xref: /linux/tools/lib/bpf/libbpf.h (revision 68f4e480b089abae26fbab0c38c3df3cbac3d79d)
1 /* SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause) */
2 
3 /*
4  * Common eBPF ELF object loading 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 #ifndef __LIBBPF_LIBBPF_H
11 #define __LIBBPF_LIBBPF_H
12 
13 #include <stdarg.h>
14 #include <stdio.h>
15 #include <stdint.h>
16 #include <stdbool.h>
17 #include <sys/types.h>  // for size_t
18 #include <linux/bpf.h>
19 
20 #include "libbpf_common.h"
21 #include "libbpf_legacy.h"
22 
23 #ifdef __cplusplus
24 extern "C" {
25 #endif
26 
27 /**
28  * @brief **libbpf_major_version()** provides the major version of libbpf.
29  * @return An integer, the major version number
30  */
31 LIBBPF_API __u32 libbpf_major_version(void);
32 
33 /**
34  * @brief **libbpf_minor_version()** provides the minor version of libbpf.
35  * @return An integer, the minor version number
36  */
37 LIBBPF_API __u32 libbpf_minor_version(void);
38 
39 /**
40  * @brief **libbpf_version_string()** provides the version of libbpf in a
41  * human-readable form, e.g., "v1.7".
42  * @return Pointer to a static string containing the version
43  *
44  * The format is *not* a part of a stable API and may change in the future.
45  */
46 LIBBPF_API const char *libbpf_version_string(void);
47 
48 enum libbpf_errno {
49 	__LIBBPF_ERRNO__START = 4000,
50 
51 	/* Something wrong in libelf */
52 	LIBBPF_ERRNO__LIBELF = __LIBBPF_ERRNO__START,
53 	LIBBPF_ERRNO__FORMAT,	/* BPF object format invalid */
54 	LIBBPF_ERRNO__KVERSION,	/* Incorrect or no 'version' section */
55 	LIBBPF_ERRNO__ENDIAN,	/* Endian mismatch */
56 	LIBBPF_ERRNO__INTERNAL,	/* Internal error in libbpf */
57 	LIBBPF_ERRNO__RELOC,	/* Relocation failed */
58 	LIBBPF_ERRNO__LOAD,	/* Load program failure for unknown reason */
59 	LIBBPF_ERRNO__VERIFY,	/* Kernel verifier blocks program loading */
60 	LIBBPF_ERRNO__PROG2BIG,	/* Program too big */
61 	LIBBPF_ERRNO__KVER,	/* Incorrect kernel version */
62 	LIBBPF_ERRNO__PROGTYPE,	/* Kernel doesn't support this program type */
63 	LIBBPF_ERRNO__WRNGPID,	/* Wrong pid in netlink message */
64 	LIBBPF_ERRNO__INVSEQ,	/* Invalid netlink sequence */
65 	LIBBPF_ERRNO__NLPARSE,	/* netlink parsing error */
66 	__LIBBPF_ERRNO__END,
67 };
68 
69 /**
70  * @brief **libbpf_strerror()** converts the provided error code into a
71  * human-readable string.
72  * @param err The error code to convert
73  * @param buf Pointer to a buffer where the error message will be stored
74  * @param size The number of bytes in the buffer
75  * @return 0, on success; negative error code, otherwise
76  */
77 LIBBPF_API int libbpf_strerror(int err, char *buf, size_t size);
78 
79 /**
80  * @brief **libbpf_bpf_attach_type_str()** converts the provided attach type
81  * value into a textual representation.
82  * @param t The attach type.
83  * @return Pointer to a static string identifying the attach type. NULL is
84  * returned for unknown **bpf_attach_type** values.
85  */
86 LIBBPF_API const char *libbpf_bpf_attach_type_str(enum bpf_attach_type t);
87 
88 /**
89  * @brief **libbpf_bpf_link_type_str()** converts the provided link type value
90  * into a textual representation.
91  * @param t The link type.
92  * @return Pointer to a static string identifying the link type. NULL is
93  * returned for unknown **bpf_link_type** values.
94  */
95 LIBBPF_API const char *libbpf_bpf_link_type_str(enum bpf_link_type t);
96 
97 /**
98  * @brief **libbpf_bpf_map_type_str()** converts the provided map type value
99  * into a textual representation.
100  * @param t The map type.
101  * @return Pointer to a static string identifying the map type. NULL is
102  * returned for unknown **bpf_map_type** values.
103  */
104 LIBBPF_API const char *libbpf_bpf_map_type_str(enum bpf_map_type t);
105 
106 /**
107  * @brief **libbpf_bpf_prog_type_str()** converts the provided program type
108  * value into a textual representation.
109  * @param t The program type.
110  * @return Pointer to a static string identifying the program type. NULL is
111  * returned for unknown **bpf_prog_type** values.
112  */
113 LIBBPF_API const char *libbpf_bpf_prog_type_str(enum bpf_prog_type t);
114 
115 enum libbpf_print_level {
116         LIBBPF_WARN,
117         LIBBPF_INFO,
118         LIBBPF_DEBUG,
119 };
120 
121 typedef int (*libbpf_print_fn_t)(enum libbpf_print_level level,
122 				 const char *, va_list ap);
123 
124 /**
125  * @brief **libbpf_set_print()** sets user-provided log callback function to
126  * be used for libbpf warnings and informational messages. If the user callback
127  * is not set, messages are logged to stderr by default. The verbosity of these
128  * messages can be controlled by setting the environment variable
129  * LIBBPF_LOG_LEVEL to either warn, info, or debug.
130  * @param fn The log print function. If NULL, libbpf won't print anything.
131  * @return Pointer to old print function.
132  *
133  * This function is thread-safe.
134  */
135 LIBBPF_API libbpf_print_fn_t libbpf_set_print(libbpf_print_fn_t fn);
136 
137 /* Hide internal to user */
138 struct bpf_object;
139 
140 struct bpf_object_open_opts {
141 	/* size of this struct, for forward/backward compatibility */
142 	size_t sz;
143 	/* object name override, if provided:
144 	 * - for object open from file, this will override setting object
145 	 *   name from file path's base name;
146 	 * - for object open from memory buffer, this will specify an object
147 	 *   name and will override default "<addr>-<buf-size>" name;
148 	 */
149 	const char *object_name;
150 	/* parse map definitions non-strictly, allowing extra attributes/data */
151 	bool relaxed_maps;
152 	/* maps that set the 'pinning' attribute in their definition will have
153 	 * their pin_path attribute set to a file in this directory, and be
154 	 * auto-pinned to that path on load; defaults to "/sys/fs/bpf".
155 	 */
156 	const char *pin_root_path;
157 
158 	__u32 :32; /* stub out now removed attach_prog_fd */
159 
160 	/* Additional kernel config content that augments and overrides
161 	 * system Kconfig for CONFIG_xxx externs.
162 	 */
163 	const char *kconfig;
164 	/* Path to the custom BTF to be used for BPF CO-RE relocations.
165 	 * This custom BTF completely replaces the use of vmlinux BTF
166 	 * for the purpose of CO-RE relocations.
167 	 * NOTE: any other BPF feature (e.g., fentry/fexit programs,
168 	 * struct_ops, etc) will need actual kernel BTF at /sys/kernel/btf/vmlinux.
169 	 */
170 	const char *btf_custom_path;
171 	/* Pointer to a buffer for storing kernel logs for applicable BPF
172 	 * commands. Valid kernel_log_size has to be specified as well and are
173 	 * passed-through to bpf() syscall. Keep in mind that kernel might
174 	 * fail operation with -ENOSPC error if provided buffer is too small
175 	 * to contain entire log output.
176 	 * See the comment below for kernel_log_level for interaction between
177 	 * log_buf and log_level settings.
178 	 *
179 	 * If specified, this log buffer will be passed for:
180 	 *   - each BPF progral load (BPF_PROG_LOAD) attempt, unless overridden
181 	 *     with bpf_program__set_log() on per-program level, to get
182 	 *     BPF verifier log output.
183 	 *   - during BPF object's BTF load into kernel (BPF_BTF_LOAD) to get
184 	 *     BTF sanity checking log.
185 	 *
186 	 * Each BPF command (BPF_BTF_LOAD or BPF_PROG_LOAD) will overwrite
187 	 * previous contents, so if you need more fine-grained control, set
188 	 * per-program buffer with bpf_program__set_log_buf() to preserve each
189 	 * individual program's verification log. Keep using kernel_log_buf
190 	 * for BTF verification log, if necessary.
191 	 */
192 	char *kernel_log_buf;
193 	size_t kernel_log_size;
194 	/*
195 	 * Log level can be set independently from log buffer. Log_level=0
196 	 * means that libbpf will attempt loading BTF or program without any
197 	 * logging requested, but will retry with either its own or custom log
198 	 * buffer, if provided, and log_level=1 on any error.
199 	 * And vice versa, setting log_level>0 will request BTF or prog
200 	 * loading with verbose log from the first attempt (and as such also
201 	 * for successfully loaded BTF or program), and the actual log buffer
202 	 * could be either libbpf's own auto-allocated log buffer, if
203 	 * kernel_log_buffer is NULL, or user-provided custom kernel_log_buf.
204 	 * If user didn't provide custom log buffer, libbpf will emit captured
205 	 * logs through its print callback.
206 	 */
207 	__u32 kernel_log_level;
208 	/* Path to BPF FS mount point to derive BPF token from.
209 	 *
210 	 * Created BPF token will be used for all bpf() syscall operations
211 	 * that accept BPF token (e.g., map creation, BTF and program loads,
212 	 * etc) automatically within instantiated BPF object.
213 	 *
214 	 * If bpf_token_path is not specified, libbpf will consult
215 	 * LIBBPF_BPF_TOKEN_PATH environment variable. If set, it will be
216 	 * taken as a value of bpf_token_path option and will force libbpf to
217 	 * either create BPF token from provided custom BPF FS path, or will
218 	 * disable implicit BPF token creation, if envvar value is an empty
219 	 * string. bpf_token_path overrides LIBBPF_BPF_TOKEN_PATH, if both are
220 	 * set at the same time.
221 	 *
222 	 * Setting bpf_token_path option to empty string disables libbpf's
223 	 * automatic attempt to create BPF token from default BPF FS mount
224 	 * point (/sys/fs/bpf), in case this default behavior is undesirable.
225 	 */
226 	const char *bpf_token_path;
227 
228 	size_t :0;
229 };
230 #define bpf_object_open_opts__last_field bpf_token_path
231 
232 /**
233  * @brief **bpf_object__open()** creates a bpf_object by opening
234  * the BPF ELF object file pointed to by the passed path and loading it
235  * into memory.
236  * @param path BPF object file path.
237  * @return pointer to the new bpf_object; or NULL is returned on error,
238  * error code is stored in errno
239  */
240 LIBBPF_API struct bpf_object *bpf_object__open(const char *path);
241 
242 /**
243  * @brief **bpf_object__open_file()** creates a bpf_object by opening
244  * the BPF ELF object file pointed to by the passed path and loading it
245  * into memory.
246  * @param path BPF object file path
247  * @param opts options for how to load the bpf object, this parameter is
248  * optional and can be set to NULL
249  * @return pointer to the new bpf_object; or NULL is returned on error,
250  * error code is stored in errno
251  */
252 LIBBPF_API struct bpf_object *
253 bpf_object__open_file(const char *path, const struct bpf_object_open_opts *opts);
254 
255 /**
256  * @brief **bpf_object__open_mem()** creates a bpf_object by reading
257  * the BPF objects raw bytes from a memory buffer containing a valid
258  * BPF ELF object file.
259  * @param obj_buf pointer to the buffer containing ELF file bytes
260  * @param obj_buf_sz number of bytes in the buffer
261  * @param opts options for how to load the bpf object
262  * @return pointer to the new bpf_object; or NULL is returned on error,
263  * error code is stored in errno
264  */
265 LIBBPF_API struct bpf_object *
266 bpf_object__open_mem(const void *obj_buf, size_t obj_buf_sz,
267 		     const struct bpf_object_open_opts *opts);
268 
269 /**
270  * @brief **bpf_object__prepare()** prepares BPF object for loading:
271  * performs ELF processing, relocations, prepares final state of BPF program
272  * instructions (accessible with bpf_program__insns()), creates and
273  * (potentially) pins maps. Leaves BPF object in the state ready for program
274  * loading.
