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419 lines
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419 lines
17 KiB
Plaintext
Version 5.1.3 -- 2011-01-13
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================================================================
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To use Unixbench:
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1. UnixBench from version 5.1 on has both system and graphics tests.
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If you want to use the graphic tests, edit the Makefile and make sure
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that the line "GRAPHIC_TESTS = defined" is not commented out; then check
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that the "GL_LIBS" definition is OK for your system. Also make sure
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that the "x11perf" command is on your search path.
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If you don't want the graphics tests, then comment out the
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"GRAPHIC_TESTS = defined" line. Note: comment it out, don't
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set it to anything.
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2. Do "make".
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3. Do "Run" to run the system test; "Run graphics" to run the graphics
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tests; "Run gindex" to run both.
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You will need perl, as Run is written in perl.
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For more information on using the tests, read "USAGE".
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For information on adding tests into the benchmark, see "WRITING_TESTS".
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===================== RELEASE NOTES =====================================
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======================== Jan 13 ==========================
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v5.1.3
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Fixed issue that would cause a race condition if you attempted to compile in
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parallel with more than 3 parallel jobs.
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Kelly Lucas, Jan 13, 2011
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kdlucas at gmail period com
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======================== Dec 07 ==========================
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v5.1.2
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One big fix: if unixbench is installed in a directory whose pathname contains
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a space, it should now run (previously it failed).
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To avoid possible clashes, the environment variables unixbench uses are now
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prefixed with "UB_". These are all optional, and for most people will be
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completely unnecessary, but if you want you can set these:
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UB_BINDIR Directory where the test programs live.
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UB_TMPDIR Temp directory, for temp files.
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UB_RESULTDIR Directory to put results in.
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UB_TESTDIR Directory where the tests are executed.
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And a couple of tiny fixes:
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* In pgms/tst.sh, changed "sort -n +1" to "sort -n -k 1"
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* In Makefile, made it clearer that GRAPHIC_TESTS should be commented
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out (not set to 0) to disable graphics
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Thanks to nordi for pointing these out.
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Ian Smith, December 26, 2007
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johantheghost at yahoo period com
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======================== Oct 07 ==========================
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v5.1.1
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It turns out that the setting of LANG is crucial to the results. This
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explains why people in different regions were seeing odd results, and also
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why runlevel 1 produced odd results -- runlevel 1 doesn't set LANG, and
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hence reverts to ASCII, whereas most people use a UTF-8 encoding, which is
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much slower in some tests (eg. shell tests).
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So now we manually set LANG to "en_US.utf8", which is configured with the
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variable "$language". Don't change this if you want to share your results.
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We also report the language settings in use.
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See "The Language Setting" in USAGE for more info. Thanks to nordi for
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pointing out the LANG issue.
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I also added the "grep" and "sysexec" tests. These are non-index tests,
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and "grep" uses the system's grep, so it's not much use for comparing
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different systems. But some folks on the OpenSuSE list have been finding
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these useful. They aren't in any of the main test groups; do "Run grep
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sysexec" to run them.
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Index Changes
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-------------
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The setting of LANG will affect consistency with systems where this is
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not the default value. However, it should produce more consistent results
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in future.
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Ian Smith, October 15, 2007
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johantheghost at yahoo period com
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======================== Oct 07 ==========================
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v5.1
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The major new feature in this version is the addition of graphical
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benchmarks. Since these may not compile on all systems, you can enable/
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disable them with the GRAPHIC_TESTS variable in the Makefile.
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As before, each test is run for 3 or 10 iterations. However, we now discard
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the worst 1/3 of the scores before averaging the remainder. The logic is
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that a glitch in the system (background process waking up, for example) may
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make one or two runs go slow, so let's discard those. Hopefully this will
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produce more consistent and repeatable results. Check the log file
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for a test run to see the discarded scores.
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Made the tests compile and run on x86-64/Linux (fixed an execl bug passing
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int instead of pointer).
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Also fixed some general bugs.
