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70041088 | 1 | /* |
1e2b44e7 | 2 | * Copyright (c) 2006, 2018 Oracle and/or its affiliates. All rights reserved. |
70041088 AG |
3 | * |
4 | * This software is available to you under a choice of one of two | |
5 | * licenses. You may choose to be licensed under the terms of the GNU | |
6 | * General Public License (GPL) Version 2, available from the file | |
7 | * COPYING in the main directory of this source tree, or the | |
8 | * OpenIB.org BSD license below: | |
9 | * | |
10 | * Redistribution and use in source and binary forms, with or | |
11 | * without modification, are permitted provided that the following | |
12 | * conditions are met: | |
13 | * | |
14 | * - Redistributions of source code must retain the above | |
15 | * copyright notice, this list of conditions and the following | |
16 | * disclaimer. | |
17 | * | |
18 | * - Redistributions in binary form must reproduce the above | |
19 | * copyright notice, this list of conditions and the following | |
20 | * disclaimer in the documentation and/or other materials | |
21 | * provided with the distribution. | |
22 | * | |
23 | * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, | |
24 | * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF | |
25 | * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND | |
26 | * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS | |
27 | * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN | |
28 | * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN | |
29 | * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE | |
30 | * SOFTWARE. | |
31 | * | |
32 | */ | |
33 | #include <linux/kernel.h> | |
5a0e3ad6 | 34 | #include <linux/slab.h> |
70041088 | 35 | #include <linux/in.h> |
3a9a231d | 36 | #include <linux/module.h> |
70041088 | 37 | #include <net/tcp.h> |
467fa153 SV |
38 | #include <net/net_namespace.h> |
39 | #include <net/netns/generic.h> | |
eee2fa6a | 40 | #include <net/addrconf.h> |
70041088 AG |
41 | |
42 | #include "rds.h" | |
43 | #include "tcp.h" | |
44 | ||
45 | /* only for info exporting */ | |
46 | static DEFINE_SPINLOCK(rds_tcp_tc_list_lock); | |
47 | static LIST_HEAD(rds_tcp_tc_list); | |
1e2b44e7 KCP |
48 | |
49 | /* rds_tcp_tc_count counts only IPv4 connections. | |
50 | * rds6_tcp_tc_count counts both IPv4 and IPv6 connections. | |
51 | */ | |
ff51bf84 | 52 | static unsigned int rds_tcp_tc_count; |
e65d4d96 | 53 | #if IS_ENABLED(CONFIG_IPV6) |
1e2b44e7 | 54 | static unsigned int rds6_tcp_tc_count; |
e65d4d96 | 55 | #endif |
70041088 AG |
56 | |
57 | /* Track rds_tcp_connection structs so they can be cleaned up */ | |
58 | static DEFINE_SPINLOCK(rds_tcp_conn_lock); | |
59 | static LIST_HEAD(rds_tcp_conn_list); | |
ebeeb1ad | 60 | static atomic_t rds_tcp_unloading = ATOMIC_INIT(0); |
70041088 AG |
61 | |
62 | static struct kmem_cache *rds_tcp_conn_slab; | |
63 | ||
c6a58ffe | 64 | static int rds_tcp_skbuf_handler(struct ctl_table *ctl, int write, |
32927393 | 65 | void *buffer, size_t *lenp, loff_t *fpos); |
c6a58ffe | 66 | |
af73e72d WY |
67 | static int rds_tcp_min_sndbuf = SOCK_MIN_SNDBUF; |
68 | static int rds_tcp_min_rcvbuf = SOCK_MIN_RCVBUF; | |
c6a58ffe SV |
69 | |
70 | static struct ctl_table rds_tcp_sysctl_table[] = { | |
71 | #define RDS_TCP_SNDBUF 0 | |
72 | { | |
73 | .procname = "rds_tcp_sndbuf", | |
74 | /* data is per-net pointer */ | |
75 | .maxlen = sizeof(int), | |
76 | .mode = 0644, | |
77 | .proc_handler = rds_tcp_skbuf_handler, | |
78 | .extra1 = &rds_tcp_min_sndbuf, | |
79 | }, | |
80 | #define RDS_TCP_RCVBUF 1 | |
81 | { | |
82 | .procname = "rds_tcp_rcvbuf", | |
83 | /* data is per-net pointer */ | |
84 | .maxlen = sizeof(int), | |
85 | .mode = 0644, | |
86 | .proc_handler = rds_tcp_skbuf_handler, | |
87 | .extra1 = &rds_tcp_min_rcvbuf, | |
