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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/tools/mm/slabinfo.c
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1
// SPDX-License-Identifier: GPL-2.0
2
/*
3
* Slabinfo: Tool to get reports about slabs
4
*
5
* (C) 2007 sgi, Christoph Lameter
6
* (C) 2011 Linux Foundation, Christoph Lameter
7
*
8
* Compile with:
9
*
10
* gcc -o slabinfo slabinfo.c
11
*/
12
#include <stdio.h>
13
#include <stdlib.h>
14
#include <sys/types.h>
15
#include <dirent.h>
16
#include <strings.h>
17
#include <string.h>
18
#include <unistd.h>
19
#include <stdarg.h>
20
#include <getopt.h>
21
#include <regex.h>
22
#include <errno.h>
23
24
#define MAX_SLABS 2000
25
#define MAX_ALIASES 500
26
#define MAX_NODES 1024
27
28
struct slabinfo {
29
char *name;
30
int alias;
31
int refs;
32
int aliases, align, cache_dma, cpu_slabs, destroy_by_rcu;
33
unsigned int hwcache_align, object_size, objs_per_slab;
34
unsigned int sanity_checks, slab_size, store_user, trace;
35
int order, poison, reclaim_account, red_zone;
36
unsigned long partial, objects, slabs, objects_partial, objects_total;
37
unsigned long alloc_fastpath, alloc_slowpath;
38
unsigned long free_fastpath, free_slowpath;
39
unsigned long free_frozen, free_add_partial, free_remove_partial;
40
unsigned long alloc_from_partial, alloc_slab, free_slab, alloc_refill;
41
unsigned long cpuslab_flush, deactivate_full, deactivate_empty;
42
unsigned long deactivate_to_head, deactivate_to_tail;
43
unsigned long deactivate_remote_frees, order_fallback;
44
unsigned long cmpxchg_double_cpu_fail, cmpxchg_double_fail;
45
unsigned long alloc_node_mismatch, deactivate_bypass;
46
unsigned long cpu_partial_alloc, cpu_partial_free;
47
int numa[MAX_NODES];
48
int numa_partial[MAX_NODES];
49
} slabinfo[MAX_SLABS];
50
51
struct aliasinfo {
52
char *name;
53
char *ref;
54
struct slabinfo *slab;
55
} aliasinfo[MAX_ALIASES];
56
57
int slabs;
58
int actual_slabs;
59
int aliases;
60
int alias_targets;
61
int highest_node;
62
63
char buffer[4096];
64
65
int show_empty;
66
int show_report;
67
int show_alias;
68
int show_slab;
69
int skip_zero = 1;
70
int show_numa;
71
int show_track;
72
int show_first_alias;
73
int validate;
74
int shrink;
75
int show_inverted;
76
int show_single_ref;
77
int show_totals;
78
int sort_size;
79
int sort_active;
80
int set_debug;
81
int show_ops;
82
int sort_partial;
83
int show_activity;
84
int output_lines = -1;
85
int sort_loss;
86
int extended_totals;
87
int show_bytes;
88
int unreclaim_only;
89
90
/* Debug options */
91
int sanity;
92
int redzone;
93
int poison;
94
int tracking;
95
int tracing;
96
97
int page_size;
98
99
regex_t pattern;
100
101
static void fatal(const char *x, ...)
102
{
103
va_list ap;
104
105
va_start(ap, x);
106
vfprintf(stderr, x, ap);
107
va_end(ap);
108
exit(EXIT_FAILURE);
109
}
110
111
static void usage(void)
112
{
113
printf("slabinfo 4/15/2011. (c) 2007 sgi/(c) 2011 Linux Foundation.\n\n"
114
"slabinfo [-aABDefhilLnoPrsStTUvXz1] [N=K] [-dafzput] [slab-regexp]\n"
115
"-a|--aliases Show aliases\n"
116
"-A|--activity Most active slabs first\n"
117
"-B|--Bytes Show size in bytes\n"
118
"-D|--display-active Switch line format to activity\n"
119
"-e|--empty Show empty slabs\n"
120
"-f|--first-alias Show first alias\n"
121
"-h|--help Show usage information\n"
122
"-i|--inverted Inverted list\n"
123
"-l|--slabs Show slabs\n"
124
"-L|--Loss Sort by loss\n"
125
"-n|--numa Show NUMA information\n"
126
"-N|--lines=K Show the first K slabs\n"
127
"-o|--ops Show kmem_cache_ops\n"
128
"-P|--partial Sort by number of partial slabs\n"
129
"-r|--report Detailed report on single slabs\n"
130
"-s|--shrink Shrink slabs\n"
131
"-S|--Size Sort by size\n"
132
"-t|--tracking Show alloc/free information\n"
133
"-T|--Totals Show summary information\n"
134
"-U|--Unreclaim Show unreclaimable slabs only\n"
135
"-v|--validate Validate slabs\n"
136
"-X|--Xtotals Show extended summary information\n"
137
"-z|--zero Include empty slabs\n"
138
"-1|--1ref Single reference\n"
139
140
"\n"
141
"-d | --debug Switch off all debug options\n"
142
"-da | --debug=a Switch on all debug options (--debug=FZPU)\n"
143
144
"\n"
145
"-d[afzput] | --debug=[afzput]\n"
146
" f | F Sanity Checks (SLAB_CONSISTENCY_CHECKS)\n"
147
" z | Z Redzoning\n"
148
" p | P Poisoning\n"
149
" u | U Tracking\n"
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" t | T Tracing\n"
151
152
"\nSorting options (--Loss, --Size, --Partial) are mutually exclusive\n"
153
);
154
}
155
156
static unsigned long read_obj(const char *name)
157
{
158
size_t len;
159
FILE *f = fopen(name, "r");
160
161
if (!f) {
162
buffer[0] = 0;
163
if (errno == EACCES)
164
fatal("%s, Try using superuser\n", strerror(errno));
165
} else {
166
if (!fgets(buffer, sizeof(buffer), f))
167
buffer[0] = 0;
168
fclose(f);
169
len = strlen(buffer);
170
171
if (len > 0 && buffer[len - 1] == '\n')
172
buffer[len - 1] = 0;
173
}
174
return strlen(buffer);
175
}
176
177
178
/*
179
* Get the contents of an attribute
180
*/
181
static unsigned long get_obj(const char *name)
182
{
183
if (!read_obj(name))
184
return 0;
185
186
return atol(buffer);
187
}
188
189
static unsigned long get_obj_and_str(const char *name, char **x)
190
{
191
unsigned long result = 0;
192
char *p;
