Merge tag 'for-linus' of git://git.armlinux.org.uk/~rmk/linux-arm
[linux-2.6-microblaze.git] / tools / perf / builtin-script.c
1 // SPDX-License-Identifier: GPL-2.0
2 #include "builtin.h"
3
4 #include "util/counts.h"
5 #include "util/debug.h"
6 #include "util/dso.h"
7 #include <subcmd/exec-cmd.h>
8 #include "util/header.h"
9 #include <subcmd/parse-options.h>
10 #include "util/perf_regs.h"
11 #include "util/session.h"
12 #include "util/tool.h"
13 #include "util/map.h"
14 #include "util/srcline.h"
15 #include "util/symbol.h"
16 #include "util/thread.h"
17 #include "util/trace-event.h"
18 #include "util/evlist.h"
19 #include "util/evsel.h"
20 #include "util/evsel_fprintf.h"
21 #include "util/evswitch.h"
22 #include "util/sort.h"
23 #include "util/data.h"
24 #include "util/auxtrace.h"
25 #include "util/cpumap.h"
26 #include "util/thread_map.h"
27 #include "util/stat.h"
28 #include "util/color.h"
29 #include "util/string2.h"
30 #include "util/thread-stack.h"
31 #include "util/time-utils.h"
32 #include "util/path.h"
33 #include "util/event.h"
34 #include "ui/ui.h"
35 #include "print_binary.h"
36 #include "archinsn.h"
37 #include <linux/bitmap.h>
38 #include <linux/kernel.h>
39 #include <linux/stringify.h>
40 #include <linux/time64.h>
41 #include <linux/zalloc.h>
42 #include <sys/utsname.h>
43 #include "asm/bug.h"
44 #include "util/mem-events.h"
45 #include "util/dump-insn.h"
46 #include <dirent.h>
47 #include <errno.h>
48 #include <inttypes.h>
49 #include <signal.h>
50 #include <sys/param.h>
51 #include <sys/types.h>
52 #include <sys/stat.h>
53 #include <fcntl.h>
54 #include <unistd.h>
55 #include <subcmd/pager.h>
56 #include <perf/evlist.h>
57 #include <linux/err.h>
58 #include "util/record.h"
59 #include "util/util.h"
60 #include "perf.h"
61
62 #include <linux/ctype.h>
63
64 static char const               *script_name;
65 static char const               *generate_script_lang;
66 static bool                     reltime;
67 static bool                     deltatime;
68 static u64                      initial_time;
69 static u64                      previous_time;
70 static bool                     debug_mode;
71 static u64                      last_timestamp;
72 static u64                      nr_unordered;
73 static bool                     no_callchain;
74 static bool                     latency_format;
75 static bool                     system_wide;
76 static bool                     print_flags;
77 static const char               *cpu_list;
78 static DECLARE_BITMAP(cpu_bitmap, MAX_NR_CPUS);
79 static struct perf_stat_config  stat_config;
80 static int                      max_blocks;
81 static bool                     native_arch;
82
83 unsigned int scripting_max_stack = PERF_MAX_STACK_DEPTH;
84
85 enum perf_output_field {
86         PERF_OUTPUT_COMM            = 1ULL << 0,
87         PERF_OUTPUT_TID             = 1ULL << 1,
88         PERF_OUTPUT_PID             = 1ULL << 2,
89         PERF_OUTPUT_TIME            = 1ULL << 3,
90         PERF_OUTPUT_CPU             = 1ULL << 4,
91         PERF_OUTPUT_EVNAME          = 1ULL << 5,
92         PERF_OUTPUT_TRACE           = 1ULL << 6,
93         PERF_OUTPUT_IP              = 1ULL << 7,
94         PERF_OUTPUT_SYM             = 1ULL << 8,
95         PERF_OUTPUT_DSO             = 1ULL << 9,
96         PERF_OUTPUT_ADDR            = 1ULL << 10,
97         PERF_OUTPUT_SYMOFFSET       = 1ULL << 11,
98         PERF_OUTPUT_SRCLINE         = 1ULL << 12,
99         PERF_OUTPUT_PERIOD          = 1ULL << 13,
100         PERF_OUTPUT_IREGS           = 1ULL << 14,
101         PERF_OUTPUT_BRSTACK         = 1ULL << 15,
102         PERF_OUTPUT_BRSTACKSYM      = 1ULL << 16,
103         PERF_OUTPUT_DATA_SRC        = 1ULL << 17,
104         PERF_OUTPUT_WEIGHT          = 1ULL << 18,
105         PERF_OUTPUT_BPF_OUTPUT      = 1ULL << 19,
106         PERF_OUTPUT_CALLINDENT      = 1ULL << 20,
107         PERF_OUTPUT_INSN            = 1ULL << 21,
108         PERF_OUTPUT_INSNLEN         = 1ULL << 22,
109         PERF_OUTPUT_BRSTACKINSN     = 1ULL << 23,
110         PERF_OUTPUT_BRSTACKOFF      = 1ULL << 24,
111         PERF_OUTPUT_SYNTH           = 1ULL << 25,
112         PERF_OUTPUT_PHYS_ADDR       = 1ULL << 26,
113         PERF_OUTPUT_UREGS           = 1ULL << 27,
114         PERF_OUTPUT_METRIC          = 1ULL << 28,
115         PERF_OUTPUT_MISC            = 1ULL << 29,
116         PERF_OUTPUT_SRCCODE         = 1ULL << 30,
117         PERF_OUTPUT_IPC             = 1ULL << 31,
118         PERF_OUTPUT_TOD             = 1ULL << 32,
119         PERF_OUTPUT_DATA_PAGE_SIZE  = 1ULL << 33,
120         PERF_OUTPUT_CODE_PAGE_SIZE  = 1ULL << 34,
121 };
122
123 struct perf_script {
124         struct perf_tool        tool;
125         struct perf_session     *session;
126         bool                    show_task_events;
127         bool                    show_mmap_events;
128         bool                    show_switch_events;
129         bool                    show_namespace_events;
130         bool                    show_lost_events;
131         bool                    show_round_events;
132         bool                    show_bpf_events;
133         bool                    show_cgroup_events;
134         bool                    show_text_poke_events;
135         bool                    allocated;
136         bool                    per_event_dump;
137         bool                    stitch_lbr;
138         struct evswitch         evswitch;
139         struct perf_cpu_map     *cpus;
140         struct perf_thread_map *threads;
141         int                     name_width;
142         const char              *time_str;
143         struct perf_time_interval *ptime_range;
144         int                     range_size;
145         int                     range_num;
146 };
147
148 struct output_option {
149         const char *str;
150         enum perf_output_field field;
151 } all_output_options[] = {
152         {.str = "comm",  .field = PERF_OUTPUT_COMM},
153         {.str = "tid",   .field = PERF_OUTPUT_TID},
154         {.str = "pid",   .field = PERF_OUTPUT_PID},
155         {.str = "time",  .field = PERF_OUTPUT_TIME},
156         {.str = "cpu",   .field = PERF_OUTPUT_CPU},
157         {.str = "event", .field = PERF_OUTPUT_EVNAME},
158         {.str = "trace", .field = PERF_OUTPUT_TRACE},
159         {.str = "ip",    .field = PERF_OUTPUT_IP},
160         {.str = "sym",   .field = PERF_OUTPUT_SYM},
161         {.str = "dso",   .field = PERF_OUTPUT_DSO},
162         {.str = "addr",  .field = PERF_OUTPUT_ADDR},
163         {.str = "symoff", .field = PERF_OUTPUT_SYMOFFSET},
164         {.str = "srcline", .field = PERF_OUTPUT_SRCLINE},
165         {.str = "period", .field = PERF_OUTPUT_PERIOD},
166         {.str = "iregs", .field = PERF_OUTPUT_IREGS},
167         {.str = "uregs", .field = PERF_OUTPUT_UREGS},
168         {.str = "brstack", .field = PERF_OUTPUT_BRSTACK},
169         {.str = "brstacksym", .field = PERF_OUTPUT_BRSTACKSYM},
170         {.str = "data_src", .field = PERF_OUTPUT_DATA_SRC},
171         {.str = "weight",   .field = PERF_OUTPUT_WEIGHT},
172         {.str = "bpf-output",   .field = PERF_OUTPUT_BPF_OUTPUT},
173         {.str = "callindent", .field = PERF_OUTPUT_CALLINDENT},
174         {.str = "insn", .field = PERF_OUTPUT_INSN},
175         {.str = "insnlen", .field = PERF_OUTPUT_INSNLEN},
176         {.str = "brstackinsn", .field = PERF_OUTPUT_BRSTACKINSN},
177         {.str = "brstackoff", .field = PERF_OUTPUT_BRSTACKOFF},
178         {.str = "synth", .field = PERF_OUTPUT_SYNTH},
179         {.str = "phys_addr", .field = PERF_OUTPUT_PHYS_ADDR},
180         {.str = "metric", .field = PERF_OUTPUT_METRIC},
181         {.str = "misc", .field = PERF_OUTPUT_MISC},
182         {.str = "srccode", .field = PERF_OUTPUT_SRCCODE},
183         {.str = "ipc", .field = PERF_OUTPUT_IPC},
184         {.str = "tod", .field = PERF_OUTPUT_TOD},
185         {.str = "data_page_size", .field = PERF_OUTPUT_DATA_PAGE_SIZE},
186         {.str = "code_page_size", .field = PERF_OUTPUT_CODE_PAGE_SIZE},
187 };
188
189 enum {
190         OUTPUT_TYPE_SYNTH = PERF_TYPE_MAX,
191         OUTPUT_TYPE_OTHER,
192         OUTPUT_TYPE_MAX
193 };
194
195 /* default set to maintain compatibility with current format */
196 static struct {
197         bool user_set;
198         bool wildcard_set;
199         unsigned int print_ip_opts;
200         u64 fields;
201         u64 invalid_fields;
202         u64 user_set_fields;
203         u64 user_unset_fields;
204 } output[OUTPUT_TYPE_MAX] = {
205
206         [PERF_TYPE_HARDWARE] = {
207                 .user_set = false,
208
209                 .fields = PERF_OUTPUT_COMM | PERF_OUTPUT_TID |
210                               PERF_OUTPUT_CPU | PERF_OUTPUT_TIME |
211                               PERF_OUTPUT_EVNAME | PERF_OUTPUT_IP |
212                               PERF_OUTPUT_SYM | PERF_OUTPUT_SYMOFFSET |
213                               PERF_OUTPUT_DSO | PERF_OUTPUT_PERIOD,
214
215                 .invalid_fields = PERF_OUTPUT_TRACE | PERF_OUTPUT_BPF_OUTPUT,
216         },
217
218         [PERF_TYPE_SOFTWARE] = {
219                 .user_set = false,
220
221                 .fields = PERF_OUTPUT_COMM | PERF_OUTPUT_TID |
222                               PERF_OUTPUT_CPU | PERF_OUTPUT_TIME |
223                               PERF_OUTPUT_EVNAME | PERF_OUTPUT_IP |
224                               PERF_OUTPUT_SYM | PERF_OUTPUT_SYMOFFSET |
225                               PERF_OUTPUT_DSO | PERF_OUTPUT_PERIOD |
226                               PERF_OUTPUT_BPF_OUTPUT,
227
228                 .invalid_fields = PERF_OUTPUT_TRACE,
229         },
230
231         [PERF_TYPE_TRACEPOINT] = {
232                 .user_set = false,
233
234                 .fields = PERF_OUTPUT_COMM | PERF_OUTPUT_TID |
235                                   PERF_OUTPUT_CPU | PERF_OUTPUT_TIME |
236                                   PERF_OUTPUT_EVNAME | PERF_OUTPUT_TRACE
237         },
238
239         [PERF_TYPE_HW_CACHE] = {
240                 .user_set = false,
241
242                 .fields = PERF_OUTPUT_COMM | PERF_OUTPUT_TID |
243                               PERF_OUTPUT_CPU | PERF_OUTPUT_TIME |
244                               PERF_OUTPUT_EVNAME | PERF_OUTPUT_IP |
245                               PERF_OUTPUT_SYM | PERF_OUTPUT_SYMOFFSET |
246                               PERF_OUTPUT_DSO | PERF_OUTPUT_PERIOD,
247
248                 .invalid_fields = PERF_OUTPUT_TRACE | PERF_OUTPUT_BPF_OUTPUT,
249         },
250
251         [PERF_TYPE_RAW] = {
252                 .user_set = false,
253
254                 .fields = PERF_OUTPUT_COMM | PERF_OUTPUT_TID |
255                               PERF_OUTPUT_CPU | PERF_OUTPUT_TIME |
256                               PERF_OUTPUT_EVNAME | PERF_OUTPUT_IP |
257                               PERF_OUTPUT_SYM | PERF_OUTPUT_SYMOFFSET |
258                               PERF_OUTPUT_DSO | PERF_OUTPUT_PERIOD |
259                               PERF_OUTPUT_ADDR | PERF_OUTPUT_DATA_SRC |
260                               PERF_OUTPUT_WEIGHT | PERF_OUTPUT_PHYS_ADDR |
261                               PERF_OUTPUT_DATA_PAGE_SIZE | PERF_OUTPUT_CODE_PAGE_SIZE,
262
263                 .invalid_fields = PERF_OUTPUT_TRACE | PERF_OUTPUT_BPF_OUTPUT,
264         },
265
266         [PERF_TYPE_BREAKPOINT] = {
267                 .user_set = false,
268
269                 .fields = PERF_OUTPUT_COMM | PERF_OUTPUT_TID |
270                               PERF_OUTPUT_CPU | PERF_OUTPUT_TIME |
271                               PERF_OUTPUT_EVNAME | PERF_OUTPUT_IP |
272                               PERF_OUTPUT_SYM | PERF_OUTPUT_SYMOFFSET |
273                               PERF_OUTPUT_DSO | PERF_OUTPUT_PERIOD,
274
275                 .invalid_fields = PERF_OUTPUT_TRACE | PERF_OUTPUT_BPF_OUTPUT,
276         },
277
278         [OUTPUT_TYPE_SYNTH] = {
279                 .user_set = false,
280
281                 .fields = PERF_OUTPUT_COMM | PERF_OUTPUT_TID |
282                               PERF_OUTPUT_CPU | PERF_OUTPUT_TIME |
283                               PERF_OUTPUT_EVNAME | PERF_OUTPUT_IP |
284                               PERF_OUTPUT_SYM | PERF_OUTPUT_SYMOFFSET |
285                               PERF_OUTPUT_DSO | PERF_OUTPUT_SYNTH,
286
287                 .invalid_fields = PERF_OUTPUT_TRACE | PERF_OUTPUT_BPF_OUTPUT,
288         },
289
290         [OUTPUT_TYPE_OTHER] = {
291                 .user_set = false,
292
293                 .fields = PERF_OUTPUT_COMM | PERF_OUTPUT_TID |
294                               PERF_OUTPUT_CPU | PERF_OUTPUT_TIME |
295                               PERF_OUTPUT_EVNAME | PERF_OUTPUT_IP |
296                               PERF_OUTPUT_SYM | PERF_OUTPUT_SYMOFFSET |
297                               PERF_OUTPUT_DSO | PERF_OUTPUT_PERIOD,
298
299                 .invalid_fields = PERF_OUTPUT_TRACE | PERF_OUTPUT_BPF_OUTPUT,
300         },
301 };
302
303 struct evsel_script {
304        char *filename;
305        FILE *fp;
306        u64  samples;
307        /* For metric output */
308        u64  val;
309        int  gnum;
310 };
311
312 static inline struct evsel_script *evsel_script(struct evsel *evsel)
313 {
314         return (struct evsel_script *)evsel->priv;
315 }
316
317 static struct evsel_script *evsel_script__new(struct evsel *evsel, struct perf_data *data)
318 {
319         struct evsel_script *es = zalloc(sizeof(*es));
320
321         if (es != NULL) {
322                 if (asprintf(&es->filename, "%s.%s.dump", data->file.path, evsel__name(evsel)) < 0)
323                         goto out_free;
324                 es->fp = fopen(es->filename, "w");
325                 if (es->fp == NULL)
326                         goto out_free_filename;
327         }
328
329         return es;
330 out_free_filename:
331         zfree(&es->filename);
332 out_free:
333         free(es);
334         return NULL;
335 }
336
337 static void evsel_script__delete(struct evsel_script *es)
338 {
339         zfree(&es->filename);
340         fclose(es->fp);
341         es->fp = NULL;
342         free(es);
343 }
344
345 static int evsel_script__fprintf(struct evsel_script *es, FILE *fp)
346 {
347         struct stat st;
348
349         fstat(fileno(es->fp), &st);
350         return fprintf(fp, "[ perf script: Wrote %.3f MB %s (%" PRIu64 " samples) ]\n",
351                        st.st_size / 1024.0 / 1024.0, es->filename, es->samples);
352 }
353
354 static inline int output_type(unsigned int type)
355 {
356         switch (type) {
357         case PERF_TYPE_SYNTH:
358                 return OUTPUT_TYPE_SYNTH;
359         default:
360                 if (type < PERF_TYPE_MAX)
361                         return type;
362         }
363
364         return OUTPUT_TYPE_OTHER;
365 }
366
367 static inline unsigned int attr_type(unsigned int type)
368 {
369         switch (type) {
370         case OUTPUT_TYPE_SYNTH:
371                 return PERF_TYPE_SYNTH;
372         default:
373                 return type;
374         }
375 }
376
377 static bool output_set_by_user(void)
378 {
379         int j;
380         for (j = 0; j < OUTPUT_TYPE_MAX; ++j) {
381                 if (output[j].user_set)
382                         return true;
383         }
384         return false;
385 }
386
387 static const char *output_field2str(enum perf_output_field field)
388 {
389         int i, imax = ARRAY_SIZE(all_output_options);
390         const char *str = "";
391
392         for (i = 0; i < imax; ++i) {
393                 if (all_output_options[i].field == field) {
394                         str = all_output_options[i].str;
395                         break;
396                 }
397         }
398         return str;
399 }
400
401 #define PRINT_FIELD(x)  (output[output_type(attr->type)].fields & PERF_OUTPUT_##x)
402
403 static int evsel__do_check_stype(struct evsel *evsel, u64 sample_type, const char *sample_msg,
404                                  enum perf_output_field field, bool allow_user_set)
405 {
406         struct perf_event_attr *attr = &evsel->core.attr;
407         int type = output_type(attr->type);
408         const char *evname;
409
410         if (attr->sample_type & sample_type)
411                 return 0;
412
413         if (output[type].user_set_fields & field) {
414                 if (allow_user_set)
415                         return 0;
416                 evname = evsel__name(evsel);
417                 pr_err("Samples for '%s' event do not have %s attribute set. "
418                        "Cannot print '%s' field.\n",
419                        evname, sample_msg, output_field2str(field));
420                 return -1;
421         }
422
423         /* user did not ask for it explicitly so remove from the default list */
424         output[type].fields &= ~field;
425         evname = evsel__name(evsel);
426         pr_debug("Samples for '%s' event do not have %s attribute set. "
427                  "Skipping '%s' field.\n",
428                  evname, sample_msg, output_field2str(field));
429
430         return 0;
431 }
432
433 static int evsel__check_stype(struct evsel *evsel, u64 sample_type, const char *sample_msg,
434                               enum perf_output_field field)
435 {
436         return evsel__do_check_stype(evsel, sample_type, sample_msg, field, false);
437 }
438
439 static int evsel__check_attr(struct evsel *evsel, struct perf_session *session)
440 {
441         struct perf_event_attr *attr = &evsel->core.attr;
442         bool allow_user_set;
443
444         if (perf_header__has_feat(&session->header, HEADER_STAT))
445                 return 0;
446
447         allow_user_set = perf_header__has_feat(&session->header,
448                                                HEADER_AUXTRACE);
449
450         if (PRINT_FIELD(TRACE) &&
451             !perf_session__has_traces(session, "record -R"))
452                 return -EINVAL;
453
454         if (PRINT_FIELD(IP)) {
455                 if (evsel__check_stype(evsel, PERF_SAMPLE_IP, "IP", PERF_OUTPUT_IP))
456                         return -EINVAL;
457         }
458
459         if (PRINT_FIELD(ADDR) &&
460             evsel__do_check_stype(evsel, PERF_SAMPLE_ADDR, "ADDR", PERF_OUTPUT_ADDR, allow_user_set))
461                 return -EINVAL;
462
463         if (PRINT_FIELD(DATA_SRC) &&
464             evsel__check_stype(evsel, PERF_SAMPLE_DATA_SRC, "DATA_SRC", PERF_OUTPUT_DATA_SRC))
465                 return -EINVAL;
466
467         if (PRINT_FIELD(WEIGHT) &&
468             evsel__check_stype(evsel, PERF_SAMPLE_WEIGHT, "WEIGHT", PERF_OUTPUT_WEIGHT))
469                 return -EINVAL;
470
471         if (PRINT_FIELD(SYM) &&
472             !(evsel->core.attr.sample_type & (PERF_SAMPLE_IP|PERF_SAMPLE_ADDR))) {
473                 pr_err("Display of symbols requested but neither sample IP nor "
474                            "sample address\navailable. Hence, no addresses to convert "
475                        "to symbols.\n");
476                 return -EINVAL;
477         }
478         if (PRINT_FIELD(SYMOFFSET) && !PRINT_FIELD(SYM)) {
479                 pr_err("Display of offsets requested but symbol is not"
480                        "selected.\n");
481                 return -EINVAL;
482         }
483         if (PRINT_FIELD(DSO) &&
484             !(evsel->core.attr.sample_type & (PERF_SAMPLE_IP|PERF_SAMPLE_ADDR))) {
485                 pr_err("Display of DSO requested but no address to convert.\n");
486                 return -EINVAL;
487         }
488         if ((PRINT_FIELD(SRCLINE) || PRINT_FIELD(SRCCODE)) && !PRINT_FIELD(IP)) {
489                 pr_err("Display of source line number requested but sample IP is not\n"
490                        "selected. Hence, no address to lookup the source line number.\n");
491                 return -EINVAL;
492         }
493         if (PRINT_FIELD(BRSTACKINSN) && !allow_user_set &&
494             !(evlist__combined_branch_type(session->evlist) & PERF_SAMPLE_BRANCH_ANY)) {
495                 pr_err("Display of branch stack assembler requested, but non all-branch filter set\n"
496                        "Hint: run 'perf record -b ...'\n");
497                 return -EINVAL;
498         }
499         if ((PRINT_FIELD(PID) || PRINT_FIELD(TID)) &&
