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v5.4
  1// SPDX-License-Identifier: GPL-2.0-only
  2/*
  3 * Copyright (C) 2009, Steven Rostedt <srostedt@redhat.com>
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  4 */
 
 
  5#include <dirent.h>
  6#include <stdio.h>
  7#include <stdlib.h>
  8#include <string.h>
 
  9#include <stdarg.h>
 10#include <sys/types.h>
 11#include <sys/stat.h>
 12#include <sys/wait.h>
 13#include <sys/mman.h>
 
 14#include <fcntl.h>
 15#include <unistd.h>
 
 16#include <errno.h>
 17
 
 
 18#include "trace-event.h"
 19#include "debug.h"
 20
 21static int input_fd;
 22
 23static ssize_t trace_data_size;
 
 
 
 
 
 
 
 
 24static bool repipe;
 25
 26static int __do_read(int fd, void *buf, int size)
 27{
 28	int rsize = size;
 29
 30	while (size) {
 31		int ret = read(fd, buf, size);
 32
 33		if (ret <= 0)
 34			return -1;
 35
 36		if (repipe) {
 37			int retw = write(STDOUT_FILENO, buf, ret);
 38
 39			if (retw <= 0 || retw != ret) {
 40				pr_debug("repiping input file");
 41				return -1;
 42			}
 43		}
 44
 45		size -= ret;
 46		buf += ret;
 47	}
 48
 49	return rsize;
 50}
 51
 52static int do_read(void *data, int size)
 53{
 54	int r;
 55
 56	r = __do_read(input_fd, data, size);
 57	if (r <= 0) {
 58		pr_debug("reading input file (size expected=%d received=%d)",
 59			 size, r);
 60		return -1;
 61	}
 62
 63	trace_data_size += r;
 
 64
 65	return r;
 66}
 67
 68/* If it fails, the next read will report it */
 69static void skip(int size)
 70{
 71	char buf[BUFSIZ];
 72	int r;
 73
 74	while (size) {
 75		r = size > BUFSIZ ? BUFSIZ : size;
 76		do_read(buf, r);
 77		size -= r;
 78	};
 79}
 80
 81static unsigned int read4(struct tep_handle *pevent)
 82{
 83	unsigned int data;
 84
 85	if (do_read(&data, 4) < 0)
 86		return 0;
 87	return tep_read_number(pevent, &data, 4);
 88}
 89
 90static unsigned long long read8(struct tep_handle *pevent)
 91{
 92	unsigned long long data;
 93
 94	if (do_read(&data, 8) < 0)
 95		return 0;
 96	return tep_read_number(pevent, &data, 8);
 97}
 98
 99static char *read_string(void)
100{
101	char buf[BUFSIZ];
102	char *str = NULL;
103	int size = 0;
104	off_t r;
105	char c;
106
107	for (;;) {
108		r = read(input_fd, &c, 1);
109		if (r < 0) {
110			pr_debug("reading input file");
111			goto out;
112		}
113
114		if (!r) {
115			pr_debug("no data");
116			goto out;
117		}
118
119		if (repipe) {
120			int retw = write(STDOUT_FILENO, &c, 1);
121
122			if (retw <= 0 || retw != r) {
123				pr_debug("repiping input file string");
124				goto out;
125			}
126		}
127
128		buf[size++] = c;
129
130		if (!c)
131			break;
132	}
133
134	trace_data_size += size;
 
 
 
 
135
136	str = malloc(size);
137	if (str)
138		memcpy(str, buf, size);
139out:
140	return str;
141}
142
143static int read_proc_kallsyms(struct tep_handle *pevent)
144{
145	unsigned int size;
 
146
147	size = read4(pevent);
148	if (!size)
149		return 0;
150	/*
151	 * Just skip it, now that we configure libtraceevent to use the
152	 * tools/perf/ symbol resolver.
153	 *
154	 * We need to skip it so that we can continue parsing old perf.data
155	 * files, that contains this /proc/kallsyms payload.
156	 *
157	 * Newer perf.data files will have just the 4-bytes zeros "kallsyms
158	 * payload", so that older tools can continue reading it and interpret
159	 * it as "no kallsyms payload is present".
160	 */
161	lseek(input_fd, size, SEEK_CUR);
162	trace_data_size += size;
163	return 0;
164}
165
166static int read_ftrace_printk(struct tep_handle *pevent)
167{
168	unsigned int size;
169	char *buf;
170
171	/* it can have 0 size */
172	size = read4(pevent);
173	if (!size)
174		return 0;
175
176	buf = malloc(size + 1);
177	if (buf == NULL)
178		return -1;
179
180	if (do_read(buf, size) < 0) {
181		free(buf);
182		return -1;
183	}
184
185	buf[size] = '\0';
 
