1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Management Controller Transport Protocol (MCTP)
4 * Implements DMTF specification
5 * "DSP0237 Management Component Transport Protocol (MCTP) SMBus/I2C
6 * Transport Binding"
7 * https://www.dmtf.org/sites/default/files/standards/documents/DSP0237_1.2.0.pdf
8 *
9 * A netdev is created for each I2C bus that handles MCTP. In the case of an I2C
10 * mux topology a single I2C client is attached to the root of the mux topology,
11 * shared between all mux I2C busses underneath. For non-mux cases an I2C client
12 * is attached per netdev.
13 *
14 * mctp-i2c-controller.yml devicetree binding has further details.
15 *
16 * Copyright (c) 2022 Code Construct
17 * Copyright (c) 2022 Google
18 */
19
20 #include <linux/module.h>
21 #include <linux/netdevice.h>
22 #include <linux/i2c.h>
23 #include <linux/i2c-mux.h>
24 #include <linux/if_arp.h>
25 #include <net/mctp.h>
26 #include <net/mctpdevice.h>
27
28 /* byte_count is limited to u8 */
29 #define MCTP_I2C_MAXBLOCK 255
30 /* One byte is taken by source_slave */
31 #define MCTP_I2C_MAXMTU (MCTP_I2C_MAXBLOCK - 1)
32 #define MCTP_I2C_MINMTU (64 + 4)
33 /* Allow space for dest_address, command, byte_count, data, PEC */
34 #define MCTP_I2C_BUFSZ (3 + MCTP_I2C_MAXBLOCK + 1)
35 #define MCTP_I2C_MINLEN 8
36 #define MCTP_I2C_COMMANDCODE 0x0f
37 #define MCTP_I2C_TX_WORK_LEN 100
38 /* Sufficient for 64kB at min mtu */
39 #define MCTP_I2C_TX_QUEUE_LEN 1100
40
41 #define MCTP_I2C_OF_PROP "mctp-controller"
42
43 enum {
44 MCTP_I2C_FLOW_STATE_NEW = 0,
45 MCTP_I2C_FLOW_STATE_ACTIVE,
46 MCTP_I2C_FLOW_STATE_INVALID,
47 };
48
49 /* List of all struct mctp_i2c_client
50 * Lock protects driver_clients and also prevents adding/removing adapters
51 * during mctp_i2c_client probe/remove.
52 */
53 static DEFINE_MUTEX(driver_clients_lock);
54 static LIST_HEAD(driver_clients);
55
56 struct mctp_i2c_client;
57
58 /* The netdev structure. One of these per I2C adapter. */
59 struct mctp_i2c_dev {
60 struct net_device *ndev;
61 struct i2c_adapter *adapter;
62 struct mctp_i2c_client *client;
63 struct list_head list; /* For mctp_i2c_client.devs */
64
65 size_t rx_pos;
66 u8 rx_buffer[MCTP_I2C_BUFSZ];
67 struct completion rx_done;
68
69 struct task_struct *tx_thread;
70 wait_queue_head_t tx_wq;
71 struct sk_buff_head tx_queue;
72 u8 tx_scratch[MCTP_I2C_BUFSZ];
73
74 /* A fake entry in our tx queue to perform an unlock operation */
75 struct sk_buff unlock_marker;
76
77 /* Spinlock protects i2c_lock_count, release_count, allow_rx */
78 spinlock_t lock;
79 int i2c_lock_count;
80 int release_count;
81 /* Indicates that the netif is ready to receive incoming packets */
82 bool allow_rx;
83
84 };
85
86 /* The i2c client structure. One per hardware i2c bus at the top of the
87 * mux tree, shared by multiple netdevs
88 */
89 struct mctp_i2c_client {
90 struct i2c_client *client;
91 u8 lladdr;
92
93 struct mctp_i2c_dev *sel;
94 struct list_head devs;
95 spinlock_t sel_lock; /* Protects sel and devs */
96
97 struct list_head list; /* For driver_clients */
98 };
99
100 /* Header on the wire. */
101 struct mctp_i2c_hdr {
102 u8 dest_slave;
103 u8 command;
104 /* Count of bytes following byte_count, excluding PEC */
105 u8 byte_count;
106 u8 source_slave;
107 };
108
109 static int mctp_i2c_recv(struct mctp_i2c_dev *midev);
110 static int mctp_i2c_slave_cb(struct i2c_client *client,
111 enum i2c_slave_event event, u8 *val);
112 static void mctp_i2c_ndo_uninit(struct net_device *dev);
113 static int mctp_i2c_ndo_open(struct net_device *dev);
114
mux_root_adapter(struct i2c_adapter * adap)115 static struct i2c_adapter *mux_root_adapter(struct i2c_adapter *adap)
116 {
117 #if IS_ENABLED(CONFIG_I2C_MUX)
118 return i2c_root_adapter(&adap->dev);
119 #else
120 /* In non-mux config all i2c adapters are root adapters */
121 return adap;
122 #endif
123 }
124
125 /* Creates a new i2c slave device attached to the root adapter.
126 * Sets up the slave callback.
127 * Must be called with a client on a root adapter.
