Merge tag 'block-5.11-2021-01-10' of git://git.kernel.dk/linux-block
[linux/fpc-iii.git] / tools / perf / builtin-c2c.c
blobc5babeaa3b389e89651428233844fc7764c04926
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * This is rewrite of original c2c tool introduced in here:
4 * http://lwn.net/Articles/588866/
6 * The original tool was changed to fit in current perf state.
8 * Original authors:
9 * Don Zickus <dzickus@redhat.com>
10 * Dick Fowles <fowles@inreach.com>
11 * Joe Mario <jmario@redhat.com>
13 #include <errno.h>
14 #include <inttypes.h>
15 #include <linux/compiler.h>
16 #include <linux/err.h>
17 #include <linux/kernel.h>
18 #include <linux/stringify.h>
19 #include <linux/zalloc.h>
20 #include <asm/bug.h>
21 #include <sys/param.h>
22 #include "debug.h"
23 #include "builtin.h"
24 #include <perf/cpumap.h>
25 #include <subcmd/pager.h>
26 #include <subcmd/parse-options.h>
27 #include "map_symbol.h"
28 #include "mem-events.h"
29 #include "session.h"
30 #include "hist.h"
31 #include "sort.h"
32 #include "tool.h"
33 #include "cacheline.h"
34 #include "data.h"
35 #include "event.h"
36 #include "evlist.h"
37 #include "evsel.h"
38 #include "ui/browsers/hists.h"
39 #include "thread.h"
40 #include "mem2node.h"
41 #include "symbol.h"
42 #include "ui/ui.h"
43 #include "ui/progress.h"
44 #include "../perf.h"
46 struct c2c_hists {
47 struct hists hists;
48 struct perf_hpp_list list;
49 struct c2c_stats stats;
52 struct compute_stats {
53 struct stats lcl_hitm;
54 struct stats rmt_hitm;
55 struct stats load;
58 struct c2c_hist_entry {
59 struct c2c_hists *hists;
60 struct c2c_stats stats;
61 unsigned long *cpuset;
62 unsigned long *nodeset;
63 struct c2c_stats *node_stats;
64 unsigned int cacheline_idx;
66 struct compute_stats cstats;
68 unsigned long paddr;
69 unsigned long paddr_cnt;
70 bool paddr_zero;
71 char *nodestr;
74 * must be at the end,
75 * because of its callchain dynamic entry
77 struct hist_entry he;
80 static char const *coalesce_default = "iaddr";
82 struct perf_c2c {
83 struct perf_tool tool;
84 struct c2c_hists hists;
85 struct mem2node mem2node;
87 unsigned long **nodes;
88 int nodes_cnt;
89 int cpus_cnt;
90 int *cpu2node;
91 int node_info;
93 bool show_src;
94 bool show_all;
95 bool use_stdio;
96 bool stats_only;
97 bool symbol_full;
98 bool stitch_lbr;
100 /* HITM shared clines stats */
101 struct c2c_stats hitm_stats;
102 int shared_clines;
104 int display;
106 const char *coalesce;
107 char *cl_sort;
108 char *cl_resort;
109 char *cl_output;
112 enum {
113 DISPLAY_LCL,
114 DISPLAY_RMT,
115 DISPLAY_TOT,
116 DISPLAY_MAX,
119 static const char *display_str[DISPLAY_MAX] = {
120 [DISPLAY_LCL] = "Local",
121 [DISPLAY_RMT] = "Remote",
122 [DISPLAY_TOT] = "Total",
125 static const struct option c2c_options[] = {
126 OPT_INCR('v', "verbose", &verbose, "be more verbose (show counter open errors, etc)"),
127 OPT_END()
130 static struct perf_c2c c2c;
132 static void *c2c_he_zalloc(size_t size)
134 struct c2c_hist_entry *c2c_he;
136 c2c_he = zalloc(size + sizeof(*c2c_he));
137 if (!c2c_he)
138 return NULL;
140 c2c_he->cpuset = bitmap_alloc(c2c.cpus_cnt);
141 if (!c2c_he->cpuset)
142 return NULL;
144 c2c_he->nodeset = bitmap_alloc(c2c.nodes_cnt);
145 if (!c2c_he->nodeset)
146 return NULL;
148 c2c_he->node_stats = zalloc(c2c.nodes_cnt * sizeof(*c2c_he->node_stats));
149 if (!c2c_he->node_stats)
150 return NULL;
152 init_stats(&c2c_he->cstats.lcl_hitm);
153 init_stats(&c2c_he->cstats.rmt_hitm);
154 init_stats(&c2c_he->cstats.load);
156 return &c2c_he->he;
159 static void c2c_he_free(void *he)
161 struct c2c_hist_entry *c2c_he;
163 c2c_he = container_of(he, struct c2c_hist_entry, he);
164 if (c2c_he->hists) {
165 hists__delete_entries(&c2c_he->hists->hists);
166 free(c2c_he->hists);
169 free(c2c_he->cpuset);
170 free(c2c_he->nodeset);
171 free(c2c_he->nodestr);
172 free(c2c_he->node_stats);
173 free(c2c_he);
176 static struct hist_entry_ops c2c_entry_ops = {
177 .new = c2c_he_zalloc,
178 .free = c2c_he_free,
181 static int c2c_hists__init(struct c2c_hists *hists,
182 const char *sort,
183 int nr_header_lines);
185 static struct c2c_hists*
186 he__get_c2c_hists(struct hist_entry *he,
187 const char *sort,
188 int nr_header_lines)
190 struct c2c_hist_entry *c2c_he;
191 struct c2c_hists *hists;
192 int ret;
194 c2c_he = container_of(he, struct c2c_hist_entry, he);
195 if (c2c_he->hists)
196 return c2c_he->hists;
198 hists = c2c_he->hists = zalloc(sizeof(*hists));
199 if (!hists)
200 return NULL;
202 ret = c2c_hists__init(hists, sort, nr_header_lines);
203 if (ret) {
204 free(hists);
205 return NULL;
208 return hists;
211 static void c2c_he__set_cpu(struct c2c_hist_entry *c2c_he,
212 struct perf_sample *sample)
214 if (WARN_ONCE(sample->cpu == (unsigned int) -1,
215 "WARNING: no sample cpu value"))
216 return;
218 set_bit(sample->cpu, c2c_he->cpuset);
221 static void c2c_he__set_node(struct c2c_hist_entry *c2c_he,
222 struct perf_sample *sample)
224 int node;
226 if (!sample->phys_addr) {
227 c2c_he->paddr_zero = true;
228 return;
231 node = mem2node__node(&c2c.mem2node, sample->phys_addr);
232 if (WARN_ONCE(node < 0, "WARNING: failed to find node\n"))
233 return;
235 set_bit(node, c2c_he->nodeset);
237 if (c2c_he->paddr != sample->phys_addr) {
238 c2c_he->paddr_cnt++;
239 c2c_he->paddr = sample->phys_addr;
243 static void compute_stats(struct c2c_hist_entry *c2c_he,
244 struct c2c_stats *stats,
245 u64 weight)
247 struct compute_stats *cstats = &c2c_he->cstats;
249 if (stats->rmt_hitm)
250 update_stats(&cstats->rmt_hitm, weight);
251 else if (stats->lcl_hitm)
252 update_stats(&cstats->lcl_hitm, weight);
253 else if (stats->load)
254 update_stats(&cstats->load, weight);
257 static int process_sample_event(struct perf_tool *tool __maybe_unused,
258 union perf_event *event,
259 struct perf_sample *sample,
260 struct evsel *evsel,
261 struct machine *machine)
263 struct c2c_hists *c2c_hists = &c2c.hists;
264 struct c2c_hist_entry *c2c_he;
265 struct c2c_stats stats = { .nr_entries = 0, };
266 struct hist_entry *he;
267 struct addr_location al;
268 struct mem_info *mi, *mi_dup;
269 int ret;
271 if (machine__resolve(machine, &al, sample) < 0) {
272 pr_debug("problem processing %d event, skipping it.\n",
273 event->header.type);
274 return -1;
277 if (c2c.stitch_lbr)
278 al.thread->lbr_stitch_enable = true;
280 ret = sample__resolve_callchain(sample, &callchain_cursor, NULL,
281 evsel, &al, sysctl_perf_event_max_stack);
282 if (ret)
283 goto out;
285 mi = sample__resolve_mem(sample, &al);
286 if (mi == NULL)
287 return -ENOMEM;
290 * The mi object is released in hists__add_entry_ops,
291 * if it gets sorted out into existing data, so we need
292 * to take the copy now.
294 mi_dup = mem_info__get(mi);
296 c2c_decode_stats(&stats, mi);
298 he = hists__add_entry_ops(&c2c_hists->hists, &c2c_entry_ops,
299 &al, NULL, NULL, mi,
300 sample, true);
301 if (he == NULL)
302 goto free_mi;
304 c2c_he = container_of(he, struct c2c_hist_entry, he);
305 c2c_add_stats(&c2c_he->stats, &stats);
306 c2c_add_stats(&c2c_hists->stats, &stats);
308 c2c_he__set_cpu(c2c_he, sample);
309 c2c_he__set_node(c2c_he, sample);
311 hists__inc_nr_samples(&c2c_hists->hists, he->filtered);
312 ret = hist_entry__append_callchain(he, sample);
314 if (!ret) {
316 * There's already been warning about missing
317 * sample's cpu value. Let's account all to
318 * node 0 in this case, without any further
319 * warning.
321 * Doing node stats only for single callchain data.
