mirror of
https://github.com/JGRennison/OpenTTD-patches.git
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324 lines
8.1 KiB
C
324 lines
8.1 KiB
C
/*
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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 clear_map.h Map accessors for 'clear' tiles */
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#ifndef CLEAR_MAP_H
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#define CLEAR_MAP_H
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#include "bridge_map.h"
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#include "industry_type.h"
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/**
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* Ground types. Valid densities in comments after the enum.
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*/
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enum ClearGround {
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CLEAR_GRASS = 0, ///< 0-3
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CLEAR_ROUGH = 1, ///< 3
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CLEAR_ROCKS = 2, ///< 3
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CLEAR_FIELDS = 3, ///< 3
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CLEAR_SNOW = 4, ///< 0-3
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CLEAR_DESERT = 5, ///< 1,3
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};
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/**
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* Test if a tile is covered with snow.
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* @param t the tile to check
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* @pre IsTileType(t, MP_CLEAR)
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* @return whether the tile is covered with snow.
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*/
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inline bool IsSnowTile(Tile t)
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{
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assert(IsTileType(t, MP_CLEAR));
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return HasBit(t.m3(), 4);
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}
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/**
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* Get the type of clear tile but never return CLEAR_SNOW.
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* @param t the tile to get the clear ground type of
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* @pre IsTileType(t, MP_CLEAR)
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* @return the ground type
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*/
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inline ClearGround GetRawClearGround(Tile t)
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{
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assert(IsTileType(t, MP_CLEAR));
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return (ClearGround)GB(t.m5(), 2, 3);
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}
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/**
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* Get the type of clear tile.
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* @param t the tile to get the clear ground type of
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* @pre IsTileType(t, MP_CLEAR)
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* @return the ground type
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*/
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inline ClearGround GetClearGround(Tile t)
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{
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if (IsSnowTile(t)) return CLEAR_SNOW;
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return GetRawClearGround(t);
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}
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/**
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* Set the type of clear tile.
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* @param t the tile to set the clear ground type of
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* @param ct the ground type
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* @pre IsTileType(t, MP_CLEAR)
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*/
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inline bool IsClearGround(Tile t, ClearGround ct)
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{
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return GetClearGround(t) == ct;
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}
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/**
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* Get the density of a non-field clear tile.
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* @param t the tile to get the density of
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* @pre IsTileType(t, MP_CLEAR)
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* @return the density
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*/
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inline uint GetClearDensity(Tile t)
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{
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assert(IsTileType(t, MP_CLEAR));
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return GB(t.m5(), 0, 2);
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}
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/**
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* Increment the density of a non-field clear tile.
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* @param t the tile to increment the density of
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* @param d the amount to increment the density with
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* @pre IsTileType(t, MP_CLEAR)
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*/
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inline void AddClearDensity(Tile t, int d)
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{
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assert(IsTileType(t, MP_CLEAR)); // XXX incomplete
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t.m5() += d;
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}
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/**
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* Set the density of a non-field clear tile.
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* @param t the tile to set the density of
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* @param d the new density
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* @pre IsTileType(t, MP_CLEAR)
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*/
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inline void SetClearDensity(Tile t, uint d)
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{
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assert(IsTileType(t, MP_CLEAR));
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SB(t.m5(), 0, 2, d);
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}
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/**
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* Get the counter used to advance to the next clear density/field type.
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* @param t the tile to get the counter of
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* @pre IsTileType(t, MP_CLEAR)
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* @return the value of the counter
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*/
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inline uint GetClearCounter(Tile t)
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{
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assert(IsTileType(t, MP_CLEAR));
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return GB(t.m5(), 5, 3);
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}
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/**
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* Increments the counter used to advance to the next clear density/field type.
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* @param t the tile to increment the counter of
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* @param c the amount to increment the counter with
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* @pre IsTileType(t, MP_CLEAR)
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*/
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inline void AddClearCounter(Tile t, int c)
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{
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assert(IsTileType(t, MP_CLEAR)); // XXX incomplete
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t.m5() += c << 5;
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}
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/**
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* Sets the counter used to advance to the next clear density/field type.