193
194
*x = NULL;
195
196
if (!read_obj(name)) {
197
x = NULL;
198
return 0;
199
}
200
result = strtoul(buffer, &p, 10);
201
while (*p == ' ')
202
p++;
203
if (*p)
204
*x = strdup(p);
205
return result;
206
}
207
208
static void set_obj(struct slabinfo *s, const char *name, int n)
209
{
210
char x[100];
211
FILE *f;
212
213
snprintf(x, 100, "%s/%s", s->name, name);
214
f = fopen(x, "w");
215
if (!f)
216
fatal("Cannot write to %s\n", x);
217
218
fprintf(f, "%d\n", n);
219
fclose(f);
220
}
221
222
static unsigned long read_slab_obj(struct slabinfo *s, const char *name)
223
{
224
char x[100];
225
FILE *f;
226
size_t l;
227
228
snprintf(x, 100, "%s/%s", s->name, name);
229
f = fopen(x, "r");
230
if (!f) {
231
buffer[0] = 0;
232
l = 0;
233
} else {
234
l = fread(buffer, 1, sizeof(buffer), f);
235
buffer[l] = 0;
236
fclose(f);
237
}
238
return l;
239
}
240
241
static unsigned long read_debug_slab_obj(struct slabinfo *s, const char *name)
242
{
243
char x[128];
244
FILE *f;
245
size_t l;
246
247
snprintf(x, 128, "/sys/kernel/debug/slab/%s/%s", s->name, name);
248
f = fopen(x, "r");
249
if (!f) {
250
buffer[0] = 0;
251
l = 0;
252
} else {
253
l = fread(buffer, 1, sizeof(buffer), f);
254
buffer[l] = 0;
255
fclose(f);
256
}
257
return l;
258
}
259
260
/*
261
* Put a size string together
262
*/
263
static int store_size(char *buffer, unsigned long value)
264
{
265
unsigned long divisor = 1;
266
char trailer = 0;
267
int n;
268
269
if (!show_bytes) {
270
if (value > 1000000000UL) {
271
divisor = 100000000UL;
272
trailer = 'G';
273
} else if (value > 1000000UL) {
274
divisor = 100000UL;
275
trailer = 'M';
276
} else if (value > 1000UL) {
277
divisor = 100;
278
trailer = 'K';
279
}
280
}
281
282
value /= divisor;
283
n = sprintf(buffer, "%ld",value);
284
if (trailer) {
285
buffer[n] = trailer;
286
n++;
287
buffer[n] = 0;
288
}
289
if (divisor != 1) {
290
memmove(buffer + n - 2, buffer + n - 3, 4);
291
buffer[n-2] = '.';
292
n++;
293
}
294
return n;
295
}
296
297
static void decode_numa_list(int *numa, char *t)
298
{
299
int node;
300
int nr;
301
302
memset(numa, 0, MAX_NODES * sizeof(int));
303
304
if (!t)
305
return;
306
307
while (*t == 'N') {
308
t++;
309
node = strtoul(t, &t, 10);
310
if (*t == '=') {
311
t++;
312
nr = strtoul(t, &t, 10);
313
numa[node] = nr;
314
if (node > highest_node)
315
highest_node = node;
316
}
317
while (*t == ' ')
318
t++;
319
}
320
}
321
322
static void slab_validate(struct slabinfo *s)
323
{
324
if (strcmp(s->name, "*") == 0)
325
return;
326
327
set_obj(s, "validate", 1);
328
}
329
330
static void slab_shrink(struct slabinfo *s)
331
{
332
if (strcmp(s->name, "*") == 0)
333
return;
334
335
set_obj(s, "shrink", 1);
336
}
337
338
int line = 0;
339
340
static void first_line(void)
341
{
342
if (show_activity)
343
printf("Name Objects Alloc Free"
344
" %%Fast Fallb O CmpX UL\n");
345
else
346
printf("Name Objects Objsize %s "
347
"Slabs/Part/Cpu O/S O %%Fr %%Ef Flg\n",
348
sort_loss ? " Loss" : "Space");
349
}
350
351
/*
352
* Find the shortest alias of a slab
353
*/
354
static struct aliasinfo *find_one_alias(struct slabinfo *find)
355
{
356
struct aliasinfo *a;
357
struct aliasinfo *best = NULL;
358
359
for(a = aliasinfo;a < aliasinfo + aliases; a++) {
360
if (a->slab == find &&
361
(!best || strlen(best->name) < strlen(a->name))) {
362
best = a;
363
if (strncmp(a->name,"kmall", 5) == 0)
364
return best;
365
}
366
}
367
return best;
368
}
369
370
static unsigned long slab_size(struct slabinfo *s)
371
{
372
return s->slabs * (page_size << s->order);
373
}
374
375
static unsigned long slab_activity(struct slabinfo *s)
376
{
377
return s->alloc_fastpath + s->free_fastpath +
378
s->alloc_slowpath + s->free_slowpath;
379
}
380
381
static unsigned long slab_waste(struct slabinfo *s)
382
{
383
return slab_size(s) - s->objects * s->object_size;
384
}
385
386
static void slab_numa(struct slabinfo *s, int mode)
387
{
388
int node;
389
390
if (strcmp(s->name, "*") == 0)
391
return;
392
393
if (!highest_node) {
394
printf("\n%s: No NUMA information available.\n", s->name);
395
return;
396
}
397
398
if (skip_zero && !s->slabs)
399
return;
400
401
if (!line) {
402
printf("\n%-21s:", mode ? "NUMA nodes" : "Slab");
403
for(node = 0; node <= highest_node; node++)
404
printf(" %4d", node);
405
printf("\n----------------------");
406
for(node = 0; node <= highest_node; node++)
407
printf("-----");
408
printf("\n");
409
}
410
printf("%-21s ", mode ? "All slabs" : s->name);
411
for(node = 0; node <= highest_node; node++) {
412
char b[20];
413
414
store_size(b, s->numa[node]);
415
printf(" %4s", b);
416
}
417
printf("\n");
418
if (mode) {
419
printf("%-21s ", "Partial slabs");
420
for(node = 0; node <= highest_node; node++) {
421
char b[20];
422
423
store_size(b, s->numa_partial[node]);
424
printf(" %4s", b);
425
}
426
printf("\n");
427
}
428
line++;
429
}
430
431
static void show_tracking(struct slabinfo *s)
432
{
433
printf("\n%s: Kernel object allocation\n", s->name);
434
printf("-----------------------------------------------------------------------\n");
435
if (read_debug_slab_obj(s, "alloc_traces"))
436
printf("%s", buffer);
437
else if (read_slab_obj(s, "alloc_calls"))
438
printf("%s", buffer);
439
else
440
printf("No Data\n");
441
442
printf("\n%s: Kernel object freeing\n", s->name);
