1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  *   Copyright (C) 2016 Namjae Jeon <[email protected]>
4  *   Copyright (C) 2018 Samsung Electronics Co., Ltd.
5  */
6 
7 #include <linux/mutex.h>
8 #include <linux/freezer.h>
9 #include <linux/module.h>
10 
11 #include "server.h"
12 #include "smb_common.h"
13 #include "mgmt/ksmbd_ida.h"
14 #include "connection.h"
15 #include "transport_tcp.h"
16 #include "transport_rdma.h"
17 
18 static DEFINE_MUTEX(init_lock);
19 
20 static struct ksmbd_conn_ops default_conn_ops;
21 
22 LIST_HEAD(conn_list);
23 DECLARE_RWSEM(conn_list_lock);
24 
25 /**
26  * ksmbd_conn_free() - free resources of the connection instance
27  *
28  * @conn:	connection instance to be cleaned up
29  *
30  * During the thread termination, the corresponding conn instance
31  * resources(sock/memory) are released and finally the conn object is freed.
32  */
ksmbd_conn_free(struct ksmbd_conn * conn)33 void ksmbd_conn_free(struct ksmbd_conn *conn)
34 {
35 	down_write(&conn_list_lock);
36 	list_del(&conn->conns_list);
37 	up_write(&conn_list_lock);
38 
39 	xa_destroy(&conn->sessions);
40 	kvfree(conn->request_buf);
41 	kfree(conn->preauth_info);
42 	if (atomic_dec_and_test(&conn->refcnt)) {
43 		ksmbd_free_transport(conn->transport);
44 		kfree(conn);
45 	}
46 }
47 
48 /**
49  * ksmbd_conn_alloc() - initialize a new connection instance
50  *
51  * Return:	ksmbd_conn struct on success, otherwise NULL
52  */
ksmbd_conn_alloc(void)53 struct ksmbd_conn *ksmbd_conn_alloc(void)
54 {
55 	struct ksmbd_conn *conn;
56 
57 	conn = kzalloc(sizeof(struct ksmbd_conn), KSMBD_DEFAULT_GFP);
58 	if (!conn)
59 		return NULL;
60 
61 	conn->need_neg = true;
62 	ksmbd_conn_set_new(conn);
63 	conn->local_nls = load_nls("utf8");
64 	if (!conn->local_nls)
65 		conn->local_nls = load_nls_default();
66 	if (IS_ENABLED(CONFIG_UNICODE))
67 		conn->um = utf8_load(UNICODE_AGE(12, 1, 0));
68 	else
69 		conn->um = ERR_PTR(-EOPNOTSUPP);
70 	if (IS_ERR(conn->um))
71 		conn->um = NULL;
72 	atomic_set(&conn->req_running, 0);
73 	atomic_set(&conn->r_count, 0);
74 	atomic_set(&conn->refcnt, 1);
75 	conn->total_credits = 1;
76 	conn->outstanding_credits = 0;
77 
78 	init_waitqueue_head(&conn->req_running_q);
79 	init_waitqueue_head(&conn->r_count_q);
80 	INIT_LIST_HEAD(&conn->conns_list);
81 	INIT_LIST_HEAD(&conn->requests);
82 	INIT_LIST_HEAD(&conn->async_requests);
83 	spin_lock_init(&conn->request_lock);
84 	spin_lock_init(&conn->credits_lock);
85 	ida_init(&conn->async_ida);
86 	xa_init(&conn->sessions);
87 
88 	spin_lock_init(&conn->llist_lock);
89 	INIT_LIST_HEAD(&conn->lock_list);
90 
91 	init_rwsem(&conn->session_lock);
92 
93 	down_write(&conn_list_lock);
94 	list_add(&conn->conns_list, &conn_list);
95 	up_write(&conn_list_lock);
96 	return conn;
97 }
98 
ksmbd_conn_lookup_dialect(struct ksmbd_conn * c)99 bool ksmbd_conn_lookup_dialect(struct ksmbd_conn *c)