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* @param t the tile to set the counter of
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* @param c the amount to set the counter to
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* @pre IsTileType(t, MP_CLEAR)
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*/
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inline void SetClearCounter(Tile t, uint c)
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{
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assert(IsTileType(t, MP_CLEAR)); // XXX incomplete
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SB(t.m5(), 5, 3, c);
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}
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/**
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* Sets ground type and density in one go, also sets the counter to 0
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* @param t the tile to set the ground type and density for
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* @param type the new ground type of the tile
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* @param density the density of the ground tile
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* @pre IsTileType(t, MP_CLEAR)
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*/
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inline void SetClearGroundDensity(Tile t, ClearGround type, uint density)
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{
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assert(IsTileType(t, MP_CLEAR)); // XXX incomplete
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t.m5() = 0 << 5 | type << 2 | density;
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}
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/**
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* Get the field type (production stage) of the field
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* @param t the field to get the type of
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* @pre GetClearGround(t) == CLEAR_FIELDS
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* @return the field type
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*/
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inline uint GetFieldType(Tile t)
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{
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assert(GetClearGround(t) == CLEAR_FIELDS);
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return GB(t.m3(), 0, 4);
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}
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/**
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* Set the field type (production stage) of the field
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* @param t the field to get the type of
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* @param f the field type
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* @pre GetClearGround(t) == CLEAR_FIELDS
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*/
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inline void SetFieldType(Tile t, uint f)
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{
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assert(GetClearGround(t) == CLEAR_FIELDS); // XXX incomplete
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SB(t.m3(), 0, 4, f);
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}
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/**
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* Get the industry (farm) that made the field
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* @param t the field to get creating industry of
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* @pre GetClearGround(t) == CLEAR_FIELDS
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* @return the industry that made the field
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*/
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inline IndustryID GetIndustryIndexOfField(Tile t)
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{
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assert(GetClearGround(t) == CLEAR_FIELDS);
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return(IndustryID) t.m2();
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}
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/**
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* Set the industry (farm) that made the field
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* @param t the field to get creating industry of
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* @param i the industry that made the field
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* @pre GetClearGround(t) == CLEAR_FIELDS
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*/
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inline void SetIndustryIndexOfField(Tile t, IndustryID i)
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{
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assert(GetClearGround(t) == CLEAR_FIELDS);
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t.m2() = i;
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}
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/**
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* Is there a fence at the given border?
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* @param t the tile to check for fences
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* @param side the border to check
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* @pre IsClearGround(t, CLEAR_FIELDS)
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* @return 0 if there is no fence, otherwise the fence type
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*/
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inline uint GetFence(Tile t, DiagDirection side)
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{
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assert(IsClearGround(t, CLEAR_FIELDS));
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switch (side) {
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default: NOT_REACHED();
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case DIAGDIR_SE: return GB(t.m4(), 2, 3);
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case DIAGDIR_SW: return GB(t.m4(), 5, 3);
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case DIAGDIR_NE: return GB(t.m3(), 5, 3);
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case DIAGDIR_NW: return GB(t.m6(), 2, 3);
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}
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}
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/**
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* Sets the type of fence (and whether there is one) for the given border.
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* @param t the tile to check for fences
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* @param side the border to check
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* @param h 0 if there is no fence, otherwise the fence type
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* @pre IsClearGround(t, CLEAR_FIELDS)
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*/
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inline void SetFence(Tile t, DiagDirection side, uint h)
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{
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assert(IsClearGround(t, CLEAR_FIELDS));
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switch (side) {
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default: NOT_REACHED();
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case DIAGDIR_SE: SB(t.m4(), 2, 3, h); break;
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case DIAGDIR_SW: SB(t.m4(), 5, 3, h); break;
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case DIAGDIR_NE: SB(t.m3(), 5, 3, h); break;
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case DIAGDIR_NW: SB(t.m6(), 2, 3, h); break;
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}
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}
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/**
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* Make a clear tile.
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* @param t the tile to make a clear tile
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* @param g the type of ground
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* @param density the density of the grass/snow/desert etc
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*/
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inline void MakeClear(Tile t, ClearGround g, uint density)
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{
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SetTileType(t, MP_CLEAR);
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t.m1() = 0;
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SetTileOwner(t, OWNER_NONE);
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t.m2() = 0;
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t.m3() = 0;
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t.m4() = 0 << 5 | 0 << 2;
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SetClearGroundDensity(t, g, density); // Sets m5
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t.m6() = 0;
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t.m7() = 0;
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t.m8() = 0;
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}
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/**
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* Make a (farm) field tile.
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* @param t the tile to make a farm field
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* @param field_type the 'growth' level of the field
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* @param industry the industry this tile belongs to
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*/
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inline void MakeField(Tile t, uint field_type, IndustryID industry)
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{
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SetTileType(t, MP_CLEAR);
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t.m1() = 0;
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SetTileOwner(t, OWNER_NONE);
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t.m2() = industry;
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t.m3() = field_type;
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t.m4() = 0 << 5 | 0 << 2;
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SetClearGroundDensity(t, CLEAR_FIELDS, 3);
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SB(t.m6(), 2, 4, 0);
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t.m7() = 0;
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t.m8() = 0;
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}
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/**
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* Make a snow tile.
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* @param t the tile to make snowy
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* @param density The density of snowiness.
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* @pre GetClearGround(t) != CLEAR_SNOW
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*/
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inline void MakeSnow(Tile t, uint density = 0)
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{
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assert(GetClearGround(t) != CLEAR_SNOW);
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SetBit(t.m3(), 4);
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if (GetRawClearGround(t) == CLEAR_FIELDS) {
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SetClearGroundDensity(t, CLEAR_GRASS, density);
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} else {
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SetClearDensity(t, density);
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}
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}
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/**
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* Clear the snow from a tile and return it to its previous type.
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* @param t the tile to clear of snow
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* @pre GetClearGround(t) == CLEAR_SNOW
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*/
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inline void ClearSnow(Tile t)
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{
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assert(GetClearGround(t) == CLEAR_SNOW);
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ClrBit(t.m3(), 4);
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SetClearDensity(t, 3);
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}
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#endif /* CLEAR_MAP_H */
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