xref: /linux/fs/smb/server/transport_rdma.c (revision fb4d33ab452ea254e2c319bac5703d1b56d895bf)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  *   Copyright (C) 2017, Microsoft Corporation.
4  *   Copyright (C) 2018, LG Electronics.
5  *
6  *   Author(s): Long Li <longli@microsoft.com>,
7  *		Hyunchul Lee <hyc.lee@gmail.com>
8  */
9 
10 #define SUBMOD_NAME	"smb_direct"
11 
12 #include <linux/kthread.h>
13 #include <linux/list.h>
14 #include <linux/mempool.h>
15 #include <linux/highmem.h>
16 #include <linux/scatterlist.h>
17 #include <linux/string_choices.h>
18 #include <rdma/ib_verbs.h>
19 #include <rdma/rdma_cm.h>
20 #include <rdma/rw.h>
21 
22 #include "glob.h"
23 #include "connection.h"
24 #include "smb_common.h"
25 #include "../common/smb2status.h"
26 #include "transport_rdma.h"
27 
28 #define SMB_DIRECT_PORT_IWARP		5445
29 #define SMB_DIRECT_PORT_INFINIBAND	445
30 
31 #define SMB_DIRECT_VERSION_LE		cpu_to_le16(0x0100)
32 
33 /* SMB_DIRECT negotiation timeout in seconds */
34 #define SMB_DIRECT_NEGOTIATE_TIMEOUT		120
35 
36 #define SMB_DIRECT_MAX_SEND_SGES		6
37 #define SMB_DIRECT_MAX_RECV_SGES		1
38 
39 /*
40  * Default maximum number of RDMA read/write outstanding on this connection
41  * This value is possibly decreased during QP creation on hardware limit
42  */
43 #define SMB_DIRECT_CM_INITIATOR_DEPTH		8
44 
45 /* Maximum number of retries on data transfer operations */
46 #define SMB_DIRECT_CM_RETRY			6
47 /* No need to retry on Receiver Not Ready since SMB_DIRECT manages credits */
48 #define SMB_DIRECT_CM_RNR_RETRY		0
49 
50 /*
51  * User configurable initial values per SMB_DIRECT transport connection
52  * as defined in [MS-SMBD] 3.1.1.1
53  * Those may change after a SMB_DIRECT negotiation
54  */
55 
56 /* Set 445 port to SMB Direct port by default */
57 static int smb_direct_port = SMB_DIRECT_PORT_INFINIBAND;
58 
59 /* The local peer's maximum number of credits to grant to the peer */
60 static int smb_direct_receive_credit_max = 255;
61 
62 /* The remote peer's credit request of local peer */
63 static int smb_direct_send_credit_target = 255;
64 
65 /* The maximum single message size can be sent to remote peer */
66 static int smb_direct_max_send_size = 1364;
67 
68 /*  The maximum fragmented upper-layer payload receive size supported */
69 static int smb_direct_max_fragmented_recv_size = 1024 * 1024;
70 
71 /*  The maximum single-message size which can be received */
72 static int smb_direct_max_receive_size = 1364;
73 
74 static int smb_direct_max_read_write_size = SMBD_DEFAULT_IOSIZE;
75 
76 static LIST_HEAD(smb_direct_device_list);
77 static DEFINE_RWLOCK(smb_direct_device_lock);
78 
79 struct smb_direct_device {
80 	struct ib_device	*ib_dev;
81 	struct list_head	list;
82 };
83 
84 static struct smb_direct_listener {
85 	struct rdma_cm_id	*cm_id;
86 } smb_direct_listener;
87 
88 static struct workqueue_struct *smb_direct_wq;
89 
90 enum smb_direct_status {
91 	SMB_DIRECT_CS_NEW = 0,
92 	SMB_DIRECT_CS_CONNECTED,
93 	SMB_DIRECT_CS_DISCONNECTING,
94 	SMB_DIRECT_CS_DISCONNECTED,
95 };
96 
97 struct smb_direct_transport {
98 	struct ksmbd_transport	transport;
99 
100 	enum smb_direct_status	status;
101 	bool			full_packet_received;
102 	wait_queue_head_t	wait_status;
103 
104 	struct rdma_cm_id	*cm_id;
105 	struct ib_cq		*send_cq;
106 	struct ib_cq		*recv_cq;
107 	struct ib_pd		*pd;
108 	struct ib_qp		*qp;
109 
110 	int			max_send_size;
111 	int			max_recv_size;
112 	int			max_fragmented_send_size;
113 	int			max_fragmented_recv_size;
114 	int			max_rdma_rw_size;
115 
116 	spinlock_t		reassembly_queue_lock;
117 	struct list_head	reassembly_queue;
118 	int			reassembly_data_length;
119 	int			reassembly_queue_length;
120 	int			first_entry_offset;
121 	wait_queue_head_t	wait_reassembly_queue;
122 
123 	spinlock_t		receive_credit_lock;
124 	int			recv_credits;
125 	int			count_avail_recvmsg;
126 	int			recv_credit_max;
127 	int			recv_credit_target;
128 
129 	spinlock_t		recvmsg_queue_lock;
130 	struct list_head	recvmsg_queue;
131 
132 	spinlock_t		empty_recvmsg_queue_lock;
133 	struct list_head	empty_recvmsg_queue;
134 
135 	int			send_credit_target;
136 	atomic_t		send_credits;
137 	spinlock_t		lock_new_recv_credits;
138 	int			new_recv_credits;
139 	int			max_rw_credits;
140 	int			pages_per_rw_credit;
141 	atomic_t		rw_credits;
142 
143 	wait_queue_head_t	wait_send_credits;
144 	wait_queue_head_t	wait_rw_credits;
145 
146 	mempool_t		*sendmsg_mempool;
147 	struct kmem_cache	*sendmsg_cache;
148 	mempool_t		*recvmsg_mempool;
149 	struct kmem_cache	*recvmsg_cache;
150 
151 	wait_queue_head_t	wait_send_pending;
152 	atomic_t		send_pending;
153 
154 	struct delayed_work	post_recv_credits_work;
155 	struct work_struct	send_immediate_work;
156 	struct work_struct	disconnect_work;
157 
158 	bool			negotiation_requested;
159 };
160 
161 #define KSMBD_TRANS(t) ((struct ksmbd_transport *)&((t)->transport))
162 #define SMBD_TRANS(t)	((struct smb_direct_transport *)container_of(t, \
163 				struct smb_direct_transport, transport))
164 enum {
165 	SMB_DIRECT_MSG_NEGOTIATE_REQ = 0,
166 	SMB_DIRECT_MSG_DATA_TRANSFER
167 };
168 
169 static const struct ksmbd_transport_ops ksmbd_smb_direct_transport_ops;
170 
171 struct smb_direct_send_ctx {
172 	struct list_head	msg_list;
173 	int			wr_cnt;
174 	bool			need_invalidate_rkey;
175 	unsigned int		remote_key;
176 };
177 
178 struct smb_direct_sendmsg {
179 	struct smb_direct_transport	*transport;
180 	struct ib_send_wr	wr;
181 	struct list_head	list;
182 	int			num_sge;
183 	struct ib_sge		sge[SMB_DIRECT_MAX_SEND_SGES];
184 	struct ib_cqe		cqe;
185 	u8			packet[];
186 };
187 
188 struct smb_direct_recvmsg {
189 	struct smb_direct_transport	*transport;
190 	struct list_head	list;
191 	int			type;
192 	struct ib_sge		sge;
193 	struct ib_cqe		cqe;
194 	bool			first_segment;
195 	u8			packet[];
196 };
197 
198 struct smb_direct_rdma_rw_msg {
199 	struct smb_direct_transport	*t;
200 	struct ib_cqe		cqe;
201 	int			status;
202 	struct completion	*completion;
203 	struct list_head	list;
204 	struct rdma_rw_ctx	rw_ctx;
205 	struct sg_table		sgt;
206 	struct scatterlist	sg_list[];
207 };
208 
init_smbd_max_io_size(unsigned int sz)209 void init_smbd_max_io_size(unsigned int sz)
210 {
211 	sz = clamp_val(sz, SMBD_MIN_IOSIZE, SMBD_MAX_IOSIZE);
212 	smb_direct_max_read_write_size = sz;
213 }
214 
get_smbd_max_read_write_size(void)215 unsigned int get_smbd_max_read_write_size(void)
216 {
217 	return smb_direct_max_read_write_size;
218 }
219 
get_buf_page_count(void * buf,int size)220 static inline int get_buf_page_count(void *buf, int size)
221 {
222 	return DIV_ROUND_UP((uintptr_t)buf + size, PAGE_SIZE) -
223 		(uintptr_t)buf / PAGE_SIZE;
224 }
225 
226 static void smb_direct_destroy_pools(struct smb_direct_transport *transport);
227 static void smb_direct_post_recv_credits(struct work_struct *work);
228 static int smb_direct_post_send_data(struct smb_direct_transport *t,
229 				     struct smb_direct_send_ctx *send_ctx,
230 				     struct kvec *iov, int niov,
231 				     int remaining_data_length);
232 
233 static inline struct smb_direct_transport *
smb_trans_direct_transfort(struct ksmbd_transport * t)234 smb_trans_direct_transfort(struct ksmbd_transport *t)
235 {
236 	return container_of(t, struct smb_direct_transport, transport);
237 }
238 
239 static inline void
smb_direct_recvmsg_payload(struct smb_direct_recvmsg * recvmsg)240 *smb_direct_recvmsg_payload(struct smb_direct_recvmsg *recvmsg)
241 {
242 	return (void *)recvmsg->packet;
243 }
244 
is_receive_credit_post_required(int receive_credits,int avail_recvmsg_count)245 static inline bool is_receive_credit_post_required(int receive_credits,
246 						   int avail_recvmsg_count)
247 {
248 	return receive_credits <= (smb_direct_receive_credit_max >> 3) &&
249 		avail_recvmsg_count >= (receive_credits >> 2);
250 }
251 
252 static struct
get_free_recvmsg(struct smb_direct_transport * t)253 smb_direct_recvmsg *get_free_recvmsg(struct smb_direct_transport *t)
254 {
255 	struct smb_direct_recvmsg *recvmsg = NULL;
256 
257 	spin_lock(&t->recvmsg_queue_lock);
258 	if (!list_empty(&t->recvmsg_queue)) {
259 		recvmsg = list_first_entry(&t->recvmsg_queue,
260 					   struct smb_direct_recvmsg,
261 					   list);
262 		list_del(&recvmsg->list);
263 	}
264 	spin_unlock(&t->recvmsg_queue_lock);
265 	return recvmsg;
266 }
267 
put_recvmsg(struct smb_direct_transport * t,struct smb_direct_recvmsg * recvmsg)268 static void put_recvmsg(struct smb_direct_transport *t,
269 			struct smb_direct_recvmsg *recvmsg)
270 {
271 	ib_dma_unmap_single(t->cm_id->device, recvmsg->sge.addr,
272 			    recvmsg->sge.length, DMA_FROM_DEVICE);
273 
274 	spin_lock(&t->recvmsg_queue_lock);
275 	list_add(&recvmsg->list, &t->recvmsg_queue);
276 	spin_unlock(&t->recvmsg_queue_lock);
277 }
278 
279 static struct
get_empty_recvmsg(struct smb_direct_transport * t)280 smb_direct_recvmsg *get_empty_recvmsg(struct smb_direct_transport *t)
281 {
282 	struct smb_direct_recvmsg *recvmsg = NULL;
283 
284 	spin_lock(&t->empty_recvmsg_queue_lock);
285 	if (!list_empty(&t->empty_recvmsg_queue)) {
286 		recvmsg = list_first_entry(&t->empty_recvmsg_queue,
287 					   struct smb_direct_recvmsg, list);
288 		list_del(&recvmsg->list);
289 	}
290 	spin_unlock(&t->empty_recvmsg_queue_lock);
291 	return recvmsg;
292 }
293 
put_empty_recvmsg(struct smb_direct_transport * t,struct smb_direct_recvmsg * recvmsg)294 static void put_empty_recvmsg(struct smb_direct_transport *t,
295 			      struct smb_direct_recvmsg *recvmsg)
296 {
297 	ib_dma_unmap_single(t->cm_id->device, recvmsg->sge.addr,
298 			    recvmsg->sge.length, DMA_FROM_DEVICE);
299 
300 	spin_lock(&t->empty_recvmsg_queue_lock);
301 	list_add_tail(&recvmsg->list, &t->empty_recvmsg_queue);
302 	spin_unlock(&t->empty_recvmsg_queue_lock);
303 }
304 
