symbol.c 47.0 KB
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#include <dirent.h>
#include <errno.h>
#include <stdlib.h>
#include <stdio.h>
#include <string.h>
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#include <linux/kernel.h>
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#include <sys/types.h>
#include <sys/stat.h>
#include <sys/param.h>
#include <fcntl.h>
#include <unistd.h>
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#include <inttypes.h>
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#include "annotate.h"
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#include "build-id.h"
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#include "util.h"
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#include "debug.h"
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#include "machine.h"
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#include "symbol.h"
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#include "strlist.h"
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#include "intlist.h"
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#include "header.h"
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#include "path.h"
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#include "sane_ctype.h"
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#include <elf.h>
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#include <limits.h>
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#include <symbol/kallsyms.h>
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#include <sys/utsname.h>
P
Peter Zijlstra 已提交
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static int dso__load_kernel_sym(struct dso *dso, struct map *map);
static int dso__load_guest_kernel_sym(struct dso *dso, struct map *map);
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static bool symbol__is_idle(const char *name);

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int vmlinux_path__nr_entries;
char **vmlinux_path;
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struct symbol_conf symbol_conf = {
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	.use_modules		= true,
	.try_vmlinux_path	= true,
	.annotate_src		= true,
	.demangle		= true,
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	.demangle_kernel	= false,
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	.cumulate_callchain	= true,
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	.show_hist_headers	= true,
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	.symfs			= "",
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	.event_group		= true,
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};

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static enum dso_binary_type binary_type_symtab[] = {
	DSO_BINARY_TYPE__KALLSYMS,
	DSO_BINARY_TYPE__GUEST_KALLSYMS,
	DSO_BINARY_TYPE__JAVA_JIT,
	DSO_BINARY_TYPE__DEBUGLINK,
	DSO_BINARY_TYPE__BUILD_ID_CACHE,
	DSO_BINARY_TYPE__FEDORA_DEBUGINFO,
	DSO_BINARY_TYPE__UBUNTU_DEBUGINFO,
	DSO_BINARY_TYPE__BUILDID_DEBUGINFO,
	DSO_BINARY_TYPE__SYSTEM_PATH_DSO,
	DSO_BINARY_TYPE__GUEST_KMODULE,
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	DSO_BINARY_TYPE__GUEST_KMODULE_COMP,
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	DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE,
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	DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE_COMP,
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	DSO_BINARY_TYPE__OPENEMBEDDED_DEBUGINFO,
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	DSO_BINARY_TYPE__NOT_FOUND,
};

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#define DSO_BINARY_TYPE__SYMTAB_CNT ARRAY_SIZE(binary_type_symtab)
68

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bool symbol_type__is_a(char symbol_type, enum map_type map_type)
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{
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	symbol_type = toupper(symbol_type);

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	switch (map_type) {
	case MAP__FUNCTION:
		return symbol_type == 'T' || symbol_type == 'W';
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	case MAP__VARIABLE:
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		return symbol_type == 'D';
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	default:
		return false;
	}
}

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static int prefix_underscores_count(const char *str)
{
	const char *tail = str;

	while (*tail == '_')
		tail++;

	return tail - str;
}

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int __weak arch__choose_best_symbol(struct symbol *syma,
				    struct symbol *symb __maybe_unused)
{
	/* Avoid "SyS" kernel syscall aliases */
	if (strlen(syma->name) >= 3 && !strncmp(syma->name, "SyS", 3))
		return SYMBOL_B;
	if (strlen(syma->name) >= 10 && !strncmp(syma->name, "compat_SyS", 10))
		return SYMBOL_B;

	return SYMBOL_A;
}
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static int choose_best_symbol(struct symbol *syma, struct symbol *symb)
{
	s64 a;
	s64 b;
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	size_t na, nb;
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	/* Prefer a symbol with non zero length */
	a = syma->end - syma->start;
	b = symb->end - symb->start;
	if ((b == 0) && (a > 0))
		return SYMBOL_A;
	else if ((a == 0) && (b > 0))
		return SYMBOL_B;

	/* Prefer a non weak symbol over a weak one */
	a = syma->binding == STB_WEAK;
	b = symb->binding == STB_WEAK;
	if (b && !a)
		return SYMBOL_A;
	if (a && !b)
		return SYMBOL_B;

	/* Prefer a global symbol over a non global one */
	a = syma->binding == STB_GLOBAL;
	b = symb->binding == STB_GLOBAL;
	if (a && !b)
		return SYMBOL_A;
	if (b && !a)
		return SYMBOL_B;

	/* Prefer a symbol with less underscores */
	a = prefix_underscores_count(syma->name);
	b = prefix_underscores_count(symb->name);
	if (b > a)
		return SYMBOL_A;
	else if (a > b)
		return SYMBOL_B;

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	/* Choose the symbol with the longest name */
	na = strlen(syma->name);
	nb = strlen(symb->name);
	if (na > nb)
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		return SYMBOL_A;
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	else if (na < nb)
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		return SYMBOL_B;
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	return arch__choose_best_symbol(syma, symb);
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}

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void symbols__fixup_duplicate(struct rb_root *symbols)
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{
	struct rb_node *nd;
	struct symbol *curr, *next;

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	if (symbol_conf.allow_aliases)
		return;

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	nd = rb_first(symbols);

	while (nd) {
		curr = rb_entry(nd, struct symbol, rb_node);
again:
		nd = rb_next(&curr->rb_node);
		next = rb_entry(nd, struct symbol, rb_node);

		if (!nd)
			break;

		if (curr->start != next->start)
			continue;

		if (choose_best_symbol(curr, next) == SYMBOL_A) {
			rb_erase(&next->rb_node, symbols);
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			symbol__delete(next);
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			goto again;
		} else {
			nd = rb_next(&curr->rb_node);
			rb_erase(&curr->rb_node, symbols);
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			symbol__delete(curr);
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		}
	}
}

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void symbols__fixup_end(struct rb_root *symbols)
189
{
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	struct rb_node *nd, *prevnd = rb_first(symbols);
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	struct symbol *curr, *prev;
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	if (prevnd == NULL)
		return;

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	curr = rb_entry(prevnd, struct symbol, rb_node);

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	for (nd = rb_next(prevnd); nd; nd = rb_next(nd)) {
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		prev = curr;
		curr = rb_entry(nd, struct symbol, rb_node);
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		if (prev->end == prev->start && prev->end != curr->start)
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			prev->end = curr->start;
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	}
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	/* Last entry */
	if (curr->end == curr->start)
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		curr->end = roundup(curr->start, 4096) + 4096;
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}

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void __map_groups__fixup_end(struct map_groups *mg, enum map_type type)
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{
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	struct maps *maps = &mg->maps[type];
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	struct map *next, *curr;
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	pthread_rwlock_wrlock(&maps->lock);

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	curr = maps__first(maps);
	if (curr == NULL)
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		goto out_unlock;
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	for (next = map__next(curr); next; next = map__next(curr)) {
		curr->end = next->start;
		curr = next;
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	}
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	/*
	 * We still haven't the actual symbols, so guess the
	 * last map final address.
	 */
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	curr->end = ~0ULL;
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out_unlock:
	pthread_rwlock_unlock(&maps->lock);
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}

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struct symbol *symbol__new(u64 start, u64 len, u8 binding, const char *name)
238
{
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	size_t namelen = strlen(name) + 1;
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	struct symbol *sym = calloc(1, (symbol_conf.priv_size +
					sizeof(*sym) + namelen));
	if (sym == NULL)
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		return NULL;

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	if (symbol_conf.priv_size) {
		if (symbol_conf.init_annotation) {
			struct annotation *notes = (void *)sym;
			pthread_mutex_init(&notes->lock, NULL);
		}
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		sym = ((void *)sym) + symbol_conf.priv_size;
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	}
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	sym->start   = start;
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	sym->end     = len ? start + len : start;
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	sym->binding = binding;
	sym->namelen = namelen - 1;
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	pr_debug4("%s: %s %#" PRIx64 "-%#" PRIx64 "\n",
		  __func__, name, start, sym->end);
	memcpy(sym->name, name, namelen);
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	return sym;
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}

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void symbol__delete(struct symbol *sym)
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{
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	free(((void *)sym) - symbol_conf.priv_size);
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}

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void symbols__delete(struct rb_root *symbols)
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{
	struct symbol *pos;
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	struct rb_node *next = rb_first(symbols);
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	while (next) {
		pos = rb_entry(next, struct symbol, rb_node);
		next = rb_next(&pos->rb_node);
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		rb_erase(&pos->rb_node, symbols);
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		symbol__delete(pos);
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	}
}