275  * @param obj Pointer to a valid BPF object instance returned by
276  * **bpf_object__open*()** API
277  * @return 0, on success; negative error code, otherwise, error code is
278  * stored in errno
279  */
280 LIBBPF_API int bpf_object__prepare(struct bpf_object *obj);
281 
282 /**
283  * @brief **bpf_object__load()** loads BPF object into kernel.
284  * @param obj Pointer to a valid BPF object instance returned by
285  * **bpf_object__open*()** APIs
286  * @return 0, on success; negative error code, otherwise, error code is
287  * stored in errno
288  */
289 LIBBPF_API int bpf_object__load(struct bpf_object *obj);
290 
291 /**
292  * @brief **bpf_object__close()** closes a BPF object and releases all
293  * resources.
294  * @param obj Pointer to a valid BPF object
295  */
296 LIBBPF_API void bpf_object__close(struct bpf_object *obj);
297 
298 /**
299  * @brief **bpf_object__pin_maps()** pins each map contained within
300  * the BPF object at the passed directory.
301  * @param obj Pointer to a valid BPF object
302  * @param path A directory where maps should be pinned.
303  * @return 0, on success; negative error code, otherwise
304  *
305  * If `path` is NULL `bpf_map__pin` (which is being used on each map)
306  * will use the pin_path attribute of each map. In this case, maps that
307  * don't have a pin_path set will be ignored.
308  */
309 LIBBPF_API int bpf_object__pin_maps(struct bpf_object *obj, const char *path);
310 
311 /**
312  * @brief **bpf_object__unpin_maps()** unpins each map contained within
313  * the BPF object found in the passed directory.
314  * @param obj Pointer to a valid BPF object
315  * @param path A directory where pinned maps should be searched for.
316  * @return 0, on success; negative error code, otherwise
317  *
318  * If `path` is NULL `bpf_map__unpin` (which is being used on each map)
319  * will use the pin_path attribute of each map. In this case, maps that
320  * don't have a pin_path set will be ignored.
321  */
322 LIBBPF_API int bpf_object__unpin_maps(struct bpf_object *obj,
323 				      const char *path);
324 LIBBPF_API int bpf_object__pin_programs(struct bpf_object *obj,
325 					const char *path);
326 LIBBPF_API int bpf_object__unpin_programs(struct bpf_object *obj,
327 					  const char *path);
328 LIBBPF_API int bpf_object__pin(struct bpf_object *object, const char *path);
329 LIBBPF_API int bpf_object__unpin(struct bpf_object *object, const char *path);
330 
331 LIBBPF_API const char *bpf_object__name(const struct bpf_object *obj);
332 LIBBPF_API unsigned int bpf_object__kversion(const struct bpf_object *obj);
333 LIBBPF_API int bpf_object__set_kversion(struct bpf_object *obj, __u32 kern_version);
334 
335 /**
336  * @brief **bpf_object__token_fd** is an accessor for BPF token FD associated
337  * with BPF object.
338  * @param obj Pointer to a valid BPF object
339  * @return BPF token FD or -1, if it wasn't set
340  */
341 LIBBPF_API int bpf_object__token_fd(const struct bpf_object *obj);
342 
343 struct btf;
344 LIBBPF_API struct btf *bpf_object__btf(const struct bpf_object *obj);
345 LIBBPF_API int bpf_object__btf_fd(const struct bpf_object *obj);
346 
347 LIBBPF_API struct bpf_program *
348 bpf_object__find_program_by_name(const struct bpf_object *obj,
349 				 const char *name);
350 
351 LIBBPF_API int
352 libbpf_prog_type_by_name(const char *name, enum bpf_prog_type *prog_type,
353 			 enum bpf_attach_type *expected_attach_type);
354 LIBBPF_API int libbpf_attach_type_by_name(const char *name,
355 					  enum bpf_attach_type *attach_type);
356 LIBBPF_API int libbpf_find_vmlinux_btf_id(const char *name,
357 					  enum bpf_attach_type attach_type);
358 
359 /* Accessors of bpf_program */
360 struct bpf_program;
361 
362 LIBBPF_API struct bpf_program *
363 bpf_object__next_program(const struct bpf_object *obj, struct bpf_program *prog);
364 
365 #define bpf_object__for_each_program(pos, obj)			\
366 	for ((pos) = bpf_object__next_program((obj), NULL);	\
367 	     (pos) != NULL;					\
368 	     (pos) = bpf_object__next_program((obj), (pos)))
369 
370 LIBBPF_API struct bpf_program *
371 bpf_object__prev_program(const struct bpf_object *obj, struct bpf_program *prog);
372 
373 LIBBPF_API void bpf_program__set_ifindex(struct bpf_program *prog,
374 					 __u32 ifindex);
375 
376 LIBBPF_API const char *bpf_program__name(const struct bpf_program *prog);
377 LIBBPF_API const char *bpf_program__section_name(const struct bpf_program *prog);
378 LIBBPF_API bool bpf_program__autoload(const struct bpf_program *prog);
379 LIBBPF_API int bpf_program__set_autoload(struct bpf_program *prog, bool autoload);
380 LIBBPF_API bool bpf_program__autoattach(const struct bpf_program *prog);
381 LIBBPF_API void bpf_program__set_autoattach(struct bpf_program *prog, bool autoattach);
382 
383 struct bpf_insn;
384 
385 /**
386  * @brief **bpf_program__insns()** gives read-only access to BPF program's
387  * underlying BPF instructions.
388  * @param prog BPF program for which to return instructions
389  * @return a pointer to an array of BPF instructions that belong to the
390  * specified BPF program
391  *
392  * Returned pointer is always valid and not NULL. Number of `struct bpf_insn`
393  * pointed to can be fetched using **bpf_program__insn_cnt()** API.
394  *
395  * Keep in mind, libbpf can modify and append/delete BPF program's
396  * instructions as it processes BPF object file and prepares everything for
397  * uploading into the kernel. So depending on the point in BPF object
398  * lifetime, **bpf_program__insns()** can return different sets of
399  * instructions. As an example, during BPF object load phase BPF program
400  * instructions will be CO-RE-relocated, BPF subprograms instructions will be
401  * appended, ldimm64 instructions will have FDs embedded, etc. So instructions
402  * returned before **bpf_object__load()** and after it might be quite
403  * different.
404  */
405 LIBBPF_API const struct bpf_insn *bpf_program__insns(const struct bpf_program *prog);
406 
407 /**
408  * @brief **bpf_program__set_insns()** can set BPF program's underlying
409  * BPF instructions.
410  *
411  * WARNING: This is a very advanced libbpf API and users need to know
412  * what they are doing. This should be used from prog_prepare_load_fn
413  * callback only.
414  *
415  * @param prog BPF program for which to return instructions
416  * @param new_insns a pointer to an array of BPF instructions
417  * @param new_insn_cnt number of `struct bpf_insn`'s that form
418  * specified BPF program
419  * @return 0, on success; negative error code, otherwise
420  */
421 LIBBPF_API int bpf_program__set_insns(struct bpf_program *prog,
422 				      struct bpf_insn *new_insns, size_t new_insn_cnt);
423 
424 /**
425  * @brief **bpf_program__insn_cnt()** returns number of `struct bpf_insn`'s
426  * that form specified BPF program.
427  * @param prog BPF program for which to return number of BPF instructions
428  *
429  * See **bpf_program__insns()** documentation for notes on how libbpf can
430  * change instructions and their count during different phases of
431  * **bpf_object** lifetime.
432  */
433 LIBBPF_API size_t bpf_program__insn_cnt(const struct bpf_program *prog);
434 
435 LIBBPF_API int bpf_program__fd(const struct bpf_program *prog);
436 
437 /**
438  * @brief **bpf_program__pin()** pins the BPF program to a file
439  * in the BPF FS specified by a path. This increments the programs
440  * reference count, allowing it to stay loaded after the process
441  * which loaded it has exited.
442  *
443  * @param prog BPF program to pin, must already be loaded
444  * @param path file path in a BPF file system
445  * @return 0, on success; negative error code, otherwise
446  */
447 LIBBPF_API int bpf_program__pin(struct bpf_program *prog, const char *path);
448 
449 /**
450  * @brief **bpf_program__unpin()** unpins the BPF program from a file
451  * in the BPFFS specified by a path. This decrements program's in-kernel
452  * reference count.
453  *
454  * The file pinning the BPF program can also be unlinked by a different
455  * process in which case this function will return an error.
456  *
457  * @param prog BPF program to unpin
458  * @param path file path to the pin in a BPF file system
459  * @return 0, on success; negative error code, otherwise
460  */
461 LIBBPF_API int bpf_program__unpin(struct bpf_program *prog, const char *path);
462 LIBBPF_API void bpf_program__unload(struct bpf_program *prog);
463 
464 struct bpf_link;
465 
466 LIBBPF_API struct bpf_link *bpf_link__open(const char *path);
467 LIBBPF_API int bpf_link__fd(const struct bpf_link *link);
468 LIBBPF_API const char *bpf_link__pin_path(const struct bpf_link *link);
469 /**
470  * @brief **bpf_link__pin()** pins the BPF link to a file
471  * in the BPF FS specified by a path. This increments the links
472  * reference count, allowing it to stay loaded after the process
473  * which loaded it has exited.
474  *
475  * @param link BPF link to pin, must already be loaded
476  * @param path file path in a BPF file system
477  * @return 0, on success; negative error code, otherwise
478  */
479 
480 LIBBPF_API int bpf_link__pin(struct bpf_link *link, const char *path);
481 
482 /**
483  * @brief **bpf_link__unpin()** unpins the BPF link from a file
484  * in the BPFFS. This decrements link's in-kernel reference count.
485  *
486  * The file pinning the BPF link can also be unlinked by a different
487  * process in which case this function will return an error.
488  *
489  * @param link BPF link to unpin
490  * @return 0, on success; negative error code, otherwise
491  */
492 LIBBPF_API int bpf_link__unpin(struct bpf_link *link);
493 LIBBPF_API int bpf_link__update_program(struct bpf_link *link,
494 					struct bpf_program *prog);
495 LIBBPF_API void bpf_link__disconnect(struct bpf_link *link);
496 LIBBPF_API int bpf_link__detach(struct bpf_link *link);
497 LIBBPF_API int bpf_link__destroy(struct bpf_link *link);
498 
499 /**
500  * @brief **bpf_program__attach()** is a generic function for attaching
501  * a BPF program based on auto-detection of program type, attach type,
502  * and extra parameters, where applicable.
503  *
504  * @param prog BPF program to attach
505  * @return Reference to the newly created BPF link; or NULL is returned on error,
506  * error code is stored in errno
507  *
508  * This is supported for:
509  *   - kprobe/kretprobe (depends on SEC() definition)
510  *   - uprobe/uretprobe (depends on SEC() definition)
511  *   - tracepoint
512  *   - raw tracepoint
513  *   - tracing programs (typed raw TP/fentry/fexit/fmod_ret)
514  */
515 LIBBPF_API struct bpf_link *
516 bpf_program__attach(const struct bpf_program *prog);
517 
518 struct bpf_perf_event_opts {
519 	/* size of this struct, for forward/backward compatibility */
520 	size_t sz;
521 	/* custom user-provided value fetchable through bpf_get_attach_cookie() */
522 	__u64 bpf_cookie;
523 	/* don't use BPF link when attach BPF program */
524 	bool force_ioctl_attach;
525 	/* don't automatically enable the event */
526 	bool dont_enable;
527 	size_t :0;
528 };
529 #define bpf_perf_event_opts__last_field dont_enable
530 
531 LIBBPF_API struct bpf_link *
532 bpf_program__attach_perf_event(const struct bpf_program *prog, int pfd);
533 
534 LIBBPF_API struct bpf_link *
535 bpf_program__attach_perf_event_opts(const struct bpf_program *prog, int pfd,
536 				    const struct bpf_perf_event_opts *opts);
537 
538 /**
539  * enum probe_attach_mode - the mode to attach kprobe/uprobe
540  *
541  * force libbpf to attach kprobe/uprobe in specific mode, -ENOTSUP will
542  * be returned if it is not supported by the kernel.