128 */
mctp_i2c_new_client(struct i2c_client * client)129 static struct mctp_i2c_client *mctp_i2c_new_client(struct i2c_client *client)
130 {
131 struct mctp_i2c_client *mcli = NULL;
132 struct i2c_adapter *root = NULL;
133 int rc;
134
135 if (client->flags & I2C_CLIENT_TEN) {
136 dev_err(&client->dev, "failed, MCTP requires a 7-bit I2C address, addr=0x%x\n",
137 client->addr);
138 rc = -EINVAL;
139 goto err;
140 }
141
142 root = mux_root_adapter(client->adapter);
143 if (!root) {
144 dev_err(&client->dev, "failed to find root adapter\n");
145 rc = -ENOENT;
146 goto err;
147 }
148 if (root != client->adapter) {
149 dev_err(&client->dev,
150 "A mctp-i2c-controller client cannot be placed on an I2C mux adapter.\n"
151 " It should be placed on the mux tree root adapter\n"
152 " then set mctp-controller property on adapters to attach\n");
153 rc = -EINVAL;
154 goto err;
155 }
156
157 mcli = kzalloc(sizeof(*mcli), GFP_KERNEL);
158 if (!mcli) {
159 rc = -ENOMEM;
160 goto err;
161 }
162 spin_lock_init(&mcli->sel_lock);
163 INIT_LIST_HEAD(&mcli->devs);
164 INIT_LIST_HEAD(&mcli->list);
165 mcli->lladdr = client->addr & 0xff;
166 mcli->client = client;
167 i2c_set_clientdata(client, mcli);
168
169 rc = i2c_slave_register(mcli->client, mctp_i2c_slave_cb);
170 if (rc < 0) {
171 dev_err(&client->dev, "i2c register failed %d\n", rc);
172 mcli->client = NULL;
173 i2c_set_clientdata(client, NULL);
174 goto err;
175 }
176
177 return mcli;
178 err:
179 if (mcli) {
180 if (mcli->client)
181 i2c_unregister_device(mcli->client);
182 kfree(mcli);
183 }
184 return ERR_PTR(rc);
185 }
186
mctp_i2c_free_client(struct mctp_i2c_client * mcli)187 static void mctp_i2c_free_client(struct mctp_i2c_client *mcli)
188 {
189 int rc;
190
191 WARN_ON(!mutex_is_locked(&driver_clients_lock));
192 WARN_ON(!list_empty(&mcli->devs));
193 WARN_ON(mcli->sel); /* sanity check, no locking */
194
195 rc = i2c_slave_unregister(mcli->client);
196 /* Leak if it fails, we can't propagate errors upwards */
197 if (rc < 0)
198 dev_err(&mcli->client->dev, "i2c unregister failed %d\n", rc);
199 else
200 kfree(mcli);
201 }
202
203 /* Switch the mctp i2c device to receive responses.
204 * Call with sel_lock held
205 */
__mctp_i2c_device_select(struct mctp_i2c_client * mcli,struct mctp_i2c_dev * midev)206 static void __mctp_i2c_device_select(struct mctp_i2c_client *mcli,
207 struct mctp_i2c_dev *midev)
208 {
209 assert_spin_locked(&mcli->sel_lock);
210 if (midev)
211 dev_hold(midev->ndev);
212 if (mcli->sel)
213 dev_put(mcli->sel->ndev);
214 mcli->sel = midev;
215 }
216
217 /* Switch the mctp i2c device to receive responses */
mctp_i2c_device_select(struct mctp_i2c_client * mcli,struct mctp_i2c_dev * midev)218 static void mctp_i2c_device_select(struct mctp_i2c_client *mcli,
219 struct mctp_i2c_dev *midev)
220 {
221 unsigned long flags;
222
223 spin_lock_irqsave(&mcli->sel_lock, flags);
224 __mctp_i2c_device_select(mcli, midev);
225 spin_unlock_irqrestore(&mcli->sel_lock, flags);
226 }
227
mctp_i2c_slave_cb(struct i2c_client * client,enum i2c_slave_event event,u8 * val)228 static int mctp_i2c_slave_cb(struct i2c_client *client,
229 enum i2c_slave_event event, u8 *val)
230 {
231 struct mctp_i2c_client *mcli = i2c_get_clientdata(client);
232 struct mctp_i2c_dev *midev = NULL;
233 unsigned long flags;
234 int rc = 0;
235
236 spin_lock_irqsave(&mcli->sel_lock, flags);
237 midev = mcli->sel;
238 if (midev)
239 dev_hold(midev->ndev);
240 spin_unlock_irqrestore(&mcli->sel_lock, flags);
241
242 if (!midev)
243 return 0;
244
245 switch (event) {
246 case I2C_SLAVE_WRITE_RECEIVED:
247 if (midev->rx_pos < MCTP_I2C_BUFSZ) {
248 midev->rx_buffer[midev->rx_pos] = *val;
249 midev->rx_pos++;
250 } else {
251 midev->ndev->stats.rx_over_errors++;
252 }
253
254 break;
255 case I2C_SLAVE_WRITE_REQUESTED:
256 /* dest_slave as first byte */
257 midev->rx_buffer[0] = mcli->lladdr << 1;
258 midev->rx_pos = 1;
259 break;
260 case I2C_SLAVE_STOP:
261 rc = mctp_i2c_recv(midev);
262 break;
263 default:
264 break;
265 }
266
267 dev_put(midev->ndev);
268 return rc;
269 }
270
271 /* Processes incoming data that has been accumulated by the slave cb */
