xref: /openbmc/linux/tools/lib/bpf/btf.c (revision fb2426ad00b136c88d57457504d1e843159a367a)
11bc38b8fSAlexei Starovoitov // SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause)
28a138aedSMartin KaFai Lau /* Copyright (c) 2018 Facebook */
38a138aedSMartin KaFai Lau 
4cdb2f920SArnaldo Carvalho de Melo #include <endian.h>
596408c43SYonghong Song #include <stdio.h>
68a138aedSMartin KaFai Lau #include <stdlib.h>
78a138aedSMartin KaFai Lau #include <string.h>
8e6c64855SAndrii Nakryiko #include <fcntl.h>
98a138aedSMartin KaFai Lau #include <unistd.h>
108a138aedSMartin KaFai Lau #include <errno.h>
11*fb2426adSMartin KaFai Lau #include <sys/utsname.h>
12*fb2426adSMartin KaFai Lau #include <sys/param.h>
13*fb2426adSMartin KaFai Lau #include <sys/stat.h>
14*fb2426adSMartin KaFai Lau #include <linux/kernel.h>
158a138aedSMartin KaFai Lau #include <linux/err.h>
168a138aedSMartin KaFai Lau #include <linux/btf.h>
17e6c64855SAndrii Nakryiko #include <gelf.h>
188a138aedSMartin KaFai Lau #include "btf.h"
198a138aedSMartin KaFai Lau #include "bpf.h"
208461ef8bSYonghong Song #include "libbpf.h"
21d72386feSAndrii Nakryiko #include "libbpf_internal.h"
222fc3fc0bSAndrii Nakryiko #include "hashmap.h"
238a138aedSMartin KaFai Lau 
241d1a3bcfSAndrii Nakryiko /* make sure libbpf doesn't use kernel-only integer typedefs */
251d1a3bcfSAndrii Nakryiko #pragma GCC poison u8 u16 u32 u64 s8 s16 s32 s64
261d1a3bcfSAndrii Nakryiko 
27*fb2426adSMartin KaFai Lau #define BTF_MAX_NR_TYPES 0x7fffffffU
28*fb2426adSMartin KaFai Lau #define BTF_MAX_STR_OFFSET 0x7fffffffU
298a138aedSMartin KaFai Lau 
308a138aedSMartin KaFai Lau static struct btf_type btf_void;
318a138aedSMartin KaFai Lau 
328a138aedSMartin KaFai Lau struct btf {
338a138aedSMartin KaFai Lau 	union {
348a138aedSMartin KaFai Lau 		struct btf_header *hdr;
358a138aedSMartin KaFai Lau 		void *data;
368a138aedSMartin KaFai Lau 	};
378a138aedSMartin KaFai Lau 	struct btf_type **types;
388a138aedSMartin KaFai Lau 	const char *strings;
398a138aedSMartin KaFai Lau 	void *nohdr_data;
405b891af7SMartin KaFai Lau 	__u32 nr_types;
415b891af7SMartin KaFai Lau 	__u32 types_size;
425b891af7SMartin KaFai Lau 	__u32 data_size;
438a138aedSMartin KaFai Lau 	int fd;
448a138aedSMartin KaFai Lau };
458a138aedSMartin KaFai Lau 
46d7f5b5e0SYonghong Song static inline __u64 ptr_to_u64(const void *ptr)
47d7f5b5e0SYonghong Song {
48d7f5b5e0SYonghong Song 	return (__u64) (unsigned long) ptr;
49d7f5b5e0SYonghong Song }
50d7f5b5e0SYonghong Song 
518a138aedSMartin KaFai Lau static int btf_add_type(struct btf *btf, struct btf_type *t)
528a138aedSMartin KaFai Lau {
538a138aedSMartin KaFai Lau 	if (btf->types_size - btf->nr_types < 2) {
548a138aedSMartin KaFai Lau 		struct btf_type **new_types;
555b891af7SMartin KaFai Lau 		__u32 expand_by, new_size;
568a138aedSMartin KaFai Lau 
578a138aedSMartin KaFai Lau 		if (btf->types_size == BTF_MAX_NR_TYPES)
588a138aedSMartin KaFai Lau 			return -E2BIG;
598a138aedSMartin KaFai Lau 
60*fb2426adSMartin KaFai Lau 		expand_by = max(btf->types_size >> 2, 16U);
618a138aedSMartin KaFai Lau 		new_size = min(BTF_MAX_NR_TYPES, btf->types_size + expand_by);
628a138aedSMartin KaFai Lau 
638a138aedSMartin KaFai Lau 		new_types = realloc(btf->types, sizeof(*new_types) * new_size);
648a138aedSMartin KaFai Lau 		if (!new_types)
658a138aedSMartin KaFai Lau 			return -ENOMEM;
668a138aedSMartin KaFai Lau 
678a138aedSMartin KaFai Lau 		if (btf->nr_types == 0)
688a138aedSMartin KaFai Lau 			new_types[0] = &btf_void;
698a138aedSMartin KaFai Lau 
708a138aedSMartin KaFai Lau 		btf->types = new_types;
718a138aedSMartin KaFai Lau 		btf->types_size = new_size;
728a138aedSMartin KaFai Lau 	}
738a138aedSMartin KaFai Lau 
748a138aedSMartin KaFai Lau 	btf->types[++(btf->nr_types)] = t;
758a138aedSMartin KaFai Lau 
768a138aedSMartin KaFai Lau 	return 0;
778a138aedSMartin KaFai Lau }
788a138aedSMartin KaFai Lau 
798461ef8bSYonghong Song static int btf_parse_hdr(struct btf *btf)
808a138aedSMartin KaFai Lau {
818a138aedSMartin KaFai Lau 	const struct btf_header *hdr = btf->hdr;
825b891af7SMartin KaFai Lau 	__u32 meta_left;
838a138aedSMartin KaFai Lau 
848a138aedSMartin KaFai Lau 	if (btf->data_size < sizeof(struct btf_header)) {
858461ef8bSYonghong Song 		pr_debug("BTF header not found\n");
868a138aedSMartin KaFai Lau 		return -EINVAL;
878a138aedSMartin KaFai Lau 	}
888a138aedSMartin KaFai Lau 
898a138aedSMartin KaFai Lau 	if (hdr->magic != BTF_MAGIC) {
908461ef8bSYonghong Song 		pr_debug("Invalid BTF magic:%x\n", hdr->magic);
918a138aedSMartin KaFai Lau 		return -EINVAL;
928a138aedSMartin KaFai Lau 	}
938a138aedSMartin KaFai Lau 
948a138aedSMartin KaFai Lau 	if (hdr->version != BTF_VERSION) {
958461ef8bSYonghong Song 		pr_debug("Unsupported BTF version:%u\n", hdr->version);
968a138aedSMartin KaFai Lau 		return -ENOTSUP;
978a138aedSMartin KaFai Lau 	}
988a138aedSMartin KaFai Lau 
998a138aedSMartin KaFai Lau 	if (hdr->flags) {
1008461ef8bSYonghong Song 		pr_debug("Unsupported BTF flags:%x\n", hdr->flags);
1018a138aedSMartin KaFai Lau 		return -ENOTSUP;
1028a138aedSMartin KaFai Lau 	}
1038a138aedSMartin KaFai Lau 
1048a138aedSMartin KaFai Lau 	meta_left = btf->data_size - sizeof(*hdr);
1058a138aedSMartin KaFai Lau 	if (!meta_left) {
1068461ef8bSYonghong Song 		pr_debug("BTF has no data\n");
1078a138aedSMartin KaFai Lau 		return -EINVAL;
1088a138aedSMartin KaFai Lau 	}
1098a138aedSMartin KaFai Lau 
1108a138aedSMartin KaFai Lau 	if (meta_left < hdr->type_off) {
1118461ef8bSYonghong Song 		pr_debug("Invalid BTF type section offset:%u\n", hdr->type_off);
1128a138aedSMartin KaFai Lau 		return -EINVAL;
1138a138aedSMartin KaFai Lau 	}
1148a138aedSMartin KaFai Lau 
1158a138aedSMartin KaFai Lau 	if (meta_left < hdr->str_off) {
1168461ef8bSYonghong Song 		pr_debug("Invalid BTF string section offset:%u\n", hdr->str_off);
1178a138aedSMartin KaFai Lau 		return -EINVAL;
1188a138aedSMartin KaFai Lau 	}
1198a138aedSMartin KaFai Lau 
1208a138aedSMartin KaFai Lau 	if (hdr->type_off >= hdr->str_off) {
1218461ef8bSYonghong Song 		pr_debug("BTF type section offset >= string section offset. No type?\n");
1228a138aedSMartin KaFai Lau 		return -EINVAL;
1238a138aedSMartin KaFai Lau 	}
1248a138aedSMartin KaFai Lau 
1258a138aedSMartin KaFai Lau 	if (hdr->type_off & 0x02) {
1268461ef8bSYonghong Song 		pr_debug("BTF type section is not aligned to 4 bytes\n");
1278a138aedSMartin KaFai Lau 		return -EINVAL;
1288a138aedSMartin KaFai Lau 	}
1298a138aedSMartin KaFai Lau 
1308a138aedSMartin KaFai Lau 	btf->nohdr_data = btf->hdr + 1;
1318a138aedSMartin KaFai Lau 
1328a138aedSMartin KaFai Lau 	return 0;
1338a138aedSMartin KaFai Lau }
1348a138aedSMartin KaFai Lau 
1358461ef8bSYonghong Song static int btf_parse_str_sec(struct btf *btf)
1368a138aedSMartin KaFai Lau {
1378a138aedSMartin KaFai Lau 	const struct btf_header *hdr = btf->hdr;
1388a138aedSMartin KaFai Lau 	const char *start = btf->nohdr_data + hdr->str_off;
1398a138aedSMartin KaFai Lau 	const char *end = start + btf->hdr->str_len;
1408a138aedSMartin KaFai Lau 
1415aab392cSAndrii Nakryiko 	if (!hdr->str_len || hdr->str_len - 1 > BTF_MAX_STR_OFFSET ||
1428a138aedSMartin KaFai Lau 	    start[0] || end[-1]) {
1438461ef8bSYonghong Song 		pr_debug("Invalid BTF string section\n");
1448a138aedSMartin KaFai Lau 		return -EINVAL;
1458a138aedSMartin KaFai Lau 	}
1468a138aedSMartin KaFai Lau 
1478a138aedSMartin KaFai Lau 	btf->strings = start;
1488a138aedSMartin KaFai Lau 
1498a138aedSMartin KaFai Lau 	return 0;
1508a138aedSMartin KaFai Lau }
1518a138aedSMartin KaFai Lau 
15269eaab04SAndrii Nakryiko static int btf_type_size(struct btf_type *t)
15369eaab04SAndrii Nakryiko {
15469eaab04SAndrii Nakryiko 	int base_size = sizeof(struct btf_type);
155b03bc685SAndrii Nakryiko 	__u16 vlen = btf_vlen(t);
15669eaab04SAndrii Nakryiko 
157b03bc685SAndrii Nakryiko 	switch (btf_kind(t)) {
15869eaab04SAndrii Nakryiko 	case BTF_KIND_FWD:
15969eaab04SAndrii Nakryiko 	case BTF_KIND_CONST:
16069eaab04SAndrii Nakryiko 	case BTF_KIND_VOLATILE:
16169eaab04SAndrii Nakryiko 	case BTF_KIND_RESTRICT:
16269eaab04SAndrii Nakryiko 	case BTF_KIND_PTR:
16369eaab04SAndrii Nakryiko 	case BTF_KIND_TYPEDEF:
16469eaab04SAndrii Nakryiko 	case BTF_KIND_FUNC:
16569eaab04SAndrii Nakryiko 		return base_size;
16669eaab04SAndrii Nakryiko 	case BTF_KIND_INT:
16769eaab04SAndrii Nakryiko 		return base_size + sizeof(__u32);
16869eaab04SAndrii Nakryiko 	case BTF_KIND_ENUM:
16969eaab04SAndrii Nakryiko 		return base_size + vlen * sizeof(struct btf_enum);
17069eaab04SAndrii Nakryiko 	case BTF_KIND_ARRAY:
17169eaab04SAndrii Nakryiko 		return base_size + sizeof(struct btf_array);
17269eaab04SAndrii Nakryiko 	case BTF_KIND_STRUCT:
17369eaab04SAndrii Nakryiko 	case BTF_KIND_UNION:
17469eaab04SAndrii Nakryiko 		return base_size + vlen * sizeof(struct btf_member);
17569eaab04SAndrii Nakryiko 	case BTF_KIND_FUNC_PROTO:
17669eaab04SAndrii Nakryiko 		return base_size + vlen * sizeof(struct btf_param);
1771713d68bSDaniel Borkmann 	case BTF_KIND_VAR:
1781713d68bSDaniel Borkmann 		return base_size + sizeof(struct btf_var);
1791713d68bSDaniel Borkmann 	case BTF_KIND_DATASEC:
1801713d68bSDaniel Borkmann 		return base_size + vlen * sizeof(struct btf_var_secinfo);
18169eaab04SAndrii Nakryiko 	default:
182b03bc685SAndrii Nakryiko 		pr_debug("Unsupported BTF_KIND:%u\n", btf_kind(t));
18369eaab04SAndrii Nakryiko 		return -EINVAL;
18469eaab04SAndrii Nakryiko 	}
18569eaab04SAndrii Nakryiko }
18669eaab04SAndrii Nakryiko 
1878461ef8bSYonghong Song static int btf_parse_type_sec(struct btf *btf)
1888a138aedSMartin KaFai Lau {
1898a138aedSMartin KaFai Lau 	struct btf_header *hdr = btf->hdr;
1908a138aedSMartin KaFai Lau 	void *nohdr_data = btf->nohdr_data;
1918a138aedSMartin KaFai Lau 	void *next_type = nohdr_data + hdr->type_off;
1928a138aedSMartin KaFai Lau 	void *end_type = nohdr_data + hdr->str_off;
1938a138aedSMartin KaFai Lau 
1948a138aedSMartin KaFai Lau 	while (next_type < end_type) {
1958a138aedSMartin KaFai Lau 		struct btf_type *t = next_type;
19669eaab04SAndrii Nakryiko 		int type_size;
1978a138aedSMartin KaFai Lau 		int err;
1988a138aedSMartin KaFai Lau 
19969eaab04SAndrii Nakryiko 		type_size = btf_type_size(t);
20069eaab04SAndrii Nakryiko 		if (type_size < 0)
20169eaab04SAndrii Nakryiko 			return type_size;
20269eaab04SAndrii Nakryiko 		next_type += type_size;
2038a138aedSMartin KaFai Lau 		err = btf_add_type(btf, t);
2048a138aedSMartin KaFai Lau 		if (err)
2058a138aedSMartin KaFai Lau 			return err;
2068a138aedSMartin KaFai Lau 	}
2078a138aedSMartin KaFai Lau 
2088a138aedSMartin KaFai Lau 	return 0;
2098a138aedSMartin KaFai Lau }
2108a138aedSMartin KaFai Lau 
2119c651127SAndrii Nakryiko __u32 btf__get_nr_types(const struct btf *btf)
2129c651127SAndrii Nakryiko {
2139c651127SAndrii Nakryiko 	return btf->nr_types;
2149c651127SAndrii Nakryiko }
2159c651127SAndrii Nakryiko 
21638d5d3b3SMartin KaFai Lau const struct btf_type *btf__type_by_id(const struct btf *btf, __u32 type_id)
2178a138aedSMartin KaFai Lau {
2188a138aedSMartin KaFai Lau 	if (type_id > btf->nr_types)
2198a138aedSMartin KaFai Lau 		return NULL;
2208a138aedSMartin KaFai Lau 
2218a138aedSMartin KaFai Lau 	return btf->types[type_id];
2228a138aedSMartin KaFai Lau }
2238a138aedSMartin KaFai Lau 
2248a138aedSMartin KaFai Lau static bool btf_type_is_void(const struct btf_type *t)
2258a138aedSMartin KaFai Lau {
226b03bc685SAndrii Nakryiko 	return t == &btf_void || btf_is_fwd(t);
2278a138aedSMartin KaFai Lau }
2288a138aedSMartin KaFai Lau 
2298a138aedSMartin KaFai Lau static bool btf_type_is_void_or_null(const struct btf_type *t)
2308a138aedSMartin KaFai Lau {
2318a138aedSMartin KaFai Lau 	return !t || btf_type_is_void(t);
2328a138aedSMartin KaFai Lau }
2338a138aedSMartin KaFai Lau 
2348a138aedSMartin KaFai Lau #define MAX_RESOLVE_DEPTH 32
2358a138aedSMartin KaFai Lau 
2365b891af7SMartin KaFai Lau __s64 btf__resolve_size(const struct btf *btf, __u32 type_id)
2378a138aedSMartin KaFai Lau {
2388a138aedSMartin KaFai Lau 	const struct btf_array *array;
2398a138aedSMartin KaFai Lau 	const struct btf_type *t;
2405b891af7SMartin KaFai Lau 	__u32 nelems = 1;
2415b891af7SMartin KaFai Lau 	__s64 size = -1;
2428a138aedSMartin KaFai Lau 	int i;
2438a138aedSMartin KaFai Lau 
24492b57121SOkash Khawaja 	t = btf__type_by_id(btf, type_id);
2458a138aedSMartin KaFai Lau 	for (i = 0; i < MAX_RESOLVE_DEPTH && !btf_type_is_void_or_null(t);
2468a138aedSMartin KaFai Lau 	     i++) {
247b03bc685SAndrii Nakryiko 		switch (btf_kind(t)) {
24869eaab04SAndrii Nakryiko 		case BTF_KIND_INT:
24969eaab04SAndrii Nakryiko 		case BTF_KIND_STRUCT:
25069eaab04SAndrii Nakryiko 		case BTF_KIND_UNION:
25169eaab04SAndrii Nakryiko 		case BTF_KIND_ENUM:
2521713d68bSDaniel Borkmann 		case BTF_KIND_DATASEC:
25369eaab04SAndrii Nakryiko 			size = t->size;
25469eaab04SAndrii Nakryiko 			goto done;
25569eaab04SAndrii Nakryiko 		case BTF_KIND_PTR:
25669eaab04SAndrii Nakryiko 			size = sizeof(void *);
25769eaab04SAndrii Nakryiko 			goto done;
2588a138aedSMartin KaFai Lau 		case BTF_KIND_TYPEDEF:
2598a138aedSMartin KaFai Lau 		case BTF_KIND_VOLATILE:
2608a138aedSMartin KaFai Lau 		case BTF_KIND_CONST:
2618a138aedSMartin KaFai Lau 		case BTF_KIND_RESTRICT:
2621713d68bSDaniel Borkmann 		case BTF_KIND_VAR:
2638a138aedSMartin KaFai Lau 			type_id = t->type;
2648a138aedSMartin KaFai Lau 			break;
2658a138aedSMartin KaFai Lau 		case BTF_KIND_ARRAY:
266b03bc685SAndrii Nakryiko 			array = btf_array(t);
2678a138aedSMartin KaFai Lau 			if (nelems && array->nelems > UINT32_MAX / nelems)
2688a138aedSMartin KaFai Lau 				return -E2BIG;
2698a138aedSMartin KaFai Lau 			nelems *= array->nelems;
2708a138aedSMartin KaFai Lau 			type_id = array->type;
2718a138aedSMartin KaFai Lau 			break;
2728a138aedSMartin KaFai Lau 		default:
2738a138aedSMartin KaFai Lau 			return -EINVAL;
2748a138aedSMartin KaFai Lau 		}
2758a138aedSMartin KaFai Lau 
27692b57121SOkash Khawaja 		t = btf__type_by_id(btf, type_id);
2778a138aedSMartin KaFai Lau 	}
2788a138aedSMartin KaFai Lau 
279994021a7SAndrii Nakryiko done:
2808a138aedSMartin KaFai Lau 	if (size < 0)
2818a138aedSMartin KaFai Lau 		return -EINVAL;
2828a138aedSMartin KaFai Lau 	if (nelems && size > UINT32_MAX / nelems)
2838a138aedSMartin KaFai Lau 		return -E2BIG;
2848a138aedSMartin KaFai Lau 
2858a138aedSMartin KaFai Lau 	return nelems * size;
2868a138aedSMartin KaFai Lau }
2878a138aedSMartin KaFai Lau 
2883d208f4cSAndrii Nakryiko int btf__align_of(const struct btf *btf, __u32 id)
2893d208f4cSAndrii Nakryiko {
2903d208f4cSAndrii Nakryiko 	const struct btf_type *t = btf__type_by_id(btf, id);
2913d208f4cSAndrii Nakryiko 	__u16 kind = btf_kind(t);
2923d208f4cSAndrii Nakryiko 
2933d208f4cSAndrii Nakryiko 	switch (kind) {
2943d208f4cSAndrii Nakryiko 	case BTF_KIND_INT:
2953d208f4cSAndrii Nakryiko 	case BTF_KIND_ENUM:
296*fb2426adSMartin KaFai Lau 		return min(sizeof(void *), (size_t)t->size);
2973d208f4cSAndrii Nakryiko 	case BTF_KIND_PTR:
2983d208f4cSAndrii Nakryiko 		return sizeof(void *);
2993d208f4cSAndrii Nakryiko 	case BTF_KIND_TYPEDEF:
3003d208f4cSAndrii Nakryiko 	case BTF_KIND_VOLATILE:
3013d208f4cSAndrii Nakryiko 	case BTF_KIND_CONST:
3023d208f4cSAndrii Nakryiko 	case BTF_KIND_RESTRICT:
3033d208f4cSAndrii Nakryiko 		return btf__align_of(btf, t->type);
3043d208f4cSAndrii Nakryiko 	case BTF_KIND_ARRAY:
3053d208f4cSAndrii Nakryiko 		return btf__align_of(btf, btf_array(t)->type);
3063d208f4cSAndrii Nakryiko 	case BTF_KIND_STRUCT:
3073d208f4cSAndrii Nakryiko 	case BTF_KIND_UNION: {
3083d208f4cSAndrii Nakryiko 		const struct btf_member *m = btf_members(t);
3093d208f4cSAndrii Nakryiko 		__u16 vlen = btf_vlen(t);
310a79ac2d1SPrashant Bhole 		int i, max_align = 1, align;
3113d208f4cSAndrii Nakryiko 
3123d208f4cSAndrii Nakryiko 		for (i = 0; i < vlen; i++, m++) {
313a79ac2d1SPrashant Bhole 			align = btf__align_of(btf, m->type);
314a79ac2d1SPrashant Bhole 			if (align <= 0)
315a79ac2d1SPrashant Bhole 				return align;
316a79ac2d1SPrashant Bhole 			max_align = max(max_align, align);
3173d208f4cSAndrii Nakryiko 		}
3183d208f4cSAndrii Nakryiko 
319a79ac2d1SPrashant Bhole 		return max_align;
3203d208f4cSAndrii Nakryiko 	}
3213d208f4cSAndrii Nakryiko 	default:
3223d208f4cSAndrii Nakryiko 		pr_warn("unsupported BTF_KIND:%u\n", btf_kind(t));
3233d208f4cSAndrii Nakryiko 		return 0;
3243d208f4cSAndrii Nakryiko 	}
3253d208f4cSAndrii Nakryiko }
3263d208f4cSAndrii Nakryiko 
32792b57121SOkash Khawaja int btf__resolve_type(const struct btf *btf, __u32 type_id)
32892b57121SOkash Khawaja {
32992b57121SOkash Khawaja 	const struct btf_type *t;
33092b57121SOkash Khawaja 	int depth = 0;
33192b57121SOkash Khawaja 
33292b57121SOkash Khawaja 	t = btf__type_by_id(btf, type_id);
33392b57121SOkash Khawaja 	while (depth < MAX_RESOLVE_DEPTH &&
33492b57121SOkash Khawaja 	       !btf_type_is_void_or_null(t) &&
335b03bc685SAndrii Nakryiko 	       (btf_is_mod(t) || btf_is_typedef(t) || btf_is_var(t))) {
33692b57121SOkash Khawaja 		type_id = t->type;
33792b57121SOkash Khawaja 		t = btf__type_by_id(btf, type_id);
33892b57121SOkash Khawaja 		depth++;
33992b57121SOkash Khawaja 	}
34092b57121SOkash Khawaja 
34192b57121SOkash Khawaja 	if (depth == MAX_RESOLVE_DEPTH || btf_type_is_void_or_null(t))
34292b57121SOkash Khawaja 		return -EINVAL;
34392b57121SOkash Khawaja 
34492b57121SOkash Khawaja 	return type_id;
34592b57121SOkash Khawaja }
34692b57121SOkash Khawaja 
3475b891af7SMartin KaFai Lau __s32 btf__find_by_name(const struct btf *btf, const char *type_name)
3488a138aedSMartin KaFai Lau {
3495b891af7SMartin KaFai Lau 	__u32 i;
3508a138aedSMartin KaFai Lau 
3518a138aedSMartin KaFai Lau 	if (!strcmp(type_name, "void"))
3528a138aedSMartin KaFai Lau 		return 0;
3538a138aedSMartin KaFai Lau 
3548a138aedSMartin KaFai Lau 	for (i = 1; i <= btf->nr_types; i++) {
3558a138aedSMartin KaFai Lau 		const struct btf_type *t = btf->types[i];
35692b57121SOkash Khawaja 		const char *name = btf__name_by_offset(btf, t->name_off);
