greybus: connection: remove skip-connected legacy protocol flags
[cascardo/linux.git] / drivers / staging / greybus / connection.c
1 /*
2  * Greybus connections
3  *
4  * Copyright 2014 Google Inc.
5  * Copyright 2014 Linaro Ltd.
6  *
7  * Released under the GPLv2 only.
8  */
9
10 #include <linux/workqueue.h>
11
12 #include "greybus.h"
13
14
15 static int gb_connection_bind_protocol(struct gb_connection *connection);
16 static void gb_connection_unbind_protocol(struct gb_connection *connection);
17
18
19 static DEFINE_SPINLOCK(gb_connections_lock);
20
21 /* This is only used at initialization time; no locking is required. */
22 static struct gb_connection *
23 gb_connection_intf_find(struct gb_interface *intf, u16 cport_id)
24 {
25         struct gb_host_device *hd = intf->hd;
26         struct gb_connection *connection;
27
28         list_for_each_entry(connection, &hd->connections, hd_links) {
29                 if (connection->intf == intf &&
30                                 connection->intf_cport_id == cport_id)
31                         return connection;
32         }
33
34         return NULL;
35 }
36
37 static struct gb_connection *
38 gb_connection_hd_find(struct gb_host_device *hd, u16 cport_id)
39 {
40         struct gb_connection *connection;
41         unsigned long flags;
42
43         spin_lock_irqsave(&gb_connections_lock, flags);
44         list_for_each_entry(connection, &hd->connections, hd_links)
45                 if (connection->hd_cport_id == cport_id)
46                         goto found;
47         connection = NULL;
48 found:
49         spin_unlock_irqrestore(&gb_connections_lock, flags);
50
51         return connection;
52 }
53
54 /*
55  * Callback from the host driver to let us know that data has been
56  * received on the bundle.
57  */
58 void greybus_data_rcvd(struct gb_host_device *hd, u16 cport_id,
59                         u8 *data, size_t length)
60 {
61         struct gb_connection *connection;
62
63         connection = gb_connection_hd_find(hd, cport_id);
64         if (!connection) {
65                 dev_err(&hd->dev,
66                         "nonexistent connection (%zu bytes dropped)\n", length);
67                 return;
68         }
69         gb_connection_recv(connection, data, length);
70 }
71 EXPORT_SYMBOL_GPL(greybus_data_rcvd);
72
73 static DEFINE_MUTEX(connection_mutex);
74
75 static void gb_connection_kref_release(struct kref *kref)
76 {
77         struct gb_connection *connection;
78
79         connection = container_of(kref, struct gb_connection, kref);
80         destroy_workqueue(connection->wq);
81         kfree(connection);
82         mutex_unlock(&connection_mutex);
83 }
84
85 static void gb_connection_init_name(struct gb_connection *connection)
86 {
87         u16 hd_cport_id = connection->hd_cport_id;
88         u16 cport_id = 0;
89         u8 intf_id = 0;
90
91         if (connection->intf) {
92                 intf_id = connection->intf->interface_id;
93                 cport_id = connection->intf_cport_id;
94         }
95
96         snprintf(connection->name, sizeof(connection->name),
97                         "%u/%u:%u", hd_cport_id, intf_id, cport_id);
98 }
99
100 /*
101  * gb_connection_create() - create a Greybus connection
102  * @hd:                 host device of the connection
103  * @hd_cport_id:        host-device cport id, or -1 for dynamic allocation
104  * @intf:               remote interface, or NULL for static connections
105  * @bundle:             remote-interface bundle (may be NULL)
106  * @cport_id:           remote-interface cport id, or 0 for static connections
107  * @protocol_id:        protocol id
108  *
109  * Create a Greybus connection, representing the bidirectional link
110  * between a CPort on a (local) Greybus host device and a CPort on
111  * another Greybus interface.
112  *
113  * A connection also maintains the state of operations sent over the
114  * connection.
115  *
116  * Return: A pointer to the new connection if successful, or NULL otherwise.
