488 lines
16 KiB
C++
488 lines
16 KiB
C++
// Copyright (c) 2012 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "base/files/file_path_watcher.h"
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#include <errno.h>
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#include <string.h>
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#include <sys/inotify.h>
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#include <sys/ioctl.h>
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#include <sys/select.h>
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#include <unistd.h>
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#include <algorithm>
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#include <set>
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#include <utility>
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#include <vector>
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#include "base/bind.h"
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#include "base/containers/hash_tables.h"
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#include "base/file_util.h"
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#include "base/files/file_path.h"
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#include "base/lazy_instance.h"
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#include "base/location.h"
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#include "base/logging.h"
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#include "base/memory/scoped_ptr.h"
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#include "base/message_loop/message_loop.h"
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#include "base/message_loop/message_loop_proxy.h"
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#include "base/posix/eintr_wrapper.h"
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#include "base/synchronization/lock.h"
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#include "base/threading/thread.h"
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namespace base {
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namespace {
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class FilePathWatcherImpl;
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// Singleton to manage all inotify watches.
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// TODO(tony): It would be nice if this wasn't a singleton.
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// http://crbug.com/38174
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class InotifyReader {
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public:
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typedef int Watch; // Watch descriptor used by AddWatch and RemoveWatch.
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static const Watch kInvalidWatch = -1;
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// Watch directory |path| for changes. |watcher| will be notified on each
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// change. Returns kInvalidWatch on failure.
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Watch AddWatch(const FilePath& path, FilePathWatcherImpl* watcher);
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// Remove |watch|. Returns true on success.
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bool RemoveWatch(Watch watch, FilePathWatcherImpl* watcher);
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// Callback for InotifyReaderTask.
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void OnInotifyEvent(const inotify_event* event);
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private:
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friend struct ::base::DefaultLazyInstanceTraits<InotifyReader>;
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typedef std::set<FilePathWatcherImpl*> WatcherSet;
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InotifyReader();
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~InotifyReader();
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// We keep track of which delegates want to be notified on which watches.
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base::hash_map<Watch, WatcherSet> watchers_;
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// Lock to protect watchers_.
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base::Lock lock_;
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// Separate thread on which we run blocking read for inotify events.
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base::Thread thread_;
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// File descriptor returned by inotify_init.
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const int inotify_fd_;
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// Use self-pipe trick to unblock select during shutdown.
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int shutdown_pipe_[2];
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// Flag set to true when startup was successful.
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bool valid_;
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DISALLOW_COPY_AND_ASSIGN(InotifyReader);
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};
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class FilePathWatcherImpl : public FilePathWatcher::PlatformDelegate,
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public MessageLoop::DestructionObserver {
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public:
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FilePathWatcherImpl();
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// Called for each event coming from the watch. |fired_watch| identifies the
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// watch that fired, |child| indicates what has changed, and is relative to
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// the currently watched path for |fired_watch|. The flag |created| is true if
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// the object appears.
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void OnFilePathChanged(InotifyReader::Watch fired_watch,
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const FilePath::StringType& child,
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bool created);
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// Start watching |path| for changes and notify |delegate| on each change.
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// Returns true if watch for |path| has been added successfully.
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virtual bool Watch(const FilePath& path,
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bool recursive,
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const FilePathWatcher::Callback& callback) OVERRIDE;
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// Cancel the watch. This unregisters the instance with InotifyReader.
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virtual void Cancel() OVERRIDE;
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// Deletion of the FilePathWatcher will call Cancel() to dispose of this
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// object in the right thread. This also observes destruction of the required
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// cleanup thread, in case it quits before Cancel() is called.
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virtual void WillDestroyCurrentMessageLoop() OVERRIDE;
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protected:
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virtual ~FilePathWatcherImpl() {}
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private:
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// Cleans up and stops observing the |message_loop_| thread.
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virtual void CancelOnMessageLoopThread() OVERRIDE;
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// Inotify watches are installed for all directory components of |target_|. A
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// WatchEntry instance holds the watch descriptor for a component and the
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// subdirectory for that identifies the next component. If a symbolic link
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// is being watched, the target of the link is also kept.
