turbostat.8 10 KB

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  1. .TH TURBOSTAT 8
  2. .SH NAME
  3. turbostat \- Report processor frequency and idle statistics
  4. .SH SYNOPSIS
  5. .ft B
  6. .B turbostat
  7. .RB [ Options ]
  8. .RB command
  9. .br
  10. .B turbostat
  11. .RB [ Options ]
  12. .RB [ "\-i interval_sec" ]
  13. .SH DESCRIPTION
  14. \fBturbostat \fP reports processor topology, frequency,
  15. idle power-state statistics, temperature and power on modern X86 processors.
  16. Either \fBcommand\fP is forked and statistics are printed
  17. upon its completion, or statistics are printed periodically.
  18. \fBturbostat \fP
  19. must be run on root, and
  20. minimally requires that the processor
  21. supports an "invariant" TSC, plus the APERF and MPERF MSRs.
  22. Additional information is reported depending on hardware counter support.
  23. .SS Options
  24. The \fB-p\fP option limits output to the 1st thread in 1st core of each package.
  25. .PP
  26. The \fB-P\fP option limits output to the 1st thread in each Package.
  27. .PP
  28. The \fB-S\fP option limits output to a 1-line System Summary for each interval.
  29. .PP
  30. The \fB-v\fP option increases verbosity.
  31. .PP
  32. The \fB-s\fP option prints the SMI counter, equivalent to "-c 0x34"
  33. .PP
  34. The \fB-c MSR#\fP option includes the delta of the specified 32-bit MSR counter.
  35. .PP
  36. The \fB-C MSR#\fP option includes the delta of the specified 64-bit MSR counter.
  37. .PP
  38. The \fB-m MSR#\fP option includes the the specified 32-bit MSR value.
  39. .PP
  40. The \fB-M MSR#\fP option includes the the specified 64-bit MSR value.
  41. .PP
  42. The \fB-i interval_sec\fP option prints statistics every \fiinterval_sec\fP seconds.
  43. The default is 5 seconds.
  44. .PP
  45. The \fBcommand\fP parameter forks \fBcommand\fP and upon its exit,
  46. displays the statistics gathered since it was forked.
  47. .PP
  48. .SH FIELD DESCRIPTIONS
  49. .nf
  50. \fBpk\fP processor package number.
  51. \fBcor\fP processor core number.
  52. \fBCPU\fP Linux CPU (logical processor) number.
  53. Note that multiple CPUs per core indicate support for Intel(R) Hyper-Threading Technology.
  54. \fB%c0\fP percent of the interval that the CPU retired instructions.
  55. \fBGHz\fP average clock rate while the CPU was in c0 state.
  56. \fBTSC\fP average GHz that the TSC ran during the entire interval.
  57. \fB%c1, %c3, %c6, %c7\fP show the percentage residency in hardware core idle states.
  58. \fBCTMP\fP Degrees Celsius reported by the per-core Digital Thermal Sensor.
  59. \fBPTMP\fP Degrees Celsius reported by the per-package Package Thermal Monitor.
  60. \fB%pc2, %pc3, %pc6, %pc7\fP percentage residency in hardware package idle states.
  61. \fBPkg_W\fP Watts consumed by the whole package.
  62. \fBCor_W\fP Watts consumed by the core part of the package.
  63. \fBGFX_W\fP Watts consumed by the Graphics part of the package -- available only on client processors.
  64. \fBRAM_W\fP Watts consumed by the DRAM DIMMS -- available only on server processors.
  65. \fBPKG_%\fP percent of the interval that RAPL throttling was active on the Package.
  66. \fBRAM_%\fP percent of the interval that RAPL throttling was active on DRAM.
  67. .fi
  68. .PP
  69. .SH EXAMPLE
  70. Without any parameters, turbostat prints out counters ever 5 seconds.
  71. (override interval with "-i sec" option, or specify a command
  72. for turbostat to fork).
