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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/tools/bpf/bpftool/prog.c
26285 views
1
// SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
2
/* Copyright (C) 2017-2018 Netronome Systems, Inc. */
3
4
#ifndef _GNU_SOURCE
5
#define _GNU_SOURCE
6
#endif
7
#include <errno.h>
8
#include <fcntl.h>
9
#include <signal.h>
10
#include <stdarg.h>
11
#include <stdio.h>
12
#include <stdlib.h>
13
#include <string.h>
14
#include <time.h>
15
#include <unistd.h>
16
#include <net/if.h>
17
#include <sys/ioctl.h>
18
#include <sys/types.h>
19
#include <sys/stat.h>
20
#include <sys/syscall.h>
21
#include <dirent.h>
22
23
#include <linux/err.h>
24
#include <linux/perf_event.h>
25
#include <linux/sizes.h>
26
27
#include <bpf/bpf.h>
28
#include <bpf/btf.h>
29
#include <bpf/hashmap.h>
30
#include <bpf/libbpf.h>
31
#include <bpf/libbpf_internal.h>
32
#include <bpf/skel_internal.h>
33
34
#include "cfg.h"
35
#include "main.h"
36
#include "xlated_dumper.h"
37
38
#define BPF_METADATA_PREFIX "bpf_metadata_"
39
#define BPF_METADATA_PREFIX_LEN (sizeof(BPF_METADATA_PREFIX) - 1)
40
41
enum dump_mode {
42
DUMP_JITED,
43
DUMP_XLATED,
44
};
45
46
static const bool attach_types[] = {
47
[BPF_SK_SKB_STREAM_PARSER] = true,
48
[BPF_SK_SKB_STREAM_VERDICT] = true,
49
[BPF_SK_SKB_VERDICT] = true,
50
[BPF_SK_MSG_VERDICT] = true,
51
[BPF_FLOW_DISSECTOR] = true,
52
[__MAX_BPF_ATTACH_TYPE] = false,
53
};
54
55
/* Textual representations traditionally used by the program and kept around
56
* for the sake of backwards compatibility.
57
*/
58
static const char * const attach_type_strings[] = {
59
[BPF_SK_SKB_STREAM_PARSER] = "stream_parser",
60
[BPF_SK_SKB_STREAM_VERDICT] = "stream_verdict",
61
[BPF_SK_SKB_VERDICT] = "skb_verdict",
62
[BPF_SK_MSG_VERDICT] = "msg_verdict",
63
[__MAX_BPF_ATTACH_TYPE] = NULL,
64
};
65
66
static struct hashmap *prog_table;
67
68
static enum bpf_attach_type parse_attach_type(const char *str)
69
{
70
enum bpf_attach_type type;
71
72
for (type = 0; type < __MAX_BPF_ATTACH_TYPE; type++) {
73
if (attach_types[type]) {
74
const char *attach_type_str;
75
76
attach_type_str = libbpf_bpf_attach_type_str(type);
77
if (!strcmp(str, attach_type_str))
78
return type;
79
}
80
81
if (attach_type_strings[type] &&
82
is_prefix(str, attach_type_strings[type]))
83
return type;
84
}
85
86
return __MAX_BPF_ATTACH_TYPE;
87
}
88
89
static int prep_prog_info(struct bpf_prog_info *const info, enum dump_mode mode,
90
void **info_data, size_t *const info_data_sz)
91
{
92
struct bpf_prog_info holder = {};
93
size_t needed = 0;
94
void *ptr;
95
96
if (mode == DUMP_JITED) {
97
holder.jited_prog_len = info->jited_prog_len;
98
needed += info->jited_prog_len;
99
} else {
100
holder.xlated_prog_len = info->xlated_prog_len;
101
needed += info->xlated_prog_len;
102
}
103
104
holder.nr_jited_ksyms = info->nr_jited_ksyms;
105
needed += info->nr_jited_ksyms * sizeof(__u64);
106
107
holder.nr_jited_func_lens = info->nr_jited_func_lens;
108
needed += info->nr_jited_func_lens * sizeof(__u32);
109
110
holder.nr_func_info = info->nr_func_info;
111
holder.func_info_rec_size = info->func_info_rec_size;
112
needed += info->nr_func_info * info->func_info_rec_size;
113
114
holder.nr_line_info = info->nr_line_info;
115
holder.line_info_rec_size = info->line_info_rec_size;
116
needed += info->nr_line_info * info->line_info_rec_size;
117
118
holder.nr_jited_line_info = info->nr_jited_line_info;
119
holder.jited_line_info_rec_size = info->jited_line_info_rec_size;
120
needed += info->nr_jited_line_info * info->jited_line_info_rec_size;
121
122
if (needed > *info_data_sz) {
123
ptr = realloc(*info_data, needed);
124
if (!ptr)
125
return -1;
126
127
*info_data = ptr;
128
*info_data_sz = needed;
129
}
130
ptr = *info_data;
131
132
if (mode == DUMP_JITED) {
133
holder.jited_prog_insns = ptr_to_u64(ptr);
134
ptr += holder.jited_prog_len;
135
} else {
136
holder.xlated_prog_insns = ptr_to_u64(ptr);
137
ptr += holder.xlated_prog_len;
138
}
139
140
holder.jited_ksyms = ptr_to_u64(ptr);
141
ptr += holder.nr_jited_ksyms * sizeof(__u64);
142
143
holder.jited_func_lens = ptr_to_u64(ptr);
144
ptr += holder.nr_jited_func_lens * sizeof(__u32);
145
146
holder.func_info = ptr_to_u64(ptr);
147
ptr += holder.nr_func_info * holder.func_info_rec_size;
148
149
holder.line_info = ptr_to_u64(ptr);
150
ptr += holder.nr_line_info * holder.line_info_rec_size;
151
152
holder.jited_line_info = ptr_to_u64(ptr);
153
ptr += holder.nr_jited_line_info * holder.jited_line_info_rec_size;
154
155
*info = holder;
156
return 0;
157
}
158
159
static void print_boot_time(__u64 nsecs, char *buf, unsigned int size)
160
{
161
struct timespec real_time_ts, boot_time_ts;
162
time_t wallclock_secs;
163
struct tm load_tm;
164
165
buf[--size] = '\0';
166
167
if (clock_gettime(CLOCK_REALTIME, &real_time_ts) ||
168
clock_gettime(CLOCK_BOOTTIME, &boot_time_ts)) {
169
perror("Can't read clocks");
170
snprintf(buf, size, "%llu", nsecs / 1000000000);
171
return;
172
}
173
174
wallclock_secs = (real_time_ts.tv_sec - boot_time_ts.tv_sec) +
175
(real_time_ts.tv_nsec - boot_time_ts.tv_nsec + nsecs) /
176
1000000000;
177
178
179
if (!localtime_r(&wallclock_secs, &load_tm)) {
180
snprintf(buf, size, "%llu", nsecs / 1000000000);
181
return;
182
}
183
184
if (json_output)
185
strftime(buf, size, "%s", &load_tm);
186
else
187
strftime(buf, size, "%FT%T%z", &load_tm);
188
}
189
190
static void show_prog_maps(int fd, __u32 num_maps)
191
{
192
struct bpf_prog_info info = {};
193
__u32 len = sizeof(info);
194
__u32 map_ids[num_maps];
195
unsigned int i;
196
int err;
197
198
info.nr_map_ids = num_maps;
199
info.map_ids = ptr_to_u64(map_ids);
200
201
err = bpf_prog_get_info_by_fd(fd, &info, &len);
202
if (err || !info.nr_map_ids)
203
return;
204
205
if (json_output) {
206
jsonw_name(json_wtr, "map_ids");
207
jsonw_start_array(json_wtr);
208
for (i = 0; i < info.nr_map_ids; i++)
209
jsonw_uint(json_wtr, map_ids[i]);
210
jsonw_end_array(json_wtr);
211
} else {
212
printf(" map_ids ");
213
for (i = 0; i < info.nr_map_ids; i++)
214
printf("%u%s", map_ids[i],
215
i == info.nr_map_ids - 1 ? "" : ",");
216
}
217
}
218
219
static void *find_metadata(int prog_fd, struct bpf_map_info *map_info)
220
{
221
struct bpf_prog_info prog_info;
222
__u32 prog_info_len;
223
__u32 map_info_len;
224
void *value = NULL;
225
__u32 *map_ids;
226
int nr_maps;
227
int key = 0;
228
int map_fd;
229
int ret;
230
__u32 i;
231
232
memset(&prog_info, 0, sizeof(prog_info));
233
prog_info_len = sizeof(prog_info);
234
ret = bpf_prog_get_info_by_fd(prog_fd, &prog_info, &prog_info_len);
235
if (ret)
236
return NULL;
237
238
if (!prog_info.nr_map_ids)
239
return NULL;
240
241
map_ids = calloc(prog_info.nr_map_ids, sizeof(__u32));
242
if (!map_ids)
243
return NULL;
244
245
nr_maps = prog_info.nr_map_ids;
246
memset(&prog_info, 0, sizeof(prog_info));
247
prog_info.nr_map_ids = nr_maps;
248
prog_info.map_ids = ptr_to_u64(map_ids);
249
prog_info_len = sizeof(prog_info);
250
251
ret = bpf_prog_get_info_by_fd(prog_fd, &prog_info, &prog_info_len);
252
if (ret)
253
goto free_map_ids;
254
255
for (i = 0; i < prog_info.nr_map_ids; i++) {
256
map_fd = bpf_map_get_fd_by_id(map_ids[i]);
257
if (map_fd < 0)
258
goto free_map_ids;
259
260
memset(map_info, 0, sizeof(*map_info));
261
map_info_len = sizeof(*map_info);
262
ret = bpf_map_get_info_by_fd(map_fd, map_info, &map_info_len);
263
if (ret < 0) {
264
close(map_fd);
265
goto free_map_ids;
266
}
267
268
if (map_info->type != BPF_MAP_TYPE_ARRAY ||
269
map_info->key_size != sizeof(int) ||
270
map_info->max_entries != 1 ||
271
!map_info->btf_value_type_id ||
272
!strstr(map_info->name, ".rodata")) {
273
close(map_fd);
274
continue;
275
}
276
277
value = malloc(map_info->value_size);
278
if (!value) {
279
close(map_fd);
280
goto free_map_ids;
281
}
282
283
if (bpf_map_lookup_elem(map_fd, &key, value)) {
284
close(map_fd);
285
free(value);
286
value = NULL;
287
goto free_map_ids;
288
}
289
290
close(map_fd);
291
break;
292
}
293
294
free_map_ids:
295
free(map_ids);
296
return value;
297
}
298
299
static bool has_metadata_prefix(const char *s)
300
{
301
return strncmp(s, BPF_METADATA_PREFIX, BPF_METADATA_PREFIX_LEN) == 0;
302
}
303
304
static void show_prog_metadata(int fd, __u32 num_maps)
305
{
306
const struct btf_type *t_datasec, *t_var;
307
struct bpf_map_info map_info;
308
struct btf_var_secinfo *vsi;
309
bool printed_header = false;
310
unsigned int i, vlen;
311
void *value = NULL;
312
const char *name;
313
struct btf *btf;
314
int err;
315
316
if (!num_maps)
317
return;
318
319
memset(&map_info, 0, sizeof(map_info));
320
value = find_metadata(fd, &map_info);
321
if (!value)
322
return;
323
324
btf = btf__load_from_kernel_by_id(map_info.btf_id);
325
if (!btf)
326
goto out_free;
327
328
t_datasec = btf__type_by_id(btf, map_info.btf_value_type_id);
329
if (!btf_is_datasec(t_datasec))
330
goto out_free;
331
332
vlen = btf_vlen(t_datasec);
333
vsi = btf_var_secinfos(t_datasec);
334
335
/* We don't proceed to check the kinds of the elements of the DATASEC.