443
printf("------------------------------------------------------------------------\n");
444
if (read_debug_slab_obj(s, "free_traces"))
445
printf("%s", buffer);
446
else if (read_slab_obj(s, "free_calls"))
447
printf("%s", buffer);
448
else
449
printf("No Data\n");
450
451
}
452
453
static void ops(struct slabinfo *s)
454
{
455
if (strcmp(s->name, "*") == 0)
456
return;
457
458
if (read_slab_obj(s, "ops")) {
459
printf("\n%s: kmem_cache operations\n", s->name);
460
printf("--------------------------------------------\n");
461
printf("%s", buffer);
462
} else
463
printf("\n%s has no kmem_cache operations\n", s->name);
464
}
465
466
static const char *onoff(int x)
467
{
468
if (x)
469
return "On ";
470
return "Off";
471
}
472
473
static void slab_stats(struct slabinfo *s)
474
{
475
unsigned long total_alloc;
476
unsigned long total_free;
477
unsigned long total;
478
479
if (!s->alloc_slab)
480
return;
481
482
total_alloc = s->alloc_fastpath + s->alloc_slowpath;
483
total_free = s->free_fastpath + s->free_slowpath;
484
485
if (!total_alloc)
486
return;
487
488
printf("\n");
489
printf("Slab Perf Counter Alloc Free %%Al %%Fr\n");
490
printf("--------------------------------------------------\n");
491
printf("Fastpath %8lu %8lu %3lu %3lu\n",
492
s->alloc_fastpath, s->free_fastpath,
493
s->alloc_fastpath * 100 / total_alloc,
494
total_free ? s->free_fastpath * 100 / total_free : 0);
495
printf("Slowpath %8lu %8lu %3lu %3lu\n",
496
total_alloc - s->alloc_fastpath, s->free_slowpath,
497
(total_alloc - s->alloc_fastpath) * 100 / total_alloc,
498
total_free ? s->free_slowpath * 100 / total_free : 0);
499
printf("Page Alloc %8lu %8lu %3lu %3lu\n",
500
s->alloc_slab, s->free_slab,
501
s->alloc_slab * 100 / total_alloc,
502
total_free ? s->free_slab * 100 / total_free : 0);
503
printf("Add partial %8lu %8lu %3lu %3lu\n",
504
s->deactivate_to_head + s->deactivate_to_tail,
505
s->free_add_partial,
506
(s->deactivate_to_head + s->deactivate_to_tail) * 100 / total_alloc,
507
total_free ? s->free_add_partial * 100 / total_free : 0);
508
printf("Remove partial %8lu %8lu %3lu %3lu\n",
509
s->alloc_from_partial, s->free_remove_partial,
510
s->alloc_from_partial * 100 / total_alloc,
511
total_free ? s->free_remove_partial * 100 / total_free : 0);
512
513
printf("Cpu partial list %8lu %8lu %3lu %3lu\n",
514
s->cpu_partial_alloc, s->cpu_partial_free,
515
s->cpu_partial_alloc * 100 / total_alloc,
516
total_free ? s->cpu_partial_free * 100 / total_free : 0);
517
518
printf("RemoteObj/SlabFrozen %8lu %8lu %3lu %3lu\n",
519
s->deactivate_remote_frees, s->free_frozen,
520
s->deactivate_remote_frees * 100 / total_alloc,
521
total_free ? s->free_frozen * 100 / total_free : 0);
522
523
printf("Total %8lu %8lu\n\n", total_alloc, total_free);
524
525
if (s->cpuslab_flush)
526
printf("Flushes %8lu\n", s->cpuslab_flush);
527
528
total = s->deactivate_full + s->deactivate_empty +
529
s->deactivate_to_head + s->deactivate_to_tail + s->deactivate_bypass;
530
531
if (total) {
532
printf("\nSlab Deactivation Occurrences %%\n");
533
printf("-------------------------------------------------\n");
534
printf("Slab full %7lu %3lu%%\n",
535
s->deactivate_full, (s->deactivate_full * 100) / total);
536
printf("Slab empty %7lu %3lu%%\n",
537
s->deactivate_empty, (s->deactivate_empty * 100) / total);
538
printf("Moved to head of partial list %7lu %3lu%%\n",
539
s->deactivate_to_head, (s->deactivate_to_head * 100) / total);
540
printf("Moved to tail of partial list %7lu %3lu%%\n",
541
s->deactivate_to_tail, (s->deactivate_to_tail * 100) / total);
542
printf("Deactivation bypass %7lu %3lu%%\n",
543
s->deactivate_bypass, (s->deactivate_bypass * 100) / total);
544
printf("Refilled from foreign frees %7lu %3lu%%\n",
545
s->alloc_refill, (s->alloc_refill * 100) / total);
546
printf("Node mismatch %7lu %3lu%%\n",
547
s->alloc_node_mismatch, (s->alloc_node_mismatch * 100) / total);
548
}
549
550
if (s->cmpxchg_double_fail || s->cmpxchg_double_cpu_fail) {
551
printf("\nCmpxchg_double Looping\n------------------------\n");
552
printf("Locked Cmpxchg Double redos %lu\nUnlocked Cmpxchg Double redos %lu\n",
553
s->cmpxchg_double_fail, s->cmpxchg_double_cpu_fail);
554
}
555
}
556
557
static void report(struct slabinfo *s)
558
{
559
if (strcmp(s->name, "*") == 0)
560
return;
561
562
printf("\nSlabcache: %-15s Aliases: %2d Order : %2d Objects: %lu\n",
563
s->name, s->aliases, s->order, s->objects);
564
if (s->hwcache_align)
565
printf("** Hardware cacheline aligned\n");
566
if (s->cache_dma)
567
printf("** Memory is allocated in a special DMA zone\n");
568
if (s->destroy_by_rcu)
569
printf("** Slabs are destroyed via RCU\n");
570
if (s->reclaim_account)
571
printf("** Reclaim accounting active\n");
572
573
printf("\nSizes (bytes) Slabs Debug Memory\n");
574
printf("------------------------------------------------------------------------\n");
575
printf("Object : %7d Total : %7ld Sanity Checks : %s Total: %7ld\n",
576
s->object_size, s->slabs, onoff(s->sanity_checks),
577
s->slabs * (page_size << s->order));
578
printf("SlabObj: %7d Full : %7ld Redzoning : %s Used : %7ld\n",
579
s->slab_size, s->slabs - s->partial - s->cpu_slabs,
580
onoff(s->red_zone), s->objects * s->object_size);
581
printf("SlabSiz: %7d Partial: %7ld Poisoning : %s Loss : %7ld\n",
