mirror of
https://github.com/mangosfour/server.git
synced 2025-12-17 16:37:00 +00:00
[7912] Remove unexpected indent from file tail.
Note: not code changes, and then binary not updated.
This commit is contained in:
parent
42f8ce5f3e
commit
81267151ad
2 changed files with 400 additions and 400 deletions
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@ -1,4 +1,4 @@
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#ifndef __REVISION_NR_H__
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#define __REVISION_NR_H__
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#define REVISION_NR "7911"
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#define REVISION_NR "7912"
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#endif // __REVISION_NR_H__
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@ -171,423 +171,423 @@ namespace VMAP
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{
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for(int y=28; y<29 && result; ++y)
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{
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#else
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// ignore DeeprunTram (369) it is too large for short vector and not important
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// ignore test (13), Test (29) , development (451)
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if(mapId != 369 && mapId != 13 && mapId != 29 && mapId != 451)
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{
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for(int x=0; x<66 && result; ++x)
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{
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for(int y=0; y<66 && result; ++y)
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{
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#endif
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Array<ModelContainer*> mc;
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std::string dirname;
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char buffer[100];
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if(iCoordModelMapping->isWorldAreaMap(mapId) && x<65 && y<65)
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{
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sprintf(buffer, "%03u_%d_%d",mapId,y,x); // Let's flip x and y here
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dirname = std::string(buffer);
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}
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else
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{
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sprintf(buffer, "%03u",mapId);
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dirname = std::string(buffer);
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}
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result = fillModelContainerArray(dirname, mapId, x, y, mc);
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emptyArray(mc);
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}
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}
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}
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}
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#ifdef _ASSEMBLER_DEBUG
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if(::g_df) fclose(::g_df);
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#endif
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return result;
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}
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//=================================================================
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bool TileAssembler::fillModelContainerArray(const std::string& pDirFileName, unsigned int pMapId, int pXPos, int pYPos, Array<ModelContainer*>& pMC)
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#else
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// ignore DeeprunTram (369) it is too large for short vector and not important
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// ignore test (13), Test (29) , development (451)
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if(mapId != 369 && mapId != 13 && mapId != 29 && mapId != 451)
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{
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for(int x=0; x<66 && result; ++x)
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{
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bool result = true;
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ModelContainer* modelContainer;
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NameCollection nameCollection = iCoordModelMapping->getFilenamesForCoordinate(pMapId, pXPos, pYPos);
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if(nameCollection.size() > 0)
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for(int y=0; y<66 && result; ++y)
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{
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result = false;
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char dirfilename[500];
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sprintf(dirfilename,"%s/%s.vmdir",iDestDir.c_str(),pDirFileName.c_str());
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FILE *dirfile = fopen(dirfilename, "ab");
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if(dirfile)
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#endif
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Array<ModelContainer*> mc;
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std::string dirname;
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char buffer[100];
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if(iCoordModelMapping->isWorldAreaMap(mapId) && x<65 && y<65)
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{
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result = true;
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char destnamebuffer[500];
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char fullnamedestnamebuffer[500];
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if(nameCollection.iMainFiles.size() >0)
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{
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sprintf(destnamebuffer,"%03u_%i_%i.vmap",pMapId, pYPos, pXPos); // flip it here too
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std::string checkDoubleStr = std::string(dirfilename);
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checkDoubleStr.append("##");
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checkDoubleStr.append(std::string(destnamebuffer));
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// Check, if same file already is in the same dir file
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if(!iCoordModelMapping->isAlreadyProcessedSingleFile(checkDoubleStr))
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{
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iCoordModelMapping->addAlreadyProcessedSingleFile(checkDoubleStr);
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fprintf(dirfile, "%s\n",destnamebuffer);
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sprintf(fullnamedestnamebuffer,"%s/%s",iDestDir.c_str(),destnamebuffer);
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modelContainer = processNames(nameCollection.iMainFiles, fullnamedestnamebuffer);
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if(modelContainer)
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{
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pMC.append(modelContainer);
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}
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else
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{
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result = false;
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}
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}
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}
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// process the large singe files
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int pos = 0;
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while(result && (pos < nameCollection.iSingeFiles.size()))
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{
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std::string destFileName = iDestDir;
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destFileName.append("/");
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std::string dirEntryName = getDirEntryNameFromModName(pMapId,nameCollection.iSingeFiles[pos]);
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std::string checkDoubleStr = std::string(dirfilename);
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checkDoubleStr.append("##");
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checkDoubleStr.append(nameCollection.iSingeFiles[pos]);
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// Check, if same file already is in the same dir file
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if(!iCoordModelMapping->isAlreadyProcessedSingleFile(checkDoubleStr))
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{
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iCoordModelMapping->addAlreadyProcessedSingleFile(checkDoubleStr);
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fprintf(dirfile, "%s\n",dirEntryName.c_str());
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destFileName.append(dirEntryName);
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Array<std::string> positionarray;
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positionarray.append(nameCollection.iSingeFiles[pos]);
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if(!iCoordModelMapping->isAlreadyProcessedSingleFile(nameCollection.iSingeFiles[pos]))
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{
