bolt-device.c 19.6 KB
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/*
 * Copyright © 2017 Red Hat, Inc
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 * License as published by the Free Software Foundation; either
 * version 2.1 of the License, or (at your option) any later version.
 *
 * This library is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.	 See the GNU
 * Lesser General Public License for more details.
 *
 * You should have received a copy of the GNU Lesser General Public
 * License along with this library. If not, see <http://www.gnu.org/licenses/>.
 *
 * Authors:
 *       Christian J. Kellner <christian@kellner.me>
 */

#include "config.h"

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#include "bolt-dbus.h"
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#include "bolt-device.h"
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#include "bolt-enums.h"
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#include "bolt-error.h"
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#include "bolt-io.h"
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#include "bolt-manager.h"
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#include "bolt-store.h"
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#include <dirent.h>
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#include <libudev.h>

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/* dbus method calls */
static gboolean    handle_authorize (BoltDBusDevice        *object,
                                     GDBusMethodInvocation *invocation,
                                     gpointer               user_data);

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static gboolean    handle_forget (BoltDBusDevice        *object,
                                  GDBusMethodInvocation *invocation,
                                  gpointer               user_data);

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struct _BoltDevice
{
  BoltDBusDeviceSkeleton object;

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  /* weak reference */
  BoltManager *mgr;
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  char        *dbus_path;

  char        *uid;
  char        *name;
  char        *vendor;
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  BoltStatus   status;

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  /* when device is attached */
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  char        *syspath;
  BoltSecurity security;
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  /* when device is stored */
  BoltPolicy policy;
  guint      store; /* currently: 0,no / 1,yes */
  guint      key; /* currently 0,no / 1,yes */
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};


enum {
  PROP_0,

  PROP_UID,
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  PROP_NAME,
  PROP_VENDOR,
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  PROP_STATUS,
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  PROP_SYSFS,
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  PROP_SECURITY,
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  PROP_STORED,
  PROP_POLICY,
  PROP_HAVE_KEY,

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  PROP_LAST
};


G_DEFINE_TYPE (BoltDevice,
               bolt_device,
               BOLT_DBUS_TYPE_DEVICE_SKELETON)

static void
bolt_device_finalize (GObject *object)
{
  BoltDevice *dev = BOLT_DEVICE (object);

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  g_free (dev->dbus_path);

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  g_free (dev->uid);
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  g_free (dev->name);
  g_free (dev->vendor);
  g_free (dev->syspath);
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  G_OBJECT_CLASS (bolt_device_parent_class)->finalize (object);
}

static void
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bolt_device_init (BoltDevice *dev)
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{
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  g_signal_connect (dev, "handle-authorize",
                    G_CALLBACK (handle_authorize), NULL);
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  g_signal_connect (dev, "handle-forget",
                    G_CALLBACK (handle_forget), NULL);
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}

static void
bolt_device_get_property (GObject    *object,
                          guint       prop_id,
                          GValue     *value,
                          GParamSpec *pspec)
{
  BoltDevice *dev = BOLT_DEVICE (object);

  switch (prop_id)
    {
    case PROP_UID:
      g_value_set_string (value, dev->uid);
      break;

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    case PROP_NAME:
      g_value_set_string (value, dev->name);
      break;

    case PROP_VENDOR:
      g_value_set_string (value, dev->vendor);
      break;

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    case PROP_STATUS:
      g_value_set_uint (value, dev->status);
      break;

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    case PROP_SYSFS:
      g_value_set_string (value, dev->syspath);
      break;

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    case PROP_SECURITY:
      g_value_set_uint (value, dev->security);
      break;

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    case PROP_STORED:
      g_value_set_uint (value, dev->store);
      break;

    case PROP_POLICY:
      g_value_set_uint (value, dev->policy);
      break;

    case PROP_HAVE_KEY:
      g_value_set_uint (value, dev->key);
      break;

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    default:
      G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
    }
}

static void
bolt_device_set_property (GObject      *object,
                          guint         prop_id,
                          const GValue *value,
                          GParamSpec   *pspec)
{
  BoltDevice *dev = BOLT_DEVICE (object);

  switch (prop_id)
    {
    case PROP_UID:
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      g_return_if_fail (dev->uid == NULL);
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      dev->uid = g_value_dup_string (value);
      break;