88 | }, | |
89 | { } | |
90 | }; | |
91 | ||
b589513e | 92 | u32 rds_tcp_write_seq(struct rds_tcp_connection *tc) |
70041088 | 93 | { |
b589513e SV |
94 | /* seq# of the last byte of data in tcp send buffer */ |
95 | return tcp_sk(tc->t_sock->sk)->write_seq; | |
70041088 AG |
96 | } |
97 | ||
98 | u32 rds_tcp_snd_una(struct rds_tcp_connection *tc) | |
99 | { | |
100 | return tcp_sk(tc->t_sock->sk)->snd_una; | |
101 | } | |
102 | ||
103 | void rds_tcp_restore_callbacks(struct socket *sock, | |
104 | struct rds_tcp_connection *tc) | |
105 | { | |
106 | rdsdebug("restoring sock %p callbacks from tc %p\n", sock, tc); | |
107 | write_lock_bh(&sock->sk->sk_callback_lock); | |
108 | ||
109 | /* done under the callback_lock to serialize with write_space */ | |
110 | spin_lock(&rds_tcp_tc_list_lock); | |
111 | list_del_init(&tc->t_list_item); | |
e65d4d96 | 112 | #if IS_ENABLED(CONFIG_IPV6) |
1e2b44e7 | 113 | rds6_tcp_tc_count--; |
e65d4d96 | 114 | #endif |
1e2b44e7 KCP |
115 | if (!tc->t_cpath->cp_conn->c_isv6) |
116 | rds_tcp_tc_count--; | |
70041088 AG |
117 | spin_unlock(&rds_tcp_tc_list_lock); |
118 | ||
119 | tc->t_sock = NULL; | |
120 | ||
121 | sock->sk->sk_write_space = tc->t_orig_write_space; | |
122 | sock->sk->sk_data_ready = tc->t_orig_data_ready; | |
123 | sock->sk->sk_state_change = tc->t_orig_state_change; | |
124 | sock->sk->sk_user_data = NULL; | |
125 | ||
126 | write_unlock_bh(&sock->sk->sk_callback_lock); | |
127 | } | |
128 | ||
129 | /* | |
335b48d9 SV |
130 | * rds_tcp_reset_callbacks() switches the to the new sock and |
131 | * returns the existing tc->t_sock. | |
132 | * | |
133 | * The only functions that set tc->t_sock are rds_tcp_set_callbacks | |
134 | * and rds_tcp_reset_callbacks. Send and receive trust that | |
135 | * it is set. The absence of RDS_CONN_UP bit protects those paths | |
136 | * from being called while it isn't set. | |
137 | */ | |
138 | void rds_tcp_reset_callbacks(struct socket *sock, | |
ea3b1ea5 | 139 | struct rds_conn_path *cp) |
335b48d9 | 140 | { |
ea3b1ea5 | 141 | struct rds_tcp_connection *tc = cp->cp_transport_data; |
335b48d9 SV |
142 | struct socket *osock = tc->t_sock; |
143 | ||
144 | if (!osock) | |
145 | goto newsock; | |
146 | ||
147 | /* Need to resolve a duelling SYN between peers. | |
148 | * We have an outstanding SYN to this peer, which may | |
149 | * potentially have transitioned to the RDS_CONN_UP state, | |
150 | * so we must quiesce any send threads before resetting | |
ea3b1ea5 SV |
151 | * cp_transport_data. We quiesce these threads by setting |
152 | * cp_state to something other than RDS_CONN_UP, and then | |
335b48d9 SV |
153 | * waiting for any existing threads in rds_send_xmit to |
154 | * complete release_in_xmit(). (Subsequent threads entering | |
155 | * rds_send_xmit() will bail on !rds_conn_up(). | |
9c79440e SV |
156 | * |
157 | * However an incoming syn-ack at this point would end up | |
158 | * marking the conn as RDS_CONN_UP, and would again permit | |
159 | * rds_send_xmi() threads through, so ideally we would | |
160 | * synchronize on RDS_CONN_UP after lock_sock(), but cannot | |
161 | * do that: waiting on !RDS_IN_XMIT after lock_sock() may | |
162 | * end up deadlocking with tcp_sendmsg(), and the RDS_IN_XMIT | |
163 | * would not get set. As a result, we set c_state to | |
164 | * RDS_CONN_RESETTTING, to ensure that rds_tcp_state_change | |
165 | * cannot mark rds_conn_path_up() in the window before lock_sock() | |
335b48d9 | 166 | */ |
ea3b1ea5 SV |
167 | atomic_set(&cp->cp_state, RDS_CONN_RESETTING); |
168 | wait_event(cp->cp_waitq, !test_bit(RDS_IN_XMIT, &cp->cp_flags)); | |
335b48d9 | 169 | /* reset receive side state for rds_tcp_data_recv() for osock */ |
ac3615e7 SV |
170 | cancel_delayed_work_sync(&cp->cp_send_w); |
