OpenCloudOS-Kernel/tools/perf/ui/browsers/hists.c

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#include <stdio.h>
#include "../libslang.h"
#include <stdlib.h>
#include <string.h>
#include <linux/rbtree.h>
#include "../../util/evsel.h"
#include "../../util/evlist.h"
#include "../../util/hist.h"
#include "../../util/pstack.h"
#include "../../util/sort.h"
#include "../../util/util.h"
#include "../../util/top.h"
#include "../../arch/common.h"
#include "../browser.h"
#include "../helpline.h"
#include "../util.h"
#include "../ui.h"
#include "map.h"
#include "annotate.h"
struct hist_browser {
struct ui_browser b;
struct hists *hists;
struct hist_entry *he_selection;
struct map_symbol *selection;
int print_seq;
bool show_dso;
bool show_headers;
float min_pcnt;
u64 nr_non_filtered_entries;
u64 nr_callchain_rows;
};
extern void hist_browser__init_hpp(void);
static int hists__browser_title(struct hists *hists,
struct hist_browser_timer *hbt,
char *bf, size_t size);
static void hist_browser__update_nr_entries(struct hist_browser *hb);
static struct rb_node *hists__filter_entries(struct rb_node *nd,
float min_pcnt);
static bool hist_browser__has_filter(struct hist_browser *hb)
{
return hists__has_filter(hb->hists) || hb->min_pcnt;
}
perf hists browser: Fix UI bug after fold/unfold In perf hists browser, the fold/unfold stat of each hist entry is recorded but hb->nr_callchain_rows loses its value after zoom out and zoom in back. This causes a wrong row cursor range that restrict user to move down anymore. This bug can be reproduced as follows: $ perf record -g -e syscalls:* ls $ perf report Available samples ================================================================ 2 syscalls:sys_enter_mprotect <= [enter one of the entries] 2 syscalls:sys_exit_mprotect 13 syscalls:sys_enter_brk ... In the hists brower, unfold some of the items, now the cursor can reach to any rows: Children Self Command Shared Object Symbol ================================================================ - 100.00% 100.00% ls libuClibc-0.9.33.2.so [.] lstat64 - lstat64 16.67% 0x6469702e64 8.33% 0x646970 8.33% 0x617461 8.33% 0x65 - 16.67% 0.00% ls [unknown] [.]0x6469702e64 0x6469702e64 <= [cursor can reach to bottom line, everything is ok] Now, zoom back to "Available samples" and enter again: Children Self Command Shared Object Symbol ================================================================ - 100.00% 100.00% ls libuClibc-0.9.33.2.so [.] lstat64 - lstat64 16.67% 0x6469702e64 8.33% 0x646970 8.33% 0x617461 <= [cursor may stop here, can't move down anymore] 8.33% 0x65 - 16.67% 0.00% ls [unknown] [.]0x6469702e64 0x6469702e64 This patch recalculates hb->nr_callchain_rows to fix the bug. Signed-off-by: He Kuang <hekuang@huawei.com> Acked-by: Namhyung Kim <namhyung@kernel.org> Cc: Jiri Olsa <jolsa@kernel.org> Cc: Paul Mackerras <paulus@samba.org> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Wang Nan <wangnan0@huawei.com> Link: http://lkml.kernel.org/r/1426144909-18951-1-git-send-email-hekuang@huawei.com Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
2015-03-12 15:21:49 +08:00
static int hist_browser__get_folding(struct hist_browser *browser)
{
struct rb_node *nd;
struct hists *hists = browser->hists;
int unfolded_rows = 0;
for (nd = rb_first(&hists->entries);
(nd = hists__filter_entries(nd, browser->min_pcnt)) != NULL;
nd = rb_next(nd)) {
struct hist_entry *he =
rb_entry(nd, struct hist_entry, rb_node);
if (he->ms.unfolded)
unfolded_rows += he->nr_rows;
}
return unfolded_rows;
}
static u32 hist_browser__nr_entries(struct hist_browser *hb)
{
u32 nr_entries;
if (hist_browser__has_filter(hb))
nr_entries = hb->nr_non_filtered_entries;
else
nr_entries = hb->hists->nr_entries;
perf hists browser: Fix UI bug after fold/unfold In perf hists browser, the fold/unfold stat of each hist entry is recorded but hb->nr_callchain_rows loses its value after zoom out and zoom in back. This causes a wrong row cursor range that restrict user to move down anymore. This bug can be reproduced as follows: $ perf record -g -e syscalls:* ls $ perf report Available samples ================================================================ 2 syscalls:sys_enter_mprotect <= [enter one of the entries] 2 syscalls:sys_exit_mprotect 13 syscalls:sys_enter_brk ... In the hists brower, unfold some of the items, now the cursor can reach to any rows: Children Self Command Shared Object Symbol ================================================================ - 100.00% 100.00% ls libuClibc-0.9.33.2.so [.] lstat64 - lstat64 16.67% 0x6469702e64 8.33% 0x646970 8.33% 0x617461 8.33% 0x65 - 16.67% 0.00% ls [unknown] [.]0x6469702e64 0x6469702e64 <= [cursor can reach to bottom line, everything is ok] Now, zoom back to "Available samples" and enter again: Children Self Command Shared Object Symbol ================================================================ - 100.00% 100.00% ls libuClibc-0.9.33.2.so [.] lstat64 - lstat64 16.67% 0x6469702e64 8.33% 0x646970 8.33% 0x617461 <= [cursor may stop here, can't move down anymore] 8.33% 0x65 - 16.67% 0.00% ls [unknown] [.]0x6469702e64 0x6469702e64 This patch recalculates hb->nr_callchain_rows to fix the bug. Signed-off-by: He Kuang <hekuang@huawei.com> Acked-by: Namhyung Kim <namhyung@kernel.org> Cc: Jiri Olsa <jolsa@kernel.org> Cc: Paul Mackerras <paulus@samba.org> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Wang Nan <wangnan0@huawei.com> Link: http://lkml.kernel.org/r/1426144909-18951-1-git-send-email-hekuang@huawei.com Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
2015-03-12 15:21:49 +08:00
hb->nr_callchain_rows = hist_browser__get_folding(hb);
return nr_entries + hb->nr_callchain_rows;
}
static void hist_browser__update_rows(struct hist_browser *hb)
{
struct ui_browser *browser = &hb->b;
u16 header_offset = hb->show_headers ? 1 : 0, index_row;
browser->rows = browser->height - header_offset;
/*
* Verify if we were at the last line and that line isn't
* visibe because we now show the header line(s).
*/
index_row = browser->index - browser->top_idx;
if (index_row >= browser->rows)
browser->index -= index_row - browser->rows + 1;
}
static void hist_browser__refresh_dimensions(struct ui_browser *browser)
{
struct hist_browser *hb = container_of(browser, struct hist_browser, b);
/* 3 == +/- toggle symbol before actual hist_entry rendering */
browser->width = 3 + (hists__sort_list_width(hb->hists) + sizeof("[k]"));
/*
* FIXME: Just keeping existing behaviour, but this really should be
* before updating browser->width, as it will invalidate the
* calculation above. Fix this and the fallout in another
* changeset.
*/
ui_browser__refresh_dimensions(browser);
hist_browser__update_rows(hb);
}
static void hist_browser__gotorc(struct hist_browser *browser, int row, int column)
{
u16 header_offset = browser->show_headers ? 1 : 0;
ui_browser__gotorc(&browser->b, row + header_offset, column);
}
static void hist_browser__reset(struct hist_browser *browser)
{
/*
* The hists__remove_entry_filter() already folds non-filtered
* entries so we can assume it has 0 callchain rows.
