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1package Benchmark;
2
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3use strict;
4
5
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6=head1 NAME
7
8a4f6ac2 8Benchmark - benchmark running times of Perl code
431d98c2 9
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10=head1 SYNOPSIS
11
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12 use Benchmark qw(:all) ;
13
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14 timethis ($count, "code");
15
523cc92b 16 # Use Perl code in strings...
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17 timethese($count, {
18 'Name1' => '...code1...',
19 'Name2' => '...code2...',
20 });
21
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22 # ... or use subroutine references.
23 timethese($count, {
24 'Name1' => sub { ...code1... },
25 'Name2' => sub { ...code2... },
26 });
27
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28 # cmpthese can be used both ways as well
29 cmpthese($count, {
30 'Name1' => '...code1...',
31 'Name2' => '...code2...',
32 });
33
34 cmpthese($count, {
35 'Name1' => sub { ...code1... },
36 'Name2' => sub { ...code2... },
37 });
38
39 # ...or in two stages
5f7d9242 40 $results = timethese($count,
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41 {
42 'Name1' => sub { ...code1... },
43 'Name2' => sub { ...code2... },
44 },
45 'none'
46 );
47 cmpthese( $results ) ;
48
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49 $t = timeit($count, '...other code...')
50 print "$count loops of other code took:",timestr($t),"\n";
51
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52 $t = countit($time, '...other code...')
53 $count = $t->iters ;
54 print "$count loops of other code took:",timestr($t),"\n";
55
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56 # enable hires wallclock timing if possible
57 use Benchmark ':hireswallclock';
58
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59=head1 DESCRIPTION
60
61The Benchmark module encapsulates a number of routines to help you
62figure out how long it takes to execute some code.
63
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64timethis - run a chunk of code several times
65
66timethese - run several chunks of code several times
67
68cmpthese - print results of timethese as a comparison chart
69
70timeit - run a chunk of code and see how long it goes
71
72countit - see how many times a chunk of code runs in a given time
73
74
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75=head2 Methods
76
77=over 10
78
79=item new
80
81Returns the current time. Example:
82
83 use Benchmark;
2b393bf4 84 $t0 = Benchmark->new;
f06db76b 85 # ... your code here ...
2b393bf4 86 $t1 = Benchmark->new;
f06db76b 87 $td = timediff($t1, $t0);
a24a9dfe 88 print "the code took:",timestr($td),"\n";
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89
90=item debug
91
92Enables or disable debugging by setting the C<$Benchmark::Debug> flag:
93
2b393bf4 94 Benchmark->debug(1);
f06db76b 95 $t = timeit(10, ' 5 ** $Global ');
2b393bf4 96 Benchmark->debug(0);
f06db76b 97
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98=item iters
99
100Returns the number of iterations.
101
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102=back
103
104=head2 Standard Exports
105
523cc92b 106The following routines will be exported into your namespace
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107if you use the Benchmark module:
108
109=over 10
110
111=item timeit(COUNT, CODE)
112
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113Arguments: COUNT is the number of times to run the loop, and CODE is
114the code to run. CODE may be either a code reference or a string to
115be eval'd; either way it will be run in the caller's package.
116
117Returns: a Benchmark object.
118
119=item timethis ( COUNT, CODE, [ TITLE, [ STYLE ]] )
120
121Time COUNT iterations of CODE. CODE may be a string to eval or a
122code reference; either way the CODE will run in the caller's package.
123Results will be printed to STDOUT as TITLE followed by the times.
124TITLE defaults to "timethis COUNT" if none is provided. STYLE
125determines the format of the output, as described for timestr() below.
126
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127The COUNT can be zero or negative: this means the I<minimum number of
128CPU seconds> to run. A zero signifies the default of 3 seconds. For
129example to run at least for 10 seconds:
130
131 timethis(-10, $code)
132
133or to run two pieces of code tests for at least 3 seconds:
134
135 timethese(0, { test1 => '...', test2 => '...'})
136
137CPU seconds is, in UNIX terms, the user time plus the system time of
138the process itself, as opposed to the real (wallclock) time and the
139time spent by the child processes. Less than 0.1 seconds is not
140accepted (-0.01 as the count, for example, will cause a fatal runtime
141exception).
142
143Note that the CPU seconds is the B<minimum> time: CPU scheduling and
144other operating system factors may complicate the attempt so that a
145little bit more time is spent. The benchmark output will, however,
146also tell the number of C<$code> runs/second, which should be a more
147interesting number than the actually spent seconds.
148
149Returns a Benchmark object.
150
523cc92b 151=item timethese ( COUNT, CODEHASHREF, [ STYLE ] )
f06db76b 152
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153The CODEHASHREF is a reference to a hash containing names as keys
154and either a string to eval or a code reference for each value.
155For each (KEY, VALUE) pair in the CODEHASHREF, this routine will
156call
f06db76b 157
523cc92b 158 timethis(COUNT, VALUE, KEY, STYLE)
f06db76b 159
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160The routines are called in string comparison order of KEY.
161
162The COUNT can be zero or negative, see timethis().
6ee623d5 163
72372890 164Returns a hash reference of Benchmark objects, keyed by name.
3c6312e9 165
523cc92b 166=item timediff ( T1, T2 )
f06db76b 167
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168Returns the difference between two Benchmark times as a Benchmark
169object suitable for passing to timestr().
f06db76b 170
6ee623d5 171=item timestr ( TIMEDIFF, [ STYLE, [ FORMAT ] ] )
f06db76b 172
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173Returns a string that formats the times in the TIMEDIFF object in
174the requested STYLE. TIMEDIFF is expected to be a Benchmark object
175similar to that returned by timediff().
