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#
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#
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# Copyright (C) 2006, 2007 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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"""Functions used by the node daemon"""
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import os
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import os.path
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import shutil
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import time
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import stat
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import errno
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import re
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import subprocess
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import random
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import logging
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import tempfile
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import zlib
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import base64
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from ganeti import errors
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from ganeti import utils
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from ganeti import ssh
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from ganeti import hypervisor
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from ganeti import constants
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from ganeti import bdev
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from ganeti import objects
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from ganeti import ssconf
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48

    
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def _GetConfig():
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  """Simple wrapper to return a SimpleStore.
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  @rtype: L{ssconf.SimpleStore}
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  @return: a SimpleStore instance
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  """
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  return ssconf.SimpleStore()
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def _GetSshRunner(cluster_name):
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  """Simple wrapper to return an SshRunner.
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  @type cluster_name: str
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  @param cluster_name: the cluster name, which is needed
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      by the SshRunner constructor
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  @rtype: L{ssh.SshRunner}
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  @return: an SshRunner instance
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  """
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  return ssh.SshRunner(cluster_name)
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71

    
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def _Decompress(data):
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  """Unpacks data compressed by the RPC client.
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75
  @type data: list or tuple
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  @param data: Data sent by RPC client
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  @rtype: str
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  @return: Decompressed data
79

80
  """
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  assert isinstance(data, (list, tuple))
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  assert len(data) == 2
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  (encoding, content) = data
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  if encoding == constants.RPC_ENCODING_NONE:
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    return content
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  elif encoding == constants.RPC_ENCODING_ZLIB_BASE64:
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    return zlib.decompress(base64.b64decode(content))
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  else:
89
    raise AssertionError("Unknown data encoding")
90

    
91

    
92
def _CleanDirectory(path, exclude=None):
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  """Removes all regular files in a directory.
94

95
  @type path: str
96
  @param path: the directory to clean
97
  @type exclude: list
98
  @param exclude: list of files to be excluded, defaults
99
      to the empty list
100

101
  """
102
  if not os.path.isdir(path):
103
    return
104
  if exclude is None:
105
    exclude = []
106
  else:
107
    # Normalize excluded paths
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    exclude = [os.path.normpath(i) for i in exclude]
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110
  for rel_name in utils.ListVisibleFiles(path):
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    full_name = os.path.normpath(os.path.join(path, rel_name))
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    if full_name in exclude:
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      continue
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    if os.path.isfile(full_name) and not os.path.islink(full_name):
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      utils.RemoveFile(full_name)
116

    
117

    
118
def JobQueuePurge():
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  """Removes job queue files and archived jobs.
120

121
  @rtype: None
122

123
  """
124
  _CleanDirectory(constants.QUEUE_DIR, exclude=[constants.JOB_QUEUE_LOCK_FILE])
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  _CleanDirectory(constants.JOB_QUEUE_ARCHIVE_DIR)
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127

    
128
def GetMasterInfo():
129
  """Returns master information.
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131
  This is an utility function to compute master information, either
132
  for consumption here or from the node daemon.
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134
  @rtype: tuple
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  @return: (master_netdev, master_ip, master_name) if we have a good
136
      configuration, otherwise (None, None, None)
137

138
  """
139
  try:
140
    cfg = _GetConfig()
141
    master_netdev = cfg.GetMasterNetdev()
142
    master_ip = cfg.GetMasterIP()
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    master_node = cfg.GetMasterNode()
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  except errors.ConfigurationError, err:
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    logging.exception("Cluster configuration incomplete")
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    return (None, None, None)
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  return (master_netdev, master_ip, master_node)
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149

    
150
def StartMaster(start_daemons):
151
  """Activate local node as master node.
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153
  The function will always try activate the IP address of the master
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  (unless someone else has it). It will also start the master daemons,
155
  based on the start_daemons parameter.
156

157
  @type start_daemons: boolean
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  @param start_daemons: whther to also start the master
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      daemons (ganeti-masterd and ganeti-rapi)
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  @rtype: None
161

162
  """
163
  ok = True
164
  master_netdev, master_ip, _ = GetMasterInfo()
165
  if not master_netdev:
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    return False
167

    
168
  if utils.TcpPing(master_ip, constants.DEFAULT_NODED_PORT):
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    if utils.OwnIpAddress(master_ip):
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      # we already have the ip:
171
      logging.debug("Already started")
172
    else:
173
      logging.error("Someone else has the master ip, not activating")
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      ok = False
175
  else:
176
    result = utils.RunCmd(["ip", "address", "add", "%s/32" % master_ip,
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                           "dev", master_netdev, "label",
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                           "%s:0" % master_netdev])
179
    if result.failed:
180
      logging.error("Can't activate master IP: %s", result.output)
181
      ok = False
182

    
183
    result = utils.RunCmd(["arping", "-q", "-U", "-c 3", "-I", master_netdev,
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                           "-s", master_ip, master_ip])
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    # we'll ignore the exit code of arping
186

    
187
  # and now start the master and rapi daemons
188
  if start_daemons:
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    for daemon in 'ganeti-masterd', 'ganeti-rapi':
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      result = utils.RunCmd([daemon])
191
      if result.failed:
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        logging.error("Can't start daemon %s: %s", daemon, result.output)
193
        ok = False
194
  return ok
195

    
196

    
197
def StopMaster(stop_daemons):
198
  """Deactivate this node as master.
199

200
  The function will always try to deactivate the IP address of the
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  master. It will also stop the master daemons depending on the
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  stop_daemons parameter.
203

204
  @type stop_daemons: boolean
205
  @param stop_daemons: whether to also stop the master daemons
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      (ganeti-masterd and ganeti-rapi)
207
  @rtype: None
208

209
  """
210
  master_netdev, master_ip, _ = GetMasterInfo()
211
  if not master_netdev:
212
    return False
213

    
214
  result = utils.RunCmd(["ip", "address", "del", "%s/32" % master_ip,
215
                         "dev", master_netdev])
216
  if result.failed:
217
    logging.error("Can't remove the master IP, error: %s", result.output)
218
    # but otherwise ignore the failure
219

    
220
  if stop_daemons:
221
    # stop/kill the rapi and the master daemon
222
    for daemon in constants.RAPI_PID, constants.MASTERD_PID:
223
      utils.KillProcess(utils.ReadPidFile(utils.DaemonPidFileName(daemon)))
224

    
225
  return True
226

    
227

    
228
def AddNode(dsa, dsapub, rsa, rsapub, sshkey, sshpub):
229
  """Joins this node to the cluster.
230

231
  This does the following:
232
      - updates the hostkeys of the machine (rsa and dsa)
233
      - adds the ssh private key to the user
234
      - adds the ssh public key to the users' authorized_keys file
235

236
  @type dsa: str
237
  @param dsa: the DSA private key to write
238
  @type dsapub: str
239
  @param dsapub: the DSA public key to write
240
  @type rsa: str
241
  @param rsa: the RSA private key to write
242
  @type rsapub: str
243
  @param rsapub: the RSA public key to write
244
  @type sshkey: str
245
  @param sshkey: the SSH private key to write
246
  @type sshpub: str
247
  @param sshpub: the SSH public key to write
248
  @rtype: boolean
249
  @return: the success of the operation
250

251
  """
252
  sshd_keys =  [(constants.SSH_HOST_RSA_PRIV, rsa, 0600),
253
                (constants.SSH_HOST_RSA_PUB, rsapub, 0644),
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                (constants.SSH_HOST_DSA_PRIV, dsa, 0600),
255
                (constants.SSH_HOST_DSA_PUB, dsapub, 0644)]
256
  for name, content, mode in sshd_keys:
257
    utils.WriteFile(name, data=content, mode=mode)
258

    
259
  try:
260
    priv_key, pub_key, auth_keys = ssh.GetUserFiles(constants.GANETI_RUNAS,
261
                                                    mkdir=True)
262
  except errors.OpExecError, err:
263
    msg = "Error while processing user ssh files"
264
    logging.exception(msg)
265
    return (False, "%s: %s" % (msg, err))
266

    
267
  for name, content in [(priv_key, sshkey), (pub_key, sshpub)]:
268
    utils.WriteFile(name, data=content, mode=0600)
269

    
270
  utils.AddAuthorizedKey(auth_keys, sshpub)
271

    
272
  utils.RunCmd([constants.SSH_INITD_SCRIPT, "restart"])
273

    
274
  return (True, "Node added successfully")
275

    
276

    
277
def LeaveCluster():
278
  """Cleans up and remove the current node.
279

280
  This function cleans up and prepares the current node to be removed
281
  from the cluster.
282

283
  If processing is successful, then it raises an
284
  L{errors.QuitGanetiException} which is used as a special case to
285
  shutdown the node daemon.
286

287
  """
288
  _CleanDirectory(constants.DATA_DIR)
289
  JobQueuePurge()
290

    
291
  try:
292
    priv_key, pub_key, auth_keys = ssh.GetUserFiles(constants.GANETI_RUNAS)
293
  except errors.OpExecError:
294
    logging.exception("Error while processing ssh files")
295
    return
296

    
297
  f = open(pub_key, 'r')
298
  try:
299
    utils.RemoveAuthorizedKey(auth_keys, f.read(8192))
300
  finally:
301
    f.close()
302

    
303
  utils.RemoveFile(priv_key)
304
  utils.RemoveFile(pub_key)
305

    
306
  # Return a reassuring string to the caller, and quit
307
  raise errors.QuitGanetiException(False, 'Shutdown scheduled')
308

    
309

    
310
def GetNodeInfo(vgname, hypervisor_type):
311
  """Gives back a hash with different informations about the node.
312

313
  @type vgname: C{string}
314
  @param vgname: the name of the volume group to ask for disk space information
315
  @type hypervisor_type: C{str}
316
  @param hypervisor_type: the name of the hypervisor to ask for
317
      memory information
318
  @rtype: C{dict}
319
  @return: dictionary with the following keys:
320
      - vg_size is the size of the configured volume group in MiB
321
      - vg_free is the free size of the volume group in MiB
322
      - memory_dom0 is the memory allocated for domain0 in MiB
323
      - memory_free is the currently available (free) ram in MiB
324
      - memory_total is the total number of ram in MiB
325

326
  """
327
  outputarray = {}
328
  vginfo = _GetVGInfo(vgname)
329
  outputarray['vg_size'] = vginfo['vg_size']
330
  outputarray['vg_free'] = vginfo['vg_free']
331

    
332
  hyper = hypervisor.GetHypervisor(hypervisor_type)
333
  hyp_info = hyper.GetNodeInfo()
334
  if hyp_info is not None:
335
    outputarray.update(hyp_info)
336

    
337
  f = open("/proc/sys/kernel/random/boot_id", 'r')
338
  try:
339
    outputarray["bootid"] = f.read(128).rstrip("\n")
340
  finally:
341
    f.close()
342

    
343
  return outputarray
344

    
345

    
346
def VerifyNode(what, cluster_name):
347
  """Verify the status of the local node.
348

349
  Based on the input L{what} parameter, various checks are done on the
350
  local node.
351

352
  If the I{filelist} key is present, this list of
353
  files is checksummed and the file/checksum pairs are returned.
354

355
  If the I{nodelist} key is present, we check that we have
356
  connectivity via ssh with the target nodes (and check the hostname
357
  report).
358

359
  If the I{node-net-test} key is present, we check that we have
360
  connectivity to the given nodes via both primary IP and, if
361
  applicable, secondary IPs.
362

363
  @type what: C{dict}
364
  @param what: a dictionary of things to check:
365
      - filelist: list of files for which to compute checksums
366
      - nodelist: list of nodes we should check ssh communication with
367
      - node-net-test: list of nodes we should check node daemon port
368
        connectivity with
369
      - hypervisor: list with hypervisors to run the verify for
370
  @rtype: dict
371
  @return: a dictionary with the same keys as the input dict, and
372
      values representing the result of the checks
373

374
  """
375
  result = {}
376

    
377
  if constants.NV_HYPERVISOR in what:
378
    result[constants.NV_HYPERVISOR] = tmp = {}
379
    for hv_name in what[constants.NV_HYPERVISOR]:
380
      tmp[hv_name] = hypervisor.GetHypervisor(hv_name).Verify()
381

    
382
  if constants.NV_FILELIST in what:
383
    result[constants.NV_FILELIST] = utils.FingerprintFiles(
384
      what[constants.NV_FILELIST])
385