171 | cancel_delayed_work_sync(&cp->cp_recv_w); | |
a91b750f | 172 | lock_sock(osock->sk); |
335b48d9 SV |
173 | if (tc->t_tinc) { |
174 | rds_inc_put(&tc->t_tinc->ti_inc); | |
175 | tc->t_tinc = NULL; | |
176 | } | |
177 | tc->t_tinc_hdr_rem = sizeof(struct rds_header); | |
178 | tc->t_tinc_data_rem = 0; | |
ac3615e7 | 179 | rds_tcp_restore_callbacks(osock, tc); |
335b48d9 SV |
180 | release_sock(osock->sk); |
181 | sock_release(osock); | |
182 | newsock: | |
ea3b1ea5 | 183 | rds_send_path_reset(cp); |
335b48d9 | 184 | lock_sock(sock->sk); |
ac3615e7 | 185 | rds_tcp_set_callbacks(sock, cp); |
335b48d9 SV |
186 | release_sock(sock->sk); |
187 | } | |
188 | ||
189 | /* Add tc to rds_tcp_tc_list and set tc->t_sock. See comments | |
190 | * above rds_tcp_reset_callbacks for notes about synchronization | |
191 | * with data path | |
70041088 | 192 | */ |
ea3b1ea5 | 193 | void rds_tcp_set_callbacks(struct socket *sock, struct rds_conn_path *cp) |
70041088 | 194 | { |
ea3b1ea5 | 195 | struct rds_tcp_connection *tc = cp->cp_transport_data; |
70041088 AG |
196 | |
197 | rdsdebug("setting sock %p callbacks to tc %p\n", sock, tc); | |
198 | write_lock_bh(&sock->sk->sk_callback_lock); | |
199 | ||
200 | /* done under the callback_lock to serialize with write_space */ | |
201 | spin_lock(&rds_tcp_tc_list_lock); | |
202 | list_add_tail(&tc->t_list_item, &rds_tcp_tc_list); | |
e65d4d96 | 203 | #if IS_ENABLED(CONFIG_IPV6) |
1e2b44e7 | 204 | rds6_tcp_tc_count++; |
e65d4d96 | 205 | #endif |
1e2b44e7 KCP |
206 | if (!tc->t_cpath->cp_conn->c_isv6) |
207 | rds_tcp_tc_count++; | |
70041088 AG |
208 | spin_unlock(&rds_tcp_tc_list_lock); |
209 | ||
210 | /* accepted sockets need our listen data ready undone */ | |
211 | if (sock->sk->sk_data_ready == rds_tcp_listen_data_ready) | |
212 | sock->sk->sk_data_ready = sock->sk->sk_user_data; | |
213 | ||
214 | tc->t_sock = sock; | |
ea3b1ea5 | 215 | tc->t_cpath = cp; |
70041088 AG |
216 | tc->t_orig_data_ready = sock->sk->sk_data_ready; |
217 | tc->t_orig_write_space = sock->sk->sk_write_space; | |
218 | tc->t_orig_state_change = sock->sk->sk_state_change; | |
219 | ||
ea3b1ea5 | 220 | sock->sk->sk_user_data = cp; |
70041088 AG |
221 | sock->sk->sk_data_ready = rds_tcp_data_ready; |
222 | sock->sk->sk_write_space = rds_tcp_write_space; | |
223 | sock->sk->sk_state_change = rds_tcp_state_change; | |
224 | ||
225 | write_unlock_bh(&sock->sk->sk_callback_lock); | |
226 | } | |
227 | ||
1e2b44e7 KCP |
228 | /* Handle RDS_INFO_TCP_SOCKETS socket option. It only returns IPv4 |
229 | * connections for backward compatibility. | |
230 | */ | |
1ac507d4 | 231 | static void rds_tcp_tc_info(struct socket *rds_sock, unsigned int len, |
70041088 AG |
232 | struct rds_info_iterator *iter, |
233 | struct rds_info_lengths *lens) | |
234 | { | |
235 | struct rds_info_tcp_socket tsinfo; | |
236 | struct rds_tcp_connection *tc; | |
237 | unsigned long flags; | |
70041088 AG |
238 | |
239 | spin_lock_irqsave(&rds_tcp_tc_list_lock, flags); | |
240 | ||
241 | if (len / sizeof(tsinfo) < rds_tcp_tc_count) | |
242 | goto out; | |
243 | ||
244 | list_for_each_entry(tc, &rds_tcp_tc_list, t_list_item) { | |
1e2b44e7 | 245 | struct inet_sock *inet = inet_sk(tc->t_sock->sk); |
70041088 | 246 | |
1e2b44e7 KCP |
247 | if (tc->t_cpath->cp_conn->c_isv6) |
248 | continue; | |
249 | ||
250 | tsinfo.local_addr = inet->inet_saddr; | |
251 | tsinfo.local_port = inet->inet_sport; | |
252 | tsinfo.peer_addr = inet->inet_daddr; | |
253 | tsinfo.peer_port = inet->inet_dport; | |
70041088 AG |
254 | |
255 | tsinfo.hdr_rem = tc->t_tinc_hdr_rem; | |
256 | tsinfo.data_rem = tc->t_tinc_data_rem; | |
257 | tsinfo.last_sent_nxt = tc->t_last_sent_nxt; | |
258 | tsinfo.last_expected_una = tc->t_last_expected_una; | |
259 | tsinfo.last_seen_una = tc->t_last_seen_una; | |
