11 const char *map_type__name
[MAP__NR_TYPES
] = {
12 [MAP__FUNCTION
] = "Functions",
13 [MAP__VARIABLE
] = "Variables",
16 static inline int is_anon_memory(const char *filename
)
18 return strcmp(filename
, "//anon") == 0;
21 void map__init(struct map
*self
, enum map_type type
,
22 u64 start
, u64 end
, u64 pgoff
, struct dso
*dso
)
29 self
->map_ip
= map__map_ip
;
30 self
->unmap_ip
= map__unmap_ip
;
31 RB_CLEAR_NODE(&self
->rb_node
);
33 self
->referenced
= false;
36 struct map
*map__new(struct list_head
*dsos__list
, u64 start
, u64 len
,
37 u64 pgoff
, u32 pid
, char *filename
,
40 struct map
*self
= malloc(sizeof(*self
));
43 char newfilename
[PATH_MAX
];
47 anon
= is_anon_memory(filename
);
50 snprintf(newfilename
, sizeof(newfilename
), "/tmp/perf-%d.map", pid
);
51 filename
= newfilename
;
54 dso
= __dsos__findnew(dsos__list
, filename
);
58 map__init(self
, type
, start
, start
+ len
, pgoff
, dso
);
62 self
->map_ip
= self
->unmap_ip
= identity__map_ip
;
63 } else if (strcmp(filename
, "[vdso]") == 0) {
64 dso__set_loaded(dso
, self
->type
);
74 void map__delete(struct map
*self
)
79 void map__fixup_start(struct map
*self
)
81 struct rb_root
*symbols
= &self
->dso
->symbols
[self
->type
];
82 struct rb_node
*nd
= rb_first(symbols
);
84 struct symbol
*sym
= rb_entry(nd
, struct symbol
, rb_node
);
85 self
->start
= sym
->start
;
89 void map__fixup_end(struct map
*self
)
91 struct rb_root
*symbols
= &self
->dso
->symbols
[self
->type
];
92 struct rb_node
*nd
= rb_last(symbols
);
94 struct symbol
*sym
= rb_entry(nd
, struct symbol
, rb_node
);
99 #define DSO__DELETED "(deleted)"
101 int map__load(struct map
*self
, symbol_filter_t filter
)
103 const char *name
= self
->dso
->long_name
;
106 if (dso__loaded(self
->dso
, self
->type
))
109 nr
= dso__load(self
->dso
, self
, filter
);
111 if (self
->dso
->has_build_id
) {
112 char sbuild_id
[BUILD_ID_SIZE
* 2 + 1];
114 build_id__sprintf(self
->dso
->build_id
,
115 sizeof(self
->dso
->build_id
),
117 pr_warning("%s with build id %s not found",
120 pr_warning("Failed to open %s", name
);
122 pr_warning(", continuing without symbols\n");
124 } else if (nr
== 0) {
125 const size_t len
= strlen(name
);
126 const size_t real_len
= len
- sizeof(DSO__DELETED
);
128 if (len
> sizeof(DSO__DELETED
) &&
129 strcmp(name
+ real_len
+ 1, DSO__DELETED
) == 0) {
130 pr_warning("%.*s was updated, restart the long "
131 "running apps that use it!\n",
132 (int)real_len
, name
);
134 pr_warning("no symbols found in %s, maybe install "
135 "a debug package?\n", name
);
141 * Only applies to the kernel, as its symtabs aren't relative like the
144 if (self
->dso
->kernel
)
145 map__reloc_vmlinux(self
);
150 struct symbol
*map__find_symbol(struct map
*self
, u64 addr
,
151 symbol_filter_t filter
)
153 if (map__load(self
, filter
) < 0)
156 return dso__find_symbol(self
->dso
, self
->type
, addr
);
159 struct symbol
*map__find_symbol_by_name(struct map
*self
, const char *name
,
160 symbol_filter_t filter
)
162 if (map__load(self
, filter
) < 0)
165 if (!dso__sorted_by_name(self
->dso
, self
->type
))
166 dso__sort_by_name(self
->dso
, self
->type
);
168 return dso__find_symbol_by_name(self
->dso
, self
->type
, name
);
171 struct map
*map__clone(struct map
*self
)
173 struct map
*map
= malloc(sizeof(*self
));
178 memcpy(map
, self
, sizeof(*self
));
183 int map__overlap(struct map
*l
, struct map
*r
)
185 if (l
->start
> r
->start
) {
191 if (l
->end
> r
->start
)
197 size_t map__fprintf(struct map
*self
, FILE *fp
)
199 return fprintf(fp
, " %" PRIx64
"-%" PRIx64
" %" PRIx64
" %s\n",
200 self
->start
, self
->end
, self
->pgoff
, self
->dso
->name
);
204 * objdump wants/reports absolute IPs for ET_EXEC, and RIPs for ET_DYN.