3578a138aedSMartin KaFai Lau 
3588a138aedSMartin KaFai Lau 		if (name && !strcmp(type_name, name))
3598a138aedSMartin KaFai Lau 			return i;
3608a138aedSMartin KaFai Lau 	}
3618a138aedSMartin KaFai Lau 
3628a138aedSMartin KaFai Lau 	return -ENOENT;
3638a138aedSMartin KaFai Lau }
3648a138aedSMartin KaFai Lau 
3651442e287SAlexei Starovoitov __s32 btf__find_by_name_kind(const struct btf *btf, const char *type_name,
3661442e287SAlexei Starovoitov 			     __u32 kind)
3671442e287SAlexei Starovoitov {
3681442e287SAlexei Starovoitov 	__u32 i;
3691442e287SAlexei Starovoitov 
3701442e287SAlexei Starovoitov 	if (kind == BTF_KIND_UNKN || !strcmp(type_name, "void"))
3711442e287SAlexei Starovoitov 		return 0;
3721442e287SAlexei Starovoitov 
3731442e287SAlexei Starovoitov 	for (i = 1; i <= btf->nr_types; i++) {
3741442e287SAlexei Starovoitov 		const struct btf_type *t = btf->types[i];
3751442e287SAlexei Starovoitov 		const char *name;
3761442e287SAlexei Starovoitov 
3771442e287SAlexei Starovoitov 		if (btf_kind(t) != kind)
3781442e287SAlexei Starovoitov 			continue;
3791442e287SAlexei Starovoitov 		name = btf__name_by_offset(btf, t->name_off);
3801442e287SAlexei Starovoitov 		if (name && !strcmp(type_name, name))
3811442e287SAlexei Starovoitov 			return i;
3821442e287SAlexei Starovoitov 	}
3831442e287SAlexei Starovoitov 
3841442e287SAlexei Starovoitov 	return -ENOENT;
3851442e287SAlexei Starovoitov }
3861442e287SAlexei Starovoitov 
3878a138aedSMartin KaFai Lau void btf__free(struct btf *btf)
3888a138aedSMartin KaFai Lau {
3898a138aedSMartin KaFai Lau 	if (!btf)
3908a138aedSMartin KaFai Lau 		return;
3918a138aedSMartin KaFai Lau 
3928a138aedSMartin KaFai Lau 	if (btf->fd != -1)
3938a138aedSMartin KaFai Lau 		close(btf->fd);
3948a138aedSMartin KaFai Lau 
3958a138aedSMartin KaFai Lau 	free(btf->data);
3968a138aedSMartin KaFai Lau 	free(btf->types);
3978a138aedSMartin KaFai Lau 	free(btf);
3988a138aedSMartin KaFai Lau }
3998a138aedSMartin KaFai Lau 
4008461ef8bSYonghong Song struct btf *btf__new(__u8 *data, __u32 size)
4018a138aedSMartin KaFai Lau {
4028a138aedSMartin KaFai Lau 	struct btf *btf;
4038a138aedSMartin KaFai Lau 	int err;
4048a138aedSMartin KaFai Lau 
4058a138aedSMartin KaFai Lau 	btf = calloc(1, sizeof(struct btf));
4068a138aedSMartin KaFai Lau 	if (!btf)
4078a138aedSMartin KaFai Lau 		return ERR_PTR(-ENOMEM);
4088a138aedSMartin KaFai Lau 
4098a138aedSMartin KaFai Lau 	btf->fd = -1;
4108a138aedSMartin KaFai Lau 
4118a138aedSMartin KaFai Lau 	btf->data = malloc(size);
4128a138aedSMartin KaFai Lau 	if (!btf->data) {
4138a138aedSMartin KaFai Lau 		err = -ENOMEM;
4148a138aedSMartin KaFai Lau 		goto done;
4158a138aedSMartin KaFai Lau 	}
4168a138aedSMartin KaFai Lau 
4178a138aedSMartin KaFai Lau 	memcpy(btf->data, data, size);
4188a138aedSMartin KaFai Lau 	btf->data_size = size;
4198a138aedSMartin KaFai Lau 
4208461ef8bSYonghong Song 	err = btf_parse_hdr(btf);
4218a138aedSMartin KaFai Lau 	if (err)
4228a138aedSMartin KaFai Lau 		goto done;
4238a138aedSMartin KaFai Lau 
4248461ef8bSYonghong Song 	err = btf_parse_str_sec(btf);
4258a138aedSMartin KaFai Lau 	if (err)
4268a138aedSMartin KaFai Lau 		goto done;
4278a138aedSMartin KaFai Lau 
4288461ef8bSYonghong Song 	err = btf_parse_type_sec(btf);
4298a138aedSMartin KaFai Lau 
4308a138aedSMartin KaFai Lau done:
4318a138aedSMartin KaFai Lau 	if (err) {
4328a138aedSMartin KaFai Lau 		btf__free(btf);
4338a138aedSMartin KaFai Lau 		return ERR_PTR(err);
4348a138aedSMartin KaFai Lau 	}
4358a138aedSMartin KaFai Lau 
4368a138aedSMartin KaFai Lau 	return btf;
4378a138aedSMartin KaFai Lau }
4388a138aedSMartin KaFai Lau 
439e6c64855SAndrii Nakryiko static bool btf_check_endianness(const GElf_Ehdr *ehdr)
440e6c64855SAndrii Nakryiko {
441cdb2f920SArnaldo Carvalho de Melo #if __BYTE_ORDER == __LITTLE_ENDIAN
442e6c64855SAndrii Nakryiko 	return ehdr->e_ident[EI_DATA] == ELFDATA2LSB;
443cdb2f920SArnaldo Carvalho de Melo #elif __BYTE_ORDER == __BIG_ENDIAN
444e6c64855SAndrii Nakryiko 	return ehdr->e_ident[EI_DATA] == ELFDATA2MSB;
445e6c64855SAndrii Nakryiko #else
446e6c64855SAndrii Nakryiko # error "Unrecognized __BYTE_ORDER__"
447e6c64855SAndrii Nakryiko #endif
448e6c64855SAndrii Nakryiko }
449e6c64855SAndrii Nakryiko 
450e6c64855SAndrii Nakryiko struct btf *btf__parse_elf(const char *path, struct btf_ext **btf_ext)
451e6c64855SAndrii Nakryiko {
452e6c64855SAndrii Nakryiko 	Elf_Data *btf_data = NULL, *btf_ext_data = NULL;
453e6c64855SAndrii Nakryiko 	int err = 0, fd = -1, idx = 0;
454e6c64855SAndrii Nakryiko 	struct btf *btf = NULL;
455e6c64855SAndrii Nakryiko 	Elf_Scn *scn = NULL;
456e6c64855SAndrii Nakryiko 	Elf *elf = NULL;
457e6c64855SAndrii Nakryiko 	GElf_Ehdr ehdr;
458e6c64855SAndrii Nakryiko 
459e6c64855SAndrii Nakryiko 	if (elf_version(EV_CURRENT) == EV_NONE) {
460be18010eSKefeng Wang 		pr_warn("failed to init libelf for %s\n", path);
461e6c64855SAndrii Nakryiko 		return ERR_PTR(-LIBBPF_ERRNO__LIBELF);
462e6c64855SAndrii Nakryiko 	}
463e6c64855SAndrii Nakryiko 
464e6c64855SAndrii Nakryiko 	fd = open(path, O_RDONLY);
465e6c64855SAndrii Nakryiko 	if (fd < 0) {
466e6c64855SAndrii Nakryiko 		err = -errno;
467be18010eSKefeng Wang 		pr_warn("failed to open %s: %s\n", path, strerror(errno));
468e6c64855SAndrii Nakryiko 		return ERR_PTR(err);
469e6c64855SAndrii Nakryiko 	}
470e6c64855SAndrii Nakryiko 
471e6c64855SAndrii Nakryiko 	err = -LIBBPF_ERRNO__FORMAT;
472e6c64855SAndrii Nakryiko 
473e6c64855SAndrii Nakryiko 	elf = elf_begin(fd, ELF_C_READ, NULL);
474e6c64855SAndrii Nakryiko 	if (!elf) {
475be18010eSKefeng Wang 		pr_warn("failed to open %s as ELF file\n", path);
476e6c64855SAndrii Nakryiko 		goto done;
477e6c64855SAndrii Nakryiko 	}
478e6c64855SAndrii Nakryiko 	if (!gelf_getehdr(elf, &ehdr)) {
479be18010eSKefeng Wang 		pr_warn("failed to get EHDR from %s\n", path);
480e6c64855SAndrii Nakryiko 		goto done;
481e6c64855SAndrii Nakryiko 	}
482e6c64855SAndrii Nakryiko 	if (!btf_check_endianness(&ehdr)) {
483be18010eSKefeng Wang 		pr_warn("non-native ELF endianness is not supported\n");
484e6c64855SAndrii Nakryiko 		goto done;
485e6c64855SAndrii Nakryiko 	}
486e6c64855SAndrii Nakryiko 	if (!elf_rawdata(elf_getscn(elf, ehdr.e_shstrndx), NULL)) {
487be18010eSKefeng Wang 		pr_warn("failed to get e_shstrndx from %s\n", path);
488e6c64855SAndrii Nakryiko 		goto done;
489e6c64855SAndrii Nakryiko 	}
490e6c64855SAndrii Nakryiko 
491e6c64855SAndrii Nakryiko 	while ((scn = elf_nextscn(elf, scn)) != NULL) {
492e6c64855SAndrii Nakryiko 		GElf_Shdr sh;
493e6c64855SAndrii Nakryiko 		char *name;
494e6c64855SAndrii Nakryiko 
495e6c64855SAndrii Nakryiko 		idx++;
496e6c64855SAndrii Nakryiko 		if (gelf_getshdr(scn, &sh) != &sh) {
497be18010eSKefeng Wang 			pr_warn("failed to get section(%d) header from %s\n",
498e6c64855SAndrii Nakryiko 				idx, path);
499e6c64855SAndrii Nakryiko 			goto done;
500e6c64855SAndrii Nakryiko 		}
501e6c64855SAndrii Nakryiko 		name = elf_strptr(elf, ehdr.e_shstrndx, sh.sh_name);
502e6c64855SAndrii Nakryiko 		if (!name) {
503be18010eSKefeng Wang 			pr_warn("failed to get section(%d) name from %s\n",
504e6c64855SAndrii Nakryiko 				idx, path);
505e6c64855SAndrii Nakryiko 			goto done;
506e6c64855SAndrii Nakryiko 		}
507e6c64855SAndrii Nakryiko 		if (strcmp(name, BTF_ELF_SEC) == 0) {
508e6c64855SAndrii Nakryiko 			btf_data = elf_getdata(scn, 0);
509e6c64855SAndrii Nakryiko 			if (!btf_data) {
510be18010eSKefeng Wang 				pr_warn("failed to get section(%d, %s) data from %s\n",
511e6c64855SAndrii Nakryiko 					idx, name, path);
512e6c64855SAndrii Nakryiko 				goto done;
513e6c64855SAndrii Nakryiko 			}
514e6c64855SAndrii Nakryiko 			continue;
515e6c64855SAndrii Nakryiko 		} else if (btf_ext && strcmp(name, BTF_EXT_ELF_SEC) == 0) {
516e6c64855SAndrii Nakryiko 			btf_ext_data = elf_getdata(scn, 0);
517e6c64855SAndrii Nakryiko 			if (!btf_ext_data) {
518be18010eSKefeng Wang 				pr_warn("failed to get section(%d, %s) data from %s\n",
519e6c64855SAndrii Nakryiko 					idx, name, path);
520e6c64855SAndrii Nakryiko 				goto done;
521e6c64855SAndrii Nakryiko 			}
522e6c64855SAndrii Nakryiko 			continue;
523e6c64855SAndrii Nakryiko 		}
524e6c64855SAndrii Nakryiko 	}
525e6c64855SAndrii Nakryiko 
526e6c64855SAndrii Nakryiko 	err = 0;
527e6c64855SAndrii Nakryiko 
528e6c64855SAndrii Nakryiko 	if (!btf_data) {
529e6c64855SAndrii Nakryiko 		err = -ENOENT;
530e6c64855SAndrii Nakryiko 		goto done;
531e6c64855SAndrii Nakryiko 	}
532e6c64855SAndrii Nakryiko 	btf = btf__new(btf_data->d_buf, btf_data->d_size);
533e6c64855SAndrii Nakryiko 	if (IS_ERR(btf))
534e6c64855SAndrii Nakryiko 		goto done;
535e6c64855SAndrii Nakryiko 
536e6c64855SAndrii Nakryiko 	if (btf_ext && btf_ext_data) {
537e6c64855SAndrii Nakryiko 		*btf_ext = btf_ext__new(btf_ext_data->d_buf,
538e6c64855SAndrii Nakryiko 					btf_ext_data->d_size);
539e6c64855SAndrii Nakryiko 		if (IS_ERR(*btf_ext))
540e6c64855SAndrii Nakryiko 			goto done;
541e6c64855SAndrii Nakryiko 	} else if (btf_ext) {
542e6c64855SAndrii Nakryiko 		*btf_ext = NULL;
543e6c64855SAndrii Nakryiko 	}
544e6c64855SAndrii Nakryiko done:
545e6c64855SAndrii Nakryiko 	if (elf)
546e6c64855SAndrii Nakryiko 		elf_end(elf);
547e6c64855SAndrii Nakryiko 	close(fd);
548e6c64855SAndrii Nakryiko 
549e6c64855SAndrii Nakryiko 	if (err)
550e6c64855SAndrii Nakryiko 		return ERR_PTR(err);
551e6c64855SAndrii Nakryiko 	/*
552e6c64855SAndrii Nakryiko 	 * btf is always parsed before btf_ext, so no need to clean up
553e6c64855SAndrii Nakryiko 	 * btf_ext, if btf loading failed
554e6c64855SAndrii Nakryiko 	 */
555e6c64855SAndrii Nakryiko 	if (IS_ERR(btf))
556e6c64855SAndrii Nakryiko 		return btf;
557e6c64855SAndrii Nakryiko 	if (btf_ext && IS_ERR(*btf_ext)) {
558e6c64855SAndrii Nakryiko 		btf__free(btf);
559e6c64855SAndrii Nakryiko 		err = PTR_ERR(*btf_ext);
560e6c64855SAndrii Nakryiko 		return ERR_PTR(err);
561e6c64855SAndrii Nakryiko 	}
562e6c64855SAndrii Nakryiko 	return btf;
563e6c64855SAndrii Nakryiko }
564e6c64855SAndrii Nakryiko 
5651713d68bSDaniel Borkmann static int compare_vsi_off(const void *_a, const void *_b)
5661713d68bSDaniel Borkmann {
5671713d68bSDaniel Borkmann 	const struct btf_var_secinfo *a = _a;
5681713d68bSDaniel Borkmann 	const struct btf_var_secinfo *b = _b;
5691713d68bSDaniel Borkmann 
5701713d68bSDaniel Borkmann 	return a->offset - b->offset;
5711713d68bSDaniel Borkmann }
5721713d68bSDaniel Borkmann 
5731713d68bSDaniel Borkmann static int btf_fixup_datasec(struct bpf_object *obj, struct btf *btf,
5741713d68bSDaniel Borkmann 			     struct btf_type *t)
5751713d68bSDaniel Borkmann {
576b03bc685SAndrii Nakryiko 	__u32 size = 0, off = 0, i, vars = btf_vlen(t);
5771713d68bSDaniel Borkmann 	const char *name = btf__name_by_offset(btf, t->name_off);
5781713d68bSDaniel Borkmann 	const struct btf_type *t_var;
5791713d68bSDaniel Borkmann 	struct btf_var_secinfo *vsi;
580b03bc685SAndrii Nakryiko 	const struct btf_var *var;
5811713d68bSDaniel Borkmann 	int ret;
5821713d68bSDaniel Borkmann 
5831713d68bSDaniel Borkmann 	if (!name) {
5841713d68bSDaniel Borkmann 		pr_debug("No name found in string section for DATASEC kind.\n");
5851713d68bSDaniel Borkmann 		return -ENOENT;
5861713d68bSDaniel Borkmann 	}
5871713d68bSDaniel Borkmann 
588166750bcSAndrii Nakryiko 	/* .extern datasec size and var offsets were set correctly during
589166750bcSAndrii Nakryiko 	 * extern collection step, so just skip straight to sorting variables
590166750bcSAndrii Nakryiko 	 */
591166750bcSAndrii Nakryiko 	if (t->size)
592166750bcSAndrii Nakryiko 		goto sort_vars;
593166750bcSAndrii Nakryiko 
5941713d68bSDaniel Borkmann 	ret = bpf_object__section_size(obj, name, &size);
5951713d68bSDaniel Borkmann 	if (ret || !size || (t->size && t->size != size)) {
5961713d68bSDaniel Borkmann 		pr_debug("Invalid size for section %s: %u bytes\n", name, size);
5971713d68bSDaniel Borkmann 		return -ENOENT;
5981713d68bSDaniel Borkmann 	}
5991713d68bSDaniel Borkmann 
6001713d68bSDaniel Borkmann 	t->size = size;
6011713d68bSDaniel Borkmann 
602b03bc685SAndrii Nakryiko 	for (i = 0, vsi = btf_var_secinfos(t); i < vars; i++, vsi++) {
6031713d68bSDaniel Borkmann 		t_var = btf__type_by_id(btf, vsi->type);
604b03bc685SAndrii Nakryiko 		var = btf_var(t_var);
6051713d68bSDaniel Borkmann 
606b03bc685SAndrii Nakryiko 		if (!btf_is_var(t_var)) {
6071713d68bSDaniel Borkmann 			pr_debug("Non-VAR type seen in section %s\n", name);
6081713d68bSDaniel Borkmann 			return -EINVAL;
6091713d68bSDaniel Borkmann 		}
6101713d68bSDaniel Borkmann 
6111713d68bSDaniel Borkmann 		if (var->linkage == BTF_VAR_STATIC)
6121713d68bSDaniel Borkmann 			continue;
6131713d68bSDaniel Borkmann 
6141713d68bSDaniel Borkmann 		name = btf__name_by_offset(btf, t_var->name_off);
6151713d68bSDaniel Borkmann 		if (!name) {
6161713d68bSDaniel Borkmann 			pr_debug("No name found in string section for VAR kind\n");
6171713d68bSDaniel Borkmann 			return -ENOENT;
6181713d68bSDaniel Borkmann 		}
6191713d68bSDaniel Borkmann 
6201713d68bSDaniel Borkmann 		ret = bpf_object__variable_offset(obj, name, &off);
6211713d68bSDaniel Borkmann 		if (ret) {
622b03bc685SAndrii Nakryiko 			pr_debug("No offset found in symbol table for VAR %s\n",
623b03bc685SAndrii Nakryiko 				 name);
6241713d68bSDaniel Borkmann 			return -ENOENT;
6251713d68bSDaniel Borkmann 		}
6261713d68bSDaniel Borkmann 
6271713d68bSDaniel Borkmann 		vsi->offset = off;
6281713d68bSDaniel Borkmann 	}
6291713d68bSDaniel Borkmann 
630166750bcSAndrii Nakryiko sort_vars:
631166750bcSAndrii Nakryiko 	qsort(btf_var_secinfos(t), vars, sizeof(*vsi), compare_vsi_off);
6321713d68bSDaniel Borkmann 	return 0;
6331713d68bSDaniel Borkmann }
6341713d68bSDaniel Borkmann 
6351713d68bSDaniel Borkmann int btf__finalize_data(struct bpf_object *obj, struct btf *btf)
6361713d68bSDaniel Borkmann {
6371713d68bSDaniel Borkmann 	int err = 0;
6381713d68bSDaniel Borkmann 	__u32 i;
6391713d68bSDaniel Borkmann 
6401713d68bSDaniel Borkmann 	for (i = 1; i <= btf->nr_types; i++) {
6411713d68bSDaniel Borkmann 		struct btf_type *t = btf->types[i];
6421713d68bSDaniel Borkmann 
6431713d68bSDaniel Borkmann 		/* Loader needs to fix up some of the things compiler
6441713d68bSDaniel Borkmann 		 * couldn't get its hands on while emitting BTF. This
6451713d68bSDaniel Borkmann 		 * is section size and global variable offset. We use
6461713d68bSDaniel Borkmann 		 * the info from the ELF itself for this purpose.
6471713d68bSDaniel Borkmann 		 */
648b03bc685SAndrii Nakryiko 		if (btf_is_datasec(t)) {
6491713d68bSDaniel Borkmann 			err = btf_fixup_datasec(obj, btf, t);
6501713d68bSDaniel Borkmann 			if (err)
6511713d68bSDaniel Borkmann 				break;
6521713d68bSDaniel Borkmann 		}
6531713d68bSDaniel Borkmann 	}
6541713d68bSDaniel Borkmann 
6551713d68bSDaniel Borkmann 	return err;
6561713d68bSDaniel Borkmann }
6571713d68bSDaniel Borkmann 
658d29d87f7SAndrii Nakryiko int btf__load(struct btf *btf)
659d29d87f7SAndrii Nakryiko {
660d29d87f7SAndrii Nakryiko 	__u32 log_buf_size = BPF_LOG_BUF_SIZE;
661d29d87f7SAndrii Nakryiko 	char *log_buf = NULL;
662d29d87f7SAndrii Nakryiko 	int err = 0;
663d29d87f7SAndrii Nakryiko 
664d29d87f7SAndrii Nakryiko 	if (btf->fd >= 0)
665d29d87f7SAndrii Nakryiko 		return -EEXIST;
666d29d87f7SAndrii Nakryiko 
667d29d87f7SAndrii Nakryiko 	log_buf = malloc(log_buf_size);
668d29d87f7SAndrii Nakryiko 	if (!log_buf)
669d29d87f7SAndrii Nakryiko 		return -ENOMEM;
670d29d87f7SAndrii Nakryiko 
671d29d87f7SAndrii Nakryiko 	*log_buf = 0;
672d29d87f7SAndrii Nakryiko 
673d29d87f7SAndrii Nakryiko 	btf->fd = bpf_load_btf(btf->data, btf->data_size,
674d29d87f7SAndrii Nakryiko 			       log_buf, log_buf_size, false);
675d29d87f7SAndrii Nakryiko 	if (btf->fd < 0) {
676d29d87f7SAndrii Nakryiko 		err = -errno;
677be18010eSKefeng Wang 		pr_warn("Error loading BTF: %s(%d)\n", strerror(errno), errno);
678d29d87f7SAndrii Nakryiko 		if (*log_buf)
679be18010eSKefeng Wang 			pr_warn("%s\n", log_buf);
680d29d87f7SAndrii Nakryiko 		goto done;
681d29d87f7SAndrii Nakryiko 	}
682d29d87f7SAndrii Nakryiko 
683d29d87f7SAndrii Nakryiko done:
684d29d87f7SAndrii Nakryiko 	free(log_buf);
685d29d87f7SAndrii Nakryiko 	return err;
686d29d87f7SAndrii Nakryiko }
687d29d87f7SAndrii Nakryiko 
6888a138aedSMartin KaFai Lau int btf__fd(const struct btf *btf)
6898a138aedSMartin KaFai Lau {
6908a138aedSMartin KaFai Lau 	return btf->fd;
6918a138aedSMartin KaFai Lau }
69292b57121SOkash Khawaja 
69302c87446SAndrii Nakryiko const void *btf__get_raw_data(const struct btf *btf, __u32 *size)
69402c87446SAndrii Nakryiko {
69502c87446SAndrii Nakryiko 	*size = btf->data_size;
69602c87446SAndrii Nakryiko 	return btf->data;
69702c87446SAndrii Nakryiko }
69802c87446SAndrii Nakryiko 
69992b57121SOkash Khawaja const char *btf__name_by_offset(const struct btf *btf, __u32 offset)
70092b57121SOkash Khawaja {
70192b57121SOkash Khawaja 	if (offset < btf->hdr->str_len)
70292b57121SOkash Khawaja 		return &btf->strings[offset];
70392b57121SOkash Khawaja 	else
70492b57121SOkash Khawaja 		return NULL;
70592b57121SOkash Khawaja }
7062993e051SYonghong Song 
7071d2f44caSMartin KaFai Lau int btf__get_from_id(__u32 id, struct btf **btf)
708d7f5b5e0SYonghong Song {
709d7f5b5e0SYonghong Song 	struct bpf_btf_info btf_info = { 0 };
710d7f5b5e0SYonghong Song 	__u32 len = sizeof(btf_info);
711d7f5b5e0SYonghong Song 	__u32 last_size;
712d7f5b5e0SYonghong Song 	int btf_fd;
713d7f5b5e0SYonghong Song 	void *ptr;
714d7f5b5e0SYonghong Song 	int err;
715d7f5b5e0SYonghong Song 
716d7f5b5e0SYonghong Song 	err = 0;
717d7f5b5e0SYonghong Song 	*btf = NULL;
718d7f5b5e0SYonghong Song 	btf_fd = bpf_btf_get_fd_by_id(id);
719d7f5b5e0SYonghong Song 	if (btf_fd < 0)
720d7f5b5e0SYonghong Song 		return 0;
721d7f5b5e0SYonghong Song 
722d7f5b5e0SYonghong Song 	/* we won't know btf_size until we call bpf_obj_get_info_by_fd(). so
723d7f5b5e0SYonghong Song 	 * let's start with a sane default - 4KiB here - and resize it only if
724d7f5b5e0SYonghong Song 	 * bpf_obj_get_info_by_fd() needs a bigger buffer.
