Linux 6.9-rc1
[linux-2.6-microblaze.git] / tools / bpf / resolve_btfids / main.c
1 // SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause)
2
3 /*
4  * resolve_btfids scans ELF object for .BTF_ids section and resolves
5  * its symbols with BTF ID values.
6  *
7  * Each symbol points to 4 bytes data and is expected to have
8  * following name syntax:
9  *
10  * __BTF_ID__<type>__<symbol>[__<id>]
11  *
12  * type is:
13  *
14  *   func    - lookup BTF_KIND_FUNC symbol with <symbol> name
15  *             and store its ID into the data:
16  *
17  *             __BTF_ID__func__vfs_close__1:
18  *             .zero 4
19  *
20  *   struct  - lookup BTF_KIND_STRUCT symbol with <symbol> name
21  *             and store its ID into the data:
22  *
23  *             __BTF_ID__struct__sk_buff__1:
24  *             .zero 4
25  *
26  *   union   - lookup BTF_KIND_UNION symbol with <symbol> name
27  *             and store its ID into the data:
28  *
29  *             __BTF_ID__union__thread_union__1:
30  *             .zero 4
31  *
32  *   typedef - lookup BTF_KIND_TYPEDEF symbol with <symbol> name
33  *             and store its ID into the data:
34  *
35  *             __BTF_ID__typedef__pid_t__1:
36  *             .zero 4
37  *
38  *   set     - store symbol size into first 4 bytes and sort following
39  *             ID list
40  *
41  *             __BTF_ID__set__list:
42  *             .zero 4
43  *             list:
44  *             __BTF_ID__func__vfs_getattr__3:
45  *             .zero 4
46  *             __BTF_ID__func__vfs_fallocate__4:
47  *             .zero 4
48  *
49  *   set8    - store symbol size into first 4 bytes and sort following
50  *             ID list
51  *
52  *             __BTF_ID__set8__list:
53  *             .zero 8
54  *             list:
55  *             __BTF_ID__func__vfs_getattr__3:
56  *             .zero 4
57  *             .word (1 << 0) | (1 << 2)
58  *             __BTF_ID__func__vfs_fallocate__5:
59  *             .zero 4
60  *             .word (1 << 3) | (1 << 1) | (1 << 2)
61  */
62
63 #define  _GNU_SOURCE
64 #include <stdio.h>
65 #include <string.h>
66 #include <unistd.h>
67 #include <stdlib.h>
68 #include <libelf.h>
69 #include <gelf.h>
70 #include <sys/stat.h>
71 #include <fcntl.h>
72 #include <errno.h>
73 #include <linux/btf_ids.h>
74 #include <linux/rbtree.h>
75 #include <linux/zalloc.h>
76 #include <linux/err.h>
77 #include <bpf/btf.h>
78 #include <bpf/libbpf.h>
79 #include <subcmd/parse-options.h>
80
81 #define BTF_IDS_SECTION ".BTF_ids"
82 #define BTF_ID_PREFIX   "__BTF_ID__"
83
84 #define BTF_STRUCT      "struct"
85 #define BTF_UNION       "union"
86 #define BTF_TYPEDEF     "typedef"
87 #define BTF_FUNC        "func"
88 #define BTF_SET         "set"
89 #define BTF_SET8        "set8"
90
91 #define ADDR_CNT        100
92
93 #if __BYTE_ORDER == __LITTLE_ENDIAN
94 # define ELFDATANATIVE  ELFDATA2LSB
95 #elif __BYTE_ORDER == __BIG_ENDIAN
96 # define ELFDATANATIVE  ELFDATA2MSB
97 #else
98 # error "Unknown machine endianness!"