323 int cpu = sample->cpu == (unsigned int) -1 ? 0 : sample->cpu;
324 int node = c2c.cpu2node[cpu];
326 mi = mi_dup;
328 c2c_hists = he__get_c2c_hists(he, c2c.cl_sort, 2);
329 if (!c2c_hists)
330 goto free_mi;
332 he = hists__add_entry_ops(&c2c_hists->hists, &c2c_entry_ops,
333 &al, NULL, NULL, mi,
334 sample, true);
335 if (he == NULL)
336 goto free_mi;
338 c2c_he = container_of(he, struct c2c_hist_entry, he);
339 c2c_add_stats(&c2c_he->stats, &stats);
340 c2c_add_stats(&c2c_hists->stats, &stats);
341 c2c_add_stats(&c2c_he->node_stats[node], &stats);
343 compute_stats(c2c_he, &stats, sample->weight);
345 c2c_he__set_cpu(c2c_he, sample);
346 c2c_he__set_node(c2c_he, sample);
348 hists__inc_nr_samples(&c2c_hists->hists, he->filtered);
349 ret = hist_entry__append_callchain(he, sample);
352 out:
353 addr_location__put(&al);
354 return ret;
356 free_mi:
357 mem_info__put(mi_dup);
358 mem_info__put(mi);
359 ret = -ENOMEM;
360 goto out;
363 static struct perf_c2c c2c = {
364 .tool = {
365 .sample = process_sample_event,
366 .mmap = perf_event__process_mmap,
367 .mmap2 = perf_event__process_mmap2,
368 .comm = perf_event__process_comm,
369 .exit = perf_event__process_exit,
370 .fork = perf_event__process_fork,
371 .lost = perf_event__process_lost,
372 .attr = perf_event__process_attr,
373 .auxtrace_info = perf_event__process_auxtrace_info,
374 .auxtrace = perf_event__process_auxtrace,
375 .auxtrace_error = perf_event__process_auxtrace_error,
376 .ordered_events = true,
377 .ordering_requires_timestamps = true,
381 static const char * const c2c_usage[] = {
382 "perf c2c {record|report}",
383 NULL
386 static const char * const __usage_report[] = {
387 "perf c2c report",
388 NULL
391 static const char * const *report_c2c_usage = __usage_report;
393 #define C2C_HEADER_MAX 2
395 struct c2c_header {
396 struct {
397 const char *text;
398 int span;
399 } line[C2C_HEADER_MAX];
402 struct c2c_dimension {
403 struct c2c_header header;
404 const char *name;
405 int width;
406 struct sort_entry *se;
408 int64_t (*cmp)(struct perf_hpp_fmt *fmt,
409 struct hist_entry *, struct hist_entry *);
410 int (*entry)(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
411 struct hist_entry *he);
412 int (*color)(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
413 struct hist_entry *he);
416 struct c2c_fmt {
417 struct perf_hpp_fmt fmt;
418 struct c2c_dimension *dim;
421 #define SYMBOL_WIDTH 30
423 static struct c2c_dimension dim_symbol;
424 static struct c2c_dimension dim_srcline;
426 static int symbol_width(struct hists *hists, struct sort_entry *se)
428 int width = hists__col_len(hists, se->se_width_idx);
430 if (!c2c.symbol_full)
431 width = MIN(width, SYMBOL_WIDTH);
433 return width;
436 static int c2c_width(struct perf_hpp_fmt *fmt,
437 struct perf_hpp *hpp __maybe_unused,
438 struct hists *hists)
440 struct c2c_fmt *c2c_fmt;
441 struct c2c_dimension *dim;
443 c2c_fmt = container_of(fmt, struct c2c_fmt, fmt);
444 dim = c2c_fmt->dim;
446 if (dim == &dim_symbol || dim == &dim_srcline)
447 return symbol_width(hists, dim->se);
449 return dim->se ? hists__col_len(hists, dim->se->se_width_idx) :
450 c2c_fmt->dim->width;
453 static int c2c_header(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
454 struct hists *hists, int line, int *span)
456 struct perf_hpp_list *hpp_list = hists->hpp_list;
457 struct c2c_fmt *c2c_fmt;
458 struct c2c_dimension *dim;
459 const char *text = NULL;
460 int width = c2c_width(fmt, hpp, hists);
462 c2c_fmt = container_of(fmt, struct c2c_fmt, fmt);
463 dim = c2c_fmt->dim;
465 if (dim->se) {
466 text = dim->header.line[line].text;
467 /* Use the last line from sort_entry if not defined. */
468 if (!text && (line == hpp_list->nr_header_lines - 1))
469 text = dim->se->se_header;
470 } else {
471 text = dim->header.line[line].text;
473 if (*span) {
474 (*span)--;
475 return 0;
476 } else {
477 *span = dim->header.line[line].span;
481 if (text == NULL)
482 text = "";
484 return scnprintf(hpp->buf, hpp->size, "%*s", width, text);
487 #define HEX_STR(__s, __v) \
488 ({ \
489 scnprintf(__s, sizeof(__s), "0x%" PRIx64, __v); \
490 __s; \
493 static int64_t
494 dcacheline_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
495 struct hist_entry *left, struct hist_entry *right)
497 return sort__dcacheline_cmp(left, right);
500 static int dcacheline_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
501 struct hist_entry *he)
503 uint64_t addr = 0;
504 int width = c2c_width(fmt, hpp, he->hists);
505 char buf[20];
507 if (he->mem_info)
508 addr = cl_address(he->mem_info->daddr.addr);
510 return scnprintf(hpp->buf, hpp->size, "%*s", width, HEX_STR(buf, addr));
513 static int
514 dcacheline_node_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
515 struct hist_entry *he)
517 struct c2c_hist_entry *c2c_he;
518 int width = c2c_width(fmt, hpp, he->hists);
520 c2c_he = container_of(he, struct c2c_hist_entry, he);
521 if (WARN_ON_ONCE(!c2c_he->nodestr))
522 return 0;
524 return scnprintf(hpp->buf, hpp->size, "%*s", width, c2c_he->nodestr);
527 static int
528 dcacheline_node_count(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
529 struct hist_entry *he)
531 struct c2c_hist_entry *c2c_he;
532 int width = c2c_width(fmt, hpp, he->hists);
534 c2c_he = container_of(he, struct c2c_hist_entry, he);
535 return scnprintf(hpp->buf, hpp->size, "%*lu", width, c2c_he->paddr_cnt);
538 static int offset_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
539 struct hist_entry *he)
541 uint64_t addr = 0;
542 int width = c2c_width(fmt, hpp, he->hists);
543 char buf[20];
545 if (he->mem_info)
546 addr = cl_offset(he->mem_info->daddr.al_addr);
548 return scnprintf(hpp->buf, hpp->size, "%*s", width, HEX_STR(buf, addr));
551 static int64_t
552 offset_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
553 struct hist_entry *left, struct hist_entry *right)
555 uint64_t l = 0, r = 0;
557 if (left->mem_info)
558 l = cl_offset(left->mem_info->daddr.addr);
559 if (right->mem_info)
560 r = cl_offset(right->mem_info->daddr.addr);
562 return (int64_t)(r - l);
565 static int
566 iaddr_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
567 struct hist_entry *he)
569 uint64_t addr = 0;
570 int width = c2c_width(fmt, hpp, he->hists);
571 char buf[20];
573 if (he->mem_info)
574 addr = he->mem_info->iaddr.addr;
576 return scnprintf(hpp->buf, hpp->size, "%*s", width, HEX_STR(buf, addr));
579 static int64_t
580 iaddr_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
581 struct hist_entry *left, struct hist_entry *right)
583 return sort__iaddr_cmp(left, right);
586 static int
587 tot_hitm_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
588 struct hist_entry *he)
590 struct c2c_hist_entry *c2c_he;
591 int width = c2c_width(fmt, hpp, he->hists);
592 unsigned int tot_hitm;
594 c2c_he = container_of(he, struct c2c_hist_entry, he);
595 tot_hitm = c2c_he->stats.lcl_hitm + c2c_he->stats.rmt_hitm;
597 return scnprintf(hpp->buf, hpp->size, "%*u", width, tot_hitm);
600 static int64_t
601 tot_hitm_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
602 struct hist_entry *left, struct hist_entry *right)
604 struct c2c_hist_entry *c2c_left;
605 struct c2c_hist_entry *c2c_right;
606 uint64_t tot_hitm_left;
607 uint64_t tot_hitm_right;
609 c2c_left = container_of(left, struct c2c_hist_entry, he);
610 c2c_right = container_of(right, struct c2c_hist_entry, he);
612 tot_hitm_left = c2c_left->stats.lcl_hitm + c2c_left->stats.rmt_hitm;
613 tot_hitm_right = c2c_right->stats.lcl_hitm + c2c_right->stats.rmt_hitm;
615 return tot_hitm_left - tot_hitm_right;
618 #define STAT_FN_ENTRY(__f) \
619 static int \
620 __f ## _entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp, \
621 struct hist_entry *he) \
623 struct c2c_hist_entry *c2c_he; \
624 int width = c2c_width(fmt, hpp, he->hists); \
626 c2c_he = container_of(he, struct c2c_hist_entry, he); \
627 return scnprintf(hpp->buf, hpp->size, "%*u", width, \
628 c2c_he->stats.__f); \
631 #define STAT_FN_CMP(__f) \
632 static int64_t \
633 __f ## _cmp(struct perf_hpp_fmt *fmt __maybe_unused, \
634 struct hist_entry *left, struct hist_entry *right) \
636 struct c2c_hist_entry *c2c_left, *c2c_right; \
638 c2c_left = container_of(left, struct c2c_hist_entry, he); \
639 c2c_right = container_of(right, struct c2c_hist_entry, he); \
640 return (uint64_t) c2c_left->stats.__f - \
641 (uint64_t) c2c_right->stats.__f; \
644 #define STAT_FN(__f) \
645 STAT_FN_ENTRY(__f) \
646 STAT_FN_CMP(__f)
648 STAT_FN(rmt_hitm)
649 STAT_FN(lcl_hitm)
650 STAT_FN(store)
651 STAT_FN(st_l1hit)
652 STAT_FN(st_l1miss)
653 STAT_FN(ld_fbhit)
654 STAT_FN(ld_l1hit)
655 STAT_FN(ld_l2hit)
656 STAT_FN(ld_llchit)
657 STAT_FN(rmt_hit)
659 static uint64_t total_records(struct c2c_stats *stats)
661 uint64_t lclmiss, ldcnt, total;
663 lclmiss = stats->lcl_dram +
664 stats->rmt_dram +
665 stats->rmt_hitm +
666 stats->rmt_hit;
668 ldcnt = lclmiss +
669 stats->ld_fbhit +
670 stats->ld_l1hit +
671 stats->ld_l2hit +
672 stats->ld_llchit +
673 stats->lcl_hitm;
675 total = ldcnt +
676 stats->st_l1hit +
677 stats->st_l1miss;
679 return total;
682 static int
683 tot_recs_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
684 struct hist_entry *he)
686 struct c2c_hist_entry *c2c_he;
687 int width = c2c_width(fmt, hpp, he->hists);
688 uint64_t tot_recs;
690 c2c_he = container_of(he, struct c2c_hist_entry, he);
691 tot_recs = total_records(&c2c_he->stats);
693 return scnprintf(hpp->buf, hpp->size, "%*" PRIu64, width, tot_recs);
696 static int64_t
697 tot_recs_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
698 struct hist_entry *left, struct hist_entry *right)
700 struct c2c_hist_entry *c2c_left;
701 struct c2c_hist_entry *c2c_right;
702 uint64_t tot_recs_left;
703 uint64_t tot_recs_right;
705 c2c_left = container_of(left, struct c2c_hist_entry, he);
706 c2c_right = container_of(right, struct c2c_hist_entry, he);
