[PATCH] blkparse: Add support for the plug/unplug events
[blktrace.git] / blkparse.c
CommitLineData
d956a2cd
JA
1/*
2 * block queue tracing parse application
3 *
4 * Copyright (C) 2005 Jens Axboe <axboe@suse.de>
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; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 *
20 */
d0ca268b
JA
21#include <sys/types.h>
22#include <sys/stat.h>
23#include <unistd.h>
24#include <stdio.h>
25#include <fcntl.h>
26#include <stdlib.h>
8fc0abbc 27#include <string.h>
d5396421 28#include <getopt.h>
412819ce
JA
29#include <errno.h>
30#include <signal.h>
d69db225 31#include <locale.h>
46e6968b 32#include <limits.h>
d0ca268b 33
8fc0abbc
JA
34#include "blktrace.h"
35#include "rbtree.h"
d0ca268b 36
2e3e8ded
JA
37#define SECONDS(x) ((unsigned long long)(x) / 1000000000)
38#define NANO_SECONDS(x) ((unsigned long long)(x) % 1000000000)
46e6968b 39#define DOUBLE_TO_NANO_ULL(d) ((unsigned long long)((d) * 1000000000))
cfab07eb 40
e7c9f3ff
NS
41#define MINORBITS 20
42#define MINORMASK ((1U << MINORBITS) - 1)
43#define MAJOR(dev) ((unsigned int) ((dev) >> MINORBITS))
44#define MINOR(dev) ((unsigned int) ((dev) & MINORMASK))
45
46#define min(a, b) ((a) < (b) ? (a) : (b))
d5396421 47
152f6476
JA
48struct io_stats {
49 unsigned long qreads, qwrites, creads, cwrites, mreads, mwrites;
50 unsigned long ireads, iwrites;
51 unsigned long long qread_kb, qwrite_kb, cread_kb, cwrite_kb;
52 unsigned long long iread_kb, iwrite_kb;
53};
54
d5396421 55struct per_cpu_info {
d0ca268b
JA
56 int cpu;
57 int nelems;
d0ca268b
JA
58
59 int fd;
87b72777 60 char fname[128];
d0ca268b 61
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62 struct io_stats io_stats;
63};
8fc0abbc 64
e7c9f3ff
NS
65struct per_dev_info {
66 dev_t id;
67 char *name;
68
69 int backwards;
70 unsigned long long events;
71 unsigned long long last_reported_time;
72 struct io_stats io_stats;
73
74 int ncpus;
75 struct per_cpu_info *cpus;
76};
77
152f6476
JA
78struct per_process_info {
79 char name[16];
80 __u32 pid;
81 struct io_stats io_stats;
82 struct per_process_info *hash_next, *list_next;
50adc0ba
JA
83
84 /*
85 * individual io stats
86 */
b9d40d6f
JA
87 unsigned long long longest_allocation_wait[2];
88 unsigned long long longest_dispatch_wait[2];
89 unsigned long long longest_completion_wait[2];
d0ca268b
JA
90};
91
152f6476
JA
92#define PPI_HASH_SHIFT (8)
93static struct per_process_info *ppi_hash[1 << PPI_HASH_SHIFT];
94static struct per_process_info *ppi_list;
95
46e6968b 96#define S_OPTS "i:o:b:stqw:"
d5396421
JA
97static struct option l_opts[] = {
98 {
99 .name = "input",
100 .has_arg = 1,
101 .flag = NULL,
102 .val = 'i'
103 },
104 {
105 .name = "output",
106 .has_arg = 1,
107 .flag = NULL,
108 .val = 'o'
109 },
79f19470
JA
110 {
111 .name = "batch",
112 .has_arg = 1,
113 .flag = NULL,
114 .val = 'b'
115 },
152f6476
JA
116 {
117 .name = "per program stats",
118 .has_arg = 0,
119 .flag = NULL,
120 .val = 's'
121 },
7997c5b0
JA
122 {
123 .name = "track ios",
124 .has_arg = 0,
125 .flag = NULL,
126 .val = 't'
127 },
1e1c60f1
NS
128 {
129 .name = "quiet",
130 .has_arg = 0,
131 .flag = NULL,
132 .val = 'q'
133 },
46e6968b
NS
134 {
135 .name = "stopwatch",
136 .has_arg = 1,
137 .flag = NULL,
138 .val = 'w'
139 },
d5396421
JA
140 {
141 .name = NULL,
142 .has_arg = 0,
143 .flag = NULL,
144 .val = 0
145 }
146};
147
7997c5b0
JA
148static struct rb_root rb_sort_root;
149static struct rb_root rb_track_root;
8fc0abbc 150
7997c5b0
JA
151/*
152 * for sorting the displayed output
153 */
8fc0abbc
JA
154struct trace {
155 struct blk_io_trace *bit;
156 struct rb_node rb_node;
157};
158
7997c5b0
JA
159/*
160 * for tracking individual ios
161 */
162struct io_track {
163 struct rb_node rb_node;
164
e7c9f3ff 165 dev_t device;
7997c5b0
JA
166 __u64 sector;
167 __u32 pid;
95c15013 168 unsigned long long allocation_time;
7997c5b0
JA
169 unsigned long long queue_time;
170 unsigned long long dispatch_time;
171 unsigned long long completion_time;
172};
173
e7c9f3ff
NS
174static int ndevices;
175static struct per_dev_info *devices;
176static char *get_dev_name(struct per_dev_info *, char *, int);
d0ca268b 177
152f6476 178static FILE *ofp;
e7c9f3ff
NS
179static char *output_name;
180
181static unsigned long long genesis_time;
46e6968b
NS
182static unsigned long long stopwatch_start; /* start from zero by default */
183static unsigned long long stopwatch_end = ULONG_LONG_MAX; /* "infinity" */
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JA
184
185static int per_process_stats;
7997c5b0 186static int track_ios;
d0ca268b 187
79f19470
JA
188#define RB_BATCH_DEFAULT (1024)
189static int rb_batch = RB_BATCH_DEFAULT;
190
e7c9f3ff
NS
191static int pipeline;
192
412819ce
JA
193#define is_done() (*(volatile int *)(&done))
194static volatile int done;
195
152f6476
JA
196static inline unsigned long hash_long(unsigned long val)
197{
16ef714e
JA
198#if __WORDSIZE == 32
199 val *= 0x9e370001UL;
200#elif __WORDSIZE == 64
201 val *= 0x9e37fffffffc0001UL;
202#else
203#error unknown word size
204#endif
205
206 return val >> (__WORDSIZE - PPI_HASH_SHIFT);
152f6476
JA
207}
208
209static inline void add_process_to_hash(struct per_process_info *ppi)
210{
211 const int hash_idx = hash_long(ppi->pid);
212
213 ppi->hash_next = ppi_hash[hash_idx];
