Duplicate name checks in ioengines.c
[fio.git] / fio.h
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1#ifndef FIO_H
2#define FIO_H
3
4#include <sched.h>
5#include <limits.h>
6#include <pthread.h>
7#include <sys/time.h>
8#include <sys/resource.h>
9#include <errno.h>
10#include <stdlib.h>
11#include <stdio.h>
12#include <unistd.h>
13#include <string.h>
14
15#include "list.h"
16#include "md5.h"
17#include "crc32.h"
18#include "arch.h"
19#include "os.h"
20
21#ifdef FIO_HAVE_SYSLET
22#include "syslet.h"
23#endif
24
25enum fio_ddir {
26 DDIR_READ = 0,
27 DDIR_WRITE,
28 DDIR_SYNC,
29};
30
31enum td_ddir {
32 TD_DDIR_READ = 1 << 0,
33 TD_DDIR_WRITE = 1 << 1,
34 TD_DDIR_RAND = 1 << 2,
35 TD_DDIR_RW = TD_DDIR_READ | TD_DDIR_WRITE,
36 TD_DDIR_RANDREAD = TD_DDIR_READ | TD_DDIR_RAND,
37 TD_DDIR_RANDWRITE = TD_DDIR_WRITE | TD_DDIR_READ,
38 TD_DDIR_RANDRW = TD_DDIR_RW | TD_DDIR_RAND,
39};
40
41/*
42 * Use for maintaining statistics
43 */
44struct io_stat {
45 unsigned long max_val;
46 unsigned long min_val;
47 unsigned long samples;
48
49 double mean;
50 double S;
51};
52
53/*
54 * A single data sample
55 */
56struct io_sample {
57 unsigned long time;
58 unsigned long val;
59 enum fio_ddir ddir;
60};
61
62/*
63 * Dynamically growing data sample log
64 */
65struct io_log {
66 unsigned long nr_samples;
67 unsigned long max_samples;
68 struct io_sample *log;
69};
70
71/*
72 * When logging io actions, this matches a single sent io_u
73 */
74struct io_piece {
75 struct list_head list;
76 struct fio_file *file;
77 unsigned long long offset;
78 unsigned long len;
79 enum fio_ddir ddir;
80};
81
82#ifdef FIO_HAVE_SYSLET
83struct syslet_req {
84 struct syslet_uatom atom; /* the atom to submit */
85 struct syslet_uatom *head; /* head of the sequence */
86 long ret; /* syscall return value */
87};
88#endif
89
90enum {
91 IO_U_F_FREE = 1 << 0,
92 IO_U_F_FLIGHT = 1 << 1,
93};
94
95/*
96 * The io unit
97 */
98struct io_u {
99 union {
100#ifdef FIO_HAVE_LIBAIO
101 struct iocb iocb;
102#endif
103#ifdef FIO_HAVE_POSIXAIO
104 struct aiocb aiocb;
105#endif
106#ifdef FIO_HAVE_SGIO
107 struct sg_io_hdr hdr;
108#endif
109#ifdef FIO_HAVE_SYSLET
110 struct syslet_req req;
111#endif
112 };
113 struct timeval start_time;
114 struct timeval issue_time;
115
116 /*
117 * Allocated/set buffer and length
118 */
119 void *buf;
120 unsigned long buflen;
121 unsigned long long offset;
122
123 /*
124 * IO engine state, may be different from above when we get
125 * partial transfers / residual data counts
126 */
127 void *xfer_buf;
128 unsigned long xfer_buflen;
129
130 unsigned int resid;
131 unsigned int error;
132
133 enum fio_ddir ddir;
134
135 /*
136 * io engine private data
137 */
138 union {
139 unsigned int index;
140 unsigned int seen;
141 };
142
143 unsigned int flags;
144
145 struct fio_file *file;
146
147 struct list_head list;
148
149 /*
150 * Callback for io completion
151 */
152 int (*end_io)(struct io_u *);
153};
154
155/*
156 * io_ops->queue() return values
157 */
158enum {
159 FIO_Q_COMPLETED = 0, /* completed sync */
160 FIO_Q_QUEUED = 1, /* queued, will complete async */
161 FIO_Q_BUSY = 2, /* no more room, call ->commit() */
