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/*
Minetest
Copyright (C) 2010-2013 celeron55, Perttu Ahola <celeron55@gmail.com>

This program is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 2.1 of the License, or
(at your option) any later version.

This program 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.  See the
GNU Lesser General Public License for more details.

You should have received a copy of the GNU Lesser General Public License along
with this program; if not, write to the Free Software Foundation, Inc.,
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/

#ifndef SERVER_HEADER
#define SERVER_HEADER

#include "connection.h"
#include "irr_v3d.h"
#include "map.h"
#include "hud.h"
#include "gamedef.h"
#include "serialization.h" // For SER_FMT_VER_INVALID
#include "mods.h"
#include "inventorymanager.h"
#include "subgame.h"
#include "util/numeric.h"
#include "util/thread.h"
#include "environment.h"
#include "clientiface.h"
#include <string>
#include <list>
#include <map>
#include <vector>

#define PP(x) "("<<(x).X<<","<<(x).Y<<","<<(x).Z<<")"

class IWritableItemDefManager;
class IWritableNodeDefManager;
class IWritableCraftDefManager;
class BanManager;
class EventManager;
class Inventory;
class Player;
class PlayerSAO;
class IRollbackManager;
class RollbackAction;
class EmergeManager;
class GameScripting;
class ServerEnvironment;
struct SimpleSoundSpec;
class ServerThread;

enum ClientDeletionReason {
	CDR_LEAVE,
	CDR_TIMEOUT,
	CDR_DENY
};

/*
	Some random functions
*/
v3f findSpawnPos(ServerMap &map);

class MapEditEventIgnorer
{
public:
	MapEditEventIgnorer(bool *flag):
		m_flag(flag)
	{
		if(*m_flag == false)
			*m_flag = true;
		else
			m_flag = NULL;
	}

	~MapEditEventIgnorer()
	{
		if(m_flag)
		{
			assert(*m_flag);
			*m_flag = false;
		}
	}

private:
	bool *m_flag;
};

class MapEditEventAreaIgnorer
{
public:
	MapEditEventAreaIgnorer(VoxelArea *ignorevariable, const VoxelArea &a):
		m_ignorevariable(ignorevariable)
	{
		if(m_ignorevariable->getVolume() == 0)
			*m_ignorevariable = a;
		else
			m_ignorevariable = NULL;
	}

	~MapEditEventAreaIgnorer()
	{
		if(m_ignorevariable)
		{
			assert(m_ignorevariable->getVolume() != 0);
			*m_ignorevariable = VoxelArea();
		}
	}

private:
	VoxelArea *m_ignorevariable;
};

struct MediaInfo
{
	std::string path;
	std::string sha1_digest;

	MediaInfo(const std::string &path_="",
	          const std::string &sha1_digest_=""):
		path(path_),
		sha1_digest(sha1_digest_)
	{
	}
};

struct ServerSoundParams
{
	float gain;
	std::string to_player;
	enum Type{
		SSP_LOCAL=0,
		SSP_POSITIONAL=1,
		SSP_OBJECT=2
	} type;
	v3f pos;
	u16 object;
	float max_hear_distance;
	bool loop;

	ServerSoundParams():
		gain(1.0),
		to_player(""),
		type(SSP_LOCAL),
		pos(0,0,0),
		object(0),
		max_hear_distance(32*BS),
		loop(false)
	{}

	v3f getPos(ServerEnvironment *env, bool *pos_exists) const;
};

struct ServerPlayingSound
{
	ServerSoundParams params;
	std::set<u16> clients; // peer ids
};

class Server : public con::PeerHandler, public MapEventReceiver,
		public InventoryManager, public IGameDef
{
public:
	/*
		NOTE: Every public method should be thread-safe
	*/

	Server(
		const std::string &path_world,
		const SubgameSpec &gamespec,
		bool simple_singleplayer_mode,
		bool ipv6
	);
	~Server();
	void start(Address bind_addr);
	void stop();
	// This is mainly a way to pass the time to the server.
	// Actual processing is done in an another thread.
	void step(float dtime);
	// This is run by ServerThread and does the actual processing
	void AsyncRunStep(bool initial_step=false);
	void Receive();
	PlayerSAO* StageTwoClientInit(u16 peer_id);
	void ProcessData(u8 *data, u32 datasize, u16 peer_id);

	// Environment must be locked when called
	void setTimeOfDay(u32 time);

	/*
		Shall be called with the environment locked.
		This is accessed by the map, which is inside the environment,
		so it shouldn't be a problem.
	*/
	void onMapEditEvent(MapEditEvent *event);

	/*
		Shall be called with the environment and the connection locked.
	*/
	Inventory* getInventory(const InventoryLocation &loc);
	void setInventoryModified(const InventoryLocation &loc);

	// Connection must be locked when called
	std::wstring getStatusString();

	// read shutdown state
	inline bool getShutdownRequested()
			{ return m_shutdown_requested; }

	// request server to shutdown
	inline void requestShutdown(void)
			{ m_shutdown_requested = true; }

	// Returns -1 if failed, sound handle on success
	// Envlock
	s32 playSound(const SimpleSoundSpec &spec, const ServerSoundParams &params);
	void stopSound(s32 handle);

	// Envlock
	std::set<std::string> getPlayerEffectivePrivs(const std::string &name);
	bool checkPriv(const std::string &name, const std::string &priv);
	void reportPrivsModified(const std::string &name=""); // ""=all
	void reportInventoryFormspecModified(const std::string &name);

	void setIpBanned(const std::string &ip, const std::string &name);
	void unsetIpBanned(const std::string &ip_or_name);
	std::string getBanDescription(const std::string &ip_or_name);

	void notifyPlayer(const char *name, const std::wstring &msg);
	void notifyPlayers(const std::wstring &msg);
	void spawnParticle(const char *playername,
		v3f pos, v3f velocity, v3f acceleration,
		float expirationtime, float size,
		bool collisiondetection, bool vertical, std::string texture);

	void spawnParticleAll(v3f pos, v3f velocity, v3f acceleration,
		float expirationtime, float size,
		bool collisiondetection, bool vertical, std::string texture);

	u32 addParticleSpawner(const char *playername,
		u16 amount, float spawntime,
		v3f minpos, v3f maxpos,
		v3f minvel, v3f maxvel,
		v3f minacc, v3f maxacc,
		float minexptime, float maxexptime,
		float minsize, float maxsize,
		bool collisiondetection, bool vertical, std::string texture);

	u32 addParticleSpawnerAll(u16 amount, float spawntime,
		v3f minpos, v3f maxpos,
		v3f minvel, v3f maxvel,
		v3f minacc, v3f maxacc,
		float minexptime, float maxexptime,
		float minsize, float maxsize,
		bool collisiondetection, bool vertical, std::string texture);

	void deleteParticleSpawner(const char *playername, u32 id);
	void deleteParticleSpawnerAll(u32 id);