214 ppi_hash[hash_idx] = ppi;
215}
216
217static inline void add_process_to_list(struct per_process_info *ppi)
218{
219 ppi->list_next = ppi_list;
220 ppi_list = ppi;
221}
222
223static struct per_process_info *find_process_by_pid(__u32 pid)
224{
225 const int hash_idx = hash_long(pid);
226 struct per_process_info *ppi;
227
228 ppi = ppi_hash[hash_idx];
229 while (ppi) {
230 if (ppi->pid == pid)
231 return ppi;
232
233 ppi = ppi->hash_next;
234 }
235
236 return NULL;
237}
238
7997c5b0
JA
239static inline int trace_rb_insert(struct trace *t)
240{
241 struct rb_node **p = &rb_sort_root.rb_node;
242 struct rb_node *parent = NULL;
243 struct trace *__t;
244
e7c9f3ff
NS
245 if (genesis_time == 0 || t->bit->time < genesis_time)
246 genesis_time = t->bit->time;
247
7997c5b0
JA
248 while (*p) {
249 parent = *p;
250 __t = rb_entry(parent, struct trace, rb_node);
251
e7c9f3ff
NS
252 if (t->bit->time < __t->bit->time)
253 p = &(*p)->rb_left;
254 else if (t->bit->time > __t->bit->time)
255 p = &(*p)->rb_right;
256 else if (t->bit->device < __t->bit->device)
257 p = &(*p)->rb_left;
258 else if (t->bit->device > __t->bit->device)
259 p = &(*p)->rb_right;
260 else if (t->bit->sequence < __t->bit->sequence)
7997c5b0
JA
261 p = &(*p)->rb_left;
262 else if (t->bit->sequence > __t->bit->sequence)
263 p = &(*p)->rb_right;
e7c9f3ff
NS
264 else if (t->bit->device == __t->bit->device) {
265 fprintf(stderr,
266 "sequence alias (%d) on device %d,%d!\n",
267 t->bit->sequence,
268 MAJOR(t->bit->device), MINOR(t->bit->device));
7997c5b0
JA
269 return 1;
270 }
271 }
272
273 rb_link_node(&t->rb_node, parent, p);
274 rb_insert_color(&t->rb_node, &rb_sort_root);
275 return 0;
276}
277
278static inline int track_rb_insert(struct io_track *iot)
279{
280 struct rb_node **p = &rb_track_root.rb_node;
281 struct rb_node *parent = NULL;
282 struct io_track *__iot;
283
284 while (*p) {
285 parent = *p;
e7c9f3ff 286
7997c5b0
JA
287 __iot = rb_entry(parent, struct io_track, rb_node);
288
e7c9f3ff
NS
289 if (iot->device < __iot->device)
290 p = &(*p)->rb_left;
291 else if (iot->device > __iot->device)
292 p = &(*p)->rb_right;
293 else if (iot->sector < __iot->sector)
7997c5b0
JA
294 p = &(*p)->rb_left;
295 else if (iot->sector > __iot->sector)
296 p = &(*p)->rb_right;
297 else {
e7c9f3ff
NS
298 fprintf(stderr,
299 "sector alias (%llu) on device %d,%d!\n",
300 iot->sector,
301 MAJOR(iot->device), MINOR(iot->device));
7997c5b0
JA
302 return 1;
303 }
304 }
305
306 rb_link_node(&iot->rb_node, parent, p);
307 rb_insert_color(&iot->rb_node, &rb_track_root);
308 return 0;
309}
310
e7c9f3ff 311static struct io_track *__find_track(dev_t device, __u64 sector)
7997c5b0
JA
312{
313 struct rb_node **p = &rb_track_root.rb_node;
314 struct rb_node *parent = NULL;
315 struct io_track *__iot;
316
317 while (*p) {
318 parent = *p;
319
320 __iot = rb_entry(parent, struct io_track, rb_node);
321
e7c9f3ff
NS
322 if (device < __iot->device)
323 p = &(*p)->rb_left;
324 else if (device > __iot->device)
325 p = &(*p)->rb_right;
326 else if (sector < __iot->sector)
7997c5b0
JA
327 p = &(*p)->rb_left;
328 else if (sector > __iot->sector)
329 p = &(*p)->rb_right;
330 else
331 return __iot;
332 }
333
334 return NULL;
335}
336
e7c9f3ff 337static struct io_track *find_track(__u32 pid, dev_t device, __u64 sector)
7997c5b0 338{
916b5501 339 struct io_track *iot;
7997c5b0 340
e7c9f3ff 341 iot = __find_track(device, sector);
7997c5b0
JA
342 if (!iot) {
343 iot = malloc(sizeof(*iot));
50adc0ba 344 iot->pid = pid;
e7c9f3ff 345 iot->device = device;
7997c5b0
JA
346 iot->sector = sector;
347 track_rb_insert(iot);
348 }
349
350 return iot;
351}
352
2e3e8ded
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353static void log_track_merge(struct blk_io_trace *t)
354{
355 struct io_track *iot;
356
357 if (!track_ios)
358 return;
359 if ((t->action & BLK_TC_ACT(BLK_TC_FS)) == 0)
360 return;
361
e7c9f3ff 362 iot = __find_track(t->device, t->sector - (t->bytes >> 10));
2e3e8ded
JA
363 if (!iot) {
364 fprintf(stderr, "Trying to merge on non-existing request\n");
365 return;
366 }
367
368 rb_erase(&iot->rb_node, &rb_track_root);
369 iot->sector -= t->bytes >> 10;
370 track_rb_insert(iot);
371}
372
95c15013 373static void log_track_getrq(struct blk_io_trace *t)
2e3e8ded
JA
374{
375 struct io_track *iot;
376
377 if (!track_ios)
378 return;
379
e7c9f3ff 380 iot = find_track(t->pid, t->device, t->sector);
95c15013
JA
381 iot->allocation_time = t->time;
382}
383
384
385/*
386 * return time between rq allocation and queue
387 */
388static unsigned long long log_track_queue(struct blk_io_trace *t)
389{
50adc0ba 390 unsigned long long elapsed;
95c15013
JA
391 struct io_track *iot;
392
393 if (!track_ios)
394 return -1;
395
e7c9f3ff 396 iot = find_track(t->pid, t->device, t->sector);
2e3e8ded 397 iot->queue_time = t->time;
50adc0ba
JA
398 elapsed = iot->queue_time - iot->allocation_time;
399
400 if (per_process_stats) {
401 struct per_process_info *ppi = find_process_by_pid(iot->pid);
b9d40d6f 402 int w = (t->action & BLK_TC_ACT(BLK_TC_WRITE)) != 0;
50adc0ba 403
b9d40d6f
JA
404 if (ppi && elapsed > ppi->longest_allocation_wait[w])
405 ppi->longest_allocation_wait[w] = elapsed;
50adc0ba
JA
406 }
407
408 return elapsed;
2e3e8ded
JA
409}
410