500             evsel__check_stype(evsel, PERF_SAMPLE_TID, "TID", PERF_OUTPUT_TID|PERF_OUTPUT_PID))
501                 return -EINVAL;
502
503         if (PRINT_FIELD(TIME) &&
504             evsel__check_stype(evsel, PERF_SAMPLE_TIME, "TIME", PERF_OUTPUT_TIME))
505                 return -EINVAL;
506
507         if (PRINT_FIELD(CPU) &&
508             evsel__do_check_stype(evsel, PERF_SAMPLE_CPU, "CPU", PERF_OUTPUT_CPU, allow_user_set))
509                 return -EINVAL;
510
511         if (PRINT_FIELD(IREGS) &&
512             evsel__do_check_stype(evsel, PERF_SAMPLE_REGS_INTR, "IREGS", PERF_OUTPUT_IREGS, allow_user_set))
513                 return -EINVAL;
514
515         if (PRINT_FIELD(UREGS) &&
516             evsel__check_stype(evsel, PERF_SAMPLE_REGS_USER, "UREGS", PERF_OUTPUT_UREGS))
517                 return -EINVAL;
518
519         if (PRINT_FIELD(PHYS_ADDR) &&
520             evsel__check_stype(evsel, PERF_SAMPLE_PHYS_ADDR, "PHYS_ADDR", PERF_OUTPUT_PHYS_ADDR))
521                 return -EINVAL;
522
523         if (PRINT_FIELD(DATA_PAGE_SIZE) &&
524             evsel__check_stype(evsel, PERF_SAMPLE_DATA_PAGE_SIZE, "DATA_PAGE_SIZE", PERF_OUTPUT_DATA_PAGE_SIZE))
525                 return -EINVAL;
526
527         if (PRINT_FIELD(CODE_PAGE_SIZE) &&
528             evsel__check_stype(evsel, PERF_SAMPLE_CODE_PAGE_SIZE, "CODE_PAGE_SIZE", PERF_OUTPUT_CODE_PAGE_SIZE))
529                 return -EINVAL;
530
531         return 0;
532 }
533
534 static void set_print_ip_opts(struct perf_event_attr *attr)
535 {
536         unsigned int type = output_type(attr->type);
537
538         output[type].print_ip_opts = 0;
539         if (PRINT_FIELD(IP))
540                 output[type].print_ip_opts |= EVSEL__PRINT_IP;
541
542         if (PRINT_FIELD(SYM))
543                 output[type].print_ip_opts |= EVSEL__PRINT_SYM;
544
545         if (PRINT_FIELD(DSO))
546                 output[type].print_ip_opts |= EVSEL__PRINT_DSO;
547
548         if (PRINT_FIELD(SYMOFFSET))
549                 output[type].print_ip_opts |= EVSEL__PRINT_SYMOFFSET;
550
551         if (PRINT_FIELD(SRCLINE))
552                 output[type].print_ip_opts |= EVSEL__PRINT_SRCLINE;
553 }
554
555 /*
556  * verify all user requested events exist and the samples
557  * have the expected data
558  */
559 static int perf_session__check_output_opt(struct perf_session *session)
560 {
561         bool tod = false;
562         unsigned int j;
563         struct evsel *evsel;
564
565         for (j = 0; j < OUTPUT_TYPE_MAX; ++j) {
566                 evsel = perf_session__find_first_evtype(session, attr_type(j));
567
568                 /*
569                  * even if fields is set to 0 (ie., show nothing) event must
570                  * exist if user explicitly includes it on the command line
571                  */
572                 if (!evsel && output[j].user_set && !output[j].wildcard_set &&
573                     j != OUTPUT_TYPE_SYNTH) {
574                         pr_err("%s events do not exist. "
575                                "Remove corresponding -F option to proceed.\n",
576                                event_type(j));
577                         return -1;
578                 }
579
580                 if (evsel && output[j].fields &&
581                         evsel__check_attr(evsel, session))
582                         return -1;
583
584                 if (evsel == NULL)
585                         continue;
586
587                 set_print_ip_opts(&evsel->core.attr);
588                 tod |= output[j].fields & PERF_OUTPUT_TOD;
589         }
590
591         if (!no_callchain) {
592                 bool use_callchain = false;
593                 bool not_pipe = false;
594
595                 evlist__for_each_entry(session->evlist, evsel) {
596                         not_pipe = true;
597                         if (evsel__has_callchain(evsel)) {
598                                 use_callchain = true;
599                                 break;
600                         }
601                 }
602                 if (not_pipe && !use_callchain)
603                         symbol_conf.use_callchain = false;
604         }
605
606         /*
607          * set default for tracepoints to print symbols only
608          * if callchains are present
609          */
610         if (symbol_conf.use_callchain &&
611             !output[PERF_TYPE_TRACEPOINT].user_set) {
612                 j = PERF_TYPE_TRACEPOINT;
613
614                 evlist__for_each_entry(session->evlist, evsel) {
615                         if (evsel->core.attr.type != j)
616                                 continue;
617
618                         if (evsel__has_callchain(evsel)) {
619                                 output[j].fields |= PERF_OUTPUT_IP;
620                                 output[j].fields |= PERF_OUTPUT_SYM;
621                                 output[j].fields |= PERF_OUTPUT_SYMOFFSET;
622                                 output[j].fields |= PERF_OUTPUT_DSO;
623                                 set_print_ip_opts(&evsel->core.attr);
624                                 goto out;
625                         }
626                 }
627         }
628
629         if (tod && !session->header.env.clock.enabled) {
630                 pr_err("Can't provide 'tod' time, missing clock data. "
631                        "Please record with -k/--clockid option.\n");
632                 return -1;
633         }
634 out:
635         return 0;
636 }
637
638 static int perf_sample__fprintf_regs(struct regs_dump *regs, uint64_t mask,
639                                      FILE *fp)
640 {
641         unsigned i = 0, r;
642         int printed = 0;
643
644         if (!regs || !regs->regs)
645                 return 0;
646
647         printed += fprintf(fp, " ABI:%" PRIu64 " ", regs->abi);
648
649         for_each_set_bit(r, (unsigned long *) &mask, sizeof(mask) * 8) {
650                 u64 val = regs->regs[i++];
651                 printed += fprintf(fp, "%5s:0x%"PRIx64" ", perf_reg_name(r), val);
652         }
653
654         return printed;
655 }
656
657 #define DEFAULT_TOD_FMT "%F %H:%M:%S"
658
659 static char*
660 tod_scnprintf(struct perf_script *script, char *buf, int buflen,
661              u64 timestamp)
662 {
663         u64 tod_ns, clockid_ns;
664         struct perf_env *env;
665         unsigned long nsec;
666         struct tm ltime;
667         char date[64];
668         time_t sec;
669
670         buf[0] = '\0';
671         if (buflen < 64 || !script)
672                 return buf;
673
674         env = &script->session->header.env;
675         if (!env->clock.enabled) {
676                 scnprintf(buf, buflen, "disabled");
677                 return buf;
678         }
679
680         clockid_ns = env->clock.clockid_ns;
681         tod_ns     = env->clock.tod_ns;
682
683         if (timestamp > clockid_ns)
684                 tod_ns += timestamp - clockid_ns;
685         else
686                 tod_ns -= clockid_ns - timestamp;
687
688         sec  = (time_t) (tod_ns / NSEC_PER_SEC);
689         nsec = tod_ns - sec * NSEC_PER_SEC;
690
691         if (localtime_r(&sec, &ltime) == NULL) {
692                 scnprintf(buf, buflen, "failed");
693         } else {
694                 strftime(date, sizeof(date), DEFAULT_TOD_FMT, &ltime);
695
696                 if (symbol_conf.nanosecs) {
697                         snprintf(buf, buflen, "%s.%09lu", date, nsec);
698                 } else {
699                         snprintf(buf, buflen, "%s.%06lu",
700                                  date, nsec / NSEC_PER_USEC);
701                 }
702         }
703
704         return buf;
705 }
706
707 static int perf_sample__fprintf_iregs(struct perf_sample *sample,
708                                       struct perf_event_attr *attr, FILE *fp)
709 {
710         return perf_sample__fprintf_regs(&sample->intr_regs,
711                                          attr->sample_regs_intr, fp);
712 }
713
714 static int perf_sample__fprintf_uregs(struct perf_sample *sample,
715                                       struct perf_event_attr *attr, FILE *fp)
716 {
717         return perf_sample__fprintf_regs(&sample->user_regs,
718                                          attr->sample_regs_user, fp);
719 }
720
721 static int perf_sample__fprintf_start(struct perf_script *script,
722                                       struct perf_sample *sample,
723                                       struct thread *thread,
724                                       struct evsel *evsel,
725                                       u32 type, FILE *fp)
726 {
727         struct perf_event_attr *attr = &evsel->core.attr;
728         unsigned long secs;
729         unsigned long long nsecs;
730         int printed = 0;
731         char tstr[128];
732
733         if (PRINT_FIELD(COMM)) {
734                 const char *comm = thread ? thread__comm_str(thread) : ":-1";
735
736                 if (latency_format)
737                         printed += fprintf(fp, "%8.8s ", comm);
738                 else if (PRINT_FIELD(IP) && evsel__has_callchain(evsel) && symbol_conf.use_callchain)
739                         printed += fprintf(fp, "%s ", comm);
740                 else
741                         printed += fprintf(fp, "%16s ", comm);
742         }
743
744         if (PRINT_FIELD(PID) && PRINT_FIELD(TID))
745                 printed += fprintf(fp, "%5d/%-5d ", sample->pid, sample->tid);
746         else if (PRINT_FIELD(PID))
747                 printed += fprintf(fp, "%5d ", sample->pid);
748         else if (PRINT_FIELD(TID))
749                 printed += fprintf(fp, "%5d ", sample->tid);
750
751         if (PRINT_FIELD(CPU)) {
752                 if (latency_format)
753                         printed += fprintf(fp, "%3d ", sample->cpu);
754                 else
755                         printed += fprintf(fp, "[%03d] ", sample->cpu);
756         }
757
758         if (PRINT_FIELD(MISC)) {
759                 int ret = 0;
760
761                 #define has(m) \
762                         (sample->misc & PERF_RECORD_MISC_##m) == PERF_RECORD_MISC_##m
763
764                 if (has(KERNEL))
765                         ret += fprintf(fp, "K");
766                 if (has(USER))
767                         ret += fprintf(fp, "U");
768                 if (has(HYPERVISOR))
769                         ret += fprintf(fp, "H");
770                 if (has(GUEST_KERNEL))
771                         ret += fprintf(fp, "G");
772                 if (has(GUEST_USER))
773                         ret += fprintf(fp, "g");
774
775                 switch (type) {
776                 case PERF_RECORD_MMAP:
777                 case PERF_RECORD_MMAP2:
778                         if (has(MMAP_DATA))
779                                 ret += fprintf(fp, "M");
780                         break;
781                 case PERF_RECORD_COMM:
782                         if (has(COMM_EXEC))
783                                 ret += fprintf(fp, "E");
784                         break;
785                 case PERF_RECORD_SWITCH:
786                 case PERF_RECORD_SWITCH_CPU_WIDE:
787                         if (has(SWITCH_OUT)) {
788                                 ret += fprintf(fp, "S");
789                                 if (sample->misc & PERF_RECORD_MISC_SWITCH_OUT_PREEMPT)
790                                         ret += fprintf(fp, "p");
791                         }
792                 default:
793                         break;
794                 }
795
796                 #undef has
797
798                 ret += fprintf(fp, "%*s", 6 - ret, " ");
799                 printed += ret;
800         }
801
802         if (PRINT_FIELD(TOD)) {
803                 tod_scnprintf(script, tstr, sizeof(tstr), sample->time);
804                 printed += fprintf(fp, "%s ", tstr);
805         }
806
807         if (PRINT_FIELD(TIME)) {
808                 u64 t = sample->time;
809                 if (reltime) {
810                         if (!initial_time)
811                                 initial_time = sample->time;
812                         t = sample->time - initial_time;
813                 } else if (deltatime) {
814                         if (previous_time)
815                                 t = sample->time - previous_time;
816                         else {
817                                 t = 0;
818                         }
819                         previous_time = sample->time;
820                 }
821                 nsecs = t;
822                 secs = nsecs / NSEC_PER_SEC;
823                 nsecs -= secs * NSEC_PER_SEC;
824
825                 if (symbol_conf.nanosecs)
826                         printed += fprintf(fp, "%5lu.%09llu: ", secs, nsecs);
827                 else {
828                         char sample_time[32];
829                         timestamp__scnprintf_usec(t, sample_time, sizeof(sample_time));
830                         printed += fprintf(fp, "%12s: ", sample_time);
831                 }
832         }
833
834         return printed;
835 }
836
837 static inline char
838 mispred_str(struct branch_entry *br)
839 {
840         if (!(br->flags.mispred  || br->flags.predicted))
841                 return '-';
842
843         return br->flags.predicted ? 'P' : 'M';
844 }
845
846 static int perf_sample__fprintf_brstack(struct perf_sample *sample,
847                                         struct thread *thread,
848                                         struct perf_event_attr *attr, FILE *fp)
849 {
850         struct branch_stack *br = sample->branch_stack;
851         struct branch_entry *entries = perf_sample__branch_entries(sample);
852         struct addr_location alf, alt;
853         u64 i, from, to;
854         int printed = 0;
855
856         if (!(br && br->nr))
857                 return 0;
858
859         for (i = 0; i < br->nr; i++) {
860                 from = entries[i].from;
861                 to   = entries[i].to;
862
863                 if (PRINT_FIELD(DSO)) {
864                         memset(&alf, 0, sizeof(alf));
865                         memset(&alt, 0, sizeof(alt));
866                         thread__find_map_fb(thread, sample->cpumode, from, &alf);
867                         thread__find_map_fb(thread, sample->cpumode, to, &alt);
868                 }
869
870                 printed += fprintf(fp, " 0x%"PRIx64, from);
871                 if (PRINT_FIELD(DSO)) {
872                         printed += fprintf(fp, "(");
873                         printed += map__fprintf_dsoname(alf.map, fp);
874                         printed += fprintf(fp, ")");
875                 }
876
877                 printed += fprintf(fp, "/0x%"PRIx64, to);
878                 if (PRINT_FIELD(DSO)) {
879                         printed += fprintf(fp, "(");
880                         printed += map__fprintf_dsoname(alt.map, fp);
881                         printed += fprintf(fp, ")");
882                 }
883
884                 printed += fprintf(fp, "/%c/%c/%c/%d ",
885                         mispred_str(entries + i),
886                         entries[i].flags.in_tx ? 'X' : '-',
887                         entries[i].flags.abort ? 'A' : '-',
888                         entries[i].flags.cycles);
889         }
890
891         return printed;
892 }
893
894 static int perf_sample__fprintf_brstacksym(struct perf_sample *sample,
895                                            struct thread *thread,
896                                            struct perf_event_attr *attr, FILE *fp)
897 {
898         struct branch_stack *br = sample->branch_stack;
899         struct branch_entry *entries = perf_sample__branch_entries(sample);
900         struct addr_location alf, alt;
901         u64 i, from, to;
902         int printed = 0;
903
904         if (!(br && br->nr))
905                 return 0;
906
907         for (i = 0; i < br->nr; i++) {
908
909                 memset(&alf, 0, sizeof(alf));
910                 memset(&alt, 0, sizeof(alt));
911                 from = entries[i].from;
912                 to   = entries[i].to;
913
914                 thread__find_symbol_fb(thread, sample->cpumode, from, &alf);
915                 thread__find_symbol_fb(thread, sample->cpumode, to, &alt);
916
917                 printed += symbol__fprintf_symname_offs(alf.sym, &alf, fp);
918                 if (PRINT_FIELD(DSO)) {
919                         printed += fprintf(fp, "(");
920                         printed += map__fprintf_dsoname(alf.map, fp);
921                         printed += fprintf(fp, ")");
922                 }
923                 printed += fprintf(fp, "%c", '/');
924                 printed += symbol__fprintf_symname_offs(alt.sym, &alt, fp);
925                 if (PRINT_FIELD(DSO)) {
926                         printed += fprintf(fp, "(");
927                         printed += map__fprintf_dsoname(alt.map, fp);
928                         printed += fprintf(fp, ")");
929                 }
930                 printed += fprintf(fp, "/%c/%c/%c/%d ",
931                         mispred_str(entries + i),
932                         entries[i].flags.in_tx ? 'X' : '-',
933                         entries[i].flags.abort ? 'A' : '-',
934                         entries[i].flags.cycles);
935         }
936
937         return printed;
938 }
939
940 static int perf_sample__fprintf_brstackoff(struct perf_sample *sample,
941                                            struct thread *thread,
942                                            struct perf_event_attr *attr, FILE *fp)
943 {
944         struct branch_stack *br = sample->branch_stack;
945         struct branch_entry *entries = perf_sample__branch_entries(sample);
946         struct addr_location alf, alt;
947         u64 i, from, to;
948         int printed = 0;
949
950         if (!(br && br->nr))
951                 return 0;
952
953         for (i = 0; i < br->nr; i++) {
954
955                 memset(&alf, 0, sizeof(alf));
956                 memset(&alt, 0, sizeof(alt));
957                 from = entries[i].from;
958                 to   = entries[i].to;
959
960                 if (thread__find_map_fb(thread, sample->cpumode, from, &alf) &&
961                     !alf.map->dso->adjust_symbols)
962                         from = map__map_ip(alf.map, from);
963
964                 if (thread__find_map_fb(thread, sample->cpumode, to, &alt) &&
965                     !alt.map->dso->adjust_symbols)
966                         to = map__map_ip(alt.map, to);
967
968                 printed += fprintf(fp, " 0x%"PRIx64, from);
969                 if (PRINT_FIELD(DSO)) {
970                         printed += fprintf(fp, "(");
971                         printed += map__fprintf_dsoname(alf.map, fp);
972                         printed += fprintf(fp, ")");
973                 }
974                 printed += fprintf(fp, "/0x%"PRIx64, to);
975                 if (PRINT_FIELD(DSO)) {
976                         printed += fprintf(fp, "(");
977                         printed += map__fprintf_dsoname(alt.map, fp);
978                         printed += fprintf(fp, ")");
979                 }
980                 printed += fprintf(fp, "/%c/%c/%c/%d ",
981                         mispred_str(entries + i),
982                         entries[i].flags.in_tx ? 'X' : '-',
983                         entries[i].flags.abort ? 'A' : '-',
984                         entries[i].flags.cycles);
985         }
986
987         return printed;
988 }
989 #define MAXBB 16384UL
990
991 static int grab_bb(u8 *buffer, u64 start, u64 end,
992                     struct machine *machine, struct thread *thread,
993                     bool *is64bit, u8 *cpumode, bool last)
994 {
995         long offset, len;
996         struct addr_location al;
997         bool kernel;
998
999         if (!start || !end)
1000                 return 0;
1001
1002         kernel = machine__kernel_ip(machine, start);
1003         if (kernel)
1004                 *cpumode = PERF_RECORD_MISC_KERNEL;
1005         else
1006                 *cpumode = PERF_RECORD_MISC_USER;
1007
1008         /*
1009          * Block overlaps between kernel and user.
