1 // SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause)
2
3 /*
4 * common eBPF ELF operations.
5 *
6 * Copyright (C) 2013-2015 Alexei Starovoitov <ast@kernel.org>
7 * Copyright (C) 2015 Wang Nan <wangnan0@huawei.com>
8 * Copyright (C) 2015 Huawei Inc.
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU Lesser General Public
12 * License as published by the Free Software Foundation;
13 * version 2.1 of the License (not later!)
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU Lesser General Public License for more details.
19 *
20 * You should have received a copy of the GNU Lesser General Public
21 * License along with this program; if not, see <http://www.gnu.org/licenses>
22 */
23
24 #include <stdlib.h>
25 #include <string.h>
26 #include <memory.h>
27 #include <unistd.h>
28 #include <asm/unistd.h>
29 #include <errno.h>
30 #include <linux/bpf.h>
31 #include <linux/filter.h>
32 #include <linux/kernel.h>
33 #include <limits.h>
34 #include <sys/resource.h>
35 #include "bpf.h"
36 #include "libbpf.h"
37 #include "libbpf_internal.h"
38
39 /*
40 * When building perf, unistd.h is overridden. __NR_bpf is
41 * required to be defined explicitly.
42 */
43 #ifndef __NR_bpf
44 # if defined(__i386__)
45 # define __NR_bpf 357
46 # elif defined(__x86_64__)
47 # define __NR_bpf 321
48 # elif defined(__aarch64__)
49 # define __NR_bpf 280
50 # elif defined(__sparc__)
51 # define __NR_bpf 349
52 # elif defined(__s390__)
53 # define __NR_bpf 351
54 # elif defined(__arc__)
55 # define __NR_bpf 280
56 # elif defined(__mips__) && defined(_ABIO32)
57 # define __NR_bpf 4355
58 # elif defined(__mips__) && defined(_ABIN32)
59 # define __NR_bpf 6319
60 # elif defined(__mips__) && defined(_ABI64)
61 # define __NR_bpf 5315
62 # else
63 # error __NR_bpf not defined. libbpf does not support your arch.
64 # endif
65 #endif
66
ptr_to_u64(const void * ptr)67 static inline __u64 ptr_to_u64(const void *ptr)
68 {
69 return (__u64) (unsigned long) ptr;
70 }
71
sys_bpf(enum bpf_cmd cmd,union bpf_attr * attr,unsigned int size)72 static inline int sys_bpf(enum bpf_cmd cmd, union bpf_attr *attr,
73 unsigned int size)
74 {
75 return syscall(__NR_bpf, cmd, attr, size);
76 }
77
sys_bpf_fd(enum bpf_cmd cmd,union bpf_attr * attr,unsigned int size)78 static inline int sys_bpf_fd(enum bpf_cmd cmd, union bpf_attr *attr,
79 unsigned int size)
80 {
81 int fd;
82
83 fd = sys_bpf(cmd, attr, size);
84 return ensure_good_fd(fd);
85 }
86
sys_bpf_prog_load(union bpf_attr * attr,unsigned int size,int attempts)87 int sys_bpf_prog_load(union bpf_attr *attr, unsigned int size, int attempts)
88 {
89 int fd;
90
91 do {
92 fd = sys_bpf_fd(BPF_PROG_LOAD, attr, size);
93 } while (fd < 0 && errno == EAGAIN && --attempts > 0);
94
95 return fd;
96 }
97
98 /* Probe whether kernel switched from memlock-based (RLIMIT_MEMLOCK) to
99 * memcg-based memory accounting for BPF maps and progs. This was done in [0].
100 * We use the support for bpf_ktime_get_coarse_ns() helper, which was added in
101 * the same 5.11 Linux release ([1]), to detect memcg-based accounting for BPF.
102 *
103 * [0] https://lore.kernel.org/bpf/20201201215900.3569844-1-guro@fb.com/
104 * [1] d05512618056 ("bpf: Add bpf_ktime_get_coarse_ns helper")
105 */
probe_memcg_account(int token_fd)106 int probe_memcg_account(int token_fd)
107 {
108 const size_t attr_sz = offsetofend(union bpf_attr, prog_token_fd);
109 struct bpf_insn insns[] = {
110 BPF_EMIT_CALL(BPF_FUNC_ktime_get_coarse_ns),
111 BPF_EXIT_INSN(),
112 };
113 size_t insn_cnt = ARRAY_SIZE(insns);
114 union bpf_attr attr;
115 int prog_fd;
116
117 /* attempt loading freplace trying to use custom BTF */
118 memset(&attr, 0, attr_sz);
119 attr.prog_type = BPF_PROG_TYPE_SOCKET_FILTER;
120 attr.insns = ptr_to_u64(insns);
121 attr.insn_cnt = insn_cnt;
122 attr.license = ptr_to_u64("GPL");
123 attr.prog_token_fd = token_fd;
124 if (token_fd)
125 attr.prog_flags |= BPF_F_TOKEN_FD;
126
127 prog_fd = sys_bpf_fd(BPF_PROG_LOAD, &attr, attr_sz);
128 if (prog_fd >= 0) {
129 close(prog_fd);
130 return 1;
131 }
132 return 0;
133 }
134
135 static bool memlock_bumped;
136 static rlim_t memlock_rlim = RLIM_INFINITY;
137
libbpf_set_memlock_rlim(size_t memlock_bytes)138 int libbpf_set_memlock_rlim(size_t memlock_bytes)
139 {
140 if (memlock_bumped)
141 return libbpf_err(-EBUSY);
142
143 memlock_rlim = memlock_bytes;
144 return 0;
145 }
146
bump_rlimit_memlock(void)147 int bump_rlimit_memlock(void)
148 {
149 struct rlimit rlim;
150
151 /* if kernel supports memcg-based accounting, skip bumping RLIMIT_MEMLOCK */
152 if (memlock_bumped || feat_supported(NULL, FEAT_MEMCG_ACCOUNT))
153 return 0;
154
155 memlock_bumped = true;
156
157 /* zero memlock_rlim_max disables auto-bumping RLIMIT_MEMLOCK */
158 if (memlock_rlim == 0)
159 return 0;
160
161 rlim.rlim_cur = rlim.rlim_max = memlock_rlim;
162 if (setrlimit(RLIMIT_MEMLOCK, &rlim))
163 return -errno;
164
165 return 0;
166 }
167
bpf_map_create(enum bpf_map_type map_type,const char * map_name,__u32 key_size,__u32 value_size,__u32 max_entries,const struct bpf_map_create_opts * opts)168 int bpf_map_create(enum bpf_map_type map_type,
169 const char *map_name,
170 __u32 key_size,
171 __u32 value_size,
172 __u32 max_entries,
173 const struct bpf_map_create_opts *opts)
174 {
175 const size_t attr_sz = offsetofend(union bpf_attr, map_token_fd);
176 union bpf_attr attr;
177 int fd;