	// Creates or resets inventory
	Inventory* createDetachedInventory(const std::string &name);

	// Envlock and conlock should be locked when using scriptapi
	GameScripting *getScriptIface(){ return m_script; }

	//TODO: determine what (if anything) should be locked to access EmergeManager
	EmergeManager *getEmergeManager(){ return m_emerge; }

	// actions: time-reversed list
	// Return value: success/failure
	bool rollbackRevertActions(const std::list<RollbackAction> &actions,
			std::list<std::string> *log);

	// IGameDef interface
	// Under envlock
	virtual IItemDefManager* getItemDefManager();
	virtual INodeDefManager* getNodeDefManager();
	virtual ICraftDefManager* getCraftDefManager();
	virtual ITextureSource* getTextureSource();
	virtual IShaderSource* getShaderSource();
	virtual u16 allocateUnknownNodeId(const std::string &name);
	virtual ISoundManager* getSoundManager();
	virtual MtEventManager* getEventManager();
	virtual scene::ISceneManager* getSceneManager();
	virtual IRollbackManager *getRollbackManager() { return m_rollback; }


	IWritableItemDefManager* getWritableItemDefManager();
	IWritableNodeDefManager* getWritableNodeDefManager();
	IWritableCraftDefManager* getWritableCraftDefManager();

	const ModSpec* getModSpec(const std::string &modname);
	void getModNames(std::list<std::string> &modlist);
	std::string getBuiltinLuaPath();
	inline std::string getWorldPath()
			{ return m_path_world; }

	inline bool isSingleplayer()
			{ return m_simple_singleplayer_mode; }

	inline void setAsyncFatalError(const std::string &error)
			{ m_async_fatal_error.set(error); }

	bool showFormspec(const char *name, const std::string &formspec, const std::string &formname);
	Map & getMap() { return m_env->getMap(); }
	ServerEnvironment & getEnv() { return *m_env; }
	
	u32 hudAdd(Player *player, HudElement *element);
	bool hudRemove(Player *player, u32 id);
	bool hudChange(Player *player, u32 id, HudElementStat stat, void *value);
	bool hudSetFlags(Player *player, u32 flags, u32 mask);
	bool hudSetHotbarItemcount(Player *player, s32 hotbar_itemcount);
	void hudSetHotbarImage(Player *player, std::string name);
	void hudSetHotbarSelectedImage(Player *player, std::string name);

	inline Address getPeerAddress(u16 peer_id)
			{ return m_con.GetPeerAddress(peer_id); }
			
	bool setLocalPlayerAnimations(Player *player, v2s32 animation_frames[4], f32 frame_speed);
	bool setPlayerEyeOffset(Player *player, v3f first, v3f third);

	bool setSky(Player *player, const video::SColor &bgcolor,
			const std::string &type, const std::vector<std::string> &params);
	
	bool overrideDayNightRatio(Player *player, bool do_override,
			float brightness);

	/* con::PeerHandler implementation. */
	void peerAdded(con::Peer *peer);
	void deletingPeer(con::Peer *peer, bool timeout);

	void DenyAccess(u16 peer_id, const std::wstring &reason);
	bool getClientConInfo(u16 peer_id, con::rtt_stat_type type,float* retval);
	bool getClientInfo(u16 peer_id,ClientState* state, u32* uptime,
			u8* ser_vers, u16* prot_vers, u8* major, u8* minor, u8* patch,
			std::string* vers_string);

private:

	friend class EmergeThread;
	friend class RemoteClient;

	void SendMovement(u16 peer_id);
	void SendHP(u16 peer_id, u8 hp);
	void SendBreath(u16 peer_id, u16 breath);
	void SendAccessDenied(u16 peer_id,const std::wstring &reason);
	void SendDeathscreen(u16 peer_id,bool set_camera_point_target, v3f camera_point_target);
	void SendItemDef(u16 peer_id,IItemDefManager *itemdef, u16 protocol_version);
	void SendNodeDef(u16 peer_id,INodeDefManager *nodedef, u16 protocol_version);

	/* mark blocks not sent for all clients */
	void SetBlocksNotSent(std::map<v3s16, MapBlock *>& block);

	// Envlock and conlock should be locked when calling these
	void SendInventory(u16 peer_id);
	void SendChatMessage(u16 peer_id, const std::wstring &message);
	void SendTimeOfDay(u16 peer_id, u16 time, f32 time_speed);
	void SendPlayerHP(u16 peer_id);
	void SendPlayerBreath(u16 peer_id);
	void SendMovePlayer(u16 peer_id);
	void SendLocalPlayerAnimations(u16 peer_id, v2s32 animation_frames[4], f32 animation_speed);
	void SendEyeOffset(u16 peer_id, v3f first, v3f third);
	void SendPlayerPrivileges(u16 peer_id);
	void SendPlayerInventoryFormspec(u16 peer_id);
	void SendShowFormspecMessage(u16 peer_id, const std::string &formspec, const std::string &formname);
	void SendHUDAdd(u16 peer_id, u32 id, HudElement *form);
	void SendHUDRemove(u16 peer_id, u32 id);
	void SendHUDChange(u16 peer_id, u32 id, HudElementStat stat, void *value);
	void SendHUDSetFlags(u16 peer_id, u32 flags, u32 mask);
	void SendHUDSetParam(u16 peer_id, u16 param, const std::string &value);
	void SendSetSky(u16 peer_id, const video::SColor &bgcolor,
			const std::string &type, const std::vector<std::string> &params);
	void SendOverrideDayNightRatio(u16 peer_id, bool do_override, float ratio);
	
