hists.c 17 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. #include "../evlist.h"
  3. #include "../cache.h"
  4. #include "../evsel.h"
  5. #include "../sort.h"
  6. #include "../hist.h"
  7. #include "../helpline.h"
  8. #include "../string2.h"
  9. #include "gtk.h"
  10. #include <signal.h>
  11. #define MAX_COLUMNS 32
  12. static int __percent_color_snprintf(struct perf_hpp *hpp, const char *fmt, ...)
  13. {
  14. int ret = 0;
  15. int len;
  16. va_list args;
  17. double percent;
  18. const char *markup;
  19. char *buf = hpp->buf;
  20. size_t size = hpp->size;
  21. va_start(args, fmt);
  22. len = va_arg(args, int);
  23. percent = va_arg(args, double);
  24. va_end(args);
  25. markup = perf_gtk__get_percent_color(percent);
  26. if (markup)
  27. ret += scnprintf(buf, size, markup);
  28. ret += scnprintf(buf + ret, size - ret, fmt, len, percent);
  29. if (markup)
  30. ret += scnprintf(buf + ret, size - ret, "</span>");
  31. return ret;
  32. }
  33. #define __HPP_COLOR_PERCENT_FN(_type, _field) \
  34. static u64 he_get_##_field(struct hist_entry *he) \
  35. { \
  36. return he->stat._field; \
  37. } \
  38. \
  39. static int perf_gtk__hpp_color_##_type(struct perf_hpp_fmt *fmt, \
  40. struct perf_hpp *hpp, \
  41. struct hist_entry *he) \
  42. { \
  43. return hpp__fmt(fmt, hpp, he, he_get_##_field, " %*.2f%%", \
  44. __percent_color_snprintf, true); \
  45. }
  46. #define __HPP_COLOR_ACC_PERCENT_FN(_type, _field) \
  47. static u64 he_get_acc_##_field(struct hist_entry *he) \
  48. { \
  49. return he->stat_acc->_field; \
  50. } \
  51. \
  52. static int perf_gtk__hpp_color_##_type(struct perf_hpp_fmt *fmt, \
  53. struct perf_hpp *hpp, \
  54. struct hist_entry *he) \
  55. { \
  56. return hpp__fmt_acc(fmt, hpp, he, he_get_acc_##_field, " %*.2f%%", \
  57. __percent_color_snprintf, true); \
  58. }
  59. __HPP_COLOR_PERCENT_FN(overhead, period)
  60. __HPP_COLOR_PERCENT_FN(overhead_sys, period_sys)
  61. __HPP_COLOR_PERCENT_FN(overhead_us, period_us)
  62. __HPP_COLOR_PERCENT_FN(overhead_guest_sys, period_guest_sys)
  63. __HPP_COLOR_PERCENT_FN(overhead_guest_us, period_guest_us)
  64. __HPP_COLOR_ACC_PERCENT_FN(overhead_acc, period)
  65. #undef __HPP_COLOR_PERCENT_FN
  66. void perf_gtk__init_hpp(void)
  67. {
  68. perf_hpp__format[PERF_HPP__OVERHEAD].color =
  69. perf_gtk__hpp_color_overhead;
  70. perf_hpp__format[PERF_HPP__OVERHEAD_SYS].color =
  71. perf_gtk__hpp_color_overhead_sys;
  72. perf_hpp__format[PERF_HPP__OVERHEAD_US].color =
  73. perf_gtk__hpp_color_overhead_us;
  74. perf_hpp__format[PERF_HPP__OVERHEAD_GUEST_SYS].color =
  75. perf_gtk__hpp_color_overhead_guest_sys;
  76. perf_hpp__format[PERF_HPP__OVERHEAD_GUEST_US].color =
  77. perf_gtk__hpp_color_overhead_guest_us;
  78. perf_hpp__format[PERF_HPP__OVERHEAD_ACC].color =
  79. perf_gtk__hpp_color_overhead_acc;
  80. }
  81. static void perf_gtk__add_callchain_flat(struct rb_root *root, GtkTreeStore *store,
  82. GtkTreeIter *parent, int col, u64 total)
  83. {
  84. struct rb_node *nd;
  85. bool has_single_node = (rb_first(root) == rb_last(root));
  86. for (nd = rb_first(root); nd; nd = rb_next(nd)) {
  87. struct callchain_node *node;
  88. struct callchain_list *chain;
  89. GtkTreeIter iter, new_parent;
  90. bool need_new_parent;
  91. node = rb_entry(nd, struct callchain_node, rb_node);
  92. new_parent = *parent;
  93. need_new_parent = !has_single_node;
  94. callchain_node__make_parent_list(node);
  95. list_for_each_entry(chain, &node->parent_val, list) {
  96. char buf[128];
  97. gtk_tree_store_append(store, &iter, &new_parent);
  98. callchain_node__scnprintf_value(node, buf, sizeof(buf), total);
  99. gtk_tree_store_set(store, &iter, 0, buf, -1);
  100. callchain_list__sym_name(chain, buf, sizeof(buf), false);
  101. gtk_tree_store_set(store, &iter, col, buf, -1);
  102. if (need_new_parent) {
  103. /*
  104. * Only show the top-most symbol in a callchain
  105. * if it's not the only callchain.
