Merge tag 'rtc-6.8' of git://git.kernel.org/pub/scm/linux/kernel/git/abelloni/linux
[linux-block.git] / fs / afs / rxrpc.c
CommitLineData
2874c5fd 1// SPDX-License-Identifier: GPL-2.0-or-later
08e0e7c8
DH
2/* Maintain an RxRPC server socket to do AFS communications through
3 *
4 * Copyright (C) 2007 Red Hat, Inc. All Rights Reserved.
5 * Written by David Howells (dhowells@redhat.com)
08e0e7c8
DH
6 */
7
5a0e3ad6 8#include <linux/slab.h>
174cd4b1
IM
9#include <linux/sched/signal.h>
10
08e0e7c8
DH
11#include <net/sock.h>
12#include <net/af_rxrpc.h>
08e0e7c8
DH
13#include "internal.h"
14#include "afs_cm.h"
35dbfba3 15#include "protocol_yfs.h"
57af281e
DH
16#define RXRPC_TRACE_ONLY_DEFINE_ENUMS
17#include <trace/events/rxrpc.h>
08e0e7c8 18
f044c884 19struct workqueue_struct *afs_async_calls;
08e0e7c8 20
d001648e 21static void afs_wake_up_call_waiter(struct sock *, struct rxrpc_call *, unsigned long);
d001648e 22static void afs_wake_up_async_call(struct sock *, struct rxrpc_call *, unsigned long);
d001648e 23static void afs_process_async_call(struct work_struct *);
00e90712
DH
24static void afs_rx_new_call(struct sock *, struct rxrpc_call *, unsigned long);
25static void afs_rx_discard_new_call(struct rxrpc_call *, unsigned long);
d001648e 26static int afs_deliver_cm_op_id(struct afs_call *);
08e0e7c8 27
08e0e7c8
DH
28/* asynchronous incoming call initial processing */
29static const struct afs_call_type afs_RXCMxxxx = {
00d3b7a4 30 .name = "CB.xxxx",
08e0e7c8 31 .deliver = afs_deliver_cm_op_id,
08e0e7c8
DH
32};
33
08e0e7c8
DH
34/*
35 * open an RxRPC socket and bind it to be a server for callback notifications
36 * - the socket is left in blocking mode and non-blocking ops use MSG_DONTWAIT
37 */
f044c884 38int afs_open_socket(struct afs_net *net)
08e0e7c8
DH
39{
40 struct sockaddr_rxrpc srx;
41 struct socket *socket;
42 int ret;
43
44 _enter("");
45
5b86d4ff 46 ret = sock_create_kern(net->net, AF_RXRPC, SOCK_DGRAM, PF_INET6, &socket);
0e119b41
DH
47 if (ret < 0)
48 goto error_1;
08e0e7c8
DH
49
50 socket->sk->sk_allocation = GFP_NOFS;
51
52 /* bind the callback manager's address to make this a server socket */
3838d3ec 53 memset(&srx, 0, sizeof(srx));
08e0e7c8
DH
54 srx.srx_family = AF_RXRPC;
55 srx.srx_service = CM_SERVICE;
56 srx.transport_type = SOCK_DGRAM;
3838d3ec
DH
57 srx.transport_len = sizeof(srx.transport.sin6);
58 srx.transport.sin6.sin6_family = AF_INET6;
59 srx.transport.sin6.sin6_port = htons(AFS_CM_PORT);
08e0e7c8 60
298cd88a
CH
61 ret = rxrpc_sock_set_min_security_level(socket->sk,
62 RXRPC_SECURITY_ENCRYPT);
4776cab4
DH
63 if (ret < 0)
64 goto error_2;
65
08e0e7c8 66 ret = kernel_bind(socket, (struct sockaddr *) &srx, sizeof(srx));
83732ec5
MD
67 if (ret == -EADDRINUSE) {
68 srx.transport.sin6.sin6_port = 0;
69 ret = kernel_bind(socket, (struct sockaddr *) &srx, sizeof(srx));
70 }
0e119b41
DH
71 if (ret < 0)
72 goto error_2;
73
35dbfba3
DH
74 srx.srx_service = YFS_CM_SERVICE;
75 ret = kernel_bind(socket, (struct sockaddr *) &srx, sizeof(srx));
76 if (ret < 0)
77 goto error_2;
78
3bf0fb6f
DH
79 /* Ideally, we'd turn on service upgrade here, but we can't because
80 * OpenAFS is buggy and leaks the userStatus field from packet to
81 * packet and between FS packets and CB packets - so if we try to do an
82 * upgrade on an FS packet, OpenAFS will leak that into the CB packet
83 * it sends back to us.