	/*
		Send a node removal/addition event to all clients except ignore_id.
		Additionally, if far_players!=NULL, players further away than
		far_d_nodes are ignored and their peer_ids are added to far_players
	*/
	// Envlock and conlock should be locked when calling these
	void sendRemoveNode(v3s16 p, u16 ignore_id=0,
			std::list<u16> *far_players=NULL, float far_d_nodes=100);
	void sendAddNode(v3s16 p, MapNode n, u16 ignore_id=0,
			std::list<u16> *far_players=NULL, float far_d_nodes=100,
			bool remove_metadata=true);
	void setBlockNotSent(v3s16 p);

	// Environment and Connection must be locked when called
	void SendBlockNoLock(u16 peer_id, MapBlock *block, u8 ver, u16 net_proto_version);

	// Sends blocks to clients (locks env and con on its own)
	void SendBlocks(float dtime);

	void fillMediaCache();
	void sendMediaAnnouncement(u16 peer_id);
	void sendRequestedMedia(u16 peer_id,
			const std::list<std::string> &tosend);

	void sendDetachedInventory(const std::string &name, u16 peer_id);
	void sendDetachedInventories(u16 peer_id);

	// Adds a ParticleSpawner on peer with peer_id (PEER_ID_INEXISTENT == all)
	void SendAddParticleSpawner(u16 peer_id, u16 amount, float spawntime,
		v3f minpos, v3f maxpos,
		v3f minvel, v3f maxvel,
		v3f minacc, v3f maxacc,
		float minexptime, float maxexptime,
		float minsize, float maxsize,
		bool collisiondetection, bool vertical, std::string texture, u32 id);

	void SendDeleteParticleSpawner(u16 peer_id, u32 id);

	// Spawns particle on peer with peer_id (PEER_ID_INEXISTENT == all)
	void SendSpawnParticle(u16 peer_id,
		v3f pos, v3f velocity, v3f acceleration,
		float expirationtime, float size,
		bool collisiondetection, bool vertical, std::string texture);

	/*
		Something random
	*/

	void DiePlayer(u16 peer_id);
	void RespawnPlayer(u16 peer_id);
	void DeleteClient(u16 peer_id, ClientDeletionReason reason);
	void UpdateCrafting(u16 peer_id);

	// When called, connection mutex should be locked
	RemoteClient* getClient(u16 peer_id,ClientState state_min=CS_Active);
	RemoteClient* getClientNoEx(u16 peer_id,ClientState state_min=CS_Active);

	// When called, environment mutex should be locked
	std::string getPlayerName(u16 peer_id);
	PlayerSAO* getPlayerSAO(u16 peer_id);

	/*
		Get a player from memory or creates one.
		If player is already connected, return NULL
		Does not verify/modify auth info and password.

		Call with env and con locked.
	*/
	PlayerSAO *emergePlayer(const char *name, u16 peer_id);

	void handlePeerChanges();

	/*
		Variables
	*/

	// World directory
	std::string m_path_world;
	// Subgame specification
	SubgameSpec m_gamespec;
	// If true, do not allow multiple players and hide some multiplayer
	// functionality
	bool m_simple_singleplayer_mode;

	// Thread can set; step() will throw as ServerError
	MutexedVariable<std::string> m_async_fatal_error;

	// Some timers
	float m_liquid_transform_timer;
	float m_liquid_transform_every;
	float m_print_info_timer;
	float m_masterserver_timer;
	float m_objectdata_timer;
	float m_emergethread_trigger_timer;
	float m_savemap_timer;
	IntervalLimiter m_map_timer_and_unload_interval;

	// Environment
	ServerEnvironment *m_env;
	JMutex m_env_mutex;

	// server connection
	con::Connection m_con;

	// Ban checking
	BanManager *m_banmanager;

	// Rollback manager (behind m_env_mutex)
	IRollbackManager *m_rollback;
	bool m_enable_rollback_recording; // Updated once in a while

	// Emerge manager
	EmergeManager *m_emerge;

	// Scripting
	// Envlock and conlock should be locked when using Lua
	GameScripting *m_script;

	// Item definition manager
	IWritableItemDefManager *m_itemdef;

	// Node definition manager
	IWritableNodeDefManager *m_nodedef;

	// Craft definition manager
	IWritableCraftDefManager *m_craftdef;

	// Event manager
	EventManager *m_event;

	// Mods
	std::vector<ModSpec> m_mods;

	/*
		Threads
	*/

	// A buffer for time steps
	// step() increments and AsyncRunStep() run by m_thread reads it.
	float m_step_dtime;
	JMutex m_step_dtime_mutex;

	// current server step lag counter
	float m_lag;

	// The server mainly operates in this thread
	ServerThread *m_thread;

	/*
		Time related stuff
	*/

	// Timer for sending time of day over network
	float m_time_of_day_send_timer;
	// Uptime of server in seconds
	MutexedVariable<double> m_uptime;

	/*
	 Client interface
	 */
	ClientInterface m_clients;

	/*
		Peer change queue.
		Queues stuff from peerAdded() and deletingPeer() to
		handlePeerChanges()
	*/
	Queue<con::PeerChange> m_peer_change_queue;

	/*
		Random stuff
	*/

	// Mod parent directory paths
	std::list<std::string> m_modspaths;

	bool m_shutdown_requested;

	/*
		Map edit event queue. Automatically receives all map edits.
		The constructor of this class registers us to receive them through
		onMapEditEvent

		NOTE: Should these be moved to actually be members of
		ServerEnvironment?
	*/

	/*
		Queue of map edits from the environment for sending to the clients
		This is behind m_env_mutex
	*/
	Queue<MapEditEvent*> m_unsent_map_edit_queue;
	/*
		Set to true when the server itself is modifying the map and does
		all sending of information by itself.
		This is behind m_env_mutex
	*/
	bool m_ignore_map_edit_events;
	/*
		If a non-empty area, map edit events contained within are left
		unsent. Done at map generation time to speed up editing of the
		generated area, as it will be sent anyway.
		This is behind m_env_mutex
	*/
	VoxelArea m_ignore_map_edit_events_area;
	/*
		If set to !=0, the incoming MapEditEvents are modified to have
		this peed id as the disabled recipient
		This is behind m_env_mutex
	*/
	u16 m_ignore_map_edit_events_peer_id;

	// media files known to server
	std::map<std::string,MediaInfo> m_media;

	/*
		Sounds
	*/
	std::map<s32, ServerPlayingSound> m_playing_sounds;
	s32 m_next_sound_id;

	/*
		Detached inventories (behind m_env_mutex)
	*/
	// key = name
	std::map<std::string, Inventory*> m_detached_inventories;

	/*
		Particles
	*/
	std::vector<u32> m_particlespawner_ids;
};

/*
	Runs a simple dedicated server loop.