162};
163
164#define FIO_HDR_MAGIC 0xf00baaef
165
166enum {
167 VERIFY_NONE = 0, /* no verification */
168 VERIFY_MD5, /* md5 sum data blocks */
169 VERIFY_CRC32, /* crc32 sum data blocks */
170};
171
172/*
173 * A header structure associated with each checksummed data block
174 */
175struct verify_header {
176 unsigned int fio_magic;
177 unsigned int len;
178 unsigned int verify_type;
179 union {
180 char md5_digest[MD5_HASH_WORDS * 4];
181 unsigned long crc32;
182 };
183};
184
185struct group_run_stats {
186 unsigned long long max_run[2], min_run[2];
187 unsigned long long max_bw[2], min_bw[2];
188 unsigned long long io_kb[2];
189 unsigned long long agg[2];
190};
191
192/*
193 * What type of allocation to use for io buffers
194 */
195enum fio_memtype {
196 MEM_MALLOC = 0, /* ordinary malloc */
197 MEM_SHM, /* use shared memory segments */
198 MEM_SHMHUGE, /* use shared memory segments with huge pages */
199 MEM_MMAP, /* use anonynomous mmap */
200 MEM_MMAPHUGE, /* memory mapped huge file */
201};
202
203/*
204 * The type of object we are working on
205 */
206enum fio_filetype {
207 FIO_TYPE_FILE = 1, /* plain file */
208 FIO_TYPE_BD, /* block device */
209 FIO_TYPE_CHAR, /* character device */
210};
211
212enum fio_ioengine_flags {
213 FIO_SYNCIO = 1 << 0, /* io engine has synchronous ->queue */
214 FIO_CPUIO = 1 << 1, /* cpu burner, doesn't do real io */
215 FIO_MMAPIO = 1 << 2, /* uses memory mapped io */
216 FIO_RAWIO = 1 << 3, /* some sort of direct/raw io */
217 FIO_NETIO = 1 << 4, /* networked io */
218 FIO_NULLIO = 1 << 5, /* no real data transfer (cpu/null) */
219};
220
221/*
222 * Each thread_data structure has a number of files associated with it,
223 * this structure holds state information for a single file.
224 */
225struct fio_file {
226 /*
227 * A file may not be a file descriptor, let the io engine decide
228 */
229 union {
230 unsigned long file_data;
231 int fd;
232 };
233 char *file_name;
234 void *mmap;
235 unsigned long long file_size;
236 unsigned long long real_file_size;
237 unsigned long long file_offset;
238 unsigned long long last_pos;
239 unsigned long long last_completed_pos;
240
241 /*
242 * block map for random io
243 */
244 unsigned long *file_map;
245 unsigned int num_maps;
246 unsigned int last_free_lookup;
247
248 unsigned int unlink;
249};
250
251struct thread_stat {
252 struct io_log *slat_log;
253 struct io_log *clat_log;
254 struct io_log *bw_log;
255
256 /*
257 * bandwidth and latency stats
258 */
259 struct io_stat clat_stat[2]; /* completion latency */
260 struct io_stat slat_stat[2]; /* submission latency */
261 struct io_stat bw_stat[2]; /* bandwidth stats */
262
263 unsigned long long stat_io_bytes[2];
264 struct timeval stat_sample_time[2];
265
266 /*
267 * fio system usage accounting
268 */
269 struct rusage ru_start;
270 struct rusage ru_end;
271 unsigned long usr_time;
272 unsigned long sys_time;
273 unsigned long ctx;
274};
275
276/*
277 * How many depth levels to log
278 */
279#define FIO_IO_U_MAP_NR 8
280#define FIO_IO_U_LAT_NR 12
281
282/*
283 * This describes a single thread/process executing a fio job.