enqueue_reassembly(struct smb_direct_transport * t,struct smb_direct_recvmsg * recvmsg,int data_length)305 static void enqueue_reassembly(struct smb_direct_transport *t,
306 			       struct smb_direct_recvmsg *recvmsg,
307 			       int data_length)
308 {
309 	spin_lock(&t->reassembly_queue_lock);
310 	list_add_tail(&recvmsg->list, &t->reassembly_queue);
311 	t->reassembly_queue_length++;
312 	/*
313 	 * Make sure reassembly_data_length is updated after list and
314 	 * reassembly_queue_length are updated. On the dequeue side
315 	 * reassembly_data_length is checked without a lock to determine
316 	 * if reassembly_queue_length and list is up to date
317 	 */
318 	virt_wmb();
319 	t->reassembly_data_length += data_length;
320 	spin_unlock(&t->reassembly_queue_lock);
321 }
322 
get_first_reassembly(struct smb_direct_transport * t)323 static struct smb_direct_recvmsg *get_first_reassembly(struct smb_direct_transport *t)
324 {
325 	if (!list_empty(&t->reassembly_queue))
326 		return list_first_entry(&t->reassembly_queue,
327 				struct smb_direct_recvmsg, list);
328 	else
329 		return NULL;
330 }
331 
smb_direct_disconnect_rdma_work(struct work_struct * work)332 static void smb_direct_disconnect_rdma_work(struct work_struct *work)
333 {
334 	struct smb_direct_transport *t =
335 		container_of(work, struct smb_direct_transport,
336 			     disconnect_work);
337 
338 	if (t->status == SMB_DIRECT_CS_CONNECTED) {
339 		t->status = SMB_DIRECT_CS_DISCONNECTING;
340 		rdma_disconnect(t->cm_id);
341 	}
342 }
343 
344 static void
smb_direct_disconnect_rdma_connection(struct smb_direct_transport * t)345 smb_direct_disconnect_rdma_connection(struct smb_direct_transport *t)
346 {
347 	if (t->status == SMB_DIRECT_CS_CONNECTED)
348 		queue_work(smb_direct_wq, &t->disconnect_work);
349 }
350 
smb_direct_send_immediate_work(struct work_struct * work)351 static void smb_direct_send_immediate_work(struct work_struct *work)
352 {
353 	struct smb_direct_transport *t = container_of(work,
354 			struct smb_direct_transport, send_immediate_work);
355 
356 	if (t->status != SMB_DIRECT_CS_CONNECTED)
357 		return;
358 
359 	smb_direct_post_send_data(t, NULL, NULL, 0, 0);
360 }
361 
alloc_transport(struct rdma_cm_id * cm_id)362 static struct smb_direct_transport *alloc_transport(struct rdma_cm_id *cm_id)
363 {
364 	struct smb_direct_transport *t;
365 	struct ksmbd_conn *conn;
366 
367 	t = kzalloc(sizeof(*t), KSMBD_DEFAULT_GFP);
368 	if (!t)
369 		return NULL;
370 
371 	t->cm_id = cm_id;
372 	cm_id->context = t;
373 
374 	t->status = SMB_DIRECT_CS_NEW;
375 	init_waitqueue_head(&t->wait_status);
376 
377 	spin_lock_init(&t->reassembly_queue_lock);
378 	INIT_LIST_HEAD(&t->reassembly_queue);
379 	t->reassembly_data_length = 0;
380 	t->reassembly_queue_length = 0;
381 	init_waitqueue_head(&t->wait_reassembly_queue);
382 	init_waitqueue_head(&t->wait_send_credits);
383 	init_waitqueue_head(&t->wait_rw_credits);
384 
385 	spin_lock_init(&t->receive_credit_lock);
386 	spin_lock_init(&t->recvmsg_queue_lock);
387 	INIT_LIST_HEAD(&t->recvmsg_queue);
388 
389 	spin_lock_init(&t->empty_recvmsg_queue_lock);
390 	INIT_LIST_HEAD(&t->empty_recvmsg_queue);
391 
392 	init_waitqueue_head(&t->wait_send_pending);
393 	atomic_set(&t->send_pending, 0);
394 
395 	spin_lock_init(&t->lock_new_recv_credits);
396 
397 	INIT_DELAYED_WORK(&t->post_recv_credits_work,
398 			  smb_direct_post_recv_credits);
399 	INIT_WORK(&t->send_immediate_work, smb_direct_send_immediate_work);
400 	INIT_WORK(&t->disconnect_work, smb_direct_disconnect_rdma_work);
401 
402 	conn = ksmbd_conn_alloc();
403 	if (!conn)
404 		goto err;
405 	conn->transport = KSMBD_TRANS(t);
406 	KSMBD_TRANS(t)->conn = conn;
407 	KSMBD_TRANS(t)->ops = &ksmbd_smb_direct_transport_ops;
408 	return t;
409 err:
410 	kfree(t);
411 	return NULL;
412 }
413 
smb_direct_free_transport(struct ksmbd_transport * kt)414 static void smb_direct_free_transport(struct ksmbd_transport *kt)
415 {
416 	kfree(SMBD_TRANS(kt));
417 }
418 
free_transport(struct smb_direct_transport * t)419 static void free_transport(struct smb_direct_transport *t)
420 {
421 	struct smb_direct_recvmsg *recvmsg;
422 
423 	wake_up_interruptible(&t->wait_send_credits);
424 
425 	ksmbd_debug(RDMA, "wait for all send posted to IB to finish\n");
426 	wait_event(t->wait_send_pending,
427 		   atomic_read(&t->send_pending) == 0);
428 
429 	cancel_work_sync(&t->disconnect_work);
430 	cancel_delayed_work_sync(&t->post_recv_credits_work);
431 	cancel_work_sync(&t->send_immediate_work);
432 
433 	if (t->qp) {
434 		ib_drain_qp(t->qp);
435 		ib_mr_pool_destroy(t->qp, &t->qp->rdma_mrs);
436 		ib_destroy_qp(t->qp);
437 	}
438 
439 	ksmbd_debug(RDMA, "drain the reassembly queue\n");
440 	do {
441 		spin_lock(&t->reassembly_queue_lock);
442 		recvmsg = get_first_reassembly(t);
443 		if (recvmsg) {
444 			list_del(&recvmsg->list);
445 			spin_unlock(&t->reassembly_queue_lock);
446 			put_recvmsg(t, recvmsg);
447 		} else {
448 			spin_unlock(&t->reassembly_queue_lock);
449 		}
450 	} while (recvmsg);
451 	t->reassembly_data_length = 0;
452 
453 	if (t->send_cq)
454 		ib_free_cq(t->send_cq);
455 	if (t->recv_cq)
456 		ib_free_cq(t->recv_cq);
457 	if (t->pd)
458 		ib_dealloc_pd(t->pd);
459 	if (t->cm_id)
460 		rdma_destroy_id(t->cm_id);
461 
462 	smb_direct_destroy_pools(t);
463 	ksmbd_conn_free(KSMBD_TRANS(t)->conn);
464 }
465 
466 static struct smb_direct_sendmsg
smb_direct_alloc_sendmsg(struct smb_direct_transport * t)467 *smb_direct_alloc_sendmsg(struct smb_direct_transport *t)
468 {
469 	struct smb_direct_sendmsg *msg;
470 
471 	msg = mempool_alloc(t->sendmsg_mempool, KSMBD_DEFAULT_GFP);
472 	if (!msg)
473 		return ERR_PTR(-ENOMEM);
474 	msg->transport = t;
475 	INIT_LIST_HEAD(&msg->list);
476 	msg->num_sge = 0;
477 	return msg;
478 }
479 
smb_direct_free_sendmsg(struct smb_direct_transport * t,struct smb_direct_sendmsg * msg)480 static void smb_direct_free_sendmsg(struct smb_direct_transport *t,
481 				    struct smb_direct_sendmsg *msg)
482 {
483 	int i;
484 
485 	if (msg->num_sge > 0) {
486 		ib_dma_unmap_single(t->cm_id->device,
487 				    msg->sge[0].addr, msg->sge[0].length,
488 				    DMA_TO_DEVICE);
489 		for (i = 1; i < msg->num_sge; i++)
490 			ib_dma_unmap_page(t->cm_id->device,
491 					  msg->sge[i].addr, msg->sge[i].length,
492 					  DMA_TO_DEVICE);
493 	}
494 	mempool_free(msg, t->sendmsg_mempool);
495 }
496 
smb_direct_check_recvmsg(struct smb_direct_recvmsg * recvmsg)497 static int smb_direct_check_recvmsg(struct smb_direct_recvmsg *recvmsg)
498 {
499 	switch (recvmsg->type) {
500 	case SMB_DIRECT_MSG_DATA_TRANSFER: {
501 		struct smb_direct_data_transfer *req =
502 			(struct smb_direct_data_transfer *)recvmsg->packet;
503 		struct smb2_hdr *hdr = (struct smb2_hdr *)(recvmsg->packet
504 				+ le32_to_cpu(req->data_offset));
505 		ksmbd_debug(RDMA,
506 			    "CreditGranted: %u, CreditRequested: %u, DataLength: %u, RemainingDataLength: %u, SMB: %x, Command: %u\n",
507 			    le16_to_cpu(req->credits_granted),
508 			    le16_to_cpu(req->credits_requested),
509 			    req->data_length, req->remaining_data_length,
510 			    hdr->ProtocolId, hdr->Command);
511 		break;
512 	}
513 	case SMB_DIRECT_MSG_NEGOTIATE_REQ: {
514 		struct smb_direct_negotiate_req *req =
515 			(struct smb_direct_negotiate_req *)recvmsg->packet;
516 		ksmbd_debug(RDMA,
517 			    "MinVersion: %u, MaxVersion: %u, CreditRequested: %u, MaxSendSize: %u, MaxRecvSize: %u, MaxFragmentedSize: %u\n",
518 			    le16_to_cpu(req->min_version),
519 			    le16_to_cpu(req->max_version),
520 			    le16_to_cpu(req->credits_requested),
521 			    le32_to_cpu(req->preferred_send_size),
522 			    le32_to_cpu(req->max_receive_size),
523 			    le32_to_cpu(req->max_fragmented_size));
524 		if (le16_to_cpu(req->min_version) > 0x0100 ||
525 		    le16_to_cpu(req->max_version) < 0x0100)
526 			return -EOPNOTSUPP;
527 		if (le16_to_cpu(req->credits_requested) <= 0 ||
528 		    le32_to_cpu(req->max_receive_size) <= 128 ||
529 		    le32_to_cpu(req->max_fragmented_size) <=
530 					128 * 1024)
531 			return -ECONNABORTED;
532 
533 		break;
534 	}
535 	default:
536 		return -EINVAL;
537 	}
538 	return 0;
539 }
540 
recv_done(struct ib_cq * cq,struct ib_wc * wc)541 static void recv_done(struct ib_cq *cq, struct ib_wc *wc)
542 {
543 	struct smb_direct_recvmsg *recvmsg;
544 	struct smb_direct_transport *t;
545 
546 	recvmsg = container_of(wc->wr_cqe, struct smb_direct_recvmsg, cqe);
547 	t = recvmsg->transport;
548 
549 	if (wc->status != IB_WC_SUCCESS || wc->opcode != IB_WC_RECV) {
550 		if (wc->status != IB_WC_WR_FLUSH_ERR) {
551 			pr_err("Recv error. status='%s (%d)' opcode=%d\n",
552 			       ib_wc_status_msg(wc->status), wc->status,
553 			       wc->opcode);
554 			smb_direct_disconnect_rdma_connection(t);
555 		}
556 		put_empty_recvmsg(t, recvmsg);
557 		return;
558 	}
559 
560 	ksmbd_debug(RDMA, "Recv completed. status='%s (%d)', opcode=%d\n",
561 		    ib_wc_status_msg(wc->status), wc->status,
562 		    wc->opcode);
563 
564 	ib_dma_sync_single_for_cpu(wc->qp->device, recvmsg->sge.addr,
565 				   recvmsg->sge.length, DMA_FROM_DEVICE);
566 
567 	switch (recvmsg->type) {
568 	case SMB_DIRECT_MSG_NEGOTIATE_REQ:
569 		if (wc->byte_len < sizeof(struct smb_direct_negotiate_req)) {
570 			put_empty_recvmsg(t, recvmsg);
571 			return;
572 		}
573 		t->negotiation_requested = true;
574 		t->full_packet_received = true;
575 		t->status = SMB_DIRECT_CS_CONNECTED;
576 		enqueue_reassembly(t, recvmsg, 0);
577 		wake_up_interruptible(&t->wait_status);
578 		break;
579 	case SMB_DIRECT_MSG_DATA_TRANSFER: {
580 		struct smb_direct_data_transfer *data_transfer =
581 			(struct smb_direct_data_transfer *)recvmsg->packet;
582 		unsigned int data_length;
583 		int avail_recvmsg_count, receive_credits;
584 
585 		if (wc->byte_len <
586 		    offsetof(struct smb_direct_data_transfer, padding)) {