1010          * This can happen due to ring filtering
1011          * On Intel CPUs the entry into the kernel is filtered,
1012          * but the exit is not. Let the caller patch it up.
1013          */
1014         if (kernel != machine__kernel_ip(machine, end)) {
1015                 pr_debug("\tblock %" PRIx64 "-%" PRIx64 " transfers between kernel and user\n", start, end);
1016                 return -ENXIO;
1017         }
1018
1019         memset(&al, 0, sizeof(al));
1020         if (end - start > MAXBB - MAXINSN) {
1021                 if (last)
1022                         pr_debug("\tbrstack does not reach to final jump (%" PRIx64 "-%" PRIx64 ")\n", start, end);
1023                 else
1024                         pr_debug("\tblock %" PRIx64 "-%" PRIx64 " (%" PRIu64 ") too long to dump\n", start, end, end - start);
1025                 return 0;
1026         }
1027
1028         if (!thread__find_map(thread, *cpumode, start, &al) || !al.map->dso) {
1029                 pr_debug("\tcannot resolve %" PRIx64 "-%" PRIx64 "\n", start, end);
1030                 return 0;
1031         }
1032         if (al.map->dso->data.status == DSO_DATA_STATUS_ERROR) {
1033                 pr_debug("\tcannot resolve %" PRIx64 "-%" PRIx64 "\n", start, end);
1034                 return 0;
1035         }
1036
1037         /* Load maps to ensure dso->is_64_bit has been updated */
1038         map__load(al.map);
1039
1040         offset = al.map->map_ip(al.map, start);
1041         len = dso__data_read_offset(al.map->dso, machine, offset, (u8 *)buffer,
1042                                     end - start + MAXINSN);
1043
1044         *is64bit = al.map->dso->is_64_bit;
1045         if (len <= 0)
1046                 pr_debug("\tcannot fetch code for block at %" PRIx64 "-%" PRIx64 "\n",
1047                         start, end);
1048         return len;
1049 }
1050
1051 static int map__fprintf_srccode(struct map *map, u64 addr, FILE *fp, struct srccode_state *state)
1052 {
1053         char *srcfile;
1054         int ret = 0;
1055         unsigned line;
1056         int len;
1057         char *srccode;
1058
1059         if (!map || !map->dso)
1060                 return 0;
1061         srcfile = get_srcline_split(map->dso,
1062                                     map__rip_2objdump(map, addr),
1063                                     &line);
1064         if (!srcfile)
1065                 return 0;
1066
1067         /* Avoid redundant printing */
1068         if (state &&
1069             state->srcfile &&
1070             !strcmp(state->srcfile, srcfile) &&
1071             state->line == line) {
1072                 free(srcfile);
1073                 return 0;
1074         }
1075
1076         srccode = find_sourceline(srcfile, line, &len);
1077         if (!srccode)
1078                 goto out_free_line;
1079
1080         ret = fprintf(fp, "|%-8d %.*s", line, len, srccode);
1081
1082         if (state) {
1083                 state->srcfile = srcfile;
1084                 state->line = line;
1085         }
1086         return ret;
1087
1088 out_free_line:
1089         free(srcfile);
1090         return ret;
1091 }
1092
1093 static int print_srccode(struct thread *thread, u8 cpumode, uint64_t addr)
1094 {
1095         struct addr_location al;
1096         int ret = 0;
1097
1098         memset(&al, 0, sizeof(al));
1099         thread__find_map(thread, cpumode, addr, &al);
1100         if (!al.map)
1101                 return 0;
1102         ret = map__fprintf_srccode(al.map, al.addr, stdout,
1103                     &thread->srccode_state);
1104         if (ret)
1105                 ret += printf("\n");
1106         return ret;
1107 }
1108
1109 static int ip__fprintf_jump(uint64_t ip, struct branch_entry *en,
1110                             struct perf_insn *x, u8 *inbuf, int len,
1111                             int insn, FILE *fp, int *total_cycles)
1112 {
1113         int printed = fprintf(fp, "\t%016" PRIx64 "\t%-30s\t#%s%s%s%s", ip,
1114                               dump_insn(x, ip, inbuf, len, NULL),
1115                               en->flags.predicted ? " PRED" : "",
1116                               en->flags.mispred ? " MISPRED" : "",
1117                               en->flags.in_tx ? " INTX" : "",
1118                               en->flags.abort ? " ABORT" : "");
1119         if (en->flags.cycles) {
1120                 *total_cycles += en->flags.cycles;
1121                 printed += fprintf(fp, " %d cycles [%d]", en->flags.cycles, *total_cycles);
1122                 if (insn)
1123                         printed += fprintf(fp, " %.2f IPC", (float)insn / en->flags.cycles);
1124         }
1125         return printed + fprintf(fp, "\n");
1126 }
1127
1128 static int ip__fprintf_sym(uint64_t addr, struct thread *thread,
1129                            u8 cpumode, int cpu, struct symbol **lastsym,
1130                            struct perf_event_attr *attr, FILE *fp)
1131 {
1132         struct addr_location al;
1133         int off, printed = 0;
1134
1135         memset(&al, 0, sizeof(al));
1136
1137         thread__find_map(thread, cpumode, addr, &al);
1138
1139         if ((*lastsym) && al.addr >= (*lastsym)->start && al.addr < (*lastsym)->end)
1140                 return 0;
1141
1142         al.cpu = cpu;
1143         al.sym = NULL;
1144         if (al.map)
1145                 al.sym = map__find_symbol(al.map, al.addr);
1146
1147         if (!al.sym)
1148                 return 0;
1149
1150         if (al.addr < al.sym->end)
1151                 off = al.addr - al.sym->start;
1152         else
1153                 off = al.addr - al.map->start - al.sym->start;
1154         printed += fprintf(fp, "\t%s", al.sym->name);
1155         if (off)
1156                 printed += fprintf(fp, "%+d", off);
1157         printed += fprintf(fp, ":");
1158         if (PRINT_FIELD(SRCLINE))
1159                 printed += map__fprintf_srcline(al.map, al.addr, "\t", fp);
1160         printed += fprintf(fp, "\n");
1161         *lastsym = al.sym;
1162
1163         return printed;
1164 }
1165
1166 static int perf_sample__fprintf_brstackinsn(struct perf_sample *sample,
1167                                             struct thread *thread,
1168                                             struct perf_event_attr *attr,
1169                                             struct machine *machine, FILE *fp)
1170 {
1171         struct branch_stack *br = sample->branch_stack;
1172         struct branch_entry *entries = perf_sample__branch_entries(sample);
1173         u64 start, end;
1174         int i, insn, len, nr, ilen, printed = 0;
1175         struct perf_insn x;
1176         u8 buffer[MAXBB];
1177         unsigned off;
1178         struct symbol *lastsym = NULL;
1179         int total_cycles = 0;
1180
1181         if (!(br && br->nr))
1182                 return 0;
1183         nr = br->nr;
1184         if (max_blocks && nr > max_blocks + 1)
1185                 nr = max_blocks + 1;
1186
1187         x.thread = thread;
1188         x.cpu = sample->cpu;
1189
1190         printed += fprintf(fp, "%c", '\n');
1191
1192         /* Handle first from jump, of which we don't know the entry. */
1193         len = grab_bb(buffer, entries[nr-1].from,
1194                         entries[nr-1].from,
1195                         machine, thread, &x.is64bit, &x.cpumode, false);
1196         if (len > 0) {
1197                 printed += ip__fprintf_sym(entries[nr - 1].from, thread,
1198                                            x.cpumode, x.cpu, &lastsym, attr, fp);
1199                 printed += ip__fprintf_jump(entries[nr - 1].from, &entries[nr - 1],
1200                                             &x, buffer, len, 0, fp, &total_cycles);
1201                 if (PRINT_FIELD(SRCCODE))
1202                         printed += print_srccode(thread, x.cpumode, entries[nr - 1].from);
1203         }
1204
1205         /* Print all blocks */
1206         for (i = nr - 2; i >= 0; i--) {
1207                 if (entries[i].from || entries[i].to)
1208                         pr_debug("%d: %" PRIx64 "-%" PRIx64 "\n", i,
1209                                  entries[i].from,
1210                                  entries[i].to);
1211                 start = entries[i + 1].to;
1212                 end   = entries[i].from;
1213
1214                 len = grab_bb(buffer, start, end, machine, thread, &x.is64bit, &x.cpumode, false);
1215                 /* Patch up missing kernel transfers due to ring filters */
1216                 if (len == -ENXIO && i > 0) {
1217                         end = entries[--i].from;
1218                         pr_debug("\tpatching up to %" PRIx64 "-%" PRIx64 "\n", start, end);
1219                         len = grab_bb(buffer, start, end, machine, thread, &x.is64bit, &x.cpumode, false);
1220                 }
1221                 if (len <= 0)
1222                         continue;
1223
1224                 insn = 0;
1225                 for (off = 0; off < (unsigned)len; off += ilen) {
1226                         uint64_t ip = start + off;
1227
1228                         printed += ip__fprintf_sym(ip, thread, x.cpumode, x.cpu, &lastsym, attr, fp);
1229                         if (ip == end) {
1230                                 printed += ip__fprintf_jump(ip, &entries[i], &x, buffer + off, len - off, ++insn, fp,
1231                                                             &total_cycles);
1232                                 if (PRINT_FIELD(SRCCODE))
1233                                         printed += print_srccode(thread, x.cpumode, ip);
1234                                 break;
1235                         } else {
1236                                 ilen = 0;
1237                                 printed += fprintf(fp, "\t%016" PRIx64 "\t%s\n", ip,
1238                                                    dump_insn(&x, ip, buffer + off, len - off, &ilen));
1239                                 if (ilen == 0)
1240                                         break;
1241                                 if (PRINT_FIELD(SRCCODE))
1242                                         print_srccode(thread, x.cpumode, ip);
1243                                 insn++;
1244                         }
1245                 }
1246                 if (off != end - start)
1247                         printed += fprintf(fp, "\tmismatch of LBR data and executable\n");
1248         }
1249
1250         /*
1251          * Hit the branch? In this case we are already done, and the target
1252          * has not been executed yet.
1253          */
1254         if (entries[0].from == sample->ip)
1255                 goto out;
1256         if (entries[0].flags.abort)
1257                 goto out;
1258
1259         /*
1260          * Print final block upto sample
1261          *
1262          * Due to pipeline delays the LBRs might be missing a branch
1263          * or two, which can result in very large or negative blocks
1264          * between final branch and sample. When this happens just
1265          * continue walking after the last TO until we hit a branch.
1266          */
1267         start = entries[0].to;
1268         end = sample->ip;
1269         if (end < start) {
1270                 /* Missing jump. Scan 128 bytes for the next branch */
1271                 end = start + 128;
1272         }
1273         len = grab_bb(buffer, start, end, machine, thread, &x.is64bit, &x.cpumode, true);
1274         printed += ip__fprintf_sym(start, thread, x.cpumode, x.cpu, &lastsym, attr, fp);
1275         if (len <= 0) {
1276                 /* Print at least last IP if basic block did not work */
1277                 len = grab_bb(buffer, sample->ip, sample->ip,
1278                               machine, thread, &x.is64bit, &x.cpumode, false);
1279                 if (len <= 0)
1280                         goto out;
1281                 printed += fprintf(fp, "\t%016" PRIx64 "\t%s\n", sample->ip,
1282                         dump_insn(&x, sample->ip, buffer, len, NULL));
1283                 if (PRINT_FIELD(SRCCODE))
1284                         print_srccode(thread, x.cpumode, sample->ip);
1285                 goto out;
1286         }
1287         for (off = 0; off <= end - start; off += ilen) {
1288                 ilen = 0;
1289                 printed += fprintf(fp, "\t%016" PRIx64 "\t%s\n", start + off,
1290                                    dump_insn(&x, start + off, buffer + off, len - off, &ilen));
1291                 if (ilen == 0)
1292                         break;
1293                 if (arch_is_branch(buffer + off, len - off, x.is64bit) && start + off != sample->ip) {
1294                         /*
1295                          * Hit a missing branch. Just stop.
1296                          */
1297                         printed += fprintf(fp, "\t... not reaching sample ...\n");
1298                         break;
1299                 }
1300                 if (PRINT_FIELD(SRCCODE))
1301                         print_srccode(thread, x.cpumode, start + off);
1302         }
1303 out:
1304         return printed;
1305 }
1306
1307 static int perf_sample__fprintf_addr(struct perf_sample *sample,
1308                                      struct thread *thread,
1309                                      struct perf_event_attr *attr, FILE *fp)
1310 {
1311         struct addr_location al;
1312         int printed = fprintf(fp, "%16" PRIx64, sample->addr);
1313
1314         if (!sample_addr_correlates_sym(attr))
1315                 goto out;
1316
1317         thread__resolve(thread, &al, sample);
1318
1319         if (PRINT_FIELD(SYM)) {
1320                 printed += fprintf(fp, " ");
1321                 if (PRINT_FIELD(SYMOFFSET))
1322                         printed += symbol__fprintf_symname_offs(al.sym, &al, fp);
1323                 else
1324                         printed += symbol__fprintf_symname(al.sym, fp);
1325         }
1326
1327         if (PRINT_FIELD(DSO)) {
1328                 printed += fprintf(fp, " (");
1329                 printed += map__fprintf_dsoname(al.map, fp);
1330                 printed += fprintf(fp, ")");
1331         }
1332 out:
1333         return printed;
1334 }
1335
1336 static const char *resolve_branch_sym(struct perf_sample *sample,
1337                                       struct evsel *evsel,
1338                                       struct thread *thread,
1339                                       struct addr_location *al,
1340                                       u64 *ip)
1341 {
1342         struct addr_location addr_al;
1343         struct perf_event_attr *attr = &evsel->core.attr;
1344         const char *name = NULL;
1345
1346         if (sample->flags & (PERF_IP_FLAG_CALL | PERF_IP_FLAG_TRACE_BEGIN)) {
1347                 if (sample_addr_correlates_sym(attr)) {
1348                         thread__resolve(thread, &addr_al, sample);
1349                         if (addr_al.sym)
1350                                 name = addr_al.sym->name;
1351                         else
1352                                 *ip = sample->addr;
1353                 } else {
1354                         *ip = sample->addr;
1355                 }
1356         } else if (sample->flags & (PERF_IP_FLAG_RETURN | PERF_IP_FLAG_TRACE_END)) {
1357                 if (al->sym)
1358                         name = al->sym->name;
1359                 else
1360                         *ip = sample->ip;
1361         }
1362         return name;
1363 }
1364
1365 static int perf_sample__fprintf_callindent(struct perf_sample *sample,
1366                                            struct evsel *evsel,
1367                                            struct thread *thread,
1368                                            struct addr_location *al, FILE *fp)
1369 {
1370         struct perf_event_attr *attr = &evsel->core.attr;
1371         size_t depth = thread_stack__depth(thread, sample->cpu);
1372         const char *name = NULL;
1373         static int spacing;
1374         int len = 0;
1375         int dlen = 0;
1376         u64 ip = 0;
1377
1378         /*
1379          * The 'return' has already been popped off the stack so the depth has
1380          * to be adjusted to match the 'call'.
1381          */
1382         if (thread->ts && sample->flags & PERF_IP_FLAG_RETURN)
1383                 depth += 1;
1384
1385         name = resolve_branch_sym(sample, evsel, thread, al, &ip);
1386
1387         if (PRINT_FIELD(DSO) && !(PRINT_FIELD(IP) || PRINT_FIELD(ADDR))) {
1388                 dlen += fprintf(fp, "(");
1389                 dlen += map__fprintf_dsoname(al->map, fp);
1390                 dlen += fprintf(fp, ")\t");
1391         }
1392
1393         if (name)
1394                 len = fprintf(fp, "%*s%s", (int)depth * 4, "", name);
1395         else if (ip)
1396                 len = fprintf(fp, "%*s%16" PRIx64, (int)depth * 4, "", ip);
1397
1398         if (len < 0)
1399                 return len;
1400
1401         /*
1402          * Try to keep the output length from changing frequently so that the
1403          * output lines up more nicely.
