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Copyright (C) 2010-2011 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 General Public License as published by
the Free Software Foundation; either version 2 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 General Public License for more details.
You should have received a copy of the GNU 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.
*/
#include "server.h"
#include "utility.h"
#include <iostream>
#include "clientserver.h"
#include "map.h"
#include "jmutexautolock.h"
#include "main.h"
#include "constants.h"
#include "voxel.h"
#include "mineral.h"
#include "servercommand.h"
#include "filesys.h"
#define BLOCK_EMERGE_FLAG_FROMDISK (1<<0)
void * ServerThread::Thread()
{
ThreadStarted();
DSTACK(__FUNCTION_NAME);
BEGIN_DEBUG_EXCEPTION_HANDLER
//TimeTaker timer("AsyncRunStep() + Receive()");
{
//TimeTaker timer("AsyncRunStep()");
m_server->AsyncRunStep();
}
//dout_server<<"Running m_server->Receive()"<<std::endl;
m_server->Receive();
}
catch(con::NoIncomingDataException &e)
{
}
catch(con::PeerNotFoundException &e)
{
dout_server<<"Server: PeerNotFoundException"<<std::endl;
}
END_DEBUG_EXCEPTION_HANDLER
return NULL;
}
void * EmergeThread::Thread()
{
ThreadStarted();
DSTACK(__FUNCTION_NAME);
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//bool debug=false;
BEGIN_DEBUG_EXCEPTION_HANDLER
/*
Get block info from queue, emerge them and send them
to clients.
After queue is empty, exit.
*/
while(getRun())
{
QueuedBlockEmerge *qptr = m_server->m_emerge_queue.pop();
if(qptr == NULL)
break;
SharedPtr<QueuedBlockEmerge> q(qptr);
v3s16 &p = q->pos;
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v2s16 p2d(p.X,p.Z);
/*
Do not generate over-limit
*/
if(p.X < -MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.X > MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.Y < -MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.Y > MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.Z < -MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.Z > MAP_GENERATION_LIMIT / MAP_BLOCKSIZE)
continue;
//derr_server<<"EmergeThread::Thread(): running"<<std::endl;
//TimeTaker timer("block emerge");
/*
Try to emerge it from somewhere.
If it is only wanted as optional, only loading from disk
will be allowed.
*/
/*
Check if any peer wants it as non-optional. In that case it
will be generated.
Also decrement the emerge queue count in clients.
*/
bool optional = true;
{
core::map<u16, u8>::Iterator i;
for(i=q->peer_ids.getIterator(); i.atEnd()==false; i++)
{
//u16 peer_id = i.getNode()->getKey();
// Check flags
u8 flags = i.getNode()->getValue();
if((flags & BLOCK_EMERGE_FLAG_FROMDISK) == false)
optional = false;
}
}
/*dstream<<"EmergeThread: p="
<<"("<<p.X<<","<<p.Y<<","<<p.Z<<") "
<<"optional="<<optional<<std::endl;*/
ServerMap &map = ((ServerMap&)m_server->m_env.getMap());
core::map<v3s16, MapBlock*> changed_blocks;
core::map<v3s16, MapBlock*> lighting_invalidated_blocks;
MapBlock *block = NULL;
bool got_block = true;
core::map<v3s16, MapBlock*> modified_blocks;
bool only_from_disk = false;
if(optional)
only_from_disk = true;
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v2s16 chunkpos = map.sector_to_chunk(p2d);
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bool generate_chunk = false;
if(only_from_disk == false)
{
JMutexAutoLock envlock(m_server->m_env_mutex);
if(map.chunkNonVolatile(chunkpos) == false)
generate_chunk = true;
}
if(generate_chunk)
{
ChunkMakeData data;
{
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JMutexAutoLock envlock(m_server->m_env_mutex);
map.initChunkMake(data, chunkpos);
}
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makeChunk(&data);
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{
JMutexAutoLock envlock(m_server->m_env_mutex);
map.finishChunkMake(data, changed_blocks);
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/*
Fetch block from map or generate a single block
*/
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JMutexAutoLock envlock(m_server->m_env_mutex);
// Load sector if it isn't loaded
if(map.getSectorNoGenerateNoEx(p2d) == NULL)
map.loadSectorFull(p2d);
block = map.getBlockNoCreateNoEx(p);
if(!block || block->isDummy())
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if(only_from_disk)
{
got_block = false;
}
else
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ServerMapSector *sector =
(ServerMapSector*)map.createSector(p2d);
// Generate block
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block = map.generateBlock(p, block, sector, changed_blocks,
lighting_invalidated_blocks);
if(block == NULL)
got_block = false;
}
}
else
{
if(block->getLightingExpired()){
lighting_invalidated_blocks[block->getPos()] = block;
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// TODO: Some additional checking and lighting updating,
// see emergeBlock
}
{//envlock
JMutexAutoLock envlock(m_server->m_env_mutex);
if(got_block)
{
/*
Collect a list of blocks that have been modified in
addition to the fetched one.