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modelContainer = processNames(positionarray, destFileName.c_str());
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iCoordModelMapping->addAlreadyProcessedSingleFile(nameCollection.iSingeFiles[pos]);
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if(modelContainer)
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{
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pMC.append(modelContainer);
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}
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else
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{
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result = false;
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}
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}
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}
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++pos;
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}
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fclose(dirfile);
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}
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}
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return(result);
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}
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//=================================================================
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void removeEntriesFromTree(AABSPTree<SubModel *>* pTree)
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{
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Array<SubModel *> submodelArray;
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pTree->getMembers(submodelArray);
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int no = submodelArray.size();
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while(no > 0)
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{
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--no;
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delete submodelArray[no];
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}
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}
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//=================================================================
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ModelContainer* TileAssembler::processNames(const Array<std::string>& pPositions, const char* pDestFileName)
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{
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ModelContainer *modelContainer = 0;
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Vector3 basepos = Vector3(0,0,0);
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AABSPTree<SubModel *>* mainTree = new AABSPTree<SubModel *>();
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int pos = 0;
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bool result = true;
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while(result && (pos < pPositions.size()))
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{
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std::string modelPosString = pPositions[pos];
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std::string modelFileName = getModNameFromModPosName(modelPosString);
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if(!fillModelIntoTree(mainTree, basepos, modelPosString, modelFileName))
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{
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result = false;
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break;
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}
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++pos;
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}
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if(result && mainTree->size() > 0)
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{
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mainTree->balance();
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modelContainer = new ModelContainer(mainTree);
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modelContainer->writeFile(pDestFileName);
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}
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removeEntriesFromTree(mainTree);
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delete mainTree;
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return(modelContainer);
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}
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//=================================================================
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bool TileAssembler::readRawFile(std::string& pModelFilename, ModelPosition& pModelPosition, AABSPTree<SubModel *> *pMainTree)
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{
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bool result = false;
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std::string filename = iSrcDir;
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if(filename.length() >0)
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filename.append("/");
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filename.append(pModelFilename);
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FILE *rf = fopen(filename.c_str(), "rb");
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if(!rf)
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{
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// depending on the extractor version, the data could be located in the root dir
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std::string baseModelFilename = pModelFilename.substr((pModelFilename.find_first_of("/")+1),pModelFilename.length());
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filename = iSrcDir;
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if(filename.length() >0)
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filename.append("/");
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filename.append(baseModelFilename);
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rf = fopen(filename.c_str(), "rb");
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}
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char ident[8];
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int trianglecount =0;
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#ifdef _ASSEMBLER_DEBUG
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int startgroup = 0; //2;
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int endgroup = INT_MAX; //2;
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fprintf(::g_df,"-------------------------------------------------\n");
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fprintf(::g_df,"%s\n", pModelFilename.c_str());
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fprintf(::g_df,"-------------------------------------------------\n");
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#else
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int startgroup = 0;
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int endgroup = INT_MAX;
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#endif
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// temporary use defines to simplify read/check code (close file and return at fail)
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#define READ_OR_RETURN(V,S) if(fread((V), (S), 1, rf) != 1) { fclose(rf); return(false); }
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#define CMP_OR_RETURN(V,S) if(strcmp((V),(S)) != 0) { fclose(rf); return(false); }
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if(rf)
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{
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READ_OR_RETURN(&ident, 8);
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if(strcmp(ident, "VMAP001") == 0)
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{
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// OK, do nothing
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}
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else if(strcmp(ident, "VMAP002") == 0)
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{
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// we have to read one int. This is needed during the export and we have to skip it here
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int tempNVectors;
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READ_OR_RETURN(&tempNVectors, sizeof(int));
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sprintf(buffer, "%03u_%d_%d",mapId,y,x); // Let's flip x and y here
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dirname = std::string(buffer);
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}
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else
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{
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// wrong version
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fclose(rf);
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return(false);
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sprintf(buffer, "%03u",mapId);
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dirname = std::string(buffer);
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}
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G3D::uint32 groups;
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char blockId[5];
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blockId[4] = 0;
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int blocksize;
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READ_OR_RETURN(&groups, sizeof(G3D::uint32));
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for(int g=0;g<(int)groups;g++)
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{
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// group MUST NOT have more then 65536 indexes !! Array will have a problem with that !! (strange ...)