3eb45036 | 260 | tsinfo.tos = tc->t_cpath->cp_conn->c_tos; |
70041088 AG |
261 | |
262 | rds_info_copy(iter, &tsinfo, sizeof(tsinfo)); | |
263 | } | |
264 | ||
265 | out: | |
266 | lens->nr = rds_tcp_tc_count; | |
267 | lens->each = sizeof(tsinfo); | |
268 | ||
269 | spin_unlock_irqrestore(&rds_tcp_tc_list_lock, flags); | |
270 | } | |
271 | ||
e65d4d96 | 272 | #if IS_ENABLED(CONFIG_IPV6) |
b7ff8b10 KCP |
273 | /* Handle RDS6_INFO_TCP_SOCKETS socket option. It returns both IPv4 and |
274 | * IPv6 connections. IPv4 connection address is returned in an IPv4 mapped | |
275 | * address. | |
276 | */ | |
277 | static void rds6_tcp_tc_info(struct socket *sock, unsigned int len, | |
278 | struct rds_info_iterator *iter, | |
279 | struct rds_info_lengths *lens) | |
280 | { | |
281 | struct rds6_info_tcp_socket tsinfo6; | |
282 | struct rds_tcp_connection *tc; | |
283 | unsigned long flags; | |
284 | ||
285 | spin_lock_irqsave(&rds_tcp_tc_list_lock, flags); | |
286 | ||
287 | if (len / sizeof(tsinfo6) < rds6_tcp_tc_count) | |
288 | goto out; | |
289 | ||
290 | list_for_each_entry(tc, &rds_tcp_tc_list, t_list_item) { | |
291 | struct sock *sk = tc->t_sock->sk; | |
292 | struct inet_sock *inet = inet_sk(sk); | |
293 | ||
294 | tsinfo6.local_addr = sk->sk_v6_rcv_saddr; | |
295 | tsinfo6.local_port = inet->inet_sport; | |
296 | tsinfo6.peer_addr = sk->sk_v6_daddr; | |
297 | tsinfo6.peer_port = inet->inet_dport; | |
298 | ||
299 | tsinfo6.hdr_rem = tc->t_tinc_hdr_rem; | |
300 | tsinfo6.data_rem = tc->t_tinc_data_rem; | |
301 | tsinfo6.last_sent_nxt = tc->t_last_sent_nxt; | |
302 | tsinfo6.last_expected_una = tc->t_last_expected_una; | |
303 | tsinfo6.last_seen_una = tc->t_last_seen_una; | |
304 | ||
305 | rds_info_copy(iter, &tsinfo6, sizeof(tsinfo6)); | |
306 | } | |
307 | ||
308 | out: | |
309 | lens->nr = rds6_tcp_tc_count; | |
310 | lens->each = sizeof(tsinfo6); | |
311 | ||
312 | spin_unlock_irqrestore(&rds_tcp_tc_list_lock, flags); | |
313 | } | |
e65d4d96 | 314 | #endif |
b7ff8b10 | 315 | |
aced3ce5 RS |
316 | int rds_tcp_laddr_check(struct net *net, const struct in6_addr *addr, |
317 | __u32 scope_id) | |
70041088 | 318 | { |
eee2fa6a | 319 | struct net_device *dev = NULL; |
e65d4d96 | 320 | #if IS_ENABLED(CONFIG_IPV6) |
eee2fa6a | 321 | int ret; |
e65d4d96 | 322 | #endif |
eee2fa6a KCP |
323 | |
324 | if (ipv6_addr_v4mapped(addr)) { | |
325 | if (inet_addr_type(net, addr->s6_addr32[3]) == RTN_LOCAL) | |
326 | return 0; | |
327 | return -EADDRNOTAVAIL; | |
328 | } | |
329 | ||
330 | /* If the scope_id is specified, check only those addresses | |
331 | * hosted on the specified interface. | |
332 | */ | |
333 | if (scope_id != 0) { | |
334 | rcu_read_lock(); | |
335 | dev = dev_get_by_index_rcu(net, scope_id); | |
336 | /* scope_id is not valid... */ | |
337 | if (!dev) { | |
338 | rcu_read_unlock(); | |
339 | return -EADDRNOTAVAIL; | |
340 | } | |
341 | rcu_read_unlock(); | |
342 | } | |
e65d4d96 | 343 | #if IS_ENABLED(CONFIG_IPV6) |
eee2fa6a KCP |
344 | ret = ipv6_chk_addr(net, addr, dev, 0); |
345 | if (ret) | |
70041088 | 346 | return 0; |
e65d4d96 | 347 | #endif |
70041088 AG |
348 | return -EADDRNOTAVAIL; |
349 | } | |
350 | ||
66261da1 SV |
351 | static void rds_tcp_conn_free(void *arg) |
352 | { | |
353 | struct rds_tcp_connection *tc = arg; | |
53d0e83f | 354 | unsigned long flags; |
66261da1 SV |
355 | |
356 | rdsdebug("freeing tc %p\n", tc); | |
357 | ||
53d0e83f | 358 | spin_lock_irqsave(&rds_tcp_conn_lock, flags); |
66261da1 SV |
359 | if (!tc->t_tcp_node_detached) |
360 | list_del(&tc->t_tcp_node); | |
53d0e83f | 361 | spin_unlock_irqrestore(&rds_tcp_conn_lock, flags); |
66261da1 SV |
362 | |
363 | kmem_cache_free(rds_tcp_conn_slab, tc); | |
364 | } | |
365 | ||
70041088 AG |
366 | static int rds_tcp_conn_alloc(struct rds_connection *conn, gfp_t gfp) |