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struct WatchEntry {
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WatchEntry(InotifyReader::Watch watch, const FilePath::StringType& subdir)
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: watch_(watch),
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subdir_(subdir) {}
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InotifyReader::Watch watch_;
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FilePath::StringType subdir_;
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FilePath::StringType linkname_;
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};
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typedef std::vector<WatchEntry> WatchVector;
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// Reconfigure to watch for the most specific parent directory of |target_|
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// that exists. Updates |watched_path_|. Returns true on success.
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bool UpdateWatches() WARN_UNUSED_RESULT;
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// Callback to notify upon changes.
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FilePathWatcher::Callback callback_;
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// The file or directory we're supposed to watch.
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FilePath target_;
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// The vector of watches and next component names for all path components,
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// starting at the root directory. The last entry corresponds to the watch for
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// |target_| and always stores an empty next component name in |subdir_|.
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WatchVector watches_;
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DISALLOW_COPY_AND_ASSIGN(FilePathWatcherImpl);
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};
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void InotifyReaderCallback(InotifyReader* reader, int inotify_fd,
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int shutdown_fd) {
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// Make sure the file descriptors are good for use with select().
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CHECK_LE(0, inotify_fd);
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CHECK_GT(FD_SETSIZE, inotify_fd);
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CHECK_LE(0, shutdown_fd);
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CHECK_GT(FD_SETSIZE, shutdown_fd);
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while (true) {
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fd_set rfds;
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FD_ZERO(&rfds);
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FD_SET(inotify_fd, &rfds);
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FD_SET(shutdown_fd, &rfds);
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// Wait until some inotify events are available.
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int select_result =
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HANDLE_EINTR(select(std::max(inotify_fd, shutdown_fd) + 1,
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&rfds, NULL, NULL, NULL));
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if (select_result < 0) {
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DPLOG(WARNING) << "select failed";
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return;
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}
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if (FD_ISSET(shutdown_fd, &rfds))
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return;
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// Adjust buffer size to current event queue size.
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int buffer_size;
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int ioctl_result = HANDLE_EINTR(ioctl(inotify_fd, FIONREAD,
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&buffer_size));
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if (ioctl_result != 0) {
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DPLOG(WARNING) << "ioctl failed";
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return;
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}
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std::vector<char> buffer(buffer_size);
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ssize_t bytes_read = HANDLE_EINTR(read(inotify_fd, &buffer[0],
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buffer_size));
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if (bytes_read < 0) {
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DPLOG(WARNING) << "read from inotify fd failed";
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return;
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}
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ssize_t i = 0;
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while (i < bytes_read) {
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inotify_event* event = reinterpret_cast<inotify_event*>(&buffer[i]);
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size_t event_size = sizeof(inotify_event) + event->len;
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DCHECK(i + event_size <= static_cast<size_t>(bytes_read));
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reader->OnInotifyEvent(event);
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i += event_size;
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}
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}
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}
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static base::LazyInstance<InotifyReader>::Leaky g_inotify_reader =
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LAZY_INSTANCE_INITIALIZER;
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InotifyReader::InotifyReader()
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: thread_("inotify_reader"),
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inotify_fd_(inotify_init()),
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valid_(false) {
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shutdown_pipe_[0] = -1;
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shutdown_pipe_[1] = -1;
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if (inotify_fd_ >= 0 && pipe(shutdown_pipe_) == 0 && thread_.Start()) {
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thread_.message_loop()->PostTask(
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FROM_HERE, base::Bind(&InotifyReaderCallback, this, inotify_fd_,
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shutdown_pipe_[0]));
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valid_ = true;
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}
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}
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InotifyReader::~InotifyReader() {
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if (valid_) {
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// Write to the self-pipe so that the select call in InotifyReaderTask
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// returns.
