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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"
08e0e7c8 16
f044c884 17struct workqueue_struct *afs_async_calls;
08e0e7c8 18
d001648e 19static void afs_wake_up_call_waiter(struct sock *, struct rxrpc_call *, unsigned long);
d001648e 20static void afs_wake_up_async_call(struct sock *, struct rxrpc_call *, unsigned long);
d001648e 21static void afs_process_async_call(struct work_struct *);
00e90712
DH
22static void afs_rx_new_call(struct sock *, struct rxrpc_call *, unsigned long);
23static void afs_rx_discard_new_call(struct rxrpc_call *, unsigned long);
d001648e 24static int afs_deliver_cm_op_id(struct afs_call *);
08e0e7c8 25
08e0e7c8
DH
26/* asynchronous incoming call initial processing */
27static const struct afs_call_type afs_RXCMxxxx = {
00d3b7a4 28 .name = "CB.xxxx",
08e0e7c8 29 .deliver = afs_deliver_cm_op_id,
08e0e7c8
DH
30};
31
08e0e7c8
DH
32/*
33 * open an RxRPC socket and bind it to be a server for callback notifications
34 * - the socket is left in blocking mode and non-blocking ops use MSG_DONTWAIT
35 */
f044c884 36int afs_open_socket(struct afs_net *net)
08e0e7c8
DH
37{
38 struct sockaddr_rxrpc srx;
39 struct socket *socket;
40 int ret;
41
42 _enter("");
43
5b86d4ff 44 ret = sock_create_kern(net->net, AF_RXRPC, SOCK_DGRAM, PF_INET6, &socket);
0e119b41
DH
45 if (ret < 0)
46 goto error_1;
08e0e7c8
DH
47
48 socket->sk->sk_allocation = GFP_NOFS;
49
50 /* bind the callback manager's address to make this a server socket */
3838d3ec 51 memset(&srx, 0, sizeof(srx));
08e0e7c8
DH
52 srx.srx_family = AF_RXRPC;
53 srx.srx_service = CM_SERVICE;
54 srx.transport_type = SOCK_DGRAM;
3838d3ec
DH
55 srx.transport_len = sizeof(srx.transport.sin6);
56 srx.transport.sin6.sin6_family = AF_INET6;
57 srx.transport.sin6.sin6_port = htons(AFS_CM_PORT);
08e0e7c8 58
298cd88a
CH
59 ret = rxrpc_sock_set_min_security_level(socket->sk,
60 RXRPC_SECURITY_ENCRYPT);
4776cab4
DH
61 if (ret < 0)
62 goto error_2;
63
08e0e7c8 64 ret = kernel_bind(socket, (struct sockaddr *) &srx, sizeof(srx));
83732ec5
MD
65 if (ret == -EADDRINUSE) {
66 srx.transport.sin6.sin6_port = 0;
67 ret = kernel_bind(socket, (struct sockaddr *) &srx, sizeof(srx));
68 }
0e119b41
DH
69 if (ret < 0)
70 goto error_2;
71
35dbfba3
DH
72 srx.srx_service = YFS_CM_SERVICE;
73 ret = kernel_bind(socket, (struct sockaddr *) &srx, sizeof(srx));
74 if (ret < 0)
75 goto error_2;
76
3bf0fb6f
DH
77 /* Ideally, we'd turn on service upgrade here, but we can't because
78 * OpenAFS is buggy and leaks the userStatus field from packet to
79 * packet and between FS packets and CB packets - so if we try to do an
80 * upgrade on an FS packet, OpenAFS will leak that into the CB packet
81 * it sends back to us.
82 */
35dbfba3 83
00e90712
DH
84 rxrpc_kernel_new_call_notification(socket, afs_rx_new_call,
85 afs_rx_discard_new_call);
d001648e 86
0e119b41
DH
87 ret = kernel_listen(socket, INT_MAX);
88 if (ret < 0)
89 goto error_2;
08e0e7c8 90
f044c884
DH
91 net->socket = socket;
92 afs_charge_preallocation(&net->charge_preallocation_work);
08e0e7c8
DH
93 _leave(" = 0");
94 return 0;
0e119b41
DH
95
96error_2:
97 sock_release(socket);
98error_1:
0e119b41
DH
99 _leave(" = %d", ret);
100 return ret;
08e0e7c8
DH
101}
102
103/*
104 * close the RxRPC socket AFS was using
105 */
f044c884 106void afs_close_socket(struct afs_net *net)
08e0e7c8
DH
107{
108 _enter("");
109
f044c884 110 kernel_listen(net->socket, 0);
341f741f
DH
111 flush_workqueue(afs_async_calls);
112
f044c884
DH
113 if (net->spare_incoming_call) {
114 afs_put_call(net->spare_incoming_call);
115 net->spare_incoming_call = NULL;
00e90712
DH
116 }
117
f044c884 118 _debug("outstanding %u", atomic_read(&net->nr_outstanding_calls));
ab1fbe32
PZ
119 wait_var_event(&net->nr_outstanding_calls,
120 !atomic_read(&net->nr_outstanding_calls));
2f02f7ae
DH
121 _debug("no outstanding calls");
122
f044c884 123 kernel_sock_shutdown(net->socket, SHUT_RDWR);
d001648e 124 flush_workqueue(afs_async_calls);
f044c884 125 sock_release(net->socket);
08e0e7c8
DH
126
127 _debug("dework");
08e0e7c8
DH
128 _leave("");
129}
130
00d3b7a4 131/*
341f741f 132 * Allocate a call.
