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v4.6
 
 
 
  1#include <linux/types.h>
 
  2#include <stdlib.h>
  3#include <unistd.h>
  4#include <stdio.h>
  5#include <ctype.h>
  6#include <string.h>
  7
 
 
 
 
 
 
  8#include "parse-events.h"
 
  9#include "evlist.h"
 10#include "evsel.h"
 11#include "thread_map.h"
 12#include "cpumap.h"
 13#include "machine.h"
 
 
 14#include "event.h"
 
 
 
 15#include "thread.h"
 16
 17#include "tests.h"
 18
 
 
 19#define BUFSZ	1024
 20#define READLEN	128
 21
 22struct state {
 23	u64 done[1024];
 24	size_t done_cnt;
 25};
 26
 27static unsigned int hex(char c)
 28{
 29	if (c >= '0' && c <= '9')
 30		return c - '0';
 31	if (c >= 'a' && c <= 'f')
 32		return c - 'a' + 10;
 33	return c - 'A' + 10;
 34}
 35
 36static size_t read_objdump_line(const char *line, size_t line_len, void *buf,
 37			      size_t len)
 38{
 39	const char *p;
 40	size_t i, j = 0;
 41
 42	/* Skip to a colon */
 43	p = strchr(line, ':');
 44	if (!p)
 45		return 0;
 46	i = p + 1 - line;
 47
 48	/* Read bytes */
 49	while (j < len) {
 50		char c1, c2;
 51
 52		/* Skip spaces */
 53		for (; i < line_len; i++) {
 54			if (!isspace(line[i]))
 55				break;
 56		}
 57		/* Get 2 hex digits */
 58		if (i >= line_len || !isxdigit(line[i]))
 
 59			break;
 60		c1 = line[i++];
 61		if (i >= line_len || !isxdigit(line[i]))
 
 
 
 
 
 
 
 
 
 
 62			break;
 63		c2 = line[i++];
 64		/* Followed by a space */
 65		if (i < line_len && line[i] && !isspace(line[i]))
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 66			break;
 67		/* Store byte */
 68		*(unsigned char *)buf = (hex(c1) << 4) | hex(c2);
 69		buf += 1;
 70		j++;
 71	}
 
 
 
 
 
 
 
 72	/* return number of successfully read bytes */
 73	return j;
 74}
 75
 76static int read_objdump_output(FILE *f, void *buf, size_t *len, u64 start_addr)
 77{
 78	char *line = NULL;
 79	size_t line_len, off_last = 0;
 80	ssize_t ret;
 81	int err = 0;
 82	u64 addr, last_addr = start_addr;
 83
 84	while (off_last < *len) {
 85		size_t off, read_bytes, written_bytes;
 86		unsigned char tmp[BUFSZ];
 87
 88		ret = getline(&line, &line_len, f);
 89		if (feof(f))
 90			break;
 91		if (ret < 0) {
 92			pr_debug("getline failed\n");
 93			err = -1;
 94			break;
 95		}
 96
 97		/* read objdump data into temporary buffer */
 98		read_bytes = read_objdump_line(line, ret, tmp, sizeof(tmp));
 99		if (!read_bytes)
100			continue;
101
102		if (sscanf(line, "%"PRIx64, &addr) != 1)
103			continue;
104		if (addr < last_addr) {
105			pr_debug("addr going backwards, read beyond section?\n");
106			break;
107		}
108		last_addr = addr;
109
110		/* copy it from temporary buffer to 'buf' according
111		 * to address on current objdump line */
112		off = addr - start_addr;
113		if (off >= *len)
114			break;
115		written_bytes = MIN(read_bytes, *len - off);
116		memcpy(buf + off, tmp, written_bytes);
117		off_last = off + written_bytes;
118	}
119
120	/* len returns number of bytes that could not be read */
121	*len -= off_last;
122
123	free(line);
124
125	return err;
126}
127
128static int read_via_objdump(const char *filename, u64 addr, void *buf,
129			    size_t len)
130{
131	char cmd[PATH_MAX * 2];
132	const char *fmt;
133	FILE *f;
134	int ret;
135
136	fmt = "%s -z -d --start-address=0x%"PRIx64" --stop-address=0x%"PRIx64" %s";
137	ret = snprintf(cmd, sizeof(cmd), fmt, "objdump", addr, addr + len,
138		       filename);
139	if (ret <= 0 || (size_t)ret >= sizeof(cmd))
140		return -1;
141
142	pr_debug("Objdump command is: %s\n", cmd);
143
144	/* Ignore objdump errors */
145	strcat(cmd, " 2>/dev/null");
146
147	f = popen(cmd, "r");
148	if (!f) {
149		pr_debug("popen failed\n");
150		return -1;
151	}
152
153	ret = read_objdump_output(f, buf, &len, addr);
154	if (len) {
155		pr_debug("objdump read too few bytes\n");
156		if (!ret)
157			ret = len;
158	}
159
160	pclose(f);
161
162	return ret;
163}
164
165static void dump_buf(unsigned char *buf, size_t len)
166{
167	size_t i;
168
169	for (i = 0; i < len; i++) {
170		pr_debug("0x%02x ", buf[i]);
171		if (i % 16 == 15)
172			pr_debug("\n");
173	}
174	pr_debug("\n");
175}
176
177static int read_object_code(u64 addr, size_t len, u8 cpumode,
178			    struct thread *thread, struct state *state)
179{
180	struct addr_location al;
181	unsigned char buf1[BUFSZ];
182	unsigned char buf2[BUFSZ];
183	size_t ret_len;
184	u64 objdump_addr;
 
