1 1.1 kardel adjtime, tick and tickadj: 2 1.1 kardel -------------------------- 3 1.1 kardel 4 1.1 kardel The SGI value for HZ is 100 under Irix 4, with the system clock running 5 1.1 kardel in nominal mode (ftimer off), so the value for tick is 10000 usec. 6 1.1 kardel Tickadj is a bit more tricky because of the behaviour of adjtime(), 7 1.1 kardel which seems to try to perform the correction over 100-200 seconds, with 8 1.1 kardel a rate limit of 0.04 secs/sec for large corrections. Corrections of 9 1.1 kardel less than 0.017 seconds generally complete in less than a second, 10 1.1 kardel however. 11 1.1 kardel 12 1.1 kardel Some measured rates are as follows: 13 1.1 kardel 14 1.1 kardel Delta Rate (sec/sec) 15 1.1 kardel 16 1.1 kardel > 1 0.04 17 1.1 kardel 0.75 0.04 18 1.1 kardel 0.6 0.004 19 1.1 kardel 0.5 0.004 20 1.1 kardel 0.4 0.0026 21 1.1 kardel 0.3 0.0026 22 1.1 kardel 0.2 0.0013 23 1.1 kardel 0.1 0.0015 24 1.1 kardel 0.05 0.0015 25 1.1 kardel 0.02 0.0003 26 1.1 kardel 0.01 0.015 27 1.1 kardel Strange. Anyway, since adjtime will complete adjustments of less than 28 1.1 kardel 17msec in less than a second, whether the fast clock is on or off, I 29 1.1 kardel have used a value of 150usec/tick for the tickadj value. 30 1.1 kardel 31 1.1 kardel Fast clock: 32 1.1 kardel ----------- 33 1.1 kardel 34 1.1 kardel I get smoother timekeeping if I turn on the fast clock, thereby making 35 1.1 kardel the clock tick at 1kHz rather than 100Hz. With the fast clock off, I 36 1.1 kardel see a sawtooth clock offset with an amplitude of 5msec. With it on, 37 1.1 kardel the amplitude drops to 0.5msec (surprise!). This may be a consequence 38 1.1 kardel of having a local reference clock which spits out the time at exactly 39 1.1 kardel one-second intervals - I am probably seeing sampling aliasing between 40 1.1 kardel that and the machine clock. This may all be irrelevant for machines 41 1.1 kardel without a local reference clock. Fiddling with the fast clock doesn't 42 1.1 kardel seem to compromise the above choices for tick and tickadj. 43 1.1 kardel 44 1.1 kardel I use the "ftimer" program to switch the fast clock on when the system 45 1.1 kardel goes into multiuser mode, but you can set the "fastclock" flag in 46 1.1 kardel /usr/sysgen/master.d/kernel to have it on by default. See ftimer(1). 47 1.1 kardel 48 1.1 kardel timetrim: 49 1.1 kardel --------- 50 1.1 kardel 51 1.1 kardel Irix has a kernel variable called timetrim which adjusts the system 52 1.1 kardel time increment, effectively trimming the clock frequency. Xntpd could 53 1.1 kardel use this rather than adjtime() to do it's frequency trimming, but I 54 1.1 kardel haven't the time to explore this. There is a utility program, 55 1.1 kardel "timetrim", in the util directory which allows manipulation of the 56 1.1 kardel timetrim value in both SGI and xntpd native units. You can fiddle with 57 1.1 kardel default timetrim value in /usr/sysgen/master.d/kernel, but I think 58 1.1 kardel that's ugly. I just use xntpd to figure out the right value for 59 1.1 kardel timetrim for a particular CPU and then set it using "timetrim" when 60 1.1 kardel going to multiuser mode. 61 1.1 kardel 62 1.1 kardel Serial I/O latency: 63 1.1 kardel ------------------- 64 1.1 kardel 65 1.1 kardel If you use a local clock on an RS-232 line, look into the kernel 66 1.1 kardel configuration stuff with regard to improving the input latency (check 67 1.1 kardel out /usr/sysgen/master.d/[sduart|cdsio]). I have a Kinemetrics OM-DC 68 1.1 kardel hooked onto /dev/ttyd2 (the second CPU board RS-232 port) on an SGI 69 1.1 kardel Crimson, and setting the duart_rsrv_duration flag to 0 improves things 70 1.1 kardel a bit. 71 1.1 kardel 72 1.1 kardel 73 1.1 kardel 12 Jan 93 74 1.1 kardel Steve Clift, CSIRO Marine Labs, Hobart, Australia (clift (a] ml.csiro.au) 75