00d3b7a4 133 */
f044c884
DH
134static struct afs_call *afs_alloc_call(struct afs_net *net,
135 const struct afs_call_type *type,
341f741f 136 gfp_t gfp)
00d3b7a4 137{
341f741f
DH
138 struct afs_call *call;
139 int o;
00d3b7a4 140
341f741f
DH
141 call = kzalloc(sizeof(*call), gfp);
142 if (!call)
143 return NULL;
00d3b7a4 144
341f741f 145 call->type = type;
f044c884 146 call->net = net;
a25e21f0 147 call->debug_id = atomic_inc_return(&rxrpc_debug_id);
341f741f
DH
148 atomic_set(&call->usage, 1);
149 INIT_WORK(&call->async_work, afs_process_async_call);
150 init_waitqueue_head(&call->waitq);
98bf40cd 151 spin_lock_init(&call->state_lock);
fc276122 152 call->iter = &call->def_iter;
2f02f7ae 153
f044c884 154 o = atomic_inc_return(&net->nr_outstanding_calls);
341f741f
DH
155 trace_afs_call(call, afs_call_trace_alloc, 1, o,
156 __builtin_return_address(0));
157 return call;
00d3b7a4
DH
158}
159
6c67c7c3 160/*
341f741f 161 * Dispose of a reference on a call.
6c67c7c3 162 */
341f741f 163void afs_put_call(struct afs_call *call)
6c67c7c3 164{
f044c884 165 struct afs_net *net = call->net;
341f741f 166 int n = atomic_dec_return(&call->usage);
f044c884 167 int o = atomic_read(&net->nr_outstanding_calls);
341f741f 168
4636cf18 169 trace_afs_call(call, afs_call_trace_put, n, o,
341f741f
DH
170 __builtin_return_address(0));
171
172 ASSERTCMP(n, >=, 0);
173 if (n == 0) {
174 ASSERT(!work_pending(&call->async_work));
175 ASSERT(call->type->name != NULL);
176
177 if (call->rxcall) {
f044c884 178 rxrpc_kernel_end_call(net->socket, call->rxcall);
341f741f
DH
179 call->rxcall = NULL;
180 }
181 if (call->type->destructor)
182 call->type->destructor(call);
183
977e5f8e 184 afs_unuse_server_notime(call->net, call->server, afs_server_trace_put_call);
3bf0fb6f 185 afs_put_addrlist(call->alist);
341f741f 186 kfree(call->request);
341f741f 187
341f741f
DH
188 trace_afs_call(call, afs_call_trace_free, 0, o,
189 __builtin_return_address(0));
a25e21f0
DH
190 kfree(call);
191
192 o = atomic_dec_return(&net->nr_outstanding_calls);
341f741f 193 if (o == 0)
ab1fbe32 194 wake_up_var(&net->nr_outstanding_calls);
6c67c7c3 195 }
6cf12869
NWF
196}
197
7a75b007
DH
198static struct afs_call *afs_get_call(struct afs_call *call,
199 enum afs_call_trace why)
200{
201 int u = atomic_inc_return(&call->usage);
202
203 trace_afs_call(call, why, u,
204 atomic_read(&call->net->nr_outstanding_calls),
205 __builtin_return_address(0));
206 return call;
207}
208
6cf12869 209/*
3bf0fb6f 210 * Queue the call for actual work.
