check_naf.py 24 KB

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  1. #!/usr/bin/env python
  2. # -*- encoding: utf-8 -*-
  3. #####################################################################
  4. # (c) 2006-2010 by Sven Velt and team(ix) GmbH, Nuernberg, Germany #
  5. # sv@teamix.net #
  6. # #
  7. # This file is part of check_naf (FKA check_netappfiler) #
  8. # #
  9. # check_naf is free software: you can redistribute it and/or modify #
  10. # it under the terms of the GNU General Public License as published #
  11. # by the Free Software Foundation, either version 2 of the License, #
  12. # or (at your option) any later version. #
  13. # #
  14. # check_naf is distributed in the hope that it will be useful, but #
  15. # WITHOUT ANY WARRANTY; without even the implied warranty of #
  16. # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the #
  17. # GNU General Public License for more details. #
  18. # #
  19. # You should have received a copy of the GNU General Public License #
  20. # along with check_naf. If not, see <http://www.gnu.org/licenses/>. #
  21. #####################################################################
  22. from monitoringplugin import SNMPMonitoringPlugin
  23. class CheckNAF(SNMPMonitoringPlugin):
  24. OID = {
  25. 'Cluster_Settings': '.1.3.6.1.4.1.789.1.2.3.1.0',
  26. 'Cluster_State': '.1.3.6.1.4.1.789.1.2.3.2.0',
  27. 'Cluster_InterconnectStatus': '.1.3.6.1.4.1.789.1.2.3.8.0',
  28. 'Cluster_CannotTakeOverCause': '.1.3.6.1.4.1.789.1.2.3.3.0',
  29. 'CPU_Arch': '.1.3.6.1.4.1.789.1.1.11.0',
  30. 'CPU_Time_Busy': '.1.3.6.1.4.1.789.1.2.1.3.0',
  31. 'CPU_Time_Idle': '.1.3.6.1.4.1.789.1.2.1.5.0',
  32. 'CPU_Context_Switches': '.1.3.6.1.4.1.789.1.2.1.8.0',
  33. 'Disks_Total': '.1.3.6.1.4.1.789.1.6.4.1.0',
  34. 'Disks_Active': '.1.3.6.1.4.1.789.1.6.4.2.0',
  35. 'Disks_Reconstructing': '.1.3.6.1.4.1.789.1.6.4.3.0',
  36. 'Disks_ReconstParity': '.1.3.6.1.4.1.789.1.6.4.4.0',
  37. 'Disks_Scrubbing': '.1.3.6.1.4.1.789.1.6.4.6.0',
  38. 'Disks_Failed': '.1.3.6.1.4.1.789.1.6.4.7.0',
  39. 'Disks_Spare': '.1.3.6.1.4.1.789.1.6.4.8.0',
  40. 'Disks_ZeroDisks': '.1.3.6.1.4.1.789.1.6.4.9.0',
  41. 'Disks_Failed_Descr': '.1.3.6.1.4.1.789.1.6.4.10.0',
  42. 'ExtCache_Type': '.1.3.6.1.4.1.789.1.26.1.0',
  43. 'ExtCache_SubType': '.1.3.6.1.4.1.789.1.26.2.0',
  44. 'ExtCache_Size': '.1.3.6.1.4.1.789.1.26.4.0',
  45. 'ExtCache_Usedsize': '.1.3.6.1.4.1.789.1.26.5.0',
  46. 'ExtCache_Options': '.1.3.6.1.4.1.789.1.26.7.0',
  47. 'ExtCache_Hits': '.1.3.6.1.4.1.789.1.26.8.0',
  48. 'ExtCache_Misses': '.1.3.6.1.4.1.789.1.26.9.0',
  49. 'ExtCache_Inserts': '.1.3.6.1.4.1.789.1.26.10.0',
  50. 'ExtCache_Evicts': '.1.3.6.1.4.1.789.1.26.11.0',
  51. 'ExtCache_Invalidates': '.1.3.6.1.4.1.789.1.26.12.0',
  52. 'ExtCache_MetaData': '.1.3.6.1.4.1.789.1.26.15.0',
  53. 'Global_Status': '.1.3.6.1.4.1.789.1.2.2.4.0',
