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bpf: Sample BPF program to set congestion control
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daedfb22
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1/* Copyright (c) 2011-2014 PLUMgrid, http://plumgrid.com
2 *
3 * This program is free software; you can redistribute it and/or
4 * modify it under the terms of version 2 of the GNU General Public
5 * License as published by the Free Software Foundation.
6 */
7#ifndef _UAPI__LINUX_BPF_H__
8#define _UAPI__LINUX_BPF_H__
9
10#include <linux/types.h>
c15952dc 11#include <linux/bpf_common.h>
daedfb22
AS
12
13/* Extended instruction set based on top of classic BPF */
14
15/* instruction classes */
16#define BPF_ALU64 0x07 /* alu mode in double word width */
17
18/* ld/ldx fields */
19#define BPF_DW 0x18 /* double word */
20#define BPF_XADD 0xc0 /* exclusive add */
21
22/* alu/jmp fields */
23#define BPF_MOV 0xb0 /* mov reg to reg */
24#define BPF_ARSH 0xc0 /* sign extending arithmetic shift right */
25
26/* change endianness of a register */
27#define BPF_END 0xd0 /* flags for endianness conversion: */
28#define BPF_TO_LE 0x00 /* convert to little-endian */
29#define BPF_TO_BE 0x08 /* convert to big-endian */
30#define BPF_FROM_LE BPF_TO_LE
31#define BPF_FROM_BE BPF_TO_BE
32
33#define BPF_JNE 0x50 /* jump != */
34#define BPF_JSGT 0x60 /* SGT is signed '>', GT in x86 */
35#define BPF_JSGE 0x70 /* SGE is signed '>=', GE in x86 */
36#define BPF_CALL 0x80 /* function call */
37#define BPF_EXIT 0x90 /* function return */
38
39/* Register numbers */
40enum {
41 BPF_REG_0 = 0,
42 BPF_REG_1,
43 BPF_REG_2,
44 BPF_REG_3,
45 BPF_REG_4,
46 BPF_REG_5,
47 BPF_REG_6,
48 BPF_REG_7,
49 BPF_REG_8,
50 BPF_REG_9,
51 BPF_REG_10,
52 __MAX_BPF_REG,
53};
54
55/* BPF has 10 general purpose 64-bit registers and stack frame. */
56#define MAX_BPF_REG __MAX_BPF_REG
57
58struct bpf_insn {
59 __u8 code; /* opcode */
60 __u8 dst_reg:4; /* dest register */
61 __u8 src_reg:4; /* source register */
62 __s16 off; /* signed offset */
63 __s32 imm; /* signed immediate constant */
64};
65
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DM
66/* Key of an a BPF_MAP_TYPE_LPM_TRIE entry */
67struct bpf_lpm_trie_key {
68 __u32 prefixlen; /* up to 32 for AF_INET, 128 for AF_INET6 */
69 __u8 data[0]; /* Arbitrary size */
70};
71
b2197755 72/* BPF syscall commands, see bpf(2) man-page for details. */
99c55f7d 73enum bpf_cmd {
99c55f7d 74 BPF_MAP_CREATE,
db20fd2b 75 BPF_MAP_LOOKUP_ELEM,
db20fd2b 76 BPF_MAP_UPDATE_ELEM,
db20fd2b 77 BPF_MAP_DELETE_ELEM,
db20fd2b 78 BPF_MAP_GET_NEXT_KEY,
09756af4 79 BPF_PROG_LOAD,
b2197755
DB
80 BPF_OBJ_PIN,
81 BPF_OBJ_GET,
f4324551
DM
82 BPF_PROG_ATTACH,
83 BPF_PROG_DETACH,
1cf1cae9 84 BPF_PROG_TEST_RUN,
34ad5580
MKL
85 BPF_PROG_GET_NEXT_ID,
86 BPF_MAP_GET_NEXT_ID,
