Block signals for the helper thread
[fio.git] / helper_thread.c
CommitLineData
c31092b8 1#include <signal.h>
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2#ifdef CONFIG_VALGRIND_DEV
3#include <valgrind/drd.h>
4#else
5#define DRD_IGNORE_VAR(x) do { } while (0)
6#endif
7
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8#include "fio.h"
9#include "smalloc.h"
10#include "helper_thread.h"
16e56d25 11#include "steadystate.h"
ae626d4e 12#include "pshared.h"
a39fb9ea 13
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14enum action {
15 A_EXIT = 1,
16 A_RESET = 2,
17 A_DO_STAT = 3,
18};
19
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20static struct helper_data {
21 volatile int exit;
52a552e2 22 int pipe[2]; /* 0: read end; 1: write end. */
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23 struct sk_out *sk_out;
24 pthread_t thread;
971caeb1 25 struct fio_sem *startup_sem;
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26} *helper_data;
27
28void helper_thread_destroy(void)
29{
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30 if (!helper_data)
31 return;
32
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33 close(helper_data->pipe[0]);
34 close(helper_data->pipe[1]);
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35 sfree(helper_data);
36}
37
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38#ifdef _WIN32
39static void sock_init(void)
a39fb9ea 40{
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41 WSADATA wsaData;
42 int res;
a39fb9ea 43
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44 /* It is allowed to call WSAStartup() more than once. */
45 res = WSAStartup(MAKEWORD(2, 2), &wsaData);
46 assert(res == 0);
47}
a39fb9ea 48
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49static int make_nonblocking(int fd)
50{
51 unsigned long arg = 1;
dda11987 52
52a552e2 53 return ioctlsocket(fd, FIONBIO, &arg);
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54}
55
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56static int write_to_pipe(int fd, const void *buf, size_t len)
57{
58 return send(fd, buf, len, 0);
59}
60
61static int read_from_pipe(int fd, void *buf, size_t len)
62{
63 return recv(fd, buf, len, 0);
64}
65#else
66static void sock_init(void)
67{
68}
69
70static int make_nonblocking(int fd)
71{
72 return fcntl(fd, F_SETFL, O_NONBLOCK);
73}
74
75static int write_to_pipe(int fd, const void *buf, size_t len)
76{
77 return write(fd, buf, len);
78}
79
80static int read_from_pipe(int fd, void *buf, size_t len)
81{
82 return read(fd, buf, len);
83}
84#endif
85
86static void submit_action(enum action a)
a39fb9ea 87{
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88 const char data = a;
89 int ret;
90
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91 if (!helper_data)
92 return;
93
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94 ret = write_to_pipe(helper_data->pipe[1], &data, sizeof(data));
95 assert(ret == 1);
96}
97
98void helper_reset(void)
99{
100 submit_action(A_RESET);
101}
102
103/*
104 * May be invoked in signal handler context and hence must only call functions
105 * that are async-signal-safe. See also
106 * https://pubs.opengroup.org/onlinepubs/9699919799/functions/V2_chap02.html#tag_15_04_03.
107 */
108void helper_do_stat(void)
109{
110 submit_action(A_DO_STAT);
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111}
112
113bool helper_should_exit(void)
114{
115 if (!helper_data)
116 return true;
117
118 return helper_data->exit;
119}
120
121void helper_thread_exit(void)
122{
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123 if (!helper_data)
124 return;
125
a39fb9ea 126 helper_data->exit = 1;
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127 submit_action(A_EXIT);
128 pthread_join(helper_data->thread, NULL);
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129}
130
131static void *helper_thread_main(void *data)
132{
133 struct helper_data *hd = data;
16e56d25 134 unsigned int msec_to_next_event, next_log, next_ss = STEADYSTATE_MSEC;
8b6a404c 135 struct timespec ts, last_du, last_ss;
52a552e2 136 char action;
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137 int ret = 0;
138
139 sk_out_assign(hd->sk_out);
140
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141#ifdef HAVE_PTHREAD_SIGMASK
142 {
143 sigset_t sigmask;
144
145 /* Let another thread handle signals. */
146 ret = pthread_sigmask(SIG_UNBLOCK, NULL, &sigmask);
147 assert(ret == 0);
148 ret = pthread_sigmask(SIG_BLOCK, &sigmask, NULL);
149 assert(ret == 0);
150 }
151#endif
152
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153#ifdef CONFIG_PTHREAD_CONDATTR_SETCLOCK
154 clock_gettime(CLOCK_MONOTONIC, &ts);
155#else
156 clock_gettime(CLOCK_REALTIME, &ts);
157#endif
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158 memcpy(&last_du, &ts, sizeof(ts));
159 memcpy(&last_ss, &ts, sizeof(ts));
a39fb9ea 160
971caeb1 161 fio_sem_up(hd->startup_sem);
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162
163 msec_to_next_event = DISK_UTIL_MSEC;
164 while (!ret && !hd->exit) {
16e56d25 165 uint64_t since_du, since_ss = 0;
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166 struct timeval timeout = {
167 .tv_sec = DISK_UTIL_MSEC / 1000,
168 .tv_usec = (DISK_UTIL_MSEC % 1000) * 1000,
169 };
170 fd_set rfds, efds;
a39fb9ea 171