  54. 'Global_Status_Message': '.1.3.6.1.4.1.789.1.2.2.25.0',
  55. 'IO_DiskReadBy': ['.1.3.6.1.4.1.789.1.2.2.32.0', '.1.3.6.1.4.1.789.1.2.2.16.0', '.1.3.6.1.4.1.789.1.2.2.15.0',],
  56. 'IO_DiskWriteBy': ['.1.3.6.1.4.1.789.1.2.2.33.0', '.1.3.6.1.4.1.789.1.2.2.18.0', '.1.3.6.1.4.1.789.1.2.2.17.0',],
  57. 'IO_NetInBy': ['.1.3.6.1.4.1.789.1.2.2.30.0', '.1.3.6.1.4.1.789.1.2.2.12.0', '.1.3.6.1.4.1.789.1.2.2.11.0',],
  58. 'IO_NetOutBy': ['.1.3.6.1.4.1.789.1.2.2.31.0', '.1.3.6.1.4.1.789.1.2.2.14.0', '.1.3.6.1.4.1.789.1.2.2.13.0',],
  59. 'IO_TapeReadBy': ['.1.3.6.1.4.1.789.1.2.2.34.0', '.1.3.6.1.4.1.789.1.2.2.20.0', '.1.3.6.1.4.1.789.1.2.2.19.0',],
  60. 'IO_TapeWriteBy': ['.1.3.6.1.4.1.789.1.2.2.35.0', '.1.3.6.1.4.1.789.1.2.2.22.0', '.1.3.6.1.4.1.789.1.2.2.21.0',],
  61. 'IO_FCPReadBy': ['.1.3.6.1.4.1.789.1.17.20.0', '.1.3.6.1.4.1.789.1.17.3.0', '.1.3.6.1.4.1.789.1.17.4.0',],
  62. 'IO_FCPWriteBy': ['.1.3.6.1.4.1.789.1.17.21.0', '.1.3.6.1.4.1.789.1.17.5.0', '.1.3.6.1.4.1.789.1.17.6.0',],
  63. 'IO_iSCSIReadBy': ['.1.3.6.1.4.1.789.1.17.22.0', '.1.3.6.1.4.1.789.1.17.7.0', '.1.3.6.1.4.1.789.1.17.8.0',],
  64. 'IO_iSCSIWriteBy': ['.1.3.6.1.4.1.789.1.17.23.0', '.1.3.6.1.4.1.789.1.17.9.0', '.1.3.6.1.4.1.789.1.17.10.0',],
  65. 'NVRAM_Status': '.1.3.6.1.4.1.789.1.2.5.1.0',
  66. 'OPs_NFS': ['.1.3.6.1.4.1.789.1.2.2.27.0', '.1.3.6.1.4.1.789.1.2.2.6.0', '.1.3.6.1.4.1.789.1.2.2.5.0',],
  67. 'OPs_CIFS': ['.1.3.6.1.4.1.789.1.2.2.28.0', '.1.3.6.1.4.1.789.1.2.2.8.0', '.1.3.6.1.4.1.789.1.2.2.7.0',],
  68. 'OPs_HTTP': ['.1.3.6.1.4.1.789.1.2.2.29.0', '.1.3.6.1.4.1.789.1.2.2.10.0', '.1.3.6.1.4.1.789.1.2.2.9.0',],
  69. 'OPs_FCP': ['.1.3.6.1.4.1.789.1.17.25.0', '.1.3.6.1.4.1.789.1.17.14.0', '.1.3.6.1.4.1.789.1.17.13.0',],
  70. 'OPs_iSCSI': ['.1.3.6.1.4.1.789.1.17.24.0', '.1.3.6.1.4.1.789.1.17.12.0', '.1.3.6.1.4.1.789.1.17.11.0',],
  71. 'Model': '.1.3.6.1.4.1.789.1.1.5.0',
  72. 'ONTAP_Version': '.1.3.6.1.4.1.789.1.1.2.0',
  73. 'df_FS_Index': '.1.3.6.1.4.1.789.1.5.4.1.1',
  74. 'df_FS_Name': '.1.3.6.1.4.1.789.1.5.4.1.2',
  75. 'df_FS_Mounted_On': '.1.3.6.1.4.1.789.1.5.4.1.10',
  76. 'df_FS_Status': '.1.3.6.1.4.1.789.1.5.4.1.20',
  77. 'df_FS_Type': '.1.3.6.1.4.1.789.1.5.4.1.23',
  78. 'df_FS_kBTotal': ['.1.3.6.1.4.1.789.1.5.4.1.29', '.1.3.6.1.4.1.789.1.5.4.1.15', '.1.3.6.1.4.1.789.1.5.4.1.14',],
  79. 'df_FS_kBUsed': ['.1.3.6.1.4.1.789.1.5.4.1.30', '.1.3.6.1.4.1.789.1.5.4.1.17', '.1.3.6.1.4.1.789.1.5.4.1.16',],
  80. 'df_FS_kBAvail': ['.1.3.6.1.4.1.789.1.5.4.1.31', '.1.3.6.1.4.1.789.1.5.4.1.19', '.1.3.6.1.4.1.789.1.5.4.1.18',],
  81. 'df_FS_INodeUsed': '.1.3.6.1.4.1.789.1.5.4.1.7',
  82. 'df_FS_INodeFree': '.1.3.6.1.4.1.789.1.5.4.1.8',
  83. 'df_FS_MaxFilesAvail': '.1.3.6.1.4.1.789.1.5.4.1.11',
  84. 'df_FS_MaxFilesUsed': '.1.3.6.1.4.1.789.1.5.4.1.12',
  85. 'df_FS_MaxFilesPossible': '.1.3.6.1.4.1.789.1.5.4.1.13',