176
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177STYLE can be any of 'all', 'none', 'noc', 'nop' or 'auto'. 'all' shows
178each of the 5 times available ('wallclock' time, user time, system time,
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179user time of children, and system time of children). 'noc' shows all
180except the two children times. 'nop' shows only wallclock and the
181two children times. 'auto' (the default) will act as 'all' unless
182the children times are both zero, in which case it acts as 'noc'.
3c6312e9 183'none' prevents output.
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184
185FORMAT is the L<printf(3)>-style format specifier (without the
186leading '%') to use to print the times. It defaults to '5.2f'.
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187
188=back
189
190=head2 Optional Exports
191
192The following routines will be exported into your namespace
193if you specifically ask that they be imported:
194
195=over 10
196
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197=item clearcache ( COUNT )
198
199Clear the cached time for COUNT rounds of the null loop.
200
201=item clearallcache ( )
f06db76b 202
523cc92b 203Clear all cached times.
f06db76b 204
8962dfd6 205=item cmpthese ( COUNT, CODEHASHREF, [ STYLE ] )
ac8eabc1 206
d1083c7a 207=item cmpthese ( RESULTSHASHREF, [ STYLE ] )
ac8eabc1 208
d1083c7a 209Optionally calls timethese(), then outputs comparison chart. This:
ac8eabc1 210
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211 cmpthese( -1, { a => "++\$i", b => "\$i *= 2" } ) ;
212
213outputs a chart like:
214
215 Rate b a
216 b 2831802/s -- -61%
217 a 7208959/s 155% --
218
219This chart is sorted from slowest to fastest, and shows the percent speed
220difference between each pair of tests.
221
3b46207f 222C<cmpthese> can also be passed the data structure that timethese() returns:
d1083c7a 223
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224 $results = timethese( -1,
225 { a => "++\$i", b => "\$i *= 2" } ) ;
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226 cmpthese( $results );
227
d1083c7a 228in case you want to see both sets of results.
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229If the first argument is an unblessed hash reference,
230that is RESULTSHASHREF; otherwise that is COUNT.
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231
232Returns a reference to an ARRAY of rows, each row is an ARRAY of cells from the
233above chart, including labels. This:
234
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235 my $rows = cmpthese( -1,
236 { a => '++$i', b => '$i *= 2' }, "none" );
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237
238returns a data structure like:
239
240 [
241 [ '', 'Rate', 'b', 'a' ],
242 [ 'b', '2885232/s', '--', '-59%' ],
243 [ 'a', '7099126/s', '146%', '--' ],
244 ]
245
246B<NOTE>: This result value differs from previous versions, which returned
247the C<timethese()> result structure. If you want that, just use the two
248statement C<timethese>...C<cmpthese> idiom shown above.
249
98dc9551 250Incidentally, note the variance in the result values between the two examples;
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251this is typical of benchmarking. If this were a real benchmark, you would
252probably want to run a lot more iterations.
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253
254=item countit(TIME, CODE)
255
256Arguments: TIME is the minimum length of time to run CODE for, and CODE is
257the code to run. CODE may be either a code reference or a string to
258be eval'd; either way it will be run in the caller's package.
259
260TIME is I<not> negative. countit() will run the loop many times to
261calculate the speed of CODE before running it for TIME. The actual
262time run for will usually be greater than TIME due to system clock
263resolution, so it's best to look at the number of iterations divided
264by the times that you are concerned with, not just the iterations.
265
266Returns: a Benchmark object.
267
523cc92b 268=item disablecache ( )
f06db76b 269
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270Disable caching of timings for the null loop. This will force Benchmark
271to recalculate these timings for each new piece of code timed.
272
273=item enablecache ( )
274
275Enable caching of timings for the null loop. The time taken for COUNT
276rounds of the null loop will be calculated only once for each
277different COUNT used.
f06db76b 278
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279=item timesum ( T1, T2 )
280
281Returns the sum of two Benchmark times as a Benchmark object suitable
282for passing to timestr().
283
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284=back
285
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286=head2 :hireswallclock
287
288If the Time::HiRes module has been installed, you can specify the
289special tag C<:hireswallclock> for Benchmark (if Time::HiRes is not
290available, the tag will be silently ignored). This tag will cause the
291wallclock time to be measured in microseconds, instead of integer
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292seconds. Note though that the speed computations are still conducted
293in CPU time, not wallclock time.
e3d6de9a 294
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295=head1 Benchmark Object
296
297Many of the functions in this module return a Benchmark object,
298or in the case of C<timethese()>, a reference to a hash, the values of
299which are Benchmark objects. This is useful if you want to store or
300further process results from Benchmark functions.
301
302Internally the Benchmark object holds timing values,
303described in L</"NOTES"> below.
304The following methods can be used to access them:
305
306=over 4
307
308=item cpu_p
309
310Total CPU (User + System) of the main (parent) process.
311
312=item cpu_c
313
314Total CPU (User + System) of any children processes.
315
316=item cpu_a
317
318Total CPU of parent and any children processes.
319
320=item real
321
322Real elapsed time "wallclock seconds".
323
324=item iters
325
326Number of iterations run.