725d7f5b5e0SYonghong Song 	 */
726d7f5b5e0SYonghong Song 	btf_info.btf_size = 4096;
727d7f5b5e0SYonghong Song 	last_size = btf_info.btf_size;
728d7f5b5e0SYonghong Song 	ptr = malloc(last_size);
729d7f5b5e0SYonghong Song 	if (!ptr) {
730d7f5b5e0SYonghong Song 		err = -ENOMEM;
731d7f5b5e0SYonghong Song 		goto exit_free;
732d7f5b5e0SYonghong Song 	}
733d7f5b5e0SYonghong Song 
7341ad9cbb8SAndrii Nakryiko 	memset(ptr, 0, last_size);
735d7f5b5e0SYonghong Song 	btf_info.btf = ptr_to_u64(ptr);
736d7f5b5e0SYonghong Song 	err = bpf_obj_get_info_by_fd(btf_fd, &btf_info, &len);
737d7f5b5e0SYonghong Song 
738d7f5b5e0SYonghong Song 	if (!err && btf_info.btf_size > last_size) {
739d7f5b5e0SYonghong Song 		void *temp_ptr;
740d7f5b5e0SYonghong Song 
741d7f5b5e0SYonghong Song 		last_size = btf_info.btf_size;
742d7f5b5e0SYonghong Song 		temp_ptr = realloc(ptr, last_size);
743d7f5b5e0SYonghong Song 		if (!temp_ptr) {
744d7f5b5e0SYonghong Song 			err = -ENOMEM;
745d7f5b5e0SYonghong Song 			goto exit_free;
746d7f5b5e0SYonghong Song 		}
747d7f5b5e0SYonghong Song 		ptr = temp_ptr;
7481ad9cbb8SAndrii Nakryiko 		memset(ptr, 0, last_size);
749d7f5b5e0SYonghong Song 		btf_info.btf = ptr_to_u64(ptr);
750d7f5b5e0SYonghong Song 		err = bpf_obj_get_info_by_fd(btf_fd, &btf_info, &len);
751d7f5b5e0SYonghong Song 	}
752d7f5b5e0SYonghong Song 
753d7f5b5e0SYonghong Song 	if (err || btf_info.btf_size > last_size) {
754d7f5b5e0SYonghong Song 		err = errno;
755d7f5b5e0SYonghong Song 		goto exit_free;
756d7f5b5e0SYonghong Song 	}
757d7f5b5e0SYonghong Song 
7588461ef8bSYonghong Song 	*btf = btf__new((__u8 *)(long)btf_info.btf, btf_info.btf_size);
759d7f5b5e0SYonghong Song 	if (IS_ERR(*btf)) {
760d7f5b5e0SYonghong Song 		err = PTR_ERR(*btf);
761d7f5b5e0SYonghong Song 		*btf = NULL;
762d7f5b5e0SYonghong Song 	}
763d7f5b5e0SYonghong Song 
764d7f5b5e0SYonghong Song exit_free:
765d7f5b5e0SYonghong Song 	close(btf_fd);
766d7f5b5e0SYonghong Song 	free(ptr);
767d7f5b5e0SYonghong Song 
768d7f5b5e0SYonghong Song 	return err;
769d7f5b5e0SYonghong Song }
770d7f5b5e0SYonghong Song 
771a6c109a6SYonghong Song int btf__get_map_kv_tids(const struct btf *btf, const char *map_name,
77296408c43SYonghong Song 			 __u32 expected_key_size, __u32 expected_value_size,
77396408c43SYonghong Song 			 __u32 *key_type_id, __u32 *value_type_id)
77496408c43SYonghong Song {
77596408c43SYonghong Song 	const struct btf_type *container_type;
77696408c43SYonghong Song 	const struct btf_member *key, *value;
77796408c43SYonghong Song 	const size_t max_name = 256;
77896408c43SYonghong Song 	char container_name[max_name];
77996408c43SYonghong Song 	__s64 key_size, value_size;
78096408c43SYonghong Song 	__s32 container_id;
78196408c43SYonghong Song 
78296408c43SYonghong Song 	if (snprintf(container_name, max_name, "____btf_map_%s", map_name) ==
78396408c43SYonghong Song 	    max_name) {
784be18010eSKefeng Wang 		pr_warn("map:%s length of '____btf_map_%s' is too long\n",
78596408c43SYonghong Song 			map_name, map_name);
78696408c43SYonghong Song 		return -EINVAL;
78796408c43SYonghong Song 	}
78896408c43SYonghong Song 
78996408c43SYonghong Song 	container_id = btf__find_by_name(btf, container_name);
79096408c43SYonghong Song 	if (container_id < 0) {
791f7748e29SYonghong Song 		pr_debug("map:%s container_name:%s cannot be found in BTF. Missing BPF_ANNOTATE_KV_PAIR?\n",
79296408c43SYonghong Song 			 map_name, container_name);
79396408c43SYonghong Song 		return container_id;
79496408c43SYonghong Song 	}
79596408c43SYonghong Song 
79696408c43SYonghong Song 	container_type = btf__type_by_id(btf, container_id);
79796408c43SYonghong Song 	if (!container_type) {
798be18010eSKefeng Wang 		pr_warn("map:%s cannot find BTF type for container_id:%u\n",
79996408c43SYonghong Song 			map_name, container_id);
80096408c43SYonghong Song 		return -EINVAL;
80196408c43SYonghong Song 	}
80296408c43SYonghong Song 
803b03bc685SAndrii Nakryiko 	if (!btf_is_struct(container_type) || btf_vlen(container_type) < 2) {
804be18010eSKefeng Wang 		pr_warn("map:%s container_name:%s is an invalid container struct\n",
80596408c43SYonghong Song 			map_name, container_name);
80696408c43SYonghong Song 		return -EINVAL;
80796408c43SYonghong Song 	}
80896408c43SYonghong Song 
809b03bc685SAndrii Nakryiko 	key = btf_members(container_type);
81096408c43SYonghong Song 	value = key + 1;
81196408c43SYonghong Song 
81296408c43SYonghong Song 	key_size = btf__resolve_size(btf, key->type);
81396408c43SYonghong Song 	if (key_size < 0) {
814be18010eSKefeng Wang 		pr_warn("map:%s invalid BTF key_type_size\n", map_name);
81596408c43SYonghong Song 		return key_size;
81696408c43SYonghong Song 	}
81796408c43SYonghong Song 
81896408c43SYonghong Song 	if (expected_key_size != key_size) {
819be18010eSKefeng Wang 		pr_warn("map:%s btf_key_type_size:%u != map_def_key_size:%u\n",
82096408c43SYonghong Song 			map_name, (__u32)key_size, expected_key_size);
82196408c43SYonghong Song 		return -EINVAL;
82296408c43SYonghong Song 	}
82396408c43SYonghong Song 
82496408c43SYonghong Song 	value_size = btf__resolve_size(btf, value->type);
82596408c43SYonghong Song 	if (value_size < 0) {
826be18010eSKefeng Wang 		pr_warn("map:%s invalid BTF value_type_size\n", map_name);
82796408c43SYonghong Song 		return value_size;
82896408c43SYonghong Song 	}
82996408c43SYonghong Song 
83096408c43SYonghong Song 	if (expected_value_size != value_size) {
831be18010eSKefeng Wang 		pr_warn("map:%s btf_value_type_size:%u != map_def_value_size:%u\n",
83296408c43SYonghong Song 			map_name, (__u32)value_size, expected_value_size);
83396408c43SYonghong Song 		return -EINVAL;
83496408c43SYonghong Song 	}
83596408c43SYonghong Song 
83696408c43SYonghong Song 	*key_type_id = key->type;
83796408c43SYonghong Song 	*value_type_id = value->type;
83896408c43SYonghong Song 
83996408c43SYonghong Song 	return 0;
84096408c43SYonghong Song }
84196408c43SYonghong Song 
842ae4ab4b4SAndrii Nakryiko struct btf_ext_sec_setup_param {
8433d650141SMartin KaFai Lau 	__u32 off;
8443d650141SMartin KaFai Lau 	__u32 len;
8453d650141SMartin KaFai Lau 	__u32 min_rec_size;
8463d650141SMartin KaFai Lau 	struct btf_ext_info *ext_info;
8473d650141SMartin KaFai Lau 	const char *desc;
8483d650141SMartin KaFai Lau };
8493d650141SMartin KaFai Lau 
850ae4ab4b4SAndrii Nakryiko static int btf_ext_setup_info(struct btf_ext *btf_ext,
851ae4ab4b4SAndrii Nakryiko 			      struct btf_ext_sec_setup_param *ext_sec)
8522993e051SYonghong Song {
8533d650141SMartin KaFai Lau 	const struct btf_ext_info_sec *sinfo;
8543d650141SMartin KaFai Lau 	struct btf_ext_info *ext_info;
855f0187f0bSMartin KaFai Lau 	__u32 info_left, record_size;
856f0187f0bSMartin KaFai Lau 	/* The start of the info sec (including the __u32 record_size). */
857ae4ab4b4SAndrii Nakryiko 	void *info;
858f0187f0bSMartin KaFai Lau 
8594cedc0daSAndrii Nakryiko 	if (ext_sec->len == 0)
8604cedc0daSAndrii Nakryiko 		return 0;
8614cedc0daSAndrii Nakryiko 
8623d650141SMartin KaFai Lau 	if (ext_sec->off & 0x03) {
8638461ef8bSYonghong Song 		pr_debug(".BTF.ext %s section is not aligned to 4 bytes\n",
8643d650141SMartin KaFai Lau 		     ext_sec->desc);
865f0187f0bSMartin KaFai Lau 		return -EINVAL;
866f0187f0bSMartin KaFai Lau 	}
867f0187f0bSMartin KaFai Lau 
868ae4ab4b4SAndrii Nakryiko 	info = btf_ext->data + btf_ext->hdr->hdr_len + ext_sec->off;
869ae4ab4b4SAndrii Nakryiko 	info_left = ext_sec->len;
870ae4ab4b4SAndrii Nakryiko 
871ae4ab4b4SAndrii Nakryiko 	if (btf_ext->data + btf_ext->data_size < info + ext_sec->len) {
8728461ef8bSYonghong Song 		pr_debug("%s section (off:%u len:%u) is beyond the end of the ELF section .BTF.ext\n",
8733d650141SMartin KaFai Lau 			 ext_sec->desc, ext_sec->off, ext_sec->len);
874f0187f0bSMartin KaFai Lau 		return -EINVAL;
875f0187f0bSMartin KaFai Lau 	}
876f0187f0bSMartin KaFai Lau 
8773d650141SMartin KaFai Lau 	/* At least a record size */
878f0187f0bSMartin KaFai Lau 	if (info_left < sizeof(__u32)) {
8798461ef8bSYonghong Song 		pr_debug(".BTF.ext %s record size not found\n", ext_sec->desc);
8802993e051SYonghong Song 		return -EINVAL;
8812993e051SYonghong Song 	}
8822993e051SYonghong Song 
883f0187f0bSMartin KaFai Lau 	/* The record size needs to meet the minimum standard */
884f0187f0bSMartin KaFai Lau 	record_size = *(__u32 *)info;
8853d650141SMartin KaFai Lau 	if (record_size < ext_sec->min_rec_size ||
886f0187f0bSMartin KaFai Lau 	    record_size & 0x03) {
8878461ef8bSYonghong Song 		pr_debug("%s section in .BTF.ext has invalid record size %u\n",
8883d650141SMartin KaFai Lau 			 ext_sec->desc, record_size);
8892993e051SYonghong Song 		return -EINVAL;
8902993e051SYonghong Song 	}
8912993e051SYonghong Song 
892f0187f0bSMartin KaFai Lau 	sinfo = info + sizeof(__u32);
893f0187f0bSMartin KaFai Lau 	info_left -= sizeof(__u32);
8942993e051SYonghong Song 
8953d650141SMartin KaFai Lau 	/* If no records, return failure now so .BTF.ext won't be used. */
896f0187f0bSMartin KaFai Lau 	if (!info_left) {
8978461ef8bSYonghong Song 		pr_debug("%s section in .BTF.ext has no records", ext_sec->desc);
8982993e051SYonghong Song 		return -EINVAL;
8992993e051SYonghong Song 	}
9002993e051SYonghong Song 
901f0187f0bSMartin KaFai Lau 	while (info_left) {
9023d650141SMartin KaFai Lau 		unsigned int sec_hdrlen = sizeof(struct btf_ext_info_sec);
903f0187f0bSMartin KaFai Lau 		__u64 total_record_size;
904f0187f0bSMartin KaFai Lau 		__u32 num_records;
905f0187f0bSMartin KaFai Lau 
906f0187f0bSMartin KaFai Lau 		if (info_left < sec_hdrlen) {
9078461ef8bSYonghong Song 			pr_debug("%s section header is not found in .BTF.ext\n",
9083d650141SMartin KaFai Lau 			     ext_sec->desc);
9092993e051SYonghong Song 			return -EINVAL;
9102993e051SYonghong Song 		}
9112993e051SYonghong Song 
9123d650141SMartin KaFai Lau 		num_records = sinfo->num_info;
9132993e051SYonghong Song 		if (num_records == 0) {
9148461ef8bSYonghong Song 			pr_debug("%s section has incorrect num_records in .BTF.ext\n",
9153d650141SMartin KaFai Lau 			     ext_sec->desc);
9162993e051SYonghong Song 			return -EINVAL;
9172993e051SYonghong Song 		}
9182993e051SYonghong Song 
9192993e051SYonghong Song 		total_record_size = sec_hdrlen +
9202993e051SYonghong Song 				    (__u64)num_records * record_size;
921f0187f0bSMartin KaFai Lau 		if (info_left < total_record_size) {
9228461ef8bSYonghong Song 			pr_debug("%s section has incorrect num_records in .BTF.ext\n",
9233d650141SMartin KaFai Lau 			     ext_sec->desc);
9242993e051SYonghong Song 			return -EINVAL;
9252993e051SYonghong Song 		}
9262993e051SYonghong Song 
927f0187f0bSMartin KaFai Lau 		info_left -= total_record_size;
9282993e051SYonghong Song 		sinfo = (void *)sinfo + total_record_size;
9292993e051SYonghong Song 	}
9302993e051SYonghong Song 
9313d650141SMartin KaFai Lau 	ext_info = ext_sec->ext_info;
9323d650141SMartin KaFai Lau 	ext_info->len = ext_sec->len - sizeof(__u32);
9333d650141SMartin KaFai Lau 	ext_info->rec_size = record_size;
934ae4ab4b4SAndrii Nakryiko 	ext_info->info = info + sizeof(__u32);
935f0187f0bSMartin KaFai Lau 
9362993e051SYonghong Song 	return 0;
9372993e051SYonghong Song }
9382993e051SYonghong Song 
939ae4ab4b4SAndrii Nakryiko static int btf_ext_setup_func_info(struct btf_ext *btf_ext)
9403d650141SMartin KaFai Lau {
941ae4ab4b4SAndrii Nakryiko 	struct btf_ext_sec_setup_param param = {
942ae4ab4b4SAndrii Nakryiko 		.off = btf_ext->hdr->func_info_off,
943ae4ab4b4SAndrii Nakryiko 		.len = btf_ext->hdr->func_info_len,
9443d650141SMartin KaFai Lau 		.min_rec_size = sizeof(struct bpf_func_info_min),
9453d650141SMartin KaFai Lau 		.ext_info = &btf_ext->func_info,
9463d650141SMartin KaFai Lau 		.desc = "func_info"
9473d650141SMartin KaFai Lau 	};
9483d650141SMartin KaFai Lau 
949ae4ab4b4SAndrii Nakryiko 	return btf_ext_setup_info(btf_ext, &param);
9503d650141SMartin KaFai Lau }
9513d650141SMartin KaFai Lau 
952ae4ab4b4SAndrii Nakryiko static int btf_ext_setup_line_info(struct btf_ext *btf_ext)
9533d650141SMartin KaFai Lau {
954ae4ab4b4SAndrii Nakryiko 	struct btf_ext_sec_setup_param param = {
955ae4ab4b4SAndrii Nakryiko 		.off = btf_ext->hdr->line_info_off,
956ae4ab4b4SAndrii Nakryiko 		.len = btf_ext->hdr->line_info_len,
9573d650141SMartin KaFai Lau 		.min_rec_size = sizeof(struct bpf_line_info_min),
9583d650141SMartin KaFai Lau 		.ext_info = &btf_ext->line_info,
9593d650141SMartin KaFai Lau 		.desc = "line_info",
9603d650141SMartin KaFai Lau 	};
9613d650141SMartin KaFai Lau 
962ae4ab4b4SAndrii Nakryiko 	return btf_ext_setup_info(btf_ext, &param);
9633d650141SMartin KaFai Lau }
9643d650141SMartin KaFai Lau 
965511bb008SAndrii Nakryiko static int btf_ext_setup_field_reloc(struct btf_ext *btf_ext)
9664cedc0daSAndrii Nakryiko {
9674cedc0daSAndrii Nakryiko 	struct btf_ext_sec_setup_param param = {
968511bb008SAndrii Nakryiko 		.off = btf_ext->hdr->field_reloc_off,
969511bb008SAndrii Nakryiko 		.len = btf_ext->hdr->field_reloc_len,
970511bb008SAndrii Nakryiko 		.min_rec_size = sizeof(struct bpf_field_reloc),
971511bb008SAndrii Nakryiko 		.ext_info = &btf_ext->field_reloc_info,
972511bb008SAndrii Nakryiko 		.desc = "field_reloc",
9734cedc0daSAndrii Nakryiko 	};
9744cedc0daSAndrii Nakryiko 
9754cedc0daSAndrii Nakryiko 	return btf_ext_setup_info(btf_ext, &param);
9764cedc0daSAndrii Nakryiko }
9774cedc0daSAndrii Nakryiko 
9788461ef8bSYonghong Song static int btf_ext_parse_hdr(__u8 *data, __u32 data_size)
9792993e051SYonghong Song {
9802993e051SYonghong Song 	const struct btf_ext_header *hdr = (struct btf_ext_header *)data;
9812993e051SYonghong Song 
9824cedc0daSAndrii Nakryiko 	if (data_size < offsetofend(struct btf_ext_header, hdr_len) ||
9832993e051SYonghong Song 	    data_size < hdr->hdr_len) {
9848461ef8bSYonghong Song 		pr_debug("BTF.ext header not found");
9852993e051SYonghong Song 		return -EINVAL;
9862993e051SYonghong Song 	}
9872993e051SYonghong Song 
9882993e051SYonghong Song 	if (hdr->magic != BTF_MAGIC) {
9898461ef8bSYonghong Song 		pr_debug("Invalid BTF.ext magic:%x\n", hdr->magic);
9902993e051SYonghong Song 		return -EINVAL;
9912993e051SYonghong Song 	}
9922993e051SYonghong Song 
9932993e051SYonghong Song 	if (hdr->version != BTF_VERSION) {
9948461ef8bSYonghong Song 		pr_debug("Unsupported BTF.ext version:%u\n", hdr->version);
9952993e051SYonghong Song 		return -ENOTSUP;
9962993e051SYonghong Song 	}
9972993e051SYonghong Song 
9982993e051SYonghong Song 	if (hdr->flags) {
9998461ef8bSYonghong Song 		pr_debug("Unsupported BTF.ext flags:%x\n", hdr->flags);
10002993e051SYonghong Song 		return -ENOTSUP;
10012993e051SYonghong Song 	}
10022993e051SYonghong Song 
1003f0187f0bSMartin KaFai Lau 	if (data_size == hdr->hdr_len) {
10048461ef8bSYonghong Song 		pr_debug("BTF.ext has no data\n");
10052993e051SYonghong Song 		return -EINVAL;
10062993e051SYonghong Song 	}
10072993e051SYonghong Song 
1008f0187f0bSMartin KaFai Lau 	return 0;
10092993e051SYonghong Song }
10102993e051SYonghong Song 
10112993e051SYonghong Song void btf_ext__free(struct btf_ext *btf_ext)
10122993e051SYonghong Song {
10132993e051SYonghong Song 	if (!btf_ext)
10142993e051SYonghong Song 		return;
1015ae4ab4b4SAndrii Nakryiko 	free(btf_ext->data);
10162993e051SYonghong Song 	free(btf_ext);
10172993e051SYonghong Song }
10182993e051SYonghong Song 
10198461ef8bSYonghong Song struct btf_ext *btf_ext__new(__u8 *data, __u32 size)
10202993e051SYonghong Song {
10212993e051SYonghong Song 	struct btf_ext *btf_ext;
10222993e051SYonghong Song 	int err;
10232993e051SYonghong Song 
10248461ef8bSYonghong Song 	err = btf_ext_parse_hdr(data, size);
10252993e051SYonghong Song 	if (err)
10262993e051SYonghong Song 		return ERR_PTR(err);
10272993e051SYonghong Song 
10282993e051SYonghong Song 	btf_ext = calloc(1, sizeof(struct btf_ext));
10292993e051SYonghong Song 	if (!btf_ext)
10302993e051SYonghong Song 		return ERR_PTR(-ENOMEM);
10312993e051SYonghong Song 
1032ae4ab4b4SAndrii Nakryiko 	btf_ext->data_size = size;
1033ae4ab4b4SAndrii Nakryiko 	btf_ext->data = malloc(size);
1034ae4ab4b4SAndrii Nakryiko 	if (!btf_ext->data) {
1035ae4ab4b4SAndrii Nakryiko 		err = -ENOMEM;
1036ae4ab4b4SAndrii Nakryiko 		goto done;
10372993e051SYonghong Song 	}
1038ae4ab4b4SAndrii Nakryiko 	memcpy(btf_ext->data, data, size);
10392993e051SYonghong Song 
10404cedc0daSAndrii Nakryiko 	if (btf_ext->hdr->hdr_len <
10414cedc0daSAndrii Nakryiko 	    offsetofend(struct btf_ext_header, line_info_len))
10424cedc0daSAndrii Nakryiko 		goto done;
1043ae4ab4b4SAndrii Nakryiko 	err = btf_ext_setup_func_info(btf_ext);
1044ae4ab4b4SAndrii Nakryiko 	if (err)
1045ae4ab4b4SAndrii Nakryiko 		goto done;
1046ae4ab4b4SAndrii Nakryiko 
1047ae4ab4b4SAndrii Nakryiko 	err = btf_ext_setup_line_info(btf_ext);
1048ae4ab4b4SAndrii Nakryiko 	if (err)
1049ae4ab4b4SAndrii Nakryiko 		goto done;
1050ae4ab4b4SAndrii Nakryiko 
10514cedc0daSAndrii Nakryiko 	if (btf_ext->hdr->hdr_len <
1052511bb008SAndrii Nakryiko 	    offsetofend(struct btf_ext_header, field_reloc_len))
10534cedc0daSAndrii Nakryiko 		goto done;
1054511bb008SAndrii Nakryiko 	err = btf_ext_setup_field_reloc(btf_ext);
10554cedc0daSAndrii Nakryiko 	if (err)
10564cedc0daSAndrii Nakryiko 		goto done;
10574cedc0daSAndrii Nakryiko 
1058ae4ab4b4SAndrii Nakryiko done:
10593d650141SMartin KaFai Lau 	if (err) {
10603d650141SMartin KaFai Lau 		btf_ext__free(btf_ext);
10613d650141SMartin KaFai Lau 		return ERR_PTR(err);
10623d650141SMartin KaFai Lau 	}
10633d650141SMartin KaFai Lau 
10642993e051SYonghong Song 	return btf_ext;
10652993e051SYonghong Song }
10662993e051SYonghong Song 
1067ae4ab4b4SAndrii Nakryiko const void *btf_ext__get_raw_data(const struct btf_ext *btf_ext, __u32 *size)
1068ae4ab4b4SAndrii Nakryiko {
1069ae4ab4b4SAndrii Nakryiko 	*size = btf_ext->data_size;
1070ae4ab4b4SAndrii Nakryiko 	return btf_ext->data;
1071ae4ab4b4SAndrii Nakryiko }
1072ae4ab4b4SAndrii Nakryiko 
10733d650141SMartin KaFai Lau static int btf_ext_reloc_info(const struct btf *btf,
10743d650141SMartin KaFai Lau 			      const struct btf_ext_info *ext_info,
10752993e051SYonghong Song 			      const char *sec_name, __u32 insns_cnt,
10763d650141SMartin KaFai Lau 			      void **info, __u32 *cnt)
10772993e051SYonghong Song {
10783d650141SMartin KaFai Lau 	__u32 sec_hdrlen = sizeof(struct btf_ext_info_sec);
10793d650141SMartin KaFai Lau 	__u32 i, record_size, existing_len, records_len;
10803d650141SMartin KaFai Lau 	struct btf_ext_info_sec *sinfo;
10812993e051SYonghong Song 	const char *info_sec_name;
10822993e051SYonghong Song 	__u64 remain_len;
10832993e051SYonghong Song 	void *data;
10842993e051SYonghong Song 
10853d650141SMartin KaFai Lau 	record_size = ext_info->rec_size;
10863d650141SMartin KaFai Lau 	sinfo = ext_info->info;
10873d650141SMartin KaFai Lau 	remain_len = ext_info->len;
10882993e051SYonghong Song 	while (remain_len > 0) {
10893d650141SMartin KaFai Lau 		records_len = sinfo->num_info * record_size;
10902993e051SYonghong Song 		info_sec_name = btf__name_by_offset(btf, sinfo->sec_name_off);
10912993e051SYonghong Song 		if (strcmp(info_sec_name, sec_name)) {
10922993e051SYonghong Song 			remain_len -= sec_hdrlen + records_len;
10932993e051SYonghong Song 			sinfo = (void *)sinfo + sec_hdrlen + records_len;
10942993e051SYonghong Song 			continue;
10952993e051SYonghong Song 		}
10962993e051SYonghong Song 
10973d650141SMartin KaFai Lau 		existing_len = (*cnt) * record_size;
10983d650141SMartin KaFai Lau 		data = realloc(*info, existing_len + records_len);
10992993e051SYonghong Song 		if (!data)
11002993e051SYonghong Song 			return -ENOMEM;
11012993e051SYonghong Song 
11023d650141SMartin KaFai Lau 		memcpy(data + existing_len, sinfo->data, records_len);
110384ecc1f9SMartin KaFai Lau 		/* adjust insn_off only, the rest data will be passed
11042993e051SYonghong Song 		 * to the kernel.
11052993e051SYonghong Song 		 */
11063d650141SMartin KaFai Lau 		for (i = 0; i < sinfo->num_info; i++) {
11073d650141SMartin KaFai Lau 			__u32 *insn_off;
11082993e051SYonghong Song 
11093d650141SMartin KaFai Lau 			insn_off = data + existing_len + (i * record_size);
11103d650141SMartin KaFai Lau 			*insn_off = *insn_off / sizeof(struct bpf_insn) +
11112993e051SYonghong Song 				insns_cnt;
11122993e051SYonghong Song 		}
11133d650141SMartin KaFai Lau 		*info = data;
11143d650141SMartin KaFai Lau 		*cnt += sinfo->num_info;
11152993e051SYonghong Song 		return 0;
11162993e051SYonghong Song 	}
11172993e051SYonghong Song 
1118f0187f0bSMartin KaFai Lau 	return -ENOENT;
1119f0187f0bSMartin KaFai Lau }
1120f0187f0bSMartin KaFai Lau 
1121ae4ab4b4SAndrii Nakryiko int btf_ext__reloc_func_info(const struct btf *btf,
1122ae4ab4b4SAndrii Nakryiko 			     const struct btf_ext *btf_ext,
11233d650141SMartin KaFai Lau 			     const char *sec_name, __u32 insns_cnt,
11243d650141SMartin KaFai Lau 			     void **func_info, __u32 *cnt)
11253d650141SMartin KaFai Lau {
11263d650141SMartin KaFai Lau 	return btf_ext_reloc_info(btf, &btf_ext->func_info, sec_name,
11273d650141SMartin KaFai Lau 				  insns_cnt, func_info, cnt);
11283d650141SMartin KaFai Lau }
11293d650141SMartin KaFai Lau 
1130ae4ab4b4SAndrii Nakryiko int btf_ext__reloc_line_info(const struct btf *btf,
1131ae4ab4b4SAndrii Nakryiko 			     const struct btf_ext *btf_ext,
11323d650141SMartin KaFai Lau 			     const char *sec_name, __u32 insns_cnt,
11333d650141SMartin KaFai Lau 			     void **line_info, __u32 *cnt)
11343d650141SMartin KaFai Lau {
11353d650141SMartin KaFai Lau 	return btf_ext_reloc_info(btf, &btf_ext->line_info, sec_name,
11363d650141SMartin KaFai Lau 				  insns_cnt, line_info, cnt);
11373d650141SMartin KaFai Lau }
11383d650141SMartin KaFai Lau 
1139f0187f0bSMartin KaFai Lau __u32 btf_ext__func_info_rec_size(const struct btf_ext *btf_ext)
1140f0187f0bSMartin KaFai Lau {
11413d650141SMartin KaFai Lau 	return btf_ext->func_info.rec_size;
11423d650141SMartin KaFai Lau }
11433d650141SMartin KaFai Lau 
11443d650141SMartin KaFai Lau __u32 btf_ext__line_info_rec_size(const struct btf_ext *btf_ext)
11453d650141SMartin KaFai Lau {
11463d650141SMartin KaFai Lau 	return btf_ext->line_info.rec_size;
11472993e051SYonghong Song }
1148d5caef5bSAndrii Nakryiko 
1149d5caef5bSAndrii Nakryiko struct btf_dedup;
1150d5caef5bSAndrii Nakryiko 
1151d5caef5bSAndrii Nakryiko static struct btf_dedup *btf_dedup_new(struct btf *btf, struct btf_ext *btf_ext,
1152d5caef5bSAndrii Nakryiko 				       const struct btf_dedup_opts *opts);
1153d5caef5bSAndrii Nakryiko static void btf_dedup_free(struct btf_dedup *d);
1154d5caef5bSAndrii Nakryiko static int btf_dedup_strings(struct btf_dedup *d);
1155d5caef5bSAndrii Nakryiko static int btf_dedup_prim_types(struct btf_dedup *d);
1156d5caef5bSAndrii Nakryiko static int btf_dedup_struct_types(struct btf_dedup *d);
1157d5caef5bSAndrii Nakryiko static int btf_dedup_ref_types(struct btf_dedup *d);
1158d5caef5bSAndrii Nakryiko static int btf_dedup_compact_types(struct btf_dedup *d);
1159d5caef5bSAndrii Nakryiko static int btf_dedup_remap_types(struct btf_dedup *d);
1160d5caef5bSAndrii Nakryiko 
1161d5caef5bSAndrii Nakryiko /*
1162d5caef5bSAndrii Nakryiko  * Deduplicate BTF types and strings.
1163d5caef5bSAndrii Nakryiko  *
1164d5caef5bSAndrii Nakryiko  * BTF dedup algorithm takes as an input `struct btf` representing `.BTF` ELF
1165d5caef5bSAndrii Nakryiko  * section with all BTF type descriptors and string data. It overwrites that
1166d5caef5bSAndrii Nakryiko  * memory in-place with deduplicated types and strings without any loss of
1167d5caef5bSAndrii Nakryiko  * information. If optional `struct btf_ext` representing '.BTF.ext' ELF section
1168d5caef5bSAndrii Nakryiko  * is provided, all the strings referenced from .BTF.ext section are honored
1169d5caef5bSAndrii Nakryiko  * and updated to point to the right offsets after deduplication.
1170d5caef5bSAndrii Nakryiko  *
1171d5caef5bSAndrii Nakryiko  * If function returns with error, type/string data might be garbled and should
1172d5caef5bSAndrii Nakryiko  * be discarded.
1173d5caef5bSAndrii Nakryiko  *
1174d5caef5bSAndrii Nakryiko  * More verbose and detailed description of both problem btf_dedup is solving,
1175d5caef5bSAndrii Nakryiko  * as well as solution could be found at:
1176d5caef5bSAndrii Nakryiko  * https://facebookmicrosites.github.io/bpf/blog/2018/11/14/btf-enhancement.html
1177d5caef5bSAndrii Nakryiko  *
1178d5caef5bSAndrii Nakryiko  * Problem description and justification
1179d5caef5bSAndrii Nakryiko  * =====================================
1180d5caef5bSAndrii Nakryiko  *
1181d5caef5bSAndrii Nakryiko  * BTF type information is typically emitted either as a result of conversion
1182d5caef5bSAndrii Nakryiko  * from DWARF to BTF or directly by compiler. In both cases, each compilation
1183d5caef5bSAndrii Nakryiko  * unit contains information about a subset of all the types that are used
1184d5caef5bSAndrii Nakryiko  * in an application. These subsets are frequently overlapping and contain a lot
1185d5caef5bSAndrii Nakryiko  * of duplicated information when later concatenated together into a single
1186d5caef5bSAndrii Nakryiko  * binary. This algorithm ensures that each unique type is represented by single
1187d5caef5bSAndrii Nakryiko  * BTF type descriptor, greatly reducing resulting size of BTF data.
1188d5caef5bSAndrii Nakryiko  *
1189d5caef5bSAndrii Nakryiko  * Compilation unit isolation and subsequent duplication of data is not the only
1190d5caef5bSAndrii Nakryiko  * problem. The same type hierarchy (e.g., struct and all the type that struct
1191d5caef5bSAndrii Nakryiko  * references) in different compilation units can be represented in BTF to
1192d5caef5bSAndrii Nakryiko  * various degrees of completeness (or, rather, incompleteness) due to
1193d5caef5bSAndrii Nakryiko  * struct/union forward declarations.
1194d5caef5bSAndrii Nakryiko  *
1195d5caef5bSAndrii Nakryiko  * Let's take a look at an example, that we'll use to better understand the
1196d5caef5bSAndrii Nakryiko  * problem (and solution). Suppose we have two compilation units, each using
1197d5caef5bSAndrii Nakryiko  * same `struct S`, but each of them having incomplete type information about
1198d5caef5bSAndrii Nakryiko  * struct's fields:
1199d5caef5bSAndrii Nakryiko  *
1200d5caef5bSAndrii Nakryiko  * // CU #1:
1201d5caef5bSAndrii Nakryiko  * struct S;
1202d5caef5bSAndrii Nakryiko  * struct A {
1203d5caef5bSAndrii Nakryiko  *	int a;
1204d5caef5bSAndrii Nakryiko  *	struct A* self;
1205d5caef5bSAndrii Nakryiko  *	struct S* parent;
1206d5caef5bSAndrii Nakryiko  * };
1207d5caef5bSAndrii Nakryiko  * struct B;
1208d5caef5bSAndrii Nakryiko  * struct S {
1209d5caef5bSAndrii Nakryiko  *	struct A* a_ptr;
1210d5caef5bSAndrii Nakryiko  *	struct B* b_ptr;
1211d5caef5bSAndrii Nakryiko  * };
1212d5caef5bSAndrii Nakryiko  *
1213d5caef5bSAndrii Nakryiko  * // CU #2:
1214d5caef5bSAndrii Nakryiko  * struct S;
1215d5caef5bSAndrii Nakryiko  * struct A;
1216d5caef5bSAndrii Nakryiko  * struct B {
1217d5caef5bSAndrii Nakryiko  *	int b;
1218d5caef5bSAndrii Nakryiko  *	struct B* self;
1219d5caef5bSAndrii Nakryiko  *	struct S* parent;
1220d5caef5bSAndrii Nakryiko  * };
1221d5caef5bSAndrii Nakryiko  * struct S {
1222d5caef5bSAndrii Nakryiko  *	struct A* a_ptr;
1223d5caef5bSAndrii Nakryiko  *	struct B* b_ptr;
1224d5caef5bSAndrii Nakryiko  * };
1225d5caef5bSAndrii Nakryiko  *
1226d5caef5bSAndrii Nakryiko  * In case of CU #1, BTF data will know only that `struct B` exist (but no
1227d5caef5bSAndrii Nakryiko  * more), but will know the complete type information about `struct A`. While
1228d5caef5bSAndrii Nakryiko  * for CU #2, it will know full type information about `struct B`, but will
1229d5caef5bSAndrii Nakryiko  * only know about forward declaration of `struct A` (in BTF terms, it will
1230d5caef5bSAndrii Nakryiko  * have `BTF_KIND_FWD` type descriptor with name `B`).
