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#
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#
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# Copyright (C) 2008, 2009, 2010, 2011, 2012 Google Inc.
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful, but
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# WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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# General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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# 02110-1301, USA.
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"""KVM hypervisor
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"""
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import errno
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import os
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import os.path
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import re
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import tempfile
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import time
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import logging
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import pwd
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import struct
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import fcntl
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import shutil
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import socket
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import stat
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import StringIO
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try:
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  import affinity   # pylint: disable=F0401
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except ImportError:
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  affinity = None
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from ganeti import utils
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from ganeti import constants
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from ganeti import errors
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from ganeti import serializer
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from ganeti import objects
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from ganeti import uidpool
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from ganeti import ssconf
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from ganeti.hypervisor import hv_base
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from ganeti import netutils
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from ganeti.utils import wrapper as utils_wrapper
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_KVM_NETWORK_SCRIPT = constants.SYSCONFDIR + "/ganeti/kvm-vif-bridge"
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_KVM_START_PAUSED_FLAG = "-S"
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# TUN/TAP driver constants, taken from <linux/if_tun.h>
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# They are architecture-independent and already hardcoded in qemu-kvm source,
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# so we can safely include them here.
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TUNSETIFF = 0x400454ca
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TUNGETIFF = 0x800454d2
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TUNGETFEATURES = 0x800454cf
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IFF_TAP = 0x0002
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IFF_NO_PI = 0x1000
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IFF_VNET_HDR = 0x4000
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def _ProbeTapVnetHdr(fd):
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  """Check whether to enable the IFF_VNET_HDR flag.
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  To do this, _all_ of the following conditions must be met:
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   1. TUNGETFEATURES ioctl() *must* be implemented
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   2. TUNGETFEATURES ioctl() result *must* contain the IFF_VNET_HDR flag
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   3. TUNGETIFF ioctl() *must* be implemented; reading the kernel code in
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      drivers/net/tun.c there is no way to test this until after the tap device
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      has been created using TUNSETIFF, and there is no way to change the
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      IFF_VNET_HDR flag after creating the interface, catch-22! However both
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      TUNGETIFF and TUNGETFEATURES were introduced in kernel version 2.6.27,
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      thus we can expect TUNGETIFF to be present if TUNGETFEATURES is.
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   @type fd: int
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   @param fd: the file descriptor of /dev/net/tun
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  """
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  req = struct.pack("I", 0)
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  try:
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    res = fcntl.ioctl(fd, TUNGETFEATURES, req)
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  except EnvironmentError:
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    logging.warning("TUNGETFEATURES ioctl() not implemented")
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    return False
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  tunflags = struct.unpack("I", res)[0]
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  if tunflags & IFF_VNET_HDR:
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    return True
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  else:
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    logging.warning("Host does not support IFF_VNET_HDR, not enabling")
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    return False
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102

    
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def _OpenTap(vnet_hdr=True):
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  """Open a new tap device and return its file descriptor.
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  This is intended to be used by a qemu-type hypervisor together with the -net
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  tap,fd=<fd> command line parameter.
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  @type vnet_hdr: boolean
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  @param vnet_hdr: Enable the VNET Header
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  @return: (ifname, tapfd)
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  @rtype: tuple
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114
  """
115
  try:
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    tapfd = os.open("/dev/net/tun", os.O_RDWR)
117
  except EnvironmentError:
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    raise errors.HypervisorError("Failed to open /dev/net/tun")
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  flags = IFF_TAP | IFF_NO_PI
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122
  if vnet_hdr and _ProbeTapVnetHdr(tapfd):
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    flags |= IFF_VNET_HDR
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  # The struct ifreq ioctl request (see netdevice(7))
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  ifr = struct.pack("16sh", "", flags)
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  try:
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    res = fcntl.ioctl(tapfd, TUNSETIFF, ifr)
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  except EnvironmentError:
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    raise errors.HypervisorError("Failed to allocate a new TAP device")
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  # Get the interface name from the ioctl
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  ifname = struct.unpack("16sh", res)[0].strip("\x00")
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  return (ifname, tapfd)
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class QmpMessage:
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  """QEMU Messaging Protocol (QMP) message.
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141
  """
142
  def __init__(self, data):
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    """Creates a new QMP message based on the passed data.
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145
    """
146
    if not isinstance(data, dict):
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      raise TypeError("QmpMessage must be initialized with a dict")
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149
    self.data = data
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151
  def __getitem__(self, field_name):
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    """Get the value of the required field if present, or None.
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    Overrides the [] operator to provide access to the message data,
155
    returning None if the required item is not in the message
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    @return: the value of the field_name field, or None if field_name
157
             is not contained in the message
158

159
    """
160
    return self.data.get(field_name, None)
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162
  def __setitem__(self, field_name, field_value):
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    """Set the value of the required field_name to field_value.
164

165
    """
166
    self.data[field_name] = field_value
167

    
168
  @staticmethod
169
  def BuildFromJsonString(json_string):
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    """Build a QmpMessage from a JSON encoded string.
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    @type json_string: str
173
    @param json_string: JSON string representing the message
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    @rtype: L{QmpMessage}
175
    @return: a L{QmpMessage} built from json_string
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177
    """
178
    # Parse the string
179
    data = serializer.LoadJson(json_string)
180
    return QmpMessage(data)
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182
  def __str__(self):
183
    # The protocol expects the JSON object to be sent as a single line.
184
    return serializer.DumpJson(self.data)
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186
  def __eq__(self, other):
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    # When comparing two QmpMessages, we are interested in comparing
188
    # their internal representation of the message data
189
    return self.data == other.data
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class QmpConnection:
193
  """Connection to the QEMU Monitor using the QEMU Monitor Protocol (QMP).
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195
  """
196
  _FIRST_MESSAGE_KEY = "QMP"
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  _EVENT_KEY = "event"
198
  _ERROR_KEY = "error"
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  _RETURN_KEY = RETURN_KEY = "return"
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  _ACTUAL_KEY = ACTUAL_KEY = "actual"
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  _ERROR_CLASS_KEY = "class"
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  _ERROR_DATA_KEY = "data"
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  _ERROR_DESC_KEY = "desc"
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  _EXECUTE_KEY = "execute"
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  _ARGUMENTS_KEY = "arguments"
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  _CAPABILITIES_COMMAND = "qmp_capabilities"
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  _MESSAGE_END_TOKEN = "\r\n"
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  _SOCKET_TIMEOUT = 5
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210
  def __init__(self, monitor_filename):
211
    """Instantiates the QmpConnection object.
212

213
    @type monitor_filename: string
214
    @param monitor_filename: the filename of the UNIX raw socket on which the
215
                             QMP monitor is listening
216

217
    """
218
    self.monitor_filename = monitor_filename
219
    self.sock = socket.socket(socket.AF_UNIX, socket.SOCK_STREAM)
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    # We want to fail if the server doesn't send a complete message
221
    # in a reasonable amount of time
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    self.sock.settimeout(self._SOCKET_TIMEOUT)
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    self._connected = False
224
    self._buf = ""
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226
  def _check_socket(self):
227
    sock_stat = None
228
    try:
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      sock_stat = os.stat(self.monitor_filename)
230
    except EnvironmentError, err:
231
      if err.errno == errno.ENOENT:
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        raise errors.HypervisorError("No qmp socket found")
233
      else:
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        raise errors.HypervisorError("Error checking qmp socket: %s",
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                                     utils.ErrnoOrStr(err))
236
    if not stat.S_ISSOCK(sock_stat.st_mode):
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      raise errors.HypervisorError("Qmp socket is not a socket")
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239
  def _check_connection(self):
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    """Make sure that the connection is established.
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242
    """
243
    if not self._connected:
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      raise errors.ProgrammerError("To use a QmpConnection you need to first"
245
                                   " invoke connect() on it")
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247
  def connect(self):
248
    """Connects to the QMP monitor.
249

250
    Connects to the UNIX socket and makes sure that we can actually send and
251
    receive data to the kvm instance via QMP.
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253
    @raise errors.HypervisorError: when there are communication errors
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    @raise errors.ProgrammerError: when there are data serialization errors
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256
    """
257
    if self._connected:
258
      raise errors.ProgrammerError("Cannot connect twice")
259

    
260
    self._check_socket()
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262
    # Check file existance/stuff
263
    try:
264
      self.sock.connect(self.monitor_filename)
265
    except EnvironmentError:
266
      raise errors.HypervisorError("Can't connect to qmp socket")
267
    self._connected = True
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269
    # Check if we receive a correct greeting message from the server
270
    # (As per the QEMU Protocol Specification 0.1 - section 2.2)
271
    greeting = self._Recv()
272
    if not greeting[self._FIRST_MESSAGE_KEY]:
273
      self._connected = False
274
      raise errors.HypervisorError("kvm: qmp communication error (wrong"
275
                                   " server greeting")
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277
    # Let's put the monitor in command mode using the qmp_capabilities
278
    # command, or else no command will be executable.
279
    # (As per the QEMU Protocol Specification 0.1 - section 4)
280
    self.Execute(self._CAPABILITIES_COMMAND)
281

    
282
  def _ParseMessage(self, buf):
283
    """Extract and parse a QMP message from the given buffer.
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285
    Seeks for a QMP message in the given buf. If found, it parses it and
286
    returns it together with the rest of the characters in the buf.
287
    If no message is found, returns None and the whole buffer.
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289
    @raise errors.ProgrammerError: when there are data serialization errors
290

291
    """
292
    message = None
293
    # Check if we got the message end token (CRLF, as per the QEMU Protocol
294
    # Specification 0.1 - Section 2.1.1)
295
    pos = buf.find(self._MESSAGE_END_TOKEN)
296
    if pos >= 0:
297
      try:
298
        message = QmpMessage.BuildFromJsonString(buf[:pos + 1])
299
      except Exception, err:
300
        raise errors.ProgrammerError("QMP data serialization error: %s" % err)
301
      buf = buf[pos + 1:]
302

    
303
    return (message, buf)
304

    
305
  def _Recv(self):
306
    """Receives a message from QMP and decodes the received JSON object.
307

308
    @rtype: QmpMessage
309
    @return: the received message
310
    @raise errors.HypervisorError: when there are communication errors
311
    @raise errors.ProgrammerError: when there are data serialization errors
312

313
    """
314
    self._check_connection()
315

    
316
    # Check if there is already a message in the buffer
317
    (message, self._buf) = self._ParseMessage(self._buf)
318
    if message:
319
      return message
320

    
321
    recv_buffer = StringIO.StringIO(self._buf)
322
    recv_buffer.seek(len(self._buf))
323
    try:
324
      while True:
325
        data = self.sock.recv(4096)
326
        if not data:
327
          break
328
        recv_buffer.write(data)
329

    
330
        (message, self._buf) = self._ParseMessage(recv_buffer.getvalue())
331
        if message:
332
          return message
333

    
334
    except socket.timeout, err:
335
      raise errors.HypervisorError("Timeout while receiving a QMP message: "
336
                                   "%s" % (err))
337
    except socket.error, err:
338
      raise errors.HypervisorError("Unable to receive data from KVM using the"
339
                                   " QMP protocol: %s" % err)
340

    
341
  def _Send(self, message):
342
    """Encodes and sends a message to KVM using QMP.
343