  106. */
  107. new_parent = iter;
  108. need_new_parent = false;
  109. }
  110. }
  111. list_for_each_entry(chain, &node->val, list) {
  112. char buf[128];
  113. gtk_tree_store_append(store, &iter, &new_parent);
  114. callchain_node__scnprintf_value(node, buf, sizeof(buf), total);
  115. gtk_tree_store_set(store, &iter, 0, buf, -1);
  116. callchain_list__sym_name(chain, buf, sizeof(buf), false);
  117. gtk_tree_store_set(store, &iter, col, buf, -1);
  118. if (need_new_parent) {
  119. /*
  120. * Only show the top-most symbol in a callchain
  121. * if it's not the only callchain.
  122. */
  123. new_parent = iter;
  124. need_new_parent = false;
  125. }
  126. }
  127. }
  128. }
  129. static void perf_gtk__add_callchain_folded(struct rb_root *root, GtkTreeStore *store,
  130. GtkTreeIter *parent, int col, u64 total)
  131. {
  132. struct rb_node *nd;
  133. for (nd = rb_first(root); nd; nd = rb_next(nd)) {
  134. struct callchain_node *node;
  135. struct callchain_list *chain;
  136. GtkTreeIter iter;
  137. char buf[64];
  138. char *str, *str_alloc = NULL;
  139. bool first = true;
  140. node = rb_entry(nd, struct callchain_node, rb_node);
  141. callchain_node__make_parent_list(node);
  142. list_for_each_entry(chain, &node->parent_val, list) {
  143. char name[1024];
  144. callchain_list__sym_name(chain, name, sizeof(name), false);
  145. if (asprintf(&str, "%s%s%s",
  146. first ? "" : str_alloc,
  147. first ? "" : symbol_conf.field_sep ?: "; ",
  148. name) < 0)
  149. return;
  150. first = false;
  151. free(str_alloc);
  152. str_alloc = str;
  153. }
  154. list_for_each_entry(chain, &node->val, list) {
  155. char name[1024];
  156. callchain_list__sym_name(chain, name, sizeof(name), false);
  157. if (asprintf(&str, "%s%s%s",
  158. first ? "" : str_alloc,
  159. first ? "" : symbol_conf.field_sep ?: "; ",
  160. name) < 0)
  161. return;
  162. first = false;
  163. free(str_alloc);
  164. str_alloc = str;
  165. }
  166. gtk_tree_store_append(store, &iter, parent);
  167. callchain_node__scnprintf_value(node, buf, sizeof(buf), total);
  168. gtk_tree_store_set(store, &iter, 0, buf, -1);
  169. gtk_tree_store_set(store, &iter, col, str, -1);
  170. free(str_alloc);
  171. }
  172. }
  173. static void perf_gtk__add_callchain_graph(struct rb_root *root, GtkTreeStore *store,
  174. GtkTreeIter *parent, int col, u64 total)
  175. {
  176. struct rb_node *nd;
  177. bool has_single_node = (rb_first(root) == rb_last(root));
  178. for (nd = rb_first(root); nd; nd = rb_next(nd)) {
  179. struct callchain_node *node;
  180. struct callchain_list *chain;
  181. GtkTreeIter iter, new_parent;
  182. bool need_new_parent;
  183. u64 child_total;
  184. node = rb_entry(nd, struct callchain_node, rb_node);
  185. new_parent = *parent;
  186. need_new_parent = !has_single_node && (node->val_nr > 1);
  187. list_for_each_entry(chain, &node->val, list) {
  188. char buf[128];
  189. gtk_tree_store_append(store, &iter, &new_parent);
  190. callchain_node__scnprintf_value(node, buf, sizeof(buf), total);
  191. gtk_tree_store_set(store, &iter, 0, buf, -1);
  192. callchain_list__sym_name(chain, buf, sizeof(buf), false);
  193. gtk_tree_store_set(store, &iter, col, buf, -1);
  194. if (need_new_parent) {
  195. /*
  196. * Only show the top-most symbol in a callchain
  197. * if it's not the only callchain.
