__init__.py 17 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379
  1. #!/usr/bin/python2
  2. # -*- coding: utf-8 -*-
  3. # pylint: skip-file
  4. #
  5. # The Qubes OS Project, http://www.qubes-os.org
  6. #
  7. # Copyright (C) 2010 Rafal Wojtczuk <rafal@invisiblethingslab.com>
  8. # Copyright (C) 2013 Marek Marczykowski <marmarek@invisiblethingslab.com>
  9. #
  10. # This program is free software; you can redistribute it and/or
  11. # modify it under the terms of the GNU General Public License
  12. # as published by the Free Software Foundation; either version 2
  13. # of the License, or (at your option) any later version.
  14. #
  15. # This program is distributed in the hope that it will be useful,
  16. # but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. # GNU General Public License for more details.
  19. #
  20. # You should have received a copy of the GNU General Public License
  21. # along with this program; if not, write to the Free Software
  22. # Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
  23. #
  24. #
  25. import logging
  26. import os
  27. import string
  28. import time
  29. import xen.lowlevel.xc
  30. import xen.lowlevel.xs
  31. import qubes
  32. import qubes.qmemman.algo
  33. no_progress_msg="VM refused to give back requested memory"
  34. slow_memset_react_msg="VM didn't give back all requested memory"
  35. class DomainState:
  36. def __init__(self, id):
  37. self.memory_current = 0 # the current memory size
  38. self.memory_actual = None # the current memory allocation (what VM
  39. # is using or can use at any time)
  40. self.memory_maximum = None #the maximum memory size
  41. self.mem_used = None #used memory, computed based on meminfo
  42. self.id = id #domain id
  43. self.last_target = 0 #the last memset target
  44. self.no_progress = False #no react to memset
  45. self.slow_memset_react = False #slow react to memset (after few tries still above target)
  46. def __repr__(self):
  47. return self.__dict__.__repr__()
  48. class SystemState(object):
  49. def __init__(self):
  50. self.log = logging.getLogger('qmemman.systemstate')
  51. self.log.debug('SystemState()')
  52. self.domdict = {}
  53. self.xc = xen.lowlevel.xc.xc()
  54. self.xs = xen.lowlevel.xs.xs()
  55. self.BALOON_DELAY = 0.1
  56. self.XEN_FREE_MEM_LEFT = 50*1024*1024
  57. self.XEN_FREE_MEM_MIN = 25*1024*1024
  58. # Overhead of per-page Xen structures, taken from OpenStack nova/virt/xenapi/driver.py
  59. # see https://wiki.openstack.org/wiki/XenServer/Overhead
  60. # we divide total and free physical memory by this to get "assignable" memory
  61. self.MEM_OVERHEAD_FACTOR = 1.0 / 1.00781
  62. try:
  63. self.ALL_PHYS_MEM = int(self.xc.physinfo()['total_memory']*1024 * self.MEM_OVERHEAD_FACTOR)
  64. except xen.lowlevel.xc.Error:
  65. self.ALL_PHYS_MEM = 0
  66. def add_domain(self, id):
  67. self.log.debug('add_domain(id={!r})'.format(id))
  68. self.domdict[id] = DomainState(id)
  69. # TODO: move to DomainState.__init__
  70. target_str = self.xs.read('', '/local/domain/' + id + '/memory/target')
  71. if target_str:
  72. self.domdict[id].last_target = int(target_str) * 1024
  73. def del_domain(self, id):
  74. self.log.debug('del_domain(id={!r})'.format(id))
  75. self.domdict.pop(id)
  76. def get_free_xen_memory(self):
  77. xen_free = int(self.xc.physinfo()['free_memory']*1024 *
  78. self.MEM_OVERHEAD_FACTOR)
  79. # now check for domains which have assigned more memory than really
  80. # used - do not count it as "free", because domain is free to use it
  81. # at any time
  82. # assumption: self.refresh_memactual was called before
  83. # (so domdict[id].memory_actual is up to date)
  84. assigned_but_unused = reduce(
  85. lambda acc, dom: acc + max(0, dom.last_target-dom.memory_current),
  86. self.domdict.values(),