344
    @type message: QmpMessage
345
    @param message: message to send to KVM
346
    @raise errors.HypervisorError: when there are communication errors
347
    @raise errors.ProgrammerError: when there are data serialization errors
348

349
    """
350
    self._check_connection()
351
    try:
352
      message_str = str(message)
353
    except Exception, err:
354
      raise errors.ProgrammerError("QMP data deserialization error: %s" % err)
355

    
356
    try:
357
      self.sock.sendall(message_str)
358
    except socket.timeout, err:
359
      raise errors.HypervisorError("Timeout while sending a QMP message: "
360
                                   "%s (%s)" % (err.string, err.errno))
361
    except socket.error, err:
362
      raise errors.HypervisorError("Unable to send data from KVM using the"
363
                                   " QMP protocol: %s" % err)
364

    
365
  def Execute(self, command, arguments=None):
366
    """Executes a QMP command and returns the response of the server.
367

368
    @type command: str
369
    @param command: the command to execute
370
    @type arguments: dict
371
    @param arguments: dictionary of arguments to be passed to the command
372
    @rtype: dict
373
    @return: dictionary representing the received JSON object
374
    @raise errors.HypervisorError: when there are communication errors
375
    @raise errors.ProgrammerError: when there are data serialization errors
376

377
    """
378
    self._check_connection()
379
    message = QmpMessage({self._EXECUTE_KEY: command})
380
    if arguments:
381
      message[self._ARGUMENTS_KEY] = arguments
382
    self._Send(message)
383

    
384
    # Events can occur between the sending of the command and the reception
385
    # of the response, so we need to filter out messages with the event key.
386
    while True:
387
      response = self._Recv()
388
      err = response[self._ERROR_KEY]
389
      if err:
390
        raise errors.HypervisorError("kvm: error executing the %s"
391
                                     " command: %s (%s, %s):" %
392
                                     (command,
393
                                      err[self._ERROR_DESC_KEY],
394
                                      err[self._ERROR_CLASS_KEY],
395
                                      err[self._ERROR_DATA_KEY]))
396

    
397
      elif not response[self._EVENT_KEY]:
398
        return response
399

    
400

    
401
class KVMHypervisor(hv_base.BaseHypervisor):
402
  """KVM hypervisor interface
403

404
  """
405
  CAN_MIGRATE = True
406

    
407
  _ROOT_DIR = constants.RUN_GANETI_DIR + "/kvm-hypervisor"
408
  _PIDS_DIR = _ROOT_DIR + "/pid" # contains live instances pids
409
  _UIDS_DIR = _ROOT_DIR + "/uid" # contains instances reserved uids
410
  _CTRL_DIR = _ROOT_DIR + "/ctrl" # contains instances control sockets
411
  _CONF_DIR = _ROOT_DIR + "/conf" # contains instances startup data
412
  _NICS_DIR = _ROOT_DIR + "/nic" # contains instances nic <-> tap associations
413
  _KEYMAP_DIR = _ROOT_DIR + "/keymap" # contains instances keymaps
414
  # KVM instances with chroot enabled are started in empty chroot directories.
415
  _CHROOT_DIR = _ROOT_DIR + "/chroot" # for empty chroot directories
416
  # After an instance is stopped, its chroot directory is removed.
417
  # If the chroot directory is not empty, it can't be removed.
418
  # A non-empty chroot directory indicates a possible security incident.
419
  # To support forensics, the non-empty chroot directory is quarantined in
420
  # a separate directory, called 'chroot-quarantine'.
421
  _CHROOT_QUARANTINE_DIR = _ROOT_DIR + "/chroot-quarantine"
422
  _DIRS = [_ROOT_DIR, _PIDS_DIR, _UIDS_DIR, _CTRL_DIR, _CONF_DIR, _NICS_DIR,
423
           _CHROOT_DIR, _CHROOT_QUARANTINE_DIR, _KEYMAP_DIR]
424

    
425
  PARAMETERS = {
426
    constants.HV_KERNEL_PATH: hv_base.OPT_FILE_CHECK,
427
    constants.HV_INITRD_PATH: hv_base.OPT_FILE_CHECK,
428
    constants.HV_ROOT_PATH: hv_base.NO_CHECK,
429
    constants.HV_KERNEL_ARGS: hv_base.NO_CHECK,
430
    constants.HV_ACPI: hv_base.NO_CHECK,
431
    constants.HV_SERIAL_CONSOLE: hv_base.NO_CHECK,
432
    constants.HV_VNC_BIND_ADDRESS:
433
      (False, lambda x: (netutils.IP4Address.IsValid(x) or
434
                         utils.IsNormAbsPath(x)),
435
       "the VNC bind address must be either a valid IP address or an absolute"
436
       " pathname", None, None),
437
    constants.HV_VNC_TLS: hv_base.NO_CHECK,
438
    constants.HV_VNC_X509: hv_base.OPT_DIR_CHECK,
439
    constants.HV_VNC_X509_VERIFY: hv_base.NO_CHECK,
440
    constants.HV_VNC_PASSWORD_FILE: hv_base.OPT_FILE_CHECK,
441
    constants.HV_KVM_SPICE_BIND: hv_base.NO_CHECK, # will be checked later
442
    constants.HV_KVM_SPICE_IP_VERSION:
443
      (False, lambda x: (x == constants.IFACE_NO_IP_VERSION_SPECIFIED or
444
                         x in constants.VALID_IP_VERSIONS),
445
       "the SPICE IP version should be 4 or 6",
446
       None, None),
447
    constants.HV_KVM_SPICE_PASSWORD_FILE: hv_base.OPT_FILE_CHECK,
448
    constants.HV_KVM_SPICE_LOSSLESS_IMG_COMPR:
449
      hv_base.ParamInSet(False,
450
        constants.HT_KVM_SPICE_VALID_LOSSLESS_IMG_COMPR_OPTIONS),
451
    constants.HV_KVM_SPICE_JPEG_IMG_COMPR:
452
      hv_base.ParamInSet(False,
453
        constants.HT_KVM_SPICE_VALID_LOSSY_IMG_COMPR_OPTIONS),
454
    constants.HV_KVM_SPICE_ZLIB_GLZ_IMG_COMPR:
455
      hv_base.ParamInSet(False,
456
        constants.HT_KVM_SPICE_VALID_LOSSY_IMG_COMPR_OPTIONS),
457
    constants.HV_KVM_SPICE_STREAMING_VIDEO_DETECTION:
458
      hv_base.ParamInSet(False,
459
        constants.HT_KVM_SPICE_VALID_VIDEO_STREAM_DETECTION_OPTIONS),
460
    constants.HV_KVM_SPICE_AUDIO_COMPR: hv_base.NO_CHECK,
461
    constants.HV_KVM_SPICE_USE_TLS: hv_base.NO_CHECK,
462
    constants.HV_KVM_SPICE_TLS_CIPHERS: hv_base.NO_CHECK,
463
    constants.HV_KVM_SPICE_USE_VDAGENT: hv_base.NO_CHECK,
464
    constants.HV_KVM_FLOPPY_IMAGE_PATH: hv_base.OPT_FILE_CHECK,
465
    constants.HV_CDROM_IMAGE_PATH: hv_base.OPT_FILE_CHECK,
466
    constants.HV_KVM_CDROM2_IMAGE_PATH: hv_base.OPT_FILE_CHECK,
467
    constants.HV_BOOT_ORDER:
468
      hv_base.ParamInSet(True, constants.HT_KVM_VALID_BO_TYPES),
469
    constants.HV_NIC_TYPE:
470
      hv_base.ParamInSet(True, constants.HT_KVM_VALID_NIC_TYPES),
471
    constants.HV_DISK_TYPE:
472
      hv_base.ParamInSet(True, constants.HT_KVM_VALID_DISK_TYPES),
473
    constants.HV_KVM_CDROM_DISK_TYPE:
474
      hv_base.ParamInSet(False, constants.HT_KVM_VALID_DISK_TYPES),
475
    constants.HV_USB_MOUSE:
476
      hv_base.ParamInSet(False, constants.HT_KVM_VALID_MOUSE_TYPES),
477
    constants.HV_KEYMAP: hv_base.NO_CHECK,
478
    constants.HV_MIGRATION_PORT: hv_base.REQ_NET_PORT_CHECK,
479
    constants.HV_MIGRATION_BANDWIDTH: hv_base.NO_CHECK,
480
    constants.HV_MIGRATION_DOWNTIME: hv_base.NO_CHECK,
481
    constants.HV_MIGRATION_MODE: hv_base.MIGRATION_MODE_CHECK,
482
    constants.HV_USE_LOCALTIME: hv_base.NO_CHECK,
483
    constants.HV_DISK_CACHE:
484
      hv_base.ParamInSet(True, constants.HT_VALID_CACHE_TYPES),
485
    constants.HV_SECURITY_MODEL:
486
      hv_base.ParamInSet(True, constants.HT_KVM_VALID_SM_TYPES),
487
    constants.HV_SECURITY_DOMAIN: hv_base.NO_CHECK,
488
    constants.HV_KVM_FLAG:
489
      hv_base.ParamInSet(False, constants.HT_KVM_FLAG_VALUES),
490
    constants.HV_VHOST_NET: hv_base.NO_CHECK,
491
    constants.HV_KVM_USE_CHROOT: hv_base.NO_CHECK,
492
    constants.HV_MEM_PATH: hv_base.OPT_DIR_CHECK,
493
    constants.HV_REBOOT_BEHAVIOR:
494
      hv_base.ParamInSet(True, constants.REBOOT_BEHAVIORS),
495
    constants.HV_CPU_MASK: hv_base.OPT_MULTI_CPU_MASK_CHECK,
496
    constants.HV_CPU_TYPE: hv_base.NO_CHECK
497
    }
498

    
499
  _MIGRATION_STATUS_RE = re.compile("Migration\s+status:\s+(\w+)",
500
                                    re.M | re.I)
501
  _MIGRATION_PROGRESS_RE = \
502
    re.compile(r"\s*transferred\s+ram:\s+(?P<transferred>\d+)\s+kbytes\s*\n"
503
               r"\s*remaining\s+ram:\s+(?P<remaining>\d+)\s+kbytes\s*\n"
504
               r"\s*total\s+ram:\s+(?P<total>\d+)\s+kbytes\s*\n", re.I)
505

    
506
  _MIGRATION_INFO_MAX_BAD_ANSWERS = 5
507
  _MIGRATION_INFO_RETRY_DELAY = 2
508

    
509
  _VERSION_RE = re.compile(r"\b(\d+)\.(\d+)(\.(\d+))?\b")
510

    
511
  _CPU_INFO_RE = re.compile(r"cpu\s+\#(\d+).*thread_id\s*=\s*(\d+)", re.I)
512
  _CPU_INFO_CMD = "info cpus"
513
  _CONT_CMD = "cont"
514

    
515
  ANCILLARY_FILES = [
516
    _KVM_NETWORK_SCRIPT,
517
    ]
518
  ANCILLARY_FILES_OPT = [
519
    _KVM_NETWORK_SCRIPT,
520
    ]
521

