1/*
2 * builtin-trace.c
3 *
4 * Builtin 'trace' command:
5 *
6 * Display a continuously updated trace of any workload, CPU, specific PID,
7 * system wide, etc.  Default format is loosely strace like, but any other
8 * event may be specified using --event.
9 *
10 * Copyright (C) 2012, 2013, 2014, 2015 Red Hat Inc, Arnaldo Carvalho de Melo <acme@redhat.com>
11 *
12 * Initially based on the 'trace' prototype by Thomas Gleixner:
13 *
14 * http://lwn.net/Articles/415728/ ("Announcing a new utility: 'trace'")
15 */
16
17#include "util/record.h"
18#include <traceevent/event-parse.h>
19#include <api/fs/tracing_path.h>
20#include <bpf/bpf.h>
21#include "util/bpf_map.h"
22#include "util/rlimit.h"
23#include "builtin.h"
24#include "util/cgroup.h"
25#include "util/color.h"
26#include "util/config.h"
27#include "util/debug.h"
28#include "util/dso.h"
29#include "util/env.h"
30#include "util/event.h"
31#include "util/evsel.h"
32#include "util/evsel_fprintf.h"
33#include "util/synthetic-events.h"
34#include "util/evlist.h"
35#include "util/evswitch.h"
36#include "util/mmap.h"
37#include <subcmd/pager.h>
38#include <subcmd/exec-cmd.h>
39#include "util/machine.h"
40#include "util/map.h"
41#include "util/symbol.h"
42#include "util/path.h"
43#include "util/session.h"
44#include "util/thread.h"
45#include <subcmd/parse-options.h>
46#include "util/strlist.h"
47#include "util/intlist.h"
48#include "util/thread_map.h"
49#include "util/stat.h"
50#include "util/tool.h"
51#include "util/util.h"
52#include "trace/beauty/beauty.h"
53#include "trace-event.h"
54#include "util/parse-events.h"
55#include "util/bpf-loader.h"
56#include "callchain.h"
57#include "print_binary.h"
58#include "string2.h"
59#include "syscalltbl.h"
60#include "rb_resort.h"
61#include "../perf.h"
62
63#include <errno.h>
64#include <inttypes.h>
65#include <poll.h>
66#include <signal.h>
67#include <stdlib.h>
68#include <string.h>
69#include <linux/err.h>
70#include <linux/filter.h>
71#include <linux/kernel.h>
72#include <linux/random.h>
73#include <linux/stringify.h>
74#include <linux/time64.h>
75#include <linux/zalloc.h>
76#include <fcntl.h>
77#include <sys/sysmacros.h>
78
79#include <linux/ctype.h>
80#include <perf/mmap.h>
81
82#ifndef O_CLOEXEC
83# define O_CLOEXEC		02000000
84#endif
85
86#ifndef F_LINUX_SPECIFIC_BASE
87# define F_LINUX_SPECIFIC_BASE	1024
88#endif
89
90#define RAW_SYSCALL_ARGS_NUM	6
91
92/*
93 * strtoul: Go from a string to a value, i.e. for msr: MSR_FS_BASE to 0xc0000100
94 */
95struct syscall_arg_fmt {
96	size_t	   (*scnprintf)(char *bf, size_t size, struct syscall_arg *arg);
97	bool	   (*strtoul)(char *bf, size_t size, struct syscall_arg *arg, u64 *val);
98	unsigned long (*mask_val)(struct syscall_arg *arg, unsigned long val);
99	void	   *parm;
100	const char *name;
101	u16	   nr_entries; // for arrays
102	bool	   show_zero;
103};
104
105struct syscall_fmt {
106	const char *name;
107	const char *alias;
108	struct {
109		const char *sys_enter,
110			   *sys_exit;
111	}	   bpf_prog_name;
112	struct syscall_arg_fmt arg[RAW_SYSCALL_ARGS_NUM];
113	u8	   nr_args;
114	bool	   errpid;
115	bool	   timeout;
116	bool	   hexret;
117};
118
119struct trace {
120	struct perf_tool	tool;
121	struct syscalltbl	*sctbl;
122	struct {
123		struct syscall  *table;
124		struct bpf_map  *map;
125		struct { // per syscall BPF_MAP_TYPE_PROG_ARRAY
126			struct bpf_map  *sys_enter,
127					*sys_exit;
128		}		prog_array;
129		struct {
130			struct evsel *sys_enter,
131					  *sys_exit,
132					  *augmented;
133		}		events;
134		struct bpf_program *unaugmented_prog;
135	} syscalls;
136	struct {
137		struct bpf_map *map;
138	} dump;
139	struct record_opts	opts;
140	struct evlist	*evlist;
141	struct machine		*host;
142	struct thread		*current;
143	struct bpf_object	*bpf_obj;
144	struct cgroup		*cgroup;
145	u64			base_time;
146	FILE			*output;
147	unsigned long		nr_events;
148	unsigned long		nr_events_printed;
149	unsigned long		max_events;
150	struct evswitch		evswitch;
151	struct strlist		*ev_qualifier;
152	struct {
153		size_t		nr;
154		int		*entries;
155	}			ev_qualifier_ids;
156	struct {
157		size_t		nr;
158		pid_t		*entries;
159		struct bpf_map  *map;
160	}			filter_pids;
161	double			duration_filter;
162	double			runtime_ms;
163	struct {
164		u64		vfs_getname,
165				proc_getname;
166	} stats;
167	unsigned int		max_stack;
168	unsigned int		min_stack;
169	int			raw_augmented_syscalls_args_size;
170	bool			raw_augmented_syscalls;
171	bool			fd_path_disabled;
172	bool			sort_events;
173	bool			not_ev_qualifier;
174	bool			live;
175	bool			full_time;
176	bool			sched;
177	bool			multiple_threads;
178	bool			summary;
179	bool			summary_only;
180	bool			errno_summary;
181	bool			failure_only;
182	bool			show_comm;
183	bool			print_sample;
184	bool			show_tool_stats;
185	bool			trace_syscalls;
186	bool			libtraceevent_print;
187	bool			kernel_syscallchains;
188	s16			args_alignment;
189	bool			show_tstamp;
190	bool			show_duration;
191	bool			show_zeros;
192	bool			show_arg_names;
193	bool			show_string_prefix;
194	bool			force;
195	bool			vfs_getname;
196	int			trace_pgfaults;
197	char			*perfconfig_events;
198	struct {
199		struct ordered_events	data;
200		u64			last;
201	} oe;
202};
203
204struct tp_field {
205	int offset;
206	union {
207		u64 (*integer)(struct tp_field *field, struct perf_sample *sample);
208		void *(*pointer)(struct tp_field *field, struct perf_sample *sample);
209	};
210};
211
212#define TP_UINT_FIELD(bits) \
213static u64 tp_field__u##bits(struct tp_field *field, struct perf_sample *sample) \
214{ \
215	u##bits value; \
216	memcpy(&value, sample->raw_data + field->offset, sizeof(value)); \
217	return value;  \
218}
219
220TP_UINT_FIELD(8);
221TP_UINT_FIELD(16);
222TP_UINT_FIELD(32);
223TP_UINT_FIELD(64);
224
225#define TP_UINT_FIELD__SWAPPED(bits) \
226static u64 tp_field__swapped_u##bits(struct tp_field *field, struct perf_sample *sample) \
227{ \
228	u##bits value; \
229	memcpy(&value, sample->raw_data + field->offset, sizeof(value)); \
230	return bswap_##bits(value);\
231}
232
233TP_UINT_FIELD__SWAPPED(16);
234TP_UINT_FIELD__SWAPPED(32);
235TP_UINT_FIELD__SWAPPED(64);
236
237static int __tp_field__init_uint(struct tp_field *field, int size, int offset, bool needs_swap)
238{
239	field->offset = offset;
240
241	switch (size) {
242	case 1:
243		field->integer = tp_field__u8;
244		break;
245	case 2:
246		field->integer = needs_swap ? tp_field__swapped_u16 : tp_field__u16;
247		break;
248	case 4:
249		field->integer = needs_swap ? tp_field__swapped_u32 : tp_field__u32;
250		break;
251	case 8:
252		field->integer = needs_swap ? tp_field__swapped_u64 : tp_field__u64;
253		break;
254	default:
255		return -1;
256	}
257
258	return 0;
259}
260
261static int tp_field__init_uint(struct tp_field *field, struct tep_format_field *format_field, bool needs_swap)
262{
263	return __tp_field__init_uint(field, format_field->size, format_field->offset, needs_swap);
264}
265
266static void *tp_field__ptr(struct tp_field *field, struct perf_sample *sample)
267{
268	return sample->raw_data + field->offset;
269}
270
271static int __tp_field__init_ptr(struct tp_field *field, int offset)
272{
273	field->offset = offset;
274	field->pointer = tp_field__ptr;
275	return 0;
276}
277
278static int tp_field__init_ptr(struct tp_field *field, struct tep_format_field *format_field)
279{
280	return __tp_field__init_ptr(field, format_field->offset);
281}
282
283struct syscall_tp {
284	struct tp_field id;
285	union {
286		struct tp_field args, ret;
287	};
288};
289
290/*
291 * The evsel->priv as used by 'perf trace'
292 * sc:	for raw_syscalls:sys_{enter,exit} and syscalls:sys_{enter,exit}_SYSCALLNAME
293 * fmt: for all the other tracepoints
294 */
295struct evsel_trace {
296	struct syscall_tp	sc;
297	struct syscall_arg_fmt  *fmt;
298};
299
300static struct evsel_trace *evsel_trace__new(void)
301{
302	return zalloc(sizeof(struct evsel_trace));
303}
304
305static void evsel_trace__delete(struct evsel_trace *et)
306{
307	if (et == NULL)
308		return;
309
310	zfree(&et->fmt);
311	free(et);
312}
313
314/*
315 * Used with raw_syscalls:sys_{enter,exit} and with the
316 * syscalls:sys_{enter,exit}_SYSCALL tracepoints
317 */
318static inline struct syscall_tp *__evsel__syscall_tp(struct evsel *evsel)
319{
320	struct evsel_trace *et = evsel->priv;
321
322	return &et->sc;
323}
324
325static struct syscall_tp *evsel__syscall_tp(struct evsel *evsel)
326{
327	if (evsel->priv == NULL) {
328		evsel->priv = evsel_trace__new();
329		if (evsel->priv == NULL)
330			return NULL;
331	}
332
333	return __evsel__syscall_tp(evsel);
334}
335
336/*
337 * Used with all the other tracepoints.
338 */
339static inline struct syscall_arg_fmt *__evsel__syscall_arg_fmt(struct evsel *evsel)
340{
341	struct evsel_trace *et = evsel->priv;
342
343	return et->fmt;
344}
345
346static struct syscall_arg_fmt *evsel__syscall_arg_fmt(struct evsel *evsel)
347{
348	struct evsel_trace *et = evsel->priv;
349
350	if (evsel->priv == NULL) {
351		et = evsel->priv = evsel_trace__new();
352
353		if (et == NULL)
354			return NULL;
355	}
356
357	if (et->fmt == NULL) {
358		et->fmt = calloc(evsel->tp_format->format.nr_fields, sizeof(struct syscall_arg_fmt));
359		if (et->fmt == NULL)
360			goto out_delete;
361	}
362
363	return __evsel__syscall_arg_fmt(evsel);
364
365out_delete:
366	evsel_trace__delete(evsel->priv);
367	evsel->priv = NULL;
368	return NULL;
369}
370
371static int evsel__init_tp_uint_field(struct evsel *evsel, struct tp_field *field, const char *name)
372{
373	struct tep_format_field *format_field = evsel__field(evsel, name);
374
375	if (format_field == NULL)
376		return -1;
377
378	return tp_field__init_uint(field, format_field, evsel->needs_swap);
379}
380
381#define perf_evsel__init_sc_tp_uint_field(evsel, name) \
382	({ struct syscall_tp *sc = __evsel__syscall_tp(evsel);\
383	   evsel__init_tp_uint_field(evsel, &sc->name, #name); })
384
385static int evsel__init_tp_ptr_field(struct evsel *evsel, struct tp_field *field, const char *name)
386{
387	struct tep_format_field *format_field = evsel__field(evsel, name);
388
389	if (format_field == NULL)
390		return -1;
391
392	return tp_field__init_ptr(field, format_field);
393}
394
395#define perf_evsel__init_sc_tp_ptr_field(evsel, name) \
396	({ struct syscall_tp *sc = __evsel__syscall_tp(evsel);\
397	   evsel__init_tp_ptr_field(evsel, &sc->name, #name); })
398
399static void evsel__delete_priv(struct evsel *evsel)
400{
401	zfree(&evsel->priv);
402	evsel__delete(evsel);
403}
404
405static int evsel__init_syscall_tp(struct evsel *evsel)
406{
407	struct syscall_tp *sc = evsel__syscall_tp(evsel);
408
409	if (sc != NULL) {
410		if (evsel__init_tp_uint_field(evsel, &sc->id, "__syscall_nr") &&
411		    evsel__init_tp_uint_field(evsel, &sc->id, "nr"))
412			return -ENOENT;
413		return 0;
414	}
415
416	return -ENOMEM;
417}
418
419static int evsel__init_augmented_syscall_tp(struct evsel *evsel, struct evsel *tp)
420{
421	struct syscall_tp *sc = evsel__syscall_tp(evsel);
422
423	if (sc != NULL) {
424		struct tep_format_field *syscall_id = evsel__field(tp, "id");
425		if (syscall_id == NULL)
426			syscall_id = evsel__field(tp, "__syscall_nr");
427		if (syscall_id == NULL ||
428		    __tp_field__init_uint(&sc->id, syscall_id->size, syscall_id->offset, evsel->needs_swap))
429			return -EINVAL;
430
431		return 0;
432	}
433
434	return -ENOMEM;
435}
436
437static int evsel__init_augmented_syscall_tp_args(struct evsel *evsel)
438{
439	struct syscall_tp *sc = __evsel__syscall_tp(evsel);
440
441	return __tp_field__init_ptr(&sc->args, sc->id.offset + sizeof(u64));
442}
443
444static int evsel__init_augmented_syscall_tp_ret(struct evsel *evsel)
445{
446	struct syscall_tp *sc = __evsel__syscall_tp(evsel);
447
448	return __tp_field__init_uint(&sc->ret, sizeof(u64), sc->id.offset + sizeof(u64), evsel->needs_swap);
449}
450
451static int evsel__init_raw_syscall_tp(struct evsel *evsel, void *handler)
452{
453	if (evsel__syscall_tp(evsel) != NULL) {
454		if (perf_evsel__init_sc_tp_uint_field(evsel, id))
455			return -ENOENT;
456
457		evsel->handler = handler;
458		return 0;
459	}
460
461	return -ENOMEM;
462}
463
464static struct evsel *perf_evsel__raw_syscall_newtp(const char *direction, void *handler)
465{
466	struct evsel *evsel = evsel__newtp("raw_syscalls", direction);
467
468	/* older kernel (e.g., RHEL6) use syscalls:{enter,exit} */
469	if (IS_ERR(evsel))
470		evsel = evsel__newtp("syscalls", direction);
471
472	if (IS_ERR(evsel))
473		return NULL;
474
475	if (evsel__init_raw_syscall_tp(evsel, handler))
476		goto out_delete;
477
478	return evsel;
479
480out_delete:
481	evsel__delete_priv(evsel);
482	return NULL;
483}
484
485#define perf_evsel__sc_tp_uint(evsel, name, sample) \
486	({ struct syscall_tp *fields = __evsel__syscall_tp(evsel); \
487	   fields->name.integer(&fields->name, sample); })
488
489#define perf_evsel__sc_tp_ptr(evsel, name, sample) \
490	({ struct syscall_tp *fields = __evsel__syscall_tp(evsel); \
491	   fields->name.pointer(&fields->name, sample); })
492
493size_t strarray__scnprintf_suffix(struct strarray *sa, char *bf, size_t size, const char *intfmt, bool show_suffix, int val)
494{
495	int idx = val - sa->offset;
496
497	if (idx < 0 || idx >= sa->nr_entries || sa->entries[idx] == NULL) {
498		size_t printed = scnprintf(bf, size, intfmt, val);
499		if (show_suffix)
500			printed += scnprintf(bf + printed, size - printed, " /* %s??? */", sa->prefix);
501		return printed;
502	}
503
504	return scnprintf(bf, size, "%s%s", sa->entries[idx], show_suffix ? sa->prefix : "");
505}
506
507size_t strarray__scnprintf(struct strarray *sa, char *bf, size_t size, const char *intfmt, bool show_prefix, int val)
508{
509	int idx = val - sa->offset;
510
511	if (idx < 0 || idx >= sa->nr_entries || sa->entries[idx] == NULL) {
512		size_t printed = scnprintf(bf, size, intfmt, val);
513		if (show_prefix)
514			printed += scnprintf(bf + printed, size - printed, " /* %s??? */", sa->prefix);
515		return printed;
516	}
517
518	return scnprintf(bf, size, "%s%s", show_prefix ? sa->prefix : "", sa->entries[idx]);
519}
520
521static size_t __syscall_arg__scnprintf_strarray(char *bf, size_t size,
522						const char *intfmt,
523					        struct syscall_arg *arg)
524{
525	return strarray__scnprintf(arg->parm, bf, size, intfmt, arg->show_string_prefix, arg->val);
526}
527
528static size_t syscall_arg__scnprintf_strarray(char *bf, size_t size,
529					      struct syscall_arg *arg)
530{
531	return __syscall_arg__scnprintf_strarray(bf, size, "%d", arg);
532}
533
534#define SCA_STRARRAY syscall_arg__scnprintf_strarray
535
536bool syscall_arg__strtoul_strarray(char *bf, size_t size, struct syscall_arg *arg, u64 *ret)
537{
538	return strarray__strtoul(arg->parm, bf, size, ret);
539}
540
541bool syscall_arg__strtoul_strarray_flags(char *bf, size_t size, struct syscall_arg *arg, u64 *ret)
542{
543	return strarray__strtoul_flags(arg->parm, bf, size, ret);
544}
545
546bool syscall_arg__strtoul_strarrays(char *bf, size_t size, struct syscall_arg *arg, u64 *ret)
547{
548	return strarrays__strtoul(arg->parm, bf, size, ret);
549}
550
551size_t syscall_arg__scnprintf_strarray_flags(char *bf, size_t size, struct syscall_arg *arg)
552{
553	return strarray__scnprintf_flags(arg->parm, bf, size, arg->show_string_prefix, arg->val);
554}
555
556size_t strarrays__scnprintf(struct strarrays *sas, char *bf, size_t size, const char *intfmt, bool show_prefix, int val)
557{
558	size_t printed;
559	int i;
560
561	for (i = 0; i < sas->nr_entries; ++i) {
562		struct strarray *sa = sas->entries[i];
563		int idx = val - sa->offset;
564
565		if (idx >= 0 && idx < sa->nr_entries) {
566			if (sa->entries[idx] == NULL)
567				break;
568			return scnprintf(bf, size, "%s%s", show_prefix ? sa->prefix : "", sa->entries[idx]);
569		}
570	}
571
572	printed = scnprintf(bf, size, intfmt, val);
573	if (show_prefix)
574		printed += scnprintf(bf + printed, size - printed, " /* %s??? */", sas->entries[0]->prefix);
575	return printed;
576}
577
578bool strarray__strtoul(struct strarray *sa, char *bf, size_t size, u64 *ret)
579{
580	int i;
581
582	for (i = 0; i < sa->nr_entries; ++i) {
583		if (sa->entries[i] && strncmp(sa->entries[i], bf, size) == 0 && sa->entries[i][size] == '\0') {
584			*ret = sa->offset + i;
585			return true;
586		}
587	}
588
589	return false;
590}
591
592bool strarray__strtoul_flags(struct strarray *sa, char *bf, size_t size, u64 *ret)
593{
594	u64 val = 0;
595	char *tok = bf, *sep, *end;
596
597	*ret = 0;
598
599	while (size != 0) {
600		int toklen = size;
601
602		sep = memchr(tok, '|', size);
603		if (sep != NULL) {
604			size -= sep - tok + 1;
605
606			end = sep - 1;
607			while (end > tok && isspace(*end))
608				--end;
609
610			toklen = end - tok + 1;
611		}
612
613		while (isspace(*tok))
614			++tok;
615
616		if (isalpha(*tok) || *tok == '_') {
617			if (!strarray__strtoul(sa, tok, toklen, &val))
618				return false;
619		} else {
620			bool is_hexa = tok[0] == 0 && (tok[1] = 'x' || tok[1] == 'X');
621
622			val = strtoul(tok, NULL, is_hexa ? 16 : 0);
623		}
624
625		*ret |= (1 << (val - 1));
626
627		if (sep == NULL)
628			break;
629		tok = sep + 1;
630	}
631
632	return true;
633}
634
635bool strarrays__strtoul(struct strarrays *sas, char *bf, size_t size, u64 *ret)
636{
637	int i;
638
639	for (i = 0; i < sas->nr_entries; ++i) {
640		struct strarray *sa = sas->entries[i];
641
642		if (strarray__strtoul(sa, bf, size, ret))
643			return true;
644	}
645
646	return false;
647}
648
649size_t syscall_arg__scnprintf_strarrays(char *bf, size_t size,
650					struct syscall_arg *arg)
651{
652	return strarrays__scnprintf(arg->parm, bf, size, "%d", arg->show_string_prefix, arg->val);
653}
654
655#ifndef AT_FDCWD
656#define AT_FDCWD	-100
657#endif
658
659static size_t syscall_arg__scnprintf_fd_at(char *bf, size_t size,
660					   struct syscall_arg *arg)
661{
662	int fd = arg->val;
663	const char *prefix = "AT_FD";
664
665	if (fd == AT_FDCWD)
666		return scnprintf(bf, size, "%s%s", arg->show_string_prefix ? prefix : "", "CWD");
667
668	return syscall_arg__scnprintf_fd(bf, size, arg);
669}
670
671#define SCA_FDAT syscall_arg__scnprintf_fd_at
672
673static size_t syscall_arg__scnprintf_close_fd(char *bf, size_t size,
674					      struct syscall_arg *arg);
675
676#define SCA_CLOSE_FD syscall_arg__scnprintf_close_fd
677
678size_t syscall_arg__scnprintf_hex(char *bf, size_t size, struct syscall_arg *arg)
679{
680	return scnprintf(bf, size, "%#lx", arg->val);
681}
682
683size_t syscall_arg__scnprintf_ptr(char *bf, size_t size, struct syscall_arg *arg)
684{
685	if (arg->val == 0)
686		return scnprintf(bf, size, "NULL");
687	return syscall_arg__scnprintf_hex(bf, size, arg);
688}
689
690size_t syscall_arg__scnprintf_int(char *bf, size_t size, struct syscall_arg *arg)
691{
692	return scnprintf(bf, size, "%d", arg->val);
693}
694
695size_t syscall_arg__scnprintf_long(char *bf, size_t size, struct syscall_arg *arg)
696{
697	return scnprintf(bf, size, "%ld", arg->val);
698}
699
700static size_t syscall_arg__scnprintf_char_array(char *bf, size_t size, struct syscall_arg *arg)
701{
702	// XXX Hey, maybe for sched:sched_switch prev/next comm fields we can
703	//     fill missing comms using thread__set_comm()...
704	//     here or in a special syscall_arg__scnprintf_pid_sched_tp...
