root / lib / hypervisor / hv_kvm.py @ c41eea6e
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# Copyright (C) 2008 Google Inc.
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful, but
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# WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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# 02110-1301, USA.
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"""KVM hypervisor
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"""
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import os |
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import os.path |
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import re |
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import tempfile |
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from cStringIO import StringIO |
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from ganeti import utils |
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from ganeti import constants |
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from ganeti import errors |
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from ganeti.hypervisor import hv_base |
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class KVMHypervisor(hv_base.BaseHypervisor): |
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"""Fake hypervisor interface.
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This can be used for testing the ganeti code without having to have
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a real virtualisation software installed.
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"""
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_ROOT_DIR = constants.RUN_GANETI_DIR + "/kvm-hypervisor"
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_PIDS_DIR = _ROOT_DIR + "/pid"
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_CTRL_DIR = _ROOT_DIR + "/ctrl"
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_DIRS = [_ROOT_DIR, _PIDS_DIR, _CTRL_DIR] |
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PARAMETERS = [ |
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constants.HV_KERNEL_PATH, |
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constants.HV_INITRD_PATH, |
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constants.HV_ACPI, |
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] |
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def __init__(self): |
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hv_base.BaseHypervisor.__init__(self)
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# Let's make sure the directories we need exist, even if the RUN_DIR lives
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# in a tmpfs filesystem or has been otherwise wiped out.
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for dir in self._DIRS: |
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if not os.path.exists(dir): |
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os.mkdir(dir)
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def _WriteNetScript(self, instance, seq, nic): |
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"""Write a script to connect a net interface to the proper bridge.
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This can be used by any qemu-type hypervisor.
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@param instance: instance we're acting on
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@type instance: instance object
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@param seq: nic sequence number
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@type seq: int
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@param nic: nic we're acting on
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@type nic: nic object
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@return: netscript file name
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@rtype: string
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"""
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script = StringIO() |
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script.write("#!/bin/sh\n")
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script.write("# this is autogenerated by Ganeti, please do not edit\n#\n")
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script.write("export INSTANCE=%s\n" % instance.name)
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script.write("export MAC=%s\n" % nic.mac)
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script.write("export IP=%s\n" % nic.ip)
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script.write("export BRIDGE=%s\n" % nic.bridge)
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script.write("export INTERFACE=$1\n")
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# TODO: make this configurable at ./configure time
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script.write("if [ -x /etc/ganeti/kvm-vif-bridge ]; then\n")
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script.write(" # Execute the user-specific vif file\n")
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script.write(" /etc/ganeti/kvm-vif-bridge\n")
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script.write("else\n")
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script.write(" # Connect the interface to the bridge\n")
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script.write(" /sbin/ifconfig $INTERFACE 0.0.0.0 up\n")
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script.write(" /usr/sbin/brctl addif $BRIDGE $INTERFACE\n")
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script.write("fi\n\n")
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# As much as we'd like to put this in our _ROOT_DIR, that will happen to be
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# mounted noexec sometimes, so we'll have to find another place.
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(tmpfd, tmpfile_name) = tempfile.mkstemp() |
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tmpfile = os.fdopen(tmpfd, 'w')
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tmpfile.write(script.getvalue()) |
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tmpfile.close() |
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os.chmod(tmpfile_name, 0755)
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return tmpfile_name
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def ListInstances(self): |
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"""Get the list of running instances.
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We can do this by listing our live instances directory and
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checking whether the associated kvm process is still alive.
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"""
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result = [] |
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for name in os.listdir(self._PIDS_DIR): |
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file = "%s/%s" % (self._PIDS_DIR, name) |
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if utils.IsProcessAlive(utils.ReadPidFile(file)): |
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result.append(name) |
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return result
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def GetInstanceInfo(self, instance_name): |
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"""Get instance properties.
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@param instance_name: the instance name
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@return: tuple (name, id, memory, vcpus, stat, times)
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"""
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pidfile = "%s/%s" % (self._PIDS_DIR, instance_name) |
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pid = utils.ReadPidFile(pidfile) |
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if not utils.IsProcessAlive(pid): |
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return None |
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cmdline_file = "/proc/%s/cmdline" % pid
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try:
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fh = open(cmdline_file, 'r') |
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try:
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cmdline = fh.read() |
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finally:
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fh.close() |
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except IOError, err: |
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raise errors.HypervisorError("Failed to list instance %s: %s" % |
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(instance_name, err)) |
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memory = 0
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vcpus = 0
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stat = "---b-"
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times = "0"
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arg_list = cmdline.split('\x00')
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while arg_list:
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arg = arg_list.pop(0)
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if arg == '-m': |
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memory = arg_list.pop(0)
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elif arg == '-smp': |
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vcpus = arg_list.pop(0)
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return (instance_name, pid, memory, vcpus, stat, times)
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def GetAllInstancesInfo(self): |
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"""Get properties of all instances.