186
187	parse_ftrace_printk(pevent, buf, size);
188
189	free(buf);
190	return 0;
191}
192
193static int read_header_files(struct tep_handle *pevent)
194{
195	unsigned long long size;
196	char *header_page;
197	char buf[BUFSIZ];
198	int ret = 0;
199
200	if (do_read(buf, 12) < 0)
201		return -1;
202
203	if (memcmp(buf, "header_page", 12) != 0) {
204		pr_debug("did not read header page");
205		return -1;
206	}
207
208	size = read8(pevent);
209
210	header_page = malloc(size);
211	if (header_page == NULL)
212		return -1;
213
214	if (do_read(header_page, size) < 0) {
215		pr_debug("did not read header page");
216		free(header_page);
217		return -1;
218	}
219
220	if (!tep_parse_header_page(pevent, header_page, size,
221				   tep_get_long_size(pevent))) {
222		/*
223		 * The commit field in the page is of type long,
224		 * use that instead, since it represents the kernel.
225		 */
226		tep_set_long_size(pevent, tep_get_header_page_size(pevent));
227	}
228	free(header_page);
229
230	if (do_read(buf, 13) < 0)
231		return -1;
232
233	if (memcmp(buf, "header_event", 13) != 0) {
234		pr_debug("did not read header event");
235		return -1;
236	}
 
237
238	size = read8(pevent);
239	skip(size);
 
240
241	return ret;
 
 
 
242}
243
244static int read_ftrace_file(struct tep_handle *pevent, unsigned long long size)
245{
246	int ret;
247	char *buf;
248
249	buf = malloc(size);
250	if (buf == NULL) {
251		pr_debug("memory allocation failure\n");
252		return -1;
253	}
254
255	ret = do_read(buf, size);
256	if (ret < 0) {
257		pr_debug("error reading ftrace file.\n");
258		goto out;
259	}
260
261	ret = parse_ftrace_file(pevent, buf, size);
262	if (ret < 0)
263		pr_debug("error parsing ftrace file.\n");
264out:
265	free(buf);
266	return ret;
267}
268
269static int read_event_file(struct tep_handle *pevent, char *sys,
270			   unsigned long long size)
271{
272	int ret;
273	char *buf;
274
275	buf = malloc(size);
276	if (buf == NULL) {
277		pr_debug("memory allocation failure\n");
278		return -1;
279	}
280
281	ret = do_read(buf, size);
282	if (ret < 0)
283		goto out;
284
285	ret = parse_event_file(pevent, buf, size, sys);
286	if (ret < 0)
287		pr_debug("error parsing event file.\n");
288out:
289	free(buf);
290	return ret;
291}
292
293static int read_ftrace_files(struct tep_handle *pevent)
294{
295	unsigned long long size;
296	int count;
297	int i;
298	int ret;
299
300	count = read4(pevent);
301
302	for (i = 0; i < count; i++) {
303		size = read8(pevent);
304		ret = read_ftrace_file(pevent, size);
305		if (ret)
306			return ret;
307	}
308	return 0;
309}
310
311static int read_event_files(struct tep_handle *pevent)
312{
313	unsigned long long size;
314	char *sys;
315	int systems;
316	int count;
317	int i,x;
318	int ret;
319
320	systems = read4(pevent);
321
322	for (i = 0; i < systems; i++) {
323		sys = read_string();
324		if (sys == NULL)
325			return -1;
326
327		count = read4(pevent);
328
 
329		for (x=0; x < count; x++) {
330			size = read8(pevent);
331			ret = read_event_file(pevent, sys, size);
332			if (ret) {
333				free(sys);
334				return ret;
335			}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
336		}
337		free(sys);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
338	}
339	return 0;
 
 
 
 
 
 
 
 
 
 
 
 
 
340}
341
342static int read_saved_cmdline(struct tep_handle *pevent)
343{
344	unsigned long long size;
345	char *buf;
346	int ret;
 
 
347
348	/* it can have 0 size */
349	size = read8(pevent);
350	if (!size)
351		return 0;
 
 
 
 
 
 
 