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void __symbols__insert(struct rb_root *symbols, struct symbol *sym, bool kernel)
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{
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	struct rb_node **p = &symbols->rb_node;
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	struct rb_node *parent = NULL;
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	const u64 ip = sym->start;
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	struct symbol *s;

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	if (kernel) {
		const char *name = sym->name;
		/*
		 * ppc64 uses function descriptors and appends a '.' to the
		 * start of every instruction address. Remove it.
		 */
		if (name[0] == '.')
			name++;
		sym->idle = symbol__is_idle(name);
	}

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	while (*p != NULL) {
		parent = *p;
		s = rb_entry(parent, struct symbol, rb_node);
		if (ip < s->start)
			p = &(*p)->rb_left;
		else
			p = &(*p)->rb_right;
	}
	rb_link_node(&sym->rb_node, parent, p);
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	rb_insert_color(&sym->rb_node, symbols);
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}

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void symbols__insert(struct rb_root *symbols, struct symbol *sym)
{
	__symbols__insert(symbols, sym, false);
}

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static struct symbol *symbols__find(struct rb_root *symbols, u64 ip)
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{
	struct rb_node *n;

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	if (symbols == NULL)
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		return NULL;

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	n = symbols->rb_node;
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	while (n) {
		struct symbol *s = rb_entry(n, struct symbol, rb_node);

		if (ip < s->start)
			n = n->rb_left;
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		else if (ip > s->end || (ip == s->end && ip != s->start))
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			n = n->rb_right;
		else
			return s;
	}

	return NULL;
}

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static struct symbol *symbols__first(struct rb_root *symbols)
{
	struct rb_node *n = rb_first(symbols);

	if (n)
		return rb_entry(n, struct symbol, rb_node);

	return NULL;
}

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static struct symbol *symbols__last(struct rb_root *symbols)
{
	struct rb_node *n = rb_last(symbols);

	if (n)
		return rb_entry(n, struct symbol, rb_node);

	return NULL;
}

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static struct symbol *symbols__next(struct symbol *sym)
{
	struct rb_node *n = rb_next(&sym->rb_node);

	if (n)
		return rb_entry(n, struct symbol, rb_node);

	return NULL;
}

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static void symbols__insert_by_name(struct rb_root *symbols, struct symbol *sym)
372
{
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	struct rb_node **p = &symbols->rb_node;
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	struct rb_node *parent = NULL;
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	struct symbol_name_rb_node *symn, *s;

	symn = container_of(sym, struct symbol_name_rb_node, sym);
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	while (*p != NULL) {
		parent = *p;
		s = rb_entry(parent, struct symbol_name_rb_node, rb_node);
		if (strcmp(sym->name, s->sym.name) < 0)
			p = &(*p)->rb_left;
		else
			p = &(*p)->rb_right;
	}
	rb_link_node(&symn->rb_node, parent, p);
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	rb_insert_color(&symn->rb_node, symbols);
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}

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static void symbols__sort_by_name(struct rb_root *symbols,
				  struct rb_root *source)
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{
	struct rb_node *nd;

	for (nd = rb_first(source); nd; nd = rb_next(nd)) {
		struct symbol *pos = rb_entry(nd, struct symbol, rb_node);
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		symbols__insert_by_name(symbols, pos);
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	}
}

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static struct symbol *symbols__find_by_name(struct rb_root *symbols,
					    const char *name)
404 405
{
	struct rb_node *n;
406
	struct symbol_name_rb_node *s = NULL;
407

408
	if (symbols == NULL)
409 410
		return NULL;

411
	n = symbols->rb_node;
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	while (n) {
		int cmp;

		s = rb_entry(n, struct symbol_name_rb_node, rb_node);
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		cmp = arch__compare_symbol_names(name, s->sym.name);
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		if (cmp < 0)
			n = n->rb_left;
		else if (cmp > 0)
			n = n->rb_right;
		else
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			break;
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	}

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	if (n == NULL)
		return NULL;

	/* return first symbol that has same name (if any) */
	for (n = rb_prev(n); n; n = rb_prev(n)) {
		struct symbol_name_rb_node *tmp;

		tmp = rb_entry(n, struct symbol_name_rb_node, rb_node);
435
		if (arch__compare_symbol_names(tmp->sym.name, s->sym.name))
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			break;

		s = tmp;
	}

	return &s->sym;
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}

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void dso__reset_find_symbol_cache(struct dso *dso)
{
	enum map_type type;

	for (type = MAP__FUNCTION; type <= MAP__VARIABLE; ++type) {
		dso->last_find_result[type].addr   = 0;
		dso->last_find_result[type].symbol = NULL;
	}
}

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void dso__insert_symbol(struct dso *dso, enum map_type type, struct symbol *sym)
{
456
	__symbols__insert(&dso->symbols[type], sym, dso->kernel);
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	/* update the symbol cache if necessary */
	if (dso->last_find_result[type].addr >= sym->start &&
	    (dso->last_find_result[type].addr < sym->end ||
	    sym->start == sym->end)) {
		dso->last_find_result[type].symbol = sym;
	}
}

466
struct symbol *dso__find_symbol(struct dso *dso,
467
				enum map_type type, u64 addr)
468
{
469
	if (dso->last_find_result[type].addr != addr || dso->last_find_result[type].symbol == NULL) {
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		dso->last_find_result[type].addr   = addr;
		dso->last_find_result[type].symbol = symbols__find(&dso->symbols[type], addr);
	}

	return dso->last_find_result[type].symbol;
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}

477
struct symbol *dso__first_symbol(struct dso *dso, enum map_type type)
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{
	return symbols__first(&dso->symbols[type]);
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}

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struct symbol *dso__last_symbol(struct dso *dso, enum map_type type)
{
	return symbols__last(&dso->symbols[type]);
}

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struct symbol *dso__next_symbol(struct symbol *sym)
{
	return symbols__next(sym);
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}

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struct symbol *symbol__next_by_name(struct symbol *sym)
{
	struct symbol_name_rb_node *s = container_of(sym, struct symbol_name_rb_node, sym);
	struct rb_node *n = rb_next(&s->rb_node);

	return n ? &rb_entry(n, struct symbol_name_rb_node, rb_node)->sym : NULL;
}

 /*
  * Teturns first symbol that matched with @name.
  */
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struct symbol *dso__find_symbol_by_name(struct dso *dso, enum map_type type,
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					const char *name)
{
506
	return symbols__find_by_name(&dso->symbol_names[type], name);
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}

509
void dso__sort_by_name(struct dso *dso, enum map_type type)
510
{
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	dso__set_sorted_by_name(dso, type);
	return symbols__sort_by_name(&dso->symbol_names[type],
				     &dso->symbols[type]);
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}

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int modules__parse(const char *filename, void *arg,
		   int (*process_module)(void *arg, const char *name,
					 u64 start))
{
	char *line = NULL;
	size_t n;
	FILE *file;
	int err = 0;

	file = fopen(filename, "r");
	if (file == NULL)
		return -1;

	while (1) {
		char name[PATH_MAX];
		u64 start;
		char *sep;
		ssize_t line_len;

		line_len = getline(&line, &n, file);
		if (line_len < 0) {
			if (feof(file))
				break;
			err = -1;
			goto out;
		}

		if (!line) {
			err = -1;
			goto out;
		}

		line[--line_len] = '\0'; /* \n */

		sep = strrchr(line, 'x');
		if (sep == NULL)
			continue;

		hex2u64(sep + 1, &start);

		sep = strchr(line, ' ');
		if (sep == NULL)
			continue;

		*sep = '\0';

		scnprintf(name, sizeof(name), "[%s]", line);

		err = process_module(arg, name, start);
		if (err)
			break;
	}
out:
	free(line);
	fclose(file);
	return err;
}

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struct process_kallsyms_args {
	struct map *map;
	struct dso *dso;
};

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/*
 * These are symbols in the kernel image, so make sure that
 * sym is from a kernel DSO.
 */
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static bool symbol__is_idle(const char *name)
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{
	const char * const idle_symbols[] = {
		"cpu_idle",
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		"cpu_startup_entry",
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		"intel_idle",
		"default_idle",
		"native_safe_halt",
		"enter_idle",
		"exit_idle",
		"mwait_idle",
		"mwait_idle_with_hints",
		"poll_idle",
		"ppc64_runlatch_off",
		"pseries_dedicated_idle_sleep",
		NULL
	};
	int i;

	for (i = 0; idle_symbols[i]; i++) {
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		if (!strcmp(idle_symbols[i], name))
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			return true;
	}

	return false;
}

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static int map__process_kallsym_symbol(void *arg, const char *name,
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				       char type, u64 start)
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{
	struct symbol *sym;
	struct process_kallsyms_args *a = arg;
	struct rb_root *root = &a->dso->symbols[a->map->type];

	if (!symbol_type__is_a(type, a->map->type))
		return 0;