284 */
285struct thread_data {
286 int pad;
287 char *description;
288 char *name;
289 char *directory;
290 char *filename;
291 char verror[80];
292 pthread_t thread;
293 int thread_number;
294 int groupid;
295 struct thread_stat ts;
296 enum fio_filetype filetype;
297 struct fio_file *files;
298 unsigned int nr_files;
299 unsigned int nr_uniq_files;
300 union {
301 unsigned int next_file;
302 os_random_state_t next_file_state;
303 };
304 int error;
305 pid_t pid;
306 char *orig_buffer;
307 size_t orig_buffer_size;
308 volatile int terminate;
309 volatile int runstate;
310 enum td_ddir td_ddir;
311 unsigned int ioprio;
312 unsigned int last_was_sync;
313
314 unsigned int odirect;
315 unsigned int invalidate_cache;
316 unsigned int create_serialize;
317 unsigned int create_fsync;
318 unsigned int end_fsync;
319 unsigned int sync_io;
320 unsigned int verify;
321 unsigned int use_thread;
322 unsigned int unlink;
323 unsigned int do_disk_util;
324 unsigned int override_sync;
325 unsigned int rand_repeatable;
326 unsigned int write_lat_log;
327 unsigned int write_bw_log;
328 unsigned int norandommap;
329 unsigned int bs_unaligned;
330
331 unsigned int bs[2];
332 unsigned int min_bs[2];
333 unsigned int max_bs[2];
334 unsigned int hugepage_size;
335 unsigned int rw_min_bs;
336 unsigned int thinktime;
337 unsigned int thinktime_spin;
338 unsigned int thinktime_blocks;
339 unsigned int fsync_blocks;
340 unsigned int start_delay;
341 unsigned long timeout;
342 unsigned int overwrite;
343 unsigned int bw_avg_time;
344 unsigned int loops;
345 unsigned long long zone_size;
346 unsigned long long zone_skip;
347 enum fio_memtype mem_type;
348 char *mmapfile;
349 int mmapfd;
350 unsigned int stonewall;
351 unsigned int numjobs;
352 unsigned int iodepth;
353 unsigned int iodepth_low;
354 unsigned int iodepth_batch;
355 os_cpu_mask_t cpumask;
356 unsigned int iolog;
357 unsigned int read_iolog;
358 unsigned int rwmixcycle;
359 unsigned int rwmixread;
360 unsigned int rwmixwrite;
361 unsigned int nice;
362 unsigned int file_service_type;
363
364 char *read_iolog_file;
365 char *write_iolog_file;
366 void *iolog_buf;
367 FILE *iolog_f;
368
369 char *sysfs_root;
370 char *ioscheduler;
371
372 os_random_state_t bsrange_state;
373 os_random_state_t verify_state;
374
375 int shm_id;
376
377 /*
378 * IO engine hooks, contains everything needed to submit an io_u
379 * to any of the available IO engines.
380 */
381 struct ioengine_ops *io_ops;
382
383 /*
384 * Current IO depth and list of free and busy io_u's.
385 */
386 unsigned int cur_depth;
387 unsigned int io_u_map[FIO_IO_U_MAP_NR];
388 unsigned int io_u_lat[FIO_IO_U_LAT_NR];
389 unsigned long total_io_u;
390 struct list_head io_u_freelist;
391 struct list_head io_u_busylist;
392 struct list_head io_u_requeues;
393 unsigned int io_u_queued;
394
395 /*
396 * Rate state
397 */
398 unsigned int rate;
399 unsigned int ratemin;
400 unsigned int ratecycle;
401 unsigned long rate_usec_cycle;
402 long rate_pending_usleep;
403 unsigned long rate_bytes;
404 struct timeval lastrate;
405
406 unsigned long runtime[2]; /* msec */
407 unsigned long long io_size;
408 unsigned long long total_file_size;
409 unsigned long long start_offset;
410 unsigned long long total_io_size;
411
412 unsigned long io_issues[2];
413 unsigned long long io_blocks[2];
414 unsigned long long io_bytes[2];
415 unsigned long long this_io_bytes[2];
416 unsigned long long zone_bytes;
417 volatile int mutex;
418
419 /*
420 * State for random io, a bitmap of blocks done vs not done
421 */
422 os_random_state_t random_state;
423
424 /*
425 * CPU "io" cycle burner
426 */
427 unsigned int cpuload;
428 unsigned int cpucycle;
429
430 struct timeval start; /* start of this loop */
431 struct timeval epoch; /* time job was started */
432 struct timeval end_time;/* time job ended */
433
434 /*
435 * read/write mixed workload state
436 */
437 os_random_state_t rwmix_state;
438 struct timeval rwmix_switch;
439 enum fio_ddir rwmix_ddir;
440
441 /*
442 * Pre-run and post-run shell
443 */
444 char *exec_prerun;
445 char *exec_postrun;
446
447 /*
448 * IO historic logs
449 */
450 struct list_head io_hist_list;
451 struct list_head io_log_list;
452
453 /*
454 * timeout handling
455 */
456 struct timeval timeout_end;
457 struct itimerval timer;
458};
459
460/*
461 * roundrobin available files, or choose one at random.