*/
browser->nr_callchain_rows = 0;
hist_browser__update_nr_entries(browser);
browser->b.nr_entries = hist_browser__nr_entries(browser);
hist_browser__refresh_dimensions(&browser->b);
ui_browser__reset_index(&browser->b);
}
static char tree__folded_sign(bool unfolded)
{
return unfolded ? '-' : '+';
}
static char map_symbol__folded(const struct map_symbol *ms)
{
return ms->has_children ? tree__folded_sign(ms->unfolded) : ' ';
}
static char hist_entry__folded(const struct hist_entry *he)
{
return map_symbol__folded(&he->ms);
}
static char callchain_list__folded(const struct callchain_list *cl)
{
return map_symbol__folded(&cl->ms);
}
static void map_symbol__set_folding(struct map_symbol *ms, bool unfold)
{
ms->unfolded = unfold ? ms->has_children : false;
}
static int callchain_node__count_rows_rb_tree(struct callchain_node *node)
{
int n = 0;
struct rb_node *nd;
for (nd = rb_first(&node->rb_root); nd; nd = rb_next(nd)) {
struct callchain_node *child = rb_entry(nd, struct callchain_node, rb_node);
struct callchain_list *chain;
char folded_sign = ' '; /* No children */
list_for_each_entry(chain, &child->val, list) {
++n;
/* We need this because we may not have children */
folded_sign = callchain_list__folded(chain);
if (folded_sign == '+')
break;
}
if (folded_sign == '-') /* Have children and they're unfolded */
n += callchain_node__count_rows_rb_tree(child);
}
return n;
}
static int callchain_node__count_rows(struct callchain_node *node)
{
struct callchain_list *chain;
bool unfolded = false;
int n = 0;
list_for_each_entry(chain, &node->val, list) {
++n;
unfolded = chain->ms.unfolded;
}
if (unfolded)
n += callchain_node__count_rows_rb_tree(node);
return n;
}
static int callchain__count_rows(struct rb_root *chain)
{
struct rb_node *nd;
int n = 0;
for (nd = rb_first(chain); nd; nd = rb_next(nd)) {
struct callchain_node *node = rb_entry(nd, struct callchain_node, rb_node);
n += callchain_node__count_rows(node);
}
return n;
}
static bool map_symbol__toggle_fold(struct map_symbol *ms)
{
if (!ms)
return false;
if (!ms->has_children)
return false;
ms->unfolded = !ms->unfolded;
return true;
}
static void callchain_node__init_have_children_rb_tree(struct callchain_node *node)
{
struct rb_node *nd = rb_first(&node->rb_root);
for (nd = rb_first(&node->rb_root); nd; nd = rb_next(nd)) {
struct callchain_node *child = rb_entry(nd, struct callchain_node, rb_node);
struct callchain_list *chain;
bool first = true;
list_for_each_entry(chain, &child->val, list) {
if (first) {
first = false;
chain->ms.has_children = chain->list.next != &child->val ||
!RB_EMPTY_ROOT(&child->rb_root);
} else
chain->ms.has_children = chain->list.next == &child->val &&
!RB_EMPTY_ROOT(&child->rb_root);
}
callchain_node__init_have_children_rb_tree(child);
}
}
static void callchain_node__init_have_children(struct callchain_node *node,
bool has_sibling)
{
struct callchain_list *chain;
chain = list_entry(node->val.next, struct callchain_list, list);
chain->ms.has_children = has_sibling;
if (!list_empty(&node->val)) {
chain = list_entry(node->val.prev, struct callchain_list, list);
chain->ms.has_children = !RB_EMPTY_ROOT(&node->rb_root);
}
callchain_node__init_have_children_rb_tree(node);
}
static void callchain__init_have_children(struct rb_root *root)
{
struct rb_node *nd = rb_first(root);
bool has_sibling = nd && rb_next(nd);
for (nd = rb_first(root); nd; nd = rb_next(nd)) {
struct callchain_node *node = rb_entry(nd, struct callchain_node, rb_node);
callchain_node__init_have_children(node, has_sibling);
}
}
static void hist_entry__init_have_children(struct hist_entry *he)
{
if (!he->init_have_children) {
he->ms.has_children = !RB_EMPTY_ROOT(&he->sorted_chain);
callchain__init_have_children(&he->sorted_chain);
he->init_have_children = true;
}
}
static bool hist_browser__toggle_fold(struct hist_browser *browser)
{
if (map_symbol__toggle_fold(browser->selection)) {
struct hist_entry *he = browser->he_selection;
hist_entry__init_have_children(he);
browser->b.nr_entries -= he->nr_rows;
browser->nr_callchain_rows -= he->nr_rows;
if (he->ms.unfolded)
he->nr_rows = callchain__count_rows(&he->sorted_chain);
else
he->nr_rows = 0;
browser->b.nr_entries += he->nr_rows;
browser->nr_callchain_rows += he->nr_rows;
return true;
}
/* If it doesn't have children, no toggling performed */
return false;
}
static int callchain_node__set_folding_rb_tree(struct callchain_node *node, bool unfold)
{
int n = 0;
struct rb_node *nd;
for (nd = rb_first(&node->rb_root); nd; nd = rb_next(nd)) {
struct callchain_node *child = rb_entry(nd, struct callchain_node, rb_node);
struct callchain_list *chain;
bool has_children = false;
list_for_each_entry(chain, &child->val, list) {
++n;
map_symbol__set_folding(&chain->ms, unfold);
has_children = chain->ms.has_children;
}
if (has_children)
n += callchain_node__set_folding_rb_tree(child, unfold);
}
return n;
}
static int callchain_node__set_folding(struct callchain_node *node, bool unfold)
{
struct callchain_list *chain;
bool has_children = false;
int n = 0;
list_for_each_entry(chain, &node->val, list) {
++n;
map_symbol__set_folding(&chain->ms, unfold);
has_children = chain->ms.has_children;
}
if (has_children)
n += callchain_node__set_folding_rb_tree(node, unfold);
return n;
}
static int callchain__set_folding(struct rb_root *chain, bool unfold)
{
struct rb_node *nd;
int n = 0;
for (nd = rb_first(chain); nd; nd = rb_next(nd)) {
struct callchain_node *node = rb_entry(nd, struct callchain_node, rb_node);
n += callchain_node__set_folding(node, unfold);
}
return n;
}
static void hist_entry__set_folding(struct hist_entry *he, bool unfold)
{
hist_entry__init_have_children(he);
map_symbol__set_folding(&he->ms, unfold);
if (he->ms.has_children) {
int n = callchain__set_folding(&he->sorted_chain, unfold);
he->nr_rows = unfold ? n : 0;
} else
he->nr_rows = 0;
}
static void
__hist_browser__set_folding(struct hist_browser *browser, bool unfold)
{
struct rb_node *nd;
struct hists *hists = browser->hists;
for (nd = rb_first(&hists->entries);
(nd = hists__filter_entries(nd, browser->min_pcnt)) != NULL;
nd = rb_next(nd)) {
struct hist_entry *he = rb_entry(nd, struct hist_entry, rb_node);
hist_entry__set_folding(he, unfold);
browser->nr_callchain_rows += he->nr_rows;
}
}
static void hist_browser__set_folding(struct hist_browser *browser, bool unfold)
{
browser->nr_callchain_rows = 0;
__hist_browser__set_folding(browser, unfold);
browser->b.nr_entries = hist_browser__nr_entries(browser);
/* Go to the start, we may be way after valid entries after a collapse */
ui_browser__reset_index(&browser->b);
}
static void ui_browser__warn_lost_events(struct ui_browser *browser)
{
ui_browser__warning(browser, 4,
"Events are being lost, check IO/CPU overload!\n\n"
"You may want to run 'perf' using a RT scheduler policy:\n\n"
" perf top -r 80\n\n"
"Or reduce the sampling frequency.");
}
static int hist_browser__run(struct hist_browser *browser,
struct hist_browser_timer *hbt)
{
int key;
char title[160];
int delay_secs = hbt ? hbt->refresh : 0;
browser->b.entries = &browser->hists->entries;
browser->b.nr_entries = hist_browser__nr_entries(browser);
hists__browser_title(browser->hists, hbt, title, sizeof(title));
if (ui_browser__show(&browser->b, title,
"Press '?' for help on key bindings") < 0)
return -1;