178
179 bump_rlimit_memlock();
180
181 memset(&attr, 0, attr_sz);
182
183 if (!OPTS_VALID(opts, bpf_map_create_opts))
184 return libbpf_err(-EINVAL);
185
186 attr.map_type = map_type;
187 if (map_name && feat_supported(NULL, FEAT_PROG_NAME))
188 libbpf_strlcpy(attr.map_name, map_name, sizeof(attr.map_name));
189 attr.key_size = key_size;
190 attr.value_size = value_size;
191 attr.max_entries = max_entries;
192
193 attr.btf_fd = OPTS_GET(opts, btf_fd, 0);
194 attr.btf_key_type_id = OPTS_GET(opts, btf_key_type_id, 0);
195 attr.btf_value_type_id = OPTS_GET(opts, btf_value_type_id, 0);
196 attr.btf_vmlinux_value_type_id = OPTS_GET(opts, btf_vmlinux_value_type_id, 0);
197 attr.value_type_btf_obj_fd = OPTS_GET(opts, value_type_btf_obj_fd, 0);
198
199 attr.inner_map_fd = OPTS_GET(opts, inner_map_fd, 0);
200 attr.map_flags = OPTS_GET(opts, map_flags, 0);
201 attr.map_extra = OPTS_GET(opts, map_extra, 0);
202 attr.numa_node = OPTS_GET(opts, numa_node, 0);
203 attr.map_ifindex = OPTS_GET(opts, map_ifindex, 0);
204
205 attr.map_token_fd = OPTS_GET(opts, token_fd, 0);
206
207 fd = sys_bpf_fd(BPF_MAP_CREATE, &attr, attr_sz);
208 return libbpf_err_errno(fd);
209 }
210
211 static void *
alloc_zero_tailing_info(const void * orecord,__u32 cnt,__u32 actual_rec_size,__u32 expected_rec_size)212 alloc_zero_tailing_info(const void *orecord, __u32 cnt,
213 __u32 actual_rec_size, __u32 expected_rec_size)
214 {
215 __u64 info_len = (__u64)actual_rec_size * cnt;
216 void *info, *nrecord;
217 int i;
218
219 info = malloc(info_len);
220 if (!info)
221 return NULL;
222
223 /* zero out bytes kernel does not understand */
224 nrecord = info;
225 for (i = 0; i < cnt; i++) {
226 memcpy(nrecord, orecord, expected_rec_size);
227 memset(nrecord + expected_rec_size, 0,
228 actual_rec_size - expected_rec_size);
229 orecord += actual_rec_size;
230 nrecord += actual_rec_size;
231 }
232
233 return info;
234 }
235
bpf_prog_load(enum bpf_prog_type prog_type,const char * prog_name,const char * license,const struct bpf_insn * insns,size_t insn_cnt,struct bpf_prog_load_opts * opts)236 int bpf_prog_load(enum bpf_prog_type prog_type,
237 const char *prog_name, const char *license,
238 const struct bpf_insn *insns, size_t insn_cnt,
239 struct bpf_prog_load_opts *opts)
240 {
241 const size_t attr_sz = offsetofend(union bpf_attr, fd_array_cnt);
242 void *finfo = NULL, *linfo = NULL;
243 const char *func_info, *line_info;
244 __u32 log_size, log_level, attach_prog_fd, attach_btf_obj_fd;
245 __u32 func_info_rec_size, line_info_rec_size;
246 int fd, attempts;
247 union bpf_attr attr;
248 char *log_buf;
249
250 bump_rlimit_memlock();
251
252 if (!OPTS_VALID(opts, bpf_prog_load_opts))
253 return libbpf_err(-EINVAL);
254
255 attempts = OPTS_GET(opts, attempts, 0);
256 if (attempts < 0)
257 return libbpf_err(-EINVAL);
258 if (attempts == 0)
259 attempts = PROG_LOAD_ATTEMPTS;
260
261 memset(&attr, 0, attr_sz);
262
263 attr.prog_type = prog_type;
264 attr.expected_attach_type = OPTS_GET(opts, expected_attach_type, 0);
265
266 attr.prog_btf_fd = OPTS_GET(opts, prog_btf_fd, 0);
267 attr.prog_flags = OPTS_GET(opts, prog_flags, 0);
268 attr.prog_ifindex = OPTS_GET(opts, prog_ifindex, 0);
269 attr.kern_version = OPTS_GET(opts, kern_version, 0);
270 attr.prog_token_fd = OPTS_GET(opts, token_fd, 0);
271
272 if (prog_name && feat_supported(NULL, FEAT_PROG_NAME))
273 libbpf_strlcpy(attr.prog_name, prog_name, sizeof(attr.prog_name));
274 attr.license = ptr_to_u64(license);
275
276 if (insn_cnt > UINT_MAX)
277 return libbpf_err(-E2BIG);
278
279 attr.insns = ptr_to_u64(insns);
280 attr.insn_cnt = (__u32)insn_cnt;
281
282 attach_prog_fd = OPTS_GET(opts, attach_prog_fd, 0);
283 attach_btf_obj_fd = OPTS_GET(opts, attach_btf_obj_fd, 0);
284
285 if (attach_prog_fd && attach_btf_obj_fd)
286 return libbpf_err(-EINVAL);
287
288 attr.attach_btf_id = OPTS_GET(opts, attach_btf_id, 0);
289 if (attach_prog_fd)
290 attr.attach_prog_fd = attach_prog_fd;
291 else
292 attr.attach_btf_obj_fd = attach_btf_obj_fd;
293
294 log_buf = OPTS_GET(opts, log_buf, NULL);
295 log_size = OPTS_GET(opts, log_size, 0);
296 log_level = OPTS_GET(opts, log_level, 0);
297
298 if (!!log_buf != !!log_size)
299 return libbpf_err(-EINVAL);
300
301 func_info_rec_size = OPTS_GET(opts, func_info_rec_size, 0);
302 func_info = OPTS_GET(opts, func_info, NULL);
303 attr.func_info_rec_size = func_info_rec_size;
304 attr.func_info = ptr_to_u64(func_info);
305 attr.func_info_cnt = OPTS_GET(opts, func_info_cnt, 0);
306
307 line_info_rec_size = OPTS_GET(opts, line_info_rec_size, 0);
308 line_info = OPTS_GET(opts, line_info, NULL);
309 attr.line_info_rec_size = line_info_rec_size;
310 attr.line_info = ptr_to_u64(line_info);
311 attr.line_info_cnt = OPTS_GET(opts, line_info_cnt, 0);
312
313 attr.fd_array = ptr_to_u64(OPTS_GET(opts, fd_array, NULL));
314 attr.fd_array_cnt = OPTS_GET(opts, fd_array_cnt, 0);
315
316 if (log_level) {
317 attr.log_buf = ptr_to_u64(log_buf);
318 attr.log_size = log_size;
319 attr.log_level = log_level;
320 }
321
322 fd = sys_bpf_prog_load(&attr, attr_sz, attempts);
323 OPTS_SET(opts, log_true_size, attr.log_true_size);
324 if (fd >= 0)
325 return fd;
326
327 /* After bpf_prog_load, the kernel may modify certain attributes
328 * to give user space a hint how to deal with loading failure.
329 * Check to see whether we can make some changes and load again.