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    case PROP_NAME:
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      g_clear_pointer (&dev->name, g_free);
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      dev->name = g_value_dup_string (value);
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      break;

    case PROP_VENDOR:
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      g_clear_pointer (&dev->vendor, g_free);
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      dev->vendor = g_value_dup_string (value);
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      break;

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    case PROP_STATUS:
      dev->status = g_value_get_uint (value);
      break;

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    case PROP_SYSFS:
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      g_clear_pointer (&dev->syspath, g_free);
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      dev->syspath = g_value_dup_string (value);
      break;
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    case PROP_SECURITY:
      dev->security = g_value_get_uint (value);
      break;
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    case PROP_STORED:
      dev->store = g_value_get_uint (value);
      break;

    case PROP_POLICY:
      dev->policy = g_value_get_uint (value);
      break;

    case PROP_HAVE_KEY:
      dev->key = g_value_get_uint (value);
      break;

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    default:
      G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
    }
}


static void
bolt_device_class_init (BoltDeviceClass *klass)
{
  GObjectClass *gobject_class = G_OBJECT_CLASS (klass);

  gobject_class->finalize = bolt_device_finalize;

  gobject_class->get_property = bolt_device_get_property;
  gobject_class->set_property = bolt_device_set_property;

  g_object_class_override_property (gobject_class,
                                    PROP_UID,
                                    "uid");
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  g_object_class_override_property (gobject_class,
                                    PROP_NAME,
                                    "name");

  g_object_class_override_property (gobject_class,
                                    PROP_VENDOR,
                                    "vendor");

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  g_object_class_override_property (gobject_class,
                                    PROP_STATUS,
                                    "status");

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  g_object_class_override_property (gobject_class,
                                    PROP_SYSFS,
                                    "sysfs-path");

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  g_object_class_override_property (gobject_class,
                                    PROP_SECURITY,
                                    "security");

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  g_object_class_override_property (gobject_class,
                                    PROP_STORED,
                                    "store");

  g_object_class_override_property (gobject_class,
                                    PROP_POLICY,
                                    "policy");

  g_object_class_override_property (gobject_class,
                                    PROP_HAVE_KEY,
                                    "key");

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}
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/* internal methods */

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static const char *
read_sysattr_name (struct udev_device *udev, const char *attr, GError **error)
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{
  g_autofree char *s = NULL;
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  const char *v;
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  s = g_strdup_printf ("%s_name", attr);
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  v = udev_device_get_sysattr_value (udev, s);

  if (v != NULL)
    return v;

  v = udev_device_get_sysattr_value (udev, attr);
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  if (v == NULL)
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    g_set_error (error,
                 BOLT_ERROR, BOLT_ERROR_UDEV,
                 "failed to get sysfs attr: %s", attr);
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  return v;
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}

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static gint
read_sysfs_attr_int (struct udev_device *device, const char *attr)
{
  const char *str;
  char *end;
  gint64 val;

  str = udev_device_get_sysattr_value (device, attr);

  if (str == NULL)
    return 0;

  val = g_ascii_strtoull (str, &end, 0);

  if (str == end)
    return 0;

  if (val > G_MAXINT || val < G_MININT)
    {
      g_warning ("value read from sysfs outside of guint's range.");
      val = 0;
    }

  return (gint) val;
}

static gboolean
string_nonzero (const char *str)
{
  return str != NULL && str[0] != '\0';
}

static BoltStatus
bolt_status_from_udev (struct udev_device *udev)
{
  gint authorized;
  const char *key;
  gboolean have_key;

  authorized = read_sysfs_attr_int (udev, "authorized");

  if (authorized == 2)
    return BOLT_STATUS_AUTHORIZED_SECURE;

  key = udev_device_get_sysattr_value (udev, "key");
  have_key = string_nonzero (key);

  if (authorized == 1)
    {
      if (have_key)
        return BOLT_STATUS_AUTHORIZED_NEWKEY;
      else
        return BOLT_STATUS_AUTHORIZED;
    }
  else if (authorized == 0 && have_key)
    {
      return BOLT_STATUS_AUTH_ERROR;
    }

  return BOLT_STATUS_CONNECTED;
}

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static struct udev_device *
domain_for_device (struct udev_device *udev)
{
  struct udev_device *parent;
  gboolean found;

  found = FALSE;
  parent = udev;
  do
    {
      const char *name;
      parent = udev_device_get_parent (parent);
      if (!parent)
        break;

      name = udev_device_get_sysname (parent);
      found = g_str_has_prefix (name, "domain");