543  */
544 enum probe_attach_mode {
545 	/* attach probe in latest supported mode by kernel */
546 	PROBE_ATTACH_MODE_DEFAULT = 0,
547 	/* attach probe in legacy mode, using debugfs/tracefs */
548 	PROBE_ATTACH_MODE_LEGACY,
549 	/* create perf event with perf_event_open() syscall */
550 	PROBE_ATTACH_MODE_PERF,
551 	/* attach probe with BPF link */
552 	PROBE_ATTACH_MODE_LINK,
553 };
554 
555 struct bpf_kprobe_opts {
556 	/* size of this struct, for forward/backward compatibility */
557 	size_t sz;
558 	/* custom user-provided value fetchable through bpf_get_attach_cookie() */
559 	__u64 bpf_cookie;
560 	/* function offset, or raw address if func_name == NULL */
561 	size_t offset;
562 	/* kprobe is return probe */
563 	bool retprobe;
564 	/* kprobe attach mode */
565 	enum probe_attach_mode attach_mode;
566 	size_t :0;
567 };
568 
569 #define bpf_kprobe_opts__last_field attach_mode
570 
571 /**
572  * @brief **bpf_program__attach_kprobe()** attaches a BPF program to a
573  * kernel function entry or return.
574  *
575  * @param prog BPF program to attach
576  * @param retprobe Attach to function return
577  * @param func_name Name of the kernel function to attach to
578  * @return Reference to the newly created BPF link; or NULL is returned on
579  * error, error code is stored in errno
580  */
581 LIBBPF_API struct bpf_link *
582 bpf_program__attach_kprobe(const struct bpf_program *prog, bool retprobe,
583 			   const char *func_name);
584 
585 /**
586  * @brief **bpf_program__attach_kprobe_opts()** is just like
587  * bpf_program__attach_kprobe() except with an options struct
588  * for various configurations.
589  *
590  * @param prog BPF program to attach
591  * @param func_name Name of the kernel function to attach to. If NULL,
592  * opts->offset is treated as a raw kernel address. Raw-address attach
593  * is supported with PROBE_ATTACH_MODE_PERF and PROBE_ATTACH_MODE_LINK.
594  * @param opts Options for altering program attachment
595  * @return Reference to the newly created BPF link; or NULL is returned on
596  * error, error code is stored in errno
597  */
598 LIBBPF_API struct bpf_link *
599 bpf_program__attach_kprobe_opts(const struct bpf_program *prog,
600                                 const char *func_name,
601                                 const struct bpf_kprobe_opts *opts);
602 
603 struct bpf_kprobe_multi_opts {
604 	/* size of this struct, for forward/backward compatibility */
605 	size_t sz;
606 	/* array of function symbols to attach */
607 	const char **syms;
608 	/* array of function addresses to attach */
609 	const unsigned long *addrs;
610 	/* array of user-provided values fetchable through bpf_get_attach_cookie */
611 	const __u64 *cookies;
612 	/* number of elements in syms/addrs/cookies arrays */
613 	size_t cnt;
614 	/* create return kprobes */
615 	bool retprobe;
616 	/* create session kprobes */
617 	bool session;
618 	/* enforce unique match */
619 	bool unique_match;
620 	size_t :0;
621 };
622 
623 #define bpf_kprobe_multi_opts__last_field unique_match
624 
625 LIBBPF_API struct bpf_link *
626 bpf_program__attach_kprobe_multi_opts(const struct bpf_program *prog,
627 				      const char *pattern,
628 				      const struct bpf_kprobe_multi_opts *opts);
629 
630 struct bpf_uprobe_multi_opts {
631 	/* size of this struct, for forward/backward compatibility */
632 	size_t sz;
633 	/* array of function symbols to attach to */
634 	const char **syms;
635 	/* array of function addresses to attach to */
636 	const unsigned long *offsets;
637 	/* optional, array of associated ref counter offsets */
638 	const unsigned long *ref_ctr_offsets;
639 	/* optional, array of associated BPF cookies */
640 	const __u64 *cookies;
641 	/* number of elements in syms/addrs/cookies arrays */
642 	size_t cnt;
643 	/* create return uprobes */
644 	bool retprobe;
645 	/* create session kprobes */
646 	bool session;
647 	size_t :0;
648 };
649 
650 #define bpf_uprobe_multi_opts__last_field session
651 
652 /**
653  * @brief **bpf_program__attach_uprobe_multi()** attaches a BPF program
654  * to multiple uprobes with uprobe_multi link.
655  *
656  * User can specify 2 mutually exclusive set of inputs:
657  *
658  *   1) use only path/func_pattern/pid arguments
659  *
660  *   2) use path/pid with allowed combinations of
661  *      syms/offsets/ref_ctr_offsets/cookies/cnt
662  *
663  *      - syms and offsets are mutually exclusive
664  *      - ref_ctr_offsets and cookies are optional
665  *
666  *
667  * @param prog BPF program to attach
668  * @param pid Process ID to attach the uprobe to, 0 for self (own process),
669  * -1 for all processes
670  * @param binary_path Path to binary
671  * @param func_pattern Regular expression to specify functions to attach
672  * BPF program to
673  * @param opts Additional options (see **struct bpf_uprobe_multi_opts**)
674  * @return 0, on success; negative error code, otherwise
675  */
676 LIBBPF_API struct bpf_link *
677 bpf_program__attach_uprobe_multi(const struct bpf_program *prog,
678 				 pid_t pid,
679 				 const char *binary_path,
680 				 const char *func_pattern,
681 				 const struct bpf_uprobe_multi_opts *opts);
682 
683 struct bpf_ksyscall_opts {
684 	/* size of this struct, for forward/backward compatibility */
685 	size_t sz;
686 	/* custom user-provided value fetchable through bpf_get_attach_cookie() */
687 	__u64 bpf_cookie;
688 	/* attach as return probe? */
689 	bool retprobe;
690 	size_t :0;
691 };
692 #define bpf_ksyscall_opts__last_field retprobe
693 
694 /**
695  * @brief **bpf_program__attach_ksyscall()** attaches a BPF program
696  * to kernel syscall handler of a specified syscall. Optionally it's possible
697  * to request to install retprobe that will be triggered at syscall exit. It's
698  * also possible to associate BPF cookie (though options).
699  *
700  * Libbpf automatically will determine correct full kernel function name,
701  * which depending on system architecture and kernel version/configuration
702  * could be of the form __<arch>_sys_<syscall> or __se_sys_<syscall>, and will
703  * attach specified program using kprobe/kretprobe mechanism.
704  *
705  * **bpf_program__attach_ksyscall()** is an API counterpart of declarative
706  * **SEC("ksyscall/<syscall>")** annotation of BPF programs.
707  *
708  * At the moment **SEC("ksyscall")** and **bpf_program__attach_ksyscall()** do
709  * not handle all the calling convention quirks for mmap(), clone() and compat
710  * syscalls. It also only attaches to "native" syscall interfaces. If host
711  * system supports compat syscalls or defines 32-bit syscalls in 64-bit
712  * kernel, such syscall interfaces won't be attached to by libbpf.
713  *
714  * These limitations may or may not change in the future. Therefore it is
715  * recommended to use SEC("kprobe") for these syscalls or if working with
716  * compat and 32-bit interfaces is required.
717  *
718  * @param prog BPF program to attach
719  * @param syscall_name Symbolic name of the syscall (e.g., "bpf")
720  * @param opts Additional options (see **struct bpf_ksyscall_opts**)
721  * @return Reference to the newly created BPF link; or NULL is returned on
722  * error, error code is stored in errno
723  */
724 LIBBPF_API struct bpf_link *
725 bpf_program__attach_ksyscall(const struct bpf_program *prog,
726 			     const char *syscall_name,
727 			     const struct bpf_ksyscall_opts *opts);
728 
729 struct bpf_tracing_multi_opts {
730 	/* size of this struct, for forward/backward compatibility */
731 	size_t sz;
732 	const __u32 *ids;
733 	const __u64 *cookies;
734 	size_t cnt;
735 	size_t :0;
736 };
737 
738 #define bpf_tracing_multi_opts__last_field cnt
739 
740 LIBBPF_API struct bpf_link *
741 bpf_program__attach_tracing_multi(const struct bpf_program *prog, const char *pattern,
742 				  const struct bpf_tracing_multi_opts *opts);
743 
744 struct bpf_uprobe_opts {
745 	/* size of this struct, for forward/backward compatibility */
746 	size_t sz;
747 	/* offset of kernel reference counted USDT semaphore, added in
748 	 * a6ca88b241d5 ("trace_uprobe: support reference counter in fd-based uprobe")
749 	 */
750 	size_t ref_ctr_offset;
751 	/* custom user-provided value fetchable through bpf_get_attach_cookie() */
752 	__u64 bpf_cookie;
753 	/* uprobe is return probe, invoked at function return time */
754 	bool retprobe;
755 	/* Function name to attach to.  Could be an unqualified ("abc") or library-qualified
756 	 * "abc@LIBXYZ" name.  To specify function entry, func_name should be set while
757 	 * func_offset argument to bpf_prog__attach_uprobe_opts() should be 0.  To trace an
758 	 * offset within a function, specify func_name and use func_offset argument to specify
759 	 * offset within the function.  Shared library functions must specify the shared library
760 	 * binary_path.
761 	 */
762 	const char *func_name;
763 	/* uprobe attach mode */
764 	enum probe_attach_mode attach_mode;
765 	size_t :0;
766 };
767 #define bpf_uprobe_opts__last_field attach_mode
768 
769 /**
770  * @brief **bpf_program__attach_uprobe()** attaches a BPF program
771  * to the userspace function which is found by binary path and
772  * offset. You can optionally specify a particular process to attach
773  * to. You can also optionally attach the program to the function
774  * exit instead of entry.
775  *
776  * @param prog BPF program to attach
777  * @param retprobe Attach to function exit
778  * @param pid Process ID to attach the uprobe to, 0 for self (own process),
779  * -1 for all processes
780  * @param binary_path Path to binary that contains the function symbol
781  * @param func_offset Offset within the binary of the function symbol
782  * @return Reference to the newly created BPF link; or NULL is returned on error,
783  * error code is stored in errno
784  */
785 LIBBPF_API struct bpf_link *
786 bpf_program__attach_uprobe(const struct bpf_program *prog, bool retprobe,
787 			   pid_t pid, const char *binary_path,
788 			   size_t func_offset);
789 
790 /**
791  * @brief **bpf_program__attach_uprobe_opts()** is just like
792  * bpf_program__attach_uprobe() except with a options struct
793  * for various configurations.
794  *
795  * @param prog BPF program to attach
796  * @param pid Process ID to attach the uprobe to, 0 for self (own process),
797  * -1 for all processes
798  * @param binary_path Path to binary that contains the function symbol
799  * @param func_offset Offset within the binary of the function symbol
800  * @param opts Options for altering program attachment
801  * @return Reference to the newly created BPF link; or NULL is returned on error,
802  * error code is stored in errno
803  */
804 LIBBPF_API struct bpf_link *
805 bpf_program__attach_uprobe_opts(const struct bpf_program *prog, pid_t pid,
806 				const char *binary_path, size_t func_offset,
807 				const struct bpf_uprobe_opts *opts);
808 
809 struct bpf_usdt_opts {
810 	/* size of this struct, for forward/backward compatibility */
811 	size_t sz;
812 	/* custom user-provided value accessible through usdt_cookie() */
813 	__u64 usdt_cookie;
814 	size_t :0;
815 };
816 #define bpf_usdt_opts__last_field usdt_cookie
817 
818 /**
819  * @brief **bpf_program__attach_usdt()** is just like
820  * bpf_program__attach_uprobe_opts() except it covers USDT (User-space
821  * Statically Defined Tracepoint) attachment, instead of attaching to
822  * user-space function entry or exit.