    
386
  if constants.NV_NODELIST in what:
387
    result[constants.NV_NODELIST] = tmp = {}
388
    random.shuffle(what[constants.NV_NODELIST])
389
    for node in what[constants.NV_NODELIST]:
390
      success, message = _GetSshRunner(cluster_name).VerifyNodeHostname(node)
391
      if not success:
392
        tmp[node] = message
393

    
394
  if constants.NV_NODENETTEST in what:
395
    result[constants.NV_NODENETTEST] = tmp = {}
396
    my_name = utils.HostInfo().name
397
    my_pip = my_sip = None
398
    for name, pip, sip in what[constants.NV_NODENETTEST]:
399
      if name == my_name:
400
        my_pip = pip
401
        my_sip = sip
402
        break
403
    if not my_pip:
404
      tmp[my_name] = ("Can't find my own primary/secondary IP"
405
                      " in the node list")
406
    else:
407
      port = utils.GetNodeDaemonPort()
408
      for name, pip, sip in what[constants.NV_NODENETTEST]:
409
        fail = []
410
        if not utils.TcpPing(pip, port, source=my_pip):
411
          fail.append("primary")
412
        if sip != pip:
413
          if not utils.TcpPing(sip, port, source=my_sip):
414
            fail.append("secondary")
415
        if fail:
416
          tmp[name] = ("failure using the %s interface(s)" %
417
                       " and ".join(fail))
418

    
419
  if constants.NV_LVLIST in what:
420
    result[constants.NV_LVLIST] = GetVolumeList(what[constants.NV_LVLIST])
421

    
422
  if constants.NV_INSTANCELIST in what:
423
    result[constants.NV_INSTANCELIST] = GetInstanceList(
424
      what[constants.NV_INSTANCELIST])
425

    
426
  if constants.NV_VGLIST in what:
427
    result[constants.NV_VGLIST] = ListVolumeGroups()
428

    
429
  if constants.NV_VERSION in what:
430
    result[constants.NV_VERSION] = (constants.PROTOCOL_VERSION,
431
                                    constants.RELEASE_VERSION)
432

    
433
  if constants.NV_HVINFO in what:
434
    hyper = hypervisor.GetHypervisor(what[constants.NV_HVINFO])
435
    result[constants.NV_HVINFO] = hyper.GetNodeInfo()
436

    
437
  if constants.NV_DRBDLIST in what:
438
    try:
439
      used_minors = bdev.DRBD8.GetUsedDevs().keys()
440
    except errors.BlockDeviceError, err:
441
      logging.warning("Can't get used minors list", exc_info=True)
442
      used_minors = str(err)
443
    result[constants.NV_DRBDLIST] = used_minors
444

    
445
  return result
446

    
447

    
448
def GetVolumeList(vg_name):
449
  """Compute list of logical volumes and their size.
450

451
  @type vg_name: str
452
  @param vg_name: the volume group whose LVs we should list
453
  @rtype: dict
454
  @return:
455
      dictionary of all partions (key) with value being a tuple of
456
      their size (in MiB), inactive and online status::
457

458
        {'test1': ('20.06', True, True)}
459

460
      in case of errors, a string is returned with the error
461
      details.
462

463
  """
464
  lvs = {}
465
  sep = '|'
466
  result = utils.RunCmd(["lvs", "--noheadings", "--units=m", "--nosuffix",
467
                         "--separator=%s" % sep,
468
                         "-olv_name,lv_size,lv_attr", vg_name])
469
  if result.failed:
470
    logging.error("Failed to list logical volumes, lvs output: %s",
471
                  result.output)
472
    return result.output
473

    
474
  valid_line_re = re.compile("^ *([^|]+)\|([0-9.]+)\|([^|]{6})\|?$")
475
  for line in result.stdout.splitlines():
476
    line = line.strip()
477
    match = valid_line_re.match(line)
478
    if not match:
479
      logging.error("Invalid line returned from lvs output: '%s'", line)
480
      continue
481
    name, size, attr = match.groups()
482
    inactive = attr[4] == '-'
483
    online = attr[5] == 'o'
484
    lvs[name] = (size, inactive, online)
485

    
486
  return lvs
487

    
488

    
489
def ListVolumeGroups():
490
  """List the volume groups and their size.
491

492
  @rtype: dict
493
  @return: dictionary with keys volume name and values the
494
      size of the volume
495

496
  """
497
  return utils.ListVolumeGroups()
498

    
499

    
500
def NodeVolumes():
501
  """List all volumes on this node.
502

503
  @rtype: list
504
  @return:
505
    A list of dictionaries, each having four keys:
506
      - name: the logical volume name,
507
      - size: the size of the logical volume
508
      - dev: the physical device on which the LV lives
509
      - vg: the volume group to which it belongs
510

511
    In case of errors, we return an empty list and log the
512
    error.
513

514
    Note that since a logical volume can live on multiple physical
515
    volumes, the resulting list might include a logical volume
516
    multiple times.
517

518
  """
519
  result = utils.RunCmd(["lvs", "--noheadings", "--units=m", "--nosuffix",
520
                         "--separator=|",
521
                         "--options=lv_name,lv_size,devices,vg_name"])
522
  if result.failed:
523
    logging.error("Failed to list logical volumes, lvs output: %s",
524
                  result.output)
525
    return []
526

    
527
  def parse_dev(dev):
528
    if '(' in dev:
529
      return dev.split('(')[0]
530
    else:
531
      return dev
532

    
533
  def map_line(line):
534
    return {
535
      'name': line[0].strip(),
536
      'size': line[1].strip(),
537
      'dev': parse_dev(line[2].strip()),
538
      'vg': line[3].strip(),
539
    }
540

    
541
  return [map_line(line.split('|')) for line in result.stdout.splitlines()
542
          if line.count('|') >= 3]
543

    
544

    
545
def BridgesExist(bridges_list):
546
  """Check if a list of bridges exist on the current node.
547

548
  @rtype: boolean
549
  @return: C{True} if all of them exist, C{False} otherwise
550

551
  """
552
  for bridge in bridges_list:
553
    if not utils.BridgeExists(bridge):
554
      return False
555

    
556
  return True
557

    
558

    
559
def GetInstanceList(hypervisor_list):
560
  """Provides a list of instances.
561

562
  @type hypervisor_list: list
563
  @param hypervisor_list: the list of hypervisors to query information
564

565
  @rtype: list
566
  @return: a list of all running instances on the current node
567
    - instance1.example.com
568
    - instance2.example.com
569

570
  """
571
  results = []
572
  for hname in hypervisor_list:
573
    try:
574
      names = hypervisor.GetHypervisor(hname).ListInstances()
575
      results.extend(names)
576
    except errors.HypervisorError, err:
577
      logging.exception("Error enumerating instances for hypevisor %s", hname)
578
      raise
579

    
580
  return results
581

    
582

    
583
def GetInstanceInfo(instance, hname):
584
  """Gives back the informations about an instance as a dictionary.
585

586
  @type instance: string
587
  @param instance: the instance name
588
  @type hname: string
589
  @param hname: the hypervisor type of the instance
590

591
  @rtype: dict
592
  @return: dictionary with the following keys:
593
      - memory: memory size of instance (int)
594
      - state: xen state of instance (string)
595
      - time: cpu time of instance (float)
596

597
  """
598
  output = {}
599

    
600
  iinfo = hypervisor.GetHypervisor(hname).GetInstanceInfo(instance)
601
  if iinfo is not None:
602
    output['memory'] = iinfo[2]
603
    output['state'] = iinfo[4]
604
    output['time'] = iinfo[5]
605

    
606
  return output
607

    
608

    
609
def GetInstanceMigratable(instance):
610
  """Gives whether an instance can be migrated.
611

612
  @type instance: L{objects.Instance}
613
  @param instance: object representing the instance to be checked.
614

615
  @rtype: tuple
616
  @return: tuple of (result, description) where:
617
      - result: whether the instance can be migrated or not
618
      - description: a description of the issue, if relevant
619

620
  """
621
  hyper = hypervisor.GetHypervisor(instance.hypervisor)
622
  if instance.name not in hyper.ListInstances():
623
    return (False, 'not running')
624

    
625
  for idx in range(len(instance.disks)):
626
    link_name = _GetBlockDevSymlinkPath(instance.name, idx)
627
    if not os.path.islink(link_name):
628
      return (False, 'not restarted since ganeti 1.2.5')
629

    
630
  return (True, '')
631

    
632

    
633
def GetAllInstancesInfo(hypervisor_list):
634
  """Gather data about all instances.
635

636
  This is the equivalent of L{GetInstanceInfo}, except that it
637
  computes data for all instances at once, thus being faster if one
638
  needs data about more than one instance.
639

640
  @type hypervisor_list: list
641
  @param hypervisor_list: list of hypervisors to query for instance data
642

643
  @rtype: dict
644
  @return: dictionary of instance: data, with data having the following keys:
645
      - memory: memory size of instance (int)
646
      - state: xen state of instance (string)
647
      - time: cpu time of instance (float)
648
      - vcpus: the number of vcpus
649

650
  """
651
  output = {}
652

    
653
  for hname in hypervisor_list:
654
    iinfo = hypervisor.GetHypervisor(hname).GetAllInstancesInfo()
655
    if iinfo:
656
      for name, inst_id, memory, vcpus, state, times in iinfo:
657
        value = {
658
          'memory': memory,
659
          'vcpus': vcpus,
660
          'state': state,
661
          'time': times,
662
          }
663
        if name in output:
664
          # we only check static parameters, like memory and vcpus,
665
          # and not state and time which can change between the
666
          # invocations of the different hypervisors
667
          for key in 'memory', 'vcpus':
668
            if value[key] != output[name][key]:
669
              raise errors.HypervisorError("Instance %s is running twice"
670
                                           " with different parameters" % name)
671
        output[name] = value
672

    
673
  return output
674

    
675

    
676
def InstanceOsAdd(instance, reinstall):
677
  """Add an OS to an instance.
678

679
  @type instance: L{objects.Instance}
680
  @param instance: Instance whose OS is to be installed
681
  @type reinstall: boolean
682
  @param reinstall: whether this is an instance reinstall
683
  @rtype: boolean
684
  @return: the success of the operation
685

686
  """
687
  try:
688
    inst_os = OSFromDisk(instance.os)
689
  except errors.InvalidOS, err:
690
    os_name, os_dir, os_err = err.args
691
    if os_dir is None:
692
      return (False, "Can't find OS '%s': %s" % (os_name, os_err))
693
    else:
694
      return (False, "Error parsing OS '%s' in directory %s: %s" %
695
              (os_name, os_dir, os_err))
696

    
697
  create_env = OSEnvironment(instance)
698
  if reinstall:
699
    create_env['INSTANCE_REINSTALL'] = "1"
700

    
701
  logfile = "%s/add-%s-%s-%d.log" % (constants.LOG_OS_DIR, instance.os,
702
                                     instance.name, int(time.time()))
703

    
704
  result = utils.RunCmd([inst_os.create_script], env=create_env,
705
                        cwd=inst_os.path, output=logfile,)
706
  if result.failed:
707
    logging.error("os create command '%s' returned error: %s, logfile: %s,"
708
                  " output: %s", result.cmd, result.fail_reason, logfile,
709
                  result.output)
710
    lines = [utils.SafeEncode(val)
711
             for val in utils.TailFile(logfile, lines=20)]
712
    return (False, "OS create script failed (%s), last lines in the"
713
            " log file:\n%s" % (result.fail_reason, "\n".join(lines)))
714

    
715
  return (True, "Successfully installed")
716

    
717

    
718
def RunRenameInstance(instance, old_name):
719
  """Run the OS rename script for an instance.
720

721
  @type instance: L{objects.Instance}
722
  @param instance: Instance whose OS is to be installed
723
  @type old_name: string
724
  @param old_name: previous instance name
725
  @rtype: boolean
726
  @return: the success of the operation
727

728
  """
729
  inst_os = OSFromDisk(instance.os)
730

    
731
  rename_env = OSEnvironment(instance)
732
  rename_env['OLD_INSTANCE_NAME'] = old_name
733

    
734
  logfile = "%s/rename-%s-%s-%s-%d.log" % (constants.LOG_OS_DIR, instance.os,
735
                                           old_name,
736
                                           instance.name, int(time.time()))
737

    
738
  result = utils.RunCmd([inst_os.rename_script], env=rename_env,
739
                        cwd=inst_os.path, output=logfile)
740

    
741
  if result.failed:
742
    logging.error("os create command '%s' returned error: %s output: %s",
743
                  result.cmd, result.fail_reason, result.output)
744
    lines = [utils.SafeEncode(val)
745
             for val in utils.TailFile(logfile, lines=20)]
746
    return (False, "OS rename script failed (%s), last lines in the"
747
            " log file:\n%s" % (result.fail_reason, "\n".join(lines)))
748