330 */
331 while (errno == E2BIG && (!finfo || !linfo)) {
332 if (!finfo && attr.func_info_cnt &&
333 attr.func_info_rec_size < func_info_rec_size) {
334 /* try with corrected func info records */
335 finfo = alloc_zero_tailing_info(func_info,
336 attr.func_info_cnt,
337 func_info_rec_size,
338 attr.func_info_rec_size);
339 if (!finfo) {
340 errno = E2BIG;
341 goto done;
342 }
343
344 attr.func_info = ptr_to_u64(finfo);
345 attr.func_info_rec_size = func_info_rec_size;
346 } else if (!linfo && attr.line_info_cnt &&
347 attr.line_info_rec_size < line_info_rec_size) {
348 linfo = alloc_zero_tailing_info(line_info,
349 attr.line_info_cnt,
350 line_info_rec_size,
351 attr.line_info_rec_size);
352 if (!linfo) {
353 errno = E2BIG;
354 goto done;
355 }
356
357 attr.line_info = ptr_to_u64(linfo);
358 attr.line_info_rec_size = line_info_rec_size;
359 } else {
360 break;
361 }
362
363 fd = sys_bpf_prog_load(&attr, attr_sz, attempts);
364 OPTS_SET(opts, log_true_size, attr.log_true_size);
365 if (fd >= 0)
366 goto done;
367 }
368
369 if (log_level == 0 && log_buf) {
370 /* log_level == 0 with non-NULL log_buf requires retrying on error
371 * with log_level == 1 and log_buf/log_buf_size set, to get details of
372 * failure
373 */
374 attr.log_buf = ptr_to_u64(log_buf);
375 attr.log_size = log_size;
376 attr.log_level = 1;
377
378 fd = sys_bpf_prog_load(&attr, attr_sz, attempts);
379 OPTS_SET(opts, log_true_size, attr.log_true_size);
380 }
381 done:
382 /* free() doesn't affect errno, so we don't need to restore it */
383 free(finfo);
384 free(linfo);
385 return libbpf_err_errno(fd);
386 }
387
bpf_map_update_elem(int fd,const void * key,const void * value,__u64 flags)388 int bpf_map_update_elem(int fd, const void *key, const void *value,
389 __u64 flags)
390 {
391 const size_t attr_sz = offsetofend(union bpf_attr, flags);
392 union bpf_attr attr;
393 int ret;
394
395 memset(&attr, 0, attr_sz);
396 attr.map_fd = fd;
397 attr.key = ptr_to_u64(key);
398 attr.value = ptr_to_u64(value);
399 attr.flags = flags;
400
401 ret = sys_bpf(BPF_MAP_UPDATE_ELEM, &attr, attr_sz);
402 return libbpf_err_errno(ret);
403 }
404
bpf_map_lookup_elem(int fd,const void * key,void * value)405 int bpf_map_lookup_elem(int fd, const void *key, void *value)
406 {
407 const size_t attr_sz = offsetofend(union bpf_attr, flags);
408 union bpf_attr attr;
409 int ret;
410
411 memset(&attr, 0, attr_sz);
412 attr.map_fd = fd;
413 attr.key = ptr_to_u64(key);
414 attr.value = ptr_to_u64(value);
415
416 ret = sys_bpf(BPF_MAP_LOOKUP_ELEM, &attr, attr_sz);
417 return libbpf_err_errno(ret);
418 }
419
bpf_map_lookup_elem_flags(int fd,const void * key,void * value,__u64 flags)420 int bpf_map_lookup_elem_flags(int fd, const void *key, void *value, __u64 flags)
421 {
422 const size_t attr_sz = offsetofend(union bpf_attr, flags);
423 union bpf_attr attr;
424 int ret;
425
426 memset(&attr, 0, attr_sz);
427 attr.map_fd = fd;
428 attr.key = ptr_to_u64(key);
429 attr.value = ptr_to_u64(value);
430 attr.flags = flags;
431
432 ret = sys_bpf(BPF_MAP_LOOKUP_ELEM, &attr, attr_sz);
433 return libbpf_err_errno(ret);
434 }
435
bpf_map_lookup_and_delete_elem(int fd,const void * key,void * value)436 int bpf_map_lookup_and_delete_elem(int fd, const void *key, void *value)
437 {
438 const size_t attr_sz = offsetofend(union bpf_attr, flags);
439 union bpf_attr attr;
440 int ret;
441
442 memset(&attr, 0, attr_sz);
443 attr.map_fd = fd;
444 attr.key = ptr_to_u64(key);
445 attr.value = ptr_to_u64(value);
446
447 ret = sys_bpf(BPF_MAP_LOOKUP_AND_DELETE_ELEM, &attr, attr_sz);
448 return libbpf_err_errno(ret);
449 }
450
bpf_map_lookup_and_delete_elem_flags(int fd,const void * key,void * value,__u64 flags)451 int bpf_map_lookup_and_delete_elem_flags(int fd, const void *key, void *value, __u64 flags)
452 {
453 const size_t attr_sz = offsetofend(union bpf_attr, flags);
454 union bpf_attr attr;
455 int ret;
456
457 memset(&attr, 0, attr_sz);
458 attr.map_fd = fd;
459 attr.key = ptr_to_u64(key);
460 attr.value = ptr_to_u64(value);
461 attr.flags = flags;
462
463 ret = sys_bpf(BPF_MAP_LOOKUP_AND_DELETE_ELEM, &attr, attr_sz);
464 return libbpf_err_errno(ret);
465 }
466
bpf_map_delete_elem(int fd,const void * key)467 int bpf_map_delete_elem(int fd, const void *key)
468 {
469 const size_t attr_sz = offsetofend(union bpf_attr, flags);
470 union bpf_attr attr;
471 int ret;
472
473 memset(&attr, 0, attr_sz);
474 attr.map_fd = fd;
475 attr.key = ptr_to_u64(key);
476
477 ret = sys_bpf(BPF_MAP_DELETE_ELEM, &attr, attr_sz);
478 return libbpf_err_errno(ret);
479 }
480
bpf_map_delete_elem_flags(int fd,const void * key,__u64 flags)481 int bpf_map_delete_elem_flags(int fd, const void *key, __u64 flags)
482 {
483 const size_t attr_sz = offsetofend(union bpf_attr, flags);
484 union bpf_attr attr;
485 int ret;
486
487 memset(&attr, 0, attr_sz);
488 attr.map_fd = fd;
489 attr.key = ptr_to_u64(key);
490 attr.flags = flags;
491
492 ret = sys_bpf(BPF_MAP_DELETE_ELEM, &attr, attr_sz);
493 return libbpf_err_errno(ret);
494 }
495
bpf_map_get_next_key(int fd,const void * key,void * next_key)496 int bpf_map_get_next_key(int fd, const void *key, void *next_key)
497 {
498 const size_t attr_sz = offsetofend(union bpf_attr, next_key);
499 union bpf_attr attr;
500 int ret;
501
502 memset(&attr, 0, attr_sz);
503 attr.map_fd = fd;
504 attr.key = ptr_to_u64(key);
505 attr.next_key = ptr_to_u64(next_key);
506
507 ret = sys_bpf(BPF_MAP_GET_NEXT_KEY, &attr, attr_sz);
508 return libbpf_err_errno(ret);
509 }
510
bpf_map_freeze(int fd)511 int bpf_map_freeze(int fd)
512 {
513 const size_t attr_sz = offsetofend(union bpf_attr, map_fd);
514 union bpf_attr attr;
515 int ret;
516
517 memset(&attr, 0, attr_sz);
518 attr.map_fd = fd;
519
520 ret = sys_bpf(BPF_MAP_FREEZE, &attr, attr_sz);
521 return libbpf_err_errno(ret);
522 }
523
bpf_map_batch_common(int cmd,int fd,void * in_batch,void * out_batch,void * keys,void * values,__u32 * count,const struct bpf_map_batch_opts * opts)524 static int bpf_map_batch_common(int cmd, int fd, void *in_batch,
