mirror of
https://github.com/TrinityCore/TrinityCore.git
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All sLog->out* functions (except outCommand atm) are replaced with TC_LOG_* macros.
Memleak fix
303 lines
11 KiB
C++
303 lines
11 KiB
C++
/*
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* Copyright (C) 2008-2013 TrinityCore <http://www.trinitycore.org/>
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* Copyright (C) 2005-2010 MaNGOS <http://getmangos.com/>
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2 of the License, or (at your
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* option) any later version.
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*
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* This program is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "MMapManager.h"
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#include "Log.h"
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#include "World.h"
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namespace MMAP
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{
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// ######################## MMapManager ########################
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MMapManager::~MMapManager()
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{
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for (MMapDataSet::iterator i = loadedMMaps.begin(); i != loadedMMaps.end(); ++i)
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delete i->second;
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// by now we should not have maps loaded
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// if we had, tiles in MMapData->mmapLoadedTiles, their actual data is lost!
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}
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bool MMapManager::loadMapData(uint32 mapId)
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{
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// we already have this map loaded?
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if (loadedMMaps.find(mapId) != loadedMMaps.end())
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return true;
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// load and init dtNavMesh - read parameters from file
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uint32 pathLen = sWorld->GetDataPath().length() + strlen("mmaps/%03i.mmap")+1;
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char *fileName = new char[pathLen];
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snprintf(fileName, pathLen, (sWorld->GetDataPath()+"mmaps/%03i.mmap").c_str(), mapId);
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FILE* file = fopen(fileName, "rb");
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if (!file)
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{
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TC_LOG_DEBUG(LOG_FILTER_MAPS, "MMAP:loadMapData: Error: Could not open mmap file '%s'", fileName);
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delete [] fileName;
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return false;
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}
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dtNavMeshParams params;
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int count = fread(¶ms, sizeof(dtNavMeshParams), 1, file);
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fclose(file);
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if (count != 1)
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{
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TC_LOG_DEBUG(LOG_FILTER_MAPS, "MMAP:loadMapData: Error: Could not read params from file '%s'", fileName);
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delete [] fileName;
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return false;
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}
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dtNavMesh* mesh = dtAllocNavMesh();
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ASSERT(mesh);
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if (DT_SUCCESS != mesh->init(¶ms))
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{
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dtFreeNavMesh(mesh);
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TC_LOG_ERROR(LOG_FILTER_MAPS, "MMAP:loadMapData: Failed to initialize dtNavMesh for mmap %03u from file %s", mapId, fileName);
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delete [] fileName;
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return false;
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}
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delete [] fileName;
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TC_LOG_INFO(LOG_FILTER_MAPS, "MMAP:loadMapData: Loaded %03i.mmap", mapId);
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// store inside our map list
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MMapData* mmap_data = new MMapData(mesh);
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mmap_data->mmapLoadedTiles.clear();
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loadedMMaps.insert(std::pair<uint32, MMapData*>(mapId, mmap_data));
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return true;
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}
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uint32 MMapManager::packTileID(int32 x, int32 y)
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{
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return uint32(x << 16 | y);
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}
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bool MMapManager::loadMap(const std::string& /*basePath*/, uint32 mapId, int32 x, int32 y)
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{
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// make sure the mmap is loaded and ready to load tiles
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if (!loadMapData(mapId))
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return false;
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// get this mmap data
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MMapData* mmap = loadedMMaps[mapId];
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ASSERT(mmap->navMesh);
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// check if we already have this tile loaded
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uint32 packedGridPos = packTileID(x, y);
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if (mmap->mmapLoadedTiles.find(packedGridPos) != mmap->mmapLoadedTiles.end())
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return false;
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// load this tile :: mmaps/MMMXXYY.mmtile
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uint32 pathLen = sWorld->GetDataPath().length() + strlen("mmaps/%03i%02i%02i.mmtile")+1;
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char *fileName = new char[pathLen];
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snprintf(fileName, pathLen, (sWorld->GetDataPath()+"mmaps/%03i%02i%02i.mmtile").c_str(), mapId, x, y);