1231d5caef5bSAndrii Nakryiko  *
1232d5caef5bSAndrii Nakryiko  * This compilation unit isolation means that it's possible that there is no
1233d5caef5bSAndrii Nakryiko  * single CU with complete type information describing structs `S`, `A`, and
1234d5caef5bSAndrii Nakryiko  * `B`. Also, we might get tons of duplicated and redundant type information.
1235d5caef5bSAndrii Nakryiko  *
1236d5caef5bSAndrii Nakryiko  * Additional complication we need to keep in mind comes from the fact that
1237d5caef5bSAndrii Nakryiko  * types, in general, can form graphs containing cycles, not just DAGs.
1238d5caef5bSAndrii Nakryiko  *
1239d5caef5bSAndrii Nakryiko  * While algorithm does deduplication, it also merges and resolves type
1240d5caef5bSAndrii Nakryiko  * information (unless disabled throught `struct btf_opts`), whenever possible.
1241d5caef5bSAndrii Nakryiko  * E.g., in the example above with two compilation units having partial type
1242d5caef5bSAndrii Nakryiko  * information for structs `A` and `B`, the output of algorithm will emit
1243d5caef5bSAndrii Nakryiko  * a single copy of each BTF type that describes structs `A`, `B`, and `S`
1244d5caef5bSAndrii Nakryiko  * (as well as type information for `int` and pointers), as if they were defined
1245d5caef5bSAndrii Nakryiko  * in a single compilation unit as:
1246d5caef5bSAndrii Nakryiko  *
1247d5caef5bSAndrii Nakryiko  * struct A {
1248d5caef5bSAndrii Nakryiko  *	int a;
1249d5caef5bSAndrii Nakryiko  *	struct A* self;
1250d5caef5bSAndrii Nakryiko  *	struct S* parent;
1251d5caef5bSAndrii Nakryiko  * };
1252d5caef5bSAndrii Nakryiko  * struct B {
1253d5caef5bSAndrii Nakryiko  *	int b;
1254d5caef5bSAndrii Nakryiko  *	struct B* self;
1255d5caef5bSAndrii Nakryiko  *	struct S* parent;
1256d5caef5bSAndrii Nakryiko  * };
1257d5caef5bSAndrii Nakryiko  * struct S {
1258d5caef5bSAndrii Nakryiko  *	struct A* a_ptr;
1259d5caef5bSAndrii Nakryiko  *	struct B* b_ptr;
1260d5caef5bSAndrii Nakryiko  * };
1261d5caef5bSAndrii Nakryiko  *
1262d5caef5bSAndrii Nakryiko  * Algorithm summary
1263d5caef5bSAndrii Nakryiko  * =================
1264d5caef5bSAndrii Nakryiko  *
1265d5caef5bSAndrii Nakryiko  * Algorithm completes its work in 6 separate passes:
1266d5caef5bSAndrii Nakryiko  *
1267d5caef5bSAndrii Nakryiko  * 1. Strings deduplication.
1268d5caef5bSAndrii Nakryiko  * 2. Primitive types deduplication (int, enum, fwd).
1269d5caef5bSAndrii Nakryiko  * 3. Struct/union types deduplication.
1270d5caef5bSAndrii Nakryiko  * 4. Reference types deduplication (pointers, typedefs, arrays, funcs, func
1271d5caef5bSAndrii Nakryiko  *    protos, and const/volatile/restrict modifiers).
1272d5caef5bSAndrii Nakryiko  * 5. Types compaction.
1273d5caef5bSAndrii Nakryiko  * 6. Types remapping.
1274d5caef5bSAndrii Nakryiko  *
1275d5caef5bSAndrii Nakryiko  * Algorithm determines canonical type descriptor, which is a single
1276d5caef5bSAndrii Nakryiko  * representative type for each truly unique type. This canonical type is the
1277d5caef5bSAndrii Nakryiko  * one that will go into final deduplicated BTF type information. For
1278d5caef5bSAndrii Nakryiko  * struct/unions, it is also the type that algorithm will merge additional type
1279d5caef5bSAndrii Nakryiko  * information into (while resolving FWDs), as it discovers it from data in
1280d5caef5bSAndrii Nakryiko  * other CUs. Each input BTF type eventually gets either mapped to itself, if
1281d5caef5bSAndrii Nakryiko  * that type is canonical, or to some other type, if that type is equivalent
1282d5caef5bSAndrii Nakryiko  * and was chosen as canonical representative. This mapping is stored in
1283d5caef5bSAndrii Nakryiko  * `btf_dedup->map` array. This map is also used to record STRUCT/UNION that
1284d5caef5bSAndrii Nakryiko  * FWD type got resolved to.
1285d5caef5bSAndrii Nakryiko  *
1286d5caef5bSAndrii Nakryiko  * To facilitate fast discovery of canonical types, we also maintain canonical
1287d5caef5bSAndrii Nakryiko  * index (`btf_dedup->dedup_table`), which maps type descriptor's signature hash
1288d5caef5bSAndrii Nakryiko  * (i.e., hashed kind, name, size, fields, etc) into a list of canonical types
1289d5caef5bSAndrii Nakryiko  * that match that signature. With sufficiently good choice of type signature
1290d5caef5bSAndrii Nakryiko  * hashing function, we can limit number of canonical types for each unique type
1291d5caef5bSAndrii Nakryiko  * signature to a very small number, allowing to find canonical type for any
1292d5caef5bSAndrii Nakryiko  * duplicated type very quickly.
1293d5caef5bSAndrii Nakryiko  *
1294d5caef5bSAndrii Nakryiko  * Struct/union deduplication is the most critical part and algorithm for
1295d5caef5bSAndrii Nakryiko  * deduplicating structs/unions is described in greater details in comments for
1296d5caef5bSAndrii Nakryiko  * `btf_dedup_is_equiv` function.
1297d5caef5bSAndrii Nakryiko  */
1298d5caef5bSAndrii Nakryiko int btf__dedup(struct btf *btf, struct btf_ext *btf_ext,
1299d5caef5bSAndrii Nakryiko 	       const struct btf_dedup_opts *opts)
1300d5caef5bSAndrii Nakryiko {
1301d5caef5bSAndrii Nakryiko 	struct btf_dedup *d = btf_dedup_new(btf, btf_ext, opts);
1302d5caef5bSAndrii Nakryiko 	int err;
1303d5caef5bSAndrii Nakryiko 
1304d5caef5bSAndrii Nakryiko 	if (IS_ERR(d)) {
1305d5caef5bSAndrii Nakryiko 		pr_debug("btf_dedup_new failed: %ld", PTR_ERR(d));
1306d5caef5bSAndrii Nakryiko 		return -EINVAL;
1307d5caef5bSAndrii Nakryiko 	}
1308d5caef5bSAndrii Nakryiko 
1309d5caef5bSAndrii Nakryiko 	err = btf_dedup_strings(d);
1310d5caef5bSAndrii Nakryiko 	if (err < 0) {
1311d5caef5bSAndrii Nakryiko 		pr_debug("btf_dedup_strings failed:%d\n", err);
1312d5caef5bSAndrii Nakryiko 		goto done;
1313d5caef5bSAndrii Nakryiko 	}
1314d5caef5bSAndrii Nakryiko 	err = btf_dedup_prim_types(d);
1315d5caef5bSAndrii Nakryiko 	if (err < 0) {
1316d5caef5bSAndrii Nakryiko 		pr_debug("btf_dedup_prim_types failed:%d\n", err);
1317d5caef5bSAndrii Nakryiko 		goto done;
1318d5caef5bSAndrii Nakryiko 	}
1319d5caef5bSAndrii Nakryiko 	err = btf_dedup_struct_types(d);
1320d5caef5bSAndrii Nakryiko 	if (err < 0) {
1321d5caef5bSAndrii Nakryiko 		pr_debug("btf_dedup_struct_types failed:%d\n", err);
1322d5caef5bSAndrii Nakryiko 		goto done;
1323d5caef5bSAndrii Nakryiko 	}
1324d5caef5bSAndrii Nakryiko 	err = btf_dedup_ref_types(d);
1325d5caef5bSAndrii Nakryiko 	if (err < 0) {
1326d5caef5bSAndrii Nakryiko 		pr_debug("btf_dedup_ref_types failed:%d\n", err);
1327d5caef5bSAndrii Nakryiko 		goto done;
1328d5caef5bSAndrii Nakryiko 	}
1329d5caef5bSAndrii Nakryiko 	err = btf_dedup_compact_types(d);
1330d5caef5bSAndrii Nakryiko 	if (err < 0) {
1331d5caef5bSAndrii Nakryiko 		pr_debug("btf_dedup_compact_types failed:%d\n", err);
1332d5caef5bSAndrii Nakryiko 		goto done;
1333d5caef5bSAndrii Nakryiko 	}
1334d5caef5bSAndrii Nakryiko 	err = btf_dedup_remap_types(d);
1335d5caef5bSAndrii Nakryiko 	if (err < 0) {
1336d5caef5bSAndrii Nakryiko 		pr_debug("btf_dedup_remap_types failed:%d\n", err);
1337d5caef5bSAndrii Nakryiko 		goto done;
1338d5caef5bSAndrii Nakryiko 	}
1339d5caef5bSAndrii Nakryiko 
1340d5caef5bSAndrii Nakryiko done:
1341d5caef5bSAndrii Nakryiko 	btf_dedup_free(d);
1342d5caef5bSAndrii Nakryiko 	return err;
1343d5caef5bSAndrii Nakryiko }
1344d5caef5bSAndrii Nakryiko 
1345d5caef5bSAndrii Nakryiko #define BTF_UNPROCESSED_ID ((__u32)-1)
1346d5caef5bSAndrii Nakryiko #define BTF_IN_PROGRESS_ID ((__u32)-2)
1347d5caef5bSAndrii Nakryiko 
1348d5caef5bSAndrii Nakryiko struct btf_dedup {
1349d5caef5bSAndrii Nakryiko 	/* .BTF section to be deduped in-place */
1350d5caef5bSAndrii Nakryiko 	struct btf *btf;
1351d5caef5bSAndrii Nakryiko 	/*
1352d5caef5bSAndrii Nakryiko 	 * Optional .BTF.ext section. When provided, any strings referenced
1353d5caef5bSAndrii Nakryiko 	 * from it will be taken into account when deduping strings
1354d5caef5bSAndrii Nakryiko 	 */
1355d5caef5bSAndrii Nakryiko 	struct btf_ext *btf_ext;
1356d5caef5bSAndrii Nakryiko 	/*
1357d5caef5bSAndrii Nakryiko 	 * This is a map from any type's signature hash to a list of possible
1358d5caef5bSAndrii Nakryiko 	 * canonical representative type candidates. Hash collisions are
1359d5caef5bSAndrii Nakryiko 	 * ignored, so even types of various kinds can share same list of
1360d5caef5bSAndrii Nakryiko 	 * candidates, which is fine because we rely on subsequent
1361d5caef5bSAndrii Nakryiko 	 * btf_xxx_equal() checks to authoritatively verify type equality.
1362d5caef5bSAndrii Nakryiko 	 */
13632fc3fc0bSAndrii Nakryiko 	struct hashmap *dedup_table;
1364d5caef5bSAndrii Nakryiko 	/* Canonical types map */
1365d5caef5bSAndrii Nakryiko 	__u32 *map;
1366d5caef5bSAndrii Nakryiko 	/* Hypothetical mapping, used during type graph equivalence checks */
1367d5caef5bSAndrii Nakryiko 	__u32 *hypot_map;
1368d5caef5bSAndrii Nakryiko 	__u32 *hypot_list;
1369d5caef5bSAndrii Nakryiko 	size_t hypot_cnt;
1370d5caef5bSAndrii Nakryiko 	size_t hypot_cap;
1371d5caef5bSAndrii Nakryiko 	/* Various option modifying behavior of algorithm */
1372d5caef5bSAndrii Nakryiko 	struct btf_dedup_opts opts;
1373d5caef5bSAndrii Nakryiko };
1374d5caef5bSAndrii Nakryiko 
1375d5caef5bSAndrii Nakryiko struct btf_str_ptr {
1376d5caef5bSAndrii Nakryiko 	const char *str;
1377d5caef5bSAndrii Nakryiko 	__u32 new_off;
1378d5caef5bSAndrii Nakryiko 	bool used;
1379d5caef5bSAndrii Nakryiko };
1380d5caef5bSAndrii Nakryiko 
1381d5caef5bSAndrii Nakryiko struct btf_str_ptrs {
1382d5caef5bSAndrii Nakryiko 	struct btf_str_ptr *ptrs;
1383d5caef5bSAndrii Nakryiko 	const char *data;
1384d5caef5bSAndrii Nakryiko 	__u32 cnt;
1385d5caef5bSAndrii Nakryiko 	__u32 cap;
1386d5caef5bSAndrii Nakryiko };
1387d5caef5bSAndrii Nakryiko 
13882fc3fc0bSAndrii Nakryiko static long hash_combine(long h, long value)
1389d5caef5bSAndrii Nakryiko {
13902fc3fc0bSAndrii Nakryiko 	return h * 31 + value;
1391d5caef5bSAndrii Nakryiko }
1392d5caef5bSAndrii Nakryiko 
13932fc3fc0bSAndrii Nakryiko #define for_each_dedup_cand(d, node, hash) \
13942fc3fc0bSAndrii Nakryiko 	hashmap__for_each_key_entry(d->dedup_table, node, (void *)hash)
1395d5caef5bSAndrii Nakryiko 
13962fc3fc0bSAndrii Nakryiko static int btf_dedup_table_add(struct btf_dedup *d, long hash, __u32 type_id)
1397d5caef5bSAndrii Nakryiko {
13982fc3fc0bSAndrii Nakryiko 	return hashmap__append(d->dedup_table,
13992fc3fc0bSAndrii Nakryiko 			       (void *)hash, (void *)(long)type_id);
1400d5caef5bSAndrii Nakryiko }
1401d5caef5bSAndrii Nakryiko 
1402d5caef5bSAndrii Nakryiko static int btf_dedup_hypot_map_add(struct btf_dedup *d,
1403d5caef5bSAndrii Nakryiko 				   __u32 from_id, __u32 to_id)
1404d5caef5bSAndrii Nakryiko {
1405d5caef5bSAndrii Nakryiko 	if (d->hypot_cnt == d->hypot_cap) {
1406d5caef5bSAndrii Nakryiko 		__u32 *new_list;
1407d5caef5bSAndrii Nakryiko 
1408*fb2426adSMartin KaFai Lau 		d->hypot_cap += max((size_t)16, d->hypot_cap / 2);
1409d5caef5bSAndrii Nakryiko 		new_list = realloc(d->hypot_list, sizeof(__u32) * d->hypot_cap);
1410d5caef5bSAndrii Nakryiko 		if (!new_list)
1411d5caef5bSAndrii Nakryiko 			return -ENOMEM;
1412d5caef5bSAndrii Nakryiko 		d->hypot_list = new_list;
1413d5caef5bSAndrii Nakryiko 	}
1414d5caef5bSAndrii Nakryiko 	d->hypot_list[d->hypot_cnt++] = from_id;
1415d5caef5bSAndrii Nakryiko 	d->hypot_map[from_id] = to_id;
1416d5caef5bSAndrii Nakryiko 	return 0;
1417d5caef5bSAndrii Nakryiko }
1418d5caef5bSAndrii Nakryiko 
1419d5caef5bSAndrii Nakryiko static void btf_dedup_clear_hypot_map(struct btf_dedup *d)
1420d5caef5bSAndrii Nakryiko {
1421d5caef5bSAndrii Nakryiko 	int i;
1422d5caef5bSAndrii Nakryiko 
1423d5caef5bSAndrii Nakryiko 	for (i = 0; i < d->hypot_cnt; i++)
1424d5caef5bSAndrii Nakryiko 		d->hypot_map[d->hypot_list[i]] = BTF_UNPROCESSED_ID;
1425d5caef5bSAndrii Nakryiko 	d->hypot_cnt = 0;
1426d5caef5bSAndrii Nakryiko }
1427d5caef5bSAndrii Nakryiko 
1428d5caef5bSAndrii Nakryiko static void btf_dedup_free(struct btf_dedup *d)
1429d5caef5bSAndrii Nakryiko {
14302fc3fc0bSAndrii Nakryiko 	hashmap__free(d->dedup_table);
14312fc3fc0bSAndrii Nakryiko 	d->dedup_table = NULL;
1432d5caef5bSAndrii Nakryiko 
1433d5caef5bSAndrii Nakryiko 	free(d->map);
1434d5caef5bSAndrii Nakryiko 	d->map = NULL;
1435d5caef5bSAndrii Nakryiko 
1436d5caef5bSAndrii Nakryiko 	free(d->hypot_map);
1437d5caef5bSAndrii Nakryiko 	d->hypot_map = NULL;
1438d5caef5bSAndrii Nakryiko 
1439d5caef5bSAndrii Nakryiko 	free(d->hypot_list);
1440d5caef5bSAndrii Nakryiko 	d->hypot_list = NULL;
1441d5caef5bSAndrii Nakryiko 
1442d5caef5bSAndrii Nakryiko 	free(d);
1443d5caef5bSAndrii Nakryiko }
1444d5caef5bSAndrii Nakryiko 
14452fc3fc0bSAndrii Nakryiko static size_t btf_dedup_identity_hash_fn(const void *key, void *ctx)
144651edf5f6SAndrii Nakryiko {
14472fc3fc0bSAndrii Nakryiko 	return (size_t)key;
144851edf5f6SAndrii Nakryiko }
144951edf5f6SAndrii Nakryiko 
14502fc3fc0bSAndrii Nakryiko static size_t btf_dedup_collision_hash_fn(const void *key, void *ctx)
14512fc3fc0bSAndrii Nakryiko {
14522fc3fc0bSAndrii Nakryiko 	return 0;
14532fc3fc0bSAndrii Nakryiko }
14542fc3fc0bSAndrii Nakryiko 
14552fc3fc0bSAndrii Nakryiko static bool btf_dedup_equal_fn(const void *k1, const void *k2, void *ctx)
14562fc3fc0bSAndrii Nakryiko {
14572fc3fc0bSAndrii Nakryiko 	return k1 == k2;
14582fc3fc0bSAndrii Nakryiko }
145951edf5f6SAndrii Nakryiko 
1460d5caef5bSAndrii Nakryiko static struct btf_dedup *btf_dedup_new(struct btf *btf, struct btf_ext *btf_ext,
1461d5caef5bSAndrii Nakryiko 				       const struct btf_dedup_opts *opts)
1462d5caef5bSAndrii Nakryiko {
1463d5caef5bSAndrii Nakryiko 	struct btf_dedup *d = calloc(1, sizeof(struct btf_dedup));
14642fc3fc0bSAndrii Nakryiko 	hashmap_hash_fn hash_fn = btf_dedup_identity_hash_fn;
1465d5caef5bSAndrii Nakryiko 	int i, err = 0;
1466d5caef5bSAndrii Nakryiko 
1467d5caef5bSAndrii Nakryiko 	if (!d)
1468d5caef5bSAndrii Nakryiko 		return ERR_PTR(-ENOMEM);
1469d5caef5bSAndrii Nakryiko 
147051edf5f6SAndrii Nakryiko 	d->opts.dont_resolve_fwds = opts && opts->dont_resolve_fwds;
14712fc3fc0bSAndrii Nakryiko 	/* dedup_table_size is now used only to force collisions in tests */
14722fc3fc0bSAndrii Nakryiko 	if (opts && opts->dedup_table_size == 1)
14732fc3fc0bSAndrii Nakryiko 		hash_fn = btf_dedup_collision_hash_fn;
147451edf5f6SAndrii Nakryiko 
1475d5caef5bSAndrii Nakryiko 	d->btf = btf;
1476d5caef5bSAndrii Nakryiko 	d->btf_ext = btf_ext;
1477d5caef5bSAndrii Nakryiko 
14782fc3fc0bSAndrii Nakryiko 	d->dedup_table = hashmap__new(hash_fn, btf_dedup_equal_fn, NULL);
14792fc3fc0bSAndrii Nakryiko 	if (IS_ERR(d->dedup_table)) {
14802fc3fc0bSAndrii Nakryiko 		err = PTR_ERR(d->dedup_table);
14812fc3fc0bSAndrii Nakryiko 		d->dedup_table = NULL;
1482d5caef5bSAndrii Nakryiko 		goto done;
1483d5caef5bSAndrii Nakryiko 	}
1484d5caef5bSAndrii Nakryiko 
1485d5caef5bSAndrii Nakryiko 	d->map = malloc(sizeof(__u32) * (1 + btf->nr_types));
1486d5caef5bSAndrii Nakryiko 	if (!d->map) {
1487d5caef5bSAndrii Nakryiko 		err = -ENOMEM;
1488d5caef5bSAndrii Nakryiko 		goto done;
1489d5caef5bSAndrii Nakryiko 	}
1490d5caef5bSAndrii Nakryiko 	/* special BTF "void" type is made canonical immediately */
1491d5caef5bSAndrii Nakryiko 	d->map[0] = 0;
1492189cf5a4SAndrii Nakryiko 	for (i = 1; i <= btf->nr_types; i++) {
1493189cf5a4SAndrii Nakryiko 		struct btf_type *t = d->btf->types[i];
1494189cf5a4SAndrii Nakryiko 
1495189cf5a4SAndrii Nakryiko 		/* VAR and DATASEC are never deduped and are self-canonical */
1496b03bc685SAndrii Nakryiko 		if (btf_is_var(t) || btf_is_datasec(t))
1497189cf5a4SAndrii Nakryiko 			d->map[i] = i;
1498189cf5a4SAndrii Nakryiko 		else
1499d5caef5bSAndrii Nakryiko 			d->map[i] = BTF_UNPROCESSED_ID;
1500189cf5a4SAndrii Nakryiko 	}
1501d5caef5bSAndrii Nakryiko 
1502d5caef5bSAndrii Nakryiko 	d->hypot_map = malloc(sizeof(__u32) * (1 + btf->nr_types));
1503d5caef5bSAndrii Nakryiko 	if (!d->hypot_map) {
1504d5caef5bSAndrii Nakryiko 		err = -ENOMEM;
1505d5caef5bSAndrii Nakryiko 		goto done;
1506d5caef5bSAndrii Nakryiko 	}
1507d5caef5bSAndrii Nakryiko 	for (i = 0; i <= btf->nr_types; i++)
1508d5caef5bSAndrii Nakryiko 		d->hypot_map[i] = BTF_UNPROCESSED_ID;
1509d5caef5bSAndrii Nakryiko 
1510d5caef5bSAndrii Nakryiko done:
1511d5caef5bSAndrii Nakryiko 	if (err) {
1512d5caef5bSAndrii Nakryiko 		btf_dedup_free(d);
1513d5caef5bSAndrii Nakryiko 		return ERR_PTR(err);
1514d5caef5bSAndrii Nakryiko 	}
1515d5caef5bSAndrii Nakryiko 
1516d5caef5bSAndrii Nakryiko 	return d;
1517d5caef5bSAndrii Nakryiko }
1518d5caef5bSAndrii Nakryiko 
1519d5caef5bSAndrii Nakryiko typedef int (*str_off_fn_t)(__u32 *str_off_ptr, void *ctx);
1520d5caef5bSAndrii Nakryiko 
1521d5caef5bSAndrii Nakryiko /*
1522d5caef5bSAndrii Nakryiko  * Iterate over all possible places in .BTF and .BTF.ext that can reference
1523d5caef5bSAndrii Nakryiko  * string and pass pointer to it to a provided callback `fn`.
