1a29bf0ee2
* dashboard, p2p: visualize peers * dashboard: change scale to green to red
497 lines
14 KiB
Go
497 lines
14 KiB
Go
// Copyright 2010 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// +build freebsd openbsd netbsd dragonfly darwin
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package fsnotify
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import (
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"errors"
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"fmt"
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"io/ioutil"
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"os"
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"path/filepath"
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"sync"
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"syscall"
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)
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const (
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// Flags (from <sys/event.h>)
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sys_NOTE_DELETE = 0x0001 /* vnode was removed */
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sys_NOTE_WRITE = 0x0002 /* data contents changed */
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sys_NOTE_EXTEND = 0x0004 /* size increased */
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sys_NOTE_ATTRIB = 0x0008 /* attributes changed */
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sys_NOTE_LINK = 0x0010 /* link count changed */
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sys_NOTE_RENAME = 0x0020 /* vnode was renamed */
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sys_NOTE_REVOKE = 0x0040 /* vnode access was revoked */
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// Watch all events
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sys_NOTE_ALLEVENTS = sys_NOTE_DELETE | sys_NOTE_WRITE | sys_NOTE_ATTRIB | sys_NOTE_RENAME
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// Block for 100 ms on each call to kevent
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keventWaitTime = 100e6
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)
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type FileEvent struct {
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mask uint32 // Mask of events
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Name string // File name (optional)
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create bool // set by fsnotify package if found new file
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}
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// IsCreate reports whether the FileEvent was triggered by a creation
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func (e *FileEvent) IsCreate() bool { return e.create }
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// IsDelete reports whether the FileEvent was triggered by a delete
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func (e *FileEvent) IsDelete() bool { return (e.mask & sys_NOTE_DELETE) == sys_NOTE_DELETE }
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// IsModify reports whether the FileEvent was triggered by a file modification
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func (e *FileEvent) IsModify() bool {
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return ((e.mask&sys_NOTE_WRITE) == sys_NOTE_WRITE || (e.mask&sys_NOTE_ATTRIB) == sys_NOTE_ATTRIB)
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}
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// IsRename reports whether the FileEvent was triggered by a change name
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func (e *FileEvent) IsRename() bool { return (e.mask & sys_NOTE_RENAME) == sys_NOTE_RENAME }
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// IsAttrib reports whether the FileEvent was triggered by a change in the file metadata.
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func (e *FileEvent) IsAttrib() bool {
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return (e.mask & sys_NOTE_ATTRIB) == sys_NOTE_ATTRIB
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}
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type Watcher struct {
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mu sync.Mutex // Mutex for the Watcher itself.
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kq int // File descriptor (as returned by the kqueue() syscall)
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watches map[string]int // Map of watched file descriptors (key: path)
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wmut sync.Mutex // Protects access to watches.
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fsnFlags map[string]uint32 // Map of watched files to flags used for filter
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fsnmut sync.Mutex // Protects access to fsnFlags.
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enFlags map[string]uint32 // Map of watched files to evfilt note flags used in kqueue
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enmut sync.Mutex // Protects access to enFlags.
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paths map[int]string // Map of watched paths (key: watch descriptor)
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finfo map[int]os.FileInfo // Map of file information (isDir, isReg; key: watch descriptor)
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pmut sync.Mutex // Protects access to paths and finfo.
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fileExists map[string]bool // Keep track of if we know this file exists (to stop duplicate create events)
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femut sync.Mutex // Protects access to fileExists.
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externalWatches map[string]bool // Map of watches added by user of the library.
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ewmut sync.Mutex // Protects access to externalWatches.