336
* The verifier enforces them to be BTF_KIND_VAR.
337
*/
338
339
if (json_output) {
340
struct btf_dumper d = {
341
.btf = btf,
342
.jw = json_wtr,
343
.is_plain_text = false,
344
};
345
346
for (i = 0; i < vlen; i++, vsi++) {
347
t_var = btf__type_by_id(btf, vsi->type);
348
name = btf__name_by_offset(btf, t_var->name_off);
349
350
if (!has_metadata_prefix(name))
351
continue;
352
353
if (!printed_header) {
354
jsonw_name(json_wtr, "metadata");
355
jsonw_start_object(json_wtr);
356
printed_header = true;
357
}
358
359
jsonw_name(json_wtr, name + BPF_METADATA_PREFIX_LEN);
360
err = btf_dumper_type(&d, t_var->type, value + vsi->offset);
361
if (err) {
362
p_err("btf dump failed: %d", err);
363
break;
364
}
365
}
366
if (printed_header)
367
jsonw_end_object(json_wtr);
368
} else {
369
json_writer_t *btf_wtr;
370
struct btf_dumper d = {
371
.btf = btf,
372
.is_plain_text = true,
373
};
374
375
for (i = 0; i < vlen; i++, vsi++) {
376
t_var = btf__type_by_id(btf, vsi->type);
377
name = btf__name_by_offset(btf, t_var->name_off);
378
379
if (!has_metadata_prefix(name))
380
continue;
381
382
if (!printed_header) {
383
printf("\tmetadata:");
384
385
btf_wtr = jsonw_new(stdout);
386
if (!btf_wtr) {
387
p_err("jsonw alloc failed");
388
goto out_free;
389
}
390
d.jw = btf_wtr,
391
392
printed_header = true;
393
}
394
395
printf("\n\t\t%s = ", name + BPF_METADATA_PREFIX_LEN);
396
397
jsonw_reset(btf_wtr);
398
err = btf_dumper_type(&d, t_var->type, value + vsi->offset);
399
if (err) {
400
p_err("btf dump failed: %d", err);
401
break;
402
}
403
}
404
if (printed_header)
405
jsonw_destroy(&btf_wtr);
406
}
407
408
out_free:
409
btf__free(btf);
410
free(value);
411
}
412
413
static void print_prog_header_json(struct bpf_prog_info *info, int fd)
414
{
415
const char *prog_type_str;
416
char prog_name[MAX_PROG_FULL_NAME];
417
418
jsonw_uint_field(json_wtr, "id", info->id);
419
prog_type_str = libbpf_bpf_prog_type_str(info->type);
420
421
if (prog_type_str)
422
jsonw_string_field(json_wtr, "type", prog_type_str);
423
else
424
jsonw_uint_field(json_wtr, "type", info->type);
425
426
if (*info->name) {
427
get_prog_full_name(info, fd, prog_name, sizeof(prog_name));
428
jsonw_string_field(json_wtr, "name", prog_name);
429
}
430
431
jsonw_name(json_wtr, "tag");
432
jsonw_printf(json_wtr, "\"" BPF_TAG_FMT "\"",
433
info->tag[0], info->tag[1], info->tag[2], info->tag[3],
434
info->tag[4], info->tag[5], info->tag[6], info->tag[7]);
435
436
jsonw_bool_field(json_wtr, "gpl_compatible", info->gpl_compatible);
437
if (info->run_time_ns) {
438
jsonw_uint_field(json_wtr, "run_time_ns", info->run_time_ns);
439
jsonw_uint_field(json_wtr, "run_cnt", info->run_cnt);
440
}
441
if (info->recursion_misses)
442
jsonw_uint_field(json_wtr, "recursion_misses", info->recursion_misses);
443
}
444
445
static void print_prog_json(struct bpf_prog_info *info, int fd, bool orphaned)
446
{
447
char *memlock;
448
449
jsonw_start_object(json_wtr);
450
print_prog_header_json(info, fd);
451
print_dev_json(info->ifindex, info->netns_dev, info->netns_ino);
452
453
if (info->load_time) {
454
char buf[32];
455
456
print_boot_time(info->load_time, buf, sizeof(buf));
457
458
/* Piggy back on load_time, since 0 uid is a valid one */
459
jsonw_name(json_wtr, "loaded_at");
460
jsonw_printf(json_wtr, "%s", buf);
461
jsonw_uint_field(json_wtr, "uid", info->created_by_uid);
462
}
463
464
jsonw_bool_field(json_wtr, "orphaned", orphaned);
465
jsonw_uint_field(json_wtr, "bytes_xlated", info->xlated_prog_len);
466
467
if (info->jited_prog_len) {
468
jsonw_bool_field(json_wtr, "jited", true);
469
jsonw_uint_field(json_wtr, "bytes_jited", info->jited_prog_len);
470
} else {
471
jsonw_bool_field(json_wtr, "jited", false);
472
}
473
474
memlock = get_fdinfo(fd, "memlock");
475
if (memlock)
476
jsonw_int_field(json_wtr, "bytes_memlock", atoll(memlock));
477
free(memlock);
478
479
if (info->nr_map_ids)
480
show_prog_maps(fd, info->nr_map_ids);
481
482
if (info->btf_id)
483
jsonw_int_field(json_wtr, "btf_id", info->btf_id);
484
485
if (!hashmap__empty(prog_table)) {
486
struct hashmap_entry *entry;
487
488
jsonw_name(json_wtr, "pinned");
489
jsonw_start_array(json_wtr);
490
hashmap__for_each_key_entry(prog_table, entry, info->id)
491
jsonw_string(json_wtr, entry->pvalue);
492
jsonw_end_array(json_wtr);
493
}
494
495
emit_obj_refs_json(refs_table, info->id, json_wtr);
496
497
show_prog_metadata(fd, info->nr_map_ids);
498
499
jsonw_end_object(json_wtr);
500
}
501
502
static void print_prog_header_plain(struct bpf_prog_info *info, int fd)
503
{
504
const char *prog_type_str;
505
char prog_name[MAX_PROG_FULL_NAME];
506
507
printf("%u: ", info->id);
508
prog_type_str = libbpf_bpf_prog_type_str(info->type);
509
if (prog_type_str)
510
printf("%s ", prog_type_str);
511
else
512
printf("type %u ", info->type);
513
514
if (*info->name) {
515
get_prog_full_name(info, fd, prog_name, sizeof(prog_name));
516
printf("name %s ", prog_name);
517
}
518
519
printf("tag ");
520
fprint_hex(stdout, info->tag, BPF_TAG_SIZE, "");
521
print_dev_plain(info->ifindex, info->netns_dev, info->netns_ino);
522
printf("%s", info->gpl_compatible ? " gpl" : "");
523
if (info->run_time_ns)
524
printf(" run_time_ns %llu run_cnt %llu",
525
info->run_time_ns, info->run_cnt);
526
if (info->recursion_misses)
527
printf(" recursion_misses %llu", info->recursion_misses);
528
printf("\n");
529
}
530
531
static void print_prog_plain(struct bpf_prog_info *info, int fd, bool orphaned)
532
{
533
char *memlock;
534
535
print_prog_header_plain(info, fd);
536
537
if (info->load_time) {
538
char buf[32];
539
540
print_boot_time(info->load_time, buf, sizeof(buf));
541
542
/* Piggy back on load_time, since 0 uid is a valid one */
543
printf("\tloaded_at %s uid %u\n", buf, info->created_by_uid);
544
}
545
546
printf("\txlated %uB", info->xlated_prog_len);
547
548
if (info->jited_prog_len)
549
printf(" jited %uB", info->jited_prog_len);
550
else
551
printf(" not jited");
552
553
memlock = get_fdinfo(fd, "memlock");
554
if (memlock)
555
printf(" memlock %sB", memlock);
556
free(memlock);
557
558
if (orphaned)
559
printf(" orphaned");
560
561
if (info->nr_map_ids)
562
show_prog_maps(fd, info->nr_map_ids);
563
564
if (!hashmap__empty(prog_table)) {
565
struct hashmap_entry *entry;
566
567
hashmap__for_each_key_entry(prog_table, entry, info->id)
568
printf("\n\tpinned %s", (char *)entry->pvalue);
569
}
570
571
if (info->btf_id)
572
printf("\n\tbtf_id %u", info->btf_id);
573
574
emit_obj_refs_plain(refs_table, info->id, "\n\tpids ");
575
576
printf("\n");
577
578
show_prog_metadata(fd, info->nr_map_ids);
579
}
580
581
static int show_prog(int fd)
582
{
583
struct bpf_prog_info info = {};
584
__u32 len = sizeof(info);
585
int err;
586
587
err = bpf_prog_get_info_by_fd(fd, &info, &len);
588
if (err && err != -ENODEV) {
589
p_err("can't get prog info: %s", strerror(errno));
590
return -1;
591
}
592
593
if (json_output)
594
print_prog_json(&info, fd, err == -ENODEV);
595
else
596
print_prog_plain(&info, fd, err == -ENODEV);
597
598
return 0;
599
}
600
601
static int do_show_subset(int argc, char **argv)
602
{
603
int *fds = NULL;
604
int nb_fds, i;
605
int err = -1;
606
607
fds = malloc(sizeof(int));
608
if (!fds) {
609
p_err("mem alloc failed");
610
return -1;
611
}
612
nb_fds = prog_parse_fds(&argc, &argv, &fds);
613
if (nb_fds < 1)
614
goto exit_free;
615
616
if (json_output && nb_fds > 1)
617
jsonw_start_array(json_wtr); /* root array */
618
for (i = 0; i < nb_fds; i++) {
619
err = show_prog(fds[i]);
620
if (err) {
621
for (; i < nb_fds; i++)
622
close(fds[i]);
623
break;
624
}
625
close(fds[i]);
626
}
627
if (json_output && nb_fds > 1)
628
jsonw_end_array(json_wtr); /* root array */
629
630
exit_free:
631
free(fds);
632
return err;
633
}
634
635
static int do_show(int argc, char **argv)
636
{
637
__u32 id = 0;
638
int err;
639
int fd;
640
641
if (show_pinned) {
642
prog_table = hashmap__new(hash_fn_for_key_as_id,
643
equal_fn_for_key_as_id, NULL);
644
if (IS_ERR(prog_table)) {
645
p_err("failed to create hashmap for pinned paths");
646
return -1;
647
}
648
build_pinned_obj_table(prog_table, BPF_OBJ_PROG);
649
}
650
build_obj_refs_table(&refs_table, BPF_OBJ_PROG);
651
652
if (argc == 2)
653
return do_show_subset(argc, argv);
654
655
if (argc)
656
return BAD_ARG();
657
658
if (json_output)
659