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	/*
	 * module symbols are not sorted so we add all
	 * symbols, setting length to 0, and rely on
	 * symbols__fixup_end() to fix it up.
	 */
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	sym = symbol__new(start, 0, kallsyms2elf_binding(type), name);
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	if (sym == NULL)
		return -ENOMEM;
	/*
	 * We will pass the symbols to the filter later, in
	 * map__split_kallsyms, when we have split the maps per module
	 */
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	__symbols__insert(root, sym, !strchr(name, '['));
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	return 0;
}

/*
 * Loads the function entries in /proc/kallsyms into kernel_map->dso,
 * so that we can in the next step set the symbol ->end address and then
 * call kernel_maps__split_kallsyms.
 */
642
static int dso__load_all_kallsyms(struct dso *dso, const char *filename,
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				  struct map *map)
644
{
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	struct process_kallsyms_args args = { .map = map, .dso = dso, };
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	return kallsyms__parse(filename, &args, map__process_kallsym_symbol);
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}

649
static int dso__split_kallsyms_for_kcore(struct dso *dso, struct map *map)
650
{
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	struct map_groups *kmaps = map__kmaps(map);
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	struct map *curr_map;
	struct symbol *pos;
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	int count = 0;
	struct rb_root old_root = dso->symbols[map->type];
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	struct rb_root *root = &dso->symbols[map->type];
	struct rb_node *next = rb_first(root);

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	if (!kmaps)
		return -1;

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	*root = RB_ROOT;

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	while (next) {
		char *module;

		pos = rb_entry(next, struct symbol, rb_node);
		next = rb_next(&pos->rb_node);

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		rb_erase_init(&pos->rb_node, &old_root);

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		module = strchr(pos->name, '\t');
		if (module)
			*module = '\0';

		curr_map = map_groups__find(kmaps, map->type, pos->start);

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		if (!curr_map) {
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			symbol__delete(pos);
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			continue;
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		}
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		pos->start -= curr_map->start - curr_map->pgoff;
		if (pos->end)
			pos->end -= curr_map->start - curr_map->pgoff;
		symbols__insert(&curr_map->dso->symbols[curr_map->type], pos);
		++count;
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	}

	/* Symbols have been adjusted */
	dso->adjust_symbols = 1;

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	return count;
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}

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/*
 * Split the symbols into maps, making sure there are no overlaps, i.e. the
 * kernel range is broken in several maps, named [kernel].N, as we don't have
 * the original ELF section names vmlinux have.
 */
701
static int dso__split_kallsyms(struct dso *dso, struct map *map, u64 delta)
702
{
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	struct map_groups *kmaps = map__kmaps(map);
	struct machine *machine;
705
	struct map *curr_map = map;
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	struct symbol *pos;
707
	int count = 0, moved = 0;
708
	struct rb_root *root = &dso->symbols[map->type];
709
	struct rb_node *next = rb_first(root);
710 711
	int kernel_range = 0;

712 713 714 715 716
	if (!kmaps)
		return -1;

	machine = kmaps->machine;

717 718 719 720 721 722 723 724
	while (next) {
		char *module;

		pos = rb_entry(next, struct symbol, rb_node);
		next = rb_next(&pos->rb_node);

		module = strchr(pos->name, '\t');
		if (module) {
725
			if (!symbol_conf.use_modules)
726 727
				goto discard_symbol;

728 729
			*module++ = '\0';

730
			if (strcmp(curr_map->dso->short_name, module)) {
731
				if (curr_map != map &&
732
				    dso->kernel == DSO_TYPE_GUEST_KERNEL &&
733
				    machine__is_default_guest(machine)) {
734 735 736 737 738 739 740 741 742 743 744 745 746
					/*
					 * We assume all symbols of a module are
					 * continuous in * kallsyms, so curr_map
					 * points to a module and all its
					 * symbols are in its kmap. Mark it as
					 * loaded.
					 */
					dso__set_loaded(curr_map->dso,
							curr_map->type);
				}

				curr_map = map_groups__find_by_name(kmaps,
							map->type, module);
747
				if (curr_map == NULL) {
748
					pr_debug("%s/proc/{kallsyms,modules} "
749
					         "inconsistency while looking "
750
						 "for \"%s\" module!\n",
751
						 machine->root_dir, module);
752 753
					curr_map = map;
					goto discard_symbol;
754
				}
755

756
				if (curr_map->dso->loaded &&
757
				    !machine__is_default_guest(machine))
758
					goto discard_symbol;
759
			}
760 761 762 763
			/*
			 * So that we look just like we get from .ko files,
			 * i.e. not prelinked, relative to map->start.
			 */
764 765 766
			pos->start = curr_map->map_ip(curr_map, pos->start);
			pos->end   = curr_map->map_ip(curr_map, pos->end);
		} else if (curr_map != map) {
767
			char dso_name[PATH_MAX];
768
			struct dso *ndso;
769

770 771 772 773 774 775
			if (delta) {
				/* Kernel was relocated at boot time */
				pos->start -= delta;
				pos->end -= delta;
			}

776 777
			if (count == 0) {
				curr_map = map;
778
				goto add_symbol;
779 780
			}

781
			if (dso->kernel == DSO_TYPE_GUEST_KERNEL)
782 783 784 785 786 787 788
				snprintf(dso_name, sizeof(dso_name),
					"[guest.kernel].%d",
					kernel_range++);
			else
				snprintf(dso_name, sizeof(dso_name),
					"[kernel].%d",
					kernel_range++);
789

790 791
			ndso = dso__new(dso_name);
			if (ndso == NULL)
792 793
				return -1;

794
			ndso->kernel = dso->kernel;
795

796
			curr_map = map__new2(pos->start, ndso, map->type);
797
			if (curr_map == NULL) {
798
				dso__put(ndso);
799 800
				return -1;
			}
801

802
			curr_map->map_ip = curr_map->unmap_ip = identity__map_ip;
803
			map_groups__insert(kmaps, curr_map);
804
			++kernel_range;
805 806 807 808
		} else if (delta) {
			/* Kernel was relocated at boot time */
			pos->start -= delta;
			pos->end -= delta;
809
		}
810 811 812 813 814 815 816 817 818 819 820 821
add_symbol:
		if (curr_map != map) {
			rb_erase(&pos->rb_node, root);
			symbols__insert(&curr_map->dso->symbols[curr_map->type], pos);
			++moved;
		} else
			++count;

		continue;
discard_symbol:
		rb_erase(&pos->rb_node, root);
		symbol__delete(pos);
822 823
	}

824
	if (curr_map != map &&
825
	    dso->kernel == DSO_TYPE_GUEST_KERNEL &&
826
	    machine__is_default_guest(kmaps->machine)) {
827 828 829
		dso__set_loaded(curr_map->dso, curr_map->type);
	}

830
	return count + moved;
831
}
832

833 834
bool symbol__restricted_filename(const char *filename,
				 const char *restricted_filename)
835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850
{
	bool restricted = false;

	if (symbol_conf.kptr_restrict) {
		char *r = realpath(filename, NULL);

		if (r != NULL) {
			restricted = strcmp(r, restricted_filename) == 0;
			free(r);
			return restricted;
		}
	}

	return restricted;
}

851 852 853 854
struct module_info {
	struct rb_node rb_node;
	char *name;
	u64 start;
855 856
};

857
static void add_module(struct module_info *mi, struct rb_root *modules)
858
{
859 860 861
	struct rb_node **p = &modules->rb_node;
	struct rb_node *parent = NULL;
	struct module_info *m;
862

