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  1. CONFIG_RCU_TRACE debugfs Files and Formats
  2. The rcutree and rcutiny implementations of RCU provide debugfs trace
  3. output that summarizes counters and state. This information is useful for
  4. debugging RCU itself, and can sometimes also help to debug abuses of RCU.
  5. The following sections describe the debugfs files and formats, first
  6. for rcutree and next for rcutiny.
  7. CONFIG_TREE_RCU and CONFIG_TREE_PREEMPT_RCU debugfs Files and Formats
  8. These implementations of RCU provides five debugfs files under the
  9. top-level directory RCU: rcu/rcudata (which displays fields in struct
  10. rcu_data), rcu/rcudata.csv (which is a .csv spreadsheet version of
  11. rcu/rcudata), rcu/rcugp (which displays grace-period counters),
  12. rcu/rcuhier (which displays the struct rcu_node hierarchy), and
  13. rcu/rcu_pending (which displays counts of the reasons that the
  14. rcu_pending() function decided that there was core RCU work to do).
  15. The output of "cat rcu/rcudata" looks as follows:
  16. rcu_sched:
  17. 0!c=423090 g=423091 pq=1 pqc=423090 qp=1 dt=86475/1/0 df=16319 of=163 ri=1519 ql=0 qs=.... b=10 ci=1460693 co=1648 ca=6448
  18. 1!c=423329 g=423330 pq=1 pqc=423329 qp=1 dt=90875/1/0 df=16231 of=157 ri=1249 ql=0 qs=.... b=10 ci=1459002 co=1614 ca=3310
  19. 2!c=423370 g=423371 pq=1 pqc=423370 qp=1 dt=69661/1/0 df=16125 of=163 ri=1469 ql=0 qs=.... b=10 ci=1610701 co=2015 ca=2378
  20. 3!c=422967 g=422968 pq=1 pqc=422967 qp=1 dt=70349/1/0 df=12528 of=163 ri=1450 ql=0 qs=.... b=10 ci=1427543 co=1430 ca=897
  21. 4!c=423196 g=423197 pq=1 pqc=423196 qp=0 dt=38935/1/0 df=10959 of=177 ri=1657 ql=0 qs=.... b=10 ci=1562249 co=1896 ca=533
  22. 5!c=422950 g=422951 pq=1 pqc=422950 qp=0 dt=25127/1/0 df=5895 of=167 ri=1549 ql=0 qs=.... b=10 ci=1777260 co=2137 ca=274
  23. 6!c=423396 g=423397 pq=1 pqc=423396 qp=1 dt=22639/1/0 df=4590 of=149 ri=1572 ql=0 qs=.... b=10 ci=1471186 co=1530 ca=243
  24. 7 c=460203 g=460203 pq=1 pqc=460202 qp=0 dt=937087/1/0 df=3298 of=149 ri=1584 ql=6 qs=N.W. b=10 ci=4026154 co=1948 ca=135
  25. rcu_bh:
  26. 0!c=18446744073709551494 g=18446744073709551494 pq=0 pqc=18446744073709551493 qp=1 dt=86475/1/0 df=11 of=0 ri=0 ql=0 qs=.... b=10 ci=112 co=0 ca=0
  27. 1!c=18446744073709551496 g=18446744073709551496 pq=1 pqc=18446744073709551495 qp=0 dt=90875/1/0 df=15 of=0 ri=0 ql=0 qs=.... b=10 ci=143 co=0 ca=0
  28. 2!c=18446744073709551496 g=18446744073709551496 pq=1 pqc=18446744073709551495 qp=0 dt=69661/1/0 df=21 of=0 ri=1 ql=0 qs=.... b=10 ci=88 co=0 ca=0
  29. 3!c=18446744073709551494 g=18446744073709551494 pq=1 pqc=18446744073709551493 qp=0 dt=70349/1/0 df=13 of=0 ri=0 ql=0 qs=.... b=10 ci=100 co=0 ca=0
  30. 4!c=18446744073709551494 g=18446744073709551494 pq=0 pqc=18446744073709551493 qp=1 dt=38935/1/0 df=17 of=0 ri=0 ql=0 qs=.... b=10 ci=36 co=0 ca=0
  31. 5!c=18446744073709551494 g=18446744073709551494 pq=0 pqc=18446744073709551493 qp=1 dt=25127/1/0 df=7 of=0 ri=0 ql=0 qs=.... b=10 ci=32 co=0 ca=0
  32. 6!c=18446744073709551496 g=18446744073709551496 pq=1 pqc=18446744073709551495 qp=0 dt=22639/1/0 df=9 of=0 ri=0 ql=0 qs=.... b=10 ci=44 co=0 ca=0
  33. 7 c=182 g=182 pq=1 pqc=181 qp=0 dt=937087/1/0 df=14 of=0 ri=1 ql=0 qs=.... b=10 ci=627 co=0 ca=0