jsonw_start_array(json_wtr);
660
while (true) {
661
err = bpf_prog_get_next_id(id, &id);
662
if (err) {
663
if (errno == ENOENT) {
664
err = 0;
665
break;
666
}
667
p_err("can't get next program: %s%s", strerror(errno),
668
errno == EINVAL ? " -- kernel too old?" : "");
669
err = -1;
670
break;
671
}
672
673
fd = bpf_prog_get_fd_by_id(id);
674
if (fd < 0) {
675
if (errno == ENOENT)
676
continue;
677
p_err("can't get prog by id (%u): %s",
678
id, strerror(errno));
679
err = -1;
680
break;
681
}
682
683
err = show_prog(fd);
684
close(fd);
685
if (err)
686
break;
687
}
688
689
if (json_output)
690
jsonw_end_array(json_wtr);
691
692
delete_obj_refs_table(refs_table);
693
694
if (show_pinned)
695
delete_pinned_obj_table(prog_table);
696
697
return err;
698
}
699
700
static int
701
prog_dump(struct bpf_prog_info *info, enum dump_mode mode,
702
char *filepath, bool opcodes, bool visual, bool linum)
703
{
704
struct bpf_prog_linfo *prog_linfo = NULL;
705
const char *disasm_opt = NULL;
706
struct dump_data dd = {};
707
void *func_info = NULL;
708
struct btf *btf = NULL;
709
char func_sig[1024];
710
unsigned char *buf;
711
__u32 member_len;
712
int fd, err = -1;
713
ssize_t n;
714
715
if (mode == DUMP_JITED) {
716
if (info->jited_prog_len == 0 || !info->jited_prog_insns) {
717
p_info("no instructions returned");
718
return -1;
719
}
720
buf = u64_to_ptr(info->jited_prog_insns);
721
member_len = info->jited_prog_len;
722
} else { /* DUMP_XLATED */
723
if (info->xlated_prog_len == 0 || !info->xlated_prog_insns) {
724
p_err("error retrieving insn dump: kernel.kptr_restrict set?");
725
return -1;
726
}
727
buf = u64_to_ptr(info->xlated_prog_insns);
728
member_len = info->xlated_prog_len;
729
}
730
731
if (info->btf_id) {
732
btf = btf__load_from_kernel_by_id(info->btf_id);
733
if (!btf) {
734
p_err("failed to get btf");
735
return -1;
736
}
737
}
738
739
func_info = u64_to_ptr(info->func_info);
740
741
if (info->nr_line_info) {
742
prog_linfo = bpf_prog_linfo__new(info);
743
if (!prog_linfo)
744
p_info("error in processing bpf_line_info. continue without it.");
745
}
746
747
if (filepath) {
748
fd = open(filepath, O_WRONLY | O_CREAT | O_TRUNC, 0600);
749
if (fd < 0) {
750
p_err("can't open file %s: %s", filepath,
751
strerror(errno));
752
goto exit_free;
753
}
754
755
n = write(fd, buf, member_len);
756
close(fd);
757
if (n != (ssize_t)member_len) {
758
p_err("error writing output file: %s",
759
n < 0 ? strerror(errno) : "short write");
760
goto exit_free;
761
}
762
763
if (json_output)
764
jsonw_null(json_wtr);
765
} else if (mode == DUMP_JITED) {
766
const char *name = NULL;
767
768
if (info->ifindex) {
769
name = ifindex_to_arch(info->ifindex, info->netns_dev,
770
info->netns_ino, &disasm_opt);
771
if (!name)
772
goto exit_free;
773
}
774
775
if (info->nr_jited_func_lens && info->jited_func_lens) {
776
struct kernel_sym *sym = NULL;
777
struct bpf_func_info *record;
778
char sym_name[SYM_MAX_NAME];
779
unsigned char *img = buf;
780
__u64 *ksyms = NULL;
781
__u32 *lens;
782
__u32 i;
783
if (info->nr_jited_ksyms) {
784
kernel_syms_load(&dd);
785
ksyms = u64_to_ptr(info->jited_ksyms);
786
}
787
788
if (json_output)
789
jsonw_start_array(json_wtr);
790
791
lens = u64_to_ptr(info->jited_func_lens);
792
for (i = 0; i < info->nr_jited_func_lens; i++) {
793
if (ksyms) {
794
sym = kernel_syms_search(&dd, ksyms[i]);
795
if (sym)
796
sprintf(sym_name, "%s", sym->name);
797
else
798
sprintf(sym_name, "0x%016llx", ksyms[i]);
799
} else {
800
strcpy(sym_name, "unknown");
801
}
802
803
if (func_info) {
804
record = func_info + i * info->func_info_rec_size;
805
btf_dumper_type_only(btf, record->type_id,
806
func_sig,
807
sizeof(func_sig));
808
}
809
810
if (json_output) {
811
jsonw_start_object(json_wtr);
812
if (func_info && func_sig[0] != '\0') {
813
jsonw_name(json_wtr, "proto");
814
jsonw_string(json_wtr, func_sig);
815
}
816
jsonw_name(json_wtr, "name");
817
jsonw_string(json_wtr, sym_name);
818
jsonw_name(json_wtr, "insns");
819
} else {
820
if (func_info && func_sig[0] != '\0')
821
printf("%s:\n", func_sig);
822
printf("%s:\n", sym_name);
823
}
824
825
if (ksyms) {
826
if (disasm_print_insn(img, lens[i], opcodes,
827
name, disasm_opt, btf,
828
prog_linfo, ksyms[i], i,
829
linum))
830
goto exit_free;
831
} else {
832
if (disasm_print_insn(img, lens[i], opcodes,
833
name, disasm_opt, btf,
834
NULL, 0, 0, false))
835
goto exit_free;
836
}
837
838
img += lens[i];
839
840
if (json_output)
841
jsonw_end_object(json_wtr);
842
else
843
printf("\n");
844
}
845
846
if (json_output)
847
jsonw_end_array(json_wtr);
848
} else {
849
if (disasm_print_insn(buf, member_len, opcodes, name,
850
disasm_opt, btf, NULL, 0, 0,
851
false))
852
goto exit_free;
853
}
854
} else {
855
kernel_syms_load(&dd);
856
dd.nr_jited_ksyms = info->nr_jited_ksyms;
857
dd.jited_ksyms = u64_to_ptr(info->jited_ksyms);
858
dd.btf = btf;
859
dd.func_info = func_info;
860
dd.finfo_rec_size = info->func_info_rec_size;
861
dd.prog_linfo = prog_linfo;
862
863
if (json_output)
864
dump_xlated_json(&dd, buf, member_len, opcodes, linum);
865
else if (visual)
866
dump_xlated_cfg(&dd, buf, member_len, opcodes, linum);
867
else
868
dump_xlated_plain(&dd, buf, member_len, opcodes, linum);
869
kernel_syms_destroy(&dd);
870
}
871
872
err = 0;
873
874
exit_free:
875
btf__free(btf);
876
bpf_prog_linfo__free(prog_linfo);
877
return err;
878
}
879
880
static int do_dump(int argc, char **argv)
881
{
882
struct bpf_prog_info info;
883
__u32 info_len = sizeof(info);
884
size_t info_data_sz = 0;
885
void *info_data = NULL;
886
char *filepath = NULL;
887
bool opcodes = false;
888
bool visual = false;
889
enum dump_mode mode;
890
bool linum = false;
891
int nb_fds, i = 0;
892
int *fds = NULL;
893
int err = -1;
894
895
if (is_prefix(*argv, "jited")) {
896
if (disasm_init())
897
return -1;
898
mode = DUMP_JITED;
899
} else if (is_prefix(*argv, "xlated")) {
900
mode = DUMP_XLATED;
901
} else {
902
p_err("expected 'xlated' or 'jited', got: %s", *argv);
903
return -1;
904
}
905
NEXT_ARG();
906
907
if (argc < 2)
908
usage();
909
910
fds = malloc(sizeof(int));
911
if (!fds) {
912
p_err("mem alloc failed");
913
return -1;
914
}
915
nb_fds = prog_parse_fds(&argc, &argv, &fds);
916
if (nb_fds < 1)
917
goto exit_free;
918
919
while (argc) {
920
if (is_prefix(*argv, "file")) {
921
NEXT_ARG();
922
if (!argc) {
923
p_err("expected file path");
924
goto exit_close;
925
}
926
if (nb_fds > 1) {
927
p_err("several programs matched");
928
goto exit_close;
929
}
930
931
filepath = *argv;
932
NEXT_ARG();
933
} else if (is_prefix(*argv, "opcodes")) {
934
opcodes = true;
935
NEXT_ARG();
936
} else if (is_prefix(*argv, "visual")) {
937
if (nb_fds > 1) {
938
p_err("several programs matched");
939
goto exit_close;
940
}
941
942
visual = true;
943
NEXT_ARG();
944
} else if (is_prefix(*argv, "linum")) {
945
linum = true;
946
NEXT_ARG();
947
} else {
948
usage();
949
goto exit_close;
950
}
951
}
952
953
if (filepath && (opcodes || visual || linum)) {
954
p_err("'file' is not compatible with 'opcodes', 'visual', or 'linum'");
955
goto exit_close;
956
}
957
if (json_output && visual) {
958
p_err("'visual' is not compatible with JSON output");
959
goto exit_close;
960
}
961
962
if (json_output && nb_fds > 1)
963
jsonw_start_array(json_wtr); /* root array */
964
for (i = 0; i < nb_fds; i++) {
965
memset(&info, 0, sizeof(info));
966
967
err = bpf_prog_get_info_by_fd(fds[i], &info, &info_len);
968
if (err) {
969
p_err("can't get prog info: %s", strerror(errno));
970
break;
971
}
972
973
err = prep_prog_info(&info, mode, &info_data, &info_data_sz);
974
if (err) {
975
p_err("can't grow prog info_data");
976
break;
977
}
978
979
err = bpf_prog_get_info_by_fd(fds[i], &info, &info_len);
980
if (err) {
981
p_err("can't get prog info: %s", strerror(errno));
982
break;
983
}
984
985
if (json_output && nb_fds > 1) {
986
jsonw_start_object(json_wtr); /* prog object */
987
print_prog_header_json(&info, fds[i]);
988
jsonw_name(json_wtr, "insns");
989
} else if (nb_fds > 1) {
990
print_prog_header_plain(&info, fds[i]);
991
}
992
993
err = prog_dump(&info, mode, filepath, opcodes, visual, linum);
994
995
if (json_output && nb_fds > 1)
996
jsonw_end_object(json_wtr); /* prog object */
997
else if (i != nb_fds - 1 && nb_fds > 1)
998
printf("\n");
999
1000
if (err)
1001
break;
1002
close(fds[i]);
1003
}
1004