 
 
185	int ret;
186
187	pr_debug("Reading object code for memory address: %#"PRIx64"\n", addr);
188
189	thread__find_addr_map(thread, cpumode, MAP__FUNCTION, addr, &al);
190	if (!al.map || !al.map->dso) {
191		pr_debug("thread__find_addr_map failed\n");
 
 
 
 
192		return -1;
193	}
194
195	pr_debug("File is: %s\n", al.map->dso->long_name);
196
197	if (al.map->dso->symtab_type == DSO_BINARY_TYPE__KALLSYMS &&
198	    !dso__is_kcore(al.map->dso)) {
199		pr_debug("Unexpected kernel address - skipping\n");
200		return 0;
201	}
202
203	pr_debug("On file address is: %#"PRIx64"\n", al.addr);
204
205	if (len > BUFSZ)
206		len = BUFSZ;
207
208	/* Do not go off the map */
209	if (addr + len > al.map->end)
210		len = al.map->end - addr;
211
212	/* Read the object code using perf */
213	ret_len = dso__data_read_offset(al.map->dso, thread->mg->machine,
214					al.addr, buf1, len);
215	if (ret_len != len) {
216		pr_debug("dso__data_read_offset failed\n");
217		return -1;
218	}
219
220	/*
221	 * Converting addresses for use by objdump requires more information.
222	 * map__load() does that.  See map__rip_2objdump() for details.
223	 */
224	if (map__load(al.map, NULL))
225		return -1;
226
227	/* objdump struggles with kcore - try each map only once */
228	if (dso__is_kcore(al.map->dso)) {
229		size_t d;
230
231		for (d = 0; d < state->done_cnt; d++) {
232			if (state->done[d] == al.map->start) {
233				pr_debug("kcore map tested already");
234				pr_debug(" - skipping\n");
235				return 0;
236			}
237		}
238		if (state->done_cnt >= ARRAY_SIZE(state->done)) {
239			pr_debug("Too many kcore maps - skipping\n");
240			return 0;
241		}
242		state->done[state->done_cnt++] = al.map->start;
243	}
244
 
 
 
 
 
 
 
 
 
 
 
 
 
245	/* Read the object code using objdump */
246	objdump_addr = map__rip_2objdump(al.map, al.addr);
247	ret = read_via_objdump(al.map->dso->long_name, objdump_addr, buf2, len);
 
 
 
 
248	if (ret > 0) {
249		/*
250		 * The kernel maps are inaccurate - assume objdump is right in
251		 * that case.
252		 */
253		if (cpumode == PERF_RECORD_MISC_KERNEL ||
254		    cpumode == PERF_RECORD_MISC_GUEST_KERNEL) {
255			len -= ret;
256			if (len) {
257				pr_debug("Reducing len to %zu\n", len);
258			} else if (dso__is_kcore(al.map->dso)) {
259				/*
260				 * objdump cannot handle very large segments
261				 * that may be found in kcore.
262				 */
263				pr_debug("objdump failed for kcore");
264				pr_debug(" - skipping\n");
265				return 0;
266			} else {
267				return -1;
268			}
269		}
270	}
271	if (ret < 0) {
272		pr_debug("read_via_objdump failed\n");
273		return -1;
274	}
275
276	/* The results should be identical */
277	if (memcmp(buf1, buf2, len)) {
278		pr_debug("Bytes read differ from those read by objdump\n");
279		pr_debug("buf1 (dso):\n");
280		dump_buf(buf1, len);
281		pr_debug("buf2 (objdump):\n");
282		dump_buf(buf2, len);
283		return -1;
284	}
285	pr_debug("Bytes read match those read by objdump\n");
286
287	return 0;
288}
289
290static int process_sample_event(struct machine *machine,
291				struct perf_evlist *evlist,
292				union perf_event *event, struct state *state)
293{
294	struct perf_sample sample;
295	struct thread *thread;
296	int ret;
297
298	if (perf_evlist__parse_sample(evlist, event, &sample)) {
299		pr_debug("perf_evlist__parse_sample failed\n");
300		return -1;
301	}
302
303	thread = machine__findnew_thread(machine, sample.pid, sample.tid);
304	if (!thread) {
305		pr_debug("machine__findnew_thread failed\n");
306		return -1;
307	}
308
309	ret = read_object_code(sample.ip, READLEN, sample.cpumode, thread, state);
310	thread__put(thread);
311	return ret;
312}
313
314static int process_event(struct machine *machine, struct perf_evlist *evlist,
315			 union perf_event *event, struct state *state)
316{
317	if (event->header.type == PERF_RECORD_SAMPLE)
318		return process_sample_event(machine, evlist, event, state);
319
320	if (event->header.type == PERF_RECORD_THROTTLE ||
321	    event->header.type == PERF_RECORD_UNTHROTTLE)
322		return 0;
323
324	if (event->header.type < PERF_RECORD_MAX) {
325		int ret;
326
327		ret = machine__process_event(machine, event, NULL);
328		if (ret < 0)
329			pr_debug("machine__process_event failed, event type %u\n",
330				 event->header.type);
331		return ret;
332	}
333
334	return 0;
335}
336
337static int process_events(struct machine *machine, struct perf_evlist *evlist,
338			  struct state *state)
339{
340	union perf_event *event;
 