708 tot_recs_left = total_records(&c2c_left->stats);
709 tot_recs_right = total_records(&c2c_right->stats);
711 return tot_recs_left - tot_recs_right;
714 static uint64_t total_loads(struct c2c_stats *stats)
716 uint64_t lclmiss, ldcnt;
718 lclmiss = stats->lcl_dram +
719 stats->rmt_dram +
720 stats->rmt_hitm +
721 stats->rmt_hit;
723 ldcnt = lclmiss +
724 stats->ld_fbhit +
725 stats->ld_l1hit +
726 stats->ld_l2hit +
727 stats->ld_llchit +
728 stats->lcl_hitm;
730 return ldcnt;
733 static int
734 tot_loads_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
735 struct hist_entry *he)
737 struct c2c_hist_entry *c2c_he;
738 int width = c2c_width(fmt, hpp, he->hists);
739 uint64_t tot_recs;
741 c2c_he = container_of(he, struct c2c_hist_entry, he);
742 tot_recs = total_loads(&c2c_he->stats);
744 return scnprintf(hpp->buf, hpp->size, "%*" PRIu64, width, tot_recs);
747 static int64_t
748 tot_loads_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
749 struct hist_entry *left, struct hist_entry *right)
751 struct c2c_hist_entry *c2c_left;
752 struct c2c_hist_entry *c2c_right;
753 uint64_t tot_recs_left;
754 uint64_t tot_recs_right;
756 c2c_left = container_of(left, struct c2c_hist_entry, he);
757 c2c_right = container_of(right, struct c2c_hist_entry, he);
759 tot_recs_left = total_loads(&c2c_left->stats);
760 tot_recs_right = total_loads(&c2c_right->stats);
762 return tot_recs_left - tot_recs_right;
765 typedef double (get_percent_cb)(struct c2c_hist_entry *);
767 static int
768 percent_color(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
769 struct hist_entry *he, get_percent_cb get_percent)
771 struct c2c_hist_entry *c2c_he;
772 int width = c2c_width(fmt, hpp, he->hists);
773 double per;
775 c2c_he = container_of(he, struct c2c_hist_entry, he);
776 per = get_percent(c2c_he);
778 #ifdef HAVE_SLANG_SUPPORT
779 if (use_browser)
780 return __hpp__slsmg_color_printf(hpp, "%*.2f%%", width - 1, per);
781 #endif
782 return hpp_color_scnprintf(hpp, "%*.2f%%", width - 1, per);
785 static double percent_hitm(struct c2c_hist_entry *c2c_he)
787 struct c2c_hists *hists;
788 struct c2c_stats *stats;
789 struct c2c_stats *total;
790 int tot = 0, st = 0;
791 double p;
793 hists = container_of(c2c_he->he.hists, struct c2c_hists, hists);
794 stats = &c2c_he->stats;
795 total = &hists->stats;
797 switch (c2c.display) {
798 case DISPLAY_RMT:
799 st = stats->rmt_hitm;
800 tot = total->rmt_hitm;
801 break;
802 case DISPLAY_LCL:
803 st = stats->lcl_hitm;
804 tot = total->lcl_hitm;
805 break;
806 case DISPLAY_TOT:
807 st = stats->tot_hitm;
808 tot = total->tot_hitm;
809 default:
810 break;
813 p = tot ? (double) st / tot : 0;
815 return 100 * p;
818 #define PERC_STR(__s, __v) \
819 ({ \
820 scnprintf(__s, sizeof(__s), "%.2F%%", __v); \
821 __s; \
824 static int
825 percent_hitm_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
826 struct hist_entry *he)
828 struct c2c_hist_entry *c2c_he;
829 int width = c2c_width(fmt, hpp, he->hists);
830 char buf[10];
831 double per;
833 c2c_he = container_of(he, struct c2c_hist_entry, he);
834 per = percent_hitm(c2c_he);
835 return scnprintf(hpp->buf, hpp->size, "%*s", width, PERC_STR(buf, per));
838 static int
839 percent_hitm_color(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
840 struct hist_entry *he)
842 return percent_color(fmt, hpp, he, percent_hitm);
845 static int64_t
846 percent_hitm_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
847 struct hist_entry *left, struct hist_entry *right)
849 struct c2c_hist_entry *c2c_left;
850 struct c2c_hist_entry *c2c_right;
851 double per_left;
852 double per_right;
854 c2c_left = container_of(left, struct c2c_hist_entry, he);
855 c2c_right = container_of(right, struct c2c_hist_entry, he);
857 per_left = percent_hitm(c2c_left);
858 per_right = percent_hitm(c2c_right);
860 return per_left - per_right;
863 static struct c2c_stats *he_stats(struct hist_entry *he)
865 struct c2c_hist_entry *c2c_he;
867 c2c_he = container_of(he, struct c2c_hist_entry, he);
868 return &c2c_he->stats;
871 static struct c2c_stats *total_stats(struct hist_entry *he)
873 struct c2c_hists *hists;
875 hists = container_of(he->hists, struct c2c_hists, hists);
876 return &hists->stats;
879 static double percent(int st, int tot)
881 return tot ? 100. * (double) st / (double) tot : 0;
884 #define PERCENT(__h, __f) percent(he_stats(__h)->__f, total_stats(__h)->__f)
886 #define PERCENT_FN(__f) \
887 static double percent_ ## __f(struct c2c_hist_entry *c2c_he) \
889 struct c2c_hists *hists; \
891 hists = container_of(c2c_he->he.hists, struct c2c_hists, hists); \
892 return percent(c2c_he->stats.__f, hists->stats.__f); \
895 PERCENT_FN(rmt_hitm)
896 PERCENT_FN(lcl_hitm)
897 PERCENT_FN(st_l1hit)
898 PERCENT_FN(st_l1miss)
900 static int
901 percent_rmt_hitm_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
902 struct hist_entry *he)
904 int width = c2c_width(fmt, hpp, he->hists);
905 double per = PERCENT(he, rmt_hitm);
906 char buf[10];
908 return scnprintf(hpp->buf, hpp->size, "%*s", width, PERC_STR(buf, per));
911 static int
912 percent_rmt_hitm_color(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
913 struct hist_entry *he)
915 return percent_color(fmt, hpp, he, percent_rmt_hitm);
918 static int64_t
919 percent_rmt_hitm_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
920 struct hist_entry *left, struct hist_entry *right)
922 double per_left;
923 double per_right;
925 per_left = PERCENT(left, lcl_hitm);
926 per_right = PERCENT(right, lcl_hitm);
928 return per_left - per_right;
931 static int
932 percent_lcl_hitm_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
933 struct hist_entry *he)
935 int width = c2c_width(fmt, hpp, he->hists);
936 double per = PERCENT(he, lcl_hitm);
937 char buf[10];
939 return scnprintf(hpp->buf, hpp->size, "%*s", width, PERC_STR(buf, per));
942 static int
943 percent_lcl_hitm_color(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
944 struct hist_entry *he)
946 return percent_color(fmt, hpp, he, percent_lcl_hitm);
949 static int64_t
950 percent_lcl_hitm_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
951 struct hist_entry *left, struct hist_entry *right)
953 double per_left;
954 double per_right;
956 per_left = PERCENT(left, lcl_hitm);
957 per_right = PERCENT(right, lcl_hitm);
959 return per_left - per_right;
962 static int
963 percent_stores_l1hit_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
964 struct hist_entry *he)
966 int width = c2c_width(fmt, hpp, he->hists);
967 double per = PERCENT(he, st_l1hit);
968 char buf[10];
970 return scnprintf(hpp->buf, hpp->size, "%*s", width, PERC_STR(buf, per));
973 static int
974 percent_stores_l1hit_color(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
975 struct hist_entry *he)
977 return percent_color(fmt, hpp, he, percent_st_l1hit);
980 static int64_t
981 percent_stores_l1hit_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
982 struct hist_entry *left, struct hist_entry *right)
984 double per_left;
985 double per_right;
987 per_left = PERCENT(left, st_l1hit);
988 per_right = PERCENT(right, st_l1hit);
990 return per_left - per_right;
993 static int
994 percent_stores_l1miss_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
995 struct hist_entry *he)
997 int width = c2c_width(fmt, hpp, he->hists);
998 double per = PERCENT(he, st_l1miss);
999 char buf[10];
1001 return scnprintf(hpp->buf, hpp->size, "%*s", width, PERC_STR(buf, per));
1004 static int
1005 percent_stores_l1miss_color(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
1006 struct hist_entry *he)
1008 return percent_color(fmt, hpp, he, percent_st_l1miss);
1011 static int64_t
1012 percent_stores_l1miss_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
1013 struct hist_entry *left, struct hist_entry *right)
1015 double per_left;
1016 double per_right;
1018 per_left = PERCENT(left, st_l1miss);
1019 per_right = PERCENT(right, st_l1miss);
1021 return per_left - per_right;
1024 STAT_FN(lcl_dram)
1025 STAT_FN(rmt_dram)
1027 static int
1028 pid_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
1029 struct hist_entry *he)
1031 int width = c2c_width(fmt, hpp, he->hists);
1033 return scnprintf(hpp->buf, hpp->size, "%*d", width, he->thread->pid_);
1036 static int64_t
1037 pid_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
1038 struct hist_entry *left, struct hist_entry *right)
1040 return left->thread->pid_ - right->thread->pid_;
1043 static int64_t
1044 empty_cmp(struct perf_hpp_fmt *fmt __maybe_unused,
1045 struct hist_entry *left __maybe_unused,
1046 struct hist_entry *right __maybe_unused)
1048 return 0;
1051 static int
1052 node_entry(struct perf_hpp_fmt *fmt __maybe_unused, struct perf_hpp *hpp,
1053 struct hist_entry *he)
1055 struct c2c_hist_entry *c2c_he;
1056 bool first = true;
1057 int node;
1058 int ret = 0;
1060 c2c_he = container_of(he, struct c2c_hist_entry, he);
1062 for (node = 0; node < c2c.nodes_cnt; node++) {
1063 DECLARE_BITMAP(set, c2c.cpus_cnt);
1065 bitmap_zero(set, c2c.cpus_cnt);
1066 bitmap_and(set, c2c_he->cpuset, c2c.nodes[node], c2c.cpus_cnt);
1068 if (!bitmap_weight(set, c2c.cpus_cnt)) {
1069 if (c2c.node_info == 1) {
1070 ret = scnprintf(hpp->buf, hpp->size, "%21s", " ");
1071 advance_hpp(hpp, ret);
1073 continue;
1076 if (!first) {
1077 ret = scnprintf(hpp->buf, hpp->size, " ");
1078 advance_hpp(hpp, ret);
1081 switch (c2c.node_info) {
1082 case 0:
1083 ret = scnprintf(hpp->buf, hpp->size, "%2d", node);
1084 advance_hpp(hpp, ret);
1085 break;
1086 case 1:
1088 int num = bitmap_weight(set, c2c.cpus_cnt);
1089 struct c2c_stats *stats = &c2c_he->node_stats[node];
1091 ret = scnprintf(hpp->buf, hpp->size, "%2d{%2d ", node, num);
1092 advance_hpp(hpp, ret);
1094 #define DISPLAY_HITM(__h) \
1095 if (c2c_he->stats.__h> 0) { \
1096 ret = scnprintf(hpp->buf, hpp->size, "%5.1f%% ", \
1097 percent(stats->__h, c2c_he->stats.__h));\
1098 } else { \
