opcodes: Annotate the OP_RESULT of query operations
[ganeti-local] / lib / hypervisor / hv_kvm.py
1 #
2 #
3
4 # Copyright (C) 2008, 2009, 2010, 2011 Google Inc.
5 #
6 # This program is free software; you can redistribute it and/or modify
7 # it under the terms of the GNU General Public License as published by
8 # the Free Software Foundation; either version 2 of the License, or
9 # (at your option) any later version.
10 #
11 # This program is distributed in the hope that it will be useful, but
12 # WITHOUT ANY WARRANTY; without even the implied warranty of
13 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
14 # General Public License for more details.
15 #
16 # You should have received a copy of the GNU General Public License
17 # along with this program; if not, write to the Free Software
18 # Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
19 # 02110-1301, USA.
20
21
22 """KVM hypervisor
23
24 """
25
26 import errno
27 import os
28 import os.path
29 import re
30 import tempfile
31 import time
32 import logging
33 import pwd
34 import struct
35 import fcntl
36 import shutil
37 import socket
38 import stat
39 import StringIO
40 try:
41   import affinity   # pylint: disable=F0401
42 except ImportError:
43   affinity = None
44
45 from ganeti import utils
46 from ganeti import constants
47 from ganeti import errors
48 from ganeti import serializer
49 from ganeti import objects
50 from ganeti import uidpool
51 from ganeti import ssconf
52 from ganeti.hypervisor import hv_base
53 from ganeti import netutils
54 from ganeti.utils import wrapper as utils_wrapper
55
56
57 _KVM_NETWORK_SCRIPT = constants.SYSCONFDIR + "/ganeti/kvm-vif-bridge"
58 _KVM_START_PAUSED_FLAG = "-S"
59
60 # TUN/TAP driver constants, taken from <linux/if_tun.h>
61 # They are architecture-independent and already hardcoded in qemu-kvm source,
62 # so we can safely include them here.
63 TUNSETIFF = 0x400454ca
64 TUNGETIFF = 0x800454d2
65 TUNGETFEATURES = 0x800454cf
66 IFF_TAP = 0x0002
67 IFF_NO_PI = 0x1000
68 IFF_VNET_HDR = 0x4000
69
70
71 def _ProbeTapVnetHdr(fd):
72   """Check whether to enable the IFF_VNET_HDR flag.
73
74   To do this, _all_ of the following conditions must be met:
75    1. TUNGETFEATURES ioctl() *must* be implemented
76    2. TUNGETFEATURES ioctl() result *must* contain the IFF_VNET_HDR flag
77    3. TUNGETIFF ioctl() *must* be implemented; reading the kernel code in
78       drivers/net/tun.c there is no way to test this until after the tap device
79       has been created using TUNSETIFF, and there is no way to change the
80       IFF_VNET_HDR flag after creating the interface, catch-22! However both
81       TUNGETIFF and TUNGETFEATURES were introduced in kernel version 2.6.27,
82       thus we can expect TUNGETIFF to be present if TUNGETFEATURES is.
83
84    @type fd: int
85    @param fd: the file descriptor of /dev/net/tun
86
87   """
88   req = struct.pack("I", 0)
89   try:
90     res = fcntl.ioctl(fd, TUNGETFEATURES, req)
91   except EnvironmentError:
92     logging.warning("TUNGETFEATURES ioctl() not implemented")
93     return False
94
95   tunflags = struct.unpack("I", res)[0]
96   if tunflags & IFF_VNET_HDR:
97     return True
98   else:
99     logging.warning("Host does not support IFF_VNET_HDR, not enabling")
100     return False
101
102
103 def _OpenTap(vnet_hdr=True):
104   """Open a new tap device and return its file descriptor.
105
106   This is intended to be used by a qemu-type hypervisor together with the -net
107   tap,fd=<fd> command line parameter.
108
109   @type vnet_hdr: boolean
110   @param vnet_hdr: Enable the VNET Header
111   @return: (ifname, tapfd)
112   @rtype: tuple
113
114   """
115   try:
116     tapfd = os.open("/dev/net/tun", os.O_RDWR)
117   except EnvironmentError:
118     raise errors.HypervisorError("Failed to open /dev/net/tun")
119
120   flags = IFF_TAP | IFF_NO_PI
121
122   if vnet_hdr and _ProbeTapVnetHdr(tapfd):
123     flags |= IFF_VNET_HDR
124
125   # The struct ifreq ioctl request (see netdevice(7))
126   ifr = struct.pack("16sh", "", flags)
127
128   try:
129     res = fcntl.ioctl(tapfd, TUNSETIFF, ifr)
130   except EnvironmentError:
131     raise errors.HypervisorError("Failed to allocate a new TAP device")
132
133   # Get the interface name from the ioctl
134   ifname = struct.unpack("16sh", res)[0].strip("\x00")
135   return (ifname, tapfd)
136
137
138 class QmpMessage:
139   """QEMU Messaging Protocol (QMP) message.
140
141   """
142   def __init__(self, data):
143     """Creates a new QMP message based on the passed data.
144
145     """
146     if not isinstance(data, dict):
147       raise TypeError("QmpMessage must be initialized with a dict")
148
149     self.data = data
150
151   def __getitem__(self, field_name):
152     """Get the value of the required field if present, or None.
153
154     Overrides the [] operator to provide access to the message data,
155     returning None if the required item is not in the message
156     @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)
161
162   def __setitem__(self, field_name, field_value):
163     """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):
170     """Build a QmpMessage from a JSON encoded string.
171
172     @type json_string: str
173     @param json_string: JSON string representing the message
174     @rtype: L{QmpMessage}
175     @return: a L{QmpMessage} built from json_string
176
177     """
178     # Parse the string
179     data = serializer.LoadJson(json_string)
180     return QmpMessage(data)
181
182   def __str__(self):
183     # The protocol expects the JSON object to be sent as a single line.
184     return serializer.DumpJson(self.data)
185
186   def __eq__(self, other):
187     # When comparing two QmpMessages, we are interested in comparing
188     # their internal representation of the message data
189     return self.data == other.data
190
191
192 class QmpConnection:
193   """Connection to the QEMU Monitor using the QEMU Monitor Protocol (QMP).
194
195   """
196   _FIRST_MESSAGE_KEY = "QMP"
197   _EVENT_KEY = "event"
198   _ERROR_KEY = "error"
199   _RETURN_KEY = RETURN_KEY = "return"
200   _ACTUAL_KEY = ACTUAL_KEY = "actual"
201   _ERROR_CLASS_KEY = "class"
202   _ERROR_DATA_KEY = "data"
203   _ERROR_DESC_KEY = "desc"
204   _EXECUTE_KEY = "execute"
205   _ARGUMENTS_KEY = "arguments"
206   _CAPABILITIES_COMMAND = "qmp_capabilities"
207   _MESSAGE_END_TOKEN = "\r\n"
208   _SOCKET_TIMEOUT = 5
209
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)
220     # We want to fail if the server doesn't send a complete message
221     # in a reasonable amount of time
222     self.sock.settimeout(self._SOCKET_TIMEOUT)
223     self._connected = False
224     self._buf = ""
225
226   def _check_socket(self):
227     sock_stat = None
228     try:
229       sock_stat = os.stat(self.monitor_filename)
230     except EnvironmentError, err:
231       if err.errno == errno.ENOENT:
232         raise errors.HypervisorError("No qmp socket found")
233       else:
234         raise errors.HypervisorError("Error checking qmp socket: %s",
235                                      utils.ErrnoOrStr(err))
236     if not stat.S_ISSOCK(sock_stat.st_mode):
237       raise errors.HypervisorError("Qmp socket is not a socket")
238
239   def _check_connection(self):
240     """Make sure that the connection is established.
241
242     """
243     if not self._connected:
244       raise errors.ProgrammerError("To use a QmpConnection you need to first"
245                                    " invoke connect() on it")
246
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.
252
253     @raise errors.HypervisorError: when there are communication errors
254     @raise errors.ProgrammerError: when there are data serialization errors
255
256     """
257     if self._connected:
258       raise errors.ProgrammerError("Cannot connect twice")
259
260     self._check_socket()
261
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
268
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")
276
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.
284
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.
288
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]
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     }
497
498   _MIGRATION_STATUS_RE = re.compile("Migration\s+status:\s+(\w+)",
499                                     re.M | re.I)
500   _MIGRATION_PROGRESS_RE = \
501     re.compile(r"\s*transferred\s+ram:\s+(?P<transferred>\d+)\s+kbytes\s*\n"
502                r"\s*remaining\s+ram:\s+(?P<remaining>\d+)\s+kbytes\s*\n"
503                r"\s*total\s+ram:\s+(?P<total>\d+)\s+kbytes\s*\n", re.I)
504
505   _MIGRATION_INFO_MAX_BAD_ANSWERS = 5
506   _MIGRATION_INFO_RETRY_DELAY = 2
507
508   _VERSION_RE = re.compile(r"\b(\d+)\.(\d+)(\.(\d+))?\b")
509
510   _CPU_INFO_RE = re.compile(r"cpu\s+\#(\d+).*thread_id\s*=\s*(\d+)", re.I)
511   _CPU_INFO_CMD = "info cpus"
512   _CONT_CMD = "cont"
513
514   ANCILLARY_FILES = [
515     _KVM_NETWORK_SCRIPT,
516     ]
517   ANCILLARY_FILES_OPT = [
518     _KVM_NETWORK_SCRIPT,
519     ]
520
521   def __init__(self):
522     hv_base.BaseHypervisor.__init__(self)
523     # Let's make sure the directories we need exist, even if the RUN_DIR lives
524     # in a tmpfs filesystem or has been otherwise wiped out.