582
page_size << s->order, s->partial, onoff(s->poison),
583
s->slabs * (page_size << s->order) - s->objects * s->object_size);
584
printf("Loss : %7d CpuSlab: %7d Tracking : %s Lalig: %7ld\n",
585
s->slab_size - s->object_size, s->cpu_slabs, onoff(s->store_user),
586
(s->slab_size - s->object_size) * s->objects);
587
printf("Align : %7d Objects: %7d Tracing : %s Lpadd: %7ld\n",
588
s->align, s->objs_per_slab, onoff(s->trace),
589
((page_size << s->order) - s->objs_per_slab * s->slab_size) *
590
s->slabs);
591
592
ops(s);
593
show_tracking(s);
594
slab_numa(s, 1);
595
slab_stats(s);
596
}
597
598
static void slabcache(struct slabinfo *s)
599
{
600
char size_str[20];
601
char dist_str[40];
602
char flags[20];
603
char *p = flags;
604
605
if (strcmp(s->name, "*") == 0)
606
return;
607
608
if (unreclaim_only && s->reclaim_account)
609
return;
610
611
if (actual_slabs == 1) {
612
report(s);
613
return;
614
}
615
616
if (skip_zero && !show_empty && !s->slabs)
617
return;
618
619
if (show_empty && s->slabs)
620
return;
621
622
if (sort_loss == 0)
623
store_size(size_str, slab_size(s));
624
else
625
store_size(size_str, slab_waste(s));
626
snprintf(dist_str, 40, "%lu/%lu/%d", s->slabs - s->cpu_slabs,
627
s->partial, s->cpu_slabs);
628
629
if (!line++)
630
first_line();
631
632
if (s->aliases)
633
*p++ = '*';
634
if (s->cache_dma)
635
*p++ = 'd';
636
if (s->hwcache_align)
637
*p++ = 'A';
638
if (s->poison)
639
*p++ = 'P';
640
if (s->reclaim_account)
641
*p++ = 'a';
642
if (s->red_zone)
643
*p++ = 'Z';
644
if (s->sanity_checks)
645
*p++ = 'F';
646
if (s->store_user)
647
*p++ = 'U';
648
if (s->trace)
649
*p++ = 'T';
650
651
*p = 0;
652
if (show_activity) {
653
unsigned long total_alloc;
654
unsigned long total_free;
655
656
total_alloc = s->alloc_fastpath + s->alloc_slowpath;
657
total_free = s->free_fastpath + s->free_slowpath;
658
659
printf("%-21s %8ld %10ld %10ld %3ld %3ld %5ld %1d %4ld %4ld\n",
660
s->name, s->objects,
661
total_alloc, total_free,
662
total_alloc ? (s->alloc_fastpath * 100 / total_alloc) : 0,
663
total_free ? (s->free_fastpath * 100 / total_free) : 0,
664
s->order_fallback, s->order, s->cmpxchg_double_fail,
665
s->cmpxchg_double_cpu_fail);
666
} else {
667
printf("%-21s %8ld %7d %15s %14s %4d %1d %3ld %3ld %s\n",
668
s->name, s->objects, s->object_size, size_str, dist_str,
669
s->objs_per_slab, s->order,
670
s->slabs ? (s->partial * 100) / s->slabs : 100,
671
s->slabs ? (s->objects * s->object_size * 100) /
672
(s->slabs * (page_size << s->order)) : 100,
673
flags);
674
}
675
}
676
677
/*
678
* Analyze debug options. Return false if something is amiss.
679
*/
680
static int debug_opt_scan(char *opt)
681
{
682
if (!opt || !opt[0] || strcmp(opt, "-") == 0)
683
return 1;
684
685
if (strcasecmp(opt, "a") == 0) {
686
sanity = 1;
687
poison = 1;
688
redzone = 1;
689
tracking = 1;
690
return 1;
691
}
692
693
for ( ; *opt; opt++)
694
switch (*opt) {
695
case 'F' : case 'f':
696
if (sanity)
697
return 0;
698
sanity = 1;
699
break;
700
case 'P' : case 'p':
701
if (poison)
702
return 0;
703
poison = 1;
704
break;
705
706
case 'Z' : case 'z':
707
if (redzone)
708
return 0;
709
redzone = 1;
710
break;
711
712
case 'U' : case 'u':
713
if (tracking)
714
return 0;
715
tracking = 1;
716
break;
717
718
case 'T' : case 't':
719
if (tracing)
720
return 0;
721
tracing = 1;
722
break;
723
default:
724
return 0;
725
}
726
return 1;
727
}
728
729
static int slab_empty(struct slabinfo *s)
730
{
731
if (s->objects > 0)
732
return 0;
733
734
/*
735
* We may still have slabs even if there are no objects. Shrinking will
736
* remove them.
737
*/
738
if (s->slabs != 0)
739
set_obj(s, "shrink", 1);
740
741
return 1;
742
}
743
744
static void slab_debug(struct slabinfo *s)
745
{
746
if (strcmp(s->name, "*") == 0)
747
return;
748
749
if (sanity && !s->sanity_checks) {
750
set_obj(s, "sanity_checks", 1);
751
}
752
if (!sanity && s->sanity_checks) {
753
if (slab_empty(s))
754
set_obj(s, "sanity_checks", 0);
755
else
756
fprintf(stderr, "%s not empty cannot disable sanity checks\n", s->name);
757
}
758
if (redzone && !s->red_zone) {
759
if (slab_empty(s))
760
set_obj(s, "red_zone", 1);
761
else
762
fprintf(stderr, "%s not empty cannot enable redzoning\n", s->name);
763
}
764
if (!redzone && s->red_zone) {
765
if (slab_empty(s))
766
set_obj(s, "red_zone", 0);
767
else
768
fprintf(stderr, "%s not empty cannot disable redzoning\n", s->name);
769
}
770
if (poison && !s->poison) {
771
if (slab_empty(s))
772
set_obj(s, "poison", 1);
773
else
774
fprintf(stderr, "%s not empty cannot enable poisoning\n", s->name);
775
}
776
if (!poison && s->poison) {
777
if (slab_empty(s))
778
set_obj(s, "poison", 0);
779
else
780
fprintf(stderr, "%s not empty cannot disable poisoning\n", s->name);
781
}
782
if (tracking && !s->store_user) {
783
if (slab_empty(s))
784
set_obj(s, "store_user", 1);
785
else
786
fprintf(stderr, "%s not empty cannot enable tracking\n", s->name);
787
}
788
if (!tracking && s->store_user) {
789
if (slab_empty(s))
790
set_obj(s, "store_user", 0);
791
else
792
fprintf(stderr, "%s not empty cannot disable tracking\n", s->name);
793
}
794
if (tracing && !s->trace) {
795
if (slabs == 1)
796
set_obj(s, "trace", 1);
797
else
798
fprintf(stderr, "%s can only enable trace for one slab at a time\n", s->name);