b16d9aa4 87 BPF_PROG_GET_FD_BY_ID,
bd5f5f4e 88 BPF_MAP_GET_FD_BY_ID,
1e270976 89 BPF_OBJ_GET_INFO_BY_FD,
99c55f7d
AS
90};
91
92enum bpf_map_type {
93 BPF_MAP_TYPE_UNSPEC,
0f8e4bd8 94 BPF_MAP_TYPE_HASH,
28fbcfa0 95 BPF_MAP_TYPE_ARRAY,
04fd61ab 96 BPF_MAP_TYPE_PROG_ARRAY,
ea317b26 97 BPF_MAP_TYPE_PERF_EVENT_ARRAY,
824bd0ce 98 BPF_MAP_TYPE_PERCPU_HASH,
a10423b8 99 BPF_MAP_TYPE_PERCPU_ARRAY,
d5a3b1f6 100 BPF_MAP_TYPE_STACK_TRACE,
4ed8ec52 101 BPF_MAP_TYPE_CGROUP_ARRAY,
29ba732a 102 BPF_MAP_TYPE_LRU_HASH,
8f844938 103 BPF_MAP_TYPE_LRU_PERCPU_HASH,
b95a5c4d 104 BPF_MAP_TYPE_LPM_TRIE,
56f668df 105 BPF_MAP_TYPE_ARRAY_OF_MAPS,
bcc6b1b7 106 BPF_MAP_TYPE_HASH_OF_MAPS,
99c55f7d
AS
107};
108
09756af4
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109enum bpf_prog_type {
110 BPF_PROG_TYPE_UNSPEC,
ddd872bc 111 BPF_PROG_TYPE_SOCKET_FILTER,
2541517c 112 BPF_PROG_TYPE_KPROBE,
96be4325 113 BPF_PROG_TYPE_SCHED_CLS,
94caee8c 114 BPF_PROG_TYPE_SCHED_ACT,
98b5c2c6 115 BPF_PROG_TYPE_TRACEPOINT,
6a773a15 116 BPF_PROG_TYPE_XDP,
0515e599 117 BPF_PROG_TYPE_PERF_EVENT,
0e33661d 118 BPF_PROG_TYPE_CGROUP_SKB,
61023658 119 BPF_PROG_TYPE_CGROUP_SOCK,
3a0af8fd
TG
120 BPF_PROG_TYPE_LWT_IN,
121 BPF_PROG_TYPE_LWT_OUT,
122 BPF_PROG_TYPE_LWT_XMIT,
40304b2a 123 BPF_PROG_TYPE_SOCK_OPS,
09756af4
AS
124};
125
0e33661d
DM
126enum bpf_attach_type {
127 BPF_CGROUP_INET_INGRESS,
128 BPF_CGROUP_INET_EGRESS,
61023658 129 BPF_CGROUP_INET_SOCK_CREATE,
40304b2a 130 BPF_CGROUP_SOCK_OPS,
0e33661d
DM
131 __MAX_BPF_ATTACH_TYPE
132};
133
134#define MAX_BPF_ATTACH_TYPE __MAX_BPF_ATTACH_TYPE
135
7f677633
AS
136/* If BPF_F_ALLOW_OVERRIDE flag is used in BPF_PROG_ATTACH command
137 * to the given target_fd cgroup the descendent cgroup will be able to
138 * override effective bpf program that was inherited from this cgroup
139 */
140#define BPF_F_ALLOW_OVERRIDE (1U << 0)
141
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DM
142/* If BPF_F_STRICT_ALIGNMENT is used in BPF_PROG_LOAD command, the
143 * verifier will perform strict alignment checking as if the kernel
144 * has been built with CONFIG_EFFICIENT_UNALIGNED_ACCESS not set,
145 * and NET_IP_ALIGN defined to 2.
146 */
147#define BPF_F_STRICT_ALIGNMENT (1U << 0)
148
f1a66f85
DB
149#define BPF_PSEUDO_MAP_FD 1
150
3274f520
AS
151/* flags for BPF_MAP_UPDATE_ELEM command */
152#define BPF_ANY 0 /* create new element or update existing */
153#define BPF_NOEXIST 1 /* create new element if it didn't exist */
154#define BPF_EXIST 2 /* update existing element */
155
6c905981 156#define BPF_F_NO_PREALLOC (1U << 0)
29ba732a 157/* Instead of having one common LRU list in the
8f844938 158 * BPF_MAP_TYPE_LRU_[PERCPU_]HASH map, use a percpu LRU list
29ba732a
MKL
159 * which can scale and perform better.
160 * Note, the LRU nodes (including free nodes) cannot be moved
161 * across different LRU lists.