525     dirs = [(dname, constants.RUN_DIRS_MODE) for dname in self._DIRS]
526     utils.EnsureDirs(dirs)
527
528   @classmethod
529   def _InstancePidFile(cls, instance_name):
530     """Returns the instance pidfile.
531
532     """
533     return utils.PathJoin(cls._PIDS_DIR, instance_name)
534
535   @classmethod
536   def _InstanceUidFile(cls, instance_name):
537     """Returns the instance uidfile.
538
539     """
540     return utils.PathJoin(cls._UIDS_DIR, instance_name)
541
542   @classmethod
543   def _InstancePidInfo(cls, pid):
544     """Check pid file for instance information.
545
546     Check that a pid file is associated with an instance, and retrieve
547     information from its command line.
548
549     @type pid: string or int
550     @param pid: process id of the instance to check
551     @rtype: tuple
552     @return: (instance_name, memory, vcpus)
553     @raise errors.HypervisorError: when an instance cannot be found
554
555     """
556     alive = utils.IsProcessAlive(pid)
557     if not alive:
558       raise errors.HypervisorError("Cannot get info for pid %s" % pid)
559
560     cmdline_file = utils.PathJoin("/proc", str(pid), "cmdline")
561     try:
562       cmdline = utils.ReadFile(cmdline_file)
563     except EnvironmentError, err:
564       raise errors.HypervisorError("Can't open cmdline file for pid %s: %s" %
565                                    (pid, err))
566
567     instance = None
568     memory = 0
569     vcpus = 0
570
571     arg_list = cmdline.split("\x00")
572     while arg_list:
573       arg = arg_list.pop(0)
574       if arg == "-name":
575         instance = arg_list.pop(0)
576       elif arg == "-m":
577         memory = int(arg_list.pop(0))
578       elif arg == "-smp":
579         vcpus = int(arg_list.pop(0))
580
581     if instance is None:
582       raise errors.HypervisorError("Pid %s doesn't contain a ganeti kvm"
583                                    " instance" % pid)
584
585     return (instance, memory, vcpus)
586
587   def _InstancePidAlive(self, instance_name):
588     """Returns the instance pidfile, pid, and liveness.
589
590     @type instance_name: string
591     @param instance_name: instance name
592     @rtype: tuple
593     @return: (pid file name, pid, liveness)
594
595     """
596     pidfile = self._InstancePidFile(instance_name)
597     pid = utils.ReadPidFile(pidfile)
598
599     alive = False
600     try:
601       cmd_instance = self._InstancePidInfo(pid)[0]
602       alive = (cmd_instance == instance_name)
603     except errors.HypervisorError:
604       pass
605
606     return (pidfile, pid, alive)
607
608   def _CheckDown(self, instance_name):
609     """Raises an error unless the given instance is down.
610
611     """
612     alive = self._InstancePidAlive(instance_name)[2]
613     if alive:
614       raise errors.HypervisorError("Failed to start instance %s: %s" %
615                                    (instance_name, "already running"))
616
617   @classmethod
618   def _InstanceMonitor(cls, instance_name):
619     """Returns the instance monitor socket name
620
621     """
622     return utils.PathJoin(cls._CTRL_DIR, "%s.monitor" % instance_name)
623
624   @classmethod
625   def _InstanceSerial(cls, instance_name):
626     """Returns the instance serial socket name
627
628     """
629     return utils.PathJoin(cls._CTRL_DIR, "%s.serial" % instance_name)
630
631   @classmethod
632   def _InstanceQmpMonitor(cls, instance_name):
633     """Returns the instance serial QMP socket name
634
635     """
636     return utils.PathJoin(cls._CTRL_DIR, "%s.qmp" % instance_name)
637
638   @staticmethod
639   def _SocatUnixConsoleParams():
640     """Returns the correct parameters for socat
641
642     If we have a new-enough socat we can use raw mode with an escape character.
643
644     """
645     if constants.SOCAT_USE_ESCAPE:
646       return "raw,echo=0,escape=%s" % constants.SOCAT_ESCAPE_CODE
647     else:
648       return "echo=0,icanon=0"
649
650   @classmethod
651   def _InstanceKVMRuntime(cls, instance_name):
652     """Returns the instance KVM runtime filename
653
654     """
655     return utils.PathJoin(cls._CONF_DIR, "%s.runtime" % instance_name)
656
657   @classmethod
658   def _InstanceChrootDir(cls, instance_name):
659     """Returns the name of the KVM chroot dir of the instance
660
661     """
662     return utils.PathJoin(cls._CHROOT_DIR, instance_name)
663
664   @classmethod
665   def _InstanceNICDir(cls, instance_name):
666     """Returns the name of the directory holding the tap device files for a
667     given instance.
668
669     """
670     return utils.PathJoin(cls._NICS_DIR, instance_name)
671
672   @classmethod
673   def _InstanceNICFile(cls, instance_name, seq):
674     """Returns the name of the file containing the tap device for a given NIC
675
676     """
677     return utils.PathJoin(cls._InstanceNICDir(instance_name), str(seq))
678
679   @classmethod
680   def _InstanceKeymapFile(cls, instance_name):
681     """Returns the name of the file containing the keymap for a given instance
682
683     """
684     return utils.PathJoin(cls._KEYMAP_DIR, instance_name)
685
686   @classmethod
687   def _TryReadUidFile(cls, uid_file):
688     """Try to read a uid file
689
690     """
691     if os.path.exists(uid_file):
692       try:
693         uid = int(utils.ReadOneLineFile(uid_file))
694         return uid
695       except EnvironmentError:
696         logging.warning("Can't read uid file", exc_info=True)
697       except (TypeError, ValueError):
698         logging.warning("Can't parse uid file contents", exc_info=True)
699     return None
700
701   @classmethod
702   def _RemoveInstanceRuntimeFiles(cls, pidfile, instance_name):
703     """Removes an instance's rutime sockets/files/dirs.
704
705     """
706     utils.RemoveFile(pidfile)
707     utils.RemoveFile(cls._InstanceMonitor(instance_name))
708     utils.RemoveFile(cls._InstanceSerial(instance_name))
709     utils.RemoveFile(cls._InstanceQmpMonitor(instance_name))
710     utils.RemoveFile(cls._InstanceKVMRuntime(instance_name))
711     utils.RemoveFile(cls._InstanceKeymapFile(instance_name))
712     uid_file = cls._InstanceUidFile(instance_name)
713     uid = cls._TryReadUidFile(uid_file)
714     utils.RemoveFile(uid_file)
715     if uid is not None:
716       uidpool.ReleaseUid(uid)
717     try:
718       shutil.rmtree(cls._InstanceNICDir(instance_name))
719     except OSError, err:
720       if err.errno != errno.ENOENT:
721         raise
722     try:
723       chroot_dir = cls._InstanceChrootDir(instance_name)
724       utils.RemoveDir(chroot_dir)
725     except OSError, err:
726       if err.errno == errno.ENOTEMPTY:
727         # The chroot directory is expected to be empty, but it isn't.
728         new_chroot_dir = tempfile.mkdtemp(dir=cls._CHROOT_QUARANTINE_DIR,
729                                           prefix="%s-%s-" %
730                                           (instance_name,
731                                            utils.TimestampForFilename()))
732         logging.warning("The chroot directory of instance %s can not be"
733                         " removed as it is not empty. Moving it to the"
734                         " quarantine instead. Please investigate the"
735                         " contents (%s) and clean up manually",
736                         instance_name, new_chroot_dir)
737         utils.RenameFile(chroot_dir, new_chroot_dir)
738       else:
739         raise
740
741   @staticmethod
742   def _ConfigureNIC(instance, seq, nic, tap):
743     """Run the network configuration script for a specified NIC
744
745     @param instance: instance we're acting on
746     @type instance: instance object
747     @param seq: nic sequence number
748     @type seq: int
749     @param nic: nic we're acting on
750     @type nic: nic object
751     @param tap: the host's tap interface this NIC corresponds to
752     @type tap: str
753
754     """
755     if instance.tags:
756       tags = " ".join(instance.tags)
757     else:
758       tags = ""
759
760     env = {
761       "PATH": "%s:/sbin:/usr/sbin" % os.environ["PATH"],
762       "INSTANCE": instance.name,
763       "MAC": nic.mac,
764       "MODE": nic.nicparams[constants.NIC_MODE],
765       "INTERFACE": tap,
766       "INTERFACE_INDEX": str(seq),
767       "TAGS": tags,
768     }
769
770     if nic.ip:
771       env["IP"] = nic.ip
772
773     if nic.nicparams[constants.NIC_LINK]:
774       env["LINK"] = nic.nicparams[constants.NIC_LINK]
775
776     if nic.nicparams[constants.NIC_MODE] == constants.NIC_MODE_BRIDGED:
777       env["BRIDGE"] = nic.nicparams[constants.NIC_LINK]
778
779     result = utils.RunCmd([constants.KVM_IFUP, tap], env=env)
780     if result.failed:
781       raise errors.HypervisorError("Failed to configure interface %s: %s."
