symbol.c 28.9 KB
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#include "util.h"
#include "../perf.h"
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#include "string.h"
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#include "symbol.h"
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#include "thread.h"
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#include "debug.h"

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#include <libelf.h>
#include <gelf.h>
#include <elf.h>
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#include <sys/utsname.h>
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Peter Zijlstra 已提交
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enum dso_origin {
	DSO__ORIG_KERNEL = 0,
	DSO__ORIG_JAVA_JIT,
	DSO__ORIG_FEDORA,
	DSO__ORIG_UBUNTU,
	DSO__ORIG_BUILDID,
	DSO__ORIG_DSO,
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	DSO__ORIG_KMODULE,
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	DSO__ORIG_NOT_FOUND,
};

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static void dsos__add(struct dso *dso);
static struct dso *dsos__find(const char *name);
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static struct map *map__new2(u64 start, struct dso *dso);
static void kernel_maps__insert(struct map *map);
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static struct rb_root kernel_maps;

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static void dso__fixup_sym_end(struct dso *self)
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{
	struct rb_node *nd, *prevnd = rb_first(&self->syms);
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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 - 1;
	}
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	/* Last entry */
	if (curr->end == curr->start)
		curr->end = roundup(curr->start, 4096);
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}

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static void kernel_maps__fixup_end(void)
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{
	struct map *prev, *curr;
	struct rb_node *nd, *prevnd = rb_first(&kernel_maps);

	if (prevnd == NULL)
		return;

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

	for (nd = rb_next(prevnd); nd; nd = rb_next(nd)) {
		prev = curr;
		curr = rb_entry(nd, struct map, rb_node);
		prev->end = curr->start - 1;
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	}

	nd = rb_last(&curr->dso->syms);
	if (nd) {
		struct symbol *sym = rb_entry(nd, struct symbol, rb_node);
		curr->end = sym->end;
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	}
}

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static struct symbol *symbol__new(u64 start, u64 len, const char *name,
				  unsigned int priv_size, int v)
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{
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	size_t namelen = strlen(name) + 1;
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	struct symbol *self = calloc(1, priv_size + sizeof(*self) + namelen);
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	if (!self)
		return NULL;

	if (priv_size) {
		memset(self, 0, priv_size);
		self = ((void *)self) + priv_size;
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	}
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	self->start = start;
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	self->end   = len ? start + len - 1 : start;
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	if (v > 2)
		printf("%s: %s %#Lx-%#Lx\n", __func__, name, start, self->end);

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	memcpy(self->name, name, namelen);
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	return self;
}

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static void symbol__delete(struct symbol *self, unsigned int priv_size)
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{
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	free(((void *)self) - priv_size);
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}

static size_t symbol__fprintf(struct symbol *self, FILE *fp)
{
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	return fprintf(fp, " %llx-%llx %s\n",
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		       self->start, self->end, self->name);
}

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struct dso *dso__new(const char *name, unsigned int sym_priv_size)
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{
	struct dso *self = malloc(sizeof(*self) + strlen(name) + 1);

	if (self != NULL) {
		strcpy(self->name, name);
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		self->long_name = self->name;
		self->short_name = self->name;
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		self->syms = RB_ROOT;
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		self->sym_priv_size = sym_priv_size;
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Peter Zijlstra 已提交
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		self->find_symbol = dso__find_symbol;
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		self->slen_calculated = 0;
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		self->origin = DSO__ORIG_NOT_FOUND;
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	}

	return self;
}

static void dso__delete_symbols(struct dso *self)
{
	struct symbol *pos;
	struct rb_node *next = rb_first(&self->syms);

	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, &self->syms);
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		symbol__delete(pos, self->sym_priv_size);
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	}
}

void dso__delete(struct dso *self)
{
	dso__delete_symbols(self);
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	if (self->long_name != self->name)
		free(self->long_name);
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	free(self);
}

static void dso__insert_symbol(struct dso *self, struct symbol *sym)
{
	struct rb_node **p = &self->syms.rb_node;
	struct rb_node *parent = NULL;
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	const u64 ip = sym->start;
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	struct symbol *s;

	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);
	rb_insert_color(&sym->rb_node, &self->syms);
}

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struct symbol *dso__find_symbol(struct dso *self, u64 ip)
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{
	struct rb_node *n;

	if (self == NULL)
		return NULL;

	n = self->syms.rb_node;

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

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

	return NULL;
}

size_t dso__fprintf(struct dso *self, FILE *fp)
{
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	size_t ret = fprintf(fp, "dso: %s\n", self->short_name);
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	struct rb_node *nd;
	for (nd = rb_first(&self->syms); nd; nd = rb_next(nd)) {
		struct symbol *pos = rb_entry(nd, struct symbol, rb_node);
		ret += symbol__fprintf(pos, fp);
	}

	return ret;
}

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/*
 * 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.
 */
static int kernel_maps__load_all_kallsyms(int v)
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{
	char *line = NULL;
	size_t n;
	FILE *file = fopen("/proc/kallsyms", "r");

	if (file == NULL)
		goto out_failure;

	while (!feof(file)) {
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		u64 start;
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		struct symbol *sym;
		int line_len, len;
		char symbol_type;
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		char *symbol_name;
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		line_len = getline(&line, &n, file);
		if (line_len < 0)
			break;

		if (!line)
			goto out_failure;