162 */
163#define BPF_F_NO_COMMON_LRU (1U << 1)
6c905981 164
99c55f7d
AS
165union bpf_attr {
166 struct { /* anonymous struct used by BPF_MAP_CREATE command */
167 __u32 map_type; /* one of enum bpf_map_type */
168 __u32 key_size; /* size of key in bytes */
169 __u32 value_size; /* size of value in bytes */
170 __u32 max_entries; /* max number of entries in a map */
6c905981 171 __u32 map_flags; /* prealloc or not */
56f668df 172 __u32 inner_map_fd; /* fd pointing to the inner map */
99c55f7d 173 };
db20fd2b
AS
174
175 struct { /* anonymous struct used by BPF_MAP_*_ELEM commands */
176 __u32 map_fd;
177 __aligned_u64 key;
178 union {
179 __aligned_u64 value;
180 __aligned_u64 next_key;
181 };
3274f520 182 __u64 flags;
db20fd2b 183 };
09756af4
AS
184
185 struct { /* anonymous struct used by BPF_PROG_LOAD command */
186 __u32 prog_type; /* one of enum bpf_prog_type */
187 __u32 insn_cnt;
188 __aligned_u64 insns;
189 __aligned_u64 license;
cbd35700
AS
190 __u32 log_level; /* verbosity level of verifier */
191 __u32 log_size; /* size of user buffer */
192 __aligned_u64 log_buf; /* user supplied buffer */
2541517c 193 __u32 kern_version; /* checked when prog_type=kprobe */
e07b98d9 194 __u32 prog_flags;
09756af4 195 };
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DB
196
197 struct { /* anonymous struct used by BPF_OBJ_* commands */
198 __aligned_u64 pathname;
199 __u32 bpf_fd;
200 };
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DM
201
202 struct { /* anonymous struct used by BPF_PROG_ATTACH/DETACH commands */
203 __u32 target_fd; /* container object to attach to */
204 __u32 attach_bpf_fd; /* eBPF program to attach */
205 __u32 attach_type;
7f677633 206 __u32 attach_flags;
f4324551 207 };
1cf1cae9
AS
208
209 struct { /* anonymous struct used by BPF_PROG_TEST_RUN command */
210 __u32 prog_fd;
211 __u32 retval;
212 __u32 data_size_in;
213 __u32 data_size_out;
214 __aligned_u64 data_in;
215 __aligned_u64 data_out;
216 __u32 repeat;
217 __u32 duration;
218 } test;
34ad5580 219
b16d9aa4
MKL
220 struct { /* anonymous struct used by BPF_*_GET_*_ID */
221 union {
222 __u32 start_id;
223 __u32 prog_id;
bd5f5f4e 224 __u32 map_id;
b16d9aa4 225 };
34ad5580
MKL
226 __u32 next_id;
227 };
1e270976
MKL
228
229 struct { /* anonymous struct used by BPF_OBJ_GET_INFO_BY_FD */
230 __u32 bpf_fd;
231 __u32 info_len;
232 __aligned_u64 info;
233 } info;
99c55f7d
AS
234} __attribute__((aligned(8)));
235
ebb676da
TG
236/* BPF helper function descriptions:
237 *
238 * void *bpf_map_lookup_elem(&map, &key)
239 * Return: Map value or NULL
240 *
241 * int bpf_map_update_elem(&map, &key, &value, flags)
242 * Return: 0 on success or negative error
243 *
244 * int bpf_map_delete_elem(&map, &key)
245 * Return: 0 on success or negative error
246 *
247 * int bpf_probe_read(void *dst, int size, void *src)
248 * Return: 0 on success or negative error
249 *
250 * u64 bpf_ktime_get_ns(void)
251 * Return: current ktime
252 *
253 * int bpf_trace_printk(const char *fmt, int fmt_size, ...)