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Array<int> tempIndexArray;
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Array<Vector3> tempVertexArray;
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AABSPTree<Triangle> *gtree = new AABSPTree<Triangle>();
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// add free gtree at fail
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#undef READ_OR_RETURN
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#undef CMP_OR_RETURN
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#define READ_OR_RETURN(V,S) if(fread((V), (S), 1, rf) != 1) { fclose(rf); delete gtree; return(false); }
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#define CMP_OR_RETURN(V,S) if(strcmp((V),(S)) != 0) { fclose(rf); delete gtree; return(false); }
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G3D::uint32 flags;
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READ_OR_RETURN(&flags, sizeof(G3D::uint32));
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G3D::uint32 branches;
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READ_OR_RETURN(&blockId, 4);
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CMP_OR_RETURN(blockId, "GRP ");
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READ_OR_RETURN(&blocksize, sizeof(int));
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READ_OR_RETURN(&branches, sizeof(G3D::uint32));
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for(int b=0;b<(int)branches; b++)
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{
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G3D::uint32 indexes;
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// indexes for each branch (not used jet)
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READ_OR_RETURN(&indexes, sizeof(G3D::uint32));
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}
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// ---- indexes
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READ_OR_RETURN(&blockId, 4);
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CMP_OR_RETURN(blockId, "INDX");
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READ_OR_RETURN(&blocksize, sizeof(int));
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unsigned int nindexes;
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READ_OR_RETURN(&nindexes, sizeof(G3D::uint32));
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if(nindexes >0)
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{
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unsigned short *indexarray = new unsigned short[nindexes*sizeof(unsigned short)];
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READ_OR_RETURN(indexarray, sizeof(unsigned short));
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for(int i=0;i<(int)nindexes; i++)
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{
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unsigned short val = indexarray[i];
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tempIndexArray.append(val);
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}
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delete[] indexarray;
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}
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// ---- vectors
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READ_OR_RETURN(&blockId, 4);
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CMP_OR_RETURN(blockId, "VERT");
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READ_OR_RETURN(&blocksize, sizeof(int));
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unsigned int nvectors;
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READ_OR_RETURN(&nvectors, sizeof(int));
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float *vectorarray = 0;
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// add vectorarray free
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#undef READ_OR_RETURN
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#undef CMP_OR_RETURN
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#define READ_OR_RETURN(V,S) if(fread((V), (S), 1, rf) != 1) { fclose(rf); delete gtree; delete[] vectorarray; return(false); }
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#define CMP_OR_RETURN(V,S) if(strcmp((V),(S)) != 0) { fclose(rf); delete gtree; delete[] vectorarray; return(false); }
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if(nvectors >0)
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{
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vectorarray = new float[nvectors*sizeof(float)*3];
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READ_OR_RETURN(vectorarray, sizeof(float)*3);
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}
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// ----- liquit
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if(flags & 1)
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{
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// we have liquit -> not handled yet ... skip
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READ_OR_RETURN(&blockId, 4);
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CMP_OR_RETURN(blockId, "LIQU");