587 			put_empty_recvmsg(t, recvmsg);
588 			return;
589 		}
590 
591 		data_length = le32_to_cpu(data_transfer->data_length);
592 		if (data_length) {
593 			if (wc->byte_len < sizeof(struct smb_direct_data_transfer) +
594 			    (u64)data_length) {
595 				put_empty_recvmsg(t, recvmsg);
596 				return;
597 			}
598 
599 			if (t->full_packet_received)
600 				recvmsg->first_segment = true;
601 
602 			if (le32_to_cpu(data_transfer->remaining_data_length))
603 				t->full_packet_received = false;
604 			else
605 				t->full_packet_received = true;
606 
607 			enqueue_reassembly(t, recvmsg, (int)data_length);
608 			wake_up_interruptible(&t->wait_reassembly_queue);
609 
610 			spin_lock(&t->receive_credit_lock);
611 			receive_credits = --(t->recv_credits);
612 			avail_recvmsg_count = t->count_avail_recvmsg;
613 			spin_unlock(&t->receive_credit_lock);
614 		} else {
615 			put_empty_recvmsg(t, recvmsg);
616 
617 			spin_lock(&t->receive_credit_lock);
618 			receive_credits = --(t->recv_credits);
619 			avail_recvmsg_count = ++(t->count_avail_recvmsg);
620 			spin_unlock(&t->receive_credit_lock);
621 		}
622 
623 		t->recv_credit_target =
624 				le16_to_cpu(data_transfer->credits_requested);
625 		atomic_add(le16_to_cpu(data_transfer->credits_granted),
626 			   &t->send_credits);
627 
628 		if (le16_to_cpu(data_transfer->flags) &
629 		    SMB_DIRECT_RESPONSE_REQUESTED)
630 			queue_work(smb_direct_wq, &t->send_immediate_work);
631 
632 		if (atomic_read(&t->send_credits) > 0)
633 			wake_up_interruptible(&t->wait_send_credits);
634 
635 		if (is_receive_credit_post_required(receive_credits, avail_recvmsg_count))
636 			mod_delayed_work(smb_direct_wq,
637 					 &t->post_recv_credits_work, 0);
638 		break;
639 	}
640 	default:
641 		break;
642 	}
643 }
644 
smb_direct_post_recv(struct smb_direct_transport * t,struct smb_direct_recvmsg * recvmsg)645 static int smb_direct_post_recv(struct smb_direct_transport *t,
646 				struct smb_direct_recvmsg *recvmsg)
647 {
648 	struct ib_recv_wr wr;
649 	int ret;
650 
651 	recvmsg->sge.addr = ib_dma_map_single(t->cm_id->device,
652 					      recvmsg->packet, t->max_recv_size,
653 					      DMA_FROM_DEVICE);
654 	ret = ib_dma_mapping_error(t->cm_id->device, recvmsg->sge.addr);
655 	if (ret)
656 		return ret;
657 	recvmsg->sge.length = t->max_recv_size;
658 	recvmsg->sge.lkey = t->pd->local_dma_lkey;
659 	recvmsg->cqe.done = recv_done;
660 
661 	wr.wr_cqe = &recvmsg->cqe;
662 	wr.next = NULL;
663 	wr.sg_list = &recvmsg->sge;
664 	wr.num_sge = 1;
665 
666 	ret = ib_post_recv(t->qp, &wr, NULL);
667 	if (ret) {
668 		pr_err("Can't post recv: %d\n", ret);
669 		ib_dma_unmap_single(t->cm_id->device,
670 				    recvmsg->sge.addr, recvmsg->sge.length,
671 				    DMA_FROM_DEVICE);
672 		smb_direct_disconnect_rdma_connection(t);
673 		return ret;
674 	}
675 	return ret;
676 }
677 
smb_direct_read(struct ksmbd_transport * t,char * buf,unsigned int size,int unused)678 static int smb_direct_read(struct ksmbd_transport *t, char *buf,
679 			   unsigned int size, int unused)
680 {
681 	struct smb_direct_recvmsg *recvmsg;
682 	struct smb_direct_data_transfer *data_transfer;
683 	int to_copy, to_read, data_read, offset;
684 	u32 data_length, remaining_data_length, data_offset;
685 	int rc;
686 	struct smb_direct_transport *st = smb_trans_direct_transfort(t);
687 
688 again:
689 	if (st->status != SMB_DIRECT_CS_CONNECTED) {
690 		pr_err("disconnected\n");
691 		return -ENOTCONN;
692 	}
693 
694 	/*
695 	 * No need to hold the reassembly queue lock all the time as we are
696 	 * the only one reading from the front of the queue. The transport
697 	 * may add more entries to the back of the queue at the same time
698 	 */
699 	if (st->reassembly_data_length >= size) {
700 		int queue_length;
701 		int queue_removed = 0;
702 
703 		/*
704 		 * Need to make sure reassembly_data_length is read before
705 		 * reading reassembly_queue_length and calling
706 		 * get_first_reassembly. This call is lock free
707 		 * as we never read at the end of the queue which are being
708 		 * updated in SOFTIRQ as more data is received
709 		 */
710 		virt_rmb();
711 		queue_length = st->reassembly_queue_length;
712 		data_read = 0;
713 		to_read = size;
714 		offset = st->first_entry_offset;
715 		while (data_read < size) {
716 			recvmsg = get_first_reassembly(st);
717 			data_transfer = smb_direct_recvmsg_payload(recvmsg);
718 			data_length = le32_to_cpu(data_transfer->data_length);
719 			remaining_data_length =
720 				le32_to_cpu(data_transfer->remaining_data_length);
721 			data_offset = le32_to_cpu(data_transfer->data_offset);
722 
723 			/*
724 			 * The upper layer expects RFC1002 length at the
725 			 * beginning of the payload. Return it to indicate
726 			 * the total length of the packet. This minimize the
727 			 * change to upper layer packet processing logic. This
728 			 * will be eventually remove when an intermediate
729 			 * transport layer is added
730 			 */
731 			if (recvmsg->first_segment && size == 4) {
732 				unsigned int rfc1002_len =
733 					data_length + remaining_data_length;
734 				*((__be32 *)buf) = cpu_to_be32(rfc1002_len);
735 				data_read = 4;
736 				recvmsg->first_segment = false;
737 				ksmbd_debug(RDMA,
738 					    "returning rfc1002 length %d\n",
739 					    rfc1002_len);
740 				goto read_rfc1002_done;
741 			}
742 
743 			to_copy = min_t(int, data_length - offset, to_read);
744 			memcpy(buf + data_read, (char *)data_transfer + data_offset + offset,
745 			       to_copy);
746 
747 			/* move on to the next buffer? */
748 			if (to_copy == data_length - offset) {
749 				queue_length--;
750 				/*
751 				 * No need to lock if we are not at the
752 				 * end of the queue
753 				 */
754 				if (queue_length) {
755 					list_del(&recvmsg->list);
756 				} else {
757 					spin_lock_irq(&st->reassembly_queue_lock);
758 					list_del(&recvmsg->list);
759 					spin_unlock_irq(&st->reassembly_queue_lock);
760 				}
761 				queue_removed++;
762 				put_recvmsg(st, recvmsg);
763 				offset = 0;
764 			} else {
765 				offset += to_copy;
766 			}
767 
768 			to_read -= to_copy;
769 			data_read += to_copy;
770 		}
771 
772 		spin_lock_irq(&st->reassembly_queue_lock);
773 		st->reassembly_data_length -= data_read;
774 		st->reassembly_queue_length -= queue_removed;
775 		spin_unlock_irq(&st->reassembly_queue_lock);
776 
777 		spin_lock(&st->receive_credit_lock);
778 		st->count_avail_recvmsg += queue_removed;
779 		if (is_receive_credit_post_required(st->recv_credits, st->count_avail_recvmsg)) {
780 			spin_unlock(&st->receive_credit_lock);
781 			mod_delayed_work(smb_direct_wq,
782 					 &st->post_recv_credits_work, 0);
783 		} else {
784 			spin_unlock(&st->receive_credit_lock);
785 		}
786 
787 		st->first_entry_offset = offset;
788 		ksmbd_debug(RDMA,
789 			    "returning to thread data_read=%d reassembly_data_length=%d first_entry_offset=%d\n",
790 			    data_read, st->reassembly_data_length,
791 			    st->first_entry_offset);
792 read_rfc1002_done:
793 		return data_read;
794 	}
795 
796 	ksmbd_debug(RDMA, "wait_event on more data\n");
797 	rc = wait_event_interruptible(st->wait_reassembly_queue,
798 				      st->reassembly_data_length >= size ||
799 				       st->status != SMB_DIRECT_CS_CONNECTED);
800 	if (rc)
801 		return -EINTR;
802 
803 	goto again;
804 }
805 
smb_direct_post_recv_credits(struct work_struct * work)806 static void smb_direct_post_recv_credits(struct work_struct *work)
807 {
808 	struct smb_direct_transport *t = container_of(work,
809 		struct smb_direct_transport, post_recv_credits_work.work);
810 	struct smb_direct_recvmsg *recvmsg;
811 	int receive_credits, credits = 0;
812 	int ret;
813 	int use_free = 1;
814 
815 	spin_lock(&t->receive_credit_lock);
816 	receive_credits = t->recv_credits;
817 	spin_unlock(&t->receive_credit_lock);
818 
819 	if (receive_credits < t->recv_credit_target) {
820 		while (true) {
821 			if (use_free)
822 				recvmsg = get_free_recvmsg(t);
823 			else
824 				recvmsg = get_empty_recvmsg(t);
825 			if (!recvmsg) {
826 				if (use_free) {
827 					use_free = 0;
828 					continue;
829 				} else {
830 					break;
831 				}
832 			}
833 
834 			recvmsg->type = SMB_DIRECT_MSG_DATA_TRANSFER;
835 			recvmsg->first_segment = false;
836 
837 			ret = smb_direct_post_recv(t, recvmsg);
838 			if (ret) {
839 				pr_err("Can't post recv: %d\n", ret);
840 				put_recvmsg(t, recvmsg);
841 				break;
842 			}
843 			credits++;
844 		}
845 	}
846 
847 	spin_lock(&t->receive_credit_lock);
848 	t->recv_credits += credits;
849 	t->count_avail_recvmsg -= credits;
850 	spin_unlock(&t->receive_credit_lock);
851 
852 	spin_lock(&t->lock_new_recv_credits);
853 	t->new_recv_credits += credits;
854 	spin_unlock(&t->lock_new_recv_credits);
855 
856 	if (credits)
857 		queue_work(smb_direct_wq, &t->send_immediate_work);
858 }
859 
send_done(struct ib_cq * cq,struct ib_wc * wc)860 static void send_done(struct ib_cq *cq, struct ib_wc *wc)
861 {
862 	struct smb_direct_sendmsg *sendmsg, *sibling;
863 	struct smb_direct_transport *t;
864 	struct list_head *pos, *prev, *end;
865 
866 	sendmsg = container_of(wc->wr_cqe, struct smb_direct_sendmsg, cqe);
867 	t = sendmsg->transport;
868 
869 	ksmbd_debug(RDMA, "Send completed. status='%s (%d)', opcode=%d\n",
870 		    ib_wc_status_msg(wc->status), wc->status,
871 		    wc->opcode);
872 
873 	if (wc->status != IB_WC_SUCCESS || wc->opcode != IB_WC_SEND) {
874 		pr_err("Send error. status='%s (%d)', opcode=%d\n",
875 		       ib_wc_status_msg(wc->status), wc->status,
876 		       wc->opcode);
877 		smb_direct_disconnect_rdma_connection(t);
878 	}
879 
880 	if (atomic_dec_and_test(&t->send_pending))
881 		wake_up(&t->wait_send_pending);
882 
883 	/* iterate and free the list of messages in reverse. the list's head
884 	 * is invalid.