mctp_i2c_recv(struct mctp_i2c_dev * midev)272 static int mctp_i2c_recv(struct mctp_i2c_dev *midev)
273 {
274 struct net_device *ndev = midev->ndev;
275 struct mctp_i2c_hdr *hdr;
276 struct mctp_skb_cb *cb;
277 struct sk_buff *skb;
278 unsigned long flags;
279 u8 pec, calc_pec;
280 size_t recvlen;
281 int status;
282
283 /* + 1 for the PEC */
284 if (midev->rx_pos < MCTP_I2C_MINLEN + 1) {
285 ndev->stats.rx_length_errors++;
286 return -EINVAL;
287 }
288 /* recvlen excludes PEC */
289 recvlen = midev->rx_pos - 1;
290
291 hdr = (void *)midev->rx_buffer;
292 if (hdr->command != MCTP_I2C_COMMANDCODE) {
293 ndev->stats.rx_dropped++;
294 return -EINVAL;
295 }
296
297 if (hdr->byte_count + offsetof(struct mctp_i2c_hdr, source_slave) != recvlen) {
298 ndev->stats.rx_length_errors++;
299 return -EINVAL;
300 }
301
302 pec = midev->rx_buffer[midev->rx_pos - 1];
303 calc_pec = i2c_smbus_pec(0, midev->rx_buffer, recvlen);
304 if (pec != calc_pec) {
305 ndev->stats.rx_crc_errors++;
306 return -EINVAL;
307 }
308
309 skb = netdev_alloc_skb(ndev, recvlen);
310 if (!skb) {
311 ndev->stats.rx_dropped++;
312 return -ENOMEM;
313 }
314
315 skb->protocol = htons(ETH_P_MCTP);
316 skb_put_data(skb, midev->rx_buffer, recvlen);
317 skb_reset_mac_header(skb);
318 skb_pull(skb, sizeof(struct mctp_i2c_hdr));
319 skb_reset_network_header(skb);
320
321 cb = __mctp_cb(skb);
322 cb->halen = 1;
323 cb->haddr[0] = hdr->source_slave >> 1;
324
325 /* We need to ensure that the netif is not used once netdev
326 * unregister occurs
327 */
328 spin_lock_irqsave(&midev->lock, flags);
329 if (midev->allow_rx) {
330 reinit_completion(&midev->rx_done);
331 spin_unlock_irqrestore(&midev->lock, flags);
332
333 status = netif_rx(skb);
334 complete(&midev->rx_done);
335 } else {
336 status = NET_RX_DROP;
337 spin_unlock_irqrestore(&midev->lock, flags);
338 }
339
340 if (status == NET_RX_SUCCESS) {
341 ndev->stats.rx_packets++;
342 ndev->stats.rx_bytes += recvlen;
343 } else {
344 ndev->stats.rx_dropped++;
345 }
346 return 0;
347 }
348
349 enum mctp_i2c_flow_state {
350 MCTP_I2C_TX_FLOW_INVALID,
351 MCTP_I2C_TX_FLOW_NONE,
352 MCTP_I2C_TX_FLOW_NEW,
353 MCTP_I2C_TX_FLOW_EXISTING,
354 };
355
356 static enum mctp_i2c_flow_state
mctp_i2c_get_tx_flow_state(struct mctp_i2c_dev * midev,struct sk_buff * skb)357 mctp_i2c_get_tx_flow_state(struct mctp_i2c_dev *midev, struct sk_buff *skb)
358 {
359 enum mctp_i2c_flow_state state;
360 struct mctp_sk_key *key;
361 struct mctp_flow *flow;
362 unsigned long flags;
363
364 flow = skb_ext_find(skb, SKB_EXT_MCTP);
365 if (!flow)
366 return MCTP_I2C_TX_FLOW_NONE;
367
368 key = flow->key;
369 if (!key)
370 return MCTP_I2C_TX_FLOW_NONE;
371
372 spin_lock_irqsave(&key->lock, flags);
373 /* If the key is present but invalid, we're unlikely to be able
374 * to handle the flow at all; just drop now
375 */
376 if (!key->valid) {
377 state = MCTP_I2C_TX_FLOW_INVALID;
378 } else {
379 switch (key->dev_flow_state) {
380 case MCTP_I2C_FLOW_STATE_NEW:
381 key->dev_flow_state = MCTP_I2C_FLOW_STATE_ACTIVE;
382 state = MCTP_I2C_TX_FLOW_NEW;
383 break;
384 case MCTP_I2C_FLOW_STATE_ACTIVE:
385 state = MCTP_I2C_TX_FLOW_EXISTING;
386 break;
387 default:
388 state = MCTP_I2C_TX_FLOW_INVALID;
389 }
390 }
391
392 spin_unlock_irqrestore(&key->lock, flags);
393
394 return state;
395 }
396
397 /* We're not contending with ourselves here; we only need to exclude other
398 * i2c clients from using the bus. refcounts are simply to prevent
399 * recursive locking.
400 */
mctp_i2c_lock_nest(struct mctp_i2c_dev * midev)401 static void mctp_i2c_lock_nest(struct mctp_i2c_dev *midev)
402 {
403 unsigned long flags;
404 bool lock;
405
406 spin_lock_irqsave(&midev->lock, flags);
407 lock = midev->i2c_lock_count == 0;
408 midev->i2c_lock_count++;
409 spin_unlock_irqrestore(&midev->lock, flags);
410
411 if (lock)
412 i2c_lock_bus(midev->adapter, I2C_LOCK_SEGMENT);
413 }
414
mctp_i2c_unlock_nest(struct mctp_i2c_dev * midev)415 static void mctp_i2c_unlock_nest(struct mctp_i2c_dev *midev)
416 {
417 unsigned long flags;
418 bool unlock;
419
420 spin_lock_irqsave(&midev->lock, flags);
421 if (!WARN_ONCE(midev->i2c_lock_count == 0, "lock count underflow!"))