if (json_output && nb_fds > 1)
1005
jsonw_end_array(json_wtr); /* root array */
1006
1007
exit_close:
1008
for (; i < nb_fds; i++)
1009
close(fds[i]);
1010
exit_free:
1011
free(info_data);
1012
free(fds);
1013
return err;
1014
}
1015
1016
static int do_pin(int argc, char **argv)
1017
{
1018
int err;
1019
1020
err = do_pin_any(argc, argv, prog_parse_fd);
1021
if (!err && json_output)
1022
jsonw_null(json_wtr);
1023
return err;
1024
}
1025
1026
struct map_replace {
1027
int idx;
1028
int fd;
1029
char *name;
1030
};
1031
1032
static int map_replace_compar(const void *p1, const void *p2)
1033
{
1034
const struct map_replace *a = p1, *b = p2;
1035
1036
return a->idx - b->idx;
1037
}
1038
1039
static int parse_attach_detach_args(int argc, char **argv, int *progfd,
1040
enum bpf_attach_type *attach_type,
1041
int *mapfd)
1042
{
1043
if (!REQ_ARGS(3))
1044
return -EINVAL;
1045
1046
*progfd = prog_parse_fd(&argc, &argv);
1047
if (*progfd < 0)
1048
return *progfd;
1049
1050
*attach_type = parse_attach_type(*argv);
1051
if (*attach_type == __MAX_BPF_ATTACH_TYPE) {
1052
p_err("invalid attach/detach type");
1053
return -EINVAL;
1054
}
1055
1056
if (*attach_type == BPF_FLOW_DISSECTOR) {
1057
*mapfd = 0;
1058
return 0;
1059
}
1060
1061
NEXT_ARG();
1062
if (!REQ_ARGS(2))
1063
return -EINVAL;
1064
1065
*mapfd = map_parse_fd(&argc, &argv, 0);
1066
if (*mapfd < 0)
1067
return *mapfd;
1068
1069
return 0;
1070
}
1071
1072
static int do_attach(int argc, char **argv)
1073
{
1074
enum bpf_attach_type attach_type;
1075
int err, progfd;
1076
int mapfd;
1077
1078
err = parse_attach_detach_args(argc, argv,
1079
&progfd, &attach_type, &mapfd);
1080
if (err)
1081
return err;
1082
1083
err = bpf_prog_attach(progfd, mapfd, attach_type, 0);
1084
if (err) {
1085
p_err("failed prog attach to map");
1086
return -EINVAL;
1087
}
1088
1089
if (json_output)
1090
jsonw_null(json_wtr);
1091
return 0;
1092
}
1093
1094
static int do_detach(int argc, char **argv)
1095
{
1096
enum bpf_attach_type attach_type;
1097
int err, progfd;
1098
int mapfd;
1099
1100
err = parse_attach_detach_args(argc, argv,
1101
&progfd, &attach_type, &mapfd);
1102
if (err)
1103
return err;
1104
1105
err = bpf_prog_detach2(progfd, mapfd, attach_type);
1106
if (err) {
1107
p_err("failed prog detach from map");
1108
return -EINVAL;
1109
}
1110
1111
if (json_output)
1112
jsonw_null(json_wtr);
1113
return 0;
1114
}
1115
1116
enum prog_tracelog_mode {
1117
TRACE_STDOUT,
1118
TRACE_STDERR,
1119
};
1120
1121
static int
1122
prog_tracelog_stream(int prog_fd, enum prog_tracelog_mode mode)
1123
{
1124
FILE *file = mode == TRACE_STDOUT ? stdout : stderr;
1125
int stream_id = mode == TRACE_STDOUT ? 1 : 2;
1126
char buf[512];
1127
int ret;
1128
1129
ret = 0;
1130
do {
1131
ret = bpf_prog_stream_read(prog_fd, stream_id, buf, sizeof(buf), NULL);
1132
if (ret > 0)
1133
fwrite(buf, sizeof(buf[0]), ret, file);
1134
} while (ret > 0);
1135
1136
fflush(file);
1137
return ret ? -1 : 0;
1138
}
1139
1140
static int do_tracelog_any(int argc, char **argv)
1141
{
1142
enum prog_tracelog_mode mode;
1143
int fd;
1144
1145
if (argc == 0)
1146
return do_tracelog(argc, argv);
1147
if (!is_prefix(*argv, "stdout") && !is_prefix(*argv, "stderr"))
1148
usage();
1149
mode = is_prefix(*argv, "stdout") ? TRACE_STDOUT : TRACE_STDERR;
1150
NEXT_ARG();
1151
1152
if (!REQ_ARGS(2))
1153
return -1;
1154
1155
fd = prog_parse_fd(&argc, &argv);
1156
if (fd < 0)
1157
return -1;
1158
1159
return prog_tracelog_stream(fd, mode);
1160
}
1161
1162
static int check_single_stdin(char *file_data_in, char *file_ctx_in)
1163
{
1164
if (file_data_in && file_ctx_in &&
1165
!strcmp(file_data_in, "-") && !strcmp(file_ctx_in, "-")) {
1166
p_err("cannot use standard input for both data_in and ctx_in");
1167
return -1;
1168
}
1169
1170
return 0;
1171
}
1172
1173
static int get_run_data(const char *fname, void **data_ptr, unsigned int *size)
1174
{
1175
size_t block_size = 256;
1176
size_t buf_size = block_size;
1177
size_t nb_read = 0;
1178
void *tmp;
1179
FILE *f;
1180
1181
if (!fname) {
1182
*data_ptr = NULL;
1183
*size = 0;
1184
return 0;
1185
}
1186
1187
if (!strcmp(fname, "-"))
1188
f = stdin;
1189
else
1190
f = fopen(fname, "r");
1191
if (!f) {
1192
p_err("failed to open %s: %s", fname, strerror(errno));
1193
return -1;
1194
}
1195
1196
*data_ptr = malloc(block_size);
1197
if (!*data_ptr) {
1198
p_err("failed to allocate memory for data_in/ctx_in: %s",
1199
strerror(errno));
1200
goto err_fclose;
1201
}
1202
1203
while ((nb_read += fread(*data_ptr + nb_read, 1, block_size, f))) {
1204
if (feof(f))
1205
break;
1206
if (ferror(f)) {
1207
p_err("failed to read data_in/ctx_in from %s: %s",
1208
fname, strerror(errno));
1209
goto err_free;
1210
}
1211
if (nb_read > buf_size - block_size) {
1212
if (buf_size == UINT32_MAX) {
1213
p_err("data_in/ctx_in is too long (max: %u)",
1214
UINT32_MAX);
1215
goto err_free;
1216
}
1217
/* No space for fread()-ing next chunk; realloc() */
1218
buf_size *= 2;
1219
tmp = realloc(*data_ptr, buf_size);
1220
if (!tmp) {
1221
p_err("failed to reallocate data_in/ctx_in: %s",
1222
strerror(errno));
1223
goto err_free;
1224
}
1225
*data_ptr = tmp;
1226
}
1227
}
1228
if (f != stdin)
1229
fclose(f);
1230
1231
*size = nb_read;
1232
return 0;
1233
1234
err_free:
1235
free(*data_ptr);
1236
*data_ptr = NULL;
1237
err_fclose:
1238
if (f != stdin)
1239
fclose(f);
1240
return -1;
1241
}
1242
1243
static void hex_print(void *data, unsigned int size, FILE *f)
1244
{
1245
size_t i, j;
1246
char c;
1247
1248
for (i = 0; i < size; i += 16) {
1249
/* Row offset */
1250
fprintf(f, "%07zx\t", i);
1251
1252
/* Hexadecimal values */
1253
for (j = i; j < i + 16 && j < size; j++)
1254
fprintf(f, "%02x%s", *(uint8_t *)(data + j),
1255
j % 2 ? " " : "");
1256
for (; j < i + 16; j++)
1257
fprintf(f, " %s", j % 2 ? " " : "");
1258
1259
/* ASCII values (if relevant), '.' otherwise */
1260
fprintf(f, "| ");
1261
for (j = i; j < i + 16 && j < size; j++) {
1262
c = *(char *)(data + j);
1263
if (c < ' ' || c > '~')
1264
c = '.';
1265
fprintf(f, "%c%s", c, j == i + 7 ? " " : "");
1266
}
1267
1268
fprintf(f, "\n");
1269
}
1270
}
1271
1272
static int
1273
print_run_output(void *data, unsigned int size, const char *fname,
1274
const char *json_key)
1275
{
1276
size_t nb_written;
1277
FILE *f;
1278
1279
if (!fname)
1280
return 0;
1281
1282
if (!strcmp(fname, "-")) {
1283
f = stdout;
1284
if (json_output) {
1285
jsonw_name(json_wtr, json_key);
1286
print_data_json(data, size);
1287
} else {
1288
hex_print(data, size, f);
1289
}
1290
return 0;
1291
}
1292
1293
f = fopen(fname, "w");
1294
if (!f) {
1295
p_err("failed to open %s: %s", fname, strerror(errno));
1296
return -1;
1297
}
1298
1299
nb_written = fwrite(data, 1, size, f);
1300
fclose(f);
1301
if (nb_written != size) {
1302
p_err("failed to write output data/ctx: %s", strerror(errno));
1303
return -1;
1304
}
1305
1306
return 0;
1307
}
1308
1309
static int alloc_run_data(void **data_ptr, unsigned int size_out)
1310
{
1311
*data_ptr = calloc(size_out, 1);
1312
if (!*data_ptr) {
1313
p_err("failed to allocate memory for output data/ctx: %s",
1314
strerror(errno));
1315
return -1;
1316
}
1317
1318
return 0;
1319
}
1320
1321
static int do_run(int argc, char **argv)
1322
{
1323
char *data_fname_in = NULL, *data_fname_out = NULL;
1324
char *ctx_fname_in = NULL, *ctx_fname_out = NULL;
1325
const unsigned int default_size = SZ_32K;
1326
void *data_in = NULL, *data_out = NULL;
1327
void *ctx_in = NULL, *ctx_out = NULL;
1328
unsigned int repeat = 1;
1329
int fd, err;
1330
LIBBPF_OPTS(bpf_test_run_opts, test_attr);
1331
1332
if (!REQ_ARGS(4))
1333
return -1;
1334
1335
fd = prog_parse_fd(&argc, &argv);
1336
if (fd < 0)
1337
return -1;
1338
1339
while (argc) {
1340
if (detect_common_prefix(*argv, "data_in", "data_out",
1341
"data_size_out", NULL))
1342
return -1;
1343
if (detect_common_prefix(*argv, "ctx_in", "ctx_out",
1344
"ctx_size_out", NULL))
1345
return -1;
1346
1347
if (is_prefix(*argv, "data_in")) {
1348
NEXT_ARG();
1349
if (!REQ_ARGS(1))
1350
return -1;
1351
1352
data_fname_in = GET_ARG();
1353
if (check_single_stdin(data_fname_in, ctx_fname_in))
1354
return -1;
1355
} else if (is_prefix(*argv, "data_out")) {
1356
NEXT_ARG();
1357
if (!REQ_ARGS(1))
1358
return -1;
1359
1360
data_fname_out = GET_ARG();
1361
} else if (is_prefix(*argv, "data_size_out")) {
1362
char *endptr;