705	return scnprintf(bf, size, "\"%-.*s\"", arg->fmt->nr_entries ?: arg->len, arg->val);
706}
707
708#define SCA_CHAR_ARRAY syscall_arg__scnprintf_char_array
709
710static const char *bpf_cmd[] = {
711	"MAP_CREATE", "MAP_LOOKUP_ELEM", "MAP_UPDATE_ELEM", "MAP_DELETE_ELEM",
712	"MAP_GET_NEXT_KEY", "PROG_LOAD",
713};
714static DEFINE_STRARRAY(bpf_cmd, "BPF_");
715
716static const char *fsmount_flags[] = {
717	[1] = "CLOEXEC",
718};
719static DEFINE_STRARRAY(fsmount_flags, "FSMOUNT_");
720
721#include "trace/beauty/generated/fsconfig_arrays.c"
722
723static DEFINE_STRARRAY(fsconfig_cmds, "FSCONFIG_");
724
725static const char *epoll_ctl_ops[] = { "ADD", "DEL", "MOD", };
726static DEFINE_STRARRAY_OFFSET(epoll_ctl_ops, "EPOLL_CTL_", 1);
727
728static const char *itimers[] = { "REAL", "VIRTUAL", "PROF", };
729static DEFINE_STRARRAY(itimers, "ITIMER_");
730
731static const char *keyctl_options[] = {
732	"GET_KEYRING_ID", "JOIN_SESSION_KEYRING", "UPDATE", "REVOKE", "CHOWN",
733	"SETPERM", "DESCRIBE", "CLEAR", "LINK", "UNLINK", "SEARCH", "READ",
734	"INSTANTIATE", "NEGATE", "SET_REQKEY_KEYRING", "SET_TIMEOUT",
735	"ASSUME_AUTHORITY", "GET_SECURITY", "SESSION_TO_PARENT", "REJECT",
736	"INSTANTIATE_IOV", "INVALIDATE", "GET_PERSISTENT",
737};
738static DEFINE_STRARRAY(keyctl_options, "KEYCTL_");
739
740static const char *whences[] = { "SET", "CUR", "END",
741#ifdef SEEK_DATA
742"DATA",
743#endif
744#ifdef SEEK_HOLE
745"HOLE",
746#endif
747};
748static DEFINE_STRARRAY(whences, "SEEK_");
749
750static const char *fcntl_cmds[] = {
751	"DUPFD", "GETFD", "SETFD", "GETFL", "SETFL", "GETLK", "SETLK",
752	"SETLKW", "SETOWN", "GETOWN", "SETSIG", "GETSIG", "GETLK64",
753	"SETLK64", "SETLKW64", "SETOWN_EX", "GETOWN_EX",
754	"GETOWNER_UIDS",
755};
756static DEFINE_STRARRAY(fcntl_cmds, "F_");
757
758static const char *fcntl_linux_specific_cmds[] = {
759	"SETLEASE", "GETLEASE", "NOTIFY", [5] =	"CANCELLK", "DUPFD_CLOEXEC",
760	"SETPIPE_SZ", "GETPIPE_SZ", "ADD_SEALS", "GET_SEALS",
761	"GET_RW_HINT", "SET_RW_HINT", "GET_FILE_RW_HINT", "SET_FILE_RW_HINT",
762};
763
764static DEFINE_STRARRAY_OFFSET(fcntl_linux_specific_cmds, "F_", F_LINUX_SPECIFIC_BASE);
765
766static struct strarray *fcntl_cmds_arrays[] = {
767	&strarray__fcntl_cmds,
768	&strarray__fcntl_linux_specific_cmds,
769};
770
771static DEFINE_STRARRAYS(fcntl_cmds_arrays);
772
773static const char *rlimit_resources[] = {
774	"CPU", "FSIZE", "DATA", "STACK", "CORE", "RSS", "NPROC", "NOFILE",
775	"MEMLOCK", "AS", "LOCKS", "SIGPENDING", "MSGQUEUE", "NICE", "RTPRIO",
776	"RTTIME",
777};
778static DEFINE_STRARRAY(rlimit_resources, "RLIMIT_");
779
780static const char *sighow[] = { "BLOCK", "UNBLOCK", "SETMASK", };
781static DEFINE_STRARRAY(sighow, "SIG_");
782
783static const char *clockid[] = {
784	"REALTIME", "MONOTONIC", "PROCESS_CPUTIME_ID", "THREAD_CPUTIME_ID",
785	"MONOTONIC_RAW", "REALTIME_COARSE", "MONOTONIC_COARSE", "BOOTTIME",
786	"REALTIME_ALARM", "BOOTTIME_ALARM", "SGI_CYCLE", "TAI"
787};
788static DEFINE_STRARRAY(clockid, "CLOCK_");
789
790static size_t syscall_arg__scnprintf_access_mode(char *bf, size_t size,
791						 struct syscall_arg *arg)
792{
793	bool show_prefix = arg->show_string_prefix;
794	const char *suffix = "_OK";
795	size_t printed = 0;
796	int mode = arg->val;
797
798	if (mode == F_OK) /* 0 */
799		return scnprintf(bf, size, "F%s", show_prefix ? suffix : "");
800#define	P_MODE(n) \
801	if (mode & n##_OK) { \
802		printed += scnprintf(bf + printed, size - printed, "%s%s", #n, show_prefix ? suffix : ""); \
803		mode &= ~n##_OK; \
804	}
805
806	P_MODE(R);
807	P_MODE(W);
808	P_MODE(X);
809#undef P_MODE
810
811	if (mode)
812		printed += scnprintf(bf + printed, size - printed, "|%#x", mode);
813
814	return printed;
815}
816
817#define SCA_ACCMODE syscall_arg__scnprintf_access_mode
818
819static size_t syscall_arg__scnprintf_filename(char *bf, size_t size,
820					      struct syscall_arg *arg);
821
822#define SCA_FILENAME syscall_arg__scnprintf_filename
823
824static size_t syscall_arg__scnprintf_pipe_flags(char *bf, size_t size,
825						struct syscall_arg *arg)
826{
827	bool show_prefix = arg->show_string_prefix;
828	const char *prefix = "O_";
829	int printed = 0, flags = arg->val;
830
831#define	P_FLAG(n) \
832	if (flags & O_##n) { \
833		printed += scnprintf(bf + printed, size - printed, "%s%s%s", printed ? "|" : "", show_prefix ? prefix : "", #n); \
834		flags &= ~O_##n; \
835	}
836
837	P_FLAG(CLOEXEC);
838	P_FLAG(NONBLOCK);
839#undef P_FLAG
840
841	if (flags)
842		printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
843
844	return printed;
845}
846
847#define SCA_PIPE_FLAGS syscall_arg__scnprintf_pipe_flags
848
849#ifndef GRND_NONBLOCK
850#define GRND_NONBLOCK	0x0001
851#endif
852#ifndef GRND_RANDOM
853#define GRND_RANDOM	0x0002
854#endif
855
856static size_t syscall_arg__scnprintf_getrandom_flags(char *bf, size_t size,
857						   struct syscall_arg *arg)
858{
859	bool show_prefix = arg->show_string_prefix;
860	const char *prefix = "GRND_";
861	int printed = 0, flags = arg->val;
862
863#define	P_FLAG(n) \
864	if (flags & GRND_##n) { \
865		printed += scnprintf(bf + printed, size - printed, "%s%s%s", printed ? "|" : "", show_prefix ? prefix : "", #n); \
866		flags &= ~GRND_##n; \
867	}
868
869	P_FLAG(RANDOM);
870	P_FLAG(NONBLOCK);
871#undef P_FLAG
872
873	if (flags)
874		printed += scnprintf(bf + printed, size - printed, "%s%#x", printed ? "|" : "", flags);
875
876	return printed;
877}
878
879#define SCA_GETRANDOM_FLAGS syscall_arg__scnprintf_getrandom_flags
880
881#define STRARRAY(name, array) \
882	  { .scnprintf	= SCA_STRARRAY, \
883	    .strtoul	= STUL_STRARRAY, \
884	    .parm	= &strarray__##array, }
885
886#define STRARRAY_FLAGS(name, array) \
887	  { .scnprintf	= SCA_STRARRAY_FLAGS, \
888	    .strtoul	= STUL_STRARRAY_FLAGS, \
889	    .parm	= &strarray__##array, }
890
891#include "trace/beauty/arch_errno_names.c"
892#include "trace/beauty/eventfd.c"
893#include "trace/beauty/futex_op.c"
894#include "trace/beauty/futex_val3.c"
895#include "trace/beauty/mmap.c"
896#include "trace/beauty/mode_t.c"
897#include "trace/beauty/msg_flags.c"
898#include "trace/beauty/open_flags.c"
899#include "trace/beauty/perf_event_open.c"
900#include "trace/beauty/pid.c"
901#include "trace/beauty/sched_policy.c"
902#include "trace/beauty/seccomp.c"
903#include "trace/beauty/signum.c"
904#include "trace/beauty/socket_type.c"
905#include "trace/beauty/waitid_options.c"
906
907static struct syscall_fmt syscall_fmts[] = {
908	{ .name	    = "access",
909	  .arg = { [1] = { .scnprintf = SCA_ACCMODE,  /* mode */ }, }, },
910	{ .name	    = "arch_prctl",
911	  .arg = { [0] = { .scnprintf = SCA_X86_ARCH_PRCTL_CODE, /* code */ },
912		   [1] = { .scnprintf = SCA_PTR, /* arg2 */ }, }, },
913	{ .name	    = "bind",
914	  .arg = { [0] = { .scnprintf = SCA_INT, /* fd */ },
915		   [1] = { .scnprintf = SCA_SOCKADDR, /* umyaddr */ },
916		   [2] = { .scnprintf = SCA_INT, /* addrlen */ }, }, },
917	{ .name	    = "bpf",
918	  .arg = { [0] = STRARRAY(cmd, bpf_cmd), }, },
919	{ .name	    = "brk",	    .hexret = true,
920	  .arg = { [0] = { .scnprintf = SCA_PTR, /* brk */ }, }, },
921	{ .name     = "clock_gettime",
922	  .arg = { [0] = STRARRAY(clk_id, clockid), }, },
923	{ .name	    = "clone",	    .errpid = true, .nr_args = 5,
924	  .arg = { [0] = { .name = "flags",	    .scnprintf = SCA_CLONE_FLAGS, },
925		   [1] = { .name = "child_stack",   .scnprintf = SCA_HEX, },
926		   [2] = { .name = "parent_tidptr", .scnprintf = SCA_HEX, },
927		   [3] = { .name = "child_tidptr",  .scnprintf = SCA_HEX, },
928		   [4] = { .name = "tls",	    .scnprintf = SCA_HEX, }, }, },
929	{ .name	    = "close",
930	  .arg = { [0] = { .scnprintf = SCA_CLOSE_FD, /* fd */ }, }, },
931	{ .name	    = "connect",
932	  .arg = { [0] = { .scnprintf = SCA_INT, /* fd */ },
933		   [1] = { .scnprintf = SCA_SOCKADDR, /* servaddr */ },
934		   [2] = { .scnprintf = SCA_INT, /* addrlen */ }, }, },
935	{ .name	    = "epoll_ctl",
936	  .arg = { [1] = STRARRAY(op, epoll_ctl_ops), }, },
937	{ .name	    = "eventfd2",
938	  .arg = { [1] = { .scnprintf = SCA_EFD_FLAGS, /* flags */ }, }, },
939	{ .name	    = "fchmodat",
940	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, },
941	{ .name	    = "fchownat",
942	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, },
943	{ .name	    = "fcntl",
944	  .arg = { [1] = { .scnprintf = SCA_FCNTL_CMD,  /* cmd */
945			   .strtoul   = STUL_STRARRAYS,
946			   .parm      = &strarrays__fcntl_cmds_arrays,
947			   .show_zero = true, },
948		   [2] = { .scnprintf =  SCA_FCNTL_ARG, /* arg */ }, }, },
949	{ .name	    = "flock",
950	  .arg = { [1] = { .scnprintf = SCA_FLOCK, /* cmd */ }, }, },
951	{ .name     = "fsconfig",
952	  .arg = { [1] = STRARRAY(cmd, fsconfig_cmds), }, },
953	{ .name     = "fsmount",
954	  .arg = { [1] = STRARRAY_FLAGS(flags, fsmount_flags),
955		   [2] = { .scnprintf = SCA_FSMOUNT_ATTR_FLAGS, /* attr_flags */ }, }, },
956	{ .name     = "fspick",
957	  .arg = { [0] = { .scnprintf = SCA_FDAT,	  /* dfd */ },
958		   [1] = { .scnprintf = SCA_FILENAME,	  /* path */ },
959		   [2] = { .scnprintf = SCA_FSPICK_FLAGS, /* flags */ }, }, },
960	{ .name	    = "fstat", .alias = "newfstat", },
961	{ .name	    = "fstatat", .alias = "newfstatat", },
962	{ .name	    = "futex",
963	  .arg = { [1] = { .scnprintf = SCA_FUTEX_OP, /* op */ },
964		   [5] = { .scnprintf = SCA_FUTEX_VAL3, /* val3 */ }, }, },
965	{ .name	    = "futimesat",
966	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, },
967	{ .name	    = "getitimer",
968	  .arg = { [0] = STRARRAY(which, itimers), }, },
969	{ .name	    = "getpid",	    .errpid = true, },
970	{ .name	    = "getpgid",    .errpid = true, },
971	{ .name	    = "getppid",    .errpid = true, },
972	{ .name	    = "getrandom",
973	  .arg = { [2] = { .scnprintf = SCA_GETRANDOM_FLAGS, /* flags */ }, }, },
974	{ .name	    = "getrlimit",
975	  .arg = { [0] = STRARRAY(resource, rlimit_resources), }, },
976	{ .name	    = "gettid",	    .errpid = true, },
977	{ .name	    = "ioctl",
978	  .arg = {
979#if defined(__i386__) || defined(__x86_64__)
980/*
981 * FIXME: Make this available to all arches.
982 */
983		   [1] = { .scnprintf = SCA_IOCTL_CMD, /* cmd */ },
984		   [2] = { .scnprintf = SCA_HEX, /* arg */ }, }, },
985#else
986		   [2] = { .scnprintf = SCA_HEX, /* arg */ }, }, },
987#endif
988	{ .name	    = "kcmp",	    .nr_args = 5,
989	  .arg = { [0] = { .name = "pid1",	.scnprintf = SCA_PID, },
990		   [1] = { .name = "pid2",	.scnprintf = SCA_PID, },
991		   [2] = { .name = "type",	.scnprintf = SCA_KCMP_TYPE, },
992		   [3] = { .name = "idx1",	.scnprintf = SCA_KCMP_IDX, },
993		   [4] = { .name = "idx2",	.scnprintf = SCA_KCMP_IDX, }, }, },
994	{ .name	    = "keyctl",
995	  .arg = { [0] = STRARRAY(option, keyctl_options), }, },
996	{ .name	    = "kill",
997	  .arg = { [1] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, },
998	{ .name	    = "linkat",
999	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, },
1000	{ .name	    = "lseek",
1001	  .arg = { [2] = STRARRAY(whence, whences), }, },
1002	{ .name	    = "lstat", .alias = "newlstat", },
1003	{ .name     = "madvise",
1004	  .arg = { [0] = { .scnprintf = SCA_HEX,      /* start */ },
1005		   [2] = { .scnprintf = SCA_MADV_BHV, /* behavior */ }, }, },
1006	{ .name	    = "mkdirat",
1007	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, },
1008	{ .name	    = "mknodat",
1009	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* fd */ }, }, },
1010	{ .name	    = "mmap",	    .hexret = true,
1011/* The standard mmap maps to old_mmap on s390x */
1012#if defined(__s390x__)
1013	.alias = "old_mmap",
1014#endif
1015	  .arg = { [2] = { .scnprintf = SCA_MMAP_PROT,	/* prot */ },
1016		   [3] = { .scnprintf = SCA_MMAP_FLAGS,	/* flags */
1017			   .strtoul   = STUL_STRARRAY_FLAGS,
1018			   .parm      = &strarray__mmap_flags, },
1019		   [5] = { .scnprintf = SCA_HEX,	/* offset */ }, }, },
1020	{ .name	    = "mount",
1021	  .arg = { [0] = { .scnprintf = SCA_FILENAME, /* dev_name */ },
1022		   [3] = { .scnprintf = SCA_MOUNT_FLAGS, /* flags */
1023			   .mask_val  = SCAMV_MOUNT_FLAGS, /* flags */ }, }, },
1024	{ .name	    = "move_mount",
1025	  .arg = { [0] = { .scnprintf = SCA_FDAT,	/* from_dfd */ },
1026		   [1] = { .scnprintf = SCA_FILENAME, /* from_pathname */ },
1027		   [2] = { .scnprintf = SCA_FDAT,	/* to_dfd */ },
1028		   [3] = { .scnprintf = SCA_FILENAME, /* to_pathname */ },
1029		   [4] = { .scnprintf = SCA_MOVE_MOUNT_FLAGS, /* flags */ }, }, },
1030	{ .name	    = "mprotect",
1031	  .arg = { [0] = { .scnprintf = SCA_HEX,	/* start */ },
1032		   [2] = { .scnprintf = SCA_MMAP_PROT,	/* prot */ }, }, },
1033	{ .name	    = "mq_unlink",
1034	  .arg = { [0] = { .scnprintf = SCA_FILENAME, /* u_name */ }, }, },
1035	{ .name	    = "mremap",	    .hexret = true,
1036	  .arg = { [3] = { .scnprintf = SCA_MREMAP_FLAGS, /* flags */ }, }, },
1037	{ .name	    = "name_to_handle_at",
1038	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, },
1039	{ .name	    = "newfstatat",
1040	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, },
1041	{ .name	    = "open",
1042	  .arg = { [1] = { .scnprintf = SCA_OPEN_FLAGS, /* flags */ }, }, },
1043	{ .name	    = "open_by_handle_at",
1044	  .arg = { [0] = { .scnprintf = SCA_FDAT,	/* dfd */ },
1045		   [2] = { .scnprintf = SCA_OPEN_FLAGS, /* flags */ }, }, },
1046	{ .name	    = "openat",
1047	  .arg = { [0] = { .scnprintf = SCA_FDAT,	/* dfd */ },
1048		   [2] = { .scnprintf = SCA_OPEN_FLAGS, /* flags */ }, }, },
1049	{ .name	    = "perf_event_open",
1050	  .arg = { [2] = { .scnprintf = SCA_INT,	/* cpu */ },
1051		   [3] = { .scnprintf = SCA_FD,		/* group_fd */ },
1052		   [4] = { .scnprintf = SCA_PERF_FLAGS, /* flags */ }, }, },
1053	{ .name	    = "pipe2",
1054	  .arg = { [1] = { .scnprintf = SCA_PIPE_FLAGS, /* flags */ }, }, },
1055	{ .name	    = "pkey_alloc",
1056	  .arg = { [1] = { .scnprintf = SCA_PKEY_ALLOC_ACCESS_RIGHTS,	/* access_rights */ }, }, },
1057	{ .name	    = "pkey_free",
1058	  .arg = { [0] = { .scnprintf = SCA_INT,	/* key */ }, }, },
1059	{ .name	    = "pkey_mprotect",
1060	  .arg = { [0] = { .scnprintf = SCA_HEX,	/* start */ },
1061		   [2] = { .scnprintf = SCA_MMAP_PROT,	/* prot */ },
1062		   [3] = { .scnprintf = SCA_INT,	/* pkey */ }, }, },
1063	{ .name	    = "poll", .timeout = true, },
1064	{ .name	    = "ppoll", .timeout = true, },
1065	{ .name	    = "prctl",
1066	  .arg = { [0] = { .scnprintf = SCA_PRCTL_OPTION, /* option */
1067			   .strtoul   = STUL_STRARRAY,
1068			   .parm      = &strarray__prctl_options, },
1069		   [1] = { .scnprintf = SCA_PRCTL_ARG2, /* arg2 */ },
1070		   [2] = { .scnprintf = SCA_PRCTL_ARG3, /* arg3 */ }, }, },
1071	{ .name	    = "pread", .alias = "pread64", },
1072	{ .name	    = "preadv", .alias = "pread", },
1073	{ .name	    = "prlimit64",
1074	  .arg = { [1] = STRARRAY(resource, rlimit_resources), }, },
1075	{ .name	    = "pwrite", .alias = "pwrite64", },
1076	{ .name	    = "readlinkat",
1077	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, },
1078	{ .name	    = "recvfrom",
1079	  .arg = { [3] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, },
1080	{ .name	    = "recvmmsg",
1081	  .arg = { [3] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, },
1082	{ .name	    = "recvmsg",
1083	  .arg = { [2] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, },
1084	{ .name	    = "renameat",
1085	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* olddirfd */ },
1086		   [2] = { .scnprintf = SCA_FDAT, /* newdirfd */ }, }, },
1087	{ .name	    = "renameat2",
1088	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* olddirfd */ },
1089		   [2] = { .scnprintf = SCA_FDAT, /* newdirfd */ },
1090		   [4] = { .scnprintf = SCA_RENAMEAT2_FLAGS, /* flags */ }, }, },
1091	{ .name	    = "rt_sigaction",
1092	  .arg = { [0] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, },
1093	{ .name	    = "rt_sigprocmask",
1094	  .arg = { [0] = STRARRAY(how, sighow), }, },
1095	{ .name	    = "rt_sigqueueinfo",
1096	  .arg = { [1] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, },
1097	{ .name	    = "rt_tgsigqueueinfo",
1098	  .arg = { [2] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, },
1099	{ .name	    = "sched_setscheduler",
1100	  .arg = { [1] = { .scnprintf = SCA_SCHED_POLICY, /* policy */ }, }, },
1101	{ .name	    = "seccomp",
1102	  .arg = { [0] = { .scnprintf = SCA_SECCOMP_OP,	   /* op */ },
1103		   [1] = { .scnprintf = SCA_SECCOMP_FLAGS, /* flags */ }, }, },
1104	{ .name	    = "select", .timeout = true, },
1105	{ .name	    = "sendfile", .alias = "sendfile64", },
1106	{ .name	    = "sendmmsg",
1107	  .arg = { [3] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, },
1108	{ .name	    = "sendmsg",
1109	  .arg = { [2] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ }, }, },
1110	{ .name	    = "sendto",
1111	  .arg = { [3] = { .scnprintf = SCA_MSG_FLAGS, /* flags */ },
1112		   [4] = { .scnprintf = SCA_SOCKADDR, /* addr */ }, }, },
1113	{ .name	    = "set_tid_address", .errpid = true, },
1114	{ .name	    = "setitimer",
1115	  .arg = { [0] = STRARRAY(which, itimers), }, },
1116	{ .name	    = "setrlimit",
1117	  .arg = { [0] = STRARRAY(resource, rlimit_resources), }, },
1118	{ .name	    = "socket",
1119	  .arg = { [0] = STRARRAY(family, socket_families),
1120		   [1] = { .scnprintf = SCA_SK_TYPE, /* type */ },
1121		   [2] = { .scnprintf = SCA_SK_PROTO, /* protocol */ }, }, },
1122	{ .name	    = "socketpair",
1123	  .arg = { [0] = STRARRAY(family, socket_families),
1124		   [1] = { .scnprintf = SCA_SK_TYPE, /* type */ },
1125		   [2] = { .scnprintf = SCA_SK_PROTO, /* protocol */ }, }, },
1126	{ .name	    = "stat", .alias = "newstat", },
1127	{ .name	    = "statx",
1128	  .arg = { [0] = { .scnprintf = SCA_FDAT,	 /* fdat */ },
1129		   [2] = { .scnprintf = SCA_STATX_FLAGS, /* flags */ } ,
1130		   [3] = { .scnprintf = SCA_STATX_MASK,	 /* mask */ }, }, },
1131	{ .name	    = "swapoff",
1132	  .arg = { [0] = { .scnprintf = SCA_FILENAME, /* specialfile */ }, }, },
1133	{ .name	    = "swapon",
1134	  .arg = { [0] = { .scnprintf = SCA_FILENAME, /* specialfile */ }, }, },
1135	{ .name	    = "symlinkat",
1136	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, },
1137	{ .name	    = "sync_file_range",
1138	  .arg = { [3] = { .scnprintf = SCA_SYNC_FILE_RANGE_FLAGS, /* flags */ }, }, },
1139	{ .name	    = "tgkill",
1140	  .arg = { [2] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, },
1141	{ .name	    = "tkill",
1142	  .arg = { [1] = { .scnprintf = SCA_SIGNUM, /* sig */ }, }, },
1143	{ .name     = "umount2", .alias = "umount",
1144	  .arg = { [0] = { .scnprintf = SCA_FILENAME, /* name */ }, }, },
1145	{ .name	    = "uname", .alias = "newuname", },
1146	{ .name	    = "unlinkat",
1147	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* dfd */ }, }, },
1148	{ .name	    = "utimensat",
1149	  .arg = { [0] = { .scnprintf = SCA_FDAT, /* dirfd */ }, }, },
1150	{ .name	    = "wait4",	    .errpid = true,
1151	  .arg = { [2] = { .scnprintf = SCA_WAITID_OPTIONS, /* options */ }, }, },
1152	{ .name	    = "waitid",	    .errpid = true,
1153	  .arg = { [3] = { .scnprintf = SCA_WAITID_OPTIONS, /* options */ }, }, },
1154};
1155
1156static int syscall_fmt__cmp(const void *name, const void *fmtp)
1157{
1158	const struct syscall_fmt *fmt = fmtp;
1159	return strcmp(name, fmt->name);
1160}
1161
1162static struct syscall_fmt *__syscall_fmt__find(struct syscall_fmt *fmts, const int nmemb, const char *name)
1163{
1164	return bsearch(name, fmts, nmemb, sizeof(struct syscall_fmt), syscall_fmt__cmp);
1165}
1166
1167static struct syscall_fmt *syscall_fmt__find(const char *name)
1168{
1169	const int nmemb = ARRAY_SIZE(syscall_fmts);
1170	return __syscall_fmt__find(syscall_fmts, nmemb, name);
1171}
1172
1173static struct syscall_fmt *__syscall_fmt__find_by_alias(struct syscall_fmt *fmts, const int nmemb, const char *alias)
1174{
1175	int i;
1176
1177	for (i = 0; i < nmemb; ++i) {
1178		if (fmts[i].alias && strcmp(fmts[i].alias, alias) == 0)
1179			return &fmts[i];
1180	}
1181
1182	return NULL;
1183}
1184
1185static struct syscall_fmt *syscall_fmt__find_by_alias(const char *alias)
1186{
1187	const int nmemb = ARRAY_SIZE(syscall_fmts);
1188	return __syscall_fmt__find_by_alias(syscall_fmts, nmemb, alias);
1189}
1190
1191/*
1192 * is_exit: is this "exit" or "exit_group"?
1193 * is_open: is this "open" or "openat"? To associate the fd returned in sys_exit with the pathname in sys_enter.
1194 * args_size: sum of the sizes of the syscall arguments, anything after that is augmented stuff: pathname for openat, etc.
