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| package mainimport (	"crypto/sha256"	"encoding/hex"	"encoding/json"	"io"	"log"	"math"	"mime"	"net/http"	"net/url"	"os"	"path/filepath"	"runtime"	"sort"	"strconv"	"strings"	"time"	"github.com/gorilla/websocket"	uuid "github.com/satori/go.uuid"	"imuslab.com/arozos/mod/common"	"imuslab.com/arozos/mod/compatibility"	"imuslab.com/arozos/mod/disk/hybridBackup"	"imuslab.com/arozos/mod/filesystem"	fs "imuslab.com/arozos/mod/filesystem"	fsp "imuslab.com/arozos/mod/filesystem/fspermission"	"imuslab.com/arozos/mod/filesystem/fuzzy"	hidden "imuslab.com/arozos/mod/filesystem/hidden"	"imuslab.com/arozos/mod/filesystem/localversion"	metadata "imuslab.com/arozos/mod/filesystem/metadata"	"imuslab.com/arozos/mod/filesystem/shortcut"	module "imuslab.com/arozos/mod/modules"	prout "imuslab.com/arozos/mod/prouter"	"imuslab.com/arozos/mod/share"	"imuslab.com/arozos/mod/share/shareEntry"	storage "imuslab.com/arozos/mod/storage")var (	thumbRenderHandler *metadata.RenderHandler	shareEntryTable    *shareEntry.ShareEntryTable	shareManager       *share.Manager)type trashedFile struct {	Filename         string	Filepath         string	FileExt          string	IsDir            bool	Filesize         int64	RemoveTimestamp  int64	RemoveDate       string	OriginalPath     string	OriginalFilename string}func FileSystemInit() {	router := prout.NewModuleRouter(prout.RouterOption{		ModuleName:  "File Manager",		AdminOnly:   false,		UserHandler: userHandler,		DeniedHandler: func(w http.ResponseWriter, r *http.Request) {			common.SendErrorResponse(w, "Permission Denied")		},	})	//Upload related functions	router.HandleFunc("/system/file_system/upload", system_fs_handleUpload)	router.HandleFunc("/system/file_system/lowmemUpload", system_fs_handleLowMemoryUpload)	//Other file operations	router.HandleFunc("/system/file_system/validateFileOpr", system_fs_validateFileOpr)	router.HandleFunc("/system/file_system/fileOpr", system_fs_handleOpr)	router.HandleFunc("/system/file_system/ws/fileOpr", system_fs_handleWebSocketOpr)	router.HandleFunc("/system/file_system/listDir", system_fs_handleList)	router.HandleFunc("/system/file_system/listDirHash", system_fs_handleDirHash)	router.HandleFunc("/system/file_system/listRoots", system_fs_listRoot)	router.HandleFunc("/system/file_system/listDrives", system_fs_listDrives)	router.HandleFunc("/system/file_system/newItem", system_fs_handleNewObjects)	router.HandleFunc("/system/file_system/preference", system_fs_handleUserPreference)	router.HandleFunc("/system/file_system/listTrash", system_fs_scanTrashBin)	router.HandleFunc("/system/file_system/ws/listTrash", system_fs_WebSocketScanTrashBin)	router.HandleFunc("/system/file_system/clearTrash", system_fs_clearTrashBin)	router.HandleFunc("/system/file_system/restoreTrash", system_fs_restoreFile)	router.HandleFunc("/system/file_system/zipHandler", system_fs_zipHandler)	router.HandleFunc("/system/file_system/getProperties", system_fs_getFileProperties)	router.HandleFunc("/system/file_system/pathTranslate", system_fs_handlePathTranslate)	router.HandleFunc("/system/file_system/versionHistory", system_fs_FileVersionHistory)	router.HandleFunc("/system/file_system/handleFilePermission", system_fs_handleFilePermission)	router.HandleFunc("/system/file_system/search", system_fs_handleFileSearch)	//Thumbnail caching functions	router.HandleFunc("/system/file_system/handleFolderCache", system_fs_handleFolderCache)	router.HandleFunc("/system/file_system/handleCacheRender", system_fs_handleCacheRender)	router.HandleFunc("/system/file_system/loadThumbnail", system_fs_handleThumbnailLoad)	//Directory specific config	router.HandleFunc("/system/file_system/sortMode", system_fs_handleFolderSortModePreference)	//Register the module	moduleHandler.RegisterModule(module.ModuleInfo{		Name:        "File Manager",		Group:       "System Tools",		IconPath:    "SystemAO/file_system/img/small_icon.png",		Version:     "1.0",		StartDir:    "SystemAO/file_system/file_explorer.html",		SupportFW:   true,		InitFWSize:  []int{1080, 580},		LaunchFWDir: "SystemAO/file_system/file_explorer.html",		SupportEmb:  false,	})	//Register the Trashbin module	moduleHandler.RegisterModule(module.ModuleInfo{		Name:         "Trash Bin",		Group:        "System Tools",		IconPath:     "SystemAO/file_system/trashbin_img/small_icon.png",		Version:      "1.0",		StartDir:     "SystemAO/file_system/trashbin.html",		SupportFW:    true,		InitFWSize:   []int{400, 200},		LaunchFWDir:  "SystemAO/file_system/trashbin.html",		SupportEmb:   false,		SupportedExt: []string{"*"},	})	//Register the Zip Extractor module	moduleHandler.RegisterModule(module.ModuleInfo{		Name:         "Zip Extractor",		Group:        "System Tools",		IconPath:     "SystemAO/file_system/img/zip_extractor.png",		Version:      "1.0",		SupportFW:    false,		LaunchEmb:    "SystemAO/file_system/zip_extractor.html",		SupportEmb:   true,		InitEmbSize:  []int{260, 120},		SupportedExt: []string{".zip"},	})	//Create user root if not exists	err := os.MkdirAll(*root_directory+"users/", 0755)	if err != nil {		log.Println("Failed to create system storage root.")		panic(err)	}	//Create database table if not exists	err = sysdb.NewTable("fs")	if err != nil {		log.Println("Failed to create table for file system")		panic(err)	}	//Create new table for sort preference	err = sysdb.NewTable("fs-sortpref")	if err != nil {		log.Println("Failed to create table for file system")		panic(err)	}	//Create a RenderHandler for caching thumbnails	thumbRenderHandler = metadata.NewRenderHandler()	/*		Share Related Registering		This section of functions create and register the file share service		for the arozos	*/	//Create a share manager to handle user file sharae	shareEntryTable = shareEntry.NewShareEntryTable(sysdb)	shareManager = share.NewShareManager(share.Options{		AuthAgent:       authAgent,		ShareEntryTable: shareEntryTable,		UserHandler:     userHandler,		HostName:        *host_name,		TmpFolder:       *tmp_directory,	})	//Share related functions	router.HandleFunc("/system/file_system/share/new", shareManager.HandleCreateNewShare)	router.HandleFunc("/system/file_system/share/delete", shareManager.HandleDeleteShare)	router.HandleFunc("/system/file_system/share/edit", shareManager.HandleEditShare)	router.HandleFunc("/system/file_system/share/checkShared", shareManager.HandleShareCheck)	router.HandleFunc("/system/file_system/share/list", shareManager.HandleListAllShares)	//Handle the main share function	//Share function is now routed by the main router	//http.HandleFunc("/share", shareManager.HandleShareAccess)	/*		Nighly Tasks		These functions allow file system to clear and maintain		the arozos file system when no one is using the system	*/	//Clear tmp folder if files is placed here too long	nightlyManager.RegisterNightlyTask(system_fs_clearOldTmpFiles)	//Clear shares that its parent file no longer exists in the system	shareManager.ValidateAndClearShares()	nightlyManager.RegisterNightlyTask(shareManager.ValidateAndClearShares)	//Clear file version history that is more than 30 days	go func() {		//Start version history cleaning in background		system_fs_clearVersionHistories()		log.Println("[LocVer] Startup File Version History Cleaning Completed")	}()	log.Println("Started File Version History Cleaning in background")	nightlyManager.RegisterNightlyTask(system_fs_clearVersionHistories)}/*	File Search	Handle file search in wildcard and recursive search*/func system_fs_handleFileSearch(w http.ResponseWriter, r *http.Request) {	//Get the user information	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	//Get the search target root path	vpath, err := common.Mv(r, "path", true)	if err != nil {		common.SendErrorResponse(w, "Invalid vpath given")		return	}	keyword, err := common.Mv(r, "keyword", true)	if err != nil {		common.SendErrorResponse(w, "Invalid keyword given")		return	}	//Check if case sensitive is enabled	casesensitve, _ := common.Mv(r, "casesensitive", true)	vrootID, _, err := fs.GetIDFromVirtualPath(vpath)	var targetFSH *filesystem.FileSystemHandler = nil	if err != nil {		common.SendErrorResponse(w, "Invalid path given")		return	}	targetFSH, _ = GetFsHandlerByUUID(vrootID)	//Translate the vpath to realpath if this is an actual path on disk	resolvedPath, err := targetFSH.FileSystemAbstraction.VirtualPathToRealPath(vpath, userinfo.Username)	if err != nil {		common.SendErrorResponse(w, "Invalid path given")		return	}	rpath := resolvedPath	//Check if the search mode is recursive keyword or wildcard	if len(keyword) > 1 && keyword[:1] == "/" {		//Wildcard		//Updates 31-12-2021: Do not allow wildcard search on virtual type's FSH		if targetFSH == nil {			common.SendErrorResponse(w, "Invalid path given")			return		}		targetFshAbs := targetFSH.FileSystemAbstraction		wildcard := keyword[1:]		matchingFiles, err := targetFshAbs.Glob(filepath.Join(rpath, wildcard))		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		//Prepare result struct		results := []fs.FileData{}		escaped := false		for _, matchedFile := range matchingFiles {			thisVpath, _ := targetFSH.FileSystemAbstraction.RealPathToVirtualPath(matchedFile, userinfo.Username)			isHidden, _ := hidden.IsHidden(thisVpath, true)			if !isHidden {				results = append(results, fs.GetFileDataFromPath(targetFSH, thisVpath, matchedFile, 2))			}		}		if escaped {			common.SendErrorResponse(w, "Search keywords contain escape character!")			return		}		//OK. Tidy up the results		js, _ := json.Marshal(results)		common.SendJSONResponse(w, string(js))	} else {		//Updates 2022-02-16: Build the fuzzy matcher if it is not a wildcard search		matcher := fuzzy.NewFuzzyMatcher(keyword, casesensitve == "true")		//Recursive keyword		results := []fs.FileData{}		var err error = nil		fshAbs := targetFSH.FileSystemAbstraction		err = fshAbs.Walk(rpath, func(path string, info os.FileInfo, err error) error {			thisFilename := filepath.Base(path)			if casesensitve != "true" {				thisFilename = strings.ToLower(thisFilename)			}			if !fs.IsInsideHiddenFolder(path) {				if matcher.Match(thisFilename) {					//This is a matching file					thisVpath, _ := fshAbs.RealPathToVirtualPath(path, userinfo.Username)					results = append(results, fs.GetFileDataFromPath(targetFSH, thisVpath, path, 2))				}			}			return nil		})		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		//OK. Tidy up the results		js, _ := json.Marshal(results)		common.SendJSONResponse(w, string(js))	}}/*	Handle low-memory upload operations	This function is specailly designed to work with low memory devices	(e.g. ZeroPi / Orange Pi Zero with 512MB RAM)*/func system_fs_handleLowMemoryUpload(w http.ResponseWriter, r *http.Request) {	//Get user info	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		w.WriteHeader(http.StatusUnauthorized)		w.Write([]byte("401 - Unauthorized"))		return	}	//Get filename and upload path	filename, err := common.Mv(r, "filename", false)	if filename == "" || err != nil {		w.WriteHeader(http.StatusInternalServerError)		w.Write([]byte("500 - Invalid filename given"))		return	}	//Get upload target directory	uploadTarget, err := common.Mv(r, "path", false)	if uploadTarget == "" || err != nil {		w.WriteHeader(http.StatusInternalServerError)		w.Write([]byte("500 - Invalid path given"))		return	}	//Unescape the upload target path	unescapedPath, err := url.PathUnescape(uploadTarget)	if err != nil {		unescapedPath = uploadTarget	}	//Check if the user can write to this folder	if !userinfo.CanWrite(unescapedPath) {		//No permission		w.WriteHeader(http.StatusForbidden)		w.Write([]byte("403 - Access Denied"))		return	}	fsh, subpath, err := GetFSHandlerSubpathFromVpath(unescapedPath)	if err != nil {		w.WriteHeader(http.StatusInternalServerError)		w.Write([]byte("500 - Path translation failed"))		return	}	targetFs := fsh.FileSystemAbstraction	//Translate the upload target directory	realUploadPath, err := targetFs.VirtualPathToRealPath(subpath, userinfo.Username)	if err != nil {		w.WriteHeader(http.StatusInternalServerError)		w.Write([]byte("500 - Path translation failed"))		return	}	//Check if it is huge file upload mode	isHugeFile := false	hugefile, _ := common.Mv(r, "hugefile", false)	if hugefile == "true" && !fsh.RequireBuffer {		//Huge file mode is not compatible with buffer typed FS		isHugeFile = true	}	targetUploadLocation := filepath.Join(realUploadPath, filename)	if !targetFs.FileExists(realUploadPath) {		targetFs.MkdirAll(realUploadPath, 0755)	}	//Generate an UUID for this upload	uploadUUID := uuid.NewV4().String()	uploadFolder := filepath.Join(*tmp_directory, "uploads", uploadUUID)	if isHugeFile {		//Upload to the same directory as the target location. This option do not allow buffered fs		uploadFolder = filepath.Join(realUploadPath, ".metadata/.upload", uploadUUID)		targetFs.MkdirAll(uploadFolder, 0700)	} else {		//Buffer to local tmp folder		os.MkdirAll(uploadFolder, 0700)	}	//Start websocket connection	var upgrader = websocket.Upgrader{}	upgrader.CheckOrigin = func(r *http.Request) bool { return true }	c, err := upgrader.Upgrade(w, r, nil)	if err != nil {		log.Println("Failed to upgrade websocket connection: ", err.Error())		w.WriteHeader(http.StatusInternalServerError)		w.Write([]byte("500 WebSocket upgrade failed"))		return	}	defer c.Close()	//Handle WebSocket upload	blockCounter := 0	chunkName := []string{}	lastChunkArrivalTime := time.Now().Unix()	//Setup a timeout listener, check if connection still active every 1 minute	ticker := time.NewTicker(60 * time.Second)	done := make(chan bool)	go func() {		for {			select {			case <-done:				return			case <-ticker.C:				if time.Now().Unix()-lastChunkArrivalTime > 300 {					//Already 5 minutes without new data arraival. Stop connection					log.Println("Upload WebSocket connection timeout. Disconnecting.")					c.WriteControl(8, []byte{}, time.Now().Add(time.Second))					time.Sleep(1 * time.Second)					c.Close()					return				}			}		}	}()	totalFileSize := int64(0)	for {		mt, message, err := c.ReadMessage()		if err != nil {			//Connection closed by client. Clear the tmp folder and exit			log.Println("Upload terminated by client. Cleaning tmp folder.")			//Clear the tmp folder			time.Sleep(1 * time.Second)			os.RemoveAll(uploadFolder)			return		}		//The mt should be 2 = binary for file upload and 1 for control syntax		if mt == 1 {			msg := strings.TrimSpace(string(message))			if msg == "done" {				//Start the merging process				break			} else {				//Unknown operations			}		} else if mt == 2 {			//File block. Save it to tmp folder			chunkFilepath := filepath.Join(uploadFolder, "upld_"+strconv.Itoa(blockCounter))			chunkName = append(chunkName, chunkFilepath)			writeErr := os.WriteFile(chunkFilepath, message, 0700)			if writeErr != nil {				//Unable to write block. Is the tmp folder fulled?				log.Println("[Upload] Upload chunk write failed: " + err.Error())				c.WriteMessage(1, []byte(`{\"error\":\"Write file chunk to disk failed\"}`))				//Close the connection				c.WriteControl(8, []byte{}, time.Now().Add(time.Second))				time.Sleep(1 * time.Second)				c.Close()				//Clear the tmp files				os.RemoveAll(uploadFolder)				return			}			//Update the last upload chunk time			lastChunkArrivalTime = time.Now().Unix()			//Check if the file size is too big			totalFileSize += fs.GetFileSize(chunkFilepath)			if totalFileSize > max_upload_size {				//File too big				c.WriteMessage(1, []byte(`{\"error\":\"File size too large\"}`))				//Close the connection				c.WriteControl(8, []byte{}, time.Now().Add(time.Second))				time.Sleep(1 * time.Second)				c.Close()				//Clear the tmp files				os.RemoveAll(uploadFolder)				return			} else if !userinfo.StorageQuota.HaveSpace(totalFileSize) {				//Quota exceeded				c.WriteMessage(1, []byte(`{\"error\":\"User Storage Quota Exceeded\"}`))				//Close the connection				c.WriteControl(8, []byte{}, time.Now().Add(time.Second))				time.Sleep(1 * time.Second)				c.Close()				//Clear the tmp files				os.RemoveAll(uploadFolder)			}			blockCounter++			//Request client to send the next chunk			c.WriteMessage(1, []byte("next"))		}		//log.Println("recv:", len(message), "type", mt)	}	//Try to decode the location if possible	decodedUploadLocation, err := url.PathUnescape(targetUploadLocation)	if err != nil {		decodedUploadLocation = targetUploadLocation	}	//Do not allow % sign in filename. Replace all with underscore	decodedUploadLocation = strings.ReplaceAll(decodedUploadLocation, "%", "_")	//Merge the file. Merge file location must be on local machine	mergeFileLocation := decodedUploadLocation	if fsh.RequireBuffer && !isHugeFile {		mergeFileLocation = getFsBufferFilepath(decodedUploadLocation, false)	}	out, err := os.OpenFile(mergeFileLocation, os.O_CREATE|os.O_WRONLY, 0755)	if err != nil {		log.Println("Failed to open file:", err)		c.WriteMessage(1, []byte(`{\"error\":\"Failed to open destination file\"}`))		c.WriteControl(8, []byte{}, time.Now().Add(time.Second))		time.Sleep(1 * time.Second)		c.Close()		return	}	for _, filesrc := range chunkName {		srcChunkReader, err := os.Open(filesrc)		if err != nil {			log.Println("Failed to open Source Chunk", filesrc, " with error ", err.Error())			c.WriteMessage(1, []byte(`{\"error\":\"Failed to open Source Chunk\"}`))			return		}		io.Copy(out, srcChunkReader)		srcChunkReader.Close()		//Delete file immediately to save space		os.Remove(filesrc)	}	out.Close()	if fsh.RequireBuffer && !isHugeFile {		//This is buffer file. Upload to dest fsh		f, err := os.Open(mergeFileLocation)		if err != nil {			log.Println("Failed to open buffered file at ", mergeFileLocation, " with error ", err.Error())			c.WriteMessage(1, []byte(`{\"error\":\"Failed to open buffered object\"}`))			f.Close()			return		}		err = fsh.FileSystemAbstraction.WriteStream(decodedUploadLocation, f, 0775)		if err != nil {			log.Println("Failed to write to file system: ", fsh.UUID, " with error ", err.Error())			c.WriteMessage(1, []byte(`{\"error\":\"Failed to upload to remote file system\"}`))			f.Close()			return		}		//Remove the buffered file		f.Close()		os.Remove(mergeFileLocation)	}	//Check if the size fit in user quota	fi, err := targetFs.Stat(decodedUploadLocation)	if err != nil {		// Could not obtain stat, handle error		log.Println("Failed to validate uploaded file: ", decodedUploadLocation, ". Error Message: ", err.Error())		c.WriteMessage(1, []byte(`{\"error\":\"Failed to validate uploaded file\"}`))		return	}	if !userinfo.StorageQuota.HaveSpace(fi.Size()) {		c.WriteMessage(1, []byte(`{\"error\":\"User Storage Quota Exceeded\"}`))		os.RemoveAll(decodedUploadLocation)		return	}	//Log the upload filename	log.Println(userinfo.Username + " uploaded a file: " + filepath.Base(decodedUploadLocation))	//Set owner of the new uploaded file	userinfo.SetOwnerOfFile(decodedUploadLocation)	//Return complete signal	c.WriteMessage(1, []byte("OK"))	//Stop the timeout listner	done <- true	//Clear the tmp folder	time.Sleep(300 * time.Millisecond)	if isHugeFile {		targetFs.RemoveAll(uploadFolder)	} else {		os.RemoveAll(uploadFolder)	}	//Close WebSocket connection after finished	c.WriteControl(8, []byte{}, time.Now().Add(time.Second))	time.Sleep(300 * time.Second)	c.Close()}/*	Handle FORM POST based upload	This function is design for general SBCs or computers with more than 2GB of RAM	(e.g. Raspberry Pi 4 / Linux Server)*/func system_fs_handleUpload(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	//Limit the max upload size to the user defined size	if max_upload_size != 0 {		r.Body = http.MaxBytesReader(w, r.Body, max_upload_size)	}	//Check if this is running under demo mode. If yes, reject upload	if *demo_mode {		common.SendErrorResponse(w, "You cannot upload in demo mode")		return	}	err = r.ParseMultipartForm(int64(*upload_buf) << 20)	if err != nil {		//Filesize too big		log.Println(err)		common.SendErrorResponse(w, "File too large")		return	}	file, handler, err := r.FormFile("file")	if err != nil {		log.Println("Error Retrieving File from upload by user: " + userinfo.Username)		common.SendErrorResponse(w, "Unable to parse file from upload")		return	}	//Get upload target directory	uploadTarget, _ := common.Mv(r, "path", true)	if uploadTarget == "" {		common.SendErrorResponse(w, "Upload target cannot be empty.")		return	}	fsh, subpath, err := GetFSHandlerSubpathFromVpath(uploadTarget)	if err != nil {		common.SendErrorResponse(w, "Invalid upload target")		return	}	targetFs := fsh.FileSystemAbstraction	//Translate the upload target directory	realUploadPath, err := targetFs.VirtualPathToRealPath(subpath, userinfo.Username)	if err != nil {		common.SendErrorResponse(w, "Upload target is invalid or permission denied.")		return	}	storeFilename := handler.Filename //Filename of the uploaded file	//Get request time	uploadStartTime := time.Now().UnixNano() / int64(time.Millisecond)	//Update for Firefox 94.0.2 (x64) -> Now firefox put its relative path inside Content-Disposition -> filename	//Skip this handler logic if Firefox version is in between 84.0.2 to 94.0.2	bypassMetaCheck := compatibility.FirefoxBrowserVersionForBypassUploadMetaHeaderCheck(r.UserAgent())	if !bypassMetaCheck && strings.Contains(handler.Header["Content-Disposition"][0], "filename=") && strings.Contains(handler.Header["Content-Disposition"][0], "/") {		//This is a firefox MIME Header for file inside folder. Look for the actual filename		headerFields := strings.Split(handler.Header["Content-Disposition"][0], "; ")		possibleRelativePathname := ""		for _, hf := range headerFields {			if strings.Contains(hf, "filename=") && len(hf) > 11 {				//Found. Overwrite original filename with the latest one				possibleRelativePathname = hf[10 : len(hf)-1]				storeFilename = possibleRelativePathname				break			}		}	}	destFilepath := filepath.ToSlash(filepath.Clean(realUploadPath)) + "/" + storeFilename	if !targetFs.FileExists(filepath.Dir(destFilepath)) {		targetFs.MkdirAll(filepath.Dir(destFilepath), 0775)	}	//Check if the upload target is read only.	accmode := userinfo.GetPathAccessPermission(uploadTarget)	if accmode == "readonly" {		common.SendErrorResponse(w, "The upload target is Read Only.")		return	} else if accmode == "denied" {		common.SendErrorResponse(w, "Access Denied")		return	}	//Check for storage quota	uploadFileSize := handler.Size	if !userinfo.StorageQuota.HaveSpace(uploadFileSize) {		common.SendErrorResponse(w, "User Storage Quota Exceeded")		return	}	//Do not allow % sign in filename. Replace all with underscore	destFilepath = strings.ReplaceAll(destFilepath, "%", "_")	//Move the file to destination file location	if *enable_asyncFileUpload {		//Use Async upload method		log.Println("[File System] AsyncFileUpload flag has been deprecated. Falling back to blocking upload.")	