
Move them into a new GoodsEntryData struct referenced using a std::unique_ptr from GoodsEntry. The unique_ptr may be nullptr if the cargo list and flow stat map are both empty (this is the case for unused cargoes). This reduces GoodsEntry from 128 to 24 bytes, and Station from 8680 to 2024 bytes, (on Linux x86_64).
715 lines
25 KiB
C++
715 lines
25 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 command.cpp Handling of NewGRF road stops. */
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#include "stdafx.h"
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#include "debug.h"
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#include "station_base.h"
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#include "roadstop_base.h"
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#include "newgrf_roadstop.h"
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#include "newgrf_class_func.h"
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#include "newgrf_cargo.h"
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#include "newgrf_roadtype.h"
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#include "gfx_type.h"
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#include "company_func.h"
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#include "road.h"
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#include "window_type.h"
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#include "date_func.h"
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#include "town.h"
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#include "viewport_func.h"
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#include "newgrf_animation_base.h"
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#include "newgrf_sound.h"
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#include "newgrf_extension.h"
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#include "safeguards.h"
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template <typename Tspec, typename Tid, Tid Tmax>
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void NewGRFClass<Tspec, Tid, Tmax>::InsertDefaults()
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{
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/* Set up initial data */
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RoadStopClass::Get(RoadStopClass::Allocate('DFLT'))->name = STR_STATION_CLASS_DFLT;
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RoadStopClass::Get(RoadStopClass::Allocate('DFLT'))->Insert(nullptr);
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RoadStopClass::Get(RoadStopClass::Allocate('WAYP'))->name = STR_STATION_CLASS_WAYP;
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RoadStopClass::Get(RoadStopClass::Allocate('WAYP'))->Insert(nullptr);
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}
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template <typename Tspec, typename Tid, Tid Tmax>
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bool NewGRFClass<Tspec, Tid, Tmax>::IsUIAvailable(uint index) const
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{
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return true;
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}
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INSTANTIATE_NEWGRF_CLASS_METHODS(RoadStopClass, RoadStopSpec, RoadStopClassID, ROADSTOP_CLASS_MAX)
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static const uint NUM_ROADSTOPSPECS_PER_STATION = 63; ///< Maximum number of parts per station.
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uint32 RoadStopScopeResolver::GetRandomBits() const
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{
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if (this->st == nullptr) return 0;
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uint32 bits = this->st->random_bits;
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if (this->tile != INVALID_TILE && Station::IsExpected(this->st)) {
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bits |= Station::From(this->st)->GetRoadStopRandomBits(this->tile) << 16;
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}
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return bits;
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}
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uint32 RoadStopScopeResolver::GetTriggers() const
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{
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return this->st == nullptr ? 0 : this->st->waiting_triggers;
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}
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uint32 RoadStopScopeResolver::GetNearbyRoadStopsInfo(uint32 parameter, RoadStopScopeResolver::NearbyRoadStopInfoMode mode) const
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{
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if (this->tile == INVALID_TILE) return 0xFFFFFFFF;
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TileIndex nearby_tile = GetNearbyTile(parameter, this->tile);
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if (!IsAnyRoadStopTile(nearby_tile)) return 0xFFFFFFFF;
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uint32 grfid = this->st->roadstop_speclist[GetCustomRoadStopSpecIndex(this->tile)].grfid;
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bool same_orientation = GetStationGfx(this->tile) == GetStationGfx(nearby_tile);
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bool same_station = GetStationIndex(nearby_tile) == this->st->index;
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uint32 res = GetStationGfx(nearby_tile) << 12 | !same_orientation << 11 | !!same_station << 10;
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StationType type = GetStationType(nearby_tile);
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if (type == STATION_TRUCK) res |= (1 << 16);
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if (type == STATION_ROADWAYPOINT) res |= (2 << 16);
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if (type == this->type) SetBit(res, 20);
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uint16 localidx = 0;