782                                    " Network configuration script output: %s" %
783                                    (tap, result.fail_reason, result.output))
784
785   @staticmethod
786   def _VerifyAffinityPackage():
787     if affinity is None:
788       raise errors.HypervisorError("affinity Python package not"
789         " found; cannot use CPU pinning under KVM")
790
791   @staticmethod
792   def _BuildAffinityCpuMask(cpu_list):
793     """Create a CPU mask suitable for sched_setaffinity from a list of
794     CPUs.
795
796     See man taskset for more info on sched_setaffinity masks.
797     For example: [ 0, 2, 5, 6 ] will return 101 (0x65, 0..01100101).
798
799     @type cpu_list: list of int
800     @param cpu_list: list of physical CPU numbers to map to vCPUs in order
801     @rtype: int
802     @return: a bit mask of CPU affinities
803
804     """
805     if cpu_list == constants.CPU_PINNING_OFF:
806       return constants.CPU_PINNING_ALL_KVM
807     else:
808       return sum(2 ** cpu for cpu in cpu_list)
809
810   @classmethod
811   def _AssignCpuAffinity(cls, cpu_mask, process_id, thread_dict):
812     """Change CPU affinity for running VM according to given CPU mask.
813
814     @param cpu_mask: CPU mask as given by the user. e.g. "0-2,4:all:1,3"
815     @type cpu_mask: string
816     @param process_id: process ID of KVM process. Used to pin entire VM
817                        to physical CPUs.
818     @type process_id: int
819     @param thread_dict: map of virtual CPUs to KVM thread IDs
820     @type thread_dict: dict int:int
821
822     """
823     # Convert the string CPU mask to a list of list of int's
824     cpu_list = utils.ParseMultiCpuMask(cpu_mask)
825
826     if len(cpu_list) == 1:
827       all_cpu_mapping = cpu_list[0]
828       if all_cpu_mapping == constants.CPU_PINNING_OFF:
829         # If CPU pinning has 1 entry that's "all", then do nothing
830         pass
831       else:
832         # If CPU pinning has one non-all entry, map the entire VM to
833         # one set of physical CPUs
834         cls._VerifyAffinityPackage()
835         affinity.set_process_affinity_mask(process_id,
836           cls._BuildAffinityCpuMask(all_cpu_mapping))
837     else:
838       # The number of vCPUs mapped should match the number of vCPUs
839       # reported by KVM. This was already verified earlier, so
840       # here only as a sanity check.
841       assert len(thread_dict) == len(cpu_list)
842       cls._VerifyAffinityPackage()
843
844       # For each vCPU, map it to the proper list of physical CPUs
845       for vcpu, i in zip(cpu_list, range(len(cpu_list))):
846         affinity.set_process_affinity_mask(thread_dict[i],
847           cls._BuildAffinityCpuMask(vcpu))
848
849   def _GetVcpuThreadIds(self, instance_name):
850     """Get a mapping of vCPU no. to thread IDs for the instance
851
852     @type instance_name: string
853     @param instance_name: instance in question
854     @rtype: dictionary of int:int
855     @return: a dictionary mapping vCPU numbers to thread IDs
856
857     """
858     result = {}
859     output = self._CallMonitorCommand(instance_name, self._CPU_INFO_CMD)
860     for line in output.stdout.splitlines():
861       match = self._CPU_INFO_RE.search(line)
862       if not match:
863         continue
864       grp = map(int, match.groups())
865       result[grp[0]] = grp[1]
866
867     return result
868
869   def _ExecuteCpuAffinity(self, instance_name, cpu_mask):
870     """Complete CPU pinning.
871
872     @type instance_name: string
873     @param instance_name: name of instance
874     @type cpu_mask: string
875     @param cpu_mask: CPU pinning mask as entered by user
876
877     """
878     # Get KVM process ID, to be used if need to pin entire VM
879     _, pid, _ = self._InstancePidAlive(instance_name)
880     # Get vCPU thread IDs, to be used if need to pin vCPUs separately
881     thread_dict = self._GetVcpuThreadIds(instance_name)
882     # Run CPU pinning, based on configured mask
883     self._AssignCpuAffinity(cpu_mask, pid, thread_dict)
884
885   def ListInstances(self):
886     """Get the list of running instances.
887
888     We can do this by listing our live instances directory and
889     checking whether the associated kvm process is still alive.
890
891     """
892     result = []
893     for name in os.listdir(self._PIDS_DIR):
894       if self._InstancePidAlive(name)[2]:
895         result.append(name)
896     return result
897
898   def GetInstanceInfo(self, instance_name):
899     """Get instance properties.
900
901     @type instance_name: string
902     @param instance_name: the instance name
903     @rtype: tuple of strings
904     @return: (name, id, memory, vcpus, stat, times)
905
906     """
907     _, pid, alive = self._InstancePidAlive(instance_name)
908     if not alive:
909       return None
910
911     _, memory, vcpus = self._InstancePidInfo(pid)
912     istat = "---b-"
913     times = "0"
914
915     try:
916       qmp = QmpConnection(self._InstanceQmpMonitor(instance_name))
917       qmp.connect()
918       vcpus = len(qmp.Execute("query-cpus")[qmp.RETURN_KEY])
919       # Will fail if ballooning is not enabled, but we can then just resort to
920       # the value above.
921       mem_bytes = qmp.Execute("query-balloon")[qmp.RETURN_KEY][qmp.ACTUAL_KEY]
922       memory = mem_bytes / 1048576
923     except errors.HypervisorError:
924       pass
925
926     return (instance_name, pid, memory, vcpus, istat, times)
927
928   def GetAllInstancesInfo(self):
929     """Get properties of all instances.
930
931     @return: list of tuples (name, id, memory, vcpus, stat, times)
932
933     """
934     data = []
935     for name in os.listdir(self._PIDS_DIR):
936       try:
937         info = self.GetInstanceInfo(name)
938       except errors.HypervisorError:
939         continue
940       if info:
941         data.append(info)
942     return data
943
944   def _GenerateKVMRuntime(self, instance, block_devices, startup_paused):
945     """Generate KVM information to start an instance.
946
947     """
948     # pylint: disable=R0914,R0915
949     _, v_major, v_min, _ = self._GetKVMVersion()
950
951     pidfile = self._InstancePidFile(instance.name)
952     kvm = constants.KVM_PATH
953     kvm_cmd = [kvm]
954     # used just by the vnc server, if enabled
955     kvm_cmd.extend(["-name", instance.name])
956     kvm_cmd.extend(["-m", instance.beparams[constants.BE_MAXMEM]])
957     kvm_cmd.extend(["-smp", instance.beparams[constants.BE_VCPUS]])
958     kvm_cmd.extend(["-pidfile", pidfile])
959     kvm_cmd.extend(["-balloon", "virtio"])
960     kvm_cmd.extend(["-daemonize"])
961     if not instance.hvparams[constants.HV_ACPI]:
962       kvm_cmd.extend(["-no-acpi"])
963     if instance.hvparams[constants.HV_REBOOT_BEHAVIOR] == \
964         constants.INSTANCE_REBOOT_EXIT:
965       kvm_cmd.extend(["-no-reboot"])
966
967     hvp = instance.hvparams
968     boot_disk = hvp[constants.HV_BOOT_ORDER] == constants.HT_BO_DISK
969     boot_cdrom = hvp[constants.HV_BOOT_ORDER] == constants.HT_BO_CDROM
970     boot_floppy = hvp[constants.HV_BOOT_ORDER] == constants.HT_BO_FLOPPY
971     boot_network = hvp[constants.HV_BOOT_ORDER] == constants.HT_BO_NETWORK
972
973     self.ValidateParameters(hvp)
974
975     if startup_paused:
976       kvm_cmd.extend([_KVM_START_PAUSED_FLAG])
977
978     if hvp[constants.HV_KVM_FLAG] == constants.HT_KVM_ENABLED:
979       kvm_cmd.extend(["-enable-kvm"])
980     elif hvp[constants.HV_KVM_FLAG] == constants.HT_KVM_DISABLED:
981       kvm_cmd.extend(["-disable-kvm"])
982
983     if boot_network:
984       kvm_cmd.extend(["-boot", "n"])
985
986     disk_type = hvp[constants.HV_DISK_TYPE]
987     if disk_type == constants.HT_DISK_PARAVIRTUAL:
988       if_val = ",if=virtio"
989     else:
990       if_val = ",if=%s" % disk_type
991     # Cache mode
992     disk_cache = hvp[constants.HV_DISK_CACHE]
993     if instance.disk_template in constants.DTS_EXT_MIRROR:
994       if disk_cache != "none":
995         # TODO: make this a hard error, instead of a silent overwrite
996         logging.warning("KVM: overriding disk_cache setting '%s' with 'none'"
997                         " to prevent shared storage corruption on migration",
998                         disk_cache)
999       cache_val = ",cache=none"
1000     elif disk_cache != constants.HT_CACHE_DEFAULT:
1001       cache_val = ",cache=%s" % disk_cache
1002     else:
1003       cache_val = ""
1004     for cfdev, dev_path in block_devices:
1005       if cfdev.mode != constants.DISK_RDWR:
1006         raise errors.HypervisorError("Instance has read-only disks which"
1007                                      " are not supported by KVM")
1008       # TODO: handle FD_LOOP and FD_BLKTAP (?)