1195 * nonexistent: Just a hole in the syscall table, syscall id not allocated
1196 */
1197struct syscall {
1198	struct tep_event    *tp_format;
1199	int		    nr_args;
1200	int		    args_size;
1201	struct {
1202		struct bpf_program *sys_enter,
1203				   *sys_exit;
1204	}		    bpf_prog;
1205	bool		    is_exit;
1206	bool		    is_open;
1207	bool		    nonexistent;
1208	struct tep_format_field *args;
1209	const char	    *name;
1210	struct syscall_fmt  *fmt;
1211	struct syscall_arg_fmt *arg_fmt;
1212};
1213
1214/*
1215 * Must match what is in the BPF program:
1216 *
1217 * tools/perf/examples/bpf/augmented_raw_syscalls.c
1218 */
1219struct bpf_map_syscall_entry {
1220	bool	enabled;
1221	u16	string_args_len[RAW_SYSCALL_ARGS_NUM];
1222};
1223
1224/*
1225 * We need to have this 'calculated' boolean because in some cases we really
1226 * don't know what is the duration of a syscall, for instance, when we start
1227 * a session and some threads are waiting for a syscall to finish, say 'poll',
1228 * in which case all we can do is to print "( ? ) for duration and for the
1229 * start timestamp.
1230 */
1231static size_t fprintf_duration(unsigned long t, bool calculated, FILE *fp)
1232{
1233	double duration = (double)t / NSEC_PER_MSEC;
1234	size_t printed = fprintf(fp, "(");
1235
1236	if (!calculated)
1237		printed += fprintf(fp, "         ");
1238	else if (duration >= 1.0)
1239		printed += color_fprintf(fp, PERF_COLOR_RED, "%6.3f ms", duration);
1240	else if (duration >= 0.01)
1241		printed += color_fprintf(fp, PERF_COLOR_YELLOW, "%6.3f ms", duration);
1242	else
1243		printed += color_fprintf(fp, PERF_COLOR_NORMAL, "%6.3f ms", duration);
1244	return printed + fprintf(fp, "): ");
1245}
1246
1247/**
1248 * filename.ptr: The filename char pointer that will be vfs_getname'd
1249 * filename.entry_str_pos: Where to insert the string translated from
1250 *                         filename.ptr by the vfs_getname tracepoint/kprobe.
1251 * ret_scnprintf: syscall args may set this to a different syscall return
1252 *                formatter, for instance, fcntl may return fds, file flags, etc.
1253 */
1254struct thread_trace {
1255	u64		  entry_time;
1256	bool		  entry_pending;
1257	unsigned long	  nr_events;
1258	unsigned long	  pfmaj, pfmin;
1259	char		  *entry_str;
1260	double		  runtime_ms;
1261	size_t		  (*ret_scnprintf)(char *bf, size_t size, struct syscall_arg *arg);
1262        struct {
1263		unsigned long ptr;
1264		short int     entry_str_pos;
1265		bool	      pending_open;
1266		unsigned int  namelen;
1267		char	      *name;
1268	} filename;
1269	struct {
1270		int	      max;
1271		struct file   *table;
1272	} files;
1273
1274	struct intlist *syscall_stats;
1275};
1276
1277static struct thread_trace *thread_trace__new(void)
1278{
1279	struct thread_trace *ttrace =  zalloc(sizeof(struct thread_trace));
1280
1281	if (ttrace) {
1282		ttrace->files.max = -1;
1283		ttrace->syscall_stats = intlist__new(NULL);
1284	}
1285
1286	return ttrace;
1287}
1288
1289static struct thread_trace *thread__trace(struct thread *thread, FILE *fp)
1290{
1291	struct thread_trace *ttrace;
1292
1293	if (thread == NULL)
1294		goto fail;
1295
1296	if (thread__priv(thread) == NULL)
1297		thread__set_priv(thread, thread_trace__new());
1298
1299	if (thread__priv(thread) == NULL)
1300		goto fail;
1301
1302	ttrace = thread__priv(thread);
1303	++ttrace->nr_events;
1304
1305	return ttrace;
1306fail:
1307	color_fprintf(fp, PERF_COLOR_RED,
1308		      "WARNING: not enough memory, dropping samples!\n");
1309	return NULL;
1310}
1311
1312
1313void syscall_arg__set_ret_scnprintf(struct syscall_arg *arg,
1314				    size_t (*ret_scnprintf)(char *bf, size_t size, struct syscall_arg *arg))
1315{
1316	struct thread_trace *ttrace = thread__priv(arg->thread);
1317
1318	ttrace->ret_scnprintf = ret_scnprintf;
1319}
1320
1321#define TRACE_PFMAJ		(1 << 0)
1322#define TRACE_PFMIN		(1 << 1)
1323
1324static const size_t trace__entry_str_size = 2048;
1325
1326static struct file *thread_trace__files_entry(struct thread_trace *ttrace, int fd)
1327{
1328	if (fd < 0)
1329		return NULL;
1330
1331	if (fd > ttrace->files.max) {
1332		struct file *nfiles = realloc(ttrace->files.table, (fd + 1) * sizeof(struct file));
1333
1334		if (nfiles == NULL)
1335			return NULL;
1336
1337		if (ttrace->files.max != -1) {
1338			memset(nfiles + ttrace->files.max + 1, 0,
1339			       (fd - ttrace->files.max) * sizeof(struct file));
1340		} else {
1341			memset(nfiles, 0, (fd + 1) * sizeof(struct file));
1342		}
1343
1344		ttrace->files.table = nfiles;
1345		ttrace->files.max   = fd;
1346	}
1347
1348	return ttrace->files.table + fd;
1349}
1350
1351struct file *thread__files_entry(struct thread *thread, int fd)
1352{
1353	return thread_trace__files_entry(thread__priv(thread), fd);
1354}
1355
1356static int trace__set_fd_pathname(struct thread *thread, int fd, const char *pathname)
1357{
1358	struct thread_trace *ttrace = thread__priv(thread);
1359	struct file *file = thread_trace__files_entry(ttrace, fd);
1360
1361	if (file != NULL) {
1362		struct stat st;
1363		if (stat(pathname, &st) == 0)
1364			file->dev_maj = major(st.st_rdev);
1365		file->pathname = strdup(pathname);
1366		if (file->pathname)
1367			return 0;
1368	}
1369
1370	return -1;
1371}
1372
1373static int thread__read_fd_path(struct thread *thread, int fd)
1374{
1375	char linkname[PATH_MAX], pathname[PATH_MAX];
1376	struct stat st;
1377	int ret;
1378
1379	if (thread->pid_ == thread->tid) {
1380		scnprintf(linkname, sizeof(linkname),
1381			  "/proc/%d/fd/%d", thread->pid_, fd);
1382	} else {
1383		scnprintf(linkname, sizeof(linkname),
1384			  "/proc/%d/task/%d/fd/%d", thread->pid_, thread->tid, fd);
1385	}
1386
1387	if (lstat(linkname, &st) < 0 || st.st_size + 1 > (off_t)sizeof(pathname))
1388		return -1;
1389
1390	ret = readlink(linkname, pathname, sizeof(pathname));
1391
1392	if (ret < 0 || ret > st.st_size)
1393		return -1;
1394
1395	pathname[ret] = '\0';
1396	return trace__set_fd_pathname(thread, fd, pathname);
1397}
1398
1399static const char *thread__fd_path(struct thread *thread, int fd,
1400				   struct trace *trace)
1401{
1402	struct thread_trace *ttrace = thread__priv(thread);
1403
1404	if (ttrace == NULL || trace->fd_path_disabled)
1405		return NULL;
1406
1407	if (fd < 0)
1408		return NULL;
1409
1410	if ((fd > ttrace->files.max || ttrace->files.table[fd].pathname == NULL)) {
1411		if (!trace->live)
1412			return NULL;
1413		++trace->stats.proc_getname;
1414		if (thread__read_fd_path(thread, fd))
1415			return NULL;
1416	}
1417
1418	return ttrace->files.table[fd].pathname;
1419}
1420
1421size_t syscall_arg__scnprintf_fd(char *bf, size_t size, struct syscall_arg *arg)
1422{
1423	int fd = arg->val;
1424	size_t printed = scnprintf(bf, size, "%d", fd);
1425	const char *path = thread__fd_path(arg->thread, fd, arg->trace);
1426
1427	if (path)
1428		printed += scnprintf(bf + printed, size - printed, "<%s>", path);
1429
1430	return printed;
1431}
1432
1433size_t pid__scnprintf_fd(struct trace *trace, pid_t pid, int fd, char *bf, size_t size)
1434{
1435        size_t printed = scnprintf(bf, size, "%d", fd);
1436	struct thread *thread = machine__find_thread(trace->host, pid, pid);
1437
1438	if (thread) {
1439		const char *path = thread__fd_path(thread, fd, trace);
1440
1441		if (path)
1442			printed += scnprintf(bf + printed, size - printed, "<%s>", path);
1443
1444		thread__put(thread);
1445	}
1446
1447        return printed;
1448}
1449
1450static size_t syscall_arg__scnprintf_close_fd(char *bf, size_t size,
1451					      struct syscall_arg *arg)
1452{
1453	int fd = arg->val;
1454	size_t printed = syscall_arg__scnprintf_fd(bf, size, arg);
1455	struct thread_trace *ttrace = thread__priv(arg->thread);
1456
1457	if (ttrace && fd >= 0 && fd <= ttrace->files.max)
1458		zfree(&ttrace->files.table[fd].pathname);
1459
1460	return printed;
1461}
1462
1463static void thread__set_filename_pos(struct thread *thread, const char *bf,
1464				     unsigned long ptr)
1465{
1466	struct thread_trace *ttrace = thread__priv(thread);
1467
1468	ttrace->filename.ptr = ptr;
1469	ttrace->filename.entry_str_pos = bf - ttrace->entry_str;
1470}
1471
1472static size_t syscall_arg__scnprintf_augmented_string(struct syscall_arg *arg, char *bf, size_t size)
1473{
1474	struct augmented_arg *augmented_arg = arg->augmented.args;
1475	size_t printed = scnprintf(bf, size, "\"%.*s\"", augmented_arg->size, augmented_arg->value);
1476	/*
1477	 * So that the next arg with a payload can consume its augmented arg, i.e. for rename* syscalls
1478	 * we would have two strings, each prefixed by its size.
1479	 */
1480	int consumed = sizeof(*augmented_arg) + augmented_arg->size;
1481
1482	arg->augmented.args = ((void *)arg->augmented.args) + consumed;
1483	arg->augmented.size -= consumed;
1484
1485	return printed;
1486}
1487
1488static size_t syscall_arg__scnprintf_filename(char *bf, size_t size,
1489					      struct syscall_arg *arg)
1490{
1491	unsigned long ptr = arg->val;
1492
1493	if (arg->augmented.args)
1494		return syscall_arg__scnprintf_augmented_string(arg, bf, size);
1495
1496	if (!arg->trace->vfs_getname)
1497		return scnprintf(bf, size, "%#x", ptr);
1498
1499	thread__set_filename_pos(arg->thread, bf, ptr);
1500	return 0;
1501}
1502
1503static bool trace__filter_duration(struct trace *trace, double t)
1504{
1505	return t < (trace->duration_filter * NSEC_PER_MSEC);
1506}
1507
1508static size_t __trace__fprintf_tstamp(struct trace *trace, u64 tstamp, FILE *fp)
1509{
1510	double ts = (double)(tstamp - trace->base_time) / NSEC_PER_MSEC;
1511
1512	return fprintf(fp, "%10.3f ", ts);
1513}
1514
1515/*
1516 * We're handling tstamp=0 as an undefined tstamp, i.e. like when we are
1517 * using ttrace->entry_time for a thread that receives a sys_exit without
1518 * first having received a sys_enter ("poll" issued before tracing session
1519 * starts, lost sys_enter exit due to ring buffer overflow).
1520 */
1521static size_t trace__fprintf_tstamp(struct trace *trace, u64 tstamp, FILE *fp)
1522{
1523	if (tstamp > 0)
1524		return __trace__fprintf_tstamp(trace, tstamp, fp);
1525
1526	return fprintf(fp, "         ? ");
1527}
1528
1529static bool done = false;
1530static bool interrupted = false;
1531
1532static void sig_handler(int sig)
1533{
1534	done = true;
1535	interrupted = sig == SIGINT;
1536}
1537
1538static size_t trace__fprintf_comm_tid(struct trace *trace, struct thread *thread, FILE *fp)
1539{
1540	size_t printed = 0;
1541
1542	if (trace->multiple_threads) {
1543		if (trace->show_comm)
1544			printed += fprintf(fp, "%.14s/", thread__comm_str(thread));
1545		printed += fprintf(fp, "%d ", thread->tid);
1546	}
1547
1548	return printed;
1549}
1550
1551static size_t trace__fprintf_entry_head(struct trace *trace, struct thread *thread,
1552					u64 duration, bool duration_calculated, u64 tstamp, FILE *fp)
1553{
1554	size_t printed = 0;
1555
1556	if (trace->show_tstamp)
1557		printed = trace__fprintf_tstamp(trace, tstamp, fp);
1558	if (trace->show_duration)
1559		printed += fprintf_duration(duration, duration_calculated, fp);
1560	return printed + trace__fprintf_comm_tid(trace, thread, fp);
1561}
1562
1563static int trace__process_event(struct trace *trace, struct machine *machine,
1564				union perf_event *event, struct perf_sample *sample)
1565{
1566	int ret = 0;
1567
1568	switch (event->header.type) {
1569	case PERF_RECORD_LOST:
1570		color_fprintf(trace->output, PERF_COLOR_RED,
1571			      "LOST %" PRIu64 " events!\n", event->lost.lost);
1572		ret = machine__process_lost_event(machine, event, sample);
1573		break;
1574	default:
1575		ret = machine__process_event(machine, event, sample);
1576		break;
1577	}
1578
1579	return ret;
1580}
1581
1582static int trace__tool_process(struct perf_tool *tool,
1583			       union perf_event *event,
1584			       struct perf_sample *sample,
1585			       struct machine *machine)
1586{
1587	struct trace *trace = container_of(tool, struct trace, tool);
1588	return trace__process_event(trace, machine, event, sample);
1589}
1590
1591static char *trace__machine__resolve_kernel_addr(void *vmachine, unsigned long long *addrp, char **modp)
1592{
1593	struct machine *machine = vmachine;
1594
1595	if (machine->kptr_restrict_warned)
1596		return NULL;
1597
1598	if (symbol_conf.kptr_restrict) {
1599		pr_warning("Kernel address maps (/proc/{kallsyms,modules}) are restricted.\n\n"
1600			   "Check /proc/sys/kernel/kptr_restrict and /proc/sys/kernel/perf_event_paranoid.\n\n"
1601			   "Kernel samples will not be resolved.\n");
1602		machine->kptr_restrict_warned = true;
1603		return NULL;
1604	}
1605
1606	return machine__resolve_kernel_addr(vmachine, addrp, modp);
1607}
1608
1609static int trace__symbols_init(struct trace *trace, struct evlist *evlist)
1610{
1611	int err = symbol__init(NULL);
1612
1613	if (err)
1614		return err;
1615
1616	trace->host = machine__new_host();
1617	if (trace->host == NULL)
1618		return -ENOMEM;
1619
1620	err = trace_event__register_resolver(trace->host, trace__machine__resolve_kernel_addr);
1621	if (err < 0)
1622		goto out;
1623
1624	err = __machine__synthesize_threads(trace->host, &trace->tool, &trace->opts.target,
1625					    evlist->core.threads, trace__tool_process, false,
1626					    1);
1627out:
1628	if (err)
1629		symbol__exit();
1630
1631	return err;
1632}
1633
1634static void trace__symbols__exit(struct trace *trace)
1635{
1636	machine__exit(trace->host);
1637	trace->host = NULL;
1638
1639	symbol__exit();
1640}
1641
1642static int syscall__alloc_arg_fmts(struct syscall *sc, int nr_args)
1643{
1644	int idx;
1645
1646	if (nr_args == RAW_SYSCALL_ARGS_NUM && sc->fmt && sc->fmt->nr_args != 0)
1647		nr_args = sc->fmt->nr_args;
1648
1649	sc->arg_fmt = calloc(nr_args, sizeof(*sc->arg_fmt));
1650	if (sc->arg_fmt == NULL)
1651		return -1;
1652
1653	for (idx = 0; idx < nr_args; ++idx) {
1654		if (sc->fmt)
1655			sc->arg_fmt[idx] = sc->fmt->arg[idx];
1656	}
1657
1658	sc->nr_args = nr_args;
1659	return 0;
1660}
1661
1662static struct syscall_arg_fmt syscall_arg_fmts__by_name[] = {
1663	{ .name = "msr",	.scnprintf = SCA_X86_MSR,	  .strtoul = STUL_X86_MSR,	   },
1664	{ .name = "vector",	.scnprintf = SCA_X86_IRQ_VECTORS, .strtoul = STUL_X86_IRQ_VECTORS, },
1665};
1666
1667static int syscall_arg_fmt__cmp(const void *name, const void *fmtp)
1668{
1669       const struct syscall_arg_fmt *fmt = fmtp;
1670       return strcmp(name, fmt->name);
1671}
1672
1673static struct syscall_arg_fmt *
1674__syscall_arg_fmt__find_by_name(struct syscall_arg_fmt *fmts, const int nmemb, const char *name)
1675{
1676       return bsearch(name, fmts, nmemb, sizeof(struct syscall_arg_fmt), syscall_arg_fmt__cmp);
1677}
1678
1679static struct syscall_arg_fmt *syscall_arg_fmt__find_by_name(const char *name)
1680{
1681       const int nmemb = ARRAY_SIZE(syscall_arg_fmts__by_name);
1682       return __syscall_arg_fmt__find_by_name(syscall_arg_fmts__by_name, nmemb, name);
1683}
1684
1685static struct tep_format_field *
1686syscall_arg_fmt__init_array(struct syscall_arg_fmt *arg, struct tep_format_field *field)
1687{
1688	struct tep_format_field *last_field = NULL;
1689	int len;
1690
1691	for (; field; field = field->next, ++arg) {
1692		last_field = field;
1693
1694		if (arg->scnprintf)
1695			continue;
1696
1697		len = strlen(field->name);
1698
1699		if (strcmp(field->type, "const char *") == 0 &&
1700		    ((len >= 4 && strcmp(field->name + len - 4, "name") == 0) ||
1701		     strstr(field->name, "path") != NULL))
1702			arg->scnprintf = SCA_FILENAME;
1703		else if ((field->flags & TEP_FIELD_IS_POINTER) || strstr(field->name, "addr"))
1704			arg->scnprintf = SCA_PTR;
1705		else if (strcmp(field->type, "pid_t") == 0)
1706			arg->scnprintf = SCA_PID;
1707		else if (strcmp(field->type, "umode_t") == 0)
1708			arg->scnprintf = SCA_MODE_T;
1709		else if ((field->flags & TEP_FIELD_IS_ARRAY) && strstr(field->type, "char")) {
1710			arg->scnprintf = SCA_CHAR_ARRAY;
1711			arg->nr_entries = field->arraylen;
1712		} else if ((strcmp(field->type, "int") == 0 ||
1713			  strcmp(field->type, "unsigned int") == 0 ||
1714			  strcmp(field->type, "long") == 0) &&
1715			 len >= 2 && strcmp(field->name + len - 2, "fd") == 0) {
1716			/*
1717			 * /sys/kernel/tracing/events/syscalls/sys_enter*
1718			 * egrep 'field:.*fd;' .../format|sed -r 's/.*field:([a-z ]+) [a-z_]*fd.+/\1/g'|sort|uniq -c
1719			 * 65 int
1720			 * 23 unsigned int
1721			 * 7 unsigned long
1722			 */
1723			arg->scnprintf = SCA_FD;
1724               } else {
1725			struct syscall_arg_fmt *fmt = syscall_arg_fmt__find_by_name(field->name);
1726
1727			if (fmt) {
1728				arg->scnprintf = fmt->scnprintf;
1729				arg->strtoul   = fmt->strtoul;
1730			}
1731		}
1732	}
1733
1734	return last_field;
1735}
1736
1737static int syscall__set_arg_fmts(struct syscall *sc)
1738{
1739	struct tep_format_field *last_field = syscall_arg_fmt__init_array(sc->arg_fmt, sc->args);
1740
1741	if (last_field)
1742		sc->args_size = last_field->offset + last_field->size;
1743
1744	return 0;
1745}
1746
1747static int trace__read_syscall_info(struct trace *trace, int id)
1748{
1749	char tp_name[128];
1750	struct syscall *sc;
1751	const char *name = syscalltbl__name(trace->sctbl, id);
1752
1753#ifdef HAVE_SYSCALL_TABLE_SUPPORT
1754	if (trace->syscalls.table == NULL) {
1755		trace->syscalls.table = calloc(trace->sctbl->syscalls.max_id + 1, sizeof(*sc));
1756		if (trace->syscalls.table == NULL)
1757			return -ENOMEM;
1758	}
1759#else
1760	if (id > trace->sctbl->syscalls.max_id || (id == 0 && trace->syscalls.table == NULL)) {
1761		// When using libaudit we don't know beforehand what is the max syscall id
1762		struct syscall *table = realloc(trace->syscalls.table, (id + 1) * sizeof(*sc));
1763
1764		if (table == NULL)
1765			return -ENOMEM;
1766
1767		// Need to memset from offset 0 and +1 members if brand new
1768		if (trace->syscalls.table == NULL)
1769			memset(table, 0, (id + 1) * sizeof(*sc));
1770		else
1771			memset(table + trace->sctbl->syscalls.max_id + 1, 0, (id - trace->sctbl->syscalls.max_id) * sizeof(*sc));
1772
1773		trace->syscalls.table	      = table;
1774		trace->sctbl->syscalls.max_id = id;
1775	}
1776#endif
1777	sc = trace->syscalls.table + id;
1778	if (sc->nonexistent)
1779		return -EEXIST;
1780
1781	if (name == NULL) {
1782		sc->nonexistent = true;
1783		return -EEXIST;
1784	}
1785
1786	sc->name = name;
1787	sc->fmt  = syscall_fmt__find(sc->name);
1788
1789	snprintf(tp_name, sizeof(tp_name), "sys_enter_%s", sc->name);
1790	sc->tp_format = trace_event__tp_format("syscalls", tp_name);
1791
1792	if (IS_ERR(sc->tp_format) && sc->fmt && sc->fmt->alias) {
1793		snprintf(tp_name, sizeof(tp_name), "sys_enter_%s", sc->fmt->alias);
1794		sc->tp_format = trace_event__tp_format("syscalls", tp_name);
1795	}
1796
1797	/*
1798	 * Fails to read trace point format via sysfs node, so the trace point
1799	 * doesn't exist.  Set the 'nonexistent' flag as true.
1800	 */
1801	if (IS_ERR(sc->tp_format)) {
1802		sc->nonexistent = true;
1803		return PTR_ERR(sc->tp_format);
1804	}
1805
1806	if (syscall__alloc_arg_fmts(sc, IS_ERR(sc->tp_format) ?
1807					RAW_SYSCALL_ARGS_NUM : sc->tp_format->format.nr_fields))
1808		return -ENOMEM;
1809
1810	sc->args = sc->tp_format->format.fields;
1811	/*
1812	 * We need to check and discard the first variable '__syscall_nr'
1813	 * or 'nr' that mean the syscall number. It is needless here.
1814	 * So drop '__syscall_nr' or 'nr' field but does not exist on older kernels.