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if (IsCustomRoadStopSpecIndex(nearby_tile)) {
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const RoadStopSpecList ssl = BaseStation::GetByTile(nearby_tile)->roadstop_speclist[GetCustomRoadStopSpecIndex(nearby_tile)];
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localidx = ssl.localidx;
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res |= 1 << (ssl.grfid != grfid ? 9 : 8);
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}
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if (IsDriveThroughStopTile(nearby_tile)) {
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res |= (GetDriveThroughStopDisallowedRoadDirections(nearby_tile) << 21);
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}
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switch (mode) {
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case NearbyRoadStopInfoMode::Standard:
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default:
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return res | ClampTo<uint8>(localidx);
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case NearbyRoadStopInfoMode::Extended:
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return res | (localidx & 0xFF) | ((localidx & 0xFF00) << 16);
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case NearbyRoadStopInfoMode::V2:
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return (res << 8) | localidx;
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}
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}
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uint32 RoadStopScopeResolver::GetVariable(uint16 variable, uint32 parameter, GetVariableExtra *extra) const
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{
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auto get_road_type_variable = [&](RoadTramType rtt) -> uint32 {
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RoadType rt;
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if (this->tile == INVALID_TILE) {
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rt = (GetRoadTramType(this->roadtype) == rtt) ? this->roadtype : INVALID_ROADTYPE;
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} else {
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rt = GetRoadType(this->tile, rtt);
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}
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if (rt == INVALID_ROADTYPE) {
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return 0xFFFFFFFF;
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} else {
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return GetReverseRoadTypeTranslation(rt, this->roadstopspec->grf_prop.grffile);
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}
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};
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switch (variable) {
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/* View/rotation */
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case 0x40: return this->view;
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/* Stop type: 0: bus, 1: truck, 2: waypoint */
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case 0x41:
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if (this->type == STATION_BUS) return 0;
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if (this->type == STATION_TRUCK) return 1;
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return 2;
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/* Terrain type */
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case 0x42: return this->tile == INVALID_TILE ? 0 : GetTerrainType(this->tile, TCX_NORMAL); // terrain_type
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/* Road type */
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case 0x43: return get_road_type_variable(RTT_ROAD);
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/* Tram type */
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case 0x44: return get_road_type_variable(RTT_TRAM);
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/* Town zone and Manhattan distance of closest town */
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case 0x45: {
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if (this->tile == INVALID_TILE) return HZB_TOWN_EDGE << 16;
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const Town *t = (this->st == nullptr) ? ClosestTownFromTile(this->tile, UINT_MAX) : this->st->town;
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return t != nullptr ? (GetTownRadiusGroup(t, this->tile) << 16 | ClampTo<uint16_t>(DistanceManhattan(this->tile, t->xy))) : HZB_TOWN_EDGE << 16;
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}
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/* Get square of Euclidian distance of closest town */
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case 0x46: {
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if (this->tile == INVALID_TILE) return 0;
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const Town *t = (this->st == nullptr) ? ClosestTownFromTile(this->tile, UINT_MAX) : this->st->town;
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return t != nullptr ? DistanceSquare(this->tile, t->xy) : 0;
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}
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/* Company information */
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case 0x47: return GetCompanyInfo(this->st == nullptr ? _current_company : this->st->owner);
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/* Animation frame */
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case 0x49: return this->tile == INVALID_TILE ? 0 : this->st->GetRoadStopAnimationFrame(this->tile);
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/* Misc info */
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case 0x50: {
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uint32 result = 0;
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if (this->tile != INVALID_TILE) {
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if (IsDriveThroughStopTile(this->tile)) {