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

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		len = hex2u64(line, &start);
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		len++;
		if (len + 2 >= line_len)
			continue;

		symbol_type = toupper(line[len]);
		/*
		 * We're interested only in code ('T'ext)
		 */
		if (symbol_type != 'T' && symbol_type != 'W')
			continue;
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		symbol_name = line + len + 2;
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		/*
		 * Will fix up the end later, when we have all symbols sorted.
		 */
		sym = symbol__new(start, 0, symbol_name,
				  kernel_map->dso->sym_priv_size, v);
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		if (sym == NULL)
			goto out_delete_line;

		dso__insert_symbol(kernel_map->dso, sym);
	}

	free(line);
	fclose(file);

	return 0;

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

/*
 * 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.
 */
static int kernel_maps__split_kallsyms(symbol_filter_t filter, int use_modules)
{
	struct map *map = kernel_map;
	struct symbol *pos;
	int count = 0;
	struct rb_node *next = rb_first(&kernel_map->dso->syms);
	int kernel_range = 0;

	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) {
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			if (!use_modules)
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				goto delete_symbol;

			*module++ = '\0';

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			if (strcmp(map->dso->name, module)) {
				map = kernel_maps__find_by_dso_name(module);
				if (!map) {
					fputs("/proc/{kallsyms,modules} "
					      "inconsistency!\n", stderr);
					return -1;
				}
			}
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			/*
			 * So that we look just like we get from .ko files,
			 * i.e. not prelinked, relative to map->start.
			 */
			pos->start = map->map_ip(map, pos->start);
			pos->end   = map->map_ip(map, pos->end);
		} else if (map != kernel_map) {
			char dso_name[PATH_MAX];
			struct dso *dso;

			snprintf(dso_name, sizeof(dso_name), "[kernel].%d",
				 kernel_range++);

			dso = dso__new(dso_name,
				       kernel_map->dso->sym_priv_size);
			if (dso == NULL)
				return -1;

			map = map__new2(pos->start, dso);
			if (map == NULL) {
				dso__delete(dso);
				return -1;
			}
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			map->map_ip = map->unmap_ip = identity__map_ip;
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			kernel_maps__insert(map);
			++kernel_range;
		}
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		if (filter && filter(map, pos)) {
delete_symbol:
			rb_erase(&pos->rb_node, &kernel_map->dso->syms);
			symbol__delete(pos, kernel_map->dso->sym_priv_size);
		} else {
			if (map != kernel_map) {
				rb_erase(&pos->rb_node, &kernel_map->dso->syms);
				dso__insert_symbol(map->dso, pos);
			}
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			count++;
		}
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	}

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	return count;
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}
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static int kernel_maps__load_kallsyms(symbol_filter_t filter,
				      int use_modules, int v)
{
	if (kernel_maps__load_all_kallsyms(v))
		return -1;

	dso__fixup_sym_end(kernel_map->dso);

	return kernel_maps__split_kallsyms(filter, use_modules);
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}

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static size_t kernel_maps__fprintf(FILE *fp, int v)
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{
	size_t printed = fprintf(stderr, "Kernel maps:\n");
	struct rb_node *nd;

	for (nd = rb_first(&kernel_maps); nd; nd = rb_next(nd)) {
		struct map *pos = rb_entry(nd, struct map, rb_node);

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		printed += fprintf(fp, "Map:");
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		printed += map__fprintf(pos, fp);
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		if (v > 1) {
			printed += dso__fprintf(pos->dso, fp);
			printed += fprintf(fp, "--\n");
		}
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	}

	return printed + fprintf(stderr, "END kernel maps\n");
}

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static int dso__load_perf_map(struct dso *self, struct map *map,
			      symbol_filter_t filter, int v)
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{
	char *line = NULL;
	size_t n;
	FILE *file;
	int nr_syms = 0;

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	file = fopen(self->long_name, "r");
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	if (file == NULL)
		goto out_failure;

	while (!feof(file)) {
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		u64 start, size;
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		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;

		sym = symbol__new(start, size, line + len,
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				  self->sym_priv_size, v);
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		if (sym == NULL)
			goto out_delete_line;

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		if (filter && filter(map, sym))
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			symbol__delete(sym, self->sym_priv_size);
		else {
			dso__insert_symbol(self, sym);
			nr_syms++;
		}
	}

	free(line);
	fclose(file);

	return nr_syms;

