builtin-report.c 21.7 KB
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#include "util/util.h"
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#include "builtin.h"
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#include <libelf.h>
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#include <gelf.h>
#include <elf.h>
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#include "util/list.h"
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#include "util/cache.h"
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#include "util/rbtree.h"
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#include "perf.h"

#include "util/parse-options.h"
#include "util/parse-events.h"

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#define SHOW_KERNEL	1
#define SHOW_USER	2
#define SHOW_HV		4

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static char		const *input_name = "perf.data";
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static char		*vmlinux = NULL;
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static int		input;
static int		show_mask = SHOW_KERNEL | SHOW_USER | SHOW_HV;

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static int		dump_trace = 0;
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static int		verbose;
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static unsigned long	page_size;
static unsigned long	mmap_window = 32;

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const char *perf_event_names[] = {
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	[PERF_EVENT_MMAP]   = " PERF_EVENT_MMAP",
	[PERF_EVENT_MUNMAP] = " PERF_EVENT_MUNMAP",
	[PERF_EVENT_COMM]   = " PERF_EVENT_COMM",
};

struct ip_event {
	struct perf_event_header header;
	__u64 ip;
	__u32 pid, tid;
};
struct mmap_event {
	struct perf_event_header header;
	__u32 pid, tid;
	__u64 start;
	__u64 len;
	__u64 pgoff;
	char filename[PATH_MAX];
};
struct comm_event {
	struct perf_event_header header;
	__u32 pid,tid;
	char comm[16];
};

typedef union event_union {
	struct perf_event_header header;
	struct ip_event ip;
	struct mmap_event mmap;
	struct comm_event comm;
} event_t;

struct symbol {
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	struct rb_node		rb_node;
	__u64			start;
	__u64			end;
	char			name[0];
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};

static struct symbol *symbol__new(uint64_t start, uint64_t len, const char *name)
{
	struct symbol *self = malloc(sizeof(*self) + strlen(name) + 1);

	if (self != NULL) {
		self->start = start;
		self->end   = start + len;
		strcpy(self->name, name);
	}

	return self;
}

static void symbol__delete(struct symbol *self)
{
	free(self);
}

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);
}

struct dso {
	struct list_head node;
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	struct rb_root	 syms;
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	char		 name[0];
};

static struct dso *dso__new(const char *name)
{
	struct dso *self = malloc(sizeof(*self) + strlen(name) + 1);

	if (self != NULL) {
		strcpy(self->name, name);
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		self->syms = RB_ROOT;
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	}

	return self;
}

static void dso__delete_symbols(struct dso *self)
{
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	struct symbol *pos;
	struct rb_node *next = rb_first(&self->syms);
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	while (next) {
		pos = rb_entry(next, struct symbol, rb_node);
		next = rb_next(&pos->rb_node);
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		symbol__delete(pos);
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	}
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}

static void dso__delete(struct dso *self)
{
	dso__delete_symbols(self);
	free(self);
}

static void dso__insert_symbol(struct dso *self, struct symbol *sym)
{
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	struct rb_node **p = &self->syms.rb_node;
	struct rb_node *parent = NULL;
	const uint64_t ip = sym->start;
	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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}

static struct symbol *dso__find_symbol(struct dso *self, uint64_t ip)
{
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	struct rb_node *n;

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	if (self == NULL)
		return NULL;

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	n = self->syms.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;
		else if (ip > s->end)
			n = n->rb_right;
		else
			return s;
	}
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	return NULL;
}

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/**
 * elf_symtab__for_each_symbol - iterate thru all the symbols
 *
 * @self: struct elf_symtab instance to iterate
 * @index: uint32_t index
 * @sym: GElf_Sym iterator
 */
#define elf_symtab__for_each_symbol(syms, nr_syms, index, sym) \
	for (index = 0, gelf_getsym(syms, index, &sym);\
	     index < nr_syms; \
	     index++, gelf_getsym(syms, index, &sym))

static inline uint8_t elf_sym__type(const GElf_Sym *sym)
{
	return GELF_ST_TYPE(sym->st_info);
}