  34. The first section lists the rcu_data structures for rcu_sched, the second
  35. for rcu_bh. Note that CONFIG_TREE_PREEMPT_RCU kernels will have an
  36. additional section for rcu_preempt. Each section has one line per CPU,
  37. or eight for this 8-CPU system. The fields are as follows:
  38. o The number at the beginning of each line is the CPU number.
  39. CPUs numbers followed by an exclamation mark are offline,
  40. but have been online at least once since boot. There will be
  41. no output for CPUs that have never been online, which can be
  42. a good thing in the surprisingly common case where NR_CPUS is
  43. substantially larger than the number of actual CPUs.
  44. o "c" is the count of grace periods that this CPU believes have
  45. completed. Offlined CPUs and CPUs in dynticks idle mode may
  46. lag quite a ways behind, for example, CPU 6 under "rcu_sched"
  47. above, which has been offline through not quite 40,000 RCU grace
  48. periods. It is not unusual to see CPUs lagging by thousands of
  49. grace periods.
  50. o "g" is the count of grace periods that this CPU believes have
  51. started. Again, offlined CPUs and CPUs in dynticks idle mode
  52. may lag behind. If the "c" and "g" values are equal, this CPU
  53. has already reported a quiescent state for the last RCU grace
  54. period that it is aware of, otherwise, the CPU believes that it
  55. owes RCU a quiescent state.
  56. o "pq" indicates that this CPU has passed through a quiescent state
  57. for the current grace period. It is possible for "pq" to be
  58. "1" and "c" different than "g", which indicates that although
  59. the CPU has passed through a quiescent state, either (1) this
  60. CPU has not yet reported that fact, (2) some other CPU has not
  61. yet reported for this grace period, or (3) both.
  62. o "pqc" indicates which grace period the last-observed quiescent
  63. state for this CPU corresponds to. This is important for handling
  64. the race between CPU 0 reporting an extended dynticks-idle
  65. quiescent state for CPU 1 and CPU 1 suddenly waking up and
  66. reporting its own quiescent state. If CPU 1 was the last CPU
  67. for the current grace period, then the CPU that loses this race
  68. will attempt to incorrectly mark CPU 1 as having checked in for
  69. the next grace period!
  70. o "qp" indicates that RCU still expects a quiescent state from
  71. this CPU. Offlined CPUs and CPUs in dyntick idle mode might
  72. well have qp=1, which is OK: RCU is still ignoring them.
  73. o "dt" is the current value of the dyntick counter that is incremented
  74. when entering or leaving dynticks idle state, either by the
  75. scheduler or by irq. This number is even if the CPU is in
  76. dyntick idle mode and odd otherwise. The number after the first
  77. "/" is the interrupt nesting depth when in dyntick-idle state,
  78. or one greater than the interrupt-nesting depth otherwise.
  79. The number after the second "/" is the NMI nesting depth.
  80. This field is displayed only for CONFIG_NO_HZ kernels.
  81. o "df" is the number of times that some other CPU has forced a
  82. quiescent state on behalf of this CPU due to this CPU being in
  83. dynticks-idle state.