6cf12869 211 */
3bf0fb6f 212static void afs_queue_call_work(struct afs_call *call)
6cf12869 213{
3bf0fb6f 214 if (call->type->work) {
3bf0fb6f 215 INIT_WORK(&call->work, call->type->work);
341f741f 216
7a75b007 217 afs_get_call(call, afs_call_trace_work);
3bf0fb6f
DH
218 if (!queue_work(afs_wq, &call->work))
219 afs_put_call(call);
220 }
6c67c7c3
DH
221}
222
08e0e7c8
DH
223/*
224 * allocate a call with flat request and reply buffers
225 */
f044c884
DH
226struct afs_call *afs_alloc_flat_call(struct afs_net *net,
227 const struct afs_call_type *type,
d001648e 228 size_t request_size, size_t reply_max)
08e0e7c8
DH
229{
230 struct afs_call *call;
231
f044c884 232 call = afs_alloc_call(net, type, GFP_NOFS);
08e0e7c8
DH
233 if (!call)
234 goto nomem_call;
235
236 if (request_size) {
341f741f 237 call->request_size = request_size;
08e0e7c8
DH
238 call->request = kmalloc(request_size, GFP_NOFS);
239 if (!call->request)
00d3b7a4 240 goto nomem_free;
08e0e7c8
DH
241 }
242
d001648e 243 if (reply_max) {
341f741f 244 call->reply_max = reply_max;
d001648e 245 call->buffer = kmalloc(reply_max, GFP_NOFS);
08e0e7c8 246 if (!call->buffer)
00d3b7a4 247 goto nomem_free;
08e0e7c8
DH
248 }
249
12bdcf33 250 afs_extract_to_buf(call, call->reply_max);
025db80c 251 call->operation_ID = type->op;
08e0e7c8 252 init_waitqueue_head(&call->waitq);
08e0e7c8
DH
253 return call;
254
00d3b7a4 255nomem_free:
341f741f 256 afs_put_call(call);
08e0e7c8
DH
257nomem_call:
258 return NULL;
259}
260
261/*
262 * clean up a call with flat buffer
263 */
264void afs_flat_call_destructor(struct afs_call *call)
265{
266 _enter("");
267
268 kfree(call->request);
269 call->request = NULL;
270 kfree(call->buffer);
271 call->buffer = NULL;
272}
273
e833251a
DH
274/*
275 * Advance the AFS call state when the RxRPC call ends the transmit phase.
276 */
277static void afs_notify_end_request_tx(struct sock *sock,
278 struct rxrpc_call *rxcall,
279 unsigned long call_user_ID)
280{
281 struct afs_call *call = (struct afs_call *)call_user_ID;
282
98bf40cd 283 afs_set_call_state(call, AFS_CALL_CL_REQUESTING, AFS_CALL_CL_AWAIT_REPLY);
e833251a
DH
284}
285
08e0e7c8 286/*
0b9bf381
DH
287 * Initiate a call and synchronously queue up the parameters for dispatch. Any
288 * error is stored into the call struct, which the caller must check for.
08e0e7c8 289 */
0b9bf381 290void afs_make_call(struct afs_addr_cursor *ac, struct afs_call *call, gfp_t gfp)
08e0e7c8 291{
2feeaf84 292 struct sockaddr_rxrpc *srx = &ac->alist->addrs[ac->index];
08e0e7c8
DH
293 struct rxrpc_call *rxcall;
294 struct msghdr msg;
295 struct kvec iov[1];
f105da1a 296 size_t len;
e754eba6 297 s64 tx_total_len;
08e0e7c8
DH
298 int ret;
299
4d9df986 300 _enter(",{%pISp},", &srx->transport);
08e0e7c8 301
00d3b7a4
DH
302 ASSERT(call->type != NULL);
303 ASSERT(call->type->name != NULL);
304
31143d5d
DH
305 _debug("____MAKE %p{%s,%x} [%d]____",
306 call, call->type->name, key_serial(call->key),
f044c884 307 atomic_read(&call->net->nr_outstanding_calls));
00d3b7a4 308
3bf0fb6f
DH
309 call->addr_ix = ac->index;
310 call->alist = afs_get_addrlist(ac->alist);
08e0e7c8 311
e754eba6
DH
312 /* Work out the length we're going to transmit. This is awkward for
313 * calls such as FS.StoreData where there's an extra injection of data
314 * after the initial fixed part.
315 */
316 tx_total_len = call->request_size;
bd80d8a8
DH
317 if (call->write_iter)
318 tx_total_len += iov_iter_count(call->write_iter);
e754eba6 319
34fa4761
DH
320 /* If the call is going to be asynchronous, we need an extra ref for
321 * the call to hold itself so the caller need not hang on to its ref.
322 */
dde9f095 323 if (call->async) {
34fa4761 324 afs_get_call(call, afs_call_trace_get);
dde9f095
DH
325 call->drop_ref = true;
326 }
34fa4761 327
08e0e7c8 328 /* create a call */
4d9df986 329 rxcall = rxrpc_kernel_begin_call(call->net->socket, srx, call->key,
e754eba6
DH
330 (unsigned long)call,
331 tx_total_len, gfp,
0b9bf381 332 (call->async ?