99 #endif
100
101 struct btf_id {
102         struct rb_node   rb_node;
103         char            *name;
104         union {
105                 int      id;
106                 int      cnt;
107         };
108         int              addr_cnt;
109         bool             is_set;
110         bool             is_set8;
111         Elf64_Addr       addr[ADDR_CNT];
112 };
113
114 struct object {
115         const char *path;
116         const char *btf;
117         const char *base_btf_path;
118
119         struct {
120                 int              fd;
121                 Elf             *elf;
122                 Elf_Data        *symbols;
123                 Elf_Data        *idlist;
124                 int              symbols_shndx;
125                 int              idlist_shndx;
126                 size_t           strtabidx;
127                 unsigned long    idlist_addr;
128                 int              encoding;
129         } efile;
130
131         struct rb_root  sets;
132         struct rb_root  structs;
133         struct rb_root  unions;
134         struct rb_root  typedefs;
135         struct rb_root  funcs;
136
137         int nr_funcs;
138         int nr_structs;
139         int nr_unions;
140         int nr_typedefs;
141 };
142
143 static int verbose;
144
145 static int eprintf(int level, int var, const char *fmt, ...)
146 {
147         va_list args;
148         int ret = 0;
149
150         if (var >= level) {
151                 va_start(args, fmt);
152                 ret = vfprintf(stderr, fmt, args);
153                 va_end(args);
154         }
155         return ret;
156 }
157
158 #ifndef pr_fmt
159 #define pr_fmt(fmt) fmt
160 #endif
161
162 #define pr_debug(fmt, ...) \
163         eprintf(1, verbose, pr_fmt(fmt), ##__VA_ARGS__)
164 #define pr_debugN(n, fmt, ...) \
165         eprintf(n, verbose, pr_fmt(fmt), ##__VA_ARGS__)
166 #define pr_debug2(fmt, ...) pr_debugN(2, pr_fmt(fmt), ##__VA_ARGS__)
167 #define pr_err(fmt, ...) \
168         eprintf(0, verbose, pr_fmt(fmt), ##__VA_ARGS__)
169 #define pr_info(fmt, ...) \
170         eprintf(0, verbose, pr_fmt(fmt), ##__VA_ARGS__)
171
172 static bool is_btf_id(const char *name)
173 {
174         return name && !strncmp(name, BTF_ID_PREFIX, sizeof(BTF_ID_PREFIX) - 1);
175 }
176
177 static struct btf_id *btf_id__find(struct rb_root *root, const char *name)
178 {
179         struct rb_node *p = root->rb_node;
180         struct btf_id *id;
181         int cmp;
182
183         while (p) {
184                 id = rb_entry(p, struct btf_id, rb_node);
185                 cmp = strcmp(id->name, name);
186                 if (cmp < 0)
187                         p = p->rb_left;
188                 else if (cmp > 0)
189                         p = p->rb_right;
190                 else
191                         return id;
192         }
193         return NULL;
194 }
195
196 static struct btf_id *
197 btf_id__add(struct rb_root *root, char *name, bool unique)
198 {
199         struct rb_node **p = &root->rb_node;
200         struct rb_node *parent = NULL;
201         struct btf_id *id;
202         int cmp;
203
204         while (*p != NULL) {
205                 parent = *p;
206                 id = rb_entry(parent, struct btf_id, rb_node);
207                 cmp = strcmp(id->name, name);
208                 if (cmp < 0)
209                         p = &(*p)->rb_left;
210                 else if (cmp > 0)
211                         p = &(*p)->rb_right;
212                 else
213                         return unique ? NULL : id;
214         }
215
216         id = zalloc(sizeof(*id));
217         if (id) {
218                 pr_debug("adding symbol %s\n", name);
219                 id->name = name;
220                 rb_link_node(&id->rb_node, parent, p);
221                 rb_insert_color(&id->rb_node, root);
222         }
223         return id;
224 }
225
226 static char *get_id(const char *prefix_end)
227 {
228         /*
229          * __BTF_ID__func__vfs_truncate__0
230          * prefix_end =  ^
231          * pos        =    ^
232          */
233         int len = strlen(prefix_end);
234         int pos = sizeof("__") - 1;
235         char *p, *id;
236
237         if (pos >= len)
238                 return NULL;
239
240         id = strdup(prefix_end + pos);