    
522
  def __init__(self):
523
    hv_base.BaseHypervisor.__init__(self)
524
    # Let's make sure the directories we need exist, even if the RUN_DIR lives
525
    # in a tmpfs filesystem or has been otherwise wiped out.
526
    dirs = [(dname, constants.RUN_DIRS_MODE) for dname in self._DIRS]
527
    utils.EnsureDirs(dirs)
528

    
529
  @classmethod
530
  def _InstancePidFile(cls, instance_name):
531
    """Returns the instance pidfile.
532

533
    """
534
    return utils.PathJoin(cls._PIDS_DIR, instance_name)
535

    
536
  @classmethod
537
  def _InstanceUidFile(cls, instance_name):
538
    """Returns the instance uidfile.
539

540
    """
541
    return utils.PathJoin(cls._UIDS_DIR, instance_name)
542

    
543
  @classmethod
544
  def _InstancePidInfo(cls, pid):
545
    """Check pid file for instance information.
546

547
    Check that a pid file is associated with an instance, and retrieve
548
    information from its command line.
549

550
    @type pid: string or int
551
    @param pid: process id of the instance to check
552
    @rtype: tuple
553
    @return: (instance_name, memory, vcpus)
554
    @raise errors.HypervisorError: when an instance cannot be found
555

556
    """
557
    alive = utils.IsProcessAlive(pid)
558
    if not alive:
559
      raise errors.HypervisorError("Cannot get info for pid %s" % pid)
560

    
561
    cmdline_file = utils.PathJoin("/proc", str(pid), "cmdline")
562
    try:
563
      cmdline = utils.ReadFile(cmdline_file)
564
    except EnvironmentError, err:
565
      raise errors.HypervisorError("Can't open cmdline file for pid %s: %s" %
566
                                   (pid, err))
567

    
568
    instance = None
569
    memory = 0
570
    vcpus = 0
571

    
572
    arg_list = cmdline.split("\x00")
573
    while arg_list:
574
      arg = arg_list.pop(0)
575
      if arg == "-name":
576
        instance = arg_list.pop(0)
577
      elif arg == "-m":
578
        memory = int(arg_list.pop(0))
579
      elif arg == "-smp":
580
        vcpus = int(arg_list.pop(0))
581

    
582
    if instance is None:
583
      raise errors.HypervisorError("Pid %s doesn't contain a ganeti kvm"
584
                                   " instance" % pid)
585

    
586
    return (instance, memory, vcpus)
587

    
588
  def _InstancePidAlive(self, instance_name):
589
    """Returns the instance pidfile, pid, and liveness.
590

591
    @type instance_name: string
592
    @param instance_name: instance name
593
    @rtype: tuple
594
    @return: (pid file name, pid, liveness)
595

596
    """
597
    pidfile = self._InstancePidFile(instance_name)
598
    pid = utils.ReadPidFile(pidfile)
599

    
600
    alive = False
601
    try:
602
      cmd_instance = self._InstancePidInfo(pid)[0]
603
      alive = (cmd_instance == instance_name)
604
    except errors.HypervisorError:
605
      pass
606

    
607
    return (pidfile, pid, alive)
608

    
609
  def _CheckDown(self, instance_name):
610
    """Raises an error unless the given instance is down.
611

612
    """
613
    alive = self._InstancePidAlive(instance_name)[2]
614
    if alive:
615
      raise errors.HypervisorError("Failed to start instance %s: %s" %
616
                                   (instance_name, "already running"))
617

    
618
  @classmethod
619
  def _InstanceMonitor(cls, instance_name):
620
    """Returns the instance monitor socket name
621

622
    """
623
    return utils.PathJoin(cls._CTRL_DIR, "%s.monitor" % instance_name)
624

    
625
  @classmethod
626
  def _InstanceSerial(cls, instance_name):
627
    """Returns the instance serial socket name
628

629
    """
630
    return utils.PathJoin(cls._CTRL_DIR, "%s.serial" % instance_name)
631

    
632
  @classmethod
633
  def _InstanceQmpMonitor(cls, instance_name):
634
    """Returns the instance serial QMP socket name
635

636
    """
637
    return utils.PathJoin(cls._CTRL_DIR, "%s.qmp" % instance_name)
638

    
639
  @staticmethod
640
  def _SocatUnixConsoleParams():
641
    """Returns the correct parameters for socat
642

643
    If we have a new-enough socat we can use raw mode with an escape character.
644

645
    """
646
    if constants.SOCAT_USE_ESCAPE:
647
      return "raw,echo=0,escape=%s" % constants.SOCAT_ESCAPE_CODE
648
    else:
649
      return "echo=0,icanon=0"
650

    
651
  @classmethod
652
  def _InstanceKVMRuntime(cls, instance_name):
653
    """Returns the instance KVM runtime filename
654

655
    """
656
    return utils.PathJoin(cls._CONF_DIR, "%s.runtime" % instance_name)
657

    
658
  @classmethod
659
  def _InstanceChrootDir(cls, instance_name):
660
    """Returns the name of the KVM chroot dir of the instance
661

662
    """
663
    return utils.PathJoin(cls._CHROOT_DIR, instance_name)
664

    
665
  @classmethod
666
  def _InstanceNICDir(cls, instance_name):
667
    """Returns the name of the directory holding the tap device files for a
668
    given instance.
669

670
    """
671
    return utils.PathJoin(cls._NICS_DIR, instance_name)
672

    
673
  @classmethod
674
  def _InstanceNICFile(cls, instance_name, seq):
675
    """Returns the name of the file containing the tap device for a given NIC
676

677
    """
678
    return utils.PathJoin(cls._InstanceNICDir(instance_name), str(seq))
679

    
680
  @classmethod
681
  def _InstanceKeymapFile(cls, instance_name):
682
    """Returns the name of the file containing the keymap for a given instance
683

684
    """
685
    return utils.PathJoin(cls._KEYMAP_DIR, instance_name)
686

    
687
  @classmethod
688
  def _TryReadUidFile(cls, uid_file):
689
    """Try to read a uid file
690

691
    """
692
    if os.path.exists(uid_file):
693
      try:
694
        uid = int(utils.ReadOneLineFile(uid_file))
695
        return uid
696
      except EnvironmentError:
697
        logging.warning("Can't read uid file", exc_info=True)
698
      except (TypeError, ValueError):
699
        logging.warning("Can't parse uid file contents", exc_info=True)
700
    return None
701

    
702
  @classmethod
703
  def _RemoveInstanceRuntimeFiles(cls, pidfile, instance_name):
704
    """Removes an instance's rutime sockets/files/dirs.
705

706
    """
707
    utils.RemoveFile(pidfile)
708
    utils.RemoveFile(cls._InstanceMonitor(instance_name))
709
    utils.RemoveFile(cls._InstanceSerial(instance_name))
710
    utils.RemoveFile(cls._InstanceQmpMonitor(instance_name))
711
    utils.RemoveFile(cls._InstanceKVMRuntime(instance_name))
712
    utils.RemoveFile(cls._InstanceKeymapFile(instance_name))
713
    uid_file = cls._InstanceUidFile(instance_name)
714
    uid = cls._TryReadUidFile(uid_file)
715
    utils.RemoveFile(uid_file)
716
    if uid is not None:
717
      uidpool.ReleaseUid(uid)
718
    try:
719
      shutil.rmtree(cls._InstanceNICDir(instance_name))
720
    except OSError, err:
721
      if err.errno != errno.ENOENT:
722
        raise
723
    try:
724
      chroot_dir = cls._InstanceChrootDir(instance_name)
725
      utils.RemoveDir(chroot_dir)
726
    except OSError, err:
727
      if err.errno == errno.ENOTEMPTY:
728
        # The chroot directory is expected to be empty, but it isn't.
729
        new_chroot_dir = tempfile.mkdtemp(dir=cls._CHROOT_QUARANTINE_DIR,
730
                                          prefix="%s-%s-" %
731
                                          (instance_name,
732
                                           utils.TimestampForFilename()))
733
        logging.warning("The chroot directory of instance %s can not be"
734
                        " removed as it is not empty. Moving it to the"
735
                        " quarantine instead. Please investigate the"
736
                        " contents (%s) and clean up manually",
737
                        instance_name, new_chroot_dir)
738
        utils.RenameFile(chroot_dir, new_chroot_dir)
739
      else:
740
        raise
741

    
742
  @staticmethod
743
  def _ConfigureNIC(instance, seq, nic, tap):
744
    """Run the network configuration script for a specified NIC
745

746
    @param instance: instance we're acting on
747
    @type instance: instance object
748
    @param seq: nic sequence number
749
    @type seq: int
750
    @param nic: nic we're acting on
751
    @type nic: nic object
752
    @param tap: the host's tap interface this NIC corresponds to
753
    @type tap: str
754

755
    """
756
    if instance.tags:
757
      tags = " ".join(instance.tags)
758
    else:
759
      tags = ""
760

    
761
    env = {
762
      "PATH": "%s:/sbin:/usr/sbin" % os.environ["PATH"],
763
      "INSTANCE": instance.name,
764
      "MAC": nic.mac,
765
      "MODE": nic.nicparams[constants.NIC_MODE],
766
      "INTERFACE": tap,
767
      "INTERFACE_INDEX": str(seq),
768
      "TAGS": tags,
769
    }
770

    
771
    if nic.ip:
772
      env["IP"] = nic.ip
773

    
774
    if nic.nicparams[constants.NIC_LINK]:
775
      env["LINK"] = nic.nicparams[constants.NIC_LINK]
776

    
777
    if nic.nicparams[constants.NIC_MODE] == constants.NIC_MODE_BRIDGED:
778
      env["BRIDGE"] = nic.nicparams[constants.NIC_LINK]
779

    
780
    result = utils.RunCmd([constants.KVM_IFUP, tap], env=env)
781
    if result.failed:
782
      raise errors.HypervisorError("Failed to configure interface %s: %s."
783
                                   " Network configuration script output: %s" %
784
                                   (tap, result.fail_reason, result.output))
785

    
786
  @staticmethod
787
  def _VerifyAffinityPackage():
788
    if affinity is None:
789
      raise errors.HypervisorError("affinity Python package not"
790
        " found; cannot use CPU pinning under KVM")
791

    
792
  @staticmethod
793
  def _BuildAffinityCpuMask(cpu_list):
794
    """Create a CPU mask suitable for sched_setaffinity from a list of
795
    CPUs.
796

797
    See man taskset for more info on sched_setaffinity masks.
798
    For example: [ 0, 2, 5, 6 ] will return 101 (0x65, 0..01100101).
799

800
    @type cpu_list: list of int
801
    @param cpu_list: list of physical CPU numbers to map to vCPUs in order
802
    @rtype: int
803
    @return: a bit mask of CPU affinities
804

805
    """
806
    if cpu_list == constants.CPU_PINNING_OFF:
807
      return constants.CPU_PINNING_ALL_KVM
808
    else:
809
      return sum(2 ** cpu for cpu in cpu_list)
810

    
811
  @classmethod
812
  def _AssignCpuAffinity(cls, cpu_mask, process_id, thread_dict):
813
    """Change CPU affinity for running VM according to given CPU mask.
814