1363
1364
NEXT_ARG();
1365
if (!REQ_ARGS(1))
1366
return -1;
1367
1368
test_attr.data_size_out = strtoul(*argv, &endptr, 0);
1369
if (*endptr) {
1370
p_err("can't parse %s as output data size",
1371
*argv);
1372
return -1;
1373
}
1374
NEXT_ARG();
1375
} else if (is_prefix(*argv, "ctx_in")) {
1376
NEXT_ARG();
1377
if (!REQ_ARGS(1))
1378
return -1;
1379
1380
ctx_fname_in = GET_ARG();
1381
if (check_single_stdin(data_fname_in, ctx_fname_in))
1382
return -1;
1383
} else if (is_prefix(*argv, "ctx_out")) {
1384
NEXT_ARG();
1385
if (!REQ_ARGS(1))
1386
return -1;
1387
1388
ctx_fname_out = GET_ARG();
1389
} else if (is_prefix(*argv, "ctx_size_out")) {
1390
char *endptr;
1391
1392
NEXT_ARG();
1393
if (!REQ_ARGS(1))
1394
return -1;
1395
1396
test_attr.ctx_size_out = strtoul(*argv, &endptr, 0);
1397
if (*endptr) {
1398
p_err("can't parse %s as output context size",
1399
*argv);
1400
return -1;
1401
}
1402
NEXT_ARG();
1403
} else if (is_prefix(*argv, "repeat")) {
1404
char *endptr;
1405
1406
NEXT_ARG();
1407
if (!REQ_ARGS(1))
1408
return -1;
1409
1410
repeat = strtoul(*argv, &endptr, 0);
1411
if (*endptr) {
1412
p_err("can't parse %s as repeat number",
1413
*argv);
1414
return -1;
1415
}
1416
NEXT_ARG();
1417
} else {
1418
p_err("expected no more arguments, 'data_in', 'data_out', 'data_size_out', 'ctx_in', 'ctx_out', 'ctx_size_out' or 'repeat', got: '%s'?",
1419
*argv);
1420
return -1;
1421
}
1422
}
1423
1424
err = get_run_data(data_fname_in, &data_in, &test_attr.data_size_in);
1425
if (err)
1426
return -1;
1427
1428
if (data_in) {
1429
if (!test_attr.data_size_out)
1430
test_attr.data_size_out = default_size;
1431
err = alloc_run_data(&data_out, test_attr.data_size_out);
1432
if (err)
1433
goto free_data_in;
1434
}
1435
1436
err = get_run_data(ctx_fname_in, &ctx_in, &test_attr.ctx_size_in);
1437
if (err)
1438
goto free_data_out;
1439
1440
if (ctx_in) {
1441
if (!test_attr.ctx_size_out)
1442
test_attr.ctx_size_out = default_size;
1443
err = alloc_run_data(&ctx_out, test_attr.ctx_size_out);
1444
if (err)
1445
goto free_ctx_in;
1446
}
1447
1448
test_attr.repeat = repeat;
1449
test_attr.data_in = data_in;
1450
test_attr.data_out = data_out;
1451
test_attr.ctx_in = ctx_in;
1452
test_attr.ctx_out = ctx_out;
1453
1454
err = bpf_prog_test_run_opts(fd, &test_attr);
1455
if (err) {
1456
p_err("failed to run program: %s", strerror(errno));
1457
goto free_ctx_out;
1458
}
1459
1460
err = 0;
1461
1462
if (json_output)
1463
jsonw_start_object(json_wtr); /* root */
1464
1465
/* Do not exit on errors occurring when printing output data/context,
1466
* we still want to print return value and duration for program run.
1467
*/
1468
if (test_attr.data_size_out)
1469
err += print_run_output(test_attr.data_out,
1470
test_attr.data_size_out,
1471
data_fname_out, "data_out");
1472
if (test_attr.ctx_size_out)
1473
err += print_run_output(test_attr.ctx_out,
1474
test_attr.ctx_size_out,
1475
ctx_fname_out, "ctx_out");
1476
1477
if (json_output) {
1478
jsonw_uint_field(json_wtr, "retval", test_attr.retval);
1479
jsonw_uint_field(json_wtr, "duration", test_attr.duration);
1480
jsonw_end_object(json_wtr); /* root */
1481
} else {
1482
fprintf(stdout, "Return value: %u, duration%s: %uns\n",
1483
test_attr.retval,
1484
repeat > 1 ? " (average)" : "", test_attr.duration);
1485
}
1486
1487
free_ctx_out:
1488
free(ctx_out);
1489
free_ctx_in:
1490
free(ctx_in);
1491
free_data_out:
1492
free(data_out);
1493
free_data_in:
1494
free(data_in);
1495
1496
return err;
1497
}
1498
1499
static int
1500
get_prog_type_by_name(const char *name, enum bpf_prog_type *prog_type,
1501
enum bpf_attach_type *expected_attach_type)
1502
{
1503
libbpf_print_fn_t print_backup;
1504
int ret;
1505
1506
ret = libbpf_prog_type_by_name(name, prog_type, expected_attach_type);
1507
if (!ret)
1508
return ret;
1509
1510
/* libbpf_prog_type_by_name() failed, let's re-run with debug level */
1511
print_backup = libbpf_set_print(print_all_levels);
1512
ret = libbpf_prog_type_by_name(name, prog_type, expected_attach_type);
1513
libbpf_set_print(print_backup);
1514
1515
return ret;
1516
}
1517
1518
static int
1519
auto_attach_program(struct bpf_program *prog, const char *path)
1520
{
1521
struct bpf_link *link;
1522
int err;
1523
1524
link = bpf_program__attach(prog);
1525
if (!link) {
1526
p_info("Program %s does not support autoattach, falling back to pinning",
1527
bpf_program__name(prog));
1528
return bpf_obj_pin(bpf_program__fd(prog), path);
1529
}
1530
1531
err = bpf_link__pin(link, path);
1532
bpf_link__destroy(link);
1533
return err;
1534
}
1535
1536
static int
1537
auto_attach_programs(struct bpf_object *obj, const char *path)
1538
{
1539
struct bpf_program *prog;
1540
char buf[PATH_MAX];
1541
int err;
1542
1543
bpf_object__for_each_program(prog, obj) {
1544
err = pathname_concat(buf, sizeof(buf), path, bpf_program__name(prog));
1545
if (err)
1546
goto err_unpin_programs;
1547
1548
err = auto_attach_program(prog, buf);
1549
if (err)
1550
goto err_unpin_programs;
1551
}
1552
1553
return 0;
1554
1555
err_unpin_programs:
1556
while ((prog = bpf_object__prev_program(obj, prog))) {
1557
if (pathname_concat(buf, sizeof(buf), path, bpf_program__name(prog)))
1558
continue;
1559
1560
bpf_program__unpin(prog, buf);
1561
}
1562
1563
return err;
1564
}
1565
1566
static int load_with_options(int argc, char **argv, bool first_prog_only)
1567
{
1568
enum bpf_prog_type common_prog_type = BPF_PROG_TYPE_UNSPEC;
1569
DECLARE_LIBBPF_OPTS(bpf_object_open_opts, open_opts,
1570
.relaxed_maps = relaxed_maps,
1571
);
1572
enum bpf_attach_type expected_attach_type;
1573
struct map_replace *map_replace = NULL;
1574
struct bpf_program *prog = NULL, *pos;
1575
unsigned int old_map_fds = 0;
1576
const char *pinmaps = NULL;
1577
__u32 xdpmeta_ifindex = 0;
1578
__u32 offload_ifindex = 0;
1579
bool auto_attach = false;
1580
struct bpf_object *obj;
1581
struct bpf_map *map;
1582
const char *pinfile;
1583
unsigned int i, j;
1584
const char *file;
1585
int idx, err;
1586
1587
1588
if (!REQ_ARGS(2))
1589
return -1;
1590
file = GET_ARG();
1591
pinfile = GET_ARG();
1592
1593
while (argc) {
1594
if (is_prefix(*argv, "type")) {
1595
NEXT_ARG();
1596
1597
if (common_prog_type != BPF_PROG_TYPE_UNSPEC) {
1598
p_err("program type already specified");
1599
goto err_free_reuse_maps;
1600
}
1601
if (!REQ_ARGS(1))
1602
goto err_free_reuse_maps;
1603
1604
err = libbpf_prog_type_by_name(*argv, &common_prog_type,
1605
&expected_attach_type);
1606
if (err < 0) {
1607
/* Put a '/' at the end of type to appease libbpf */
1608
char *type = malloc(strlen(*argv) + 2);
1609
1610
if (!type) {
1611
p_err("mem alloc failed");
1612
goto err_free_reuse_maps;
1613
}
1614
*type = 0;
1615
strcat(type, *argv);
1616
strcat(type, "/");
1617
1618
err = get_prog_type_by_name(type, &common_prog_type,
1619
&expected_attach_type);
1620
free(type);
1621
if (err < 0)
1622
goto err_free_reuse_maps;
1623
}
1624
1625
NEXT_ARG();
1626
} else if (is_prefix(*argv, "map")) {
1627
void *new_map_replace;
1628
char *endptr, *name;
1629
int fd;
1630
1631
NEXT_ARG();
1632
1633
if (!REQ_ARGS(4))
1634
goto err_free_reuse_maps;
1635
1636
if (is_prefix(*argv, "idx")) {
1637
NEXT_ARG();
1638
1639
idx = strtoul(*argv, &endptr, 0);
1640
if (*endptr) {
1641
p_err("can't parse %s as IDX", *argv);
1642
goto err_free_reuse_maps;
1643
}
1644
name = NULL;
1645
} else if (is_prefix(*argv, "name")) {
1646
NEXT_ARG();
1647
1648
name = *argv;
1649
idx = -1;
1650
} else {
1651
p_err("expected 'idx' or 'name', got: '%s'?",
1652
*argv);
1653
goto err_free_reuse_maps;
1654
}
1655
NEXT_ARG();
1656
1657
fd = map_parse_fd(&argc, &argv, 0);
1658
if (fd < 0)
1659
goto err_free_reuse_maps;
1660
1661
new_map_replace = libbpf_reallocarray(map_replace,
1662
old_map_fds + 1,
1663
sizeof(*map_replace));
1664
if (!new_map_replace) {
1665
p_err("mem alloc failed");
1666
goto err_free_reuse_maps;
1667
}
1668
map_replace = new_map_replace;
1669
1670
map_replace[old_map_fds].idx = idx;
1671
map_replace[old_map_fds].name = name;
1672
map_replace[old_map_fds].fd = fd;
1673
old_map_fds++;
1674
} else if (is_prefix(*argv, "dev")) {
1675
p_info("Warning: 'bpftool prog load [...] dev <ifname>' syntax is deprecated.\n"
1676
"Going further, please use 'offload_dev <ifname>' to offload program to device.\n"
1677
"For applications using XDP hints only, use 'xdpmeta_dev <ifname>'.");