422 midev->i2c_lock_count--;
423 unlock = midev->i2c_lock_count == 0;
424 spin_unlock_irqrestore(&midev->lock, flags);
425
426 if (unlock)
427 i2c_unlock_bus(midev->adapter, I2C_LOCK_SEGMENT);
428 }
429
430 /* Unlocks the bus if was previously locked, used for cleanup */
mctp_i2c_unlock_reset(struct mctp_i2c_dev * midev)431 static void mctp_i2c_unlock_reset(struct mctp_i2c_dev *midev)
432 {
433 unsigned long flags;
434 bool unlock;
435
436 spin_lock_irqsave(&midev->lock, flags);
437 unlock = midev->i2c_lock_count > 0;
438 midev->i2c_lock_count = 0;
439 spin_unlock_irqrestore(&midev->lock, flags);
440
441 if (unlock)
442 i2c_unlock_bus(midev->adapter, I2C_LOCK_SEGMENT);
443 }
444
mctp_i2c_xmit(struct mctp_i2c_dev * midev,struct sk_buff * skb)445 static void mctp_i2c_xmit(struct mctp_i2c_dev *midev, struct sk_buff *skb)
446 {
447 struct net_device_stats *stats = &midev->ndev->stats;
448 enum mctp_i2c_flow_state fs;
449 struct mctp_i2c_hdr *hdr;
450 struct i2c_msg msg = {0};
451 u8 *pecp;
452 int rc;
453
454 fs = mctp_i2c_get_tx_flow_state(midev, skb);
455
456 hdr = (void *)skb_mac_header(skb);
457 /* Sanity check that packet contents matches skb length,
458 * and can't exceed MCTP_I2C_BUFSZ
459 */
460 if (skb->len != hdr->byte_count + 3) {
461 dev_warn_ratelimited(&midev->adapter->dev,
462 "Bad tx length %d vs skb %u\n",
463 hdr->byte_count + 3, skb->len);
464 return;
465 }
466
467 if (skb_tailroom(skb) >= 1) {
468 /* Linear case with space, we can just append the PEC */
469 skb_put(skb, 1);
470 } else {
471 /* Otherwise need to copy the buffer */
472 skb_copy_bits(skb, 0, midev->tx_scratch, skb->len);
473 hdr = (void *)midev->tx_scratch;
474 }
475
476 pecp = (void *)&hdr->source_slave + hdr->byte_count;
477 *pecp = i2c_smbus_pec(0, (u8 *)hdr, hdr->byte_count + 3);
478 msg.buf = (void *)&hdr->command;
479 /* command, bytecount, data, pec */
480 msg.len = 2 + hdr->byte_count + 1;
481 msg.addr = hdr->dest_slave >> 1;
482
483 switch (fs) {
484 case MCTP_I2C_TX_FLOW_NONE:
485 /* no flow: full lock & unlock */
486 mctp_i2c_lock_nest(midev);
487 mctp_i2c_device_select(midev->client, midev);
488 rc = __i2c_transfer(midev->adapter, &msg, 1);
489 mctp_i2c_unlock_nest(midev);
490 break;
491
492 case MCTP_I2C_TX_FLOW_NEW:
493 /* new flow: lock, tx, but don't unlock; that will happen
494 * on flow release
495 */
496 mctp_i2c_lock_nest(midev);
497 mctp_i2c_device_select(midev->client, midev);
498 fallthrough;
499
500 case MCTP_I2C_TX_FLOW_EXISTING:
501 /* existing flow: we already have the lock; just tx */
502 rc = __i2c_transfer(midev->adapter, &msg, 1);
503 break;
504
505 case MCTP_I2C_TX_FLOW_INVALID:
506 return;
507 }
508
509 if (rc < 0) {
510 dev_warn_ratelimited(&midev->adapter->dev,
511 "__i2c_transfer failed %d\n", rc);
512 stats->tx_errors++;
513 } else {
514 stats->tx_bytes += skb->len;
515 stats->tx_packets++;
516 }
517 }
518
mctp_i2c_flow_release(struct mctp_i2c_dev * midev)519 static void mctp_i2c_flow_release(struct mctp_i2c_dev *midev)
520 {
521 unsigned long flags;
522 bool unlock;
523
524 spin_lock_irqsave(&midev->lock, flags);
525 if (midev->release_count > midev->i2c_lock_count) {
526 WARN_ONCE(1, "release count overflow");
527 midev->release_count = midev->i2c_lock_count;
528 }
529
530 midev->i2c_lock_count -= midev->release_count;
531 unlock = midev->i2c_lock_count == 0 && midev->release_count > 0;
532 midev->release_count = 0;
533 spin_unlock_irqrestore(&midev->lock, flags);
534
535 if (unlock)
536 i2c_unlock_bus(midev->adapter, I2C_LOCK_SEGMENT);
537 }
538
mctp_i2c_header_create(struct sk_buff * skb,struct net_device * dev,unsigned short type,const void * daddr,const void * saddr,unsigned int len)539 static int mctp_i2c_header_create(struct sk_buff *skb, struct net_device *dev,
540 unsigned short type, const void *daddr,
541 const void *saddr, unsigned int len)
542 {
543 struct mctp_i2c_hdr *hdr;
544 struct mctp_hdr *mhdr;
545 u8 lldst, llsrc;
546 int rc;
547
548 if (len > MCTP_I2C_MAXMTU)
549 return -EMSGSIZE;
550
551 if (!daddr || !saddr)
552 return -EINVAL;
553