1099 ret = scnprintf(hpp->buf, hpp->size, "%6s ", "n/a"); \
1102 switch (c2c.display) {
1103 case DISPLAY_RMT:
1104 DISPLAY_HITM(rmt_hitm);
1105 break;
1106 case DISPLAY_LCL:
1107 DISPLAY_HITM(lcl_hitm);
1108 break;
1109 case DISPLAY_TOT:
1110 DISPLAY_HITM(tot_hitm);
1111 default:
1112 break;
1115 #undef DISPLAY_HITM
1117 advance_hpp(hpp, ret);
1119 if (c2c_he->stats.store > 0) {
1120 ret = scnprintf(hpp->buf, hpp->size, "%5.1f%%}",
1121 percent(stats->store, c2c_he->stats.store));
1122 } else {
1123 ret = scnprintf(hpp->buf, hpp->size, "%6s}", "n/a");
1126 advance_hpp(hpp, ret);
1127 break;
1129 case 2:
1130 ret = scnprintf(hpp->buf, hpp->size, "%2d{", node);
1131 advance_hpp(hpp, ret);
1133 ret = bitmap_scnprintf(set, c2c.cpus_cnt, hpp->buf, hpp->size);
1134 advance_hpp(hpp, ret);
1136 ret = scnprintf(hpp->buf, hpp->size, "}");
1137 advance_hpp(hpp, ret);
1138 break;
1139 default:
1140 break;
1143 first = false;
1146 return 0;
1149 static int
1150 mean_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
1151 struct hist_entry *he, double mean)
1153 int width = c2c_width(fmt, hpp, he->hists);
1154 char buf[10];
1156 scnprintf(buf, 10, "%6.0f", mean);
1157 return scnprintf(hpp->buf, hpp->size, "%*s", width, buf);
1160 #define MEAN_ENTRY(__func, __val) \
1161 static int \
1162 __func(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp, struct hist_entry *he) \
1164 struct c2c_hist_entry *c2c_he; \
1165 c2c_he = container_of(he, struct c2c_hist_entry, he); \
1166 return mean_entry(fmt, hpp, he, avg_stats(&c2c_he->cstats.__val)); \
1169 MEAN_ENTRY(mean_rmt_entry, rmt_hitm);
1170 MEAN_ENTRY(mean_lcl_entry, lcl_hitm);
1171 MEAN_ENTRY(mean_load_entry, load);
1173 static int
1174 cpucnt_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
1175 struct hist_entry *he)
1177 struct c2c_hist_entry *c2c_he;
1178 int width = c2c_width(fmt, hpp, he->hists);
1179 char buf[10];
1181 c2c_he = container_of(he, struct c2c_hist_entry, he);
1183 scnprintf(buf, 10, "%d", bitmap_weight(c2c_he->cpuset, c2c.cpus_cnt));
1184 return scnprintf(hpp->buf, hpp->size, "%*s", width, buf);
1187 static int
1188 cl_idx_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
1189 struct hist_entry *he)
1191 struct c2c_hist_entry *c2c_he;
1192 int width = c2c_width(fmt, hpp, he->hists);
1193 char buf[10];
1195 c2c_he = container_of(he, struct c2c_hist_entry, he);
1197 scnprintf(buf, 10, "%u", c2c_he->cacheline_idx);
1198 return scnprintf(hpp->buf, hpp->size, "%*s", width, buf);
1201 static int
1202 cl_idx_empty_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
1203 struct hist_entry *he)
1205 int width = c2c_width(fmt, hpp, he->hists);
1207 return scnprintf(hpp->buf, hpp->size, "%*s", width, "");
1210 #define HEADER_LOW(__h) \
1212 .line[1] = { \
1213 .text = __h, \
1214 }, \
1217 #define HEADER_BOTH(__h0, __h1) \
1219 .line[0] = { \
1220 .text = __h0, \
1221 }, \
1222 .line[1] = { \
1223 .text = __h1, \
1224 }, \
1227 #define HEADER_SPAN(__h0, __h1, __s) \
1229 .line[0] = { \
1230 .text = __h0, \
1231 .span = __s, \
1232 }, \
1233 .line[1] = { \
1234 .text = __h1, \
1235 }, \
1238 #define HEADER_SPAN_LOW(__h) \
1240 .line[1] = { \
1241 .text = __h, \
1242 }, \
1245 static struct c2c_dimension dim_dcacheline = {
1246 .header = HEADER_SPAN("--- Cacheline ----", "Address", 2),
1247 .name = "dcacheline",
1248 .cmp = dcacheline_cmp,
1249 .entry = dcacheline_entry,
1250 .width = 18,
1253 static struct c2c_dimension dim_dcacheline_node = {
1254 .header = HEADER_LOW("Node"),
1255 .name = "dcacheline_node",
1256 .cmp = empty_cmp,
1257 .entry = dcacheline_node_entry,
1258 .width = 4,
1261 static struct c2c_dimension dim_dcacheline_count = {
1262 .header = HEADER_LOW("PA cnt"),
1263 .name = "dcacheline_count",
1264 .cmp = empty_cmp,
1265 .entry = dcacheline_node_count,
1266 .width = 6,
1269 static struct c2c_header header_offset_tui = HEADER_SPAN("-----", "Off", 2);
1271 static struct c2c_dimension dim_offset = {
1272 .header = HEADER_SPAN("--- Data address -", "Offset", 2),
1273 .name = "offset",
1274 .cmp = offset_cmp,
1275 .entry = offset_entry,
1276 .width = 18,
1279 static struct c2c_dimension dim_offset_node = {
1280 .header = HEADER_LOW("Node"),
1281 .name = "offset_node",
1282 .cmp = empty_cmp,
1283 .entry = dcacheline_node_entry,
1284 .width = 4,
1287 static struct c2c_dimension dim_iaddr = {
1288 .header = HEADER_LOW("Code address"),
1289 .name = "iaddr",
1290 .cmp = iaddr_cmp,
1291 .entry = iaddr_entry,
1292 .width = 18,
1295 static struct c2c_dimension dim_tot_hitm = {
1296 .header = HEADER_SPAN("------- Load Hitm -------", "Total", 2),
1297 .name = "tot_hitm",
1298 .cmp = tot_hitm_cmp,
1299 .entry = tot_hitm_entry,
1300 .width = 7,
1303 static struct c2c_dimension dim_lcl_hitm = {
1304 .header = HEADER_SPAN_LOW("LclHitm"),
1305 .name = "lcl_hitm",
1306 .cmp = lcl_hitm_cmp,
1307 .entry = lcl_hitm_entry,
1308 .width = 7,
1311 static struct c2c_dimension dim_rmt_hitm = {
1312 .header = HEADER_SPAN_LOW("RmtHitm"),
1313 .name = "rmt_hitm",
1314 .cmp = rmt_hitm_cmp,
1315 .entry = rmt_hitm_entry,
1316 .width = 7,
1319 static struct c2c_dimension dim_cl_rmt_hitm = {
1320 .header = HEADER_SPAN("----- HITM -----", "Rmt", 1),
1321 .name = "cl_rmt_hitm",
1322 .cmp = rmt_hitm_cmp,
1323 .entry = rmt_hitm_entry,
1324 .width = 7,
1327 static struct c2c_dimension dim_cl_lcl_hitm = {
1328 .header = HEADER_SPAN_LOW("Lcl"),
1329 .name = "cl_lcl_hitm",
1330 .cmp = lcl_hitm_cmp,
1331 .entry = lcl_hitm_entry,
1332 .width = 7,
1335 static struct c2c_dimension dim_tot_stores = {
1336 .header = HEADER_BOTH("Total", "Stores"),
1337 .name = "tot_stores",
1338 .cmp = store_cmp,
1339 .entry = store_entry,
1340 .width = 7,
1343 static struct c2c_dimension dim_stores_l1hit = {
1344 .header = HEADER_SPAN("---- Stores ----", "L1Hit", 1),
1345 .name = "stores_l1hit",
1346 .cmp = st_l1hit_cmp,
1347 .entry = st_l1hit_entry,
1348 .width = 7,
1351 static struct c2c_dimension dim_stores_l1miss = {
1352 .header = HEADER_SPAN_LOW("L1Miss"),
1353 .name = "stores_l1miss",
1354 .cmp = st_l1miss_cmp,
1355 .entry = st_l1miss_entry,
1356 .width = 7,
1359 static struct c2c_dimension dim_cl_stores_l1hit = {
1360 .header = HEADER_SPAN("-- Store Refs --", "L1 Hit", 1),
1361 .name = "cl_stores_l1hit",
1362 .cmp = st_l1hit_cmp,
1363 .entry = st_l1hit_entry,
1364 .width = 7,
1367 static struct c2c_dimension dim_cl_stores_l1miss = {
1368 .header = HEADER_SPAN_LOW("L1 Miss"),
1369 .name = "cl_stores_l1miss",
1370 .cmp = st_l1miss_cmp,
1371 .entry = st_l1miss_entry,
1372 .width = 7,
1375 static struct c2c_dimension dim_ld_fbhit = {
1376 .header = HEADER_SPAN("----- Core Load Hit -----", "FB", 2),
1377 .name = "ld_fbhit",
1378 .cmp = ld_fbhit_cmp,
1379 .entry = ld_fbhit_entry,
1380 .width = 7,
1383 static struct c2c_dimension dim_ld_l1hit = {
1384 .header = HEADER_SPAN_LOW("L1"),
1385 .name = "ld_l1hit",
1386 .cmp = ld_l1hit_cmp,
1387 .entry = ld_l1hit_entry,
1388 .width = 7,
1391 static struct c2c_dimension dim_ld_l2hit = {
1392 .header = HEADER_SPAN_LOW("L2"),
1393 .name = "ld_l2hit",
1394 .cmp = ld_l2hit_cmp,
1395 .entry = ld_l2hit_entry,
1396 .width = 7,
1399 static struct c2c_dimension dim_ld_llchit = {
1400 .header = HEADER_SPAN("- LLC Load Hit --", "LclHit", 1),
1401 .name = "ld_lclhit",
1402 .cmp = ld_llchit_cmp,
1403 .entry = ld_llchit_entry,
1404 .width = 8,
1407 static struct c2c_dimension dim_ld_rmthit = {
1408 .header = HEADER_SPAN("- RMT Load Hit --", "RmtHit", 1),
1409 .name = "ld_rmthit",
1410 .cmp = rmt_hit_cmp,
1411 .entry = rmt_hit_entry,
1412 .width = 8,
1415 static struct c2c_dimension dim_tot_recs = {
1416 .header = HEADER_BOTH("Total", "records"),
1417 .name = "tot_recs",
1418 .cmp = tot_recs_cmp,
1419 .entry = tot_recs_entry,
1420 .width = 7,
1423 static struct c2c_dimension dim_tot_loads = {
1424 .header = HEADER_BOTH("Total", "Loads"),
1425 .name = "tot_loads",
1426 .cmp = tot_loads_cmp,
1427 .entry = tot_loads_entry,
1428 .width = 7,
1431 static struct c2c_header percent_hitm_header[] = {
1432 [DISPLAY_LCL] = HEADER_BOTH("Lcl", "Hitm"),
1433 [DISPLAY_RMT] = HEADER_BOTH("Rmt", "Hitm"),
1434 [DISPLAY_TOT] = HEADER_BOTH("Tot", "Hitm"),
1437 static struct c2c_dimension dim_percent_hitm = {
1438 .name = "percent_hitm",
1439 .cmp = percent_hitm_cmp,
1440 .entry = percent_hitm_entry,
1441 .color = percent_hitm_color,
1442 .width = 7,
1445 static struct c2c_dimension dim_percent_rmt_hitm = {
1446 .header = HEADER_SPAN("----- HITM -----", "RmtHitm", 1),
1447 .name = "percent_rmt_hitm",
1448 .cmp = percent_rmt_hitm_cmp,
1449 .entry = percent_rmt_hitm_entry,
1450 .color = percent_rmt_hitm_color,
1451 .width = 7,
1454 static struct c2c_dimension dim_percent_lcl_hitm = {
1455 .header = HEADER_SPAN_LOW("LclHitm"),
1456 .name = "percent_lcl_hitm",
1457 .cmp = percent_lcl_hitm_cmp,
1458 .entry = percent_lcl_hitm_entry,
1459 .color = percent_lcl_hitm_color,
1460 .width = 7,
1463 static struct c2c_dimension dim_percent_stores_l1hit = {
1464 .header = HEADER_SPAN("-- Store Refs --", "L1 Hit", 1),
1465 .name = "percent_stores_l1hit",
1466 .cmp = percent_stores_l1hit_cmp,
1467 .entry = percent_stores_l1hit_entry,
1468 .color = percent_stores_l1hit_color,
1469 .width = 7,
1472 static struct c2c_dimension dim_percent_stores_l1miss = {
1473 .header = HEADER_SPAN_LOW("L1 Miss"),
1474 .name = "percent_stores_l1miss",
1475 .cmp = percent_stores_l1miss_cmp,
1476 .entry = percent_stores_l1miss_entry,
1477 .color = percent_stores_l1miss_color,
1478 .width = 7,
1481 static struct c2c_dimension dim_dram_lcl = {
1482 .header = HEADER_SPAN("--- Load Dram ----", "Lcl", 1),
1483 .name = "dram_lcl",
1484 .cmp = lcl_dram_cmp,
1485 .entry = lcl_dram_entry,
1486 .width = 8,
1489 static struct c2c_dimension dim_dram_rmt = {
1490 .header = HEADER_SPAN_LOW("Rmt"),
1491 .name = "dram_rmt",
1492 .cmp = rmt_dram_cmp,
1493 .entry = rmt_dram_entry,
1494 .width = 8,