341	int i, ret;
342
343	for (i = 0; i < evlist->nr_mmaps; i++) {
344		while ((event = perf_evlist__mmap_read(evlist, i)) != NULL) {
 
 
 
 
345			ret = process_event(machine, evlist, event, state);
346			perf_evlist__mmap_consume(evlist, i);
347			if (ret < 0)
348				return ret;
349		}
 
350	}
351	return 0;
352}
353
354static int comp(const void *a, const void *b)
355{
356	return *(int *)a - *(int *)b;
357}
358
359static void do_sort_something(void)
360{
361	int buf[40960], i;
362
363	for (i = 0; i < (int)ARRAY_SIZE(buf); i++)
364		buf[i] = ARRAY_SIZE(buf) - i - 1;
365
366	qsort(buf, ARRAY_SIZE(buf), sizeof(int), comp);
367
368	for (i = 0; i < (int)ARRAY_SIZE(buf); i++) {
369		if (buf[i] != i) {
370			pr_debug("qsort failed\n");
371			break;
372		}
373	}
374}
375
376static void sort_something(void)
377{
378	int i;
379
380	for (i = 0; i < 10; i++)
381		do_sort_something();
382}
383
384static void syscall_something(void)
385{
386	int pipefd[2];
387	int i;
388
389	for (i = 0; i < 1000; i++) {
390		if (pipe(pipefd) < 0) {
391			pr_debug("pipe failed\n");
392			break;
393		}
394		close(pipefd[1]);
395		close(pipefd[0]);
396	}
397}
398
399static void fs_something(void)
400{
401	const char *test_file_name = "temp-perf-code-reading-test-file--";
402	FILE *f;
403	int i;
404
405	for (i = 0; i < 1000; i++) {
406		f = fopen(test_file_name, "w+");
407		if (f) {
408			fclose(f);
409			unlink(test_file_name);
410		}
411	}
412}
413
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
414static void do_something(void)
415{
416	fs_something();
417
418	sort_something();
419
420	syscall_something();
421}
422
423enum {
424	TEST_CODE_READING_OK,
425	TEST_CODE_READING_NO_VMLINUX,
426	TEST_CODE_READING_NO_KCORE,
427	TEST_CODE_READING_NO_ACCESS,
428	TEST_CODE_READING_NO_KERNEL_OBJ,
429};
430
431static int do_test_code_reading(bool try_kcore)
432{
433	struct machine *machine;
434	struct thread *thread;
435	struct record_opts opts = {
436		.mmap_pages	     = UINT_MAX,
437		.user_freq	     = UINT_MAX,
438		.user_interval	     = ULLONG_MAX,
439		.freq		     = 500,
440		.target		     = {
441			.uses_mmap   = true,
442		},
443	};
444	struct state state = {
445		.done_cnt = 0,
446	};
447	struct thread_map *threads = NULL;
448	struct cpu_map *cpus = NULL;
449	struct perf_evlist *evlist = NULL;
450	struct perf_evsel *evsel = NULL;
451	int err = -1, ret;
452	pid_t pid;
453	struct map *map;
454	bool have_vmlinux, have_kcore, excl_kernel = false;
455
456	pid = getpid();
457
458	machine = machine__new_host();
 