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result |= GetDriveThroughStopDisallowedRoadDirections(this->tile);
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RoadCachedOneWayState rcows = GetRoadCachedOneWayState(this->tile);
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if (rcows <= RCOWS_NO_ACCESS) result |= (rcows << 2);
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}
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} else {
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SetBit(result, 4);
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}
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return result;
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}
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/* Variables which use the parameter */
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/* Variables 0x60 to 0x65 and 0x69 are handled separately below */
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/* Animation frame of nearby tile */
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case 0x66: {
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if (this->tile == INVALID_TILE) return UINT_MAX;
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TileIndex tile = this->tile;
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if (parameter != 0) tile = GetNearbyTile(parameter, tile);
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return (IsAnyRoadStopTile(tile) && GetStationIndex(tile) == this->st->index) ? this->st->GetRoadStopAnimationFrame(tile) : UINT_MAX;
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}
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/* Land info of nearby tile */
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case 0x67: {
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if (this->tile == INVALID_TILE) return 0;
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TileIndex tile = this->tile;
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if (parameter != 0) tile = GetNearbyTile(parameter, tile); // only perform if it is required
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return GetNearbyTileInformation(tile, this->ro.grffile->grf_version >= 8, extra->mask);
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}
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/* Road stop info of nearby tiles */
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case 0x68: {
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return this->GetNearbyRoadStopsInfo(parameter, NearbyRoadStopInfoMode::Standard);
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}
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/* Road stop info of nearby tiles: extended */
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case A2VRI_ROADSTOP_INFO_NEARBY_TILES_EXT: {
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return this->GetNearbyRoadStopsInfo(parameter, NearbyRoadStopInfoMode::Extended);
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}
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/* Road stop info of nearby tiles: v2 */
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case A2VRI_ROADSTOP_INFO_NEARBY_TILES_V2: {
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return this->GetNearbyRoadStopsInfo(parameter, NearbyRoadStopInfoMode::V2);
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}
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/* GRFID of nearby road stop tiles */
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case 0x6A: {
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if (this->tile == INVALID_TILE) return 0xFFFFFFFF;
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TileIndex nearby_tile = GetNearbyTile(parameter, this->tile);
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if (!IsAnyRoadStopTile(nearby_tile)) return 0xFFFFFFFF;
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if (!IsCustomRoadStopSpecIndex(nearby_tile)) return 0;
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const RoadStopSpecList ssl = BaseStation::GetByTile(nearby_tile)->roadstop_speclist[GetCustomRoadStopSpecIndex(nearby_tile)];
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return ssl.grfid;
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}
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/* Road info of nearby tiles */
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case 0x6B: {
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if (this->tile == INVALID_TILE) return 0xFFFFFFFF;
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TileIndex nearby_tile = GetNearbyTile(parameter, this->tile);
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if (!IsNormalRoadTile(nearby_tile)) return 0xFFFFFFFF;
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RoadBits road = GetRoadBits(nearby_tile, RTT_ROAD);
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RoadBits tram = GetRoadBits(nearby_tile, RTT_TRAM);
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Slope tileh = GetTileSlope(nearby_tile);
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extern uint GetRoadSpriteOffset(Slope slope, RoadBits bits);
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uint road_offset = (road == 0) ? 0xFF : GetRoadSpriteOffset(tileh, road);
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uint tram_offset = (tram == 0) ? 0xFF : GetRoadSpriteOffset(tileh, tram);
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return (tram_offset << 16) | (road_offset << 8) | (tram << 4) | (road);
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}
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case 0xF0: return this->st == nullptr ? 0 : this->st->facilities; // facilities
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case 0xFA: return ClampTo<uint16>((this->st == nullptr ? _date : this->st->build_date) - DAYS_TILL_ORIGINAL_BASE_YEAR); // build date
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}
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if (this->st != nullptr) return this->st->GetNewGRFVariable(this->ro, variable, parameter, &(extra->available));