    }
  while (!found);

  return found ? parent : NULL;
}

static BoltSecurity
security_for_udev (struct udev_device *udev)
{
  struct udev_device *parent = NULL;
  const char *v;
  BoltSecurity s;

  parent = domain_for_device (udev);
  if (parent == NULL)
    {
      g_warning ("Failed to determine domain device");
      return BOLT_SECURITY_NONE;
    }

  v = udev_device_get_sysattr_value (parent, "security");
  s = bolt_security_from_string (v);

  return s;
}

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/*  device authorization */

typedef struct
{
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  BoltSecurity level;
  BoltKey     *key;
  BoltPolicy   policy;
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  /* the outer callback  */
  AuthCallback callback;
  gpointer     user_data;

} AuthData;

static void
auth_data_free (gpointer data)
{
  AuthData *auth = data;

  g_debug ("freeing auth data");
  g_slice_free (AuthData, auth);
}

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static gboolean
authorize_device_internal (BoltDevice *dev,
                           AuthData   *auth,
                           GError    **error)
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{
  g_autoptr(DIR) devdir = NULL;
  gboolean ok;

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  devdir = bolt_opendir (dev->syspath, error);
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  if (devdir == NULL)
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    return FALSE;
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  ok = bolt_verify_uid (dirfd (devdir), dev->uid, error);
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  if (!ok)
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    return FALSE;

  if (auth->key)
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    {
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      int keyfd;

      g_debug ("[%s] writing key", dev->uid);
      keyfd = bolt_openat (dirfd (devdir), "key", O_WRONLY | O_CLOEXEC, error);
      if (keyfd < 0)
        return FALSE;

      ok = bolt_key_write_to (auth->key, keyfd, &auth->level, error);
      close (keyfd);
      if (!ok)
        return FALSE;
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    }

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  g_debug ("[%s] writing authorization", dev->uid);
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  ok = bolt_write_char_at (dirfd (devdir),
                           "authorized",
                           auth->level,
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                           error);

  return ok;
}

static void
authorize_in_thread (GTask        *task,
                     gpointer      source,
                     gpointer      context,
                     GCancellable *cancellable)
{
  g_autoptr(GError) error = NULL;
  BoltDevice *dev = source;
  AuthData *auth = context;
  gboolean ok;

  ok = authorize_device_internal (dev, auth, &error);
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  if (!ok)
    {
      g_task_return_new_error (task,
                               BOLT_ERROR, BOLT_ERROR_FAILED,
                               "failed to authorize device: %s",
                               error->message);
    }
  else
    {
      g_task_return_boolean (task, TRUE);
    }
}

static void
authorize_thread_done (GObject      *object,
                       GAsyncResult *res,
                       gpointer      user_data)
{
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  g_autoptr(GError) error = NULL;
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  BoltDevice *dev = BOLT_DEVICE (object);
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  BoltStore *store;
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  GTask *task = G_TASK (res);
  AuthData *auth;
  gboolean ok;

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  store = bolt_manager_get_store (dev->mgr);
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  auth = g_task_get_task_data (task);
  ok = g_task_propagate_boolean (task, &error);

  if (ok)
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    {
      if (auth->level == BOLT_SECURITY_SECURE)
        dev->status = BOLT_STATUS_AUTHORIZED_SECURE;
      else if (auth->key)
        dev->status = BOLT_STATUS_AUTHORIZED_NEWKEY;
      else
        dev->status = BOLT_STATUS_AUTHORIZED;

      if (!dev->store)
        {
          ok = bolt_store_put_device (store,
                                      dev,
                                      BOLT_POLICY_AUTO,
                                      auth->key,
                                      &error);
        }
    }
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  else
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    {
      dev->status = BOLT_STATUS_AUTH_ERROR;
    }

  g_object_notify (G_OBJECT (dev), "status");
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  if (auth->callback)
    auth->callback (dev, ok, &error, auth->user_data);
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}