554 lldst = *((u8 *)daddr);
555 llsrc = *((u8 *)saddr);
556
557 rc = skb_cow_head(skb, sizeof(struct mctp_i2c_hdr));
558 if (rc)
559 return rc;
560
561 skb_push(skb, sizeof(struct mctp_i2c_hdr));
562 skb_reset_mac_header(skb);
563 hdr = (void *)skb_mac_header(skb);
564 mhdr = mctp_hdr(skb);
565 hdr->dest_slave = (lldst << 1) & 0xff;
566 hdr->command = MCTP_I2C_COMMANDCODE;
567 hdr->byte_count = len + 1;
568 hdr->source_slave = ((llsrc << 1) & 0xff) | 0x01;
569 mhdr->ver = 0x01;
570
571 return sizeof(struct mctp_i2c_hdr);
572 }
573
mctp_i2c_tx_thread(void * data)574 static int mctp_i2c_tx_thread(void *data)
575 {
576 struct mctp_i2c_dev *midev = data;
577 struct sk_buff *skb;
578 unsigned long flags;
579
580 for (;;) {
581 if (kthread_should_stop())
582 break;
583
584 spin_lock_irqsave(&midev->tx_queue.lock, flags);
585 skb = __skb_dequeue(&midev->tx_queue);
586 if (netif_queue_stopped(midev->ndev))
587 netif_wake_queue(midev->ndev);
588 spin_unlock_irqrestore(&midev->tx_queue.lock, flags);
589
590 if (skb == &midev->unlock_marker) {
591 mctp_i2c_flow_release(midev);
592
593 } else if (skb) {
594 mctp_i2c_xmit(midev, skb);
595 kfree_skb(skb);
596
597 } else {
598 wait_event_idle(midev->tx_wq,
599 !skb_queue_empty(&midev->tx_queue) ||
600 kthread_should_stop());
601 }
602 }
603
604 return 0;
605 }
606
mctp_i2c_start_xmit(struct sk_buff * skb,struct net_device * dev)607 static netdev_tx_t mctp_i2c_start_xmit(struct sk_buff *skb,
608 struct net_device *dev)
609 {
610 struct mctp_i2c_dev *midev = netdev_priv(dev);
611 unsigned long flags;
612
613 spin_lock_irqsave(&midev->tx_queue.lock, flags);
614 if (skb_queue_len(&midev->tx_queue) >= MCTP_I2C_TX_WORK_LEN) {
615 netif_stop_queue(dev);
616 spin_unlock_irqrestore(&midev->tx_queue.lock, flags);
617 netdev_err(dev, "BUG! Tx Ring full when queue awake!\n");
618 return NETDEV_TX_BUSY;
619 }
620
621 __skb_queue_tail(&midev->tx_queue, skb);
622 if (skb_queue_len(&midev->tx_queue) == MCTP_I2C_TX_WORK_LEN)
623 netif_stop_queue(dev);
624 spin_unlock_irqrestore(&midev->tx_queue.lock, flags);
625
626 wake_up(&midev->tx_wq);
627 return NETDEV_TX_OK;
628 }
629
mctp_i2c_release_flow(struct mctp_dev * mdev,struct mctp_sk_key * key)630 static void mctp_i2c_release_flow(struct mctp_dev *mdev,
631 struct mctp_sk_key *key)
632
633 {
634 struct mctp_i2c_dev *midev = netdev_priv(mdev->dev);
635 bool queue_release = false;
636 unsigned long flags;
637
638 spin_lock_irqsave(&midev->lock, flags);
639 /* if we have seen the flow/key previously, we need to pair the
640 * original lock with a release
641 */
642 if (key->dev_flow_state == MCTP_I2C_FLOW_STATE_ACTIVE) {
643 midev->release_count++;
644 queue_release = true;
645 }
646 key->dev_flow_state = MCTP_I2C_FLOW_STATE_INVALID;
647 spin_unlock_irqrestore(&midev->lock, flags);
648
649 if (queue_release) {
650 /* Ensure we have a release operation queued, through the fake
651 * marker skb
652 */
653 spin_lock(&midev->tx_queue.lock);
654 if (!midev->unlock_marker.next)
655 __skb_queue_tail(&midev->tx_queue,
656 &midev->unlock_marker);
657 spin_unlock(&midev->tx_queue.lock);
658 wake_up(&midev->tx_wq);
659 }
660 }
661
662 static const struct net_device_ops mctp_i2c_ops = {
663 .ndo_start_xmit = mctp_i2c_start_xmit,
664 .ndo_uninit = mctp_i2c_ndo_uninit,
665 .ndo_open = mctp_i2c_ndo_open,
666 };
667
668 static const struct header_ops mctp_i2c_headops = {
669 .create = mctp_i2c_header_create,
670 };
671
672 static const struct mctp_netdev_ops mctp_i2c_mctp_ops = {
673 .release_flow = mctp_i2c_release_flow,
674 };
675
mctp_i2c_net_setup(struct net_device * dev)676 static void mctp_i2c_net_setup(struct net_device *dev)
677 {
678 dev->type = ARPHRD_MCTP;
679
680 dev->mtu = MCTP_I2C_MAXMTU;
681 dev->min_mtu = MCTP_I2C_MINMTU;
682 dev->max_mtu = MCTP_I2C_MAXMTU;
683 dev->tx_queue_len = MCTP_I2C_TX_QUEUE_LEN;
684
685 dev->hard_header_len = sizeof(struct mctp_i2c_hdr);
686 dev->addr_len = 1;
687
688 dev->netdev_ops = &mctp_i2c_ops;
689 dev->header_ops = &mctp_i2c_headops;
690 }
691
692 /* Populates the mctp_i2c_dev priv struct for a netdev.