1497 static struct c2c_dimension dim_pid = {
1498 .header = HEADER_LOW("Pid"),
1499 .name = "pid",
1500 .cmp = pid_cmp,
1501 .entry = pid_entry,
1502 .width = 7,
1505 static struct c2c_dimension dim_tid = {
1506 .header = HEADER_LOW("Tid"),
1507 .name = "tid",
1508 .se = &sort_thread,
1511 static struct c2c_dimension dim_symbol = {
1512 .name = "symbol",
1513 .se = &sort_sym,
1516 static struct c2c_dimension dim_dso = {
1517 .header = HEADER_BOTH("Shared", "Object"),
1518 .name = "dso",
1519 .se = &sort_dso,
1522 static struct c2c_header header_node[3] = {
1523 HEADER_LOW("Node"),
1524 HEADER_LOW("Node{cpus %hitms %stores}"),
1525 HEADER_LOW("Node{cpu list}"),
1528 static struct c2c_dimension dim_node = {
1529 .name = "node",
1530 .cmp = empty_cmp,
1531 .entry = node_entry,
1532 .width = 4,
1535 static struct c2c_dimension dim_mean_rmt = {
1536 .header = HEADER_SPAN("---------- cycles ----------", "rmt hitm", 2),
1537 .name = "mean_rmt",
1538 .cmp = empty_cmp,
1539 .entry = mean_rmt_entry,
1540 .width = 8,
1543 static struct c2c_dimension dim_mean_lcl = {
1544 .header = HEADER_SPAN_LOW("lcl hitm"),
1545 .name = "mean_lcl",
1546 .cmp = empty_cmp,
1547 .entry = mean_lcl_entry,
1548 .width = 8,
1551 static struct c2c_dimension dim_mean_load = {
1552 .header = HEADER_SPAN_LOW("load"),
1553 .name = "mean_load",
1554 .cmp = empty_cmp,
1555 .entry = mean_load_entry,
1556 .width = 8,
1559 static struct c2c_dimension dim_cpucnt = {
1560 .header = HEADER_BOTH("cpu", "cnt"),
1561 .name = "cpucnt",
1562 .cmp = empty_cmp,
1563 .entry = cpucnt_entry,
1564 .width = 8,
1567 static struct c2c_dimension dim_srcline = {
1568 .name = "cl_srcline",
1569 .se = &sort_srcline,
1572 static struct c2c_dimension dim_dcacheline_idx = {
1573 .header = HEADER_LOW("Index"),
1574 .name = "cl_idx",
1575 .cmp = empty_cmp,
1576 .entry = cl_idx_entry,
1577 .width = 5,
1580 static struct c2c_dimension dim_dcacheline_num = {
1581 .header = HEADER_LOW("Num"),
1582 .name = "cl_num",
1583 .cmp = empty_cmp,
1584 .entry = cl_idx_entry,
1585 .width = 5,
1588 static struct c2c_dimension dim_dcacheline_num_empty = {
1589 .header = HEADER_LOW("Num"),
1590 .name = "cl_num_empty",
1591 .cmp = empty_cmp,
1592 .entry = cl_idx_empty_entry,
1593 .width = 5,
1596 static struct c2c_dimension *dimensions[] = {
1597 &dim_dcacheline,
1598 &dim_dcacheline_node,
1599 &dim_dcacheline_count,
1600 &dim_offset,
1601 &dim_offset_node,
1602 &dim_iaddr,
1603 &dim_tot_hitm,
1604 &dim_lcl_hitm,
1605 &dim_rmt_hitm,
1606 &dim_cl_lcl_hitm,
1607 &dim_cl_rmt_hitm,
1608 &dim_tot_stores,
1609 &dim_stores_l1hit,
1610 &dim_stores_l1miss,
1611 &dim_cl_stores_l1hit,
1612 &dim_cl_stores_l1miss,
1613 &dim_ld_fbhit,
1614 &dim_ld_l1hit,
1615 &dim_ld_l2hit,
1616 &dim_ld_llchit,
1617 &dim_ld_rmthit,
1618 &dim_tot_recs,
1619 &dim_tot_loads,
1620 &dim_percent_hitm,
1621 &dim_percent_rmt_hitm,
1622 &dim_percent_lcl_hitm,
1623 &dim_percent_stores_l1hit,
1624 &dim_percent_stores_l1miss,
1625 &dim_dram_lcl,
1626 &dim_dram_rmt,
1627 &dim_pid,
1628 &dim_tid,
1629 &dim_symbol,
1630 &dim_dso,
1631 &dim_node,
1632 &dim_mean_rmt,
1633 &dim_mean_lcl,
1634 &dim_mean_load,
1635 &dim_cpucnt,
1636 &dim_srcline,
1637 &dim_dcacheline_idx,
1638 &dim_dcacheline_num,
1639 &dim_dcacheline_num_empty,
1640 NULL,
1643 static void fmt_free(struct perf_hpp_fmt *fmt)
1645 struct c2c_fmt *c2c_fmt;
1647 c2c_fmt = container_of(fmt, struct c2c_fmt, fmt);
1648 free(c2c_fmt);
1651 static bool fmt_equal(struct perf_hpp_fmt *a, struct perf_hpp_fmt *b)
1653 struct c2c_fmt *c2c_a = container_of(a, struct c2c_fmt, fmt);
1654 struct c2c_fmt *c2c_b = container_of(b, struct c2c_fmt, fmt);
1656 return c2c_a->dim == c2c_b->dim;
1659 static struct c2c_dimension *get_dimension(const char *name)
1661 unsigned int i;
1663 for (i = 0; dimensions[i]; i++) {
1664 struct c2c_dimension *dim = dimensions[i];
1666 if (!strcmp(dim->name, name))
1667 return dim;
1670 return NULL;
1673 static int c2c_se_entry(struct perf_hpp_fmt *fmt, struct perf_hpp *hpp,
1674 struct hist_entry *he)
1676 struct c2c_fmt *c2c_fmt = container_of(fmt, struct c2c_fmt, fmt);
1677 struct c2c_dimension *dim = c2c_fmt->dim;
1678 size_t len = fmt->user_len;
1680 if (!len) {
1681 len = hists__col_len(he->hists, dim->se->se_width_idx);
1683 if (dim == &dim_symbol || dim == &dim_srcline)
1684 len = symbol_width(he->hists, dim->se);
1687 return dim->se->se_snprintf(he, hpp->buf, hpp->size, len);
1690 static int64_t c2c_se_cmp(struct perf_hpp_fmt *fmt,
1691 struct hist_entry *a, struct hist_entry *b)
1693 struct c2c_fmt *c2c_fmt = container_of(fmt, struct c2c_fmt, fmt);
1694 struct c2c_dimension *dim = c2c_fmt->dim;
1696 return dim->se->se_cmp(a, b);
1699 static int64_t c2c_se_collapse(struct perf_hpp_fmt *fmt,
1700 struct hist_entry *a, struct hist_entry *b)
1702 struct c2c_fmt *c2c_fmt = container_of(fmt, struct c2c_fmt, fmt);
1703 struct c2c_dimension *dim = c2c_fmt->dim;
1704 int64_t (*collapse_fn)(struct hist_entry *, struct hist_entry *);
1706 collapse_fn = dim->se->se_collapse ?: dim->se->se_cmp;
1707 return collapse_fn(a, b);
1710 static struct c2c_fmt *get_format(const char *name)
1712 struct c2c_dimension *dim = get_dimension(name);
1713 struct c2c_fmt *c2c_fmt;
1714 struct perf_hpp_fmt *fmt;
1716 if (!dim)
1717 return NULL;
1719 c2c_fmt = zalloc(sizeof(*c2c_fmt));
1720 if (!c2c_fmt)
1721 return NULL;
1723 c2c_fmt->dim = dim;
1725 fmt = &c2c_fmt->fmt;
1726 INIT_LIST_HEAD(&fmt->list);
1727 INIT_LIST_HEAD(&fmt->sort_list);
1729 fmt->cmp = dim->se ? c2c_se_cmp : dim->cmp;
1730 fmt->sort = dim->se ? c2c_se_cmp : dim->cmp;
1731 fmt->color = dim->se ? NULL : dim->color;
1732 fmt->entry = dim->se ? c2c_se_entry : dim->entry;
1733 fmt->header = c2c_header;
1734 fmt->width = c2c_width;
1735 fmt->collapse = dim->se ? c2c_se_collapse : dim->cmp;
1736 fmt->equal = fmt_equal;
1737 fmt->free = fmt_free;
1739 return c2c_fmt;
1742 static int c2c_hists__init_output(struct perf_hpp_list *hpp_list, char *name)
1744 struct c2c_fmt *c2c_fmt = get_format(name);
1746 if (!c2c_fmt) {
1747 reset_dimensions();
1748 return output_field_add(hpp_list, name);
1751 perf_hpp_list__column_register(hpp_list, &c2c_fmt->fmt);
1752 return 0;
1755 static int c2c_hists__init_sort(struct perf_hpp_list *hpp_list, char *name)
1757 struct c2c_fmt *c2c_fmt = get_format(name);
1758 struct c2c_dimension *dim;
1760 if (!c2c_fmt) {
1761 reset_dimensions();
1762 return sort_dimension__add(hpp_list, name, NULL, 0);
1765 dim = c2c_fmt->dim;
1766 if (dim == &dim_dso)
1767 hpp_list->dso = 1;
1769 perf_hpp_list__register_sort_field(hpp_list, &c2c_fmt->fmt);
1770 return 0;
1773 #define PARSE_LIST(_list, _fn) \
1774 do { \
1775 char *tmp, *tok; \
1776 ret = 0; \
1778 if (!_list) \
1779 break; \
1781 for (tok = strtok_r((char *)_list, ", ", &tmp); \
1782 tok; tok = strtok_r(NULL, ", ", &tmp)) { \
1783 ret = _fn(hpp_list, tok); \
1784 if (ret == -EINVAL) { \
1785 pr_err("Invalid --fields key: `%s'", tok); \
1786 break; \
1787 } else if (ret == -ESRCH) { \
1788 pr_err("Unknown --fields key: `%s'", tok); \
1789 break; \
1792 } while (0)
1794 static int hpp_list__parse(struct perf_hpp_list *hpp_list,
1795 const char *output_,
1796 const char *sort_)
1798 char *output = output_ ? strdup(output_) : NULL;
1799 char *sort = sort_ ? strdup(sort_) : NULL;
1800 int ret;
1802 PARSE_LIST(output, c2c_hists__init_output);
1803 PARSE_LIST(sort, c2c_hists__init_sort);
1805 /* copy sort keys to output fields */
1806 perf_hpp__setup_output_field(hpp_list);
1809 * We dont need other sorting keys other than those
1810 * we already specified. It also really slows down
1811 * the processing a lot with big number of output
1812 * fields, so switching this off for c2c.
1815 #if 0
1816 /* and then copy output fields to sort keys */
1817 perf_hpp__append_sort_keys(&hists->list);
1818 #endif
1820 free(output);
1821 free(sort);
1822 return ret;
1825 static int c2c_hists__init(struct c2c_hists *hists,
1826 const char *sort,
1827 int nr_header_lines)
1829 __hists__init(&hists->hists, &hists->list);
1832 * Initialize only with sort fields, we need to resort
1833 * later anyway, and that's where we add output fields
1834 * as well.
1836 perf_hpp_list__init(&hists->list);
1838 /* Overload number of header lines.*/
1839 hists->list.nr_header_lines = nr_header_lines;
1841 return hpp_list__parse(&hists->list, NULL, sort);
1844 static int c2c_hists__reinit(struct c2c_hists *c2c_hists,
1845 const char *output,
1846 const char *sort)
1848 perf_hpp__reset_output_field(&c2c_hists->list);
1849 return hpp_list__parse(&c2c_hists->list, output, sort);
1852 #define DISPLAY_LINE_LIMIT 0.001
1854 static bool he__display(struct hist_entry *he, struct c2c_stats *stats)
1856 struct c2c_hist_entry *c2c_he;
1857 double ld_dist;
1859 if (c2c.show_all)
1860 return true;
1862 c2c_he = container_of(he, struct c2c_hist_entry, he);
1864 #define FILTER_HITM(__h) \
1865 if (stats->__h) { \
1866 ld_dist = ((double)c2c_he->stats.__h / stats->__h); \
1867 if (ld_dist < DISPLAY_LINE_LIMIT) \
1868 he->filtered = HIST_FILTER__C2C; \
1869 } else { \
1870 he->filtered = HIST_FILTER__C2C; \
1873 switch (c2c.display) {
1874 case DISPLAY_LCL:
1875 FILTER_HITM(lcl_hitm);
1876 break;
1877 case DISPLAY_RMT:
1878 FILTER_HITM(rmt_hitm);
1879 break;
1880 case DISPLAY_TOT:
1881 FILTER_HITM(tot_hitm);
1882 default:
1883 break;
1886 #undef FILTER_HITM
1888 return he->filtered == 0;
1891 static inline int valid_hitm_or_store(struct hist_entry *he)
1893 struct c2c_hist_entry *c2c_he;
1894 bool has_hitm;
1896 c2c_he = container_of(he, struct c2c_hist_entry, he);
1897 has_hitm = c2c.display == DISPLAY_TOT ? c2c_he->stats.tot_hitm :
1898 c2c.display == DISPLAY_LCL ? c2c_he->stats.lcl_hitm :
1899 c2c_he->stats.rmt_hitm;
1900 return has_hitm || c2c_he->stats.store;
1903 static void set_node_width(struct c2c_hist_entry *c2c_he, int len)
1905 struct c2c_dimension *dim;
1907 dim = &c2c.hists == c2c_he->hists ?