1404          */
1405         if (len > spacing || (len && len < spacing - 52))
1406                 spacing = round_up(len + 4, 32);
1407
1408         if (len < spacing)
1409                 len += fprintf(fp, "%*s", spacing - len, "");
1410
1411         return len + dlen;
1412 }
1413
1414 __weak void arch_fetch_insn(struct perf_sample *sample __maybe_unused,
1415                             struct thread *thread __maybe_unused,
1416                             struct machine *machine __maybe_unused)
1417 {
1418 }
1419
1420 static int perf_sample__fprintf_insn(struct perf_sample *sample,
1421                                      struct perf_event_attr *attr,
1422                                      struct thread *thread,
1423                                      struct machine *machine, FILE *fp)
1424 {
1425         int printed = 0;
1426
1427         if (sample->insn_len == 0 && native_arch)
1428                 arch_fetch_insn(sample, thread, machine);
1429
1430         if (PRINT_FIELD(INSNLEN))
1431                 printed += fprintf(fp, " ilen: %d", sample->insn_len);
1432         if (PRINT_FIELD(INSN) && sample->insn_len) {
1433                 int i;
1434
1435                 printed += fprintf(fp, " insn:");
1436                 for (i = 0; i < sample->insn_len; i++)
1437                         printed += fprintf(fp, " %02x", (unsigned char)sample->insn[i]);
1438         }
1439         if (PRINT_FIELD(BRSTACKINSN))
1440                 printed += perf_sample__fprintf_brstackinsn(sample, thread, attr, machine, fp);
1441
1442         return printed;
1443 }
1444
1445 static int perf_sample__fprintf_ipc(struct perf_sample *sample,
1446                                     struct perf_event_attr *attr, FILE *fp)
1447 {
1448         unsigned int ipc;
1449
1450         if (!PRINT_FIELD(IPC) || !sample->cyc_cnt || !sample->insn_cnt)
1451                 return 0;
1452
1453         ipc = (sample->insn_cnt * 100) / sample->cyc_cnt;
1454
1455         return fprintf(fp, " \t IPC: %u.%02u (%" PRIu64 "/%" PRIu64 ") ",
1456                        ipc / 100, ipc % 100, sample->insn_cnt, sample->cyc_cnt);
1457 }
1458
1459 static int perf_sample__fprintf_bts(struct perf_sample *sample,
1460                                     struct evsel *evsel,
1461                                     struct thread *thread,
1462                                     struct addr_location *al,
1463                                     struct machine *machine, FILE *fp)
1464 {
1465         struct perf_event_attr *attr = &evsel->core.attr;
1466         unsigned int type = output_type(attr->type);
1467         bool print_srcline_last = false;
1468         int printed = 0;
1469
1470         if (PRINT_FIELD(CALLINDENT))
1471                 printed += perf_sample__fprintf_callindent(sample, evsel, thread, al, fp);
1472
1473         /* print branch_from information */
1474         if (PRINT_FIELD(IP)) {
1475                 unsigned int print_opts = output[type].print_ip_opts;
1476                 struct callchain_cursor *cursor = NULL;
1477
1478                 if (symbol_conf.use_callchain && sample->callchain &&
1479                     thread__resolve_callchain(al->thread, &callchain_cursor, evsel,
1480                                               sample, NULL, NULL, scripting_max_stack) == 0)
1481                         cursor = &callchain_cursor;
1482
1483                 if (cursor == NULL) {
1484                         printed += fprintf(fp, " ");
1485                         if (print_opts & EVSEL__PRINT_SRCLINE) {
1486                                 print_srcline_last = true;
1487                                 print_opts &= ~EVSEL__PRINT_SRCLINE;
1488                         }
1489                 } else
1490                         printed += fprintf(fp, "\n");
1491
1492                 printed += sample__fprintf_sym(sample, al, 0, print_opts, cursor,
1493                                                symbol_conf.bt_stop_list, fp);
1494         }
1495
1496         /* print branch_to information */
1497         if (PRINT_FIELD(ADDR) ||
1498             ((evsel->core.attr.sample_type & PERF_SAMPLE_ADDR) &&
1499              !output[type].user_set)) {
1500                 printed += fprintf(fp, " => ");
1501                 printed += perf_sample__fprintf_addr(sample, thread, attr, fp);
1502         }
1503
1504         printed += perf_sample__fprintf_ipc(sample, attr, fp);
1505
1506         if (print_srcline_last)
1507                 printed += map__fprintf_srcline(al->map, al->addr, "\n  ", fp);
1508
1509         printed += perf_sample__fprintf_insn(sample, attr, thread, machine, fp);
1510         printed += fprintf(fp, "\n");
1511         if (PRINT_FIELD(SRCCODE)) {
1512                 int ret = map__fprintf_srccode(al->map, al->addr, stdout,
1513                                          &thread->srccode_state);
1514                 if (ret) {
1515                         printed += ret;
1516                         printed += printf("\n");
1517                 }
1518         }
1519         return printed;
1520 }
1521
1522 static struct {
1523         u32 flags;
1524         const char *name;
1525 } sample_flags[] = {
1526         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_CALL, "call"},
1527         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_RETURN, "return"},
1528         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_CONDITIONAL, "jcc"},
1529         {PERF_IP_FLAG_BRANCH, "jmp"},
1530         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_CALL | PERF_IP_FLAG_INTERRUPT, "int"},
1531         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_RETURN | PERF_IP_FLAG_INTERRUPT, "iret"},
1532         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_CALL | PERF_IP_FLAG_SYSCALLRET, "syscall"},
1533         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_RETURN | PERF_IP_FLAG_SYSCALLRET, "sysret"},
1534         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_ASYNC, "async"},
1535         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_CALL | PERF_IP_FLAG_ASYNC | PERF_IP_FLAG_INTERRUPT, "hw int"},
1536         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_TX_ABORT, "tx abrt"},
1537         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_TRACE_BEGIN, "tr strt"},
1538         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_TRACE_END, "tr end"},
1539         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_CALL | PERF_IP_FLAG_VMENTRY, "vmentry"},
1540         {PERF_IP_FLAG_BRANCH | PERF_IP_FLAG_CALL | PERF_IP_FLAG_VMEXIT, "vmexit"},
1541         {0, NULL}
1542 };
1543
1544 static const char *sample_flags_to_name(u32 flags)
1545 {
1546         int i;
1547
1548         for (i = 0; sample_flags[i].name ; i++) {
1549                 if (sample_flags[i].flags == flags)
1550                         return sample_flags[i].name;
1551         }
1552
1553         return NULL;
1554 }
1555
1556 static int perf_sample__fprintf_flags(u32 flags, FILE *fp)
1557 {
1558         const char *chars = PERF_IP_FLAG_CHARS;
1559         const int n = strlen(PERF_IP_FLAG_CHARS);
1560         bool in_tx = flags & PERF_IP_FLAG_IN_TX;
1561         const char *name = NULL;
1562         char str[33];
1563         int i, pos = 0;
1564
1565         name = sample_flags_to_name(flags & ~PERF_IP_FLAG_IN_TX);
1566         if (name)
1567                 return fprintf(fp, "  %-15s%4s ", name, in_tx ? "(x)" : "");
1568
1569         if (flags & PERF_IP_FLAG_TRACE_BEGIN) {
1570                 name = sample_flags_to_name(flags & ~(PERF_IP_FLAG_IN_TX | PERF_IP_FLAG_TRACE_BEGIN));
1571                 if (name)
1572                         return fprintf(fp, "  tr strt %-7s%4s ", name, in_tx ? "(x)" : "");
1573         }
1574
1575         if (flags & PERF_IP_FLAG_TRACE_END) {
1576                 name = sample_flags_to_name(flags & ~(PERF_IP_FLAG_IN_TX | PERF_IP_FLAG_TRACE_END));
1577                 if (name)
1578                         return fprintf(fp, "  tr end  %-7s%4s ", name, in_tx ? "(x)" : "");
1579         }
1580
1581         for (i = 0; i < n; i++, flags >>= 1) {
1582                 if (flags & 1)
1583                         str[pos++] = chars[i];
1584         }
1585         for (; i < 32; i++, flags >>= 1) {
1586                 if (flags & 1)
1587                         str[pos++] = '?';
1588         }
1589         str[pos] = 0;
1590
1591         return fprintf(fp, "  %-19s ", str);
1592 }
1593
1594 struct printer_data {
1595         int line_no;
1596         bool hit_nul;
1597         bool is_printable;
1598 };
1599
1600 static int sample__fprintf_bpf_output(enum binary_printer_ops op,
1601                                       unsigned int val,
1602                                       void *extra, FILE *fp)
1603 {
1604         unsigned char ch = (unsigned char)val;
1605         struct printer_data *printer_data = extra;
1606         int printed = 0;
1607
1608         switch (op) {
1609         case BINARY_PRINT_DATA_BEGIN:
1610                 printed += fprintf(fp, "\n");
1611                 break;
1612         case BINARY_PRINT_LINE_BEGIN:
1613                 printed += fprintf(fp, "%17s", !printer_data->line_no ? "BPF output:" :
1614                                                         "           ");
1615                 break;
1616         case BINARY_PRINT_ADDR:
1617                 printed += fprintf(fp, " %04x:", val);
1618                 break;
1619         case BINARY_PRINT_NUM_DATA:
1620                 printed += fprintf(fp, " %02x", val);
1621                 break;
1622         case BINARY_PRINT_NUM_PAD:
1623                 printed += fprintf(fp, "   ");
1624                 break;
1625         case BINARY_PRINT_SEP:
1626                 printed += fprintf(fp, "  ");
1627                 break;
1628         case BINARY_PRINT_CHAR_DATA:
1629                 if (printer_data->hit_nul && ch)
1630                         printer_data->is_printable = false;
1631
1632                 if (!isprint(ch)) {
1633                         printed += fprintf(fp, "%c", '.');
1634
1635                         if (!printer_data->is_printable)
1636                                 break;
1637
1638                         if (ch == '\0')
1639                                 printer_data->hit_nul = true;
1640                         else
1641                                 printer_data->is_printable = false;
1642                 } else {
1643                         printed += fprintf(fp, "%c", ch);
1644                 }
1645                 break;
1646         case BINARY_PRINT_CHAR_PAD:
1647                 printed += fprintf(fp, " ");
1648                 break;
1649         case BINARY_PRINT_LINE_END:
1650                 printed += fprintf(fp, "\n");
1651                 printer_data->line_no++;
1652                 break;
1653         case BINARY_PRINT_DATA_END:
1654         default:
1655                 break;
1656         }
1657
1658         return printed;
1659 }
1660
1661 static int perf_sample__fprintf_bpf_output(struct perf_sample *sample, FILE *fp)
1662 {
1663         unsigned int nr_bytes = sample->raw_size;
1664         struct printer_data printer_data = {0, false, true};
1665         int printed = binary__fprintf(sample->raw_data, nr_bytes, 8,
1666                                       sample__fprintf_bpf_output, &printer_data, fp);
1667
1668         if (printer_data.is_printable && printer_data.hit_nul)
1669                 printed += fprintf(fp, "%17s \"%s\"\n", "BPF string:", (char *)(sample->raw_data));
1670
1671         return printed;
1672 }
1673
1674 static int perf_sample__fprintf_spacing(int len, int spacing, FILE *fp)
1675 {
1676         if (len > 0 && len < spacing)
1677                 return fprintf(fp, "%*s", spacing - len, "");
1678
1679         return 0;
1680 }
1681
1682 static int perf_sample__fprintf_pt_spacing(int len, FILE *fp)
1683 {
1684         return perf_sample__fprintf_spacing(len, 34, fp);
1685 }
1686
1687 static int perf_sample__fprintf_synth_ptwrite(struct perf_sample *sample, FILE *fp)
1688 {
1689         struct perf_synth_intel_ptwrite *data = perf_sample__synth_ptr(sample);
1690         int len;
1691
1692         if (perf_sample__bad_synth_size(sample, *data))
1693                 return 0;
1694
1695         len = fprintf(fp, " IP: %u payload: %#" PRIx64 " ",
1696                      data->ip, le64_to_cpu(data->payload));
1697         return len + perf_sample__fprintf_pt_spacing(len, fp);
1698 }
1699
1700 static int perf_sample__fprintf_synth_mwait(struct perf_sample *sample, FILE *fp)
1701 {
1702         struct perf_synth_intel_mwait *data = perf_sample__synth_ptr(sample);
1703         int len;
1704
1705         if (perf_sample__bad_synth_size(sample, *data))
1706                 return 0;
1707
1708         len = fprintf(fp, " hints: %#x extensions: %#x ",
1709                       data->hints, data->extensions);
1710         return len + perf_sample__fprintf_pt_spacing(len, fp);
1711 }
1712
1713 static int perf_sample__fprintf_synth_pwre(struct perf_sample *sample, FILE *fp)
1714 {
1715         struct perf_synth_intel_pwre *data = perf_sample__synth_ptr(sample);
1716         int len;
1717
1718         if (perf_sample__bad_synth_size(sample, *data))
1719                 return 0;
1720
1721         len = fprintf(fp, " hw: %u cstate: %u sub-cstate: %u ",
1722                       data->hw, data->cstate, data->subcstate);
1723         return len + perf_sample__fprintf_pt_spacing(len, fp);
1724 }
1725
1726 static int perf_sample__fprintf_synth_exstop(struct perf_sample *sample, FILE *fp)
1727 {
1728         struct perf_synth_intel_exstop *data = perf_sample__synth_ptr(sample);
1729         int len;
1730
1731         if (perf_sample__bad_synth_size(sample, *data))
1732                 return 0;
1733
1734         len = fprintf(fp, " IP: %u ", data->ip);
1735         return len + perf_sample__fprintf_pt_spacing(len, fp);
1736 }
1737
1738 static int perf_sample__fprintf_synth_pwrx(struct perf_sample *sample, FILE *fp)
1739 {
1740         struct perf_synth_intel_pwrx *data = perf_sample__synth_ptr(sample);
1741         int len;
1742
1743         if (perf_sample__bad_synth_size(sample, *data))
1744                 return 0;
1745
1746         len = fprintf(fp, " deepest cstate: %u last cstate: %u wake reason: %#x ",
1747                      data->deepest_cstate, data->last_cstate,
1748                      data->wake_reason);
1749         return len + perf_sample__fprintf_pt_spacing(len, fp);
1750 }
1751
1752 static int perf_sample__fprintf_synth_cbr(struct perf_sample *sample, FILE *fp)
1753 {
1754         struct perf_synth_intel_cbr *data = perf_sample__synth_ptr(sample);
1755         unsigned int percent, freq;
1756         int len;
1757
1758         if (perf_sample__bad_synth_size(sample, *data))
1759                 return 0;
1760
1761         freq = (le32_to_cpu(data->freq) + 500) / 1000;
1762         len = fprintf(fp, " cbr: %2u freq: %4u MHz ", data->cbr, freq);
1763         if (data->max_nonturbo) {
1764                 percent = (5 + (1000 * data->cbr) / data->max_nonturbo) / 10;
1765                 len += fprintf(fp, "(%3u%%) ", percent);
1766         }
1767         return len + perf_sample__fprintf_pt_spacing(len, fp);
1768 }
1769
1770 static int perf_sample__fprintf_synth_psb(struct perf_sample *sample, FILE *fp)
1771 {
1772         struct perf_synth_intel_psb *data = perf_sample__synth_ptr(sample);
1773         int len;
1774
1775         if (perf_sample__bad_synth_size(sample, *data))
1776                 return 0;
1777
1778         len = fprintf(fp, " psb offs: %#" PRIx64, data->offset);
1779         return len + perf_sample__fprintf_pt_spacing(len, fp);
1780 }
1781
1782 static int perf_sample__fprintf_synth(struct perf_sample *sample,
1783                                       struct evsel *evsel, FILE *fp)
1784 {
1785         switch (evsel->core.attr.config) {
1786         case PERF_SYNTH_INTEL_PTWRITE:
1787                 return perf_sample__fprintf_synth_ptwrite(sample, fp);
1788         case PERF_SYNTH_INTEL_MWAIT:
1789                 return perf_sample__fprintf_synth_mwait(sample, fp);
1790         case PERF_SYNTH_INTEL_PWRE:
1791                 return perf_sample__fprintf_synth_pwre(sample, fp);
1792         case PERF_SYNTH_INTEL_EXSTOP:
1793                 return perf_sample__fprintf_synth_exstop(sample, fp);
1794         case PERF_SYNTH_INTEL_PWRX:
1795                 return perf_sample__fprintf_synth_pwrx(sample, fp);
1796         case PERF_SYNTH_INTEL_CBR:
1797                 return perf_sample__fprintf_synth_cbr(sample, fp);
1798         case PERF_SYNTH_INTEL_PSB:
1799                 return perf_sample__fprintf_synth_psb(sample, fp);
1800         default:
1801                 break;
1802         }
1803
1804         return 0;
1805 }
1806
1807 static int evlist__max_name_len(struct evlist *evlist)
1808 {
1809         struct evsel *evsel;
1810         int max = 0;
1811
1812         evlist__for_each_entry(evlist, evsel) {
1813                 int len = strlen(evsel__name(evsel));
1814
1815                 max = MAX(len, max);
1816         }
1817
1818         return max;
1819 }
1820
1821 static int data_src__fprintf(u64 data_src, FILE *fp)
1822 {
1823         struct mem_info mi = { .data_src.val = data_src };
1824         char decode[100];
1825         char out[100];
1826         static int maxlen;
1827         int len;
1828
1829         perf_script__meminfo_scnprintf(decode, 100, &mi);
1830
1831         len = scnprintf(out, 100, "%16" PRIx64 " %s", data_src, decode);
1832         if (maxlen < len)
1833                 maxlen = len;
1834
1835         return fprintf(fp, "%-*s", maxlen, out);
1836 }
1837
1838 struct metric_ctx {
1839         struct perf_sample      *sample;
1840         struct thread           *thread;
1841         struct evsel    *evsel;
1842         FILE                    *fp;
1843 };
1844
1845 static void script_print_metric(struct perf_stat_config *config __maybe_unused,
1846                                 void *ctx, const char *color,
1847                                 const char *fmt,
1848                                 const char *unit, double val)
1849 {
1850         struct metric_ctx *mctx = ctx;
1851
1852         if (!fmt)
1853                 return;
1854         perf_sample__fprintf_start(NULL, mctx->sample, mctx->thread, mctx->evsel,
1855                                    PERF_RECORD_SAMPLE, mctx->fp);
1856         fputs("\tmetric: ", mctx->fp);
1857         if (color)
1858                 color_fprintf(mctx->fp, color, fmt, val);
1859         else
1860                 printf(fmt, val);
1861         fprintf(mctx->fp, " %s\n", unit);
1862 }
1863
1864 static void script_new_line(struct perf_stat_config *config __maybe_unused,
1865                             void *ctx)
1866 {
1867         struct metric_ctx *mctx = ctx;
1868
1869         perf_sample__fprintf_start(NULL, mctx->sample, mctx->thread, mctx->evsel,
1870                                    PERF_RECORD_SAMPLE, mctx->fp);
1871         fputs("\tmetric: ", mctx->fp);
1872 }
1873
1874 static void perf_sample__fprint_metric(struct perf_script *script,
1875                                        struct thread *thread,
1876                                        struct evsel *evsel,
1877                                        struct perf_sample *sample,
1878                                        FILE *fp)
1879 {
1880         struct perf_stat_output_ctx ctx = {
1881                 .print_metric = script_print_metric,
1882                 .new_line = script_new_line,
1883                 .ctx = &(struct metric_ctx) {
1884                                 .sample = sample,
1885                                 .thread = thread,
1886                                 .evsel  = evsel,
1887                                 .fp     = fp,
1888                          },
1889                 .force_header = false,
1890         };
1891         struct evsel *ev2;
1892         u64 val;
1893
1894         if (!evsel->stats)
1895                 evlist__alloc_stats(script->session->evlist, false);
1896         if (evsel_script(evsel->leader)->gnum++ == 0)
1897                 perf_stat__reset_shadow_stats();
1898         val = sample->period * evsel->scale;
1899         perf_stat__update_shadow_stats(evsel,
1900                                        val,
1901                                        sample->cpu,
1902                                        &rt_stat);
1903         evsel_script(evsel)->val = val;
1904         if (evsel_script(evsel->leader)->gnum == evsel->leader->core.nr_members) {
1905                 for_each_group_member (ev2, evsel->leader) {
1906                         perf_stat__print_shadow_stats(&stat_config, ev2,
1907                                                       evsel_script(ev2)->val,
1908                                                       sample->cpu,
1909                                                       &ctx,
1910                                                       NULL,
1911                                                       &rt_stat);
1912                 }
1913                 evsel_script(evsel->leader)->gnum = 0;
1914         }
1915 }
1916
1917 static bool show_event(struct perf_sample *sample,
1918                        struct evsel *evsel,
1919                        struct thread *thread,
1920                        struct addr_location *al)
1921 {
1922         int depth = thread_stack__depth(thread, sample->cpu);
1923
1924         if (!symbol_conf.graph_function)
1925                 return true;
1926
1927         if (thread->filter) {
1928                 if (depth <= thread->filter_entry_depth) {
1929                         thread->filter = false;
1930                         return false;
1931                 }
1932                 return true;
1933         } else {
1934                 const char *s = symbol_conf.graph_function;
