libbpf.c 296.2 KB
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// SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause)
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/*
 * Common eBPF ELF object loading operations.
 *
 * Copyright (C) 2013-2015 Alexei Starovoitov <ast@kernel.org>
 * Copyright (C) 2015 Wang Nan <wangnan0@huawei.com>
 * Copyright (C) 2015 Huawei Inc.
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 * Copyright (C) 2017 Nicira, Inc.
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 * Copyright (C) 2019 Isovalent, Inc.
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 */

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#ifndef _GNU_SOURCE
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#define _GNU_SOURCE
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#endif
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#include <stdlib.h>
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#include <stdio.h>
#include <stdarg.h>
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#include <libgen.h>
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#include <inttypes.h>
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#include <limits.h>
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#include <string.h>
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#include <unistd.h>
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#include <endian.h>
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#include <fcntl.h>
#include <errno.h>
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#include <ctype.h>
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#include <asm/unistd.h>
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#include <linux/err.h>
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#include <linux/kernel.h>
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#include <linux/bpf.h>
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#include <linux/btf.h>
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#include <linux/filter.h>
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#include <linux/list.h>
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#include <linux/limits.h>
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#include <linux/perf_event.h>
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#include <linux/ring_buffer.h>
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#include <linux/version.h>
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#include <sys/epoll.h>
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#include <sys/ioctl.h>
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#include <sys/mman.h>
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#include <sys/stat.h>
#include <sys/types.h>
#include <sys/vfs.h>
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#include <sys/utsname.h>
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#include <sys/resource.h>
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#include <libelf.h>
#include <gelf.h>
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#include <zlib.h>
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#include "libbpf.h"
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#include "bpf.h"
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#include "btf.h"
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#include "str_error.h"
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#include "libbpf_internal.h"
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#include "hashmap.h"
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#include "bpf_gen_internal.h"
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#ifndef BPF_FS_MAGIC
#define BPF_FS_MAGIC		0xcafe4a11
#endif

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#define BPF_INSN_SZ (sizeof(struct bpf_insn))

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/* vsprintf() in __base_pr() uses nonliteral format string. It may break
 * compilation if user enables corresponding warning. Disable it explicitly.
 */
#pragma GCC diagnostic ignored "-Wformat-nonliteral"

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#define __printf(a, b)	__attribute__((format(printf, a, b)))

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static struct bpf_map *bpf_object__add_map(struct bpf_object *obj);
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static bool prog_is_subprog(const struct bpf_object *obj, const struct bpf_program *prog);
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static int __base_pr(enum libbpf_print_level level, const char *format,
		     va_list args)
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{
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	if (level == LIBBPF_DEBUG)
		return 0;

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	return vfprintf(stderr, format, args);
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}

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static libbpf_print_fn_t __libbpf_pr = __base_pr;
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libbpf_print_fn_t libbpf_set_print(libbpf_print_fn_t fn)
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{
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	libbpf_print_fn_t old_print_fn = __libbpf_pr;

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	__libbpf_pr = fn;
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	return old_print_fn;
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}
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__printf(2, 3)
void libbpf_print(enum libbpf_print_level level, const char *format, ...)
{
	va_list args;

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	if (!__libbpf_pr)
		return;

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	va_start(args, format);
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	__libbpf_pr(level, format, args);
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	va_end(args);
}

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static void pr_perm_msg(int err)
{
	struct rlimit limit;
	char buf[100];

	if (err != -EPERM || geteuid() != 0)
		return;

	err = getrlimit(RLIMIT_MEMLOCK, &limit);
	if (err)
		return;

	if (limit.rlim_cur == RLIM_INFINITY)
		return;

	if (limit.rlim_cur < 1024)
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		snprintf(buf, sizeof(buf), "%zu bytes", (size_t)limit.rlim_cur);
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	else if (limit.rlim_cur < 1024*1024)
		snprintf(buf, sizeof(buf), "%.1f KiB", (double)limit.rlim_cur / 1024);
	else
		snprintf(buf, sizeof(buf), "%.1f MiB", (double)limit.rlim_cur / (1024*1024));

	pr_warn("permission error while running as root; try raising 'ulimit -l'? current value: %s\n",
		buf);
}

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#define STRERR_BUFSIZE  128

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/* Copied from tools/perf/util/util.h */
#ifndef zfree
# define zfree(ptr) ({ free(*ptr); *ptr = NULL; })
#endif

#ifndef zclose
# define zclose(fd) ({			\
	int ___err = 0;			\
	if ((fd) >= 0)			\
		___err = close((fd));	\
	fd = -1;			\
	___err; })
#endif

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static inline __u64 ptr_to_u64(const void *ptr)
{
	return (__u64) (unsigned long) ptr;
}

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/* this goes away in libbpf 1.0 */
enum libbpf_strict_mode libbpf_mode = LIBBPF_STRICT_NONE;

int libbpf_set_strict_mode(enum libbpf_strict_mode mode)
{
	/* __LIBBPF_STRICT_LAST is the last power-of-2 value used + 1, so to
	 * get all possible values we compensate last +1, and then (2*x - 1)
	 * to get the bit mask
	 */
	if (mode != LIBBPF_STRICT_ALL
	    && (mode & ~((__LIBBPF_STRICT_LAST - 1) * 2 - 1)))
		return errno = EINVAL, -EINVAL;

	libbpf_mode = mode;
	return 0;
}

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enum kern_feature_id {
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	/* v4.14: kernel support for program & map names. */
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	FEAT_PROG_NAME,
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	/* v5.2: kernel support for global data sections. */
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	FEAT_GLOBAL_DATA,
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	/* BTF support */
	FEAT_BTF,
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	/* BTF_KIND_FUNC and BTF_KIND_FUNC_PROTO support */
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	FEAT_BTF_FUNC,
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	/* BTF_KIND_VAR and BTF_KIND_DATASEC support */
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	FEAT_BTF_DATASEC,
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	/* BTF_FUNC_GLOBAL is supported */
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	FEAT_BTF_GLOBAL_FUNC,
	/* BPF_F_MMAPABLE is supported for arrays */
	FEAT_ARRAY_MMAP,
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	/* kernel support for expected_attach_type in BPF_PROG_LOAD */
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	FEAT_EXP_ATTACH_TYPE,
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	/* bpf_probe_read_{kernel,user}[_str] helpers */
	FEAT_PROBE_READ_KERN,
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	/* BPF_PROG_BIND_MAP is supported */
	FEAT_PROG_BIND_MAP,
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	/* Kernel support for module BTFs */
	FEAT_MODULE_BTF,
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	/* BTF_KIND_FLOAT support */
	FEAT_BTF_FLOAT,
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	/* BPF perf link support */
	FEAT_PERF_LINK,
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	/* BTF_KIND_DECL_TAG support */
	FEAT_BTF_DECL_TAG,
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	__FEAT_CNT,
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};

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static bool kernel_supports(const struct bpf_object *obj, enum kern_feature_id feat_id);
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enum reloc_type {
	RELO_LD64,
	RELO_CALL,
	RELO_DATA,
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	RELO_EXTERN_VAR,
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	RELO_EXTERN_FUNC,
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	RELO_SUBPROG_ADDR,
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};

struct reloc_desc {
	enum reloc_type type;
	int insn_idx;
	int map_idx;
	int sym_off;
};

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struct bpf_sec_def;

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typedef int (*init_fn_t)(struct bpf_program *prog, long cookie);
typedef int (*preload_fn_t)(struct bpf_program *prog, struct bpf_prog_load_params *attr, long cookie);
typedef struct bpf_link *(*attach_fn_t)(const struct bpf_program *prog, long cookie);
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/* stored as sec_def->cookie for all libbpf-supported SEC()s */
enum sec_def_flags {
	SEC_NONE = 0,
	/* expected_attach_type is optional, if kernel doesn't support that */
	SEC_EXP_ATTACH_OPT = 1,
	/* legacy, only used by libbpf_get_type_names() and
	 * libbpf_attach_type_by_name(), not used by libbpf itself at all.
	 * This used to be associated with cgroup (and few other) BPF programs
	 * that were attachable through BPF_PROG_ATTACH command. Pretty
	 * meaningless nowadays, though.
	 */
	SEC_ATTACHABLE = 2,
	SEC_ATTACHABLE_OPT = SEC_ATTACHABLE | SEC_EXP_ATTACH_OPT,
	/* attachment target is specified through BTF ID in either kernel or
	 * other BPF program's BTF object */
	SEC_ATTACH_BTF = 4,
	/* BPF program type allows sleeping/blocking in kernel */
	SEC_SLEEPABLE = 8,
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	/* allow non-strict prefix matching */
	SEC_SLOPPY_PFX = 16,
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};

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struct bpf_sec_def {
	const char *sec;
	enum bpf_prog_type prog_type;
	enum bpf_attach_type expected_attach_type;
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	long cookie;
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	init_fn_t init_fn;
	preload_fn_t preload_fn;
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	attach_fn_t attach_fn;
};

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/*
 * bpf_prog should be a better name but it has been used in
 * linux/filter.h.
 */
struct bpf_program {
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	const struct bpf_sec_def *sec_def;
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	char *sec_name;
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	size_t sec_idx;
	/* this program's instruction offset (in number of instructions)
	 * within its containing ELF section
	 */
	size_t sec_insn_off;
	/* number of original instructions in ELF section belonging to this
	 * program, not taking into account subprogram instructions possible
	 * appended later during relocation
	 */
	size_t sec_insn_cnt;
	/* Offset (in number of instructions) of the start of instruction
	 * belonging to this BPF program  within its containing main BPF
	 * program. For the entry-point (main) BPF program, this is always
	 * zero. For a sub-program, this gets reset before each of main BPF
	 * programs are processed and relocated and is used to determined
	 * whether sub-program was already appended to the main program, and
	 * if yes, at which instruction offset.
	 */
	size_t sub_insn_off;

	char *name;
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	/* name with / replaced by _; makes recursive pinning
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	 * in bpf_object__pin_programs easier
	 */
	char *pin_name;
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	/* instructions that belong to BPF program; insns[0] is located at
	 * sec_insn_off instruction within its ELF section in ELF file, so
	 * when mapping ELF file instruction index to the local instruction,
	 * one needs to subtract sec_insn_off; and vice versa.
	 */
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	struct bpf_insn *insns;
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	/* actual number of instruction in this BPF program's image; for
	 * entry-point BPF programs this includes the size of main program
	 * itself plus all the used sub-programs, appended at the end
	 */
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	size_t insns_cnt;
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	struct reloc_desc *reloc_desc;
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	int nr_reloc;
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	int log_level;
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	struct {
		int nr;
		int *fds;
	} instances;
	bpf_program_prep_t preprocessor;
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	struct bpf_object *obj;
	void *priv;
	bpf_program_clear_priv_t clear_priv;
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	bool load;
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	bool mark_btf_static;
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	enum bpf_prog_type type;
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	enum bpf_attach_type expected_attach_type;
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	int prog_ifindex;
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	__u32 attach_btf_obj_fd;
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	__u32 attach_btf_id;
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	__u32 attach_prog_fd;
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	void *func_info;
	__u32 func_info_rec_size;
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	__u32 func_info_cnt;
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	void *line_info;
	__u32 line_info_rec_size;
	__u32 line_info_cnt;
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	__u32 prog_flags;
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};

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struct bpf_struct_ops {
	const char *tname;
	const struct btf_type *type;
	struct bpf_program **progs;
	__u32 *kern_func_off;
	/* e.g. struct tcp_congestion_ops in bpf_prog's btf format */
	void *data;
	/* e.g. struct bpf_struct_ops_tcp_congestion_ops in
	 *      btf_vmlinux's format.
	 * struct bpf_struct_ops_tcp_congestion_ops {
	 *	[... some other kernel fields ...]
	 *	struct tcp_congestion_ops data;
	 * }
	 * kern_vdata-size == sizeof(struct bpf_struct_ops_tcp_congestion_ops)
	 * bpf_map__init_kern_struct_ops() will populate the "kern_vdata"
	 * from "data".
	 */
	void *kern_vdata;
	__u32 type_id;
};

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#define DATA_SEC ".data"
#define BSS_SEC ".bss"
#define RODATA_SEC ".rodata"
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#define KCONFIG_SEC ".kconfig"
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#define KSYMS_SEC ".ksyms"
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#define STRUCT_OPS_SEC ".struct_ops"
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enum libbpf_map_type {
	LIBBPF_MAP_UNSPEC,
	LIBBPF_MAP_DATA,
	LIBBPF_MAP_BSS,
	LIBBPF_MAP_RODATA,
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	LIBBPF_MAP_KCONFIG,
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};

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struct bpf_map {
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	char *name;
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	/* real_name is defined for special internal maps (.rodata*,
	 * .data*, .bss, .kconfig) and preserves their original ELF section
	 * name. This is important to be be able to find corresponding BTF
	 * DATASEC information.
	 */
	char *real_name;
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	int fd;
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	int sec_idx;
	size_t sec_offset;
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	int map_ifindex;
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	int inner_map_fd;
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	struct bpf_map_def def;
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	__u32 numa_node;
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	__u32 btf_var_idx;
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	__u32 btf_key_type_id;
	__u32 btf_value_type_id;
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	__u32 btf_vmlinux_value_type_id;
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	void *priv;
	bpf_map_clear_priv_t clear_priv;
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	enum libbpf_map_type libbpf_type;
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	void *mmaped;
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	struct bpf_struct_ops *st_ops;
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	struct bpf_map *inner_map;
	void **init_slots;
	int init_slots_sz;
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	char *pin_path;
	bool pinned;
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	bool reused;
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	__u64 map_extra;
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};

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enum extern_type {
	EXT_UNKNOWN,
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	EXT_KCFG,
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	EXT_KSYM,
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};

enum kcfg_type {
	KCFG_UNKNOWN,
	KCFG_CHAR,
	KCFG_BOOL,
	KCFG_INT,
	KCFG_TRISTATE,
	KCFG_CHAR_ARR,
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};

struct extern_desc {
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	enum extern_type type;
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	int sym_idx;
	int btf_id;
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	int sec_btf_id;
	const char *name;
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	bool is_set;
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	bool is_weak;
	union {
		struct {
			enum kcfg_type type;
			int sz;
			int align;
			int data_off;
			bool is_signed;
		} kcfg;
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		struct {
			unsigned long long addr;
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			/* target btf_id of the corresponding kernel var. */
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			int kernel_btf_obj_fd;
			int kernel_btf_id;
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			/* local btf_id of the ksym extern's type. */
			__u32 type_id;
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			/* BTF fd index to be patched in for insn->off, this is
			 * 0 for vmlinux BTF, index in obj->fd_array for module
			 * BTF
			 */
			__s16 btf_fd_idx;
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		} ksym;
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	};
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};

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static LIST_HEAD(bpf_objects_list);

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struct module_btf {
	struct btf *btf;
	char *name;
	__u32 id;
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	int fd;
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	int fd_array_idx;
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};

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enum sec_type {
	SEC_UNUSED = 0,
	SEC_RELO,
	SEC_BSS,
	SEC_DATA,
	SEC_RODATA,
};

struct elf_sec_desc {
	enum sec_type sec_type;
	Elf64_Shdr *shdr;
	Elf_Data *data;
};

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struct elf_state {
	int fd;
	const void *obj_buf;
	size_t obj_buf_sz;
	Elf *elf;
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	Elf64_Ehdr *ehdr;
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	Elf_Data *symbols;
	Elf_Data *st_ops_data;
	size_t shstrndx; /* section index for section name strings */
	size_t strtabidx;
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	struct elf_sec_desc *secs;
	int sec_cnt;
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	int maps_shndx;
	int btf_maps_shndx;
	__u32 btf_maps_sec_btf_id;
	int text_shndx;
	int symbols_shndx;
	int st_ops_shndx;
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};

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struct bpf_object {
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	char name[BPF_OBJ_NAME_LEN];
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	char license[64];
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	__u32 kern_version;
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	struct bpf_program *programs;
	size_t nr_programs;
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	struct bpf_map *maps;
	size_t nr_maps;
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	size_t maps_cap;
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	char *kconfig;
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	struct extern_desc *externs;
	int nr_extern;
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	int kconfig_map_idx;
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	bool loaded;
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	bool has_subcalls;
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	bool has_rodata;
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	struct bpf_gen *gen_loader;

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	/* Information when doing ELF related work. Only valid if efile.elf is not NULL */
	struct elf_state efile;
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	/*
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	 * All loaded bpf_object are linked in a list, which is
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	 * hidden to caller. bpf_objects__<func> handlers deal with
	 * all objects.
	 */
	struct list_head list;
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	struct btf *btf;
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	struct btf_ext *btf_ext;

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	/* Parse and load BTF vmlinux if any of the programs in the object need
	 * it at load time.
	 */
	struct btf *btf_vmlinux;
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	/* Path to the custom BTF to be used for BPF CO-RE relocations as an
	 * override for vmlinux BTF.
	 */
	char *btf_custom_path;
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	/* vmlinux BTF override for CO-RE relocations */
	struct btf *btf_vmlinux_override;
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	/* Lazily initialized kernel module BTFs */
	struct module_btf *btf_modules;
	bool btf_modules_loaded;
	size_t btf_module_cnt;
	size_t btf_module_cap;
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	void *priv;
	bpf_object_clear_priv_t clear_priv;

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	int *fd_array;
	size_t fd_array_cap;
	size_t fd_array_cnt;

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	char path[];
};

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static const char *elf_sym_str(const struct bpf_object *obj, size_t off);
static const char *elf_sec_str(const struct bpf_object *obj, size_t off);
static Elf_Scn *elf_sec_by_idx(const struct bpf_object *obj, size_t idx);
static Elf_Scn *elf_sec_by_name(const struct bpf_object *obj, const char *name);
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static Elf64_Shdr *elf_sec_hdr(const struct bpf_object *obj, Elf_Scn *scn);
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static const char *elf_sec_name(const struct bpf_object *obj, Elf_Scn *scn);
static Elf_Data *elf_sec_data(const struct bpf_object *obj, Elf_Scn *scn);
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static Elf64_Sym *elf_sym_by_idx(const struct bpf_object *obj, size_t idx);
static Elf64_Rel *elf_rel_by_idx(Elf_Data *data, size_t idx);
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void bpf_program__unload(struct bpf_program *prog)
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{
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	int i;

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	if (!prog)
		return;

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	/*
	 * If the object is opened but the program was never loaded,
	 * it is possible that prog->instances.nr == -1.
	 */
	if (prog->instances.nr > 0) {
		for (i = 0; i < prog->instances.nr; i++)
			zclose(prog->instances.fds[i]);
	} else if (prog->instances.nr != -1) {
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		pr_warn("Internal error: instances.nr is %d\n",
			prog->instances.nr);
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	}

	prog->instances.nr = -1;
	zfree(&prog->instances.fds);
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	zfree(&prog->func_info);
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	zfree(&prog->line_info);
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}

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static void bpf_program__exit(struct bpf_program *prog)
{
	if (!prog)
		return;

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	if (prog->clear_priv)
		prog->clear_priv(prog, prog->priv);

	prog->priv = NULL;
	prog->clear_priv = NULL;

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	bpf_program__unload(prog);
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	zfree(&prog->name);
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	zfree(&prog->sec_name);
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	zfree(&prog->pin_name);
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	zfree(&prog->insns);
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	zfree(&prog->reloc_desc);

	prog->nr_reloc = 0;
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	prog->insns_cnt = 0;
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	prog->sec_idx = -1;
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}

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static char *__bpf_program__pin_name(struct bpf_program *prog)
{
	char *name, *p;

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	if (libbpf_mode & LIBBPF_STRICT_SEC_NAME)
		name = strdup(prog->name);
	else
		name = strdup(prog->sec_name);

	if (!name)
		return NULL;

	p = name;

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	while ((p = strchr(p, '/')))
		*p = '_';

	return name;
}

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static bool insn_is_subprog_call(const struct bpf_insn *insn)
{
	return BPF_CLASS(insn->code) == BPF_JMP &&
	       BPF_OP(insn->code) == BPF_CALL &&
	       BPF_SRC(insn->code) == BPF_K &&
	       insn->src_reg == BPF_PSEUDO_CALL &&
	       insn->dst_reg == 0 &&
	       insn->off == 0;
}

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static bool is_call_insn(const struct bpf_insn *insn)
{
	return insn->code == (BPF_JMP | BPF_CALL);
}

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static bool insn_is_pseudo_func(struct bpf_insn *insn)
{
655
	return is_ldimm64_insn(insn) && insn->src_reg == BPF_PSEUDO_FUNC;
656 657
}

658
static int
659 660 661
bpf_object__init_prog(struct bpf_object *obj, struct bpf_program *prog,
		      const char *name, size_t sec_idx, const char *sec_name,
		      size_t sec_off, void *insn_data, size_t insn_data_sz)
662
{
663 664 665
	if (insn_data_sz == 0 || insn_data_sz % BPF_INSN_SZ || sec_off % BPF_INSN_SZ) {
		pr_warn("sec '%s': corrupted program '%s', offset %zu, size %zu\n",
			sec_name, name, sec_off, insn_data_sz);
666 667 668
		return -EINVAL;
	}

669
	memset(prog, 0, sizeof(*prog));
670 671
	prog->obj = obj;

672 673 674 675 676
	prog->sec_idx = sec_idx;
	prog->sec_insn_off = sec_off / BPF_INSN_SZ;
	prog->sec_insn_cnt = insn_data_sz / BPF_INSN_SZ;
	/* insns_cnt can later be increased by appending used subprograms */
	prog->insns_cnt = prog->sec_insn_cnt;
677

678 679
	prog->type = BPF_PROG_TYPE_UNSPEC;
	prog->load = true;
680

681 682 683
	prog->instances.fds = NULL;
	prog->instances.nr = -1;

684 685
	prog->sec_name = strdup(sec_name);
	if (!prog->sec_name)
686 687 688 689
		goto errout;

	prog->name = strdup(name);
	if (!prog->name)
690 691
		goto errout;

S
Stanislav Fomichev 已提交
692
	prog->pin_name = __bpf_program__pin_name(prog);
693
	if (!prog->pin_name)
S
Stanislav Fomichev 已提交
694 695
		goto errout;

696 697
	prog->insns = malloc(insn_data_sz);
	if (!prog->insns)
698
		goto errout;
699
	memcpy(prog->insns, insn_data, insn_data_sz);
700 701 702

	return 0;
errout:
703
	pr_warn("sec '%s': failed to allocate memory for prog '%s'\n", sec_name, name);
704 705 706 707 708
	bpf_program__exit(prog);
	return -ENOMEM;
}

static int
709 710
bpf_object__add_programs(struct bpf_object *obj, Elf_Data *sec_data,
			 const char *sec_name, int sec_idx)
711
{
712
	Elf_Data *symbols = obj->efile.symbols;
713 714
	struct bpf_program *prog, *progs;
	void *data = sec_data->d_buf;
715 716
	size_t sec_sz = sec_data->d_size, sec_off, prog_sz, nr_syms;
	int nr_progs, err, i;
717
	const char *name;
718
	Elf64_Sym *sym;
719 720 721

	progs = obj->programs;
	nr_progs = obj->nr_programs;
722
	nr_syms = symbols->d_size / sizeof(Elf64_Sym);
723
	sec_off = 0;
724

725
	for (i = 0; i < nr_syms; i++) {
726 727 728
		sym = elf_sym_by_idx(obj, i);

		if (sym->st_shndx != sec_idx)
729
			continue;
730
		if (ELF64_ST_TYPE(sym->st_info) != STT_FUNC)
731
			continue;
732

733 734
		prog_sz = sym->st_size;
		sec_off = sym->st_value;
735

736
		name = elf_sym_str(obj, sym->st_name);
737 738 739 740 741
		if (!name) {
			pr_warn("sec '%s': failed to get symbol name for offset %zu\n",
				sec_name, sec_off);
			return -LIBBPF_ERRNO__FORMAT;
		}
742

743 744 745 746 747
		if (sec_off + prog_sz > sec_sz) {
			pr_warn("sec '%s': program at offset %zu crosses section boundary\n",
				sec_name, sec_off);
			return -LIBBPF_ERRNO__FORMAT;
		}
748

749
		if (sec_idx != obj->efile.text_shndx && ELF64_ST_BIND(sym->st_info) == STB_LOCAL) {
750 751 752 753
			pr_warn("sec '%s': program '%s' is static and not supported\n", sec_name, name);
			return -ENOTSUP;
		}

754 755
		pr_debug("sec '%s': found program '%s' at insn offset %zu (%zu bytes), code size %zu insns (%zu bytes)\n",
			 sec_name, name, sec_off / BPF_INSN_SZ, sec_off, prog_sz / BPF_INSN_SZ, prog_sz);
756

757
		progs = libbpf_reallocarray(progs, nr_progs + 1, sizeof(*progs));
758 759 760 761 762 763 764 765 766
		if (!progs) {
			/*
			 * In this case the original obj->programs
			 * is still valid, so don't need special treat for
			 * bpf_close_object().
			 */
			pr_warn("sec '%s': failed to alloc memory for new program '%s'\n",
				sec_name, name);
			return -ENOMEM;
767
		}
768
		obj->programs = progs;
769

770
		prog = &progs[nr_progs];
771

772 773
		err = bpf_object__init_prog(obj, prog, name, sec_idx, sec_name,
					    sec_off, data + sec_off, prog_sz);
774 775
		if (err)
			return err;
776

777 778 779 780
		/* if function is a global/weak symbol, but has restricted
		 * (STV_HIDDEN or STV_INTERNAL) visibility, mark its BTF FUNC
		 * as static to enable more permissive BPF verification mode
		 * with more outside context available to BPF verifier
781
		 */
782 783 784
		if (ELF64_ST_BIND(sym->st_info) != STB_LOCAL
		    && (ELF64_ST_VISIBILITY(sym->st_other) == STV_HIDDEN
			|| ELF64_ST_VISIBILITY(sym->st_other) == STV_INTERNAL))
785 786
			prog->mark_btf_static = true;

787 788
		nr_progs++;
		obj->nr_programs = nr_progs;
789 790 791 792 793
	}

	return 0;
}

794 795 796 797 798 799 800 801 802 803 804
static __u32 get_kernel_version(void)
{
	__u32 major, minor, patch;
	struct utsname info;

	uname(&info);
	if (sscanf(info.release, "%u.%u.%u", &major, &minor, &patch) != 3)
		return 0;
	return KERNEL_VERSION(major, minor, patch);
}

805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834
static const struct btf_member *
find_member_by_offset(const struct btf_type *t, __u32 bit_offset)
{
	struct btf_member *m;
	int i;

	for (i = 0, m = btf_members(t); i < btf_vlen(t); i++, m++) {
		if (btf_member_bit_offset(t, i) == bit_offset)
			return m;
	}

	return NULL;
}

static const struct btf_member *
find_member_by_name(const struct btf *btf, const struct btf_type *t,
		    const char *name)
{
	struct btf_member *m;
	int i;

	for (i = 0, m = btf_members(t); i < btf_vlen(t); i++, m++) {
		if (!strcmp(btf__name_by_offset(btf, m->name_off), name))
			return m;
	}

	return NULL;
}

#define STRUCT_OPS_VALUE_PREFIX "bpf_struct_ops_"
835 836
static int find_btf_by_prefix_kind(const struct btf *btf, const char *prefix,
				   const char *name, __u32 kind);
837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861

static int
find_struct_ops_kern_types(const struct btf *btf, const char *tname,
			   const struct btf_type **type, __u32 *type_id,
			   const struct btf_type **vtype, __u32 *vtype_id,
			   const struct btf_member **data_member)
{
	const struct btf_type *kern_type, *kern_vtype;
	const struct btf_member *kern_data_member;
	__s32 kern_vtype_id, kern_type_id;
	__u32 i;

	kern_type_id = btf__find_by_name_kind(btf, tname, BTF_KIND_STRUCT);
	if (kern_type_id < 0) {
		pr_warn("struct_ops init_kern: struct %s is not found in kernel BTF\n",
			tname);
		return kern_type_id;
	}
	kern_type = btf__type_by_id(btf, kern_type_id);

	/* Find the corresponding "map_value" type that will be used
	 * in map_update(BPF_MAP_TYPE_STRUCT_OPS).  For example,
	 * find "struct bpf_struct_ops_tcp_congestion_ops" from the
	 * btf_vmlinux.
	 */
862 863
	kern_vtype_id = find_btf_by_prefix_kind(btf, STRUCT_OPS_VALUE_PREFIX,
						tname, BTF_KIND_STRUCT);
864
	if (kern_vtype_id < 0) {
865 866
		pr_warn("struct_ops init_kern: struct %s%s is not found in kernel BTF\n",
			STRUCT_OPS_VALUE_PREFIX, tname);
867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882
		return kern_vtype_id;
	}
	kern_vtype = btf__type_by_id(btf, kern_vtype_id);

	/* Find "struct tcp_congestion_ops" from
	 * struct bpf_struct_ops_tcp_congestion_ops {
	 *	[ ... ]
	 *	struct tcp_congestion_ops data;
	 * }
	 */
	kern_data_member = btf_members(kern_vtype);
	for (i = 0; i < btf_vlen(kern_vtype); i++, kern_data_member++) {
		if (kern_data_member->type == kern_type_id)
			break;
	}
	if (i == btf_vlen(kern_vtype)) {
883 884
		pr_warn("struct_ops init_kern: struct %s data is not found in struct %s%s\n",
			tname, STRUCT_OPS_VALUE_PREFIX, tname);
885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984
		return -EINVAL;
	}

	*type = kern_type;
	*type_id = kern_type_id;
	*vtype = kern_vtype;
	*vtype_id = kern_vtype_id;
	*data_member = kern_data_member;

	return 0;
}

static bool bpf_map__is_struct_ops(const struct bpf_map *map)
{
	return map->def.type == BPF_MAP_TYPE_STRUCT_OPS;
}

/* Init the map's fields that depend on kern_btf */
static int bpf_map__init_kern_struct_ops(struct bpf_map *map,
					 const struct btf *btf,
					 const struct btf *kern_btf)
{
	const struct btf_member *member, *kern_member, *kern_data_member;
	const struct btf_type *type, *kern_type, *kern_vtype;
	__u32 i, kern_type_id, kern_vtype_id, kern_data_off;
	struct bpf_struct_ops *st_ops;
	void *data, *kern_data;
	const char *tname;
	int err;

	st_ops = map->st_ops;
	type = st_ops->type;
	tname = st_ops->tname;
	err = find_struct_ops_kern_types(kern_btf, tname,
					 &kern_type, &kern_type_id,
					 &kern_vtype, &kern_vtype_id,
					 &kern_data_member);
	if (err)
		return err;

	pr_debug("struct_ops init_kern %s: type_id:%u kern_type_id:%u kern_vtype_id:%u\n",
		 map->name, st_ops->type_id, kern_type_id, kern_vtype_id);

	map->def.value_size = kern_vtype->size;
	map->btf_vmlinux_value_type_id = kern_vtype_id;

	st_ops->kern_vdata = calloc(1, kern_vtype->size);
	if (!st_ops->kern_vdata)
		return -ENOMEM;

	data = st_ops->data;
	kern_data_off = kern_data_member->offset / 8;
	kern_data = st_ops->kern_vdata + kern_data_off;

	member = btf_members(type);
	for (i = 0; i < btf_vlen(type); i++, member++) {
		const struct btf_type *mtype, *kern_mtype;
		__u32 mtype_id, kern_mtype_id;
		void *mdata, *kern_mdata;
		__s64 msize, kern_msize;
		__u32 moff, kern_moff;
		__u32 kern_member_idx;
		const char *mname;

		mname = btf__name_by_offset(btf, member->name_off);
		kern_member = find_member_by_name(kern_btf, kern_type, mname);
		if (!kern_member) {
			pr_warn("struct_ops init_kern %s: Cannot find member %s in kernel BTF\n",
				map->name, mname);
			return -ENOTSUP;
		}

		kern_member_idx = kern_member - btf_members(kern_type);
		if (btf_member_bitfield_size(type, i) ||
		    btf_member_bitfield_size(kern_type, kern_member_idx)) {
			pr_warn("struct_ops init_kern %s: bitfield %s is not supported\n",
				map->name, mname);
			return -ENOTSUP;
		}

		moff = member->offset / 8;
		kern_moff = kern_member->offset / 8;

		mdata = data + moff;
		kern_mdata = kern_data + kern_moff;

		mtype = skip_mods_and_typedefs(btf, member->type, &mtype_id);
		kern_mtype = skip_mods_and_typedefs(kern_btf, kern_member->type,
						    &kern_mtype_id);
		if (BTF_INFO_KIND(mtype->info) !=
		    BTF_INFO_KIND(kern_mtype->info)) {
			pr_warn("struct_ops init_kern %s: Unmatched member type %s %u != %u(kernel)\n",
				map->name, mname, BTF_INFO_KIND(mtype->info),
				BTF_INFO_KIND(kern_mtype->info));
			return -ENOTSUP;
		}

		if (btf_is_ptr(mtype)) {
			struct bpf_program *prog;

985 986 987 988
			prog = st_ops->progs[i];
			if (!prog)
				continue;

989 990 991
			kern_mtype = skip_mods_and_typedefs(kern_btf,
							    kern_mtype->type,
							    &kern_mtype_id);
992 993 994 995 996 997 998

			/* mtype->type must be a func_proto which was
			 * guaranteed in bpf_object__collect_st_ops_relos(),
			 * so only check kern_mtype for func_proto here.
			 */
			if (!btf_is_func_proto(kern_mtype)) {
				pr_warn("struct_ops init_kern %s: kernel member %s is not a func ptr\n",
999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044
					map->name, mname);
				return -ENOTSUP;
			}

			prog->attach_btf_id = kern_type_id;
			prog->expected_attach_type = kern_member_idx;

			st_ops->kern_func_off[i] = kern_data_off + kern_moff;

			pr_debug("struct_ops init_kern %s: func ptr %s is set to prog %s from data(+%u) to kern_data(+%u)\n",
				 map->name, mname, prog->name, moff,
				 kern_moff);

			continue;
		}

		msize = btf__resolve_size(btf, mtype_id);
		kern_msize = btf__resolve_size(kern_btf, kern_mtype_id);
		if (msize < 0 || kern_msize < 0 || msize != kern_msize) {
			pr_warn("struct_ops init_kern %s: Error in size of member %s: %zd != %zd(kernel)\n",
				map->name, mname, (ssize_t)msize,
				(ssize_t)kern_msize);
			return -ENOTSUP;
		}

		pr_debug("struct_ops init_kern %s: copy %s %u bytes from data(+%u) to kern_data(+%u)\n",
			 map->name, mname, (unsigned int)msize,
			 moff, kern_moff);
		memcpy(kern_mdata, mdata, msize);
	}

	return 0;
}

static int bpf_object__init_kern_struct_ops_maps(struct bpf_object *obj)
{
	struct bpf_map *map;
	size_t i;
	int err;

	for (i = 0; i < obj->nr_maps; i++) {
		map = &obj->maps[i];

		if (!bpf_map__is_struct_ops(map))
			continue;

1045 1046 1047
		err = bpf_map__init_kern_struct_ops(map, obj->btf,
						    obj->btf_vmlinux);
		if (err)
1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
			return err;
	}

	return 0;
}

static int bpf_object__init_struct_ops_maps(struct bpf_object *obj)
{
	const struct btf_type *type, *datasec;
	const struct btf_var_secinfo *vsi;
	struct bpf_struct_ops *st_ops;
	const char *tname, *var_name;
	__s32 type_id, datasec_id;
	const struct btf *btf;
	struct bpf_map *map;
	__u32 i;

	if (obj->efile.st_ops_shndx == -1)
		return 0;

	btf = obj->btf;
	datasec_id = btf__find_by_name_kind(btf, STRUCT_OPS_SEC,
					    BTF_KIND_DATASEC);
	if (datasec_id < 0) {
		pr_warn("struct_ops init: DATASEC %s not found\n",
			STRUCT_OPS_SEC);
		return -EINVAL;
	}

	datasec = btf__type_by_id(btf, datasec_id);
	vsi = btf_var_secinfos(datasec);
	for (i = 0; i < btf_vlen(datasec); i++, vsi++) {
		type = btf__type_by_id(obj->btf, vsi->type);
		var_name = btf__name_by_offset(obj->btf, type->name_off);

		type_id = btf__resolve_type(obj->btf, vsi->type);
		if (type_id < 0) {
			pr_warn("struct_ops init: Cannot resolve var type_id %u in DATASEC %s\n",
				vsi->type, STRUCT_OPS_SEC);
			return -EINVAL;
		}

		type = btf__type_by_id(obj->btf, type_id);
		tname = btf__name_by_offset(obj->btf, type->name_off);
		if (!tname[0]) {
			pr_warn("struct_ops init: anonymous type is not supported\n");
			return -ENOTSUP;
		}
		if (!btf_is_struct(type)) {
			pr_warn("struct_ops init: %s is not a struct\n", tname);
			return -EINVAL;
		}

		map = bpf_object__add_map(obj);
		if (IS_ERR(map))
			return PTR_ERR(map);

		map->sec_idx = obj->efile.st_ops_shndx;
		map->sec_offset = vsi->offset;
		map->name = strdup(var_name);
		if (!map->name)
			return -ENOMEM;

		map->def.type = BPF_MAP_TYPE_STRUCT_OPS;
		map->def.key_size = sizeof(int);
		map->def.value_size = type->size;
		map->def.max_entries = 1;

		map->st_ops = calloc(1, sizeof(*map->st_ops));
		if (!map->st_ops)
			return -ENOMEM;
		st_ops = map->st_ops;
		st_ops->data = malloc(type->size);
		st_ops->progs = calloc(btf_vlen(type), sizeof(*st_ops->progs));
		st_ops->kern_func_off = malloc(btf_vlen(type) *
					       sizeof(*st_ops->kern_func_off));
		if (!st_ops->data || !st_ops->progs || !st_ops->kern_func_off)
			return -ENOMEM;

		if (vsi->offset + type->size > obj->efile.st_ops_data->d_size) {
			pr_warn("struct_ops init: var %s is beyond the end of DATASEC %s\n",
				var_name, STRUCT_OPS_SEC);
			return -EINVAL;
		}

		memcpy(st_ops->data,
		       obj->efile.st_ops_data->d_buf + vsi->offset,
		       type->size);
		st_ops->tname = tname;
		st_ops->type = type;
		st_ops->type_id = type_id;

		pr_debug("struct_ops init: struct %s(type_id=%u) %s found at offset %u\n",
			 tname, type_id, var_name, vsi->offset);
	}

	return 0;
}

1147
static struct bpf_object *bpf_object__new(const char *path,
1148
					  const void *obj_buf,
1149 1150
					  size_t obj_buf_sz,
					  const char *obj_name)
1151
{
J
Joe Burton 已提交
1152
	bool strict = (libbpf_mode & LIBBPF_STRICT_NO_OBJECT_LIST);
1153
	struct bpf_object *obj;
1154
	char *end;
1155 1156 1157

	obj = calloc(1, sizeof(struct bpf_object) + strlen(path) + 1);
	if (!obj) {
1158
		pr_warn("alloc memory failed for %s\n", path);
1159
		return ERR_PTR(-ENOMEM);
1160 1161 1162
	}

	strcpy(obj->path, path);
1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173
	if (obj_name) {
		strncpy(obj->name, obj_name, sizeof(obj->name) - 1);
		obj->name[sizeof(obj->name) - 1] = 0;
	} else {
		/* Using basename() GNU version which doesn't modify arg. */
		strncpy(obj->name, basename((void *)path),
			sizeof(obj->name) - 1);
		end = strchr(obj->name, '.');
		if (end)
			*end = 0;
	}
1174

1175
	obj->efile.fd = -1;
1176
	/*
1177
	 * Caller of this function should also call
1178 1179 1180 1181 1182 1183
	 * bpf_object__elf_finish() after data collection to return
	 * obj_buf to user. If not, we should duplicate the buffer to
	 * avoid user freeing them before elf finish.
	 */
	obj->efile.obj_buf = obj_buf;
	obj->efile.obj_buf_sz = obj_buf_sz;
1184
	obj->efile.maps_shndx = -1;
1185
	obj->efile.btf_maps_shndx = -1;
1186
	obj->efile.st_ops_shndx = -1;
1187
	obj->kconfig_map_idx = -1;
1188

1189
	obj->kern_version = get_kernel_version();
1190
	obj->loaded = false;
1191 1192

	INIT_LIST_HEAD(&obj->list);
J
Joe Burton 已提交
1193 1194
	if (!strict)
		list_add(&obj->list, &bpf_objects_list);
1195 1196 1197 1198 1199
	return obj;
}

static void bpf_object__elf_finish(struct bpf_object *obj)
{
1200
	if (!obj->efile.elf)
1201 1202 1203 1204 1205 1206
		return;

	if (obj->efile.elf) {
		elf_end(obj->efile.elf);
		obj->efile.elf = NULL;
	}
1207
	obj->efile.symbols = NULL;
1208
	obj->efile.st_ops_data = NULL;
1209

1210 1211
	zfree(&obj->efile.secs);
	obj->efile.sec_cnt = 0;
1212
	zclose(obj->efile.fd);
1213 1214
	obj->efile.obj_buf = NULL;
	obj->efile.obj_buf_sz = 0;
1215 1216 1217 1218
}

static int bpf_object__elf_init(struct bpf_object *obj)
{
1219
	Elf64_Ehdr *ehdr;
1220
	int err = 0;
1221
	Elf *elf;
1222

1223
	if (obj->efile.elf) {
1224
		pr_warn("elf: init internal error\n");
1225
		return -LIBBPF_ERRNO__LIBELF;
1226 1227
	}

1228 1229 1230 1231 1232
	if (obj->efile.obj_buf_sz > 0) {
		/*
		 * obj_buf should have been validated by
		 * bpf_object__open_buffer().
		 */
1233
		elf = elf_memory((char *)obj->efile.obj_buf, obj->efile.obj_buf_sz);
1234
	} else {
1235
		obj->efile.fd = open(obj->path, O_RDONLY | O_CLOEXEC);
1236
		if (obj->efile.fd < 0) {
1237
			char errmsg[STRERR_BUFSIZE], *cp;
1238

1239 1240
			err = -errno;
			cp = libbpf_strerror_r(err, errmsg, sizeof(errmsg));
1241
			pr_warn("elf: failed to open %s: %s\n", obj->path, cp);
1242
			return err;
1243 1244
		}

1245
		elf = elf_begin(obj->efile.fd, ELF_C_READ_MMAP, NULL);
1246 1247
	}

1248
	if (!elf) {
1249
		pr_warn("elf: failed to open %s as ELF file: %s\n", obj->path, elf_errmsg(-1));
1250
		err = -LIBBPF_ERRNO__LIBELF;
1251 1252 1253
		goto errout;
	}

1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269
	obj->efile.elf = elf;

	if (elf_kind(elf) != ELF_K_ELF) {
		err = -LIBBPF_ERRNO__FORMAT;
		pr_warn("elf: '%s' is not a proper ELF object\n", obj->path);
		goto errout;
	}

	if (gelf_getclass(elf) != ELFCLASS64) {
		err = -LIBBPF_ERRNO__FORMAT;
		pr_warn("elf: '%s' is not a 64-bit ELF object\n", obj->path);
		goto errout;
	}

	obj->efile.ehdr = ehdr = elf64_getehdr(elf);
	if (!obj->efile.ehdr) {
1270
		pr_warn("elf: failed to get ELF header from %s: %s\n", obj->path, elf_errmsg(-1));
1271
		err = -LIBBPF_ERRNO__FORMAT;
1272 1273 1274
		goto errout;
	}

1275
	if (elf_getshdrstrndx(elf, &obj->efile.shstrndx)) {
1276 1277 1278 1279 1280 1281 1282
		pr_warn("elf: failed to get section names section index for %s: %s\n",
			obj->path, elf_errmsg(-1));
		err = -LIBBPF_ERRNO__FORMAT;
		goto errout;
	}

	/* Elf is corrupted/truncated, avoid calling elf_strptr. */
1283
	if (!elf_rawdata(elf_getscn(elf, obj->efile.shstrndx), NULL)) {
1284 1285
		pr_warn("elf: failed to get section names strings from %s: %s\n",
			obj->path, elf_errmsg(-1));
1286 1287
		err = -LIBBPF_ERRNO__FORMAT;
		goto errout;
1288 1289
	}

1290
	/* Old LLVM set e_machine to EM_NONE */
1291
	if (ehdr->e_type != ET_REL || (ehdr->e_machine && ehdr->e_machine != EM_BPF)) {
1292
		pr_warn("elf: %s is not a valid eBPF object file\n", obj->path);
1293
		err = -LIBBPF_ERRNO__FORMAT;
1294 1295 1296 1297 1298 1299 1300 1301 1302
		goto errout;
	}

	return 0;
errout:
	bpf_object__elf_finish(obj);
	return err;
}

1303
static int bpf_object__check_endianness(struct bpf_object *obj)
1304
{
I
Ilya Leoshkevich 已提交
1305
#if __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__
1306
	if (obj->efile.ehdr->e_ident[EI_DATA] == ELFDATA2LSB)
1307
		return 0;
I
Ilya Leoshkevich 已提交
1308
#elif __BYTE_ORDER__ == __ORDER_BIG_ENDIAN__
1309
	if (obj->efile.ehdr->e_ident[EI_DATA] == ELFDATA2MSB)
1310 1311 1312 1313
		return 0;
#else
# error "Unrecognized __BYTE_ORDER__"
#endif
1314
	pr_warn("elf: endianness mismatch in %s.\n", obj->path);
1315
	return -LIBBPF_ERRNO__ENDIAN;
1316 1317
}

1318
static int
1319
bpf_object__init_license(struct bpf_object *obj, void *data, size_t size)
1320
{
1321
	memcpy(obj->license, data, min(size, sizeof(obj->license) - 1));
1322 1323 1324 1325
	pr_debug("license of %s is %s\n", obj->path, obj->license);
	return 0;
}

1326 1327 1328 1329 1330 1331
static int
bpf_object__init_kversion(struct bpf_object *obj, void *data, size_t size)
{
	__u32 kver;

	if (size != sizeof(kver)) {
1332
		pr_warn("invalid kver section in %s\n", obj->path);
1333 1334 1335 1336 1337 1338 1339 1340
		return -LIBBPF_ERRNO__FORMAT;
	}
	memcpy(&kver, data, sizeof(kver));
	obj->kern_version = kver;
	pr_debug("kernel version of %s is %x\n", obj->path, obj->kern_version);
	return 0;
}

1341 1342 1343 1344 1345 1346 1347 1348
static bool bpf_map_type__is_map_in_map(enum bpf_map_type type)
{
	if (type == BPF_MAP_TYPE_ARRAY_OF_MAPS ||
	    type == BPF_MAP_TYPE_HASH_OF_MAPS)
		return true;
	return false;
}

1349
static int find_elf_sec_sz(const struct bpf_object *obj, const char *name, __u32 *size)
1350 1351
{
	int ret = -ENOENT;
1352 1353
	Elf_Data *data;
	Elf_Scn *scn;
1354 1355

	*size = 0;
1356
	if (!name)
1357
		return -EINVAL;
1358

1359 1360 1361 1362 1363
	scn = elf_sec_by_name(obj, name);
	data = elf_sec_data(obj, scn);
	if (data) {
		ret = 0; /* found it */
		*size = data->d_size;
1364 1365 1366 1367 1368
	}

	return *size ? 0 : ret;
}

1369
static int find_elf_var_offset(const struct bpf_object *obj, const char *name, __u32 *off)
1370 1371 1372 1373 1374 1375 1376 1377
{
	Elf_Data *symbols = obj->efile.symbols;
	const char *sname;
	size_t si;

	if (!name || !off)
		return -EINVAL;

1378 1379
	for (si = 0; si < symbols->d_size / sizeof(Elf64_Sym); si++) {
		Elf64_Sym *sym = elf_sym_by_idx(obj, si);
1380

1381 1382
		if (ELF64_ST_BIND(sym->st_info) != STB_GLOBAL ||
		    ELF64_ST_TYPE(sym->st_info) != STT_OBJECT)
1383 1384
			continue;

1385
		sname = elf_sym_str(obj, sym->st_name);
1386
		if (!sname) {
1387
			pr_warn("failed to get sym name string for var %s\n", name);
1388 1389 1390
			return -EIO;
		}
		if (strcmp(name, sname) == 0) {
1391
			*off = sym->st_value;
1392 1393 1394 1395 1396 1397 1398
			return 0;
		}
	}

	return -ENOENT;
}

1399
static struct bpf_map *bpf_object__add_map(struct bpf_object *obj)
1400
{
1401 1402 1403 1404 1405 1406 1407
	struct bpf_map *new_maps;
	size_t new_cap;
	int i;

	if (obj->nr_maps < obj->maps_cap)
		return &obj->maps[obj->nr_maps++];

1408
	new_cap = max((size_t)4, obj->maps_cap * 3 / 2);
1409
	new_maps = libbpf_reallocarray(obj->maps, new_cap, sizeof(*obj->maps));
1410
	if (!new_maps) {
1411
		pr_warn("alloc maps for object failed\n");
1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430
		return ERR_PTR(-ENOMEM);
	}

	obj->maps_cap = new_cap;
	obj->maps = new_maps;

	/* zero out new maps */
	memset(obj->maps + obj->nr_maps, 0,
	       (obj->maps_cap - obj->nr_maps) * sizeof(*obj->maps));
	/*
	 * fill all fd with -1 so won't close incorrect fd (fd=0 is stdin)
	 * when failure (zclose won't close negative fd)).
	 */
	for (i = obj->nr_maps; i < obj->maps_cap; i++) {
		obj->maps[i].fd = -1;
		obj->maps[i].inner_map_fd = -1;
	}

	return &obj->maps[obj->nr_maps++];
1431 1432
}

1433 1434 1435 1436 1437
static size_t bpf_map_mmap_sz(const struct bpf_map *map)
{
	long page_sz = sysconf(_SC_PAGE_SIZE);
	size_t map_sz;

1438
	map_sz = (size_t)roundup(map->def.value_size, 8) * map->def.max_entries;
1439 1440 1441 1442
	map_sz = roundup(map_sz, page_sz);
	return map_sz;
}

1443
static char *internal_map_name(struct bpf_object *obj, const char *real_name)
1444
{
1445
	char map_name[BPF_OBJ_NAME_LEN], *p;
1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488
	int pfx_len, sfx_len = max((size_t)7, strlen(real_name));

	/* This is one of the more confusing parts of libbpf for various
	 * reasons, some of which are historical. The original idea for naming
	 * internal names was to include as much of BPF object name prefix as
	 * possible, so that it can be distinguished from similar internal
	 * maps of a different BPF object.
	 * As an example, let's say we have bpf_object named 'my_object_name'
	 * and internal map corresponding to '.rodata' ELF section. The final
	 * map name advertised to user and to the kernel will be
	 * 'my_objec.rodata', taking first 8 characters of object name and
	 * entire 7 characters of '.rodata'.
	 * Somewhat confusingly, if internal map ELF section name is shorter
	 * than 7 characters, e.g., '.bss', we still reserve 7 characters
	 * for the suffix, even though we only have 4 actual characters, and
	 * resulting map will be called 'my_objec.bss', not even using all 15
	 * characters allowed by the kernel. Oh well, at least the truncated
	 * object name is somewhat consistent in this case. But if the map
	 * name is '.kconfig', we'll still have entirety of '.kconfig' added
	 * (8 chars) and thus will be left with only first 7 characters of the
	 * object name ('my_obje'). Happy guessing, user, that the final map
	 * name will be "my_obje.kconfig".
	 * Now, with libbpf starting to support arbitrarily named .rodata.*
	 * and .data.* data sections, it's possible that ELF section name is
	 * longer than allowed 15 chars, so we now need to be careful to take
	 * only up to 15 first characters of ELF name, taking no BPF object
	 * name characters at all. So '.rodata.abracadabra' will result in
	 * '.rodata.abracad' kernel and user-visible name.
	 * We need to keep this convoluted logic intact for .data, .bss and
	 * .rodata maps, but for new custom .data.custom and .rodata.custom
	 * maps we use their ELF names as is, not prepending bpf_object name
	 * in front. We still need to truncate them to 15 characters for the
	 * kernel. Full name can be recovered for such maps by using DATASEC
	 * BTF type associated with such map's value type, though.
	 */
	if (sfx_len >= BPF_OBJ_NAME_LEN)
		sfx_len = BPF_OBJ_NAME_LEN - 1;

	/* if there are two or more dots in map name, it's a custom dot map */
	if (strchr(real_name + 1, '.') != NULL)
		pfx_len = 0;
	else
		pfx_len = min((size_t)BPF_OBJ_NAME_LEN - sfx_len - 1, strlen(obj->name));
1489 1490

	snprintf(map_name, sizeof(map_name), "%.*s%.*s", pfx_len, obj->name,
1491
		 sfx_len, real_name);
1492

1493 1494 1495 1496 1497
	/* sanitise map name to characters allowed by kernel */
	for (p = map_name; *p && p < map_name + sizeof(map_name); p++)
		if (!isalnum(*p) && *p != '_' && *p != '.')
			*p = '_';

1498 1499 1500
	return strdup(map_name);
}

1501
static int
1502
bpf_object__init_internal_map(struct bpf_object *obj, enum libbpf_map_type type,
1503
			      const char *real_name, int sec_idx, void *data, size_t data_sz)
1504
{
1505 1506
	struct bpf_map_def *def;
	struct bpf_map *map;
1507
	int err;
1508 1509 1510 1511

	map = bpf_object__add_map(obj);
	if (IS_ERR(map))
		return PTR_ERR(map);
1512 1513

	map->libbpf_type = type;
1514 1515
	map->sec_idx = sec_idx;
	map->sec_offset = 0;
1516 1517 1518 1519 1520
	map->real_name = strdup(real_name);
	map->name = internal_map_name(obj, real_name);
	if (!map->real_name || !map->name) {
		zfree(&map->real_name);
		zfree(&map->name);
1521 1522 1523
		return -ENOMEM;
	}

1524
	def = &map->def;
1525 1526
	def->type = BPF_MAP_TYPE_ARRAY;
	def->key_size = sizeof(int);
1527
	def->value_size = data_sz;
1528
	def->max_entries = 1;
1529
	def->map_flags = type == LIBBPF_MAP_RODATA || type == LIBBPF_MAP_KCONFIG
1530
			 ? BPF_F_RDONLY_PROG : 0;
1531
	def->map_flags |= BPF_F_MMAPABLE;
1532 1533

	pr_debug("map '%s' (global data): at sec_idx %d, offset %zu, flags %x.\n",
1534
		 map->name, map->sec_idx, map->sec_offset, def->map_flags);
1535

1536 1537 1538 1539 1540 1541 1542
	map->mmaped = mmap(NULL, bpf_map_mmap_sz(map), PROT_READ | PROT_WRITE,
			   MAP_SHARED | MAP_ANONYMOUS, -1, 0);
	if (map->mmaped == MAP_FAILED) {
		err = -errno;
		map->mmaped = NULL;
		pr_warn("failed to alloc map '%s' content buffer: %d\n",
			map->name, err);
1543
		zfree(&map->real_name);
1544 1545
		zfree(&map->name);
		return err;
1546 1547
	}

1548
	if (data)
1549 1550
		memcpy(map->mmaped, data, data_sz);

1551
	pr_debug("map %td is \"%s\"\n", map - obj->maps, map->name);
1552 1553 1554
	return 0;
}

1555 1556
static int bpf_object__init_global_data_maps(struct bpf_object *obj)
{
1557
	struct elf_sec_desc *sec_desc;
1558
	const char *sec_name;
1559
	int err = 0, sec_idx;
1560 1561 1562 1563

	/*
	 * Populate obj->maps with libbpf internal maps.
	 */
1564 1565 1566 1567 1568
	for (sec_idx = 1; sec_idx < obj->efile.sec_cnt; sec_idx++) {
		sec_desc = &obj->efile.secs[sec_idx];

		switch (sec_desc->sec_type) {
		case SEC_DATA:
1569
			sec_name = elf_sec_name(obj, elf_sec_by_idx(obj, sec_idx));
1570
			err = bpf_object__init_internal_map(obj, LIBBPF_MAP_DATA,
1571
							    sec_name, sec_idx,
1572 1573 1574 1575 1576
							    sec_desc->data->d_buf,
							    sec_desc->data->d_size);
			break;
		case SEC_RODATA:
			obj->has_rodata = true;
1577
			sec_name = elf_sec_name(obj, elf_sec_by_idx(obj, sec_idx));
1578
			err = bpf_object__init_internal_map(obj, LIBBPF_MAP_RODATA,
1579
							    sec_name, sec_idx,
1580 1581 1582 1583
							    sec_desc->data->d_buf,
							    sec_desc->data->d_size);
			break;
		case SEC_BSS:
1584
			sec_name = elf_sec_name(obj, elf_sec_by_idx(obj, sec_idx));
1585
			err = bpf_object__init_internal_map(obj, LIBBPF_MAP_BSS,
1586
							    sec_name, sec_idx,
1587 1588 1589 1590 1591 1592 1593
							    NULL,
							    sec_desc->data->d_size);
			break;
		default:
			/* skip */
			break;
		}
1594 1595 1596 1597 1598 1599
		if (err)
			return err;
	}
	return 0;
}