56ff9c83 333 afs_wake_up_async_call :
a68f4a27 334 afs_wake_up_call_waiter),
a25e21f0 335 call->upgrade,
e138aa7d
DH
336 (call->intr ? RXRPC_PREINTERRUPTIBLE :
337 RXRPC_UNINTERRUPTIBLE),
a25e21f0 338 call->debug_id);
08e0e7c8
DH
339 if (IS_ERR(rxcall)) {
340 ret = PTR_ERR(rxcall);
3bf0fb6f 341 call->error = ret;
08e0e7c8
DH
342 goto error_kill_call;
343 }
344
345 call->rxcall = rxcall;
346
94f699c9
DH
347 if (call->max_lifespan)
348 rxrpc_kernel_set_max_life(call->net->socket, rxcall,
349 call->max_lifespan);
350
08e0e7c8
DH
351 /* send the request */
352 iov[0].iov_base = call->request;
353 iov[0].iov_len = call->request_size;
354
355 msg.msg_name = NULL;
356 msg.msg_namelen = 0;
aa563d7b 357 iov_iter_kvec(&msg.msg_iter, WRITE, iov, 1, call->request_size);
08e0e7c8
DH
358 msg.msg_control = NULL;
359 msg.msg_controllen = 0;
bd80d8a8 360 msg.msg_flags = MSG_WAITALL | (call->write_iter ? MSG_MORE : 0);
08e0e7c8 361
f044c884 362 ret = rxrpc_kernel_send_data(call->net->socket, rxcall,
e833251a
DH
363 &msg, call->request_size,
364 afs_notify_end_request_tx);
08e0e7c8
DH
365 if (ret < 0)
366 goto error_do_abort;
367
bd80d8a8
DH
368 if (call->write_iter) {
369 msg.msg_iter = *call->write_iter;
370 msg.msg_flags &= ~MSG_MORE;
371 trace_afs_send_data(call, &msg);
372
373 ret = rxrpc_kernel_send_data(call->net->socket,
374 call->rxcall, &msg,
375 iov_iter_count(&msg.msg_iter),
376 afs_notify_end_request_tx);
377 *call->write_iter = msg.msg_iter;
378
379 trace_afs_sent_data(call, &msg, ret);
31143d5d
DH
380 if (ret < 0)
381 goto error_do_abort;
382 }
383
34fa4761
DH
384 /* Note that at this point, we may have received the reply or an abort
385 * - and an asynchronous call may already have completed.
0b9bf381
DH
386 *
387 * afs_wait_for_call_to_complete(call, ac)
388 * must be called to synchronously clean up.
34fa4761 389 */
0b9bf381 390 return;
08e0e7c8
DH
391
392error_do_abort:
70af0e3b 393 if (ret != -ECONNABORTED) {
f044c884
DH
394 rxrpc_kernel_abort_call(call->net->socket, rxcall,
395 RX_USER_ABORT, ret, "KSD");
70af0e3b 396 } else {
f105da1a 397 len = 0;
aa563d7b 398 iov_iter_kvec(&msg.msg_iter, READ, NULL, 0, 0);
eb9950eb 399 rxrpc_kernel_recv_data(call->net->socket, rxcall,
f105da1a 400 &msg.msg_iter, &len, false,
eb9950eb 401 &call->abort_code, &call->service_id);
d2ddc776
DH
402 ac->abort_code = call->abort_code;
403 ac->responded = true;
70af0e3b 404 }
025db80c
DH
405 call->error = ret;
406 trace_afs_call_done(call);
08e0e7c8 407error_kill_call:
3bf0fb6f
DH
408 if (call->type->done)
409 call->type->done(call);
34fa4761
DH
410
411 /* We need to dispose of the extra ref we grabbed for an async call.
412 * The call, however, might be queued on afs_async_calls and we need to
413 * make sure we don't get any more notifications that might requeue it.
414 */
415 if (call->rxcall) {
416 rxrpc_kernel_end_call(call->net->socket, call->rxcall);
417 call->rxcall = NULL;
418 }
419 if (call->async) {
420 if (cancel_work_sync(&call->async_work))
421 afs_put_call(call);
422 afs_put_call(call);
423 }
424
d2ddc776 425 ac->error = ret;
34fa4761 426 call->state = AFS_CALL_COMPLETE;
08e0e7c8 427 _leave(" = %d", ret);
08e0e7c8
DH
428}
429
05092755
DH
430/*
431 * Log remote abort codes that indicate that we have a protocol disagreement
432 * with the server.
433 */
434static void afs_log_error(struct afs_call *call, s32 remote_abort)
435{
436 static int max = 0;
437 const char *msg;
438 int m;
439
440 switch (remote_abort) {
441 case RX_EOF: msg = "unexpected EOF"; break;
442 case RXGEN_CC_MARSHAL: msg = "client marshalling"; break;
443 case RXGEN_CC_UNMARSHAL: msg = "client unmarshalling"; break;
444 case RXGEN_SS_MARSHAL: msg = "server marshalling"; break;
445 case RXGEN_SS_UNMARSHAL: msg = "server unmarshalling"; break;
446 case RXGEN_DECODE: msg = "opcode decode"; break;
447 case RXGEN_SS_XDRFREE: msg = "server XDR cleanup"; break;