  84. This field is displayed only for CONFIG_NO_HZ kernels.
  85. o "of" is the number of times that some other CPU has forced a
  86. quiescent state on behalf of this CPU due to this CPU being
  87. offline. In a perfect world, this might never happen, but it
  88. turns out that offlining and onlining a CPU can take several grace
  89. periods, and so there is likely to be an extended period of time
  90. when RCU believes that the CPU is online when it really is not.
  91. Please note that erring in the other direction (RCU believing a
  92. CPU is offline when it is really alive and kicking) is a fatal
  93. error, so it makes sense to err conservatively.
  94. o "ri" is the number of times that RCU has seen fit to send a
  95. reschedule IPI to this CPU in order to get it to report a
  96. quiescent state.
  97. o "ql" is the number of RCU callbacks currently residing on
  98. this CPU. This is the total number of callbacks, regardless
  99. of what state they are in (new, waiting for grace period to
  100. start, waiting for grace period to end, ready to invoke).
  101. o "qs" gives an indication of the state of the callback queue
  102. with four characters:
  103. "N" Indicates that there are callbacks queued that are not
  104. ready to be handled by the next grace period, and thus
  105. will be handled by the grace period following the next
  106. one.
  107. "R" Indicates that there are callbacks queued that are
  108. ready to be handled by the next grace period.
  109. "W" Indicates that there are callbacks queued that are
  110. waiting on the current grace period.
  111. "D" Indicates that there are callbacks queued that have
  112. already been handled by a prior grace period, and are
  113. thus waiting to be invoked. Note that callbacks in
  114. the process of being invoked are not counted here.
  115. Callbacks in the process of being invoked are those
  116. that have been removed from the rcu_data structures
  117. queues by rcu_do_batch(), but which have not yet been
  118. invoked.
  119. If there are no callbacks in a given one of the above states,
  120. the corresponding character is replaced by ".".
  121. o "b" is the batch limit for this CPU. If more than this number
  122. of RCU callbacks is ready to invoke, then the remainder will
  123. be deferred.
  124. o "ci" is the number of RCU callbacks that have been invoked for
  125. this CPU. Note that ci+ql is the number of callbacks that have
  126. been registered in absence of CPU-hotplug activity.
  127. o "co" is the number of RCU callbacks that have been orphaned due to
  128. this CPU going offline. These orphaned callbacks have been moved
  129. to an arbitrarily chosen online CPU.
  130. o "ca" is the number of RCU callbacks that have been adopted due to
  131. other CPUs going offline. Note that ci+co-ca+ql is the number of
  132. RCU callbacks registered on this CPU.
  133. There is also an rcu/rcudata.csv file with the same information in
  134. comma-separated-variable spreadsheet format.
  135. The output of "cat rcu/rcugp" looks as follows:
  136. rcu_sched: completed=33062 gpnum=33063
  137. rcu_bh: completed=464 gpnum=464
  138. Again, this output is for both "rcu_sched" and "rcu_bh". Note that
  139. kernels built with CONFIG_TREE_PREEMPT_RCU will have an additional
  140. "rcu_preempt" line. The fields are taken from the rcu_state structure,
  141. and are as follows:
  142. o "completed" is the number of grace periods that have completed.
  143. It is comparable to the "c" field from rcu/rcudata in that a
  144. CPU whose "c" field matches the value of "completed" is aware
  145. that the corresponding RCU grace period has completed.
  146. o "gpnum" is the number of grace periods that have started. It is
  147. comparable to the "g" field from rcu/rcudata in that a CPU
  148. whose "g" field matches the value of "gpnum" is aware that the
  149. corresponding RCU grace period has started.
  150. If these two fields are equal (as they are for "rcu_bh" above),
  151. then there is no grace period in progress, in other words, RCU
  152. is idle. On the other hand, if the two fields differ (as they
  153. do for "rcu_sched" above), then an RCU grace period is in progress.