100 {
101 	struct ksmbd_conn *t;
102 	bool ret = false;
103 
104 	down_read(&conn_list_lock);
105 	list_for_each_entry(t, &conn_list, conns_list) {
106 		if (memcmp(t->ClientGUID, c->ClientGUID, SMB2_CLIENT_GUID_SIZE))
107 			continue;
108 
109 		ret = true;
110 		break;
111 	}
112 	up_read(&conn_list_lock);
113 	return ret;
114 }
115 
ksmbd_conn_enqueue_request(struct ksmbd_work * work)116 void ksmbd_conn_enqueue_request(struct ksmbd_work *work)
117 {
118 	struct ksmbd_conn *conn = work->conn;
119 	struct list_head *requests_queue = NULL;
120 
121 	if (conn->ops->get_cmd_val(work) != SMB2_CANCEL_HE)
122 		requests_queue = &conn->requests;
123 
124 	atomic_inc(&conn->req_running);
125 	if (requests_queue) {
126 		spin_lock(&conn->request_lock);
127 		list_add_tail(&work->request_entry, requests_queue);
128 		spin_unlock(&conn->request_lock);
129 	}
130 }
131 
ksmbd_conn_try_dequeue_request(struct ksmbd_work * work)132 void ksmbd_conn_try_dequeue_request(struct ksmbd_work *work)
133 {
134 	struct ksmbd_conn *conn = work->conn;
135 
136 	atomic_dec(&conn->req_running);
137 	if (waitqueue_active(&conn->req_running_q))
138 		wake_up(&conn->req_running_q);
139 
140 	if (list_empty(&work->request_entry) &&
141 	    list_empty(&work->async_request_entry))
142 		return;
143 
144 	spin_lock(&conn->request_lock);
145 	list_del_init(&work->request_entry);
146 	spin_unlock(&conn->request_lock);
147 	if (work->asynchronous)
148 		release_async_work(work);
149 
150 	wake_up_all(&conn->req_running_q);
151 }
152 
ksmbd_conn_lock(struct ksmbd_conn * conn)153 void ksmbd_conn_lock(struct ksmbd_conn *conn)
154 {
155 	mutex_lock(&conn->srv_mutex);
156 }
157 
ksmbd_conn_unlock(struct ksmbd_conn * conn)158 void ksmbd_conn_unlock(struct ksmbd_conn *conn)
159 {
160 	mutex_unlock(&conn->srv_mutex);
161 }
162 
ksmbd_all_conn_set_status(u64 sess_id,u32 status)163 void ksmbd_all_conn_set_status(u64 sess_id, u32 status)
164 {
165 	struct ksmbd_conn *conn;
166 
167 	down_read(&conn_list_lock);
168 	list_for_each_entry(conn, &conn_list, conns_list) {
169 		if (conn->binding || xa_load(&conn->sessions, sess_id))
170 			WRITE_ONCE(conn->status, status);
171 	}
172 	up_read(&conn_list_lock);
173 }
174 
ksmbd_conn_wait_idle(struct ksmbd_conn * conn)175 void ksmbd_conn_wait_idle(struct ksmbd_conn *conn)
176 {
177 	wait_event(conn->req_running_q, atomic_read(&conn->req_running) < 2);
178 }
179 
ksmbd_conn_wait_idle_sess_id(struct ksmbd_conn * curr_conn,u64 sess_id)180 int ksmbd_conn_wait_idle_sess_id(struct ksmbd_conn *curr_conn, u64 sess_id)
181 {
182 	struct ksmbd_conn *conn;
183 	int rc, retry_count = 0, max_timeout = 120;
184 	int rcount = 1;
185 
186 retry_idle:
187 	if (retry_count >= max_timeout)
188 		return -EIO;
189 
190 	down_read(&conn_list_lock);
191 	list_for_each_entry(conn, &conn_list, conns_list) {