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static inline int elf_sym__is_function(const GElf_Sym *sym)
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{
	return elf_sym__type(sym) == STT_FUNC &&
	       sym->st_name != 0 &&
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	       sym->st_shndx != SHN_UNDEF &&
	       sym->st_size != 0;
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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,
				    size_t *index)
{
	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)) {
			if (index)
				*index = cnt;
			break;
		}
		++cnt;
	}

	return sec;
}

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static int dso__load_sym(struct dso *self, int fd, char *name)
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{
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	Elf_Data *symstrs;
	uint32_t nr_syms;
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	int err = -1;
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	uint32_t index;
	GElf_Ehdr ehdr;
	GElf_Shdr shdr;
	Elf_Data *syms;
	GElf_Sym sym;
	Elf_Scn *sec;
	Elf *elf;
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	int nr = 0;
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	elf = elf_begin(fd, ELF_C_READ_MMAP, NULL);
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	if (elf == NULL) {
		fprintf(stderr, "%s: cannot read %s ELF file.\n",
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			__func__, name);
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		goto out_close;
	}

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

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	sec = elf_section_by_name(elf, &ehdr, &shdr, ".symtab", NULL);
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	if (sec == NULL)
		sec = elf_section_by_name(elf, &ehdr, &shdr, ".dynsym", NULL);

	if (sec == NULL)
		goto out_elf_end;

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

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

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

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	nr_syms = shdr.sh_size / shdr.sh_entsize;
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	elf_symtab__for_each_symbol(syms, nr_syms, index, sym) {
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		struct symbol *f;

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

		gelf_getshdr(sec, &shdr);
		sym.st_value -= shdr.sh_addr - shdr.sh_offset;

		f = symbol__new(sym.st_value, sym.st_size,
				elf_sym__name(&sym, symstrs));
		if (!f)
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			goto out_elf_end;

		dso__insert_symbol(self, f);
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		nr++;
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	}

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	err = nr;
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out_elf_end:
	elf_end(elf);
out_close:
	return err;
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}

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static int dso__load(struct dso *self)
{
	int size = strlen(self->name) + sizeof("/usr/lib/debug%s.debug");
	char *name = malloc(size);
	int variant = 0;
	int ret = -1;
	int fd;

	if (!name)
		return -1;

more:
	do {
		switch (variant) {
		case 0: /* Fedora */
			snprintf(name, size, "/usr/lib/debug%s.debug", self->name);
			break;
		case 1: /* Ubuntu */
			snprintf(name, size, "/usr/lib/debug%s", self->name);
			break;
		case 2: /* Sane people */
			snprintf(name, size, "%s", self->name);
			break;

		default:
			goto out;
		}
		variant++;

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

	ret = dso__load_sym(self, fd, name);
	close(fd);

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

out:
	free(name);
	return ret;
}

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static size_t dso__fprintf(struct dso *self, FILE *fp)
{
	size_t ret = fprintf(fp, "dso: %s\n", self->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);
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		ret += symbol__fprintf(pos, fp);
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	}
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	return ret;
}

static LIST_HEAD(dsos);
static struct dso *kernel_dso;

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;
}

static struct dso *dsos__findnew(const char *name)
{
	struct dso *dso = dsos__find(name);
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	int nr;
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	if (dso == NULL) {
		dso = dso__new(name);
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		if (!dso)
			goto out_delete_dso;

		nr = dso__load(dso);
		if (nr < 0) {
			fprintf(stderr, "Failed to open: %s\n", name);
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			goto out_delete_dso;
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		}
		if (!nr) {
			fprintf(stderr,
		"Failed to find debug symbols for: %s, maybe install a debug package?\n",
					name);
		}
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		dsos__add(dso);
	}

	return dso;

out_delete_dso:
	dso__delete(dso);
	return NULL;
}

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

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

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static int hex(char ch)
{
	if ((ch >= '0') && (ch <= '9'))
		return ch - '0';
	if ((ch >= 'a') && (ch <= 'f'))
		return ch - 'a' + 10;
	if ((ch >= 'A') && (ch <= 'F'))
		return ch - 'A' + 10;
	return -1;
}