}	err = targetFs.WriteStream(destFilepath, file, 0775)	if err != nil {		log.Println(err.Error())	}	file.Close()	//Clear up buffered files	r.MultipartForm.RemoveAll()	//Set the ownership of file	userinfo.SetOwnerOfFile(destFilepath)	//Finish up the upload	/*		fmt.Printf("Uploaded File: %+v\n", handler.Filename)		fmt.Printf("File Size: %+v\n", handler.Size)		fmt.Printf("MIME Header: %+v\n", handler.Header)		fmt.Println("Upload target: " + realUploadPath)	*/	//Fnish upload. Fix the tmp filename	log.Println(userinfo.Username + " uploaded a file: " + handler.Filename)	//Do upload finishing stuff	//Add a delay to the complete message to make sure browser catch the return value	currentTimeMilli := time.Now().UnixNano() / int64(time.Millisecond)	if currentTimeMilli-uploadStartTime < 100 {		//Sleep until at least 300 ms		time.Sleep(time.Duration(100 - (currentTimeMilli - uploadStartTime)))	}	//Completed	common.SendOK(w)}//Validate if the copy and target process will involve file overwriting problem.func system_fs_validateFileOpr(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	vsrcFiles, _ := common.Mv(r, "src", true)	vdestFile, _ := common.Mv(r, "dest", true)	var duplicateFiles []string = []string{}	//Loop through all files are see if there are duplication during copy and paste	sourceFiles := []string{}	decodedSourceFiles, _ := url.QueryUnescape(vsrcFiles)	err = json.Unmarshal([]byte(decodedSourceFiles), &sourceFiles)	if err != nil {		common.SendErrorResponse(w, "Source file JSON parse error.")		return	}	destFsh, destSubpath, err := GetFSHandlerSubpathFromVpath(vdestFile)	if err != nil {		common.SendErrorResponse(w, "Operation Valid Failed: "+err.Error())		return	}	rdestFile, _ := destFsh.FileSystemAbstraction.VirtualPathToRealPath(destSubpath, userinfo.Username)	for _, file := range sourceFiles {		srcFsh, srcSubpath, _ := GetFSHandlerSubpathFromVpath(string(file))		rsrcFile, _ := srcFsh.FileSystemAbstraction.VirtualPathToRealPath(srcSubpath, userinfo.Username)		if destFsh.FileSystemAbstraction.FileExists(filepath.Join(rdestFile, filepath.Base(rsrcFile))) {			//File exists already.			vpath, _ := srcFsh.FileSystemAbstraction.RealPathToVirtualPath(rsrcFile, userinfo.Username)			duplicateFiles = append(duplicateFiles, vpath)		}	}	jsonString, _ := json.Marshal(duplicateFiles)	common.SendJSONResponse(w, string(jsonString))}//Scan all directory and get trash file and send back results with WebSocketfunc system_fs_WebSocketScanTrashBin(w http.ResponseWriter, r *http.Request) {	//Get and check user permission	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	//Upgrade to websocket	var upgrader = websocket.Upgrader{}	upgrader.CheckOrigin = func(r *http.Request) bool { return true }	c, err := upgrader.Upgrade(w, r, nil)	if err != nil {		w.WriteHeader(http.StatusInternalServerError)		w.Write([]byte("500 - " + err.Error()))		log.Print("Websocket Upgrade Error:", err.Error())		return	}	//Start Scanning	scanningRoots := []*filesystem.FileSystemHandler{}	//Get all roots to scan	for _, storage := range userinfo.GetAllFileSystemHandler() {		if storage.Hierarchy == "backup" {			//Skip this fsh			continue		}		scanningRoots = append(scanningRoots, storage)	}	for _, fsh := range scanningRoots {		thisFshAbs := fsh.FileSystemAbstraction		rootPath, err := thisFshAbs.VirtualPathToRealPath("", userinfo.Username)		if err != nil {			continue		}		err = thisFshAbs.Walk(rootPath, func(path string, info os.FileInfo, err error) error {			oneLevelUpper := filepath.Base(filepath.Dir(path))			if oneLevelUpper == ".trash" {				//This is a trashbin dir.				file := path				//Parse the trashFile struct				timestamp := filepath.Ext(file)[1:]				originalName := strings.TrimSuffix(filepath.Base(file), filepath.Ext(filepath.Base(file)))				originalExt := filepath.Ext(filepath.Base(originalName))				virtualFilepath, _ := thisFshAbs.RealPathToVirtualPath(file, userinfo.Username)				virtualOrgPath, _ := thisFshAbs.RealPathToVirtualPath(filepath.Dir(filepath.Dir(filepath.Dir(file))), userinfo.Username)				rawsize := thisFshAbs.GetFileSize(file)				timestampInt64, _ := common.StringToInt64(timestamp)				removeTimeDate := time.Unix(timestampInt64, 0)				if thisFshAbs.IsDir(file) {					originalExt = ""				}				thisTrashFileObject := trashedFile{					Filename:         filepath.Base(file),					Filepath:         virtualFilepath,					FileExt:          originalExt,					IsDir:            thisFshAbs.IsDir(file),					Filesize:         int64(rawsize),					RemoveTimestamp:  timestampInt64,					RemoveDate:       removeTimeDate.Format("2006-01-02 15:04:05"),					OriginalPath:     virtualOrgPath,					OriginalFilename: originalName,				}				//Send out the result as JSON string				js, _ := json.Marshal(thisTrashFileObject)				err := c.WriteMessage(1, js)				if err != nil {					//Connection already closed					return err				}			}			return nil		})		if err != nil {			//Scan or client connection error (Connection closed?)			return		}	}	//Close connection after finished	c.Close()}//Scan all the directory and get trash files within the systemfunc system_fs_scanTrashBin(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	username := userinfo.Username	results := []trashedFile{}	files, fshs, err := system_fs_listTrash(username)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	//Get information of each files and process it into results	for c, file := range files {		fsAbs := fshs[c].FileSystemAbstraction		timestamp := filepath.Ext(file)[1:]		originalName := strings.TrimSuffix(filepath.Base(file), filepath.Ext(filepath.Base(file)))		originalExt := filepath.Ext(filepath.Base(originalName))		virtualFilepath, _ := fsAbs.RealPathToVirtualPath(file, userinfo.Username)		virtualOrgPath, _ := fsAbs.RealPathToVirtualPath(filepath.Dir(filepath.Dir(filepath.Dir(file))), userinfo.Username)		rawsize := fsAbs.GetFileSize(file)		timestampInt64, _ := common.StringToInt64(timestamp)		removeTimeDate := time.Unix(timestampInt64, 0)		if fsAbs.IsDir(file) {			originalExt = ""		}		results = append(results, trashedFile{			Filename:         filepath.Base(file),			Filepath:         virtualFilepath,			FileExt:          originalExt,			IsDir:            fsAbs.IsDir(file),			Filesize:         int64(rawsize),			RemoveTimestamp:  timestampInt64,			RemoveDate:       removeTimeDate.Format("2006-01-02 15:04:05"),			OriginalPath:     virtualOrgPath,			OriginalFilename: originalName,		})	}	//Sort the results by date, latest on top	sort.Slice(results[:], func(i, j int) bool {		return results[i].RemoveTimestamp > results[j].RemoveTimestamp	})	//Format and return the json results	jsonString, _ := json.Marshal(results)	common.SendJSONResponse(w, string(jsonString))}//Restore a trashed file to its parent dirfunc system_fs_restoreFile(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	targetTrashedFile, err := common.Mv(r, "src", true)	if err != nil {		common.SendErrorResponse(w, "Invalid src given")		return	}	fsh, subpath, err := GetFSHandlerSubpathFromVpath(targetTrashedFile)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	fshAbs := fsh.FileSystemAbstraction	//Translate it to realpath	realpath, _ := fshAbs.VirtualPathToRealPath(subpath, userinfo.Username)	if !fshAbs.FileExists(realpath) {		common.SendErrorResponse(w, "File not exists")		return	}	//Check if this is really a trashed file	if filepath.Base(filepath.Dir(realpath)) != ".trash" {		common.SendErrorResponse(w, "File not in trashbin")		return	}	//OK to proceed.	originalFilename := strings.TrimSuffix(filepath.Base(realpath), filepath.Ext(filepath.Base(realpath)))	restoreFolderRoot := filepath.Dir(filepath.Dir(filepath.Dir(realpath)))	targetPath := filepath.ToSlash(filepath.Join(restoreFolderRoot, originalFilename))	//log.Println(targetPath)	fshAbs.Rename(realpath, targetPath)	//Check if the parent dir has no more fileds. If yes, remove it	filescounter, _ := fshAbs.Glob(filepath.Dir(realpath) + "/*")	if len(filescounter) == 0 {		fshAbs.Remove(filepath.Dir(realpath))	}	common.SendOK(w)}//Clear all trashed file in the systemfunc system_fs_clearTrashBin(w http.ResponseWriter, r *http.Request) {	u, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	fileList, fshs, err := system_fs_listTrash(u.Username)	if err != nil {		common.SendErrorResponse(w, "Unable to clear trash: "+err.Error())		return	}	//Get list success. Remove each of them.	for c, file := range fileList {		isOwner := u.IsOwnerOfFile(file)		if isOwner {			//This user own this system. Remove this file from his quota			u.RemoveOwnershipFromFile(file)		}		fshAbs := fshs[c].FileSystemAbstraction		fshAbs.RemoveAll(file)		//Check if its parent directory have no files. If yes, remove the dir itself as well.		filesInThisTrashBin, _ := fshAbs.Glob(filepath.Dir(file) + "/*")		if len(filesInThisTrashBin) == 0 {			fshAbs.Remove(filepath.Dir(file))		}	}	common.SendOK(w)}//Get all trash in a string listfunc system_fs_listTrash(username string) ([]string, []*filesystem.FileSystemHandler, error) {	userinfo, _ := userHandler.GetUserInfoFromUsername(username)	scanningRoots := []*filesystem.FileSystemHandler{}	//Get all roots to scan	for _, storage := range userinfo.GetAllFileSystemHandler() {		if storage.Hierarchy == "backup" {			//Skip this fsh			continue		}		scanningRoots = append(scanningRoots, storage)	}	files := []string{}	fshs := []*filesystem.FileSystemHandler{}	for _, thisFsh := range scanningRoots {		thisFshAbs := thisFsh.FileSystemAbstraction		rootPath, _ := thisFshAbs.VirtualPathToRealPath("", userinfo.Username)		err := thisFshAbs.Walk(rootPath, func(path string, info os.FileInfo, err error) error {			oneLevelUpper := filepath.Base(filepath.Dir(path))			if oneLevelUpper == ".trash" {				//This is a trashbin dir.				files = append(files, path)				fshs = append(fshs, thisFsh)			}			return nil		})		if err != nil {			continue		}	}	return files, fshs, nil}/*	Handle new file or folder functions	Required information	@type {folder / file}	@ext {any that is listed in the template folder}	if no paramter is passed in, default listing all the supported template file*/func system_fs_handleNewObjects(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	//Validate the token	tokenValid := CSRFTokenManager.HandleTokenValidation(w, r)	if !tokenValid {		http.Error(w, "Invalid CSRF token", http.StatusUnauthorized)		return	}	fileType, _ := common.Mv(r, "type", true)     //File creation type, {file, folder}	vsrc, _ := common.Mv(r, "src", true)          //Virtual file source folder, do not include filename	filename, _ := common.Mv(r, "filename", true) //Filename for the new file	if fileType == "" && filename == "" {		//List all the supported new filetype		if !fs.FileExists("system/newitem/") {			os.MkdirAll("system/newitem/", 0755)		}		type newItemObject struct {			Desc string			Ext  string		}		var newItemList []newItemObject		newItemTemplate, _ := filepath.Glob("system/newitem/*")		for _, file := range newItemTemplate {			thisItem := new(newItemObject)			thisItem.Desc = strings.TrimSuffix(filepath.Base(file), filepath.Ext(file))			thisItem.Ext = filepath.Ext(file)[1:]			newItemList = append(newItemList, *thisItem)		}		jsonString, err := json.Marshal(newItemList)		if err != nil {			log.Println("*File System* Unable to parse JSON string for new item list!")			common.SendErrorResponse(w, "Unable to parse new item list. See server log for more information.")			