 
352
353	buf = malloc(size + 1);
354	if (buf == NULL) {
355		pr_debug("memory allocation failure\n");
356		return -1;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
357	}
358
359	ret = do_read(buf, size);
360	if (ret < 0) {
361		pr_debug("error reading saved cmdlines\n");
362		goto out;
 
 
363	}
364
365	parse_saved_cmdline(pevent, buf, size);
366	ret = 0;
367out:
368	free(buf);
369	return ret;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
370}
371
372ssize_t trace_report(int fd, struct trace_event *tevent, bool __repipe)
373{
374	char buf[BUFSIZ];
375	char test[] = { 23, 8, 68 };
376	char *version;
377	int show_version = 0;
378	int show_funcs = 0;
379	int show_printk = 0;
380	ssize_t size = -1;
381	int file_bigendian;
382	int host_bigendian;
383	int file_long_size;
384	int file_page_size;
385	struct tep_handle *pevent = NULL;
386	int err;
387
 
388	repipe = __repipe;
389	input_fd = fd;
390
391	if (do_read(buf, 3) < 0)
392		return -1;
393	if (memcmp(buf, test, 3) != 0) {
394		pr_debug("no trace data in the file");
395		return -1;
396	}
397
398	if (do_read(buf, 7) < 0)
399		return -1;
400	if (memcmp(buf, "tracing", 7) != 0) {
401		pr_debug("not a trace file (missing 'tracing' tag)");
402		return -1;
403	}
 
404
405	version = read_string();
406	if (version == NULL)
407		return -1;
408	if (show_version)
409		printf("version = %s\n", version);
 
410
411	if (do_read(buf, 1) < 0) {
412		free(version);
413		return -1;
414	}
415	file_bigendian = buf[0];
416	host_bigendian = bigendian();
417
418	if (trace_event__init(tevent)) {
419		pr_debug("trace_event__init failed");
420		goto out;
421	}
422
423	pevent = tevent->pevent;
424
425	tep_set_flag(pevent, TEP_NSEC_OUTPUT);
426	tep_set_file_bigendian(pevent, file_bigendian);
427	tep_set_local_bigendian(pevent, host_bigendian);
428
429	if (do_read(buf, 1) < 0)
430		goto out;
431	file_long_size = buf[0];
432
433	file_page_size = read4(pevent);
434	if (!file_page_size)
435		goto out;
436
437	tep_set_long_size(pevent, file_long_size);
438	tep_set_page_size(pevent, file_page_size);
439
440	err = read_header_files(pevent);
441	if (err)
442		goto out;
443	err = read_ftrace_files(pevent);
444	if (err)
445		goto out;
446	err = read_event_files(pevent);
447	if (err)
448		goto out;
449	err = read_proc_kallsyms(pevent);
450	if (err)
451		goto out;
452	err = read_ftrace_printk(pevent);
453	if (err)
454		goto out;
455	if (atof(version) >= 0.6) {
456		err = read_saved_cmdline(pevent);
457		if (err)
458			goto out;
459	}
460
461	size = trace_data_size;
 
462	repipe = false;
463
464	if (show_funcs) {
465		tep_print_funcs(pevent);
466	} else if (show_printk) {
467		tep_print_printk(pevent);
 
 
 
468	}
469
470	pevent = NULL;
471
472out:
473	if (pevent)
474		trace_event__cleanup(tevent);
475	free(version);
476	return size;
477}
v3.1
 
  1/*
  2 * Copyright (C) 2009, Steven Rostedt <srostedt@redhat.com>
  3 *
  4 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
  5 *
  6 * This program is free software; you can redistribute it and/or modify
  7 * it under the terms of the GNU General Public License as published by
  8 * the Free Software Foundation; version 2 of the License (not later!)
  9 *
 10 * This program is distributed in the hope that it will be useful,
 11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 13 * GNU General Public License for more details.
 14 *
 15 * You should have received a copy of the GNU General Public License
 16 * along with this program; if not, write to the Free Software
 17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
 18 *
 19 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
 20 */
 21#define _FILE_OFFSET_BITS 64
 22
 23#include <dirent.h>
 24#include <stdio.h>
 25#include <stdlib.h>
 26#include <string.h>
 27#include <getopt.h>
 28#include <stdarg.h>
 29#include <sys/types.h>
 30#include <sys/stat.h>
 31#include <sys/wait.h>
 32#include <sys/mman.h>
 33#include <pthread.h>
 34#include <fcntl.h>
 35#include <unistd.h>
 36#include <ctype.h>
 37#include <errno.h>
 38
 39#include "../perf.h"
 40#include "util.h"
 41#include "trace-event.h"
 