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extra->available = false;
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return UINT_MAX;
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}
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const SpriteGroup *RoadStopResolverObject::ResolveReal(const RealSpriteGroup *group) const
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{
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if (group == nullptr) return nullptr;
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return group->loading[0];
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}
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RoadStopResolverObject::RoadStopResolverObject(const RoadStopSpec *roadstopspec, BaseStation *st, TileIndex tile, RoadType roadtype, StationType type, uint8 view,
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CallbackID callback, uint32 param1, uint32 param2)
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: ResolverObject(roadstopspec->grf_prop.grffile, callback, param1, param2), roadstop_scope(*this, st, roadstopspec, tile, roadtype, type, view)
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{
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this->town_scope = nullptr;
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CargoID ctype = CT_DEFAULT_NA;
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if (st == nullptr) {
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/* No station, so we are in a purchase list */
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ctype = CT_PURCHASE;
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} else if (Station::IsExpected(st)) {
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const Station *station = Station::From(st);
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/* Pick the first cargo that we have waiting */
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for (const CargoSpec *cs : CargoSpec::Iterate()) {
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if (roadstopspec->grf_prop.spritegroup[cs->Index()] != nullptr &&
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station->goods[cs->Index()].CargoTotalCount() > 0) {
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ctype = cs->Index();
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break;
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}
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}
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}
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if (roadstopspec->grf_prop.spritegroup[ctype] == nullptr) {
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ctype = CT_DEFAULT;
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}
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/* Remember the cargo type we've picked */
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this->roadstop_scope.cargo_type = ctype;
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this->root_spritegroup = roadstopspec->grf_prop.spritegroup[ctype];
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}
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RoadStopResolverObject::~RoadStopResolverObject()
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{
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delete this->town_scope;
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}
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TownScopeResolver* RoadStopResolverObject::GetTown()
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{
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if (this->town_scope == nullptr) {
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Town *t;
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if (this->roadstop_scope.st != nullptr) {
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t = this->roadstop_scope.st->town;
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} else {
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t = ClosestTownFromTile(this->roadstop_scope.tile, UINT_MAX);
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}
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if (t == nullptr) return nullptr;
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this->town_scope = new TownScopeResolver(*this, t, this->roadstop_scope.st == nullptr);
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}
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return this->town_scope;
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}
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uint16 GetRoadStopCallback(CallbackID callback, uint32 param1, uint32 param2, const RoadStopSpec *roadstopspec, BaseStation *st, TileIndex tile, RoadType roadtype, StationType type, uint8 view)
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{
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RoadStopResolverObject object(roadstopspec, st, tile, roadtype, type, view, callback, param1, param2);
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return object.ResolveCallback();
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}
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/**
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* Draw representation of a road stop tile for GUI purposes.
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* @param x position x of image.
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* @param y position y of image.
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* @param image an int offset for the sprite.
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* @param roadtype the RoadType of the underlying road.
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* @param spec the RoadStop's spec.
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* @return true of the tile was drawn (allows for fallback to default graphics)
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*/
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void DrawRoadStopTile(int x, int y, RoadType roadtype, const RoadStopSpec *spec, StationType type, int view)
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{
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assert(roadtype != INVALID_ROADTYPE);
