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https://github.com/JGRennison/OpenTTD-patches.git
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020721565a
- Trailing whitespace - Trailing empty lines - Missing newline at EOF - Missing svn:eol-style native
177 lines
6.5 KiB
C++
177 lines
6.5 KiB
C++
/* $Id$ */
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#include "../stdafx.h"
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#include "yapf.hpp"
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/** Node Follower module of YAPF for ships */
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template <class Types>
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class CYapfFollowShipT
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{
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public:
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typedef typename Types::Tpf Tpf; ///< the pathfinder class (derived from THIS class)
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typedef typename Types::TrackFollower TrackFollower;
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typedef typename Types::NodeList::Titem Node; ///< this will be our node type
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typedef typename Node::Key Key; ///< key to hash tables
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protected:
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/// to access inherited path finder
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FORCEINLINE Tpf& Yapf() {return *static_cast<Tpf*>(this);}
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public:
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/** Called by YAPF to move from the given node to the next tile. For each
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* reachable trackdir on the new tile creates new node, initializes it
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* and adds it to the open list by calling Yapf().AddNewNode(n) */
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inline void PfFollowNode(Node& old_node)
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{
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TrackFollower F;
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if (F.Follow(old_node.m_key.m_tile, old_node.m_key.m_td))
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Yapf().AddMultipleNodes(&old_node, F.m_new_tile, F.m_new_td_bits);
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}
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/// return debug report character to identify the transportation type
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FORCEINLINE char TransportTypeChar() const {return 'w';}
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static Trackdir ChooseShipTrack(Vehicle *v, TileIndex tile, DiagDirection enterdir, TrackBits tracks)
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{
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// handle special case - when next tile is destination tile
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if (tile == v->dest_tile) {
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// convert tracks to trackdirs
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TrackdirBits trackdirs = (TrackdirBits)(tracks | ((int)tracks << 8));
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// choose any trackdir reachable from enterdir
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trackdirs &= DiagdirReachesTrackdirs(enterdir);
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return (Trackdir)FindFirstBit2x64(trackdirs);
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}
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// move back to the old tile/trackdir (where ship is coming from)
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TileIndex src_tile = TILE_ADD(tile, TileOffsByDir(ReverseDiagDir(enterdir)));
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Trackdir trackdir = GetVehicleTrackdir(v);
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assert(IsValidTrackdir(trackdir));
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// convert origin trackdir to TrackdirBits
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TrackdirBits trackdirs = TrackdirToTrackdirBits(trackdir);
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// get available trackdirs on the destination tile
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TrackdirBits dest_trackdirs = (TrackdirBits)(GetTileTrackStatus(v->dest_tile, TRANSPORT_WATER) & TRACKDIR_BIT_MASK);
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// create pathfinder instance
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Tpf pf;
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// set origin and destination nodes
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pf.SetOrigin(src_tile, trackdirs);
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pf.SetDestination(v->dest_tile, dest_trackdirs);
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// find best path
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bool bFound = pf.FindPath(v);
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Trackdir next_trackdir = INVALID_TRACKDIR; // this would mean "path not found"
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if (bFound) {
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// path was found
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// walk through the path back to the origin
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Node* pNode = &pf.GetBestNode();
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Node* pPrevNode = NULL;
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while (pNode->m_parent != NULL) {
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pPrevNode = pNode;
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pNode = pNode->m_parent;
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}
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// return trackdir from the best next node (direct child of origin)
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Node& best_next_node = *pPrevNode;
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assert(best_next_node.GetTile() == tile);
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next_trackdir = best_next_node.GetTrackdir();
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}
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return next_trackdir;
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}
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};
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/** Cost Provider module of YAPF for ships */
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template <class Types>
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class CYapfCostShipT
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{
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public:
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typedef typename Types::Tpf Tpf; ///< the pathfinder class (derived from THIS class)
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typedef typename Types::NodeList::Titem Node; ///< this will be our node type
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typedef typename Node::Key Key; ///< key to hash tables
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protected:
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/// to access inherited path finder
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Tpf& Yapf() {return *static_cast<Tpf*>(this);}
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public:
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/** Called by YAPF to calculate the cost from the origin to the given node.