  154. The output of "cat rcu/rcuhier" looks as follows, with very long lines:
  155. c=6902 g=6903 s=2 jfq=3 j=72c7 nfqs=13142/nfqsng=0(13142) fqlh=6
  156. 1/1 ..>. 0:127 ^0
  157. 3/3 ..>. 0:35 ^0 0/0 ..>. 36:71 ^1 0/0 ..>. 72:107 ^2 0/0 ..>. 108:127 ^3
  158. 3/3f ..>. 0:5 ^0 2/3 ..>. 6:11 ^1 0/0 ..>. 12:17 ^2 0/0 ..>. 18:23 ^3 0/0 ..>. 24:29 ^4 0/0 ..>. 30:35 ^5 0/0 ..>. 36:41 ^0 0/0 ..>. 42:47 ^1 0/0 ..>. 48:53 ^2 0/0 ..>. 54:59 ^3 0/0 ..>. 60:65 ^4 0/0 ..>. 66:71 ^5 0/0 ..>. 72:77 ^0 0/0 ..>. 78:83 ^1 0/0 ..>. 84:89 ^2 0/0 ..>. 90:95 ^3 0/0 ..>. 96:101 ^4 0/0 ..>. 102:107 ^5 0/0 ..>. 108:113 ^0 0/0 ..>. 114:119 ^1 0/0 ..>. 120:125 ^2 0/0 ..>. 126:127 ^3
  159. rcu_bh:
  160. c=-226 g=-226 s=1 jfq=-5701 j=72c7 nfqs=88/nfqsng=0(88) fqlh=0
  161. 0/1 ..>. 0:127 ^0
  162. 0/3 ..>. 0:35 ^0 0/0 ..>. 36:71 ^1 0/0 ..>. 72:107 ^2 0/0 ..>. 108:127 ^3
  163. 0/3f ..>. 0:5 ^0 0/3 ..>. 6:11 ^1 0/0 ..>. 12:17 ^2 0/0 ..>. 18:23 ^3 0/0 ..>. 24:29 ^4 0/0 ..>. 30:35 ^5 0/0 ..>. 36:41 ^0 0/0 ..>. 42:47 ^1 0/0 ..>. 48:53 ^2 0/0 ..>. 54:59 ^3 0/0 ..>. 60:65 ^4 0/0 ..>. 66:71 ^5 0/0 ..>. 72:77 ^0 0/0 ..>. 78:83 ^1 0/0 ..>. 84:89 ^2 0/0 ..>. 90:95 ^3 0/0 ..>. 96:101 ^4 0/0 ..>. 102:107 ^5 0/0 ..>. 108:113 ^0 0/0 ..>. 114:119 ^1 0/0 ..>. 120:125 ^2 0/0 ..>. 126:127 ^3
  164. This is once again split into "rcu_sched" and "rcu_bh" portions,
  165. and CONFIG_TREE_PREEMPT_RCU kernels will again have an additional
  166. "rcu_preempt" section. The fields are as follows:
  167. o "c" is exactly the same as "completed" under rcu/rcugp.
  168. o "g" is exactly the same as "gpnum" under rcu/rcugp.
  169. o "s" is the "signaled" state that drives force_quiescent_state()'s
  170. state machine.
  171. o "jfq" is the number of jiffies remaining for this grace period
  172. before force_quiescent_state() is invoked to help push things
  173. along. Note that CPUs in dyntick-idle mode throughout the grace
  174. period will not report on their own, but rather must be check by
  175. some other CPU via force_quiescent_state().
  176. o "j" is the low-order four hex digits of the jiffies counter.
  177. Yes, Paul did run into a number of problems that turned out to
  178. be due to the jiffies counter no longer counting. Why do you ask?
  179. o "nfqs" is the number of calls to force_quiescent_state() since
  180. boot.