1908 &dim_dcacheline_node : &dim_offset_node;
1910 if (len > dim->width)
1911 dim->width = len;
1914 static int set_nodestr(struct c2c_hist_entry *c2c_he)
1916 char buf[30];
1917 int len;
1919 if (c2c_he->nodestr)
1920 return 0;
1922 if (bitmap_weight(c2c_he->nodeset, c2c.nodes_cnt)) {
1923 len = bitmap_scnprintf(c2c_he->nodeset, c2c.nodes_cnt,
1924 buf, sizeof(buf));
1925 } else {
1926 len = scnprintf(buf, sizeof(buf), "N/A");
1929 set_node_width(c2c_he, len);
1930 c2c_he->nodestr = strdup(buf);
1931 return c2c_he->nodestr ? 0 : -ENOMEM;
1934 static void calc_width(struct c2c_hist_entry *c2c_he)
1936 struct c2c_hists *c2c_hists;
1938 c2c_hists = container_of(c2c_he->he.hists, struct c2c_hists, hists);
1939 hists__calc_col_len(&c2c_hists->hists, &c2c_he->he);
1940 set_nodestr(c2c_he);
1943 static int filter_cb(struct hist_entry *he, void *arg __maybe_unused)
1945 struct c2c_hist_entry *c2c_he;
1947 c2c_he = container_of(he, struct c2c_hist_entry, he);
1949 if (c2c.show_src && !he->srcline)
1950 he->srcline = hist_entry__srcline(he);
1952 calc_width(c2c_he);
1954 if (!valid_hitm_or_store(he))
1955 he->filtered = HIST_FILTER__C2C;
1957 return 0;
1960 static int resort_cl_cb(struct hist_entry *he, void *arg __maybe_unused)
1962 struct c2c_hist_entry *c2c_he;
1963 struct c2c_hists *c2c_hists;
1964 bool display = he__display(he, &c2c.hitm_stats);
1966 c2c_he = container_of(he, struct c2c_hist_entry, he);
1967 c2c_hists = c2c_he->hists;
1969 if (display && c2c_hists) {
1970 static unsigned int idx;
1972 c2c_he->cacheline_idx = idx++;
1973 calc_width(c2c_he);
1975 c2c_hists__reinit(c2c_hists, c2c.cl_output, c2c.cl_resort);
1977 hists__collapse_resort(&c2c_hists->hists, NULL);
1978 hists__output_resort_cb(&c2c_hists->hists, NULL, filter_cb);
1981 return 0;
1984 static void setup_nodes_header(void)
1986 dim_node.header = header_node[c2c.node_info];
1989 static int setup_nodes(struct perf_session *session)
1991 struct numa_node *n;
1992 unsigned long **nodes;
1993 int node, cpu;
1994 int *cpu2node;
1996 if (c2c.node_info > 2)
1997 c2c.node_info = 2;
1999 c2c.nodes_cnt = session->header.env.nr_numa_nodes;
2000 c2c.cpus_cnt = session->header.env.nr_cpus_avail;
2002 n = session->header.env.numa_nodes;
2003 if (!n)
2004 return -EINVAL;
2006 nodes = zalloc(sizeof(unsigned long *) * c2c.nodes_cnt);
2007 if (!nodes)
2008 return -ENOMEM;
2010 c2c.nodes = nodes;
2012 cpu2node = zalloc(sizeof(int) * c2c.cpus_cnt);
2013 if (!cpu2node)
2014 return -ENOMEM;
2016 for (cpu = 0; cpu < c2c.cpus_cnt; cpu++)
2017 cpu2node[cpu] = -1;
2019 c2c.cpu2node = cpu2node;
2021 for (node = 0; node < c2c.nodes_cnt; node++) {
2022 struct perf_cpu_map *map = n[node].map;
2023 unsigned long *set;
2025 set = bitmap_alloc(c2c.cpus_cnt);
2026 if (!set)
2027 return -ENOMEM;
2029 nodes[node] = set;
2031 /* empty node, skip */
2032 if (perf_cpu_map__empty(map))
2033 continue;
2035 for (cpu = 0; cpu < map->nr; cpu++) {
2036 set_bit(map->map[cpu], set);
2038 if (WARN_ONCE(cpu2node[map->map[cpu]] != -1, "node/cpu topology bug"))
2039 return -EINVAL;
2041 cpu2node[map->map[cpu]] = node;
2045 setup_nodes_header();
2046 return 0;
2049 #define HAS_HITMS(__h) ((__h)->stats.lcl_hitm || (__h)->stats.rmt_hitm)
2051 static int resort_hitm_cb(struct hist_entry *he, void *arg __maybe_unused)
2053 struct c2c_hist_entry *c2c_he;
2054 c2c_he = container_of(he, struct c2c_hist_entry, he);
2056 if (HAS_HITMS(c2c_he)) {
2057 c2c.shared_clines++;
2058 c2c_add_stats(&c2c.hitm_stats, &c2c_he->stats);
2061 return 0;
2064 static int hists__iterate_cb(struct hists *hists, hists__resort_cb_t cb)
2066 struct rb_node *next = rb_first_cached(&hists->entries);
2067 int ret = 0;
2069 while (next) {
2070 struct hist_entry *he;
2072 he = rb_entry(next, struct hist_entry, rb_node);
2073 ret = cb(he, NULL);
2074 if (ret)
2075 break;
2076 next = rb_next(&he->rb_node);
2079 return ret;
2082 static void print_c2c__display_stats(FILE *out)
2084 int llc_misses;
2085 struct c2c_stats *stats = &c2c.hists.stats;
2087 llc_misses = stats->lcl_dram +
2088 stats->rmt_dram +
2089 stats->rmt_hit +
2090 stats->rmt_hitm;
2092 fprintf(out, "=================================================\n");
2093 fprintf(out, " Trace Event Information \n");
2094 fprintf(out, "=================================================\n");
2095 fprintf(out, " Total records : %10d\n", stats->nr_entries);
2096 fprintf(out, " Locked Load/Store Operations : %10d\n", stats->locks);
2097 fprintf(out, " Load Operations : %10d\n", stats->load);
2098 fprintf(out, " Loads - uncacheable : %10d\n", stats->ld_uncache);
2099 fprintf(out, " Loads - IO : %10d\n", stats->ld_io);
2100 fprintf(out, " Loads - Miss : %10d\n", stats->ld_miss);
2101 fprintf(out, " Loads - no mapping : %10d\n", stats->ld_noadrs);
2102 fprintf(out, " Load Fill Buffer Hit : %10d\n", stats->ld_fbhit);
2103 fprintf(out, " Load L1D hit : %10d\n", stats->ld_l1hit);
2104 fprintf(out, " Load L2D hit : %10d\n", stats->ld_l2hit);
2105 fprintf(out, " Load LLC hit : %10d\n", stats->ld_llchit + stats->lcl_hitm);
2106 fprintf(out, " Load Local HITM : %10d\n", stats->lcl_hitm);
2107 fprintf(out, " Load Remote HITM : %10d\n", stats->rmt_hitm);
2108 fprintf(out, " Load Remote HIT : %10d\n", stats->rmt_hit);
2109 fprintf(out, " Load Local DRAM : %10d\n", stats->lcl_dram);
2110 fprintf(out, " Load Remote DRAM : %10d\n", stats->rmt_dram);
2111 fprintf(out, " Load MESI State Exclusive : %10d\n", stats->ld_excl);
2112 fprintf(out, " Load MESI State Shared : %10d\n", stats->ld_shared);
2113 fprintf(out, " Load LLC Misses : %10d\n", llc_misses);
2114 fprintf(out, " LLC Misses to Local DRAM : %10.1f%%\n", ((double)stats->lcl_dram/(double)llc_misses) * 100.);
2115 fprintf(out, " LLC Misses to Remote DRAM : %10.1f%%\n", ((double)stats->rmt_dram/(double)llc_misses) * 100.);
2116 fprintf(out, " LLC Misses to Remote cache (HIT) : %10.1f%%\n", ((double)stats->rmt_hit /(double)llc_misses) * 100.);
2117 fprintf(out, " LLC Misses to Remote cache (HITM) : %10.1f%%\n", ((double)stats->rmt_hitm/(double)llc_misses) * 100.);
2118 fprintf(out, " Store Operations : %10d\n", stats->store);
2119 fprintf(out, " Store - uncacheable : %10d\n", stats->st_uncache);
2120 fprintf(out, " Store - no mapping : %10d\n", stats->st_noadrs);
2121 fprintf(out, " Store L1D Hit : %10d\n", stats->st_l1hit);
2122 fprintf(out, " Store L1D Miss : %10d\n", stats->st_l1miss);
2123 fprintf(out, " No Page Map Rejects : %10d\n", stats->nomap);
2124 fprintf(out, " Unable to parse data source : %10d\n", stats->noparse);
2127 static void print_shared_cacheline_info(FILE *out)
2129 struct c2c_stats *stats = &c2c.hitm_stats;
2130 int hitm_cnt = stats->lcl_hitm + stats->rmt_hitm;
2132 fprintf(out, "=================================================\n");
2133 fprintf(out, " Global Shared Cache Line Event Information \n");
2134 fprintf(out, "=================================================\n");
2135 fprintf(out, " Total Shared Cache Lines : %10d\n", c2c.shared_clines);
2136 fprintf(out, " Load HITs on shared lines : %10d\n", stats->load);
2137 fprintf(out, " Fill Buffer Hits on shared lines : %10d\n", stats->ld_fbhit);
2138 fprintf(out, " L1D hits on shared lines : %10d\n", stats->ld_l1hit);
2139 fprintf(out, " L2D hits on shared lines : %10d\n", stats->ld_l2hit);
2140 fprintf(out, " LLC hits on shared lines : %10d\n", stats->ld_llchit + stats->lcl_hitm);
2141 fprintf(out, " Locked Access on shared lines : %10d\n", stats->locks);
2142 fprintf(out, " Store HITs on shared lines : %10d\n", stats->store);
2143 fprintf(out, " Store L1D hits on shared lines : %10d\n", stats->st_l1hit);
2144 fprintf(out, " Total Merged records : %10d\n", hitm_cnt + stats->store);
2147 static void print_cacheline(struct c2c_hists *c2c_hists,
2148 struct hist_entry *he_cl,
2149 struct perf_hpp_list *hpp_list,
2150 FILE *out)
2152 char bf[1000];
2153 struct perf_hpp hpp = {
2154 .buf = bf,
2155 .size = 1000,
2157 static bool once;
2159 if (!once) {
2160 hists__fprintf_headers(&c2c_hists->hists, out);
2161 once = true;
2162 } else {
2163 fprintf(out, "\n");
2166 fprintf(out, " -------------------------------------------------------------\n");
2167 __hist_entry__snprintf(he_cl, &hpp, hpp_list);
2168 fprintf(out, "%s\n", bf);
2169 fprintf(out, " -------------------------------------------------------------\n");
2171 hists__fprintf(&c2c_hists->hists, false, 0, 0, 0, out, false);
2174 static void print_pareto(FILE *out)
2176 struct perf_hpp_list hpp_list;
2177 struct rb_node *nd;
2178 int ret;
2180 perf_hpp_list__init(&hpp_list);
2181 ret = hpp_list__parse(&hpp_list,
2182 "cl_num,"
2183 "cl_rmt_hitm,"
2184 "cl_lcl_hitm,"
2185 "cl_stores_l1hit,"
2186 "cl_stores_l1miss,"
2187 "dcacheline",
2188 NULL);
2190 if (WARN_ONCE(ret, "failed to setup sort entries\n"))
2191 return;
2193 nd = rb_first_cached(&c2c.hists.hists.entries);
2195 for (; nd; nd = rb_next(nd)) {
2196 struct hist_entry *he = rb_entry(nd, struct hist_entry, rb_node);
2197 struct c2c_hist_entry *c2c_he;
2199 if (he->filtered)
2200 continue;
2202 c2c_he = container_of(he, struct c2c_hist_entry, he);
2203 print_cacheline(c2c_he->hists, he, &hpp_list, out);
2207 static void print_c2c_info(FILE *out, struct perf_session *session)
2209 struct evlist *evlist = session->evlist;
2210 struct evsel *evsel;
2211 bool first = true;
2213 fprintf(out, "=================================================\n");
2214 fprintf(out, " c2c details \n");
2215 fprintf(out, "=================================================\n");
2217 evlist__for_each_entry(evlist, evsel) {
2218 fprintf(out, "%-36s: %s\n", first ? " Events" : "", evsel__name(evsel));
2219 first = false;
2221 fprintf(out, " Cachelines sort on : %s HITMs\n",
2222 display_str[c2c.display]);
2223 fprintf(out, " Cacheline data grouping : %s\n", c2c.cl_sort);
2226 static void perf_c2c__hists_fprintf(FILE *out, struct perf_session *session)
2228 setup_pager();
2230 print_c2c__display_stats(out);
2231 fprintf(out, "\n");
2232 print_shared_cacheline_info(out);
2233 fprintf(out, "\n");
2234 print_c2c_info(out, session);
2236 if (c2c.stats_only)
2237 return;
2239 fprintf(out, "\n");
2240 fprintf(out, "=================================================\n");
2241 fprintf(out, " Shared Data Cache Line Table \n");