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ssize_t ret = HANDLE_EINTR(write(shutdown_pipe_[1], "", 1));
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DPCHECK(ret > 0);
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DCHECK_EQ(ret, 1);
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thread_.Stop();
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}
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if (inotify_fd_ >= 0)
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close(inotify_fd_);
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if (shutdown_pipe_[0] >= 0)
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close(shutdown_pipe_[0]);
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if (shutdown_pipe_[1] >= 0)
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close(shutdown_pipe_[1]);
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}
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InotifyReader::Watch InotifyReader::AddWatch(
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const FilePath& path, FilePathWatcherImpl* watcher) {
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if (!valid_)
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return kInvalidWatch;
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base::AutoLock auto_lock(lock_);
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Watch watch = inotify_add_watch(inotify_fd_, path.value().c_str(),
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IN_CREATE | IN_DELETE |
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IN_CLOSE_WRITE | IN_MOVE |
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IN_ONLYDIR);
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if (watch == kInvalidWatch)
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return kInvalidWatch;
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watchers_[watch].insert(watcher);
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return watch;
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}
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bool InotifyReader::RemoveWatch(Watch watch,
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FilePathWatcherImpl* watcher) {
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if (!valid_)
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return false;
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base::AutoLock auto_lock(lock_);
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watchers_[watch].erase(watcher);
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if (watchers_[watch].empty()) {
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watchers_.erase(watch);
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return (inotify_rm_watch(inotify_fd_, watch) == 0);
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}
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return true;
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}
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void InotifyReader::OnInotifyEvent(const inotify_event* event) {
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if (event->mask & IN_IGNORED)
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return;
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FilePath::StringType child(event->len ? event->name : FILE_PATH_LITERAL(""));
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base::AutoLock auto_lock(lock_);
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for (WatcherSet::iterator watcher = watchers_[event->wd].begin();
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watcher != watchers_[event->wd].end();
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++watcher) {
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(*watcher)->OnFilePathChanged(event->wd,
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child,
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event->mask & (IN_CREATE | IN_MOVED_TO));
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}
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}
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FilePathWatcherImpl::FilePathWatcherImpl() {
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}
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void FilePathWatcherImpl::OnFilePathChanged(InotifyReader::Watch fired_watch,
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const FilePath::StringType& child,
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bool created) {
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if (!message_loop()->BelongsToCurrentThread()) {
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// Switch to message_loop_ to access watches_ safely.
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message_loop()->PostTask(FROM_HERE,
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base::Bind(&FilePathWatcherImpl::OnFilePathChanged,
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this,
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fired_watch,
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child,
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created));
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return;
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}
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DCHECK(MessageLoopForIO::current());
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// Find the entry in |watches_| that corresponds to |fired_watch|.
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WatchVector::const_iterator watch_entry(watches_.begin());
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for ( ; watch_entry != watches_.end(); ++watch_entry) {
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if (fired_watch == watch_entry->watch_) {
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// Check whether a path component of |target_| changed.
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bool change_on_target_path = child.empty() ||
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((child == watch_entry->subdir_) && watch_entry->linkname_.empty()) ||
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(child == watch_entry->linkname_);
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// Check whether the change references |target_| or a direct child.
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DCHECK(watch_entry->subdir_.empty() ||
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(watch_entry + 1) != watches_.end());
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bool target_changed =
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(watch_entry->subdir_.empty() && (child == watch_entry->linkname_)) ||
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(watch_entry->subdir_.empty() && watch_entry->linkname_.empty()) ||
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(watch_entry->subdir_ == child && (watch_entry + 1)->subdir_.empty());
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// Update watches if a directory component of the |target_| path
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// (dis)appears. Note that we don't add the additional restriction
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// of checking the event mask to see if it is for a directory here
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// as changes to symlinks on the target path will not have
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// IN_ISDIR set in the event masks. As a result we may sometimes
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// call UpdateWatches() unnecessarily.
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if (change_on_target_path && !UpdateWatches()) {
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callback_.Run(target_, true /* error */);
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return;
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}
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// Report the following events:
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// - The target or a direct child of the target got changed (in case the
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// watched path refers to a directory).
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// - One of the parent directories got moved or deleted, since the target
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// disappears in this case.
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// - One of the parent directories appears. The event corresponding to
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// the target appearing might have been missed in this case, so
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// recheck.
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if (target_changed ||
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(change_on_target_path && !created) ||
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(change_on_target_path && PathExists(target_))) {
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callback_.Run(target_, false);
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return;
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}
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}
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}
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}
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bool FilePathWatcherImpl::Watch(const FilePath& path,
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bool recursive,
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const FilePathWatcher::Callback& callback) {
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DCHECK(target_.empty());
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DCHECK(MessageLoopForIO::current());
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if (recursive) {
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// Recursive watch is not supported on this platform.