	Shuts down when run is set to false.
*/
void dedicated_server_loop(Server &server, bool &run);

#endif

">#include "environment.h" #include "filesys.h" #include "porting.h" #include "collision.h" #include "content_mapnode.h" #include "mapblock.h" #include "serverobject.h" #include "content_sao.h" #include "mapgen.h" #include "settings.h" #include "log.h" #include "profiler.h" #include "scriptapi.h" #include "nodedef.h" #include "nodemetadata.h" #include "main.h" // For g_settings, g_profiler #include "gamedef.h" #ifndef SERVER #include "clientmap.h" #endif #include "daynightratio.h" #define PP(x) "("<<(x).X<<","<<(x).Y<<","<<(x).Z<<")" Environment::Environment(): m_time_of_day(9000), m_time_of_day_f(9000./24000), m_time_of_day_speed(0), m_time_counter(0) { } Environment::~Environment() { // Deallocate players for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { delete (*i); } } void Environment::addPlayer(Player *player) { DSTACK(__FUNCTION_NAME); /* Check that peer_ids are unique. Also check that names are unique. Exception: there can be multiple players with peer_id=0 */ // If peer id is non-zero, it has to be unique. if(player->peer_id != 0) assert(getPlayer(player->peer_id) == NULL); // Name has to be unique. assert(getPlayer(player->getName()) == NULL); // Add. m_players.push_back(player); } void Environment::removePlayer(u16 peer_id) { DSTACK(__FUNCTION_NAME); re_search: for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { Player *player = *i; if(player->peer_id != peer_id) continue; delete player; m_players.erase(i); // See if there is an another one // (shouldn't be, but just to be sure) goto re_search; } } Player * Environment::getPlayer(u16 peer_id) { for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { Player *player = *i; if(player->peer_id == peer_id) return player; } return NULL; } Player * Environment::getPlayer(const char *name) { for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { Player *player = *i; if(strcmp(player->getName(), name) == 0) return player; } return NULL; } Player * Environment::getRandomConnectedPlayer() { core::list<Player*> connected_players = getPlayers(true); u32 chosen_one = myrand() % connected_players.size(); u32 j = 0; for(core::list<Player*>::Iterator i = connected_players.begin(); i != connected_players.end(); i++) { if(j == chosen_one) { Player *player = *i; return player; } j++; } return NULL; } Player * Environment::getNearestConnectedPlayer(v3f pos) { core::list<Player*> connected_players = getPlayers(true); f32 nearest_d = 0; Player *nearest_player = NULL; for(core::list<Player*>::Iterator i = connected_players.begin(); i != connected_players.end(); i++) { Player *player = *i; f32 d = player->getPosition().getDistanceFrom(pos); if(d < nearest_d || nearest_player == NULL) { nearest_d = d; nearest_player = player; } } return nearest_player; } core::list<Player*> Environment::getPlayers() { return m_players; } core::list<Player*> Environment::getPlayers(bool ignore_disconnected) { core::list<Player*> newlist; for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { Player *player = *i; if(ignore_disconnected) { // Ignore disconnected players if(player->peer_id == 0) continue; } newlist.push_back(player); } return newlist; } void Environment::printPlayers(std::ostream &o) { o<<"Players in environment:"<<std::endl; for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { Player *player = *i; o<<"Player peer_id="<<player->peer_id<<std::endl; } } u32 Environment::getDayNightRatio() { return time_to_daynight_ratio(m_time_of_day); } void Environment::stepTimeOfDay(float dtime) { m_time_counter += dtime; f32 speed = m_time_of_day_speed * 24000./(24.*3600); u32 units = (u32)(m_time_counter*speed); m_time_counter -= (f32)units / speed; bool sync_f = false; if(units > 0){ // Sync at overflow if(m_time_of_day + units >= 24000) sync_f = true; m_time_of_day = (m_time_of_day + units) % 24000; if(sync_f) m_time_of_day_f = (float)m_time_of_day / 24000.0; } if(!sync_f){ m_time_of_day_f += m_time_of_day_speed/24/3600*dtime; if(m_time_of_day_f > 1.0) m_time_of_day_f -= 1.0; if(m_time_of_day_f < 0.0) m_time_of_day_f += 1.0; } } /* ABMWithState */ ABMWithState::ABMWithState(ActiveBlockModifier *abm_): abm(abm_), timer(0) { // Initialize timer to random value to spread processing float itv = abm->getTriggerInterval(); itv = MYMAX(0.001, itv); // No less than 1ms int minval = MYMAX(-0.51*itv, -60); // Clamp to int maxval = MYMIN(0.51*itv, 60); // +-60 seconds timer = myrand_range(minval, maxval); } /* ActiveBlockList */ void fillRadiusBlock(v3s16 p0, s16 r, core::map<v3s16, bool> &list) { v3s16 p; for(p.X=p0.X-r; p.X<=p0.X+r; p.X++) for(p.Y=p0.Y-r; p.Y<=p0.Y+r; p.Y++) for(p.Z=p0.Z-r; p.Z<=p0.Z+r; p.Z++) { // Set in list list[p] = true; } } void ActiveBlockList::update(core::list<v3s16> &active_positions, s16 radius, core::map<v3s16, bool> &blocks_removed, core::map<v3s16, bool> &blocks_added) { /* Create the new list */ core::map<v3s16, bool> newlist; for(core::list<v3s16>::Iterator i = active_positions.begin(); i != active_positions.end(); i++) { fillRadiusBlock(*i, radius, newlist); } /* Find out which blocks on the old list are not on the new list */ // Go through old list for(core::map<v3s16, bool>::Iterator i = m_list.getIterator(); i.atEnd()==false; i++) { v3s16 p = i.getNode()->getKey(); // If not on new list, it's