStatus GetAccelerationStatus() const = 0;
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* virtual uint16 GetCurrentSpeed() const = 0;
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* virtual uint32 GetRollingFriction() const = 0;
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* virtual int GetAccelerationType() const = 0;
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* virtual int32 GetSlopeSteepness() const = 0;
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* virtual int GetDisplayMaxSpeed() const = 0;
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* virtual uint16 GetMaxTrackSpeed() const = 0;
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* virtual bool TileMayHaveSlopedTrack() const = 0;
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*/
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template <class T, VehicleType Type>
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struct GroundVehicle : public SpecializedVehicle<T, Type> {
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GroundVehicleCache gcache; ///< Cache of often calculated values.
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uint16 gv_flags; ///< @see GroundVehicleFlags.
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/**
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* The constructor at SpecializedVehicle must be called.
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*/
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GroundVehicle() : SpecializedVehicle<T, Type>() {}
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void PowerChanged();
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void CargoChanged();
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int GetAcceleration() const;
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/**
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* Calculates the total slope resistance for this vehicle.
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* @return Slope resistance.
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*/
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FORCEINLINE int32 GetSlopeResistance() const
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{
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int32 incl = 0;
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for (const T *u = T::From(this); u != NULL; u = u->Next()) {
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if (HasBit(u->gv_flags, GVF_GOINGUP_BIT)) {
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incl += u->gcache.cached_slope_resistance;
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} else if (HasBit(u->gv_flags, GVF_GOINGDOWN_BIT)) {
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incl -= u->gcache.cached_slope_resistance;
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}
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}
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return incl;
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}
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/**
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* Checks if the vehicle is in a slope and sets the required flags in that case.
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* @param new_tile True if the vehicle reached a new tile.
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* @param turned Indicates if the vehicle has turned.
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* @return Old height of the vehicle.
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*/
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FORCEINLINE byte UpdateInclination(bool new_tile, bool turned)
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{
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byte old_z = this->z_pos;
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this->z_pos = GetSlopeZ(this->x_pos, this->y_pos);
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if (new_tile) {
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ClrBit(this->gv_flags, GVF_GOINGUP_BIT);
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ClrBit(this->gv_flags, GVF_GOINGDOWN_BIT);
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if (T::From(this)->TileMayHaveSlopedTrack()) {
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/* To check whether the current tile is sloped, and in which
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* direction it is sloped, we get the 'z' at the center of
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* the tile (middle_z) and the edge of the tile (old_z),
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* which we then can compare. */
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static const int HALF_TILE_SIZE = TILE_SIZE / 2;
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static const int INV_TILE_SIZE_MASK = ~(TILE_SIZE - 1);
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byte middle_z = GetSlopeZ((this->x_pos & INV_TILE_SIZE_MASK) | HALF_TILE_SIZE, (this->y_pos & INV_TILE_SIZE_MASK) | HALF_TILE_SIZE);
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if (middle_z != this->z_pos) {
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SetBit(this->gv_flags, (middle_z > old_z) ? GVF_GOINGUP_BIT : GVF_GOINGDOWN_BIT);
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}
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}
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}
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this->UpdateViewport(true, turned);
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return old_z;
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}
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};
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#endif /* GROUND_VEHICLE_HPP */
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