693 * Returns an error pointer on failure.
694 */
mctp_i2c_midev_init(struct net_device * dev,struct mctp_i2c_client * mcli,struct i2c_adapter * adap)695 static struct mctp_i2c_dev *mctp_i2c_midev_init(struct net_device *dev,
696 struct mctp_i2c_client *mcli,
697 struct i2c_adapter *adap)
698 {
699 struct mctp_i2c_dev *midev = netdev_priv(dev);
700 unsigned long flags;
701
702 midev->tx_thread = kthread_create(mctp_i2c_tx_thread, midev,
703 "%s/tx", dev->name);
704 if (IS_ERR(midev->tx_thread))
705 return ERR_CAST(midev->tx_thread);
706
707 midev->ndev = dev;
708 get_device(&adap->dev);
709 midev->adapter = adap;
710 get_device(&mcli->client->dev);
711 midev->client = mcli;
712 INIT_LIST_HEAD(&midev->list);
713 spin_lock_init(&midev->lock);
714 midev->i2c_lock_count = 0;
715 midev->release_count = 0;
716 init_completion(&midev->rx_done);
717 complete(&midev->rx_done);
718 init_waitqueue_head(&midev->tx_wq);
719 skb_queue_head_init(&midev->tx_queue);
720
721 /* Add to the parent mcli */
722 spin_lock_irqsave(&mcli->sel_lock, flags);
723 list_add(&midev->list, &mcli->devs);
724 /* Select a device by default */
725 if (!mcli->sel)
726 __mctp_i2c_device_select(mcli, midev);
727 spin_unlock_irqrestore(&mcli->sel_lock, flags);
728
729 /* Start the worker thread */
730 wake_up_process(midev->tx_thread);
731
732 return midev;
733 }
734
735 /* Counterpart of mctp_i2c_midev_init */
mctp_i2c_midev_free(struct mctp_i2c_dev * midev)736 static void mctp_i2c_midev_free(struct mctp_i2c_dev *midev)
737 {
738 struct mctp_i2c_client *mcli = midev->client;
739 unsigned long flags;
740
741 if (midev->tx_thread) {
742 kthread_stop(midev->tx_thread);
743 midev->tx_thread = NULL;
744 }
745
746 /* Unconditionally unlock on close */
747 mctp_i2c_unlock_reset(midev);
748
749 /* Remove the netdev from the parent i2c client. */
750 spin_lock_irqsave(&mcli->sel_lock, flags);
751 list_del(&midev->list);
752 if (mcli->sel == midev) {
753 struct mctp_i2c_dev *first;
754
755 first = list_first_entry_or_null(&mcli->devs, struct mctp_i2c_dev, list);
756 __mctp_i2c_device_select(mcli, first);
757 }
758 spin_unlock_irqrestore(&mcli->sel_lock, flags);
759
760 skb_queue_purge(&midev->tx_queue);
761 put_device(&midev->adapter->dev);
762 put_device(&mcli->client->dev);
763 }
764
765 /* Stops, unregisters, and frees midev */
mctp_i2c_unregister(struct mctp_i2c_dev * midev)766 static void mctp_i2c_unregister(struct mctp_i2c_dev *midev)
767 {
768 unsigned long flags;
769
770 /* Stop tx thread prior to unregister, it uses netif_() functions */
771 kthread_stop(midev->tx_thread);
772 midev->tx_thread = NULL;
773
774 /* Prevent any new rx in mctp_i2c_recv(), let any pending work finish */
775 spin_lock_irqsave(&midev->lock, flags);
776 midev->allow_rx = false;
777 spin_unlock_irqrestore(&midev->lock, flags);
778 wait_for_completion(&midev->rx_done);
779
780 mctp_unregister_netdev(midev->ndev);
781 /* midev has been freed now by mctp_i2c_ndo_uninit callback */
782
783 free_netdev(midev->ndev);
784 }
785
mctp_i2c_ndo_uninit(struct net_device * dev)786 static void mctp_i2c_ndo_uninit(struct net_device *dev)
787 {
788 struct mctp_i2c_dev *midev = netdev_priv(dev);
789
790 /* Perform cleanup here to ensure that mcli->sel isn't holding
791 * a reference that would prevent unregister_netdevice()
792 * from completing.