while (1) {
key = ui_browser__run(&browser->b, delay_secs);
switch (key) {
case K_TIMER: {
u64 nr_entries;
hbt->timer(hbt->arg);
if (hist_browser__has_filter(browser))
hist_browser__update_nr_entries(browser);
nr_entries = hist_browser__nr_entries(browser);
ui_browser__update_nr_entries(&browser->b, nr_entries);
if (browser->hists->stats.nr_lost_warned !=
browser->hists->stats.nr_events[PERF_RECORD_LOST]) {
browser->hists->stats.nr_lost_warned =
browser->hists->stats.nr_events[PERF_RECORD_LOST];
ui_browser__warn_lost_events(&browser->b);
}
hists__browser_title(browser->hists,
hbt, title, sizeof(title));
ui_browser__show_title(&browser->b, title);
continue;
}
case 'D': { /* Debug */
static int seq;
struct hist_entry *h = rb_entry(browser->b.top,
struct hist_entry, rb_node);
ui_helpline__pop();
2014-07-01 22:07:54 +08:00
ui_helpline__fpush("%d: nr_ent=(%d,%d), rows=%d, idx=%d, fve: idx=%d, row_off=%d, nrows=%d",
seq++, browser->b.nr_entries,
browser->hists->nr_entries,
2014-07-01 22:07:54 +08:00
browser->b.rows,
browser->b.index,
browser->b.top_idx,
h->row_offset, h->nr_rows);
}
break;
case 'C':
/* Collapse the whole world. */
hist_browser__set_folding(browser, false);
break;
case 'E':
/* Expand the whole world. */
hist_browser__set_folding(browser, true);
break;
case 'H':
browser->show_headers = !browser->show_headers;
hist_browser__update_rows(browser);
break;
case K_ENTER:
if (hist_browser__toggle_fold(browser))
break;
/* fall thru */
default:
goto out;
}
}
out:
ui_browser__hide(&browser->b);
return key;
}
struct callchain_print_arg {
/* for hists browser */
off_t row_offset;
bool is_current_entry;
/* for file dump */
FILE *fp;
int printed;
};
typedef void (*print_callchain_entry_fn)(struct hist_browser *browser,
struct callchain_list *chain,
const char *str, int offset,
unsigned short row,
struct callchain_print_arg *arg);
static void hist_browser__show_callchain_entry(struct hist_browser *browser,
struct callchain_list *chain,
const char *str, int offset,
unsigned short row,
struct callchain_print_arg *arg)
{
int color, width;
char folded_sign = callchain_list__folded(chain);
color = HE_COLORSET_NORMAL;
width = browser->b.width - (offset + 2);
if (ui_browser__is_current_entry(&browser->b, row)) {
browser->selection = &chain->ms;
color = HE_COLORSET_SELECTED;
arg->is_current_entry = true;
}
ui_browser__set_color(&browser->b, color);
hist_browser__gotorc(browser, row, 0);
slsmg_write_nstring(" ", offset);
slsmg_printf("%c ", folded_sign);
slsmg_write_nstring(str, width);
}
static void hist_browser__fprintf_callchain_entry(struct hist_browser *b __maybe_unused,
struct callchain_list *chain,
const char *str, int offset,
unsigned short row __maybe_unused,
struct callchain_print_arg *arg)
{
char folded_sign = callchain_list__folded(chain);
arg->printed += fprintf(arg->fp, "%*s%c %s\n", offset, " ",
folded_sign, str);
}
typedef bool (*check_output_full_fn)(struct hist_browser *browser,
unsigned short row);
static bool hist_browser__check_output_full(struct hist_browser *browser,
unsigned short row)
{
return browser->b.rows == row;
}
static bool hist_browser__check_dump_full(struct hist_browser *browser __maybe_unused,
unsigned short row __maybe_unused)
{
return false;
}
#define LEVEL_OFFSET_STEP 3
static int hist_browser__show_callchain(struct hist_browser *browser,
struct rb_root *root, int level,
unsigned short row, u64 total,
print_callchain_entry_fn print,
struct callchain_print_arg *arg,
check_output_full_fn is_output_full)
{
struct rb_node *node;
int first_row = row, offset = level * LEVEL_OFFSET_STEP;
u64 new_total;
bool need_percent;
node = rb_first(root);
need_percent = node && rb_next(node);
while (node) {
struct callchain_node *child = rb_entry(node, struct callchain_node, rb_node);
struct rb_node *next = rb_next(node);
u64 cumul = callchain_cumul_hits(child);
struct callchain_list *chain;
char folded_sign = ' ';
int first = true;
int extra_offset = 0;
list_for_each_entry(chain, &child->val, list) {
char bf[1024], *alloc_str;
const char *str;
bool was_first = first;
if (first)
first = false;
else if (need_percent)
extra_offset = LEVEL_OFFSET_STEP;
folded_sign = callchain_list__folded(chain);
if (arg->row_offset != 0) {
arg->row_offset--;
goto do_next;
}
alloc_str = NULL;
str = callchain_list__sym_name(chain, bf, sizeof(bf),
browser->show_dso);
if (was_first && need_percent) {
double percent = cumul * 100.0 / total;
if (asprintf(&alloc_str, "%2.2f%% %s", percent, str) < 0)
str = "Not enough memory!";
else
str = alloc_str;
}
print(browser, chain, str, offset + extra_offset, row, arg);
free(alloc_str);
if (is_output_full(browser, ++row))
goto out;
do_next:
if (folded_sign == '+')
break;
}
if (folded_sign == '-') {
const int new_level = level + (extra_offset ? 2 : 1);
if (callchain_param.mode == CHAIN_GRAPH_REL)
new_total = child->children_hit;
else
new_total = total;
row += hist_browser__show_callchain(browser, &child->rb_root,
new_level, row, new_total,
print, arg, is_output_full);
}
if (is_output_full(browser, row))
break;
node = next;
}
out:
return row - first_row;
}
struct hpp_arg {
struct ui_browser *b;
char folded_sign;
bool current_entry;
};
static int __hpp__slsmg_color_printf(struct perf_hpp *hpp, const char *fmt, ...)
{
struct hpp_arg *arg = hpp->ptr;
int ret, len;
va_list args;
double percent;
va_start(args, fmt);
len = va_arg(args, int);
percent = va_arg(args, double);
va_end(args);
ui_browser__set_percent_color(arg->b, percent, arg->current_entry);
ret = scnprintf(hpp->buf, hpp->size, fmt, len, percent);
slsmg_printf("%s", hpp->buf);
advance_hpp(hpp, ret);
return ret;
}
#define __HPP_COLOR_PERCENT_FN(_type, _field) \
static u64 __hpp_get_##_field(struct hist_entry *he) \
{ \
return he->stat._field; \
} \
\
static int \
hist_browser__hpp_color_##_type(struct perf_hpp_fmt *fmt, \
struct perf_hpp *hpp, \
struct hist_entry *he) \
{ \
return hpp__fmt(fmt, hpp, he, __hpp_get_##_field, " %*.2f%%", \
__hpp__slsmg_color_printf, true); \
}
#define __HPP_COLOR_ACC_PERCENT_FN(_type, _field) \
static u64 __hpp_get_acc_##_field(struct hist_entry *he) \
{ \
return he->stat_acc->_field; \
} \
\
static int \
hist_browser__hpp_color_##_type(struct perf_hpp_fmt *fmt, \
struct perf_hpp *hpp, \
struct hist_entry *he) \
{ \
if (!symbol_conf.cumulate_callchain) { \
int len = fmt->user_len ?: fmt->len; \
int ret = scnprintf(hpp->buf, hpp->size, \
"%*s", len, "N/A"); \
slsmg_printf("%s", hpp->buf); \
\
return ret; \
} \
return hpp__fmt(fmt, hpp, he, __hpp_get_acc_##_field, \
" %*.2f%%", __hpp__slsmg_color_printf, true); \
}
__HPP_COLOR_PERCENT_FN(overhead, period)
__HPP_COLOR_PERCENT_FN(overhead_sys, period_sys)
__HPP_COLOR_PERCENT_FN(overhead_us, period_us)
__HPP_COLOR_PERCENT_FN(overhead_guest_sys, period_guest_sys)
__HPP_COLOR_PERCENT_FN(overhead_guest_us, period_guest_us)
__HPP_COLOR_ACC_PERCENT_FN(overhead_acc, period)
#undef __HPP_COLOR_PERCENT_FN
#undef __HPP_COLOR_ACC_PERCENT_FN
void hist_browser__init_hpp(void)
{
perf_hpp__format[PERF_HPP__OVERHEAD].color =
hist_browser__hpp_color_overhead;
perf_hpp__format[PERF_HPP__OVERHEAD_SYS].color =
hist_browser__hpp_color_overhead_sys;
perf_hpp__format[PERF_HPP__OVERHEAD_US].color =
hist_browser__hpp_color_overhead_us;
perf_hpp__format[PERF_HPP__OVERHEAD_GUEST_SYS].color =
hist_browser__hpp_color_overhead_guest_sys;