return		}		common.SendJSONResponse(w, string(jsonString))		return	} else if fileType != "" && filename != "" {		if vsrc == "" {			common.SendErrorResponse(w, "Missing paramter: 'src'")			return		}		fsh, subpath, err := GetFSHandlerSubpathFromVpath(vsrc)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		fshAbs := fsh.FileSystemAbstraction		//Translate the path to realpath		rpath, err := fshAbs.VirtualPathToRealPath(subpath, userinfo.Username)		if err != nil {			common.SendErrorResponse(w, "Invalid path given")			return		}		//Check if directory is readonly		accmode := userinfo.GetPathAccessPermission(vsrc)		if accmode == "readonly" {			common.SendErrorResponse(w, "This directory is Read Only")			return		} else if accmode == "denied" {			common.SendErrorResponse(w, "Access Denied")			return		}		//Check if the file already exists. If yes, fix its filename.		newfilePath := filepath.ToSlash(filepath.Join(rpath, filename))		if fileType == "file" {			for fshAbs.FileExists(newfilePath) {				common.SendErrorResponse(w, "Given filename already exists")				return			}			ext := filepath.Ext(filename)			defaultFileCotent := []byte("")			if ext != "" {				templateFile, _ := fshAbs.Glob("system/newitem/*" + ext)				if len(templateFile) > 0 {					//Copy file from templateFile[0] to current dir with the given name					input, _ := os.ReadFile(templateFile[0])					defaultFileCotent = input				}			}			err = fshAbs.WriteFile(newfilePath, defaultFileCotent, 0775)			if err != nil {				log.Println("[File System] Unable to create new file: " + err.Error())				common.SendErrorResponse(w, err.Error())				return			}		} else if fileType == "folder" {			if fshAbs.FileExists(newfilePath) {				common.SendErrorResponse(w, "Given folder already exists")				return			}			//Create the folder at target location			err := fshAbs.Mkdir(newfilePath, 0755)			if err != nil {				common.SendErrorResponse(w, err.Error())				return			}		}		common.SendOK(w)	} else {		common.SendErrorResponse(w, "Missing paramter(s).")		return	}}/*	Handle file operations via WebSocket	This handler only handle zip, unzip, copy and move. Not other operations.	For other operations, please use the legacy handleOpr endpoint*/func system_fs_handleWebSocketOpr(w http.ResponseWriter, r *http.Request) {	//Get and check user permission	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	operation, _ := common.Mv(r, "opr", false) //Accept copy and move	vsrcFiles, _ := common.Mv(r, "src", false)	vdestFile, _ := common.Mv(r, "dest", false)	existsOpr, _ := common.Mv(r, "existsresp", false)	if existsOpr == "" {		existsOpr = "keep"	}	//Decode the source file list	var sourceFiles []string	tmp := []string{}	decodedSourceFiles, _ := url.QueryUnescape(vsrcFiles)	err = json.Unmarshal([]byte(decodedSourceFiles), &sourceFiles)	if err != nil {		log.Println("Source file JSON parse error.", err.Error())		common.SendErrorResponse(w, "Source file JSON parse error.")		return	}	//Bugged char filtering	for _, src := range sourceFiles {		tmp = append(tmp, strings.ReplaceAll(src, "{{plug_sign}}", "+"))	}	sourceFiles = tmp	vdestFile = strings.ReplaceAll(vdestFile, "{{plug_sign}}", "+")	//Decode the target position	escapedVdest, _ := url.QueryUnescape(vdestFile)	vdestFile = escapedVdest	destFsh, subpath, err := GetFSHandlerSubpathFromVpath(vdestFile)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	destFshAbs := destFsh.FileSystemAbstraction	rdestFile, _ := destFshAbs.VirtualPathToRealPath(subpath, userinfo.Username)	//Permission checking	if !userinfo.CanWrite(vdestFile) {		log.Println("Access denied for " + userinfo.Username + " try to access " + vdestFile)		w.WriteHeader(http.StatusForbidden)		w.Write([]byte("403 - Access Denied"))		return	}	//Check if opr is suported	if operation == "move" || operation == "copy" || operation == "zip" || operation == "unzip" {	} else {		log.Println("This file operation is not supported on WebSocket file operations endpoint. Please use the legacy endpoint instead. Received: ", operation)		w.WriteHeader(http.StatusInternalServerError)		w.Write([]byte("500 - Not supported operation"))		return	}	//Upgrade to websocket	var upgrader = websocket.Upgrader{}	upgrader.CheckOrigin = func(r *http.Request) bool { return true }	c, err := upgrader.Upgrade(w, r, nil)	if err != nil {		w.WriteHeader(http.StatusInternalServerError)		w.Write([]byte("500 - " + err.Error()))		log.Print("Websocket Upgrade Error:", err.Error())		return	}	type ProgressUpdate struct {		LatestFile string		Progress   int		Error      string	}	if operation == "zip" {		//Zip files		outputFilename := filepath.Join(rdestFile, strings.ReplaceAll(filepath.Base(filepath.Dir(sourceFiles[0])+".zip"), ":", ""))		if len(sourceFiles) == 1 {			//Use the basename of the source file as zip file name			outputFilename = filepath.Join(rdestFile, filepath.Base(sourceFiles[0])) + ".zip"		}		//Translate source Files into real paths		realSourceFiles := []string{}		for _, vsrcs := range sourceFiles {			thisSrcFsh, subpath, err := GetFSHandlerSubpathFromVpath(vsrcs)			if err != nil {				stopStatus := ProgressUpdate{					LatestFile: filepath.Base(vsrcs),					Progress:   -1,					Error:      "File not exists",				}				js, _ := json.Marshal(stopStatus)				c.WriteMessage(1, js)				c.Close()				return			}			rsrc, err := thisSrcFsh.FileSystemAbstraction.VirtualPathToRealPath(subpath, userinfo.Username)			if err != nil {				stopStatus := ProgressUpdate{					LatestFile: filepath.Base(rsrc),					Progress:   -1,					Error:      "File not exists",				}				js, _ := json.Marshal(stopStatus)				c.WriteMessage(1, js)				c.Close()				return			}			if thisSrcFsh.RequireBuffer {				localBufferFilepath, err := bufferRemoteFileToLocal(thisSrcFsh, rsrc, true)				if err != nil {					stopStatus := ProgressUpdate{						LatestFile: filepath.Base(rsrc),						Progress:   -1,						Error:      "Failed to buffer file to local disk",					}					js, _ := json.Marshal(stopStatus)					c.WriteMessage(1, js)					c.Close()					return				}				realSourceFiles = append(realSourceFiles, localBufferFilepath)			} else {				realSourceFiles = append(realSourceFiles, rsrc)			}		}		zipDestPath := outputFilename		if destFsh.RequireBuffer {			zipDestPath = getFsBufferFilepath(outputFilename, false)		}		//Create the zip file		fs.ArozZipFileWithProgress(realSourceFiles, zipDestPath, false, func(currentFilename string, _ int, _ int, progress float64) {			currentStatus := ProgressUpdate{				LatestFile: currentFilename,				Progress:   int(math.Ceil(progress)),				Error:      "",			}			js, _ := json.Marshal(currentStatus)			c.WriteMessage(1, js)		})		if destFsh.RequireBuffer {			//Move the buffer result to remote			f, _ := os.Open(zipDestPath)			err = destFshAbs.WriteStream(outputFilename, f, 0775)			if err != nil {				log.Println("[File System] Zip write to remote file system error: ", err.Error())			}			f.Close()			//Clear local buffers			os.Remove(zipDestPath)			cleanFsBufferFileFromList(realSourceFiles)		}	} else if operation == "unzip" {		//Check if the target destination exists and writable		if !userinfo.CanWrite(vdestFile) {			stopStatus := ProgressUpdate{				LatestFile: filepath.Base(vdestFile),				Progress:   -1,				Error:      "Access Denied: No Write Permission",			}			js, _ := json.Marshal(stopStatus)			c.WriteMessage(1, js)			c.Close()		}		//Create the destination folder		destFshAbs.MkdirAll(rdestFile, 0755)		//Convert the src files into realpaths		realSourceFiles := []string{}		for _, vsrcs := range sourceFiles {			thisSrcFsh, subpath, err := GetFSHandlerSubpathFromVpath(vsrcs)			if err != nil {				stopStatus := ProgressUpdate{					LatestFile: filepath.Base(vsrcs),					Progress:   -1,					Error:      "File not exists",				}				js, _ := json.Marshal(stopStatus)				c.WriteMessage(1, js)				c.Close()			}			thisSrcFshAbs := thisSrcFsh.FileSystemAbstraction			rsrc, err := thisSrcFshAbs.VirtualPathToRealPath(subpath, userinfo.Username)			if err != nil {				stopStatus := ProgressUpdate{					LatestFile: filepath.Base(rsrc),					Progress:   -1,					Error:      "File not exists",				}				js, _ := json.Marshal(stopStatus)				c.WriteMessage(1, js)				c.Close()			}			if thisSrcFsh.RequireBuffer {				localBufferFilepath, err := bufferRemoteFileToLocal(thisSrcFsh, rsrc, false)				if err != nil {					stopStatus := ProgressUpdate{						LatestFile: filepath.Base(rsrc),						Progress:   -1,						Error:      "Failed to buffer file to local disk",					}					js, _ := json.Marshal(stopStatus)					c.WriteMessage(1, js)					c.Close()				}				realSourceFiles = append(realSourceFiles, localBufferFilepath)			} else {				realSourceFiles = append(realSourceFiles, rsrc)			}		}		unzipDest := rdestFile		if destFsh.RequireBuffer {			unzipDest = getFsBufferFilepath(rdestFile, true)		}		//Unzip the files		fs.ArozUnzipFileWithProgress(realSourceFiles, unzipDest, func(currentFile string, filecount int, totalfile int, progress float64) {			//Generate the status update struct			currentStatus := ProgressUpdate{				LatestFile: filepath.Base(currentFile),				Progress:   int(math.Ceil(progress)),				Error:      "",			}			js, _ := json.Marshal(currentStatus)			c.WriteMessage(1, js)		})		if destFsh.RequireBuffer {			//Push the unzip results back to remote fs			filepath.Walk(unzipDest, func(path string, info os.FileInfo, err error) error {				path = filepath.ToSlash(path)				relpath := strings.TrimPrefix(path, filepath.ToSlash(unzipDest))				if info.IsDir() {					destFshAbs.MkdirAll(filepath.Join(rdestFile, relpath), 0775)				} else {					f, _ := os.Open(path)					destFshAbs.WriteStream(filepath.Join(rdestFile, relpath), f, 0775)					f.Close()				}				return nil			})			cleanFsBufferFileFromList([]string{unzipDest})		}		cleanFsBufferFileFromList(realSourceFiles)	} else {		//Other operations that allow multiple source files to handle one by one		for i := 0; i < len(sourceFiles); i++ {			vsrcFile := sourceFiles[i]			thisSrcFsh, subpath, err := GetFSHandlerSubpathFromVpath(vsrcFile)			if err != nil {				stopStatus := ProgressUpdate{					LatestFile: filepath.Base(vsrcFile),					Progress:   -1,					Error:      "File not exists",				}				js, _ := json.Marshal(stopStatus)				c.WriteMessage(1, js)				c.Close()				return			}			thisSrcFshAbs := thisSrcFsh.FileSystemAbstraction			rsrcFile, _ := thisSrcFshAbs.VirtualPathToRealPath(subpath, userinfo.Username)			if !thisSrcFshAbs.FileExists(rsrcFile) {				//This source file not exists. Report Error and Stop				stopStatus := ProgressUpdate{					LatestFile: filepath.Base(rsrcFile),					Progress:   -1,					Error:      "File not exists",				}				js, _ := json.Marshal(stopStatus)				c.WriteMessage(1, js)				c.Close()				return			}			if operation == "move" {				err := fs.FileMove(thisSrcFsh, rsrcFile, destFsh, rdestFile, existsOpr, true, func(progress int, currentFile string) {					//Multply child progress to parent progress					blockRatio := float64(100) / float64(len(sourceFiles))					overallRatio := blockRatio*float64(i) + blockRatio*(float64(progress)/float64(100))					//Construct return struct					currentStatus := ProgressUpdate{						LatestFile: filepath.Base(currentFile),						Progress:   int(overallRatio),						Error:      "",					}					js, _ := json.Marshal(currentStatus)					c.WriteMessage(1, js)				})				