863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883
	while (*p != NULL) {
		parent = *p;
		m = rb_entry(parent, struct module_info, rb_node);
		if (strcmp(mi->name, m->name) < 0)
			p = &(*p)->rb_left;
		else
			p = &(*p)->rb_right;
	}
	rb_link_node(&mi->rb_node, parent, p);
	rb_insert_color(&mi->rb_node, modules);
}

static void delete_modules(struct rb_root *modules)
{
	struct module_info *mi;
	struct rb_node *next = rb_first(modules);

	while (next) {
		mi = rb_entry(next, struct module_info, rb_node);
		next = rb_next(&mi->rb_node);
		rb_erase(&mi->rb_node, modules);
884
		zfree(&mi->name);
885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917
		free(mi);
	}
}

static struct module_info *find_module(const char *name,
				       struct rb_root *modules)
{
	struct rb_node *n = modules->rb_node;

	while (n) {
		struct module_info *m;
		int cmp;

		m = rb_entry(n, struct module_info, rb_node);
		cmp = strcmp(name, m->name);
		if (cmp < 0)
			n = n->rb_left;
		else if (cmp > 0)
			n = n->rb_right;
		else
			return m;
	}

	return NULL;
}

static int __read_proc_modules(void *arg, const char *name, u64 start)
{
	struct rb_root *modules = arg;
	struct module_info *mi;

	mi = zalloc(sizeof(struct module_info));
	if (!mi)
918 919
		return -ENOMEM;

920 921
	mi->name = strdup(name);
	mi->start = start;
922

923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941
	if (!mi->name) {
		free(mi);
		return -ENOMEM;
	}

	add_module(mi, modules);

	return 0;
}

static int read_proc_modules(const char *filename, struct rb_root *modules)
{
	if (symbol__restricted_filename(filename, "/proc/modules"))
		return -1;

	if (modules__parse(filename, modules, __read_proc_modules)) {
		delete_modules(modules);
		return -1;
	}
942 943 944 945

	return 0;
}

946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986
int compare_proc_modules(const char *from, const char *to)
{
	struct rb_root from_modules = RB_ROOT;
	struct rb_root to_modules = RB_ROOT;
	struct rb_node *from_node, *to_node;
	struct module_info *from_m, *to_m;
	int ret = -1;

	if (read_proc_modules(from, &from_modules))
		return -1;

	if (read_proc_modules(to, &to_modules))
		goto out_delete_from;

	from_node = rb_first(&from_modules);
	to_node = rb_first(&to_modules);
	while (from_node) {
		if (!to_node)
			break;

		from_m = rb_entry(from_node, struct module_info, rb_node);
		to_m = rb_entry(to_node, struct module_info, rb_node);

		if (from_m->start != to_m->start ||
		    strcmp(from_m->name, to_m->name))
			break;

		from_node = rb_next(from_node);
		to_node = rb_next(to_node);
	}

	if (!from_node && !to_node)
		ret = 0;

	delete_modules(&to_modules);
out_delete_from:
	delete_modules(&from_modules);

	return ret;
}

987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
static int do_validate_kcore_modules(const char *filename, struct map *map,
				  struct map_groups *kmaps)
{
	struct rb_root modules = RB_ROOT;
	struct map *old_map;
	int err;

	err = read_proc_modules(filename, &modules);
	if (err)
		return err;

	old_map = map_groups__first(kmaps, map->type);
	while (old_map) {
		struct map *next = map_groups__next(old_map);
		struct module_info *mi;

		if (old_map == map || old_map->start == map->start) {
			/* The kernel map */
			old_map = next;
			continue;
		}

		/* Module must be in memory at the same address */
		mi = find_module(old_map->dso->short_name, &modules);
		if (!mi || mi->start != old_map->start) {
			err = -EINVAL;
			goto out;
		}

		old_map = next;
	}
out:
	delete_modules(&modules);
	return err;
}

1023
/*
1024
 * If kallsyms is referenced by name then we look for filename in the same
1025 1026
 * directory.
 */
1027 1028 1029
static bool filename_from_kallsyms_filename(char *filename,
					    const char *base_name,
					    const char *kallsyms_filename)
1030 1031 1032
{
	char *name;

1033 1034
	strcpy(filename, kallsyms_filename);
	name = strrchr(filename, '/');
1035 1036 1037
	if (!name)
		return false;

1038 1039 1040 1041
	name += 1;

	if (!strcmp(name, "kallsyms")) {
		strcpy(name, base_name);
1042 1043 1044 1045 1046 1047
		return true;
	}

	return false;
}

1048 1049 1050
static int validate_kcore_modules(const char *kallsyms_filename,
				  struct map *map)
{
1051
	struct map_groups *kmaps = map__kmaps(map);
1052 1053
	char modules_filename[PATH_MAX];

1054 1055 1056
	if (!kmaps)
		return -EINVAL;

1057 1058 1059 1060 1061 1062 1063 1064 1065 1066
	if (!filename_from_kallsyms_filename(modules_filename, "modules",
					     kallsyms_filename))
		return -EINVAL;

	if (do_validate_kcore_modules(modules_filename, map, kmaps))
		return -EINVAL;

	return 0;
}

1067 1068 1069 1070 1071
static int validate_kcore_addresses(const char *kallsyms_filename,
				    struct map *map)
{
	struct kmap *kmap = map__kmap(map);

1072 1073 1074
	if (!kmap)
		return -EINVAL;

1075 1076 1077
	if (kmap->ref_reloc_sym && kmap->ref_reloc_sym->name) {
		u64 start;

1078 1079 1080
		if (kallsyms__get_function_start(kallsyms_filename,
						 kmap->ref_reloc_sym->name, &start))
			return -ENOENT;
1081 1082 1083 1084 1085 1086 1087
		if (start != kmap->ref_reloc_sym->addr)
			return -EINVAL;
	}

	return validate_kcore_modules(kallsyms_filename, map);
}

1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110
struct kcore_mapfn_data {
	struct dso *dso;
	enum map_type type;
	struct list_head maps;
};

static int kcore_mapfn(u64 start, u64 len, u64 pgoff, void *data)
{
	struct kcore_mapfn_data *md = data;
	struct map *map;

	map = map__new2(start, md->dso, md->type);
	if (map == NULL)
		return -ENOMEM;

	map->end = map->start + len;
	map->pgoff = pgoff;

	list_add(&map->node, &md->maps);

	return 0;
}

1111 1112 1113
static int dso__load_kcore(struct dso *dso, struct map *map,
			   const char *kallsyms_filename)
{
1114 1115
	struct map_groups *kmaps = map__kmaps(map);
	struct machine *machine;
1116 1117 1118 1119 1120 1121 1122
	struct kcore_mapfn_data md;
	struct map *old_map, *new_map, *replacement_map = NULL;
	bool is_64_bit;
	int err, fd;
	char kcore_filename[PATH_MAX];
	struct symbol *sym;

1123 1124 1125 1126 1127
	if (!kmaps)
		return -EINVAL;

	machine = kmaps->machine;

1128 1129 1130 1131
	/* This function requires that the map is the kernel map */
	if (map != machine->vmlinux_maps[map->type])
		return -EINVAL;

1132 1133 1134 1135
	if (!filename_from_kallsyms_filename(kcore_filename, "kcore",
					     kallsyms_filename))
		return -EINVAL;

1136 1137
	/* Modules and kernel must be present at their original addresses */
	if (validate_kcore_addresses(kallsyms_filename, map))
1138 1139 1140 1141 1142 1143 1144
		return -EINVAL;

	md.dso = dso;
	md.type = map->type;
	INIT_LIST_HEAD(&md.maps);

	fd = open(kcore_filename, O_RDONLY);
1145
	if (fd < 0) {
1146 1147
		pr_debug("Failed to open %s. Note /proc/kcore requires CAP_SYS_RAWIO capability to access.\n",
			 kcore_filename);
1148
		return -EINVAL;
1149
	}
1150 1151 1152 1153 1154 1155

	/* Read new maps into temporary lists */
	err = file__read_maps(fd, md.type == MAP__FUNCTION, kcore_mapfn, &md,
			      &is_64_bit);
	if (err)
		goto out_err;
1156
	dso->is_64_bit = is_64_bit;
1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188

	if (list_empty(&md.maps)) {
		err = -EINVAL;
		goto out_err;
	}

	/* Remove old maps */
	old_map = map_groups__first(kmaps, map->type);
	while (old_map) {
		struct map *next = map_groups__next(old_map);

		if (old_map != map)
			map_groups__remove(kmaps, old_map);
		old_map = next;
	}

	/* Find the kernel map using the first symbol */
	sym = dso__first_symbol(dso, map->type);
	list_for_each_entry(new_map, &md.maps, node) {
		if (sym && sym->start >= new_map->start &&
		    sym->start < new_map->end) {
			replacement_map = new_map;
			break;
		}
	}

	if (!replacement_map)
		replacement_map = list_entry(md.maps.next, struct map, node);