  86. }
  87. OWC = {
  88. 'Cluster_InterconnectStatus': ( (4,), (3,), (1,2,), ),
  89. 'Cluster_Settings': ( (2,), (1,3,4,), (5,), ),
  90. 'Cluster_State': ( (2,4,), (), (1,3,), ),
  91. 'Global_Status': ( (3,), (4,), (5,6), ),
  92. 'NVRAM_Status': ( (1,9), (2,5,8), (3,4,6), ),
  93. }
  94. Status2String = {
  95. 'Cluster_CannotTakeOverCause': { '1' : 'ok', '2' : 'unknownReason', '3' : 'disabledByOperator', '4' : 'interconnectOffline', '5' : 'disabledByPartner', '6' : 'takeoverFailed', },
  96. 'Cluster_InterconnectStatus': { '1' : 'notPresent', '2' : 'down', '3' : 'partialFailure', '4' : 'up', },
  97. 'Cluster_Settings': { '1' : 'notConfigured', '2' : 'enabled', '3' : 'disabled', '4' : 'takeoverByPartnerDisabled', '5' : 'thisNodeDead', },
  98. 'Cluster_State': { '1' : 'dead', '2' : 'canTakeover', '3' : 'cannotTakeover', '4' : 'takeover', },
  99. 'CPU_Arch' : { '1' : 'x86', '2' : 'alpha', '3' : 'mips', '4' : 'sparc', '5' : 'amd64', },
  100. 'NVRAM_Status' : { '1' : 'ok', '2' : 'partiallyDischarged', '3' : 'fullyDischarged', '4' : 'notPresent', '5' : 'nearEndOfLife', '6' : 'atEndOfLife', '7' : 'unknown', '8' : 'overCharged', '9' : 'fullyCharged', },
  101. 'df_FS_Status' : { '1' : 'unmounted', '2' : 'mounted', '3' : 'frozen', '4' : 'destroying', '5' : 'creating', '6' : 'mounting', '7' : 'unmounting', '8' : 'nofsinfo', '9' : 'replaying', '10': 'replayed', },
  102. 'df_FS_Type' : { '1' : 'traditionalVolume', '2' : 'flexibleVolume', '3' : 'aggregate', },
  103. }
  104. def map_status_to_returncode(self, value, mapping):
  105. for returncode in xrange(0,3):
  106. if value in mapping[returncode]:
  107. return returncode
  108. return 3
  109. def check_cpu(self, warn='', crit=''):
  110. cpu_arch = self.SNMPGET(self.OID['CPU_Arch'])
  111. cpu_timebusy = int(self.SNMPGET(self.OID['CPU_Time_Busy']))
  112. # cputimeidle = int(self.SNMPGET(self.OID['CPU_Time_Idle']))
  113. cpu_cs = self.SNMPGET(self.OID['CPU_Context_Switches'])
  114. if '%' in warn:
  115. warn = warn[:-1]
  116. if '%' in crit:
  117. crit = crit[:-1]
  118. returncode = self.value_wc_to_returncode(cpu_timebusy, warn, crit)
  119. output = 'CPU ' + str(cpu_timebusy) + '% busy, CPU architecture: ' + self.Status2String['CPU_Arch'].get(cpu_arch)
  120. perfdata = []
  121. pd = {'label':'nacpu', 'value':cpu_timebusy, 'unit':'%', 'min':0, 'max':100}
  122. if warn:
  123. pd['warn'] = warn
  124. if crit:
  125. pd['crit'] = crit
  126. perfdata.append(pd)
  127. perfdata.append({'label':'nacs', 'value':cpu_cs, 'unit':'c'})
  128. return self.remember_check('cpu', returncode, output, perfdata=perfdata)
  129. def check_cluster(self):
  130. cl_settings = int(self.SNMPGET(self.OID['Cluster_Settings']))
  131. if cl_settings == 1: # notConfigured
  132. return self.remember_check('cluster', self.RETURNCODE['WARNING'], 'No cluster configured!')