254 * Return: length of buffer written or negative error
255 *
256 * u32 bpf_prandom_u32(void)
257 * Return: random value
258 *
259 * u32 bpf_raw_smp_processor_id(void)
260 * Return: SMP processor ID
261 *
262 * int bpf_skb_store_bytes(skb, offset, from, len, flags)
263 * store bytes into packet
264 * @skb: pointer to skb
265 * @offset: offset within packet from skb->mac_header
266 * @from: pointer where to copy bytes from
267 * @len: number of bytes to store into packet
268 * @flags: bit 0 - if true, recompute skb->csum
269 * other bits - reserved
270 * Return: 0 on success or negative error
271 *
272 * int bpf_l3_csum_replace(skb, offset, from, to, flags)
273 * recompute IP checksum
274 * @skb: pointer to skb
275 * @offset: offset within packet where IP checksum is located
276 * @from: old value of header field
277 * @to: new value of header field
278 * @flags: bits 0-3 - size of header field
279 * other bits - reserved
280 * Return: 0 on success or negative error
281 *
282 * int bpf_l4_csum_replace(skb, offset, from, to, flags)
283 * recompute TCP/UDP checksum
284 * @skb: pointer to skb
285 * @offset: offset within packet where TCP/UDP checksum is located
286 * @from: old value of header field
287 * @to: new value of header field
288 * @flags: bits 0-3 - size of header field
289 * bit 4 - is pseudo header
290 * other bits - reserved
291 * Return: 0 on success or negative error
292 *
293 * int bpf_tail_call(ctx, prog_array_map, index)
294 * jump into another BPF program
295 * @ctx: context pointer passed to next program
296 * @prog_array_map: pointer to map which type is BPF_MAP_TYPE_PROG_ARRAY
297 * @index: index inside array that selects specific program to run
298 * Return: 0 on success or negative error
299 *
300 * int bpf_clone_redirect(skb, ifindex, flags)
301 * redirect to another netdev
302 * @skb: pointer to skb
303 * @ifindex: ifindex of the net device
304 * @flags: bit 0 - if set, redirect to ingress instead of egress
305 * other bits - reserved
306 * Return: 0 on success or negative error
307 *
308 * u64 bpf_get_current_pid_tgid(void)
309 * Return: current->tgid << 32 | current->pid
310 *
311 * u64 bpf_get_current_uid_gid(void)
312 * Return: current_gid << 32 | current_uid
313 *
314 * int bpf_get_current_comm(char *buf, int size_of_buf)
315 * stores current->comm into buf
316 * Return: 0 on success or negative error
317 *
318 * u32 bpf_get_cgroup_classid(skb)
319 * retrieve a proc's classid
320 * @skb: pointer to skb
321 * Return: classid if != 0
322 *
323 * int bpf_skb_vlan_push(skb, vlan_proto, vlan_tci)
324 * Return: 0 on success or negative error
325 *
326 * int bpf_skb_vlan_pop(skb)
327 * Return: 0 on success or negative error
328 *
329 * int bpf_skb_get_tunnel_key(skb, key, size, flags)
330 * int bpf_skb_set_tunnel_key(skb, key, size, flags)
331 * retrieve or populate tunnel metadata
332 * @skb: pointer to skb
333 * @key: pointer to 'struct bpf_tunnel_key'
334 * @size: size of 'struct bpf_tunnel_key'
335 * @flags: room for future extensions
336 * Return: 0 on success or negative error
337 *
b7d3ed5b
TQ
338 * u64 bpf_perf_event_read(map, flags)
339 * read perf event counter value
340 * @map: pointer to perf_event_array map
341 * @flags: index of event in the map or bitmask flags
342 * Return: value of perf event counter read or error code
ebb676da
TG
343 *
344 * int bpf_redirect(ifindex, flags)
345 * redirect to another netdev
346 * @ifindex: ifindex of the net device
347 * @flags: bit 0 - if set, redirect to ingress instead of egress
348 * other bits - reserved
349 * Return: TC_ACT_REDIRECT
350 *
351 * u32 bpf_get_route_realm(skb)
352 * retrieve a dst's tclassid
353 * @skb: pointer to skb
354 * Return: realm if != 0
355 *
b7d3ed5b 356 * int bpf_perf_event_output(ctx, map, flags, data, size)
ebb676da
TG
357 * output perf raw sample
358 * @ctx: struct pt_regs*
359 * @map: pointer to perf_event_array map
b7d3ed5b 360 * @flags: index of event in the map or bitmask flags
ebb676da
TG
361 * @data: data on stack to be output as raw data
362 * @size: size of data
363 * Return: 0 on success or negative error
364 *
365 * int bpf_get_stackid(ctx, map, flags)
366 * walk user or kernel stack and return id
367 * @ctx: struct pt_regs*
368 * @map: pointer to stack_trace map
369 * @flags: bits 0-7 - numer of stack frames to skip
370 * bit 8 - collect user stack instead of kernel
371 * bit 9 - compare stacks by hash only
372 * bit 10 - if two different stacks hash into the same stackid
373 * discard old
374 * other bits - reserved
375 * Return: >= 0 stackid on success or negative error
376 *
377 * s64 bpf_csum_diff(from, from_size, to, to_size, seed)
378 * calculate csum diff
379 * @from: raw from buffer
380 * @from_size: length of from buffer
381 * @to: raw to buffer
382 * @to_size: length of to buffer
383 * @seed: optional seed
384 * Return: csum result or negative error code
385 *
386 * int bpf_skb_get_tunnel_opt(skb, opt, size)
387 * retrieve tunnel options metadata
388 * @skb: pointer to skb
389 * @opt: pointer to raw tunnel option data
390 * @size: size of @opt
391 * Return: option size
392 *
393 * int bpf_skb_set_tunnel_opt(skb, opt, size)
394 * populate tunnel options metadata
395 * @skb: pointer to skb
396 * @opt: pointer to raw tunnel option data
397 * @size: size of @opt
398 * Return: 0 on success or negative error
399 *
400 * int bpf_skb_change_proto(skb, proto, flags)
401 * Change protocol of the skb. Currently supported is v4 -> v6,
402 * v6 -> v4 transitions. The helper will also resize the skb. eBPF
403 * program is expected to fill the new headers via skb_store_bytes
404 * and lX_csum_replace.