1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612

static struct extern_desc *find_extern_by_name(const struct bpf_object *obj,
					       const void *name)
{
	int i;

	for (i = 0; i < obj->nr_extern; i++) {
		if (strcmp(obj->externs[i].name, name) == 0)
			return &obj->externs[i];
	}
	return NULL;
}

1613 1614
static int set_kcfg_value_tri(struct extern_desc *ext, void *ext_val,
			      char value)
1615
{
1616 1617
	switch (ext->kcfg.type) {
	case KCFG_BOOL:
1618
		if (value == 'm') {
1619
			pr_warn("extern (kcfg) %s=%c should be tristate or char\n",
1620 1621 1622 1623 1624
				ext->name, value);
			return -EINVAL;
		}
		*(bool *)ext_val = value == 'y' ? true : false;
		break;
1625
	case KCFG_TRISTATE:
1626 1627 1628 1629 1630 1631 1632
		if (value == 'y')
			*(enum libbpf_tristate *)ext_val = TRI_YES;
		else if (value == 'm')
			*(enum libbpf_tristate *)ext_val = TRI_MODULE;
		else /* value == 'n' */
			*(enum libbpf_tristate *)ext_val = TRI_NO;
		break;
1633
	case KCFG_CHAR:
1634 1635
		*(char *)ext_val = value;
		break;
1636 1637 1638
	case KCFG_UNKNOWN:
	case KCFG_INT:
	case KCFG_CHAR_ARR:
1639
	default:
1640
		pr_warn("extern (kcfg) %s=%c should be bool, tristate, or char\n",
1641 1642 1643 1644 1645 1646 1647
			ext->name, value);
		return -EINVAL;
	}
	ext->is_set = true;
	return 0;
}

1648 1649
static int set_kcfg_value_str(struct extern_desc *ext, char *ext_val,
			      const char *value)
1650 1651 1652
{
	size_t len;

1653 1654
	if (ext->kcfg.type != KCFG_CHAR_ARR) {
		pr_warn("extern (kcfg) %s=%s should be char array\n", ext->name, value);
1655 1656 1657 1658 1659
		return -EINVAL;
	}

	len = strlen(value);
	if (value[len - 1] != '"') {
1660
		pr_warn("extern (kcfg) '%s': invalid string config '%s'\n",
1661 1662 1663 1664 1665 1666
			ext->name, value);
		return -EINVAL;
	}

	/* strip quotes */
	len -= 2;
1667 1668 1669 1670
	if (len >= ext->kcfg.sz) {
		pr_warn("extern (kcfg) '%s': long string config %s of (%zu bytes) truncated to %d bytes\n",
			ext->name, value, len, ext->kcfg.sz - 1);
		len = ext->kcfg.sz - 1;
1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696
	}
	memcpy(ext_val, value + 1, len);
	ext_val[len] = '\0';
	ext->is_set = true;
	return 0;
}

static int parse_u64(const char *value, __u64 *res)
{
	char *value_end;
	int err;

	errno = 0;
	*res = strtoull(value, &value_end, 0);
	if (errno) {
		err = -errno;
		pr_warn("failed to parse '%s' as integer: %d\n", value, err);
		return err;
	}
	if (*value_end) {
		pr_warn("failed to parse '%s' as integer completely\n", value);
		return -EINVAL;
	}
	return 0;
}

1697
static bool is_kcfg_value_in_range(const struct extern_desc *ext, __u64 v)
1698
{
1699
	int bit_sz = ext->kcfg.sz * 8;
1700

1701
	if (ext->kcfg.sz == 8)
1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715
		return true;

	/* Validate that value stored in u64 fits in integer of `ext->sz`
	 * bytes size without any loss of information. If the target integer
	 * is signed, we rely on the following limits of integer type of
	 * Y bits and subsequent transformation:
	 *
	 *     -2^(Y-1) <= X           <= 2^(Y-1) - 1
	 *            0 <= X + 2^(Y-1) <= 2^Y - 1
	 *            0 <= X + 2^(Y-1) <  2^Y
	 *
	 *  For unsigned target integer, check that all the (64 - Y) bits are
	 *  zero.
	 */
1716
	if (ext->kcfg.is_signed)
1717 1718 1719 1720 1721
		return v + (1ULL << (bit_sz - 1)) < (1ULL << bit_sz);
	else
		return (v >> bit_sz) == 0;
}

1722 1723
static int set_kcfg_value_num(struct extern_desc *ext, void *ext_val,
			      __u64 value)
1724
{
1725 1726
	if (ext->kcfg.type != KCFG_INT && ext->kcfg.type != KCFG_CHAR) {
		pr_warn("extern (kcfg) %s=%llu should be integer\n",
1727
			ext->name, (unsigned long long)value);
1728 1729
		return -EINVAL;
	}
1730 1731 1732
	if (!is_kcfg_value_in_range(ext, value)) {
		pr_warn("extern (kcfg) %s=%llu value doesn't fit in %d bytes\n",
			ext->name, (unsigned long long)value, ext->kcfg.sz);
1733 1734
		return -ERANGE;
	}
1735
	switch (ext->kcfg.sz) {
1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746
		case 1: *(__u8 *)ext_val = value; break;
		case 2: *(__u16 *)ext_val = value; break;
		case 4: *(__u32 *)ext_val = value; break;
		case 8: *(__u64 *)ext_val = value; break;
		default:
			return -EINVAL;
	}
	ext->is_set = true;
	return 0;
}

1747 1748
static int bpf_object__process_kconfig_line(struct bpf_object *obj,
					    char *buf, void *data)
1749 1750
{
	struct extern_desc *ext;
1751
	char *sep, *value;
1752 1753 1754 1755
	int len, err = 0;
	void *ext_val;
	__u64 num;

1756
	if (!str_has_pfx(buf, "CONFIG_"))
1757
		return 0;
1758

1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780
	sep = strchr(buf, '=');
	if (!sep) {
		pr_warn("failed to parse '%s': no separator\n", buf);
		return -EINVAL;
	}

	/* Trim ending '\n' */
	len = strlen(buf);
	if (buf[len - 1] == '\n')
		buf[len - 1] = '\0';
	/* Split on '=' and ensure that a value is present. */
	*sep = '\0';
	if (!sep[1]) {
		*sep = '=';
		pr_warn("failed to parse '%s': no value\n", buf);
		return -EINVAL;
	}

	ext = find_extern_by_name(obj, buf);
	if (!ext || ext->is_set)
		return 0;

1781
	ext_val = data + ext->kcfg.data_off;
1782 1783 1784 1785
	value = sep + 1;

	switch (*value) {
	case 'y': case 'n': case 'm':
1786
		err = set_kcfg_value_tri(ext, ext_val, *value);
1787 1788
		break;
	case '"':
1789
		err = set_kcfg_value_str(ext, ext_val, value);
1790 1791 1792 1793 1794
		break;
	default:
		/* assume integer */
		err = parse_u64(value, &num);
		if (err) {
1795
			pr_warn("extern (kcfg) %s=%s should be integer\n",
1796 1797 1798
				ext->name, value);
			return err;
		}
1799
		err = set_kcfg_value_num(ext, ext_val, num);
1800
		break;
1801
	}
1802 1803
	if (err)
		return err;
1804
	pr_debug("extern (kcfg) %s=%s\n", ext->name, value);
1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826
	return 0;
}

static int bpf_object__read_kconfig_file(struct bpf_object *obj, void *data)
{
	char buf[PATH_MAX];
	struct utsname uts;
	int len, err = 0;
	gzFile file;

	uname(&uts);
	len = snprintf(buf, PATH_MAX, "/boot/config-%s", uts.release);
	if (len < 0)
		return -EINVAL;
	else if (len >= PATH_MAX)
		return -ENAMETOOLONG;

	/* gzopen also accepts uncompressed files. */
	file = gzopen(buf, "r");
	if (!file)
		file = gzopen("/proc/config.gz", "r");

1827
	if (!file) {
1828
		pr_warn("failed to open system Kconfig\n");
1829 1830 1831 1832
		return -ENOENT;
	}

	while (gzgets(file, buf, sizeof(buf))) {
1833 1834 1835 1836
		err = bpf_object__process_kconfig_line(obj, buf, data);
		if (err) {
			pr_warn("error parsing system Kconfig line '%s': %d\n",
				buf, err);
1837 1838
			goto out;
		}
1839
	}
1840

1841 1842 1843 1844
out:
	gzclose(file);
	return err;
}
1845

1846 1847 1848 1849 1850 1851
static int bpf_object__read_kconfig_mem(struct bpf_object *obj,
					const char *config, void *data)
{
	char buf[PATH_MAX];
	int err = 0;
	FILE *file;
1852

1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864
	file = fmemopen((void *)config, strlen(config), "r");
	if (!file) {
		err = -errno;
		pr_warn("failed to open in-memory Kconfig: %d\n", err);
		return err;
	}

	while (fgets(buf, sizeof(buf), file)) {
		err = bpf_object__process_kconfig_line(obj, buf, data);
		if (err) {
			pr_warn("error parsing in-memory Kconfig line '%s': %d\n",
				buf, err);
1865 1866 1867 1868
			break;
		}
	}

1869
	fclose(file);
1870 1871 1872
	return err;
}

1873
static int bpf_object__init_kconfig_map(struct bpf_object *obj)
1874
{
1875
	struct extern_desc *last_ext = NULL, *ext;
1876
	size_t map_sz;
1877
	int i, err;
1878

1879 1880 1881 1882 1883
	for (i = 0; i < obj->nr_extern; i++) {
		ext = &obj->externs[i];
		if (ext->type == EXT_KCFG)
			last_ext = ext;
	}
1884

1885 1886
	if (!last_ext)
		return 0;
1887

1888
	map_sz = last_ext->kcfg.data_off + last_ext->kcfg.sz;
1889
	err = bpf_object__init_internal_map(obj, LIBBPF_MAP_KCONFIG,
1890
					    ".kconfig", obj->efile.symbols_shndx,
1891 1892 1893 1894
					    NULL, map_sz);
	if (err)
		return err;

1895
	obj->kconfig_map_idx = obj->nr_maps - 1;
1896 1897 1898 1899

	return 0;
}

1900
static int bpf_object__init_user_maps(struct bpf_object *obj, bool strict)
1901 1902
{
	Elf_Data *symbols = obj->efile.symbols;
1903
	int i, map_def_sz = 0, nr_maps = 0, nr_syms;
1904
	Elf_Data *data = NULL;
1905 1906 1907 1908
	Elf_Scn *scn;

	if (obj->efile.maps_shndx < 0)
		return 0;
1909

E
Eric Leblond 已提交
1910 1911 1912
	if (!symbols)
		return -EINVAL;

1913 1914
	scn = elf_sec_by_idx(obj, obj->efile.maps_shndx);
	data = elf_sec_data(obj, scn);
1915
	if (!scn || !data) {
1916 1917
		pr_warn("elf: failed to get legacy map definitions for %s\n",
			obj->path);
1918
		return -EINVAL;
E
Eric Leblond 已提交
1919
	}
1920

E
Eric Leblond 已提交
1921 1922 1923 1924 1925 1926 1927
	/*
	 * Count number of maps. Each map has a name.
	 * Array of maps is not supported: only the first element is
	 * considered.
	 *
	 * TODO: Detect array of map and report error.
	 */
1928
	nr_syms = symbols->d_size / sizeof(Elf64_Sym);
1929
	for (i = 0; i < nr_syms; i++) {
1930
		Elf64_Sym *sym = elf_sym_by_idx(obj, i);
E
Eric Leblond 已提交
1931

1932
		if (sym->st_shndx != obj->efile.maps_shndx)
E
Eric Leblond 已提交
1933
			continue;
1934
		if (ELF64_ST_TYPE(sym->st_info) == STT_SECTION)
1935
			continue;
E
Eric Leblond 已提交
1936 1937
		nr_maps++;
	}
1938
	/* Assume equally sized map definitions */
1939 1940
	pr_debug("elf: found %d legacy map definitions (%zd bytes) in %s\n",
		 nr_maps, data->d_size, obj->path);
1941

1942
	if (!data->d_size || nr_maps == 0 || (data->d_size % nr_maps) != 0) {
1943 1944
		pr_warn("elf: unable to determine legacy map definition size in %s\n",
			obj->path);
1945
		return -EINVAL;
1946
	}
1947
	map_def_sz = data->d_size / nr_maps;
E
Eric Leblond 已提交
1948

1949 1950
	/* Fill obj->maps using data in "maps" section.  */
	for (i = 0; i < nr_syms; i++) {
1951
		Elf64_Sym *sym = elf_sym_by_idx(obj, i);
1952
		const char *map_name;
E
Eric Leblond 已提交
1953
		struct bpf_map_def *def;
1954
		struct bpf_map *map;
1955

1956
		if (sym->st_shndx != obj->efile.maps_shndx)
1957
			continue;
1958
		if (ELF64_ST_TYPE(sym->st_info) == STT_SECTION)
1959
			continue;
1960

1961 1962 1963 1964
		map = bpf_object__add_map(obj);
		if (IS_ERR(map))
			return PTR_ERR(map);

1965
		map_name = elf_sym_str(obj, sym->st_name);
1966
		if (!map_name) {
1967 1968
			pr_warn("failed to get map #%d name sym string for obj %s\n",
				i, obj->path);
1969 1970
			return -LIBBPF_ERRNO__FORMAT;
		}
1971

1972
		if (ELF64_ST_BIND(sym->st_info) == STB_LOCAL) {
A
Andrii Nakryiko 已提交
1973 1974 1975 1976
			pr_warn("map '%s' (legacy): static maps are not supported\n", map_name);
			return -ENOTSUP;
		}

1977
		map->libbpf_type = LIBBPF_MAP_UNSPEC;
1978 1979
		map->sec_idx = sym->st_shndx;
		map->sec_offset = sym->st_value;
1980 1981
		pr_debug("map '%s' (legacy): at sec_idx %d, offset %zu.\n",
			 map_name, map->sec_idx, map->sec_offset);
1982
		if (sym->st_value + map_def_sz > data->d_size) {
1983 1984
			pr_warn("corrupted maps section in %s: last map \"%s\" too small\n",
				obj->path, map_name);
E
Eric Leblond 已提交
1985
			return -EINVAL;
1986
		}
E
Eric Leblond 已提交
1987

1988 1989
		map->name = strdup(map_name);
		if (!map->name) {
1990
			pr_warn("map '%s': failed to alloc map name\n", map_name);
1991 1992
			return -ENOMEM;
		}
1993
		pr_debug("map %d is \"%s\"\n", i, map->name);
1994
		def = (struct bpf_map_def *)(data->d_buf + sym->st_value);
1995 1996 1997 1998 1999 2000 2001
		/*
		 * If the definition of the map in the object file fits in
		 * bpf_map_def, copy it.  Any extra fields in our version
		 * of bpf_map_def will default to zero as a result of the
		 * calloc above.
		 */
		if (map_def_sz <= sizeof(struct bpf_map_def)) {
2002
			memcpy(&map->def, def, map_def_sz);
2003 2004 2005 2006 2007 2008 2009 2010
		} else {
			/*
			 * Here the map structure being read is bigger than what
			 * we expect, truncate if the excess bits are all zero.
			 * If they are not zero, reject this map as
			 * incompatible.
			 */
			char *b;
2011

2012 2013 2014
			for (b = ((char *)def) + sizeof(struct bpf_map_def);
			     b < ((char *)def) + map_def_sz; b++) {
				if (*b != 0) {
2015
					pr_warn("maps section in %s: \"%s\" has unrecognized, non-zero options\n",
2016
						obj->path, map_name);
2017 2018
					if (strict)
						return -EINVAL;
2019 2020
				}
			}
2021
			memcpy(&map->def, def, sizeof(struct bpf_map_def));
2022
		}
2023
	}
2024 2025
	return 0;
}
E
Eric Leblond 已提交
2026

2027
const struct btf_type *
2028
skip_mods_and_typedefs(const struct btf *btf, __u32 id, __u32 *res_id)
2029 2030
{
	const struct btf_type *t = btf__type_by_id(btf, id);
2031

2032 2033 2034 2035 2036 2037 2038
	if (res_id)
		*res_id = id;

	while (btf_is_mod(t) || btf_is_typedef(t)) {
		if (res_id)
			*res_id = t->type;
		t = btf__type_by_id(btf, t->type);
2039
	}
2040 2041

	return t;
2042 2043
}

2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057
static const struct btf_type *
resolve_func_ptr(const struct btf *btf, __u32 id, __u32 *res_id)
{
	const struct btf_type *t;

	t = skip_mods_and_typedefs(btf, id, NULL);
	if (!btf_is_ptr(t))
		return NULL;

	t = skip_mods_and_typedefs(btf, t->type, res_id);

	return btf_is_func_proto(t) ? t : NULL;
}

2058
static const char *__btf_kind_str(__u16 kind)
2059
{
2060
	switch (kind) {
2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076
	case BTF_KIND_UNKN: return "void";
	case BTF_KIND_INT: return "int";
	case BTF_KIND_PTR: return "ptr";
	case BTF_KIND_ARRAY: return "array";
	case BTF_KIND_STRUCT: return "struct";
	case BTF_KIND_UNION: return "union";
	case BTF_KIND_ENUM: return "enum";
	case BTF_KIND_FWD: return "fwd";
	case BTF_KIND_TYPEDEF: return "typedef";
	case BTF_KIND_VOLATILE: return "volatile";
	case BTF_KIND_CONST: return "const";
	case BTF_KIND_RESTRICT: return "restrict";
	case BTF_KIND_FUNC: return "func";
	case BTF_KIND_FUNC_PROTO: return "func_proto";
	case BTF_KIND_VAR: return "var";
	case BTF_KIND_DATASEC: return "datasec";
2077
	case BTF_KIND_FLOAT: return "float";
2078
	case BTF_KIND_DECL_TAG: return "decl_tag";
2079 2080 2081 2082
	default: return "unknown";
	}
}

2083
const char *btf_kind_str(const struct btf_type *t)
2084 2085 2086 2087
{
	return __btf_kind_str(btf_kind(t));
}

2088 2089 2090 2091 2092 2093 2094 2095
/*
 * Fetch integer attribute of BTF map definition. Such attributes are
 * represented using a pointer to an array, in which dimensionality of array
 * encodes specified integer value. E.g., int (*type)[BPF_MAP_TYPE_ARRAY];
 * encodes `type => BPF_MAP_TYPE_ARRAY` key/value pair completely using BTF
 * type definition, while using only sizeof(void *) space in ELF data section.
 */
static bool get_map_field_int(const char *map_name, const struct btf *btf,
2096 2097
			      const struct btf_member *m, __u32 *res)
{
2098
	const struct btf_type *t = skip_mods_and_typedefs(btf, m->type, NULL);
2099
	const char *name = btf__name_by_offset(btf, m->name_off);
2100 2101
	const struct btf_array *arr_info;
	const struct btf_type *arr_t;
2102

2103
	if (!btf_is_ptr(t)) {
2104 2105
		pr_warn("map '%s': attr '%s': expected PTR, got %s.\n",
			map_name, name, btf_kind_str(t));
2106 2107
		return false;
	}
2108 2109 2110

	arr_t = btf__type_by_id(btf, t->type);
	if (!arr_t) {
2111 2112
		pr_warn("map '%s': attr '%s': type [%u] not found.\n",
			map_name, name, t->type);
2113 2114
		return false;
	}
2115
	if (!btf_is_array(arr_t)) {
2116 2117
		pr_warn("map '%s': attr '%s': expected ARRAY, got %s.\n",
			map_name, name, btf_kind_str(arr_t));
2118 2119
		return false;
	}
2120
	arr_info = btf_array(arr_t);
2121
	*res = arr_info->nelems;
2122 2123 2124
	return true;
}

2125 2126 2127
static int build_map_pin_path(struct bpf_map *map, const char *path)
{
	char buf[PATH_MAX];
2128
	int len;
2129 2130 2131 2132 2133 2134 2135 2136 2137 2138

	if (!path)
		path = "/sys/fs/bpf";

	len = snprintf(buf, PATH_MAX, "%s/%s", path, bpf_map__name(map));
	if (len < 0)
		return -EINVAL;
	else if (len >= PATH_MAX)
		return -ENAMETOOLONG;

2139
	return bpf_map__set_pin_path(map, buf);
2140 2141
}

2142 2143 2144
int parse_btf_map_def(const char *map_name, struct btf *btf,
		      const struct btf_type *def_t, bool strict,
		      struct btf_map_def *map_def, struct btf_map_def *inner_def)
2145
{
2146
	const struct btf_type *t;
2147
	const struct btf_member *m;
2148
	bool is_inner = inner_def == NULL;
2149 2150
	int vlen, i;

2151 2152
	vlen = btf_vlen(def_t);
	m = btf_members(def_t);
2153
	for (i = 0; i < vlen; i++, m++) {
2154
		const char *name = btf__name_by_offset(btf, m->name_off);
2155 2156

		if (!name) {
2157
			pr_warn("map '%s': invalid field #%d.\n", map_name, i);
2158 2159 2160
			return -EINVAL;
		}
		if (strcmp(name, "type") == 0) {
2161
			if (!get_map_field_int(map_name, btf, m, &map_def->map_type))
2162
				return -EINVAL;
2163
			map_def->parts |= MAP_DEF_MAP_TYPE;
2164
		} else if (strcmp(name, "max_entries") == 0) {
2165
			if (!get_map_field_int(map_name, btf, m, &map_def->max_entries))
2166
				return -EINVAL;
2167
			map_def->parts |= MAP_DEF_MAX_ENTRIES;
2168
		} else if (strcmp(name, "map_flags") == 0) {
2169
			if (!get_map_field_int(map_name, btf, m, &map_def->map_flags))
2170
				return -EINVAL;
2171
			map_def->parts |= MAP_DEF_MAP_FLAGS;
2172
		} else if (strcmp(name, "numa_node") == 0) {
2173
			if (!get_map_field_int(map_name, btf, m, &map_def->numa_node))
2174
				return -EINVAL;
2175
			map_def->parts |= MAP_DEF_NUMA_NODE;
2176 2177 2178
		} else if (strcmp(name, "key_size") == 0) {
			__u32 sz;

2179
			if (!get_map_field_int(map_name, btf, m, &sz))
2180
				return -EINVAL;
2181
			if (map_def->key_size && map_def->key_size != sz) {
2182
				pr_warn("map '%s': conflicting key size %u != %u.\n",
2183
					map_name, map_def->key_size, sz);
2184 2185
				return -EINVAL;
			}
2186 2187
			map_def->key_size = sz;
			map_def->parts |= MAP_DEF_KEY_SIZE;
2188 2189 2190
		} else if (strcmp(name, "key") == 0) {
			__s64 sz;

2191
			t = btf__type_by_id(btf, m->type);
2192
			if (!t) {
2193
				pr_warn("map '%s': key type [%d] not found.\n",
2194
					map_name, m->type);
2195 2196
				return -EINVAL;
			}
2197
			if (!btf_is_ptr(t)) {
2198
				pr_warn("map '%s': key spec is not PTR: %s.\n",
2199
					map_name, btf_kind_str(t));
2200 2201
				return -EINVAL;
			}
2202
			sz = btf__resolve_size(btf, t->type);
2203
			if (sz < 0) {
2204
				pr_warn("map '%s': can't determine key size for type [%u]: %zd.\n",
2205
					map_name, t->type, (ssize_t)sz);
2206 2207
				return sz;
			}
2208
			if (map_def->key_size && map_def->key_size != sz) {
2209
				pr_warn("map '%s': conflicting key size %u != %zd.\n",
2210
					map_name, map_def->key_size, (ssize_t)sz);
2211 2212
				return -EINVAL;
			}
2213 2214 2215
			map_def->key_size = sz;
			map_def->key_type_id = t->type;
			map_def->parts |= MAP_DEF_KEY_SIZE | MAP_DEF_KEY_TYPE;
2216 2217 2218
		} else if (strcmp(name, "value_size") == 0) {
			__u32 sz;

2219
			if (!get_map_field_int(map_name, btf, m, &sz))
2220
				return -EINVAL;
2221
			if (map_def->value_size && map_def->value_size != sz) {
2222
				pr_warn("map '%s': conflicting value size %u != %u.\n",
2223
					map_name, map_def->value_size, sz);
2224 2225
				return -EINVAL;
			}
2226 2227
			map_def->value_size = sz;
			map_def->parts |= MAP_DEF_VALUE_SIZE;
2228 2229 2230
		} else if (strcmp(name, "value") == 0) {
			__s64 sz;

2231
			t = btf__type_by_id(btf, m->type);
2232
			if (!t) {
2233
				pr_warn("map '%s': value type [%d] not found.\n",
2234
					map_name, m->type);
2235 2236
				return -EINVAL;
			}
2237
			if (!btf_is_ptr(t)) {
2238
				pr_warn("map '%s': value spec is not PTR: %s.\n",
2239
					map_name, btf_kind_str(t));
2240 2241
				return -EINVAL;
			}
2242
			sz = btf__resolve_size(btf, t->type);
2243
			if (sz < 0) {
2244
				pr_warn("map '%s': can't determine value size for type [%u]: %zd.\n",
2245
					map_name, t->type, (ssize_t)sz);
2246 2247
				return sz;
			}
2248
			if (map_def->value_size && map_def->value_size != sz) {
2249
				pr_warn("map '%s': conflicting value size %u != %zd.\n",
2250
					map_name, map_def->value_size, (ssize_t)sz);
2251 2252
				return -EINVAL;
			}
2253 2254 2255
			map_def->value_size = sz;
			map_def->value_type_id = t->type;
			map_def->parts |= MAP_DEF_VALUE_SIZE | MAP_DEF_VALUE_TYPE;
2256 2257
		}
		else if (strcmp(name, "values") == 0) {
2258
			char inner_map_name[128];
2259 2260 2261 2262
			int err;

			if (is_inner) {
				pr_warn("map '%s': multi-level inner maps not supported.\n",
2263
					map_name);
2264 2265 2266 2267
				return -ENOTSUP;
			}
			if (i != vlen - 1) {
				pr_warn("map '%s': '%s' member should be last.\n",
2268
					map_name, name);
2269 2270
				return -EINVAL;
			}
2271
			if (!bpf_map_type__is_map_in_map(map_def->map_type)) {
2272
				pr_warn("map '%s': should be map-in-map.\n",
2273
					map_name);
2274 2275
				return -ENOTSUP;
			}
2276
			if (map_def->value_size && map_def->value_size != 4) {
2277
				pr_warn("map '%s': conflicting value size %u != 4.\n",
2278
					map_name, map_def->value_size);
2279 2280
				return -EINVAL;
			}
2281 2282
			map_def->value_size = 4;
			t = btf__type_by_id(btf, m->type);
2283 2284
			if (!t) {
				pr_warn("map '%s': map-in-map inner type [%d] not found.\n",
2285
					map_name, m->type);
2286 2287 2288 2289
				return -EINVAL;
			}
			if (!btf_is_array(t) || btf_array(t)->nelems) {
				pr_warn("map '%s': map-in-map inner spec is not a zero-sized array.\n",
2290
					map_name);
2291 2292
				return -EINVAL;
			}
2293
			t = skip_mods_and_typedefs(btf, btf_array(t)->type, NULL);
2294
			if (!btf_is_ptr(t)) {
2295
				pr_warn("map '%s': map-in-map inner def is of unexpected kind %s.\n",
2296
					map_name, btf_kind_str(t));
2297 2298
				return -EINVAL;
			}
2299
			t = skip_mods_and_typedefs(btf, t->type, NULL);
2300
			if (!btf_is_struct(t)) {
2301
				pr_warn("map '%s': map-in-map inner def is of unexpected kind %s.\n",
2302
					map_name, btf_kind_str(t));
2303 2304 2305
				return -EINVAL;
			}

2306 2307
			snprintf(inner_map_name, sizeof(inner_map_name), "%s.inner", map_name);
			err = parse_btf_map_def(inner_map_name, btf, t, strict, inner_def, NULL);
2308 2309
			if (err)
				return err;
2310 2311

			map_def->parts |= MAP_DEF_INNER_MAP;
2312 2313 2314
		} else if (strcmp(name, "pinning") == 0) {
			__u32 val;

2315
			if (is_inner) {
2316
				pr_warn("map '%s': inner def can't be pinned.\n", map_name);
2317 2318
				return -EINVAL;
			}
2319
			if (!get_map_field_int(map_name, btf, m, &val))
2320
				return -EINVAL;
2321
			if (val != LIBBPF_PIN_NONE && val != LIBBPF_PIN_BY_NAME) {
2322
				pr_warn("map '%s': invalid pinning value %u.\n",
2323
					map_name, val);
2324 2325
				return -EINVAL;
			}
2326 2327
			map_def->pinning = val;
			map_def->parts |= MAP_DEF_PINNING;
2328 2329 2330 2331 2332 2333 2334
		} else if (strcmp(name, "map_extra") == 0) {
			__u32 map_extra;

			if (!get_map_field_int(map_name, btf, m, &map_extra))
				return -EINVAL;
			map_def->map_extra = map_extra;
			map_def->parts |= MAP_DEF_MAP_EXTRA;
2335 2336
		} else {
			if (strict) {
2337
				pr_warn("map '%s': unknown field '%s'.\n", map_name, name);
2338 2339
				return -ENOTSUP;
			}
2340
			pr_debug("map '%s': ignoring unknown field '%s'.\n", map_name, name);
2341 2342 2343
		}
	}

2344 2345
	if (map_def->map_type == BPF_MAP_TYPE_UNSPEC) {
		pr_warn("map '%s': map type isn't specified.\n", map_name);
2346 2347 2348 2349 2350 2351
		return -EINVAL;
	}

	return 0;
}

2352 2353 2354 2355 2356 2357 2358
static void fill_map_from_def(struct bpf_map *map, const struct btf_map_def *def)
{
	map->def.type = def->map_type;
	map->def.key_size = def->key_size;
	map->def.value_size = def->value_size;
	map->def.max_entries = def->max_entries;
	map->def.map_flags = def->map_flags;
2359
	map->map_extra = def->map_extra;
2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382

	map->numa_node = def->numa_node;
	map->btf_key_type_id = def->key_type_id;
	map->btf_value_type_id = def->value_type_id;

	if (def->parts & MAP_DEF_MAP_TYPE)
		pr_debug("map '%s': found type = %u.\n", map->name, def->map_type);

	if (def->parts & MAP_DEF_KEY_TYPE)
		pr_debug("map '%s': found key [%u], sz = %u.\n",
			 map->name, def->key_type_id, def->key_size);
	else if (def->parts & MAP_DEF_KEY_SIZE)
		pr_debug("map '%s': found key_size = %u.\n", map->name, def->key_size);

	if (def->parts & MAP_DEF_VALUE_TYPE)
		pr_debug("map '%s': found value [%u], sz = %u.\n",
			 map->name, def->value_type_id, def->value_size);
	else if (def->parts & MAP_DEF_VALUE_SIZE)
		pr_debug("map '%s': found value_size = %u.\n", map->name, def->value_size);

	if (def->parts & MAP_DEF_MAX_ENTRIES)
		pr_debug("map '%s': found max_entries = %u.\n", map->name, def->max_entries);
	if (def->parts & MAP_DEF_MAP_FLAGS)
2383 2384 2385 2386
		pr_debug("map '%s': found map_flags = 0x%x.\n", map->name, def->map_flags);
	if (def->parts & MAP_DEF_MAP_EXTRA)
		pr_debug("map '%s': found map_extra = 0x%llx.\n", map->name,
			 (unsigned long long)def->map_extra);
2387 2388 2389 2390 2391 2392 2393 2394 2395
	if (def->parts & MAP_DEF_PINNING)
		pr_debug("map '%s': found pinning = %u.\n", map->name, def->pinning);
	if (def->parts & MAP_DEF_NUMA_NODE)
		pr_debug("map '%s': found numa_node = %u.\n", map->name, def->numa_node);

	if (def->parts & MAP_DEF_INNER_MAP)
		pr_debug("map '%s': found inner map definition.\n", map->name);
}

A
Andrii Nakryiko 已提交
2396 2397 2398 2399 2400 2401 2402 2403 2404 2405
static const char *btf_var_linkage_str(__u32 linkage)
{
	switch (linkage) {
	case BTF_VAR_STATIC: return "static";
	case BTF_VAR_GLOBAL_ALLOCATED: return "global";
	case BTF_VAR_GLOBAL_EXTERN: return "extern";
	default: return "unknown";
	}
}

2406 2407 2408 2409 2410 2411
static int bpf_object__init_user_btf_map(struct bpf_object *obj,
					 const struct btf_type *sec,
					 int var_idx, int sec_idx,
					 const Elf_Data *data, bool strict,
					 const char *pin_root_path)
{
2412
	struct btf_map_def map_def = {}, inner_def = {};
2413 2414 2415 2416 2417
	const struct btf_type *var, *def;
	const struct btf_var_secinfo *vi;
	const struct btf_var *var_extra;
	const char *map_name;
	struct bpf_map *map;
2418
	int err;
2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433

	vi = btf_var_secinfos(sec) + var_idx;
	var = btf__type_by_id(obj->btf, vi->type);
	var_extra = btf_var(var);
	map_name = btf__name_by_offset(obj->btf, var->name_off);

	if (map_name == NULL || map_name[0] == '\0') {
		pr_warn("map #%d: empty name.\n", var_idx);
		return -EINVAL;
	}
	if ((__u64)vi->offset + vi->size > data->d_size) {
		pr_warn("map '%s' BTF data is corrupted.\n", map_name);
		return -EINVAL;
	}
	if (!btf_is_var(var)) {
2434 2435
		pr_warn("map '%s': unexpected var kind %s.\n",
			map_name, btf_kind_str(var));
2436 2437
		return -EINVAL;
	}
A
Andrii Nakryiko 已提交
2438 2439 2440
	if (var_extra->linkage != BTF_VAR_GLOBAL_ALLOCATED) {
		pr_warn("map '%s': unsupported map linkage %s.\n",
			map_name, btf_var_linkage_str(var_extra->linkage));
2441 2442 2443 2444 2445
		return -EOPNOTSUPP;
	}

	def = skip_mods_and_typedefs(obj->btf, var->type, NULL);
	if (!btf_is_struct(def)) {
2446 2447
		pr_warn("map '%s': unexpected def kind %s.\n",
			map_name, btf_kind_str(var));
2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466
		return -EINVAL;
	}
	if (def->size > vi->size) {
		pr_warn("map '%s': invalid def size.\n", map_name);
		return -EINVAL;
	}

	map = bpf_object__add_map(obj);
	if (IS_ERR(map))
		return PTR_ERR(map);
	map->name = strdup(map_name);
	if (!map->name) {
		pr_warn("map '%s': failed to alloc map name.\n", map_name);
		return -ENOMEM;
	}
	map->libbpf_type = LIBBPF_MAP_UNSPEC;
	map->def.type = BPF_MAP_TYPE_UNSPEC;
	map->sec_idx = sec_idx;
	map->sec_offset = vi->offset;
2467
	map->btf_var_idx = var_idx;
2468 2469 2470
	pr_debug("map '%s': at sec_idx %d, offset %zu.\n",
		 map_name, map->sec_idx, map->sec_offset);

2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499
	err = parse_btf_map_def(map->name, obj->btf, def, strict, &map_def, &inner_def);
	if (err)
		return err;

	fill_map_from_def(map, &map_def);

	if (map_def.pinning == LIBBPF_PIN_BY_NAME) {
		err = build_map_pin_path(map, pin_root_path);
		if (err) {
			pr_warn("map '%s': couldn't build pin path.\n", map->name);
			return err;
		}
	}

	if (map_def.parts & MAP_DEF_INNER_MAP) {
		map->inner_map = calloc(1, sizeof(*map->inner_map));
		if (!map->inner_map)
			return -ENOMEM;
		map->inner_map->fd = -1;
		map->inner_map->sec_idx = sec_idx;
		map->inner_map->name = malloc(strlen(map_name) + sizeof(".inner") + 1);
		if (!map->inner_map->name)
			return -ENOMEM;
		sprintf(map->inner_map->name, "%s.inner", map_name);

		fill_map_from_def(map->inner_map, &inner_def);
	}

	return 0;
2500 2501
}

2502 2503
static int bpf_object__init_user_btf_maps(struct bpf_object *obj, bool strict,
					  const char *pin_root_path)
2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514
{
	const struct btf_type *sec = NULL;
	int nr_types, i, vlen, err;
	const struct btf_type *t;
	const char *name;
	Elf_Data *data;
	Elf_Scn *scn;

	if (obj->efile.btf_maps_shndx < 0)
		return 0;

2515 2516
	scn = elf_sec_by_idx(obj, obj->efile.btf_maps_shndx);
	data = elf_sec_data(obj, scn);
2517
	if (!scn || !data) {
2518 2519
		pr_warn("elf: failed to get %s map definitions for %s\n",
			MAPS_ELF_SEC, obj->path);
2520 2521 2522
		return -EINVAL;
	}

2523 2524
	nr_types = btf__type_cnt(obj->btf);
	for (i = 1; i < nr_types; i++) {
2525
		t = btf__type_by_id(obj->btf, i);
2526
		if (!btf_is_datasec(t))
2527 2528 2529 2530
			continue;
		name = btf__name_by_offset(obj->btf, t->name_off);
		if (strcmp(name, MAPS_ELF_SEC) == 0) {
			sec = t;
2531
			obj->efile.btf_maps_sec_btf_id = i;
2532 2533 2534 2535 2536
			break;
		}
	}

	if (!sec) {
2537
		pr_warn("DATASEC '%s' not found.\n", MAPS_ELF_SEC);
2538 2539 2540
		return -ENOENT;
	}

2541
	vlen = btf_vlen(sec);
2542 2543 2544
	for (i = 0; i < vlen; i++) {
		err = bpf_object__init_user_btf_map(obj, sec, i,
						    obj->efile.btf_maps_shndx,
2545 2546
						    data, strict,
						    pin_root_path);
2547 2548 2549 2550 2551 2552 2553
		if (err)
			return err;
	}

	return 0;
}

2554
static int bpf_object__init_maps(struct bpf_object *obj,
2555
				 const struct bpf_object_open_opts *opts)
2556
{
2557 2558
	const char *pin_root_path;
	bool strict;
2559
	int err;
2560

2561 2562
	strict = !OPTS_GET(opts, relaxed_maps, false);
	pin_root_path = OPTS_GET(opts, pin_root_path, NULL);
2563

2564 2565 2566
	err = bpf_object__init_user_maps(obj, strict);
	err = err ?: bpf_object__init_user_btf_maps(obj, strict, pin_root_path);
	err = err ?: bpf_object__init_global_data_maps(obj);
2567
	err = err ?: bpf_object__init_kconfig_map(obj);
2568
	err = err ?: bpf_object__init_struct_ops_maps(obj);
2569

2570
	return err;
2571 2572
}

2573 2574
static bool section_have_execinstr(struct bpf_object *obj, int idx)
{
2575
	Elf64_Shdr *sh;
2576

2577 2578
	sh = elf_sec_hdr(obj, elf_sec_by_idx(obj, idx));
	if (!sh)
2579 2580
		return false;

2581
	return sh->sh_flags & SHF_EXECINSTR;
2582 2583
}

2584 2585
static bool btf_needs_sanitization(struct bpf_object *obj)
{
2586 2587 2588 2589
	bool has_func_global = kernel_supports(obj, FEAT_BTF_GLOBAL_FUNC);
	bool has_datasec = kernel_supports(obj, FEAT_BTF_DATASEC);
	bool has_float = kernel_supports(obj, FEAT_BTF_FLOAT);
	bool has_func = kernel_supports(obj, FEAT_BTF_FUNC);
2590
	bool has_decl_tag = kernel_supports(obj, FEAT_BTF_DECL_TAG);
2591

2592
	return !has_func || !has_datasec || !has_func_global || !has_float || !has_decl_tag;
2593 2594 2595
}

static void bpf_object__sanitize_btf(struct bpf_object *obj, struct btf *btf)
2596
{
2597 2598 2599 2600
	bool has_func_global = kernel_supports(obj, FEAT_BTF_GLOBAL_FUNC);
	bool has_datasec = kernel_supports(obj, FEAT_BTF_DATASEC);
	bool has_float = kernel_supports(obj, FEAT_BTF_FLOAT);
	bool has_func = kernel_supports(obj, FEAT_BTF_FUNC);
2601
	bool has_decl_tag = kernel_supports(obj, FEAT_BTF_DECL_TAG);
2602 2603 2604
	struct btf_type *t;
	int i, j, vlen;

2605
	for (i = 1; i < btf__type_cnt(btf); i++) {
2606 2607
		t = (struct btf_type *)btf__type_by_id(btf, i);

2608 2609
		if ((!has_datasec && btf_is_var(t)) || (!has_decl_tag && btf_is_decl_tag(t))) {
			/* replace VAR/DECL_TAG with INT */
2610
			t->info = BTF_INFO_ENC(BTF_KIND_INT, 0, 0);
2611 2612 2613 2614 2615 2616
			/*
			 * using size = 1 is the safest choice, 4 will be too
			 * big and cause kernel BTF validation failure if
			 * original variable took less than 4 bytes
			 */
			t->size = 1;
2617
			*(int *)(t + 1) = BTF_INT_ENC(0, 0, 8);
2618
		} else if (!has_datasec && btf_is_datasec(t)) {
2619
			/* replace DATASEC with STRUCT */
2620 2621
			const struct btf_var_secinfo *v = btf_var_secinfos(t);
			struct btf_member *m = btf_members(t);
2622 2623 2624 2625 2626 2627 2628 2629 2630 2631
			struct btf_type *vt;
			char *name;

			name = (char *)btf__name_by_offset(btf, t->name_off);
			while (*name) {
				if (*name == '.')
					*name = '_';
				name++;
			}

2632
			vlen = btf_vlen(t);
2633 2634 2635 2636 2637 2638 2639 2640 2641
			t->info = BTF_INFO_ENC(BTF_KIND_STRUCT, 0, vlen);
			for (j = 0; j < vlen; j++, v++, m++) {
				/* order of field assignments is important */
				m->offset = v->offset * 8;
				m->type = v->type;
				/* preserve variable name as member name */
				vt = (void *)btf__type_by_id(btf, v->type);
				m->name_off = vt->name_off;
			}
2642
		} else if (!has_func && btf_is_func_proto(t)) {
2643
			/* replace FUNC_PROTO with ENUM */
2644
			vlen = btf_vlen(t);
2645 2646
			t->info = BTF_INFO_ENC(BTF_KIND_ENUM, 0, vlen);
			t->size = sizeof(__u32); /* kernel enforced */
2647
		} else if (!has_func && btf_is_func(t)) {
2648 2649
			/* replace FUNC with TYPEDEF */
			t->info = BTF_INFO_ENC(BTF_KIND_TYPEDEF, 0, 0);
2650 2651 2652
		} else if (!has_func_global && btf_is_func(t)) {
			/* replace BTF_FUNC_GLOBAL with BTF_FUNC_STATIC */
			t->info = BTF_INFO_ENC(BTF_KIND_FUNC, 0, 0);
2653 2654 2655 2656 2657 2658 2659
		} else if (!has_float && btf_is_float(t)) {
			/* replace FLOAT with an equally-sized empty STRUCT;
			 * since C compilers do not accept e.g. "float" as a
			 * valid struct name, make it anonymous
			 */
			t->name_off = 0;
			t->info = BTF_INFO_ENC(BTF_KIND_STRUCT, 0, 0);
2660 2661 2662 2663
		}
	}
}

2664
static bool libbpf_needs_btf(const struct bpf_object *obj)
2665
{
2666 2667 2668 2669 2670 2671 2672 2673
	return obj->efile.btf_maps_shndx >= 0 ||
	       obj->efile.st_ops_shndx >= 0 ||
	       obj->nr_extern > 0;
}

static bool kernel_needs_btf(const struct bpf_object *obj)
{
	return obj->efile.st_ops_shndx >= 0;
2674 2675
}

2676
static int bpf_object__init_btf(struct bpf_object *obj,
2677 2678 2679
				Elf_Data *btf_data,
				Elf_Data *btf_ext_data)
{
2680
	int err = -ENOENT;
2681 2682 2683

	if (btf_data) {
		obj->btf = btf__new(btf_data->d_buf, btf_data->d_size);
2684 2685
		err = libbpf_get_error(obj->btf);
		if (err) {
2686
			obj->btf = NULL;
2687
			pr_warn("Error loading ELF section %s: %d.\n", BTF_ELF_SEC, err);
2688 2689
			goto out;
		}
2690 2691
		/* enforce 8-byte pointers for BPF-targeted BTFs */
		btf__set_pointer_size(obj->btf, 8);
2692 2693 2694 2695 2696 2697 2698
	}
	if (btf_ext_data) {
		if (!obj->btf) {
			pr_debug("Ignore ELF section %s because its depending ELF section %s is not found.\n",
				 BTF_EXT_ELF_SEC, BTF_ELF_SEC);
			goto out;
		}
2699 2700 2701 2702 2703
		obj->btf_ext = btf_ext__new(btf_ext_data->d_buf, btf_ext_data->d_size);
		err = libbpf_get_error(obj->btf_ext);
		if (err) {
			pr_warn("Error loading ELF section %s: %d. Ignored and continue.\n",
				BTF_EXT_ELF_SEC, err);
2704 2705 2706 2707 2708
			obj->btf_ext = NULL;
			goto out;
		}
	}
out:
2709
	if (err && libbpf_needs_btf(obj)) {
2710
		pr_warn("BTF is required, but is missing or corrupted.\n");
2711
		return err;
2712
	}
2713 2714 2715
	return 0;
}

2716 2717 2718 2719 2720 2721 2722 2723 2724 2725 2726 2727 2728 2729 2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788
static int compare_vsi_off(const void *_a, const void *_b)
{
	const struct btf_var_secinfo *a = _a;
	const struct btf_var_secinfo *b = _b;

	return a->offset - b->offset;
}

static int btf_fixup_datasec(struct bpf_object *obj, struct btf *btf,
			     struct btf_type *t)
{
	__u32 size = 0, off = 0, i, vars = btf_vlen(t);
	const char *name = btf__name_by_offset(btf, t->name_off);
	const struct btf_type *t_var;
	struct btf_var_secinfo *vsi;
	const struct btf_var *var;
	int ret;

	if (!name) {
		pr_debug("No name found in string section for DATASEC kind.\n");
		return -ENOENT;
	}

	/* .extern datasec size and var offsets were set correctly during
	 * extern collection step, so just skip straight to sorting variables
	 */
	if (t->size)
		goto sort_vars;

	ret = find_elf_sec_sz(obj, name, &size);
	if (ret || !size || (t->size && t->size != size)) {
		pr_debug("Invalid size for section %s: %u bytes\n", name, size);
		return -ENOENT;
	}

	t->size = size;

	for (i = 0, vsi = btf_var_secinfos(t); i < vars; i++, vsi++) {
		t_var = btf__type_by_id(btf, vsi->type);
		var = btf_var(t_var);

		if (!btf_is_var(t_var)) {
			pr_debug("Non-VAR type seen in section %s\n", name);
			return -EINVAL;
		}

		if (var->linkage == BTF_VAR_STATIC)
			continue;

		name = btf__name_by_offset(btf, t_var->name_off);
		if (!name) {
			pr_debug("No name found in string section for VAR kind\n");
			return -ENOENT;
		}

		ret = find_elf_var_offset(obj, name, &off);
		if (ret) {
			pr_debug("No offset found in symbol table for VAR %s\n",
				 name);
			return -ENOENT;
		}

		vsi->offset = off;
	}

sort_vars:
	qsort(btf_var_secinfos(t), vars, sizeof(*vsi), compare_vsi_off);
	return 0;
}

static int btf_finalize_data(struct bpf_object *obj, struct btf *btf)
{
	int err = 0;
2789
	__u32 i, n = btf__type_cnt(btf);
2790

2791
	for (i = 1; i < n; i++) {
2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809 2810 2811 2812 2813
		struct btf_type *t = btf_type_by_id(btf, i);

		/* Loader needs to fix up some of the things compiler
		 * couldn't get its hands on while emitting BTF. This
		 * is section size and global variable offset. We use
		 * the info from the ELF itself for this purpose.
		 */
		if (btf_is_datasec(t)) {
			err = btf_fixup_datasec(obj, btf, t);
			if (err)
				break;
		}
	}

	return libbpf_err(err);
}

int btf__finalize_data(struct bpf_object *obj, struct btf *btf)
{
	return btf_finalize_data(obj, btf);
}

2814 2815 2816 2817 2818 2819 2820
static int bpf_object__finalize_btf(struct bpf_object *obj)
{
	int err;

	if (!obj->btf)
		return 0;

2821
	err = btf_finalize_data(obj, obj->btf);
2822 2823 2824
	if (err) {
		pr_warn("Error finalizing %s: %d.\n", BTF_ELF_SEC, err);
		return err;
2825
	}
2826

2827 2828 2829
	return 0;
}

2830
static bool prog_needs_vmlinux_btf(struct bpf_program *prog)
2831
{
2832 2833
	if (prog->type == BPF_PROG_TYPE_STRUCT_OPS ||
	    prog->type == BPF_PROG_TYPE_LSM)
2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844
		return true;

	/* BPF_PROG_TYPE_TRACING programs which do not attach to other programs
	 * also need vmlinux BTF
	 */
	if (prog->type == BPF_PROG_TYPE_TRACING && !prog->attach_prog_fd)
		return true;

	return false;
}

2845
static bool obj_needs_vmlinux_btf(const struct bpf_object *obj)
2846 2847
{
	struct bpf_program *prog;
2848
	int i;
2849

2850 2851 2852 2853
	/* CO-RE relocations need kernel BTF, only when btf_custom_path
	 * is not specified
	 */
	if (obj->btf_ext && obj->btf_ext->core_relo_info.len && !obj->btf_custom_path)
2854
		return true;
2855

H
Hao Luo 已提交
2856 2857 2858 2859 2860
	/* Support for typed ksyms needs kernel BTF */
	for (i = 0; i < obj->nr_extern; i++) {
		const struct extern_desc *ext;

		ext = &obj->externs[i];
2861 2862
		if (ext->type == EXT_KSYM && ext->ksym.type_id)
			return true;
H
Hao Luo 已提交
2863 2864
	}

2865
	bpf_object__for_each_program(prog, obj) {
2866 2867
		if (!prog->load)
			continue;
2868 2869
		if (prog_needs_vmlinux_btf(prog))
			return true;
2870 2871
	}

2872 2873 2874 2875 2876 2877 2878 2879
	return false;
}

static int bpf_object__load_vmlinux_btf(struct bpf_object *obj, bool force)
{
	int err;

	/* btf_vmlinux could be loaded earlier */
2880
	if (obj->btf_vmlinux || obj->gen_loader)
2881 2882 2883
		return 0;

	if (!force && !obj_needs_vmlinux_btf(obj))
2884 2885
		return 0;

2886
	obj->btf_vmlinux = btf__load_vmlinux_btf();
2887 2888
	err = libbpf_get_error(obj->btf_vmlinux);
	if (err) {
2889 2890 2891 2892
		pr_warn("Error loading vmlinux BTF: %d\n", err);
		obj->btf_vmlinux = NULL;
		return err;
	}
2893 2894 2895
	return 0;
}

2896 2897
static int bpf_object__sanitize_and_load_btf(struct bpf_object *obj)
{
2898 2899
	struct btf *kern_btf = obj->btf;
	bool btf_mandatory, sanitize;
2900
	int i, err = 0;
2901 2902 2903 2904

	if (!obj->btf)
		return 0;

2905
	if (!kernel_supports(obj, FEAT_BTF)) {
2906 2907 2908 2909 2910 2911 2912 2913
		if (kernel_needs_btf(obj)) {
			err = -EOPNOTSUPP;
			goto report;
		}
		pr_debug("Kernel doesn't support BTF, skipping uploading it.\n");
		return 0;
	}

2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930
	/* Even though some subprogs are global/weak, user might prefer more
	 * permissive BPF verification process that BPF verifier performs for
	 * static functions, taking into account more context from the caller
	 * functions. In such case, they need to mark such subprogs with
	 * __attribute__((visibility("hidden"))) and libbpf will adjust
	 * corresponding FUNC BTF type to be marked as static and trigger more
	 * involved BPF verification process.
	 */
	for (i = 0; i < obj->nr_programs; i++) {
		struct bpf_program *prog = &obj->programs[i];
		struct btf_type *t;
		const char *name;
		int j, n;

		if (!prog->mark_btf_static || !prog_is_subprog(obj, prog))
			continue;

2931 2932
		n = btf__type_cnt(obj->btf);
		for (j = 1; j < n; j++) {
2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945
			t = btf_type_by_id(obj->btf, j);
			if (!btf_is_func(t) || btf_func_linkage(t) != BTF_FUNC_GLOBAL)
				continue;

			name = btf__str_by_offset(obj->btf, t->name_off);
			if (strcmp(name, prog->name) != 0)
				continue;

			t->info = btf_type_info(BTF_KIND_FUNC, BTF_FUNC_STATIC, 0);
			break;
		}
	}

2946 2947
	sanitize = btf_needs_sanitization(obj);
	if (sanitize) {
2948
		const void *raw_data;
2949
		__u32 sz;
2950

2951
		/* clone BTF to sanitize a copy and leave the original intact */
2952
		raw_data = btf__raw_data(obj->btf, &sz);
2953
		kern_btf = btf__new(raw_data, sz);
2954 2955 2956
		err = libbpf_get_error(kern_btf);
		if (err)
			return err;
2957

2958 2959
		/* enforce 8-byte pointers for BPF-targeted BTFs */
		btf__set_pointer_size(obj->btf, 8);
2960
		bpf_object__sanitize_btf(obj, kern_btf);
2961
	}
2962

2963 2964
	if (obj->gen_loader) {
		__u32 raw_size = 0;
2965
		const void *raw_data = btf__raw_data(kern_btf, &raw_size);
2966 2967 2968 2969 2970 2971 2972 2973 2974

		if (!raw_data)
			return -ENOMEM;
		bpf_gen__load_btf(obj->gen_loader, raw_data, raw_size);
		/* Pretend to have valid FD to pass various fd >= 0 checks.
		 * This fd == 0 will not be used with any syscall and will be reset to -1 eventually.
		 */
		btf__set_fd(kern_btf, 0);
	} else {
2975
		err = btf__load_into_kernel(kern_btf);
2976
	}
2977 2978 2979 2980 2981 2982 2983 2984
	if (sanitize) {
		if (!err) {
			/* move fd to libbpf's BTF */
			btf__set_fd(obj->btf, btf__fd(kern_btf));
			btf__set_fd(kern_btf, -1);
		}
		btf__free(kern_btf);
	}
2985
report:
2986 2987 2988 2989 2990 2991 2992 2993 2994
	if (err) {
		btf_mandatory = kernel_needs_btf(obj);
		pr_warn("Error loading .BTF into kernel: %d. %s\n", err,
			btf_mandatory ? "BTF is mandatory, can't proceed."
				      : "BTF is optional, ignoring.");
		if (!btf_mandatory)
			err = 0;
	}
	return err;
2995 2996
}

2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034 3035 3036 3037 3038 3039 3040 3041 3042 3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3054 3055 3056
static const char *elf_sym_str(const struct bpf_object *obj, size_t off)
{
	const char *name;

	name = elf_strptr(obj->efile.elf, obj->efile.strtabidx, off);
	if (!name) {
		pr_warn("elf: failed to get section name string at offset %zu from %s: %s\n",
			off, obj->path, elf_errmsg(-1));
		return NULL;
	}

	return name;
}

static const char *elf_sec_str(const struct bpf_object *obj, size_t off)
{
	const char *name;

	name = elf_strptr(obj->efile.elf, obj->efile.shstrndx, off);
	if (!name) {
		pr_warn("elf: failed to get section name string at offset %zu from %s: %s\n",
			off, obj->path, elf_errmsg(-1));
		return NULL;
	}

	return name;
}

static Elf_Scn *elf_sec_by_idx(const struct bpf_object *obj, size_t idx)
{
	Elf_Scn *scn;

	scn = elf_getscn(obj->efile.elf, idx);
	if (!scn) {
		pr_warn("elf: failed to get section(%zu) from %s: %s\n",
			idx, obj->path, elf_errmsg(-1));
		return NULL;
	}
	return scn;
}

static Elf_Scn *elf_sec_by_name(const struct bpf_object *obj, const char *name)
{
	Elf_Scn *scn = NULL;
	Elf *elf = obj->efile.elf;
	const char *sec_name;

	while ((scn = elf_nextscn(elf, scn)) != NULL) {
		sec_name = elf_sec_name(obj, scn);
		if (!sec_name)
			return NULL;

		if (strcmp(sec_name, name) != 0)
			continue;

		return scn;
	}
	return NULL;
}

3057
static Elf64_Shdr *elf_sec_hdr(const struct bpf_object *obj, Elf_Scn *scn)
3058
{
3059 3060
	Elf64_Shdr *shdr;

3061
	if (!scn)
3062
		return NULL;
3063

3064 3065
	shdr = elf64_getshdr(scn);
	if (!shdr) {
3066 3067
		pr_warn("elf: failed to get section(%zu) header from %s: %s\n",
			elf_ndxscn(scn), obj->path, elf_errmsg(-1));
3068
		return NULL;
3069 3070
	}