  181. o "nfqsng" is the number of useless calls to force_quiescent_state(),
  182. where there wasn't actually a grace period active. This can
  183. happen due to races. The number in parentheses is the difference
  184. between "nfqs" and "nfqsng", or the number of times that
  185. force_quiescent_state() actually did some real work.
  186. o "fqlh" is the number of calls to force_quiescent_state() that
  187. exited immediately (without even being counted in nfqs above)
  188. due to contention on ->fqslock.
  189. o Each element of the form "1/1 0:127 ^0" represents one struct
  190. rcu_node. Each line represents one level of the hierarchy, from
  191. root to leaves. It is best to think of the rcu_data structures
  192. as forming yet another level after the leaves. Note that there
  193. might be either one, two, or three levels of rcu_node structures,
  194. depending on the relationship between CONFIG_RCU_FANOUT and
  195. CONFIG_NR_CPUS.
  196. o The numbers separated by the "/" are the qsmask followed
  197. by the qsmaskinit. The qsmask will have one bit
  198. set for each entity in the next lower level that
  199. has not yet checked in for the current grace period.
  200. The qsmaskinit will have one bit for each entity that is
  201. currently expected to check in during each grace period.
  202. The value of qsmaskinit is assigned to that of qsmask
  203. at the beginning of each grace period.
  204. For example, for "rcu_sched", the qsmask of the first
  205. entry of the lowest level is 0x14, meaning that we
  206. are still waiting for CPUs 2 and 4 to check in for the
  207. current grace period.
  208. o The characters separated by the ">" indicate the state
  209. of the blocked-tasks lists. A "G" preceding the ">"
  210. indicates that at least one task blocked in an RCU
  211. read-side critical section blocks the current grace
  212. period, while a "E" preceding the ">" indicates that
  213. at least one task blocked in an RCU read-side critical
  214. section blocks the current expedited grace period.
  215. A "T" character following the ">" indicates that at
  216. least one task is blocked within an RCU read-side
  217. critical section, regardless of whether any current
  218. grace period (expedited or normal) is inconvenienced.
  219. A "." character appears if the corresponding condition
  220. does not hold, so that "..>." indicates that no tasks
  221. are blocked. In contrast, "GE>T" indicates maximal
  222. inconvenience from blocked tasks.
  223. o The numbers separated by the ":" are the range of CPUs
  224. served by this struct rcu_node. This can be helpful
  225. in working out how the hierarchy is wired together.
  226. For example, the first entry at the lowest level shows
  227. "0:5", indicating that it covers CPUs 0 through 5.
  228. o The number after the "^" indicates the bit in the
  229. next higher level rcu_node structure that this
  230. rcu_node structure corresponds to.
  231. For example, the first entry at the lowest level shows
  232. "^0", indicating that it corresponds to bit zero in
  233. the first entry at the middle level.