  87. 0
  88. )
  89. # If, at any time, Xen have less memory than XEN_FREE_MEM_MIN,
  90. # it is a failure of qmemman. Collect as much data as possible to
  91. # debug it
  92. if xen_free < self.XEN_FREE_MEM_MIN:
  93. self.log.error("Xen free = {!r} below acceptable value! "
  94. "assigned_but_unused={!r}, domdict={!r}".format(
  95. xen_free, assigned_but_unused, self.domdict))
  96. elif xen_free < assigned_but_unused+self.XEN_FREE_MEM_MIN:
  97. self.log.error("Xen free = {!r} too small for satisfy assignments! "
  98. "assigned_but_unused={!r}, domdict={!r}".format(
  99. xen_free, assigned_but_unused, self.domdict))
  100. return xen_free - assigned_but_unused
  101. #refresh information on memory assigned to all domains
  102. def refresh_memactual(self):
  103. for domain in self.xc.domain_getinfo():
  104. id = str(domain['domid'])
  105. if self.domdict.has_key(id):
  106. # real memory usage
  107. self.domdict[id].memory_current = domain['mem_kb']*1024
  108. # what VM is using or can use
  109. self.domdict[id].memory_actual = max(
  110. self.domdict[id].memory_current,
  111. self.domdict[id].last_target
  112. )
  113. self.domdict[id].memory_maximum = self.xs.read('', '/local/domain/%s/memory/static-max' % str(id))
  114. if self.domdict[id].memory_maximum:
  115. self.domdict[id].memory_maximum = int(self.domdict[id].memory_maximum)*1024
  116. else:
  117. self.domdict[id].memory_maximum = self.ALL_PHYS_MEM
  118. # the previous line used to be
  119. # self.domdict[id].memory_maximum = domain['maxmem_kb']*1024
  120. # but domain['maxmem_kb'] changes in self.mem_set as well, and this results in
  121. # the memory never increasing
  122. # in fact, the only possible case of nonexisting memory/static-max is dom0
  123. # see #307
  124. def clear_outdated_error_markers(self):
  125. # Clear outdated errors
  126. for i in self.domdict.keys():
  127. if self.domdict[i].slow_memset_react and \
  128. self.domdict[i].memory_actual <= self.domdict[i].last_target + self.XEN_FREE_MEM_LEFT/4:
  129. dom_name = self.xs.read('', '/local/domain/%s/name' % str(i))
  130. if dom_name is not None:
  131. try:
  132. qubes.Qubes().domains[str(dom_name)].fire_event(
  133. 'status:no-error', 'no-error',
  134. slow_memset_react_msg)
  135. except LookupError:
  136. pass
  137. self.domdict[i].slow_memset_react = False
  138. if self.domdict[i].no_progress and \
  139. self.domdict[i].memory_actual <= self.domdict[i].last_target + self.XEN_FREE_MEM_LEFT/4:
  140. dom_name = self.xs.read('', '/local/domain/%s/name' % str(i))
  141. if dom_name is not None:
  142. try:
  143. qubes.Qubes().domains[str(dom_name)].fire_event(
  144. 'status:no-error', 'no-error',
  145. no_progress_msg)
  146. except LookupError:
  147. pass
  148. self.domdict[i].no_progress = False
  149. #the below works (and is fast), but then 'xm list' shows unchanged memory value
  150. def mem_set(self, id, val):
  151. self.log.info('mem-set domain {} to {}'.format(id, val))
  152. self.domdict[id].last_target = val
  153. #can happen in the middle of domain shutdown
  154. #apparently xc.lowlevel throws exceptions too
  155. try:
  156. self.xc.domain_setmaxmem(int(id), int(val/1024) + 1024) # LIBXL_MAXMEM_CONSTANT=1024
  157. self.xc.domain_set_target_mem(int(id), int(val/1024))
  158. except:
  159. pass
  160. self.xs.write('', '/local/domain/' + id + '/memory/target', str(int(val/1024)))
  161. # this is called at the end of ballooning, when we have Xen free mem already
  162. # make sure that past mem_set will not decrease Xen free mem
  163. def inhibit_balloon_up(self):
  164. self.log.debug('inhibit_balloon_up()')
  165. for i in self.domdict.keys():
  166. dom = self.domdict[i]
  167. if dom.memory_actual is not None and dom.memory_actual + 200*1024 < dom.last_target:
  168. self.log.info(