241         if (id) {
242                 /*
243                  * __BTF_ID__func__vfs_truncate__0
244                  * id =            ^
245                  *
246                  * cut the unique id part
247                  */
248                 p = strrchr(id, '_');
249                 p--;
250                 if (*p != '_') {
251                         free(id);
252                         return NULL;
253                 }
254                 *p = '\0';
255         }
256         return id;
257 }
258
259 static struct btf_id *add_set(struct object *obj, char *name, bool is_set8)
260 {
261         /*
262          * __BTF_ID__set__name
263          * name =    ^
264          * id   =         ^
265          */
266         char *id = name + (is_set8 ? sizeof(BTF_SET8 "__") : sizeof(BTF_SET "__")) - 1;
267         int len = strlen(name);
268
269         if (id >= name + len) {
270                 pr_err("FAILED to parse set name: %s\n", name);
271                 return NULL;
272         }
273
274         return btf_id__add(&obj->sets, id, true);
275 }
276
277 static struct btf_id *add_symbol(struct rb_root *root, char *name, size_t size)
278 {
279         char *id;
280
281         id = get_id(name + size);
282         if (!id) {
283                 pr_err("FAILED to parse symbol name: %s\n", name);
284                 return NULL;
285         }
286
287         return btf_id__add(root, id, false);
288 }
289
290 /* Older libelf.h and glibc elf.h might not yet define the ELF compression types. */
291 #ifndef SHF_COMPRESSED
292 #define SHF_COMPRESSED (1 << 11) /* Section with compressed data. */
293 #endif
294
295 /*
296  * The data of compressed section should be aligned to 4
297  * (for 32bit) or 8 (for 64 bit) bytes. The binutils ld
298  * sets sh_addralign to 1, which makes libelf fail with
299  * misaligned section error during the update:
300  *    FAILED elf_update(WRITE): invalid section alignment
301  *
302  * While waiting for ld fix, we fix the compressed sections
303  * sh_addralign value manualy.
304  */
305 static int compressed_section_fix(Elf *elf, Elf_Scn *scn, GElf_Shdr *sh)
306 {
307         int expected = gelf_getclass(elf) == ELFCLASS32 ? 4 : 8;
308
309         if (!(sh->sh_flags & SHF_COMPRESSED))
310                 return 0;
311
312         if (sh->sh_addralign == expected)
313                 return 0;
314
315         pr_debug2(" - fixing wrong alignment sh_addralign %u, expected %u\n",
316                   sh->sh_addralign, expected);
317
318         sh->sh_addralign = expected;
319
320         if (gelf_update_shdr(scn, sh) == 0) {
321                 pr_err("FAILED cannot update section header: %s\n",
322                         elf_errmsg(-1));
323                 return -1;
324         }
325         return 0;
326 }
327
328 static int elf_collect(struct object *obj)
329 {
330         Elf_Scn *scn = NULL;
331         size_t shdrstrndx;
332         GElf_Ehdr ehdr;
333         int idx = 0;
334         Elf *elf;
335         int fd;
336
337         fd = open(obj->path, O_RDWR, 0666);
338         if (fd == -1) {
339                 pr_err("FAILED cannot open %s: %s\n",
340                         obj->path, strerror(errno));
341                 return -1;
342         }
343
344         elf_version(EV_CURRENT);
345
346         elf = elf_begin(fd, ELF_C_RDWR_MMAP, NULL);
347         if (!elf) {
348                 close(fd);
349                 pr_err("FAILED cannot create ELF descriptor: %s\n",
350                         elf_errmsg(-1));
351                 return -1;
352         }
353
354         obj->efile.fd  = fd;
355         obj->efile.elf = elf;
356
357         elf_flagelf(elf, ELF_C_SET, ELF_F_LAYOUT);
358
359         if (elf_getshdrstrndx(elf, &shdrstrndx) != 0) {
360                 pr_err("FAILED cannot get shdr str ndx\n");
361                 return -1;
362         }
363
364         if (gelf_getehdr(obj->efile.elf, &ehdr) == NULL) {
365                 pr_err("FAILED cannot get ELF header: %s\n",
366                         elf_errmsg(-1));
367                 return -1;
368         }
369         obj->efile.encoding = ehdr.e_ident[EI_DATA];
370
371         /*
372          * Scan all the elf sections and look for save data
373          * from .BTF_ids section and symbols.