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assert(spec != nullptr);
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const RoadTypeInfo *rti = GetRoadTypeInfo(roadtype);
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RoadStopResolverObject object(spec, nullptr, INVALID_TILE, roadtype, type, view);
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const SpriteGroup *group = object.Resolve();
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if (group == nullptr || group->type != SGT_TILELAYOUT) return;
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const DrawTileSprites *dts = ((const TileLayoutSpriteGroup *)group)->ProcessRegisters(nullptr);
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PaletteID palette = COMPANY_SPRITE_COLOUR(_local_company);
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SpriteID image = dts->ground.sprite;
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PaletteID pal = dts->ground.pal;
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RoadStopDrawMode draw_mode;
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if (HasBit(spec->flags, RSF_DRAW_MODE_REGISTER)) {
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draw_mode = (RoadStopDrawMode)GetRegister(0x100);
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} else {
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draw_mode = spec->draw_mode;
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}
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if (type == STATION_ROADWAYPOINT) {
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DrawSprite(SPR_ROAD_PAVED_STRAIGHT_X, PAL_NONE, x, y);
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if ((draw_mode & ROADSTOP_DRAW_MODE_WAYP_GROUND) && GB(image, 0, SPRITE_WIDTH) != 0) {
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DrawSprite(image, GroundSpritePaletteTransform(image, pal, palette), x, y);
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}
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} else if (GB(image, 0, SPRITE_WIDTH) != 0) {
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DrawSprite(image, GroundSpritePaletteTransform(image, pal, palette), x, y);
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}
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if (view >= 4) {
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/* Drive-through stop */
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uint sprite_offset = 5 - view;
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/* Road underlay takes precedence over tram */
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if (type == STATION_ROADWAYPOINT || draw_mode & ROADSTOP_DRAW_MODE_OVERLAY) {
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if (rti->UsesOverlay()) {
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SpriteID ground = GetCustomRoadSprite(rti, INVALID_TILE, ROTSG_GROUND);
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DrawSprite(ground + sprite_offset, PAL_NONE, x, y);
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SpriteID overlay = GetCustomRoadSprite(rti, INVALID_TILE, ROTSG_OVERLAY);
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if (overlay) DrawSprite(overlay + sprite_offset, PAL_NONE, x, y);
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} else if (RoadTypeIsTram(roadtype)) {
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DrawSprite(SPR_TRAMWAY_TRAM + sprite_offset, PAL_NONE, x, y);
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}
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}
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} else {
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/* Drive-in stop */
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if ((draw_mode & ROADSTOP_DRAW_MODE_ROAD) && rti->UsesOverlay()) {
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SpriteID ground = GetCustomRoadSprite(rti, INVALID_TILE, ROTSG_ROADSTOP);
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DrawSprite(ground + view, PAL_NONE, x, y);
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}
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}
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DrawCommonTileSeqInGUI(x, y, dts, 0, 0, palette, true);
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}
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/** Wrapper for animation control, see GetRoadStopCallback. */
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uint16 GetAnimRoadStopCallback(CallbackID callback, uint32 param1, uint32 param2, const RoadStopSpec *roadstopspec, BaseStation *st, TileIndex tile, int extra_data)
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{
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return GetRoadStopCallback(callback, param1, param2, roadstopspec, st, tile, INVALID_ROADTYPE, GetStationType(tile), GetStationGfx(tile));
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}
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struct RoadStopAnimationFrameAnimationHelper {
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static byte Get(BaseStation *st, TileIndex tile) { return st->GetRoadStopAnimationFrame(tile); }
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static bool Set(BaseStation *st, TileIndex tile, byte frame) { return st->SetRoadStopAnimationFrame(tile, frame); }
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};
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/** Helper class for animation control. */
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struct RoadStopAnimationBase : public AnimationBase<RoadStopAnimationBase, RoadStopSpec, BaseStation, int, GetAnimRoadStopCallback, RoadStopAnimationFrameAnimationHelper> {
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static const CallbackID cb_animation_speed = CBID_STATION_ANIMATION_SPEED;
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static const CallbackID cb_animation_next_frame = CBID_STATION_ANIM_NEXT_FRAME;
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static const RoadStopCallbackMask cbm_animation_speed = CBM_ROAD_STOP_ANIMATION_SPEED;