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READ_OR_RETURN(&blocksize, sizeof(int));
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fseek(rf, blocksize, SEEK_CUR);
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}
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for(unsigned int i=0, indexNo=0; indexNo<nvectors; indexNo++)
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{
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Vector3 v = Vector3(vectorarray[i+2], vectorarray[i+1], vectorarray[i+0]);
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i+=3;
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v = pModelPosition.transform(v);
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float swapy = v.y;
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v.y = v.x;
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v.x = swapy;
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tempVertexArray.append(v);
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}
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// ---- calculate triangles
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int rest = nindexes%3;
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if(rest != 0)
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{
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nindexes -= rest;
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}
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for(unsigned int i=0;i<(nindexes);)
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{
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Triangle t = Triangle(tempVertexArray[tempIndexArray[i+2]], tempVertexArray[tempIndexArray[i+1]], tempVertexArray[tempIndexArray[i+0]] );
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i+=3;
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++trianglecount;
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if(g>= startgroup && g <= endgroup)
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{
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gtree->insert(t);
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}
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}
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// drop of temporary use defines
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#undef READ_OR_RETURN
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#undef CMP_OR_RETURN
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if(vectorarray != 0)
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{
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delete vectorarray;
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}
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if(gtree->size() >0)
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{
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gtree->balance();
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SubModel *sm = new SubModel(gtree);
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#ifdef _ASSEMBLER_DEBUG
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if(::g_df) fprintf(::g_df,"group trianglies: %d, Tris: %d, Nodes: %d, gtree.triangles: %d\n", g, sm->getNTriangles(), sm->getNNodes(), gtree->memberTable.size());
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if(sm->getNTriangles() != gtree->memberTable.size())
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{
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if(::g_df) fprintf(::g_df,"ERROR !!!! group trianglies: %d, Tris: %d, Nodes: %d, gtree.triangles: %d\n", g, sm->getNTriangles(), sm->getNNodes(), gtree->memberTable.size());
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}
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#endif
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sm->setBasePosition(pModelPosition.iPos);
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pMainTree->insert(sm);
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}
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delete gtree;
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}
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fclose(rf);
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result = true;
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result = fillModelContainerArray(dirname, mapId, x, y, mc);
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emptyArray(mc);
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}
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return(result);
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}
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}
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}
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#ifdef _ASSEMBLER_DEBUG
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if(::g_df) fclose(::g_df);
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#endif
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//=================================================================
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return result;
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}