405 * @skb: pointer to skb
406 * @proto: new skb->protocol type
407 * @flags: reserved
408 * Return: 0 on success or negative error
409 *
410 * int bpf_skb_change_type(skb, type)
411 * Change packet type of skb.
412 * @skb: pointer to skb
413 * @type: new skb->pkt_type type
414 * Return: 0 on success or negative error
415 *
416 * int bpf_skb_under_cgroup(skb, map, index)
417 * Check cgroup2 membership of skb
418 * @skb: pointer to skb
419 * @map: pointer to bpf_map in BPF_MAP_TYPE_CGROUP_ARRAY type
420 * @index: index of the cgroup in the bpf_map
421 * Return:
422 * == 0 skb failed the cgroup2 descendant test
423 * == 1 skb succeeded the cgroup2 descendant test
424 * < 0 error
425 *
426 * u32 bpf_get_hash_recalc(skb)
427 * Retrieve and possibly recalculate skb->hash.
428 * @skb: pointer to skb
429 * Return: hash
430 *
431 * u64 bpf_get_current_task(void)
432 * Returns current task_struct
433 * Return: current
434 *
435 * int bpf_probe_write_user(void *dst, void *src, int len)
436 * safely attempt to write to a location
437 * @dst: destination address in userspace
438 * @src: source address on stack
439 * @len: number of bytes to copy
440 * Return: 0 on success or negative error
441 *
442 * int bpf_current_task_under_cgroup(map, index)
443 * Check cgroup2 membership of current task
444 * @map: pointer to bpf_map in BPF_MAP_TYPE_CGROUP_ARRAY type
445 * @index: index of the cgroup in the bpf_map
446 * Return:
447 * == 0 current failed the cgroup2 descendant test
448 * == 1 current succeeded the cgroup2 descendant test
449 * < 0 error
450 *
451 * int bpf_skb_change_tail(skb, len, flags)
452 * The helper will resize the skb to the given new size, to be used f.e.
453 * with control messages.
454 * @skb: pointer to skb
455 * @len: new skb length
456 * @flags: reserved
457 * Return: 0 on success or negative error
458 *
459 * int bpf_skb_pull_data(skb, len)
460 * The helper will pull in non-linear data in case the skb is non-linear
461 * and not all of len are part of the linear section. Only needed for
462 * read/write with direct packet access.
463 * @skb: pointer to skb
464 * @len: len to make read/writeable
465 * Return: 0 on success or negative error
466 *
467 * s64 bpf_csum_update(skb, csum)
468 * Adds csum into skb->csum in case of CHECKSUM_COMPLETE.
469 * @skb: pointer to skb
470 * @csum: csum to add
471 * Return: csum on success or negative error
472 *
473 * void bpf_set_hash_invalid(skb)
474 * Invalidate current skb->hash.
475 * @skb: pointer to skb
476 *
477 * int bpf_get_numa_node_id()
478 * Return: Id of current NUMA node.
3a0af8fd
TG
479 *
480 * int bpf_skb_change_head()
481 * Grows headroom of skb and adjusts MAC header offset accordingly.
482 * Will extends/reallocae as required automatically.
483 * May change skb data pointer and will thus invalidate any check
484 * performed for direct packet access.