462 */
463enum {
464 FIO_FSERVICE_RANDOM = 1,
465 FIO_FSERVICE_RR = 2,
466};
467
468/*
469 * 30 second per-io_u timeout, with 5 second intervals to avoid resetting
470 * the timer on each queue operation.
471 */
472#define IO_U_TIMEOUT_INC 5
473#define IO_U_TIMEOUT 30
474
475#define __td_verror(td, err, msg, func) \
476 do { \
477 if ((td)->error) \
478 break; \
479 int e = (err); \
480 (td)->error = e; \
481 snprintf(td->verror, sizeof(td->verror) - 1, "file:%s:%d, func=%s, error=%s", __FILE__, __LINE__, (func), (msg)); \
482 } while (0)
483
484
485#define td_verror(td, err, func) \
486 __td_verror((td), (err), strerror((err)), (func))
487#define td_vmsg(td, err, msg, func) \
488 __td_verror((td), (err), (msg), (func))
489
490extern int exitall_on_terminate;
491extern int thread_number;
492extern int shm_id;
493extern int groupid;
494extern int terse_output;
495extern FILE *f_out;
496extern FILE *f_err;
497extern int temp_stall_ts;
498extern unsigned long long mlock_size;
499
500extern struct thread_data *threads;
501
502#define td_read(td) ((td)->td_ddir & TD_DDIR_READ)
503#define td_write(td) ((td)->td_ddir & TD_DDIR_WRITE)
504#define td_rw(td) (((td)->td_ddir & TD_DDIR_RW) == TD_DDIR_RW)
505#define td_random(td) ((td)->td_ddir & TD_DDIR_RAND)
506
507#define BLOCKS_PER_MAP (8 * sizeof(long))
508#define TO_MAP_BLOCK(td, f, b) ((b) - ((f)->file_offset / (td)->rw_min_bs))
509#define RAND_MAP_IDX(td, f, b) (TO_MAP_BLOCK(td, f, b) / BLOCKS_PER_MAP)
510#define RAND_MAP_BIT(td, f, b) (TO_MAP_BLOCK(td, f, b) & (BLOCKS_PER_MAP - 1))
511
512#define MAX_JOBS (1024)
513
514static inline int should_fsync(struct thread_data *td)
515{
516 if (td->last_was_sync)
517 return 0;
518 if (td->odirect)
519 return 0;
520 if (td_write(td) || td_rw(td) || td->override_sync)
521 return 1;
522
523 return 0;
524}
525
526/*
527 * Disk utils as read in /sys/block/<dev>/stat
528 */
529struct disk_util_stat {
530 unsigned ios[2];
531 unsigned merges[2];
532 unsigned long long sectors[2];
533 unsigned ticks[2];
534 unsigned io_ticks;
535 unsigned time_in_queue;
536};
537
538/*
539 * Per-device disk util management
540 */
541struct disk_util {
542 struct list_head list;
543
544 char *name;
545 char path[256];
546 dev_t dev;
547
548 struct disk_util_stat dus;
549 struct disk_util_stat last_dus;
550
551 unsigned long msec;
552 struct timeval time;
553};
554
555#define DISK_UTIL_MSEC (250)
556
557#ifndef min
558#define min(a, b) ((a) < (b) ? (a) : (b))
559#endif
560#ifndef max
561#define max(a, b) ((a) > (b) ? (a) : (b))
562#endif
563
564/*
565 * Log exports
566 */
567extern int __must_check read_iolog_get(struct thread_data *, struct io_u *);
568extern void write_iolog_put(struct thread_data *, struct io_u *);