448 case RXGEN_CC_XDRFREE: msg = "client XDR cleanup"; break;
449 case -32: msg = "insufficient data"; break;
450 default:
451 return;
452 }
453
454 m = max;
455 if (m < 3) {
456 max = m + 1;
457 pr_notice("kAFS: Peer reported %s failure on %s [%pISp]\n",
458 msg, call->type->name,
459 &call->alist->addrs[call->addr_ix].transport);
460 }
461}
462
08e0e7c8
DH
463/*
464 * deliver messages to a call
465 */
466static void afs_deliver_to_call(struct afs_call *call)
467{
98bf40cd 468 enum afs_call_state state;
f105da1a 469 size_t len;
98bf40cd 470 u32 abort_code, remote_abort = 0;
08e0e7c8
DH
471 int ret;
472
d001648e
DH
473 _enter("%s", call->type->name);
474
98bf40cd
DH
475 while (state = READ_ONCE(call->state),
476 state == AFS_CALL_CL_AWAIT_REPLY ||
477 state == AFS_CALL_SV_AWAIT_OP_ID ||
478 state == AFS_CALL_SV_AWAIT_REQUEST ||
479 state == AFS_CALL_SV_AWAIT_ACK
d001648e 480 ) {
98bf40cd 481 if (state == AFS_CALL_SV_AWAIT_ACK) {
f105da1a 482 len = 0;
fc276122 483 iov_iter_kvec(&call->def_iter, READ, NULL, 0, 0);
f044c884 484 ret = rxrpc_kernel_recv_data(call->net->socket,
fc276122 485 call->rxcall, &call->def_iter,
f105da1a 486 &len, false, &remote_abort,
a68f4a27 487 &call->service_id);
fc276122 488 trace_afs_receive_data(call, &call->def_iter, false, ret);
8e8d7f13 489
d001648e
DH
490 if (ret == -EINPROGRESS || ret == -EAGAIN)
491 return;
98bf40cd
DH
492 if (ret < 0 || ret == 1) {
493 if (ret == 1)
494 ret = 0;
025db80c 495 goto call_complete;
98bf40cd 496 }
d001648e 497 return;
08e0e7c8
DH
498 }
499
4571577f 500 if (!call->have_reply_time &&
12d8e95a
DH
501 rxrpc_kernel_get_reply_time(call->net->socket,
502 call->rxcall,
503 &call->reply_time))
4571577f 504 call->have_reply_time = true;
12d8e95a 505
d001648e 506 ret = call->type->deliver(call);
98bf40cd 507 state = READ_ONCE(call->state);
38355eec
DH
508 if (ret == 0 && call->unmarshalling_error)
509 ret = -EBADMSG;
d001648e
DH
510 switch (ret) {
511 case 0:
3bf0fb6f 512 afs_queue_call_work(call);
f2686b09 513 if (state == AFS_CALL_CL_PROC_REPLY) {
20325960 514 if (call->op)
f2686b09 515 set_bit(AFS_SERVER_FL_MAY_HAVE_CB,
20325960 516 &call->op->server->flags);
025db80c 517 goto call_complete;
f2686b09 518 }
98bf40cd 519 ASSERTCMP(state, >, AFS_CALL_CL_PROC_REPLY);
d001648e
DH
520 goto done;
521 case -EINPROGRESS:
522 case -EAGAIN:
523 goto out;
70af0e3b 524 case -ECONNABORTED:
98bf40cd 525 ASSERTCMP(state, ==, AFS_CALL_COMPLETE);
05092755 526 afs_log_error(call, call->abort_code);
98bf40cd 527 goto done;
d001648e 528 case -ENOTSUPP:
1157f153 529 abort_code = RXGEN_OPCODE;
f044c884 530 rxrpc_kernel_abort_call(call->net->socket, call->rxcall,
3a92789a 531 abort_code, ret, "KIV");
98bf40cd 532 goto local_abort;
4ac15ea5
DH
533 case -EIO:
534 pr_err("kAFS: Call %u in bad state %u\n",
535 call->debug_id, state);
df561f66 536 fallthrough;
d001648e
DH
537 case -ENODATA:
538 case -EBADMSG:
539 case -EMSGSIZE:
d001648e 540 abort_code = RXGEN_CC_UNMARSHAL;
98bf40cd 541 if (state != AFS_CALL_CL_AWAIT_REPLY)
d001648e 542 abort_code = RXGEN_SS_UNMARSHAL;
f044c884 543 rxrpc_kernel_abort_call(call->net->socket, call->rxcall,
12bdcf33 544 abort_code, ret, "KUM");
98bf40cd 545 goto local_abort;
8022c4b9
DH
546 default:
547 abort_code = RX_USER_ABORT;
548 rxrpc_kernel_abort_call(call->net->socket, call->rxcall,
549 abort_code, ret, "KER");
550 goto local_abort;
d001648e 551 }
08e0e7c8
DH
552 }
553
d001648e 554done:
3bf0fb6f
DH
555 if (call->type->done)
556 call->type->done(call);
d001648e 557out:
08e0e7c8 558 _leave("");
d001648e
DH
559 return;
560
98bf40cd
DH
561local_abort:
562 abort_code = 0;
025db80c 563call_complete:
98bf40cd
DH
564 afs_set_call_complete(call, ret, remote_abort);
565 state = AFS_CALL_COMPLETE;
d001648e 566 goto done;
08e0e7c8
DH
567}
568
569/*
0b9bf381 570 * Wait synchronously for a call to complete and clean up the call struct.