1524d5caef5bSAndrii Nakryiko  */
1525d5caef5bSAndrii Nakryiko static int btf_for_each_str_off(struct btf_dedup *d, str_off_fn_t fn, void *ctx)
1526d5caef5bSAndrii Nakryiko {
1527d5caef5bSAndrii Nakryiko 	void *line_data_cur, *line_data_end;
1528d5caef5bSAndrii Nakryiko 	int i, j, r, rec_size;
1529d5caef5bSAndrii Nakryiko 	struct btf_type *t;
1530d5caef5bSAndrii Nakryiko 
1531d5caef5bSAndrii Nakryiko 	for (i = 1; i <= d->btf->nr_types; i++) {
1532d5caef5bSAndrii Nakryiko 		t = d->btf->types[i];
1533d5caef5bSAndrii Nakryiko 		r = fn(&t->name_off, ctx);
1534d5caef5bSAndrii Nakryiko 		if (r)
1535d5caef5bSAndrii Nakryiko 			return r;
1536d5caef5bSAndrii Nakryiko 
1537b03bc685SAndrii Nakryiko 		switch (btf_kind(t)) {
1538d5caef5bSAndrii Nakryiko 		case BTF_KIND_STRUCT:
1539d5caef5bSAndrii Nakryiko 		case BTF_KIND_UNION: {
1540b03bc685SAndrii Nakryiko 			struct btf_member *m = btf_members(t);
1541b03bc685SAndrii Nakryiko 			__u16 vlen = btf_vlen(t);
1542d5caef5bSAndrii Nakryiko 
1543d5caef5bSAndrii Nakryiko 			for (j = 0; j < vlen; j++) {
1544d5caef5bSAndrii Nakryiko 				r = fn(&m->name_off, ctx);
1545d5caef5bSAndrii Nakryiko 				if (r)
1546d5caef5bSAndrii Nakryiko 					return r;
1547d5caef5bSAndrii Nakryiko 				m++;
1548d5caef5bSAndrii Nakryiko 			}
1549d5caef5bSAndrii Nakryiko 			break;
1550d5caef5bSAndrii Nakryiko 		}
1551d5caef5bSAndrii Nakryiko 		case BTF_KIND_ENUM: {
1552b03bc685SAndrii Nakryiko 			struct btf_enum *m = btf_enum(t);
1553b03bc685SAndrii Nakryiko 			__u16 vlen = btf_vlen(t);
1554d5caef5bSAndrii Nakryiko 
1555d5caef5bSAndrii Nakryiko 			for (j = 0; j < vlen; j++) {
1556d5caef5bSAndrii Nakryiko 				r = fn(&m->name_off, ctx);
1557d5caef5bSAndrii Nakryiko 				if (r)
1558d5caef5bSAndrii Nakryiko 					return r;
1559d5caef5bSAndrii Nakryiko 				m++;
1560d5caef5bSAndrii Nakryiko 			}
1561d5caef5bSAndrii Nakryiko 			break;
1562d5caef5bSAndrii Nakryiko 		}
1563d5caef5bSAndrii Nakryiko 		case BTF_KIND_FUNC_PROTO: {
1564b03bc685SAndrii Nakryiko 			struct btf_param *m = btf_params(t);
1565b03bc685SAndrii Nakryiko 			__u16 vlen = btf_vlen(t);
1566d5caef5bSAndrii Nakryiko 
1567d5caef5bSAndrii Nakryiko 			for (j = 0; j < vlen; j++) {
1568d5caef5bSAndrii Nakryiko 				r = fn(&m->name_off, ctx);
1569d5caef5bSAndrii Nakryiko 				if (r)
1570d5caef5bSAndrii Nakryiko 					return r;
1571d5caef5bSAndrii Nakryiko 				m++;
1572d5caef5bSAndrii Nakryiko 			}
1573d5caef5bSAndrii Nakryiko 			break;
1574d5caef5bSAndrii Nakryiko 		}
1575d5caef5bSAndrii Nakryiko 		default:
1576d5caef5bSAndrii Nakryiko 			break;
1577d5caef5bSAndrii Nakryiko 		}
1578d5caef5bSAndrii Nakryiko 	}
1579d5caef5bSAndrii Nakryiko 
1580d5caef5bSAndrii Nakryiko 	if (!d->btf_ext)
1581d5caef5bSAndrii Nakryiko 		return 0;
1582d5caef5bSAndrii Nakryiko 
1583d5caef5bSAndrii Nakryiko 	line_data_cur = d->btf_ext->line_info.info;
1584d5caef5bSAndrii Nakryiko 	line_data_end = d->btf_ext->line_info.info + d->btf_ext->line_info.len;
1585d5caef5bSAndrii Nakryiko 	rec_size = d->btf_ext->line_info.rec_size;
1586d5caef5bSAndrii Nakryiko 
1587d5caef5bSAndrii Nakryiko 	while (line_data_cur < line_data_end) {
1588d5caef5bSAndrii Nakryiko 		struct btf_ext_info_sec *sec = line_data_cur;
1589d5caef5bSAndrii Nakryiko 		struct bpf_line_info_min *line_info;
1590d5caef5bSAndrii Nakryiko 		__u32 num_info = sec->num_info;
1591d5caef5bSAndrii Nakryiko 
1592d5caef5bSAndrii Nakryiko 		r = fn(&sec->sec_name_off, ctx);
1593d5caef5bSAndrii Nakryiko 		if (r)
1594d5caef5bSAndrii Nakryiko 			return r;
1595d5caef5bSAndrii Nakryiko 
1596d5caef5bSAndrii Nakryiko 		line_data_cur += sizeof(struct btf_ext_info_sec);
1597d5caef5bSAndrii Nakryiko 		for (i = 0; i < num_info; i++) {
1598d5caef5bSAndrii Nakryiko 			line_info = line_data_cur;
1599d5caef5bSAndrii Nakryiko 			r = fn(&line_info->file_name_off, ctx);
1600d5caef5bSAndrii Nakryiko 			if (r)
1601d5caef5bSAndrii Nakryiko 				return r;
1602d5caef5bSAndrii Nakryiko 			r = fn(&line_info->line_off, ctx);
1603d5caef5bSAndrii Nakryiko 			if (r)
1604d5caef5bSAndrii Nakryiko 				return r;
1605d5caef5bSAndrii Nakryiko 			line_data_cur += rec_size;
1606d5caef5bSAndrii Nakryiko 		}
1607d5caef5bSAndrii Nakryiko 	}
1608d5caef5bSAndrii Nakryiko 
1609d5caef5bSAndrii Nakryiko 	return 0;
1610d5caef5bSAndrii Nakryiko }
1611d5caef5bSAndrii Nakryiko 
1612d5caef5bSAndrii Nakryiko static int str_sort_by_content(const void *a1, const void *a2)
1613d5caef5bSAndrii Nakryiko {
1614d5caef5bSAndrii Nakryiko 	const struct btf_str_ptr *p1 = a1;
1615d5caef5bSAndrii Nakryiko 	const struct btf_str_ptr *p2 = a2;
1616d5caef5bSAndrii Nakryiko 
1617d5caef5bSAndrii Nakryiko 	return strcmp(p1->str, p2->str);
1618d5caef5bSAndrii Nakryiko }
1619d5caef5bSAndrii Nakryiko 
1620d5caef5bSAndrii Nakryiko static int str_sort_by_offset(const void *a1, const void *a2)
1621d5caef5bSAndrii Nakryiko {
1622d5caef5bSAndrii Nakryiko 	const struct btf_str_ptr *p1 = a1;
1623d5caef5bSAndrii Nakryiko 	const struct btf_str_ptr *p2 = a2;
1624d5caef5bSAndrii Nakryiko 
1625d5caef5bSAndrii Nakryiko 	if (p1->str != p2->str)
1626d5caef5bSAndrii Nakryiko 		return p1->str < p2->str ? -1 : 1;
1627d5caef5bSAndrii Nakryiko 	return 0;
1628d5caef5bSAndrii Nakryiko }
1629d5caef5bSAndrii Nakryiko 
1630d5caef5bSAndrii Nakryiko static int btf_dedup_str_ptr_cmp(const void *str_ptr, const void *pelem)
1631d5caef5bSAndrii Nakryiko {
1632d5caef5bSAndrii Nakryiko 	const struct btf_str_ptr *p = pelem;
1633d5caef5bSAndrii Nakryiko 
1634d5caef5bSAndrii Nakryiko 	if (str_ptr != p->str)
1635d5caef5bSAndrii Nakryiko 		return (const char *)str_ptr < p->str ? -1 : 1;
1636d5caef5bSAndrii Nakryiko 	return 0;
1637d5caef5bSAndrii Nakryiko }
1638d5caef5bSAndrii Nakryiko 
1639d5caef5bSAndrii Nakryiko static int btf_str_mark_as_used(__u32 *str_off_ptr, void *ctx)
1640d5caef5bSAndrii Nakryiko {
1641d5caef5bSAndrii Nakryiko 	struct btf_str_ptrs *strs;
1642d5caef5bSAndrii Nakryiko 	struct btf_str_ptr *s;
1643d5caef5bSAndrii Nakryiko 
1644d5caef5bSAndrii Nakryiko 	if (*str_off_ptr == 0)
1645d5caef5bSAndrii Nakryiko 		return 0;
1646d5caef5bSAndrii Nakryiko 
1647d5caef5bSAndrii Nakryiko 	strs = ctx;
1648d5caef5bSAndrii Nakryiko 	s = bsearch(strs->data + *str_off_ptr, strs->ptrs, strs->cnt,
1649d5caef5bSAndrii Nakryiko 		    sizeof(struct btf_str_ptr), btf_dedup_str_ptr_cmp);
1650d5caef5bSAndrii Nakryiko 	if (!s)
1651d5caef5bSAndrii Nakryiko 		return -EINVAL;
1652d5caef5bSAndrii Nakryiko 	s->used = true;
1653d5caef5bSAndrii Nakryiko 	return 0;
1654d5caef5bSAndrii Nakryiko }
1655d5caef5bSAndrii Nakryiko 
1656d5caef5bSAndrii Nakryiko static int btf_str_remap_offset(__u32 *str_off_ptr, void *ctx)
1657d5caef5bSAndrii Nakryiko {
1658d5caef5bSAndrii Nakryiko 	struct btf_str_ptrs *strs;
1659d5caef5bSAndrii Nakryiko 	struct btf_str_ptr *s;
1660d5caef5bSAndrii Nakryiko 
1661d5caef5bSAndrii Nakryiko 	if (*str_off_ptr == 0)
1662d5caef5bSAndrii Nakryiko 		return 0;
1663d5caef5bSAndrii Nakryiko 
1664d5caef5bSAndrii Nakryiko 	strs = ctx;
1665d5caef5bSAndrii Nakryiko 	s = bsearch(strs->data + *str_off_ptr, strs->ptrs, strs->cnt,
1666d5caef5bSAndrii Nakryiko 		    sizeof(struct btf_str_ptr), btf_dedup_str_ptr_cmp);
1667d5caef5bSAndrii Nakryiko 	if (!s)
1668d5caef5bSAndrii Nakryiko 		return -EINVAL;
1669d5caef5bSAndrii Nakryiko 	*str_off_ptr = s->new_off;
1670d5caef5bSAndrii Nakryiko 	return 0;
1671d5caef5bSAndrii Nakryiko }
1672d5caef5bSAndrii Nakryiko 
1673d5caef5bSAndrii Nakryiko /*
1674d5caef5bSAndrii Nakryiko  * Dedup string and filter out those that are not referenced from either .BTF
1675d5caef5bSAndrii Nakryiko  * or .BTF.ext (if provided) sections.
1676d5caef5bSAndrii Nakryiko  *
1677d5caef5bSAndrii Nakryiko  * This is done by building index of all strings in BTF's string section,
1678d5caef5bSAndrii Nakryiko  * then iterating over all entities that can reference strings (e.g., type
1679d5caef5bSAndrii Nakryiko  * names, struct field names, .BTF.ext line info, etc) and marking corresponding
1680d5caef5bSAndrii Nakryiko  * strings as used. After that all used strings are deduped and compacted into
1681d5caef5bSAndrii Nakryiko  * sequential blob of memory and new offsets are calculated. Then all the string
1682d5caef5bSAndrii Nakryiko  * references are iterated again and rewritten using new offsets.
1683d5caef5bSAndrii Nakryiko  */
1684d5caef5bSAndrii Nakryiko static int btf_dedup_strings(struct btf_dedup *d)
1685d5caef5bSAndrii Nakryiko {
1686d5caef5bSAndrii Nakryiko 	const struct btf_header *hdr = d->btf->hdr;
1687d5caef5bSAndrii Nakryiko 	char *start = (char *)d->btf->nohdr_data + hdr->str_off;
1688d5caef5bSAndrii Nakryiko 	char *end = start + d->btf->hdr->str_len;
1689d5caef5bSAndrii Nakryiko 	char *p = start, *tmp_strs = NULL;
1690d5caef5bSAndrii Nakryiko 	struct btf_str_ptrs strs = {
1691d5caef5bSAndrii Nakryiko 		.cnt = 0,
1692d5caef5bSAndrii Nakryiko 		.cap = 0,
1693d5caef5bSAndrii Nakryiko 		.ptrs = NULL,
1694d5caef5bSAndrii Nakryiko 		.data = start,
1695d5caef5bSAndrii Nakryiko 	};
1696d5caef5bSAndrii Nakryiko 	int i, j, err = 0, grp_idx;
1697d5caef5bSAndrii Nakryiko 	bool grp_used;
1698d5caef5bSAndrii Nakryiko 
1699d5caef5bSAndrii Nakryiko 	/* build index of all strings */
1700d5caef5bSAndrii Nakryiko 	while (p < end) {
1701d5caef5bSAndrii Nakryiko 		if (strs.cnt + 1 > strs.cap) {
1702d5caef5bSAndrii Nakryiko 			struct btf_str_ptr *new_ptrs;
1703d5caef5bSAndrii Nakryiko 
1704*fb2426adSMartin KaFai Lau 			strs.cap += max(strs.cnt / 2, 16U);
1705d5caef5bSAndrii Nakryiko 			new_ptrs = realloc(strs.ptrs,
1706d5caef5bSAndrii Nakryiko 					   sizeof(strs.ptrs[0]) * strs.cap);
1707d5caef5bSAndrii Nakryiko 			if (!new_ptrs) {
1708d5caef5bSAndrii Nakryiko 				err = -ENOMEM;
1709d5caef5bSAndrii Nakryiko 				goto done;
1710d5caef5bSAndrii Nakryiko 			}
1711d5caef5bSAndrii Nakryiko 			strs.ptrs = new_ptrs;
1712d5caef5bSAndrii Nakryiko 		}
1713d5caef5bSAndrii Nakryiko 
1714d5caef5bSAndrii Nakryiko 		strs.ptrs[strs.cnt].str = p;
1715d5caef5bSAndrii Nakryiko 		strs.ptrs[strs.cnt].used = false;
1716d5caef5bSAndrii Nakryiko 
1717d5caef5bSAndrii Nakryiko 		p += strlen(p) + 1;
1718d5caef5bSAndrii Nakryiko 		strs.cnt++;
1719d5caef5bSAndrii Nakryiko 	}
1720d5caef5bSAndrii Nakryiko 
1721d5caef5bSAndrii Nakryiko 	/* temporary storage for deduplicated strings */
1722d5caef5bSAndrii Nakryiko 	tmp_strs = malloc(d->btf->hdr->str_len);
1723d5caef5bSAndrii Nakryiko 	if (!tmp_strs) {
1724d5caef5bSAndrii Nakryiko 		err = -ENOMEM;
1725d5caef5bSAndrii Nakryiko 		goto done;
1726d5caef5bSAndrii Nakryiko 	}
1727d5caef5bSAndrii Nakryiko 
1728d5caef5bSAndrii Nakryiko 	/* mark all used strings */
1729d5caef5bSAndrii Nakryiko 	strs.ptrs[0].used = true;
1730d5caef5bSAndrii Nakryiko 	err = btf_for_each_str_off(d, btf_str_mark_as_used, &strs);
1731d5caef5bSAndrii Nakryiko 	if (err)
1732d5caef5bSAndrii Nakryiko 		goto done;
1733d5caef5bSAndrii Nakryiko 
1734d5caef5bSAndrii Nakryiko 	/* sort strings by context, so that we can identify duplicates */
1735d5caef5bSAndrii Nakryiko 	qsort(strs.ptrs, strs.cnt, sizeof(strs.ptrs[0]), str_sort_by_content);
1736d5caef5bSAndrii Nakryiko 
1737d5caef5bSAndrii Nakryiko 	/*
1738d5caef5bSAndrii Nakryiko 	 * iterate groups of equal strings and if any instance in a group was
1739d5caef5bSAndrii Nakryiko 	 * referenced, emit single instance and remember new offset
1740d5caef5bSAndrii Nakryiko 	 */
1741d5caef5bSAndrii Nakryiko 	p = tmp_strs;
1742d5caef5bSAndrii Nakryiko 	grp_idx = 0;
1743d5caef5bSAndrii Nakryiko 	grp_used = strs.ptrs[0].used;
1744d5caef5bSAndrii Nakryiko 	/* iterate past end to avoid code duplication after loop */
1745d5caef5bSAndrii Nakryiko 	for (i = 1; i <= strs.cnt; i++) {
1746d5caef5bSAndrii Nakryiko 		/*
1747d5caef5bSAndrii Nakryiko 		 * when i == strs.cnt, we want to skip string comparison and go
1748d5caef5bSAndrii Nakryiko 		 * straight to handling last group of strings (otherwise we'd
1749d5caef5bSAndrii Nakryiko 		 * need to handle last group after the loop w/ duplicated code)
1750d5caef5bSAndrii Nakryiko 		 */
1751d5caef5bSAndrii Nakryiko 		if (i < strs.cnt &&
1752d5caef5bSAndrii Nakryiko 		    !strcmp(strs.ptrs[i].str, strs.ptrs[grp_idx].str)) {
1753d5caef5bSAndrii Nakryiko 			grp_used = grp_used || strs.ptrs[i].used;
1754d5caef5bSAndrii Nakryiko 			continue;
1755d5caef5bSAndrii Nakryiko 		}
1756d5caef5bSAndrii Nakryiko 
1757d5caef5bSAndrii Nakryiko 		/*
1758d5caef5bSAndrii Nakryiko 		 * this check would have been required after the loop to handle
1759d5caef5bSAndrii Nakryiko 		 * last group of strings, but due to <= condition in a loop
1760d5caef5bSAndrii Nakryiko 		 * we avoid that duplication
1761d5caef5bSAndrii Nakryiko 		 */
1762d5caef5bSAndrii Nakryiko 		if (grp_used) {
1763d5caef5bSAndrii Nakryiko 			int new_off = p - tmp_strs;
1764d5caef5bSAndrii Nakryiko 			__u32 len = strlen(strs.ptrs[grp_idx].str);
1765d5caef5bSAndrii Nakryiko 
1766d5caef5bSAndrii Nakryiko 			memmove(p, strs.ptrs[grp_idx].str, len + 1);
1767d5caef5bSAndrii Nakryiko 			for (j = grp_idx; j < i; j++)
1768d5caef5bSAndrii Nakryiko 				strs.ptrs[j].new_off = new_off;
1769d5caef5bSAndrii Nakryiko 			p += len + 1;
1770d5caef5bSAndrii Nakryiko 		}
1771d5caef5bSAndrii Nakryiko 
1772d5caef5bSAndrii Nakryiko 		if (i < strs.cnt) {
1773d5caef5bSAndrii Nakryiko 			grp_idx = i;
1774d5caef5bSAndrii Nakryiko 			grp_used = strs.ptrs[i].used;
1775d5caef5bSAndrii Nakryiko 		}
1776d5caef5bSAndrii Nakryiko 	}
1777d5caef5bSAndrii Nakryiko 
1778d5caef5bSAndrii Nakryiko 	/* replace original strings with deduped ones */
1779d5caef5bSAndrii Nakryiko 	d->btf->hdr->str_len = p - tmp_strs;
1780d5caef5bSAndrii Nakryiko 	memmove(start, tmp_strs, d->btf->hdr->str_len);
1781d5caef5bSAndrii Nakryiko 	end = start + d->btf->hdr->str_len;
1782d5caef5bSAndrii Nakryiko 
1783d5caef5bSAndrii Nakryiko 	/* restore original order for further binary search lookups */
1784d5caef5bSAndrii Nakryiko 	qsort(strs.ptrs, strs.cnt, sizeof(strs.ptrs[0]), str_sort_by_offset);
1785d5caef5bSAndrii Nakryiko 
1786d5caef5bSAndrii Nakryiko 	/* remap string offsets */
1787d5caef5bSAndrii Nakryiko 	err = btf_for_each_str_off(d, btf_str_remap_offset, &strs);
1788d5caef5bSAndrii Nakryiko 	if (err)
1789d5caef5bSAndrii Nakryiko 		goto done;
1790d5caef5bSAndrii Nakryiko 
1791d5caef5bSAndrii Nakryiko 	d->btf->hdr->str_len = end - start;
1792d5caef5bSAndrii Nakryiko 
1793d5caef5bSAndrii Nakryiko done:
1794d5caef5bSAndrii Nakryiko 	free(tmp_strs);
1795d5caef5bSAndrii Nakryiko 	free(strs.ptrs);
1796d5caef5bSAndrii Nakryiko 	return err;
1797d5caef5bSAndrii Nakryiko }
1798d5caef5bSAndrii Nakryiko 
17992fc3fc0bSAndrii Nakryiko static long btf_hash_common(struct btf_type *t)
1800d5caef5bSAndrii Nakryiko {
18012fc3fc0bSAndrii Nakryiko 	long h;
1802d5caef5bSAndrii Nakryiko 
1803d5caef5bSAndrii Nakryiko 	h = hash_combine(0, t->name_off);
1804d5caef5bSAndrii Nakryiko 	h = hash_combine(h, t->info);
1805d5caef5bSAndrii Nakryiko 	h = hash_combine(h, t->size);
1806d5caef5bSAndrii Nakryiko 	return h;
1807d5caef5bSAndrii Nakryiko }
1808d5caef5bSAndrii Nakryiko 
1809d5caef5bSAndrii Nakryiko static bool btf_equal_common(struct btf_type *t1, struct btf_type *t2)
1810d5caef5bSAndrii Nakryiko {
1811d5caef5bSAndrii Nakryiko 	return t1->name_off == t2->name_off &&
1812d5caef5bSAndrii Nakryiko 	       t1->info == t2->info &&
1813d5caef5bSAndrii Nakryiko 	       t1->size == t2->size;
1814d5caef5bSAndrii Nakryiko }
1815d5caef5bSAndrii Nakryiko 
1816d5caef5bSAndrii Nakryiko /* Calculate type signature hash of INT. */
18172fc3fc0bSAndrii Nakryiko static long btf_hash_int(struct btf_type *t)
1818d5caef5bSAndrii Nakryiko {
1819d5caef5bSAndrii Nakryiko 	__u32 info = *(__u32 *)(t + 1);
18202fc3fc0bSAndrii Nakryiko 	long h;
1821d5caef5bSAndrii Nakryiko 
1822d5caef5bSAndrii Nakryiko 	h = btf_hash_common(t);
1823d5caef5bSAndrii Nakryiko 	h = hash_combine(h, info);
1824d5caef5bSAndrii Nakryiko 	return h;
1825d5caef5bSAndrii Nakryiko }
1826d5caef5bSAndrii Nakryiko 
1827d5caef5bSAndrii Nakryiko /* Check structural equality of two INTs. */
1828d5caef5bSAndrii Nakryiko static bool btf_equal_int(struct btf_type *t1, struct btf_type *t2)
1829d5caef5bSAndrii Nakryiko {
1830d5caef5bSAndrii Nakryiko 	__u32 info1, info2;
1831d5caef5bSAndrii Nakryiko 
1832d5caef5bSAndrii Nakryiko 	if (!btf_equal_common(t1, t2))
1833d5caef5bSAndrii Nakryiko 		return false;
1834d5caef5bSAndrii Nakryiko 	info1 = *(__u32 *)(t1 + 1);
1835d5caef5bSAndrii Nakryiko 	info2 = *(__u32 *)(t2 + 1);
1836d5caef5bSAndrii Nakryiko 	return info1 == info2;
1837d5caef5bSAndrii Nakryiko }
1838d5caef5bSAndrii Nakryiko 
1839d5caef5bSAndrii Nakryiko /* Calculate type signature hash of ENUM. */
18402fc3fc0bSAndrii Nakryiko static long btf_hash_enum(struct btf_type *t)
1841d5caef5bSAndrii Nakryiko {
18422fc3fc0bSAndrii Nakryiko 	long h;
1843d5caef5bSAndrii Nakryiko 
18449768095bSAndrii Nakryiko 	/* don't hash vlen and enum members to support enum fwd resolving */
18459768095bSAndrii Nakryiko 	h = hash_combine(0, t->name_off);
18469768095bSAndrii Nakryiko 	h = hash_combine(h, t->info & ~0xffff);
18479768095bSAndrii Nakryiko 	h = hash_combine(h, t->size);
1848d5caef5bSAndrii Nakryiko 	return h;
1849d5caef5bSAndrii Nakryiko }
1850d5caef5bSAndrii Nakryiko 
1851d5caef5bSAndrii Nakryiko /* Check structural equality of two ENUMs. */
1852d5caef5bSAndrii Nakryiko static bool btf_equal_enum(struct btf_type *t1, struct btf_type *t2)
1853d5caef5bSAndrii Nakryiko {
1854b03bc685SAndrii Nakryiko 	const struct btf_enum *m1, *m2;
1855d5caef5bSAndrii Nakryiko 	__u16 vlen;
1856d5caef5bSAndrii Nakryiko 	int i;
1857d5caef5bSAndrii Nakryiko 
1858d5caef5bSAndrii Nakryiko 	if (!btf_equal_common(t1, t2))
1859d5caef5bSAndrii Nakryiko 		return false;
1860d5caef5bSAndrii Nakryiko 
1861b03bc685SAndrii Nakryiko 	vlen = btf_vlen(t1);
1862b03bc685SAndrii Nakryiko 	m1 = btf_enum(t1);
1863b03bc685SAndrii Nakryiko 	m2 = btf_enum(t2);
1864d5caef5bSAndrii Nakryiko 	for (i = 0; i < vlen; i++) {
1865d5caef5bSAndrii Nakryiko 		if (m1->name_off != m2->name_off || m1->val != m2->val)
1866d5caef5bSAndrii Nakryiko 			return false;
1867d5caef5bSAndrii Nakryiko 		m1++;
1868d5caef5bSAndrii Nakryiko 		m2++;
1869d5caef5bSAndrii Nakryiko 	}
1870d5caef5bSAndrii Nakryiko 	return true;
1871d5caef5bSAndrii Nakryiko }
1872d5caef5bSAndrii Nakryiko 
18739768095bSAndrii Nakryiko static inline bool btf_is_enum_fwd(struct btf_type *t)
18749768095bSAndrii Nakryiko {
1875b03bc685SAndrii Nakryiko 	return btf_is_enum(t) && btf_vlen(t) == 0;
18769768095bSAndrii Nakryiko }
18779768095bSAndrii Nakryiko 
18789768095bSAndrii Nakryiko static bool btf_compat_enum(struct btf_type *t1, struct btf_type *t2)
18799768095bSAndrii Nakryiko {
18809768095bSAndrii Nakryiko 	if (!btf_is_enum_fwd(t1) && !btf_is_enum_fwd(t2))
18819768095bSAndrii Nakryiko 		return btf_equal_enum(t1, t2);
18829768095bSAndrii Nakryiko 	/* ignore vlen when comparing */
18839768095bSAndrii Nakryiko 	return t1->name_off == t2->name_off &&
18849768095bSAndrii Nakryiko 	       (t1->info & ~0xffff) == (t2->info & ~0xffff) &&
18859768095bSAndrii Nakryiko 	       t1->size == t2->size;
18869768095bSAndrii Nakryiko }
18879768095bSAndrii Nakryiko 
1888d5caef5bSAndrii Nakryiko /*
1889d5caef5bSAndrii Nakryiko  * Calculate type signature hash of STRUCT/UNION, ignoring referenced type IDs,
1890d5caef5bSAndrii Nakryiko  * as referenced type IDs equivalence is established separately during type
1891d5caef5bSAndrii Nakryiko  * graph equivalence check algorithm.
1892d5caef5bSAndrii Nakryiko  */
18932fc3fc0bSAndrii Nakryiko static long btf_hash_struct(struct btf_type *t)
1894d5caef5bSAndrii Nakryiko {
1895b03bc685SAndrii Nakryiko 	const struct btf_member *member = btf_members(t);
1896b03bc685SAndrii Nakryiko 	__u32 vlen = btf_vlen(t);
18972fc3fc0bSAndrii Nakryiko 	long h = btf_hash_common(t);
1898d5caef5bSAndrii Nakryiko 	int i;
1899d5caef5bSAndrii Nakryiko 
1900d5caef5bSAndrii Nakryiko 	for (i = 0; i < vlen; i++) {
1901d5caef5bSAndrii Nakryiko 		h = hash_combine(h, member->name_off);
1902d5caef5bSAndrii Nakryiko 		h = hash_combine(h, member->offset);
1903d5caef5bSAndrii Nakryiko 		/* no hashing of referenced type ID, it can be unresolved yet */
1904d5caef5bSAndrii Nakryiko 		member++;
1905d5caef5bSAndrii Nakryiko 	}
1906d5caef5bSAndrii Nakryiko 	return h;
1907d5caef5bSAndrii Nakryiko }
1908d5caef5bSAndrii Nakryiko 
1909d5caef5bSAndrii Nakryiko /*
1910d5caef5bSAndrii Nakryiko  * Check structural compatibility of two FUNC_PROTOs, ignoring referenced type
1911d5caef5bSAndrii Nakryiko  * IDs. This check is performed during type graph equivalence check and
1912d5caef5bSAndrii Nakryiko  * referenced types equivalence is checked separately.
1913d5caef5bSAndrii Nakryiko  */
191491097fbeSAndrii Nakryiko static bool btf_shallow_equal_struct(struct btf_type *t1, struct btf_type *t2)
1915d5caef5bSAndrii Nakryiko {
1916b03bc685SAndrii Nakryiko 	const struct btf_member *m1, *m2;
1917d5caef5bSAndrii Nakryiko 	__u16 vlen;
1918d5caef5bSAndrii Nakryiko 	int i;
1919d5caef5bSAndrii Nakryiko 
1920d5caef5bSAndrii Nakryiko 	if (!btf_equal_common(t1, t2))
1921d5caef5bSAndrii Nakryiko 		return false;
1922d5caef5bSAndrii Nakryiko 
1923b03bc685SAndrii Nakryiko 	vlen = btf_vlen(t1);
1924b03bc685SAndrii Nakryiko 	m1 = btf_members(t1);
1925b03bc685SAndrii Nakryiko 	m2 = btf_members(t2);
1926d5caef5bSAndrii Nakryiko 	for (i = 0; i < vlen; i++) {
1927d5caef5bSAndrii Nakryiko 		if (m1->name_off != m2->name_off || m1->offset != m2->offset)
1928d5caef5bSAndrii Nakryiko 			return false;
1929d5caef5bSAndrii Nakryiko 		m1++;
1930d5caef5bSAndrii Nakryiko 		m2++;
1931d5caef5bSAndrii Nakryiko 	}
1932d5caef5bSAndrii Nakryiko 	return true;
1933d5caef5bSAndrii Nakryiko }
1934d5caef5bSAndrii Nakryiko 
1935d5caef5bSAndrii Nakryiko /*
1936d5caef5bSAndrii Nakryiko  * Calculate type signature hash of ARRAY, including referenced type IDs,
1937d5caef5bSAndrii Nakryiko  * under assumption that they were already resolved to canonical type IDs and
1938d5caef5bSAndrii Nakryiko  * are not going to change.
1939d5caef5bSAndrii Nakryiko  */
19402fc3fc0bSAndrii Nakryiko static long btf_hash_array(struct btf_type *t)
1941d5caef5bSAndrii Nakryiko {
1942b03bc685SAndrii Nakryiko 	const struct btf_array *info = btf_array(t);
19432fc3fc0bSAndrii Nakryiko 	long h = btf_hash_common(t);
1944d5caef5bSAndrii Nakryiko 
1945d5caef5bSAndrii Nakryiko 	h = hash_combine(h, info->type);
1946d5caef5bSAndrii Nakryiko 	h = hash_combine(h, info->index_type);
1947d5caef5bSAndrii Nakryiko 	h = hash_combine(h, info->nelems);
1948d5caef5bSAndrii Nakryiko 	return h;
1949d5caef5bSAndrii Nakryiko }
1950d5caef5bSAndrii Nakryiko 
1951d5caef5bSAndrii Nakryiko /*
1952d5caef5bSAndrii Nakryiko  * Check exact equality of two ARRAYs, taking into account referenced
1953d5caef5bSAndrii Nakryiko  * type IDs, under assumption that they were already resolved to canonical
1954d5caef5bSAndrii Nakryiko  * type IDs and are not going to change.
1955d5caef5bSAndrii Nakryiko  * This function is called during reference types deduplication to compare
1956d5caef5bSAndrii Nakryiko  * ARRAY to potential canonical representative.