  133. cl_state = int(self.SNMPGET(self.OID['Cluster_State']))
  134. cl_interconnectstatus = int(self.SNMPGET(self.OID['Cluster_InterconnectStatus']))
  135. returncode = []
  136. returncode.append(self.map_status_to_returncode(cl_settings, self.OWC['Cluster_Settings']))
  137. returncode.append(self.map_status_to_returncode(cl_state, self.OWC['Cluster_State']))
  138. returncode.append(self.map_status_to_returncode(cl_interconnectstatus, self.OWC['Cluster_InterconnectStatus']))
  139. returncode = max(returncode)
  140. output = 'Settings: ' + self.Status2String['Cluster_Settings'][str(cl_settings)] + ', '
  141. output += 'state: ' + self.Status2String['Cluster_State'][str(cl_state)] + ', '
  142. output += 'interconnect state: ' + self.Status2String['Cluster_InterconnectStatus'][str(cl_interconnectstatus)]
  143. if cl_state == 4: # cannotTakeover
  144. cl_cannottakeovercause = self.SNMPGET(self.OID['Cluster_CannotTakeOverCause'])
  145. output = 'Cannot takeover, reason: ' + self.Status2String['Cluster_CannotTakeOverCause'][cl_cannottakeovercause] + '! ' + output
  146. return self.remember_check('cluster', returncode, output)
  147. def check_disk(self, target='failed', warn='', crit=''):
  148. di_total = int(self.SNMPGET(self.OID['Disks_Total']))
  149. di_active = int(self.SNMPGET(self.OID['Disks_Active']))
  150. di_reconstructing = int(self.SNMPGET(self.OID['Disks_Reconstructing']))
  151. di_reconstparity = int(self.SNMPGET(self.OID['Disks_ReconstParity']))
  152. # di_scrubbing = int(self.SNMPGET(self.OID['Disks_Scrubbing']))
  153. di_failed = int(self.SNMPGET(self.OID['Disks_Failed']))
  154. di_spare = int(self.SNMPGET(self.OID['Disks_Spare']))
  155. # di_zerodisks = int(self.SNMPGET(self.OID['Disks_ZeroDisks']))
  156. di_reconstr = di_reconstructing + di_reconstparity
  157. if target == 'spare':
  158. returncode = self.value_wc_to_returncode(di_spare, warn, crit)
  159. output = str(di_spare) + ' spare disk'
  160. if di_spare > 1:
  161. output += 's'
  162. else:
  163. target = 'failed' # Set to defined value
  164. returncode = self.value_wc_to_returncode(di_failed, warn, crit)
  165. if returncode == 0:
  166. output = 'No failed disks'
  167. else:
  168. output = self.SNMPGET(self.OID['Disks_Failed_Descr'])
  169. perfdata = []
  170. perfdata.append({'label':'nadisk_total', 'value':di_total, 'unit':'', 'min':0})
  171. perfdata.append({'label':'nadisk_active', 'value':di_active, 'unit':'', 'min':0})
  172. pd = {'label':'nadisk_spare', 'value':di_spare, 'unit':'', 'min':0}
  173. if warn and target=='spare':
  174. pd['warn'] = warn
  175. if crit and target=='spare':
  176. pd['crit'] = crit
  177. perfdata.append(pd)
  178. pd = {'label':'nadisk_failed', 'value':di_failed, 'unit':'', 'min':0}
  179. if warn and target=='failed':
  180. pd['warn'] = warn
  181. if crit and target=='failed':
  182. pd['crit'] = crit
  183. perfdata.append(pd)
  184. return self.remember_check('disk', returncode, output, perfdata=perfdata, target=target)
  185. def check_extcache(self):
  186. if self.options.snmpversion in [1, '1']:
  187. return self.remember_check('extcache', self.RETURNCODE['UNKNOWN'], 'Need SNMP v2c/v3 for "extcache" check!',)
  188. ec_size = long(self.SNMPGET(self.OID['ExtCache_Size']))
  189. ec_usedsize = long(self.SNMPGET(self.OID['ExtCache_Usedsize']))
  190. ec_hits = long(self.SNMPGET(self.OID['ExtCache_Hits']))
  191. # ec_meta = long(self.SNMPGET(self.OID['ExtCache_MetaData']))
  192. ec_miss = long(self.SNMPGET(self.OID['ExtCache_Misses']))