117  */
118 static struct gb_connection *
119 gb_connection_create(struct gb_host_device *hd, int hd_cport_id,
120                                 struct gb_interface *intf,
121                                 struct gb_bundle *bundle, int cport_id,
122                                 u8 protocol_id)
123 {
124         struct gb_connection *connection;
125         struct ida *id_map = &hd->cport_id_map;
126         int ida_start, ida_end;
127         u8 major = 0;
128         u8 minor = 1;
129
130         /*
131          * If a manifest tries to reuse a cport, reject it.  We
132          * initialize connections serially so we don't need to worry
133          * about holding the connection lock.
134          */
135         if (bundle && gb_connection_intf_find(bundle->intf, cport_id)) {
136                 dev_err(&bundle->dev, "cport %u already connected\n",
137                                 cport_id);
138                 return NULL;
139         }
140
141         if (hd_cport_id < 0) {
142                 ida_start = 0;
143                 ida_end = hd->num_cports;
144         } else if (hd_cport_id < hd->num_cports) {
145                 ida_start = hd_cport_id;
146                 ida_end = hd_cport_id + 1;
147         } else {
148                 dev_err(&hd->dev, "cport %d not available\n", hd_cport_id);
149                 return NULL;
150         }
151
152         hd_cport_id = ida_simple_get(id_map, ida_start, ida_end, GFP_KERNEL);
153         if (hd_cport_id < 0)
154                 return NULL;
155
156         connection = kzalloc(sizeof(*connection), GFP_KERNEL);
157         if (!connection)
158                 goto err_remove_ida;
159
160         connection->hd_cport_id = hd_cport_id;
161         connection->intf_cport_id = cport_id;
162         connection->hd = hd;
163         connection->intf = intf;
164
165         connection->protocol_id = protocol_id;
166         connection->major = major;
167         connection->minor = minor;
168
169         connection->bundle = bundle;
170         connection->state = GB_CONNECTION_STATE_DISABLED;
171
172         atomic_set(&connection->op_cycle, 0);
173         mutex_init(&connection->mutex);
174         spin_lock_init(&connection->lock);
175         INIT_LIST_HEAD(&connection->operations);
176
177         connection->wq = alloc_workqueue("%s:%d", WQ_UNBOUND, 1,
178                                          dev_name(&hd->dev), hd_cport_id);
179         if (!connection->wq)
180                 goto err_free_connection;
181
182         kref_init(&connection->kref);
183
184         gb_connection_init_name(connection);
185
186         spin_lock_irq(&gb_connections_lock);
187         list_add(&connection->hd_links, &hd->connections);
188
189         if (bundle)
190                 list_add(&connection->bundle_links, &bundle->connections);
191         else
192                 INIT_LIST_HEAD(&connection->bundle_links);
193
194         spin_unlock_irq(&gb_connections_lock);
195
196         return connection;
197
198 err_free_connection:
199         kfree(connection);
200 err_remove_ida:
201         ida_simple_remove(id_map, hd_cport_id);
202
203         return NULL;
204 }
205
206 struct gb_connection *
207 gb_connection_create_static(struct gb_host_device *hd,
208                                         u16 hd_cport_id, u8 protocol_id)
209 {
210         return gb_connection_create(hd, hd_cport_id, NULL, NULL, 0,
211                                                                 protocol_id);
212 }
213
214 struct gb_connection *
215 gb_connection_create_dynamic(struct gb_interface *intf,
216                                         struct gb_bundle *bundle,
217                                         u16 cport_id, u8 protocol_id)
218 {
219         return gb_connection_create(intf->hd, -1, intf, bundle, cport_id,
220                                                                 protocol_id);
221 }
222
223 static int gb_connection_hd_cport_enable(struct gb_connection *connection)
224 {
225         struct gb_host_device *hd = connection->hd;
226         int ret;
227
228         if (!hd->driver->cport_enable)
229                 return 0;
230
231         ret = hd->driver->cport_enable(hd, connection->hd_cport_id);
232         if (ret) {
233                 dev_err(&hd->dev,
234                         "failed to enable host cport: %d\n", ret);
235                 return ret;
236         }
237
238         return 0;
239 }
240
241 static void gb_connection_hd_cport_disable(struct gb_connection *connection)
242 {
243         struct gb_host_device *hd = connection->hd;
244
245         if (!hd->driver->cport_disable)
246                 return;
247
248         hd->driver->cport_disable(hd, connection->hd_cport_id);
249 }
250
251 /*
252  * Request the SVC to create a connection from AP's cport to interface's
253  * cport.