485 * @skb: pointer to skb
486 * @len: length of header to be pushed in front
487 * @flags: Flags (unused for now)
488 * Return: 0 on success or negative error
17bedab2
MKL
489 *
490 * int bpf_xdp_adjust_head(xdp_md, delta)
491 * Adjust the xdp_md.data by delta
492 * @xdp_md: pointer to xdp_md
493 * @delta: An positive/negative integer to be added to xdp_md.data
494 * Return: 0 on success or negative on error
a5e8c070
GB
495 *
496 * int bpf_probe_read_str(void *dst, int size, const void *unsafe_ptr)
497 * Copy a NUL terminated string from unsafe address. In case the string
498 * length is smaller than size, the target is not padded with further NUL
499 * bytes. In case the string length is larger than size, just count-1
500 * bytes are copied and the last byte is set to NUL.
501 * @dst: destination address
502 * @size: maximum number of bytes to copy, including the trailing NUL
503 * @unsafe_ptr: unsafe address
504 * Return:
505 * > 0 length of the string including the trailing NUL on success
506 * < 0 error
91b8270f 507 *
3c60a531 508 * u64 bpf_get_socket_cookie(skb)
91b8270f
CF
509 * Get the cookie for the socket stored inside sk_buff.
510 * @skb: pointer to skb
511 * Return: 8 Bytes non-decreasing number on success or 0 if the socket
512 * field is missing inside sk_buff
6acc5c29
CF
513 *
514 * u32 bpf_get_socket_uid(skb)
515 * Get the owner uid of the socket stored inside sk_buff.
516 * @skb: pointer to skb
5d4e3443 517 * Return: uid of the socket owner on success or overflowuid if failed.
ded092cd
DB
518 *
519 * u32 bpf_set_hash(skb, hash)
520 * Set full skb->hash.
521 * @skb: pointer to skb
522 * @hash: hash to set
8c4b4c7e
LB
523 *
524 * int bpf_setsockopt(bpf_socket, level, optname, optval, optlen)
525 * Calls setsockopt. Not all opts are available, only those with
526 * integer optvals plus TCP_CONGESTION.
527 * Supported levels: SOL_SOCKET and IPROTO_TCP
528 * @bpf_socket: pointer to bpf_socket
529 * @level: SOL_SOCKET or IPROTO_TCP
530 * @optname: option name
531 * @optval: pointer to option value
532 * @optlen: length of optval in byes
533 * Return: 0 or negative error
ebb676da
TG
534 */
535#define __BPF_FUNC_MAPPER(FN) \
536 FN(unspec), \
537 FN(map_lookup_elem), \
538 FN(map_update_elem), \
539 FN(map_delete_elem), \
540 FN(probe_read), \
541 FN(ktime_get_ns), \
542 FN(trace_printk), \
543 FN(get_prandom_u32), \
544 FN(get_smp_processor_id), \
545 FN(skb_store_bytes), \
546 FN(l3_csum_replace), \
547 FN(l4_csum_replace), \
548 FN(tail_call), \
549 FN(clone_redirect), \
550 FN(get_current_pid_tgid), \
551 FN(get_current_uid_gid), \
552 FN(get_current_comm), \
553 FN(get_cgroup_classid), \
554 FN(skb_vlan_push), \
555 FN(skb_vlan_pop), \
556 FN(skb_get_tunnel_key), \
557 FN(skb_set_tunnel_key), \
558 FN(perf_event_read), \
559 FN(redirect), \
560 FN(get_route_realm), \
561 FN(perf_event_output), \
562 FN(skb_load_bytes), \
563 FN(get_stackid), \
564 FN(csum_diff), \
565 FN(skb_get_tunnel_opt), \
566 FN(skb_set_tunnel_opt), \
567 FN(skb_change_proto), \
568 FN(skb_change_type), \
569 FN(skb_under_cgroup), \
570 FN(get_hash_recalc), \
571 FN(get_current_task), \
572 FN(probe_write_user), \
573 FN(current_task_under_cgroup), \
574 FN(skb_change_tail), \
575 FN(skb_pull_data), \
576 FN(csum_update), \
577 FN(set_hash_invalid), \
3a0af8fd 578 FN(get_numa_node_id), \
17bedab2 579 FN(skb_change_head), \
a5e8c070 580 FN(xdp_adjust_head), \
91b8270f 581 FN(probe_read_str), \
6acc5c29 582 FN(get_socket_cookie), \
ded092cd 583 FN(get_socket_uid), \
8c4b4c7e
LB
584 FN(set_hash), \
585 FN(setsockopt),
ebb676da 586
09756af4
AS
587/* integer value in 'imm' field of BPF_CALL instruction selects which helper
588 * function eBPF program intends to call
589 */
ebb676da 590#define __BPF_ENUM_FN(x) BPF_FUNC_ ## x
09756af4 591enum bpf_func_id {
ebb676da 592 __BPF_FUNC_MAPPER(__BPF_ENUM_FN)
09756af4
AS
593 __BPF_FUNC_MAX_ID,
594};
ebb676da 595#undef __BPF_ENUM_FN
09756af4 596
781c53bc
DB
597/* All flags used by eBPF helper functions, placed here. */
598
599/* BPF_FUNC_skb_store_bytes flags. */
600#define BPF_F_RECOMPUTE_CSUM (1ULL << 0)
8afd54c8 601#define BPF_F_INVALIDATE_HASH (1ULL << 1)
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DB
602
603/* BPF_FUNC_l3_csum_replace and BPF_FUNC_l4_csum_replace flags.