    
749
  return (True, "Rename successful")
750

    
751

    
752
def _GetVGInfo(vg_name):
753
  """Get informations about the volume group.
754

755
  @type vg_name: str
756
  @param vg_name: the volume group which we query
757
  @rtype: dict
758
  @return:
759
    A dictionary with the following keys:
760
      - C{vg_size} is the total size of the volume group in MiB
761
      - C{vg_free} is the free size of the volume group in MiB
762
      - C{pv_count} are the number of physical disks in that VG
763

764
    If an error occurs during gathering of data, we return the same dict
765
    with keys all set to None.
766

767
  """
768
  retdic = dict.fromkeys(["vg_size", "vg_free", "pv_count"])
769

    
770
  retval = utils.RunCmd(["vgs", "-ovg_size,vg_free,pv_count", "--noheadings",
771
                         "--nosuffix", "--units=m", "--separator=:", vg_name])
772

    
773
  if retval.failed:
774
    logging.error("volume group %s not present", vg_name)
775
    return retdic
776
  valarr = retval.stdout.strip().rstrip(':').split(':')
777
  if len(valarr) == 3:
778
    try:
779
      retdic = {
780
        "vg_size": int(round(float(valarr[0]), 0)),
781
        "vg_free": int(round(float(valarr[1]), 0)),
782
        "pv_count": int(valarr[2]),
783
        }
784
    except ValueError, err:
785
      logging.exception("Fail to parse vgs output")
786
  else:
787
    logging.error("vgs output has the wrong number of fields (expected"
788
                  " three): %s", str(valarr))
789
  return retdic
790

    
791

    
792
def _GetBlockDevSymlinkPath(instance_name, idx):
793
  return os.path.join(constants.DISK_LINKS_DIR,
794
                      "%s:%d" % (instance_name, idx))
795

    
796

    
797
def _SymlinkBlockDev(instance_name, device_path, idx):
798
  """Set up symlinks to a instance's block device.
799

800
  This is an auxiliary function run when an instance is start (on the primary
801
  node) or when an instance is migrated (on the target node).
802

803

804
  @param instance_name: the name of the target instance
805
  @param device_path: path of the physical block device, on the node
806
  @param idx: the disk index
807
  @return: absolute path to the disk's symlink
808

809
  """
810
  link_name = _GetBlockDevSymlinkPath(instance_name, idx)
811
  try:
812
    os.symlink(device_path, link_name)
813
  except OSError, err:
814
    if err.errno == errno.EEXIST:
815
      if (not os.path.islink(link_name) or
816
          os.readlink(link_name) != device_path):
817
        os.remove(link_name)
818
        os.symlink(device_path, link_name)
819
    else:
820
      raise
821

    
822
  return link_name
823

    
824

    
825
def _RemoveBlockDevLinks(instance_name, disks):
826
  """Remove the block device symlinks belonging to the given instance.
827

828
  """
829
  for idx, disk in enumerate(disks):
830
    link_name = _GetBlockDevSymlinkPath(instance_name, idx)
831
    if os.path.islink(link_name):
832
      try:
833
        os.remove(link_name)
834
      except OSError:
835
        logging.exception("Can't remove symlink '%s'", link_name)
836

    
837

    
838
def _GatherAndLinkBlockDevs(instance):
839
  """Set up an instance's block device(s).
840

841
  This is run on the primary node at instance startup. The block
842
  devices must be already assembled.
843

844
  @type instance: L{objects.Instance}
845
  @param instance: the instance whose disks we shoul assemble
846
  @rtype: list
847
  @return: list of (disk_object, device_path)
848

849
  """
850
  block_devices = []
851
  for idx, disk in enumerate(instance.disks):
852
    device = _RecursiveFindBD(disk)
853
    if device is None:
854
      raise errors.BlockDeviceError("Block device '%s' is not set up." %
855
                                    str(disk))
856
    device.Open()
857
    try:
858
      link_name = _SymlinkBlockDev(instance.name, device.dev_path, idx)
859
    except OSError, e:
860
      raise errors.BlockDeviceError("Cannot create block device symlink: %s" %
861
                                    e.strerror)
862

    
863
    block_devices.append((disk, link_name))
864

    
865
  return block_devices
866

    
867

    
868
def StartInstance(instance):
869
  """Start an instance.
870

871
  @type instance: L{objects.Instance}
872
  @param instance: the instance object
873
  @rtype: boolean
874
  @return: whether the startup was successful or not
875

876
  """
877
  running_instances = GetInstanceList([instance.hypervisor])
878

    
879
  if instance.name in running_instances:
880
    return (True, "Already running")
881

    
882
  try:
883
    block_devices = _GatherAndLinkBlockDevs(instance)
884
    hyper = hypervisor.GetHypervisor(instance.hypervisor)
885
    hyper.StartInstance(instance, block_devices)
886
  except errors.BlockDeviceError, err:
887
    logging.exception("Failed to start instance")
888
    return (False, "Block device error: %s" % str(err))
889
  except errors.HypervisorError, err:
890
    logging.exception("Failed to start instance")
891
    _RemoveBlockDevLinks(instance.name, instance.disks)
892
    return (False, "Hypervisor error: %s" % str(err))
893

    
894
  return (True, "Instance started successfully")
895

    
896

    
897
def InstanceShutdown(instance):
898
  """Shut an instance down.
899

900
  @note: this functions uses polling with a hardcoded timeout.
901

902
  @type instance: L{objects.Instance}
903
  @param instance: the instance object
904
  @rtype: boolean
905
  @return: whether the startup was successful or not
906

907
  """
908
  hv_name = instance.hypervisor
909
  running_instances = GetInstanceList([hv_name])
910

    
911
  if instance.name not in running_instances:
912
    return (True, "Instance already stopped")
913

    
914
  hyper = hypervisor.GetHypervisor(hv_name)
915
  try:
916
    hyper.StopInstance(instance)
917
  except errors.HypervisorError, err:
918
    msg = "Failed to stop instance %s: %s" % (instance.name, err)
919
    logging.error(msg)
920
    return (False, msg)
921

    
922
  # test every 10secs for 2min
923

    
924
  time.sleep(1)
925
  for dummy in range(11):
926
    if instance.name not in GetInstanceList([hv_name]):
927
      break
928
    time.sleep(10)
929
  else:
930
    # the shutdown did not succeed
931
    logging.error("Shutdown of '%s' unsuccessful, using destroy",
932
                  instance.name)
933

    
934
    try:
935
      hyper.StopInstance(instance, force=True)
936
    except errors.HypervisorError, err:
937
      msg = "Failed to force stop instance %s: %s" % (instance.name, err)
938
      logging.error(msg)
939
      return (False, msg)
940

    
941
    time.sleep(1)
942
    if instance.name in GetInstanceList([hv_name]):
943
      msg = ("Could not shutdown instance %s even by destroy" %
944
             instance.name)
945
      logging.error(msg)
946
      return (False, msg)
947

    
948
  _RemoveBlockDevLinks(instance.name, instance.disks)
949

    
950
  return (True, "Instance has been shutdown successfully")
951

    
952

    
953
def InstanceReboot(instance, reboot_type):
954
  """Reboot an instance.
955

956
  @type instance: L{objects.Instance}
957
  @param instance: the instance object to reboot
958
  @type reboot_type: str
959
  @param reboot_type: the type of reboot, one the following
960
    constants:
961
      - L{constants.INSTANCE_REBOOT_SOFT}: only reboot the
962
        instance OS, do not recreate the VM
963
      - L{constants.INSTANCE_REBOOT_HARD}: tear down and
964
        restart the VM (at the hypervisor level)
965
      - the other reboot type (L{constants.INSTANCE_REBOOT_HARD})
966
        is not accepted here, since that mode is handled
967
        differently
968
  @rtype: boolean
969
  @return: the success of the operation
970

971
  """
972
  running_instances = GetInstanceList([instance.hypervisor])
973

    
974
  if instance.name not in running_instances:
975
    msg = "Cannot reboot instance %s that is not running" % instance.name
976
    logging.error(msg)
977
    return (False, msg)
978

    
979
  hyper = hypervisor.GetHypervisor(instance.hypervisor)
980
  if reboot_type == constants.INSTANCE_REBOOT_SOFT:
981
    try:
982
      hyper.RebootInstance(instance)
983
    except errors.HypervisorError, err:
984
      msg = "Failed to soft reboot instance %s: %s" % (instance.name, err)
985
      logging.error(msg)
986
      return (False, msg)
987
  elif reboot_type == constants.INSTANCE_REBOOT_HARD:
988
    try:
989
      stop_result = InstanceShutdown(instance)
990
      if not stop_result[0]:
991
        return stop_result
992
      return StartInstance(instance)
993
    except errors.HypervisorError, err:
994
      msg = "Failed to hard reboot instance %s: %s" % (instance.name, err)
995
      logging.error(msg)
996
      return (False, msg)
997
  else:
998
    return (False, "Invalid reboot_type received: %s" % (reboot_type,))
999

    
1000
  return (True, "Reboot successful")
1001

    
1002

    
1003
def MigrationInfo(instance):
1004
  """Gather information about an instance to be migrated.
1005

1006
  @type instance: L{objects.Instance}
1007
  @param instance: the instance definition
1008

1009
  """
1010
  hyper = hypervisor.GetHypervisor(instance.hypervisor)
1011
  try:
1012
    info = hyper.MigrationInfo(instance)
1013
  except errors.HypervisorError, err:
1014
    msg = "Failed to fetch migration information"
1015
    logging.exception(msg)
1016
    return (False, '%s: %s' % (msg, err))
1017
  return (True, info)
1018

    
1019

    
1020
def AcceptInstance(instance, info, target):
1021
  """Prepare the node to accept an instance.
1022

1023
  @type instance: L{objects.Instance}
1024
  @param instance: the instance definition
1025
  @type info: string/data (opaque)
1026
  @param info: migration information, from the source node
1027
  @type target: string
1028
  @param target: target host (usually ip), on this node
1029

1030
  """
1031
  hyper = hypervisor.GetHypervisor(instance.hypervisor)
1032
  try:
1033
    hyper.AcceptInstance(instance, info, target)
1034
  except errors.HypervisorError, err:
1035
    msg = "Failed to accept instance"
1036
    logging.exception(msg)
1037
    return (False, '%s: %s' % (msg, err))
1038
  return (True, "Accept successfull")
1039

    
1040

    
1041
def FinalizeMigration(instance, info, success):
1042
  """Finalize any preparation to accept an instance.
1043

1044
  @type instance: L{objects.Instance}
1045
  @param instance: the instance definition
1046
  @type info: string/data (opaque)
1047
  @param info: migration information, from the source node
1048
  @type success: boolean
1049
  @param success: whether the migration was a success or a failure
1050

1051
  """
1052
  hyper = hypervisor.GetHypervisor(instance.hypervisor)
1053
  try:
1054
    hyper.FinalizeMigration(instance, info, success)
1055
  except errors.HypervisorError, err:
1056
    msg = "Failed to finalize migration"
1057
    logging.exception(msg)
1058
    return (False, '%s: %s' % (msg, err))
1059
  return (True, "Migration Finalized")
1060

    
1061

    
1062
def MigrateInstance(instance, target, live):
1063
  """Migrates an instance to another node.
1064

1065
  @type instance: L{objects.Instance}
1066
  @param instance: the instance definition
1067
  @type target: string
1068
  @param target: the target node name
1069
  @type live: boolean
1070
  @param live: whether the migration should be done live or not (the
1071
      interpretation of this parameter is left to the hypervisor)
1072
  @rtype: tuple
1073
  @return: a tuple of (success, msg) where:
1074
      - succes is a boolean denoting the success/failure of the operation
1075
      - msg is a string with details in case of failure
1076

1077
  """
1078
  hyper = hypervisor.GetHypervisor(instance.hypervisor)
1079

    
1080
  try:
1081
    hyper.MigrateInstance(instance.name, target, live)
1082
  except errors.HypervisorError, err:
1083
    msg = "Failed to migrate instance"
1084
    logging.exception(msg)
1085
    return (False, "%s: %s" % (msg, err))
1086
  return (True, "Migration successfull")
1087

    
1088

    
1089
def BlockdevCreate(disk, size, owner, on_primary, info):
1090
  """Creates a block device for an instance.
1091