793 */
794 mctp_i2c_midev_free(midev);
795 }
796
mctp_i2c_ndo_open(struct net_device * dev)797 static int mctp_i2c_ndo_open(struct net_device *dev)
798 {
799 struct mctp_i2c_dev *midev = netdev_priv(dev);
800 unsigned long flags;
801
802 /* i2c rx handler can only pass packets once the netdev is registered */
803 spin_lock_irqsave(&midev->lock, flags);
804 midev->allow_rx = true;
805 spin_unlock_irqrestore(&midev->lock, flags);
806
807 return 0;
808 }
809
mctp_i2c_add_netdev(struct mctp_i2c_client * mcli,struct i2c_adapter * adap)810 static int mctp_i2c_add_netdev(struct mctp_i2c_client *mcli,
811 struct i2c_adapter *adap)
812 {
813 struct mctp_i2c_dev *midev = NULL;
814 struct net_device *ndev = NULL;
815 struct i2c_adapter *root;
816 unsigned long flags;
817 char namebuf[30];
818 int rc;
819
820 root = mux_root_adapter(adap);
821 if (root != mcli->client->adapter) {
822 dev_err(&mcli->client->dev,
823 "I2C adapter %s is not a child bus of %s\n",
824 mcli->client->adapter->name, root->name);
825 return -EINVAL;
826 }
827
828 WARN_ON(!mutex_is_locked(&driver_clients_lock));
829 snprintf(namebuf, sizeof(namebuf), "mctpi2c%d", adap->nr);
830 ndev = alloc_netdev(sizeof(*midev), namebuf, NET_NAME_ENUM, mctp_i2c_net_setup);
831 if (!ndev) {
832 dev_err(&mcli->client->dev, "alloc netdev failed\n");
833 rc = -ENOMEM;
834 goto err;
835 }
836 dev_net_set(ndev, current->nsproxy->net_ns);
837 SET_NETDEV_DEV(ndev, &adap->dev);
838 dev_addr_set(ndev, &mcli->lladdr);
839
840 midev = mctp_i2c_midev_init(ndev, mcli, adap);
841 if (IS_ERR(midev)) {
842 rc = PTR_ERR(midev);
843 midev = NULL;
844 goto err;
845 }
846
847 rc = mctp_register_netdev(ndev, &mctp_i2c_mctp_ops);
848 if (rc < 0) {
849 dev_err(&mcli->client->dev,
850 "register netdev \"%s\" failed %d\n",
851 ndev->name, rc);
852 goto err;
853 }
854
855 spin_lock_irqsave(&midev->lock, flags);
856 midev->allow_rx = false;
857 spin_unlock_irqrestore(&midev->lock, flags);
858
859 return 0;
860 err:
861 if (midev)
862 mctp_i2c_midev_free(midev);
863 if (ndev)
864 free_netdev(ndev);
865 return rc;
866 }
867
868 /* Removes any netdev for adap. mcli is the parent root i2c client */
mctp_i2c_remove_netdev(struct mctp_i2c_client * mcli,struct i2c_adapter * adap)869 static void mctp_i2c_remove_netdev(struct mctp_i2c_client *mcli,
870 struct i2c_adapter *adap)
871 {
872 struct mctp_i2c_dev *midev = NULL, *m = NULL;
873 unsigned long flags;
874
875 WARN_ON(!mutex_is_locked(&driver_clients_lock));
876 spin_lock_irqsave(&mcli->sel_lock, flags);
877 /* List size is limited by number of MCTP netdevs on a single hardware bus */
878 list_for_each_entry(m, &mcli->devs, list)
879 if (m->adapter == adap) {
880 midev = m;
881 break;
882 }
883 spin_unlock_irqrestore(&mcli->sel_lock, flags);
884
885 if (midev)
886 mctp_i2c_unregister(midev);
887 }
888
889 /* Determines whether a device is an i2c adapter.
890 * Optionally returns the root i2c_adapter
891 */
mctp_i2c_get_adapter(struct device * dev,struct i2c_adapter ** ret_root)892 static struct i2c_adapter *mctp_i2c_get_adapter(struct device *dev,
893 struct i2c_adapter **ret_root)
894 {
895 struct i2c_adapter *root, *adap;
896
897 if (dev->type != &i2c_adapter_type)
898 return NULL;
899 adap = to_i2c_adapter(dev);
900 root = mux_root_adapter(adap);
901 WARN_ONCE(!root, "MCTP I2C failed to find root adapter for %s\n",
902 dev_name(dev));
903 if (!root)
904 return NULL;
905 if (ret_root)
906 *ret_root = root;
907 return adap;
908 }
909
910 /* Determines whether a device is an i2c adapter with the "mctp-controller"
911 * devicetree property set. If adap is not an OF node, returns match_no_of
912 */
mctp_i2c_adapter_match(struct i2c_adapter * adap,bool match_no_of)913 static bool mctp_i2c_adapter_match(struct i2c_adapter *adap, bool match_no_of)
914 {
915 if (!adap->dev.of_node)
916 return match_no_of;
917 return of_property_read_bool(adap->dev.of_node, MCTP_I2C_OF_PROP);
918 }
919
920 /* Called for each existing i2c device (adapter or client) when a
921 * new mctp-i2c client is probed.
