1 #include <stdio.h>
2 #include <stdlib.h>
3 #include <unistd.h>
4 #include <errno.h>
5 #include <poll.h>
6 #include <sys/types.h>
7 #include <sys/wait.h>
8 #include <sys/socket.h>
9 #include <sys/stat.h>
10 #include <sys/un.h>
11 #include <sys/uio.h>
12 #include <netinet/in.h>
13 #include <arpa/inet.h>
14 #include <netdb.h>
15 #include <syslog.h>
16 #include <signal.h>
17 #ifdef CONFIG_ZLIB
18 #include <zlib.h>
19 #endif
20 
21 #include "fio.h"
22 #include "options.h"
23 #include "server.h"
24 #include "crc/crc16.h"
25 #include "lib/ieee754.h"
26 #include "verify-state.h"
27 #include "smalloc.h"
28 
29 int fio_net_port = FIO_NET_PORT;
30 
31 bool exit_backend = false;
32 
33 enum {
34 	SK_F_FREE	= 1,
35 	SK_F_COPY	= 2,
36 	SK_F_SIMPLE	= 4,
37 	SK_F_VEC	= 8,
38 	SK_F_INLINE	= 16,
39 };
40 
41 struct sk_entry {
42 	struct flist_head list;	/* link on sk_out->list */
43 	int flags;		/* SK_F_* */
44 	int opcode;		/* Actual command fields */
45 	void *buf;
46 	off_t size;
47 	uint64_t tag;
48 	struct flist_head next;	/* Other sk_entry's, if linked command */
49 };
50 
51 static char *fio_server_arg;
52 static char *bind_sock;
53 static struct sockaddr_in saddr_in;
54 static struct sockaddr_in6 saddr_in6;
55 static int use_ipv6;
56 #ifdef CONFIG_ZLIB
57 static unsigned int has_zlib = 1;
58 #else
59 static unsigned int has_zlib = 0;
60 #endif
61 static unsigned int use_zlib;
62 static char me[128];
63 
64 static pthread_key_t sk_out_key;
65 
66 struct fio_fork_item {
67 	struct flist_head list;
68 	int exitval;
69 	int signal;
70 	int exited;
71 	pid_t pid;
72 };
73 
74 struct cmd_reply {
75 	struct fio_sem lock;
76 	void *data;
77 	size_t size;
78 	int error;
79 };
80 
81 static const char *fio_server_ops[FIO_NET_CMD_NR] = {
82 	"",
83 	"QUIT",
84 	"EXIT",
85 	"JOB",
86 	"JOBLINE",
87 	"TEXT",
88 	"TS",
89 	"GS",
90 	"SEND_ETA",
91 	"ETA",
92 	"PROBE",
93 	"START",
94 	"STOP",
95 	"DISK_UTIL",
96 	"SERVER_START",
97 	"ADD_JOB",
98 	"RUN",
99 	"IOLOG",
100 	"UPDATE_JOB",
101 	"LOAD_FILE",
102 	"VTRIGGER",
103 	"SENDFILE",
104 	"JOB_OPT",
105 };
106 
sk_lock(struct sk_out * sk_out)107 static void sk_lock(struct sk_out *sk_out)
108 {
109 	fio_sem_down(&sk_out->lock);
110 }
111 
sk_unlock(struct sk_out * sk_out)112 static void sk_unlock(struct sk_out *sk_out)
113 {
114 	fio_sem_up(&sk_out->lock);
115 }
116 
sk_out_assign(struct sk_out * sk_out)117 void sk_out_assign(struct sk_out *sk_out)
118 {
119 	if (!sk_out)
120 		return;
121 
122 	sk_lock(sk_out);
123 	sk_out->refs++;
124 	sk_unlock(sk_out);
125 	pthread_setspecific(sk_out_key, sk_out);
126 }
127 
sk_out_free(struct sk_out * sk_out)128 static void sk_out_free(struct sk_out *sk_out)
129 {
130 	__fio_sem_remove(&sk_out->lock);
131 	__fio_sem_remove(&sk_out->wait);
132 	__fio_sem_remove(&sk_out->xmit);
133 	sfree(sk_out);
134 }
135 
__sk_out_drop(struct sk_out * sk_out)136 static int __sk_out_drop(struct sk_out *sk_out)
137 {
138 	if (sk_out) {
139 		int refs;
140 
141 		sk_lock(sk_out);
142 		assert(sk_out->refs != 0);
143 		refs = --sk_out->refs;
144 		sk_unlock(sk_out);
145 
146 		if (!refs) {
147 			sk_out_free(sk_out);
148 			pthread_setspecific(sk_out_key, NULL);
149 			return 0;
150 		}
151 	}
152 
153 	return 1;
154 }
155 
sk_out_drop(void)156 void sk_out_drop(void)
157 {
158 	struct sk_out *sk_out;
159 
160 	sk_out = pthread_getspecific(sk_out_key);
161 	__sk_out_drop(sk_out);
162 }
163 
__fio_init_net_cmd(struct fio_net_cmd * cmd,uint16_t opcode,uint32_t pdu_len,uint64_t tag)164 static void __fio_init_net_cmd(struct fio_net_cmd *cmd, uint16_t opcode,
165 			       uint32_t pdu_len, uint64_t tag)
166 {
167 	memset(cmd, 0, sizeof(*cmd));
168 
169 	cmd->version	= __cpu_to_le16(FIO_SERVER_VER);
170 	cmd->opcode	= cpu_to_le16(opcode);
171 	cmd->tag	= cpu_to_le64(tag);
172 	cmd->pdu_len	= cpu_to_le32(pdu_len);
173 }
174 
175 
fio_init_net_cmd(struct fio_net_cmd * cmd,uint16_t opcode,const void * pdu,uint32_t pdu_len,uint64_t tag)176 static void fio_init_net_cmd(struct fio_net_cmd *cmd, uint16_t opcode,
177 			     const void *pdu, uint32_t pdu_len, uint64_t tag)
178 {
179 	__fio_init_net_cmd(cmd, opcode, pdu_len, tag);
180 
181 	if (pdu)
182 		memcpy(&cmd->payload, pdu, pdu_len);
183 }
184 
fio_server_op(unsigned int op)185 const char *fio_server_op(unsigned int op)
186 {
187 	static char buf[32];
188 
189 	if (op < FIO_NET_CMD_NR)
190 		return fio_server_ops[op];
191 
192 	sprintf(buf, "UNKNOWN/%d", op);
193 	return buf;
194 }
195 
iov_total_len(const struct iovec * iov,int count)196 static ssize_t iov_total_len(const struct iovec *iov, int count)
197 {
198 	ssize_t ret = 0;
199 
200 	while (count--) {
201 		ret += iov->iov_len;
202 		iov++;
203 	}
204 
205 	return ret;
206 }
207 
fio_sendv_data(int sk,struct iovec * iov,int count)208 static int fio_sendv_data(int sk, struct iovec *iov, int count)
209 {
210 	ssize_t total_len = iov_total_len(iov, count);
211 	ssize_t ret;
212 
213 	do {
214 		ret = writev(sk, iov, count);
215 		if (ret > 0) {
216 			total_len -= ret;
217 			if (!total_len)
218 				break;
219 
220 			while (ret) {
221 				if (ret >= iov->iov_len) {
222 					ret -= iov->iov_len;
223 					iov++;
224 					continue;
225 				}
226 				iov->iov_base += ret;
227 				iov->iov_len -= ret;
228 				ret = 0;
229 			}
230 		} else if (!ret)
231 			break;
232 		else if (errno == EAGAIN || errno == EINTR)
233 			continue;
234 		else
235 			break;
236 	} while (!exit_backend);
237 
238 	if (!total_len)
239 		return 0;
240 
241 	return 1;
242 }
243 
fio_send_data(int sk,const void * p,unsigned int len)244 static int fio_send_data(int sk, const void *p, unsigned int len)
245 {
246 	struct iovec iov = { .iov_base = (void *) p, .iov_len = len };
247 
248 	assert(len <= sizeof(struct fio_net_cmd) + FIO_SERVER_MAX_FRAGMENT_PDU);
249 
250 	return fio_sendv_data(sk, &iov, 1);
251 }
252 
fio_recv_data(int sk,void * buf,unsigned int len,bool wait)253 static int fio_recv_data(int sk, void *buf, unsigned int len, bool wait)
254 {
255 	int flags;
256 	char *p = buf;
257 
258 	if (wait)
259 		flags = MSG_WAITALL;
260 	else
261 		flags = OS_MSG_DONTWAIT;
262 
263 	do {
264 		int ret = recv(sk, p, len, flags);
265 
266 		if (ret > 0) {
267 			len -= ret;
268 			if (!len)
269 				break;
270 			p += ret;
271 			continue;
272 		} else if (!ret)
273 			break;
274 		else if (errno == EAGAIN || errno == EINTR) {
275 			if (wait)
276 				continue;
277 			break;
278 		} else
279 			break;
280 	} while (!exit_backend);
281 
282 	if (!len)
283 		return 0;
284 
285 	return -1;
286 }
287 
verify_convert_cmd(struct fio_net_cmd * cmd)288 static int verify_convert_cmd(struct fio_net_cmd *cmd)
289 {
290 	uint16_t crc;
291 
292 	cmd->cmd_crc16 = le16_to_cpu(cmd->cmd_crc16);
293 	cmd->pdu_crc16 = le16_to_cpu(cmd->pdu_crc16);
294 
295 	crc = fio_crc16(cmd, FIO_NET_CMD_CRC_SZ);
296 	if (crc != cmd->cmd_crc16) {
297 		log_err("fio: server bad crc on command (got %x, wanted %x)\n",
298 				cmd->cmd_crc16, crc);
299 		fprintf(f_err, "fio: server bad crc on command (got %x, wanted %x)\n",
300 				cmd->cmd_crc16, crc);
301 		return 1;
302 	}
303 
304 	cmd->version	= le16_to_cpu(cmd->version);
305 	cmd->opcode	= le16_to_cpu(cmd->opcode);
306 	cmd->flags	= le32_to_cpu(cmd->flags);
307 	cmd->tag	= le64_to_cpu(cmd->tag);
308 	cmd->pdu_len	= le32_to_cpu(cmd->pdu_len);
309 
310 	switch (cmd->version) {
311 	case FIO_SERVER_VER:
312 		break;
313 	default:
314 		log_err("fio: bad server cmd version %d\n", cmd->version);
315 		fprintf(f_err, "fio: client/server version mismatch (%d != %d)\n",
316 				cmd->version, FIO_SERVER_VER);
317 		return 1;
318 	}
319 
320 	if (cmd->pdu_len > FIO_SERVER_MAX_FRAGMENT_PDU) {
321 		log_err("fio: command payload too large: %u\n", cmd->pdu_len);
322 		return 1;
323 	}
324 
325 	return 0;
326 }
327 
328 /*
329  * Read (and defragment, if necessary) incoming commands
330  */
fio_net_recv_cmd(int sk,bool wait)331 struct fio_net_cmd *fio_net_recv_cmd(int sk, bool wait)
332 {
333 	struct fio_net_cmd cmd, *tmp, *cmdret = NULL;
334 	size_t cmd_size = 0, pdu_offset = 0;
335 	uint16_t crc;
336 	int ret, first = 1;
337 	void *pdu = NULL;
338 
339 	do {
340 		ret = fio_recv_data(sk, &cmd, sizeof(cmd), wait);
341 		if (ret)
342 			break;
343 
344 		/* We have a command, verify it and swap if need be */
345 		ret = verify_convert_cmd(&cmd);
346 		if (ret)
347 			break;
348 
349 		if (first) {
350 			/* if this is text, add room for \0 at the end */
351 			cmd_size = sizeof(cmd) + cmd.pdu_len + 1;
352 			assert(!cmdret);
353 		} else
354 			cmd_size += cmd.pdu_len;
355 
356 		if (cmd_size / 1024 > FIO_SERVER_MAX_CMD_MB * 1024) {
357 			log_err("fio: cmd+pdu too large (%llu)\n", (unsigned long long) cmd_size);
358 			ret = 1;
359 			break;
360 		}
361 
362 		tmp = realloc(cmdret, cmd_size);
363 		if (!tmp) {
364 			log_err("fio: server failed allocating cmd\n");
365 			ret = 1;
366 			break;
367 		}
368 		cmdret = tmp;
369 
370 		if (first)
371 			memcpy(cmdret, &cmd, sizeof(cmd));
372 		else if (cmdret->opcode != cmd.opcode) {
373 			log_err("fio: fragment opcode mismatch (%d != %d)\n",
374 					cmdret->opcode, cmd.opcode);
375 			ret = 1;
376 			break;
377 		}
378 
379 		if (!cmd.pdu_len)
380 			break;
381 
382 		/* There's payload, get it */
383 		pdu = (char *) cmdret->payload + pdu_offset;
384 		ret = fio_recv_data(sk, pdu, cmd.pdu_len, wait);
385 		if (ret)
386 			break;
387 
388 		/* Verify payload crc */
