a880483092
Still not all code migrated, added appropriate TODO/FIXME comments.
837 lines
32 KiB
Python
837 lines
32 KiB
Python
#!/usr/bin/python
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# -*- coding: utf-8 -*-
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#
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# The Qubes OS Project, http://www.qubes-os.org
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#
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# Copyright (C) 2011 Marek Marczykowski <marmarek@invisiblethingslab.com>
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# Copyright (C) 2014 Wojciech Porczyk <wojciech@porczyk.eu>
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#
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# This program is free software; you can redistribute it and/or
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# modify it under the terms of the GNU General Public License
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# as published by the Free Software Foundation; either version 2
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# of the License, or (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,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU 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 02110-1301, USA.
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#
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#
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from qubes import QubesVm,QubesException,QubesVmCollection
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from qubes import QubesVmClasses
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from qubes import xs
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from qubes import system_path,vm_files
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import sys
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import os
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import subprocess
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import re
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import time
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import stat
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import xen.lowlevel.xc
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import xen.lowlevel.xs
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BLKSIZE = 512
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def mbytes_to_kmg(size):
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if size > 1024:
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return "%d GiB" % (size/1024)
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else:
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return "%d MiB" % size
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def kbytes_to_kmg(size):
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if size > 1024:
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return mbytes_to_kmg(size/1024)
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else:
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return "%d KiB" % size
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def bytes_to_kmg(size):
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if size > 1024:
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return kbytes_to_kmg(size/1024)
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else:
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return "%d B" % size
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def size_to_human (size):
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"""Humane readable size, with 1/10 precission"""
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if size < 1024:
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return str (size);
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elif size < 1024*1024:
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return str(round(size/1024.0,1)) + ' KiB'
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elif size < 1024*1024*1024:
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return str(round(size/(1024.0*1024),1)) + ' MiB'
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else:
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return str(round(size/(1024.0*1024*1024),1)) + ' GiB'
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def parse_size(size):
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units = [ ('K', 1024), ('KB', 1024),
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('M', 1024*1024), ('MB', 1024*1024),
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('G', 1024*1024*1024), ('GB', 1024*1024*1024),
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]
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size = size.strip().upper()
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if size.isdigit():
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return int(size)
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for unit, multiplier in units:
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if size.endswith(unit):
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size = size[:-len(unit)].strip()
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return int(size)*multiplier
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raise QubesException("Invalid size: {0}.".format(size))
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def get_disk_usage_one(st):
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try:
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return st.st_blocks * BLKSIZE
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except AttributeError:
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return st.st_size
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def get_disk_usage(path):
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try:
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st = os.lstat(path)
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except OSError:
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return 0
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ret = get_disk_usage_one(st)
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# if path is not a directory, this is skipped
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for dirpath, dirnames, filenames in os.walk(path):
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for name in dirnames + filenames:
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ret += get_disk_usage_one(os.lstat(os.path.join(dirpath, name)))
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return ret
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def print_stdout(text):
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print (text)
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def print_stderr(text):
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print >> sys.stderr, (text)
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###### Block devices ########
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def block_devid_to_name(devid):
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major = devid / 256
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minor = devid % 256
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dev_class = ""
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if major == 202:
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dev_class = "xvd"
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elif major == 8:
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dev_class = "sd"
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else:
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raise QubesException("Unknown device class %d" % major)
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if minor % 16 == 0:
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return "%s%c" % (dev_class, ord('a')+minor/16)
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else:
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return "%s%c%d" % (dev_class, ord('a')+minor/16, minor%16)
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def block_name_to_majorminor(name):
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# check if it is already devid
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if isinstance(name, int):
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return (name / 256, name % 256)
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if name.isdigit():
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return (int(name) / 256, int(name) % 256)
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if os.path.exists('/dev/%s' % name):
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blk_info = os.stat(os.path.realpath('/dev/%s' % name))
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if stat.S_ISBLK(blk_info.st_mode):
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return (blk_info.st_rdev / 256, blk_info.st_rdev % 256)
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major = 0
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minor = 0
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dXpY_style = False
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disk = True
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if name.startswith("xvd"):
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major = 202
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elif name.startswith("sd"):
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major = 8
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elif name.startswith("mmcblk"):
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dXpY_style = True
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major = 179
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elif name.startswith("scd"):
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disk = False
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major = 11
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elif name.startswith("sr"):