823  *
824  * @param prog BPF program to attach
825  * @param pid Process ID to attach the uprobe to, 0 for self (own process),
826  * -1 for all processes
827  * @param binary_path Path to binary that contains provided USDT probe
828  * @param usdt_provider USDT provider name
829  * @param usdt_name USDT probe name
830  * @param opts Options for altering program attachment
831  * @return Reference to the newly created BPF link; or NULL is returned on error,
832  * error code is stored in errno
833  */
834 LIBBPF_API struct bpf_link *
835 bpf_program__attach_usdt(const struct bpf_program *prog,
836 			 pid_t pid, const char *binary_path,
837 			 const char *usdt_provider, const char *usdt_name,
838 			 const struct bpf_usdt_opts *opts);
839 
840 struct bpf_tracepoint_opts {
841 	/* size of this struct, for forward/backward compatibility */
842 	size_t sz;
843 	/* custom user-provided value fetchable through bpf_get_attach_cookie() */
844 	__u64 bpf_cookie;
845 };
846 #define bpf_tracepoint_opts__last_field bpf_cookie
847 
848 LIBBPF_API struct bpf_link *
849 bpf_program__attach_tracepoint(const struct bpf_program *prog,
850 			       const char *tp_category,
851 			       const char *tp_name);
852 LIBBPF_API struct bpf_link *
853 bpf_program__attach_tracepoint_opts(const struct bpf_program *prog,
854 				    const char *tp_category,
855 				    const char *tp_name,
856 				    const struct bpf_tracepoint_opts *opts);
857 
858 struct bpf_raw_tracepoint_opts {
859 	size_t sz; /* size of this struct for forward/backward compatibility */
860 	__u64 cookie;
861 	size_t :0;
862 };
863 #define bpf_raw_tracepoint_opts__last_field cookie
864 
865 LIBBPF_API struct bpf_link *
866 bpf_program__attach_raw_tracepoint(const struct bpf_program *prog,
867 				   const char *tp_name);
868 LIBBPF_API struct bpf_link *
869 bpf_program__attach_raw_tracepoint_opts(const struct bpf_program *prog,
870 					const char *tp_name,
871 					struct bpf_raw_tracepoint_opts *opts);
872 
873 struct bpf_trace_opts {
874 	/* size of this struct, for forward/backward compatibility */
875 	size_t sz;
876 	/* custom user-provided value fetchable through bpf_get_attach_cookie() */
877 	__u64 cookie;
878 };
879 #define bpf_trace_opts__last_field cookie
880 
881 LIBBPF_API struct bpf_link *
882 bpf_program__attach_trace(const struct bpf_program *prog);
883 LIBBPF_API struct bpf_link *
884 bpf_program__attach_trace_opts(const struct bpf_program *prog, const struct bpf_trace_opts *opts);
885 
886 LIBBPF_API struct bpf_link *
887 bpf_program__attach_lsm(const struct bpf_program *prog);
888 LIBBPF_API struct bpf_link *
889 bpf_program__attach_cgroup(const struct bpf_program *prog, int cgroup_fd);
890 LIBBPF_API struct bpf_link *
891 bpf_program__attach_netns(const struct bpf_program *prog, int netns_fd);
892 LIBBPF_API struct bpf_link *
893 bpf_program__attach_sockmap(const struct bpf_program *prog, int map_fd);
894 LIBBPF_API struct bpf_link *
895 bpf_program__attach_xdp(const struct bpf_program *prog, int ifindex);
896 LIBBPF_API struct bpf_link *
897 bpf_program__attach_freplace(const struct bpf_program *prog,
898 			     int target_fd, const char *attach_func_name);
899 
900 struct bpf_netfilter_opts {
901 	/* size of this struct, for forward/backward compatibility */
902 	size_t sz;
903 
904 	__u32 pf;
905 	__u32 hooknum;
906 	__s32 priority;
907 	__u32 flags;
908 };
909 #define bpf_netfilter_opts__last_field flags
910 
911 LIBBPF_API struct bpf_link *
912 bpf_program__attach_netfilter(const struct bpf_program *prog,
913 			      const struct bpf_netfilter_opts *opts);
914 
915 struct bpf_tcx_opts {
916 	/* size of this struct, for forward/backward compatibility */
917 	size_t sz;
918 	__u32 flags;
919 	__u32 relative_fd;
920 	__u32 relative_id;
921 	__u64 expected_revision;
922 	size_t :0;
923 };
924 #define bpf_tcx_opts__last_field expected_revision
925 
926 LIBBPF_API struct bpf_link *
927 bpf_program__attach_tcx(const struct bpf_program *prog, int ifindex,
928 			const struct bpf_tcx_opts *opts);
929 
930 struct bpf_netkit_opts {
931 	/* size of this struct, for forward/backward compatibility */
932 	size_t sz;
933 	__u32 flags;
934 	__u32 relative_fd;
935 	__u32 relative_id;
936 	__u64 expected_revision;
937 	size_t :0;
938 };
939 #define bpf_netkit_opts__last_field expected_revision
940 
941 LIBBPF_API struct bpf_link *
942 bpf_program__attach_netkit(const struct bpf_program *prog, int ifindex,
943 			   const struct bpf_netkit_opts *opts);
944 
945 struct bpf_cgroup_opts {
946 	/* size of this struct, for forward/backward compatibility */
947 	size_t sz;
948 	__u32 flags;
949 	__u32 relative_fd;
950 	__u32 relative_id;
951 	__u64 expected_revision;
952 	size_t :0;
953 };
954 #define bpf_cgroup_opts__last_field expected_revision
955 
956 LIBBPF_API struct bpf_link *
957 bpf_program__attach_cgroup_opts(const struct bpf_program *prog, int cgroup_fd,
958 				const struct bpf_cgroup_opts *opts);
959 
960 struct bpf_map;
961 
962 LIBBPF_API struct bpf_link *bpf_map__attach_struct_ops(const struct bpf_map *map);
963 LIBBPF_API int bpf_link__update_map(struct bpf_link *link, const struct bpf_map *map);
964 
965 struct bpf_iter_attach_opts {
966 	size_t sz; /* size of this struct for forward/backward compatibility */
967 	union bpf_iter_link_info *link_info;
968 	__u32 link_info_len;
969 };
970 #define bpf_iter_attach_opts__last_field link_info_len
971 
972 LIBBPF_API struct bpf_link *
973 bpf_program__attach_iter(const struct bpf_program *prog,
974 			 const struct bpf_iter_attach_opts *opts);
975 
976 LIBBPF_API enum bpf_prog_type bpf_program__type(const struct bpf_program *prog);
977 
978 /**
979  * @brief **bpf_program__set_type()** sets the program
980  * type of the passed BPF program.
981  * @param prog BPF program to set the program type for
982  * @param type program type to set the BPF map to have
983  * @return error code; or 0 if no error. An error occurs
984  * if the object is already loaded.
985  *
986  * This must be called before the BPF object is loaded,
987  * otherwise it has no effect and an error is returned.
988  */
989 LIBBPF_API int bpf_program__set_type(struct bpf_program *prog,
990 				     enum bpf_prog_type type);
991 
992 LIBBPF_API enum bpf_attach_type
993 bpf_program__expected_attach_type(const struct bpf_program *prog);
994 
995 /**
996  * @brief **bpf_program__set_expected_attach_type()** sets the
997  * attach type of the passed BPF program. This is used for
998  * auto-detection of attachment when programs are loaded.
999  * @param prog BPF program to set the attach type for
1000  * @param type attach type to set the BPF map to have
1001  * @return error code; or 0 if no error. An error occurs
1002  * if the object is already loaded.
1003  *
1004  * This must be called before the BPF object is loaded,
1005  * otherwise it has no effect and an error is returned.
1006  */
1007 LIBBPF_API int
1008 bpf_program__set_expected_attach_type(struct bpf_program *prog,
1009 				      enum bpf_attach_type type);
1010 
1011 LIBBPF_API __u32 bpf_program__flags(const struct bpf_program *prog);
1012 LIBBPF_API int bpf_program__set_flags(struct bpf_program *prog, __u32 flags);
1013 
1014 /* Per-program log level and log buffer getters/setters.
1015  * See bpf_object_open_opts comments regarding log_level and log_buf
1016  * interactions.
1017  */
1018 LIBBPF_API __u32 bpf_program__log_level(const struct bpf_program *prog);
1019 LIBBPF_API int bpf_program__set_log_level(struct bpf_program *prog, __u32 log_level);
1020 LIBBPF_API const char *bpf_program__log_buf(const struct bpf_program *prog, size_t *log_size);
1021 LIBBPF_API int bpf_program__set_log_buf(struct bpf_program *prog, char *log_buf, size_t log_size);
1022 
1023 LIBBPF_API struct bpf_func_info *bpf_program__func_info(const struct bpf_program *prog);
1024 LIBBPF_API __u32 bpf_program__func_info_cnt(const struct bpf_program *prog);
1025 
1026 LIBBPF_API struct bpf_line_info *bpf_program__line_info(const struct bpf_program *prog);
1027 LIBBPF_API __u32 bpf_program__line_info_cnt(const struct bpf_program *prog);
1028 
1029 /**
1030  * @brief **bpf_program__set_attach_target()** sets BTF-based attach target
1031  * for supported BPF program types:
1032  *   - BTF-aware raw tracepoints (tp_btf);
1033  *   - fentry/fexit/fmod_ret;
1034  *   - lsm;
1035  *   - freplace.
1036  * @param prog BPF program to configure; must be not yet loaded.
1037  * @param attach_prog_fd FD of target BPF program (for freplace/extension).
1038  * If >0 and func name omitted, defers BTF ID resolution.
1039  * @param attach_func_name Target function name. Used either with
1040  * attach_prog_fd to find destination BTF type ID in that BPF program, or
1041  * alone (no attach_prog_fd) to resolve kernel (vmlinux/module) BTF ID.
1042  * Must be provided if attach_prog_fd is 0.
1043  * @return error code; or 0 if no error occurred.
1044  */
1045 LIBBPF_API int
1046 bpf_program__set_attach_target(struct bpf_program *prog, int attach_prog_fd,
1047 			       const char *attach_func_name);
1048 
1049 struct bpf_prog_assoc_struct_ops_opts; /* defined in bpf.h */
1050 
1051 /**
1052  * @brief **bpf_program__assoc_struct_ops()** associates a BPF program with a
1053  * struct_ops map.
1054  *
1055  * @param prog BPF program
1056  * @param map struct_ops map to be associated with the BPF program
1057  * @param opts optional options, can be NULL
1058  *
1059  * @return 0, on success; negative error code, otherwise
1060  */
1061 LIBBPF_API int
1062 bpf_program__assoc_struct_ops(struct bpf_program *prog, struct bpf_map *map,
1063 			      struct bpf_prog_assoc_struct_ops_opts *opts);
1064 
1065 /**
1066  * @brief **bpf_object__find_map_by_name()** returns BPF map of
1067  * the given name, if it exists within the passed BPF object
1068  * @param obj BPF object
1069  * @param name name of the BPF map
1070  * @return BPF map instance, if such map exists within the BPF object;
1071  * or NULL otherwise.
1072  */
1073 LIBBPF_API struct bpf_map *
1074 bpf_object__find_map_by_name(const struct bpf_object *obj, const char *name);
1075 
1076 LIBBPF_API int
1077 bpf_object__find_map_fd_by_name(const struct bpf_object *obj, const char *name);
1078 
1079 LIBBPF_API struct bpf_map *
1080 bpf_object__next_map(const struct bpf_object *obj, const struct bpf_map *map);
1081 
1082 #define bpf_object__for_each_map(pos, obj)		\
1083 	for ((pos) = bpf_object__next_map((obj), NULL);	\
1084 	     (pos) != NULL;				\
1085 	     (pos) = bpf_object__next_map((obj), (pos)))
1086 #define bpf_map__for_each bpf_object__for_each_map
1087 
1088 LIBBPF_API struct bpf_map *
1089 bpf_object__prev_map(const struct bpf_object *obj, const struct bpf_map *map);
1090 
1091 /**
1092  * @brief **bpf_map__set_autocreate()** sets whether libbpf has to auto-create
1093  * BPF map during BPF object load phase.
1094  * @param map the BPF map instance
1095  * @param autocreate whether to create BPF map during BPF object load
1096  * @return 0 on success; -EBUSY if BPF object was already loaded
1097  *
1098  * **bpf_map__set_autocreate()** allows to opt-out from libbpf auto-creating
1099  * BPF map. By default, libbpf will attempt to create every single BPF map
1100  * defined in BPF object file using BPF_MAP_CREATE command of bpf() syscall
1101  * and fill in map FD in BPF instructions.