perf_hpp__format[PERF_HPP__OVERHEAD_GUEST_US].color =
hist_browser__hpp_color_overhead_guest_us;
perf_hpp__format[PERF_HPP__OVERHEAD_ACC].color =
hist_browser__hpp_color_overhead_acc;
}
static int hist_browser__show_entry(struct hist_browser *browser,
struct hist_entry *entry,
unsigned short row)
{
char s[256];
int printed = 0;
int width = browser->b.width;
char folded_sign = ' ';
bool current_entry = ui_browser__is_current_entry(&browser->b, row);
off_t row_offset = entry->row_offset;
bool first = true;
struct perf_hpp_fmt *fmt;
if (current_entry) {
browser->he_selection = entry;
browser->selection = &entry->ms;
}
if (symbol_conf.use_callchain) {
hist_entry__init_have_children(entry);
folded_sign = hist_entry__folded(entry);
}
if (row_offset == 0) {
struct hpp_arg arg = {
.b = &browser->b,
.folded_sign = folded_sign,
.current_entry = current_entry,
};
struct perf_hpp hpp = {
.buf = s,
.size = sizeof(s),
.ptr = &arg,
};
hist_browser__gotorc(browser, row, 0);
perf_hpp__for_each_format(fmt) {
if (perf_hpp__should_skip(fmt))
continue;
if (current_entry && browser->b.navkeypressed) {
ui_browser__set_color(&browser->b,
HE_COLORSET_SELECTED);
} else {
ui_browser__set_color(&browser->b,
HE_COLORSET_NORMAL);
}
if (first) {
if (symbol_conf.use_callchain) {
slsmg_printf("%c ", folded_sign);
width -= 2;
}
first = false;
} else {
slsmg_printf(" ");
width -= 2;
}
if (fmt->color) {
width -= fmt->color(fmt, &hpp, entry);
} else {
width -= fmt->entry(fmt, &hpp, entry);
slsmg_printf("%s", s);
}
}
/* The scroll bar isn't being used */
if (!browser->b.navkeypressed)
width += 1;
slsmg_write_nstring("", width);
++row;
++printed;
} else
--row_offset;
2014-07-01 22:07:54 +08:00
if (folded_sign == '-' && row != browser->b.rows) {
u64 total = hists__total_period(entry->hists);
struct callchain_print_arg arg = {
.row_offset = row_offset,
.is_current_entry = current_entry,
};
if (callchain_param.mode == CHAIN_GRAPH_REL) {
if (symbol_conf.cumulate_callchain)
total = entry->stat_acc->period;
else
total = entry->stat.period;
}
printed += hist_browser__show_callchain(browser,
&entry->sorted_chain, 1, row, total,
hist_browser__show_callchain_entry, &arg,
hist_browser__check_output_full);
if (arg.is_current_entry)
browser->he_selection = entry;
}
return printed;
}
static int advance_hpp_check(struct perf_hpp *hpp, int inc)
{
advance_hpp(hpp, inc);
return hpp->size <= 0;
}
static int hists__scnprintf_headers(char *buf, size_t size, struct hists *hists)
{
struct perf_hpp dummy_hpp = {
.buf = buf,
.size = size,
};
struct perf_hpp_fmt *fmt;
size_t ret = 0;
if (symbol_conf.use_callchain) {
ret = scnprintf(buf, size, " ");
if (advance_hpp_check(&dummy_hpp, ret))
return ret;
}
perf_hpp__for_each_format(fmt) {
if (perf_hpp__should_skip(fmt))
continue;
ret = fmt->header(fmt, &dummy_hpp, hists_to_evsel(hists));
if (advance_hpp_check(&dummy_hpp, ret))
break;
ret = scnprintf(dummy_hpp.buf, dummy_hpp.size, " ");
if (advance_hpp_check(&dummy_hpp, ret))
break;
}
return ret;
}
static void hist_browser__show_headers(struct hist_browser *browser)
{
char headers[1024];
hists__scnprintf_headers(headers, sizeof(headers), browser->hists);
ui_browser__gotorc(&browser->b, 0, 0);
ui_browser__set_color(&browser->b, HE_COLORSET_ROOT);
slsmg_write_nstring(headers, browser->b.width + 1);
}
static void ui_browser__hists_init_top(struct ui_browser *browser)
{
if (browser->top == NULL) {
struct hist_browser *hb;
hb = container_of(browser, struct hist_browser, b);
browser->top = rb_first(&hb->hists->entries);
}
}
static unsigned int hist_browser__refresh(struct ui_browser *browser)
{
unsigned row = 0;
u16 header_offset = 0;
struct rb_node *nd;
struct hist_browser *hb = container_of(browser, struct hist_browser, b);
if (hb->show_headers) {
hist_browser__show_headers(hb);
header_offset = 1;
}
ui_browser__hists_init_top(browser);
for (nd = browser->top; nd; nd = rb_next(nd)) {
struct hist_entry *h = rb_entry(nd, struct hist_entry, rb_node);
float percent;
if (h->filtered)
continue;
percent = hist_entry__get_percent_limit(h);
if (percent < hb->min_pcnt)
continue;
row += hist_browser__show_entry(hb, h, row);
2014-07-01 22:07:54 +08:00
if (row == browser->rows)
break;
}
return row + header_offset;
}
static struct rb_node *hists__filter_entries(struct rb_node *nd,
float min_pcnt)
{
while (nd != NULL) {
struct hist_entry *h = rb_entry(nd, struct hist_entry, rb_node);
float percent = hist_entry__get_percent_limit(h);
if (!h->filtered && percent >= min_pcnt)
return nd;
nd = rb_next(nd);
}
return NULL;
}
static struct rb_node *hists__filter_prev_entries(struct rb_node *nd,
float min_pcnt)
{
while (nd != NULL) {
struct hist_entry *h = rb_entry(nd, struct hist_entry, rb_node);
float percent = hist_entry__get_percent_limit(h);
if (!h->filtered && percent >= min_pcnt)
return nd;
nd = rb_prev(nd);
}
return NULL;
}
static void ui_browser__hists_seek(struct ui_browser *browser,
off_t offset, int whence)
{
struct hist_entry *h;
struct rb_node *nd;
bool first = true;
struct hist_browser *hb;
hb = container_of(browser, struct hist_browser, b);
if (browser->nr_entries == 0)
return;
ui_browser__hists_init_top(browser);
switch (whence) {
case SEEK_SET:
nd = hists__filter_entries(rb_first(browser->entries),
hb->min_pcnt);
break;
case SEEK_CUR:
nd = browser->top;
goto do_offset;
case SEEK_END:
nd = hists__filter_prev_entries(rb_last(browser->entries),
hb->min_pcnt);
first = false;
break;
default:
return;
}
/*
* Moves not relative to the first visible entry invalidates its
* row_offset:
*/
h = rb_entry(browser->top, struct hist_entry, rb_node);
h->row_offset = 0;
/*
* Here we have to check if nd is expanded (+), if it is we can't go
* the next top level hist_entry, instead we must compute an offset of
* what _not_ to show and not change the first visible entry.
*
* This offset increments when we are going from top to bottom and
* decreases when we're going from bottom to top.
*
* As we don't have backpointers to the top level in the callchains
* structure, we need to always print the whole hist_entry callchain,
* skipping the first ones that are before the first visible entry
* and stop when we printed enough lines to fill the screen.
*/
do_offset:
if (offset > 0) {
do {
h = rb_entry(nd, struct hist_entry, rb_node);
if (h->ms.unfolded) {
u16 remaining = h->nr_rows - h->row_offset;
if (offset > remaining) {
offset -= remaining;
h->row_offset = 0;
} else {
h->row_offset += offset;
offset = 0;
browser->top = nd;
break;
}
}
nd = hists__filter_entries(rb_next(nd), hb->min_pcnt);
if (nd == NULL)
break;
--offset;
browser->top = nd;
} while (offset != 0);
} else if (offset < 0) {
while (1) {
h = rb_entry(nd, struct hist_entry, rb_node);
if (h->ms.unfolded) {
if (first) {
if (-offset > h->row_offset) {
offset += h->row_offset;
h->row_offset = 0;
} else {
h->row_offset += offset;
offset = 0;
browser->top = nd;
break;
}
} else {
if (-offset > h->nr_rows) {
offset += h->nr_rows;
h->row_offset = 0;
} else {
h->row_offset = h->nr_rows + offset;
offset = 0;
browser->top = nd;
break;
}
}
}
nd = hists__filter_prev_entries(rb_prev(nd),
hb->min_pcnt);
if (nd == NULL)
break;
++offset;
browser->top = nd;
if (offset == 0) {
/*
* Last unfiltered hist_entry, check if it is
* unfolded, if it is then we should have
* row_offset at its last entry.
