xref: /spdk/module/sock/uring/uring.c (revision b3bec07939ebe2ea2e0c43931705d32aa9e06719)
1 /*   SPDX-License-Identifier: BSD-3-Clause
2  *   Copyright (C) 2019 Intel Corporation.
3  *   All rights reserved.
4  */
5 
6 #include "spdk/stdinc.h"
7 #include "spdk/config.h"
8 
9 #include <linux/errqueue.h>
10 #include <sys/epoll.h>
11 #include <liburing.h>
12 
13 #include "spdk/barrier.h"
14 #include "spdk/env.h"
15 #include "spdk/log.h"
16 #include "spdk/pipe.h"
17 #include "spdk/sock.h"
18 #include "spdk/string.h"
19 #include "spdk/util.h"
20 
21 #include "spdk_internal/sock.h"
22 #include "spdk_internal/assert.h"
23 #include "../sock_kernel.h"
24 
25 #define MAX_TMPBUF 1024
26 #define PORTNUMLEN 32
27 #define SPDK_SOCK_GROUP_QUEUE_DEPTH 4096
28 #define SPDK_SOCK_CMG_INFO_SIZE (sizeof(struct cmsghdr) + sizeof(struct sock_extended_err))
29 
30 enum uring_task_type {
31 	URING_TASK_READ = 0,
32 	URING_TASK_ERRQUEUE,
33 	URING_TASK_WRITE,
34 	URING_TASK_CANCEL,
35 };
36 
37 #if defined(SO_ZEROCOPY) && defined(MSG_ZEROCOPY)
38 #define SPDK_ZEROCOPY
39 #endif
40 
41 /* We don't know how big the buffers that the user posts will be, but this
42  * is the maximum we'll ever allow it to receive in a single command.
43  * If the user buffers are smaller, it will just receive less. */
44 #define URING_MAX_RECV_SIZE (128 * 1024)
45 
46 /* We don't know how many buffers the user will post, but this is the
47  * maximum number we'll take from the pool to post per group. */
48 #define URING_BUF_POOL_SIZE 128
49 
50 /* We use 1 just so it's not zero and we can validate it's right. */
51 #define URING_BUF_GROUP_ID 1
52 
53 enum spdk_uring_sock_task_status {
54 	SPDK_URING_SOCK_TASK_NOT_IN_USE = 0,
55 	SPDK_URING_SOCK_TASK_IN_PROCESS,
56 };
57 
58 struct spdk_uring_task {
59 	enum spdk_uring_sock_task_status	status;
60 	enum uring_task_type		type;
61 	struct spdk_uring_sock			*sock;
62 	struct msghdr				msg;
63 	struct iovec				iovs[IOV_BATCH_SIZE];
64 	int					iov_cnt;
65 	struct spdk_sock_request		*last_req;
66 	bool					is_zcopy;
67 	STAILQ_ENTRY(spdk_uring_task)		link;
68 };
69 
70 struct spdk_uring_sock {
71 	struct spdk_sock			base;
72 	int					fd;
73 	uint32_t				sendmsg_idx;
74 	struct spdk_uring_sock_group_impl	*group;
75 	STAILQ_HEAD(, spdk_uring_buf_tracker)	recv_stream;
76 	size_t					recv_offset;
77 	struct spdk_uring_task			write_task;
78 	struct spdk_uring_task			errqueue_task;
79 	struct spdk_uring_task			read_task;
80 	struct spdk_uring_task			cancel_task;
81 	struct spdk_pipe			*recv_pipe;
82 	void					*recv_buf;
83 	int					recv_buf_sz;
84 	bool					zcopy;
85 	bool					pending_recv;
86 	bool					pending_group_remove;
87 	int					zcopy_send_flags;
88 	int					connection_status;
89 	int					placement_id;
90 	uint8_t					buf[SPDK_SOCK_CMG_INFO_SIZE];
91 	TAILQ_ENTRY(spdk_uring_sock)		link;
92 };
93 
94 TAILQ_HEAD(pending_recv_list, spdk_uring_sock);
95 
96 struct spdk_uring_buf_tracker {
97 	void					*buf;
98 	size_t					buflen;
99 	size_t					len;
100 	void					*ctx;
101 	int					id;
102 	STAILQ_ENTRY(spdk_uring_buf_tracker)	link;
103 };
104 
105 struct spdk_uring_sock_group_impl {
106 	struct spdk_sock_group_impl		base;
107 	struct io_uring				uring;
108 	uint32_t				io_inflight;
109 	uint32_t				io_queued;
110 	uint32_t				io_avail;
111 	struct pending_recv_list		pending_recv;
112 
113 	struct io_uring_buf_ring		*buf_ring;
114 	uint32_t				buf_ring_count;
115 	struct spdk_uring_buf_tracker		*trackers;
116 	STAILQ_HEAD(, spdk_uring_buf_tracker)	free_trackers;
117 };
118 
119 static struct spdk_sock_impl_opts g_spdk_uring_sock_impl_opts = {
120 	.recv_buf_size = DEFAULT_SO_RCVBUF_SIZE,
121 	.send_buf_size = DEFAULT_SO_SNDBUF_SIZE,
122 	.enable_recv_pipe = true,
123 	.enable_quickack = false,
124 	.enable_placement_id = PLACEMENT_NONE,
125 	.enable_zerocopy_send_server = false,
126 	.enable_zerocopy_send_client = false,
127 	.zerocopy_threshold = 0,
128 	.tls_version = 0,
129 	.enable_ktls = false,
130 	.psk_key = NULL,
131 	.psk_identity = NULL
132 };
133 
134 static struct spdk_sock_map g_map = {
135 	.entries = STAILQ_HEAD_INITIALIZER(g_map.entries),
136 	.mtx = PTHREAD_MUTEX_INITIALIZER
137 };
138 
139 __attribute((destructor)) static void
140 uring_sock_map_cleanup(void)
141 {
142 	spdk_sock_map_cleanup(&g_map);
143 }
144 
145 #define SPDK_URING_SOCK_REQUEST_IOV(req) ((struct iovec *)((uint8_t *)req + sizeof(struct spdk_sock_request)))
146 
147 #define __uring_sock(sock) (struct spdk_uring_sock *)sock
148 #define __uring_group_impl(group) (struct spdk_uring_sock_group_impl *)group
149 
150 static void
151 uring_sock_copy_impl_opts(struct spdk_sock_impl_opts *dest, const struct spdk_sock_impl_opts *src,
152 			  size_t len)
153 {
154 #define FIELD_OK(field) \
155 	offsetof(struct spdk_sock_impl_opts, field) + sizeof(src->field) <= len
156 
157 #define SET_FIELD(field) \
158 	if (FIELD_OK(field)) { \
159 		dest->field = src->field; \
160 	}
161 
162 	SET_FIELD(recv_buf_size);
163 	SET_FIELD(send_buf_size);
164 	SET_FIELD(enable_recv_pipe);
165 	SET_FIELD(enable_quickack);
166 	SET_FIELD(enable_placement_id);
167 	SET_FIELD(enable_zerocopy_send_server);
168 	SET_FIELD(enable_zerocopy_send_client);
169 	SET_FIELD(zerocopy_threshold);
170 	SET_FIELD(tls_version);
171 	SET_FIELD(enable_ktls);
172 	SET_FIELD(psk_key);
173 	SET_FIELD(psk_identity);
174 
175 #undef SET_FIELD
176 #undef FIELD_OK
177 }
178 
179 static int
180 uring_sock_impl_get_opts(struct spdk_sock_impl_opts *opts, size_t *len)
181 {
182 	if (!opts || !len) {
183 		errno = EINVAL;
184 		return -1;
185 	}
186 
187 	assert(sizeof(*opts) >= *len);
188 	memset(opts, 0, *len);
189 
190 	uring_sock_copy_impl_opts(opts, &g_spdk_uring_sock_impl_opts, *len);
191 	*len = spdk_min(*len, sizeof(g_spdk_uring_sock_impl_opts));
192 
193 	return 0;
194 }
195 
196 static int
197 uring_sock_impl_set_opts(const struct spdk_sock_impl_opts *opts, size_t len)
198 {
199 	if (!opts) {
200 		errno = EINVAL;
201 		return -1;
202 	}
203 
204 	assert(sizeof(*opts) >= len);
205 	uring_sock_copy_impl_opts(&g_spdk_uring_sock_impl_opts, opts, len);
206 
207 	return 0;
208 }
209 
210 static void
211 uring_opts_get_impl_opts(const struct spdk_sock_opts *opts, struct spdk_sock_impl_opts *dest)
212 {
213 	/* Copy the default impl_opts first to cover cases when user's impl_opts is smaller */
214 	memcpy(dest, &g_spdk_uring_sock_impl_opts, sizeof(*dest));
215 
216 	if (opts->impl_opts != NULL) {
217 		assert(sizeof(*dest) >= opts->impl_opts_size);
218 		uring_sock_copy_impl_opts(dest, opts->impl_opts, opts->impl_opts_size);
219 	}
220 }
221 
222 static int
223 uring_sock_getaddr(struct spdk_sock *_sock, char *saddr, int slen, uint16_t *sport,
224 		   char *caddr, int clen, uint16_t *cport)
225 {
226 	struct spdk_uring_sock *sock = __uring_sock(_sock);
227 	struct sockaddr_storage sa;
228 	socklen_t salen;
229 	int rc;
230 
231 	assert(sock != NULL);
232 
233 	memset(&sa, 0, sizeof sa);
234 	salen = sizeof sa;
235 	rc = getsockname(sock->fd, (struct sockaddr *) &sa, &salen);
236 	if (rc != 0) {
237 		SPDK_ERRLOG("getsockname() failed (errno=%d)\n", errno);
238 		return -1;
239 	}
240 
241 	switch (sa.ss_family) {
242 	case AF_UNIX:
243 		/* Acceptable connection types that don't have IPs */
244 		return 0;
245 	case AF_INET:
246 	case AF_INET6:
247 		/* Code below will get IP addresses */
248 		break;
249 	default:
250 		/* Unsupported socket family */
251 		return -1;
252 	}
253 
254 	rc = get_addr_str((struct sockaddr *)&sa, saddr, slen);
255 	if (rc != 0) {