84 */
35dbfba3 85
00e90712
DH
86 rxrpc_kernel_new_call_notification(socket, afs_rx_new_call,
87 afs_rx_discard_new_call);
d001648e 88
0e119b41
DH
89 ret = kernel_listen(socket, INT_MAX);
90 if (ret < 0)
91 goto error_2;
08e0e7c8 92
f044c884
DH
93 net->socket = socket;
94 afs_charge_preallocation(&net->charge_preallocation_work);
08e0e7c8
DH
95 _leave(" = 0");
96 return 0;
0e119b41
DH
97
98error_2:
99 sock_release(socket);
100error_1:
0e119b41
DH
101 _leave(" = %d", ret);
102 return ret;
08e0e7c8
DH
103}
104
105/*
106 * close the RxRPC socket AFS was using
107 */
f044c884 108void afs_close_socket(struct afs_net *net)
08e0e7c8
DH
109{
110 _enter("");
111
f044c884 112 kernel_listen(net->socket, 0);
341f741f
DH
113 flush_workqueue(afs_async_calls);
114
f044c884
DH
115 if (net->spare_incoming_call) {
116 afs_put_call(net->spare_incoming_call);
117 net->spare_incoming_call = NULL;
00e90712
DH
118 }
119
f044c884 120 _debug("outstanding %u", atomic_read(&net->nr_outstanding_calls));
ab1fbe32
PZ
121 wait_var_event(&net->nr_outstanding_calls,
122 !atomic_read(&net->nr_outstanding_calls));
2f02f7ae
DH
123 _debug("no outstanding calls");
124
f044c884 125 kernel_sock_shutdown(net->socket, SHUT_RDWR);
d001648e 126 flush_workqueue(afs_async_calls);
f044c884 127 sock_release(net->socket);
08e0e7c8
DH
128
129 _debug("dework");
08e0e7c8
DH
130 _leave("");
131}
132
00d3b7a4 133/*
341f741f 134 * Allocate a call.
00d3b7a4 135 */
f044c884
DH
136static struct afs_call *afs_alloc_call(struct afs_net *net,
137 const struct afs_call_type *type,
341f741f 138 gfp_t gfp)
00d3b7a4 139{
341f741f
DH
140 struct afs_call *call;
141 int o;
00d3b7a4 142
341f741f
DH
143 call = kzalloc(sizeof(*call), gfp);
144 if (!call)
145 return NULL;
00d3b7a4 146
341f741f 147 call->type = type;
f044c884 148 call->net = net;
a25e21f0 149 call->debug_id = atomic_inc_return(&rxrpc_debug_id);
c56f9ec8 150 refcount_set(&call->ref, 1);
341f741f
DH
151 INIT_WORK(&call->async_work, afs_process_async_call);
152 init_waitqueue_head(&call->waitq);
98bf40cd 153 spin_lock_init(&call->state_lock);
fc276122 154 call->iter = &call->def_iter;
2f02f7ae 155
f044c884 156 o = atomic_inc_return(&net->nr_outstanding_calls);
2757a4dc 157 trace_afs_call(call->debug_id, afs_call_trace_alloc, 1, o,
341f741f
DH
158 __builtin_return_address(0));
159 return call;
00d3b7a4
DH
160}
161
6c67c7c3 162/*
341f741f 163 * Dispose of a reference on a call.
6c67c7c3 164 */
341f741f 165void afs_put_call(struct afs_call *call)
6c67c7c3 166{
f044c884 167 struct afs_net *net = call->net;
2757a4dc 168 unsigned int debug_id = call->debug_id;
c56f9ec8
DH
169 bool zero;
170 int r, o;
341f741f 171
c56f9ec8
DH
172 zero = __refcount_dec_and_test(&call->ref, &r);
173 o = atomic_read(&net->nr_outstanding_calls);
2757a4dc 174 trace_afs_call(debug_id, afs_call_trace_put, r - 1, o,
341f741f
DH
175 __builtin_return_address(0));
176
c56f9ec8 177 if (zero) {
341f741f
DH
178 ASSERT(!work_pending(&call->async_work));
179 ASSERT(call->type->name != NULL);
180
e38f299e
DH
181 rxrpc_kernel_put_peer(call->peer);
182
341f741f 183 if (call->rxcall) {
e0416e7d
DH
184 rxrpc_kernel_shutdown_call(net->socket, call->rxcall);
185 rxrpc_kernel_put_call(net->socket, call->rxcall);
341f741f
DH
186 call->rxcall = NULL;
187 }
188 if (call->type->destructor)
189 call->type->destructor(call);
190
977e5f8e 191 afs_unuse_server_notime(call->net, call->server, afs_server_trace_put_call);
341f741f 192 kfree(call->request);
341f741f 193
2757a4dc 194 trace_afs_call(call->debug_id, afs_call_trace_free, 0, o,
341f741f 195 __builtin_return_address(0));
a25e21f0
DH
196 kfree(call);
197
198 o = atomic_dec_return(&net->nr_outstanding_calls);
341f741f 199 if (o == 0)
ab1fbe32 200 wake_up_var(&net->nr_outstanding_calls);
6c67c7c3 201 }
6cf12869
NWF
202}
203
7a75b007
DH
204static struct afs_call *afs_get_call(struct afs_call *call,
205 enum afs_call_trace why)
206{
c56f9ec8 207 int r;
7a75b007 208
c56f9ec8
DH
209 __refcount_inc(&call->ref, &r);
210
2757a4dc 211 trace_afs_call(call->debug_id, why, r + 1,
7a75b007
DH
212 atomic_read(&call->net->nr_outstanding_calls),
213 __builtin_return_address(0));
214 return call;
215}
216
6cf12869 217/*
3bf0fb6f 218 * Queue the call for actual work.