459
460	ret = machine__create_kernel_maps(machine);
461	if (ret < 0) {
462		pr_debug("machine__create_kernel_maps failed\n");
463		goto out_err;
464	}
465
466	/* Force the use of kallsyms instead of vmlinux to try kcore */
467	if (try_kcore)
468		symbol_conf.kallsyms_name = "/proc/kallsyms";
469
470	/* Load kernel map */
471	map = machine__kernel_map(machine);
472	ret = map__load(map, NULL);
473	if (ret < 0) {
474		pr_debug("map__load failed\n");
475		goto out_err;
476	}
477	have_vmlinux = dso__is_vmlinux(map->dso);
478	have_kcore = dso__is_kcore(map->dso);
479
480	/* 2nd time through we just try kcore */
481	if (try_kcore && !have_kcore)
482		return TEST_CODE_READING_NO_KCORE;
483
484	/* No point getting kernel events if there is no kernel object */
485	if (!have_vmlinux && !have_kcore)
486		excl_kernel = true;
487
488	threads = thread_map__new_by_tid(pid);
489	if (!threads) {
490		pr_debug("thread_map__new_by_tid failed\n");
491		goto out_err;
492	}
493
494	ret = perf_event__synthesize_thread_map(NULL, threads,
495						perf_event__process, machine, false, 500);
496	if (ret < 0) {
497		pr_debug("perf_event__synthesize_thread_map failed\n");
498		goto out_err;
499	}
500
501	thread = machine__findnew_thread(machine, pid, pid);
502	if (!thread) {
503		pr_debug("machine__findnew_thread failed\n");
504		goto out_put;
505	}
506
507	cpus = cpu_map__new(NULL);
508	if (!cpus) {
509		pr_debug("cpu_map__new failed\n");
510		goto out_put;
511	}
512
513	while (1) {
514		const char *str;
515
516		evlist = perf_evlist__new();
517		if (!evlist) {
518			pr_debug("perf_evlist__new failed\n");
519			goto out_put;
520		}
521
522		perf_evlist__set_maps(evlist, cpus, threads);
523
524		if (excl_kernel)
525			str = "cycles:u";
526		else
527			str = "cycles";
528		pr_debug("Parsing event '%s'\n", str);
529		ret = parse_events(evlist, str, NULL);
530		if (ret < 0) {
531			pr_debug("parse_events failed\n");
532			goto out_put;
533		}
534
535		perf_evlist__config(evlist, &opts);
536
537		evsel = perf_evlist__first(evlist);
538
539		evsel->attr.comm = 1;
540		evsel->attr.disabled = 1;
541		evsel->attr.enable_on_exec = 0;
542
543		ret = perf_evlist__open(evlist);
544		if (ret < 0) {
545			if (!excl_kernel) {
546				excl_kernel = true;
547				/*
548				 * Both cpus and threads are now owned by evlist
549				 * and will be freed by following perf_evlist__set_maps
550				 * call. Getting refference to keep them alive.
551				 */
552				cpu_map__get(cpus);
553				thread_map__get(threads);
554				perf_evlist__set_maps(evlist, NULL, NULL);
555				perf_evlist__delete(evlist);
556				evlist = NULL;
557				continue;
558			}
559
560			if (verbose) {
561				char errbuf[512];
562				perf_evlist__strerror_open(evlist, errno, errbuf, sizeof(errbuf));
563				pr_debug("perf_evlist__open() failed!\n%s\n", errbuf);
564			}
565
566			goto out_put;
567		}
568		break;
569	}
570
571	ret = perf_evlist__mmap(evlist, UINT_MAX, false);
572	if (ret < 0) {
573		pr_debug("perf_evlist__mmap failed\n");
574		goto out_put;
575	}
576
577	perf_evlist__enable(evlist);
578
579	do_something();
580
581	perf_evlist__disable(evlist);
582
583	ret = process_events(machine, evlist, &state);
584	if (ret < 0)
585		goto out_put;
586
587	if (!have_vmlinux && !have_kcore && !try_kcore)
588		err = TEST_CODE_READING_NO_KERNEL_OBJ;
589	else if (!have_vmlinux && !try_kcore)
590		err = TEST_CODE_READING_NO_VMLINUX;
591	else if (excl_kernel)
592		err = TEST_CODE_READING_NO_ACCESS;
593	else
594		err = TEST_CODE_READING_OK;
595out_put:
596	thread__put(thread);
597out_err:
598
599	if (evlist) {
600		perf_evlist__delete(evlist);
601	} else {
602		cpu_map__put(cpus);
603		thread_map__put(threads);
604	}
605	machine__delete_threads(machine);
606	machine__delete(machine);
607
608	return err;
609}
610
611int test__code_reading(int subtest __maybe_unused)
612{
613	int ret;
614
615	ret = do_test_code_reading(false);
616	if (!ret)
617		ret = do_test_code_reading(true);
618
619	switch (ret) {
620	case TEST_CODE_READING_OK:
621		return 0;
622	case TEST_CODE_READING_NO_VMLINUX:
623		pr_debug("no vmlinux\n");
624		return 0;
625	case TEST_CODE_READING_NO_KCORE:
626		pr_debug("no kcore\n");
627		return 0;
628	case TEST_CODE_READING_NO_ACCESS:
629		pr_debug("no access\n");
630		return 0;
631	case TEST_CODE_READING_NO_KERNEL_OBJ:
632		pr_debug("no kernel obj\n");
633		return 0;
634	default:
635		return -1;
636	};
637}
v5.4
  1// SPDX-License-Identifier: GPL-2.0
  2#include <errno.h>
  3#include <linux/kernel.h>
  4#include <linux/types.h>
  5#include <inttypes.h>
  6#include <stdlib.h>
  7#include <unistd.h>
  8#include <stdio.h>
 
  9#include <string.h>
 10#include <sys/param.h>
 11#include <perf/cpumap.h>
 12#include <perf/evlist.h>
 13
 14#include "debug.h"
 15#include "dso.h"
 16#include "env.h"
 17#include "parse-events.h"
 18#include "trace-event.h"
 19#include "evlist.h"
 20#include "evsel.h"
 21#include "thread_map.h"
 
 22#include "machine.h"
 23#include "map.h"
 24#include "symbol.h"
 25#include "event.h"
 26#include "record.h"
 27#include "util/mmap.h"
 28#include "util/synthetic-events.h"
 29#include "thread.h"
 30
 31#include "tests.h"
 32
 33#include <linux/ctype.h>
 34
 35#define BUFSZ	1024
 36#define READLEN	128
 37
 38struct state {
 39	u64 done[1024];
 40	size_t done_cnt;
 41};
 42
 43static unsigned int hex(char c)
 44{
 45	if (c >= '0' && c <= '9')
 46		return c - '0';
 47	if (c >= 'a' && c <= 'f')
 48		return c - 'a' + 10;
 49	return c - 'A' + 10;
 50}
 51
 52static size_t read_objdump_chunk(const char **line, unsigned char **buf,
 53				 size_t *buf_len)
 54{
 55	size_t bytes_read = 0;
 56	unsigned char *chunk_start = *buf;
 