1678
goto offload_dev;
1679
} else if (is_prefix(*argv, "offload_dev")) {
1680
offload_dev:
1681
NEXT_ARG();
1682
1683
if (offload_ifindex) {
1684
p_err("offload_dev already specified");
1685
goto err_free_reuse_maps;
1686
} else if (xdpmeta_ifindex) {
1687
p_err("xdpmeta_dev and offload_dev are mutually exclusive");
1688
goto err_free_reuse_maps;
1689
}
1690
if (!REQ_ARGS(1))
1691
goto err_free_reuse_maps;
1692
1693
offload_ifindex = if_nametoindex(*argv);
1694
if (!offload_ifindex) {
1695
p_err("unrecognized netdevice '%s': %s",
1696
*argv, strerror(errno));
1697
goto err_free_reuse_maps;
1698
}
1699
NEXT_ARG();
1700
} else if (is_prefix(*argv, "xdpmeta_dev")) {
1701
NEXT_ARG();
1702
1703
if (xdpmeta_ifindex) {
1704
p_err("xdpmeta_dev already specified");
1705
goto err_free_reuse_maps;
1706
} else if (offload_ifindex) {
1707
p_err("xdpmeta_dev and offload_dev are mutually exclusive");
1708
goto err_free_reuse_maps;
1709
}
1710
if (!REQ_ARGS(1))
1711
goto err_free_reuse_maps;
1712
1713
xdpmeta_ifindex = if_nametoindex(*argv);
1714
if (!xdpmeta_ifindex) {
1715
p_err("unrecognized netdevice '%s': %s",
1716
*argv, strerror(errno));
1717
goto err_free_reuse_maps;
1718
}
1719
NEXT_ARG();
1720
} else if (is_prefix(*argv, "pinmaps")) {
1721
NEXT_ARG();
1722
1723
if (!REQ_ARGS(1))
1724
goto err_free_reuse_maps;
1725
1726
pinmaps = GET_ARG();
1727
} else if (is_prefix(*argv, "autoattach")) {
1728
auto_attach = true;
1729
NEXT_ARG();
1730
} else if (is_prefix(*argv, "kernel_btf")) {
1731
NEXT_ARG();
1732
1733
if (!REQ_ARGS(1))
1734
goto err_free_reuse_maps;
1735
1736
open_opts.btf_custom_path = GET_ARG();
1737
} else {
1738
p_err("expected no more arguments, "
1739
"'type', 'map', 'offload_dev', 'xdpmeta_dev', 'pinmaps', "
1740
"'autoattach', or 'kernel_btf', got: '%s'?",
1741
*argv);
1742
goto err_free_reuse_maps;
1743
}
1744
}
1745
1746
set_max_rlimit();
1747
1748
if (verifier_logs)
1749
/* log_level1 + log_level2 + stats, but not stable UAPI */
1750
open_opts.kernel_log_level = 1 + 2 + 4;
1751
1752
obj = bpf_object__open_file(file, &open_opts);
1753
if (!obj) {
1754
p_err("failed to open object file");
1755
goto err_free_reuse_maps;
1756
}
1757
1758
bpf_object__for_each_program(pos, obj) {
1759
enum bpf_prog_type prog_type = common_prog_type;
1760
1761
if (prog_type == BPF_PROG_TYPE_UNSPEC) {
1762
const char *sec_name = bpf_program__section_name(pos);
1763
1764
err = get_prog_type_by_name(sec_name, &prog_type,
1765
&expected_attach_type);
1766
if (err < 0)
1767
goto err_close_obj;
1768
}
1769
1770
if (prog_type == BPF_PROG_TYPE_XDP && xdpmeta_ifindex) {
1771
bpf_program__set_flags(pos, BPF_F_XDP_DEV_BOUND_ONLY);
1772
bpf_program__set_ifindex(pos, xdpmeta_ifindex);
1773
} else {
1774
bpf_program__set_ifindex(pos, offload_ifindex);
1775
}
1776
if (bpf_program__type(pos) != prog_type)
1777
bpf_program__set_type(pos, prog_type);
1778
bpf_program__set_expected_attach_type(pos, expected_attach_type);
1779
}
1780
1781
qsort(map_replace, old_map_fds, sizeof(*map_replace),
1782
map_replace_compar);
1783
1784
/* After the sort maps by name will be first on the list, because they
1785
* have idx == -1. Resolve them.
1786
*/
1787
j = 0;
1788
while (j < old_map_fds && map_replace[j].name) {
1789
i = 0;
1790
bpf_object__for_each_map(map, obj) {
1791
if (!strcmp(bpf_map__name(map), map_replace[j].name)) {
1792
map_replace[j].idx = i;
1793
break;
1794
}
1795
i++;
1796
}
1797
if (map_replace[j].idx == -1) {
1798
p_err("unable to find map '%s'", map_replace[j].name);
1799
goto err_close_obj;
1800
}
1801
j++;
1802
}
1803
/* Resort if any names were resolved */
1804
if (j)
1805
qsort(map_replace, old_map_fds, sizeof(*map_replace),
1806
map_replace_compar);
1807
1808
/* Set ifindex and name reuse */
1809
j = 0;
1810
idx = 0;
1811
bpf_object__for_each_map(map, obj) {
1812
if (bpf_map__type(map) != BPF_MAP_TYPE_PERF_EVENT_ARRAY)
1813
bpf_map__set_ifindex(map, offload_ifindex);
1814
1815
if (j < old_map_fds && idx == map_replace[j].idx) {
1816
err = bpf_map__reuse_fd(map, map_replace[j++].fd);
1817
if (err) {
1818
p_err("unable to set up map reuse: %d", err);
1819
goto err_close_obj;
1820
}
1821
1822
/* Next reuse wants to apply to the same map */
1823
if (j < old_map_fds && map_replace[j].idx == idx) {
1824
p_err("replacement for map idx %d specified more than once",
1825
idx);
1826
goto err_close_obj;
1827
}
1828
}
1829
1830
idx++;
1831
}
1832
if (j < old_map_fds) {
1833
p_err("map idx '%d' not used", map_replace[j].idx);
1834
goto err_close_obj;
1835
}
1836
1837
err = bpf_object__load(obj);
1838
if (err) {
1839
p_err("failed to load object file");
1840
goto err_close_obj;
1841
}
1842
1843
if (first_prog_only)
1844
err = mount_bpffs_for_file(pinfile);
1845
else
1846
err = create_and_mount_bpffs_dir(pinfile);
1847
if (err)
1848
goto err_close_obj;
1849
1850
if (first_prog_only) {
1851
prog = bpf_object__next_program(obj, NULL);
1852
if (!prog) {
1853
p_err("object file doesn't contain any bpf program");
1854
goto err_close_obj;
1855
}
1856
1857
if (auto_attach)
1858
err = auto_attach_program(prog, pinfile);
1859
else
1860
err = bpf_obj_pin(bpf_program__fd(prog), pinfile);
1861
if (err) {
1862
p_err("failed to pin program %s",
1863
bpf_program__section_name(prog));
1864
goto err_close_obj;
1865
}
1866
} else {
1867
if (auto_attach)
1868
err = auto_attach_programs(obj, pinfile);
1869
else
1870
err = bpf_object__pin_programs(obj, pinfile);
1871
if (err) {
1872
p_err("failed to pin all programs");
1873
goto err_close_obj;
1874
}
1875
}
1876
1877
if (pinmaps) {
1878
err = create_and_mount_bpffs_dir(pinmaps);
1879
if (err)
1880
goto err_unpin;
1881
1882
err = bpf_object__pin_maps(obj, pinmaps);
1883
if (err) {
1884
p_err("failed to pin all maps");
1885
goto err_unpin;
1886
}
1887
}
1888
1889
if (json_output)
1890
jsonw_null(json_wtr);
1891
1892
bpf_object__close(obj);
1893
for (i = 0; i < old_map_fds; i++)
1894
close(map_replace[i].fd);
1895
free(map_replace);
1896
1897
return 0;
1898
1899
err_unpin:
1900
if (first_prog_only)
1901
unlink(pinfile);
1902
else
1903
bpf_object__unpin_programs(obj, pinfile);
1904
err_close_obj:
1905
bpf_object__close(obj);
1906
err_free_reuse_maps:
1907
for (i = 0; i < old_map_fds; i++)
1908
close(map_replace[i].fd);
1909
free(map_replace);
1910
return -1;
1911
}
1912
1913
static int count_open_fds(void)
1914
{
1915
DIR *dp = opendir("/proc/self/fd");
1916
struct dirent *de;
1917
int cnt = -3;
1918
1919
if (!dp)
1920
return -1;
1921
1922
while ((de = readdir(dp)))
1923
cnt++;
1924
1925
closedir(dp);
1926
return cnt;
1927
}
1928
1929
static int try_loader(struct gen_loader_opts *gen)
1930
{
1931
struct bpf_load_and_run_opts opts = {};
1932
struct bpf_loader_ctx *ctx;
1933
int ctx_sz = sizeof(*ctx) + 64 * max(sizeof(struct bpf_map_desc),
1934
sizeof(struct bpf_prog_desc));
1935
int log_buf_sz = (1u << 24) - 1;
1936
int err, fds_before, fd_delta;
1937
char *log_buf = NULL;
1938
1939
ctx = alloca(ctx_sz);
1940
memset(ctx, 0, ctx_sz);
1941
ctx->sz = ctx_sz;
1942
if (verifier_logs) {
1943
ctx->log_level = 1 + 2 + 4;
1944
ctx->log_size = log_buf_sz;
1945
log_buf = malloc(log_buf_sz);
1946
if (!log_buf)
1947
return -ENOMEM;
1948
ctx->log_buf = (long) log_buf;
1949
}
1950
opts.ctx = ctx;
1951
opts.data = gen->data;
1952
opts.data_sz = gen->data_sz;
1953
opts.insns = gen->insns;
1954
opts.insns_sz = gen->insns_sz;
1955
fds_before = count_open_fds();
1956
err = bpf_load_and_run(&opts);
1957
fd_delta = count_open_fds() - fds_before;
1958
if (err < 0 || verifier_logs) {
1959
fprintf(stderr, "err %d\n%s\n%s", err, opts.errstr, log_buf);
1960
if (fd_delta && err < 0)
1961
fprintf(stderr, "loader prog leaked %d FDs\n",
1962
fd_delta);
1963
}
1964
free(log_buf);
1965
return err;
1966
}
1967
1968
static int do_loader(int argc, char **argv)
1969
{
1970
DECLARE_LIBBPF_OPTS(bpf_object_open_opts, open_opts);
1971
DECLARE_LIBBPF_OPTS(gen_loader_opts, gen);
1972
struct bpf_object *obj;
1973
const char *file;
1974
int err = 0;
1975
1976
if (!REQ_ARGS(1))
1977
return -1;
1978
file = GET_ARG();
1979
1980
if (verifier_logs)
1981
/* log_level1 + log_level2 + stats, but not stable UAPI */
1982
open_opts.kernel_log_level = 1 + 2 + 4;
1983
1984
obj = bpf_object__open_file(file, &open_opts);
1985
if (!obj) {
1986
err = -1;
1987
p_err("failed to open object file");
1988
goto err_close_obj;
1989
}
1990