815
    @param cpu_mask: CPU mask as given by the user. e.g. "0-2,4:all:1,3"
816
    @type cpu_mask: string
817
    @param process_id: process ID of KVM process. Used to pin entire VM
818
                       to physical CPUs.
819
    @type process_id: int
820
    @param thread_dict: map of virtual CPUs to KVM thread IDs
821
    @type thread_dict: dict int:int
822

823
    """
824
    # Convert the string CPU mask to a list of list of int's
825
    cpu_list = utils.ParseMultiCpuMask(cpu_mask)
826

    
827
    if len(cpu_list) == 1:
828
      all_cpu_mapping = cpu_list[0]
829
      if all_cpu_mapping == constants.CPU_PINNING_OFF:
830
        # If CPU pinning has 1 entry that's "all", then do nothing
831
        pass
832
      else:
833
        # If CPU pinning has one non-all entry, map the entire VM to
834
        # one set of physical CPUs
835
        cls._VerifyAffinityPackage()
836
        affinity.set_process_affinity_mask(process_id,
837
          cls._BuildAffinityCpuMask(all_cpu_mapping))
838
    else:
839
      # The number of vCPUs mapped should match the number of vCPUs
840
      # reported by KVM. This was already verified earlier, so
841
      # here only as a sanity check.
842
      assert len(thread_dict) == len(cpu_list)
843
      cls._VerifyAffinityPackage()
844

    
845
      # For each vCPU, map it to the proper list of physical CPUs
846
      for vcpu, i in zip(cpu_list, range(len(cpu_list))):
847
        affinity.set_process_affinity_mask(thread_dict[i],
848
          cls._BuildAffinityCpuMask(vcpu))
849

    
850
  def _GetVcpuThreadIds(self, instance_name):
851
    """Get a mapping of vCPU no. to thread IDs for the instance
852

853
    @type instance_name: string
854
    @param instance_name: instance in question
855
    @rtype: dictionary of int:int
856
    @return: a dictionary mapping vCPU numbers to thread IDs
857

858
    """
859
    result = {}
860
    output = self._CallMonitorCommand(instance_name, self._CPU_INFO_CMD)
861
    for line in output.stdout.splitlines():
862
      match = self._CPU_INFO_RE.search(line)
863
      if not match:
864
        continue
865
      grp = map(int, match.groups())
866
      result[grp[0]] = grp[1]
867

    
868
    return result
869

    
870
  def _ExecuteCpuAffinity(self, instance_name, cpu_mask):
871
    """Complete CPU pinning.
872

873
    @type instance_name: string
874
    @param instance_name: name of instance
875
    @type cpu_mask: string
876
    @param cpu_mask: CPU pinning mask as entered by user
877

878
    """
879
    # Get KVM process ID, to be used if need to pin entire VM
880
    _, pid, _ = self._InstancePidAlive(instance_name)
881
    # Get vCPU thread IDs, to be used if need to pin vCPUs separately
882
    thread_dict = self._GetVcpuThreadIds(instance_name)
883
    # Run CPU pinning, based on configured mask
884
    self._AssignCpuAffinity(cpu_mask, pid, thread_dict)
885

    
886
  def ListInstances(self):
887
    """Get the list of running instances.
888

889
    We can do this by listing our live instances directory and
890
    checking whether the associated kvm process is still alive.
891

892
    """
893
    result = []
894
    for name in os.listdir(self._PIDS_DIR):
895
      if self._InstancePidAlive(name)[2]:
896
        result.append(name)
897
    return result
898

    
899
  def GetInstanceInfo(self, instance_name):
900
    """Get instance properties.
901

902
    @type instance_name: string
903
    @param instance_name: the instance name
904
    @rtype: tuple of strings
905
    @return: (name, id, memory, vcpus, stat, times)
906

907
    """
908
    _, pid, alive = self._InstancePidAlive(instance_name)
909
    if not alive:
910
      return None
911

    
912
    _, memory, vcpus = self._InstancePidInfo(pid)
913
    istat = "---b-"
914
    times = "0"
915

    
916
    try:
917
      qmp = QmpConnection(self._InstanceQmpMonitor(instance_name))
918
      qmp.connect()
919
      vcpus = len(qmp.Execute("query-cpus")[qmp.RETURN_KEY])
920
      # Will fail if ballooning is not enabled, but we can then just resort to
921
      # the value above.
922
      mem_bytes = qmp.Execute("query-balloon")[qmp.RETURN_KEY][qmp.ACTUAL_KEY]
923
      memory = mem_bytes / 1048576
924
    except errors.HypervisorError:
925
      pass
926

    
927
    return (instance_name, pid, memory, vcpus, istat, times)
928

    
929
  def GetAllInstancesInfo(self):
930
    """Get properties of all instances.
931

932
    @return: list of tuples (name, id, memory, vcpus, stat, times)
933

934
    """
935
    data = []
936
    for name in os.listdir(self._PIDS_DIR):
937
      try:
938
        info = self.GetInstanceInfo(name)
939
      except errors.HypervisorError:
940
        # Ignore exceptions due to instances being shut down
941
        continue
942
      if info:
943
        data.append(info)
944
    return data
945

    
946
  def _GenerateKVMRuntime(self, instance, block_devices, startup_paused):
947
    """Generate KVM information to start an instance.
948

949
    @attention: this function must not have any side-effects; for
950
        example, it must not write to the filesystem, or read values
951
        from the current system the are expected to differ between
952
        nodes, since it is only run once at instance startup;
953
        actions/kvm arguments that can vary between systems should be
954
        done in L{_ExecuteKVMRuntime}
955

956
    """
957
    # pylint: disable=R0914,R0915
958
    _, v_major, v_min, _ = self._GetKVMVersion()
959

    
960
    pidfile = self._InstancePidFile(instance.name)
961
    kvm = constants.KVM_PATH
962
    kvm_cmd = [kvm]
963
    # used just by the vnc server, if enabled
964
    kvm_cmd.extend(["-name", instance.name])
965
    kvm_cmd.extend(["-m", instance.beparams[constants.BE_MAXMEM]])
966
    kvm_cmd.extend(["-smp", instance.beparams[constants.BE_VCPUS]])
967
    kvm_cmd.extend(["-pidfile", pidfile])
968
    kvm_cmd.extend(["-balloon", "virtio"])
969
    kvm_cmd.extend(["-daemonize"])
970
    if not instance.hvparams[constants.HV_ACPI]:
971
      kvm_cmd.extend(["-no-acpi"])
972
    if instance.hvparams[constants.HV_REBOOT_BEHAVIOR] == \
973
        constants.INSTANCE_REBOOT_EXIT:
974
      kvm_cmd.extend(["-no-reboot"])
975

    
976
    hvp = instance.hvparams
977
    boot_disk = hvp[constants.HV_BOOT_ORDER] == constants.HT_BO_DISK
978
    boot_cdrom = hvp[constants.HV_BOOT_ORDER] == constants.HT_BO_CDROM
979
    boot_floppy = hvp[constants.HV_BOOT_ORDER] == constants.HT_BO_FLOPPY
980
    boot_network = hvp[constants.HV_BOOT_ORDER] == constants.HT_BO_NETWORK
981

    
982
    self.ValidateParameters(hvp)
983

    
984
    if startup_paused:
985
      kvm_cmd.extend([_KVM_START_PAUSED_FLAG])
986

    
987
    if hvp[constants.HV_KVM_FLAG] == constants.HT_KVM_ENABLED:
988
      kvm_cmd.extend(["-enable-kvm"])
989
    elif hvp[constants.HV_KVM_FLAG] == constants.HT_KVM_DISABLED:
990
      kvm_cmd.extend(["-disable-kvm"])
991

    
992
    if boot_network:
993
      kvm_cmd.extend(["-boot", "n"])
994

    
995
    disk_type = hvp[constants.HV_DISK_TYPE]
996
    if disk_type == constants.HT_DISK_PARAVIRTUAL:
997
      if_val = ",if=virtio"
998
    else:
999
      if_val = ",if=%s" % disk_type
1000
    # Cache mode
1001
    disk_cache = hvp[constants.HV_DISK_CACHE]
1002
    if instance.disk_template in constants.DTS_EXT_MIRROR:
1003
      if disk_cache != "none":
1004
        # TODO: make this a hard error, instead of a silent overwrite
1005
        logging.warning("KVM: overriding disk_cache setting '%s' with 'none'"
1006
                        " to prevent shared storage corruption on migration",
1007
                        disk_cache)
1008
      cache_val = ",cache=none"
1009
    elif disk_cache != constants.HT_CACHE_DEFAULT:
1010
      cache_val = ",cache=%s" % disk_cache
1011
    else:
1012
      cache_val = ""
1013
    for cfdev, dev_path in block_devices:
1014
      if cfdev.mode != constants.DISK_RDWR:
1015
        raise errors.HypervisorError("Instance has read-only disks which"
1016
                                     " are not supported by KVM")
1017
      # TODO: handle FD_LOOP and FD_BLKTAP (?)
1018
      boot_val = ""
1019
      if boot_disk:
1020
        kvm_cmd.extend(["-boot", "c"])
1021
        boot_disk = False
1022
        if (v_major, v_min) < (0, 14) and disk_type != constants.HT_DISK_IDE:
1023
          boot_val = ",boot=on"
1024

    
1025
      drive_val = "file=%s,format=raw%s%s%s" % (dev_path, if_val, boot_val,
1026
                                                cache_val)
1027
      kvm_cmd.extend(["-drive", drive_val])
1028

    
1029
    #Now we can specify a different device type for CDROM devices.
1030
    cdrom_disk_type = hvp[constants.HV_KVM_CDROM_DISK_TYPE]
1031
    if not cdrom_disk_type:
1032
      cdrom_disk_type = disk_type
1033

    
1034
    iso_image = hvp[constants.HV_CDROM_IMAGE_PATH]
1035
    if iso_image:
1036
      options = ",format=raw,media=cdrom"
1037
      if boot_cdrom:
1038
        kvm_cmd.extend(["-boot", "d"])
1039
        if cdrom_disk_type != constants.HT_DISK_IDE:
1040
          options = "%s,boot=on,if=%s" % (options, constants.HT_DISK_IDE)
1041
        else:
1042
          options = "%s,boot=on" % options
1043
      else:
1044
        if cdrom_disk_type == constants.HT_DISK_PARAVIRTUAL:
1045
          if_val = ",if=virtio"
1046
        else:
1047
          if_val = ",if=%s" % cdrom_disk_type
1048
        options = "%s%s" % (options, if_val)
1049
      drive_val = "file=%s%s" % (iso_image, options)
1050
      kvm_cmd.extend(["-drive", drive_val])
1051

    
1052
    iso_image2 = hvp[constants.HV_KVM_CDROM2_IMAGE_PATH]
1053
    if iso_image2:
1054
      options = ",format=raw,media=cdrom"
1055
      if cdrom_disk_type == constants.HT_DISK_PARAVIRTUAL:
1056
        if_val = ",if=virtio"
1057
      else:
1058
        if_val = ",if=%s" % cdrom_disk_type
1059
      options = "%s%s" % (options, if_val)
1060
      drive_val = "file=%s%s" % (iso_image2, options)
1061
      kvm_cmd.extend(["-drive", drive_val])
1062