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Error chan error // Errors are sent on this channel
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internalEvent chan *FileEvent // Events are queued on this channel
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Event chan *FileEvent // Events are returned on this channel
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done chan bool // Channel for sending a "quit message" to the reader goroutine
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isClosed bool // Set to true when Close() is first called
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}
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// NewWatcher creates and returns a new kevent instance using kqueue(2)
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func NewWatcher() (*Watcher, error) {
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fd, errno := syscall.Kqueue()
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if fd == -1 {
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return nil, os.NewSyscallError("kqueue", errno)
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}
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w := &Watcher{
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kq: fd,
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watches: make(map[string]int),
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fsnFlags: make(map[string]uint32),
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enFlags: make(map[string]uint32),
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paths: make(map[int]string),
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finfo: make(map[int]os.FileInfo),
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fileExists: make(map[string]bool),
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externalWatches: make(map[string]bool),
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internalEvent: make(chan *FileEvent),
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Event: make(chan *FileEvent),
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Error: make(chan error),
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done: make(chan bool, 1),
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}
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go w.readEvents()
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go w.purgeEvents()
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return w, nil
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}
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// Close closes a kevent watcher instance
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// It sends a message to the reader goroutine to quit and removes all watches
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// associated with the kevent instance
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func (w *Watcher) Close() error {
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w.mu.Lock()
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if w.isClosed {
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w.mu.Unlock()
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return nil
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}
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w.isClosed = true
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w.mu.Unlock()
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// Send "quit" message to the reader goroutine
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w.done <- true
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w.wmut.Lock()
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ws := w.watches
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w.wmut.Unlock()
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for path := range ws {
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w.removeWatch(path)
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}
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return nil
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}
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// AddWatch adds path to the watched file set.
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// The flags are interpreted as described in kevent(2).
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func (w *Watcher) addWatch(path string, flags uint32) error {
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w.mu.Lock()
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if w.isClosed {
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w.mu.Unlock()
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return errors.New("kevent instance already closed")
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}
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w.mu.Unlock()
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watchDir := false
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w.wmut.Lock()
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watchfd, found := w.watches[path]
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w.wmut.Unlock()
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if !found {
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fi, errstat := os.Lstat(path)
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if errstat != nil {
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return errstat
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}
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// don't watch socket
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if fi.Mode()&os.ModeSocket == os.ModeSocket {
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return nil
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}
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// Follow Symlinks
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// Unfortunately, Linux can add bogus symlinks to watch list without
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// issue, and Windows can't do symlinks period (AFAIK). To maintain
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// consistency, we will act like everything is fine. There will simply
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// be no file events for broken symlinks.
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// Hence the returns of nil on errors.
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if fi.Mode()&os.ModeSymlink == os.ModeSymlink {
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path, err := filepath.EvalSymlinks(path)
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if err != nil {
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return nil
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}
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fi, errstat = os.Lstat(path)
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if errstat != nil {
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return nil
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}
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}
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fd, errno := syscall.Open(path, open_FLAGS, 0700)
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if fd == -1 {
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return errno
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}
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watchfd = fd
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w.wmut.Lock()
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w.watches[path] = watchfd
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w.wmut.Unlock()
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w.pmut.Lock()
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w.paths[watchfd] = path
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w.finfo[watchfd] = fi
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w.pmut.Unlock()
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}
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// Watch the directory if it has not been watched before.
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w.pmut.Lock()
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w.enmut.Lock()
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if w.finfo[watchfd].IsDir() &&
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(flags&sys_NOTE_WRITE) == sys_NOTE_WRITE &&
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(!found || (w.enFlags[path]&sys_NOTE_WRITE) != sys_NOTE_WRITE) {
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watchDir = true
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}
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w.enmut.Unlock()
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w.pmut.Unlock()
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w.enmut.Lock()
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w.enFlags[path] = flags
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w.enmut.Unlock()
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var kbuf [1]syscall.Kevent_t
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watchEntry := &kbuf[0]
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watchEntry.Fflags = flags
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syscall.SetKevent(watchEntry, watchfd, syscall.EVFILT_VNODE, syscall.EV_ADD|syscall.EV_CLEAR)
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entryFlags := watchEntry.Flags
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success, errno := syscall.Kevent(w.kq, kbuf[:], nil, nil)
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if success == -1 {
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return errno
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} else if (entryFlags & syscall.EV_ERROR) == syscall.EV_ERROR {
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return errors.New("kevent add error")
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}
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if watchDir {
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errdir := w.watchDirectoryFiles(path)
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if errdir != nil {
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return errdir
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}
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}
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return nil
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}
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// Watch adds path to the watched file set, watching all events.
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func (w *Watcher) watch(path string) error {
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w.ewmut.Lock()
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w.externalWatches[path] = true
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w.ewmut.Unlock()
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return w.addWatch(path, sys_NOTE_ALLEVENTS)
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}
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// RemoveWatch removes path from the watched file set.