885 	 */
886 	for (pos = &sendmsg->list, prev = pos->prev, end = sendmsg->list.next;
887 	     prev != end; pos = prev, prev = prev->prev) {
888 		sibling = container_of(pos, struct smb_direct_sendmsg, list);
889 		smb_direct_free_sendmsg(t, sibling);
890 	}
891 
892 	sibling = container_of(pos, struct smb_direct_sendmsg, list);
893 	smb_direct_free_sendmsg(t, sibling);
894 }
895 
manage_credits_prior_sending(struct smb_direct_transport * t)896 static int manage_credits_prior_sending(struct smb_direct_transport *t)
897 {
898 	int new_credits;
899 
900 	spin_lock(&t->lock_new_recv_credits);
901 	new_credits = t->new_recv_credits;
902 	t->new_recv_credits = 0;
903 	spin_unlock(&t->lock_new_recv_credits);
904 
905 	return new_credits;
906 }
907 
smb_direct_post_send(struct smb_direct_transport * t,struct ib_send_wr * wr)908 static int smb_direct_post_send(struct smb_direct_transport *t,
909 				struct ib_send_wr *wr)
910 {
911 	int ret;
912 
913 	atomic_inc(&t->send_pending);
914 	ret = ib_post_send(t->qp, wr, NULL);
915 	if (ret) {
916 		pr_err("failed to post send: %d\n", ret);
917 		if (atomic_dec_and_test(&t->send_pending))
918 			wake_up(&t->wait_send_pending);
919 		smb_direct_disconnect_rdma_connection(t);
920 	}
921 	return ret;
922 }
923 
smb_direct_send_ctx_init(struct smb_direct_transport * t,struct smb_direct_send_ctx * send_ctx,bool need_invalidate_rkey,unsigned int remote_key)924 static void smb_direct_send_ctx_init(struct smb_direct_transport *t,
925 				     struct smb_direct_send_ctx *send_ctx,
926 				     bool need_invalidate_rkey,
927 				     unsigned int remote_key)
928 {
929 	INIT_LIST_HEAD(&send_ctx->msg_list);
930 	send_ctx->wr_cnt = 0;
931 	send_ctx->need_invalidate_rkey = need_invalidate_rkey;
932 	send_ctx->remote_key = remote_key;
933 }
934 
smb_direct_flush_send_list(struct smb_direct_transport * t,struct smb_direct_send_ctx * send_ctx,bool is_last)935 static int smb_direct_flush_send_list(struct smb_direct_transport *t,
936 				      struct smb_direct_send_ctx *send_ctx,
937 				      bool is_last)
938 {
939 	struct smb_direct_sendmsg *first, *last;
940 	int ret;
941 
942 	if (list_empty(&send_ctx->msg_list))
943 		return 0;
944 
945 	first = list_first_entry(&send_ctx->msg_list,
946 				 struct smb_direct_sendmsg,
947 				 list);
948 	last = list_last_entry(&send_ctx->msg_list,
949 			       struct smb_direct_sendmsg,
950 			       list);
951 
952 	last->wr.send_flags = IB_SEND_SIGNALED;
953 	last->wr.wr_cqe = &last->cqe;
954 	if (is_last && send_ctx->need_invalidate_rkey) {
955 		last->wr.opcode = IB_WR_SEND_WITH_INV;
956 		last->wr.ex.invalidate_rkey = send_ctx->remote_key;
957 	}
958 
959 	ret = smb_direct_post_send(t, &first->wr);
960 	if (!ret) {
961 		smb_direct_send_ctx_init(t, send_ctx,
962 					 send_ctx->need_invalidate_rkey,
963 					 send_ctx->remote_key);
964 	} else {
965 		atomic_add(send_ctx->wr_cnt, &t->send_credits);
966 		wake_up(&t->wait_send_credits);
967 		list_for_each_entry_safe(first, last, &send_ctx->msg_list,
968 					 list) {
969 			smb_direct_free_sendmsg(t, first);
970 		}
971 	}
972 	return ret;
973 }
974 
wait_for_credits(struct smb_direct_transport * t,wait_queue_head_t * waitq,atomic_t * total_credits,int needed)975 static int wait_for_credits(struct smb_direct_transport *t,
976 			    wait_queue_head_t *waitq, atomic_t *total_credits,
977 			    int needed)
978 {
979 	int ret;
980 
981 	do {
982 		if (atomic_sub_return(needed, total_credits) >= 0)
983 			return 0;
984 
985 		atomic_add(needed, total_credits);
986 		ret = wait_event_interruptible(*waitq,
987 					       atomic_read(total_credits) >= needed ||
988 					       t->status != SMB_DIRECT_CS_CONNECTED);
989 
990 		if (t->status != SMB_DIRECT_CS_CONNECTED)
991 			return -ENOTCONN;
992 		else if (ret < 0)
993 			return ret;
994 	} while (true);
995 }
996 
wait_for_send_credits(struct smb_direct_transport * t,struct smb_direct_send_ctx * send_ctx)997 static int wait_for_send_credits(struct smb_direct_transport *t,
998 				 struct smb_direct_send_ctx *send_ctx)
999 {
1000 	int ret;
1001 
1002 	if (send_ctx &&
1003 	    (send_ctx->wr_cnt >= 16 || atomic_read(&t->send_credits) <= 1)) {
1004 		ret = smb_direct_flush_send_list(t, send_ctx, false);
1005 		if (ret)
1006 			return ret;
1007 	}
1008 
1009 	return wait_for_credits(t, &t->wait_send_credits, &t->send_credits, 1);
1010 }
1011 
wait_for_rw_credits(struct smb_direct_transport * t,int credits)1012 static int wait_for_rw_credits(struct smb_direct_transport *t, int credits)
1013 {
1014 	return wait_for_credits(t, &t->wait_rw_credits, &t->rw_credits, credits);
1015 }
1016 
calc_rw_credits(struct smb_direct_transport * t,char * buf,unsigned int len)1017 static int calc_rw_credits(struct smb_direct_transport *t,
1018 			   char *buf, unsigned int len)
1019 {
1020 	return DIV_ROUND_UP(get_buf_page_count(buf, len),
1021 			    t->pages_per_rw_credit);
1022 }
1023 
smb_direct_create_header(struct smb_direct_transport * t,int size,int remaining_data_length,struct smb_direct_sendmsg ** sendmsg_out)1024 static int smb_direct_create_header(struct smb_direct_transport *t,
1025 				    int size, int remaining_data_length,
1026 				    struct smb_direct_sendmsg **sendmsg_out)
1027 {
1028 	struct smb_direct_sendmsg *sendmsg;
1029 	struct smb_direct_data_transfer *packet;
1030 	int header_length;
1031 	int ret;
1032 
1033 	sendmsg = smb_direct_alloc_sendmsg(t);
1034 	if (IS_ERR(sendmsg))
1035 		return PTR_ERR(sendmsg);
1036 
1037 	/* Fill in the packet header */
1038 	packet = (struct smb_direct_data_transfer *)sendmsg->packet;
1039 	packet->credits_requested = cpu_to_le16(t->send_credit_target);
1040 	packet->credits_granted = cpu_to_le16(manage_credits_prior_sending(t));
1041 
1042 	packet->flags = 0;
1043 	packet->reserved = 0;
1044 	if (!size)
1045 		packet->data_offset = 0;
1046 	else
1047 		packet->data_offset = cpu_to_le32(24);
1048 	packet->data_length = cpu_to_le32(size);
1049 	packet->remaining_data_length = cpu_to_le32(remaining_data_length);
1050 	packet->padding = 0;
1051 
1052 	ksmbd_debug(RDMA,
1053 		    "credits_requested=%d credits_granted=%d data_offset=%d data_length=%d remaining_data_length=%d\n",
1054 		    le16_to_cpu(packet->credits_requested),
1055 		    le16_to_cpu(packet->credits_granted),
1056 		    le32_to_cpu(packet->data_offset),
1057 		    le32_to_cpu(packet->data_length),
1058 		    le32_to_cpu(packet->remaining_data_length));
1059 
1060 	/* Map the packet to DMA */
1061 	header_length = sizeof(struct smb_direct_data_transfer);
1062 	/* If this is a packet without payload, don't send padding */
1063 	if (!size)
1064 		header_length =
1065 			offsetof(struct smb_direct_data_transfer, padding);
1066 
1067 	sendmsg->sge[0].addr = ib_dma_map_single(t->cm_id->device,
1068 						 (void *)packet,
1069 						 header_length,
1070 						 DMA_TO_DEVICE);
1071 	ret = ib_dma_mapping_error(t->cm_id->device, sendmsg->sge[0].addr);
1072 	if (ret) {
1073 		smb_direct_free_sendmsg(t, sendmsg);
1074 		return ret;
1075 	}
1076 
1077 	sendmsg->num_sge = 1;
1078 	sendmsg->sge[0].length = header_length;
1079 	sendmsg->sge[0].lkey = t->pd->local_dma_lkey;
1080 
1081 	*sendmsg_out = sendmsg;
1082 	return 0;
1083 }
1084 
get_sg_list(void * buf,int size,struct scatterlist * sg_list,int nentries)1085 static int get_sg_list(void *buf, int size, struct scatterlist *sg_list, int nentries)
1086 {
1087 	bool high = is_vmalloc_addr(buf);
1088 	struct page *page;
1089 	int offset, len;
1090 	int i = 0;
1091 
1092 	if (size <= 0 || nentries < get_buf_page_count(buf, size))
1093 		return -EINVAL;
1094 
1095 	offset = offset_in_page(buf);
1096 	buf -= offset;
1097 	while (size > 0) {
1098 		len = min_t(int, PAGE_SIZE - offset, size);
1099 		if (high)
1100 			page = vmalloc_to_page(buf);
1101 		else
1102 			page = kmap_to_page(buf);
1103 
1104 		if (!sg_list)
1105 			return -EINVAL;
1106 		sg_set_page(sg_list, page, len, offset);
1107 		sg_list = sg_next(sg_list);
1108 
1109 		buf += PAGE_SIZE;
1110 		size -= len;
1111 		offset = 0;
1112 		i++;
1113 	}
1114 	return i;
1115 }
1116 
get_mapped_sg_list(struct ib_device * device,void * buf,int size,struct scatterlist * sg_list,int nentries,enum dma_data_direction dir)1117 static int get_mapped_sg_list(struct ib_device *device, void *buf, int size,
1118 			      struct scatterlist *sg_list, int nentries,
1119 			      enum dma_data_direction dir)
1120 {
1121 	int npages;
1122 
1123 	npages = get_sg_list(buf, size, sg_list, nentries);
1124 	if (npages < 0)
1125 		return -EINVAL;
1126 	return ib_dma_map_sg(device, sg_list, npages, dir);
1127 }
1128 
post_sendmsg(struct smb_direct_transport * t,struct smb_direct_send_ctx * send_ctx,struct smb_direct_sendmsg * msg)1129 static int post_sendmsg(struct smb_direct_transport *t,
1130 			struct smb_direct_send_ctx *send_ctx,
1131 			struct smb_direct_sendmsg *msg)
1132 {
1133 	int i;
1134 
1135 	for (i = 0; i < msg->num_sge; i++)
1136 		ib_dma_sync_single_for_device(t->cm_id->device,
1137 					      msg->sge[i].addr, msg->sge[i].length,
1138 					      DMA_TO_DEVICE);
1139 
1140 	msg->cqe.done = send_done;
1141 	msg->wr.opcode = IB_WR_SEND;
1142 	msg->wr.sg_list = &msg->sge[0];
1143 	msg->wr.num_sge = msg->num_sge;
1144 	msg->wr.next = NULL;
1145 
1146 	if (send_ctx) {
1147 		msg->wr.wr_cqe = NULL;
1148 		msg->wr.send_flags = 0;
1149 		if (!list_empty(&send_ctx->msg_list)) {
1150 			struct smb_direct_sendmsg *last;
1151 
1152 			last = list_last_entry(&send_ctx->msg_list,
1153 					       struct smb_direct_sendmsg,
1154 					       list);
1155 			last->wr.next = &msg->wr;
1156 		}
1157 		list_add_tail(&msg->list, &send_ctx->msg_list);
1158 		send_ctx->wr_cnt++;
1159 		return 0;
1160 	}
1161 
1162 	msg->wr.wr_cqe = &msg->cqe;
1163 	msg->wr.send_flags = IB_SEND_SIGNALED;
1164 	return smb_direct_post_send(t, &msg->wr);
1165 }
1166 
smb_direct_post_send_data(struct smb_direct_transport * t,struct smb_direct_send_ctx * send_ctx,struct kvec * iov,int niov,int remaining_data_length)1167 static int smb_direct_post_send_data(struct smb_direct_transport *t,
1168 				     struct smb_direct_send_ctx *send_ctx,
1169 				     struct kvec *iov, int niov,
1170 				     int remaining_data_length)
1171 {
1172 	int i, j, ret;
1173 	struct smb_direct_sendmsg *msg;
1174 	int data_length;
1175 	struct scatterlist sg[SMB_DIRECT_MAX_SEND_SGES - 1];
1176 
1177 	ret = wait_for_send_credits(t, send_ctx);
1178 	if (ret)
1179 		return ret;
1180 
1181 	data_length = 0;
1182 	for (i = 0; i < niov; i++)
1183 		data_length += iov[i].iov_len;
1184 
1185 	ret = smb_direct_create_header(t, data_length, remaining_data_length,
1186 				       &msg);
1187 	if (ret) {
1188 		atomic_inc(&t->send_credits);
1189 		return ret;
1190 	}
1191 
1192 	for (i = 0; i < niov; i++) {
1193 		struct ib_sge *sge;
1194 		int sg_cnt;
1195 
1196 		sg_init_table(sg, SMB_DIRECT_MAX_SEND_SGES - 1);
1197 		sg_cnt = get_mapped_sg_list(t->cm_id->device,
1198 					    iov[i].iov_base, iov[i].iov_len,
1199 					    sg, SMB_DIRECT_MAX_SEND_SGES - 1,
1200 					    DMA_TO_DEVICE);
1201 		if (sg_cnt <= 0) {
1202 			pr_err("failed to map buffer\n");
1203 			ret = -ENOMEM;
1204 			goto err;
1205 		} else if (sg_cnt + msg->num_sge > SMB_DIRECT_MAX_SEND_SGES) {
1206 			pr_err("buffer not fitted into sges\n");
1207 			ret = -E2BIG;
1208 			ib_dma_unmap_sg(t->cm_id->device, sg, sg_cnt,
1209 					DMA_TO_DEVICE);
1210 			goto err;
1211 		}
1212 
1213 		for (j = 0; j < sg_cnt; j++) {
1214 			sge = &msg->sge[msg->num_sge];
1215 			sge->addr = sg_dma_address(&sg[j]);
1216 			sge->length = sg_dma_len(&sg[j]);
1217 			sge->lkey  = t->pd->local_dma_lkey;
1218 			msg->num_sge++;
1219 		}
1220 	}
1221 
1222 	ret = post_sendmsg(t, send_ctx, msg);
1223 	if (ret)
1224 		goto err;
1225 	return 0;
1226 err:
1227 	smb_direct_free_sendmsg(t, msg);
1228 	atomic_inc(&t->send_credits);
1229 	return ret;
1230 }
1231 
smb_direct_writev(struct ksmbd_transport * t,struct kvec * iov,int niovs,int buflen,bool need_invalidate,unsigned int remote_key)1232 static int smb_direct_writev(struct ksmbd_transport *t,
1233 			     struct kvec *iov, int niovs, int buflen,
1234 			     bool need_invalidate, unsigned int remote_key)
1235 {
1236 	struct smb_direct_transport *st = smb_trans_direct_transfort(t);
1237 	int remaining_data_length;
1238 	int start, i, j;
1239 	int max_iov_size = st->max_send_size -
1240 			sizeof(struct smb_direct_data_transfer);
1241 	int ret;
1242 	struct kvec vec;
1243 	struct smb_direct_send_ctx send_ctx;
1244 
1245 	if (st->status != SMB_DIRECT_CS_CONNECTED)
1246 		return -ENOTCONN;
1247 
1248 	//FIXME: skip RFC1002 header..