1102  *
1103  * This API allows to opt-out of this process for specific map instance. This
1104  * can be useful if host kernel doesn't support such BPF map type or used
1105  * combination of flags and user application wants to avoid creating such
1106  * a map in the first place. User is still responsible to make sure that their
1107  * BPF-side code that expects to use such missing BPF map is recognized by BPF
1108  * verifier as dead code, otherwise BPF verifier will reject such BPF program.
1109  */
1110 LIBBPF_API int bpf_map__set_autocreate(struct bpf_map *map, bool autocreate);
1111 LIBBPF_API bool bpf_map__autocreate(const struct bpf_map *map);
1112 
1113 /**
1114  * @brief **bpf_map__set_autoattach()** sets whether libbpf has to auto-attach
1115  * map during BPF skeleton attach phase.
1116  * @param map the BPF map instance
1117  * @param autoattach whether to attach map during BPF skeleton attach phase
1118  * @return 0 on success; negative error code, otherwise
1119  */
1120 LIBBPF_API int bpf_map__set_autoattach(struct bpf_map *map, bool autoattach);
1121 
1122 /**
1123  * @brief **bpf_map__autoattach()** returns whether BPF map is configured to
1124  * auto-attach during BPF skeleton attach phase.
1125  * @param map the BPF map instance
1126  * @return true if map is set to auto-attach during skeleton attach phase; false, otherwise
1127  */
1128 LIBBPF_API bool bpf_map__autoattach(const struct bpf_map *map);
1129 
1130 /**
1131  * @brief **bpf_map__fd()** gets the file descriptor of the passed
1132  * BPF map
1133  * @param map the BPF map instance
1134  * @return the file descriptor; or -EINVAL in case of an error
1135  */
1136 LIBBPF_API int bpf_map__fd(const struct bpf_map *map);
1137 LIBBPF_API int bpf_map__reuse_fd(struct bpf_map *map, int fd);
1138 /* get map name */
1139 LIBBPF_API const char *bpf_map__name(const struct bpf_map *map);
1140 /* get/set map type */
1141 LIBBPF_API enum bpf_map_type bpf_map__type(const struct bpf_map *map);
1142 LIBBPF_API int bpf_map__set_type(struct bpf_map *map, enum bpf_map_type type);
1143 /* get/set map size (max_entries) */
1144 LIBBPF_API __u32 bpf_map__max_entries(const struct bpf_map *map);
1145 LIBBPF_API int bpf_map__set_max_entries(struct bpf_map *map, __u32 max_entries);
1146 /* get/set map flags */
1147 LIBBPF_API __u32 bpf_map__map_flags(const struct bpf_map *map);
1148 LIBBPF_API int bpf_map__set_map_flags(struct bpf_map *map, __u32 flags);
1149 /* get/set map NUMA node */
1150 LIBBPF_API __u32 bpf_map__numa_node(const struct bpf_map *map);
1151 LIBBPF_API int bpf_map__set_numa_node(struct bpf_map *map, __u32 numa_node);
1152 /* get/set map key size */
1153 LIBBPF_API __u32 bpf_map__key_size(const struct bpf_map *map);
1154 LIBBPF_API int bpf_map__set_key_size(struct bpf_map *map, __u32 size);
1155 /* get map value size */
1156 LIBBPF_API __u32 bpf_map__value_size(const struct bpf_map *map);
1157 /**
1158  * @brief **bpf_map__set_value_size()** sets map value size.
1159  * @param map the BPF map instance
1160  * @param size the new value size
1161  * @return 0, on success; negative error, otherwise
1162  *
1163  * There is a special case for maps with associated memory-mapped regions, like
1164  * the global data section maps (bss, data, rodata). When this function is used
1165  * on such a map, the mapped region is resized. Afterward, an attempt is made to
1166  * adjust the corresponding BTF info. This attempt is best-effort and can only
1167  * succeed if the last variable of the data section map is an array. The array
1168  * BTF type is replaced by a new BTF array type with a different length.
1169  * Any previously existing pointers returned from bpf_map__initial_value() or
1170  * corresponding data section skeleton pointer must be reinitialized.
1171  */
1172 LIBBPF_API int bpf_map__set_value_size(struct bpf_map *map, __u32 size);
1173 /* get map key/value BTF type IDs */
1174 LIBBPF_API __u32 bpf_map__btf_key_type_id(const struct bpf_map *map);
1175 LIBBPF_API __u32 bpf_map__btf_value_type_id(const struct bpf_map *map);
1176 /* get/set map if_index */
1177 LIBBPF_API __u32 bpf_map__ifindex(const struct bpf_map *map);
1178 LIBBPF_API int bpf_map__set_ifindex(struct bpf_map *map, __u32 ifindex);
1179 /* get/set map map_extra flags */
1180 LIBBPF_API __u64 bpf_map__map_extra(const struct bpf_map *map);
1181 LIBBPF_API int bpf_map__set_map_extra(struct bpf_map *map, __u64 map_extra);
1182 
1183 LIBBPF_API int bpf_map__set_initial_value(struct bpf_map *map,
1184 					  const void *data, size_t size);
1185 LIBBPF_API void *bpf_map__initial_value(const struct bpf_map *map, size_t *psize);
1186 
1187 /**
1188  * @brief **bpf_map__is_internal()** tells the caller whether or not the
1189  * passed map is a special map created by libbpf automatically for things like
1190  * global variables, __ksym externs, Kconfig values, etc
1191  * @param map the bpf_map
1192  * @return true, if the map is an internal map; false, otherwise
1193  */
1194 LIBBPF_API bool bpf_map__is_internal(const struct bpf_map *map);
1195 
1196 /**
1197  * @brief **bpf_map__set_pin_path()** sets the path attribute that tells where the
1198  * BPF map should be pinned. This does not actually create the 'pin'.
1199  * @param map The bpf_map
1200  * @param path The path
1201  * @return 0, on success; negative error, otherwise
1202  */
1203 LIBBPF_API int bpf_map__set_pin_path(struct bpf_map *map, const char *path);
1204 
1205 /**
1206  * @brief **bpf_map__pin_path()** gets the path attribute that tells where the
1207  * BPF map should be pinned.
1208  * @param map The bpf_map
1209  * @return The path string; which can be NULL
1210  */
1211 LIBBPF_API const char *bpf_map__pin_path(const struct bpf_map *map);
1212 
1213 /**
1214  * @brief **bpf_map__is_pinned()** tells the caller whether or not the
1215  * passed map has been pinned via a 'pin' file.
1216  * @param map The bpf_map
1217  * @return true, if the map is pinned; false, otherwise
1218  */
1219 LIBBPF_API bool bpf_map__is_pinned(const struct bpf_map *map);
1220 
1221 /**
1222  * @brief **bpf_map__pin()** creates a file that serves as a 'pin'
1223  * for the BPF map. This increments the reference count on the
1224  * BPF map which will keep the BPF map loaded even after the
1225  * userspace process which loaded it has exited.
1226  * @param map The bpf_map to pin
1227  * @param path A file path for the 'pin'
1228  * @return 0, on success; negative error, otherwise
1229  *
1230  * If `path` is NULL the maps `pin_path` attribute will be used. If this is
1231  * also NULL, an error will be returned and the map will not be pinned.
1232  */
1233 LIBBPF_API int bpf_map__pin(struct bpf_map *map, const char *path);
1234 
1235 /**
1236  * @brief **bpf_map__unpin()** removes the file that serves as a
1237  * 'pin' for the BPF map.
1238  * @param map The bpf_map to unpin
1239  * @param path A file path for the 'pin'
1240  * @return 0, on success; negative error, otherwise
1241  *
1242  * The `path` parameter can be NULL, in which case the `pin_path`
1243  * map attribute is unpinned. If both the `path` parameter and
1244  * `pin_path` map attribute are set, they must be equal.
1245  */
1246 LIBBPF_API int bpf_map__unpin(struct bpf_map *map, const char *path);
1247 
1248 LIBBPF_API int bpf_map__set_inner_map_fd(struct bpf_map *map, int fd);
1249 LIBBPF_API struct bpf_map *bpf_map__inner_map(struct bpf_map *map);
1250 
1251 /**
1252  * @brief **bpf_map__lookup_elem()** allows to lookup BPF map value
1253  * corresponding to provided key.
1254  * @param map BPF map to lookup element in
1255  * @param key pointer to memory containing bytes of the key used for lookup
1256  * @param key_sz size in bytes of key data, needs to match BPF map definition's **key_size**
1257  * @param value pointer to memory in which looked up value will be stored
1258  * @param value_sz size in byte of value data memory; it has to match BPF map
1259  * definition's **value_size**. For per-CPU BPF maps, value size can be
1260  * `value_size` if either **BPF_F_CPU** or **BPF_F_ALL_CPUS** is specified
1261  * in **flags**, otherwise a product of BPF map value size and number of
1262  * possible CPUs in the system (could be fetched with
1263  * **libbpf_num_possible_cpus()**). Note also that for per-CPU values value
1264  * size has to be aligned up to closest 8 bytes, so expected size is:
1265  * `round_up(value_size, 8) * libbpf_num_possible_cpus()`.
1266  * @param flags extra flags passed to kernel for this operation
1267  * @return 0, on success; negative error, otherwise
1268  *
1269  * **bpf_map__lookup_elem()** is high-level equivalent of
1270  * **bpf_map_lookup_elem()** API with added check for key and value size.
1271  */
1272 LIBBPF_API int bpf_map__lookup_elem(const struct bpf_map *map,
1273 				    const void *key, size_t key_sz,
1274 				    void *value, size_t value_sz, __u64 flags);
1275 
1276 /**
1277  * @brief **bpf_map__update_elem()** allows to insert or update value in BPF
1278  * map that corresponds to provided key.
1279  * @param map BPF map to insert to or update element in
1280  * @param key pointer to memory containing bytes of the key
1281  * @param key_sz size in bytes of key data, needs to match BPF map definition's **key_size**
1282  * @param value pointer to memory containing bytes of the value
1283  * @param value_sz refer to **bpf_map__lookup_elem**'s description.'
1284  * @param flags extra flags passed to kernel for this operation
1285  * @return 0, on success; negative error, otherwise
1286  *
1287  * **bpf_map__update_elem()** is high-level equivalent of
1288  * **bpf_map_update_elem()** API with added check for key and value size.
1289  */
1290 LIBBPF_API int bpf_map__update_elem(const struct bpf_map *map,
1291 				    const void *key, size_t key_sz,
1292 				    const void *value, size_t value_sz, __u64 flags);
1293 
1294 /**
1295  * @brief **bpf_map__delete_elem()** allows to delete element in BPF map that
1296  * corresponds to provided key.
1297  * @param map BPF map to delete element from
1298  * @param key pointer to memory containing bytes of the key
1299  * @param key_sz size in bytes of key data, needs to match BPF map definition's **key_size**
1300  * @param flags extra flags passed to kernel for this operation
1301  * @return 0, on success; negative error, otherwise
1302  *
1303  * **bpf_map__delete_elem()** is high-level equivalent of
1304  * **bpf_map_delete_elem()** API with added check for key size.
1305  */
1306 LIBBPF_API int bpf_map__delete_elem(const struct bpf_map *map,
1307 				    const void *key, size_t key_sz, __u64 flags);
1308 
1309 /**
1310  * @brief **bpf_map__lookup_and_delete_elem()** allows to lookup BPF map value
1311  * corresponding to provided key and atomically delete it afterwards.
1312  * @param map BPF map to lookup element in
1313  * @param key pointer to memory containing bytes of the key used for lookup
1314  * @param key_sz size in bytes of key data, needs to match BPF map definition's **key_size**
1315  * @param value pointer to memory in which looked up value will be stored
1316  * @param value_sz size in byte of value data memory; it has to match BPF map
1317  * definition's **value_size**. For per-CPU BPF maps value size has to be
1318  * a product of BPF map value size and number of possible CPUs in the system
1319  * (could be fetched with **libbpf_num_possible_cpus()**). Note also that for
1320  * per-CPU values value size has to be aligned up to closest 8 bytes for
1321  * alignment reasons, so expected size is: `round_up(value_size, 8)
1322  * * libbpf_num_possible_cpus()`.