 
 
 
 
 
 57
 58	/* Read bytes */
 59	while (*buf_len > 0) {
 60		char c1, c2;
 61
 
 
 
 
 
 62		/* Get 2 hex digits */
 63		c1 = *(*line)++;
 64		if (!isxdigit(c1))
 65			break;
 66		c2 = *(*line)++;
 67		if (!isxdigit(c2))
 68			break;
 69
 70		/* Store byte and advance buf */
 71		**buf = (hex(c1) << 4) | hex(c2);
 72		(*buf)++;
 73		(*buf_len)--;
 74		bytes_read++;
 75
 76		/* End of chunk? */
 77		if (isspace(**line))
 78			break;
 79	}
 80
 81	/*
 82	 * objdump will display raw insn as LE if code endian
 83	 * is LE and bytes_per_chunk > 1. In that case reverse
 84	 * the chunk we just read.
 85	 *
 86	 * see disassemble_bytes() at binutils/objdump.c for details
 87	 * how objdump chooses display endian)
 88	 */
 89	if (bytes_read > 1 && !bigendian()) {
 90		unsigned char *chunk_end = chunk_start + bytes_read - 1;
 91		unsigned char tmp;
 92
 93		while (chunk_start < chunk_end) {
 94			tmp = *chunk_start;
 95			*chunk_start = *chunk_end;
 96			*chunk_end = tmp;
 97			chunk_start++;
 98			chunk_end--;
 99		}
100	}
101
102	return bytes_read;
103}
104
105static size_t read_objdump_line(const char *line, unsigned char *buf,
106				size_t buf_len)
107{
108	const char *p;
109	size_t ret, bytes_read = 0;
110
111	/* Skip to a colon */
112	p = strchr(line, ':');
113	if (!p)
114		return 0;
115	p++;
116
117	/* Skip initial spaces */
118	while (*p) {
119		if (!isspace(*p))
120			break;
121		p++;
 
 
 