6cf12869 219 */
3bf0fb6f 220static void afs_queue_call_work(struct afs_call *call)
6cf12869 221{
3bf0fb6f 222 if (call->type->work) {
3bf0fb6f 223 INIT_WORK(&call->work, call->type->work);
341f741f 224
7a75b007 225 afs_get_call(call, afs_call_trace_work);
3bf0fb6f
DH
226 if (!queue_work(afs_wq, &call->work))
227 afs_put_call(call);
228 }
6c67c7c3
DH
229}
230
08e0e7c8
DH
231/*
232 * allocate a call with flat request and reply buffers
233 */
f044c884
DH
234struct afs_call *afs_alloc_flat_call(struct afs_net *net,
235 const struct afs_call_type *type,
d001648e 236 size_t request_size, size_t reply_max)
08e0e7c8
DH
237{
238 struct afs_call *call;
239
f044c884 240 call = afs_alloc_call(net, type, GFP_NOFS);
08e0e7c8
DH
241 if (!call)
242 goto nomem_call;
243
244 if (request_size) {
341f741f 245 call->request_size = request_size;
08e0e7c8
DH
246 call->request = kmalloc(request_size, GFP_NOFS);
247 if (!call->request)
00d3b7a4 248 goto nomem_free;
08e0e7c8
DH
249 }
250
d001648e 251 if (reply_max) {
341f741f 252 call->reply_max = reply_max;
d001648e 253 call->buffer = kmalloc(reply_max, GFP_NOFS);
08e0e7c8 254 if (!call->buffer)
00d3b7a4 255 goto nomem_free;
08e0e7c8
DH
256 }
257
12bdcf33 258 afs_extract_to_buf(call, call->reply_max);
025db80c 259 call->operation_ID = type->op;
08e0e7c8 260 init_waitqueue_head(&call->waitq);
08e0e7c8
DH
261 return call;
262
00d3b7a4 263nomem_free:
341f741f 264 afs_put_call(call);
08e0e7c8
DH
265nomem_call:
266 return NULL;
267}
268
269/*
270 * clean up a call with flat buffer
271 */
272void afs_flat_call_destructor(struct afs_call *call)
273{
274 _enter("");
275
276 kfree(call->request);
277 call->request = NULL;
278 kfree(call->buffer);
279 call->buffer = NULL;
280}
281
e833251a
DH
282/*
283 * Advance the AFS call state when the RxRPC call ends the transmit phase.
284 */
285static void afs_notify_end_request_tx(struct sock *sock,
286 struct rxrpc_call *rxcall,
287 unsigned long call_user_ID)
288{
289 struct afs_call *call = (struct afs_call *)call_user_ID;
290
98bf40cd 291 afs_set_call_state(call, AFS_CALL_CL_REQUESTING, AFS_CALL_CL_AWAIT_REPLY);
e833251a
DH
292}
293
08e0e7c8 294/*
0b9bf381
DH
295 * Initiate a call and synchronously queue up the parameters for dispatch. Any
296 * error is stored into the call struct, which the caller must check for.
08e0e7c8 297 */
98f9fda2 298void afs_make_call(struct afs_call *call, gfp_t gfp)
08e0e7c8 299{
08e0e7c8
DH
300 struct rxrpc_call *rxcall;
301 struct msghdr msg;
302 struct kvec iov[1];
f105da1a 303 size_t len;
e754eba6 304 s64 tx_total_len;
08e0e7c8
DH
305 int ret;
306
e38f299e 307 _enter(",{%pISp+%u},", rxrpc_kernel_remote_addr(call->peer), call->service_id);
08e0e7c8 308
00d3b7a4
DH
309 ASSERT(call->type != NULL);
310 ASSERT(call->type->name != NULL);
311
31143d5d
DH
312 _debug("____MAKE %p{%s,%x} [%d]____",
313 call, call->type->name, key_serial(call->key),
f044c884 314 atomic_read(&call->net->nr_outstanding_calls));
00d3b7a4 315
abcbd3bf
DH
316 trace_afs_make_call(call);
317
e754eba6
DH
318 /* Work out the length we're going to transmit. This is awkward for
319 * calls such as FS.StoreData where there's an extra injection of data
320 * after the initial fixed part.
321 */
322 tx_total_len = call->request_size;
bd80d8a8
DH
323 if (call->write_iter)
324 tx_total_len += iov_iter_count(call->write_iter);
e754eba6 325
34fa4761
DH
326 /* If the call is going to be asynchronous, we need an extra ref for
327 * the call to hold itself so the caller need not hang on to its ref.
328 */
dde9f095 329 if (call->async) {
34fa4761 330 afs_get_call(call, afs_call_trace_get);
dde9f095
DH
331 call->drop_ref = true;
332 }
34fa4761 333
08e0e7c8 334 /* create a call */
e38f299e 335 rxcall = rxrpc_kernel_begin_call(call->net->socket, call->peer, call->key,
e754eba6 336 (unsigned long)call,
db099c62
DH
337 tx_total_len,
338 call->max_lifespan,
339 gfp,
0b9bf381 340 (call->async ?