1249 	buflen -= 4;
1250 
1251 	remaining_data_length = buflen;
1252 	ksmbd_debug(RDMA, "Sending smb (RDMA): smb_len=%u\n", buflen);
1253 
1254 	smb_direct_send_ctx_init(st, &send_ctx, need_invalidate, remote_key);
1255 	start = i = 1;
1256 	buflen = 0;
1257 	while (true) {
1258 		buflen += iov[i].iov_len;
1259 		if (buflen > max_iov_size) {
1260 			if (i > start) {
1261 				remaining_data_length -=
1262 					(buflen - iov[i].iov_len);
1263 				ret = smb_direct_post_send_data(st, &send_ctx,
1264 								&iov[start], i - start,
1265 								remaining_data_length);
1266 				if (ret)
1267 					goto done;
1268 			} else {
1269 				/* iov[start] is too big, break it */
1270 				int nvec  = (buflen + max_iov_size - 1) /
1271 						max_iov_size;
1272 
1273 				for (j = 0; j < nvec; j++) {
1274 					vec.iov_base =
1275 						(char *)iov[start].iov_base +
1276 						j * max_iov_size;
1277 					vec.iov_len =
1278 						min_t(int, max_iov_size,
1279 						      buflen - max_iov_size * j);
1280 					remaining_data_length -= vec.iov_len;
1281 					ret = smb_direct_post_send_data(st, &send_ctx, &vec, 1,
1282 									remaining_data_length);
1283 					if (ret)
1284 						goto done;
1285 				}
1286 				i++;
1287 				if (i == niovs)
1288 					break;
1289 			}
1290 			start = i;
1291 			buflen = 0;
1292 		} else {
1293 			i++;
1294 			if (i == niovs) {
1295 				/* send out all remaining vecs */
1296 				remaining_data_length -= buflen;
1297 				ret = smb_direct_post_send_data(st, &send_ctx,
1298 								&iov[start], i - start,
1299 								remaining_data_length);
1300 				if (ret)
1301 					goto done;
1302 				break;
1303 			}
1304 		}
1305 	}
1306 
1307 done:
1308 	ret = smb_direct_flush_send_list(st, &send_ctx, true);
1309 
1310 	/*
1311 	 * As an optimization, we don't wait for individual I/O to finish
1312 	 * before sending the next one.
1313 	 * Send them all and wait for pending send count to get to 0
1314 	 * that means all the I/Os have been out and we are good to return
1315 	 */
1316 
1317 	wait_event(st->wait_send_pending,
1318 		   atomic_read(&st->send_pending) == 0);
1319 	return ret;
1320 }
1321 
smb_direct_free_rdma_rw_msg(struct smb_direct_transport * t,struct smb_direct_rdma_rw_msg * msg,enum dma_data_direction dir)1322 static void smb_direct_free_rdma_rw_msg(struct smb_direct_transport *t,
1323 					struct smb_direct_rdma_rw_msg *msg,
1324 					enum dma_data_direction dir)
1325 {
1326 	rdma_rw_ctx_destroy(&msg->rw_ctx, t->qp, t->qp->port,
1327 			    msg->sgt.sgl, msg->sgt.nents, dir);
1328 	sg_free_table_chained(&msg->sgt, SG_CHUNK_SIZE);
1329 	kfree(msg);
1330 }
1331 
read_write_done(struct ib_cq * cq,struct ib_wc * wc,enum dma_data_direction dir)1332 static void read_write_done(struct ib_cq *cq, struct ib_wc *wc,
1333 			    enum dma_data_direction dir)
1334 {
1335 	struct smb_direct_rdma_rw_msg *msg = container_of(wc->wr_cqe,
1336 							  struct smb_direct_rdma_rw_msg, cqe);
1337 	struct smb_direct_transport *t = msg->t;
1338 
1339 	if (wc->status != IB_WC_SUCCESS) {
1340 		msg->status = -EIO;
1341 		pr_err("read/write error. opcode = %d, status = %s(%d)\n",
1342 		       wc->opcode, ib_wc_status_msg(wc->status), wc->status);
1343 		if (wc->status != IB_WC_WR_FLUSH_ERR)
1344 			smb_direct_disconnect_rdma_connection(t);
1345 	}
1346 
1347 	complete(msg->completion);
1348 }
1349 
read_done(struct ib_cq * cq,struct ib_wc * wc)1350 static void read_done(struct ib_cq *cq, struct ib_wc *wc)
1351 {
1352 	read_write_done(cq, wc, DMA_FROM_DEVICE);
1353 }
1354 
write_done(struct ib_cq * cq,struct ib_wc * wc)1355 static void write_done(struct ib_cq *cq, struct ib_wc *wc)
1356 {
1357 	read_write_done(cq, wc, DMA_TO_DEVICE);
1358 }
1359 
smb_direct_rdma_xmit(struct smb_direct_transport * t,void * buf,int buf_len,struct smb2_buffer_desc_v1 * desc,unsigned int desc_len,bool is_read)1360 static int smb_direct_rdma_xmit(struct smb_direct_transport *t,
1361 				void *buf, int buf_len,
1362 				struct smb2_buffer_desc_v1 *desc,
1363 				unsigned int desc_len,
1364 				bool is_read)
1365 {
1366 	struct smb_direct_rdma_rw_msg *msg, *next_msg;
1367 	int i, ret;
1368 	DECLARE_COMPLETION_ONSTACK(completion);
1369 	struct ib_send_wr *first_wr;
1370 	LIST_HEAD(msg_list);
1371 	char *desc_buf;
1372 	int credits_needed;
1373 	unsigned int desc_buf_len, desc_num = 0;
1374 
1375 	if (t->status != SMB_DIRECT_CS_CONNECTED)
1376 		return -ENOTCONN;
1377 
1378 	if (buf_len > t->max_rdma_rw_size)
1379 		return -EINVAL;
1380 
1381 	/* calculate needed credits */
1382 	credits_needed = 0;
1383 	desc_buf = buf;
1384 	for (i = 0; i < desc_len / sizeof(*desc); i++) {
1385 		if (!buf_len)
1386 			break;
1387 
1388 		desc_buf_len = le32_to_cpu(desc[i].length);
1389 		if (!desc_buf_len)
1390 			return -EINVAL;
1391 
1392 		if (desc_buf_len > buf_len) {
1393 			desc_buf_len = buf_len;
1394 			desc[i].length = cpu_to_le32(desc_buf_len);
1395 			buf_len = 0;
1396 		}
1397 
1398 		credits_needed += calc_rw_credits(t, desc_buf, desc_buf_len);
1399 		desc_buf += desc_buf_len;
1400 		buf_len -= desc_buf_len;
1401 		desc_num++;
1402 	}
1403 
1404 	ksmbd_debug(RDMA, "RDMA %s, len %#x, needed credits %#x\n",
1405 		    str_read_write(is_read), buf_len, credits_needed);
1406 
1407 	ret = wait_for_rw_credits(t, credits_needed);
1408 	if (ret < 0)
1409 		return ret;
1410 
1411 	/* build rdma_rw_ctx for each descriptor */
1412 	desc_buf = buf;
1413 	for (i = 0; i < desc_num; i++) {
1414 		msg = kzalloc(struct_size(msg, sg_list, SG_CHUNK_SIZE),
1415 			      KSMBD_DEFAULT_GFP);
1416 		if (!msg) {
1417 			ret = -ENOMEM;
1418 			goto out;
1419 		}
1420 
1421 		desc_buf_len = le32_to_cpu(desc[i].length);
1422 
1423 		msg->t = t;
1424 		msg->cqe.done = is_read ? read_done : write_done;
1425 		msg->completion = &completion;
1426 
1427 		msg->sgt.sgl = &msg->sg_list[0];
1428 		ret = sg_alloc_table_chained(&msg->sgt,
1429 					     get_buf_page_count(desc_buf, desc_buf_len),
1430 					     msg->sg_list, SG_CHUNK_SIZE);
1431 		if (ret) {
1432 			kfree(msg);
1433 			ret = -ENOMEM;
1434 			goto out;
1435 		}
1436 
1437 		ret = get_sg_list(desc_buf, desc_buf_len,
1438 				  msg->sgt.sgl, msg->sgt.orig_nents);
1439 		if (ret < 0) {
1440 			sg_free_table_chained(&msg->sgt, SG_CHUNK_SIZE);
1441 			kfree(msg);
1442 			goto out;
1443 		}
1444 
1445 		ret = rdma_rw_ctx_init(&msg->rw_ctx, t->qp, t->qp->port,
1446 				       msg->sgt.sgl,
1447 				       get_buf_page_count(desc_buf, desc_buf_len),
1448 				       0,
1449 				       le64_to_cpu(desc[i].offset),
1450 				       le32_to_cpu(desc[i].token),
1451 				       is_read ? DMA_FROM_DEVICE : DMA_TO_DEVICE);
1452 		if (ret < 0) {
1453 			pr_err("failed to init rdma_rw_ctx: %d\n", ret);
1454 			sg_free_table_chained(&msg->sgt, SG_CHUNK_SIZE);
1455 			kfree(msg);
1456 			goto out;
1457 		}
1458 
1459 		list_add_tail(&msg->list, &msg_list);
1460 		desc_buf += desc_buf_len;
1461 	}
1462 
1463 	/* concatenate work requests of rdma_rw_ctxs */
1464 	first_wr = NULL;
1465 	list_for_each_entry_reverse(msg, &msg_list, list) {
1466 		first_wr = rdma_rw_ctx_wrs(&msg->rw_ctx, t->qp, t->qp->port,
1467 					   &msg->cqe, first_wr);
1468 	}
1469 
1470 	ret = ib_post_send(t->qp, first_wr, NULL);
1471 	if (ret) {
1472 		pr_err("failed to post send wr for RDMA R/W: %d\n", ret);
1473 		goto out;
1474 	}
1475 
1476 	msg = list_last_entry(&msg_list, struct smb_direct_rdma_rw_msg, list);
1477 	wait_for_completion(&completion);
1478 	ret = msg->status;
1479 out:
1480 	list_for_each_entry_safe(msg, next_msg, &msg_list, list) {
1481 		list_del(&msg->list);
1482 		smb_direct_free_rdma_rw_msg(t, msg,
1483 					    is_read ? DMA_FROM_DEVICE : DMA_TO_DEVICE);
1484 	}
1485 	atomic_add(credits_needed, &t->rw_credits);
1486 	wake_up(&t->wait_rw_credits);
1487 	return ret;
1488 }
1489 
smb_direct_rdma_write(struct ksmbd_transport * t,void * buf,unsigned int buflen,struct smb2_buffer_desc_v1 * desc,unsigned int desc_len)1490 static int smb_direct_rdma_write(struct ksmbd_transport *t,
1491 				 void *buf, unsigned int buflen,
1492 				 struct smb2_buffer_desc_v1 *desc,
1493 				 unsigned int desc_len)
1494 {