1092
  @type disk: L{objects.Disk}
1093
  @param disk: the object describing the disk we should create
1094
  @type size: int
1095
  @param size: the size of the physical underlying device, in MiB
1096
  @type owner: str
1097
  @param owner: the name of the instance for which disk is created,
1098
      used for device cache data
1099
  @type on_primary: boolean
1100
  @param on_primary:  indicates if it is the primary node or not
1101
  @type info: string
1102
  @param info: string that will be sent to the physical device
1103
      creation, used for example to set (LVM) tags on LVs
1104

1105
  @return: the new unique_id of the device (this can sometime be
1106
      computed only after creation), or None. On secondary nodes,
1107
      it's not required to return anything.
1108

1109
  """
1110
  clist = []
1111
  if disk.children:
1112
    for child in disk.children:
1113
      try:
1114
        crdev = _RecursiveAssembleBD(child, owner, on_primary)
1115
      except errors.BlockDeviceError, err:
1116
        errmsg = "Can't assemble device %s: %s" % (child, err)
1117
        logging.error(errmsg)
1118
        return False, errmsg
1119
      if on_primary or disk.AssembleOnSecondary():
1120
        # we need the children open in case the device itself has to
1121
        # be assembled
1122
        try:
1123
          crdev.Open()
1124
        except errors.BlockDeviceError, err:
1125
          errmsg = "Can't make child '%s' read-write: %s" % (child, err)
1126
          logging.error(errmsg)
1127
          return False, errmsg
1128
      clist.append(crdev)
1129

    
1130
  try:
1131
    device = bdev.Create(disk.dev_type, disk.physical_id, clist, size)
1132
  except errors.BlockDeviceError, err:
1133
    return False, "Can't create block device: %s" % str(err)
1134

    
1135
  if on_primary or disk.AssembleOnSecondary():
1136
    try:
1137
      device.Assemble()
1138
    except errors.BlockDeviceError, err:
1139
      errmsg = ("Can't assemble device after creation, very"
1140
                " unusual event: %s" % str(err))
1141
      logging.error(errmsg)
1142
      return False, errmsg
1143
    device.SetSyncSpeed(constants.SYNC_SPEED)
1144
    if on_primary or disk.OpenOnSecondary():
1145
      try:
1146
        device.Open(force=True)
1147
      except errors.BlockDeviceError, err:
1148
        errmsg = ("Can't make device r/w after creation, very"
1149
                  " unusual event: %s" % str(err))
1150
        logging.error(errmsg)
1151
        return False, errmsg
1152
    DevCacheManager.UpdateCache(device.dev_path, owner,
1153
                                on_primary, disk.iv_name)
1154

    
1155
  device.SetInfo(info)
1156

    
1157
  physical_id = device.unique_id
1158
  return True, physical_id
1159

    
1160

    
1161
def BlockdevRemove(disk):
1162
  """Remove a block device.
1163

1164
  @note: This is intended to be called recursively.
1165

1166
  @type disk: L{objects.Disk}
1167
  @param disk: the disk object we should remove
1168
  @rtype: boolean
1169
  @return: the success of the operation
1170

1171
  """
1172
  msgs = []
1173
  result = True
1174
  try:
1175
    rdev = _RecursiveFindBD(disk)
1176
  except errors.BlockDeviceError, err:
1177
    # probably can't attach
1178
    logging.info("Can't attach to device %s in remove", disk)
1179
    rdev = None
1180
  if rdev is not None:
1181
    r_path = rdev.dev_path
1182
    try:
1183
      rdev.Remove()
1184
    except errors.BlockDeviceError, err:
1185
      msgs.append(str(err))
1186
      result = False
1187
    if result:
1188
      DevCacheManager.RemoveCache(r_path)
1189

    
1190
  if disk.children:
1191
    for child in disk.children:
1192
      c_status, c_msg = BlockdevRemove(child)
1193
      result = result and c_status
1194
      if c_msg: # not an empty message
1195
        msgs.append(c_msg)
1196

    
1197
  return (result, "; ".join(msgs))
1198

    
1199

    
1200
def _RecursiveAssembleBD(disk, owner, as_primary):
1201
  """Activate a block device for an instance.
1202

1203
  This is run on the primary and secondary nodes for an instance.
1204

1205
  @note: this function is called recursively.
1206

1207
  @type disk: L{objects.Disk}
1208
  @param disk: the disk we try to assemble
1209
  @type owner: str
1210
  @param owner: the name of the instance which owns the disk
1211
  @type as_primary: boolean
1212
  @param as_primary: if we should make the block device
1213
      read/write
1214

1215
  @return: the assembled device or None (in case no device
1216
      was assembled)
1217
  @raise errors.BlockDeviceError: in case there is an error
1218
      during the activation of the children or the device
1219
      itself
1220

1221
  """
1222
  children = []
1223
  if disk.children:
1224
    mcn = disk.ChildrenNeeded()
1225
    if mcn == -1:
1226
      mcn = 0 # max number of Nones allowed
1227
    else:
1228
      mcn = len(disk.children) - mcn # max number of Nones
1229
    for chld_disk in disk.children:
1230
      try:
1231
        cdev = _RecursiveAssembleBD(chld_disk, owner, as_primary)
1232
      except errors.BlockDeviceError, err:
1233
        if children.count(None) >= mcn:
1234
          raise
1235
        cdev = None
1236
        logging.error("Error in child activation (but continuing): %s",
1237
                      str(err))
1238
      children.append(cdev)
1239

    
1240
  if as_primary or disk.AssembleOnSecondary():
1241
    r_dev = bdev.Assemble(disk.dev_type, disk.physical_id, children)
1242
    r_dev.SetSyncSpeed(constants.SYNC_SPEED)
1243
    result = r_dev
1244
    if as_primary or disk.OpenOnSecondary():
1245
      r_dev.Open()
1246
    DevCacheManager.UpdateCache(r_dev.dev_path, owner,
1247
                                as_primary, disk.iv_name)
1248

    
1249
  else:
1250
    result = True
1251
  return result
1252

    
1253

    
1254
def BlockdevAssemble(disk, owner, as_primary):
1255
  """Activate a block device for an instance.
1256

1257
  This is a wrapper over _RecursiveAssembleBD.
1258

1259
  @rtype: str or boolean
1260
  @return: a C{/dev/...} path for primary nodes, and
1261
      C{True} for secondary nodes
1262

1263
  """
1264
  status = True
1265
  result = "no error information"
1266
  try:
1267
    result = _RecursiveAssembleBD(disk, owner, as_primary)
1268
    if isinstance(result, bdev.BlockDev):
1269
      result = result.dev_path
1270
  except errors.BlockDeviceError, err:
1271
    result = "Error while assembling disk: %s" % str(err)
1272
    status = False
1273
  return (status, result)
1274

    
1275

    
1276
def BlockdevShutdown(disk):
1277
  """Shut down a block device.
1278

1279
  First, if the device is assembled (Attach() is successfull), then
1280
  the device is shutdown. Then the children of the device are
1281
  shutdown.
1282

1283
  This function is called recursively. Note that we don't cache the
1284
  children or such, as oppossed to assemble, shutdown of different
1285
  devices doesn't require that the upper device was active.
1286

1287
  @type disk: L{objects.Disk}
1288
  @param disk: the description of the disk we should
1289
      shutdown
1290
  @rtype: boolean
1291
  @return: the success of the operation
1292

1293
  """
1294
  msgs = []
1295
  result = True
1296
  r_dev = _RecursiveFindBD(disk)
1297
  if r_dev is not None:
1298
    r_path = r_dev.dev_path
1299
    try:
1300
      r_dev.Shutdown()
1301
      DevCacheManager.RemoveCache(r_path)
1302
    except errors.BlockDeviceError, err:
1303
      msgs.append(str(err))
1304
      result = False
1305

    
1306
  if disk.children:
1307
    for child in disk.children:
1308
      c_status, c_msg = BlockdevShutdown(child)
1309
      result = result and c_status
1310
      if c_msg: # not an empty message
1311
        msgs.append(c_msg)
1312

    
1313
  return (result, "; ".join(msgs))
1314

    
1315

    
1316
def BlockdevAddchildren(parent_cdev, new_cdevs):
1317
  """Extend a mirrored block device.
1318

1319
  @type parent_cdev: L{objects.Disk}
1320
  @param parent_cdev: the disk to which we should add children
1321
  @type new_cdevs: list of L{objects.Disk}
1322
  @param new_cdevs: the list of children which we should add
1323
  @rtype: boolean
1324
  @return: the success of the operation
1325

1326
  """
1327
  parent_bdev = _RecursiveFindBD(parent_cdev)
1328
  if parent_bdev is None:
1329
    logging.error("Can't find parent device")
1330
    return False
1331
  new_bdevs = [_RecursiveFindBD(disk) for disk in new_cdevs]
1332
  if new_bdevs.count(None) > 0:
1333
    logging.error("Can't find new device(s) to add: %s:%s",
1334
                  new_bdevs, new_cdevs)
1335
    return False
1336
  parent_bdev.AddChildren(new_bdevs)
1337
  return True
1338

    
1339

    
1340
def BlockdevRemovechildren(parent_cdev, new_cdevs):
1341
  """Shrink a mirrored block device.
1342

1343
  @type parent_cdev: L{objects.Disk}
1344
  @param parent_cdev: the disk from which we should remove children
1345
  @type new_cdevs: list of L{objects.Disk}
1346
  @param new_cdevs: the list of children which we should remove
1347
  @rtype: boolean
1348
  @return: the success of the operation
1349

1350
  """
1351
  parent_bdev = _RecursiveFindBD(parent_cdev)
1352
  if parent_bdev is None:
1353
    logging.error("Can't find parent in remove children: %s", parent_cdev)
1354
    return False
1355
  devs = []
1356
  for disk in new_cdevs:
1357
    rpath = disk.StaticDevPath()
1358
    if rpath is None:
1359
      bd = _RecursiveFindBD(disk)
1360
      if bd is None:
1361
        logging.error("Can't find dynamic device %s while removing children",
1362
                      disk)
1363
        return False
1364
      else:
1365
        devs.append(bd.dev_path)
1366
    else:
1367
      devs.append(rpath)
1368
  parent_bdev.RemoveChildren(devs)
1369
  return True
1370

    
1371

    
1372
def BlockdevGetmirrorstatus(disks):
1373
  """Get the mirroring status of a list of devices.
1374

1375
  @type disks: list of L{objects.Disk}
1376
  @param disks: the list of disks which we should query
1377
  @rtype: disk
1378
  @return:
1379
      a list of (mirror_done, estimated_time) tuples, which
1380
      are the result of L{bdev.BlockDev.CombinedSyncStatus}
1381
  @raise errors.BlockDeviceError: if any of the disks cannot be
1382
      found
1383

1384
  """
1385
  stats = []
1386
  for dsk in disks:
1387
    rbd = _RecursiveFindBD(dsk)
1388
    if rbd is None:
1389
      raise errors.BlockDeviceError("Can't find device %s" % str(dsk))
1390
    stats.append(rbd.CombinedSyncStatus())
1391
  return stats
1392

    
1393

    
1394
def _RecursiveFindBD(disk):
1395
  """Check if a device is activated.
1396

1397
  If so, return informations about the real device.
1398

1399
  @type disk: L{objects.Disk}
1400
  @param disk: the disk object we need to find
1401

1402
  @return: None if the device can't be found,
1403
      otherwise the device instance
1404

1405
  """
1406
  children = []
1407
  if disk.children:
1408
    for chdisk in disk.children:
1409
      children.append(_RecursiveFindBD(chdisk))
1410

    
1411
  return bdev.FindDevice(disk.dev_type, disk.physical_id, children)
1412

    
1413

    
1414
def BlockdevFind(disk):
1415
  """Check if a device is activated.
1416

1417
  If it is, return informations about the real device.
1418

1419
  @type disk: L{objects.Disk}
1420
  @param disk: the disk to find
1421
  @rtype: None or tuple
1422
  @return: None if the disk cannot be found, otherwise a
1423
      tuple (device_path, major, minor, sync_percent,
1424
      estimated_time, is_degraded)
1425

1426
  """
1427
  try:
1428
    rbd = _RecursiveFindBD(disk)
1429
  except errors.BlockDeviceError, err:
1430
    return (False, str(err))
1431
  if rbd is None:
1432
    return (True, None)
1433
  return (True, (rbd.dev_path, rbd.major, rbd.minor) + rbd.GetSyncStatus())
1434

    
1435

    
1436
def UploadFile(file_name, data, mode, uid, gid, atime, mtime):
1437
  """Write a file to the filesystem.
1438

