fio: ioengine flag cleanup
[fio.git] / libfio.c
1 /*
2  * fio - the flexible io tester
3  *
4  * Copyright (C) 2005 Jens Axboe <axboe@suse.de>
5  * Copyright (C) 2006-2012 Jens Axboe <axboe@kernel.dk>
6  *
7  * The license below covers all files distributed with fio unless otherwise
8  * noted in the file itself.
9  *
10  *  This program is free software; you can redistribute it and/or modify
11  *  it under the terms of the GNU General Public License version 2 as
12  *  published by the Free Software Foundation.
13  *
14  *  This program is distributed in the hope that it will be useful,
15  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
16  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17  *  GNU General Public License for more details.
18  *
19  *  You should have received a copy of the GNU General Public License
20  *  along with this program; if not, write to the Free Software
21  *  Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
22  *
23  */
24
25 #include <string.h>
26 #include <signal.h>
27 #include <stdint.h>
28 #include <locale.h>
29 #include <fcntl.h>
30
31 #include "fio.h"
32 #include "smalloc.h"
33 #include "os/os.h"
34 #include "filelock.h"
35 #include "helper_thread.h"
36 #include "filehash.h"
37
38 FLIST_HEAD(disk_list);
39
40 unsigned long arch_flags = 0;
41
42 uintptr_t page_mask = 0;
43 uintptr_t page_size = 0;
44
45 /* see os/os.h */
46 static const char *fio_os_strings[os_nr] = {
47         "Invalid",
48         "Linux",
49         "AIX",
50         "FreeBSD",
51         "HP-UX",
52         "OSX",
53         "NetBSD",
54         "OpenBSD",
55         "Solaris",
56         "Windows",
57         "Android",
58         "DragonFly",
59 };
60
61 /* see arch/arch.h */
62 static const char *fio_arch_strings[arch_nr] = {
63         "Invalid",
64         "x86-64",
65         "x86",
66         "ppc",
67         "ia64",
68         "s390",
69         "alpha",
70         "sparc",
71         "sparc64",
72         "arm",
73         "sh",
74         "hppa",
75         "mips",
76         "aarch64",
77         "generic"
78 };
79
80 static void reset_io_counters(struct thread_data *td, int all)
81 {
82         int ddir;
83
84         if (all) {
85                 for (ddir = 0; ddir < DDIR_RWDIR_CNT; ddir++) {
86                         td->stat_io_bytes[ddir] = 0;
87                         td->this_io_bytes[ddir] = 0;
88                         td->stat_io_blocks[ddir] = 0;
89                         td->this_io_blocks[ddir] = 0;
90                         td->rate_bytes[ddir] = 0;
91                         td->rate_blocks[ddir] = 0;
92                         td->bytes_done[ddir] = 0;
93                         td->rate_io_issue_bytes[ddir] = 0;
94                         td->rate_next_io_time[ddir] = 0;
95                         td->last_usec[ddir] = 0;
96                 }
97         }
98
99         td->zone_bytes = 0;
100
101         td->last_was_sync = false;
102         td->rwmix_issues = 0;
103
104         /*
105          * reset file done count if we are to start over
106          */
107         if (td->o.time_based || td->o.loops || td->o.do_verify)
108                 td->nr_done_files = 0;
109 }
110
111 void clear_io_state(struct thread_data *td, int all)
112 {
113         struct fio_file *f;
114         unsigned int i;
115
116         reset_io_counters(td, all);
117
118         close_files(td);
119         for_each_file(td, f, i) {
120                 fio_file_clear_done(f);
121                 f->file_offset = get_start_offset(td, f);
122         }
123
124         /*
125          * Re-Seed random number generator if rand_repeatable is true
126          */
127         if (td->o.rand_repeatable)
128                 td_fill_rand_seeds(td);
129 }
130
131 void reset_all_stats(struct thread_data *td)
132 {
133         int i;
134
135         reset_io_counters(td, 1);
136
137         for (i = 0; i < DDIR_RWDIR_CNT; i++) {
138                 td->io_bytes[i] = 0;
139                 td->io_blocks[i] = 0;
140                 td->io_issues[i] = 0;
141                 td->ts.total_io_u[i] = 0;
142                 td->ts.runtime[i] = 0;
143                 td->rwmix_issues = 0;
144         }
145
146         set_epoch_time(td, td->o.log_unix_epoch);
147         memcpy(&td->start, &td->epoch, sizeof(td->epoch));
148         memcpy(&td->iops_sample_time, &td->epoch, sizeof(td->epoch));
149         memcpy(&td->bw_sample_time, &td->epoch, sizeof(td->epoch));
150         memcpy(&td->ss.prev_time, &td->epoch, sizeof(td->epoch));
151
152         lat_target_reset(td);
153         clear_rusage_stat(td);
154         helper_reset();
155 }
156
157 void reset_fio_state(void)
158 {
159         int i;
160
161         groupid = 0;
162         thread_number = 0;
163         cur_segment = 0;
164         for (i = 0; i < nr_segments; i++)
165                 segments[i].nr_threads = 0;
166         stat_number = 0;
167         done_secs = 0;
168 }
169
170 const char *fio_get_os_string(int nr)
171 {
172         if (nr < os_nr)
173                 return fio_os_strings[nr];
174
175         return NULL;
176 }
177
178 const char *fio_get_arch_string(int nr)
179 {
180         if (nr < arch_nr)
181                 return fio_arch_strings[nr];
182
183         return NULL;
184 }
185
186 static const char *td_runstates[] = {
187         "NOT_CREATED",
188         "CREATED",
189         "INITIALIZED",