604 * First 4 bits are for passing the header field size.
605 */
606#define BPF_F_HDR_FIELD_MASK 0xfULL
607
608/* BPF_FUNC_l4_csum_replace flags. */
609#define BPF_F_PSEUDO_HDR (1ULL << 4)
2f72959a 610#define BPF_F_MARK_MANGLED_0 (1ULL << 5)
d1b662ad 611#define BPF_F_MARK_ENFORCE (1ULL << 6)
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DB
612
613/* BPF_FUNC_clone_redirect and BPF_FUNC_redirect flags. */
614#define BPF_F_INGRESS (1ULL << 0)
615
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DB
616/* BPF_FUNC_skb_set_tunnel_key and BPF_FUNC_skb_get_tunnel_key flags. */
617#define BPF_F_TUNINFO_IPV6 (1ULL << 0)
618
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AS
619/* BPF_FUNC_get_stackid flags. */
620#define BPF_F_SKIP_FIELD_MASK 0xffULL
621#define BPF_F_USER_STACK (1ULL << 8)
622#define BPF_F_FAST_STACK_CMP (1ULL << 9)
623#define BPF_F_REUSE_STACKID (1ULL << 10)
624
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DB
625/* BPF_FUNC_skb_set_tunnel_key flags. */
626#define BPF_F_ZERO_CSUM_TX (1ULL << 1)
22080870 627#define BPF_F_DONT_FRAGMENT (1ULL << 2)
2da897e5 628
6816a7ff 629/* BPF_FUNC_perf_event_output and BPF_FUNC_perf_event_read flags. */
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DB
630#define BPF_F_INDEX_MASK 0xffffffffULL
631#define BPF_F_CURRENT_CPU BPF_F_INDEX_MASK
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DB
632/* BPF_FUNC_perf_event_output for sk_buff input context. */
633#define BPF_F_CTXLEN_MASK (0xfffffULL << 32)
1e33759c 634
9bac3d6d
AS
635/* user accessible mirror of in-kernel sk_buff.
636 * new fields can only be added to the end of this structure
637 */
638struct __sk_buff {
639 __u32 len;
640 __u32 pkt_type;
641 __u32 mark;
642 __u32 queue_mapping;
c2497395
AS
643 __u32 protocol;
644 __u32 vlan_present;
645 __u32 vlan_tci;
27cd5452 646 __u32 vlan_proto;
bcad5718 647 __u32 priority;
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AS
648 __u32 ingress_ifindex;
649 __u32 ifindex;
d691f9e8
AS
650 __u32 tc_index;
651 __u32 cb[5];
ba7591d8 652 __u32 hash;
045efa82 653 __u32 tc_classid;
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AS
654 __u32 data;
655 __u32 data_end;
b1d9fc41 656 __u32 napi_id;
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AS
657};
658
d3aa45ce
AS
659struct bpf_tunnel_key {
660 __u32 tunnel_id;
c6c33454
DB
661 union {
662 __u32 remote_ipv4;
663 __u32 remote_ipv6[4];
664 };
665 __u8 tunnel_tos;
666 __u8 tunnel_ttl;
c0e760c9 667 __u16 tunnel_ext;
4018ab18 668 __u32 tunnel_label;
d3aa45ce
AS
669};
670
3a0af8fd
TG
671/* Generic BPF return codes which all BPF program types may support.