1009       boot_val = ""
1010       if boot_disk:
1011         kvm_cmd.extend(["-boot", "c"])
1012         boot_disk = False
1013         if (v_major, v_min) < (0, 14) and disk_type != constants.HT_DISK_IDE:
1014           boot_val = ",boot=on"
1015
1016       drive_val = "file=%s,format=raw%s%s%s" % (dev_path, if_val, boot_val,
1017                                                 cache_val)
1018       kvm_cmd.extend(["-drive", drive_val])
1019
1020     #Now we can specify a different device type for CDROM devices.
1021     cdrom_disk_type = hvp[constants.HV_KVM_CDROM_DISK_TYPE]
1022     if not cdrom_disk_type:
1023       cdrom_disk_type = disk_type
1024
1025     iso_image = hvp[constants.HV_CDROM_IMAGE_PATH]
1026     if iso_image:
1027       options = ",format=raw,media=cdrom"
1028       if boot_cdrom:
1029         kvm_cmd.extend(["-boot", "d"])
1030         if cdrom_disk_type != constants.HT_DISK_IDE:
1031           options = "%s,boot=on,if=%s" % (options, constants.HT_DISK_IDE)
1032         else:
1033           options = "%s,boot=on" % options
1034       else:
1035         if cdrom_disk_type == constants.HT_DISK_PARAVIRTUAL:
1036           if_val = ",if=virtio"
1037         else:
1038           if_val = ",if=%s" % cdrom_disk_type
1039         options = "%s%s" % (options, if_val)
1040       drive_val = "file=%s%s" % (iso_image, options)
1041       kvm_cmd.extend(["-drive", drive_val])
1042
1043     iso_image2 = hvp[constants.HV_KVM_CDROM2_IMAGE_PATH]
1044     if iso_image2:
1045       options = ",format=raw,media=cdrom"
1046       if cdrom_disk_type == constants.HT_DISK_PARAVIRTUAL:
1047         if_val = ",if=virtio"
1048       else:
1049         if_val = ",if=%s" % cdrom_disk_type
1050       options = "%s%s" % (options, if_val)
1051       drive_val = "file=%s%s" % (iso_image2, options)
1052       kvm_cmd.extend(["-drive", drive_val])
1053
1054     floppy_image = hvp[constants.HV_KVM_FLOPPY_IMAGE_PATH]
1055     if floppy_image:
1056       options = ",format=raw,media=disk"
1057       if boot_floppy:
1058         kvm_cmd.extend(["-boot", "a"])
1059         options = "%s,boot=on" % options
1060       if_val = ",if=floppy"
1061       options = "%s%s" % (options, if_val)
1062       drive_val = "file=%s%s" % (floppy_image, options)
1063       kvm_cmd.extend(["-drive", drive_val])
1064
1065     kernel_path = hvp[constants.HV_KERNEL_PATH]
1066     if kernel_path:
1067       kvm_cmd.extend(["-kernel", kernel_path])
1068       initrd_path = hvp[constants.HV_INITRD_PATH]
1069       if initrd_path:
1070         kvm_cmd.extend(["-initrd", initrd_path])
1071       root_append = ["root=%s" % hvp[constants.HV_ROOT_PATH],
1072                      hvp[constants.HV_KERNEL_ARGS]]
1073       if hvp[constants.HV_SERIAL_CONSOLE]:
1074         root_append.append("console=ttyS0,38400")
1075       kvm_cmd.extend(["-append", " ".join(root_append)])
1076
1077     mem_path = hvp[constants.HV_MEM_PATH]
1078     if mem_path:
1079       kvm_cmd.extend(["-mem-path", mem_path, "-mem-prealloc"])
1080
1081     mouse_type = hvp[constants.HV_USB_MOUSE]
1082     vnc_bind_address = hvp[constants.HV_VNC_BIND_ADDRESS]
1083
1084     if mouse_type:
1085       kvm_cmd.extend(["-usb"])
1086       kvm_cmd.extend(["-usbdevice", mouse_type])
1087     elif vnc_bind_address:
1088       kvm_cmd.extend(["-usbdevice", constants.HT_MOUSE_TABLET])
1089
1090     keymap = hvp[constants.HV_KEYMAP]
1091     if keymap:
1092       keymap_path = self._InstanceKeymapFile(instance.name)
1093       # If a keymap file is specified, KVM won't use its internal defaults. By
1094       # first including the "en-us" layout, an error on loading the actual
1095       # layout (e.g. because it can't be found) won't lead to a non-functional
1096       # keyboard. A keyboard with incorrect keys is still better than none.
1097       utils.WriteFile(keymap_path, data="include en-us\ninclude %s\n" % keymap)
1098       kvm_cmd.extend(["-k", keymap_path])
1099
1100     if vnc_bind_address:
1101       if netutils.IP4Address.IsValid(vnc_bind_address):
1102         if instance.network_port > constants.VNC_BASE_PORT:
1103           display = instance.network_port - constants.VNC_BASE_PORT
1104           if vnc_bind_address == constants.IP4_ADDRESS_ANY:
1105             vnc_arg = ":%d" % (display)
1106           else:
1107             vnc_arg = "%s:%d" % (vnc_bind_address, display)
1108         else:
1109           logging.error("Network port is not a valid VNC display (%d < %d)."
1110                         " Not starting VNC", instance.network_port,
1111                         constants.VNC_BASE_PORT)
1112           vnc_arg = "none"
1113
1114         # Only allow tls and other option when not binding to a file, for now.
1115         # kvm/qemu gets confused otherwise about the filename to use.
1116         vnc_append = ""
1117         if hvp[constants.HV_VNC_TLS]:
1118           vnc_append = "%s,tls" % vnc_append
1119           if hvp[constants.HV_VNC_X509_VERIFY]:
1120             vnc_append = "%s,x509verify=%s" % (vnc_append,
1121                                                hvp[constants.HV_VNC_X509])
1122           elif hvp[constants.HV_VNC_X509]:
1123             vnc_append = "%s,x509=%s" % (vnc_append,
1124                                          hvp[constants.HV_VNC_X509])
1125         if hvp[constants.HV_VNC_PASSWORD_FILE]:
1126           vnc_append = "%s,password" % vnc_append
1127
1128         vnc_arg = "%s%s" % (vnc_arg, vnc_append)
1129
1130       else:
1131         vnc_arg = "unix:%s/%s.vnc" % (vnc_bind_address, instance.name)
1132
1133       kvm_cmd.extend(["-vnc", vnc_arg])
1134     else:
1135       kvm_cmd.extend(["-nographic"])
1136
1137     monitor_dev = ("unix:%s,server,nowait" %
1138                    self._InstanceMonitor(instance.name))
1139     kvm_cmd.extend(["-monitor", monitor_dev])
1140     if hvp[constants.HV_SERIAL_CONSOLE]:
1141       serial_dev = ("unix:%s,server,nowait" %
1142                     self._InstanceSerial(instance.name))
1143       kvm_cmd.extend(["-serial", serial_dev])
1144     else:
1145       kvm_cmd.extend(["-serial", "none"])
1146
1147     spice_bind = hvp[constants.HV_KVM_SPICE_BIND]
1148     spice_ip_version = None
1149     if spice_bind:
1150       if netutils.IsValidInterface(spice_bind):
1151         # The user specified a network interface, we have to figure out the IP
1152         # address.
1153         addresses = netutils.GetInterfaceIpAddresses(spice_bind)
1154         spice_ip_version = hvp[constants.HV_KVM_SPICE_IP_VERSION]
1155
1156         # if the user specified an IP version and the interface does not
1157         # have that kind of IP addresses, throw an exception
1158         if spice_ip_version != constants.IFACE_NO_IP_VERSION_SPECIFIED:
1159           if not addresses[spice_ip_version]:
1160             raise errors.HypervisorError("spice: unable to get an IPv%s address"
1161                                          " for %s" % (spice_ip_version,
1162                                                       spice_bind))
1163
1164         # the user did not specify an IP version, we have to figure it out
1165         elif (addresses[constants.IP4_VERSION] and
1166               addresses[constants.IP6_VERSION]):
1167           # we have both ipv4 and ipv6, let's use the cluster default IP
1168           # version
1169           cluster_family = ssconf.SimpleStore().GetPrimaryIPFamily()
1170           spice_ip_version = \
1171             netutils.IPAddress.GetVersionFromAddressFamily(cluster_family)
1172         elif addresses[constants.IP4_VERSION]:
1173           spice_ip_version = constants.IP4_VERSION
1174         elif addresses[constants.IP6_VERSION]:
1175           spice_ip_version = constants.IP6_VERSION
1176         else:
1177           raise errors.HypervisorError("spice: unable to get an IP address"
1178                                        " for %s" % (spice_bind))
1179
1180         spice_address = addresses[spice_ip_version][0]
1181
1182       else:
1183         # spice_bind is known to be a valid IP address, because
1184         # ValidateParameters checked it.