1957d5caef5bSAndrii Nakryiko  */
1958d5caef5bSAndrii Nakryiko static bool btf_equal_array(struct btf_type *t1, struct btf_type *t2)
1959d5caef5bSAndrii Nakryiko {
1960b03bc685SAndrii Nakryiko 	const struct btf_array *info1, *info2;
1961d5caef5bSAndrii Nakryiko 
1962d5caef5bSAndrii Nakryiko 	if (!btf_equal_common(t1, t2))
1963d5caef5bSAndrii Nakryiko 		return false;
1964d5caef5bSAndrii Nakryiko 
1965b03bc685SAndrii Nakryiko 	info1 = btf_array(t1);
1966b03bc685SAndrii Nakryiko 	info2 = btf_array(t2);
1967d5caef5bSAndrii Nakryiko 	return info1->type == info2->type &&
1968d5caef5bSAndrii Nakryiko 	       info1->index_type == info2->index_type &&
1969d5caef5bSAndrii Nakryiko 	       info1->nelems == info2->nelems;
1970d5caef5bSAndrii Nakryiko }
1971d5caef5bSAndrii Nakryiko 
1972d5caef5bSAndrii Nakryiko /*
1973d5caef5bSAndrii Nakryiko  * Check structural compatibility of two ARRAYs, ignoring referenced type
1974d5caef5bSAndrii Nakryiko  * IDs. This check is performed during type graph equivalence check and
1975d5caef5bSAndrii Nakryiko  * referenced types equivalence is checked separately.
1976d5caef5bSAndrii Nakryiko  */
1977d5caef5bSAndrii Nakryiko static bool btf_compat_array(struct btf_type *t1, struct btf_type *t2)
1978d5caef5bSAndrii Nakryiko {
1979d5caef5bSAndrii Nakryiko 	if (!btf_equal_common(t1, t2))
1980d5caef5bSAndrii Nakryiko 		return false;
1981d5caef5bSAndrii Nakryiko 
1982b03bc685SAndrii Nakryiko 	return btf_array(t1)->nelems == btf_array(t2)->nelems;
1983d5caef5bSAndrii Nakryiko }
1984d5caef5bSAndrii Nakryiko 
1985d5caef5bSAndrii Nakryiko /*
1986d5caef5bSAndrii Nakryiko  * Calculate type signature hash of FUNC_PROTO, including referenced type IDs,
1987d5caef5bSAndrii Nakryiko  * under assumption that they were already resolved to canonical type IDs and
1988d5caef5bSAndrii Nakryiko  * are not going to change.
1989d5caef5bSAndrii Nakryiko  */
19902fc3fc0bSAndrii Nakryiko static long btf_hash_fnproto(struct btf_type *t)
1991d5caef5bSAndrii Nakryiko {
1992b03bc685SAndrii Nakryiko 	const struct btf_param *member = btf_params(t);
1993b03bc685SAndrii Nakryiko 	__u16 vlen = btf_vlen(t);
19942fc3fc0bSAndrii Nakryiko 	long h = btf_hash_common(t);
1995d5caef5bSAndrii Nakryiko 	int i;
1996d5caef5bSAndrii Nakryiko 
1997d5caef5bSAndrii Nakryiko 	for (i = 0; i < vlen; i++) {
1998d5caef5bSAndrii Nakryiko 		h = hash_combine(h, member->name_off);
1999d5caef5bSAndrii Nakryiko 		h = hash_combine(h, member->type);
2000d5caef5bSAndrii Nakryiko 		member++;
2001d5caef5bSAndrii Nakryiko 	}
2002d5caef5bSAndrii Nakryiko 	return h;
2003d5caef5bSAndrii Nakryiko }
2004d5caef5bSAndrii Nakryiko 
2005d5caef5bSAndrii Nakryiko /*
2006d5caef5bSAndrii Nakryiko  * Check exact equality of two FUNC_PROTOs, taking into account referenced
2007d5caef5bSAndrii Nakryiko  * type IDs, under assumption that they were already resolved to canonical
2008d5caef5bSAndrii Nakryiko  * type IDs and are not going to change.
2009d5caef5bSAndrii Nakryiko  * This function is called during reference types deduplication to compare
2010d5caef5bSAndrii Nakryiko  * FUNC_PROTO to potential canonical representative.
2011d5caef5bSAndrii Nakryiko  */
20122fc3fc0bSAndrii Nakryiko static bool btf_equal_fnproto(struct btf_type *t1, struct btf_type *t2)
2013d5caef5bSAndrii Nakryiko {
2014b03bc685SAndrii Nakryiko 	const struct btf_param *m1, *m2;
2015d5caef5bSAndrii Nakryiko 	__u16 vlen;
2016d5caef5bSAndrii Nakryiko 	int i;
2017d5caef5bSAndrii Nakryiko 
2018d5caef5bSAndrii Nakryiko 	if (!btf_equal_common(t1, t2))
2019d5caef5bSAndrii Nakryiko 		return false;
2020d5caef5bSAndrii Nakryiko 
2021b03bc685SAndrii Nakryiko 	vlen = btf_vlen(t1);
2022b03bc685SAndrii Nakryiko 	m1 = btf_params(t1);
2023b03bc685SAndrii Nakryiko 	m2 = btf_params(t2);
2024d5caef5bSAndrii Nakryiko 	for (i = 0; i < vlen; i++) {
2025d5caef5bSAndrii Nakryiko 		if (m1->name_off != m2->name_off || m1->type != m2->type)
2026d5caef5bSAndrii Nakryiko 			return false;
2027d5caef5bSAndrii Nakryiko 		m1++;
2028d5caef5bSAndrii Nakryiko 		m2++;
2029d5caef5bSAndrii Nakryiko 	}
2030d5caef5bSAndrii Nakryiko 	return true;
2031d5caef5bSAndrii Nakryiko }
2032d5caef5bSAndrii Nakryiko 
2033d5caef5bSAndrii Nakryiko /*
2034d5caef5bSAndrii Nakryiko  * Check structural compatibility of two FUNC_PROTOs, ignoring referenced type
2035d5caef5bSAndrii Nakryiko  * IDs. This check is performed during type graph equivalence check and
2036d5caef5bSAndrii Nakryiko  * referenced types equivalence is checked separately.
2037d5caef5bSAndrii Nakryiko  */
20382fc3fc0bSAndrii Nakryiko static bool btf_compat_fnproto(struct btf_type *t1, struct btf_type *t2)
2039d5caef5bSAndrii Nakryiko {
2040b03bc685SAndrii Nakryiko 	const struct btf_param *m1, *m2;
2041d5caef5bSAndrii Nakryiko 	__u16 vlen;
2042d5caef5bSAndrii Nakryiko 	int i;
2043d5caef5bSAndrii Nakryiko 
2044d5caef5bSAndrii Nakryiko 	/* skip return type ID */
2045d5caef5bSAndrii Nakryiko 	if (t1->name_off != t2->name_off || t1->info != t2->info)
2046d5caef5bSAndrii Nakryiko 		return false;
2047d5caef5bSAndrii Nakryiko 
2048b03bc685SAndrii Nakryiko 	vlen = btf_vlen(t1);
2049b03bc685SAndrii Nakryiko 	m1 = btf_params(t1);
2050b03bc685SAndrii Nakryiko 	m2 = btf_params(t2);
2051d5caef5bSAndrii Nakryiko 	for (i = 0; i < vlen; i++) {
2052d5caef5bSAndrii Nakryiko 		if (m1->name_off != m2->name_off)
2053d5caef5bSAndrii Nakryiko 			return false;
2054d5caef5bSAndrii Nakryiko 		m1++;
2055d5caef5bSAndrii Nakryiko 		m2++;
2056d5caef5bSAndrii Nakryiko 	}
2057d5caef5bSAndrii Nakryiko 	return true;
2058d5caef5bSAndrii Nakryiko }
2059d5caef5bSAndrii Nakryiko 
2060d5caef5bSAndrii Nakryiko /*
2061d5caef5bSAndrii Nakryiko  * Deduplicate primitive types, that can't reference other types, by calculating
2062d5caef5bSAndrii Nakryiko  * their type signature hash and comparing them with any possible canonical
2063d5caef5bSAndrii Nakryiko  * candidate. If no canonical candidate matches, type itself is marked as
2064d5caef5bSAndrii Nakryiko  * canonical and is added into `btf_dedup->dedup_table` as another candidate.
2065d5caef5bSAndrii Nakryiko  */
2066d5caef5bSAndrii Nakryiko static int btf_dedup_prim_type(struct btf_dedup *d, __u32 type_id)
2067d5caef5bSAndrii Nakryiko {
2068d5caef5bSAndrii Nakryiko 	struct btf_type *t = d->btf->types[type_id];
20692fc3fc0bSAndrii Nakryiko 	struct hashmap_entry *hash_entry;
2070d5caef5bSAndrii Nakryiko 	struct btf_type *cand;
2071d5caef5bSAndrii Nakryiko 	/* if we don't find equivalent type, then we are canonical */
2072d5caef5bSAndrii Nakryiko 	__u32 new_id = type_id;
20732fc3fc0bSAndrii Nakryiko 	__u32 cand_id;
20742fc3fc0bSAndrii Nakryiko 	long h;
2075d5caef5bSAndrii Nakryiko 
2076b03bc685SAndrii Nakryiko 	switch (btf_kind(t)) {
2077d5caef5bSAndrii Nakryiko 	case BTF_KIND_CONST:
2078d5caef5bSAndrii Nakryiko 	case BTF_KIND_VOLATILE:
2079d5caef5bSAndrii Nakryiko 	case BTF_KIND_RESTRICT:
2080d5caef5bSAndrii Nakryiko 	case BTF_KIND_PTR:
2081d5caef5bSAndrii Nakryiko 	case BTF_KIND_TYPEDEF:
2082d5caef5bSAndrii Nakryiko 	case BTF_KIND_ARRAY:
2083d5caef5bSAndrii Nakryiko 	case BTF_KIND_STRUCT:
2084d5caef5bSAndrii Nakryiko 	case BTF_KIND_UNION:
2085d5caef5bSAndrii Nakryiko 	case BTF_KIND_FUNC:
2086d5caef5bSAndrii Nakryiko 	case BTF_KIND_FUNC_PROTO:
2087189cf5a4SAndrii Nakryiko 	case BTF_KIND_VAR:
2088189cf5a4SAndrii Nakryiko 	case BTF_KIND_DATASEC:
2089d5caef5bSAndrii Nakryiko 		return 0;
2090d5caef5bSAndrii Nakryiko 
2091d5caef5bSAndrii Nakryiko 	case BTF_KIND_INT:
2092d5caef5bSAndrii Nakryiko 		h = btf_hash_int(t);
20932fc3fc0bSAndrii Nakryiko 		for_each_dedup_cand(d, hash_entry, h) {
20942fc3fc0bSAndrii Nakryiko 			cand_id = (__u32)(long)hash_entry->value;
20952fc3fc0bSAndrii Nakryiko 			cand = d->btf->types[cand_id];
2096d5caef5bSAndrii Nakryiko 			if (btf_equal_int(t, cand)) {
20972fc3fc0bSAndrii Nakryiko 				new_id = cand_id;
2098d5caef5bSAndrii Nakryiko 				break;
2099d5caef5bSAndrii Nakryiko 			}
2100d5caef5bSAndrii Nakryiko 		}
2101d5caef5bSAndrii Nakryiko 		break;
2102d5caef5bSAndrii Nakryiko 
2103d5caef5bSAndrii Nakryiko 	case BTF_KIND_ENUM:
2104d5caef5bSAndrii Nakryiko 		h = btf_hash_enum(t);
21052fc3fc0bSAndrii Nakryiko 		for_each_dedup_cand(d, hash_entry, h) {
21062fc3fc0bSAndrii Nakryiko 			cand_id = (__u32)(long)hash_entry->value;
21072fc3fc0bSAndrii Nakryiko 			cand = d->btf->types[cand_id];
2108d5caef5bSAndrii Nakryiko 			if (btf_equal_enum(t, cand)) {
21092fc3fc0bSAndrii Nakryiko 				new_id = cand_id;
2110d5caef5bSAndrii Nakryiko 				break;
2111d5caef5bSAndrii Nakryiko 			}
21129768095bSAndrii Nakryiko 			if (d->opts.dont_resolve_fwds)
21139768095bSAndrii Nakryiko 				continue;
21149768095bSAndrii Nakryiko 			if (btf_compat_enum(t, cand)) {
21159768095bSAndrii Nakryiko 				if (btf_is_enum_fwd(t)) {
21169768095bSAndrii Nakryiko 					/* resolve fwd to full enum */
21172fc3fc0bSAndrii Nakryiko 					new_id = cand_id;
21189768095bSAndrii Nakryiko 					break;
21199768095bSAndrii Nakryiko 				}
21209768095bSAndrii Nakryiko 				/* resolve canonical enum fwd to full enum */
21212fc3fc0bSAndrii Nakryiko 				d->map[cand_id] = type_id;
21229768095bSAndrii Nakryiko 			}
2123d5caef5bSAndrii Nakryiko 		}
2124d5caef5bSAndrii Nakryiko 		break;
2125d5caef5bSAndrii Nakryiko 
2126d5caef5bSAndrii Nakryiko 	case BTF_KIND_FWD:
2127d5caef5bSAndrii Nakryiko 		h = btf_hash_common(t);
21282fc3fc0bSAndrii Nakryiko 		for_each_dedup_cand(d, hash_entry, h) {
21292fc3fc0bSAndrii Nakryiko 			cand_id = (__u32)(long)hash_entry->value;
21302fc3fc0bSAndrii Nakryiko 			cand = d->btf->types[cand_id];
2131d5caef5bSAndrii Nakryiko 			if (btf_equal_common(t, cand)) {
21322fc3fc0bSAndrii Nakryiko 				new_id = cand_id;
2133d5caef5bSAndrii Nakryiko 				break;
2134d5caef5bSAndrii Nakryiko 			}
2135d5caef5bSAndrii Nakryiko 		}
2136d5caef5bSAndrii Nakryiko 		break;
2137d5caef5bSAndrii Nakryiko 
2138d5caef5bSAndrii Nakryiko 	default:
2139d5caef5bSAndrii Nakryiko 		return -EINVAL;
2140d5caef5bSAndrii Nakryiko 	}
2141d5caef5bSAndrii Nakryiko 
2142d5caef5bSAndrii Nakryiko 	d->map[type_id] = new_id;
2143d5caef5bSAndrii Nakryiko 	if (type_id == new_id && btf_dedup_table_add(d, h, type_id))
2144d5caef5bSAndrii Nakryiko 		return -ENOMEM;
2145d5caef5bSAndrii Nakryiko 
2146d5caef5bSAndrii Nakryiko 	return 0;
2147d5caef5bSAndrii Nakryiko }
2148d5caef5bSAndrii Nakryiko 
2149d5caef5bSAndrii Nakryiko static int btf_dedup_prim_types(struct btf_dedup *d)
2150d5caef5bSAndrii Nakryiko {
2151d5caef5bSAndrii Nakryiko 	int i, err;
2152d5caef5bSAndrii Nakryiko 
2153d5caef5bSAndrii Nakryiko 	for (i = 1; i <= d->btf->nr_types; i++) {
2154d5caef5bSAndrii Nakryiko 		err = btf_dedup_prim_type(d, i);
2155d5caef5bSAndrii Nakryiko 		if (err)
2156d5caef5bSAndrii Nakryiko 			return err;
2157d5caef5bSAndrii Nakryiko 	}
2158d5caef5bSAndrii Nakryiko 	return 0;
2159d5caef5bSAndrii Nakryiko }
2160d5caef5bSAndrii Nakryiko 
2161d5caef5bSAndrii Nakryiko /*
2162d5caef5bSAndrii Nakryiko  * Check whether type is already mapped into canonical one (could be to itself).
2163d5caef5bSAndrii Nakryiko  */
2164d5caef5bSAndrii Nakryiko static inline bool is_type_mapped(struct btf_dedup *d, uint32_t type_id)
2165d5caef5bSAndrii Nakryiko {
21665aab392cSAndrii Nakryiko 	return d->map[type_id] <= BTF_MAX_NR_TYPES;
2167d5caef5bSAndrii Nakryiko }
2168d5caef5bSAndrii Nakryiko 
2169d5caef5bSAndrii Nakryiko /*
2170d5caef5bSAndrii Nakryiko  * Resolve type ID into its canonical type ID, if any; otherwise return original
2171d5caef5bSAndrii Nakryiko  * type ID. If type is FWD and is resolved into STRUCT/UNION already, follow
2172d5caef5bSAndrii Nakryiko  * STRUCT/UNION link and resolve it into canonical type ID as well.
2173d5caef5bSAndrii Nakryiko  */
2174d5caef5bSAndrii Nakryiko static inline __u32 resolve_type_id(struct btf_dedup *d, __u32 type_id)
2175d5caef5bSAndrii Nakryiko {
2176d5caef5bSAndrii Nakryiko 	while (is_type_mapped(d, type_id) && d->map[type_id] != type_id)
2177d5caef5bSAndrii Nakryiko 		type_id = d->map[type_id];
2178d5caef5bSAndrii Nakryiko 	return type_id;
2179d5caef5bSAndrii Nakryiko }
2180d5caef5bSAndrii Nakryiko 
2181d5caef5bSAndrii Nakryiko /*
2182d5caef5bSAndrii Nakryiko  * Resolve FWD to underlying STRUCT/UNION, if any; otherwise return original
2183d5caef5bSAndrii Nakryiko  * type ID.
2184d5caef5bSAndrii Nakryiko  */
2185d5caef5bSAndrii Nakryiko static uint32_t resolve_fwd_id(struct btf_dedup *d, uint32_t type_id)
2186d5caef5bSAndrii Nakryiko {
2187d5caef5bSAndrii Nakryiko 	__u32 orig_type_id = type_id;
2188d5caef5bSAndrii Nakryiko 
2189b03bc685SAndrii Nakryiko 	if (!btf_is_fwd(d->btf->types[type_id]))
2190d5caef5bSAndrii Nakryiko 		return type_id;
2191d5caef5bSAndrii Nakryiko 
2192d5caef5bSAndrii Nakryiko 	while (is_type_mapped(d, type_id) && d->map[type_id] != type_id)
2193d5caef5bSAndrii Nakryiko 		type_id = d->map[type_id];
2194d5caef5bSAndrii Nakryiko 
2195b03bc685SAndrii Nakryiko 	if (!btf_is_fwd(d->btf->types[type_id]))
2196d5caef5bSAndrii Nakryiko 		return type_id;
2197d5caef5bSAndrii Nakryiko 
2198d5caef5bSAndrii Nakryiko 	return orig_type_id;
2199d5caef5bSAndrii Nakryiko }
2200d5caef5bSAndrii Nakryiko 
2201d5caef5bSAndrii Nakryiko 
2202d5caef5bSAndrii Nakryiko static inline __u16 btf_fwd_kind(struct btf_type *t)
2203d5caef5bSAndrii Nakryiko {
2204b03bc685SAndrii Nakryiko 	return btf_kflag(t) ? BTF_KIND_UNION : BTF_KIND_STRUCT;
2205d5caef5bSAndrii Nakryiko }
2206d5caef5bSAndrii Nakryiko 
2207d5caef5bSAndrii Nakryiko /*
2208d5caef5bSAndrii Nakryiko  * Check equivalence of BTF type graph formed by candidate struct/union (we'll
2209d5caef5bSAndrii Nakryiko  * call it "candidate graph" in this description for brevity) to a type graph
2210d5caef5bSAndrii Nakryiko  * formed by (potential) canonical struct/union ("canonical graph" for brevity
2211d5caef5bSAndrii Nakryiko  * here, though keep in mind that not all types in canonical graph are
2212d5caef5bSAndrii Nakryiko  * necessarily canonical representatives themselves, some of them might be
2213d5caef5bSAndrii Nakryiko  * duplicates or its uniqueness might not have been established yet).
2214d5caef5bSAndrii Nakryiko  * Returns:
2215d5caef5bSAndrii Nakryiko  *  - >0, if type graphs are equivalent;
2216d5caef5bSAndrii Nakryiko  *  -  0, if not equivalent;
2217d5caef5bSAndrii Nakryiko  *  - <0, on error.
2218d5caef5bSAndrii Nakryiko  *
2219d5caef5bSAndrii Nakryiko  * Algorithm performs side-by-side DFS traversal of both type graphs and checks
2220d5caef5bSAndrii Nakryiko  * equivalence of BTF types at each step. If at any point BTF types in candidate
2221d5caef5bSAndrii Nakryiko  * and canonical graphs are not compatible structurally, whole graphs are
2222d5caef5bSAndrii Nakryiko  * incompatible. If types are structurally equivalent (i.e., all information
2223d5caef5bSAndrii Nakryiko  * except referenced type IDs is exactly the same), a mapping from `canon_id` to
2224d5caef5bSAndrii Nakryiko  * a `cand_id` is recored in hypothetical mapping (`btf_dedup->hypot_map`).
2225d5caef5bSAndrii Nakryiko  * If a type references other types, then those referenced types are checked
2226d5caef5bSAndrii Nakryiko  * for equivalence recursively.
2227d5caef5bSAndrii Nakryiko  *
2228d5caef5bSAndrii Nakryiko  * During DFS traversal, if we find that for current `canon_id` type we
2229d5caef5bSAndrii Nakryiko  * already have some mapping in hypothetical map, we check for two possible
2230d5caef5bSAndrii Nakryiko  * situations:
2231d5caef5bSAndrii Nakryiko  *   - `canon_id` is mapped to exactly the same type as `cand_id`. This will
2232d5caef5bSAndrii Nakryiko  *     happen when type graphs have cycles. In this case we assume those two
2233d5caef5bSAndrii Nakryiko  *     types are equivalent.
2234d5caef5bSAndrii Nakryiko  *   - `canon_id` is mapped to different type. This is contradiction in our
2235d5caef5bSAndrii Nakryiko  *     hypothetical mapping, because same graph in canonical graph corresponds
2236d5caef5bSAndrii Nakryiko  *     to two different types in candidate graph, which for equivalent type
2237d5caef5bSAndrii Nakryiko  *     graphs shouldn't happen. This condition terminates equivalence check
2238d5caef5bSAndrii Nakryiko  *     with negative result.
2239d5caef5bSAndrii Nakryiko  *
2240d5caef5bSAndrii Nakryiko  * If type graphs traversal exhausts types to check and find no contradiction,
2241d5caef5bSAndrii Nakryiko  * then type graphs are equivalent.
2242d5caef5bSAndrii Nakryiko  *
2243d5caef5bSAndrii Nakryiko  * When checking types for equivalence, there is one special case: FWD types.
2244d5caef5bSAndrii Nakryiko  * If FWD type resolution is allowed and one of the types (either from canonical
2245d5caef5bSAndrii Nakryiko  * or candidate graph) is FWD and other is STRUCT/UNION (depending on FWD's kind
2246d5caef5bSAndrii Nakryiko  * flag) and their names match, hypothetical mapping is updated to point from
2247d5caef5bSAndrii Nakryiko  * FWD to STRUCT/UNION. If graphs will be determined as equivalent successfully,
2248d5caef5bSAndrii Nakryiko  * this mapping will be used to record FWD -> STRUCT/UNION mapping permanently.
2249d5caef5bSAndrii Nakryiko  *
2250d5caef5bSAndrii Nakryiko  * Technically, this could lead to incorrect FWD to STRUCT/UNION resolution,
2251d5caef5bSAndrii Nakryiko  * if there are two exactly named (or anonymous) structs/unions that are
2252d5caef5bSAndrii Nakryiko  * compatible structurally, one of which has FWD field, while other is concrete
2253d5caef5bSAndrii Nakryiko  * STRUCT/UNION, but according to C sources they are different structs/unions
2254d5caef5bSAndrii Nakryiko  * that are referencing different types with the same name. This is extremely
2255d5caef5bSAndrii Nakryiko  * unlikely to happen, but btf_dedup API allows to disable FWD resolution if
2256d5caef5bSAndrii Nakryiko  * this logic is causing problems.
2257d5caef5bSAndrii Nakryiko  *
2258d5caef5bSAndrii Nakryiko  * Doing FWD resolution means that both candidate and/or canonical graphs can
2259d5caef5bSAndrii Nakryiko  * consists of portions of the graph that come from multiple compilation units.
2260d5caef5bSAndrii Nakryiko  * This is due to the fact that types within single compilation unit are always
2261d5caef5bSAndrii Nakryiko  * deduplicated and FWDs are already resolved, if referenced struct/union
2262d5caef5bSAndrii Nakryiko  * definiton is available. So, if we had unresolved FWD and found corresponding
2263d5caef5bSAndrii Nakryiko  * STRUCT/UNION, they will be from different compilation units. This
2264d5caef5bSAndrii Nakryiko  * consequently means that when we "link" FWD to corresponding STRUCT/UNION,
2265d5caef5bSAndrii Nakryiko  * type graph will likely have at least two different BTF types that describe
2266d5caef5bSAndrii Nakryiko  * same type (e.g., most probably there will be two different BTF types for the
2267d5caef5bSAndrii Nakryiko  * same 'int' primitive type) and could even have "overlapping" parts of type
2268d5caef5bSAndrii Nakryiko  * graph that describe same subset of types.
2269d5caef5bSAndrii Nakryiko  *
2270d5caef5bSAndrii Nakryiko  * This in turn means that our assumption that each type in canonical graph
2271d5caef5bSAndrii Nakryiko  * must correspond to exactly one type in candidate graph might not hold
2272d5caef5bSAndrii Nakryiko  * anymore and will make it harder to detect contradictions using hypothetical
2273d5caef5bSAndrii Nakryiko  * map. To handle this problem, we allow to follow FWD -> STRUCT/UNION
2274d5caef5bSAndrii Nakryiko  * resolution only in canonical graph. FWDs in candidate graphs are never
2275d5caef5bSAndrii Nakryiko  * resolved. To see why it's OK, let's check all possible situations w.r.t. FWDs
2276d5caef5bSAndrii Nakryiko  * that can occur:
2277d5caef5bSAndrii Nakryiko  *   - Both types in canonical and candidate graphs are FWDs. If they are
2278d5caef5bSAndrii Nakryiko  *     structurally equivalent, then they can either be both resolved to the
2279d5caef5bSAndrii Nakryiko  *     same STRUCT/UNION or not resolved at all. In both cases they are
2280d5caef5bSAndrii Nakryiko  *     equivalent and there is no need to resolve FWD on candidate side.
2281d5caef5bSAndrii Nakryiko  *   - Both types in canonical and candidate graphs are concrete STRUCT/UNION,
2282d5caef5bSAndrii Nakryiko  *     so nothing to resolve as well, algorithm will check equivalence anyway.
2283d5caef5bSAndrii Nakryiko  *   - Type in canonical graph is FWD, while type in candidate is concrete
2284d5caef5bSAndrii Nakryiko  *     STRUCT/UNION. In this case candidate graph comes from single compilation
2285d5caef5bSAndrii Nakryiko  *     unit, so there is exactly one BTF type for each unique C type. After
2286d5caef5bSAndrii Nakryiko  *     resolving FWD into STRUCT/UNION, there might be more than one BTF type
2287d5caef5bSAndrii Nakryiko  *     in canonical graph mapping to single BTF type in candidate graph, but
2288d5caef5bSAndrii Nakryiko  *     because hypothetical mapping maps from canonical to candidate types, it's
2289d5caef5bSAndrii Nakryiko  *     alright, and we still maintain the property of having single `canon_id`
2290d5caef5bSAndrii Nakryiko  *     mapping to single `cand_id` (there could be two different `canon_id`
2291d5caef5bSAndrii Nakryiko  *     mapped to the same `cand_id`, but it's not contradictory).
2292d5caef5bSAndrii Nakryiko  *   - Type in canonical graph is concrete STRUCT/UNION, while type in candidate
2293d5caef5bSAndrii Nakryiko  *     graph is FWD. In this case we are just going to check compatibility of
2294d5caef5bSAndrii Nakryiko  *     STRUCT/UNION and corresponding FWD, and if they are compatible, we'll
2295d5caef5bSAndrii Nakryiko  *     assume that whatever STRUCT/UNION FWD resolves to must be equivalent to
2296d5caef5bSAndrii Nakryiko  *     a concrete STRUCT/UNION from canonical graph. If the rest of type graphs
2297d5caef5bSAndrii Nakryiko  *     turn out equivalent, we'll re-resolve FWD to concrete STRUCT/UNION from
2298d5caef5bSAndrii Nakryiko  *     canonical graph.