374          */
375         while ((scn = elf_nextscn(elf, scn)) != NULL) {
376                 Elf_Data *data;
377                 GElf_Shdr sh;
378                 char *name;
379
380                 idx++;
381                 if (gelf_getshdr(scn, &sh) != &sh) {
382                         pr_err("FAILED get section(%d) header\n", idx);
383                         return -1;
384                 }
385
386                 name = elf_strptr(elf, shdrstrndx, sh.sh_name);
387                 if (!name) {
388                         pr_err("FAILED get section(%d) name\n", idx);
389                         return -1;
390                 }
391
392                 data = elf_getdata(scn, 0);
393                 if (!data) {
394                         pr_err("FAILED to get section(%d) data from %s\n",
395                                 idx, name);
396                         return -1;
397                 }
398
399                 pr_debug2("section(%d) %s, size %ld, link %d, flags %lx, type=%d\n",
400                           idx, name, (unsigned long) data->d_size,
401                           (int) sh.sh_link, (unsigned long) sh.sh_flags,
402                           (int) sh.sh_type);
403
404                 if (sh.sh_type == SHT_SYMTAB) {
405                         obj->efile.symbols       = data;
406                         obj->efile.symbols_shndx = idx;
407                         obj->efile.strtabidx     = sh.sh_link;
408                 } else if (!strcmp(name, BTF_IDS_SECTION)) {
409                         obj->efile.idlist       = data;
410                         obj->efile.idlist_shndx = idx;
411                         obj->efile.idlist_addr  = sh.sh_addr;
412                 }
413
414                 if (compressed_section_fix(elf, scn, &sh))
415                         return -1;
416         }
417
418         return 0;
419 }
420
421 static int symbols_collect(struct object *obj)
422 {
423         Elf_Scn *scn = NULL;
424         int n, i;
425         GElf_Shdr sh;
426         char *name;
427
428         scn = elf_getscn(obj->efile.elf, obj->efile.symbols_shndx);
429         if (!scn)
430                 return -1;
431
432         if (gelf_getshdr(scn, &sh) != &sh)
433                 return -1;
434
435         n = sh.sh_size / sh.sh_entsize;
436
437         /*
438          * Scan symbols and look for the ones starting with
439          * __BTF_ID__* over .BTF_ids section.
440          */
441         for (i = 0; i < n; i++) {
442                 char *prefix;
443                 struct btf_id *id;
444                 GElf_Sym sym;
445
446                 if (!gelf_getsym(obj->efile.symbols, i, &sym))
447                         return -1;
448
449                 if (sym.st_shndx != obj->efile.idlist_shndx)
450                         continue;
451
452                 name = elf_strptr(obj->efile.elf, obj->efile.strtabidx,
453                                   sym.st_name);
454
455                 if (!is_btf_id(name))
456                         continue;
457
458                 /*
459                  * __BTF_ID__TYPE__vfs_truncate__0
460                  * prefix =  ^
461                  */
462                 prefix = name + sizeof(BTF_ID_PREFIX) - 1;
463
464                 /* struct */
465                 if (!strncmp(prefix, BTF_STRUCT, sizeof(BTF_STRUCT) - 1)) {
466                         obj->nr_structs++;
467                         id = add_symbol(&obj->structs, prefix, sizeof(BTF_STRUCT) - 1);
468                 /* union  */
469                 } else if (!strncmp(prefix, BTF_UNION, sizeof(BTF_UNION) - 1)) {
470                         obj->nr_unions++;
471                         id = add_symbol(&obj->unions, prefix, sizeof(BTF_UNION) - 1);
472                 /* typedef */
473                 } else if (!strncmp(prefix, BTF_TYPEDEF, sizeof(BTF_TYPEDEF) - 1)) {
474                         obj->nr_typedefs++;
475                         id = add_symbol(&obj->typedefs, prefix, sizeof(BTF_TYPEDEF) - 1);
476                 /* func */
477                 } else if (!strncmp(prefix, BTF_FUNC, sizeof(BTF_FUNC) - 1)) {
478                         obj->nr_funcs++;
479                         id = add_symbol(&obj->funcs, prefix, sizeof(BTF_FUNC) - 1);
480                 /* set8 */
481                 } else if (!strncmp(prefix, BTF_SET8, sizeof(BTF_SET8) - 1)) {
482                         id = add_set(obj, prefix, true);
483                         /*
484                          * SET8 objects store list's count, which is encoded
485                          * in symbol's size, together with 'cnt' field hence
486                          * that - 1.