190         "RAMP",
191         "SETTING_UP",
192         "RUNNING",
193         "PRE_READING",
194         "VERIFYING",
195         "FSYNCING",
196         "FINISHING",
197         "EXITED",
198         "REAPED",
199 };
200
201 const char *runstate_to_name(int runstate)
202 {
203         compiletime_assert(TD_LAST == 12, "td runstate list");
204         if (runstate >= 0 && runstate < TD_LAST)
205                 return td_runstates[runstate];
206
207         return "invalid";
208 }
209
210 void td_set_runstate(struct thread_data *td, int runstate)
211 {
212         if (td->runstate == runstate)
213                 return;
214
215         dprint(FD_PROCESS, "pid=%d: runstate %s -> %s\n", (int) td->pid,
216                                                 runstate_to_name(td->runstate),
217                                                 runstate_to_name(runstate));
218         td->runstate = runstate;
219 }
220
221 int td_bump_runstate(struct thread_data *td, int new_state)
222 {
223         int old_state = td->runstate;
224
225         td_set_runstate(td, new_state);
226         return old_state;
227 }
228
229 void td_restore_runstate(struct thread_data *td, int old_state)
230 {
231         td_set_runstate(td, old_state);
232 }
233
234 void fio_mark_td_terminate(struct thread_data *td)
235 {
236         fio_gettime(&td->terminate_time, NULL);
237         write_barrier();
238         td->terminate = true;
239 }
240
241 void fio_terminate_threads(unsigned int group_id, unsigned int terminate)
242 {
243         struct thread_data *td;
244         pid_t pid = getpid();
245         int i;
246
247         dprint(FD_PROCESS, "terminate group_id=%d\n", group_id);
248
249         for_each_td(td, i) {
250                 if ((terminate == TERMINATE_GROUP && group_id == TERMINATE_ALL) ||
251                     (terminate == TERMINATE_GROUP && group_id == td->groupid) ||
252                     (terminate == TERMINATE_STONEWALL && td->runstate >= TD_RUNNING) ||
253                     (terminate == TERMINATE_ALL)) {
254                         dprint(FD_PROCESS, "setting terminate on %s/%d\n",
255                                                 td->o.name, (int) td->pid);
256
257                         if (td->terminate)
258                                 continue;
259
260                         fio_mark_td_terminate(td);
261                         td->o.start_delay = 0;
262
263                         /*
264                          * if the thread is running, just let it exit
265                          */
266                         if (!td->pid || pid == td->pid)
267                                 continue;
268                         else if (td->runstate < TD_RAMP)
269                                 kill(td->pid, SIGTERM);
270                         else {
271                                 struct ioengine_ops *ops = td->io_ops;
272
273                                 if (ops && ops->terminate)
274                                         ops->terminate(td);
275                         }
276                 }
277         }
278 }
279
280 int fio_running_or_pending_io_threads(void)
281 {
282         struct thread_data *td;
283         int i;
284         int nr_io_threads = 0;
285
286         for_each_td(td, i) {
287                 if (td->io_ops_init && td_ioengine_flagged(td, FIO_NOIO))
288                         continue;
289                 nr_io_threads++;
290                 if (td->runstate < TD_EXITED)
291                         return 1;
292         }
293
294         if (!nr_io_threads)
295                 return -1; /* we only had cpuio threads to begin with */
296         return 0;
297 }
298
299 int fio_set_fd_nonblocking(int fd, const char *who)
300 {
301         int flags;
302
303         flags = fcntl(fd, F_GETFL);
304         if (flags < 0)
305                 log_err("fio: %s failed to get file flags: %s\n", who, strerror(errno));
306         else {
307                 int new_flags = flags | O_NONBLOCK;
308
309                 new_flags = fcntl(fd, F_SETFL, new_flags);
310                 if (new_flags < 0)
311                         log_err("fio: %s failed to get file flags: %s\n", who, strerror(errno));
312         }
313
314         return flags;
315 }
316
317 enum {
318         ENDIAN_INVALID_BE = 1,
319         ENDIAN_INVALID_LE,
320         ENDIAN_INVALID_CONFIG,
321         ENDIAN_BROKEN,
322 };
323
324 static int endian_check(void)
325 {
326         union {
327                 uint8_t c[8];
328                 uint64_t v;
329         } u;
330         int le = 0, be = 0;
331
332         u.v = 0x12;
333         if (u.c[7] == 0x12)
334                 be = 1;
335         else if (u.c[0] == 0x12)
336                 le = 1;
337
338 #if defined(CONFIG_LITTLE_ENDIAN)
339         if (be)
340                 return ENDIAN_INVALID_BE;
341 #elif defined(CONFIG_BIG_ENDIAN)
342         if (le)
343                 return ENDIAN_INVALID_LE;
344 #else
345         return ENDIAN_INVALID_CONFIG;
346 #endif
347
348         if (!le && !be)
349                 return ENDIAN_BROKEN;
350
351         return 0;
352 }
353
354 int initialize_fio(char *envp[])
355 {
356         long ps;
357         int err;
358
359         /*
360          * We need these to be properly 64-bit aligned, otherwise we
361          * can run into problems on archs that fault on unaligned fp
362          * access (ARM).