569extern int __must_check init_iolog(struct thread_data *td);
570extern void log_io_piece(struct thread_data *, struct io_u *);
571extern void prune_io_piece_log(struct thread_data *);
572extern void write_iolog_close(struct thread_data *);
573
574/*
575 * Logging
576 */
577extern void add_clat_sample(struct thread_data *, enum fio_ddir, unsigned long);
578extern void add_slat_sample(struct thread_data *, enum fio_ddir, unsigned long);
579extern void add_bw_sample(struct thread_data *, enum fio_ddir, struct timeval *);
580extern void show_run_stats(void);
581extern void init_disk_util(struct thread_data *);
582extern void update_rusage_stat(struct thread_data *);
583extern void update_io_ticks(void);
584extern void disk_util_timer_arm(void);
585extern void setup_log(struct io_log **);
586extern void finish_log(struct thread_data *, struct io_log *, const char *);
587extern void __finish_log(struct io_log *, const char *);
588extern int setup_rate(struct thread_data *);
589extern struct io_log *agg_io_log[2];
590extern int write_bw_log;
591extern void add_agg_sample(unsigned long, enum fio_ddir);
592
593/*
594 * Time functions
595 */
596extern unsigned long utime_since(struct timeval *, struct timeval *);
597extern unsigned long utime_since_now(struct timeval *);
598extern unsigned long mtime_since(struct timeval *, struct timeval *);
599extern unsigned long mtime_since_now(struct timeval *);
600extern unsigned long time_since_now(struct timeval *);
601extern unsigned long mtime_since_genesis(void);
602extern void __usec_sleep(unsigned int);
603extern void usec_sleep(struct thread_data *, unsigned long);
604extern void rate_throttle(struct thread_data *, unsigned long, unsigned int);
605extern void fill_start_time(struct timeval *);
606extern void fio_gettime(struct timeval *, void *);
607extern void set_genesis_time(void);
608
609/*
610 * Init functions
611 */
612extern int __must_check parse_options(int, char **);
613extern int __must_check init_random_state(struct thread_data *);
614
615/*
616 * File setup/shutdown
617 */
618extern void close_files(struct thread_data *);
619extern int __must_check setup_files(struct thread_data *);
620extern int __must_check open_files(struct thread_data *);
621extern int __must_check file_invalidate_cache(struct thread_data *, struct fio_file *);
622
623/*
624 * ETA/status stuff
625 */
626extern void print_thread_status(void);
627extern void print_status_init(int);
628
629/*
630 * Thread life cycle. Once a thread has a runstate beyond TD_INITIALIZED, it
631 * will never back again. It may cycle between running/verififying/fsyncing.
632 * Once the thread reaches TD_EXITED, it is just waiting for the core to
633 * reap it.