1815	 */
1816	if (sc->args && (!strcmp(sc->args->name, "__syscall_nr") || !strcmp(sc->args->name, "nr"))) {
1817		sc->args = sc->args->next;
1818		--sc->nr_args;
1819	}
1820
1821	sc->is_exit = !strcmp(name, "exit_group") || !strcmp(name, "exit");
1822	sc->is_open = !strcmp(name, "open") || !strcmp(name, "openat");
1823
1824	return syscall__set_arg_fmts(sc);
1825}
1826
1827static int evsel__init_tp_arg_scnprintf(struct evsel *evsel)
1828{
1829	struct syscall_arg_fmt *fmt = evsel__syscall_arg_fmt(evsel);
1830
1831	if (fmt != NULL) {
1832		syscall_arg_fmt__init_array(fmt, evsel->tp_format->format.fields);
1833		return 0;
1834	}
1835
1836	return -ENOMEM;
1837}
1838
1839static int intcmp(const void *a, const void *b)
1840{
1841	const int *one = a, *another = b;
1842
1843	return *one - *another;
1844}
1845
1846static int trace__validate_ev_qualifier(struct trace *trace)
1847{
1848	int err = 0;
1849	bool printed_invalid_prefix = false;
1850	struct str_node *pos;
1851	size_t nr_used = 0, nr_allocated = strlist__nr_entries(trace->ev_qualifier);
1852
1853	trace->ev_qualifier_ids.entries = malloc(nr_allocated *
1854						 sizeof(trace->ev_qualifier_ids.entries[0]));
1855
1856	if (trace->ev_qualifier_ids.entries == NULL) {
1857		fputs("Error:\tNot enough memory for allocating events qualifier ids\n",
1858		       trace->output);
1859		err = -EINVAL;
1860		goto out;
1861	}
1862
1863	strlist__for_each_entry(pos, trace->ev_qualifier) {
1864		const char *sc = pos->s;
1865		int id = syscalltbl__id(trace->sctbl, sc), match_next = -1;
1866
1867		if (id < 0) {
1868			id = syscalltbl__strglobmatch_first(trace->sctbl, sc, &match_next);
1869			if (id >= 0)
1870				goto matches;
1871
1872			if (!printed_invalid_prefix) {
1873				pr_debug("Skipping unknown syscalls: ");
1874				printed_invalid_prefix = true;
1875			} else {
1876				pr_debug(", ");
1877			}
1878
1879			pr_debug("%s", sc);
1880			continue;
1881		}
1882matches:
1883		trace->ev_qualifier_ids.entries[nr_used++] = id;
1884		if (match_next == -1)
1885			continue;
1886
1887		while (1) {
1888			id = syscalltbl__strglobmatch_next(trace->sctbl, sc, &match_next);
1889			if (id < 0)
1890				break;
1891			if (nr_allocated == nr_used) {
1892				void *entries;
1893
1894				nr_allocated += 8;
1895				entries = realloc(trace->ev_qualifier_ids.entries,
1896						  nr_allocated * sizeof(trace->ev_qualifier_ids.entries[0]));
1897				if (entries == NULL) {
1898					err = -ENOMEM;
1899					fputs("\nError:\t Not enough memory for parsing\n", trace->output);
1900					goto out_free;
1901				}
1902				trace->ev_qualifier_ids.entries = entries;
1903			}
1904			trace->ev_qualifier_ids.entries[nr_used++] = id;
1905		}
1906	}
1907
1908	trace->ev_qualifier_ids.nr = nr_used;
1909	qsort(trace->ev_qualifier_ids.entries, nr_used, sizeof(int), intcmp);
1910out:
1911	if (printed_invalid_prefix)
1912		pr_debug("\n");
1913	return err;
1914out_free:
1915	zfree(&trace->ev_qualifier_ids.entries);
1916	trace->ev_qualifier_ids.nr = 0;
1917	goto out;
1918}
1919
1920static __maybe_unused bool trace__syscall_enabled(struct trace *trace, int id)
1921{
1922	bool in_ev_qualifier;
1923
1924	if (trace->ev_qualifier_ids.nr == 0)
1925		return true;
1926
1927	in_ev_qualifier = bsearch(&id, trace->ev_qualifier_ids.entries,
1928				  trace->ev_qualifier_ids.nr, sizeof(int), intcmp) != NULL;
1929
1930	if (in_ev_qualifier)
1931	       return !trace->not_ev_qualifier;
1932
1933	return trace->not_ev_qualifier;
1934}
1935
1936/*
1937 * args is to be interpreted as a series of longs but we need to handle
1938 * 8-byte unaligned accesses. args points to raw_data within the event
1939 * and raw_data is guaranteed to be 8-byte unaligned because it is
1940 * preceded by raw_size which is a u32. So we need to copy args to a temp
1941 * variable to read it. Most notably this avoids extended load instructions
1942 * on unaligned addresses
1943 */
1944unsigned long syscall_arg__val(struct syscall_arg *arg, u8 idx)
1945{
1946	unsigned long val;
1947	unsigned char *p = arg->args + sizeof(unsigned long) * idx;
1948
1949	memcpy(&val, p, sizeof(val));
1950	return val;
1951}
1952
1953static size_t syscall__scnprintf_name(struct syscall *sc, char *bf, size_t size,
1954				      struct syscall_arg *arg)
1955{
1956	if (sc->arg_fmt && sc->arg_fmt[arg->idx].name)
1957		return scnprintf(bf, size, "%s: ", sc->arg_fmt[arg->idx].name);
1958
1959	return scnprintf(bf, size, "arg%d: ", arg->idx);
1960}
1961
1962/*
1963 * Check if the value is in fact zero, i.e. mask whatever needs masking, such
1964 * as mount 'flags' argument that needs ignoring some magic flag, see comment
1965 * in tools/perf/trace/beauty/mount_flags.c
1966 */
1967static unsigned long syscall_arg_fmt__mask_val(struct syscall_arg_fmt *fmt, struct syscall_arg *arg, unsigned long val)
1968{
1969	if (fmt && fmt->mask_val)
1970		return fmt->mask_val(arg, val);
1971
1972	return val;
1973}
1974
1975static size_t syscall_arg_fmt__scnprintf_val(struct syscall_arg_fmt *fmt, char *bf, size_t size,
1976					     struct syscall_arg *arg, unsigned long val)
1977{
1978	if (fmt && fmt->scnprintf) {
1979		arg->val = val;
1980		if (fmt->parm)
1981			arg->parm = fmt->parm;
1982		return fmt->scnprintf(bf, size, arg);
1983	}
1984	return scnprintf(bf, size, "%ld", val);
1985}
1986
1987static size_t syscall__scnprintf_args(struct syscall *sc, char *bf, size_t size,
1988				      unsigned char *args, void *augmented_args, int augmented_args_size,
1989				      struct trace *trace, struct thread *thread)
1990{
1991	size_t printed = 0;
1992	unsigned long val;
1993	u8 bit = 1;
1994	struct syscall_arg arg = {
1995		.args	= args,
1996		.augmented = {
1997			.size = augmented_args_size,
1998			.args = augmented_args,
1999		},
2000		.idx	= 0,
2001		.mask	= 0,
2002		.trace  = trace,
2003		.thread = thread,
2004		.show_string_prefix = trace->show_string_prefix,
2005	};
2006	struct thread_trace *ttrace = thread__priv(thread);
2007
2008	/*
2009	 * Things like fcntl will set this in its 'cmd' formatter to pick the
2010	 * right formatter for the return value (an fd? file flags?), which is
2011	 * not needed for syscalls that always return a given type, say an fd.
2012	 */
2013	ttrace->ret_scnprintf = NULL;
2014
2015	if (sc->args != NULL) {
2016		struct tep_format_field *field;
2017
2018		for (field = sc->args; field;
2019		     field = field->next, ++arg.idx, bit <<= 1) {
2020			if (arg.mask & bit)
2021				continue;
2022
2023			arg.fmt = &sc->arg_fmt[arg.idx];
2024			val = syscall_arg__val(&arg, arg.idx);
2025			/*
2026			 * Some syscall args need some mask, most don't and
2027			 * return val untouched.
2028			 */
2029			val = syscall_arg_fmt__mask_val(&sc->arg_fmt[arg.idx], &arg, val);
2030
2031			/*
2032 			 * Suppress this argument if its value is zero and
2033 			 * and we don't have a string associated in an
2034 			 * strarray for it.
2035 			 */
2036			if (val == 0 &&
2037			    !trace->show_zeros &&
2038			    !(sc->arg_fmt &&
2039			      (sc->arg_fmt[arg.idx].show_zero ||
2040			       sc->arg_fmt[arg.idx].scnprintf == SCA_STRARRAY ||
2041			       sc->arg_fmt[arg.idx].scnprintf == SCA_STRARRAYS) &&
2042			      sc->arg_fmt[arg.idx].parm))
2043				continue;
2044
2045			printed += scnprintf(bf + printed, size - printed, "%s", printed ? ", " : "");
2046
2047			if (trace->show_arg_names)
2048				printed += scnprintf(bf + printed, size - printed, "%s: ", field->name);
2049
2050			printed += syscall_arg_fmt__scnprintf_val(&sc->arg_fmt[arg.idx],
2051								  bf + printed, size - printed, &arg, val);
2052		}
2053	} else if (IS_ERR(sc->tp_format)) {
2054		/*
2055		 * If we managed to read the tracepoint /format file, then we
2056		 * may end up not having any args, like with gettid(), so only
2057		 * print the raw args when we didn't manage to read it.
2058		 */
2059		while (arg.idx < sc->nr_args) {
2060			if (arg.mask & bit)
2061				goto next_arg;
2062			val = syscall_arg__val(&arg, arg.idx);
2063			if (printed)
2064				printed += scnprintf(bf + printed, size - printed, ", ");
2065			printed += syscall__scnprintf_name(sc, bf + printed, size - printed, &arg);
2066			printed += syscall_arg_fmt__scnprintf_val(&sc->arg_fmt[arg.idx], bf + printed, size - printed, &arg, val);
2067next_arg:
2068			++arg.idx;
2069			bit <<= 1;
2070		}
2071	}
2072
2073	return printed;
2074}
2075
2076typedef int (*tracepoint_handler)(struct trace *trace, struct evsel *evsel,
2077				  union perf_event *event,
2078				  struct perf_sample *sample);
2079
2080static struct syscall *trace__syscall_info(struct trace *trace,
2081					   struct evsel *evsel, int id)
2082{
2083	int err = 0;
2084
2085	if (id < 0) {
2086
2087		/*
2088		 * XXX: Noticed on x86_64, reproduced as far back as 3.0.36, haven't tried
2089		 * before that, leaving at a higher verbosity level till that is
2090		 * explained. Reproduced with plain ftrace with:
2091		 *
2092		 * echo 1 > /t/events/raw_syscalls/sys_exit/enable
2093		 * grep "NR -1 " /t/trace_pipe
2094		 *
2095		 * After generating some load on the machine.
2096 		 */
2097		if (verbose > 1) {
2098			static u64 n;
2099			fprintf(trace->output, "Invalid syscall %d id, skipping (%s, %" PRIu64 ") ...\n",
2100				id, evsel__name(evsel), ++n);
2101		}
2102		return NULL;
2103	}
2104
2105	err = -EINVAL;
2106
2107#ifdef HAVE_SYSCALL_TABLE_SUPPORT
2108	if (id > trace->sctbl->syscalls.max_id) {
2109#else
2110	if (id >= trace->sctbl->syscalls.max_id) {
2111		/*
2112		 * With libaudit we don't know beforehand what is the max_id,
2113		 * so we let trace__read_syscall_info() figure that out as we
2114		 * go on reading syscalls.
2115		 */
2116		err = trace__read_syscall_info(trace, id);
2117		if (err)
2118#endif
2119		goto out_cant_read;
2120	}
2121
2122	if ((trace->syscalls.table == NULL || trace->syscalls.table[id].name == NULL) &&
2123	    (err = trace__read_syscall_info(trace, id)) != 0)
2124		goto out_cant_read;
2125
2126	if (trace->syscalls.table && trace->syscalls.table[id].nonexistent)
2127		goto out_cant_read;
2128
2129	return &trace->syscalls.table[id];
2130
2131out_cant_read:
2132	if (verbose > 0) {
2133		char sbuf[STRERR_BUFSIZE];
2134		fprintf(trace->output, "Problems reading syscall %d: %d (%s)", id, -err, str_error_r(-err, sbuf, sizeof(sbuf)));
2135		if (id <= trace->sctbl->syscalls.max_id && trace->syscalls.table[id].name != NULL)
2136			fprintf(trace->output, "(%s)", trace->syscalls.table[id].name);
2137		fputs(" information\n", trace->output);
2138	}
2139	return NULL;
2140}
2141
2142struct syscall_stats {
2143	struct stats stats;
2144	u64	     nr_failures;
2145	int	     max_errno;
2146	u32	     *errnos;
2147};
2148
2149static void thread__update_stats(struct thread *thread, struct thread_trace *ttrace,
2150				 int id, struct perf_sample *sample, long err, bool errno_summary)
2151{
2152	struct int_node *inode;
2153	struct syscall_stats *stats;
2154	u64 duration = 0;
2155
2156	inode = intlist__findnew(ttrace->syscall_stats, id);
2157	if (inode == NULL)
2158		return;
2159
2160	stats = inode->priv;
2161	if (stats == NULL) {
2162		stats = malloc(sizeof(*stats));
2163		if (stats == NULL)
2164			return;
2165
2166		stats->nr_failures = 0;
2167		stats->max_errno   = 0;
2168		stats->errnos	   = NULL;
2169		init_stats(&stats->stats);
2170		inode->priv = stats;
2171	}
2172
2173	if (ttrace->entry_time && sample->time > ttrace->entry_time)
2174		duration = sample->time - ttrace->entry_time;
2175
2176	update_stats(&stats->stats, duration);
2177
2178	if (err < 0) {
2179		++stats->nr_failures;
2180
2181		if (!errno_summary)
2182			return;
2183
2184		err = -err;
2185		if (err > stats->max_errno) {
2186			u32 *new_errnos = realloc(stats->errnos, err * sizeof(u32));
2187
2188			if (new_errnos) {
2189				memset(new_errnos + stats->max_errno, 0, (err - stats->max_errno) * sizeof(u32));
2190			} else {
2191				pr_debug("Not enough memory for errno stats for thread \"%s\"(%d/%d), results will be incomplete\n",
2192					 thread__comm_str(thread), thread->pid_, thread->tid);
2193				return;
2194			}
2195
2196			stats->errnos = new_errnos;
2197			stats->max_errno = err;
2198		}
2199
2200		++stats->errnos[err - 1];
2201	}
2202}
2203
2204static int trace__printf_interrupted_entry(struct trace *trace)
2205{
2206	struct thread_trace *ttrace;
2207	size_t printed;
2208	int len;
2209
2210	if (trace->failure_only || trace->current == NULL)
2211		return 0;
2212
2213	ttrace = thread__priv(trace->current);
2214
2215	if (!ttrace->entry_pending)
2216		return 0;
2217
2218	printed  = trace__fprintf_entry_head(trace, trace->current, 0, false, ttrace->entry_time, trace->output);
2219	printed += len = fprintf(trace->output, "%s)", ttrace->entry_str);
2220
2221	if (len < trace->args_alignment - 4)
2222		printed += fprintf(trace->output, "%-*s", trace->args_alignment - 4 - len, " ");
2223
2224	printed += fprintf(trace->output, " ...\n");
2225
2226	ttrace->entry_pending = false;
2227	++trace->nr_events_printed;
2228
2229	return printed;
2230}
2231
2232static int trace__fprintf_sample(struct trace *trace, struct evsel *evsel,
2233				 struct perf_sample *sample, struct thread *thread)
2234{
2235	int printed = 0;
2236
2237	if (trace->print_sample) {
2238		double ts = (double)sample->time / NSEC_PER_MSEC;
2239
2240		printed += fprintf(trace->output, "%22s %10.3f %s %d/%d [%d]\n",
2241				   evsel__name(evsel), ts,
2242				   thread__comm_str(thread),
2243				   sample->pid, sample->tid, sample->cpu);
2244	}
2245
2246	return printed;
2247}
2248
2249static void *syscall__augmented_args(struct syscall *sc, struct perf_sample *sample, int *augmented_args_size, int raw_augmented_args_size)
2250{
2251	void *augmented_args = NULL;
2252	/*
2253	 * For now with BPF raw_augmented we hook into raw_syscalls:sys_enter
2254	 * and there we get all 6 syscall args plus the tracepoint common fields
2255	 * that gets calculated at the start and the syscall_nr (another long).
2256	 * So we check if that is the case and if so don't look after the
2257	 * sc->args_size but always after the full raw_syscalls:sys_enter payload,
2258	 * which is fixed.
2259	 *
2260	 * We'll revisit this later to pass s->args_size to the BPF augmenter
2261	 * (now tools/perf/examples/bpf/augmented_raw_syscalls.c, so that it
2262	 * copies only what we need for each syscall, like what happens when we
2263	 * use syscalls:sys_enter_NAME, so that we reduce the kernel/userspace
2264	 * traffic to just what is needed for each syscall.
2265	 */
2266	int args_size = raw_augmented_args_size ?: sc->args_size;
2267
2268	*augmented_args_size = sample->raw_size - args_size;
2269	if (*augmented_args_size > 0)
2270		augmented_args = sample->raw_data + args_size;
2271
2272	return augmented_args;
2273}
2274
2275static int trace__sys_enter(struct trace *trace, struct evsel *evsel,
2276			    union perf_event *event __maybe_unused,
2277			    struct perf_sample *sample)
2278{
2279	char *msg;
2280	void *args;
2281	int printed = 0;
2282	struct thread *thread;
2283	int id = perf_evsel__sc_tp_uint(evsel, id, sample), err = -1;
2284	int augmented_args_size = 0;
2285	void *augmented_args = NULL;
2286	struct syscall *sc = trace__syscall_info(trace, evsel, id);
2287	struct thread_trace *ttrace;
2288
2289	if (sc == NULL)
2290		return -1;
2291
2292	thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
2293	ttrace = thread__trace(thread, trace->output);
2294	if (ttrace == NULL)
2295		goto out_put;
2296
2297	trace__fprintf_sample(trace, evsel, sample, thread);
2298
2299	args = perf_evsel__sc_tp_ptr(evsel, args, sample);
2300
2301	if (ttrace->entry_str == NULL) {
2302		ttrace->entry_str = malloc(trace__entry_str_size);
2303		if (!ttrace->entry_str)
2304			goto out_put;
2305	}
2306
2307	if (!(trace->duration_filter || trace->summary_only || trace->min_stack))
2308		trace__printf_interrupted_entry(trace);
2309	/*
2310	 * If this is raw_syscalls.sys_enter, then it always comes with the 6 possible
2311	 * arguments, even if the syscall being handled, say "openat", uses only 4 arguments
2312	 * this breaks syscall__augmented_args() check for augmented args, as we calculate
2313	 * syscall->args_size using each syscalls:sys_enter_NAME tracefs format file,
2314	 * so when handling, say the openat syscall, we end up getting 6 args for the
2315	 * raw_syscalls:sys_enter event, when we expected just 4, we end up mistakenly
2316	 * thinking that the extra 2 u64 args are the augmented filename, so just check
2317	 * here and avoid using augmented syscalls when the evsel is the raw_syscalls one.
2318	 */
2319	if (evsel != trace->syscalls.events.sys_enter)
2320		augmented_args = syscall__augmented_args(sc, sample, &augmented_args_size, trace->raw_augmented_syscalls_args_size);
2321	ttrace->entry_time = sample->time;
2322	msg = ttrace->entry_str;
2323	printed += scnprintf(msg + printed, trace__entry_str_size - printed, "%s(", sc->name);
2324
2325	printed += syscall__scnprintf_args(sc, msg + printed, trace__entry_str_size - printed,
2326					   args, augmented_args, augmented_args_size, trace, thread);
2327
2328	if (sc->is_exit) {
2329		if (!(trace->duration_filter || trace->summary_only || trace->failure_only || trace->min_stack)) {
2330			int alignment = 0;
2331
2332			trace__fprintf_entry_head(trace, thread, 0, false, ttrace->entry_time, trace->output);
2333			printed = fprintf(trace->output, "%s)", ttrace->entry_str);
2334			if (trace->args_alignment > printed)
2335				alignment = trace->args_alignment - printed;
2336			fprintf(trace->output, "%*s= ?\n", alignment, " ");
2337		}
2338	} else {
2339		ttrace->entry_pending = true;
2340		/* See trace__vfs_getname & trace__sys_exit */
2341		ttrace->filename.pending_open = false;
2342	}
2343
2344	if (trace->current != thread) {
2345		thread__put(trace->current);
2346		trace->current = thread__get(thread);
2347	}
2348	err = 0;
2349out_put:
2350	thread__put(thread);
2351	return err;
2352}
2353
2354static int trace__fprintf_sys_enter(struct trace *trace, struct evsel *evsel,
2355				    struct perf_sample *sample)
2356{
2357	struct thread_trace *ttrace;
2358	struct thread *thread;
2359	int id = perf_evsel__sc_tp_uint(evsel, id, sample), err = -1;
2360	struct syscall *sc = trace__syscall_info(trace, evsel, id);
2361	char msg[1024];
2362	void *args, *augmented_args = NULL;
2363	int augmented_args_size;
2364
2365	if (sc == NULL)
2366		return -1;
2367
2368	thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
2369	ttrace = thread__trace(thread, trace->output);
2370	/*
2371	 * We need to get ttrace just to make sure it is there when syscall__scnprintf_args()
2372	 * and the rest of the beautifiers accessing it via struct syscall_arg touches it.
2373	 */
2374	if (ttrace == NULL)
2375		goto out_put;
2376
2377	args = perf_evsel__sc_tp_ptr(evsel, args, sample);
2378	augmented_args = syscall__augmented_args(sc, sample, &augmented_args_size, trace->raw_augmented_syscalls_args_size);
2379	syscall__scnprintf_args(sc, msg, sizeof(msg), args, augmented_args, augmented_args_size, trace, thread);
2380	fprintf(trace->output, "%s", msg);
2381	err = 0;
2382out_put:
2383	thread__put(thread);
2384	return err;
2385}
2386
2387static int trace__resolve_callchain(struct trace *trace, struct evsel *evsel,
2388				    struct perf_sample *sample,
2389				    struct callchain_cursor *cursor)
2390{
2391	struct addr_location al;
2392	int max_stack = evsel->core.attr.sample_max_stack ?
2393			evsel->core.attr.sample_max_stack :
2394			trace->max_stack;
2395	int err;
2396
2397	if (machine__resolve(trace->host, &al, sample) < 0)
2398		return -1;
2399
2400	err = thread__resolve_callchain(al.thread, cursor, evsel, sample, NULL, NULL, max_stack);
2401	addr_location__put(&al);
2402	return err;
2403}
2404
2405static int trace__fprintf_callchain(struct trace *trace, struct perf_sample *sample)
2406{
2407	/* TODO: user-configurable print_opts */
2408	const unsigned int print_opts = EVSEL__PRINT_SYM |
2409				        EVSEL__PRINT_DSO |
2410				        EVSEL__PRINT_UNKNOWN_AS_ADDR;
2411
2412	return sample__fprintf_callchain(sample, 38, print_opts, &callchain_cursor, symbol_conf.bt_stop_list, trace->output);
2413}
2414
2415static const char *errno_to_name(struct evsel *evsel, int err)
2416{
2417	struct perf_env *env = evsel__env(evsel);
2418	const char *arch_name = perf_env__arch(env);
2419
2420	return arch_syscalls__strerrno(arch_name, err);
2421}
2422
2423static int trace__sys_exit(struct trace *trace, struct evsel *evsel,
2424			   union perf_event *event __maybe_unused,
2425			   struct perf_sample *sample)
2426{
2427	long ret;
2428	u64 duration = 0;
2429	bool duration_calculated = false;
2430	struct thread *thread;
2431	int id = perf_evsel__sc_tp_uint(evsel, id, sample), err = -1, callchain_ret = 0, printed = 0;
2432	int alignment = trace->args_alignment;
2433	struct syscall *sc = trace__syscall_info(trace, evsel, id);
2434	struct thread_trace *ttrace;
2435
2436	if (sc == NULL)
2437		return -1;
2438
2439	thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
2440	ttrace = thread__trace(thread, trace->output);
2441	if (ttrace == NULL)
2442		goto out_put;
2443
2444	trace__fprintf_sample(trace, evsel, sample, thread);
2445
2446	ret = perf_evsel__sc_tp_uint(evsel, ret, sample);
2447
2448	if (trace->summary)
2449		thread__update_stats(thread, ttrace, id, sample, ret, trace->errno_summary);
2450
2451	if (!trace->fd_path_disabled && sc->is_open && ret >= 0 && ttrace->filename.pending_open) {
2452		trace__set_fd_pathname(thread, ret, ttrace->filename.name);
2453		ttrace->filename.pending_open = false;
2454		++trace->stats.vfs_getname;
2455	}
2456
2457	if (ttrace->entry_time) {
2458		duration = sample->time - ttrace->entry_time;
2459		if (trace__filter_duration(trace, duration))
2460			goto out;
2461		duration_calculated = true;
2462	} else if (trace->duration_filter)
2463		goto out;
2464
2465	if (sample->callchain) {
2466		callchain_ret = trace__resolve_callchain(trace, evsel, sample, &callchain_cursor);
2467		if (callchain_ret == 0) {
2468			if (callchain_cursor.nr < trace->min_stack)
2469				goto out;
2470			callchain_ret = 1;
2471		}
2472	}
2473
2474	if (trace->summary_only || (ret >= 0 && trace->failure_only))
2475		goto out;
2476
2477	trace__fprintf_entry_head(trace, thread, duration, duration_calculated, ttrace->entry_time, trace->output);
2478
2479	if (ttrace->entry_pending) {
2480		printed = fprintf(trace->output, "%s", ttrace->entry_str);
2481	} else {
2482		printed += fprintf(trace->output, " ... [");
2483		color_fprintf(trace->output, PERF_COLOR_YELLOW, "continued");
2484		printed += 9;
2485		printed += fprintf(trace->output, "]: %s()", sc->name);
2486	}
2487
2488	printed++; /* the closing ')' */
2489
2490	if (alignment > printed)
2491		alignment -= printed;
2492	else
2493		alignment = 0;
2494
2495	fprintf(trace->output, ")%*s= ", alignment, " ");
2496
2497	if (sc->fmt == NULL) {
2498		if (ret < 0)
2499			goto errno_print;
2500signed_print:
2501		fprintf(trace->output, "%ld", ret);
2502	} else if (ret < 0) {
2503errno_print: {
2504		char bf[STRERR_BUFSIZE];
2505		const char *emsg = str_error_r(-ret, bf, sizeof(bf)),
2506			   *e = errno_to_name(evsel, -ret);
2507
2508		fprintf(trace->output, "-1 %s (%s)", e, emsg);
2509	}
2510	} else if (ret == 0 && sc->fmt->timeout)
2511		fprintf(trace->output, "0 (Timeout)");
2512	else if (ttrace->ret_scnprintf) {
2513		char bf[1024];
2514		struct syscall_arg arg = {
2515			.val	= ret,
2516			.thread	= thread,
2517			.trace	= trace,
2518		};
2519		ttrace->ret_scnprintf(bf, sizeof(bf), &arg);
2520		ttrace->ret_scnprintf = NULL;
2521		fprintf(trace->output, "%s", bf);
2522	} else if (sc->fmt->hexret)
2523		fprintf(trace->output, "%#lx", ret);
2524	else if (sc->fmt->errpid) {
2525		struct thread *child = machine__find_thread(trace->host, ret, ret);
2526
2527		if (child != NULL) {
2528			fprintf(trace->output, "%ld", ret);
2529			if (child->comm_set)
2530				fprintf(trace->output, " (%s)", thread__comm_str(child));
2531			thread__put(child);
2532		}
2533	} else
2534		goto signed_print;
2535
2536	fputc('\n', trace->output);
2537
2538	/*
2539	 * We only consider an 'event' for the sake of --max-events a non-filtered
2540	 * sys_enter + sys_exit and other tracepoint events.