192 		if (conn->binding || xa_load(&conn->sessions, sess_id)) {
193 			if (conn == curr_conn)
194 				rcount = 2;
195 			if (atomic_read(&conn->req_running) >= rcount) {
196 				rc = wait_event_timeout(conn->req_running_q,
197 					atomic_read(&conn->req_running) < rcount,
198 					HZ);
199 				if (!rc) {
200 					up_read(&conn_list_lock);
201 					retry_count++;
202 					goto retry_idle;
203 				}
204 			}
205 		}
206 	}
207 	up_read(&conn_list_lock);
208 
209 	return 0;
210 }
211 
ksmbd_conn_write(struct ksmbd_work * work)212 int ksmbd_conn_write(struct ksmbd_work *work)
213 {
214 	struct ksmbd_conn *conn = work->conn;
215 	int sent;
216 
217 	if (!work->response_buf) {
218 		pr_err("NULL response header\n");
219 		return -EINVAL;
220 	}
221 
222 	if (work->send_no_response)
223 		return 0;
224 
225 	if (!work->iov_idx)
226 		return -EINVAL;
227 
228 	ksmbd_conn_lock(conn);
229 	sent = conn->transport->ops->writev(conn->transport, work->iov,
230 			work->iov_cnt,
231 			get_rfc1002_len(work->iov[0].iov_base) + 4,
232 			work->need_invalidate_rkey,
233 			work->remote_key);
234 	ksmbd_conn_unlock(conn);
235 
236 	if (sent < 0) {
237 		pr_err("Failed to send message: %d\n", sent);
238 		return sent;
239 	}
240 
241 	return 0;
242 }
243 
ksmbd_conn_rdma_read(struct ksmbd_conn * conn,void * buf,unsigned int buflen,struct smb2_buffer_desc_v1 * desc,unsigned int desc_len)244 int ksmbd_conn_rdma_read(struct ksmbd_conn *conn,
245 			 void *buf, unsigned int buflen,
246 			 struct smb2_buffer_desc_v1 *desc,
247 			 unsigned int desc_len)
248 {
249 	int ret = -EINVAL;
250 
251 	if (conn->transport->ops->rdma_read)
252 		ret = conn->transport->ops->rdma_read(conn->transport,
253 						      buf, buflen,
254 						      desc, desc_len);
255 	return ret;
256 }
257 
ksmbd_conn_rdma_write(struct ksmbd_conn * conn,void * buf,unsigned int buflen,struct smb2_buffer_desc_v1 * desc,unsigned int desc_len)258 int ksmbd_conn_rdma_write(struct ksmbd_conn *conn,
259 			  void *buf, unsigned int buflen,
260 			  struct smb2_buffer_desc_v1 *desc,
261 			  unsigned int desc_len)
262 {
263 	int ret = -EINVAL;
264 
265 	if (conn->transport->ops->rdma_write)
266 		ret = conn->transport->ops->rdma_write(conn->transport,
267 						       buf, buflen,
268 						       desc, desc_len);
269 	return ret;
270 }
271 
ksmbd_conn_alive(struct ksmbd_conn * conn)272 bool ksmbd_conn_alive(struct ksmbd_conn *conn)
273 {
274 	if (!ksmbd_server_running())
275 		return false;
276 
277 	if (ksmbd_conn_exiting(conn))
278 		return false;
279 
280 	if (kthread_should_stop())
281 		return false;
282 
283 	if (atomic_read(&conn->stats.open_files_count) > 0)
284 		return true;
285 
286 	/*
287 	 * Stop current session if the time that get last request from client
288 	 * is bigger than deadtime user configured and opening file count is
289 	 * zero.