*/
h = rb_entry(nd, struct hist_entry, rb_node);
if (h->ms.unfolded)
h->row_offset = h->nr_rows;
break;
}
first = false;
}
} else {
browser->top = nd;
h = rb_entry(nd, struct hist_entry, rb_node);
h->row_offset = 0;
}
}
static int hist_browser__fprintf_callchain(struct hist_browser *browser,
struct hist_entry *he, FILE *fp)
{
u64 total = hists__total_period(he->hists);
struct callchain_print_arg arg = {
.fp = fp,
};
if (symbol_conf.cumulate_callchain)
total = he->stat_acc->period;
hist_browser__show_callchain(browser, &he->sorted_chain, 1, 0, total,
hist_browser__fprintf_callchain_entry, &arg,
hist_browser__check_dump_full);
return arg.printed;
}
static int hist_browser__fprintf_entry(struct hist_browser *browser,
struct hist_entry *he, FILE *fp)
{
char s[8192];
int printed = 0;
char folded_sign = ' ';
struct perf_hpp hpp = {
.buf = s,
.size = sizeof(s),
};
struct perf_hpp_fmt *fmt;
bool first = true;
int ret;
if (symbol_conf.use_callchain)
folded_sign = hist_entry__folded(he);
if (symbol_conf.use_callchain)
printed += fprintf(fp, "%c ", folded_sign);
perf_hpp__for_each_format(fmt) {
if (perf_hpp__should_skip(fmt))
continue;
if (!first) {
ret = scnprintf(hpp.buf, hpp.size, " ");
advance_hpp(&hpp, ret);
} else
first = false;
ret = fmt->entry(fmt, &hpp, he);
advance_hpp(&hpp, ret);
}
printed += fprintf(fp, "%s\n", rtrim(s));
if (folded_sign == '-')
printed += hist_browser__fprintf_callchain(browser, he, fp);
return printed;
}
static int hist_browser__fprintf(struct hist_browser *browser, FILE *fp)
{
struct rb_node *nd = hists__filter_entries(rb_first(browser->b.entries),
browser->min_pcnt);
int printed = 0;
while (nd) {
struct hist_entry *h = rb_entry(nd, struct hist_entry, rb_node);
printed += hist_browser__fprintf_entry(browser, h, fp);
nd = hists__filter_entries(rb_next(nd), browser->min_pcnt);
}
return printed;
}
static int hist_browser__dump(struct hist_browser *browser)
{
char filename[64];
FILE *fp;
while (1) {
scnprintf(filename, sizeof(filename), "perf.hist.%d", browser->print_seq);
if (access(filename, F_OK))
break;
/*
* XXX: Just an arbitrary lazy upper limit
*/
if (++browser->print_seq == 8192) {
ui_helpline__fpush("Too many perf.hist.N files, nothing written!");
return -1;
}
}
fp = fopen(filename, "w");
if (fp == NULL) {
char bf[64];
const char *err = strerror_r(errno, bf, sizeof(bf));
ui_helpline__fpush("Couldn't write to %s: %s", filename, err);
return -1;
}
++browser->print_seq;
hist_browser__fprintf(browser, fp);
fclose(fp);
ui_helpline__fpush("%s written!", filename);
return 0;
}
static struct hist_browser *hist_browser__new(struct hists *hists)
{
struct hist_browser *browser = zalloc(sizeof(*browser));
if (browser) {
browser->hists = hists;
browser->b.refresh = hist_browser__refresh;
browser->b.refresh_dimensions = hist_browser__refresh_dimensions;
browser->b.seek = ui_browser__hists_seek;
browser->b.use_navkeypressed = true;
browser->show_headers = symbol_conf.show_hist_headers;
}
return browser;
}
static void hist_browser__delete(struct hist_browser *browser)
{
free(browser);
}
static struct hist_entry *hist_browser__selected_entry(struct hist_browser *browser)
{
return browser->he_selection;
}
static struct thread *hist_browser__selected_thread(struct hist_browser *browser)
{
return browser->he_selection->thread;
}
/* Check whether the browser is for 'top' or 'report' */
static inline bool is_report_browser(void *timer)
{
return timer == NULL;
}
static int hists__browser_title(struct hists *hists,
struct hist_browser_timer *hbt,
char *bf, size_t size)
{
char unit;
int printed;
const struct dso *dso = hists->dso_filter;
const struct thread *thread = hists->thread_filter;
unsigned long nr_samples = hists->stats.nr_events[PERF_RECORD_SAMPLE];
u64 nr_events = hists->stats.total_period;
struct perf_evsel *evsel = hists_to_evsel(hists);
const char *ev_name = perf_evsel__name(evsel);
char buf[512];
size_t buflen = sizeof(buf);
if (symbol_conf.filter_relative) {
nr_samples = hists->stats.nr_non_filtered_samples;
nr_events = hists->stats.total_non_filtered_period;
}
if (perf_evsel__is_group_event(evsel)) {
struct perf_evsel *pos;
perf_evsel__group_desc(evsel, buf, buflen);
ev_name = buf;
for_each_group_member(pos, evsel) {
struct hists *pos_hists = evsel__hists(pos);
if (symbol_conf.filter_relative) {
nr_samples += pos_hists->stats.nr_non_filtered_samples;
nr_events += pos_hists->stats.total_non_filtered_period;
} else {
nr_samples += pos_hists->stats.nr_events[PERF_RECORD_SAMPLE];
nr_events += pos_hists->stats.total_period;
}
}
}
nr_samples = convert_unit(nr_samples, &unit);
printed = scnprintf(bf, size,
"Samples: %lu%c of event '%s', Event count (approx.): %" PRIu64,
nr_samples, unit, ev_name, nr_events);
if (hists->uid_filter_str)
printed += snprintf(bf + printed, size - printed,
", UID: %s", hists->uid_filter_str);
if (thread)
printed += scnprintf(bf + printed, size - printed,
", Thread: %s(%d)",
(thread->comm_set ? thread__comm_str(thread) : ""),
thread->tid);
if (dso)
printed += scnprintf(bf + printed, size - printed,
", DSO: %s", dso->short_name);
if (!is_report_browser(hbt)) {
struct perf_top *top = hbt->arg;
if (top->zero)
printed += scnprintf(bf + printed, size - printed, " [z]");
}
return printed;
}
static inline void free_popup_options(char **options, int n)
{
int i;
for (i = 0; i < n; ++i)
zfree(&options[i]);
}
/*
* Only runtime switching of perf data file will make "input_name" point
* to a malloced buffer. So add "is_input_name_malloced" flag to decide
* whether we need to call free() for current "input_name" during the switch.