  169. 'Preventing balloon up to {}'.format(dom.last_target))
  170. self.mem_set(i, dom.memory_actual)
  171. #perform memory ballooning, across all domains, to add "memsize" to Xen free memory
  172. def do_balloon(self, memsize):
  173. self.log.info('do_balloon(memsize={!r})'.format(memsize))
  174. CHECK_PERIOD_S = 3
  175. CHECK_MB_S = 100
  176. niter = 0
  177. prev_memory_actual = None
  178. for i in self.domdict.keys():
  179. self.domdict[i].no_progress = False
  180. #: number of loop iterations for CHECK_PERIOD_S seconds
  181. check_period = max(1, int((CHECK_PERIOD_S + 0.0) / self.BALOON_DELAY))
  182. #: number of free memory bytes expected to get during CHECK_PERIOD_S
  183. #: seconds
  184. check_delta = CHECK_PERIOD_S * CHECK_MB_S * 1024 * 1024
  185. #: helper array for holding free memory size, CHECK_PERIOD_S seconds
  186. #: ago, at every loop iteration
  187. xenfree_ring = [0] * check_period
  188. while True:
  189. self.log.debug('niter={:2d}'.format(niter))
  190. self.refresh_memactual()
  191. xenfree = self.get_free_xen_memory()
  192. self.log.info('xenfree={!r}'.format(xenfree))
  193. if xenfree >= memsize + self.XEN_FREE_MEM_MIN:
  194. self.inhibit_balloon_up()
  195. return True
  196. # fail the request if over past CHECK_PERIOD_S seconds,
  197. # we got less than CHECK_MB_S MB/s on average
  198. ring_slot = niter % check_period
  199. if niter >= check_period and xenfree < xenfree_ring[ring_slot] + check_delta:
  200. return False
  201. xenfree_ring[ring_slot] = xenfree
  202. if prev_memory_actual is not None:
  203. for i in prev_memory_actual.keys():
  204. if prev_memory_actual[i] == self.domdict[i].memory_actual:
  205. #domain not responding to memset requests, remove it from donors
  206. self.domdict[i].no_progress = True
  207. self.log.info('domain {} stuck at {}'.format(i, self.domdict[i].memory_actual))
  208. memset_reqs = qubes.qmemman.algo.balloon(memsize + self.XEN_FREE_MEM_LEFT - xenfree, self.domdict)
  209. self.log.info('memset_reqs={!r}'.format(memset_reqs))
  210. if len(memset_reqs) == 0:
  211. return False
  212. prev_memory_actual = {}
  213. for i in memset_reqs:
  214. dom, mem = i
  215. self.mem_set(dom, mem)
  216. prev_memory_actual[dom] = self.domdict[dom].memory_actual
  217. self.log.debug('sleeping for {} s'.format(self.BALOON_DELAY))
  218. time.sleep(self.BALOON_DELAY)
  219. niter = niter + 1
  220. def refresh_meminfo(self, domid, untrusted_meminfo_key):
  221. self.log.debug(
  222. 'refresh_meminfo(domid={}, untrusted_meminfo_key={!r})'.format(
  223. domid, untrusted_meminfo_key))
  224. qubes.qmemman.algo.refresh_meminfo_for_domain(
  225. self.domdict[domid], untrusted_meminfo_key)
  226. self.do_balance()
  227. #is the computed balance request big enough ?
  228. #so that we do not trash with small adjustments
  229. def is_balance_req_significant(self, memset_reqs, xenfree):
  230. self.log.debug(
  231. 'is_balance_req_significant(memset_reqs={}, xenfree={})'.format(
  232. memset_reqs, xenfree))
  233. total_memory_transfer = 0
  234. MIN_TOTAL_MEMORY_TRANSFER = 150*1024*1024
  235. MIN_MEM_CHANGE_WHEN_UNDER_PREF = 15*1024*1024
  236. # If xenfree to low, return immediately
  237. if self.XEN_FREE_MEM_LEFT - xenfree > MIN_MEM_CHANGE_WHEN_UNDER_PREF:
  238. self.log.debug('xenfree is too low, returning')
  239. return True
  240. for rq in memset_reqs:
  241. dom, mem = rq
  242. last_target = self.domdict[dom].last_target
  243. memory_change = mem - last_target
  244. total_memory_transfer += abs(memory_change)
  245. pref = qubes.qmemman.algo.prefmem(self.domdict[dom])
  246. if last_target > 0 and last_target < pref and memory_change > MIN_MEM_CHANGE_WHEN_UNDER_PREF:
  247. self.log.info(
  248. 'dom {} is below pref, allowing balance'.format(dom))
  249. return True