	/* Add new maps */
	while (!list_empty(&md.maps)) {
		new_map = list_entry(md.maps.next, struct map, node);
1189
		list_del_init(&new_map->node);
1190 1191 1192 1193 1194 1195 1196
		if (new_map == replacement_map) {
			map->start	= new_map->start;
			map->end	= new_map->end;
			map->pgoff	= new_map->pgoff;
			map->map_ip	= new_map->map_ip;
			map->unmap_ip	= new_map->unmap_ip;
			/* Ensure maps are correctly ordered */
1197
			map__get(map);
1198 1199
			map_groups__remove(kmaps, map);
			map_groups__insert(kmaps, map);
1200
			map__put(map);
1201 1202 1203
		} else {
			map_groups__insert(kmaps, new_map);
		}
1204 1205

		map__put(new_map);
1206 1207 1208 1209 1210 1211 1212
	}

	/*
	 * Set the data type and long name so that kcore can be read via
	 * dso__data_read_addr().
	 */
	if (dso->kernel == DSO_TYPE_GUEST_KERNEL)
1213
		dso->binary_type = DSO_BINARY_TYPE__GUEST_KCORE;
1214
	else
1215
		dso->binary_type = DSO_BINARY_TYPE__KCORE;
1216
	dso__set_long_name(dso, strdup(kcore_filename), true);
1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229

	close(fd);

	if (map->type == MAP__FUNCTION)
		pr_debug("Using %s for kernel object code\n", kcore_filename);
	else
		pr_debug("Using %s for kernel data\n", kcore_filename);

	return 0;

out_err:
	while (!list_empty(&md.maps)) {
		map = list_entry(md.maps.next, struct map, node);
1230
		list_del_init(&map->node);
1231
		map__put(map);
1232 1233 1234 1235 1236
	}
	close(fd);
	return -EINVAL;
}

1237 1238 1239 1240 1241 1242 1243 1244 1245
/*
 * If the kernel is relocated at boot time, kallsyms won't match.  Compute the
 * delta based on the relocation reference symbol.
 */
static int kallsyms__delta(struct map *map, const char *filename, u64 *delta)
{
	struct kmap *kmap = map__kmap(map);
	u64 addr;

1246 1247 1248
	if (!kmap)
		return -1;

1249 1250 1251
	if (!kmap->ref_reloc_sym || !kmap->ref_reloc_sym->name)
		return 0;

1252
	if (kallsyms__get_function_start(filename, kmap->ref_reloc_sym->name, &addr))
1253 1254 1255 1256 1257 1258
		return -1;

	*delta = addr - kmap->ref_reloc_sym->addr;
	return 0;
}

1259
int __dso__load_kallsyms(struct dso *dso, const char *filename,
1260
			 struct map *map, bool no_kcore)
1261
{
1262 1263
	u64 delta = 0;

1264 1265 1266
	if (symbol__restricted_filename(filename, "/proc/kallsyms"))
		return -1;

1267
	if (dso__load_all_kallsyms(dso, filename, map) < 0)
1268 1269
		return -1;

1270 1271 1272
	if (kallsyms__delta(map, filename, &delta))
		return -1;

1273
	symbols__fixup_end(&dso->symbols[map->type]);
1274
	symbols__fixup_duplicate(&dso->symbols[map->type]);
1275

1276
	if (dso->kernel == DSO_TYPE_GUEST_KERNEL)
1277
		dso->symtab_type = DSO_BINARY_TYPE__GUEST_KALLSYMS;
1278
	else
1279
		dso->symtab_type = DSO_BINARY_TYPE__KALLSYMS;
1280

1281
	if (!no_kcore && !dso__load_kcore(dso, map, filename))
1282
		return dso__split_kallsyms_for_kcore(dso, map);
1283
	else
1284
		return dso__split_kallsyms(dso, map, delta);
1285 1286
}

1287
int dso__load_kallsyms(struct dso *dso, const char *filename,
1288
		       struct map *map)
1289
{
1290
	return __dso__load_kallsyms(dso, filename, map, false);
1291 1292
}

1293
static int dso__load_perf_map(struct dso *dso, struct map *map)
1294 1295 1296 1297 1298 1299
{
	char *line = NULL;
	size_t n;
	FILE *file;
	int nr_syms = 0;

1300
	file = fopen(dso->long_name, "r");
1301 1302 1303 1304
	if (file == NULL)
		goto out_failure;

	while (!feof(file)) {
1305
		u64 start, size;
1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329
		struct symbol *sym;
		int line_len, len;

		line_len = getline(&line, &n, file);
		if (line_len < 0)
			break;

		if (!line)
			goto out_failure;

		line[--line_len] = '\0'; /* \n */

		len = hex2u64(line, &start);

		len++;
		if (len + 2 >= line_len)
			continue;

		len += hex2u64(line + len, &size);

		len++;
		if (len + 2 >= line_len)
			continue;

1330
		sym = symbol__new(start, size, STB_GLOBAL, line + len);
1331 1332 1333 1334

		if (sym == NULL)
			goto out_delete_line;

1335 1336
		symbols__insert(&dso->symbols[map->type], sym);
		nr_syms++;
1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349
	}

	free(line);
	fclose(file);

	return nr_syms;

out_delete_line:
	free(line);
out_failure:
	return -1;
}

1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373
static bool dso__is_compatible_symtab_type(struct dso *dso, bool kmod,
					   enum dso_binary_type type)
{
	switch (type) {
	case DSO_BINARY_TYPE__JAVA_JIT:
	case DSO_BINARY_TYPE__DEBUGLINK:
	case DSO_BINARY_TYPE__SYSTEM_PATH_DSO:
	case DSO_BINARY_TYPE__FEDORA_DEBUGINFO:
	case DSO_BINARY_TYPE__UBUNTU_DEBUGINFO:
	case DSO_BINARY_TYPE__BUILDID_DEBUGINFO:
	case DSO_BINARY_TYPE__OPENEMBEDDED_DEBUGINFO:
		return !kmod && dso->kernel == DSO_TYPE_USER;

	case DSO_BINARY_TYPE__KALLSYMS:
	case DSO_BINARY_TYPE__VMLINUX:
	case DSO_BINARY_TYPE__KCORE:
		return dso->kernel == DSO_TYPE_KERNEL;

	case DSO_BINARY_TYPE__GUEST_KALLSYMS:
	case DSO_BINARY_TYPE__GUEST_VMLINUX:
	case DSO_BINARY_TYPE__GUEST_KCORE:
		return dso->kernel == DSO_TYPE_GUEST_KERNEL;

	case DSO_BINARY_TYPE__GUEST_KMODULE:
1374
	case DSO_BINARY_TYPE__GUEST_KMODULE_COMP:
1375
	case DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE:
1376
	case DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE_COMP:
1377 1378
		/*
		 * kernel modules know their symtab type - it's set when
1379
		 * creating a module dso in machine__findnew_module_map().
1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391
		 */
		return kmod && dso->symtab_type == type;

	case DSO_BINARY_TYPE__BUILD_ID_CACHE:
		return true;

	case DSO_BINARY_TYPE__NOT_FOUND:
	default:
		return false;
	}
}

1392
int dso__load(struct dso *dso, struct map *map)
1393
{
1394
	char *name;
1395
	int ret = -1;
1396
	u_int i;
1397
	struct machine *machine;
1398
	char *root_dir = (char *) "";
1399 1400 1401
	int ss_pos = 0;
	struct symsrc ss_[2];
	struct symsrc *syms_ss = NULL, *runtime_ss = NULL;
1402
	bool kmod;
1403
	unsigned char build_id[BUILD_ID_SIZE];
1404

1405 1406 1407 1408 1409 1410 1411
	pthread_mutex_lock(&dso->lock);

	/* check again under the dso->lock */
	if (dso__loaded(dso, map->type)) {
		ret = 1;
		goto out;
	}
1412

1413 1414
	if (dso->kernel) {
		if (dso->kernel == DSO_TYPE_KERNEL)
1415
			ret = dso__load_kernel_sym(dso, map);
1416
		else if (dso->kernel == DSO_TYPE_GUEST_KERNEL)
1417
			ret = dso__load_guest_kernel_sym(dso, map);
1418 1419 1420

		goto out;
	}
1421

1422 1423
	if (map->groups && map->groups->machine)
		machine = map->groups->machine;
1424
	else
1425
		machine = NULL;
1426

1427
	dso->adjust_symbols = 0;
1428

1429
	if (strncmp(dso->name, "/tmp/perf-", 10) == 0) {
1430 1431
		struct stat st;