634 */
635enum {
636 TD_NOT_CREATED = 0,
637 TD_CREATED,
638 TD_INITIALIZED,
639 TD_RUNNING,
640 TD_VERIFYING,
641 TD_FSYNCING,
642 TD_EXITED,
643 TD_REAPED,
644};
645
646/*
647 * Verify helpers
648 */
649extern void populate_verify_io_u(struct thread_data *, struct io_u *);
650extern int __must_check get_next_verify(struct thread_data *td, struct io_u *);
651extern int __must_check verify_io_u(struct io_u *);
652
653/*
654 * Memory helpers
655 */
656extern int __must_check fio_pin_memory(void);
657extern void fio_unpin_memory(void);
658extern int __must_check allocate_io_mem(struct thread_data *);
659extern void free_io_mem(struct thread_data *);
660
661/*
662 * io unit handling
663 */
664#define queue_full(td) list_empty(&(td)->io_u_freelist)
665extern struct io_u *__get_io_u(struct thread_data *);
666extern struct io_u *get_io_u(struct thread_data *);
667extern void put_io_u(struct thread_data *, struct io_u *);
668extern void requeue_io_u(struct thread_data *, struct io_u **);
669extern long __must_check io_u_sync_complete(struct thread_data *, struct io_u *);
670extern long __must_check io_u_queued_complete(struct thread_data *, int);
671extern void io_u_queued(struct thread_data *, struct io_u *);
672extern void io_u_init_timeout(void);
673extern void io_u_set_timeout(struct thread_data *);
674
675/*
676 * io engine entry points
677 */
678extern int __must_check td_io_init(struct thread_data *);
679extern int __must_check td_io_prep(struct thread_data *, struct io_u *);
680extern int __must_check td_io_queue(struct thread_data *, struct io_u *);
681extern int __must_check td_io_sync(struct thread_data *, struct fio_file *);
682extern int __must_check td_io_getevents(struct thread_data *, int, int, struct timespec *);
683extern int __must_check td_io_commit(struct thread_data *);
684
685/*
686 * This is a pretty crappy semaphore implementation, but with the use that fio
687 * has (just signalling start/go conditions), it doesn't have to be better.
688 * Naturally this would not work for any type of contended semaphore or
689 * for real locking.
690 */
691static inline void fio_sem_init(volatile int *sem, int val)
692{
693 *sem = val;
694}
695
696static inline void fio_sem_down(volatile int *sem)
697{
698 while (*sem == 0)
699 usleep(10000);
700
701 (*sem)--;
702}
703
704static inline void fio_sem_up(volatile int *sem)
705{
706 (*sem)++;
707}
708
709/*
710 * If logging output to a file, stderr should go to both stderr and f_err
711 */
712#define log_err(args...) do { \
713 fprintf(f_err, ##args); \
714 if (f_err != stderr) \
715 fprintf(stderr, ##args); \
716 } while (0)
717
718struct ioengine_ops {
719 struct list_head list;
720 char name[16];
721 int version;
722 int flags;
723 int (*setup)(struct thread_data *);
724 int (*init)(struct thread_data *);
725 int (*prep)(struct thread_data *, struct io_u *);
726 int (*queue)(struct thread_data *, struct io_u *);
727 int (*commit)(struct thread_data *);
728 int (*getevents)(struct thread_data *, int, int, struct timespec *);
729 struct io_u *(*event)(struct thread_data *, int);
730 int (*cancel)(struct thread_data *, struct io_u *);
731 void (*cleanup)(struct thread_data *);
732 void *data;
733 void *dlhandle;
734 unsigned long priv;
735};
736
737#define FIO_IOOPS_VERSION 5
738
739extern struct ioengine_ops *load_ioengine(struct thread_data *, const char *);
740extern void register_ioengine(struct ioengine_ops *);
741extern void unregister_ioengine(struct ioengine_ops *);
742extern void close_ioengine(struct thread_data *);
743
744/*
745 * Mark unused variables passed to ops functions as unused, to silence gcc
746 */
747#define fio_unused __attribute((__unused__))
748#define fio_init __attribute__((constructor))
749#define fio_exit __attribute__((destructor))
750
751#define for_each_td(td, i) \
752 for ((i) = 0, (td) = &threads[0]; (i) < (int) thread_number; (i)++, (td)++)
753#define for_each_file(td, f, i) \
754 for ((i) = 0, (f) = &(td)->files[0]; (i) < (int) (td)->nr_files; (i)++, (f)++)
755
756#define fio_assert(td, cond) do { \
757 if (!(cond)) { \
758 int *__foo = NULL; \
759 fprintf(stderr, "file:%s:%d, assert %s failed\n", __FILE__, __LINE__, #cond); \
760 (td)->runstate = TD_EXITED; \
761 (td)->error = EFAULT; \
762 *__foo = 0; \
763 } \
764} while (0)
765
766#endif