205 * map->dso->adjust_symbols==1 for ET_EXEC-like cases.
207 u64
map__rip_2objdump(struct map
*map
, u64 rip
)
209 u64 addr
= map
->dso
->adjust_symbols
?
210 map
->unmap_ip(map
, rip
) : /* RIP -> IP */
215 u64
map__objdump_2ip(struct map
*map
, u64 addr
)
217 u64 ip
= map
->dso
->adjust_symbols
?
219 map
->unmap_ip(map
, addr
); /* RIP -> IP */
223 void map_groups__init(struct map_groups
*self
)
226 for (i
= 0; i
< MAP__NR_TYPES
; ++i
) {
227 self
->maps
[i
] = RB_ROOT
;
228 INIT_LIST_HEAD(&self
->removed_maps
[i
]);
230 self
->machine
= NULL
;
233 static void maps__delete(struct rb_root
*self
)
235 struct rb_node
*next
= rb_first(self
);
238 struct map
*pos
= rb_entry(next
, struct map
, rb_node
);
240 next
= rb_next(&pos
->rb_node
);
241 rb_erase(&pos
->rb_node
, self
);
246 static void maps__delete_removed(struct list_head
*self
)
250 list_for_each_entry_safe(pos
, n
, self
, node
) {
251 list_del(&pos
->node
);
256 void map_groups__exit(struct map_groups
*self
)
260 for (i
= 0; i
< MAP__NR_TYPES
; ++i
) {
261 maps__delete(&self
->maps
[i
]);
262 maps__delete_removed(&self
->removed_maps
[i
]);
266 void map_groups__flush(struct map_groups
*self
)
270 for (type
= 0; type
< MAP__NR_TYPES
; type
++) {
271 struct rb_root
*root
= &self
->maps
[type
];
272 struct rb_node
*next
= rb_first(root
);
275 struct map
*pos
= rb_entry(next
, struct map
, rb_node
);
276 next
= rb_next(&pos
->rb_node
);
277 rb_erase(&pos
->rb_node
, root
);
279 * We may have references to this map, for
280 * instance in some hist_entry instances, so
281 * just move them to a separate list.
283 list_add_tail(&pos
->node
, &self
->removed_maps
[pos
->type
]);
288 struct symbol
*map_groups__find_symbol(struct map_groups
*self
,
289 enum map_type type
, u64 addr
,
291 symbol_filter_t filter
)
293 struct map
*map
= map_groups__find(self
, type
, addr
);
298 return map__find_symbol(map
, map
->map_ip(map
, addr
), filter
);
304 struct symbol
*map_groups__find_symbol_by_name(struct map_groups
*self
,
308 symbol_filter_t filter
)
312 for (nd
= rb_first(&self
->maps
[type
]); nd
; nd
= rb_next(nd
)) {
313 struct map
*pos
= rb_entry(nd
, struct map
, rb_node
);
314 struct symbol
*sym
= map__find_symbol_by_name(pos
, name
, filter
);
326 size_t __map_groups__fprintf_maps(struct map_groups
*self
,
327 enum map_type type
, int verbose
, FILE *fp
)
329 size_t printed
= fprintf(fp
, "%s:\n", map_type__name
[type
]);
332 for (nd
= rb_first(&self
->maps
[type
]); nd
; nd
= rb_next(nd
)) {
333 struct map
*pos
= rb_entry(nd
, struct map
, rb_node
);
334 printed
+= fprintf(fp
, "Map:");
335 printed
+= map__fprintf(pos
, fp
);
337 printed
+= dso__fprintf(pos
->dso
, type
, fp
);
338 printed
+= fprintf(fp
, "--\n");
345 size_t map_groups__fprintf_maps(struct map_groups
*self
, int verbose
, FILE *fp
)
347 size_t printed
= 0, i
;
348 for (i
= 0; i
< MAP__NR_TYPES
; ++i
)
349 printed
+= __map_groups__fprintf_maps(self
, i
, verbose
, fp
);
353 static size_t __map_groups__fprintf_removed_maps(struct map_groups
*self
,
355 int verbose
, FILE *fp
)