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bool TileAssembler::fillModelIntoTree(AABSPTree<SubModel *> *pMainTree, const Vector3& pBasePos, std::string& pPos, std::string& pModelFilename)
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//=================================================================
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bool TileAssembler::fillModelContainerArray(const std::string& pDirFileName, unsigned int pMapId, int pXPos, int pYPos, Array<ModelContainer*>& pMC)
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{
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bool result = true;
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ModelContainer* modelContainer;
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NameCollection nameCollection = iCoordModelMapping->getFilenamesForCoordinate(pMapId, pXPos, pYPos);
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if(nameCollection.size() > 0)
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{
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result = false;
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char dirfilename[500];
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sprintf(dirfilename,"%s/%s.vmdir",iDestDir.c_str(),pDirFileName.c_str());
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FILE *dirfile = fopen(dirfilename, "ab");
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if(dirfile)
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{
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result = true;
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char destnamebuffer[500];
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char fullnamedestnamebuffer[500];
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if(nameCollection.iMainFiles.size() >0)
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{
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bool result = false;
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ModelPosition modelPosition;
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getModelPosition(pPos, modelPosition);
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// all should be relative to object base position
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modelPosition.moveToBasePos(pBasePos);
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modelPosition.init();
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if(readRawFile(pModelFilename, modelPosition, pMainTree))
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sprintf(destnamebuffer,"%03u_%i_%i.vmap",pMapId, pYPos, pXPos); // flip it here too
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std::string checkDoubleStr = std::string(dirfilename);
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checkDoubleStr.append("##");
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checkDoubleStr.append(std::string(destnamebuffer));
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// Check, if same file already is in the same dir file
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if(!iCoordModelMapping->isAlreadyProcessedSingleFile(checkDoubleStr))
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{
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result = true;
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iCoordModelMapping->addAlreadyProcessedSingleFile(checkDoubleStr);
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fprintf(dirfile, "%s\n",destnamebuffer);
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sprintf(fullnamedestnamebuffer,"%s/%s",iDestDir.c_str(),destnamebuffer);
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modelContainer = processNames(nameCollection.iMainFiles, fullnamedestnamebuffer);
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if(modelContainer)
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{
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pMC.append(modelContainer);
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}
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else
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{
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result = false;
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}
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}
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return result;
|
||||
}
|
||||
|
||||
//=================================================================
|
||||
void TileAssembler::getModelPosition(std::string& pPosString, ModelPosition& pModelPosition)
|
||||
// process the large singe files
|
||||
int pos = 0;
|
||||
while(result && (pos < nameCollection.iSingeFiles.size()))
|
||||
{
|
||||
float vposarray[3];
|
||||
float vdirarray[3];
|
||||
float scale;
|
||||
std::string destFileName = iDestDir;
|
||||
destFileName.append("/");
|
||||
std::string dirEntryName = getDirEntryNameFromModName(pMapId,nameCollection.iSingeFiles[pos]);
|
||||
std::string checkDoubleStr = std::string(dirfilename);
|
||||
checkDoubleStr.append("##");
|
||||
checkDoubleStr.append(nameCollection.iSingeFiles[pos]);
|
||||
// Check, if same file already is in the same dir file
|
||||
if(!iCoordModelMapping->isAlreadyProcessedSingleFile(checkDoubleStr))
|
||||
{
|
||||