1323  * @param flags extra flags passed to kernel for this operation
1324  * @return 0, on success; negative error, otherwise
1325  *
1326  * **bpf_map__lookup_and_delete_elem()** is high-level equivalent of
1327  * **bpf_map_lookup_and_delete_elem()** API with added check for key and value size.
1328  */
1329 LIBBPF_API int bpf_map__lookup_and_delete_elem(const struct bpf_map *map,
1330 					       const void *key, size_t key_sz,
1331 					       void *value, size_t value_sz, __u64 flags);
1332 
1333 /**
1334  * @brief **bpf_map__get_next_key()** allows to iterate BPF map keys by
1335  * fetching next key that follows current key.
1336  * @param map BPF map to fetch next key from
1337  * @param cur_key pointer to memory containing bytes of current key or NULL to
1338  * fetch the first key
1339  * @param next_key pointer to memory to write next key into
1340  * @param key_sz size in bytes of key data, needs to match BPF map definition's **key_size**
1341  * @return 0, on success; -ENOENT if **cur_key** is the last key in BPF map;
1342  * negative error, otherwise
1343  *
1344  * **bpf_map__get_next_key()** is high-level equivalent of
1345  * **bpf_map_get_next_key()** API with added check for key size.
1346  */
1347 LIBBPF_API int bpf_map__get_next_key(const struct bpf_map *map,
1348 				     const void *cur_key, void *next_key, size_t key_sz);
1349 /**
1350  * @brief **bpf_map__set_exclusive_program()** sets a map to be exclusive to the
1351  * specified program. This must be called *before* the map is created.
1352  *
1353  * @param map BPF map to make exclusive.
1354  * @param prog BPF program to be the exclusive user of the map. Must belong
1355  * to the same bpf_object as the map.
1356  * @return 0 on success; a negative error code otherwise.
1357  *
1358  * This function must be called after the BPF object is opened but before
1359  * it is loaded. Once the object is loaded, only the specified program
1360  * will be able to access the map's contents.
1361  */
1362 LIBBPF_API int bpf_map__set_exclusive_program(struct bpf_map *map, struct bpf_program *prog);
1363 
1364 /**
1365  * @brief **bpf_map__exclusive_program()** returns the exclusive program
1366  * that is registered with the map (if any).
1367  * @param map BPF map to which the exclusive program is registered.
1368  * @return the registered exclusive program.
1369  */
1370 LIBBPF_API struct bpf_program *bpf_map__exclusive_program(struct bpf_map *map);
1371 
1372 struct bpf_xdp_set_link_opts {
1373 	size_t sz;
1374 	int old_fd;
1375 	size_t :0;
1376 };
1377 #define bpf_xdp_set_link_opts__last_field old_fd
1378 
1379 struct bpf_xdp_attach_opts {
1380 	size_t sz;
1381 	int old_prog_fd;
1382 	size_t :0;
1383 };
1384 #define bpf_xdp_attach_opts__last_field old_prog_fd
1385 
1386 struct bpf_xdp_query_opts {
1387 	size_t sz;
1388 	__u32 prog_id;		/* output */
1389 	__u32 drv_prog_id;	/* output */
1390 	__u32 hw_prog_id;	/* output */
1391 	__u32 skb_prog_id;	/* output */
1392 	__u8 attach_mode;	/* output */
1393 	__u64 feature_flags;	/* output */
1394 	__u32 xdp_zc_max_segs;	/* output */
1395 	size_t :0;
1396 };
1397 #define bpf_xdp_query_opts__last_field xdp_zc_max_segs
1398 
1399 LIBBPF_API int bpf_xdp_attach(int ifindex, int prog_fd, __u32 flags,
1400 			      const struct bpf_xdp_attach_opts *opts);
1401 LIBBPF_API int bpf_xdp_detach(int ifindex, __u32 flags,
1402 			      const struct bpf_xdp_attach_opts *opts);
1403 LIBBPF_API int bpf_xdp_query(int ifindex, int flags, struct bpf_xdp_query_opts *opts);
1404 LIBBPF_API int bpf_xdp_query_id(int ifindex, int flags, __u32 *prog_id);
1405 
1406 /* TC related API */
1407 enum bpf_tc_attach_point {
1408 	BPF_TC_INGRESS = 1 << 0,
1409 	BPF_TC_EGRESS  = 1 << 1,
1410 	BPF_TC_CUSTOM  = 1 << 2,
1411 	BPF_TC_QDISC   = 1 << 3,
1412 };
1413 
1414 #define BPF_TC_PARENT(a, b) 	\
1415 	((((a) << 16) & 0xFFFF0000U) | ((b) & 0x0000FFFFU))
1416 
1417 enum bpf_tc_flags {
1418 	BPF_TC_F_REPLACE = 1 << 0,
1419 };
1420 
1421 struct bpf_tc_hook {
1422 	size_t sz;
1423 	int ifindex;
1424 	enum bpf_tc_attach_point attach_point;
1425 	__u32 parent;
1426 	__u32 handle;
1427 	const char *qdisc;
1428 	size_t :0;
1429 };
1430 #define bpf_tc_hook__last_field qdisc
1431 
1432 struct bpf_tc_opts {
1433 	size_t sz;
1434 	int prog_fd;
1435 	__u32 flags;
1436 	__u32 prog_id;
1437 	__u32 handle;
1438 	__u32 priority;
1439 	size_t :0;
1440 };
1441 #define bpf_tc_opts__last_field priority
1442 
1443 LIBBPF_API int bpf_tc_hook_create(struct bpf_tc_hook *hook);
1444 LIBBPF_API int bpf_tc_hook_destroy(struct bpf_tc_hook *hook);
1445 LIBBPF_API int bpf_tc_attach(const struct bpf_tc_hook *hook,
1446 			     struct bpf_tc_opts *opts);
1447 LIBBPF_API int bpf_tc_detach(const struct bpf_tc_hook *hook,
1448 			     const struct bpf_tc_opts *opts);
1449 LIBBPF_API int bpf_tc_query(const struct bpf_tc_hook *hook,
1450 			    struct bpf_tc_opts *opts);
1451 
1452 /* Ring buffer APIs */
1453 struct ring_buffer;
1454 struct ring;
1455 struct user_ring_buffer;
1456 
1457 typedef int (*ring_buffer_sample_fn)(void *ctx, void *data, size_t size);
1458 
1459 struct ring_buffer_opts {
1460 	size_t sz; /* size of this struct, for forward/backward compatibility */
1461 };
1462 
1463 #define ring_buffer_opts__last_field sz
1464 
1465 LIBBPF_API struct ring_buffer *
1466 ring_buffer__new(int map_fd, ring_buffer_sample_fn sample_cb, void *ctx,
1467 		 const struct ring_buffer_opts *opts);
1468 LIBBPF_API void ring_buffer__free(struct ring_buffer *rb);
1469 LIBBPF_API int ring_buffer__add(struct ring_buffer *rb, int map_fd,
1470 				ring_buffer_sample_fn sample_cb, void *ctx);
1471 LIBBPF_API int ring_buffer__poll(struct ring_buffer *rb, int timeout_ms);
1472 LIBBPF_API int ring_buffer__consume(struct ring_buffer *rb);
1473 LIBBPF_API int ring_buffer__consume_n(struct ring_buffer *rb, size_t n);
1474 LIBBPF_API int ring_buffer__epoll_fd(const struct ring_buffer *rb);
1475 
1476 /**
1477  * @brief **ring_buffer__ring()** returns the ringbuffer object inside a given
1478  * ringbuffer manager representing a single BPF_MAP_TYPE_RINGBUF map instance.
1479  *
1480  * @param rb A ringbuffer manager object.
1481  * @param idx An index into the ringbuffers contained within the ringbuffer
1482  * manager object. The index is 0-based and corresponds to the order in which
1483  * ring_buffer__add was called.
1484  * @return A ringbuffer object on success; NULL and errno set if the index is
1485  * invalid.
1486  */
1487 LIBBPF_API struct ring *ring_buffer__ring(struct ring_buffer *rb,
1488 					  unsigned int idx);
1489 
1490 /**
1491  * @brief **ring__consumer_pos()** returns the current consumer position in the
1492  * given ringbuffer.
1493  *
1494  * @param r A ringbuffer object.
1495  * @return The current consumer position.
1496  */
1497 LIBBPF_API unsigned long ring__consumer_pos(const struct ring *r);
1498 
1499 /**
1500  * @brief **ring__producer_pos()** returns the current producer position in the
1501  * given ringbuffer.
1502  *
1503  * @param r A ringbuffer object.
1504  * @return The current producer position.
1505  */
1506 LIBBPF_API unsigned long ring__producer_pos(const struct ring *r);
1507 
1508 /**
1509  * @brief **ring__avail_data_size()** returns the number of bytes in the
1510  * ringbuffer not yet consumed. This has no locking associated with it, so it
1511  * can be inaccurate if operations are ongoing while this is called. However, it
1512  * should still show the correct trend over the long-term.
1513  *
1514  * @param r A ringbuffer object.
1515  * @return The number of bytes not yet consumed.
1516  */
1517 LIBBPF_API size_t ring__avail_data_size(const struct ring *r);
1518 
1519 /**
1520  * @brief **ring__size()** returns the total size of the ringbuffer's map data
1521  * area (excluding special producer/consumer pages). Effectively this gives the
1522  * amount of usable bytes of data inside the ringbuffer.
1523  *
1524  * @param r A ringbuffer object.
1525  * @return The total size of the ringbuffer map data area.
1526  */
1527 LIBBPF_API size_t ring__size(const struct ring *r);
1528 
1529 /**
1530  * @brief **ring__map_fd()** returns the file descriptor underlying the given
1531  * ringbuffer.
1532  *
1533  * @param r A ringbuffer object.
1534  * @return The underlying ringbuffer file descriptor
1535  */
1536 LIBBPF_API int ring__map_fd(const struct ring *r);
1537 
1538 /**
1539  * @brief **ring__consume()** consumes available ringbuffer data without event
1540  * polling.
1541  *
1542  * @param r A ringbuffer object.
1543  * @return The number of records consumed (or INT_MAX, whichever is less), or
1544  * a negative number if any of the callbacks return an error.
1545  */
1546 LIBBPF_API int ring__consume(struct ring *r);
1547 
1548 /**
1549  * @brief **ring__consume_n()** consumes up to a requested amount of items from
1550  * a ringbuffer without event polling.
1551  *
1552  * @param r A ringbuffer object.
1553  * @param n Maximum amount of items to consume.
1554  * @return The number of items consumed, or a negative number if any of the
1555  * callbacks return an error.
1556  */
1557 LIBBPF_API int ring__consume_n(struct ring *r, size_t n);
1558 
1559 struct user_ring_buffer_opts {
1560 	size_t sz; /* size of this struct, for forward/backward compatibility */
1561 };
1562 
1563 #define user_ring_buffer_opts__last_field sz
1564 
1565 /**
1566  * @brief **user_ring_buffer__new()** creates a new instance of a user ring
1567  * buffer.
1568  *
1569  * @param map_fd A file descriptor to a BPF_MAP_TYPE_USER_RINGBUF map.
1570  * @param opts Options for how the ring buffer should be created.
1571  * @return A user ring buffer on success; NULL and errno being set on a
1572  * failure.
1573  */
1574 LIBBPF_API struct user_ring_buffer *
1575 user_ring_buffer__new(int map_fd, const struct user_ring_buffer_opts *opts);
1576 
1577 /**
1578  * @brief **user_ring_buffer__reserve()** reserves a pointer to a sample in the
1579  * user ring buffer.
1580  * @param rb A pointer to a user ring buffer.
1581  * @param size The size of the sample, in bytes.
1582  * @return A pointer to an 8-byte aligned reserved region of the user ring
1583  * buffer; NULL, and errno being set if a sample could not be reserved.
1584  *
1585  * This function is *not* thread safe, and callers must synchronize accessing
1586  * this function if there are multiple producers.  If a size is requested that
1587  * is larger than the size of the entire ring buffer, errno will be set to
1588  * E2BIG and NULL is returned. If the ring buffer could accommodate the size,
1589  * but currently does not have enough space, errno is set to ENOSPC and NULL is
1590  * returned.