1439
  This allows the master to overwrite(!) a file. It will only perform
1440
  the operation if the file belongs to a list of configuration files.
1441

1442
  @type file_name: str
1443
  @param file_name: the target file name
1444
  @type data: str
1445
  @param data: the new contents of the file
1446
  @type mode: int
1447
  @param mode: the mode to give the file (can be None)
1448
  @type uid: int
1449
  @param uid: the owner of the file (can be -1 for default)
1450
  @type gid: int
1451
  @param gid: the group of the file (can be -1 for default)
1452
  @type atime: float
1453
  @param atime: the atime to set on the file (can be None)
1454
  @type mtime: float
1455
  @param mtime: the mtime to set on the file (can be None)
1456
  @rtype: boolean
1457
  @return: the success of the operation; errors are logged
1458
      in the node daemon log
1459

1460
  """
1461
  if not os.path.isabs(file_name):
1462
    err = "Filename passed to UploadFile is not absolute: '%s'" % file_name
1463
    logging.error(err)
1464
    return (False, err)
1465

    
1466
  allowed_files = set([
1467
    constants.CLUSTER_CONF_FILE,
1468
    constants.ETC_HOSTS,
1469
    constants.SSH_KNOWN_HOSTS_FILE,
1470
    constants.VNC_PASSWORD_FILE,
1471
    constants.RAPI_CERT_FILE,
1472
    constants.RAPI_USERS_FILE,
1473
    ])
1474

    
1475
  for hv_name in constants.HYPER_TYPES:
1476
    hv_class = hypervisor.GetHypervisor(hv_name)
1477
    allowed_files.update(hv_class.GetAncillaryFiles())
1478

    
1479
  if file_name not in allowed_files:
1480
    err = "Filename passed to UploadFile not in allowed upload targets: '%s'" \
1481
          % file_name
1482
    logging.error(err)
1483
    return (False, err)
1484

    
1485
  raw_data = _Decompress(data)
1486

    
1487
  utils.WriteFile(file_name, data=raw_data, mode=mode, uid=uid, gid=gid,
1488
                  atime=atime, mtime=mtime)
1489
  return (True, "success")
1490

    
1491

    
1492
def WriteSsconfFiles(values):
1493
  """Update all ssconf files.
1494

1495
  Wrapper around the SimpleStore.WriteFiles.
1496

1497
  """
1498
  ssconf.SimpleStore().WriteFiles(values)
1499

    
1500

    
1501
def _ErrnoOrStr(err):
1502
  """Format an EnvironmentError exception.
1503

1504
  If the L{err} argument has an errno attribute, it will be looked up
1505
  and converted into a textual C{E...} description. Otherwise the
1506
  string representation of the error will be returned.
1507

1508
  @type err: L{EnvironmentError}
1509
  @param err: the exception to format
1510

1511
  """
1512
  if hasattr(err, 'errno'):
1513
    detail = errno.errorcode[err.errno]
1514
  else:
1515
    detail = str(err)
1516
  return detail
1517

    
1518

    
1519
def _OSOndiskVersion(name, os_dir):
1520
  """Compute and return the API version of a given OS.
1521

1522
  This function will try to read the API version of the OS given by
1523
  the 'name' parameter and residing in the 'os_dir' directory.
1524

1525
  @type name: str
1526
  @param name: the OS name we should look for
1527
  @type os_dir: str
1528
  @param os_dir: the directory inwhich we should look for the OS
1529
  @rtype: int or None
1530
  @return:
1531
      Either an integer denoting the version or None in the
1532
      case when this is not a valid OS name.
1533
  @raise errors.InvalidOS: if the OS cannot be found
1534

1535
  """
1536
  api_file = os.path.sep.join([os_dir, "ganeti_api_version"])
1537

    
1538
  try:
1539
    st = os.stat(api_file)
1540
  except EnvironmentError, err:
1541
    raise errors.InvalidOS(name, os_dir, "'ganeti_api_version' file not"
1542
                           " found (%s)" % _ErrnoOrStr(err))
1543

    
1544
  if not stat.S_ISREG(stat.S_IFMT(st.st_mode)):
1545
    raise errors.InvalidOS(name, os_dir, "'ganeti_api_version' file is not"
1546
                           " a regular file")
1547

    
1548
  try:
1549
    f = open(api_file)
1550
    try:
1551
      api_versions = f.readlines()
1552
    finally:
1553
      f.close()
1554
  except EnvironmentError, err:
1555
    raise errors.InvalidOS(name, os_dir, "error while reading the"
1556
                           " API version (%s)" % _ErrnoOrStr(err))
1557

    
1558
  api_versions = [version.strip() for version in api_versions]
1559
  try:
1560
    api_versions = [int(version) for version in api_versions]
1561
  except (TypeError, ValueError), err:
1562
    raise errors.InvalidOS(name, os_dir,
1563
                           "API version is not integer (%s)" % str(err))
1564

    
1565
  return api_versions
1566

    
1567

    
1568
def DiagnoseOS(top_dirs=None):
1569
  """Compute the validity for all OSes.
1570

1571
  @type top_dirs: list
1572
  @param top_dirs: the list of directories in which to
1573
      search (if not given defaults to
1574
      L{constants.OS_SEARCH_PATH})
1575
  @rtype: list of L{objects.OS}
1576
  @return: an OS object for each name in all the given
1577
      directories
1578

1579
  """
1580
  if top_dirs is None:
1581
    top_dirs = constants.OS_SEARCH_PATH
1582

    
1583
  result = []
1584
  for dir_name in top_dirs:
1585
    if os.path.isdir(dir_name):
1586
      try:
1587
        f_names = utils.ListVisibleFiles(dir_name)
1588
      except EnvironmentError, err:
1589
        logging.exception("Can't list the OS directory %s", dir_name)
1590
        break
1591
      for name in f_names:
1592
        try:
1593
          os_inst = OSFromDisk(name, base_dir=dir_name)
1594
          result.append(os_inst)
1595
        except errors.InvalidOS, err:
1596
          result.append(objects.OS.FromInvalidOS(err))
1597

    
1598
  return result
1599

    
1600

    
1601
def OSFromDisk(name, base_dir=None):
1602
  """Create an OS instance from disk.
1603

1604
  This function will return an OS instance if the given name is a
1605
  valid OS name. Otherwise, it will raise an appropriate
1606
  L{errors.InvalidOS} exception, detailing why this is not a valid OS.
1607

1608
  @type base_dir: string
1609
  @keyword base_dir: Base directory containing OS installations.
1610
                     Defaults to a search in all the OS_SEARCH_PATH dirs.
1611
  @rtype: L{objects.OS}
1612
  @return: the OS instance if we find a valid one
1613
  @raise errors.InvalidOS: if we don't find a valid OS
1614

1615
  """
1616
  if base_dir is None:
1617
    os_dir = utils.FindFile(name, constants.OS_SEARCH_PATH, os.path.isdir)
1618
    if os_dir is None:
1619
      raise errors.InvalidOS(name, None, "OS dir not found in search path")
1620
  else:
1621
    os_dir = os.path.sep.join([base_dir, name])
1622

    
1623
  api_versions = _OSOndiskVersion(name, os_dir)
1624

    
1625
  if constants.OS_API_VERSION not in api_versions:
1626
    raise errors.InvalidOS(name, os_dir, "API version mismatch"
1627
                           " (found %s want %s)"
1628
                           % (api_versions, constants.OS_API_VERSION))
1629

    
1630
  # OS Scripts dictionary, we will populate it with the actual script names
1631
  os_scripts = dict.fromkeys(constants.OS_SCRIPTS)
1632

    
1633
  for script in os_scripts:
1634
    os_scripts[script] = os.path.sep.join([os_dir, script])
1635

    
1636
    try:
1637
      st = os.stat(os_scripts[script])
1638
    except EnvironmentError, err:
1639
      raise errors.InvalidOS(name, os_dir, "'%s' script missing (%s)" %
1640
                             (script, _ErrnoOrStr(err)))
1641

    
1642
    if stat.S_IMODE(st.st_mode) & stat.S_IXUSR != stat.S_IXUSR:
1643
      raise errors.InvalidOS(name, os_dir, "'%s' script not executable" %
1644
                             script)
1645

    
1646
    if not stat.S_ISREG(stat.S_IFMT(st.st_mode)):
1647
      raise errors.InvalidOS(name, os_dir, "'%s' is not a regular file" %
1648
                             script)
1649

    
1650

    
1651
  return objects.OS(name=name, path=os_dir, status=constants.OS_VALID_STATUS,
1652
                    create_script=os_scripts[constants.OS_SCRIPT_CREATE],
1653
                    export_script=os_scripts[constants.OS_SCRIPT_EXPORT],
1654
                    import_script=os_scripts[constants.OS_SCRIPT_IMPORT],
1655
                    rename_script=os_scripts[constants.OS_SCRIPT_RENAME],
1656
                    api_versions=api_versions)
1657

    
1658
def OSEnvironment(instance, debug=0):
1659
  """Calculate the environment for an os script.
1660

1661
  @type instance: L{objects.Instance}
1662
  @param instance: target instance for the os script run
1663
  @type debug: integer
1664
  @param debug: debug level (0 or 1, for OS Api 10)
1665
  @rtype: dict
1666
  @return: dict of environment variables
1667
  @raise errors.BlockDeviceError: if the block device
1668
      cannot be found
1669

1670
  """
1671
  result = {}
1672
  result['OS_API_VERSION'] = '%d' % constants.OS_API_VERSION
1673
  result['INSTANCE_NAME'] = instance.name
1674
  result['INSTANCE_OS'] = instance.os
1675
  result['HYPERVISOR'] = instance.hypervisor
1676
  result['DISK_COUNT'] = '%d' % len(instance.disks)
1677
  result['NIC_COUNT'] = '%d' % len(instance.nics)
1678
  result['DEBUG_LEVEL'] = '%d' % debug
1679
  for idx, disk in enumerate(instance.disks):
1680
    real_disk = _RecursiveFindBD(disk)
1681
    if real_disk is None:
1682
      raise errors.BlockDeviceError("Block device '%s' is not set up" %
1683
                                    str(disk))
1684
    real_disk.Open()
1685
    result['DISK_%d_PATH' % idx] = real_disk.dev_path
1686
    result['DISK_%d_ACCESS' % idx] = disk.mode
1687
    if constants.HV_DISK_TYPE in instance.hvparams:
1688
      result['DISK_%d_FRONTEND_TYPE' % idx] = \
1689
        instance.hvparams[constants.HV_DISK_TYPE]
1690
    if disk.dev_type in constants.LDS_BLOCK:
1691
      result['DISK_%d_BACKEND_TYPE' % idx] = 'block'
1692
    elif disk.dev_type == constants.LD_FILE:
1693
      result['DISK_%d_BACKEND_TYPE' % idx] = \
1694
        'file:%s' % disk.physical_id[0]
1695
  for idx, nic in enumerate(instance.nics):
1696
    result['NIC_%d_MAC' % idx] = nic.mac
1697
    if nic.ip:
1698
      result['NIC_%d_IP' % idx] = nic.ip
1699
    result['NIC_%d_BRIDGE' % idx] = nic.bridge
1700
    if constants.HV_NIC_TYPE in instance.hvparams:
1701
      result['NIC_%d_FRONTEND_TYPE' % idx] = \
1702
        instance.hvparams[constants.HV_NIC_TYPE]
1703

    
1704
  return result
1705

    
1706
def BlockdevGrow(disk, amount):
1707
  """Grow a stack of block devices.
1708

1709
  This function is called recursively, with the childrens being the
1710
  first ones to resize.
1711

1712
  @type disk: L{objects.Disk}
1713
  @param disk: the disk to be grown
1714
  @rtype: (status, result)
1715
  @return: a tuple with the status of the operation
1716
      (True/False), and the errors message if status
1717
      is False
1718

1719
  """
1720
  r_dev = _RecursiveFindBD(disk)
1721
  if r_dev is None:
1722
    return False, "Cannot find block device %s" % (disk,)
1723

    
1724
  try:
1725
    r_dev.Grow(amount)
1726
  except errors.BlockDeviceError, err:
1727
    return False, str(err)
1728

    
1729
  return True, None
1730

    
1731

    
1732
def BlockdevSnapshot(disk):
1733
  """Create a snapshot copy of a block device.
1734

1735
  This function is called recursively, and the snapshot is actually created
1736
  just for the leaf lvm backend device.
1737

1738
  @type disk: L{objects.Disk}
1739
  @param disk: the disk to be snapshotted
1740
  @rtype: string
1741
  @return: snapshot disk path
1742