1432
		if (lstat(dso->name, &st) < 0)
1433
			goto out;
1434

1435
		if (!symbol_conf.force && st.st_uid && (st.st_uid != geteuid())) {
1436
			pr_warning("File %s not owned by current user or root, "
1437
				   "ignoring it (use -f to override).\n", dso->name);
1438
			goto out;
1439 1440
		}

1441
		ret = dso__load_perf_map(dso, map);
1442 1443
		dso->symtab_type = ret > 0 ? DSO_BINARY_TYPE__JAVA_JIT :
					     DSO_BINARY_TYPE__NOT_FOUND;
1444
		goto out;
1445 1446
	}

1447 1448 1449
	if (machine)
		root_dir = machine->root_dir;

1450 1451
	name = malloc(PATH_MAX);
	if (!name)
1452
		goto out;
1453

1454
	kmod = dso->symtab_type == DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE ||
1455 1456 1457
		dso->symtab_type == DSO_BINARY_TYPE__SYSTEM_PATH_KMODULE_COMP ||
		dso->symtab_type == DSO_BINARY_TYPE__GUEST_KMODULE ||
		dso->symtab_type == DSO_BINARY_TYPE__GUEST_KMODULE_COMP;
1458

1459 1460 1461 1462 1463

	/*
	 * Read the build id if possible. This is required for
	 * DSO_BINARY_TYPE__BUILDID_DEBUGINFO to work
	 */
1464
	if (!dso->has_build_id &&
1465 1466 1467
	    is_regular_file(dso->long_name)) {
	    __symbol__join_symfs(name, PATH_MAX, dso->long_name);
	    if (filename__read_build_id(name, build_id, BUILD_ID_SIZE) > 0)
1468
		dso__set_build_id(dso, build_id);
1469
	}
1470

1471 1472
	/*
	 * Iterate over candidate debug images.
1473 1474
	 * Keep track of "interesting" ones (those which have a symtab, dynsym,
	 * and/or opd section) for processing.
1475
	 */
1476
	for (i = 0; i < DSO_BINARY_TYPE__SYMTAB_CNT; i++) {
1477 1478
		struct symsrc *ss = &ss_[ss_pos];
		bool next_slot = false;
1479

1480
		enum dso_binary_type symtab_type = binary_type_symtab[i];
1481

1482 1483 1484
		if (!dso__is_compatible_symtab_type(dso, kmod, symtab_type))
			continue;

1485 1486
		if (dso__read_binary_type_filename(dso, symtab_type,
						   root_dir, name, PATH_MAX))
1487
			continue;
1488

1489 1490 1491
		if (!is_regular_file(name))
			continue;

1492
		/* Name is now the name of the next image to try */
1493
		if (symsrc__init(ss, dso, name, symtab_type) < 0)
1494
			continue;
1495

1496 1497 1498
		if (!syms_ss && symsrc__has_symtab(ss)) {
			syms_ss = ss;
			next_slot = true;
1499 1500
			if (!dso->symsrc_filename)
				dso->symsrc_filename = strdup(name);
1501 1502
		}

1503 1504 1505
		if (!runtime_ss && symsrc__possibly_runtime(ss)) {
			runtime_ss = ss;
			next_slot = true;
1506
		}
1507

1508 1509
		if (next_slot) {
			ss_pos++;
1510

1511 1512
			if (syms_ss && runtime_ss)
				break;
1513 1514
		} else {
			symsrc__destroy(ss);
1515
		}
1516

1517
	}
1518

1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529
	if (!runtime_ss && !syms_ss)
		goto out_free;

	if (runtime_ss && !syms_ss) {
		syms_ss = runtime_ss;
	}

	/* We'll have to hope for the best */
	if (!runtime_ss && syms_ss)
		runtime_ss = syms_ss;

1530 1531 1532 1533
	if (syms_ss && syms_ss->type == DSO_BINARY_TYPE__BUILD_ID_CACHE)
		if (dso__build_id_is_kmod(dso, name, PATH_MAX))
			kmod = true;

1534
	if (syms_ss)
1535
		ret = dso__load_sym(dso, map, syms_ss, runtime_ss, kmod);
1536
	else
1537 1538
		ret = -1;

1539
	if (ret > 0) {
1540 1541
		int nr_plt;

1542
		nr_plt = dso__synthesize_plt_symbols(dso, runtime_ss, map);
1543 1544
		if (nr_plt > 0)
			ret += nr_plt;
1545 1546
	}

1547 1548 1549
	for (; ss_pos > 0; ss_pos--)
		symsrc__destroy(&ss_[ss_pos - 1]);
out_free:
1550
	free(name);
1551
	if (ret < 0 && strstr(dso->name, " (deleted)") != NULL)
1552 1553 1554 1555 1556
		ret = 0;
out:
	dso__set_loaded(dso, map->type);
	pthread_mutex_unlock(&dso->lock);

1557 1558 1559
	return ret;
}

1560
struct map *map_groups__find_by_name(struct map_groups *mg,
1561
				     enum map_type type, const char *name)
1562
{
1563
	struct maps *maps = &mg->maps[type];
1564
	struct map *map;
1565

1566 1567
	pthread_rwlock_rdlock(&maps->lock);

1568
	for (map = maps__first(maps); map; map = map__next(map)) {
1569
		if (map->dso && strcmp(map->dso->short_name, name) == 0)
1570
			goto out_unlock;
1571 1572
	}

1573 1574 1575 1576 1577
	map = NULL;

out_unlock:
	pthread_rwlock_unlock(&maps->lock);
	return map;
1578 1579
}

1580
int dso__load_vmlinux(struct dso *dso, struct map *map,
1581
		      const char *vmlinux, bool vmlinux_allocated)
1582
{
1583 1584
	int err = -1;
	struct symsrc ss;
1585
	char symfs_vmlinux[PATH_MAX];
1586
	enum dso_binary_type symtab_type;
1587

1588 1589 1590
	if (vmlinux[0] == '/')
		snprintf(symfs_vmlinux, sizeof(symfs_vmlinux), "%s", vmlinux);
	else
1591
		symbol__join_symfs(symfs_vmlinux, vmlinux);
1592

1593
	if (dso->kernel == DSO_TYPE_GUEST_KERNEL)
1594
		symtab_type = DSO_BINARY_TYPE__GUEST_VMLINUX;
1595
	else
1596
		symtab_type = DSO_BINARY_TYPE__VMLINUX;
1597

1598
	if (symsrc__init(&ss, dso, symfs_vmlinux, symtab_type))
1599 1600
		return -1;

1601
	err = dso__load_sym(dso, map, &ss, &ss, 0);
1602
	symsrc__destroy(&ss);
1603

1604
	if (err > 0) {
1605
		if (dso->kernel == DSO_TYPE_GUEST_KERNEL)
1606
			dso->binary_type = DSO_BINARY_TYPE__GUEST_VMLINUX;
1607
		else
1608
			dso->binary_type = DSO_BINARY_TYPE__VMLINUX;
1609
		dso__set_long_name(dso, vmlinux, vmlinux_allocated);
1610
		dso__set_loaded(dso, map->type);
1611
		pr_debug("Using %s for symbols\n", symfs_vmlinux);
1612
	}
1613

1614 1615 1616
	return err;
}

1617
int dso__load_vmlinux_path(struct dso *dso, struct map *map)
1618 1619
{
	int i, err = 0;
1620
	char *filename = NULL;
1621

1622 1623 1624 1625
	pr_debug("Looking at the vmlinux_path (%d entries long)\n",
		 vmlinux_path__nr_entries + 1);

	for (i = 0; i < vmlinux_path__nr_entries; ++i) {
1626
		err = dso__load_vmlinux(dso, map, vmlinux_path[i], false);
1627 1628 1629 1630
		if (err > 0)
			goto out;
	}

1631 1632
	if (!symbol_conf.ignore_vmlinux_buildid)
		filename = dso__build_id_filename(dso, NULL, 0);
1633
	if (filename != NULL) {
1634
		err = dso__load_vmlinux(dso, map, filename, true);
1635
		if (err > 0)
1636 1637 1638 1639
			goto out;
		free(filename);
	}
out:
1640 1641 1642
	return err;
}

1643 1644 1645 1646 1647 1648 1649
static bool visible_dir_filter(const char *name, struct dirent *d)
{
	if (d->d_type != DT_DIR)
		return false;
	return lsdir_no_dot_filter(name, d);
}

