Commit Graph

11 Commits

Author SHA1 Message Date
mav
1828dd7478 On APs startup skip hard-/statclock events, which time passed before CPU
was lauched. Few seconds event burst, accumulated during long startup,
reported to cause panic in SCHED_ULE priority calculation logic.
2010-11-08 15:25:12 +00:00
mav
351da3e73c If kernel built with DEVICE_POLLING, keep one CPU always in active state
to handle it.
2010-09-22 05:32:37 +00:00
mav
10e1b075c5 If new callout scheduled to another CPU and we are using global timer,
there is high probability that timer is already programmed by some other
CPU. Especially by one that registered this callout, and so active now.
2010-09-21 17:37:28 +00:00
mav
e7b0e3848a Remember last kern.eventtimer.periodic value, explicitly set by user.
If timer capabilities forcing us to change periodicity mode, try to restore
it back later, as soon as new choosen timer capable to do it. Without this,
timer change like HPET->RTC->HPET always results in enabling periodic mode.
2010-09-21 16:50:24 +00:00
mav
a168297469 When global timer used at SMP system, update nextevent field on BSP before
sending IPI to other CPUs. Otherwise, other CPUs will try to honor stale
value, programming timer for zero interval. If timer is fast enough,
it caused extra interrupt before timer correctly reprogrammed by BSP.
2010-09-18 07:18:30 +00:00
mav
6c05aa4db6 Make kern_tc.c provide minimum frequency of tc_ticktock() calls, required
to handle current timecounter wraps. Make kern_clocksource.c to honor that
requirement, scheduling sleeps on first CPU for no more then specified
period. Allow other CPUs to sleep up to 1/4 second (for any case).
2010-09-14 08:48:06 +00:00
mav
5f7bd119f7 Add some foot shooting protection by checking singlemul value correctness.
Rephrase sysctls descriptions.

Suggested by:	edmaste
2010-09-14 04:48:04 +00:00
mav
eb4931dc6c Refactor timer management code with priority to one-shot operation mode.
The main goal of this is to generate timer interrupts only when there is
some work to do. When CPU is busy interrupts are generating at full rate
of hz + stathz to fullfill scheduler and timekeeping requirements. But
when CPU is idle, only minimum set of interrupts (down to 8 interrupts per
second per CPU now), needed to handle scheduled callouts is executed.
This allows significantly increase idle CPU sleep time, increasing effect
of static power-saving technologies. Also it should reduce host CPU load
on virtualized systems, when guest system is idle.

There is set of tunables, also available as writable sysctls, allowing to
control wanted event timer subsystem behavior:
  kern.eventtimer.timer - allows to choose event timer hardware to use.
On x86 there is up to 4 different kinds of timers. Depending on whether
chosen timer is per-CPU, behavior of other options slightly differs.
  kern.eventtimer.periodic - allows to choose periodic and one-shot
operation mode. In periodic mode, current timer hardware taken as the only
source of time for time events. This mode is quite alike to previous kernel
behavior. One-shot mode instead uses currently selected time counter
hardware to schedule all needed events one by one and program timer to
generate interrupt exactly in specified time. Default value depends of
chosen timer capabilities, but one-shot mode is preferred, until other is
forced by user or hardware.
  kern.eventtimer.singlemul - in periodic mode specifies how much times
higher timer frequency should be, to not strictly alias hardclock() and
statclock() events. Default values are 2 and 4, but could be reduced to 1
if extra interrupts are unwanted.
  kern.eventtimer.idletick - makes each CPU to receive every timer interrupt
independently of whether they busy or not. By default this options is
disabled. If chosen timer is per-CPU and runs in periodic mode, this option
has no effect - all interrupts are generating.

As soon as this patch modifies cpu_idle() on some platforms, I have also
refactored one on x86. Now it makes use of MONITOR/MWAIT instrunctions
(if supported) under high sleep/wakeup rate, as fast alternative to other
methods. It allows SMP scheduler to wake up sleeping CPUs much faster
without using IPI, significantly increasing performance on some highly
task-switching loads.

Tested by:	many (on i386, amd64, sparc64 and powerc)
H/W donated by:	Gheorghe Ardelean
Sponsored by:	iXsystems, Inc.
2010-09-13 07:25:35 +00:00
mav
0ea74c96a2 Fix several un-/signedness bugs of r210290 and r210293. Add one more check. 2010-07-20 15:48:29 +00:00
mav
1021ed9c1f Extend timer driver API to report also minimal and maximal supported period
lengths. Make MI wrapper code to validate periods in request. Make kernel
clock management code to honor these hardware limitations while choosing hz,
stathz and profhz values.
2010-07-20 10:58:56 +00:00
mav
bd622e7c20 Rename timeevents.c to kern_clocksource.c.
Suggested by:	jhb@
2010-07-14 18:43:27 +00:00