411/*
412 * return time between queue and issue
413 */
414static unsigned long long log_track_issue(struct blk_io_trace *t)
415{
50adc0ba 416 unsigned long long elapsed;
2e3e8ded
JA
417 struct io_track *iot;
418
419 if (!track_ios)
420 return -1;
421 if ((t->action & BLK_TC_ACT(BLK_TC_FS)) == 0)
422 return -1;
423
e7c9f3ff 424 iot = __find_track(t->device, t->sector);
2e3e8ded
JA
425 if (!iot) {
426 fprintf(stderr, "Trying to issue on non-existing request\n");
427 return -1;
428 }
429
430 iot->dispatch_time = t->time;
50adc0ba
JA
431 elapsed = iot->dispatch_time - iot->queue_time;
432
433 if (per_process_stats) {
434 struct per_process_info *ppi = find_process_by_pid(iot->pid);
b9d40d6f 435 int w = (t->action & BLK_TC_ACT(BLK_TC_WRITE)) != 0;
50adc0ba 436
b9d40d6f
JA
437 if (ppi && elapsed > ppi->longest_dispatch_wait[w])
438 ppi->longest_dispatch_wait[w] = elapsed;
50adc0ba
JA
439 }
440
441 return elapsed;
2e3e8ded
JA
442}
443
444/*
445 * return time between dispatch and complete
446 */
447static unsigned long long log_track_complete(struct blk_io_trace *t)
448{
449 unsigned long long elapsed;
450 struct io_track *iot;
451
452 if (!track_ios)
453 return -1;
454 if ((t->action & BLK_TC_ACT(BLK_TC_FS)) == 0)
455 return -1;
456
e7c9f3ff 457 iot = __find_track(t->device, t->sector);
2e3e8ded
JA
458 if (!iot) {
459 fprintf(stderr, "Trying to dispatch on non-existing request\n");
460 return -1;
461 }
462
463 iot->completion_time = t->time;
464 elapsed = iot->completion_time - iot->dispatch_time;
465
50adc0ba
JA
466 if (per_process_stats) {
467 struct per_process_info *ppi = find_process_by_pid(iot->pid);
b9d40d6f 468 int w = (t->action & BLK_TC_ACT(BLK_TC_WRITE)) != 0;
50adc0ba 469
b9d40d6f
JA
470 if (ppi && elapsed > ppi->longest_completion_wait[w])
471 ppi->longest_completion_wait[w] = elapsed;
50adc0ba
JA
472 }
473
2e3e8ded
JA
474 /*
475 * kill the trace, we don't need it after completion
476 */
477 rb_erase(&iot->rb_node, &rb_track_root);
478 free(iot);
479
480 return elapsed;
481}
482
483
152f6476
JA
484static struct io_stats *find_process_io_stats(__u32 pid, char *name)
485{
486 struct per_process_info *ppi = find_process_by_pid(pid);
487
488 if (!ppi) {
489 ppi = malloc(sizeof(*ppi));
490 memset(ppi, 0, sizeof(*ppi));
491 strncpy(ppi->name, name, sizeof(ppi->name));
492 ppi->pid = pid;
493 add_process_to_hash(ppi);
494 add_process_to_list(ppi);
495 }
496
497 return &ppi->io_stats;
498}
499
e7c9f3ff
NS
500
501static void resize_cpu_info(struct per_dev_info *pdi, int cpu)
a718bd37 502{
e7c9f3ff
NS
503 struct per_cpu_info *cpus = pdi->cpus;
504 int ncpus = pdi->ncpus;
505 int new_count = cpu + 1;
506 int new_space, size;
a718bd37
NS
507 char *new_start;
508
e7c9f3ff
NS
509 size = new_count * sizeof(struct per_cpu_info);
510 cpus = realloc(cpus, size);
511 if (!cpus) {
512 char name[20];
513 fprintf(stderr, "Out of memory, CPU info for device %s (%d)\n",
514 get_dev_name(pdi, name, sizeof(name)), size);
a718bd37
NS
515 exit(1);
516 }
517
e7c9f3ff
NS
518 new_start = (char *)cpus + (ncpus * sizeof(struct per_cpu_info));
519 new_space = (new_count - ncpus) * sizeof(struct per_cpu_info);
a718bd37 520 memset(new_start, 0, new_space);
e7c9f3ff
NS
521
522 pdi->ncpus = new_count;
523 pdi->cpus = cpus;
524}
525
526static struct per_cpu_info *get_cpu_info(struct per_dev_info *pdi, int cpu)
527{
528 if (cpu >= pdi->ncpus)
529 resize_cpu_info(pdi, cpu);
530 return &pdi->cpus[cpu];
a718bd37
NS
531}
532
e7c9f3ff
NS
533
534static int resize_devices(char *name)
a718bd37 535{
e7c9f3ff 536 int size = (ndevices + 1) * sizeof(struct per_dev_info);
c499bf38 537
e7c9f3ff
NS
538 devices = realloc(devices, size);
539 if (!devices) {
540 fprintf(stderr, "Out of memory, device %s (%d)\n", name, size);
541 return 1;
542 }
543 memset(&devices[ndevices], 0, sizeof(struct per_dev_info));
544 devices[ndevices].name = name;
545 ndevices++;
546 return 0;
547}
a718bd37 548
e7c9f3ff
NS
549static struct per_dev_info *get_dev_info(dev_t id, int create)
550{
551 int i;
c499bf38 552
e7c9f3ff
NS
553 for (i = 0; i < ndevices; i++)
554 if (devices[i].id == id)
555 return &devices[i];
556 if (!create)
557 return NULL;
558 if (resize_devices(NULL) != 0)
559 return NULL;
560 return &devices[ndevices-1];
a718bd37
NS
561}
562
e7c9f3ff
NS
563static char *get_dev_name(struct per_dev_info *pdi, char *buffer, int size)
564{
565 if (pdi->name)
566 snprintf(buffer, size, "%s", pdi->name);
567 else
568 snprintf(buffer, size, "%d,%d", MAJOR(pdi->id), MINOR(pdi->id));
569 return buffer;
570}
571
572
573static void check_time(struct per_dev_info *pdi, struct blk_io_trace *bit)
cfab07eb
AB
574{
575 unsigned long long this = bit->time;
e7c9f3ff 576 unsigned long long last = pdi->last_reported_time;
cfab07eb 577
e7c9f3ff
NS
578 pdi->backwards = (this < last) ? 'B' : ' ';
579 pdi->last_reported_time = this;
cfab07eb
AB
580}
581
e7c9f3ff 582
152f6476
JA
583static inline void __account_m(struct io_stats *ios, struct blk_io_trace *t,
584 int rw)
d0ca268b
JA
585{
586 if (rw) {
152f6476
JA
587 ios->mwrites++;
588 ios->qwrite_kb += t->bytes >> 10;
d0ca268b 589 } else {
152f6476
JA
590 ios->mreads++;
591 ios->qread_kb += t->bytes >> 10;
592 }
593}
594
595static inline void account_m(struct blk_io_trace *t, struct per_cpu_info *pci,
