forked from Mirrorlandia_minetest/minetest
Sending of textures WIP
This commit is contained in:
parent
7bdc328a71
commit
45fc45a49e
@ -34,6 +34,7 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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#include "nodemetadata.h"
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#include "nodedef.h"
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#include "tooldef.h"
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#include <IFileSystem.h>
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/*
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QueuedMeshUpdate
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@ -1523,6 +1524,62 @@ void Client::ProcessData(u8 *data, u32 datasize, u16 sender_peer_id)
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m_mesh_update_thread.setRun(true);
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m_mesh_update_thread.Start();
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}
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else if(command == TOCLIENT_TEXTURES)
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{
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infostream<<"Client: Received textures: packet size: "<<datasize
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<<std::endl;
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io::IFileSystem *irrfs = m_device->getFileSystem();
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video::IVideoDriver *vdrv = m_device->getVideoDriver();
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std::string datastring((char*)&data[2], datasize-2);
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std::istringstream is(datastring, std::ios_base::binary);
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// Stop threads while updating content definitions
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m_mesh_update_thread.stop();
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/*
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u16 command
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u32 number of textures
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for each texture {
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u16 length of name
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string name
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u32 length of data
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data
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}
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*/
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int num_textures = readU32(is);
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infostream<<"Client: Received textures: count: "<<num_textures
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<<std::endl;
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for(int i=0; i<num_textures; i++){
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std::string name = deSerializeString(is);
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std::string data = deSerializeLongString(is);
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// Silly irrlicht's const-incorrectness
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Buffer<char> data_rw(data.c_str(), data.size());
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// Create an irrlicht memory file
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io::IReadFile *rfile = irrfs->createMemoryReadFile(
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*data_rw, data.size(), "_tempreadfile");
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assert(rfile);
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// Read image
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video::IImage *img = vdrv->createImageFromFile(rfile);
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if(!img){
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errorstream<<"Client: Cannot create image from data of "
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<<"received texture \""<<name<<"\""<<std::endl;
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rfile->drop();
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continue;
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}
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m_tsrc->insertImage(name, img);
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rfile->drop();
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}
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// Update texture atlas
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if(g_settings->getBool("enable_texture_atlas"))
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m_tsrc->buildMainAtlas(this);
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// Resume threads
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m_mesh_update_thread.setRun(true);
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m_mesh_update_thread.Start();
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}
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else
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{
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infostream<<"Client: Ignoring unknown command "
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@ -29,6 +29,7 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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Base for writing changes here
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PROTOCOL_VERSION 4:
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Add TOCLIENT_TOOLDEF
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Add TOCLIENT_TEXTURES
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*/
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#define PROTOCOL_VERSION 4
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@ -198,6 +199,18 @@ enum ToClientCommand
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serialized ToolDefManager
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*/
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TOCLIENT_TEXTURES = 0x39,
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/*
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u16 command
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u32 number of textures
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for each texture {
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u16 length of name
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string name
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u32 length of data
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data
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}
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*/
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//TOCLIENT_CONTENT_SENDING_MODE = 0x38,
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/*
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u16 command
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165
src/server.cpp
165
src/server.cpp
@ -944,6 +944,35 @@ u32 PIChecksum(core::list<PlayerInfo> &l)
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return checksum;
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}
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struct ModSpec
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{
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std::string name;
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std::string path;
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ModSpec(const std::string &name_="", const std::string path_=""):
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name(name_),
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path(path_)
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{}
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};
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static core::list<ModSpec> getMods(core::list<std::string> &modspaths)
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{
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core::list<ModSpec> mods;
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for(core::list<std::string>::Iterator i = modspaths.begin();
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i != modspaths.end(); i++){
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std::string modspath = *i;
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std::vector<fs::DirListNode> dirlist = fs::GetDirListing(modspath);
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for(u32 j=0; j<dirlist.size(); j++){
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if(!dirlist[j].dir)
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continue;
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std::string modname = dirlist[j].name;
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std::string modpath = modspath + DIR_DELIM + modname;
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mods.push_back(ModSpec(modname, modpath));
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}
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}
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return mods;
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}
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/*
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Server
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*/
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@ -988,6 +1017,9 @@ Server::Server(
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// Initialize default node definitions
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content_mapnode_init(NULL, m_nodemgr);
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// Add default global mod path
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m_modspaths.push_back(porting::path_data + DIR_DELIM + "mods");
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// Initialize scripting
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@ -997,26 +1029,17 @@ Server::Server(
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// Export API
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scriptapi_export(m_lua, this);
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// Load and run scripts
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core::list<std::string> modspaths;
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modspaths.push_back(porting::path_data + DIR_DELIM + "mods");
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for(core::list<std::string>::Iterator i = modspaths.begin();
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i != modspaths.end(); i++){
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std::string modspath = *i;
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std::vector<fs::DirListNode> dirlist = fs::GetDirListing(modspath);
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for(u32 j=0; j<dirlist.size(); j++){
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if(!dirlist[j].dir)
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continue;
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std::string modname = dirlist[j].name;
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infostream<<"Server: Loading mod \""<<modname<<"\" script..."