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Thanks to Stefan Esser for help and testing / bug reporting.
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Index Changes
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-------------
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The tests are now divided into categories, and each category generates
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its own index. This keeps the graphics test results separate from
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the system tests.
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The "graphics" test and corresponding index are new.
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The "discard the worst scores" strategy should produce slightly higher
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test scores, but at least they should (hopefully!) be more consistent.
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The scores should not be higher than the best scores you would have got
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with 5.0, so this should not be a huge consistency issue.
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Ian Smith, October 11, 2007
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johantheghost at yahoo period com
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======================== Sep 07 ==========================
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v5.0
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All the work I've done on this release is Linux-based, because that's
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the only Unix I have access to. I've tried to make it more OS-agnostic
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if anything; for example, it no longer has to figure out the format reported
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by /usr/bin/time. However, it's possible that portability has been damaged.
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If anyone wants to fix this, please feel free to mail me patches.
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In particular, the analysis of the system's CPUs is done via /proc/cpuinfo.
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For systems which don't have this, please make appropriate changes in
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getCpuInfo() and getSystemInfo().
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The big change has been to make the tests multi-CPU aware. See the
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"Multiple CPUs" section in "USAGE" for details. Other changes:
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* Completely rewrote Run in Perl; drastically simplified the way data is
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processed. The confusing system of interlocking shell and awk scripts is
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now just one script. Various intermediate files used to store and process
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results are now replaced by Perl data structures internal to the script.
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* Removed from the index runs file system read and write tests which were
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ignored for the index and wasted about 10 minutes per run (see fstime.c).
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The read and write tests can now be selected individually. Made fstime.c
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take parameters, so we no longer need to build 3 versions of it.
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* Made the output file names unique; they are built from
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hostname-date-sequence.
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* Worked on result reporting, error handling, and logging. See TESTS.
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We now generate both text and HTML reports.
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* Removed some obsolete files.
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Index Changes
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-------------
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The index is still based on David Niemi's SPARCstation 20-61 (rated at 10.0),
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and the intention in the changes I've made has been to keep the tests
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unchanged, in order to maintain consistency with old result sets.
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However, the following changes have been made to the index:
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* The Pipe-based Context Switching test (context1) was being dropped
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from the index report in v4.1.0 due to a bug; I've put it back in.
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* I've added shell1 to the index, to get a measure of how the shell tests
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scale with multiple CPUs (shell8 already exercises all the CPUs, even
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in single-copy mode). I made up the baseline score for this by
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extrapolation.
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Both of these test can be dropped, if you wish, by editing the "TEST
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SPECIFICATIONS" section of Run.
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Ian Smith, September 20, 2007
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johantheghost at yahoo period com
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======================== Aug 97 ==========================
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v4.1.0
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Double precision Whetstone put in place instead of the old "double" benchmark.
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Removal of some obsolete files.
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"system" suite adds shell8.
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perlbench and poll added as "exhibition" (non-index) benchmarks.
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Incorporates several suggestions by Andre Derrick Balsa <andrewbalsa@usa.net>
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Code cleanups to reduce compiler warnings by David C Niemi <niemi@tux.org>
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and Andy Kahn <kahn@zk3.dec.com>; Digital Unix options by Andy Kahn.
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======================== Jun 97 ==========================
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v4.0.1
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Minor change to fstime.c to fix overflow problems on fast machines. Counting
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is now done in units of 256 (smallest BUFSIZE) and unsigned longs are used,
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giving another 23 dB or so of headroom ;^) Results should be virtually
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identical aside from very small rounding errors.
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======================== Dec 95 ==========================
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v4.0
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Byte no longer seems to have anything to do with this benchmark, and I was
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unable to reach any of the original authors; so I have taken it upon myself
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to clean it up.
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This is version 4. Major assumptions made in these benchmarks have changed
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since they were written, but they are nonetheless popular (particularly for
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measuring hardware for Linux). Some changes made:
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- The biggest change is to put a lot more operating system-oriented
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tests into the index. I experimented for a while with a decibel-like
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logarithmic scale, but finally settled on using a geometric mean for
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the final index (the individual scores are a normalized, and their
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logs are averaged; the resulting value is exponentiated).