3071
	return shdr;
3072 3073 3074 3075 3076
}

static const char *elf_sec_name(const struct bpf_object *obj, Elf_Scn *scn)
{
	const char *name;
3077
	Elf64_Shdr *sh;
3078 3079 3080 3081

	if (!scn)
		return NULL;

3082 3083
	sh = elf_sec_hdr(obj, scn);
	if (!sh)
3084 3085
		return NULL;

3086
	name = elf_sec_str(obj, sh->sh_name);
3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113
	if (!name) {
		pr_warn("elf: failed to get section(%zu) name from %s: %s\n",
			elf_ndxscn(scn), obj->path, elf_errmsg(-1));
		return NULL;
	}

	return name;
}

static Elf_Data *elf_sec_data(const struct bpf_object *obj, Elf_Scn *scn)
{
	Elf_Data *data;

	if (!scn)
		return NULL;

	data = elf_getdata(scn, 0);
	if (!data) {
		pr_warn("elf: failed to get section(%zu) %s data from %s: %s\n",
			elf_ndxscn(scn), elf_sec_name(obj, scn) ?: "<?>",
			obj->path, elf_errmsg(-1));
		return NULL;
	}

	return data;
}

3114 3115 3116 3117 3118 3119 3120 3121 3122 3123 3124 3125 3126 3127 3128 3129
static Elf64_Sym *elf_sym_by_idx(const struct bpf_object *obj, size_t idx)
{
	if (idx >= obj->efile.symbols->d_size / sizeof(Elf64_Sym))
		return NULL;

	return (Elf64_Sym *)obj->efile.symbols->d_buf + idx;
}

static Elf64_Rel *elf_rel_by_idx(Elf_Data *data, size_t idx)
{
	if (idx >= data->d_size / sizeof(Elf64_Rel))
		return NULL;

	return (Elf64_Rel *)data->d_buf + idx;
}

3130 3131 3132
static bool is_sec_name_dwarf(const char *name)
{
	/* approximation, but the actual list is too long */
3133
	return str_has_pfx(name, ".debug_");
3134 3135
}

3136
static bool ignore_elf_section(Elf64_Shdr *hdr, const char *name)
3137 3138 3139 3140 3141 3142
{
	/* no special handling of .strtab */
	if (hdr->sh_type == SHT_STRTAB)
		return true;

	/* ignore .llvm_addrsig section as well */
3143
	if (hdr->sh_type == SHT_LLVM_ADDRSIG)
3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154
		return true;

	/* no subprograms will lead to an empty .text section, ignore it */
	if (hdr->sh_type == SHT_PROGBITS && hdr->sh_size == 0 &&
	    strcmp(name, ".text") == 0)
		return true;

	/* DWARF sections */
	if (is_sec_name_dwarf(name))
		return true;

3155
	if (str_has_pfx(name, ".rel")) {
3156 3157 3158 3159 3160 3161 3162 3163 3164 3165 3166 3167 3168 3169
		name += sizeof(".rel") - 1;
		/* DWARF section relocations */
		if (is_sec_name_dwarf(name))
			return true;

		/* .BTF and .BTF.ext don't need relocations */
		if (strcmp(name, BTF_ELF_SEC) == 0 ||
		    strcmp(name, BTF_EXT_ELF_SEC) == 0)
			return true;
	}

	return false;
}

3170 3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181
static int cmp_progs(const void *_a, const void *_b)
{
	const struct bpf_program *a = _a;
	const struct bpf_program *b = _b;

	if (a->sec_idx != b->sec_idx)
		return a->sec_idx < b->sec_idx ? -1 : 1;

	/* sec_insn_off can't be the same within the section */
	return a->sec_insn_off < b->sec_insn_off ? -1 : 1;
}

3182
static int bpf_object__elf_collect(struct bpf_object *obj)
3183
{
3184
	struct elf_sec_desc *sec_desc;
3185
	Elf *elf = obj->efile.elf;
3186
	Elf_Data *btf_ext_data = NULL;
3187
	Elf_Data *btf_data = NULL;
3188
	int idx = 0, err = 0;
3189 3190 3191
	const char *name;
	Elf_Data *data;
	Elf_Scn *scn;
3192
	Elf64_Shdr *sh;
3193

3194 3195 3196 3197 3198 3199 3200 3201
	/* ELF section indices are 1-based, so allocate +1 element to keep
	 * indexing simple. Also include 0th invalid section into sec_cnt for
	 * simpler and more traditional iteration logic.
	 */
	obj->efile.sec_cnt = 1 + obj->efile.ehdr->e_shnum;
	obj->efile.secs = calloc(obj->efile.sec_cnt, sizeof(*obj->efile.secs));
	if (!obj->efile.secs)
		return -ENOMEM;
3202

3203 3204 3205 3206
	/* a bunch of ELF parsing functionality depends on processing symbols,
	 * so do the first pass and find the symbol table
	 */
	scn = NULL;
3207
	while ((scn = elf_nextscn(elf, scn)) != NULL) {
3208 3209
		sh = elf_sec_hdr(obj, scn);
		if (!sh)
3210 3211
			return -LIBBPF_ERRNO__FORMAT;

3212
		if (sh->sh_type == SHT_SYMTAB) {
3213 3214 3215 3216
			if (obj->efile.symbols) {
				pr_warn("elf: multiple symbol tables in %s\n", obj->path);
				return -LIBBPF_ERRNO__FORMAT;
			}
3217

3218 3219 3220 3221
			data = elf_sec_data(obj, scn);
			if (!data)
				return -LIBBPF_ERRNO__FORMAT;

3222 3223
			idx = elf_ndxscn(scn);

3224
			obj->efile.symbols = data;
3225
			obj->efile.symbols_shndx = idx;
3226
			obj->efile.strtabidx = sh->sh_link;
3227 3228 3229
		}
	}

3230 3231 3232 3233 3234 3235
	if (!obj->efile.symbols) {
		pr_warn("elf: couldn't find symbol table in %s, stripped object file?\n",
			obj->path);
		return -ENOENT;
	}

3236 3237
	scn = NULL;
	while ((scn = elf_nextscn(elf, scn)) != NULL) {
3238 3239
		idx = elf_ndxscn(scn);
		sec_desc = &obj->efile.secs[idx];
3240

3241 3242
		sh = elf_sec_hdr(obj, scn);
		if (!sh)
3243
			return -LIBBPF_ERRNO__FORMAT;
3244

3245
		name = elf_sec_str(obj, sh->sh_name);
3246
		if (!name)
3247
			return -LIBBPF_ERRNO__FORMAT;
3248

3249
		if (ignore_elf_section(sh, name))
3250 3251
			continue;

3252 3253
		data = elf_sec_data(obj, scn);
		if (!data)
3254
			return -LIBBPF_ERRNO__FORMAT;
3255 3256

		pr_debug("elf: section(%d) %s, size %ld, link %d, flags %lx, type=%d\n",
3257
			 idx, name, (unsigned long)data->d_size,
3258 3259
			 (int)sh->sh_link, (unsigned long)sh->sh_flags,
			 (int)sh->sh_type);
3260

3261
		if (strcmp(name, "license") == 0) {
3262
			err = bpf_object__init_license(obj, data->d_buf, data->d_size);
3263 3264
			if (err)
				return err;
3265
		} else if (strcmp(name, "version") == 0) {
3266
			err = bpf_object__init_kversion(obj, data->d_buf, data->d_size);
3267 3268
			if (err)
				return err;
3269
		} else if (strcmp(name, "maps") == 0) {
3270
			obj->efile.maps_shndx = idx;
3271 3272
		} else if (strcmp(name, MAPS_ELF_SEC) == 0) {
			obj->efile.btf_maps_shndx = idx;
3273 3274
		} else if (strcmp(name, BTF_ELF_SEC) == 0) {
			btf_data = data;
3275
		} else if (strcmp(name, BTF_EXT_ELF_SEC) == 0) {
3276
			btf_ext_data = data;
3277
		} else if (sh->sh_type == SHT_SYMTAB) {
3278
			/* already processed during the first pass above */
3279 3280
		} else if (sh->sh_type == SHT_PROGBITS && data->d_size > 0) {
			if (sh->sh_flags & SHF_EXECINSTR) {
3281 3282
				if (strcmp(name, ".text") == 0)
					obj->efile.text_shndx = idx;
3283
				err = bpf_object__add_programs(obj, data, name, idx);
3284
				if (err)
3285
					return err;
3286 3287
			} else if (strcmp(name, DATA_SEC) == 0 ||
				   str_has_pfx(name, DATA_SEC ".")) {
3288 3289 3290
				sec_desc->sec_type = SEC_DATA;
				sec_desc->shdr = sh;
				sec_desc->data = data;
3291 3292
			} else if (strcmp(name, RODATA_SEC) == 0 ||
				   str_has_pfx(name, RODATA_SEC ".")) {
3293 3294 3295
				sec_desc->sec_type = SEC_RODATA;
				sec_desc->shdr = sh;
				sec_desc->data = data;
3296 3297 3298
			} else if (strcmp(name, STRUCT_OPS_SEC) == 0) {
				obj->efile.st_ops_data = data;
				obj->efile.st_ops_shndx = idx;
3299
			} else {
3300 3301
				pr_info("elf: skipping unrecognized data section(%d) %s\n",
					idx, name);
3302
			}
3303
		} else if (sh->sh_type == SHT_REL) {
3304
			int targ_sec_idx = sh->sh_info; /* points to other section */
3305 3306

			/* Only do relo for section with exec instructions */
3307
			if (!section_have_execinstr(obj, targ_sec_idx) &&
3308 3309
			    strcmp(name, ".rel" STRUCT_OPS_SEC) &&
			    strcmp(name, ".rel" MAPS_ELF_SEC)) {
3310
				pr_info("elf: skipping relo section(%d) %s for section(%d) %s\n",
3311 3312
					idx, name, targ_sec_idx,
					elf_sec_name(obj, elf_sec_by_idx(obj, targ_sec_idx)) ?: "<?>");
3313 3314
				continue;
			}
3315

3316 3317 3318
			sec_desc->sec_type = SEC_RELO;
			sec_desc->shdr = sh;
			sec_desc->data = data;
3319
		} else if (sh->sh_type == SHT_NOBITS && strcmp(name, BSS_SEC) == 0) {
3320 3321 3322
			sec_desc->sec_type = SEC_BSS;
			sec_desc->shdr = sh;
			sec_desc->data = data;
3323
		} else {
3324
			pr_info("elf: skipping section(%d) %s (size %zu)\n", idx, name,
3325
				(size_t)sh->sh_size);
3326
		}
3327
	}
3328

3329
	if (!obj->efile.strtabidx || obj->efile.strtabidx > idx) {
3330
		pr_warn("elf: symbol strings section missing or invalid in %s\n", obj->path);
3331
		return -LIBBPF_ERRNO__FORMAT;
3332
	}
3333 3334 3335 3336 3337

	/* sort BPF programs by section name and in-section instruction offset
	 * for faster search */
	qsort(obj->programs, obj->nr_programs, sizeof(*obj->programs), cmp_progs);

3338
	return bpf_object__init_btf(obj, btf_data, btf_ext_data);
3339 3340
}

3341
static bool sym_is_extern(const Elf64_Sym *sym)
3342
{
3343
	int bind = ELF64_ST_BIND(sym->st_info);
3344 3345 3346
	/* externs are symbols w/ type=NOTYPE, bind=GLOBAL|WEAK, section=UND */
	return sym->st_shndx == SHN_UNDEF &&
	       (bind == STB_GLOBAL || bind == STB_WEAK) &&
3347
	       ELF64_ST_TYPE(sym->st_info) == STT_NOTYPE;
3348 3349
}

3350
static bool sym_is_subprog(const Elf64_Sym *sym, int text_shndx)
3351
{
3352 3353
	int bind = ELF64_ST_BIND(sym->st_info);
	int type = ELF64_ST_TYPE(sym->st_info);
3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366

	/* in .text section */
	if (sym->st_shndx != text_shndx)
		return false;

	/* local function */
	if (bind == STB_LOCAL && type == STT_SECTION)
		return true;

	/* global function */
	return bind == STB_GLOBAL && type == STT_FUNC;
}

3367 3368 3369
static int find_extern_btf_id(const struct btf *btf, const char *ext_name)
{
	const struct btf_type *t;
3370
	const char *tname;
3371 3372 3373 3374 3375
	int i, n;

	if (!btf)
		return -ESRCH;

3376 3377
	n = btf__type_cnt(btf);
	for (i = 1; i < n; i++) {
3378 3379
		t = btf__type_by_id(btf, i);

3380
		if (!btf_is_var(t) && !btf_is_func(t))
3381 3382
			continue;

3383 3384
		tname = btf__name_by_offset(btf, t->name_off);
		if (strcmp(tname, ext_name))
3385 3386
			continue;

3387 3388 3389 3390 3391
		if (btf_is_var(t) &&
		    btf_var(t)->linkage != BTF_VAR_GLOBAL_EXTERN)
			return -EINVAL;

		if (btf_is_func(t) && btf_func_linkage(t) != BTF_FUNC_EXTERN)
3392 3393 3394 3395 3396 3397 3398 3399
			return -EINVAL;

		return i;
	}

	return -ENOENT;
}

3400 3401 3402 3403 3404 3405 3406 3407
static int find_extern_sec_btf_id(struct btf *btf, int ext_btf_id) {
	const struct btf_var_secinfo *vs;
	const struct btf_type *t;
	int i, j, n;

	if (!btf)
		return -ESRCH;

3408 3409
	n = btf__type_cnt(btf);
	for (i = 1; i < n; i++) {
3410 3411 3412 3413 3414 3415 3416 3417 3418 3419 3420 3421 3422 3423 3424 3425 3426
		t = btf__type_by_id(btf, i);

		if (!btf_is_datasec(t))
			continue;

		vs = btf_var_secinfos(t);
		for (j = 0; j < btf_vlen(t); j++, vs++) {
			if (vs->type == ext_btf_id)
				return i;
		}
	}

	return -ENOENT;
}

static enum kcfg_type find_kcfg_type(const struct btf *btf, int id,
				     bool *is_signed)
3427 3428 3429 3430 3431 3432 3433 3434 3435 3436 3437 3438 3439 3440
{
	const struct btf_type *t;
	const char *name;

	t = skip_mods_and_typedefs(btf, id, NULL);
	name = btf__name_by_offset(btf, t->name_off);

	if (is_signed)
		*is_signed = false;
	switch (btf_kind(t)) {
	case BTF_KIND_INT: {
		int enc = btf_int_encoding(t);

		if (enc & BTF_INT_BOOL)
3441
			return t->size == 1 ? KCFG_BOOL : KCFG_UNKNOWN;
3442 3443 3444
		if (is_signed)
			*is_signed = enc & BTF_INT_SIGNED;
		if (t->size == 1)
3445
			return KCFG_CHAR;
3446
		if (t->size < 1 || t->size > 8 || (t->size & (t->size - 1)))
3447 3448
			return KCFG_UNKNOWN;
		return KCFG_INT;
3449 3450 3451
	}
	case BTF_KIND_ENUM:
		if (t->size != 4)
3452
			return KCFG_UNKNOWN;
3453
		if (strcmp(name, "libbpf_tristate"))
3454 3455
			return KCFG_UNKNOWN;
		return KCFG_TRISTATE;
3456 3457
	case BTF_KIND_ARRAY:
		if (btf_array(t)->nelems == 0)
3458 3459 3460 3461
			return KCFG_UNKNOWN;
		if (find_kcfg_type(btf, btf_array(t)->type, NULL) != KCFG_CHAR)
			return KCFG_UNKNOWN;
		return KCFG_CHAR_ARR;
3462
	default:
3463
		return KCFG_UNKNOWN;
3464 3465 3466 3467 3468 3469 3470 3471
	}
}

static int cmp_externs(const void *_a, const void *_b)
{
	const struct extern_desc *a = _a;
	const struct extern_desc *b = _b;

3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483
	if (a->type != b->type)
		return a->type < b->type ? -1 : 1;

	if (a->type == EXT_KCFG) {
		/* descending order by alignment requirements */
		if (a->kcfg.align != b->kcfg.align)
			return a->kcfg.align > b->kcfg.align ? -1 : 1;
		/* ascending order by size, within same alignment class */
		if (a->kcfg.sz != b->kcfg.sz)
			return a->kcfg.sz < b->kcfg.sz ? -1 : 1;
	}

3484 3485 3486 3487
	/* resolve ties by name */
	return strcmp(a->name, b->name);
}

3488 3489 3490 3491 3492
static int find_int_btf_id(const struct btf *btf)
{
	const struct btf_type *t;
	int i, n;

3493 3494
	n = btf__type_cnt(btf);
	for (i = 1; i < n; i++) {
3495 3496 3497 3498 3499 3500 3501 3502 3503
		t = btf__type_by_id(btf, i);

		if (btf_is_int(t) && btf_int_bits(t) == 32)
			return i;
	}

	return 0;
}

3504 3505 3506 3507 3508 3509
static int add_dummy_ksym_var(struct btf *btf)
{
	int i, int_btf_id, sec_btf_id, dummy_var_btf_id;
	const struct btf_var_secinfo *vs;
	const struct btf_type *sec;

3510 3511 3512
	if (!btf)
		return 0;

3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542
	sec_btf_id = btf__find_by_name_kind(btf, KSYMS_SEC,
					    BTF_KIND_DATASEC);
	if (sec_btf_id < 0)
		return 0;

	sec = btf__type_by_id(btf, sec_btf_id);
	vs = btf_var_secinfos(sec);
	for (i = 0; i < btf_vlen(sec); i++, vs++) {
		const struct btf_type *vt;

		vt = btf__type_by_id(btf, vs->type);
		if (btf_is_func(vt))
			break;
	}

	/* No func in ksyms sec.  No need to add dummy var. */
	if (i == btf_vlen(sec))
		return 0;

	int_btf_id = find_int_btf_id(btf);
	dummy_var_btf_id = btf__add_var(btf,
					"dummy_ksym",
					BTF_VAR_GLOBAL_ALLOCATED,
					int_btf_id);
	if (dummy_var_btf_id < 0)
		pr_warn("cannot create a dummy_ksym var\n");

	return dummy_var_btf_id;
}

3543 3544
static int bpf_object__collect_externs(struct bpf_object *obj)
{
3545
	struct btf_type *sec, *kcfg_sec = NULL, *ksym_sec = NULL;
3546 3547
	const struct btf_type *t;
	struct extern_desc *ext;
3548
	int i, n, off, dummy_var_btf_id;
3549
	const char *ext_name, *sec_name;
3550
	Elf_Scn *scn;
3551
	Elf64_Shdr *sh;
3552 3553 3554 3555

	if (!obj->efile.symbols)
		return 0;

3556
	scn = elf_sec_by_idx(obj, obj->efile.symbols_shndx);
3557
	sh = elf_sec_hdr(obj, scn);
3558
	if (!sh || sh->sh_entsize != sizeof(Elf64_Sym))
3559 3560
		return -LIBBPF_ERRNO__FORMAT;

3561 3562 3563 3564
	dummy_var_btf_id = add_dummy_ksym_var(obj->btf);
	if (dummy_var_btf_id < 0)
		return dummy_var_btf_id;

3565
	n = sh->sh_size / sh->sh_entsize;
3566
	pr_debug("looking for externs among %d symbols...\n", n);
3567

3568
	for (i = 0; i < n; i++) {
3569
		Elf64_Sym *sym = elf_sym_by_idx(obj, i);
3570

3571
		if (!sym)
3572
			return -LIBBPF_ERRNO__FORMAT;
3573
		if (!sym_is_extern(sym))
3574
			continue;
3575
		ext_name = elf_sym_str(obj, sym->st_name);
3576 3577 3578 3579
		if (!ext_name || !ext_name[0])
			continue;

		ext = obj->externs;
3580
		ext = libbpf_reallocarray(ext, obj->nr_extern + 1, sizeof(*ext));
3581 3582 3583 3584 3585 3586 3587 3588 3589 3590 3591 3592 3593 3594 3595 3596
		if (!ext)
			return -ENOMEM;
		obj->externs = ext;
		ext = &ext[obj->nr_extern];
		memset(ext, 0, sizeof(*ext));
		obj->nr_extern++;

		ext->btf_id = find_extern_btf_id(obj->btf, ext_name);
		if (ext->btf_id <= 0) {
			pr_warn("failed to find BTF for extern '%s': %d\n",
				ext_name, ext->btf_id);
			return ext->btf_id;
		}
		t = btf__type_by_id(obj->btf, ext->btf_id);
		ext->name = btf__name_by_offset(obj->btf, t->name_off);
		ext->sym_idx = i;
3597
		ext->is_weak = ELF64_ST_BIND(sym->st_info) == STB_WEAK;
3598 3599 3600 3601 3602 3603

		ext->sec_btf_id = find_extern_sec_btf_id(obj->btf, ext->btf_id);
		if (ext->sec_btf_id <= 0) {
			pr_warn("failed to find BTF for extern '%s' [%d] section: %d\n",
				ext_name, ext->btf_id, ext->sec_btf_id);
			return ext->sec_btf_id;
3604
		}
3605 3606 3607 3608
		sec = (void *)btf__type_by_id(obj->btf, ext->sec_btf_id);
		sec_name = btf__name_by_offset(obj->btf, sec->name_off);

		if (strcmp(sec_name, KCONFIG_SEC) == 0) {
3609 3610 3611 3612 3613
			if (btf_is_func(t)) {
				pr_warn("extern function %s is unsupported under %s section\n",
					ext->name, KCONFIG_SEC);
				return -ENOTSUP;
			}
3614 3615 3616 3617 3618 3619 3620 3621 3622 3623 3624 3625 3626 3627 3628 3629 3630 3631 3632 3633
			kcfg_sec = sec;
			ext->type = EXT_KCFG;
			ext->kcfg.sz = btf__resolve_size(obj->btf, t->type);
			if (ext->kcfg.sz <= 0) {
				pr_warn("failed to resolve size of extern (kcfg) '%s': %d\n",
					ext_name, ext->kcfg.sz);
				return ext->kcfg.sz;
			}
			ext->kcfg.align = btf__align_of(obj->btf, t->type);
			if (ext->kcfg.align <= 0) {
				pr_warn("failed to determine alignment of extern (kcfg) '%s': %d\n",
					ext_name, ext->kcfg.align);
				return -EINVAL;
			}
			ext->kcfg.type = find_kcfg_type(obj->btf, t->type,
						        &ext->kcfg.is_signed);
			if (ext->kcfg.type == KCFG_UNKNOWN) {
				pr_warn("extern (kcfg) '%s' type is unsupported\n", ext_name);
				return -ENOTSUP;
			}
3634 3635 3636
		} else if (strcmp(sec_name, KSYMS_SEC) == 0) {
			ksym_sec = sec;
			ext->type = EXT_KSYM;
H
Hao Luo 已提交
3637 3638
			skip_mods_and_typedefs(obj->btf, t->type,
					       &ext->ksym.type_id);
3639 3640
		} else {
			pr_warn("unrecognized extern section '%s'\n", sec_name);
3641 3642 3643 3644 3645 3646 3647 3648
			return -ENOTSUP;
		}
	}
	pr_debug("collected %d externs total\n", obj->nr_extern);

	if (!obj->nr_extern)
		return 0;

3649
	/* sort externs by type, for kcfg ones also by (align, size, name) */
3650 3651
	qsort(obj->externs, obj->nr_extern, sizeof(*ext), cmp_externs);

3652 3653 3654 3655 3656 3657 3658 3659 3660
	/* for .ksyms section, we need to turn all externs into allocated
	 * variables in BTF to pass kernel verification; we do this by
	 * pretending that each extern is a 8-byte variable
	 */
	if (ksym_sec) {
		/* find existing 4-byte integer type in BTF to use for fake
		 * extern variables in DATASEC
		 */
		int int_btf_id = find_int_btf_id(obj->btf);
3661 3662 3663 3664 3665 3666
		/* For extern function, a dummy_var added earlier
		 * will be used to replace the vs->type and
		 * its name string will be used to refill
		 * the missing param's name.
		 */
		const struct btf_type *dummy_var;
3667

3668
		dummy_var = btf__type_by_id(obj->btf, dummy_var_btf_id);
3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686
		for (i = 0; i < obj->nr_extern; i++) {
			ext = &obj->externs[i];
			if (ext->type != EXT_KSYM)
				continue;
			pr_debug("extern (ksym) #%d: symbol %d, name %s\n",
				 i, ext->sym_idx, ext->name);
		}

		sec = ksym_sec;
		n = btf_vlen(sec);
		for (i = 0, off = 0; i < n; i++, off += sizeof(int)) {
			struct btf_var_secinfo *vs = btf_var_secinfos(sec) + i;
			struct btf_type *vt;

			vt = (void *)btf__type_by_id(obj->btf, vs->type);
			ext_name = btf__name_by_offset(obj->btf, vt->name_off);
			ext = find_extern_by_name(obj, ext_name);
			if (!ext) {
3687 3688
				pr_warn("failed to find extern definition for BTF %s '%s'\n",
					btf_kind_str(vt), ext_name);
3689 3690
				return -ESRCH;
			}
3691 3692 3693 3694 3695 3696 3697 3698 3699 3700 3701 3702 3703 3704 3705 3706 3707 3708 3709 3710 3711 3712
			if (btf_is_func(vt)) {
				const struct btf_type *func_proto;
				struct btf_param *param;
				int j;

				func_proto = btf__type_by_id(obj->btf,
							     vt->type);
				param = btf_params(func_proto);
				/* Reuse the dummy_var string if the
				 * func proto does not have param name.
				 */
				for (j = 0; j < btf_vlen(func_proto); j++)
					if (param[j].type && !param[j].name_off)
						param[j].name_off =
							dummy_var->name_off;
				vs->type = dummy_var_btf_id;
				vt->info &= ~0xffff;
				vt->info |= BTF_FUNC_GLOBAL;
			} else {
				btf_var(vt)->linkage = BTF_VAR_GLOBAL_ALLOCATED;
				vt->type = int_btf_id;
			}
3713 3714 3715 3716 3717 3718
			vs->offset = off;
			vs->size = sizeof(int);
		}
		sec->size = off;
	}

3719 3720 3721 3722 3723 3724 3725 3726
	if (kcfg_sec) {
		sec = kcfg_sec;
		/* for kcfg externs calculate their offsets within a .kconfig map */
		off = 0;
		for (i = 0; i < obj->nr_extern; i++) {
			ext = &obj->externs[i];
			if (ext->type != EXT_KCFG)
				continue;
3727

3728 3729
			ext->kcfg.data_off = roundup(off, ext->kcfg.align);
			off = ext->kcfg.data_off + ext->kcfg.sz;
3730
			pr_debug("extern (kcfg) #%d: symbol %d, off %u, name %s\n",
3731 3732 3733 3734 3735 3736 3737 3738 3739 3740 3741 3742 3743 3744 3745 3746 3747
				 i, ext->sym_idx, ext->kcfg.data_off, ext->name);
		}
		sec->size = off;
		n = btf_vlen(sec);
		for (i = 0; i < n; i++) {
			struct btf_var_secinfo *vs = btf_var_secinfos(sec) + i;

			t = btf__type_by_id(obj->btf, vs->type);
			ext_name = btf__name_by_offset(obj->btf, t->name_off);
			ext = find_extern_by_name(obj, ext_name);
			if (!ext) {
				pr_warn("failed to find extern definition for BTF var '%s'\n",
					ext_name);
				return -ESRCH;
			}
			btf_var(t)->linkage = BTF_VAR_GLOBAL_ALLOCATED;
			vs->offset = ext->kcfg.data_off;
3748 3749 3750 3751 3752
		}
	}
	return 0;
}

3753
struct bpf_program *
A
Andrii Nakryiko 已提交
3754 3755
bpf_object__find_program_by_title(const struct bpf_object *obj,
				  const char *title)
3756 3757 3758 3759
{
	struct bpf_program *pos;

	bpf_object__for_each_program(pos, obj) {
3760
		if (pos->sec_name && !strcmp(pos->sec_name, title))
3761 3762
			return pos;
	}
3763
	return errno = ENOENT, NULL;
3764 3765
}

3766 3767 3768
static bool prog_is_subprog(const struct bpf_object *obj,
			    const struct bpf_program *prog)
{
3769 3770 3771 3772 3773 3774 3775 3776 3777 3778 3779 3780 3781
	/* For legacy reasons, libbpf supports an entry-point BPF programs
	 * without SEC() attribute, i.e., those in the .text section. But if
	 * there are 2 or more such programs in the .text section, they all
	 * must be subprograms called from entry-point BPF programs in
	 * designated SEC()'tions, otherwise there is no way to distinguish
	 * which of those programs should be loaded vs which are a subprogram.
	 * Similarly, if there is a function/program in .text and at least one
	 * other BPF program with custom SEC() attribute, then we just assume
	 * .text programs are subprograms (even if they are not called from
	 * other programs), because libbpf never explicitly supported mixing
	 * SEC()-designated BPF programs and .text entry-point BPF programs.
	 */
	return prog->sec_idx == obj->efile.text_shndx && obj->nr_programs > 1;
3782 3783
}

3784 3785 3786 3787 3788 3789 3790
struct bpf_program *
bpf_object__find_program_by_name(const struct bpf_object *obj,
				 const char *name)
{
	struct bpf_program *prog;

	bpf_object__for_each_program(prog, obj) {
3791 3792
		if (prog_is_subprog(obj, prog))
			continue;
3793 3794 3795
		if (!strcmp(prog->name, name))
			return prog;
	}
3796
	return errno = ENOENT, NULL;
3797 3798
}

3799 3800 3801
static bool bpf_object__shndx_is_data(const struct bpf_object *obj,
				      int shndx)
{
3802 3803 3804 3805 3806 3807 3808 3809
	switch (obj->efile.secs[shndx].sec_type) {
	case SEC_BSS:
	case SEC_DATA:
	case SEC_RODATA:
		return true;
	default:
		return false;
	}
3810 3811 3812 3813 3814
}

static bool bpf_object__shndx_is_maps(const struct bpf_object *obj,
				      int shndx)
{
3815 3816
	return shndx == obj->efile.maps_shndx ||
	       shndx == obj->efile.btf_maps_shndx;
3817 3818 3819 3820 3821
}

static enum libbpf_map_type
bpf_object__section_to_libbpf_map_type(const struct bpf_object *obj, int shndx)
{
3822 3823 3824 3825 3826
	if (shndx == obj->efile.symbols_shndx)
		return LIBBPF_MAP_KCONFIG;

	switch (obj->efile.secs[shndx].sec_type) {
	case SEC_BSS:
3827
		return LIBBPF_MAP_BSS;
3828 3829 3830
	case SEC_DATA:
		return LIBBPF_MAP_DATA;
	case SEC_RODATA:
3831
		return LIBBPF_MAP_RODATA;
3832
	default:
3833
		return LIBBPF_MAP_UNSPEC;
3834
	}
3835 3836
}

3837 3838
static int bpf_program__record_reloc(struct bpf_program *prog,
				     struct reloc_desc *reloc_desc,
3839
				     __u32 insn_idx, const char *sym_name,
3840
				     const Elf64_Sym *sym, const Elf64_Rel *rel)
3841 3842 3843 3844 3845 3846
{
	struct bpf_insn *insn = &prog->insns[insn_idx];
	size_t map_idx, nr_maps = prog->obj->nr_maps;
	struct bpf_object *obj = prog->obj;
	__u32 shdr_idx = sym->st_shndx;
	enum libbpf_map_type type;
3847
	const char *sym_sec_name;
3848 3849
	struct bpf_map *map;

3850
	if (!is_call_insn(insn) && !is_ldimm64_insn(insn)) {
3851 3852
		pr_warn("prog '%s': invalid relo against '%s' for insns[%d].code 0x%x\n",
			prog->name, sym_name, insn_idx, insn->code);
3853 3854
		return -LIBBPF_ERRNO__RELOC;
	}
3855 3856

	if (sym_is_extern(sym)) {
3857
		int sym_idx = ELF64_R_SYM(rel->r_info);
3858 3859 3860 3861 3862 3863 3864 3865 3866
		int i, n = obj->nr_extern;
		struct extern_desc *ext;

		for (i = 0; i < n; i++) {
			ext = &obj->externs[i];
			if (ext->sym_idx == sym_idx)
				break;
		}
		if (i >= n) {
3867 3868
			pr_warn("prog '%s': extern relo failed to find extern for '%s' (%d)\n",
				prog->name, sym_name, sym_idx);
3869 3870
			return -LIBBPF_ERRNO__RELOC;
		}
3871 3872
		pr_debug("prog '%s': found extern #%d '%s' (sym %d) for insn #%u\n",
			 prog->name, i, ext->name, ext->sym_idx, insn_idx);
3873 3874 3875 3876
		if (insn->code == (BPF_JMP | BPF_CALL))
			reloc_desc->type = RELO_EXTERN_FUNC;
		else
			reloc_desc->type = RELO_EXTERN_VAR;
3877
		reloc_desc->insn_idx = insn_idx;
3878
		reloc_desc->sym_off = i; /* sym_off stores extern index */
3879 3880 3881
		return 0;
	}

3882 3883 3884 3885 3886 3887 3888 3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905
	/* sub-program call relocation */
	if (is_call_insn(insn)) {
		if (insn->src_reg != BPF_PSEUDO_CALL) {
			pr_warn("prog '%s': incorrect bpf_call opcode\n", prog->name);
			return -LIBBPF_ERRNO__RELOC;
		}
		/* text_shndx can be 0, if no default "main" program exists */
		if (!shdr_idx || shdr_idx != obj->efile.text_shndx) {
			sym_sec_name = elf_sec_name(obj, elf_sec_by_idx(obj, shdr_idx));
			pr_warn("prog '%s': bad call relo against '%s' in section '%s'\n",
				prog->name, sym_name, sym_sec_name);
			return -LIBBPF_ERRNO__RELOC;
		}
		if (sym->st_value % BPF_INSN_SZ) {
			pr_warn("prog '%s': bad call relo against '%s' at offset %zu\n",
				prog->name, sym_name, (size_t)sym->st_value);
			return -LIBBPF_ERRNO__RELOC;
		}
		reloc_desc->type = RELO_CALL;
		reloc_desc->insn_idx = insn_idx;
		reloc_desc->sym_off = sym->st_value;
		return 0;
	}

3906
	if (!shdr_idx || shdr_idx >= SHN_LORESERVE) {
3907 3908
		pr_warn("prog '%s': invalid relo against '%s' in special section 0x%x; forgot to initialize global var?..\n",
			prog->name, sym_name, shdr_idx);
3909 3910 3911
		return -LIBBPF_ERRNO__RELOC;
	}

3912 3913 3914 3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928
	/* loading subprog addresses */
	if (sym_is_subprog(sym, obj->efile.text_shndx)) {
		/* global_func: sym->st_value = offset in the section, insn->imm = 0.
		 * local_func: sym->st_value = 0, insn->imm = offset in the section.
		 */
		if ((sym->st_value % BPF_INSN_SZ) || (insn->imm % BPF_INSN_SZ)) {
			pr_warn("prog '%s': bad subprog addr relo against '%s' at offset %zu+%d\n",
				prog->name, sym_name, (size_t)sym->st_value, insn->imm);
			return -LIBBPF_ERRNO__RELOC;
		}

		reloc_desc->type = RELO_SUBPROG_ADDR;
		reloc_desc->insn_idx = insn_idx;
		reloc_desc->sym_off = sym->st_value;
		return 0;
	}

3929
	type = bpf_object__section_to_libbpf_map_type(obj, shdr_idx);
3930
	sym_sec_name = elf_sec_name(obj, elf_sec_by_idx(obj, shdr_idx));
3931 3932 3933 3934

	/* generic map reference relocation */
	if (type == LIBBPF_MAP_UNSPEC) {
		if (!bpf_object__shndx_is_maps(obj, shdr_idx)) {
3935 3936
			pr_warn("prog '%s': bad map relo against '%s' in section '%s'\n",
				prog->name, sym_name, sym_sec_name);
3937 3938 3939 3940 3941 3942 3943 3944
			return -LIBBPF_ERRNO__RELOC;
		}
		for (map_idx = 0; map_idx < nr_maps; map_idx++) {
			map = &obj->maps[map_idx];
			if (map->libbpf_type != type ||
			    map->sec_idx != sym->st_shndx ||
			    map->sec_offset != sym->st_value)
				continue;
3945 3946
			pr_debug("prog '%s': found map %zd (%s, sec %d, off %zu) for insn #%u\n",
				 prog->name, map_idx, map->name, map->sec_idx,
3947 3948 3949 3950
				 map->sec_offset, insn_idx);
			break;
		}
		if (map_idx >= nr_maps) {
3951 3952
			pr_warn("prog '%s': map relo failed to find map for section '%s', off %zu\n",
				prog->name, sym_sec_name, (size_t)sym->st_value);
3953 3954 3955 3956 3957
			return -LIBBPF_ERRNO__RELOC;
		}
		reloc_desc->type = RELO_LD64;
		reloc_desc->insn_idx = insn_idx;
		reloc_desc->map_idx = map_idx;
3958
		reloc_desc->sym_off = 0; /* sym->st_value determines map_idx */
3959 3960 3961 3962 3963
		return 0;
	}

	/* global data map relocation */
	if (!bpf_object__shndx_is_data(obj, shdr_idx)) {
3964 3965
		pr_warn("prog '%s': bad data relo against section '%s'\n",
			prog->name, sym_sec_name);
3966 3967 3968 3969
		return -LIBBPF_ERRNO__RELOC;
	}
	for (map_idx = 0; map_idx < nr_maps; map_idx++) {
		map = &obj->maps[map_idx];
3970
		if (map->libbpf_type != type || map->sec_idx != sym->st_shndx)
3971
			continue;
3972 3973 3974
		pr_debug("prog '%s': found data map %zd (%s, sec %d, off %zu) for insn %u\n",
			 prog->name, map_idx, map->name, map->sec_idx,
			 map->sec_offset, insn_idx);
3975 3976 3977
		break;
	}
	if (map_idx >= nr_maps) {
3978 3979
		pr_warn("prog '%s': data relo failed to find map for section '%s'\n",
			prog->name, sym_sec_name);
3980 3981 3982 3983 3984 3985
		return -LIBBPF_ERRNO__RELOC;
	}

	reloc_desc->type = RELO_DATA;
	reloc_desc->insn_idx = insn_idx;
	reloc_desc->map_idx = map_idx;
3986
	reloc_desc->sym_off = sym->st_value;
3987 3988 3989
	return 0;
}

3990 3991 3992 3993 3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006 4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020
static bool prog_contains_insn(const struct bpf_program *prog, size_t insn_idx)
{
	return insn_idx >= prog->sec_insn_off &&
	       insn_idx < prog->sec_insn_off + prog->sec_insn_cnt;
}

static struct bpf_program *find_prog_by_sec_insn(const struct bpf_object *obj,
						 size_t sec_idx, size_t insn_idx)
{
	int l = 0, r = obj->nr_programs - 1, m;
	struct bpf_program *prog;

	while (l < r) {
		m = l + (r - l + 1) / 2;
		prog = &obj->programs[m];

		if (prog->sec_idx < sec_idx ||
		    (prog->sec_idx == sec_idx && prog->sec_insn_off <= insn_idx))
			l = m;
		else
			r = m - 1;
	}
	/* matching program could be at index l, but it still might be the
	 * wrong one, so we need to double check conditions for the last time
	 */
	prog = &obj->programs[l];
	if (prog->sec_idx == sec_idx && prog_contains_insn(prog, insn_idx))
		return prog;
	return NULL;
}

4021
static int
4022
bpf_object__collect_prog_relos(struct bpf_object *obj, Elf64_Shdr *shdr, Elf_Data *data)
4023
{
4024 4025
	const char *relo_sec_name, *sec_name;
	size_t sec_idx = shdr->sh_info;
4026 4027
	struct bpf_program *prog;
	struct reloc_desc *relos;
4028
	int err, i, nrels;
4029 4030
	const char *sym_name;
	__u32 insn_idx;
4031 4032
	Elf_Scn *scn;
	Elf_Data *scn_data;
4033 4034
	Elf64_Sym *sym;
	Elf64_Rel *rel;
4035

4036 4037 4038
	scn = elf_sec_by_idx(obj, sec_idx);
	scn_data = elf_sec_data(obj, scn);

4039
	relo_sec_name = elf_sec_str(obj, shdr->sh_name);
4040
	sec_name = elf_sec_name(obj, scn);
4041 4042 4043 4044 4045
	if (!relo_sec_name || !sec_name)
		return -EINVAL;

	pr_debug("sec '%s': collecting relocation for section(%zu) '%s'\n",
		 relo_sec_name, sec_idx, sec_name);
4046 4047 4048
	nrels = shdr->sh_size / shdr->sh_entsize;

	for (i = 0; i < nrels; i++) {
4049 4050
		rel = elf_rel_by_idx(data, i);
		if (!rel) {
4051
			pr_warn("sec '%s': failed to get relo #%d\n", relo_sec_name, i);
4052
			return -LIBBPF_ERRNO__FORMAT;
4053
		}
4054 4055 4056

		sym = elf_sym_by_idx(obj, ELF64_R_SYM(rel->r_info));
		if (!sym) {
4057
			pr_warn("sec '%s': symbol 0x%zx not found for relo #%d\n",
4058
				relo_sec_name, (size_t)ELF64_R_SYM(rel->r_info), i);
4059
			return -LIBBPF_ERRNO__FORMAT;
4060
		}
4061

4062
		if (rel->r_offset % BPF_INSN_SZ || rel->r_offset >= scn_data->d_size) {
4063
			pr_warn("sec '%s': invalid offset 0x%zx for relo #%d\n",
4064
				relo_sec_name, (size_t)ELF64_R_SYM(rel->r_info), i);
4065
			return -LIBBPF_ERRNO__FORMAT;
4066
		}
4067

4068
		insn_idx = rel->r_offset / BPF_INSN_SZ;
4069 4070 4071 4072 4073 4074
		/* relocations against static functions are recorded as
		 * relocations against the section that contains a function;
		 * in such case, symbol will be STT_SECTION and sym.st_name
		 * will point to empty string (0), so fetch section name
		 * instead
		 */
4075 4076
		if (ELF64_ST_TYPE(sym->st_info) == STT_SECTION && sym->st_name == 0)
			sym_name = elf_sec_name(obj, elf_sec_by_idx(obj, sym->st_shndx));
4077
		else
4078
			sym_name = elf_sym_str(obj, sym->st_name);
4079
		sym_name = sym_name ?: "<?";
4080

4081 4082
		pr_debug("sec '%s': relo #%d: insn #%u against '%s'\n",
			 relo_sec_name, i, insn_idx, sym_name);
4083

4084 4085
		prog = find_prog_by_sec_insn(obj, sec_idx, insn_idx);
		if (!prog) {
4086
			pr_debug("sec '%s': relo #%d: couldn't find program in section '%s' for insn #%u, probably overridden weak function, skipping...\n",
4087
				relo_sec_name, i, sec_name, insn_idx);
4088
			continue;
4089 4090 4091 4092 4093 4094 4095 4096 4097 4098 4099
		}

		relos = libbpf_reallocarray(prog->reloc_desc,
					    prog->nr_reloc + 1, sizeof(*relos));
		if (!relos)
			return -ENOMEM;
		prog->reloc_desc = relos;

		/* adjust insn_idx to local BPF program frame of reference */
		insn_idx -= prog->sec_insn_off;
		err = bpf_program__record_reloc(prog, &relos[prog->nr_reloc],
4100
						insn_idx, sym_name, sym, rel);
4101 4102
		if (err)
			return err;
4103 4104

		prog->nr_reloc++;
4105 4106 4107 4108
	}
	return 0;
}

4109
static int bpf_map_find_btf_info(struct bpf_object *obj, struct bpf_map *map)
4110 4111
{
	struct bpf_map_def *def = &map->def;
4112
	__u32 key_type_id = 0, value_type_id = 0;
4113
	int ret;
4114

4115 4116 4117 4118 4119 4120
	/* if it's BTF-defined map, we don't need to search for type IDs.
	 * For struct_ops map, it does not need btf_key_type_id and
	 * btf_value_type_id.
	 */
	if (map->sec_idx == obj->efile.btf_maps_shndx ||
	    bpf_map__is_struct_ops(map))
4121 4122
		return 0;

4123
	if (!bpf_map__is_internal(map)) {
4124
		ret = btf__get_map_kv_tids(obj->btf, map->name, def->key_size,
4125 4126 4127 4128 4129 4130 4131
					   def->value_size, &key_type_id,
					   &value_type_id);
	} else {
		/*
		 * LLVM annotates global data differently in BTF, that is,
		 * only as '.data', '.bss' or '.rodata'.
		 */
4132
		ret = btf__find_by_name(obj->btf, map->real_name);
4133 4134
	}
	if (ret < 0)
4135
		return ret;
4136

4137
	map->btf_key_type_id = key_type_id;
4138 4139
	map->btf_value_type_id = bpf_map__is_internal(map) ?
				 ret : value_type_id;
4140 4141 4142
	return 0;
}

4143 4144 4145 4146 4147 4148 4149 4150 4151 4152 4153 4154 4155 4156 4157 4158 4159 4160 4161 4162 4163 4164 4165 4166 4167 4168 4169 4170 4171 4172 4173 4174 4175 4176 4177 4178
static int bpf_get_map_info_from_fdinfo(int fd, struct bpf_map_info *info)
{
	char file[PATH_MAX], buff[4096];
	FILE *fp;
	__u32 val;
	int err;

	snprintf(file, sizeof(file), "/proc/%d/fdinfo/%d", getpid(), fd);
	memset(info, 0, sizeof(*info));

	fp = fopen(file, "r");
	if (!fp) {
		err = -errno;
		pr_warn("failed to open %s: %d. No procfs support?\n", file,
			err);
		return err;
	}

	while (fgets(buff, sizeof(buff), fp)) {
		if (sscanf(buff, "map_type:\t%u", &val) == 1)
			info->type = val;
		else if (sscanf(buff, "key_size:\t%u", &val) == 1)
			info->key_size = val;
		else if (sscanf(buff, "value_size:\t%u", &val) == 1)
			info->value_size = val;
		else if (sscanf(buff, "max_entries:\t%u", &val) == 1)
			info->max_entries = val;
		else if (sscanf(buff, "map_flags:\t%i", &val) == 1)
			info->map_flags = val;
	}

	fclose(fp);

	return 0;
}

J
Jakub Kicinski 已提交
4179 4180 4181 4182 4183 4184 4185 4186
int bpf_map__reuse_fd(struct bpf_map *map, int fd)
{
	struct bpf_map_info info = {};
	__u32 len = sizeof(info);
	int new_fd, err;
	char *new_name;

	err = bpf_obj_get_info_by_fd(fd, &info, &len);
4187 4188
	if (err && errno == EINVAL)
		err = bpf_get_map_info_from_fdinfo(fd, &info);
J
Jakub Kicinski 已提交
4189
	if (err)
4190
		return libbpf_err(err);
J
Jakub Kicinski 已提交
4191 4192 4193

	new_name = strdup(info.name);
	if (!new_name)
4194
		return libbpf_err(-errno);
J
Jakub Kicinski 已提交
4195 4196

	new_fd = open("/", O_RDONLY | O_CLOEXEC);
4197 4198
	if (new_fd < 0) {
		err = -errno;
J
Jakub Kicinski 已提交
4199
		goto err_free_new_name;
4200
	}
J
Jakub Kicinski 已提交
4201 4202

	new_fd = dup3(fd, new_fd, O_CLOEXEC);
4203 4204
	if (new_fd < 0) {
		err = -errno;
J
Jakub Kicinski 已提交
4205
		goto err_close_new_fd;
4206
	}
J
Jakub Kicinski 已提交
4207 4208

	err = zclose(map->fd);
4209 4210
	if (err) {
		err = -errno;
J
Jakub Kicinski 已提交
4211
		goto err_close_new_fd;
4212
	}
J
Jakub Kicinski 已提交
4213 4214 4215 4216 4217 4218 4219 4220 4221 4222 4223
	free(map->name);

	map->fd = new_fd;
	map->name = new_name;
	map->def.type = info.type;
	map->def.key_size = info.key_size;
	map->def.value_size = info.value_size;
	map->def.max_entries = info.max_entries;
	map->def.map_flags = info.map_flags;
	map->btf_key_type_id = info.btf_key_type_id;
	map->btf_value_type_id = info.btf_value_type_id;
4224
	map->reused = true;
4225
	map->map_extra = info.map_extra;
J
Jakub Kicinski 已提交
4226 4227 4228 4229 4230 4231 4232

	return 0;

err_close_new_fd:
	close(new_fd);
err_free_new_name:
	free(new_name);
4233
	return libbpf_err(err);
J
Jakub Kicinski 已提交
4234 4235
}

4236
__u32 bpf_map__max_entries(const struct bpf_map *map)
4237
{
4238 4239
	return map->def.max_entries;
}
4240

4241 4242 4243
struct bpf_map *bpf_map__inner_map(struct bpf_map *map)
{
	if (!bpf_map_type__is_map_in_map(map->def.type))
4244
		return errno = EINVAL, NULL;
4245 4246 4247 4248

	return map->inner_map;
}

4249 4250
int bpf_map__set_max_entries(struct bpf_map *map, __u32 max_entries)
{
4251
	if (map->fd >= 0)
4252
		return libbpf_err(-EBUSY);
4253 4254 4255 4256
	map->def.max_entries = max_entries;
	return 0;
}

4257 4258 4259
int bpf_map__resize(struct bpf_map *map, __u32 max_entries)
{
	if (!map || !max_entries)
4260
		return libbpf_err(-EINVAL);
4261 4262 4263 4264

	return bpf_map__set_max_entries(map, max_entries);
}

4265
static int
4266
bpf_object__probe_loading(struct bpf_object *obj)
4267 4268 4269 4270 4271 4272 4273 4274 4275
{
	struct bpf_load_program_attr attr;
	char *cp, errmsg[STRERR_BUFSIZE];
	struct bpf_insn insns[] = {
		BPF_MOV64_IMM(BPF_REG_0, 0),
		BPF_EXIT_INSN(),
	};
	int ret;

4276 4277 4278
	if (obj->gen_loader)
		return 0;

4279 4280 4281 4282 4283 4284 4285 4286 4287
	/* make sure basic loading works */

	memset(&attr, 0, sizeof(attr));
	attr.prog_type = BPF_PROG_TYPE_SOCKET_FILTER;
	attr.insns = insns;
	attr.insns_cnt = ARRAY_SIZE(insns);
	attr.license = "GPL";

	ret = bpf_load_program_xattr(&attr, NULL, 0);
4288 4289 4290 4291
	if (ret < 0) {
		attr.prog_type = BPF_PROG_TYPE_TRACEPOINT;
		ret = bpf_load_program_xattr(&attr, NULL, 0);
	}
4292
	if (ret < 0) {
4293 4294 4295 4296 4297 4298 4299
		ret = errno;
		cp = libbpf_strerror_r(ret, errmsg, sizeof(errmsg));
		pr_warn("Error in %s():%s(%d). Couldn't load trivial BPF "
			"program. Make sure your kernel supports BPF "
			"(CONFIG_BPF_SYSCALL=y) and/or that RLIMIT_MEMLOCK is "
			"set to big enough value.\n", __func__, cp, ret);
		return -ret;
4300 4301 4302
	}
	close(ret);

4303 4304 4305
	return 0;
}

4306 4307 4308 4309 4310 4311 4312
static int probe_fd(int fd)
{
	if (fd >= 0)
		close(fd);
	return fd >= 0;
}

4313
static int probe_kern_prog_name(void)
4314 4315 4316 4317 4318 4319 4320 4321 4322
{
	struct bpf_load_program_attr attr;
	struct bpf_insn insns[] = {
		BPF_MOV64_IMM(BPF_REG_0, 0),
		BPF_EXIT_INSN(),
	};
	int ret;

	/* make sure loading with name works */
4323

4324 4325 4326 4327 4328
	memset(&attr, 0, sizeof(attr));
	attr.prog_type = BPF_PROG_TYPE_SOCKET_FILTER;
	attr.insns = insns;
	attr.insns_cnt = ARRAY_SIZE(insns);
	attr.license = "GPL";
4329 4330
	attr.name = "test";
	ret = bpf_load_program_xattr(&attr, NULL, 0);
4331
	return probe_fd(ret);
4332 4333
}

4334
static int probe_kern_global_data(void)
4335 4336 4337 4338 4339 4340 4341 4342 4343 4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354
{
	struct bpf_load_program_attr prg_attr;
	struct bpf_create_map_attr map_attr;
	char *cp, errmsg[STRERR_BUFSIZE];
	struct bpf_insn insns[] = {
		BPF_LD_MAP_VALUE(BPF_REG_1, 0, 16),
		BPF_ST_MEM(BPF_DW, BPF_REG_1, 0, 42),
		BPF_MOV64_IMM(BPF_REG_0, 0),
		BPF_EXIT_INSN(),
	};
	int ret, map;

	memset(&map_attr, 0, sizeof(map_attr));
	map_attr.map_type = BPF_MAP_TYPE_ARRAY;
	map_attr.key_size = sizeof(int);
	map_attr.value_size = 32;
	map_attr.max_entries = 1;

	map = bpf_create_map_xattr(&map_attr);
	if (map < 0) {
4355 4356
		ret = -errno;
		cp = libbpf_strerror_r(ret, errmsg, sizeof(errmsg));
4357
		pr_warn("Error in %s():%s(%d). Couldn't create simple array map.\n",
4358 4359
			__func__, cp, -ret);
		return ret;
4360 4361 4362 4363 4364 4365 4366 4367 4368 4369 4370
	}

	insns[0].imm = map;

	memset(&prg_attr, 0, sizeof(prg_attr));
	prg_attr.prog_type = BPF_PROG_TYPE_SOCKET_FILTER;
	prg_attr.insns = insns;
	prg_attr.insns_cnt = ARRAY_SIZE(insns);
	prg_attr.license = "GPL";

	ret = bpf_load_program_xattr(&prg_attr, NULL, 0);
4371
	close(map);
4372
	return probe_fd(ret);
4373 4374
}

4375 4376 4377 4378 4379 4380 4381 4382 4383 4384 4385 4386
static int probe_kern_btf(void)
{
	static const char strs[] = "\0int";
	__u32 types[] = {
		/* int */
		BTF_TYPE_INT_ENC(1, BTF_INT_SIGNED, 0, 32, 4),
	};

	return probe_fd(libbpf__load_raw_btf((char *)types, sizeof(types),
					     strs, sizeof(strs)));
}

4387
static int probe_kern_btf_func(void)
4388
{
4389
	static const char strs[] = "\0int\0x\0a";
4390 4391 4392 4393 4394 4395 4396 4397 4398 4399 4400
	/* void x(int a) {} */
	__u32 types[] = {
		/* int */
		BTF_TYPE_INT_ENC(1, BTF_INT_SIGNED, 0, 32, 4),  /* [1] */
		/* FUNC_PROTO */                                /* [2] */
		BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_FUNC_PROTO, 0, 1), 0),
		BTF_PARAM_ENC(7, 1),
		/* FUNC x */                                    /* [3] */
		BTF_TYPE_ENC(5, BTF_INFO_ENC(BTF_KIND_FUNC, 0, 0), 2),
	};

4401 4402
	return probe_fd(libbpf__load_raw_btf((char *)types, sizeof(types),
					     strs, sizeof(strs)));
4403 4404
}

4405
static int probe_kern_btf_func_global(void)
4406 4407 4408 4409 4410 4411 4412 4413 4414 4415 4416 4417 4418
{
	static const char strs[] = "\0int\0x\0a";
	/* static void x(int a) {} */
	__u32 types[] = {
		/* int */
		BTF_TYPE_INT_ENC(1, BTF_INT_SIGNED, 0, 32, 4),  /* [1] */
		/* FUNC_PROTO */                                /* [2] */
		BTF_TYPE_ENC(0, BTF_INFO_ENC(BTF_KIND_FUNC_PROTO, 0, 1), 0),
		BTF_PARAM_ENC(7, 1),
		/* FUNC x BTF_FUNC_GLOBAL */                    /* [3] */
		BTF_TYPE_ENC(5, BTF_INFO_ENC(BTF_KIND_FUNC, 0, BTF_FUNC_GLOBAL), 2),
	};

4419 4420
	return probe_fd(libbpf__load_raw_btf((char *)types, sizeof(types),
					     strs, sizeof(strs)));
4421 4422
}

4423
static int probe_kern_btf_datasec(void)
4424
{
4425
	static const char strs[] = "\0x\0.data";
4426 4427 4428 4429 4430 4431 4432 4433 4434 4435 4436
	/* static int a; */
	__u32 types[] = {
		/* int */
		BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4),  /* [1] */
		/* VAR x */                                     /* [2] */
		BTF_TYPE_ENC(1, BTF_INFO_ENC(BTF_KIND_VAR, 0, 0), 1),
		BTF_VAR_STATIC,
		/* DATASEC val */                               /* [3] */
		BTF_TYPE_ENC(3, BTF_INFO_ENC(BTF_KIND_DATASEC, 0, 1), 4),
		BTF_VAR_SECINFO_ENC(2, 0, 4),
	};
4437

4438 4439
	return probe_fd(libbpf__load_raw_btf((char *)types, sizeof(types),
					     strs, sizeof(strs)));
4440 4441
}