  198. */
  199. new_parent = iter;
  200. need_new_parent = false;
  201. }
  202. }
  203. if (callchain_param.mode == CHAIN_GRAPH_REL)
  204. child_total = node->children_hit;
  205. else
  206. child_total = total;
  207. /* Now 'iter' contains info of the last callchain_list */
  208. perf_gtk__add_callchain_graph(&node->rb_root, store, &iter, col,
  209. child_total);
  210. }
  211. }
  212. static void perf_gtk__add_callchain(struct rb_root *root, GtkTreeStore *store,
  213. GtkTreeIter *parent, int col, u64 total)
  214. {
  215. if (callchain_param.mode == CHAIN_FLAT)
  216. perf_gtk__add_callchain_flat(root, store, parent, col, total);
  217. else if (callchain_param.mode == CHAIN_FOLDED)
  218. perf_gtk__add_callchain_folded(root, store, parent, col, total);
  219. else
  220. perf_gtk__add_callchain_graph(root, store, parent, col, total);
  221. }
  222. static void on_row_activated(GtkTreeView *view, GtkTreePath *path,
  223. GtkTreeViewColumn *col __maybe_unused,
  224. gpointer user_data __maybe_unused)
  225. {
  226. bool expanded = gtk_tree_view_row_expanded(view, path);
  227. if (expanded)
  228. gtk_tree_view_collapse_row(view, path);
  229. else
  230. gtk_tree_view_expand_row(view, path, FALSE);
  231. }
  232. static void perf_gtk__show_hists(GtkWidget *window, struct hists *hists,
  233. float min_pcnt)
  234. {
  235. struct perf_hpp_fmt *fmt;
  236. GType col_types[MAX_COLUMNS];
  237. GtkCellRenderer *renderer;
  238. GtkTreeStore *store;
  239. struct rb_node *nd;
  240. GtkWidget *view;
  241. int col_idx;
  242. int sym_col = -1;
  243. int nr_cols;
  244. char s[512];
  245. struct perf_hpp hpp = {
  246. .buf = s,
  247. .size = sizeof(s),
  248. };
  249. nr_cols = 0;
  250. hists__for_each_format(hists, fmt)
  251. col_types[nr_cols++] = G_TYPE_STRING;
  252. store = gtk_tree_store_newv(nr_cols, col_types);
  253. view = gtk_tree_view_new();
  254. renderer = gtk_cell_renderer_text_new();
  255. col_idx = 0;
  256. hists__for_each_format(hists, fmt) {
  257. if (perf_hpp__should_skip(fmt, hists))
  258. continue;
  259. /*
  260. * XXX no way to determine where symcol column is..
  261. * Just use last column for now.