672 * The values are binary compatible with their TC_ACT_* counter-part to
673 * provide backwards compatibility with existing SCHED_CLS and SCHED_ACT
674 * programs.
675 *
676 * XDP is handled seprately, see XDP_*.
677 */
678enum bpf_ret_code {
679 BPF_OK = 0,
680 /* 1 reserved */
681 BPF_DROP = 2,
682 /* 3-6 reserved */
683 BPF_REDIRECT = 7,
684 /* >127 are reserved for prog type specific return codes */
685};
686
61023658
DA
687struct bpf_sock {
688 __u32 bound_dev_if;
aa4c1037
DA
689 __u32 family;
690 __u32 type;
691 __u32 protocol;
61023658
DA
692};
693
17bedab2
MKL
694#define XDP_PACKET_HEADROOM 256
695
6a773a15
BB
696/* User return codes for XDP prog type.
697 * A valid XDP program must return one of these defined values. All other
698 * return codes are reserved for future use. Unknown return codes will result
699 * in packet drop.
700 */
701enum xdp_action {
702 XDP_ABORTED = 0,
703 XDP_DROP,
704 XDP_PASS,
6ce96ca3 705 XDP_TX,
6a773a15
BB
706};
707
708/* user accessible metadata for XDP packet hook
709 * new fields must be added to the end of this structure
710 */
711struct xdp_md {
712 __u32 data;
713 __u32 data_end;
714};
715
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MKL
716#define BPF_TAG_SIZE 8
717
718struct bpf_prog_info {
719 __u32 type;
720 __u32 id;
721 __u8 tag[BPF_TAG_SIZE];
722 __u32 jited_prog_len;
723 __u32 xlated_prog_len;
724 __aligned_u64 jited_prog_insns;
725 __aligned_u64 xlated_prog_insns;
726} __attribute__((aligned(8)));
727
728struct bpf_map_info {
729 __u32 type;
730 __u32 id;
731 __u32 key_size;
732 __u32 value_size;
733 __u32 max_entries;
734 __u32 map_flags;
735} __attribute__((aligned(8)));
736
40304b2a
LB
737/* User bpf_sock_ops struct to access socket values and specify request ops
738 * and their replies.
739 * Some of this fields are in network (bigendian) byte order and may need
740 * to be converted before use (bpf_ntohl() defined in samples/bpf/bpf_endian.h).
741 * New fields can only be added at the end of this structure
742 */
743struct bpf_sock_ops {
744 __u32 op;
745 union {
746 __u32 reply;
747 __u32 replylong[4];
748 };
749 __u32 family;
750 __u32 remote_ip4; /* Stored in network byte order */
751 __u32 local_ip4; /* Stored in network byte order */
752 __u32 remote_ip6[4]; /* Stored in network byte order */
753 __u32 local_ip6[4]; /* Stored in network byte order */
754 __u32 remote_port; /* Stored in network byte order */
755 __u32 local_port; /* stored in host byte order */
756};
757
758/* List of known BPF sock_ops operators.
759 * New entries can only be added at the end
760 */
761enum {
762 BPF_SOCK_OPS_VOID,
8550f328
LB
763 BPF_SOCK_OPS_TIMEOUT_INIT, /* Should return SYN-RTO value to use or
764 * -1 if default value should be used
765 */
13d3b1eb
LB
766 BPF_SOCK_OPS_RWND_INIT, /* Should return initial advertized
767 * window (in packets) or -1 if default
768 * value should be used
769 */
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LB
770 BPF_SOCK_OPS_TCP_CONNECT_CB, /* Calls BPF program right before an
771 * active connection is initialized
772 */
773 BPF_SOCK_OPS_ACTIVE_ESTABLISHED_CB, /* Calls BPF program when an
774 * active connection is
775 * established
776 */
777 BPF_SOCK_OPS_PASSIVE_ESTABLISHED_CB, /* Calls BPF program when a
778 * passive connection is
779 * established
780 */
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LB
781 BPF_SOCK_OPS_NEEDS_ECN, /* If connection's congestion control
782 * needs ECN
783 */
40304b2a
LB
784};
785
daedfb22 786#endif /* _UAPI__LINUX_BPF_H__ */