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gboolean
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bolt_device_authorize (BoltDevice  *dev,
                       AuthCallback callback,
                       gpointer     user_data,
                       GError     **error)
{
  AuthData *auth_data;
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  BoltStore *store;
  BoltSecurity level;
  BoltKey *key;
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  GTask *task;

  if (dev->status != BOLT_STATUS_CONNECTED &&
      dev->status != BOLT_STATUS_AUTH_ERROR)
    {
      g_set_error (error, BOLT_ERROR, BOLT_ERROR_FAILED,
                   "wrong device state: %u", dev->status);
      return FALSE;
    }

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  store = bolt_manager_get_store (dev->mgr);
  level = dev->security;
  key = NULL;
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  if (level == BOLT_SECURITY_SECURE)
    {
      if (!dev->store)
        key = bolt_store_create_key (store, dev->uid, error);
      else if (dev->key)
        key = bolt_store_get_key (store, dev->uid, error);
      else
        level = BOLT_SECURITY_USER;
    }

  if (level == BOLT_SECURITY_SECURE && key == NULL)
    return FALSE;

  task = g_task_new (dev, NULL, authorize_thread_done, NULL);
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  auth_data = g_slice_new (AuthData);
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  auth_data->level = level;
  auth_data->key = key;
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  auth_data->callback = callback;
  auth_data->user_data = user_data;
  g_task_set_task_data (task, auth_data, auth_data_free);

  dev->status = BOLT_STATUS_AUTHORIZING;
  g_object_notify (G_OBJECT (dev), "status");

  g_task_run_in_thread (task, authorize_in_thread);
  g_object_unref (task);

  return TRUE;
}


/* dbus methods */

static void
handle_authorize_done (BoltDevice *dev,
                       gboolean    ok,
                       GError    **error,
                       gpointer    user_data)
{
  GDBusMethodInvocation *invocation = user_data;

  if (ok)
    {
      bolt_dbus_device_complete_authorize (BOLT_DBUS_DEVICE (dev),
                                           invocation);
    }
  else
    {
      g_dbus_method_invocation_take_error (invocation, *error);
      error = NULL;
    }
}

static gboolean
handle_authorize (BoltDBusDevice        *object,
                  GDBusMethodInvocation *invocation,
                  gpointer               user_data)
{
  BoltDevice *dev = BOLT_DEVICE (object);
  GError *error = NULL;
  gboolean ok;

  ok = bolt_device_authorize (dev,
                              handle_authorize_done,
                              invocation,
                              &error);

  if (!ok)
    g_dbus_method_invocation_take_error (invocation, error);

  return TRUE;
}

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static gboolean
handle_forget (BoltDBusDevice        *object,
               GDBusMethodInvocation *inv,
               gpointer               user_data)
{
  g_autoptr(GError) key_err = NULL;
  g_autoptr(GError) dev_err = NULL;
  BoltDevice *dev;
  BoltStore *store;
  gboolean key_ok, dev_ok;

  dev = BOLT_DEVICE (object);
  store = bolt_manager_get_store (dev->mgr);

  key_ok = bolt_store_del_key (store, dev->uid, &key_err);
  if (!key_ok && bolt_err_notfound (key_err))
    key_ok = TRUE;

  dev_ok = bolt_store_del_device (store, dev->uid, &dev_err);

  g_debug ("[%s] forgetting: key: %d, dev: %d", dev->uid, key_ok, dev_ok);

  if (!dev_ok)
    g_dbus_method_invocation_take_error (inv, g_steal_pointer (&dev_err));
  else if (!key_ok)
    g_dbus_method_invocation_take_error (inv, g_steal_pointer (&key_err));
  else
    bolt_dbus_device_complete_forget (BOLT_DBUS_DEVICE (dev), inv);

  return TRUE;
}

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/* public methods */

BoltDevice *
bolt_device_new_for_udev (BoltManager        *mgr,
                          struct udev_device *udev,
                          GError            **error)
{
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  const char *uid;
  const char *name;
  const char *vendor;
  const char *syspath;
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  BoltDevice *dev;
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  uid = udev_device_get_sysattr_value (udev, "unique_id");
  if (udev == NULL)
    {
      g_set_error (error, BOLT_ERROR, BOLT_ERROR_UDEV,
                   "could not get unique_id for udev");
      return NULL;
    }
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  syspath = udev_device_get_syspath (udev);
  g_return_val_if_fail (syspath != NULL, NULL);
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  name = read_sysattr_name (udev, "device", error);
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  if (name == NULL)
    return NULL;