56ff9c83 341 afs_wake_up_async_call :
a68f4a27 342 afs_wake_up_call_waiter),
e38f299e 343 call->service_id,
a25e21f0 344 call->upgrade,
e138aa7d
DH
345 (call->intr ? RXRPC_PREINTERRUPTIBLE :
346 RXRPC_UNINTERRUPTIBLE),
a25e21f0 347 call->debug_id);
08e0e7c8
DH
348 if (IS_ERR(rxcall)) {
349 ret = PTR_ERR(rxcall);
3bf0fb6f 350 call->error = ret;
08e0e7c8
DH
351 goto error_kill_call;
352 }
353
354 call->rxcall = rxcall;
7903192c 355 call->issue_time = ktime_get_real();
94f699c9 356
08e0e7c8
DH
357 /* send the request */
358 iov[0].iov_base = call->request;
359 iov[0].iov_len = call->request_size;
360
361 msg.msg_name = NULL;
362 msg.msg_namelen = 0;
de4eda9d 363 iov_iter_kvec(&msg.msg_iter, ITER_SOURCE, iov, 1, call->request_size);
08e0e7c8
DH
364 msg.msg_control = NULL;
365 msg.msg_controllen = 0;
bd80d8a8 366 msg.msg_flags = MSG_WAITALL | (call->write_iter ? MSG_MORE : 0);
08e0e7c8 367
f044c884 368 ret = rxrpc_kernel_send_data(call->net->socket, rxcall,
e833251a
DH
369 &msg, call->request_size,
370 afs_notify_end_request_tx);
08e0e7c8
DH
371 if (ret < 0)
372 goto error_do_abort;
373
bd80d8a8
DH
374 if (call->write_iter) {
375 msg.msg_iter = *call->write_iter;
376 msg.msg_flags &= ~MSG_MORE;
377 trace_afs_send_data(call, &msg);
378
379 ret = rxrpc_kernel_send_data(call->net->socket,
380 call->rxcall, &msg,
381 iov_iter_count(&msg.msg_iter),
382 afs_notify_end_request_tx);
383 *call->write_iter = msg.msg_iter;
384
385 trace_afs_sent_data(call, &msg, ret);
31143d5d
DH
386 if (ret < 0)
387 goto error_do_abort;
388 }
389
34fa4761
DH
390 /* Note that at this point, we may have received the reply or an abort
391 * - and an asynchronous call may already have completed.
0b9bf381 392 *
98f9fda2 393 * afs_wait_for_call_to_complete(call)
0b9bf381 394 * must be called to synchronously clean up.
34fa4761 395 */
0b9bf381 396 return;
08e0e7c8
DH
397
398error_do_abort:
70af0e3b 399 if (ret != -ECONNABORTED) {
f044c884 400 rxrpc_kernel_abort_call(call->net->socket, rxcall,
57af281e
DH
401 RX_USER_ABORT, ret,
402 afs_abort_send_data_error);
70af0e3b 403 } else {
f105da1a 404 len = 0;
de4eda9d 405 iov_iter_kvec(&msg.msg_iter, ITER_DEST, NULL, 0, 0);
eb9950eb 406 rxrpc_kernel_recv_data(call->net->socket, rxcall,
f105da1a 407 &msg.msg_iter, &len, false,
eb9950eb 408 &call->abort_code, &call->service_id);
aa453bec 409 call->responded = true;
70af0e3b 410 }
025db80c
DH
411 call->error = ret;
412 trace_afs_call_done(call);
08e0e7c8 413error_kill_call:
3bf0fb6f
DH
414 if (call->type->done)
415 call->type->done(call);
34fa4761
DH
416
417 /* We need to dispose of the extra ref we grabbed for an async call.
418 * The call, however, might be queued on afs_async_calls and we need to
419 * make sure we don't get any more notifications that might requeue it.
420 */
e0416e7d
DH
421 if (call->rxcall)
422 rxrpc_kernel_shutdown_call(call->net->socket, call->rxcall);
34fa4761
DH
423 if (call->async) {
424 if (cancel_work_sync(&call->async_work))
425 afs_put_call(call);
52bf9f6c 426 afs_set_call_complete(call, ret, 0);
34fa4761
DH
427 }
428
aa453bec 429 call->error = ret;
34fa4761 430 call->state = AFS_CALL_COMPLETE;
08e0e7c8 431 _leave(" = %d", ret);
08e0e7c8
DH
432}
433
05092755
DH
434/*
435 * Log remote abort codes that indicate that we have a protocol disagreement
436 * with the server.