596 int rw)
597{
598 __account_m(&pci->io_stats, t, rw);
599
600 if (per_process_stats) {
601 struct io_stats *ios = find_process_io_stats(t->pid, t->comm);
602
603 __account_m(ios, t, rw);
d0ca268b
JA
604 }
605}
606
152f6476
JA
607static inline void __account_q(struct io_stats *ios, struct blk_io_trace *t,
608 int rw)
d0ca268b
JA
609{
610 if (rw) {
152f6476
JA
611 ios->qwrites++;
612 ios->qwrite_kb += t->bytes >> 10;
d0ca268b 613 } else {
152f6476
JA
614 ios->qreads++;
615 ios->qread_kb += t->bytes >> 10;
616 }
617}
618
619static inline void account_q(struct blk_io_trace *t, struct per_cpu_info *pci,
620 int rw)
621{
622 __account_q(&pci->io_stats, t, rw);
623
624 if (per_process_stats) {
625 struct io_stats *ios = find_process_io_stats(t->pid, t->comm);
626
627 __account_q(ios, t, rw);
d0ca268b
JA
628 }
629}
630
152f6476 631static inline void __account_c(struct io_stats *ios, int rw, unsigned int bytes)
d0ca268b
JA
632{
633 if (rw) {
152f6476
JA
634 ios->cwrites++;
635 ios->cwrite_kb += bytes >> 10;
d0ca268b 636 } else {
152f6476
JA
637 ios->creads++;
638 ios->cread_kb += bytes >> 10;
639 }
640}
641
642static inline void account_c(struct blk_io_trace *t, struct per_cpu_info *pci,
643 int rw, int bytes)
644{
645 __account_c(&pci->io_stats, rw, bytes);
646
647 if (per_process_stats) {
648 struct io_stats *ios = find_process_io_stats(t->pid, t->comm);
649
650 __account_c(ios, rw, bytes);
d0ca268b
JA
651 }
652}
653
152f6476 654static inline void __account_i(struct io_stats *ios, int rw, unsigned int bytes)
afd2d7ad 655{
656 if (rw) {
152f6476
JA
657 ios->iwrites++;
658 ios->iwrite_kb += bytes >> 10;
afd2d7ad 659 } else {
152f6476
JA
660 ios->ireads++;
661 ios->iread_kb += bytes >> 10;
afd2d7ad 662 }
663}
664
152f6476
JA
665static inline void account_i(struct blk_io_trace *t, struct per_cpu_info *pci,
666 int rw)
d0ca268b 667{
152f6476
JA
668 __account_i(&pci->io_stats, rw, t->bytes);
669
670 if (per_process_stats) {
671 struct io_stats *ios = find_process_io_stats(t->pid, t->comm);
d5396421 672
152f6476
JA
673 __account_i(ios, rw, t->bytes);
674 }
675}
676
677static void output(struct per_cpu_info *pci, char *s)
678{
679 fprintf(ofp, "%s", s);
d0ca268b
JA
680}
681
3aabcd89
JA
682static char hstring[256];
683static char tstring[256];
d0ca268b 684
d5396421
JA
685static inline char *setup_header(struct per_cpu_info *pci,
686 struct blk_io_trace *t, char act)
d0ca268b
JA
687{
688 int w = t->action & BLK_TC_ACT(BLK_TC_WRITE);
689 int b = t->action & BLK_TC_ACT(BLK_TC_BARRIER);
690 int s = t->action & BLK_TC_ACT(BLK_TC_SYNC);
691 char rwbs[4];
692 int i = 0;
693
694 if (w)
695 rwbs[i++] = 'W';
696 else
697 rwbs[i++] = 'R';
698 if (b)
699 rwbs[i++] = 'B';
700 if (s)
701 rwbs[i++] = 'S';
702
703 rwbs[i] = '\0';
704
e7c9f3ff
NS
705 sprintf(hstring, "%3d,%-3d %2d %8ld %5Lu.%09Lu %5u %c %3s",
706 MAJOR(t->device), MINOR(t->device), pci->cpu,
cfab07eb
AB
707 (unsigned long)t->sequence, SECONDS(t->time),
708 NANO_SECONDS(t->time), t->pid, act, rwbs);
d0ca268b
JA
709
710 return hstring;
711}
712
d5396421
JA
713static void log_complete(struct per_cpu_info *pci, struct blk_io_trace *t,
714 char act)
d0ca268b 715{
2e3e8ded
JA
716 unsigned long long elapsed = log_track_complete(t);
717
718 if (elapsed != -1ULL) {
b9d40d6f 719 unsigned long usec = elapsed / 1000;
2e3e8ded 720
b9d40d6f 721 sprintf(tstring,"%s %Lu + %u (%8lu) [%d]\n",
2e3e8ded
JA
722 setup_header(pci, t, act),
723 (unsigned long long)t->sector, t->bytes >> 9,
724 usec, t->error);
725 } else {
726 sprintf(tstring,"%s %Lu + %u [%d]\n", setup_header(pci, t, act),
727 (unsigned long long)t->sector, t->bytes >> 9, t->error);
728 }
729
d5396421 730 output(pci, tstring);
d0ca268b
JA
731}
732
d5396421
JA
733static void log_queue(struct per_cpu_info *pci, struct blk_io_trace *t,
734 char act)
d0ca268b 735{
95c15013 736 unsigned long long elapsed = log_track_queue(t);
2e3e8ded 737
95c15013 738 if (elapsed != -1ULL) {
b9d40d6f 739 unsigned long usec = elapsed / 1000;
95c15013 740
b9d40d6f 741 sprintf(tstring,"%s %Lu + %u (%8lu) [%s]\n",
95c15013
JA
742 setup_header(pci, t, act),
743 (unsigned long long)t->sector, t->bytes >> 9,
744 usec, t->comm);
745 } else {
746 sprintf(tstring,"%s %Lu + %u [%s]\n", setup_header(pci, t, act),
747 (unsigned long long)t->sector, t->bytes >> 9, t->comm);
748 }
d5396421 749 output(pci, tstring);
d0ca268b
JA
750}
751
d5396421
JA
752static void log_issue(struct per_cpu_info *pci, struct blk_io_trace *t,
753 char act)
d0ca268b 754{
2e3e8ded
JA
755 unsigned long long elapsed = log_track_issue(t);
756
757 if (elapsed != -1ULL) {
758 double usec = (double) elapsed / 1000;
759
555d3a31 760 sprintf(tstring,"%s %Lu + %u (%8.2f) [%s]\n",
2e3e8ded
JA
761 setup_header(pci, t, act),
762 (unsigned long long)t->sector, t->bytes >> 9,
763 usec, t->comm);
764 } else {
765 sprintf(tstring,"%s %Lu + %u [%s]\n", setup_header(pci, t, act),
766 (unsigned long long)t->sector, t->bytes >> 9, t->comm);
767 }
768
d5396421 769 output(pci, tstring);
d0ca268b
JA
770}
771
d5396421
JA
772static void log_merge(struct per_cpu_info *pci, struct blk_io_trace *t,
773 char act)
d0ca268b 774{
2e3e8ded
JA
775 log_track_merge(t);
776
984c63b7 777 sprintf(tstring,"%s %Lu + %u [%s]\n", setup_header(pci, t, act),