389 		crc = fio_crc16(pdu, cmd.pdu_len);
390 		if (crc != cmd.pdu_crc16) {
391 			log_err("fio: server bad crc on payload ");
392 			log_err("(got %x, wanted %x)\n", cmd.pdu_crc16, crc);
393 			ret = 1;
394 			break;
395 		}
396 
397 		pdu_offset += cmd.pdu_len;
398 		if (!first)
399 			cmdret->pdu_len += cmd.pdu_len;
400 		first = 0;
401 	} while (cmd.flags & FIO_NET_CMD_F_MORE);
402 
403 	if (ret) {
404 		free(cmdret);
405 		cmdret = NULL;
406 	} else if (cmdret) {
407 		/* zero-terminate text input */
408 		if (cmdret->pdu_len) {
409 			if (cmdret->opcode == FIO_NET_CMD_TEXT) {
410 				struct cmd_text_pdu *__pdu = (struct cmd_text_pdu *) cmdret->payload;
411 				char *buf = (char *) __pdu->buf;
412 				int len = le32_to_cpu(__pdu->buf_len);
413 
414 				buf[len] = '\0';
415 			} else if (cmdret->opcode == FIO_NET_CMD_JOB) {
416 				struct cmd_job_pdu *__pdu = (struct cmd_job_pdu *) cmdret->payload;
417 				char *buf = (char *) __pdu->buf;
418 				int len = le32_to_cpu(__pdu->buf_len);
419 
420 				buf[len] = '\0';
421 			}
422 		}
423 
424 		/* frag flag is internal */
425 		cmdret->flags &= ~FIO_NET_CMD_F_MORE;
426 	}
427 
428 	return cmdret;
429 }
430 
add_reply(uint64_t tag,struct flist_head * list)431 static void add_reply(uint64_t tag, struct flist_head *list)
432 {
433 	struct fio_net_cmd_reply *reply;
434 
435 	reply = (struct fio_net_cmd_reply *) (uintptr_t) tag;
436 	flist_add_tail(&reply->list, list);
437 }
438 
alloc_reply(uint64_t tag,uint16_t opcode)439 static uint64_t alloc_reply(uint64_t tag, uint16_t opcode)
440 {
441 	struct fio_net_cmd_reply *reply;
442 
443 	reply = calloc(1, sizeof(*reply));
444 	INIT_FLIST_HEAD(&reply->list);
445 	fio_gettime(&reply->ts, NULL);
446 	reply->saved_tag = tag;
447 	reply->opcode = opcode;
448 
449 	return (uintptr_t) reply;
450 }
451 
free_reply(uint64_t tag)452 static void free_reply(uint64_t tag)
453 {
454 	struct fio_net_cmd_reply *reply;
455 
456 	reply = (struct fio_net_cmd_reply *) (uintptr_t) tag;
457 	free(reply);
458 }
459 
fio_net_cmd_crc_pdu(struct fio_net_cmd * cmd,const void * pdu)460 static void fio_net_cmd_crc_pdu(struct fio_net_cmd *cmd, const void *pdu)
461 {
462 	uint32_t pdu_len;
463 
464 	cmd->cmd_crc16 = __cpu_to_le16(fio_crc16(cmd, FIO_NET_CMD_CRC_SZ));
465 
466 	pdu_len = le32_to_cpu(cmd->pdu_len);
467 	cmd->pdu_crc16 = __cpu_to_le16(fio_crc16(pdu, pdu_len));
468 }
469 
fio_net_cmd_crc(struct fio_net_cmd * cmd)470 static void fio_net_cmd_crc(struct fio_net_cmd *cmd)
471 {
472 	fio_net_cmd_crc_pdu(cmd, cmd->payload);
473 }
474 
fio_net_send_cmd(int fd,uint16_t opcode,const void * buf,off_t size,uint64_t * tagptr,struct flist_head * list)475 int fio_net_send_cmd(int fd, uint16_t opcode, const void *buf, off_t size,
476 		     uint64_t *tagptr, struct flist_head *list)
477 {
478 	struct fio_net_cmd *cmd = NULL;
479 	size_t this_len, cur_len = 0;
480 	uint64_t tag;
481 	int ret;
482 
483 	if (list) {
484 		assert(tagptr);
485 		tag = *tagptr = alloc_reply(*tagptr, opcode);
486 	} else
487 		tag = tagptr ? *tagptr : 0;
488 
489 	do {
490 		this_len = size;
491 		if (this_len > FIO_SERVER_MAX_FRAGMENT_PDU)
492 			this_len = FIO_SERVER_MAX_FRAGMENT_PDU;
493 
494 		if (!cmd || cur_len < sizeof(*cmd) + this_len) {
495 			if (cmd)
496 				free(cmd);
497 
498 			cur_len = sizeof(*cmd) + this_len;
499 			cmd = malloc(cur_len);
500 		}
501 
502 		fio_init_net_cmd(cmd, opcode, buf, this_len, tag);
503 
504 		if (this_len < size)
505 			cmd->flags = __cpu_to_le32(FIO_NET_CMD_F_MORE);
506 
507 		fio_net_cmd_crc(cmd);
508 
509 		ret = fio_send_data(fd, cmd, sizeof(*cmd) + this_len);
510 		size -= this_len;
511 		buf += this_len;
512 	} while (!ret && size);
513 
514 	if (list) {
515 		if (ret)
516 			free_reply(tag);
517 		else
518 			add_reply(tag, list);
519 	}
520 
521 	if (cmd)
522 		free(cmd);
523 
524 	return ret;
525 }
526 
fio_net_prep_cmd(uint16_t opcode,void * buf,size_t size,uint64_t * tagptr,int flags)527 static struct sk_entry *fio_net_prep_cmd(uint16_t opcode, void *buf,
528 					 size_t size, uint64_t *tagptr,
529 					 int flags)
530 {
531 	struct sk_entry *entry;
532 
533 	entry = smalloc(sizeof(*entry));
534 	if (!entry)
535 		return NULL;
536 
537 	INIT_FLIST_HEAD(&entry->next);
538 	entry->opcode = opcode;
539 	if (flags & SK_F_COPY) {
540 		entry->buf = smalloc(size);
541 		memcpy(entry->buf, buf, size);
542 	} else
543 		entry->buf = buf;
544 
545 	entry->size = size;
546 	if (tagptr)
547 		entry->tag = *tagptr;
548 	else
549 		entry->tag = 0;
550 	entry->flags = flags;
551 	return entry;
552 }
553 
554 static int handle_sk_entry(struct sk_out *sk_out, struct sk_entry *entry);
555 
fio_net_queue_entry(struct sk_entry * entry)556 static void fio_net_queue_entry(struct sk_entry *entry)
557 {
558 	struct sk_out *sk_out = pthread_getspecific(sk_out_key);
559 
560 	if (entry->flags & SK_F_INLINE)
561 		handle_sk_entry(sk_out, entry);
562 	else {
563 		sk_lock(sk_out);
564 		flist_add_tail(&entry->list, &sk_out->list);
565 		sk_unlock(sk_out);
566 
567 		fio_sem_up(&sk_out->wait);
568 	}
569 }
570 
fio_net_queue_cmd(uint16_t opcode,void * buf,off_t size,uint64_t * tagptr,int flags)571 static int fio_net_queue_cmd(uint16_t opcode, void *buf, off_t size,
572 			     uint64_t *tagptr, int flags)
573 {
574 	struct sk_entry *entry;
575 
576 	entry = fio_net_prep_cmd(opcode, buf, size, tagptr, flags);
577 	if (entry) {
578 		fio_net_queue_entry(entry);
579 		return 0;
580 	}
581 
582 	return 1;
583 }
584 
fio_net_send_simple_stack_cmd(int sk,uint16_t opcode,uint64_t tag)585 static int fio_net_send_simple_stack_cmd(int sk, uint16_t opcode, uint64_t tag)
586 {
587 	struct fio_net_cmd cmd;
588 
589 	fio_init_net_cmd(&cmd, opcode, NULL, 0, tag);
590 	fio_net_cmd_crc(&cmd);
591 
592 	return fio_send_data(sk, &cmd, sizeof(cmd));
593 }
594 
595 /*
596  * If 'list' is non-NULL, then allocate and store the sent command for
597  * later verification.
598  */
fio_net_send_simple_cmd(int sk,uint16_t opcode,uint64_t tag,struct flist_head * list)599 int fio_net_send_simple_cmd(int sk, uint16_t opcode, uint64_t tag,
600 			    struct flist_head *list)
601 {
602 	int ret;
603 
604 	if (list)
605 		tag = alloc_reply(tag, opcode);
606 
607 	ret = fio_net_send_simple_stack_cmd(sk, opcode, tag);
608 	if (ret) {
609 		if (list)
610 			free_reply(tag);
611 
612 		return ret;
613 	}
614 
615 	if (list)
616 		add_reply(tag, list);
617 
618 	return 0;
619 }
620 
fio_net_queue_quit(void)621 static int fio_net_queue_quit(void)
622 {
623 	dprint(FD_NET, "server: sending quit\n");
624 
625 	return fio_net_queue_cmd(FIO_NET_CMD_QUIT, NULL, 0, NULL, SK_F_SIMPLE);
626 }
627 
fio_net_send_quit(int sk)628 int fio_net_send_quit(int sk)
629 {
630 	dprint(FD_NET, "server: sending quit\n");
631 
632 	return fio_net_send_simple_cmd(sk, FIO_NET_CMD_QUIT, 0, NULL);
633 }
634 
fio_net_send_ack(struct fio_net_cmd * cmd,int error,int signal)635 static int fio_net_send_ack(struct fio_net_cmd *cmd, int error, int signal)
636 {
637 	struct cmd_end_pdu epdu;
638 	uint64_t tag = 0;
639 
640 	if (cmd)
641 		tag = cmd->tag;
642 
643 	epdu.error = __cpu_to_le32(error);
644 	epdu.signal = __cpu_to_le32(signal);
645 	return fio_net_queue_cmd(FIO_NET_CMD_STOP, &epdu, sizeof(epdu), &tag, SK_F_COPY);
646 }
647 
fio_net_queue_stop(int error,int signal)648 static int fio_net_queue_stop(int error, int signal)
649 {
650 	dprint(FD_NET, "server: sending stop (%d, %d)\n", error, signal);
651 	return fio_net_send_ack(NULL, error, signal);
652 }
653 
fio_server_add_fork_item(pid_t pid,struct flist_head * list)654 static void fio_server_add_fork_item(pid_t pid, struct flist_head *list)
655 {
656 	struct fio_fork_item *ffi;
657 
658 	ffi = malloc(sizeof(*ffi));
659 	ffi->exitval = 0;
660 	ffi->signal = 0;
661 	ffi->exited = 0;
662 	ffi->pid = pid;
663 	flist_add_tail(&ffi->list, list);
664 }
665 
fio_server_add_conn_pid(struct flist_head * conn_list,pid_t pid)666 static void fio_server_add_conn_pid(struct flist_head *conn_list, pid_t pid)
667 {
668 	dprint(FD_NET, "server: forked off connection job (pid=%u)\n", (int) pid);
669 	fio_server_add_fork_item(pid, conn_list);
670 }
671 
fio_server_add_job_pid(struct flist_head * job_list,pid_t pid)672 static void fio_server_add_job_pid(struct flist_head *job_list, pid_t pid)
673 {
674 	dprint(FD_NET, "server: forked off job job (pid=%u)\n", (int) pid);
675 	fio_server_add_fork_item(pid, job_list);
676 }
677 
fio_server_check_fork_item(struct fio_fork_item * ffi)678 static void fio_server_check_fork_item(struct fio_fork_item *ffi)
679 {
680 	int ret, status;
681 
682 	ret = waitpid(ffi->pid, &status, WNOHANG);
683 	if (ret < 0) {
684 		if (errno == ECHILD) {
685 			log_err("fio: connection pid %u disappeared\n", (int) ffi->pid);
686 			ffi->exited = 1;
687 		} else
688 			log_err("fio: waitpid: %s\n", strerror(errno));
689 	} else if (ret == ffi->pid) {
690 		if (WIFSIGNALED(status)) {
691 			ffi->signal = WTERMSIG(status);
692 			ffi->exited = 1;
693 		}
694 		if (WIFEXITED(status)) {
695 			if (WEXITSTATUS(status))
696 				ffi->exitval = WEXITSTATUS(status);
697 			ffi->exited = 1;
698 		}
699 	}
700 }
701 
fio_server_fork_item_done(struct fio_fork_item * ffi,bool stop)702 static void fio_server_fork_item_done(struct fio_fork_item *ffi, bool stop)
703 {
704 	dprint(FD_NET, "pid %u exited, sig=%u, exitval=%d\n", (int) ffi->pid, ffi->signal, ffi->exitval);
705 
706 	/*
707 	 * Fold STOP and QUIT...