  262. */
  263. if (perf_hpp__is_sort_entry(fmt))
  264. sym_col = col_idx;
  265. gtk_tree_view_insert_column_with_attributes(GTK_TREE_VIEW(view),
  266. -1, fmt->name,
  267. renderer, "markup",
  268. col_idx++, NULL);
  269. }
  270. for (col_idx = 0; col_idx < nr_cols; col_idx++) {
  271. GtkTreeViewColumn *column;
  272. column = gtk_tree_view_get_column(GTK_TREE_VIEW(view), col_idx);
  273. gtk_tree_view_column_set_resizable(column, TRUE);
  274. if (col_idx == sym_col) {
  275. gtk_tree_view_set_expander_column(GTK_TREE_VIEW(view),
  276. column);
  277. }
  278. }
  279. gtk_tree_view_set_model(GTK_TREE_VIEW(view), GTK_TREE_MODEL(store));
  280. g_object_unref(GTK_TREE_MODEL(store));
  281. for (nd = rb_first(&hists->entries); nd; nd = rb_next(nd)) {
  282. struct hist_entry *h = rb_entry(nd, struct hist_entry, rb_node);
  283. GtkTreeIter iter;
  284. u64 total = hists__total_period(h->hists);
  285. float percent;
  286. if (h->filtered)
  287. continue;
  288. percent = hist_entry__get_percent_limit(h);
  289. if (percent < min_pcnt)
  290. continue;
  291. gtk_tree_store_append(store, &iter, NULL);
  292. col_idx = 0;
  293. hists__for_each_format(hists, fmt) {
  294. if (perf_hpp__should_skip(fmt, h->hists))
  295. continue;
  296. if (fmt->color)
  297. fmt->color(fmt, &hpp, h);
  298. else
  299. fmt->entry(fmt, &hpp, h);
  300. gtk_tree_store_set(store, &iter, col_idx++, s, -1);
  301. }
  302. if (symbol_conf.use_callchain && hists__has(hists, sym)) {
  303. if (callchain_param.mode == CHAIN_GRAPH_REL)
  304. total = symbol_conf.cumulate_callchain ?
  305. h->stat_acc->period : h->stat.period;
  306. perf_gtk__add_callchain(&h->sorted_chain, store, &iter,
  307. sym_col, total);
  308. }
  309. }
  310. gtk_tree_view_set_rules_hint(GTK_TREE_VIEW(view), TRUE);
  311. g_signal_connect(view, "row-activated",
  312. G_CALLBACK(on_row_activated), NULL);
  313. gtk_container_add(GTK_CONTAINER(window), view);
  314. }
  315. static void perf_gtk__add_hierarchy_entries(struct hists *hists,
  316. struct rb_root *root,
  317. GtkTreeStore *store,
  318. GtkTreeIter *parent,
  319. struct perf_hpp *hpp,
  320. float min_pcnt)
  321. {
  322. int col_idx = 0;
  323. struct rb_node *node;
  324. struct hist_entry *he;
  325. struct perf_hpp_fmt *fmt;
  326. struct perf_hpp_list_node *fmt_node;
  327. u64 total = hists__total_period(hists);
  328. int size;
  329. for (node = rb_first(root); node; node = rb_next(node)) {
  330. GtkTreeIter iter;
  331. float percent;
  332. char *bf;
  333. he = rb_entry(node, struct hist_entry, rb_node);
  334. if (he->filtered)
  335. continue;
  336. percent = hist_entry__get_percent_limit(he);
  337. if (percent < min_pcnt)
  338. continue;
  339. gtk_tree_store_append(store, &iter, parent);
  340. col_idx = 0;
  341. /* the first hpp_list_node is for overhead columns */
  342. fmt_node = list_first_entry(&hists->hpp_formats,
  343. struct perf_hpp_list_node, list);
  344. perf_hpp_list__for_each_format(&fmt_node->hpp, fmt) {
  345. if (fmt->color)
  346. fmt->color(fmt, hpp, he);
  347. else
  348. fmt->entry(fmt, hpp, he);
  349. gtk_tree_store_set(store, &iter, col_idx++, hpp->buf, -1);
  350. }
  351. bf = hpp->buf;
  352. size = hpp->size;
  353. perf_hpp_list__for_each_format(he->hpp_list, fmt) {
  354. int ret;
  355. if (fmt->color)
  356. ret = fmt->color(fmt, hpp, he);
  357. else
  358. ret = fmt->entry(fmt, hpp, he);
  359. snprintf(hpp->buf + ret, hpp->size - ret, " ");
  360. advance_hpp(hpp, ret + 2);
  361. }
  362. gtk_tree_store_set(store, &iter, col_idx, ltrim(rtrim(bf)), -1);
  363. if (!he->leaf) {
  364. hpp->buf = bf;
  365. hpp->size = size;
  366. perf_gtk__add_hierarchy_entries(hists, &he->hroot_out,
  367. store, &iter, hpp,
  368. min_pcnt);
  369. if (!hist_entry__has_hierarchy_children(he, min_pcnt)) {
  370. char buf[32];
  371. GtkTreeIter child;
  372. snprintf(buf, sizeof(buf), "no entry >= %.2f%%",
  373. min_pcnt);
  374. gtk_tree_store_append(store, &child, &iter);
  375. gtk_tree_store_set(store, &child, col_idx, buf, -1);
  376. }
  377. }
  378. if (symbol_conf.use_callchain && he->leaf) {
  379. if (callchain_param.mode == CHAIN_GRAPH_REL)
  380. total = symbol_conf.cumulate_callchain ?