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disk = False
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major = 11
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elif name.startswith("loop"):
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dXpY_style = True
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disk = False
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major = 7
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elif name.startswith("md"):
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dXpY_style = True
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major = 9
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elif name.startswith("dm-"):
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disk = False
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major = 253
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else:
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# Unknown device
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return (0, 0)
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if not dXpY_style:
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name_match = re.match(r"^([a-z]+)([a-z-])([0-9]*)$", name)
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else:
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name_match = re.match(r"^([a-z]+)([0-9]*)(?:p([0-9]+))?$", name)
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if not name_match:
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raise QubesException("Invalid device name: %s" % name)
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if disk:
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if dXpY_style:
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minor = int(name_match.group(2))*8
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else:
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minor = (ord(name_match.group(2))-ord('a')) * 16
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else:
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minor = 0
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if name_match.group(3):
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minor += int(name_match.group(3))
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return (major, minor)
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def block_name_to_devid(name):
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# check if it is already devid
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if isinstance(name, int):
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return name
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if name.isdigit():
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return int(name)
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(major, minor) = block_name_to_majorminor(name)
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return major << 8 | minor
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def block_find_unused_frontend(vm = None):
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assert vm is not None
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assert vm.is_running()
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vbd_list = xs.ls('', '/local/domain/%d/device/vbd' % vm.xid)
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# xvd* devices
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major = 202
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# prefer xvdi
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for minor in range(8*16,254,16)+range(0,8*16,16):
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if vbd_list is None or str(major << 8 | minor) not in vbd_list:
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return block_devid_to_name(major << 8 | minor)
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return None
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def block_list(vm = None, system_disks = False):
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device_re = re.compile(r"^[a-z0-9-]{1,12}$")
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# FIXME: any better idea of desc_re?
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desc_re = re.compile(r"^.{1,255}$")
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mode_re = re.compile(r"^[rw]$")
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xs_trans = xs.transaction_start()
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vm_list = []
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if vm is not None:
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if not vm.is_running():
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xs.transaction_end(xs_trans)
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return []
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else:
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vm_list = [ str(vm.xid) ]
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else:
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vm_list = xs.ls(xs_trans, '/local/domain')
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devices_list = {}
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for xid in vm_list:
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vm_name = xs.read(xs_trans, '/local/domain/%s/name' % xid)
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vm_devices = xs.ls(xs_trans, '/local/domain/%s/qubes-block-devices' % xid)
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if vm_devices is None:
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continue
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for device in vm_devices:
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# Sanitize device name
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if not device_re.match(device):
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print >> sys.stderr, "Invalid device name in VM '%s'" % vm_name
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continue
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device_size = xs.read(xs_trans, '/local/domain/%s/qubes-block-devices/%s/size' % (xid, device))
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device_desc = xs.read(xs_trans, '/local/domain/%s/qubes-block-devices/%s/desc' % (xid, device))
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device_mode = xs.read(xs_trans, '/local/domain/%s/qubes-block-devices/%s/mode' % (xid, device))
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if device_size is None or device_desc is None or device_mode is None:
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print >> sys.stderr, "Missing field in %s device parameters" % device
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continue
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if not device_size.isdigit():
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print >> sys.stderr, "Invalid %s device size in VM '%s'" % (device, vm_name)
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continue
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if not desc_re.match(device_desc):
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print >> sys.stderr, "Invalid %s device desc in VM '%s'" % (device, vm_name)
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continue
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if not mode_re.match(device_mode):
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print >> sys.stderr, "Invalid %s device mode in VM '%s'" % (device, vm_name)
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continue
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# Check if we know major number for this device; attach will work without this, but detach and check_attached don't
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if block_name_to_majorminor(device) == (0, 0):
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print >> sys.stderr, "Unsupported device %s:%s" % (vm_name, device)
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continue
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if not system_disks:
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if xid == '0' and device_desc.startswith(system_path["qubes_base_dir"]):
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continue
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visible_name = "%s:%s" % (vm_name, device)
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devices_list[visible_name] = {"name": visible_name, "xid":int(xid),
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"vm": vm_name, "device":device, "size":int(device_size),
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"desc":device_desc, "mode":device_mode}
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xs.transaction_end(xs_trans)
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return devices_list
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def block_check_attached(backend_vm, device, backend_xid = None):
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if backend_xid is None:
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backend_xid = backend_vm.xid
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xs_trans = xs.transaction_start()
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vm_list = xs.ls(xs_trans, '/local/domain/%d/backend/vbd' % backend_xid)
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if vm_list is None:
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xs.transaction_end(xs_trans)
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return None
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device_majorminor = None
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try:
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device_majorminor = block_name_to_majorminor(device)
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except:
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# Unknown devices will be compared directly - perhaps it is a filename?