437 */
438static void afs_log_error(struct afs_call *call, s32 remote_abort)
439{
440 static int max = 0;
441 const char *msg;
442 int m;
443
444 switch (remote_abort) {
445 case RX_EOF: msg = "unexpected EOF"; break;
446 case RXGEN_CC_MARSHAL: msg = "client marshalling"; break;
447 case RXGEN_CC_UNMARSHAL: msg = "client unmarshalling"; break;
448 case RXGEN_SS_MARSHAL: msg = "server marshalling"; break;
449 case RXGEN_SS_UNMARSHAL: msg = "server unmarshalling"; break;
450 case RXGEN_DECODE: msg = "opcode decode"; break;
451 case RXGEN_SS_XDRFREE: msg = "server XDR cleanup"; break;
452 case RXGEN_CC_XDRFREE: msg = "client XDR cleanup"; break;
453 case -32: msg = "insufficient data"; break;
454 default:
455 return;
456 }
457
458 m = max;
459 if (m < 3) {
460 max = m + 1;
461 pr_notice("kAFS: Peer reported %s failure on %s [%pISp]\n",
462 msg, call->type->name,
e38f299e 463 rxrpc_kernel_remote_addr(call->peer));
05092755
DH
464 }
465}
466
08e0e7c8
DH
467/*
468 * deliver messages to a call
469 */
470static void afs_deliver_to_call(struct afs_call *call)
471{
98bf40cd 472 enum afs_call_state state;
f105da1a 473 size_t len;
98bf40cd 474 u32 abort_code, remote_abort = 0;
08e0e7c8
DH
475 int ret;
476
d001648e
DH
477 _enter("%s", call->type->name);
478
98bf40cd
DH
479 while (state = READ_ONCE(call->state),
480 state == AFS_CALL_CL_AWAIT_REPLY ||
481 state == AFS_CALL_SV_AWAIT_OP_ID ||
482 state == AFS_CALL_SV_AWAIT_REQUEST ||
483 state == AFS_CALL_SV_AWAIT_ACK
d001648e 484 ) {
98bf40cd 485 if (state == AFS_CALL_SV_AWAIT_ACK) {
f105da1a 486 len = 0;
de4eda9d 487 iov_iter_kvec(&call->def_iter, ITER_DEST, NULL, 0, 0);
f044c884 488 ret = rxrpc_kernel_recv_data(call->net->socket,
fc276122 489 call->rxcall, &call->def_iter,
f105da1a 490 &len, false, &remote_abort,
a68f4a27 491 &call->service_id);
fc276122 492 trace_afs_receive_data(call, &call->def_iter, false, ret);
8e8d7f13 493
d001648e
DH
494 if (ret == -EINPROGRESS || ret == -EAGAIN)
495 return;
98bf40cd
DH
496 if (ret < 0 || ret == 1) {
497 if (ret == 1)
498 ret = 0;
025db80c 499 goto call_complete;
98bf40cd 500 }
d001648e 501 return;
08e0e7c8
DH
502 }
503
d001648e 504 ret = call->type->deliver(call);
98bf40cd 505 state = READ_ONCE(call->state);
38355eec
DH
506 if (ret == 0 && call->unmarshalling_error)
507 ret = -EBADMSG;
d001648e
DH
508 switch (ret) {
509 case 0:
aa453bec 510 call->responded = true;
3bf0fb6f 511 afs_queue_call_work(call);
f2686b09 512 if (state == AFS_CALL_CL_PROC_REPLY) {
20325960 513 if (call->op)
f2686b09 514 set_bit(AFS_SERVER_FL_MAY_HAVE_CB,
20325960 515 &call->op->server->flags);
025db80c 516 goto call_complete;
f2686b09 517 }
98bf40cd 518 ASSERTCMP(state, >, AFS_CALL_CL_PROC_REPLY);
d001648e
DH
519 goto done;
520 case -EINPROGRESS:
521 case -EAGAIN:
522 goto out;
70af0e3b 523 case -ECONNABORTED:
98bf40cd 524 ASSERTCMP(state, ==, AFS_CALL_COMPLETE);
aa453bec 525 call->responded = true;
05092755 526 afs_log_error(call, call->abort_code);
98bf40cd 527 goto done;
d001648e 528 case -ENOTSUPP:
aa453bec 529 call->responded = true;
1157f153 530 abort_code = RXGEN_OPCODE;
f044c884 531 rxrpc_kernel_abort_call(call->net->socket, call->rxcall,
57af281e
DH
532 abort_code, ret,
533 afs_abort_op_not_supported);
98bf40cd 534 goto local_abort;
4ac15ea5
DH
535 case -EIO:
536 pr_err("kAFS: Call %u in bad state %u\n",
537 call->debug_id, state);
df561f66 538 fallthrough;
d001648e
DH
539 case -ENODATA:
540 case -EBADMSG:
541 case -EMSGSIZE:
de696c47
DH
542 case -ENOMEM:
543 case -EFAULT:
d001648e 544 abort_code = RXGEN_CC_UNMARSHAL;
98bf40cd 545 if (state != AFS_CALL_CL_AWAIT_REPLY)
d001648e 546 abort_code = RXGEN_SS_UNMARSHAL;
f044c884 547 rxrpc_kernel_abort_call(call->net->socket, call->rxcall,
57af281e
DH
548 abort_code, ret,
549 afs_abort_unmarshal_error);
98bf40cd 550 goto local_abort;
8022c4b9 551 default:
de696c47 552 abort_code = RX_CALL_DEAD;
8022c4b9 553 rxrpc_kernel_abort_call(call->net->socket, call->rxcall,
57af281e
DH
554 abort_code, ret,
555 afs_abort_general_error);
8022c4b9 556 goto local_abort;
d001648e 557 }
08e0e7c8
DH
558 }
559
d001648e 560done:
3bf0fb6f
DH
561 if (call->type->done)
562 call->type->done(call);
d001648e 563out:
08e0e7c8 564 _leave("");
d001648e
DH
565 return;
566
98bf40cd
DH
567local_abort:
568 abort_code = 0;
025db80c 569call_complete:
98bf40cd
DH
570 afs_set_call_complete(call, ret, remote_abort);
571 state = AFS_CALL_COMPLETE;
d001648e 572 goto done;
08e0e7c8
DH
573}
574
575/*
aa453bec 576 * Wait synchronously for a call to complete.