327
328=back
329
330The following illustrates use of the Benchmark object:
331
332 $result = timethis(100000, sub { ... });
333 print "total CPU = ", $result->cpu_a, "\n";
334
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335=head1 NOTES
336
337The data is stored as a list of values from the time and times
523cc92b 338functions:
f06db76b 339
431d98c2 340 ($real, $user, $system, $children_user, $children_system, $iters)
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341
342in seconds for the whole loop (not divided by the number of rounds).
343
344The timing is done using time(3) and times(3).
345
346Code is executed in the caller's package.
347
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348The time of the null loop (a loop with the same
349number of rounds but empty loop body) is subtracted
350from the time of the real loop.
351
3c6312e9 352The null loop times can be cached, the key being the
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353number of rounds. The caching can be controlled using
354calls like these:
355
523cc92b 356 clearcache($key);
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357 clearallcache();
358
523cc92b 359 disablecache();
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360 enablecache();
361
3c6312e9 362Caching is off by default, as it can (usually slightly) decrease
98dc9551 363accuracy and does not usually noticeably affect runtimes.
3c6312e9 364
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365=head1 EXAMPLES
366
367For example,
368
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369 use Benchmark qw( cmpthese ) ;
370 $x = 3;
371 cmpthese( -5, {
372 a => sub{$x*$x},
373 b => sub{$x**2},
374 } );
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375
376outputs something like this:
377
378 Benchmark: running a, b, each for at least 5 CPU seconds...
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379 Rate b a
380 b 1559428/s -- -62%
381 a 4152037/s 166% --
382
54e82ce5 383
5f7d9242 384while
54e82ce5 385
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386 use Benchmark qw( timethese cmpthese ) ;
387 $x = 3;
388 $r = timethese( -5, {
389 a => sub{$x*$x},
390 b => sub{$x**2},
391 } );
392 cmpthese $r;
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393
394outputs something like this:
395
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396 Benchmark: running a, b, each for at least 5 CPU seconds...
397 a: 10 wallclock secs ( 5.14 usr + 0.13 sys = 5.27 CPU) @ 3835055.60/s (n=20210743)
398 b: 5 wallclock secs ( 5.41 usr + 0.00 sys = 5.41 CPU) @ 1574944.92/s (n=8520452)
399 Rate b a
400 b 1574945/s -- -59%
401 a 3835056/s 144% --
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402
403
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404=head1 INHERITANCE
405
406Benchmark inherits from no other class, except of course
c49582c3 407from Exporter.
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408
409=head1 CAVEATS
410
80eab818 411Comparing eval'd strings with code references will give you
431d98c2 412inaccurate results: a code reference will show a slightly slower
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413execution time than the equivalent eval'd string.
414
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415The real time timing is done using time(2) and
416the granularity is therefore only one second.
417
418Short tests may produce negative figures because perl
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419can appear to take longer to execute the empty loop
420than a short test; try:
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421
422 timethis(100,'1');
423
424The system time of the null loop might be slightly
425more than the system time of the loop with the actual
a24a9dfe 426code and therefore the difference might end up being E<lt> 0.
f06db76b 427
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428=head1 SEE ALSO
429
c9dab4e9 430L<Devel::NYTProf> - a Perl code profiler
8a4f6ac2 431
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432=head1 AUTHORS
433
5aabfad6 434Jarkko Hietaniemi <F<jhi@iki.fi>>, Tim Bunce <F<Tim.Bunce@ig.co.uk>>
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435
436=head1 MODIFICATION HISTORY
437
438September 8th, 1994; by Tim Bunce.
439
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440March 28th, 1997; by Hugo van der Sanden: added support for code
441references and the already documented 'debug' method; revamped
442documentation.
f06db76b 443
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444April 04-07th, 1997: by Jarkko Hietaniemi, added the run-for-some-time
445functionality.
446
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447September, 1999; by Barrie Slaymaker: math fixes and accuracy and
448efficiency tweaks. Added cmpthese(). A result is now returned from
431d98c2 449timethese(). Exposed countit() (was runfor()).
3c6312e9 450
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451December, 2001; by Nicholas Clark: make timestr() recognise the style 'none'
452and return an empty string. If cmpthese is calling timethese, make it pass the
453style in. (so that 'none' will suppress output). Make sub new dump its
454debugging output to STDERR, to be consistent with everything else.
455All bugs found while writing a regression test.
456
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457September, 2002; by Jarkko Hietaniemi: add ':hireswallclock' special tag.
458
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459February, 2004; by Chia-liang Kao: make cmpthese and timestr use time
460statistics for children instead of parent when the style is 'nop'.
461
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462November, 2007; by Christophe Grosjean: make cmpthese and timestr compute
463time consistently with style argument, default is 'all' not 'noc' any more.