367 | { | |
368 | struct rds_tcp_connection *tc; | |
66261da1 SV |
369 | int i, j; |
370 | int ret = 0; | |
70041088 | 371 | |
02105b2c SV |
372 | for (i = 0; i < RDS_MPATH_WORKERS; i++) { |
373 | tc = kmem_cache_alloc(rds_tcp_conn_slab, gfp); | |
66261da1 SV |
374 | if (!tc) { |
375 | ret = -ENOMEM; | |
ebeeb1ad | 376 | goto fail; |
66261da1 | 377 | } |
02105b2c SV |
378 | mutex_init(&tc->t_conn_path_lock); |
379 | tc->t_sock = NULL; | |
380 | tc->t_tinc = NULL; | |
381 | tc->t_tinc_hdr_rem = sizeof(struct rds_header); | |
382 | tc->t_tinc_data_rem = 0; | |
70041088 | 383 | |
02105b2c SV |
384 | conn->c_path[i].cp_transport_data = tc; |
385 | tc->t_cpath = &conn->c_path[i]; | |
ebeeb1ad | 386 | tc->t_tcp_node_detached = true; |
70041088 | 387 | |
02105b2c SV |
388 | rdsdebug("rds_conn_path [%d] tc %p\n", i, |
389 | conn->c_path[i].cp_transport_data); | |
390 | } | |
53d0e83f | 391 | spin_lock_irq(&rds_tcp_conn_lock); |
ebeeb1ad SV |
392 | for (i = 0; i < RDS_MPATH_WORKERS; i++) { |
393 | tc = conn->c_path[i].cp_transport_data; | |
394 | tc->t_tcp_node_detached = false; | |
395 | list_add_tail(&tc->t_tcp_node, &rds_tcp_conn_list); | |
396 | } | |
53d0e83f | 397 | spin_unlock_irq(&rds_tcp_conn_lock); |
ebeeb1ad | 398 | fail: |
66261da1 SV |
399 | if (ret) { |
400 | for (j = 0; j < i; j++) | |
401 | rds_tcp_conn_free(conn->c_path[j].cp_transport_data); | |
402 | } | |
403 | return ret; | |
70041088 AG |
404 | } |
405 | ||
afb4164d SV |
406 | static bool list_has_conn(struct list_head *list, struct rds_connection *conn) |
407 | { | |
408 | struct rds_tcp_connection *tc, *_tc; | |
409 | ||
410 | list_for_each_entry_safe(tc, _tc, list, t_tcp_node) { | |
411 | if (tc->t_cpath->cp_conn == conn) | |
412 | return true; | |
413 | } | |
414 | return false; | |
415 | } | |
416 | ||
ebeeb1ad SV |
417 | static void rds_tcp_set_unloading(void) |
418 | { | |
419 | atomic_set(&rds_tcp_unloading, 1); | |
420 | } | |
421 | ||
422 | static bool rds_tcp_is_unloading(struct rds_connection *conn) | |
423 | { | |
424 | return atomic_read(&rds_tcp_unloading) != 0; | |
425 | } | |
426 | ||
70041088 AG |
427 | static void rds_tcp_destroy_conns(void) |
428 | { | |
429 | struct rds_tcp_connection *tc, *_tc; | |
430 | LIST_HEAD(tmp_list); | |
431 | ||
432 | /* avoid calling conn_destroy with irqs off */ | |
433 | spin_lock_irq(&rds_tcp_conn_lock); | |
afb4164d SV |
434 | list_for_each_entry_safe(tc, _tc, &rds_tcp_conn_list, t_tcp_node) { |
435 | if (!list_has_conn(&tmp_list, tc->t_cpath->cp_conn)) | |
436 | list_move_tail(&tc->t_tcp_node, &tmp_list); | |
437 | } | |
70041088 AG |
438 | spin_unlock_irq(&rds_tcp_conn_lock); |
439 | ||
26e4e6bb | 440 | list_for_each_entry_safe(tc, _tc, &tmp_list, t_tcp_node) |
02105b2c | 441 | rds_conn_destroy(tc->t_cpath->cp_conn); |
70041088 AG |
442 | } |
443 | ||
467fa153 | 444 | static void rds_tcp_exit(void); |
70041088 | 445 | |
56dc8bce SS |
446 | static u8 rds_tcp_get_tos_map(u8 tos) |
447 | { | |
448 | /* all user tos mapped to default 0 for TCP transport */ | |
449 | return 0; | |
450 | } | |
451 | ||
70041088 AG |
452 | struct rds_transport rds_tcp_transport = { |
453 | .laddr_check = rds_tcp_laddr_check, | |
226f7a7d SV |
454 | .xmit_path_prepare = rds_tcp_xmit_path_prepare, |
455 | .xmit_path_complete = rds_tcp_xmit_path_complete, | |
70041088 | 456 | .xmit = rds_tcp_xmit, |
2da43c4a | 457 | .recv_path = rds_tcp_recv_path, |
70041088 AG |
458 | .conn_alloc = rds_tcp_conn_alloc, |
459 | .conn_free = rds_tcp_conn_free, | |
b04e8554 | 460 | .conn_path_connect = rds_tcp_conn_path_connect, |
226f7a7d | 461 | .conn_path_shutdown = rds_tcp_conn_path_shutdown, |
70041088 | 462 | .inc_copy_to_user = rds_tcp_inc_copy_to_user, |
70041088 AG |
463 | .inc_free = rds_tcp_inc_free, |