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

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/**
 * elf_symtab__for_each_symbol - iterate thru all the symbols
 *
 * @self: struct elf_symtab instance to iterate
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 * @idx: uint32_t idx
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 * @sym: GElf_Sym iterator
 */
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#define elf_symtab__for_each_symbol(syms, nr_syms, idx, sym) \
	for (idx = 0, gelf_getsym(syms, idx, &sym);\
	     idx < nr_syms; \
	     idx++, gelf_getsym(syms, idx, &sym))
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static inline uint8_t elf_sym__type(const GElf_Sym *sym)
{
	return GELF_ST_TYPE(sym->st_info);
}

static inline int elf_sym__is_function(const GElf_Sym *sym)
{
	return elf_sym__type(sym) == STT_FUNC &&
	       sym->st_name != 0 &&
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	       sym->st_shndx != SHN_UNDEF;
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}

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static inline int elf_sym__is_label(const GElf_Sym *sym)
{
	return elf_sym__type(sym) == STT_NOTYPE &&
		sym->st_name != 0 &&
		sym->st_shndx != SHN_UNDEF &&
		sym->st_shndx != SHN_ABS;
}

static inline const char *elf_sec__name(const GElf_Shdr *shdr,
					const Elf_Data *secstrs)
{
	return secstrs->d_buf + shdr->sh_name;
}

static inline int elf_sec__is_text(const GElf_Shdr *shdr,
					const Elf_Data *secstrs)
{
	return strstr(elf_sec__name(shdr, secstrs), "text") != NULL;
}

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static inline const char *elf_sym__name(const GElf_Sym *sym,
					const Elf_Data *symstrs)
{
	return symstrs->d_buf + sym->st_name;
}

static Elf_Scn *elf_section_by_name(Elf *elf, GElf_Ehdr *ep,
				    GElf_Shdr *shp, const char *name,
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				    size_t *idx)
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{
	Elf_Scn *sec = NULL;
	size_t cnt = 1;

	while ((sec = elf_nextscn(elf, sec)) != NULL) {
		char *str;

		gelf_getshdr(sec, shp);
		str = elf_strptr(elf, ep->e_shstrndx, shp->sh_name);
		if (!strcmp(name, str)) {
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			if (idx)
				*idx = cnt;
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			break;
		}
		++cnt;
	}

	return sec;
}

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#define elf_section__for_each_rel(reldata, pos, pos_mem, idx, nr_entries) \
	for (idx = 0, pos = gelf_getrel(reldata, 0, &pos_mem); \
	     idx < nr_entries; \
	     ++idx, pos = gelf_getrel(reldata, idx, &pos_mem))

#define elf_section__for_each_rela(reldata, pos, pos_mem, idx, nr_entries) \
	for (idx = 0, pos = gelf_getrela(reldata, 0, &pos_mem); \
	     idx < nr_entries; \
	     ++idx, pos = gelf_getrela(reldata, idx, &pos_mem))

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/*
 * We need to check if we have a .dynsym, so that we can handle the
 * .plt, synthesizing its symbols, that aren't on the symtabs (be it
 * .dynsym or .symtab).
 * And always look at the original dso, not at debuginfo packages, that
 * have the PLT data stripped out (shdr_rel_plt.sh_type == SHT_NOBITS).
 */
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static int dso__synthesize_plt_symbols(struct  dso *self, int v)
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{
	uint32_t nr_rel_entries, idx;
	GElf_Sym sym;
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	u64 plt_offset;
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	GElf_Shdr shdr_plt;
	struct symbol *f;
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	GElf_Shdr shdr_rel_plt, shdr_dynsym;
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	Elf_Data *reldata, *syms, *symstrs;
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	Elf_Scn *scn_plt_rel, *scn_symstrs, *scn_dynsym;
	size_t dynsym_idx;
	GElf_Ehdr ehdr;
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	char sympltname[1024];
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	Elf *elf;
	int nr = 0, symidx, fd, err = 0;

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	fd = open(self->long_name, O_RDONLY);
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	if (fd < 0)
		goto out;

	elf = elf_begin(fd, ELF_C_READ_MMAP, NULL);
	if (elf == NULL)
		goto out_close;

	if (gelf_getehdr(elf, &ehdr) == NULL)
		goto out_elf_end;

	scn_dynsym = elf_section_by_name(elf, &ehdr, &shdr_dynsym,
					 ".dynsym", &dynsym_idx);
	if (scn_dynsym == NULL)
		goto out_elf_end;
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	scn_plt_rel = elf_section_by_name(elf, &ehdr, &shdr_rel_plt,
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					  ".rela.plt", NULL);
	if (scn_plt_rel == NULL) {
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		scn_plt_rel = elf_section_by_name(elf, &ehdr, &shdr_rel_plt,
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						  ".rel.plt", NULL);
		if (scn_plt_rel == NULL)
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			goto out_elf_end;
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	}

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	err = -1;