    
1063
    floppy_image = hvp[constants.HV_KVM_FLOPPY_IMAGE_PATH]
1064
    if floppy_image:
1065
      options = ",format=raw,media=disk"
1066
      if boot_floppy:
1067
        kvm_cmd.extend(["-boot", "a"])
1068
        options = "%s,boot=on" % options
1069
      if_val = ",if=floppy"
1070
      options = "%s%s" % (options, if_val)
1071
      drive_val = "file=%s%s" % (floppy_image, options)
1072
      kvm_cmd.extend(["-drive", drive_val])
1073

    
1074
    kernel_path = hvp[constants.HV_KERNEL_PATH]
1075
    if kernel_path:
1076
      kvm_cmd.extend(["-kernel", kernel_path])
1077
      initrd_path = hvp[constants.HV_INITRD_PATH]
1078
      if initrd_path:
1079
        kvm_cmd.extend(["-initrd", initrd_path])
1080
      root_append = ["root=%s" % hvp[constants.HV_ROOT_PATH],
1081
                     hvp[constants.HV_KERNEL_ARGS]]
1082
      if hvp[constants.HV_SERIAL_CONSOLE]:
1083
        root_append.append("console=ttyS0,38400")
1084
      kvm_cmd.extend(["-append", " ".join(root_append)])
1085

    
1086
    mem_path = hvp[constants.HV_MEM_PATH]
1087
    if mem_path:
1088
      kvm_cmd.extend(["-mem-path", mem_path, "-mem-prealloc"])
1089

    
1090
    monitor_dev = ("unix:%s,server,nowait" %
1091
                   self._InstanceMonitor(instance.name))
1092
    kvm_cmd.extend(["-monitor", monitor_dev])
1093
    if hvp[constants.HV_SERIAL_CONSOLE]:
1094
      serial_dev = ("unix:%s,server,nowait" %
1095
                    self._InstanceSerial(instance.name))
1096
      kvm_cmd.extend(["-serial", serial_dev])
1097
    else:
1098
      kvm_cmd.extend(["-serial", "none"])
1099

    
1100
    mouse_type = hvp[constants.HV_USB_MOUSE]
1101
    vnc_bind_address = hvp[constants.HV_VNC_BIND_ADDRESS]
1102
    spice_bind = hvp[constants.HV_KVM_SPICE_BIND]
1103
    spice_ip_version = None
1104

    
1105
    if mouse_type:
1106
      kvm_cmd.extend(["-usb"])
1107
      kvm_cmd.extend(["-usbdevice", mouse_type])
1108
    elif vnc_bind_address:
1109
      kvm_cmd.extend(["-usbdevice", constants.HT_MOUSE_TABLET])
1110

    
1111
    if vnc_bind_address:
1112
      if netutils.IP4Address.IsValid(vnc_bind_address):
1113
        if instance.network_port > constants.VNC_BASE_PORT:
1114
          display = instance.network_port - constants.VNC_BASE_PORT
1115
          if vnc_bind_address == constants.IP4_ADDRESS_ANY:
1116
            vnc_arg = ":%d" % (display)
1117
          else:
1118
            vnc_arg = "%s:%d" % (vnc_bind_address, display)
1119
        else:
1120
          logging.error("Network port is not a valid VNC display (%d < %d)."
1121
                        " Not starting VNC", instance.network_port,
1122
                        constants.VNC_BASE_PORT)
1123
          vnc_arg = "none"
1124

    
1125
        # Only allow tls and other option when not binding to a file, for now.
1126
        # kvm/qemu gets confused otherwise about the filename to use.
1127
        vnc_append = ""
1128
        if hvp[constants.HV_VNC_TLS]:
1129
          vnc_append = "%s,tls" % vnc_append
1130
          if hvp[constants.HV_VNC_X509_VERIFY]:
1131
            vnc_append = "%s,x509verify=%s" % (vnc_append,
1132
                                               hvp[constants.HV_VNC_X509])
1133
          elif hvp[constants.HV_VNC_X509]:
1134
            vnc_append = "%s,x509=%s" % (vnc_append,
1135
                                         hvp[constants.HV_VNC_X509])
1136
        if hvp[constants.HV_VNC_PASSWORD_FILE]:
1137
          vnc_append = "%s,password" % vnc_append
1138

    
1139
        vnc_arg = "%s%s" % (vnc_arg, vnc_append)
1140

    
1141
      else:
1142
        vnc_arg = "unix:%s/%s.vnc" % (vnc_bind_address, instance.name)
1143

    
1144
      kvm_cmd.extend(["-vnc", vnc_arg])
1145
    elif spice_bind:
1146
      # FIXME: this is wrong here; the iface ip address differs
1147
      # between systems, so it should be done in _ExecuteKVMRuntime
1148
      if netutils.IsValidInterface(spice_bind):
1149
        # The user specified a network interface, we have to figure out the IP
1150
        # address.
1151
        addresses = netutils.GetInterfaceIpAddresses(spice_bind)
1152
        spice_ip_version = hvp[constants.HV_KVM_SPICE_IP_VERSION]
1153

    
1154
        # if the user specified an IP version and the interface does not
1155
        # have that kind of IP addresses, throw an exception
1156
        if spice_ip_version != constants.IFACE_NO_IP_VERSION_SPECIFIED:
1157
          if not addresses[spice_ip_version]:
1158
            raise errors.HypervisorError("spice: unable to get an IPv%s address"
1159
                                         " for %s" % (spice_ip_version,
1160
                                                      spice_bind))
1161

    
1162
        # the user did not specify an IP version, we have to figure it out
1163
        elif (addresses[constants.IP4_VERSION] and
1164
              addresses[constants.IP6_VERSION]):
1165
          # we have both ipv4 and ipv6, let's use the cluster default IP
1166
          # version
1167
          cluster_family = ssconf.SimpleStore().GetPrimaryIPFamily()
1168
          spice_ip_version = \
1169
            netutils.IPAddress.GetVersionFromAddressFamily(cluster_family)
1170
        elif addresses[constants.IP4_VERSION]:
1171
          spice_ip_version = constants.IP4_VERSION
1172
        elif addresses[constants.IP6_VERSION]:
1173
          spice_ip_version = constants.IP6_VERSION
1174
        else:
1175
          raise errors.HypervisorError("spice: unable to get an IP address"
1176
                                       " for %s" % (spice_bind))
1177

    
1178
        spice_address = addresses[spice_ip_version][0]
1179

    
1180
      else:
1181
        # spice_bind is known to be a valid IP address, because
1182
        # ValidateParameters checked it.
1183
        spice_address = spice_bind
1184

    
1185
      spice_arg = "addr=%s" % spice_address
1186
      if hvp[constants.HV_KVM_SPICE_USE_TLS]:
1187
        spice_arg = "%s,tls-port=%s,x509-cacert-file=%s" % (spice_arg,
1188
            instance.network_port, constants.SPICE_CACERT_FILE)
1189
        spice_arg = "%s,x509-key-file=%s,x509-cert-file=%s" % (spice_arg,
1190
            constants.SPICE_CERT_FILE, constants.SPICE_CERT_FILE)
1191
        tls_ciphers = hvp[constants.HV_KVM_SPICE_TLS_CIPHERS]
1192
        if tls_ciphers:
1193
          spice_arg = "%s,tls-ciphers=%s" % (spice_arg, tls_ciphers)
1194
      else:
1195
        spice_arg = "%s,port=%s" % (spice_arg, instance.network_port)
1196

    
1197
      if not hvp[constants.HV_KVM_SPICE_PASSWORD_FILE]:
1198
        spice_arg = "%s,disable-ticketing" % spice_arg
1199

    
1200
      if spice_ip_version:
1201
        spice_arg = "%s,ipv%s" % (spice_arg, spice_ip_version)
1202

    
1203
      # Image compression options
1204
      img_lossless = hvp[constants.HV_KVM_SPICE_LOSSLESS_IMG_COMPR]
1205
      img_jpeg = hvp[constants.HV_KVM_SPICE_JPEG_IMG_COMPR]
1206
      img_zlib_glz = hvp[constants.HV_KVM_SPICE_ZLIB_GLZ_IMG_COMPR]
1207
      if img_lossless:
1208
        spice_arg = "%s,image-compression=%s" % (spice_arg, img_lossless)
1209
      if img_jpeg:
1210
        spice_arg = "%s,jpeg-wan-compression=%s" % (spice_arg, img_jpeg)
1211
      if img_zlib_glz:
1212
        spice_arg = "%s,zlib-glz-wan-compression=%s" % (spice_arg, img_zlib_glz)
1213

    
1214
      # Video stream detection
1215
      video_streaming = hvp[constants.HV_KVM_SPICE_STREAMING_VIDEO_DETECTION]
1216
      if video_streaming:
1217
        spice_arg = "%s,streaming-video=%s" % (spice_arg, video_streaming)
1218

    
1219
      # Audio compression, by default in qemu-kvm it is on
1220
      if not hvp[constants.HV_KVM_SPICE_AUDIO_COMPR]:
1221
        spice_arg = "%s,playback-compression=off" % spice_arg
1222
      if not hvp[constants.HV_KVM_SPICE_USE_VDAGENT]:
1223
        spice_arg = "%s,agent-mouse=off" % spice_arg
1224
      else:
1225
        # Enable the spice agent communication channel between the host and the
1226
        # agent.
1227
        kvm_cmd.extend(["-device", "virtio-serial-pci"])
1228
        kvm_cmd.extend(["-device", "virtserialport,chardev=spicechannel0,"
1229
                                                   "name=com.redhat.spice.0"])
1230
        kvm_cmd.extend(["-chardev", "spicevmc,id=spicechannel0,name=vdagent"])
1231

    
1232
      logging.info("KVM: SPICE will listen on port %s", instance.network_port)
1233
      kvm_cmd.extend(["-spice", spice_arg])
1234

    
1235
      # Tell kvm to use the paravirtualized graphic card, optimized for SPICE
1236
      kvm_cmd.extend(["-vga", "qxl"])
1237

    
1238
    else:
1239
      kvm_cmd.extend(["-nographic"])
1240

    
1241
    if hvp[constants.HV_USE_LOCALTIME]:
1242
      kvm_cmd.extend(["-localtime"])
1243

    
1244
    if hvp[constants.HV_KVM_USE_CHROOT]:
1245
      kvm_cmd.extend(["-chroot", self._InstanceChrootDir(instance.name)])
1246

    
1247
    # Add qemu-KVM -cpu param
1248
    if hvp[constants.HV_CPU_TYPE]:
1249
      kvm_cmd.extend(["-cpu", hvp[constants.HV_CPU_TYPE]])
1250

    
1251
    # Save the current instance nics, but defer their expansion as parameters,
1252
    # as we'll need to generate executable temp files for them.
1253
    kvm_nics = instance.nics
1254
    hvparams = hvp
1255

    
1256
    return (kvm_cmd, kvm_nics, hvparams)
1257

    
1258
  def _WriteKVMRuntime(self, instance_name, data):
1259
    """Write an instance's KVM runtime
1260

1261
    """
1262
    try:
1263
      utils.WriteFile(self._InstanceKVMRuntime(instance_name),
1264
                      data=data)
1265
    except EnvironmentError, err:
1266
      raise errors.HypervisorError("Failed to save KVM runtime file: %s" % err)
1267