  73. The first row of statistics is a summary for the entire system.
  74. For residency % columns, the summary is a weighted average.
  75. For Temperature columns, the summary is the column maximum.
  76. For Watts columns, the summary is a system total.
  77. Subsequent rows show per-CPU statistics.
  78. .nf
  79. [root@sandy]# ./turbostat
  80. cor CPU %c0 GHz TSC %c1 %c3 %c6 %c7 CTMP PTMP %pc2 %pc3 %pc6 %pc7 Pkg_W Cor_W GFX_W
  81. 0.06 0.80 2.29 0.11 0.00 0.00 99.83 47 40 0.26 0.01 0.44 98.78 3.49 0.12 0.14
  82. 0 0 0.07 0.80 2.29 0.07 0.00 0.00 99.86 40 40 0.26 0.01 0.44 98.78 3.49 0.12 0.14
  83. 0 4 0.03 0.80 2.29 0.12
  84. 1 1 0.04 0.80 2.29 0.25 0.01 0.00 99.71 40
  85. 1 5 0.16 0.80 2.29 0.13
  86. 2 2 0.05 0.80 2.29 0.06 0.01 0.00 99.88 40
  87. 2 6 0.03 0.80 2.29 0.08
  88. 3 3 0.05 0.80 2.29 0.08 0.00 0.00 99.87 47
  89. 3 7 0.04 0.84 2.29 0.09
  90. .fi
  91. .SH SUMMARY EXAMPLE
  92. The "-s" option prints the column headers just once,
  93. and then the one line system summary for each sample interval.
  94. .nf
  95. [root@wsm]# turbostat -S
  96. %c0 GHz TSC %c1 %c3 %c6 CTMP %pc3 %pc6
  97. 1.40 2.81 3.38 10.78 43.47 44.35 42 13.67 2.09
  98. 1.34 2.90 3.38 11.48 58.96 28.23 41 19.89 0.15
  99. 1.55 2.72 3.38 26.73 37.66 34.07 42 2.53 2.80
  100. 1.37 2.83 3.38 16.95 60.05 21.63 42 5.76 0.20
  101. .fi
  102. .SH VERBOSE EXAMPLE
  103. The "-v" option adds verbosity to the output:
  104. .nf
  105. [root@ivy]# turbostat -v
  106. turbostat v3.0 November 23, 2012 - Len Brown <lenb@kernel.org>
  107. CPUID(0): GenuineIntel 13 CPUID levels; family:model:stepping 0x6:3a:9 (6:58:9)
  108. CPUID(6): APERF, DTS, PTM, EPB
  109. RAPL: 851 sec. Joule Counter Range
  110. cpu0: MSR_NHM_PLATFORM_INFO: 0x81010f0012300
  111. 16 * 100 = 1600 MHz max efficiency
  112. 35 * 100 = 3500 MHz TSC frequency
  113. cpu0: MSR_NHM_SNB_PKG_CST_CFG_CTL: 0x1e008402 (UNdemote-C3, UNdemote-C1, demote-C3, demote-C1, locked: pkg-cstate-limit=2: pc6-noret)
  114. cpu0: MSR_NHM_TURBO_RATIO_LIMIT: 0x25262727
  115. 37 * 100 = 3700 MHz max turbo 4 active cores
  116. 38 * 100 = 3800 MHz max turbo 3 active cores
  117. 39 * 100 = 3900 MHz max turbo 2 active cores
  118. 39 * 100 = 3900 MHz max turbo 1 active cores
  119. cpu0: MSR_IA32_ENERGY_PERF_BIAS: 0x00000006 (balanced)
  120. cpu0: MSR_RAPL_POWER_UNIT: 0x000a1003 (0.125000 Watts, 0.000015 Joules, 0.000977 sec.)
  121. cpu0: MSR_PKG_POWER_INFO: 0x01e00268 (77 W TDP, RAPL 60 - 0 W, 0.000000 sec.)