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	if (shdr_rel_plt.sh_link != dynsym_idx)
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		goto out_elf_end;
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	if (elf_section_by_name(elf, &ehdr, &shdr_plt, ".plt", NULL) == NULL)
		goto out_elf_end;
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	/*
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	 * Fetch the relocation section to find the idxes to the GOT
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	 * and the symbols in the .dynsym they refer to.
	 */
	reldata = elf_getdata(scn_plt_rel, NULL);
	if (reldata == NULL)
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		goto out_elf_end;
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	syms = elf_getdata(scn_dynsym, NULL);
	if (syms == NULL)
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		goto out_elf_end;
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598
	scn_symstrs = elf_getscn(elf, shdr_dynsym.sh_link);
599
	if (scn_symstrs == NULL)
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		goto out_elf_end;
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	symstrs = elf_getdata(scn_symstrs, NULL);
	if (symstrs == NULL)
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		goto out_elf_end;
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	nr_rel_entries = shdr_rel_plt.sh_size / shdr_rel_plt.sh_entsize;
	plt_offset = shdr_plt.sh_offset;

	if (shdr_rel_plt.sh_type == SHT_RELA) {
		GElf_Rela pos_mem, *pos;

		elf_section__for_each_rela(reldata, pos, pos_mem, idx,
					   nr_rel_entries) {
			symidx = GELF_R_SYM(pos->r_info);
			plt_offset += shdr_plt.sh_entsize;
			gelf_getsym(syms, symidx, &sym);
			snprintf(sympltname, sizeof(sympltname),
				 "%s@plt", elf_sym__name(&sym, symstrs));

			f = symbol__new(plt_offset, shdr_plt.sh_entsize,
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					sympltname, self->sym_priv_size, v);
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			if (!f)
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				goto out_elf_end;
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			dso__insert_symbol(self, f);
			++nr;
		}
	} else if (shdr_rel_plt.sh_type == SHT_REL) {
		GElf_Rel pos_mem, *pos;
		elf_section__for_each_rel(reldata, pos, pos_mem, idx,
					  nr_rel_entries) {
			symidx = GELF_R_SYM(pos->r_info);
			plt_offset += shdr_plt.sh_entsize;
			gelf_getsym(syms, symidx, &sym);
			snprintf(sympltname, sizeof(sympltname),
				 "%s@plt", elf_sym__name(&sym, symstrs));

			f = symbol__new(plt_offset, shdr_plt.sh_entsize,
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					sympltname, self->sym_priv_size, v);
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			if (!f)
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				goto out_elf_end;
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			dso__insert_symbol(self, f);
			++nr;
		}
	}

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	err = 0;
out_elf_end:
	elf_end(elf);
out_close:
	close(fd);

	if (err == 0)
		return nr;
out:
	fprintf(stderr, "%s: problems reading %s PLT info.\n",
658
		__func__, self->long_name);
659
	return 0;
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}

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static int dso__load_sym(struct dso *self, struct map *map, const char *name,
			 int fd, symbol_filter_t filter, int kernel,
			 int kmodule, int v)
665
{
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	struct map *curr_map = map;
	struct dso *curr_dso = self;
	size_t dso_name_len = strlen(self->short_name);
669
	Elf_Data *symstrs, *secstrs;
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	uint32_t nr_syms;
	int err = -1;
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	uint32_t idx;
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	GElf_Ehdr ehdr;
	GElf_Shdr shdr;
	Elf_Data *syms;
	GElf_Sym sym;
677
	Elf_Scn *sec, *sec_strndx;
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	Elf *elf;
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	int nr = 0;
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	elf = elf_begin(fd, ELF_C_READ_MMAP, NULL);
	if (elf == NULL) {
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		if (v)
684 685
			fprintf(stderr, "%s: cannot read %s ELF file.\n",
				__func__, name);
686 687 688 689
		goto out_close;
	}

	if (gelf_getehdr(elf, &ehdr) == NULL) {
690
		if (v)
691
			fprintf(stderr, "%s: cannot get elf header.\n", __func__);
692 693 694 695
		goto out_elf_end;
	}

	sec = elf_section_by_name(elf, &ehdr, &shdr, ".symtab", NULL);
696
	if (sec == NULL) {
697 698
		sec = elf_section_by_name(elf, &ehdr, &shdr, ".dynsym", NULL);
		if (sec == NULL)
699 700
			goto out_elf_end;
	}
701 702 703 704 705 706 707 708 709 710 711 712 713

	syms = elf_getdata(sec, NULL);
	if (syms == NULL)
		goto out_elf_end;

	sec = elf_getscn(elf, shdr.sh_link);
	if (sec == NULL)
		goto out_elf_end;

	symstrs = elf_getdata(sec, NULL);
	if (symstrs == NULL)
		goto out_elf_end;

714 715 716 717 718
	sec_strndx = elf_getscn(elf, ehdr.e_shstrndx);
	if (sec_strndx == NULL)
		goto out_elf_end;

	secstrs = elf_getdata(sec_strndx, NULL);
S
Stoyan Gaydarov 已提交
719
	if (secstrs == NULL)
720 721
		goto out_elf_end;

722 723
	nr_syms = shdr.sh_size / shdr.sh_entsize;

724
	memset(&sym, 0, sizeof(sym));
725 726
	if (!kernel) {
		self->adjust_symbols = (ehdr.e_type == ET_EXEC ||
727 728 729
				elf_section_by_name(elf, &ehdr, &shdr,
						     ".gnu.prelink_undo",
						     NULL) != NULL);
730 731
	} else self->adjust_symbols = 0;