  250. ret = total_memory_transfer + abs(xenfree - self.XEN_FREE_MEM_LEFT) > MIN_TOTAL_MEMORY_TRANSFER
  251. self.log.debug('is_balance_req_significant return {}'.format(ret))
  252. return ret
  253. def print_stats(self, xenfree, memset_reqs):
  254. for i in self.domdict.keys():
  255. if self.domdict[i].mem_used is not None:
  256. self.log.info('stat: dom {!r} act={} pref={}'.format(i,
  257. self.domdict[i].memory_actual,
  258. qubes.qmemman.algo.prefmem(self.domdict[i])))
  259. self.log.info('stat: xenfree={} memset_reqs={}'.format(xenfree, memset_reqs))
  260. def do_balance(self):
  261. self.log.debug('do_balance()')
  262. if os.path.isfile('/var/run/qubes/do-not-membalance'):
  263. self.log.debug('do-not-membalance file preset, returning')
  264. return
  265. self.refresh_memactual()
  266. self.clear_outdated_error_markers()
  267. xenfree = self.get_free_xen_memory()
  268. memset_reqs = qubes.qmemman.algo.balance(xenfree - self.XEN_FREE_MEM_LEFT, self.domdict)
  269. if not self.is_balance_req_significant(memset_reqs, xenfree):
  270. return
  271. self.print_stats(xenfree, memset_reqs)
  272. prev_memactual = {}
  273. for i in self.domdict.keys():
  274. prev_memactual[i] = self.domdict[i].memory_actual
  275. for rq in memset_reqs:
  276. dom, mem = rq
  277. # Force to always have at least 0.9*self.XEN_FREE_MEM_LEFT (some
  278. # margin for rounding errors). Before giving memory to
  279. # domain, ensure that others have gived it back.
  280. # If not - wait a little.
  281. ntries = 5
  282. while self.get_free_xen_memory() - (mem - self.domdict[dom].memory_actual) < 0.9*self.XEN_FREE_MEM_LEFT:
  283. self.log.debug('do_balance dom={!r} sleeping ntries={}'.format(
  284. dom, ntries))
  285. time.sleep(self.BALOON_DELAY)
  286. self.refresh_memactual()
  287. ntries -= 1
  288. if ntries <= 0:
  289. # Waiting haven't helped; Find which domain get stuck and
  290. # abort balance (after distributing what we have)
  291. for rq2 in memset_reqs:
  292. dom2, mem2 = rq2
  293. if dom2 == dom:
  294. # All donors have been procesed
  295. break
  296. # allow some small margin
  297. if self.domdict[dom2].memory_actual > self.domdict[dom2].last_target + self.XEN_FREE_MEM_LEFT/4:
  298. # VM didn't react to memory request at all, remove from donors
  299. if prev_memactual[dom2] == self.domdict[dom2].memory_actual:
  300. self.log.warning(
  301. 'dom {!r} didnt react to memory request'
  302. ' (holds {}, requested balloon down to {})'
  303. .format(dom2,
  304. self.domdict[dom2].memory_actual,
  305. mem2))
  306. self.domdict[dom2].no_progress = True
  307. dom_name = self.xs.read('', '/local/domain/%s/name' % str(dom2))
  308. if dom_name is not None:
  309. try:
  310. qubes.Qubes().domains[str(
  311. dom_name)].fire_event(
  312. 'status:error', 'error',
  313. no_progress_msg)
  314. except LookupError:
  315. pass
  316. else:
  317. self.log.warning('dom {!r} still hold more'
  318. ' memory than have assigned ({} > {})'
  319. .format(dom2,
  320. self.domdict[dom2].memory_actual,
  321. mem2))
  322. self.domdict[dom2].slow_memset_react = True
  323. dom_name = self.xs.read('', '/local/domain/%s/name' % str(dom2))
  324. if dom_name is not None:
  325. try:
  326. qubes.Qubes().domains[str(
  327. dom_name)].fire_event(
  328. 'status:error', 'error',
  329. slow_memset_react_msg)
  330. except LookupError:
  331. pass
  332. self.mem_set(dom, self.get_free_xen_memory() + self.domdict[dom].memory_actual - self.XEN_FREE_MEM_LEFT)
  333. return
  334. self.mem_set(dom, mem)
  335. # for i in self.domdict.keys():
  336. # print 'domain ', i, ' meminfo=', self.domdict[i].mem_used, 'actual mem', self.domdict[i].memory_actual
  337. # print 'domain ', i, 'actual mem', self.domdict[i].memory_actual
  338. # print 'xen free mem', self.get_free_xen_memory()