2955af9d 778 (unsigned long long)t->sector, t->bytes >> 9, t->comm);
d5396421 779 output(pci, tstring);
d0ca268b
JA
780}
781
d5396421
JA
782static void log_generic(struct per_cpu_info *pci, struct blk_io_trace *t,
783 char act)
d0ca268b 784{
2955af9d
NS
785 sprintf(tstring,"%s %Lu + %u [%s]\n", setup_header(pci, t, act),
786 (unsigned long long)t->sector, t->bytes >> 9, t->comm);
d5396421 787 output(pci, tstring);
d0ca268b
JA
788}
789
d5396421 790static int log_pc(struct per_cpu_info *pci, struct blk_io_trace *t, char act)
d0ca268b 791{
87b72777
JA
792 unsigned char *buf;
793 int i;
d0ca268b 794
d5396421
JA
795 sprintf(tstring,"%s ", setup_header(pci, t, act));
796 output(pci, tstring);
d0ca268b 797
87b72777 798 buf = (unsigned char *) t + sizeof(*t);
d0ca268b
JA
799 for (i = 0; i < t->pdu_len; i++) {
800 sprintf(tstring,"%02x ", buf[i]);
d5396421 801 output(pci, tstring);
d0ca268b
JA
802 }
803
804 if (act == 'C') {
2955af9d
NS
805 sprintf(tstring,"[%d]\n", t->error);
806 output(pci, tstring);
807 } else {
808 sprintf(tstring,"[%s]\n", t->comm);
d5396421 809 output(pci, tstring);
d0ca268b 810 }
87b72777 811 return 0;
d0ca268b
JA
812}
813
d5396421 814static int dump_trace_pc(struct blk_io_trace *t, struct per_cpu_info *pci)
d0ca268b 815{
87b72777
JA
816 int ret = 0;
817
d0ca268b
JA
818 switch (t->action & 0xffff) {
819 case __BLK_TA_QUEUE:
d5396421 820 log_generic(pci, t, 'Q');
d0ca268b
JA
821 break;
822 case __BLK_TA_GETRQ:
d5396421 823 log_generic(pci, t, 'G');
d0ca268b
JA
824 break;
825 case __BLK_TA_SLEEPRQ:
d5396421 826 log_generic(pci, t, 'S');
d0ca268b
JA
827 break;
828 case __BLK_TA_REQUEUE:
d5396421 829 log_generic(pci, t, 'R');
d0ca268b
JA
830 break;
831 case __BLK_TA_ISSUE:
d5396421 832 ret = log_pc(pci, t, 'D');
d0ca268b
JA
833 break;
834 case __BLK_TA_COMPLETE:
d5396421 835 log_pc(pci, t, 'C');
d0ca268b
JA
836 break;
837 default:
838 fprintf(stderr, "Bad pc action %x\n", t->action);
87b72777
JA
839 ret = 1;
840 break;
d0ca268b
JA
841 }
842
87b72777 843 return ret;
d0ca268b
JA
844}
845
d5396421 846static void dump_trace_fs(struct blk_io_trace *t, struct per_cpu_info *pci)
d0ca268b
JA
847{
848 int w = t->action & BLK_TC_ACT(BLK_TC_WRITE);
7997c5b0 849 int act = t->action & 0xffff;
d0ca268b 850
7997c5b0 851 switch (act) {
d0ca268b 852 case __BLK_TA_QUEUE:
152f6476 853 account_q(t, pci, w);
d5396421 854 log_queue(pci, t, 'Q');
d0ca268b
JA
855 break;
856 case __BLK_TA_BACKMERGE:
152f6476 857 account_m(t, pci, w);
d5396421 858 log_merge(pci, t, 'M');
d0ca268b
JA
859 break;
860 case __BLK_TA_FRONTMERGE:
152f6476 861 account_m(t, pci, w);
d5396421 862 log_merge(pci, t, 'F');
d0ca268b
JA
863 break;
864 case __BLK_TA_GETRQ:
95c15013 865 log_track_getrq(t);
d5396421 866 log_generic(pci, t, 'G');
d0ca268b
JA
867 break;
868 case __BLK_TA_SLEEPRQ:
d5396421 869 log_generic(pci, t, 'S');
d0ca268b
JA
870 break;
871 case __BLK_TA_REQUEUE:
152f6476 872 account_c(t, pci, w, -t->bytes);
d5396421 873 log_queue(pci, t, 'R');
d0ca268b
JA
874 break;
875 case __BLK_TA_ISSUE:
152f6476 876 account_i(t, pci, w);
d5396421 877 log_issue(pci, t, 'D');
d0ca268b
JA
878 break;
879 case __BLK_TA_COMPLETE:
152f6476 880 account_c(t, pci, w, t->bytes);
d5396421 881 log_complete(pci, t, 'C');
d0ca268b 882 break;
88b1a526
JA
883 case __BLK_TA_PLUG:
884 log_generic(pci, t, 'P');
885 break;
886 case __BLK_TA_UNPLUG:
887 log_generic(pci, t, 'U');
888 break;
d0ca268b
JA
889 default:
890 fprintf(stderr, "Bad fs action %x\n", t->action);
1f79c4a0 891 break;
d0ca268b 892 }
d0ca268b
JA
893}
894
e7c9f3ff
NS
895static int dump_trace(struct blk_io_trace *t, struct per_cpu_info *pci,
896 struct per_dev_info *pdi)
d0ca268b 897{
87b72777
JA
898 int ret = 0;
899
d0ca268b 900 if (t->action & BLK_TC_ACT(BLK_TC_PC))
d5396421 901 ret = dump_trace_pc(t, pci);
d0ca268b 902 else
d5396421 903 dump_trace_fs(t, pci);
87b72777 904
e7c9f3ff 905 pdi->events++;
87b72777 906 return ret;
d0ca268b
JA
907}
908
152f6476 909static void dump_io_stats(struct io_stats *ios, char *msg)
5c017e4b 910{
152f6476
JA
911 fprintf(ofp, "%s\n", msg);
912
913 fprintf(ofp, " Reads Queued: %'8lu, %'8LuKiB\t", ios->qreads, ios->qread_kb);
914 fprintf(ofp, " Writes Queued: %'8lu, %'8LuKiB\n", ios->qwrites,ios->qwrite_kb);
0a6b8fc4 915
152f6476
JA
916 fprintf(ofp, " Read Dispatches: %'8lu, %'8LuKiB\t", ios->ireads, ios->iread_kb);
917 fprintf(ofp, " Write Dispatches: %'8lu, %'8LuKiB\n", ios->iwrites,ios->iwrite_kb);
918 fprintf(ofp, " Reads Completed: %'8lu, %'8LuKiB\t", ios->creads, ios->cread_kb);
919 fprintf(ofp, " Writes Completed: %'8lu, %'8LuKiB\n", ios->cwrites,ios->cwrite_kb);
920 fprintf(ofp, " Read Merges: %'8lu%8c\t", ios->mreads, ' ');
0a6b8fc4 921
152f6476 922 fprintf(ofp, " Write Merges: %'8lu\n", ios->mwrites);
5c017e4b
JA
923}
924
50adc0ba
JA
925static void dump_wait_stats(struct per_process_info *ppi)
926{
b9d40d6f
JA
927 unsigned long rawait = ppi->longest_allocation_wait[0] / 1000;
928 unsigned long rdwait = ppi->longest_dispatch_wait[0] / 1000;
929 unsigned long rcwait = ppi->longest_completion_wait[0] / 1000;
930 unsigned long wawait = ppi->longest_allocation_wait[1] / 1000;
931 unsigned long wdwait = ppi->longest_dispatch_wait[1] / 1000;
932 unsigned long wcwait = ppi->longest_completion_wait[1] / 1000;
933
934 fprintf(ofp, " Allocation wait: %'8lu%8c\t", rawait, ' ');