1650 1651 1652 1653
static int find_matching_kcore(struct map *map, char *dir, size_t dir_sz)
{
	char kallsyms_filename[PATH_MAX];
	int ret = -1;
1654 1655
	struct strlist *dirs;
	struct str_node *nd;
1656

1657 1658
	dirs = lsdir(dir, visible_dir_filter);
	if (!dirs)
1659 1660
		return -1;

1661
	strlist__for_each_entry(nd, dirs) {
1662
		scnprintf(kallsyms_filename, sizeof(kallsyms_filename),
1663
			  "%s/%s/kallsyms", dir, nd->s);
1664
		if (!validate_kcore_addresses(kallsyms_filename, map)) {
1665 1666 1667 1668 1669 1670
			strlcpy(dir, kallsyms_filename, dir_sz);
			ret = 0;
			break;
		}
	}

1671
	strlist__delete(dirs);
1672 1673 1674 1675

	return ret;
}

1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689
/*
 * Use open(O_RDONLY) to check readability directly instead of access(R_OK)
 * since access(R_OK) only checks with real UID/GID but open() use effective
 * UID/GID and actual capabilities (e.g. /proc/kcore requires CAP_SYS_RAWIO).
 */
static bool filename__readable(const char *file)
{
	int fd = open(file, O_RDONLY);
	if (fd < 0)
		return false;
	close(fd);
	return true;
}

1690 1691 1692
static char *dso__find_kallsyms(struct dso *dso, struct map *map)
{
	u8 host_build_id[BUILD_ID_SIZE];
1693
	char sbuild_id[SBUILD_ID_SIZE];
1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708
	bool is_host = false;
	char path[PATH_MAX];

	if (!dso->has_build_id) {
		/*
		 * Last resort, if we don't have a build-id and couldn't find
		 * any vmlinux file, try the running kernel kallsyms table.
		 */
		goto proc_kallsyms;
	}

	if (sysfs__read_build_id("/sys/kernel/notes", host_build_id,
				 sizeof(host_build_id)) == 0)
		is_host = dso__build_id_equal(dso, host_build_id);

1709
	/* Try a fast path for /proc/kallsyms if possible */
1710 1711
	if (is_host) {
		/*
1712 1713 1714 1715 1716
		 * Do not check the build-id cache, unless we know we cannot use
		 * /proc/kcore or module maps don't match to /proc/kallsyms.
		 * To check readability of /proc/kcore, do not use access(R_OK)
		 * since /proc/kcore requires CAP_SYS_RAWIO to read and access
		 * can't check it.
1717
		 */
1718 1719 1720
		if (filename__readable("/proc/kcore") &&
		    !validate_kcore_addresses("/proc/kallsyms", map))
			goto proc_kallsyms;
1721 1722
	}

1723 1724
	build_id__sprintf(dso->build_id, sizeof(dso->build_id), sbuild_id);

1725
	/* Find kallsyms in build-id cache with kcore */
1726 1727 1728
	scnprintf(path, sizeof(path), "%s/%s/%s",
		  buildid_dir, DSO__NAME_KCORE, sbuild_id);

1729 1730 1731
	if (!find_matching_kcore(map, path, sizeof(path)))
		return strdup(path);

1732 1733 1734 1735 1736 1737 1738
	/* Use current /proc/kallsyms if possible */
	if (is_host) {
proc_kallsyms:
		return strdup("/proc/kallsyms");
	}

	/* Finally, find a cache of kallsyms */
1739
	if (!build_id_cache__kallsyms_path(sbuild_id, path, sizeof(path))) {
1740 1741 1742 1743 1744 1745 1746 1747
		pr_err("No kallsyms or vmlinux with build-id %s was found\n",
		       sbuild_id);
		return NULL;
	}

	return strdup(path);
}

1748
static int dso__load_kernel_sym(struct dso *dso, struct map *map)
1749
{
1750
	int err;
1751 1752
	const char *kallsyms_filename = NULL;
	char *kallsyms_allocated_filename = NULL;
1753
	/*
1754 1755
	 * Step 1: if the user specified a kallsyms or vmlinux filename, use
	 * it and only it, reporting errors to the user if it cannot be used.
1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767
	 *
	 * For instance, try to analyse an ARM perf.data file _without_ a
	 * build-id, or if the user specifies the wrong path to the right
	 * vmlinux file, obviously we can't fallback to another vmlinux (a
	 * x86_86 one, on the machine where analysis is being performed, say),
	 * or worse, /proc/kallsyms.
	 *
	 * If the specified file _has_ a build-id and there is a build-id
	 * section in the perf.data file, we will still do the expected
	 * validation in dso__load_vmlinux and will bail out if they don't
	 * match.
	 */
1768 1769 1770 1771 1772
	if (symbol_conf.kallsyms_name != NULL) {
		kallsyms_filename = symbol_conf.kallsyms_name;
		goto do_kallsyms;
	}

1773
	if (!symbol_conf.ignore_vmlinux && symbol_conf.vmlinux_name != NULL) {
1774
		return dso__load_vmlinux(dso, map, symbol_conf.vmlinux_name, false);
1775
	}
1776

1777
	if (!symbol_conf.ignore_vmlinux && vmlinux_path != NULL) {
1778
		err = dso__load_vmlinux_path(dso, map);
1779
		if (err > 0)
1780
			return err;
1781 1782
	}

1783 1784 1785 1786
	/* do not try local files if a symfs was given */
	if (symbol_conf.symfs[0] != 0)
		return -1;

1787 1788 1789
	kallsyms_allocated_filename = dso__find_kallsyms(dso, map);
	if (!kallsyms_allocated_filename)
		return -1;
1790

1791
	kallsyms_filename = kallsyms_allocated_filename;
1792

1793
do_kallsyms:
1794
	err = dso__load_kallsyms(dso, kallsyms_filename, map);
1795 1796
	if (err > 0)
		pr_debug("Using %s for symbols\n", kallsyms_filename);
1797
	free(kallsyms_allocated_filename);
1798

1799
	if (err > 0 && !dso__is_kcore(dso)) {
1800
		dso->binary_type = DSO_BINARY_TYPE__KALLSYMS;
1801
		dso__set_long_name(dso, DSO__NAME_KALLSYMS, false);
1802 1803
		map__fixup_start(map);
		map__fixup_end(map);
1804
	}
1805

1806 1807 1808
	return err;
}

1809
static int dso__load_guest_kernel_sym(struct dso *dso, struct map *map)
1810 1811 1812
{
	int err;
	const char *kallsyms_filename = NULL;
1813
	struct machine *machine;
1814 1815 1816 1817 1818 1819
	char path[PATH_MAX];

	if (!map->groups) {
		pr_debug("Guest kernel map hasn't the point to groups\n");
		return -1;
	}
1820
	machine = map->groups->machine;
1821

1822
	if (machine__is_default_guest(machine)) {
1823 1824 1825 1826 1827 1828
		/*
		 * if the user specified a vmlinux filename, use it and only
		 * it, reporting errors to the user if it cannot be used.
		 * Or use file guest_kallsyms inputted by user on commandline
		 */
		if (symbol_conf.default_guest_vmlinux_name != NULL) {
1829
			err = dso__load_vmlinux(dso, map,
1830
						symbol_conf.default_guest_vmlinux_name,
1831
						false);
1832
			return err;
1833 1834 1835 1836 1837 1838
		}

		kallsyms_filename = symbol_conf.default_guest_kallsyms;
		if (!kallsyms_filename)
			return -1;
	} else {
1839
		sprintf(path, "%s/proc/kallsyms", machine->root_dir);
1840 1841 1842
		kallsyms_filename = path;
	}

1843
	err = dso__load_kallsyms(dso, kallsyms_filename, map);
1844
	if (err > 0)
1845
		pr_debug("Using %s for symbols\n", kallsyms_filename);
1846
	if (err > 0 && !dso__is_kcore(dso)) {
1847
		dso->binary_type = DSO_BINARY_TYPE__GUEST_KALLSYMS;
1848
		machine__mmap_name(machine, path, sizeof(path));
1849
		dso__set_long_name(dso, strdup(path), true);
1850 1851 1852 1853 1854 1855
		map__fixup_start(map);
		map__fixup_end(map);
	}

	return err;
}
1856

1857 1858
static void vmlinux_path__exit(void)
{
1859 1860
	while (--vmlinux_path__nr_entries >= 0)
		zfree(&vmlinux_path[vmlinux_path__nr_entries]);
1861
	vmlinux_path__nr_entries = 0;
1862