been removed if(newlist.find(p) == NULL) blocks_removed.insert(p, true); } /* Find out which blocks on the new list are not on the old list */ // Go through new list for(core::map<v3s16, bool>::Iterator i = newlist.getIterator(); i.atEnd()==false; i++) { v3s16 p = i.getNode()->getKey(); // If not on old list, it's been added if(m_list.find(p) == NULL) blocks_added.insert(p, true); } /* Update m_list */ m_list.clear(); for(core::map<v3s16, bool>::Iterator i = newlist.getIterator(); i.atEnd()==false; i++) { v3s16 p = i.getNode()->getKey(); m_list.insert(p, true); } } /* ServerEnvironment */ ServerEnvironment::ServerEnvironment(ServerMap *map, lua_State *L, IGameDef *gamedef, IBackgroundBlockEmerger *emerger): m_map(map), m_lua(L), m_gamedef(gamedef), m_emerger(emerger), m_random_spawn_timer(3), m_send_recommended_timer(0), m_game_time(0), m_game_time_fraction_counter(0) { } ServerEnvironment::~ServerEnvironment() { // Clear active block list. // This makes the next one delete all active objects. m_active_blocks.clear(); // Convert all objects to static and delete the active objects deactivateFarObjects(true); // Drop/delete map m_map->drop(); // Delete ActiveBlockModifiers for(core::list<ABMWithState>::Iterator i = m_abms.begin(); i != m_abms.end(); i++){ delete i->abm; } } void ServerEnvironment::serializePlayers(const std::string &savedir) { std::string players_path = savedir + "/players"; fs::CreateDir(players_path); core::map<Player*, bool> saved_players; std::vector<fs::DirListNode> player_files = fs::GetDirListing(players_path); for(u32 i=0; i<player_files.size(); i++) { if(player_files[i].dir) continue; // Full path to this file std::string path = players_path + "/" + player_files[i].name; //infostream<<"Checking player file "<<path<<std::endl; // Load player to see what is its name RemotePlayer testplayer(m_gamedef); { // Open file and deserialize std::ifstream is(path.c_str(), std::ios_base::binary); if(is.good() == false) { infostream<<"Failed to read "<<path<<std::endl; continue; } testplayer.deSerialize(is); } //infostream<<"Loaded test player with name "<<testplayer.getName()<<std::endl; // Search for the player std::string playername = testplayer.getName(); Player *player = getPlayer(playername.c_str()); if(player == NULL) { infostream<<"Didn't find matching player, ignoring file "<<path<<std::endl; continue; } //infostream<<"Found matching player, overwriting."<<std::endl; // OK, found. Save player there. { // Open file and serialize std::ofstream os(path.c_str(), std::ios_base::binary); if(os.good() == false) { infostream<<"Failed to overwrite "<<path<<std::endl; continue; } player->serialize(os); saved_players.insert(player, true); } } for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { Player *player = *i; if(saved_players.find(player) != NULL) { /*infostream<<"Player "<<player->getName() <<" was already saved."<<std::endl;*/ continue; } std::string playername = player->getName(); // Don't save unnamed player if(playername == "") { //infostream<<"Not saving unnamed player."<<std::endl; continue; } /* Find a sane filename */ if(string_allowed(playername, PLAYERNAME_ALLOWED_CHARS) == false) playername = "player"; std::string path = players_path + "/" + playername; bool found = false; for(u32 i=0; i<1000; i++) { if(fs::PathExists(path) == false) { found = true; break; } path = players_path + "/" + playername + itos(i); } if(found == false) { infostream<<"Didn't find free file for player"<<std::endl; continue; } { /*infostream<<"Saving player "<<player->getName()<<" to " <<path<<std::endl;*/ // Open file and serialize std::ofstream os(path.c_str(), std::ios_base::binary); if(os.good() == false) { infostream<<"Failed to overwrite "<<path<<std::endl; continue; } player->serialize(os); saved_players.insert(player, true); } } //infostream<<"Saved "<<saved_players.size()<<" players."<<std::endl; } void ServerEnvironment::deSerializePlayers(const std::string &savedir) { std::string players_path = savedir + "/players"; core::map<Player*, bool> saved_players; std::vector<fs::DirListNode> player_files = fs::GetDirListing(players_path); for(u32 i=0; i<player_files.size(); i++) { if(player_files[i].dir) continue; // Full path to this file std::string path = players_path + "/" + player_files[i].name; //infostream<<"Checking player file "<<path<<std::endl; // Load player to see what is its name RemotePlayer testplayer(m_gamedef); { // Open file and deserialize std::ifstream is(path.c_str(), std::ios_base::binary); if(is.good() == false) { infostream<<"Failed to read "<<path<<std::endl; continue; } testplayer.deSerialize(is); } if(!string_allowed(testplayer.getName(), PLAYERNAME_ALLOWED_CHARS)) { infostream<<"Not loading player with invalid name: " <<testplayer.getName()<<std::endl; } /*infostream<<"Loaded test player with name "<<testplayer.getName() <<std::endl;*/ // Search for the player std::string playername = testplayer.getName(); Player *player = getPlayer(playername.c_str()); bool newplayer = false; if(player == NULL) { //infostream<<"Is a new player"<<std::endl; player = new RemotePlayer(m_gamedef); newplayer = true; } // Load player { verbosestream<<"Reading player "<<testplayer.getName()<<" from " <<path<<std::endl; // Open file and deserialize std::ifstream is(path.c_str(), std::ios_base::binary); if(is.good() == false) { infostream<<"Failed to read "<<path<<std::endl; continue; } player->deSerialize(is); } if(newplayer) { addPlayer(player); } } } void ServerEnvironment::saveMeta(const std::string &savedir) { std::string path = savedir + "/env_meta.txt"; // Open file and serialize std::ofstream os(path.c_str(), std::ios_base::binary); if(os.good() == false) { infostream<<"ServerEnvironment::saveMeta(): Failed to open " <<path<<std::endl; throw SerializationError("Couldn't save env meta"); } Settings args; args.setU64("game_time", m_game_time); args.setU64("time_of_day", getTimeOfDay()); args.writeLines(os); os<<"EnvArgsEnd\n"; } void ServerEnvironment::loadMeta(const std::string &savedir) { std::string path = savedir + "/env_meta.txt"; // Open file and deserialize std::ifstream is(path.c_str(), std::ios_base::binary); if(is.good() == false) { infostream<<"ServerEnvironment::loadMeta(): Failed to open " <<path<<std::endl; throw SerializationError("Couldn't load env meta"); } Settings args; for(;;) { if(is.eof()) throw SerializationError ("ServerEnvironment::loadMeta(): EnvArgsEnd not found"); std::string line; std::getline(is, line); std::string trimmedline = trim(line); if(trimmedline == "EnvArgsEnd") break; args.parseConfigLine(line); } try{ m_game_time = args.getU64("game_time"); }catch(SettingNotFoundException &e){ // Getting this is crucial, otherwise timestamps are useless throw SerializationError("Couldn't load env meta game_time"); } try{ m_time_of_day = args.getU64("time_of_day"); }catch(SettingNotFoundException &e){ // This is not as important m_time_of_day = 9000; } } struct ActiveABM { ActiveBlockModifier *abm; int chance; std::set<content_t> required_neighbors; }; class ABMHandler { private: ServerEnvironment *m_env; std::map<content_t, std::list<ActiveABM> > m_aabms; public: ABMHandler(core::list<ABMWithState> &abms, float dtime_s, ServerEnvironment *env, bool use_timers): m_env(env) { if(dtime_s < 0.001) return; INodeDefManager *ndef = env->getGameDef()->ndef(); for(core::list<ABMWithState>::Iterator i = abms.begin(); i != abms.end(); i++){ ActiveBlockModifier *abm = i->abm; float trigger_interval = abm->getTriggerInterval(); if(trigger_interval < 0.001) trigger_interval = 0.001; float actual_interval = dtime_s; if(use_timers){ i->timer += dtime_s; if(i->timer < trigger_interval) continue; i->timer -= trigger_interval; actual_interval = trigger_interval; } ActiveABM aabm; aabm.abm = abm; float intervals = actual_interval / trigger_interval; float chance = abm->getTriggerChance(); if(chance == 0) chance = 1; aabm.chance = 1.0 / pow((float)1.0/chance, (float)intervals); if(aabm.chance == 0) aabm.chance = 1; // Trigger neighbors std::set<std::string> required_neighbors_s = abm->getRequiredNeighbors(); for(std::set<std::string>::iterator i = required_neighbors_s.begin(); i != required_neighbors_s.end(); i++){ content_t c = ndef->getId(*i); if(c == CONTENT_IGNORE) continue; aabm.required_neighbors.insert(c); } // Trigger contents std::set<std::string> contents_s = abm->getTriggerContents(); for(std::set<std::string>::iterator i = contents_s.begin(); i != contents_s.end(); i++){ content_t c = ndef->getId(*i); if(c == CONTENT_IGNORE) continue; std::map<content_t, std::list<ActiveABM> >::iterator j; j = m_aabms.find(c); if(j == m_aabms.end()){ std::list<ActiveABM> aabmlist; m_aabms[c] = aabmlist; j = m_aabms.find(c); } j->second.push_back(aabm); } } } void apply(MapBlock *block) { if(m_aabms.empty()) return; ServerMap *map = &m_env->getServerMap(); v3s16 p0; for(p0.X=0; p0.X<MAP_BLOCKSIZE; p0.X++) for(p0.Y=0; p0.Y<MAP_BLOCKSIZE; p0.Y++) for(p0.Z=0; p0.Z<MAP_BLOCKSIZE; p0.Z++) { MapNode n = block->getNodeNoEx(p0); content_t c = n.getContent(); v3s16 p = p0 + block->getPosRelative(); std::map<content_t, std::list<ActiveABM> >::iterator j; j = m_aabms.find(c); if(j == m_aabms.end()) continue; for(std::list<ActiveABM>::iterator i = j->second.begin(); i != j->second.end(); i++) { if(myrand() % i->chance != 0) continue; // Check neighbors if(!i->required_neighbors.empty()) { v3s16 p1; for(p1.X = p.X-1; p1.X <= p.X+1; p1.X++) for(p1.Y = p.Y-1; p1.Y <= p.Y+1; p1.Y++) for(p1.Z = p.Z-1; p1.Z <= p.Z+1; p1.Z++) { if(p1 == p) continue; MapNode n = map->getNodeNoEx(p1); content_t c = n.getContent(); std::set<content_t>::const_iterator k; k = i->required_neighbors.find(c); if(k != i->required_neighbors.end()){ goto neighbor_found; } } // No required neighbor found continue; } neighbor_found: // Find out how many objects the block contains u32 active_object_count = block->m_static_objects.m_active.size(); // Find out how many objects this and all the neighbors contain u32 active_object_count_wider = 0; for(s16 x=-1; x<=1; x++) for(s16 y=-1; y<=1; y++) for(s16 z=-1; z<=1; z++) { MapBlock *block2 = map->getBlockNoCreateNoEx( block->getPos() + v3s16(x,y,z)); if(block2==NULL) continue; active_object_count_wider += block2->m_static_objects.m_active.size() + block2->m_static_objects.m_stored.size(); } // Call all the trigger variations i->abm->trigger(m_env, p, n); i->abm->trigger(m_env, p, n, active_object_count, active_object_count_wider); } } } }; void ServerEnvironment::activateBlock(MapBlock *block, u32 additional_dtime) { // Get time difference u32 dtime_s = 0; u32 stamp = block->getTimestamp(); if(m_game_time > stamp && stamp != BLOCK_TIMESTAMP_UNDEFINED) dtime_s = m_game_time - block->getTimestamp(); dtime_s += additional_dtime; /*infostream<<"ServerEnvironment::activateBlock(): block timestamp: " <<stamp<<", game time: "<<m_game_time<<std::endl;*/ // Set current time as timestamp block->setTimestampNoChangedFlag(m_game_time); /*infostream<<"ServerEnvironment::activateBlock(): block is " <<dtime_s<<" seconds old."