//Handle move starting error				if err != nil {					stopStatus := ProgressUpdate{						LatestFile: filepath.Base(rsrcFile),						Progress:   -1,						Error:      err.Error(),					}					js, _ := json.Marshal(stopStatus)					c.WriteMessage(1, js)					c.Close()					return				}				//Remove the cache for the original file				metadata.RemoveCache(thisSrcFsh, rsrcFile)			} else if operation == "copy" {				err := fs.FileCopy(thisSrcFsh, rsrcFile, destFsh, rdestFile, existsOpr, func(progress int, currentFile string) {					//Multply child progress to parent progress					blockRatio := float64(100) / float64(len(sourceFiles))					overallRatio := blockRatio*float64(i) + blockRatio*(float64(progress)/float64(100))					//Construct return struct					currentStatus := ProgressUpdate{						LatestFile: filepath.Base(currentFile),						Progress:   int(overallRatio),						Error:      "",					}					js, _ := json.Marshal(currentStatus)					c.WriteMessage(1, js)				})				//Handle Copy starting error				if err != nil {					stopStatus := ProgressUpdate{						LatestFile: filepath.Base(rsrcFile),						Progress:   -1,						Error:      err.Error(),					}					js, _ := json.Marshal(stopStatus)					c.WriteMessage(1, js)					c.Close()					return				}			}		}	}	//Close WebSocket connection after finished	time.Sleep(1 * time.Second)	c.WriteControl(8, []byte{}, time.Now().Add(time.Second))	c.Close()}/*	Handle file operations	Support {move, copy, delete, recycle, rename}*///Handle file operations.func system_fs_handleOpr(w http.ResponseWriter, r *http.Request) {	//Check if user logged in	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	//Validate the token	tokenValid := CSRFTokenManager.HandleTokenValidation(w, r)	if !tokenValid {		http.Error(w, "Invalid CSRF token", http.StatusUnauthorized)		return	}	operation, _ := common.Mv(r, "opr", true)	vsrcFiles, _ := common.Mv(r, "src", true)	vdestFile, _ := common.Mv(r, "dest", true)	vnfilenames, _ := common.Mv(r, "new", true) //Only use when rename or create new file / folder	//Check if operation valid.	if operation == "" {		//Undefined operations.		common.SendErrorResponse(w, "Undefined operations paramter: Missing 'opr' in request header.")		return	}	//As the user can pass in multiple source files at the same time, parse sourceFiles from json string	var sourceFiles []string	//This line is required in order to allow passing of special charaters	decodedSourceFiles := system_fs_specialURIDecode(vsrcFiles)	err = json.Unmarshal([]byte(decodedSourceFiles), &sourceFiles)	if err != nil {		common.SendErrorResponse(w, "Source file JSON parse error.")		return	}	//Check if new filenames are also valid. If yes, translate it into string array	var newFilenames []string	if vnfilenames != "" {		vnfilenames, _ := url.QueryUnescape(vnfilenames)		err = json.Unmarshal([]byte(vnfilenames), &newFilenames)		if err != nil {			common.SendErrorResponse(w, "Unable to parse JSON for new filenames")			return		}	}	if operation == "zip" {		//Zip operation. Parse the real filepath list		rsrcFiles := []string{}		destFsh, subpath, err := GetFSHandlerSubpathFromVpath(vdestFile)		if err != nil {			common.SendErrorResponse(w, "Unable to resolve zip destination path")			return		}		destFshAbs := destFsh.FileSystemAbstraction		rdestFile, _ := destFshAbs.VirtualPathToRealPath(subpath, userinfo.Username)		for _, vsrcFile := range sourceFiles {			vsrcFsh, vsrcSubpath, err := GetFSHandlerSubpathFromVpath(vsrcFile)			if err != nil {				continue			}			rsrcFile, _ := vsrcFsh.FileSystemAbstraction.VirtualPathToRealPath(vsrcSubpath, userinfo.Username)			if vsrcFsh.FileSystemAbstraction.FileExists(rsrcFile) {				if vsrcFsh.RequireBuffer {					localBuffFile, err := bufferRemoteFileToLocal(vsrcFsh, rsrcFile, true)					if err != nil {						continue					}					rsrcFiles = append(rsrcFiles, localBuffFile)				} else {					//Push directly its local path to list					rsrcFiles = append(rsrcFiles, rsrcFile)				}			}		}		zipFilename := rdestFile		if destFshAbs.IsDir(rdestFile) {			//Append the filename to it			if len(rsrcFiles) == 1 {				zipFilename = filepath.Join(rdestFile, strings.TrimSuffix(filepath.Base(rsrcFiles[0]), filepath.Ext(filepath.Base(rsrcFiles[0])))+".zip")			} else if len(rsrcFiles) > 1 {				zipFilename = filepath.Join(rdestFile, filepath.Base(filepath.Dir(rsrcFiles[0]))+".zip")			}		}		//Create a buffer if destination fsh request buffer		zipFileTargetLocation := zipFilename		if destFsh.RequireBuffer {			zipFileTargetLocation = getFsBufferFilepath(zipFilename, false)		}		//Create a zip file at target location		err = fs.ArozZipFile(rsrcFiles, zipFileTargetLocation, false)		if err != nil {			os.Remove(zipFileTargetLocation)			common.SendErrorResponse(w, err.Error())			return		}		//Write it to final destination from buffer		if destFsh.RequireBuffer {			//Upload the finalized zip file			f, _ := destFshAbs.Open(zipFileTargetLocation)			destFshAbs.WriteStream(zipFilename, f, 0775)			f.Close()			//Remove all buff files			os.Remove(zipFileTargetLocation)			cleanFsBufferFileFromList(rsrcFiles)		}	} else {		//For operations that is handled file by file		for i, vsrcFile := range sourceFiles {			//Convert the virtual path to realpath on disk			srcFsh, subpath, err := GetFSHandlerSubpathFromVpath(vsrcFile)			if err != nil {				continue			}			srcFshAbs := srcFsh.FileSystemAbstraction			rsrcFile, _ := srcFshAbs.VirtualPathToRealPath(subpath, userinfo.Username)			destFsh, destSubpath, err := GetFSHandlerSubpathFromVpath(vdestFile)			var destFshAbs filesystem.FileSystemAbstraction = nil			var rdestFile string = ""			if err == nil {				destFshAbs = destFsh.FileSystemAbstraction				rdestFile, _ = destFshAbs.VirtualPathToRealPath(destSubpath, userinfo.Username)			}			//Check if the source file exists			if operation == "rename" {				//Check if the usage is correct.				if vdestFile != "" {					common.SendErrorResponse(w, "Rename only accept 'src' and 'new'. Please use move if you want to move a file.")					return				}				//Check if new name paramter is passed in.				if len(newFilenames) == 0 {					common.SendErrorResponse(w, "Missing paramter (JSON string): 'new'")					return				}				//Check if the source filenames and new filenanmes match				if len(newFilenames) != len(sourceFiles) {					common.SendErrorResponse(w, "New filenames do not match with source filename's length.")					return				}				//Check if the target dir is not readonly				accmode := userinfo.GetPathAccessPermission(string(vsrcFile))				if accmode == "readonly" {					common.SendErrorResponse(w, "This directory is Read Only")					return				} else if accmode == "denied" {					common.SendErrorResponse(w, "Access Denied")					return				}				thisFilename := filepath.Base(newFilenames[i])				//Check if the name already exists. If yes, return false				if srcFshAbs.FileExists(filepath.Join(filepath.Dir(rsrcFile), thisFilename)) {					common.SendErrorResponse(w, "File already exists")					return				}				//Everything is ok. Rename the file.				targetNewName := filepath.Join(filepath.Dir(rsrcFile), thisFilename)				err = srcFshAbs.Rename(rsrcFile, targetNewName)				if err != nil {					log.Println(err)					common.SendErrorResponse(w, err.Error())					return				}				//Remove the cache for the original file				metadata.RemoveCache(srcFsh, rsrcFile)			} else if operation == "move" {				//File move operation. Check if the source file / dir and target directory exists				/*					Example usage from file explorer					$.ajax({						type: 'POST',						url: `/system/file_system/fileOpr`,						data: {opr: "move" ,src: JSON.stringify(fileList), dest: targetDir},						success: function(data){							if (data.error !== undefined){								msgbox("remove",data.error);							}else{								//OK, do something							}						}					});				*/				if !srcFshAbs.FileExists(rsrcFile) {					common.SendErrorResponse(w, "Source file not exists")					return				}				//Check if the source file is read only.				accmode := userinfo.GetPathAccessPermission(string(vsrcFile))				if accmode == "readonly" {					common.SendErrorResponse(w, "This source file is Read Only")					return				} else if accmode == "denied" {					common.SendErrorResponse(w, "Access Denied")					return				}				if rdestFile == "" {					common.SendErrorResponse(w, "Undefined dest location")					return				}				//Get exists overwrite mode				existsOpr, _ := common.Mv(r, "existsresp", true)				//Check if use fast move instead				//Check if the source and destination folder are under the same root. If yes, use os.Rename for faster move operations				//Check if the two files are under the same user root path				//srcAbs, _ := filepath.Abs(rsrcFile)				//destAbs, _ := filepath.Abs(rdestFile)				//underSameRoot, _ := fs.UnderTheSameRoot(srcAbs, destAbs)				//Updates 19-10-2020: Added ownership management to file move and copy				userinfo.RemoveOwnershipFromFile(rsrcFile)				err = fs.FileMove(srcFsh, rsrcFile, destFsh, rdestFile, existsOpr, true, nil)				if err != nil {					common.SendErrorResponse(w, err.Error())					//Restore the ownership if remove failed					userinfo.SetOwnerOfFile(rsrcFile)					return				}				//Set user to own the new file				userinfo.SetOwnerOfFile(filepath.ToSlash(filepath.Clean(rdestFile)) + "/" + filepath.Base(rsrcFile))				//Remove cache for the original file				metadata.RemoveCache(srcFsh, rsrcFile)			} else if operation == "copy" {				//Copy file. See move example and change 'opr' to 'copy'				if !srcFshAbs.FileExists(rsrcFile) {					common.SendErrorResponse(w, "Source file not exists")					return				}				//Check if the desintation is read only.				if !userinfo.CanWrite(vdestFile) {					common.SendErrorResponse(w, "Access Denied")					return				}				if !destFshAbs.FileExists(rdestFile) {					if destFshAbs.FileExists(filepath.Dir(rdestFile)) {						//User pass in the whole path for the folder. Report error usecase.						common.SendErrorResponse(w, "Dest location should be an existing folder instead of the full path of the copied file")						return					}					common.SendErrorResponse(w, "Dest folder not found")					return				}				existsOpr, _ := common.Mv(r, "existsresp", true)				//Check if the user have space for the extra file				if !userinfo.StorageQuota.HaveSpace(fs.GetFileSize(rdestFile)) {					common.SendErrorResponse(w, "Storage Quota Full")					return				}				err = fs.FileCopy(srcFsh, rsrcFile, destFsh, rdestFile, existsOpr, nil)				if err != nil {					common.SendErrorResponse(w, err.Error())					return				}				//Set user to own this file				userinfo.SetOwnerOfFile(filepath.ToSlash(filepath.Clean(rdestFile)) + "/" + filepath.Base(rsrcFile))			} else if operation == "delete" {				//Delete the file permanently				if !srcFshAbs.FileExists(rsrcFile) {					//Check if it is a non escapted file instead					common.SendErrorResponse(w, "Source file not exists")					return				}				if !userinfo.CanWrite(vsrcFile) {					common.SendErrorResponse(w, "Access Denied")					return				}				//Check if the user own this file				isOwner := userinfo.IsOwnerOfFile(rsrcFile)				if isOwner {					//This user own this system. Remove this file from his quota					userinfo.RemoveOwnershipFromFile(rsrcFile)				}				//Check if this file has any cached files. If yes, remove it				metadata.RemoveCache(srcFsh, rsrcFile)				//Clear the cache folder if there is no files inside				fc, err := srcFshAbs.Glob(filepath.ToSlash(filepath.Dir(rsrcFile)) + "/.metadata/.cache/*")				if len(fc) == 0 && err == nil {					srcFshAbs.Remove(filepath.ToSlash(filepath.Dir(rsrcFile)) + "/.metadata/.cache/")				}				err = srcFshAbs.RemoveAll(rsrcFile)				if err != nil {					common.SendErrorResponse(w, err.Error())					return				}			} else if operation == "recycle" {				//Put it into a subfolder named trash and allow it to to be removed later				if !srcFshAbs.FileExists(rsrcFile) {					//Check if it is a non escapted file instead					common.SendErrorResponse(w, "Source file not exists")					return				}				//Check if the upload target is read only.				if !userinfo.CanWrite(vsrcFile) {					common.SendErrorResponse(w, "Access Denied")					return				}				//Check if this file has any cached files. If yes, remove it				metadata.RemoveCache(srcFsh, rsrcFile)				//Clear the cache folder if there is no files inside				fc, err := srcFshAbs.Glob(filepath.ToSlash(filepath.Dir(rsrcFile)) + "/.metadata/.cache/*")				if len(fc) == 0 && err == nil {					srcFshAbs.Remove(filepath.ToSlash(filepath.Dir(rsrcFile)) + "/.metadata/.cache/")				}				//Create a trash directory for this folder				trashDir := filepath.ToSlash(filepath.Dir(rsrcFile)) + "/.metadata/.trash/"				srcFshAbs.MkdirAll(trashDir, 0755)				hidden.HideFile(filepath.Dir(trashDir))				hidden.HideFile(trashDir)				srcFshAbs.Rename(rsrcFile, trashDir+filepath.Base(rsrcFile)+"."