256 		SPDK_ERRLOG("getnameinfo() failed (errno=%d)\n", errno);
257 		return -1;
258 	}
259 
260 	if (sport) {
261 		if (sa.ss_family == AF_INET) {
262 			*sport = ntohs(((struct sockaddr_in *) &sa)->sin_port);
263 		} else if (sa.ss_family == AF_INET6) {
264 			*sport = ntohs(((struct sockaddr_in6 *) &sa)->sin6_port);
265 		}
266 	}
267 
268 	memset(&sa, 0, sizeof sa);
269 	salen = sizeof sa;
270 	rc = getpeername(sock->fd, (struct sockaddr *) &sa, &salen);
271 	if (rc != 0) {
272 		SPDK_ERRLOG("getpeername() failed (errno=%d)\n", errno);
273 		return -1;
274 	}
275 
276 	rc = get_addr_str((struct sockaddr *)&sa, caddr, clen);
277 	if (rc != 0) {
278 		SPDK_ERRLOG("getnameinfo() failed (errno=%d)\n", errno);
279 		return -1;
280 	}
281 
282 	if (cport) {
283 		if (sa.ss_family == AF_INET) {
284 			*cport = ntohs(((struct sockaddr_in *) &sa)->sin_port);
285 		} else if (sa.ss_family == AF_INET6) {
286 			*cport = ntohs(((struct sockaddr_in6 *) &sa)->sin6_port);
287 		}
288 	}
289 
290 	return 0;
291 }
292 
293 enum uring_sock_create_type {
294 	SPDK_SOCK_CREATE_LISTEN,
295 	SPDK_SOCK_CREATE_CONNECT,
296 };
297 
298 static int
299 uring_sock_alloc_pipe(struct spdk_uring_sock *sock, int sz)
300 {
301 	uint8_t *new_buf;
302 	struct spdk_pipe *new_pipe;
303 	struct iovec siov[2];
304 	struct iovec diov[2];
305 	int sbytes;
306 	ssize_t bytes;
307 	int rc;
308 
309 	if (sock->recv_buf_sz == sz) {
310 		return 0;
311 	}
312 
313 	/* If the new size is 0, just free the pipe */
314 	if (sz == 0) {
315 		spdk_pipe_destroy(sock->recv_pipe);
316 		free(sock->recv_buf);
317 		sock->recv_pipe = NULL;
318 		sock->recv_buf = NULL;
319 		return 0;
320 	} else if (sz < MIN_SOCK_PIPE_SIZE) {
321 		SPDK_ERRLOG("The size of the pipe must be larger than %d\n", MIN_SOCK_PIPE_SIZE);
322 		return -1;
323 	}
324 
325 	/* Round up to next 64 byte multiple */
326 	rc = posix_memalign((void **)&new_buf, 64, sz);
327 	if (rc != 0) {
328 		SPDK_ERRLOG("socket recv buf allocation failed\n");
329 		return -ENOMEM;
330 	}
331 	memset(new_buf, 0, sz);
332 
333 	new_pipe = spdk_pipe_create(new_buf, sz);
334 	if (new_pipe == NULL) {
335 		SPDK_ERRLOG("socket pipe allocation failed\n");
336 		free(new_buf);
337 		return -ENOMEM;
338 	}
339 
340 	if (sock->recv_pipe != NULL) {
341 		/* Pull all of the data out of the old pipe */
342 		sbytes = spdk_pipe_reader_get_buffer(sock->recv_pipe, sock->recv_buf_sz, siov);
343 		if (sbytes > sz) {
344 			/* Too much data to fit into the new pipe size */
345 			spdk_pipe_destroy(new_pipe);
346 			free(new_buf);
347 			return -EINVAL;
348 		}
349 
350 		sbytes = spdk_pipe_writer_get_buffer(new_pipe, sz, diov);
351 		assert(sbytes == sz);
352 
353 		bytes = spdk_iovcpy(siov, 2, diov, 2);
354 		spdk_pipe_writer_advance(new_pipe, bytes);
355 
356 		spdk_pipe_destroy(sock->recv_pipe);
357 		free(sock->recv_buf);
358 	}
359 
360 	sock->recv_buf_sz = sz;
361 	sock->recv_buf = new_buf;
362 	sock->recv_pipe = new_pipe;
363 
364 	return 0;
365 }
366 
367 static int
368 uring_sock_set_recvbuf(struct spdk_sock *_sock, int sz)
369 {
370 	struct spdk_uring_sock *sock = __uring_sock(_sock);
371 	int min_size;
372 	int rc;
373 
374 	assert(sock != NULL);
375 
376 	if (_sock->impl_opts.enable_recv_pipe) {
377 		rc = uring_sock_alloc_pipe(sock, sz);
378 		if (rc) {
379 			SPDK_ERRLOG("unable to allocate sufficient recvbuf with sz=%d on sock=%p\n", sz, _sock);
380 			return rc;
381 		}
382 	}
383 
384 	/* Set kernel buffer size to be at least MIN_SO_RCVBUF_SIZE and
385 	 * g_spdk_uring_sock_impl_opts.recv_buf_size. */
386 	min_size = spdk_max(MIN_SO_RCVBUF_SIZE, g_spdk_uring_sock_impl_opts.recv_buf_size);
387 
388 	if (sz < min_size) {
389 		sz = min_size;
390 	}
391 
392 	rc = setsockopt(sock->fd, SOL_SOCKET, SO_RCVBUF, &sz, sizeof(sz));
393 	if (rc < 0) {
394 		return rc;
395 	}
396 
397 	_sock->impl_opts.recv_buf_size = sz;
398 
399 	return 0;
400 }
401 
402 static int
403 uring_sock_set_sendbuf(struct spdk_sock *_sock, int sz)
404 {
405 	struct spdk_uring_sock *sock = __uring_sock(_sock);
406 	int min_size;
407 	int rc;
408 
409 	assert(sock != NULL);
410 
411 	/* Set kernel buffer size to be at least MIN_SO_SNDBUF_SIZE and
412 	 * g_spdk_uring_sock_impl_opts.seend_buf_size. */
413 	min_size = spdk_max(MIN_SO_SNDBUF_SIZE, g_spdk_uring_sock_impl_opts.send_buf_size);
414 
415 	if (sz < min_size) {
416 		sz = min_size;
417 	}
418 
419 	rc = setsockopt(sock->fd, SOL_SOCKET, SO_SNDBUF, &sz, sizeof(sz));
420 	if (rc < 0) {
421 		return rc;
422 	}
423 
424 	_sock->impl_opts.send_buf_size = sz;
425 
426 	return 0;
427 }
428 
429 static struct spdk_uring_sock *
430 uring_sock_alloc(int fd, struct spdk_sock_impl_opts *impl_opts, bool enable_zero_copy)
431 {
432 	struct spdk_uring_sock *sock;
433 #if defined(__linux__)
434 	int flag;
435 	int rc;
436 #endif
437 
438 	sock = calloc(1, sizeof(*sock));
439 	if (sock == NULL) {
440 		SPDK_ERRLOG("sock allocation failed\n");
441 		return NULL;
442 	}
443 
444 	sock->fd = fd;
445 	memcpy(&sock->base.impl_opts, impl_opts, sizeof(*impl_opts));
446 
447 	STAILQ_INIT(&sock->recv_stream);
448 
449 #if defined(__linux__)
450 	flag = 1;
451 
452 	if (sock->base.impl_opts.enable_quickack) {
453 		rc = setsockopt(sock->fd, IPPROTO_TCP, TCP_QUICKACK, &flag, sizeof(flag));
454 		if (rc != 0) {
455 			SPDK_ERRLOG("quickack was failed to set\n");
456 		}
457 	}
458 
459 	spdk_sock_get_placement_id(sock->fd, sock->base.impl_opts.enable_placement_id,
460 				   &sock->placement_id);
461 #ifdef SPDK_ZEROCOPY
462 	/* Try to turn on zero copy sends */
463 	flag = 1;
464 
465 	if (enable_zero_copy) {
466 		rc = setsockopt(sock->fd, SOL_SOCKET, SO_ZEROCOPY, &flag, sizeof(flag));
467 		if (rc == 0) {
468 			sock->zcopy = true;
469 			sock->zcopy_send_flags = MSG_ZEROCOPY;
470 		}
471 	}
472 #endif
473 #endif
474 
475 	return sock;
476 }
477 
478 static struct spdk_sock *
479 uring_sock_create(const char *ip, int port,
480 		  enum uring_sock_create_type type,
481 		  struct spdk_sock_opts *opts)
482 {
483 	struct spdk_uring_sock *sock;
484 	struct spdk_sock_impl_opts impl_opts;
485 	char buf[MAX_TMPBUF];
486 	char portnum[PORTNUMLEN];
487 	char *p;
488 	struct addrinfo hints, *res, *res0;
489 	int fd, flag;
490 	int val = 1;
491 	int rc;
492 	bool enable_zcopy_impl_opts = false;
493 	bool enable_zcopy_user_opts = true;
494 
495 	assert(opts != NULL);
496 	uring_opts_get_impl_opts(opts, &impl_opts);
497 
498 	if (ip == NULL) {
499 		return NULL;
500 	}
501 	if (ip[0] == '[') {
502 		snprintf(buf, sizeof(buf), "%s", ip + 1);
503 		p = strchr(buf, ']');
504 		if (p != NULL) {
505 			*p = '\0';
506 		}
507 		ip = (const char *) &buf[0];
508 	}
509 
510 	snprintf(portnum, sizeof portnum, "%d", port);
511 	memset(&hints, 0, sizeof hints);
512 	hints.ai_family = PF_UNSPEC;
513 	hints.ai_socktype = SOCK_STREAM;
514 	hints.ai_flags = AI_NUMERICSERV;
515 	hints.ai_flags |= AI_PASSIVE;
516 	hints.ai_flags |= AI_NUMERICHOST;
517 	rc = getaddrinfo(ip, portnum, &hints, &res0);
518 	if (rc != 0) {
519 		SPDK_ERRLOG("getaddrinfo() failed %s (%d)\n", gai_strerror(rc), rc);
520 		return NULL;
521 	}
522 
523 	/* try listen */
524 	fd = -1;
525 	for (res = res0; res != NULL; res = res->ai_next) {
526 retry:
527 		fd = socket(res->ai_family, res->ai_socktype, res->ai_protocol);
528 		if (fd < 0) {
529 			/* error */
530 			continue;
531 		}
532 
533 		val = impl_opts.recv_buf_size;
534 		rc = setsockopt(fd, SOL_SOCKET, SO_RCVBUF, &val, sizeof val);
535 		if (rc) {
536 			/* Not fatal */
537 		}
538 