  193. ec_evict = long(self.SNMPGET(self.OID['ExtCache_Evicts']))
  194. ec_inval = long(self.SNMPGET(self.OID['ExtCache_Invalidates']))
  195. ec_insert = long(self.SNMPGET(self.OID['ExtCache_Inserts']))
  196. ec_usage = float(ec_usedsize) / float(ec_size) * 100.0
  197. ec_hitpct = float(ec_hits) / float(ec_hits + ec_miss) * 100.0
  198. ec_size_human = self.value_to_human_binary(ec_size, unit='B')
  199. output = 'Cache size %s, cache usage %5.2f%%, total hits %5.2f%% ' % (ec_size_human, ec_usage, ec_hitpct)
  200. returncode = self.RETURNCODE['OK']
  201. perfdata = []
  202. perfdata.append({'label':'nacache_usage', 'value':float('%5.2f' % ec_usage), 'unit':'%'})
  203. perfdata.append({'label':'nacache_hits', 'value':ec_hits, 'unit':'c'})
  204. perfdata.append({'label':'nacache_miss', 'value':ec_miss, 'unit':'c'})
  205. perfdata.append({'label':'nacache_evict', 'value':ec_evict, 'unit':'c'})
  206. perfdata.append({'label':'nacache_inval', 'value':ec_inval, 'unit':'c'})
  207. perfdata.append({'label':'nacache_insert', 'value':ec_insert, 'unit':'c'})
  208. return self.remember_check('extcache', returncode, output, perfdata=perfdata)
  209. def check_extcache_info(self):
  210. ec_type = self.SNMPGET(self.OID['ExtCache_Type'])
  211. ec_subtype = self.SNMPGET(self.OID['ExtCache_SubType'])
  212. ec_size = long(self.SNMPGET(self.OID['ExtCache_Size']))
  213. ec_options = self.SNMPGET(self.OID['ExtCache_Options'])
  214. ec_size_human = self.value_to_human_binary(ec_size, unit='B')
  215. output = 'Cache type: "' + ec_type + '/' + ec_subtype + '", size: ' + ec_size_human + ', options: "' + ec_options + '"'
  216. returncode = 0
  217. return self.remember_check('extcache_info', returncode, output)
  218. def check_global(self):
  219. model = self.SNMPGET(self.OID['Model'])
  220. globalstatus = int(self.SNMPGET(self.OID['Global_Status']))
  221. globalstatusmsg = self.SNMPGET(self.OID['Global_Status_Message'])[:255]
  222. returncode = self.map_status_to_returncode(globalstatus, self.OWC['Global_Status'])
  223. output = model + ': ' + globalstatusmsg
  224. return self.remember_check('global', returncode, output)
  225. def check_io(self):
  226. disk_read = self.SNMPGET(self.OID['IO_DiskReadBy'])
  227. disk_write = self.SNMPGET(self.OID['IO_DiskWriteBy'])
  228. net_in = self.SNMPGET(self.OID['IO_NetInBy'])
  229. net_out = self.SNMPGET(self.OID['IO_NetOutBy'])
  230. tape_read = self.SNMPGET(self.OID['IO_TapeReadBy'])
  231. tape_write = self.SNMPGET(self.OID['IO_TapeWriteBy'])
  232. fcp_read = self.SNMPGET(self.OID['IO_FCPReadBy'])
  233. fcp_write = self.SNMPGET(self.OID['IO_FCPWriteBy'])
  234. iscsi_read = self.SNMPGET(self.OID['IO_iSCSIReadBy'])
  235. iscsi_write = self.SNMPGET(self.OID['IO_iSCSIWriteBy'])
  236. output = 'I/O statistics'
  237. returncode = self.RETURNCODE['OK']
  238. perfdata = []
  239. perfdata.append({'label':'naio_netin', 'value':net_in, 'unit':'c'})
  240. perfdata.append({'label':'naio_netout', 'value':net_out, 'unit':'c'})
  241. perfdata.append({'label':'naio_diskread', 'value':disk_read, 'unit':'c'})
  242. perfdata.append({'label':'naio_diskwrite', 'value':disk_write, 'unit':'c'})
  243. perfdata.append({'label':'naio_taperead', 'value':tape_read, 'unit':'c'})
  244. perfdata.append({'label':'naio_tapewrite', 'value':tape_write, 'unit':'c'})
  245. perfdata.append({'label':'naio_fcpread', 'value':fcp_read, 'unit':'c'})
  246. perfdata.append({'label':'naio_fcpwrite', 'value':fcp_write, 'unit':'c'})