1743
  """
1744
  if disk.children:
1745
    if len(disk.children) == 1:
1746
      # only one child, let's recurse on it
1747
      return BlockdevSnapshot(disk.children[0])
1748
    else:
1749
      # more than one child, choose one that matches
1750
      for child in disk.children:
1751
        if child.size == disk.size:
1752
          # return implies breaking the loop
1753
          return BlockdevSnapshot(child)
1754
  elif disk.dev_type == constants.LD_LV:
1755
    r_dev = _RecursiveFindBD(disk)
1756
    if r_dev is not None:
1757
      # let's stay on the safe side and ask for the full size, for now
1758
      return r_dev.Snapshot(disk.size)
1759
    else:
1760
      return None
1761
  else:
1762
    raise errors.ProgrammerError("Cannot snapshot non-lvm block device"
1763
                                 " '%s' of type '%s'" %
1764
                                 (disk.unique_id, disk.dev_type))
1765

    
1766

    
1767
def ExportSnapshot(disk, dest_node, instance, cluster_name, idx):
1768
  """Export a block device snapshot to a remote node.
1769

1770
  @type disk: L{objects.Disk}
1771
  @param disk: the description of the disk to export
1772
  @type dest_node: str
1773
  @param dest_node: the destination node to export to
1774
  @type instance: L{objects.Instance}
1775
  @param instance: the instance object to whom the disk belongs
1776
  @type cluster_name: str
1777
  @param cluster_name: the cluster name, needed for SSH hostalias
1778
  @type idx: int
1779
  @param idx: the index of the disk in the instance's disk list,
1780
      used to export to the OS scripts environment
1781
  @rtype: boolean
1782
  @return: the success of the operation
1783

1784
  """
1785
  export_env = OSEnvironment(instance)
1786

    
1787
  inst_os = OSFromDisk(instance.os)
1788
  export_script = inst_os.export_script
1789

    
1790
  logfile = "%s/exp-%s-%s-%s.log" % (constants.LOG_OS_DIR, inst_os.name,
1791
                                     instance.name, int(time.time()))
1792
  if not os.path.exists(constants.LOG_OS_DIR):
1793
    os.mkdir(constants.LOG_OS_DIR, 0750)
1794
  real_disk = _RecursiveFindBD(disk)
1795
  if real_disk is None:
1796
    raise errors.BlockDeviceError("Block device '%s' is not set up" %
1797
                                  str(disk))
1798
  real_disk.Open()
1799

    
1800
  export_env['EXPORT_DEVICE'] = real_disk.dev_path
1801
  export_env['EXPORT_INDEX'] = str(idx)
1802

    
1803
  destdir = os.path.join(constants.EXPORT_DIR, instance.name + ".new")
1804
  destfile = disk.physical_id[1]
1805

    
1806
  # the target command is built out of three individual commands,
1807
  # which are joined by pipes; we check each individual command for
1808
  # valid parameters
1809
  expcmd = utils.BuildShellCmd("cd %s; %s 2>%s", inst_os.path,
1810
                               export_script, logfile)
1811

    
1812
  comprcmd = "gzip"
1813

    
1814
  destcmd = utils.BuildShellCmd("mkdir -p %s && cat > %s/%s",
1815
                                destdir, destdir, destfile)
1816
  remotecmd = _GetSshRunner(cluster_name).BuildCmd(dest_node,
1817
                                                   constants.GANETI_RUNAS,
1818
                                                   destcmd)
1819

    
1820
  # all commands have been checked, so we're safe to combine them
1821
  command = '|'.join([expcmd, comprcmd, utils.ShellQuoteArgs(remotecmd)])
1822

    
1823
  result = utils.RunCmd(command, env=export_env)
1824

    
1825
  if result.failed:
1826
    logging.error("os snapshot export command '%s' returned error: %s"
1827
                  " output: %s", command, result.fail_reason, result.output)
1828
    return False
1829

    
1830
  return True
1831

    
1832

    
1833
def FinalizeExport(instance, snap_disks):
1834
  """Write out the export configuration information.
1835

1836
  @type instance: L{objects.Instance}
1837
  @param instance: the instance which we export, used for
1838
      saving configuration
1839
  @type snap_disks: list of L{objects.Disk}
1840
  @param snap_disks: list of snapshot block devices, which
1841
      will be used to get the actual name of the dump file
1842

1843
  @rtype: boolean
1844
  @return: the success of the operation
1845

1846
  """
1847
  destdir = os.path.join(constants.EXPORT_DIR, instance.name + ".new")
1848
  finaldestdir = os.path.join(constants.EXPORT_DIR, instance.name)
1849

    
1850
  config = objects.SerializableConfigParser()
1851

    
1852
  config.add_section(constants.INISECT_EXP)
1853
  config.set(constants.INISECT_EXP, 'version', '0')
1854
  config.set(constants.INISECT_EXP, 'timestamp', '%d' % int(time.time()))
1855
  config.set(constants.INISECT_EXP, 'source', instance.primary_node)
1856
  config.set(constants.INISECT_EXP, 'os', instance.os)
1857
  config.set(constants.INISECT_EXP, 'compression', 'gzip')
1858

    
1859
  config.add_section(constants.INISECT_INS)
1860
  config.set(constants.INISECT_INS, 'name', instance.name)
1861
  config.set(constants.INISECT_INS, 'memory', '%d' %
1862
             instance.beparams[constants.BE_MEMORY])
1863
  config.set(constants.INISECT_INS, 'vcpus', '%d' %
1864
             instance.beparams[constants.BE_VCPUS])
1865
  config.set(constants.INISECT_INS, 'disk_template', instance.disk_template)
1866

    
1867
  nic_total = 0
1868
  for nic_count, nic in enumerate(instance.nics):
1869
    nic_total += 1
1870
    config.set(constants.INISECT_INS, 'nic%d_mac' %
1871
               nic_count, '%s' % nic.mac)
1872
    config.set(constants.INISECT_INS, 'nic%d_ip' % nic_count, '%s' % nic.ip)
1873
    config.set(constants.INISECT_INS, 'nic%d_bridge' % nic_count,
1874
               '%s' % nic.bridge)
1875
  # TODO: redundant: on load can read nics until it doesn't exist
1876
  config.set(constants.INISECT_INS, 'nic_count' , '%d' % nic_total)
1877

    
1878
  disk_total = 0
1879
  for disk_count, disk in enumerate(snap_disks):
1880
    if disk:
1881
      disk_total += 1
1882
      config.set(constants.INISECT_INS, 'disk%d_ivname' % disk_count,
1883
                 ('%s' % disk.iv_name))
1884
      config.set(constants.INISECT_INS, 'disk%d_dump' % disk_count,
1885
                 ('%s' % disk.physical_id[1]))
1886
      config.set(constants.INISECT_INS, 'disk%d_size' % disk_count,
1887
                 ('%d' % disk.size))
1888

    
1889
  config.set(constants.INISECT_INS, 'disk_count' , '%d' % disk_total)
1890

    
1891
  utils.WriteFile(os.path.join(destdir, constants.EXPORT_CONF_FILE),
1892
                  data=config.Dumps())
1893
  shutil.rmtree(finaldestdir, True)
1894
  shutil.move(destdir, finaldestdir)
1895

    
1896
  return True
1897

    
1898

    
1899
def ExportInfo(dest):
1900
  """Get export configuration information.
1901

1902
  @type dest: str
1903
  @param dest: directory containing the export
1904

1905
  @rtype: L{objects.SerializableConfigParser}
1906
  @return: a serializable config file containing the
1907
      export info
1908

1909
  """
1910
  cff = os.path.join(dest, constants.EXPORT_CONF_FILE)
1911

    
1912
  config = objects.SerializableConfigParser()
1913
  config.read(cff)
1914

    
1915
  if (not config.has_section(constants.INISECT_EXP) or
1916
      not config.has_section(constants.INISECT_INS)):
1917
    return None
1918

    
1919
  return config
1920

    
1921

    
1922
def ImportOSIntoInstance(instance, src_node, src_images, cluster_name):
1923
  """Import an os image into an instance.
1924

1925
  @type instance: L{objects.Instance}
1926
  @param instance: instance to import the disks into
1927
  @type src_node: string
1928
  @param src_node: source node for the disk images
1929
  @type src_images: list of string
1930
  @param src_images: absolute paths of the disk images
1931
  @rtype: list of boolean
1932
  @return: each boolean represent the success of importing the n-th disk
1933

1934
  """
1935
  import_env = OSEnvironment(instance)
1936
  inst_os = OSFromDisk(instance.os)
1937
  import_script = inst_os.import_script
1938

    
1939
  logfile = "%s/import-%s-%s-%s.log" % (constants.LOG_OS_DIR, instance.os,
1940
                                        instance.name, int(time.time()))
1941
  if not os.path.exists(constants.LOG_OS_DIR):
1942
    os.mkdir(constants.LOG_OS_DIR, 0750)
1943

    
1944
  comprcmd = "gunzip"
1945
  impcmd = utils.BuildShellCmd("(cd %s; %s >%s 2>&1)", inst_os.path,
1946
                               import_script, logfile)
1947

    
1948
  final_result = []
1949
  for idx, image in enumerate(src_images):
1950
    if image:
1951
      destcmd = utils.BuildShellCmd('cat %s', image)
1952
      remotecmd = _GetSshRunner(cluster_name).BuildCmd(src_node,
1953
                                                       constants.GANETI_RUNAS,
1954
                                                       destcmd)
1955
      command = '|'.join([utils.ShellQuoteArgs(remotecmd), comprcmd, impcmd])
1956
      import_env['IMPORT_DEVICE'] = import_env['DISK_%d_PATH' % idx]
1957
      import_env['IMPORT_INDEX'] = str(idx)
1958
      result = utils.RunCmd(command, env=import_env)
1959
      if result.failed:
1960
        logging.error("Disk import command '%s' returned error: %s"
1961
                      " output: %s", command, result.fail_reason,
1962
                      result.output)
1963
        final_result.append(False)
1964
      else:
1965
        final_result.append(True)
1966
    else:
1967
      final_result.append(True)
1968

    
1969
  return final_result
1970

    
1971

    
1972
def ListExports():
1973
  """Return a list of exports currently available on this machine.
1974

1975
  @rtype: list
1976
  @return: list of the exports
1977

1978
  """
1979
  if os.path.isdir(constants.EXPORT_DIR):
1980
    return utils.ListVisibleFiles(constants.EXPORT_DIR)
1981
  else:
1982
    return []
1983

    
1984

    
1985
def RemoveExport(export):
1986
  """Remove an existing export from the node.
1987

1988
  @type export: str
1989
  @param export: the name of the export to remove
1990
  @rtype: boolean
1991
  @return: the success of the operation
1992

1993
  """
1994
  target = os.path.join(constants.EXPORT_DIR, export)
1995

    
1996
  shutil.rmtree(target)
1997
  # TODO: catch some of the relevant exceptions and provide a pretty
1998
  # error message if rmtree fails.
1999

    
2000
  return True
2001

    
2002

    
2003
def BlockdevRename(devlist):
2004
  """Rename a list of block devices.
2005

2006
  @type devlist: list of tuples
2007
  @param devlist: list of tuples of the form  (disk,
2008
      new_logical_id, new_physical_id); disk is an
2009
      L{objects.Disk} object describing the current disk,
2010
      and new logical_id/physical_id is the name we
2011
      rename it to
2012
  @rtype: boolean
2013
  @return: True if all renames succeeded, False otherwise
2014

2015
  """
2016
  msgs = []
2017
  result = True
2018
  for disk, unique_id in devlist:
2019
    dev = _RecursiveFindBD(disk)
2020
    if dev is None:
2021
      msgs.append("Can't find device %s in rename" % str(disk))
2022
      result = False
2023
      continue
2024
    try:
2025
      old_rpath = dev.dev_path
2026
      dev.Rename(unique_id)
2027
      new_rpath = dev.dev_path
2028
      if old_rpath != new_rpath:
2029
        DevCacheManager.RemoveCache(old_rpath)
2030
        # FIXME: we should add the new cache information here, like:
2031
        # DevCacheManager.UpdateCache(new_rpath, owner, ...)
2032
        # but we don't have the owner here - maybe parse from existing
2033
        # cache? for now, we only lose lvm data when we rename, which
2034
        # is less critical than DRBD or MD
2035
    except errors.BlockDeviceError, err:
2036
      msgs.append("Can't rename device '%s' to '%s': %s" %
2037
                  (dev, unique_id, err))
2038
      logging.exception("Can't rename device '%s' to '%s'", dev, unique_id)
2039
      result = False
2040
  return (result, "; ".join(msgs))
2041