1495 	return smb_direct_rdma_xmit(smb_trans_direct_transfort(t), buf, buflen,
1496 				    desc, desc_len, false);
1497 }
1498 
smb_direct_rdma_read(struct ksmbd_transport * t,void * buf,unsigned int buflen,struct smb2_buffer_desc_v1 * desc,unsigned int desc_len)1499 static int smb_direct_rdma_read(struct ksmbd_transport *t,
1500 				void *buf, unsigned int buflen,
1501 				struct smb2_buffer_desc_v1 *desc,
1502 				unsigned int desc_len)
1503 {
1504 	return smb_direct_rdma_xmit(smb_trans_direct_transfort(t), buf, buflen,
1505 				    desc, desc_len, true);
1506 }
1507 
smb_direct_disconnect(struct ksmbd_transport * t)1508 static void smb_direct_disconnect(struct ksmbd_transport *t)
1509 {
1510 	struct smb_direct_transport *st = smb_trans_direct_transfort(t);
1511 
1512 	ksmbd_debug(RDMA, "Disconnecting cm_id=%p\n", st->cm_id);
1513 
1514 	smb_direct_disconnect_rdma_work(&st->disconnect_work);
1515 	wait_event_interruptible(st->wait_status,
1516 				 st->status == SMB_DIRECT_CS_DISCONNECTED);
1517 	free_transport(st);
1518 }
1519 
smb_direct_shutdown(struct ksmbd_transport * t)1520 static void smb_direct_shutdown(struct ksmbd_transport *t)
1521 {
1522 	struct smb_direct_transport *st = smb_trans_direct_transfort(t);
1523 
1524 	ksmbd_debug(RDMA, "smb-direct shutdown cm_id=%p\n", st->cm_id);
1525 
1526 	smb_direct_disconnect_rdma_work(&st->disconnect_work);
1527 }
1528 
smb_direct_cm_handler(struct rdma_cm_id * cm_id,struct rdma_cm_event * event)1529 static int smb_direct_cm_handler(struct rdma_cm_id *cm_id,
1530 				 struct rdma_cm_event *event)
1531 {
1532 	struct smb_direct_transport *t = cm_id->context;
1533 
1534 	ksmbd_debug(RDMA, "RDMA CM event. cm_id=%p event=%s (%d)\n",
1535 		    cm_id, rdma_event_msg(event->event), event->event);
1536 
1537 	switch (event->event) {
1538 	case RDMA_CM_EVENT_ESTABLISHED: {
1539 		t->status = SMB_DIRECT_CS_CONNECTED;
1540 		wake_up_interruptible(&t->wait_status);
1541 		break;
1542 	}
1543 	case RDMA_CM_EVENT_DEVICE_REMOVAL:
1544 	case RDMA_CM_EVENT_DISCONNECTED: {
1545 		ib_drain_qp(t->qp);
1546 
1547 		t->status = SMB_DIRECT_CS_DISCONNECTED;
1548 		wake_up_interruptible(&t->wait_status);
1549 		wake_up_interruptible(&t->wait_reassembly_queue);
1550 		wake_up(&t->wait_send_credits);
1551 		break;
1552 	}
1553 	case RDMA_CM_EVENT_CONNECT_ERROR: {
1554 		t->status = SMB_DIRECT_CS_DISCONNECTED;
1555 		wake_up_interruptible(&t->wait_status);
1556 		break;
1557 	}
1558 	default:
1559 		pr_err("Unexpected RDMA CM event. cm_id=%p, event=%s (%d)\n",
1560 		       cm_id, rdma_event_msg(event->event),
1561 		       event->event);
1562 		break;
1563 	}
1564 	return 0;
1565 }
1566 
smb_direct_qpair_handler(struct ib_event * event,void * context)1567 static void smb_direct_qpair_handler(struct ib_event *event, void *context)
1568 {
1569 	struct smb_direct_transport *t = context;
1570 
1571 	ksmbd_debug(RDMA, "Received QP event. cm_id=%p, event=%s (%d)\n",
1572 		    t->cm_id, ib_event_msg(event->event), event->event);
1573 
1574 	switch (event->event) {
1575 	case IB_EVENT_CQ_ERR:
1576 	case IB_EVENT_QP_FATAL:
1577 		smb_direct_disconnect_rdma_connection(t);
1578 		break;
1579 	default:
1580 		break;
1581 	}
1582 }
1583 
smb_direct_send_negotiate_response(struct smb_direct_transport * t,int failed)1584 static int smb_direct_send_negotiate_response(struct smb_direct_transport *t,
1585 					      int failed)
1586 {
1587 	struct smb_direct_sendmsg *sendmsg;
1588 	struct smb_direct_negotiate_resp *resp;
1589 	int ret;
1590 
1591 	sendmsg = smb_direct_alloc_sendmsg(t);
1592 	if (IS_ERR(sendmsg))
1593 		return -ENOMEM;
1594 
1595 	resp = (struct smb_direct_negotiate_resp *)sendmsg->packet;
1596 	if (failed) {
1597 		memset(resp, 0, sizeof(*resp));
1598 		resp->min_version = cpu_to_le16(0x0100);
1599 		resp->max_version = cpu_to_le16(0x0100);
1600 		resp->status = STATUS_NOT_SUPPORTED;
1601 	} else {
1602 		resp->status = STATUS_SUCCESS;
1603 		resp->min_version = SMB_DIRECT_VERSION_LE;
1604 		resp->max_version = SMB_DIRECT_VERSION_LE;
1605 		resp->negotiated_version = SMB_DIRECT_VERSION_LE;
1606 		resp->reserved = 0;
1607 		resp->credits_requested =
1608 				cpu_to_le16(t->send_credit_target);
1609 		resp->credits_granted = cpu_to_le16(manage_credits_prior_sending(t));
1610 		resp->max_readwrite_size = cpu_to_le32(t->max_rdma_rw_size);
1611 		resp->preferred_send_size = cpu_to_le32(t->max_send_size);
1612 		resp->max_receive_size = cpu_to_le32(t->max_recv_size);
1613 		resp->max_fragmented_size =
1614 				cpu_to_le32(t->max_fragmented_recv_size);
1615 	}
1616 
1617 	sendmsg->sge[0].addr = ib_dma_map_single(t->cm_id->device,
1618 						 (void *)resp, sizeof(*resp),
1619 						 DMA_TO_DEVICE);
1620 	ret = ib_dma_mapping_error(t->cm_id->device, sendmsg->sge[0].addr);
1621 	if (ret) {
1622 		smb_direct_free_sendmsg(t, sendmsg);
1623 		return ret;
1624 	}
1625 
1626 	sendmsg->num_sge = 1;
1627 	sendmsg->sge[0].length = sizeof(*resp);
1628 	sendmsg->sge[0].lkey = t->pd->local_dma_lkey;
1629 
1630 	ret = post_sendmsg(t, NULL, sendmsg);
1631 	if (ret) {
1632 		smb_direct_free_sendmsg(t, sendmsg);
1633 		return ret;
1634 	}
1635 
1636 	wait_event(t->wait_send_pending,
1637 		   atomic_read(&t->send_pending) == 0);
1638 	return 0;
1639 }
1640 
smb_direct_accept_client(struct smb_direct_transport * t)1641 static int smb_direct_accept_client(struct smb_direct_transport *t)
1642 {
1643 	struct rdma_conn_param conn_param;
1644 	struct ib_port_immutable port_immutable;
1645 	u32 ird_ord_hdr[2];
1646 	int ret;
1647 
1648 	memset(&conn_param, 0, sizeof(conn_param));
1649 	conn_param.initiator_depth = min_t(u8, t->cm_id->device->attrs.max_qp_rd_atom,
1650 					   SMB_DIRECT_CM_INITIATOR_DEPTH);
1651 	conn_param.responder_resources = 0;
1652 
1653 	t->cm_id->device->ops.get_port_immutable(t->cm_id->device,
1654 						 t->cm_id->port_num,
1655 						 &port_immutable);
1656 	if (port_immutable.core_cap_flags & RDMA_CORE_PORT_IWARP) {
1657 		ird_ord_hdr[0] = conn_param.responder_resources;
1658 		ird_ord_hdr[1] = 1;
1659 		conn_param.private_data = ird_ord_hdr;
1660 		conn_param.private_data_len = sizeof(ird_ord_hdr);
1661 	} else {
1662 		conn_param.private_data = NULL;
1663 		conn_param.private_data_len = 0;
1664 	}
1665 	conn_param.retry_count = SMB_DIRECT_CM_RETRY;
1666 	conn_param.rnr_retry_count = SMB_DIRECT_CM_RNR_RETRY;
1667 	conn_param.flow_control = 0;
1668 
1669 	ret = rdma_accept(t->cm_id, &conn_param);
1670 	if (ret) {
1671 		pr_err("error at rdma_accept: %d\n", ret);
1672 		return ret;
1673 	}
1674 	return 0;
1675 }
1676 
smb_direct_prepare_negotiation(struct smb_direct_transport * t)1677 static int smb_direct_prepare_negotiation(struct smb_direct_transport *t)
1678 {
1679 	int ret;
1680 	struct smb_direct_recvmsg *recvmsg;
1681 
1682 	recvmsg = get_free_recvmsg(t);
1683 	if (!recvmsg)
1684 		return -ENOMEM;
1685 	recvmsg->type = SMB_DIRECT_MSG_NEGOTIATE_REQ;
1686 
1687 	ret = smb_direct_post_recv(t, recvmsg);
1688 	if (ret) {
1689 		pr_err("Can't post recv: %d\n", ret);
1690 		goto out_err;
1691 	}
1692 
1693 	t->negotiation_requested = false;
1694 	ret = smb_direct_accept_client(t);
1695 	if (ret) {
1696 		pr_err("Can't accept client\n");
1697 		goto out_err;
1698 	}
1699 
1700 	smb_direct_post_recv_credits(&t->post_recv_credits_work.work);
1701 	return 0;
1702 out_err:
1703 	put_recvmsg(t, recvmsg);
1704 	return ret;
1705 }
1706 
smb_direct_get_max_fr_pages(struct smb_direct_transport * t)1707 static unsigned int smb_direct_get_max_fr_pages(struct smb_direct_transport *t)
1708 {
1709 	return min_t(unsigned int,
1710 		     t->cm_id->device->attrs.max_fast_reg_page_list_len,
1711 		     256);
1712 }
1713 
smb_direct_init_params(struct smb_direct_transport * t,struct ib_qp_cap * cap)1714 static int smb_direct_init_params(struct smb_direct_transport *t,
1715 				  struct ib_qp_cap *cap)
1716 {
1717 	struct ib_device *device = t->cm_id->device;
1718 	int max_send_sges, max_rw_wrs, max_send_wrs;
1719 	unsigned int max_sge_per_wr, wrs_per_credit;
1720 
1721 	/* need 3 more sge. because a SMB_DIRECT header, SMB2 header,
1722 	 * SMB2 response could be mapped.