464
523cc92b 465=cut
a0d0e21e 466
3f943bd9 467# evaluate something in a clean lexical environment
53aa2791 468sub _doeval { no strict; eval shift }
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469
470#
471# put any lexicals at file scope AFTER here
472#
473
4aa0a1f7 474use Carp;
a0d0e21e 475use Exporter;
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476
477our(@ISA, @EXPORT, @EXPORT_OK, %EXPORT_TAGS, $VERSION);
478
479@ISA=qw(Exporter);
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480@EXPORT=qw(timeit timethis timethese timediff timestr);
481@EXPORT_OK=qw(timesum cmpthese countit
482 clearcache clearallcache disablecache enablecache);
f36484b0 483%EXPORT_TAGS=( all => [ @EXPORT, @EXPORT_OK ] ) ;
a0d0e21e 484
e5bb0a1f 485$VERSION = 1.22;
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486
487# --- ':hireswallclock' special handling
488
489my $hirestime;
490
491sub mytime () { time }
8a4f6ac2 492
359218de 493init();
a0d0e21e 494
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495sub BEGIN {
496 if (eval 'require Time::HiRes') {
497 import Time::HiRes qw(time);
498 $hirestime = \&Time::HiRes::time;
499 }
500}
501
502sub import {
503 my $class = shift;
504 if (grep { $_ eq ":hireswallclock" } @_) {
505 @_ = grep { $_ ne ":hireswallclock" } @_;
92dfaf87 506 local $^W=0;
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507 *mytime = $hirestime if defined $hirestime;
508 }
509 Benchmark->export_to_level(1, $class, @_);
510}
511
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512our($Debug, $Min_Count, $Min_CPU, $Default_Format, $Default_Style,
513 %_Usage, %Cache, $Do_Cache);
514
a0d0e21e 515sub init {
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516 $Debug = 0;
517 $Min_Count = 4;
518 $Min_CPU = 0.4;
519 $Default_Format = '5.2f';
520 $Default_Style = 'auto';
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521 # The cache can cause a slight loss of sys time accuracy. If a
522 # user does many tests (>10) with *very* large counts (>10000)
523 # or works on a very slow machine the cache may be useful.
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524 disablecache();
525 clearallcache();
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526}
527
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528sub debug { $Debug = ($_[1] != 0); }
529
5f7d9242 530sub usage {
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531 my $calling_sub = (caller(1))[3];
532 $calling_sub =~ s/^Benchmark:://;
533 return $_Usage{$calling_sub} || '';
534}
535
bba8fca5 536# The cache needs two branches: 's' for strings and 'c' for code. The
359218de 537# empty loop is different in these two cases.
53aa2791 538
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539$_Usage{clearcache} = <<'USAGE';
540usage: clearcache($count);
541USAGE
542
5f7d9242 543sub clearcache {
f695f0e6 544 die usage unless @_ == 1;
5f7d9242 545 delete $Cache{"$_[0]c"}; delete $Cache{"$_[0]s"};
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546}
547
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548$_Usage{clearallcache} = <<'USAGE';
549usage: clearallcache();
550USAGE
551
5f7d9242 552sub clearallcache {
f695f0e6 553 die usage if @_;
5f7d9242 554 %Cache = ();
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555}
556
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557$_Usage{enablecache} = <<'USAGE';
558usage: enablecache();
559USAGE
560
561sub enablecache {
562 die usage if @_;
5f7d9242 563 $Do_Cache = 1;
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564}
565
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566$_Usage{disablecache} = <<'USAGE';
567usage: disablecache();
568USAGE
569
570sub disablecache {
571 die usage if @_;
5f7d9242 572 $Do_Cache = 0;
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573}
574
a0d0e21e 575
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576# --- Functions to process the 'time' data type
577
e3d6de9a 578sub new { my @t = (mytime, times, @_ == 2 ? $_[1] : 0);
53aa2791 579 print STDERR "new=@t\n" if $Debug;
6ee623d5 580 bless \@t; }
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581
582sub cpu_p { my($r,$pu,$ps,$cu,$cs) = @{$_[0]}; $pu+$ps ; }
583sub cpu_c { my($r,$pu,$ps,$cu,$cs) = @{$_[0]}; $cu+$cs ; }
584sub cpu_a { my($r,$pu,$ps,$cu,$cs) = @{$_[0]}; $pu+$ps+$cu+$cs ; }
585sub real { my($r,$pu,$ps,$cu,$cs) = @{$_[0]}; $r ; }
431d98c2 586sub iters { $_[0]->[5] ; }
a0d0e21e 587
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588# return the sum of various times: which ones depending on $style
589
590sub elapsed {
591 my ($self, $style) = @_;
592 $style = "" unless defined $style;
593
594 return $self->cpu_c if $style eq 'nop';
595 return $self->cpu_p if $style eq 'noc';
596 return $self->cpu_a;
597}
598
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599
600$_Usage{timediff} = <<'USAGE';
601usage: $result_diff = timediff($result1, $result2);
602USAGE
603
523cc92b 604sub timediff {
a0d0e21e 605 my($a, $b) = @_;
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606
607 die usage unless ref $a and ref $b;
608
523cc92b 609 my @r;
3f943bd9 610 for (my $i=0; $i < @$a; ++$i) {
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611 push(@r, $a->[$i] - $b->[$i]);
612 }