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FILE *file = fopen(fileName, "rb");
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if (!file)
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{
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TC_LOG_DEBUG(LOG_FILTER_MAPS, "MMAP:loadMap: Could not open mmtile file '%s'", fileName);
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delete [] fileName;
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return false;
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}
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delete [] fileName;
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// read header
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MmapTileHeader fileHeader;
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if (fread(&fileHeader, sizeof(MmapTileHeader), 1, file) != 1 || fileHeader.mmapMagic != MMAP_MAGIC)
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{
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TC_LOG_ERROR(LOG_FILTER_MAPS, "MMAP:loadMap: Bad header in mmap %03u%02i%02i.mmtile", mapId, x, y);
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return false;
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}
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if (fileHeader.mmapVersion != MMAP_VERSION)
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{
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TC_LOG_ERROR(LOG_FILTER_MAPS, "MMAP:loadMap: %03u%02i%02i.mmtile was built with generator v%i, expected v%i",
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mapId, x, y, fileHeader.mmapVersion, MMAP_VERSION);
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return false;
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}
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unsigned char* data = (unsigned char*)dtAlloc(fileHeader.size, DT_ALLOC_PERM);
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ASSERT(data);
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size_t result = fread(data, fileHeader.size, 1, file);
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if (!result)
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{
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TC_LOG_ERROR(LOG_FILTER_MAPS, "MMAP:loadMap: Bad header or data in mmap %03u%02i%02i.mmtile", mapId, x, y);
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fclose(file);
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return false;
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}
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fclose(file);
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dtMeshHeader* header = (dtMeshHeader*)data;
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dtTileRef tileRef = 0;
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// memory allocated for data is now managed by detour, and will be deallocated when the tile is removed
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if (DT_SUCCESS == mmap->navMesh->addTile(data, fileHeader.size, DT_TILE_FREE_DATA, 0, &tileRef))
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{
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mmap->mmapLoadedTiles.insert(std::pair<uint32, dtTileRef>(packedGridPos, tileRef));
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++loadedTiles;
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TC_LOG_INFO(LOG_FILTER_MAPS, "MMAP:loadMap: Loaded mmtile %03i[%02i,%02i] into %03i[%02i,%02i]", mapId, x, y, mapId, header->x, header->y);
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return true;
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}
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else
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{
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TC_LOG_ERROR(LOG_FILTER_MAPS, "MMAP:loadMap: Could not load %03u%02i%02i.mmtile into navmesh", mapId, x, y);
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dtFree(data);
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return false;
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}
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return false;
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}
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bool MMapManager::unloadMap(uint32 mapId, int32 x, int32 y)
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{
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// check if we have this map loaded
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if (loadedMMaps.find(mapId) == loadedMMaps.end())
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{
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// file may not exist, therefore not loaded
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TC_LOG_DEBUG(LOG_FILTER_MAPS, "MMAP:unloadMap: Asked to unload not loaded navmesh map. %03u%02i%02i.mmtile", mapId, x, y);
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return false;
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}
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MMapData* mmap = loadedMMaps[mapId];
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// check if we have this tile loaded
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uint32 packedGridPos = packTileID(x, y);
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if (mmap->mmapLoadedTiles.find(packedGridPos) == mmap->mmapLoadedTiles.end())
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{
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// file may not exist, therefore not loaded
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TC_LOG_DEBUG(LOG_FILTER_MAPS, "MMAP:unloadMap: Asked to unload not loaded navmesh tile. %03u%02i%02i.mmtile", mapId, x, y);
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return false;
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}
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dtTileRef tileRef = mmap->mmapLoadedTiles[packedGridPos];
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// unload, and mark as non loaded
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if (DT_SUCCESS != mmap->navMesh->removeTile(tileRef, NULL, NULL))
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{
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// this is technically a memory leak
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// if the grid is later reloaded, dtNavMesh::addTile will return error but no extra memory is used
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// we cannot recover from this error - assert out
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TC_LOG_ERROR(LOG_FILTER_MAPS, "MMAP:unloadMap: Could not unload %03u%02i%02i.mmtile from navmesh", mapId, x, y);
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ASSERT(false);
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}
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else
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{
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mmap->mmapLoadedTiles.erase(packedGridPos);
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--loadedTiles;