4442 4443 4444 4445 4446 4447 4448 4449 4450 4451 4452 4453
static int probe_kern_btf_float(void)
{
	static const char strs[] = "\0float";
	__u32 types[] = {
		/* float */
		BTF_TYPE_FLOAT_ENC(1, 4),
	};

	return probe_fd(libbpf__load_raw_btf((char *)types, sizeof(types),
					     strs, sizeof(strs)));
}

4454
static int probe_kern_btf_decl_tag(void)
4455 4456 4457 4458 4459 4460 4461 4462 4463
{
	static const char strs[] = "\0tag";
	__u32 types[] = {
		/* int */
		BTF_TYPE_INT_ENC(0, BTF_INT_SIGNED, 0, 32, 4),  /* [1] */
		/* VAR x */                                     /* [2] */
		BTF_TYPE_ENC(1, BTF_INFO_ENC(BTF_KIND_VAR, 0, 0), 1),
		BTF_VAR_STATIC,
		/* attr */
4464
		BTF_TYPE_DECL_TAG_ENC(1, 2, -1),
4465 4466 4467 4468 4469 4470
	};

	return probe_fd(libbpf__load_raw_btf((char *)types, sizeof(types),
					     strs, sizeof(strs)));
}

4471
static int probe_kern_array_mmap(void)
4472 4473 4474 4475 4476 4477 4478 4479 4480
{
	struct bpf_create_map_attr attr = {
		.map_type = BPF_MAP_TYPE_ARRAY,
		.map_flags = BPF_F_MMAPABLE,
		.key_size = sizeof(int),
		.value_size = sizeof(int),
		.max_entries = 1,
	};

4481
	return probe_fd(bpf_create_map_xattr(&attr));
4482 4483
}

4484
static int probe_kern_exp_attach_type(void)
4485 4486 4487 4488 4489 4490 4491 4492 4493 4494 4495 4496 4497 4498 4499 4500 4501 4502 4503
{
	struct bpf_load_program_attr attr;
	struct bpf_insn insns[] = {
		BPF_MOV64_IMM(BPF_REG_0, 0),
		BPF_EXIT_INSN(),
	};

	memset(&attr, 0, sizeof(attr));
	/* use any valid combination of program type and (optional)
	 * non-zero expected attach type (i.e., not a BPF_CGROUP_INET_INGRESS)
	 * to see if kernel supports expected_attach_type field for
	 * BPF_PROG_LOAD command
	 */
	attr.prog_type = BPF_PROG_TYPE_CGROUP_SOCK;
	attr.expected_attach_type = BPF_CGROUP_INET_SOCK_CREATE;
	attr.insns = insns;
	attr.insns_cnt = ARRAY_SIZE(insns);
	attr.license = "GPL";

4504
	return probe_fd(bpf_load_program_xattr(&attr, NULL, 0));
4505 4506
}

4507 4508 4509 4510 4511 4512 4513 4514 4515 4516 4517 4518 4519 4520 4521 4522 4523 4524 4525 4526 4527
static int probe_kern_probe_read_kernel(void)
{
	struct bpf_load_program_attr attr;
	struct bpf_insn insns[] = {
		BPF_MOV64_REG(BPF_REG_1, BPF_REG_10),	/* r1 = r10 (fp) */
		BPF_ALU64_IMM(BPF_ADD, BPF_REG_1, -8),	/* r1 += -8 */
		BPF_MOV64_IMM(BPF_REG_2, 8),		/* r2 = 8 */
		BPF_MOV64_IMM(BPF_REG_3, 0),		/* r3 = 0 */
		BPF_RAW_INSN(BPF_JMP | BPF_CALL, 0, 0, 0, BPF_FUNC_probe_read_kernel),
		BPF_EXIT_INSN(),
	};

	memset(&attr, 0, sizeof(attr));
	attr.prog_type = BPF_PROG_TYPE_KPROBE;
	attr.insns = insns;
	attr.insns_cnt = ARRAY_SIZE(insns);
	attr.license = "GPL";

	return probe_fd(bpf_load_program_xattr(&attr, NULL, 0));
}

4528 4529 4530 4531 4532 4533 4534 4535 4536 4537 4538 4539 4540 4541 4542 4543 4544 4545 4546 4547 4548 4549 4550 4551 4552 4553 4554 4555 4556 4557 4558 4559 4560 4561 4562 4563 4564 4565 4566 4567 4568 4569 4570 4571 4572 4573
static int probe_prog_bind_map(void)
{
	struct bpf_load_program_attr prg_attr;
	struct bpf_create_map_attr map_attr;
	char *cp, errmsg[STRERR_BUFSIZE];
	struct bpf_insn insns[] = {
		BPF_MOV64_IMM(BPF_REG_0, 0),
		BPF_EXIT_INSN(),
	};
	int ret, map, prog;

	memset(&map_attr, 0, sizeof(map_attr));
	map_attr.map_type = BPF_MAP_TYPE_ARRAY;
	map_attr.key_size = sizeof(int);
	map_attr.value_size = 32;
	map_attr.max_entries = 1;

	map = bpf_create_map_xattr(&map_attr);
	if (map < 0) {
		ret = -errno;
		cp = libbpf_strerror_r(ret, errmsg, sizeof(errmsg));
		pr_warn("Error in %s():%s(%d). Couldn't create simple array map.\n",
			__func__, cp, -ret);
		return ret;
	}

	memset(&prg_attr, 0, sizeof(prg_attr));
	prg_attr.prog_type = BPF_PROG_TYPE_SOCKET_FILTER;
	prg_attr.insns = insns;
	prg_attr.insns_cnt = ARRAY_SIZE(insns);
	prg_attr.license = "GPL";

	prog = bpf_load_program_xattr(&prg_attr, NULL, 0);
	if (prog < 0) {
		close(map);
		return 0;
	}

	ret = bpf_prog_bind_map(prog, map, NULL);

	close(map);
	close(prog);

	return ret >= 0;
}

4574 4575 4576 4577 4578 4579 4580 4581 4582 4583 4584 4585 4586 4587 4588 4589 4590 4591 4592 4593 4594 4595 4596 4597 4598 4599 4600 4601 4602
static int probe_module_btf(void)
{
	static const char strs[] = "\0int";
	__u32 types[] = {
		/* int */
		BTF_TYPE_INT_ENC(1, BTF_INT_SIGNED, 0, 32, 4),
	};
	struct bpf_btf_info info;
	__u32 len = sizeof(info);
	char name[16];
	int fd, err;

	fd = libbpf__load_raw_btf((char *)types, sizeof(types), strs, sizeof(strs));
	if (fd < 0)
		return 0; /* BTF not supported at all */

	memset(&info, 0, sizeof(info));
	info.name = ptr_to_u64(name);
	info.name_len = sizeof(name);

	/* check that BPF_OBJ_GET_INFO_BY_FD supports specifying name pointer;
	 * kernel's module BTF support coincides with support for
	 * name/name_len fields in struct bpf_btf_info.
	 */
	err = bpf_obj_get_info_by_fd(fd, &info, &len);
	close(fd);
	return !err;
}

4603 4604 4605 4606 4607 4608 4609 4610 4611 4612 4613 4614 4615 4616 4617 4618 4619 4620 4621 4622 4623 4624 4625 4626 4627 4628 4629 4630 4631 4632 4633
static int probe_perf_link(void)
{
	struct bpf_load_program_attr attr;
	struct bpf_insn insns[] = {
		BPF_MOV64_IMM(BPF_REG_0, 0),
		BPF_EXIT_INSN(),
	};
	int prog_fd, link_fd, err;

	memset(&attr, 0, sizeof(attr));
	attr.prog_type = BPF_PROG_TYPE_TRACEPOINT;
	attr.insns = insns;
	attr.insns_cnt = ARRAY_SIZE(insns);
	attr.license = "GPL";
	prog_fd = bpf_load_program_xattr(&attr, NULL, 0);
	if (prog_fd < 0)
		return -errno;

	/* use invalid perf_event FD to get EBADF, if link is supported;
	 * otherwise EINVAL should be returned
	 */
	link_fd = bpf_link_create(prog_fd, -1, BPF_PERF_EVENT, NULL);
	err = -errno; /* close() can clobber errno */

	if (link_fd >= 0)
		close(link_fd);
	close(prog_fd);

	return link_fd < 0 && err == -EBADF;
}

4634 4635 4636 4637 4638 4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650 4651 4652
enum kern_feature_result {
	FEAT_UNKNOWN = 0,
	FEAT_SUPPORTED = 1,
	FEAT_MISSING = 2,
};

typedef int (*feature_probe_fn)(void);

static struct kern_feature_desc {
	const char *desc;
	feature_probe_fn probe;
	enum kern_feature_result res;
} feature_probes[__FEAT_CNT] = {
	[FEAT_PROG_NAME] = {
		"BPF program name", probe_kern_prog_name,
	},
	[FEAT_GLOBAL_DATA] = {
		"global variables", probe_kern_global_data,
	},
4653 4654 4655
	[FEAT_BTF] = {
		"minimal BTF", probe_kern_btf,
	},
4656 4657 4658 4659 4660 4661 4662 4663 4664 4665 4666 4667 4668 4669 4670 4671
	[FEAT_BTF_FUNC] = {
		"BTF functions", probe_kern_btf_func,
	},
	[FEAT_BTF_GLOBAL_FUNC] = {
		"BTF global function", probe_kern_btf_func_global,
	},
	[FEAT_BTF_DATASEC] = {
		"BTF data section and variable", probe_kern_btf_datasec,
	},
	[FEAT_ARRAY_MMAP] = {
		"ARRAY map mmap()", probe_kern_array_mmap,
	},
	[FEAT_EXP_ATTACH_TYPE] = {
		"BPF_PROG_LOAD expected_attach_type attribute",
		probe_kern_exp_attach_type,
	},
4672 4673
	[FEAT_PROBE_READ_KERN] = {
		"bpf_probe_read_kernel() helper", probe_kern_probe_read_kernel,
4674 4675 4676
	},
	[FEAT_PROG_BIND_MAP] = {
		"BPF_PROG_BIND_MAP support", probe_prog_bind_map,
4677 4678 4679 4680
	},
	[FEAT_MODULE_BTF] = {
		"module BTF support", probe_module_btf,
	},
4681 4682 4683
	[FEAT_BTF_FLOAT] = {
		"BTF_KIND_FLOAT support", probe_kern_btf_float,
	},
4684 4685 4686
	[FEAT_PERF_LINK] = {
		"BPF perf link support", probe_perf_link,
	},
4687 4688
	[FEAT_BTF_DECL_TAG] = {
		"BTF_KIND_DECL_TAG support", probe_kern_btf_decl_tag,
4689
	},
4690
};
4691

4692
static bool kernel_supports(const struct bpf_object *obj, enum kern_feature_id feat_id)
4693 4694 4695 4696
{
	struct kern_feature_desc *feat = &feature_probes[feat_id];
	int ret;

4697 4698 4699 4700 4701 4702
	if (obj->gen_loader)
		/* To generate loader program assume the latest kernel
		 * to avoid doing extra prog_load, map_create syscalls.
		 */
		return true;

4703 4704 4705 4706 4707 4708 4709 4710 4711 4712
	if (READ_ONCE(feat->res) == FEAT_UNKNOWN) {
		ret = feat->probe();
		if (ret > 0) {
			WRITE_ONCE(feat->res, FEAT_SUPPORTED);
		} else if (ret == 0) {
			WRITE_ONCE(feat->res, FEAT_MISSING);
		} else {
			pr_warn("Detection of kernel %s support failed: %d\n", feat->desc, ret);
			WRITE_ONCE(feat->res, FEAT_MISSING);
		}
4713 4714
	}

4715
	return READ_ONCE(feat->res) == FEAT_SUPPORTED;
4716 4717
}

4718 4719 4720 4721 4722
static bool map_is_reuse_compat(const struct bpf_map *map, int map_fd)
{
	struct bpf_map_info map_info = {};
	char msg[STRERR_BUFSIZE];
	__u32 map_info_len;
4723
	int err;
4724 4725 4726

	map_info_len = sizeof(map_info);

4727 4728 4729 4730 4731 4732
	err = bpf_obj_get_info_by_fd(map_fd, &map_info, &map_info_len);
	if (err && errno == EINVAL)
		err = bpf_get_map_info_from_fdinfo(map_fd, &map_info);
	if (err) {
		pr_warn("failed to get map info for map FD %d: %s\n", map_fd,
			libbpf_strerror_r(errno, msg, sizeof(msg)));
4733 4734 4735 4736 4737 4738 4739
		return false;
	}

	return (map_info.type == map->def.type &&
		map_info.key_size == map->def.key_size &&
		map_info.value_size == map->def.value_size &&
		map_info.max_entries == map->def.max_entries &&
4740 4741
		map_info.map_flags == map->def.map_flags &&
		map_info.map_extra == map->map_extra);
4742 4743 4744 4745 4746 4747 4748 4749 4750 4751 4752 4753 4754 4755 4756 4757 4758 4759 4760 4761 4762 4763 4764 4765 4766 4767 4768 4769 4770 4771 4772 4773 4774 4775 4776 4777 4778 4779 4780 4781 4782
}

static int
bpf_object__reuse_map(struct bpf_map *map)
{
	char *cp, errmsg[STRERR_BUFSIZE];
	int err, pin_fd;

	pin_fd = bpf_obj_get(map->pin_path);
	if (pin_fd < 0) {
		err = -errno;
		if (err == -ENOENT) {
			pr_debug("found no pinned map to reuse at '%s'\n",
				 map->pin_path);
			return 0;
		}

		cp = libbpf_strerror_r(-err, errmsg, sizeof(errmsg));
		pr_warn("couldn't retrieve pinned map '%s': %s\n",
			map->pin_path, cp);
		return err;
	}

	if (!map_is_reuse_compat(map, pin_fd)) {
		pr_warn("couldn't reuse pinned map at '%s': parameter mismatch\n",
			map->pin_path);
		close(pin_fd);
		return -EINVAL;
	}

	err = bpf_map__reuse_fd(map, pin_fd);
	if (err) {
		close(pin_fd);
		return err;
	}
	map->pinned = true;
	pr_debug("reused pinned map at '%s'\n", map->pin_path);

	return 0;
}

4783 4784 4785
static int
bpf_object__populate_internal_map(struct bpf_object *obj, struct bpf_map *map)
{
4786
	enum libbpf_map_type map_type = map->libbpf_type;
4787 4788 4789
	char *cp, errmsg[STRERR_BUFSIZE];
	int err, zero = 0;

4790 4791 4792 4793 4794 4795 4796
	if (obj->gen_loader) {
		bpf_gen__map_update_elem(obj->gen_loader, map - obj->maps,
					 map->mmaped, map->def.value_size);
		if (map_type == LIBBPF_MAP_RODATA || map_type == LIBBPF_MAP_KCONFIG)
			bpf_gen__map_freeze(obj->gen_loader, map - obj->maps);
		return 0;
	}
4797 4798 4799 4800 4801 4802 4803 4804
	err = bpf_map_update_elem(map->fd, &zero, map->mmaped, 0);
	if (err) {
		err = -errno;
		cp = libbpf_strerror_r(err, errmsg, sizeof(errmsg));
		pr_warn("Error setting initial map(%s) contents: %s\n",
			map->name, cp);
		return err;
	}
4805

4806 4807
	/* Freeze .rodata and .kconfig map as read-only from syscall side. */
	if (map_type == LIBBPF_MAP_RODATA || map_type == LIBBPF_MAP_KCONFIG) {
4808 4809
		err = bpf_map_freeze(map->fd);
		if (err) {
4810 4811
			err = -errno;
			cp = libbpf_strerror_r(err, errmsg, sizeof(errmsg));
4812 4813
			pr_warn("Error freezing map(%s) as read-only: %s\n",
				map->name, cp);
4814
			return err;
4815 4816
		}
	}
4817
	return 0;
4818 4819
}

4820 4821
static void bpf_map__destroy(struct bpf_map *map);

4822
static int bpf_object__create_map(struct bpf_object *obj, struct bpf_map *map, bool is_inner)
4823
{
4824
	struct bpf_create_map_params create_attr;
4825
	struct bpf_map_def *def = &map->def;
4826
	int err = 0;
4827 4828 4829

	memset(&create_attr, 0, sizeof(create_attr));

4830
	if (kernel_supports(obj, FEAT_PROG_NAME))
4831 4832 4833 4834 4835 4836
		create_attr.name = map->name;
	create_attr.map_ifindex = map->map_ifindex;
	create_attr.map_type = def->type;
	create_attr.map_flags = def->map_flags;
	create_attr.key_size = def->key_size;
	create_attr.value_size = def->value_size;
4837
	create_attr.numa_node = map->numa_node;
4838
	create_attr.map_extra = map->map_extra;
4839 4840 4841 4842 4843 4844 4845 4846 4847 4848 4849 4850 4851 4852 4853 4854 4855 4856 4857 4858 4859 4860 4861

	if (def->type == BPF_MAP_TYPE_PERF_EVENT_ARRAY && !def->max_entries) {
		int nr_cpus;

		nr_cpus = libbpf_num_possible_cpus();
		if (nr_cpus < 0) {
			pr_warn("map '%s': failed to determine number of system CPUs: %d\n",
				map->name, nr_cpus);
			return nr_cpus;
		}
		pr_debug("map '%s': setting size to %d\n", map->name, nr_cpus);
		create_attr.max_entries = nr_cpus;
	} else {
		create_attr.max_entries = def->max_entries;
	}

	if (bpf_map__is_struct_ops(map))
		create_attr.btf_vmlinux_value_type_id =
			map->btf_vmlinux_value_type_id;

	create_attr.btf_fd = 0;
	create_attr.btf_key_type_id = 0;
	create_attr.btf_value_type_id = 0;
4862
	if (obj->btf && btf__fd(obj->btf) >= 0 && !bpf_map_find_btf_info(obj, map)) {
4863 4864 4865 4866 4867
		create_attr.btf_fd = btf__fd(obj->btf);
		create_attr.btf_key_type_id = map->btf_key_type_id;
		create_attr.btf_value_type_id = map->btf_value_type_id;
	}

4868 4869
	if (bpf_map_type__is_map_in_map(def->type)) {
		if (map->inner_map) {
4870
			err = bpf_object__create_map(obj, map->inner_map, true);
4871 4872 4873 4874 4875 4876 4877 4878 4879 4880 4881
			if (err) {
				pr_warn("map '%s': failed to create inner map: %d\n",
					map->name, err);
				return err;
			}
			map->inner_map_fd = bpf_map__fd(map->inner_map);
		}
		if (map->inner_map_fd >= 0)
			create_attr.inner_map_fd = map->inner_map_fd;
	}

4882 4883 4884 4885 4886 4887 4888 4889 4890 4891 4892 4893 4894 4895 4896 4897 4898 4899 4900 4901 4902 4903 4904 4905
	switch (def->type) {
	case BPF_MAP_TYPE_PERF_EVENT_ARRAY:
	case BPF_MAP_TYPE_CGROUP_ARRAY:
	case BPF_MAP_TYPE_STACK_TRACE:
	case BPF_MAP_TYPE_ARRAY_OF_MAPS:
	case BPF_MAP_TYPE_HASH_OF_MAPS:
	case BPF_MAP_TYPE_DEVMAP:
	case BPF_MAP_TYPE_DEVMAP_HASH:
	case BPF_MAP_TYPE_CPUMAP:
	case BPF_MAP_TYPE_XSKMAP:
	case BPF_MAP_TYPE_SOCKMAP:
	case BPF_MAP_TYPE_SOCKHASH:
	case BPF_MAP_TYPE_QUEUE:
	case BPF_MAP_TYPE_STACK:
	case BPF_MAP_TYPE_RINGBUF:
		create_attr.btf_fd = 0;
		create_attr.btf_key_type_id = 0;
		create_attr.btf_value_type_id = 0;
		map->btf_key_type_id = 0;
		map->btf_value_type_id = 0;
	default:
		break;
	}

4906 4907 4908 4909 4910 4911 4912
	if (obj->gen_loader) {
		bpf_gen__map_create(obj->gen_loader, &create_attr, is_inner ? -1 : map - obj->maps);
		/* Pretend to have valid FD to pass various fd >= 0 checks.
		 * This fd == 0 will not be used with any syscall and will be reset to -1 eventually.
		 */
		map->fd = 0;
	} else {
4913
		map->fd = libbpf__bpf_create_map_xattr(&create_attr);
4914
	}
4915 4916 4917 4918
	if (map->fd < 0 && (create_attr.btf_key_type_id ||
			    create_attr.btf_value_type_id)) {
		char *cp, errmsg[STRERR_BUFSIZE];

4919
		err = -errno;
4920 4921 4922 4923 4924 4925 4926 4927
		cp = libbpf_strerror_r(err, errmsg, sizeof(errmsg));
		pr_warn("Error in bpf_create_map_xattr(%s):%s(%d). Retrying without BTF.\n",
			map->name, cp, err);
		create_attr.btf_fd = 0;
		create_attr.btf_key_type_id = 0;
		create_attr.btf_value_type_id = 0;
		map->btf_key_type_id = 0;
		map->btf_value_type_id = 0;
4928
		map->fd = libbpf__bpf_create_map_xattr(&create_attr);
4929 4930
	}

4931
	err = map->fd < 0 ? -errno : 0;
4932

4933
	if (bpf_map_type__is_map_in_map(def->type) && map->inner_map) {
4934 4935
		if (obj->gen_loader)
			map->inner_map->fd = -1;
4936 4937 4938 4939
		bpf_map__destroy(map->inner_map);
		zfree(&map->inner_map);
	}

4940
	return err;
4941 4942
}

4943
static int init_map_slots(struct bpf_object *obj, struct bpf_map *map)
4944 4945 4946
{
	const struct bpf_map *targ_map;
	unsigned int i;
4947
	int fd, err = 0;
4948 4949 4950 4951 4952 4953 4954

	for (i = 0; i < map->init_slots_sz; i++) {
		if (!map->init_slots[i])
			continue;

		targ_map = map->init_slots[i];
		fd = bpf_map__fd(targ_map);
4955
		if (obj->gen_loader) {
4956
			pr_warn("// TODO map_update_elem: idx %td key %d value==map_idx %td\n",
4957 4958 4959 4960 4961
				map - obj->maps, i, targ_map - obj->maps);
			return -ENOTSUP;
		} else {
			err = bpf_map_update_elem(map->fd, &i, &fd, 0);
		}
4962 4963 4964 4965 4966 4967 4968 4969 4970 4971 4972 4973 4974 4975 4976 4977 4978
		if (err) {
			err = -errno;
			pr_warn("map '%s': failed to initialize slot [%d] to map '%s' fd=%d: %d\n",
				map->name, i, targ_map->name,
				fd, err);
			return err;
		}
		pr_debug("map '%s': slot [%d] set to map '%s' fd=%d\n",
			 map->name, i, targ_map->name, fd);
	}

	zfree(&map->init_slots);
	map->init_slots_sz = 0;

	return 0;
}

4979 4980 4981
static int
bpf_object__create_maps(struct bpf_object *obj)
{
4982 4983 4984
	struct bpf_map *map;
	char *cp, errmsg[STRERR_BUFSIZE];
	unsigned int i, j;
4985
	int err;
4986
	bool retried;
4987

4988
	for (i = 0; i < obj->nr_maps; i++) {
4989
		map = &obj->maps[i];
4990

4991 4992
		retried = false;
retry:
4993 4994 4995
		if (map->pin_path) {
			err = bpf_object__reuse_map(map);
			if (err) {
4996
				pr_warn("map '%s': error reusing pinned map\n",
4997
					map->name);
4998
				goto err_out;
4999
			}
5000 5001 5002 5003 5004 5005
			if (retried && map->fd < 0) {
				pr_warn("map '%s': cannot find pinned map\n",
					map->name);
				err = -ENOENT;
				goto err_out;
			}
5006 5007
		}

J
Jakub Kicinski 已提交
5008
		if (map->fd >= 0) {
5009
			pr_debug("map '%s': skipping creation (preset fd=%d)\n",
J
Jakub Kicinski 已提交
5010
				 map->name, map->fd);
5011
		} else {
5012
			err = bpf_object__create_map(obj, map, false);
5013
			if (err)
5014 5015
				goto err_out;

5016 5017
			pr_debug("map '%s': created successfully, fd=%d\n",
				 map->name, map->fd);
5018

5019 5020 5021 5022 5023 5024
			if (bpf_map__is_internal(map)) {
				err = bpf_object__populate_internal_map(obj, map);
				if (err < 0) {
					zclose(map->fd);
					goto err_out;
				}
5025
			}
5026

5027
			if (map->init_slots_sz) {
5028
				err = init_map_slots(obj, map);
5029 5030
				if (err < 0) {
					zclose(map->fd);
5031 5032 5033 5034 5035
					goto err_out;
				}
			}
		}

5036 5037 5038
		if (map->pin_path && !map->pinned) {
			err = bpf_map__pin(map, NULL);
			if (err) {
5039 5040 5041 5042 5043
				zclose(map->fd);
				if (!retried && err == -EEXIST) {
					retried = true;
					goto retry;
				}
5044 5045 5046
				pr_warn("map '%s': failed to auto-pin at '%s': %d\n",
					map->name, map->pin_path, err);
				goto err_out;
5047 5048
			}
		}
5049 5050 5051
	}

	return 0;
5052 5053 5054 5055 5056 5057 5058 5059

err_out:
	cp = libbpf_strerror_r(err, errmsg, sizeof(errmsg));
	pr_warn("map '%s': failed to create: %s(%d)\n", map->name, cp, err);
	pr_perm_msg(err);
	for (j = 0; j < i; j++)
		zclose(obj->maps[j].fd);
	return err;
5060 5061
}

5062 5063 5064 5065 5066 5067 5068 5069 5070 5071 5072 5073
static bool bpf_core_is_flavor_sep(const char *s)
{
	/* check X___Y name pattern, where X and Y are not underscores */
	return s[0] != '_' &&				      /* X */
	       s[1] == '_' && s[2] == '_' && s[3] == '_' &&   /* ___ */
	       s[4] != '_';				      /* Y */
}

/* Given 'some_struct_name___with_flavor' return the length of a name prefix
 * before last triple underscore. Struct name part after last triple
 * underscore is ignored by BPF CO-RE relocation during relocation matching.
 */
5074
size_t bpf_core_essential_name_len(const char *name)
5075 5076 5077 5078 5079 5080 5081 5082 5083 5084 5085
{
	size_t n = strlen(name);
	int i;

	for (i = n - 5; i >= 0; i--) {
		if (bpf_core_is_flavor_sep(name + i))
			return i + 1;
	}
	return n;
}

5086
static void bpf_core_free_cands(struct bpf_core_cand_list *cands)
5087
{
5088 5089
	free(cands->cands);
	free(cands);
5090 5091
}

5092
static int bpf_core_add_cands(struct bpf_core_cand *local_cand,
5093 5094 5095 5096
			      size_t local_essent_len,
			      const struct btf *targ_btf,
			      const char *targ_btf_name,
			      int targ_start_id,
5097
			      struct bpf_core_cand_list *cands)
5098
{
5099
	struct bpf_core_cand *new_cands, *cand;
5100 5101 5102 5103
	const struct btf_type *t;
	const char *targ_name;
	size_t targ_essent_len;
	int n, i;
5104

5105 5106
	n = btf__type_cnt(targ_btf);
	for (i = targ_start_id; i < n; i++) {
5107
		t = btf__type_by_id(targ_btf, i);
5108
		if (btf_kind(t) != btf_kind(local_cand->t))
5109 5110
			continue;

5111 5112
		targ_name = btf__name_by_offset(targ_btf, t->name_off);
		if (str_is_empty(targ_name))
5113 5114
			continue;

5115 5116 5117 5118
		targ_essent_len = bpf_core_essential_name_len(targ_name);
		if (targ_essent_len != local_essent_len)
			continue;

5119 5120 5121 5122 5123 5124 5125 5126 5127 5128 5129 5130 5131 5132 5133 5134 5135 5136 5137 5138
		if (strncmp(local_cand->name, targ_name, local_essent_len) != 0)
			continue;

		pr_debug("CO-RE relocating [%d] %s %s: found target candidate [%d] %s %s in [%s]\n",
			 local_cand->id, btf_kind_str(local_cand->t),
			 local_cand->name, i, btf_kind_str(t), targ_name,
			 targ_btf_name);
		new_cands = libbpf_reallocarray(cands->cands, cands->len + 1,
					      sizeof(*cands->cands));
		if (!new_cands)
			return -ENOMEM;

		cand = &new_cands[cands->len];
		cand->btf = targ_btf;
		cand->t = t;
		cand->name = targ_name;
		cand->id = i;

		cands->cands = new_cands;
		cands->len++;
5139
	}
5140 5141 5142
	return 0;
}

5143 5144 5145 5146 5147 5148 5149 5150 5151 5152 5153 5154
static int load_module_btfs(struct bpf_object *obj)
{
	struct bpf_btf_info info;
	struct module_btf *mod_btf;
	struct btf *btf;
	char name[64];
	__u32 id = 0, len;
	int err, fd;

	if (obj->btf_modules_loaded)
		return 0;

5155 5156 5157
	if (obj->gen_loader)
		return 0;

5158 5159 5160 5161
	/* don't do this again, even if we find no module BTFs */
	obj->btf_modules_loaded = true;

	/* kernel too old to support module BTFs */
5162
	if (!kernel_supports(obj, FEAT_MODULE_BTF))
5163 5164 5165 5166 5167 5168 5169 5170 5171 5172
		return 0;

	while (true) {
		err = bpf_btf_get_next_id(id, &id);
		if (err && errno == ENOENT)
			return 0;
		if (err) {
			err = -errno;
			pr_warn("failed to iterate BTF objects: %d\n", err);
			return err;
5173
		}
5174 5175 5176 5177 5178 5179 5180 5181 5182 5183 5184 5185 5186 5187 5188 5189 5190 5191 5192

		fd = bpf_btf_get_fd_by_id(id);
		if (fd < 0) {
			if (errno == ENOENT)
				continue; /* expected race: BTF was unloaded */
			err = -errno;
			pr_warn("failed to get BTF object #%d FD: %d\n", id, err);
			return err;
		}

		len = sizeof(info);
		memset(&info, 0, sizeof(info));
		info.name = ptr_to_u64(name);
		info.name_len = sizeof(name);

		err = bpf_obj_get_info_by_fd(fd, &info, &len);
		if (err) {
			err = -errno;
			pr_warn("failed to get BTF object #%d info: %d\n", id, err);
5193
			goto err_out;
5194 5195 5196 5197 5198 5199 5200 5201 5202
		}

		/* ignore non-module BTFs */
		if (!info.kernel_btf || strcmp(name, "vmlinux") == 0) {
			close(fd);
			continue;
		}

		btf = btf_get_from_fd(fd, obj->btf_vmlinux);
5203 5204 5205 5206
		err = libbpf_get_error(btf);
		if (err) {
			pr_warn("failed to load module [%s]'s BTF object #%d: %d\n",
				name, id, err);
5207
			goto err_out;
5208 5209
		}

5210 5211
		err = libbpf_ensure_mem((void **)&obj->btf_modules, &obj->btf_module_cap,
				        sizeof(*obj->btf_modules), obj->btf_module_cnt + 1);
5212
		if (err)
5213
			goto err_out;
5214 5215 5216 5217 5218

		mod_btf = &obj->btf_modules[obj->btf_module_cnt++];

		mod_btf->btf = btf;
		mod_btf->id = id;
5219
		mod_btf->fd = fd;
5220
		mod_btf->name = strdup(name);
5221 5222 5223 5224 5225 5226 5227 5228 5229
		if (!mod_btf->name) {
			err = -ENOMEM;
			goto err_out;
		}
		continue;

err_out:
		close(fd);
		return err;
5230
	}
5231 5232 5233 5234

	return 0;
}

5235
static struct bpf_core_cand_list *
5236 5237
bpf_core_find_cands(struct bpf_object *obj, const struct btf *local_btf, __u32 local_type_id)
{
5238 5239
	struct bpf_core_cand local_cand = {};
	struct bpf_core_cand_list *cands;
5240
	const struct btf *main_btf;
5241
	size_t local_essent_len;
5242
	int err, i;
5243 5244 5245 5246 5247 5248 5249 5250 5251 5252 5253 5254 5255 5256 5257 5258

	local_cand.btf = local_btf;
	local_cand.t = btf__type_by_id(local_btf, local_type_id);
	if (!local_cand.t)
		return ERR_PTR(-EINVAL);

	local_cand.name = btf__name_by_offset(local_btf, local_cand.t->name_off);
	if (str_is_empty(local_cand.name))
		return ERR_PTR(-EINVAL);
	local_essent_len = bpf_core_essential_name_len(local_cand.name);

	cands = calloc(1, sizeof(*cands));
	if (!cands)
		return ERR_PTR(-ENOMEM);

	/* Attempt to find target candidates in vmlinux BTF first */
5259 5260 5261 5262 5263 5264 5265 5266 5267 5268 5269 5270 5271 5272 5273 5274 5275 5276 5277 5278 5279 5280
	main_btf = obj->btf_vmlinux_override ?: obj->btf_vmlinux;
	err = bpf_core_add_cands(&local_cand, local_essent_len, main_btf, "vmlinux", 1, cands);
	if (err)
		goto err_out;

	/* if vmlinux BTF has any candidate, don't got for module BTFs */
	if (cands->len)
		return cands;

	/* if vmlinux BTF was overridden, don't attempt to load module BTFs */
	if (obj->btf_vmlinux_override)
		return cands;

	/* now look through module BTFs, trying to still find candidates */
	err = load_module_btfs(obj);
	if (err)
		goto err_out;

	for (i = 0; i < obj->btf_module_cnt; i++) {
		err = bpf_core_add_cands(&local_cand, local_essent_len,
					 obj->btf_modules[i].btf,
					 obj->btf_modules[i].name,
5281
					 btf__type_cnt(obj->btf_vmlinux),
5282 5283 5284
					 cands);
		if (err)
			goto err_out;
5285 5286 5287
	}

	return cands;
5288
err_out:
5289
	bpf_core_free_cands(cands);
5290 5291 5292
	return ERR_PTR(err);
}

5293 5294 5295 5296 5297 5298 5299 5300 5301 5302 5303 5304 5305 5306 5307 5308 5309 5310 5311
/* Check local and target types for compatibility. This check is used for
 * type-based CO-RE relocations and follow slightly different rules than
 * field-based relocations. This function assumes that root types were already
 * checked for name match. Beyond that initial root-level name check, names
 * are completely ignored. Compatibility rules are as follows:
 *   - any two STRUCTs/UNIONs/FWDs/ENUMs/INTs are considered compatible, but
 *     kind should match for local and target types (i.e., STRUCT is not
 *     compatible with UNION);
 *   - for ENUMs, the size is ignored;
 *   - for INT, size and signedness are ignored;
 *   - for ARRAY, dimensionality is ignored, element types are checked for
 *     compatibility recursively;
 *   - CONST/VOLATILE/RESTRICT modifiers are ignored;
 *   - TYPEDEFs/PTRs are compatible if types they pointing to are compatible;
 *   - FUNC_PROTOs are compatible if they have compatible signature: same
 *     number of input args and compatible return and argument types.
 * These rules are not set in stone and probably will be adjusted as we get
 * more experience with using BPF CO-RE relocations.
 */
5312 5313
int bpf_core_types_are_compat(const struct btf *local_btf, __u32 local_id,
			      const struct btf *targ_btf, __u32 targ_id)
5314 5315 5316 5317 5318 5319
{
	const struct btf_type *local_type, *targ_type;
	int depth = 32; /* max recursion depth */

	/* caller made sure that names match (ignoring flavor suffix) */
	local_type = btf__type_by_id(local_btf, local_id);
5320
	targ_type = btf__type_by_id(targ_btf, targ_id);
5321 5322 5323 5324 5325 5326 5327 5328 5329 5330 5331 5332 5333 5334 5335 5336 5337 5338 5339 5340 5341 5342 5343 5344 5345 5346 5347 5348 5349 5350 5351 5352 5353 5354 5355 5356 5357 5358 5359 5360 5361 5362 5363 5364 5365 5366 5367 5368 5369 5370 5371 5372 5373 5374 5375 5376 5377 5378 5379 5380 5381 5382 5383 5384 5385 5386
	if (btf_kind(local_type) != btf_kind(targ_type))
		return 0;

recur:
	depth--;
	if (depth < 0)
		return -EINVAL;

	local_type = skip_mods_and_typedefs(local_btf, local_id, &local_id);
	targ_type = skip_mods_and_typedefs(targ_btf, targ_id, &targ_id);
	if (!local_type || !targ_type)
		return -EINVAL;

	if (btf_kind(local_type) != btf_kind(targ_type))
		return 0;

	switch (btf_kind(local_type)) {
	case BTF_KIND_UNKN:
	case BTF_KIND_STRUCT:
	case BTF_KIND_UNION:
	case BTF_KIND_ENUM:
	case BTF_KIND_FWD:
		return 1;
	case BTF_KIND_INT:
		/* just reject deprecated bitfield-like integers; all other
		 * integers are by default compatible between each other
		 */
		return btf_int_offset(local_type) == 0 && btf_int_offset(targ_type) == 0;
	case BTF_KIND_PTR:
		local_id = local_type->type;
		targ_id = targ_type->type;
		goto recur;
	case BTF_KIND_ARRAY:
		local_id = btf_array(local_type)->type;
		targ_id = btf_array(targ_type)->type;
		goto recur;
	case BTF_KIND_FUNC_PROTO: {
		struct btf_param *local_p = btf_params(local_type);
		struct btf_param *targ_p = btf_params(targ_type);
		__u16 local_vlen = btf_vlen(local_type);
		__u16 targ_vlen = btf_vlen(targ_type);
		int i, err;

		if (local_vlen != targ_vlen)
			return 0;

		for (i = 0; i < local_vlen; i++, local_p++, targ_p++) {
			skip_mods_and_typedefs(local_btf, local_p->type, &local_id);
			skip_mods_and_typedefs(targ_btf, targ_p->type, &targ_id);
			err = bpf_core_types_are_compat(local_btf, local_id, targ_btf, targ_id);
			if (err <= 0)
				return err;
		}

		/* tail recurse for return type check */
		skip_mods_and_typedefs(local_btf, local_type->type, &local_id);
		skip_mods_and_typedefs(targ_btf, targ_type->type, &targ_id);
		goto recur;
	}
	default:
		pr_warn("unexpected kind %s relocated, local [%d], target [%d]\n",
			btf_kind_str(local_type), local_id, targ_id);
		return 0;
	}
}

5387 5388 5389 5390 5391 5392 5393 5394 5395 5396 5397 5398 5399 5400 5401
static size_t bpf_core_hash_fn(const void *key, void *ctx)
{
	return (size_t)key;
}

static bool bpf_core_equal_fn(const void *k1, const void *k2, void *ctx)
{
	return k1 == k2;
}

static void *u32_as_hash_key(__u32 x)
{
	return (void *)(uintptr_t)x;
}

5402 5403 5404 5405 5406 5407 5408
static int bpf_core_apply_relo(struct bpf_program *prog,
			       const struct bpf_core_relo *relo,
			       int relo_idx,
			       const struct btf *local_btf,
			       struct hashmap *cand_cache)
{
	const void *type_key = u32_as_hash_key(relo->type_id);
5409
	struct bpf_core_cand_list *cands = NULL;
5410 5411 5412 5413 5414 5415 5416 5417 5418 5419 5420 5421 5422 5423 5424
	const char *prog_name = prog->name;
	const struct btf_type *local_type;
	const char *local_name;
	__u32 local_id = relo->type_id;
	struct bpf_insn *insn;
	int insn_idx, err;

	if (relo->insn_off % BPF_INSN_SZ)
		return -EINVAL;
	insn_idx = relo->insn_off / BPF_INSN_SZ;
	/* adjust insn_idx from section frame of reference to the local
	 * program's frame of reference; (sub-)program code is not yet
	 * relocated, so it's enough to just subtract in-section offset
	 */
	insn_idx = insn_idx - prog->sec_insn_off;
5425
	if (insn_idx >= prog->insns_cnt)
5426 5427 5428 5429 5430 5431 5432 5433 5434 5435 5436 5437 5438 5439 5440 5441 5442 5443 5444 5445 5446 5447 5448 5449 5450 5451 5452 5453 5454 5455 5456 5457 5458 5459 5460 5461 5462
		return -EINVAL;
	insn = &prog->insns[insn_idx];

	local_type = btf__type_by_id(local_btf, local_id);
	if (!local_type)
		return -EINVAL;

	local_name = btf__name_by_offset(local_btf, local_type->name_off);
	if (!local_name)
		return -EINVAL;

	if (prog->obj->gen_loader) {
		pr_warn("// TODO core_relo: prog %td insn[%d] %s kind %d\n",
			prog - prog->obj->programs, relo->insn_off / 8,
			local_name, relo->kind);
		return -ENOTSUP;
	}

	if (relo->kind != BPF_TYPE_ID_LOCAL &&
	    !hashmap__find(cand_cache, type_key, (void **)&cands)) {
		cands = bpf_core_find_cands(prog->obj, local_btf, local_id);
		if (IS_ERR(cands)) {
			pr_warn("prog '%s': relo #%d: target candidate search failed for [%d] %s %s: %ld\n",
				prog_name, relo_idx, local_id, btf_kind_str(local_type),
				local_name, PTR_ERR(cands));
			return PTR_ERR(cands);
		}
		err = hashmap__set(cand_cache, type_key, cands, NULL, NULL);
		if (err) {
			bpf_core_free_cands(cands);
			return err;
		}
	}

	return bpf_core_apply_relo_insn(prog_name, insn, insn_idx, relo, relo_idx, local_btf, cands);
}

5463
static int
5464
bpf_object__relocate_core(struct bpf_object *obj, const char *targ_btf_path)
5465 5466
{
	const struct btf_ext_info_sec *sec;
5467
	const struct bpf_core_relo *rec;
5468 5469 5470 5471 5472
	const struct btf_ext_info *seg;
	struct hashmap_entry *entry;
	struct hashmap *cand_cache = NULL;
	struct bpf_program *prog;
	const char *sec_name;
5473
	int i, err = 0, insn_idx, sec_idx;
5474

5475 5476 5477
	if (obj->btf_ext->core_relo_info.len == 0)
		return 0;

5478 5479
	if (targ_btf_path) {
		obj->btf_vmlinux_override = btf__parse(targ_btf_path, NULL);
5480 5481
		err = libbpf_get_error(obj->btf_vmlinux_override);
		if (err) {
5482 5483 5484
			pr_warn("failed to parse target BTF: %d\n", err);
			return err;
		}
5485 5486 5487 5488 5489 5490 5491 5492
	}

	cand_cache = hashmap__new(bpf_core_hash_fn, bpf_core_equal_fn, NULL);
	if (IS_ERR(cand_cache)) {
		err = PTR_ERR(cand_cache);
		goto out;
	}

5493
	seg = &obj->btf_ext->core_relo_info;
5494 5495 5496 5497 5498 5499
	for_each_btf_ext_sec(seg, sec) {
		sec_name = btf__name_by_offset(obj->btf, sec->sec_name_off);
		if (str_is_empty(sec_name)) {
			err = -EINVAL;
			goto out;
		}
5500 5501 5502 5503 5504 5505
		/* bpf_object's ELF is gone by now so it's not easy to find
		 * section index by section name, but we can find *any*
		 * bpf_program within desired section name and use it's
		 * prog->sec_idx to do a proper search by section index and
		 * instruction offset
		 */
5506 5507
		prog = NULL;
		for (i = 0; i < obj->nr_programs; i++) {
5508
			prog = &obj->programs[i];
5509
			if (strcmp(prog->sec_name, sec_name) == 0)
5510 5511
				break;
		}
5512
		if (!prog) {
5513 5514
			pr_warn("sec '%s': failed to find a BPF program\n", sec_name);
			return -ENOENT;
5515
		}
5516
		sec_idx = prog->sec_idx;
5517

5518
		pr_debug("sec '%s': found %d CO-RE relocations\n",
5519 5520 5521
			 sec_name, sec->num_info);

		for_each_btf_ext_rec(seg, sec, i, rec) {
5522 5523 5524 5525 5526 5527 5528 5529
			insn_idx = rec->insn_off / BPF_INSN_SZ;
			prog = find_prog_by_sec_insn(obj, sec_idx, insn_idx);
			if (!prog) {
				pr_warn("sec '%s': failed to find program at insn #%d for CO-RE offset relocation #%d\n",
					sec_name, insn_idx, i);
				err = -EINVAL;
				goto out;
			}
5530 5531 5532 5533 5534
			/* no need to apply CO-RE relocation if the program is
			 * not going to be loaded
			 */
			if (!prog->load)
				continue;
5535

5536
			err = bpf_core_apply_relo(prog, rec, i, obj->btf, cand_cache);
5537
			if (err) {
5538
				pr_warn("prog '%s': relo #%d: failed to relocate: %d\n",
5539
					prog->name, i, err);
5540 5541 5542 5543 5544 5545
				goto out;
			}
		}
	}

out:
5546
	/* obj->btf_vmlinux and module BTFs are freed after object load */
5547 5548 5549
	btf__free(obj->btf_vmlinux_override);
	obj->btf_vmlinux_override = NULL;

5550 5551 5552 5553 5554 5555 5556 5557 5558
	if (!IS_ERR_OR_NULL(cand_cache)) {
		hashmap__for_each_entry(cand_cache, entry, i) {
			bpf_core_free_cands(entry->value);
		}
		hashmap__free(cand_cache);
	}
	return err;
}

5559 5560 5561 5562 5563
/* Relocate data references within program code:
 *  - map references;
 *  - global variable references;
 *  - extern references.
 */
5564
static int
5565
bpf_object__relocate_data(struct bpf_object *obj, struct bpf_program *prog)
W
Wang Nan 已提交
5566
{
5567
	int i;
W
Wang Nan 已提交
5568 5569

	for (i = 0; i < prog->nr_reloc; i++) {
5570
		struct reloc_desc *relo = &prog->reloc_desc[i];
5571
		struct bpf_insn *insn = &prog->insns[relo->insn_idx];
5572
		struct extern_desc *ext;
W
Wang Nan 已提交
5573

5574 5575
		switch (relo->type) {
		case RELO_LD64:
5576 5577 5578 5579 5580 5581 5582
			if (obj->gen_loader) {
				insn[0].src_reg = BPF_PSEUDO_MAP_IDX;
				insn[0].imm = relo->map_idx;
			} else {
				insn[0].src_reg = BPF_PSEUDO_MAP_FD;
				insn[0].imm = obj->maps[relo->map_idx].fd;
			}
5583 5584 5585
			break;
		case RELO_DATA:
			insn[1].imm = insn[0].imm + relo->sym_off;
5586 5587 5588 5589 5590 5591 5592
			if (obj->gen_loader) {
				insn[0].src_reg = BPF_PSEUDO_MAP_IDX_VALUE;
				insn[0].imm = relo->map_idx;
			} else {
				insn[0].src_reg = BPF_PSEUDO_MAP_VALUE;
				insn[0].imm = obj->maps[relo->map_idx].fd;
			}
5593
			break;
5594
		case RELO_EXTERN_VAR:
5595
			ext = &obj->externs[relo->sym_off];
5596
			if (ext->type == EXT_KCFG) {
5597 5598 5599 5600 5601 5602 5603
				if (obj->gen_loader) {
					insn[0].src_reg = BPF_PSEUDO_MAP_IDX_VALUE;
					insn[0].imm = obj->kconfig_map_idx;
				} else {
					insn[0].src_reg = BPF_PSEUDO_MAP_VALUE;
					insn[0].imm = obj->maps[obj->kconfig_map_idx].fd;
				}
5604 5605
				insn[1].imm = ext->kcfg.data_off;
			} else /* EXT_KSYM */ {
H
Hao Luo 已提交
5606
				if (ext->ksym.type_id && ext->is_set) { /* typed ksyms */
H
Hao Luo 已提交
5607
					insn[0].src_reg = BPF_PSEUDO_BTF_ID;
5608 5609
					insn[0].imm = ext->ksym.kernel_btf_id;
					insn[1].imm = ext->ksym.kernel_btf_obj_fd;
H
Hao Luo 已提交
5610
				} else { /* typeless ksyms or unresolved typed ksyms */
H
Hao Luo 已提交
5611 5612 5613
					insn[0].imm = (__u32)ext->ksym.addr;
					insn[1].imm = ext->ksym.addr >> 32;
				}
5614
			}
5615
			break;
5616 5617 5618
		case RELO_EXTERN_FUNC:
			ext = &obj->externs[relo->sym_off];
			insn[0].src_reg = BPF_PSEUDO_KFUNC_CALL;
5619 5620 5621 5622 5623 5624 5625
			if (ext->is_set) {
				insn[0].imm = ext->ksym.kernel_btf_id;
				insn[0].off = ext->ksym.btf_fd_idx;
			} else { /* unresolved weak kfunc */
				insn[0].imm = 0;
				insn[0].off = 0;
			}
5626
			break;
5627
		case RELO_SUBPROG_ADDR:
5628 5629 5630 5631 5632 5633
			if (insn[0].src_reg != BPF_PSEUDO_FUNC) {
				pr_warn("prog '%s': relo #%d: bad insn\n",
					prog->name, i);
				return -EINVAL;
			}
			/* handled already */
5634
			break;
5635
		case RELO_CALL:
5636
			/* handled already */
5637 5638
			break;
		default:
5639 5640
			pr_warn("prog '%s': relo #%d: bad relo type %d\n",
				prog->name, i, relo->type);
5641
			return -EINVAL;
W
Wang Nan 已提交
5642 5643 5644
		}
	}

5645 5646 5647
	return 0;
}

5648 5649 5650 5651 5652 5653 5654 5655 5656 5657 5658 5659 5660 5661 5662 5663 5664
static int adjust_prog_btf_ext_info(const struct bpf_object *obj,
				    const struct bpf_program *prog,
				    const struct btf_ext_info *ext_info,
				    void **prog_info, __u32 *prog_rec_cnt,
				    __u32 *prog_rec_sz)
{
	void *copy_start = NULL, *copy_end = NULL;
	void *rec, *rec_end, *new_prog_info;
	const struct btf_ext_info_sec *sec;
	size_t old_sz, new_sz;
	const char *sec_name;
	int i, off_adj;

	for_each_btf_ext_sec(ext_info, sec) {
		sec_name = btf__name_by_offset(obj->btf, sec->sec_name_off);
		if (!sec_name)
			return -EINVAL;
5665
		if (strcmp(sec_name, prog->sec_name) != 0)
5666 5667 5668 5669 5670 5671 5672 5673 5674 5675 5676 5677 5678 5679 5680 5681 5682 5683 5684 5685 5686
			continue;

		for_each_btf_ext_rec(ext_info, sec, i, rec) {
			__u32 insn_off = *(__u32 *)rec / BPF_INSN_SZ;

			if (insn_off < prog->sec_insn_off)
				continue;
			if (insn_off >= prog->sec_insn_off + prog->sec_insn_cnt)
				break;

			if (!copy_start)
				copy_start = rec;
			copy_end = rec + ext_info->rec_size;
		}

		if (!copy_start)
			return -ENOENT;

		/* append func/line info of a given (sub-)program to the main
		 * program func/line info
		 */
5687
		old_sz = (size_t)(*prog_rec_cnt) * ext_info->rec_size;
5688 5689 5690 5691 5692 5693 5694 5695 5696 5697 5698 5699 5700 5701 5702 5703 5704 5705 5706 5707 5708 5709 5710 5711 5712 5713 5714 5715 5716 5717 5718 5719 5720 5721 5722 5723 5724 5725 5726
		new_sz = old_sz + (copy_end - copy_start);
		new_prog_info = realloc(*prog_info, new_sz);
		if (!new_prog_info)
			return -ENOMEM;
		*prog_info = new_prog_info;
		*prog_rec_cnt = new_sz / ext_info->rec_size;
		memcpy(new_prog_info + old_sz, copy_start, copy_end - copy_start);

		/* Kernel instruction offsets are in units of 8-byte
		 * instructions, while .BTF.ext instruction offsets generated
		 * by Clang are in units of bytes. So convert Clang offsets
		 * into kernel offsets and adjust offset according to program
		 * relocated position.
		 */
		off_adj = prog->sub_insn_off - prog->sec_insn_off;
		rec = new_prog_info + old_sz;
		rec_end = new_prog_info + new_sz;
		for (; rec < rec_end; rec += ext_info->rec_size) {
			__u32 *insn_off = rec;

			*insn_off = *insn_off / BPF_INSN_SZ + off_adj;
		}
		*prog_rec_sz = ext_info->rec_size;
		return 0;
	}

	return -ENOENT;
}

static int
reloc_prog_func_and_line_info(const struct bpf_object *obj,
			      struct bpf_program *main_prog,
			      const struct bpf_program *prog)
{
	int err;

	/* no .BTF.ext relocation if .BTF.ext is missing or kernel doesn't
	 * supprot func/line info
	 */
5727
	if (!obj->btf_ext || !kernel_supports(obj, FEAT_BTF_FUNC))
5728 5729 5730 5731 5732 5733 5734 5735 5736 5737 5738 5739 5740 5741 5742 5743 5744 5745 5746 5747 5748 5749 5750 5751 5752 5753 5754 5755 5756 5757 5758 5759 5760 5761 5762 5763 5764 5765 5766 5767 5768 5769 5770 5771 5772 5773 5774 5775 5776 5777 5778 5779 5780 5781 5782 5783 5784 5785 5786 5787 5788
		return 0;

	/* only attempt func info relocation if main program's func_info
	 * relocation was successful
	 */
	if (main_prog != prog && !main_prog->func_info)
		goto line_info;

	err = adjust_prog_btf_ext_info(obj, prog, &obj->btf_ext->func_info,
				       &main_prog->func_info,
				       &main_prog->func_info_cnt,
				       &main_prog->func_info_rec_size);
	if (err) {
		if (err != -ENOENT) {
			pr_warn("prog '%s': error relocating .BTF.ext function info: %d\n",
				prog->name, err);
			return err;
		}
		if (main_prog->func_info) {
			/*
			 * Some info has already been found but has problem
			 * in the last btf_ext reloc. Must have to error out.
			 */
			pr_warn("prog '%s': missing .BTF.ext function info.\n", prog->name);
			return err;
		}
		/* Have problem loading the very first info. Ignore the rest. */
		pr_warn("prog '%s': missing .BTF.ext function info for the main program, skipping all of .BTF.ext func info.\n",
			prog->name);
	}

line_info:
	/* don't relocate line info if main program's relocation failed */
	if (main_prog != prog && !main_prog->line_info)
		return 0;

	err = adjust_prog_btf_ext_info(obj, prog, &obj->btf_ext->line_info,
				       &main_prog->line_info,
				       &main_prog->line_info_cnt,
				       &main_prog->line_info_rec_size);
	if (err) {
		if (err != -ENOENT) {
			pr_warn("prog '%s': error relocating .BTF.ext line info: %d\n",
				prog->name, err);
			return err;
		}
		if (main_prog->line_info) {
			/*
			 * Some info has already been found but has problem
			 * in the last btf_ext reloc. Must have to error out.
			 */
			pr_warn("prog '%s': missing .BTF.ext line info.\n", prog->name);
			return err;
		}
		/* Have problem loading the very first info. Ignore the rest. */
		pr_warn("prog '%s': missing .BTF.ext line info for the main program, skipping all of .BTF.ext line info.\n",
			prog->name);
	}
	return 0;
}

5789 5790 5791 5792 5793 5794 5795 5796 5797 5798 5799 5800 5801 5802 5803 5804
static int cmp_relo_by_insn_idx(const void *key, const void *elem)
{
	size_t insn_idx = *(const size_t *)key;
	const struct reloc_desc *relo = elem;

	if (insn_idx == relo->insn_idx)
		return 0;
	return insn_idx < relo->insn_idx ? -1 : 1;
}

static struct reloc_desc *find_prog_insn_relo(const struct bpf_program *prog, size_t insn_idx)
{
	return bsearch(&insn_idx, prog->reloc_desc, prog->nr_reloc,
		       sizeof(*prog->reloc_desc), cmp_relo_by_insn_idx);
}

5805 5806 5807 5808 5809 5810 5811 5812 5813 5814 5815 5816 5817 5818 5819 5820 5821 5822 5823 5824 5825 5826 5827 5828
static int append_subprog_relos(struct bpf_program *main_prog, struct bpf_program *subprog)
{
	int new_cnt = main_prog->nr_reloc + subprog->nr_reloc;
	struct reloc_desc *relos;
	int i;

	if (main_prog == subprog)
		return 0;
	relos = libbpf_reallocarray(main_prog->reloc_desc, new_cnt, sizeof(*relos));
	if (!relos)
		return -ENOMEM;
	memcpy(relos + main_prog->nr_reloc, subprog->reloc_desc,
	       sizeof(*relos) * subprog->nr_reloc);

	for (i = main_prog->nr_reloc; i < new_cnt; i++)
		relos[i].insn_idx += subprog->sub_insn_off;
	/* After insn_idx adjustment the 'relos' array is still sorted
	 * by insn_idx and doesn't break bsearch.
	 */
	main_prog->reloc_desc = relos;
	main_prog->nr_reloc = new_cnt;
	return 0;
}