  381. he->stat_acc->period : he->stat.period;
  382. perf_gtk__add_callchain(&he->sorted_chain, store, &iter,
  383. col_idx, total);
  384. }
  385. }
  386. }
  387. static void perf_gtk__show_hierarchy(GtkWidget *window, struct hists *hists,
  388. float min_pcnt)
  389. {
  390. struct perf_hpp_fmt *fmt;
  391. struct perf_hpp_list_node *fmt_node;
  392. GType col_types[MAX_COLUMNS];
  393. GtkCellRenderer *renderer;
  394. GtkTreeStore *store;
  395. GtkWidget *view;
  396. int col_idx;
  397. int nr_cols = 0;
  398. char s[512];
  399. char buf[512];
  400. bool first_node, first_col;
  401. struct perf_hpp hpp = {
  402. .buf = s,
  403. .size = sizeof(s),
  404. };
  405. hists__for_each_format(hists, fmt) {
  406. if (perf_hpp__is_sort_entry(fmt) ||
  407. perf_hpp__is_dynamic_entry(fmt))
  408. break;
  409. col_types[nr_cols++] = G_TYPE_STRING;
  410. }
  411. col_types[nr_cols++] = G_TYPE_STRING;
  412. store = gtk_tree_store_newv(nr_cols, col_types);
  413. view = gtk_tree_view_new();
  414. renderer = gtk_cell_renderer_text_new();
  415. col_idx = 0;
  416. /* the first hpp_list_node is for overhead columns */
  417. fmt_node = list_first_entry(&hists->hpp_formats,
  418. struct perf_hpp_list_node, list);
  419. perf_hpp_list__for_each_format(&fmt_node->hpp, fmt) {
  420. gtk_tree_view_insert_column_with_attributes(GTK_TREE_VIEW(view),
  421. -1, fmt->name,
  422. renderer, "markup",
  423. col_idx++, NULL);
  424. }
  425. /* construct merged column header since sort keys share single column */
  426. buf[0] = '\0';
  427. first_node = true;
  428. list_for_each_entry_continue(fmt_node, &hists->hpp_formats, list) {
  429. if (!first_node)
  430. strcat(buf, " / ");
  431. first_node = false;
  432. first_col = true;
  433. perf_hpp_list__for_each_format(&fmt_node->hpp ,fmt) {
  434. if (perf_hpp__should_skip(fmt, hists))
  435. continue;
  436. if (!first_col)
  437. strcat(buf, "+");
  438. first_col = false;
  439. fmt->header(fmt, &hpp, hists, 0, NULL);
  440. strcat(buf, ltrim(rtrim(hpp.buf)));
  441. }
  442. }
  443. gtk_tree_view_insert_column_with_attributes(GTK_TREE_VIEW(view),
  444. -1, buf,
  445. renderer, "markup",
  446. col_idx++, NULL);
  447. for (col_idx = 0; col_idx < nr_cols; col_idx++) {
  448. GtkTreeViewColumn *column;
  449. column = gtk_tree_view_get_column(GTK_TREE_VIEW(view), col_idx);
  450. gtk_tree_view_column_set_resizable(column, TRUE);
  451. if (col_idx == 0) {
  452. gtk_tree_view_set_expander_column(GTK_TREE_VIEW(view),
  453. column);
  454. }
  455. }
  456. gtk_tree_view_set_model(GTK_TREE_VIEW(view), GTK_TREE_MODEL(store));
  457. g_object_unref(GTK_TREE_MODEL(store));
  458. perf_gtk__add_hierarchy_entries(hists, &hists->entries, store,
  459. NULL, &hpp, min_pcnt);