/*
 * While we find nice hex chars, build a long_val.
 * Return number of chars processed.
 */
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static int hex2long(char *ptr, unsigned long *long_val)
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{
	const char *p = ptr;
	*long_val = 0;

	while (*p) {
		const int hex_val = hex(*p);

		if (hex_val < 0)
			break;

		*long_val = (*long_val << 4) | hex_val;
		p++;
	}

	return p - ptr;
}

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static int load_kallsyms(void)
{
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	struct rb_node *nd, *prevnd;
	char *line = NULL;
	FILE *file;
	size_t n;

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	kernel_dso = dso__new("[kernel]");
	if (kernel_dso == NULL)
		return -1;

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	file = fopen("/proc/kallsyms", "r");
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	if (file == NULL)
		goto out_delete_dso;

	while (!feof(file)) {
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		unsigned long start;
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		struct symbol *sym;
		int line_len, len;
		char symbol_type;

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

		if (!line)
			goto out_delete_dso;

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		line[--line_len] = '\0'; /* \n */
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		len = hex2long(line, &start);

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

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		symbol_type = toupper(line[len]);
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		/*
		 * We're interested only in code ('T'ext)
		 */
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		if (symbol_type != 'T' && symbol_type != 'W')
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			continue;
		/*
		 * Well fix up the end later, when we have all sorted.
		 */
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		sym = symbol__new(start, 0xdead, line + len + 2);
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		if (sym == NULL)
			goto out_delete_dso;

		dso__insert_symbol(kernel_dso, sym);
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	}

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	/*
	 * Now that we have all sorted out, just set the ->end of all
	 * symbols
	 */
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	prevnd = rb_first(&kernel_dso->syms);
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	if (prevnd == NULL)
		goto out_delete_line;

	for (nd = rb_next(prevnd); nd; nd = rb_next(nd)) {
		struct symbol *prev = rb_entry(prevnd, struct symbol, rb_node),
			      *curr = rb_entry(nd, struct symbol, rb_node);

		prev->end = curr->start - 1;
		prevnd = nd;
	}

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	dsos__add(kernel_dso);
	free(line);
	fclose(file);
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	return 0;

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out_delete_line:
	free(line);
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out_delete_dso:
	dso__delete(kernel_dso);
	return -1;
}

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static int load_kernel(void)
{
	int fd, nr;

	if (!vmlinux)
		goto kallsyms;

	fd = open(vmlinux, O_RDONLY);
	if (fd < 0)
		goto kallsyms;

	kernel_dso = dso__new("[kernel]");
	if (!kernel_dso)
		goto fail_open;

	nr = dso__load_sym(kernel_dso, fd, vmlinux);

	if (nr <= 0)
		goto fail_load;

	dsos__add(kernel_dso);
	close(fd);

	return 0;

fail_load:
	dso__delete(kernel_dso);
fail_open:
	close(fd);
kallsyms:
	return load_kallsyms();
}

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struct map {
	struct list_head node;
	uint64_t	 start;
	uint64_t	 end;
	uint64_t	 pgoff;
	struct dso	 *dso;
};

static struct map *map__new(struct mmap_event *event)
{
	struct map *self = malloc(sizeof(*self));

	if (self != NULL) {
		self->start = event->start;
		self->end   = event->start + event->len;
		self->pgoff = event->pgoff;

		self->dso = dsos__findnew(event->filename);
		if (self->dso == NULL)
			goto out_delete;
	}
	return self;
out_delete:
	free(self);
	return NULL;
}

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struct thread;

static const char *thread__name(struct thread *self, char *bf, size_t size);

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struct thread {
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	struct rb_node	 rb_node;
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	struct list_head maps;
	pid_t		 pid;
	char		 *comm;
};