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613 #die "Bad timediff(): ($r[1] + $r[2]) <= 0 (@$a[1,2]|@$b[1,2])\n"
614 # if ($r[1] + $r[2]) < 0;
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615 bless \@r;
616}
617
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618$_Usage{timesum} = <<'USAGE';
619usage: $sum = timesum($result1, $result2);
620USAGE
621
705cc255 622sub timesum {
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623 my($a, $b) = @_;
624
625 die usage unless ref $a and ref $b;
626
627 my @r;
628 for (my $i=0; $i < @$a; ++$i) {
705cc255 629 push(@r, $a->[$i] + $b->[$i]);
53aa2791
MS
630 }
631 bless \@r;
705cc255
TB
632}
633
53aa2791
MS
634
635$_Usage{timestr} = <<'USAGE';
636usage: $formatted_result = timestr($result1);
637USAGE
638
523cc92b 639sub timestr {
a0d0e21e 640 my($tr, $style, $f) = @_;
53aa2791
MS
641
642 die usage unless ref $tr;
643
523cc92b 644 my @t = @$tr;
6ee623d5
GS
645 warn "bad time value (@t)" unless @t==6;
646 my($r, $pu, $ps, $cu, $cs, $n) = @t;
ce9550df 647 my($pt, $ct, $tt) = ($tr->cpu_p, $tr->cpu_c, $tr->cpu_a);
53aa2791 648 $f = $Default_Format unless defined $f;
a0d0e21e 649 # format a time in the required style, other formats may be added here
53aa2791 650 $style ||= $Default_Style;
0e74ff8e 651 return '' if $style eq 'none';
523cc92b
CS
652 $style = ($ct>0) ? 'all' : 'noc' if $style eq 'auto';
653 my $s = "@t $style"; # default for unknown style
e3d6de9a 654 my $w = $hirestime ? "%2g" : "%2d";
ebfe4dae 655 $s = sprintf("$w wallclock secs (%$f usr %$f sys + %$f cusr %$f csys = %$f CPU)",
ce9550df 656 $r,$pu,$ps,$cu,$cs,$tt) if $style eq 'all';
ebfe4dae 657 $s = sprintf("$w wallclock secs (%$f usr + %$f sys = %$f CPU)",
7be077a2 658 $r,$pu,$ps,$pt) if $style eq 'noc';
ebfe4dae 659 $s = sprintf("$w wallclock secs (%$f cusr + %$f csys = %$f CPU)",
7be077a2 660 $r,$cu,$cs,$ct) if $style eq 'nop';
babeed27 661 my $elapsed = $tr->elapsed($style);
ebfe4dae 662 $s .= sprintf(" @ %$f/s (n=$n)",$n/($elapsed)) if $n && $elapsed;
a0d0e21e
LW
663 $s;
664}
523cc92b
CS
665
666sub timedebug {
a0d0e21e 667 my($msg, $t) = @_;
53aa2791 668 print STDERR "$msg",timestr($t),"\n" if $Debug;
a0d0e21e
LW
669}
670
a0d0e21e
LW
671# --- Functions implementing low-level support for timing loops
672
53aa2791
MS
673$_Usage{runloop} = <<'USAGE';
674usage: runloop($number, [$string | $coderef])
675USAGE
676
a0d0e21e
LW
677sub runloop {
678 my($n, $c) = @_;
4aa0a1f7
AD
679
680 $n+=0; # force numeric now, so garbage won't creep into the eval
523cc92b 681 croak "negative loopcount $n" if $n<0;
53aa2791 682 confess usage unless defined $c;
a0d0e21e
LW
683 my($t0, $t1, $td); # before, after, difference
684
685 # find package of caller so we can execute code there
523cc92b
CS
686 my($curpack) = caller(0);
687 my($i, $pack)= 0;
a0d0e21e
LW
688 while (($pack) = caller(++$i)) {
689 last if $pack ne $curpack;
690 }
691
3f943bd9
GS
692 my ($subcode, $subref);
693 if (ref $c eq 'CODE') {
694 $subcode = "sub { for (1 .. $n) { local \$_; package $pack; &\$c; } }";
695 $subref = eval $subcode;
696 }
697 else {
698 $subcode = "sub { for (1 .. $n) { local \$_; package $pack; $c;} }";
699 $subref = _doeval($subcode);
700 }
4aa0a1f7 701 croak "runloop unable to compile '$c': $@\ncode: $subcode\n" if $@;
53aa2791 702 print STDERR "runloop $n '$subcode'\n" if $Debug;
a0d0e21e 703
5f7d9242 704 # Wait for the user timer to tick. This makes the error range more like
3c6312e9
BS
705 # -0.01, +0. If we don't wait, then it's more like -0.01, +0.01. This
706 # may not seem important, but it significantly reduces the chances of
707 # getting a too low initial $n in the initial, 'find the minimum' loop
431d98c2 708 # in &countit. This, in turn, can reduce the number of calls to
bba8fca5 709 # &runloop a lot, and thus reduce additive errors.
78462dd3
DM
710 #
711 # Note that its possible for the act of reading the system clock to
712 # burn lots of system CPU while we burn very little user clock in the
713 # busy loop, which can cause the loop to run for a very long wall time.
714 # So gradually ramp up the duration of the loop. See RT #122003
715 #
bba8fca5 716 my $tbase = Benchmark->new(0)->[1];
78462dd3
DM
717 my $limit = 1;
718 while ( ( $t0 = Benchmark->new(0) )->[1] == $tbase ) {
719 for (my $i=0; $i < $limit; $i++) { my $x = $i / 1.5 } # burn user CPU
720 $limit *= 1.1;
721 }
f265d4df 722 $subref->();
6ee623d5 723 $t1 = Benchmark->new($n);
a0d0e21e 724 $td = &timediff($t1, $t0);
a0d0e21e
LW
725 timedebug("runloop:",$td);
726 $td;
727}
728
53aa2791
MS
729$_Usage{timeit} = <<'USAGE';
730usage: $result = timeit($count, 'code' ); or
731 $result = timeit($count, sub { code } );
732USAGE
a0d0e21e
LW
733
734sub timeit {
735 my($n, $code) = @_;
736 my($wn, $wc, $wd);
737
53aa2791
MS
738 die usage unless defined $code and
739 (!ref $code or ref $code eq 'CODE');
740
741 printf STDERR "timeit $n $code\n" if $Debug;
3c6312e9 742 my $cache_key = $n . ( ref( $code ) ? 'c' : 's' );
53aa2791
MS
743 if ($Do_Cache && exists $Cache{$cache_key} ) {
744 $wn = $Cache{$cache_key};
523cc92b 745 } else {
6bf773bc 746 $wn = &runloop($n, ref( $code ) ? sub { } : '' );
3c6312e9
BS
747 # Can't let our baseline have any iterations, or they get subtracted
748 # out of the result.