 42
 43static int input_fd;
 44
 45static int read_page;
 46
 47int file_bigendian;
 48int host_bigendian;
 49static int long_size;
 50
 51static unsigned long	page_size;
 52
 53static ssize_t calc_data_size;
 54static bool repipe;
 55
 56static int do_read(int fd, void *buf, int size)
 57{
 58	int rsize = size;
 59
 60	while (size) {
 61		int ret = read(fd, buf, size);
 62
 63		if (ret <= 0)
 64			return -1;
 65
 66		if (repipe) {
 67			int retw = write(STDOUT_FILENO, buf, ret);
 68
 69			if (retw <= 0 || retw != ret)
 70				die("repiping input file");
 
 
 71		}
 72
 73		size -= ret;
 74		buf += ret;
 75	}
 76
 77	return rsize;
 78}
 79
 80static int read_or_die(void *data, int size)
 81{
 82	int r;
 83
 84	r = do_read(input_fd, data, size);
 85	if (r <= 0)
 86		die("reading input file (size expected=%d received=%d)",
 87		    size, r);
 
 
 88
 89	if (calc_data_size)
 90		calc_data_size += r;
 91
 92	return r;
 93}
 94
 95/* If it fails, the next read will report it */
 96static void skip(int size)
 97{
 98	char buf[BUFSIZ];
 99	int r;
100
101	while (size) {
102		r = size > BUFSIZ ? BUFSIZ : size;
103		read_or_die(buf, r);
104		size -= r;
105	};
106}
107
108static unsigned int read4(void)
109{
110	unsigned int data;
111
112	read_or_die(&data, 4);
113	return __data2host4(data);
 
114}
115
116static unsigned long long read8(void)
117{
118	unsigned long long data;
119
120	read_or_die(&data, 8);
121	return __data2host8(data);
 
122}
123
124static char *read_string(void)
125{
126	char buf[BUFSIZ];
127	char *str = NULL;
128	int size = 0;
129	off_t r;
130	char c;
131
132	for (;;) {
133		r = read(input_fd, &c, 1);
134		if (r < 0)
135			die("reading input file");
 
 
136
137		if (!r)
138			die("no data");
 
 
139
140		if (repipe) {
141			int retw = write(STDOUT_FILENO, &c, 1);
142
143			if (retw <= 0 || retw != r)
144				die("repiping input file string");
 
 
145		}
146
147		buf[size++] = c;
148
149		if (!c)
150			break;
151	}
152
153	if (calc_data_size)
154		calc_data_size += size;
155
156	str = malloc_or_die(size);
157	memcpy(str, buf, size);
158
 
 
 
 
159	return str;
160}
161
162static void read_proc_kallsyms(void)
163{
164	unsigned int size;
165	char *buf;
166
167	size = read4();
168	if (!size)
169		return;
170
171	buf = malloc_or_die(size + 1);
172	read_or_die(buf, size);
173	buf[size] = '\0';
174
175	parse_proc_kallsyms(buf, size);
176
177	free(buf);
 
 
 
 
 
 
178}
179
180static void read_ftrace_printk(void)
181{
182	unsigned int size;
183	char *buf;
184
185	size = read4();
 
186	if (!size)
187		return;
 
 
 
 
 
 
 
 
 
188
189	buf = malloc_or_die(size);
190	read_or_die(buf, size);
191
192	parse_ftrace_printk(buf, size);
193
194	free(buf);
 
195}
196
197static void read_header_files(void)
198{
199	unsigned long long size;
200	char *header_event;
201	char buf[BUFSIZ];
 
 
 
 
 
 
 
 
 
 
 
202
203	read_or_die(buf, 12);
 
 
 
 
 
 
 
 
204
205	if (memcmp(buf, "header_page", 12) != 0)
206		die("did not read header page");
 
 
 
 
 
 
 
207
208	size = read8();
209	skip(size);
210
211	/*
212	 * The size field in the page is of type long,
213	 * use that instead, since it represents the kernel.
214	 */
215	long_size = header_page_size_size;
216
217	read_or_die(buf, 13);
218	if (memcmp(buf, "header_event", 13) != 0)
219		die("did not read header event");
220
221	size = read8();
222	header_event = malloc_or_die(size);
223	read_or_die(header_event, size);
224	free(header_event);
225}
226
227static void read_ftrace_file(unsigned long long size)
228{
 