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static const char *thread__name(struct thread *self, char *bf, size_t size)
{
	if (self->comm)
		return self->comm;

	snprintf(bf, sizeof(bf), ":%u", self->pid);
	return bf;
}

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static struct thread *thread__new(pid_t pid)
{
	struct thread *self = malloc(sizeof(*self));

	if (self != NULL) {
		self->pid = pid;
		self->comm = NULL;
		INIT_LIST_HEAD(&self->maps);
	}

	return self;
}

static int thread__set_comm(struct thread *self, const char *comm)
{
	self->comm = strdup(comm);
	return self->comm ? 0 : -ENOMEM;
}

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static struct rb_root threads;
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static struct thread *threads__findnew(pid_t pid)
638
{
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	struct rb_node **p = &threads.rb_node;
	struct rb_node *parent = NULL;
	struct thread *th;
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	while (*p != NULL) {
		parent = *p;
		th = rb_entry(parent, struct thread, rb_node);
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		if (th->pid == pid)
			return th;
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		if (pid < th->pid)
			p = &(*p)->rb_left;
		else
			p = &(*p)->rb_right;
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	}

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	th = thread__new(pid);
	if (th != NULL) {
		rb_link_node(&th->rb_node, parent, p);
		rb_insert_color(&th->rb_node, &threads);
	}
	return th;
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}

static void thread__insert_map(struct thread *self, struct map *map)
{
	list_add_tail(&map->node, &self->maps);
}

static struct map *thread__find_map(struct thread *self, uint64_t ip)
{
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	struct map *pos;

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	if (self == NULL)
		return NULL;

	list_for_each_entry(pos, &self->maps, node)
		if (ip >= pos->start && ip <= pos->end)
			return pos;

	return NULL;
}

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/*
 * histogram, sorted on item, collects counts
 */

static struct rb_root hist;

struct hist_entry {
	struct rb_node	 rb_node;

	struct thread	 *thread;
	struct map	 *map;
	struct dso	 *dso;
	struct symbol	 *sym;
	uint64_t	 ip;
	char		 level;

	uint32_t	 count;
};

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/*
 * configurable sorting bits
 */

struct sort_entry {
	struct list_head list;

	int64_t (*cmp)(struct hist_entry *, struct hist_entry *);
	size_t	(*print)(FILE *fp, struct hist_entry *);
};

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static int64_t
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sort__thread_cmp(struct hist_entry *left, struct hist_entry *right)
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{
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	return right->thread->pid - left->thread->pid;
}

static size_t
sort__thread_print(FILE *fp, struct hist_entry *self)
{
	char bf[32];

	return fprintf(fp, "%14s ",
			thread__name(self->thread, bf, sizeof(bf)));
}
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static struct sort_entry sort_thread = {
	.cmp	= sort__thread_cmp,
	.print	= sort__thread_print,
};

static int64_t
sort__sym_cmp(struct hist_entry *left, struct hist_entry *right)
{
	uint64_t ip_l, ip_r;
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	if (left->sym == right->sym)
		return 0;

	ip_l = left->sym ? left->sym->start : left->ip;
	ip_r = right->sym ? right->sym->start : right->ip;

	return (int64_t)(ip_r - ip_l);
}

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static size_t
sort__sym_print(FILE *fp, struct hist_entry *self)
{
	size_t ret = 0;

	ret += fprintf(fp, "[%c] ", self->level);

	if (verbose)
		ret += fprintf(fp, "%#018llx ", (unsigned long long)self->ip);

	if (self->level != '.')
		ret += fprintf(fp, "%s ",
			       self->sym ? self->sym->name : "<unknown>");
	else
		ret += fprintf(fp, "%s: %s ",
			       self->dso ? self->dso->name : "<unknown>",
			       self->sym ? self->sym->name : "<unknown>");

	return ret;
}

static struct sort_entry sort_sym = {
	.cmp	= sort__sym_cmp,
	.print	= sort__sym_print,
};

static LIST_HEAD(hist_entry__sort_list);