5829 5830 5831 5832 5833 5834 5835 5836 5837 5838 5839 5840 5841 5842 5843 5844
static int
bpf_object__reloc_code(struct bpf_object *obj, struct bpf_program *main_prog,
		       struct bpf_program *prog)
{
	size_t sub_insn_idx, insn_idx, new_cnt;
	struct bpf_program *subprog;
	struct bpf_insn *insns, *insn;
	struct reloc_desc *relo;
	int err;

	err = reloc_prog_func_and_line_info(obj, main_prog, prog);
	if (err)
		return err;

	for (insn_idx = 0; insn_idx < prog->sec_insn_cnt; insn_idx++) {
		insn = &main_prog->insns[prog->sub_insn_off + insn_idx];
5845
		if (!insn_is_subprog_call(insn) && !insn_is_pseudo_func(insn))
5846 5847 5848
			continue;

		relo = find_prog_insn_relo(prog, insn_idx);
5849 5850 5851 5852 5853
		if (relo && relo->type == RELO_EXTERN_FUNC)
			/* kfunc relocations will be handled later
			 * in bpf_object__relocate_data()
			 */
			continue;
5854
		if (relo && relo->type != RELO_CALL && relo->type != RELO_SUBPROG_ADDR) {
5855 5856 5857 5858 5859 5860 5861 5862 5863 5864 5865
			pr_warn("prog '%s': unexpected relo for insn #%zu, type %d\n",
				prog->name, insn_idx, relo->type);
			return -LIBBPF_ERRNO__RELOC;
		}
		if (relo) {
			/* sub-program instruction index is a combination of
			 * an offset of a symbol pointed to by relocation and
			 * call instruction's imm field; for global functions,
			 * call always has imm = -1, but for static functions
			 * relocation is against STT_SECTION and insn->imm
			 * points to a start of a static function
5866 5867 5868
			 *
			 * for subprog addr relocation, the relo->sym_off + insn->imm is
			 * the byte offset in the corresponding section.
5869
			 */
5870 5871 5872 5873 5874 5875 5876 5877 5878 5879 5880 5881
			if (relo->type == RELO_CALL)
				sub_insn_idx = relo->sym_off / BPF_INSN_SZ + insn->imm + 1;
			else
				sub_insn_idx = (relo->sym_off + insn->imm) / BPF_INSN_SZ;
		} else if (insn_is_pseudo_func(insn)) {
			/*
			 * RELO_SUBPROG_ADDR relo is always emitted even if both
			 * functions are in the same section, so it shouldn't reach here.
			 */
			pr_warn("prog '%s': missing subprog addr relo for insn #%zu\n",
				prog->name, insn_idx);
			return -LIBBPF_ERRNO__RELOC;
5882 5883 5884 5885 5886 5887 5888 5889 5890 5891 5892 5893 5894 5895 5896 5897 5898 5899 5900 5901 5902 5903 5904 5905 5906 5907 5908 5909 5910 5911 5912 5913 5914 5915 5916 5917 5918 5919 5920 5921 5922 5923 5924 5925 5926 5927
		} else {
			/* if subprogram call is to a static function within
			 * the same ELF section, there won't be any relocation
			 * emitted, but it also means there is no additional
			 * offset necessary, insns->imm is relative to
			 * instruction's original position within the section
			 */
			sub_insn_idx = prog->sec_insn_off + insn_idx + insn->imm + 1;
		}

		/* we enforce that sub-programs should be in .text section */
		subprog = find_prog_by_sec_insn(obj, obj->efile.text_shndx, sub_insn_idx);
		if (!subprog) {
			pr_warn("prog '%s': no .text section found yet sub-program call exists\n",
				prog->name);
			return -LIBBPF_ERRNO__RELOC;
		}

		/* if it's the first call instruction calling into this
		 * subprogram (meaning this subprog hasn't been processed
		 * yet) within the context of current main program:
		 *   - append it at the end of main program's instructions blog;
		 *   - process is recursively, while current program is put on hold;
		 *   - if that subprogram calls some other not yet processes
		 *   subprogram, same thing will happen recursively until
		 *   there are no more unprocesses subprograms left to append
		 *   and relocate.
		 */
		if (subprog->sub_insn_off == 0) {
			subprog->sub_insn_off = main_prog->insns_cnt;

			new_cnt = main_prog->insns_cnt + subprog->insns_cnt;
			insns = libbpf_reallocarray(main_prog->insns, new_cnt, sizeof(*insns));
			if (!insns) {
				pr_warn("prog '%s': failed to realloc prog code\n", main_prog->name);
				return -ENOMEM;
			}
			main_prog->insns = insns;
			main_prog->insns_cnt = new_cnt;

			memcpy(main_prog->insns + subprog->sub_insn_off, subprog->insns,
			       subprog->insns_cnt * sizeof(*insns));

			pr_debug("prog '%s': added %zu insns from sub-prog '%s'\n",
				 main_prog->name, subprog->insns_cnt, subprog->name);

5928 5929 5930 5931
			/* The subprog insns are now appended. Append its relos too. */
			err = append_subprog_relos(main_prog, subprog);
			if (err)
				return err;
5932 5933 5934 5935 5936 5937 5938 5939 5940 5941 5942 5943 5944 5945 5946 5947 5948 5949 5950 5951 5952 5953 5954 5955 5956 5957 5958 5959 5960 5961 5962 5963 5964 5965 5966 5967 5968 5969 5970 5971 5972 5973 5974 5975 5976 5977 5978 5979 5980 5981 5982 5983 5984 5985 5986 5987 5988 5989 5990 5991 5992 5993 5994 5995 5996 5997 5998 5999 6000 6001 6002 6003 6004 6005 6006 6007 6008 6009 6010 6011 6012 6013 6014 6015 6016 6017 6018 6019 6020 6021 6022 6023 6024 6025 6026 6027 6028 6029 6030 6031 6032 6033 6034 6035 6036 6037 6038 6039
			err = bpf_object__reloc_code(obj, main_prog, subprog);
			if (err)
				return err;
		}

		/* main_prog->insns memory could have been re-allocated, so
		 * calculate pointer again
		 */
		insn = &main_prog->insns[prog->sub_insn_off + insn_idx];
		/* calculate correct instruction position within current main
		 * prog; each main prog can have a different set of
		 * subprograms appended (potentially in different order as
		 * well), so position of any subprog can be different for
		 * different main programs */
		insn->imm = subprog->sub_insn_off - (prog->sub_insn_off + insn_idx) - 1;

		pr_debug("prog '%s': insn #%zu relocated, imm %d points to subprog '%s' (now at %zu offset)\n",
			 prog->name, insn_idx, insn->imm, subprog->name, subprog->sub_insn_off);
	}

	return 0;
}

/*
 * Relocate sub-program calls.
 *
 * Algorithm operates as follows. Each entry-point BPF program (referred to as
 * main prog) is processed separately. For each subprog (non-entry functions,
 * that can be called from either entry progs or other subprogs) gets their
 * sub_insn_off reset to zero. This serves as indicator that this subprogram
 * hasn't been yet appended and relocated within current main prog. Once its
 * relocated, sub_insn_off will point at the position within current main prog
 * where given subprog was appended. This will further be used to relocate all
 * the call instructions jumping into this subprog.
 *
 * We start with main program and process all call instructions. If the call
 * is into a subprog that hasn't been processed (i.e., subprog->sub_insn_off
 * is zero), subprog instructions are appended at the end of main program's
 * instruction array. Then main program is "put on hold" while we recursively
 * process newly appended subprogram. If that subprogram calls into another
 * subprogram that hasn't been appended, new subprogram is appended again to
 * the *main* prog's instructions (subprog's instructions are always left
 * untouched, as they need to be in unmodified state for subsequent main progs
 * and subprog instructions are always sent only as part of a main prog) and
 * the process continues recursively. Once all the subprogs called from a main
 * prog or any of its subprogs are appended (and relocated), all their
 * positions within finalized instructions array are known, so it's easy to
 * rewrite call instructions with correct relative offsets, corresponding to
 * desired target subprog.
 *
 * Its important to realize that some subprogs might not be called from some
 * main prog and any of its called/used subprogs. Those will keep their
 * subprog->sub_insn_off as zero at all times and won't be appended to current
 * main prog and won't be relocated within the context of current main prog.
 * They might still be used from other main progs later.
 *
 * Visually this process can be shown as below. Suppose we have two main
 * programs mainA and mainB and BPF object contains three subprogs: subA,
 * subB, and subC. mainA calls only subA, mainB calls only subC, but subA and
 * subC both call subB:
 *
 *        +--------+ +-------+
 *        |        v v       |
 *     +--+---+ +--+-+-+ +---+--+
 *     | subA | | subB | | subC |
 *     +--+---+ +------+ +---+--+
 *        ^                  ^
 *        |                  |
 *    +---+-------+   +------+----+
 *    |   mainA   |   |   mainB   |
 *    +-----------+   +-----------+
 *
 * We'll start relocating mainA, will find subA, append it and start
 * processing sub A recursively:
 *
 *    +-----------+------+
 *    |   mainA   | subA |
 *    +-----------+------+
 *
 * At this point we notice that subB is used from subA, so we append it and
 * relocate (there are no further subcalls from subB):
 *
 *    +-----------+------+------+
 *    |   mainA   | subA | subB |
 *    +-----------+------+------+
 *
 * At this point, we relocate subA calls, then go one level up and finish with
 * relocatin mainA calls. mainA is done.
 *
 * For mainB process is similar but results in different order. We start with
 * mainB and skip subA and subB, as mainB never calls them (at least
 * directly), but we see subC is needed, so we append and start processing it:
 *
 *    +-----------+------+
 *    |   mainB   | subC |
 *    +-----------+------+
 * Now we see subC needs subB, so we go back to it, append and relocate it:
 *
 *    +-----------+------+------+
 *    |   mainB   | subC | subB |
 *    +-----------+------+------+
 *
 * At this point we unwind recursion, relocate calls in subC, then in mainB.
 */
static int
bpf_object__relocate_calls(struct bpf_object *obj, struct bpf_program *prog)
{
	struct bpf_program *subprog;
6040
	int i, err;
6041 6042 6043 6044 6045 6046 6047 6048 6049 6050 6051 6052 6053 6054 6055 6056 6057

	/* mark all subprogs as not relocated (yet) within the context of
	 * current main program
	 */
	for (i = 0; i < obj->nr_programs; i++) {
		subprog = &obj->programs[i];
		if (!prog_is_subprog(obj, subprog))
			continue;

		subprog->sub_insn_off = 0;
	}

	err = bpf_object__reloc_code(obj, prog, prog);
	if (err)
		return err;


W
Wang Nan 已提交
6058 6059 6060
	return 0;
}

6061 6062 6063 6064 6065 6066 6067 6068 6069 6070 6071 6072 6073 6074
static void
bpf_object__free_relocs(struct bpf_object *obj)
{
	struct bpf_program *prog;
	int i;

	/* free up relocation descriptors */
	for (i = 0; i < obj->nr_programs; i++) {
		prog = &obj->programs[i];
		zfree(&prog->reloc_desc);
		prog->nr_reloc = 0;
	}
}

W
Wang Nan 已提交
6075
static int
6076
bpf_object__relocate(struct bpf_object *obj, const char *targ_btf_path)
W
Wang Nan 已提交
6077 6078
{
	struct bpf_program *prog;
6079
	size_t i, j;
W
Wang Nan 已提交
6080 6081
	int err;

6082 6083 6084
	if (obj->btf_ext) {
		err = bpf_object__relocate_core(obj, targ_btf_path);
		if (err) {
6085 6086
			pr_warn("failed to perform CO-RE relocations: %d\n",
				err);
6087 6088 6089
			return err;
		}
	}
6090 6091 6092 6093 6094 6095 6096

	/* Before relocating calls pre-process relocations and mark
	 * few ld_imm64 instructions that points to subprogs.
	 * Otherwise bpf_object__reloc_code() later would have to consider
	 * all ld_imm64 insns as relocation candidates. That would
	 * reduce relocation speed, since amount of find_prog_insn_relo()
	 * would increase and most of them will fail to find a relo.
6097 6098 6099
	 */
	for (i = 0; i < obj->nr_programs; i++) {
		prog = &obj->programs[i];
6100 6101 6102 6103 6104 6105 6106
		for (j = 0; j < prog->nr_reloc; j++) {
			struct reloc_desc *relo = &prog->reloc_desc[j];
			struct bpf_insn *insn = &prog->insns[relo->insn_idx];

			/* mark the insn, so it's recognized by insn_is_pseudo_func() */
			if (relo->type == RELO_SUBPROG_ADDR)
				insn[0].src_reg = BPF_PSEUDO_FUNC;
6107 6108
		}
	}
6109 6110

	/* relocate subprogram calls and append used subprograms to main
6111 6112
	 * programs; each copy of subprogram code needs to be relocated
	 * differently for each main program, because its code location might
6113 6114 6115
	 * have changed.
	 * Append subprog relos to main programs to allow data relos to be
	 * processed after text is completely relocated.
6116
	 */
W
Wang Nan 已提交
6117 6118
	for (i = 0; i < obj->nr_programs; i++) {
		prog = &obj->programs[i];
6119 6120 6121 6122
		/* sub-program's sub-calls are relocated within the context of
		 * its main program only
		 */
		if (prog_is_subprog(obj, prog))
6123
			continue;
W
Wang Nan 已提交
6124

6125
		err = bpf_object__relocate_calls(obj, prog);
W
Wang Nan 已提交
6126
		if (err) {
6127 6128
			pr_warn("prog '%s': failed to relocate calls: %d\n",
				prog->name, err);
W
Wang Nan 已提交
6129 6130 6131
			return err;
		}
	}
6132 6133 6134 6135 6136 6137 6138 6139 6140 6141 6142 6143
	/* Process data relos for main programs */
	for (i = 0; i < obj->nr_programs; i++) {
		prog = &obj->programs[i];
		if (prog_is_subprog(obj, prog))
			continue;
		err = bpf_object__relocate_data(obj, prog);
		if (err) {
			pr_warn("prog '%s': failed to relocate data references: %d\n",
				prog->name, err);
			return err;
		}
	}
6144 6145
	if (!obj->gen_loader)
		bpf_object__free_relocs(obj);
W
Wang Nan 已提交
6146 6147 6148
	return 0;
}

6149
static int bpf_object__collect_st_ops_relos(struct bpf_object *obj,
6150
					    Elf64_Shdr *shdr, Elf_Data *data);
6151 6152

static int bpf_object__collect_map_relos(struct bpf_object *obj,
6153
					 Elf64_Shdr *shdr, Elf_Data *data)
6154
{
6155 6156
	const int bpf_ptr_sz = 8, host_ptr_sz = sizeof(void *);
	int i, j, nrels, new_sz;
6157
	const struct btf_var_secinfo *vi = NULL;
6158
	const struct btf_type *sec, *var, *def;
6159
	struct bpf_map *map = NULL, *targ_map;
6160 6161 6162
	const struct btf_member *member;
	const char *name, *mname;
	unsigned int moff;
6163 6164
	Elf64_Sym *sym;
	Elf64_Rel *rel;
6165 6166 6167 6168 6169 6170 6171 6172 6173 6174
	void *tmp;

	if (!obj->efile.btf_maps_sec_btf_id || !obj->btf)
		return -EINVAL;
	sec = btf__type_by_id(obj->btf, obj->efile.btf_maps_sec_btf_id);
	if (!sec)
		return -EINVAL;

	nrels = shdr->sh_size / shdr->sh_entsize;
	for (i = 0; i < nrels; i++) {
6175 6176
		rel = elf_rel_by_idx(data, i);
		if (!rel) {
6177 6178 6179
			pr_warn(".maps relo #%d: failed to get ELF relo\n", i);
			return -LIBBPF_ERRNO__FORMAT;
		}
6180 6181 6182

		sym = elf_sym_by_idx(obj, ELF64_R_SYM(rel->r_info));
		if (!sym) {
6183
			pr_warn(".maps relo #%d: symbol %zx not found\n",
6184
				i, (size_t)ELF64_R_SYM(rel->r_info));
6185 6186
			return -LIBBPF_ERRNO__FORMAT;
		}
6187 6188
		name = elf_sym_str(obj, sym->st_name) ?: "<?>";
		if (sym->st_shndx != obj->efile.btf_maps_shndx) {
6189 6190 6191 6192 6193
			pr_warn(".maps relo #%d: '%s' isn't a BTF-defined map\n",
				i, name);
			return -LIBBPF_ERRNO__RELOC;
		}

6194 6195 6196
		pr_debug(".maps relo #%d: for %zd value %zd rel->r_offset %zu name %d ('%s')\n",
			 i, (ssize_t)(rel->r_info >> 32), (size_t)sym->st_value,
			 (size_t)rel->r_offset, sym->st_name, name);
6197 6198 6199 6200 6201 6202 6203

		for (j = 0; j < obj->nr_maps; j++) {
			map = &obj->maps[j];
			if (map->sec_idx != obj->efile.btf_maps_shndx)
				continue;

			vi = btf_var_secinfos(sec) + map->btf_var_idx;
6204 6205
			if (vi->offset <= rel->r_offset &&
			    rel->r_offset + bpf_ptr_sz <= vi->offset + vi->size)
6206 6207 6208
				break;
		}
		if (j == obj->nr_maps) {
6209 6210
			pr_warn(".maps relo #%d: cannot find map '%s' at rel->r_offset %zu\n",
				i, name, (size_t)rel->r_offset);
6211 6212 6213 6214 6215 6216 6217 6218 6219 6220 6221 6222 6223 6224 6225 6226 6227 6228 6229 6230 6231 6232 6233 6234 6235 6236
			return -EINVAL;
		}

		if (!bpf_map_type__is_map_in_map(map->def.type))
			return -EINVAL;
		if (map->def.type == BPF_MAP_TYPE_HASH_OF_MAPS &&
		    map->def.key_size != sizeof(int)) {
			pr_warn(".maps relo #%d: hash-of-maps '%s' should have key size %zu.\n",
				i, map->name, sizeof(int));
			return -EINVAL;
		}

		targ_map = bpf_object__find_map_by_name(obj, name);
		if (!targ_map)
			return -ESRCH;

		var = btf__type_by_id(obj->btf, vi->type);
		def = skip_mods_and_typedefs(obj->btf, var->type, NULL);
		if (btf_vlen(def) == 0)
			return -EINVAL;
		member = btf_members(def) + btf_vlen(def) - 1;
		mname = btf__name_by_offset(obj->btf, member->name_off);
		if (strcmp(mname, "values"))
			return -EINVAL;

		moff = btf_member_bit_offset(def, btf_vlen(def) - 1) / 8;
6237
		if (rel->r_offset - vi->offset < moff)
6238 6239
			return -EINVAL;

6240
		moff = rel->r_offset - vi->offset - moff;
6241 6242 6243 6244
		/* here we use BPF pointer size, which is always 64 bit, as we
		 * are parsing ELF that was built for BPF target
		 */
		if (moff % bpf_ptr_sz)
6245
			return -EINVAL;
6246
		moff /= bpf_ptr_sz;
6247 6248
		if (moff >= map->init_slots_sz) {
			new_sz = moff + 1;
6249
			tmp = libbpf_reallocarray(map->init_slots, new_sz, host_ptr_sz);
6250 6251 6252 6253
			if (!tmp)
				return -ENOMEM;
			map->init_slots = tmp;
			memset(map->init_slots + map->init_slots_sz, 0,
6254
			       (new_sz - map->init_slots_sz) * host_ptr_sz);
6255 6256 6257 6258 6259 6260 6261 6262 6263 6264
			map->init_slots_sz = new_sz;
		}
		map->init_slots[moff] = targ_map;

		pr_debug(".maps relo #%d: map '%s' slot [%d] points to map '%s'\n",
			 i, map->name, moff, name);
	}

	return 0;
}
6265

6266
static int cmp_relocs(const void *_a, const void *_b)
6267
{
6268 6269
	const struct reloc_desc *a = _a;
	const struct reloc_desc *b = _b;
6270

6271 6272 6273 6274 6275 6276 6277 6278 6279 6280 6281 6282 6283
	if (a->insn_idx != b->insn_idx)
		return a->insn_idx < b->insn_idx ? -1 : 1;

	/* no two relocations should have the same insn_idx, but ... */
	if (a->type != b->type)
		return a->type < b->type ? -1 : 1;

	return 0;
}

static int bpf_object__collect_relos(struct bpf_object *obj)
{
	int i, err;
6284

6285 6286 6287 6288 6289 6290 6291 6292 6293 6294 6295 6296
	for (i = 0; i < obj->efile.sec_cnt; i++) {
		struct elf_sec_desc *sec_desc = &obj->efile.secs[i];
		Elf64_Shdr *shdr;
		Elf_Data *data;
		int idx;

		if (sec_desc->sec_type != SEC_RELO)
			continue;

		shdr = sec_desc->shdr;
		data = sec_desc->data;
		idx = shdr->sh_info;
6297 6298

		if (shdr->sh_type != SHT_REL) {
6299
			pr_warn("internal error at %d\n", __LINE__);
6300
			return -LIBBPF_ERRNO__INTERNAL;
6301 6302
		}

6303
		if (idx == obj->efile.st_ops_shndx)
6304
			err = bpf_object__collect_st_ops_relos(obj, shdr, data);
6305
		else if (idx == obj->efile.btf_maps_shndx)
6306
			err = bpf_object__collect_map_relos(obj, shdr, data);
6307 6308
		else
			err = bpf_object__collect_prog_relos(obj, shdr, data);
6309
		if (err)
6310
			return err;
6311
	}
6312 6313 6314

	for (i = 0; i < obj->nr_programs; i++) {
		struct bpf_program *p = &obj->programs[i];
J
Jason Wang 已提交
6315

6316 6317 6318 6319 6320
		if (!p->nr_reloc)
			continue;

		qsort(p->reloc_desc, p->nr_reloc, sizeof(*p->reloc_desc), cmp_relocs);
	}
6321 6322 6323
	return 0;
}

6324 6325
static bool insn_is_helper_call(struct bpf_insn *insn, enum bpf_func_id *func_id)
{
6326
	if (BPF_CLASS(insn->code) == BPF_JMP &&
6327 6328
	    BPF_OP(insn->code) == BPF_CALL &&
	    BPF_SRC(insn->code) == BPF_K &&
6329 6330 6331
	    insn->src_reg == 0 &&
	    insn->dst_reg == 0) {
		    *func_id = insn->imm;
6332 6333 6334 6335 6336
		    return true;
	}
	return false;
}

6337
static int bpf_object__sanitize_prog(struct bpf_object *obj, struct bpf_program *prog)
6338 6339 6340 6341 6342
{
	struct bpf_insn *insn = prog->insns;
	enum bpf_func_id func_id;
	int i;

6343 6344 6345
	if (obj->gen_loader)
		return 0;

6346 6347 6348 6349 6350 6351 6352 6353 6354 6355 6356
	for (i = 0; i < prog->insns_cnt; i++, insn++) {
		if (!insn_is_helper_call(insn, &func_id))
			continue;

		/* on kernels that don't yet support
		 * bpf_probe_read_{kernel,user}[_str] helpers, fall back
		 * to bpf_probe_read() which works well for old kernels
		 */
		switch (func_id) {
		case BPF_FUNC_probe_read_kernel:
		case BPF_FUNC_probe_read_user:
6357
			if (!kernel_supports(obj, FEAT_PROBE_READ_KERN))
6358 6359 6360 6361
				insn->imm = BPF_FUNC_probe_read;
			break;
		case BPF_FUNC_probe_read_kernel_str:
		case BPF_FUNC_probe_read_user_str:
6362
			if (!kernel_supports(obj, FEAT_PROBE_READ_KERN))
6363 6364 6365 6366 6367 6368 6369 6370 6371
				insn->imm = BPF_FUNC_probe_read_str;
			break;
		default:
			break;
		}
	}
	return 0;
}

6372 6373
static int libbpf_find_attach_btf_id(struct bpf_program *prog, const char *attach_name,
				     int *btf_obj_fd, int *btf_type_id);
6374 6375 6376 6377 6378

/* this is called as prog->sec_def->preload_fn for libbpf-supported sec_defs */
static int libbpf_preload_prog(struct bpf_program *prog,
			       struct bpf_prog_load_params *attr, long cookie)
{
6379 6380
	enum sec_def_flags def = cookie;

6381
	/* old kernels might not support specifying expected_attach_type */
6382
	if ((def & SEC_EXP_ATTACH_OPT) && !kernel_supports(prog->obj, FEAT_EXP_ATTACH_TYPE))
6383 6384
		attr->expected_attach_type = 0;

6385
	if (def & SEC_SLEEPABLE)
6386 6387 6388 6389 6390 6391
		attr->prog_flags |= BPF_F_SLEEPABLE;

	if ((prog->type == BPF_PROG_TYPE_TRACING ||
	     prog->type == BPF_PROG_TYPE_LSM ||
	     prog->type == BPF_PROG_TYPE_EXT) && !prog->attach_btf_id) {
		int btf_obj_fd = 0, btf_type_id = 0, err;
6392
		const char *attach_name;
6393

6394 6395
		attach_name = strchr(prog->sec_name, '/') + 1;
		err = libbpf_find_attach_btf_id(prog, attach_name, &btf_obj_fd, &btf_type_id);
6396 6397 6398 6399 6400 6401 6402 6403 6404 6405 6406 6407 6408 6409 6410 6411 6412 6413
		if (err)
			return err;

		/* cache resolved BTF FD and BTF type ID in the prog */
		prog->attach_btf_obj_fd = btf_obj_fd;
		prog->attach_btf_id = btf_type_id;

		/* but by now libbpf common logic is not utilizing
		 * prog->atach_btf_obj_fd/prog->attach_btf_id anymore because
		 * this callback is called after attrs were populated by
		 * libbpf, so this callback has to update attr explicitly here
		 */
		attr->attach_btf_obj_fd = btf_obj_fd;
		attr->attach_btf_id = btf_type_id;
	}
	return 0;
}

6414
static int
6415
load_program(struct bpf_program *prog, struct bpf_insn *insns, int insns_cnt,
6416
	     char *license, __u32 kern_version, int *pfd)
6417
{
6418
	struct bpf_prog_load_params load_attr = {};
6419
	struct bpf_object *obj = prog->obj;
6420
	char *cp, errmsg[STRERR_BUFSIZE];
6421 6422
	size_t log_buf_size = 0;
	char *log_buf = NULL;
6423
	int btf_fd, ret, err;
6424

6425 6426 6427 6428 6429 6430 6431 6432 6433 6434
	if (prog->type == BPF_PROG_TYPE_UNSPEC) {
		/*
		 * The program type must be set.  Most likely we couldn't find a proper
		 * section definition at load time, and thus we didn't infer the type.
		 */
		pr_warn("prog '%s': missing BPF prog type, check ELF section name '%s'\n",
			prog->name, prog->sec_name);
		return -EINVAL;
	}

6435 6436 6437
	if (!insns || !insns_cnt)
		return -EINVAL;

6438
	load_attr.prog_type = prog->type;
6439
	load_attr.expected_attach_type = prog->expected_attach_type;
6440
	if (kernel_supports(obj, FEAT_PROG_NAME))
6441
		load_attr.name = prog->name;
6442
	load_attr.insns = insns;
6443
	load_attr.insn_cnt = insns_cnt;
6444
	load_attr.license = license;
6445
	load_attr.attach_btf_id = prog->attach_btf_id;
6446 6447
	load_attr.attach_prog_fd = prog->attach_prog_fd;
	load_attr.attach_btf_obj_fd = prog->attach_btf_obj_fd;
6448 6449 6450 6451
	load_attr.attach_btf_id = prog->attach_btf_id;
	load_attr.kern_version = kern_version;
	load_attr.prog_ifindex = prog->prog_ifindex;

6452
	/* specify func_info/line_info only if kernel supports them */
6453 6454
	btf_fd = bpf_object__btf_fd(obj);
	if (btf_fd >= 0 && kernel_supports(obj, FEAT_BTF_FUNC)) {
6455 6456 6457 6458 6459 6460 6461 6462
		load_attr.prog_btf_fd = btf_fd;
		load_attr.func_info = prog->func_info;
		load_attr.func_info_rec_size = prog->func_info_rec_size;
		load_attr.func_info_cnt = prog->func_info_cnt;
		load_attr.line_info = prog->line_info;
		load_attr.line_info_rec_size = prog->line_info_rec_size;
		load_attr.line_info_cnt = prog->line_info_cnt;
	}
6463
	load_attr.log_level = prog->log_level;
6464
	load_attr.prog_flags = prog->prog_flags;
6465
	load_attr.fd_array = obj->fd_array;
6466

6467 6468 6469 6470 6471 6472 6473 6474 6475 6476
	/* adjust load_attr if sec_def provides custom preload callback */
	if (prog->sec_def && prog->sec_def->preload_fn) {
		err = prog->sec_def->preload_fn(prog, &load_attr, prog->sec_def->cookie);
		if (err < 0) {
			pr_warn("prog '%s': failed to prepare load attributes: %d\n",
				prog->name, err);
			return err;
		}
	}

6477 6478 6479
	if (obj->gen_loader) {
		bpf_gen__prog_load(obj->gen_loader, &load_attr,
				   prog - obj->programs);
6480 6481 6482
		*pfd = -1;
		return 0;
	}
6483
retry_load:
6484 6485 6486 6487 6488 6489 6490
	if (log_buf_size) {
		log_buf = malloc(log_buf_size);
		if (!log_buf)
			return -ENOMEM;

		*log_buf = 0;
	}
6491

6492 6493 6494
	load_attr.log_buf = log_buf;
	load_attr.log_buf_sz = log_buf_size;
	ret = libbpf__bpf_prog_load(&load_attr);
6495 6496

	if (ret >= 0) {
6497
		if (log_buf && load_attr.log_level)
6498
			pr_debug("verifier log:\n%s", log_buf);
6499

6500 6501 6502 6503 6504 6505 6506 6507
		if (obj->has_rodata && kernel_supports(obj, FEAT_PROG_BIND_MAP)) {
			struct bpf_map *map;
			int i;

			for (i = 0; i < obj->nr_maps; i++) {
				map = &prog->obj->maps[i];
				if (map->libbpf_type != LIBBPF_MAP_RODATA)
					continue;
6508

6509 6510 6511 6512 6513 6514
				if (bpf_prog_bind_map(ret, bpf_map__fd(map), NULL)) {
					cp = libbpf_strerror_r(errno, errmsg, sizeof(errmsg));
					pr_warn("prog '%s': failed to bind .rodata map: %s\n",
						prog->name, cp);
					/* Don't fail hard if can't bind rodata. */
				}
6515 6516 6517
			}
		}

6518 6519 6520 6521 6522
		*pfd = ret;
		ret = 0;
		goto out;
	}

6523 6524 6525 6526
	if (!log_buf || errno == ENOSPC) {
		log_buf_size = max((size_t)BPF_LOG_BUF_SIZE,
				   log_buf_size << 1);

6527 6528 6529
		free(log_buf);
		goto retry_load;
	}
6530
	ret = errno ? -errno : -LIBBPF_ERRNO__LOAD;
6531
	cp = libbpf_strerror_r(errno, errmsg, sizeof(errmsg));
6532
	pr_warn("load bpf program failed: %s\n", cp);
6533
	pr_perm_msg(ret);
6534

6535 6536
	if (log_buf && log_buf[0] != '\0') {
		ret = -LIBBPF_ERRNO__VERIFY;
6537 6538 6539
		pr_warn("-- BEGIN DUMP LOG ---\n");
		pr_warn("\n%s\n", log_buf);
		pr_warn("-- END LOG --\n");
6540
	} else if (load_attr.insn_cnt >= BPF_MAXINSNS) {
6541
		pr_warn("Program too large (%zu insns), at most %d insns\n",
6542
			load_attr.insn_cnt, BPF_MAXINSNS);
6543
		ret = -LIBBPF_ERRNO__PROG2BIG;
6544
	} else if (load_attr.prog_type != BPF_PROG_TYPE_KPROBE) {
6545
		/* Wrong program type? */
6546
		int fd;
6547

6548 6549
		load_attr.prog_type = BPF_PROG_TYPE_KPROBE;
		load_attr.expected_attach_type = 0;
6550 6551 6552
		load_attr.log_buf = NULL;
		load_attr.log_buf_sz = 0;
		fd = libbpf__bpf_prog_load(&load_attr);
6553 6554 6555 6556 6557
		if (fd >= 0) {
			close(fd);
			ret = -LIBBPF_ERRNO__PROGTYPE;
			goto out;
		}
6558 6559 6560 6561 6562 6563 6564
	}

out:
	free(log_buf);
	return ret;
}

6565 6566 6567 6568 6569 6570 6571 6572 6573 6574 6575 6576 6577
static int bpf_program__record_externs(struct bpf_program *prog)
{
	struct bpf_object *obj = prog->obj;
	int i;

	for (i = 0; i < prog->nr_reloc; i++) {
		struct reloc_desc *relo = &prog->reloc_desc[i];
		struct extern_desc *ext = &obj->externs[relo->sym_off];

		switch (relo->type) {
		case RELO_EXTERN_VAR:
			if (ext->type != EXT_KSYM)
				continue;
6578 6579
			bpf_gen__record_extern(obj->gen_loader, ext->name,
					       ext->is_weak, !ext->ksym.type_id,
6580
					       BTF_KIND_VAR, relo->insn_idx);
6581 6582
			break;
		case RELO_EXTERN_FUNC:
6583 6584
			bpf_gen__record_extern(obj->gen_loader, ext->name,
					       ext->is_weak, false, BTF_KIND_FUNC,
6585 6586 6587 6588 6589 6590 6591 6592 6593
					       relo->insn_idx);
			break;
		default:
			continue;
		}
	}
	return 0;
}

6594
int bpf_program__load(struct bpf_program *prog, char *license, __u32 kern_ver)
6595
{
6596
	int err = 0, fd, i;
6597

6598
	if (prog->obj->loaded) {
6599
		pr_warn("prog '%s': can't load after object was loaded\n", prog->name);
6600
		return libbpf_err(-EINVAL);
6601 6602
	}

6603 6604
	if (prog->instances.nr < 0 || !prog->instances.fds) {
		if (prog->preprocessor) {
6605
			pr_warn("Internal error: can't load program '%s'\n",
6606
				prog->name);
6607
			return libbpf_err(-LIBBPF_ERRNO__INTERNAL);
6608
		}
6609

6610 6611
		prog->instances.fds = malloc(sizeof(int));
		if (!prog->instances.fds) {
6612
			pr_warn("Not enough memory for BPF fds\n");
6613
			return libbpf_err(-ENOMEM);
6614 6615 6616 6617 6618 6619 6620
		}
		prog->instances.nr = 1;
		prog->instances.fds[0] = -1;
	}

	if (!prog->preprocessor) {
		if (prog->instances.nr != 1) {
6621 6622
			pr_warn("prog '%s': inconsistent nr(%d) != 1\n",
				prog->name, prog->instances.nr);
6623
		}
6624 6625
		if (prog->obj->gen_loader)
			bpf_program__record_externs(prog);
6626
		err = load_program(prog, prog->insns, prog->insns_cnt,
6627
				   license, kern_ver, &fd);
6628 6629 6630 6631 6632 6633 6634 6635 6636
		if (!err)
			prog->instances.fds[0] = fd;
		goto out;
	}

	for (i = 0; i < prog->instances.nr; i++) {
		struct bpf_prog_prep_result result;
		bpf_program_prep_t preprocessor = prog->preprocessor;

6637
		memset(&result, 0, sizeof(result));
6638 6639 6640
		err = preprocessor(prog, i, prog->insns,
				   prog->insns_cnt, &result);
		if (err) {
6641
			pr_warn("Preprocessing the %dth instance of program '%s' failed\n",
6642
				i, prog->name);
6643 6644 6645 6646 6647
			goto out;
		}

		if (!result.new_insn_ptr || !result.new_insn_cnt) {
			pr_debug("Skip loading the %dth instance of program '%s'\n",
6648
				 i, prog->name);
6649 6650 6651 6652 6653 6654
			prog->instances.fds[i] = -1;
			if (result.pfd)
				*result.pfd = -1;
			continue;
		}

6655
		err = load_program(prog, result.new_insn_ptr,
6656
				   result.new_insn_cnt, license, kern_ver, &fd);
6657
		if (err) {
6658
			pr_warn("Loading the %dth instance of program '%s' failed\n",
6659
				i, prog->name);
6660 6661 6662 6663 6664 6665 6666 6667
			goto out;
		}

		if (result.pfd)
			*result.pfd = fd;
		prog->instances.fds[i] = fd;
	}
out:
6668
	if (err)
6669
		pr_warn("failed to load program '%s'\n", prog->name);
6670
	return libbpf_err(err);
6671 6672 6673
}

static int
6674
bpf_object__load_progs(struct bpf_object *obj, int log_level)
6675
{
6676
	struct bpf_program *prog;
6677 6678 6679
	size_t i;
	int err;

6680 6681 6682 6683 6684 6685 6686
	for (i = 0; i < obj->nr_programs; i++) {
		prog = &obj->programs[i];
		err = bpf_object__sanitize_prog(obj, prog);
		if (err)
			return err;
	}

6687
	for (i = 0; i < obj->nr_programs; i++) {
6688
		prog = &obj->programs[i];
6689
		if (prog_is_subprog(obj, prog))
6690
			continue;
6691
		if (!prog->load) {
6692
			pr_debug("prog '%s': skipped loading\n", prog->name);
6693 6694 6695 6696
			continue;
		}
		prog->log_level |= log_level;
		err = bpf_program__load(prog, obj->license, obj->kern_version);
6697 6698 6699
		if (err)
			return err;
	}
6700 6701
	if (obj->gen_loader)
		bpf_object__free_relocs(obj);
6702 6703 6704
	return 0;
}

6705 6706
static const struct bpf_sec_def *find_sec_def(const char *sec_name);

6707 6708 6709
static int bpf_object_init_progs(struct bpf_object *obj, const struct bpf_object_open_opts *opts)
{
	struct bpf_program *prog;
6710
	int err;
6711 6712 6713 6714 6715 6716 6717 6718 6719 6720 6721 6722 6723

	bpf_object__for_each_program(prog, obj) {
		prog->sec_def = find_sec_def(prog->sec_name);
		if (!prog->sec_def) {
			/* couldn't guess, but user might manually specify */
			pr_debug("prog '%s': unrecognized ELF section name '%s'\n",
				prog->name, prog->sec_name);
			continue;
		}

		bpf_program__set_type(prog, prog->sec_def->prog_type);
		bpf_program__set_expected_attach_type(prog, prog->sec_def->expected_attach_type);

6724 6725
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wdeprecated-declarations"
6726 6727 6728
		if (prog->sec_def->prog_type == BPF_PROG_TYPE_TRACING ||
		    prog->sec_def->prog_type == BPF_PROG_TYPE_EXT)
			prog->attach_prog_fd = OPTS_GET(opts, attach_prog_fd, 0);
6729
#pragma GCC diagnostic pop
6730 6731 6732 6733 6734 6735 6736 6737 6738 6739 6740 6741

		/* sec_def can have custom callback which should be called
		 * after bpf_program is initialized to adjust its properties
		 */
		if (prog->sec_def->init_fn) {
			err = prog->sec_def->init_fn(prog, prog->sec_def->cookie);
			if (err < 0) {
				pr_warn("prog '%s': failed to initialize: %d\n",
					prog->name, err);
				return err;
			}
		}
6742 6743 6744 6745 6746
	}

	return 0;
}

6747
static struct bpf_object *
6748
__bpf_object__open(const char *path, const void *obj_buf, size_t obj_buf_sz,
6749
		   const struct bpf_object_open_opts *opts)
6750
{
6751
	const char *obj_name, *kconfig, *btf_tmp_path;
6752
	struct bpf_object *obj;
6753
	char tmp_name[64];
6754
	int err;
6755 6756

	if (elf_version(EV_CURRENT) == EV_NONE) {
6757 6758
		pr_warn("failed to init libelf for %s\n",
			path ? : "(mem buf)");
6759
		return ERR_PTR(-LIBBPF_ERRNO__LIBELF);
6760 6761
	}

6762 6763 6764
	if (!OPTS_VALID(opts, bpf_object_open_opts))
		return ERR_PTR(-EINVAL);

6765
	obj_name = OPTS_GET(opts, object_name, NULL);
6766 6767 6768 6769 6770 6771 6772 6773 6774 6775 6776
	if (obj_buf) {
		if (!obj_name) {
			snprintf(tmp_name, sizeof(tmp_name), "%lx-%lx",
				 (unsigned long)obj_buf,
				 (unsigned long)obj_buf_sz);
			obj_name = tmp_name;
		}
		path = obj_name;
		pr_debug("loading object '%s' from buffer\n", obj_name);
	}

6777
	obj = bpf_object__new(path, obj_buf, obj_buf_sz, obj_name);
6778 6779
	if (IS_ERR(obj))
		return obj;
6780

6781 6782 6783 6784 6785 6786 6787 6788 6789 6790 6791 6792 6793
	btf_tmp_path = OPTS_GET(opts, btf_custom_path, NULL);
	if (btf_tmp_path) {
		if (strlen(btf_tmp_path) >= PATH_MAX) {
			err = -ENAMETOOLONG;
			goto out;
		}
		obj->btf_custom_path = strdup(btf_tmp_path);
		if (!obj->btf_custom_path) {
			err = -ENOMEM;
			goto out;
		}
	}

6794 6795 6796
	kconfig = OPTS_GET(opts, kconfig, NULL);
	if (kconfig) {
		obj->kconfig = strdup(kconfig);
6797 6798 6799 6800
		if (!obj->kconfig) {
			err = -ENOMEM;
			goto out;
		}
6801
	}
6802

6803 6804 6805
	err = bpf_object__elf_init(obj);
	err = err ? : bpf_object__check_endianness(obj);
	err = err ? : bpf_object__elf_collect(obj);
6806 6807
	err = err ? : bpf_object__collect_externs(obj);
	err = err ? : bpf_object__finalize_btf(obj);
6808
	err = err ? : bpf_object__init_maps(obj, opts);
6809
	err = err ? : bpf_object_init_progs(obj, opts);
6810
	err = err ? : bpf_object__collect_relos(obj);
6811 6812
	if (err)
		goto out;
6813

6814
	bpf_object__elf_finish(obj);
6815

6816 6817 6818
	return obj;
out:
	bpf_object__close(obj);
6819
	return ERR_PTR(err);
6820 6821
}

6822 6823
static struct bpf_object *
__bpf_object__open_xattr(struct bpf_object_open_attr *attr, int flags)
6824
{
6825
	DECLARE_LIBBPF_OPTS(bpf_object_open_opts, opts,
6826 6827 6828
		.relaxed_maps = flags & MAPS_RELAX_COMPAT,
	);

6829
	/* param validation */
6830
	if (!attr->file)
6831 6832
		return NULL;

6833
	pr_debug("loading %s\n", attr->file);
6834
	return __bpf_object__open(attr->file, NULL, 0, &opts);
6835 6836 6837 6838
}

struct bpf_object *bpf_object__open_xattr(struct bpf_object_open_attr *attr)
{
6839
	return libbpf_ptr(__bpf_object__open_xattr(attr, 0));
6840 6841 6842 6843 6844 6845 6846 6847
}

struct bpf_object *bpf_object__open(const char *path)
{
	struct bpf_object_open_attr attr = {
		.file		= path,
		.prog_type	= BPF_PROG_TYPE_UNSPEC,
	};
6848

6849
	return libbpf_ptr(__bpf_object__open_xattr(&attr, 0));
6850 6851
}

6852
struct bpf_object *
6853
bpf_object__open_file(const char *path, const struct bpf_object_open_opts *opts)
6854 6855
{
	if (!path)
6856
		return libbpf_err_ptr(-EINVAL);
6857 6858 6859

	pr_debug("loading %s\n", path);

6860
	return libbpf_ptr(__bpf_object__open(path, NULL, 0, opts));
6861 6862 6863 6864
}

struct bpf_object *
bpf_object__open_mem(const void *obj_buf, size_t obj_buf_sz,
6865
		     const struct bpf_object_open_opts *opts)
6866
{
6867
	if (!obj_buf || obj_buf_sz == 0)
6868
		return libbpf_err_ptr(-EINVAL);
6869

6870
	return libbpf_ptr(__bpf_object__open(NULL, obj_buf, obj_buf_sz, opts));
6871 6872 6873 6874 6875 6876
}

struct bpf_object *
bpf_object__open_buffer(const void *obj_buf, size_t obj_buf_sz,
			const char *name)
{
6877
	DECLARE_LIBBPF_OPTS(bpf_object_open_opts, opts,
6878 6879 6880 6881 6882 6883 6884
		.object_name = name,
		/* wrong default, but backwards-compatible */
		.relaxed_maps = true,
	);

	/* returning NULL is wrong, but backwards-compatible */
	if (!obj_buf || obj_buf_sz == 0)
6885
		return errno = EINVAL, NULL;
6886

6887
	return libbpf_ptr(__bpf_object__open(NULL, obj_buf, obj_buf_sz, &opts));
6888 6889
}

6890
static int bpf_object_unload(struct bpf_object *obj)
6891 6892 6893 6894
{
	size_t i;

	if (!obj)
6895
		return libbpf_err(-EINVAL);
6896

6897
	for (i = 0; i < obj->nr_maps; i++) {
6898
		zclose(obj->maps[i].fd);
6899 6900 6901
		if (obj->maps[i].st_ops)
			zfree(&obj->maps[i].st_ops->kern_vdata);
	}
6902

6903 6904 6905
	for (i = 0; i < obj->nr_programs; i++)
		bpf_program__unload(&obj->programs[i]);

6906 6907 6908
	return 0;
}

6909 6910
int bpf_object__unload(struct bpf_object *obj) __attribute__((alias("bpf_object_unload")));

6911 6912 6913 6914 6915 6916 6917
static int bpf_object__sanitize_maps(struct bpf_object *obj)
{
	struct bpf_map *m;

	bpf_object__for_each_map(m, obj) {
		if (!bpf_map__is_internal(m))
			continue;
6918
		if (!kernel_supports(obj, FEAT_GLOBAL_DATA)) {
6919 6920 6921
			pr_warn("kernel doesn't support global data\n");
			return -ENOTSUP;
		}
6922
		if (!kernel_supports(obj, FEAT_ARRAY_MMAP))
6923 6924 6925 6926 6927 6928
			m->def.map_flags ^= BPF_F_MMAPABLE;
	}

	return 0;
}

6929 6930 6931 6932
static int bpf_object__read_kallsyms_file(struct bpf_object *obj)
{
	char sym_type, sym_name[500];
	unsigned long long sym_addr;
6933
	const struct btf_type *t;
6934 6935 6936 6937 6938 6939 6940 6941 6942 6943 6944 6945 6946 6947 6948 6949 6950
	struct extern_desc *ext;
	int ret, err = 0;
	FILE *f;

	f = fopen("/proc/kallsyms", "r");
	if (!f) {
		err = -errno;
		pr_warn("failed to open /proc/kallsyms: %d\n", err);
		return err;
	}

	while (true) {
		ret = fscanf(f, "%llx %c %499s%*[^\n]\n",
			     &sym_addr, &sym_type, sym_name);
		if (ret == EOF && feof(f))
			break;
		if (ret != 3) {
6951
			pr_warn("failed to read kallsyms entry: %d\n", ret);
6952 6953 6954 6955 6956 6957 6958 6959
			err = -EINVAL;
			goto out;
		}

		ext = find_extern_by_name(obj, sym_name);
		if (!ext || ext->type != EXT_KSYM)
			continue;

6960 6961 6962 6963
		t = btf__type_by_id(obj->btf, ext->btf_id);
		if (!btf_is_var(t))
			continue;

6964 6965 6966 6967 6968 6969 6970 6971 6972 6973 6974 6975 6976 6977 6978 6979 6980 6981
		if (ext->is_set && ext->ksym.addr != sym_addr) {
			pr_warn("extern (ksym) '%s' resolution is ambiguous: 0x%llx or 0x%llx\n",
				sym_name, ext->ksym.addr, sym_addr);
			err = -EINVAL;
			goto out;
		}
		if (!ext->is_set) {
			ext->is_set = true;
			ext->ksym.addr = sym_addr;
			pr_debug("extern (ksym) %s=0x%llx\n", sym_name, sym_addr);
		}
	}

out:
	fclose(f);
	return err;
}

6982 6983
static int find_ksym_btf_id(struct bpf_object *obj, const char *ksym_name,
			    __u16 kind, struct btf **res_btf,
6984
			    struct module_btf **res_mod_btf)
H
Hao Luo 已提交
6985
{
6986
	struct module_btf *mod_btf;
6987
	struct btf *btf;
6988
	int i, id, err;
H
Hao Luo 已提交
6989

6990
	btf = obj->btf_vmlinux;
6991
	mod_btf = NULL;
6992 6993
	id = btf__find_by_name_kind(btf, ksym_name, kind);

6994 6995 6996 6997
	if (id == -ENOENT) {
		err = load_module_btfs(obj);
		if (err)
			return err;
H
Hao Luo 已提交
6998

6999
		for (i = 0; i < obj->btf_module_cnt; i++) {
7000 7001 7002 7003
			/* we assume module_btf's BTF FD is always >0 */
			mod_btf = &obj->btf_modules[i];
			btf = mod_btf->btf;
			id = btf__find_by_name_kind_own(btf, ksym_name, kind);
7004 7005 7006 7007
			if (id != -ENOENT)
				break;
		}
	}
H
Hao Luo 已提交
7008
	if (id <= 0)
7009
		return -ESRCH;
H
Hao Luo 已提交
7010

7011
	*res_btf = btf;
7012
	*res_mod_btf = mod_btf;
7013 7014 7015 7016 7017 7018 7019 7020
	return id;
}

static int bpf_object__resolve_ksym_var_btf_id(struct bpf_object *obj,
					       struct extern_desc *ext)
{
	const struct btf_type *targ_var, *targ_type;
	__u32 targ_type_id, local_type_id;
7021
	struct module_btf *mod_btf = NULL;
7022 7023
	const char *targ_var_name;
	struct btf *btf = NULL;
7024
	int id, err;
7025

7026
	id = find_ksym_btf_id(obj, ext->name, BTF_KIND_VAR, &btf, &mod_btf);
7027 7028 7029
	if (id < 0) {
		if (id == -ESRCH && ext->is_weak)
			return 0;
H
Hao Luo 已提交
7030 7031
		pr_warn("extern (var ksym) '%s': not found in kernel BTF\n",
			ext->name);
7032
		return id;
H
Hao Luo 已提交
7033
	}
7034

7035 7036
	/* find local type_id */
	local_type_id = ext->ksym.type_id;
7037

7038 7039 7040 7041
	/* find target type_id */
	targ_var = btf__type_by_id(btf, id);
	targ_var_name = btf__name_by_offset(btf, targ_var->name_off);
	targ_type = skip_mods_and_typedefs(btf, targ_var->type, &targ_type_id);
H
Hao Luo 已提交
7042

7043 7044 7045 7046 7047
	err = bpf_core_types_are_compat(obj->btf, local_type_id,
					btf, targ_type_id);
	if (err <= 0) {
		const struct btf_type *local_type;
		const char *targ_name, *local_name;
H
Hao Luo 已提交
7048

7049 7050 7051
		local_type = btf__type_by_id(obj->btf, local_type_id);
		local_name = btf__name_by_offset(obj->btf, local_type->name_off);
		targ_name = btf__name_by_offset(btf, targ_type->name_off);
H
Hao Luo 已提交
7052

7053 7054 7055 7056 7057 7058
		pr_warn("extern (var ksym) '%s': incompatible types, expected [%d] %s %s, but kernel has [%d] %s %s\n",
			ext->name, local_type_id,
			btf_kind_str(local_type), local_name, targ_type_id,
			btf_kind_str(targ_type), targ_name);
		return -EINVAL;
	}
H
Hao Luo 已提交
7059

7060
	ext->is_set = true;
7061
	ext->ksym.kernel_btf_obj_fd = mod_btf ? mod_btf->fd : 0;
7062 7063 7064
	ext->ksym.kernel_btf_id = id;
	pr_debug("extern (var ksym) '%s': resolved to [%d] %s %s\n",
		 ext->name, id, btf_kind_str(targ_var), targ_var_name);
H
Hao Luo 已提交
7065

7066 7067
	return 0;
}
H
Hao Luo 已提交
7068

7069 7070 7071 7072
static int bpf_object__resolve_ksym_func_btf_id(struct bpf_object *obj,
						struct extern_desc *ext)
{
	int local_func_proto_id, kfunc_proto_id, kfunc_id;
7073
	struct module_btf *mod_btf = NULL;
7074 7075
	const struct btf_type *kern_func;
	struct btf *kern_btf = NULL;
7076
	int ret;
7077 7078 7079

	local_func_proto_id = ext->ksym.type_id;

7080
	kfunc_id = find_ksym_btf_id(obj, ext->name, BTF_KIND_FUNC, &kern_btf, &mod_btf);
7081
	if (kfunc_id < 0) {
7082 7083 7084
		if (kfunc_id == -ESRCH && ext->is_weak)
			return 0;
		pr_warn("extern (func ksym) '%s': not found in kernel or module BTFs\n",
7085 7086 7087 7088 7089 7090 7091 7092 7093 7094 7095 7096 7097 7098 7099
			ext->name);
		return kfunc_id;
	}

	kern_func = btf__type_by_id(kern_btf, kfunc_id);
	kfunc_proto_id = kern_func->type;

	ret = bpf_core_types_are_compat(obj->btf, local_func_proto_id,
					kern_btf, kfunc_proto_id);
	if (ret <= 0) {
		pr_warn("extern (func ksym) '%s': func_proto [%d] incompatible with kernel [%d]\n",
			ext->name, local_func_proto_id, kfunc_proto_id);
		return -EINVAL;
	}

7100 7101 7102 7103 7104 7105 7106 7107 7108 7109 7110 7111 7112 7113 7114 7115 7116 7117 7118 7119 7120
	/* set index for module BTF fd in fd_array, if unset */
	if (mod_btf && !mod_btf->fd_array_idx) {
		/* insn->off is s16 */
		if (obj->fd_array_cnt == INT16_MAX) {
			pr_warn("extern (func ksym) '%s': module BTF fd index %d too big to fit in bpf_insn offset\n",
				ext->name, mod_btf->fd_array_idx);
			return -E2BIG;
		}
		/* Cannot use index 0 for module BTF fd */
		if (!obj->fd_array_cnt)
			obj->fd_array_cnt = 1;

		ret = libbpf_ensure_mem((void **)&obj->fd_array, &obj->fd_array_cap, sizeof(int),
					obj->fd_array_cnt + 1);
		if (ret)
			return ret;
		mod_btf->fd_array_idx = obj->fd_array_cnt;
		/* we assume module BTF FD is always >0 */
		obj->fd_array[obj->fd_array_cnt++] = mod_btf->fd;
	}

7121 7122
	ext->is_set = true;
	ext->ksym.kernel_btf_id = kfunc_id;
7123
	ext->ksym.btf_fd_idx = mod_btf ? mod_btf->fd_array_idx : 0;
7124 7125 7126 7127 7128 7129
	pr_debug("extern (func ksym) '%s': resolved to kernel [%d]\n",
		 ext->name, kfunc_id);

	return 0;
}

7130 7131
static int bpf_object__resolve_ksyms_btf_id(struct bpf_object *obj)
{
7132
	const struct btf_type *t;
7133 7134 7135 7136 7137 7138 7139 7140
	struct extern_desc *ext;
	int i, err;

	for (i = 0; i < obj->nr_extern; i++) {
		ext = &obj->externs[i];
		if (ext->type != EXT_KSYM || !ext->ksym.type_id)
			continue;

7141 7142 7143 7144 7145 7146
		if (obj->gen_loader) {
			ext->is_set = true;
			ext->ksym.kernel_btf_obj_fd = 0;
			ext->ksym.kernel_btf_id = 0;
			continue;
		}
7147 7148 7149 7150 7151
		t = btf__type_by_id(obj->btf, ext->btf_id);
		if (btf_is_var(t))
			err = bpf_object__resolve_ksym_var_btf_id(obj, ext);
		else
			err = bpf_object__resolve_ksym_func_btf_id(obj, ext);
7152 7153
		if (err)
			return err;
H
Hao Luo 已提交
7154 7155 7156 7157
	}
	return 0;
}

7158
static int bpf_object__resolve_externs(struct bpf_object *obj,
7159
				       const char *extra_kconfig)
7160
{
7161
	bool need_config = false, need_kallsyms = false;
H
Hao Luo 已提交
7162
	bool need_vmlinux_btf = false;
7163
	struct extern_desc *ext;
7164
	void *kcfg_data = NULL;
7165 7166 7167 7168 7169
	int err, i;

	if (obj->nr_extern == 0)
		return 0;

7170 7171
	if (obj->kconfig_map_idx >= 0)
		kcfg_data = obj->maps[obj->kconfig_map_idx].mmaped;
7172 7173 7174 7175

	for (i = 0; i < obj->nr_extern; i++) {
		ext = &obj->externs[i];