  122. cpu0: MSR_PKG_POWER_LIMIT: 0x830000148268 (UNlocked)
  123. cpu0: PKG Limit #1: ENabled (77.000000 Watts, 1.000000 sec, clamp DISabled)
  124. cpu0: PKG Limit #2: ENabled (96.000000 Watts, 0.000977* sec, clamp DISabled)
  125. cpu0: MSR_PP0_POLICY: 0
  126. cpu0: MSR_PP0_POWER_LIMIT: 0x00000000 (UNlocked)
  127. cpu0: Cores Limit: DISabled (0.000000 Watts, 0.000977 sec, clamp DISabled)
  128. cpu0: MSR_PP1_POLICY: 0
  129. cpu0: MSR_PP1_POWER_LIMIT: 0x00000000 (UNlocked)
  130. cpu0: GFX Limit: DISabled (0.000000 Watts, 0.000977 sec, clamp DISabled)
  131. cpu0: MSR_IA32_TEMPERATURE_TARGET: 0x00691400 (105 C)
  132. cpu0: MSR_IA32_PACKAGE_THERM_STATUS: 0x884e0000 (27 C)
  133. cpu0: MSR_IA32_THERM_STATUS: 0x88560000 (19 C +/- 1)
  134. cpu1: MSR_IA32_THERM_STATUS: 0x88560000 (19 C +/- 1)
  135. cpu2: MSR_IA32_THERM_STATUS: 0x88540000 (21 C +/- 1)
  136. cpu3: MSR_IA32_THERM_STATUS: 0x884e0000 (27 C +/- 1)
  137. ...
  138. .fi
  139. The \fBmax efficiency\fP frequency, a.k.a. Low Frequency Mode, is the frequency
  140. available at the minimum package voltage. The \fBTSC frequency\fP is the nominal
  141. maximum frequency of the processor if turbo-mode were not available. This frequency
  142. should be sustainable on all CPUs indefinitely, given nominal power and cooling.
  143. The remaining rows show what maximum turbo frequency is possible
  144. depending on the number of idle cores. Note that this information is
  145. not available on all processors.
  146. .SH FORK EXAMPLE
  147. If turbostat is invoked with a command, it will fork that command
  148. and output the statistics gathered when the command exits.
  149. eg. Here a cycle soaker is run on 1 CPU (see %c0) for a few seconds
  150. until ^C while the other CPUs are mostly idle:
  151. .nf
  152. [root@x980 lenb]# ./turbostat cat /dev/zero > /dev/null
  153. ^C
  154. cor CPU %c0 GHz TSC %c1 %c3 %c6 %pc3 %pc6
  155. 8.86 3.61 3.38 15.06 31.19 44.89 0.00 0.00
  156. 0 0 1.46 3.22 3.38 16.84 29.48 52.22 0.00 0.00
  157. 0 6 0.21 3.06 3.38 18.09
  158. 1 2 0.53 3.33 3.38 2.80 46.40 50.27
  159. 1 8 0.89 3.47 3.38 2.44
  160. 2 4 1.36 3.43 3.38 9.04 23.71 65.89
  161. 2 10 0.18 2.86 3.38 10.22
  162. 8 1 0.04 2.87 3.38 99.96 0.01 0.00
  163. 8 7 99.72 3.63 3.38 0.27
  164. 9 3 0.31 3.21 3.38 7.64 56.55 35.50
  165. 9 9 0.08 2.95 3.38 7.88
  166. 10 5 1.42 3.43 3.38 2.14 30.99 65.44
  167. 10 11 0.16 2.88 3.38 3.40
  168. .fi
  169. Above the cycle soaker drives cpu7 up its 3.6 GHz turbo limit
  170. while the other processors are generally in various states of idle.