525 void *out_batch, void *keys, void *values,
526 __u32 *count,
527 const struct bpf_map_batch_opts *opts)
528 {
529 const size_t attr_sz = offsetofend(union bpf_attr, batch);
530 union bpf_attr attr;
531 int ret;
532
533 if (!OPTS_VALID(opts, bpf_map_batch_opts))
534 return libbpf_err(-EINVAL);
535
536 memset(&attr, 0, attr_sz);
537 attr.batch.map_fd = fd;
538 attr.batch.in_batch = ptr_to_u64(in_batch);
539 attr.batch.out_batch = ptr_to_u64(out_batch);
540 attr.batch.keys = ptr_to_u64(keys);
541 attr.batch.values = ptr_to_u64(values);
542 attr.batch.count = *count;
543 attr.batch.elem_flags = OPTS_GET(opts, elem_flags, 0);
544 attr.batch.flags = OPTS_GET(opts, flags, 0);
545
546 ret = sys_bpf(cmd, &attr, attr_sz);
547 *count = attr.batch.count;
548
549 return libbpf_err_errno(ret);
550 }
551
bpf_map_delete_batch(int fd,const void * keys,__u32 * count,const struct bpf_map_batch_opts * opts)552 int bpf_map_delete_batch(int fd, const void *keys, __u32 *count,
553 const struct bpf_map_batch_opts *opts)
554 {
555 return bpf_map_batch_common(BPF_MAP_DELETE_BATCH, fd, NULL,
556 NULL, (void *)keys, NULL, count, opts);
557 }
558
bpf_map_lookup_batch(int fd,void * in_batch,void * out_batch,void * keys,void * values,__u32 * count,const struct bpf_map_batch_opts * opts)559 int bpf_map_lookup_batch(int fd, void *in_batch, void *out_batch, void *keys,
560 void *values, __u32 *count,
561 const struct bpf_map_batch_opts *opts)
562 {
563 return bpf_map_batch_common(BPF_MAP_LOOKUP_BATCH, fd, in_batch,
564 out_batch, keys, values, count, opts);
565 }
566
bpf_map_lookup_and_delete_batch(int fd,void * in_batch,void * out_batch,void * keys,void * values,__u32 * count,const struct bpf_map_batch_opts * opts)567 int bpf_map_lookup_and_delete_batch(int fd, void *in_batch, void *out_batch,
568 void *keys, void *values, __u32 *count,
569 const struct bpf_map_batch_opts *opts)
570 {
571 return bpf_map_batch_common(BPF_MAP_LOOKUP_AND_DELETE_BATCH,
572 fd, in_batch, out_batch, keys, values,
573 count, opts);
574 }
575
bpf_map_update_batch(int fd,const void * keys,const void * values,__u32 * count,const struct bpf_map_batch_opts * opts)576 int bpf_map_update_batch(int fd, const void *keys, const void *values, __u32 *count,
577 const struct bpf_map_batch_opts *opts)
578 {
579 return bpf_map_batch_common(BPF_MAP_UPDATE_BATCH, fd, NULL, NULL,
580 (void *)keys, (void *)values, count, opts);
581 }
582
bpf_obj_pin_opts(int fd,const char * pathname,const struct bpf_obj_pin_opts * opts)583 int bpf_obj_pin_opts(int fd, const char *pathname, const struct bpf_obj_pin_opts *opts)
584 {
585 const size_t attr_sz = offsetofend(union bpf_attr, path_fd);
586 union bpf_attr attr;
587 int ret;
588
589 if (!OPTS_VALID(opts, bpf_obj_pin_opts))
590 return libbpf_err(-EINVAL);
591
592 memset(&attr, 0, attr_sz);
593 attr.path_fd = OPTS_GET(opts, path_fd, 0);
594 attr.pathname = ptr_to_u64((void *)pathname);
595 attr.file_flags = OPTS_GET(opts, file_flags, 0);
596 attr.bpf_fd = fd;
597
598 ret = sys_bpf(BPF_OBJ_PIN, &attr, attr_sz);
599 return libbpf_err_errno(ret);
600 }
601
bpf_obj_pin(int fd,const char * pathname)602 int bpf_obj_pin(int fd, const char *pathname)
603 {
604 return bpf_obj_pin_opts(fd, pathname, NULL);
605 }
606
bpf_obj_get(const char * pathname)607 int bpf_obj_get(const char *pathname)
608 {
609 return bpf_obj_get_opts(pathname, NULL);
610 }
611
bpf_obj_get_opts(const char * pathname,const struct bpf_obj_get_opts * opts)612 int bpf_obj_get_opts(const char *pathname, const struct bpf_obj_get_opts *opts)
613 {
614 const size_t attr_sz = offsetofend(union bpf_attr, path_fd);
615 union bpf_attr attr;
616 int fd;
617
618 if (!OPTS_VALID(opts, bpf_obj_get_opts))
619 return libbpf_err(-EINVAL);
620
621 memset(&attr, 0, attr_sz);
622 attr.path_fd = OPTS_GET(opts, path_fd, 0);
623 attr.pathname = ptr_to_u64((void *)pathname);
624 attr.file_flags = OPTS_GET(opts, file_flags, 0);
625
626 fd = sys_bpf_fd(BPF_OBJ_GET, &attr, attr_sz);
627 return libbpf_err_errno(fd);
628 }
629
bpf_prog_attach(int prog_fd,int target_fd,enum bpf_attach_type type,unsigned int flags)630 int bpf_prog_attach(int prog_fd, int target_fd, enum bpf_attach_type type,
631 unsigned int flags)
632 {
633 DECLARE_LIBBPF_OPTS(bpf_prog_attach_opts, opts,
634 .flags = flags,
635 );
636
637 return bpf_prog_attach_opts(prog_fd, target_fd, type, &opts);
638 }
639
bpf_prog_attach_opts(int prog_fd,int target,enum bpf_attach_type type,const struct bpf_prog_attach_opts * opts)640 int bpf_prog_attach_opts(int prog_fd, int target, enum bpf_attach_type type,
641 const struct bpf_prog_attach_opts *opts)
642 {
643 const size_t attr_sz = offsetofend(union bpf_attr, expected_revision);
644 __u32 relative_id, flags;
645 int ret, relative_fd;
646 union bpf_attr attr;
647
648 if (!OPTS_VALID(opts, bpf_prog_attach_opts))
649 return libbpf_err(-EINVAL);
650
651 relative_id = OPTS_GET(opts, relative_id, 0);
652 relative_fd = OPTS_GET(opts, relative_fd, 0);
653 flags = OPTS_GET(opts, flags, 0);
654
655 /* validate we don't have unexpected combinations of non-zero fields */
656 if (relative_fd && relative_id)
657 return libbpf_err(-EINVAL);
658
659 memset(&attr, 0, attr_sz);
660 attr.target_fd = target;
661 attr.attach_bpf_fd = prog_fd;
662 attr.attach_type = type;
663 attr.replace_bpf_fd = OPTS_GET(opts, replace_fd, 0);
664 attr.expected_revision = OPTS_GET(opts, expected_revision, 0);
665
666 if (relative_id) {
667 attr.attach_flags = flags | BPF_F_ID;
668 attr.relative_id = relative_id;
669 } else {
670 attr.attach_flags = flags;
671 attr.relative_fd = relative_fd;
672 }
673
674 ret = sys_bpf(BPF_PROG_ATTACH, &attr, attr_sz);
675 return libbpf_err_errno(ret);
676 }
677
bpf_prog_detach_opts(int prog_fd,int target,enum bpf_attach_type type,const struct bpf_prog_detach_opts * opts)678 int bpf_prog_detach_opts(int prog_fd, int target, enum bpf_attach_type type,