464 | .stats_info_copy = rds_tcp_stats_info_copy, | |
465 | .exit = rds_tcp_exit, | |
56dc8bce | 466 | .get_tos_map = rds_tcp_get_tos_map, |
70041088 AG |
467 | .t_owner = THIS_MODULE, |
468 | .t_name = "tcp", | |
335776bd | 469 | .t_type = RDS_TRANS_TCP, |
70041088 | 470 | .t_prefer_loopback = 1, |
5916e2c1 | 471 | .t_mp_capable = 1, |
ebeeb1ad | 472 | .t_unloading = rds_tcp_is_unloading, |
70041088 AG |
473 | }; |
474 | ||
c7d03a00 | 475 | static unsigned int rds_tcp_netid; |
467fa153 SV |
476 | |
477 | /* per-network namespace private data for this module */ | |
478 | struct rds_tcp_net { | |
479 | struct socket *rds_tcp_listen_sock; | |
480 | struct work_struct rds_tcp_accept_w; | |
c6a58ffe SV |
481 | struct ctl_table_header *rds_tcp_sysctl; |
482 | struct ctl_table *ctl_table; | |
483 | int sndbuf_size; | |
484 | int rcvbuf_size; | |
467fa153 SV |
485 | }; |
486 | ||
c6a58ffe SV |
487 | /* All module specific customizations to the RDS-TCP socket should be done in |
488 | * rds_tcp_tune() and applied after socket creation. | |
489 | */ | |
6997fbd7 | 490 | bool rds_tcp_tune(struct socket *sock) |
c6a58ffe SV |
491 | { |
492 | struct sock *sk = sock->sk; | |
493 | struct net *net = sock_net(sk); | |
6997fbd7 | 494 | struct rds_tcp_net *rtn; |
c6a58ffe | 495 | |
12abc5ee | 496 | tcp_sock_set_nodelay(sock->sk); |
c6a58ffe | 497 | lock_sock(sk); |
3a58f13a TH |
498 | /* TCP timer functions might access net namespace even after |
499 | * a process which created this net namespace terminated. | |
500 | */ | |
501 | if (!sk->sk_net_refcnt) { | |
6997fbd7 TH |
502 | if (!maybe_get_net(net)) { |
503 | release_sock(sk); | |
504 | return false; | |
505 | } | |
0cafd77d ED |
506 | /* Update ns_tracker to current stack trace and refcounted tracker */ |
507 | __netns_tracker_free(net, &sk->ns_tracker, false); | |
508 | ||
3a58f13a | 509 | sk->sk_net_refcnt = 1; |
6997fbd7 | 510 | netns_tracker_alloc(net, &sk->ns_tracker, GFP_KERNEL); |
3a58f13a TH |
511 | sock_inuse_add(net, 1); |
512 | } | |
6997fbd7 | 513 | rtn = net_generic(net, rds_tcp_netid); |
c6a58ffe SV |
514 | if (rtn->sndbuf_size > 0) { |
515 | sk->sk_sndbuf = rtn->sndbuf_size; | |
516 | sk->sk_userlocks |= SOCK_SNDBUF_LOCK; | |
517 | } | |
518 | if (rtn->rcvbuf_size > 0) { | |
19f36edf | 519 | sk->sk_rcvbuf = rtn->rcvbuf_size; |
c6a58ffe SV |
520 | sk->sk_userlocks |= SOCK_RCVBUF_LOCK; |
521 | } | |
522 | release_sock(sk); | |
6997fbd7 | 523 | return true; |
c6a58ffe SV |
524 | } |
525 | ||
467fa153 SV |
526 | static void rds_tcp_accept_worker(struct work_struct *work) |
527 | { | |
528 | struct rds_tcp_net *rtn = container_of(work, | |
529 | struct rds_tcp_net, | |
530 | rds_tcp_accept_w); | |
531 | ||
532 | while (rds_tcp_accept_one(rtn->rds_tcp_listen_sock) == 0) | |
533 | cond_resched(); | |
534 | } | |
535 | ||
536 | void rds_tcp_accept_work(struct sock *sk) | |
537 | { | |
538 | struct net *net = sock_net(sk); | |
539 | struct rds_tcp_net *rtn = net_generic(net, rds_tcp_netid); | |
540 | ||
541 | queue_work(rds_wq, &rtn->rds_tcp_accept_w); | |
542 | } | |
543 | ||
544 | static __net_init int rds_tcp_init_net(struct net *net) | |
545 | { | |
546 | struct rds_tcp_net *rtn = net_generic(net, rds_tcp_netid); | |
c6a58ffe SV |
547 | struct ctl_table *tbl; |
548 | int err = 0; | |
467fa153 | 549 | |
c6a58ffe SV |
550 | memset(rtn, 0, sizeof(*rtn)); |
551 | ||
552 | /* {snd, rcv}buf_size default to 0, which implies we let the | |
553 | * stack pick the value, and permit auto-tuning of buffer size. | |
554 | */ | |
555 | if (net == &init_net) { | |
556 | tbl = rds_tcp_sysctl_table; | |
557 | } else { | |
558 | tbl = kmemdup(rds_tcp_sysctl_table, | |
559 | sizeof(rds_tcp_sysctl_table), GFP_KERNEL); | |
560 | if (!tbl) { | |
d14a108d | 561 | pr_warn("could not set allocate sysctl table\n"); |