1185         spice_address = spice_bind
1186
1187       spice_arg = "addr=%s" % spice_address
1188       if hvp[constants.HV_KVM_SPICE_USE_TLS]:
1189         spice_arg = "%s,tls-port=%s,x509-cacert-file=%s" % (spice_arg,
1190             instance.network_port, constants.SPICE_CACERT_FILE)
1191         spice_arg = "%s,x509-key-file=%s,x509-cert-file=%s" % (spice_arg,
1192             constants.SPICE_CERT_FILE, constants.SPICE_CERT_FILE)
1193         tls_ciphers = hvp[constants.HV_KVM_SPICE_TLS_CIPHERS]
1194         if tls_ciphers:
1195           spice_arg = "%s,tls-ciphers=%s" % (spice_arg, tls_ciphers)
1196       else:
1197         spice_arg = "%s,port=%s" % (spice_arg, instance.network_port)
1198
1199       if not hvp[constants.HV_KVM_SPICE_PASSWORD_FILE]:
1200         spice_arg = "%s,disable-ticketing" % spice_arg
1201
1202       if spice_ip_version:
1203         spice_arg = "%s,ipv%s" % (spice_arg, spice_ip_version)
1204
1205       # Image compression options
1206       img_lossless = hvp[constants.HV_KVM_SPICE_LOSSLESS_IMG_COMPR]
1207       img_jpeg = hvp[constants.HV_KVM_SPICE_JPEG_IMG_COMPR]
1208       img_zlib_glz = hvp[constants.HV_KVM_SPICE_ZLIB_GLZ_IMG_COMPR]
1209       if img_lossless:
1210         spice_arg = "%s,image-compression=%s" % (spice_arg, img_lossless)
1211       if img_jpeg:
1212         spice_arg = "%s,jpeg-wan-compression=%s" % (spice_arg, img_jpeg)
1213       if img_zlib_glz:
1214         spice_arg = "%s,zlib-glz-wan-compression=%s" % (spice_arg, img_zlib_glz)
1215
1216       # Video stream detection
1217       video_streaming = hvp[constants.HV_KVM_SPICE_STREAMING_VIDEO_DETECTION]
1218       if video_streaming:
1219         spice_arg = "%s,streaming-video=%s" % (spice_arg, video_streaming)
1220
1221       # Audio compression, by default in qemu-kvm it is on
1222       if not hvp[constants.HV_KVM_SPICE_AUDIO_COMPR]:
1223         spice_arg = "%s,playback-compression=off" % spice_arg
1224       if not hvp[constants.HV_KVM_SPICE_USE_VDAGENT]:
1225         spice_arg = "%s,agent-mouse=off" % spice_arg
1226       else:
1227         # Enable the spice agent communication channel between the host and the
1228         # agent.
1229         kvm_cmd.extend(["-device", "virtio-serial-pci"])
1230         kvm_cmd.extend(["-device", "virtserialport,chardev=spicechannel0,"
1231                                                    "name=com.redhat.spice.0"])
1232         kvm_cmd.extend(["-chardev", "spicevmc,id=spicechannel0,name=vdagent"])
1233
1234       logging.info("KVM: SPICE will listen on port %s", instance.network_port)
1235       kvm_cmd.extend(["-spice", spice_arg])
1236
1237       # Tell kvm to use the paravirtualized graphic card, optimized for SPICE
1238       kvm_cmd.extend(["-vga", "qxl"])
1239
1240     if hvp[constants.HV_USE_LOCALTIME]:
1241       kvm_cmd.extend(["-localtime"])
1242
1243     if hvp[constants.HV_KVM_USE_CHROOT]:
1244       kvm_cmd.extend(["-chroot", self._InstanceChrootDir(instance.name)])
1245
1246     # Save the current instance nics, but defer their expansion as parameters,
1247     # as we'll need to generate executable temp files for them.
1248     kvm_nics = instance.nics
1249     hvparams = hvp
1250
1251     return (kvm_cmd, kvm_nics, hvparams)
1252
1253   def _WriteKVMRuntime(self, instance_name, data):
1254     """Write an instance's KVM runtime
1255
1256     """
1257     try:
1258       utils.WriteFile(self._InstanceKVMRuntime(instance_name),
1259                       data=data)
1260     except EnvironmentError, err:
1261       raise errors.HypervisorError("Failed to save KVM runtime file: %s" % err)
1262
1263   def _ReadKVMRuntime(self, instance_name):
1264     """Read an instance's KVM runtime
1265
1266     """
1267     try:
1268       file_content = utils.ReadFile(self._InstanceKVMRuntime(instance_name))
1269     except EnvironmentError, err:
1270       raise errors.HypervisorError("Failed to load KVM runtime file: %s" % err)
1271     return file_content
1272
1273   def _SaveKVMRuntime(self, instance, kvm_runtime):
1274     """Save an instance's KVM runtime
1275
1276     """
1277     kvm_cmd, kvm_nics, hvparams = kvm_runtime
1278     serialized_nics = [nic.ToDict() for nic in kvm_nics]
1279     serialized_form = serializer.Dump((kvm_cmd, serialized_nics, hvparams))
1280     self._WriteKVMRuntime(instance.name, serialized_form)
1281
1282   def _LoadKVMRuntime(self, instance, serialized_runtime=None):
1283     """Load an instance's KVM runtime
1284
1285     """
1286     if not serialized_runtime:
1287       serialized_runtime = self._ReadKVMRuntime(instance.name)
1288     loaded_runtime = serializer.Load(serialized_runtime)
1289     kvm_cmd, serialized_nics, hvparams = loaded_runtime
1290     kvm_nics = [objects.NIC.FromDict(snic) for snic in serialized_nics]
1291     return (kvm_cmd, kvm_nics, hvparams)
1292
1293   def _RunKVMCmd(self, name, kvm_cmd, tap_fds=None):
1294     """Run the KVM cmd and check for errors
1295
1296     @type name: string
1297     @param name: instance name
1298     @type kvm_cmd: list of strings
1299     @param kvm_cmd: runcmd input for kvm
1300     @type tap_fds: list of int
1301     @param tap_fds: fds of tap devices opened by Ganeti
1302
1303     """
1304     try:
1305       result = utils.RunCmd(kvm_cmd, noclose_fds=tap_fds)
1306     finally:
1307       for fd in tap_fds:
1308         utils_wrapper.CloseFdNoError(fd)
1309
1310     if result.failed:
1311       raise errors.HypervisorError("Failed to start instance %s: %s (%s)" %
1312                                    (name, result.fail_reason, result.output))
1313     if not self._InstancePidAlive(name)[2]:
1314       raise errors.HypervisorError("Failed to start instance %s" % name)
1315
1316   def _ExecuteKVMRuntime(self, instance, kvm_runtime, incoming=None):
1317     """Execute a KVM cmd, after completing it with some last minute data
1318
1319     @type incoming: tuple of strings
1320     @param incoming: (target_host_ip, port)
1321
1322     """
1323     # Small _ExecuteKVMRuntime hv parameters programming howto:
1324     #  - conf_hvp contains the parameters as configured on ganeti. they might
1325     #    have changed since the instance started; only use them if the change
1326     #    won't affect the inside of the instance (which hasn't been rebooted).
1327     #  - up_hvp contains the parameters as they were when the instance was
1328     #    started, plus any new parameter which has been added between ganeti
1329     #    versions: it is paramount that those default to a value which won't
1330     #    affect the inside of the instance as well.
1331     conf_hvp = instance.hvparams
1332     name = instance.name
1333     self._CheckDown(name)
1334
1335     temp_files = []
1336
1337     kvm_cmd, kvm_nics, up_hvp = kvm_runtime
1338     up_hvp = objects.FillDict(conf_hvp, up_hvp)
1339
1340     _, v_major, v_min, _ = self._GetKVMVersion()
1341
1342     # We know it's safe to run as a different user upon migration, so we'll use
1343     # the latest conf, from conf_hvp.
1344     security_model = conf_hvp[constants.HV_SECURITY_MODEL]
1345     if security_model == constants.HT_SM_USER:
1346       kvm_cmd.extend(["-runas", conf_hvp[constants.HV_SECURITY_DOMAIN]])
1347
1348     # We have reasons to believe changing something like the nic driver/type
1349     # upon migration won't exactly fly with the instance kernel, so for nic
1350     # related parameters we'll use up_hvp
1351     tapfds = []
1352     taps = []
1353     if not kvm_nics:
1354       kvm_cmd.extend(["-net", "none"])
1355     else:
1356       vnet_hdr = False
1357       tap_extra = ""
1358       nic_type = up_hvp[constants.HV_NIC_TYPE]
1359       if nic_type == constants.HT_NIC_PARAVIRTUAL:
1360         # From version 0.12.0, kvm uses a new sintax for network configuration.