1991
err = bpf_object__gen_loader(obj, &gen);
1992
if (err)
1993
goto err_close_obj;
1994
1995
err = bpf_object__load(obj);
1996
if (err) {
1997
p_err("failed to load object file");
1998
goto err_close_obj;
1999
}
2000
2001
if (verifier_logs) {
2002
struct dump_data dd = {};
2003
2004
kernel_syms_load(&dd);
2005
dump_xlated_plain(&dd, (void *)gen.insns, gen.insns_sz, false, false);
2006
kernel_syms_destroy(&dd);
2007
}
2008
err = try_loader(&gen);
2009
err_close_obj:
2010
bpf_object__close(obj);
2011
return err;
2012
}
2013
2014
static int do_load(int argc, char **argv)
2015
{
2016
if (use_loader)
2017
return do_loader(argc, argv);
2018
return load_with_options(argc, argv, true);
2019
}
2020
2021
static int do_loadall(int argc, char **argv)
2022
{
2023
return load_with_options(argc, argv, false);
2024
}
2025
2026
#ifdef BPFTOOL_WITHOUT_SKELETONS
2027
2028
static int do_profile(int argc, char **argv)
2029
{
2030
p_err("bpftool prog profile command is not supported. Please build bpftool with clang >= 10.0.0");
2031
return 0;
2032
}
2033
2034
#else /* BPFTOOL_WITHOUT_SKELETONS */
2035
2036
#include "profiler.skel.h"
2037
2038
struct profile_metric {
2039
const char *name;
2040
struct bpf_perf_event_value val;
2041
struct perf_event_attr attr;
2042
bool selected;
2043
2044
/* calculate ratios like instructions per cycle */
2045
const int ratio_metric; /* 0 for N/A, 1 for index 0 (cycles) */
2046
const char *ratio_desc;
2047
const float ratio_mul;
2048
} metrics[] = {
2049
{
2050
.name = "cycles",
2051
.attr = {
2052
.type = PERF_TYPE_HARDWARE,
2053
.config = PERF_COUNT_HW_CPU_CYCLES,
2054
.exclude_user = 1,
2055
},
2056
},
2057
{
2058
.name = "instructions",
2059
.attr = {
2060
.type = PERF_TYPE_HARDWARE,
2061
.config = PERF_COUNT_HW_INSTRUCTIONS,
2062
.exclude_user = 1,
2063
},
2064
.ratio_metric = 1,
2065
.ratio_desc = "insns per cycle",
2066
.ratio_mul = 1.0,
2067
},
2068
{
2069
.name = "l1d_loads",
2070
.attr = {
2071
.type = PERF_TYPE_HW_CACHE,
2072
.config =
2073
PERF_COUNT_HW_CACHE_L1D |
2074
(PERF_COUNT_HW_CACHE_OP_READ << 8) |
2075
(PERF_COUNT_HW_CACHE_RESULT_ACCESS << 16),
2076
.exclude_user = 1,
2077
},
2078
},
2079
{
2080
.name = "llc_misses",
2081
.attr = {
2082
.type = PERF_TYPE_HW_CACHE,
2083
.config =
2084
PERF_COUNT_HW_CACHE_LL |
2085
(PERF_COUNT_HW_CACHE_OP_READ << 8) |
2086
(PERF_COUNT_HW_CACHE_RESULT_MISS << 16),
2087
.exclude_user = 1
2088
},
2089
.ratio_metric = 2,
2090
.ratio_desc = "LLC misses per million insns",
2091
.ratio_mul = 1e6,
2092
},
2093
{
2094
.name = "itlb_misses",
2095
.attr = {
2096
.type = PERF_TYPE_HW_CACHE,
2097
.config =
2098
PERF_COUNT_HW_CACHE_ITLB |
2099
(PERF_COUNT_HW_CACHE_OP_READ << 8) |
2100
(PERF_COUNT_HW_CACHE_RESULT_MISS << 16),
2101
.exclude_user = 1
2102
},
2103
.ratio_metric = 2,
2104
.ratio_desc = "itlb misses per million insns",
2105
.ratio_mul = 1e6,
2106
},
2107
{
2108
.name = "dtlb_misses",
2109
.attr = {
2110
.type = PERF_TYPE_HW_CACHE,
2111
.config =
2112
PERF_COUNT_HW_CACHE_DTLB |
2113
(PERF_COUNT_HW_CACHE_OP_READ << 8) |
2114
(PERF_COUNT_HW_CACHE_RESULT_MISS << 16),
2115
.exclude_user = 1
2116
},
2117
.ratio_metric = 2,
2118
.ratio_desc = "dtlb misses per million insns",
2119
.ratio_mul = 1e6,
2120
},
2121
};
2122
2123
static __u64 profile_total_count;
2124
2125
#define MAX_NUM_PROFILE_METRICS 4
2126
2127
static int profile_parse_metrics(int argc, char **argv)
2128
{
2129
unsigned int metric_cnt;
2130
int selected_cnt = 0;
2131
unsigned int i;
2132
2133
metric_cnt = ARRAY_SIZE(metrics);
2134
2135
while (argc > 0) {
2136
for (i = 0; i < metric_cnt; i++) {
2137
if (is_prefix(argv[0], metrics[i].name)) {
2138
if (!metrics[i].selected)
2139
selected_cnt++;
2140
metrics[i].selected = true;
2141
break;
2142
}
2143
}
2144
if (i == metric_cnt) {
2145
p_err("unknown metric %s", argv[0]);
2146
return -1;
2147
}
2148
NEXT_ARG();
2149
}
2150
if (selected_cnt > MAX_NUM_PROFILE_METRICS) {
2151
p_err("too many (%d) metrics, please specify no more than %d metrics at a time",
2152
selected_cnt, MAX_NUM_PROFILE_METRICS);
2153
return -1;
2154
}
2155
return selected_cnt;
2156
}
2157
2158
static void profile_read_values(struct profiler_bpf *obj)
2159
{
2160
__u32 m, cpu, num_cpu = obj->rodata->num_cpu;
2161
int reading_map_fd, count_map_fd;
2162
__u64 counts[num_cpu];
2163
__u32 key = 0;
2164
int err;
2165
2166
reading_map_fd = bpf_map__fd(obj->maps.accum_readings);
2167
count_map_fd = bpf_map__fd(obj->maps.counts);
2168
if (reading_map_fd < 0 || count_map_fd < 0) {
2169
p_err("failed to get fd for map");
2170
return;
2171
}
2172
2173
err = bpf_map_lookup_elem(count_map_fd, &key, counts);
2174
if (err) {
2175
p_err("failed to read count_map: %s", strerror(errno));
2176
return;
2177
}
2178
2179
profile_total_count = 0;
2180
for (cpu = 0; cpu < num_cpu; cpu++)
2181
profile_total_count += counts[cpu];
2182
2183
for (m = 0; m < ARRAY_SIZE(metrics); m++) {
2184
struct bpf_perf_event_value values[num_cpu];
2185
2186
if (!metrics[m].selected)
2187
continue;
2188
2189
err = bpf_map_lookup_elem(reading_map_fd, &key, values);
2190
if (err) {
2191
p_err("failed to read reading_map: %s",
2192
strerror(errno));
2193
return;
2194
}
2195
for (cpu = 0; cpu < num_cpu; cpu++) {
2196
metrics[m].val.counter += values[cpu].counter;
2197
metrics[m].val.enabled += values[cpu].enabled;
2198
metrics[m].val.running += values[cpu].running;
2199
}
2200
key++;
2201
}
2202
}
2203
2204
static void profile_print_readings_json(void)
2205
{
2206
__u32 m;
2207
2208
jsonw_start_array(json_wtr);
2209
for (m = 0; m < ARRAY_SIZE(metrics); m++) {
2210
if (!metrics[m].selected)
2211
continue;
2212
jsonw_start_object(json_wtr);
2213
jsonw_string_field(json_wtr, "metric", metrics[m].name);
2214
jsonw_lluint_field(json_wtr, "run_cnt", profile_total_count);
2215
jsonw_lluint_field(json_wtr, "value", metrics[m].val.counter);
2216
jsonw_lluint_field(json_wtr, "enabled", metrics[m].val.enabled);
2217
jsonw_lluint_field(json_wtr, "running", metrics[m].val.running);
2218
2219
jsonw_end_object(json_wtr);
2220
}
2221
jsonw_end_array(json_wtr);
2222
}
2223
2224
static void profile_print_readings_plain(void)
2225
{
2226
__u32 m;
2227
2228
printf("\n%18llu %-20s\n", profile_total_count, "run_cnt");
2229
for (m = 0; m < ARRAY_SIZE(metrics); m++) {
2230
struct bpf_perf_event_value *val = &metrics[m].val;
2231
int r;
2232
2233
if (!metrics[m].selected)
2234
continue;
2235
printf("%18llu %-20s", val->counter, metrics[m].name);
2236
2237
r = metrics[m].ratio_metric - 1;
2238
if (r >= 0 && metrics[r].selected &&
2239
metrics[r].val.counter > 0) {
2240
printf("# %8.2f %-30s",
2241
val->counter * metrics[m].ratio_mul /
2242
metrics[r].val.counter,
2243
metrics[m].ratio_desc);
2244
} else {
2245
printf("%-41s", "");
2246
}
2247
2248
if (val->enabled > val->running)
2249
printf("(%4.2f%%)",
2250
val->running * 100.0 / val->enabled);
2251
printf("\n");
2252
}
2253
}
2254
2255
static void profile_print_readings(void)
2256
{
2257
if (json_output)
2258
profile_print_readings_json();
2259
else
2260
profile_print_readings_plain();
2261
}
2262
2263
static char *profile_target_name(int tgt_fd)
2264
{
2265
struct bpf_func_info func_info;
2266
struct bpf_prog_info info = {};
2267
__u32 info_len = sizeof(info);
2268
const struct btf_type *t;
2269
__u32 func_info_rec_size;
2270
struct btf *btf = NULL;
2271
char *name = NULL;
2272
int err;
2273
2274
err = bpf_prog_get_info_by_fd(tgt_fd, &info, &info_len);
2275
if (err) {
2276
p_err("failed to get info for prog FD %d", tgt_fd);
2277
goto out;
2278
}
2279
2280
if (info.btf_id == 0) {
2281
p_err("prog FD %d doesn't have valid btf", tgt_fd);
2282
goto out;
2283
}
2284
2285
func_info_rec_size = info.func_info_rec_size;
2286
if (info.nr_func_info == 0) {
2287
p_err("found 0 func_info for prog FD %d", tgt_fd);
2288
goto out;
2289
}
2290
2291
memset(&info, 0, sizeof(info));
2292
info.nr_func_info = 1;
2293
info.func_info_rec_size = func_info_rec_size;
2294
info.func_info = ptr_to_u64(&func_info);
2295
2296
err = bpf_prog_get_info_by_fd(tgt_fd, &info, &info_len);
2297
if (err) {
2298
p_err("failed to get func_info for prog FD %d", tgt_fd);
2299
goto out;
2300
}
2301
2302
btf = btf__load_from_kernel_by_id(info.btf_id);
2303
if (!btf) {
2304
p_err("failed to load btf for prog FD %d", tgt_fd);
2305
goto out;
2306
}
2307
2308
t = btf__type_by_id(btf, func_info.type_id);