*/
static bool is_input_name_malloced = false;
static int switch_data_file(void)
{
char *pwd, *options[32], *abs_path[32], *tmp;
DIR *pwd_dir;
int nr_options = 0, choice = -1, ret = -1;
struct dirent *dent;
pwd = getenv("PWD");
if (!pwd)
return ret;
pwd_dir = opendir(pwd);
if (!pwd_dir)
return ret;
memset(options, 0, sizeof(options));
memset(options, 0, sizeof(abs_path));
while ((dent = readdir(pwd_dir))) {
char path[PATH_MAX];
u64 magic;
char *name = dent->d_name;
FILE *file;
if (!(dent->d_type == DT_REG))
continue;
snprintf(path, sizeof(path), "%s/%s", pwd, name);
file = fopen(path, "r");
if (!file)
continue;
if (fread(&magic, 1, 8, file) < 8)
goto close_file_and_continue;
if (is_perf_magic(magic)) {
options[nr_options] = strdup(name);
if (!options[nr_options])
goto close_file_and_continue;
abs_path[nr_options] = strdup(path);
if (!abs_path[nr_options]) {
zfree(&options[nr_options]);
ui__warning("Can't search all data files due to memory shortage.\n");
fclose(file);
break;
}
nr_options++;
}
close_file_and_continue:
fclose(file);
if (nr_options >= 32) {
ui__warning("Too many perf data files in PWD!\n"
"Only the first 32 files will be listed.\n");
break;
}
}
closedir(pwd_dir);
if (nr_options) {
choice = ui__popup_menu(nr_options, options);
if (choice < nr_options && choice >= 0) {
tmp = strdup(abs_path[choice]);
if (tmp) {
if (is_input_name_malloced)
free((void *)input_name);
input_name = tmp;
is_input_name_malloced = true;
ret = 0;
} else
ui__warning("Data switch failed due to memory shortage!\n");
}
}
free_popup_options(options, nr_options);
free_popup_options(abs_path, nr_options);
return ret;
}
static void hist_browser__update_nr_entries(struct hist_browser *hb)
{
u64 nr_entries = 0;
struct rb_node *nd = rb_first(&hb->hists->entries);
if (hb->min_pcnt == 0) {
hb->nr_non_filtered_entries = hb->hists->nr_non_filtered_entries;
return;
}
while ((nd = hists__filter_entries(nd, hb->min_pcnt)) != NULL) {
nr_entries++;
nd = rb_next(nd);
}
hb->nr_non_filtered_entries = nr_entries;
}
static int perf_evsel__hists_browse(struct perf_evsel *evsel, int nr_events,
const char *helpline,
bool left_exits,
struct hist_browser_timer *hbt,
float min_pcnt,
struct perf_session_env *env)
{
struct hists *hists = evsel__hists(evsel);
struct hist_browser *browser = hist_browser__new(hists);
struct branch_info *bi;
struct pstack *fstack;
char *options[16];
int nr_options = 0;
int key = -1;
char buf[64];
char script_opt[64];
int delay_secs = hbt ? hbt->refresh : 0;
struct perf_hpp_fmt *fmt;
#define HIST_BROWSER_HELP_COMMON \
"h/?/F1 Show this window\n" \
"UP/DOWN/PGUP\n" \
"PGDN/SPACE Navigate\n" \
"q/ESC/CTRL+C Exit browser\n\n" \
"For multiple event sessions:\n\n" \
"TAB/UNTAB Switch events\n\n" \
"For symbolic views (--sort has sym):\n\n" \
"-> Zoom into DSO/Threads & Annotate current symbol\n" \
"<- Zoom out\n" \
"a Annotate current symbol\n" \
"C Collapse all callchains\n" \
"d Zoom into current DSO\n" \
"E Expand all callchains\n" \
"F Toggle percentage of filtered entries\n" \
"H Display column headers\n" \
/* help messages are sorted by lexical order of the hotkey */
const char report_help[] = HIST_BROWSER_HELP_COMMON
"i Show header information\n"
"P Print histograms to perf.hist.N\n"
"r Run available scripts\n"
"s Switch to another data file in PWD\n"
"t Zoom into current Thread\n"
"V Verbose (DSO names in callchains, etc)\n"
"/ Filter symbol by name";
const char top_help[] = HIST_BROWSER_HELP_COMMON
"P Print histograms to perf.hist.N\n"
"t Zoom into current Thread\n"
"V Verbose (DSO names in callchains, etc)\n"
"z Toggle zeroing of samples\n"
"/ Filter symbol by name";
if (browser == NULL)
return -1;
if (min_pcnt) {
browser->min_pcnt = min_pcnt;
hist_browser__update_nr_entries(browser);
}
fstack = pstack__new(2);
if (fstack == NULL)
goto out;
ui_helpline__push(helpline);
memset(options, 0, sizeof(options));
perf_hpp__for_each_format(fmt)
perf_hpp__reset_width(fmt, hists);
if (symbol_conf.col_width_list_str)
perf_hpp__set_user_width(symbol_conf.col_width_list_str);
while (1) {
struct thread *thread = NULL;
const struct dso *dso = NULL;
int choice = 0,
annotate = -2, zoom_dso = -2, zoom_thread = -2,
annotate_f = -2, annotate_t = -2, browse_map = -2;
int scripts_comm = -2, scripts_symbol = -2,
scripts_all = -2, switch_data = -2;
nr_options = 0;
key = hist_browser__run(browser, hbt);
if (browser->he_selection != NULL) {
thread = hist_browser__selected_thread(browser);
dso = browser->selection->map ? browser->selection->map->dso : NULL;
}
switch (key) {
case K_TAB:
case K_UNTAB:
if (nr_events == 1)
continue;
/*
* Exit the browser, let hists__browser_tree
* go to the next or previous
*/
goto out_free_stack;
case 'a':
if (!sort__has_sym) {
ui_browser__warning(&browser->b, delay_secs * 2,
"Annotation is only available for symbolic views, "
"include \"sym*\" in --sort to use it.");
continue;
}
if (browser->selection == NULL ||
browser->selection->sym == NULL ||
browser->selection->map->dso->annotate_warned)
continue;
goto do_annotate;
case 'P':
hist_browser__dump(browser);
continue;
case 'd':
goto zoom_dso;
case 'V':
browser->show_dso = !browser->show_dso;
continue;
case 't':
goto zoom_thread;
case '/':
if (ui_browser__input_window("Symbol to show",
"Please enter the name of symbol you want to see",
buf, "ENTER: OK, ESC: Cancel",
delay_secs * 2) == K_ENTER) {
hists->symbol_filter_str = *buf ? buf : NULL;
hists__filter_by_symbol(hists);
hist_browser__reset(browser);
}
continue;
case 'r':
if (is_report_browser(hbt))
goto do_scripts;
continue;
case 's':
if (is_report_browser(hbt))
goto do_data_switch;
continue;
case 'i':
/* env->arch is NULL for live-mode (i.e. perf top) */
if (env->arch)
tui__header_window(env);
continue;
case 'F':
symbol_conf.filter_relative ^= 1;
continue;
case 'z':
if (!is_report_browser(hbt)) {
struct perf_top *top = hbt->arg;
top->zero = !top->zero;
}
continue;
case K_F1:
case 'h':
case '?':
ui_browser__help_window(&browser->b,
is_report_browser(hbt) ? report_help : top_help);
continue;
case K_ENTER:
case K_RIGHT:
/* menu */
break;
case K_LEFT: {
const void *top;
if (pstack__empty(fstack)) {
/*
* Go back to the perf_evsel_menu__run or other user
*/
if (left_exits)
goto out_free_stack;
continue;
}
top = pstack__pop(fstack);
if (top == &browser->hists->dso_filter)
goto zoom_out_dso;
if (top == &browser->hists->thread_filter)
goto zoom_out_thread;
continue;
}
case K_ESC:
if (!left_exits &&
!ui_browser__dialog_yesno(&browser->b,
"Do you really want to exit?"))
continue;
/* Fall thru */
case 'q':
case CTRL('c'):
goto out_free_stack;
default:
continue;
}
if (!sort__has_sym)
goto add_exit_option;
if (sort__mode == SORT_MODE__BRANCH) {
bi = browser->he_selection->branch_info;
if (browser->selection != NULL &&
bi &&
bi->from.sym != NULL &&
!bi->from.map->dso->annotate_warned &&
asprintf(&options[nr_options], "Annotate %s",
bi->from.sym->name) > 0)
annotate_f = nr_options++;
if (browser->selection != NULL &&
bi &&
bi->to.sym != NULL &&
!bi->to.map->dso->annotate_warned &&
(bi->to.sym != bi->from.sym ||
bi->to.map->dso != bi->from.map->dso) &&
asprintf(&options[nr_options], "Annotate %s",
bi->to.sym->name) > 0)
annotate_t = nr_options++;
} else {
if (browser->selection != NULL &&
browser->selection->sym != NULL &&
!browser->selection->map->dso->annotate_warned) {
struct annotation *notes;
notes = symbol__annotation(browser->selection->sym);
if (notes->src &&
asprintf(&options[nr_options], "Annotate %s",
browser->selection->sym->name) > 0)
annotate = nr_options++;
}
}
if (thread != NULL &&
asprintf(&options[nr_options], "Zoom %s %s(%d) thread",
(browser->hists->thread_filter ? "out of" : "into"),
(thread->comm_set ? thread__comm_str(thread) : ""),
thread->tid) > 0)
zoom_thread = nr_options++;
if (dso != NULL &&
asprintf(&options[nr_options], "Zoom %s %s DSO",
(browser->hists->dso_filter ? "out of" : "into"),
(dso->kernel ? "the Kernel" : dso->short_name)) > 0)
zoom_dso = nr_options++;
if (browser->selection != NULL &&
browser->selection->map != NULL &&
asprintf(&options[nr_options], "Browse map details") > 0)
browse_map = nr_options++;
/* perf script support */
if (browser->he_selection) {
struct symbol *sym;
if (asprintf(&options[nr_options], "Run scripts for samples of thread [%s]",
thread__comm_str(browser->he_selection->thread)) > 0)
scripts_comm = nr_options++;
sym = browser->he_selection->ms.sym;
if (sym && sym->namelen &&
asprintf(&options[nr_options], "Run scripts for samples of symbol [%s]",
sym->name) > 0)
scripts_symbol = nr_options++;
}
if (asprintf(&options[nr_options], "Run scripts for all samples") > 0)
scripts_all = nr_options++;
if (is_report_browser(hbt) && asprintf(&options[nr_options],
"Switch to another data file in PWD") > 0)
switch_data = nr_options++;
add_exit_option:
options[nr_options++] = (char *)"Exit";
retry_popup_menu:
choice = ui__popup_menu(nr_options, options);
if (choice == nr_options - 1)
break;
if (choice == -1) {
free_popup_options(options, nr_options - 1);
continue;
}
if (choice == annotate || choice == annotate_t || choice == annotate_f) {
struct hist_entry *he;
struct annotation *notes;
int err;
do_annotate:
if (!objdump_path && perf_session_env__lookup_objdump(env))
continue;
he = hist_browser__selected_entry(browser);
if (he == NULL)
continue;
/*
* we stash the branch_info symbol + map into the
* the ms so we don't have to rewrite all the annotation
* code to use branch_info.