539 		val = impl_opts.send_buf_size;
540 		rc = setsockopt(fd, SOL_SOCKET, SO_SNDBUF, &val, sizeof val);
541 		if (rc) {
542 			/* Not fatal */
543 		}
544 
545 		rc = setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, &val, sizeof val);
546 		if (rc != 0) {
547 			close(fd);
548 			fd = -1;
549 			/* error */
550 			continue;
551 		}
552 		rc = setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, &val, sizeof val);
553 		if (rc != 0) {
554 			close(fd);
555 			fd = -1;
556 			/* error */
557 			continue;
558 		}
559 
560 		if (opts->ack_timeout) {
561 #if defined(__linux__)
562 			val = opts->ack_timeout;
563 			rc = setsockopt(fd, IPPROTO_TCP, TCP_USER_TIMEOUT, &val, sizeof val);
564 			if (rc != 0) {
565 				close(fd);
566 				fd = -1;
567 				/* error */
568 				continue;
569 			}
570 #else
571 			SPDK_WARNLOG("TCP_USER_TIMEOUT is not supported.\n");
572 #endif
573 		}
574 
575 
576 
577 #if defined(SO_PRIORITY)
578 		if (opts != NULL && opts->priority) {
579 			rc = setsockopt(fd, SOL_SOCKET, SO_PRIORITY, &opts->priority, sizeof val);
580 			if (rc != 0) {
581 				close(fd);
582 				fd = -1;
583 				/* error */
584 				continue;
585 			}
586 		}
587 #endif
588 		if (res->ai_family == AF_INET6) {
589 			rc = setsockopt(fd, IPPROTO_IPV6, IPV6_V6ONLY, &val, sizeof val);
590 			if (rc != 0) {
591 				close(fd);
592 				fd = -1;
593 				/* error */
594 				continue;
595 			}
596 		}
597 
598 		if (type == SPDK_SOCK_CREATE_LISTEN) {
599 			rc = bind(fd, res->ai_addr, res->ai_addrlen);
600 			if (rc != 0) {
601 				SPDK_ERRLOG("bind() failed at port %d, errno = %d\n", port, errno);
602 				switch (errno) {
603 				case EINTR:
604 					/* interrupted? */
605 					close(fd);
606 					goto retry;
607 				case EADDRNOTAVAIL:
608 					SPDK_ERRLOG("IP address %s not available. "
609 						    "Verify IP address in config file "
610 						    "and make sure setup script is "
611 						    "run before starting spdk app.\n", ip);
612 				/* FALLTHROUGH */
613 				default:
614 					/* try next family */
615 					close(fd);
616 					fd = -1;
617 					continue;
618 				}
619 			}
620 			/* bind OK */
621 			rc = listen(fd, 512);
622 			if (rc != 0) {
623 				SPDK_ERRLOG("listen() failed, errno = %d\n", errno);
624 				close(fd);
625 				fd = -1;
626 				break;
627 			}
628 
629 			flag = fcntl(fd, F_GETFL);
630 			if (fcntl(fd, F_SETFL, flag | O_NONBLOCK) < 0) {
631 				SPDK_ERRLOG("fcntl can't set nonblocking mode for socket, fd: %d (%d)\n", fd, errno);
632 				close(fd);
633 				fd = -1;
634 				break;
635 			}
636 
637 			enable_zcopy_impl_opts = impl_opts.enable_zerocopy_send_server;
638 		} else if (type == SPDK_SOCK_CREATE_CONNECT) {
639 			rc = connect(fd, res->ai_addr, res->ai_addrlen);
640 			if (rc != 0) {
641 				SPDK_ERRLOG("connect() failed, errno = %d\n", errno);
642 				/* try next family */
643 				close(fd);
644 				fd = -1;
645 				continue;
646 			}
647 
648 			flag = fcntl(fd, F_GETFL);
649 			if (fcntl(fd, F_SETFL, flag & ~O_NONBLOCK) < 0) {
650 				SPDK_ERRLOG("fcntl can't set blocking mode for socket, fd: %d (%d)\n", fd, errno);
651 				close(fd);
652 				fd = -1;
653 				break;
654 			}
655 
656 			enable_zcopy_impl_opts = impl_opts.enable_zerocopy_send_client;
657 		}
658 		break;
659 	}
660 	freeaddrinfo(res0);
661 
662 	if (fd < 0) {
663 		return NULL;
664 	}
665 
666 	enable_zcopy_user_opts = opts->zcopy && !sock_is_loopback(fd);
667 	sock = uring_sock_alloc(fd, &impl_opts, enable_zcopy_user_opts && enable_zcopy_impl_opts);
668 	if (sock == NULL) {
669 		SPDK_ERRLOG("sock allocation failed\n");
670 		close(fd);
671 		return NULL;
672 	}
673 
674 	return &sock->base;
675 }
676 
677 static struct spdk_sock *
678 uring_sock_listen(const char *ip, int port, struct spdk_sock_opts *opts)
679 {
680 	return uring_sock_create(ip, port, SPDK_SOCK_CREATE_LISTEN, opts);
681 }
682 
683 static struct spdk_sock *
684 uring_sock_connect(const char *ip, int port, struct spdk_sock_opts *opts)
685 {
686 	return uring_sock_create(ip, port, SPDK_SOCK_CREATE_CONNECT, opts);
687 }
688 
689 static struct spdk_sock *
690 uring_sock_accept(struct spdk_sock *_sock)
691 {
692 	struct spdk_uring_sock		*sock = __uring_sock(_sock);
693 	struct sockaddr_storage		sa;
694 	socklen_t			salen;
695 	int				rc, fd;
696 	struct spdk_uring_sock		*new_sock;
697 	int				flag;
698 
699 	memset(&sa, 0, sizeof(sa));
700 	salen = sizeof(sa);
701 
702 	assert(sock != NULL);
703 
704 	rc = accept(sock->fd, (struct sockaddr *)&sa, &salen);
705 
706 	if (rc == -1) {
707 		return NULL;
708 	}
709 
710 	fd = rc;
711 
712 	flag = fcntl(fd, F_GETFL);
713 	if ((flag & O_NONBLOCK) && (fcntl(fd, F_SETFL, flag & ~O_NONBLOCK) < 0)) {
714 		SPDK_ERRLOG("fcntl can't set blocking mode for socket, fd: %d (%d)\n", fd, errno);
715 		close(fd);
716 		return NULL;
717 	}
718 
719 #if defined(SO_PRIORITY)
720 	/* The priority is not inherited, so call this function again */
721 	if (sock->base.opts.priority) {
722 		rc = setsockopt(fd, SOL_SOCKET, SO_PRIORITY, &sock->base.opts.priority, sizeof(int));
723 		if (rc != 0) {
724 			close(fd);
725 			return NULL;
726 		}
727 	}
728 #endif
729 
730 	new_sock = uring_sock_alloc(fd, &sock->base.impl_opts, sock->zcopy);
731 	if (new_sock == NULL) {
732 		close(fd);
733 		return NULL;
734 	}
735 
736 	return &new_sock->base;
737 }
738 
739 static int
740 uring_sock_close(struct spdk_sock *_sock)
741 {
742 	struct spdk_uring_sock *sock = __uring_sock(_sock);
743 
744 	assert(TAILQ_EMPTY(&_sock->pending_reqs));
745 	assert(sock->group == NULL);
746 
747 	/* If the socket fails to close, the best choice is to
748 	 * leak the fd but continue to free the rest of the sock
749 	 * memory. */
750 	close(sock->fd);
751 
752 	spdk_pipe_destroy(sock->recv_pipe);
753 	free(sock->recv_buf);
754 	free(sock);
755 
756 	return 0;
757 }
758 
759 static ssize_t
760 uring_sock_recv_from_pipe(struct spdk_uring_sock *sock, struct iovec *diov, int diovcnt)
761 {
762 	struct iovec siov[2];
763 	int sbytes;
764 	ssize_t bytes;
765 	struct spdk_uring_sock_group_impl *group;
766 
767 	sbytes = spdk_pipe_reader_get_buffer(sock->recv_pipe, sock->recv_buf_sz, siov);
768 	if (sbytes < 0) {
769 		errno = EINVAL;
770 		return -1;
771 	} else if (sbytes == 0) {
772 		errno = EAGAIN;
773 		return -1;
774 	}
775 
776 	bytes = spdk_iovcpy(siov, 2, diov, diovcnt);
777 
778 	if (bytes == 0) {
779 		/* The only way this happens is if diov is 0 length */
780 		errno = EINVAL;
781 		return -1;
782 	}
783 
784 	spdk_pipe_reader_advance(sock->recv_pipe, bytes);
785 
786 	/* If we drained the pipe, take it off the level-triggered list */
787 	if (sock->base.group_impl && spdk_pipe_reader_bytes_available(sock->recv_pipe) == 0) {
788 		group = __uring_group_impl(sock->base.group_impl);
789 		TAILQ_REMOVE(&group->pending_recv, sock, link);
790 		sock->pending_recv = false;
791 	}
792 
793 	return bytes;
794 }
795 
796 static inline ssize_t
797 sock_readv(int fd, struct iovec *iov, int iovcnt)
798 {
799 	struct msghdr msg = {
800 		.msg_iov = iov,
801 		.msg_iovlen = iovcnt,
802 	};
803 
804 	return recvmsg(fd, &msg, MSG_DONTWAIT);
805 }
806 
807 static inline ssize_t
808 uring_sock_read(struct spdk_uring_sock *sock)
809 {
810 	struct iovec iov[2];
811 	int bytes;
812 	struct spdk_uring_sock_group_impl *group;
813 
814 	bytes = spdk_pipe_writer_get_buffer(sock->recv_pipe, sock->recv_buf_sz, iov);
815 
816 	if (bytes > 0) {
817 		bytes = sock_readv(sock->fd, iov, 2);
818 		if (bytes > 0) {
819 			spdk_pipe_writer_advance(sock->recv_pipe, bytes);