749 $wn->[5] = 0;
53aa2791 750 $Cache{$cache_key} = $wn;
a0d0e21e
LW
751 }
752
753 $wc = &runloop($n, $code);
754
755 $wd = timediff($wc, $wn);
a0d0e21e
LW
756 timedebug("timeit: ",$wc);
757 timedebug(" - ",$wn);
758 timedebug(" = ",$wd);
759
760 $wd;
761}
762
6ee623d5
GS
763
764my $default_for = 3;
765my $min_for = 0.1;
766
3c6312e9 767
53aa2791
MS
768$_Usage{countit} = <<'USAGE';
769usage: $result = countit($time, 'code' ); or
770 $result = countit($time, sub { code } );
771USAGE
772
431d98c2
BS
773sub countit {
774 my ( $tmax, $code ) = @_;
6ee623d5 775
53aa2791
MS
776 die usage unless @_;
777
6ee623d5
GS
778 if ( not defined $tmax or $tmax == 0 ) {
779 $tmax = $default_for;
780 } elsif ( $tmax < 0 ) {
781 $tmax = -$tmax;
782 }
783
431d98c2 784 die "countit($tmax, ...): timelimit cannot be less than $min_for.\n"
6ee623d5
GS
785 if $tmax < $min_for;
786
3c6312e9 787 my ($n, $tc);
6ee623d5 788
bba8fca5 789 # First find the minimum $n that gives a significant timing.
e68ec53f 790 my $zeros=0;
3c6312e9 791 for ($n = 1; ; $n *= 2 ) {
24755e36 792 my $t0 = Benchmark->new(0);
3c6312e9 793 my $td = timeit($n, $code);
24755e36 794 my $t1 = Benchmark->new(0);
3c6312e9 795 $tc = $td->[1] + $td->[2];
e68ec53f 796 if ( $tc <= 0 and $n > 1024 ) {
24755e36
DM
797 my $d = timediff($t1, $t0);
798 # note that $d is the total CPU time taken to call timeit(),
799 # while $tc is is difference in CPU secs between the empty run
800 # and the code run. If the code is trivial, its possible
801 # for $d to get large while $tc is still zero (or slightly
802 # negative). Bail out once timeit() starts taking more than a
803 # few seconds without noticeable difference.
804 if ($d->[1] + $d->[2] > 8
805 || ++$zeros > 16)
806 {
807 die "Timing is consistently zero in estimation loop, cannot benchmark. N=$n\n";
808 }
e68ec53f
YO
809 } else {
810 $zeros = 0;
811 }
3c6312e9
BS
812 last if $tc > 0.1;
813 }
6ee623d5 814
3c6312e9
BS
815 my $nmin = $n;
816
817 # Get $n high enough that we can guess the final $n with some accuracy.
818 my $tpra = 0.1 * $tmax; # Target/time practice.
819 while ( $tc < $tpra ) {
820 # The 5% fudge is to keep us from iterating again all
821 # that often (this speeds overall responsiveness when $tmax is big
5f7d9242 822 # and we guess a little low). This does not noticeably affect
98dc9551 823 # accuracy since we're not counting these times.
3c6312e9
BS
824 $n = int( $tpra * 1.05 * $n / $tc ); # Linear approximation.
825 my $td = timeit($n, $code);
c5d57293
A
826 my $new_tc = $td->[1] + $td->[2];
827 # Make sure we are making progress.
828 $tc = $new_tc > 1.2 * $tc ? $new_tc : 1.2 * $tc;
6ee623d5
GS
829 }
830
3c6312e9
BS
831 # Now, do the 'for real' timing(s), repeating until we exceed
832 # the max.
833 my $ntot = 0;
834 my $rtot = 0;
835 my $utot = 0.0;
836 my $stot = 0.0;
837 my $cutot = 0.0;
838 my $cstot = 0.0;
839 my $ttot = 0.0;
840
841 # The 5% fudge is because $n is often a few % low even for routines
842 # with stable times and avoiding extra timeit()s is nice for
843 # accuracy's sake.
844 $n = int( $n * ( 1.05 * $tmax / $tc ) );
e68ec53f 845 $zeros=0;
3c6312e9
BS
846 while () {
847 my $td = timeit($n, $code);
848 $ntot += $n;
849 $rtot += $td->[0];
850 $utot += $td->[1];
851 $stot += $td->[2];
6ee623d5
GS
852 $cutot += $td->[3];
853 $cstot += $td->[4];
3c6312e9
BS
854 $ttot = $utot + $stot;
855 last if $ttot >= $tmax;
e68ec53f
YO
856 if ( $ttot <= 0 ) {
857 ++$zeros > 16
858 and die "Timing is consistently zero, cannot benchmark. N=$n\n";
859 } else {
860 $zeros = 0;
861 }
c5d57293 862 $ttot = 0.01 if $ttot < 0.01;
3c6312e9 863 my $r = $tmax / $ttot - 1; # Linear approximation.