708 	 */
709 	if (stop) {
710 		fio_net_queue_stop(ffi->exitval, ffi->signal);
711 		fio_net_queue_quit();
712 	}
713 
714 	flist_del(&ffi->list);
715 	free(ffi);
716 }
717 
fio_server_check_fork_items(struct flist_head * list,bool stop)718 static void fio_server_check_fork_items(struct flist_head *list, bool stop)
719 {
720 	struct flist_head *entry, *tmp;
721 	struct fio_fork_item *ffi;
722 
723 	flist_for_each_safe(entry, tmp, list) {
724 		ffi = flist_entry(entry, struct fio_fork_item, list);
725 
726 		fio_server_check_fork_item(ffi);
727 
728 		if (ffi->exited)
729 			fio_server_fork_item_done(ffi, stop);
730 	}
731 }
732 
fio_server_check_jobs(struct flist_head * job_list)733 static void fio_server_check_jobs(struct flist_head *job_list)
734 {
735 	fio_server_check_fork_items(job_list, true);
736 }
737 
fio_server_check_conns(struct flist_head * conn_list)738 static void fio_server_check_conns(struct flist_head *conn_list)
739 {
740 	fio_server_check_fork_items(conn_list, false);
741 }
742 
handle_load_file_cmd(struct fio_net_cmd * cmd)743 static int handle_load_file_cmd(struct fio_net_cmd *cmd)
744 {
745 	struct cmd_load_file_pdu *pdu = (struct cmd_load_file_pdu *) cmd->payload;
746 	void *file_name = pdu->file;
747 	struct cmd_start_pdu spdu;
748 
749 	dprint(FD_NET, "server: loading local file %s\n", (char *) file_name);
750 
751 	pdu->name_len = le16_to_cpu(pdu->name_len);
752 	pdu->client_type = le16_to_cpu(pdu->client_type);
753 
754 	if (parse_jobs_ini(file_name, 0, 0, pdu->client_type)) {
755 		fio_net_queue_quit();
756 		return -1;
757 	}
758 
759 	spdu.jobs = cpu_to_le32(thread_number);
760 	spdu.stat_outputs = cpu_to_le32(stat_number);
761 	fio_net_queue_cmd(FIO_NET_CMD_START, &spdu, sizeof(spdu), NULL, SK_F_COPY);
762 	return 0;
763 }
764 
handle_run_cmd(struct sk_out * sk_out,struct flist_head * job_list,struct fio_net_cmd * cmd)765 static int handle_run_cmd(struct sk_out *sk_out, struct flist_head *job_list,
766 			  struct fio_net_cmd *cmd)
767 {
768 	pid_t pid;
769 	int ret;
770 
771 	sk_out_assign(sk_out);
772 
773 	fio_time_init();
774 	set_genesis_time();
775 
776 	pid = fork();
777 	if (pid) {
778 		fio_server_add_job_pid(job_list, pid);
779 		return 0;
780 	}
781 
782 	ret = fio_backend(sk_out);
783 	free_threads_shm();
784 	sk_out_drop();
785 	_exit(ret);
786 }
787 
handle_job_cmd(struct fio_net_cmd * cmd)788 static int handle_job_cmd(struct fio_net_cmd *cmd)
789 {
790 	struct cmd_job_pdu *pdu = (struct cmd_job_pdu *) cmd->payload;
791 	void *buf = pdu->buf;
792 	struct cmd_start_pdu spdu;
793 
794 	pdu->buf_len = le32_to_cpu(pdu->buf_len);
795 	pdu->client_type = le32_to_cpu(pdu->client_type);
796 
797 	if (parse_jobs_ini(buf, 1, 0, pdu->client_type)) {
798 		fio_net_queue_quit();
799 		return -1;
800 	}
801 
802 	spdu.jobs = cpu_to_le32(thread_number);
803 	spdu.stat_outputs = cpu_to_le32(stat_number);
804 
805 	fio_net_queue_cmd(FIO_NET_CMD_START, &spdu, sizeof(spdu), NULL, SK_F_COPY);
806 	return 0;
807 }
808 
handle_jobline_cmd(struct fio_net_cmd * cmd)809 static int handle_jobline_cmd(struct fio_net_cmd *cmd)
810 {
811 	void *pdu = cmd->payload;
812 	struct cmd_single_line_pdu *cslp;
813 	struct cmd_line_pdu *clp;
814 	unsigned long offset;
815 	struct cmd_start_pdu spdu;
816 	char **argv;
817 	int i;
818 
819 	clp = pdu;
820 	clp->lines = le16_to_cpu(clp->lines);
821 	clp->client_type = le16_to_cpu(clp->client_type);
822 	argv = malloc(clp->lines * sizeof(char *));
823 	offset = sizeof(*clp);
824 
825 	dprint(FD_NET, "server: %d command line args\n", clp->lines);
826 
827 	for (i = 0; i < clp->lines; i++) {
828 		cslp = pdu + offset;
829 		argv[i] = (char *) cslp->text;
830 
831 		offset += sizeof(*cslp) + le16_to_cpu(cslp->len);
832 		dprint(FD_NET, "server: %d: %s\n", i, argv[i]);
833 	}
834 
835 	if (parse_cmd_line(clp->lines, argv, clp->client_type)) {
836 		fio_net_queue_quit();
837 		free(argv);
838 		return -1;
839 	}
840 
841 	free(argv);
842 
843 	spdu.jobs = cpu_to_le32(thread_number);
844 	spdu.stat_outputs = cpu_to_le32(stat_number);
845 
846 	fio_net_queue_cmd(FIO_NET_CMD_START, &spdu, sizeof(spdu), NULL, SK_F_COPY);
847 	return 0;
848 }
849 
handle_probe_cmd(struct fio_net_cmd * cmd)850 static int handle_probe_cmd(struct fio_net_cmd *cmd)
851 {
852 	struct cmd_client_probe_pdu *pdu = (struct cmd_client_probe_pdu *) cmd->payload;
853 	uint64_t tag = cmd->tag;
854 	struct cmd_probe_reply_pdu probe = {
855 #ifdef CONFIG_BIG_ENDIAN
856 		.bigendian	= 1,
857 #endif
858 		.os		= FIO_OS,
859 		.arch		= FIO_ARCH,
860 		.bpp		= sizeof(void *),
861 		.cpus		= __cpu_to_le32(cpus_online()),
862 	};
863 
864 	dprint(FD_NET, "server: sending probe reply\n");
865 
866 	strcpy(me, (char *) pdu->server);
867 
868 	gethostname((char *) probe.hostname, sizeof(probe.hostname));
869 	snprintf((char *) probe.fio_version, sizeof(probe.fio_version), "%s",
870 		 fio_version_string);
871 
872 	/*
873 	 * If the client supports compression and we do too, then enable it
874 	 */
875 	if (has_zlib && le64_to_cpu(pdu->flags) & FIO_PROBE_FLAG_ZLIB) {
876 		probe.flags = __cpu_to_le64(FIO_PROBE_FLAG_ZLIB);
877 		use_zlib = 1;
878 	} else {
879 		probe.flags = 0;
880 		use_zlib = 0;
881 	}
882 
883 	return fio_net_queue_cmd(FIO_NET_CMD_PROBE, &probe, sizeof(probe), &tag, SK_F_COPY);
884 }
885 
handle_send_eta_cmd(struct fio_net_cmd * cmd)886 static int handle_send_eta_cmd(struct fio_net_cmd *cmd)
887 {
888 	struct jobs_eta *je;
889 	uint64_t tag = cmd->tag;
890 	size_t size;
891 	int i;
892 
893 	dprint(FD_NET, "server sending status\n");
894 
895 	/*
896 	 * Fake ETA return if we don't have a local one, otherwise the client
897 	 * will end up timing out waiting for a response to the ETA request
898 	 */
899 	je = get_jobs_eta(true, &size);
900 	if (!je) {
901 		size = sizeof(*je);
902 		je = calloc(1, size);
903 	} else {
904 		je->nr_running		= cpu_to_le32(je->nr_running);
905 		je->nr_ramp		= cpu_to_le32(je->nr_ramp);
906 		je->nr_pending		= cpu_to_le32(je->nr_pending);
907 		je->nr_setting_up	= cpu_to_le32(je->nr_setting_up);
908 		je->files_open		= cpu_to_le32(je->files_open);
909 
910 		for (i = 0; i < DDIR_RWDIR_CNT; i++) {
911 			je->m_rate[i]	= cpu_to_le64(je->m_rate[i]);
912 			je->t_rate[i]	= cpu_to_le64(je->t_rate[i]);
913 			je->m_iops[i]	= cpu_to_le32(je->m_iops[i]);
914 			je->t_iops[i]	= cpu_to_le32(je->t_iops[i]);
915 			je->rate[i]	= cpu_to_le64(je->rate[i]);
916 			je->iops[i]	= cpu_to_le32(je->iops[i]);
917 		}
918 
919 		je->elapsed_sec		= cpu_to_le64(je->elapsed_sec);
920 		je->eta_sec		= cpu_to_le64(je->eta_sec);
921 		je->nr_threads		= cpu_to_le32(je->nr_threads);
922 		je->is_pow2		= cpu_to_le32(je->is_pow2);
923 		je->unit_base		= cpu_to_le32(je->unit_base);
924 	}
925 
926 	fio_net_queue_cmd(FIO_NET_CMD_ETA, je, size, &tag, SK_F_FREE);
927 	return 0;
928 }
929 
send_update_job_reply(uint64_t __tag,int error)930 static int send_update_job_reply(uint64_t __tag, int error)
931 {
932 	uint64_t tag = __tag;
933 	uint32_t pdu_error;
934 
935 	pdu_error = __cpu_to_le32(error);
936 	return fio_net_queue_cmd(FIO_NET_CMD_UPDATE_JOB, &pdu_error, sizeof(pdu_error), &tag, SK_F_COPY);
937 }
938 
handle_update_job_cmd(struct fio_net_cmd * cmd)939 static int handle_update_job_cmd(struct fio_net_cmd *cmd)
940 {
941 	struct cmd_add_job_pdu *pdu = (struct cmd_add_job_pdu *) cmd->payload;
942 	struct thread_data *td;
943 	uint32_t tnumber;
944 
945 	tnumber = le32_to_cpu(pdu->thread_number);
946 
947 	dprint(FD_NET, "server: updating options for job %u\n", tnumber);
948 
949 	if (!tnumber || tnumber > thread_number) {
950 		send_update_job_reply(cmd->tag, ENODEV);
951 		return 0;
952 	}
953 
954 	td = tnumber_to_td(tnumber);
955 	convert_thread_options_to_cpu(&td->o, &pdu->top);
956 	send_update_job_reply(cmd->tag, 0);
957 	return 0;
958 }
959 
handle_trigger_cmd(struct fio_net_cmd * cmd,struct flist_head * job_list)960 static int handle_trigger_cmd(struct fio_net_cmd *cmd, struct flist_head *job_list)
961 {
962 	struct cmd_vtrigger_pdu *pdu = (struct cmd_vtrigger_pdu *) cmd->payload;
963 	char *buf = (char *) pdu->cmd;
964 	struct all_io_list *rep;
965 	size_t sz;
966 
967 	pdu->len = le16_to_cpu(pdu->len);
968 	buf[pdu->len] = '\0';
969 
970 	rep = get_all_io_list(IO_LIST_ALL, &sz);
971 	if (!rep) {
972 		struct all_io_list state;
973 
974 		state.threads = cpu_to_le64((uint64_t) 0);
975 		fio_net_queue_cmd(FIO_NET_CMD_VTRIGGER, &state, sizeof(state), NULL, SK_F_COPY | SK_F_INLINE);
976 	} else
977 		fio_net_queue_cmd(FIO_NET_CMD_VTRIGGER, rep, sz, NULL, SK_F_FREE | SK_F_INLINE);
978 
979 	fio_terminate_threads(TERMINATE_ALL, TERMINATE_ALL);
980 	fio_server_check_jobs(job_list);
981 	exec_trigger(buf);
982 	return 0;
983 }
984 
handle_command(struct sk_out * sk_out,struct flist_head * job_list,struct fio_net_cmd * cmd)985 static int handle_command(struct sk_out *sk_out, struct flist_head *job_list,
986 			  struct fio_net_cmd *cmd)
987 {
988 	int ret;
989 
990 	dprint(FD_NET, "server: got op [%s], pdu=%u, tag=%llx\n",
991 			fio_server_op(cmd->opcode), cmd->pdu_len,
992 			(unsigned long long) cmd->tag);
993 
994 	switch (cmd->opcode) {
995 	case FIO_NET_CMD_QUIT:
996 		fio_terminate_threads(TERMINATE_ALL, TERMINATE_ALL);
997 		ret = 0;
998 		break;
999 	case FIO_NET_CMD_EXIT:
1000 		exit_backend = true;
1001 		return -1;
1002 	case FIO_NET_CMD_LOAD_FILE:
1003 		ret = handle_load_file_cmd(cmd);
1004 		break;
1005 	case FIO_NET_CMD_JOB:
1006 		ret = handle_job_cmd(cmd);
1007 		break;
1008 	case FIO_NET_CMD_JOBLINE:
1009 		ret = handle_jobline_cmd(cmd);
1010 		break;
1011 	case FIO_NET_CMD_PROBE:
1012 		ret = handle_probe_cmd(cmd);
1013 		break;
1014 	case FIO_NET_CMD_SEND_ETA:
1015 		ret = handle_send_eta_cmd(cmd);
1016 		break;
1017 	case FIO_NET_CMD_RUN:
1018 		ret = handle_run_cmd(sk_out, job_list, cmd);
1019 		break;
1020 	case FIO_NET_CMD_UPDATE_JOB:
1021 		ret = handle_update_job_cmd(cmd);
1022 		break;
1023 	case FIO_NET_CMD_VTRIGGER:
1024 		ret = handle_trigger_cmd(cmd, job_list);
1025 		break;
1026 	case FIO_NET_CMD_SENDFILE: {
1027 		struct cmd_sendfile_reply *in;
1028 		struct cmd_reply *rep;
1029 
1030 		rep = (struct cmd_reply *) (uintptr_t) cmd->tag;
1031 
1032 		in = (struct cmd_sendfile_reply *) cmd->payload;
1033 		in->size = le32_to_cpu(in->size);
1034 		in->error = le32_to_cpu(in->error);
1035 		if (in->error) {
1036 			ret = 1;
1037 			rep->error = in->error;
1038 		} else {
1039 			ret = 0;
1040 			rep->data = smalloc(in->size);
1041 			if (!rep->data) {
1042 				ret = 1;
1043 				rep->error = ENOMEM;
1044 			} else {
1045 				rep->size = in->size;
1046 				memcpy(rep->data, in->data, in->size);
1047 			}
1048 		}
1049 		fio_sem_up(&rep->lock);
1050 		break;
1051 		}
1052 	default:
1053 		log_err("fio: unknown opcode: %s\n", fio_server_op(cmd->opcode));
1054 		ret = 1;
1055 	}
1056 
1057 	return ret;
1058 }
1059 
1060 /*
1061  * Send a command with a separate PDU, not inlined in the command
1062  */
fio_send_cmd_ext_pdu(int sk,uint16_t opcode,const void * buf,off_t size,uint64_t tag,uint32_t flags)1063 static int fio_send_cmd_ext_pdu(int sk, uint16_t opcode, const void *buf,
1064 				off_t size, uint64_t tag, uint32_t flags)