08e0e7c8 577 */
98f9fda2 578void afs_wait_for_call_to_complete(struct afs_call *call)
08e0e7c8 579{
f7f1dd31 580 bool rxrpc_complete = false;
08e0e7c8 581
08e0e7c8
DH
582 _enter("");
583
6f2ff7e8
DH
584 if (!afs_check_call_state(call, AFS_CALL_COMPLETE)) {
585 DECLARE_WAITQUEUE(myself, current);
586
587 add_wait_queue(&call->waitq, &myself);
588 for (;;) {
589 set_current_state(TASK_UNINTERRUPTIBLE);
590
591 /* deliver any messages that are in the queue */
592 if (!afs_check_call_state(call, AFS_CALL_COMPLETE) &&
593 call->need_attention) {
594 call->need_attention = false;
595 __set_current_state(TASK_RUNNING);
596 afs_deliver_to_call(call);
597 continue;
598 }
599
600 if (afs_check_call_state(call, AFS_CALL_COMPLETE))
601 break;
08e0e7c8 602
6f2ff7e8
DH
603 if (!rxrpc_kernel_check_life(call->net->socket, call->rxcall)) {
604 /* rxrpc terminated the call. */
605 rxrpc_complete = true;
606 break;
607 }
bc5e3a54 608
6f2ff7e8 609 schedule();
f7f1dd31
MD
610 }
611
6f2ff7e8
DH
612 remove_wait_queue(&call->waitq, &myself);
613 __set_current_state(TASK_RUNNING);
08e0e7c8
DH
614 }
615
98bf40cd 616 if (!afs_check_call_state(call, AFS_CALL_COMPLETE)) {
f7f1dd31
MD
617 if (rxrpc_complete) {
618 afs_set_call_complete(call, call->error, call->abort_code);
619 } else {
620 /* Kill off the call if it's still live. */
621 _debug("call interrupted");
622 if (rxrpc_kernel_abort_call(call->net->socket, call->rxcall,
57af281e
DH
623 RX_USER_ABORT, -EINTR,
624 afs_abort_interrupted))
f7f1dd31
MD
625 afs_set_call_complete(call, -EINTR, 0);
626 }
08e0e7c8 627 }
08e0e7c8
DH
628}
629
630/*
631 * wake up a waiting call
632 */
d001648e
DH
633static void afs_wake_up_call_waiter(struct sock *sk, struct rxrpc_call *rxcall,
634 unsigned long call_user_ID)
08e0e7c8 635{
d001648e
DH
636 struct afs_call *call = (struct afs_call *)call_user_ID;
637
638 call->need_attention = true;
08e0e7c8
DH
639 wake_up(&call->waitq);
640}
641
642/*
643 * wake up an asynchronous call
644 */
d001648e
DH
645static void afs_wake_up_async_call(struct sock *sk, struct rxrpc_call *rxcall,
646 unsigned long call_user_ID)
08e0e7c8 647{
d001648e 648 struct afs_call *call = (struct afs_call *)call_user_ID;
c56f9ec8 649 int r;
d001648e 650
8e8d7f13 651 trace_afs_notify_call(rxcall, call);
d001648e 652 call->need_attention = true;
341f741f 653
c56f9ec8 654 if (__refcount_inc_not_zero(&call->ref, &r)) {
2757a4dc 655 trace_afs_call(call->debug_id, afs_call_trace_wake, r + 1,
f044c884 656 atomic_read(&call->net->nr_outstanding_calls),
341f741f
DH
657 __builtin_return_address(0));
658
659 if (!queue_work(afs_async_calls, &call->async_work))
660 afs_put_call(call);
661 }
08e0e7c8
DH
662}
663
08e0e7c8 664/*
341f741f
DH
665 * Perform I/O processing on an asynchronous call. The work item carries a ref
666 * to the call struct that we either need to release or to pass on.
08e0e7c8 667 */
d001648e 668static void afs_process_async_call(struct work_struct *work)
08e0e7c8 669{
d001648e
DH
670 struct afs_call *call = container_of(work, struct afs_call, async_work);
671
08e0e7c8
DH
672 _enter("");
673
d001648e
DH
674 if (call->state < AFS_CALL_COMPLETE && call->need_attention) {
675 call->need_attention = false;
08e0e7c8 676 afs_deliver_to_call(call);
d001648e 677 }
08e0e7c8 678
341f741f 679 afs_put_call(call);
08e0e7c8
DH
680 _leave("");
681}
682
00e90712
DH
683static void afs_rx_attach(struct rxrpc_call *rxcall, unsigned long user_call_ID)
684{
685 struct afs_call *call = (struct afs_call *)user_call_ID;
686
687 call->rxcall = rxcall;
688}
689
690/*
691 * Charge the incoming call preallocation.