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static const RoadStopCallbackMask cbm_animation_next_frame = CBM_ROAD_STOP_ANIMATION_NEXT_FRAME;
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};
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void AnimateRoadStopTile(TileIndex tile)
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{
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const RoadStopSpec *ss = GetRoadStopSpec(tile);
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if (ss == nullptr) return;
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RoadStopAnimationBase::AnimateTile(ss, BaseStation::GetByTile(tile), tile, HasBit(ss->flags, RSF_CB141_RANDOM_BITS));
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}
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uint8 GetRoadStopTileAnimationSpeed(TileIndex tile)
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{
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const RoadStopSpec *ss = GetRoadStopSpec(tile);
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if (ss == nullptr) return 0;
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return RoadStopAnimationBase::GetAnimationSpeed(ss);
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}
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void TriggerRoadStopAnimation(BaseStation *st, TileIndex trigger_tile, StationAnimationTrigger trigger, CargoID cargo_type)
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{
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/* Get Station if it wasn't supplied */
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if (st == nullptr) st = BaseStation::GetByTile(trigger_tile);
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/* Check the cached animation trigger bitmask to see if we need
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* to bother with any further processing. */
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if (!HasBit(st->cached_roadstop_anim_triggers, trigger)) return;
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uint16 random_bits = Random();
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auto process_tile = [&](TileIndex cur_tile) {
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const RoadStopSpec *ss = GetRoadStopSpec(cur_tile);
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if (ss != nullptr && HasBit(ss->animation.triggers, trigger)) {
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CargoID cargo;
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|
if (cargo_type == CT_INVALID) {
|
|
cargo = CT_INVALID;
|
|
} else {
|
|
cargo = ss->grf_prop.grffile->cargo_map[cargo_type];
|
|
}
|
|
RoadStopAnimationBase::ChangeAnimationFrame(CBID_STATION_ANIM_START_STOP, ss, st, cur_tile, (random_bits << 16) | Random(), (uint8)trigger | (cargo << 8));
|
|
}
|
|
};
|
|
|
|
if (trigger == SAT_NEW_CARGO || trigger == SAT_CARGO_TAKEN || trigger == SAT_250_TICKS) {
|
|
for (const RoadStopTileData &tile_data : st->custom_roadstop_tile_data) {
|
|
process_tile(tile_data.tile);
|
|
}
|
|
} else {
|
|
process_tile(trigger_tile);
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Trigger road stop randomisation
|
|
*
|
|
* @param st the station being triggered
|
|
* @param tile the exact tile of the station that should be triggered
|
|
* @param trigger trigger type
|
|
* @param cargo_type cargo type causing the trigger
|
|
*/
|
|
void TriggerRoadStopRandomisation(Station *st, TileIndex tile, RoadStopRandomTrigger trigger, CargoID cargo_type)
|
|
{
|
|
if (st == nullptr) st = Station::GetByTile(tile);
|
|
|
|
/* Check the cached cargo trigger bitmask to see if we need
|
|
* to bother with any further processing. */
|
|
if (st->cached_roadstop_cargo_triggers == 0) return;
|
|
if (cargo_type != CT_INVALID && !HasBit(st->cached_roadstop_cargo_triggers, cargo_type)) return;
|
|
|
|
SetBit(st->waiting_triggers, trigger);
|
|
|
|
uint32 whole_reseed = 0;
|
|
|
|
CargoTypes empty_mask = 0;
|
|
if (trigger == RSRT_CARGO_TAKEN) {
|
|
/* Create a bitmask of completely empty cargo types to be matched */
|
|
for (CargoID i = 0; i < NUM_CARGO; i++) {
|
|
if (st->goods[i].CargoTotalCount() == 0) {
|
|
SetBit(empty_mask, i);
|
|
}
|
|
}
|
|
}
|
|
|
|
uint32 used_triggers = 0;
|
|
auto process_tile = [&](TileIndex cur_tile) {
|
|
const RoadStopSpec *ss = GetRoadStopSpec(cur_tile);
|
|
if (ss == nullptr) return;
|
|
|
|
/* Cargo taken "will only be triggered if all of those
|
|
* cargo types have no more cargo waiting." */
|
|
if (trigger == RSRT_CARGO_TAKEN) {
|
|
if ((ss->cargo_triggers & ~empty_mask) != 0) return;
|
|
}
|
|
|
|
if (cargo_type == CT_INVALID || HasBit(ss->cargo_triggers, cargo_type)) {
|
|
RoadStopResolverObject object(ss, st, cur_tile, INVALID_ROADTYPE, GetStationType(cur_tile), GetStationGfx(cur_tile));
|
|
object.waiting_triggers = st->waiting_triggers;
|
|
|
|
const SpriteGroup *group = object.Resolve();
|
|
if (group == nullptr) return;
|
|
|
|
used_triggers |= object.used_triggers;
|
|
|
|
uint32 reseed = object.GetReseedSum();
|
|
if (reseed != 0) {
|
|
whole_reseed |= reseed;
|
|
reseed >>= 16;
|
|
|
|
/* Set individual tile random bits */
|
|
uint8 random_bits = st->GetRoadStopRandomBits(cur_tile);
|
|
random_bits &= ~reseed;
|
|
random_bits |= Random() & reseed;
|
|
st->SetRoadStopRandomBits(cur_tile, random_bits);
|
|
|
|
MarkTileDirtyByTile(cur_tile, VMDF_NOT_MAP_MODE);
|
|
}
|
|
}
|
|
};
|
|
if (trigger == RSRT_NEW_CARGO || trigger == RSRT_CARGO_TAKEN) {
|
|
for (const RoadStopTileData &tile_data : st->custom_roadstop_tile_data) {
|
|
process_tile(tile_data.tile);
|
|
}
|
|
} else {
|
|
process_tile(tile);
|
|
}
|
|
|
|
/* Update whole station random bits */
|
|
st->waiting_triggers &= ~used_triggers;
|
|
if ((whole_reseed & 0xFFFF) != 0) {
|
|
st->random_bits &= ~whole_reseed;
|
|
st->random_bits |= Random() & whole_reseed;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Checks if there's any new stations by a specific RoadStopType
|
|
* @param rs the RoadStopType to check.
|
|
* @param roadtype the RoadType to check.
|
|
* @return true if there was any new RoadStopSpec's found for the given RoadStopType and RoadType, else false.