122	}
123
124	do {
125		ret = read_objdump_chunk(&p, &buf, &buf_len);
126		bytes_read += ret;
127		p++;
128	} while (ret > 0);
129
130	/* return number of successfully read bytes */
131	return bytes_read;
132}
133
134static int read_objdump_output(FILE *f, void *buf, size_t *len, u64 start_addr)
135{
136	char *line = NULL;
137	size_t line_len, off_last = 0;
138	ssize_t ret;
139	int err = 0;
140	u64 addr, last_addr = start_addr;
141
142	while (off_last < *len) {
143		size_t off, read_bytes, written_bytes;
144		unsigned char tmp[BUFSZ];
145
146		ret = getline(&line, &line_len, f);
147		if (feof(f))
148			break;
149		if (ret < 0) {
150			pr_debug("getline failed\n");
151			err = -1;
152			break;
153		}
154
155		/* read objdump data into temporary buffer */
156		read_bytes = read_objdump_line(line, tmp, sizeof(tmp));
157		if (!read_bytes)
158			continue;
159
160		if (sscanf(line, "%"PRIx64, &addr) != 1)
161			continue;
162		if (addr < last_addr) {
163			pr_debug("addr going backwards, read beyond section?\n");
164			break;
165		}
166		last_addr = addr;
167
168		/* copy it from temporary buffer to 'buf' according
169		 * to address on current objdump line */
170		off = addr - start_addr;
171		if (off >= *len)
172			break;
173		written_bytes = MIN(read_bytes, *len - off);
174		memcpy(buf + off, tmp, written_bytes);
175		off_last = off + written_bytes;
176	}
177
178	/* len returns number of bytes that could not be read */
179	*len -= off_last;
180
181	free(line);
182
183	return err;
184}
185
186static int read_via_objdump(const char *filename, u64 addr, void *buf,
187			    size_t len)
188{
189	char cmd[PATH_MAX * 2];
190	const char *fmt;
191	FILE *f;
192	int ret;
193
194	fmt = "%s -z -d --start-address=0x%"PRIx64" --stop-address=0x%"PRIx64" %s";
195	ret = snprintf(cmd, sizeof(cmd), fmt, "objdump", addr, addr + len,
196		       filename);
197	if (ret <= 0 || (size_t)ret >= sizeof(cmd))
198		return -1;
199
200	pr_debug("Objdump command is: %s\n", cmd);
201
202	/* Ignore objdump errors */
203	strcat(cmd, " 2>/dev/null");
204
205	f = popen(cmd, "r");
206	if (!f) {
207		pr_debug("popen failed\n");
208		return -1;
209	}
210
211	ret = read_objdump_output(f, buf, &len, addr);
212	if (len) {
213		pr_debug("objdump read too few bytes: %zd\n", len);
214		if (!ret)
215			ret = len;
216	}
217
218	pclose(f);
219
220	return ret;
221}
222
223static void dump_buf(unsigned char *buf, size_t len)
224{
225	size_t i;
226
227	for (i = 0; i < len; i++) {
228		pr_debug("0x%02x ", buf[i]);
229		if (i % 16 == 15)
230			pr_debug("\n");
231	}
232	pr_debug("\n");
233}
234
235static int read_object_code(u64 addr, size_t len, u8 cpumode,
236			    struct thread *thread, struct state *state)
237{
238	struct addr_location al;
239	unsigned char buf1[BUFSZ];
240	unsigned char buf2[BUFSZ];
241	size_t ret_len;
242	u64 objdump_addr;
243	const char *objdump_name;
244	char decomp_name[KMOD_DECOMP_LEN];
245	bool decomp = false;
246	int ret;
247
248	pr_debug("Reading object code for memory address: %#"PRIx64"\n", addr);
249
250	if (!thread__find_map(thread, cpumode, addr, &al) || !al.map->dso) {
251		if (cpumode == PERF_RECORD_MISC_HYPERVISOR) {
252			pr_debug("Hypervisor address can not be resolved - skipping\n");
253			return 0;
254		}
255
256		pr_debug("thread__find_map failed\n");
257		return -1;
258	}
259
260	pr_debug("File is: %s\n", al.map->dso->long_name);
261
262	if (al.map->dso->symtab_type == DSO_BINARY_TYPE__KALLSYMS &&
263	    !dso__is_kcore(al.map->dso)) {
264		pr_debug("Unexpected kernel address - skipping\n");
265		return 0;
266	}
267
268	pr_debug("On file address is: %#"PRIx64"\n", al.addr);
269
270	if (len > BUFSZ)
271		len = BUFSZ;
272
273	/* Do not go off the map */
274	if (addr + len > al.map->end)
275		len = al.map->end - addr;
276
277	/* Read the object code using perf */
278	ret_len = dso__data_read_offset(al.map->dso, thread->mg->machine,
279					al.addr, buf1, len);
280	if (ret_len != len) {
281		pr_debug("dso__data_read_offset failed\n");
282		return -1;
283	}
284
285	/*
286	 * Converting addresses for use by objdump requires more information.
287	 * map__load() does that.  See map__rip_2objdump() for details.
288	 */
289	if (map__load(al.map))
290		return -1;
291
292	/* objdump struggles with kcore - try each map only once */
293	if (dso__is_kcore(al.map->dso)) {
294		size_t d;
295
296		for (d = 0; d < state->done_cnt; d++) {
297			if (state->done[d] == al.map->start) {
298				pr_debug("kcore map tested already");
299				pr_debug(" - skipping\n");
300				return 0;
301			}
302		}
303		if (state->done_cnt >= ARRAY_SIZE(state->done)) {
304			pr_debug("Too many kcore maps - skipping\n");
305			return 0;
306		}
307		state->done[state->done_cnt++] = al.map->start;
308	}
309
310	objdump_name = al.map->dso->long_name;
311	if (dso__needs_decompress(al.map->dso)) {
312		if (dso__decompress_kmodule_path(al.map->dso, objdump_name,
313						 decomp_name,
314						 sizeof(decomp_name)) < 0) {
315			pr_debug("decompression failed\n");
316			return -1;
317		}
318
319		decomp = true;
320		objdump_name = decomp_name;
321	}
322
323	/* Read the object code using objdump */
324	objdump_addr = map__rip_2objdump(al.map, al.addr);
325	ret = read_via_objdump(objdump_name, objdump_addr, buf2, len);
326
327	if (decomp)
328		unlink(objdump_name);
329
330	if (ret > 0) {
331		/*
332		 * The kernel maps are inaccurate - assume objdump is right in
333		 * that case.
334		 */
335		if (cpumode == PERF_RECORD_MISC_KERNEL ||
336		    cpumode == PERF_RECORD_MISC_GUEST_KERNEL) {
337			len -= ret;
338			if (len) {
339				pr_debug("Reducing len to %zu\n", len);
340			} else if (dso__is_kcore(al.map->dso)) {
341				/*
342				 * objdump cannot handle very large segments
343				 * that may be found in kcore.
344				 */
345				pr_debug("objdump failed for kcore");
346				pr_debug(" - skipping\n");
347				return 0;
348			} else {
349				return -1;
350			}
351		}
352	}
353	if (ret < 0) {
354		pr_debug("read_via_objdump failed\n");
355		return -1;
356	}
357
358	/* The results should be identical */
359	if (memcmp(buf1, buf2, len)) {
360		pr_debug("Bytes read differ from those read by objdump\n");
361		pr_debug("buf1 (dso):\n");
362		dump_buf(buf1, len);
363		pr_debug("buf2 (objdump):\n");
364		dump_buf(buf2, len);
365		return -1;
366	}
367	pr_debug("Bytes read match those read by objdump\n");
368
369	return 0;
370}
371
372static int process_sample_event(struct machine *machine,
373				struct evlist *evlist,
374				union perf_event *event, struct state *state)
375{