+common.Int64ToString(time.Now().Unix()))			} else if operation == "unzip" {				//Unzip the file to destination				//Check if the user can write to the target dest file				if !userinfo.CanWrite(string(vdestFile)) {					common.SendErrorResponse(w, "Access Denied")					return				}				//Make the rdest directory if not exists				if !destFshAbs.FileExists(rdestFile) {					err = destFshAbs.MkdirAll(rdestFile, 0755)					if err != nil {						common.SendErrorResponse(w, err.Error())						return					}				}				unzipSource := rsrcFile				unzipDest := rdestFile				if srcFsh.RequireBuffer {					localBufferedFile, _ := bufferRemoteFileToLocal(srcFsh, rsrcFile, false)					unzipSource = localBufferedFile				}				if destFsh.RequireBuffer {					localUnzipBuffer, _ := bufferRemoteFileToLocal(destFsh, rdestFile, true)					unzipDest = localUnzipBuffer				}				//OK! Unzip to destination				err := fs.Unzip(unzipSource, unzipDest)				if err != nil {					common.SendErrorResponse(w, err.Error())					return				}				if srcFsh.RequireBuffer {					//Remove the local buffered file					os.Remove(unzipSource)				}				if destFsh.RequireBuffer {					//Push the buffer to target fs					filepath.Walk(unzipDest, func(path string, info os.FileInfo, err error) error {						path = filepath.ToSlash(path)						relpath := strings.TrimPrefix(path, filepath.ToSlash(unzipDest))						if info.IsDir() {							destFshAbs.MkdirAll(filepath.Join(rdestFile, relpath), 0775)						} else {							f, _ := os.Open(path)							destFshAbs.WriteStream(filepath.Join(rdestFile, relpath), f, 0775)							f.Close()						}						return nil					})					cleanFsBufferFileFromList([]string{unzipDest})				}			} else {				common.SendErrorResponse(w, "Unknown file opeartion given")				return			}		}	}	common.SendOK(w)}//Allow systems to store key value pairs in the database as preferences.func system_fs_handleUserPreference(w http.ResponseWriter, r *http.Request) {	username, err := authAgent.GetUserName(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	key, _ := common.Mv(r, "key", false)	value, _ := common.Mv(r, "value", false)	remove, _ := common.Mv(r, "remove", false)	if key != "" && value == "" && remove == "" {		//Get mode. Read the prefernece with given key		result := ""		err := sysdb.Read("fs", "pref/"+key+"/"+username, &result)		if err != nil {			common.SendJSONResponse(w, "{\"error\":\"Key not found.\"}")			return		}		common.SendTextResponse(w, result)	} else if key != "" && value == "" && remove == "true" {		//Remove mode. Delete this key from sysdb		err := sysdb.Delete("fs", "pref/"+key+"/"+username)		if err != nil {			common.SendErrorResponse(w, err.Error())		}		common.SendOK(w)	} else if key != "" && value != "" {		//Set mode. Set the preference with given key		if len(value) > 1024 {			//Size too big. Reject storage			common.SendErrorResponse(w, "Preference value too long. Preference value can only store maximum 1024 characters.")			return		}		sysdb.Write("fs", "pref/"+key+"/"+username, value)		common.SendOK(w)	}}func system_fs_removeUserPreferences(username string) {	entries, err := sysdb.ListTable("fs")	if err != nil {		return	}	for _, keypairs := range entries {		if strings.Contains(string(keypairs[0]), "pref/") && strings.Contains(string(keypairs[0]), "/"+username) {			//Remove this preference			sysdb.Delete("fs", string(keypairs[0]))		}	}}func system_fs_listDrives(w http.ResponseWriter, r *http.Request) {	if authAgent.CheckAuth(r) == false {		common.SendErrorResponse(w, "User not logged in")		return	}	userinfo, _ := userHandler.GetUserInfoFromRequest(w, r)	type driveInfo struct {		Drivepath       string		DriveFreeSpace  uint64		DriveTotalSpace uint64		DriveAvailSpace uint64	}	var drives []driveInfo	if runtime.GOOS == "windows" {		//Under windows		for _, drive := range "ABCDEFGHIJKLMNOPQRSTUVWXYZ" {			f, err := os.Open(string(drive) + ":\\")			if err == nil {				thisdrive := new(driveInfo)				thisdrive.Drivepath = string(drive) + ":\\"				free, total, avail := storage.GetDriveCapacity(string(drive) + ":\\")				thisdrive.DriveFreeSpace = free				thisdrive.DriveTotalSpace = total				thisdrive.DriveAvailSpace = avail				drives = append(drives, *thisdrive)				f.Close()			}		}	} else {		//Under linux environment		//Append all the virtual directories root as root instead		storageDevices := []string{}		for _, fshandler := range userinfo.GetAllFileSystemHandler() {			storageDevices = append(storageDevices, fshandler.Path)		}		//List all storage information of each devices		for _, dev := range storageDevices {			thisdrive := new(driveInfo)			thisdrive.Drivepath = filepath.Base(dev)			free, total, avail := storage.GetDriveCapacity(string(dev))			thisdrive.DriveFreeSpace = free			thisdrive.DriveTotalSpace = total			thisdrive.DriveAvailSpace = avail			drives = append(drives, *thisdrive)		}	}	jsonString, _ := json.Marshal(drives)	common.SendJSONResponse(w, string(jsonString))}func system_fs_listRoot(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	username := userinfo.Username	userRoot, _ := common.Mv(r, "user", false)	if userRoot == "true" {		type fileObject struct {			Filename string			Filepath string			IsDir    bool		}		//List the root media folders under user:/		filesInUserRoot := []fileObject{}		filesInRoot, _ := filepath.Glob(filepath.ToSlash(filepath.Clean(*root_directory)) + "/users/" + username + "/*")		for _, file := range filesInRoot {			//Check if this is a hidden file			if len(filepath.Base(file)) > 0 && filepath.Base(file)[:1] == "." {				continue			}			thisFile := new(fileObject)			thisFile.Filename = filepath.Base(file)			thisFile.Filepath, _ = userinfo.RealPathToVirtualPath(file)			thisFile.IsDir = fs.IsDir(file)			filesInUserRoot = append(filesInUserRoot, *thisFile)		}		jsonString, _ := json.Marshal(filesInUserRoot)		common.SendJSONResponse(w, string(jsonString))	} else {		type rootObject struct {			rootID      string //The vroot id			RootName    string //The name of this vroot			RootPath    string //The path of this vroot			RootBackups bool   //If there are backup for this vroot		}		roots := []*rootObject{}		backupRoots := []string{}		for _, store := range userinfo.GetAllFileSystemHandler() {			if store.Hierarchy == "user" || store.Hierarchy == "public" {				//Normal drives				var thisDevice = new(rootObject)				thisDevice.RootName = store.Name				thisDevice.RootPath = store.UUID + ":/"				thisDevice.rootID = store.UUID				roots = append(roots, thisDevice)			} else if store.Hierarchy == "backup" {				//Backup drive.				backupRoots = append(backupRoots, store.HierarchyConfig.(hybridBackup.BackupTask).ParentUID)			}		}		//Update root configs for backup roots		for _, backupRoot := range backupRoots {			//For this backup root, check if the parent root mounted			for _, root := range roots {				if root.rootID == backupRoot {					//Parent root mounted. Label the parent root as "have backup"					root.RootBackups = true				}			}		}		jsonString, _ := json.Marshal(roots)		common.SendJSONResponse(w, string(jsonString))	}}/*	Special Glob for handling path with [ or ] inside.	You can also pass in normal path for globing if you are not sure.*/func system_fs_specialGlob(path string) ([]string, error) {	//Quick fix for foldername containing -] issue	path = strings.ReplaceAll(path, "[", "[[]")	files, err := filepath.Glob(path)	if err != nil {		return []string{}, err	}	if strings.Contains(path, "[") == true || strings.Contains(path, "]") == true {		if len(files) == 0 {			//Handle reverse check. Replace all [ and ] with *			newSearchPath := strings.ReplaceAll(path, "[", "?")			newSearchPath = strings.ReplaceAll(newSearchPath, "]", "?")			//Scan with all the similar structure except [ and ]			tmpFilelist, _ := filepath.Glob(newSearchPath)			for _, file := range tmpFilelist {				file = filepath.ToSlash(file)				if strings.Contains(file, filepath.ToSlash(filepath.Dir(path))) {					files = append(files, file)				}			}		}	}	//Convert all filepaths to slash	for i := 0; i < len(files); i++ {		files[i] = filepath.ToSlash(files[i])	}	return files, nil}func system_fs_specialURIDecode(inputPath string) string {	inputPath = strings.ReplaceAll(inputPath, "+", "{{plus_sign}}")	inputPath, _ = url.QueryUnescape(inputPath)	inputPath = strings.ReplaceAll(inputPath, "{{plus_sign}}", "+")	return inputPath}func system_fs_specialURIEncode(inputPath string) string {	inputPath = strings.ReplaceAll(inputPath, " ", "{{space_sign}}")	inputPath, _ = url.QueryUnescape(inputPath)	inputPath = strings.ReplaceAll(inputPath, "{{space_sign}}", "%20")	return inputPath}//Handle file properties requestfunc system_fs_getFileProperties(w http.ResponseWriter, r *http.Request) {	type fileProperties struct {		VirtualPath    string		StoragePath    string		Basename       string		VirtualDirname string		StorageDirname string		Ext            string		MimeType       string		Filesize       int64		Permission     string		LastModTime    string		LastModUnix    int64		IsDirectory    bool		Owner          string	}	result := fileProperties{}	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	vpath, err := common.Mv(r, "path", true)	if err != nil {		common.SendErrorResponse(w, "path not defined")		return	}	vrootID, subpath, _ := filesystem.GetIDFromVirtualPath(vpath)	fsh, _ := GetFsHandlerByUUID(vrootID)	fshAbs := fsh.FileSystemAbstraction	rpath, err := fshAbs.VirtualPathToRealPath(subpath, userinfo.Username)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	fileStat, err := fshAbs.Stat(rpath)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	fileMime := "text/directory"	if !fileStat.IsDir() {		m, _, err := fs.GetMime(rpath)		if err != nil {			fileMime = mime.TypeByExtension(filepath.Ext(rpath))		} else {			fileMime = m		}	}	filesize := fileStat.Size()	//Get file overall size if this is folder	if fileStat.IsDir() {		var size int64		fshAbs.Walk(rpath, func(_ string, info os.FileInfo, err error) error {			if err != nil {				return err			}			if !info.IsDir() {				size += info.Size()			}			return err		})		filesize = size	}	//Get file owner	owner := userinfo.GetFileOwner(rpath)	if owner == "" {		//Handle special virtual roots		owner = "Unknown"	}	result = fileProperties{		VirtualPath:    vpath,		StoragePath:    filepath.ToSlash(filepath.Clean(rpath)),		Basename:       filepath.Base(rpath),		VirtualDirname: filepath.ToSlash(filepath.Dir(vpath)),		StorageDirname: filepath.ToSlash(filepath.Dir(rpath)),		Ext:            filepath.Ext(rpath),		MimeType:       fileMime,		Filesize:       filesize,		Permission:     fileStat.Mode().Perm().String(),		LastModTime:    fileStat.ModTime().Format("2006-01-02 15:04:05"),		LastModUnix:    fileStat.ModTime().Unix(),		IsDirectory:    fileStat.IsDir(),		Owner:          owner,	}	jsonString, _ := json.Marshal(result)	common.SendJSONResponse(w, string(jsonString))}/*	List directory in the given path	Usage: Pass in dir like the following examples:	AOR:/Desktop	<= Open /user/{username}/Desktop	S1:/			<= Open {uuid=S1}/*/func system_fs_handleList(w http.ResponseWriter, r *http.Request) {	currentDir, _ := common.Mv(r, "dir", true)	//Commented this line to handle dirname that contains "+" sign	//currentDir, _ = url.QueryUnescape(currentDir)	sortMode, _ := common.Mv(r, "sort", true)	showHidden, _ := common.Mv(r, "showHidden", true)	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		//user not logged in. Redirect to login page.		common.SendErrorResponse(w, "User not logged in")		return	}	if currentDir == "" {		common.SendErrorResponse(w, "Invalid dir given.")		return	}	//Pad a slash at the end of currentDir if not exists	if currentDir[len(currentDir)-1:] != "/" {		currentDir = currentDir + "/"	}	fsh, subpath, err := GetFSHandlerSubpathFromVpath(currentDir)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	fshAbs := fsh.FileSystemAbstraction	var parsedFilelist []fs.FileData	//Normal file systems	realpath, err := fshAbs.VirtualPathToRealPath(subpath, userinfo.Username)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	if !fshAbs.FileExists(realpath) {		//Path not exists		userRoot, _ := fshAbs.VirtualPathToRealPath("", userinfo.Username)		if filepath.Clean(realpath) == filepath.Clean(userRoot) {			//Initiate user folder (Initiaed in user object)			userinfo.GetHomeDirectory()		} else if !strings.Contains(filepath.ToSlash(filepath.Clean(currentDir)), "/") {			//User root not created. Create the root folder			os.MkdirAll(filepath.Clean(realpath), 0775)		} else {			//Folder not exists			log.Println("[File Explorer] Requested path: ", realpath, " does not exists!")			common.SendErrorResponse(w, "Folder not exists")			return		}	}	if sortMode == "" {		sortMode = "default"	}	//Check for really special exception in where the path contains [ or ] which cannot be handled via Golang Glob function	files, err := fshAbs.Glob(realpath + "/*")	if err != nil {		log.Println("[File System] Unable to list dir: " + err.Error())		return	}	var shortCutInfo *shortcut.ShortcutData = nil	for _, v := range files {		//Check if it is hidden file		isHidden, _ := hidden.IsHidden(v, false)		if showHidden != "true" && isHidden {			//Skipping hidden files			continue		}		//Check if this is an aodb file		if filepath.Base(v) == "aofs.db" || filepath.Base(v) == "aofs.db.lock" {			//Database file (reserved)			continue		}		//Check if it is shortcut file. If yes, render a shortcut data struct		if filepath.Ext(v) == ".shortcut" {			//This is a shortcut file			shorcutData, err := shortcut.ReadShortcut(v)			if err == nil {				shortCutInfo = shorcutData			}		}		rawsize := fshAbs.GetFileSize(v)		modtime, _ := fshAbs.GetModTime(v)		thisvPath, _ := fshAbs.RealPathToVirtualPath(v, userinfo.Username)		thisFile := fs.FileData{			Filename:    filepath.Base(v),			Filepath:    currentDir + filepath.Base(v),			Realpath:    v,			IsDir:       fsh.FileSystemAbstraction.IsDir(v),			Filesize:    rawsize,			Displaysize: fs.GetFileDisplaySize(rawsize, 2),			ModTime:     modtime,			IsShared:    shareManager.FileIsShared(userinfo, thisvPath),			Shortcut:    shortCutInfo,		}		parsedFilelist = append(parsedFilelist, thisFile)	}	//Sort the filelist	if sortMode == "default" {		//Sort by name, convert filename to window sorting methods		sort.Slice(parsedFilelist, func(i, j int) bool {			return strings.ToLower(parsedFilelist[i].Filename) < strings.ToLower(parsedFilelist[j].Filename)		})	} else if sortMode == "reverse" {		//Sort by reverse name		sort.Slice(parsedFilelist, func(i, j int) bool {			return strings.ToLower(parsedFilelist[i].Filename) > strings.ToLower(parsedFilelist[j].Filename)		})	} else if sortMode == "smallToLarge" {		sort.Slice(parsedFilelist, func(i, j int) bool { return parsedFilelist[i].Filesize < parsedFilelist[j].Filesize })	} else if sortMode == "largeToSmall" {		sort.Slice(parsedFilelist, func(i, j int) bool { return parsedFilelist[i].Filesize > parsedFilelist[j].Filesize })	} else if sortMode == "mostRecent" {		sort.Slice(parsedFilelist, func(i, j int) bool { return parsedFilelist[i].ModTime > parsedFilelist[j].ModTime })	} else if sortMode == "leastRecent" {		sort.Slice(parsedFilelist, func(i, j int) bool { return parsedFilelist[i].ModTime < parsedFilelist[j].ModTime })	}	jsonString, _ := json.Marshal(parsedFilelist)	common.SendJSONResponse(w, string(jsonString))}//Handle getting a hash from a given contents in the given pathfunc system_fs_handleDirHash(w http.ResponseWriter, r *http.Request) {	currentDir, err := common.Mv(r, "dir", true)	if err != nil {		common.SendErrorResponse(w, "Invalid dir given")		return	}	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	fsh, subpath, err := GetFSHandlerSubpathFromVpath(currentDir)	if err != nil {		common.SendErrorResponse(w, "Unable to resolve target directory")		return	}	fshAbs := fsh.FileSystemAbstraction	rpath, err := fshAbs.VirtualPathToRealPath(subpath, userinfo.Username)	if err != nil {		common.SendErrorResponse(w, "Invalid dir given")		return	}	//Get a list of files in this directory	currentDir = filepath.ToSlash(filepath.Clean(rpath)) + "/"	filesInDir, err := fshAbs.Glob(currentDir + "*")	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	filenames := []string{}	for _, file := range filesInDir {		if len(filepath.Base(file)) > 0 && string([]rune(filepath.Base(file))[0]) != "." {			//Ignore hidden files			filenames = append(filenames, filepath.Base(file))		}	}	sort.Strings(filenames)	//Build a hash base on the filelist	h := sha256.New()	h.Write([]byte(strings.Join(filenames, ",")))	common.SendTextResponse(w, hex.EncodeToString((h.Sum(nil))))}/*	File zipping and unzipping functions*///Handle all zip related APIfunc system_fs_zipHandler(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	opr, err := common.Mv(r, "opr", true)	if err != nil {		common.SendErrorResponse(w, "Invalid opr or opr not defined")		return	}	vsrc, _ := common.Mv(r, "src", true)	if vsrc == "" {		common.SendErrorResponse(w, "Invalid src paramter")		return	}	vdest, _ := common.Mv(r, "dest", true)	rdest := ""	//Convert source path from JSON string to object	virtualSourcePaths := []string{}	err = json.Unmarshal([]byte(vsrc), &virtualSourcePaths)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	//Check each of the path	realSourcePaths := []string{}	for _, vpath := range virtualSourcePaths {		thisSrcFsh, subpath, err := GetFSHandlerSubpathFromVpath(vpath)		if err != nil {			common.SendErrorResponse(w, "Unable to resolve file: "+vpath)			return		}		thisSrcFshAbs := thisSrcFsh.FileSystemAbstraction		thisrpath, err := thisSrcFshAbs.VirtualPathToRealPath(subpath, userinfo.Username)		if err != nil || !thisSrcFshAbs.FileExists(thisrpath) {			common.SendErrorResponse(w, "File not exists: "+vpath)			return		}		if thisSrcFsh.RequireBuffer {			thisLocalBuffer, err := bufferRemoteFileToLocal(thisSrcFsh, thisrpath, true)			if err != nil {				common.SendErrorResponse(w, "Unable to buffer from remote file system: "+err.Error())				return			}			realSourcePaths = append(realSourcePaths, thisLocalBuffer)		} else {			realSourcePaths = append(realSourcePaths, thisrpath)		}	}	///Convert dest to real if given	var destFsh *filesystem.FileSystemHandler = nil	var subpath string = ""	var filename string = ""	if vdest != "" {		//Given target virtual dest		destFsh, subpath, err = GetFSHandlerSubpathFromVpath(rdest)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}	} else {		//Given no virtual dest. Zip to tmp:/		filename = common.Int64ToString(time.Now().Unix()) + ".zip"		destFsh, subpath, err = GetFSHandlerSubpathFromVpath(filepath.Join("tmp:/", filename))		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}	}	rdest, _ = destFsh.FileSystemAbstraction.VirtualPathToRealPath(subpath, userinfo.Username)	destFshAbs := destFsh.FileSystemAbstraction	zipOutput := rdest	if destFsh.RequireBuffer {		zipOutput = getFsBufferFilepath(rdest, false)	}	if opr == "zip" {		//Check if destination location exists		if rdest == "" || !destFshAbs.FileExists(filepath.Dir(zipOutput)) {			common.SendErrorResponse(w, "Invalid dest location")			return		}		//OK. Create the zip at the desired location		err := fs.ArozZipFile(realSourcePaths, zipOutput, false)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		common.SendOK(w)	} else if opr == "tmpzip" {		//Zip to tmp folder		log.Println(realSourcePaths, zipOutput)		err := fs.ArozZipFile(realSourcePaths, zipOutput, false)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		//Send the tmp filename to the user		common.SendTextResponse(w, "tmp:/"+filename)	}	if destFsh.RequireBuffer {		//Write the buffer zip file to destination		f, _ := os.Open(zipOutput)		destFsh.FileSystemAbstraction.WriteStream(rdest, f, 0775)		f.Close()		os.Remove(zipOutput)	}	cleanFsBufferFileFromList(realSourcePaths)}//Manage file version historyfunc system_fs_FileVersionHistory(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	path, err := common.Mv(r, "path", true)	if err != nil {		common.SendErrorResponse(w, "Invalid path given")		return	}	fsh, subpath, err := GetFSHandlerSubpathFromVpath(path)	if err != nil {		if err != nil {			common.SendErrorResponse(w, "Invalid path given")			return		}	}	fshAbs := fsh.FileSystemAbstraction	opr, _ := common.Mv(r, "opr", true)	rpath, err := fshAbs.VirtualPathToRealPath(subpath, userinfo.Username)	if err != nil {		common.SendErrorResponse(w, "Unable to translate virtual path")		return	}	if opr == "" {		//List file history		fileVersionData, err := localversion.GetFileVersionData(rpath)		if err != nil {			common.SendErrorResponse(w, "Unable to load version information: "+err.Error())			return		}		js, _ := json.Marshal(fileVersionData)		common.SendJSONResponse(w, string(js))	} else if opr == "delete" {		//Delete file history of given history ID		historyID, err := common.Mv(r, "histid", true)		if err != nil {			common.SendErrorResponse(w, "Invalid history id given")			return		}		err = localversion.RemoveFileHistory(rpath, historyID)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		common.SendOK(w)	} else if opr == "deleteAll" {		//Delete all file history of given vpath		err = localversion.RemoveAllRelatedFileHistory(rpath)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		common.SendOK(w)	} else if opr == "restore" {		//Restore file history of given history ID		historyID, err := common.Mv(r, "histid", true)		if err != nil {			common.SendErrorResponse(w, "Invalid history id given")			return		}		err = localversion.RestoreFileHistory(rpath, historyID)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		common.SendOK(w)	} else if opr == "new" {		//Create a new snapshot of this file		err = localversion.CreateFileSnapshot(rpath)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		common.SendOK(w)	} else {		common.SendErrorResponse(w, "Unknown opr")	}}func system_fs_clearVersionHistories() {	for _, fsh := range fsHandlers {		if !fsh.ReadOnly {			localversion.CleanExpiredVersionBackups(fsh.Path, 30*86400)		}	}}//Translate path from and to virtual and realpathfunc system_fs_handlePathTranslate(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	path, err := common.Mv(r, "path", false)	if err != nil {		common.SendErrorResponse(w, "Invalid path given")		return	}	rpath, err := userinfo.VirtualPathToRealPath(path)	if err != nil {		//Try to convert it to virtualPath		vpath, err := userinfo.RealPathToVirtualPath(path)		if err != nil {			common.SendErrorResponse(w, "Unknown path given")		} else {			jsonstring, _ := json.Marshal(vpath)			common.SendJSONResponse(w, string(jsonstring))		}	} else {		abrpath, _ := filepath.Abs(rpath)		jsonstring, _ := json.Marshal([]string{rpath, filepath.ToSlash(abrpath)})		common.SendJSONResponse(w, string(jsonstring))	}}//Handle cache rendering with websocket pipelinefunc system_fs_handleCacheRender(w http.ResponseWriter, r *http.Request) {	userinfo, _ := userHandler.GetUserInfoFromRequest(w, r)	vpath, err := common.Mv(r, "folder", false)	if err != nil {		common.SendErrorResponse(w, "Invalid folder paramter")		return	}	fsh, subpath, err := GetFSHandlerSubpathFromVpath(vpath)	if err != nil {		common.SendErrorResponse(w, "Unable to resolve target directory")		return	}	rpath, _ := fsh.FileSystemAbstraction.VirtualPathToRealPath(subpath, userinfo.Username)	//Get folder sort mode	sortMode := "default"	folder := filepath.ToSlash(filepath.Clean(vpath))	if sysdb.KeyExists("fs-sortpref", userinfo.Username+"/"+folder) {		sysdb.Read("fs-sortpref", userinfo.Username+"/"+folder, &sortMode)	}	//Perform cache rendering	thumbRenderHandler.HandleLoadCache(w, r, fsh, rpath, sortMode)}//Handle loading of one thumbnailfunc system_fs_handleThumbnailLoad(w http.ResponseWriter, r *http.Request) {	userinfo, _ := userHandler.GetUserInfoFromRequest(w, r)	vpath, err := common.Mv(r, "vpath", false)	if err != nil {		common.SendErrorResponse(w, "vpath not defined")		return	}	fsh, subpath, err := GetFSHandlerSubpathFromVpath(vpath)	if err != nil {		common.SendErrorResponse(w, "Unable to resolve target directory")		return	}	rpath, err := fsh.FileSystemAbstraction.VirtualPathToRealPath(subpath, userinfo.Username)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	byteMode, _ := common.Mv(r, "bytes", false)	if byteMode == "true" {		thumbnailBytes, err := thumbRenderHandler.LoadCacheAsBytes(fsh, vpath, userinfo.Username, false)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		filetype := http.DetectContentType(thumbnailBytes)		w.Header().Add("Content-Type", filetype)		w.Write(thumbnailBytes)	} else {		thumbnailPath, err := thumbRenderHandler.LoadCache(fsh, rpath, false)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		js, _ := json.Marshal(thumbnailPath)		common.SendJSONResponse(w, string(js))	}}//Handle file thumbnail cachingfunc system_fs_handleFolderCache(w http.ResponseWriter, r *http.Request) {	userinfo, _ := userHandler.GetUserInfoFromRequest(w, r)	vfolderpath, err := common.Mv(r, "folder", false)	if err != nil {		common.SendErrorResponse(w, "folder not defined")		return	}	fsh, _, err := GetFSHandlerSubpathFromVpath(vfolderpath)	if err != nil {		common.SendErrorResponse(w, "unable to resolve path")		return	}	thumbRenderHandler.BuildCacheForFolder(fsh, vfolderpath, userinfo.Username)	common.SendOK(w)}//Handle the get and set of sort mode of a particular folderfunc system_fs_handleFolderSortModePreference(w http.ResponseWriter, r *http.Request) {	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	folder, err := common.Mv(r, "folder", true)	if err != nil {		common.SendErrorResponse(w, "Invalid folder given")		return	}	opr, _ := common.Mv(r, "opr", true)	folder = filepath.ToSlash(filepath.Clean(folder))	if opr == "" || opr == "get" {		sortMode := "default"		if sysdb.KeyExists("fs-sortpref", userinfo.Username+"/"+folder) {			sysdb.Read("fs-sortpref", userinfo.Username+"/"+folder, &sortMode)		}		js, err := json.Marshal(sortMode)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		common.SendJSONResponse(w, string(js))	} else if opr == "set" {		sortMode, err := common.Mv(r, "mode", true)		if err != nil {			common.SendErrorResponse(w, "Invalid sort mode given")			return		}		if !common.StringInArray([]string{"default", "reverse", "smallToLarge", "largeToSmall", "mostRecent", "leastRecent"}, sortMode) {			common.SendErrorResponse(w, "Not supported sort mode: "+sortMode)			return		}		sysdb.Write("fs-sortpref", userinfo.Username+"/"+folder, sortMode)		common.SendOK(w)	} else {		common.SendErrorResponse(w, "Invalid opr mode")		return	}}//Handle setting and loading of file permission on Linuxfunc system_fs_handleFilePermission(w http.ResponseWriter, r *http.Request) {	file, err := common.Mv(r, "file", true)	if err != nil {		common.SendErrorResponse(w, "Invalid file")		return	}	//Translate the file to real path	userinfo, err := userHandler.GetUserInfoFromRequest(w, r)	if err != nil {		common.SendErrorResponse(w, "User not logged in")		return	}	rpath, err := userinfo.VirtualPathToRealPath(file)	if err != nil {		common.SendErrorResponse(w, err.Error())		return	}	newMode, _ := common.Mv(r, "mode", true)	if newMode == "" {		//Read the file mode		//Check if the file exists		if !fs.FileExists(rpath) {			common.SendErrorResponse(w, "File not exists!")			return		}		//Read the file permission		filePermission, err := fsp.GetFilePermissions(rpath)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		}		//Send the file permission to client		js, _ := json.Marshal(filePermission)		common.SendJSONResponse(w, string(js))	} else {		//Set the file mode		//Check if the file exists		if !fs.FileExists(rpath) {			common.SendErrorResponse(w, "File not exists!")			return		}		//Check if windows. If yes, ignore this request		if runtime.GOOS == "windows" {			common.SendErrorResponse(w, "Windows host not supported")			return		}		//Check if this user has permission to change the file permission		//Aka user must be 1. This is his own folder or 2. Admin		fsh, _ := userinfo.GetFileSystemHandlerFromVirtualPath(file)		if fsh.Hierarchy == "user" {			//Always ok as this is owned by the user		} else if fsh.Hierarchy == "public" {			//Require admin			if userinfo.IsAdmin() == false {				common.SendErrorResponse(w, "Permission Denied")				return			}		} else {			//Not implemeneted. Require admin			if userinfo.IsAdmin() == false {				common.SendErrorResponse(w, "Permission Denied")				return			}		}		//Be noted that if the system is not running in sudo mode,		//File permission change might not works.		err := fsp.SetFilePermisson(rpath, newMode)		if err != nil {			common.SendErrorResponse(w, err.Error())			return		} else {			common.SendOK(w)		}	}}//Check if the given filepath is and must inside the given directory path.//You can pass both as relativefunc system_fs_checkFileInDirectory(filesourcepath string, directory string) bool {	filepathAbs, err := filepath.Abs(filesourcepath)	if err != nil {		return false	}	directoryAbs, err := filepath.Abs(directory)	if err != nil {		return false	}	//Check if the filepathabs contain directoryAbs	if strings.Contains(filepathAbs, directoryAbs) {		return true	} else {		return false	}}//Clear the old files inside the tmp filefunc system_fs_clearOldTmpFiles() {	filesToBeDelete := []string{}	tmpAbs, _ := filepath.Abs(*tmp_directory)	filepath.Walk(*tmp_directory, func(path string, info os.FileInfo, err error) error {		if filepath.Base(path) != "aofs.db" && filepath.Base(path) != "aofs.db.lock" {			//Check if root folders. Do not delete root folders			parentAbs, _ := filepath.Abs(filepath.Dir(path))			if tmpAbs == parentAbs {				//Root folder. Do not remove				return nil			}			//Get its modification time			modTime, err := fs.GetModTime(path)			if err != nil {				return nil			}			//Check if mod time is more than 24 hours ago			if time.Now().Unix()-modTime > int64(*maxTempFileKeepTime) {				//Delete OK				filesToBeDelete = append(filesToBeDelete, path)			}		}		return nil	})	//Remove all files from the delete list	for _, fileToBeDelete := range filesToBeDelete {		os.RemoveAll(fileToBeDelete)	}}/*	File System Utilities for Buffered type FS	These functions help create a local representation of file	buffer from remote file systems like webdav or SMB	**REMEMBER TO CLEAR THE BUFFER FILES YOURSELF**	Example Usage	//Replace a destination path (for file create) with local buffer filepath	if destFsh.RequireBuffer {		dest = getFsBufferFilepath(outputFilename)	}	//Buffer a remote file to local first before doing any advance file operations	if thisSrcFsh.RequireBuffer {		localBufferFilepath, err := bufferRemoteFileToLocal(fsh, remoteRealSrc)		if err != nil{			//Handle Error		}	}	//Clean a list of source files that contains local buffer files	clearnFsBufferFileFromList(realSourceFiles)*///Generate a random buffer filepath. Remember to delete file after usagefunc getFsBufferFilepath(originalFilename string, keepOriginalName bool) string {	thisBuffFilename := uuid.NewV4().String()	tmpDir := filepath.Join(*tmp_directory, "fsBuff")	targetFile := filepath.Join(tmpDir, thisBuffFilename+filepath.Ext(originalFilename))	if keepOriginalName {		targetFile = filepath.Join(tmpDir, thisBuffFilename, filepath.Base(originalFilename))	}	os.MkdirAll(filepath.Dir(targetFile), 0775)	return filepath.ToSlash(targetFile)}//Generate a buffer filepath and buffer the remote file to local. Remember to remove file after done.func bufferRemoteFileToLocal(targetFsh *filesystem.FileSystemHandler, rpath string, keepOriginalName bool) (string, error) {	newBufferFilename := getFsBufferFilepath(rpath, keepOriginalName)	src, err := targetFsh.FileSystemAbstraction.ReadStream(rpath)	if err != nil {		log.Println("[File System] Buffer from remote to local failed: ", err.Error())		return "", err	}	dest, err := os.OpenFile(newBufferFilename, os.O_CREATE|os.O_WRONLY, 0775)	if err != nil {		log.Println("[File System] Buffer from remote to local failed: ", err.Error())		return "", err	}	io.Copy(dest, src)	dest.Close()	src.Close()	return newBufferFilename, nil}//Check if a file is buffer filepathfunc isFsBufferFilepath(filename string) bool {	tmpDir := filepath.Join(*tmp_directory, "fsBuff")	filenameAbs, _ := filepath.Abs(filename)	filenameAbs = filepath.ToSlash(filenameAbs)	tmpDirAbs, _ := filepath.Abs(tmpDir)	tmpDirAbs = filepath.ToSlash(tmpDirAbs)	return strings.HasPrefix(filenameAbs, tmpDirAbs)}func cleanFsBufferFileFromList(filelist []string) {	for _, thisFilepath := range filelist {		if isFsBufferFilepath(thisFilepath) {			os.RemoveAll(thisFilepath)			folderContent, _ := os.ReadDir(filepath.Dir(thisFilepath))			if len(folderContent) == 0 {				//Nothing in this folder. Remove it				os.Remove(filepath.Dir(thisFilepath))			}		}	}}
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