679 const struct bpf_prog_detach_opts *opts)
680 {
681 const size_t attr_sz = offsetofend(union bpf_attr, expected_revision);
682 __u32 relative_id, flags;
683 int ret, relative_fd;
684 union bpf_attr attr;
685
686 if (!OPTS_VALID(opts, bpf_prog_detach_opts))
687 return libbpf_err(-EINVAL);
688
689 relative_id = OPTS_GET(opts, relative_id, 0);
690 relative_fd = OPTS_GET(opts, relative_fd, 0);
691 flags = OPTS_GET(opts, flags, 0);
692
693 /* validate we don't have unexpected combinations of non-zero fields */
694 if (relative_fd && relative_id)
695 return libbpf_err(-EINVAL);
696
697 memset(&attr, 0, attr_sz);
698 attr.target_fd = target;
699 attr.attach_bpf_fd = prog_fd;
700 attr.attach_type = type;
701 attr.expected_revision = OPTS_GET(opts, expected_revision, 0);
702
703 if (relative_id) {
704 attr.attach_flags = flags | BPF_F_ID;
705 attr.relative_id = relative_id;
706 } else {
707 attr.attach_flags = flags;
708 attr.relative_fd = relative_fd;
709 }
710
711 ret = sys_bpf(BPF_PROG_DETACH, &attr, attr_sz);
712 return libbpf_err_errno(ret);
713 }
714
bpf_prog_detach(int target_fd,enum bpf_attach_type type)715 int bpf_prog_detach(int target_fd, enum bpf_attach_type type)
716 {
717 return bpf_prog_detach_opts(0, target_fd, type, NULL);
718 }
719
bpf_prog_detach2(int prog_fd,int target_fd,enum bpf_attach_type type)720 int bpf_prog_detach2(int prog_fd, int target_fd, enum bpf_attach_type type)
721 {
722 return bpf_prog_detach_opts(prog_fd, target_fd, type, NULL);
723 }
724
bpf_link_create(int prog_fd,int target_fd,enum bpf_attach_type attach_type,const struct bpf_link_create_opts * opts)725 int bpf_link_create(int prog_fd, int target_fd,
726 enum bpf_attach_type attach_type,
727 const struct bpf_link_create_opts *opts)
728 {
729 const size_t attr_sz = offsetofend(union bpf_attr, link_create);
730 __u32 target_btf_id, iter_info_len, relative_id;
731 int fd, err, relative_fd;
732 union bpf_attr attr;
733
734 if (!OPTS_VALID(opts, bpf_link_create_opts))
735 return libbpf_err(-EINVAL);
736
737 iter_info_len = OPTS_GET(opts, iter_info_len, 0);
738 target_btf_id = OPTS_GET(opts, target_btf_id, 0);
739
740 /* validate we don't have unexpected combinations of non-zero fields */
741 if (iter_info_len || target_btf_id) {
742 if (iter_info_len && target_btf_id)
743 return libbpf_err(-EINVAL);
744 if (!OPTS_ZEROED(opts, target_btf_id))
745 return libbpf_err(-EINVAL);
746 }
747
748 memset(&attr, 0, attr_sz);
749 attr.link_create.prog_fd = prog_fd;
750 attr.link_create.target_fd = target_fd;
751 attr.link_create.attach_type = attach_type;
752 attr.link_create.flags = OPTS_GET(opts, flags, 0);
753
754 if (target_btf_id) {
755 attr.link_create.target_btf_id = target_btf_id;
756 goto proceed;
757 }
758
759 switch (attach_type) {
760 case BPF_TRACE_ITER:
761 attr.link_create.iter_info = ptr_to_u64(OPTS_GET(opts, iter_info, (void *)0));
762 attr.link_create.iter_info_len = iter_info_len;
763 break;
764 case BPF_PERF_EVENT:
765 attr.link_create.perf_event.bpf_cookie = OPTS_GET(opts, perf_event.bpf_cookie, 0);
766 if (!OPTS_ZEROED(opts, perf_event))
767 return libbpf_err(-EINVAL);
768 break;
769 case BPF_TRACE_KPROBE_MULTI:
770 case BPF_TRACE_KPROBE_SESSION:
771 attr.link_create.kprobe_multi.flags = OPTS_GET(opts, kprobe_multi.flags, 0);
772 attr.link_create.kprobe_multi.cnt = OPTS_GET(opts, kprobe_multi.cnt, 0);
773 attr.link_create.kprobe_multi.syms = ptr_to_u64(OPTS_GET(opts, kprobe_multi.syms, 0));
774 attr.link_create.kprobe_multi.addrs = ptr_to_u64(OPTS_GET(opts, kprobe_multi.addrs, 0));
775 attr.link_create.kprobe_multi.cookies = ptr_to_u64(OPTS_GET(opts, kprobe_multi.cookies, 0));
776 if (!OPTS_ZEROED(opts, kprobe_multi))
777 return libbpf_err(-EINVAL);
778 break;
779 case BPF_TRACE_UPROBE_MULTI:
780 case BPF_TRACE_UPROBE_SESSION:
781 attr.link_create.uprobe_multi.flags = OPTS_GET(opts, uprobe_multi.flags, 0);
782 attr.link_create.uprobe_multi.cnt = OPTS_GET(opts, uprobe_multi.cnt, 0);
783 attr.link_create.uprobe_multi.path = ptr_to_u64(OPTS_GET(opts, uprobe_multi.path, 0));
784 attr.link_create.uprobe_multi.offsets = ptr_to_u64(OPTS_GET(opts, uprobe_multi.offsets, 0));
785 attr.link_create.uprobe_multi.ref_ctr_offsets = ptr_to_u64(OPTS_GET(opts, uprobe_multi.ref_ctr_offsets, 0));
786 attr.link_create.uprobe_multi.cookies = ptr_to_u64(OPTS_GET(opts, uprobe_multi.cookies, 0));
787 attr.link_create.uprobe_multi.pid = OPTS_GET(opts, uprobe_multi.pid, 0);
788 if (!OPTS_ZEROED(opts, uprobe_multi))
789 return libbpf_err(-EINVAL);
790 break;
791 case BPF_TRACE_RAW_TP:
792 case BPF_TRACE_FENTRY:
793 case BPF_TRACE_FEXIT:
794 case BPF_MODIFY_RETURN:
795 case BPF_LSM_MAC:
796 attr.link_create.tracing.cookie = OPTS_GET(opts, tracing.cookie, 0);
797 if (!OPTS_ZEROED(opts, tracing))
798 return libbpf_err(-EINVAL);
799 break;
800 case BPF_NETFILTER:
801 attr.link_create.netfilter.pf = OPTS_GET(opts, netfilter.pf, 0);
802 attr.link_create.netfilter.hooknum = OPTS_GET(opts, netfilter.hooknum, 0);
803 attr.link_create.netfilter.priority = OPTS_GET(opts, netfilter.priority, 0);
804 attr.link_create.netfilter.flags = OPTS_GET(opts, netfilter.flags, 0);
805 if (!OPTS_ZEROED(opts, netfilter))
806 return libbpf_err(-EINVAL);
807 break;
808 case BPF_TCX_INGRESS:
809 case BPF_TCX_EGRESS:
810 relative_fd = OPTS_GET(opts, tcx.relative_fd, 0);
811 relative_id = OPTS_GET(opts, tcx.relative_id, 0);
812 if (relative_fd && relative_id)
813 return libbpf_err(-EINVAL);
814 if (relative_id) {
815 attr.link_create.tcx.relative_id = relative_id;
816 attr.link_create.flags |= BPF_F_ID;
817 } else {
818 attr.link_create.tcx.relative_fd = relative_fd;
819 }
820 attr.link_create.tcx.expected_revision = OPTS_GET(opts, tcx.expected_revision, 0);
821 if (!OPTS_ZEROED(opts, tcx))
822 return libbpf_err(-EINVAL);
823 break;
824 case BPF_NETKIT_PRIMARY:
825 case BPF_NETKIT_PEER:
826 relative_fd = OPTS_GET(opts, netkit.relative_fd, 0);
827 relative_id = OPTS_GET(opts, netkit.relative_id, 0);