2299d5caef5bSAndrii Nakryiko  */
2300d5caef5bSAndrii Nakryiko static int btf_dedup_is_equiv(struct btf_dedup *d, __u32 cand_id,
2301d5caef5bSAndrii Nakryiko 			      __u32 canon_id)
2302d5caef5bSAndrii Nakryiko {
2303d5caef5bSAndrii Nakryiko 	struct btf_type *cand_type;
2304d5caef5bSAndrii Nakryiko 	struct btf_type *canon_type;
2305d5caef5bSAndrii Nakryiko 	__u32 hypot_type_id;
2306d5caef5bSAndrii Nakryiko 	__u16 cand_kind;
2307d5caef5bSAndrii Nakryiko 	__u16 canon_kind;
2308d5caef5bSAndrii Nakryiko 	int i, eq;
2309d5caef5bSAndrii Nakryiko 
2310d5caef5bSAndrii Nakryiko 	/* if both resolve to the same canonical, they must be equivalent */
2311d5caef5bSAndrii Nakryiko 	if (resolve_type_id(d, cand_id) == resolve_type_id(d, canon_id))
2312d5caef5bSAndrii Nakryiko 		return 1;
2313d5caef5bSAndrii Nakryiko 
2314d5caef5bSAndrii Nakryiko 	canon_id = resolve_fwd_id(d, canon_id);
2315d5caef5bSAndrii Nakryiko 
2316d5caef5bSAndrii Nakryiko 	hypot_type_id = d->hypot_map[canon_id];
23175aab392cSAndrii Nakryiko 	if (hypot_type_id <= BTF_MAX_NR_TYPES)
2318d5caef5bSAndrii Nakryiko 		return hypot_type_id == cand_id;
2319d5caef5bSAndrii Nakryiko 
2320d5caef5bSAndrii Nakryiko 	if (btf_dedup_hypot_map_add(d, canon_id, cand_id))
2321d5caef5bSAndrii Nakryiko 		return -ENOMEM;
2322d5caef5bSAndrii Nakryiko 
2323d5caef5bSAndrii Nakryiko 	cand_type = d->btf->types[cand_id];
2324d5caef5bSAndrii Nakryiko 	canon_type = d->btf->types[canon_id];
2325b03bc685SAndrii Nakryiko 	cand_kind = btf_kind(cand_type);
2326b03bc685SAndrii Nakryiko 	canon_kind = btf_kind(canon_type);
2327d5caef5bSAndrii Nakryiko 
2328d5caef5bSAndrii Nakryiko 	if (cand_type->name_off != canon_type->name_off)
2329d5caef5bSAndrii Nakryiko 		return 0;
2330d5caef5bSAndrii Nakryiko 
2331d5caef5bSAndrii Nakryiko 	/* FWD <--> STRUCT/UNION equivalence check, if enabled */
2332d5caef5bSAndrii Nakryiko 	if (!d->opts.dont_resolve_fwds
2333d5caef5bSAndrii Nakryiko 	    && (cand_kind == BTF_KIND_FWD || canon_kind == BTF_KIND_FWD)
2334d5caef5bSAndrii Nakryiko 	    && cand_kind != canon_kind) {
2335d5caef5bSAndrii Nakryiko 		__u16 real_kind;
2336d5caef5bSAndrii Nakryiko 		__u16 fwd_kind;
2337d5caef5bSAndrii Nakryiko 
2338d5caef5bSAndrii Nakryiko 		if (cand_kind == BTF_KIND_FWD) {
2339d5caef5bSAndrii Nakryiko 			real_kind = canon_kind;
2340d5caef5bSAndrii Nakryiko 			fwd_kind = btf_fwd_kind(cand_type);
2341d5caef5bSAndrii Nakryiko 		} else {
2342d5caef5bSAndrii Nakryiko 			real_kind = cand_kind;
2343d5caef5bSAndrii Nakryiko 			fwd_kind = btf_fwd_kind(canon_type);
2344d5caef5bSAndrii Nakryiko 		}
2345d5caef5bSAndrii Nakryiko 		return fwd_kind == real_kind;
2346d5caef5bSAndrii Nakryiko 	}
2347d5caef5bSAndrii Nakryiko 
23489ec71c1cSAndrii Nakryiko 	if (cand_kind != canon_kind)
23499ec71c1cSAndrii Nakryiko 		return 0;
23509ec71c1cSAndrii Nakryiko 
2351d5caef5bSAndrii Nakryiko 	switch (cand_kind) {
2352d5caef5bSAndrii Nakryiko 	case BTF_KIND_INT:
2353d5caef5bSAndrii Nakryiko 		return btf_equal_int(cand_type, canon_type);
2354d5caef5bSAndrii Nakryiko 
2355d5caef5bSAndrii Nakryiko 	case BTF_KIND_ENUM:
23569768095bSAndrii Nakryiko 		if (d->opts.dont_resolve_fwds)
2357d5caef5bSAndrii Nakryiko 			return btf_equal_enum(cand_type, canon_type);
23589768095bSAndrii Nakryiko 		else
23599768095bSAndrii Nakryiko 			return btf_compat_enum(cand_type, canon_type);
2360d5caef5bSAndrii Nakryiko 
2361d5caef5bSAndrii Nakryiko 	case BTF_KIND_FWD:
2362d5caef5bSAndrii Nakryiko 		return btf_equal_common(cand_type, canon_type);
2363d5caef5bSAndrii Nakryiko 
2364d5caef5bSAndrii Nakryiko 	case BTF_KIND_CONST:
2365d5caef5bSAndrii Nakryiko 	case BTF_KIND_VOLATILE:
2366d5caef5bSAndrii Nakryiko 	case BTF_KIND_RESTRICT:
2367d5caef5bSAndrii Nakryiko 	case BTF_KIND_PTR:
2368d5caef5bSAndrii Nakryiko 	case BTF_KIND_TYPEDEF:
2369d5caef5bSAndrii Nakryiko 	case BTF_KIND_FUNC:
23709768095bSAndrii Nakryiko 		if (cand_type->info != canon_type->info)
23719768095bSAndrii Nakryiko 			return 0;
2372d5caef5bSAndrii Nakryiko 		return btf_dedup_is_equiv(d, cand_type->type, canon_type->type);
2373d5caef5bSAndrii Nakryiko 
2374d5caef5bSAndrii Nakryiko 	case BTF_KIND_ARRAY: {
2375b03bc685SAndrii Nakryiko 		const struct btf_array *cand_arr, *canon_arr;
2376d5caef5bSAndrii Nakryiko 
2377d5caef5bSAndrii Nakryiko 		if (!btf_compat_array(cand_type, canon_type))
2378d5caef5bSAndrii Nakryiko 			return 0;
2379b03bc685SAndrii Nakryiko 		cand_arr = btf_array(cand_type);
2380b03bc685SAndrii Nakryiko 		canon_arr = btf_array(canon_type);
2381d5caef5bSAndrii Nakryiko 		eq = btf_dedup_is_equiv(d,
2382d5caef5bSAndrii Nakryiko 			cand_arr->index_type, canon_arr->index_type);
2383d5caef5bSAndrii Nakryiko 		if (eq <= 0)
2384d5caef5bSAndrii Nakryiko 			return eq;
2385d5caef5bSAndrii Nakryiko 		return btf_dedup_is_equiv(d, cand_arr->type, canon_arr->type);
2386d5caef5bSAndrii Nakryiko 	}
2387d5caef5bSAndrii Nakryiko 
2388d5caef5bSAndrii Nakryiko 	case BTF_KIND_STRUCT:
2389d5caef5bSAndrii Nakryiko 	case BTF_KIND_UNION: {
2390b03bc685SAndrii Nakryiko 		const struct btf_member *cand_m, *canon_m;
2391d5caef5bSAndrii Nakryiko 		__u16 vlen;
2392d5caef5bSAndrii Nakryiko 
239391097fbeSAndrii Nakryiko 		if (!btf_shallow_equal_struct(cand_type, canon_type))
2394d5caef5bSAndrii Nakryiko 			return 0;
2395b03bc685SAndrii Nakryiko 		vlen = btf_vlen(cand_type);
2396b03bc685SAndrii Nakryiko 		cand_m = btf_members(cand_type);
2397b03bc685SAndrii Nakryiko 		canon_m = btf_members(canon_type);
2398d5caef5bSAndrii Nakryiko 		for (i = 0; i < vlen; i++) {
2399d5caef5bSAndrii Nakryiko 			eq = btf_dedup_is_equiv(d, cand_m->type, canon_m->type);
2400d5caef5bSAndrii Nakryiko 			if (eq <= 0)
2401d5caef5bSAndrii Nakryiko 				return eq;
2402d5caef5bSAndrii Nakryiko 			cand_m++;
2403d5caef5bSAndrii Nakryiko 			canon_m++;
2404d5caef5bSAndrii Nakryiko 		}
2405d5caef5bSAndrii Nakryiko 
2406d5caef5bSAndrii Nakryiko 		return 1;
2407d5caef5bSAndrii Nakryiko 	}
2408d5caef5bSAndrii Nakryiko 
2409d5caef5bSAndrii Nakryiko 	case BTF_KIND_FUNC_PROTO: {
2410b03bc685SAndrii Nakryiko 		const struct btf_param *cand_p, *canon_p;
2411d5caef5bSAndrii Nakryiko 		__u16 vlen;
2412d5caef5bSAndrii Nakryiko 
2413d5caef5bSAndrii Nakryiko 		if (!btf_compat_fnproto(cand_type, canon_type))
2414d5caef5bSAndrii Nakryiko 			return 0;
2415d5caef5bSAndrii Nakryiko 		eq = btf_dedup_is_equiv(d, cand_type->type, canon_type->type);
2416d5caef5bSAndrii Nakryiko 		if (eq <= 0)
2417d5caef5bSAndrii Nakryiko 			return eq;
2418b03bc685SAndrii Nakryiko 		vlen = btf_vlen(cand_type);
2419b03bc685SAndrii Nakryiko 		cand_p = btf_params(cand_type);
2420b03bc685SAndrii Nakryiko 		canon_p = btf_params(canon_type);
2421d5caef5bSAndrii Nakryiko 		for (i = 0; i < vlen; i++) {
2422d5caef5bSAndrii Nakryiko 			eq = btf_dedup_is_equiv(d, cand_p->type, canon_p->type);
2423d5caef5bSAndrii Nakryiko 			if (eq <= 0)
2424d5caef5bSAndrii Nakryiko 				return eq;
2425d5caef5bSAndrii Nakryiko 			cand_p++;
2426d5caef5bSAndrii Nakryiko 			canon_p++;
2427d5caef5bSAndrii Nakryiko 		}
2428d5caef5bSAndrii Nakryiko 		return 1;
2429d5caef5bSAndrii Nakryiko 	}
2430d5caef5bSAndrii Nakryiko 
2431d5caef5bSAndrii Nakryiko 	default:
2432d5caef5bSAndrii Nakryiko 		return -EINVAL;
2433d5caef5bSAndrii Nakryiko 	}
2434d5caef5bSAndrii Nakryiko 	return 0;
2435d5caef5bSAndrii Nakryiko }
2436d5caef5bSAndrii Nakryiko 
2437d5caef5bSAndrii Nakryiko /*
2438d5caef5bSAndrii Nakryiko  * Use hypothetical mapping, produced by successful type graph equivalence
2439d5caef5bSAndrii Nakryiko  * check, to augment existing struct/union canonical mapping, where possible.
2440d5caef5bSAndrii Nakryiko  *
2441d5caef5bSAndrii Nakryiko  * If BTF_KIND_FWD resolution is allowed, this mapping is also used to record
2442d5caef5bSAndrii Nakryiko  * FWD -> STRUCT/UNION correspondence as well. FWD resolution is bidirectional:
2443d5caef5bSAndrii Nakryiko  * it doesn't matter if FWD type was part of canonical graph or candidate one,
2444d5caef5bSAndrii Nakryiko  * we are recording the mapping anyway. As opposed to carefulness required
2445d5caef5bSAndrii Nakryiko  * for struct/union correspondence mapping (described below), for FWD resolution
2446d5caef5bSAndrii Nakryiko  * it's not important, as by the time that FWD type (reference type) will be
2447d5caef5bSAndrii Nakryiko  * deduplicated all structs/unions will be deduped already anyway.
2448d5caef5bSAndrii Nakryiko  *
2449d5caef5bSAndrii Nakryiko  * Recording STRUCT/UNION mapping is purely a performance optimization and is
2450d5caef5bSAndrii Nakryiko  * not required for correctness. It needs to be done carefully to ensure that
2451d5caef5bSAndrii Nakryiko  * struct/union from candidate's type graph is not mapped into corresponding
2452d5caef5bSAndrii Nakryiko  * struct/union from canonical type graph that itself hasn't been resolved into
2453d5caef5bSAndrii Nakryiko  * canonical representative. The only guarantee we have is that canonical
2454d5caef5bSAndrii Nakryiko  * struct/union was determined as canonical and that won't change. But any
2455d5caef5bSAndrii Nakryiko  * types referenced through that struct/union fields could have been not yet
2456d5caef5bSAndrii Nakryiko  * resolved, so in case like that it's too early to establish any kind of
2457d5caef5bSAndrii Nakryiko  * correspondence between structs/unions.
2458d5caef5bSAndrii Nakryiko  *
2459d5caef5bSAndrii Nakryiko  * No canonical correspondence is derived for primitive types (they are already
2460d5caef5bSAndrii Nakryiko  * deduplicated completely already anyway) or reference types (they rely on
2461d5caef5bSAndrii Nakryiko  * stability of struct/union canonical relationship for equivalence checks).
2462d5caef5bSAndrii Nakryiko  */
2463d5caef5bSAndrii Nakryiko static void btf_dedup_merge_hypot_map(struct btf_dedup *d)
2464d5caef5bSAndrii Nakryiko {
2465d5caef5bSAndrii Nakryiko 	__u32 cand_type_id, targ_type_id;
2466d5caef5bSAndrii Nakryiko 	__u16 t_kind, c_kind;
2467d5caef5bSAndrii Nakryiko 	__u32 t_id, c_id;
2468d5caef5bSAndrii Nakryiko 	int i;
2469d5caef5bSAndrii Nakryiko 
2470d5caef5bSAndrii Nakryiko 	for (i = 0; i < d->hypot_cnt; i++) {
2471d5caef5bSAndrii Nakryiko 		cand_type_id = d->hypot_list[i];
2472d5caef5bSAndrii Nakryiko 		targ_type_id = d->hypot_map[cand_type_id];
2473d5caef5bSAndrii Nakryiko 		t_id = resolve_type_id(d, targ_type_id);
2474d5caef5bSAndrii Nakryiko 		c_id = resolve_type_id(d, cand_type_id);
2475b03bc685SAndrii Nakryiko 		t_kind = btf_kind(d->btf->types[t_id]);
2476b03bc685SAndrii Nakryiko 		c_kind = btf_kind(d->btf->types[c_id]);
2477d5caef5bSAndrii Nakryiko 		/*
2478d5caef5bSAndrii Nakryiko 		 * Resolve FWD into STRUCT/UNION.
2479d5caef5bSAndrii Nakryiko 		 * It's ok to resolve FWD into STRUCT/UNION that's not yet
2480d5caef5bSAndrii Nakryiko 		 * mapped to canonical representative (as opposed to
2481d5caef5bSAndrii Nakryiko 		 * STRUCT/UNION <--> STRUCT/UNION mapping logic below), because
2482d5caef5bSAndrii Nakryiko 		 * eventually that struct is going to be mapped and all resolved
2483d5caef5bSAndrii Nakryiko 		 * FWDs will automatically resolve to correct canonical
2484d5caef5bSAndrii Nakryiko 		 * representative. This will happen before ref type deduping,
2485d5caef5bSAndrii Nakryiko 		 * which critically depends on stability of these mapping. This
2486d5caef5bSAndrii Nakryiko 		 * stability is not a requirement for STRUCT/UNION equivalence
2487d5caef5bSAndrii Nakryiko 		 * checks, though.
2488d5caef5bSAndrii Nakryiko 		 */
2489d5caef5bSAndrii Nakryiko 		if (t_kind != BTF_KIND_FWD && c_kind == BTF_KIND_FWD)
2490d5caef5bSAndrii Nakryiko 			d->map[c_id] = t_id;
2491d5caef5bSAndrii Nakryiko 		else if (t_kind == BTF_KIND_FWD && c_kind != BTF_KIND_FWD)
2492d5caef5bSAndrii Nakryiko 			d->map[t_id] = c_id;
2493d5caef5bSAndrii Nakryiko 
2494d5caef5bSAndrii Nakryiko 		if ((t_kind == BTF_KIND_STRUCT || t_kind == BTF_KIND_UNION) &&
2495d5caef5bSAndrii Nakryiko 		    c_kind != BTF_KIND_FWD &&
2496d5caef5bSAndrii Nakryiko 		    is_type_mapped(d, c_id) &&
2497d5caef5bSAndrii Nakryiko 		    !is_type_mapped(d, t_id)) {
2498d5caef5bSAndrii Nakryiko 			/*
2499d5caef5bSAndrii Nakryiko 			 * as a perf optimization, we can map struct/union
2500d5caef5bSAndrii Nakryiko 			 * that's part of type graph we just verified for
2501d5caef5bSAndrii Nakryiko 			 * equivalence. We can do that for struct/union that has
2502d5caef5bSAndrii Nakryiko 			 * canonical representative only, though.
2503d5caef5bSAndrii Nakryiko 			 */
2504d5caef5bSAndrii Nakryiko 			d->map[t_id] = c_id;
2505d5caef5bSAndrii Nakryiko 		}
2506d5caef5bSAndrii Nakryiko 	}
2507d5caef5bSAndrii Nakryiko }
2508d5caef5bSAndrii Nakryiko 
2509d5caef5bSAndrii Nakryiko /*
2510d5caef5bSAndrii Nakryiko  * Deduplicate struct/union types.
2511d5caef5bSAndrii Nakryiko  *
2512d5caef5bSAndrii Nakryiko  * For each struct/union type its type signature hash is calculated, taking
2513d5caef5bSAndrii Nakryiko  * into account type's name, size, number, order and names of fields, but
2514d5caef5bSAndrii Nakryiko  * ignoring type ID's referenced from fields, because they might not be deduped
2515d5caef5bSAndrii Nakryiko  * completely until after reference types deduplication phase. This type hash
2516d5caef5bSAndrii Nakryiko  * is used to iterate over all potential canonical types, sharing same hash.
2517d5caef5bSAndrii Nakryiko  * For each canonical candidate we check whether type graphs that they form
2518d5caef5bSAndrii Nakryiko  * (through referenced types in fields and so on) are equivalent using algorithm
2519d5caef5bSAndrii Nakryiko  * implemented in `btf_dedup_is_equiv`. If such equivalence is found and
2520d5caef5bSAndrii Nakryiko  * BTF_KIND_FWD resolution is allowed, then hypothetical mapping
2521d5caef5bSAndrii Nakryiko  * (btf_dedup->hypot_map) produced by aforementioned type graph equivalence
2522d5caef5bSAndrii Nakryiko  * algorithm is used to record FWD -> STRUCT/UNION mapping. It's also used to
2523d5caef5bSAndrii Nakryiko  * potentially map other structs/unions to their canonical representatives,
2524d5caef5bSAndrii Nakryiko  * if such relationship hasn't yet been established. This speeds up algorithm
2525d5caef5bSAndrii Nakryiko  * by eliminating some of the duplicate work.
2526d5caef5bSAndrii Nakryiko  *
2527d5caef5bSAndrii Nakryiko  * If no matching canonical representative was found, struct/union is marked
2528d5caef5bSAndrii Nakryiko  * as canonical for itself and is added into btf_dedup->dedup_table hash map
2529d5caef5bSAndrii Nakryiko  * for further look ups.
2530d5caef5bSAndrii Nakryiko  */
2531d5caef5bSAndrii Nakryiko static int btf_dedup_struct_type(struct btf_dedup *d, __u32 type_id)
2532d5caef5bSAndrii Nakryiko {
253391097fbeSAndrii Nakryiko 	struct btf_type *cand_type, *t;
25342fc3fc0bSAndrii Nakryiko 	struct hashmap_entry *hash_entry;
2535d5caef5bSAndrii Nakryiko 	/* if we don't find equivalent type, then we are canonical */
2536d5caef5bSAndrii Nakryiko 	__u32 new_id = type_id;
2537d5caef5bSAndrii Nakryiko 	__u16 kind;
25382fc3fc0bSAndrii Nakryiko 	long h;
2539d5caef5bSAndrii Nakryiko 
2540d5caef5bSAndrii Nakryiko 	/* already deduped or is in process of deduping (loop detected) */
25415aab392cSAndrii Nakryiko 	if (d->map[type_id] <= BTF_MAX_NR_TYPES)
2542d5caef5bSAndrii Nakryiko 		return 0;
2543d5caef5bSAndrii Nakryiko 
2544d5caef5bSAndrii Nakryiko 	t = d->btf->types[type_id];
2545b03bc685SAndrii Nakryiko 	kind = btf_kind(t);
2546d5caef5bSAndrii Nakryiko 
2547d5caef5bSAndrii Nakryiko 	if (kind != BTF_KIND_STRUCT && kind != BTF_KIND_UNION)
2548d5caef5bSAndrii Nakryiko 		return 0;
2549d5caef5bSAndrii Nakryiko 
2550d5caef5bSAndrii Nakryiko 	h = btf_hash_struct(t);
25512fc3fc0bSAndrii Nakryiko 	for_each_dedup_cand(d, hash_entry, h) {
25522fc3fc0bSAndrii Nakryiko 		__u32 cand_id = (__u32)(long)hash_entry->value;
2553d5caef5bSAndrii Nakryiko 		int eq;
2554d5caef5bSAndrii Nakryiko 
255591097fbeSAndrii Nakryiko 		/*
255691097fbeSAndrii Nakryiko 		 * Even though btf_dedup_is_equiv() checks for
255791097fbeSAndrii Nakryiko 		 * btf_shallow_equal_struct() internally when checking two
255891097fbeSAndrii Nakryiko 		 * structs (unions) for equivalence, we need to guard here
255991097fbeSAndrii Nakryiko 		 * from picking matching FWD type as a dedup candidate.
256091097fbeSAndrii Nakryiko 		 * This can happen due to hash collision. In such case just
256191097fbeSAndrii Nakryiko 		 * relying on btf_dedup_is_equiv() would lead to potentially
256291097fbeSAndrii Nakryiko 		 * creating a loop (FWD -> STRUCT and STRUCT -> FWD), because
256391097fbeSAndrii Nakryiko 		 * FWD and compatible STRUCT/UNION are considered equivalent.
256491097fbeSAndrii Nakryiko 		 */
25652fc3fc0bSAndrii Nakryiko 		cand_type = d->btf->types[cand_id];
256691097fbeSAndrii Nakryiko 		if (!btf_shallow_equal_struct(t, cand_type))
256791097fbeSAndrii Nakryiko 			continue;
256891097fbeSAndrii Nakryiko 
2569d5caef5bSAndrii Nakryiko 		btf_dedup_clear_hypot_map(d);
25702fc3fc0bSAndrii Nakryiko 		eq = btf_dedup_is_equiv(d, type_id, cand_id);
2571d5caef5bSAndrii Nakryiko 		if (eq < 0)
2572d5caef5bSAndrii Nakryiko 			return eq;
2573d5caef5bSAndrii Nakryiko 		if (!eq)
2574d5caef5bSAndrii Nakryiko 			continue;
25752fc3fc0bSAndrii Nakryiko 		new_id = cand_id;
2576d5caef5bSAndrii Nakryiko 		btf_dedup_merge_hypot_map(d);
2577d5caef5bSAndrii Nakryiko 		break;
2578d5caef5bSAndrii Nakryiko 	}
2579d5caef5bSAndrii Nakryiko 
2580d5caef5bSAndrii Nakryiko 	d->map[type_id] = new_id;
2581d5caef5bSAndrii Nakryiko 	if (type_id == new_id && btf_dedup_table_add(d, h, type_id))
2582d5caef5bSAndrii Nakryiko 		return -ENOMEM;
2583d5caef5bSAndrii Nakryiko 
2584d5caef5bSAndrii Nakryiko 	return 0;
2585d5caef5bSAndrii Nakryiko }
2586d5caef5bSAndrii Nakryiko 
2587d5caef5bSAndrii Nakryiko static int btf_dedup_struct_types(struct btf_dedup *d)
2588d5caef5bSAndrii Nakryiko {
2589d5caef5bSAndrii Nakryiko 	int i, err;
2590d5caef5bSAndrii Nakryiko 
2591d5caef5bSAndrii Nakryiko 	for (i = 1; i <= d->btf->nr_types; i++) {
2592d5caef5bSAndrii Nakryiko 		err = btf_dedup_struct_type(d, i);
2593d5caef5bSAndrii Nakryiko 		if (err)
2594d5caef5bSAndrii Nakryiko 			return err;
2595d5caef5bSAndrii Nakryiko 	}
2596d5caef5bSAndrii Nakryiko 	return 0;
2597d5caef5bSAndrii Nakryiko }
2598d5caef5bSAndrii Nakryiko 
2599d5caef5bSAndrii Nakryiko /*
2600d5caef5bSAndrii Nakryiko  * Deduplicate reference type.
2601d5caef5bSAndrii Nakryiko  *
2602d5caef5bSAndrii Nakryiko  * Once all primitive and struct/union types got deduplicated, we can easily
2603d5caef5bSAndrii Nakryiko  * deduplicate all other (reference) BTF types. This is done in two steps:
2604d5caef5bSAndrii Nakryiko  *
2605d5caef5bSAndrii Nakryiko  * 1. Resolve all referenced type IDs into their canonical type IDs. This
2606d5caef5bSAndrii Nakryiko  * resolution can be done either immediately for primitive or struct/union types
2607d5caef5bSAndrii Nakryiko  * (because they were deduped in previous two phases) or recursively for
2608d5caef5bSAndrii Nakryiko  * reference types. Recursion will always terminate at either primitive or
2609d5caef5bSAndrii Nakryiko  * struct/union type, at which point we can "unwind" chain of reference types
2610d5caef5bSAndrii Nakryiko  * one by one. There is no danger of encountering cycles because in C type
2611d5caef5bSAndrii Nakryiko  * system the only way to form type cycle is through struct/union, so any chain
2612d5caef5bSAndrii Nakryiko  * of reference types, even those taking part in a type cycle, will inevitably
2613d5caef5bSAndrii Nakryiko  * reach struct/union at some point.
2614d5caef5bSAndrii Nakryiko  *
2615d5caef5bSAndrii Nakryiko  * 2. Once all referenced type IDs are resolved into canonical ones, BTF type
2616d5caef5bSAndrii Nakryiko  * becomes "stable", in the sense that no further deduplication will cause
2617d5caef5bSAndrii Nakryiko  * any changes to it. With that, it's now possible to calculate type's signature
2618d5caef5bSAndrii Nakryiko  * hash (this time taking into account referenced type IDs) and loop over all
2619d5caef5bSAndrii Nakryiko  * potential canonical representatives. If no match was found, current type
2620d5caef5bSAndrii Nakryiko  * will become canonical representative of itself and will be added into
2621d5caef5bSAndrii Nakryiko  * btf_dedup->dedup_table as another possible canonical representative.