229	char *buf;
230
231	buf = malloc_or_die(size);
232	read_or_die(buf, size);
233	parse_ftrace_file(buf, size);
 
 
 
 
 
 
 
 
 
 
 
 
 
234	free(buf);
 
235}
236
237static void read_event_file(char *sys, unsigned long long size)
 
238{
 
239	char *buf;
240
241	buf = malloc_or_die(size);
242	read_or_die(buf, size);
243	parse_event_file(buf, size, sys);
 
 
 
 
 
 
 
 
 
 
 
244	free(buf);
 
245}
246
247static void read_ftrace_files(void)
248{
249	unsigned long long size;
250	int count;
251	int i;
 
252
253	count = read4();
254
255	for (i = 0; i < count; i++) {
256		size = read8();
257		read_ftrace_file(size);
 
 
258	}
 
259}
260
261static void read_event_files(void)
262{
263	unsigned long long size;
264	char *sys;
265	int systems;
266	int count;
267	int i,x;
 
268
269	systems = read4();
270
271	for (i = 0; i < systems; i++) {
272		sys = read_string();
 
 
 
 
273
274		count = read4();
275		for (x=0; x < count; x++) {
276			size = read8();
277			read_event_file(sys, size);
278		}
279	}
280}
281
282struct cpu_data {
283	unsigned long long	offset;
284	unsigned long long	size;
285	unsigned long long	timestamp;
286	struct record		*next;
287	char			*page;
288	int			cpu;
289	int			index;
290	int			page_size;
291};
292
293static struct cpu_data *cpu_data;
294
295static void update_cpu_data_index(int cpu)
296{
297	cpu_data[cpu].offset += page_size;
298	cpu_data[cpu].size -= page_size;
299	cpu_data[cpu].index = 0;
300}
301
302static void get_next_page(int cpu)
303{
304	off_t save_seek;
305	off_t ret;
306
307	if (!cpu_data[cpu].page)
308		return;
309
310	if (read_page) {
311		if (cpu_data[cpu].size <= page_size) {
312			free(cpu_data[cpu].page);
313			cpu_data[cpu].page = NULL;
314			return;
315		}
316
317		update_cpu_data_index(cpu);
318
319		/* other parts of the code may expect the pointer to not move */
320		save_seek = lseek(input_fd, 0, SEEK_CUR);
321
322		ret = lseek(input_fd, cpu_data[cpu].offset, SEEK_SET);
323		if (ret == (off_t)-1)
324			die("failed to lseek");
325		ret = read(input_fd, cpu_data[cpu].page, page_size);
326		if (ret < 0)
327			die("failed to read page");
328
329		/* reset the file pointer back */
330		lseek(input_fd, save_seek, SEEK_SET);
331
332		return;
333	}
334
335	munmap(cpu_data[cpu].page, page_size);
336	cpu_data[cpu].page = NULL;
337
338	if (cpu_data[cpu].size <= page_size)
339		return;
340
341	update_cpu_data_index(cpu);
342
343	cpu_data[cpu].page = mmap(NULL, page_size, PROT_READ, MAP_PRIVATE,
344				  input_fd, cpu_data[cpu].offset);
345	if (cpu_data[cpu].page == MAP_FAILED)
346		die("failed to mmap cpu %d at offset 0x%llx",
347		    cpu, cpu_data[cpu].offset);
348}
349
350static unsigned int type_len4host(unsigned int type_len_ts)
351{
352	if (file_bigendian)
353		return (type_len_ts >> 27) & ((1 << 5) - 1);
354	else
355		return type_len_ts & ((1 << 5) - 1);
356}
357
358static unsigned int ts4host(unsigned int type_len_ts)
359{
360	if (file_bigendian)
361		return type_len_ts & ((1 << 27) - 1);
362	else
363		return type_len_ts >> 5;
364}
365
366static int calc_index(void *ptr, int cpu)
367{
368	return (unsigned long)ptr - (unsigned long)cpu_data[cpu].page;
369}
370
371struct record *trace_peek_data(int cpu)
372{
373	struct record *data;
374	void *page = cpu_data[cpu].page;
375	int idx = cpu_data[cpu].index;
376	void *ptr = page + idx;
377	unsigned long long extend;
378	unsigned int type_len_ts;
379	unsigned int type_len;
380	unsigned int delta;