732
	elf_symtab__for_each_symbol(syms, nr_syms, idx, sym) {
733
		struct symbol *f;
734
		const char *elf_name;
735
		char *demangled = NULL;
736 737
		int is_label = elf_sym__is_label(&sym);
		const char *section_name;
738

739
		if (!is_label && !elf_sym__is_function(&sym))
740 741 742 743 744 745 746
			continue;

		sec = elf_getscn(elf, sym.st_shndx);
		if (!sec)
			goto out_elf_end;

		gelf_getshdr(sec, &shdr);
747 748 749 750

		if (is_label && !elf_sec__is_text(&shdr, secstrs))
			continue;

751
		elf_name = elf_sym__name(&sym, symstrs);
752
		section_name = elf_sec__name(&shdr, secstrs);
753

754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784
		if (kernel || kmodule) {
			char dso_name[PATH_MAX];

			if (strcmp(section_name,
				   curr_dso->short_name + dso_name_len) == 0)
				goto new_symbol;

			if (strcmp(section_name, ".text") == 0) {
				curr_map = map;
				curr_dso = self;
				goto new_symbol;
			}

			snprintf(dso_name, sizeof(dso_name),
				 "%s%s", self->short_name, section_name);

			curr_map = kernel_maps__find_by_dso_name(dso_name);
			if (curr_map == NULL) {
				u64 start = sym.st_value;

				if (kmodule)
					start += map->start + shdr.sh_offset;

				curr_dso = dso__new(dso_name, self->sym_priv_size);
				if (curr_dso == NULL)
					goto out_elf_end;
				curr_map = map__new2(start, curr_dso);
				if (curr_map == NULL) {
					dso__delete(curr_dso);
					goto out_elf_end;
				}
785 786
				curr_map->map_ip = identity__map_ip;
				curr_map->unmap_ip = identity__map_ip;
787 788 789 790 791 792 793
				curr_dso->origin = DSO__ORIG_KERNEL;
				kernel_maps__insert(curr_map);
				dsos__add(curr_dso);
			} else
				curr_dso = curr_map->dso;

			goto new_symbol;
794 795
		}

796
		if (curr_dso->adjust_symbols) {
797
			if (v > 2)
798 799
				printf("adjusting symbol: st_value: %Lx sh_addr: %Lx sh_offset: %Lx\n",
					(u64)sym.st_value, (u64)shdr.sh_addr, (u64)shdr.sh_offset);
800

801
			sym.st_value -= shdr.sh_addr - shdr.sh_offset;
802
		}
803 804 805 806 807
		/*
		 * We need to figure out if the object was created from C++ sources
		 * DWARF DW_compile_unit has this, but we don't always have access
		 * to it...
		 */
808
		demangled = bfd_demangle(NULL, elf_name, DMGL_PARAMS | DMGL_ANSI);
809
		if (demangled != NULL)
810
			elf_name = demangled;
811 812 813
new_symbol:
		f = symbol__new(sym.st_value, sym.st_size, elf_name,
				curr_dso->sym_priv_size, v);
814
		free(demangled);
815 816 817
		if (!f)
			goto out_elf_end;

818 819
		if (filter && filter(curr_map, f))
			symbol__delete(f, curr_dso->sym_priv_size);
820
		else {
821
			dso__insert_symbol(curr_dso, f);
822 823
			nr++;
		}
824 825
	}

826 827 828 829 830
	/*
	 * For misannotated, zeroed, ASM function sizes.
	 */
	if (nr > 0)
		dso__fixup_sym_end(self);
831 832 833 834 835 836 837
	err = nr;
out_elf_end:
	elf_end(elf);
out_close:
	return err;
}

838 839
#define BUILD_ID_SIZE 128

840
static char *dso__read_build_id(struct dso *self, int v)
841 842 843 844 845 846 847 848 849
{
	int i;
	GElf_Ehdr ehdr;
	GElf_Shdr shdr;
	Elf_Data *build_id_data;
	Elf_Scn *sec;
	char *build_id = NULL, *bid;
	unsigned char *raw;
	Elf *elf;
850
	int fd = open(self->long_name, O_RDONLY);
851 852 853 854 855 856

	if (fd < 0)
		goto out;

	elf = elf_begin(fd, ELF_C_READ_MMAP, NULL);
	if (elf == NULL) {
857
		if (v)
858
			fprintf(stderr, "%s: cannot read %s ELF file.\n",
859
				__func__, self->long_name);
860 861 862 863
		goto out_close;
	}

	if (gelf_getehdr(elf, &ehdr) == NULL) {
864
		if (v)
865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886
			fprintf(stderr, "%s: cannot get elf header.\n", __func__);
		goto out_elf_end;
	}

	sec = elf_section_by_name(elf, &ehdr, &shdr, ".note.gnu.build-id", NULL);
	if (sec == NULL)
		goto out_elf_end;

	build_id_data = elf_getdata(sec, NULL);
	if (build_id_data == NULL)
		goto out_elf_end;
	build_id = malloc(BUILD_ID_SIZE);
	if (build_id == NULL)
		goto out_elf_end;
	raw = build_id_data->d_buf + 16;
	bid = build_id;

	for (i = 0; i < 20; ++i) {
		sprintf(bid, "%02x", *raw);
		++raw;
		bid += 2;
	}
887
	if (v >= 2)
888
		printf("%s(%s): %s\n", __func__, self->long_name, build_id);
889 890 891 892 893 894 895 896
out_elf_end:
	elf_end(elf);
out_close:
	close(fd);
out:
	return build_id;
}