2309
if (!t) {
2310
p_err("btf %u doesn't have type %u",
2311
info.btf_id, func_info.type_id);
2312
goto out;
2313
}
2314
name = strdup(btf__name_by_offset(btf, t->name_off));
2315
out:
2316
btf__free(btf);
2317
return name;
2318
}
2319
2320
static struct profiler_bpf *profile_obj;
2321
static int profile_tgt_fd = -1;
2322
static char *profile_tgt_name;
2323
static int *profile_perf_events;
2324
static int profile_perf_event_cnt;
2325
2326
static void profile_close_perf_events(struct profiler_bpf *obj)
2327
{
2328
int i;
2329
2330
for (i = profile_perf_event_cnt - 1; i >= 0; i--)
2331
close(profile_perf_events[i]);
2332
2333
free(profile_perf_events);
2334
profile_perf_event_cnt = 0;
2335
}
2336
2337
static int profile_open_perf_event(int mid, int cpu, int map_fd)
2338
{
2339
int pmu_fd;
2340
2341
pmu_fd = syscall(__NR_perf_event_open, &metrics[mid].attr,
2342
-1 /*pid*/, cpu, -1 /*group_fd*/, 0);
2343
if (pmu_fd < 0) {
2344
if (errno == ENODEV) {
2345
p_info("cpu %d may be offline, skip %s profiling.",
2346
cpu, metrics[mid].name);
2347
profile_perf_event_cnt++;
2348
return 0;
2349
}
2350
return -1;
2351
}
2352
2353
if (bpf_map_update_elem(map_fd,
2354
&profile_perf_event_cnt,
2355
&pmu_fd, BPF_ANY) ||
2356
ioctl(pmu_fd, PERF_EVENT_IOC_ENABLE, 0)) {
2357
close(pmu_fd);
2358
return -1;
2359
}
2360
2361
profile_perf_events[profile_perf_event_cnt++] = pmu_fd;
2362
return 0;
2363
}
2364
2365
static int profile_open_perf_events(struct profiler_bpf *obj)
2366
{
2367
unsigned int cpu, m;
2368
int map_fd;
2369
2370
profile_perf_events = calloc(
2371
obj->rodata->num_cpu * obj->rodata->num_metric, sizeof(int));
2372
if (!profile_perf_events) {
2373
p_err("failed to allocate memory for perf_event array: %s",
2374
strerror(errno));
2375
return -1;
2376
}
2377
map_fd = bpf_map__fd(obj->maps.events);
2378
if (map_fd < 0) {
2379
p_err("failed to get fd for events map");
2380
return -1;
2381
}
2382
2383
for (m = 0; m < ARRAY_SIZE(metrics); m++) {
2384
if (!metrics[m].selected)
2385
continue;
2386
for (cpu = 0; cpu < obj->rodata->num_cpu; cpu++) {
2387
if (profile_open_perf_event(m, cpu, map_fd)) {
2388
p_err("failed to create event %s on cpu %u",
2389
metrics[m].name, cpu);
2390
return -1;
2391
}
2392
}
2393
}
2394
return 0;
2395
}
2396
2397
static void profile_print_and_cleanup(void)
2398
{
2399
profile_close_perf_events(profile_obj);
2400
profile_read_values(profile_obj);
2401
profile_print_readings();
2402
profiler_bpf__destroy(profile_obj);
2403
2404
close(profile_tgt_fd);
2405
free(profile_tgt_name);
2406
}
2407
2408
static void int_exit(int signo)
2409
{
2410
profile_print_and_cleanup();
2411
exit(0);
2412
}
2413
2414
static int do_profile(int argc, char **argv)
2415
{
2416
int num_metric, num_cpu, err = -1;
2417
struct bpf_program *prog;
2418
unsigned long duration;
2419
char *endptr;
2420
2421
/* we at least need two args for the prog and one metric */
2422
if (!REQ_ARGS(3))
2423
return -EINVAL;
2424
2425
/* parse target fd */
2426
profile_tgt_fd = prog_parse_fd(&argc, &argv);
2427
if (profile_tgt_fd < 0) {
2428
p_err("failed to parse fd");
2429
return -1;
2430
}
2431
2432
/* parse profiling optional duration */
2433
if (argc > 2 && is_prefix(argv[0], "duration")) {
2434
NEXT_ARG();
2435
duration = strtoul(*argv, &endptr, 0);
2436
if (*endptr)
2437
usage();
2438
NEXT_ARG();
2439
} else {
2440
duration = UINT_MAX;
2441
}
2442
2443
num_metric = profile_parse_metrics(argc, argv);
2444
if (num_metric <= 0)
2445
goto out;
2446
2447
num_cpu = libbpf_num_possible_cpus();
2448
if (num_cpu <= 0) {
2449
p_err("failed to identify number of CPUs");
2450
goto out;
2451
}
2452
2453
profile_obj = profiler_bpf__open();
2454
if (!profile_obj) {
2455
p_err("failed to open and/or load BPF object");
2456
goto out;
2457
}
2458
2459
profile_obj->rodata->num_cpu = num_cpu;
2460
profile_obj->rodata->num_metric = num_metric;
2461
2462
/* adjust map sizes */
2463
bpf_map__set_max_entries(profile_obj->maps.events, num_metric * num_cpu);
2464
bpf_map__set_max_entries(profile_obj->maps.fentry_readings, num_metric);
2465
bpf_map__set_max_entries(profile_obj->maps.accum_readings, num_metric);
2466
bpf_map__set_max_entries(profile_obj->maps.counts, 1);
2467
2468
/* change target name */
2469
profile_tgt_name = profile_target_name(profile_tgt_fd);
2470
if (!profile_tgt_name)
2471
goto out;
2472
2473
bpf_object__for_each_program(prog, profile_obj->obj) {
2474
err = bpf_program__set_attach_target(prog, profile_tgt_fd,
2475
profile_tgt_name);
2476
if (err) {
2477
p_err("failed to set attach target\n");
2478
goto out;
2479
}
2480
}
2481
2482
set_max_rlimit();
2483
err = profiler_bpf__load(profile_obj);
2484
if (err) {
2485
p_err("failed to load profile_obj");
2486
goto out;
2487
}
2488
2489
err = profile_open_perf_events(profile_obj);
2490
if (err)
2491
goto out;
2492
2493
err = profiler_bpf__attach(profile_obj);
2494
if (err) {
2495
p_err("failed to attach profile_obj");
2496
goto out;
2497
}
2498
signal(SIGINT, int_exit);
2499
2500
sleep(duration);
2501
profile_print_and_cleanup();
2502
return 0;
2503
2504
out:
2505
profile_close_perf_events(profile_obj);
2506
if (profile_obj)
2507
profiler_bpf__destroy(profile_obj);
2508
close(profile_tgt_fd);
2509
free(profile_tgt_name);
2510
return err;
2511
}
2512
2513
#endif /* BPFTOOL_WITHOUT_SKELETONS */
2514
2515
static int do_help(int argc, char **argv)
2516
{
2517
if (json_output) {
2518
jsonw_null(json_wtr);
2519
return 0;
2520
}
2521
2522
fprintf(stderr,
2523
"Usage: %1$s %2$s { show | list } [PROG]\n"
2524
" %1$s %2$s dump xlated PROG [{ file FILE | [opcodes] [linum] [visual] }]\n"
2525
" %1$s %2$s dump jited PROG [{ file FILE | [opcodes] [linum] }]\n"
2526
" %1$s %2$s pin PROG FILE\n"
2527
" %1$s %2$s { load | loadall } OBJ PATH \\\n"
2528
" [type TYPE] [{ offload_dev | xdpmeta_dev } NAME] \\\n"
2529
" [map { idx IDX | name NAME } MAP]\\\n"
2530
" [pinmaps MAP_DIR]\n"
2531
" [autoattach]\n"
2532
" [kernel_btf BTF_FILE]\n"
2533
" %1$s %2$s attach PROG ATTACH_TYPE [MAP]\n"
2534
" %1$s %2$s detach PROG ATTACH_TYPE [MAP]\n"
2535
" %1$s %2$s run PROG \\\n"
2536
" data_in FILE \\\n"
2537
" [data_out FILE [data_size_out L]] \\\n"
2538
" [ctx_in FILE [ctx_out FILE [ctx_size_out M]]] \\\n"
2539
" [repeat N]\n"
2540
" %1$s %2$s profile PROG [duration DURATION] METRICs\n"
2541
" %1$s %2$s tracelog\n"
2542
" %1$s %2$s tracelog { stdout | stderr } PROG\n"
2543
" %1$s %2$s help\n"
2544
"\n"
2545
" " HELP_SPEC_MAP "\n"
2546
" " HELP_SPEC_PROGRAM "\n"
2547
" TYPE := { socket | kprobe | kretprobe | classifier | action |\n"
2548
" tracepoint | raw_tracepoint | xdp | perf_event | cgroup/skb |\n"
2549
" cgroup/sock | cgroup/dev | lwt_in | lwt_out | lwt_xmit |\n"
2550
" lwt_seg6local | sockops | sk_skb | sk_msg | lirc_mode2 |\n"
2551
" sk_reuseport | flow_dissector | cgroup/sysctl |\n"
2552
" cgroup/bind4 | cgroup/bind6 | cgroup/post_bind4 |\n"
2553
" cgroup/post_bind6 | cgroup/connect4 | cgroup/connect6 |\n"
2554
" cgroup/connect_unix | cgroup/getpeername4 | cgroup/getpeername6 |\n"
2555
" cgroup/getpeername_unix | cgroup/getsockname4 | cgroup/getsockname6 |\n"
2556
" cgroup/getsockname_unix | cgroup/sendmsg4 | cgroup/sendmsg6 |\n"
2557
" cgroup/sendmsg_unix | cgroup/recvmsg4 | cgroup/recvmsg6 | cgroup/recvmsg_unix |\n"
2558
" cgroup/getsockopt | cgroup/setsockopt | cgroup/sock_release |\n"
2559
" struct_ops | fentry | fexit | freplace | sk_lookup }\n"
2560
" ATTACH_TYPE := { sk_msg_verdict | sk_skb_verdict | sk_skb_stream_verdict |\n"
2561
" sk_skb_stream_parser | flow_dissector }\n"
2562
" METRIC := { cycles | instructions | l1d_loads | llc_misses | itlb_misses | dtlb_misses }\n"
2563
" " HELP_SPEC_OPTIONS " |\n"
2564
" {-f|--bpffs} | {-m|--mapcompat} | {-n|--nomount} |\n"
2565
" {-L|--use-loader} }\n"
2566
"",
2567
bin_name, argv[-2]);
2568
2569
return 0;
2570
}
2571
2572
static const struct cmd cmds[] = {
2573
{ "show", do_show },
2574
{ "list", do_show },
2575
{ "help", do_help },
2576
{ "dump", do_dump },
2577
{ "pin", do_pin },
2578
{ "load", do_load },
2579
{ "loadall", do_loadall },
2580
{ "attach", do_attach },
2581
{ "detach", do_detach },
2582
{ "tracelog", do_tracelog_any },
2583
{ "run", do_run },
2584
{ "profile", do_profile },
2585
{ 0 }
2586
};
2587
2588
int do_prog(int argc, char **argv)
2589
{
2590
return cmd_select(cmds, argc, argv, do_help);
2591
}
2592
2593