2242 fprintf(out, "=================================================\n");
2243 fprintf(out, "#\n");
2245 hists__fprintf(&c2c.hists.hists, true, 0, 0, 0, stdout, true);
2247 fprintf(out, "\n");
2248 fprintf(out, "=================================================\n");
2249 fprintf(out, " Shared Cache Line Distribution Pareto \n");
2250 fprintf(out, "=================================================\n");
2251 fprintf(out, "#\n");
2253 print_pareto(out);
2256 #ifdef HAVE_SLANG_SUPPORT
2257 static void c2c_browser__update_nr_entries(struct hist_browser *hb)
2259 u64 nr_entries = 0;
2260 struct rb_node *nd = rb_first_cached(&hb->hists->entries);
2262 while (nd) {
2263 struct hist_entry *he = rb_entry(nd, struct hist_entry, rb_node);
2265 if (!he->filtered)
2266 nr_entries++;
2268 nd = rb_next(nd);
2271 hb->nr_non_filtered_entries = nr_entries;
2274 struct c2c_cacheline_browser {
2275 struct hist_browser hb;
2276 struct hist_entry *he;
2279 static int
2280 perf_c2c_cacheline_browser__title(struct hist_browser *browser,
2281 char *bf, size_t size)
2283 struct c2c_cacheline_browser *cl_browser;
2284 struct hist_entry *he;
2285 uint64_t addr = 0;
2287 cl_browser = container_of(browser, struct c2c_cacheline_browser, hb);
2288 he = cl_browser->he;
2290 if (he->mem_info)
2291 addr = cl_address(he->mem_info->daddr.addr);
2293 scnprintf(bf, size, "Cacheline 0x%lx", addr);
2294 return 0;
2297 static struct c2c_cacheline_browser*
2298 c2c_cacheline_browser__new(struct hists *hists, struct hist_entry *he)
2300 struct c2c_cacheline_browser *browser;
2302 browser = zalloc(sizeof(*browser));
2303 if (browser) {
2304 hist_browser__init(&browser->hb, hists);
2305 browser->hb.c2c_filter = true;
2306 browser->hb.title = perf_c2c_cacheline_browser__title;
2307 browser->he = he;
2310 return browser;
2313 static int perf_c2c__browse_cacheline(struct hist_entry *he)
2315 struct c2c_hist_entry *c2c_he;
2316 struct c2c_hists *c2c_hists;
2317 struct c2c_cacheline_browser *cl_browser;
2318 struct hist_browser *browser;
2319 int key = -1;
2320 static const char help[] =
2321 " ENTER Toggle callchains (if present) \n"
2322 " n Toggle Node details info \n"
2323 " s Toggle full length of symbol and source line columns \n"
2324 " q Return back to cacheline list \n";
2326 if (!he)
2327 return 0;
2329 /* Display compact version first. */
2330 c2c.symbol_full = false;
2332 c2c_he = container_of(he, struct c2c_hist_entry, he);
2333 c2c_hists = c2c_he->hists;
2335 cl_browser = c2c_cacheline_browser__new(&c2c_hists->hists, he);
2336 if (cl_browser == NULL)
2337 return -1;
2339 browser = &cl_browser->hb;
2341 /* reset abort key so that it can get Ctrl-C as a key */
2342 SLang_reset_tty();
2343 SLang_init_tty(0, 0, 0);
2345 c2c_browser__update_nr_entries(browser);
2347 while (1) {
2348 key = hist_browser__run(browser, "? - help", true, 0);
2350 switch (key) {
2351 case 's':
2352 c2c.symbol_full = !c2c.symbol_full;
2353 break;
2354 case 'n':
2355 c2c.node_info = (c2c.node_info + 1) % 3;
2356 setup_nodes_header();
2357 break;
2358 case 'q':
2359 goto out;
2360 case '?':
2361 ui_browser__help_window(&browser->b, help);
2362 break;
2363 default:
2364 break;
2368 out:
2369 free(cl_browser);
2370 return 0;
2373 static int perf_c2c_browser__title(struct hist_browser *browser,
2374 char *bf, size_t size)
2376 scnprintf(bf, size,
2377 "Shared Data Cache Line Table "
2378 "(%lu entries, sorted on %s HITMs)",
2379 browser->nr_non_filtered_entries,
2380 display_str[c2c.display]);
2381 return 0;
2384 static struct hist_browser*
2385 perf_c2c_browser__new(struct hists *hists)
2387 struct hist_browser *browser = hist_browser__new(hists);
2389 if (browser) {
2390 browser->title = perf_c2c_browser__title;
2391 browser->c2c_filter = true;
2394 return browser;
2397 static int perf_c2c__hists_browse(struct hists *hists)
2399 struct hist_browser *browser;
2400 int key = -1;
2401 static const char help[] =
2402 " d Display cacheline details \n"
2403 " ENTER Toggle callchains (if present) \n"
2404 " q Quit \n";
2406 browser = perf_c2c_browser__new(hists);
2407 if (browser == NULL)
2408 return -1;
2410 /* reset abort key so that it can get Ctrl-C as a key */
2411 SLang_reset_tty();
2412 SLang_init_tty(0, 0, 0);
2414 c2c_browser__update_nr_entries(browser);
2416 while (1) {
2417 key = hist_browser__run(browser, "? - help", true, 0);
2419 switch (key) {
2420 case 'q':
2421 goto out;
2422 case 'd':
2423 perf_c2c__browse_cacheline(browser->he_selection);
2424 break;
2425 case '?':
2426 ui_browser__help_window(&browser->b, help);
2427 break;
2428 default:
2429 break;
2433 out:
2434 hist_browser__delete(browser);
2435 return 0;
2438 static void perf_c2c_display(struct perf_session *session)
2440 if (use_browser == 0)
2441 perf_c2c__hists_fprintf(stdout, session);
2442 else
2443 perf_c2c__hists_browse(&c2c.hists.hists);
2445 #else
2446 static void perf_c2c_display(struct perf_session *session)
2448 use_browser = 0;
2449 perf_c2c__hists_fprintf(stdout, session);
2451 #endif /* HAVE_SLANG_SUPPORT */
2453 static char *fill_line(const char *orig, int len)
2455 int i, j, olen = strlen(orig);
2456 char *buf;
2458 buf = zalloc(len + 1);
2459 if (!buf)
2460 return NULL;
2462 j = len / 2 - olen / 2;
2464 for (i = 0; i < j - 1; i++)
2465 buf[i] = '-';
2467 buf[i++] = ' ';
2469 strcpy(buf + i, orig);
2471 i += olen;
2473 buf[i++] = ' ';
2475 for (; i < len; i++)
2476 buf[i] = '-';
2478 return buf;
2481 static int ui_quirks(void)
2483 const char *nodestr = "Data address";
2484 char *buf;
2486 if (!c2c.use_stdio) {
2487 dim_offset.width = 5;
2488 dim_offset.header = header_offset_tui;
2489 nodestr = "CL";
2492 dim_percent_hitm.header = percent_hitm_header[c2c.display];
2494 /* Fix the zero line for dcacheline column. */
2495 buf = fill_line("Cacheline", dim_dcacheline.width +
2496 dim_dcacheline_node.width +
2497 dim_dcacheline_count.width + 4);
2498 if (!buf)
2499 return -ENOMEM;
2501 dim_dcacheline.header.line[0].text = buf;
2503 /* Fix the zero line for offset column. */
2504 buf = fill_line(nodestr, dim_offset.width +
2505 dim_offset_node.width +
2506 dim_dcacheline_count.width + 4);
2507 if (!buf)
2508 return -ENOMEM;
2510 dim_offset.header.line[0].text = buf;
2512 return 0;
2515 #define CALLCHAIN_DEFAULT_OPT "graph,0.5,caller,function,percent"
2517 const char callchain_help[] = "Display call graph (stack chain/backtrace):\n\n"
2518 CALLCHAIN_REPORT_HELP
2519 "\n\t\t\t\tDefault: " CALLCHAIN_DEFAULT_OPT;
2521 static int
2522 parse_callchain_opt(const struct option *opt, const char *arg, int unset)
2524 struct callchain_param *callchain = opt->value;
2526 callchain->enabled = !unset;
2528 * --no-call-graph
2530 if (unset) {
2531 symbol_conf.use_callchain = false;
2532 callchain->mode = CHAIN_NONE;
2533 return 0;
2536 return parse_callchain_report_opt(arg);
2539 static int setup_callchain(struct evlist *evlist)
2541 u64 sample_type = evlist__combined_sample_type(evlist);
2542 enum perf_call_graph_mode mode = CALLCHAIN_NONE;
2544 if ((sample_type & PERF_SAMPLE_REGS_USER) &&
2545 (sample_type & PERF_SAMPLE_STACK_USER)) {
2546 mode = CALLCHAIN_DWARF;
2547 dwarf_callchain_users = true;
2548 } else if (sample_type & PERF_SAMPLE_BRANCH_STACK)
2549 mode = CALLCHAIN_LBR;
2550 else if (sample_type & PERF_SAMPLE_CALLCHAIN)
2551 mode = CALLCHAIN_FP;
2553 if (!callchain_param.enabled &&
2554 callchain_param.mode != CHAIN_NONE &&
2555 mode != CALLCHAIN_NONE) {
2556 symbol_conf.use_callchain = true;
2557 if (callchain_register_param(&callchain_param) < 0) {
2558 ui__error("Can't register callchain params.\n");
2559 return -EINVAL;
2563 if (c2c.stitch_lbr && (mode != CALLCHAIN_LBR)) {
2564 ui__warning("Can't find LBR callchain. Switch off --stitch-lbr.\n"
2565 "Please apply --call-graph lbr when recording.\n");
2566 c2c.stitch_lbr = false;
2569 callchain_param.record_mode = mode;
2570 callchain_param.min_percent = 0;
2571 return 0;
2574 static int setup_display(const char *str)
2576 const char *display = str ?: "tot";
2578 if (!strcmp(display, "tot"))
2579 c2c.display = DISPLAY_TOT;
2580 else if (!strcmp(display, "rmt"))
2581 c2c.display = DISPLAY_RMT;
2582 else if (!strcmp(display, "lcl"))
2583 c2c.display = DISPLAY_LCL;
2584 else {
2585 pr_err("failed: unknown display type: %s\n", str);
2586 return -1;
2589 return 0;
2592 #define for_each_token(__tok, __buf, __sep, __tmp) \
2593 for (__tok = strtok_r(__buf, __sep, &__tmp); __tok; \
2594 __tok = strtok_r(NULL, __sep, &__tmp))
2596 static int build_cl_output(char *cl_sort, bool no_source)
2598 char *tok, *tmp, *buf = strdup(cl_sort);
2599 bool add_pid = false;
2600 bool add_tid = false;
2601 bool add_iaddr = false;
2602 bool add_sym = false;
2603 bool add_dso = false;
2604 bool add_src = false;
2605 int ret = 0;
2607 if (!buf)
2608 return -ENOMEM;
2610 for_each_token(tok, buf, ",", tmp) {
2611 if (!strcmp(tok, "tid")) {
2612 add_tid = true;
2613 } else if (!strcmp(tok, "pid")) {
2614 add_pid = true;
2615 } else if (!strcmp(tok, "iaddr")) {
2616 add_iaddr = true;
2617 add_sym = true;
2618 add_dso = true;
2619 add_src = no_source ? false : true;
2620 } else if (!strcmp(tok, "dso")) {
2621 add_dso = true;
2622 } else if (strcmp(tok, "offset")) {
2623 pr_err("unrecognized sort token: %s\n", tok);
2624 ret = -EINVAL;
2625 goto err;
2629 if (asprintf(&c2c.cl_output,
2630 "%s%s%s%s%s%s%s%s%s%s",
2631 c2c.use_stdio ? "cl_num_empty," : "",
2632 "percent_rmt_hitm,"
2633 "percent_lcl_hitm,"
2634 "percent_stores_l1hit,"
2635 "percent_stores_l1miss,"
2636 "offset,offset_node,dcacheline_count,",
2637 add_pid ? "pid," : "",
2638 add_tid ? "tid," : "",
2639 add_iaddr ? "iaddr," : "",
2640 "mean_rmt,"
2641 "mean_lcl,"
2642 "mean_load,"
2643 "tot_recs,"
2644 "cpucnt,",
2645 add_sym ? "symbol," : "",
2646 add_dso ? "dso," : "",
2647 add_src ? "cl_srcline," : "",
2648 "node") < 0) {
2649 ret = -ENOMEM;
2650 goto err;
2653 c2c.show_src = add_src;
2654 err:
2655 free(buf);
2656 return ret;
2659 static int setup_coalesce(const char *coalesce, bool no_source)
2661 const char *c = coalesce ?: coalesce_default;
2663 if (asprintf(&c2c.cl_sort, "offset,%s", c) < 0)
2664 return -ENOMEM;
2666 if (build_cl_output(c2c.cl_sort, no_source))
2667 return -1;
2669 if (asprintf(&c2c.cl_resort, "offset,%s",
2670 c2c.display == DISPLAY_TOT ?