bba8fca5 864 $n = int( $r * $ntot );
6ee623d5 865 $n = $nmin if $n < $nmin;
6ee623d5
GS
866 }
867
868 return bless [ $rtot, $utot, $stot, $cutot, $cstot, $ntot ];
869}
870
a0d0e21e
LW
871# --- Functions implementing high-level time-then-print utilities
872
6ee623d5
GS
873sub n_to_for {
874 my $n = shift;
875 return $n == 0 ? $default_for : $n < 0 ? -$n : undef;
876}
877
53aa2791
MS
878$_Usage{timethis} = <<'USAGE';
879usage: $result = timethis($time, 'code' ); or
880 $result = timethis($time, sub { code } );
881USAGE
882
a0d0e21e
LW
883sub timethis{
884 my($n, $code, $title, $style) = @_;
53aa2791
MS
885 my($t, $forn);
886
887 die usage unless defined $code and
888 (!ref $code or ref $code eq 'CODE');
6ee623d5
GS
889
890 if ( $n > 0 ) {
891 croak "non-integer loopcount $n, stopped" if int($n)<$n;
892 $t = timeit($n, $code);
893 $title = "timethis $n" unless defined $title;
894 } else {
53aa2791 895 my $fort = n_to_for( $n );
431d98c2 896 $t = countit( $fort, $code );
6ee623d5
GS
897 $title = "timethis for $fort" unless defined $title;
898 $forn = $t->[-1];
899 }
523cc92b 900 local $| = 1;
523cc92b 901 $style = "" unless defined $style;
3c6312e9 902 printf("%10s: ", $title) unless $style eq 'none';
53aa2791 903 print timestr($t, $style, $Default_Format),"\n" unless $style eq 'none';
6ee623d5
GS
904
905 $n = $forn if defined $forn;
523cc92b 906
8dddc156
DM
907 if ($t->elapsed($style) < 0) {
908 # due to clock granularity and variable CPU speed and load,
909 # on quick code with a small number of loops, it's possible for
910 # the empty loop to appear to take longer than the real loop
e5bb0a1f 911 # (e.g. 1 tick versus 0 ticks). This leads to a negative elapsed
8dddc156
DM
912 # time. In this case, floor it at zero, to stop bizarre results.
913 print " (warning: too few iterations for a reliable count)\n";
914 $t->[$_] = 0 for 1..4;
915 }
916
a0d0e21e
LW
917 # A conservative warning to spot very silly tests.
918 # Don't assume that your benchmark is ok simply because
919 # you don't get this warning!
a2656c4a 920 print " (warning: too few iterations for a reliable count)\n"
53aa2791 921 if $n < $Min_Count
a0d0e21e 922 || ($t->real < 1 && $n < 1000)
53aa2791 923 || $t->cpu_a < $Min_CPU;
a0d0e21e
LW
924 $t;
925}
926
53aa2791
MS
927
928$_Usage{timethese} = <<'USAGE';
929usage: timethese($count, { Name1 => 'code1', ... }); or
930 timethese($count, { Name1 => sub { code1 }, ... });
931USAGE
932
a0d0e21e
LW
933sub timethese{
934 my($n, $alt, $style) = @_;
53aa2791
MS
935 die usage unless ref $alt eq 'HASH';
936
523cc92b
CS
937 my @names = sort keys %$alt;
938 $style = "" unless defined $style;
3c6312e9 939 print "Benchmark: " unless $style eq 'none';
6ee623d5
GS
940 if ( $n > 0 ) {
941 croak "non-integer loopcount $n, stopped" if int($n)<$n;
3c6312e9 942 print "timing $n iterations of" unless $style eq 'none';
6ee623d5 943 } else {
3c6312e9 944 print "running" unless $style eq 'none';
6ee623d5 945 }
3c6312e9 946 print " ", join(', ',@names) unless $style eq 'none';
6ee623d5
GS
947 unless ( $n > 0 ) {
948 my $for = n_to_for( $n );
df7779cf
T
949 print ", each" if $n > 1 && $style ne 'none';
950 print " for at least $for CPU seconds" unless $style eq 'none';
6ee623d5 951 }
3c6312e9 952 print "...\n" unless $style eq 'none';
523cc92b
CS
953
954 # we could save the results in an array and produce a summary here
a0d0e21e 955 # sum, min, max, avg etc etc
3c6312e9 956 my %results;
4dbb2df9 957 foreach my $name (@names) {
3c6312e9 958 $results{$name} = timethis ($n, $alt -> {$name}, $name, $style);
4dbb2df9 959 }
3c6312e9
BS
960
961 return \%results;
a0d0e21e
LW
962}
963
53aa2791
MS
964
965$_Usage{cmpthese} = <<'USAGE';
966usage: cmpthese($count, { Name1 => 'code1', ... }); or
967 cmpthese($count, { Name1 => sub { code1 }, ... }); or
968 cmpthese($result, $style);
969USAGE
970
3c6312e9 971sub cmpthese{
53aa2791
MS
972 my ($results, $style);
973
72372890
TS
974 # $count can be a blessed object.