487                          */
488                         if (id) {
489                                 id->cnt = sym.st_size / sizeof(uint64_t) - 1;
490                                 id->is_set8 = true;
491                         }
492                 /* set */
493                 } else if (!strncmp(prefix, BTF_SET, sizeof(BTF_SET) - 1)) {
494                         id = add_set(obj, prefix, false);
495                         /*
496                          * SET objects store list's count, which is encoded
497                          * in symbol's size, together with 'cnt' field hence
498                          * that - 1.
499                          */
500                         if (id) {
501                                 id->cnt = sym.st_size / sizeof(int) - 1;
502                                 id->is_set = true;
503                         }
504                 } else {
505                         pr_err("FAILED unsupported prefix %s\n", prefix);
506                         return -1;
507                 }
508
509                 if (!id)
510                         return -ENOMEM;
511
512                 if (id->addr_cnt >= ADDR_CNT) {
513                         pr_err("FAILED symbol %s crossed the number of allowed lists\n",
514                                 id->name);
515                         return -1;
516                 }
517                 id->addr[id->addr_cnt++] = sym.st_value;
518         }
519
520         return 0;
521 }
522
523 static int symbols_resolve(struct object *obj)
524 {
525         int nr_typedefs = obj->nr_typedefs;
526         int nr_structs  = obj->nr_structs;
527         int nr_unions   = obj->nr_unions;
528         int nr_funcs    = obj->nr_funcs;
529         struct btf *base_btf = NULL;
530         int err, type_id;
531         struct btf *btf;
532         __u32 nr_types;
533
534         if (obj->base_btf_path) {
535                 base_btf = btf__parse(obj->base_btf_path, NULL);
536                 err = libbpf_get_error(base_btf);
537                 if (err) {
538                         pr_err("FAILED: load base BTF from %s: %s\n",
539                                obj->base_btf_path, strerror(-err));
540                         return -1;
541                 }
542         }
543
544         btf = btf__parse_split(obj->btf ?: obj->path, base_btf);
545         err = libbpf_get_error(btf);
546         if (err) {
547                 pr_err("FAILED: load BTF from %s: %s\n",
548                         obj->btf ?: obj->path, strerror(-err));
549                 goto out;
550         }
551
552         err = -1;
553         nr_types = btf__type_cnt(btf);
554
555         /*
556          * Iterate all the BTF types and search for collected symbol IDs.