iCoordModelMapping->addAlreadyProcessedSingleFile(checkDoubleStr);
|
||||
fprintf(dirfile, "%s\n",dirEntryName.c_str());
|
||||
destFileName.append(dirEntryName);
|
||||
|
||||
size_t spos = pPosString.find_first_of('#');
|
||||
std::string stripedPosString = pPosString.substr(spos+1,pPosString.length());
|
||||
|
||||
sscanf(stripedPosString.c_str(), "%f,%f,%f_%f,%f,%f_%f",
|
||||
&vposarray[0],&vposarray[1],&vposarray[2],
|
||||
&vdirarray[0],&vdirarray[1],&vdirarray[2],
|
||||
&scale);
|
||||
|
||||
pModelPosition.iPos = Vector3(vposarray[0], vposarray[1], vposarray[2]);
|
||||
pModelPosition.iDir = Vector3(vdirarray[0], vdirarray[1], vdirarray[2]);
|
||||
pModelPosition.iScale = scale;
|
||||
Array<std::string> positionarray;
|
||||
positionarray.append(nameCollection.iSingeFiles[pos]);
|
||||
|
||||
if(!iCoordModelMapping->isAlreadyProcessedSingleFile(nameCollection.iSingeFiles[pos]))
|
||||
{
|
||||
modelContainer = processNames(positionarray, destFileName.c_str());
|
||||
iCoordModelMapping->addAlreadyProcessedSingleFile(nameCollection.iSingeFiles[pos]);
|
||||
if(modelContainer)
|
||||
{
|
||||
pMC.append(modelContainer);
|
||||
}
|
||||
else
|
||||
{
|
||||
result = false;
|
||||
}
|
||||
}
|
||||
}
|
||||
++pos;
|
||||
}
|
||||
//==========================================
|
||||
fclose(dirfile);
|
||||
}
|
||||
}
|
||||
return(result);
|
||||
}
|
||||
|
||||
} // VMAP
|
||||
//=================================================================
|
||||
|
||||
void removeEntriesFromTree(AABSPTree<SubModel *>* pTree)
|
||||
{
|
||||
Array<SubModel *> submodelArray;
|
||||
pTree->getMembers(submodelArray);
|
||||
int no = submodelArray.size();
|
||||
while(no > 0)
|
||||
{
|
||||
--no;
|
||||
delete submodelArray[no];
|
||||
}
|
||||
}
|
||||
|
||||
//=================================================================
|
||||
|
||||
ModelContainer* TileAssembler::processNames(const Array<std::string>& pPositions, const char* pDestFileName)
|
||||
{
|
||||
ModelContainer *modelContainer = 0;
|
||||
|
||||
Vector3 basepos = Vector3(0,0,0);
|
||||
AABSPTree<SubModel *>* mainTree = new AABSPTree<SubModel *>();
|
||||
|
||||
int pos = 0;
|
||||
|
||||
bool result = true;
|
||||
while(result && (pos < pPositions.size()))
|
||||
{
|
||||
std::string modelPosString = pPositions[pos];
|
||||
std::string modelFileName = getModNameFromModPosName(modelPosString);
|
||||
|
||||
if(!fillModelIntoTree(mainTree, basepos, modelPosString, modelFileName))
|
||||
{
|
||||
result = false;
|
||||
break;
|
||||
}
|
||||
++pos;
|
||||
}
|
||||
if(result && mainTree->size() > 0)
|
||||
{
|
||||
mainTree->balance();
|
||||
modelContainer = new ModelContainer(mainTree);
|
||||
modelContainer->writeFile(pDestFileName);
|
||||
}
|
||||
removeEntriesFromTree(mainTree);
|
||||
|
||||
delete mainTree;
|
||||
|
||||
return(modelContainer);
|
||||
}
|
||||
|
||||
//=================================================================
|
||||
bool TileAssembler::readRawFile(std::string& pModelFilename, ModelPosition& pModelPosition, AABSPTree<SubModel *> *pMainTree)
|
||||
{
|
||||
bool result = false;
|
||||
|
||||
std::string filename = iSrcDir;
|
||||
if(filename.length() >0)
|
||||
filename.append("/");
|
||||
filename.append(pModelFilename);
|
||||
FILE *rf = fopen(filename.c_str(), "rb");
|
||||
if(!rf)
|
||||
{
|
||||
// depending on the extractor version, the data could be located in the root dir
|
||||
std::string baseModelFilename = pModelFilename.substr((pModelFilename.find_first_of("/")+1),pModelFilename.length());
|
||||
filename = iSrcDir;
|
||||
if(filename.length() >0)
|
||||
filename.append("/");
|
||||
filename.append(baseModelFilename);
|
||||
rf = fopen(filename.c_str(), "rb");
|
||||
}
|
||||
char ident[8];
|
||||
|
||||
int trianglecount =0;
|
||||
|
||||
#ifdef _ASSEMBLER_DEBUG
|
||||
int startgroup = 0; //2;
|
||||
int endgroup = INT_MAX; //2;
|
||||
fprintf(::g_df,"-------------------------------------------------\n");
|
||||
fprintf(::g_df,"%s\n", pModelFilename.c_str());
|
||||
fprintf(::g_df,"-------------------------------------------------\n");
|
||||
#else
|
||||
int startgroup = 0;
|
||||
int endgroup = INT_MAX;
|
||||
#endif
|
||||
|
||||
// temporary use defines to simplify read/check code (close file and return at fail)
|
||||
#define READ_OR_RETURN(V,S) if(fread((V), (S), 1, rf) != 1) { fclose(rf); return(false); }
|
||||
#define CMP_OR_RETURN(V,S) if(strcmp((V),(S)) != 0) { fclose(rf); return(false); }
|
||||
|
||||
if(rf)
|
||||
{
|
||||
READ_OR_RETURN(&ident, 8);
|
||||
if(strcmp(ident, "VMAP001") == 0)
|
||||
{
|
||||
// OK, do nothing
|
||||
}
|
||||
else if(strcmp(ident, "VMAP002") == 0)
|
||||
{
|
||||
// we have to read one int. This is needed during the export and we have to skip it here
|
||||
int tempNVectors;
|
||||
READ_OR_RETURN(&tempNVectors, sizeof(int));
|
||||
|
||||
}
|
||||
else
|
||||
{
|
||||
// wrong version
|
||||
fclose(rf);
|
||||
return(false);
|
||||
}
|
||||
G3D::uint32 groups;
|
||||
char blockId[5];
|
||||
blockId[4] = 0;
|
||||
int blocksize;
|
||||
|
||||
READ_OR_RETURN(&groups, sizeof(G3D::uint32));
|
||||
|
||||
for(int g=0;g<(int)groups;g++)
|
||||
{
|
||||
// group MUST NOT have more then 65536 indexes !! Array will have a problem with that !! (strange ...)