363          */
364         compiletime_assert((offsetof(struct thread_data, ts) % sizeof(void *)) == 0, "ts");
365         compiletime_assert((offsetof(struct thread_stat, percentile_list) % 8) == 0, "stat percentile_list");
366         compiletime_assert((offsetof(struct thread_stat, total_run_time) % 8) == 0, "total_run_time");
367         compiletime_assert((offsetof(struct thread_stat, total_err_count) % 8) == 0, "total_err_count");
368         compiletime_assert((offsetof(struct thread_stat, latency_percentile) % 8) == 0, "stat latency_percentile");
369         compiletime_assert((offsetof(struct thread_data, ts.clat_stat) % 8) == 0, "ts.clat_stat");
370         compiletime_assert((offsetof(struct thread_options_pack, zipf_theta) % 8) == 0, "zipf_theta");
371         compiletime_assert((offsetof(struct thread_options_pack, pareto_h) % 8) == 0, "pareto_h");
372         compiletime_assert((offsetof(struct thread_options_pack, percentile_list) % 8) == 0, "percentile_list");
373         compiletime_assert((offsetof(struct thread_options_pack, latency_percentile) % 8) == 0, "latency_percentile");
374         compiletime_assert((offsetof(struct jobs_eta, m_rate) % 8) == 0, "m_rate");
375
376         compiletime_assert(__TD_F_LAST <= TD_ENG_FLAG_SHIFT, "TD_ENG_FLAG_SHIFT");
377         compiletime_assert(BSSPLIT_MAX <= ZONESPLIT_MAX, "bsssplit/zone max");
378
379         err = endian_check();
380         if (err) {
381                 log_err("fio: endianness settings appear wrong.\n");
382                 switch (err) {
383                 case ENDIAN_INVALID_BE:
384                         log_err("fio: got big-endian when configured for little\n");
385                         break;
386                 case ENDIAN_INVALID_LE:
387                         log_err("fio: got little-endian when configured for big\n");
388                         break;
389                 case ENDIAN_INVALID_CONFIG:
390                         log_err("fio: not configured to any endianness\n");
391                         break;
392                 case ENDIAN_BROKEN:
393                         log_err("fio: failed to detect endianness\n");
394                         break;
395                 default:
396                         assert(0);
397                         break;
398                 }
399                 log_err("fio: please report this to fio@vger.kernel.org\n");
400                 return 1;
401         }
402
403 #if !defined(CONFIG_GETTIMEOFDAY) && !defined(CONFIG_CLOCK_GETTIME)
404 #error "No available clock source!"
405 #endif
406
407         arch_init(envp);
408
409         sinit();
410
411         if (fio_filelock_init()) {
412                 log_err("fio: failed initializing filelock subsys\n");
413                 return 1;
414         }
415
416         file_hash_init();
417
418         /*
419          * We need locale for number printing, if it isn't set then just
420          * go with the US format.
421          */
422         if (!getenv("LC_NUMERIC"))
423                 setlocale(LC_NUMERIC, "en_US");
424
425         ps = sysconf(_SC_PAGESIZE);
426         if (ps < 0) {
427                 log_err("Failed to get page size\n");
428                 return 1;
429         }
430
431         page_size = ps;
432         page_mask = ps - 1;
433
434         fio_keywords_init();
435         return 0;
436 }
437
438 void deinitialize_fio(void)
439 {
440         fio_keywords_exit();
441 }