360 list_for_each_entry(pos
, &self
->removed_maps
[type
], node
) {
361 printed
+= fprintf(fp
, "Map:");
362 printed
+= map__fprintf(pos
, fp
);
364 printed
+= dso__fprintf(pos
->dso
, type
, fp
);
365 printed
+= fprintf(fp
, "--\n");
371 static size_t map_groups__fprintf_removed_maps(struct map_groups
*self
,
372 int verbose
, FILE *fp
)
374 size_t printed
= 0, i
;
375 for (i
= 0; i
< MAP__NR_TYPES
; ++i
)
376 printed
+= __map_groups__fprintf_removed_maps(self
, i
, verbose
, fp
);
380 size_t map_groups__fprintf(struct map_groups
*self
, int verbose
, FILE *fp
)
382 size_t printed
= map_groups__fprintf_maps(self
, verbose
, fp
);
383 printed
+= fprintf(fp
, "Removed maps:\n");
384 return printed
+ map_groups__fprintf_removed_maps(self
, verbose
, fp
);
387 int map_groups__fixup_overlappings(struct map_groups
*self
, struct map
*map
,
388 int verbose
, FILE *fp
)
390 struct rb_root
*root
= &self
->maps
[map
->type
];
391 struct rb_node
*next
= rb_first(root
);
395 struct map
*pos
= rb_entry(next
, struct map
, rb_node
);
396 next
= rb_next(&pos
->rb_node
);
398 if (!map__overlap(pos
, map
))
402 fputs("overlapping maps:\n", fp
);
403 map__fprintf(map
, fp
);
404 map__fprintf(pos
, fp
);
407 rb_erase(&pos
->rb_node
, root
);
409 * Now check if we need to create new maps for areas not
410 * overlapped by the new map:
412 if (map
->start
> pos
->start
) {
413 struct map
*before
= map__clone(pos
);
415 if (before
== NULL
) {
420 before
->end
= map
->start
- 1;
421 map_groups__insert(self
, before
);
423 map__fprintf(before
, fp
);
426 if (map
->end
< pos
->end
) {
427 struct map
*after
= map__clone(pos
);
434 after
->start
= map
->end
+ 1;
435 map_groups__insert(self
, after
);
437 map__fprintf(after
, fp
);
441 * If we have references, just move them to a separate list.
444 list_add_tail(&pos
->node
, &self
->removed_maps
[map
->type
]);
456 * XXX This should not really _copy_ te maps, but refcount them.
458 int map_groups__clone(struct map_groups
*self
,
459 struct map_groups
*parent
, enum map_type type
)
462 for (nd
= rb_first(&parent
->maps
[type
]); nd
; nd
= rb_next(nd
)) {
463 struct map
*map
= rb_entry(nd
, struct map
, rb_node
);
464 struct map
*new = map__clone(map
);
467 map_groups__insert(self
, new);
472 static u64
map__reloc_map_ip(struct map
*map
, u64 ip
)
474 return ip
+ (s64
)map
->pgoff
;
477 static u64
map__reloc_unmap_ip(struct map
*map
, u64 ip
)
479 return ip
- (s64
)map
->pgoff
;
482 void map__reloc_vmlinux(struct map
*self
)
484 struct kmap
*kmap
= map__kmap(self
);
487 if (!kmap
->ref_reloc_sym
|| !kmap
->ref_reloc_sym
->unrelocated_addr
)
490 reloc
= (kmap
->ref_reloc_sym
->unrelocated_addr
-
491 kmap
->ref_reloc_sym
->addr
);
496 self
->map_ip
= map__reloc_map_ip
;
497 self
->unmap_ip
= map__reloc_unmap_ip
;
501 void maps__insert(struct rb_root
*maps
, struct map
*map
)
503 struct rb_node
**p
= &maps
->rb_node
;
504 struct rb_node
*parent
= NULL
;
505 const u64 ip
= map
->start
;
510 m
= rb_entry(parent
, struct map
, rb_node
);
517 rb_link_node(&map
->rb_node
, parent
, p