  234. The output of "cat rcu/rcu_pending" looks as follows:
  235. rcu_sched:
  236. 0 np=255892 qsp=53936 rpq=85 cbr=0 cng=14417 gpc=10033 gps=24320 nf=6445 nn=146741
  237. 1 np=261224 qsp=54638 rpq=33 cbr=0 cng=25723 gpc=16310 gps=2849 nf=5912 nn=155792
  238. 2 np=237496 qsp=49664 rpq=23 cbr=0 cng=2762 gpc=45478 gps=1762 nf=1201 nn=136629
  239. 3 np=236249 qsp=48766 rpq=98 cbr=0 cng=286 gpc=48049 gps=1218 nf=207 nn=137723
  240. 4 np=221310 qsp=46850 rpq=7 cbr=0 cng=26 gpc=43161 gps=4634 nf=3529 nn=123110
  241. 5 np=237332 qsp=48449 rpq=9 cbr=0 cng=54 gpc=47920 gps=3252 nf=201 nn=137456
  242. 6 np=219995 qsp=46718 rpq=12 cbr=0 cng=50 gpc=42098 gps=6093 nf=4202 nn=120834
  243. 7 np=249893 qsp=49390 rpq=42 cbr=0 cng=72 gpc=38400 gps=17102 nf=41 nn=144888
  244. rcu_bh:
  245. 0 np=146741 qsp=1419 rpq=6 cbr=0 cng=6 gpc=0 gps=0 nf=2 nn=145314
  246. 1 np=155792 qsp=12597 rpq=3 cbr=0 cng=0 gpc=4 gps=8 nf=3 nn=143180
  247. 2 np=136629 qsp=18680 rpq=1 cbr=0 cng=0 gpc=7 gps=6 nf=0 nn=117936
  248. 3 np=137723 qsp=2843 rpq=0 cbr=0 cng=0 gpc=10 gps=7 nf=0 nn=134863
  249. 4 np=123110 qsp=12433 rpq=0 cbr=0 cng=0 gpc=4 gps=2 nf=0 nn=110671
  250. 5 np=137456 qsp=4210 rpq=1 cbr=0 cng=0 gpc=6 gps=5 nf=0 nn=133235
  251. 6 np=120834 qsp=9902 rpq=2 cbr=0 cng=0 gpc=6 gps=3 nf=2 nn=110921
  252. 7 np=144888 qsp=26336 rpq=0 cbr=0 cng=0 gpc=8 gps=2 nf=0 nn=118542
  253. As always, this is once again split into "rcu_sched" and "rcu_bh"
  254. portions, with CONFIG_TREE_PREEMPT_RCU kernels having an additional
  255. "rcu_preempt" section. The fields are as follows:
  256. o "np" is the number of times that __rcu_pending() has been invoked
  257. for the corresponding flavor of RCU.
  258. o "qsp" is the number of times that the RCU was waiting for a
  259. quiescent state from this CPU.
  260. o "rpq" is the number of times that the CPU had passed through
  261. a quiescent state, but not yet reported it to RCU.
  262. o "cbr" is the number of times that this CPU had RCU callbacks
  263. that had passed through a grace period, and were thus ready
  264. to be invoked.
  265. o "cng" is the number of times that this CPU needed another
  266. grace period while RCU was idle.
  267. o "gpc" is the number of times that an old grace period had
  268. completed, but this CPU was not yet aware of it.
  269. o "gps" is the number of times that a new grace period had started,
  270. but this CPU was not yet aware of it.
  271. o "nf" is the number of times that this CPU suspected that the
  272. current grace period had run for too long, and thus needed to
  273. be forced.
  274. Please note that "forcing" consists of sending resched IPIs
  275. to holdout CPUs. If that CPU really still is in an old RCU
  276. read-side critical section, then we really do have to wait for it.
  277. The assumption behing "forcing" is that the CPU is not still in
  278. an old RCU read-side critical section, but has not yet responded
  279. for some other reason.
  280. o "nn" is the number of times that this CPU needed nothing. Alert
  281. readers will note that the rcu "nn" number for a given CPU very
  282. closely matches the rcu_bh "np" number for that same CPU. This
  283. is due to short-circuit evaluation in rcu_pending().
  284. CONFIG_TINY_RCU and CONFIG_TINY_PREEMPT_RCU debugfs Files and Formats
  285. These implementations of RCU provides a single debugfs file under the
  286. top-level directory RCU, namely rcu/rcudata, which displays fields in
  287. rcu_bh_ctrlblk, rcu_sched_ctrlblk and, for CONFIG_TINY_PREEMPT_RCU,
  288. rcu_preempt_ctrlblk.
  289. The output of "cat rcu/rcudata" is as follows:
  290. rcu_preempt: qlen=24 gp=1097669 g197/p197/c197 tasks=...
  291. ttb=. btg=no ntb=184 neb=0 nnb=183 j=01f7 bt=0274
  292. normal balk: nt=1097669 gt=0 bt=371 b=0 ny=25073378 nos=0
  293. exp balk: bt=0 nos=0
  294. rcu_sched: qlen: 0
  295. rcu_bh: qlen: 0
  296. This is split into rcu_preempt, rcu_sched, and rcu_bh sections, with the
  297. rcu_preempt section appearing only in CONFIG_TINY_PREEMPT_RCU builds.