08e0e7c8 571 */
0b9bf381
DH
572long afs_wait_for_call_to_complete(struct afs_call *call,
573 struct afs_addr_cursor *ac)
08e0e7c8 574{
33cd7f2b 575 long ret;
f7f1dd31 576 bool rxrpc_complete = false;
08e0e7c8
DH
577
578 DECLARE_WAITQUEUE(myself, current);
579
580 _enter("");
581
0b9bf381
DH
582 ret = call->error;
583 if (ret < 0)
584 goto out;
585
08e0e7c8
DH
586 add_wait_queue(&call->waitq, &myself);
587 for (;;) {
bc5e3a54 588 set_current_state(TASK_UNINTERRUPTIBLE);
08e0e7c8
DH
589
590 /* deliver any messages that are in the queue */
98bf40cd
DH
591 if (!afs_check_call_state(call, AFS_CALL_COMPLETE) &&
592 call->need_attention) {
d001648e 593 call->need_attention = false;
08e0e7c8
DH
594 __set_current_state(TASK_RUNNING);
595 afs_deliver_to_call(call);
596 continue;
597 }
598
98bf40cd 599 if (afs_check_call_state(call, AFS_CALL_COMPLETE))
08e0e7c8 600 break;
bc5e3a54 601
7d7587db 602 if (!rxrpc_kernel_check_life(call->net->socket, call->rxcall)) {
f7f1dd31
MD
603 /* rxrpc terminated the call. */
604 rxrpc_complete = true;
605 break;
606 }
607
7d7587db 608 schedule();
08e0e7c8
DH
609 }
610
611 remove_wait_queue(&call->waitq, &myself);
612 __set_current_state(TASK_RUNNING);
613
98bf40cd 614 if (!afs_check_call_state(call, AFS_CALL_COMPLETE)) {
f7f1dd31
MD
615 if (rxrpc_complete) {
616 afs_set_call_complete(call, call->error, call->abort_code);
617 } else {
618 /* Kill off the call if it's still live. */
619 _debug("call interrupted");
620 if (rxrpc_kernel_abort_call(call->net->socket, call->rxcall,
621 RX_USER_ABORT, -EINTR, "KWI"))
622 afs_set_call_complete(call, -EINTR, 0);
623 }
08e0e7c8
DH
624 }
625
98bf40cd 626 spin_lock_bh(&call->state_lock);
d2ddc776
DH
627 ac->abort_code = call->abort_code;
628 ac->error = call->error;
98bf40cd 629 spin_unlock_bh(&call->state_lock);
d2ddc776
DH
630
631 ret = ac->error;
632 switch (ret) {
633 case 0:
ffba718e
DH
634 ret = call->ret0;
635 call->ret0 = 0;
636
df561f66 637 fallthrough;
d2ddc776
DH
638 case -ECONNABORTED:
639 ac->responded = true;
640 break;
33cd7f2b
DH
641 }
642
0b9bf381 643out:
08e0e7c8 644 _debug("call complete");
341f741f 645 afs_put_call(call);
33cd7f2b 646 _leave(" = %p", (void *)ret);
08e0e7c8
DH
647 return ret;
648}
649
650/*
651 * wake up a waiting call
652 */
d001648e
DH
653static void afs_wake_up_call_waiter(struct sock *sk, struct rxrpc_call *rxcall,
654 unsigned long call_user_ID)
08e0e7c8 655{
d001648e
DH
656 struct afs_call *call = (struct afs_call *)call_user_ID;
657
658 call->need_attention = true;
08e0e7c8
DH
659 wake_up(&call->waitq);
660}
661
662/*
663 * wake up an asynchronous call
664 */
d001648e
DH
665static void afs_wake_up_async_call(struct sock *sk, struct rxrpc_call *rxcall,
666 unsigned long call_user_ID)
08e0e7c8 667{
d001648e 668 struct afs_call *call = (struct afs_call *)call_user_ID;
341f741f 669 int u;
d001648e 670
8e8d7f13 671 trace_afs_notify_call(rxcall, call);
d001648e 672 call->need_attention = true;
341f741f 673
bfc18e38 674 u = atomic_fetch_add_unless(&call->usage, 1, 0);
341f741f 675 if (u != 0) {
4636cf18 676 trace_afs_call(call, afs_call_trace_wake, u + 1,
f044c884 677 atomic_read(&call->net->nr_outstanding_calls),
341f741f
DH
678 __builtin_return_address(0));
679
680 if (!queue_work(afs_async_calls, &call->async_work))
681 afs_put_call(call);
682 }
08e0e7c8
DH
683}
684
08e0e7c8 685/*
341f741f
DH
686 * Perform I/O processing on an asynchronous call. The work item carries a ref
687 * to the call struct that we either need to release or to pass on.
08e0e7c8 688 */
d001648e 689static void afs_process_async_call(struct work_struct *work)
08e0e7c8 690{
d001648e
DH
691 struct afs_call *call = container_of(work, struct afs_call, async_work);
692
08e0e7c8
DH
693 _enter("");
694
d001648e
DH
695 if (call->state < AFS_CALL_COMPLETE && call->need_attention) {
696 call->need_attention = false;
08e0e7c8 697 afs_deliver_to_call(call);
d001648e 698 }
08e0e7c8 699
341f741f 700 afs_put_call(call);
08e0e7c8
DH
701 _leave("");
702}
703
00e90712
DH
704static void afs_rx_attach(struct rxrpc_call *rxcall, unsigned long user_call_ID)
705{
706 struct afs_call *call = (struct afs_call *)user_call_ID;
707
708 call->rxcall = rxcall;
709}
710
711/*
712 * Charge the incoming call preallocation.