897 898 899 900 901 902 903 904 905
char dso__symtab_origin(const struct dso *self)
{
	static const char origin[] = {
		[DSO__ORIG_KERNEL] =   'k',
		[DSO__ORIG_JAVA_JIT] = 'j',
		[DSO__ORIG_FEDORA] =   'f',
		[DSO__ORIG_UBUNTU] =   'u',
		[DSO__ORIG_BUILDID] =  'b',
		[DSO__ORIG_DSO] =      'd',
906
		[DSO__ORIG_KMODULE] =  'K',
907 908 909 910 911 912 913
	};

	if (self == NULL || self->origin == DSO__ORIG_NOT_FOUND)
		return '!';
	return origin[self->origin];
}

914 915
int dso__load(struct dso *self, struct map *map,
	      symbol_filter_t filter, int v)
916
{
917 918
	int size = PATH_MAX;
	char *name = malloc(size), *build_id = NULL;
919 920 921 922 923 924
	int ret = -1;
	int fd;

	if (!name)
		return -1;

925
	self->adjust_symbols = 0;
926

927
	if (strncmp(self->name, "/tmp/perf-", 10) == 0) {
928
		ret = dso__load_perf_map(self, map, filter, v);
929 930 931 932 933 934
		self->origin = ret > 0 ? DSO__ORIG_JAVA_JIT :
					 DSO__ORIG_NOT_FOUND;
		return ret;
	}

	self->origin = DSO__ORIG_FEDORA - 1;
935

936 937
more:
	do {
938 939 940
		self->origin++;
		switch (self->origin) {
		case DSO__ORIG_FEDORA:
941 942
			snprintf(name, size, "/usr/lib/debug%s.debug",
				 self->long_name);
943
			break;
944
		case DSO__ORIG_UBUNTU:
945 946
			snprintf(name, size, "/usr/lib/debug%s",
				 self->long_name);
947
			break;
948
		case DSO__ORIG_BUILDID:
949
			build_id = dso__read_build_id(self, v);
950 951 952 953 954 955 956
			if (build_id != NULL) {
				snprintf(name, size,
					 "/usr/lib/debug/.build-id/%.2s/%s.debug",
					build_id, build_id + 2);
				free(build_id);
				break;
			}
957
			self->origin++;
958
			/* Fall thru */
959
		case DSO__ORIG_DSO:
960
			snprintf(name, size, "%s", self->long_name);
961 962 963 964 965 966 967 968 969
			break;

		default:
			goto out;
		}

		fd = open(name, O_RDONLY);
	} while (fd < 0);

970
	ret = dso__load_sym(self, map, name, fd, filter, 0, 0, v);
971 972 973 974 975 976 977 978
	close(fd);

	/*
	 * Some people seem to have debuginfo files _WITHOUT_ debug info!?!?
	 */
	if (!ret)
		goto more;

979
	if (ret > 0) {
980
		int nr_plt = dso__synthesize_plt_symbols(self, v);
981 982 983
		if (nr_plt > 0)
			ret += nr_plt;
	}
984 985
out:
	free(name);
986 987
	if (ret < 0 && strstr(self->name, " (deleted)") != NULL)
		return 0;
988 989 990
	return ret;
}

991 992 993
struct map *kernel_map;

static void kernel_maps__insert(struct map *map)
994
{
995 996
	maps__insert(&kernel_maps, map);
}
997

998 999 1000
struct symbol *kernel_maps__find_symbol(u64 ip, struct map **mapp)
{
	struct map *map = maps__find(&kernel_maps, ip);
1001 1002 1003

	if (mapp)
		*mapp = map;
1004 1005 1006

	if (map) {
		ip = map->map_ip(map, ip);
1007
		return map->dso->find_symbol(map->dso, ip);
1008
	}
1009

1010
	return NULL;
1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035
}

struct map *kernel_maps__find_by_dso_name(const char *name)
{
	struct rb_node *nd;

	for (nd = rb_first(&kernel_maps); nd; nd = rb_next(nd)) {
		struct map *map = rb_entry(nd, struct map, rb_node);

		if (map->dso && strcmp(map->dso->name, name) == 0)
			return map;
	}

	return NULL;
}

static int dso__load_module_sym(struct dso *self, struct map *map,
				symbol_filter_t filter, int v)
{
	int err = 0, fd = open(self->long_name, O_RDONLY);

	if (fd < 0) {
		if (v)
			fprintf(stderr, "%s: cannot open %s\n",
				__func__, self->long_name);
1036
		return err;
1037
	}
1038