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* Calculates only the cost of given node, adds it to the parent node cost
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* and stores the result into Node::m_cost member */
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FORCEINLINE bool PfCalcCost(Node& n)
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{
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// base tile cost depending on distance
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int c = IsDiagonalTrackdir(n.GetTrackdir()) ? 10 : 7;
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// additional penalty for curves
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if (n.m_parent != NULL && n.GetTrackdir() != n.m_parent->GetTrackdir()) c += 3;
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// apply it
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n.m_cost = n.m_parent->m_cost + c;
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return true;
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}
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};
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/** Config struct of YAPF for ships.
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Defines all 6 base YAPF modules as classes providing services for CYapfBaseT.
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*/
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template <class Tpf_, class Ttrack_follower, class Tnode_list>
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struct CYapfShip_TypesT
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{
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/** Types - shortcut for this struct type */
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typedef CYapfShip_TypesT<Tpf_, Ttrack_follower, Tnode_list> Types;
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/** Tpf - pathfinder type */
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typedef Tpf_ Tpf;
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/** track follower helper class */
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typedef Ttrack_follower TrackFollower;
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/** node list type */
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typedef Tnode_list NodeList;
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/** pathfinder components (modules) */
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typedef CYapfBaseT<Types> PfBase; // base pathfinder class
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typedef CYapfFollowShipT<Types> PfFollow; // node follower
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typedef CYapfOriginTileT<Types> PfOrigin; // origin provider
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typedef CYapfDestinationTileT<Types> PfDestination; // destination/distance provider
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typedef CYapfSegmentCostCacheNoneT<Types> PfCache; // segment cost cache provider
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typedef CYapfCostShipT<Types> PfCost; // cost provider
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};
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// YAPF type 1 - uses TileIndex/Trackdir as Node key, allows 90-deg turns
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struct CYapfShip1 : CYapfT<CYapfShip_TypesT<CYapfShip1, CFollowTrackWater , CShipNodeListTrackDir> > {};
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// YAPF type 2 - uses TileIndex/DiagDirection as Node key, allows 90-deg turns
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struct CYapfShip2 : CYapfT<CYapfShip_TypesT<CYapfShip2, CFollowTrackWater , CShipNodeListExitDir > > {};
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// YAPF type 3 - uses TileIndex/Trackdir as Node key, forbids 90-deg turns
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struct CYapfShip3 : CYapfT<CYapfShip_TypesT<CYapfShip3, CFollowTrackWaterNo90, CShipNodeListTrackDir> > {};
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/** Ship controller helper - path finder invoker */
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Trackdir YapfChooseShipTrack(Vehicle *v, TileIndex tile, DiagDirection enterdir, TrackBits tracks)
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{
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// default is YAPF type 2
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typedef Trackdir (*PfnChooseShipTrack)(Vehicle*, TileIndex, DiagDirection, TrackBits);
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PfnChooseShipTrack pfnChooseShipTrack = CYapfShip2::ChooseShipTrack; // default: ExitDir, allow 90-deg
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// check if non-default YAPF type needed
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if (_patches.forbid_90_deg)
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pfnChooseShipTrack = &CYapfShip3::ChooseShipTrack; // Trackdir, forbid 90-deg
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else if (_patches.yapf.disable_node_optimization)
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pfnChooseShipTrack = &CYapfShip1::ChooseShipTrack; // Trackdir, allow 90-deg
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Trackdir td_ret = pfnChooseShipTrack(v, tile, enterdir, tracks);
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return td_ret;
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}
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/** performance measurement helper */
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void* NpfBeginInterval()
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{
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CPerformanceTimer& perf = *new CPerformanceTimer;
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perf.Start();
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return &perf;
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}
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/** performance measurement helper */
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int NpfEndInterval(void* vperf)
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{
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CPerformanceTimer& perf = *(CPerformanceTimer*)vperf;
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perf.Stop();
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int t = perf.Get(1000000);
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delete &perf;
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return t;
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}
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