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  vendor = read_sysattr_name (udev, "vendor", error);
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  if (vendor == NULL)
    return NULL;
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  dev = g_object_new (BOLT_TYPE_DEVICE,
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                      "uid", uid,
                      "name", name,
                      "vendor", vendor,
                      "sysfs-path", syspath,
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                      NULL);

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  dev->status = bolt_status_from_udev (udev);
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  dev->security = security_for_udev (udev);
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  bolt_device_set_manager (dev, mgr);

  return dev;
}

void
bolt_device_set_manager (BoltDevice  *dev,
                         BoltManager *mgr)
{
  if (dev->mgr != NULL)
    g_object_remove_weak_pointer (G_OBJECT (mgr),
                                  (gpointer *) &dev->mgr);

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  dev->mgr = mgr;
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  g_object_add_weak_pointer (G_OBJECT (mgr),
                             (gpointer *) &dev->mgr);
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}

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const char *
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bolt_device_export (BoltDevice      *device,
                    GDBusConnection *connection,
                    GError         **error)
{
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  const char *path;
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  gboolean ok;
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  g_return_val_if_fail (BOLT_IS_DEVICE (device), FALSE);
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  path = bolt_device_get_object_path (device);
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  ok = g_dbus_interface_skeleton_export (G_DBUS_INTERFACE_SKELETON (device),
                                         connection,
                                         path,
                                         error);
  return ok ? path : NULL;
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}

void
bolt_device_unexport (BoltDevice *device)
{
  g_dbus_interface_skeleton_unexport (G_DBUS_INTERFACE_SKELETON (device));
}
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BoltStatus
bolt_device_connected (BoltDevice         *dev,
                       struct udev_device *udev)
{
  const char *syspath;
  BoltSecurity security;
  BoltStatus status;

  syspath = udev_device_get_syspath (udev);
  status = bolt_status_from_udev (udev);
  security = security_for_udev (udev);

  g_object_set (G_OBJECT (dev),
                "sysfs-path", syspath,
                "security", security,
                "status", status,
                NULL);

  return status;
}

BoltStatus
bolt_device_disconnected (BoltDevice *dev)
{
  g_object_set (G_OBJECT (dev),
                "sysfs-path", NULL,
                "security", BOLT_SECURITY_NONE,
                "status", BOLT_STATUS_DISCONNECTED,
                NULL);

  return dev->status;
}

gboolean
bolt_device_is_connected (BoltDevice *device)
{
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  return bolt_status_is_connected (device->status);
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}

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BoltStatus
bolt_device_update_from_udev (BoltDevice         *dev,
                              struct udev_device *udev)
{
  BoltStatus status = bolt_status_from_udev (udev);

  g_object_set (G_OBJECT (dev),
                "status", status,
                NULL);

  return status;
}

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guint
bolt_device_get_key (BoltDevice *dev)
{
  return dev->key;
}

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const char *
bolt_device_get_name (BoltDevice *dev)
{
  return dev->name;
}

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const char *
bolt_device_get_object_path (BoltDevice *device)
{
  g_return_val_if_fail (BOLT_IS_DEVICE (device), FALSE);

  if (device->dbus_path == NULL)
    {
      char *path = NULL;

      path = g_strdup_printf ("/org/freedesktop/Bolt/devices/%s", device->uid);
      g_strdelimit (path, "-", '_');

      device->dbus_path = path;
    }

  return device->dbus_path;
}
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BoltPolicy
bolt_device_get_policy (BoltDevice *dev)
{
  return dev->policy;
}

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const char *
bolt_device_get_uid (BoltDevice *dev)
{
  return dev->uid;
}

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BoltSecurity
bolt_device_get_security (BoltDevice *dev)
{
  return dev->security;
}

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BoltStatus
bolt_device_get_status (BoltDevice *dev)
{
  return dev->status;
}

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guint
bolt_device_get_store (BoltDevice *dev)
{
  return dev->store;
}

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const char *
bolt_device_get_syspath (BoltDevice *dev)
{
  return dev->syspath;
}
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const char *
bolt_device_get_vendor (BoltDevice *dev)
{
  return dev->vendor;
}