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@return: list of tuples (name, id, memory, vcpus, stat, times)
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"""
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data = [] |
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for name in os.listdir(self._PIDS_DIR): |
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file = "%s/%s" % (self._PIDS_DIR, name) |
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if utils.IsProcessAlive(utils.ReadPidFile(file)): |
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data.append(self.GetInstanceInfo(name))
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return data
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def StartInstance(self, instance, block_devices, extra_args): |
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"""Start an instance.
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"""
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temp_files = [] |
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pidfile = self._PIDS_DIR + "/%s" % instance.name |
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if utils.IsProcessAlive(utils.ReadPidFile(pidfile)):
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raise errors.HypervisorError("Failed to start instance %s: %s" % |
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(instance.name, "already running"))
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kvm = constants.KVM_PATH |
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kvm_cmd = [kvm] |
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kvm_cmd.extend(['-m', instance.beparams[constants.BE_MEMORY]])
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kvm_cmd.extend(['-smp', instance.beparams[constants.BE_VCPUS]])
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kvm_cmd.extend(['-pidfile', pidfile])
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# used just by the vnc server, if enabled
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kvm_cmd.extend(['-name', instance.name])
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kvm_cmd.extend(['-daemonize'])
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if not instance.hvparams[constants.HV_ACPI]: |
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kvm_cmd.extend(['-no-acpi'])
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if not instance.nics: |
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kvm_cmd.extend(['-net', 'none']) |
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else:
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nic_seq = 0
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for nic in instance.nics: |
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script = self._WriteNetScript(instance, nic_seq, nic)
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# FIXME: handle other models
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nic_val = "nic,macaddr=%s,model=virtio" % nic.mac
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kvm_cmd.extend(['-net', nic_val])
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kvm_cmd.extend(['-net', 'tap,script=%s' % script]) |
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temp_files.append(script) |
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nic_seq += 1
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boot_drive = True
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for cfdev, rldev in block_devices: |
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# TODO: handle FD_LOOP and FD_BLKTAP (?)
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if boot_drive:
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boot_val = ',boot=on'
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boot_drive = False
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else:
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boot_val = ''
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# TODO: handle different if= types
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if_val = ',if=virtio'
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drive_val = 'file=%s,format=raw%s%s' % (rldev.dev_path, if_val, boot_val)
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kvm_cmd.extend(['-drive', drive_val])
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kvm_cmd.extend(['-kernel', instance.hvparams[constants.HV_KERNEL_PATH]])
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initrd_path = instance.hvparams[constants.HV_INITRD_PATH] |
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if initrd_path:
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kvm_cmd.extend(['-initrd', initrd_path])
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kvm_cmd.extend(['-append', 'console=ttyS0,38400 root=/dev/vda']) |
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#"hvm_boot_order",
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#"hvm_cdrom_image_path",
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kvm_cmd.extend(['-nographic'])
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# FIXME: handle vnc, if needed
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# How do we decide whether to have it or not?? :(
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#"vnc_bind_address",
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#"network_port"
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base_control = '%s/%s' % (self._CTRL_DIR, instance.name) |
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monitor_dev = 'unix:%s.monitor,server,nowait' % base_control
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kvm_cmd.extend(['-monitor', monitor_dev])
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serial_dev = 'unix:%s.serial,server,nowait' % base_control
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kvm_cmd.extend(['-serial', serial_dev])
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result = utils.RunCmd(kvm_cmd) |
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if result.failed:
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raise errors.HypervisorError("Failed to start instance %s: %s (%s)" % |
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(instance.name, result.fail_reason, |
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result.output)) |
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if not utils.IsProcessAlive(utils.ReadPidFile(pidfile)): |
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raise errors.HypervisorError("Failed to start instance %s: %s" % |
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(instance.name)) |
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for file in temp_files: |
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utils.RemoveFile(file)
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def StopInstance(self, instance, force=False): |
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"""Stop an instance.