713 */
f044c884 714void afs_charge_preallocation(struct work_struct *work)
00e90712 715{
f044c884
DH
716 struct afs_net *net =
717 container_of(work, struct afs_net, charge_preallocation_work);
718 struct afs_call *call = net->spare_incoming_call;
00e90712
DH
719
720 for (;;) {
721 if (!call) {
f044c884 722 call = afs_alloc_call(net, &afs_RXCMxxxx, GFP_KERNEL);
00e90712
DH
723 if (!call)
724 break;
725
dde9f095 726 call->drop_ref = true;
56ff9c83 727 call->async = true;
98bf40cd 728 call->state = AFS_CALL_SV_AWAIT_OP_ID;
56ff9c83 729 init_waitqueue_head(&call->waitq);
12bdcf33 730 afs_extract_to_tmp(call);
00e90712
DH
731 }
732
f044c884 733 if (rxrpc_kernel_charge_accept(net->socket,
00e90712
DH
734 afs_wake_up_async_call,
735 afs_rx_attach,
736 (unsigned long)call,
a25e21f0
DH
737 GFP_KERNEL,
738 call->debug_id) < 0)
00e90712
DH
739 break;
740 call = NULL;
741 }
f044c884 742 net->spare_incoming_call = call;
00e90712
DH
743}
744
745/*
746 * Discard a preallocated call when a socket is shut down.
747 */
748static void afs_rx_discard_new_call(struct rxrpc_call *rxcall,
749 unsigned long user_call_ID)
750{
751 struct afs_call *call = (struct afs_call *)user_call_ID;
752
00e90712 753 call->rxcall = NULL;
341f741f 754 afs_put_call(call);
00e90712
DH
755}
756
d001648e
DH
757/*
758 * Notification of an incoming call.
759 */
00e90712
DH
760static void afs_rx_new_call(struct sock *sk, struct rxrpc_call *rxcall,
761 unsigned long user_call_ID)
d001648e 762{
f044c884
DH
763 struct afs_net *net = afs_sock2net(sk);
764
765 queue_work(afs_wq, &net->charge_preallocation_work);
d001648e
DH
766}
767
08e0e7c8 768/*
372ee163
DH
769 * Grab the operation ID from an incoming cache manager call. The socket
770 * buffer is discarded on error or if we don't yet have sufficient data.
08e0e7c8 771 */
d001648e 772static int afs_deliver_cm_op_id(struct afs_call *call)
08e0e7c8 773{
d001648e 774 int ret;
08e0e7c8 775
fc276122 776 _enter("{%zu}", iov_iter_count(call->iter));
08e0e7c8
DH
777
778 /* the operation ID forms the first four bytes of the request data */
12bdcf33 779 ret = afs_extract_data(call, true);
d001648e
DH
780 if (ret < 0)
781 return ret;
08e0e7c8 782
50a2c953 783 call->operation_ID = ntohl(call->tmp);
98bf40cd 784 afs_set_call_state(call, AFS_CALL_SV_AWAIT_OP_ID, AFS_CALL_SV_AWAIT_REQUEST);
08e0e7c8
DH
785
786 /* ask the cache manager to route the call (it'll change the call type
787 * if successful) */
788 if (!afs_cm_incoming_call(call))
789 return -ENOTSUPP;
790
8e8d7f13
DH
791 trace_afs_cb_call(call);
792
08e0e7c8
DH
793 /* pass responsibility for the remainer of this message off to the
794 * cache manager op */
d001648e 795 return call->type->deliver(call);
08e0e7c8
DH
796}
797
e833251a
DH
798/*
799 * Advance the AFS call state when an RxRPC service call ends the transmit
800 * phase.