799
}
800
if (!tracing && s->trace)
801
set_obj(s, "trace", 1);
802
}
803
804
static void totals(void)
805
{
806
struct slabinfo *s;
807
808
int used_slabs = 0;
809
char b1[20], b2[20], b3[20], b4[20];
810
unsigned long long max = 1ULL << 63;
811
812
/* Object size */
813
unsigned long long min_objsize = max, max_objsize = 0, avg_objsize;
814
815
/* Number of partial slabs in a slabcache */
816
unsigned long long min_partial = max, max_partial = 0,
817
avg_partial, total_partial = 0;
818
819
/* Number of slabs in a slab cache */
820
unsigned long long min_slabs = max, max_slabs = 0,
821
avg_slabs, total_slabs = 0;
822
823
/* Size of the whole slab */
824
unsigned long long min_size = max, max_size = 0,
825
avg_size, total_size = 0;
826
827
/* Bytes used for object storage in a slab */
828
unsigned long long min_used = max, max_used = 0,
829
avg_used, total_used = 0;
830
831
/* Waste: Bytes used for alignment and padding */
832
unsigned long long min_waste = max, max_waste = 0,
833
avg_waste, total_waste = 0;
834
/* Number of objects in a slab */
835
unsigned long long min_objects = max, max_objects = 0,
836
avg_objects, total_objects = 0;
837
/* Waste per object */
838
unsigned long long min_objwaste = max,
839
max_objwaste = 0, avg_objwaste,
840
total_objwaste = 0;
841
842
/* Memory per object */
843
unsigned long long min_memobj = max,
844
max_memobj = 0, avg_memobj,
845
total_objsize = 0;
846
847
/* Percentage of partial slabs per slab */
848
unsigned long min_ppart = 100, max_ppart = 0,
849
avg_ppart, total_ppart = 0;
850
851
/* Number of objects in partial slabs */
852
unsigned long min_partobj = max, max_partobj = 0,
853
avg_partobj, total_partobj = 0;
854
855
/* Percentage of partial objects of all objects in a slab */
856
unsigned long min_ppartobj = 100, max_ppartobj = 0,
857
avg_ppartobj, total_ppartobj = 0;
858
859
860
for (s = slabinfo; s < slabinfo + slabs; s++) {
861
unsigned long long size;
862
unsigned long used;
863
unsigned long long wasted;
864
unsigned long long objwaste;
865
unsigned long percentage_partial_slabs;
866
unsigned long percentage_partial_objs;
867
868
if (!s->slabs || !s->objects)
869
continue;
870
871
used_slabs++;
872
873
size = slab_size(s);
874
used = s->objects * s->object_size;
875
wasted = size - used;
876
objwaste = s->slab_size - s->object_size;
877
878
percentage_partial_slabs = s->partial * 100 / s->slabs;
879
if (percentage_partial_slabs > 100)
880
percentage_partial_slabs = 100;
881
882
percentage_partial_objs = s->objects_partial * 100
883
/ s->objects;
884
885
if (percentage_partial_objs > 100)
886
percentage_partial_objs = 100;
887
888
if (s->object_size < min_objsize)
889
min_objsize = s->object_size;
890
if (s->partial < min_partial)
891
min_partial = s->partial;
892
if (s->slabs < min_slabs)
893
min_slabs = s->slabs;
894
if (size < min_size)
895
min_size = size;
896
if (wasted < min_waste)
897
min_waste = wasted;
898
if (objwaste < min_objwaste)
899
min_objwaste = objwaste;
900
if (s->objects < min_objects)
901
min_objects = s->objects;
902
if (used < min_used)
903
min_used = used;
904
if (s->objects_partial < min_partobj)
905
min_partobj = s->objects_partial;
906
if (percentage_partial_slabs < min_ppart)
907
min_ppart = percentage_partial_slabs;
908
if (percentage_partial_objs < min_ppartobj)
909
min_ppartobj = percentage_partial_objs;
910
if (s->slab_size < min_memobj)
911
min_memobj = s->slab_size;
912
913
if (s->object_size > max_objsize)
914
max_objsize = s->object_size;
915
if (s->partial > max_partial)
916
max_partial = s->partial;
917
if (s->slabs > max_slabs)
918
max_slabs = s->slabs;
919
if (size > max_size)
920
max_size = size;
921
if (wasted > max_waste)
922
max_waste = wasted;
923
if (objwaste > max_objwaste)
924
max_objwaste = objwaste;
925
if (s->objects > max_objects)
926
max_objects = s->objects;
927
if (used > max_used)
928
max_used = used;
929
if (s->objects_partial > max_partobj)
930
max_partobj = s->objects_partial;
931
if (percentage_partial_slabs > max_ppart)
932
max_ppart = percentage_partial_slabs;
933
if (percentage_partial_objs > max_ppartobj)
934
max_ppartobj = percentage_partial_objs;
935
if (s->slab_size > max_memobj)
936
max_memobj = s->slab_size;
937
938
total_partial += s->partial;
939
total_slabs += s->slabs;
940
total_size += size;
941
total_waste += wasted;
942
943
total_objects += s->objects;
944
total_used += used;
945
total_partobj += s->objects_partial;
946
total_ppart += percentage_partial_slabs;
947
total_ppartobj += percentage_partial_objs;
948
949
total_objwaste += s->objects * objwaste;
950
total_objsize += s->objects * s->slab_size;
951
}
952
953
if (!total_objects) {
954
printf("No objects\n");
955
return;
956
}
957
if (!used_slabs) {
958
printf("No slabs\n");
959
return;
960
}
961
962
/* Per slab averages */
963
avg_partial = total_partial / used_slabs;
964
avg_slabs = total_slabs / used_slabs;
965
avg_size = total_size / used_slabs;
966
avg_waste = total_waste / used_slabs;
967
968
avg_objects = total_objects / used_slabs;
969
avg_used = total_used / used_slabs;
970
avg_partobj = total_partobj / used_slabs;
971
avg_ppart = total_ppart / used_slabs;
972
avg_ppartobj = total_ppartobj / used_slabs;
973
974
/* Per object object sizes */
975