1723 	 */
1724 	t->max_send_size = smb_direct_max_send_size;
1725 	max_send_sges = DIV_ROUND_UP(t->max_send_size, PAGE_SIZE) + 3;
1726 	if (max_send_sges > SMB_DIRECT_MAX_SEND_SGES) {
1727 		pr_err("max_send_size %d is too large\n", t->max_send_size);
1728 		return -EINVAL;
1729 	}
1730 
1731 	/* Calculate the number of work requests for RDMA R/W.
1732 	 * The maximum number of pages which can be registered
1733 	 * with one Memory region can be transferred with one
1734 	 * R/W credit. And at least 4 work requests for each credit
1735 	 * are needed for MR registration, RDMA R/W, local & remote
1736 	 * MR invalidation.
1737 	 */
1738 	t->max_rdma_rw_size = smb_direct_max_read_write_size;
1739 	t->pages_per_rw_credit = smb_direct_get_max_fr_pages(t);
1740 	t->max_rw_credits = DIV_ROUND_UP(t->max_rdma_rw_size,
1741 					 (t->pages_per_rw_credit - 1) *
1742 					 PAGE_SIZE);
1743 
1744 	max_sge_per_wr = min_t(unsigned int, device->attrs.max_send_sge,
1745 			       device->attrs.max_sge_rd);
1746 	max_sge_per_wr = max_t(unsigned int, max_sge_per_wr,
1747 			       max_send_sges);
1748 	wrs_per_credit = max_t(unsigned int, 4,
1749 			       DIV_ROUND_UP(t->pages_per_rw_credit,
1750 					    max_sge_per_wr) + 1);
1751 	max_rw_wrs = t->max_rw_credits * wrs_per_credit;
1752 
1753 	max_send_wrs = smb_direct_send_credit_target + max_rw_wrs;
1754 	if (max_send_wrs > device->attrs.max_cqe ||
1755 	    max_send_wrs > device->attrs.max_qp_wr) {
1756 		pr_err("consider lowering send_credit_target = %d\n",
1757 		       smb_direct_send_credit_target);
1758 		pr_err("Possible CQE overrun, device reporting max_cqe %d max_qp_wr %d\n",
1759 		       device->attrs.max_cqe, device->attrs.max_qp_wr);
1760 		return -EINVAL;
1761 	}
1762 
1763 	if (smb_direct_receive_credit_max > device->attrs.max_cqe ||
1764 	    smb_direct_receive_credit_max > device->attrs.max_qp_wr) {
1765 		pr_err("consider lowering receive_credit_max = %d\n",
1766 		       smb_direct_receive_credit_max);
1767 		pr_err("Possible CQE overrun, device reporting max_cpe %d max_qp_wr %d\n",
1768 		       device->attrs.max_cqe, device->attrs.max_qp_wr);
1769 		return -EINVAL;
1770 	}
1771 
1772 	if (device->attrs.max_recv_sge < SMB_DIRECT_MAX_RECV_SGES) {
1773 		pr_err("warning: device max_recv_sge = %d too small\n",
1774 		       device->attrs.max_recv_sge);
1775 		return -EINVAL;
1776 	}
1777 
1778 	t->recv_credits = 0;
1779 	t->count_avail_recvmsg = 0;
1780 
1781 	t->recv_credit_max = smb_direct_receive_credit_max;
1782 	t->recv_credit_target = 10;
1783 	t->new_recv_credits = 0;
1784 
1785 	t->send_credit_target = smb_direct_send_credit_target;
1786 	atomic_set(&t->send_credits, 0);
1787 	atomic_set(&t->rw_credits, t->max_rw_credits);
1788 
1789 	t->max_send_size = smb_direct_max_send_size;
1790 	t->max_recv_size = smb_direct_max_receive_size;
1791 	t->max_fragmented_recv_size = smb_direct_max_fragmented_recv_size;
1792 
1793 	cap->max_send_wr = max_send_wrs;
1794 	cap->max_recv_wr = t->recv_credit_max;
1795 	cap->max_send_sge = max_sge_per_wr;
1796 	cap->max_recv_sge = SMB_DIRECT_MAX_RECV_SGES;
1797 	cap->max_inline_data = 0;
1798 	cap->max_rdma_ctxs = t->max_rw_credits;
1799 	return 0;
1800 }
1801 
smb_direct_destroy_pools(struct smb_direct_transport * t)1802 static void smb_direct_destroy_pools(struct smb_direct_transport *t)
1803 {
1804 	struct smb_direct_recvmsg *recvmsg;
1805 
1806 	while ((recvmsg = get_free_recvmsg(t)))
1807 		mempool_free(recvmsg, t->recvmsg_mempool);
1808 	while ((recvmsg = get_empty_recvmsg(t)))
1809 		mempool_free(recvmsg, t->recvmsg_mempool);
1810 
1811 	mempool_destroy(t->recvmsg_mempool);
1812 	t->recvmsg_mempool = NULL;
1813 
1814 	kmem_cache_destroy(t->recvmsg_cache);
1815 	t->recvmsg_cache = NULL;
1816 
1817 	mempool_destroy(t->sendmsg_mempool);
1818 	t->sendmsg_mempool = NULL;
1819 
1820 	kmem_cache_destroy(t->sendmsg_cache);
1821 	t->sendmsg_cache = NULL;
1822 }
1823 
smb_direct_create_pools(struct smb_direct_transport * t)1824 static int smb_direct_create_pools(struct smb_direct_transport *t)
1825 {
1826 	char name[80];
1827 	int i;
1828 	struct smb_direct_recvmsg *recvmsg;
1829 
1830 	snprintf(name, sizeof(name), "smb_direct_rqst_pool_%p", t);
1831 	t->sendmsg_cache = kmem_cache_create(name,
1832 					     sizeof(struct smb_direct_sendmsg) +
1833 					      sizeof(struct smb_direct_negotiate_resp),
1834 					     0, SLAB_HWCACHE_ALIGN, NULL);
1835 	if (!t->sendmsg_cache)
1836 		return -ENOMEM;
1837 
1838 	t->sendmsg_mempool = mempool_create(t->send_credit_target,
1839 					    mempool_alloc_slab, mempool_free_slab,
1840 					    t->sendmsg_cache);
1841 	if (!t->sendmsg_mempool)
1842 		goto err;
1843 
1844 	snprintf(name, sizeof(name), "smb_direct_resp_%p", t);
1845 	t->recvmsg_cache = kmem_cache_create(name,
1846 					     sizeof(struct smb_direct_recvmsg) +
1847 					      t->max_recv_size,
1848 					     0, SLAB_HWCACHE_ALIGN, NULL);
1849 	if (!t->recvmsg_cache)
1850 		goto err;
1851 
1852 	t->recvmsg_mempool =
1853 		mempool_create(t->recv_credit_max, mempool_alloc_slab,
1854 			       mempool_free_slab, t->recvmsg_cache);
1855 	if (!t->recvmsg_mempool)
1856 		goto err;
1857 
1858 	INIT_LIST_HEAD(&t->recvmsg_queue);
1859 
1860 	for (i = 0; i < t->recv_credit_max; i++) {
1861 		recvmsg = mempool_alloc(t->recvmsg_mempool, KSMBD_DEFAULT_GFP);
1862 		if (!recvmsg)
1863 			goto err;
1864 		recvmsg->transport = t;
1865 		list_add(&recvmsg->list, &t->recvmsg_queue);
1866 	}
1867 	t->count_avail_recvmsg = t->recv_credit_max;
1868 
1869 	return 0;
1870 err:
1871 	smb_direct_destroy_pools(t);
1872 	return -ENOMEM;
1873 }
1874 
smb_direct_create_qpair(struct smb_direct_transport * t,struct ib_qp_cap * cap)1875 static int smb_direct_create_qpair(struct smb_direct_transport *t,
1876 				   struct ib_qp_cap *cap)
1877 {
1878 	int ret;
1879 	struct ib_qp_init_attr qp_attr;
1880 	int pages_per_rw;
1881 
1882 	t->pd = ib_alloc_pd(t->cm_id->device, 0);
1883 	if (IS_ERR(t->pd)) {
1884 		pr_err("Can't create RDMA PD\n");
1885 		ret = PTR_ERR(t->pd);
1886 		t->pd = NULL;
1887 		return ret;
1888 	}
1889 
1890 	t->send_cq = ib_alloc_cq(t->cm_id->device, t,
1891 				 smb_direct_send_credit_target + cap->max_rdma_ctxs,
1892 				 0, IB_POLL_WORKQUEUE);
1893 	if (IS_ERR(t->send_cq)) {
1894 		pr_err("Can't create RDMA send CQ\n");
1895 		ret = PTR_ERR(t->send_cq);
1896 		t->send_cq = NULL;
1897 		goto err;
1898 	}
1899 
1900 	t->recv_cq = ib_alloc_cq(t->cm_id->device, t,
1901 				 t->recv_credit_max, 0, IB_POLL_WORKQUEUE);
1902 	if (IS_ERR(t->recv_cq)) {
1903 		pr_err("Can't create RDMA recv CQ\n");
1904 		ret = PTR_ERR(t->recv_cq);
1905 		t->recv_cq = NULL;
1906 		goto err;
1907 	}
1908 
1909 	memset(&qp_attr, 0, sizeof(qp_attr));
1910 	qp_attr.event_handler = smb_direct_qpair_handler;
1911 	qp_attr.qp_context = t;
1912 	qp_attr.cap = *cap;
1913 	qp_attr.sq_sig_type = IB_SIGNAL_REQ_WR;
1914 	qp_attr.qp_type = IB_QPT_RC;
1915 	qp_attr.send_cq = t->send_cq;
1916 	qp_attr.recv_cq = t->recv_cq;
1917 	qp_attr.port_num = ~0;
1918 
1919 	ret = rdma_create_qp(t->cm_id, t->pd, &qp_attr);
1920 	if (ret) {
1921 		pr_err("Can't create RDMA QP: %d\n", ret);
1922 		goto err;
1923 	}
1924 
1925 	t->qp = t->cm_id->qp;
1926 	t->cm_id->event_handler = smb_direct_cm_handler;
1927 
1928 	pages_per_rw = DIV_ROUND_UP(t->max_rdma_rw_size, PAGE_SIZE) + 1;
1929 	if (pages_per_rw > t->cm_id->device->attrs.max_sgl_rd) {
1930 		ret = ib_mr_pool_init(t->qp, &t->qp->rdma_mrs,
1931 				      t->max_rw_credits, IB_MR_TYPE_MEM_REG,
1932 				      t->pages_per_rw_credit, 0);
1933 		if (ret) {
1934 			pr_err("failed to init mr pool count %d pages %d\n",
1935 			       t->max_rw_credits, t->pages_per_rw_credit);
1936 			goto err;
1937 		}
1938 	}
1939 
1940 	return 0;
1941 err:
1942 	if (t->qp) {
1943 		ib_destroy_qp(t->qp);
1944 		t->qp = NULL;
1945 	}
1946 	if (t->recv_cq) {
1947 		ib_destroy_cq(t->recv_cq);
1948 		t->recv_cq = NULL;
1949 	}
1950 	if (t->send_cq) {
1951 		ib_destroy_cq(t->send_cq);
1952 		t->send_cq = NULL;
1953 	}
1954 	if (t->pd) {
1955 		ib_dealloc_pd(t->pd);
1956 		t->pd = NULL;
1957 	}
1958 	return ret;
1959 }
1960 
smb_direct_prepare(struct ksmbd_transport * t)1961 static int smb_direct_prepare(struct ksmbd_transport *t)
1962 {
1963 	struct smb_direct_transport *st = smb_trans_direct_transfort(t);
1964 	struct smb_direct_recvmsg *recvmsg;
1965 	struct smb_direct_negotiate_req *req;
1966 	int ret;
1967 
1968 	ksmbd_debug(RDMA, "Waiting for SMB_DIRECT negotiate request\n");
1969 	ret = wait_event_interruptible_timeout(st->wait_status,
1970 					       st->negotiation_requested ||
1971 					       st->status == SMB_DIRECT_CS_DISCONNECTED,
1972 					       SMB_DIRECT_NEGOTIATE_TIMEOUT * HZ);
1973 	if (ret <= 0 || st->status == SMB_DIRECT_CS_DISCONNECTED)
1974 		return ret < 0 ? ret : -ETIMEDOUT;
1975 
1976 	recvmsg = get_first_reassembly(st);
1977 	if (!recvmsg)
1978 		return -ECONNABORTED;
1979 
1980 	ret = smb_direct_check_recvmsg(recvmsg);
1981 	if (ret == -ECONNABORTED)
1982 		goto out;
1983 
1984 	req = (struct smb_direct_negotiate_req *)recvmsg->packet;