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func (w *Watcher) removeWatch(path string) error {
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w.wmut.Lock()
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watchfd, ok := w.watches[path]
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w.wmut.Unlock()
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if !ok {
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return errors.New(fmt.Sprintf("can't remove non-existent kevent watch for: %s", path))
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}
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var kbuf [1]syscall.Kevent_t
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watchEntry := &kbuf[0]
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syscall.SetKevent(watchEntry, watchfd, syscall.EVFILT_VNODE, syscall.EV_DELETE)
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entryFlags := watchEntry.Flags
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success, errno := syscall.Kevent(w.kq, kbuf[:], nil, nil)
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if success == -1 {
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return os.NewSyscallError("kevent_rm_watch", errno)
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} else if (entryFlags & syscall.EV_ERROR) == syscall.EV_ERROR {
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return errors.New("kevent rm error")
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}
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syscall.Close(watchfd)
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w.wmut.Lock()
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delete(w.watches, path)
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w.wmut.Unlock()
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w.enmut.Lock()
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delete(w.enFlags, path)
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w.enmut.Unlock()
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w.pmut.Lock()
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delete(w.paths, watchfd)
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fInfo := w.finfo[watchfd]
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delete(w.finfo, watchfd)
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w.pmut.Unlock()
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// Find all watched paths that are in this directory that are not external.
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if fInfo.IsDir() {
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var pathsToRemove []string
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w.pmut.Lock()
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for _, wpath := range w.paths {
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wdir, _ := filepath.Split(wpath)
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if filepath.Clean(wdir) == filepath.Clean(path) {
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w.ewmut.Lock()
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if !w.externalWatches[wpath] {
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pathsToRemove = append(pathsToRemove, wpath)
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}
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w.ewmut.Unlock()
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}
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}
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w.pmut.Unlock()
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for _, p := range pathsToRemove {
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// Since these are internal, not much sense in propagating error
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// to the user, as that will just confuse them with an error about
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// a path they did not explicitly watch themselves.
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w.removeWatch(p)
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}
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}
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return nil
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}
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// readEvents reads from the kqueue file descriptor, converts the
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// received events into Event objects and sends them via the Event channel
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func (w *Watcher) readEvents() {
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var (
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eventbuf [10]syscall.Kevent_t // Event buffer
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events []syscall.Kevent_t // Received events
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twait *syscall.Timespec // Time to block waiting for events
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n int // Number of events returned from kevent
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errno error // Syscall errno
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)
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events = eventbuf[0:0]
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twait = new(syscall.Timespec)
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*twait = syscall.NsecToTimespec(keventWaitTime)
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for {
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// See if there is a message on the "done" channel
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var done bool
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select {
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case done = <-w.done:
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default:
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}
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// If "done" message is received
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if done {
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errno := syscall.Close(w.kq)
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if errno != nil {
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w.Error <- os.NewSyscallError("close", errno)
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}
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close(w.internalEvent)
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close(w.Error)
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return
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}
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// Get new events
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if len(events) == 0 {
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n, errno = syscall.Kevent(w.kq, nil, eventbuf[:], twait)
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// EINTR is okay, basically the syscall was interrupted before
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// timeout expired.