828 if (relative_fd && relative_id)
829 return libbpf_err(-EINVAL);
830 if (relative_id) {
831 attr.link_create.netkit.relative_id = relative_id;
832 attr.link_create.flags |= BPF_F_ID;
833 } else {
834 attr.link_create.netkit.relative_fd = relative_fd;
835 }
836 attr.link_create.netkit.expected_revision = OPTS_GET(opts, netkit.expected_revision, 0);
837 if (!OPTS_ZEROED(opts, netkit))
838 return libbpf_err(-EINVAL);
839 break;
840 default:
841 if (!OPTS_ZEROED(opts, flags))
842 return libbpf_err(-EINVAL);
843 break;
844 }
845 proceed:
846 fd = sys_bpf_fd(BPF_LINK_CREATE, &attr, attr_sz);
847 if (fd >= 0)
848 return fd;
849 /* we'll get EINVAL if LINK_CREATE doesn't support attaching fentry
850 * and other similar programs
851 */
852 err = -errno;
853 if (err != -EINVAL)
854 return libbpf_err(err);
855
856 /* if user used features not supported by
857 * BPF_RAW_TRACEPOINT_OPEN command, then just give up immediately
858 */
859 if (attr.link_create.target_fd || attr.link_create.target_btf_id)
860 return libbpf_err(err);
861 if (!OPTS_ZEROED(opts, sz))
862 return libbpf_err(err);
863
864 /* otherwise, for few select kinds of programs that can be
865 * attached using BPF_RAW_TRACEPOINT_OPEN command, try that as
866 * a fallback for older kernels
867 */
868 switch (attach_type) {
869 case BPF_TRACE_RAW_TP:
870 case BPF_LSM_MAC:
871 case BPF_TRACE_FENTRY:
872 case BPF_TRACE_FEXIT:
873 case BPF_MODIFY_RETURN:
874 return bpf_raw_tracepoint_open(NULL, prog_fd);
875 default:
876 return libbpf_err(err);
877 }
878 }
879
bpf_link_detach(int link_fd)880 int bpf_link_detach(int link_fd)
881 {
882 const size_t attr_sz = offsetofend(union bpf_attr, link_detach);
883 union bpf_attr attr;
884 int ret;
885
886 memset(&attr, 0, attr_sz);
887 attr.link_detach.link_fd = link_fd;
888
889 ret = sys_bpf(BPF_LINK_DETACH, &attr, attr_sz);
890 return libbpf_err_errno(ret);
891 }
892
bpf_link_update(int link_fd,int new_prog_fd,const struct bpf_link_update_opts * opts)893 int bpf_link_update(int link_fd, int new_prog_fd,
894 const struct bpf_link_update_opts *opts)
895 {
896 const size_t attr_sz = offsetofend(union bpf_attr, link_update);
897 union bpf_attr attr;
898 int ret;
899
900 if (!OPTS_VALID(opts, bpf_link_update_opts))
901 return libbpf_err(-EINVAL);
902
903 if (OPTS_GET(opts, old_prog_fd, 0) && OPTS_GET(opts, old_map_fd, 0))
904 return libbpf_err(-EINVAL);
905
906 memset(&attr, 0, attr_sz);
907 attr.link_update.link_fd = link_fd;
908 attr.link_update.new_prog_fd = new_prog_fd;
909 attr.link_update.flags = OPTS_GET(opts, flags, 0);
910 if (OPTS_GET(opts, old_prog_fd, 0))
911 attr.link_update.old_prog_fd = OPTS_GET(opts, old_prog_fd, 0);
912 else if (OPTS_GET(opts, old_map_fd, 0))
913 attr.link_update.old_map_fd = OPTS_GET(opts, old_map_fd, 0);
914
915 ret = sys_bpf(BPF_LINK_UPDATE, &attr, attr_sz);
916 return libbpf_err_errno(ret);
917 }
918
bpf_iter_create(int link_fd)919 int bpf_iter_create(int link_fd)
920 {
921 const size_t attr_sz = offsetofend(union bpf_attr, iter_create);
922 union bpf_attr attr;
923 int fd;
924
925 memset(&attr, 0, attr_sz);
926 attr.iter_create.link_fd = link_fd;
927
928 fd = sys_bpf_fd(BPF_ITER_CREATE, &attr, attr_sz);
929 return libbpf_err_errno(fd);
930 }
931
bpf_prog_query_opts(int target,enum bpf_attach_type type,struct bpf_prog_query_opts * opts)932 int bpf_prog_query_opts(int target, enum bpf_attach_type type,
933 struct bpf_prog_query_opts *opts)
934 {
935 const size_t attr_sz = offsetofend(union bpf_attr, query);
936 union bpf_attr attr;
937 int ret;
938
939 if (!OPTS_VALID(opts, bpf_prog_query_opts))
940 return libbpf_err(-EINVAL);
941
942 memset(&attr, 0, attr_sz);
943 attr.query.target_fd = target;
944 attr.query.attach_type = type;
945 attr.query.query_flags = OPTS_GET(opts, query_flags, 0);
946 attr.query.count = OPTS_GET(opts, count, 0);
947 attr.query.prog_ids = ptr_to_u64(OPTS_GET(opts, prog_ids, NULL));
948 attr.query.link_ids = ptr_to_u64(OPTS_GET(opts, link_ids, NULL));
949 attr.query.prog_attach_flags = ptr_to_u64(OPTS_GET(opts, prog_attach_flags, NULL));
950 attr.query.link_attach_flags = ptr_to_u64(OPTS_GET(opts, link_attach_flags, NULL));
951
952 ret = sys_bpf(BPF_PROG_QUERY, &attr, attr_sz);
953
954 OPTS_SET(opts, attach_flags, attr.query.attach_flags);
955 OPTS_SET(opts, revision, attr.query.revision);
956 OPTS_SET(opts, count, attr.query.count);
957
958 return libbpf_err_errno(ret);
959 }
960
bpf_prog_query(int target_fd,enum bpf_attach_type type,__u32 query_flags,__u32 * attach_flags,__u32 * prog_ids,__u32 * prog_cnt)961 int bpf_prog_query(int target_fd, enum bpf_attach_type type, __u32 query_flags,
962 __u32 *attach_flags, __u32 *prog_ids, __u32 *prog_cnt)
963 {
964 LIBBPF_OPTS(bpf_prog_query_opts, opts);
965 int ret;
966
967 opts.query_flags = query_flags;
968 opts.prog_ids = prog_ids;
969 opts.prog_cnt = *prog_cnt;
970
971 ret = bpf_prog_query_opts(target_fd, type, &opts);
972
973 if (attach_flags)
974 *attach_flags = opts.attach_flags;
975 *prog_cnt = opts.prog_cnt;
976
977 return libbpf_err_errno(ret);
978 }
979
bpf_prog_test_run_opts(int prog_fd,struct bpf_test_run_opts * opts)980 int bpf_prog_test_run_opts(int prog_fd, struct bpf_test_run_opts *opts)
981 {
982 const size_t attr_sz = offsetofend(union bpf_attr, test);
983 union bpf_attr attr;
984 int ret;
985
986 if (!OPTS_VALID(opts, bpf_test_run_opts))
987 return libbpf_err(-EINVAL);
988
989 memset(&attr, 0, attr_sz);
990 attr.test.prog_fd = prog_fd;
991 attr.test.batch_size = OPTS_GET(opts, batch_size, 0);
992 attr.test.cpu = OPTS_GET(opts, cpu, 0);
993 attr.test.flags = OPTS_GET(opts, flags, 0);
994 attr.test.repeat = OPTS_GET(opts, repeat, 0);
995 attr.test.duration = OPTS_GET(opts, duration, 0);
996 attr.test.ctx_size_in = OPTS_GET(opts, ctx_size_in, 0);
997 attr.test.ctx_size_out = OPTS_GET(opts, ctx_size_out, 0);
998 attr.test.data_size_in = OPTS_GET(opts, data_size_in, 0);