    
1268
  def _ReadKVMRuntime(self, instance_name):
1269
    """Read an instance's KVM runtime
1270

1271
    """
1272
    try:
1273
      file_content = utils.ReadFile(self._InstanceKVMRuntime(instance_name))
1274
    except EnvironmentError, err:
1275
      raise errors.HypervisorError("Failed to load KVM runtime file: %s" % err)
1276
    return file_content
1277

    
1278
  def _SaveKVMRuntime(self, instance, kvm_runtime):
1279
    """Save an instance's KVM runtime
1280

1281
    """
1282
    kvm_cmd, kvm_nics, hvparams = kvm_runtime
1283
    serialized_nics = [nic.ToDict() for nic in kvm_nics]
1284
    serialized_form = serializer.Dump((kvm_cmd, serialized_nics, hvparams))
1285
    self._WriteKVMRuntime(instance.name, serialized_form)
1286

    
1287
  def _LoadKVMRuntime(self, instance, serialized_runtime=None):
1288
    """Load an instance's KVM runtime
1289

1290
    """
1291
    if not serialized_runtime:
1292
      serialized_runtime = self._ReadKVMRuntime(instance.name)
1293
    loaded_runtime = serializer.Load(serialized_runtime)
1294
    kvm_cmd, serialized_nics, hvparams = loaded_runtime
1295
    kvm_nics = [objects.NIC.FromDict(snic) for snic in serialized_nics]
1296
    return (kvm_cmd, kvm_nics, hvparams)
1297

    
1298
  def _RunKVMCmd(self, name, kvm_cmd, tap_fds=None):
1299
    """Run the KVM cmd and check for errors
1300

1301
    @type name: string
1302
    @param name: instance name
1303
    @type kvm_cmd: list of strings
1304
    @param kvm_cmd: runcmd input for kvm
1305
    @type tap_fds: list of int
1306
    @param tap_fds: fds of tap devices opened by Ganeti
1307

1308
    """
1309
    try:
1310
      result = utils.RunCmd(kvm_cmd, noclose_fds=tap_fds)
1311
    finally:
1312
      for fd in tap_fds:
1313
        utils_wrapper.CloseFdNoError(fd)
1314

    
1315
    if result.failed:
1316
      raise errors.HypervisorError("Failed to start instance %s: %s (%s)" %
1317
                                   (name, result.fail_reason, result.output))
1318
    if not self._InstancePidAlive(name)[2]:
1319
      raise errors.HypervisorError("Failed to start instance %s" % name)
1320

    
1321
  def _ExecuteKVMRuntime(self, instance, kvm_runtime, incoming=None):
1322
    """Execute a KVM cmd, after completing it with some last minute data.
1323

1324
    @type incoming: tuple of strings
1325
    @param incoming: (target_host_ip, port)
1326

1327
    """
1328
    # Small _ExecuteKVMRuntime hv parameters programming howto:
1329
    #  - conf_hvp contains the parameters as configured on ganeti. they might
1330
    #    have changed since the instance started; only use them if the change
1331
    #    won't affect the inside of the instance (which hasn't been rebooted).
1332
    #  - up_hvp contains the parameters as they were when the instance was
1333
    #    started, plus any new parameter which has been added between ganeti
1334
    #    versions: it is paramount that those default to a value which won't
1335
    #    affect the inside of the instance as well.
1336
    conf_hvp = instance.hvparams
1337
    name = instance.name
1338
    self._CheckDown(name)
1339

    
1340
    temp_files = []
1341

    
1342
    kvm_cmd, kvm_nics, up_hvp = kvm_runtime
1343
    up_hvp = objects.FillDict(conf_hvp, up_hvp)
1344

    
1345
    _, v_major, v_min, _ = self._GetKVMVersion()
1346

    
1347
    # We know it's safe to run as a different user upon migration, so we'll use
1348
    # the latest conf, from conf_hvp.
1349
    security_model = conf_hvp[constants.HV_SECURITY_MODEL]
1350
    if security_model == constants.HT_SM_USER:
1351
      kvm_cmd.extend(["-runas", conf_hvp[constants.HV_SECURITY_DOMAIN]])
1352

    
1353
    keymap = conf_hvp[constants.HV_KEYMAP]
1354
    if keymap:
1355
      keymap_path = self._InstanceKeymapFile(name)
1356
      # If a keymap file is specified, KVM won't use its internal defaults. By
1357
      # first including the "en-us" layout, an error on loading the actual
1358
      # layout (e.g. because it can't be found) won't lead to a non-functional
1359
      # keyboard. A keyboard with incorrect keys is still better than none.
1360
      utils.WriteFile(keymap_path, data="include en-us\ninclude %s\n" % keymap)
1361
      kvm_cmd.extend(["-k", keymap_path])
1362

    
1363
    # We have reasons to believe changing something like the nic driver/type
1364
    # upon migration won't exactly fly with the instance kernel, so for nic
1365
    # related parameters we'll use up_hvp
1366
    tapfds = []
1367
    taps = []
1368
    if not kvm_nics:
1369
      kvm_cmd.extend(["-net", "none"])
1370
    else:
1371
      vnet_hdr = False
1372
      tap_extra = ""
1373
      nic_type = up_hvp[constants.HV_NIC_TYPE]
1374
      if nic_type == constants.HT_NIC_PARAVIRTUAL:
1375
        # From version 0.12.0, kvm uses a new sintax for network configuration.
1376
        if (v_major, v_min) >= (0, 12):
1377
          nic_model = "virtio-net-pci"
1378
          vnet_hdr = True
1379
        else:
1380
          nic_model = "virtio"
1381

    
1382
        if up_hvp[constants.HV_VHOST_NET]:
1383
          # vhost_net is only available from version 0.13.0 or newer
1384
          if (v_major, v_min) >= (0, 13):
1385
            tap_extra = ",vhost=on"
1386
          else:
1387
            raise errors.HypervisorError("vhost_net is configured"
1388
                                        " but it is not available")
1389
      else:
1390
        nic_model = nic_type
1391

    
1392
      for nic_seq, nic in enumerate(kvm_nics):
1393
        tapname, tapfd = _OpenTap(vnet_hdr)
1394
        tapfds.append(tapfd)
1395
        taps.append(tapname)
1396
        if (v_major, v_min) >= (0, 12):
1397
          nic_val = "%s,mac=%s,netdev=netdev%s" % (nic_model, nic.mac, nic_seq)
1398
          tap_val = "type=tap,id=netdev%s,fd=%d%s" % (nic_seq, tapfd, tap_extra)
1399
          kvm_cmd.extend(["-netdev", tap_val, "-device", nic_val])
1400
        else:
1401
          nic_val = "nic,vlan=%s,macaddr=%s,model=%s" % (nic_seq,
1402
                                                         nic.mac, nic_model)
1403
          tap_val = "tap,vlan=%s,fd=%d" % (nic_seq, tapfd)
1404
          kvm_cmd.extend(["-net", tap_val, "-net", nic_val])
1405

    
1406
    if incoming:
1407
      target, port = incoming
1408
      kvm_cmd.extend(["-incoming", "tcp:%s:%s" % (target, port)])
1409

    
1410
    # Changing the vnc password doesn't bother the guest that much. At most it
1411
    # will surprise people who connect to it. Whether positively or negatively
1412
    # it's debatable.
1413
    vnc_pwd_file = conf_hvp[constants.HV_VNC_PASSWORD_FILE]
1414
    vnc_pwd = None
1415
    if vnc_pwd_file:
1416
      try:
1417
        vnc_pwd = utils.ReadOneLineFile(vnc_pwd_file, strict=True)
1418
      except EnvironmentError, err:
1419
        raise errors.HypervisorError("Failed to open VNC password file %s: %s"
1420
                                     % (vnc_pwd_file, err))
1421

    
1422
    if conf_hvp[constants.HV_KVM_USE_CHROOT]:
1423
      utils.EnsureDirs([(self._InstanceChrootDir(name),
1424
                         constants.SECURE_DIR_MODE)])
1425

    
1426
    # Automatically enable QMP if version is >= 0.14
1427
    if (v_major, v_min) >= (0, 14):
1428
      logging.debug("Enabling QMP")
1429
      kvm_cmd.extend(["-qmp", "unix:%s,server,nowait" %
1430
                    self._InstanceQmpMonitor(instance.name)])
1431

    
1432
    # Configure the network now for starting instances and bridged interfaces,
1433
    # during FinalizeMigration for incoming instances' routed interfaces
1434
    for nic_seq, nic in enumerate(kvm_nics):
1435
      if (incoming and
1436
          nic.nicparams[constants.NIC_MODE] != constants.NIC_MODE_BRIDGED):
1437
        continue
1438
      self._ConfigureNIC(instance, nic_seq, nic, taps[nic_seq])
1439

    
1440
    # CPU affinity requires kvm to start paused, so we set this flag if the
1441
    # instance is not already paused and if we are not going to accept a
1442
    # migrating instance. In the latter case, pausing is not needed.
1443
    start_kvm_paused = not (_KVM_START_PAUSED_FLAG in kvm_cmd) and not incoming
1444
    if start_kvm_paused:
1445
      kvm_cmd.extend([_KVM_START_PAUSED_FLAG])
1446

    
1447
    # Note: CPU pinning is using up_hvp since changes take effect
1448
    # during instance startup anyway, and to avoid problems when soft
1449
    # rebooting the instance.
1450
    cpu_pinning = False
1451
    if up_hvp.get(constants.HV_CPU_MASK, None):
1452
      cpu_pinning = True
1453

    
1454
    if security_model == constants.HT_SM_POOL:
1455
      ss = ssconf.SimpleStore()
1456
      uid_pool = uidpool.ParseUidPool(ss.GetUidPool(), separator="\n")
1457
      all_uids = set(uidpool.ExpandUidPool(uid_pool))
1458
      uid = uidpool.RequestUnusedUid(all_uids)
1459
      try:
1460
        username = pwd.getpwuid(uid.GetUid()).pw_name
1461
        kvm_cmd.extend(["-runas", username])
1462
        self._RunKVMCmd(name, kvm_cmd, tapfds)
1463
      except:
1464
        uidpool.ReleaseUid(uid)
1465
        raise
1466
      else:
1467
        uid.Unlock()
1468
        utils.WriteFile(self._InstanceUidFile(name), data=uid.AsStr())
1469
    else:
1470
      self._RunKVMCmd(name, kvm_cmd, tapfds)
1471

    
1472
    utils.EnsureDirs([(self._InstanceNICDir(instance.name),
1473
                     constants.RUN_DIRS_MODE)])
1474
    for nic_seq, tap in enumerate(taps):
1475
      utils.WriteFile(self._InstanceNICFile(instance.name, nic_seq),
1476
                      data=tap)
1477

    
1478
    if vnc_pwd:
1479
      change_cmd = "change vnc password %s" % vnc_pwd
1480
      self._CallMonitorCommand(instance.name, change_cmd)
1481