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<<std::endl;
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std::string scriptpath = modspath + DIR_DELIM + modname
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+ DIR_DELIM + "init.lua";
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bool success = script_load(m_lua, scriptpath.c_str());
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if(!success){
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errorstream<<"Server: Failed to load and run "
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<<scriptpath<<std::endl;
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assert(0);
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}
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core::list<ModSpec> mods = getMods(m_modspaths);
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for(core::list<ModSpec>::Iterator i = mods.begin();
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i != mods.end(); i++){
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ModSpec mod = *i;
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infostream<<"Server: Loading mod \""<<mod.name<<"\""<<std::endl;
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std::string scriptpath = mod.path + DIR_DELIM + "init.lua";
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bool success = script_load(m_lua, scriptpath.c_str());
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if(!success){
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errorstream<<"Server: Failed to load and run "
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<<scriptpath<<std::endl;
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assert(0);
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}
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}
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@ -2115,6 +2138,9 @@ void Server::ProcessData(u8 *data, u32 datasize, u16 peer_id)
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/*
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Send some initialization data
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*/
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// Send textures
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SendTextures(peer_id);
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// Send tool definitions
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SendToolDef(m_con, peer_id, m_toolmgr);
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@ -4080,6 +4106,105 @@ void Server::SendBlocks(float dtime)
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}
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}
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struct SendableTexture
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{
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std::string name;
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std::string path;
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std::string data;
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SendableTexture(const std::string &name_="", const std::string path_="",
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const std::string &data_=""):
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name(name_),
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path(path_),
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data(data_)
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{}
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};
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void Server::SendTextures(u16 peer_id)
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{
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DSTACK(__FUNCTION_NAME);
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infostream<<"Server::SendTextures(): Sending textures to client"<<std::endl;
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/* Read textures */
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core::list<SendableTexture> textures;
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core::list<ModSpec> mods = getMods(m_modspaths);
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for(core::list<ModSpec>::Iterator i = mods.begin();
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i != mods.end(); i++){
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ModSpec mod = *i;
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std::string texturepath = mod.path + DIR_DELIM + "textures";
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std::vector<fs::DirListNode> dirlist = fs::GetDirListing(texturepath);
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for(u32 j=0; j<dirlist.size(); j++){
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if(dirlist[j].dir) // Ignode dirs
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continue;
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std::string tname = dirlist[j].name;
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std::string tpath = texturepath + DIR_DELIM + tname;
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// Read data
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std::ifstream fis(tpath.c_str(), std::ios_base::binary);
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if(fis.good() == false){
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errorstream<<"Server::SendTextures(): Could not open \""
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<<tname<<"\" for reading"<<std::endl;
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continue;
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}
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std::ostringstream tmp_os(std::ios_base::binary);
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bool bad = false;
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for(;;){
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char buf[1024];
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fis.read(buf, 1024);
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std::streamsize len = fis.gcount();
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tmp_os.write(buf, len);
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if(fis.eof())
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break;
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if(!fis.good()){
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bad = true;
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break;
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}
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}
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if(bad){
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errorstream<<"Server::SendTextures(): Failed to read \""
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<<tname<<"\""<<std::endl;
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continue;
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}
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errorstream<<"Server::SendTextures(): Loaded \""
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<<tname<<"\""<<std::endl;
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// Put in list
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textures.push_back(SendableTexture(tname, tpath, tmp_os.str()));
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}
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}
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/* Create and send packet */
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/*
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u16 command
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u32 number of textures
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for each texture {
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u16 length of name
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string name
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u32 length of data
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data
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}
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*/
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std::ostringstream os(std::ios_base::binary);
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writeU16(os, TOCLIENT_TEXTURES);
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writeU32(os, textures.size());
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for(core::list<SendableTexture>::Iterator i = textures.begin();
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i != textures.end(); i++){
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os<<serializeString(i->name);
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os<<serializeLongString(i->data);
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}
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// Make data buffer
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std::string s = os.str();
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infostream<<"Server::SendTextures(): number of textures: "
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<<textures.size()<<", data size: "<<s.size()<<std::endl;
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SharedBuffer<u8> data((u8*)s.c_str(), s.size());
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// Send as reliable
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m_con.Send(peer_id, 0, data, true);
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}
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/*
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Something random
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*/
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10
src/server.h
10
src/server.h
@ -515,7 +515,10 @@ private:
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IToolDefManager *tooldef);
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/*
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Non-static send methods
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Non-static send methods.
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Conlock should be always used.
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Envlock usage is documented badly but it's easy to figure out
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which ones access the environment.