1935                 u64 ip;
1936                 const char *name = resolve_branch_sym(sample, evsel, thread, al,
1937                                 &ip);
1938                 unsigned nlen;
1939
1940                 if (!name)
1941                         return false;
1942                 nlen = strlen(name);
1943                 while (*s) {
1944                         unsigned len = strcspn(s, ",");
1945                         if (nlen == len && !strncmp(name, s, len)) {
1946                                 thread->filter = true;
1947                                 thread->filter_entry_depth = depth;
1948                                 return true;
1949                         }
1950                         s += len;
1951                         if (*s == ',')
1952                                 s++;
1953                 }
1954                 return false;
1955         }
1956 }
1957
1958 static void process_event(struct perf_script *script,
1959                           struct perf_sample *sample, struct evsel *evsel,
1960                           struct addr_location *al,
1961                           struct machine *machine)
1962 {
1963         struct thread *thread = al->thread;
1964         struct perf_event_attr *attr = &evsel->core.attr;
1965         unsigned int type = output_type(attr->type);
1966         struct evsel_script *es = evsel->priv;
1967         FILE *fp = es->fp;
1968         char str[PAGE_SIZE_NAME_LEN];
1969
1970         if (output[type].fields == 0)
1971                 return;
1972
1973         if (!show_event(sample, evsel, thread, al))
1974                 return;
1975
1976         if (evswitch__discard(&script->evswitch, evsel))
1977                 return;
1978
1979         ++es->samples;
1980
1981         perf_sample__fprintf_start(script, sample, thread, evsel,
1982                                    PERF_RECORD_SAMPLE, fp);
1983
1984         if (PRINT_FIELD(PERIOD))
1985                 fprintf(fp, "%10" PRIu64 " ", sample->period);
1986
1987         if (PRINT_FIELD(EVNAME)) {
1988                 const char *evname = evsel__name(evsel);
1989
1990                 if (!script->name_width)
1991                         script->name_width = evlist__max_name_len(script->session->evlist);
1992
1993                 fprintf(fp, "%*s: ", script->name_width, evname ?: "[unknown]");
1994         }
1995
1996         if (print_flags)
1997                 perf_sample__fprintf_flags(sample->flags, fp);
1998
1999         if (is_bts_event(attr)) {
2000                 perf_sample__fprintf_bts(sample, evsel, thread, al, machine, fp);
2001                 return;
2002         }
2003
2004         if (PRINT_FIELD(TRACE) && sample->raw_data) {
2005                 event_format__fprintf(evsel->tp_format, sample->cpu,
2006                                       sample->raw_data, sample->raw_size, fp);
2007         }
2008
2009         if (attr->type == PERF_TYPE_SYNTH && PRINT_FIELD(SYNTH))
2010                 perf_sample__fprintf_synth(sample, evsel, fp);
2011
2012         if (PRINT_FIELD(ADDR))
2013                 perf_sample__fprintf_addr(sample, thread, attr, fp);
2014
2015         if (PRINT_FIELD(DATA_SRC))
2016                 data_src__fprintf(sample->data_src, fp);
2017
2018         if (PRINT_FIELD(WEIGHT))
2019                 fprintf(fp, "%16" PRIu64, sample->weight);
2020
2021         if (PRINT_FIELD(IP)) {
2022                 struct callchain_cursor *cursor = NULL;
2023
2024                 if (script->stitch_lbr)
2025                         al->thread->lbr_stitch_enable = true;
2026
2027                 if (symbol_conf.use_callchain && sample->callchain &&
2028                     thread__resolve_callchain(al->thread, &callchain_cursor, evsel,
2029                                               sample, NULL, NULL, scripting_max_stack) == 0)
2030                         cursor = &callchain_cursor;
2031
2032                 fputc(cursor ? '\n' : ' ', fp);
2033                 sample__fprintf_sym(sample, al, 0, output[type].print_ip_opts, cursor,
2034                                     symbol_conf.bt_stop_list, fp);
2035         }
2036
2037         if (PRINT_FIELD(IREGS))
2038                 perf_sample__fprintf_iregs(sample, attr, fp);
2039
2040         if (PRINT_FIELD(UREGS))
2041                 perf_sample__fprintf_uregs(sample, attr, fp);
2042
2043         if (PRINT_FIELD(BRSTACK))
2044                 perf_sample__fprintf_brstack(sample, thread, attr, fp);
2045         else if (PRINT_FIELD(BRSTACKSYM))
2046                 perf_sample__fprintf_brstacksym(sample, thread, attr, fp);
2047         else if (PRINT_FIELD(BRSTACKOFF))
2048                 perf_sample__fprintf_brstackoff(sample, thread, attr, fp);
2049
2050         if (evsel__is_bpf_output(evsel) && PRINT_FIELD(BPF_OUTPUT))
2051                 perf_sample__fprintf_bpf_output(sample, fp);
2052         perf_sample__fprintf_insn(sample, attr, thread, machine, fp);
2053
2054         if (PRINT_FIELD(PHYS_ADDR))
2055                 fprintf(fp, "%16" PRIx64, sample->phys_addr);
2056
2057         if (PRINT_FIELD(DATA_PAGE_SIZE))
2058                 fprintf(fp, " %s", get_page_size_name(sample->data_page_size, str));
2059
2060         if (PRINT_FIELD(CODE_PAGE_SIZE))
2061                 fprintf(fp, " %s", get_page_size_name(sample->code_page_size, str));
2062
2063         perf_sample__fprintf_ipc(sample, attr, fp);
2064
2065         fprintf(fp, "\n");
2066
2067         if (PRINT_FIELD(SRCCODE)) {
2068                 if (map__fprintf_srccode(al->map, al->addr, stdout,
2069                                          &thread->srccode_state))
2070                         printf("\n");
2071         }
2072
2073         if (PRINT_FIELD(METRIC))
2074                 perf_sample__fprint_metric(script, thread, evsel, sample, fp);
2075
2076         if (verbose)
2077                 fflush(fp);
2078 }
2079
2080 static struct scripting_ops     *scripting_ops;
2081
2082 static void __process_stat(struct evsel *counter, u64 tstamp)
2083 {
2084         int nthreads = perf_thread_map__nr(counter->core.threads);
2085         int ncpus = evsel__nr_cpus(counter);
2086         int cpu, thread;
2087         static int header_printed;
2088
2089         if (counter->core.system_wide)
2090                 nthreads = 1;
2091
2092         if (!header_printed) {
2093                 printf("%3s %8s %15s %15s %15s %15s %s\n",
2094                        "CPU", "THREAD", "VAL", "ENA", "RUN", "TIME", "EVENT");
2095                 header_printed = 1;
2096         }
2097
2098         for (thread = 0; thread < nthreads; thread++) {
2099                 for (cpu = 0; cpu < ncpus; cpu++) {
2100                         struct perf_counts_values *counts;
2101
2102                         counts = perf_counts(counter->counts, cpu, thread);
2103
2104                         printf("%3d %8d %15" PRIu64 " %15" PRIu64 " %15" PRIu64 " %15" PRIu64 " %s\n",
2105                                 counter->core.cpus->map[cpu],
2106                                 perf_thread_map__pid(counter->core.threads, thread),
2107                                 counts->val,
2108                                 counts->ena,
2109                                 counts->run,
2110                                 tstamp,
2111                                 evsel__name(counter));
2112                 }
2113         }
2114 }
2115
2116 static void process_stat(struct evsel *counter, u64 tstamp)
2117 {
2118         if (scripting_ops && scripting_ops->process_stat)
2119                 scripting_ops->process_stat(&stat_config, counter, tstamp);
2120         else
2121                 __process_stat(counter, tstamp);
2122 }
2123
2124 static void process_stat_interval(u64 tstamp)
2125 {
2126         if (scripting_ops && scripting_ops->process_stat_interval)
2127                 scripting_ops->process_stat_interval(tstamp);
2128 }
2129
2130 static void setup_scripting(void)
2131 {
2132         setup_perl_scripting();
2133         setup_python_scripting();
2134 }
2135
2136 static int flush_scripting(void)
2137 {
2138         return scripting_ops ? scripting_ops->flush_script() : 0;
2139 }
2140
2141 static int cleanup_scripting(void)
2142 {
2143         pr_debug("\nperf script stopped\n");
2144
2145         return scripting_ops ? scripting_ops->stop_script() : 0;
2146 }
2147
2148 static bool filter_cpu(struct perf_sample *sample)
2149 {
2150         if (cpu_list && sample->cpu != (u32)-1)
2151                 return !test_bit(sample->cpu, cpu_bitmap);
2152         return false;
2153 }
2154
2155 static int process_sample_event(struct perf_tool *tool,
2156                                 union perf_event *event,
2157                                 struct perf_sample *sample,
2158                                 struct evsel *evsel,
2159                                 struct machine *machine)
2160 {
2161         struct perf_script *scr = container_of(tool, struct perf_script, tool);
2162         struct addr_location al;
2163
2164         if (perf_time__ranges_skip_sample(scr->ptime_range, scr->range_num,
2165                                           sample->time)) {
2166                 return 0;
2167         }
2168
2169         if (debug_mode) {
2170                 if (sample->time < last_timestamp) {
2171                         pr_err("Samples misordered, previous: %" PRIu64
2172                                 " this: %" PRIu64 "\n", last_timestamp,
2173                                 sample->time);
2174                         nr_unordered++;
2175                 }
2176                 last_timestamp = sample->time;
2177                 return 0;
2178         }
2179
2180         if (machine__resolve(machine, &al, sample) < 0) {
2181                 pr_err("problem processing %d event, skipping it.\n",
2182                        event->header.type);
2183                 return -1;
2184         }
2185
2186         if (al.filtered)
2187                 goto out_put;
2188
2189         if (filter_cpu(sample))
2190                 goto out_put;
2191
2192         if (scripting_ops)
2193                 scripting_ops->process_event(event, sample, evsel, &al);
2194         else
2195                 process_event(scr, sample, evsel, &al, machine);
2196
2197 out_put:
2198         addr_location__put(&al);
2199         return 0;
2200 }
2201
2202 static int process_attr(struct perf_tool *tool, union perf_event *event,
2203                         struct evlist **pevlist)
2204 {
2205         struct perf_script *scr = container_of(tool, struct perf_script, tool);
2206         struct evlist *evlist;
2207         struct evsel *evsel, *pos;
2208         u64 sample_type;
2209         int err;
2210         static struct evsel_script *es;
2211
2212         err = perf_event__process_attr(tool, event, pevlist);
2213         if (err)
2214                 return err;
2215
2216         evlist = *pevlist;
2217         evsel = evlist__last(*pevlist);
2218
2219         if (!evsel->priv) {
2220                 if (scr->per_event_dump) {
2221                         evsel->priv = evsel_script__new(evsel, scr->session->data);
2222                 } else {
2223                         es = zalloc(sizeof(*es));
2224                         if (!es)
2225                                 return -ENOMEM;
2226                         es->fp = stdout;
2227                         evsel->priv = es;
2228                 }
2229         }
2230
2231         if (evsel->core.attr.type >= PERF_TYPE_MAX &&
2232             evsel->core.attr.type != PERF_TYPE_SYNTH)
2233                 return 0;
2234
2235         evlist__for_each_entry(evlist, pos) {
2236                 if (pos->core.attr.type == evsel->core.attr.type && pos != evsel)
2237                         return 0;
2238         }
2239
2240         if (evsel->core.attr.sample_type) {
2241                 err = evsel__check_attr(evsel, scr->session);
2242                 if (err)
2243                         return err;
2244         }
2245
2246         /*
2247          * Check if we need to enable callchains based
2248          * on events sample_type.
2249          */
2250         sample_type = evlist__combined_sample_type(evlist);
2251         callchain_param_setup(sample_type);
2252
2253         /* Enable fields for callchain entries */
2254         if (symbol_conf.use_callchain &&
2255             (sample_type & PERF_SAMPLE_CALLCHAIN ||
2256              sample_type & PERF_SAMPLE_BRANCH_STACK ||
2257              (sample_type & PERF_SAMPLE_REGS_USER &&
2258               sample_type & PERF_SAMPLE_STACK_USER))) {
2259                 int type = output_type(evsel->core.attr.type);
2260
2261                 if (!(output[type].user_unset_fields & PERF_OUTPUT_IP))
2262                         output[type].fields |= PERF_OUTPUT_IP;
2263                 if (!(output[type].user_unset_fields & PERF_OUTPUT_SYM))
2264                         output[type].fields |= PERF_OUTPUT_SYM;
2265         }
2266         set_print_ip_opts(&evsel->core.attr);
2267         return 0;
2268 }
2269
2270 static int print_event_with_time(struct perf_tool *tool,
2271                                  union perf_event *event,
2272                                  struct perf_sample *sample,
2273                                  struct machine *machine,
2274                                  pid_t pid, pid_t tid, u64 timestamp)
2275 {
2276         struct perf_script *script = container_of(tool, struct perf_script, tool);
2277         struct perf_session *session = script->session;
2278         struct evsel *evsel = evlist__id2evsel(session->evlist, sample->id);
2279         struct thread *thread = NULL;
2280
2281         if (evsel && !evsel->core.attr.sample_id_all) {
2282                 sample->cpu = 0;
2283                 sample->time = timestamp;
2284                 sample->pid = pid;
2285                 sample->tid = tid;
2286         }
2287
2288         if (filter_cpu(sample))
2289                 return 0;
2290
2291         if (tid != -1)
2292                 thread = machine__findnew_thread(machine, pid, tid);
2293
2294         if (evsel) {
2295                 perf_sample__fprintf_start(script, sample, thread, evsel,
2296                                            event->header.type, stdout);
2297         }
2298
2299         perf_event__fprintf(event, machine, stdout);
2300
2301         thread__put(thread);
2302
2303         return 0;
2304 }
2305
2306 static int print_event(struct perf_tool *tool, union perf_event *event,
2307                        struct perf_sample *sample, struct machine *machine,
2308                        pid_t pid, pid_t tid)
2309 {
2310         return print_event_with_time(tool, event, sample, machine, pid, tid, 0);
2311 }
2312
2313 static int process_comm_event(struct perf_tool *tool,
2314                               union perf_event *event,
2315                               struct perf_sample *sample,
2316                               struct machine *machine)
2317 {
2318         if (perf_event__process_comm(tool, event, sample, machine) < 0)
2319                 return -1;
2320
2321         return print_event(tool, event, sample, machine, event->comm.pid,
2322                            event->comm.tid);
2323 }
2324
2325 static int process_namespaces_event(struct perf_tool *tool,
2326                                     union perf_event *event,
2327                                     struct perf_sample *sample,
2328                                     struct machine *machine)
2329 {
2330         if (perf_event__process_namespaces(tool, event, sample, machine) < 0)
2331                 return -1;
2332
2333         return print_event(tool, event, sample, machine, event->namespaces.pid,
2334                            event->namespaces.tid);
2335 }
2336
2337 static int process_cgroup_event(struct perf_tool *tool,
2338                                 union perf_event *event,
2339                                 struct perf_sample *sample,
2340                                 struct machine *machine)
2341 {
2342         if (perf_event__process_cgroup(tool, event, sample, machine) < 0)
2343                 return -1;
2344
2345         return print_event(tool, event, sample, machine, sample->pid,
2346                             sample->tid);
2347 }
2348
2349 static int process_fork_event(struct perf_tool *tool,
2350                               union perf_event *event,
2351                               struct perf_sample *sample,
2352                               struct machine *machine)
2353 {
2354         if (perf_event__process_fork(tool, event, sample, machine) < 0)
2355                 return -1;
2356
2357         return print_event_with_time(tool, event, sample, machine,
2358                                      event->fork.pid, event->fork.tid,
2359                                      event->fork.time);
2360 }
2361 static int process_exit_event(struct perf_tool *tool,
2362                               union perf_event *event,
2363                               struct perf_sample *sample,
2364                               struct machine *machine)
2365 {
2366         /* Print before 'exit' deletes anything */
2367         if (print_event_with_time(tool, event, sample, machine, event->fork.pid,
2368                                   event->fork.tid, event->fork.time))
2369                 return -1;
2370
2371         return perf_event__process_exit(tool, event, sample, machine);
2372 }
2373
2374 static int process_mmap_event(struct perf_tool *tool,
2375                               union perf_event *event,
2376                               struct perf_sample *sample,
2377                               struct machine *machine)
2378 {
2379         if (perf_event__process_mmap(tool, event, sample, machine) < 0)
2380                 return -1;
2381
2382         return print_event(tool, event, sample, machine, event->mmap.pid,
2383                            event->mmap.tid);
2384 }
2385
2386 static int process_mmap2_event(struct perf_tool *tool,
2387                               union perf_event *event,
2388                               struct perf_sample *sample,
2389                               struct machine *machine)
2390 {
2391         if (perf_event__process_mmap2(tool, event, sample, machine) < 0)
2392                 return -1;
2393
2394         return print_event(tool, event, sample, machine, event->mmap2.pid,
2395                            event->mmap2.tid);
2396 }
2397
2398 static int process_switch_event(struct perf_tool *tool,
2399                                 union perf_event *event,
2400                                 struct perf_sample *sample,
2401                                 struct machine *machine)
2402 {
2403         struct perf_script *script = container_of(tool, struct perf_script, tool);
2404
2405         if (perf_event__process_switch(tool, event, sample, machine) < 0)
2406                 return -1;
2407
2408         if (scripting_ops && scripting_ops->process_switch)
2409                 scripting_ops->process_switch(event, sample, machine);
2410
2411         if (!script->show_switch_events)
2412                 return 0;
2413
2414         return print_event(tool, event, sample, machine, sample->pid,
2415                            sample->tid);
2416 }
2417
2418 static int
2419 process_lost_event(struct perf_tool *tool,
2420                    union perf_event *event,
2421                    struct perf_sample *sample,
2422                    struct machine *machine)
2423 {
2424         return print_event(tool, event, sample, machine, sample->pid,
2425                            sample->tid);
2426 }
2427
2428 static int
2429 process_finished_round_event(struct perf_tool *tool __maybe_unused,
2430                              union perf_event *event,
2431                              struct ordered_events *oe __maybe_unused)
2432
2433 {
2434         perf_event__fprintf(event, NULL, stdout);
2435         return 0;
2436 }
2437
2438 static int
2439 process_bpf_events(struct perf_tool *tool __maybe_unused,
2440                    union perf_event *event,
2441                    struct perf_sample *sample,
2442                    struct machine *machine)
2443 {
2444         if (machine__process_ksymbol(machine, event, sample) < 0)
2445                 return -1;
2446
2447         return print_event(tool, event, sample, machine, sample->pid,
2448                            sample->tid);
2449 }
2450
2451 static int process_text_poke_events(struct perf_tool *tool,
2452                                     union perf_event *event,
2453                                     struct perf_sample *sample,
2454                                     struct machine *machine)
2455 {
2456         if (perf_event__process_text_poke(tool, event, sample, machine) < 0)
2457                 return -1;
2458
2459         return print_event(tool, event, sample, machine, sample->pid,
2460                            sample->tid);
2461 }
2462
2463 static void sig_handler(int sig __maybe_unused)
2464 {
2465         session_done = 1;
2466 }
2467
2468 static void perf_script__fclose_per_event_dump(struct perf_script *script)
2469 {
2470         struct evlist *evlist = script->session->evlist;
2471         struct evsel *evsel;
2472
2473         evlist__for_each_entry(evlist, evsel) {
2474                 if (!evsel->priv)
2475                         break;
2476                 evsel_script__delete(evsel->priv);
2477                 evsel->priv = NULL;
2478         }
2479 }
2480
2481 static int perf_script__fopen_per_event_dump(struct perf_script *script)
2482 {
2483         struct evsel *evsel;
2484
2485         evlist__for_each_entry(script->session->evlist, evsel) {
2486                 /*
2487                  * Already setup? I.e. we may be called twice in cases like
2488                  * Intel PT, one for the intel_pt// and dummy events, then
2489                  * for the evsels synthesized from the auxtrace info.