);
518 rb_insert_color(&map
->rb_node
, maps
);
521 void maps__remove(struct rb_root
*self
, struct map
*map
)
523 rb_erase(&map
->rb_node
, self
);
526 struct map
*maps__find(struct rb_root
*maps
, u64 ip
)
528 struct rb_node
**p
= &maps
->rb_node
;
529 struct rb_node
*parent
= NULL
;
534 m
= rb_entry(parent
, struct map
, rb_node
);
537 else if (ip
> m
->end
)
546 int machine__init(struct machine
*self
, const char *root_dir
, pid_t pid
)
548 map_groups__init(&self
->kmaps
);
549 RB_CLEAR_NODE(&self
->rb_node
);
550 INIT_LIST_HEAD(&self
->user_dsos
);
551 INIT_LIST_HEAD(&self
->kernel_dsos
);
553 self
->kmaps
.machine
= self
;
555 self
->root_dir
= strdup(root_dir
);
556 return self
->root_dir
== NULL
? -ENOMEM
: 0;
559 static void dsos__delete(struct list_head
*self
)
563 list_for_each_entry_safe(pos
, n
, self
, node
) {
564 list_del(&pos
->node
);
569 void machine__exit(struct machine
*self
)
571 map_groups__exit(&self
->kmaps
);
572 dsos__delete(&self
->user_dsos
);
573 dsos__delete(&self
->kernel_dsos
);
574 free(self
->root_dir
);
575 self
->root_dir
= NULL
;
578 void machine__delete(struct machine
*self
)
584 struct machine
*machines__add(struct rb_root
*self
, pid_t pid
,
585 const char *root_dir
)
587 struct rb_node
**p
= &self
->rb_node
;
588 struct rb_node
*parent
= NULL
;
589 struct machine
*pos
, *machine
= malloc(sizeof(*machine
));
594 if (machine__init(machine
, root_dir
, pid
) != 0) {
601 pos
= rb_entry(parent
, struct machine
, rb_node
);
608 rb_link_node(&machine
->rb_node
, parent
, p
);
609 rb_insert_color(&machine
->rb_node
, self
);
614 struct machine
*machines__find(struct rb_root
*self
, pid_t pid
)
616 struct rb_node
**p
= &self
->rb_node
;
617 struct rb_node
*parent
= NULL
;
618 struct machine
*machine
;
619 struct machine
*default_machine
= NULL
;
623 machine
= rb_entry(parent
, struct machine
, rb_node
);
624 if (pid
< machine
->pid
)
626 else if (pid
> machine
->pid
)
631 default_machine
= machine
;
634 return default_machine
;
637 struct machine
*machines__findnew(struct rb_root
*self
, pid_t pid
)
640 const char *root_dir
;
641 struct machine
*machine
= machines__find(self
, pid
);
643 if (!machine
|| machine
->pid
!= pid
) {
644 if (pid
== HOST_KERNEL_ID
|| pid
== DEFAULT_GUEST_KERNEL_ID
)
647 if (!symbol_conf
.guestmount
)
649 sprintf(path
, "%s/%d", symbol_conf
.guestmount
, pid
);
650 if (access(path
, R_OK
)) {
651 pr_err("Can't access file %s\n", path
);
656 machine
= machines__add(self
, pid
, root_dir
);
663 void machines__process(struct rb_root
*self
, machine__process_t process
, void *data
)
667 for (nd
= rb_first(self
); nd
; nd
= rb_next(nd
)) {
668 struct machine
*pos
= rb_entry(nd
, struct machine
, rb_node
);
673 char *machine__mmap_name(struct machine
*self
, char *bf
, size_t size
)
675 if (machine__is_host(self
))
676 snprintf(bf
, size
, "[%s]", "kernel.kallsyms");
677 else if (machine__is_default_guest(self
))
678 snprintf(bf
, size
, "[%s]", "guest.kernel.kallsyms");
680 snprintf(bf
, size
, "[%s.%d]", "guest.kernel.kallsyms", self
->pid
);