376	struct perf_sample sample;
377	struct thread *thread;
378	int ret;
379
380	if (perf_evlist__parse_sample(evlist, event, &sample)) {
381		pr_debug("perf_evlist__parse_sample failed\n");
382		return -1;
383	}
384
385	thread = machine__findnew_thread(machine, sample.pid, sample.tid);
386	if (!thread) {
387		pr_debug("machine__findnew_thread failed\n");
388		return -1;
389	}
390
391	ret = read_object_code(sample.ip, READLEN, sample.cpumode, thread, state);
392	thread__put(thread);
393	return ret;
394}
395
396static int process_event(struct machine *machine, struct evlist *evlist,
397			 union perf_event *event, struct state *state)
398{
399	if (event->header.type == PERF_RECORD_SAMPLE)
400		return process_sample_event(machine, evlist, event, state);
401
402	if (event->header.type == PERF_RECORD_THROTTLE ||
403	    event->header.type == PERF_RECORD_UNTHROTTLE)
404		return 0;
405
406	if (event->header.type < PERF_RECORD_MAX) {
407		int ret;
408
409		ret = machine__process_event(machine, event, NULL);
410		if (ret < 0)
411			pr_debug("machine__process_event failed, event type %u\n",
412				 event->header.type);
413		return ret;
414	}
415
416	return 0;
417}
418
419static int process_events(struct machine *machine, struct evlist *evlist,
420			  struct state *state)
421{
422	union perf_event *event;
423	struct mmap *md;
424	int i, ret;
425
426	for (i = 0; i < evlist->core.nr_mmaps; i++) {
427		md = &evlist->mmap[i];
428		if (perf_mmap__read_init(md) < 0)
429			continue;
430
431		while ((event = perf_mmap__read_event(md)) != NULL) {
432			ret = process_event(machine, evlist, event, state);
433			perf_mmap__consume(md);
434			if (ret < 0)
435				return ret;
436		}
437		perf_mmap__read_done(md);
438	}
439	return 0;
440}
441
442static int comp(const void *a, const void *b)
443{
444	return *(int *)a - *(int *)b;
445}
446
447static void do_sort_something(void)
448{
449	int buf[40960], i;
450
451	for (i = 0; i < (int)ARRAY_SIZE(buf); i++)
452		buf[i] = ARRAY_SIZE(buf) - i - 1;
453
454	qsort(buf, ARRAY_SIZE(buf), sizeof(int), comp);
455
456	for (i = 0; i < (int)ARRAY_SIZE(buf); i++) {
457		if (buf[i] != i) {
458			pr_debug("qsort failed\n");
459			break;
460		}
461	}
462}
463
464static void sort_something(void)
465{
466	int i;
467
468	for (i = 0; i < 10; i++)
469		do_sort_something();
470}
471
472static void syscall_something(void)
473{
474	int pipefd[2];
475	int i;
476
477	for (i = 0; i < 1000; i++) {
478		if (pipe(pipefd) < 0) {
479			pr_debug("pipe failed\n");
480			break;
481		}
482		close(pipefd[1]);
483		close(pipefd[0]);
484	}
485}
486
487static void fs_something(void)
488{
489	const char *test_file_name = "temp-perf-code-reading-test-file--";
490	FILE *f;
491	int i;
492
493	for (i = 0; i < 1000; i++) {
494		f = fopen(test_file_name, "w+");
495		if (f) {
496			fclose(f);
497			unlink(test_file_name);
498		}
499	}
500}
501
502#ifdef __s390x__
503#include "header.h" // for get_cpuid()
504#endif
505
506static const char *do_determine_event(bool excl_kernel)
507{
508	const char *event = excl_kernel ? "cycles:u" : "cycles";
509
510#ifdef __s390x__
511	char cpuid[128], model[16], model_c[16], cpum_cf_v[16];
512	unsigned int family;
513	int ret, cpum_cf_a;
514
515	if (get_cpuid(cpuid, sizeof(cpuid)))
516		goto out_clocks;
517	ret = sscanf(cpuid, "%*[^,],%u,%[^,],%[^,],%[^,],%x", &family, model_c,
518		     model, cpum_cf_v, &cpum_cf_a);
519	if (ret != 5)		 /* Not available */
520		goto out_clocks;
521	if (excl_kernel && (cpum_cf_a & 4))
522		return event;
523	if (!excl_kernel && (cpum_cf_a & 2))
524		return event;
525
526	/* Fall through: missing authorization */
527out_clocks:
528	event = excl_kernel ? "cpu-clock:u" : "cpu-clock";
529
530#endif
531	return event;
532}
533
534static void do_something(void)
535{
536	fs_something();
537
538	sort_something();
539
540	syscall_something();
541}
542
543enum {
544	TEST_CODE_READING_OK,
545	TEST_CODE_READING_NO_VMLINUX,
546	TEST_CODE_READING_NO_KCORE,
547	TEST_CODE_READING_NO_ACCESS,
548	TEST_CODE_READING_NO_KERNEL_OBJ,
549};
550
551static int do_test_code_reading(bool try_kcore)
552{
553	struct machine *machine;
554	struct thread *thread;
555	struct record_opts opts = {
556		.mmap_pages	     = UINT_MAX,
557		.user_freq	     = UINT_MAX,
558		.user_interval	     = ULLONG_MAX,
559		.freq		     = 500,
560		.target		     = {
561			.uses_mmap   = true,
562		},
563	};
564	struct state state = {
565		.done_cnt = 0,
566	};
567	struct perf_thread_map *threads = NULL;
568	struct perf_cpu_map *cpus = NULL;
569	struct evlist *evlist = NULL;
570	struct evsel *evsel = NULL;
571	int err = -1, ret;
572	pid_t pid;
573	struct map *map;
574	bool have_vmlinux, have_kcore, excl_kernel = false;
575
576	pid = getpid();
577
578	machine = machine__new_host();
579	machine->env = &perf_env;
580
581	ret = machine__create_kernel_maps(machine);
582	if (ret < 0) {
583		pr_debug("machine__create_kernel_maps failed\n");
584		goto out_err;
585	}
586
587	/* Force the use of kallsyms instead of vmlinux to try kcore */
588	if (try_kcore)
589		symbol_conf.kallsyms_name = "/proc/kallsyms";
590
591	/* Load kernel map */
592	map = machine__kernel_map(machine);
593	ret = map__load(map);
594	if (ret < 0) {
595		pr_debug("map__load failed\n");
596		goto out_err;
597	}
598	have_vmlinux = dso__is_vmlinux(map->dso);
599	have_kcore = dso__is_kcore(map->dso);
600
601	/* 2nd time through we just try kcore */
602	if (try_kcore && !have_kcore)
603		return TEST_CODE_READING_NO_KCORE;
604
605	/* No point getting kernel events if there is no kernel object */
606	if (!have_vmlinux && !have_kcore)
607		excl_kernel = true;
608
609	threads = thread_map__new_by_tid(pid);
610	if (!threads) {
611		pr_debug("thread_map__new_by_tid failed\n");
612		goto out_err;
613	}
614
615	ret = perf_event__synthesize_thread_map(NULL, threads,
616						perf_event__process, machine, false);
617	if (ret < 0) {
618		pr_debug("perf_event__synthesize_thread_map failed\n");
619		goto out_err;
620	}
621
622	thread = machine__findnew_thread(machine, pid, pid);
623	if (!thread) {
624		pr_debug("machine__findnew_thread failed\n");
625		goto out_put;
626	}
627
628	cpus = perf_cpu_map__new(NULL);
629	if (!cpus) {
630		pr_debug("perf_cpu_map__new failed\n");
631		goto out_put;
632	}
633
634	while (1) {
635		const char *str;
636
637		evlist = evlist__new();
638		if (!evlist) {
639			pr_debug("perf_evlist__new failed\n");
640			goto out_put;
641		}
642
643		perf_evlist__set_maps(&evlist->core, cpus, threads);
644
645		str = do_determine_event(excl_kernel);
 