820 			if (sock->base.group_impl && !sock->pending_recv) {
821 				group = __uring_group_impl(sock->base.group_impl);
822 				TAILQ_INSERT_TAIL(&group->pending_recv, sock, link);
823 				sock->pending_recv = true;
824 			}
825 		}
826 	}
827 
828 	return bytes;
829 }
830 
831 static int
832 uring_sock_recv_next(struct spdk_sock *_sock, void **_buf, void **ctx)
833 {
834 	struct spdk_uring_sock *sock = __uring_sock(_sock);
835 	struct spdk_uring_sock_group_impl *group;
836 	struct spdk_uring_buf_tracker *tr;
837 
838 	if (sock->connection_status < 0) {
839 		errno = -sock->connection_status;
840 		return -1;
841 	}
842 
843 	if (sock->recv_pipe != NULL) {
844 		errno = ENOTSUP;
845 		return -1;
846 	}
847 
848 	group = __uring_group_impl(_sock->group_impl);
849 
850 	tr = STAILQ_FIRST(&sock->recv_stream);
851 	if (tr == NULL) {
852 		if (sock->group->buf_ring_count > 0) {
853 			/* There are buffers posted, but data hasn't arrived. */
854 			errno = EAGAIN;
855 		} else {
856 			/* There are no buffers posted, so this won't ever
857 			 * make forward progress. */
858 			errno = ENOBUFS;
859 		}
860 		return -1;
861 	}
862 	assert(sock->pending_recv == true);
863 	assert(tr->buf != NULL);
864 
865 	*_buf = tr->buf + sock->recv_offset;
866 	*ctx = tr->ctx;
867 
868 	STAILQ_REMOVE_HEAD(&sock->recv_stream, link);
869 	STAILQ_INSERT_HEAD(&group->free_trackers, tr, link);
870 
871 	if (STAILQ_EMPTY(&sock->recv_stream)) {
872 		sock->pending_recv = false;
873 		TAILQ_REMOVE(&group->pending_recv, sock, link);
874 	}
875 
876 	return tr->len - sock->recv_offset;
877 }
878 
879 static ssize_t
880 uring_sock_readv_no_pipe(struct spdk_sock *_sock, struct iovec *iovs, int iovcnt)
881 {
882 	struct spdk_uring_sock *sock = __uring_sock(_sock);
883 	struct spdk_uring_buf_tracker *tr;
884 	struct iovec iov;
885 	ssize_t total, len;
886 	int i;
887 
888 	if (sock->connection_status < 0) {
889 		errno = -sock->connection_status;
890 		return -1;
891 	}
892 
893 	if (_sock->group_impl == NULL) {
894 		/* If not in a group just read from the socket the regular way. */
895 		return sock_readv(sock->fd, iovs, iovcnt);
896 	}
897 
898 	if (STAILQ_EMPTY(&sock->recv_stream)) {
899 		if (sock->group->buf_ring_count == 0) {
900 			/* If the user hasn't posted any buffers, read from the socket
901 			 * directly. */
902 
903 			if (sock->pending_recv) {
904 				sock->pending_recv = false;
905 				TAILQ_REMOVE(&(__uring_group_impl(_sock->group_impl))->pending_recv, sock, link);
906 			}
907 
908 			return sock_readv(sock->fd, iovs, iovcnt);
909 		}
910 
911 		errno = EAGAIN;
912 		return -1;
913 	}
914 
915 	total = 0;
916 	for (i = 0; i < iovcnt; i++) {
917 		/* Copy to stack so we can change it */
918 		iov = iovs[i];
919 
920 		tr = STAILQ_FIRST(&sock->recv_stream);
921 		while (tr != NULL) {
922 			len = spdk_min(iov.iov_len, tr->len - sock->recv_offset);
923 			memcpy(iov.iov_base, tr->buf + sock->recv_offset, len);
924 
925 			total += len;
926 			sock->recv_offset += len;
927 			iov.iov_base += len;
928 			iov.iov_len -= len;
929 
930 			if (sock->recv_offset == tr->len) {
931 				sock->recv_offset = 0;
932 				STAILQ_REMOVE_HEAD(&sock->recv_stream, link);
933 				STAILQ_INSERT_HEAD(&sock->group->free_trackers, tr, link);
934 				spdk_sock_group_provide_buf(sock->group->base.group, tr->buf, tr->buflen, tr->ctx);
935 				tr = STAILQ_FIRST(&sock->recv_stream);
936 			}
937 
938 			if (iov.iov_len == 0) {
939 				break;
940 			}
941 		}
942 	}
943 
944 	if (STAILQ_EMPTY(&sock->recv_stream)) {
945 		struct spdk_uring_sock_group_impl *group;
946 
947 		group = __uring_group_impl(_sock->group_impl);
948 		sock->pending_recv = false;
949 		TAILQ_REMOVE(&group->pending_recv, sock, link);
950 	}
951 
952 	assert(total > 0);
953 	return total;
954 }
955 
956 static ssize_t
957 uring_sock_readv(struct spdk_sock *_sock, struct iovec *iov, int iovcnt)
958 {
959 	struct spdk_uring_sock *sock = __uring_sock(_sock);
960 	int rc, i;
961 	size_t len;
962 
963 	if (sock->connection_status < 0) {
964 		errno = -sock->connection_status;
965 		return -1;
966 	}
967 
968 	if (sock->recv_pipe == NULL) {
969 		return uring_sock_readv_no_pipe(_sock, iov, iovcnt);
970 	}
971 
972 	len = 0;
973 	for (i = 0; i < iovcnt; i++) {
974 		len += iov[i].iov_len;
975 	}
976 
977 	if (spdk_pipe_reader_bytes_available(sock->recv_pipe) == 0) {
978 		/* If the user is receiving a sufficiently large amount of data,
979 		 * receive directly to their buffers. */
980 		if (len >= MIN_SOCK_PIPE_SIZE) {
981 			return sock_readv(sock->fd, iov, iovcnt);
982 		}
983 
984 		/* Otherwise, do a big read into our pipe */
985 		rc = uring_sock_read(sock);
986 		if (rc <= 0) {
987 			return rc;
988 		}
989 	}
990 
991 	return uring_sock_recv_from_pipe(sock, iov, iovcnt);
992 }
993 
994 static ssize_t
995 uring_sock_recv(struct spdk_sock *sock, void *buf, size_t len)
996 {
997 	struct iovec iov[1];
998 
999 	iov[0].iov_base = buf;
1000 	iov[0].iov_len = len;
1001 
1002 	return uring_sock_readv(sock, iov, 1);
1003 }
1004 
1005 static ssize_t
1006 uring_sock_writev(struct spdk_sock *_sock, struct iovec *iov, int iovcnt)
1007 {
1008 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1009 	struct msghdr msg = {
1010 		.msg_iov = iov,
1011 		.msg_iovlen = iovcnt,
1012 	};
1013 
1014 	if (sock->write_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE) {
1015 		errno = EAGAIN;
1016 		return -1;
1017 	}
1018 
1019 	return sendmsg(sock->fd, &msg, MSG_DONTWAIT);
1020 }
1021 
1022 static ssize_t
1023 sock_request_advance_offset(struct spdk_sock_request *req, ssize_t rc)
1024 {
1025 	unsigned int offset;
1026 	size_t len;
1027 	int i;
1028 
1029 	offset = req->internal.offset;
1030 	for (i = 0; i < req->iovcnt; i++) {
1031 		/* Advance by the offset first */
1032 		if (offset >= SPDK_SOCK_REQUEST_IOV(req, i)->iov_len) {
1033 			offset -= SPDK_SOCK_REQUEST_IOV(req, i)->iov_len;
1034 			continue;
1035 		}
1036 
1037 		/* Calculate the remaining length of this element */
1038 		len = SPDK_SOCK_REQUEST_IOV(req, i)->iov_len - offset;
1039 
1040 		if (len > (size_t)rc) {
1041 			req->internal.offset += rc;
1042 			return -1;
1043 		}
1044 
1045 		offset = 0;
1046 		req->internal.offset += len;
1047 		rc -= len;
1048 	}
1049 
1050 	return rc;
1051 }
1052 
1053 static int
1054 sock_complete_write_reqs(struct spdk_sock *_sock, ssize_t rc, bool is_zcopy)
1055 {
1056 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1057 	struct spdk_sock_request *req;
1058 	int retval;
1059 
1060 	if (is_zcopy) {
1061 		/* Handling overflow case, because we use psock->sendmsg_idx - 1 for the
1062 		 * req->internal.offset, so sendmsg_idx should not be zero */
1063 		if (spdk_unlikely(sock->sendmsg_idx == UINT32_MAX)) {
1064 			sock->sendmsg_idx = 1;
1065 		} else {
1066 			sock->sendmsg_idx++;
1067 		}
1068 	}
1069 
1070 	/* Consume the requests that were actually written */
1071 	req = TAILQ_FIRST(&_sock->queued_reqs);
1072 	while (req) {
1073 		/* req->internal.is_zcopy is true when the whole req or part of it is sent with zerocopy */
1074 		req->internal.is_zcopy = is_zcopy;
1075 
1076 		rc = sock_request_advance_offset(req, rc);
1077 		if (rc < 0) {
1078 			/* This element was partially sent. */
1079 			return 0;
1080 		}
1081 
1082 		/* Handled a full request. */
1083 		spdk_sock_request_pend(_sock, req);
1084 
1085 		if (!req->internal.is_zcopy && req == TAILQ_FIRST(&_sock->pending_reqs)) {
1086 			retval = spdk_sock_request_put(_sock, req, 0);
1087 			if (retval) {