381	unsigned int length = 0;
382
383	if (cpu_data[cpu].next)
384		return cpu_data[cpu].next;
385
386	if (!page)
387		return NULL;
388
389	if (!idx) {
390		/* FIXME: handle header page */
391		if (header_page_ts_size != 8)
392			die("expected a long long type for timestamp");
393		cpu_data[cpu].timestamp = data2host8(ptr);
394		ptr += 8;
395		switch (header_page_size_size) {
396		case 4:
397			cpu_data[cpu].page_size = data2host4(ptr);
398			ptr += 4;
399			break;
400		case 8:
401			cpu_data[cpu].page_size = data2host8(ptr);
402			ptr += 8;
403			break;
404		default:
405			die("bad long size");
406		}
407		ptr = cpu_data[cpu].page + header_page_data_offset;
408	}
409
410read_again:
411	idx = calc_index(ptr, cpu);
412
413	if (idx >= cpu_data[cpu].page_size) {
414		get_next_page(cpu);
415		return trace_peek_data(cpu);
416	}
417
418	type_len_ts = data2host4(ptr);
419	ptr += 4;
420
421	type_len = type_len4host(type_len_ts);
422	delta = ts4host(type_len_ts);
423
424	switch (type_len) {
425	case RINGBUF_TYPE_PADDING:
426		if (!delta)
427			die("error, hit unexpected end of page");
428		length = data2host4(ptr);
429		ptr += 4;
430		length *= 4;
431		ptr += length;
432		goto read_again;
433
434	case RINGBUF_TYPE_TIME_EXTEND:
435		extend = data2host4(ptr);
436		ptr += 4;
437		extend <<= TS_SHIFT;
438		extend += delta;
439		cpu_data[cpu].timestamp += extend;
440		goto read_again;
441
442	case RINGBUF_TYPE_TIME_STAMP:
443		ptr += 12;
444		break;
445	case 0:
446		length = data2host4(ptr);
447		ptr += 4;
448		die("here! length=%d", length);
449		break;
450	default:
451		length = type_len * 4;
452		break;
453	}
454
455	cpu_data[cpu].timestamp += delta;
456
457	data = malloc_or_die(sizeof(*data));
458	memset(data, 0, sizeof(*data));
459
460	data->ts = cpu_data[cpu].timestamp;
461	data->size = length;
462	data->data = ptr;
463	ptr += length;
464
465	cpu_data[cpu].index = calc_index(ptr, cpu);
466	cpu_data[cpu].next = data;
467
468	return data;
469}
470
471struct record *trace_read_data(int cpu)
472{
473	struct record *data;
474
475	data = trace_peek_data(cpu);
476	cpu_data[cpu].next = NULL;
477
478	return data;
479}
480
481ssize_t trace_report(int fd, bool __repipe)
482{
483	char buf[BUFSIZ];
484	char test[] = { 23, 8, 68 };
485	char *version;
486	int show_version = 0;
487	int show_funcs = 0;
488	int show_printk = 0;
489	ssize_t size;
 
 
 
 
 
 
490
491	calc_data_size = 1;
492	repipe = __repipe;
 
493
494	input_fd = fd;
 
 
 
 
 
495
496	read_or_die(buf, 3);
497	if (memcmp(buf, test, 3) != 0)
498		die("no trace data in the file");
499
500	read_or_die(buf, 7);
501	if (memcmp(buf, "tracing", 7) != 0)
502		die("not a trace file (missing 'tracing' tag)");
503
504	version = read_string();
 
 
505	if (show_version)
506		printf("version = %s\n", version);
507	free(version);
508
509	read_or_die(buf, 1);
 
 
 
510	file_bigendian = buf[0];
511	host_bigendian = bigendian();
512
513	read_or_die(buf, 1);
514	long_size = buf[0];
 
 
515
516	page_size = read4();
517
518	read_header_files();
519
520	read_ftrace_files();
521	read_event_files();
522	read_proc_kallsyms();
523	read_ftrace_printk();
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
524
525	size = calc_data_size - 1;
526	calc_data_size = 0;
527	repipe = false;
528
529	if (show_funcs) {
530		print_funcs();
531		return size;
532	}
533	if (show_printk) {
534		print_printk();
535		return size;
536	}
537
 
 
 
 
 
 
538	return size;
539}