c6a58ffe SV |
562 | return -ENOMEM; |
563 | } | |
564 | rtn->ctl_table = tbl; | |
565 | } | |
566 | tbl[RDS_TCP_SNDBUF].data = &rtn->sndbuf_size; | |
567 | tbl[RDS_TCP_RCVBUF].data = &rtn->rcvbuf_size; | |
568 | rtn->rds_tcp_sysctl = register_net_sysctl(net, "net/rds/tcp", tbl); | |
569 | if (!rtn->rds_tcp_sysctl) { | |
570 | pr_warn("could not register sysctl\n"); | |
571 | err = -ENOMEM; | |
572 | goto fail; | |
573 | } | |
e65d4d96 KCP |
574 | |
575 | #if IS_ENABLED(CONFIG_IPV6) | |
1e2b44e7 | 576 | rtn->rds_tcp_listen_sock = rds_tcp_listen_init(net, true); |
e65d4d96 KCP |
577 | #else |
578 | rtn->rds_tcp_listen_sock = rds_tcp_listen_init(net, false); | |
579 | #endif | |
467fa153 | 580 | if (!rtn->rds_tcp_listen_sock) { |
1e2b44e7 KCP |
581 | pr_warn("could not set up IPv6 listen sock\n"); |
582 | ||
e65d4d96 | 583 | #if IS_ENABLED(CONFIG_IPV6) |
1e2b44e7 KCP |
584 | /* Try IPv4 as some systems disable IPv6 */ |
585 | rtn->rds_tcp_listen_sock = rds_tcp_listen_init(net, false); | |
586 | if (!rtn->rds_tcp_listen_sock) { | |
e65d4d96 | 587 | #endif |
1e2b44e7 KCP |
588 | unregister_net_sysctl_table(rtn->rds_tcp_sysctl); |
589 | rtn->rds_tcp_sysctl = NULL; | |
590 | err = -EAFNOSUPPORT; | |
591 | goto fail; | |
e65d4d96 | 592 | #if IS_ENABLED(CONFIG_IPV6) |
1e2b44e7 | 593 | } |
e65d4d96 | 594 | #endif |
467fa153 SV |
595 | } |
596 | INIT_WORK(&rtn->rds_tcp_accept_w, rds_tcp_accept_worker); | |
597 | return 0; | |
c6a58ffe SV |
598 | |
599 | fail: | |
600 | if (net != &init_net) | |
601 | kfree(tbl); | |
602 | return err; | |
467fa153 SV |
603 | } |
604 | ||
467fa153 SV |
605 | static void rds_tcp_kill_sock(struct net *net) |
606 | { | |
607 | struct rds_tcp_connection *tc, *_tc; | |
467fa153 SV |
608 | LIST_HEAD(tmp_list); |
609 | struct rds_tcp_net *rtn = net_generic(net, rds_tcp_netid); | |
b21dd450 | 610 | struct socket *lsock = rtn->rds_tcp_listen_sock; |
467fa153 | 611 | |
467fa153 | 612 | rtn->rds_tcp_listen_sock = NULL; |
b21dd450 | 613 | rds_tcp_listen_stop(lsock, &rtn->rds_tcp_accept_w); |
53d0e83f | 614 | spin_lock_irq(&rds_tcp_conn_lock); |
467fa153 | 615 | list_for_each_entry_safe(tc, _tc, &rds_tcp_conn_list, t_tcp_node) { |
681648e6 | 616 | struct net *c_net = read_pnet(&tc->t_cpath->cp_conn->c_net); |
467fa153 | 617 | |
cb66ddd1 | 618 | if (net != c_net) |
467fa153 | 619 | continue; |
f10b4cff | 620 | if (!list_has_conn(&tmp_list, tc->t_cpath->cp_conn)) { |
afb4164d | 621 | list_move_tail(&tc->t_tcp_node, &tmp_list); |
f10b4cff SV |
622 | } else { |
623 | list_del(&tc->t_tcp_node); | |
624 | tc->t_tcp_node_detached = true; | |
625 | } | |
467fa153 | 626 | } |
53d0e83f | 627 | spin_unlock_irq(&rds_tcp_conn_lock); |
2d746c93 | 628 | list_for_each_entry_safe(tc, _tc, &tmp_list, t_tcp_node) |
02105b2c | 629 | rds_conn_destroy(tc->t_cpath->cp_conn); |
467fa153 SV |
630 | } |
631 | ||
bdf5bd7f | 632 | static void __net_exit rds_tcp_exit_net(struct net *net) |
a93d01f5 SV |
633 | { |
634 | struct rds_tcp_net *rtn = net_generic(net, rds_tcp_netid); | |
b21dd450 | 635 | |
bdf5bd7f | 636 | rds_tcp_kill_sock(net); |
a93d01f5 | 637 | |
bdf5bd7f SV |
638 | if (rtn->rds_tcp_sysctl) |
639 | unregister_net_sysctl_table(rtn->rds_tcp_sysctl); | |
640 | ||
4087d2bc | 641 | if (net != &init_net) |
bdf5bd7f | 642 | kfree(rtn->ctl_table); |
a93d01f5 SV |
643 | } |
644 | ||
bdf5bd7f SV |
645 | static struct pernet_operations rds_tcp_net_ops = { |
646 | .init = rds_tcp_init_net, | |
647 | .exit = rds_tcp_exit_net, | |
648 | .id = &rds_tcp_netid, | |
649 | .size = sizeof(struct rds_tcp_net), | |
bdf5bd7f SV |
650 | }; |
651 | ||
652 | void *rds_tcp_listen_sock_def_readable(struct net *net) | |
467fa153 | 653 | { |
bdf5bd7f SV |
654 | struct rds_tcp_net *rtn = net_generic(net, rds_tcp_netid); |
655 | struct socket *lsock = rtn->rds_tcp_listen_sock; | |