|
||||
Array<int> tempIndexArray;
|
||||
Array<Vector3> tempVertexArray;
|
||||
|
||||
AABSPTree<Triangle> *gtree = new AABSPTree<Triangle>();
|
||||
|
||||
// add free gtree at fail
|
||||
#undef READ_OR_RETURN
|
||||
#undef CMP_OR_RETURN
|
||||
#define READ_OR_RETURN(V,S) if(fread((V), (S), 1, rf) != 1) { fclose(rf); delete gtree; return(false); }
|
||||
#define CMP_OR_RETURN(V,S) if(strcmp((V),(S)) != 0) { fclose(rf); delete gtree; return(false); }
|
||||
|
||||
G3D::uint32 flags;
|
||||
READ_OR_RETURN(&flags, sizeof(G3D::uint32));
|
||||
|
||||
G3D::uint32 branches;
|
||||
READ_OR_RETURN(&blockId, 4);
|
||||
CMP_OR_RETURN(blockId, "GRP ");
|
||||
READ_OR_RETURN(&blocksize, sizeof(int));
|
||||
READ_OR_RETURN(&branches, sizeof(G3D::uint32));
|
||||
for(int b=0;b<(int)branches; b++)
|
||||
{
|
||||
G3D::uint32 indexes;
|
||||
// indexes for each branch (not used jet)
|
||||
READ_OR_RETURN(&indexes, sizeof(G3D::uint32));
|
||||
}
|
||||
|
||||
// ---- indexes
|
||||
READ_OR_RETURN(&blockId, 4);
|
||||
CMP_OR_RETURN(blockId, "INDX");
|
||||
READ_OR_RETURN(&blocksize, sizeof(int));
|
||||
unsigned int nindexes;
|
||||
READ_OR_RETURN(&nindexes, sizeof(G3D::uint32));
|
||||
if(nindexes >0)
|
||||
{
|
||||
unsigned short *indexarray = new unsigned short[nindexes*sizeof(unsigned short)];
|
||||
READ_OR_RETURN(indexarray, sizeof(unsigned short));
|
||||
for(int i=0;i<(int)nindexes; i++)
|
||||
{
|
||||
unsigned short val = indexarray[i];
|
||||
tempIndexArray.append(val);
|
||||
}
|
||||
delete[] indexarray;
|
||||
}
|
||||
|
||||
// ---- vectors
|
||||
READ_OR_RETURN(&blockId, 4);
|
||||
CMP_OR_RETURN(blockId, "VERT");
|
||||
READ_OR_RETURN(&blocksize, sizeof(int));
|
||||
unsigned int nvectors;
|
||||
READ_OR_RETURN(&nvectors, sizeof(int));
|
||||
|
||||
float *vectorarray = 0;
|
||||
|
||||
// add vectorarray free
|
||||
#undef READ_OR_RETURN
|
||||
#undef CMP_OR_RETURN
|
||||
#define READ_OR_RETURN(V,S) if(fread((V), (S), 1, rf) != 1) { fclose(rf); delete gtree; delete[] vectorarray; return(false); }
|
||||
#define CMP_OR_RETURN(V,S) if(strcmp((V),(S)) != 0) { fclose(rf); delete gtree; delete[] vectorarray; return(false); }
|
||||
|
||||
if(nvectors >0)
|
||||
{
|
||||
vectorarray = new float[nvectors*sizeof(float)*3];
|
||||
READ_OR_RETURN(vectorarray, sizeof(float)*3);
|
||||
}
|
||||
// ----- liquit
|
||||
if(flags & 1)
|
||||
{
|
||||
// we have liquit -> not handled yet ... skip
|
||||
READ_OR_RETURN(&blockId, 4);
|
||||
CMP_OR_RETURN(blockId, "LIQU");
|
||||
READ_OR_RETURN(&blocksize, sizeof(int));
|
||||
fseek(rf, blocksize, SEEK_CUR);
|
||||
}
|
||||
|
||||
|
||||
for(unsigned int i=0, indexNo=0; indexNo<nvectors; indexNo++)
|
||||
{
|
||||
Vector3 v = Vector3(vectorarray[i+2], vectorarray[i+1], vectorarray[i+0]);
|
||||
i+=3;
|
||||
v = pModelPosition.transform(v);
|
||||
|
||||
float swapy = v.y;
|
||||
v.y = v.x;
|
||||
v.x = swapy;
|
||||
|
||||
tempVertexArray.append(v);
|
||||
}
|
||||
|
||||
// ---- calculate triangles
|