1361         if (v_major, v_min) >= (0, 12):
1362           nic_model = "virtio-net-pci"
1363           vnet_hdr = True
1364         else:
1365           nic_model = "virtio"
1366
1367         if up_hvp[constants.HV_VHOST_NET]:
1368           # vhost_net is only available from version 0.13.0 or newer
1369           if (v_major, v_min) >= (0, 13):
1370             tap_extra = ",vhost=on"
1371           else:
1372             raise errors.HypervisorError("vhost_net is configured"
1373                                         " but it is not available")
1374       else:
1375         nic_model = nic_type
1376
1377       for nic_seq, nic in enumerate(kvm_nics):
1378         tapname, tapfd = _OpenTap(vnet_hdr)
1379         tapfds.append(tapfd)
1380         taps.append(tapname)
1381         if (v_major, v_min) >= (0, 12):
1382           nic_val = "%s,mac=%s,netdev=netdev%s" % (nic_model, nic.mac, nic_seq)
1383           tap_val = "type=tap,id=netdev%s,fd=%d%s" % (nic_seq, tapfd, tap_extra)
1384           kvm_cmd.extend(["-netdev", tap_val, "-device", nic_val])
1385         else:
1386           nic_val = "nic,vlan=%s,macaddr=%s,model=%s" % (nic_seq,
1387                                                          nic.mac, nic_model)
1388           tap_val = "tap,vlan=%s,fd=%d" % (nic_seq, tapfd)
1389           kvm_cmd.extend(["-net", tap_val, "-net", nic_val])
1390
1391     if incoming:
1392       target, port = incoming
1393       kvm_cmd.extend(["-incoming", "tcp:%s:%s" % (target, port)])
1394
1395     # Changing the vnc password doesn't bother the guest that much. At most it
1396     # will surprise people who connect to it. Whether positively or negatively
1397     # it's debatable.
1398     vnc_pwd_file = conf_hvp[constants.HV_VNC_PASSWORD_FILE]
1399     vnc_pwd = None
1400     if vnc_pwd_file:
1401       try:
1402         vnc_pwd = utils.ReadOneLineFile(vnc_pwd_file, strict=True)
1403       except EnvironmentError, err:
1404         raise errors.HypervisorError("Failed to open VNC password file %s: %s"
1405                                      % (vnc_pwd_file, err))
1406
1407     if conf_hvp[constants.HV_KVM_USE_CHROOT]:
1408       utils.EnsureDirs([(self._InstanceChrootDir(name),
1409                          constants.SECURE_DIR_MODE)])
1410
1411     # Automatically enable QMP if version is >= 0.14
1412     if (v_major, v_min) >= (0, 14):
1413       logging.debug("Enabling QMP")
1414       kvm_cmd.extend(["-qmp", "unix:%s,server,nowait" %
1415                     self._InstanceQmpMonitor(instance.name)])
1416
1417     # Configure the network now for starting instances and bridged interfaces,
1418     # during FinalizeMigration for incoming instances' routed interfaces
1419     for nic_seq, nic in enumerate(kvm_nics):
1420       if (incoming and
1421           nic.nicparams[constants.NIC_MODE] != constants.NIC_MODE_BRIDGED):
1422         continue
1423       self._ConfigureNIC(instance, nic_seq, nic, taps[nic_seq])
1424
1425     # CPU affinity requires kvm to start paused, so we set this flag if the
1426     # instance is not already paused and if we are not going to accept a
1427     # migrating instance. In the latter case, pausing is not needed.
1428     start_kvm_paused = not (_KVM_START_PAUSED_FLAG in kvm_cmd) and not incoming
1429     if start_kvm_paused:
1430       kvm_cmd.extend([_KVM_START_PAUSED_FLAG])
1431
1432     # Note: CPU pinning is using up_hvp since changes take effect
1433     # during instance startup anyway, and to avoid problems when soft
1434     # rebooting the instance.
1435     cpu_pinning = False
1436     if up_hvp.get(constants.HV_CPU_MASK, None):
1437       cpu_pinning = True
1438
1439     if security_model == constants.HT_SM_POOL:
1440       ss = ssconf.SimpleStore()
1441       uid_pool = uidpool.ParseUidPool(ss.GetUidPool(), separator="\n")
1442       all_uids = set(uidpool.ExpandUidPool(uid_pool))
1443       uid = uidpool.RequestUnusedUid(all_uids)
1444       try:
1445         username = pwd.getpwuid(uid.GetUid()).pw_name
1446         kvm_cmd.extend(["-runas", username])
1447         self._RunKVMCmd(name, kvm_cmd, tapfds)
1448       except:
1449         uidpool.ReleaseUid(uid)
1450         raise
1451       else:
1452         uid.Unlock()
1453         utils.WriteFile(self._InstanceUidFile(name), data=uid.AsStr())
1454     else:
1455       self._RunKVMCmd(name, kvm_cmd, tapfds)
1456
1457     utils.EnsureDirs([(self._InstanceNICDir(instance.name),
1458                      constants.RUN_DIRS_MODE)])
1459     for nic_seq, tap in enumerate(taps):
1460       utils.WriteFile(self._InstanceNICFile(instance.name, nic_seq),
1461                       data=tap)
1462
1463     if vnc_pwd:
1464       change_cmd = "change vnc password %s" % vnc_pwd
1465       self._CallMonitorCommand(instance.name, change_cmd)
1466
1467     # Setting SPICE password. We are not vulnerable to malicious passwordless
1468     # connection attempts because SPICE by default does not allow connections
1469     # if neither a password nor the "disable_ticketing" options are specified.
1470     # As soon as we send the password via QMP, that password is a valid ticket
1471     # for connection.
1472     spice_password_file = conf_hvp[constants.HV_KVM_SPICE_PASSWORD_FILE]
1473     if spice_password_file:
1474       spice_pwd = ""
1475       try:
1476         spice_pwd = utils.ReadOneLineFile(spice_password_file, strict=True)
1477       except EnvironmentError, err:
1478         raise errors.HypervisorError("Failed to open SPICE password file %s: %s"
1479                                      % (spice_password_file, err))
1480
1481       qmp = QmpConnection(self._InstanceQmpMonitor(instance.name))
1482       qmp.connect()
1483       arguments = {
1484           "protocol": "spice",
1485           "password": spice_pwd,
1486       }
1487       qmp.Execute("set_password", arguments)
1488
1489     for filename in temp_files:
1490       utils.RemoveFile(filename)
1491
1492     # If requested, set CPU affinity and resume instance execution
1493     if cpu_pinning:
1494       self._ExecuteCpuAffinity(instance.name, up_hvp[constants.HV_CPU_MASK])
1495
1496     start_memory = self._InstanceStartupMemory(instance)
1497     if start_memory < instance.beparams[constants.BE_MAXMEM]:
1498       self.BalloonInstanceMemory(instance, start_memory)
1499
1500     if start_kvm_paused:
1501       # To control CPU pinning, ballooning, and vnc/spice passwords the VM was
1502       # started in a frozen state. If freezing was not explicitely requested
1503       # resume the vm status.
1504       self._CallMonitorCommand(instance.name, self._CONT_CMD)
1505
1506   def StartInstance(self, instance, block_devices, startup_paused):
1507     """Start an instance.
1508
1509     """
1510     self._CheckDown(instance.name)
1511     kvm_runtime = self._GenerateKVMRuntime(instance, block_devices,
1512                                            startup_paused)
1513     self._SaveKVMRuntime(instance, kvm_runtime)
1514     self._ExecuteKVMRuntime(instance, kvm_runtime)
1515
1516   def _CallMonitorCommand(self, instance_name, command):
1517     """Invoke a command on the instance monitor.
1518
1519     """
1520     socat = ("echo %s | %s STDIO UNIX-CONNECT:%s" %
1521              (utils.ShellQuote(command),
1522               constants.SOCAT_PATH,
1523               utils.ShellQuote(self._InstanceMonitor(instance_name))))
1524     result = utils.RunCmd(socat)
1525     if result.failed:
1526       msg = ("Failed to send command '%s' to instance %s."
1527              " output: %s, error: %s, fail_reason: %s" %
1528              (command, instance_name,
1529               result.stdout, result.stderr, result.fail_reason))
1530       raise errors.HypervisorError(msg)
1531
1532     return result
1533
1534   @classmethod
1535   def _ParseKVMVersion(cls, text):
1536     """Parse the KVM version from the --help output.