avg_objsize = total_used / total_objects;
976
avg_objwaste = total_objwaste / total_objects;
977
avg_partobj = total_partobj * 100 / total_objects;
978
avg_memobj = total_objsize / total_objects;
979
980
printf("Slabcache Totals\n");
981
printf("----------------\n");
982
printf("Slabcaches : %15d Aliases : %11d->%-3d Active: %3d\n",
983
slabs, aliases, alias_targets, used_slabs);
984
985
store_size(b1, total_size);store_size(b2, total_waste);
986
store_size(b3, total_waste * 100 / total_used);
987
printf("Memory used: %15s # Loss : %15s MRatio:%6s%%\n", b1, b2, b3);
988
989
store_size(b1, total_objects);store_size(b2, total_partobj);
990
store_size(b3, total_partobj * 100 / total_objects);
991
printf("# Objects : %15s # PartObj: %15s ORatio:%6s%%\n", b1, b2, b3);
992
993
printf("\n");
994
printf("Per Cache Average "
995
"Min Max Total\n");
996
printf("---------------------------------------"
997
"-------------------------------------\n");
998
999
store_size(b1, avg_objects);store_size(b2, min_objects);
1000
store_size(b3, max_objects);store_size(b4, total_objects);
1001
printf("#Objects %15s %15s %15s %15s\n",
1002
b1, b2, b3, b4);
1003
1004
store_size(b1, avg_slabs);store_size(b2, min_slabs);
1005
store_size(b3, max_slabs);store_size(b4, total_slabs);
1006
printf("#Slabs %15s %15s %15s %15s\n",
1007
b1, b2, b3, b4);
1008
1009
store_size(b1, avg_partial);store_size(b2, min_partial);
1010
store_size(b3, max_partial);store_size(b4, total_partial);
1011
printf("#PartSlab %15s %15s %15s %15s\n",
1012
b1, b2, b3, b4);
1013
store_size(b1, avg_ppart);store_size(b2, min_ppart);
1014
store_size(b3, max_ppart);
1015
store_size(b4, total_partial * 100 / total_slabs);
1016
printf("%%PartSlab%15s%% %15s%% %15s%% %15s%%\n",
1017
b1, b2, b3, b4);
1018
1019
store_size(b1, avg_partobj);store_size(b2, min_partobj);
1020
store_size(b3, max_partobj);
1021
store_size(b4, total_partobj);
1022
printf("PartObjs %15s %15s %15s %15s\n",
1023
b1, b2, b3, b4);
1024
1025
store_size(b1, avg_ppartobj);store_size(b2, min_ppartobj);
1026
store_size(b3, max_ppartobj);
1027
store_size(b4, total_partobj * 100 / total_objects);
1028
printf("%% PartObj%15s%% %15s%% %15s%% %15s%%\n",
1029
b1, b2, b3, b4);
1030
1031
store_size(b1, avg_size);store_size(b2, min_size);
1032
store_size(b3, max_size);store_size(b4, total_size);
1033
printf("Memory %15s %15s %15s %15s\n",
1034
b1, b2, b3, b4);
1035
1036
store_size(b1, avg_used);store_size(b2, min_used);
1037
store_size(b3, max_used);store_size(b4, total_used);
1038
printf("Used %15s %15s %15s %15s\n",
1039
b1, b2, b3, b4);
1040
1041
store_size(b1, avg_waste);store_size(b2, min_waste);
1042
store_size(b3, max_waste);store_size(b4, total_waste);
1043
printf("Loss %15s %15s %15s %15s\n",
1044
b1, b2, b3, b4);
1045
1046
printf("\n");
1047
printf("Per Object Average "
1048
"Min Max\n");
1049
printf("---------------------------------------"
1050
"--------------------\n");
1051
1052
store_size(b1, avg_memobj);store_size(b2, min_memobj);
1053
store_size(b3, max_memobj);
1054
printf("Memory %15s %15s %15s\n",
1055
b1, b2, b3);
1056
store_size(b1, avg_objsize);store_size(b2, min_objsize);
1057
store_size(b3, max_objsize);
1058
printf("User %15s %15s %15s\n",
1059
b1, b2, b3);
1060
1061
store_size(b1, avg_objwaste);store_size(b2, min_objwaste);
1062
store_size(b3, max_objwaste);
1063
printf("Loss %15s %15s %15s\n",
1064
b1, b2, b3);
1065
}
1066
1067
static void sort_slabs(void)
1068
{
1069
struct slabinfo *s1,*s2;
1070
1071
for (s1 = slabinfo; s1 < slabinfo + slabs; s1++) {
1072
for (s2 = s1 + 1; s2 < slabinfo + slabs; s2++) {
1073
int result;
1074
1075
if (sort_size) {
1076
if (slab_size(s1) == slab_size(s2))
1077
result = strcasecmp(s1->name, s2->name);
1078
else
1079
result = slab_size(s1) < slab_size(s2);
1080
} else if (sort_active) {
1081
if (slab_activity(s1) == slab_activity(s2))
1082
result = strcasecmp(s1->name, s2->name);
1083
else
1084
result = slab_activity(s1) < slab_activity(s2);
1085
} else if (sort_loss) {
1086
if (slab_waste(s1) == slab_waste(s2))
1087
result = strcasecmp(s1->name, s2->name);
1088
else
1089
result = slab_waste(s1) < slab_waste(s2);
1090
} else if (sort_partial) {
1091
if (s1->partial == s2->partial)
1092
result = strcasecmp(s1->name, s2->name);
1093
else
1094
result = s1->partial < s2->partial;
1095
} else
1096
result = strcasecmp(s1->name, s2->name);
1097
1098
if (show_inverted)
1099
result = -result;
1100
1101
if (result > 0) {
1102
struct slabinfo t;
1103
1104
memcpy(&t, s1, sizeof(struct slabinfo));
1105
memcpy(s1, s2, sizeof(struct slabinfo));
1106
memcpy(s2, &t, sizeof(struct slabinfo));
1107
}
1108
}
1109
}
1110
}
1111
1112
static void sort_aliases(void)
1113
{
1114
struct aliasinfo *a1,*a2;
1115
1116
for (a1 = aliasinfo; a1 < aliasinfo + aliases; a1++) {
1117
for (a2 = a1 + 1; a2 < aliasinfo + aliases; a2++) {
1118
char *n1, *n2;
1119
1120
n1 = a1->name;
1121
n2 = a2->name;
1122
if (show_alias && !show_inverted) {
1123
n1 = a1->ref;
1124
n2 = a2->ref;
1125
}
1126
if (strcasecmp(n1, n2) > 0) {
1127
struct aliasinfo t;
1128
1129
memcpy(&t, a1, sizeof(struct aliasinfo));
1130
memcpy(a1, a2, sizeof(struct aliasinfo));
1131
memcpy(a2, &t, sizeof(struct aliasinfo));
1132
}
1133
}
1134
}
1135
}
1136
1137
static void link_slabs(void)
1138
{
1139