    
2042

    
2043
def _TransformFileStorageDir(file_storage_dir):
2044
  """Checks whether given file_storage_dir is valid.
2045

2046
  Checks wheter the given file_storage_dir is within the cluster-wide
2047
  default file_storage_dir stored in SimpleStore. Only paths under that
2048
  directory are allowed.
2049

2050
  @type file_storage_dir: str
2051
  @param file_storage_dir: the path to check
2052

2053
  @return: the normalized path if valid, None otherwise
2054

2055
  """
2056
  cfg = _GetConfig()
2057
  file_storage_dir = os.path.normpath(file_storage_dir)
2058
  base_file_storage_dir = cfg.GetFileStorageDir()
2059
  if (not os.path.commonprefix([file_storage_dir, base_file_storage_dir]) ==
2060
      base_file_storage_dir):
2061
    logging.error("file storage directory '%s' is not under base file"
2062
                  " storage directory '%s'",
2063
                  file_storage_dir, base_file_storage_dir)
2064
    return None
2065
  return file_storage_dir
2066

    
2067

    
2068
def CreateFileStorageDir(file_storage_dir):
2069
  """Create file storage directory.
2070

2071
  @type file_storage_dir: str
2072
  @param file_storage_dir: directory to create
2073

2074
  @rtype: tuple
2075
  @return: tuple with first element a boolean indicating wheter dir
2076
      creation was successful or not
2077

2078
  """
2079
  file_storage_dir = _TransformFileStorageDir(file_storage_dir)
2080
  result = True,
2081
  if not file_storage_dir:
2082
    result = False,
2083
  else:
2084
    if os.path.exists(file_storage_dir):
2085
      if not os.path.isdir(file_storage_dir):
2086
        logging.error("'%s' is not a directory", file_storage_dir)
2087
        result = False,
2088
    else:
2089
      try:
2090
        os.makedirs(file_storage_dir, 0750)
2091
      except OSError, err:
2092
        logging.error("Cannot create file storage directory '%s': %s",
2093
                      file_storage_dir, err)
2094
        result = False,
2095
  return result
2096

    
2097

    
2098
def RemoveFileStorageDir(file_storage_dir):
2099
  """Remove file storage directory.
2100

2101
  Remove it only if it's empty. If not log an error and return.
2102

2103
  @type file_storage_dir: str
2104
  @param file_storage_dir: the directory we should cleanup
2105
  @rtype: tuple (success,)
2106
  @return: tuple of one element, C{success}, denoting
2107
      whether the operation was successfull
2108

2109
  """
2110
  file_storage_dir = _TransformFileStorageDir(file_storage_dir)
2111
  result = True,
2112
  if not file_storage_dir:
2113
    result = False,
2114
  else:
2115
    if os.path.exists(file_storage_dir):
2116
      if not os.path.isdir(file_storage_dir):
2117
        logging.error("'%s' is not a directory", file_storage_dir)
2118
        result = False,
2119
      # deletes dir only if empty, otherwise we want to return False
2120
      try:
2121
        os.rmdir(file_storage_dir)
2122
      except OSError, err:
2123
        logging.exception("Cannot remove file storage directory '%s'",
2124
                          file_storage_dir)
2125
        result = False,
2126
  return result
2127

    
2128

    
2129
def RenameFileStorageDir(old_file_storage_dir, new_file_storage_dir):
2130
  """Rename the file storage directory.
2131

2132
  @type old_file_storage_dir: str
2133
  @param old_file_storage_dir: the current path
2134
  @type new_file_storage_dir: str
2135
  @param new_file_storage_dir: the name we should rename to
2136
  @rtype: tuple (success,)
2137
  @return: tuple of one element, C{success}, denoting
2138
      whether the operation was successful
2139

2140
  """
2141
  old_file_storage_dir = _TransformFileStorageDir(old_file_storage_dir)
2142
  new_file_storage_dir = _TransformFileStorageDir(new_file_storage_dir)
2143
  result = True,
2144
  if not old_file_storage_dir or not new_file_storage_dir:
2145
    result = False,
2146
  else:
2147
    if not os.path.exists(new_file_storage_dir):
2148
      if os.path.isdir(old_file_storage_dir):
2149
        try:
2150
          os.rename(old_file_storage_dir, new_file_storage_dir)
2151
        except OSError, err:
2152
          logging.exception("Cannot rename '%s' to '%s'",
2153
                            old_file_storage_dir, new_file_storage_dir)
2154
          result =  False,
2155
      else:
2156
        logging.error("'%s' is not a directory", old_file_storage_dir)
2157
        result = False,
2158
    else:
2159
      if os.path.exists(old_file_storage_dir):
2160
        logging.error("Cannot rename '%s' to '%s'. Both locations exist.",
2161
                      old_file_storage_dir, new_file_storage_dir)
2162
        result = False,
2163
  return result
2164

    
2165

    
2166
def _IsJobQueueFile(file_name):
2167
  """Checks whether the given filename is in the queue directory.
2168

2169
  @type file_name: str
2170
  @param file_name: the file name we should check
2171
  @rtype: boolean
2172
  @return: whether the file is under the queue directory
2173

2174
  """
2175
  queue_dir = os.path.normpath(constants.QUEUE_DIR)
2176
  result = (os.path.commonprefix([queue_dir, file_name]) == queue_dir)
2177

    
2178
  if not result:
2179
    logging.error("'%s' is not a file in the queue directory",
2180
                  file_name)
2181

    
2182
  return result
2183

    
2184

    
2185
def JobQueueUpdate(file_name, content):
2186
  """Updates a file in the queue directory.
2187

2188
  This is just a wrapper over L{utils.WriteFile}, with proper
2189
  checking.
2190

2191
  @type file_name: str
2192
  @param file_name: the job file name
2193
  @type content: str
2194
  @param content: the new job contents
2195
  @rtype: boolean
2196
  @return: the success of the operation
2197

2198
  """
2199
  if not _IsJobQueueFile(file_name):
2200
    return False
2201

    
2202
  # Write and replace the file atomically
2203
  utils.WriteFile(file_name, data=_Decompress(content))
2204

    
2205
  return True
2206

    
2207

    
2208
def JobQueueRename(old, new):
2209
  """Renames a job queue file.
2210

2211
  This is just a wrapper over os.rename with proper checking.
2212

2213
  @type old: str
2214
  @param old: the old (actual) file name
2215
  @type new: str
2216
  @param new: the desired file name
2217
  @rtype: boolean
2218
  @return: the success of the operation
2219

2220
  """
2221
  if not (_IsJobQueueFile(old) and _IsJobQueueFile(new)):
2222
    return False
2223

    
2224
  utils.RenameFile(old, new, mkdir=True)
2225

    
2226
  return True
2227

    
2228

    
2229
def JobQueueSetDrainFlag(drain_flag):
2230
  """Set the drain flag for the queue.
2231

2232
  This will set or unset the queue drain flag.
2233

2234
  @type drain_flag: boolean
2235
  @param drain_flag: if True, will set the drain flag, otherwise reset it.
2236
  @rtype: boolean
2237
  @return: always True
2238
  @warning: the function always returns True
2239

2240
  """
2241
  if drain_flag:
2242
    utils.WriteFile(constants.JOB_QUEUE_DRAIN_FILE, data="", close=True)
2243
  else:
2244
    utils.RemoveFile(constants.JOB_QUEUE_DRAIN_FILE)
2245

    
2246
  return True
2247

    
2248

    
2249
def BlockdevClose(instance_name, disks):
2250
  """Closes the given block devices.
2251

2252
  This means they will be switched to secondary mode (in case of
2253
  DRBD).
2254

2255
  @param instance_name: if the argument is not empty, the symlinks
2256
      of this instance will be removed
2257
  @type disks: list of L{objects.Disk}
2258
  @param disks: the list of disks to be closed
2259
  @rtype: tuple (success, message)
2260
  @return: a tuple of success and message, where success
2261
      indicates the succes of the operation, and message
2262
      which will contain the error details in case we
2263
      failed
2264

2265
  """
2266
  bdevs = []
2267
  for cf in disks:
2268
    rd = _RecursiveFindBD(cf)
2269
    if rd is None:
2270
      return (False, "Can't find device %s" % cf)
2271
    bdevs.append(rd)
2272

    
2273
  msg = []
2274
  for rd in bdevs:
2275
    try:
2276
      rd.Close()
2277
    except errors.BlockDeviceError, err:
2278
      msg.append(str(err))
2279
  if msg:
2280
    return (False, "Can't make devices secondary: %s" % ",".join(msg))
2281
  else:
2282
    if instance_name:
2283
      _RemoveBlockDevLinks(instance_name, disks)
2284
    return (True, "All devices secondary")
2285

    
2286

    
2287
def ValidateHVParams(hvname, hvparams):
2288
  """Validates the given hypervisor parameters.
2289

2290
  @type hvname: string
2291
  @param hvname: the hypervisor name
2292
  @type hvparams: dict
2293
  @param hvparams: the hypervisor parameters to be validated
2294
  @rtype: tuple (success, message)
2295
  @return: a tuple of success and message, where success
2296
      indicates the succes of the operation, and message
2297
      which will contain the error details in case we
2298
      failed
2299

2300
  """
2301
  try:
2302
    hv_type = hypervisor.GetHypervisor(hvname)
2303
    hv_type.ValidateParameters(hvparams)
2304
    return (True, "Validation passed")
2305
  except errors.HypervisorError, err:
2306
    return (False, str(err))
2307

    
2308

    
2309
def DemoteFromMC():
2310
  """Demotes the current node from master candidate role.
2311

2312
  """
2313
  # try to ensure we're not the master by mistake
2314
  master, myself = ssconf.GetMasterAndMyself()
2315
  if master == myself:
2316
    return (False, "ssconf status shows I'm the master node, will not demote")
2317
  pid_file = utils.DaemonPidFileName(constants.MASTERD_PID)
2318
  if utils.IsProcessAlive(utils.ReadPidFile(pid_file)):
2319
    return (False, "The master daemon is running, will not demote")
2320
  try:
2321
    utils.CreateBackup(constants.CLUSTER_CONF_FILE)
2322
  except EnvironmentError, err:
2323
    if err.errno != errno.ENOENT:
2324
      return (False, "Error while backing up cluster file: %s" % str(err))
2325
  utils.RemoveFile(constants.CLUSTER_CONF_FILE)
2326
  return (True, "Done")
2327

    
2328

    
2329
def _FindDisks(nodes_ip, disks):
2330
  """Sets the physical ID on disks and returns the block devices.
2331

2332
  """
2333
  # set the correct physical ID
2334
  my_name = utils.HostInfo().name
2335
  for cf in disks:
2336
    cf.SetPhysicalID(my_name, nodes_ip)
2337

    
2338
  bdevs = []
2339

    
2340
  for cf in disks:
2341
    rd = _RecursiveFindBD(cf)
2342
    if rd is None:
2343
      return (False, "Can't find device %s" % cf)
2344
    bdevs.append(rd)
2345
  return (True, bdevs)
2346

    
2347

    
2348
def DrbdDisconnectNet(nodes_ip, disks):
2349
  """Disconnects the network on a list of drbd devices.
2350

2351
  """
2352
  status, bdevs = _FindDisks(nodes_ip, disks)
2353
  if not status:
2354
    return status, bdevs
2355

    
2356
  # disconnect disks
2357
  for rd in bdevs:
2358
    try:
2359
      rd.DisconnectNet()
2360
    except errors.BlockDeviceError, err:
2361
      logging.exception("Failed to go into standalone mode")
2362
      return (False, "Can't change network configuration: %s" % str(err))
2363
  return (True, "All disks are now disconnected")
2364

    
2365

    
2366
def DrbdAttachNet(nodes_ip, disks, instance_name, multimaster):
2367
  """Attaches the network on a list of drbd devices.
2368

2369
  """
2370
  status, bdevs = _FindDisks(nodes_ip, disks)
2371
  if not status:
2372
    return status, bdevs
2373