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NOTIMPLEMENTED();
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return false;
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}
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set_message_loop(base::MessageLoopProxy::current().get());
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callback_ = callback;
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target_ = path;
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MessageLoop::current()->AddDestructionObserver(this);
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std::vector<FilePath::StringType> comps;
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target_.GetComponents(&comps);
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DCHECK(!comps.empty());
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std::vector<FilePath::StringType>::const_iterator comp = comps.begin();
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for (++comp; comp != comps.end(); ++comp)
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watches_.push_back(WatchEntry(InotifyReader::kInvalidWatch, *comp));
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watches_.push_back(WatchEntry(InotifyReader::kInvalidWatch,
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FilePath::StringType()));
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return UpdateWatches();
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}
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void FilePathWatcherImpl::Cancel() {
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if (callback_.is_null()) {
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// Watch was never called, or the |message_loop_| thread is already gone.
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set_cancelled();
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return;
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}
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// Switch to the message_loop_ if necessary so we can access |watches_|.
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if (!message_loop()->BelongsToCurrentThread()) {
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message_loop()->PostTask(FROM_HERE,
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base::Bind(&FilePathWatcher::CancelWatch,
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make_scoped_refptr(this)));
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} else {
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CancelOnMessageLoopThread();
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}
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}
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void FilePathWatcherImpl::CancelOnMessageLoopThread() {
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if (!is_cancelled())
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set_cancelled();
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if (!callback_.is_null()) {
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MessageLoop::current()->RemoveDestructionObserver(this);
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callback_.Reset();
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}
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for (WatchVector::iterator watch_entry(watches_.begin());
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watch_entry != watches_.end(); ++watch_entry) {
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if (watch_entry->watch_ != InotifyReader::kInvalidWatch)
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g_inotify_reader.Get().RemoveWatch(watch_entry->watch_, this);
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}
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watches_.clear();
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target_.clear();
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}
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void FilePathWatcherImpl::WillDestroyCurrentMessageLoop() {
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CancelOnMessageLoopThread();
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}
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bool FilePathWatcherImpl::UpdateWatches() {
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// Ensure this runs on the |message_loop_| exclusively in order to avoid
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// concurrency issues.
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DCHECK(message_loop()->BelongsToCurrentThread());
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// Walk the list of watches and update them as we go.
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FilePath path(FILE_PATH_LITERAL("/"));
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bool path_valid = true;
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for (WatchVector::iterator watch_entry(watches_.begin());
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watch_entry != watches_.end(); ++watch_entry) {
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InotifyReader::Watch old_watch = watch_entry->watch_;
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if (path_valid) {
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watch_entry->watch_ = g_inotify_reader.Get().AddWatch(path, this);
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if ((watch_entry->watch_ == InotifyReader::kInvalidWatch) &&
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file_util::IsLink(path)) {
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FilePath link;
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if (file_util::ReadSymbolicLink(path, &link)) {
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if (!link.IsAbsolute())
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link = path.DirName().Append(link);
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// Try watching symlink target directory. If the link target is "/",
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// then we shouldn't get here in normal situations and if we do, we'd
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// watch "/" for changes to a component "/" which is harmless so no
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// special treatment of this case is required.
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watch_entry->watch_ =
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g_inotify_reader.Get().AddWatch(link.DirName(), this);
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if (watch_entry->watch_ != InotifyReader::kInvalidWatch) {
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watch_entry->linkname_ = link.BaseName().value();
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} else {
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DPLOG(WARNING) << "Watch failed for " << link.DirName().value();
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// TODO(craig) Symlinks only work if the parent directory
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// for the target exist. Ideally we should make sure we've
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// watched all the components of the symlink path for
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// changes. See crbug.com/91561 for details.
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}
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}
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}
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if (watch_entry->watch_ == InotifyReader::kInvalidWatch) {
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path_valid = false;
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}
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} else {
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watch_entry->watch_ = InotifyReader::kInvalidWatch;
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}
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if (old_watch != InotifyReader::kInvalidWatch &&
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old_watch != watch_entry->watch_) {
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g_inotify_reader.Get().RemoveWatch(old_watch, this);
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}
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path = path.Append(watch_entry->subdir_);
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}
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return true;
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}
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} // namespace
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FilePathWatcher::FilePathWatcher() {
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impl_ = new FilePathWatcherImpl();
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}
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} // namespace base
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