467fa153 | 656 | |
bdf5bd7f SV |
657 | if (!lsock) |
658 | return NULL; | |
467fa153 | 659 | |
bdf5bd7f | 660 | return lsock->sk->sk_user_data; |
467fa153 SV |
661 | } |
662 | ||
c6a58ffe SV |
663 | /* when sysctl is used to modify some kernel socket parameters,this |
664 | * function resets the RDS connections in that netns so that we can | |
665 | * restart with new parameters. The assumption is that such reset | |
666 | * events are few and far-between. | |
667 | */ | |
668 | static void rds_tcp_sysctl_reset(struct net *net) | |
669 | { | |
670 | struct rds_tcp_connection *tc, *_tc; | |
671 | ||
53d0e83f | 672 | spin_lock_irq(&rds_tcp_conn_lock); |
c6a58ffe | 673 | list_for_each_entry_safe(tc, _tc, &rds_tcp_conn_list, t_tcp_node) { |
681648e6 | 674 | struct net *c_net = read_pnet(&tc->t_cpath->cp_conn->c_net); |
c6a58ffe SV |
675 | |
676 | if (net != c_net || !tc->t_sock) | |
677 | continue; | |
678 | ||
02105b2c | 679 | /* reconnect with new parameters */ |
aed20a53 | 680 | rds_conn_path_drop(tc->t_cpath, false); |
c6a58ffe | 681 | } |
53d0e83f | 682 | spin_unlock_irq(&rds_tcp_conn_lock); |
c6a58ffe SV |
683 | } |
684 | ||
685 | static int rds_tcp_skbuf_handler(struct ctl_table *ctl, int write, | |
32927393 | 686 | void *buffer, size_t *lenp, loff_t *fpos) |
c6a58ffe SV |
687 | { |
688 | struct net *net = current->nsproxy->net_ns; | |
689 | int err; | |
690 | ||
691 | err = proc_dointvec_minmax(ctl, write, buffer, lenp, fpos); | |
692 | if (err < 0) { | |
693 | pr_warn("Invalid input. Must be >= %d\n", | |
694 | *(int *)(ctl->extra1)); | |
695 | return err; | |
696 | } | |
697 | if (write) | |
698 | rds_tcp_sysctl_reset(net); | |
699 | return 0; | |
700 | } | |
701 | ||
467fa153 SV |
702 | static void rds_tcp_exit(void) |
703 | { | |
ebeeb1ad SV |
704 | rds_tcp_set_unloading(); |
705 | synchronize_rcu(); | |
467fa153 | 706 | rds_info_deregister_func(RDS_INFO_TCP_SOCKETS, rds_tcp_tc_info); |
e65d4d96 | 707 | #if IS_ENABLED(CONFIG_IPV6) |
b7ff8b10 | 708 | rds_info_deregister_func(RDS6_INFO_TCP_SOCKETS, rds6_tcp_tc_info); |
e65d4d96 | 709 | #endif |
bdf5bd7f | 710 | unregister_pernet_device(&rds_tcp_net_ops); |
467fa153 SV |
711 | rds_tcp_destroy_conns(); |
712 | rds_trans_unregister(&rds_tcp_transport); | |
713 | rds_tcp_recv_exit(); | |
714 | kmem_cache_destroy(rds_tcp_conn_slab); | |
715 | } | |
716 | module_exit(rds_tcp_exit); | |
717 | ||
f0bd32c8 | 718 | static int __init rds_tcp_init(void) |
70041088 AG |
719 | { |
720 | int ret; | |
721 | ||
722 | rds_tcp_conn_slab = kmem_cache_create("rds_tcp_connection", | |
723 | sizeof(struct rds_tcp_connection), | |
724 | 0, 0, NULL); | |
8690bfa1 | 725 | if (!rds_tcp_conn_slab) { |
70041088 AG |
726 | ret = -ENOMEM; |
727 | goto out; | |
728 | } | |
729 | ||
16c09b1c SV |
730 | ret = rds_tcp_recv_init(); |
731 | if (ret) | |
3b5923f0 | 732 | goto out_slab; |
467fa153 | 733 | |
bdf5bd7f | 734 | ret = register_pernet_device(&rds_tcp_net_ops); |
467fa153 | 735 | if (ret) |
16c09b1c | 736 | goto out_recv; |
467fa153 | 737 | |
a8d63a53 | 738 | rds_trans_register(&rds_tcp_transport); |
70041088 | 739 | |
70041088 | 740 | rds_info_register_func(RDS_INFO_TCP_SOCKETS, rds_tcp_tc_info); |
e65d4d96 | 741 | #if IS_ENABLED(CONFIG_IPV6) |
b7ff8b10 | 742 | rds_info_register_func(RDS6_INFO_TCP_SOCKETS, rds6_tcp_tc_info); |
e65d4d96 | 743 | #endif |
70041088 AG |
744 | |
745 | goto out; | |
16c09b1c SV |
746 | out_recv: |
747 | rds_tcp_recv_exit(); | |
3b5923f0 | 748 | out_slab: |
70041088 AG |
749 | kmem_cache_destroy(rds_tcp_conn_slab); |
750 | out: | |
751 | return ret; | |
752 | } | |
753 | module_init(rds_tcp_init); | |
754 | ||
755 | MODULE_AUTHOR("Oracle Corporation <[email protected]>"); | |
756 | MODULE_DESCRIPTION("RDS: TCP transport"); | |
757 | MODULE_LICENSE("Dual BSD/GPL"); |