    
1482
    # Setting SPICE password. We are not vulnerable to malicious passwordless
1483
    # connection attempts because SPICE by default does not allow connections
1484
    # if neither a password nor the "disable_ticketing" options are specified.
1485
    # As soon as we send the password via QMP, that password is a valid ticket
1486
    # for connection.
1487
    spice_password_file = conf_hvp[constants.HV_KVM_SPICE_PASSWORD_FILE]
1488
    if spice_password_file:
1489
      spice_pwd = ""
1490
      try:
1491
        spice_pwd = utils.ReadOneLineFile(spice_password_file, strict=True)
1492
      except EnvironmentError, err:
1493
        raise errors.HypervisorError("Failed to open SPICE password file %s: %s"
1494
                                     % (spice_password_file, err))
1495

    
1496
      qmp = QmpConnection(self._InstanceQmpMonitor(instance.name))
1497
      qmp.connect()
1498
      arguments = {
1499
          "protocol": "spice",
1500
          "password": spice_pwd,
1501
      }
1502
      qmp.Execute("set_password", arguments)
1503

    
1504
    for filename in temp_files:
1505
      utils.RemoveFile(filename)
1506

    
1507
    # If requested, set CPU affinity and resume instance execution
1508
    if cpu_pinning:
1509
      self._ExecuteCpuAffinity(instance.name, up_hvp[constants.HV_CPU_MASK])
1510

    
1511
    start_memory = self._InstanceStartupMemory(instance)
1512
    if start_memory < instance.beparams[constants.BE_MAXMEM]:
1513
      self.BalloonInstanceMemory(instance, start_memory)
1514

    
1515
    if start_kvm_paused:
1516
      # To control CPU pinning, ballooning, and vnc/spice passwords the VM was
1517
      # started in a frozen state. If freezing was not explicitely requested
1518
      # resume the vm status.
1519
      self._CallMonitorCommand(instance.name, self._CONT_CMD)
1520

    
1521
  def StartInstance(self, instance, block_devices, startup_paused):
1522
    """Start an instance.
1523

1524
    """
1525
    self._CheckDown(instance.name)
1526
    kvm_runtime = self._GenerateKVMRuntime(instance, block_devices,
1527
                                           startup_paused)
1528
    self._SaveKVMRuntime(instance, kvm_runtime)
1529
    self._ExecuteKVMRuntime(instance, kvm_runtime)
1530

    
1531
  def _CallMonitorCommand(self, instance_name, command):
1532
    """Invoke a command on the instance monitor.
1533

1534
    """
1535
    socat = ("echo %s | %s STDIO UNIX-CONNECT:%s" %
1536
             (utils.ShellQuote(command),
1537
              constants.SOCAT_PATH,
1538
              utils.ShellQuote(self._InstanceMonitor(instance_name))))
1539
    result = utils.RunCmd(socat)
1540
    if result.failed:
1541
      msg = ("Failed to send command '%s' to instance %s."
1542
             " output: %s, error: %s, fail_reason: %s" %
1543
             (command, instance_name,
1544
              result.stdout, result.stderr, result.fail_reason))
1545
      raise errors.HypervisorError(msg)
1546

    
1547
    return result
1548

    
1549
  @classmethod
1550
  def _ParseKVMVersion(cls, text):
1551
    """Parse the KVM version from the --help output.
1552

1553
    @type text: string
1554
    @param text: output of kvm --help
1555
    @return: (version, v_maj, v_min, v_rev)
1556
    @raise errors.HypervisorError: when the KVM version cannot be retrieved
1557

1558
    """
1559
    match = cls._VERSION_RE.search(text.splitlines()[0])
1560
    if not match:
1561
      raise errors.HypervisorError("Unable to get KVM version")
1562

    
1563
    v_all = match.group(0)
1564
    v_maj = int(match.group(1))
1565
    v_min = int(match.group(2))
1566
    if match.group(4):
1567
      v_rev = int(match.group(4))
1568
    else:
1569
      v_rev = 0
1570
    return (v_all, v_maj, v_min, v_rev)
1571

    
1572
  @classmethod
1573
  def _GetKVMVersion(cls):
1574
    """Return the installed KVM version.
1575

1576
    @return: (version, v_maj, v_min, v_rev)
1577
    @raise errors.HypervisorError: when the KVM version cannot be retrieved
1578

1579
    """
1580
    result = utils.RunCmd([constants.KVM_PATH, "--help"])
1581
    if result.failed:
1582
      raise errors.HypervisorError("Unable to get KVM version")
1583
    return cls._ParseKVMVersion(result.output)
1584

    
1585
  def StopInstance(self, instance, force=False, retry=False, name=None):
1586
    """Stop an instance.
1587

1588
    """
1589
    if name is not None and not force:
1590
      raise errors.HypervisorError("Cannot shutdown cleanly by name only")
1591
    if name is None:
1592
      name = instance.name
1593
      acpi = instance.hvparams[constants.HV_ACPI]
1594
    else:
1595
      acpi = False
1596
    _, pid, alive = self._InstancePidAlive(name)
1597
    if pid > 0 and alive:
1598
      if force or not acpi:
1599
        utils.KillProcess(pid)
1600
      else:
1601
        self._CallMonitorCommand(name, "system_powerdown")
1602

    
1603
  def CleanupInstance(self, instance_name):
1604
    """Cleanup after a stopped instance
1605

1606
    """
1607
    pidfile, pid, alive = self._InstancePidAlive(instance_name)
1608
    if pid > 0 and alive:
1609
      raise errors.HypervisorError("Cannot cleanup a live instance")
1610
    self._RemoveInstanceRuntimeFiles(pidfile, instance_name)
1611

    
1612
  def RebootInstance(self, instance):
1613
    """Reboot an instance.
1614

1615
    """
1616
    # For some reason if we do a 'send-key ctrl-alt-delete' to the control
1617
    # socket the instance will stop, but now power up again. So we'll resort
1618
    # to shutdown and restart.
1619
    _, _, alive = self._InstancePidAlive(instance.name)
1620
    if not alive:
1621
      raise errors.HypervisorError("Failed to reboot instance %s:"
1622
                                   " not running" % instance.name)
1623
    # StopInstance will delete the saved KVM runtime so:
1624
    # ...first load it...
1625
    kvm_runtime = self._LoadKVMRuntime(instance)
1626
    # ...now we can safely call StopInstance...
1627
    if not self.StopInstance(instance):
1628
      self.StopInstance(instance, force=True)
1629
    # ...and finally we can save it again, and execute it...
1630
    self._SaveKVMRuntime(instance, kvm_runtime)
1631
    self._ExecuteKVMRuntime(instance, kvm_runtime)
1632

    
1633
  def MigrationInfo(self, instance):
1634
    """Get instance information to perform a migration.
1635

1636
    @type instance: L{objects.Instance}
1637
    @param instance: instance to be migrated
1638
    @rtype: string
1639
    @return: content of the KVM runtime file
1640

1641
    """
1642
    return self._ReadKVMRuntime(instance.name)
1643

    
1644
  def AcceptInstance(self, instance, info, target):
1645
    """Prepare to accept an instance.
1646

1647
    @type instance: L{objects.Instance}
1648
    @param instance: instance to be accepted
1649
    @type info: string
1650
    @param info: content of the KVM runtime file on the source node
1651
    @type target: string
1652
    @param target: target host (usually ip), on this node
1653

1654
    """
1655
    kvm_runtime = self._LoadKVMRuntime(instance, serialized_runtime=info)
1656
    incoming_address = (target, instance.hvparams[constants.HV_MIGRATION_PORT])
1657
    self._ExecuteKVMRuntime(instance, kvm_runtime, incoming=incoming_address)
1658

    
1659
  def FinalizeMigrationDst(self, instance, info, success):
1660
    """Finalize the instance migration on the target node.
1661

1662
    Stop the incoming mode KVM.
1663

1664
    @type instance: L{objects.Instance}
1665
    @param instance: instance whose migration is being finalized
1666

1667
    """
1668
    if success:
1669
      kvm_runtime = self._LoadKVMRuntime(instance, serialized_runtime=info)
1670
      kvm_nics = kvm_runtime[1]
1671

    
1672
      for nic_seq, nic in enumerate(kvm_nics):
1673
        if nic.nicparams[constants.NIC_MODE] == constants.NIC_MODE_BRIDGED:
1674
          # Bridged interfaces have already been configured
1675
          continue
1676
        try:
1677
          tap = utils.ReadFile(self._InstanceNICFile(instance.name, nic_seq))
1678
        except EnvironmentError, err:
1679
          logging.warning("Failed to find host interface for %s NIC #%d: %s",
1680
                          instance.name, nic_seq, str(err))
1681
          continue
1682
        try:
1683
          self._ConfigureNIC(instance, nic_seq, nic, tap)
1684
        except errors.HypervisorError, err:
1685
          logging.warning(str(err))
1686

    
1687
      self._WriteKVMRuntime(instance.name, info)
1688
    else:
1689
      self.StopInstance(instance, force=True)
1690

    
1691
  def MigrateInstance(self, instance, target, live):
1692
    """Migrate an instance to a target node.
1693

1694
    The migration will not be attempted if the instance is not
1695
    currently running.
1696

1697
    @type instance: L{objects.Instance}
1698
    @param instance: the instance to be migrated
1699
    @type target: string
1700
    @param target: ip address of the target node
1701
    @type live: boolean
1702
    @param live: perform a live migration
1703

1704
    """
1705
    instance_name = instance.name
1706
    port = instance.hvparams[constants.HV_MIGRATION_PORT]
1707
    _, _, alive = self._InstancePidAlive(instance_name)
1708
    if not alive:
1709
      raise errors.HypervisorError("Instance not running, cannot migrate")
1710

    
1711
    if not live:
1712
      self._CallMonitorCommand(instance_name, "stop")
1713

    
1714
    migrate_command = ("migrate_set_speed %dm" %
1715
        instance.hvparams[constants.HV_MIGRATION_BANDWIDTH])
1716
    self._CallMonitorCommand(instance_name, migrate_command)
1717

    
1718
    migrate_command = ("migrate_set_downtime %dms" %
1719
        instance.hvparams[constants.HV_MIGRATION_DOWNTIME])
1720
    self._CallMonitorCommand(instance_name, migrate_command)
1721

    
1722
    migrate_command = "migrate -d tcp:%s:%s" % (target, port)
1723
    self._CallMonitorCommand(instance_name, migrate_command)
1724

    
1725
  def FinalizeMigrationSource(self, instance, success, live):
1726
    """Finalize the instance migration on the source node.
1727

1728
    @type instance: L{objects.Instance}
1729
    @param instance: the instance that was migrated
1730
    @type success: bool
1731
    @param success: whether the migration succeeded or not
1732
    @type live: bool
1733
    @param live: whether the user requested a live migration or not
1734

1735
    """
1736
    if success:
1737
      pidfile, pid, _ = self._InstancePidAlive(instance.name)
1738
      utils.KillProcess(pid)
1739
      self._RemoveInstanceRuntimeFiles(pidfile, instance.name)
1740
    elif live:
1741
      self._CallMonitorCommand(instance.name, self._CONT_CMD)
1742

    
1743
  def GetMigrationStatus(self, instance):
1744
    """Get the migration status
1745

1746
    @type instance: L{objects.Instance}
1747
    @param instance: the instance that is being migrated
1748
    @rtype: L{objects.MigrationStatus}
1749
    @return: the status of the current migration (one of
1750
             L{constants.HV_MIGRATION_VALID_STATUSES}), plus any additional
1751
             progress info that can be retrieved from the hypervisor
1752