1065 {
1066 	struct fio_net_cmd cmd;
1067 	struct iovec iov[2];
1068 	size_t this_len;
1069 	int ret;
1070 
1071 	iov[0].iov_base = (void *) &cmd;
1072 	iov[0].iov_len = sizeof(cmd);
1073 
1074 	do {
1075 		uint32_t this_flags = flags;
1076 
1077 		this_len = size;
1078 		if (this_len > FIO_SERVER_MAX_FRAGMENT_PDU)
1079 			this_len = FIO_SERVER_MAX_FRAGMENT_PDU;
1080 
1081 		if (this_len < size)
1082 			this_flags |= FIO_NET_CMD_F_MORE;
1083 
1084 		__fio_init_net_cmd(&cmd, opcode, this_len, tag);
1085 		cmd.flags = __cpu_to_le32(this_flags);
1086 		fio_net_cmd_crc_pdu(&cmd, buf);
1087 
1088 		iov[1].iov_base = (void *) buf;
1089 		iov[1].iov_len = this_len;
1090 
1091 		ret = fio_sendv_data(sk, iov, 2);
1092 		size -= this_len;
1093 		buf += this_len;
1094 	} while (!ret && size);
1095 
1096 	return ret;
1097 }
1098 
finish_entry(struct sk_entry * entry)1099 static void finish_entry(struct sk_entry *entry)
1100 {
1101 	if (entry->flags & SK_F_FREE)
1102 		free(entry->buf);
1103 	else if (entry->flags & SK_F_COPY)
1104 		sfree(entry->buf);
1105 
1106 	sfree(entry);
1107 }
1108 
entry_set_flags(struct sk_entry * entry,struct flist_head * list,unsigned int * flags)1109 static void entry_set_flags(struct sk_entry *entry, struct flist_head *list,
1110 			    unsigned int *flags)
1111 {
1112 	if (!flist_empty(list))
1113 		*flags = FIO_NET_CMD_F_MORE;
1114 	else
1115 		*flags = 0;
1116 }
1117 
send_vec_entry(struct sk_out * sk_out,struct sk_entry * first)1118 static int send_vec_entry(struct sk_out *sk_out, struct sk_entry *first)
1119 {
1120 	unsigned int flags;
1121 	int ret;
1122 
1123 	entry_set_flags(first, &first->next, &flags);
1124 
1125 	ret = fio_send_cmd_ext_pdu(sk_out->sk, first->opcode, first->buf,
1126 					first->size, first->tag, flags);
1127 
1128 	while (!flist_empty(&first->next)) {
1129 		struct sk_entry *next;
1130 
1131 		next = flist_first_entry(&first->next, struct sk_entry, list);
1132 		flist_del_init(&next->list);
1133 
1134 		entry_set_flags(next, &first->next, &flags);
1135 
1136 		ret += fio_send_cmd_ext_pdu(sk_out->sk, next->opcode, next->buf,
1137 						next->size, next->tag, flags);
1138 		finish_entry(next);
1139 	}
1140 
1141 	return ret;
1142 }
1143 
handle_sk_entry(struct sk_out * sk_out,struct sk_entry * entry)1144 static int handle_sk_entry(struct sk_out *sk_out, struct sk_entry *entry)
1145 {
1146 	int ret;
1147 
1148 	fio_sem_down(&sk_out->xmit);
1149 
1150 	if (entry->flags & SK_F_VEC)
1151 		ret = send_vec_entry(sk_out, entry);
1152 	else if (entry->flags & SK_F_SIMPLE) {
1153 		ret = fio_net_send_simple_cmd(sk_out->sk, entry->opcode,
1154 						entry->tag, NULL);
1155 	} else {
1156 		ret = fio_net_send_cmd(sk_out->sk, entry->opcode, entry->buf,
1157 					entry->size, &entry->tag, NULL);
1158 	}
1159 
1160 	fio_sem_up(&sk_out->xmit);
1161 
1162 	if (ret)
1163 		log_err("fio: failed handling cmd %s\n", fio_server_op(entry->opcode));
1164 
1165 	finish_entry(entry);
1166 	return ret;
1167 }
1168 
handle_xmits(struct sk_out * sk_out)1169 static int handle_xmits(struct sk_out *sk_out)
1170 {
1171 	struct sk_entry *entry;
1172 	FLIST_HEAD(list);
1173 	int ret = 0;
1174 
1175 	sk_lock(sk_out);
1176 	if (flist_empty(&sk_out->list)) {
1177 		sk_unlock(sk_out);
1178 		return 0;
1179 	}
1180 
1181 	flist_splice_init(&sk_out->list, &list);
1182 	sk_unlock(sk_out);
1183 
1184 	while (!flist_empty(&list)) {
1185 		entry = flist_entry(list.next, struct sk_entry, list);
1186 		flist_del(&entry->list);
1187 		ret += handle_sk_entry(sk_out, entry);
1188 	}
1189 
1190 	return ret;
1191 }
1192 
handle_connection(struct sk_out * sk_out)1193 static int handle_connection(struct sk_out *sk_out)
1194 {
1195 	struct fio_net_cmd *cmd = NULL;
1196 	FLIST_HEAD(job_list);
1197 	int ret = 0;
1198 
1199 	reset_fio_state();
1200 
1201 	/* read forever */
1202 	while (!exit_backend) {
1203 		struct pollfd pfd = {
1204 			.fd	= sk_out->sk,
1205 			.events	= POLLIN,
1206 		};
1207 
1208 		do {
1209 			int timeout = 1000;
1210 
1211 			if (!flist_empty(&job_list))
1212 				timeout = 100;
1213 
1214 			handle_xmits(sk_out);
1215 
1216 			ret = poll(&pfd, 1, 0);
1217 			if (ret < 0) {
1218 				if (errno == EINTR)
1219 					break;
1220 				log_err("fio: poll: %s\n", strerror(errno));
1221 				break;
1222 			} else if (!ret) {
1223 				fio_server_check_jobs(&job_list);
1224 				fio_sem_down_timeout(&sk_out->wait, timeout);
1225 				continue;
1226 			}
1227 
1228 			if (pfd.revents & POLLIN)
1229 				break;
1230 			if (pfd.revents & (POLLERR|POLLHUP)) {
1231 				ret = 1;
1232 				break;
1233 			}
1234 		} while (!exit_backend);
1235 
1236 		fio_server_check_jobs(&job_list);
1237 
1238 		if (ret < 0)
1239 			break;
1240 
1241 		cmd = fio_net_recv_cmd(sk_out->sk, true);
1242 		if (!cmd) {
1243 			ret = -1;
1244 			break;
1245 		}
1246 
1247 		ret = handle_command(sk_out, &job_list, cmd);
1248 		if (ret)
1249 			break;
1250 
1251 		free(cmd);
1252 		cmd = NULL;
1253 	}
1254 
1255 	if (cmd)
1256 		free(cmd);
1257 
1258 	handle_xmits(sk_out);
1259 
1260 	close(sk_out->sk);
1261 	sk_out->sk = -1;
1262 	__sk_out_drop(sk_out);
1263 	_exit(ret);
1264 }
1265 
1266 /* get the address on this host bound by the input socket,
1267  * whether it is ipv6 or ipv4 */
1268 
get_my_addr_str(int sk)1269 static int get_my_addr_str(int sk)
1270 {
1271 	struct sockaddr_in6 myaddr6 = { 0, };
1272 	struct sockaddr_in myaddr4 = { 0, };
1273 	struct sockaddr *sockaddr_p;
1274 	char *net_addr;
1275 	socklen_t len;
1276 	int ret;
1277 
1278 	if (use_ipv6) {
1279 		len = sizeof(myaddr6);
1280 		sockaddr_p = (struct sockaddr * )&myaddr6;
1281 		net_addr = (char * )&myaddr6.sin6_addr;
1282 	} else {
1283 		len = sizeof(myaddr4);
1284 		sockaddr_p = (struct sockaddr * )&myaddr4;
1285 		net_addr = (char * )&myaddr4.sin_addr;
1286 	}
1287 
1288 	ret = getsockname(sk, sockaddr_p, &len);
1289 	if (ret) {
1290 		log_err("fio: getsockname: %s\n", strerror(errno));
1291 		return -1;
1292 	}
1293 
1294 	if (!inet_ntop(use_ipv6?AF_INET6:AF_INET, net_addr, client_sockaddr_str, INET6_ADDRSTRLEN - 1)) {
1295 		log_err("inet_ntop: failed to convert addr to string\n");
1296 		return -1;
1297 	}
1298 
1299 	dprint(FD_NET, "fio server bound to addr %s\n", client_sockaddr_str);
1300 	return 0;
1301 }
1302 
accept_loop(int listen_sk)1303 static int accept_loop(int listen_sk)
1304 {
1305 	struct sockaddr_in addr;
1306 	struct sockaddr_in6 addr6;
1307 	socklen_t len = use_ipv6 ? sizeof(addr6) : sizeof(addr);
1308 	struct pollfd pfd;
1309 	int ret = 0, sk, exitval = 0;
1310 	FLIST_HEAD(conn_list);
1311 
1312 	dprint(FD_NET, "server enter accept loop\n");
1313 
1314 	fio_set_fd_nonblocking(listen_sk, "server");
1315 
1316 	while (!exit_backend) {
1317 		struct sk_out *sk_out;
1318 		const char *from;
1319 		char buf[64];
1320 		pid_t pid;
1321 
1322 		pfd.fd = listen_sk;
1323 		pfd.events = POLLIN;
1324 		do {
1325 			int timeout = 1000;
1326 
1327 			if (!flist_empty(&conn_list))
1328 				timeout = 100;
1329 
1330 			ret = poll(&pfd, 1, timeout);
1331 			if (ret < 0) {
1332 				if (errno == EINTR)
1333 					break;
1334 				log_err("fio: poll: %s\n", strerror(errno));
1335 				break;
1336 			} else if (!ret) {
1337 				fio_server_check_conns(&conn_list);
1338 				continue;
1339 			}
1340 
1341 			if (pfd.revents & POLLIN)
1342 				break;
1343 		} while (!exit_backend);
1344 
1345 		fio_server_check_conns(&conn_list);
1346 
1347 		if (exit_backend || ret < 0)
1348 			break;
1349 
1350 		if (use_ipv6)
1351 			sk = accept(listen_sk, (struct sockaddr *) &addr6, &len);
1352 		else
1353 			sk = accept(listen_sk, (struct sockaddr *) &addr, &len);
1354 
1355 		if (sk < 0) {
1356 			log_err("fio: accept: %s\n", strerror(errno));
1357 			return -1;
1358 		}
1359 
1360 		if (use_ipv6)
1361 			from = inet_ntop(AF_INET6, (struct sockaddr *) &addr6.sin6_addr, buf, sizeof(buf));
1362 		else
1363 			from = inet_ntop(AF_INET, (struct sockaddr *) &addr.sin_addr, buf, sizeof(buf));
1364 
1365 		dprint(FD_NET, "server: connect from %s\n", from);
1366 
1367 		sk_out = scalloc(1, sizeof(*sk_out));
1368 		if (!sk_out) {
1369 			close(sk);
1370 			return -1;
1371 		}
1372 
1373 		sk_out->sk = sk;
1374 		INIT_FLIST_HEAD(&sk_out->list);
1375 		__fio_sem_init(&sk_out->lock, FIO_SEM_UNLOCKED);
1376 		__fio_sem_init(&sk_out->wait, FIO_SEM_LOCKED);
1377 		__fio_sem_init(&sk_out->xmit, FIO_SEM_UNLOCKED);
1378 
1379 		pid = fork();
1380 		if (pid) {
1381 			close(sk);
1382 			fio_server_add_conn_pid(&conn_list, pid);
1383 			continue;
1384 		}
1385 
1386 		/* if error, it's already logged, non-fatal */
1387 		get_my_addr_str(sk);
1388 
1389 		/*
1390 		 * Assign sk_out here, it'll be dropped in handle_connection()
1391 		 * since that function calls _exit() when done
1392 		 */
1393 		sk_out_assign(sk_out);
1394 		handle_connection(sk_out);
1395 	}
1396 
1397 	return exitval;
1398 }
1399 
fio_server_text_output(int level,const char * buf,size_t len)1400 int fio_server_text_output(int level, const char *buf, size_t len)
1401 {
1402 	struct sk_out *sk_out = pthread_getspecific(sk_out_key);
1403 	struct cmd_text_pdu *pdu;
1404 	unsigned int tlen;
1405 	struct timeval tv;
1406 
1407 	if (!sk_out || sk_out->sk == -1)
1408 		return -1;
1409 
1410 	tlen = sizeof(*pdu) + len;
1411 	pdu = malloc(tlen);
1412 
1413 	pdu->level	= __cpu_to_le32(level);
1414 	pdu->buf_len	= __cpu_to_le32(len);
1415 
1416 	gettimeofday(&tv, NULL);
1417 	pdu->log_sec	= __cpu_to_le64(tv.tv_sec);
1418 	pdu->log_usec	= __cpu_to_le64(tv.tv_usec);
1419 
1420 	memcpy(pdu->buf, buf, len);
1421 
1422 	fio_net_queue_cmd(FIO_NET_CMD_TEXT, pdu, tlen, NULL, SK_F_COPY);
1423 	free(pdu);
1424 	return len;
1425 }
1426 
convert_io_stat(struct io_stat * dst,struct io_stat * src)1427 static void convert_io_stat(struct io_stat *dst, struct io_stat *src)
1428 {
1429 	dst->max_val	= cpu_to_le64(src->max_val);
1430 	dst->min_val	= cpu_to_le64(src->min_val);
1431 	dst->samples	= cpu_to_le64(src->samples);
1432 
1433 	/*
1434 	 * Encode to IEEE 754 for network transfer
1435 	 */
1436 	dst->mean.u.i	= cpu_to_le64(fio_double_to_uint64(src->mean.u.f));
1437 	dst->S.u.i	= cpu_to_le64(fio_double_to_uint64(src->S.u.f));
1438 }
1439 
convert_gs(struct group_run_stats * dst,struct group_run_stats * src)1440 static void convert_gs(struct group_run_stats *dst, struct group_run_stats *src)
1441 {
1442 	int i;
1443 
1444 	for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1445 		dst->max_run[i]		= cpu_to_le64(src->max_run[i]);
1446 		dst->min_run[i]		= cpu_to_le64(src->min_run[i]);
1447 		dst->max_bw[i]		= cpu_to_le64(src->max_bw[i]);
1448 		dst->min_bw[i]		= cpu_to_le64(src->min_bw[i]);
1449 		dst->iobytes[i]		= cpu_to_le64(src->iobytes[i]);
1450 		dst->agg[i]		= cpu_to_le64(src->agg[i]);
1451 	}
1452 
1453 	dst->kb_base	= cpu_to_le32(src->kb_base);
1454 	dst->unit_base	= cpu_to_le32(src->unit_base);
1455 	dst->groupid	= cpu_to_le32(src->groupid);
1456 	dst->unified_rw_rep	= cpu_to_le32(src->unified_rw_rep);
1457 	dst->sig_figs	= cpu_to_le32(src->sig_figs);
1458 }
1459 
1460 /*
1461  * Send a CMD_TS, which packs struct thread_stat and group_run_stats
1462  * into a single payload.