1537
1538     @type text: string
1539     @param text: output of kvm --help
1540     @return: (version, v_maj, v_min, v_rev)
1541     @raise L{errors.HypervisorError}: when the KVM version cannot be retrieved
1542
1543     """
1544     match = cls._VERSION_RE.search(text.splitlines()[0])
1545     if not match:
1546       raise errors.HypervisorError("Unable to get KVM version")
1547
1548     v_all = match.group(0)
1549     v_maj = int(match.group(1))
1550     v_min = int(match.group(2))
1551     if match.group(4):
1552       v_rev = int(match.group(4))
1553     else:
1554       v_rev = 0
1555     return (v_all, v_maj, v_min, v_rev)
1556
1557   @classmethod
1558   def _GetKVMVersion(cls):
1559     """Return the installed KVM version.
1560
1561     @return: (version, v_maj, v_min, v_rev)
1562     @raise L{errors.HypervisorError}: when the KVM version cannot be retrieved
1563
1564     """
1565     result = utils.RunCmd([constants.KVM_PATH, "--help"])
1566     if result.failed:
1567       raise errors.HypervisorError("Unable to get KVM version")
1568     return cls._ParseKVMVersion(result.output)
1569
1570   def StopInstance(self, instance, force=False, retry=False, name=None):
1571     """Stop an instance.
1572
1573     """
1574     if name is not None and not force:
1575       raise errors.HypervisorError("Cannot shutdown cleanly by name only")
1576     if name is None:
1577       name = instance.name
1578       acpi = instance.hvparams[constants.HV_ACPI]
1579     else:
1580       acpi = False
1581     _, pid, alive = self._InstancePidAlive(name)
1582     if pid > 0 and alive:
1583       if force or not acpi:
1584         utils.KillProcess(pid)
1585       else:
1586         self._CallMonitorCommand(name, "system_powerdown")
1587
1588   def CleanupInstance(self, instance_name):
1589     """Cleanup after a stopped instance
1590
1591     """
1592     pidfile, pid, alive = self._InstancePidAlive(instance_name)
1593     if pid > 0 and alive:
1594       raise errors.HypervisorError("Cannot cleanup a live instance")
1595     self._RemoveInstanceRuntimeFiles(pidfile, instance_name)
1596
1597   def RebootInstance(self, instance):
1598     """Reboot an instance.
1599
1600     """
1601     # For some reason if we do a 'send-key ctrl-alt-delete' to the control
1602     # socket the instance will stop, but now power up again. So we'll resort
1603     # to shutdown and restart.
1604     _, _, alive = self._InstancePidAlive(instance.name)
1605     if not alive:
1606       raise errors.HypervisorError("Failed to reboot instance %s:"
1607                                    " not running" % instance.name)
1608     # StopInstance will delete the saved KVM runtime so:
1609     # ...first load it...
1610     kvm_runtime = self._LoadKVMRuntime(instance)
1611     # ...now we can safely call StopInstance...
1612     if not self.StopInstance(instance):
1613       self.StopInstance(instance, force=True)
1614     # ...and finally we can save it again, and execute it...
1615     self._SaveKVMRuntime(instance, kvm_runtime)
1616     self._ExecuteKVMRuntime(instance, kvm_runtime)
1617
1618   def MigrationInfo(self, instance):
1619     """Get instance information to perform a migration.
1620
1621     @type instance: L{objects.Instance}
1622     @param instance: instance to be migrated
1623     @rtype: string
1624     @return: content of the KVM runtime file
1625
1626     """
1627     return self._ReadKVMRuntime(instance.name)
1628
1629   def AcceptInstance(self, instance, info, target):
1630     """Prepare to accept an instance.
1631
1632     @type instance: L{objects.Instance}
1633     @param instance: instance to be accepted
1634     @type info: string
1635     @param info: content of the KVM runtime file on the source node
1636     @type target: string
1637     @param target: target host (usually ip), on this node
1638
1639     """
1640     kvm_runtime = self._LoadKVMRuntime(instance, serialized_runtime=info)
1641     incoming_address = (target, instance.hvparams[constants.HV_MIGRATION_PORT])
1642     self._ExecuteKVMRuntime(instance, kvm_runtime, incoming=incoming_address)
1643
1644   def FinalizeMigrationDst(self, instance, info, success):
1645     """Finalize the instance migration on the target node.
1646
1647     Stop the incoming mode KVM.
1648
1649     @type instance: L{objects.Instance}
1650     @param instance: instance whose migration is being finalized
1651
1652     """
1653     if success:
1654       kvm_runtime = self._LoadKVMRuntime(instance, serialized_runtime=info)
1655       kvm_nics = kvm_runtime[1]
1656
1657       for nic_seq, nic in enumerate(kvm_nics):
1658         if nic.nicparams[constants.NIC_MODE] == constants.NIC_MODE_BRIDGED:
1659           # Bridged interfaces have already been configured
1660           continue
1661         try:
1662           tap = utils.ReadFile(self._InstanceNICFile(instance.name, nic_seq))
1663         except EnvironmentError, err:
1664           logging.warning("Failed to find host interface for %s NIC #%d: %s",
1665                           instance.name, nic_seq, str(err))
1666           continue
1667         try:
1668           self._ConfigureNIC(instance, nic_seq, nic, tap)
1669         except errors.HypervisorError, err:
1670           logging.warning(str(err))
1671
1672       self._WriteKVMRuntime(instance.name, info)
1673     else:
1674       self.StopInstance(instance, force=True)
1675
1676   def MigrateInstance(self, instance, target, live):
1677     """Migrate an instance to a target node.
1678
1679     The migration will not be attempted if the instance is not
1680     currently running.
1681
1682     @type instance: L{objects.Instance}
1683     @param instance: the instance to be migrated
1684     @type target: string
1685     @param target: ip address of the target node
1686     @type live: boolean
1687     @param live: perform a live migration
1688
1689     """
1690     instance_name = instance.name
1691     port = instance.hvparams[constants.HV_MIGRATION_PORT]
1692     _, _, alive = self._InstancePidAlive(instance_name)
1693     if not alive:
1694       raise errors.HypervisorError("Instance not running, cannot migrate")
1695
1696     if not live:
1697       self._CallMonitorCommand(instance_name, "stop")
1698
1699     migrate_command = ("migrate_set_speed %dm" %
1700         instance.hvparams[constants.HV_MIGRATION_BANDWIDTH])
1701     self._CallMonitorCommand(instance_name, migrate_command)
1702
1703     migrate_command = ("migrate_set_downtime %dms" %
1704         instance.hvparams[constants.HV_MIGRATION_DOWNTIME])
1705     self._CallMonitorCommand(instance_name, migrate_command)
1706
1707     migrate_command = "migrate -d tcp:%s:%s" % (target, port)
1708     self._CallMonitorCommand(instance_name, migrate_command)
1709
1710   def FinalizeMigrationSource(self, instance, success, live):
1711     """Finalize the instance migration on the source node.
1712
1713     @type instance: L{objects.Instance}
1714     @param instance: the instance that was migrated
1715     @type success: bool
1716     @param success: whether the migration succeeded or not
1717     @type live: bool
1718     @param live: whether the user requested a live migration or not
1719
1720     """
1721     if success:
1722       pidfile, pid, _ = self._InstancePidAlive(instance.name)
1723       utils.KillProcess(pid)
1724       self._RemoveInstanceRuntimeFiles(pidfile, instance.name)
1725     elif live:
1726       self._CallMonitorCommand(instance.name, self._CONT_CMD)
1727
1728   def GetMigrationStatus(self, instance):
1729     """Get the migration status
1730
1731     @type instance: L{objects.Instance}
1732     @param instance: the instance that is being migrated
1733     @rtype: L{objects.MigrationStatus}
1734     @return: the status of the current migration (one of
1735              L{constants.HV_MIGRATION_VALID_STATUSES}), plus any additional
1736              progress info that can be retrieved from the hypervisor
1737
1738     """
1739     info_command = "info migrate"
1740     for _ in range(self._MIGRATION_INFO_MAX_BAD_ANSWERS):
1741       result = self._CallMonitorCommand(instance.name, info_command)
1742       match = self._MIGRATION_STATUS_RE.search(result.stdout)
1743       if not match:
1744         if not result.stdout:
1745           logging.info("KVM: empty 'info migrate' result")
1746         else:
1747           logging.warning("KVM: unknown 'info migrate' result: %s",
1748                           result.stdout)
1749       else:
1750         status = match.group(1)
1751         if status in constants.HV_KVM_MIGRATION_VALID_STATUSES:
1752           migration_status = objects.MigrationStatus(status=status)
1753           match = self._MIGRATION_PROGRESS_RE.search(result.stdout)
1754           if match:
1755             migration_status.transferred_ram = match.group("transferred")
1756             migration_status.total_ram = match.group("total")
1757
1758           return migration_status
1759
1760         logging.warning("KVM: unknown migration status '%s'", status)
1761
1762       time.sleep(self._MIGRATION_INFO_RETRY_DELAY)
1763
1764     return objects.MigrationStatus(status=constants.HV_MIGRATION_FAILED,
1765                                   info="Too many 'info migrate' broken answers")
1766
1767   def BalloonInstanceMemory(self, instance, mem):
1768     """Balloon an instance memory to a certain value.
1769
1770     @type instance: L{objects.Instance}
1771     @param instance: instance to be accepted
1772     @type mem: int
1773     @param mem: actual memory size to use for instance runtime
1774
1775     """
1776     self._CallMonitorCommand(instance.name, "balloon %d" % mem)
1777
1778   def GetNodeInfo(self):
1779     """Return information about the node.