  247. perfdata.append({'label':'naio_iscsiread', 'value':iscsi_read, 'unit':'c'})
  248. perfdata.append({'label':'naio_iscsiwrite', 'value':iscsi_write, 'unit':'c'})
  249. return self.remember_check('io', returncode, output, perfdata=perfdata)
  250. def check_nvram(self):
  251. nvramstatus = int(self.SNMPGET(self.OID['NVRAM_Status']))
  252. returncode = self.map_status_to_returncode(nvramstatus, self.OWC['NVRAM_Status'])
  253. output = 'NVRAM battery status is "' + self.Status2String['NVRAM_Status'].get(str(nvramstatus)) + '"'
  254. return self.remember_check('nvram', returncode, output)
  255. def check_ops(self):
  256. ops_nfs = self.SNMPGET(self.OID['OPs_NFS'])
  257. ops_cifs = self.SNMPGET(self.OID['OPs_CIFS'])
  258. ops_http = self.SNMPGET(self.OID['OPs_HTTP'])
  259. ops_fcp = self.SNMPGET(self.OID['OPs_FCP'])
  260. ops_iscsi = self.SNMPGET(self.OID['OPs_iSCSI'])
  261. output = 'Total ops statistics'
  262. returncode = self.RETURNCODE['OK']
  263. perfdata = []
  264. perfdata.append({'label':'naops_nfs', 'value':ops_nfs, 'unit':'c'})
  265. perfdata.append({'label':'naops_cifs', 'value':ops_cifs, 'unit':'c'})
  266. perfdata.append({'label':'naops_http', 'value':ops_http, 'unit':'c'})
  267. perfdata.append({'label':'naops_fcp', 'value':ops_fcp, 'unit':'c'})
  268. perfdata.append({'label':'naops_iscsi', 'value':ops_iscsi, 'unit':'c'})
  269. return self.remember_check('ops', returncode, output, perfdata=perfdata)
  270. def check_version(self):
  271. model = self.SNMPGET(self.OID['Model'])
  272. ontapversion = self.SNMPGET(self.OID['ONTAP_Version'])
  273. return self.remember_check('version', 0, model + ': ' + ontapversion)
  274. def common_vol_idx(self, volume):
  275. if volume.endswith('.snapshot'):
  276. return None
  277. idx = str(self.find_in_table(self.OID['df_FS_Index'], self.OID['df_FS_Name'] , volume))
  278. sn_idx = int(idx) + 1
  279. return (idx, sn_idx)
  280. def check_vol_data(self, volume, warn, crit):
  281. (idx, sn_idx) = self.common_vol_idx(volume)
  282. fs_total = long(self.SNMPGET(self.OID['df_FS_kBTotal'], idx)) * 1024L
  283. fs_used = long(self.SNMPGET(self.OID['df_FS_kBUsed'], idx)) * 1024L
  284. # fs_avail = long(self.SNMPGET(self.OID['df_FS_kBAvail'], idx)) * 1024L
  285. sn_total = long(self.SNMPGET(self.OID['df_FS_kBTotal'], sn_idx)) * 1024L
  286. sn_used = long(self.SNMPGET(self.OID['df_FS_kBUsed'], sn_idx)) * 1024L
  287. # sn_avail = long(self.SNMPGET(self.OID['df_FS_kBAvail'], sn_idx)) * 1024L
  288. mountedon = self.SNMPGET(self.OID['df_FS_Mounted_On'] + "." + idx)
  289. status = self.Status2String['df_FS_Status'].get(self.SNMPGET(self.OID['df_FS_Status'] + "." + idx))
  290. fstype = self.Status2String['df_FS_Type'].get(self.SNMPGET(self.OID['df_FS_Type'] + "." + idx))
  291. fs_pctused = float(fs_used) / float(fs_total) * 100.0
  292. warn = self.range_dehumanize(warn, fs_total)
  293. crit = self.range_dehumanize(crit, fs_total)
  294. returncode = self.value_wc_to_returncode(fs_used, warn, crit)
  295. output = volume + ': Used ' + self.value_to_human_binary(fs_used, 'B')
  296. output += ' (' + '%3.1f' % fs_pctused + '%)'+ ' out of ' + self.value_to_human_binary(fs_total, 'B')
  297. target = volume.replace('/vol/', '')[:-1]
  298. perfdata = []
  299. perfdata.append({'label':'navdu_' + target, 'value':fs_used, 'unit':'B', 'warn':warn, 'crit':crit, 'min':0})
  300. perfdata.append({'label':'navdt_' + target, 'value':fs_total, 'unit':'B'})
  301. perfdata.append({'label':'navsu_' + target, 'value':sn_used, 'unit':'B', 'min':0})