8b6a404c 172 timespec_add_msec(&ts, msec_to_next_event);
a39fb9ea 173
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174 if (read_from_pipe(hd->pipe[0], &action, sizeof(action)) < 0) {
175 FD_ZERO(&rfds);
176 FD_SET(hd->pipe[0], &rfds);
177 FD_ZERO(&efds);
178 FD_SET(hd->pipe[0], &efds);
179 select(1, &rfds, NULL, &efds, &timeout);
180 if (read_from_pipe(hd->pipe[0], &action, sizeof(action)) <
181 0)
182 action = 0;
183 }
a39fb9ea 184
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185#ifdef CONFIG_PTHREAD_CONDATTR_SETCLOCK
186 clock_gettime(CLOCK_MONOTONIC, &ts);
187#else
188 clock_gettime(CLOCK_REALTIME, &ts);
189#endif
a39fb9ea 190
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191 if (action == A_RESET) {
192 last_du = ts;
193 last_ss = ts;
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194 }
195
8b6a404c 196 since_du = mtime_since(&last_du, &ts);
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197 if (since_du >= DISK_UTIL_MSEC || DISK_UTIL_MSEC - since_du < 10) {
198 ret = update_io_ticks();
8b6a404c 199 timespec_add_msec(&last_du, DISK_UTIL_MSEC);
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200 msec_to_next_event = DISK_UTIL_MSEC;
201 if (since_du >= DISK_UTIL_MSEC)
202 msec_to_next_event -= (since_du - DISK_UTIL_MSEC);
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203 } else
204 msec_to_next_event = DISK_UTIL_MSEC - since_du;
a39fb9ea 205
52a552e2 206 if (action == A_DO_STAT)
a39fb9ea 207 __show_running_run_stats();
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208
209 next_log = calc_log_samples();
210 if (!next_log)
211 next_log = DISK_UTIL_MSEC;
212
84784e07 213 if (steadystate_enabled) {
8b6a404c 214 since_ss = mtime_since(&last_ss, &ts);
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215 if (since_ss >= STEADYSTATE_MSEC || STEADYSTATE_MSEC - since_ss < 10) {
216 steadystate_check();
8b6a404c 217 timespec_add_msec(&last_ss, since_ss);
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218 if (since_ss > STEADYSTATE_MSEC)
219 next_ss = STEADYSTATE_MSEC - (since_ss - STEADYSTATE_MSEC);
220 else
221 next_ss = STEADYSTATE_MSEC;
c27cc65f 222 } else
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223 next_ss = STEADYSTATE_MSEC - since_ss;
224 }
225
226 msec_to_next_event = min(min(next_log, msec_to_next_event), next_ss);
e569ca6b 227 dprint(FD_HELPERTHREAD, "since_ss: %llu, next_ss: %u, next_log: %u, msec_to_next_event: %u\n", (unsigned long long)since_ss, next_ss, next_log, msec_to_next_event);
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228
229 if (!is_backend)
230 print_thread_status();
231 }
232
233 fio_writeout_logs(false);
234
235 sk_out_drop();
236 return NULL;
237}
238
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239/*
240 * Connect two sockets to each other to emulate the pipe() system call on Windows.
241 */
242int pipe_over_loopback(int fd[2])
243{
244 struct sockaddr_in addr = { .sin_family = AF_INET };
245 socklen_t len = sizeof(addr);
246 int res;
247
248 addr.sin_addr.s_addr = htonl(INADDR_LOOPBACK);
249
250 sock_init();
251
252 fd[0] = socket(AF_INET, SOCK_STREAM, 0);
253 if (fd[0] < 0)
254 goto err;
255 fd[1] = socket(AF_INET, SOCK_STREAM, 0);
256 if (fd[1] < 0)
257 goto close_fd_0;
258 res = bind(fd[0], (struct sockaddr *)&addr, len);
259 if (res < 0)
260 goto close_fd_1;
261 res = getsockname(fd[0], (struct sockaddr *)&addr, &len);
262 if (res < 0)
263 goto close_fd_1;
264 res = listen(fd[0], 1);
265 if (res < 0)
266 goto close_fd_1;
267 res = connect(fd[1], (struct sockaddr *)&addr, len);
268 if (res < 0)
269 goto close_fd_1;
270 res = accept(fd[0], NULL, NULL);
271 if (res < 0)
272 goto close_fd_1;
273 close(fd[0]);
274 fd[0] = res;
275 return 0;
276
277close_fd_1:
278 close(fd[1]);
279
280close_fd_0:
281 close(fd[0]);
282
283err:
284 return -1;
285}
286
971caeb1 287int helper_thread_create(struct fio_sem *startup_sem, struct sk_out *sk_out)
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288{
289 struct helper_data *hd;
290 int ret;
291
b3090ff4 292 hd = scalloc(1, sizeof(*hd));
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293
294 setup_disk_util();
16e56d25 295 steadystate_setup();
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296
297 hd->sk_out = sk_out;
34febb23 298
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299#if defined(CONFIG_PIPE2)
300 ret = pipe2(hd->pipe, O_CLOEXEC);
301#elif defined(CONFIG_PIPE)
302 ret = pipe(hd->pipe);
303#else
304 ret = pipe_over_loopback(hd->pipe);
305#endif
34febb23 306 if (ret)
f9e5b5ee 307 return 1;
34febb23 308
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309 ret = make_nonblocking(hd->pipe[0]);
310 assert(ret >= 0);
311
971caeb1 312 hd->startup_sem = startup_sem;
a39fb9ea 313
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314 DRD_IGNORE_VAR(helper_data);
315
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316 ret = pthread_create(&hd->thread, NULL, helper_thread_main, hd);
317 if (ret) {
318 log_err("Can't create helper thread: %s\n", strerror(ret));
319 return 1;
320 }
321
322 helper_data = hd;
323
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324 dprint(FD_MUTEX, "wait on startup_sem\n");
325 fio_sem_down(startup_sem);
326 dprint(FD_MUTEX, "done waiting on startup_sem\n");
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327 return 0;
328}