1753
    """
1754
    info_command = "info migrate"
1755
    for _ in range(self._MIGRATION_INFO_MAX_BAD_ANSWERS):
1756
      result = self._CallMonitorCommand(instance.name, info_command)
1757
      match = self._MIGRATION_STATUS_RE.search(result.stdout)
1758
      if not match:
1759
        if not result.stdout:
1760
          logging.info("KVM: empty 'info migrate' result")
1761
        else:
1762
          logging.warning("KVM: unknown 'info migrate' result: %s",
1763
                          result.stdout)
1764
      else:
1765
        status = match.group(1)
1766
        if status in constants.HV_KVM_MIGRATION_VALID_STATUSES:
1767
          migration_status = objects.MigrationStatus(status=status)
1768
          match = self._MIGRATION_PROGRESS_RE.search(result.stdout)
1769
          if match:
1770
            migration_status.transferred_ram = match.group("transferred")
1771
            migration_status.total_ram = match.group("total")
1772

    
1773
          return migration_status
1774

    
1775
        logging.warning("KVM: unknown migration status '%s'", status)
1776

    
1777
      time.sleep(self._MIGRATION_INFO_RETRY_DELAY)
1778

    
1779
    return objects.MigrationStatus(status=constants.HV_MIGRATION_FAILED,
1780
                                  info="Too many 'info migrate' broken answers")
1781

    
1782
  def BalloonInstanceMemory(self, instance, mem):
1783
    """Balloon an instance memory to a certain value.
1784

1785
    @type instance: L{objects.Instance}
1786
    @param instance: instance to be accepted
1787
    @type mem: int
1788
    @param mem: actual memory size to use for instance runtime
1789

1790
    """
1791
    self._CallMonitorCommand(instance.name, "balloon %d" % mem)
1792

    
1793
  def GetNodeInfo(self):
1794
    """Return information about the node.
1795

1796
    @return: a dict with the following keys (values in MiB):
1797
          - memory_total: the total memory size on the node
1798
          - memory_free: the available memory on the node for instances
1799
          - memory_dom0: the memory used by the node itself, if available
1800
          - hv_version: the hypervisor version in the form (major, minor,
1801
                        revision)
1802

1803
    """
1804
    result = self.GetLinuxNodeInfo()
1805
    _, v_major, v_min, v_rev = self._GetKVMVersion()
1806
    result[constants.HV_NODEINFO_KEY_VERSION] = (v_major, v_min, v_rev)
1807
    return result
1808

    
1809
  @classmethod
1810
  def GetInstanceConsole(cls, instance, hvparams, beparams):
1811
    """Return a command for connecting to the console of an instance.
1812

1813
    """
1814
    if hvparams[constants.HV_SERIAL_CONSOLE]:
1815
      cmd = [constants.KVM_CONSOLE_WRAPPER,
1816
             constants.SOCAT_PATH, utils.ShellQuote(instance.name),
1817
             utils.ShellQuote(cls._InstanceMonitor(instance.name)),
1818
             "STDIO,%s" % cls._SocatUnixConsoleParams(),
1819
             "UNIX-CONNECT:%s" % cls._InstanceSerial(instance.name)]
1820
      return objects.InstanceConsole(instance=instance.name,
1821
                                     kind=constants.CONS_SSH,
1822
                                     host=instance.primary_node,
1823
                                     user=constants.GANETI_RUNAS,
1824
                                     command=cmd)
1825

    
1826
    vnc_bind_address = hvparams[constants.HV_VNC_BIND_ADDRESS]
1827
    if vnc_bind_address and instance.network_port > constants.VNC_BASE_PORT:
1828
      display = instance.network_port - constants.VNC_BASE_PORT
1829
      return objects.InstanceConsole(instance=instance.name,
1830
                                     kind=constants.CONS_VNC,
1831
                                     host=vnc_bind_address,
1832
                                     port=instance.network_port,
1833
                                     display=display)
1834

    
1835
    spice_bind = hvparams[constants.HV_KVM_SPICE_BIND]
1836
    if spice_bind:
1837
      return objects.InstanceConsole(instance=instance.name,
1838
                                     kind=constants.CONS_SPICE,
1839
                                     host=spice_bind,
1840
                                     port=instance.network_port)
1841

    
1842
    return objects.InstanceConsole(instance=instance.name,
1843
                                   kind=constants.CONS_MESSAGE,
1844
                                   message=("No serial shell for instance %s" %
1845
                                            instance.name))
1846

    
1847
  def Verify(self):
1848
    """Verify the hypervisor.
1849

1850
    Check that the binary exists.
1851

1852
    """
1853
    if not os.path.exists(constants.KVM_PATH):
1854
      return "The kvm binary ('%s') does not exist." % constants.KVM_PATH
1855
    if not os.path.exists(constants.SOCAT_PATH):
1856
      return "The socat binary ('%s') does not exist." % constants.SOCAT_PATH
1857

    
1858
  @classmethod
1859
  def CheckParameterSyntax(cls, hvparams):
1860
    """Check the given parameters for validity.
1861

1862
    @type hvparams:  dict
1863
    @param hvparams: dictionary with parameter names/value
1864
    @raise errors.HypervisorError: when a parameter is not valid
1865

1866
    """
1867
    super(KVMHypervisor, cls).CheckParameterSyntax(hvparams)
1868

    
1869
    kernel_path = hvparams[constants.HV_KERNEL_PATH]
1870
    if kernel_path:
1871
      if not hvparams[constants.HV_ROOT_PATH]:
1872
        raise errors.HypervisorError("Need a root partition for the instance,"
1873
                                     " if a kernel is defined")
1874

    
1875
    if (hvparams[constants.HV_VNC_X509_VERIFY] and
1876
        not hvparams[constants.HV_VNC_X509]):
1877
      raise errors.HypervisorError("%s must be defined, if %s is" %
1878
                                   (constants.HV_VNC_X509,
1879
                                    constants.HV_VNC_X509_VERIFY))
1880

    
1881
    boot_order = hvparams[constants.HV_BOOT_ORDER]
1882
    if (boot_order == constants.HT_BO_CDROM and
1883
        not hvparams[constants.HV_CDROM_IMAGE_PATH]):
1884
      raise errors.HypervisorError("Cannot boot from cdrom without an"
1885
                                   " ISO path")
1886

    
1887
    security_model = hvparams[constants.HV_SECURITY_MODEL]
1888
    if security_model == constants.HT_SM_USER:
1889
      if not hvparams[constants.HV_SECURITY_DOMAIN]:
1890
        raise errors.HypervisorError("A security domain (user to run kvm as)"
1891
                                     " must be specified")
1892
    elif (security_model == constants.HT_SM_NONE or
1893
          security_model == constants.HT_SM_POOL):
1894
      if hvparams[constants.HV_SECURITY_DOMAIN]:
1895
        raise errors.HypervisorError("Cannot have a security domain when the"
1896
                                     " security model is 'none' or 'pool'")
1897

    
1898
    spice_bind = hvparams[constants.HV_KVM_SPICE_BIND]
1899
    spice_ip_version = hvparams[constants.HV_KVM_SPICE_IP_VERSION]
1900
    if spice_bind:
1901
      if spice_ip_version != constants.IFACE_NO_IP_VERSION_SPECIFIED:
1902
        # if an IP version is specified, the spice_bind parameter must be an
1903
        # IP of that family
1904
        if (netutils.IP4Address.IsValid(spice_bind) and
1905
            spice_ip_version != constants.IP4_VERSION):
1906
          raise errors.HypervisorError("spice: got an IPv4 address (%s), but"
1907
                                       " the specified IP version is %s" %
1908
                                       (spice_bind, spice_ip_version))
1909

    
1910
        if (netutils.IP6Address.IsValid(spice_bind) and
1911
            spice_ip_version != constants.IP6_VERSION):
1912
          raise errors.HypervisorError("spice: got an IPv6 address (%s), but"
1913
                                       " the specified IP version is %s" %
1914
                                       (spice_bind, spice_ip_version))
1915
    else:
1916
      # All the other SPICE parameters depend on spice_bind being set. Raise an
1917
      # error if any of them is set without it.
1918
      spice_additional_params = frozenset([
1919
        constants.HV_KVM_SPICE_IP_VERSION,
1920
        constants.HV_KVM_SPICE_PASSWORD_FILE,
1921
        constants.HV_KVM_SPICE_LOSSLESS_IMG_COMPR,
1922
        constants.HV_KVM_SPICE_JPEG_IMG_COMPR,
1923
        constants.HV_KVM_SPICE_ZLIB_GLZ_IMG_COMPR,
1924
        constants.HV_KVM_SPICE_STREAMING_VIDEO_DETECTION,
1925
        constants.HV_KVM_SPICE_USE_TLS,
1926
        ])
1927
      for param in spice_additional_params:
1928
        if hvparams[param]:
1929
          raise errors.HypervisorError("spice: %s requires %s to be set" %
1930
                                       (param, constants.HV_KVM_SPICE_BIND))
1931

    
1932
  @classmethod
1933
  def ValidateParameters(cls, hvparams):
1934
    """Check the given parameters for validity.
1935

1936
    @type hvparams:  dict
1937
    @param hvparams: dictionary with parameter names/value
1938
    @raise errors.HypervisorError: when a parameter is not valid
1939

1940
    """
1941
    super(KVMHypervisor, cls).ValidateParameters(hvparams)
1942

    
1943
    security_model = hvparams[constants.HV_SECURITY_MODEL]
1944
    if security_model == constants.HT_SM_USER:
1945
      username = hvparams[constants.HV_SECURITY_DOMAIN]
1946
      try:
1947
        pwd.getpwnam(username)
1948
      except KeyError:
1949
        raise errors.HypervisorError("Unknown security domain user %s"
1950
                                     % username)
1951

    
1952
    spice_bind = hvparams[constants.HV_KVM_SPICE_BIND]
1953
    if spice_bind:
1954
      # only one of VNC and SPICE can be used currently.
1955
      if hvparams[constants.HV_VNC_BIND_ADDRESS]:
1956
        raise errors.HypervisorError("both SPICE and VNC are configured, but"
1957
                                     " only one of them can be used at a"
1958
                                     " given time.")
1959

    
1960
      # KVM version should be >= 0.14.0
1961
      _, v_major, v_min, _ = cls._GetKVMVersion()
1962
      if (v_major, v_min) < (0, 14):
1963
        raise errors.HypervisorError("spice is configured, but it is not"
1964
                                     " available in versions of KVM < 0.14")
1965

    
1966
      # if spice_bind is not an IP address, it must be a valid interface
1967
      bound_to_addr = (netutils.IP4Address.IsValid(spice_bind)
1968
                       or netutils.IP6Address.IsValid(spice_bind))
1969
      if not bound_to_addr and not netutils.IsValidInterface(spice_bind):
1970
        raise errors.HypervisorError("spice: the %s parameter must be either"
1971
                                     " a valid IP address or interface name" %
1972
                                     constants.HV_KVM_SPICE_BIND)
1973

    
1974
  @classmethod
1975
  def PowercycleNode(cls):
1976
    """KVM powercycle, just a wrapper over Linux powercycle.
1977

1978
    """
1979
    cls.LinuxPowercycle()