2541	 */
2542	if (++trace->nr_events_printed == trace->max_events && trace->max_events != ULONG_MAX)
2543		interrupted = true;
2544
2545	if (callchain_ret > 0)
2546		trace__fprintf_callchain(trace, sample);
2547	else if (callchain_ret < 0)
2548		pr_err("Problem processing %s callchain, skipping...\n", evsel__name(evsel));
2549out:
2550	ttrace->entry_pending = false;
2551	err = 0;
2552out_put:
2553	thread__put(thread);
2554	return err;
2555}
2556
2557static int trace__vfs_getname(struct trace *trace, struct evsel *evsel,
2558			      union perf_event *event __maybe_unused,
2559			      struct perf_sample *sample)
2560{
2561	struct thread *thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
2562	struct thread_trace *ttrace;
2563	size_t filename_len, entry_str_len, to_move;
2564	ssize_t remaining_space;
2565	char *pos;
2566	const char *filename = evsel__rawptr(evsel, sample, "pathname");
2567
2568	if (!thread)
2569		goto out;
2570
2571	ttrace = thread__priv(thread);
2572	if (!ttrace)
2573		goto out_put;
2574
2575	filename_len = strlen(filename);
2576	if (filename_len == 0)
2577		goto out_put;
2578
2579	if (ttrace->filename.namelen < filename_len) {
2580		char *f = realloc(ttrace->filename.name, filename_len + 1);
2581
2582		if (f == NULL)
2583			goto out_put;
2584
2585		ttrace->filename.namelen = filename_len;
2586		ttrace->filename.name = f;
2587	}
2588
2589	strcpy(ttrace->filename.name, filename);
2590	ttrace->filename.pending_open = true;
2591
2592	if (!ttrace->filename.ptr)
2593		goto out_put;
2594
2595	entry_str_len = strlen(ttrace->entry_str);
2596	remaining_space = trace__entry_str_size - entry_str_len - 1; /* \0 */
2597	if (remaining_space <= 0)
2598		goto out_put;
2599
2600	if (filename_len > (size_t)remaining_space) {
2601		filename += filename_len - remaining_space;
2602		filename_len = remaining_space;
2603	}
2604
2605	to_move = entry_str_len - ttrace->filename.entry_str_pos + 1; /* \0 */
2606	pos = ttrace->entry_str + ttrace->filename.entry_str_pos;
2607	memmove(pos + filename_len, pos, to_move);
2608	memcpy(pos, filename, filename_len);
2609
2610	ttrace->filename.ptr = 0;
2611	ttrace->filename.entry_str_pos = 0;
2612out_put:
2613	thread__put(thread);
2614out:
2615	return 0;
2616}
2617
2618static int trace__sched_stat_runtime(struct trace *trace, struct evsel *evsel,
2619				     union perf_event *event __maybe_unused,
2620				     struct perf_sample *sample)
2621{
2622        u64 runtime = evsel__intval(evsel, sample, "runtime");
2623	double runtime_ms = (double)runtime / NSEC_PER_MSEC;
2624	struct thread *thread = machine__findnew_thread(trace->host,
2625							sample->pid,
2626							sample->tid);
2627	struct thread_trace *ttrace = thread__trace(thread, trace->output);
2628
2629	if (ttrace == NULL)
2630		goto out_dump;
2631
2632	ttrace->runtime_ms += runtime_ms;
2633	trace->runtime_ms += runtime_ms;
2634out_put:
2635	thread__put(thread);
2636	return 0;
2637
2638out_dump:
2639	fprintf(trace->output, "%s: comm=%s,pid=%u,runtime=%" PRIu64 ",vruntime=%" PRIu64 ")\n",
2640	       evsel->name,
2641	       evsel__strval(evsel, sample, "comm"),
2642	       (pid_t)evsel__intval(evsel, sample, "pid"),
2643	       runtime,
2644	       evsel__intval(evsel, sample, "vruntime"));
2645	goto out_put;
2646}
2647
2648static int bpf_output__printer(enum binary_printer_ops op,
2649			       unsigned int val, void *extra __maybe_unused, FILE *fp)
2650{
2651	unsigned char ch = (unsigned char)val;
2652
2653	switch (op) {
2654	case BINARY_PRINT_CHAR_DATA:
2655		return fprintf(fp, "%c", isprint(ch) ? ch : '.');
2656	case BINARY_PRINT_DATA_BEGIN:
2657	case BINARY_PRINT_LINE_BEGIN:
2658	case BINARY_PRINT_ADDR:
2659	case BINARY_PRINT_NUM_DATA:
2660	case BINARY_PRINT_NUM_PAD:
2661	case BINARY_PRINT_SEP:
2662	case BINARY_PRINT_CHAR_PAD:
2663	case BINARY_PRINT_LINE_END:
2664	case BINARY_PRINT_DATA_END:
2665	default:
2666		break;
2667	}
2668
2669	return 0;
2670}
2671
2672static void bpf_output__fprintf(struct trace *trace,
2673				struct perf_sample *sample)
2674{
2675	binary__fprintf(sample->raw_data, sample->raw_size, 8,
2676			bpf_output__printer, NULL, trace->output);
2677	++trace->nr_events_printed;
2678}
2679
2680static size_t trace__fprintf_tp_fields(struct trace *trace, struct evsel *evsel, struct perf_sample *sample,
2681				       struct thread *thread, void *augmented_args, int augmented_args_size)
2682{
2683	char bf[2048];
2684	size_t size = sizeof(bf);
2685	struct tep_format_field *field = evsel->tp_format->format.fields;
2686	struct syscall_arg_fmt *arg = __evsel__syscall_arg_fmt(evsel);
2687	size_t printed = 0;
2688	unsigned long val;
2689	u8 bit = 1;
2690	struct syscall_arg syscall_arg = {
2691		.augmented = {
2692			.size = augmented_args_size,
2693			.args = augmented_args,
2694		},
2695		.idx	= 0,
2696		.mask	= 0,
2697		.trace  = trace,
2698		.thread = thread,
2699		.show_string_prefix = trace->show_string_prefix,
2700	};
2701
2702	for (; field && arg; field = field->next, ++syscall_arg.idx, bit <<= 1, ++arg) {
2703		if (syscall_arg.mask & bit)
2704			continue;
2705
2706		syscall_arg.len = 0;
2707		syscall_arg.fmt = arg;
2708		if (field->flags & TEP_FIELD_IS_ARRAY) {
2709			int offset = field->offset;
2710
2711			if (field->flags & TEP_FIELD_IS_DYNAMIC) {
2712				offset = format_field__intval(field, sample, evsel->needs_swap);
2713				syscall_arg.len = offset >> 16;
2714				offset &= 0xffff;
2715			}
2716
2717			val = (uintptr_t)(sample->raw_data + offset);
2718		} else
2719			val = format_field__intval(field, sample, evsel->needs_swap);
2720		/*
2721		 * Some syscall args need some mask, most don't and
2722		 * return val untouched.
2723		 */
2724		val = syscall_arg_fmt__mask_val(arg, &syscall_arg, val);
2725
2726		/*
2727		 * Suppress this argument if its value is zero and
2728		 * and we don't have a string associated in an
2729		 * strarray for it.
2730		 */
2731		if (val == 0 &&
2732		    !trace->show_zeros &&
2733		    !((arg->show_zero ||
2734		       arg->scnprintf == SCA_STRARRAY ||
2735		       arg->scnprintf == SCA_STRARRAYS) &&
2736		      arg->parm))
2737			continue;
2738
2739		printed += scnprintf(bf + printed, size - printed, "%s", printed ? ", " : "");
2740
2741		/*
2742		 * XXX Perhaps we should have a show_tp_arg_names,
2743		 * leaving show_arg_names just for syscalls?
2744		 */
2745		if (1 || trace->show_arg_names)
2746			printed += scnprintf(bf + printed, size - printed, "%s: ", field->name);
2747
2748		printed += syscall_arg_fmt__scnprintf_val(arg, bf + printed, size - printed, &syscall_arg, val);
2749	}
2750
2751	return printed + fprintf(trace->output, "%s", bf);
2752}
2753
2754static int trace__event_handler(struct trace *trace, struct evsel *evsel,
2755				union perf_event *event __maybe_unused,
2756				struct perf_sample *sample)
2757{
2758	struct thread *thread;
2759	int callchain_ret = 0;
2760	/*
2761	 * Check if we called perf_evsel__disable(evsel) due to, for instance,
2762	 * this event's max_events having been hit and this is an entry coming
2763	 * from the ring buffer that we should discard, since the max events
2764	 * have already been considered/printed.
2765	 */
2766	if (evsel->disabled)
2767		return 0;
2768
2769	thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
2770
2771	if (sample->callchain) {
2772		callchain_ret = trace__resolve_callchain(trace, evsel, sample, &callchain_cursor);
2773		if (callchain_ret == 0) {
2774			if (callchain_cursor.nr < trace->min_stack)
2775				goto out;
2776			callchain_ret = 1;
2777		}
2778	}
2779
2780	trace__printf_interrupted_entry(trace);
2781	trace__fprintf_tstamp(trace, sample->time, trace->output);
2782
2783	if (trace->trace_syscalls && trace->show_duration)
2784		fprintf(trace->output, "(         ): ");
2785
2786	if (thread)
2787		trace__fprintf_comm_tid(trace, thread, trace->output);
2788
2789	if (evsel == trace->syscalls.events.augmented) {
2790		int id = perf_evsel__sc_tp_uint(evsel, id, sample);
2791		struct syscall *sc = trace__syscall_info(trace, evsel, id);
2792
2793		if (sc) {
2794			fprintf(trace->output, "%s(", sc->name);
2795			trace__fprintf_sys_enter(trace, evsel, sample);
2796			fputc(')', trace->output);
2797			goto newline;
2798		}
2799
2800		/*
2801		 * XXX: Not having the associated syscall info or not finding/adding
2802		 * 	the thread should never happen, but if it does...
2803		 * 	fall thru and print it as a bpf_output event.
2804		 */
2805	}
2806
2807	fprintf(trace->output, "%s(", evsel->name);
2808
2809	if (evsel__is_bpf_output(evsel)) {
2810		bpf_output__fprintf(trace, sample);
2811	} else if (evsel->tp_format) {
2812		if (strncmp(evsel->tp_format->name, "sys_enter_", 10) ||
2813		    trace__fprintf_sys_enter(trace, evsel, sample)) {
2814			if (trace->libtraceevent_print) {
2815				event_format__fprintf(evsel->tp_format, sample->cpu,
2816						      sample->raw_data, sample->raw_size,
2817						      trace->output);
2818			} else {
2819				trace__fprintf_tp_fields(trace, evsel, sample, thread, NULL, 0);
2820			}
2821		}
2822	}
2823
2824newline:
2825	fprintf(trace->output, ")\n");
2826
2827	if (callchain_ret > 0)
2828		trace__fprintf_callchain(trace, sample);
2829	else if (callchain_ret < 0)
2830		pr_err("Problem processing %s callchain, skipping...\n", evsel__name(evsel));
2831
2832	++trace->nr_events_printed;
2833
2834	if (evsel->max_events != ULONG_MAX && ++evsel->nr_events_printed == evsel->max_events) {
2835		evsel__disable(evsel);
2836		evsel__close(evsel);
2837	}
2838out:
2839	thread__put(thread);
2840	return 0;
2841}
2842
2843static void print_location(FILE *f, struct perf_sample *sample,
2844			   struct addr_location *al,
2845			   bool print_dso, bool print_sym)
2846{
2847
2848	if ((verbose > 0 || print_dso) && al->map)
2849		fprintf(f, "%s@", al->map->dso->long_name);
2850
2851	if ((verbose > 0 || print_sym) && al->sym)
2852		fprintf(f, "%s+0x%" PRIx64, al->sym->name,
2853			al->addr - al->sym->start);
2854	else if (al->map)
2855		fprintf(f, "0x%" PRIx64, al->addr);
2856	else
2857		fprintf(f, "0x%" PRIx64, sample->addr);
2858}
2859
2860static int trace__pgfault(struct trace *trace,
2861			  struct evsel *evsel,
2862			  union perf_event *event __maybe_unused,
2863			  struct perf_sample *sample)
2864{
2865	struct thread *thread;
2866	struct addr_location al;
2867	char map_type = 'd';
2868	struct thread_trace *ttrace;
2869	int err = -1;
2870	int callchain_ret = 0;
2871
2872	thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
2873
2874	if (sample->callchain) {
2875		callchain_ret = trace__resolve_callchain(trace, evsel, sample, &callchain_cursor);
2876		if (callchain_ret == 0) {
2877			if (callchain_cursor.nr < trace->min_stack)
2878				goto out_put;
2879			callchain_ret = 1;
2880		}
2881	}
2882
2883	ttrace = thread__trace(thread, trace->output);
2884	if (ttrace == NULL)
2885		goto out_put;
2886
2887	if (evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ)
2888		ttrace->pfmaj++;
2889	else
2890		ttrace->pfmin++;
2891
2892	if (trace->summary_only)
2893		goto out;
2894
2895	thread__find_symbol(thread, sample->cpumode, sample->ip, &al);
2896
2897	trace__fprintf_entry_head(trace, thread, 0, true, sample->time, trace->output);
2898
2899	fprintf(trace->output, "%sfault [",
2900		evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ ?
2901		"maj" : "min");
2902
2903	print_location(trace->output, sample, &al, false, true);
2904
2905	fprintf(trace->output, "] => ");
2906
2907	thread__find_symbol(thread, sample->cpumode, sample->addr, &al);
2908
2909	if (!al.map) {
2910		thread__find_symbol(thread, sample->cpumode, sample->addr, &al);
2911
2912		if (al.map)
2913			map_type = 'x';
2914		else
2915			map_type = '?';
2916	}
2917
2918	print_location(trace->output, sample, &al, true, false);
2919
2920	fprintf(trace->output, " (%c%c)\n", map_type, al.level);
2921
2922	if (callchain_ret > 0)
2923		trace__fprintf_callchain(trace, sample);
2924	else if (callchain_ret < 0)
2925		pr_err("Problem processing %s callchain, skipping...\n", evsel__name(evsel));
2926
2927	++trace->nr_events_printed;
2928out:
2929	err = 0;
2930out_put:
2931	thread__put(thread);
2932	return err;
2933}
2934
2935static void trace__set_base_time(struct trace *trace,
2936				 struct evsel *evsel,
2937				 struct perf_sample *sample)
2938{
2939	/*
2940	 * BPF events were not setting PERF_SAMPLE_TIME, so be more robust
2941	 * and don't use sample->time unconditionally, we may end up having
2942	 * some other event in the future without PERF_SAMPLE_TIME for good
2943	 * reason, i.e. we may not be interested in its timestamps, just in
2944	 * it taking place, picking some piece of information when it
2945	 * appears in our event stream (vfs_getname comes to mind).
2946	 */
2947	if (trace->base_time == 0 && !trace->full_time &&
2948	    (evsel->core.attr.sample_type & PERF_SAMPLE_TIME))
2949		trace->base_time = sample->time;
2950}
2951
2952static int trace__process_sample(struct perf_tool *tool,
2953				 union perf_event *event,
2954				 struct perf_sample *sample,
2955				 struct evsel *evsel,
2956				 struct machine *machine __maybe_unused)
2957{
2958	struct trace *trace = container_of(tool, struct trace, tool);
2959	struct thread *thread;
2960	int err = 0;
2961
2962	tracepoint_handler handler = evsel->handler;
2963
2964	thread = machine__findnew_thread(trace->host, sample->pid, sample->tid);
2965	if (thread && thread__is_filtered(thread))
2966		goto out;
2967
2968	trace__set_base_time(trace, evsel, sample);
2969
2970	if (handler) {
2971		++trace->nr_events;
2972		handler(trace, evsel, event, sample);
2973	}
2974out:
2975	thread__put(thread);
2976	return err;
2977}
2978
2979static int trace__record(struct trace *trace, int argc, const char **argv)
2980{
2981	unsigned int rec_argc, i, j;
2982	const char **rec_argv;
2983	const char * const record_args[] = {
2984		"record",
2985		"-R",
2986		"-m", "1024",
2987		"-c", "1",
2988	};
2989	pid_t pid = getpid();
2990	char *filter = asprintf__tp_filter_pids(1, &pid);
2991	const char * const sc_args[] = { "-e", };
2992	unsigned int sc_args_nr = ARRAY_SIZE(sc_args);
2993	const char * const majpf_args[] = { "-e", "major-faults" };
2994	unsigned int majpf_args_nr = ARRAY_SIZE(majpf_args);
2995	const char * const minpf_args[] = { "-e", "minor-faults" };
2996	unsigned int minpf_args_nr = ARRAY_SIZE(minpf_args);
2997	int err = -1;
2998
2999	/* +3 is for the event string below and the pid filter */
3000	rec_argc = ARRAY_SIZE(record_args) + sc_args_nr + 3 +
3001		majpf_args_nr + minpf_args_nr + argc;
3002	rec_argv = calloc(rec_argc + 1, sizeof(char *));
3003
3004	if (rec_argv == NULL || filter == NULL)
3005		goto out_free;
3006
3007	j = 0;
3008	for (i = 0; i < ARRAY_SIZE(record_args); i++)
3009		rec_argv[j++] = record_args[i];
3010
3011	if (trace->trace_syscalls) {
3012		for (i = 0; i < sc_args_nr; i++)
3013			rec_argv[j++] = sc_args[i];
3014
3015		/* event string may be different for older kernels - e.g., RHEL6 */
3016		if (is_valid_tracepoint("raw_syscalls:sys_enter"))
3017			rec_argv[j++] = "raw_syscalls:sys_enter,raw_syscalls:sys_exit";
3018		else if (is_valid_tracepoint("syscalls:sys_enter"))
3019			rec_argv[j++] = "syscalls:sys_enter,syscalls:sys_exit";
3020		else {
3021			pr_err("Neither raw_syscalls nor syscalls events exist.\n");
3022			goto out_free;
3023		}
3024	}
3025
3026	rec_argv[j++] = "--filter";
3027	rec_argv[j++] = filter;
3028
3029	if (trace->trace_pgfaults & TRACE_PFMAJ)
3030		for (i = 0; i < majpf_args_nr; i++)
3031			rec_argv[j++] = majpf_args[i];
3032
3033	if (trace->trace_pgfaults & TRACE_PFMIN)
3034		for (i = 0; i < minpf_args_nr; i++)
3035			rec_argv[j++] = minpf_args[i];
3036
3037	for (i = 0; i < (unsigned int)argc; i++)
3038		rec_argv[j++] = argv[i];
3039
3040	err = cmd_record(j, rec_argv);
3041out_free:
3042	free(filter);
3043	free(rec_argv);
3044	return err;
3045}
3046
3047static size_t trace__fprintf_thread_summary(struct trace *trace, FILE *fp);
3048
3049static bool evlist__add_vfs_getname(struct evlist *evlist)
3050{
3051	bool found = false;
3052	struct evsel *evsel, *tmp;
3053	struct parse_events_error err;
3054	int ret;
3055
3056	bzero(&err, sizeof(err));
3057	ret = parse_events(evlist, "probe:vfs_getname*", &err);
3058	if (ret) {
3059		free(err.str);
3060		free(err.help);
3061		free(err.first_str);
3062		free(err.first_help);
3063		return false;
3064	}
3065
3066	evlist__for_each_entry_safe(evlist, evsel, tmp) {
3067		if (!strstarts(evsel__name(evsel), "probe:vfs_getname"))
3068			continue;
3069
3070		if (evsel__field(evsel, "pathname")) {
3071			evsel->handler = trace__vfs_getname;
3072			found = true;
3073			continue;
3074		}
3075
3076		list_del_init(&evsel->core.node);
3077		evsel->evlist = NULL;
3078		evsel__delete(evsel);
3079	}
3080
3081	return found;
3082}
3083
3084static struct evsel *evsel__new_pgfault(u64 config)
3085{
3086	struct evsel *evsel;
3087	struct perf_event_attr attr = {
3088		.type = PERF_TYPE_SOFTWARE,
3089		.mmap_data = 1,
3090	};
3091
3092	attr.config = config;
3093	attr.sample_period = 1;
3094
3095	event_attr_init(&attr);
3096
3097	evsel = evsel__new(&attr);
3098	if (evsel)
3099		evsel->handler = trace__pgfault;
3100
3101	return evsel;
3102}
3103
3104static void trace__handle_event(struct trace *trace, union perf_event *event, struct perf_sample *sample)
3105{
3106	const u32 type = event->header.type;
3107	struct evsel *evsel;
3108
3109	if (type != PERF_RECORD_SAMPLE) {
3110		trace__process_event(trace, trace->host, event, sample);
3111		return;
3112	}
3113
3114	evsel = perf_evlist__id2evsel(trace->evlist, sample->id);
3115	if (evsel == NULL) {
3116		fprintf(trace->output, "Unknown tp ID %" PRIu64 ", skipping...\n", sample->id);
3117		return;
3118	}
3119
3120	if (evswitch__discard(&trace->evswitch, evsel))
3121		return;
3122
3123	trace__set_base_time(trace, evsel, sample);
3124
3125	if (evsel->core.attr.type == PERF_TYPE_TRACEPOINT &&
3126	    sample->raw_data == NULL) {
3127		fprintf(trace->output, "%s sample with no payload for tid: %d, cpu %d, raw_size=%d, skipping...\n",
3128		       evsel__name(evsel), sample->tid,
3129		       sample->cpu, sample->raw_size);
3130	} else {
3131		tracepoint_handler handler = evsel->handler;
3132		handler(trace, evsel, event, sample);
3133	}
3134
3135	if (trace->nr_events_printed >= trace->max_events && trace->max_events != ULONG_MAX)
3136		interrupted = true;
3137}
3138
3139static int trace__add_syscall_newtp(struct trace *trace)
3140{
3141	int ret = -1;
3142	struct evlist *evlist = trace->evlist;
3143	struct evsel *sys_enter, *sys_exit;
3144
3145	sys_enter = perf_evsel__raw_syscall_newtp("sys_enter", trace__sys_enter);
3146	if (sys_enter == NULL)
3147		goto out;
3148
3149	if (perf_evsel__init_sc_tp_ptr_field(sys_enter, args))
3150		goto out_delete_sys_enter;
3151
3152	sys_exit = perf_evsel__raw_syscall_newtp("sys_exit", trace__sys_exit);
3153	if (sys_exit == NULL)
3154		goto out_delete_sys_enter;
3155
3156	if (perf_evsel__init_sc_tp_uint_field(sys_exit, ret))
3157		goto out_delete_sys_exit;
3158
3159	evsel__config_callchain(sys_enter, &trace->opts, &callchain_param);
3160	evsel__config_callchain(sys_exit, &trace->opts, &callchain_param);
3161
3162	evlist__add(evlist, sys_enter);
3163	evlist__add(evlist, sys_exit);
3164
3165	if (callchain_param.enabled && !trace->kernel_syscallchains) {
3166		/*
3167		 * We're interested only in the user space callchain
3168		 * leading to the syscall, allow overriding that for
3169		 * debugging reasons using --kernel_syscall_callchains
3170		 */
3171		sys_exit->core.attr.exclude_callchain_kernel = 1;
3172	}
3173
3174	trace->syscalls.events.sys_enter = sys_enter;
3175	trace->syscalls.events.sys_exit  = sys_exit;
3176
3177	ret = 0;
3178out:
3179	return ret;
3180
3181out_delete_sys_exit:
3182	evsel__delete_priv(sys_exit);
3183out_delete_sys_enter:
3184	evsel__delete_priv(sys_enter);
3185	goto out;
3186}
3187
3188static int trace__set_ev_qualifier_tp_filter(struct trace *trace)
3189{
3190	int err = -1;
3191	struct evsel *sys_exit;
3192	char *filter = asprintf_expr_inout_ints("id", !trace->not_ev_qualifier,
3193						trace->ev_qualifier_ids.nr,
3194						trace->ev_qualifier_ids.entries);
3195
3196	if (filter == NULL)
3197		goto out_enomem;
3198
3199	if (!evsel__append_tp_filter(trace->syscalls.events.sys_enter, filter)) {
3200		sys_exit = trace->syscalls.events.sys_exit;
3201		err = evsel__append_tp_filter(sys_exit, filter);
3202	}
3203
3204	free(filter);
3205out:
3206	return err;
3207out_enomem:
3208	errno = ENOMEM;
3209	goto out;
3210}
3211
3212#ifdef HAVE_LIBBPF_SUPPORT
3213static struct bpf_map *trace__find_bpf_map_by_name(struct trace *trace, const char *name)
3214{
3215	if (trace->bpf_obj == NULL)
3216		return NULL;
3217
3218	return bpf_object__find_map_by_name(trace->bpf_obj, name);
3219}
3220
3221static void trace__set_bpf_map_filtered_pids(struct trace *trace)
3222{
3223	trace->filter_pids.map = trace__find_bpf_map_by_name(trace, "pids_filtered");
3224}
3225
3226static void trace__set_bpf_map_syscalls(struct trace *trace)
3227{
3228	trace->syscalls.map = trace__find_bpf_map_by_name(trace, "syscalls");
3229	trace->syscalls.prog_array.sys_enter = trace__find_bpf_map_by_name(trace, "syscalls_sys_enter");
3230	trace->syscalls.prog_array.sys_exit  = trace__find_bpf_map_by_name(trace, "syscalls_sys_exit");
3231}
3232
3233static struct bpf_program *trace__find_bpf_program_by_title(struct trace *trace, const char *name)
3234{
3235	if (trace->bpf_obj == NULL)
3236		return NULL;
3237
3238	return bpf_object__find_program_by_title(trace->bpf_obj, name);
3239}
3240
3241static struct bpf_program *trace__find_syscall_bpf_prog(struct trace *trace, struct syscall *sc,
3242							const char *prog_name, const char *type)
3243{
3244	struct bpf_program *prog;
3245
3246	if (prog_name == NULL) {
3247		char default_prog_name[256];
3248		scnprintf(default_prog_name, sizeof(default_prog_name), "!syscalls:sys_%s_%s", type, sc->name);
3249		prog = trace__find_bpf_program_by_title(trace, default_prog_name);
3250		if (prog != NULL)
3251			goto out_found;
3252		if (sc->fmt && sc->fmt->alias) {
3253			scnprintf(default_prog_name, sizeof(default_prog_name), "!syscalls:sys_%s_%s", type, sc->fmt->alias);
3254			prog = trace__find_bpf_program_by_title(trace, default_prog_name);
3255			if (prog != NULL)
3256				goto out_found;
3257		}
3258		goto out_unaugmented;
3259	}
3260
3261	prog = trace__find_bpf_program_by_title(trace, prog_name);
3262
3263	if (prog != NULL) {
3264out_found:
3265		return prog;
3266	}
3267
3268	pr_debug("Couldn't find BPF prog \"%s\" to associate with syscalls:sys_%s_%s, not augmenting it\n",
3269		 prog_name, type, sc->name);
3270out_unaugmented:
3271	return trace->syscalls.unaugmented_prog;
3272}
3273
3274static void trace__init_syscall_bpf_progs(struct trace *trace, int id)
3275{
3276	struct syscall *sc = trace__syscall_info(trace, NULL, id);
3277
3278	if (sc == NULL)
3279		return;
3280
3281	sc->bpf_prog.sys_enter = trace__find_syscall_bpf_prog(trace, sc, sc->fmt ? sc->fmt->bpf_prog_name.sys_enter : NULL, "enter");
3282	sc->bpf_prog.sys_exit  = trace__find_syscall_bpf_prog(trace, sc, sc->fmt ? sc->fmt->bpf_prog_name.sys_exit  : NULL,  "exit");
3283}
3284
3285static int trace__bpf_prog_sys_enter_fd(struct trace *trace, int id)
3286{
3287	struct syscall *sc = trace__syscall_info(trace, NULL, id);
3288	return sc ? bpf_program__fd(sc->bpf_prog.sys_enter) : bpf_program__fd(trace->syscalls.unaugmented_prog);
3289}
3290
3291static int trace__bpf_prog_sys_exit_fd(struct trace *trace, int id)
3292{
3293	struct syscall *sc = trace__syscall_info(trace, NULL, id);
3294	return sc ? bpf_program__fd(sc->bpf_prog.sys_exit) : bpf_program__fd(trace->syscalls.unaugmented_prog);
3295}
3296
3297static void trace__init_bpf_map_syscall_args(struct trace *trace, int id, struct bpf_map_syscall_entry *entry)
3298{
3299	struct syscall *sc = trace__syscall_info(trace, NULL, id);
3300	int arg = 0;
3301
3302	if (sc == NULL)
3303		goto out;
3304
3305	for (; arg < sc->nr_args; ++arg) {
3306		entry->string_args_len[arg] = 0;
3307		if (sc->arg_fmt[arg].scnprintf == SCA_FILENAME) {
3308			/* Should be set like strace -s strsize */
3309			entry->string_args_len[arg] = PATH_MAX;
3310		}
3311	}
3312out:
3313	for (; arg < 6; ++arg)
3314		entry->string_args_len[arg] = 0;
3315}
3316static int trace__set_ev_qualifier_bpf_filter(struct trace *trace)
3317{
3318	int fd = bpf_map__fd(trace->syscalls.map);
3319	struct bpf_map_syscall_entry value = {
3320		.enabled = !trace->not_ev_qualifier,
3321	};
3322	int err = 0;
3323	size_t i;
3324
3325	for (i = 0; i < trace->ev_qualifier_ids.nr; ++i) {
3326		int key = trace->ev_qualifier_ids.entries[i];
3327
3328		if (value.enabled) {
3329			trace__init_bpf_map_syscall_args(trace, key, &value);
3330			trace__init_syscall_bpf_progs(trace, key);
3331		}
3332
3333		err = bpf_map_update_elem(fd, &key, &value, BPF_EXIST);
3334		if (err)
3335			break;
3336	}
3337
3338	return err;
3339}
3340
3341static int __trace__init_syscalls_bpf_map(struct trace *trace, bool enabled)
3342{
3343	int fd = bpf_map__fd(trace->syscalls.map);
3344	struct bpf_map_syscall_entry value = {
3345		.enabled = enabled,
3346	};
3347	int err = 0, key;
3348
3349	for (key = 0; key < trace->sctbl->syscalls.nr_entries; ++key) {
3350		if (enabled)
3351			trace__init_bpf_map_syscall_args(trace, key, &value);
3352
3353		err = bpf_map_update_elem(fd, &key, &value, BPF_ANY);
3354		if (err)
3355			break;
3356	}
3357
3358	return err;
3359}
3360
3361static int trace__init_syscalls_bpf_map(struct trace *trace)
3362{
3363	bool enabled = true;
3364
3365	if (trace->ev_qualifier_ids.nr)
3366		enabled = trace->not_ev_qualifier;
3367
3368	return __trace__init_syscalls_bpf_map(trace, enabled);
3369}
3370
3371static struct bpf_program *trace__find_usable_bpf_prog_entry(struct trace *trace, struct syscall *sc)
3372{
3373	struct tep_format_field *field, *candidate_field;
3374	int id;
3375
3376	/*
3377	 * We're only interested in syscalls that have a pointer:
3378	 */
3379	for (field = sc->args; field; field = field->next) {
3380		if (field->flags & TEP_FIELD_IS_POINTER)
3381			goto try_to_find_pair;
3382	}
3383
3384	return NULL;
3385
3386try_to_find_pair:
3387	for (id = 0; id < trace->sctbl->syscalls.nr_entries; ++id) {
3388		struct syscall *pair = trace__syscall_info(trace, NULL, id);
3389		struct bpf_program *pair_prog;
3390		bool is_candidate = false;
3391
3392		if (pair == NULL || pair == sc ||
3393		    pair->bpf_prog.sys_enter == trace->syscalls.unaugmented_prog)
3394			continue;
3395
3396		for (field = sc->args, candidate_field = pair->args;
3397		     field && candidate_field; field = field->next, candidate_field = candidate_field->next) {
3398			bool is_pointer = field->flags & TEP_FIELD_IS_POINTER,
3399			     candidate_is_pointer = candidate_field->flags & TEP_FIELD_IS_POINTER;
3400
3401			if (is_pointer) {
3402			       if (!candidate_is_pointer) {
3403					// The candidate just doesn't copies our pointer arg, might copy other pointers we want.