1039
	err = dso__load_sym(self, map, self->long_name, fd, filter, 0, 1, v);
1040 1041 1042 1043 1044
	close(fd);

	return err;
}

1045 1046
static int dsos__load_modules_sym_dir(char *dirname,
				      symbol_filter_t filter, int v)
1047
{
1048 1049 1050
	struct dirent *dent;
	int nr_symbols = 0, err;
	DIR *dir = opendir(dirname);
1051

1052 1053 1054 1055 1056 1057
	if (!dir) {
		if (v)
			fprintf(stderr, "%s: cannot open %s dir\n", __func__,
				dirname);
		return -1;
	}
1058

1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082
	while ((dent = readdir(dir)) != NULL) {
		char path[PATH_MAX];

		if (dent->d_type == DT_DIR) {
			if (!strcmp(dent->d_name, ".") ||
			    !strcmp(dent->d_name, ".."))
				continue;

			snprintf(path, sizeof(path), "%s/%s",
				 dirname, dent->d_name);
			err = dsos__load_modules_sym_dir(path, filter, v);
			if (err < 0)
				goto failure;
		} else {
			char *dot = strrchr(dent->d_name, '.'),
			     dso_name[PATH_MAX];
			struct map *map;
			struct rb_node *last;

			if (dot == NULL || strcmp(dot, ".ko"))
				continue;
			snprintf(dso_name, sizeof(dso_name), "[%.*s]",
				 (int)(dot - dent->d_name), dent->d_name);

1083
			strxfrchar(dso_name, '-', '_');
1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100
			map = kernel_maps__find_by_dso_name(dso_name);
			if (map == NULL)
				continue;

			snprintf(path, sizeof(path), "%s/%s",
				 dirname, dent->d_name);

			map->dso->long_name = strdup(path);
			if (map->dso->long_name == NULL)
				goto failure;

			err = dso__load_module_sym(map->dso, map, filter, v);
			if (err < 0)
				goto failure;
			last = rb_last(&map->dso->syms);
			if (last) {
				struct symbol *sym;
1101 1102 1103 1104 1105 1106 1107 1108
				/*
				 * We do this here as well, even having the
				 * symbol size found in the symtab because
				 * misannotated ASM symbols may have the size
				 * set to zero.
				 */
				dso__fixup_sym_end(map->dso);

1109 1110 1111 1112 1113 1114
				sym = rb_entry(last, struct symbol, rb_node);
				map->end = map->start + sym->end;
			}
		}
		nr_symbols += err;
	}
1115

1116 1117 1118 1119 1120
	return nr_symbols;
failure:
	closedir(dir);
	return -1;
}
1121

1122 1123 1124 1125
static int dsos__load_modules_sym(symbol_filter_t filter, int v)
{
	struct utsname uts;
	char modules_path[PATH_MAX];
1126

1127 1128
	if (uname(&uts) < 0)
		return -1;
1129

1130 1131
	snprintf(modules_path, sizeof(modules_path), "/lib/modules/%s/kernel",
		 uts.release);
1132

1133
	return dsos__load_modules_sym_dir(modules_path, filter, v);
1134 1135
}

1136 1137 1138 1139 1140 1141
/*
 * Constructor variant for modules (where we know from /proc/modules where
 * they are loaded) and for vmlinux, where only after we load all the
 * symbols we'll know where it starts and ends.
 */
static struct map *map__new2(u64 start, struct dso *dso)
1142
{
1143
	struct map *self = malloc(sizeof(*self));
1144

1145 1146 1147 1148 1149 1150 1151 1152 1153 1154
	if (self != NULL) {
		self->start = start;
		/*
		 * Will be filled after we load all the symbols
		 */
		self->end = 0;

		self->pgoff = 0;
		self->dso = dso;
		self->map_ip = map__map_ip;
1155
		self->unmap_ip = map__unmap_ip;
1156 1157 1158 1159 1160
		RB_CLEAR_NODE(&self->rb_node);
	}
	return self;
}

1161
static int dsos__load_modules(unsigned int sym_priv_size)
1162 1163 1164 1165 1166
{
	char *line = NULL;
	size_t n;
	FILE *file = fopen("/proc/modules", "r");
	struct map *map;
1167

1168 1169
	if (file == NULL)
		return -1;
1170

1171 1172 1173 1174 1175 1176
	while (!feof(file)) {
		char name[PATH_MAX];
		u64 start;
		struct dso *dso;
		char *sep;
		int line_len;
1177

1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208
		line_len = getline(&line, &n, file);
		if (line_len < 0)
			break;

		if (!line)
			goto out_failure;

		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';

		snprintf(name, sizeof(name), "[%s]", line);
		dso = dso__new(name, sym_priv_size);

		if (dso == NULL)
			goto out_delete_line;

		map = map__new2(start, dso);
		if (map == NULL) {
			dso__delete(dso);
			goto out_delete_line;
1209
		}
1210 1211 1212 1213

		dso->origin = DSO__ORIG_KMODULE;
		kernel_maps__insert(map);
		dsos__add(dso);
1214
	}
1215 1216 1217 1218

	free(line);
	fclose(file);