692 */
f044c884 693void afs_charge_preallocation(struct work_struct *work)
00e90712 694{
f044c884
DH
695 struct afs_net *net =
696 container_of(work, struct afs_net, charge_preallocation_work);
697 struct afs_call *call = net->spare_incoming_call;
00e90712
DH
698
699 for (;;) {
700 if (!call) {
f044c884 701 call = afs_alloc_call(net, &afs_RXCMxxxx, GFP_KERNEL);
00e90712
DH
702 if (!call)
703 break;
704
dde9f095 705 call->drop_ref = true;
56ff9c83 706 call->async = true;
98bf40cd 707 call->state = AFS_CALL_SV_AWAIT_OP_ID;
56ff9c83 708 init_waitqueue_head(&call->waitq);
12bdcf33 709 afs_extract_to_tmp(call);
00e90712
DH
710 }
711
f044c884 712 if (rxrpc_kernel_charge_accept(net->socket,
00e90712
DH
713 afs_wake_up_async_call,
714 afs_rx_attach,
715 (unsigned long)call,
a25e21f0
DH
716 GFP_KERNEL,
717 call->debug_id) < 0)
00e90712
DH
718 break;
719 call = NULL;
720 }
f044c884 721 net->spare_incoming_call = call;
00e90712
DH
722}
723
724/*
725 * Discard a preallocated call when a socket is shut down.
726 */
727static void afs_rx_discard_new_call(struct rxrpc_call *rxcall,
728 unsigned long user_call_ID)
729{
730 struct afs_call *call = (struct afs_call *)user_call_ID;
731
00e90712 732 call->rxcall = NULL;
341f741f 733 afs_put_call(call);
00e90712
DH
734}
735
d001648e
DH
736/*
737 * Notification of an incoming call.
738 */
00e90712
DH
739static void afs_rx_new_call(struct sock *sk, struct rxrpc_call *rxcall,
740 unsigned long user_call_ID)
d001648e 741{
f044c884
DH
742 struct afs_net *net = afs_sock2net(sk);
743
744 queue_work(afs_wq, &net->charge_preallocation_work);
d001648e
DH
745}
746
08e0e7c8 747/*
372ee163
DH
748 * Grab the operation ID from an incoming cache manager call. The socket
749 * buffer is discarded on error or if we don't yet have sufficient data.
08e0e7c8 750 */
d001648e 751static int afs_deliver_cm_op_id(struct afs_call *call)
08e0e7c8 752{
d001648e 753 int ret;
08e0e7c8 754
fc276122 755 _enter("{%zu}", iov_iter_count(call->iter));
08e0e7c8
DH
756
757 /* the operation ID forms the first four bytes of the request data */
12bdcf33 758 ret = afs_extract_data(call, true);
d001648e
DH
759 if (ret < 0)
760 return ret;
08e0e7c8 761
50a2c953 762 call->operation_ID = ntohl(call->tmp);
98bf40cd 763 afs_set_call_state(call, AFS_CALL_SV_AWAIT_OP_ID, AFS_CALL_SV_AWAIT_REQUEST);
08e0e7c8
DH
764
765 /* ask the cache manager to route the call (it'll change the call type
766 * if successful) */
767 if (!afs_cm_incoming_call(call))
768 return -ENOTSUPP;
769
8e8d7f13
DH
770 trace_afs_cb_call(call);
771
08e0e7c8
DH
772 /* pass responsibility for the remainer of this message off to the
773 * cache manager op */
d001648e 774 return call->type->deliver(call);
08e0e7c8
DH
775}
776
e833251a
DH
777/*
778 * Advance the AFS call state when an RxRPC service call ends the transmit
779 * phase.