1088 				return retval;
1089 			}
1090 		} else {
1091 			/* Re-use the offset field to hold the sendmsg call index. The
1092 			 * index is 0 based, so subtract one here because we've already
1093 			 * incremented above. */
1094 			req->internal.offset = sock->sendmsg_idx - 1;
1095 		}
1096 
1097 		if (rc == 0) {
1098 			break;
1099 		}
1100 
1101 		req = TAILQ_FIRST(&_sock->queued_reqs);
1102 	}
1103 
1104 	return 0;
1105 }
1106 
1107 #ifdef SPDK_ZEROCOPY
1108 static int
1109 _sock_check_zcopy(struct spdk_sock *_sock, int status)
1110 {
1111 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1112 	ssize_t rc;
1113 	struct sock_extended_err *serr;
1114 	struct cmsghdr *cm;
1115 	uint32_t idx;
1116 	struct spdk_sock_request *req, *treq;
1117 	bool found;
1118 
1119 	assert(sock->zcopy == true);
1120 	if (spdk_unlikely(status) < 0) {
1121 		if (!TAILQ_EMPTY(&_sock->pending_reqs)) {
1122 			SPDK_ERRLOG("Attempting to receive from ERRQUEUE yielded error, but pending list still has orphaned entries, status =%d\n",
1123 				    status);
1124 		} else {
1125 			SPDK_WARNLOG("Recvmsg yielded an error!\n");
1126 		}
1127 		return 0;
1128 	}
1129 
1130 	cm = CMSG_FIRSTHDR(&sock->errqueue_task.msg);
1131 	if (!((cm->cmsg_level == SOL_IP && cm->cmsg_type == IP_RECVERR) ||
1132 	      (cm->cmsg_level == SOL_IPV6 && cm->cmsg_type == IPV6_RECVERR))) {
1133 		SPDK_WARNLOG("Unexpected cmsg level or type!\n");
1134 		return 0;
1135 	}
1136 
1137 	serr = (struct sock_extended_err *)CMSG_DATA(cm);
1138 	if (serr->ee_errno != 0 || serr->ee_origin != SO_EE_ORIGIN_ZEROCOPY) {
1139 		SPDK_WARNLOG("Unexpected extended error origin\n");
1140 		return 0;
1141 	}
1142 
1143 	/* Most of the time, the pending_reqs array is in the exact
1144 	 * order we need such that all of the requests to complete are
1145 	 * in order, in the front. It is guaranteed that all requests
1146 	 * belonging to the same sendmsg call are sequential, so once
1147 	 * we encounter one match we can stop looping as soon as a
1148 	 * non-match is found.
1149 	 */
1150 	for (idx = serr->ee_info; idx <= serr->ee_data; idx++) {
1151 		found = false;
1152 		TAILQ_FOREACH_SAFE(req, &_sock->pending_reqs, internal.link, treq) {
1153 			if (!req->internal.is_zcopy) {
1154 				/* This wasn't a zcopy request. It was just waiting in line to complete */
1155 				rc = spdk_sock_request_put(_sock, req, 0);
1156 				if (rc < 0) {
1157 					return rc;
1158 				}
1159 			} else if (req->internal.offset == idx) {
1160 				found = true;
1161 				rc = spdk_sock_request_put(_sock, req, 0);
1162 				if (rc < 0) {
1163 					return rc;
1164 				}
1165 			} else if (found) {
1166 				break;
1167 			}
1168 		}
1169 	}
1170 
1171 	return 0;
1172 }
1173 
1174 static void
1175 _sock_prep_errqueue(struct spdk_sock *_sock)
1176 {
1177 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1178 	struct spdk_uring_task *task = &sock->errqueue_task;
1179 	struct io_uring_sqe *sqe;
1180 
1181 	if (task->status == SPDK_URING_SOCK_TASK_IN_PROCESS) {
1182 		return;
1183 	}
1184 
1185 	if (sock->pending_group_remove) {
1186 		return;
1187 	}
1188 
1189 	assert(sock->group != NULL);
1190 	sock->group->io_queued++;
1191 
1192 	sqe = io_uring_get_sqe(&sock->group->uring);
1193 	io_uring_prep_recvmsg(sqe, sock->fd, &task->msg, MSG_ERRQUEUE);
1194 	io_uring_sqe_set_data(sqe, task);
1195 	task->status = SPDK_URING_SOCK_TASK_IN_PROCESS;
1196 }
1197 
1198 #endif
1199 
1200 static void
1201 _sock_flush(struct spdk_sock *_sock)
1202 {
1203 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1204 	struct spdk_uring_task *task = &sock->write_task;
1205 	uint32_t iovcnt;
1206 	struct io_uring_sqe *sqe;
1207 	int flags;
1208 
1209 	if (task->status == SPDK_URING_SOCK_TASK_IN_PROCESS) {
1210 		return;
1211 	}
1212 
1213 #ifdef SPDK_ZEROCOPY
1214 	if (sock->zcopy) {
1215 		flags = MSG_DONTWAIT | sock->zcopy_send_flags;
1216 	} else
1217 #endif
1218 	{
1219 		flags = MSG_DONTWAIT;
1220 	}
1221 
1222 	iovcnt = spdk_sock_prep_reqs(&sock->base, task->iovs, task->iov_cnt, &task->last_req, &flags);
1223 	if (!iovcnt) {
1224 		return;
1225 	}
1226 
1227 	task->iov_cnt = iovcnt;
1228 	assert(sock->group != NULL);
1229 	task->msg.msg_iov = task->iovs;
1230 	task->msg.msg_iovlen = task->iov_cnt;
1231 #ifdef SPDK_ZEROCOPY
1232 	task->is_zcopy = (flags & MSG_ZEROCOPY) ? true : false;
1233 #endif
1234 	sock->group->io_queued++;
1235 
1236 	sqe = io_uring_get_sqe(&sock->group->uring);
1237 	io_uring_prep_sendmsg(sqe, sock->fd, &sock->write_task.msg, flags);
1238 	io_uring_sqe_set_data(sqe, task);
1239 	task->status = SPDK_URING_SOCK_TASK_IN_PROCESS;
1240 }
1241 
1242 static void
1243 _sock_prep_read(struct spdk_sock *_sock)
1244 {
1245 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1246 	struct spdk_uring_task *task = &sock->read_task;
1247 	struct io_uring_sqe *sqe;
1248 
1249 	/* Do not prepare read event */
1250 	if (task->status == SPDK_URING_SOCK_TASK_IN_PROCESS) {
1251 		return;
1252 	}
1253 
1254 	if (sock->pending_group_remove) {
1255 		return;
1256 	}
1257 
1258 	assert(sock->group != NULL);
1259 	sock->group->io_queued++;
1260 
1261 	sqe = io_uring_get_sqe(&sock->group->uring);
1262 	io_uring_prep_recv(sqe, sock->fd, NULL, URING_MAX_RECV_SIZE, 0);
1263 	sqe->buf_group = URING_BUF_GROUP_ID;
1264 	sqe->flags |= IOSQE_BUFFER_SELECT;
1265 	io_uring_sqe_set_data(sqe, task);
1266 	task->status = SPDK_URING_SOCK_TASK_IN_PROCESS;
1267 }
1268 
1269 static void
1270 _sock_prep_cancel_task(struct spdk_sock *_sock, void *user_data)
1271 {
1272 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1273 	struct spdk_uring_task *task = &sock->cancel_task;
1274 	struct io_uring_sqe *sqe;
1275 
1276 	if (task->status == SPDK_URING_SOCK_TASK_IN_PROCESS) {
1277 		return;
1278 	}
1279 
1280 	assert(sock->group != NULL);
1281 	sock->group->io_queued++;
1282 
1283 	sqe = io_uring_get_sqe(&sock->group->uring);
1284 	io_uring_prep_cancel(sqe, user_data, 0);
1285 	io_uring_sqe_set_data(sqe, task);
1286 	task->status = SPDK_URING_SOCK_TASK_IN_PROCESS;
1287 }
1288 
1289 static int
1290 sock_uring_group_reap(struct spdk_uring_sock_group_impl *group, int max, int max_read_events,
1291 		      struct spdk_sock **socks)
1292 {
1293 	int i, count, ret;
1294 	struct io_uring_cqe *cqe;
1295 	struct spdk_uring_sock *sock, *tmp;
1296 	struct spdk_uring_task *task;
1297 	int status, bid, flags;
1298 	bool is_zcopy;
1299 
1300 	for (i = 0; i < max; i++) {
1301 		ret = io_uring_peek_cqe(&group->uring, &cqe);
1302 		if (ret != 0) {
1303 			break;
1304 		}
1305 
1306 		if (cqe == NULL) {
1307 			break;
1308 		}
1309 
1310 		task = (struct spdk_uring_task *)cqe->user_data;
1311 		assert(task != NULL);
1312 		sock = task->sock;
1313 		assert(sock != NULL);
1314 		assert(sock->group != NULL);
1315 		assert(sock->group == group);
1316 		sock->group->io_inflight--;
1317 		sock->group->io_avail++;
1318 		status = cqe->res;
1319 		flags = cqe->flags;
1320 		io_uring_cqe_seen(&group->uring, cqe);
1321 
1322 		task->status = SPDK_URING_SOCK_TASK_NOT_IN_USE;
1323 
1324 		switch (task->type) {
1325 		case URING_TASK_READ:
1326 			if (status == -EAGAIN || status == -EWOULDBLOCK) {
1327 				/* This likely shouldn't happen, but would indicate that the
1328 				 * kernel didn't have enough resources to queue a task internally. */
1329 				_sock_prep_read(&sock->base);
1330 			} else if (status == -ECANCELED) {
1331 				continue;
1332 			} else if (status == -ENOBUFS) {
1333 				/* There's data in the socket but the user hasn't provided any buffers.