7176 7177 7178
		if (ext->type == EXT_KCFG &&
		    strcmp(ext->name, "LINUX_KERNEL_VERSION") == 0) {
			void *ext_val = kcfg_data + ext->kcfg.data_off;
7179 7180 7181 7182 7183 7184
			__u32 kver = get_kernel_version();

			if (!kver) {
				pr_warn("failed to get kernel version\n");
				return -EINVAL;
			}
7185
			err = set_kcfg_value_num(ext, ext_val, kver);
7186 7187
			if (err)
				return err;
7188
			pr_debug("extern (kcfg) %s=0x%x\n", ext->name, kver);
7189
		} else if (ext->type == EXT_KCFG && str_has_pfx(ext->name, "CONFIG_")) {
7190
			need_config = true;
7191
		} else if (ext->type == EXT_KSYM) {
H
Hao Luo 已提交
7192 7193 7194 7195
			if (ext->ksym.type_id)
				need_vmlinux_btf = true;
			else
				need_kallsyms = true;
7196 7197 7198 7199 7200
		} else {
			pr_warn("unrecognized extern '%s'\n", ext->name);
			return -EINVAL;
		}
	}
7201
	if (need_config && extra_kconfig) {
7202
		err = bpf_object__read_kconfig_mem(obj, extra_kconfig, kcfg_data);
7203 7204 7205 7206 7207
		if (err)
			return -EINVAL;
		need_config = false;
		for (i = 0; i < obj->nr_extern; i++) {
			ext = &obj->externs[i];
7208
			if (ext->type == EXT_KCFG && !ext->is_set) {
7209 7210 7211 7212 7213
				need_config = true;
				break;
			}
		}
	}
7214
	if (need_config) {
7215
		err = bpf_object__read_kconfig_file(obj, kcfg_data);
7216 7217 7218
		if (err)
			return -EINVAL;
	}
7219 7220 7221 7222 7223
	if (need_kallsyms) {
		err = bpf_object__read_kallsyms_file(obj);
		if (err)
			return -EINVAL;
	}
H
Hao Luo 已提交
7224 7225 7226 7227 7228
	if (need_vmlinux_btf) {
		err = bpf_object__resolve_ksyms_btf_id(obj);
		if (err)
			return -EINVAL;
	}
7229 7230 7231 7232 7233 7234 7235 7236 7237 7238 7239 7240 7241 7242 7243
	for (i = 0; i < obj->nr_extern; i++) {
		ext = &obj->externs[i];

		if (!ext->is_set && !ext->is_weak) {
			pr_warn("extern %s (strong) not resolved\n", ext->name);
			return -ESRCH;
		} else if (!ext->is_set) {
			pr_debug("extern %s (weak) not resolved, defaulting to zero\n",
				 ext->name);
		}
	}

	return 0;
}

7244
int bpf_object__load_xattr(struct bpf_object_load_attr *attr)
7245
{
7246
	struct bpf_object *obj;
7247
	int err, i;
7248

7249
	if (!attr)
7250
		return libbpf_err(-EINVAL);
7251
	obj = attr->obj;
7252
	if (!obj)
7253
		return libbpf_err(-EINVAL);
7254 7255

	if (obj->loaded) {
7256
		pr_warn("object '%s': load can't be attempted twice\n", obj->name);
7257
		return libbpf_err(-EINVAL);
7258 7259
	}

7260 7261 7262
	if (obj->gen_loader)
		bpf_gen__init(obj->gen_loader, attr->log_level);

7263
	err = bpf_object__probe_loading(obj);
7264
	err = err ? : bpf_object__load_vmlinux_btf(obj, false);
7265
	err = err ? : bpf_object__resolve_externs(obj, obj->kconfig);
7266 7267
	err = err ? : bpf_object__sanitize_and_load_btf(obj);
	err = err ? : bpf_object__sanitize_maps(obj);
7268
	err = err ? : bpf_object__init_kern_struct_ops_maps(obj);
7269
	err = err ? : bpf_object__create_maps(obj);
7270
	err = err ? : bpf_object__relocate(obj, obj->btf_custom_path ? : attr->target_btf_path);
7271
	err = err ? : bpf_object__load_progs(obj, attr->log_level);
7272

7273 7274
	if (obj->gen_loader) {
		/* reset FDs */
7275 7276
		if (obj->btf)
			btf__set_fd(obj->btf, -1);
7277 7278 7279 7280 7281 7282
		for (i = 0; i < obj->nr_maps; i++)
			obj->maps[i].fd = -1;
		if (!err)
			err = bpf_gen__finish(obj->gen_loader);
	}

7283 7284 7285
	/* clean up fd_array */
	zfree(&obj->fd_array);

7286 7287
	/* clean up module BTFs */
	for (i = 0; i < obj->btf_module_cnt; i++) {
7288
		close(obj->btf_modules[i].fd);
7289 7290 7291 7292 7293 7294
		btf__free(obj->btf_modules[i].btf);
		free(obj->btf_modules[i].name);
	}
	free(obj->btf_modules);

	/* clean up vmlinux BTF */
7295 7296 7297
	btf__free(obj->btf_vmlinux);
	obj->btf_vmlinux = NULL;

7298 7299
	obj->loaded = true; /* doesn't matter if successfully or not */

7300 7301
	if (err)
		goto out;
7302 7303 7304

	return 0;
out:
7305 7306 7307 7308 7309
	/* unpin any maps that were auto-pinned during load */
	for (i = 0; i < obj->nr_maps; i++)
		if (obj->maps[i].pinned && !obj->maps[i].reused)
			bpf_map__unpin(&obj->maps[i], NULL);

7310
	bpf_object_unload(obj);
7311
	pr_warn("failed to load object '%s'\n", obj->path);
7312
	return libbpf_err(err);
7313 7314
}

7315 7316 7317 7318 7319 7320 7321 7322 7323
int bpf_object__load(struct bpf_object *obj)
{
	struct bpf_object_load_attr attr = {
		.obj = obj,
	};

	return bpf_object__load_xattr(&attr);
}

7324 7325 7326 7327 7328 7329 7330 7331 7332 7333 7334 7335 7336 7337 7338 7339 7340 7341 7342 7343 7344 7345
static int make_parent_dir(const char *path)
{
	char *cp, errmsg[STRERR_BUFSIZE];
	char *dname, *dir;
	int err = 0;

	dname = strdup(path);
	if (dname == NULL)
		return -ENOMEM;

	dir = dirname(dname);
	if (mkdir(dir, 0700) && errno != EEXIST)
		err = -errno;

	free(dname);
	if (err) {
		cp = libbpf_strerror_r(-err, errmsg, sizeof(errmsg));
		pr_warn("failed to mkdir %s: %s\n", path, cp);
	}
	return err;
}

7346 7347
static int check_path(const char *path)
{
7348
	char *cp, errmsg[STRERR_BUFSIZE];
7349 7350 7351 7352 7353 7354 7355 7356 7357 7358 7359 7360 7361
	struct statfs st_fs;
	char *dname, *dir;
	int err = 0;

	if (path == NULL)
		return -EINVAL;

	dname = strdup(path);
	if (dname == NULL)
		return -ENOMEM;

	dir = dirname(dname);
	if (statfs(dir, &st_fs)) {
7362
		cp = libbpf_strerror_r(errno, errmsg, sizeof(errmsg));
7363
		pr_warn("failed to statfs %s: %s\n", dir, cp);
7364 7365 7366 7367 7368
		err = -errno;
	}
	free(dname);

	if (!err && st_fs.f_type != BPF_FS_MAGIC) {
7369
		pr_warn("specified path %s is not on BPF FS\n", path);
7370 7371 7372 7373 7374 7375
		err = -EINVAL;
	}

	return err;
}

7376
static int bpf_program_pin_instance(struct bpf_program *prog, const char *path, int instance)
7377
{
7378
	char *cp, errmsg[STRERR_BUFSIZE];
7379 7380
	int err;

7381 7382
	err = make_parent_dir(path);
	if (err)
7383
		return libbpf_err(err);
7384

7385 7386
	err = check_path(path);
	if (err)
7387
		return libbpf_err(err);
7388 7389

	if (prog == NULL) {
7390
		pr_warn("invalid program pointer\n");
7391
		return libbpf_err(-EINVAL);
7392 7393 7394
	}

	if (instance < 0 || instance >= prog->instances.nr) {
7395
		pr_warn("invalid prog instance %d of prog %s (max %d)\n",
7396
			instance, prog->name, prog->instances.nr);
7397
		return libbpf_err(-EINVAL);
7398 7399 7400
	}

	if (bpf_obj_pin(prog->instances.fds[instance], path)) {
7401 7402
		err = -errno;
		cp = libbpf_strerror_r(err, errmsg, sizeof(errmsg));
7403
		pr_warn("failed to pin program: %s\n", cp);
7404
		return libbpf_err(err);
7405 7406 7407 7408 7409 7410
	}
	pr_debug("pinned program '%s'\n", path);

	return 0;
}

7411
static int bpf_program_unpin_instance(struct bpf_program *prog, const char *path, int instance)
7412 7413 7414 7415 7416
{
	int err;

	err = check_path(path);
	if (err)
7417
		return libbpf_err(err);
7418 7419

	if (prog == NULL) {
7420
		pr_warn("invalid program pointer\n");
7421
		return libbpf_err(-EINVAL);
7422 7423 7424
	}

	if (instance < 0 || instance >= prog->instances.nr) {
7425
		pr_warn("invalid prog instance %d of prog %s (max %d)\n",
7426
			instance, prog->name, prog->instances.nr);
7427
		return libbpf_err(-EINVAL);
7428 7429 7430 7431
	}

	err = unlink(path);
	if (err != 0)
7432 7433
		return libbpf_err(-errno);

7434 7435 7436 7437 7438
	pr_debug("unpinned program '%s'\n", path);

	return 0;
}

7439 7440 7441 7442 7443 7444
__attribute__((alias("bpf_program_pin_instance")))
int bpf_object__pin_instance(struct bpf_program *prog, const char *path, int instance);

__attribute__((alias("bpf_program_unpin_instance")))
int bpf_program__unpin_instance(struct bpf_program *prog, const char *path, int instance);

7445 7446 7447 7448
int bpf_program__pin(struct bpf_program *prog, const char *path)
{
	int i, err;

7449 7450
	err = make_parent_dir(path);
	if (err)
7451
		return libbpf_err(err);
7452

7453 7454
	err = check_path(path);
	if (err)
7455
		return libbpf_err(err);
7456 7457

	if (prog == NULL) {
7458
		pr_warn("invalid program pointer\n");
7459
		return libbpf_err(-EINVAL);
7460 7461 7462
	}

	if (prog->instances.nr <= 0) {
7463
		pr_warn("no instances of prog %s to pin\n", prog->name);
7464
		return libbpf_err(-EINVAL);
7465 7466
	}

7467 7468
	if (prog->instances.nr == 1) {
		/* don't create subdirs when pinning single instance */
7469
		return bpf_program_pin_instance(prog, path, 0);
7470 7471
	}

7472 7473 7474 7475 7476 7477 7478 7479 7480 7481 7482 7483 7484
	for (i = 0; i < prog->instances.nr; i++) {
		char buf[PATH_MAX];
		int len;

		len = snprintf(buf, PATH_MAX, "%s/%d", path, i);
		if (len < 0) {
			err = -EINVAL;
			goto err_unpin;
		} else if (len >= PATH_MAX) {
			err = -ENAMETOOLONG;
			goto err_unpin;
		}

7485
		err = bpf_program_pin_instance(prog, buf, i);
7486 7487 7488 7489 7490 7491 7492 7493 7494 7495 7496 7497 7498 7499 7500 7501 7502
		if (err)
			goto err_unpin;
	}

	return 0;

err_unpin:
	for (i = i - 1; i >= 0; i--) {
		char buf[PATH_MAX];
		int len;

		len = snprintf(buf, PATH_MAX, "%s/%d", path, i);
		if (len < 0)
			continue;
		else if (len >= PATH_MAX)
			continue;

7503
		bpf_program_unpin_instance(prog, buf, i);
7504 7505 7506 7507
	}

	rmdir(path);

7508
	return libbpf_err(err);
7509 7510 7511 7512 7513 7514 7515 7516
}

int bpf_program__unpin(struct bpf_program *prog, const char *path)
{
	int i, err;

	err = check_path(path);
	if (err)
7517
		return libbpf_err(err);
7518 7519

	if (prog == NULL) {
7520
		pr_warn("invalid program pointer\n");
7521
		return libbpf_err(-EINVAL);
7522 7523 7524
	}

	if (prog->instances.nr <= 0) {
7525
		pr_warn("no instances of prog %s to pin\n", prog->name);
7526
		return libbpf_err(-EINVAL);
7527 7528 7529 7530
	}

	if (prog->instances.nr == 1) {
		/* don't create subdirs when pinning single instance */
7531
		return bpf_program_unpin_instance(prog, path, 0);
7532 7533
	}

7534 7535 7536 7537 7538 7539
	for (i = 0; i < prog->instances.nr; i++) {
		char buf[PATH_MAX];
		int len;

		len = snprintf(buf, PATH_MAX, "%s/%d", path, i);
		if (len < 0)
7540
			return libbpf_err(-EINVAL);
7541
		else if (len >= PATH_MAX)
7542
			return libbpf_err(-ENAMETOOLONG);
7543

7544
		err = bpf_program_unpin_instance(prog, buf, i);
7545 7546 7547 7548
		if (err)
			return err;
	}

7549 7550
	err = rmdir(path);
	if (err)
7551
		return libbpf_err(-errno);
7552

7553 7554 7555
	return 0;
}

J
Joe Stringer 已提交
7556 7557
int bpf_map__pin(struct bpf_map *map, const char *path)
{
7558
	char *cp, errmsg[STRERR_BUFSIZE];
J
Joe Stringer 已提交
7559 7560 7561
	int err;

	if (map == NULL) {
7562
		pr_warn("invalid map pointer\n");
7563
		return libbpf_err(-EINVAL);
J
Joe Stringer 已提交
7564 7565
	}

7566 7567 7568 7569
	if (map->pin_path) {
		if (path && strcmp(path, map->pin_path)) {
			pr_warn("map '%s' already has pin path '%s' different from '%s'\n",
				bpf_map__name(map), map->pin_path, path);
7570
			return libbpf_err(-EINVAL);
7571 7572 7573 7574 7575 7576 7577 7578 7579
		} else if (map->pinned) {
			pr_debug("map '%s' already pinned at '%s'; not re-pinning\n",
				 bpf_map__name(map), map->pin_path);
			return 0;
		}
	} else {
		if (!path) {
			pr_warn("missing a path to pin map '%s' at\n",
				bpf_map__name(map));
7580
			return libbpf_err(-EINVAL);
7581 7582
		} else if (map->pinned) {
			pr_warn("map '%s' already pinned\n", bpf_map__name(map));
7583
			return libbpf_err(-EEXIST);
7584 7585 7586 7587 7588 7589 7590
		}

		map->pin_path = strdup(path);
		if (!map->pin_path) {
			err = -errno;
			goto out_err;
		}
J
Joe Stringer 已提交
7591 7592
	}

7593 7594
	err = make_parent_dir(map->pin_path);
	if (err)
7595
		return libbpf_err(err);
7596

7597 7598
	err = check_path(map->pin_path);
	if (err)
7599
		return libbpf_err(err);
7600 7601 7602 7603 7604 7605 7606 7607

	if (bpf_obj_pin(map->fd, map->pin_path)) {
		err = -errno;
		goto out_err;
	}

	map->pinned = true;
	pr_debug("pinned map '%s'\n", map->pin_path);
7608

J
Joe Stringer 已提交
7609
	return 0;
7610 7611 7612 7613

out_err:
	cp = libbpf_strerror_r(-err, errmsg, sizeof(errmsg));
	pr_warn("failed to pin map: %s\n", cp);
7614
	return libbpf_err(err);
J
Joe Stringer 已提交
7615 7616
}

7617 7618 7619 7620 7621
int bpf_map__unpin(struct bpf_map *map, const char *path)
{
	int err;

	if (map == NULL) {
7622
		pr_warn("invalid map pointer\n");
7623
		return libbpf_err(-EINVAL);
7624 7625
	}

7626 7627 7628 7629
	if (map->pin_path) {
		if (path && strcmp(path, map->pin_path)) {
			pr_warn("map '%s' already has pin path '%s' different from '%s'\n",
				bpf_map__name(map), map->pin_path, path);
7630
			return libbpf_err(-EINVAL);
7631 7632 7633 7634 7635
		}
		path = map->pin_path;
	} else if (!path) {
		pr_warn("no path to unpin map '%s' from\n",
			bpf_map__name(map));
7636
		return libbpf_err(-EINVAL);
7637 7638 7639 7640
	}

	err = check_path(path);
	if (err)
7641
		return libbpf_err(err);
7642

7643 7644
	err = unlink(path);
	if (err != 0)
7645
		return libbpf_err(-errno);
7646 7647 7648

	map->pinned = false;
	pr_debug("unpinned map '%s' from '%s'\n", bpf_map__name(map), path);
7649 7650 7651 7652

	return 0;
}

7653 7654 7655 7656 7657 7658 7659
int bpf_map__set_pin_path(struct bpf_map *map, const char *path)
{
	char *new = NULL;

	if (path) {
		new = strdup(path);
		if (!new)
7660
			return libbpf_err(-errno);
7661 7662 7663 7664 7665 7666 7667 7668 7669 7670 7671 7672
	}

	free(map->pin_path);
	map->pin_path = new;
	return 0;
}

const char *bpf_map__get_pin_path(const struct bpf_map *map)
{
	return map->pin_path;
}

7673 7674 7675 7676 7677
const char *bpf_map__pin_path(const struct bpf_map *map)
{
	return map->pin_path;
}

7678 7679 7680 7681 7682
bool bpf_map__is_pinned(const struct bpf_map *map)
{
	return map->pinned;
}

7683 7684 7685 7686 7687 7688 7689 7690 7691 7692
static void sanitize_pin_path(char *s)
{
	/* bpffs disallows periods in path names */
	while (*s) {
		if (*s == '.')
			*s = '_';
		s++;
	}
}

7693
int bpf_object__pin_maps(struct bpf_object *obj, const char *path)
7694 7695 7696 7697 7698
{
	struct bpf_map *map;
	int err;

	if (!obj)
7699
		return libbpf_err(-ENOENT);
7700 7701

	if (!obj->loaded) {
7702
		pr_warn("object not yet loaded; load it first\n");
7703
		return libbpf_err(-ENOENT);
7704 7705
	}

7706
	bpf_object__for_each_map(map, obj) {
7707
		char *pin_path = NULL;
7708 7709
		char buf[PATH_MAX];

7710 7711 7712 7713 7714 7715 7716 7717 7718 7719 7720 7721
		if (path) {
			int len;

			len = snprintf(buf, PATH_MAX, "%s/%s", path,
				       bpf_map__name(map));
			if (len < 0) {
				err = -EINVAL;
				goto err_unpin_maps;
			} else if (len >= PATH_MAX) {
				err = -ENAMETOOLONG;
				goto err_unpin_maps;
			}
7722
			sanitize_pin_path(buf);
7723 7724 7725
			pin_path = buf;
		} else if (!map->pin_path) {
			continue;
7726 7727
		}

7728
		err = bpf_map__pin(map, pin_path);
7729 7730 7731 7732 7733 7734 7735 7736
		if (err)
			goto err_unpin_maps;
	}

	return 0;

err_unpin_maps:
	while ((map = bpf_map__prev(map, obj))) {
7737
		if (!map->pin_path)
7738 7739
			continue;

7740
		bpf_map__unpin(map, NULL);
7741 7742
	}

7743
	return libbpf_err(err);
7744 7745 7746 7747 7748 7749 7750 7751
}

int bpf_object__unpin_maps(struct bpf_object *obj, const char *path)
{
	struct bpf_map *map;
	int err;

	if (!obj)
7752
		return libbpf_err(-ENOENT);
7753

7754
	bpf_object__for_each_map(map, obj) {
7755
		char *pin_path = NULL;
7756 7757
		char buf[PATH_MAX];

7758 7759 7760 7761 7762 7763
		if (path) {
			int len;

			len = snprintf(buf, PATH_MAX, "%s/%s", path,
				       bpf_map__name(map));
			if (len < 0)
7764
				return libbpf_err(-EINVAL);
7765
			else if (len >= PATH_MAX)
7766
				return libbpf_err(-ENAMETOOLONG);
7767
			sanitize_pin_path(buf);
7768 7769 7770 7771
			pin_path = buf;
		} else if (!map->pin_path) {
			continue;
		}
7772

7773
		err = bpf_map__unpin(map, pin_path);
7774
		if (err)
7775
			return libbpf_err(err);
7776 7777
	}

7778 7779 7780 7781 7782 7783 7784 7785 7786
	return 0;
}

int bpf_object__pin_programs(struct bpf_object *obj, const char *path)
{
	struct bpf_program *prog;
	int err;

	if (!obj)
7787
		return libbpf_err(-ENOENT);
7788 7789

	if (!obj->loaded) {
7790
		pr_warn("object not yet loaded; load it first\n");
7791
		return libbpf_err(-ENOENT);
7792 7793 7794 7795 7796 7797 7798
	}

	bpf_object__for_each_program(prog, obj) {
		char buf[PATH_MAX];
		int len;

		len = snprintf(buf, PATH_MAX, "%s/%s", path,
S
Stanislav Fomichev 已提交
7799
			       prog->pin_name);
7800 7801 7802 7803 7804 7805 7806 7807 7808 7809 7810 7811 7812 7813 7814 7815 7816 7817 7818 7819 7820
		if (len < 0) {
			err = -EINVAL;
			goto err_unpin_programs;
		} else if (len >= PATH_MAX) {
			err = -ENAMETOOLONG;
			goto err_unpin_programs;
		}

		err = bpf_program__pin(prog, buf);
		if (err)
			goto err_unpin_programs;
	}

	return 0;

err_unpin_programs:
	while ((prog = bpf_program__prev(prog, obj))) {
		char buf[PATH_MAX];
		int len;

		len = snprintf(buf, PATH_MAX, "%s/%s", path,
S
Stanislav Fomichev 已提交
7821
			       prog->pin_name);
7822 7823 7824 7825 7826 7827 7828 7829
		if (len < 0)
			continue;
		else if (len >= PATH_MAX)
			continue;

		bpf_program__unpin(prog, buf);
	}

7830
	return libbpf_err(err);
7831 7832 7833 7834 7835 7836 7837 7838
}

int bpf_object__unpin_programs(struct bpf_object *obj, const char *path)
{
	struct bpf_program *prog;
	int err;

	if (!obj)
7839
		return libbpf_err(-ENOENT);
7840

7841 7842 7843 7844 7845
	bpf_object__for_each_program(prog, obj) {
		char buf[PATH_MAX];
		int len;

		len = snprintf(buf, PATH_MAX, "%s/%s", path,
S
Stanislav Fomichev 已提交
7846
			       prog->pin_name);
7847
		if (len < 0)
7848
			return libbpf_err(-EINVAL);
7849
		else if (len >= PATH_MAX)
7850
			return libbpf_err(-ENAMETOOLONG);
7851

7852
		err = bpf_program__unpin(prog, buf);
7853
		if (err)
7854
			return libbpf_err(err);
7855 7856 7857 7858 7859
	}

	return 0;
}

7860 7861 7862 7863 7864 7865
int bpf_object__pin(struct bpf_object *obj, const char *path)
{
	int err;

	err = bpf_object__pin_maps(obj, path);
	if (err)
7866
		return libbpf_err(err);
7867 7868 7869 7870

	err = bpf_object__pin_programs(obj, path);
	if (err) {
		bpf_object__unpin_maps(obj, path);
7871
		return libbpf_err(err);
7872 7873 7874 7875 7876
	}

	return 0;
}

7877 7878 7879 7880 7881 7882 7883
static void bpf_map__destroy(struct bpf_map *map)
{
	if (map->clear_priv)
		map->clear_priv(map, map->priv);
	map->priv = NULL;
	map->clear_priv = NULL;

7884 7885 7886 7887 7888 7889 7890 7891
	if (map->inner_map) {
		bpf_map__destroy(map->inner_map);
		zfree(&map->inner_map);
	}

	zfree(&map->init_slots);
	map->init_slots_sz = 0;

7892 7893 7894 7895 7896 7897 7898 7899 7900 7901 7902 7903 7904
	if (map->mmaped) {
		munmap(map->mmaped, bpf_map_mmap_sz(map));
		map->mmaped = NULL;
	}

	if (map->st_ops) {
		zfree(&map->st_ops->data);
		zfree(&map->st_ops->progs);
		zfree(&map->st_ops->kern_func_off);
		zfree(&map->st_ops);
	}

	zfree(&map->name);
7905
	zfree(&map->real_name);
7906 7907 7908 7909 7910 7911
	zfree(&map->pin_path);

	if (map->fd >= 0)
		zclose(map->fd);
}

7912 7913
void bpf_object__close(struct bpf_object *obj)
{
7914 7915
	size_t i;

7916
	if (IS_ERR_OR_NULL(obj))
7917 7918
		return;

7919 7920 7921
	if (obj->clear_priv)
		obj->clear_priv(obj, obj->priv);

7922
	bpf_gen__free(obj->gen_loader);
7923
	bpf_object__elf_finish(obj);
7924
	bpf_object_unload(obj);
7925
	btf__free(obj->btf);
7926
	btf_ext__free(obj->btf_ext);
7927

7928 7929
	for (i = 0; i < obj->nr_maps; i++)
		bpf_map__destroy(&obj->maps[i]);
7930

7931
	zfree(&obj->btf_custom_path);
7932
	zfree(&obj->kconfig);
7933 7934 7935
	zfree(&obj->externs);
	obj->nr_extern = 0;

7936 7937
	zfree(&obj->maps);
	obj->nr_maps = 0;
7938 7939 7940 7941 7942 7943 7944

	if (obj->programs && obj->nr_programs) {
		for (i = 0; i < obj->nr_programs; i++)
			bpf_program__exit(&obj->programs[i]);
	}
	zfree(&obj->programs);

7945
	list_del(&obj->list);
7946 7947
	free(obj);
}
7948

7949 7950 7951 7952
struct bpf_object *
bpf_object__next(struct bpf_object *prev)
{
	struct bpf_object *next;
J
Joe Burton 已提交
7953 7954 7955 7956
	bool strict = (libbpf_mode & LIBBPF_STRICT_NO_OBJECT_LIST);

	if (strict)
		return NULL;
7957 7958 7959 7960 7961 7962 7963 7964 7965 7966 7967 7968 7969 7970 7971

	if (!prev)
		next = list_first_entry(&bpf_objects_list,
					struct bpf_object,
					list);
	else
		next = list_next_entry(prev, list);

	/* Empty list is noticed here so don't need checking on entry. */
	if (&next->list == &bpf_objects_list)
		return NULL;

	return next;
}

A
Andrii Nakryiko 已提交
7972
const char *bpf_object__name(const struct bpf_object *obj)
7973
{
7974
	return obj ? obj->name : libbpf_err_ptr(-EINVAL);
7975 7976
}

A
Andrii Nakryiko 已提交
7977
unsigned int bpf_object__kversion(const struct bpf_object *obj)
7978
{
7979
	return obj ? obj->kern_version : 0;
7980 7981
}

A
Andrii Nakryiko 已提交
7982
struct btf *bpf_object__btf(const struct bpf_object *obj)
7983 7984 7985 7986
{
	return obj ? obj->btf : NULL;
}

7987 7988 7989 7990 7991
int bpf_object__btf_fd(const struct bpf_object *obj)
{
	return obj->btf ? btf__fd(obj->btf) : -1;
}

7992 7993 7994
int bpf_object__set_kversion(struct bpf_object *obj, __u32 kern_version)
{
	if (obj->loaded)
7995
		return libbpf_err(-EINVAL);
7996 7997 7998 7999 8000 8001

	obj->kern_version = kern_version;

	return 0;
}

8002 8003 8004 8005 8006 8007 8008 8009 8010 8011 8012
int bpf_object__set_priv(struct bpf_object *obj, void *priv,
			 bpf_object_clear_priv_t clear_priv)
{
	if (obj->priv && obj->clear_priv)
		obj->clear_priv(obj, obj->priv);

	obj->priv = priv;
	obj->clear_priv = clear_priv;
	return 0;
}

A
Andrii Nakryiko 已提交
8013
void *bpf_object__priv(const struct bpf_object *obj)
8014
{
8015
	return obj ? obj->priv : libbpf_err_ptr(-EINVAL);
8016 8017
}

8018 8019 8020 8021 8022 8023 8024 8025 8026 8027 8028 8029 8030 8031 8032 8033
int bpf_object__gen_loader(struct bpf_object *obj, struct gen_loader_opts *opts)
{
	struct bpf_gen *gen;

	if (!opts)
		return -EFAULT;
	if (!OPTS_VALID(opts, gen_loader_opts))
		return -EINVAL;
	gen = calloc(sizeof(*gen), 1);
	if (!gen)
		return -ENOMEM;
	gen->opts = opts;
	obj->gen_loader = gen;
	return 0;
}

8034
static struct bpf_program *
A
Andrii Nakryiko 已提交
8035 8036
__bpf_program__iter(const struct bpf_program *p, const struct bpf_object *obj,
		    bool forward)
8037
{
8038
	size_t nr_programs = obj->nr_programs;
8039
	ssize_t idx;
8040

8041
	if (!nr_programs)
8042 8043
		return NULL;

8044 8045 8046 8047 8048
	if (!p)
		/* Iter from the beginning */
		return forward ? &obj->programs[0] :
			&obj->programs[nr_programs - 1];

8049
	if (p->obj != obj) {
8050
		pr_warn("error: program handler doesn't match object\n");
8051
		return errno = EINVAL, NULL;
8052 8053
	}

8054
	idx = (p - obj->programs) + (forward ? 1 : -1);
8055
	if (idx >= obj->nr_programs || idx < 0)
8056 8057 8058 8059
		return NULL;
	return &obj->programs[idx];
}

8060
struct bpf_program *
A
Andrii Nakryiko 已提交
8061
bpf_program__next(struct bpf_program *prev, const struct bpf_object *obj)
8062 8063 8064 8065 8066 8067
{
	return bpf_object__next_program(obj, prev);
}

struct bpf_program *
bpf_object__next_program(const struct bpf_object *obj, struct bpf_program *prev)
8068 8069 8070 8071
{
	struct bpf_program *prog = prev;

	do {
8072
		prog = __bpf_program__iter(prog, obj, true);
8073
	} while (prog && prog_is_subprog(obj, prog));
8074 8075 8076 8077 8078

	return prog;
}

struct bpf_program *
A
Andrii Nakryiko 已提交
8079
bpf_program__prev(struct bpf_program *next, const struct bpf_object *obj)
8080 8081 8082 8083 8084 8085
{
	return bpf_object__prev_program(obj, next);
}

struct bpf_program *
bpf_object__prev_program(const struct bpf_object *obj, struct bpf_program *next)
8086 8087 8088 8089
{
	struct bpf_program *prog = next;

	do {
8090
		prog = __bpf_program__iter(prog, obj, false);
8091
	} while (prog && prog_is_subprog(obj, prog));
8092 8093 8094 8095

	return prog;
}

8096 8097
int bpf_program__set_priv(struct bpf_program *prog, void *priv,
			  bpf_program_clear_priv_t clear_priv)
8098 8099 8100 8101 8102 8103 8104 8105 8106
{
	if (prog->priv && prog->clear_priv)
		prog->clear_priv(prog, prog->priv);

	prog->priv = priv;
	prog->clear_priv = clear_priv;
	return 0;
}

A
Andrii Nakryiko 已提交
8107
void *bpf_program__priv(const struct bpf_program *prog)
8108
{
8109
	return prog ? prog->priv : libbpf_err_ptr(-EINVAL);
8110 8111
}

8112 8113 8114 8115 8116
void bpf_program__set_ifindex(struct bpf_program *prog, __u32 ifindex)
{
	prog->prog_ifindex = ifindex;
}

8117 8118 8119 8120 8121
const char *bpf_program__name(const struct bpf_program *prog)
{
	return prog->name;
}

8122 8123 8124 8125 8126
const char *bpf_program__section_name(const struct bpf_program *prog)
{
	return prog->sec_name;
}

A
Andrii Nakryiko 已提交
8127
const char *bpf_program__title(const struct bpf_program *prog, bool needs_copy)
8128 8129 8130
{
	const char *title;

8131
	title = prog->sec_name;
8132
	if (needs_copy) {
8133 8134
		title = strdup(title);
		if (!title) {
8135
			pr_warn("failed to strdup program title\n");
8136
			return libbpf_err_ptr(-ENOMEM);
8137 8138 8139 8140 8141 8142
		}
	}

	return title;
}

8143 8144 8145 8146 8147 8148 8149 8150
bool bpf_program__autoload(const struct bpf_program *prog)
{
	return prog->load;
}

int bpf_program__set_autoload(struct bpf_program *prog, bool autoload)
{
	if (prog->obj->loaded)
8151
		return libbpf_err(-EINVAL);
8152 8153 8154 8155 8156

	prog->load = autoload;
	return 0;
}

A
Andrii Nakryiko 已提交
8157
int bpf_program__fd(const struct bpf_program *prog)
8158
{
8159 8160 8161
	return bpf_program__nth_fd(prog, 0);
}

8162 8163
size_t bpf_program__size(const struct bpf_program *prog)
{
8164
	return prog->insns_cnt * BPF_INSN_SZ;
8165 8166
}

8167 8168 8169 8170 8171 8172 8173 8174 8175 8176
const struct bpf_insn *bpf_program__insns(const struct bpf_program *prog)
{
	return prog->insns;
}

size_t bpf_program__insn_cnt(const struct bpf_program *prog)
{
	return prog->insns_cnt;
}

8177 8178 8179 8180 8181 8182
int bpf_program__set_prep(struct bpf_program *prog, int nr_instances,
			  bpf_program_prep_t prep)
{
	int *instances_fds;

	if (nr_instances <= 0 || !prep)
8183
		return libbpf_err(-EINVAL);
8184 8185

	if (prog->instances.nr > 0 || prog->instances.fds) {
8186
		pr_warn("Can't set pre-processor after loading\n");
8187
		return libbpf_err(-EINVAL);
8188 8189 8190 8191
	}

	instances_fds = malloc(sizeof(int) * nr_instances);
	if (!instances_fds) {
8192
		pr_warn("alloc memory failed for fds\n");
8193
		return libbpf_err(-ENOMEM);
8194 8195 8196 8197 8198 8199 8200 8201 8202 8203 8204
	}

	/* fill all fd with -1 */
	memset(instances_fds, -1, sizeof(int) * nr_instances);

	prog->instances.nr = nr_instances;
	prog->instances.fds = instances_fds;
	prog->preprocessor = prep;
	return 0;
}

A
Andrii Nakryiko 已提交
8205
int bpf_program__nth_fd(const struct bpf_program *prog, int n)
8206 8207 8208
{
	int fd;

8209
	if (!prog)
8210
		return libbpf_err(-EINVAL);
8211

8212
	if (n >= prog->instances.nr || n < 0) {
8213
		pr_warn("Can't get the %dth fd from program %s: only %d instances\n",
8214
			n, prog->name, prog->instances.nr);
8215
		return libbpf_err(-EINVAL);
8216 8217 8218 8219
	}

	fd = prog->instances.fds[n];
	if (fd < 0) {
8220
		pr_warn("%dth instance of program '%s' is invalid\n",
8221
			n, prog->name);
8222
		return libbpf_err(-ENOENT);
8223 8224 8225
	}

	return fd;
8226
}
8227

8228
enum bpf_prog_type bpf_program__get_type(const struct bpf_program *prog)
8229 8230 8231 8232
{
	return prog->type;
}

8233
void bpf_program__set_type(struct bpf_program *prog, enum bpf_prog_type type)
8234 8235 8236 8237
{
	prog->type = type;
}

A
Andrii Nakryiko 已提交
8238
static bool bpf_program__is_type(const struct bpf_program *prog,
8239 8240 8241 8242 8243
				 enum bpf_prog_type type)
{
	return prog ? (prog->type == type) : false;
}

A
Andrii Nakryiko 已提交
8244 8245 8246 8247
#define BPF_PROG_TYPE_FNS(NAME, TYPE)				\
int bpf_program__set_##NAME(struct bpf_program *prog)		\
{								\
	if (!prog)						\
8248
		return libbpf_err(-EINVAL);			\
A
Andrii Nakryiko 已提交
8249 8250 8251 8252 8253 8254 8255 8256
	bpf_program__set_type(prog, TYPE);			\
	return 0;						\
}								\
								\
bool bpf_program__is_##NAME(const struct bpf_program *prog)	\
{								\
	return bpf_program__is_type(prog, TYPE);		\
}								\
8257

8258
BPF_PROG_TYPE_FNS(socket_filter, BPF_PROG_TYPE_SOCKET_FILTER);
8259
BPF_PROG_TYPE_FNS(lsm, BPF_PROG_TYPE_LSM);
8260
BPF_PROG_TYPE_FNS(kprobe, BPF_PROG_TYPE_KPROBE);
8261 8262
BPF_PROG_TYPE_FNS(sched_cls, BPF_PROG_TYPE_SCHED_CLS);
BPF_PROG_TYPE_FNS(sched_act, BPF_PROG_TYPE_SCHED_ACT);
8263
BPF_PROG_TYPE_FNS(tracepoint, BPF_PROG_TYPE_TRACEPOINT);
8264
BPF_PROG_TYPE_FNS(raw_tracepoint, BPF_PROG_TYPE_RAW_TRACEPOINT);
8265 8266
BPF_PROG_TYPE_FNS(xdp, BPF_PROG_TYPE_XDP);
BPF_PROG_TYPE_FNS(perf_event, BPF_PROG_TYPE_PERF_EVENT);
8267
BPF_PROG_TYPE_FNS(tracing, BPF_PROG_TYPE_TRACING);
8268
BPF_PROG_TYPE_FNS(struct_ops, BPF_PROG_TYPE_STRUCT_OPS);
8269
BPF_PROG_TYPE_FNS(extension, BPF_PROG_TYPE_EXT);
8270
BPF_PROG_TYPE_FNS(sk_lookup, BPF_PROG_TYPE_SK_LOOKUP);
8271

8272
enum bpf_attach_type
8273
bpf_program__get_expected_attach_type(const struct bpf_program *prog)
8274 8275 8276 8277
{
	return prog->expected_attach_type;
}

J
John Fastabend 已提交
8278 8279
void bpf_program__set_expected_attach_type(struct bpf_program *prog,
					   enum bpf_attach_type type)
8280 8281 8282 8283
{
	prog->expected_attach_type = type;
}

8284
#define SEC_DEF(sec_pfx, ptype, atype, flags, ...) {			    \
8285 8286
	.sec = sec_pfx,							    \
	.prog_type = BPF_PROG_TYPE_##ptype,				    \
8287 8288
	.expected_attach_type = atype,					    \
	.cookie = (long)(flags),					    \
8289
	.preload_fn = libbpf_preload_prog,				    \
8290 8291 8292
	__VA_ARGS__							    \
}

8293 8294 8295 8296 8297 8298
static struct bpf_link *attach_kprobe(const struct bpf_program *prog, long cookie);
static struct bpf_link *attach_tp(const struct bpf_program *prog, long cookie);
static struct bpf_link *attach_raw_tp(const struct bpf_program *prog, long cookie);
static struct bpf_link *attach_trace(const struct bpf_program *prog, long cookie);
static struct bpf_link *attach_lsm(const struct bpf_program *prog, long cookie);
static struct bpf_link *attach_iter(const struct bpf_program *prog, long cookie);
8299 8300

static const struct bpf_sec_def section_defs[] = {
8301 8302 8303
	SEC_DEF("socket",		SOCKET_FILTER, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("sk_reuseport/migrate",	SK_REUSEPORT, BPF_SK_REUSEPORT_SELECT_OR_MIGRATE, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("sk_reuseport",		SK_REUSEPORT, BPF_SK_REUSEPORT_SELECT, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
8304 8305 8306 8307 8308
	SEC_DEF("kprobe/",		KPROBE,	0, SEC_NONE, attach_kprobe),
	SEC_DEF("uprobe/",		KPROBE,	0, SEC_NONE),
	SEC_DEF("kretprobe/",		KPROBE, 0, SEC_NONE, attach_kprobe),
	SEC_DEF("uretprobe/",		KPROBE, 0, SEC_NONE),
	SEC_DEF("tc",			SCHED_CLS, 0, SEC_NONE),
8309 8310
	SEC_DEF("classifier",		SCHED_CLS, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("action",		SCHED_ACT, 0, SEC_NONE | SEC_SLOPPY_PFX),
8311 8312 8313 8314
	SEC_DEF("tracepoint/",		TRACEPOINT, 0, SEC_NONE, attach_tp),
	SEC_DEF("tp/",			TRACEPOINT, 0, SEC_NONE, attach_tp),
	SEC_DEF("raw_tracepoint/",	RAW_TRACEPOINT, 0, SEC_NONE, attach_raw_tp),
	SEC_DEF("raw_tp/",		RAW_TRACEPOINT, 0, SEC_NONE, attach_raw_tp),
8315 8316
	SEC_DEF("raw_tracepoint.w/",	RAW_TRACEPOINT_WRITABLE, 0, SEC_NONE, attach_raw_tp),
	SEC_DEF("raw_tp.w/",		RAW_TRACEPOINT_WRITABLE, 0, SEC_NONE, attach_raw_tp),
8317 8318 8319 8320 8321 8322 8323 8324 8325 8326 8327 8328
	SEC_DEF("tp_btf/",		TRACING, BPF_TRACE_RAW_TP, SEC_ATTACH_BTF, attach_trace),
	SEC_DEF("fentry/",		TRACING, BPF_TRACE_FENTRY, SEC_ATTACH_BTF, attach_trace),
	SEC_DEF("fmod_ret/",		TRACING, BPF_MODIFY_RETURN, SEC_ATTACH_BTF, attach_trace),
	SEC_DEF("fexit/",		TRACING, BPF_TRACE_FEXIT, SEC_ATTACH_BTF, attach_trace),
	SEC_DEF("fentry.s/",		TRACING, BPF_TRACE_FENTRY, SEC_ATTACH_BTF | SEC_SLEEPABLE, attach_trace),
	SEC_DEF("fmod_ret.s/",		TRACING, BPF_MODIFY_RETURN, SEC_ATTACH_BTF | SEC_SLEEPABLE, attach_trace),
	SEC_DEF("fexit.s/",		TRACING, BPF_TRACE_FEXIT, SEC_ATTACH_BTF | SEC_SLEEPABLE, attach_trace),
	SEC_DEF("freplace/",		EXT, 0, SEC_ATTACH_BTF, attach_trace),
	SEC_DEF("lsm/",			LSM, BPF_LSM_MAC, SEC_ATTACH_BTF, attach_lsm),
	SEC_DEF("lsm.s/",		LSM, BPF_LSM_MAC, SEC_ATTACH_BTF | SEC_SLEEPABLE, attach_lsm),
	SEC_DEF("iter/",		TRACING, BPF_TRACE_ITER, SEC_ATTACH_BTF, attach_iter),
	SEC_DEF("syscall",		SYSCALL, 0, SEC_SLEEPABLE),
8329 8330
	SEC_DEF("xdp_devmap/",		XDP, BPF_XDP_DEVMAP, SEC_ATTACHABLE),
	SEC_DEF("xdp_cpumap/",		XDP, BPF_XDP_CPUMAP, SEC_ATTACHABLE),
8331 8332 8333 8334 8335 8336 8337 8338 8339 8340 8341 8342 8343 8344 8345 8346 8347 8348 8349 8350 8351 8352 8353 8354 8355 8356 8357 8358 8359 8360 8361 8362 8363 8364 8365 8366 8367 8368
	SEC_DEF("xdp",			XDP, BPF_XDP, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("perf_event",		PERF_EVENT, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("lwt_in",		LWT_IN, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("lwt_out",		LWT_OUT, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("lwt_xmit",		LWT_XMIT, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("lwt_seg6local",	LWT_SEG6LOCAL, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup_skb/ingress",	CGROUP_SKB, BPF_CGROUP_INET_INGRESS, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup_skb/egress",	CGROUP_SKB, BPF_CGROUP_INET_EGRESS, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/skb",		CGROUP_SKB, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/sock_create",	CGROUP_SOCK, BPF_CGROUP_INET_SOCK_CREATE, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/sock_release",	CGROUP_SOCK, BPF_CGROUP_INET_SOCK_RELEASE, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/sock",		CGROUP_SOCK, BPF_CGROUP_INET_SOCK_CREATE, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/post_bind4",	CGROUP_SOCK, BPF_CGROUP_INET4_POST_BIND, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/post_bind6",	CGROUP_SOCK, BPF_CGROUP_INET6_POST_BIND, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/dev",		CGROUP_DEVICE, BPF_CGROUP_DEVICE, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("sockops",		SOCK_OPS, BPF_CGROUP_SOCK_OPS, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("sk_skb/stream_parser",	SK_SKB, BPF_SK_SKB_STREAM_PARSER, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("sk_skb/stream_verdict",SK_SKB, BPF_SK_SKB_STREAM_VERDICT, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("sk_skb",		SK_SKB, 0, SEC_NONE | SEC_SLOPPY_PFX),
	SEC_DEF("sk_msg",		SK_MSG, BPF_SK_MSG_VERDICT, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("lirc_mode2",		LIRC_MODE2, BPF_LIRC_MODE2, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("flow_dissector",	FLOW_DISSECTOR, BPF_FLOW_DISSECTOR, SEC_ATTACHABLE_OPT | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/bind4",		CGROUP_SOCK_ADDR, BPF_CGROUP_INET4_BIND, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/bind6",		CGROUP_SOCK_ADDR, BPF_CGROUP_INET6_BIND, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/connect4",	CGROUP_SOCK_ADDR, BPF_CGROUP_INET4_CONNECT, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/connect6",	CGROUP_SOCK_ADDR, BPF_CGROUP_INET6_CONNECT, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/sendmsg4",	CGROUP_SOCK_ADDR, BPF_CGROUP_UDP4_SENDMSG, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/sendmsg6",	CGROUP_SOCK_ADDR, BPF_CGROUP_UDP6_SENDMSG, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/recvmsg4",	CGROUP_SOCK_ADDR, BPF_CGROUP_UDP4_RECVMSG, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/recvmsg6",	CGROUP_SOCK_ADDR, BPF_CGROUP_UDP6_RECVMSG, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/getpeername4",	CGROUP_SOCK_ADDR, BPF_CGROUP_INET4_GETPEERNAME, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/getpeername6",	CGROUP_SOCK_ADDR, BPF_CGROUP_INET6_GETPEERNAME, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/getsockname4",	CGROUP_SOCK_ADDR, BPF_CGROUP_INET4_GETSOCKNAME, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/getsockname6",	CGROUP_SOCK_ADDR, BPF_CGROUP_INET6_GETSOCKNAME, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/sysctl",	CGROUP_SYSCTL, BPF_CGROUP_SYSCTL, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/getsockopt",	CGROUP_SOCKOPT, BPF_CGROUP_GETSOCKOPT, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("cgroup/setsockopt",	CGROUP_SOCKOPT, BPF_CGROUP_SETSOCKOPT, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
	SEC_DEF("struct_ops+",		STRUCT_OPS, 0, SEC_NONE),
8369
	SEC_DEF("sk_lookup",		SK_LOOKUP, BPF_SK_LOOKUP, SEC_ATTACHABLE | SEC_SLOPPY_PFX),
8370
};
8371

8372 8373
#define MAX_TYPE_NAME_SIZE 32

8374 8375
static const struct bpf_sec_def *find_sec_def(const char *sec_name)
{
8376 8377 8378 8379
	const struct bpf_sec_def *sec_def;
	enum sec_def_flags sec_flags;
	int i, n = ARRAY_SIZE(section_defs), len;
	bool strict = libbpf_mode & LIBBPF_STRICT_SEC_NAME;
8380 8381

	for (i = 0; i < n; i++) {
8382 8383 8384 8385 8386 8387 8388 8389 8390 8391 8392 8393 8394 8395 8396 8397 8398 8399 8400 8401 8402 8403 8404 8405 8406 8407 8408 8409 8410 8411 8412 8413 8414 8415 8416 8417 8418 8419 8420 8421 8422
		sec_def = &section_defs[i];
		sec_flags = sec_def->cookie;
		len = strlen(sec_def->sec);

		/* "type/" always has to have proper SEC("type/extras") form */
		if (sec_def->sec[len - 1] == '/') {
			if (str_has_pfx(sec_name, sec_def->sec))
				return sec_def;
			continue;
		}

		/* "type+" means it can be either exact SEC("type") or
		 * well-formed SEC("type/extras") with proper '/' separator
		 */
		if (sec_def->sec[len - 1] == '+') {
			len--;
			/* not even a prefix */
			if (strncmp(sec_name, sec_def->sec, len) != 0)
				continue;
			/* exact match or has '/' separator */
			if (sec_name[len] == '\0' || sec_name[len] == '/')
				return sec_def;
			continue;
		}

		/* SEC_SLOPPY_PFX definitions are allowed to be just prefix
		 * matches, unless strict section name mode
		 * (LIBBPF_STRICT_SEC_NAME) is enabled, in which case the
		 * match has to be exact.
		 */
		if ((sec_flags & SEC_SLOPPY_PFX) && !strict)  {
			if (str_has_pfx(sec_name, sec_def->sec))
				return sec_def;
			continue;
		}

		/* Definitions not marked SEC_SLOPPY_PFX (e.g.,
		 * SEC("syscall")) are exact matches in both modes.
		 */
		if (strcmp(sec_name, sec_def->sec) == 0)
			return sec_def;
8423 8424 8425 8426
	}
	return NULL;
}

8427 8428
static char *libbpf_get_type_names(bool attach_type)
{
8429
	int i, len = ARRAY_SIZE(section_defs) * MAX_TYPE_NAME_SIZE;
8430 8431 8432 8433 8434 8435 8436 8437
	char *buf;

	buf = malloc(len);
	if (!buf)
		return NULL;

	buf[0] = '\0';
	/* Forge string buf with all available names */
8438
	for (i = 0; i < ARRAY_SIZE(section_defs); i++) {
8439 8440 8441 8442 8443 8444 8445 8446 8447
		const struct bpf_sec_def *sec_def = &section_defs[i];

		if (attach_type) {
			if (sec_def->preload_fn != libbpf_preload_prog)
				continue;

			if (!(sec_def->cookie & SEC_ATTACHABLE))
				continue;
		}
8448

8449
		if (strlen(buf) + strlen(section_defs[i].sec) + 2 > len) {
8450 8451 8452 8453
			free(buf);
			return NULL;
		}
		strcat(buf, " ");
8454
		strcat(buf, section_defs[i].sec);
8455 8456 8457 8458 8459
	}

	return buf;
}

8460 8461
int libbpf_prog_type_by_name(const char *name, enum bpf_prog_type *prog_type,
			     enum bpf_attach_type *expected_attach_type)
8462
{
8463
	const struct bpf_sec_def *sec_def;
8464
	char *type_names;
8465

8466
	if (!name)
8467
		return libbpf_err(-EINVAL);
8468

8469 8470 8471 8472
	sec_def = find_sec_def(name);
	if (sec_def) {
		*prog_type = sec_def->prog_type;
		*expected_attach_type = sec_def->expected_attach_type;
8473 8474
		return 0;
	}
8475

8476
	pr_debug("failed to guess program type from ELF section '%s'\n", name);
8477 8478
	type_names = libbpf_get_type_names(false);
	if (type_names != NULL) {
8479
		pr_debug("supported section(type) names are:%s\n", type_names);
8480 8481 8482
		free(type_names);
	}

8483
	return libbpf_err(-ESRCH);
8484
}
8485

8486 8487 8488 8489 8490 8491 8492 8493 8494 8495 8496 8497 8498 8499 8500 8501 8502 8503 8504
static struct bpf_map *find_struct_ops_map_by_offset(struct bpf_object *obj,
						     size_t offset)
{
	struct bpf_map *map;
	size_t i;

	for (i = 0; i < obj->nr_maps; i++) {
		map = &obj->maps[i];
		if (!bpf_map__is_struct_ops(map))
			continue;
		if (map->sec_offset <= offset &&
		    offset - map->sec_offset < map->def.value_size)
			return map;
	}

	return NULL;
}

/* Collect the reloc from ELF and populate the st_ops->progs[] */
8505
static int bpf_object__collect_st_ops_relos(struct bpf_object *obj,
8506
					    Elf64_Shdr *shdr, Elf_Data *data)
8507 8508 8509 8510 8511 8512 8513
{
	const struct btf_member *member;
	struct bpf_struct_ops *st_ops;
	struct bpf_program *prog;
	unsigned int shdr_idx;
	const struct btf *btf;
	struct bpf_map *map;
8514
	unsigned int moff, insn_idx;
8515
	const char *name;
8516
	__u32 member_idx;
8517 8518
	Elf64_Sym *sym;
	Elf64_Rel *rel;
8519 8520 8521 8522 8523
	int i, nrels;

	btf = obj->btf;
	nrels = shdr->sh_size / shdr->sh_entsize;
	for (i = 0; i < nrels; i++) {
8524 8525
		rel = elf_rel_by_idx(data, i);
		if (!rel) {
8526 8527 8528 8529
			pr_warn("struct_ops reloc: failed to get %d reloc\n", i);
			return -LIBBPF_ERRNO__FORMAT;
		}

8530 8531
		sym = elf_sym_by_idx(obj, ELF64_R_SYM(rel->r_info));
		if (!sym) {
8532
			pr_warn("struct_ops reloc: symbol %zx not found\n",
8533
				(size_t)ELF64_R_SYM(rel->r_info));
8534 8535 8536
			return -LIBBPF_ERRNO__FORMAT;
		}

8537 8538
		name = elf_sym_str(obj, sym->st_name) ?: "<?>";
		map = find_struct_ops_map_by_offset(obj, rel->r_offset);
8539
		if (!map) {
8540 8541
			pr_warn("struct_ops reloc: cannot find map at rel->r_offset %zu\n",
				(size_t)rel->r_offset);
8542 8543 8544
			return -EINVAL;
		}

8545 8546
		moff = rel->r_offset - map->sec_offset;
		shdr_idx = sym->st_shndx;
8547
		st_ops = map->st_ops;
8548
		pr_debug("struct_ops reloc %s: for %lld value %lld shdr_idx %u rel->r_offset %zu map->sec_offset %zu name %d (\'%s\')\n",
8549
			 map->name,
8550 8551 8552 8553
			 (long long)(rel->r_info >> 32),
			 (long long)sym->st_value,
			 shdr_idx, (size_t)rel->r_offset,
			 map->sec_offset, sym->st_name, name);
8554 8555

		if (shdr_idx >= SHN_LORESERVE) {
8556 8557
			pr_warn("struct_ops reloc %s: rel->r_offset %zu shdr_idx %u unsupported non-static function\n",
				map->name, (size_t)rel->r_offset, shdr_idx);
8558 8559
			return -LIBBPF_ERRNO__RELOC;
		}
8560
		if (sym->st_value % BPF_INSN_SZ) {
8561
			pr_warn("struct_ops reloc %s: invalid target program offset %llu\n",
8562
				map->name, (unsigned long long)sym->st_value);
8563 8564
			return -LIBBPF_ERRNO__FORMAT;
		}
8565
		insn_idx = sym->st_value / BPF_INSN_SZ;
8566 8567 8568 8569 8570 8571 8572 8573 8574 8575 8576 8577 8578 8579 8580 8581

		member = find_member_by_offset(st_ops->type, moff * 8);
		if (!member) {
			pr_warn("struct_ops reloc %s: cannot find member at moff %u\n",
				map->name, moff);
			return -EINVAL;
		}
		member_idx = member - btf_members(st_ops->type);
		name = btf__name_by_offset(btf, member->name_off);

		if (!resolve_func_ptr(btf, member->type, NULL)) {
			pr_warn("struct_ops reloc %s: cannot relocate non func ptr %s\n",
				map->name, name);
			return -EINVAL;
		}

8582
		prog = find_prog_by_sec_insn(obj, shdr_idx, insn_idx);
8583 8584 8585 8586 8587 8588
		if (!prog) {
			pr_warn("struct_ops reloc %s: cannot find prog at shdr_idx %u to relocate func ptr %s\n",
				map->name, shdr_idx, name);
			return -EINVAL;
		}

8589 8590 8591 8592 8593 8594
		/* prevent the use of BPF prog with invalid type */
		if (prog->type != BPF_PROG_TYPE_STRUCT_OPS) {
			pr_warn("struct_ops reloc %s: prog %s is not struct_ops BPF program\n",
				map->name, prog->name);
			return -EINVAL;
		}
8595

8596 8597 8598 8599
		/* if we haven't yet processed this BPF program, record proper
		 * attach_btf_id and member_idx
		 */
		if (!prog->attach_btf_id) {
8600 8601 8602
			prog->attach_btf_id = st_ops->type_id;
			prog->expected_attach_type = member_idx;
		}
8603 8604 8605 8606 8607 8608 8609 8610 8611 8612 8613 8614 8615

		/* struct_ops BPF prog can be re-used between multiple
		 * .struct_ops as long as it's the same struct_ops struct
		 * definition and the same function pointer field
		 */
		if (prog->attach_btf_id != st_ops->type_id ||
		    prog->expected_attach_type != member_idx) {
			pr_warn("struct_ops reloc %s: cannot use prog %s in sec %s with type %u attach_btf_id %u expected_attach_type %u for func ptr %s\n",
				map->name, prog->name, prog->sec_name, prog->type,
				prog->attach_btf_id, prog->expected_attach_type, name);
			return -EINVAL;
		}