static void setup_sorting(void)
{
	list_add_tail(&sort_thread.list, &hist_entry__sort_list);
	list_add_tail(&sort_sym.list, &hist_entry__sort_list);
}

static int64_t
hist_entry__cmp(struct hist_entry *left, struct hist_entry *right)
{
	struct sort_entry *se;
	int64_t cmp = 0;

	list_for_each_entry(se, &hist_entry__sort_list, list) {
		cmp = se->cmp(left, right);
		if (cmp)
			break;
	}

	return cmp;
}

static size_t
hist_entry__fprintf(FILE *fp, struct hist_entry *self, uint64_t total_samples)
{
	struct sort_entry *se;
	size_t ret;

	if (total_samples) {
		ret = fprintf(fp, "%5.2f%% ",
				(self->count * 100.0) / total_samples);
	} else
		ret = fprintf(fp, "%12d ", self->count);

	list_for_each_entry(se, &hist_entry__sort_list, list)
		ret += se->print(fp, self);

	ret += fprintf(fp, "\n");

	return ret;
}

/*
 * collect histogram counts
 */

820 821 822
static int
hist_entry__add(struct thread *thread, struct map *map, struct dso *dso,
		struct symbol *sym, uint64_t ip, char level)
823
{
824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852
	struct rb_node **p = &hist.rb_node;
	struct rb_node *parent = NULL;
	struct hist_entry *he;
	struct hist_entry entry = {
		.thread	= thread,
		.map	= map,
		.dso	= dso,
		.sym	= sym,
		.ip	= ip,
		.level	= level,
		.count	= 1,
	};
	int cmp;

	while (*p != NULL) {
		parent = *p;
		he = rb_entry(parent, struct hist_entry, rb_node);

		cmp = hist_entry__cmp(&entry, he);

		if (!cmp) {
			he->count++;
			return 0;
		}

		if (cmp < 0)
			p = &(*p)->rb_left;
		else
			p = &(*p)->rb_right;
853
	}
854 855 856 857 858 859 860 861 862

	he = malloc(sizeof(*he));
	if (!he)
		return -ENOMEM;
	*he = entry;
	rb_link_node(&he->rb_node, parent, p);
	rb_insert_color(&he->rb_node, &hist);

	return 0;
863 864
}

865 866 867 868 869 870 871
/*
 * reverse the map, sort on count.
 */

static struct rb_root output_hists;

static void output__insert_entry(struct hist_entry *he)
872
{
873
	struct rb_node **p = &output_hists.rb_node;
874
	struct rb_node *parent = NULL;
875
	struct hist_entry *iter;
876 877 878

	while (*p != NULL) {
		parent = *p;
879
		iter = rb_entry(parent, struct hist_entry, rb_node);
880

881
		if (he->count > iter->count)
882 883 884 885 886
			p = &(*p)->rb_left;
		else
			p = &(*p)->rb_right;
	}

887 888
	rb_link_node(&he->rb_node, parent, p);
	rb_insert_color(&he->rb_node, &output_hists);
889 890
}

891
static void output__resort(void)
892
{
893 894
	struct rb_node *next = rb_first(&hist);
	struct hist_entry *n;
895

896 897 898
	while (next) {
		n = rb_entry(next, struct hist_entry, rb_node);
		next = rb_next(&n->rb_node);
899

900 901
		rb_erase(&n->rb_node, &hist);
		output__insert_entry(n);
902 903 904
	}
}

905
static size_t output__fprintf(FILE *fp, uint64_t total_samples)
906
{
907
	struct hist_entry *pos;
908 909 910
	struct rb_node *nd;
	size_t ret = 0;