935 fprintf(ofp, " Allocation wait: %'8lu\n", wawait);
936 fprintf(ofp, " Dispatch wait: %'8lu%8c\t", rdwait, ' ');
937 fprintf(ofp, " Dispatch wait: %'8lu\n", wdwait);
938 fprintf(ofp, " Completion wait: %'8lu%8c\t", rcwait, ' ');
939 fprintf(ofp, " Completion wait: %'8lu\n", wcwait);
50adc0ba
JA
940}
941
152f6476
JA
942static void show_process_stats(void)
943{
944 struct per_process_info *ppi;
945
946 ppi = ppi_list;
947 while (ppi) {
948 dump_io_stats(&ppi->io_stats, ppi->name);
50adc0ba 949 dump_wait_stats(ppi);
152f6476
JA
950 ppi = ppi->list_next;
951 }
952
953 fprintf(ofp, "\n");
954}
955
e7c9f3ff 956static void show_device_and_cpu_stats(void)
d0ca268b 957{
e7c9f3ff
NS
958 struct per_dev_info *pdi;
959 struct per_cpu_info *pci;
960 struct io_stats total, *ios;
961 int i, j, pci_events;
962 char line[3 + 8/*cpu*/ + 2 + 32/*dev*/ + 3];
963 char name[32];
964
965 for (pdi = devices, i = 0; i < ndevices; i++, pdi++) {
966
967 memset(&total, 0, sizeof(total));
968 pci_events = 0;
969
970 if (i > 0)
971 fprintf(ofp, "\n");
972
973 for (pci = pdi->cpus, j = 0; j < pdi->ncpus; j++, pci++) {
974 if (!pci->nelems)
975 continue;
976
977 ios = &pci->io_stats;
978 total.qreads += ios->qreads;
979 total.qwrites += ios->qwrites;
980 total.creads += ios->creads;
981 total.cwrites += ios->cwrites;
982 total.mreads += ios->mreads;
983 total.mwrites += ios->mwrites;
984 total.ireads += ios->ireads;
985 total.iwrites += ios->iwrites;
986 total.qread_kb += ios->qread_kb;
987 total.qwrite_kb += ios->qwrite_kb;
988 total.cread_kb += ios->cread_kb;
989 total.cwrite_kb += ios->cwrite_kb;
990 total.iread_kb += ios->iread_kb;
991 total.iwrite_kb += ios->iwrite_kb;
992
993 snprintf(line, sizeof(line) - 1, "CPU%d (%s):",
994 j, get_dev_name(pdi, name, sizeof(name)));
995 dump_io_stats(ios, line);
996 pci_events++;
997 }
5c017e4b 998
e7c9f3ff
NS
999 if (pci_events > 1) {
1000 fprintf(ofp, "\n");
1001 snprintf(line, sizeof(line) - 1, "Total (%s):",
1002 get_dev_name(pdi, name, sizeof(name)));
1003 dump_io_stats(&total, line);
1004 }
d0ca268b 1005
e7c9f3ff
NS
1006 fprintf(ofp, "Events (%s): %'Lu\n",
1007 get_dev_name(pdi, line, sizeof(line)), pdi->events);
1008 }
d0ca268b
JA
1009}
1010
2ff323b0
JA
1011static struct blk_io_trace *find_trace(void *p, unsigned long offset, int nr)
1012{
1013 unsigned long max_offset = min(offset,nr * sizeof(struct blk_io_trace));
1014 unsigned long off;
1015 struct blk_io_trace *bit;
1016 __u32 magic;
1017
1018 for (off = 0; off < max_offset; off++) {
1019 bit = p + off;
1020
1021 magic = be32_to_cpu(bit->magic);
1022 if ((magic & 0xffffff00) == BLK_IO_TRACE_MAGIC)
1023 return bit;
1024 }
1025
1026 return NULL;
1027}
1028
e7c9f3ff
NS
1029static int sort_entries(void *traces, unsigned long offset, int nr,
1030 struct per_dev_info *fpdi, struct per_cpu_info *fpci)
8fc0abbc 1031{
e7c9f3ff 1032 struct per_dev_info *pdi;
412819ce 1033 struct per_cpu_info *pci;
8fc0abbc
JA
1034 struct blk_io_trace *bit;
1035 struct trace *t;
1036 void *start = traces;
8fc0abbc 1037
6fe4709e 1038 while (traces - start <= offset - sizeof(*bit)) {
412819ce
JA
1039 if (!nr)
1040 break;
1041
2ff323b0
JA
1042 bit = find_trace(traces, offset - (traces - start), nr);
1043 if (!bit)
1044 break;
6fe4709e 1045
8fc0abbc 1046 t = malloc(sizeof(*t));
e7c9f3ff
NS
1047 if (!t) {
1048 fprintf(stderr, "Out of memory, seq %d on dev %d,%d\n",
1049 bit->sequence,
1050 MAJOR(bit->device), MINOR(bit->device));
1051 return -1;
1052 }
8fc0abbc
JA
1053 t->bit = bit;
1054 memset(&t->rb_node, 0, sizeof(t->rb_node));
1055
6fe4709e
JA
1056 trace_to_cpu(bit);
1057
e7c9f3ff
NS
1058 if (verify_trace(bit)) {
1059 free(t);
66fa7233 1060 break;
e7c9f3ff 1061 }
66fa7233 1062
e7c9f3ff
NS
1063 pdi = fpdi ? fpdi : get_dev_info(bit->device, 1);
1064 pdi->id = bit->device;
1065 pci = fpci ? fpci : get_cpu_info(pdi, bit->cpu);
1066 pci->cpu = bit->cpu;
412819ce
JA
1067 pci->nelems++;
1068
e7c9f3ff
NS
1069 if (trace_rb_insert(t)) {
1070 free(t);
8fc0abbc 1071 return -1;
e7c9f3ff 1072 }
8fc0abbc
JA
1073
1074 traces += sizeof(*bit) + bit->pdu_len;
412819ce 1075 nr--;
6fe4709e 1076 }
8fc0abbc 1077
e7c9f3ff 1078 return 0;
8fc0abbc
JA
1079}
1080
412819ce
JA
1081static void free_entries_rb(void)
1082{
1083 struct rb_node *n;
1084
7997c5b0 1085 while ((n = rb_first(&rb_sort_root)) != NULL) {
412819ce
JA
1086 struct trace *t = rb_entry(n, struct trace, rb_node);
1087
7997c5b0 1088 rb_erase(&t->rb_node, &rb_sort_root);
412819ce
JA
1089 free(t);
1090 }
1091}
1092
d5396421 1093static void show_entries_rb(void)
8fc0abbc 1094{
e7c9f3ff 1095 struct per_dev_info *pdi;
8fc0abbc 1096 struct blk_io_trace *bit;
3aabcd89 1097 struct rb_node *n;
8fc0abbc
JA
1098 struct trace *t;
1099 int cpu;
1100
7997c5b0 1101 n = rb_first(&rb_sort_root);
3aabcd89
JA
1102 if (!n)
1103 return;
8fc0abbc 1104
3aabcd89 1105 do {
8fc0abbc
JA
1106 t = rb_entry(n, struct trace, rb_node);
1107 bit = t->bit;
1108
e7c9f3ff
NS
1109 pdi = get_dev_info(bit->device, 0);
1110 if (!pdi) {
1111 fprintf(stderr, "Unknown device ID? (%d,%d)\n",
1112 MAJOR(bit->device), MINOR(bit->device));
1113 break;
1114 }
d5396421 1115 cpu = bit->cpu;
e7c9f3ff
NS
1116 if (cpu > pdi->ncpus) {
1117 fprintf(stderr, "Unknown CPU ID? (%d, device %d,%d)\n",