1463  */
fio_server_send_ts(struct thread_stat * ts,struct group_run_stats * rs)1464 void fio_server_send_ts(struct thread_stat *ts, struct group_run_stats *rs)
1465 {
1466 	struct cmd_ts_pdu p;
1467 	int i, j, k;
1468 	void *ss_buf;
1469 	uint64_t *ss_iops, *ss_bw;
1470 
1471 	dprint(FD_NET, "server sending end stats\n");
1472 
1473 	memset(&p, 0, sizeof(p));
1474 
1475 	snprintf(p.ts.name, sizeof(p.ts.name), "%s", ts->name);
1476 	snprintf(p.ts.verror, sizeof(p.ts.verror), "%s", ts->verror);
1477 	snprintf(p.ts.description, sizeof(p.ts.description), "%s",
1478 		 ts->description);
1479 
1480 	p.ts.error		= cpu_to_le32(ts->error);
1481 	p.ts.thread_number	= cpu_to_le32(ts->thread_number);
1482 	p.ts.groupid		= cpu_to_le32(ts->groupid);
1483 	p.ts.pid		= cpu_to_le32(ts->pid);
1484 	p.ts.members		= cpu_to_le32(ts->members);
1485 	p.ts.unified_rw_rep	= cpu_to_le32(ts->unified_rw_rep);
1486 
1487 	for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1488 		convert_io_stat(&p.ts.clat_stat[i], &ts->clat_stat[i]);
1489 		convert_io_stat(&p.ts.slat_stat[i], &ts->slat_stat[i]);
1490 		convert_io_stat(&p.ts.lat_stat[i], &ts->lat_stat[i]);
1491 		convert_io_stat(&p.ts.bw_stat[i], &ts->bw_stat[i]);
1492 		convert_io_stat(&p.ts.iops_stat[i], &ts->iops_stat[i]);
1493 	}
1494 	convert_io_stat(&p.ts.sync_stat, &ts->sync_stat);
1495 
1496 	p.ts.usr_time		= cpu_to_le64(ts->usr_time);
1497 	p.ts.sys_time		= cpu_to_le64(ts->sys_time);
1498 	p.ts.ctx		= cpu_to_le64(ts->ctx);
1499 	p.ts.minf		= cpu_to_le64(ts->minf);
1500 	p.ts.majf		= cpu_to_le64(ts->majf);
1501 	p.ts.clat_percentiles	= cpu_to_le32(ts->clat_percentiles);
1502 	p.ts.lat_percentiles	= cpu_to_le32(ts->lat_percentiles);
1503 	p.ts.slat_percentiles	= cpu_to_le32(ts->slat_percentiles);
1504 	p.ts.percentile_precision = cpu_to_le64(ts->percentile_precision);
1505 
1506 	for (i = 0; i < FIO_IO_U_LIST_MAX_LEN; i++) {
1507 		fio_fp64_t *src = &ts->percentile_list[i];
1508 		fio_fp64_t *dst = &p.ts.percentile_list[i];
1509 
1510 		dst->u.i = cpu_to_le64(fio_double_to_uint64(src->u.f));
1511 	}
1512 
1513 	for (i = 0; i < FIO_IO_U_MAP_NR; i++) {
1514 		p.ts.io_u_map[i]	= cpu_to_le64(ts->io_u_map[i]);
1515 		p.ts.io_u_submit[i]	= cpu_to_le64(ts->io_u_submit[i]);
1516 		p.ts.io_u_complete[i]	= cpu_to_le64(ts->io_u_complete[i]);
1517 	}
1518 
1519 	for (i = 0; i < FIO_IO_U_LAT_N_NR; i++)
1520 		p.ts.io_u_lat_n[i]	= cpu_to_le64(ts->io_u_lat_n[i]);
1521 	for (i = 0; i < FIO_IO_U_LAT_U_NR; i++)
1522 		p.ts.io_u_lat_u[i]	= cpu_to_le64(ts->io_u_lat_u[i]);
1523 	for (i = 0; i < FIO_IO_U_LAT_M_NR; i++)
1524 		p.ts.io_u_lat_m[i]	= cpu_to_le64(ts->io_u_lat_m[i]);
1525 
1526 	for (i = 0; i < FIO_LAT_CNT; i++)
1527 		for (j = 0; j < DDIR_RWDIR_CNT; j++)
1528 			for (k = 0; k < FIO_IO_U_PLAT_NR; k++)
1529 				p.ts.io_u_plat[i][j][k] = cpu_to_le64(ts->io_u_plat[i][j][k]);
1530 
1531 	for (j = 0; j < FIO_IO_U_PLAT_NR; j++)
1532 		p.ts.io_u_sync_plat[j] = cpu_to_le64(ts->io_u_sync_plat[j]);
1533 
1534 	for (i = 0; i < DDIR_RWDIR_SYNC_CNT; i++)
1535 		p.ts.total_io_u[i]	= cpu_to_le64(ts->total_io_u[i]);
1536 
1537 	for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1538 		p.ts.short_io_u[i]	= cpu_to_le64(ts->short_io_u[i]);
1539 		p.ts.drop_io_u[i]	= cpu_to_le64(ts->drop_io_u[i]);
1540 	}
1541 
1542 	p.ts.total_submit	= cpu_to_le64(ts->total_submit);
1543 	p.ts.total_complete	= cpu_to_le64(ts->total_complete);
1544 	p.ts.nr_zone_resets	= cpu_to_le64(ts->nr_zone_resets);
1545 
1546 	for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1547 		p.ts.io_bytes[i]	= cpu_to_le64(ts->io_bytes[i]);
1548 		p.ts.runtime[i]		= cpu_to_le64(ts->runtime[i]);
1549 	}
1550 
1551 	p.ts.total_run_time	= cpu_to_le64(ts->total_run_time);
1552 	p.ts.continue_on_error	= cpu_to_le16(ts->continue_on_error);
1553 	p.ts.total_err_count	= cpu_to_le64(ts->total_err_count);
1554 	p.ts.first_error	= cpu_to_le32(ts->first_error);
1555 	p.ts.kb_base		= cpu_to_le32(ts->kb_base);
1556 	p.ts.unit_base		= cpu_to_le32(ts->unit_base);
1557 
1558 	p.ts.latency_depth	= cpu_to_le32(ts->latency_depth);
1559 	p.ts.latency_target	= cpu_to_le64(ts->latency_target);
1560 	p.ts.latency_window	= cpu_to_le64(ts->latency_window);
1561 	p.ts.latency_percentile.u.i = cpu_to_le64(fio_double_to_uint64(ts->latency_percentile.u.f));
1562 
1563 	p.ts.sig_figs		= cpu_to_le32(ts->sig_figs);
1564 
1565 	p.ts.nr_block_infos	= cpu_to_le64(ts->nr_block_infos);
1566 	for (i = 0; i < p.ts.nr_block_infos; i++)
1567 		p.ts.block_infos[i] = cpu_to_le32(ts->block_infos[i]);
1568 
1569 	p.ts.ss_dur		= cpu_to_le64(ts->ss_dur);
1570 	p.ts.ss_state		= cpu_to_le32(ts->ss_state);
1571 	p.ts.ss_head		= cpu_to_le32(ts->ss_head);
1572 	p.ts.ss_limit.u.i	= cpu_to_le64(fio_double_to_uint64(ts->ss_limit.u.f));
1573 	p.ts.ss_slope.u.i	= cpu_to_le64(fio_double_to_uint64(ts->ss_slope.u.f));
1574 	p.ts.ss_deviation.u.i	= cpu_to_le64(fio_double_to_uint64(ts->ss_deviation.u.f));
1575 	p.ts.ss_criterion.u.i	= cpu_to_le64(fio_double_to_uint64(ts->ss_criterion.u.f));
1576 
1577 	p.ts.cachehit		= cpu_to_le64(ts->cachehit);
1578 	p.ts.cachemiss		= cpu_to_le64(ts->cachemiss);
1579 
1580 	for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1581 		for (j = 0; j < FIO_IO_U_PLAT_NR; j++) {
1582 			p.ts.io_u_plat_high_prio[i][j] = cpu_to_le64(ts->io_u_plat_high_prio[i][j]);
1583 			p.ts.io_u_plat_low_prio[i][j] = cpu_to_le64(ts->io_u_plat_low_prio[i][j]);
1584 		}
1585 		convert_io_stat(&p.ts.clat_high_prio_stat[i], &ts->clat_high_prio_stat[i]);
1586 		convert_io_stat(&p.ts.clat_low_prio_stat[i], &ts->clat_low_prio_stat[i]);
1587 	}
1588 
1589 	convert_gs(&p.rs, rs);
1590 
1591 	dprint(FD_NET, "ts->ss_state = %d\n", ts->ss_state);
1592 	if (ts->ss_state & FIO_SS_DATA) {
1593 		dprint(FD_NET, "server sending steadystate ring buffers\n");
1594 
1595 		ss_buf = malloc(sizeof(p) + 2*ts->ss_dur*sizeof(uint64_t));
1596 
1597 		memcpy(ss_buf, &p, sizeof(p));
1598 
1599 		ss_iops = (uint64_t *) ((struct cmd_ts_pdu *)ss_buf + 1);
1600 		ss_bw = ss_iops + (int) ts->ss_dur;
1601 		for (i = 0; i < ts->ss_dur; i++) {
1602 			ss_iops[i] = cpu_to_le64(ts->ss_iops_data[i]);
1603 			ss_bw[i] = cpu_to_le64(ts->ss_bw_data[i]);
1604 		}
1605 
1606 		fio_net_queue_cmd(FIO_NET_CMD_TS, ss_buf, sizeof(p) + 2*ts->ss_dur*sizeof(uint64_t), NULL, SK_F_COPY);
1607 
1608 		free(ss_buf);
1609 	}
1610 	else
1611 		fio_net_queue_cmd(FIO_NET_CMD_TS, &p, sizeof(p), NULL, SK_F_COPY);
1612 }
1613 
fio_server_send_gs(struct group_run_stats * rs)1614 void fio_server_send_gs(struct group_run_stats *rs)
1615 {
1616 	struct group_run_stats gs;
1617 
1618 	dprint(FD_NET, "server sending group run stats\n");
1619 
1620 	convert_gs(&gs, rs);
1621 	fio_net_queue_cmd(FIO_NET_CMD_GS, &gs, sizeof(gs), NULL, SK_F_COPY);
1622 }
1623 
fio_server_send_job_options(struct flist_head * opt_list,unsigned int gid)1624 void fio_server_send_job_options(struct flist_head *opt_list,
1625 				 unsigned int gid)
1626 {
1627 	struct cmd_job_option pdu;
1628 	struct flist_head *entry;
1629 
1630 	if (flist_empty(opt_list))
1631 		return;
1632 