911 912 913
	for (nd = rb_first(&output_hists); nd; nd = rb_next(nd)) {
		pos = rb_entry(nd, struct hist_entry, rb_node);
		ret += hist_entry__fprintf(fp, pos, total_samples);
914 915 916 917 918
	}

	return ret;
}

919

920
static int __cmd_report(void)
921 922 923 924 925 926 927
{
	unsigned long offset = 0;
	unsigned long head = 0;
	struct stat stat;
	char *buf;
	event_t *event;
	int ret, rc = EXIT_FAILURE;
928
	uint32_t size;
I
Ingo Molnar 已提交
929
	unsigned long total = 0, total_mmap = 0, total_comm = 0, total_unknown = 0;
930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947

	input = open(input_name, O_RDONLY);
	if (input < 0) {
		perror("failed to open file");
		exit(-1);
	}

	ret = fstat(input, &stat);
	if (ret < 0) {
		perror("failed to stat file");
		exit(-1);
	}

	if (!stat.st_size) {
		fprintf(stderr, "zero-sized file, nothing to do!\n");
		exit(0);
	}

948
	if (load_kernel() < 0) {
949 950 951 952 953 954 955 956 957 958 959 960 961 962 963
		perror("failed to open kallsyms");
		return EXIT_FAILURE;
	}

remap:
	buf = (char *)mmap(NULL, page_size * mmap_window, PROT_READ,
			   MAP_SHARED, input, offset);
	if (buf == MAP_FAILED) {
		perror("failed to mmap file");
		exit(-1);
	}

more:
	event = (event_t *)(buf + head);

964 965 966 967
	size = event->header.size;
	if (!size)
		size = 8;

968 969 970 971 972 973 974 975 976 977 978 979
	if (head + event->header.size >= page_size * mmap_window) {
		unsigned long shift = page_size * (head / page_size);
		int ret;

		ret = munmap(buf, page_size * mmap_window);
		assert(ret == 0);

		offset += shift;
		head -= shift;
		goto remap;
	}

980 981 982
	size = event->header.size;
	if (!size)
		goto broken_event;
983 984 985 986 987 988

	if (event->header.misc & PERF_EVENT_MISC_OVERFLOW) {
		char level;
		int show = 0;
		struct dso *dso = NULL;
		struct thread *thread = threads__findnew(event->ip.pid);
989
		uint64_t ip = event->ip.ip;
990
		struct map *map = NULL;
991

992
		if (dump_trace) {
I
Ingo Molnar 已提交
993 994 995
			fprintf(stderr, "%p [%p]: PERF_EVENT (IP, %d): %d: %p\n",
				(void *)(offset + head),
				(void *)(long)(event->header.size),
996 997
				event->header.misc,
				event->ip.pid,
998
				(void *)(long)ip);
999 1000
		}

1001 1002 1003
		if (thread == NULL) {
			fprintf(stderr, "problem processing %d event, bailing out\n",
				event->header.type);
1004
			goto done;
1005
		}
1006 1007 1008 1009

		if (event->header.misc & PERF_EVENT_MISC_KERNEL) {
			show = SHOW_KERNEL;
			level = 'k';
1010

1011
			dso = kernel_dso;
1012

1013
		} else if (event->header.misc & PERF_EVENT_MISC_USER) {
1014

1015 1016
			show = SHOW_USER;
			level = '.';
1017 1018

			map = thread__find_map(thread, ip);
1019
			if (map != NULL) {
1020
				dso = map->dso;
1021 1022
				ip -= map->start + map->pgoff;
			}
1023

1024 1025 1026 1027 1028 1029
		} else {
			show = SHOW_HV;
			level = 'H';
		}

		if (show & show_mask) {
1030
			struct symbol *sym = dso__find_symbol(dso, ip);
1031

1032 1033 1034
			if (hist_entry__add(thread, map, dso, sym, ip, level)) {
				fprintf(stderr,
		"problem incrementing symbol count, bailing out\n");
1035
				goto done;
1036
			}
1037 1038 1039 1040 1041 1042 1043
		}
		total++;
	} else switch (event->header.type) {
	case PERF_EVENT_MMAP: {
		struct thread *thread = threads__findnew(event->mmap.pid);
		struct map *map = map__new(&event->mmap);