|
|
*/
|
|
bool GetIfNewStopsByType(RoadStopType rs, RoadType roadtype)
|
|
{
|
|
if (!(RoadStopClass::GetClassCount() > 1 || RoadStopClass::Get(ROADSTOP_CLASS_DFLT)->GetSpecCount() > 1)) return false;
|
|
for (uint i = 0; RoadStopClass::IsClassIDValid((RoadStopClassID)i); i++) {
|
|
// We don't want to check the default or waypoint classes. These classes are always available.
|
|
if (i == ROADSTOP_CLASS_DFLT || i == ROADSTOP_CLASS_WAYP) continue;
|
|
RoadStopClass *roadstopclass = RoadStopClass::Get((RoadStopClassID)i);
|
|
if (GetIfClassHasNewStopsByType(roadstopclass, rs, roadtype)) return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
/**
|
|
* Checks if the given RoadStopClass has any specs assigned to it, compatible with the given RoadStopType.
|
|
* @param roadstopclass the RoadStopClass to check.
|
|
* @param rs the RoadStopType to check.
|
|
* @param roadtype the RoadType to check.
|
|
* @return true if the RoadStopSpec has any specs compatible with the given RoadStopType and RoadType.
|
|
*/
|
|
bool GetIfClassHasNewStopsByType(RoadStopClass *roadstopclass, RoadStopType rs, RoadType roadtype)
|
|
{
|
|
for (uint j = 0; j < roadstopclass->GetSpecCount(); j++) {
|
|
if (GetIfStopIsForType(roadstopclass->GetSpec(j), rs, roadtype)) return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
/**
|
|
* Checks if the given RoadStopSpec is compatible with the given RoadStopType.
|
|
* @param roadstopspec the RoadStopSpec to check.
|
|
* @param rs the RoadStopType to check.
|
|
* @param roadtype the RoadType to check.
|
|
* @return true if the RoadStopSpec is compatible with the given RoadStopType and RoadType.
|
|
*/
|
|
bool GetIfStopIsForType(const RoadStopSpec *roadstopspec, RoadStopType rs, RoadType roadtype)
|
|
{
|
|
// The roadstopspec is nullptr, must be the default station, always return true.
|
|
if (roadstopspec == nullptr) return true;
|
|
|
|
if (HasBit(roadstopspec->flags, RSF_BUILD_MENU_ROAD_ONLY) && !RoadTypeIsRoad(roadtype)) return false;
|
|
if (HasBit(roadstopspec->flags, RSF_BUILD_MENU_TRAM_ONLY) && !RoadTypeIsTram(roadtype)) return false;
|
|
|
|
if (roadstopspec->stop_type == ROADSTOPTYPE_ALL) return true;
|
|
|
|
switch (rs) {
|
|
case ROADSTOP_BUS: if (roadstopspec->stop_type == ROADSTOPTYPE_PASSENGER) return true; break;
|
|
case ROADSTOP_TRUCK: if (roadstopspec->stop_type == ROADSTOPTYPE_FREIGHT) return true; break;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
const RoadStopSpec *GetRoadStopSpec(TileIndex t)
|
|
{
|
|
if (!IsCustomRoadStopSpecIndex(t)) return nullptr;
|
|
|
|
const BaseStation *st = BaseStation::GetByTile(t);
|
|
uint specindex = GetCustomRoadStopSpecIndex(t);
|
|
return specindex < st->roadstop_speclist.size() ? st->roadstop_speclist[specindex].spec : nullptr;
|
|
}
|
|
|
|
int AllocateRoadStopSpecToStation(const RoadStopSpec *statspec, BaseStation *st, bool exec)
|
|
{
|
|
uint i;
|
|
|
|
if (statspec == nullptr || st == nullptr) return 0;
|
|
|
|
/* Try to find the same spec and return that one */
|
|
for (i = 1; i < st->roadstop_speclist.size() && i < NUM_ROADSTOPSPECS_PER_STATION; i++) {
|
|
if (st->roadstop_speclist[i].spec == statspec) return i;
|
|
}
|
|
|
|
/* Try to find an unused spec slot */
|
|
for (i = 1; i < st->roadstop_speclist.size() && i < NUM_ROADSTOPSPECS_PER_STATION; i++) {