struct aliasinfo *a;
1140
struct slabinfo *s;
1141
1142
for (a = aliasinfo; a < aliasinfo + aliases; a++) {
1143
1144
for (s = slabinfo; s < slabinfo + slabs; s++)
1145
if (strcmp(a->ref, s->name) == 0) {
1146
a->slab = s;
1147
s->refs++;
1148
break;
1149
}
1150
if (s == slabinfo + slabs)
1151
fatal("Unresolved alias %s\n", a->ref);
1152
}
1153
}
1154
1155
static void alias(void)
1156
{
1157
struct aliasinfo *a;
1158
char *active = NULL;
1159
1160
sort_aliases();
1161
link_slabs();
1162
1163
for(a = aliasinfo; a < aliasinfo + aliases; a++) {
1164
1165
if (!show_single_ref && a->slab->refs == 1)
1166
continue;
1167
1168
if (!show_inverted) {
1169
if (active) {
1170
if (strcmp(a->slab->name, active) == 0) {
1171
printf(" %s", a->name);
1172
continue;
1173
}
1174
}
1175
printf("\n%-12s <- %s", a->slab->name, a->name);
1176
active = a->slab->name;
1177
}
1178
else
1179
printf("%-15s -> %s\n", a->name, a->slab->name);
1180
}
1181
if (active)
1182
printf("\n");
1183
}
1184
1185
1186
static void rename_slabs(void)
1187
{
1188
struct slabinfo *s;
1189
struct aliasinfo *a;
1190
1191
for (s = slabinfo; s < slabinfo + slabs; s++) {
1192
if (*s->name != ':')
1193
continue;
1194
1195
if (s->refs > 1 && !show_first_alias)
1196
continue;
1197
1198
a = find_one_alias(s);
1199
1200
if (a)
1201
s->name = a->name;
1202
else {
1203
s->name = "*";
1204
actual_slabs--;
1205
}
1206
}
1207
}
1208
1209
static int slab_mismatch(char *slab)
1210
{
1211
return regexec(&pattern, slab, 0, NULL, 0);
1212
}
1213
1214
static void read_slab_dir(void)
1215
{
1216
DIR *dir;
1217
struct dirent *de;
1218
struct slabinfo *slab = slabinfo;
1219
struct aliasinfo *alias = aliasinfo;
1220
char *p;
1221
char *t;
1222
int count;
1223
1224
if (chdir("/sys/kernel/slab") && chdir("/sys/slab"))
1225
fatal("SYSFS support for SLUB not active\n");
1226
1227
dir = opendir(".");
1228
while ((de = readdir(dir))) {
1229
if (de->d_name[0] == '.' ||
1230
(de->d_name[0] != ':' && slab_mismatch(de->d_name)))
1231
continue;
1232
switch (de->d_type) {
1233
case DT_LNK:
1234
if (alias - aliasinfo == MAX_ALIASES)
1235
fatal("Too many aliases\n");
1236
alias->name = strdup(de->d_name);
1237
count = readlink(de->d_name, buffer, sizeof(buffer)-1);
1238
1239
if (count < 0)
1240
fatal("Cannot read symlink %s\n", de->d_name);
1241
1242
buffer[count] = 0;
1243
p = buffer + count;
1244
while (p > buffer && p[-1] != '/')
1245
p--;
1246
alias->ref = strdup(p);
1247
alias++;
1248
break;
1249
case DT_DIR:
1250
if (slab - slabinfo == MAX_SLABS)
1251
fatal("Too many slabs\n");
1252
if (chdir(de->d_name))
1253
fatal("Unable to access slab %s\n", slab->name);
1254
slab->name = strdup(de->d_name);
1255
slab->alias = 0;
1256
slab->refs = 0;
1257
slab->aliases = get_obj("aliases");
1258
slab->align = get_obj("align");
1259
slab->cache_dma = get_obj("cache_dma");
1260
slab->cpu_slabs = get_obj("cpu_slabs");
1261
slab->destroy_by_rcu = get_obj("destroy_by_rcu");
1262
slab->hwcache_align = get_obj("hwcache_align");
1263
slab->object_size = get_obj("object_size");
1264
slab->objects = get_obj("objects");
1265
slab->objects_partial = get_obj("objects_partial");
1266
slab->objects_total = get_obj("objects_total");
1267
slab->objs_per_slab = get_obj("objs_per_slab");
1268
slab->order = get_obj("order");
1269
slab->partial = get_obj("partial");
1270
slab->partial = get_obj_and_str("partial", &t);
1271
decode_numa_list(slab->numa_partial, t);
1272
free(t);
1273
slab->poison = get_obj("poison");
1274
slab->reclaim_account = get_obj("reclaim_account");
1275
slab->red_zone = get_obj("red_zone");
1276
slab->sanity_checks = get_obj("sanity_checks");
1277
slab->slab_size = get_obj("slab_size");
1278
slab->slabs = get_obj_and_str("slabs", &t);
1279
decode_numa_list(slab->numa, t);
1280
free(t);
1281
slab->store_user = get_obj("store_user");
1282
slab->trace = get_obj("trace");
1283
slab->alloc_fastpath = get_obj("alloc_fastpath");
1284
slab->alloc_slowpath = get_obj("alloc_slowpath");
1285
slab->free_fastpath = get_obj("free_fastpath");
1286
slab->free_slowpath = get_obj("free_slowpath");
1287
slab->free_frozen= get_obj("free_frozen");
1288
slab->free_add_partial = get_obj("free_add_partial");
1289
slab->free_remove_partial = get_obj("free_remove_partial");
1290
slab->alloc_from_partial = get_obj("alloc_from_partial");
1291
slab->alloc_slab = get_obj("alloc_slab");
1292
slab->alloc_refill = get_obj("alloc_refill");
1293
slab->free_slab = get_obj("free_slab");
1294
slab->cpuslab_flush = get_obj("cpuslab_flush");
1295
slab->deactivate_full = get_obj("deactivate_full");
1296
slab->deactivate_empty = get_obj("deactivate_empty");
1297
slab->deactivate_to_head = get_obj("deactivate_to_head");
1298
slab->deactivate_to_tail = get_obj("deactivate_to_tail");
1299
slab->deactivate_remote_frees = get_obj("deactivate_remote_frees");
1300
slab->order_fallback = get_obj("order_fallback");
1301
slab->cmpxchg_double_cpu_fail = get_obj("cmpxchg_double_cpu_fail");
1302
slab->cmpxchg_double_fail = get_obj("cmpxchg_double_fail");
1303
slab->cpu_partial_alloc = get_obj("cpu_partial_alloc");
1304
slab->cpu_partial_free = get_obj("cpu_partial_free");
1305
slab->alloc_node_mismatch = get_obj("alloc_node_mismatch");
1306
slab->deactivate_bypass = get_obj("deactivate_bypass");
1307
if (chdir(".."))