922 */
mctp_i2c_client_try_attach(struct device * dev,void * data)923 static int mctp_i2c_client_try_attach(struct device *dev, void *data)
924 {
925 struct i2c_adapter *adap = NULL, *root = NULL;
926 struct mctp_i2c_client *mcli = data;
927
928 adap = mctp_i2c_get_adapter(dev, &root);
929 if (!adap)
930 return 0;
931 if (mcli->client->adapter != root)
932 return 0;
933 /* Must either have mctp-controller property on the adapter, or
934 * be a root adapter if it's non-devicetree
935 */
936 if (!mctp_i2c_adapter_match(adap, adap == root))
937 return 0;
938
939 return mctp_i2c_add_netdev(mcli, adap);
940 }
941
mctp_i2c_notify_add(struct device * dev)942 static void mctp_i2c_notify_add(struct device *dev)
943 {
944 struct mctp_i2c_client *mcli = NULL, *m = NULL;
945 struct i2c_adapter *root = NULL, *adap = NULL;
946 int rc;
947
948 adap = mctp_i2c_get_adapter(dev, &root);
949 if (!adap)
950 return;
951 /* Check for mctp-controller property on the adapter */
952 if (!mctp_i2c_adapter_match(adap, false))
953 return;
954
955 /* Find an existing mcli for adap's root */
956 mutex_lock(&driver_clients_lock);
957 list_for_each_entry(m, &driver_clients, list) {
958 if (m->client->adapter == root) {
959 mcli = m;
960 break;
961 }
962 }
963
964 if (mcli) {
965 rc = mctp_i2c_add_netdev(mcli, adap);
966 if (rc < 0)
967 dev_warn(dev, "Failed adding mctp-i2c net device\n");
968 }
969 mutex_unlock(&driver_clients_lock);
970 }
971
mctp_i2c_notify_del(struct device * dev)972 static void mctp_i2c_notify_del(struct device *dev)
973 {
974 struct i2c_adapter *root = NULL, *adap = NULL;
975 struct mctp_i2c_client *mcli = NULL;
976
977 adap = mctp_i2c_get_adapter(dev, &root);
978 if (!adap)
979 return;
980
981 mutex_lock(&driver_clients_lock);
982 list_for_each_entry(mcli, &driver_clients, list) {
983 if (mcli->client->adapter == root) {
984 mctp_i2c_remove_netdev(mcli, adap);
985 break;
986 }
987 }
988 mutex_unlock(&driver_clients_lock);
989 }
990
mctp_i2c_probe(struct i2c_client * client)991 static int mctp_i2c_probe(struct i2c_client *client)
992 {
993 struct mctp_i2c_client *mcli = NULL;
994 int rc;
995
996 mutex_lock(&driver_clients_lock);
997 mcli = mctp_i2c_new_client(client);
998 if (IS_ERR(mcli)) {
999 rc = PTR_ERR(mcli);
1000 mcli = NULL;
1001 goto out;
1002 } else {
1003 list_add(&mcli->list, &driver_clients);
1004 }
1005
1006 /* Add a netdev for adapters that have a 'mctp-controller' property */
1007 i2c_for_each_dev(mcli, mctp_i2c_client_try_attach);
1008 rc = 0;
1009 out:
1010 mutex_unlock(&driver_clients_lock);
1011 return rc;
1012 }
1013
mctp_i2c_remove(struct i2c_client * client)1014 static void mctp_i2c_remove(struct i2c_client *client)
1015 {
1016 struct mctp_i2c_client *mcli = i2c_get_clientdata(client);
1017 struct mctp_i2c_dev *midev = NULL, *tmp = NULL;
1018
1019 mutex_lock(&driver_clients_lock);
1020 list_del(&mcli->list);
1021 /* Remove all child adapter netdevs */
1022 list_for_each_entry_safe(midev, tmp, &mcli->devs, list)
1023 mctp_i2c_unregister(midev);
1024
1025 mctp_i2c_free_client(mcli);
1026 mutex_unlock(&driver_clients_lock);
1027 }
1028
1029 /* We look for a 'mctp-controller' property on I2C busses as they are
1030 * added/deleted, creating/removing netdevs as required.
1031 */
mctp_i2c_notifier_call(struct notifier_block * nb,unsigned long action,void * data)1032 static int mctp_i2c_notifier_call(struct notifier_block *nb,
1033 unsigned long action, void *data)
1034 {
1035 struct device *dev = data;
1036
1037 switch (action) {
1038 case BUS_NOTIFY_ADD_DEVICE:
1039 mctp_i2c_notify_add(dev);
1040 break;
1041 case BUS_NOTIFY_DEL_DEVICE:
1042 mctp_i2c_notify_del(dev);
1043 break;
1044 }
1045 return NOTIFY_DONE;
1046 }
1047
1048 static struct notifier_block mctp_i2c_notifier = {
1049 .notifier_call = mctp_i2c_notifier_call,
1050 };
1051
1052 static const struct i2c_device_id mctp_i2c_id[] = {
1053 { "mctp-i2c-interface", 0 },
1054 {},
1055 };
1056 MODULE_DEVICE_TABLE(i2c, mctp_i2c_id);
1057
1058 static const struct of_device_id mctp_i2c_of_match[] = {
1059 { .compatible = "mctp-i2c-controller" },
1060 {},
1061 };
1062 MODULE_DEVICE_TABLE(of, mctp_i2c_of_match);
1063
1064 static struct i2c_driver mctp_i2c_driver = {
1065 .driver = {
1066 .name = "mctp-i2c-interface",
1067 .of_match_table = mctp_i2c_of_match,
1068 },
1069 .probe = mctp_i2c_probe,
1070 .remove = mctp_i2c_remove,
1071 .id_table = mctp_i2c_id,
1072 };
1073
mctp_i2c_mod_init(void)1074 static __init int mctp_i2c_mod_init(void)
1075 {
1076 int rc;
1077
1078 pr_info("MCTP I2C interface driver\n");
1079 rc = i2c_add_driver(&mctp_i2c_driver);
1080 if (rc < 0)
1081 return rc;
1082 rc = bus_register_notifier(&i2c_bus_type, &mctp_i2c_notifier);
1083 if (rc < 0) {
1084 i2c_del_driver(&mctp_i2c_driver);
1085 return rc;
1086 }
1087 return 0;
1088 }
1089
mctp_i2c_mod_exit(void)1090 static __exit void mctp_i2c_mod_exit(void)
1091 {
1092 int rc;
1093
1094 rc = bus_unregister_notifier(&i2c_bus_type, &mctp_i2c_notifier);
1095 if (rc < 0)
1096 pr_warn("MCTP I2C could not unregister notifier, %d\n", rc);
1097 i2c_del_driver(&mctp_i2c_driver);
1098 }
1099
1100 module_init(mctp_i2c_mod_init);
1101 module_exit(mctp_i2c_mod_exit);
1102
1103 MODULE_DESCRIPTION("MCTP I2C device");
1104 MODULE_LICENSE("GPL v2");
1105 MODULE_AUTHOR("Matt Johnston <matt@codeconstruct.com.au>");
1106