1044
		if (dump_trace) {
I
Ingo Molnar 已提交
1045 1046 1047
			fprintf(stderr, "%p [%p]: PERF_EVENT_MMAP: [%p(%p) @ %p]: %s\n",
				(void *)(offset + head),
				(void *)(long)(event->header.size),
1048 1049 1050
				(void *)(long)event->mmap.start,
				(void *)(long)event->mmap.len,
				(void *)(long)event->mmap.pgoff,
1051 1052
				event->mmap.filename);
		}
1053 1054
		if (thread == NULL || map == NULL) {
			fprintf(stderr, "problem processing PERF_EVENT_MMAP, bailing out\n");
1055
			goto done;
1056
		}
1057
		thread__insert_map(thread, map);
1058
		total_mmap++;
1059 1060 1061 1062 1063
		break;
	}
	case PERF_EVENT_COMM: {
		struct thread *thread = threads__findnew(event->comm.pid);

1064
		if (dump_trace) {
I
Ingo Molnar 已提交
1065 1066 1067
			fprintf(stderr, "%p [%p]: PERF_EVENT_COMM: %s:%d\n",
				(void *)(offset + head),
				(void *)(long)(event->header.size),
1068 1069
				event->comm.comm, event->comm.pid);
		}
1070
		if (thread == NULL ||
1071 1072
		    thread__set_comm(thread, event->comm.comm)) {
			fprintf(stderr, "problem processing PERF_EVENT_COMM, bailing out\n");
1073
			goto done;
1074
		}
1075
		total_comm++;
1076 1077
		break;
	}
1078
	default: {
1079
broken_event:
1080 1081 1082 1083 1084 1085
		if (dump_trace)
			fprintf(stderr, "%p [%p]: skipping unknown header type: %d\n",
					(void *)(offset + head),
					(void *)(long)(event->header.size),
					event->header.type);

1086
		total_unknown++;
1087 1088 1089 1090 1091 1092 1093 1094 1095 1096

		/*
		 * assume we lost track of the stream, check alignment, and
		 * increment a single u64 in the hope to catch on again 'soon'.
		 */

		if (unlikely(head & 7))
			head &= ~7ULL;

		size = 8;
1097
	}
1098 1099
	}

1100
	head += size;
I
Ingo Molnar 已提交
1101

1102 1103 1104 1105 1106 1107
	if (offset + head < stat.st_size)
		goto more;

	rc = EXIT_SUCCESS;
done:
	close(input);
1108 1109

	if (dump_trace) {
1110 1111 1112 1113
		fprintf(stderr, "      IP events: %10ld\n", total);
		fprintf(stderr, "    mmap events: %10ld\n", total_mmap);
		fprintf(stderr, "    comm events: %10ld\n", total_comm);
		fprintf(stderr, " unknown events: %10ld\n", total_unknown);
1114 1115 1116 1117

		return 0;
	}

1118
	if (verbose >= 2)
1119 1120
		dsos__fprintf(stdout);

1121 1122
	output__resort();
	output__fprintf(stdout, total);
1123 1124 1125 1126

	return rc;
}

1127 1128 1129 1130 1131 1132 1133 1134
static const char * const report_usage[] = {
	"perf report [<options>] <command>",
	NULL
};

static const struct option options[] = {
	OPT_STRING('i', "input", &input_name, "file",
		    "input file name"),
1135 1136
	OPT_BOOLEAN('v', "verbose", &verbose,
		    "be more verbose (show symbol address, etc)"),
1137 1138
	OPT_BOOLEAN('D', "dump-raw-trace", &dump_trace,
		    "dump raw trace in ASCII"),
1139
	OPT_STRING('k', "vmlinux", &vmlinux, "file", "vmlinux pathname"),
1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150
	OPT_END()
};

int cmd_report(int argc, const char **argv, const char *prefix)
{
	elf_version(EV_CURRENT);

	page_size = getpagesize();

	parse_options(argc, argv, options, report_usage, 0);

1151 1152
	setup_sorting();

1153 1154
	setup_pager();

1155 1156
	return __cmd_report();
}