801 */
802static void afs_notify_end_reply_tx(struct sock *sock,
803 struct rxrpc_call *rxcall,
804 unsigned long call_user_ID)
805{
806 struct afs_call *call = (struct afs_call *)call_user_ID;
807
98bf40cd 808 afs_set_call_state(call, AFS_CALL_SV_REPLYING, AFS_CALL_SV_AWAIT_ACK);
e833251a
DH
809}
810
08e0e7c8
DH
811/*
812 * send an empty reply
813 */
814void afs_send_empty_reply(struct afs_call *call)
815{
f044c884 816 struct afs_net *net = call->net;
08e0e7c8 817 struct msghdr msg;
08e0e7c8
DH
818
819 _enter("");
820
f044c884 821 rxrpc_kernel_set_tx_length(net->socket, call->rxcall, 0);
e754eba6 822
08e0e7c8
DH
823 msg.msg_name = NULL;
824 msg.msg_namelen = 0;
aa563d7b 825 iov_iter_kvec(&msg.msg_iter, WRITE, NULL, 0, 0);
08e0e7c8
DH
826 msg.msg_control = NULL;
827 msg.msg_controllen = 0;
828 msg.msg_flags = 0;
829
f044c884 830 switch (rxrpc_kernel_send_data(net->socket, call->rxcall, &msg, 0,
e833251a 831 afs_notify_end_reply_tx)) {
08e0e7c8
DH
832 case 0:
833 _leave(" [replied]");
834 return;
835
836 case -ENOMEM:
837 _debug("oom");
f044c884 838 rxrpc_kernel_abort_call(net->socket, call->rxcall,
3a92789a 839 RX_USER_ABORT, -ENOMEM, "KOO");
df561f66 840 fallthrough;
08e0e7c8 841 default:
08e0e7c8
DH
842 _leave(" [error]");
843 return;
844 }
845}
846
b908fe6b
DH
847/*
848 * send a simple reply
849 */
850void afs_send_simple_reply(struct afs_call *call, const void *buf, size_t len)
851{
f044c884 852 struct afs_net *net = call->net;
b908fe6b 853 struct msghdr msg;
2e90b1c4 854 struct kvec iov[1];
bd6dc742 855 int n;
b908fe6b
DH
856
857 _enter("");
858
f044c884 859 rxrpc_kernel_set_tx_length(net->socket, call->rxcall, len);
e754eba6 860
b908fe6b
DH
861 iov[0].iov_base = (void *) buf;
862 iov[0].iov_len = len;
863 msg.msg_name = NULL;
864 msg.msg_namelen = 0;
aa563d7b 865 iov_iter_kvec(&msg.msg_iter, WRITE, iov, 1, len);
b908fe6b
DH
866 msg.msg_control = NULL;
867 msg.msg_controllen = 0;
868 msg.msg_flags = 0;
869
f044c884 870 n = rxrpc_kernel_send_data(net->socket, call->rxcall, &msg, len,
e833251a 871 afs_notify_end_reply_tx);
bd6dc742 872 if (n >= 0) {
6c67c7c3 873 /* Success */
b908fe6b
DH
874 _leave(" [replied]");
875 return;
bd6dc742 876 }
6c67c7c3 877
bd6dc742 878 if (n == -ENOMEM) {
b908fe6b 879 _debug("oom");
f044c884 880 rxrpc_kernel_abort_call(net->socket, call->rxcall,
3a92789a 881 RX_USER_ABORT, -ENOMEM, "KOO");
b908fe6b 882 }
bd6dc742 883 _leave(" [error]");
b908fe6b
DH
884}
885
08e0e7c8 886/*
372ee163 887 * Extract a piece of data from the received data socket buffers.
08e0e7c8 888 */
12bdcf33 889int afs_extract_data(struct afs_call *call, bool want_more)
08e0e7c8 890{
f044c884 891 struct afs_net *net = call->net;
fc276122 892 struct iov_iter *iter = call->iter;
98bf40cd 893 enum afs_call_state state;
7888da95 894 u32 remote_abort = 0;
d001648e 895 int ret;
08e0e7c8 896
f105da1a
DH
897 _enter("{%s,%zu,%zu},%d",
898 call->type->name, call->iov_len, iov_iter_count(iter), want_more);
eb9950eb 899
12bdcf33 900 ret = rxrpc_kernel_recv_data(net->socket, call->rxcall, iter,
f105da1a 901 &call->iov_len, want_more, &remote_abort,
a68f4a27 902 &call->service_id);
d001648e
DH
903 if (ret == 0 || ret == -EAGAIN)
904 return ret;
08e0e7c8 905
98bf40cd 906 state = READ_ONCE(call->state);
d001648e 907 if (ret == 1) {
98bf40cd
DH
908 switch (state) {
909 case AFS_CALL_CL_AWAIT_REPLY:
910 afs_set_call_state(call, state, AFS_CALL_CL_PROC_REPLY);
d001648e 911 break;
98bf40cd
DH
912 case AFS_CALL_SV_AWAIT_REQUEST:
913 afs_set_call_state(call, state, AFS_CALL_SV_REPLYING);
d001648e 914 break;
98bf40cd
DH
915 case AFS_CALL_COMPLETE:
916 kdebug("prem complete %d", call->error);
f51375cd 917 return afs_io_error(call, afs_io_error_extract);
d001648e
DH
918 default:
919 break;
920 }
921 return 0;
08e0e7c8 922 }
d001648e 923
98bf40cd 924 afs_set_call_complete(call, ret, remote_abort);
d001648e 925 return ret;
08e0e7c8 926}
5f702c8e
DH
927
928/*
929 * Log protocol error production.
930 */
7126ead9 931noinline int afs_protocol_error(struct afs_call *call,
160cb957 932 enum afs_eproto_cause cause)
5f702c8e 933{
7126ead9 934 trace_afs_protocol_error(call, cause);
38355eec
DH
935 if (call)
936 call->unmarshalling_error = true;
7126ead9 937 return -EBADMSG;
5f702c8e 938}