||||
int rest = nindexes%3;
|
||||
if(rest != 0)
|
||||
{
|
||||
nindexes -= rest;
|
||||
}
|
||||
|
||||
for(unsigned int i=0;i<(nindexes);)
|
||||
{
|
||||
Triangle t = Triangle(tempVertexArray[tempIndexArray[i+2]], tempVertexArray[tempIndexArray[i+1]], tempVertexArray[tempIndexArray[i+0]] );
|
||||
i+=3;
|
||||
++trianglecount;
|
||||
if(g>= startgroup && g <= endgroup)
|
||||
{
|
||||
gtree->insert(t);
|
||||
}
|
||||
}
|
||||
|
||||
// drop of temporary use defines
|
||||
#undef READ_OR_RETURN
|
||||
#undef CMP_OR_RETURN
|
||||
|
||||
if(vectorarray != 0)
|
||||
{
|
||||
delete vectorarray;
|
||||
}
|
||||
|
||||
if(gtree->size() >0)
|
||||
{
|
||||
gtree->balance();
|
||||
SubModel *sm = new SubModel(gtree);
|
||||
#ifdef _ASSEMBLER_DEBUG
|
||||
if(::g_df) fprintf(::g_df,"group trianglies: %d, Tris: %d, Nodes: %d, gtree.triangles: %d\n", g, sm->getNTriangles(), sm->getNNodes(), gtree->memberTable.size());
|
||||
if(sm->getNTriangles() != gtree->memberTable.size())
|
||||
{
|
||||
if(::g_df) fprintf(::g_df,"ERROR !!!! group trianglies: %d, Tris: %d, Nodes: %d, gtree.triangles: %d\n", g, sm->getNTriangles(), sm->getNNodes(), gtree->memberTable.size());
|
||||
}
|
||||
#endif
|
||||
sm->setBasePosition(pModelPosition.iPos);
|
||||
pMainTree->insert(sm);
|
||||
}
|
||||
delete gtree;
|
||||
}
|
||||
fclose(rf);
|
||||
result = true;
|
||||
}
|
||||
return(result);
|
||||
}
|
||||
|
||||
//=================================================================
|
||||
|
||||
bool TileAssembler::fillModelIntoTree(AABSPTree<SubModel *> *pMainTree, const Vector3& pBasePos, std::string& pPos, std::string& pModelFilename)
|
||||
{
|
||||
bool result = false;
|
||||
ModelPosition modelPosition;
|
||||
getModelPosition(pPos, modelPosition);
|
||||
// all should be relative to object base position
|
||||
modelPosition.moveToBasePos(pBasePos);
|
||||
|
||||
modelPosition.init();
|
||||
|
||||
if(readRawFile(pModelFilename, modelPosition, pMainTree))
|
||||
{
|
||||
result = true;
|
||||
}
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
//=================================================================
|
||||
void TileAssembler::getModelPosition(std::string& pPosString, ModelPosition& pModelPosition)
|
||||
{
|
||||
float vposarray[3];
|
||||
float vdirarray[3];
|
||||
float scale;
|
||||
|
||||
size_t spos = pPosString.find_first_of('#');
|
||||
std::string stripedPosString = pPosString.substr(spos+1,pPosString.length());
|
||||
|
||||
sscanf(stripedPosString.c_str(), "%f,%f,%f_%f,%f,%f_%f",
|
||||
&vposarray[0],&vposarray[1],&vposarray[2],
|
||||
&vdirarray[0],&vdirarray[1],&vdirarray[2],
|
||||
&scale);
|
||||
|
||||
pModelPosition.iPos = Vector3(vposarray[0], vposarray[1], vposarray[2]);
|
||||
pModelPosition.iDir = Vector3(vdirarray[0], vdirarray[1], vdirarray[2]);
|
||||
pModelPosition.iScale = scale;
|
||||
|
||||
}
|
||||
//==========================================
|
||||
} // VMAP
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue