forked from Elara6331/itd
524 lines
12 KiB
Go
524 lines
12 KiB
Go
package main
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import (
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"go.arsenm.dev/logger/log"
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"os"
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"context"
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"syscall"
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"github.com/hanwen/go-fuse/v2/fs"
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"github.com/hanwen/go-fuse/v2/fuse"
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"strconv"
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)
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func (i *Device) HeartRateBytes() ([]byte, error) {
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v, err := i.HeartRate()
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return []byte(strconv.Itoa(int(v)) + "\n"), err
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}
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func (i *Device) BatteryLevelBytes() ([]byte, error) {
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v, err := i.BatteryLevel()
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return []byte(strconv.Itoa(int(v)) + "\n"), err
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}
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func (i *Device) StepCountBytes() ([]byte, error) {
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v, err := i.StepCount()
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return []byte(strconv.Itoa(int(v)) + "\n"), err
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}
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func (i *Device) MotionBytes() ([]byte, error) {
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v, err := i.Motion()
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return []byte(strconv.Itoa(int(v.X)) + " " + strconv.Itoa(int(v.Y)) + " " + strconv.Itoa(int(v.Z)) + "\n"), err
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}
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func (i *Device) AddressBytes() ([]byte, error) {
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v := i.Address()
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return []byte(v + "\n"), nil
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}
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func (i *Device) VersionBytes() ([]byte, error) {
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v, err := i.Version()
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return []byte(v + "\n"), err
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}
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type ITProperty struct {
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name string
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Ino uint64
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f func() ([]byte, error)
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}
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type DirEntry struct {
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isDir bool
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modtime uint64
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size uint32
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path string
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}
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type ITNode struct {
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fs.Inode
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kind int
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Ino uint64
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lst []DirEntry
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self DirEntry
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path string
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}
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var properties = []ITProperty {
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ITProperty{"heartrate", 2, nil},
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ITProperty{"battery", 3, nil},
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ITProperty{"motion", 4, nil},
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ITProperty{"stepcount", 5, nil},
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ITProperty{"version", 6, nil},
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ITProperty{"address", 7, nil},
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}
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var myfs *FS = nil;
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var inodemap map[string]uint64 = nil;
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var _ = (fs.NodeReaddirer)((*ITNode)(nil))
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// Readdir is part of the NodeReaddirer interface
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func (n *ITNode) Readdir(ctx context.Context) (fs.DirStream, syscall.Errno) {
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switch n.kind {
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case 0:
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// root folder
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r := make([]fuse.DirEntry, 2)
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r[0] = fuse.DirEntry{
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Name: "device",
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Ino: 0,
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Mode: fuse.S_IFDIR,
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}
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r[1] = fuse.DirEntry{
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Name: "fs",
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Ino: 1,
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Mode: fuse.S_IFDIR,
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}
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return fs.NewListDirStream(r), 0
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case 1:
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// device folder
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r := make([]fuse.DirEntry, 6)
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for ind, value := range properties {
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r[ind] = fuse.DirEntry{
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Name: value.name,
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Ino: value.Ino,
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Mode: fuse.S_IFREG,
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}
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}
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return fs.NewListDirStream(r), 0
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case 2:
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// on device
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files, _ := myfs.ReadDir(n.path)
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log.Info("readdir").Str("path", n.path).Int("objects", len(files)).Send()
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r := make([]fuse.DirEntry, len(files))
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n.lst = make([]DirEntry, len(files))
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for ind, entry := range files {
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info, _ := entry.Info()
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name := info.Name()
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file := DirEntry{
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path: n.path + "/" + name,
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size: uint32(info.Size()),
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modtime: uint64(info.ModTime().Unix()),
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isDir: info.IsDir(),
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}
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n.lst[ind] = file
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ino := inodemap[file.path]
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if ino == 0 {
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ino = uint64(len(inodemap)) + 1
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inodemap[file.path] = ino
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}
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if file.isDir {
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r[ind] = fuse.DirEntry{
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Name: name,
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Mode: fuse.S_IFDIR,
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Ino : ino + 10,
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}
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} else {
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r[ind] = fuse.DirEntry{
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Name: name,
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Mode: fuse.S_IFREG,
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Ino : ino + 10,
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}
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}
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}
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return fs.NewListDirStream(r), 0
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}
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r := make([]fuse.DirEntry, 0)
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return fs.NewListDirStream(r), 0
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}
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var _ = (fs.NodeLookuper)((*ITNode)(nil))
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func (n *ITNode) Lookup(ctx context.Context, name string, out *fuse.EntryOut) (*fs.Inode, syscall.Errno) {
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switch n.kind {
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case 0:
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// root folder
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if name == "device" {
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stable := fs.StableAttr{
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Mode: fuse.S_IFDIR,
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Ino: uint64(0),
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}
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operations := &ITNode{kind: 1, Ino: 0}
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child := n.NewInode(ctx, operations, stable)
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return child, 0
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} else if name == "fs" {
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stable := fs.StableAttr{
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Mode: fuse.S_IFDIR,
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Ino: uint64(1),
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}
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operations := &ITNode{kind: 2, Ino: 1, path : ""}
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child := n.NewInode(ctx, operations, stable)
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return child, 0
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}
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case 1:
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// device folder
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for _, value := range properties {
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if value.name == name {
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stable := fs.StableAttr{
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Mode: fuse.S_IFREG,
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Ino: uint64(value.Ino),
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}
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operations := &ITNode{kind: 3, Ino: value.Ino}
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child := n.NewInode(ctx, operations, stable)
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return child, 0
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}
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}
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return nil, syscall.ENOENT
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case 2:
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// FS object
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for _, file := range n.lst {
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if file.path != n.path + "/" + name {
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continue;
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}
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log.Info("LookUp successful").Str("path", file.path).Send()
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if file.isDir {
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stable := fs.StableAttr{
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Mode: fuse.S_IFDIR,
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Ino: inodemap[file.path],
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}
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operations := &ITNode{kind: 2, path: file.path}
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child := n.NewInode(ctx, operations, stable)
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return child, 0
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} else {
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stable := fs.StableAttr{
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Mode: fuse.S_IFREG,
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Ino: inodemap[file.path],
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}
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operations := &ITNode{
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kind: 2, path: file.path,
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self: file,
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}
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child := n.NewInode(ctx, operations, stable)
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return child, 0
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}
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break;
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}
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log.Warn("LookUp failed").Str("path", n.path + "/" + name).Send()
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}
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return nil, syscall.ENOENT
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}
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type bytesFileReadHandle struct {
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content []byte
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}
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var _ = (fs.FileReader)((*bytesFileReadHandle)(nil))
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func (fh *bytesFileReadHandle) Read(ctx context.Context, dest []byte, off int64) (fuse.ReadResult, syscall.Errno) {
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log.Info("Executing Read").Int("size", len(fh.content)).Send()
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end := off + int64(len(dest))
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if end > int64(len(fh.content)) {
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end = int64(len(fh.content))
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}
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return fuse.ReadResultData(fh.content[off:end]), 0
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}
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type bytesFileWriteHandle struct {
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content []byte
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path string
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}
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var _ = (fs.FileWriter)((*bytesFileWriteHandle)(nil))
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func (fh *bytesFileWriteHandle) Write(ctx context.Context, data []byte, off int64) (written uint32, errno syscall.Errno) {
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log.Info("Executing Write").Str("path", fh.path).Int("size", len(fh.content)).Send()
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if off != int64(len(fh.content)) {
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}
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fh.content = append(fh.content[:], data[:]...)
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return uint32(len(data)), 0
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}
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var _ = (fs.FileFlusher)((*bytesFileWriteHandle)(nil))
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func (fh *bytesFileWriteHandle) Flush(ctx context.Context) (errno syscall.Errno) {
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log.Info("Attempting flush").Str("path", fh.path).Send()
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fp, err := myfs.Create(fh.path, uint32(len(fh.content)))
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if err != nil {
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log.Error("Flush failed: create").Str("path", fh.path).Err(err).Send()
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return syscall.EROFS
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}
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nread, err := fp.Write(fh.content)
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if err != nil || nread != len(fh.content) {
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log.Error("Flush failed: write").Str("path", fh.path).Err(err).Send()
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fp.Close()
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return syscall.EROFS
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}
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err = fp.Close()
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if err != nil {
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log.Error("Flush failed: close").Str("path", fh.path).Err(err).Send()
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return syscall.EROFS
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}
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log.Info("Flush done").Str("path", fh.path).Int("size", len(fh.content)).Send()
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return 0
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}
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var _ = (fs.FileFsyncer)((*bytesFileWriteHandle)(nil))
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func (fh *bytesFileWriteHandle) Fsync(ctx context.Context, flags uint32) (errno syscall.Errno) {
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return fh.Flush(ctx)
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}
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var _ = (fs.NodeGetattrer)((*ITNode)(nil))
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func (bn *ITNode) Getattr(ctx context.Context, f fs.FileHandle, out *fuse.AttrOut) syscall.Errno {
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log.Info("getattr").Str("path", bn.path).Send();
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out.Ino = bn.Ino
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out.Mtime = bn.self.modtime
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out.Ctime = bn.self.modtime
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out.Atime = bn.self.modtime
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out.Size = uint64(bn.self.size)
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return 0
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}
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var _ = (fs.NodeSetattrer)((*ITNode)(nil))
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func (bn *ITNode) Setattr(ctx context.Context, fh fs.FileHandle, in *fuse.SetAttrIn, out *fuse.AttrOut) syscall.Errno {
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log.Info("setattr").Str("path", bn.path).Send()
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out.Size = 0;
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out.Mtime = 0;
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return 0
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}
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var _ = (fs.NodeOpener)((*ITNode)(nil))
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func (f *ITNode) Open(ctx context.Context, openFlags uint32) (fh fs.FileHandle, fuseFlags uint32, errno syscall.Errno) {
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switch f.kind {
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case 2:
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// FS file
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if openFlags&syscall.O_RDWR != 0 {
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log.Warn("open: failed RDWR").Str("path", f.path).Send()
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return nil, 0, syscall.EROFS
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}
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if openFlags & syscall.O_WRONLY != 0 {
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log.Info("Opening file: write").Str("path", f.path).Send()
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fh = &bytesFileWriteHandle{
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path : f.path,
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content : make([]byte, 0),
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}
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return fh, fuse.FOPEN_DIRECT_IO, 0
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} else {
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log.Info("Opening file: read").Str("path", f.path).Send();
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fp, err := myfs.Open(f.path)
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if err != nil {
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log.Error("Opening file failed").Str("path", f.path).Err(err).Send();
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return nil, 0, syscall.EROFS
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}
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buf := make([]byte, f.self.size);
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nread, err := fp.Read(buf)
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if err != nil || nread != int(f.self.size) {
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log.Error("Reading file failed").Str("path", f.path).Err(err).Send();
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fp.Close()
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return nil, 0, syscall.EROFS
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}
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err = fp.Close()
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if err != nil {
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log.Error("Closing file failed").Str("path", f.path).Err(err).Send();
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return nil, 0, syscall.EROFS
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}
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fh = &bytesFileReadHandle{
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content: buf,
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}
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return fh, fuse.FOPEN_DIRECT_IO, 0
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}
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case 3:
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// Device file
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// disallow writes
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if openFlags&(syscall.O_RDWR|syscall.O_WRONLY) != 0 {
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return nil, 0, syscall.EROFS
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}
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for _, value := range properties {
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if value.Ino == f.Ino {
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ans, err := value.f()
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if err != nil {
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return nil, 0, syscall.EROFS
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}
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fh = &bytesFileReadHandle{
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content: ans,
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}
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return fh, fuse.FOPEN_DIRECT_IO, 0
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}
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}
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}
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return nil, 0, syscall.EROFS
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}
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var _ = (fs.NodeCreater)((*ITNode)(nil))
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func (f *ITNode) Create(ctx context.Context, name string, flags uint32, mode uint32, out *fuse.EntryOut) (node *fs.Inode, fh fs.FileHandle, fuseFlags uint32, errno syscall.Errno) {
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if f.kind != 2 {
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return nil, nil, 0, syscall.EROFS
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}
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path := f.path + "/" + name
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ino := uint64(len(inodemap)) + 11
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inodemap[path] = ino
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stable := fs.StableAttr{
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Mode: fuse.S_IFREG,
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Ino: ino,
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}
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operations := &ITNode{
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kind: 2, Ino: ino,
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path : path,
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}
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node = f.NewInode(ctx, operations, stable)
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fh = &bytesFileWriteHandle{
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path : path,
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content : make([]byte, 0),
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}
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log.Info("Creating file").Str("path", path).Send()
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errno = 0
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return node, fh, fuseFlags, 0
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}
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var _ = (fs.NodeMkdirer)((*ITNode)(nil))
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func (f *ITNode) Mkdir(ctx context.Context, name string, mode uint32, out *fuse.EntryOut) (*fs.Inode, syscall.Errno) {
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if f.kind != 2 {
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return nil, syscall.EROFS
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}
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path := f.path + "/" + name
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err := myfs.Mkdir(path)
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if err != nil {
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log.Info("Mkdir failed").