1334 				 * We need to notify the user that the socket has data pending. */
1335 				if (sock->base.cb_fn != NULL &&
1336 				    sock->pending_recv == false) {
1337 					sock->pending_recv = true;
1338 					TAILQ_INSERT_TAIL(&group->pending_recv, sock, link);
1339 				}
1340 
1341 				_sock_prep_read(&sock->base);
1342 			} else if (spdk_unlikely(status <= 0)) {
1343 				sock->connection_status = status < 0 ? status : -ECONNRESET;
1344 				ret = spdk_sock_abort_requests(&sock->base);
1345 
1346 				/* The user needs to be notified that this socket is dead. */
1347 				if (ret == 0 && sock->base.cb_fn != NULL &&
1348 				    sock->pending_recv == false) {
1349 					sock->pending_recv = true;
1350 					TAILQ_INSERT_TAIL(&group->pending_recv, sock, link);
1351 				}
1352 			} else {
1353 				struct spdk_uring_buf_tracker *tracker;
1354 
1355 				assert((flags & IORING_CQE_F_BUFFER) != 0);
1356 
1357 				bid = flags >> IORING_CQE_BUFFER_SHIFT;
1358 				tracker = &group->trackers[bid];
1359 
1360 				assert(tracker->buf != NULL);
1361 				assert(tracker->len != 0);
1362 
1363 				/* Append this data to the stream */
1364 				tracker->len = status;
1365 				STAILQ_INSERT_TAIL(&sock->recv_stream, tracker, link);
1366 				assert(group->buf_ring_count > 0);
1367 				group->buf_ring_count--;
1368 
1369 				if (sock->base.cb_fn != NULL &&
1370 				    sock->pending_recv == false) {
1371 					sock->pending_recv = true;
1372 					TAILQ_INSERT_TAIL(&group->pending_recv, sock, link);
1373 				}
1374 
1375 				_sock_prep_read(&sock->base);
1376 			}
1377 			break;
1378 		case URING_TASK_WRITE:
1379 			if (status == -EAGAIN || status == -EWOULDBLOCK ||
1380 			    (status == -ENOBUFS && sock->zcopy) ||
1381 			    status == -ECANCELED) {
1382 				continue;
1383 			} else if (spdk_unlikely(status) < 0) {
1384 				sock->connection_status = status;
1385 				ret = spdk_sock_abort_requests(&sock->base);
1386 
1387 				/* The user needs to be notified that this socket is dead. */
1388 				if (ret == 0 && sock->base.cb_fn != NULL &&
1389 				    sock->pending_recv == false) {
1390 					sock->pending_recv = true;
1391 					TAILQ_INSERT_TAIL(&group->pending_recv, sock, link);
1392 				}
1393 			} else {
1394 				task->last_req = NULL;
1395 				task->iov_cnt = 0;
1396 				is_zcopy = task->is_zcopy;
1397 				task->is_zcopy = false;
1398 				sock_complete_write_reqs(&sock->base, status, is_zcopy);
1399 			}
1400 
1401 			break;
1402 #ifdef SPDK_ZEROCOPY
1403 		case URING_TASK_ERRQUEUE:
1404 			if (status == -EAGAIN || status == -EWOULDBLOCK) {
1405 				_sock_prep_errqueue(&sock->base);
1406 			} else if (status == -ECANCELED) {
1407 				continue;
1408 			} else if (spdk_unlikely(status < 0)) {
1409 				ret = spdk_sock_abort_requests(&sock->base);
1410 
1411 				/* The user needs to be notified that this socket is dead. */
1412 				if (ret == 0 && sock->base.cb_fn != NULL &&
1413 				    sock->pending_recv == false) {
1414 					sock->pending_recv = true;
1415 					TAILQ_INSERT_TAIL(&group->pending_recv, sock, link);
1416 				}
1417 				break;
1418 			} else {
1419 				_sock_check_zcopy(&sock->base, status);
1420 				_sock_prep_errqueue(&sock->base);
1421 			}
1422 			break;
1423 #endif
1424 		case URING_TASK_CANCEL:
1425 			/* Do nothing */
1426 			break;
1427 		default:
1428 			SPDK_UNREACHABLE();
1429 		}
1430 	}
1431 
1432 	if (!socks) {
1433 		return 0;
1434 	}
1435 	count = 0;
1436 	TAILQ_FOREACH_SAFE(sock, &group->pending_recv, link, tmp) {
1437 		if (count == max_read_events) {
1438 			break;
1439 		}
1440 
1441 		/* If the socket's cb_fn is NULL, do not add it to socks array */
1442 		if (spdk_unlikely(sock->base.cb_fn == NULL)) {
1443 			assert(sock->pending_recv == true);
1444 			sock->pending_recv = false;
1445 			TAILQ_REMOVE(&group->pending_recv, sock, link);
1446 			continue;
1447 		}
1448 
1449 		socks[count++] = &sock->base;
1450 	}
1451 
1452 
1453 	/* Cycle the pending_recv list so that each time we poll things aren't
1454 	 * in the same order. Say we have 6 sockets in the list, named as follows:
1455 	 * A B C D E F
1456 	 * And all 6 sockets had the poll events, but max_events is only 3. That means
1457 	 * psock currently points at D. We want to rearrange the list to the following:
1458 	 * D E F A B C
1459 	 *
1460 	 * The variables below are named according to this example to make it easier to
1461 	 * follow the swaps.
1462 	 */
1463 	if (sock != NULL) {
1464 		struct spdk_uring_sock *ua, *uc, *ud, *uf;
1465 
1466 		/* Capture pointers to the elements we need */
1467 		ud = sock;
1468 
1469 		ua = TAILQ_FIRST(&group->pending_recv);
1470 		if (ua == ud) {
1471 			goto end;
1472 		}
1473 
1474 		uf = TAILQ_LAST(&group->pending_recv, pending_recv_list);
1475 		if (uf == ud) {
1476 			TAILQ_REMOVE(&group->pending_recv, ud, link);
1477 			TAILQ_INSERT_HEAD(&group->pending_recv, ud, link);
1478 			goto end;
1479 		}
1480 
1481 		uc = TAILQ_PREV(ud, pending_recv_list, link);
1482 		assert(uc != NULL);
1483 
1484 		/* Break the link between C and D */
1485 		uc->link.tqe_next = NULL;
1486 
1487 		/* Connect F to A */
1488 		uf->link.tqe_next = ua;
1489 		ua->link.tqe_prev = &uf->link.tqe_next;
1490 
1491 		/* Fix up the list first/last pointers */
1492 		group->pending_recv.tqh_first = ud;
1493 		group->pending_recv.tqh_last = &uc->link.tqe_next;
1494 
1495 		/* D is in front of the list, make tqe prev pointer point to the head of list */
1496 		ud->link.tqe_prev = &group->pending_recv.tqh_first;
1497 	}
1498 
1499 end:
1500 	return count;
1501 }
1502 
1503 static int uring_sock_flush(struct spdk_sock *_sock);
1504 
1505 static void
1506 uring_sock_writev_async(struct spdk_sock *_sock, struct spdk_sock_request *req)
1507 {
1508 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1509 	int rc;
1510 
1511 	if (spdk_unlikely(sock->connection_status)) {
1512 		req->cb_fn(req->cb_arg, sock->connection_status);
1513 		return;
1514 	}
1515 
1516 	spdk_sock_request_queue(_sock, req);
1517 
1518 	if (!sock->group) {
1519 		if (_sock->queued_iovcnt >= IOV_BATCH_SIZE) {
1520 			rc = uring_sock_flush(_sock);
1521 			if (rc < 0 && errno != EAGAIN) {
1522 				spdk_sock_abort_requests(_sock);
1523 			}
1524 		}
1525 	}
1526 }
1527 
1528 static int
1529 uring_sock_set_recvlowat(struct spdk_sock *_sock, int nbytes)
1530 {
1531 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1532 	int val;
1533 	int rc;
1534 
1535 	assert(sock != NULL);
1536 
1537 	val = nbytes;
1538 	rc = setsockopt(sock->fd, SOL_SOCKET, SO_RCVLOWAT, &val, sizeof val);
1539 	if (rc != 0) {
1540 		return -1;
1541 	}
1542 	return 0;
1543 }
1544 
1545 static bool
1546 uring_sock_is_ipv6(struct spdk_sock *_sock)
1547 {
1548 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1549 	struct sockaddr_storage sa;
1550 	socklen_t salen;
1551 	int rc;
1552 
1553 	assert(sock != NULL);
1554 
1555 	memset(&sa, 0, sizeof sa);
1556 	salen = sizeof sa;
1557 	rc = getsockname(sock->fd, (struct sockaddr *) &sa, &salen);
1558 	if (rc != 0) {
1559 		SPDK_ERRLOG("getsockname() failed (errno=%d)\n", errno);
1560 		return false;
1561 	}
1562 
1563 	return (sa.ss_family == AF_INET6);
1564 }
1565 
1566 static bool
1567 uring_sock_is_ipv4(struct spdk_sock *_sock)
1568 {
1569 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1570 	struct sockaddr_storage sa;
1571 	socklen_t salen;
1572 	int rc;
1573 
1574 	assert(sock != NULL);
1575 
1576 	memset(&sa, 0, sizeof sa);
1577 	salen = sizeof sa;
1578 	rc = getsockname(sock->fd, (struct sockaddr *) &sa, &salen);
1579 	if (rc != 0) {
1580 		SPDK_ERRLOG("getsockname() failed (errno=%d)\n", errno);
1581 		return false;
1582 	}
1583 
1584 	return (sa.ss_family == AF_INET);
1585 }
1586 
1587 static bool
1588 uring_sock_is_connected(struct spdk_sock *_sock)
1589 {