3404					continue;
3405			       }
3406			} else {
3407				if (candidate_is_pointer) {
3408					// The candidate might copy a pointer we don't have, skip it.
3409					goto next_candidate;
3410				}
3411				continue;
3412			}
3413
3414			if (strcmp(field->type, candidate_field->type))
3415				goto next_candidate;
3416
3417			is_candidate = true;
3418		}
3419
3420		if (!is_candidate)
3421			goto next_candidate;
3422
3423		/*
3424		 * Check if the tentative pair syscall augmenter has more pointers, if it has,
3425		 * then it may be collecting that and we then can't use it, as it would collect
3426		 * more than what is common to the two syscalls.
3427		 */
3428		if (candidate_field) {
3429			for (candidate_field = candidate_field->next; candidate_field; candidate_field = candidate_field->next)
3430				if (candidate_field->flags & TEP_FIELD_IS_POINTER)
3431					goto next_candidate;
3432		}
3433
3434		pair_prog = pair->bpf_prog.sys_enter;
3435		/*
3436		 * If the pair isn't enabled, then its bpf_prog.sys_enter will not
3437		 * have been searched for, so search it here and if it returns the
3438		 * unaugmented one, then ignore it, otherwise we'll reuse that BPF
3439		 * program for a filtered syscall on a non-filtered one.
3440		 *
3441		 * For instance, we have "!syscalls:sys_enter_renameat" and that is
3442		 * useful for "renameat2".
3443		 */
3444		if (pair_prog == NULL) {
3445			pair_prog = trace__find_syscall_bpf_prog(trace, pair, pair->fmt ? pair->fmt->bpf_prog_name.sys_enter : NULL, "enter");
3446			if (pair_prog == trace->syscalls.unaugmented_prog)
3447				goto next_candidate;
3448		}
3449
3450		pr_debug("Reusing \"%s\" BPF sys_enter augmenter for \"%s\"\n", pair->name, sc->name);
3451		return pair_prog;
3452	next_candidate:
3453		continue;
3454	}
3455
3456	return NULL;
3457}
3458
3459static int trace__init_syscalls_bpf_prog_array_maps(struct trace *trace)
3460{
3461	int map_enter_fd = bpf_map__fd(trace->syscalls.prog_array.sys_enter),
3462	    map_exit_fd  = bpf_map__fd(trace->syscalls.prog_array.sys_exit);
3463	int err = 0, key;
3464
3465	for (key = 0; key < trace->sctbl->syscalls.nr_entries; ++key) {
3466		int prog_fd;
3467
3468		if (!trace__syscall_enabled(trace, key))
3469			continue;
3470
3471		trace__init_syscall_bpf_progs(trace, key);
3472
3473		// It'll get at least the "!raw_syscalls:unaugmented"
3474		prog_fd = trace__bpf_prog_sys_enter_fd(trace, key);
3475		err = bpf_map_update_elem(map_enter_fd, &key, &prog_fd, BPF_ANY);
3476		if (err)
3477			break;
3478		prog_fd = trace__bpf_prog_sys_exit_fd(trace, key);
3479		err = bpf_map_update_elem(map_exit_fd, &key, &prog_fd, BPF_ANY);
3480		if (err)
3481			break;
3482	}
3483
3484	/*
3485	 * Now lets do a second pass looking for enabled syscalls without
3486	 * an augmenter that have a signature that is a superset of another
3487	 * syscall with an augmenter so that we can auto-reuse it.
3488	 *
3489	 * I.e. if we have an augmenter for the "open" syscall that has
3490	 * this signature:
3491	 *
3492	 *   int open(const char *pathname, int flags, mode_t mode);
3493	 *
3494	 * I.e. that will collect just the first string argument, then we
3495	 * can reuse it for the 'creat' syscall, that has this signature:
3496	 *
3497	 *   int creat(const char *pathname, mode_t mode);
3498	 *
3499	 * and for:
3500	 *
3501	 *   int stat(const char *pathname, struct stat *statbuf);
3502	 *   int lstat(const char *pathname, struct stat *statbuf);
3503	 *
3504	 * Because the 'open' augmenter will collect the first arg as a string,
3505	 * and leave alone all the other args, which already helps with
3506	 * beautifying 'stat' and 'lstat''s pathname arg.
3507	 *
3508	 * Then, in time, when 'stat' gets an augmenter that collects both
3509	 * first and second arg (this one on the raw_syscalls:sys_exit prog
3510	 * array tail call, then that one will be used.
3511	 */
3512	for (key = 0; key < trace->sctbl->syscalls.nr_entries; ++key) {
3513		struct syscall *sc = trace__syscall_info(trace, NULL, key);
3514		struct bpf_program *pair_prog;
3515		int prog_fd;
3516
3517		if (sc == NULL || sc->bpf_prog.sys_enter == NULL)
3518			continue;
3519
3520		/*
3521		 * For now we're just reusing the sys_enter prog, and if it
3522		 * already has an augmenter, we don't need to find one.
3523		 */
3524		if (sc->bpf_prog.sys_enter != trace->syscalls.unaugmented_prog)
3525			continue;
3526
3527		/*
3528		 * Look at all the other syscalls for one that has a signature
3529		 * that is close enough that we can share:
3530		 */
3531		pair_prog = trace__find_usable_bpf_prog_entry(trace, sc);
3532		if (pair_prog == NULL)
3533			continue;
3534
3535		sc->bpf_prog.sys_enter = pair_prog;
3536
3537		/*
3538		 * Update the BPF_MAP_TYPE_PROG_SHARED for raw_syscalls:sys_enter
3539		 * with the fd for the program we're reusing:
3540		 */
3541		prog_fd = bpf_program__fd(sc->bpf_prog.sys_enter);
3542		err = bpf_map_update_elem(map_enter_fd, &key, &prog_fd, BPF_ANY);
3543		if (err)
3544			break;
3545	}
3546
3547
3548	return err;
3549}
3550
3551static void trace__delete_augmented_syscalls(struct trace *trace)
3552{
3553	struct evsel *evsel, *tmp;
3554
3555	evlist__remove(trace->evlist, trace->syscalls.events.augmented);
3556	evsel__delete(trace->syscalls.events.augmented);
3557	trace->syscalls.events.augmented = NULL;
3558
3559	evlist__for_each_entry_safe(trace->evlist, tmp, evsel) {
3560		if (evsel->bpf_obj == trace->bpf_obj) {
3561			evlist__remove(trace->evlist, evsel);
3562			evsel__delete(evsel);
3563		}
3564
3565	}
3566
3567	bpf_object__close(trace->bpf_obj);
3568	trace->bpf_obj = NULL;
3569}
3570#else // HAVE_LIBBPF_SUPPORT
3571static struct bpf_map *trace__find_bpf_map_by_name(struct trace *trace __maybe_unused,
3572						   const char *name __maybe_unused)
3573{
3574	return NULL;
3575}
3576
3577static void trace__set_bpf_map_filtered_pids(struct trace *trace __maybe_unused)
3578{
3579}
3580
3581static void trace__set_bpf_map_syscalls(struct trace *trace __maybe_unused)
3582{
3583}
3584
3585static int trace__set_ev_qualifier_bpf_filter(struct trace *trace __maybe_unused)
3586{
3587	return 0;
3588}
3589
3590static int trace__init_syscalls_bpf_map(struct trace *trace __maybe_unused)
3591{
3592	return 0;
3593}
3594
3595static struct bpf_program *trace__find_bpf_program_by_title(struct trace *trace __maybe_unused,
3596							    const char *name __maybe_unused)
3597{
3598	return NULL;
3599}
3600
3601static int trace__init_syscalls_bpf_prog_array_maps(struct trace *trace __maybe_unused)
3602{
3603	return 0;
3604}
3605
3606static void trace__delete_augmented_syscalls(struct trace *trace __maybe_unused)
3607{
3608}
3609#endif // HAVE_LIBBPF_SUPPORT
3610
3611static bool trace__only_augmented_syscalls_evsels(struct trace *trace)
3612{
3613	struct evsel *evsel;
3614
3615	evlist__for_each_entry(trace->evlist, evsel) {
3616		if (evsel == trace->syscalls.events.augmented ||
3617		    evsel->bpf_obj == trace->bpf_obj)
3618			continue;
3619
3620		return false;
3621	}
3622
3623	return true;
3624}
3625
3626static int trace__set_ev_qualifier_filter(struct trace *trace)
3627{
3628	if (trace->syscalls.map)
3629		return trace__set_ev_qualifier_bpf_filter(trace);
3630	if (trace->syscalls.events.sys_enter)
3631		return trace__set_ev_qualifier_tp_filter(trace);
3632	return 0;
3633}
3634
3635static int bpf_map__set_filter_pids(struct bpf_map *map __maybe_unused,
3636				    size_t npids __maybe_unused, pid_t *pids __maybe_unused)
3637{
3638	int err = 0;
3639#ifdef HAVE_LIBBPF_SUPPORT
3640	bool value = true;
3641	int map_fd = bpf_map__fd(map);
3642	size_t i;
3643
3644	for (i = 0; i < npids; ++i) {
3645		err = bpf_map_update_elem(map_fd, &pids[i], &value, BPF_ANY);
3646		if (err)
3647			break;
3648	}
3649#endif
3650	return err;
3651}
3652
3653static int trace__set_filter_loop_pids(struct trace *trace)
3654{
3655	unsigned int nr = 1, err;
3656	pid_t pids[32] = {
3657		getpid(),
3658	};
3659	struct thread *thread = machine__find_thread(trace->host, pids[0], pids[0]);
3660
3661	while (thread && nr < ARRAY_SIZE(pids)) {
3662		struct thread *parent = machine__find_thread(trace->host, thread->ppid, thread->ppid);
3663
3664		if (parent == NULL)
3665			break;
3666
3667		if (!strcmp(thread__comm_str(parent), "sshd") ||
3668		    strstarts(thread__comm_str(parent), "gnome-terminal")) {
3669			pids[nr++] = parent->tid;
3670			break;
3671		}
3672		thread = parent;
3673	}
3674
3675	err = perf_evlist__append_tp_filter_pids(trace->evlist, nr, pids);
3676	if (!err && trace->filter_pids.map)
3677		err = bpf_map__set_filter_pids(trace->filter_pids.map, nr, pids);
3678
3679	return err;
3680}
3681
3682static int trace__set_filter_pids(struct trace *trace)
3683{
3684	int err = 0;
3685	/*
3686	 * Better not use !target__has_task() here because we need to cover the
3687	 * case where no threads were specified in the command line, but a
3688	 * workload was, and in that case we will fill in the thread_map when
3689	 * we fork the workload in perf_evlist__prepare_workload.
3690	 */
3691	if (trace->filter_pids.nr > 0) {
3692		err = perf_evlist__append_tp_filter_pids(trace->evlist, trace->filter_pids.nr,
3693							 trace->filter_pids.entries);
3694		if (!err && trace->filter_pids.map) {
3695			err = bpf_map__set_filter_pids(trace->filter_pids.map, trace->filter_pids.nr,
3696						       trace->filter_pids.entries);
3697		}
3698	} else if (perf_thread_map__pid(trace->evlist->core.threads, 0) == -1) {
3699		err = trace__set_filter_loop_pids(trace);
3700	}
3701
3702	return err;
3703}
3704
3705static int __trace__deliver_event(struct trace *trace, union perf_event *event)
3706{
3707	struct evlist *evlist = trace->evlist;
3708	struct perf_sample sample;
3709	int err;
3710
3711	err = perf_evlist__parse_sample(evlist, event, &sample);
3712	if (err)
3713		fprintf(trace->output, "Can't parse sample, err = %d, skipping...\n", err);
3714	else
3715		trace__handle_event(trace, event, &sample);
3716
3717	return 0;
3718}
3719
3720static int __trace__flush_events(struct trace *trace)
3721{
3722	u64 first = ordered_events__first_time(&trace->oe.data);
3723	u64 flush = trace->oe.last - NSEC_PER_SEC;
3724
3725	/* Is there some thing to flush.. */
3726	if (first && first < flush)
3727		return ordered_events__flush_time(&trace->oe.data, flush);
3728
3729	return 0;
3730}
3731
3732static int trace__flush_events(struct trace *trace)
3733{
3734	return !trace->sort_events ? 0 : __trace__flush_events(trace);
3735}
3736
3737static int trace__deliver_event(struct trace *trace, union perf_event *event)
3738{
3739	int err;
3740
3741	if (!trace->sort_events)
3742		return __trace__deliver_event(trace, event);
3743
3744	err = perf_evlist__parse_sample_timestamp(trace->evlist, event, &trace->oe.last);
3745	if (err && err != -1)
3746		return err;
3747
3748	err = ordered_events__queue(&trace->oe.data, event, trace->oe.last, 0);
3749	if (err)
3750		return err;
3751
3752	return trace__flush_events(trace);
3753}
3754
3755static int ordered_events__deliver_event(struct ordered_events *oe,
3756					 struct ordered_event *event)
3757{
3758	struct trace *trace = container_of(oe, struct trace, oe.data);
3759
3760	return __trace__deliver_event(trace, event->event);
3761}
3762
3763static struct syscall_arg_fmt *evsel__find_syscall_arg_fmt_by_name(struct evsel *evsel, char *arg)
3764{
3765	struct tep_format_field *field;
3766	struct syscall_arg_fmt *fmt = __evsel__syscall_arg_fmt(evsel);
3767
3768	if (evsel->tp_format == NULL || fmt == NULL)
3769		return NULL;
3770
3771	for (field = evsel->tp_format->format.fields; field; field = field->next, ++fmt)
3772		if (strcmp(field->name, arg) == 0)
3773			return fmt;
3774
3775	return NULL;
3776}
3777
3778static int trace__expand_filter(struct trace *trace __maybe_unused, struct evsel *evsel)
3779{
3780	char *tok, *left = evsel->filter, *new_filter = evsel->filter;
3781
3782	while ((tok = strpbrk(left, "=<>!")) != NULL) {
3783		char *right = tok + 1, *right_end;
3784
3785		if (*right == '=')
3786			++right;
3787
3788		while (isspace(*right))
3789			++right;
3790
3791		if (*right == '\0')
3792			break;
3793
3794		while (!isalpha(*left))
3795			if (++left == tok) {
3796				/*
3797				 * Bail out, can't find the name of the argument that is being
3798				 * used in the filter, let it try to set this filter, will fail later.
3799				 */
3800				return 0;
3801			}
3802
3803		right_end = right + 1;
3804		while (isalnum(*right_end) || *right_end == '_' || *right_end == '|')
3805			++right_end;
3806
3807		if (isalpha(*right)) {
3808			struct syscall_arg_fmt *fmt;
3809			int left_size = tok - left,
3810			    right_size = right_end - right;
3811			char arg[128];
3812
3813			while (isspace(left[left_size - 1]))
3814				--left_size;
3815
3816			scnprintf(arg, sizeof(arg), "%.*s", left_size, left);
3817
3818			fmt = evsel__find_syscall_arg_fmt_by_name(evsel, arg);
3819			if (fmt == NULL) {
3820				pr_err("\"%s\" not found in \"%s\", can't set filter \"%s\"\n",
3821				       arg, evsel->name, evsel->filter);
3822				return -1;
3823			}
3824
3825			pr_debug2("trying to expand \"%s\" \"%.*s\" \"%.*s\" -> ",
3826				 arg, (int)(right - tok), tok, right_size, right);
3827
3828			if (fmt->strtoul) {
3829				u64 val;
3830				struct syscall_arg syscall_arg = {
3831					.parm = fmt->parm,
3832				};
3833
3834				if (fmt->strtoul(right, right_size, &syscall_arg, &val)) {
3835					char *n, expansion[19];
3836					int expansion_lenght = scnprintf(expansion, sizeof(expansion), "%#" PRIx64, val);
3837					int expansion_offset = right - new_filter;
3838
3839					pr_debug("%s", expansion);
3840
3841					if (asprintf(&n, "%.*s%s%s", expansion_offset, new_filter, expansion, right_end) < 0) {
3842						pr_debug(" out of memory!\n");
3843						free(new_filter);
3844						return -1;
3845					}
3846					if (new_filter != evsel->filter)
3847						free(new_filter);
3848					left = n + expansion_offset + expansion_lenght;
3849					new_filter = n;
3850				} else {
3851					pr_err("\"%.*s\" not found for \"%s\" in \"%s\", can't set filter \"%s\"\n",
3852					       right_size, right, arg, evsel->name, evsel->filter);
3853					return -1;
3854				}
3855			} else {
3856				pr_err("No resolver (strtoul) for \"%s\" in \"%s\", can't set filter \"%s\"\n",
3857				       arg, evsel->name, evsel->filter);
3858				return -1;
3859			}
3860
3861			pr_debug("\n");
3862		} else {
3863			left = right_end;
3864		}
3865	}
3866
3867	if (new_filter != evsel->filter) {
3868		pr_debug("New filter for %s: %s\n", evsel->name, new_filter);
3869		evsel__set_filter(evsel, new_filter);
3870		free(new_filter);
3871	}
3872
3873	return 0;
3874}
3875
3876static int trace__expand_filters(struct trace *trace, struct evsel **err_evsel)
3877{
3878	struct evlist *evlist = trace->evlist;
3879	struct evsel *evsel;
3880
3881	evlist__for_each_entry(evlist, evsel) {
3882		if (evsel->filter == NULL)
3883			continue;
3884
3885		if (trace__expand_filter(trace, evsel)) {
3886			*err_evsel = evsel;
3887			return -1;
3888		}
3889	}
3890
3891	return 0;
3892}
3893
3894static int trace__run(struct trace *trace, int argc, const char **argv)
3895{
3896	struct evlist *evlist = trace->evlist;
3897	struct evsel *evsel, *pgfault_maj = NULL, *pgfault_min = NULL;
3898	int err = -1, i;
3899	unsigned long before;
3900	const bool forks = argc > 0;
3901	bool draining = false;
3902
3903	trace->live = true;
3904
3905	if (!trace->raw_augmented_syscalls) {
3906		if (trace->trace_syscalls && trace__add_syscall_newtp(trace))
3907			goto out_error_raw_syscalls;
3908
3909		if (trace->trace_syscalls)
3910			trace->vfs_getname = evlist__add_vfs_getname(evlist);
3911	}
3912
3913	if ((trace->trace_pgfaults & TRACE_PFMAJ)) {
3914		pgfault_maj = evsel__new_pgfault(PERF_COUNT_SW_PAGE_FAULTS_MAJ);
3915		if (pgfault_maj == NULL)
3916			goto out_error_mem;
3917		evsel__config_callchain(pgfault_maj, &trace->opts, &callchain_param);
3918		evlist__add(evlist, pgfault_maj);
3919	}
3920
3921	if ((trace->trace_pgfaults & TRACE_PFMIN)) {
3922		pgfault_min = evsel__new_pgfault(PERF_COUNT_SW_PAGE_FAULTS_MIN);
3923		if (pgfault_min == NULL)
3924			goto out_error_mem;
3925		evsel__config_callchain(pgfault_min, &trace->opts, &callchain_param);
3926		evlist__add(evlist, pgfault_min);
3927	}
3928
3929	if (trace->sched &&
3930	    evlist__add_newtp(evlist, "sched", "sched_stat_runtime", trace__sched_stat_runtime))
3931		goto out_error_sched_stat_runtime;
3932	/*
3933	 * If a global cgroup was set, apply it to all the events without an
3934	 * explicit cgroup. I.e.:
3935	 *
3936	 * 	trace -G A -e sched:*switch
3937	 *
3938	 * Will set all raw_syscalls:sys_{enter,exit}, pgfault, vfs_getname, etc
3939	 * _and_ sched:sched_switch to the 'A' cgroup, while:
3940	 *
3941	 * trace -e sched:*switch -G A
3942	 *
3943	 * will only set the sched:sched_switch event to the 'A' cgroup, all the
3944	 * other events (raw_syscalls:sys_{enter,exit}, etc are left "without"
3945	 * a cgroup (on the root cgroup, sys wide, etc).