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"George", certain SPARCstation 20-61 with 128 MB RAM, a SPARC Storage
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Array, and Solaris 2.3 is my new baseline; it is rated at 10.0 in each
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of the index scores for a final score of 10.0.
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Overall I find the geometric averaging is a big improvement for
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avoiding the skew that was once possible (e.g. a Pentium-75 which got
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40 on the buggy version of fstime, such that fstime accounted for over
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half of its total score and hence wildly skewed its average).
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I also expect that the new numbers look different enough from the old
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ones that no one is too likely to casually mistake them for each other.
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I am finding new SPARCs running Solaris 2.4 getting about 15-20, and
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my 486 DX2-66 Compaq running Linux 1.3.45 got a 9.1. It got
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understandably poor scores on CPU and FPU benchmarks (a horrible
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1.8 on "double" and 1.3 on "fsdisk"); but made up for it by averaging
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over 20 on the OS-oriented benchmarks. The Pentium-75 running
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Linux gets about 20 (and it *still* runs Windows 3.1 slowly. Oh well).
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- It is difficult to get a modern compiler to even consider making
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dhry2 without registers, short of turning off *all* optimizations.
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This is also not a terribly meaningful test, even if it were possible,
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as noone compiles without registers nowadays. Replaced this benchmark
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with dhry2reg in the index, and dropped it out of usage in general as
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it is so hard to make a legitimate one.
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- fstime: this had some bugs when compiled on modern systems which return
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the number of bytes read/written for read(2)/write(2) calls. The code
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assumed that a negative return code was given for EOF, but most modern
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systems return 0 (certainly on SunOS 4, Solaris2, and Linux, which is
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what counts for me). The old code yielded wildly inflated read scores,
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would eat up tens of MB of disk space on fast systems, and yielded
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roughly 50% lower than normal copy scores than it should have.
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Also, it counted partial blocks *fully*; made it count the proportional
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part of the block which was actually finished.
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Made bigger and smaller variants of fstime which are designed to beat
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up the disk I/O and the buffer cache, respectively. Adjusted the
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sleeps so that they are short for short benchmarks.
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- Instead of 1,2,4, and 8-shell benchmarks, went to 1, 8, and 16 to
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give a broader range of information (and to run 1 fewer test).
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The only real problem with this is that not many iterations get
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done with 16 at a time on slow systems, so there are some significant
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rounding errors; 8 therefore still used for the benchmark. There is
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also the problem that the last (uncompleted) loop is counted as a full
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loop, so it is impossible to score below 1.0 lpm (which gave my laptop
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a break). Probably redesigning Shell to do each loop a bit more
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quickly (but with less intensity) would be a good idea.
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This benchmark appears to be very heavily influenced by the speed
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of the loader, by which shell is being used as /bin/sh, and by how
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well-compiled some of the common shell utilities like grep, sed, and
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sort are. With a consistent tool set it is also a good indicator of
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the bandwidth between main memory and the CPU (e.g. Pentia score about
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twice as high as 486es due to their 64-bit bus). Small, sometimes
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broken shells like "ash-linux" do particularly well here, while big,
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robust shells like bash do not.
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- "dc" is a somewhat iffy benchmark, because there are two versions of
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it floating around, one being small, very fast, and buggy, and one
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being more correct but slow. It was never in the index anyway.
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- Execl is a somewhat troubling benchmark in that it yields much higher
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scores if compiled statically. I frown on this practice because it
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distorts the scores away from reflecting how programs are really used
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(i.e. dynamically linked).
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- Arithoh is really more an indicator of the compiler quality than of
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the computer itself. For example, GCC 2.7.x with -O2 and a few extra
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options optimizes much of it away, resulting in about a 1200% boost
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to the score. Clearly not a good one for the index.