1118 cpu, MAJOR(bit->device), MINOR(bit->device));
87b72777 1119 break;
8fc0abbc
JA
1120 }
1121
cfab07eb 1122 bit->time -= genesis_time;
46e6968b
NS
1123 if (bit->time < stopwatch_start)
1124 continue;
1125 if (bit->time >= stopwatch_end)
1126 break;
8fc0abbc 1127
e7c9f3ff 1128 check_time(pdi, bit);
8fc0abbc 1129
e7c9f3ff 1130 if (dump_trace(bit, &pdi->cpus[cpu], pdi))
87b72777
JA
1131 break;
1132
8fc0abbc
JA
1133 } while ((n = rb_next(n)) != NULL);
1134}
1135
1f79c4a0
JA
1136static int read_data(int fd, void *buffer, int bytes, int block)
1137{
1138 int ret, bytes_left, fl;
1139 void *p;
1140
1141 fl = fcntl(fd, F_GETFL);
1142
1143 if (!block)
1144 fcntl(fd, F_SETFL, fl | O_NONBLOCK);
1145 else
1146 fcntl(fd, F_SETFL, fl & ~O_NONBLOCK);
1147
1148 bytes_left = bytes;
1149 p = buffer;
1150 while (bytes_left > 0) {
1151 ret = read(fd, p, bytes_left);
1152 if (!ret)
1153 return 1;
1154 else if (ret < 0) {
1155 if (errno != EAGAIN)
1156 perror("read");
1157 return -1;
1158 } else {
1159 p += ret;
1160 bytes_left -= ret;
1161 }
1162 }
1163
1164 return 0;
1165}
1166
d5396421 1167static int do_file(void)
d0ca268b 1168{
e7c9f3ff
NS
1169 struct per_dev_info *pdi;
1170 int i, j, nfiles = 0;
d0ca268b 1171
e7c9f3ff
NS
1172 for (pdi = devices, i = 0; i < ndevices; i++, pdi++) {
1173 for (j = 0;; j++, nfiles++) {
1174 struct per_cpu_info *pci;
1175 struct stat st;
1176 void *tb;
87b72777 1177
e7c9f3ff
NS
1178 pci = get_cpu_info(pdi, j);
1179 pci->cpu = j;
d0ca268b 1180
e7c9f3ff
NS
1181 snprintf(pci->fname, sizeof(pci->fname)-1,
1182 "%s_out.%d", pdi->name, j);
1183 if (stat(pci->fname, &st) < 0)
1184 break;
1185 if (!st.st_size)
1186 continue;
1187
1188 printf("Processing %s\n", pci->fname);
1189
1190 tb = malloc(st.st_size);
1191 if (!tb) {
1192 fprintf(stderr, "Out of memory, skip file %s\n",
1193 pci->fname);
1194 continue;
1195 }
1196
1197 pci->fd = open(pci->fname, O_RDONLY);
1198 if (pci->fd < 0) {
1199 perror(pci->fname);
1200 free(tb);
1201 continue;
1202 }
1203
1204 if (read_data(pci->fd, tb, st.st_size, 1)) {
1205 close(pci->fd);
1206 free(tb);
1207 continue;
1208 }
1209
1210 if (sort_entries(tb, st.st_size, ~0U, pdi, pci) == -1) {
1211 close(pci->fd);
1212 free(tb);
1213 continue;
1214 }
1215
1216 printf("Completed %s (CPU%d %d, entries)\n",
1217 pci->fname, j, pci->nelems);
1218 close(pci->fd);
d0ca268b 1219 }
d5396421
JA
1220 }
1221
1222 if (!nfiles) {
1223 fprintf(stderr, "No files found\n");
1224 return 1;
1225 }
1226
1227 show_entries_rb();
d5396421
JA
1228 return 0;
1229}
1230
2ff323b0 1231static void resize_buffer(void **buffer, long *size, long offset)
d5396421 1232{
2ff323b0 1233 long old_size = *size;
d5396421 1234
51128a28
JA
1235 if (*size == 0)
1236 *size = 64 * sizeof(struct blk_io_trace);
1237
2ff323b0
JA
1238 *size *= 2;
1239 *buffer = realloc(*buffer, *size);
51128a28
JA
1240
1241 if (old_size)
1242 memset(*buffer + offset, 0, *size - old_size);
412819ce 1243}
d5396421 1244
0a94916b 1245static int read_sort_events(int fd, void **buffer, long *max_offset)
412819ce 1246{
0a94916b 1247 long offset;
412819ce 1248 int events;
d5396421 1249
51128a28 1250 events = offset = 0;
412819ce
JA
1251 do {
1252 struct blk_io_trace *t;
1253 int pdu_len;
51128a28 1254 __u32 magic;
d5396421 1255
0a94916b
JA
1256 if (*max_offset - offset < sizeof(*t))
1257 resize_buffer(buffer, max_offset, offset);
d5396421 1258
c80c18a7
JA
1259 if (read_data(fd, *buffer + offset, sizeof(*t), !events))
1260 break;
d5396421 1261
412819ce
JA
1262 t = *buffer + offset;
1263 offset += sizeof(*t);
d5396421 1264
51128a28
JA
1265 magic = be32_to_cpu(t->magic);
1266 if ((magic & 0xffffff00) != BLK_IO_TRACE_MAGIC) {
1267 fprintf(stderr, "Bad magic %x\n", magic);
1268 break;
1269 }
1270
412819ce 1271 pdu_len = be16_to_cpu(t->pdu_len);
2ff323b0 1272 if (pdu_len) {
51128a28 1273 if (*max_offset - offset <= pdu_len)
0a94916b 1274 resize_buffer(buffer, max_offset, offset);
d5396421 1275
2ff323b0
JA
1276 if (read_data(fd, *buffer + offset, pdu_len, 1))
1277 break;
d5396421 1278
2ff323b0
JA
1279 offset += pdu_len;
1280 }
d5396421 1281
412819ce 1282 events++;
79f19470 1283 } while (!is_done() && events < rb_batch);
d5396421 1284
412819ce
JA
1285 return events;
1286}
d5396421 1287
412819ce
JA
1288static int do_stdin(void)
1289{
1290 int fd;
51128a28 1291 void *ptr = NULL;
0a94916b 1292 long max_offset;
d5396421 1293
1f79c4a0 1294 fd = dup(STDIN_FILENO);
0a94916b 1295 max_offset = 0;
412819ce
JA
1296 do {
1297 int events;
d5396421 1298
0a94916b 1299 events = read_sort_events(fd, &ptr, &max_offset);
412819ce
JA
1300 if (!events)
1301 break;
1302
e7c9f3ff 1303 if (sort_entries(ptr, ~0UL, events, NULL, NULL) == -1)
2ff323b0
JA
1304 break;
1305
412819ce
JA
1306 show_entries_rb();
1307 free_entries_rb();
d5396421
JA
1308 } while (1);
1309
51128a28
JA
1310 if (ptr)
1311 free(ptr);
1312
d5396421 1313 close(fd);
d5396421
JA
1314 return 0;
1315}
d0ca268b 1316
1f79c4a0 1317static void flush_output(void)
412819ce 1318{
152f6476 1319 fflush(ofp);
412819ce
JA
1320}
1321
1f79c4a0 1322static void handle_sigint(int sig)
412819ce
JA
1323{
1324 done = 1;
1325 flush_output();
1326}
1327
46e6968b
NS
1328/*
1329 * Extract start and duration times from a string, allowing
1330 * us to specify a time interval of interest within a trace.