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pass
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for vm_xid in vm_list:
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for devid in xs.ls(xs_trans, '/local/domain/%d/backend/vbd/%s' % (backend_xid, vm_xid)):
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(tmp_major, tmp_minor) = (0, 0)
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phys_device = xs.read(xs_trans, '/local/domain/%d/backend/vbd/%s/%s/physical-device' % (backend_xid, vm_xid, devid))
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dev_params = xs.read(xs_trans, '/local/domain/%d/backend/vbd/%s/%s/params' % (backend_xid, vm_xid, devid))
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if phys_device and phys_device.find(':'):
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(tmp_major, tmp_minor) = phys_device.split(":")
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tmp_major = int(tmp_major, 16)
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tmp_minor = int(tmp_minor, 16)
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else:
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# perhaps not ready yet - check params
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if not dev_params:
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# Skip not-phy devices
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continue
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elif not dev_params.startswith('/dev/'):
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# will compare params directly
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pass
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else:
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(tmp_major, tmp_minor) = block_name_to_majorminor(dev_params.lstrip('/dev/'))
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if (device_majorminor and (tmp_major, tmp_minor) == device_majorminor) or \
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(device_majorminor is None and dev_params == device):
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#TODO
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vm_name = xl_ctx.domid_to_name(int(vm_xid))
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frontend = block_devid_to_name(int(devid))
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xs.transaction_end(xs_trans)
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return {"xid":int(vm_xid), "frontend": frontend, "devid": int(devid), "vm": vm_name}
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xs.transaction_end(xs_trans)
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return None
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def block_attach(vm, backend_vm, device, frontend=None, mode="w", auto_detach=False, wait=True):
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device_attach_check(vm, backend_vm, device, frontend)
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do_block_attach(vm, backend_vm, device, frontend, mode, auto_detach, wait)
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def device_attach_check(vm, backend_vm, device, frontend):
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""" Checks all the parameters, dies on errors """
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if not vm.is_running():
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raise QubesException("VM %s not running" % vm.name)
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if not backend_vm.is_running():
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raise QubesException("VM %s not running" % backend_vm.name)
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def do_block_attach(vm, backend_vm, device, frontend, mode, auto_detach, wait):
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if frontend is None:
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frontend = block_find_unused_frontend(vm)
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if frontend is None:
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raise QubesException("No unused frontend found")
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else:
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# Check if any device attached at this frontend
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if xs.read('', '/local/domain/%d/device/vbd/%d/state' % (vm.xid, block_name_to_devid(frontend))) == '4':
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raise QubesException("Frontend %s busy in VM %s, detach it first" % (frontend, vm.name))
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# Check if this device is attached to some domain
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attached_vm = block_check_attached(backend_vm, device)
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if attached_vm:
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if auto_detach:
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block_detach(None, attached_vm['devid'], vm_xid=attached_vm['xid'])
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else:
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raise QubesException("Device %s from %s already connected to VM %s as %s" % (device, backend_vm.name, attached_vm['vm'], attached_vm['frontend']))
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if device.startswith('/'):
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backend_dev = 'script:file:' + device
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else:
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backend_dev = 'phy:/dev/' + device
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xl_cmd = [ '/usr/sbin/xl', 'block-attach', vm.name, backend_dev, frontend, mode, str(backend_vm.xid) ]
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subprocess.check_call(xl_cmd)
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if wait:
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be_path = '/local/domain/%d/backend/vbd/%d/%d' % (backend_vm.xid, vm.xid, block_name_to_devid(frontend))
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# There is no way to use xenstore watch with a timeout, so must check in a loop
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interval = 0.100
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# 5sec timeout
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timeout = 5/interval
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while timeout > 0:
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be_state = xs.read('', be_path + '/state')
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hotplug_state = xs.read('', be_path + '/hotplug-status')
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if be_state is None:
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raise QubesException("Backend device disappeared, something weird happened")
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elif int(be_state) == 4:
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# Ok
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return
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elif int(be_state) > 4:
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# Error
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error = xs.read('', '/local/domain/%d/error/backend/vbd/%d/%d/error' % (backend_vm.xid, vm.xid, block_name_to_devid(frontend)))
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if error is not None:
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raise QubesException("Error while connecting block device: " + error)
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else:
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raise QubesException("Unknown error while connecting block device")
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elif hotplug_state == 'error':
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hotplug_error = xs.read('', be_path + '/hotplug-error')
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if hotplug_error:
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raise QubesException("Error while connecting block device: " + hotplug_error)
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else:
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raise QubesException("Unknown hotplug error while connecting block device")
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time.sleep(interval)
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timeout -= interval
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raise QubesException("Timeout while waiting for block defice connection")
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def block_detach(vm, frontend = "xvdi", vm_xid = None):
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# Get XID if not provided already
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if vm_xid is None:
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if not vm.is_running():
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raise QubesException("VM %s not running" % vm.name)
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# FIXME: potential race
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vm_xid = vm.xid
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# Check if this device is really connected
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if not xs.read('', '/local/domain/%d/device/vbd/%d/state' % (vm_xid, block_name_to_devid(frontend))) == '4':
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# Do nothing - device already detached
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return
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xl_cmd = [ '/usr/sbin/xl', 'block-detach', str(vm_xid), str(frontend)]
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subprocess.check_call(xl_cmd)
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def block_detach_all(vm, vm_xid = None):
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""" Detach all non-system devices"""
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# Get XID if not provided already
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if vm_xid is None:
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if not vm.is_running():
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raise QubesException("VM %s not running" % vm.name)
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# FIXME: potential race
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vm_xid = vm.xid
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xs_trans = xs.transaction_start()
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devices = xs.ls(xs_trans, '/local/domain/%d/device/vbd' % vm_xid)
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if devices is None:
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return
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devices_to_detach = []
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for devid in devices:
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# check if this is system disk
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be_path = xs.read(xs_trans, '/local/domain/%d/device/vbd/%s/backend' % (vm_xid, devid))
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assert be_path is not None
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be_params = xs.read(xs_trans, be_path + '/params')
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if be_path.startswith('/local/domain/0/') and be_params is not None and be_params.startswith(system_path["qubes_base_dir"]):
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# system disk
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continue
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devices_to_detach.append(devid)
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xs.transaction_end(xs_trans)
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for devid in devices_to_detach:
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xl_cmd = [ '/usr/sbin/xl', 'block-detach', str(vm_xid), devid]
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subprocess.check_call(xl_cmd)
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####### USB devices ######
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usb_ver_re = re.compile(r"^(1|2)$")
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usb_device_re = re.compile(r"^[0-9]+-[0-9]+(_[0-9]+)?$")
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usb_port_re = re.compile(r"^$|^[0-9]+-[0-9]+(\.[0-9]+)?$")
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def usb_setup(backend_vm_xid, vm_xid, devid, usb_ver):
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"""
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Attach frontend to the backend.
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backend_vm_xid - id of the backend domain
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vm_xid - id of the frontend domain
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devid - id of the pvusb controller
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"""
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num_ports = 8
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trans = xs.transaction_start()
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be_path = "/local/domain/%d/backend/vusb/%d/%d" % (backend_vm_xid, vm_xid, devid)
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fe_path = "/local/domain/%d/device/vusb/%d" % (vm_xid, devid)
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be_perm = [{'dom': backend_vm_xid}, {'dom': vm_xid, 'read': True} ]
|
|
fe_perm = [{'dom': vm_xid}, {'dom': backend_vm_xid, 'read': True} ]
|
|
|
|
# Create directories and set permissions
|
|
xs.write(trans, be_path, "")
|
|
xs.set_permissions(trans, be_path, be_perm)
|
|
|
|
xs.write(trans, fe_path, "")
|
|
xs.set_permissions(trans, fe_path, fe_perm)
|
|
|
|
# Write backend information into the location that frontend looks for
|
|
xs.write(trans, "%s/backend-id" % fe_path, str(backend_vm_xid))
|
|
xs.write(trans, "%s/backend" % fe_path, be_path)
|
|
|
|
# Write frontend information into the location that backend looks for
|
|
xs.write(trans, "%s/frontend-id" % be_path, str(vm_xid))
|
|
xs.write(trans, "%s/frontend" % be_path, fe_path)
|
|
|
|
# Write USB Spec version field.
|
|
xs.write(trans, "%s/usb-ver" % be_path, usb_ver)