290 	 */
291 	if (server_conf.deadtime > 0 &&
292 	    time_after(jiffies, conn->last_active + server_conf.deadtime)) {
293 		ksmbd_debug(CONN, "No response from client in %lu minutes\n",
294 			    server_conf.deadtime / SMB_ECHO_INTERVAL);
295 		return false;
296 	}
297 	return true;
298 }
299 
300 #define SMB1_MIN_SUPPORTED_HEADER_SIZE (sizeof(struct smb_hdr))
301 #define SMB2_MIN_SUPPORTED_HEADER_SIZE (sizeof(struct smb2_hdr) + 4)
302 
303 /**
304  * ksmbd_conn_handler_loop() - session thread to listen on new smb requests
305  * @p:		connection instance
306  *
307  * One thread each per connection
308  *
309  * Return:	0 on success
310  */
ksmbd_conn_handler_loop(void * p)311 int ksmbd_conn_handler_loop(void *p)
312 {
313 	struct ksmbd_conn *conn = (struct ksmbd_conn *)p;
314 	struct ksmbd_transport *t = conn->transport;
315 	unsigned int pdu_size, max_allowed_pdu_size, max_req;
316 	char hdr_buf[4] = {0,};
317 	int size;
318 
319 	mutex_init(&conn->srv_mutex);
320 	__module_get(THIS_MODULE);
321 
322 	if (t->ops->prepare && t->ops->prepare(t))
323 		goto out;
324 
325 	max_req = server_conf.max_inflight_req;
326 	conn->last_active = jiffies;
327 	set_freezable();
328 	while (ksmbd_conn_alive(conn)) {
329 		if (try_to_freeze())
330 			continue;
331 
332 		kvfree(conn->request_buf);
333 		conn->request_buf = NULL;
334 
335 recheck:
336 		if (atomic_read(&conn->req_running) + 1 > max_req) {
337 			wait_event_interruptible(conn->req_running_q,
338 				atomic_read(&conn->req_running) < max_req);
339 			goto recheck;
340 		}
341 
342 		size = t->ops->read(t, hdr_buf, sizeof(hdr_buf), -1);
343 		if (size != sizeof(hdr_buf))
344 			break;
345 
346 		pdu_size = get_rfc1002_len(hdr_buf);
347 		ksmbd_debug(CONN, "RFC1002 header %u bytes\n", pdu_size);
348 
349 		if (ksmbd_conn_good(conn))
350 			max_allowed_pdu_size =
351 				SMB3_MAX_MSGSIZE + conn->vals->max_write_size;
352 		else
353 			max_allowed_pdu_size = SMB3_MAX_MSGSIZE;
354 
355 		if (pdu_size > max_allowed_pdu_size) {
356 			pr_err_ratelimited("PDU length(%u) exceeded maximum allowed pdu size(%u) on connection(%d)\n",
357 					pdu_size, max_allowed_pdu_size,
358 					READ_ONCE(conn->status));
359 			break;
360 		}
361 
362 		/*
363 		 * Check maximum pdu size(0x00FFFFFF).
364 		 */
365 		if (pdu_size > MAX_STREAM_PROT_LEN)
366 			break;
367 
368 		if (pdu_size < SMB1_MIN_SUPPORTED_HEADER_SIZE)
369 			break;
370 
371 		/* 4 for rfc1002 length field */
372 		/* 1 for implied bcc[0] */
373 		size = pdu_size + 4 + 1;
374 		conn->request_buf = kvmalloc(size, KSMBD_DEFAULT_GFP);
375 		if (!conn->request_buf)
376 			break;
377 
378 		memcpy(conn->request_buf, hdr_buf, sizeof(hdr_buf));
379 
380 		/*
381 		 * We already read 4 bytes to find out PDU size, now
382 		 * read in PDU
383 		 */
384 		size = t->ops->read(t, conn->request_buf + 4, pdu_size, 2);
385 		if (size < 0) {
386 			pr_err("sock_read failed: %d\n", size);
387 			break;
388 		}
389 
390 		if (size != pdu_size) {
391 			pr_err("PDU error. Read: %d, Expected: %d\n",
392 			       size, pdu_size);
393 			continue;
394 		}
395 
396 		if (!ksmbd_smb_request(conn))
397 			break;
398 