<<std::endl;*/ // Activate stored objects activateObjects(block); // Run node metadata bool changed = block->m_node_metadata->step((float)dtime_s); if(changed) { MapEditEvent event; event.type = MEET_BLOCK_NODE_METADATA_CHANGED; event.p = block->getPos(); m_map->dispatchEvent(&event); block->raiseModified(MOD_STATE_WRITE_NEEDED, "node metadata modified in activateBlock"); } /* Handle ActiveBlockModifiers */ ABMHandler abmhandler(m_abms, dtime_s, this, false); abmhandler.apply(block); } void ServerEnvironment::addActiveBlockModifier(ActiveBlockModifier *abm) { m_abms.push_back(ABMWithState(abm)); } std::set<u16> ServerEnvironment::getObjectsInsideRadius(v3f pos, float radius) { std::set<u16> objects; for(core::map<u16, ServerActiveObject*>::Iterator i = m_active_objects.getIterator(); i.atEnd()==false; i++) { ServerActiveObject* obj = i.getNode()->getValue(); u16 id = i.getNode()->getKey(); v3f objectpos = obj->getBasePosition(); if(objectpos.getDistanceFrom(pos) > radius) continue; objects.insert(id); } return objects; } void ServerEnvironment::clearAllObjects() { infostream<<"ServerEnvironment::clearAllObjects(): " <<"Removing all active objects"<<std::endl; core::list<u16> objects_to_remove; for(core::map<u16, ServerActiveObject*>::Iterator i = m_active_objects.getIterator(); i.atEnd()==false; i++) { ServerActiveObject* obj = i.getNode()->getValue(); if(obj->getType() == ACTIVEOBJECT_TYPE_PLAYER) continue; u16 id = i.getNode()->getKey(); v3f objectpos = obj->getBasePosition(); // Delete static object if block is loaded if(obj->m_static_exists){ MapBlock *block = m_map->getBlockNoCreateNoEx(obj->m_static_block); if(block){ block->m_static_objects.remove(id); block->raiseModified(MOD_STATE_WRITE_NEEDED, "clearAllObjects"); obj->m_static_exists = false; } } // If known by some client, don't delete immediately if(obj->m_known_by_count > 0){ obj->m_pending_deactivation = true; obj->m_removed = true; continue; } // Tell the object about removal obj->removingFromEnvironment(); // Deregister in scripting api scriptapi_rm_object_reference(m_lua, obj); // Delete active object if(obj->environmentDeletes()) delete obj; // Id to be removed from m_active_objects objects_to_remove.push_back(id); } // Remove references from m_active_objects for(core::list<u16>::Iterator i = objects_to_remove.begin(); i != objects_to_remove.end(); i++) { m_active_objects.remove(*i); } core::list<v3s16> loadable_blocks; infostream<<"ServerEnvironment::clearAllObjects(): " <<"Listing all loadable blocks"<<std::endl; m_map->listAllLoadableBlocks(loadable_blocks); infostream<<"ServerEnvironment::clearAllObjects(): " <<"Done listing all loadable blocks: " <<loadable_blocks.size() <<", now clearing"<<std::endl; u32 report_interval = loadable_blocks.size() / 10; u32 num_blocks_checked = 0; u32 num_blocks_cleared = 0; u32 num_objs_cleared = 0; for(core::list<v3s16>::Iterator i = loadable_blocks.begin(); i != loadable_blocks.end(); i++) { v3s16 p = *i; MapBlock *block = m_map->emergeBlock(p, false); if(!block){ errorstream<<"ServerEnvironment::clearAllObjects(): " <<"Failed to emerge block "<<PP(p)<<std::endl; continue; } u32 num_stored = block->m_static_objects.m_stored.size(); u32 num_active = block->m_static_objects.m_active.size(); if(num_stored != 0 || num_active != 0){ block->m_static_objects.m_stored.clear(); block->m_static_objects.m_active.clear(); block->raiseModified(MOD_STATE_WRITE_NEEDED, "clearAllObjects"); num_objs_cleared += num_stored + num_active; num_blocks_cleared++; } num_blocks_checked++; if(num_blocks_checked % report_interval == 0){ float percent = 100.0 * (float)num_blocks_checked / loadable_blocks.size(); infostream<<"ServerEnvironment::clearAllObjects(): " <<"Cleared "<<num_objs_cleared<<" objects" <<" in "<<num_blocks_cleared<<" blocks (" <<percent<<"%)"<<std::endl; } } infostream<<"ServerEnvironment::clearAllObjects(): " <<"Finished: Cleared "<<num_objs_cleared<<" objects" <<" in "<<num_blocks_cleared<<" blocks"<<std::endl; } void ServerEnvironment::step(float dtime) { DSTACK(__FUNCTION_NAME); //TimeTaker timer("ServerEnv step"); /* Step time of day */ stepTimeOfDay(dtime); /* Increment game time */ { m_game_time_fraction_counter += dtime; u32 inc_i = (u32)m_game_time_fraction_counter; m_game_time += inc_i; m_game_time_fraction_counter -= (float)inc_i; } /* Handle players */ { ScopeProfiler sp(g_profiler, "SEnv: handle players avg", SPT_AVG); for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { Player *player = *i; // Ignore disconnected players if(player->peer_id == 0) continue; v3f playerpos = player->getPosition(); // Move player->move(dtime, *m_map, 100*BS); } } /* Manage active block list */ if(m_active_blocks_management_interval.step(dtime, 2.0)) { ScopeProfiler sp(g_profiler, "SEnv: manage act. block list avg /2s", SPT_AVG); /* Get player block positions */ core::list<v3s16> players_blockpos; for(core::list<Player*>::Iterator i = m_players.begin(); i != m_players.end(); i++) { Player *player = *i; // Ignore disconnected players if(player->peer_id == 0) continue; v3s16 blockpos = getNodeBlockPos( floatToInt(player->getPosition(), BS)); players_blockpos.push_back(blockpos); } /* Update list of active blocks, collecting changes */ const s16 active_block_range = g_settings->getS16("active_block_range"); core::map<v3s16, bool> blocks_removed; core::map<v3s16, bool> blocks_added; m_active_blocks.update(players_blockpos, active_block_range, blocks_removed, blocks_added); /* Handle removed blocks */ // Convert active objects that are no more in active blocks to static deactivateFarObjects(false); for(core::map<v3s16, bool>::Iterator i = blocks_removed.getIterator(); i.atEnd()==false; i++) { v3s16 p = i.getNode()->getKey(); /*infostream<<"Server: Block ("<<p.X<<","<<p.Y<<","<<p.Z <<") became inactive"<<std::endl;*/ MapBlock *block = m_map->getBlockNoCreateNoEx(p); if(block==NULL) continue; // Set current time as timestamp (and let it set ChangedFlag) block->setTimestamp(m_game_time); } /* Handle added blocks */ for(core::map<v3s16, bool>::Iterator i = blocks_added.getIterator(); i.atEnd()==false; i++) { v3s16 p = i.getNode()->getKey(); /*infostream<<"Server: Block ("<<p.X<<","<<p.Y<<","<<p.Z <<") became active"<<std::endl;*/ MapBlock *block = m_map->getBlockNoCreateNoEx(p); if(block==NULL){ // Block needs to be fetched first m_emerger->queueBlockEmerge(p, false); m_active_blocks.m_list.remove(p); continue; } activateBlock(block); } } /* Mess around in active blocks */ if(m_active_blocks_nodemetadata_interval.step(dtime, 1.0)) { ScopeProfiler sp(g_profiler, "SEnv: mess in act. blocks avg /1s", SPT_AVG); float dtime = 1.0; for(core::map<v3s16, bool>::Iterator i = m_active_blocks.m_list.getIterator(); i.atEnd()==false; i++) { v3s16 p = i.getNode()->getKey(); /*infostream<<"Server: Block ("<<p.X<<","<<p.Y<<","<<p.Z <<") being handled"<<std::endl;*/ MapBlock *block = m_map->getBlockNoCreateNoEx(p); if(block==NULL) continue; // Reset block usage timer block->resetUsageTimer(); // Set current time as timestamp block->setTimestampNoChangedFlag(m_game_time); // If time has changed much from the one on disk, // set block to be saved when it is unloaded if(block->getTimestamp() > block->getDiskTimestamp() + 60) block->raiseModified(MOD_STATE_WRITE_AT_UNLOAD, "Timestamp older than 60s (step)"); // Run node metadata bool changed = block->m_node_metadata->step(dtime); if(changed) { MapEditEvent event; event.type = MEET_BLOCK_NODE_METADATA_CHANGED; event.p = p; m_map->dispatchEvent(&event); block->raiseModified(MOD_STATE_WRITE_NEEDED, "node metadata modified in step"); } } } const float abm_interval = 1.0; if(m_active_block_modifier_interval.step(dtime, abm_interval)) { ScopeProfiler sp(g_profiler, "SEnv: modify in blocks avg /1s", SPT_AVG); TimeTaker timer("modify in active blocks"); // Initialize handling of ActiveBlockModifiers ABMHandler abmhandler(m_abms, abm_interval, this, true); for(core::map<v3s16, bool>::Iterator i = m_active_blocks.m_list.getIterator(); i.atEnd()==false; i++) { v3s16 p = i.getNode()->getKey(); /*infostream<<"Server: Block ("<<p.X<<","<<p.Y<<","<<p.Z <<") being handled"<<std::endl;*/ MapBlock *block = m_map->getBlockNoCreateNoEx(p); if(block==NULL) continue; // Set current time as timestamp block->setTimestampNoChangedFlag(m_game_time); /* Handle ActiveBlockModifiers */ abmhandler.apply(block); } u32 time_ms = timer.stop(true); u32 max_time_ms = 200; if(time_ms > max_time_ms){ infostream<<"WARNING: active block modifiers took " <<time_ms<<"ms (longer than " <<max_time_ms<<"ms)"<<std::endl; } } /* Step script environment (run global on_step()) */ scriptapi_environment_step(m_lua, dtime); /* Step active objects */ { ScopeProfiler sp(g_profiler, "SEnv: step act. objs avg", SPT_AVG); //TimeTaker timer("Step active objects"); g_profiler->avg("SEnv: num of objects", m_active_objects.size()); // This helps the objects to send data at the same time bool send_recommended = false; m_send_recommended_timer += dtime; if(m_send_recommended_timer > getSendRecommendedInterval()) { m_send_recommended_timer -= getSendRecommendedInterval(); send_recommended = true; } for(core::map<u16, ServerActiveObject*>::Iterator i = m_active_objects.getIterator(); i.atEnd()==false; i++) { ServerActiveObject* obj = i.getNode()->getValue(); // Remove non-peaceful mobs on peaceful mode if(g_settings->getBool("only_peaceful_mobs")){ if(!obj->isPeaceful()) obj->m_removed = true; } // Don't step if is to be removed or stored statically if(obj->m_removed || obj->m_pending_deactivation) continue; // Step object obj->step(dtime, send_recommended); // Read messages from object while(obj->m_messages_out.size() > 0) { m_active_object_messages.push_back( obj->m_messages_out.pop_front()); } } } /* Manage active objects */ if(m_object_management_interval.step(dtime, 0.5)) { ScopeProfiler sp(g_profiler, "SEnv: remove removed objs avg /.5s", SPT_AVG); /* Remove objects that satisfy (m_removed && m_known_by_count==0) */ removeRemovedObjects(); } } ServerActiveObject* ServerEnvironment::getActiveObject(u16 id) { core::map<u16, ServerActiveObject*>::Node *n; n = m_active_objects.find(id); if(n == NULL) return NULL; return n->getValue(); } bool isFreeServerActiveObjectId(u16 id, core::map<u16, ServerActiveObject*> &objects) { if(id == 0) return false; for(core::map<u16, ServerActiveObject*>::Iterator i = objects.getIterator(); i.atEnd()==false; i++) { if(i.getNode()->getKey() == id) return false; }