  460. gtk_tree_view_set_rules_hint(GTK_TREE_VIEW(view), TRUE);
  461. g_signal_connect(view, "row-activated",
  462. G_CALLBACK(on_row_activated), NULL);
  463. gtk_container_add(GTK_CONTAINER(window), view);
  464. }
  465. int perf_evlist__gtk_browse_hists(struct perf_evlist *evlist,
  466. const char *help,
  467. struct hist_browser_timer *hbt __maybe_unused,
  468. float min_pcnt)
  469. {
  470. struct perf_evsel *pos;
  471. GtkWidget *vbox;
  472. GtkWidget *notebook;
  473. GtkWidget *info_bar;
  474. GtkWidget *statbar;
  475. GtkWidget *window;
  476. signal(SIGSEGV, perf_gtk__signal);
  477. signal(SIGFPE, perf_gtk__signal);
  478. signal(SIGINT, perf_gtk__signal);
  479. signal(SIGQUIT, perf_gtk__signal);
  480. signal(SIGTERM, perf_gtk__signal);
  481. window = gtk_window_new(GTK_WINDOW_TOPLEVEL);
  482. gtk_window_set_title(GTK_WINDOW(window), "perf report");
  483. g_signal_connect(window, "delete_event", gtk_main_quit, NULL);
  484. pgctx = perf_gtk__activate_context(window);
  485. if (!pgctx)
  486. return -1;
  487. vbox = gtk_vbox_new(FALSE, 0);
  488. notebook = gtk_notebook_new();
  489. gtk_box_pack_start(GTK_BOX(vbox), notebook, TRUE, TRUE, 0);
  490. info_bar = perf_gtk__setup_info_bar();
  491. if (info_bar)
  492. gtk_box_pack_start(GTK_BOX(vbox), info_bar, FALSE, FALSE, 0);
  493. statbar = perf_gtk__setup_statusbar();
  494. gtk_box_pack_start(GTK_BOX(vbox), statbar, FALSE, FALSE, 0);
  495. gtk_container_add(GTK_CONTAINER(window), vbox);
  496. evlist__for_each_entry(evlist, pos) {
  497. struct hists *hists = evsel__hists(pos);
  498. const char *evname = perf_evsel__name(pos);
  499. GtkWidget *scrolled_window;
  500. GtkWidget *tab_label;
  501. char buf[512];
  502. size_t size = sizeof(buf);
  503. if (symbol_conf.event_group) {
  504. if (!perf_evsel__is_group_leader(pos))
  505. continue;
  506. if (pos->nr_members > 1) {
  507. perf_evsel__group_desc(pos, buf, size);
  508. evname = buf;
  509. }
  510. }
  511. scrolled_window = gtk_scrolled_window_new(NULL, NULL);
  512. gtk_scrolled_window_set_policy(GTK_SCROLLED_WINDOW(scrolled_window),
  513. GTK_POLICY_AUTOMATIC,
  514. GTK_POLICY_AUTOMATIC);
  515. if (symbol_conf.report_hierarchy)
  516. perf_gtk__show_hierarchy(scrolled_window, hists, min_pcnt);
  517. else
  518. perf_gtk__show_hists(scrolled_window, hists, min_pcnt);
  519. tab_label = gtk_label_new(evname);
  520. gtk_notebook_append_page(GTK_NOTEBOOK(notebook), scrolled_window, tab_label);
  521. }
  522. gtk_widget_show_all(window);
  523. perf_gtk__resize_window(window);
  524. gtk_window_set_position(GTK_WINDOW(window), GTK_WIN_POS_CENTER);
  525. ui_helpline__push(help);
  526. gtk_main();
  527. perf_gtk__deactivate_context(&pgctx);
  528. return 0;
  529. }