  302. perfdata.append({'label':'navst_' + target, 'value':sn_total, 'unit':'B'})
  303. return self.remember_check('vol_data', returncode, output, perfdata=perfdata, target=target)
  304. def check_vol_snap(self, volume, warn, crit):
  305. (idx, sn_idx) = self.common_vol_idx(volume)
  306. # fs_total = long(self.SNMPGET(self.OID['df_FS_kBTotal'], idx)) * 1024L
  307. # fs_used = long(self.SNMPGET(self.OID['df_FS_kBUsed'], idx)) * 1024L
  308. # fs_avail = long(self.SNMPGET(self.OID['df_FS_kBAvail'], idx)) * 1024L
  309. sn_total = long(self.SNMPGET(self.OID['df_FS_kBTotal'], sn_idx)) * 1024L
  310. sn_used = long(self.SNMPGET(self.OID['df_FS_kBUsed'], sn_idx)) * 1024L
  311. # sn_avail = long(self.SNMPGET(self.OID['df_FS_kBAvail'], sn_idx)) * 1024L
  312. sn_pctused = float(sn_used) / float(sn_total) * 100.0
  313. warn = self.range_dehumanize(warn, sn_total)
  314. crit = self.range_dehumanize(crit, sn_total)
  315. returncode = self.value_wc_to_returncode(sn_used, warn, crit)
  316. output = volume + '.snapshot: Used ' + self.value_to_human_binary(sn_used, 'B')
  317. output += ' (' + '%3.1f' % sn_pctused + '%)'+ ' out of ' + self.value_to_human_binary(sn_total, 'B')
  318. target = volume.replace('/vol/', '')[:-1]
  319. perfdata = []
  320. perfdata.append({'label':'navsu_' + target, 'value':sn_used, 'unit':'B', 'warn':warn, 'crit':crit, 'min':0})
  321. perfdata.append({'label':'navst_' + target, 'value':sn_total, 'unit':'B'})
  322. return self.remember_check('vol_snap', returncode, output, perfdata=perfdata, target=target)
  323. def check_vol_inode(self, volume, warn, crit):
  324. (idx, sn_idx) = self.common_vol_idx(volume)
  325. in_used = long(self.SNMPGET(self.OID['df_FS_INodeUsed'] + '.' + idx))
  326. in_free = long(self.SNMPGET(self.OID['df_FS_INodeFree'] + '.' + idx))
  327. in_total = in_used + in_free
  328. in_pctused = float(in_used) / float(in_total) * 100.0
  329. warn = self.range_dehumanize(warn, in_total)
  330. crit = self.range_dehumanize(crit, in_total)
  331. returncode = self.value_wc_to_returncode(in_used, warn, crit)
  332. output = volume + ': Used inodes ' + self.value_to_human_si(in_used)
  333. output += ' (' + '%3.1f' % in_pctused + '%)'+ ' out of ' + self.value_to_human_si(in_total)
  334. target = volume.replace('/vol/', '')[:-1]
  335. perfdata = []
  336. perfdata.append({'label':'naviu_' + target, 'value':in_used, 'unit':None, 'warn':warn, 'crit':crit, 'min':0})
  337. perfdata.append({'label':'navit_' + target, 'value':in_total, 'unit':None})
  338. return self.remember_check('vol_inode', returncode, output, perfdata=perfdata, target=target)
  339. def check_vol_files(self, volume, warn, crit):
  340. (idx, sn_idx) = self.common_vol_idx(volume)
  341. fi_avail = long(self.SNMPGET(self.OID['df_FS_MaxFilesAvail'] + '.' + idx))
  342. fi_used = long(self.SNMPGET(self.OID['df_FS_MaxFilesUsed'] + '.' + idx))
  343. fi_possible = long(self.SNMPGET(self.OID['df_FS_MaxFilesPossible'] + '.' + idx))
  344. fi_total = fi_used + fi_avail
  345. fi_pctused = float(fi_used) / float(fi_total) * 100.0
  346. warn = self.range_dehumanize(warn, fi_total)
  347. crit = self.range_dehumanize(crit, fi_total)
  348. returncode = self.value_wc_to_returncode(fi_used, warn, crit)
  349. output = volume + ': Used files ' + self.value_to_human_si(fi_used)
  350. output += ' (' + '%3.1f' % fi_pctused + '%)'+ ' out of ' + self.value_to_human_si(fi_total)
  351. output += ', may raised to ' + self.value_to_human_si(fi_possible)