1590 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1591 	uint8_t byte;
1592 	int rc;
1593 
1594 	rc = recv(sock->fd, &byte, 1, MSG_PEEK | MSG_DONTWAIT);
1595 	if (rc == 0) {
1596 		return false;
1597 	}
1598 
1599 	if (rc < 0) {
1600 		if (errno == EAGAIN || errno == EWOULDBLOCK) {
1601 			return true;
1602 		}
1603 
1604 		return false;
1605 	}
1606 
1607 	return true;
1608 }
1609 
1610 static struct spdk_sock_group_impl *
1611 uring_sock_group_impl_get_optimal(struct spdk_sock *_sock, struct spdk_sock_group_impl *hint)
1612 {
1613 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1614 	struct spdk_sock_group_impl *group;
1615 
1616 	if (sock->placement_id != -1) {
1617 		spdk_sock_map_lookup(&g_map, sock->placement_id, &group, hint);
1618 		return group;
1619 	}
1620 
1621 	return NULL;
1622 }
1623 
1624 static int
1625 uring_sock_group_impl_buf_pool_free(struct spdk_uring_sock_group_impl *group_impl)
1626 {
1627 	if (group_impl->buf_ring) {
1628 		io_uring_unregister_buf_ring(&group_impl->uring, URING_BUF_GROUP_ID);
1629 		free(group_impl->buf_ring);
1630 	}
1631 
1632 	free(group_impl->trackers);
1633 
1634 	return 0;
1635 }
1636 
1637 static int
1638 uring_sock_group_impl_buf_pool_alloc(struct spdk_uring_sock_group_impl *group_impl)
1639 {
1640 	struct io_uring_buf_reg buf_reg = {};
1641 	struct io_uring_buf_ring *buf_ring;
1642 	int i, rc;
1643 
1644 	rc = posix_memalign((void **)&buf_ring, 0x1000, URING_BUF_POOL_SIZE * sizeof(struct io_uring_buf));
1645 	if (rc != 0) {
1646 		/* posix_memalign returns positive errno values */
1647 		return -rc;
1648 	}
1649 
1650 	buf_reg.ring_addr = (unsigned long long)buf_ring;
1651 	buf_reg.ring_entries = URING_BUF_POOL_SIZE;
1652 	buf_reg.bgid = URING_BUF_GROUP_ID;
1653 
1654 	rc = io_uring_register_buf_ring(&group_impl->uring, &buf_reg, 0);
1655 	if (rc != 0) {
1656 		free(buf_ring);
1657 		return rc;
1658 	}
1659 
1660 	group_impl->buf_ring = buf_ring;
1661 	io_uring_buf_ring_init(group_impl->buf_ring);
1662 	group_impl->buf_ring_count = 0;
1663 
1664 	group_impl->trackers = calloc(URING_BUF_POOL_SIZE, sizeof(struct spdk_uring_buf_tracker));
1665 	if (group_impl->trackers == NULL) {
1666 		uring_sock_group_impl_buf_pool_free(group_impl);
1667 		return -ENOMEM;
1668 	}
1669 
1670 	STAILQ_INIT(&group_impl->free_trackers);
1671 
1672 	for (i = 0; i < URING_BUF_POOL_SIZE; i++) {
1673 		struct spdk_uring_buf_tracker *tracker = &group_impl->trackers[i];
1674 
1675 		tracker->buf = NULL;
1676 		tracker->len = 0;
1677 		tracker->ctx = NULL;
1678 		tracker->id = i;
1679 
1680 		STAILQ_INSERT_TAIL(&group_impl->free_trackers, tracker, link);
1681 	}
1682 
1683 	return 0;
1684 }
1685 
1686 static struct spdk_sock_group_impl *
1687 uring_sock_group_impl_create(void)
1688 {
1689 	struct spdk_uring_sock_group_impl *group_impl;
1690 
1691 	group_impl = calloc(1, sizeof(*group_impl));
1692 	if (group_impl == NULL) {
1693 		SPDK_ERRLOG("group_impl allocation failed\n");
1694 		return NULL;
1695 	}
1696 
1697 	group_impl->io_avail = SPDK_SOCK_GROUP_QUEUE_DEPTH;
1698 
1699 	if (io_uring_queue_init(SPDK_SOCK_GROUP_QUEUE_DEPTH, &group_impl->uring, 0) < 0) {
1700 		SPDK_ERRLOG("uring I/O context setup failure\n");
1701 		free(group_impl);
1702 		return NULL;
1703 	}
1704 
1705 	TAILQ_INIT(&group_impl->pending_recv);
1706 
1707 	if (uring_sock_group_impl_buf_pool_alloc(group_impl) < 0) {
1708 		SPDK_ERRLOG("Failed to create buffer ring. Your kernel is likely not new enough. "
1709 			    "Please switch to the POSIX sock implementation instead.\n");
1710 		io_uring_queue_exit(&group_impl->uring);
1711 		free(group_impl);
1712 		return NULL;
1713 	}
1714 
1715 	if (g_spdk_uring_sock_impl_opts.enable_placement_id == PLACEMENT_CPU) {
1716 		spdk_sock_map_insert(&g_map, spdk_env_get_current_core(), &group_impl->base);
1717 	}
1718 
1719 	return &group_impl->base;
1720 }
1721 
1722 static int
1723 uring_sock_group_impl_add_sock(struct spdk_sock_group_impl *_group,
1724 			       struct spdk_sock *_sock)
1725 {
1726 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1727 	struct spdk_uring_sock_group_impl *group = __uring_group_impl(_group);
1728 	int rc;
1729 
1730 	sock->group = group;
1731 	sock->write_task.sock = sock;
1732 	sock->write_task.type = URING_TASK_WRITE;
1733 
1734 	sock->read_task.sock = sock;
1735 	sock->read_task.type = URING_TASK_READ;
1736 
1737 	sock->errqueue_task.sock = sock;
1738 	sock->errqueue_task.type = URING_TASK_ERRQUEUE;
1739 	sock->errqueue_task.msg.msg_control = sock->buf;
1740 	sock->errqueue_task.msg.msg_controllen = sizeof(sock->buf);
1741 
1742 	sock->cancel_task.sock = sock;
1743 	sock->cancel_task.type = URING_TASK_CANCEL;
1744 
1745 	/* switched from another polling group due to scheduling */
1746 	if (spdk_unlikely(sock->recv_pipe != NULL &&
1747 			  (spdk_pipe_reader_bytes_available(sock->recv_pipe) > 0))) {
1748 		assert(sock->pending_recv == false);
1749 		sock->pending_recv = true;
1750 		TAILQ_INSERT_TAIL(&group->pending_recv, sock, link);
1751 	}
1752 
1753 	if (sock->placement_id != -1) {
1754 		rc = spdk_sock_map_insert(&g_map, sock->placement_id, &group->base);
1755 		if (rc != 0) {
1756 			SPDK_ERRLOG("Failed to insert sock group into map: %d", rc);
1757 			/* Do not treat this as an error. The system will continue running. */
1758 		}
1759 	}
1760 
1761 	/* We get an async read going immediately */
1762 	_sock_prep_read(&sock->base);
1763 #ifdef SPDK_ZEROCOPY
1764 	if (sock->zcopy) {
1765 		_sock_prep_errqueue(_sock);
1766 	}
1767 #endif
1768 
1769 	return 0;
1770 }
1771 
1772 static void
1773 uring_sock_group_populate_buf_ring(struct spdk_uring_sock_group_impl *group)
1774 {
1775 	struct spdk_uring_buf_tracker *tracker;
1776 	int count, mask;
1777 
1778 	if (g_spdk_uring_sock_impl_opts.enable_recv_pipe) {
1779 		/* If recv_pipe is enabled, we do not post buffers. */
1780 		return;
1781 	}
1782 
1783 	/* Try to re-populate the io_uring's buffer pool using user-provided buffers */
1784 	tracker = STAILQ_FIRST(&group->free_trackers);
1785 	count = 0;
1786 	mask = io_uring_buf_ring_mask(URING_BUF_POOL_SIZE);
1787 	while (tracker != NULL) {
1788 		tracker->buflen = spdk_sock_group_get_buf(group->base.group, &tracker->buf, &tracker->ctx);
1789 		if (tracker->buflen == 0) {
1790 			break;
1791 		}
1792 
1793 		assert(tracker->buf != NULL);
1794 		STAILQ_REMOVE_HEAD(&group->free_trackers, link);
1795 		assert(STAILQ_FIRST(&group->free_trackers) != tracker);
1796 
1797 		io_uring_buf_ring_add(group->buf_ring, tracker->buf, tracker->buflen, tracker->id, mask, count);
1798 		count++;
1799 		tracker = STAILQ_FIRST(&group->free_trackers);
1800 	}
1801 
1802 	if (count > 0) {
1803 		group->buf_ring_count += count;
1804 		io_uring_buf_ring_advance(group->buf_ring, count);
1805 	}
1806 }
1807 
1808 static int
1809 uring_sock_group_impl_poll(struct spdk_sock_group_impl *_group, int max_events,
1810 			   struct spdk_sock **socks)
1811 {
1812 	struct spdk_uring_sock_group_impl *group = __uring_group_impl(_group);
1813 	int count, ret;
1814 	int to_complete, to_submit;
1815 	struct spdk_sock *_sock, *tmp;
1816 	struct spdk_uring_sock *sock;
1817 
1818 	if (spdk_likely(socks)) {
1819 		TAILQ_FOREACH_SAFE(_sock, &group->base.socks, link, tmp) {
1820 			sock = __uring_sock(_sock);
1821 			if (spdk_unlikely(sock->connection_status)) {
1822 				continue;
1823 			}
1824 			_sock_flush(_sock);
1825 		}
1826 	}
1827 
1828 	/* Try to re-populate the io_uring's buffer pool using user-provided buffers */
1829 	uring_sock_group_populate_buf_ring(group);
1830 
1831 	to_submit = group->io_queued;
1832 
1833 	/* For network I/O, it cannot be set with O_DIRECT, so we do not need to call spdk_io_uring_enter */
1834 	if (to_submit > 0) {
1835 		/* If there are I/O to submit, use io_uring_submit here.