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TC_LOG_INFO(LOG_FILTER_MAPS, "MMAP:unloadMap: Unloaded mmtile %03i[%02i,%02i] from %03i", mapId, x, y, mapId);
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return true;
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}
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return false;
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}
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bool MMapManager::unloadMap(uint32 mapId)
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{
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if (loadedMMaps.find(mapId) == loadedMMaps.end())
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{
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// file may not exist, therefore not loaded
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TC_LOG_DEBUG(LOG_FILTER_MAPS, "MMAP:unloadMap: Asked to unload not loaded navmesh map %03u", mapId);
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return false;
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}
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// unload all tiles from given map
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MMapData* mmap = loadedMMaps[mapId];
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for (MMapTileSet::iterator i = mmap->mmapLoadedTiles.begin(); i != mmap->mmapLoadedTiles.end(); ++i)
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{
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uint32 x = (i->first >> 16);
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uint32 y = (i->first & 0x0000FFFF);
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if (DT_SUCCESS != mmap->navMesh->removeTile(i->second, NULL, NULL))
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TC_LOG_ERROR(LOG_FILTER_MAPS, "MMAP:unloadMap: Could not unload %03u%02i%02i.mmtile from navmesh", mapId, x, y);
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else
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{
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--loadedTiles;
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TC_LOG_INFO(LOG_FILTER_MAPS, "MMAP:unloadMap: Unloaded mmtile %03i[%02i,%02i] from %03i", mapId, x, y, mapId);
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}
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}
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delete mmap;
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loadedMMaps.erase(mapId);
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TC_LOG_INFO(LOG_FILTER_MAPS, "MMAP:unloadMap: Unloaded %03i.mmap", mapId);
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return true;
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}
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bool MMapManager::unloadMapInstance(uint32 mapId, uint32 instanceId)
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{
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// check if we have this map loaded
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if (loadedMMaps.find(mapId) == loadedMMaps.end())
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{
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// file may not exist, therefore not loaded
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TC_LOG_DEBUG(LOG_FILTER_MAPS, "MMAP:unloadMapInstance: Asked to unload not loaded navmesh map %03u", mapId);
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return false;
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}
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MMapData* mmap = loadedMMaps[mapId];
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if (mmap->navMeshQueries.find(instanceId) == mmap->navMeshQueries.end())
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{
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TC_LOG_DEBUG(LOG_FILTER_MAPS, "MMAP:unloadMapInstance: Asked to unload not loaded dtNavMeshQuery mapId %03u instanceId %u", mapId, instanceId);
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return false;
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}
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dtNavMeshQuery* query = mmap->navMeshQueries[instanceId];
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dtFreeNavMeshQuery(query);
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mmap->navMeshQueries.erase(instanceId);
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TC_LOG_INFO(LOG_FILTER_MAPS, "MMAP:unloadMapInstance: Unloaded mapId %03u instanceId %u", mapId, instanceId);
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return true;
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}
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dtNavMesh const* MMapManager::GetNavMesh(uint32 mapId)
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{
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if (loadedMMaps.find(mapId) == loadedMMaps.end())
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return NULL;
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return loadedMMaps[mapId]->navMesh;
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}
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dtNavMeshQuery const* MMapManager::GetNavMeshQuery(uint32 mapId, uint32 instanceId)
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{
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if (loadedMMaps.find(mapId) == loadedMMaps.end())
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return NULL;
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MMapData* mmap = loadedMMaps[mapId];
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if (mmap->navMeshQueries.find(instanceId) == mmap->navMeshQueries.end())
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{
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// allocate mesh query
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dtNavMeshQuery* query = dtAllocNavMeshQuery();
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ASSERT(query);
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if (DT_SUCCESS != query->init(mmap->navMesh, 1024))
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{
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dtFreeNavMeshQuery(query);
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TC_LOG_ERROR(LOG_FILTER_MAPS, "MMAP:GetNavMeshQuery: Failed to initialize dtNavMeshQuery for mapId %03u instanceId %u", mapId, instanceId);
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return NULL;
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}
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TC_LOG_INFO(LOG_FILTER_MAPS, "MMAP:GetNavMeshQuery: created dtNavMeshQuery for mapId %03u instanceId %u", mapId, instanceId);
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mmap->navMeshQueries.insert(std::pair<uint32, dtNavMeshQuery*>(instanceId, query));
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}
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return mmap->navMeshQueries[instanceId];
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}
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}
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