780 */
781static void afs_notify_end_reply_tx(struct sock *sock,
782 struct rxrpc_call *rxcall,
783 unsigned long call_user_ID)
784{
785 struct afs_call *call = (struct afs_call *)call_user_ID;
786
98bf40cd 787 afs_set_call_state(call, AFS_CALL_SV_REPLYING, AFS_CALL_SV_AWAIT_ACK);
e833251a
DH
788}
789
08e0e7c8
DH
790/*
791 * send an empty reply
792 */
793void afs_send_empty_reply(struct afs_call *call)
794{
f044c884 795 struct afs_net *net = call->net;
08e0e7c8 796 struct msghdr msg;
08e0e7c8
DH
797
798 _enter("");
799
f044c884 800 rxrpc_kernel_set_tx_length(net->socket, call->rxcall, 0);
e754eba6 801
08e0e7c8
DH
802 msg.msg_name = NULL;
803 msg.msg_namelen = 0;
de4eda9d 804 iov_iter_kvec(&msg.msg_iter, ITER_SOURCE, NULL, 0, 0);
08e0e7c8
DH
805 msg.msg_control = NULL;
806 msg.msg_controllen = 0;
807 msg.msg_flags = 0;
808
f044c884 809 switch (rxrpc_kernel_send_data(net->socket, call->rxcall, &msg, 0,
e833251a 810 afs_notify_end_reply_tx)) {
08e0e7c8
DH
811 case 0:
812 _leave(" [replied]");
813 return;
814
815 case -ENOMEM:
816 _debug("oom");
f044c884 817 rxrpc_kernel_abort_call(net->socket, call->rxcall,
57af281e
DH
818 RXGEN_SS_MARSHAL, -ENOMEM,
819 afs_abort_oom);
df561f66 820 fallthrough;
08e0e7c8 821 default:
08e0e7c8
DH
822 _leave(" [error]");
823 return;
824 }
825}
826
b908fe6b
DH
827/*
828 * send a simple reply
829 */
830void afs_send_simple_reply(struct afs_call *call, const void *buf, size_t len)
831{
f044c884 832 struct afs_net *net = call->net;
b908fe6b 833 struct msghdr msg;
2e90b1c4 834 struct kvec iov[1];
bd6dc742 835 int n;
b908fe6b
DH
836
837 _enter("");
838
f044c884 839 rxrpc_kernel_set_tx_length(net->socket, call->rxcall, len);
e754eba6 840
b908fe6b
DH
841 iov[0].iov_base = (void *) buf;
842 iov[0].iov_len = len;
843 msg.msg_name = NULL;
844 msg.msg_namelen = 0;
de4eda9d 845 iov_iter_kvec(&msg.msg_iter, ITER_SOURCE, iov, 1, len);
b908fe6b
DH
846 msg.msg_control = NULL;
847 msg.msg_controllen = 0;
848 msg.msg_flags = 0;
849
f044c884 850 n = rxrpc_kernel_send_data(net->socket, call->rxcall, &msg, len,
e833251a 851 afs_notify_end_reply_tx);
bd6dc742 852 if (n >= 0) {
6c67c7c3 853 /* Success */
b908fe6b
DH
854 _leave(" [replied]");
855 return;
bd6dc742 856 }
6c67c7c3 857
bd6dc742 858 if (n == -ENOMEM) {
b908fe6b 859 _debug("oom");
f044c884 860 rxrpc_kernel_abort_call(net->socket, call->rxcall,
57af281e
DH
861 RXGEN_SS_MARSHAL, -ENOMEM,
862 afs_abort_oom);
b908fe6b 863 }
bd6dc742 864 _leave(" [error]");
b908fe6b
DH
865}
866
08e0e7c8 867/*
372ee163 868 * Extract a piece of data from the received data socket buffers.
08e0e7c8 869 */
12bdcf33 870int afs_extract_data(struct afs_call *call, bool want_more)
08e0e7c8 871{
f044c884 872 struct afs_net *net = call->net;
fc276122 873 struct iov_iter *iter = call->iter;
98bf40cd 874 enum afs_call_state state;
7888da95 875 u32 remote_abort = 0;
d001648e 876 int ret;
08e0e7c8 877
f105da1a
DH
878 _enter("{%s,%zu,%zu},%d",
879 call->type->name, call->iov_len, iov_iter_count(iter), want_more);
eb9950eb 880
12bdcf33 881 ret = rxrpc_kernel_recv_data(net->socket, call->rxcall, iter,
f105da1a 882 &call->iov_len, want_more, &remote_abort,
a68f4a27 883 &call->service_id);
93368b6b 884 trace_afs_receive_data(call, call->iter, want_more, ret);
d001648e
DH
885 if (ret == 0 || ret == -EAGAIN)
886 return ret;
08e0e7c8 887
98bf40cd 888 state = READ_ONCE(call->state);
d001648e 889 if (ret == 1) {
98bf40cd
DH
890 switch (state) {
891 case AFS_CALL_CL_AWAIT_REPLY:
892 afs_set_call_state(call, state, AFS_CALL_CL_PROC_REPLY);
d001648e 893 break;
98bf40cd
DH
894 case AFS_CALL_SV_AWAIT_REQUEST:
895 afs_set_call_state(call, state, AFS_CALL_SV_REPLYING);
d001648e 896 break;
98bf40cd
DH
897 case AFS_CALL_COMPLETE:
898 kdebug("prem complete %d", call->error);
f51375cd 899 return afs_io_error(call, afs_io_error_extract);
d001648e
DH
900 default:
901 break;
902 }
903 return 0;
08e0e7c8 904 }
d001648e 905
98bf40cd 906 afs_set_call_complete(call, ret, remote_abort);
d001648e 907 return ret;
08e0e7c8 908}
5f702c8e
DH
909
910/*
911 * Log protocol error production.
912 */
7126ead9 913noinline int afs_protocol_error(struct afs_call *call,
160cb957 914 enum afs_eproto_cause cause)
5f702c8e 915{
7126ead9 916 trace_afs_protocol_error(call, cause);
38355eec
DH
917 if (call)
918 call->unmarshalling_error = true;
7126ead9 919 return -EBADMSG;
5f702c8e 920}