3946	 *
3947	 * Multiple cgroups:
3948	 *
3949	 * trace -G A -e sched:*switch -G B
3950	 *
3951	 * the syscall ones go to the 'A' cgroup, the sched:sched_switch goes
3952	 * to the 'B' cgroup.
3953	 *
3954	 * evlist__set_default_cgroup() grabs a reference of the passed cgroup
3955	 * only for the evsels still without a cgroup, i.e. evsel->cgroup == NULL.
3956	 */
3957	if (trace->cgroup)
3958		evlist__set_default_cgroup(trace->evlist, trace->cgroup);
3959
3960	err = perf_evlist__create_maps(evlist, &trace->opts.target);
3961	if (err < 0) {
3962		fprintf(trace->output, "Problems parsing the target to trace, check your options!\n");
3963		goto out_delete_evlist;
3964	}
3965
3966	err = trace__symbols_init(trace, evlist);
3967	if (err < 0) {
3968		fprintf(trace->output, "Problems initializing symbol libraries!\n");
3969		goto out_delete_evlist;
3970	}
3971
3972	perf_evlist__config(evlist, &trace->opts, &callchain_param);
3973
3974	signal(SIGCHLD, sig_handler);
3975	signal(SIGINT, sig_handler);
3976
3977	if (forks) {
3978		err = perf_evlist__prepare_workload(evlist, &trace->opts.target,
3979						    argv, false, NULL);
3980		if (err < 0) {
3981			fprintf(trace->output, "Couldn't run the workload!\n");
3982			goto out_delete_evlist;
3983		}
3984	}
3985
3986	err = evlist__open(evlist);
3987	if (err < 0)
3988		goto out_error_open;
3989
3990	err = bpf__apply_obj_config();
3991	if (err) {
3992		char errbuf[BUFSIZ];
3993
3994		bpf__strerror_apply_obj_config(err, errbuf, sizeof(errbuf));
3995		pr_err("ERROR: Apply config to BPF failed: %s\n",
3996			 errbuf);
3997		goto out_error_open;
3998	}
3999
4000	err = trace__set_filter_pids(trace);
4001	if (err < 0)
4002		goto out_error_mem;
4003
4004	if (trace->syscalls.map)
4005		trace__init_syscalls_bpf_map(trace);
4006
4007	if (trace->syscalls.prog_array.sys_enter)
4008		trace__init_syscalls_bpf_prog_array_maps(trace);
4009
4010	if (trace->ev_qualifier_ids.nr > 0) {
4011		err = trace__set_ev_qualifier_filter(trace);
4012		if (err < 0)
4013			goto out_errno;
4014
4015		if (trace->syscalls.events.sys_exit) {
4016			pr_debug("event qualifier tracepoint filter: %s\n",
4017				 trace->syscalls.events.sys_exit->filter);
4018		}
4019	}
4020
4021	/*
4022	 * If the "close" syscall is not traced, then we will not have the
4023	 * opportunity to, in syscall_arg__scnprintf_close_fd() invalidate the
4024	 * fd->pathname table and were ending up showing the last value set by
4025	 * syscalls opening a pathname and associating it with a descriptor or
4026	 * reading it from /proc/pid/fd/ in cases where that doesn't make
4027	 * sense.
4028	 *
4029	 *  So just disable this beautifier (SCA_FD, SCA_FDAT) when 'close' is
4030	 *  not in use.
4031	 */
4032	trace->fd_path_disabled = !trace__syscall_enabled(trace, syscalltbl__id(trace->sctbl, "close"));
4033
4034	err = trace__expand_filters(trace, &evsel);
4035	if (err)
4036		goto out_delete_evlist;
4037	err = perf_evlist__apply_filters(evlist, &evsel);
4038	if (err < 0)
4039		goto out_error_apply_filters;
4040
4041	if (trace->dump.map)
4042		bpf_map__fprintf(trace->dump.map, trace->output);
4043
4044	err = evlist__mmap(evlist, trace->opts.mmap_pages);
4045	if (err < 0)
4046		goto out_error_mmap;
4047
4048	if (!target__none(&trace->opts.target) && !trace->opts.initial_delay)
4049		evlist__enable(evlist);
4050
4051	if (forks)
4052		perf_evlist__start_workload(evlist);
4053
4054	if (trace->opts.initial_delay) {
4055		usleep(trace->opts.initial_delay * 1000);
4056		evlist__enable(evlist);
4057	}
4058
4059	trace->multiple_threads = perf_thread_map__pid(evlist->core.threads, 0) == -1 ||
4060				  evlist->core.threads->nr > 1 ||
4061				  evlist__first(evlist)->core.attr.inherit;
4062
4063	/*
4064	 * Now that we already used evsel->core.attr to ask the kernel to setup the
4065	 * events, lets reuse evsel->core.attr.sample_max_stack as the limit in
4066	 * trace__resolve_callchain(), allowing per-event max-stack settings
4067	 * to override an explicitly set --max-stack global setting.
4068	 */
4069	evlist__for_each_entry(evlist, evsel) {
4070		if (evsel__has_callchain(evsel) &&
4071		    evsel->core.attr.sample_max_stack == 0)
4072			evsel->core.attr.sample_max_stack = trace->max_stack;
4073	}
4074again:
4075	before = trace->nr_events;
4076
4077	for (i = 0; i < evlist->core.nr_mmaps; i++) {
4078		union perf_event *event;
4079		struct mmap *md;
4080
4081		md = &evlist->mmap[i];
4082		if (perf_mmap__read_init(&md->core) < 0)
4083			continue;
4084
4085		while ((event = perf_mmap__read_event(&md->core)) != NULL) {
4086			++trace->nr_events;
4087
4088			err = trace__deliver_event(trace, event);
4089			if (err)
4090				goto out_disable;
4091
4092			perf_mmap__consume(&md->core);
4093
4094			if (interrupted)
4095				goto out_disable;
4096
4097			if (done && !draining) {
4098				evlist__disable(evlist);
4099				draining = true;
4100			}
4101		}
4102		perf_mmap__read_done(&md->core);
4103	}
4104
4105	if (trace->nr_events == before) {
4106		int timeout = done ? 100 : -1;
4107
4108		if (!draining && evlist__poll(evlist, timeout) > 0) {
4109			if (evlist__filter_pollfd(evlist, POLLERR | POLLHUP | POLLNVAL) == 0)
4110				draining = true;
4111
4112			goto again;
4113		} else {
4114			if (trace__flush_events(trace))
4115				goto out_disable;
4116		}
4117	} else {
4118		goto again;
4119	}
4120
4121out_disable:
4122	thread__zput(trace->current);
4123
4124	evlist__disable(evlist);
4125
4126	if (trace->sort_events)
4127		ordered_events__flush(&trace->oe.data, OE_FLUSH__FINAL);
4128
4129	if (!err) {
4130		if (trace->summary)
4131			trace__fprintf_thread_summary(trace, trace->output);
4132
4133		if (trace->show_tool_stats) {
4134			fprintf(trace->output, "Stats:\n "
4135					       " vfs_getname : %" PRIu64 "\n"
4136					       " proc_getname: %" PRIu64 "\n",
4137				trace->stats.vfs_getname,
4138				trace->stats.proc_getname);
4139		}
4140	}
4141
4142out_delete_evlist:
4143	trace__symbols__exit(trace);
4144
4145	evlist__delete(evlist);
4146	cgroup__put(trace->cgroup);
4147	trace->evlist = NULL;
4148	trace->live = false;
4149	return err;
4150{
4151	char errbuf[BUFSIZ];
4152
4153out_error_sched_stat_runtime:
4154	tracing_path__strerror_open_tp(errno, errbuf, sizeof(errbuf), "sched", "sched_stat_runtime");
4155	goto out_error;
4156
4157out_error_raw_syscalls:
4158	tracing_path__strerror_open_tp(errno, errbuf, sizeof(errbuf), "raw_syscalls", "sys_(enter|exit)");
4159	goto out_error;
4160
4161out_error_mmap:
4162	evlist__strerror_mmap(evlist, errno, errbuf, sizeof(errbuf));
4163	goto out_error;
4164
4165out_error_open:
4166	evlist__strerror_open(evlist, errno, errbuf, sizeof(errbuf));
4167
4168out_error:
4169	fprintf(trace->output, "%s\n", errbuf);
4170	goto out_delete_evlist;
4171
4172out_error_apply_filters:
4173	fprintf(trace->output,
4174		"Failed to set filter \"%s\" on event %s with %d (%s)\n",
4175		evsel->filter, evsel__name(evsel), errno,
4176		str_error_r(errno, errbuf, sizeof(errbuf)));
4177	goto out_delete_evlist;
4178}
4179out_error_mem:
4180	fprintf(trace->output, "Not enough memory to run!\n");
4181	goto out_delete_evlist;
4182
4183out_errno:
4184	fprintf(trace->output, "errno=%d,%s\n", errno, strerror(errno));
4185	goto out_delete_evlist;
4186}
4187
4188static int trace__replay(struct trace *trace)
4189{
4190	const struct evsel_str_handler handlers[] = {
4191		{ "probe:vfs_getname",	     trace__vfs_getname, },
4192	};
4193	struct perf_data data = {
4194		.path  = input_name,
4195		.mode  = PERF_DATA_MODE_READ,
4196		.force = trace->force,
4197	};
4198	struct perf_session *session;
4199	struct evsel *evsel;
4200	int err = -1;
4201
4202	trace->tool.sample	  = trace__process_sample;
4203	trace->tool.mmap	  = perf_event__process_mmap;
4204	trace->tool.mmap2	  = perf_event__process_mmap2;
4205	trace->tool.comm	  = perf_event__process_comm;
4206	trace->tool.exit	  = perf_event__process_exit;
4207	trace->tool.fork	  = perf_event__process_fork;
4208	trace->tool.attr	  = perf_event__process_attr;
4209	trace->tool.tracing_data  = perf_event__process_tracing_data;
4210	trace->tool.build_id	  = perf_event__process_build_id;
4211	trace->tool.namespaces	  = perf_event__process_namespaces;
4212
4213	trace->tool.ordered_events = true;
4214	trace->tool.ordering_requires_timestamps = true;
4215
4216	/* add tid to output */
4217	trace->multiple_threads = true;
4218
4219	session = perf_session__new(&data, false, &trace->tool);
4220	if (IS_ERR(session))
4221		return PTR_ERR(session);
4222
4223	if (trace->opts.target.pid)
4224		symbol_conf.pid_list_str = strdup(trace->opts.target.pid);
4225
4226	if (trace->opts.target.tid)
4227		symbol_conf.tid_list_str = strdup(trace->opts.target.tid);
4228
4229	if (symbol__init(&session->header.env) < 0)
4230		goto out;
4231
4232	trace->host = &session->machines.host;
4233
4234	err = perf_session__set_tracepoints_handlers(session, handlers);
4235	if (err)
4236		goto out;
4237
4238	evsel = perf_evlist__find_tracepoint_by_name(session->evlist,
4239						     "raw_syscalls:sys_enter");
4240	/* older kernels have syscalls tp versus raw_syscalls */
4241	if (evsel == NULL)
4242		evsel = perf_evlist__find_tracepoint_by_name(session->evlist,
4243							     "syscalls:sys_enter");
4244
4245	if (evsel &&
4246	    (evsel__init_raw_syscall_tp(evsel, trace__sys_enter) < 0 ||
4247	    perf_evsel__init_sc_tp_ptr_field(evsel, args))) {
4248		pr_err("Error during initialize raw_syscalls:sys_enter event\n");
4249		goto out;
4250	}
4251
4252	evsel = perf_evlist__find_tracepoint_by_name(session->evlist,
4253						     "raw_syscalls:sys_exit");
4254	if (evsel == NULL)
4255		evsel = perf_evlist__find_tracepoint_by_name(session->evlist,
4256							     "syscalls:sys_exit");
4257	if (evsel &&
4258	    (evsel__init_raw_syscall_tp(evsel, trace__sys_exit) < 0 ||
4259	    perf_evsel__init_sc_tp_uint_field(evsel, ret))) {
4260		pr_err("Error during initialize raw_syscalls:sys_exit event\n");
4261		goto out;
4262	}
4263
4264	evlist__for_each_entry(session->evlist, evsel) {
4265		if (evsel->core.attr.type == PERF_TYPE_SOFTWARE &&
4266		    (evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS_MAJ ||
4267		     evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS_MIN ||
4268		     evsel->core.attr.config == PERF_COUNT_SW_PAGE_FAULTS))
4269			evsel->handler = trace__pgfault;
4270	}
4271
4272	setup_pager();
4273
4274	err = perf_session__process_events(session);
4275	if (err)
4276		pr_err("Failed to process events, error %d", err);
4277
4278	else if (trace->summary)
4279		trace__fprintf_thread_summary(trace, trace->output);
4280
4281out:
4282	perf_session__delete(session);
4283
4284	return err;
4285}
4286
4287static size_t trace__fprintf_threads_header(FILE *fp)
4288{
4289	size_t printed;
4290
4291	printed  = fprintf(fp, "\n Summary of events:\n\n");
4292
4293	return printed;
4294}
4295
4296DEFINE_RESORT_RB(syscall_stats, a->msecs > b->msecs,
4297	struct syscall_stats *stats;
4298	double		     msecs;
4299	int		     syscall;
4300)
4301{
4302	struct int_node *source = rb_entry(nd, struct int_node, rb_node);
4303	struct syscall_stats *stats = source->priv;
4304
4305	entry->syscall = source->i;
4306	entry->stats   = stats;
4307	entry->msecs   = stats ? (u64)stats->stats.n * (avg_stats(&stats->stats) / NSEC_PER_MSEC) : 0;
4308}
4309
4310static size_t thread__dump_stats(struct thread_trace *ttrace,
4311				 struct trace *trace, FILE *fp)
4312{
4313	size_t printed = 0;
4314	struct syscall *sc;
4315	struct rb_node *nd;
4316	DECLARE_RESORT_RB_INTLIST(syscall_stats, ttrace->syscall_stats);
4317
4318	if (syscall_stats == NULL)
4319		return 0;
4320
4321	printed += fprintf(fp, "\n");
4322
4323	printed += fprintf(fp, "   syscall            calls  errors  total       min       avg       max       stddev\n");
4324	printed += fprintf(fp, "                                     (msec)    (msec)    (msec)    (msec)        (%%)\n");
4325	printed += fprintf(fp, "   --------------- --------  ------ -------- --------- --------- ---------     ------\n");
4326
4327	resort_rb__for_each_entry(nd, syscall_stats) {
4328		struct syscall_stats *stats = syscall_stats_entry->stats;
4329		if (stats) {
4330			double min = (double)(stats->stats.min) / NSEC_PER_MSEC;
4331			double max = (double)(stats->stats.max) / NSEC_PER_MSEC;
4332			double avg = avg_stats(&stats->stats);
4333			double pct;
4334			u64 n = (u64)stats->stats.n;
4335
4336			pct = avg ? 100.0 * stddev_stats(&stats->stats) / avg : 0.0;
4337			avg /= NSEC_PER_MSEC;
4338
4339			sc = &trace->syscalls.table[syscall_stats_entry->syscall];
4340			printed += fprintf(fp, "   %-15s", sc->name);
4341			printed += fprintf(fp, " %8" PRIu64 " %6" PRIu64 " %9.3f %9.3f %9.3f",
4342					   n, stats->nr_failures, syscall_stats_entry->msecs, min, avg);
4343			printed += fprintf(fp, " %9.3f %9.2f%%\n", max, pct);
4344
4345			if (trace->errno_summary && stats->nr_failures) {
4346				const char *arch_name = perf_env__arch(trace->host->env);
4347				int e;
4348
4349				for (e = 0; e < stats->max_errno; ++e) {
4350					if (stats->errnos[e] != 0)
4351						fprintf(fp, "\t\t\t\t%s: %d\n", arch_syscalls__strerrno(arch_name, e + 1), stats->errnos[e]);
4352				}
4353			}
4354		}
4355	}
4356
4357	resort_rb__delete(syscall_stats);
4358	printed += fprintf(fp, "\n\n");
4359
4360	return printed;
4361}
4362
4363static size_t trace__fprintf_thread(FILE *fp, struct thread *thread, struct trace *trace)
4364{
4365	size_t printed = 0;
4366	struct thread_trace *ttrace = thread__priv(thread);
4367	double ratio;
4368
4369	if (ttrace == NULL)
4370		return 0;
4371
4372	ratio = (double)ttrace->nr_events / trace->nr_events * 100.0;
4373
4374	printed += fprintf(fp, " %s (%d), ", thread__comm_str(thread), thread->tid);
4375	printed += fprintf(fp, "%lu events, ", ttrace->nr_events);
4376	printed += fprintf(fp, "%.1f%%", ratio);
4377	if (ttrace->pfmaj)
4378		printed += fprintf(fp, ", %lu majfaults", ttrace->pfmaj);
4379	if (ttrace->pfmin)
4380		printed += fprintf(fp, ", %lu minfaults", ttrace->pfmin);
4381	if (trace->sched)
4382		printed += fprintf(fp, ", %.3f msec\n", ttrace->runtime_ms);
4383	else if (fputc('\n', fp) != EOF)
4384		++printed;
4385
4386	printed += thread__dump_stats(ttrace, trace, fp);
4387
4388	return printed;
4389}
4390
4391static unsigned long thread__nr_events(struct thread_trace *ttrace)
4392{
4393	return ttrace ? ttrace->nr_events : 0;
4394}
4395
4396DEFINE_RESORT_RB(threads, (thread__nr_events(a->thread->priv) < thread__nr_events(b->thread->priv)),
4397	struct thread *thread;
4398)
4399{
4400	entry->thread = rb_entry(nd, struct thread, rb_node);
4401}
4402
4403static size_t trace__fprintf_thread_summary(struct trace *trace, FILE *fp)
4404{
4405	size_t printed = trace__fprintf_threads_header(fp);
4406	struct rb_node *nd;
4407	int i;
4408
4409	for (i = 0; i < THREADS__TABLE_SIZE; i++) {
4410		DECLARE_RESORT_RB_MACHINE_THREADS(threads, trace->host, i);
4411
4412		if (threads == NULL) {
4413			fprintf(fp, "%s", "Error sorting output by nr_events!\n");
4414			return 0;
4415		}
4416
4417		resort_rb__for_each_entry(nd, threads)
4418			printed += trace__fprintf_thread(fp, threads_entry->thread, trace);
4419
4420		resort_rb__delete(threads);
4421	}
4422	return printed;
4423}
4424
4425static int trace__set_duration(const struct option *opt, const char *str,
4426			       int unset __maybe_unused)
4427{
4428	struct trace *trace = opt->value;
4429
4430	trace->duration_filter = atof(str);
4431	return 0;
4432}
4433
4434static int trace__set_filter_pids_from_option(const struct option *opt, const char *str,
4435					      int unset __maybe_unused)
4436{
4437	int ret = -1;
4438	size_t i;
4439	struct trace *trace = opt->value;
4440	/*
4441	 * FIXME: introduce a intarray class, plain parse csv and create a
4442	 * { int nr, int entries[] } struct...
4443	 */
4444	struct intlist *list = intlist__new(str);
4445
4446	if (list == NULL)
4447		return -1;
4448
4449	i = trace->filter_pids.nr = intlist__nr_entries(list) + 1;
4450	trace->filter_pids.entries = calloc(i, sizeof(pid_t));
4451
4452	if (trace->filter_pids.entries == NULL)
4453		goto out;
4454
4455	trace->filter_pids.entries[0] = getpid();
4456
4457	for (i = 1; i < trace->filter_pids.nr; ++i)
4458		trace->filter_pids.entries[i] = intlist__entry(list, i - 1)->i;
4459
4460	intlist__delete(list);
4461	ret = 0;
4462out:
4463	return ret;
4464}
4465
4466static int trace__open_output(struct trace *trace, const char *filename)
4467{
4468	struct stat st;
4469
4470	if (!stat(filename, &st) && st.st_size) {
4471		char oldname[PATH_MAX];
4472
4473		scnprintf(oldname, sizeof(oldname), "%s.old", filename);
4474		unlink(oldname);
4475		rename(filename, oldname);
4476	}
4477
4478	trace->output = fopen(filename, "w");
4479
4480	return trace->output == NULL ? -errno : 0;
4481}
4482
4483static int parse_pagefaults(const struct option *opt, const char *str,
4484			    int unset __maybe_unused)
4485{
4486	int *trace_pgfaults = opt->value;
4487
4488	if (strcmp(str, "all") == 0)
4489		*trace_pgfaults |= TRACE_PFMAJ | TRACE_PFMIN;
4490	else if (strcmp(str, "maj") == 0)
4491		*trace_pgfaults |= TRACE_PFMAJ;
4492	else if (strcmp(str, "min") == 0)
4493		*trace_pgfaults |= TRACE_PFMIN;
4494	else
4495		return -1;
4496
4497	return 0;
4498}
4499
4500static void evlist__set_default_evsel_handler(struct evlist *evlist, void *handler)
4501{
4502	struct evsel *evsel;
4503
4504	evlist__for_each_entry(evlist, evsel) {
4505		if (evsel->handler == NULL)
4506			evsel->handler = handler;
4507	}
4508}
4509
4510static void evsel__set_syscall_arg_fmt(struct evsel *evsel, const char *name)
4511{
4512	struct syscall_arg_fmt *fmt = evsel__syscall_arg_fmt(evsel);
4513
4514	if (fmt) {
4515		struct syscall_fmt *scfmt = syscall_fmt__find(name);
4516
4517		if (scfmt) {
4518			int skip = 0;
4519
4520			if (strcmp(evsel->tp_format->format.fields->name, "__syscall_nr") == 0 ||
4521			    strcmp(evsel->tp_format->format.fields->name, "nr") == 0)
4522				++skip;
4523
4524			memcpy(fmt + skip, scfmt->arg, (evsel->tp_format->format.nr_fields - skip) * sizeof(*fmt));
4525		}
4526	}
4527}
4528
4529static int evlist__set_syscall_tp_fields(struct evlist *evlist)
4530{
4531	struct evsel *evsel;
4532
4533	evlist__for_each_entry(evlist, evsel) {
4534		if (evsel->priv || !evsel->tp_format)
4535			continue;
4536
4537		if (strcmp(evsel->tp_format->system, "syscalls")) {
4538			evsel__init_tp_arg_scnprintf(evsel);
4539			continue;
4540		}
4541
4542		if (evsel__init_syscall_tp(evsel))
4543			return -1;
4544
4545		if (!strncmp(evsel->tp_format->name, "sys_enter_", 10)) {
4546			struct syscall_tp *sc = __evsel__syscall_tp(evsel);
4547
4548			if (__tp_field__init_ptr(&sc->args, sc->id.offset + sizeof(u64)))
4549				return -1;
4550
4551			evsel__set_syscall_arg_fmt(evsel, evsel->tp_format->name + sizeof("sys_enter_") - 1);
4552		} else if (!strncmp(evsel->tp_format->name, "sys_exit_", 9)) {
4553			struct syscall_tp *sc = __evsel__syscall_tp(evsel);
4554
4555			if (__tp_field__init_uint(&sc->ret, sizeof(u64), sc->id.offset + sizeof(u64), evsel->needs_swap))
4556				return -1;
4557
4558			evsel__set_syscall_arg_fmt(evsel, evsel->tp_format->name + sizeof("sys_exit_") - 1);
4559		}
4560	}
4561
4562	return 0;
4563}
4564
4565/*
4566 * XXX: Hackish, just splitting the combined -e+--event (syscalls
4567 * (raw_syscalls:{sys_{enter,exit}} + events (tracepoints, HW, SW, etc) to use
4568 * existing facilities unchanged (trace->ev_qualifier + parse_options()).
4569 *
4570 * It'd be better to introduce a parse_options() variant that would return a
4571 * list with the terms it didn't match to an event...