2622d5caef5bSAndrii Nakryiko  */
2623d5caef5bSAndrii Nakryiko static int btf_dedup_ref_type(struct btf_dedup *d, __u32 type_id)
2624d5caef5bSAndrii Nakryiko {
26252fc3fc0bSAndrii Nakryiko 	struct hashmap_entry *hash_entry;
26262fc3fc0bSAndrii Nakryiko 	__u32 new_id = type_id, cand_id;
2627d5caef5bSAndrii Nakryiko 	struct btf_type *t, *cand;
2628d5caef5bSAndrii Nakryiko 	/* if we don't find equivalent type, then we are representative type */
26293d8669e6SDan Carpenter 	int ref_type_id;
26302fc3fc0bSAndrii Nakryiko 	long h;
2631d5caef5bSAndrii Nakryiko 
2632d5caef5bSAndrii Nakryiko 	if (d->map[type_id] == BTF_IN_PROGRESS_ID)
2633d5caef5bSAndrii Nakryiko 		return -ELOOP;
26345aab392cSAndrii Nakryiko 	if (d->map[type_id] <= BTF_MAX_NR_TYPES)
2635d5caef5bSAndrii Nakryiko 		return resolve_type_id(d, type_id);
2636d5caef5bSAndrii Nakryiko 
2637d5caef5bSAndrii Nakryiko 	t = d->btf->types[type_id];
2638d5caef5bSAndrii Nakryiko 	d->map[type_id] = BTF_IN_PROGRESS_ID;
2639d5caef5bSAndrii Nakryiko 
2640b03bc685SAndrii Nakryiko 	switch (btf_kind(t)) {
2641d5caef5bSAndrii Nakryiko 	case BTF_KIND_CONST:
2642d5caef5bSAndrii Nakryiko 	case BTF_KIND_VOLATILE:
2643d5caef5bSAndrii Nakryiko 	case BTF_KIND_RESTRICT:
2644d5caef5bSAndrii Nakryiko 	case BTF_KIND_PTR:
2645d5caef5bSAndrii Nakryiko 	case BTF_KIND_TYPEDEF:
2646d5caef5bSAndrii Nakryiko 	case BTF_KIND_FUNC:
2647d5caef5bSAndrii Nakryiko 		ref_type_id = btf_dedup_ref_type(d, t->type);
2648d5caef5bSAndrii Nakryiko 		if (ref_type_id < 0)
2649d5caef5bSAndrii Nakryiko 			return ref_type_id;
2650d5caef5bSAndrii Nakryiko 		t->type = ref_type_id;
2651d5caef5bSAndrii Nakryiko 
2652d5caef5bSAndrii Nakryiko 		h = btf_hash_common(t);
26532fc3fc0bSAndrii Nakryiko 		for_each_dedup_cand(d, hash_entry, h) {
26542fc3fc0bSAndrii Nakryiko 			cand_id = (__u32)(long)hash_entry->value;
26552fc3fc0bSAndrii Nakryiko 			cand = d->btf->types[cand_id];
2656d5caef5bSAndrii Nakryiko 			if (btf_equal_common(t, cand)) {
26572fc3fc0bSAndrii Nakryiko 				new_id = cand_id;
2658d5caef5bSAndrii Nakryiko 				break;
2659d5caef5bSAndrii Nakryiko 			}
2660d5caef5bSAndrii Nakryiko 		}
2661d5caef5bSAndrii Nakryiko 		break;
2662d5caef5bSAndrii Nakryiko 
2663d5caef5bSAndrii Nakryiko 	case BTF_KIND_ARRAY: {
2664b03bc685SAndrii Nakryiko 		struct btf_array *info = btf_array(t);
2665d5caef5bSAndrii Nakryiko 
2666d5caef5bSAndrii Nakryiko 		ref_type_id = btf_dedup_ref_type(d, info->type);
2667d5caef5bSAndrii Nakryiko 		if (ref_type_id < 0)
2668d5caef5bSAndrii Nakryiko 			return ref_type_id;
2669d5caef5bSAndrii Nakryiko 		info->type = ref_type_id;
2670d5caef5bSAndrii Nakryiko 
2671d5caef5bSAndrii Nakryiko 		ref_type_id = btf_dedup_ref_type(d, info->index_type);
2672d5caef5bSAndrii Nakryiko 		if (ref_type_id < 0)
2673d5caef5bSAndrii Nakryiko 			return ref_type_id;
2674d5caef5bSAndrii Nakryiko 		info->index_type = ref_type_id;
2675d5caef5bSAndrii Nakryiko 
2676d5caef5bSAndrii Nakryiko 		h = btf_hash_array(t);
26772fc3fc0bSAndrii Nakryiko 		for_each_dedup_cand(d, hash_entry, h) {
26782fc3fc0bSAndrii Nakryiko 			cand_id = (__u32)(long)hash_entry->value;
26792fc3fc0bSAndrii Nakryiko 			cand = d->btf->types[cand_id];
2680d5caef5bSAndrii Nakryiko 			if (btf_equal_array(t, cand)) {
26812fc3fc0bSAndrii Nakryiko 				new_id = cand_id;
2682d5caef5bSAndrii Nakryiko 				break;
2683d5caef5bSAndrii Nakryiko 			}
2684d5caef5bSAndrii Nakryiko 		}
2685d5caef5bSAndrii Nakryiko 		break;
2686d5caef5bSAndrii Nakryiko 	}
2687d5caef5bSAndrii Nakryiko 
2688d5caef5bSAndrii Nakryiko 	case BTF_KIND_FUNC_PROTO: {
2689d5caef5bSAndrii Nakryiko 		struct btf_param *param;
2690d5caef5bSAndrii Nakryiko 		__u16 vlen;
2691d5caef5bSAndrii Nakryiko 		int i;
2692d5caef5bSAndrii Nakryiko 
2693d5caef5bSAndrii Nakryiko 		ref_type_id = btf_dedup_ref_type(d, t->type);
2694d5caef5bSAndrii Nakryiko 		if (ref_type_id < 0)
2695d5caef5bSAndrii Nakryiko 			return ref_type_id;
2696d5caef5bSAndrii Nakryiko 		t->type = ref_type_id;
2697d5caef5bSAndrii Nakryiko 
2698b03bc685SAndrii Nakryiko 		vlen = btf_vlen(t);
2699b03bc685SAndrii Nakryiko 		param = btf_params(t);
2700d5caef5bSAndrii Nakryiko 		for (i = 0; i < vlen; i++) {
2701d5caef5bSAndrii Nakryiko 			ref_type_id = btf_dedup_ref_type(d, param->type);
2702d5caef5bSAndrii Nakryiko 			if (ref_type_id < 0)
2703d5caef5bSAndrii Nakryiko 				return ref_type_id;
2704d5caef5bSAndrii Nakryiko 			param->type = ref_type_id;
2705d5caef5bSAndrii Nakryiko 			param++;
2706d5caef5bSAndrii Nakryiko 		}
2707d5caef5bSAndrii Nakryiko 
2708d5caef5bSAndrii Nakryiko 		h = btf_hash_fnproto(t);
27092fc3fc0bSAndrii Nakryiko 		for_each_dedup_cand(d, hash_entry, h) {
27102fc3fc0bSAndrii Nakryiko 			cand_id = (__u32)(long)hash_entry->value;
27112fc3fc0bSAndrii Nakryiko 			cand = d->btf->types[cand_id];
2712d5caef5bSAndrii Nakryiko 			if (btf_equal_fnproto(t, cand)) {
27132fc3fc0bSAndrii Nakryiko 				new_id = cand_id;
2714d5caef5bSAndrii Nakryiko 				break;
2715d5caef5bSAndrii Nakryiko 			}
2716d5caef5bSAndrii Nakryiko 		}
2717d5caef5bSAndrii Nakryiko 		break;
2718d5caef5bSAndrii Nakryiko 	}
2719d5caef5bSAndrii Nakryiko 
2720d5caef5bSAndrii Nakryiko 	default:
2721d5caef5bSAndrii Nakryiko 		return -EINVAL;
2722d5caef5bSAndrii Nakryiko 	}
2723d5caef5bSAndrii Nakryiko 
2724d5caef5bSAndrii Nakryiko 	d->map[type_id] = new_id;
2725d5caef5bSAndrii Nakryiko 	if (type_id == new_id && btf_dedup_table_add(d, h, type_id))
2726d5caef5bSAndrii Nakryiko 		return -ENOMEM;
2727d5caef5bSAndrii Nakryiko 
2728d5caef5bSAndrii Nakryiko 	return new_id;
2729d5caef5bSAndrii Nakryiko }
2730d5caef5bSAndrii Nakryiko 
2731d5caef5bSAndrii Nakryiko static int btf_dedup_ref_types(struct btf_dedup *d)
2732d5caef5bSAndrii Nakryiko {
2733d5caef5bSAndrii Nakryiko 	int i, err;
2734d5caef5bSAndrii Nakryiko 
2735d5caef5bSAndrii Nakryiko 	for (i = 1; i <= d->btf->nr_types; i++) {
2736d5caef5bSAndrii Nakryiko 		err = btf_dedup_ref_type(d, i);
2737d5caef5bSAndrii Nakryiko 		if (err < 0)
2738d5caef5bSAndrii Nakryiko 			return err;
2739d5caef5bSAndrii Nakryiko 	}
27402fc3fc0bSAndrii Nakryiko 	/* we won't need d->dedup_table anymore */
27412fc3fc0bSAndrii Nakryiko 	hashmap__free(d->dedup_table);
27422fc3fc0bSAndrii Nakryiko 	d->dedup_table = NULL;
2743d5caef5bSAndrii Nakryiko 	return 0;
2744d5caef5bSAndrii Nakryiko }
2745d5caef5bSAndrii Nakryiko 
2746d5caef5bSAndrii Nakryiko /*
2747d5caef5bSAndrii Nakryiko  * Compact types.
2748d5caef5bSAndrii Nakryiko  *
2749d5caef5bSAndrii Nakryiko  * After we established for each type its corresponding canonical representative
2750d5caef5bSAndrii Nakryiko  * type, we now can eliminate types that are not canonical and leave only
2751d5caef5bSAndrii Nakryiko  * canonical ones layed out sequentially in memory by copying them over
2752d5caef5bSAndrii Nakryiko  * duplicates. During compaction btf_dedup->hypot_map array is reused to store
2753d5caef5bSAndrii Nakryiko  * a map from original type ID to a new compacted type ID, which will be used
2754d5caef5bSAndrii Nakryiko  * during next phase to "fix up" type IDs, referenced from struct/union and
2755d5caef5bSAndrii Nakryiko  * reference types.
2756d5caef5bSAndrii Nakryiko  */
2757d5caef5bSAndrii Nakryiko static int btf_dedup_compact_types(struct btf_dedup *d)
2758d5caef5bSAndrii Nakryiko {
2759d5caef5bSAndrii Nakryiko 	struct btf_type **new_types;
2760d5caef5bSAndrii Nakryiko 	__u32 next_type_id = 1;
2761d5caef5bSAndrii Nakryiko 	char *types_start, *p;
2762d5caef5bSAndrii Nakryiko 	int i, len;
2763d5caef5bSAndrii Nakryiko 
2764d5caef5bSAndrii Nakryiko 	/* we are going to reuse hypot_map to store compaction remapping */
2765d5caef5bSAndrii Nakryiko 	d->hypot_map[0] = 0;
2766d5caef5bSAndrii Nakryiko 	for (i = 1; i <= d->btf->nr_types; i++)
2767d5caef5bSAndrii Nakryiko 		d->hypot_map[i] = BTF_UNPROCESSED_ID;
2768d5caef5bSAndrii Nakryiko 
2769d5caef5bSAndrii Nakryiko 	types_start = d->btf->nohdr_data + d->btf->hdr->type_off;
2770d5caef5bSAndrii Nakryiko 	p = types_start;
2771d5caef5bSAndrii Nakryiko 
2772d5caef5bSAndrii Nakryiko 	for (i = 1; i <= d->btf->nr_types; i++) {
2773d5caef5bSAndrii Nakryiko 		if (d->map[i] != i)
2774d5caef5bSAndrii Nakryiko 			continue;
2775d5caef5bSAndrii Nakryiko 
2776d5caef5bSAndrii Nakryiko 		len = btf_type_size(d->btf->types[i]);
2777d5caef5bSAndrii Nakryiko 		if (len < 0)
2778d5caef5bSAndrii Nakryiko 			return len;
2779d5caef5bSAndrii Nakryiko 
2780d5caef5bSAndrii Nakryiko 		memmove(p, d->btf->types[i], len);
2781d5caef5bSAndrii Nakryiko 		d->hypot_map[i] = next_type_id;
2782d5caef5bSAndrii Nakryiko 		d->btf->types[next_type_id] = (struct btf_type *)p;
2783d5caef5bSAndrii Nakryiko 		p += len;
2784d5caef5bSAndrii Nakryiko 		next_type_id++;
2785d5caef5bSAndrii Nakryiko 	}
2786d5caef5bSAndrii Nakryiko 
2787d5caef5bSAndrii Nakryiko 	/* shrink struct btf's internal types index and update btf_header */
2788d5caef5bSAndrii Nakryiko 	d->btf->nr_types = next_type_id - 1;
2789d5caef5bSAndrii Nakryiko 	d->btf->types_size = d->btf->nr_types;
2790d5caef5bSAndrii Nakryiko 	d->btf->hdr->type_len = p - types_start;
2791d5caef5bSAndrii Nakryiko 	new_types = realloc(d->btf->types,
2792d5caef5bSAndrii Nakryiko 			    (1 + d->btf->nr_types) * sizeof(struct btf_type *));
2793d5caef5bSAndrii Nakryiko 	if (!new_types)
2794d5caef5bSAndrii Nakryiko 		return -ENOMEM;
2795d5caef5bSAndrii Nakryiko 	d->btf->types = new_types;
2796d5caef5bSAndrii Nakryiko 
2797d5caef5bSAndrii Nakryiko 	/* make sure string section follows type information without gaps */
2798d5caef5bSAndrii Nakryiko 	d->btf->hdr->str_off = p - (char *)d->btf->nohdr_data;
2799d5caef5bSAndrii Nakryiko 	memmove(p, d->btf->strings, d->btf->hdr->str_len);
2800d5caef5bSAndrii Nakryiko 	d->btf->strings = p;
2801d5caef5bSAndrii Nakryiko 	p += d->btf->hdr->str_len;
2802d5caef5bSAndrii Nakryiko 
2803d5caef5bSAndrii Nakryiko 	d->btf->data_size = p - (char *)d->btf->data;
2804d5caef5bSAndrii Nakryiko 	return 0;
2805d5caef5bSAndrii Nakryiko }
2806d5caef5bSAndrii Nakryiko 
2807d5caef5bSAndrii Nakryiko /*
2808d5caef5bSAndrii Nakryiko  * Figure out final (deduplicated and compacted) type ID for provided original
2809d5caef5bSAndrii Nakryiko  * `type_id` by first resolving it into corresponding canonical type ID and
2810d5caef5bSAndrii Nakryiko  * then mapping it to a deduplicated type ID, stored in btf_dedup->hypot_map,
2811d5caef5bSAndrii Nakryiko  * which is populated during compaction phase.
2812d5caef5bSAndrii Nakryiko  */
2813d5caef5bSAndrii Nakryiko static int btf_dedup_remap_type_id(struct btf_dedup *d, __u32 type_id)
2814d5caef5bSAndrii Nakryiko {
2815d5caef5bSAndrii Nakryiko 	__u32 resolved_type_id, new_type_id;
2816d5caef5bSAndrii Nakryiko 
2817d5caef5bSAndrii Nakryiko 	resolved_type_id = resolve_type_id(d, type_id);
2818d5caef5bSAndrii Nakryiko 	new_type_id = d->hypot_map[resolved_type_id];
28195aab392cSAndrii Nakryiko 	if (new_type_id > BTF_MAX_NR_TYPES)
2820d5caef5bSAndrii Nakryiko 		return -EINVAL;
2821d5caef5bSAndrii Nakryiko 	return new_type_id;
2822d5caef5bSAndrii Nakryiko }
2823d5caef5bSAndrii Nakryiko 
2824d5caef5bSAndrii Nakryiko /*
2825d5caef5bSAndrii Nakryiko  * Remap referenced type IDs into deduped type IDs.
2826d5caef5bSAndrii Nakryiko  *
2827d5caef5bSAndrii Nakryiko  * After BTF types are deduplicated and compacted, their final type IDs may
2828d5caef5bSAndrii Nakryiko  * differ from original ones. The map from original to a corresponding
2829d5caef5bSAndrii Nakryiko  * deduped type ID is stored in btf_dedup->hypot_map and is populated during
2830d5caef5bSAndrii Nakryiko  * compaction phase. During remapping phase we are rewriting all type IDs
2831d5caef5bSAndrii Nakryiko  * referenced from any BTF type (e.g., struct fields, func proto args, etc) to
2832d5caef5bSAndrii Nakryiko  * their final deduped type IDs.
2833d5caef5bSAndrii Nakryiko  */
2834d5caef5bSAndrii Nakryiko static int btf_dedup_remap_type(struct btf_dedup *d, __u32 type_id)
2835d5caef5bSAndrii Nakryiko {
2836d5caef5bSAndrii Nakryiko 	struct btf_type *t = d->btf->types[type_id];
2837d5caef5bSAndrii Nakryiko 	int i, r;
2838d5caef5bSAndrii Nakryiko 
2839b03bc685SAndrii Nakryiko 	switch (btf_kind(t)) {
2840d5caef5bSAndrii Nakryiko 	case BTF_KIND_INT:
2841d5caef5bSAndrii Nakryiko 	case BTF_KIND_ENUM:
2842d5caef5bSAndrii Nakryiko 		break;
2843d5caef5bSAndrii Nakryiko 
2844d5caef5bSAndrii Nakryiko 	case BTF_KIND_FWD:
2845d5caef5bSAndrii Nakryiko 	case BTF_KIND_CONST:
2846d5caef5bSAndrii Nakryiko 	case BTF_KIND_VOLATILE:
2847d5caef5bSAndrii Nakryiko 	case BTF_KIND_RESTRICT:
2848d5caef5bSAndrii Nakryiko 	case BTF_KIND_PTR:
2849d5caef5bSAndrii Nakryiko 	case BTF_KIND_TYPEDEF:
2850d5caef5bSAndrii Nakryiko 	case BTF_KIND_FUNC:
2851189cf5a4SAndrii Nakryiko 	case BTF_KIND_VAR:
2852d5caef5bSAndrii Nakryiko 		r = btf_dedup_remap_type_id(d, t->type);
2853d5caef5bSAndrii Nakryiko 		if (r < 0)
2854d5caef5bSAndrii Nakryiko 			return r;
2855d5caef5bSAndrii Nakryiko 		t->type = r;
2856d5caef5bSAndrii Nakryiko 		break;
2857d5caef5bSAndrii Nakryiko 
2858d5caef5bSAndrii Nakryiko 	case BTF_KIND_ARRAY: {
2859b03bc685SAndrii Nakryiko 		struct btf_array *arr_info = btf_array(t);
2860d5caef5bSAndrii Nakryiko 
2861d5caef5bSAndrii Nakryiko 		r = btf_dedup_remap_type_id(d, arr_info->type);
2862d5caef5bSAndrii Nakryiko 		if (r < 0)
2863d5caef5bSAndrii Nakryiko 			return r;
2864d5caef5bSAndrii Nakryiko 		arr_info->type = r;
2865d5caef5bSAndrii Nakryiko 		r = btf_dedup_remap_type_id(d, arr_info->index_type);
2866d5caef5bSAndrii Nakryiko 		if (r < 0)
2867d5caef5bSAndrii Nakryiko 			return r;
2868d5caef5bSAndrii Nakryiko 		arr_info->index_type = r;
2869d5caef5bSAndrii Nakryiko 		break;
2870d5caef5bSAndrii Nakryiko 	}
2871d5caef5bSAndrii Nakryiko 
2872d5caef5bSAndrii Nakryiko 	case BTF_KIND_STRUCT:
2873d5caef5bSAndrii Nakryiko 	case BTF_KIND_UNION: {
2874b03bc685SAndrii Nakryiko 		struct btf_member *member = btf_members(t);
2875b03bc685SAndrii Nakryiko 		__u16 vlen = btf_vlen(t);
2876d5caef5bSAndrii Nakryiko 
2877d5caef5bSAndrii Nakryiko 		for (i = 0; i < vlen; i++) {
2878d5caef5bSAndrii Nakryiko 			r = btf_dedup_remap_type_id(d, member->type);
2879d5caef5bSAndrii Nakryiko 			if (r < 0)
2880d5caef5bSAndrii Nakryiko 				return r;
2881d5caef5bSAndrii Nakryiko 			member->type = r;
2882d5caef5bSAndrii Nakryiko 			member++;
2883d5caef5bSAndrii Nakryiko 		}
2884d5caef5bSAndrii Nakryiko 		break;
2885d5caef5bSAndrii Nakryiko 	}
2886d5caef5bSAndrii Nakryiko 
2887d5caef5bSAndrii Nakryiko 	case BTF_KIND_FUNC_PROTO: {
2888b03bc685SAndrii Nakryiko 		struct btf_param *param = btf_params(t);
2889b03bc685SAndrii Nakryiko 		__u16 vlen = btf_vlen(t);
2890d5caef5bSAndrii Nakryiko 
2891d5caef5bSAndrii Nakryiko 		r = btf_dedup_remap_type_id(d, t->type);
2892d5caef5bSAndrii Nakryiko 		if (r < 0)
2893d5caef5bSAndrii Nakryiko 			return r;
2894d5caef5bSAndrii Nakryiko 		t->type = r;
2895d5caef5bSAndrii Nakryiko 
2896d5caef5bSAndrii Nakryiko 		for (i = 0; i < vlen; i++) {
2897d5caef5bSAndrii Nakryiko 			r = btf_dedup_remap_type_id(d, param->type);
2898d5caef5bSAndrii Nakryiko 			if (r < 0)
2899d5caef5bSAndrii Nakryiko 				return r;
2900d5caef5bSAndrii Nakryiko 			param->type = r;
2901d5caef5bSAndrii Nakryiko 			param++;
2902d5caef5bSAndrii Nakryiko 		}
2903d5caef5bSAndrii Nakryiko 		break;
2904d5caef5bSAndrii Nakryiko 	}
2905d5caef5bSAndrii Nakryiko 
2906189cf5a4SAndrii Nakryiko 	case BTF_KIND_DATASEC: {
2907b03bc685SAndrii Nakryiko 		struct btf_var_secinfo *var = btf_var_secinfos(t);
2908b03bc685SAndrii Nakryiko 		__u16 vlen = btf_vlen(t);
2909189cf5a4SAndrii Nakryiko 
2910189cf5a4SAndrii Nakryiko 		for (i = 0; i < vlen; i++) {
2911189cf5a4SAndrii Nakryiko 			r = btf_dedup_remap_type_id(d, var->type);
2912189cf5a4SAndrii Nakryiko 			if (r < 0)
2913189cf5a4SAndrii Nakryiko 				return r;
2914189cf5a4SAndrii Nakryiko 			var->type = r;
2915189cf5a4SAndrii Nakryiko 			var++;
2916189cf5a4SAndrii Nakryiko 		}
2917189cf5a4SAndrii Nakryiko 		break;
2918189cf5a4SAndrii Nakryiko 	}
2919189cf5a4SAndrii Nakryiko 
2920d5caef5bSAndrii Nakryiko 	default:
2921d5caef5bSAndrii Nakryiko 		return -EINVAL;
2922d5caef5bSAndrii Nakryiko 	}
2923d5caef5bSAndrii Nakryiko 
2924d5caef5bSAndrii Nakryiko 	return 0;
2925d5caef5bSAndrii Nakryiko }
2926d5caef5bSAndrii Nakryiko 
2927d5caef5bSAndrii Nakryiko static int btf_dedup_remap_types(struct btf_dedup *d)
2928d5caef5bSAndrii Nakryiko {
2929d5caef5bSAndrii Nakryiko 	int i, r;
2930d5caef5bSAndrii Nakryiko 
2931d5caef5bSAndrii Nakryiko 	for (i = 1; i <= d->btf->nr_types; i++) {
2932d5caef5bSAndrii Nakryiko 		r = btf_dedup_remap_type(d, i);
2933d5caef5bSAndrii Nakryiko 		if (r < 0)
2934d5caef5bSAndrii Nakryiko 			return r;
2935d5caef5bSAndrii Nakryiko 	}
2936d5caef5bSAndrii Nakryiko 	return 0;
2937d5caef5bSAndrii Nakryiko }
2938*fb2426adSMartin KaFai Lau 
2939*fb2426adSMartin KaFai Lau static struct btf *btf_load_raw(const char *path)
2940*fb2426adSMartin KaFai Lau {
2941*fb2426adSMartin KaFai Lau 	struct btf *btf;
2942*fb2426adSMartin KaFai Lau 	size_t read_cnt;
2943*fb2426adSMartin KaFai Lau 	struct stat st;
2944*fb2426adSMartin KaFai Lau 	void *data;
2945*fb2426adSMartin KaFai Lau 	FILE *f;
2946*fb2426adSMartin KaFai Lau 
2947*fb2426adSMartin KaFai Lau 	if (stat(path, &st))
2948*fb2426adSMartin KaFai Lau 		return ERR_PTR(-errno);
2949*fb2426adSMartin KaFai Lau 
2950*fb2426adSMartin KaFai Lau 	data = malloc(st.st_size);
2951*fb2426adSMartin KaFai Lau 	if (!data)
2952*fb2426adSMartin KaFai Lau 		return ERR_PTR(-ENOMEM);
2953*fb2426adSMartin KaFai Lau 
2954*fb2426adSMartin KaFai Lau 	f = fopen(path, "rb");
2955*fb2426adSMartin KaFai Lau 	if (!f) {
2956*fb2426adSMartin KaFai Lau 		btf = ERR_PTR(-errno);
2957*fb2426adSMartin KaFai Lau 		goto cleanup;
2958*fb2426adSMartin KaFai Lau 	}
2959*fb2426adSMartin KaFai Lau 
2960*fb2426adSMartin KaFai Lau 	read_cnt = fread(data, 1, st.st_size, f);
2961*fb2426adSMartin KaFai Lau 	fclose(f);
2962*fb2426adSMartin KaFai Lau 	if (read_cnt < st.st_size) {
2963*fb2426adSMartin KaFai Lau 		btf = ERR_PTR(-EBADF);
2964*fb2426adSMartin KaFai Lau 		goto cleanup;
2965*fb2426adSMartin KaFai Lau 	}
2966*fb2426adSMartin KaFai Lau 
2967*fb2426adSMartin KaFai Lau 	btf = btf__new(data, read_cnt);
2968*fb2426adSMartin KaFai Lau 
2969*fb2426adSMartin KaFai Lau cleanup:
2970*fb2426adSMartin KaFai Lau 	free(data);
2971*fb2426adSMartin KaFai Lau 	return btf;
2972*fb2426adSMartin KaFai Lau }
2973*fb2426adSMartin KaFai Lau 
2974*fb2426adSMartin KaFai Lau /*
2975*fb2426adSMartin KaFai Lau  * Probe few well-known locations for vmlinux kernel image and try to load BTF
2976*fb2426adSMartin KaFai Lau  * data out of it to use for target BTF.
2977*fb2426adSMartin KaFai Lau  */
2978*fb2426adSMartin KaFai Lau struct btf *libbpf_find_kernel_btf(void)
2979*fb2426adSMartin KaFai Lau {
2980*fb2426adSMartin KaFai Lau 	struct {
2981*fb2426adSMartin KaFai Lau 		const char *path_fmt;
2982*fb2426adSMartin KaFai Lau 		bool raw_btf;
2983*fb2426adSMartin KaFai Lau 	} locations[] = {
2984*fb2426adSMartin KaFai Lau 		/* try canonical vmlinux BTF through sysfs first */
2985*fb2426adSMartin KaFai Lau 		{ "/sys/kernel/btf/vmlinux", true /* raw BTF */ },
2986*fb2426adSMartin KaFai Lau 		/* fall back to trying to find vmlinux ELF on disk otherwise */
2987*fb2426adSMartin KaFai Lau 		{ "/boot/vmlinux-%1$s" },
2988*fb2426adSMartin KaFai Lau 		{ "/lib/modules/%1$s/vmlinux-%1$s" },
2989*fb2426adSMartin KaFai Lau 		{ "/lib/modules/%1$s/build/vmlinux" },
2990*fb2426adSMartin KaFai Lau 		{ "/usr/lib/modules/%1$s/kernel/vmlinux" },
2991*fb2426adSMartin KaFai Lau 		{ "/usr/lib/debug/boot/vmlinux-%1$s" },
2992*fb2426adSMartin KaFai Lau 		{ "/usr/lib/debug/boot/vmlinux-%1$s.debug" },
2993*fb2426adSMartin KaFai Lau 		{ "/usr/lib/debug/lib/modules/%1$s/vmlinux" },
2994*fb2426adSMartin KaFai Lau 	};
2995*fb2426adSMartin KaFai Lau 	char path[PATH_MAX + 1];
2996*fb2426adSMartin KaFai Lau 	struct utsname buf;
2997*fb2426adSMartin KaFai Lau 	struct btf *btf;
2998*fb2426adSMartin KaFai Lau 	int i;
2999*fb2426adSMartin KaFai Lau 
3000*fb2426adSMartin KaFai Lau 	uname(&buf);
3001*fb2426adSMartin KaFai Lau 
3002*fb2426adSMartin KaFai Lau 	for (i = 0; i < ARRAY_SIZE(locations); i++) {
3003*fb2426adSMartin KaFai Lau 		snprintf(path, PATH_MAX, locations[i].path_fmt, buf.release);
3004*fb2426adSMartin KaFai Lau 
3005*fb2426adSMartin KaFai Lau 		if (access(path, R_OK))
3006*fb2426adSMartin KaFai Lau 			continue;
3007*fb2426adSMartin KaFai Lau 
3008*fb2426adSMartin KaFai Lau 		if (locations[i].raw_btf)
3009*fb2426adSMartin KaFai Lau 			btf = btf_load_raw(path);
3010*fb2426adSMartin KaFai Lau 		else
3011*fb2426adSMartin KaFai Lau 			btf = btf__parse_elf(path, NULL);
3012*fb2426adSMartin KaFai Lau 
3013*fb2426adSMartin KaFai Lau 		pr_debug("loading kernel BTF '%s': %ld\n",
3014*fb2426adSMartin KaFai Lau 			 path, IS_ERR(btf) ? PTR_ERR(btf) : 0);
3015*fb2426adSMartin KaFai Lau 		if (IS_ERR(btf))
3016*fb2426adSMartin KaFai Lau 			continue;
3017*fb2426adSMartin KaFai Lau 
3018*fb2426adSMartin KaFai Lau 		return btf;
3019*fb2426adSMartin KaFai Lau 	}
3020*fb2426adSMartin KaFai Lau 
3021*fb2426adSMartin KaFai Lau 	pr_warn("failed to find valid kernel BTF\n");
3022*fb2426adSMartin KaFai Lau 	return ERR_PTR(-ESRCH);
3023*fb2426adSMartin KaFai Lau }
3024