*/
if(lighting_invalidated_blocks.size() > 0)
/*dstream<<"lighting "<<lighting_invalidated_blocks.size()
<<" blocks"<<std::endl;*/
//TimeTaker timer("** EmergeThread updateLighting");
// Update lighting without locking the environment mutex,
// add modified blocks to changed blocks
map.updateLighting(lighting_invalidated_blocks, modified_blocks);
}
// Add all from changed_blocks to modified_blocks
for(core::map<v3s16, MapBlock*>::Iterator i = changed_blocks.getIterator();
i.atEnd() == false; i++)
{
MapBlock *block = i.getNode()->getValue();
modified_blocks.insert(block->getPos(), block);
}
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}
// If we got no block, there should be no invalidated blocks
else
{
assert(lighting_invalidated_blocks.size() == 0);
}
}//envlock
/*
Set sent status of modified blocks on clients
*/
// NOTE: Server's clients are also behind the connection mutex
JMutexAutoLock lock(m_server->m_con_mutex);
/*
Add the originally fetched block to the modified list
*/
if(got_block)
{
modified_blocks.insert(p, block);
}
/*
Set the modified blocks unsent for all the clients
*/
for(core::map<u16, RemoteClient*>::Iterator
i = m_server->m_clients.getIterator();
i.atEnd() == false; i++)
{
RemoteClient *client = i.getNode()->getValue();
if(modified_blocks.size() > 0)
{
// Remove block from sent history
client->SetBlocksNotSent(modified_blocks);
}
}
}
END_DEBUG_EXCEPTION_HANDLER
void RemoteClient::GetNextBlocks(Server *server, float dtime,
core::array<PrioritySortedBlockTransfer> &dest)
{
DSTACK(__FUNCTION_NAME);
/*u32 timer_result;
TimeTaker timer("RemoteClient::GetNextBlocks", &timer_result);*/
m_nearest_unsent_reset_timer += dtime;
m_nothing_to_send_pause_timer -= dtime;
if(m_nothing_to_send_pause_timer >= 0)
return;
if(m_blocks_sending.size() >= g_settings.getU16
("max_simultaneous_block_sends_per_client"))
//dstream<<"Not sending any blocks, Queue full."<<std::endl;
return;
}
Player *player = server->m_env.getPlayer(peer_id);
assert(player != NULL);
v3f playerpos = player->getPosition();
v3f playerspeed = player->getSpeed();
v3s16 center_nodepos = floatToInt(playerpos, BS);
v3s16 center = getNodeBlockPos(center_nodepos);
// Camera position and direction
v3f camera_pos =
playerpos + v3f(0, BS+BS/2, 0);
v3f camera_dir = v3f(0,0,1);
camera_dir.rotateYZBy(player->getPitch());
camera_dir.rotateXZBy(player->getYaw());
/*
Get the starting value of the block finder radius.