|
|
|
|
# Write virtual root hub field.
|
|
xs.write(trans, "%s/num-ports" % be_path, str(num_ports))
|
|
for port in range(1, num_ports+1):
|
|
# Set all port to disconnected state
|
|
xs.write(trans, "%s/port/%d" % (be_path, port), "")
|
|
|
|
# Set state to XenbusStateInitialising
|
|
xs.write(trans, "%s/state" % fe_path, "1")
|
|
xs.write(trans, "%s/state" % be_path, "1")
|
|
xs.write(trans, "%s/online" % be_path, "1")
|
|
|
|
xs.transaction_end(trans)
|
|
|
|
def usb_decode_device_from_xs(xs_encoded_device):
|
|
""" recover actual device name (xenstore doesn't allow dot in key names, so it was translated to underscore) """
|
|
return xs_encoded_device.replace('_', '.')
|
|
|
|
def usb_encode_device_for_xs(device):
|
|
""" encode actual device name (xenstore doesn't allow dot in key names, so translated it into underscore) """
|
|
return device.replace('.', '_')
|
|
|
|
def usb_list():
|
|
"""
|
|
Returns a dictionary of USB devices (for PVUSB backends running in all VM).
|
|
The dictionary is keyed by 'name' (see below), each element is a dictionary itself:
|
|
vm = name of the backend domain
|
|
xid = xid of the backend domain
|
|
device = <frontend device number>-<frontend port number>
|
|
name = <name of backend domain>:<frontend device number>-<frontend port number>
|
|
desc = description
|
|
"""
|
|
# FIXME: any better idea of desc_re?
|
|
desc_re = re.compile(r"^.{1,255}$")
|
|
|
|
devices_list = {}
|
|
|
|
xs_trans = xs.transaction_start()
|
|
vm_list = xs.ls(xs_trans, '/local/domain')
|
|
|
|
for xid in vm_list:
|
|
vm_name = xs.read(xs_trans, '/local/domain/%s/name' % xid)
|
|
vm_devices = xs.ls(xs_trans, '/local/domain/%s/qubes-usb-devices' % xid)
|
|
if vm_devices is None:
|
|
continue
|
|
# when listing devices in xenstore we get encoded names
|
|
for xs_encoded_device in vm_devices:
|
|
# Sanitize device id
|
|
if not usb_device_re.match(xs_encoded_device):
|
|
print >> sys.stderr, "Invalid device id in backend VM '%s'" % vm_name
|
|
continue
|
|
device = usb_decode_device_from_xs(xs_encoded_device)
|
|
device_desc = xs.read(xs_trans, '/local/domain/%s/qubes-usb-devices/%s/desc' % (xid, xs_encoded_device))
|
|
if not desc_re.match(device_desc):
|
|
print >> sys.stderr, "Invalid %s device desc in VM '%s'" % (device, vm_name)
|
|
continue
|
|
visible_name = "%s:%s" % (vm_name, device)
|
|
# grab version
|
|
usb_ver = xs.read(xs_trans, '/local/domain/%s/qubes-usb-devices/%s/usb-ver' % (xid, xs_encoded_device))
|
|
if usb_ver is None or not usb_ver_re.match(usb_ver):
|
|
print >> sys.stderr, "Invalid %s device USB version in VM '%s'" % (device, vm_name)
|
|
continue
|
|
devices_list[visible_name] = {"name": visible_name, "xid":int(xid),
|
|
"vm": vm_name, "device":device,
|
|
"desc":device_desc,
|
|
"usb_ver":usb_ver}
|
|
|
|
xs.transaction_end(xs_trans)
|
|
return devices_list
|
|
|
|
def usb_check_attached(xs_trans, backend_vm, device):
|
|
"""
|
|
Checks if the given device in the given backend attached to any frontend.
|
|
Parameters:
|
|
backend_vm - xid of the backend domain
|
|
device - device name in the backend domain
|
|
Returns None or a dictionary:
|
|
vm - the name of the frontend domain
|
|
xid - xid of the frontend domain
|
|
frontend - frontend device number FIXME
|
|
devid - frontend port number FIXME
|
|
"""
|
|
# sample xs content: /local/domain/0/backend/vusb/4/0/port/1 = "7-5"
|
|
attached_dev = None
|
|
vms = xs.ls(xs_trans, '/local/domain/%d/backend/vusb' % backend_vm)
|
|
if vms is None:
|
|
return None
|
|
for vm in vms:
|
|
if not vm.isdigit():
|
|
print >> sys.stderr, "Invalid VM id"
|
|
continue
|
|
frontend_devs = xs.ls(xs_trans, '/local/domain/%d/backend/vusb/%s' % (backend_vm, vm))
|
|
if frontend_devs is None:
|
|
continue
|
|
for frontend_dev in frontend_devs:
|
|
if not frontend_dev.isdigit():
|
|
print >> sys.stderr, "Invalid frontend in VM %s" % vm
|
|
continue
|
|
ports = xs.ls(xs_trans, '/local/domain/%d/backend/vusb/%s/%s/port' % (backend_vm, vm, frontend_dev))
|
|
if ports is None:
|
|
continue
|
|
for port in ports:
|
|
# FIXME: refactor, see similar loop in usb_find_unused_frontend(), use usb_list() instead?
|
|
if not port.isdigit():
|
|
print >> sys.stderr, "Invalid port in VM %s frontend %s" % (vm, frontend)
|
|
continue
|
|
dev = xs.read(xs_trans, '/local/domain/%d/backend/vusb/%s/%s/port/%s' % (backend_vm, vm, frontend_dev, port))
|
|
if dev == "":
|
|
continue
|
|
# Sanitize device id
|
|
if not usb_port_re.match(dev):
|
|
print >> sys.stderr, "Invalid device id in backend VM %d @ %s/%s/port/%s" % \
|
|
(backend_vm, vm, frontend_dev, port)
|
|
continue
|
|
if dev == device:
|
|
frontend = "%s-%s" % (frontend_dev, port)
|
|
#TODO
|
|
vm_name = xl_ctx.domid_to_name(int(vm))
|
|
if vm_name is None:
|
|
# FIXME: should we wipe references to frontends running on nonexistent VMs?
|
|
continue
|
|
attached_dev = {"xid":int(vm), "frontend": frontend, "devid": device, "vm": vm_name}
|
|
break
|
|
return attached_dev
|
|
|
|
#def usb_check_frontend_busy(vm, front_dev, port):
|
|
# devport = frontend.split("-")
|
|
# if len(devport) != 2:
|
|
# raise QubesException("Malformed frontend syntax, must be in device-port format")
|
|
# # FIXME:
|
|
# # return xs.read('', '/local/domain/%d/device/vusb/%d/state' % (vm.xid, frontend)) == '4'
|
|
# return False
|
|
|
|
def usb_find_unused_frontend(xs_trans, backend_vm_xid, vm_xid, usb_ver):
|
|
"""
|
|
Find an unused frontend/port to link the given backend with the given frontend.
|
|
Creates new frontend if needed.
|
|
Returns frontend specification in <device>-<port> format.
|
|
"""
|
|
|
|
# This variable holds an index of last frontend scanned by the loop below.
|
|
# If nothing found, this value will be used to derive the index of a new frontend.
|
|
last_frontend_dev = -1
|
|
|
|
frontend_devs = xs.ls(xs_trans, "/local/domain/%d/device/vusb" % vm_xid)
|
|
if frontend_devs is not None:
|
|
for frontend_dev in frontend_devs:
|
|
if not frontend_dev.isdigit():
|
|
print >> sys.stderr, "Invalid frontend_dev in VM %d" % vm_xid
|
|
continue
|
|
frontend_dev = int(frontend_dev)
|
|
fe_path = "/local/domain/%d/device/vusb/%d" % (vm_xid, frontend_dev)
|
|
if xs.read(xs_trans, "%s/backend-id" % fe_path) == str(backend_vm_xid):
|
|
if xs.read(xs_trans, '/local/domain/%d/backend/vusb/%d/%d/usb-ver' % (backend_vm_xid, vm_xid, frontend_dev)) != usb_ver:
|
|
last_frontend_dev = frontend_dev
|
|
continue
|
|
# here: found an existing frontend already connected to right backend using an appropriate USB version
|
|
ports = xs.ls(xs_trans, '/local/domain/%d/backend/vusb/%d/%d/port' % (backend_vm_xid, vm_xid, frontend_dev))
|
|
if ports is None:
|
|
print >> sys.stderr, "No ports in VM %d frontend_dev %d?" % (vm_xid, frontend_dev)
|
|
last_frontend_dev = frontend_dev
|
|
continue
|
|
for port in ports:
|
|
# FIXME: refactor, see similar loop in usb_check_attached(), use usb_list() instead?
|
|
if not port.isdigit():
|
|
print >> sys.stderr, "Invalid port in VM %d frontend_dev %d" % (vm_xid, frontend_dev)
|
|
continue
|
|
port = int(port)
|
|
dev = xs.read(xs_trans, '/local/domain/%d/backend/vusb/%d/%s/port/%s' % (backend_vm_xid, vm_xid, frontend_dev, port))
|
|
# Sanitize device id
|
|
if not usb_port_re.match(dev):
|
|
print >> sys.stderr, "Invalid device id in backend VM %d @ %d/%d/port/%d" % \
|
|
(backend_vm_xid, vm_xid, frontend_dev, port)
|
|
continue
|
|
if dev == "":
|
|
return '%d-%d' % (frontend_dev, port)
|
|
last_frontend_dev = frontend_dev
|
|
|
|
# create a new frontend_dev and link it to the backend
|
|
frontend_dev = last_frontend_dev + 1
|
|
usb_setup(backend_vm_xid, vm_xid, frontend_dev, usb_ver)
|
|
return '%d-%d' % (frontend_dev, 1)
|
|
|
|
def usb_attach(vm, backend_vm, device, frontend=None, auto_detach=False, wait=True):
|
|
device_attach_check(vm, backend_vm, device, frontend)
|
|
|
|
xs_trans = xs.transaction_start()
|
|
|
|
xs_encoded_device = usb_encode_device_for_xs(device)
|
|
usb_ver = xs.read(xs_trans, '/local/domain/%s/qubes-usb-devices/%s/usb-ver' % (backend_vm.xid, xs_encoded_device))
|
|
if usb_ver is None or not usb_ver_re.match(usb_ver):
|
|
xs.transaction_end(xs_trans)
|
|
raise QubesException("Invalid %s device USB version in VM '%s'" % (device, backend_vm.name))
|
|
|
|
if frontend is None:
|
|
frontend = usb_find_unused_frontend(xs_trans, backend_vm.xid, vm.xid, usb_ver)
|
|
else:
|
|
# Check if any device attached at this frontend
|
|
#if usb_check_frontend_busy(vm, frontend):
|
|
# raise QubesException("Frontend %s busy in VM %s, detach it first" % (frontend, vm.name))
|
|
xs.transaction_end(xs_trans)
|
|
raise NotImplementedError("Explicit USB frontend specification is not implemented yet")
|
|
|
|
# Check if this device is attached to some domain
|
|
attached_vm = usb_check_attached(xs_trans, backend_vm.xid, device)
|
|
xs.transaction_end(xs_trans)
|
|
|
|
if attached_vm:
|
|
if auto_detach:
|
|
usb_detach(backend_vm, attached_vm)
|
|
else:
|
|
raise QubesException("Device %s from %s already connected to VM %s as %s" % (device, backend_vm.name, attached_vm['vm'], attached_vm['frontend']))
|
|
|
|
# Run helper script
|
|
xl_cmd = [ '/usr/lib/qubes/xl-qvm-usb-attach.py', str(vm.xid), device, frontend, str(backend_vm.xid) ]
|
|
subprocess.check_call(xl_cmd)
|
|
|
|
def usb_detach(backend_vm, attachment):
|
|
xl_cmd = [ '/usr/lib/qubes/xl-qvm-usb-detach.py', str(attachment['xid']), attachment['devid'], attachment['frontend'], str(backend_vm.xid) ]
|
|
subprocess.check_call(xl_cmd)
|
|
|
|
def usb_detach_all(vm):
|
|
raise NotImplementedError("Detaching all devices from a given VM is not implemented yet")
|
|
|
|
####### QubesWatch ######
|
|
|
|
def only_in_first_list(l1, l2):
|
|
ret=[]
|
|
for i in l1:
|
|
if not i in l2:
|
|
ret.append(i)
|
|
return ret
|
|
|
|
class QubesWatch(object):
|
|
class WatchType(object):
|
|
def __init__(self, fn, param):
|
|
self.fn = fn
|
|
self.param = param
|
|
|
|
def __init__(self):
|
|
self.xs = xen.lowlevel.xs.xs()
|
|
self.watch_tokens_block = {}
|
|
self.watch_tokens_vbd = {}
|
|
self.watch_tokens_meminfo = {}
|
|
self.block_callback = None
|
|
self.meminfo_callback = None
|
|
self.domain_callback = None
|
|
self.xs.watch('@introduceDomain', QubesWatch.WatchType(self.domain_list_changed, None))