557          */
558         for (type_id = 1; type_id < nr_types; type_id++) {
559                 const struct btf_type *type;
560                 struct rb_root *root;
561                 struct btf_id *id;
562                 const char *str;
563                 int *nr;
564
565                 type = btf__type_by_id(btf, type_id);
566                 if (!type) {
567                         pr_err("FAILED: malformed BTF, can't resolve type for ID %d\n",
568                                 type_id);
569                         goto out;
570                 }
571
572                 if (btf_is_func(type) && nr_funcs) {
573                         nr   = &nr_funcs;
574                         root = &obj->funcs;
575                 } else if (btf_is_struct(type) && nr_structs) {
576                         nr   = &nr_structs;
577                         root = &obj->structs;
578                 } else if (btf_is_union(type) && nr_unions) {
579                         nr   = &nr_unions;
580                         root = &obj->unions;
581                 } else if (btf_is_typedef(type) && nr_typedefs) {
582                         nr   = &nr_typedefs;
583                         root = &obj->typedefs;
584                 } else
585                         continue;
586
587                 str = btf__name_by_offset(btf, type->name_off);
588                 if (!str) {
589                         pr_err("FAILED: malformed BTF, can't resolve name for ID %d\n",
590                                 type_id);
591                         goto out;
592                 }
593
594                 id = btf_id__find(root, str);
595                 if (id) {
596                         if (id->id) {
597                                 pr_info("WARN: multiple IDs found for '%s': %d, %d - using %d\n",
598                                         str, id->id, type_id, id->id);
599                         } else {
600                                 id->id = type_id;
601                                 (*nr)--;
602                         }
603                 }
604         }
605
606         err = 0;
607 out:
608         btf__free(base_btf);
609         btf__free(btf);
610         return err;
611 }
612
613 static int id_patch(struct object *obj, struct btf_id *id)
614 {
615         Elf_Data *data = obj->efile.idlist;
616         int *ptr = data->d_buf;
617         int i;
618
619         /* For set, set8, id->id may be 0 */
620         if (!id->id && !id->is_set && !id->is_set8)
621                 pr_err("WARN: resolve_btfids: unresolved symbol %s\n", id->name);
622
623         for (i = 0; i < id->addr_cnt; i++) {
624                 unsigned long addr = id->addr[i];
625                 unsigned long idx = addr - obj->efile.idlist_addr;
626
627                 pr_debug("patching addr %5lu: ID %7d [%s]\n",
628                          idx, id->id, id->name);
629
630                 if (idx >= data->d_size) {
631                         pr_err("FAILED patching index %lu out of bounds %lu\n",
632                                 idx, data->d_size);
633                         return -1;
634                 }
635
636                 idx = idx / sizeof(int);
637                 ptr[idx] = id->id;
638         }
639
640         return 0;
641 }
642
643 static int __symbols_patch(struct object *obj, struct rb_root *root)
644 {
645         struct rb_node *next;
646         struct btf_id *id;
647
648         next = rb_first(root);
649         while (next) {
650                 id = rb_entry(next, struct btf_id, rb_node);
651
652                 if (id_patch(obj, id))
653                         return -1;
654
655                 next = rb_next(next);
656         }
657         return 0;
658 }
659
660 static int cmp_id(const void *pa, const void *pb)
661 {
662         const int *a = pa, *b = pb;
663
664         return *a - *b;
665 }
666
667 static int sets_patch(struct object *obj)
668 {
669         Elf_Data *data = obj->efile.idlist;
670         struct rb_node *next;
671
672         next = rb_first(&obj->sets);
673         while (next) {
674                 struct btf_id_set8 *set8;
675                 struct btf_id_set *set;
676                 unsigned long addr, off;
677                 struct btf_id *id;
678
679                 id   = rb_entry(next, struct btf_id, rb_node);
680                 addr = id->addr[0];
681                 off = addr - obj->efile.idlist_addr;
682
683                 /* sets are unique */
684                 if (id->addr_cnt != 1) {
685                         pr_err("FAILED malformed data for set '%s'\n",
686                                 id->name);
687                         return -1;
688                 }
689
690                 if (id->is_set) {
691                         set = data->d_buf + off;
692                         qsort(set->ids, set->cnt, sizeof(set->ids[0]), cmp_id);
693                 } else {
694                         set8 = data->d_buf + off;
695                         /*
696                          * Make sure id is at the beginning of the pairs
697                          * struct, otherwise the below qsort would not work.
698                          */
699                         BUILD_BUG_ON(set8->pairs != &set8->pairs[0].id);
700                         qsort(set8->pairs, set8->cnt, sizeof(set8->pairs[0]), cmp_id);
701
702                         /*
703                          * When ELF endianness does not match endianness of the
704                          * host, libelf will do the translation when updating
705                          * the ELF. This, however, corrupts SET8 flags which are
706                          * already in the target endianness. So, let's bswap
707                          * them to the host endianness and libelf will then
708                          * correctly translate everything.