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if errno != nil && errno != syscall.EINTR {
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w.Error <- os.NewSyscallError("kevent", errno)
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continue
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}
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// Received some events
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if n > 0 {
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events = eventbuf[0:n]
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}
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}
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// Flush the events we received to the events channel
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for len(events) > 0 {
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fileEvent := new(FileEvent)
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watchEvent := &events[0]
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fileEvent.mask = uint32(watchEvent.Fflags)
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w.pmut.Lock()
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fileEvent.Name = w.paths[int(watchEvent.Ident)]
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fileInfo := w.finfo[int(watchEvent.Ident)]
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w.pmut.Unlock()
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if fileInfo != nil && fileInfo.IsDir() && !fileEvent.IsDelete() {
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// Double check to make sure the directory exist. This can happen when
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// we do a rm -fr on a recursively watched folders and we receive a
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// modification event first but the folder has been deleted and later
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// receive the delete event
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if _, err := os.Lstat(fileEvent.Name); os.IsNotExist(err) {
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// mark is as delete event
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fileEvent.mask |= sys_NOTE_DELETE
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}
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}
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if fileInfo != nil && fileInfo.IsDir() && fileEvent.IsModify() && !fileEvent.IsDelete() {
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w.sendDirectoryChangeEvents(fileEvent.Name)
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} else {
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// Send the event on the events channel
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w.internalEvent <- fileEvent
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}
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// Move to next event
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events = events[1:]
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if fileEvent.IsRename() {
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w.removeWatch(fileEvent.Name)
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w.femut.Lock()
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delete(w.fileExists, fileEvent.Name)
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w.femut.Unlock()
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}
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if fileEvent.IsDelete() {
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w.removeWatch(fileEvent.Name)
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w.femut.Lock()
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delete(w.fileExists, fileEvent.Name)
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w.femut.Unlock()
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// Look for a file that may have overwritten this
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// (ie mv f1 f2 will delete f2 then create f2)
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fileDir, _ := filepath.Split(fileEvent.Name)
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fileDir = filepath.Clean(fileDir)
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w.wmut.Lock()
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_, found := w.watches[fileDir]
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w.wmut.Unlock()
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if found {
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// make sure the directory exist before we watch for changes. When we
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// do a recursive watch and perform rm -fr, the parent directory might
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// have gone missing, ignore the missing directory and let the
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// upcoming delete event remove the watch form the parent folder
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if _, err := os.Lstat(fileDir); !os.IsNotExist(err) {
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w.sendDirectoryChangeEvents(fileDir)
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}
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}
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}
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}
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}
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}
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func (w *Watcher) watchDirectoryFiles(dirPath string) error {
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// Get all files
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files, err := ioutil.ReadDir(dirPath)
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if err != nil {
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return err
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}
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// Search for new files
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for _, fileInfo := range files {
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filePath := filepath.Join(dirPath, fileInfo.Name())
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// Inherit fsnFlags from parent directory
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w.fsnmut.Lock()
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if flags, found := w.fsnFlags[dirPath]; found {
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w.fsnFlags[filePath] = flags
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} else {
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w.fsnFlags[filePath] = FSN_ALL
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}
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w.fsnmut.Unlock()
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if fileInfo.IsDir() == false {
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// Watch file to mimic linux fsnotify
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e := w.addWatch(filePath, sys_NOTE_ALLEVENTS)
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if e != nil {
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return e
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}
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} else {
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// If the user is currently watching directory
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// we want to preserve the flags used
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w.enmut.Lock()
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currFlags, found := w.enFlags[filePath]
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w.enmut.Unlock()
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var newFlags uint32 = sys_NOTE_DELETE
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if found {
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newFlags |= currFlags
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}
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// Linux gives deletes if not explicitly watching
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e := w.addWatch(filePath, newFlags)
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if e != nil {
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return e
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}
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}
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w.femut.Lock()
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w.fileExists[filePath] = true
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w.femut.Unlock()
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}
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return nil
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}
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// sendDirectoryEvents searches the directory for newly created files
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// and sends them over the event channel. This functionality is to have
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// the BSD version of fsnotify match linux fsnotify which provides a
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// create event for files created in a watched directory.
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func (w *Watcher) sendDirectoryChangeEvents(dirPath string) {
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// Get all files
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files, err := ioutil.ReadDir(dirPath)
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if err != nil {
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w.Error <- err
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}
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// Search for new files
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for _, fileInfo := range files {
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filePath := filepath.Join(dirPath, fileInfo.Name())
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w.femut.Lock()
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_, doesExist := w.fileExists[filePath]
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w.femut.Unlock()
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if !doesExist {
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// Inherit fsnFlags from parent directory
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w.fsnmut.Lock()
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if flags, found := w.fsnFlags[dirPath]; found {
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w.fsnFlags[filePath] = flags
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} else {
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w.fsnFlags[filePath] = FSN_ALL
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}
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w.fsnmut.Unlock()
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// Send create event
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fileEvent := new(FileEvent)
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fileEvent.Name = filePath
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fileEvent.create = true
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w.internalEvent <- fileEvent
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}
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w.femut.Lock()
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w.fileExists[filePath] = true
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w.femut.Unlock()
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}
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w.watchDirectoryFiles(dirPath)
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}
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