399 		if (((struct smb2_hdr *)smb2_get_msg(conn->request_buf))->ProtocolId ==
400 		    SMB2_PROTO_NUMBER) {
401 			if (pdu_size < SMB2_MIN_SUPPORTED_HEADER_SIZE)
402 				break;
403 		}
404 
405 		if (!default_conn_ops.process_fn) {
406 			pr_err("No connection request callback\n");
407 			break;
408 		}
409 
410 		if (default_conn_ops.process_fn(conn)) {
411 			pr_err("Cannot handle request\n");
412 			break;
413 		}
414 	}
415 
416 out:
417 	ksmbd_conn_set_releasing(conn);
418 	/* Wait till all reference dropped to the Server object*/
419 	ksmbd_debug(CONN, "Wait for all pending requests(%d)\n", atomic_read(&conn->r_count));
420 	wait_event(conn->r_count_q, atomic_read(&conn->r_count) == 0);
421 
422 	if (IS_ENABLED(CONFIG_UNICODE))
423 		utf8_unload(conn->um);
424 	unload_nls(conn->local_nls);
425 	if (default_conn_ops.terminate_fn)
426 		default_conn_ops.terminate_fn(conn);
427 	t->ops->disconnect(t);
428 	module_put(THIS_MODULE);
429 	return 0;
430 }
431 
ksmbd_conn_init_server_callbacks(struct ksmbd_conn_ops * ops)432 void ksmbd_conn_init_server_callbacks(struct ksmbd_conn_ops *ops)
433 {
434 	default_conn_ops.process_fn = ops->process_fn;
435 	default_conn_ops.terminate_fn = ops->terminate_fn;
436 }
437 
ksmbd_conn_r_count_inc(struct ksmbd_conn * conn)438 void ksmbd_conn_r_count_inc(struct ksmbd_conn *conn)
439 {
440 	atomic_inc(&conn->r_count);
441 }
442 
ksmbd_conn_r_count_dec(struct ksmbd_conn * conn)443 void ksmbd_conn_r_count_dec(struct ksmbd_conn *conn)
444 {
445 	/*
446 	 * Checking waitqueue to dropping pending requests on
447 	 * disconnection. waitqueue_active is safe because it
448 	 * uses atomic operation for condition.
449 	 */
450 	atomic_inc(&conn->refcnt);
451 	if (!atomic_dec_return(&conn->r_count) && waitqueue_active(&conn->r_count_q))
452 		wake_up(&conn->r_count_q);
453 
454 	if (atomic_dec_and_test(&conn->refcnt))
455 		kfree(conn);
456 }
457 
ksmbd_conn_transport_init(void)458 int ksmbd_conn_transport_init(void)
459 {
460 	int ret;
461 
462 	mutex_lock(&init_lock);
463 	ret = ksmbd_tcp_init();
464 	if (ret) {
465 		pr_err("Failed to init TCP subsystem: %d\n", ret);
466 		goto out;
467 	}
468 
469 	ret = ksmbd_rdma_init();
470 	if (ret) {
471 		pr_err("Failed to init RDMA subsystem: %d\n", ret);
472 		goto out;
473 	}
474 out:
475 	mutex_unlock(&init_lock);
476 	return ret;
477 }
478 
stop_sessions(void)479 static void stop_sessions(void)
480 {
481 	struct ksmbd_conn *conn;
482 	struct ksmbd_transport *t;
483 
484 again:
485 	down_read(&conn_list_lock);
486 	list_for_each_entry(conn, &conn_list, conns_list) {
487 		t = conn->transport;
488 		ksmbd_conn_set_exiting(conn);
489 		if (t->ops->shutdown) {
490 			up_read(&conn_list_lock);
491 			t->ops->shutdown(t);
492 			down_read(&conn_list_lock);
493 		}
494 	}
495 	up_read(&conn_list_lock);
496 
497 	if (!list_empty(&conn_list)) {
498 		msleep(100);
499 		goto again;
500 	}
501 }
502 
ksmbd_conn_transport_destroy(void)503 void ksmbd_conn_transport_destroy(void)
504 {
505 	mutex_lock(&init_lock);
506 	ksmbd_tcp_destroy();
507 	ksmbd_rdma_destroy();
508 	stop_sessions();
509 	mutex_unlock(&init_lock);
510 }
511