709                          */
710                         if (obj->efile.encoding != ELFDATANATIVE) {
711                                 int i;
712
713                                 set8->flags = bswap_32(set8->flags);
714                                 for (i = 0; i < set8->cnt; i++) {
715                                         set8->pairs[i].flags =
716                                                 bswap_32(set8->pairs[i].flags);
717                                 }
718                         }
719                 }
720
721                 pr_debug("sorting  addr %5lu: cnt %6d [%s]\n",
722                          off, id->is_set ? set->cnt : set8->cnt, id->name);
723
724                 next = rb_next(next);
725         }
726         return 0;
727 }
728
729 static int symbols_patch(struct object *obj)
730 {
731         int err;
732
733         if (__symbols_patch(obj, &obj->structs)  ||
734             __symbols_patch(obj, &obj->unions)   ||
735             __symbols_patch(obj, &obj->typedefs) ||
736             __symbols_patch(obj, &obj->funcs)    ||
737             __symbols_patch(obj, &obj->sets))
738                 return -1;
739
740         if (sets_patch(obj))
741                 return -1;
742
743         /* Set type to ensure endian translation occurs. */
744         obj->efile.idlist->d_type = ELF_T_WORD;
745
746         elf_flagdata(obj->efile.idlist, ELF_C_SET, ELF_F_DIRTY);
747
748         err = elf_update(obj->efile.elf, ELF_C_WRITE);
749         if (err < 0) {
750                 pr_err("FAILED elf_update(WRITE): %s\n",
751                         elf_errmsg(-1));
752         }
753
754         pr_debug("update %s for %s\n",
755                  err >= 0 ? "ok" : "failed", obj->path);
756         return err < 0 ? -1 : 0;
757 }
758
759 static const char * const resolve_btfids_usage[] = {
760         "resolve_btfids [<options>] <ELF object>",
761         NULL
762 };
763
764 int main(int argc, const char **argv)
765 {
766         struct object obj = {
767                 .efile = {
768                         .idlist_shndx  = -1,
769                         .symbols_shndx = -1,
770                 },
771                 .structs  = RB_ROOT,
772                 .unions   = RB_ROOT,
773                 .typedefs = RB_ROOT,
774                 .funcs    = RB_ROOT,
775                 .sets     = RB_ROOT,
776         };
777         struct option btfid_options[] = {
778                 OPT_INCR('v', "verbose", &verbose,
779                          "be more verbose (show errors, etc)"),
780                 OPT_STRING(0, "btf", &obj.btf, "BTF data",
781                            "BTF data"),
782                 OPT_STRING('b', "btf_base", &obj.base_btf_path, "file",
783                            "path of file providing base BTF"),
784                 OPT_END()
785         };
786         int err = -1;
787
788         argc = parse_options(argc, argv, btfid_options, resolve_btfids_usage,
789                              PARSE_OPT_STOP_AT_NON_OPTION);
790         if (argc != 1)
791                 usage_with_options(resolve_btfids_usage, btfid_options);
792
793         obj.path = argv[0];
794
795         if (elf_collect(&obj))
796                 goto out;
797
798         /*
799          * We did not find .BTF_ids section or symbols section,
800          * nothing to do..
801          */
802         if (obj.efile.idlist_shndx == -1 ||
803             obj.efile.symbols_shndx == -1) {
804                 pr_debug("Cannot find .BTF_ids or symbols sections, nothing to do\n");
805                 err = 0;
806                 goto out;
807         }
808
809         if (symbols_collect(&obj))
810                 goto out;
811
812         if (symbols_resolve(&obj))
813                 goto out;
814
815         if (symbols_patch(&obj))
816                 goto out;
817
818         err = 0;
819 out:
820         if (obj.efile.elf) {
821                 elf_end(obj.efile.elf);
822                 close(obj.efile.fd);
823         }
824         return err;
825 }