2490                  *
2491                  * Ses perf_script__process_auxtrace_info.
2492                  */
2493                 if (evsel->priv != NULL)
2494                         continue;
2495
2496                 evsel->priv = evsel_script__new(evsel, script->session->data);
2497                 if (evsel->priv == NULL)
2498                         goto out_err_fclose;
2499         }
2500
2501         return 0;
2502
2503 out_err_fclose:
2504         perf_script__fclose_per_event_dump(script);
2505         return -1;
2506 }
2507
2508 static int perf_script__setup_per_event_dump(struct perf_script *script)
2509 {
2510         struct evsel *evsel;
2511         static struct evsel_script es_stdout;
2512
2513         if (script->per_event_dump)
2514                 return perf_script__fopen_per_event_dump(script);
2515
2516         es_stdout.fp = stdout;
2517
2518         evlist__for_each_entry(script->session->evlist, evsel)
2519                 evsel->priv = &es_stdout;
2520
2521         return 0;
2522 }
2523
2524 static void perf_script__exit_per_event_dump_stats(struct perf_script *script)
2525 {
2526         struct evsel *evsel;
2527
2528         evlist__for_each_entry(script->session->evlist, evsel) {
2529                 struct evsel_script *es = evsel->priv;
2530
2531                 evsel_script__fprintf(es, stdout);
2532                 evsel_script__delete(es);
2533                 evsel->priv = NULL;
2534         }
2535 }
2536
2537 static int __cmd_script(struct perf_script *script)
2538 {
2539         int ret;
2540
2541         signal(SIGINT, sig_handler);
2542
2543         perf_stat__init_shadow_stats();
2544
2545         /* override event processing functions */
2546         if (script->show_task_events) {
2547                 script->tool.comm = process_comm_event;
2548                 script->tool.fork = process_fork_event;
2549                 script->tool.exit = process_exit_event;
2550         }
2551         if (script->show_mmap_events) {
2552                 script->tool.mmap = process_mmap_event;
2553                 script->tool.mmap2 = process_mmap2_event;
2554         }
2555         if (script->show_switch_events || (scripting_ops && scripting_ops->process_switch))
2556                 script->tool.context_switch = process_switch_event;
2557         if (script->show_namespace_events)
2558                 script->tool.namespaces = process_namespaces_event;
2559         if (script->show_cgroup_events)
2560                 script->tool.cgroup = process_cgroup_event;
2561         if (script->show_lost_events)
2562                 script->tool.lost = process_lost_event;
2563         if (script->show_round_events) {
2564                 script->tool.ordered_events = false;
2565                 script->tool.finished_round = process_finished_round_event;
2566         }
2567         if (script->show_bpf_events) {
2568                 script->tool.ksymbol = process_bpf_events;
2569                 script->tool.bpf     = process_bpf_events;
2570         }
2571         if (script->show_text_poke_events) {
2572                 script->tool.ksymbol   = process_bpf_events;
2573                 script->tool.text_poke = process_text_poke_events;
2574         }
2575
2576         if (perf_script__setup_per_event_dump(script)) {
2577                 pr_err("Couldn't create the per event dump files\n");
2578                 return -1;
2579         }
2580
2581         ret = perf_session__process_events(script->session);
2582
2583         if (script->per_event_dump)
2584                 perf_script__exit_per_event_dump_stats(script);
2585
2586         if (debug_mode)
2587                 pr_err("Misordered timestamps: %" PRIu64 "\n", nr_unordered);
2588
2589         return ret;
2590 }
2591
2592 struct script_spec {
2593         struct list_head        node;
2594         struct scripting_ops    *ops;
2595         char                    spec[];
2596 };
2597
2598 static LIST_HEAD(script_specs);
2599
2600 static struct script_spec *script_spec__new(const char *spec,
2601                                             struct scripting_ops *ops)
2602 {
2603         struct script_spec *s = malloc(sizeof(*s) + strlen(spec) + 1);
2604
2605         if (s != NULL) {
2606                 strcpy(s->spec, spec);
2607                 s->ops = ops;
2608         }
2609
2610         return s;
2611 }
2612
2613 static void script_spec__add(struct script_spec *s)
2614 {
2615         list_add_tail(&s->node, &script_specs);
2616 }
2617
2618 static struct script_spec *script_spec__find(const char *spec)
2619 {
2620         struct script_spec *s;
2621
2622         list_for_each_entry(s, &script_specs, node)
2623                 if (strcasecmp(s->spec, spec) == 0)
2624                         return s;
2625         return NULL;
2626 }
2627
2628 int script_spec_register(const char *spec, struct scripting_ops *ops)
2629 {
2630         struct script_spec *s;
2631
2632         s = script_spec__find(spec);
2633         if (s)
2634                 return -1;
2635
2636         s = script_spec__new(spec, ops);
2637         if (!s)
2638                 return -1;
2639         else
2640                 script_spec__add(s);
2641
2642         return 0;
2643 }
2644
2645 static struct scripting_ops *script_spec__lookup(const char *spec)
2646 {
2647         struct script_spec *s = script_spec__find(spec);
2648         if (!s)
2649                 return NULL;
2650
2651         return s->ops;
2652 }
2653
2654 static void list_available_languages(void)
2655 {
2656         struct script_spec *s;
2657
2658         fprintf(stderr, "\n");
2659         fprintf(stderr, "Scripting language extensions (used in "
2660                 "perf script -s [spec:]script.[spec]):\n\n");
2661
2662         list_for_each_entry(s, &script_specs, node)
2663                 fprintf(stderr, "  %-42s [%s]\n", s->spec, s->ops->name);
2664
2665         fprintf(stderr, "\n");
2666 }
2667
2668 static int parse_scriptname(const struct option *opt __maybe_unused,
2669                             const char *str, int unset __maybe_unused)
2670 {
2671         char spec[PATH_MAX];
2672         const char *script, *ext;
2673         int len;
2674
2675         if (strcmp(str, "lang") == 0) {
2676                 list_available_languages();
2677                 exit(0);
2678         }
2679
2680         script = strchr(str, ':');
2681         if (script) {
2682                 len = script - str;
2683                 if (len >= PATH_MAX) {
2684                         fprintf(stderr, "invalid language specifier");
2685                         return -1;
2686                 }
2687                 strncpy(spec, str, len);
2688                 spec[len] = '\0';
2689                 scripting_ops = script_spec__lookup(spec);
2690                 if (!scripting_ops) {
2691                         fprintf(stderr, "invalid language specifier");
2692                         return -1;
2693                 }
2694                 script++;
2695         } else {
2696                 script = str;
2697                 ext = strrchr(script, '.');
2698                 if (!ext) {
2699                         fprintf(stderr, "invalid script extension");
2700                         return -1;
2701                 }
2702                 scripting_ops = script_spec__lookup(++ext);
2703                 if (!scripting_ops) {
2704                         fprintf(stderr, "invalid script extension");
2705                         return -1;
2706                 }
2707         }
2708
2709         script_name = strdup(script);
2710
2711         return 0;
2712 }
2713
2714 static int parse_output_fields(const struct option *opt __maybe_unused,
2715                             const char *arg, int unset __maybe_unused)
2716 {
2717         char *tok, *strtok_saveptr = NULL;
2718         int i, imax = ARRAY_SIZE(all_output_options);
2719         int j;
2720         int rc = 0;
2721         char *str = strdup(arg);
2722         int type = -1;
2723         enum { DEFAULT, SET, ADD, REMOVE } change = DEFAULT;
2724
2725         if (!str)
2726                 return -ENOMEM;
2727
2728         /* first word can state for which event type the user is specifying
2729          * the fields. If no type exists, the specified fields apply to all
2730          * event types found in the file minus the invalid fields for a type.
2731          */
2732         tok = strchr(str, ':');
2733         if (tok) {
2734                 *tok = '\0';
2735                 tok++;
2736                 if (!strcmp(str, "hw"))
2737                         type = PERF_TYPE_HARDWARE;
2738                 else if (!strcmp(str, "sw"))
2739                         type = PERF_TYPE_SOFTWARE;
2740                 else if (!strcmp(str, "trace"))
2741                         type = PERF_TYPE_TRACEPOINT;
2742                 else if (!strcmp(str, "raw"))
2743                         type = PERF_TYPE_RAW;
2744                 else if (!strcmp(str, "break"))
2745                         type = PERF_TYPE_BREAKPOINT;
2746                 else if (!strcmp(str, "synth"))
2747                         type = OUTPUT_TYPE_SYNTH;
2748                 else {
2749                         fprintf(stderr, "Invalid event type in field string.\n");
2750                         rc = -EINVAL;
2751                         goto out;
2752                 }
2753
2754                 if (output[type].user_set)
2755                         pr_warning("Overriding previous field request for %s events.\n",
2756                                    event_type(type));
2757
2758                 /* Don't override defaults for +- */
2759                 if (strchr(tok, '+') || strchr(tok, '-'))
2760                         goto parse;
2761
2762                 output[type].fields = 0;
2763                 output[type].user_set = true;
2764                 output[type].wildcard_set = false;
2765
2766         } else {
2767                 tok = str;
2768                 if (strlen(str) == 0) {
2769                         fprintf(stderr,
2770                                 "Cannot set fields to 'none' for all event types.\n");
2771                         rc = -EINVAL;
2772                         goto out;
2773                 }
2774
2775                 /* Don't override defaults for +- */
2776                 if (strchr(str, '+') || strchr(str, '-'))
2777                         goto parse;
2778
2779                 if (output_set_by_user())
2780                         pr_warning("Overriding previous field request for all events.\n");
2781
2782                 for (j = 0; j < OUTPUT_TYPE_MAX; ++j) {
2783                         output[j].fields = 0;
2784                         output[j].user_set = true;
2785                         output[j].wildcard_set = true;
2786                 }
2787         }
2788
2789 parse:
2790         for (tok = strtok_r(tok, ",", &strtok_saveptr); tok; tok = strtok_r(NULL, ",", &strtok_saveptr)) {
2791                 if (*tok == '+') {
2792                         if (change == SET)
2793                                 goto out_badmix;
2794                         change = ADD;
2795                         tok++;
2796                 } else if (*tok == '-') {
2797                         if (change == SET)
2798                                 goto out_badmix;
2799                         change = REMOVE;
2800                         tok++;
2801                 } else {
2802                         if (change != SET && change != DEFAULT)
2803                                 goto out_badmix;
2804                         change = SET;
2805                 }
2806
2807                 for (i = 0; i < imax; ++i) {
2808                         if (strcmp(tok, all_output_options[i].str) == 0)
2809                                 break;
2810                 }
2811                 if (i == imax && strcmp(tok, "flags") == 0) {
2812                         print_flags = change != REMOVE;
2813                         continue;
2814                 }
2815                 if (i == imax) {
2816                         fprintf(stderr, "Invalid field requested.\n");
2817                         rc = -EINVAL;
2818                         goto out;
2819                 }
2820
2821                 if (type == -1) {
2822                         /* add user option to all events types for
2823                          * which it is valid
2824                          */
2825                         for (j = 0; j < OUTPUT_TYPE_MAX; ++j) {
2826                                 if (output[j].invalid_fields & all_output_options[i].field) {
2827                                         pr_warning("\'%s\' not valid for %s events. Ignoring.\n",
2828                                                    all_output_options[i].str, event_type(j));
2829                                 } else {
2830                                         if (change == REMOVE) {
2831                                                 output[j].fields &= ~all_output_options[i].field;
2832                                                 output[j].user_set_fields &= ~all_output_options[i].field;
2833                                                 output[j].user_unset_fields |= all_output_options[i].field;
2834                                         } else {
2835                                                 output[j].fields |= all_output_options[i].field;
2836                                                 output[j].user_set_fields |= all_output_options[i].field;
2837                                                 output[j].user_unset_fields &= ~all_output_options[i].field;
2838                                         }
2839                                         output[j].user_set = true;
2840                                         output[j].wildcard_set = true;
2841                                 }
2842                         }
2843                 } else {
2844                         if (output[type].invalid_fields & all_output_options[i].field) {
2845                                 fprintf(stderr, "\'%s\' not valid for %s events.\n",
2846                                          all_output_options[i].str, event_type(type));
2847
2848                                 rc = -EINVAL;
2849                                 goto out;
2850                         }
2851                         if (change == REMOVE)
2852                                 output[type].fields &= ~all_output_options[i].field;
2853                         else
2854                                 output[type].fields |= all_output_options[i].field;
2855                         output[type].user_set = true;
2856                         output[type].wildcard_set = true;
2857                 }
2858         }
2859
2860         if (type >= 0) {
2861                 if (output[type].fields == 0) {
2862                         pr_debug("No fields requested for %s type. "
2863                                  "Events will not be displayed.\n", event_type(type));
2864                 }
2865         }
2866         goto out;
2867
2868 out_badmix:
2869         fprintf(stderr, "Cannot mix +-field with overridden fields\n");
2870         rc = -EINVAL;
2871 out:
2872         free(str);
2873         return rc;
2874 }
2875
2876 #define for_each_lang(scripts_path, scripts_dir, lang_dirent)           \
2877         while ((lang_dirent = readdir(scripts_dir)) != NULL)            \
2878                 if ((lang_dirent->d_type == DT_DIR ||                   \
2879                      (lang_dirent->d_type == DT_UNKNOWN &&              \
2880                       is_directory(scripts_path, lang_dirent))) &&      \
2881                     (strcmp(lang_dirent->d_name, ".")) &&               \
2882                     (strcmp(lang_dirent->d_name, "..")))
2883
2884 #define for_each_script(lang_path, lang_dir, script_dirent)             \
2885         while ((script_dirent = readdir(lang_dir)) != NULL)             \
2886                 if (script_dirent->d_type != DT_DIR &&                  \
2887                     (script_dirent->d_type != DT_UNKNOWN ||             \
2888                      !is_directory(lang_path, script_dirent)))
2889
2890
2891 #define RECORD_SUFFIX                   "-record"
2892 #define REPORT_SUFFIX                   "-report"
2893
2894 struct script_desc {
2895         struct list_head        node;
2896         char                    *name;
2897         char                    *half_liner;
2898         char                    *args;
2899 };
2900
2901 static LIST_HEAD(script_descs);
2902
2903 static struct script_desc *script_desc__new(const char *name)
2904 {
2905         struct script_desc *s = zalloc(sizeof(*s));
2906
2907         if (s != NULL && name)
2908                 s->name = strdup(name);
2909
2910         return s;
2911 }
2912
2913 static void script_desc__delete(struct script_desc *s)
2914 {
2915         zfree(&s->name);
2916         zfree(&s->half_liner);
2917         zfree(&s->args);
2918         free(s);
2919 }
2920
2921 static void script_desc__add(struct script_desc *s)
2922 {
2923         list_add_tail(&s->node, &script_descs);
2924 }
2925
2926 static struct script_desc *script_desc__find(const char *name)
2927 {
2928         struct script_desc *s;
2929
2930         list_for_each_entry(s, &script_descs, node)
2931                 if (strcasecmp(s->name, name) == 0)
2932                         return s;
2933         return NULL;
2934 }
2935
2936 static struct script_desc *script_desc__findnew(const char *name)
2937 {
2938         struct script_desc *s = script_desc__find(name);
2939
2940         if (s)
2941                 return s;
2942
2943         s = script_desc__new(name);
2944         if (!s)
2945                 return NULL;
2946
2947         script_desc__add(s);
2948
2949         return s;
2950 }
2951
2952 static const char *ends_with(const char *str, const char *suffix)
2953 {
2954         size_t suffix_len = strlen(suffix);
2955         const char *p = str;
2956
2957         if (strlen(str) > suffix_len) {
2958                 p = str + strlen(str) - suffix_len;
2959                 if (!strncmp(p, suffix, suffix_len))
2960                         return p;
2961         }
2962
2963         return NULL;
2964 }
2965
2966 static int read_script_info(struct script_desc *desc, const char *filename)
2967 {
2968         char line[BUFSIZ], *p;
2969         FILE *fp;
2970
2971         fp = fopen(filename, "r");
2972         if (!fp)
2973                 return -1;
2974
2975         while (fgets(line, sizeof(line), fp)) {
2976                 p = skip_spaces(line);
2977                 if (strlen(p) == 0)
2978                         continue;
2979                 if (*p != '#')
2980                         continue;
2981                 p++;
2982                 if (strlen(p) && *p == '!')