* in branch mode, the ms struct is not used
*/
if (choice == annotate_f) {
he->ms.sym = he->branch_info->from.sym;
he->ms.map = he->branch_info->from.map;
} else if (choice == annotate_t) {
he->ms.sym = he->branch_info->to.sym;
he->ms.map = he->branch_info->to.map;
}
notes = symbol__annotation(he->ms.sym);
if (!notes->src)
continue;
/*
* Don't let this be freed, say, by hists__decay_entry.
*/
he->used = true;
err = hist_entry__tui_annotate(he, evsel, hbt);
he->used = false;
/*
* offer option to annotate the other branch source or target
* (if they exists) when returning from annotate
*/
if ((err == 'q' || err == CTRL('c'))
&& annotate_t != -2 && annotate_f != -2)
goto retry_popup_menu;
ui_browser__update_nr_entries(&browser->b, browser->hists->nr_entries);
if (err)
ui_browser__handle_resize(&browser->b);
} else if (choice == browse_map)
map__browse(browser->selection->map);
else if (choice == zoom_dso) {
zoom_dso:
if (browser->hists->dso_filter) {
pstack__remove(fstack, &browser->hists->dso_filter);
zoom_out_dso:
ui_helpline__pop();
browser->hists->dso_filter = NULL;
perf tools: Move elide bool into perf_hpp_fmt struct After output/sort fields refactoring, it's expensive to check the elide bool in its current location inside the 'struct sort_entry'. The perf_hpp__should_skip function gets highly noticable in workloads with high number of output/sort fields, like for: $ perf report -i perf-test.data -F overhead,sample,period,comm,pid,dso,symbol,cpu --stdio Performance report: 9.70% perf [.] perf_hpp__should_skip Moving the elide bool into the 'struct perf_hpp_fmt', which makes the perf_hpp__should_skip just single struct read. Got speedup of around 22% for my test perf.data workload. The change should not harm any other workload types. Performance counter stats for (10 runs): before: 358,319,732,626 cycles ( +- 0.55% ) 467,129,581,515 instructions # 1.30 insns per cycle ( +- 0.00% ) 150.943975206 seconds time elapsed ( +- 0.62% ) now: 278,785,972,990 cycles ( +- 0.12% ) 370,146,797,640 instructions # 1.33 insns per cycle ( +- 0.00% ) 116.416670507 seconds time elapsed ( +- 0.31% ) Acked-by: Namhyung Kim <namhyung@kernel.org> Cc: Arnaldo Carvalho de Melo <acme@kernel.org> Cc: Corey Ashford <cjashfor@linux.vnet.ibm.com> Cc: David Ahern <dsahern@gmail.com> Cc: Frederic Weisbecker <fweisbec@gmail.com> Cc: Ingo Molnar <mingo@kernel.org> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Paul Mackerras <paulus@samba.org> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Stephane Eranian <eranian@google.com> Link: http://lkml.kernel.org/r/20140601142622.GA9131@krava.brq.redhat.com Signed-off-by: Jiri Olsa <jolsa@kernel.org>
2014-05-23 23:15:47 +08:00
perf_hpp__set_elide(HISTC_DSO, false);
} else {
if (dso == NULL)
continue;
ui_helpline__fpush("To zoom out press <- or -> + \"Zoom out of %s DSO\"",
dso->kernel ? "the Kernel" : dso->short_name);
browser->hists->dso_filter = dso;
perf tools: Move elide bool into perf_hpp_fmt struct After output/sort fields refactoring, it's expensive to check the elide bool in its current location inside the 'struct sort_entry'. The perf_hpp__should_skip function gets highly noticable in workloads with high number of output/sort fields, like for: $ perf report -i perf-test.data -F overhead,sample,period,comm,pid,dso,symbol,cpu --stdio Performance report: 9.70% perf [.] perf_hpp__should_skip Moving the elide bool into the 'struct perf_hpp_fmt', which makes the perf_hpp__should_skip just single struct read. Got speedup of around 22% for my test perf.data workload. The change should not harm any other workload types. Performance counter stats for (10 runs): before: 358,319,732,626 cycles ( +- 0.55% ) 467,129,581,515 instructions # 1.30 insns per cycle ( +- 0.00% ) 150.943975206 seconds time elapsed ( +- 0.62% ) now: 278,785,972,990 cycles ( +- 0.12% ) 370,146,797,640 instructions # 1.33 insns per cycle ( +- 0.00% ) 116.416670507 seconds time elapsed ( +- 0.31% ) Acked-by: Namhyung Kim <namhyung@kernel.org> Cc: Arnaldo Carvalho de Melo <acme@kernel.org> Cc: Corey Ashford <cjashfor@linux.vnet.ibm.com> Cc: David Ahern <dsahern@gmail.com> Cc: Frederic Weisbecker <fweisbec@gmail.com> Cc: Ingo Molnar <mingo@kernel.org> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Paul Mackerras <paulus@samba.org> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Stephane Eranian <eranian@google.com> Link: http://lkml.kernel.org/r/20140601142622.GA9131@krava.brq.redhat.com Signed-off-by: Jiri Olsa <jolsa@kernel.org>
2014-05-23 23:15:47 +08:00
perf_hpp__set_elide(HISTC_DSO, true);
pstack__push(fstack, &browser->hists->dso_filter);
}
hists__filter_by_dso(hists);
hist_browser__reset(browser);
} else if (choice == zoom_thread) {
zoom_thread:
if (browser->hists->thread_filter) {
pstack__remove(fstack, &browser->hists->thread_filter);
zoom_out_thread:
ui_helpline__pop();
thread__zput(browser->hists->thread_filter);
perf tools: Move elide bool into perf_hpp_fmt struct After output/sort fields refactoring, it's expensive to check the elide bool in its current location inside the 'struct sort_entry'. The perf_hpp__should_skip function gets highly noticable in workloads with high number of output/sort fields, like for: $ perf report -i perf-test.data -F overhead,sample,period,comm,pid,dso,symbol,cpu --stdio Performance report: 9.70% perf [.] perf_hpp__should_skip Moving the elide bool into the 'struct perf_hpp_fmt', which makes the perf_hpp__should_skip just single struct read. Got speedup of around 22% for my test perf.data workload. The change should not harm any other workload types. Performance counter stats for (10 runs): before: 358,319,732,626 cycles ( +- 0.55% ) 467,129,581,515 instructions # 1.30 insns per cycle ( +- 0.00% ) 150.943975206 seconds time elapsed ( +- 0.62% ) now: 278,785,972,990 cycles ( +- 0.12% ) 370,146,797,640 instructions # 1.33 insns per cycle ( +- 0.00% ) 116.416670507 seconds time elapsed ( +- 0.31% ) Acked-by: Namhyung Kim <namhyung@kernel.org> Cc: Arnaldo Carvalho de Melo <acme@kernel.org> Cc: Corey Ashford <cjashfor@linux.vnet.ibm.com> Cc: David Ahern <dsahern@gmail.com> Cc: Frederic Weisbecker <fweisbec@gmail.com> Cc: Ingo Molnar <mingo@kernel.org> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Paul Mackerras <paulus@samba.org> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Stephane Eranian <eranian@google.com> Link: http://lkml.kernel.org/r/20140601142622.GA9131@krava.brq.redhat.com Signed-off-by: Jiri Olsa <jolsa@kernel.org>
2014-05-23 23:15:47 +08:00
perf_hpp__set_elide(HISTC_THREAD, false);
} else {
ui_helpline__fpush("To zoom out press <- or -> + \"Zoom out of %s(%d) thread\"",
thread->comm_set ? thread__comm_str(thread) : "",
thread->tid);
browser->hists->thread_filter = thread__get(thread);