    
2374
  if multimaster:
2375
    for idx, rd in enumerate(bdevs):
2376
      try:
2377
        _SymlinkBlockDev(instance_name, rd.dev_path, idx)
2378
      except EnvironmentError, err:
2379
        return (False, "Can't create symlink: %s" % str(err))
2380
  # reconnect disks, switch to new master configuration and if
2381
  # needed primary mode
2382
  for rd in bdevs:
2383
    try:
2384
      rd.AttachNet(multimaster)
2385
    except errors.BlockDeviceError, err:
2386
      return (False, "Can't change network configuration: %s" % str(err))
2387
  # wait until the disks are connected; we need to retry the re-attach
2388
  # if the device becomes standalone, as this might happen if the one
2389
  # node disconnects and reconnects in a different mode before the
2390
  # other node reconnects; in this case, one or both of the nodes will
2391
  # decide it has wrong configuration and switch to standalone
2392
  RECONNECT_TIMEOUT = 2 * 60
2393
  sleep_time = 0.100 # start with 100 miliseconds
2394
  timeout_limit = time.time() + RECONNECT_TIMEOUT
2395
  while time.time() < timeout_limit:
2396
    all_connected = True
2397
    for rd in bdevs:
2398
      stats = rd.GetProcStatus()
2399
      if not (stats.is_connected or stats.is_in_resync):
2400
        all_connected = False
2401
      if stats.is_standalone:
2402
        # peer had different config info and this node became
2403
        # standalone, even though this should not happen with the
2404
        # new staged way of changing disk configs
2405
        try:
2406
          rd.ReAttachNet(multimaster)
2407
        except errors.BlockDeviceError, err:
2408
          return (False, "Can't change network configuration: %s" % str(err))
2409
    if all_connected:
2410
      break
2411
    time.sleep(sleep_time)
2412
    sleep_time = min(5, sleep_time * 1.5)
2413
  if not all_connected:
2414
    return (False, "Timeout in disk reconnecting")
2415
  if multimaster:
2416
    # change to primary mode
2417
    for rd in bdevs:
2418
      try:
2419
        rd.Open()
2420
      except errors.BlockDeviceError, err:
2421
        return (False, "Can't change to primary mode: %s" % str(err))
2422
  if multimaster:
2423
    msg = "multi-master and primary"
2424
  else:
2425
    msg = "single-master"
2426
  return (True, "Disks are now configured as %s" % msg)
2427

    
2428

    
2429
def DrbdWaitSync(nodes_ip, disks):
2430
  """Wait until DRBDs have synchronized.
2431

2432
  """
2433
  status, bdevs = _FindDisks(nodes_ip, disks)
2434
  if not status:
2435
    return status, bdevs
2436

    
2437
  min_resync = 100
2438
  alldone = True
2439
  failure = False
2440
  for rd in bdevs:
2441
    stats = rd.GetProcStatus()
2442
    if not (stats.is_connected or stats.is_in_resync):
2443
      failure = True
2444
      break
2445
    alldone = alldone and (not stats.is_in_resync)
2446
    if stats.sync_percent is not None:
2447
      min_resync = min(min_resync, stats.sync_percent)
2448
  return (not failure, (alldone, min_resync))
2449

    
2450

    
2451
def PowercycleNode(hypervisor_type):
2452
  """Hard-powercycle the node.
2453

2454
  Because we need to return first, and schedule the powercycle in the
2455
  background, we won't be able to report failures nicely.
2456

2457
  """
2458
  hyper = hypervisor.GetHypervisor(hypervisor_type)
2459
  try:
2460
    pid = os.fork()
2461
  except OSError, err:
2462
    # if we can't fork, we'll pretend that we're in the child process
2463
    pid = 0
2464
  if pid > 0:
2465
    return (True, "Reboot scheduled in 5 seconds")
2466
  time.sleep(5)
2467
  hyper.PowercycleNode()
2468

    
2469

    
2470
class HooksRunner(object):
2471
  """Hook runner.
2472

2473
  This class is instantiated on the node side (ganeti-noded) and not
2474
  on the master side.
2475

2476
  """
2477
  RE_MASK = re.compile("^[a-zA-Z0-9_-]+$")
2478

    
2479
  def __init__(self, hooks_base_dir=None):
2480
    """Constructor for hooks runner.
2481

2482
    @type hooks_base_dir: str or None
2483
    @param hooks_base_dir: if not None, this overrides the
2484
        L{constants.HOOKS_BASE_DIR} (useful for unittests)
2485

2486
    """
2487
    if hooks_base_dir is None:
2488
      hooks_base_dir = constants.HOOKS_BASE_DIR
2489
    self._BASE_DIR = hooks_base_dir
2490

    
2491
  @staticmethod
2492
  def ExecHook(script, env):
2493
    """Exec one hook script.
2494

2495
    @type script: str
2496
    @param script: the full path to the script
2497
    @type env: dict
2498
    @param env: the environment with which to exec the script
2499
    @rtype: tuple (success, message)
2500
    @return: a tuple of success and message, where success
2501
        indicates the succes of the operation, and message
2502
        which will contain the error details in case we
2503
        failed
2504

2505
    """
2506
    # exec the process using subprocess and log the output
2507
    fdstdin = None
2508
    try:
2509
      fdstdin = open("/dev/null", "r")
2510
      child = subprocess.Popen([script], stdin=fdstdin, stdout=subprocess.PIPE,
2511
                               stderr=subprocess.STDOUT, close_fds=True,
2512
                               shell=False, cwd="/", env=env)
2513
      output = ""
2514
      try:
2515
        output = child.stdout.read(4096)
2516
        child.stdout.close()
2517
      except EnvironmentError, err:
2518
        output += "Hook script error: %s" % str(err)
2519

    
2520
      while True:
2521
        try:
2522
          result = child.wait()
2523
          break
2524
        except EnvironmentError, err:
2525
          if err.errno == errno.EINTR:
2526
            continue
2527
          raise
2528
    finally:
2529
      # try not to leak fds
2530
      for fd in (fdstdin, ):
2531
        if fd is not None:
2532
          try:
2533
            fd.close()
2534
          except EnvironmentError, err:
2535
            # just log the error
2536
            #logging.exception("Error while closing fd %s", fd)
2537
            pass
2538

    
2539
    return result == 0, utils.SafeEncode(output.strip())
2540

    
2541
  def RunHooks(self, hpath, phase, env):
2542
    """Run the scripts in the hooks directory.
2543

2544
    @type hpath: str
2545
    @param hpath: the path to the hooks directory which
2546
        holds the scripts
2547
    @type phase: str
2548
    @param phase: either L{constants.HOOKS_PHASE_PRE} or
2549
        L{constants.HOOKS_PHASE_POST}
2550
    @type env: dict
2551
    @param env: dictionary with the environment for the hook
2552
    @rtype: list
2553
    @return: list of 3-element tuples:
2554
      - script path
2555
      - script result, either L{constants.HKR_SUCCESS} or
2556
        L{constants.HKR_FAIL}
2557
      - output of the script
2558

2559
    @raise errors.ProgrammerError: for invalid input
2560
        parameters
2561

2562
    """
2563
    if phase == constants.HOOKS_PHASE_PRE:
2564
      suffix = "pre"
2565
    elif phase == constants.HOOKS_PHASE_POST:
2566
      suffix = "post"
2567
    else:
2568
      raise errors.ProgrammerError("Unknown hooks phase: '%s'" % phase)
2569
    rr = []
2570

    
2571
    subdir = "%s-%s.d" % (hpath, suffix)
2572
    dir_name = "%s/%s" % (self._BASE_DIR, subdir)
2573
    try:
2574
      dir_contents = utils.ListVisibleFiles(dir_name)
2575
    except OSError, err:
2576
      # FIXME: must log output in case of failures
2577
      return rr
2578

    
2579
    # we use the standard python sort order,
2580
    # so 00name is the recommended naming scheme
2581
    dir_contents.sort()
2582
    for relname in dir_contents:
2583
      fname = os.path.join(dir_name, relname)
2584
      if not (os.path.isfile(fname) and os.access(fname, os.X_OK) and
2585
          self.RE_MASK.match(relname) is not None):
2586
        rrval = constants.HKR_SKIP
2587
        output = ""
2588
      else:
2589
        result, output = self.ExecHook(fname, env)
2590
        if not result:
2591
          rrval = constants.HKR_FAIL
2592
        else:
2593
          rrval = constants.HKR_SUCCESS
2594
      rr.append(("%s/%s" % (subdir, relname), rrval, output))
2595

    
2596
    return rr
2597

    
2598

    
2599
class IAllocatorRunner(object):
2600
  """IAllocator runner.
2601

2602
  This class is instantiated on the node side (ganeti-noded) and not on
2603
  the master side.
2604

2605
  """
2606
  def Run(self, name, idata):
2607
    """Run an iallocator script.
2608

2609
    @type name: str
2610
    @param name: the iallocator script name
2611
    @type idata: str
2612
    @param idata: the allocator input data
2613

2614
    @rtype: tuple
2615
    @return: four element tuple of:
2616
       - run status (one of the IARUN_ constants)
2617
       - stdout
2618
       - stderr
2619
       - fail reason (as from L{utils.RunResult})
2620

2621
    """
2622
    alloc_script = utils.FindFile(name, constants.IALLOCATOR_SEARCH_PATH,
2623
                                  os.path.isfile)
2624
    if alloc_script is None:
2625
      return (constants.IARUN_NOTFOUND, None, None, None)
2626

    
2627
    fd, fin_name = tempfile.mkstemp(prefix="ganeti-iallocator.")
2628
    try:
2629
      os.write(fd, idata)
2630
      os.close(fd)
2631
      result = utils.RunCmd([alloc_script, fin_name])
2632
      if result.failed:
2633
        return (constants.IARUN_FAILURE, result.stdout, result.stderr,
2634
                result.fail_reason)
2635
    finally:
2636
      os.unlink(fin_name)
2637

    
2638
    return (constants.IARUN_SUCCESS, result.stdout, result.stderr, None)
2639

    
2640

    
2641
class DevCacheManager(object):
2642
  """Simple class for managing a cache of block device information.
2643

2644
  """
2645
  _DEV_PREFIX = "/dev/"
2646
  _ROOT_DIR = constants.BDEV_CACHE_DIR
2647

    
2648
  @classmethod
2649
  def _ConvertPath(cls, dev_path):
2650
    """Converts a /dev/name path to the cache file name.
2651

2652
    This replaces slashes with underscores and strips the /dev
2653
    prefix. It then returns the full path to the cache file.
2654

2655
    @type dev_path: str
2656
    @param dev_path: the C{/dev/} path name
2657
    @rtype: str
2658
    @return: the converted path name
2659

2660
    """
2661
    if dev_path.startswith(cls._DEV_PREFIX):
2662
      dev_path = dev_path[len(cls._DEV_PREFIX):]
2663
    dev_path = dev_path.replace("/", "_")
2664
    fpath = "%s/bdev_%s" % (cls._ROOT_DIR, dev_path)
2665
    return fpath
2666

    
2667
  @classmethod
2668
  def UpdateCache(cls, dev_path, owner, on_primary, iv_name):
2669
    """Updates the cache information for a given device.
2670

2671
    @type dev_path: str
2672
    @param dev_path: the pathname of the device
2673
    @type owner: str
2674
    @param owner: the owner (instance name) of the device
2675
    @type on_primary: bool
2676
    @param on_primary: whether this is the primary
2677
        node nor not
2678
    @type iv_name: str
2679
    @param iv_name: the instance-visible name of the
2680
        device, as in objects.Disk.iv_name
2681

2682
    @rtype: None
2683

2684
    """
2685
    if dev_path is None:
2686
      logging.error("DevCacheManager.UpdateCache got a None dev_path")
2687
      return
2688
    fpath = cls._ConvertPath(dev_path)
2689
    if on_primary:
2690
      state = "primary"
2691
    else:
2692
      state = "secondary"
2693
    if iv_name is None:
2694
      iv_name = "not_visible"
2695
    fdata = "%s %s %s\n" % (str(owner), state, iv_name)
2696
    try:
2697
      utils.WriteFile(fpath, data=fdata)
2698
    except EnvironmentError, err:
2699
      logging.exception("Can't update bdev cache for %s", dev_path)
2700

    
2701
  @classmethod
2702
  def RemoveCache(cls, dev_path):
2703
    """Remove data for a dev_path.
2704

2705
    This is just a wrapper over L{utils.RemoveFile} with a converted
2706
    path name and logging.
2707

2708
    @type dev_path: str
2709
    @param dev_path: the pathname of the device
2710

2711
    @rtype: None
2712

2713
    """
2714
    if dev_path is None:
2715
      logging.error("DevCacheManager.RemoveCache got a None dev_path")
2716
      return
2717
    fpath = cls._ConvertPath(dev_path)
2718
    try:
2719
      utils.RemoveFile(fpath)
2720
    except EnvironmentError, err:
2721
      logging.exception("Can't update bdev cache for %s", dev_path)