  171. Note that cpu1 and cpu7 are HT siblings within core8.
  172. As cpu7 is very busy, it prevents its sibling, cpu1,
  173. from entering a c-state deeper than c1.
  174. Note that turbostat reports average GHz of 3.63, while
  175. the arithmetic average of the GHz column above is lower.
  176. This is a weighted average, where the weight is %c0. ie. it is the total number of
  177. un-halted cycles elapsed per time divided by the number of CPUs.
  178. .SH SMI COUNTING EXAMPLE
  179. On Intel Nehalem and newer processors, MSR 0x34 is a System Management Mode Interrupt (SMI) counter.
  180. Using the -m option, you can display how many SMIs have fired since reset, or if there
  181. are SMIs during the measurement interval, you can display the delta using the -d option.
  182. .nf
  183. [root@x980 ~]# turbostat -m 0x34
  184. cor CPU %c0 GHz TSC MSR 0x034 %c1 %c3 %c6 %pc3 %pc6
  185. 1.41 1.82 3.38 0x00000000 8.92 37.82 51.85 17.37 0.55
  186. 0 0 3.73 2.03 3.38 0x00000055 1.72 48.25 46.31 17.38 0.55
  187. 0 6 0.14 1.63 3.38 0x00000056 5.30
  188. 1 2 2.51 1.80 3.38 0x00000056 15.65 29.33 52.52
  189. 1 8 0.10 1.65 3.38 0x00000056 18.05
  190. 2 4 1.16 1.68 3.38 0x00000056 5.87 24.47 68.50
  191. 2 10 0.10 1.63 3.38 0x00000056 6.93
  192. 8 1 3.84 1.91 3.38 0x00000056 1.36 50.65 44.16
  193. 8 7 0.08 1.64 3.38 0x00000056 5.12
  194. 9 3 1.82 1.73 3.38 0x00000056 7.59 24.21 66.38
  195. 9 9 0.09 1.68 3.38 0x00000056 9.32
  196. 10 5 1.66 1.65 3.38 0x00000056 15.10 50.00 33.23
  197. 10 11 1.72 1.65 3.38 0x00000056 15.05
  198. ^C
  199. [root@x980 ~]#
  200. .fi
  201. .SH NOTES
  202. .B "turbostat "
  203. must be run as root.
  204. .B "turbostat "
  205. reads hardware counters, but doesn't write them.
  206. So it will not interfere with the OS or other programs, including
  207. multiple invocations of itself.
  208. \fBturbostat \fP
  209. may work poorly on Linux-2.6.20 through 2.6.29,
  210. as \fBacpi-cpufreq \fPperiodically cleared the APERF and MPERF
  211. in those kernels.
  212. If the TSC column does not make sense, then
  213. the other numbers will also make no sense.
  214. Turbostat is lightweight, and its data collection is not atomic.
  215. These issues are usually caused by an extremely short measurement
  216. interval (much less than 1 second), or system activity that prevents
  217. turbostat from being able to run on all CPUS to quickly collect data.
  218. The APERF, MPERF MSRs are defined to count non-halted cycles.
  219. Although it is not guaranteed by the architecture, turbostat assumes
  220. that they count at TSC rate, which is true on all processors tested to date.
  221. .SH REFERENCES
  222. "Intel® Turbo Boost Technology
  223. in Intel® Core™ Microarchitecture (Nehalem) Based Processors"
  224. http://download.intel.com/design/processor/applnots/320354.pdf
  225. "Intel® 64 and IA-32 Architectures Software Developer's Manual
  226. Volume 3B: System Programming Guide"
  227. http://www.intel.com/products/processor/manuals/
  228. .SH FILES
  229. .ta
  230. .nf
  231. /dev/cpu/*/msr
  232. .fi
  233. .SH "SEE ALSO"
  234. msr(4), vmstat(8)
  235. .PP
  236. .SH AUTHOR
  237. .nf
  238. Written by Len Brown <len.brown@intel.com>