  352. target = volume.replace('/vol/', '')[:-1]
  353. perfdata = []
  354. perfdata.append({'label':'navfu_' + target, 'value':fi_used, 'unit':None, 'warn':warn, 'crit':crit, 'min':0})
  355. perfdata.append({'label':'navft_' + target, 'value':fi_total, 'unit':None})
  356. return self.remember_check('vol_files', returncode, output, perfdata=perfdata, target=target)
  357. def main():
  358. plugin = CheckNAF(pluginname='check_naf', tagforstatusline='NAF', description=u'Monitoring NetApp™ FAS systems', version='0.9')
  359. plugin.add_cmdlineoption('', '--check', 'check', 'OBSOLETE - use new syntax!', default='')
  360. plugin.add_cmdlineoption('', '--target', 'target', 'OBSOLETE - use new syntax!', default='')
  361. plugin.add_cmdlineoption('-w', '', 'warn', 'OBSOLETE - use new syntax!', default='')
  362. plugin.add_cmdlineoption('-c', '', 'crit', 'OBSOLETE - use new syntax!', default='')
  363. plugin.parse_cmdlineoptions()
  364. plugin.prepare_snmp()
  365. if plugin.options.check or plugin.options.target:
  366. import sys
  367. arguments = plugin.options.check
  368. for s in [plugin.options.target, plugin.options.warn, plugin.options.crit]:
  369. arguments += ':' + s
  370. plugin.back2nagios(3, 'Obsolete syntax - please use new syntax: "%s %s"' % (sys.argv[0], arguments))
  371. checks = []
  372. for quad in plugin.args:
  373. quad = quad.split(':')
  374. quad = (quad + ['', '', ''])[:4] # Fix length to 4, fill with ''
  375. # Convert list of checks to list
  376. if ',' in quad[0]:
  377. quad[0] = quad[0].split(',')
  378. else:
  379. quad[0] = [quad[0],]
  380. # Convert list of targets to list
  381. if ',' in quad[1]:
  382. quad[1] = quad[1].split(',')
  383. else:
  384. quad[1] = [quad[1],]
  385. for target in quad[1]:
  386. for check in quad[0]:
  387. checks.append(tuple([check, target, quad[2], quad[3]]))
  388. if len(checks) == 0:
  389. checks = [('global','','','')]
  390. for quad in checks:
  391. (check, target, warn, crit) = tuple(quad)
  392. if check == 'global' or check == 'environment':
  393. result = plugin.check_global()
  394. elif check == 'cluster':
  395. result = plugin.check_cluster()
  396. elif check == 'cpu':
  397. result = plugin.check_cpu(warn=warn, crit=crit)
  398. elif check == 'disk':
  399. result = plugin.check_disk(target=target, warn=warn, crit=crit)
  400. elif check == 'extcache':
  401. result = plugin.check_extcache()
  402. elif check == 'extcache_info':
  403. result = plugin.check_extcache_info()
  404. elif check == 'io':
  405. result = plugin.check_io()
  406. elif check == 'nvram':
  407. result = plugin.check_nvram()
  408. elif check == 'ops':
  409. result = plugin.check_ops()
  410. elif check == 'version':
  411. result = plugin.check_version()
  412. elif check == 'vol_data':
  413. result = plugin.check_vol_data(volume=target, warn=warn, crit=crit)
  414. elif check == 'vol_snap':
  415. result = plugin.check_vol_snap(volume=target, warn=warn, crit=crit)
  416. elif check =='vol_inode':
  417. result = plugin.check_vol_inode(volume=target, warn=warn, crit=crit)
  418. elif check =='vol_files':
  419. result = plugin.check_vol_files(volume=target, warn=warn, crit=crit)
  420. else:
  421. result = plugin.remember_check(check, plugin.RETURNCODE['UNKNOWN'], 'Unknown check "' + check + '"!')
  422. # from pprint import pprint
  423. # pprint(plugin.dump_brain())
  424. plugin.brain2output()
  425. plugin.exit()
  426. if __name__ == '__main__':
  427. main()
  428. #vim: ts=4 sw=4 foldmethod=indent