975 if ( ref $_[0] eq 'HASH' ) {
53aa2791
MS
976 ($results, $style) = @_;
977 }
978 else {
979 my($count, $code) = @_[0,1];
980 $style = $_[2] if defined $_[2];
981
982 die usage unless ref $code eq 'HASH';
983
984 $results = timethese($count, $code, ($style || "none"));
985 }
3c6312e9 986
d1083c7a 987 $style = "" unless defined $style;
3c6312e9
BS
988
989 # Flatten in to an array of arrays with the name as the first field
990 my @vals = map{ [ $_, @{$results->{$_}} ] } keys %$results;
991
992 for (@vals) {
babeed27
DM
993 # recreate the pre-flattened Benchmark object
994 my $tmp_bm = bless [ @{$_}[1..$#$_] ];
995 my $elapsed = $tmp_bm->elapsed($style);
3c6312e9
BS
996 # The epsilon fudge here is to prevent div by 0. Since clock
997 # resolutions are much larger, it's below the noise floor.
ebfe4dae 998 my $rate = $_->[6]/(($elapsed)+0.000000000000001);
3c6312e9
BS
999 $_->[7] = $rate;
1000 }
1001
1002 # Sort by rate
1003 @vals = sort { $a->[7] <=> $b->[7] } @vals;
1004
1005 # If more than half of the rates are greater than one...
d598cef2 1006 my $display_as_rate = @vals ? ($vals[$#vals>>1]->[7] > 1) : 0;
3c6312e9
BS
1007
1008 my @rows;
1009 my @col_widths;
1010
5f7d9242
DS
1011 my @top_row = (
1012 '',
1013 $display_as_rate ? 'Rate' : 's/iter',
1014 map { $_->[0] } @vals
3c6312e9
BS
1015 );
1016
1017 push @rows, \@top_row;
1018 @col_widths = map { length( $_ ) } @top_row;
1019
1020 # Build the data rows
1021 # We leave the last column in even though it never has any data. Perhaps
1022 # it should go away. Also, perhaps a style for a single column of
1023 # percentages might be nice.
1024 for my $row_val ( @vals ) {
1025 my @row;
1026
1027 # Column 0 = test name
1028 push @row, $row_val->[0];
1029 $col_widths[0] = length( $row_val->[0] )
1030 if length( $row_val->[0] ) > $col_widths[0];
1031
1032 # Column 1 = performance
1033 my $row_rate = $row_val->[7];
1034
1035 # We assume that we'll never get a 0 rate.
53aa2791 1036 my $rate = $display_as_rate ? $row_rate : 1 / $row_rate;
3c6312e9
BS
1037
1038 # Only give a few decimal places before switching to sci. notation,
1039 # since the results aren't usually that accurate anyway.
5f7d9242
DS
1040 my $format =
1041 $rate >= 100 ?
1042 "%0.0f" :
53aa2791 1043 $rate >= 10 ?
3c6312e9 1044 "%0.1f" :
53aa2791 1045 $rate >= 1 ?
3c6312e9 1046 "%0.2f" :
53aa2791 1047 $rate >= 0.1 ?
3c6312e9
BS
1048 "%0.3f" :
1049 "%0.2e";
1050
1051 $format .= "/s"
1052 if $display_as_rate;
53aa2791
MS
1053
1054 my $formatted_rate = sprintf( $format, $rate );
1055 push @row, $formatted_rate;
1056 $col_widths[1] = length( $formatted_rate )
1057 if length( $formatted_rate ) > $col_widths[1];
3c6312e9
BS
1058
1059 # Columns 2..N = performance ratios
1060 my $skip_rest = 0;
1061 for ( my $col_num = 0 ; $col_num < @vals ; ++$col_num ) {
1062 my $col_val = $vals[$col_num];
1063 my $out;
1064 if ( $skip_rest ) {
1065 $out = '';
1066 }
1067 elsif ( $col_val->[0] eq $row_val->[0] ) {
1068 $out = "--";
1069 # $skip_rest = 1;
1070 }
1071 else {
1072 my $col_rate = $col_val->[7];
1073 $out = sprintf( "%.0f%%", 100*$row_rate/$col_rate - 100 );
1074 }
1075 push @row, $out;
1076 $col_widths[$col_num+2] = length( $out )
1077 if length( $out ) > $col_widths[$col_num+2];
1078
5f7d9242 1079 # A little weirdness to set the first column width properly
3c6312e9
BS
1080 $col_widths[$col_num+2] = length( $col_val->[0] )
1081 if length( $col_val->[0] ) > $col_widths[$col_num+2];
1082 }
1083 push @rows, \@row;
1084 }
1085
d1083c7a
BS
1086 return \@rows if $style eq "none";
1087
3c6312e9
BS
1088 # Equalize column widths in the chart as much as possible without
1089 # exceeding 80 characters. This does not use or affect cols 0 or 1.
5f7d9242 1090 my @sorted_width_refs =
3c6312e9
BS
1091 sort { $$a <=> $$b } map { \$_ } @col_widths[2..$#col_widths];
1092 my $max_width = ${$sorted_width_refs[-1]};
1093
277427cf 1094 my $total = @col_widths - 1 ;
3c6312e9
BS
1095 for ( @col_widths ) { $total += $_ }
1096
1097 STRETCHER:
1098 while ( $total < 80 ) {
1099 my $min_width = ${$sorted_width_refs[0]};
1100 last
1101 if $min_width == $max_width;
1102 for ( @sorted_width_refs ) {
5f7d9242 1103 last
3c6312e9
BS
1104 if $$_ > $min_width;
1105 ++$$_;
1106 ++$total;
1107 last STRETCHER
1108 if $total >= 80;
1109 }
1110 }
1111
1112 # Dump the output
1113 my $format = join( ' ', map { "%${_}s" } @col_widths ) . "\n";
1114 substr( $format, 1, 0 ) = '-';
1115 for ( @rows ) {
1116 printf $format, @$_;
1117 }
1118
d1083c7a 1119 return \@rows ;
3c6312e9
BS
1120}
1121
1122
a0d0e21e 11231;