*/
if(m_last_center != center)
{
m_nearest_unsent_d = 0;
m_last_center = center;
}
/*dstream<<"m_nearest_unsent_reset_timer="
<<m_nearest_unsent_reset_timer<<std::endl;*/
if(m_nearest_unsent_reset_timer > 5.0)
{
m_nearest_unsent_reset_timer = 0;
m_nearest_unsent_d = 0;
//dstream<<"Resetting m_nearest_unsent_d"<<std::endl;
//s16 last_nearest_unsent_d = m_nearest_unsent_d;
s16 d_start = m_nearest_unsent_d;
//dstream<<"d_start="<<d_start<<std::endl;
u16 max_simul_sends_setting = g_settings.getU16
("max_simultaneous_block_sends_per_client");
u16 max_simul_sends_usually = max_simul_sends_setting;
/*
Check the time from last addNode/removeNode.
Decrease send rate if player is building stuff.
*/
m_time_from_building += dtime;
if(m_time_from_building < g_settings.getFloat(
"full_block_send_enable_min_time_from_building"))
= LIMITED_MAX_SIMULTANEOUS_BLOCK_SENDS;
/*
Number of blocks sending + number of blocks selected for sending
*/
u32 num_blocks_selected = m_blocks_sending.size();
/*
next time d will be continued from the d from which the nearest
unsent block was found this time.
This is because not necessarily any of the blocks found this
time are actually sent.
*/
s32 new_nearest_unsent_d = -1;
s16 d_max = g_settings.getS16("max_block_send_distance");
s16 d_max_gen = g_settings.getS16("max_block_generate_distance");
//dstream<<"Starting from "<<d_start<<std::endl;
bool sending_something = false;
for(s16 d = d_start; d <= d_max; d++)
{
//dstream<<"RemoteClient::SendBlocks(): d="<<d<<std::endl;
/*
If m_nearest_unsent_d was changed by the EmergeThread
(it can change it to 0 through SetBlockNotSent),
update our d to it.
Else update m_nearest_unsent_d
*/
/*if(m_nearest_unsent_d != last_nearest_unsent_d)
d = m_nearest_unsent_d;
last_nearest_unsent_d = m_nearest_unsent_d;
/*
Get the border/face dot coordinates of a "d-radiused"
box
*/
core::list<v3s16> list;
getFacePositions(list, d);
core::list<v3s16>::Iterator li;
for(li=list.begin(); li!=list.end(); li++)
{
v3s16 p = *li + center;
/*
Send throttling
- Don't allow too many simultaneous transfers
- EXCEPT when the blocks are very close
Also, don't send blocks that are already flying.
*/
// Start with the usual maximum
u16 max_simul_dynamic = max_simul_sends_usually;
// If block is very close, allow full maximum
if(d <= BLOCK_SEND_DISABLE_LIMITS_MAX_D)
max_simul_dynamic = max_simul_sends_setting;
// Don't select too many blocks for sending
if(num_blocks_selected >= max_simul_dynamic)
// Don't send blocks that are currently being transferred
if(m_blocks_sending.find(p) != NULL)
continue;
/*
Do not go over-limit
*/
if(p.X < -MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.X > MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.Y < -MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.Y > MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.Z < -MAP_GENERATION_LIMIT / MAP_BLOCKSIZE
|| p.Z > MAP_GENERATION_LIMIT / MAP_BLOCKSIZE)
continue;
// If this is true, inexistent block will be made from scratch
{
if(abs(p.Y - center.Y) > d_max_gen - d_max_gen / 3)
generate = false;*/
// Limit the send area vertically to 2/3
if(abs(p.Y - center.Y) > d_max_gen - d_max_gen / 3)
continue;
/*
If block is far away, don't generate it unless it is
if(d >= 4)
{
#if 1
// Block center y in nodes
f32 y = (f32)(p.Y * MAP_BLOCKSIZE + MAP_BLOCKSIZE/2);
// Don't generate if it's very high or very low
if(y < -64 || y > 64)
generate = false;
#endif
#if 0
v2s16 p2d_nodes_center(