1591  *
1592  * After initializing the sample, callers must invoke
1593  * **user_ring_buffer__submit()** to post the sample to the kernel. Otherwise,
1594  * the sample must be freed with **user_ring_buffer__discard()**.
1595  */
1596 LIBBPF_API void *user_ring_buffer__reserve(struct user_ring_buffer *rb, __u32 size);
1597 
1598 /**
1599  * @brief **user_ring_buffer__reserve_blocking()** reserves a record in the
1600  * ring buffer, possibly blocking for up to @timeout_ms until a sample becomes
1601  * available.
1602  * @param rb The user ring buffer.
1603  * @param size The size of the sample, in bytes.
1604  * @param timeout_ms The amount of time, in milliseconds, for which the caller
1605  * should block when waiting for a sample. -1 causes the caller to block
1606  * indefinitely.
1607  * @return A pointer to an 8-byte aligned reserved region of the user ring
1608  * buffer; NULL, and errno being set if a sample could not be reserved.
1609  *
1610  * This function is *not* thread safe, and callers must synchronize
1611  * accessing this function if there are multiple producers
1612  *
1613  * If **timeout_ms** is -1, the function will block indefinitely until a sample
1614  * becomes available. Otherwise, **timeout_ms** must be non-negative, or errno
1615  * is set to EINVAL, and NULL is returned. If **timeout_ms** is 0, no blocking
1616  * will occur and the function will return immediately after attempting to
1617  * reserve a sample.
1618  *
1619  * If **size** is larger than the size of the entire ring buffer, errno is set
1620  * to E2BIG and NULL is returned. If the ring buffer could accommodate
1621  * **size**, but currently does not have enough space, the caller will block
1622  * until at most **timeout_ms** has elapsed. If insufficient space is available
1623  * at that time, errno is set to ENOSPC, and NULL is returned.
1624  *
1625  * The kernel guarantees that it will wake up this thread to check if
1626  * sufficient space is available in the ring buffer at least once per
1627  * invocation of the **bpf_ringbuf_drain()** helper function, provided that at
1628  * least one sample is consumed, and the BPF program did not invoke the
1629  * function with BPF_RB_NO_WAKEUP. A wakeup may occur sooner than that, but the
1630  * kernel does not guarantee this. If the helper function is invoked with
1631  * BPF_RB_FORCE_WAKEUP, a wakeup event will be sent even if no sample is
1632  * consumed.
1633  *
1634  * When a sample of size **size** is found within **timeout_ms**, a pointer to
1635  * the sample is returned. After initializing the sample, callers must invoke
1636  * **user_ring_buffer__submit()** to post the sample to the ring buffer.
1637  * Otherwise, the sample must be freed with **user_ring_buffer__discard()**.
1638  */
1639 LIBBPF_API void *user_ring_buffer__reserve_blocking(struct user_ring_buffer *rb,
1640 						    __u32 size,
1641 						    int timeout_ms);
1642 
1643 /**
1644  * @brief **user_ring_buffer__submit()** submits a previously reserved sample
1645  * into the ring buffer.
1646  * @param rb The user ring buffer.
1647  * @param sample A reserved sample.
1648  *
1649  * It is not necessary to synchronize amongst multiple producers when invoking
1650  * this function.
1651  */
1652 LIBBPF_API void user_ring_buffer__submit(struct user_ring_buffer *rb, void *sample);
1653 
1654 /**
1655  * @brief **user_ring_buffer__discard()** discards a previously reserved sample.
1656  * @param rb The user ring buffer.
1657  * @param sample A reserved sample.
1658  *
1659  * It is not necessary to synchronize amongst multiple producers when invoking
1660  * this function.
1661  */
1662 LIBBPF_API void user_ring_buffer__discard(struct user_ring_buffer *rb, void *sample);
1663 
1664 /**
1665  * @brief **user_ring_buffer__free()** frees a ring buffer that was previously
1666  * created with **user_ring_buffer__new()**.
1667  * @param rb The user ring buffer being freed.
1668  */
1669 LIBBPF_API void user_ring_buffer__free(struct user_ring_buffer *rb);
1670 
1671 /* Perf buffer APIs */
1672 struct perf_buffer;
1673 
1674 typedef void (*perf_buffer_sample_fn)(void *ctx, int cpu,
1675 				      void *data, __u32 size);
1676 typedef void (*perf_buffer_lost_fn)(void *ctx, int cpu, __u64 cnt);
1677 
1678 /* common use perf buffer options */
1679 struct perf_buffer_opts {
1680 	size_t sz;
1681 	__u32 sample_period;
1682 	size_t :0;
1683 };
1684 #define perf_buffer_opts__last_field sample_period
1685 
1686 /**
1687  * @brief **perf_buffer__new()** creates BPF perfbuf manager for a specified
1688  * BPF_PERF_EVENT_ARRAY map
1689  * @param map_fd FD of BPF_PERF_EVENT_ARRAY BPF map that will be used by BPF
1690  * code to send data over to user-space
1691  * @param page_cnt number of memory pages allocated for each per-CPU buffer
1692  * @param sample_cb function called on each received data record
1693  * @param lost_cb function called when record loss has occurred
1694  * @param ctx user-provided extra context passed into *sample_cb* and *lost_cb*
1695  * @param opts optional parameters for the perf buffer, can be null
1696  * @return a new instance of struct perf_buffer on success, NULL on error with
1697  * *errno* containing an error code
1698  */
1699 LIBBPF_API struct perf_buffer *
1700 perf_buffer__new(int map_fd, size_t page_cnt,
1701 		 perf_buffer_sample_fn sample_cb, perf_buffer_lost_fn lost_cb, void *ctx,
1702 		 const struct perf_buffer_opts *opts);
1703 
1704 enum bpf_perf_event_ret {
1705 	LIBBPF_PERF_EVENT_DONE	= 0,
1706 	LIBBPF_PERF_EVENT_ERROR	= -1,
1707 	LIBBPF_PERF_EVENT_CONT	= -2,
1708 };
1709 
1710 struct perf_event_header;
1711 
1712 typedef enum bpf_perf_event_ret
1713 (*perf_buffer_event_fn)(void *ctx, int cpu, struct perf_event_header *event);
1714 
1715 /* raw perf buffer options, giving most power and control */
1716 struct perf_buffer_raw_opts {
1717 	size_t sz;
1718 	long :0;
1719 	long :0;
1720 	/* if cpu_cnt == 0, open all on all possible CPUs (up to the number of
1721 	 * max_entries of given PERF_EVENT_ARRAY map)
1722 	 */
1723 	int cpu_cnt;
1724 	/* if cpu_cnt > 0, cpus is an array of CPUs to open ring buffers on */
1725 	int *cpus;
1726 	/* if cpu_cnt > 0, map_keys specify map keys to set per-CPU FDs for */
1727 	int *map_keys;
1728 };
1729 #define perf_buffer_raw_opts__last_field map_keys
1730 
1731 struct perf_event_attr;
1732 
1733 LIBBPF_API struct perf_buffer *
1734 perf_buffer__new_raw(int map_fd, size_t page_cnt, struct perf_event_attr *attr,
1735 		     perf_buffer_event_fn event_cb, void *ctx,
1736 		     const struct perf_buffer_raw_opts *opts);
1737 
1738 LIBBPF_API void perf_buffer__free(struct perf_buffer *pb);
1739 LIBBPF_API int perf_buffer__epoll_fd(const struct perf_buffer *pb);
1740 LIBBPF_API int perf_buffer__poll(struct perf_buffer *pb, int timeout_ms);
1741 LIBBPF_API int perf_buffer__consume(struct perf_buffer *pb);
1742 LIBBPF_API int perf_buffer__consume_buffer(struct perf_buffer *pb, size_t buf_idx);
1743 LIBBPF_API size_t perf_buffer__buffer_cnt(const struct perf_buffer *pb);
1744 LIBBPF_API int perf_buffer__buffer_fd(const struct perf_buffer *pb, size_t buf_idx);
1745 /**
1746  * @brief **perf_buffer__buffer()** returns the per-cpu raw mmap()'ed underlying
1747  * memory region of the ring buffer.
1748  * This ring buffer can be used to implement a custom events consumer.
1749  * The ring buffer starts with the *struct perf_event_mmap_page*, which
1750  * holds the ring buffer management fields, when accessing the header
1751  * structure it's important to be SMP aware.
1752  * You can refer to *perf_event_read_simple* for a simple example.
1753  * @param pb the perf buffer structure
1754  * @param buf_idx the buffer index to retrieve
1755  * @param buf (out) gets the base pointer of the mmap()'ed memory
1756  * @param buf_size (out) gets the size of the mmap()'ed region
1757  * @return 0 on success, negative error code for failure
1758  */
1759 LIBBPF_API int perf_buffer__buffer(struct perf_buffer *pb, int buf_idx, void **buf,
1760 				   size_t *buf_size);
1761 
1762 struct bpf_prog_linfo;
1763 struct bpf_prog_info;
1764 
1765 LIBBPF_API void bpf_prog_linfo__free(struct bpf_prog_linfo *prog_linfo);
1766 LIBBPF_API struct bpf_prog_linfo *
1767 bpf_prog_linfo__new(const struct bpf_prog_info *info);
1768 LIBBPF_API const struct bpf_line_info *
1769 bpf_prog_linfo__lfind_addr_func(const struct bpf_prog_linfo *prog_linfo,
1770 				__u64 addr, __u32 func_idx, __u32 nr_skip);
1771 LIBBPF_API const struct bpf_line_info *
1772 bpf_prog_linfo__lfind(const struct bpf_prog_linfo *prog_linfo,
1773 		      __u32 insn_off, __u32 nr_skip);
1774 
1775 /*
1776  * Probe for supported system features
1777  *
1778  * Note that running many of these probes in a short amount of time can cause
1779  * the kernel to reach the maximal size of lockable memory allowed for the
1780  * user, causing subsequent probes to fail. In this case, the caller may want
1781  * to adjust that limit with setrlimit().
1782  */
1783 
1784 /**
1785  * @brief **libbpf_probe_bpf_prog_type()** detects if host kernel supports
1786  * BPF programs of a given type.
1787  * @param prog_type BPF program type to detect kernel support for
1788  * @param opts reserved for future extensibility, should be NULL
1789  * @return 1, if given program type is supported; 0, if given program type is
1790  * not supported; negative error code if feature detection failed or can't be
1791  * performed
1792  *
1793  * Make sure the process has required set of CAP_* permissions (or runs as
1794  * root) when performing feature checking.
1795  */
1796 LIBBPF_API int libbpf_probe_bpf_prog_type(enum bpf_prog_type prog_type, const void *opts);
1797 /**
1798  * @brief **libbpf_probe_bpf_map_type()** detects if host kernel supports
1799  * BPF maps of a given type.
1800  * @param map_type BPF map type to detect kernel support for
1801  * @param opts reserved for future extensibility, should be NULL
1802  * @return 1, if given map type is supported; 0, if given map type is
1803  * not supported; negative error code if feature detection failed or can't be
1804  * performed
1805  *
1806  * Make sure the process has required set of CAP_* permissions (or runs as
1807  * root) when performing feature checking.
1808  */
1809 LIBBPF_API int libbpf_probe_bpf_map_type(enum bpf_map_type map_type, const void *opts);
1810 /**
1811  * @brief **libbpf_probe_bpf_helper()** detects if host kernel supports the
1812  * use of a given BPF helper from specified BPF program type.
1813  * @param prog_type BPF program type used to check the support of BPF helper
1814  * @param helper_id BPF helper ID (enum bpf_func_id) to check support for
1815  * @param opts reserved for future extensibility, should be NULL
1816  * @return 1, if given combination of program type and helper is supported; 0,
1817  * if the combination is not supported; negative error code if feature
1818  * detection for provided input arguments failed or can't be performed
1819  *
1820  * Make sure the process has required set of CAP_* permissions (or runs as
1821  * root) when performing feature checking.
1822  */
1823 LIBBPF_API int libbpf_probe_bpf_helper(enum bpf_prog_type prog_type,
1824 				       enum bpf_func_id helper_id, const void *opts);
1825 
1826 /**
1827  * @brief **libbpf_num_possible_cpus()** is a helper function to get the
1828  * number of possible CPUs that the host kernel supports and expects.