999 attr.test.data_size_out = OPTS_GET(opts, data_size_out, 0);
1000 attr.test.ctx_in = ptr_to_u64(OPTS_GET(opts, ctx_in, NULL));
1001 attr.test.ctx_out = ptr_to_u64(OPTS_GET(opts, ctx_out, NULL));
1002 attr.test.data_in = ptr_to_u64(OPTS_GET(opts, data_in, NULL));
1003 attr.test.data_out = ptr_to_u64(OPTS_GET(opts, data_out, NULL));
1004
1005 ret = sys_bpf(BPF_PROG_TEST_RUN, &attr, attr_sz);
1006
1007 OPTS_SET(opts, data_size_out, attr.test.data_size_out);
1008 OPTS_SET(opts, ctx_size_out, attr.test.ctx_size_out);
1009 OPTS_SET(opts, duration, attr.test.duration);
1010 OPTS_SET(opts, retval, attr.test.retval);
1011
1012 return libbpf_err_errno(ret);
1013 }
1014
bpf_obj_get_next_id(__u32 start_id,__u32 * next_id,int cmd)1015 static int bpf_obj_get_next_id(__u32 start_id, __u32 *next_id, int cmd)
1016 {
1017 const size_t attr_sz = offsetofend(union bpf_attr, open_flags);
1018 union bpf_attr attr;
1019 int err;
1020
1021 memset(&attr, 0, attr_sz);
1022 attr.start_id = start_id;
1023
1024 err = sys_bpf(cmd, &attr, attr_sz);
1025 if (!err)
1026 *next_id = attr.next_id;
1027
1028 return libbpf_err_errno(err);
1029 }
1030
bpf_prog_get_next_id(__u32 start_id,__u32 * next_id)1031 int bpf_prog_get_next_id(__u32 start_id, __u32 *next_id)
1032 {
1033 return bpf_obj_get_next_id(start_id, next_id, BPF_PROG_GET_NEXT_ID);
1034 }
1035
bpf_map_get_next_id(__u32 start_id,__u32 * next_id)1036 int bpf_map_get_next_id(__u32 start_id, __u32 *next_id)
1037 {
1038 return bpf_obj_get_next_id(start_id, next_id, BPF_MAP_GET_NEXT_ID);
1039 }
1040
bpf_btf_get_next_id(__u32 start_id,__u32 * next_id)1041 int bpf_btf_get_next_id(__u32 start_id, __u32 *next_id)
1042 {
1043 return bpf_obj_get_next_id(start_id, next_id, BPF_BTF_GET_NEXT_ID);
1044 }
1045
bpf_link_get_next_id(__u32 start_id,__u32 * next_id)1046 int bpf_link_get_next_id(__u32 start_id, __u32 *next_id)
1047 {
1048 return bpf_obj_get_next_id(start_id, next_id, BPF_LINK_GET_NEXT_ID);
1049 }
1050
bpf_prog_get_fd_by_id_opts(__u32 id,const struct bpf_get_fd_by_id_opts * opts)1051 int bpf_prog_get_fd_by_id_opts(__u32 id,
1052 const struct bpf_get_fd_by_id_opts *opts)
1053 {
1054 const size_t attr_sz = offsetofend(union bpf_attr, open_flags);
1055 union bpf_attr attr;
1056 int fd;
1057
1058 if (!OPTS_VALID(opts, bpf_get_fd_by_id_opts))
1059 return libbpf_err(-EINVAL);
1060
1061 memset(&attr, 0, attr_sz);
1062 attr.prog_id = id;
1063 attr.open_flags = OPTS_GET(opts, open_flags, 0);
1064
1065 fd = sys_bpf_fd(BPF_PROG_GET_FD_BY_ID, &attr, attr_sz);
1066 return libbpf_err_errno(fd);
1067 }
1068
bpf_prog_get_fd_by_id(__u32 id)1069 int bpf_prog_get_fd_by_id(__u32 id)
1070 {
1071 return bpf_prog_get_fd_by_id_opts(id, NULL);
1072 }
1073
bpf_map_get_fd_by_id_opts(__u32 id,const struct bpf_get_fd_by_id_opts * opts)1074 int bpf_map_get_fd_by_id_opts(__u32 id,
1075 const struct bpf_get_fd_by_id_opts *opts)
1076 {
1077 const size_t attr_sz = offsetofend(union bpf_attr, open_flags);
1078 union bpf_attr attr;
1079 int fd;
1080
1081 if (!OPTS_VALID(opts, bpf_get_fd_by_id_opts))
1082 return libbpf_err(-EINVAL);
1083
1084 memset(&attr, 0, attr_sz);
1085 attr.map_id = id;
1086 attr.open_flags = OPTS_GET(opts, open_flags, 0);
1087
1088 fd = sys_bpf_fd(BPF_MAP_GET_FD_BY_ID, &attr, attr_sz);
1089 return libbpf_err_errno(fd);
1090 }
1091
bpf_map_get_fd_by_id(__u32 id)1092 int bpf_map_get_fd_by_id(__u32 id)
1093 {
1094 return bpf_map_get_fd_by_id_opts(id, NULL);
1095 }
1096
bpf_btf_get_fd_by_id_opts(__u32 id,const struct bpf_get_fd_by_id_opts * opts)1097 int bpf_btf_get_fd_by_id_opts(__u32 id,
1098 const struct bpf_get_fd_by_id_opts *opts)
1099 {
1100 const size_t attr_sz = offsetofend(union bpf_attr, open_flags);
1101 union bpf_attr attr;
1102 int fd;
1103
1104 if (!OPTS_VALID(opts, bpf_get_fd_by_id_opts))
1105 return libbpf_err(-EINVAL);
1106
1107 memset(&attr, 0, attr_sz);
1108 attr.btf_id = id;
1109 attr.open_flags = OPTS_GET(opts, open_flags, 0);
1110
1111 fd = sys_bpf_fd(BPF_BTF_GET_FD_BY_ID, &attr, attr_sz);
1112 return libbpf_err_errno(fd);
1113 }
1114
bpf_btf_get_fd_by_id(__u32 id)1115 int bpf_btf_get_fd_by_id(__u32 id)
1116 {
1117 return bpf_btf_get_fd_by_id_opts(id, NULL);
1118 }
1119
bpf_link_get_fd_by_id_opts(__u32 id,const struct bpf_get_fd_by_id_opts * opts)1120 int bpf_link_get_fd_by_id_opts(__u32 id,
1121 const struct bpf_get_fd_by_id_opts *opts)
1122 {
1123 const size_t attr_sz = offsetofend(union bpf_attr, open_flags);
1124 union bpf_attr attr;
1125 int fd;
1126
1127 if (!OPTS_VALID(opts, bpf_get_fd_by_id_opts))
1128 return libbpf_err(-EINVAL);
1129
1130 memset(&attr, 0, attr_sz);
1131 attr.link_id = id;
1132 attr.open_flags = OPTS_GET(opts, open_flags, 0);
1133
1134 fd = sys_bpf_fd(BPF_LINK_GET_FD_BY_ID, &attr, attr_sz);
1135 return libbpf_err_errno(fd);
1136 }
1137
bpf_link_get_fd_by_id(__u32 id)1138 int bpf_link_get_fd_by_id(__u32 id)
1139 {
1140 return bpf_link_get_fd_by_id_opts(id, NULL);
1141 }
1142
bpf_obj_get_info_by_fd(int bpf_fd,void * info,__u32 * info_len)1143 int bpf_obj_get_info_by_fd(int bpf_fd, void *info, __u32 *info_len)
1144 {
1145 const size_t attr_sz = offsetofend(union bpf_attr, info);
1146 union bpf_attr attr;
1147 int err;
1148
1149 memset(&attr, 0, attr_sz);
1150 attr.info.bpf_fd = bpf_fd;
1151 attr.info.info_len = *info_len;
1152 attr.info.info = ptr_to_u64(info);
1153
1154 err = sys_bpf(BPF_OBJ_GET_INFO_BY_FD, &attr, attr_sz);
1155 if (!err)
1156 *info_len = attr.info.info_len;
1157 return libbpf_err_errno(err);
1158 }
1159
bpf_prog_get_info_by_fd(int prog_fd,struct bpf_prog_info * info,__u32 * info_len)1160 int bpf_prog_get_info_by_fd(int prog_fd, struct bpf_prog_info *info, __u32 *info_len)
1161 {
1162 return bpf_obj_get_info_by_fd(prog_fd, info, info_len);
1163 }
1164
bpf_map_get_info_by_fd(int map_fd,struct bpf_map_info * info,__u32 * info_len)1165 int bpf_map_get_info_by_fd(int map_fd, struct bpf_map_info *info, __u32 *info_len)
1166 {
1167 return bpf_obj_get_info_by_fd(map_fd, info, info_len);
1168 }