4572 */
4573static int trace__parse_events_option(const struct option *opt, const char *str,
4574				      int unset __maybe_unused)
4575{
4576	struct trace *trace = (struct trace *)opt->value;
4577	const char *s = str;
4578	char *sep = NULL, *lists[2] = { NULL, NULL, };
4579	int len = strlen(str) + 1, err = -1, list, idx;
4580	char *strace_groups_dir = system_path(STRACE_GROUPS_DIR);
4581	char group_name[PATH_MAX];
4582	struct syscall_fmt *fmt;
4583
4584	if (strace_groups_dir == NULL)
4585		return -1;
4586
4587	if (*s == '!') {
4588		++s;
4589		trace->not_ev_qualifier = true;
4590	}
4591
4592	while (1) {
4593		if ((sep = strchr(s, ',')) != NULL)
4594			*sep = '\0';
4595
4596		list = 0;
4597		if (syscalltbl__id(trace->sctbl, s) >= 0 ||
4598		    syscalltbl__strglobmatch_first(trace->sctbl, s, &idx) >= 0) {
4599			list = 1;
4600			goto do_concat;
4601		}
4602
4603		fmt = syscall_fmt__find_by_alias(s);
4604		if (fmt != NULL) {
4605			list = 1;
4606			s = fmt->name;
4607		} else {
4608			path__join(group_name, sizeof(group_name), strace_groups_dir, s);
4609			if (access(group_name, R_OK) == 0)
4610				list = 1;
4611		}
4612do_concat:
4613		if (lists[list]) {
4614			sprintf(lists[list] + strlen(lists[list]), ",%s", s);
4615		} else {
4616			lists[list] = malloc(len);
4617			if (lists[list] == NULL)
4618				goto out;
4619			strcpy(lists[list], s);
4620		}
4621
4622		if (!sep)
4623			break;
4624
4625		*sep = ',';
4626		s = sep + 1;
4627	}
4628
4629	if (lists[1] != NULL) {
4630		struct strlist_config slist_config = {
4631			.dirname = strace_groups_dir,
4632		};
4633
4634		trace->ev_qualifier = strlist__new(lists[1], &slist_config);
4635		if (trace->ev_qualifier == NULL) {
4636			fputs("Not enough memory to parse event qualifier", trace->output);
4637			goto out;
4638		}
4639
4640		if (trace__validate_ev_qualifier(trace))
4641			goto out;
4642		trace->trace_syscalls = true;
4643	}
4644
4645	err = 0;
4646
4647	if (lists[0]) {
4648		struct option o = {
4649			.value = &trace->evlist,
4650		};
4651		err = parse_events_option(&o, lists[0], 0);
4652	}
4653out:
4654	if (sep)
4655		*sep = ',';
4656
4657	return err;
4658}
4659
4660static int trace__parse_cgroups(const struct option *opt, const char *str, int unset)
4661{
4662	struct trace *trace = opt->value;
4663
4664	if (!list_empty(&trace->evlist->core.entries)) {
4665		struct option o = {
4666			.value = &trace->evlist,
4667		};
4668		return parse_cgroups(&o, str, unset);
4669	}
4670	trace->cgroup = evlist__findnew_cgroup(trace->evlist, str);
4671
4672	return 0;
4673}
4674
4675static int trace__config(const char *var, const char *value, void *arg)
4676{
4677	struct trace *trace = arg;
4678	int err = 0;
4679
4680	if (!strcmp(var, "trace.add_events")) {
4681		trace->perfconfig_events = strdup(value);
4682		if (trace->perfconfig_events == NULL) {
4683			pr_err("Not enough memory for %s\n", "trace.add_events");
4684			return -1;
4685		}
4686	} else if (!strcmp(var, "trace.show_timestamp")) {
4687		trace->show_tstamp = perf_config_bool(var, value);
4688	} else if (!strcmp(var, "trace.show_duration")) {
4689		trace->show_duration = perf_config_bool(var, value);
4690	} else if (!strcmp(var, "trace.show_arg_names")) {
4691		trace->show_arg_names = perf_config_bool(var, value);
4692		if (!trace->show_arg_names)
4693			trace->show_zeros = true;
4694	} else if (!strcmp(var, "trace.show_zeros")) {
4695		bool new_show_zeros = perf_config_bool(var, value);
4696		if (!trace->show_arg_names && !new_show_zeros) {
4697			pr_warning("trace.show_zeros has to be set when trace.show_arg_names=no\n");
4698			goto out;
4699		}
4700		trace->show_zeros = new_show_zeros;
4701	} else if (!strcmp(var, "trace.show_prefix")) {
4702		trace->show_string_prefix = perf_config_bool(var, value);
4703	} else if (!strcmp(var, "trace.no_inherit")) {
4704		trace->opts.no_inherit = perf_config_bool(var, value);
4705	} else if (!strcmp(var, "trace.args_alignment")) {
4706		int args_alignment = 0;
4707		if (perf_config_int(&args_alignment, var, value) == 0)
4708			trace->args_alignment = args_alignment;
4709	} else if (!strcmp(var, "trace.tracepoint_beautifiers")) {
4710		if (strcasecmp(value, "libtraceevent") == 0)
4711			trace->libtraceevent_print = true;
4712		else if (strcasecmp(value, "libbeauty") == 0)
4713			trace->libtraceevent_print = false;
4714	}
4715out:
4716	return err;
4717}
4718
4719int cmd_trace(int argc, const char **argv)
4720{
4721	const char *trace_usage[] = {
4722		"perf trace [<options>] [<command>]",
4723		"perf trace [<options>] -- <command> [<options>]",
4724		"perf trace record [<options>] [<command>]",
4725		"perf trace record [<options>] -- <command> [<options>]",
4726		NULL
4727	};
4728	struct trace trace = {
4729		.opts = {
4730			.target = {
4731				.uid	   = UINT_MAX,
4732				.uses_mmap = true,
4733			},
4734			.user_freq     = UINT_MAX,
4735			.user_interval = ULLONG_MAX,
4736			.no_buffering  = true,
4737			.mmap_pages    = UINT_MAX,
4738		},
4739		.output = stderr,
4740		.show_comm = true,
4741		.show_tstamp = true,
4742		.show_duration = true,
4743		.show_arg_names = true,
4744		.args_alignment = 70,
4745		.trace_syscalls = false,
4746		.kernel_syscallchains = false,
4747		.max_stack = UINT_MAX,
4748		.max_events = ULONG_MAX,
4749	};
4750	const char *map_dump_str = NULL;
4751	const char *output_name = NULL;
4752	const struct option trace_options[] = {
4753	OPT_CALLBACK('e', "event", &trace, "event",
4754		     "event/syscall selector. use 'perf list' to list available events",
4755		     trace__parse_events_option),
4756	OPT_CALLBACK(0, "filter", &trace.evlist, "filter",
4757		     "event filter", parse_filter),
4758	OPT_BOOLEAN(0, "comm", &trace.show_comm,
4759		    "show the thread COMM next to its id"),
4760	OPT_BOOLEAN(0, "tool_stats", &trace.show_tool_stats, "show tool stats"),
4761	OPT_CALLBACK(0, "expr", &trace, "expr", "list of syscalls/events to trace",
4762		     trace__parse_events_option),
4763	OPT_STRING('o', "output", &output_name, "file", "output file name"),
4764	OPT_STRING('i', "input", &input_name, "file", "Analyze events in file"),
4765	OPT_STRING('p', "pid", &trace.opts.target.pid, "pid",
4766		    "trace events on existing process id"),
4767	OPT_STRING('t', "tid", &trace.opts.target.tid, "tid",
4768		    "trace events on existing thread id"),
4769	OPT_CALLBACK(0, "filter-pids", &trace, "CSV list of pids",
4770		     "pids to filter (by the kernel)", trace__set_filter_pids_from_option),
4771	OPT_BOOLEAN('a', "all-cpus", &trace.opts.target.system_wide,
4772		    "system-wide collection from all CPUs"),
4773	OPT_STRING('C', "cpu", &trace.opts.target.cpu_list, "cpu",
4774		    "list of cpus to monitor"),
4775	OPT_BOOLEAN(0, "no-inherit", &trace.opts.no_inherit,
4776		    "child tasks do not inherit counters"),
4777	OPT_CALLBACK('m', "mmap-pages", &trace.opts.mmap_pages, "pages",
4778		     "number of mmap data pages",
4779		     perf_evlist__parse_mmap_pages),
4780	OPT_STRING('u', "uid", &trace.opts.target.uid_str, "user",
4781		   "user to profile"),
4782	OPT_CALLBACK(0, "duration", &trace, "float",
4783		     "show only events with duration > N.M ms",
4784		     trace__set_duration),
4785#ifdef HAVE_LIBBPF_SUPPORT
4786	OPT_STRING(0, "map-dump", &map_dump_str, "BPF map", "BPF map to periodically dump"),
4787#endif
4788	OPT_BOOLEAN(0, "sched", &trace.sched, "show blocking scheduler events"),
4789	OPT_INCR('v', "verbose", &verbose, "be more verbose"),
4790	OPT_BOOLEAN('T', "time", &trace.full_time,
4791		    "Show full timestamp, not time relative to first start"),
4792	OPT_BOOLEAN(0, "failure", &trace.failure_only,
4793		    "Show only syscalls that failed"),
4794	OPT_BOOLEAN('s', "summary", &trace.summary_only,
4795		    "Show only syscall summary with statistics"),
4796	OPT_BOOLEAN('S', "with-summary", &trace.summary,
4797		    "Show all syscalls and summary with statistics"),
4798	OPT_BOOLEAN(0, "errno-summary", &trace.errno_summary,
4799		    "Show errno stats per syscall, use with -s or -S"),
4800	OPT_CALLBACK_DEFAULT('F', "pf", &trace.trace_pgfaults, "all|maj|min",
4801		     "Trace pagefaults", parse_pagefaults, "maj"),
4802	OPT_BOOLEAN(0, "syscalls", &trace.trace_syscalls, "Trace syscalls"),
4803	OPT_BOOLEAN('f', "force", &trace.force, "don't complain, do it"),
4804	OPT_CALLBACK(0, "call-graph", &trace.opts,
4805		     "record_mode[,record_size]", record_callchain_help,
4806		     &record_parse_callchain_opt),
4807	OPT_BOOLEAN(0, "libtraceevent_print", &trace.libtraceevent_print,
4808		    "Use libtraceevent to print the tracepoint arguments."),
4809	OPT_BOOLEAN(0, "kernel-syscall-graph", &trace.kernel_syscallchains,
4810		    "Show the kernel callchains on the syscall exit path"),
4811	OPT_ULONG(0, "max-events", &trace.max_events,
4812		"Set the maximum number of events to print, exit after that is reached. "),
4813	OPT_UINTEGER(0, "min-stack", &trace.min_stack,
4814		     "Set the minimum stack depth when parsing the callchain, "
4815		     "anything below the specified depth will be ignored."),
4816	OPT_UINTEGER(0, "max-stack", &trace.max_stack,
4817		     "Set the maximum stack depth when parsing the callchain, "
4818		     "anything beyond the specified depth will be ignored. "
4819		     "Default: kernel.perf_event_max_stack or " __stringify(PERF_MAX_STACK_DEPTH)),
4820	OPT_BOOLEAN(0, "sort-events", &trace.sort_events,
4821			"Sort batch of events before processing, use if getting out of order events"),
4822	OPT_BOOLEAN(0, "print-sample", &trace.print_sample,
4823			"print the PERF_RECORD_SAMPLE PERF_SAMPLE_ info, for debugging"),
4824	OPT_UINTEGER(0, "proc-map-timeout", &proc_map_timeout,
4825			"per thread proc mmap processing timeout in ms"),
4826	OPT_CALLBACK('G', "cgroup", &trace, "name", "monitor event in cgroup name only",
4827		     trace__parse_cgroups),
4828	OPT_INTEGER('D', "delay", &trace.opts.initial_delay,
4829		     "ms to wait before starting measurement after program "
4830		     "start"),
4831	OPTS_EVSWITCH(&trace.evswitch),
4832	OPT_END()
4833	};
4834	bool __maybe_unused max_stack_user_set = true;
4835	bool mmap_pages_user_set = true;
4836	struct evsel *evsel;
4837	const char * const trace_subcommands[] = { "record", NULL };
4838	int err = -1;
4839	char bf[BUFSIZ];
4840
4841	signal(SIGSEGV, sighandler_dump_stack);
4842	signal(SIGFPE, sighandler_dump_stack);
4843
4844	trace.evlist = evlist__new();
4845	trace.sctbl = syscalltbl__new();
4846
4847	if (trace.evlist == NULL || trace.sctbl == NULL) {
4848		pr_err("Not enough memory to run!\n");
4849		err = -ENOMEM;
4850		goto out;
4851	}
4852
4853	/*
4854	 * Parsing .perfconfig may entail creating a BPF event, that may need
4855	 * to create BPF maps, so bump RLIM_MEMLOCK as the default 64K setting
4856	 * is too small. This affects just this process, not touching the
4857	 * global setting. If it fails we'll get something in 'perf trace -v'
4858	 * to help diagnose the problem.
4859	 */
4860	rlimit__bump_memlock();
4861
4862	err = perf_config(trace__config, &trace);
4863	if (err)
4864		goto out;
4865
4866	argc = parse_options_subcommand(argc, argv, trace_options, trace_subcommands,
4867				 trace_usage, PARSE_OPT_STOP_AT_NON_OPTION);
4868
4869	/*
4870	 * Here we already passed thru trace__parse_events_option() and it has
4871	 * already figured out if -e syscall_name, if not but if --event
4872	 * foo:bar was used, the user is interested _just_ in those, say,
4873	 * tracepoint events, not in the strace-like syscall-name-based mode.
4874	 *
4875	 * This is important because we need to check if strace-like mode is
4876	 * needed to decided if we should filter out the eBPF
4877	 * __augmented_syscalls__ code, if it is in the mix, say, via
4878	 * .perfconfig trace.add_events, and filter those out.
4879	 */
4880	if (!trace.trace_syscalls && !trace.trace_pgfaults &&
4881	    trace.evlist->core.nr_entries == 0 /* Was --events used? */) {
4882		trace.trace_syscalls = true;
4883	}
4884	/*
4885	 * Now that we have --verbose figured out, lets see if we need to parse
4886	 * events from .perfconfig, so that if those events fail parsing, say some
4887	 * BPF program fails, then we'll be able to use --verbose to see what went
4888	 * wrong in more detail.
4889	 */
4890	if (trace.perfconfig_events != NULL) {
4891		struct parse_events_error parse_err;
4892
4893		bzero(&parse_err, sizeof(parse_err));
4894		err = parse_events(trace.evlist, trace.perfconfig_events, &parse_err);
4895		if (err) {
4896			parse_events_print_error(&parse_err, trace.perfconfig_events);
4897			goto out;
4898		}
4899	}
4900
4901	if ((nr_cgroups || trace.cgroup) && !trace.opts.target.system_wide) {
4902		usage_with_options_msg(trace_usage, trace_options,
4903				       "cgroup monitoring only available in system-wide mode");
4904	}
4905
4906	evsel = bpf__setup_output_event(trace.evlist, "__augmented_syscalls__");
4907	if (IS_ERR(evsel)) {
4908		bpf__strerror_setup_output_event(trace.evlist, PTR_ERR(evsel), bf, sizeof(bf));
4909		pr_err("ERROR: Setup trace syscalls enter failed: %s\n", bf);
4910		goto out;
4911	}
4912
4913	if (evsel) {
4914		trace.syscalls.events.augmented = evsel;
4915
4916		evsel = perf_evlist__find_tracepoint_by_name(trace.evlist, "raw_syscalls:sys_enter");
4917		if (evsel == NULL) {
4918			pr_err("ERROR: raw_syscalls:sys_enter not found in the augmented BPF object\n");
4919			goto out;
4920		}
4921
4922		if (evsel->bpf_obj == NULL) {
4923			pr_err("ERROR: raw_syscalls:sys_enter not associated to a BPF object\n");
4924			goto out;
4925		}
4926
4927		trace.bpf_obj = evsel->bpf_obj;
4928
4929		/*
4930		 * If we have _just_ the augmenter event but don't have a
4931		 * explicit --syscalls, then assume we want all strace-like
4932		 * syscalls:
4933		 */
4934		if (!trace.trace_syscalls && trace__only_augmented_syscalls_evsels(&trace))
4935			trace.trace_syscalls = true;
4936		/*
4937		 * So, if we have a syscall augmenter, but trace_syscalls, aka
4938		 * strace-like syscall tracing is not set, then we need to trow
4939		 * away the augmenter, i.e. all the events that were created
4940		 * from that BPF object file.
4941		 *
4942		 * This is more to fix the current .perfconfig trace.add_events
4943		 * style of setting up the strace-like eBPF based syscall point
4944		 * payload augmenter.
4945		 *
4946		 * All this complexity will be avoided by adding an alternative
4947		 * to trace.add_events in the form of
4948		 * trace.bpf_augmented_syscalls, that will be only parsed if we
4949		 * need it.
4950		 *
4951		 * .perfconfig trace.add_events is still useful if we want, for
4952		 * instance, have msr_write.msr in some .perfconfig profile based
4953		 * 'perf trace --config determinism.profile' mode, where for some
4954		 * particular goal/workload type we want a set of events and
4955		 * output mode (with timings, etc) instead of having to add
4956		 * all via the command line.
4957		 *
4958		 * Also --config to specify an alternate .perfconfig file needs
4959		 * to be implemented.
4960		 */
4961		if (!trace.trace_syscalls) {
4962			trace__delete_augmented_syscalls(&trace);
4963		} else {
4964			trace__set_bpf_map_filtered_pids(&trace);
4965			trace__set_bpf_map_syscalls(&trace);
4966			trace.syscalls.unaugmented_prog = trace__find_bpf_program_by_title(&trace, "!raw_syscalls:unaugmented");
4967		}
4968	}
4969
4970	err = bpf__setup_stdout(trace.evlist);
4971	if (err) {
4972		bpf__strerror_setup_stdout(trace.evlist, err, bf, sizeof(bf));
4973		pr_err("ERROR: Setup BPF stdout failed: %s\n", bf);
4974		goto out;
4975	}
4976
4977	err = -1;
4978
4979	if (map_dump_str) {
4980		trace.dump.map = trace__find_bpf_map_by_name(&trace, map_dump_str);
4981		if (trace.dump.map == NULL) {
4982			pr_err("ERROR: BPF map \"%s\" not found\n", map_dump_str);
4983			goto out;
4984		}
4985	}
4986
4987	if (trace.trace_pgfaults) {
4988		trace.opts.sample_address = true;
4989		trace.opts.sample_time = true;
4990	}
4991
4992	if (trace.opts.mmap_pages == UINT_MAX)
4993		mmap_pages_user_set = false;
4994
4995	if (trace.max_stack == UINT_MAX) {
4996		trace.max_stack = input_name ? PERF_MAX_STACK_DEPTH : sysctl__max_stack();
4997		max_stack_user_set = false;
4998	}
4999
5000#ifdef HAVE_DWARF_UNWIND_SUPPORT
5001	if ((trace.min_stack || max_stack_user_set) && !callchain_param.enabled) {
5002		record_opts__parse_callchain(&trace.opts, &callchain_param, "dwarf", false);
5003	}
5004#endif
5005
5006	if (callchain_param.enabled) {
5007		if (!mmap_pages_user_set && geteuid() == 0)
5008			trace.opts.mmap_pages = perf_event_mlock_kb_in_pages() * 4;
5009
5010		symbol_conf.use_callchain = true;
5011	}
5012
5013	if (trace.evlist->core.nr_entries > 0) {
5014		evlist__set_default_evsel_handler(trace.evlist, trace__event_handler);
5015		if (evlist__set_syscall_tp_fields(trace.evlist)) {
5016			perror("failed to set syscalls:* tracepoint fields");
5017			goto out;
5018		}
5019	}
5020
5021	if (trace.sort_events) {
5022		ordered_events__init(&trace.oe.data, ordered_events__deliver_event, &trace);
5023		ordered_events__set_copy_on_queue(&trace.oe.data, true);
5024	}
5025
5026	/*
5027	 * If we are augmenting syscalls, then combine what we put in the
5028	 * __augmented_syscalls__ BPF map with what is in the
5029	 * syscalls:sys_exit_FOO tracepoints, i.e. just like we do without BPF,
5030	 * combining raw_syscalls:sys_enter with raw_syscalls:sys_exit.
5031	 *
5032	 * We'll switch to look at two BPF maps, one for sys_enter and the
5033	 * other for sys_exit when we start augmenting the sys_exit paths with
5034	 * buffers that are being copied from kernel to userspace, think 'read'
5035	 * syscall.
5036	 */
5037	if (trace.syscalls.events.augmented) {
5038		evlist__for_each_entry(trace.evlist, evsel) {
5039			bool raw_syscalls_sys_exit = strcmp(evsel__name(evsel), "raw_syscalls:sys_exit") == 0;
5040
5041			if (raw_syscalls_sys_exit) {
5042				trace.raw_augmented_syscalls = true;
5043				goto init_augmented_syscall_tp;
5044			}
5045
5046			if (trace.syscalls.events.augmented->priv == NULL &&
5047			    strstr(evsel__name(evsel), "syscalls:sys_enter")) {
5048				struct evsel *augmented = trace.syscalls.events.augmented;
5049				if (evsel__init_augmented_syscall_tp(augmented, evsel) ||
5050				    evsel__init_augmented_syscall_tp_args(augmented))
5051					goto out;
5052				/*
5053				 * Augmented is __augmented_syscalls__ BPF_OUTPUT event
5054				 * Above we made sure we can get from the payload the tp fields
5055				 * that we get from syscalls:sys_enter tracefs format file.
5056				 */
5057				augmented->handler = trace__sys_enter;
5058				/*
5059				 * Now we do the same for the *syscalls:sys_enter event so that
5060				 * if we handle it directly, i.e. if the BPF prog returns 0 so
5061				 * as not to filter it, then we'll handle it just like we would
5062				 * for the BPF_OUTPUT one:
5063				 */
5064				if (evsel__init_augmented_syscall_tp(evsel, evsel) ||
5065				    evsel__init_augmented_syscall_tp_args(evsel))
5066					goto out;
5067				evsel->handler = trace__sys_enter;
5068			}
5069
5070			if (strstarts(evsel__name(evsel), "syscalls:sys_exit_")) {
5071				struct syscall_tp *sc;
5072init_augmented_syscall_tp:
5073				if (evsel__init_augmented_syscall_tp(evsel, evsel))
5074					goto out;
5075				sc = __evsel__syscall_tp(evsel);
5076				/*
5077				 * For now with BPF raw_augmented we hook into
5078				 * raw_syscalls:sys_enter and there we get all
5079				 * 6 syscall args plus the tracepoint common
5080				 * fields and the syscall_nr (another long).
5081				 * So we check if that is the case and if so
5082				 * don't look after the sc->args_size but
5083				 * always after the full raw_syscalls:sys_enter
5084				 * payload, which is fixed.
5085				 *
5086				 * We'll revisit this later to pass
5087				 * s->args_size to the BPF augmenter (now
5088				 * tools/perf/examples/bpf/augmented_raw_syscalls.c,
5089				 * so that it copies only what we need for each
5090				 * syscall, like what happens when we use
5091				 * syscalls:sys_enter_NAME, so that we reduce
5092				 * the kernel/userspace traffic to just what is
5093				 * needed for each syscall.
5094				 */
5095				if (trace.raw_augmented_syscalls)
5096					trace.raw_augmented_syscalls_args_size = (6 + 1) * sizeof(long) + sc->id.offset;
5097				evsel__init_augmented_syscall_tp_ret(evsel);
5098				evsel->handler = trace__sys_exit;
5099			}
5100		}
5101	}
5102
5103	if ((argc >= 1) && (strcmp(argv[0], "record") == 0))
5104		return trace__record(&trace, argc-1, &argv[1]);
5105
5106	/* Using just --errno-summary will trigger --summary */
5107	if (trace.errno_summary && !trace.summary && !trace.summary_only)
5108		trace.summary_only = true;
5109
5110	/* summary_only implies summary option, but don't overwrite summary if set */
5111	if (trace.summary_only)
5112		trace.summary = trace.summary_only;
5113
5114	if (output_name != NULL) {
5115		err = trace__open_output(&trace, output_name);
5116		if (err < 0) {
5117			perror("failed to create output file");
5118			goto out;
5119		}
5120	}
5121
5122	err = evswitch__init(&trace.evswitch, trace.evlist, stderr);
5123	if (err)
5124		goto out_close;
5125
5126	err = target__validate(&trace.opts.target);
5127	if (err) {
5128		target__strerror(&trace.opts.target, err, bf, sizeof(bf));
5129		fprintf(trace.output, "%s", bf);
5130		goto out_close;
5131	}
5132
5133	err = target__parse_uid(&trace.opts.target);
5134	if (err) {
5135		target__strerror(&trace.opts.target, err, bf, sizeof(bf));
5136		fprintf(trace.output, "%s", bf);
5137		goto out_close;
5138	}
5139
5140	if (!argc && target__none(&trace.opts.target))
5141		trace.opts.target.system_wide = true;
5142
5143	if (input_name)
5144		err = trace__replay(&trace);
5145	else
5146		err = trace__run(&trace, argc, argv);
5147
5148out_close:
5149	if (output_name != NULL)
5150		fclose(trace.output);
5151out:
5152	zfree(&trace.perfconfig_events);
5153	return err;
5154}
5155