  298. The last three lines of the rcu_preempt section appear only in
  299. CONFIG_RCU_BOOST kernel builds. The fields are as follows:
  300. o "qlen" is the number of RCU callbacks currently waiting either
  301. for an RCU grace period or waiting to be invoked. This is the
  302. only field present for rcu_sched and rcu_bh, due to the
  303. short-circuiting of grace period in those two cases.
  304. o "gp" is the number of grace periods that have completed.
  305. o "g197/p197/c197" displays the grace-period state, with the
  306. "g" number being the number of grace periods that have started
  307. (mod 256), the "p" number being the number of grace periods
  308. that the CPU has responded to (also mod 256), and the "c"
  309. number being the number of grace periods that have completed
  310. (once again mode 256).
  311. Why have both "gp" and "g"? Because the data flowing into
  312. "gp" is only present in a CONFIG_RCU_TRACE kernel.
  313. o "tasks" is a set of bits. The first bit is "T" if there are
  314. currently tasks that have recently blocked within an RCU
  315. read-side critical section, the second bit is "N" if any of the
  316. aforementioned tasks are blocking the current RCU grace period,
  317. and the third bit is "E" if any of the aforementioned tasks are
  318. blocking the current expedited grace period. Each bit is "."
  319. if the corresponding condition does not hold.
  320. o "ttb" is a single bit. It is "B" if any of the blocked tasks
  321. need to be priority boosted and "." otherwise.
  322. o "btg" indicates whether boosting has been carried out during
  323. the current grace period, with "exp" indicating that boosting
  324. is in progress for an expedited grace period, "no" indicating
  325. that boosting has not yet started for a normal grace period,
  326. "begun" indicating that boosting has bebug for a normal grace
  327. period, and "done" indicating that boosting has completed for
  328. a normal grace period.
  329. o "ntb" is the total number of tasks subjected to RCU priority boosting
  330. periods since boot.
  331. o "neb" is the number of expedited grace periods that have had
  332. to resort to RCU priority boosting since boot.
  333. o "nnb" is the number of normal grace periods that have had
  334. to resort to RCU priority boosting since boot.
  335. o "j" is the low-order 12 bits of the jiffies counter in hexadecimal.
  336. o "bt" is the low-order 12 bits of the value that the jiffies counter
  337. will have at the next time that boosting is scheduled to begin.
  338. o In the line beginning with "normal balk", the fields are as follows:
  339. o "nt" is the number of times that the system balked from
  340. boosting because there were no blocked tasks to boost.
  341. Note that the system will balk from boosting even if the
  342. grace period is overdue when the currently running task
  343. is looping within an RCU read-side critical section.
  344. There is no point in boosting in this case, because
  345. boosting a running task won't make it run any faster.
  346. o "gt" is the number of times that the system balked
  347. from boosting because, although there were blocked tasks,
  348. none of them were preventing the current grace period
  349. from completing.
  350. o "bt" is the number of times that the system balked
  351. from boosting because boosting was already in progress.
  352. o "b" is the number of times that the system balked from
  353. boosting because boosting had already completed for
  354. the grace period in question.
  355. o "ny" is the number of times that the system balked from
  356. boosting because it was not yet time to start boosting
  357. the grace period in question.
  358. o "nos" is the number of times that the system balked from
  359. boosting for inexplicable ("not otherwise specified")
  360. reasons. This can actually happen due to races involving
  361. increments of the jiffies counter.
  362. o In the line beginning with "exp balk", the fields are as follows:
  363. o "bt" is the number of times that the system balked from
  364. boosting because there were no blocked tasks to boost.
  365. o "nos" is the number of times that the system balked from
  366. boosting for inexplicable ("not otherwise specified")
  367. reasons.