perf tools: Move elide bool into perf_hpp_fmt struct After output/sort fields refactoring, it's expensive to check the elide bool in its current location inside the 'struct sort_entry'. The perf_hpp__should_skip function gets highly noticable in workloads with high number of output/sort fields, like for: $ perf report -i perf-test.data -F overhead,sample,period,comm,pid,dso,symbol,cpu --stdio Performance report: 9.70% perf [.] perf_hpp__should_skip Moving the elide bool into the 'struct perf_hpp_fmt', which makes the perf_hpp__should_skip just single struct read. Got speedup of around 22% for my test perf.data workload. The change should not harm any other workload types. Performance counter stats for (10 runs): before: 358,319,732,626 cycles ( +- 0.55% ) 467,129,581,515 instructions # 1.30 insns per cycle ( +- 0.00% ) 150.943975206 seconds time elapsed ( +- 0.62% ) now: 278,785,972,990 cycles ( +- 0.12% ) 370,146,797,640 instructions # 1.33 insns per cycle ( +- 0.00% ) 116.416670507 seconds time elapsed ( +- 0.31% ) Acked-by: Namhyung Kim <namhyung@kernel.org> Cc: Arnaldo Carvalho de Melo <acme@kernel.org> Cc: Corey Ashford <cjashfor@linux.vnet.ibm.com> Cc: David Ahern <dsahern@gmail.com> Cc: Frederic Weisbecker <fweisbec@gmail.com> Cc: Ingo Molnar <mingo@kernel.org> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Paul Mackerras <paulus@samba.org> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Stephane Eranian <eranian@google.com> Link: http://lkml.kernel.org/r/20140601142622.GA9131@krava.brq.redhat.com Signed-off-by: Jiri Olsa <jolsa@kernel.org>
2014-05-23 23:15:47 +08:00
perf_hpp__set_elide(HISTC_THREAD, false);
pstack__push(fstack, &browser->hists->thread_filter);
}
hists__filter_by_thread(hists);
hist_browser__reset(browser);
}
/* perf scripts support */
else if (choice == scripts_all || choice == scripts_comm ||
choice == scripts_symbol) {
do_scripts:
memset(script_opt, 0, 64);
if (choice == scripts_comm)
sprintf(script_opt, " -c %s ", thread__comm_str(browser->he_selection->thread));
if (choice == scripts_symbol)
sprintf(script_opt, " -S %s ", browser->he_selection->ms.sym->name);
script_browse(script_opt);
}
/* Switch to another data file */
else if (choice == switch_data) {
do_data_switch:
if (!switch_data_file()) {
key = K_SWITCH_INPUT_DATA;
break;
} else
ui__warning("Won't switch the data files due to\n"
"no valid data file get selected!\n");
}
}
out_free_stack:
pstack__delete(fstack);
out:
hist_browser__delete(browser);
free_popup_options(options, nr_options - 1);
return key;
}
struct perf_evsel_menu {
struct ui_browser b;
struct perf_evsel *selection;
bool lost_events, lost_events_warned;
float min_pcnt;
struct perf_session_env *env;
};
static void perf_evsel_menu__write(struct ui_browser *browser,
void *entry, int row)
{
struct perf_evsel_menu *menu = container_of(browser,
struct perf_evsel_menu, b);
struct perf_evsel *evsel = list_entry(entry, struct perf_evsel, node);
struct hists *hists = evsel__hists(evsel);
bool current_entry = ui_browser__is_current_entry(browser, row);
unsigned long nr_events = hists->stats.nr_events[PERF_RECORD_SAMPLE];
const char *ev_name = perf_evsel__name(evsel);
char bf[256], unit;
const char *warn = " ";
size_t printed;
ui_browser__set_color(browser, current_entry ? HE_COLORSET_SELECTED :
HE_COLORSET_NORMAL);
if (perf_evsel__is_group_event(evsel)) {
struct perf_evsel *pos;
ev_name = perf_evsel__group_name(evsel);
for_each_group_member(pos, evsel) {
struct hists *pos_hists = evsel__hists(pos);
nr_events += pos_hists->stats.nr_events[PERF_RECORD_SAMPLE];
}
}
nr_events = convert_unit(nr_events, &unit);
printed = scnprintf(bf, sizeof(bf), "%lu%c%s%s", nr_events,
unit, unit == ' ' ? "" : " ", ev_name);
slsmg_printf("%s", bf);
nr_events = hists->stats.nr_events[PERF_RECORD_LOST];
if (nr_events != 0) {
menu->lost_events = true;
if (!current_entry)
ui_browser__set_color(browser, HE_COLORSET_TOP);
nr_events = convert_unit(nr_events, &unit);
printed += scnprintf(bf, sizeof(bf), ": %ld%c%schunks LOST!",
nr_events, unit, unit == ' ' ? "" : " ");
warn = bf;
}
slsmg_write_nstring(warn, browser->width - printed);
if (current_entry)
menu->selection = evsel;
}
static int perf_evsel_menu__run(struct perf_evsel_menu *menu,
int nr_events, const char *help,
struct hist_browser_timer *hbt)
{
struct perf_evlist *evlist = menu->b.priv;
struct perf_evsel *pos;
const char *title = "Available samples";
int delay_secs = hbt ? hbt->refresh : 0;
int key;
if (ui_browser__show(&menu->b, title,
"ESC: exit, ENTER|->: Browse histograms") < 0)
return -1;
while (1) {
key = ui_browser__run(&menu->b, delay_secs);
switch (key) {
case K_TIMER:
hbt->timer(hbt->arg);
if (!menu->lost_events_warned && menu->lost_events) {
ui_browser__warn_lost_events(&menu->b);
menu->lost_events_warned = true;
}
continue;
case K_RIGHT:
case K_ENTER:
if (!menu->selection)
continue;
pos = menu->selection;
browse_hists:
perf_evlist__set_selected(evlist, pos);
/*
* Give the calling tool a chance to populate the non
* default evsel resorted hists tree.
*/
if (hbt)
hbt->timer(hbt->arg);
key = perf_evsel__hists_browse(pos, nr_events, help,
true, hbt,
menu->min_pcnt,
menu->env);
ui_browser__show_title(&menu->b, title);
switch (key) {
case K_TAB:
if (pos->node.next == &evlist->entries)
pos = perf_evlist__first(evlist);
else
pos = perf_evsel__next(pos);
goto browse_hists;
case K_UNTAB:
if (pos->node.prev == &evlist->entries)
pos = perf_evlist__last(evlist);
else
pos = perf_evsel__prev(pos);
goto browse_hists;
case K_ESC:
if (!ui_browser__dialog_yesno(&menu->b,
"Do you really want to exit?"))
continue;
/* Fall thru */
case K_SWITCH_INPUT_DATA:
case 'q':
case CTRL('c'):
goto out;
default:
continue;
}
case K_LEFT:
continue;
case K_ESC:
if (!ui_browser__dialog_yesno(&menu->b,
"Do you really want to exit?"))
continue;
/* Fall thru */
case 'q':
case CTRL('c'):
goto out;
default:
continue;
}
}
out:
ui_browser__hide(&menu->b);
return key;
}
static bool filter_group_entries(struct ui_browser *browser __maybe_unused,
void *entry)
{
struct perf_evsel *evsel = list_entry(entry, struct perf_evsel, node);
if (symbol_conf.event_group && !perf_evsel__is_group_leader(evsel))
return true;
return false;
}
static int __perf_evlist__tui_browse_hists(struct perf_evlist *evlist,
int nr_entries, const char *help,
struct hist_browser_timer *hbt,
float min_pcnt,
struct perf_session_env *env)
{
struct perf_evsel *pos;
struct perf_evsel_menu menu = {
.b = {
.entries = &evlist->entries,
.refresh = ui_browser__list_head_refresh,
.seek = ui_browser__list_head_seek,
.write = perf_evsel_menu__write,
.filter = filter_group_entries,
.nr_entries = nr_entries,
.priv = evlist,
},
.min_pcnt = min_pcnt,
.env = env,
};
ui_helpline__push("Press ESC to exit");
evlist__for_each(evlist, pos) {
const char *ev_name = perf_evsel__name(pos);
size_t line_len = strlen(ev_name) + 7;
if (menu.b.width < line_len)
menu.b.width = line_len;
}
return perf_evsel_menu__run(&menu, nr_entries, help, hbt);
}
int perf_evlist__tui_browse_hists(struct perf_evlist *evlist, const char *help,
struct hist_browser_timer *hbt,
float min_pcnt,
struct perf_session_env *env)
{
int nr_entries = evlist->nr_entries;
single_entry:
if (nr_entries == 1) {
struct perf_evsel *first = perf_evlist__first(evlist);
return perf_evsel__hists_browse(first, nr_entries, help,
false, hbt, min_pcnt,
env);
}
if (symbol_conf.event_group) {
struct perf_evsel *pos;
nr_entries = 0;
evlist__for_each(evlist, pos) {
if (perf_evsel__is_group_leader(pos))
nr_entries++;
}
if (nr_entries == 1)
goto single_entry;
}
return __perf_evlist__tui_browse_hists(evlist, nr_entries, help,
hbt, min_pcnt, env);
}