|
|
self.xs.watch('@releaseDomain', QubesWatch.WatchType(self.domain_list_changed, None))
|
|
|
|
def setup_block_watch(self, callback):
|
|
old_block_callback = self.block_callback
|
|
self.block_callback = callback
|
|
if old_block_callback is not None and callback is None:
|
|
# remove watches
|
|
self.update_watches_block([])
|
|
else:
|
|
# possibly add watches
|
|
self.domain_list_changed(None)
|
|
|
|
def setup_meminfo_watch(self, callback):
|
|
old_meminfo_callback = self.meminfo_callback
|
|
self.meminfo_callback = callback
|
|
if old_meminfo_callback is not None and callback is None:
|
|
# remove watches
|
|
self.update_watches_meminfo([])
|
|
else:
|
|
# possibly add watches
|
|
self.domain_list_changed(None)
|
|
|
|
def setup_domain_watch(self, callback):
|
|
self.domain_callback = callback
|
|
|
|
def get_block_key(self, xid):
|
|
return '/local/domain/%s/qubes-block-devices' % xid
|
|
|
|
def get_vbd_key(self, xid):
|
|
return '/local/domain/%s/device/vbd' % xid
|
|
|
|
def get_meminfo_key(self, xid):
|
|
return '/local/domain/%s/memory/meminfo' % xid
|
|
|
|
def update_watches(self, xid_list, watch_tokens, xs_key_func, callback):
|
|
for i in only_in_first_list(xid_list, watch_tokens.keys()):
|
|
#new domain has been created
|
|
watch = QubesWatch.WatchType(callback, i)
|
|
watch_tokens[i] = watch
|
|
self.xs.watch(xs_key_func(i), watch)
|
|
for i in only_in_first_list(watch_tokens.keys(), xid_list):
|
|
#domain destroyed
|
|
self.xs.unwatch(xs_key_func(i), watch_tokens[i])
|
|
watch_tokens.pop(i)
|
|
|
|
def update_watches_block(self, xid_list):
|
|
self.update_watches(xid_list, self.watch_tokens_block,
|
|
self.get_block_key, self.block_callback)
|
|
self.update_watches(xid_list, self.watch_tokens_vbd,
|
|
self.get_vbd_key, self.block_callback)
|
|
|
|
def update_watches_meminfo(self, xid_list):
|
|
self.update_watches(xid_list, self.watch_tokens_meminfo,
|
|
self.get_meminfo_key, self.meminfo_callback)
|
|
|
|
def domain_list_changed(self, param):
|
|
curr = self.xs.ls('', '/local/domain')
|
|
if curr == None:
|
|
return
|
|
if self.domain_callback:
|
|
self.domain_callback()
|
|
if self.block_callback:
|
|
self.update_watches_block(curr)
|
|
if self.meminfo_callback:
|
|
self.update_watches_meminfo(curr)
|
|
|
|
def watch_single(self):
|
|
result = self.xs.read_watch()
|
|
token = result[1]
|
|
token.fn(token.param)
|
|
|
|
def watch_loop(self):
|
|
while True:
|
|
self.watch_single()
|
|
|
|
##### updates check #####
|
|
|
|
UPDATES_DOM0_DISABLE_FLAG='/var/lib/qubes/updates/disable-updates'
|
|
|
|
def updates_vms_toggle(qvm_collection, value):
|
|
for vm in qvm_collection.values():
|
|
if vm.qid == 0:
|
|
continue
|
|
if value:
|
|
vm.services.pop('qubes-update-check', None)
|
|
if vm.is_running():
|
|
try:
|
|
vm.run("systemctl start qubes-update-check.timer",
|
|
user="root")
|
|
except:
|
|
pass
|
|
else:
|
|
vm.services['qubes-update-check'] = False
|
|
if vm.is_running():
|
|
try:
|
|
vm.run("systemctl stop qubes-update-check.timer",
|
|
user="root")
|
|
except:
|
|
pass
|
|
def updates_dom0_toggle(qvm_collection, value):
|
|
if value:
|
|
if os.path.exists(UPDATES_DOM0_DISABLE_FLAG):
|
|
os.unlink(UPDATES_DOM0_DISABLE_FLAG)
|
|
else:
|
|
open(UPDATES_DOM0_DISABLE_FLAG, "w").close()
|
|
|
|
def updates_dom0_status(qvm_collection):
|
|
return not os.path.exists(UPDATES_DOM0_DISABLE_FLAG)
|
|
|
|
|
|
# vim:sw=4:et:
|