8616 8617 8618 8619 8620 8621
		st_ops->progs[member_idx] = prog;
	}

	return 0;
}

8622
#define BTF_TRACE_PREFIX "btf_trace_"
8623
#define BTF_LSM_PREFIX "bpf_lsm_"
8624
#define BTF_ITER_PREFIX "bpf_iter_"
8625 8626
#define BTF_MAX_NAME_SIZE 128

8627 8628 8629 8630 8631 8632 8633 8634 8635 8636 8637 8638 8639 8640 8641 8642 8643 8644 8645 8646 8647 8648
void btf_get_kernel_prefix_kind(enum bpf_attach_type attach_type,
				const char **prefix, int *kind)
{
	switch (attach_type) {
	case BPF_TRACE_RAW_TP:
		*prefix = BTF_TRACE_PREFIX;
		*kind = BTF_KIND_TYPEDEF;
		break;
	case BPF_LSM_MAC:
		*prefix = BTF_LSM_PREFIX;
		*kind = BTF_KIND_FUNC;
		break;
	case BPF_TRACE_ITER:
		*prefix = BTF_ITER_PREFIX;
		*kind = BTF_KIND_FUNC;
		break;
	default:
		*prefix = "";
		*kind = BTF_KIND_FUNC;
	}
}

8649 8650 8651 8652 8653 8654 8655 8656 8657
static int find_btf_by_prefix_kind(const struct btf *btf, const char *prefix,
				   const char *name, __u32 kind)
{
	char btf_type_name[BTF_MAX_NAME_SIZE];
	int ret;

	ret = snprintf(btf_type_name, sizeof(btf_type_name),
		       "%s%s", prefix, name);
	/* snprintf returns the number of characters written excluding the
J
Jason Wang 已提交
8658
	 * terminating null. So, if >= BTF_MAX_NAME_SIZE are written, it
8659 8660 8661 8662 8663 8664 8665
	 * indicates truncation.
	 */
	if (ret < 0 || ret >= sizeof(btf_type_name))
		return -ENAMETOOLONG;
	return btf__find_by_name_kind(btf, btf_type_name, kind);
}

8666 8667
static inline int find_attach_btf_id(struct btf *btf, const char *name,
				     enum bpf_attach_type attach_type)
8668
{
8669 8670
	const char *prefix;
	int kind;
8671

8672 8673
	btf_get_kernel_prefix_kind(attach_type, &prefix, &kind);
	return find_btf_by_prefix_kind(btf, prefix, name, kind);
8674 8675
}

8676 8677
int libbpf_find_vmlinux_btf_id(const char *name,
			       enum bpf_attach_type attach_type)
8678
{
8679
	struct btf *btf;
8680
	int err;
8681

8682
	btf = btf__load_vmlinux_btf();
8683 8684
	err = libbpf_get_error(btf);
	if (err) {
8685
		pr_warn("vmlinux BTF is not found\n");
8686
		return libbpf_err(err);
8687 8688
	}

8689 8690 8691 8692
	err = find_attach_btf_id(btf, name, attach_type);
	if (err <= 0)
		pr_warn("%s is not found in vmlinux BTF\n", name);

8693
	btf__free(btf);
8694
	return libbpf_err(err);
8695 8696
}

8697 8698
static int libbpf_find_prog_btf_id(const char *name, __u32 attach_prog_fd)
{
8699 8700
	struct bpf_prog_info info = {};
	__u32 info_len = sizeof(info);
8701
	struct btf *btf;
8702
	int err;
8703

8704
	err = bpf_obj_get_info_by_fd(attach_prog_fd, &info, &info_len);
8705
	if (err) {
8706 8707
		pr_warn("failed bpf_obj_get_info_by_fd for FD %d: %d\n",
			attach_prog_fd, err);
8708
		return err;
8709
	}
8710 8711

	err = -EINVAL;
8712
	if (!info.btf_id) {
8713 8714 8715
		pr_warn("The target program doesn't have BTF\n");
		goto out;
	}
8716 8717 8718 8719
	btf = btf__load_from_kernel_by_id(info.btf_id);
	err = libbpf_get_error(btf);
	if (err) {
		pr_warn("Failed to get BTF %d of the program: %d\n", info.btf_id, err);
8720 8721 8722 8723 8724 8725 8726 8727 8728 8729 8730 8731
		goto out;
	}
	err = btf__find_by_name_kind(btf, name, BTF_KIND_FUNC);
	btf__free(btf);
	if (err <= 0) {
		pr_warn("%s is not found in prog's BTF\n", name);
		goto out;
	}
out:
	return err;
}

8732 8733 8734 8735 8736 8737 8738 8739 8740 8741 8742 8743 8744 8745 8746 8747 8748 8749 8750 8751 8752 8753 8754 8755 8756 8757 8758 8759 8760 8761 8762 8763 8764 8765 8766 8767 8768
static int find_kernel_btf_id(struct bpf_object *obj, const char *attach_name,
			      enum bpf_attach_type attach_type,
			      int *btf_obj_fd, int *btf_type_id)
{
	int ret, i;

	ret = find_attach_btf_id(obj->btf_vmlinux, attach_name, attach_type);
	if (ret > 0) {
		*btf_obj_fd = 0; /* vmlinux BTF */
		*btf_type_id = ret;
		return 0;
	}
	if (ret != -ENOENT)
		return ret;

	ret = load_module_btfs(obj);
	if (ret)
		return ret;

	for (i = 0; i < obj->btf_module_cnt; i++) {
		const struct module_btf *mod = &obj->btf_modules[i];

		ret = find_attach_btf_id(mod->btf, attach_name, attach_type);
		if (ret > 0) {
			*btf_obj_fd = mod->fd;
			*btf_type_id = ret;
			return 0;
		}
		if (ret == -ENOENT)
			continue;

		return ret;
	}

	return -ESRCH;
}

8769 8770
static int libbpf_find_attach_btf_id(struct bpf_program *prog, const char *attach_name,
				     int *btf_obj_fd, int *btf_type_id)
8771
{
8772 8773
	enum bpf_attach_type attach_type = prog->expected_attach_type;
	__u32 attach_prog_fd = prog->attach_prog_fd;
8774
	int err = 0;
8775

8776 8777 8778 8779 8780 8781 8782 8783 8784 8785 8786 8787 8788 8789
	/* BPF program's BTF ID */
	if (attach_prog_fd) {
		err = libbpf_find_prog_btf_id(attach_name, attach_prog_fd);
		if (err < 0) {
			pr_warn("failed to find BPF program (FD %d) BTF ID for '%s': %d\n",
				 attach_prog_fd, attach_name, err);
			return err;
		}
		*btf_obj_fd = 0;
		*btf_type_id = err;
		return 0;
	}

	/* kernel/module BTF ID */
8790 8791 8792 8793 8794 8795 8796
	if (prog->obj->gen_loader) {
		bpf_gen__record_attach_target(prog->obj->gen_loader, attach_name, attach_type);
		*btf_obj_fd = 0;
		*btf_type_id = 1;
	} else {
		err = find_kernel_btf_id(prog->obj, attach_name, attach_type, btf_obj_fd, btf_type_id);
	}
8797 8798
	if (err) {
		pr_warn("failed to find kernel BTF type ID of '%s': %d\n", attach_name, err);
8799
		return err;
8800
	}
8801
	return 0;
8802 8803
}

8804 8805 8806
int libbpf_attach_type_by_name(const char *name,
			       enum bpf_attach_type *attach_type)
{
8807
	char *type_names;
8808
	const struct bpf_sec_def *sec_def;
8809 8810

	if (!name)
8811
		return libbpf_err(-EINVAL);
8812

8813 8814 8815 8816 8817 8818 8819 8820 8821 8822
	sec_def = find_sec_def(name);
	if (!sec_def) {
		pr_debug("failed to guess attach type based on ELF section name '%s'\n", name);
		type_names = libbpf_get_type_names(true);
		if (type_names != NULL) {
			pr_debug("attachable section(type) names are:%s\n", type_names);
			free(type_names);
		}

		return libbpf_err(-EINVAL);
8823 8824
	}

8825 8826 8827
	if (sec_def->preload_fn != libbpf_preload_prog)
		return libbpf_err(-EINVAL);
	if (!(sec_def->cookie & SEC_ATTACHABLE))
8828 8829 8830 8831
		return libbpf_err(-EINVAL);

	*attach_type = sec_def->expected_attach_type;
	return 0;
8832 8833
}

A
Andrii Nakryiko 已提交
8834
int bpf_map__fd(const struct bpf_map *map)
8835
{
8836
	return map ? map->fd : libbpf_err(-EINVAL);
8837 8838
}

A
Andrii Nakryiko 已提交
8839
const struct bpf_map_def *bpf_map__def(const struct bpf_map *map)
8840
{
8841
	return map ? &map->def : libbpf_err_ptr(-EINVAL);
8842 8843
}

8844 8845 8846 8847 8848 8849 8850 8851 8852 8853 8854 8855 8856 8857 8858
static bool map_uses_real_name(const struct bpf_map *map)
{
	/* Since libbpf started to support custom .data.* and .rodata.* maps,
	 * their user-visible name differs from kernel-visible name. Users see
	 * such map's corresponding ELF section name as a map name.
	 * This check distinguishes .data/.rodata from .data.* and .rodata.*
	 * maps to know which name has to be returned to the user.
	 */
	if (map->libbpf_type == LIBBPF_MAP_DATA && strcmp(map->real_name, DATA_SEC) != 0)
		return true;
	if (map->libbpf_type == LIBBPF_MAP_RODATA && strcmp(map->real_name, RODATA_SEC) != 0)
		return true;
	return false;
}

A
Andrii Nakryiko 已提交
8859
const char *bpf_map__name(const struct bpf_map *map)
8860
{
8861 8862 8863 8864 8865 8866 8867
	if (!map)
		return NULL;

	if (map_uses_real_name(map))
		return map->real_name;

	return map->name;
8868 8869
}

8870 8871 8872 8873 8874 8875 8876 8877
enum bpf_map_type bpf_map__type(const struct bpf_map *map)
{
	return map->def.type;
}

int bpf_map__set_type(struct bpf_map *map, enum bpf_map_type type)
{
	if (map->fd >= 0)
8878
		return libbpf_err(-EBUSY);
8879 8880 8881 8882 8883 8884 8885 8886 8887 8888 8889 8890
	map->def.type = type;
	return 0;
}

__u32 bpf_map__map_flags(const struct bpf_map *map)
{
	return map->def.map_flags;
}

int bpf_map__set_map_flags(struct bpf_map *map, __u32 flags)
{
	if (map->fd >= 0)
8891
		return libbpf_err(-EBUSY);
8892 8893 8894 8895
	map->def.map_flags = flags;
	return 0;
}

8896 8897 8898 8899 8900 8901 8902 8903 8904 8905 8906 8907 8908
__u64 bpf_map__map_extra(const struct bpf_map *map)
{
	return map->map_extra;
}

int bpf_map__set_map_extra(struct bpf_map *map, __u64 map_extra)
{
	if (map->fd >= 0)
		return libbpf_err(-EBUSY);
	map->map_extra = map_extra;
	return 0;
}

8909 8910 8911 8912 8913 8914 8915 8916
__u32 bpf_map__numa_node(const struct bpf_map *map)
{
	return map->numa_node;
}

int bpf_map__set_numa_node(struct bpf_map *map, __u32 numa_node)
{
	if (map->fd >= 0)
8917
		return libbpf_err(-EBUSY);
8918 8919 8920 8921 8922 8923 8924 8925 8926 8927 8928 8929
	map->numa_node = numa_node;
	return 0;
}

__u32 bpf_map__key_size(const struct bpf_map *map)
{
	return map->def.key_size;
}

int bpf_map__set_key_size(struct bpf_map *map, __u32 size)
{
	if (map->fd >= 0)
8930
		return libbpf_err(-EBUSY);
8931 8932 8933 8934 8935 8936 8937 8938 8939 8940 8941 8942
	map->def.key_size = size;
	return 0;
}

__u32 bpf_map__value_size(const struct bpf_map *map)
{
	return map->def.value_size;
}

int bpf_map__set_value_size(struct bpf_map *map, __u32 size)
{
	if (map->fd >= 0)
8943
		return libbpf_err(-EBUSY);
8944 8945 8946 8947
	map->def.value_size = size;
	return 0;
}

8948
__u32 bpf_map__btf_key_type_id(const struct bpf_map *map)
8949
{
8950
	return map ? map->btf_key_type_id : 0;
8951 8952
}

8953
__u32 bpf_map__btf_value_type_id(const struct bpf_map *map)
8954
{
8955
	return map ? map->btf_value_type_id : 0;
8956 8957
}

8958 8959
int bpf_map__set_priv(struct bpf_map *map, void *priv,
		     bpf_map_clear_priv_t clear_priv)
8960 8961
{
	if (!map)
8962
		return libbpf_err(-EINVAL);
8963 8964 8965 8966 8967 8968 8969 8970 8971 8972 8973

	if (map->priv) {
		if (map->clear_priv)
			map->clear_priv(map, map->priv);
	}

	map->priv = priv;
	map->clear_priv = clear_priv;
	return 0;
}

A
Andrii Nakryiko 已提交
8974
void *bpf_map__priv(const struct bpf_map *map)
8975
{
8976
	return map ? map->priv : libbpf_err_ptr(-EINVAL);
8977 8978
}

8979 8980 8981 8982 8983
int bpf_map__set_initial_value(struct bpf_map *map,
			       const void *data, size_t size)
{
	if (!map->mmaped || map->libbpf_type == LIBBPF_MAP_KCONFIG ||
	    size != map->def.value_size || map->fd >= 0)
8984
		return libbpf_err(-EINVAL);
8985 8986 8987 8988 8989

	memcpy(map->mmaped, data, size);
	return 0;
}

8990 8991 8992 8993 8994 8995 8996 8997
const void *bpf_map__initial_value(struct bpf_map *map, size_t *psize)
{
	if (!map->mmaped)
		return NULL;
	*psize = map->def.value_size;
	return map->mmaped;
}

A
Andrii Nakryiko 已提交
8998
bool bpf_map__is_offload_neutral(const struct bpf_map *map)
8999 9000 9001 9002
{
	return map->def.type == BPF_MAP_TYPE_PERF_EVENT_ARRAY;
}

A
Andrii Nakryiko 已提交
9003
bool bpf_map__is_internal(const struct bpf_map *map)
9004 9005 9006 9007
{
	return map->libbpf_type != LIBBPF_MAP_UNSPEC;
}

9008 9009 9010 9011 9012 9013
__u32 bpf_map__ifindex(const struct bpf_map *map)
{
	return map->map_ifindex;
}

int bpf_map__set_ifindex(struct bpf_map *map, __u32 ifindex)
9014
{
9015
	if (map->fd >= 0)
9016
		return libbpf_err(-EBUSY);
9017
	map->map_ifindex = ifindex;
9018
	return 0;
9019 9020
}

9021 9022 9023
int bpf_map__set_inner_map_fd(struct bpf_map *map, int fd)
{
	if (!bpf_map_type__is_map_in_map(map->def.type)) {
9024
		pr_warn("error: unsupported map type\n");
9025
		return libbpf_err(-EINVAL);
9026 9027
	}
	if (map->inner_map_fd != -1) {
9028
		pr_warn("error: inner_map_fd already specified\n");
9029
		return libbpf_err(-EINVAL);
9030
	}
9031
	zfree(&map->inner_map);
9032 9033 9034 9035
	map->inner_map_fd = fd;
	return 0;
}

9036
static struct bpf_map *
A
Andrii Nakryiko 已提交
9037
__bpf_map__iter(const struct bpf_map *m, const struct bpf_object *obj, int i)
9038
{
9039
	ssize_t idx;
9040 9041 9042
	struct bpf_map *s, *e;

	if (!obj || !obj->maps)
9043
		return errno = EINVAL, NULL;
9044 9045 9046 9047

	s = obj->maps;
	e = obj->maps + obj->nr_maps;

9048
	if ((m < s) || (m >= e)) {
9049 9050
		pr_warn("error in %s: map handler doesn't belong to object\n",
			 __func__);
9051
		return errno = EINVAL, NULL;
9052 9053
	}

9054 9055
	idx = (m - obj->maps) + i;
	if (idx >= obj->nr_maps || idx < 0)
9056 9057 9058
		return NULL;
	return &obj->maps[idx];
}
9059

9060
struct bpf_map *
A
Andrii Nakryiko 已提交
9061
bpf_map__next(const struct bpf_map *prev, const struct bpf_object *obj)
9062 9063 9064 9065 9066 9067
{
	return bpf_object__next_map(obj, prev);
}

struct bpf_map *
bpf_object__next_map(const struct bpf_object *obj, const struct bpf_map *prev)
9068 9069 9070 9071 9072 9073 9074 9075
{
	if (prev == NULL)
		return obj->maps;

	return __bpf_map__iter(prev, obj, 1);
}

struct bpf_map *
A
Andrii Nakryiko 已提交
9076
bpf_map__prev(const struct bpf_map *next, const struct bpf_object *obj)
9077 9078 9079 9080 9081 9082
{
	return bpf_object__prev_map(obj, next);
}

struct bpf_map *
bpf_object__prev_map(const struct bpf_object *obj, const struct bpf_map *next)
9083 9084 9085 9086 9087 9088 9089 9090 9091 9092
{
	if (next == NULL) {
		if (!obj->nr_maps)
			return NULL;
		return obj->maps + obj->nr_maps - 1;
	}

	return __bpf_map__iter(next, obj, -1);
}

9093
struct bpf_map *
A
Andrii Nakryiko 已提交
9094
bpf_object__find_map_by_name(const struct bpf_object *obj, const char *name)
9095 9096 9097
{
	struct bpf_map *pos;

9098
	bpf_object__for_each_map(pos, obj) {
9099 9100 9101 9102 9103 9104 9105 9106 9107 9108
		/* if it's a special internal map name (which always starts
		 * with dot) then check if that special name matches the
		 * real map name (ELF section name)
		 */
		if (name[0] == '.') {
			if (pos->real_name && strcmp(pos->real_name, name) == 0)
				return pos;
			continue;
		}
		/* otherwise map name has to be an exact match */
9109 9110 9111 9112 9113 9114
		if (map_uses_real_name(pos)) {
			if (strcmp(pos->real_name, name) == 0)
				return pos;
			continue;
		}
		if (strcmp(pos->name, name) == 0)
9115 9116
			return pos;
	}
9117
	return errno = ENOENT, NULL;
9118
}
9119

9120
int
A
Andrii Nakryiko 已提交
9121
bpf_object__find_map_fd_by_name(const struct bpf_object *obj, const char *name)
9122 9123 9124 9125
{
	return bpf_map__fd(bpf_object__find_map_by_name(obj, name));
}

9126 9127 9128
struct bpf_map *
bpf_object__find_map_by_offset(struct bpf_object *obj, size_t offset)
{
9129
	return libbpf_err_ptr(-ENOTSUP);
9130
}
9131 9132 9133

long libbpf_get_error(const void *ptr)
{
9134 9135 9136 9137 9138 9139 9140 9141 9142 9143 9144 9145
	if (!IS_ERR_OR_NULL(ptr))
		return 0;

	if (IS_ERR(ptr))
		errno = -PTR_ERR(ptr);

	/* If ptr == NULL, then errno should be already set by the failing
	 * API, because libbpf never returns NULL on success and it now always
	 * sets errno on error. So no extra errno handling for ptr == NULL
	 * case.
	 */
	return -errno;
9146
}
9147 9148 9149

int bpf_prog_load(const char *file, enum bpf_prog_type type,
		  struct bpf_object **pobj, int *prog_fd)
9150 9151 9152 9153 9154 9155 9156 9157 9158 9159 9160 9161 9162
{
	struct bpf_prog_load_attr attr;

	memset(&attr, 0, sizeof(struct bpf_prog_load_attr));
	attr.file = file;
	attr.prog_type = type;
	attr.expected_attach_type = 0;

	return bpf_prog_load_xattr(&attr, pobj, prog_fd);
}

int bpf_prog_load_xattr(const struct bpf_prog_load_attr *attr,
			struct bpf_object **pobj, int *prog_fd)
9163
{
9164
	struct bpf_object_open_attr open_attr = {};
9165
	struct bpf_program *prog, *first_prog = NULL;
9166
	struct bpf_object *obj;
9167
	struct bpf_map *map;
9168 9169
	int err;

9170
	if (!attr)
9171
		return libbpf_err(-EINVAL);
9172
	if (!attr->file)
9173
		return libbpf_err(-EINVAL);
9174

9175 9176 9177
	open_attr.file = attr->file;
	open_attr.prog_type = attr->prog_type;

9178
	obj = bpf_object__open_xattr(&open_attr);
9179 9180 9181
	err = libbpf_get_error(obj);
	if (err)
		return libbpf_err(-ENOENT);
9182

9183
	bpf_object__for_each_program(prog, obj) {
9184
		enum bpf_attach_type attach_type = attr->expected_attach_type;
9185
		/*
9186 9187 9188
		 * to preserve backwards compatibility, bpf_prog_load treats
		 * attr->prog_type, if specified, as an override to whatever
		 * bpf_object__open guessed
9189
		 */
9190 9191 9192 9193 9194 9195 9196 9197 9198 9199 9200
		if (attr->prog_type != BPF_PROG_TYPE_UNSPEC) {
			bpf_program__set_type(prog, attr->prog_type);
			bpf_program__set_expected_attach_type(prog,
							      attach_type);
		}
		if (bpf_program__get_type(prog) == BPF_PROG_TYPE_UNSPEC) {
			/*
			 * we haven't guessed from section name and user
			 * didn't provide a fallback type, too bad...
			 */
			bpf_object__close(obj);
9201
			return libbpf_err(-EINVAL);
9202
		}
9203

9204
		prog->prog_ifindex = attr->ifindex;
9205
		prog->log_level = attr->log_level;
9206
		prog->prog_flags |= attr->prog_flags;
9207
		if (!first_prog)
9208 9209 9210
			first_prog = prog;
	}

9211
	bpf_object__for_each_map(map, obj) {
9212 9213
		if (!bpf_map__is_offload_neutral(map))
			map->map_ifindex = attr->ifindex;
9214 9215
	}

9216
	if (!first_prog) {
9217
		pr_warn("object file doesn't contain bpf program\n");
9218
		bpf_object__close(obj);
9219
		return libbpf_err(-ENOENT);
9220 9221
	}

9222 9223 9224
	err = bpf_object__load(obj);
	if (err) {
		bpf_object__close(obj);
9225
		return libbpf_err(err);
9226 9227 9228
	}

	*pobj = obj;
9229
	*prog_fd = bpf_program__fd(first_prog);
9230 9231
	return 0;
}
9232

9233
struct bpf_link {
9234
	int (*detach)(struct bpf_link *link);
9235
	void (*dealloc)(struct bpf_link *link);
9236 9237
	char *pin_path;		/* NULL, if not pinned */
	int fd;			/* hook FD, -1 if not applicable */
9238
	bool disconnected;
9239 9240
};

9241 9242 9243
/* Replace link's underlying BPF program with the new one */
int bpf_link__update_program(struct bpf_link *link, struct bpf_program *prog)
{
9244
	int ret;
J
Jason Wang 已提交
9245

9246 9247
	ret = bpf_link_update(bpf_link__fd(link), bpf_program__fd(prog), NULL);
	return libbpf_err_errno(ret);
9248 9249
}

9250 9251 9252 9253 9254 9255 9256 9257 9258 9259 9260 9261 9262 9263 9264
/* Release "ownership" of underlying BPF resource (typically, BPF program
 * attached to some BPF hook, e.g., tracepoint, kprobe, etc). Disconnected
 * link, when destructed through bpf_link__destroy() call won't attempt to
 * detach/unregisted that BPF resource. This is useful in situations where,
 * say, attached BPF program has to outlive userspace program that attached it
 * in the system. Depending on type of BPF program, though, there might be
 * additional steps (like pinning BPF program in BPF FS) necessary to ensure
 * exit of userspace program doesn't trigger automatic detachment and clean up
 * inside the kernel.
 */
void bpf_link__disconnect(struct bpf_link *link)
{
	link->disconnected = true;
}

9265 9266
int bpf_link__destroy(struct bpf_link *link)
{
9267
	int err = 0;
9268

9269
	if (IS_ERR_OR_NULL(link))
9270 9271
		return 0;

9272 9273
	if (!link->disconnected && link->detach)
		err = link->detach(link);
9274 9275
	if (link->pin_path)
		free(link->pin_path);
9276 9277 9278 9279
	if (link->dealloc)
		link->dealloc(link);
	else
		free(link);
9280

9281
	return libbpf_err(err);
9282 9283
}

9284 9285 9286 9287 9288 9289 9290 9291 9292 9293 9294 9295
int bpf_link__fd(const struct bpf_link *link)
{
	return link->fd;
}

const char *bpf_link__pin_path(const struct bpf_link *link)
{
	return link->pin_path;
}

static int bpf_link__detach_fd(struct bpf_link *link)
{
9296
	return libbpf_err_errno(close(link->fd));
9297 9298 9299 9300 9301 9302 9303 9304 9305 9306 9307
}

struct bpf_link *bpf_link__open(const char *path)
{
	struct bpf_link *link;
	int fd;

	fd = bpf_obj_get(path);
	if (fd < 0) {
		fd = -errno;
		pr_warn("failed to open link at %s: %d\n", path, fd);
9308
		return libbpf_err_ptr(fd);
9309 9310 9311 9312 9313
	}

	link = calloc(1, sizeof(*link));
	if (!link) {
		close(fd);
9314
		return libbpf_err_ptr(-ENOMEM);
9315 9316 9317 9318 9319 9320 9321
	}
	link->detach = &bpf_link__detach_fd;
	link->fd = fd;

	link->pin_path = strdup(path);
	if (!link->pin_path) {
		bpf_link__destroy(link);
9322
		return libbpf_err_ptr(-ENOMEM);
9323 9324 9325 9326 9327
	}

	return link;
}

9328 9329 9330 9331 9332
int bpf_link__detach(struct bpf_link *link)
{
	return bpf_link_detach(link->fd) ? -errno : 0;
}

9333 9334 9335 9336 9337
int bpf_link__pin(struct bpf_link *link, const char *path)
{
	int err;

	if (link->pin_path)
9338
		return libbpf_err(-EBUSY);
9339 9340
	err = make_parent_dir(path);
	if (err)
9341
		return libbpf_err(err);
9342 9343
	err = check_path(path);
	if (err)
9344
		return libbpf_err(err);
9345 9346 9347

	link->pin_path = strdup(path);
	if (!link->pin_path)
9348
		return libbpf_err(-ENOMEM);
9349 9350 9351 9352

	if (bpf_obj_pin(link->fd, link->pin_path)) {
		err = -errno;
		zfree(&link->pin_path);
9353
		return libbpf_err(err);
9354 9355 9356 9357 9358 9359 9360 9361 9362 9363 9364
	}

	pr_debug("link fd=%d: pinned at %s\n", link->fd, link->pin_path);
	return 0;
}

int bpf_link__unpin(struct bpf_link *link)
{
	int err;

	if (!link->pin_path)
9365
		return libbpf_err(-EINVAL);
9366 9367 9368

	err = unlink(link->pin_path);
	if (err != 0)
9369
		return -errno;
9370 9371 9372 9373 9374

	pr_debug("link fd=%d: unpinned from %s\n", link->fd, link->pin_path);
	zfree(&link->pin_path);
	return 0;
}
9375

9376 9377 9378
struct bpf_link_perf {
	struct bpf_link link;
	int perf_event_fd;
9379 9380
	/* legacy kprobe support: keep track of probe identifier and type */
	char *legacy_probe_name;
9381
	bool legacy_is_kprobe;
9382
	bool legacy_is_retprobe;
9383 9384
};

9385
static int remove_kprobe_event_legacy(const char *probe_name, bool retprobe);
9386
static int remove_uprobe_event_legacy(const char *probe_name, bool retprobe);
9387

9388
static int bpf_link_perf_detach(struct bpf_link *link)
9389
{
9390 9391
	struct bpf_link_perf *perf_link = container_of(link, struct bpf_link_perf, link);
	int err = 0;
9392

9393
	if (ioctl(perf_link->perf_event_fd, PERF_EVENT_IOC_DISABLE, 0) < 0)
9394 9395
		err = -errno;

9396 9397
	if (perf_link->perf_event_fd != link->fd)
		close(perf_link->perf_event_fd);
9398
	close(link->fd);
9399

9400
	/* legacy uprobe/kprobe needs to be removed after perf event fd closure */
9401 9402 9403 9404
	if (perf_link->legacy_probe_name) {
		if (perf_link->legacy_is_kprobe) {
			err = remove_kprobe_event_legacy(perf_link->legacy_probe_name,
							 perf_link->legacy_is_retprobe);
9405 9406 9407
		} else {
			err = remove_uprobe_event_legacy(perf_link->legacy_probe_name,
							 perf_link->legacy_is_retprobe);
9408 9409
		}
	}
9410 9411

	return err;
9412 9413
}

9414 9415 9416 9417
static void bpf_link_perf_dealloc(struct bpf_link *link)
{
	struct bpf_link_perf *perf_link = container_of(link, struct bpf_link_perf, link);

9418
	free(perf_link->legacy_probe_name);
9419 9420 9421
	free(perf_link);
}

9422
struct bpf_link *bpf_program__attach_perf_event_opts(const struct bpf_program *prog, int pfd,
9423
						     const struct bpf_perf_event_opts *opts)
9424 9425
{
	char errmsg[STRERR_BUFSIZE];
9426 9427
	struct bpf_link_perf *link;
	int prog_fd, link_fd = -1, err;
9428

9429 9430 9431
	if (!OPTS_VALID(opts, bpf_perf_event_opts))
		return libbpf_err_ptr(-EINVAL);

9432
	if (pfd < 0) {
9433 9434
		pr_warn("prog '%s': invalid perf event FD %d\n",
			prog->name, pfd);
9435
		return libbpf_err_ptr(-EINVAL);
9436 9437 9438
	}
	prog_fd = bpf_program__fd(prog);
	if (prog_fd < 0) {
9439 9440
		pr_warn("prog '%s': can't attach BPF program w/o FD (did you load it?)\n",
			prog->name);
9441
		return libbpf_err_ptr(-EINVAL);
9442 9443
	}

9444
	link = calloc(1, sizeof(*link));
9445
	if (!link)
9446
		return libbpf_err_ptr(-ENOMEM);
9447 9448 9449
	link->link.detach = &bpf_link_perf_detach;
	link->link.dealloc = &bpf_link_perf_dealloc;
	link->perf_event_fd = pfd;
9450

9451
	if (kernel_supports(prog->obj, FEAT_PERF_LINK)) {
9452 9453 9454 9455
		DECLARE_LIBBPF_OPTS(bpf_link_create_opts, link_opts,
			.perf_event.bpf_cookie = OPTS_GET(opts, bpf_cookie, 0));

		link_fd = bpf_link_create(prog_fd, pfd, BPF_PERF_EVENT, &link_opts);
9456 9457 9458 9459 9460 9461 9462 9463 9464
		if (link_fd < 0) {
			err = -errno;
			pr_warn("prog '%s': failed to create BPF link for perf_event FD %d: %d (%s)\n",
				prog->name, pfd,
				err, libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
			goto err_out;
		}
		link->link.fd = link_fd;
	} else {
9465 9466 9467 9468 9469 9470
		if (OPTS_GET(opts, bpf_cookie, 0)) {
			pr_warn("prog '%s': user context value is not supported\n", prog->name);
			err = -EOPNOTSUPP;
			goto err_out;
		}

9471 9472 9473 9474 9475 9476 9477 9478 9479 9480
		if (ioctl(pfd, PERF_EVENT_IOC_SET_BPF, prog_fd) < 0) {
			err = -errno;
			pr_warn("prog '%s': failed to attach to perf_event FD %d: %s\n",
				prog->name, pfd, libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
			if (err == -EPROTO)
				pr_warn("prog '%s': try add PERF_SAMPLE_CALLCHAIN to or remove exclude_callchain_[kernel|user] from pfd %d\n",
					prog->name, pfd);
			goto err_out;
		}
		link->link.fd = pfd;
9481 9482 9483
	}
	if (ioctl(pfd, PERF_EVENT_IOC_ENABLE, 0) < 0) {
		err = -errno;
9484
		pr_warn("prog '%s': failed to enable perf_event FD %d: %s\n",
9485
			prog->name, pfd, libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
9486
		goto err_out;
9487
	}
9488 9489 9490 9491 9492 9493 9494

	return &link->link;
err_out:
	if (link_fd >= 0)
		close(link_fd);
	free(link);
	return libbpf_err_ptr(err);
9495 9496
}

9497
struct bpf_link *bpf_program__attach_perf_event(const struct bpf_program *prog, int pfd)
9498 9499 9500 9501
{
	return bpf_program__attach_perf_event_opts(prog, pfd, NULL);
}

9502 9503 9504 9505 9506 9507 9508 9509 9510 9511 9512 9513 9514 9515 9516 9517 9518 9519 9520 9521 9522 9523 9524 9525 9526 9527 9528 9529 9530 9531 9532 9533 9534 9535 9536 9537 9538 9539 9540 9541 9542 9543 9544 9545 9546 9547 9548 9549 9550 9551 9552 9553 9554 9555 9556 9557 9558 9559
/*
 * this function is expected to parse integer in the range of [0, 2^31-1] from
 * given file using scanf format string fmt. If actual parsed value is
 * negative, the result might be indistinguishable from error
 */
static int parse_uint_from_file(const char *file, const char *fmt)
{
	char buf[STRERR_BUFSIZE];
	int err, ret;
	FILE *f;

	f = fopen(file, "r");
	if (!f) {
		err = -errno;
		pr_debug("failed to open '%s': %s\n", file,
			 libbpf_strerror_r(err, buf, sizeof(buf)));
		return err;
	}
	err = fscanf(f, fmt, &ret);
	if (err != 1) {
		err = err == EOF ? -EIO : -errno;
		pr_debug("failed to parse '%s': %s\n", file,
			libbpf_strerror_r(err, buf, sizeof(buf)));
		fclose(f);
		return err;
	}
	fclose(f);
	return ret;
}

static int determine_kprobe_perf_type(void)
{
	const char *file = "/sys/bus/event_source/devices/kprobe/type";

	return parse_uint_from_file(file, "%d\n");
}

static int determine_uprobe_perf_type(void)
{
	const char *file = "/sys/bus/event_source/devices/uprobe/type";

	return parse_uint_from_file(file, "%d\n");
}

static int determine_kprobe_retprobe_bit(void)
{
	const char *file = "/sys/bus/event_source/devices/kprobe/format/retprobe";

	return parse_uint_from_file(file, "config:%d\n");
}

static int determine_uprobe_retprobe_bit(void)
{
	const char *file = "/sys/bus/event_source/devices/uprobe/format/retprobe";

	return parse_uint_from_file(file, "config:%d\n");
}

9560 9561 9562
#define PERF_UPROBE_REF_CTR_OFFSET_BITS 32
#define PERF_UPROBE_REF_CTR_OFFSET_SHIFT 32

9563
static int perf_event_open_probe(bool uprobe, bool retprobe, const char *name,
9564
				 uint64_t offset, int pid, size_t ref_ctr_off)
9565 9566 9567 9568 9569
{
	struct perf_event_attr attr = {};
	char errmsg[STRERR_BUFSIZE];
	int type, pfd, err;

9570 9571 9572
	if (ref_ctr_off >= (1ULL << PERF_UPROBE_REF_CTR_OFFSET_BITS))
		return -EINVAL;

9573 9574 9575
	type = uprobe ? determine_uprobe_perf_type()
		      : determine_kprobe_perf_type();
	if (type < 0) {
9576 9577 9578
		pr_warn("failed to determine %s perf type: %s\n",
			uprobe ? "uprobe" : "kprobe",
			libbpf_strerror_r(type, errmsg, sizeof(errmsg)));
9579 9580 9581 9582 9583 9584 9585
		return type;
	}
	if (retprobe) {
		int bit = uprobe ? determine_uprobe_retprobe_bit()
				 : determine_kprobe_retprobe_bit();

		if (bit < 0) {
9586 9587 9588
			pr_warn("failed to determine %s retprobe bit: %s\n",
				uprobe ? "uprobe" : "kprobe",
				libbpf_strerror_r(bit, errmsg, sizeof(errmsg)));
9589 9590 9591 9592 9593 9594
			return bit;
		}
		attr.config |= 1 << bit;
	}
	attr.size = sizeof(attr);
	attr.type = type;
9595
	attr.config |= (__u64)ref_ctr_off << PERF_UPROBE_REF_CTR_OFFSET_SHIFT;
9596 9597
	attr.config1 = ptr_to_u64(name); /* kprobe_func or uprobe_path */
	attr.config2 = offset;		 /* kprobe_addr or probe_offset */
9598 9599 9600 9601 9602 9603 9604 9605

	/* pid filter is meaningful only for uprobes */
	pfd = syscall(__NR_perf_event_open, &attr,
		      pid < 0 ? -1 : pid /* pid */,
		      pid == -1 ? 0 : -1 /* cpu */,
		      -1 /* group_fd */, PERF_FLAG_FD_CLOEXEC);
	if (pfd < 0) {
		err = -errno;
9606 9607 9608
		pr_warn("%s perf_event_open() failed: %s\n",
			uprobe ? "uprobe" : "kprobe",
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
9609 9610 9611 9612 9613
		return err;
	}
	return pfd;
}

9614 9615 9616 9617 9618
static int append_to_file(const char *file, const char *fmt, ...)
{
	int fd, n, err = 0;
	va_list ap;

9619
	fd = open(file, O_WRONLY | O_APPEND | O_CLOEXEC, 0);
9620 9621 9622 9623 9624 9625 9626 9627 9628 9629 9630 9631 9632 9633 9634 9635 9636 9637 9638 9639 9640 9641 9642 9643 9644 9645 9646 9647 9648 9649 9650 9651 9652 9653 9654 9655 9656 9657 9658 9659 9660 9661 9662 9663 9664 9665 9666 9667 9668 9669 9670
	if (fd < 0)
		return -errno;

	va_start(ap, fmt);
	n = vdprintf(fd, fmt, ap);
	va_end(ap);

	if (n < 0)
		err = -errno;

	close(fd);
	return err;
}

static void gen_kprobe_legacy_event_name(char *buf, size_t buf_sz,
					 const char *kfunc_name, size_t offset)
{
	snprintf(buf, buf_sz, "libbpf_%u_%s_0x%zx", getpid(), kfunc_name, offset);
}

static int add_kprobe_event_legacy(const char *probe_name, bool retprobe,
				   const char *kfunc_name, size_t offset)
{
	const char *file = "/sys/kernel/debug/tracing/kprobe_events";

	return append_to_file(file, "%c:%s/%s %s+0x%zx",
			      retprobe ? 'r' : 'p',
			      retprobe ? "kretprobes" : "kprobes",
			      probe_name, kfunc_name, offset);
}

static int remove_kprobe_event_legacy(const char *probe_name, bool retprobe)
{
	const char *file = "/sys/kernel/debug/tracing/kprobe_events";

	return append_to_file(file, "-:%s/%s", retprobe ? "kretprobes" : "kprobes", probe_name);
}

static int determine_kprobe_perf_type_legacy(const char *probe_name, bool retprobe)
{
	char file[256];

	snprintf(file, sizeof(file),
		 "/sys/kernel/debug/tracing/events/%s/%s/id",
		 retprobe ? "kretprobes" : "kprobes", probe_name);

	return parse_uint_from_file(file, "%d\n");
}

static int perf_event_kprobe_open_legacy(const char *probe_name, bool retprobe,
					 const char *kfunc_name, size_t offset, int pid)
9671 9672 9673 9674 9675
{
	struct perf_event_attr attr = {};
	char errmsg[STRERR_BUFSIZE];
	int type, pfd, err;

9676
	err = add_kprobe_event_legacy(probe_name, retprobe, kfunc_name, offset);
9677
	if (err < 0) {
9678 9679
		pr_warn("failed to add legacy kprobe event for '%s+0x%zx': %s\n",
			kfunc_name, offset,
9680 9681 9682
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
		return err;
	}
9683
	type = determine_kprobe_perf_type_legacy(probe_name, retprobe);
9684
	if (type < 0) {
9685 9686
		pr_warn("failed to determine legacy kprobe event id for '%s+0x%zx': %s\n",
			kfunc_name, offset,
9687 9688 9689 9690 9691 9692 9693 9694 9695 9696 9697 9698 9699 9700 9701 9702 9703 9704 9705 9706
			libbpf_strerror_r(type, errmsg, sizeof(errmsg)));
		return type;
	}
	attr.size = sizeof(attr);
	attr.config = type;
	attr.type = PERF_TYPE_TRACEPOINT;

	pfd = syscall(__NR_perf_event_open, &attr,
		      pid < 0 ? -1 : pid, /* pid */
		      pid == -1 ? 0 : -1, /* cpu */
		      -1 /* group_fd */,  PERF_FLAG_FD_CLOEXEC);
	if (pfd < 0) {
		err = -errno;
		pr_warn("legacy kprobe perf_event_open() failed: %s\n",
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
		return err;
	}
	return pfd;
}

9707
struct bpf_link *
9708
bpf_program__attach_kprobe_opts(const struct bpf_program *prog,
9709
				const char *func_name,
9710
				const struct bpf_kprobe_opts *opts)
9711
{
9712
	DECLARE_LIBBPF_OPTS(bpf_perf_event_opts, pe_opts);
9713
	char errmsg[STRERR_BUFSIZE];
9714
	char *legacy_probe = NULL;
9715
	struct bpf_link *link;
9716
	size_t offset;
9717
	bool retprobe, legacy;
9718 9719
	int pfd, err;

9720 9721 9722 9723 9724
	if (!OPTS_VALID(opts, bpf_kprobe_opts))
		return libbpf_err_ptr(-EINVAL);

	retprobe = OPTS_GET(opts, retprobe, false);
	offset = OPTS_GET(opts, offset, 0);
9725
	pe_opts.bpf_cookie = OPTS_GET(opts, bpf_cookie, 0);
9726

9727 9728 9729 9730 9731 9732
	legacy = determine_kprobe_perf_type() < 0;
	if (!legacy) {
		pfd = perf_event_open_probe(false /* uprobe */, retprobe,
					    func_name, offset,
					    -1 /* pid */, 0 /* ref_ctr_off */);
	} else {
9733 9734 9735 9736 9737
		char probe_name[256];

		gen_kprobe_legacy_event_name(probe_name, sizeof(probe_name),
					     func_name, offset);

9738 9739 9740 9741
		legacy_probe = strdup(func_name);
		if (!legacy_probe)
			return libbpf_err_ptr(-ENOMEM);

9742
		pfd = perf_event_kprobe_open_legacy(legacy_probe, retprobe, func_name,
9743 9744
						    offset, -1 /* pid */);
	}
9745
	if (pfd < 0) {
9746 9747 9748 9749
		err = -errno;
		pr_warn("prog '%s': failed to create %s '%s+0x%zx' perf event: %s\n",
			prog->name, retprobe ? "kretprobe" : "kprobe",
			func_name, offset,
9750 9751
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
		goto err_out;
9752
	}
9753
	link = bpf_program__attach_perf_event_opts(prog, pfd, &pe_opts);
9754 9755
	err = libbpf_get_error(link);
	if (err) {
9756
		close(pfd);
9757 9758 9759
		pr_warn("prog '%s': failed to attach to %s '%s+0x%zx': %s\n",
			prog->name, retprobe ? "kretprobe" : "kprobe",
			func_name, offset,
9760
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
9761
		goto err_out;
9762
	}
9763 9764 9765 9766
	if (legacy) {
		struct bpf_link_perf *perf_link = container_of(link, struct bpf_link_perf, link);

		perf_link->legacy_probe_name = legacy_probe;
9767
		perf_link->legacy_is_kprobe = true;
9768 9769 9770
		perf_link->legacy_is_retprobe = retprobe;
	}

9771
	return link;
9772 9773 9774
err_out:
	free(legacy_probe);
	return libbpf_err_ptr(err);
9775 9776
}

9777
struct bpf_link *bpf_program__attach_kprobe(const struct bpf_program *prog,
9778 9779 9780
					    bool retprobe,
					    const char *func_name)
{
9781
	DECLARE_LIBBPF_OPTS(bpf_kprobe_opts, opts,
9782
		.retprobe = retprobe,
9783
	);
9784 9785 9786 9787

	return bpf_program__attach_kprobe_opts(prog, func_name, &opts);
}

9788
static struct bpf_link *attach_kprobe(const struct bpf_program *prog, long cookie)
9789
{
9790
	DECLARE_LIBBPF_OPTS(bpf_kprobe_opts, opts);
9791 9792
	unsigned long offset = 0;
	struct bpf_link *link;
9793
	const char *func_name;
9794 9795
	char *func;
	int n, err;
9796

9797 9798 9799 9800 9801
	opts.retprobe = str_has_pfx(prog->sec_name, "kretprobe/");
	if (opts.retprobe)
		func_name = prog->sec_name + sizeof("kretprobe/") - 1;
	else
		func_name = prog->sec_name + sizeof("kprobe/") - 1;
9802

9803
	n = sscanf(func_name, "%m[a-zA-Z0-9_.]+%li", &func, &offset);
9804 9805 9806 9807 9808 9809
	if (n < 1) {
		err = -EINVAL;
		pr_warn("kprobe name is invalid: %s\n", func_name);
		return libbpf_err_ptr(err);
	}
	if (opts.retprobe && offset != 0) {
9810
		free(func);
9811 9812 9813 9814
		err = -EINVAL;
		pr_warn("kretprobes do not support offset specification\n");
		return libbpf_err_ptr(err);
	}
9815

9816 9817 9818 9819
	opts.offset = offset;
	link = bpf_program__attach_kprobe_opts(prog, func, &opts);
	free(func);
	return link;
9820 9821
}

9822 9823 9824 9825 9826 9827 9828 9829 9830 9831 9832 9833 9834 9835 9836 9837 9838 9839 9840 9841 9842 9843 9844 9845 9846 9847 9848 9849 9850 9851 9852 9853 9854 9855 9856 9857 9858 9859 9860 9861 9862 9863 9864 9865 9866 9867 9868 9869 9870 9871 9872 9873 9874 9875 9876 9877 9878 9879 9880 9881 9882 9883 9884 9885 9886 9887 9888 9889 9890 9891 9892 9893 9894 9895 9896 9897 9898 9899 9900
static void gen_uprobe_legacy_event_name(char *buf, size_t buf_sz,
					 const char *binary_path, uint64_t offset)
{
	int i;

	snprintf(buf, buf_sz, "libbpf_%u_%s_0x%zx", getpid(), binary_path, (size_t)offset);

	/* sanitize binary_path in the probe name */
	for (i = 0; buf[i]; i++) {
		if (!isalnum(buf[i]))
			buf[i] = '_';
	}
}

static inline int add_uprobe_event_legacy(const char *probe_name, bool retprobe,
					  const char *binary_path, size_t offset)
{
	const char *file = "/sys/kernel/debug/tracing/uprobe_events";

	return append_to_file(file, "%c:%s/%s %s:0x%zx",
			      retprobe ? 'r' : 'p',
			      retprobe ? "uretprobes" : "uprobes",
			      probe_name, binary_path, offset);
}

static inline int remove_uprobe_event_legacy(const char *probe_name, bool retprobe)
{
	const char *file = "/sys/kernel/debug/tracing/uprobe_events";

	return append_to_file(file, "-:%s/%s", retprobe ? "uretprobes" : "uprobes", probe_name);
}

static int determine_uprobe_perf_type_legacy(const char *probe_name, bool retprobe)
{
	char file[512];

	snprintf(file, sizeof(file),
		 "/sys/kernel/debug/tracing/events/%s/%s/id",
		 retprobe ? "uretprobes" : "uprobes", probe_name);

	return parse_uint_from_file(file, "%d\n");
}

static int perf_event_uprobe_open_legacy(const char *probe_name, bool retprobe,
					 const char *binary_path, size_t offset, int pid)
{
	struct perf_event_attr attr;
	int type, pfd, err;

	err = add_uprobe_event_legacy(probe_name, retprobe, binary_path, offset);
	if (err < 0) {
		pr_warn("failed to add legacy uprobe event for %s:0x%zx: %d\n",
			binary_path, (size_t)offset, err);
		return err;
	}
	type = determine_uprobe_perf_type_legacy(probe_name, retprobe);
	if (type < 0) {
		pr_warn("failed to determine legacy uprobe event id for %s:0x%zx: %d\n",
			binary_path, offset, err);
		return type;
	}

	memset(&attr, 0, sizeof(attr));
	attr.size = sizeof(attr);
	attr.config = type;
	attr.type = PERF_TYPE_TRACEPOINT;

	pfd = syscall(__NR_perf_event_open, &attr,
		      pid < 0 ? -1 : pid, /* pid */
		      pid == -1 ? 0 : -1, /* cpu */
		      -1 /* group_fd */,  PERF_FLAG_FD_CLOEXEC);
	if (pfd < 0) {
		err = -errno;
		pr_warn("legacy uprobe perf_event_open() failed: %d\n", err);
		return err;
	}
	return pfd;
}

9901
LIBBPF_API struct bpf_link *
9902
bpf_program__attach_uprobe_opts(const struct bpf_program *prog, pid_t pid,
9903 9904
				const char *binary_path, size_t func_offset,
				const struct bpf_uprobe_opts *opts)
9905
{
9906
	DECLARE_LIBBPF_OPTS(bpf_perf_event_opts, pe_opts);
9907
	char errmsg[STRERR_BUFSIZE], *legacy_probe = NULL;
9908
	struct bpf_link *link;
9909
	size_t ref_ctr_off;
9910
	int pfd, err;
9911
	bool retprobe, legacy;
9912 9913 9914 9915 9916

	if (!OPTS_VALID(opts, bpf_uprobe_opts))
		return libbpf_err_ptr(-EINVAL);

	retprobe = OPTS_GET(opts, retprobe, false);
9917
	ref_ctr_off = OPTS_GET(opts, ref_ctr_offset, 0);
9918
	pe_opts.bpf_cookie = OPTS_GET(opts, bpf_cookie, 0);
9919

9920 9921 9922 9923 9924 9925 9926 9927 9928 9929 9930 9931 9932 9933 9934 9935 9936 9937 9938 9939
	legacy = determine_uprobe_perf_type() < 0;
	if (!legacy) {
		pfd = perf_event_open_probe(true /* uprobe */, retprobe, binary_path,
					    func_offset, pid, ref_ctr_off);
	} else {
		char probe_name[512];

		if (ref_ctr_off)
			return libbpf_err_ptr(-EINVAL);

		gen_uprobe_legacy_event_name(probe_name, sizeof(probe_name),
					     binary_path, func_offset);

		legacy_probe = strdup(probe_name);
		if (!legacy_probe)
			return libbpf_err_ptr(-ENOMEM);

		pfd = perf_event_uprobe_open_legacy(legacy_probe, retprobe,
						    binary_path, func_offset, pid);
	}
9940
	if (pfd < 0) {
9941
		err = -errno;
9942 9943
		pr_warn("prog '%s': failed to create %s '%s:0x%zx' perf event: %s\n",
			prog->name, retprobe ? "uretprobe" : "uprobe",
9944
			binary_path, func_offset,
9945 9946
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
		goto err_out;
9947
	}
9948

9949
	link = bpf_program__attach_perf_event_opts(prog, pfd, &pe_opts);
9950 9951
	err = libbpf_get_error(link);
	if (err) {
9952
		close(pfd);
9953 9954
		pr_warn("prog '%s': failed to attach to %s '%s:0x%zx': %s\n",
			prog->name, retprobe ? "uretprobe" : "uprobe",
9955 9956
			binary_path, func_offset,
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
9957 9958 9959 9960 9961 9962 9963 9964
		goto err_out;
	}
	if (legacy) {
		struct bpf_link_perf *perf_link = container_of(link, struct bpf_link_perf, link);

		perf_link->legacy_probe_name = legacy_probe;
		perf_link->legacy_is_kprobe = false;
		perf_link->legacy_is_retprobe = retprobe;
9965 9966
	}
	return link;
9967 9968 9969 9970
err_out:
	free(legacy_probe);
	return libbpf_err_ptr(err);

9971 9972
}

9973
struct bpf_link *bpf_program__attach_uprobe(const struct bpf_program *prog,
9974 9975 9976 9977 9978 9979 9980 9981 9982
					    bool retprobe, pid_t pid,
					    const char *binary_path,
					    size_t func_offset)
{
	DECLARE_LIBBPF_OPTS(bpf_uprobe_opts, opts, .retprobe = retprobe);

	return bpf_program__attach_uprobe_opts(prog, pid, binary_path, func_offset, &opts);
}

9983 9984 9985 9986 9987 9988 9989 9990 9991 9992 9993 9994 9995 9996 9997 9998 9999 10000 10001 10002 10003 10004 10005 10006 10007 10008 10009 10010
static int determine_tracepoint_id(const char *tp_category,
				   const char *tp_name)
{
	char file[PATH_MAX];
	int ret;

	ret = snprintf(file, sizeof(file),
		       "/sys/kernel/debug/tracing/events/%s/%s/id",
		       tp_category, tp_name);
	if (ret < 0)
		return -errno;
	if (ret >= sizeof(file)) {
		pr_debug("tracepoint %s/%s path is too long\n",
			 tp_category, tp_name);
		return -E2BIG;
	}
	return parse_uint_from_file(file, "%d\n");
}

static int perf_event_open_tracepoint(const char *tp_category,
				      const char *tp_name)
{
	struct perf_event_attr attr = {};
	char errmsg[STRERR_BUFSIZE];
	int tp_id, pfd, err;

	tp_id = determine_tracepoint_id(tp_category, tp_name);
	if (tp_id < 0) {
10011 10012 10013
		pr_warn("failed to determine tracepoint '%s/%s' perf event ID: %s\n",
			tp_category, tp_name,
			libbpf_strerror_r(tp_id, errmsg, sizeof(errmsg)));
10014 10015 10016 10017 10018 10019 10020 10021 10022 10023 10024
		return tp_id;
	}

	attr.type = PERF_TYPE_TRACEPOINT;
	attr.size = sizeof(attr);
	attr.config = tp_id;

	pfd = syscall(__NR_perf_event_open, &attr, -1 /* pid */, 0 /* cpu */,
		      -1 /* group_fd */, PERF_FLAG_FD_CLOEXEC);
	if (pfd < 0) {
		err = -errno;
10025 10026 10027
		pr_warn("tracepoint '%s/%s' perf_event_open() failed: %s\n",
			tp_category, tp_name,
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
10028 10029 10030 10031 10032
		return err;
	}
	return pfd;
}

10033
struct bpf_link *bpf_program__attach_tracepoint_opts(const struct bpf_program *prog,
10034 10035 10036
						     const char *tp_category,
						     const char *tp_name,
						     const struct bpf_tracepoint_opts *opts)
10037
{
10038
	DECLARE_LIBBPF_OPTS(bpf_perf_event_opts, pe_opts);
10039 10040 10041 10042
	char errmsg[STRERR_BUFSIZE];
	struct bpf_link *link;
	int pfd, err;

10043 10044 10045 10046 10047
	if (!OPTS_VALID(opts, bpf_tracepoint_opts))
		return libbpf_err_ptr(-EINVAL);

	pe_opts.bpf_cookie = OPTS_GET(opts, bpf_cookie, 0);

10048 10049
	pfd = perf_event_open_tracepoint(tp_category, tp_name);
	if (pfd < 0) {
10050 10051
		pr_warn("prog '%s': failed to create tracepoint '%s/%s' perf event: %s\n",
			prog->name, tp_category, tp_name,
10052
			libbpf_strerror_r(pfd, errmsg, sizeof(errmsg)));
10053
		return libbpf_err_ptr(pfd);
10054
	}
10055
	link = bpf_program__attach_perf_event_opts(prog, pfd, &pe_opts);
10056 10057
	err = libbpf_get_error(link);
	if (err) {
10058
		close(pfd);
10059 10060
		pr_warn("prog '%s': failed to attach to tracepoint '%s/%s': %s\n",
			prog->name, tp_category, tp_name,
10061
			libbpf_strerror_r(err, errmsg, sizeof(errmsg)));
10062
		return libbpf_err_ptr(err);
10063 10064 10065 10066
	}
	return link;
}

10067
struct bpf_link *bpf_program__attach_tracepoint(const struct bpf_program *prog,
10068 10069 10070 10071 10072 10073
						const char *tp_category,
						const char *tp_name)
{
	return bpf_program__attach_tracepoint_opts(prog, tp_category, tp_name, NULL);
}

10074
static struct bpf_link *attach_tp(const struct bpf_program *prog, long cookie)
10075 10076 10077 10078
{
	char *sec_name, *tp_cat, *tp_name;
	struct bpf_link *link;

10079
	sec_name = strdup(prog->sec_name);
10080
	if (!sec_name)
10081
		return libbpf_err_ptr(-ENOMEM);
10082