1633 	flist_for_each(entry, opt_list) {
1634 		struct print_option *p;
1635 		size_t len;
1636 
1637 		p = flist_entry(entry, struct print_option, list);
1638 		memset(&pdu, 0, sizeof(pdu));
1639 
1640 		if (gid == -1U) {
1641 			pdu.global = __cpu_to_le16(1);
1642 			pdu.groupid = 0;
1643 		} else {
1644 			pdu.global = 0;
1645 			pdu.groupid = cpu_to_le32(gid);
1646 		}
1647 		len = strlen(p->name);
1648 		if (len >= sizeof(pdu.name)) {
1649 			len = sizeof(pdu.name) - 1;
1650 			pdu.truncated = __cpu_to_le16(1);
1651 		}
1652 		memcpy(pdu.name, p->name, len);
1653 		if (p->value) {
1654 			len = strlen(p->value);
1655 			if (len >= sizeof(pdu.value)) {
1656 				len = sizeof(pdu.value) - 1;
1657 				pdu.truncated = __cpu_to_le16(1);
1658 			}
1659 			memcpy(pdu.value, p->value, len);
1660 		}
1661 		fio_net_queue_cmd(FIO_NET_CMD_JOB_OPT, &pdu, sizeof(pdu), NULL, SK_F_COPY);
1662 	}
1663 }
1664 
convert_agg(struct disk_util_agg * dst,struct disk_util_agg * src)1665 static void convert_agg(struct disk_util_agg *dst, struct disk_util_agg *src)
1666 {
1667 	int i;
1668 
1669 	for (i = 0; i < 2; i++) {
1670 		dst->ios[i]	= cpu_to_le64(src->ios[i]);
1671 		dst->merges[i]	= cpu_to_le64(src->merges[i]);
1672 		dst->sectors[i]	= cpu_to_le64(src->sectors[i]);
1673 		dst->ticks[i]	= cpu_to_le64(src->ticks[i]);
1674 	}
1675 
1676 	dst->io_ticks		= cpu_to_le64(src->io_ticks);
1677 	dst->time_in_queue	= cpu_to_le64(src->time_in_queue);
1678 	dst->slavecount		= cpu_to_le32(src->slavecount);
1679 	dst->max_util.u.i	= cpu_to_le64(fio_double_to_uint64(src->max_util.u.f));
1680 }
1681 
convert_dus(struct disk_util_stat * dst,struct disk_util_stat * src)1682 static void convert_dus(struct disk_util_stat *dst, struct disk_util_stat *src)
1683 {
1684 	int i;
1685 
1686 	snprintf((char *) dst->name, sizeof(dst->name), "%s", src->name);
1687 
1688 	for (i = 0; i < 2; i++) {
1689 		dst->s.ios[i]		= cpu_to_le64(src->s.ios[i]);
1690 		dst->s.merges[i]	= cpu_to_le64(src->s.merges[i]);
1691 		dst->s.sectors[i]	= cpu_to_le64(src->s.sectors[i]);
1692 		dst->s.ticks[i]		= cpu_to_le64(src->s.ticks[i]);
1693 	}
1694 
1695 	dst->s.io_ticks		= cpu_to_le64(src->s.io_ticks);
1696 	dst->s.time_in_queue	= cpu_to_le64(src->s.time_in_queue);
1697 	dst->s.msec		= cpu_to_le64(src->s.msec);
1698 }
1699 
fio_server_send_du(void)1700 void fio_server_send_du(void)
1701 {
1702 	struct disk_util *du;
1703 	struct flist_head *entry;
1704 	struct cmd_du_pdu pdu;
1705 
1706 	dprint(FD_NET, "server: sending disk_util %d\n", !flist_empty(&disk_list));
1707 
1708 	memset(&pdu, 0, sizeof(pdu));
1709 
1710 	flist_for_each(entry, &disk_list) {
1711 		du = flist_entry(entry, struct disk_util, list);
1712 
1713 		convert_dus(&pdu.dus, &du->dus);
1714 		convert_agg(&pdu.agg, &du->agg);
1715 
1716 		fio_net_queue_cmd(FIO_NET_CMD_DU, &pdu, sizeof(pdu), NULL, SK_F_COPY);
1717 	}
1718 }
1719 
1720 #ifdef CONFIG_ZLIB
1721 
__fio_net_prep_tail(z_stream * stream,void * out_pdu,struct sk_entry ** last_entry,struct sk_entry * first)1722 static inline void __fio_net_prep_tail(z_stream *stream, void *out_pdu,
1723 					struct sk_entry **last_entry,
1724 					struct sk_entry *first)
1725 {
1726 	unsigned int this_len = FIO_SERVER_MAX_FRAGMENT_PDU - stream->avail_out;
1727 
1728 	*last_entry = fio_net_prep_cmd(FIO_NET_CMD_IOLOG, out_pdu, this_len,
1729 				 NULL, SK_F_VEC | SK_F_INLINE | SK_F_FREE);
1730 	if (*last_entry)
1731 		flist_add_tail(&(*last_entry)->list, &first->next);
1732 }
1733 
1734 /*
1735  * Deflates the next input given, creating as many new packets in the
1736  * linked list as necessary.
1737  */
__deflate_pdu_buffer(void * next_in,unsigned int next_sz,void ** out_pdu,struct sk_entry ** last_entry,z_stream * stream,struct sk_entry * first)1738 static int __deflate_pdu_buffer(void *next_in, unsigned int next_sz, void **out_pdu,
1739 				struct sk_entry **last_entry, z_stream *stream,
1740 				struct sk_entry *first)
1741 {
1742 	int ret;
1743 
1744 	stream->next_in = next_in;
1745 	stream->avail_in = next_sz;
1746 	do {
1747 		if (!stream->avail_out) {
1748 			__fio_net_prep_tail(stream, *out_pdu, last_entry, first);
1749 			if (*last_entry == NULL)
1750 				return 1;
1751 
1752 			*out_pdu = malloc(FIO_SERVER_MAX_FRAGMENT_PDU);
1753 
1754 			stream->avail_out = FIO_SERVER_MAX_FRAGMENT_PDU;
1755 			stream->next_out = *out_pdu;
1756 		}
1757 
1758 		ret = deflate(stream, Z_BLOCK);
1759 
1760 		if (ret < 0) {
1761 			free(*out_pdu);
1762 			return 1;
1763 		}
1764 	} while (stream->avail_in);
1765 
1766 	return 0;
1767 }
1768 
__fio_append_iolog_gz_hist(struct sk_entry * first,struct io_log * log,struct io_logs * cur_log,z_stream * stream)1769 static int __fio_append_iolog_gz_hist(struct sk_entry *first, struct io_log *log,
1770 				      struct io_logs *cur_log, z_stream *stream)
1771 {
1772 	struct sk_entry *entry;
1773 	void *out_pdu;
1774 	int ret, i, j;
1775 	int sample_sz = log_entry_sz(log);
1776 
1777 	out_pdu = malloc(FIO_SERVER_MAX_FRAGMENT_PDU);
1778 	stream->avail_out = FIO_SERVER_MAX_FRAGMENT_PDU;
1779 	stream->next_out = out_pdu;
1780 
1781 	for (i = 0; i < cur_log->nr_samples; i++) {
1782 		struct io_sample *s;
1783 		struct io_u_plat_entry *cur_plat_entry, *prev_plat_entry;
1784 		uint64_t *cur_plat, *prev_plat;
1785 
1786 		s = get_sample(log, cur_log, i);
1787 		ret = __deflate_pdu_buffer(s, sample_sz, &out_pdu, &entry, stream, first);
1788 		if (ret)
1789 			return ret;
1790 
1791 		/* Do the subtraction on server side so that client doesn't have to
1792 		 * reconstruct our linked list from packets.
1793 		 */
1794 		cur_plat_entry  = s->data.plat_entry;
1795 		prev_plat_entry = flist_first_entry(&cur_plat_entry->list, struct io_u_plat_entry, list);
1796 		cur_plat  = cur_plat_entry->io_u_plat;
1797 		prev_plat = prev_plat_entry->io_u_plat;
1798 
1799 		for (j = 0; j < FIO_IO_U_PLAT_NR; j++) {
1800 			cur_plat[j] -= prev_plat[j];
1801 		}
1802 
1803 		flist_del(&prev_plat_entry->list);
1804 		free(prev_plat_entry);
1805 
1806 		ret = __deflate_pdu_buffer(cur_plat_entry, sizeof(*cur_plat_entry),
1807 					   &out_pdu, &entry, stream, first);
1808 
1809 		if (ret)
1810 			return ret;
1811 	}
1812 
1813 	__fio_net_prep_tail(stream, out_pdu, &entry, first);
1814 	return entry == NULL;
1815 }
1816 
__fio_append_iolog_gz(struct sk_entry * first,struct io_log * log,struct io_logs * cur_log,z_stream * stream)1817 static int __fio_append_iolog_gz(struct sk_entry *first, struct io_log *log,
1818 				 struct io_logs *cur_log, z_stream *stream)
1819 {
1820 	unsigned int this_len;
1821 	void *out_pdu;
1822 	int ret;
1823 
1824 	if (log->log_type == IO_LOG_TYPE_HIST)
1825 		return __fio_append_iolog_gz_hist(first, log, cur_log, stream);
1826 
1827 	stream->next_in = (void *) cur_log->log;
1828 	stream->avail_in = cur_log->nr_samples * log_entry_sz(log);
1829 
1830 	do {
1831 		struct sk_entry *entry;
1832 
1833 		/*
1834 		 * Dirty - since the log is potentially huge, compress it into
1835 		 * FIO_SERVER_MAX_FRAGMENT_PDU chunks and let the receiving
1836 		 * side defragment it.