2671 "tot_hitm" :
2672 c2c.display == DISPLAY_RMT ?
2673 "rmt_hitm,lcl_hitm" :
2674 "lcl_hitm,rmt_hitm") < 0)
2675 return -ENOMEM;
2677 pr_debug("coalesce sort fields: %s\n", c2c.cl_sort);
2678 pr_debug("coalesce resort fields: %s\n", c2c.cl_resort);
2679 pr_debug("coalesce output fields: %s\n", c2c.cl_output);
2680 return 0;
2683 static int perf_c2c__report(int argc, const char **argv)
2685 struct itrace_synth_opts itrace_synth_opts = {
2686 .set = true,
2687 .mem = true, /* Only enable memory event */
2688 .default_no_sample = true,
2691 struct perf_session *session;
2692 struct ui_progress prog;
2693 struct perf_data data = {
2694 .mode = PERF_DATA_MODE_READ,
2696 char callchain_default_opt[] = CALLCHAIN_DEFAULT_OPT;
2697 const char *display = NULL;
2698 const char *coalesce = NULL;
2699 bool no_source = false;
2700 const struct option options[] = {
2701 OPT_STRING('k', "vmlinux", &symbol_conf.vmlinux_name,
2702 "file", "vmlinux pathname"),
2703 OPT_STRING('i', "input", &input_name, "file",
2704 "the input file to process"),
2705 OPT_INCR('N', "node-info", &c2c.node_info,
2706 "show extra node info in report (repeat for more info)"),
2707 #ifdef HAVE_SLANG_SUPPORT
2708 OPT_BOOLEAN(0, "stdio", &c2c.use_stdio, "Use the stdio interface"),
2709 #endif
2710 OPT_BOOLEAN(0, "stats", &c2c.stats_only,
2711 "Display only statistic tables (implies --stdio)"),
2712 OPT_BOOLEAN(0, "full-symbols", &c2c.symbol_full,
2713 "Display full length of symbols"),
2714 OPT_BOOLEAN(0, "no-source", &no_source,
2715 "Do not display Source Line column"),
2716 OPT_BOOLEAN(0, "show-all", &c2c.show_all,
2717 "Show all captured HITM lines."),
2718 OPT_CALLBACK_DEFAULT('g', "call-graph", &callchain_param,
2719 "print_type,threshold[,print_limit],order,sort_key[,branch],value",
2720 callchain_help, &parse_callchain_opt,
2721 callchain_default_opt),
2722 OPT_STRING('d', "display", &display, "Switch HITM output type", "lcl,rmt"),
2723 OPT_STRING('c', "coalesce", &coalesce, "coalesce fields",
2724 "coalesce fields: pid,tid,iaddr,dso"),
2725 OPT_BOOLEAN('f', "force", &symbol_conf.force, "don't complain, do it"),
2726 OPT_BOOLEAN(0, "stitch-lbr", &c2c.stitch_lbr,
2727 "Enable LBR callgraph stitching approach"),
2728 OPT_PARENT(c2c_options),
2729 OPT_END()
2731 int err = 0;
2733 argc = parse_options(argc, argv, options, report_c2c_usage,
2734 PARSE_OPT_STOP_AT_NON_OPTION);
2735 if (argc)
2736 usage_with_options(report_c2c_usage, options);
2738 if (c2c.stats_only)
2739 c2c.use_stdio = true;
2741 if (!input_name || !strlen(input_name))
2742 input_name = "perf.data";
2744 data.path = input_name;
2745 data.force = symbol_conf.force;
2747 err = setup_display(display);
2748 if (err)
2749 goto out;
2751 err = setup_coalesce(coalesce, no_source);
2752 if (err) {
2753 pr_debug("Failed to initialize hists\n");
2754 goto out;
2757 err = c2c_hists__init(&c2c.hists, "dcacheline", 2);
2758 if (err) {
2759 pr_debug("Failed to initialize hists\n");
2760 goto out;
2763 session = perf_session__new(&data, 0, &c2c.tool);
2764 if (IS_ERR(session)) {
2765 err = PTR_ERR(session);
2766 pr_debug("Error creating perf session\n");
2767 goto out;
2770 session->itrace_synth_opts = &itrace_synth_opts;
2772 err = setup_nodes(session);
2773 if (err) {
2774 pr_err("Failed setup nodes\n");
2775 goto out;
2778 err = mem2node__init(&c2c.mem2node, &session->header.env);
2779 if (err)
2780 goto out_session;
2782 err = setup_callchain(session->evlist);
2783 if (err)
2784 goto out_mem2node;
2786 if (symbol__init(&session->header.env) < 0)
2787 goto out_mem2node;
2789 /* No pipe support at the moment. */
2790 if (perf_data__is_pipe(session->data)) {
2791 pr_debug("No pipe support at the moment.\n");
2792 goto out_mem2node;
2795 if (c2c.use_stdio)
2796 use_browser = 0;
2797 else
2798 use_browser = 1;
2800 setup_browser(false);
2802 err = perf_session__process_events(session);
2803 if (err) {
2804 pr_err("failed to process sample\n");
2805 goto out_mem2node;
2808 c2c_hists__reinit(&c2c.hists,
2809 "cl_idx,"
2810 "dcacheline,"
2811 "dcacheline_node,"
2812 "dcacheline_count,"
2813 "percent_hitm,"
2814 "tot_hitm,lcl_hitm,rmt_hitm,"
2815 "tot_recs,"
2816 "tot_loads,"
2817 "tot_stores,"
2818 "stores_l1hit,stores_l1miss,"
2819 "ld_fbhit,ld_l1hit,ld_l2hit,"
2820 "ld_lclhit,lcl_hitm,"
2821 "ld_rmthit,rmt_hitm,"
2822 "dram_lcl,dram_rmt",
2823 c2c.display == DISPLAY_TOT ? "tot_hitm" :
2824 c2c.display == DISPLAY_LCL ? "lcl_hitm" : "rmt_hitm"
2827 ui_progress__init(&prog, c2c.hists.hists.nr_entries, "Sorting...");
2829 hists__collapse_resort(&c2c.hists.hists, NULL);
2830 hists__output_resort_cb(&c2c.hists.hists, &prog, resort_hitm_cb);
2831 hists__iterate_cb(&c2c.hists.hists, resort_cl_cb);
2833 ui_progress__finish();
2835 if (ui_quirks()) {
2836 pr_err("failed to setup UI\n");
2837 goto out_mem2node;
2840 perf_c2c_display(session);
2842 out_mem2node:
2843 mem2node__exit(&c2c.mem2node);
2844 out_session:
2845 perf_session__delete(session);
2846 out:
2847 return err;
2850 static int parse_record_events(const struct option *opt,
2851 const char *str, int unset __maybe_unused)
2853 bool *event_set = (bool *) opt->value;
2855 if (!strcmp(str, "list")) {
2856 perf_mem_events__list();
2857 exit(0);
2859 if (perf_mem_events__parse(str))
2860 exit(-1);
2862 *event_set = true;
2863 return 0;
2867 static const char * const __usage_record[] = {
2868 "perf c2c record [<options>] [<command>]",
2869 "perf c2c record [<options>] -- <command> [<options>]",
2870 NULL
2873 static const char * const *record_mem_usage = __usage_record;
2875 static int perf_c2c__record(int argc, const char **argv)
2877 int rec_argc, i = 0, j;
2878 const char **rec_argv;
2879 int ret;
2880 bool all_user = false, all_kernel = false;
2881 bool event_set = false;
2882 struct perf_mem_event *e;
2883 struct option options[] = {
2884 OPT_CALLBACK('e', "event", &event_set, "event",
2885 "event selector. Use 'perf c2c record -e list' to list available events",
2886 parse_record_events),
2887 OPT_BOOLEAN('u', "all-user", &all_user, "collect only user level data"),
2888 OPT_BOOLEAN('k', "all-kernel", &all_kernel, "collect only kernel level data"),
2889 OPT_UINTEGER('l', "ldlat", &perf_mem_events__loads_ldlat, "setup mem-loads latency"),
2890 OPT_PARENT(c2c_options),
2891 OPT_END()
2894 if (perf_mem_events__init()) {
2895 pr_err("failed: memory events not supported\n");
2896 return -1;
2899 argc = parse_options(argc, argv, options, record_mem_usage,
2900 PARSE_OPT_KEEP_UNKNOWN);
2902 rec_argc = argc + 11; /* max number of arguments */
2903 rec_argv = calloc(rec_argc + 1, sizeof(char *));
2904 if (!rec_argv)
2905 return -1;
2907 rec_argv[i++] = "record";
2909 if (!event_set) {
2910 e = perf_mem_events__ptr(PERF_MEM_EVENTS__LOAD_STORE);
2912 * The load and store operations are required, use the event
2913 * PERF_MEM_EVENTS__LOAD_STORE if it is supported.
2915 if (e->tag) {
2916 e->record = true;
2917 } else {
2918 e = perf_mem_events__ptr(PERF_MEM_EVENTS__LOAD);
2919 e->record = true;
2921 e = perf_mem_events__ptr(PERF_MEM_EVENTS__STORE);
2922 e->record = true;
2926 e = perf_mem_events__ptr(PERF_MEM_EVENTS__LOAD);
2927 if (e->record)
2928 rec_argv[i++] = "-W";
2930 rec_argv[i++] = "-d";
2931 rec_argv[i++] = "--phys-data";
2932 rec_argv[i++] = "--sample-cpu";
2934 for (j = 0; j < PERF_MEM_EVENTS__MAX; j++) {
2935 e = perf_mem_events__ptr(j);
2936 if (!e->record)
2937 continue;
2939 if (!e->supported) {
2940 pr_err("failed: event '%s' not supported\n",
2941 perf_mem_events__name(j));
2942 free(rec_argv);
2943 return -1;
2946 rec_argv[i++] = "-e";
2947 rec_argv[i++] = perf_mem_events__name(j);
2950 if (all_user)
2951 rec_argv[i++] = "--all-user";
2953 if (all_kernel)
2954 rec_argv[i++] = "--all-kernel";
2956 for (j = 0; j < argc; j++, i++)
2957 rec_argv[i] = argv[j];
2959 if (verbose > 0) {
2960 pr_debug("calling: ");
2962 j = 0;
2964 while (rec_argv[j]) {
2965 pr_debug("%s ", rec_argv[j]);
2966 j++;
2968 pr_debug("\n");
2971 ret = cmd_record(i, rec_argv);
2972 free(rec_argv);
2973 return ret;
2976 int cmd_c2c(int argc, const char **argv)
2978 argc = parse_options(argc, argv, c2c_options, c2c_usage,
2979 PARSE_OPT_STOP_AT_NON_OPTION);
2981 if (!argc)
2982 usage_with_options(c2c_usage, c2c_options);
2984 if (!strncmp(argv[0], "rec", 3)) {
2985 return perf_c2c__record(argc, argv);
2986 } else if (!strncmp(argv[0], "rep", 3)) {
2987 return perf_c2c__report(argc, argv);
2988 } else {
2989 usage_with_options(c2c_usage, c2c_options);
2992 return 0;