1169
bpf_btf_get_info_by_fd(int btf_fd,struct bpf_btf_info * info,__u32 * info_len)1170 int bpf_btf_get_info_by_fd(int btf_fd, struct bpf_btf_info *info, __u32 *info_len)
1171 {
1172 return bpf_obj_get_info_by_fd(btf_fd, info, info_len);
1173 }
1174
bpf_link_get_info_by_fd(int link_fd,struct bpf_link_info * info,__u32 * info_len)1175 int bpf_link_get_info_by_fd(int link_fd, struct bpf_link_info *info, __u32 *info_len)
1176 {
1177 return bpf_obj_get_info_by_fd(link_fd, info, info_len);
1178 }
1179
bpf_raw_tracepoint_open_opts(int prog_fd,struct bpf_raw_tp_opts * opts)1180 int bpf_raw_tracepoint_open_opts(int prog_fd, struct bpf_raw_tp_opts *opts)
1181 {
1182 const size_t attr_sz = offsetofend(union bpf_attr, raw_tracepoint);
1183 union bpf_attr attr;
1184 int fd;
1185
1186 if (!OPTS_VALID(opts, bpf_raw_tp_opts))
1187 return libbpf_err(-EINVAL);
1188
1189 memset(&attr, 0, attr_sz);
1190 attr.raw_tracepoint.prog_fd = prog_fd;
1191 attr.raw_tracepoint.name = ptr_to_u64(OPTS_GET(opts, tp_name, NULL));
1192 attr.raw_tracepoint.cookie = OPTS_GET(opts, cookie, 0);
1193
1194 fd = sys_bpf_fd(BPF_RAW_TRACEPOINT_OPEN, &attr, attr_sz);
1195 return libbpf_err_errno(fd);
1196 }
1197
bpf_raw_tracepoint_open(const char * name,int prog_fd)1198 int bpf_raw_tracepoint_open(const char *name, int prog_fd)
1199 {
1200 LIBBPF_OPTS(bpf_raw_tp_opts, opts, .tp_name = name);
1201
1202 return bpf_raw_tracepoint_open_opts(prog_fd, &opts);
1203 }
1204
bpf_btf_load(const void * btf_data,size_t btf_size,struct bpf_btf_load_opts * opts)1205 int bpf_btf_load(const void *btf_data, size_t btf_size, struct bpf_btf_load_opts *opts)
1206 {
1207 const size_t attr_sz = offsetofend(union bpf_attr, btf_token_fd);
1208 union bpf_attr attr;
1209 char *log_buf;
1210 size_t log_size;
1211 __u32 log_level;
1212 int fd;
1213
1214 bump_rlimit_memlock();
1215
1216 memset(&attr, 0, attr_sz);
1217
1218 if (!OPTS_VALID(opts, bpf_btf_load_opts))
1219 return libbpf_err(-EINVAL);
1220
1221 log_buf = OPTS_GET(opts, log_buf, NULL);
1222 log_size = OPTS_GET(opts, log_size, 0);
1223 log_level = OPTS_GET(opts, log_level, 0);
1224
1225 if (log_size > UINT_MAX)
1226 return libbpf_err(-EINVAL);
1227 if (log_size && !log_buf)
1228 return libbpf_err(-EINVAL);
1229
1230 attr.btf = ptr_to_u64(btf_data);
1231 attr.btf_size = btf_size;
1232
1233 attr.btf_flags = OPTS_GET(opts, btf_flags, 0);
1234 attr.btf_token_fd = OPTS_GET(opts, token_fd, 0);
1235
1236 /* log_level == 0 and log_buf != NULL means "try loading without
1237 * log_buf, but retry with log_buf and log_level=1 on error", which is
1238 * consistent across low-level and high-level BTF and program loading
1239 * APIs within libbpf and provides a sensible behavior in practice
1240 */
1241 if (log_level) {
1242 attr.btf_log_buf = ptr_to_u64(log_buf);
1243 attr.btf_log_size = (__u32)log_size;
1244 attr.btf_log_level = log_level;
1245 }
1246
1247 fd = sys_bpf_fd(BPF_BTF_LOAD, &attr, attr_sz);
1248 if (fd < 0 && log_buf && log_level == 0) {
1249 attr.btf_log_buf = ptr_to_u64(log_buf);
1250 attr.btf_log_size = (__u32)log_size;
1251 attr.btf_log_level = 1;
1252 fd = sys_bpf_fd(BPF_BTF_LOAD, &attr, attr_sz);
1253 }
1254
1255 OPTS_SET(opts, log_true_size, attr.btf_log_true_size);
1256 return libbpf_err_errno(fd);
1257 }
1258
bpf_task_fd_query(int pid,int fd,__u32 flags,char * buf,__u32 * buf_len,__u32 * prog_id,__u32 * fd_type,__u64 * probe_offset,__u64 * probe_addr)1259 int bpf_task_fd_query(int pid, int fd, __u32 flags, char *buf, __u32 *buf_len,
1260 __u32 *prog_id, __u32 *fd_type, __u64 *probe_offset,
1261 __u64 *probe_addr)
1262 {
1263 const size_t attr_sz = offsetofend(union bpf_attr, task_fd_query);
1264 union bpf_attr attr;
1265 int err;
1266
1267 memset(&attr, 0, attr_sz);
1268 attr.task_fd_query.pid = pid;
1269 attr.task_fd_query.fd = fd;
1270 attr.task_fd_query.flags = flags;
1271 attr.task_fd_query.buf = ptr_to_u64(buf);
1272 attr.task_fd_query.buf_len = *buf_len;
1273
1274 err = sys_bpf(BPF_TASK_FD_QUERY, &attr, attr_sz);
1275
1276 *buf_len = attr.task_fd_query.buf_len;
1277 *prog_id = attr.task_fd_query.prog_id;
1278 *fd_type = attr.task_fd_query.fd_type;
1279 *probe_offset = attr.task_fd_query.probe_offset;
1280 *probe_addr = attr.task_fd_query.probe_addr;
1281
1282 return libbpf_err_errno(err);
1283 }
1284
bpf_enable_stats(enum bpf_stats_type type)1285 int bpf_enable_stats(enum bpf_stats_type type)
1286 {
1287 const size_t attr_sz = offsetofend(union bpf_attr, enable_stats);
1288 union bpf_attr attr;
1289 int fd;
1290
1291 memset(&attr, 0, attr_sz);
1292 attr.enable_stats.type = type;
1293
1294 fd = sys_bpf_fd(BPF_ENABLE_STATS, &attr, attr_sz);
1295 return libbpf_err_errno(fd);
1296 }
1297
bpf_prog_bind_map(int prog_fd,int map_fd,const struct bpf_prog_bind_opts * opts)1298 int bpf_prog_bind_map(int prog_fd, int map_fd,
1299 const struct bpf_prog_bind_opts *opts)
1300 {
1301 const size_t attr_sz = offsetofend(union bpf_attr, prog_bind_map);
1302 union bpf_attr attr;
1303 int ret;
1304
1305 if (!OPTS_VALID(opts, bpf_prog_bind_opts))
1306 return libbpf_err(-EINVAL);
1307
1308 memset(&attr, 0, attr_sz);
1309 attr.prog_bind_map.prog_fd = prog_fd;
1310 attr.prog_bind_map.map_fd = map_fd;
1311 attr.prog_bind_map.flags = OPTS_GET(opts, flags, 0);
1312
1313 ret = sys_bpf(BPF_PROG_BIND_MAP, &attr, attr_sz);
1314 return libbpf_err_errno(ret);
1315 }
1316
bpf_token_create(int bpffs_fd,struct bpf_token_create_opts * opts)1317 int bpf_token_create(int bpffs_fd, struct bpf_token_create_opts *opts)
1318 {
1319 const size_t attr_sz = offsetofend(union bpf_attr, token_create);
1320 union bpf_attr attr;
1321 int fd;
1322
1323 if (!OPTS_VALID(opts, bpf_token_create_opts))
1324 return libbpf_err(-EINVAL);
1325
1326 memset(&attr, 0, attr_sz);
1327 attr.token_create.bpffs_fd = bpffs_fd;
1328 attr.token_create.flags = OPTS_GET(opts, flags, 0);
1329
1330 fd = sys_bpf_fd(BPF_TOKEN_CREATE, &attr, attr_sz);
1331 return libbpf_err_errno(fd);
1332 }
1333