1308
fatal("Unable to chdir from slab ../%s\n",
1309
slab->name);
1310
if (slab->name[0] == ':')
1311
alias_targets++;
1312
slab++;
1313
break;
1314
default :
1315
fatal("Unknown file type %lx\n", de->d_type);
1316
}
1317
}
1318
closedir(dir);
1319
slabs = slab - slabinfo;
1320
actual_slabs = slabs;
1321
aliases = alias - aliasinfo;
1322
}
1323
1324
static void output_slabs(void)
1325
{
1326
struct slabinfo *slab;
1327
int lines = output_lines;
1328
1329
for (slab = slabinfo; (slab < slabinfo + slabs) &&
1330
lines != 0; slab++) {
1331
1332
if (slab->alias)
1333
continue;
1334
1335
if (lines != -1)
1336
lines--;
1337
1338
if (show_numa)
1339
slab_numa(slab, 0);
1340
else if (show_track)
1341
show_tracking(slab);
1342
else if (validate)
1343
slab_validate(slab);
1344
else if (shrink)
1345
slab_shrink(slab);
1346
else if (set_debug)
1347
slab_debug(slab);
1348
else if (show_ops)
1349
ops(slab);
1350
else if (show_slab)
1351
slabcache(slab);
1352
else if (show_report)
1353
report(slab);
1354
}
1355
}
1356
1357
static void _xtotals(char *heading, char *underline,
1358
int loss, int size, int partial)
1359
{
1360
printf("%s%s", heading, underline);
1361
line = 0;
1362
sort_loss = loss;
1363
sort_size = size;
1364
sort_partial = partial;
1365
sort_slabs();
1366
output_slabs();
1367
}
1368
1369
static void xtotals(void)
1370
{
1371
char *heading, *underline;
1372
1373
totals();
1374
1375
link_slabs();
1376
rename_slabs();
1377
1378
heading = "\nSlabs sorted by size\n";
1379
underline = "--------------------\n";
1380
_xtotals(heading, underline, 0, 1, 0);
1381
1382
heading = "\nSlabs sorted by loss\n";
1383
underline = "--------------------\n";
1384
_xtotals(heading, underline, 1, 0, 0);
1385
1386
heading = "\nSlabs sorted by number of partial slabs\n";
1387
underline = "---------------------------------------\n";
1388
_xtotals(heading, underline, 0, 0, 1);
1389
1390
printf("\n");
1391
}
1392
1393
struct option opts[] = {
1394
{ "aliases", no_argument, NULL, 'a' },
1395
{ "activity", no_argument, NULL, 'A' },
1396
{ "Bytes", no_argument, NULL, 'B'},
1397
{ "debug", optional_argument, NULL, 'd' },
1398
{ "display-activity", no_argument, NULL, 'D' },
1399
{ "empty", no_argument, NULL, 'e' },
1400
{ "first-alias", no_argument, NULL, 'f' },
1401
{ "help", no_argument, NULL, 'h' },
1402
{ "inverted", no_argument, NULL, 'i'},
1403
{ "slabs", no_argument, NULL, 'l' },
1404
{ "Loss", no_argument, NULL, 'L'},
1405
{ "numa", no_argument, NULL, 'n' },
1406
{ "lines", required_argument, NULL, 'N'},
1407
{ "ops", no_argument, NULL, 'o' },
1408
{ "partial", no_argument, NULL, 'p'},
1409
{ "report", no_argument, NULL, 'r' },
1410
{ "shrink", no_argument, NULL, 's' },
1411
{ "Size", no_argument, NULL, 'S'},
1412
{ "tracking", no_argument, NULL, 't'},
1413
{ "Totals", no_argument, NULL, 'T'},
1414
{ "Unreclaim", no_argument, NULL, 'U'},
1415
{ "validate", no_argument, NULL, 'v' },
1416
{ "Xtotals", no_argument, NULL, 'X'},
1417
{ "zero", no_argument, NULL, 'z' },
1418
{ "1ref", no_argument, NULL, '1'},
1419
{ NULL, 0, NULL, 0 }
1420
};
1421
1422
int main(int argc, char *argv[])
1423
{
1424
int c;
1425
int err;
1426
char *pattern_source;
1427
1428
page_size = getpagesize();
1429
1430
while ((c = getopt_long(argc, argv, "aABd::DefhilLnN:oPrsStTUvXz1",
1431
opts, NULL)) != -1)
1432
switch (c) {
1433
case 'a':
1434
show_alias = 1;
1435
break;
1436
case 'A':
1437
sort_active = 1;
1438
break;
1439
case 'B':
1440
show_bytes = 1;
1441
break;
1442
case 'd':
1443
set_debug = 1;
1444
if (!debug_opt_scan(optarg))
1445
fatal("Invalid debug option '%s'\n", optarg);
1446
break;
1447
case 'D':
1448
show_activity = 1;
1449
break;
1450
case 'e':
1451
show_empty = 1;
1452
break;
1453
case 'f':
1454
show_first_alias = 1;
1455
break;
1456
case 'h':
1457
usage();
1458
return 0;
1459
case 'i':
1460
show_inverted = 1;
1461
break;
1462
case 'l':
1463
show_slab = 1;
1464
break;
1465
case 'L':
1466
sort_loss = 1;
1467
break;
1468
case 'n':
1469
show_numa = 1;
1470
break;
1471
case 'N':
1472
if (optarg) {
1473
output_lines = atoi(optarg);
1474
if (output_lines < 1)
1475
output_lines = 1;
1476
}
1477
break;
1478
case 'o':
1479
show_ops = 1;
1480
break;
1481
case 'r':
1482
show_report = 1;
1483
break;
1484
case 'P':
1485
sort_partial = 1;
1486
break;
1487
case 's':
1488
shrink = 1;
1489
break;
1490
case 'S':
1491
sort_size = 1;
1492
break;
1493
case 't':
1494
show_track = 1;
1495
break;
1496
case 'T':
1497
show_totals = 1;
1498
break;
1499
case 'U':
1500
unreclaim_only = 1;
1501
break;
1502
case 'v':
1503
validate = 1;
1504
break;
1505
case 'X':
1506
if (output_lines == -1)
1507
output_lines = 1;
1508
extended_totals = 1;
1509
show_bytes = 1;
1510
break;
1511
case 'z':
1512
skip_zero = 0;
1513
break;
1514
case '1':
1515
show_single_ref = 1;
1516
break;
1517
default:
1518
fatal("%s: Invalid option '%c'\n", argv[0], optopt);
1519
1520
}
1521
1522
if (!show_slab && !show_alias && !show_track && !show_report
1523
&& !validate && !shrink && !set_debug && !show_ops)
1524
show_slab = 1;
1525
1526
if (argc > optind)
1527
pattern_source = argv[optind];
1528
else
1529
pattern_source = ".*";
1530
1531
err = regcomp(&pattern, pattern_source, REG_ICASE|REG_NOSUB);
1532
if (err)
1533
fatal("%s: Invalid pattern '%s' code %d\n",
1534
argv[0], pattern_source, err);
1535
read_slab_dir();
1536
if (show_alias) {
1537
alias();
1538
} else if (extended_totals) {
1539
xtotals();
1540
} else if (show_totals) {
1541
totals();
1542
} else {
1543
link_slabs();
1544
rename_slabs();
1545
sort_slabs();
1546
output_slabs();
1547
}
1548
return 0;
1549
}
1550
1551