1837 		 */
1838 		out_pdu = malloc(FIO_SERVER_MAX_FRAGMENT_PDU);
1839 
1840 		stream->avail_out = FIO_SERVER_MAX_FRAGMENT_PDU;
1841 		stream->next_out = out_pdu;
1842 		ret = deflate(stream, Z_BLOCK);
1843 		/* may be Z_OK, or Z_STREAM_END */
1844 		if (ret < 0) {
1845 			free(out_pdu);
1846 			return 1;
1847 		}
1848 
1849 		this_len = FIO_SERVER_MAX_FRAGMENT_PDU - stream->avail_out;
1850 
1851 		entry = fio_net_prep_cmd(FIO_NET_CMD_IOLOG, out_pdu, this_len,
1852 					 NULL, SK_F_VEC | SK_F_INLINE | SK_F_FREE);
1853 		if (!entry) {
1854 			free(out_pdu);
1855 			return 1;
1856 		}
1857 		flist_add_tail(&entry->list, &first->next);
1858 	} while (stream->avail_in);
1859 
1860 	return 0;
1861 }
1862 
fio_append_iolog_gz(struct sk_entry * first,struct io_log * log)1863 static int fio_append_iolog_gz(struct sk_entry *first, struct io_log *log)
1864 {
1865 	z_stream stream = {
1866 		.zalloc	= Z_NULL,
1867 		.zfree	= Z_NULL,
1868 		.opaque	= Z_NULL,
1869 	};
1870 	int ret = 0;
1871 
1872 	if (deflateInit(&stream, Z_DEFAULT_COMPRESSION) != Z_OK)
1873 		return 1;
1874 
1875 	while (!flist_empty(&log->io_logs)) {
1876 		struct io_logs *cur_log;
1877 
1878 		cur_log = flist_first_entry(&log->io_logs, struct io_logs, list);
1879 		flist_del_init(&cur_log->list);
1880 
1881 		ret = __fio_append_iolog_gz(first, log, cur_log, &stream);
1882 		if (ret)
1883 			break;
1884 	}
1885 
1886 	ret = deflate(&stream, Z_FINISH);
1887 
1888 	while (ret != Z_STREAM_END) {
1889 		struct sk_entry *entry;
1890 		unsigned int this_len;
1891 		void *out_pdu;
1892 
1893 		out_pdu = malloc(FIO_SERVER_MAX_FRAGMENT_PDU);
1894 		stream.avail_out = FIO_SERVER_MAX_FRAGMENT_PDU;
1895 		stream.next_out = out_pdu;
1896 
1897 		ret = deflate(&stream, Z_FINISH);
1898 		/* may be Z_OK, or Z_STREAM_END */
1899 		if (ret < 0) {
1900 			free(out_pdu);
1901 			break;
1902 		}
1903 
1904 		this_len = FIO_SERVER_MAX_FRAGMENT_PDU - stream.avail_out;
1905 
1906 		entry = fio_net_prep_cmd(FIO_NET_CMD_IOLOG, out_pdu, this_len,
1907 					 NULL, SK_F_VEC | SK_F_INLINE | SK_F_FREE);
1908 		if (!entry) {
1909 			free(out_pdu);
1910 			break;
1911 		}
1912 		flist_add_tail(&entry->list, &first->next);
1913 	}
1914 
1915 	ret = deflateEnd(&stream);
1916 	if (ret == Z_OK)
1917 		return 0;
1918 
1919 	return 1;
1920 }
1921 #else
fio_append_iolog_gz(struct sk_entry * first,struct io_log * log)1922 static int fio_append_iolog_gz(struct sk_entry *first, struct io_log *log)
1923 {
1924 	return 1;
1925 }
1926 #endif
1927 
fio_append_gz_chunks(struct sk_entry * first,struct io_log * log)1928 static int fio_append_gz_chunks(struct sk_entry *first, struct io_log *log)
1929 {
1930 	struct sk_entry *entry;
1931 	struct flist_head *node;
1932 	int ret = 0;
1933 
1934 	pthread_mutex_lock(&log->chunk_lock);
1935 	flist_for_each(node, &log->chunk_list) {
1936 		struct iolog_compress *c;
1937 
1938 		c = flist_entry(node, struct iolog_compress, list);
1939 		entry = fio_net_prep_cmd(FIO_NET_CMD_IOLOG, c->buf, c->len,
1940 						NULL, SK_F_VEC | SK_F_INLINE);
1941 		if (!entry) {
1942 			ret = 1;
1943 			break;
1944 		}
1945 		flist_add_tail(&entry->list, &first->next);
1946 	}
1947 	pthread_mutex_unlock(&log->chunk_lock);
1948 	return ret;
1949 }
1950 
fio_append_text_log(struct sk_entry * first,struct io_log * log)1951 static int fio_append_text_log(struct sk_entry *first, struct io_log *log)
1952 {
1953 	struct sk_entry *entry;
1954 	int ret = 0;
1955 
1956 	while (!flist_empty(&log->io_logs)) {
1957 		struct io_logs *cur_log;
1958 		size_t size;
1959 
1960 		cur_log = flist_first_entry(&log->io_logs, struct io_logs, list);
1961 		flist_del_init(&cur_log->list);
1962 
1963 		size = cur_log->nr_samples * log_entry_sz(log);
1964 
1965 		entry = fio_net_prep_cmd(FIO_NET_CMD_IOLOG, cur_log->log, size,
1966 						NULL, SK_F_VEC | SK_F_INLINE);
1967 		if (!entry) {
1968 			ret = 1;
1969 			break;
1970 		}
1971 		flist_add_tail(&entry->list, &first->next);
1972 	}
1973 
1974 	return ret;
1975 }
1976 
fio_send_iolog(struct thread_data * td,struct io_log * log,const char * name)1977 int fio_send_iolog(struct thread_data *td, struct io_log *log, const char *name)
1978 {
1979 	struct cmd_iolog_pdu pdu = {
1980 		.nr_samples		= cpu_to_le64(iolog_nr_samples(log)),
1981 		.thread_number		= cpu_to_le32(td->thread_number),
1982 		.log_type		= cpu_to_le32(log->log_type),
1983 		.log_hist_coarseness	= cpu_to_le32(log->hist_coarseness),
1984 	};
1985 	struct sk_entry *first;
1986 	struct flist_head *entry;
1987 	int ret = 0;
1988 
1989 	if (!flist_empty(&log->chunk_list))
1990 		pdu.compressed = __cpu_to_le32(STORE_COMPRESSED);
1991 	else if (use_zlib)
1992 		pdu.compressed = __cpu_to_le32(XMIT_COMPRESSED);
1993 	else
1994 		pdu.compressed = 0;
1995 
1996 	snprintf((char *) pdu.name, sizeof(pdu.name), "%s", name);
1997 
1998 	/*
1999 	 * We can't do this for a pre-compressed log, but for that case,
2000 	 * log->nr_samples is zero anyway.
2001 	 */
2002 	flist_for_each(entry, &log->io_logs) {
2003 		struct io_logs *cur_log;
2004 		int i;
2005 
2006 		cur_log = flist_entry(entry, struct io_logs, list);
2007 
2008 		for (i = 0; i < cur_log->nr_samples; i++) {
2009 			struct io_sample *s = get_sample(log, cur_log, i);
2010 
2011 			s->time		= cpu_to_le64(s->time);
2012 			s->data.val	= cpu_to_le64(s->data.val);
2013 			s->__ddir	= __cpu_to_le32(s->__ddir);
2014 			s->bs		= cpu_to_le64(s->bs);
2015 
2016 			if (log->log_offset) {
2017 				struct io_sample_offset *so = (void *) s;
2018 
2019 				so->offset = cpu_to_le64(so->offset);
2020 			}
2021 		}
2022 	}
2023 
2024 	/*
2025 	 * Assemble header entry first
2026 	 */
2027 	first = fio_net_prep_cmd(FIO_NET_CMD_IOLOG, &pdu, sizeof(pdu), NULL, SK_F_VEC | SK_F_INLINE | SK_F_COPY);
2028 	if (!first)
2029 		return 1;
2030 
2031 	/*
2032 	 * Now append actual log entries. If log compression was enabled on
2033 	 * the job, just send out the compressed chunks directly. If we
2034 	 * have a plain log, compress if we can, then send. Otherwise, send
2035 	 * the plain text output.
2036 	 */
2037 	if (!flist_empty(&log->chunk_list))
2038 		ret = fio_append_gz_chunks(first, log);
2039 	else if (use_zlib)
2040 		ret = fio_append_iolog_gz(first, log);
2041 	else
2042 		ret = fio_append_text_log(first, log);
2043 
2044 	fio_net_queue_entry(first);
2045 	return ret;
2046 }
2047 
fio_server_send_add_job(struct thread_data * td)2048 void fio_server_send_add_job(struct thread_data *td)
2049 {
2050 	struct cmd_add_job_pdu pdu = {
2051 		.thread_number = cpu_to_le32(td->thread_number),
2052 		.groupid = cpu_to_le32(td->groupid),
2053 	};
2054 
2055 	convert_thread_options_to_net(&pdu.top, &td->o);
2056 
2057 	fio_net_queue_cmd(FIO_NET_CMD_ADD_JOB, &pdu, sizeof(pdu), NULL,
2058 				SK_F_COPY);
2059 }
2060 
fio_server_send_start(struct thread_data * td)2061 void fio_server_send_start(struct thread_data *td)
2062 {
2063 	struct sk_out *sk_out = pthread_getspecific(sk_out_key);
2064 
2065 	assert(sk_out->sk != -1);
2066 
2067 	fio_net_queue_cmd(FIO_NET_CMD_SERVER_START, NULL, 0, NULL, SK_F_SIMPLE);
2068 }
2069 
fio_server_get_verify_state(const char * name,int threadnumber,void ** datap)2070 int fio_server_get_verify_state(const char *name, int threadnumber,
2071 				void **datap)
2072 {
2073 	struct thread_io_list *s;
2074 	struct cmd_sendfile out;
2075 	struct cmd_reply *rep;
2076 	uint64_t tag;
2077 	void *data;
2078 	int ret;
2079 
2080 	dprint(FD_NET, "server: request verify state\n");
2081 
2082 	rep = smalloc(sizeof(*rep));
2083 	if (!rep)
2084 		return ENOMEM;
2085 
2086 	__fio_sem_init(&rep->lock, FIO_SEM_LOCKED);
2087 	rep->data = NULL;
2088 	rep->error = 0;
2089 
2090 	verify_state_gen_name((char *) out.path, sizeof(out.path), name, me,
2091 				threadnumber);
2092 	tag = (uint64_t) (uintptr_t) rep;
2093 	fio_net_queue_cmd(FIO_NET_CMD_SENDFILE, &out, sizeof(out), &tag,
2094 				SK_F_COPY);
2095 
2096 	/*
2097 	 * Wait for the backend to receive the reply
2098 	 */
2099 	if (fio_sem_down_timeout(&rep->lock, 10000)) {
2100 		log_err("fio: timed out waiting for reply\n");
2101 		ret = ETIMEDOUT;
2102 		goto fail;
2103 	}
2104 
2105 	if (rep->error) {
2106 		log_err("fio: failure on receiving state file %s: %s\n",
2107 				out.path, strerror(rep->error));
2108 		ret = rep->error;
2109 fail:
2110 		*datap = NULL;
2111 		sfree(rep);
2112 		fio_net_queue_quit();
2113 		return ret;
2114 	}
2115 
2116 	/*
2117 	 * The format is verify_state_hdr, then thread_io_list. Verify
2118 	 * the header, and the thread_io_list checksum
2119 	 */
2120 	s = rep->data + sizeof(struct verify_state_hdr);
2121 	if (verify_state_hdr(rep->data, s)) {
2122 		ret = EILSEQ;
2123 		goto fail;
2124 	}
2125 
2126 	/*
2127 	 * Don't need the header from now, copy just the thread_io_list
2128 	 */
2129 	ret = 0;
2130 	rep->size -= sizeof(struct verify_state_hdr);
2131 	data = malloc(rep->size);
2132 	memcpy(data, s, rep->size);
2133 	*datap = data;
2134 
2135 	sfree(rep->data);
2136 	__fio_sem_remove(&rep->lock);
2137 	sfree(rep);
2138 	return ret;
2139 }
2140 
fio_init_server_ip(void)2141 static int fio_init_server_ip(void)
2142 {
2143 	struct sockaddr *addr;
2144 	socklen_t socklen;
2145 	char buf[80];
2146 	const char *str;
2147 	int sk, opt;
2148 
2149 	if (use_ipv6)
2150 		sk = socket(AF_INET6, SOCK_STREAM, 0);
2151 	else
2152 		sk = socket(AF_INET, SOCK_STREAM, 0);
2153 
2154 	if (sk < 0) {
2155 		log_err("fio: socket: %s\n", strerror(errno));
2156 		return -1;
2157 	}
2158 
2159 	opt = 1;
2160 	if (setsockopt(sk, SOL_SOCKET, SO_REUSEADDR, (void *)&opt, sizeof(opt)) < 0) {
2161 		log_err("fio: setsockopt(REUSEADDR): %s\n", strerror(errno));
2162 		close(sk);
2163 		return -1;
2164 	}
2165 #ifdef SO_REUSEPORT
2166 	/*
2167 	 * Not fatal if fails, so just ignore it if that happens
2168 	 */
2169 	if (setsockopt(sk, SOL_SOCKET, SO_REUSEPORT, &opt, sizeof(opt))) {
2170 	}
2171 #endif
2172 
2173 	if (use_ipv6) {
2174 		void *src = &saddr_in6.sin6_addr;
2175 
2176 		addr = (struct sockaddr *) &saddr_in6;
2177 		socklen = sizeof(saddr_in6);
2178 		saddr_in6.sin6_family = AF_INET6;
2179 		str = inet_ntop(AF_INET6, src, buf, sizeof(buf));
2180 	} else {
2181 		void *src = &saddr_in.sin_addr;
2182 
2183 		addr = (struct sockaddr *) &saddr_in;
2184 		socklen = sizeof(saddr_in);
2185 		saddr_in.sin_family = AF_INET;
2186 		str = inet_ntop(AF_INET, src, buf, sizeof(buf));
2187 	}
2188 
2189 	if (bind(sk, addr, socklen) < 0) {
2190 		log_err("fio: bind: %s\n", strerror(errno));
2191 		log_info("fio: failed with IPv%c %s\n", use_ipv6 ? '6' : '4', str);
2192 		close(sk);
2193 		return -1;
2194 	}
2195 
2196 	return sk;
2197 }
2198 
fio_init_server_sock(void)2199 static int fio_init_server_sock(void)
2200 {
2201 	struct sockaddr_un addr;
2202 	socklen_t len;
2203 	mode_t mode;
2204 	int sk;
2205 
2206 	sk = socket(AF_UNIX, SOCK_STREAM, 0);
2207 	if (sk < 0) {
2208 		log_err("fio: socket: %s\n", strerror(errno));
2209 		return -1;
2210 	}
2211 
2212 	mode = umask(000);
2213 
2214 	addr.sun_family = AF_UNIX;
2215 	snprintf(addr.sun_path, sizeof(addr.sun_path), "%s", bind_sock);
2216 
2217 	len = sizeof(addr.sun_family) + strlen(bind_sock) + 1;
2218 
2219 	if (bind(sk, (struct sockaddr *) &addr, len) < 0) {
2220 		log_err("fio: bind: %s\n", strerror(errno));
2221 		close(sk);
2222 		return -1;
2223 	}
2224 
2225 	umask(mode);
2226 	return sk;
2227 }
2228 
fio_init_server_connection(void)2229 static int fio_init_server_connection(void)
2230 {
2231 	char bind_str[128];
2232 	int sk;
2233 
2234 	dprint(FD_NET, "starting server\n");
2235 
2236 	if (!bind_sock)
2237 		sk = fio_init_server_ip();
2238 	else
2239 		sk = fio_init_server_sock();
2240 
2241 	if (sk < 0)
2242 		return sk;
2243 
2244 	memset(bind_str, 0, sizeof(bind_str));
2245 
2246 	if (!bind_sock) {
2247 		char *p, port[16];
2248 		void *src;
2249 		int af;
2250 
2251 		if (use_ipv6) {
2252 			af = AF_INET6;
2253 			src = &saddr_in6.sin6_addr;
2254 		} else {
2255 			af = AF_INET;
2256 			src = &saddr_in.sin_addr;
2257 		}
2258 
2259 		p = (char *) inet_ntop(af, src, bind_str, sizeof(bind_str));
2260 
2261 		sprintf(port, ",%u", fio_net_port);
2262 		if (p)
2263 			strcat(p, port);
2264 		else
2265 			snprintf(bind_str, sizeof(bind_str), "%s", port);
2266 	} else
2267 		snprintf(bind_str, sizeof(bind_str), "%s", bind_sock);
2268 
2269 	log_info("fio: server listening on %s\n", bind_str);
2270 
2271 	if (listen(sk, 4) < 0) {
2272 		log_err("fio: listen: %s\n", strerror(errno));
2273 		close(sk);
2274 		return -1;
2275 	}
2276 
2277 	return sk;
2278 }
2279 
fio_server_parse_host(const char * host,int ipv6,struct in_addr * inp,struct in6_addr * inp6)2280 int fio_server_parse_host(const char *host, int ipv6, struct in_addr *inp,
2281 			  struct in6_addr *inp6)
2282 
2283 {
2284 	int ret = 0;
2285 
2286 	if (ipv6)
2287 		ret = inet_pton(AF_INET6, host, inp6);
2288 	else
2289 		ret = inet_pton(AF_INET, host, inp);
2290 
2291 	if (ret != 1) {
2292 		struct addrinfo *res, hints = {
2293 			.ai_family = ipv6 ? AF_INET6 : AF_INET,
2294 			.ai_socktype = SOCK_STREAM,
2295 		};
2296 
2297 		ret = getaddrinfo(host, NULL, &hints, &res);
2298 		if (ret) {
2299 			log_err("fio: failed to resolve <%s> (%s)\n", host,
2300 					gai_strerror(ret));
2301 			return 1;
2302 		}
2303 
2304 		if (ipv6)
2305 			memcpy(inp6, &((struct sockaddr_in6 *) res->ai_addr)->sin6_addr, sizeof(*inp6));
2306 		else
2307 			memcpy(inp, &((struct sockaddr_in *) res->ai_addr)->sin_addr, sizeof(*inp));
2308 
2309 		ret = 1;
2310 		freeaddrinfo(res);
2311 	}
2312 
2313 	return !(ret == 1);
2314 }
2315 
2316 /*
2317  * Parse a host/ip/port string. Reads from 'str'.