1863
	zfree(&vmlinux_path);
1864 1865
}

1866 1867 1868 1869 1870 1871 1872 1873 1874
static const char * const vmlinux_paths[] = {
	"vmlinux",
	"/boot/vmlinux"
};

static const char * const vmlinux_paths_upd[] = {
	"/boot/vmlinux-%s",
	"/usr/lib/debug/boot/vmlinux-%s",
	"/lib/modules/%s/build/vmlinux",
1875 1876
	"/usr/lib/debug/lib/modules/%s/vmlinux",
	"/usr/lib/debug/boot/vmlinux-%s.debug"
1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888
};

static int vmlinux_path__add(const char *new_entry)
{
	vmlinux_path[vmlinux_path__nr_entries] = strdup(new_entry);
	if (vmlinux_path[vmlinux_path__nr_entries] == NULL)
		return -1;
	++vmlinux_path__nr_entries;

	return 0;
}

1889
static int vmlinux_path__init(struct perf_env *env)
1890 1891 1892
{
	struct utsname uts;
	char bf[PATH_MAX];
1893
	char *kernel_version;
1894
	unsigned int i;
1895

1896 1897
	vmlinux_path = malloc(sizeof(char *) * (ARRAY_SIZE(vmlinux_paths) +
			      ARRAY_SIZE(vmlinux_paths_upd)));
1898 1899 1900
	if (vmlinux_path == NULL)
		return -1;

1901 1902 1903
	for (i = 0; i < ARRAY_SIZE(vmlinux_paths); i++)
		if (vmlinux_path__add(vmlinux_paths[i]) < 0)
			goto out_fail;
1904

1905
	/* only try kernel version if no symfs was given */
1906 1907 1908
	if (symbol_conf.symfs[0] != 0)
		return 0;

1909 1910 1911 1912 1913 1914 1915 1916
	if (env) {
		kernel_version = env->os_release;
	} else {
		if (uname(&uts) < 0)
			goto out_fail;

		kernel_version = uts.release;
	}
1917

1918 1919 1920 1921 1922
	for (i = 0; i < ARRAY_SIZE(vmlinux_paths_upd); i++) {
		snprintf(bf, sizeof(bf), vmlinux_paths_upd[i], kernel_version);
		if (vmlinux_path__add(bf) < 0)
			goto out_fail;
	}
1923 1924 1925 1926 1927 1928 1929 1930

	return 0;

out_fail:
	vmlinux_path__exit();
	return -1;
}

D
David Ahern 已提交
1931
int setup_list(struct strlist **list, const char *list_str,
1932 1933 1934 1935 1936
		      const char *list_name)
{
	if (list_str == NULL)
		return 0;

1937
	*list = strlist__new(list_str, NULL);
1938 1939 1940 1941
	if (!*list) {
		pr_err("problems parsing %s list\n", list_name);
		return -1;
	}
1942 1943

	symbol_conf.has_filter = true;
1944 1945 1946
	return 0;
}

1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960
int setup_intlist(struct intlist **list, const char *list_str,
		  const char *list_name)
{
	if (list_str == NULL)
		return 0;

	*list = intlist__new(list_str);
	if (!*list) {
		pr_err("problems parsing %s list\n", list_name);
		return -1;
	}
	return 0;
}

1961 1962 1963
static bool symbol__read_kptr_restrict(void)
{
	bool value = false;
1964
	FILE *fp = fopen("/proc/sys/kernel/kptr_restrict", "r");
1965

1966 1967
	if (fp != NULL) {
		char line[8];
1968

1969
		if (fgets(line, sizeof(line), fp) != NULL)
1970
			value = ((geteuid() != 0) || (getuid() != 0)) ?
1971 1972
					(atoi(line) != 0) :
					(atoi(line) == 2);
1973

1974
		fclose(fp);
1975 1976 1977 1978 1979
	}

	return value;
}

1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996
int symbol__annotation_init(void)
{
	if (symbol_conf.initialized) {
		pr_err("Annotation needs to be init before symbol__init()\n");
		return -1;
	}

	if (symbol_conf.init_annotation) {
		pr_warning("Annotation being initialized multiple times\n");
		return 0;
	}

	symbol_conf.priv_size += sizeof(struct annotation);
	symbol_conf.init_annotation = true;
	return 0;
}

1997
int symbol__init(struct perf_env *env)
1998
{
1999 2000
	const char *symfs;

2001 2002 2003
	if (symbol_conf.initialized)
		return 0;

2004
	symbol_conf.priv_size = PERF_ALIGN(symbol_conf.priv_size, sizeof(u64));
2005

2006 2007
	symbol__elf_init();

2008 2009 2010
	if (symbol_conf.sort_by_name)
		symbol_conf.priv_size += (sizeof(struct symbol_name_rb_node) -
					  sizeof(struct symbol));
2011

2012
	if (symbol_conf.try_vmlinux_path && vmlinux_path__init(env) < 0)
2013 2014
		return -1;

2015 2016 2017 2018 2019
	if (symbol_conf.field_sep && *symbol_conf.field_sep == '.') {
		pr_err("'.' is the only non valid --field-separator argument\n");
		return -1;
	}

2020 2021 2022 2023 2024 2025 2026 2027
	if (setup_list(&symbol_conf.dso_list,
		       symbol_conf.dso_list_str, "dso") < 0)
		return -1;

	if (setup_list(&symbol_conf.comm_list,
		       symbol_conf.comm_list_str, "comm") < 0)
		goto out_free_dso_list;

2028 2029 2030 2031 2032 2033 2034 2035
	if (setup_intlist(&symbol_conf.pid_list,
		       symbol_conf.pid_list_str, "pid") < 0)
		goto out_free_comm_list;

	if (setup_intlist(&symbol_conf.tid_list,
		       symbol_conf.tid_list_str, "tid") < 0)
		goto out_free_pid_list;

2036 2037
	if (setup_list(&symbol_conf.sym_list,
		       symbol_conf.sym_list_str, "symbol") < 0)
2038
		goto out_free_tid_list;
2039

2040 2041 2042 2043
	if (setup_list(&symbol_conf.bt_stop_list,
		       symbol_conf.bt_stop_list_str, "symbol") < 0)
		goto out_free_sym_list;

2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055
	/*
	 * A path to symbols of "/" is identical to ""
	 * reset here for simplicity.
	 */
	symfs = realpath(symbol_conf.symfs, NULL);
	if (symfs == NULL)
		symfs = symbol_conf.symfs;
	if (strcmp(symfs, "/") == 0)
		symbol_conf.symfs = "";
	if (symfs != symbol_conf.symfs)
		free((void *)symfs);

2056 2057
	symbol_conf.kptr_restrict = symbol__read_kptr_restrict();

2058
	symbol_conf.initialized = true;
2059
	return 0;
2060

2061 2062
out_free_sym_list:
	strlist__delete(symbol_conf.sym_list);
2063 2064 2065 2066
out_free_tid_list:
	intlist__delete(symbol_conf.tid_list);
out_free_pid_list:
	intlist__delete(symbol_conf.pid_list);
2067 2068
out_free_comm_list:
	strlist__delete(symbol_conf.comm_list);
2069 2070
out_free_dso_list:
	strlist__delete(symbol_conf.dso_list);
2071
	return -1;
2072 2073
}

2074 2075
void symbol__exit(void)
{
2076 2077
	if (!symbol_conf.initialized)
		return;
2078
	strlist__delete(symbol_conf.bt_stop_list);
2079 2080 2081
	strlist__delete(symbol_conf.sym_list);
	strlist__delete(symbol_conf.dso_list);
	strlist__delete(symbol_conf.comm_list);
2082 2083
	intlist__delete(symbol_conf.tid_list);
	intlist__delete(symbol_conf.pid_list);
2084 2085
	vmlinux_path__exit();
	symbol_conf.sym_list = symbol_conf.dso_list = symbol_conf.comm_list = NULL;
2086
	symbol_conf.bt_stop_list = NULL;
2087
	symbol_conf.initialized = false;
2088
}
2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111

int symbol__config_symfs(const struct option *opt __maybe_unused,
			 const char *dir, int unset __maybe_unused)
{
	char *bf = NULL;
	int ret;

	symbol_conf.symfs = strdup(dir);
	if (symbol_conf.symfs == NULL)
		return -ENOMEM;

	/* skip the locally configured cache if a symfs is given, and
	 * config buildid dir to symfs/.debug
	 */
	ret = asprintf(&bf, "%s/%s", dir, ".debug");
	if (ret < 0)
		return -ENOMEM;

	set_buildid_dir(bf);

	free(bf);
	return 0;
}