MAP_BLOCKSIZE*p.X,
MAP_BLOCKSIZE*p.Z);
// Get ground height in nodes
s16 gh = server->m_env.getServerMap().findGroundLevel(
p2d_nodes_center);
// If differs a lot, don't generate
if(fabs(gh - y) > MAP_BLOCKSIZE*2)
generate = false;
// Actually, don't even send it
//continue;
#endif
#endif
Don't generate or send if not in sight
*/
if(isBlockInSight(p, camera_pos, camera_dir, 10000*BS) == false)
{
continue;
}
/*
Don't send already sent blocks
*/
{
if(m_blocks_sent.find(p) != NULL)
continue;
}
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MapBlock *block = server->m_env.getMap().getBlockNoCreateNoEx(p);
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bool block_is_invalid = false;
if(block != NULL)
{
if(block->isDummy())
{
surely_not_found_on_disk = true;
}
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if(block->isValid() == false)
{
block_is_invalid = true;
}
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/*if(block->isFullyGenerated() == false)
block_is_invalid = true;
}*/
v2s16 p2d(p.X, p.Z);
ServerMap *map = (ServerMap*)(&server->m_env.getMap());
v2s16 chunkpos = map->sector_to_chunk(p2d);
if(map->chunkNonVolatile(chunkpos) == false)
block_is_invalid = true;
#if 1
/*
If block is not close, don't send it unless it is near
ground level.
Block is not near ground level if night-time mesh
doesn't differ from day-time mesh.
*/
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if(d > 3)
{
if(block->dayNightDiffed() == false)
continue;
}
#endif
}
/*
If block has been marked to not exist on disk (dummy)
and generating new ones is not wanted, skip block.
*/
if(generate == false && surely_not_found_on_disk == true)
{
// get next one.
continue;
}
/*
Record the lowest d from which a a block has been
found being not sent and possibly to exist
*/
if(new_nearest_unsent_d == -1 || d < new_nearest_unsent_d)
{
if(generate == true)
new_nearest_unsent_d = d;
/*
Add inexistent block to emerge queue.
*/
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if(block == NULL || surely_not_found_on_disk || block_is_invalid)
{
//TODO: Get value from somewhere
// Allow only one block in emerge queue
//if(server->m_emerge_queue.peerItemCount(peer_id) < 1)
if(server->m_emerge_queue.peerItemCount(peer_id) < 2)
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//dstream<<"Adding block to emerge queue"<<std::endl;
// Add it to the emerge queue and trigger the thread
u8 flags = 0;
if(generate == false)
flags |= BLOCK_EMERGE_FLAG_FROMDISK;
server->m_emerge_queue.addBlock(peer_id, p, flags);
server->m_emergethread.trigger();
}
// get next one.
continue;
}
/*
*/
PrioritySortedBlockTransfer q((float)d, p, peer_id);
dest.push_back(q);
if(new_nearest_unsent_d != -1)
{
m_nearest_unsent_d = new_nearest_unsent_d;
}
if(sending_something == false)
{
m_nothing_to_send_counter++;
if(m_nothing_to_send_counter >= 3)
{
// Pause time in seconds
m_nothing_to_send_pause_timer = 2.0;
}
}
else
{
m_nothing_to_send_counter = 0;
}
/*timer_result = timer.stop(true);
if(timer_result != 0)
dstream<<"GetNextBlocks duration: "<<timer_result<<" (!=0)"<<std::endl;*/
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void RemoteClient::SendObjectData(
Server *server,
float dtime,
core::map<v3s16, bool> &stepped_blocks
)
{
DSTACK(__FUNCTION_NAME);
// Can't send anything without knowing version
if(serialization_version == SER_FMT_VER_INVALID)
{
dstream<<"RemoteClient::SendObjectData(): Not sending, no version."