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Str("path", path).
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Err(err).
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Send()
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return nil, syscall.EROFS
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}
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ino := uint64(len(inodemap)) + 11
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inodemap[path] = ino
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stable := fs.StableAttr{
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Mode: fuse.S_IFDIR,
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Ino: ino,
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}
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operations := &ITNode{
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kind: 2, Ino: ino,
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path : path,
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}
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node := f.NewInode(ctx, operations, stable)
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log.Info("Mkdir sucess").
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Str("path", path).
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Int("ino", int(ino)).
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Send()
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return node, 0
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}
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var _ = (fs.NodeRenamer)((*ITNode)(nil))
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func (f *ITNode) Rename(ctx context.Context, name string, newParent fs.InodeEmbedder, newName string, flags uint32) syscall.Errno {
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p1 := f.path + "/" + name
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p2 := newParent.EmbeddedInode().Path(nil)[2:] + "/" + newName
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err := myfs.Rename(p1, p2)
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if err != nil {
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log.Error("Rename failed").
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Str("src", p1).
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Str("dest", p2).
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Err(err).
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Send()
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return syscall.EROFS
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}
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log.Info("Rename sucess").
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Str("src", p1).
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Str("dest", p2).
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Send()
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ino := inodemap[p1]
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delete(inodemap, p1)
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inodemap[p2] = ino
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return 0
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}
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var _ = (fs.NodeUnlinker)((*ITNode)(nil))
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func (f *ITNode) Unlink(ctx context.Context, name string) syscall.Errno {
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delete(inodemap, f.path + "/" + name)
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err := myfs.Remove(f.path + "/" + name)
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if err != nil {
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log.Error("Unlink failed").
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Str("file", f.path + "/" + name).
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Err(err).
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Send()
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return syscall.EROFS
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}
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log.Info("Unlink success").
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Str("file", f.path + "/" + name).
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Err(err).
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Send()
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return 0
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}
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var _ = (fs.NodeRmdirer)((*ITNode)(nil))
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func (f *ITNode) Rmdir(ctx context.Context, name string) syscall.Errno {
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return f.Unlink(ctx, name)
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}
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func main() {
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// This is where we'll mount the FS
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mntDir := "/tmp/x"
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os.Mkdir(mntDir, 0755)
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root := &ITNode{kind: 0}
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server, err := fs.Mount(mntDir, root, &fs.Options{
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MountOptions: fuse.MountOptions{
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// Set to true to see how the file system works.
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Debug: false,
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SingleThreaded: true,
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},
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})
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if err != nil {
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log.Error("Mounting failed").
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Str("target", mntDir).
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Err(err).
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Send()
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return
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}
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dev := Device{};
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log.Info("Mounted on target").
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Str("target", mntDir).
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Send()
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properties[0].f = dev.HeartRateBytes;
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properties[1].f = dev.BatteryLevelBytes;
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properties[2].f = dev.MotionBytes;
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properties[3].f = dev.StepCountBytes;
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properties[4].f = dev.VersionBytes;
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properties[5].f = dev.AddressBytes;
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myfs = &FS{};
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inodemap = make(map[string]uint64)
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// Wait until unmount before exiting
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server.Wait()
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}
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