1829  * @return number of possible CPUs; or error code on failure
1830  *
1831  * Example usage:
1832  *
1833  *     int ncpus = libbpf_num_possible_cpus();
1834  *     if (ncpus < 0) {
1835  *          // error handling
1836  *     }
1837  *     long values[ncpus];
1838  *     bpf_map_lookup_elem(per_cpu_map_fd, key, values);
1839  */
1840 LIBBPF_API int libbpf_num_possible_cpus(void);
1841 
1842 struct bpf_map_skeleton {
1843 	const char *name;
1844 	struct bpf_map **map;
1845 	void **mmaped;
1846 	struct bpf_link **link;
1847 };
1848 
1849 struct bpf_prog_skeleton {
1850 	const char *name;
1851 	struct bpf_program **prog;
1852 	struct bpf_link **link;
1853 };
1854 
1855 struct bpf_object_skeleton {
1856 	size_t sz; /* size of this struct, for forward/backward compatibility */
1857 
1858 	const char *name;
1859 	const void *data;
1860 	size_t data_sz;
1861 
1862 	struct bpf_object **obj;
1863 
1864 	int map_cnt;
1865 	int map_skel_sz; /* sizeof(struct bpf_map_skeleton) */
1866 	struct bpf_map_skeleton *maps;
1867 
1868 	int prog_cnt;
1869 	int prog_skel_sz; /* sizeof(struct bpf_prog_skeleton) */
1870 	struct bpf_prog_skeleton *progs;
1871 };
1872 
1873 LIBBPF_API int
1874 bpf_object__open_skeleton(struct bpf_object_skeleton *s,
1875 			  const struct bpf_object_open_opts *opts);
1876 LIBBPF_API int bpf_object__load_skeleton(struct bpf_object_skeleton *s);
1877 LIBBPF_API int bpf_object__attach_skeleton(struct bpf_object_skeleton *s);
1878 LIBBPF_API void bpf_object__detach_skeleton(struct bpf_object_skeleton *s);
1879 LIBBPF_API void bpf_object__destroy_skeleton(struct bpf_object_skeleton *s);
1880 
1881 struct bpf_var_skeleton {
1882 	const char *name;
1883 	struct bpf_map **map;
1884 	void **addr;
1885 };
1886 
1887 struct bpf_object_subskeleton {
1888 	size_t sz; /* size of this struct, for forward/backward compatibility */
1889 
1890 	const struct bpf_object *obj;
1891 
1892 	int map_cnt;
1893 	int map_skel_sz; /* sizeof(struct bpf_map_skeleton) */
1894 	struct bpf_map_skeleton *maps;
1895 
1896 	int prog_cnt;
1897 	int prog_skel_sz; /* sizeof(struct bpf_prog_skeleton) */
1898 	struct bpf_prog_skeleton *progs;
1899 
1900 	int var_cnt;
1901 	int var_skel_sz; /* sizeof(struct bpf_var_skeleton) */
1902 	struct bpf_var_skeleton *vars;
1903 };
1904 
1905 LIBBPF_API int
1906 bpf_object__open_subskeleton(struct bpf_object_subskeleton *s);
1907 LIBBPF_API void
1908 bpf_object__destroy_subskeleton(struct bpf_object_subskeleton *s);
1909 
1910 struct gen_loader_opts {
1911 	size_t sz; /* size of this struct, for forward/backward compatibility */
1912 	const char *data;
1913 	const char *insns;
1914 	__u32 data_sz;
1915 	__u32 insns_sz;
1916 	bool gen_hash;
1917 };
1918 
1919 #define gen_loader_opts__last_field gen_hash
1920 LIBBPF_API int bpf_object__gen_loader(struct bpf_object *obj,
1921 				      struct gen_loader_opts *opts);
1922 
1923 enum libbpf_tristate {
1924 	TRI_NO = 0,
1925 	TRI_YES = 1,
1926 	TRI_MODULE = 2,
1927 };
1928 
1929 struct bpf_linker_opts {
1930 	/* size of this struct, for forward/backward compatibility */
1931 	size_t sz;
1932 };
1933 #define bpf_linker_opts__last_field sz
1934 
1935 struct bpf_linker_file_opts {
1936 	/* size of this struct, for forward/backward compatibility */
1937 	size_t sz;
1938 };
1939 #define bpf_linker_file_opts__last_field sz
1940 
1941 struct bpf_linker;
1942 
1943 LIBBPF_API struct bpf_linker *bpf_linker__new(const char *filename, struct bpf_linker_opts *opts);
1944 LIBBPF_API struct bpf_linker *bpf_linker__new_fd(int fd, struct bpf_linker_opts *opts);
1945 LIBBPF_API int bpf_linker__add_file(struct bpf_linker *linker,
1946 				    const char *filename,
1947 				    const struct bpf_linker_file_opts *opts);
1948 LIBBPF_API int bpf_linker__add_fd(struct bpf_linker *linker, int fd,
1949 				  const struct bpf_linker_file_opts *opts);
1950 LIBBPF_API int bpf_linker__add_buf(struct bpf_linker *linker, void *buf, size_t buf_sz,
1951 				   const struct bpf_linker_file_opts *opts);
1952 LIBBPF_API int bpf_linker__finalize(struct bpf_linker *linker);
1953 LIBBPF_API void bpf_linker__free(struct bpf_linker *linker);
1954 
1955 /*
1956  * Custom handling of BPF program's SEC() definitions
1957  */
1958 
1959 struct bpf_prog_load_opts; /* defined in bpf.h */
1960 
1961 /* Called during bpf_object__open() for each recognized BPF program. Callback
1962  * can use various bpf_program__set_*() setters to adjust whatever properties
1963  * are necessary.
1964  */
1965 typedef int (*libbpf_prog_setup_fn_t)(struct bpf_program *prog, long cookie);
1966 
1967 /* Called right before libbpf performs bpf_prog_load() to load BPF program
1968  * into the kernel. Callback can adjust opts as necessary.
1969  */
1970 typedef int (*libbpf_prog_prepare_load_fn_t)(struct bpf_program *prog,
1971 					     struct bpf_prog_load_opts *opts, long cookie);
1972 
1973 /* Called during skeleton attach or through bpf_program__attach(). If
1974  * auto-attach is not supported, callback should return 0 and set link to
1975  * NULL (it's not considered an error during skeleton attach, but it will be
1976  * an error for bpf_program__attach() calls). On error, error should be
1977  * returned directly and link set to NULL. On success, return 0 and set link
1978  * to a valid struct bpf_link.
1979  */
1980 typedef int (*libbpf_prog_attach_fn_t)(const struct bpf_program *prog, long cookie,
1981 				       struct bpf_link **link);
1982 
1983 struct libbpf_prog_handler_opts {
1984 	/* size of this struct, for forward/backward compatibility */
1985 	size_t sz;
1986 	/* User-provided value that is passed to prog_setup_fn,
1987 	 * prog_prepare_load_fn, and prog_attach_fn callbacks. Allows user to
1988 	 * register one set of callbacks for multiple SEC() definitions and
1989 	 * still be able to distinguish them, if necessary. For example,
1990 	 * libbpf itself is using this to pass necessary flags (e.g.,
1991 	 * sleepable flag) to a common internal SEC() handler.
1992 	 */
1993 	long cookie;
1994 	/* BPF program initialization callback (see libbpf_prog_setup_fn_t).
1995 	 * Callback is optional, pass NULL if it's not necessary.
1996 	 */
1997 	libbpf_prog_setup_fn_t prog_setup_fn;
1998 	/* BPF program loading callback (see libbpf_prog_prepare_load_fn_t).
1999 	 * Callback is optional, pass NULL if it's not necessary.
2000 	 */
2001 	libbpf_prog_prepare_load_fn_t prog_prepare_load_fn;
2002 	/* BPF program attach callback (see libbpf_prog_attach_fn_t).
2003 	 * Callback is optional, pass NULL if it's not necessary.
2004 	 */
2005 	libbpf_prog_attach_fn_t prog_attach_fn;
2006 };
2007 #define libbpf_prog_handler_opts__last_field prog_attach_fn
2008 
2009 /**
2010  * @brief **libbpf_register_prog_handler()** registers a custom BPF program
2011  * SEC() handler.
2012  * @param sec section prefix for which custom handler is registered
2013  * @param prog_type BPF program type associated with specified section
2014  * @param exp_attach_type Expected BPF attach type associated with specified section
2015  * @param opts optional cookie, callbacks, and other extra options
2016  * @return Non-negative handler ID is returned on success. This handler ID has
2017  * to be passed to *libbpf_unregister_prog_handler()* to unregister such
2018  * custom handler. Negative error code is returned on error.
2019  *
2020  * *sec* defines which SEC() definitions are handled by this custom handler
2021  * registration. *sec* can have few different forms:
2022  *   - if *sec* is just a plain string (e.g., "abc"), it will match only
2023  *   SEC("abc"). If BPF program specifies SEC("abc/whatever") it will result
2024  *   in an error;
2025  *   - if *sec* is of the form "abc/", proper SEC() form is
2026  *   SEC("abc/something"), where acceptable "something" should be checked by
2027  *   *prog_init_fn* callback, if there are additional restrictions;
2028  *   - if *sec* is of the form "abc+", it will successfully match both
2029  *   SEC("abc") and SEC("abc/whatever") forms;
2030  *   - if *sec* is NULL, custom handler is registered for any BPF program that
2031  *   doesn't match any of the registered (custom or libbpf's own) SEC()
2032  *   handlers. There could be only one such generic custom handler registered
2033  *   at any given time.
2034  *
2035  * All custom handlers (except the one with *sec* == NULL) are processed
2036  * before libbpf's own SEC() handlers. It is allowed to "override" libbpf's
2037  * SEC() handlers by registering custom ones for the same section prefix
2038  * (i.e., it's possible to have custom SEC("perf_event/LLC-load-misses")
2039  * handler).
2040  *
2041  * Note, like much of global libbpf APIs (e.g., libbpf_set_print(),
2042  * libbpf_set_strict_mode(), etc)) these APIs are not thread-safe. User needs
2043  * to ensure synchronization if there is a risk of running this API from
2044  * multiple threads simultaneously.
2045  */
2046 LIBBPF_API int libbpf_register_prog_handler(const char *sec,
2047 					    enum bpf_prog_type prog_type,
2048 					    enum bpf_attach_type exp_attach_type,
2049 					    const struct libbpf_prog_handler_opts *opts);
2050 /**
2051  * @brief *libbpf_unregister_prog_handler()* unregisters previously registered
2052  * custom BPF program SEC() handler.
2053  * @param handler_id handler ID returned by *libbpf_register_prog_handler()*
2054  * after successful registration
2055  * @return 0 on success, negative error code if handler isn't found
2056  *
2057  * Note, like much of global libbpf APIs (e.g., libbpf_set_print(),
2058  * libbpf_set_strict_mode(), etc)) these APIs are not thread-safe. User needs
2059  * to ensure synchronization if there is a risk of running this API from
2060  * multiple threads simultaneously.
2061  */
2062 LIBBPF_API int libbpf_unregister_prog_handler(int handler_id);
2063 
2064 /**
2065  * @brief **bpf_program__clone()** loads a single BPF program from a prepared
2066  * BPF object into the kernel, returning its file descriptor.
2067  *
2068  * The BPF object must have been previously prepared with
2069  * **bpf_object__prepare()**. If @opts is provided, any non-zero field
2070  * overrides the defaults derived from the program/object internals.
2071  * If @opts is NULL, all fields are populated automatically.
2072  *
2073  * The returned FD is owned by the caller and must be closed with close().
2074  *
2075  * @param prog BPF program from a prepared object
2076  * @param opts Optional load options; non-zero fields override defaults
2077  * @return program FD (>= 0) on success; negative error code on failure
2078  */
2079 LIBBPF_API int bpf_program__clone(struct bpf_program *prog, const struct bpf_prog_load_opts *opts);
2080 
2081 #ifdef __cplusplus
2082 } /* extern "C" */
2083 #endif
2084 
2085 #endif /* __LIBBPF_LIBBPF_H */
2086