<<std::endl;
return;
}
/*
Send a TOCLIENT_OBJECTDATA packet.
Sent as unreliable.
u16 command
u16 number of player positions
for each player:
v3s32 position*100
v3s32 speed*100
s32 pitch*100
s32 yaw*100
u16 count of blocks
for each block:
block objects
*/
std::ostringstream os(std::ios_base::binary);
u8 buf[12];
// Write command
writeU16(buf, TOCLIENT_OBJECTDATA);
os.write((char*)buf, 2);
/*
Get and write player data
*/
// Get connected players
core::list<Player*> players = server->m_env.getPlayers(true);
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// Write player count
u16 playercount = players.size();
writeU16(buf, playercount);
os.write((char*)buf, 2);
core::list<Player*>::Iterator i;
for(i = players.begin();
i != players.end(); i++)
{
Player *player = *i;
v3f pf = player->getPosition();
v3f sf = player->getSpeed();
v3s32 position_i(pf.X*100, pf.Y*100, pf.Z*100);
v3s32 speed_i (sf.X*100, sf.Y*100, sf.Z*100);
s32 pitch_i (player->getPitch() * 100);
s32 yaw_i (player->getYaw() * 100);
writeU16(buf, player->peer_id);
os.write((char*)buf, 2);
writeV3S32(buf, position_i);
os.write((char*)buf, 12);
writeV3S32(buf, speed_i);
os.write((char*)buf, 12);
writeS32(buf, pitch_i);
os.write((char*)buf, 4);
writeS32(buf, yaw_i);
os.write((char*)buf, 4);
}
/*
Get and write object data
*/
/*
Get nearby blocks.
For making players to be able to build to their nearby
environment (building is not possible on blocks that are not
in memory):
- Set blocks changed
- Add blocks to emerge queue if they are not found
SUGGESTION: These could be ignored from the backside of the player
*/
Player *player = server->m_env.getPlayer(peer_id);
assert(player);
v3f playerpos = player->getPosition();
v3f playerspeed = player->getSpeed();
v3s16 center_nodepos = floatToInt(playerpos, BS);
s16 d_max = g_settings.getS16("active_object_range");
// Number of blocks whose objects were written to bos
u16 blockcount = 0;
std::ostringstream bos(std::ios_base::binary);
for(s16 d = 0; d <= d_max; d++)
{
core::list<v3s16> list;
getFacePositions(list, d);
core::list<v3s16>::Iterator li;
for(li=list.begin(); li!=list.end(); li++)
{
v3s16 p = *li + center;
/*
Ignore blocks that haven't been sent to the client
*/
{
if(m_blocks_sent.find(p) == NULL)
continue;
}
// Try stepping block and add it to a send queue
try
{
// Get block
MapBlock *block = server->m_env.getMap().getBlockNoCreate(p);
/*
Step block if not in stepped_blocks and add to stepped_blocks.
*/
block->stepObjects(dtime, true, server->m_env.getDayNightRatio());
stepped_blocks.insert(p, true);
block->setChangedFlag();
}
// Skip block if there are no objects
if(block->getObjectCount() == 0)
continue;
/*
Write objects
*/
// Write blockpos
writeV3S16(buf, p);
bos.write((char*)buf, 6);
// Write objects
block->serializeObjects(bos, serialization_version);
blockcount++;
/*
Stop collecting objects if data is already too big
*/
// Sum of player and object data sizes
s32 sum = (s32)os.tellp() + 2 + (s32)bos.tellp();
// break out if data too big
if(sum > MAX_OBJECTDATA_SIZE)
} //try
catch(InvalidPositionException &e)
{
// Not in memory
// Add it to the emerge queue and trigger the thread.
// Fetch the block only if it is on disk.