10083 10084 10085 10086 10087
	/* extract "tp/<category>/<name>" or "tracepoint/<category>/<name>" */
	if (str_has_pfx(prog->sec_name, "tp/"))
		tp_cat = sec_name + sizeof("tp/") - 1;
	else
		tp_cat = sec_name + sizeof("tracepoint/") - 1;
10088 10089
	tp_name = strchr(tp_cat, '/');
	if (!tp_name) {
10090 10091
		free(sec_name);
		return libbpf_err_ptr(-EINVAL);
10092 10093 10094 10095 10096 10097 10098 10099 10100
	}
	*tp_name = '\0';
	tp_name++;

	link = bpf_program__attach_tracepoint(prog, tp_cat, tp_name);
	free(sec_name);
	return link;
}

10101
struct bpf_link *bpf_program__attach_raw_tracepoint(const struct bpf_program *prog,
10102 10103 10104
						    const char *tp_name)
{
	char errmsg[STRERR_BUFSIZE];
10105
	struct bpf_link *link;
10106 10107 10108 10109
	int prog_fd, pfd;

	prog_fd = bpf_program__fd(prog);
	if (prog_fd < 0) {
10110
		pr_warn("prog '%s': can't attach before loaded\n", prog->name);
10111
		return libbpf_err_ptr(-EINVAL);
10112 10113
	}

10114
	link = calloc(1, sizeof(*link));
10115
	if (!link)
10116
		return libbpf_err_ptr(-ENOMEM);
10117
	link->detach = &bpf_link__detach_fd;
10118 10119 10120 10121 10122

	pfd = bpf_raw_tracepoint_open(tp_name, prog_fd);
	if (pfd < 0) {
		pfd = -errno;
		free(link);
10123 10124
		pr_warn("prog '%s': failed to attach to raw tracepoint '%s': %s\n",
			prog->name, tp_name, libbpf_strerror_r(pfd, errmsg, sizeof(errmsg)));
10125
		return libbpf_err_ptr(pfd);
10126 10127
	}
	link->fd = pfd;
10128
	return link;
10129 10130
}

10131
static struct bpf_link *attach_raw_tp(const struct bpf_program *prog, long cookie)
10132
{
10133 10134 10135 10136 10137 10138 10139 10140
	static const char *const prefixes[] = {
		"raw_tp/",
		"raw_tracepoint/",
		"raw_tp.w/",
		"raw_tracepoint.w/",
	};
	size_t i;
	const char *tp_name = NULL;
10141

10142 10143 10144 10145 10146 10147 10148 10149 10150 10151 10152
	for (i = 0; i < ARRAY_SIZE(prefixes); i++) {
		if (str_has_pfx(prog->sec_name, prefixes[i])) {
			tp_name = prog->sec_name + strlen(prefixes[i]);
			break;
		}
	}
	if (!tp_name) {
		pr_warn("prog '%s': invalid section name '%s'\n",
			prog->name, prog->sec_name);
		return libbpf_err_ptr(-EINVAL);
	}
10153 10154 10155 10156

	return bpf_program__attach_raw_tracepoint(prog, tp_name);
}

10157
/* Common logic for all BPF program types that attach to a btf_id */
10158
static struct bpf_link *bpf_program__attach_btf_id(const struct bpf_program *prog)
10159 10160
{
	char errmsg[STRERR_BUFSIZE];
10161
	struct bpf_link *link;
10162 10163 10164 10165
	int prog_fd, pfd;

	prog_fd = bpf_program__fd(prog);
	if (prog_fd < 0) {
10166
		pr_warn("prog '%s': can't attach before loaded\n", prog->name);
10167
		return libbpf_err_ptr(-EINVAL);
10168 10169
	}

10170
	link = calloc(1, sizeof(*link));
10171
	if (!link)
10172
		return libbpf_err_ptr(-ENOMEM);
10173
	link->detach = &bpf_link__detach_fd;
10174 10175 10176 10177 10178

	pfd = bpf_raw_tracepoint_open(NULL, prog_fd);
	if (pfd < 0) {
		pfd = -errno;
		free(link);
10179 10180
		pr_warn("prog '%s': failed to attach: %s\n",
			prog->name, libbpf_strerror_r(pfd, errmsg, sizeof(errmsg)));
10181
		return libbpf_err_ptr(pfd);
10182 10183 10184 10185 10186
	}
	link->fd = pfd;
	return (struct bpf_link *)link;
}

10187
struct bpf_link *bpf_program__attach_trace(const struct bpf_program *prog)
10188 10189 10190 10191
{
	return bpf_program__attach_btf_id(prog);
}

10192
struct bpf_link *bpf_program__attach_lsm(const struct bpf_program *prog)
10193 10194 10195 10196
{
	return bpf_program__attach_btf_id(prog);
}

10197
static struct bpf_link *attach_trace(const struct bpf_program *prog, long cookie)
10198 10199 10200 10201
{
	return bpf_program__attach_trace(prog);
}

10202
static struct bpf_link *attach_lsm(const struct bpf_program *prog, long cookie)
10203 10204 10205 10206
{
	return bpf_program__attach_lsm(prog);
}

10207
static struct bpf_link *
10208
bpf_program__attach_fd(const struct bpf_program *prog, int target_fd, int btf_id,
10209
		       const char *target_name)
10210
{
10211 10212
	DECLARE_LIBBPF_OPTS(bpf_link_create_opts, opts,
			    .target_btf_id = btf_id);
10213 10214 10215 10216 10217 10218 10219
	enum bpf_attach_type attach_type;
	char errmsg[STRERR_BUFSIZE];
	struct bpf_link *link;
	int prog_fd, link_fd;

	prog_fd = bpf_program__fd(prog);
	if (prog_fd < 0) {
10220
		pr_warn("prog '%s': can't attach before loaded\n", prog->name);
10221
		return libbpf_err_ptr(-EINVAL);
10222 10223 10224 10225
	}

	link = calloc(1, sizeof(*link));
	if (!link)
10226
		return libbpf_err_ptr(-ENOMEM);
10227 10228 10229
	link->detach = &bpf_link__detach_fd;

	attach_type = bpf_program__get_expected_attach_type(prog);
10230
	link_fd = bpf_link_create(prog_fd, target_fd, attach_type, &opts);
10231 10232 10233
	if (link_fd < 0) {
		link_fd = -errno;
		free(link);
10234 10235
		pr_warn("prog '%s': failed to attach to %s: %s\n",
			prog->name, target_name,
10236
			libbpf_strerror_r(link_fd, errmsg, sizeof(errmsg)));
10237
		return libbpf_err_ptr(link_fd);
10238 10239 10240 10241 10242
	}
	link->fd = link_fd;
	return link;
}

10243
struct bpf_link *
10244
bpf_program__attach_cgroup(const struct bpf_program *prog, int cgroup_fd)
10245
{
10246
	return bpf_program__attach_fd(prog, cgroup_fd, 0, "cgroup");
10247 10248 10249
}

struct bpf_link *
10250
bpf_program__attach_netns(const struct bpf_program *prog, int netns_fd)
10251
{
10252
	return bpf_program__attach_fd(prog, netns_fd, 0, "netns");
10253 10254
}

10255
struct bpf_link *bpf_program__attach_xdp(const struct bpf_program *prog, int ifindex)
10256 10257
{
	/* target_fd/target_ifindex use the same field in LINK_CREATE */
10258 10259 10260
	return bpf_program__attach_fd(prog, ifindex, 0, "xdp");
}

10261
struct bpf_link *bpf_program__attach_freplace(const struct bpf_program *prog,
10262 10263 10264 10265 10266 10267 10268 10269
					      int target_fd,
					      const char *attach_func_name)
{
	int btf_id;

	if (!!target_fd != !!attach_func_name) {
		pr_warn("prog '%s': supply none or both of target_fd and attach_func_name\n",
			prog->name);
10270
		return libbpf_err_ptr(-EINVAL);
10271 10272 10273 10274 10275
	}

	if (prog->type != BPF_PROG_TYPE_EXT) {
		pr_warn("prog '%s': only BPF_PROG_TYPE_EXT can attach as freplace",
			prog->name);
10276
		return libbpf_err_ptr(-EINVAL);
10277 10278 10279 10280 10281
	}

	if (target_fd) {
		btf_id = libbpf_find_prog_btf_id(attach_func_name, target_fd);
		if (btf_id < 0)
10282
			return libbpf_err_ptr(btf_id);
10283 10284 10285 10286 10287 10288 10289 10290

		return bpf_program__attach_fd(prog, target_fd, btf_id, "freplace");
	} else {
		/* no target, so use raw_tracepoint_open for compatibility
		 * with old kernels
		 */
		return bpf_program__attach_trace(prog);
	}
10291 10292
}

10293
struct bpf_link *
10294
bpf_program__attach_iter(const struct bpf_program *prog,
10295 10296
			 const struct bpf_iter_attach_opts *opts)
{
10297
	DECLARE_LIBBPF_OPTS(bpf_link_create_opts, link_create_opts);
10298 10299 10300
	char errmsg[STRERR_BUFSIZE];
	struct bpf_link *link;
	int prog_fd, link_fd;
10301
	__u32 target_fd = 0;
10302 10303

	if (!OPTS_VALID(opts, bpf_iter_attach_opts))
10304
		return libbpf_err_ptr(-EINVAL);
10305

10306 10307
	link_create_opts.iter_info = OPTS_GET(opts, link_info, (void *)0);
	link_create_opts.iter_info_len = OPTS_GET(opts, link_info_len, 0);
10308

10309 10310
	prog_fd = bpf_program__fd(prog);
	if (prog_fd < 0) {
10311
		pr_warn("prog '%s': can't attach before loaded\n", prog->name);
10312
		return libbpf_err_ptr(-EINVAL);
10313 10314 10315 10316
	}

	link = calloc(1, sizeof(*link));
	if (!link)
10317
		return libbpf_err_ptr(-ENOMEM);
10318 10319
	link->detach = &bpf_link__detach_fd;

10320 10321
	link_fd = bpf_link_create(prog_fd, target_fd, BPF_TRACE_ITER,
				  &link_create_opts);
10322 10323 10324
	if (link_fd < 0) {
		link_fd = -errno;
		free(link);
10325 10326
		pr_warn("prog '%s': failed to attach to iterator: %s\n",
			prog->name, libbpf_strerror_r(link_fd, errmsg, sizeof(errmsg)));
10327
		return libbpf_err_ptr(link_fd);
10328 10329 10330 10331 10332
	}
	link->fd = link_fd;
	return link;
}

10333
static struct bpf_link *attach_iter(const struct bpf_program *prog, long cookie)
10334 10335 10336 10337
{
	return bpf_program__attach_iter(prog, NULL);
}

10338
struct bpf_link *bpf_program__attach(const struct bpf_program *prog)
10339
{
10340
	if (!prog->sec_def || !prog->sec_def->attach_fn)
10341
		return libbpf_err_ptr(-ESRCH);
10342

10343
	return prog->sec_def->attach_fn(prog, prog->sec_def->cookie);
10344 10345
}

10346 10347 10348 10349
static int bpf_link__detach_struct_ops(struct bpf_link *link)
{
	__u32 zero = 0;

10350
	if (bpf_map_delete_elem(link->fd, &zero))
10351 10352 10353 10354 10355
		return -errno;

	return 0;
}

10356
struct bpf_link *bpf_map__attach_struct_ops(const struct bpf_map *map)
10357 10358
{
	struct bpf_struct_ops *st_ops;
10359
	struct bpf_link *link;
10360 10361 10362 10363
	__u32 i, zero = 0;
	int err;

	if (!bpf_map__is_struct_ops(map) || map->fd == -1)
10364
		return libbpf_err_ptr(-EINVAL);
10365 10366 10367

	link = calloc(1, sizeof(*link));
	if (!link)
10368
		return libbpf_err_ptr(-EINVAL);
10369 10370 10371 10372 10373 10374 10375 10376 10377 10378 10379 10380 10381 10382 10383 10384 10385 10386 10387

	st_ops = map->st_ops;
	for (i = 0; i < btf_vlen(st_ops->type); i++) {
		struct bpf_program *prog = st_ops->progs[i];
		void *kern_data;
		int prog_fd;

		if (!prog)
			continue;

		prog_fd = bpf_program__fd(prog);
		kern_data = st_ops->kern_vdata + st_ops->kern_func_off[i];
		*(unsigned long *)kern_data = prog_fd;
	}

	err = bpf_map_update_elem(map->fd, &zero, st_ops->kern_vdata, 0);
	if (err) {
		err = -errno;
		free(link);
10388
		return libbpf_err_ptr(err);
10389 10390
	}

10391
	link->detach = bpf_link__detach_struct_ops;
10392 10393
	link->fd = map->fd;

10394
	return link;
10395 10396
}

10397
enum bpf_perf_event_ret
10398 10399 10400
bpf_perf_event_read_simple(void *mmap_mem, size_t mmap_size, size_t page_size,
			   void **copy_mem, size_t *copy_size,
			   bpf_perf_event_print_t fn, void *private_data)
10401
{
10402
	struct perf_event_mmap_page *header = mmap_mem;
10403
	__u64 data_head = ring_buffer_read_head(header);
10404
	__u64 data_tail = header->data_tail;
10405 10406 10407 10408 10409 10410 10411 10412 10413 10414 10415 10416 10417 10418 10419 10420 10421 10422 10423
	void *base = ((__u8 *)header) + page_size;
	int ret = LIBBPF_PERF_EVENT_CONT;
	struct perf_event_header *ehdr;
	size_t ehdr_size;

	while (data_head != data_tail) {
		ehdr = base + (data_tail & (mmap_size - 1));
		ehdr_size = ehdr->size;

		if (((void *)ehdr) + ehdr_size > base + mmap_size) {
			void *copy_start = ehdr;
			size_t len_first = base + mmap_size - copy_start;
			size_t len_secnd = ehdr_size - len_first;

			if (*copy_size < ehdr_size) {
				free(*copy_mem);
				*copy_mem = malloc(ehdr_size);
				if (!*copy_mem) {
					*copy_size = 0;
10424 10425 10426
					ret = LIBBPF_PERF_EVENT_ERROR;
					break;
				}
10427
				*copy_size = ehdr_size;
10428 10429
			}

10430 10431 10432
			memcpy(*copy_mem, copy_start, len_first);
			memcpy(*copy_mem + len_first, base, len_secnd);
			ehdr = *copy_mem;
10433 10434
		}

10435 10436
		ret = fn(ehdr, private_data);
		data_tail += ehdr_size;
10437 10438 10439 10440
		if (ret != LIBBPF_PERF_EVENT_CONT)
			break;
	}

10441
	ring_buffer_write_tail(header, data_tail);
10442
	return libbpf_err(ret);
10443
}
10444

A
Andrii Nakryiko 已提交
10445 10446 10447 10448 10449 10450 10451 10452 10453 10454 10455 10456 10457 10458 10459 10460 10461 10462 10463 10464 10465 10466 10467 10468 10469 10470 10471 10472 10473 10474 10475 10476 10477 10478 10479
struct perf_buffer;

struct perf_buffer_params {
	struct perf_event_attr *attr;
	/* if event_cb is specified, it takes precendence */
	perf_buffer_event_fn event_cb;
	/* sample_cb and lost_cb are higher-level common-case callbacks */
	perf_buffer_sample_fn sample_cb;
	perf_buffer_lost_fn lost_cb;
	void *ctx;
	int cpu_cnt;
	int *cpus;
	int *map_keys;
};

struct perf_cpu_buf {
	struct perf_buffer *pb;
	void *base; /* mmap()'ed memory */
	void *buf; /* for reconstructing segmented data */
	size_t buf_size;
	int fd;
	int cpu;
	int map_key;
};

struct perf_buffer {
	perf_buffer_event_fn event_cb;
	perf_buffer_sample_fn sample_cb;
	perf_buffer_lost_fn lost_cb;
	void *ctx; /* passed into callbacks */

	size_t page_size;
	size_t mmap_size;
	struct perf_cpu_buf **cpu_bufs;
	struct epoll_event *events;
10480
	int cpu_cnt; /* number of allocated CPU buffers */
A
Andrii Nakryiko 已提交
10481 10482 10483 10484 10485 10486 10487 10488 10489 10490 10491
	int epoll_fd; /* perf event FD */
	int map_fd; /* BPF_MAP_TYPE_PERF_EVENT_ARRAY BPF map FD */
};

static void perf_buffer__free_cpu_buf(struct perf_buffer *pb,
				      struct perf_cpu_buf *cpu_buf)
{
	if (!cpu_buf)
		return;
	if (cpu_buf->base &&
	    munmap(cpu_buf->base, pb->mmap_size + pb->page_size))
10492
		pr_warn("failed to munmap cpu_buf #%d\n", cpu_buf->cpu);
A
Andrii Nakryiko 已提交
10493 10494 10495 10496 10497 10498 10499 10500 10501 10502 10503 10504
	if (cpu_buf->fd >= 0) {
		ioctl(cpu_buf->fd, PERF_EVENT_IOC_DISABLE, 0);
		close(cpu_buf->fd);
	}
	free(cpu_buf->buf);
	free(cpu_buf);
}

void perf_buffer__free(struct perf_buffer *pb)
{
	int i;

10505
	if (IS_ERR_OR_NULL(pb))
A
Andrii Nakryiko 已提交
10506 10507
		return;
	if (pb->cpu_bufs) {
10508
		for (i = 0; i < pb->cpu_cnt; i++) {
A
Andrii Nakryiko 已提交
10509 10510
			struct perf_cpu_buf *cpu_buf = pb->cpu_bufs[i];

10511 10512 10513
			if (!cpu_buf)
				continue;

A
Andrii Nakryiko 已提交
10514 10515 10516 10517 10518 10519 10520 10521 10522 10523 10524 10525 10526 10527 10528 10529 10530 10531 10532 10533 10534 10535 10536 10537 10538 10539 10540 10541 10542 10543 10544
			bpf_map_delete_elem(pb->map_fd, &cpu_buf->map_key);
			perf_buffer__free_cpu_buf(pb, cpu_buf);
		}
		free(pb->cpu_bufs);
	}
	if (pb->epoll_fd >= 0)
		close(pb->epoll_fd);
	free(pb->events);
	free(pb);
}

static struct perf_cpu_buf *
perf_buffer__open_cpu_buf(struct perf_buffer *pb, struct perf_event_attr *attr,
			  int cpu, int map_key)
{
	struct perf_cpu_buf *cpu_buf;
	char msg[STRERR_BUFSIZE];
	int err;

	cpu_buf = calloc(1, sizeof(*cpu_buf));
	if (!cpu_buf)
		return ERR_PTR(-ENOMEM);

	cpu_buf->pb = pb;
	cpu_buf->cpu = cpu;
	cpu_buf->map_key = map_key;

	cpu_buf->fd = syscall(__NR_perf_event_open, attr, -1 /* pid */, cpu,
			      -1, PERF_FLAG_FD_CLOEXEC);
	if (cpu_buf->fd < 0) {
		err = -errno;
10545 10546
		pr_warn("failed to open perf buffer event on cpu #%d: %s\n",
			cpu, libbpf_strerror_r(err, msg, sizeof(msg)));
A
Andrii Nakryiko 已提交
10547 10548 10549 10550 10551 10552 10553 10554 10555
		goto error;
	}

	cpu_buf->base = mmap(NULL, pb->mmap_size + pb->page_size,
			     PROT_READ | PROT_WRITE, MAP_SHARED,
			     cpu_buf->fd, 0);
	if (cpu_buf->base == MAP_FAILED) {
		cpu_buf->base = NULL;
		err = -errno;
10556 10557
		pr_warn("failed to mmap perf buffer on cpu #%d: %s\n",
			cpu, libbpf_strerror_r(err, msg, sizeof(msg)));
A
Andrii Nakryiko 已提交
10558 10559 10560 10561 10562
		goto error;
	}

	if (ioctl(cpu_buf->fd, PERF_EVENT_IOC_ENABLE, 0) < 0) {
		err = -errno;
10563 10564
		pr_warn("failed to enable perf buffer event on cpu #%d: %s\n",
			cpu, libbpf_strerror_r(err, msg, sizeof(msg)));
A
Andrii Nakryiko 已提交
10565 10566 10567 10568 10569 10570 10571 10572 10573 10574 10575 10576 10577 10578 10579 10580 10581
		goto error;
	}

	return cpu_buf;

error:
	perf_buffer__free_cpu_buf(pb, cpu_buf);
	return (struct perf_cpu_buf *)ERR_PTR(err);
}

static struct perf_buffer *__perf_buffer__new(int map_fd, size_t page_cnt,
					      struct perf_buffer_params *p);

struct perf_buffer *perf_buffer__new(int map_fd, size_t page_cnt,
				     const struct perf_buffer_opts *opts)
{
	struct perf_buffer_params p = {};
10582 10583
	struct perf_event_attr attr = { 0, };

X
Xu Wang 已提交
10584
	attr.config = PERF_COUNT_SW_BPF_OUTPUT;
10585 10586 10587 10588
	attr.type = PERF_TYPE_SOFTWARE;
	attr.sample_type = PERF_SAMPLE_RAW;
	attr.sample_period = 1;
	attr.wakeup_events = 1;
A
Andrii Nakryiko 已提交
10589 10590 10591 10592 10593 10594

	p.attr = &attr;
	p.sample_cb = opts ? opts->sample_cb : NULL;
	p.lost_cb = opts ? opts->lost_cb : NULL;
	p.ctx = opts ? opts->ctx : NULL;

10595
	return libbpf_ptr(__perf_buffer__new(map_fd, page_cnt, &p));
A
Andrii Nakryiko 已提交
10596 10597 10598 10599 10600 10601 10602 10603 10604 10605 10606 10607 10608 10609 10610
}

struct perf_buffer *
perf_buffer__new_raw(int map_fd, size_t page_cnt,
		     const struct perf_buffer_raw_opts *opts)
{
	struct perf_buffer_params p = {};

	p.attr = opts->attr;
	p.event_cb = opts->event_cb;
	p.ctx = opts->ctx;
	p.cpu_cnt = opts->cpu_cnt;
	p.cpus = opts->cpus;
	p.map_keys = opts->map_keys;

10611
	return libbpf_ptr(__perf_buffer__new(map_fd, page_cnt, &p));
A
Andrii Nakryiko 已提交
10612 10613 10614 10615 10616
}

static struct perf_buffer *__perf_buffer__new(int map_fd, size_t page_cnt,
					      struct perf_buffer_params *p)
{
10617
	const char *online_cpus_file = "/sys/devices/system/cpu/online";
10618
	struct bpf_map_info map;
A
Andrii Nakryiko 已提交
10619 10620
	char msg[STRERR_BUFSIZE];
	struct perf_buffer *pb;
10621
	bool *online = NULL;
A
Andrii Nakryiko 已提交
10622
	__u32 map_info_len;
10623
	int err, i, j, n;
A
Andrii Nakryiko 已提交
10624 10625

	if (page_cnt & (page_cnt - 1)) {
10626 10627
		pr_warn("page count should be power of two, but is %zu\n",
			page_cnt);
A
Andrii Nakryiko 已提交
10628 10629 10630
		return ERR_PTR(-EINVAL);
	}

10631 10632
	/* best-effort sanity checks */
	memset(&map, 0, sizeof(map));
A
Andrii Nakryiko 已提交
10633 10634 10635 10636
	map_info_len = sizeof(map);
	err = bpf_obj_get_info_by_fd(map_fd, &map, &map_info_len);
	if (err) {
		err = -errno;
10637 10638 10639 10640 10641 10642 10643 10644 10645 10646 10647 10648 10649 10650 10651 10652
		/* if BPF_OBJ_GET_INFO_BY_FD is supported, will return
		 * -EBADFD, -EFAULT, or -E2BIG on real error
		 */
		if (err != -EINVAL) {
			pr_warn("failed to get map info for map FD %d: %s\n",
				map_fd, libbpf_strerror_r(err, msg, sizeof(msg)));
			return ERR_PTR(err);
		}
		pr_debug("failed to get map info for FD %d; API not supported? Ignoring...\n",
			 map_fd);
	} else {
		if (map.type != BPF_MAP_TYPE_PERF_EVENT_ARRAY) {
			pr_warn("map '%s' should be BPF_MAP_TYPE_PERF_EVENT_ARRAY\n",
				map.name);
			return ERR_PTR(-EINVAL);
		}
A
Andrii Nakryiko 已提交
10653 10654 10655 10656 10657 10658 10659 10660 10661 10662 10663 10664 10665 10666 10667 10668 10669 10670
	}

	pb = calloc(1, sizeof(*pb));
	if (!pb)
		return ERR_PTR(-ENOMEM);

	pb->event_cb = p->event_cb;
	pb->sample_cb = p->sample_cb;
	pb->lost_cb = p->lost_cb;
	pb->ctx = p->ctx;

	pb->page_size = getpagesize();
	pb->mmap_size = pb->page_size * page_cnt;
	pb->map_fd = map_fd;

	pb->epoll_fd = epoll_create1(EPOLL_CLOEXEC);
	if (pb->epoll_fd < 0) {
		err = -errno;
10671 10672
		pr_warn("failed to create epoll instance: %s\n",
			libbpf_strerror_r(err, msg, sizeof(msg)));
A
Andrii Nakryiko 已提交
10673 10674 10675 10676 10677 10678 10679 10680 10681 10682 10683
		goto error;
	}

	if (p->cpu_cnt > 0) {
		pb->cpu_cnt = p->cpu_cnt;
	} else {
		pb->cpu_cnt = libbpf_num_possible_cpus();
		if (pb->cpu_cnt < 0) {
			err = pb->cpu_cnt;
			goto error;
		}
10684
		if (map.max_entries && map.max_entries < pb->cpu_cnt)
A
Andrii Nakryiko 已提交
10685 10686 10687 10688 10689 10690
			pb->cpu_cnt = map.max_entries;
	}

	pb->events = calloc(pb->cpu_cnt, sizeof(*pb->events));
	if (!pb->events) {
		err = -ENOMEM;
10691
		pr_warn("failed to allocate events: out of memory\n");
A
Andrii Nakryiko 已提交
10692 10693 10694 10695 10696
		goto error;
	}
	pb->cpu_bufs = calloc(pb->cpu_cnt, sizeof(*pb->cpu_bufs));
	if (!pb->cpu_bufs) {
		err = -ENOMEM;
10697
		pr_warn("failed to allocate buffers: out of memory\n");
A
Andrii Nakryiko 已提交
10698 10699 10700
		goto error;
	}

10701 10702 10703 10704 10705 10706 10707
	err = parse_cpu_mask_file(online_cpus_file, &online, &n);
	if (err) {
		pr_warn("failed to get online CPU mask: %d\n", err);
		goto error;
	}

	for (i = 0, j = 0; i < pb->cpu_cnt; i++) {
A
Andrii Nakryiko 已提交
10708 10709 10710 10711 10712 10713
		struct perf_cpu_buf *cpu_buf;
		int cpu, map_key;

		cpu = p->cpu_cnt > 0 ? p->cpus[i] : i;
		map_key = p->cpu_cnt > 0 ? p->map_keys[i] : i;

10714 10715 10716 10717 10718 10719
		/* in case user didn't explicitly requested particular CPUs to
		 * be attached to, skip offline/not present CPUs
		 */
		if (p->cpu_cnt <= 0 && (cpu >= n || !online[cpu]))
			continue;

A
Andrii Nakryiko 已提交
10720 10721 10722 10723 10724 10725
		cpu_buf = perf_buffer__open_cpu_buf(pb, p->attr, cpu, map_key);
		if (IS_ERR(cpu_buf)) {
			err = PTR_ERR(cpu_buf);
			goto error;
		}

10726
		pb->cpu_bufs[j] = cpu_buf;
A
Andrii Nakryiko 已提交
10727 10728 10729 10730 10731

		err = bpf_map_update_elem(pb->map_fd, &map_key,
					  &cpu_buf->fd, 0);
		if (err) {
			err = -errno;
10732 10733 10734
			pr_warn("failed to set cpu #%d, key %d -> perf FD %d: %s\n",
				cpu, map_key, cpu_buf->fd,
				libbpf_strerror_r(err, msg, sizeof(msg)));
A
Andrii Nakryiko 已提交
10735 10736 10737
			goto error;
		}

10738 10739
		pb->events[j].events = EPOLLIN;
		pb->events[j].data.ptr = cpu_buf;
A
Andrii Nakryiko 已提交
10740
		if (epoll_ctl(pb->epoll_fd, EPOLL_CTL_ADD, cpu_buf->fd,
10741
			      &pb->events[j]) < 0) {
A
Andrii Nakryiko 已提交
10742
			err = -errno;
10743 10744 10745
			pr_warn("failed to epoll_ctl cpu #%d perf FD %d: %s\n",
				cpu, cpu_buf->fd,
				libbpf_strerror_r(err, msg, sizeof(msg)));
A
Andrii Nakryiko 已提交
10746 10747
			goto error;
		}
10748
		j++;
A
Andrii Nakryiko 已提交
10749
	}
10750 10751
	pb->cpu_cnt = j;
	free(online);
A
Andrii Nakryiko 已提交
10752 10753 10754 10755

	return pb;

error:
10756
	free(online);
A
Andrii Nakryiko 已提交
10757 10758 10759 10760 10761 10762 10763 10764
	if (pb)
		perf_buffer__free(pb);
	return ERR_PTR(err);
}

struct perf_sample_raw {
	struct perf_event_header header;
	uint32_t size;
10765
	char data[];
A
Andrii Nakryiko 已提交
10766 10767 10768 10769 10770 10771 10772 10773 10774 10775 10776 10777 10778 10779 10780 10781 10782 10783 10784 10785 10786 10787 10788 10789 10790 10791 10792 10793 10794 10795 10796 10797 10798 10799 10800 10801
};

struct perf_sample_lost {
	struct perf_event_header header;
	uint64_t id;
	uint64_t lost;
	uint64_t sample_id;
};

static enum bpf_perf_event_ret
perf_buffer__process_record(struct perf_event_header *e, void *ctx)
{
	struct perf_cpu_buf *cpu_buf = ctx;
	struct perf_buffer *pb = cpu_buf->pb;
	void *data = e;

	/* user wants full control over parsing perf event */
	if (pb->event_cb)
		return pb->event_cb(pb->ctx, cpu_buf->cpu, e);

	switch (e->type) {
	case PERF_RECORD_SAMPLE: {
		struct perf_sample_raw *s = data;

		if (pb->sample_cb)
			pb->sample_cb(pb->ctx, cpu_buf->cpu, s->data, s->size);
		break;
	}
	case PERF_RECORD_LOST: {
		struct perf_sample_lost *s = data;

		if (pb->lost_cb)
			pb->lost_cb(pb->ctx, cpu_buf->cpu, s->lost);
		break;
	}
	default:
10802
		pr_warn("unknown perf sample type %d\n", e->type);
A
Andrii Nakryiko 已提交
10803 10804 10805 10806 10807 10808 10809 10810 10811 10812 10813 10814 10815 10816 10817 10818 10819 10820 10821
		return LIBBPF_PERF_EVENT_ERROR;
	}
	return LIBBPF_PERF_EVENT_CONT;
}

static int perf_buffer__process_records(struct perf_buffer *pb,
					struct perf_cpu_buf *cpu_buf)
{
	enum bpf_perf_event_ret ret;

	ret = bpf_perf_event_read_simple(cpu_buf->base, pb->mmap_size,
					 pb->page_size, &cpu_buf->buf,
					 &cpu_buf->buf_size,
					 perf_buffer__process_record, cpu_buf);
	if (ret != LIBBPF_PERF_EVENT_CONT)
		return ret;
	return 0;
}

10822 10823 10824 10825 10826
int perf_buffer__epoll_fd(const struct perf_buffer *pb)
{
	return pb->epoll_fd;
}

A
Andrii Nakryiko 已提交
10827 10828 10829 10830 10831
int perf_buffer__poll(struct perf_buffer *pb, int timeout_ms)
{
	int i, cnt, err;

	cnt = epoll_wait(pb->epoll_fd, pb->events, pb->cpu_cnt, timeout_ms);
10832
	if (cnt < 0)
10833
		return -errno;
10834

A
Andrii Nakryiko 已提交
10835 10836 10837 10838 10839
	for (i = 0; i < cnt; i++) {
		struct perf_cpu_buf *cpu_buf = pb->events[i].data.ptr;

		err = perf_buffer__process_records(pb, cpu_buf);
		if (err) {
10840
			pr_warn("error while processing records: %d\n", err);
10841
			return libbpf_err(err);
A
Andrii Nakryiko 已提交
10842 10843
		}
	}
10844
	return cnt;
A
Andrii Nakryiko 已提交
10845 10846
}

10847 10848 10849 10850 10851 10852 10853 10854 10855 10856 10857 10858 10859 10860 10861 10862 10863 10864
/* Return number of PERF_EVENT_ARRAY map slots set up by this perf_buffer
 * manager.
 */
size_t perf_buffer__buffer_cnt(const struct perf_buffer *pb)
{
	return pb->cpu_cnt;
}

/*
 * Return perf_event FD of a ring buffer in *buf_idx* slot of
 * PERF_EVENT_ARRAY BPF map. This FD can be polled for new data using
 * select()/poll()/epoll() Linux syscalls.
 */
int perf_buffer__buffer_fd(const struct perf_buffer *pb, size_t buf_idx)
{
	struct perf_cpu_buf *cpu_buf;

	if (buf_idx >= pb->cpu_cnt)
10865
		return libbpf_err(-EINVAL);
10866 10867 10868

	cpu_buf = pb->cpu_bufs[buf_idx];
	if (!cpu_buf)
10869
		return libbpf_err(-ENOENT);
10870 10871 10872 10873 10874 10875 10876 10877 10878 10879 10880 10881 10882 10883 10884 10885 10886

	return cpu_buf->fd;
}

/*
 * Consume data from perf ring buffer corresponding to slot *buf_idx* in
 * PERF_EVENT_ARRAY BPF map without waiting/polling. If there is no data to
 * consume, do nothing and return success.
 * Returns:
 *   - 0 on success;
 *   - <0 on failure.
 */
int perf_buffer__consume_buffer(struct perf_buffer *pb, size_t buf_idx)
{
	struct perf_cpu_buf *cpu_buf;

	if (buf_idx >= pb->cpu_cnt)
10887
		return libbpf_err(-EINVAL);
10888 10889 10890

	cpu_buf = pb->cpu_bufs[buf_idx];
	if (!cpu_buf)
10891
		return libbpf_err(-ENOENT);
10892 10893 10894 10895

	return perf_buffer__process_records(pb, cpu_buf);
}

10896 10897 10898 10899 10900 10901 10902 10903 10904 10905 10906 10907
int perf_buffer__consume(struct perf_buffer *pb)
{
	int i, err;

	for (i = 0; i < pb->cpu_cnt; i++) {
		struct perf_cpu_buf *cpu_buf = pb->cpu_bufs[i];

		if (!cpu_buf)
			continue;

		err = perf_buffer__process_records(pb, cpu_buf);
		if (err) {
10908
			pr_warn("perf_buffer: failed to process records in buffer #%d: %d\n", i, err);
10909
			return libbpf_err(err);
10910 10911 10912 10913 10914
		}
	}
	return 0;
}

10915 10916 10917 10918 10919 10920 10921 10922 10923 10924 10925 10926 10927 10928 10929 10930 10931 10932 10933 10934 10935 10936 10937 10938 10939 10940 10941 10942 10943 10944 10945 10946 10947 10948 10949 10950 10951 10952 10953 10954 10955 10956 10957 10958 10959 10960 10961 10962 10963 10964 10965 10966 10967 10968 10969 10970 10971
struct bpf_prog_info_array_desc {
	int	array_offset;	/* e.g. offset of jited_prog_insns */
	int	count_offset;	/* e.g. offset of jited_prog_len */
	int	size_offset;	/* > 0: offset of rec size,
				 * < 0: fix size of -size_offset
				 */
};

static struct bpf_prog_info_array_desc bpf_prog_info_array_desc[] = {
	[BPF_PROG_INFO_JITED_INSNS] = {
		offsetof(struct bpf_prog_info, jited_prog_insns),
		offsetof(struct bpf_prog_info, jited_prog_len),
		-1,
	},
	[BPF_PROG_INFO_XLATED_INSNS] = {
		offsetof(struct bpf_prog_info, xlated_prog_insns),
		offsetof(struct bpf_prog_info, xlated_prog_len),
		-1,
	},
	[BPF_PROG_INFO_MAP_IDS] = {
		offsetof(struct bpf_prog_info, map_ids),
		offsetof(struct bpf_prog_info, nr_map_ids),
		-(int)sizeof(__u32),
	},
	[BPF_PROG_INFO_JITED_KSYMS] = {
		offsetof(struct bpf_prog_info, jited_ksyms),
		offsetof(struct bpf_prog_info, nr_jited_ksyms),
		-(int)sizeof(__u64),
	},
	[BPF_PROG_INFO_JITED_FUNC_LENS] = {
		offsetof(struct bpf_prog_info, jited_func_lens),
		offsetof(struct bpf_prog_info, nr_jited_func_lens),
		-(int)sizeof(__u32),
	},
	[BPF_PROG_INFO_FUNC_INFO] = {
		offsetof(struct bpf_prog_info, func_info),
		offsetof(struct bpf_prog_info, nr_func_info),
		offsetof(struct bpf_prog_info, func_info_rec_size),
	},
	[BPF_PROG_INFO_LINE_INFO] = {
		offsetof(struct bpf_prog_info, line_info),
		offsetof(struct bpf_prog_info, nr_line_info),
		offsetof(struct bpf_prog_info, line_info_rec_size),
	},
	[BPF_PROG_INFO_JITED_LINE_INFO] = {
		offsetof(struct bpf_prog_info, jited_line_info),
		offsetof(struct bpf_prog_info, nr_jited_line_info),
		offsetof(struct bpf_prog_info, jited_line_info_rec_size),
	},
	[BPF_PROG_INFO_PROG_TAGS] = {
		offsetof(struct bpf_prog_info, prog_tags),
		offsetof(struct bpf_prog_info, nr_prog_tags),
		-(int)sizeof(__u8) * BPF_TAG_SIZE,
	},

};

10972 10973
static __u32 bpf_prog_info_read_offset_u32(struct bpf_prog_info *info,
					   int offset)
10974 10975 10976 10977 10978 10979 10980 10981
{
	__u32 *array = (__u32 *)info;

	if (offset >= 0)
		return array[offset / sizeof(__u32)];
	return -(int)offset;
}

10982 10983
static __u64 bpf_prog_info_read_offset_u64(struct bpf_prog_info *info,
					   int offset)
10984 10985 10986 10987 10988 10989 10990 10991 10992 10993 10994 10995 10996 10997 10998 10999 11000 11001 11002 11003 11004 11005 11006 11007 11008 11009 11010 11011 11012 11013 11014 11015 11016 11017 11018 11019 11020
{
	__u64 *array = (__u64 *)info;

	if (offset >= 0)
		return array[offset / sizeof(__u64)];
	return -(int)offset;
}

static void bpf_prog_info_set_offset_u32(struct bpf_prog_info *info, int offset,
					 __u32 val)
{
	__u32 *array = (__u32 *)info;

	if (offset >= 0)
		array[offset / sizeof(__u32)] = val;
}

static void bpf_prog_info_set_offset_u64(struct bpf_prog_info *info, int offset,
					 __u64 val)
{
	__u64 *array = (__u64 *)info;

	if (offset >= 0)
		array[offset / sizeof(__u64)] = val;
}

struct bpf_prog_info_linear *
bpf_program__get_prog_info_linear(int fd, __u64 arrays)
{
	struct bpf_prog_info_linear *info_linear;
	struct bpf_prog_info info = {};
	__u32 info_len = sizeof(info);
	__u32 data_len = 0;
	int i, err;
	void *ptr;

	if (arrays >> BPF_PROG_INFO_LAST_ARRAY)
11021
		return libbpf_err_ptr(-EINVAL);
11022 11023 11024 11025 11026

	/* step 1: get array dimensions */
	err = bpf_obj_get_info_by_fd(fd, &info, &info_len);
	if (err) {
		pr_debug("can't get prog info: %s", strerror(errno));
11027
		return libbpf_err_ptr(-EFAULT);
11028 11029 11030 11031 11032 11033 11034 11035 11036 11037 11038 11039 11040 11041 11042 11043 11044 11045 11046 11047 11048 11049 11050 11051 11052 11053 11054 11055 11056 11057 11058
	}

	/* step 2: calculate total size of all arrays */
	for (i = BPF_PROG_INFO_FIRST_ARRAY; i < BPF_PROG_INFO_LAST_ARRAY; ++i) {
		bool include_array = (arrays & (1UL << i)) > 0;
		struct bpf_prog_info_array_desc *desc;
		__u32 count, size;

		desc = bpf_prog_info_array_desc + i;

		/* kernel is too old to support this field */
		if (info_len < desc->array_offset + sizeof(__u32) ||
		    info_len < desc->count_offset + sizeof(__u32) ||
		    (desc->size_offset > 0 && info_len < desc->size_offset))
			include_array = false;

		if (!include_array) {
			arrays &= ~(1UL << i);	/* clear the bit */
			continue;
		}

		count = bpf_prog_info_read_offset_u32(&info, desc->count_offset);
		size  = bpf_prog_info_read_offset_u32(&info, desc->size_offset);

		data_len += count * size;
	}

	/* step 3: allocate continuous memory */
	data_len = roundup(data_len, sizeof(__u64));
	info_linear = malloc(sizeof(struct bpf_prog_info_linear) + data_len);
	if (!info_linear)
11059
		return libbpf_err_ptr(-ENOMEM);
11060 11061 11062 11063 11064 11065 11066 11067 11068 11069 11070 11071 11072 11073 11074 11075 11076 11077 11078 11079 11080 11081 11082 11083 11084 11085 11086 11087 11088 11089 11090

	/* step 4: fill data to info_linear->info */
	info_linear->arrays = arrays;
	memset(&info_linear->info, 0, sizeof(info));
	ptr = info_linear->data;

	for (i = BPF_PROG_INFO_FIRST_ARRAY; i < BPF_PROG_INFO_LAST_ARRAY; ++i) {
		struct bpf_prog_info_array_desc *desc;
		__u32 count, size;

		if ((arrays & (1UL << i)) == 0)
			continue;

		desc  = bpf_prog_info_array_desc + i;
		count = bpf_prog_info_read_offset_u32(&info, desc->count_offset);
		size  = bpf_prog_info_read_offset_u32(&info, desc->size_offset);
		bpf_prog_info_set_offset_u32(&info_linear->info,
					     desc->count_offset, count);
		bpf_prog_info_set_offset_u32(&info_linear->info,
					     desc->size_offset, size);
		bpf_prog_info_set_offset_u64(&info_linear->info,
					     desc->array_offset,
					     ptr_to_u64(ptr));
		ptr += count * size;
	}

	/* step 5: call syscall again to get required arrays */
	err = bpf_obj_get_info_by_fd(fd, &info_linear->info, &info_len);
	if (err) {
		pr_debug("can't get prog info: %s", strerror(errno));
		free(info_linear);
11091
		return libbpf_err_ptr(-EFAULT);
11092 11093 11094 11095 11096 11097 11098 11099 11100 11101 11102 11103 11104 11105 11106
	}

	/* step 6: verify the data */
	for (i = BPF_PROG_INFO_FIRST_ARRAY; i < BPF_PROG_INFO_LAST_ARRAY; ++i) {
		struct bpf_prog_info_array_desc *desc;
		__u32 v1, v2;

		if ((arrays & (1UL << i)) == 0)
			continue;

		desc = bpf_prog_info_array_desc + i;
		v1 = bpf_prog_info_read_offset_u32(&info, desc->count_offset);
		v2 = bpf_prog_info_read_offset_u32(&info_linear->info,
						   desc->count_offset);
		if (v1 != v2)
11107
			pr_warn("%s: mismatch in element count\n", __func__);
11108 11109 11110 11111 11112

		v1 = bpf_prog_info_read_offset_u32(&info, desc->size_offset);
		v2 = bpf_prog_info_read_offset_u32(&info_linear->info,
						   desc->size_offset);
		if (v1 != v2)
11113
			pr_warn("%s: mismatch in rec size\n", __func__);
11114 11115 11116 11117 11118 11119 11120 11121 11122 11123 11124 11125 11126 11127 11128 11129 11130 11131 11132 11133 11134 11135 11136 11137 11138 11139 11140 11141 11142 11143 11144 11145 11146 11147 11148 11149 11150 11151 11152 11153 11154 11155 11156 11157 11158 11159 11160 11161
	}

	/* step 7: update info_len and data_len */
	info_linear->info_len = sizeof(struct bpf_prog_info);
	info_linear->data_len = data_len;

	return info_linear;
}

void bpf_program__bpil_addr_to_offs(struct bpf_prog_info_linear *info_linear)
{
	int i;

	for (i = BPF_PROG_INFO_FIRST_ARRAY; i < BPF_PROG_INFO_LAST_ARRAY; ++i) {
		struct bpf_prog_info_array_desc *desc;
		__u64 addr, offs;

		if ((info_linear->arrays & (1UL << i)) == 0)
			continue;

		desc = bpf_prog_info_array_desc + i;
		addr = bpf_prog_info_read_offset_u64(&info_linear->info,
						     desc->array_offset);
		offs = addr - ptr_to_u64(info_linear->data);
		bpf_prog_info_set_offset_u64(&info_linear->info,
					     desc->array_offset, offs);
	}
}

void bpf_program__bpil_offs_to_addr(struct bpf_prog_info_linear *info_linear)
{
	int i;

	for (i = BPF_PROG_INFO_FIRST_ARRAY; i < BPF_PROG_INFO_LAST_ARRAY; ++i) {
		struct bpf_prog_info_array_desc *desc;
		__u64 addr, offs;

		if ((info_linear->arrays & (1UL << i)) == 0)
			continue;

		desc = bpf_prog_info_array_desc + i;
		offs = bpf_prog_info_read_offset_u64(&info_linear->info,
						     desc->array_offset);
		addr = offs + ptr_to_u64(info_linear->data);
		bpf_prog_info_set_offset_u64(&info_linear->info,
					     desc->array_offset, addr);
	}
}
11162

11163 11164 11165 11166
int bpf_program__set_attach_target(struct bpf_program *prog,
				   int attach_prog_fd,
				   const char *attach_func_name)
{
11167
	int btf_obj_fd = 0, btf_id = 0, err;
11168

11169
	if (!prog || attach_prog_fd < 0)
11170
		return libbpf_err(-EINVAL);
11171

11172
	if (prog->obj->loaded)
11173
		return libbpf_err(-EINVAL);
11174

11175 11176 11177 11178 11179 11180 11181 11182
	if (attach_prog_fd && !attach_func_name) {
		/* remember attach_prog_fd and let bpf_program__load() find
		 * BTF ID during the program load
		 */
		prog->attach_prog_fd = attach_prog_fd;
		return 0;
	}

11183
	if (attach_prog_fd) {
11184 11185
		btf_id = libbpf_find_prog_btf_id(attach_func_name,
						 attach_prog_fd);
11186
		if (btf_id < 0)
11187
			return libbpf_err(btf_id);
11188
	} else {
11189 11190 11191
		if (!attach_func_name)
			return libbpf_err(-EINVAL);

11192 11193 11194
		/* load btf_vmlinux, if not yet */
		err = bpf_object__load_vmlinux_btf(prog->obj, true);
		if (err)
11195
			return libbpf_err(err);
11196 11197 11198 11199
		err = find_kernel_btf_id(prog->obj, attach_func_name,
					 prog->expected_attach_type,
					 &btf_obj_fd, &btf_id);
		if (err)
11200
			return libbpf_err(err);
11201
	}
11202 11203

	prog->attach_btf_id = btf_id;
11204
	prog->attach_btf_obj_fd = btf_obj_fd;
11205 11206 11207 11208
	prog->attach_prog_fd = attach_prog_fd;
	return 0;
}

11209
int parse_cpu_mask_str(const char *s, bool **mask, int *mask_sz)
11210
{
11211 11212
	int err = 0, n, len, start, end = -1;
	bool *tmp;
11213

11214 11215 11216 11217 11218 11219 11220 11221 11222 11223 11224 11225 11226 11227 11228 11229 11230 11231 11232 11233 11234 11235 11236 11237 11238 11239 11240 11241 11242 11243 11244 11245 11246 11247 11248 11249 11250 11251 11252 11253 11254 11255 11256 11257 11258 11259 11260 11261 11262
	*mask = NULL;
	*mask_sz = 0;

	/* Each sub string separated by ',' has format \d+-\d+ or \d+ */
	while (*s) {
		if (*s == ',' || *s == '\n') {
			s++;
			continue;
		}
		n = sscanf(s, "%d%n-%d%n", &start, &len, &end, &len);
		if (n <= 0 || n > 2) {
			pr_warn("Failed to get CPU range %s: %d\n", s, n);
			err = -EINVAL;
			goto cleanup;
		} else if (n == 1) {
			end = start;
		}
		if (start < 0 || start > end) {
			pr_warn("Invalid CPU range [%d,%d] in %s\n",
				start, end, s);
			err = -EINVAL;
			goto cleanup;
		}
		tmp = realloc(*mask, end + 1);
		if (!tmp) {
			err = -ENOMEM;
			goto cleanup;
		}
		*mask = tmp;
		memset(tmp + *mask_sz, 0, start - *mask_sz);
		memset(tmp + start, 1, end - start + 1);
		*mask_sz = end + 1;
		s += len;
	}
	if (!*mask_sz) {
		pr_warn("Empty CPU range\n");
		return -EINVAL;
	}
	return 0;
cleanup:
	free(*mask);
	*mask = NULL;
	return err;
}

int parse_cpu_mask_file(const char *fcpu, bool **mask, int *mask_sz)
{
	int fd, err = 0, len;
	char buf[128];
11263

11264
	fd = open(fcpu, O_RDONLY | O_CLOEXEC);
11265
	if (fd < 0) {
11266 11267 11268
		err = -errno;
		pr_warn("Failed to open cpu mask file %s: %d\n", fcpu, err);
		return err;
11269 11270 11271 11272
	}
	len = read(fd, buf, sizeof(buf));
	close(fd);
	if (len <= 0) {
11273 11274 11275
		err = len ? -errno : -EINVAL;
		pr_warn("Failed to read cpu mask from %s: %d\n", fcpu, err);
		return err;
11276
	}
11277 11278 11279
	if (len >= sizeof(buf)) {
		pr_warn("CPU mask is too big in file %s\n", fcpu);
		return -E2BIG;
11280 11281 11282
	}
	buf[len] = '\0';

11283 11284 11285 11286 11287 11288 11289 11290 11291 11292 11293 11294 11295 11296 11297 11298
	return parse_cpu_mask_str(buf, mask, mask_sz);
}

int libbpf_num_possible_cpus(void)
{
	static const char *fcpu = "/sys/devices/system/cpu/possible";
	static int cpus;
	int err, n, i, tmp_cpus;
	bool *mask;

	tmp_cpus = READ_ONCE(cpus);
	if (tmp_cpus > 0)
		return tmp_cpus;

	err = parse_cpu_mask_file(fcpu, &mask, &n);
	if (err)
11299
		return libbpf_err(err);
11300 11301 11302 11303 11304

	tmp_cpus = 0;
	for (i = 0; i < n; i++) {
		if (mask[i])
			tmp_cpus++;
11305
	}
11306
	free(mask);
11307 11308 11309

	WRITE_ONCE(cpus, tmp_cpus);
	return tmp_cpus;
11310
}
11311 11312 11313 11314 11315 11316 11317 11318

int bpf_object__open_skeleton(struct bpf_object_skeleton *s,
			      const struct bpf_object_open_opts *opts)
{
	DECLARE_LIBBPF_OPTS(bpf_object_open_opts, skel_opts,
		.object_name = s->name,
	);
	struct bpf_object *obj;
11319
	int i, err;
11320 11321 11322 11323 11324 11325 11326 11327 11328 11329 11330 11331 11332 11333

	/* Attempt to preserve opts->object_name, unless overriden by user
	 * explicitly. Overwriting object name for skeletons is discouraged,
	 * as it breaks global data maps, because they contain object name
	 * prefix as their own map name prefix. When skeleton is generated,
	 * bpftool is making an assumption that this name will stay the same.
	 */
	if (opts) {
		memcpy(&skel_opts, opts, sizeof(*opts));
		if (!opts->object_name)
			skel_opts.object_name = s->name;
	}

	obj = bpf_object__open_mem(s->data, s->data_sz, &skel_opts);
11334 11335 11336 11337 11338
	err = libbpf_get_error(obj);
	if (err) {
		pr_warn("failed to initialize skeleton BPF object '%s': %d\n",
			s->name, err);
		return libbpf_err(err);
11339 11340 11341 11342 11343 11344 11345 11346 11347 11348 11349 11350
	}

	*s->obj = obj;

	for (i = 0; i < s->map_cnt; i++) {
		struct bpf_map **map = s->maps[i].map;
		const char *name = s->maps[i].name;
		void **mmaped = s->maps[i].mmaped;

		*map = bpf_object__find_map_by_name(obj, name);
		if (!*map) {
			pr_warn("failed to find skeleton map '%s'\n", name);
11351
			return libbpf_err(-ESRCH);
11352 11353
		}

11354
		/* externs shouldn't be pre-setup from user code */
11355
		if (mmaped && (*map)->libbpf_type != LIBBPF_MAP_KCONFIG)
11356 11357 11358 11359 11360 11361 11362 11363 11364 11365
			*mmaped = (*map)->mmaped;
	}

	for (i = 0; i < s->prog_cnt; i++) {
		struct bpf_program **prog = s->progs[i].prog;
		const char *name = s->progs[i].name;

		*prog = bpf_object__find_program_by_name(obj, name);
		if (!*prog) {
			pr_warn("failed to find skeleton program '%s'\n", name);
11366
			return libbpf_err(-ESRCH);
11367 11368 11369 11370 11371 11372 11373 11374 11375 11376 11377 11378 11379
		}
	}

	return 0;
}

int bpf_object__load_skeleton(struct bpf_object_skeleton *s)
{
	int i, err;

	err = bpf_object__load(*s->obj);
	if (err) {
		pr_warn("failed to load BPF skeleton '%s': %d\n", s->name, err);
11380
		return libbpf_err(err);
11381 11382 11383 11384 11385 11386 11387 11388 11389 11390 11391 11392 11393 11394 11395 11396 11397 11398 11399 11400 11401 11402 11403 11404 11405 11406 11407 11408 11409 11410 11411
	}

	for (i = 0; i < s->map_cnt; i++) {
		struct bpf_map *map = *s->maps[i].map;
		size_t mmap_sz = bpf_map_mmap_sz(map);
		int prot, map_fd = bpf_map__fd(map);
		void **mmaped = s->maps[i].mmaped;

		if (!mmaped)
			continue;

		if (!(map->def.map_flags & BPF_F_MMAPABLE)) {
			*mmaped = NULL;
			continue;
		}

		if (map->def.map_flags & BPF_F_RDONLY_PROG)
			prot = PROT_READ;
		else
			prot = PROT_READ | PROT_WRITE;

		/* Remap anonymous mmap()-ed "map initialization image" as
		 * a BPF map-backed mmap()-ed memory, but preserving the same
		 * memory address. This will cause kernel to change process'
		 * page table to point to a different piece of kernel memory,
		 * but from userspace point of view memory address (and its
		 * contents, being identical at this point) will stay the
		 * same. This mapping will be released by bpf_object__close()
		 * as per normal clean up procedure, so we don't need to worry
		 * about it from skeleton's clean up perspective.
		 */
11412 11413 11414
		*mmaped = mmap(map->mmaped, mmap_sz, prot,
				MAP_SHARED | MAP_FIXED, map_fd, 0);
		if (*mmaped == MAP_FAILED) {
11415 11416 11417 11418
			err = -errno;
			*mmaped = NULL;
			pr_warn("failed to re-mmap() map '%s': %d\n",
				 bpf_map__name(map), err);
11419
			return libbpf_err(err);
11420 11421 11422 11423 11424 11425 11426 11427
		}
	}

	return 0;
}

int bpf_object__attach_skeleton(struct bpf_object_skeleton *s)
{
11428
	int i, err;
11429 11430 11431 11432 11433

	for (i = 0; i < s->prog_cnt; i++) {
		struct bpf_program *prog = *s->progs[i].prog;
		struct bpf_link **link = s->progs[i].link;

11434 11435 11436
		if (!prog->load)
			continue;

11437 11438
		/* auto-attaching not supported for this program */
		if (!prog->sec_def || !prog->sec_def->attach_fn)
11439 11440
			continue;

11441
		*link = bpf_program__attach(prog);
11442 11443 11444 11445 11446
		err = libbpf_get_error(*link);
		if (err) {
			pr_warn("failed to auto-attach program '%s': %d\n",
				bpf_program__name(prog), err);
			return libbpf_err(err);
11447 11448 11449 11450 11451 11452 11453 11454 11455 11456 11457 11458 11459
		}
	}

	return 0;
}

void bpf_object__detach_skeleton(struct bpf_object_skeleton *s)
{
	int i;

	for (i = 0; i < s->prog_cnt; i++) {
		struct bpf_link **link = s->progs[i].link;

11460
		bpf_link__destroy(*link);
11461 11462 11463 11464 11465 11466 11467 11468 11469 11470 11471 11472 11473 11474
		*link = NULL;
	}
}

void bpf_object__destroy_skeleton(struct bpf_object_skeleton *s)
{
	if (s->progs)
		bpf_object__detach_skeleton(s);
	if (s->obj)
		bpf_object__close(*s->obj);
	free(s->maps);
	free(s->progs);
	free(s);
}