1219
	return 0;
1220 1221 1222 1223 1224

out_delete_line:
	free(line);
out_failure:
	return -1;
1225 1226
}

1227 1228
static int dso__load_vmlinux(struct dso *self, struct map *map,
			     const char *vmlinux,
1229
			     symbol_filter_t filter, int v)
1230 1231 1232 1233 1234 1235
{
	int err, fd = open(vmlinux, O_RDONLY);

	if (fd < 0)
		return -1;

1236
	err = dso__load_sym(self, map, self->long_name, fd, filter, 1, 0, v);
1237

1238 1239 1240 1241 1242
	close(fd);

	return err;
}

1243 1244
int dsos__load_kernel(const char *vmlinux, unsigned int sym_priv_size,
		      symbol_filter_t filter, int v, int use_modules)
1245 1246
{
	int err = -1;
1247 1248 1249 1250 1251 1252 1253 1254 1255 1256
	struct dso *dso = dso__new(vmlinux, sym_priv_size);

	if (dso == NULL)
		return -1;

	dso->short_name = "[kernel]";
	kernel_map = map__new2(0, dso);
	if (kernel_map == NULL)
		goto out_delete_dso;

1257
	kernel_map->map_ip = kernel_map->unmap_ip = identity__map_ip;
1258

1259 1260 1261 1262 1263 1264
	if (use_modules && dsos__load_modules(sym_priv_size) < 0) {
		fprintf(stderr, "Failed to load list of modules in use! "
				"Continuing...\n");
		use_modules = 0;
	}

1265
	if (vmlinux) {
1266
		err = dso__load_vmlinux(dso, kernel_map, vmlinux, filter, v);
1267
		if (err > 0 && use_modules) {
1268
			int syms = dsos__load_modules_sym(filter, v);
1269

1270 1271 1272 1273 1274
			if (syms < 0)
				fprintf(stderr, "Failed to read module symbols!"
					" Continuing...\n");
			else
				err += syms;
1275
		}
1276
	}
1277

1278
	if (err <= 0)
1279
		err = kernel_maps__load_kallsyms(filter, use_modules, v);
1280 1281 1282 1283

	if (err > 0) {
		struct rb_node *node = rb_first(&dso->syms);
		struct symbol *sym = rb_entry(node, struct symbol, rb_node);
1284

1285 1286 1287 1288 1289 1290
		kernel_map->start = sym->start;
		node = rb_last(&dso->syms);
		sym = rb_entry(node, struct symbol, rb_node);
		kernel_map->end = sym->end;

		dso->origin = DSO__ORIG_KERNEL;
1291
		kernel_maps__insert(kernel_map);
1292
		/*
1293 1294
		 * Now that we have all sorted out, just set the ->end of all
		 * maps:
1295
		 */
1296
		kernel_maps__fixup_end();
1297
		dsos__add(dso);
1298 1299

		if (v > 0)
1300
			kernel_maps__fprintf(stderr, v);
1301
	}
1302

1303
	return err;
1304 1305 1306 1307

out_delete_dso:
	dso__delete(dso);
	return -1;
1308 1309
}

1310 1311 1312
LIST_HEAD(dsos);
struct dso	*vdso;

1313
const char	*vmlinux_name = "vmlinux";
1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330
int		modules;

static void dsos__add(struct dso *dso)
{
	list_add_tail(&dso->node, &dsos);
}

static struct dso *dsos__find(const char *name)
{
	struct dso *pos;

	list_for_each_entry(pos, &dsos, node)
		if (strcmp(pos->name, name) == 0)
			return pos;
	return NULL;
}

1331 1332
struct dso *dsos__findnew(const char *name, unsigned int sym_priv_size,
			  bool *is_new)
1333 1334 1335
{
	struct dso *dso = dsos__find(name);

1336 1337 1338 1339 1340 1341 1342 1343
	if (!dso) {
		dso = dso__new(name, sym_priv_size);
		if (dso) {
			dsos__add(dso);
			*is_new = true;
		}
	} else
		*is_new = false;
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	return dso;
}

void dsos__fprintf(FILE *fp)
{
	struct dso *pos;

	list_for_each_entry(pos, &dsos, node)
		dso__fprintf(pos, fp);
}

1356
int load_kernel(unsigned int sym_priv_size, symbol_filter_t filter)
1357
{
1358 1359
	if (dsos__load_kernel(vmlinux_name, sym_priv_size,
			      filter, verbose, modules) <= 0)
1360 1361 1362 1363 1364 1365 1366 1367
		return -1;

	vdso = dso__new("[vdso]", 0);
	if (!vdso)
		return -1;

	dsos__add(vdso);

1368
	return 0;
1369 1370
}

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void symbol__init(void)
{
	elf_version(EV_CURRENT);
}