1985 	st->max_recv_size = min_t(int, st->max_recv_size,
1986 				  le32_to_cpu(req->preferred_send_size));
1987 	st->max_send_size = min_t(int, st->max_send_size,
1988 				  le32_to_cpu(req->max_receive_size));
1989 	st->max_fragmented_send_size =
1990 		le32_to_cpu(req->max_fragmented_size);
1991 	st->max_fragmented_recv_size =
1992 		(st->recv_credit_max * st->max_recv_size) / 2;
1993 
1994 	ret = smb_direct_send_negotiate_response(st, ret);
1995 out:
1996 	spin_lock_irq(&st->reassembly_queue_lock);
1997 	st->reassembly_queue_length--;
1998 	list_del(&recvmsg->list);
1999 	spin_unlock_irq(&st->reassembly_queue_lock);
2000 	put_recvmsg(st, recvmsg);
2001 
2002 	return ret;
2003 }
2004 
smb_direct_connect(struct smb_direct_transport * st)2005 static int smb_direct_connect(struct smb_direct_transport *st)
2006 {
2007 	int ret;
2008 	struct ib_qp_cap qp_cap;
2009 
2010 	ret = smb_direct_init_params(st, &qp_cap);
2011 	if (ret) {
2012 		pr_err("Can't configure RDMA parameters\n");
2013 		return ret;
2014 	}
2015 
2016 	ret = smb_direct_create_pools(st);
2017 	if (ret) {
2018 		pr_err("Can't init RDMA pool: %d\n", ret);
2019 		return ret;
2020 	}
2021 
2022 	ret = smb_direct_create_qpair(st, &qp_cap);
2023 	if (ret) {
2024 		pr_err("Can't accept RDMA client: %d\n", ret);
2025 		return ret;
2026 	}
2027 
2028 	ret = smb_direct_prepare_negotiation(st);
2029 	if (ret) {
2030 		pr_err("Can't negotiate: %d\n", ret);
2031 		return ret;
2032 	}
2033 	return 0;
2034 }
2035 
rdma_frwr_is_supported(struct ib_device_attr * attrs)2036 static bool rdma_frwr_is_supported(struct ib_device_attr *attrs)
2037 {
2038 	if (!(attrs->device_cap_flags & IB_DEVICE_MEM_MGT_EXTENSIONS))
2039 		return false;
2040 	if (attrs->max_fast_reg_page_list_len == 0)
2041 		return false;
2042 	return true;
2043 }
2044 
smb_direct_handle_connect_request(struct rdma_cm_id * new_cm_id)2045 static int smb_direct_handle_connect_request(struct rdma_cm_id *new_cm_id)
2046 {
2047 	struct smb_direct_transport *t;
2048 	struct task_struct *handler;
2049 	int ret;
2050 
2051 	if (!rdma_frwr_is_supported(&new_cm_id->device->attrs)) {
2052 		ksmbd_debug(RDMA,
2053 			    "Fast Registration Work Requests is not supported. device capabilities=%llx\n",
2054 			    new_cm_id->device->attrs.device_cap_flags);
2055 		return -EPROTONOSUPPORT;
2056 	}
2057 
2058 	t = alloc_transport(new_cm_id);
2059 	if (!t)
2060 		return -ENOMEM;
2061 
2062 	ret = smb_direct_connect(t);
2063 	if (ret)
2064 		goto out_err;
2065 
2066 	handler = kthread_run(ksmbd_conn_handler_loop,
2067 			      KSMBD_TRANS(t)->conn, "ksmbd:r%u",
2068 			      smb_direct_port);
2069 	if (IS_ERR(handler)) {
2070 		ret = PTR_ERR(handler);
2071 		pr_err("Can't start thread\n");
2072 		goto out_err;
2073 	}
2074 
2075 	return 0;
2076 out_err:
2077 	free_transport(t);
2078 	return ret;
2079 }
2080 
smb_direct_listen_handler(struct rdma_cm_id * cm_id,struct rdma_cm_event * event)2081 static int smb_direct_listen_handler(struct rdma_cm_id *cm_id,
2082 				     struct rdma_cm_event *event)
2083 {
2084 	switch (event->event) {
2085 	case RDMA_CM_EVENT_CONNECT_REQUEST: {
2086 		int ret = smb_direct_handle_connect_request(cm_id);
2087 
2088 		if (ret) {
2089 			pr_err("Can't create transport: %d\n", ret);
2090 			return ret;
2091 		}
2092 
2093 		ksmbd_debug(RDMA, "Received connection request. cm_id=%p\n",
2094 			    cm_id);
2095 		break;
2096 	}
2097 	default:
2098 		pr_err("Unexpected listen event. cm_id=%p, event=%s (%d)\n",
2099 		       cm_id, rdma_event_msg(event->event), event->event);
2100 		break;
2101 	}
2102 	return 0;
2103 }
2104 
smb_direct_listen(int port)2105 static int smb_direct_listen(int port)
2106 {
2107 	int ret;
2108 	struct rdma_cm_id *cm_id;
2109 	struct sockaddr_in sin = {
2110 		.sin_family		= AF_INET,
2111 		.sin_addr.s_addr	= htonl(INADDR_ANY),
2112 		.sin_port		= htons(port),
2113 	};
2114 
2115 	cm_id = rdma_create_id(&init_net, smb_direct_listen_handler,
2116 			       &smb_direct_listener, RDMA_PS_TCP, IB_QPT_RC);
2117 	if (IS_ERR(cm_id)) {
2118 		pr_err("Can't create cm id: %ld\n", PTR_ERR(cm_id));
2119 		return PTR_ERR(cm_id);
2120 	}
2121 
2122 	ret = rdma_bind_addr(cm_id, (struct sockaddr *)&sin);
2123 	if (ret) {
2124 		pr_err("Can't bind: %d\n", ret);
2125 		goto err;
2126 	}
2127 
2128 	smb_direct_listener.cm_id = cm_id;
2129 
2130 	ret = rdma_listen(cm_id, 10);
2131 	if (ret) {
2132 		pr_err("Can't listen: %d\n", ret);
2133 		goto err;
2134 	}
2135 	return 0;
2136 err:
2137 	smb_direct_listener.cm_id = NULL;
2138 	rdma_destroy_id(cm_id);
2139 	return ret;
2140 }
2141 
smb_direct_ib_client_add(struct ib_device * ib_dev)2142 static int smb_direct_ib_client_add(struct ib_device *ib_dev)
2143 {
2144 	struct smb_direct_device *smb_dev;
2145 
2146 	/* Set 5445 port if device type is iWARP(No IB) */
2147 	if (ib_dev->node_type != RDMA_NODE_IB_CA)
2148 		smb_direct_port = SMB_DIRECT_PORT_IWARP;
2149 
2150 	if (!rdma_frwr_is_supported(&ib_dev->attrs))
2151 		return 0;
2152 
2153 	smb_dev = kzalloc(sizeof(*smb_dev), KSMBD_DEFAULT_GFP);
2154 	if (!smb_dev)
2155 		return -ENOMEM;
2156 	smb_dev->ib_dev = ib_dev;
2157 
2158 	write_lock(&smb_direct_device_lock);
2159 	list_add(&smb_dev->list, &smb_direct_device_list);
2160 	write_unlock(&smb_direct_device_lock);
2161 
2162 	ksmbd_debug(RDMA, "ib device added: name %s\n", ib_dev->name);
2163 	return 0;
2164 }
2165 
smb_direct_ib_client_remove(struct ib_device * ib_dev,void * client_data)2166 static void smb_direct_ib_client_remove(struct ib_device *ib_dev,
2167 					void *client_data)
2168 {
2169 	struct smb_direct_device *smb_dev, *tmp;
2170 
2171 	write_lock(&smb_direct_device_lock);
2172 	list_for_each_entry_safe(smb_dev, tmp, &smb_direct_device_list, list) {
2173 		if (smb_dev->ib_dev == ib_dev) {
2174 			list_del(&smb_dev->list);
2175 			kfree(smb_dev);
2176 			break;
2177 		}
2178 	}
2179 	write_unlock(&smb_direct_device_lock);
2180 }
2181 
2182 static struct ib_client smb_direct_ib_client = {
2183 	.name	= "ksmbd_smb_direct_ib",
2184 	.add	= smb_direct_ib_client_add,
2185 	.remove	= smb_direct_ib_client_remove,
2186 };
2187 
ksmbd_rdma_init(void)2188 int ksmbd_rdma_init(void)
2189 {
2190 	int ret;
2191 
2192 	smb_direct_listener.cm_id = NULL;
2193 
2194 	ret = ib_register_client(&smb_direct_ib_client);
2195 	if (ret) {
2196 		pr_err("failed to ib_register_client\n");
2197 		return ret;
2198 	}
2199 
2200 	/* When a client is running out of send credits, the credits are
2201 	 * granted by the server's sending a packet using this queue.
2202 	 * This avoids the situation that a clients cannot send packets
2203 	 * for lack of credits
2204 	 */
2205 	smb_direct_wq = alloc_workqueue("ksmbd-smb_direct-wq",
2206 					WQ_HIGHPRI | WQ_MEM_RECLAIM, 0);
2207 	if (!smb_direct_wq)
2208 		return -ENOMEM;
2209 
2210 	ret = smb_direct_listen(smb_direct_port);
2211 	if (ret) {
2212 		destroy_workqueue(smb_direct_wq);
2213 		smb_direct_wq = NULL;
2214 		pr_err("Can't listen: %d\n", ret);
2215 		return ret;
2216 	}
2217 
2218 	ksmbd_debug(RDMA, "init RDMA listener. cm_id=%p\n",
2219 		    smb_direct_listener.cm_id);
2220 	return 0;
2221 }
2222 
ksmbd_rdma_destroy(void)2223 void ksmbd_rdma_destroy(void)
2224 {
2225 	if (!smb_direct_listener.cm_id)
2226 		return;
2227 
2228 	ib_unregister_client(&smb_direct_ib_client);
2229 	rdma_destroy_id(smb_direct_listener.cm_id);
2230 
2231 	smb_direct_listener.cm_id = NULL;
2232 
2233 	if (smb_direct_wq) {
2234 		destroy_workqueue(smb_direct_wq);
2235 		smb_direct_wq = NULL;
2236 	}
2237 }
2238 
ksmbd_rdma_capable_netdev(struct net_device * netdev)2239 bool ksmbd_rdma_capable_netdev(struct net_device *netdev)
2240 {
2241 	struct smb_direct_device *smb_dev;
2242 	int i;
2243 	bool rdma_capable = false;
2244 
2245 	read_lock(&smb_direct_device_lock);
2246 	list_for_each_entry(smb_dev, &smb_direct_device_list, list) {
2247 		for (i = 0; i < smb_dev->ib_dev->phys_port_cnt; i++) {
2248 			struct net_device *ndev;
2249 
2250 			ndev = ib_device_get_netdev(smb_dev->ib_dev, i + 1);
2251 			if (!ndev)
2252 				continue;
2253 
2254 			if (ndev == netdev) {
2255 				dev_put(ndev);
2256 				rdma_capable = true;
2257 				goto out;
2258 			}
2259 			dev_put(ndev);
2260 		}
2261 	}
2262 out:
2263 	read_unlock(&smb_direct_device_lock);
2264 
2265 	if (rdma_capable == false) {
2266 		struct ib_device *ibdev;
2267 
2268 		ibdev = ib_device_get_by_netdev(netdev, RDMA_DRIVER_UNKNOWN);
2269 		if (ibdev) {
2270 			rdma_capable = rdma_frwr_is_supported(&ibdev->attrs);
2271 			ib_device_put(ibdev);
2272 		}
2273 	}
2274 
2275 	ksmbd_debug(RDMA, "netdev(%s) rdma capable : %s\n",
2276 		    netdev->name, str_true_false(rdma_capable));
2277 
2278 	return rdma_capable;
2279 }
2280 
2281 static const struct ksmbd_transport_ops ksmbd_smb_direct_transport_ops = {
2282 	.prepare	= smb_direct_prepare,
2283 	.disconnect	= smb_direct_disconnect,
2284 	.shutdown	= smb_direct_shutdown,
2285 	.writev		= smb_direct_writev,
2286 	.read		= smb_direct_read,
2287 	.rdma_read	= smb_direct_rdma_read,
2288 	.rdma_write	= smb_direct_rdma_write,
2289 	.free_transport = smb_direct_free_transport,
2290 };
2291