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"""
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pid_file = self._PIDS_DIR + "/%s" % instance.name |
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pid = utils.ReadPidFile(pid_file) |
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if pid > 0 and utils.IsProcessAlive(pid): |
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if force or not instance.hvparams[constants.HV_ACPI]: |
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utils.KillProcess(pid) |
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else:
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# This only works if the instance os has acpi support
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monitor_socket = '%s/%s.monitor' % (self._CTRL_DIR, instance.name) |
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socat = 'socat -u STDIN UNIX-CONNECT:%s' % monitor_socket
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command = "echo 'system_powerdown' | %s" % socat
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result = utils.RunCmd(command) |
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if result.failed:
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raise errors.HypervisorError("Failed to stop instance %s: %s" % |
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(instance.name, result.fail_reason)) |
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if not utils.IsProcessAlive(pid): |
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utils.RemoveFile(pid_file) |
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def RebootInstance(self, instance): |
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"""Reboot an instance.
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"""
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# For some reason if we do a 'send-key ctrl-alt-delete' to the control
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# socket the instance will stop, but now power up again. So we'll resort
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# to shutdown and restart.
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self.StopInstance(instance)
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self.StartInstance(instance)
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def GetNodeInfo(self): |
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"""Return information about the node.
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@return: a dict with the following keys (values in MiB):
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- memory_total: the total memory size on the node
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- memory_free: the available memory on the node for instances
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- memory_dom0: the memory used by the node itself, if available
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"""
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# global ram usage from the xm info command
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# memory : 3583
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# free_memory : 747
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# note: in xen 3, memory has changed to total_memory
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try:
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fh = file("/proc/meminfo") |
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try:
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data = fh.readlines() |
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finally:
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fh.close() |
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except IOError, err: |
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raise errors.HypervisorError("Failed to list node info: %s" % err) |
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result = {} |
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sum_free = 0
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for line in data: |
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splitfields = line.split(":", 1) |
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if len(splitfields) > 1: |
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key = splitfields[0].strip()
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val = splitfields[1].strip()
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if key == 'MemTotal': |
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result['memory_total'] = int(val.split()[0])/1024 |
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elif key in ('MemFree', 'Buffers', 'Cached'): |
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sum_free += int(val.split()[0])/1024 |
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elif key == 'Active': |
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result['memory_dom0'] = int(val.split()[0])/1024 |
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result['memory_free'] = sum_free
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cpu_total = 0
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try:
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fh = open("/proc/cpuinfo") |
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try:
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cpu_total = len(re.findall("(?m)^processor\s*:\s*[0-9]+\s*$", |
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fh.read())) |
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finally:
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fh.close() |
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except EnvironmentError, err: |
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raise errors.HypervisorError("Failed to list node info: %s" % err) |
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result['cpu_total'] = cpu_total
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return result
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@staticmethod
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def GetShellCommandForConsole(instance): |
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"""Return a command for connecting to the console of an instance.
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"""
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# TODO: we can either try the serial socket or suggest vnc
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return "echo Console not available for the kvm hypervisor yet" |
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def Verify(self): |
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"""Verify the hypervisor.
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Check that the binary exists.
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"""
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if not os.path.exists(constants.KVM_PATH): |
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return "The kvm binary ('%s') does not exist." % constants.KVM_PATH |
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@classmethod
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def CheckParameterSyntax(cls, hvparams): |
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"""Check the given parameters for validity.
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For the KVM hypervisor, this only check the existence of the
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kernel.
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@type hvparams: dict
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@param hvparams: dictionary with parameter names/value
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@raise errors.HypervisorError: when a parameter is not valid
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"""
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super(KVMHypervisor, cls).CheckParameterSyntax(hvparams)
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if not hvparams[constants.HV_KERNEL_PATH]: |
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raise errors.HypervisorError("Need a kernel for the instance") |
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if not os.path.isabs(hvparams[constants.HV_KERNEL_PATH]): |
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raise errors.HypervisorError("The kernel path must an absolute path") |
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if hvparams[constants.HV_INITRD_PATH]:
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if not os.path.isabs(hvparams[constants.HV_INITRD_PATH]): |
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raise errors.HypervisorError("The initrd path must an absolute path" |
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", if defined")
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def ValidateParameters(self, hvparams): |
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"""Check the given parameters for validity.
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For the KVM hypervisor, this checks the existence of the
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kernel.
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"""
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super(KVMHypervisor, self).ValidateParameters(hvparams) |
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kernel_path = hvparams[constants.HV_KERNEL_PATH] |
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if not os.path.isfile(kernel_path): |
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raise errors.HypervisorError("Instance kernel '%s' not found or" |
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" not a file" % kernel_path)
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initrd_path = hvparams[constants.HV_INITRD_PATH] |
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if initrd_path and not os.path.isfile(initrd_path): |
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raise errors.HypervisorError("Instance initrd '%s' not found or" |
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" not a file" % initrd_path)
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