1331 * Format: "duration" (start is zero) or "start:duration".
1332 */
1333static int find_stopwatch_interval(char *string)
1334{
1335 double value;
1336 char *sp;
1337
1338 value = strtod(string, &sp);
1339 if (sp == string) {
1340 fprintf(stderr,"Invalid stopwatch timer: %s\n", string);
1341 return 1;
1342 }
1343 if (*sp == ':') {
1344 stopwatch_start = DOUBLE_TO_NANO_ULL(value);
1345 string = sp + 1;
1346 value = strtod(string, &sp);
1347 if (sp == string || *sp != '\0') {
1348 fprintf(stderr,"Invalid stopwatch duration time: %s\n",
1349 string);
1350 return 1;
1351 }
1352 } else if (*sp != '\0') {
1353 fprintf(stderr,"Invalid stopwatch start timer: %s\n", string);
1354 return 1;
1355 }
1356 stopwatch_end = stopwatch_start + DOUBLE_TO_NANO_ULL(value);
1357 return 0;
1358}
1359
1f79c4a0
JA
1360static void usage(char *prog)
1361{
46e6968b
NS
1362 fprintf(stderr, "Usage: %s "
1363 "[-i <name>] [-o <output>] [-s] [-w N[:n]] <name>...\n",
1364 prog);
1f79c4a0
JA
1365}
1366
d5396421
JA
1367int main(int argc, char *argv[])
1368{
152f6476 1369 char *ofp_buffer;
a66877e6 1370 int c, ret, mode;
1e1c60f1 1371 int per_device_and_cpu_stats = 1;
d5396421
JA
1372
1373 while ((c = getopt_long(argc, argv, S_OPTS, l_opts, NULL)) != -1) {
1374 switch (c) {
1375 case 'i':
e7c9f3ff
NS
1376 if (!strcmp(optarg, "-") && !pipeline)
1377 pipeline = 1;
1378 else if (resize_devices(optarg) != 0)
1379 return 1;
d5396421
JA
1380 break;
1381 case 'o':
66efebf8 1382 output_name = optarg;
d5396421 1383 break;
79f19470
JA
1384 case 'b':
1385 rb_batch = atoi(optarg);
1386 if (rb_batch <= 0)
1387 rb_batch = RB_BATCH_DEFAULT;
1388 break;
152f6476
JA
1389 case 's':
1390 per_process_stats = 1;
1391 break;
7997c5b0
JA
1392 case 't':
1393 track_ios = 1;
1394 break;
1e1c60f1
NS
1395 case 'q':
1396 per_device_and_cpu_stats = 0;
1397 break;
46e6968b
NS
1398 case 'w':
1399 if (find_stopwatch_interval(optarg) != 0)
1400 return 1;
1401 break;
d5396421 1402 default:
1f79c4a0 1403 usage(argv[0]);
d5396421
JA
1404 return 1;
1405 }
d0ca268b
JA
1406 }
1407
e7c9f3ff
NS
1408 while (optind < argc) {
1409 if (!strcmp(argv[optind], "-") && !pipeline)
1410 pipeline = 1;
1411 else if (resize_devices(argv[optind]) != 0)
1412 return 1;
1413 optind++;
1414 }
1415
1416 if (!pipeline && !ndevices) {
1f79c4a0 1417 usage(argv[0]);
d5396421
JA
1418 return 1;
1419 }
1420
7997c5b0
JA
1421 memset(&rb_sort_root, 0, sizeof(rb_sort_root));
1422 memset(&rb_track_root, 0, sizeof(rb_track_root));
412819ce
JA
1423
1424 signal(SIGINT, handle_sigint);
1425 signal(SIGHUP, handle_sigint);
1426 signal(SIGTERM, handle_sigint);
d5396421 1427
d69db225
JA
1428 setlocale(LC_NUMERIC, "en_US");
1429
a66877e6 1430 if (!output_name) {
152f6476 1431 ofp = fdopen(STDOUT_FILENO, "w");
a66877e6
JA
1432 mode = _IOLBF;
1433 } else {
152f6476
JA
1434 char ofname[128];
1435
1436 snprintf(ofname, sizeof(ofname) - 1, "%s.log", output_name);
1437 ofp = fopen(ofname, "w");
a66877e6 1438 mode = _IOFBF;
152f6476
JA
1439 }
1440
1441 if (!ofp) {
1442 perror("fopen");
1443 return 1;
1444 }
1445
1446 ofp_buffer = malloc(4096);
a66877e6 1447 if (setvbuf(ofp, ofp_buffer, mode, 4096)) {
152f6476
JA
1448 perror("setvbuf");
1449 return 1;
1450 }
1451
e7c9f3ff 1452 if (pipeline)
d5396421
JA
1453 ret = do_stdin();
1454 else
1455 ret = do_file();
1456
152f6476
JA
1457 if (per_process_stats)
1458 show_process_stats();
1459
1e1c60f1
NS
1460 if (per_device_and_cpu_stats)
1461 show_device_and_cpu_stats();
152f6476 1462
412819ce 1463 flush_output();
d5396421 1464 return ret;
d0ca268b 1465}