1780
1781     @return: a dict with the following keys (values in MiB):
1782           - memory_total: the total memory size on the node
1783           - memory_free: the available memory on the node for instances
1784           - memory_dom0: the memory used by the node itself, if available
1785           - hv_version: the hypervisor version in the form (major, minor,
1786                         revision)
1787
1788     """
1789     result = self.GetLinuxNodeInfo()
1790     _, v_major, v_min, v_rev = self._GetKVMVersion()
1791     result[constants.HV_NODEINFO_KEY_VERSION] = (v_major, v_min, v_rev)
1792     return result
1793
1794   @classmethod
1795   def GetInstanceConsole(cls, instance, hvparams, beparams):
1796     """Return a command for connecting to the console of an instance.
1797
1798     """
1799     if hvparams[constants.HV_SERIAL_CONSOLE]:
1800       cmd = [constants.KVM_CONSOLE_WRAPPER,
1801              constants.SOCAT_PATH, utils.ShellQuote(instance.name),
1802              utils.ShellQuote(cls._InstanceMonitor(instance.name)),
1803              "STDIO,%s" % cls._SocatUnixConsoleParams(),
1804              "UNIX-CONNECT:%s" % cls._InstanceSerial(instance.name)]
1805       return objects.InstanceConsole(instance=instance.name,
1806                                      kind=constants.CONS_SSH,
1807                                      host=instance.primary_node,
1808                                      user=constants.GANETI_RUNAS,
1809                                      command=cmd)
1810
1811     vnc_bind_address = hvparams[constants.HV_VNC_BIND_ADDRESS]
1812     if vnc_bind_address and instance.network_port > constants.VNC_BASE_PORT:
1813       display = instance.network_port - constants.VNC_BASE_PORT
1814       return objects.InstanceConsole(instance=instance.name,
1815                                      kind=constants.CONS_VNC,
1816                                      host=vnc_bind_address,
1817                                      port=instance.network_port,
1818                                      display=display)
1819
1820     spice_bind = hvparams[constants.HV_KVM_SPICE_BIND]
1821     if spice_bind:
1822       return objects.InstanceConsole(instance=instance.name,
1823                                      kind=constants.CONS_SPICE,
1824                                      host=spice_bind,
1825                                      port=instance.network_port)
1826
1827     return objects.InstanceConsole(instance=instance.name,
1828                                    kind=constants.CONS_MESSAGE,
1829                                    message=("No serial shell for instance %s" %
1830                                             instance.name))
1831
1832   def Verify(self):
1833     """Verify the hypervisor.
1834
1835     Check that the binary exists.
1836
1837     """
1838     if not os.path.exists(constants.KVM_PATH):
1839       return "The kvm binary ('%s') does not exist." % constants.KVM_PATH
1840     if not os.path.exists(constants.SOCAT_PATH):
1841       return "The socat binary ('%s') does not exist." % constants.SOCAT_PATH
1842
1843   @classmethod
1844   def CheckParameterSyntax(cls, hvparams):
1845     """Check the given parameters for validity.
1846
1847     @type hvparams:  dict
1848     @param hvparams: dictionary with parameter names/value
1849     @raise errors.HypervisorError: when a parameter is not valid
1850
1851     """
1852     super(KVMHypervisor, cls).CheckParameterSyntax(hvparams)
1853
1854     kernel_path = hvparams[constants.HV_KERNEL_PATH]
1855     if kernel_path:
1856       if not hvparams[constants.HV_ROOT_PATH]:
1857         raise errors.HypervisorError("Need a root partition for the instance,"
1858                                      " if a kernel is defined")
1859
1860     if (hvparams[constants.HV_VNC_X509_VERIFY] and
1861         not hvparams[constants.HV_VNC_X509]):
1862       raise errors.HypervisorError("%s must be defined, if %s is" %
1863                                    (constants.HV_VNC_X509,
1864                                     constants.HV_VNC_X509_VERIFY))
1865
1866     boot_order = hvparams[constants.HV_BOOT_ORDER]
1867     if (boot_order == constants.HT_BO_CDROM and
1868         not hvparams[constants.HV_CDROM_IMAGE_PATH]):
1869       raise errors.HypervisorError("Cannot boot from cdrom without an"
1870                                    " ISO path")
1871
1872     security_model = hvparams[constants.HV_SECURITY_MODEL]
1873     if security_model == constants.HT_SM_USER:
1874       if not hvparams[constants.HV_SECURITY_DOMAIN]:
1875         raise errors.HypervisorError("A security domain (user to run kvm as)"
1876                                      " must be specified")
1877     elif (security_model == constants.HT_SM_NONE or
1878           security_model == constants.HT_SM_POOL):
1879       if hvparams[constants.HV_SECURITY_DOMAIN]:
1880         raise errors.HypervisorError("Cannot have a security domain when the"
1881                                      " security model is 'none' or 'pool'")
1882
1883     spice_bind = hvparams[constants.HV_KVM_SPICE_BIND]
1884     spice_ip_version = hvparams[constants.HV_KVM_SPICE_IP_VERSION]
1885     if spice_bind:
1886       if spice_ip_version != constants.IFACE_NO_IP_VERSION_SPECIFIED:
1887         # if an IP version is specified, the spice_bind parameter must be an
1888         # IP of that family
1889         if (netutils.IP4Address.IsValid(spice_bind) and
1890             spice_ip_version != constants.IP4_VERSION):
1891           raise errors.HypervisorError("spice: got an IPv4 address (%s), but"
1892                                        " the specified IP version is %s" %
1893                                        (spice_bind, spice_ip_version))
1894
1895         if (netutils.IP6Address.IsValid(spice_bind) and
1896             spice_ip_version != constants.IP6_VERSION):
1897           raise errors.HypervisorError("spice: got an IPv6 address (%s), but"
1898                                        " the specified IP version is %s" %
1899                                        (spice_bind, spice_ip_version))
1900     else:
1901       # All the other SPICE parameters depend on spice_bind being set. Raise an
1902       # error if any of them is set without it.
1903       spice_additional_params = frozenset([
1904         constants.HV_KVM_SPICE_IP_VERSION,
1905         constants.HV_KVM_SPICE_PASSWORD_FILE,
1906         constants.HV_KVM_SPICE_LOSSLESS_IMG_COMPR,
1907         constants.HV_KVM_SPICE_JPEG_IMG_COMPR,
1908         constants.HV_KVM_SPICE_ZLIB_GLZ_IMG_COMPR,
1909         constants.HV_KVM_SPICE_STREAMING_VIDEO_DETECTION,
1910         constants.HV_KVM_SPICE_USE_TLS,
1911         ])
1912       for param in spice_additional_params:
1913         if hvparams[param]:
1914           raise errors.HypervisorError("spice: %s requires %s to be set" %
1915                                        (param, constants.HV_KVM_SPICE_BIND))
1916
1917   @classmethod
1918   def ValidateParameters(cls, hvparams):
1919     """Check the given parameters for validity.
1920
1921     @type hvparams:  dict
1922     @param hvparams: dictionary with parameter names/value
1923     @raise errors.HypervisorError: when a parameter is not valid
1924
1925     """
1926     super(KVMHypervisor, cls).ValidateParameters(hvparams)
1927
1928     security_model = hvparams[constants.HV_SECURITY_MODEL]
1929     if security_model == constants.HT_SM_USER:
1930       username = hvparams[constants.HV_SECURITY_DOMAIN]
1931       try:
1932         pwd.getpwnam(username)
1933       except KeyError:
1934         raise errors.HypervisorError("Unknown security domain user %s"
1935                                      % username)
1936
1937     spice_bind = hvparams[constants.HV_KVM_SPICE_BIND]
1938     if spice_bind:
1939       # only one of VNC and SPICE can be used currently.
1940       if hvparams[constants.HV_VNC_BIND_ADDRESS]:
1941         raise errors.HypervisorError("both SPICE and VNC are configured, but"
1942                                      " only one of them can be used at a"
1943                                      " given time.")
1944
1945       # KVM version should be >= 0.14.0
1946       _, v_major, v_min, _ = cls._GetKVMVersion()
1947       if (v_major, v_min) < (0, 14):
1948         raise errors.HypervisorError("spice is configured, but it is not"
1949                                      " available in versions of KVM < 0.14")
1950
1951       # if spice_bind is not an IP address, it must be a valid interface
1952       bound_to_addr = (netutils.IP4Address.IsValid(spice_bind)
1953                        or netutils.IP6Address.IsValid(spice_bind))
1954       if not bound_to_addr and not netutils.IsValidInterface(spice_bind):
1955         raise errors.HypervisorError("spice: the %s parameter must be either"
1956                                      " a valid IP address or interface name" %
1957                                      constants.HV_KVM_SPICE_BIND)
1958
1959   @classmethod
1960   def PowercycleNode(cls):
1961     """KVM powercycle, just a wrapper over Linux powercycle.
1962
1963     """
1964     cls.LinuxPowercycle()