|
|
if (st->roadstop_speclist[i].spec == nullptr && st->roadstop_speclist[i].grfid == 0) break;
|
|
}
|
|
|
|
if (i == NUM_ROADSTOPSPECS_PER_STATION) {
|
|
/* Full, give up */
|
|
return -1;
|
|
}
|
|
|
|
if (exec) {
|
|
if (i >= st->roadstop_speclist.size()) st->roadstop_speclist.resize(i + 1);
|
|
st->roadstop_speclist[i].spec = statspec;
|
|
st->roadstop_speclist[i].grfid = statspec->grf_prop.grffile->grfid;
|
|
st->roadstop_speclist[i].localidx = statspec->grf_prop.local_id;
|
|
|
|
StationUpdateRoadStopCachedTriggers(st);
|
|
}
|
|
|
|
return i;
|
|
}
|
|
|
|
void DeallocateRoadStopSpecFromStation(BaseStation *st, byte specindex)
|
|
{
|
|
/* specindex of 0 (default) is never freeable */
|
|
if (specindex == 0) return;
|
|
|
|
/* Check custom road stop tiles if the specindex is still in use */
|
|
for (const RoadStopTileData &tile_data : st->custom_roadstop_tile_data) {
|
|
if (GetCustomRoadStopSpecIndex(tile_data.tile) == specindex) {
|
|
return;
|
|
}
|
|
}
|
|
|
|
/* This specindex is no longer in use, so deallocate it */
|
|
st->roadstop_speclist[specindex].spec = nullptr;
|
|
st->roadstop_speclist[specindex].grfid = 0;
|
|
st->roadstop_speclist[specindex].localidx = 0;
|
|
|
|
/* If this was the highest spec index, reallocate */
|
|
if (specindex == st->roadstop_speclist.size() - 1) {
|
|
size_t num_specs;
|
|
for (num_specs = st->roadstop_speclist.size() - 1; num_specs > 0; num_specs--) {
|
|
if (st->roadstop_speclist[num_specs].grfid != 0) break;
|
|
}
|
|
|
|
if (num_specs > 0) {
|
|
st->roadstop_speclist.resize(num_specs + 1);
|
|
} else {
|
|
st->roadstop_speclist.clear();
|
|
st->cached_roadstop_anim_triggers = 0;
|
|
st->cached_roadstop_cargo_triggers = 0;
|
|
return;
|
|
}
|
|
}
|
|
|
|
StationUpdateRoadStopCachedTriggers(st);
|
|
}
|
|
|
|
/**
|
|
* Update the cached animation trigger bitmask for a station.
|
|
* @param st Station to update.
|
|
*/
|
|
void StationUpdateRoadStopCachedTriggers(BaseStation *st)
|
|
{
|
|
st->cached_roadstop_anim_triggers = 0;
|
|
st->cached_roadstop_cargo_triggers = 0;
|
|
|
|
/* Combine animation trigger bitmask for all road stop specs
|
|
* of this station. */
|
|
for (uint i = 0; i < st->roadstop_speclist.size(); i++) {
|
|
const RoadStopSpec *ss = st->roadstop_speclist[i].spec;
|
|
if (ss != nullptr) {
|
|
st->cached_roadstop_anim_triggers |= ss->animation.triggers;
|
|
st->cached_roadstop_cargo_triggers |= ss->cargo_triggers;
|
|
}
|
|
}
|
|
}
|
|
|
|
void DumpRoadStopSpriteGroup(const BaseStation *st, const RoadStopSpec *spec, DumpSpriteGroupPrinter print)
|
|
{
|
|
CargoID ctype = CT_DEFAULT_NA;
|
|
|
|
if (st == nullptr) {
|
|
/* No station, so we are in a purchase list */
|
|
ctype = CT_PURCHASE;
|
|
} else if (Station::IsExpected(st)) {
|
|
const Station *station = Station::From(st);
|
|
/* Pick the first cargo that we have waiting */
|
|
for (const CargoSpec *cs : CargoSpec::Iterate()) {
|
|
if (spec->grf_prop.spritegroup[cs->Index()] != nullptr &&
|
|
station->goods[cs->Index()].CargoTotalCount() > 0) {
|
|
ctype = cs->Index();
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
if (spec->grf_prop.spritegroup[ctype] == nullptr) {
|
|
ctype = CT_DEFAULT;
|
|
}
|
|
|
|
DumpSpriteGroup(spec->grf_prop.spritegroup[ctype], std::move(print));
|
|
}
|