2318  *
2319  * Outputs:
2320  *
2321  * For IPv4:
2322  *	*ptr is the host, *port is the port, inp is the destination.
2323  * For IPv6:
2324  *	*ptr is the host, *port is the port, inp6 is the dest, and *ipv6 is 1.
2325  * For local domain sockets:
2326  *	*ptr is the filename, *is_sock is 1.
2327  */
fio_server_parse_string(const char * str,char ** ptr,bool * is_sock,int * port,struct in_addr * inp,struct in6_addr * inp6,int * ipv6)2328 int fio_server_parse_string(const char *str, char **ptr, bool *is_sock,
2329 			    int *port, struct in_addr *inp,
2330 			    struct in6_addr *inp6, int *ipv6)
2331 {
2332 	const char *host = str;
2333 	char *portp;
2334 	int lport = 0;
2335 
2336 	*ptr = NULL;
2337 	*is_sock = false;
2338 	*port = fio_net_port;
2339 	*ipv6 = 0;
2340 
2341 	if (!strncmp(str, "sock:", 5)) {
2342 		*ptr = strdup(str + 5);
2343 		*is_sock = true;
2344 
2345 		return 0;
2346 	}
2347 
2348 	/*
2349 	 * Is it ip:<ip or host>:port
2350 	 */
2351 	if (!strncmp(host, "ip:", 3))
2352 		host += 3;
2353 	else if (!strncmp(host, "ip4:", 4))
2354 		host += 4;
2355 	else if (!strncmp(host, "ip6:", 4)) {
2356 		host += 4;
2357 		*ipv6 = 1;
2358 	} else if (host[0] == ':') {
2359 		/* String is :port */
2360 		host++;
2361 		lport = atoi(host);
2362 		if (!lport || lport > 65535) {
2363 			log_err("fio: bad server port %u\n", lport);
2364 			return 1;
2365 		}
2366 		/* no hostname given, we are done */
2367 		*port = lport;
2368 		return 0;
2369 	}
2370 
2371 	/*
2372 	 * If no port seen yet, check if there's a last ',' at the end
2373 	 */
2374 	if (!lport) {
2375 		portp = strchr(host, ',');
2376 		if (portp) {
2377 			*portp = '\0';
2378 			portp++;
2379 			lport = atoi(portp);
2380 			if (!lport || lport > 65535) {
2381 				log_err("fio: bad server port %u\n", lport);
2382 				return 1;
2383 			}
2384 		}
2385 	}
2386 
2387 	if (lport)
2388 		*port = lport;
2389 
2390 	if (!strlen(host))
2391 		return 0;
2392 
2393 	*ptr = strdup(host);
2394 
2395 	if (fio_server_parse_host(*ptr, *ipv6, inp, inp6)) {
2396 		free(*ptr);
2397 		*ptr = NULL;
2398 		return 1;
2399 	}
2400 
2401 	if (*port == 0)
2402 		*port = fio_net_port;
2403 
2404 	return 0;
2405 }
2406 
2407 /*
2408  * Server arg should be one of:
2409  *
2410  * sock:/path/to/socket
2411  *   ip:1.2.3.4
2412  *      1.2.3.4
2413  *
2414  * Where sock uses unix domain sockets, and ip binds the server to
2415  * a specific interface. If no arguments are given to the server, it
2416  * uses IP and binds to 0.0.0.0.
2417  *
2418  */
fio_handle_server_arg(void)2419 static int fio_handle_server_arg(void)
2420 {
2421 	int port = fio_net_port;
2422 	bool is_sock;
2423 	int ret = 0;
2424 
2425 	saddr_in.sin_addr.s_addr = htonl(INADDR_ANY);
2426 
2427 	if (!fio_server_arg)
2428 		goto out;
2429 
2430 	ret = fio_server_parse_string(fio_server_arg, &bind_sock, &is_sock,
2431 					&port, &saddr_in.sin_addr,
2432 					&saddr_in6.sin6_addr, &use_ipv6);
2433 
2434 	if (!is_sock && bind_sock) {
2435 		free(bind_sock);
2436 		bind_sock = NULL;
2437 	}
2438 
2439 out:
2440 	fio_net_port = port;
2441 	saddr_in.sin_port = htons(port);
2442 	saddr_in6.sin6_port = htons(port);
2443 	return ret;
2444 }
2445 
sig_int(int sig)2446 static void sig_int(int sig)
2447 {
2448 	if (bind_sock)
2449 		unlink(bind_sock);
2450 }
2451 
set_sig_handlers(void)2452 static void set_sig_handlers(void)
2453 {
2454 	struct sigaction act = {
2455 		.sa_handler = sig_int,
2456 		.sa_flags = SA_RESTART,
2457 	};
2458 
2459 	sigaction(SIGINT, &act, NULL);
2460 
2461 	/* Windows uses SIGBREAK as a quit signal from other applications */
2462 #ifdef WIN32
2463 	sigaction(SIGBREAK, &act, NULL);
2464 #endif
2465 }
2466 
fio_server_destroy_sk_key(void)2467 void fio_server_destroy_sk_key(void)
2468 {
2469 	pthread_key_delete(sk_out_key);
2470 }
2471 
fio_server_create_sk_key(void)2472 int fio_server_create_sk_key(void)
2473 {
2474 	if (pthread_key_create(&sk_out_key, NULL)) {
2475 		log_err("fio: can't create sk_out backend key\n");
2476 		return 1;
2477 	}
2478 
2479 	pthread_setspecific(sk_out_key, NULL);
2480 	return 0;
2481 }
2482 
fio_server(void)2483 static int fio_server(void)
2484 {
2485 	int sk, ret;
2486 
2487 	dprint(FD_NET, "starting server\n");
2488 
2489 	if (fio_handle_server_arg())
2490 		return -1;
2491 
2492 	sk = fio_init_server_connection();
2493 	if (sk < 0)
2494 		return -1;
2495 
2496 	set_sig_handlers();
2497 
2498 	ret = accept_loop(sk);
2499 
2500 	close(sk);
2501 
2502 	if (fio_server_arg) {
2503 		free(fio_server_arg);
2504 		fio_server_arg = NULL;
2505 	}
2506 	if (bind_sock)
2507 		free(bind_sock);
2508 
2509 	return ret;
2510 }
2511 
fio_server_got_signal(int signal)2512 void fio_server_got_signal(int signal)
2513 {
2514 	struct sk_out *sk_out = pthread_getspecific(sk_out_key);
2515 
2516 	assert(sk_out);
2517 
2518 	if (signal == SIGPIPE)
2519 		sk_out->sk = -1;
2520 	else {
2521 		log_info("\nfio: terminating on signal %d\n", signal);
2522 		exit_backend = true;
2523 	}
2524 }
2525 
check_existing_pidfile(const char * pidfile)2526 static int check_existing_pidfile(const char *pidfile)
2527 {
2528 	struct stat sb;
2529 	char buf[16];
2530 	pid_t pid;
2531 	FILE *f;
2532 
2533 	if (stat(pidfile, &sb))
2534 		return 0;
2535 
2536 	f = fopen(pidfile, "r");
2537 	if (!f)
2538 		return 0;
2539 
2540 	if (fread(buf, sb.st_size, 1, f) <= 0) {
2541 		fclose(f);
2542 		return 1;
2543 	}
2544 	fclose(f);
2545 
2546 	pid = atoi(buf);
2547 	if (kill(pid, SIGCONT) < 0)
2548 		return errno != ESRCH;
2549 
2550 	return 1;
2551 }
2552 
write_pid(pid_t pid,const char * pidfile)2553 static int write_pid(pid_t pid, const char *pidfile)
2554 {
2555 	FILE *fpid;
2556 
2557 	fpid = fopen(pidfile, "w");
2558 	if (!fpid) {
2559 		log_err("fio: failed opening pid file %s\n", pidfile);
2560 		return 1;
2561 	}
2562 
2563 	fprintf(fpid, "%u\n", (unsigned int) pid);
2564 	fclose(fpid);
2565 	return 0;
2566 }
2567 
2568 /*
2569  * If pidfile is specified, background us.
2570  */
fio_start_server(char * pidfile)2571 int fio_start_server(char *pidfile)
2572 {
2573 	FILE *file;
2574 	pid_t pid;
2575 	int ret;
2576 
2577 #if defined(WIN32)
2578 	WSADATA wsd;
2579 	WSAStartup(MAKEWORD(2, 2), &wsd);
2580 #endif
2581 
2582 	if (!pidfile)
2583 		return fio_server();
2584 
2585 	if (check_existing_pidfile(pidfile)) {
2586 		log_err("fio: pidfile %s exists and server appears alive\n",
2587 								pidfile);
2588 		free(pidfile);
2589 		return -1;
2590 	}
2591 
2592 	pid = fork();
2593 	if (pid < 0) {
2594 		log_err("fio: failed server fork: %s\n", strerror(errno));
2595 		free(pidfile);
2596 		return -1;
2597 	} else if (pid) {
2598 		ret = write_pid(pid, pidfile);
2599 		free(pidfile);
2600 		_exit(ret);
2601 	}
2602 
2603 	setsid();
2604 	openlog("fio", LOG_NDELAY|LOG_NOWAIT|LOG_PID, LOG_USER);
2605 	log_syslog = true;
2606 
2607 	file = freopen("/dev/null", "r", stdin);
2608 	if (!file)
2609 		perror("freopen");
2610 
2611 	file = freopen("/dev/null", "w", stdout);
2612 	if (!file)
2613 		perror("freopen");
2614 
2615 	file = freopen("/dev/null", "w", stderr);
2616 	if (!file)
2617 		perror("freopen");
2618 
2619 	f_out = NULL;
2620 	f_err = NULL;
2621 
2622 	ret = fio_server();
2623 
2624 	fclose(stdin);
2625 	fclose(stdout);
2626 	fclose(stderr);
2627 
2628 	closelog();
2629 	unlink(pidfile);
2630 	free(pidfile);
2631 	return ret;
2632 }
2633 
fio_server_set_arg(const char * arg)2634 void fio_server_set_arg(const char *arg)
2635 {
2636 	fio_server_arg = strdup(arg);
2637 }
2638