 
 
646		pr_debug("Parsing event '%s'\n", str);
647		ret = parse_events(evlist, str, NULL);
648		if (ret < 0) {
649			pr_debug("parse_events failed\n");
650			goto out_put;
651		}
652
653		perf_evlist__config(evlist, &opts, NULL);
654
655		evsel = evlist__first(evlist);
656
657		evsel->core.attr.comm = 1;
658		evsel->core.attr.disabled = 1;
659		evsel->core.attr.enable_on_exec = 0;
660
661		ret = evlist__open(evlist);
662		if (ret < 0) {
663			if (!excl_kernel) {
664				excl_kernel = true;
665				/*
666				 * Both cpus and threads are now owned by evlist
667				 * and will be freed by following perf_evlist__set_maps
668				 * call. Getting refference to keep them alive.
669				 */
670				perf_cpu_map__get(cpus);
671				perf_thread_map__get(threads);
672				perf_evlist__set_maps(&evlist->core, NULL, NULL);
673				evlist__delete(evlist);
674				evlist = NULL;
675				continue;
676			}
677
678			if (verbose > 0) {
679				char errbuf[512];
680				perf_evlist__strerror_open(evlist, errno, errbuf, sizeof(errbuf));
681				pr_debug("perf_evlist__open() failed!\n%s\n", errbuf);
682			}
683
684			goto out_put;
685		}
686		break;
687	}
688
689	ret = evlist__mmap(evlist, UINT_MAX);
690	if (ret < 0) {
691		pr_debug("evlist__mmap failed\n");
692		goto out_put;
693	}
694
695	evlist__enable(evlist);
696
697	do_something();
698
699	evlist__disable(evlist);
700
701	ret = process_events(machine, evlist, &state);
702	if (ret < 0)
703		goto out_put;
704
705	if (!have_vmlinux && !have_kcore && !try_kcore)
706		err = TEST_CODE_READING_NO_KERNEL_OBJ;
707	else if (!have_vmlinux && !try_kcore)
708		err = TEST_CODE_READING_NO_VMLINUX;
709	else if (excl_kernel)
710		err = TEST_CODE_READING_NO_ACCESS;
711	else
712		err = TEST_CODE_READING_OK;
713out_put:
714	thread__put(thread);
715out_err:
716
717	if (evlist) {
718		evlist__delete(evlist);
719	} else {
720		perf_cpu_map__put(cpus);
721		perf_thread_map__put(threads);
722	}
723	machine__delete_threads(machine);
724	machine__delete(machine);
725
726	return err;
727}
728
729int test__code_reading(struct test *test __maybe_unused, int subtest __maybe_unused)
730{
731	int ret;
732
733	ret = do_test_code_reading(false);
734	if (!ret)
735		ret = do_test_code_reading(true);
736
737	switch (ret) {
738	case TEST_CODE_READING_OK:
739		return 0;
740	case TEST_CODE_READING_NO_VMLINUX:
741		pr_debug("no vmlinux\n");
742		return 0;
743	case TEST_CODE_READING_NO_KCORE:
744		pr_debug("no kcore\n");
745		return 0;
746	case TEST_CODE_READING_NO_ACCESS:
747		pr_debug("no access\n");
748		return 0;
749	case TEST_CODE_READING_NO_KERNEL_OBJ:
750		pr_debug("no kernel obj\n");
751		return 0;
752	default:
753		return -1;
754	};
755}