2983                         continue;
2984
2985                 p = skip_spaces(p);
2986                 if (strlen(p) && p[strlen(p) - 1] == '\n')
2987                         p[strlen(p) - 1] = '\0';
2988
2989                 if (!strncmp(p, "description:", strlen("description:"))) {
2990                         p += strlen("description:");
2991                         desc->half_liner = strdup(skip_spaces(p));
2992                         continue;
2993                 }
2994
2995                 if (!strncmp(p, "args:", strlen("args:"))) {
2996                         p += strlen("args:");
2997                         desc->args = strdup(skip_spaces(p));
2998                         continue;
2999                 }
3000         }
3001
3002         fclose(fp);
3003
3004         return 0;
3005 }
3006
3007 static char *get_script_root(struct dirent *script_dirent, const char *suffix)
3008 {
3009         char *script_root, *str;
3010
3011         script_root = strdup(script_dirent->d_name);
3012         if (!script_root)
3013                 return NULL;
3014
3015         str = (char *)ends_with(script_root, suffix);
3016         if (!str) {
3017                 free(script_root);
3018                 return NULL;
3019         }
3020
3021         *str = '\0';
3022         return script_root;
3023 }
3024
3025 static int list_available_scripts(const struct option *opt __maybe_unused,
3026                                   const char *s __maybe_unused,
3027                                   int unset __maybe_unused)
3028 {
3029         struct dirent *script_dirent, *lang_dirent;
3030         char scripts_path[MAXPATHLEN];
3031         DIR *scripts_dir, *lang_dir;
3032         char script_path[MAXPATHLEN];
3033         char lang_path[MAXPATHLEN];
3034         struct script_desc *desc;
3035         char first_half[BUFSIZ];
3036         char *script_root;
3037
3038         snprintf(scripts_path, MAXPATHLEN, "%s/scripts", get_argv_exec_path());
3039
3040         scripts_dir = opendir(scripts_path);
3041         if (!scripts_dir) {
3042                 fprintf(stdout,
3043                         "open(%s) failed.\n"
3044                         "Check \"PERF_EXEC_PATH\" env to set scripts dir.\n",
3045                         scripts_path);
3046                 exit(-1);
3047         }
3048
3049         for_each_lang(scripts_path, scripts_dir, lang_dirent) {
3050                 scnprintf(lang_path, MAXPATHLEN, "%s/%s/bin", scripts_path,
3051                           lang_dirent->d_name);
3052                 lang_dir = opendir(lang_path);
3053                 if (!lang_dir)
3054                         continue;
3055
3056                 for_each_script(lang_path, lang_dir, script_dirent) {
3057                         script_root = get_script_root(script_dirent, REPORT_SUFFIX);
3058                         if (script_root) {
3059                                 desc = script_desc__findnew(script_root);
3060                                 scnprintf(script_path, MAXPATHLEN, "%s/%s",
3061                                           lang_path, script_dirent->d_name);
3062                                 read_script_info(desc, script_path);
3063                                 free(script_root);
3064                         }
3065                 }
3066         }
3067
3068         fprintf(stdout, "List of available trace scripts:\n");
3069         list_for_each_entry(desc, &script_descs, node) {
3070                 sprintf(first_half, "%s %s", desc->name,
3071                         desc->args ? desc->args : "");
3072                 fprintf(stdout, "  %-36s %s\n", first_half,
3073                         desc->half_liner ? desc->half_liner : "");
3074         }
3075
3076         exit(0);
3077 }
3078
3079 /*
3080  * Some scripts specify the required events in their "xxx-record" file,
3081  * this function will check if the events in perf.data match those
3082  * mentioned in the "xxx-record".
3083  *
3084  * Fixme: All existing "xxx-record" are all in good formats "-e event ",
3085  * which is covered well now. And new parsing code should be added to
3086  * cover the future complex formats like event groups etc.
3087  */
3088 static int check_ev_match(char *dir_name, char *scriptname,
3089                         struct perf_session *session)
3090 {
3091         char filename[MAXPATHLEN], evname[128];
3092         char line[BUFSIZ], *p;
3093         struct evsel *pos;
3094         int match, len;
3095         FILE *fp;
3096
3097         scnprintf(filename, MAXPATHLEN, "%s/bin/%s-record", dir_name, scriptname);
3098
3099         fp = fopen(filename, "r");
3100         if (!fp)
3101                 return -1;
3102
3103         while (fgets(line, sizeof(line), fp)) {
3104                 p = skip_spaces(line);
3105                 if (*p == '#')
3106                         continue;
3107
3108                 while (strlen(p)) {
3109                         p = strstr(p, "-e");
3110                         if (!p)
3111                                 break;
3112
3113                         p += 2;
3114                         p = skip_spaces(p);
3115                         len = strcspn(p, " \t");
3116                         if (!len)
3117                                 break;
3118
3119                         snprintf(evname, len + 1, "%s", p);
3120
3121                         match = 0;
3122                         evlist__for_each_entry(session->evlist, pos) {
3123                                 if (!strcmp(evsel__name(pos), evname)) {
3124                                         match = 1;
3125                                         break;
3126                                 }
3127                         }
3128
3129                         if (!match) {
3130                                 fclose(fp);
3131                                 return -1;
3132                         }
3133                 }
3134         }
3135
3136         fclose(fp);
3137         return 0;
3138 }
3139
3140 /*
3141  * Return -1 if none is found, otherwise the actual scripts number.
3142  *
3143  * Currently the only user of this function is the script browser, which
3144  * will list all statically runnable scripts, select one, execute it and
3145  * show the output in a perf browser.
3146  */
3147 int find_scripts(char **scripts_array, char **scripts_path_array, int num,
3148                  int pathlen)
3149 {
3150         struct dirent *script_dirent, *lang_dirent;
3151         char scripts_path[MAXPATHLEN], lang_path[MAXPATHLEN];
3152         DIR *scripts_dir, *lang_dir;
3153         struct perf_session *session;
3154         struct perf_data data = {
3155                 .path = input_name,
3156                 .mode = PERF_DATA_MODE_READ,
3157         };
3158         char *temp;
3159         int i = 0;
3160
3161         session = perf_session__new(&data, false, NULL);
3162         if (IS_ERR(session))
3163                 return PTR_ERR(session);
3164
3165         snprintf(scripts_path, MAXPATHLEN, "%s/scripts", get_argv_exec_path());
3166
3167         scripts_dir = opendir(scripts_path);
3168         if (!scripts_dir) {
3169                 perf_session__delete(session);
3170                 return -1;
3171         }
3172
3173         for_each_lang(scripts_path, scripts_dir, lang_dirent) {
3174                 scnprintf(lang_path, MAXPATHLEN, "%s/%s", scripts_path,
3175                           lang_dirent->d_name);
3176 #ifndef HAVE_LIBPERL_SUPPORT
3177                 if (strstr(lang_path, "perl"))
3178                         continue;
3179 #endif
3180 #ifndef HAVE_LIBPYTHON_SUPPORT
3181                 if (strstr(lang_path, "python"))
3182                         continue;
3183 #endif
3184
3185                 lang_dir = opendir(lang_path);
3186                 if (!lang_dir)
3187                         continue;
3188
3189                 for_each_script(lang_path, lang_dir, script_dirent) {
3190                         /* Skip those real time scripts: xxxtop.p[yl] */
3191                         if (strstr(script_dirent->d_name, "top."))
3192                                 continue;
3193                         if (i >= num)
3194                                 break;
3195                         snprintf(scripts_path_array[i], pathlen, "%s/%s",
3196                                 lang_path,
3197                                 script_dirent->d_name);
3198                         temp = strchr(script_dirent->d_name, '.');
3199                         snprintf(scripts_array[i],
3200                                 (temp - script_dirent->d_name) + 1,
3201                                 "%s", script_dirent->d_name);
3202
3203                         if (check_ev_match(lang_path,
3204                                         scripts_array[i], session))
3205                                 continue;
3206
3207                         i++;
3208                 }
3209                 closedir(lang_dir);
3210         }
3211
3212         closedir(scripts_dir);
3213         perf_session__delete(session);
3214         return i;
3215 }
3216
3217 static char *get_script_path(const char *script_root, const char *suffix)
3218 {
3219         struct dirent *script_dirent, *lang_dirent;
3220         char scripts_path[MAXPATHLEN];
3221         char script_path[MAXPATHLEN];
3222         DIR *scripts_dir, *lang_dir;
3223         char lang_path[MAXPATHLEN];
3224         char *__script_root;
3225
3226         snprintf(scripts_path, MAXPATHLEN, "%s/scripts", get_argv_exec_path());
3227
3228         scripts_dir = opendir(scripts_path);
3229         if (!scripts_dir)
3230                 return NULL;
3231
3232         for_each_lang(scripts_path, scripts_dir, lang_dirent) {
3233                 scnprintf(lang_path, MAXPATHLEN, "%s/%s/bin", scripts_path,
3234                           lang_dirent->d_name);
3235                 lang_dir = opendir(lang_path);
3236                 if (!lang_dir)
3237                         continue;
3238
3239                 for_each_script(lang_path, lang_dir, script_dirent) {
3240                         __script_root = get_script_root(script_dirent, suffix);
3241                         if (__script_root && !strcmp(script_root, __script_root)) {
3242                                 free(__script_root);
3243                                 closedir(scripts_dir);
3244                                 scnprintf(script_path, MAXPATHLEN, "%s/%s",
3245                                           lang_path, script_dirent->d_name);
3246                                 closedir(lang_dir);
3247                                 return strdup(script_path);
3248                         }
3249                         free(__script_root);
3250                 }
3251                 closedir(lang_dir);
3252         }
3253         closedir(scripts_dir);
3254
3255         return NULL;
3256 }
3257
3258 static bool is_top_script(const char *script_path)
3259 {
3260         return ends_with(script_path, "top") != NULL;
3261 }
3262
3263 static int has_required_arg(char *script_path)
3264 {
3265         struct script_desc *desc;
3266         int n_args = 0;
3267         char *p;
3268
3269         desc = script_desc__new(NULL);
3270
3271         if (read_script_info(desc, script_path))
3272                 goto out;
3273
3274         if (!desc->args)
3275                 goto out;
3276
3277         for (p = desc->args; *p; p++)
3278                 if (*p == '<')
3279                         n_args++;
3280 out:
3281         script_desc__delete(desc);
3282
3283         return n_args;
3284 }
3285
3286 static int have_cmd(int argc, const char **argv)
3287 {
3288         char **__argv = malloc(sizeof(const char *) * argc);
3289
3290         if (!__argv) {
3291                 pr_err("malloc failed\n");
3292                 return -1;
3293         }
3294
3295         memcpy(__argv, argv, sizeof(const char *) * argc);
3296         argc = parse_options(argc, (const char **)__argv, record_options,
3297                              NULL, PARSE_OPT_STOP_AT_NON_OPTION);
3298         free(__argv);
3299
3300         system_wide = (argc == 0);
3301
3302         return 0;
3303 }
3304
3305 static void script__setup_sample_type(struct perf_script *script)
3306 {
3307         struct perf_session *session = script->session;
3308         u64 sample_type = evlist__combined_sample_type(session->evlist);
3309
3310         if (symbol_conf.use_callchain || symbol_conf.cumulate_callchain) {
3311                 if ((sample_type & PERF_SAMPLE_REGS_USER) &&
3312                     (sample_type & PERF_SAMPLE_STACK_USER)) {
3313                         callchain_param.record_mode = CALLCHAIN_DWARF;
3314                         dwarf_callchain_users = true;
3315                 } else if (sample_type & PERF_SAMPLE_BRANCH_STACK)
3316                         callchain_param.record_mode = CALLCHAIN_LBR;
3317                 else
3318                         callchain_param.record_mode = CALLCHAIN_FP;
3319         }
3320
3321         if (script->stitch_lbr && (callchain_param.record_mode != CALLCHAIN_LBR)) {
3322                 pr_warning("Can't find LBR callchain. Switch off --stitch-lbr.\n"
3323                            "Please apply --call-graph lbr when recording.\n");
3324                 script->stitch_lbr = false;
3325         }
3326 }
3327
3328 static int process_stat_round_event(struct perf_session *session,
3329                                     union perf_event *event)
3330 {
3331         struct perf_record_stat_round *round = &event->stat_round;
3332         struct evsel *counter;
3333
3334         evlist__for_each_entry(session->evlist, counter) {
3335                 perf_stat_process_counter(&stat_config, counter);
3336                 process_stat(counter, round->time);
3337         }
3338
3339         process_stat_interval(round->time);
3340         return 0;
3341 }
3342
3343 static int process_stat_config_event(struct perf_session *session __maybe_unused,
3344                                      union perf_event *event)
3345 {
3346         perf_event__read_stat_config(&stat_config, &event->stat_config);
3347         return 0;
3348 }
3349
3350 static int set_maps(struct perf_script *script)
3351 {
3352         struct evlist *evlist = script->session->evlist;
3353
3354         if (!script->cpus || !script->threads)
3355                 return 0;
3356
3357         if (WARN_ONCE(script->allocated, "stats double allocation\n"))
3358                 return -EINVAL;
3359
3360         perf_evlist__set_maps(&evlist->core, script->cpus, script->threads);
3361
3362         if (evlist__alloc_stats(evlist, true))
3363                 return -ENOMEM;
3364
3365         script->allocated = true;
3366         return 0;
3367 }
3368
3369 static
3370 int process_thread_map_event(struct perf_session *session,
3371                              union perf_event *event)
3372 {
3373         struct perf_tool *tool = session->tool;
3374         struct perf_script *script = container_of(tool, struct perf_script, tool);
3375
3376         if (script->threads) {
3377                 pr_warning("Extra thread map event, ignoring.\n");
3378                 return 0;
3379         }
3380
3381         script->threads = thread_map__new_event(&event->thread_map);
3382         if (!script->threads)
3383                 return -ENOMEM;
3384
3385         return set_maps(script);
3386 }
3387
3388 static
3389 int process_cpu_map_event(struct perf_session *session,
3390                           union perf_event *event)
3391 {
3392         struct perf_tool *tool = session->tool;
3393         struct perf_script *script = container_of(tool, struct perf_script, tool);
3394
3395         if (script->cpus) {
3396                 pr_warning("Extra cpu map event, ignoring.\n");
3397                 return 0;
3398         }
3399
3400         script->cpus = cpu_map__new_data(&event->cpu_map.data);
3401         if (!script->cpus)
3402                 return -ENOMEM;
3403
3404         return set_maps(script);
3405 }
3406
3407 static int process_feature_event(struct perf_session *session,
3408                                  union perf_event *event)
3409 {
3410         if (event->feat.feat_id < HEADER_LAST_FEATURE)
3411                 return perf_event__process_feature(session, event);
3412         return 0;
3413 }
3414
3415 #ifdef HAVE_AUXTRACE_SUPPORT
3416 static int perf_script__process_auxtrace_info(struct perf_session *session,
3417                                               union perf_event *event)
3418 {
3419         struct perf_tool *tool = session->tool;
3420
3421         int ret = perf_event__process_auxtrace_info(session, event);
3422
3423         if (ret == 0) {
3424                 struct perf_script *script = container_of(tool, struct perf_script, tool);
3425
3426                 ret = perf_script__setup_per_event_dump(script);
3427         }
3428
3429         return ret;
3430 }
3431 #else
3432 #define perf_script__process_auxtrace_info 0
3433 #endif
3434
3435 static int parse_insn_trace(const struct option *opt __maybe_unused,
3436                             const char *str __maybe_unused,
3437                             int unset __maybe_unused)
3438 {
3439         parse_output_fields(NULL, "+insn,-event,-period", 0);
3440         itrace_parse_synth_opts(opt, "i0ns", 0);
3441         symbol_conf.nanosecs = true;
3442         return 0;
3443 }
3444
3445 static int parse_xed(const struct option *opt __maybe_unused,
3446                      const char *str __maybe_unused,
3447                      int unset __maybe_unused)
3448 {
3449         if (isatty(1))
3450                 force_pager("xed -F insn: -A -64 | less");
3451         else
3452                 force_pager("xed -F insn: -A -64");
3453         return 0;
3454 }
3455
3456 static int parse_call_trace(const struct option *opt __maybe_unused,
3457                             const char *str __maybe_unused,
3458                             int unset __maybe_unused)
3459 {
3460         parse_output_fields(NULL, "-ip,-addr,-event,-period,+callindent", 0);
3461         itrace_parse_synth_opts(opt, "cewp", 0);
3462         symbol_conf.nanosecs = true;
3463         symbol_conf.pad_output_len_dso = 50;
3464         return 0;
3465 }
3466
3467 static int parse_callret_trace(const struct option *opt __maybe_unused,
3468                             const char *str __maybe_unused,
3469                             int unset __maybe_unused)
3470 {
3471         parse_output_fields(NULL, "-ip,-addr,-event,-period,+callindent,+flags", 0);
3472         itrace_parse_synth_opts(opt, "crewp", 0);
3473         symbol_conf.nanosecs = true;
3474         return 0;
3475 }
3476
3477 int cmd_script(int argc, const char **argv)
3478 {
3479         bool show_full_info = false;
3480         bool header = false;
3481         bool header_only = false;
3482         bool script_started = false;
3483         char *rec_script_path = NULL;
3484         char *rep_script_path = NULL;
3485         struct perf_session *session;
3486         struct itrace_synth_opts itrace_synth_opts = {
3487                 .set = false,
3488                 .default_no_sample = true,
3489         };
3490         struct utsname uts;
3491         char *script_path = NULL;
3492         const char **__argv;
3493         int i, j, err = 0;
3494         struct perf_script script = {
3495                 .tool = {
3496                         .sample          = process_sample_event,
3497                         .mmap            = perf_event__process_mmap,
3498                         .mmap2           = perf_event__process_mmap2,
3499                         .comm            = perf_event__process_comm,
3500                         .namespaces      = perf_event__process_namespaces,
3501                         .cgroup          = perf_event__process_cgroup,
3502                         .exit            = perf_event__process_exit,
3503                         .fork            = perf_event__process_fork,
3504                         .attr            = process_attr,
3505                         .event_update   = perf_event__process_event_update,
3506                         .tracing_data    = perf_event__process_tracing_data,
3507                         .feature         = process_feature_event,
3508                         .build_id        = perf_event__process_build_id,
3509                         .id_index        = perf_event__process_id_index,
3510                         .auxtrace_info   = perf_script__process_auxtrace_info,
3511                         .auxtrace        = perf_event__process_auxtrace,
3512                         .auxtrace_error  = perf_event__process_auxtrace_error,
3513                         .stat            = perf_event__process_stat_event,
3514                         .stat_round      = process_stat_round_event,
3515                         .stat_config     = process_stat_config_event,
3516                         .thread_map      = process_thread_map_event,
3517                         .cpu_map         = process_cpu_map_event,
3518                         .ordered_events  = true,
3519                         .ordering_requires_timestamps = true,
3520                 },
3521         };
3522         struct perf_data data = {
3523                 .mode = PERF_DATA_MODE_READ,
3524         };
3525         const struct option options[] = {
3526         OPT_BOOLEAN('D', "dump-raw-trace", &dump_trace,
3527                     "dump raw trace in ASCII"),
3528         OPT_INCR('v', "verbose", &verbose,
3529                  "be more verbose (show symbol address, etc)"),
3530         OPT_BOOLEAN('L', "Latency", &latency_format,
3531                     "show latency attributes (irqs/preemption disabled, etc)"),
3532         OPT_CALLBACK_NOOPT('l', "list", NULL, NULL, "list available scripts",
3533                            list_available_scripts),
3534         OPT_CALLBACK('s', "script", NULL, "name",
3535                      "script file name (lang:script name, script name, or *)",
3536                      parse_scriptname),
3537         OPT_STRING('g', "gen-script", &generate_script_lang, "lang",
3538                    "generate perf-script.xx script in specified language"),
3539         OPT_STRING('i', "input", &input_name, "file", "input file name"),
3540         OPT_BOOLEAN('d', "debug-mode", &debug_mode,
3541                    "do various checks like samples ordering and lost events"),
3542         OPT_BOOLEAN(0, "header", &header, "Show data header."),
3543         OPT_BOOLEAN(0, "header-only", &header_only, "Show only data header."),
3544         OPT_STRING('k', "vmlinux", &symbol_conf.vmlinux_name,
3545                    "file", "vmlinux pathname"),
3546         OPT_STRING(0, "kallsyms", &symbol_conf.kallsyms_name,
3547                    "file", "kallsyms pathname"),
3548         OPT_BOOLEAN('G', "hide-call-graph", &no_callchain,
3549                     "When printing symbols do not display call chain"),
3550         OPT_CALLBACK(0, "symfs", NULL, "directory",
3551                      "Look for files with symbols relative to this directory",
3552                      symbol__config_symfs),
3553         OPT_CALLBACK('F', "fields", NULL, "str",
3554                      "comma separated output fields prepend with 'type:'. "
3555                      "+field to add and -field to remove."