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*/
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// Envlock and conlock should be locked when calling these
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@ -546,6 +549,8 @@ private:
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// Sends blocks to clients (locks env and con on its own)
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void SendBlocks(float dtime);
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void SendTextures(u16 peer_id);
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/*
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Something random
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@ -682,6 +687,9 @@ private:
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// Configuration path ("" = no configuration file)
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std::string m_configpath;
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// Mod parent directory paths
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core::list<std::string> m_modspaths;
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bool m_shutdown_requested;
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109
src/tile.cpp
109
src/tile.cpp
@ -242,14 +242,6 @@ public:
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*/
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void updateAP(AtlasPointer &ap);
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/*
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Build the main texture atlas which contains most of the
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textures.
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This is called by the constructor.
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*/
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void buildMainAtlas(class IGameDef *gamedef);
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/*
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Processes queued texture requests from other threads.
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@ -257,6 +249,17 @@ public:
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*/
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void processQueue();
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/*
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Build the main texture atlas which contains most of the
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textures.
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*/
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void buildMainAtlas(class IGameDef *gamedef);
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/*
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Insert an image into the cache without touching the filesystem.
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*/
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void insertImage(const std::string &name, video::IImage *img);
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private:
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// The id of the thread that is allowed to use irrlicht directly
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@ -305,31 +308,6 @@ TextureSource::~TextureSource()
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{
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}
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void TextureSource::processQueue()
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{
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/*
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Fetch textures
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*/
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if(m_get_texture_queue.size() > 0)
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{
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GetRequest<std::string, u32, u8, u8>
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request = m_get_texture_queue.pop();
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infostream<<"TextureSource::processQueue(): "
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<<"got texture request with "
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<<"name=\""<<request.key<<"\""
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<<std::endl;
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GetResult<std::string, u32, u8, u8>
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result;
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result.key = request.key;
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result.callers = request.callers;
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result.item = getTextureIdDirect(request.key);
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request.dest->push_back(result);
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}
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}
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u32 TextureSource::getTextureId(const std::string &name)
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{
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//infostream<<"getTextureId(): \""<<name<<"\""<<std::endl;
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@ -624,6 +602,31 @@ void TextureSource::updateAP(AtlasPointer &ap)
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ap = ap2;
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}
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void TextureSource::processQueue()
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{
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/*
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Fetch textures
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*/
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if(m_get_texture_queue.size() > 0)
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{
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GetRequest<std::string, u32, u8, u8>
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request = m_get_texture_queue.pop();
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infostream<<"TextureSource::processQueue(): "
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<<"got texture request with "
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<<"name=\""<<request.key<<"\""
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<<std::endl;
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GetResult<std::string, u32, u8, u8>
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result;
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result.key = request.key;
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result.callers = request.callers;
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result.item = getTextureIdDirect(request.key);
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request.dest->push_back(result);
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}
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}
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void TextureSource::buildMainAtlas(class IGameDef *gamedef)
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{
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assert(gamedef->tsrc() == this);
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@ -864,6 +867,46 @@ void TextureSource::buildMainAtlas(class IGameDef *gamedef)
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driver->writeImageToFile(atlas_img, atlaspath.c_str());*/
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}
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void TextureSource::insertImage(const std::string &name, video::IImage *img)
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{
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infostream<<"TextureSource::insertImage(): name="<<name<<std::endl;
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JMutexAutoLock lock(m_atlaspointer_cache_mutex);
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video::IVideoDriver* driver = m_device->getVideoDriver();
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assert(driver);
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// Create texture
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video::ITexture *t = driver->addTexture(name.c_str(), img);
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bool reuse_old_id = false;
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u32 id = m_atlaspointer_cache.size();
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// Check old id without fetching a texture
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core::map<std::string, u32>::Node *n;
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n = m_name_to_id.find(name);
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// If it exists, we will replace the old definition
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if(n){
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id = n->getValue();
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reuse_old_id = true;
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}
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// Create AtlasPointer
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AtlasPointer ap(id);
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ap.atlas = t;
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ap.pos = v2f(0,0);
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ap.size = v2f(1,1);
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ap.tiled = 0;
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core::dimension2d<u32> dim = img->getDimension();
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// Create SourceAtlasPointer and add to containers
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SourceAtlasPointer nap(name, ap, img, v2s32(0,0), dim);
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if(reuse_old_id)
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m_atlaspointer_cache[id] = nap;
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else
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m_atlaspointer_cache.push_back(nap);
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m_name_to_id[name] = id;
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}
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video::IImage* generate_image_from_scratch(std::string name,
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IrrlichtDevice *device)
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{
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@ -156,8 +156,10 @@ public:
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{return NULL;}
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virtual void updateAP(AtlasPointer &ap){};
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virtual void buildMainAtlas(class IGameDef *gamedef)=0;
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virtual void processQueue()=0;
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virtual void buildMainAtlas(class IGameDef *gamedef)=0;
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// img is eaten, do not drop it
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virtual void insertImage(const std::string &name, video::IImage *img)=0;
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};
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IWritableTextureSource* createTextureSource(IrrlichtDevice *device);
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