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I am still a bit unhappy with the variance in some of the benchmarks, most
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notably the fstime suite; and with how long it takes to run. But I think
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it gets significantly more reliable results than the older version in less
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time.
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If anyone has ideas on how to make these benchmarks faster, lower-variance,
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or more meaningful; or has nice, new, portable benchmarks to add, don't
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hesitate to e-mail me.
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David C Niemi <niemi@tux.org> 7 Dec 1995
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======================== May 91 ==========================
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This is version 3. This set of programs should be able to determine if
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your system is BSD or SysV. (It uses the output format of time (1)
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to see. If you have any problems, contact me (by email,
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preferably): ben@bytepb.byte.com
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---
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The document doc/bench.doc describes the basic flow of the
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benchmark system. The document doc/bench3.doc describes the major
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changes in design of this version. As a user of the benchmarks,
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you should understand some of the methods that have been
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implemented to generate loop counts:
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Tests that are compiled C code:
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The function wake_me(second, func) is included (from the file
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timeit.c). This function uses signal and alarm to set a countdown
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for the time request by the benchmark administration script
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(Run). As soon as the clock is started, the test is run with a
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counter keeping track of the number of loops that the test makes.
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When alarm sends its signal, the loop counter value is sent to stderr
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and the program terminates. Since the time resolution, signal
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trapping and other factors don't insure that the test is for the
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precise time that was requested, the test program is also run
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from the time (1) command. The real time value returned from time
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(1) is what is used in calculating the number of loops per second
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(or minute, depending on the test). As is obvious, there is some
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overhead time that is not taken into account, therefore the
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number of loops per second is not absolute. The overhead of the
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test starting and stopping and the signal and alarm calls is
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common to the overhead of real applications. If a program loads
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quickly, the number of loops per second increases; a phenomenon
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that favors systems that can load programs quickly. (Setting the
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sticky bit of the test programs is not considered fair play.)
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Test that use existing UNIX programs or shell scripts:
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The concept is the same as that of compiled tests, except the
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alarm and signal are contained in separate compiled program,
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looper (source is looper.c). Looper uses an execvp to invoke the
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test with its arguments. Here, the overhead includes the
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invocation and execution of looper.
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--
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The index numbers are generated from a baseline file that is in
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pgms/index.base. You can put tests that you wish in this file.
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All you need to do is take the results/log file from your
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baseline machine, edit out the comment and blank lines, and sort
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the result (vi/ex command: 1,$!sort). The sort in necessary
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because the process of generating the index report uses join (1).
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You can regenerate the reports by running "make report."
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--
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========================= Jan 90 =============================
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Tom Yager has joined the effort here at BYTE; he is responsible
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for many refinements in the UNIX benchmarks.
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The memory access tests have been deleted from the benchmarks.
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The file access tests have been reversed so that the test is run
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for a fixed time. The amount of data transfered (written, read,
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and copied) is the variable. !WARNING! This test can eat up a
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large hunk of disk space.
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The initial line of all shell scripts has been changed from the
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SCO and XENIX form (:) to the more standard form "#! /bin/sh".
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But different systems handle shell switching differently. Check
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the documentation on your system and find out how you are
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supposed to do it. Or, simpler yet, just run the benchmarks from
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the Bourne shell. (You may need to set SHELL=/bin/sh as well.)
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The options to Run have not been checked in a while. They may no
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longer function. Next time, I'll get back on them. There needs to
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be another option added (next time) that halts testing between
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each test. !WARNING! Some systems have caches that are not getting flushed
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before the next test or iteration is run. This can cause
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erroneous values.
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========================= Sept 89 =============================
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The database (db) programs now have a tuneable message queue space.
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queue space. The default set in the Run script is 1024 bytes.
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Other major changes are in the format of the times. We now show
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Arithmetic and Geometric mean and standard deviation for User
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Time, System Time, and Real Time. Generally, in reporting, we
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plan on using the Real Time values with the benchs run with one
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active user (the bench user). Comments and arguments are requested.
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contact: BIX bensmith or rick_g
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