// Grab and increment counter
m_num_blocks_in_emerge_queue.m_value++;*/
u8 flags = BLOCK_EMERGE_FLAG_FROMDISK;
server->m_emerge_queue.addBlock(0, p, flags);
server->m_emergethread.trigger();
}
}
}
// Write block count
writeU16(buf, blockcount);
os.write((char*)buf, 2);
// Write block objects
os<<bos.str();
//dstream<<"Server: Sending object data to "<<peer_id<<std::endl;
// Make data buffer
std::string s = os.str();
SharedBuffer<u8> data((u8*)s.c_str(), s.size());
// Send as unreliable
server->m_con.Send(peer_id, 0, data, false);
}
void RemoteClient::GotBlock(v3s16 p)
{
if(m_blocks_sending.find(p) != NULL)
m_blocks_sending.remove(p);
else
{
/*dstream<<"RemoteClient::GotBlock(): Didn't find in"
" m_blocks_sending"<<std::endl;*/
m_excess_gotblocks++;
}
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m_blocks_sent.insert(p, true);
}
void RemoteClient::SentBlock(v3s16 p)
{
if(m_blocks_sending.find(p) == NULL)
m_blocks_sending.insert(p, 0.0);
else
dstream<<"RemoteClient::SentBlock(): Sent block"
" already in m_blocks_sending"<<std::endl;
}
void RemoteClient::SetBlockNotSent(v3s16 p)
{
m_nearest_unsent_d = 0;
if(m_blocks_sending.find(p) != NULL)
m_blocks_sending.remove(p);
if(m_blocks_sent.find(p) != NULL)
m_blocks_sent.remove(p);
}
void RemoteClient::SetBlocksNotSent(core::map<v3s16, MapBlock*> &blocks)
{
m_nearest_unsent_d = 0;
for(core::map<v3s16, MapBlock*>::Iterator
i = blocks.getIterator();
i.atEnd()==false; i++)
{
v3s16 p = i.getNode()->getKey();
if(m_blocks_sending.find(p) != NULL)
m_blocks_sending.remove(p);
if(m_blocks_sent.find(p) != NULL)
m_blocks_sent.remove(p);
}
}
/*
PlayerInfo
*/
PlayerInfo::PlayerInfo()
{
name[0] = 0;
}
void PlayerInfo::PrintLine(std::ostream *s)
{
(*s)<<id<<": ";
(*s)<<"\""<<name<<"\" ("
<<(position.X/10)<<","<<(position.Y/10)
<<","<<(position.Z/10)<<") ";
address.print(s);
(*s)<<" avg_rtt="<<avg_rtt;
(*s)<<std::endl;
}
u32 PIChecksum(core::list<PlayerInfo> &l)
{
core::list<PlayerInfo>::Iterator i;
u32 checksum = 1;
u32 a = 10;
for(i=l.begin(); i!=l.end(); i++)
{
checksum += a * (i->id+1);
checksum ^= 0x435aafcd;
a *= 10;
}
return checksum;
}
/*
Server
*/
Server::Server(
m_env(new ServerMap(mapsavedir), this),
m_authmanager(mapsavedir+"/auth.txt"),
m_emergethread(this),
m_time_counter(0),
m_time_of_day_send_timer(0),
m_uptime(0),
m_mapsavedir(mapsavedir),
m_shutdown_requested(false),
m_ignore_map_edit_events(false),
m_ignore_map_edit_events_peer_id(0)
m_liquid_transform_timer = 0.0;
m_print_info_timer = 0.0;
m_objectdata_timer = 0.0;
m_emergethread_trigger_timer = 0.0;
m_savemap_timer = 0.0;
m_env_mutex.Init();
m_con_mutex.Init();
m_step_dtime_mutex.Init();
m_step_dtime = 0.0;
// Register us to receive map edit events
m_env.getMap().addEventReceiver(this);
// If file exists, load environment metadata
if(fs::PathExists(m_mapsavedir+"/env_meta.txt"))
{
dstream<<"Server: Loading environment metadata"<<std::endl;
m_env.loadMeta(m_mapsavedir);
}