3556                      "Valid types: hw,sw,trace,raw,synth. "
3557                      "Fields: comm,tid,pid,time,cpu,event,trace,ip,sym,dso,"
3558                      "addr,symoff,srcline,period,iregs,uregs,brstack,"
3559                      "brstacksym,flags,bpf-output,brstackinsn,brstackoff,"
3560                      "callindent,insn,insnlen,synth,phys_addr,metric,misc,ipc,tod,"
3561                      "data_page_size,code_page_size",
3562                      parse_output_fields),
3563         OPT_BOOLEAN('a', "all-cpus", &system_wide,
3564                     "system-wide collection from all CPUs"),
3565         OPT_STRING(0, "dsos", &symbol_conf.dso_list_str, "dso[,dso...]",
3566                    "only consider symbols in these DSOs"),
3567         OPT_STRING('S', "symbols", &symbol_conf.sym_list_str, "symbol[,symbol...]",
3568                    "only consider these symbols"),
3569         OPT_INTEGER(0, "addr-range", &symbol_conf.addr_range,
3570                     "Use with -S to list traced records within address range"),
3571         OPT_CALLBACK_OPTARG(0, "insn-trace", &itrace_synth_opts, NULL, NULL,
3572                         "Decode instructions from itrace", parse_insn_trace),
3573         OPT_CALLBACK_OPTARG(0, "xed", NULL, NULL, NULL,
3574                         "Run xed disassembler on output", parse_xed),
3575         OPT_CALLBACK_OPTARG(0, "call-trace", &itrace_synth_opts, NULL, NULL,
3576                         "Decode calls from from itrace", parse_call_trace),
3577         OPT_CALLBACK_OPTARG(0, "call-ret-trace", &itrace_synth_opts, NULL, NULL,
3578                         "Decode calls and returns from itrace", parse_callret_trace),
3579         OPT_STRING(0, "graph-function", &symbol_conf.graph_function, "symbol[,symbol...]",
3580                         "Only print symbols and callees with --call-trace/--call-ret-trace"),
3581         OPT_STRING(0, "stop-bt", &symbol_conf.bt_stop_list_str, "symbol[,symbol...]",
3582                    "Stop display of callgraph at these symbols"),
3583         OPT_STRING('C', "cpu", &cpu_list, "cpu", "list of cpus to profile"),
3584         OPT_STRING('c', "comms", &symbol_conf.comm_list_str, "comm[,comm...]",
3585                    "only display events for these comms"),
3586         OPT_STRING(0, "pid", &symbol_conf.pid_list_str, "pid[,pid...]",
3587                    "only consider symbols in these pids"),
3588         OPT_STRING(0, "tid", &symbol_conf.tid_list_str, "tid[,tid...]",
3589                    "only consider symbols in these tids"),
3590         OPT_UINTEGER(0, "max-stack", &scripting_max_stack,
3591                      "Set the maximum stack depth when parsing the callchain, "
3592                      "anything beyond the specified depth will be ignored. "
3593                      "Default: kernel.perf_event_max_stack or " __stringify(PERF_MAX_STACK_DEPTH)),
3594         OPT_BOOLEAN(0, "reltime", &reltime, "Show time stamps relative to start"),
3595         OPT_BOOLEAN(0, "deltatime", &deltatime, "Show time stamps relative to previous event"),
3596         OPT_BOOLEAN('I', "show-info", &show_full_info,
3597                     "display extended information from perf.data file"),
3598         OPT_BOOLEAN('\0', "show-kernel-path", &symbol_conf.show_kernel_path,
3599                     "Show the path of [kernel.kallsyms]"),
3600         OPT_BOOLEAN('\0', "show-task-events", &script.show_task_events,
3601                     "Show the fork/comm/exit events"),
3602         OPT_BOOLEAN('\0', "show-mmap-events", &script.show_mmap_events,
3603                     "Show the mmap events"),
3604         OPT_BOOLEAN('\0', "show-switch-events", &script.show_switch_events,
3605                     "Show context switch events (if recorded)"),
3606         OPT_BOOLEAN('\0', "show-namespace-events", &script.show_namespace_events,
3607                     "Show namespace events (if recorded)"),
3608         OPT_BOOLEAN('\0', "show-cgroup-events", &script.show_cgroup_events,
3609                     "Show cgroup events (if recorded)"),
3610         OPT_BOOLEAN('\0', "show-lost-events", &script.show_lost_events,
3611                     "Show lost events (if recorded)"),
3612         OPT_BOOLEAN('\0', "show-round-events", &script.show_round_events,
3613                     "Show round events (if recorded)"),
3614         OPT_BOOLEAN('\0', "show-bpf-events", &script.show_bpf_events,
3615                     "Show bpf related events (if recorded)"),
3616         OPT_BOOLEAN('\0', "show-text-poke-events", &script.show_text_poke_events,
3617                     "Show text poke related events (if recorded)"),
3618         OPT_BOOLEAN('\0', "per-event-dump", &script.per_event_dump,
3619                     "Dump trace output to files named by the monitored events"),
3620         OPT_BOOLEAN('f', "force", &symbol_conf.force, "don't complain, do it"),
3621         OPT_INTEGER(0, "max-blocks", &max_blocks,
3622                     "Maximum number of code blocks to dump with brstackinsn"),
3623         OPT_BOOLEAN(0, "ns", &symbol_conf.nanosecs,
3624                     "Use 9 decimal places when displaying time"),
3625         OPT_CALLBACK_OPTARG(0, "itrace", &itrace_synth_opts, NULL, "opts",
3626                             "Instruction Tracing options\n" ITRACE_HELP,
3627                             itrace_parse_synth_opts),
3628         OPT_BOOLEAN(0, "full-source-path", &srcline_full_filename,
3629                         "Show full source file name path for source lines"),
3630         OPT_BOOLEAN(0, "demangle", &symbol_conf.demangle,
3631                         "Enable symbol demangling"),
3632         OPT_BOOLEAN(0, "demangle-kernel", &symbol_conf.demangle_kernel,
3633                         "Enable kernel symbol demangling"),
3634         OPT_STRING(0, "time", &script.time_str, "str",
3635                    "Time span of interest (start,stop)"),
3636         OPT_BOOLEAN(0, "inline", &symbol_conf.inline_name,
3637                     "Show inline function"),
3638         OPT_STRING(0, "guestmount", &symbol_conf.guestmount, "directory",
3639                    "guest mount directory under which every guest os"
3640                    " instance has a subdir"),
3641         OPT_STRING(0, "guestvmlinux", &symbol_conf.default_guest_vmlinux_name,
3642                    "file", "file saving guest os vmlinux"),
3643         OPT_STRING(0, "guestkallsyms", &symbol_conf.default_guest_kallsyms,
3644                    "file", "file saving guest os /proc/kallsyms"),
3645         OPT_STRING(0, "guestmodules", &symbol_conf.default_guest_modules,
3646                    "file", "file saving guest os /proc/modules"),
3647         OPT_BOOLEAN('\0', "stitch-lbr", &script.stitch_lbr,
3648                     "Enable LBR callgraph stitching approach"),
3649         OPTS_EVSWITCH(&script.evswitch),
3650         OPT_END()
3651         };
3652         const char * const script_subcommands[] = { "record", "report", NULL };
3653         const char *script_usage[] = {
3654                 "perf script [<options>]",
3655                 "perf script [<options>] record <script> [<record-options>] <command>",
3656                 "perf script [<options>] report <script> [script-args]",
3657                 "perf script [<options>] <script> [<record-options>] <command>",
3658                 "perf script [<options>] <top-script> [script-args]",
3659                 NULL
3660         };
3661
3662         perf_set_singlethreaded();
3663
3664         setup_scripting();
3665
3666         argc = parse_options_subcommand(argc, argv, options, script_subcommands, script_usage,
3667                              PARSE_OPT_STOP_AT_NON_OPTION);
3668
3669         if (symbol_conf.guestmount ||
3670             symbol_conf.default_guest_vmlinux_name ||
3671             symbol_conf.default_guest_kallsyms ||
3672             symbol_conf.default_guest_modules) {
3673                 /*
3674                  * Enable guest sample processing.
3675                  */
3676                 perf_guest = true;
3677         }
3678
3679         data.path  = input_name;
3680         data.force = symbol_conf.force;
3681
3682         if (argc > 1 && !strncmp(argv[0], "rec", strlen("rec"))) {
3683                 rec_script_path = get_script_path(argv[1], RECORD_SUFFIX);
3684                 if (!rec_script_path)
3685                         return cmd_record(argc, argv);
3686         }
3687
3688         if (argc > 1 && !strncmp(argv[0], "rep", strlen("rep"))) {
3689                 rep_script_path = get_script_path(argv[1], REPORT_SUFFIX);
3690                 if (!rep_script_path) {
3691                         fprintf(stderr,
3692                                 "Please specify a valid report script"
3693                                 "(see 'perf script -l' for listing)\n");
3694                         return -1;
3695                 }
3696         }
3697
3698         if (reltime && deltatime) {
3699                 fprintf(stderr,
3700                         "reltime and deltatime - the two don't get along well. "
3701                         "Please limit to --reltime or --deltatime.\n");
3702                 return -1;
3703         }
3704
3705         if ((itrace_synth_opts.callchain || itrace_synth_opts.add_callchain) &&
3706             itrace_synth_opts.callchain_sz > scripting_max_stack)
3707                 scripting_max_stack = itrace_synth_opts.callchain_sz;
3708
3709         /* make sure PERF_EXEC_PATH is set for scripts */
3710         set_argv_exec_path(get_argv_exec_path());
3711
3712         if (argc && !script_name && !rec_script_path && !rep_script_path) {
3713                 int live_pipe[2];
3714                 int rep_args;
3715                 pid_t pid;
3716
3717                 rec_script_path = get_script_path(argv[0], RECORD_SUFFIX);
3718                 rep_script_path = get_script_path(argv[0], REPORT_SUFFIX);
3719
3720                 if (!rec_script_path && !rep_script_path) {
3721                         usage_with_options_msg(script_usage, options,
3722                                 "Couldn't find script `%s'\n\n See perf"
3723                                 " script -l for available scripts.\n", argv[0]);
3724                 }
3725
3726                 if (is_top_script(argv[0])) {
3727                         rep_args = argc - 1;
3728                 } else {
3729                         int rec_args;
3730
3731                         rep_args = has_required_arg(rep_script_path);
3732                         rec_args = (argc - 1) - rep_args;
3733                         if (rec_args < 0) {
3734                                 usage_with_options_msg(script_usage, options,
3735                                         "`%s' script requires options."
3736                                         "\n\n See perf script -l for available "
3737                                         "scripts and options.\n", argv[0]);
3738                         }
3739                 }
3740
3741                 if (pipe(live_pipe) < 0) {
3742                         perror("failed to create pipe");
3743                         return -1;
3744                 }
3745
3746                 pid = fork();
3747                 if (pid < 0) {
3748                         perror("failed to fork");
3749                         return -1;
3750                 }
3751
3752                 if (!pid) {
3753                         j = 0;
3754
3755                         dup2(live_pipe[1], 1);
3756                         close(live_pipe[0]);
3757
3758                         if (is_top_script(argv[0])) {
3759                                 system_wide = true;
3760                         } else if (!system_wide) {
3761                                 if (have_cmd(argc - rep_args, &argv[rep_args]) != 0) {
3762                                         err = -1;
3763                                         goto out;
3764                                 }
3765                         }
3766
3767                         __argv = malloc((argc + 6) * sizeof(const char *));
3768                         if (!__argv) {
3769                                 pr_err("malloc failed\n");
3770                                 err = -ENOMEM;
3771                                 goto out;
3772                         }
3773
3774                         __argv[j++] = "/bin/sh";
3775                         __argv[j++] = rec_script_path;
3776                         if (system_wide)
3777                                 __argv[j++] = "-a";
3778                         __argv[j++] = "-q";
3779                         __argv[j++] = "-o";
3780                         __argv[j++] = "-";
3781                         for (i = rep_args + 1; i < argc; i++)
3782                                 __argv[j++] = argv[i];
3783                         __argv[j++] = NULL;
3784
3785                         execvp("/bin/sh", (char **)__argv);
3786                         free(__argv);
3787                         exit(-1);
3788                 }
3789
3790                 dup2(live_pipe[0], 0);
3791                 close(live_pipe[1]);
3792
3793                 __argv = malloc((argc + 4) * sizeof(const char *));
3794                 if (!__argv) {
3795                         pr_err("malloc failed\n");
3796                         err = -ENOMEM;
3797                         goto out;
3798                 }
3799
3800                 j = 0;
3801                 __argv[j++] = "/bin/sh";
3802                 __argv[j++] = rep_script_path;
3803                 for (i = 1; i < rep_args + 1; i++)
3804                         __argv[j++] = argv[i];
3805                 __argv[j++] = "-i";
3806                 __argv[j++] = "-";
3807                 __argv[j++] = NULL;
3808
3809                 execvp("/bin/sh", (char **)__argv);
3810                 free(__argv);
3811                 exit(-1);
3812         }
3813
3814         if (rec_script_path)
3815                 script_path = rec_script_path;
3816         if (rep_script_path)
3817                 script_path = rep_script_path;
3818
3819         if (script_path) {
3820                 j = 0;
3821
3822                 if (!rec_script_path)
3823                         system_wide = false;
3824                 else if (!system_wide) {
3825                         if (have_cmd(argc - 1, &argv[1]) != 0) {
3826                                 err = -1;
3827                                 goto out;
3828                         }
3829                 }
3830
3831                 __argv = malloc((argc + 2) * sizeof(const char *));
3832                 if (!__argv) {
3833                         pr_err("malloc failed\n");
3834                         err = -ENOMEM;
3835                         goto out;
3836                 }
3837
3838                 __argv[j++] = "/bin/sh";
3839                 __argv[j++] = script_path;
3840                 if (system_wide)
3841                         __argv[j++] = "-a";
3842                 for (i = 2; i < argc; i++)
3843                         __argv[j++] = argv[i];
3844                 __argv[j++] = NULL;
3845
3846                 execvp("/bin/sh", (char **)__argv);
3847                 free(__argv);
3848                 exit(-1);
3849         }
3850
3851         if (!script_name) {
3852                 setup_pager();
3853                 use_browser = 0;
3854         }
3855
3856         session = perf_session__new(&data, false, &script.tool);
3857         if (IS_ERR(session))
3858                 return PTR_ERR(session);
3859
3860         if (header || header_only) {
3861                 script.tool.show_feat_hdr = SHOW_FEAT_HEADER;
3862                 perf_session__fprintf_info(session, stdout, show_full_info);
3863                 if (header_only)
3864                         goto out_delete;
3865         }
3866         if (show_full_info)
3867                 script.tool.show_feat_hdr = SHOW_FEAT_HEADER_FULL_INFO;
3868
3869         if (symbol__init(&session->header.env) < 0)
3870                 goto out_delete;
3871
3872         uname(&uts);
3873         if (data.is_pipe ||  /* assume pipe_mode indicates native_arch */
3874             !strcmp(uts.machine, session->header.env.arch) ||
3875             (!strcmp(uts.machine, "x86_64") &&
3876              !strcmp(session->header.env.arch, "i386")))
3877                 native_arch = true;
3878
3879         script.session = session;
3880         script__setup_sample_type(&script);
3881
3882         if ((output[PERF_TYPE_HARDWARE].fields & PERF_OUTPUT_CALLINDENT) ||
3883             symbol_conf.graph_function)
3884                 itrace_synth_opts.thread_stack = true;
3885
3886         session->itrace_synth_opts = &itrace_synth_opts;
3887
3888         if (cpu_list) {
3889                 err = perf_session__cpu_bitmap(session, cpu_list, cpu_bitmap);
3890                 if (err < 0)
3891                         goto out_delete;
3892                 itrace_synth_opts.cpu_bitmap = cpu_bitmap;
3893         }
3894
3895         if (!no_callchain)
3896                 symbol_conf.use_callchain = true;
3897         else
3898                 symbol_conf.use_callchain = false;
3899
3900         if (session->tevent.pevent &&
3901             tep_set_function_resolver(session->tevent.pevent,
3902                                       machine__resolve_kernel_addr,
3903                                       &session->machines.host) < 0) {
3904                 pr_err("%s: failed to set libtraceevent function resolver\n", __func__);
3905                 err = -1;
3906                 goto out_delete;
3907         }
3908
3909         if (generate_script_lang) {
3910                 struct stat perf_stat;
3911                 int input;
3912
3913                 if (output_set_by_user()) {
3914                         fprintf(stderr,
3915                                 "custom fields not supported for generated scripts");
3916                         err = -EINVAL;
3917                         goto out_delete;
3918                 }
3919
3920                 input = open(data.path, O_RDONLY);      /* input_name */
3921                 if (input < 0) {
3922                         err = -errno;
3923                         perror("failed to open file");
3924                         goto out_delete;
3925                 }
3926
3927                 err = fstat(input, &perf_stat);
3928                 if (err < 0) {
3929                         perror("failed to stat file");
3930                         goto out_delete;
3931                 }
3932
3933                 if (!perf_stat.st_size) {
3934                         fprintf(stderr, "zero-sized file, nothing to do!\n");
3935                         goto out_delete;
3936                 }
3937
3938                 scripting_ops = script_spec__lookup(generate_script_lang);
3939                 if (!scripting_ops) {
3940                         fprintf(stderr, "invalid language specifier");
3941                         err = -ENOENT;
3942                         goto out_delete;
3943                 }
3944
3945                 err = scripting_ops->generate_script(session->tevent.pevent,
3946                                                      "perf-script");
3947                 goto out_delete;
3948         }
3949
3950         if (script_name) {
3951                 err = scripting_ops->start_script(script_name, argc, argv);
3952                 if (err)
3953                         goto out_delete;
3954                 pr_debug("perf script started with script %s\n\n", script_name);
3955                 script_started = true;
3956         }
3957
3958
3959         err = perf_session__check_output_opt(session);
3960         if (err < 0)
3961                 goto out_delete;
3962
3963         if (script.time_str) {
3964                 err = perf_time__parse_for_ranges_reltime(script.time_str, session,
3965                                                   &script.ptime_range,
3966                                                   &script.range_size,
3967                                                   &script.range_num,
3968                                                   reltime);
3969                 if (err < 0)
3970                         goto out_delete;
3971
3972                 itrace_synth_opts__set_time_range(&itrace_synth_opts,
3973                                                   script.ptime_range,
3974                                                   script.range_num);
3975         }
3976
3977         err = evswitch__init(&script.evswitch, session->evlist, stderr);
3978         if (err)
3979                 goto out_delete;
3980
3981         if (zstd_init(&(session->zstd_data), 0) < 0)
3982                 pr_warning("Decompression initialization failed. Reported data may be incomplete.\n");
3983
3984         err = __cmd_script(&script);
3985
3986         flush_scripting();
3987
3988 out_delete:
3989         if (script.ptime_range) {
3990                 itrace_synth_opts__clear_time_range(&itrace_synth_opts);
3991                 zfree(&script.ptime_range);
3992         }
3993
3994         evlist__free_stats(session->evlist);
3995         perf_session__delete(session);
3996
3997         if (script_started)
3998                 cleanup_scripting();
3999 out:
4000         return err;
4001 }