1836 		 * It will automatically call io_uring_enter appropriately. */
1837 		ret = io_uring_submit(&group->uring);
1838 		if (ret < 0) {
1839 			return 1;
1840 		}
1841 		group->io_queued = 0;
1842 		group->io_inflight += to_submit;
1843 		group->io_avail -= to_submit;
1844 	}
1845 
1846 	count = 0;
1847 	to_complete = group->io_inflight;
1848 	if (to_complete > 0 || !TAILQ_EMPTY(&group->pending_recv)) {
1849 		count = sock_uring_group_reap(group, to_complete, max_events, socks);
1850 	}
1851 
1852 	return count;
1853 }
1854 
1855 static int
1856 uring_sock_group_impl_remove_sock(struct spdk_sock_group_impl *_group,
1857 				  struct spdk_sock *_sock)
1858 {
1859 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1860 	struct spdk_uring_sock_group_impl *group = __uring_group_impl(_group);
1861 
1862 	sock->pending_group_remove = true;
1863 
1864 	if (sock->write_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE) {
1865 		_sock_prep_cancel_task(_sock, &sock->write_task);
1866 		/* Since spdk_sock_group_remove_sock is not asynchronous interface, so
1867 		 * currently can use a while loop here. */
1868 		while ((sock->write_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE) ||
1869 		       (sock->cancel_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE)) {
1870 			uring_sock_group_impl_poll(_group, 32, NULL);
1871 		}
1872 	}
1873 
1874 	if (sock->read_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE) {
1875 		_sock_prep_cancel_task(_sock, &sock->read_task);
1876 		/* Since spdk_sock_group_remove_sock is not asynchronous interface, so
1877 		 * currently can use a while loop here. */
1878 		while ((sock->read_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE) ||
1879 		       (sock->cancel_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE)) {
1880 			uring_sock_group_impl_poll(_group, 32, NULL);
1881 		}
1882 	}
1883 
1884 	if (sock->errqueue_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE) {
1885 		_sock_prep_cancel_task(_sock, &sock->errqueue_task);
1886 		/* Since spdk_sock_group_remove_sock is not asynchronous interface, so
1887 		 * currently can use a while loop here. */
1888 		while ((sock->errqueue_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE) ||
1889 		       (sock->cancel_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE)) {
1890 			uring_sock_group_impl_poll(_group, 32, NULL);
1891 		}
1892 	}
1893 
1894 	/* Make sure the cancelling the tasks above didn't cause sending new requests */
1895 	assert(sock->write_task.status == SPDK_URING_SOCK_TASK_NOT_IN_USE);
1896 	assert(sock->read_task.status == SPDK_URING_SOCK_TASK_NOT_IN_USE);
1897 	assert(sock->errqueue_task.status == SPDK_URING_SOCK_TASK_NOT_IN_USE);
1898 
1899 	if (sock->pending_recv) {
1900 		TAILQ_REMOVE(&group->pending_recv, sock, link);
1901 		sock->pending_recv = false;
1902 	}
1903 	assert(sock->pending_recv == false);
1904 
1905 	/* We have no way to handle this case. We could let the user read this
1906 	 * buffer, but the buffer came from a group and we have lost the association
1907 	 * to that so we couldn't release it. */
1908 	assert(STAILQ_EMPTY(&sock->recv_stream));
1909 
1910 	if (sock->placement_id != -1) {
1911 		spdk_sock_map_release(&g_map, sock->placement_id);
1912 	}
1913 
1914 	sock->pending_group_remove = false;
1915 	sock->group = NULL;
1916 	return 0;
1917 }
1918 
1919 static int
1920 uring_sock_group_impl_close(struct spdk_sock_group_impl *_group)
1921 {
1922 	struct spdk_uring_sock_group_impl *group = __uring_group_impl(_group);
1923 
1924 	/* try to reap all the active I/O */
1925 	while (group->io_inflight) {
1926 		uring_sock_group_impl_poll(_group, 32, NULL);
1927 	}
1928 	assert(group->io_inflight == 0);
1929 	assert(group->io_avail == SPDK_SOCK_GROUP_QUEUE_DEPTH);
1930 
1931 	uring_sock_group_impl_buf_pool_free(group);
1932 
1933 	io_uring_queue_exit(&group->uring);
1934 
1935 	if (g_spdk_uring_sock_impl_opts.enable_placement_id == PLACEMENT_CPU) {
1936 		spdk_sock_map_release(&g_map, spdk_env_get_current_core());
1937 	}
1938 
1939 	free(group);
1940 	return 0;
1941 }
1942 
1943 static int
1944 uring_sock_flush(struct spdk_sock *_sock)
1945 {
1946 	struct spdk_uring_sock *sock = __uring_sock(_sock);
1947 	struct msghdr msg = {};
1948 	struct iovec iovs[IOV_BATCH_SIZE];
1949 	int iovcnt;
1950 	ssize_t rc;
1951 	int flags = sock->zcopy_send_flags;
1952 	int retval;
1953 	bool is_zcopy = false;
1954 	struct spdk_uring_task *task = &sock->errqueue_task;
1955 
1956 	/* Can't flush from within a callback or we end up with recursive calls */
1957 	if (_sock->cb_cnt > 0) {
1958 		errno = EAGAIN;
1959 		return -1;
1960 	}
1961 
1962 	/* Can't flush while a write is already outstanding */
1963 	if (sock->write_task.status != SPDK_URING_SOCK_TASK_NOT_IN_USE) {
1964 		errno = EAGAIN;
1965 		return -1;
1966 	}
1967 
1968 	/* Gather an iov */
1969 	iovcnt = spdk_sock_prep_reqs(_sock, iovs, 0, NULL, &flags);
1970 	if (iovcnt == 0) {
1971 		/* Nothing to send */
1972 		return 0;
1973 	}
1974 
1975 	/* Perform the vectored write */
1976 	msg.msg_iov = iovs;
1977 	msg.msg_iovlen = iovcnt;
1978 	rc = sendmsg(sock->fd, &msg, flags | MSG_DONTWAIT);
1979 	if (rc <= 0) {
1980 		if (rc == 0 || errno == EAGAIN || errno == EWOULDBLOCK || (errno == ENOBUFS && sock->zcopy)) {
1981 			errno = EAGAIN;
1982 		}
1983 		return -1;
1984 	}
1985 
1986 #ifdef SPDK_ZEROCOPY
1987 	is_zcopy = flags & MSG_ZEROCOPY;
1988 #endif
1989 	retval = sock_complete_write_reqs(_sock, rc, is_zcopy);
1990 	if (retval < 0) {
1991 		/* if the socket is closed, return to avoid heap-use-after-free error */
1992 		errno = ENOTCONN;
1993 		return -1;
1994 	}
1995 
1996 #ifdef SPDK_ZEROCOPY
1997 	/* At least do once to check zero copy case */
1998 	if (sock->zcopy && !TAILQ_EMPTY(&_sock->pending_reqs)) {
1999 		retval = recvmsg(sock->fd, &task->msg, MSG_ERRQUEUE);
2000 		if (retval < 0) {
2001 			if (errno == EWOULDBLOCK || errno == EAGAIN) {
2002 				return rc;
2003 			}
2004 		}
2005 		_sock_check_zcopy(_sock, retval);;
2006 	}
2007 #endif
2008 
2009 	return rc;
2010 }
2011 
2012 static struct spdk_net_impl g_uring_net_impl = {
2013 	.name		= "uring",
2014 	.getaddr	= uring_sock_getaddr,
2015 	.connect	= uring_sock_connect,
2016 	.listen		= uring_sock_listen,
2017 	.accept		= uring_sock_accept,
2018 	.close		= uring_sock_close,
2019 	.recv		= uring_sock_recv,
2020 	.readv		= uring_sock_readv,
2021 	.writev		= uring_sock_writev,
2022 	.recv_next	= uring_sock_recv_next,
2023 	.writev_async	= uring_sock_writev_async,
2024 	.flush          = uring_sock_flush,
2025 	.set_recvlowat	= uring_sock_set_recvlowat,
2026 	.set_recvbuf	= uring_sock_set_recvbuf,
2027 	.set_sendbuf	= uring_sock_set_sendbuf,
2028 	.is_ipv6	= uring_sock_is_ipv6,
2029 	.is_ipv4	= uring_sock_is_ipv4,
2030 	.is_connected   = uring_sock_is_connected,
2031 	.group_impl_get_optimal	= uring_sock_group_impl_get_optimal,
2032 	.group_impl_create	= uring_sock_group_impl_create,
2033 	.group_impl_add_sock	= uring_sock_group_impl_add_sock,
2034 	.group_impl_remove_sock	= uring_sock_group_impl_remove_sock,
2035 	.group_impl_poll	= uring_sock_group_impl_poll,
2036 	.group_impl_close	= uring_sock_group_impl_close,
2037 	.get_opts		= uring_sock_impl_get_opts,
2038 	.set_opts		= uring_sock_impl_set_opts,
2039 };
2040 
2041 SPDK_NET_IMPL_REGISTER(uring, &g_uring_net_impl, DEFAULT_SOCK_PRIORITY + 2);
2042