254  */
255 static int
256 gb_connection_svc_connection_create(struct gb_connection *connection)
257 {
258         struct gb_host_device *hd = connection->hd;
259         struct gb_interface *intf;
260         int ret;
261
262         if (gb_connection_is_static(connection))
263                 return 0;
264
265         intf = connection->intf;
266         ret = gb_svc_connection_create(hd->svc,
267                         hd->svc->ap_intf_id,
268                         connection->hd_cport_id,
269                         intf->interface_id,
270                         connection->intf_cport_id,
271                         intf->boot_over_unipro);
272         if (ret) {
273                 dev_err(&connection->hd->dev,
274                         "%s: failed to create svc connection: %d\n",
275                         connection->name, ret);
276                 return ret;
277         }
278
279         return 0;
280 }
281
282 static void
283 gb_connection_svc_connection_destroy(struct gb_connection *connection)
284 {
285         if (gb_connection_is_static(connection))
286                 return;
287
288         gb_svc_connection_destroy(connection->hd->svc,
289                                   connection->hd->svc->ap_intf_id,
290                                   connection->hd_cport_id,
291                                   connection->intf->interface_id,
292                                   connection->intf_cport_id);
293 }
294
295 /* Inform Interface about active CPorts */
296 static int gb_connection_control_connected(struct gb_connection *connection)
297 {
298         struct gb_control *control;
299         u16 cport_id = connection->intf_cport_id;
300         int ret;
301
302         if (gb_connection_is_static(connection))
303                 return 0;
304
305         control = connection->intf->control;
306
307         if (connection == control->connection)
308                 return 0;
309
310         ret = gb_control_connected_operation(control, cport_id);
311         if (ret) {
312                 dev_err(&connection->bundle->dev,
313                         "failed to connect cport: %d\n", ret);
314                 return ret;
315         }
316
317         return 0;
318 }
319
320 /* Inform Interface about inactive CPorts */
321 static void
322 gb_connection_control_disconnected(struct gb_connection *connection)
323 {
324         struct gb_control *control;
325         u16 cport_id = connection->intf_cport_id;
326         int ret;
327
328         if (gb_connection_is_static(connection))
329                 return;
330
331         control = connection->intf->control;
332
333         if (connection == control->connection)
334                 return;
335
336         ret = gb_control_disconnected_operation(control, cport_id);
337         if (ret) {
338                 dev_warn(&connection->bundle->dev,
339                          "failed to disconnect cport: %d\n", ret);
340         }
341 }
342
343 /*
344  * Request protocol version supported by the module. We don't need to do
345  * this for SVC as that is initiated by the SVC.
346  */
347 static int gb_connection_protocol_get_version(struct gb_connection *connection)
348 {
349         struct gb_protocol *protocol = connection->protocol;
350         int ret;
351
352         if (protocol->flags & GB_PROTOCOL_SKIP_VERSION)
353                 return 0;
354
355         ret = gb_protocol_get_version(connection);
356         if (ret) {
357                 dev_err(&connection->hd->dev,
358                         "%s: failed to get protocol version: %d\n",
359                         connection->name, ret);
360                 return ret;
361         }
362
363         return 0;
364 }
365
366 /*
367  * Cancel all active operations on a connection.
368  *
369  * Locking: Called with connection lock held and state set to DISABLED.
370  */
371 static void gb_connection_cancel_operations(struct gb_connection *connection,
372                                                 int errno)
373 {
374         struct gb_operation *operation;
375
376         while (!list_empty(&connection->operations)) {
377                 operation = list_last_entry(&connection->operations,
378                                                 struct gb_operation, links);
379                 gb_operation_get(operation);
380                 spin_unlock_irq(&connection->lock);
381
382                 if (gb_operation_is_incoming(operation))
383                         gb_operation_cancel_incoming(operation, errno);
384                 else
385                         gb_operation_cancel(operation, errno);
386
387                 gb_operation_put(operation);
388
389                 spin_lock_irq(&connection->lock);
390         }
391 }
392
393 /*
394  * Cancel all active incoming operations on a connection.
395  *
396  * Locking: Called with connection lock held and state set to ENABLED_TX.
397  */
398 static void
399 gb_connection_flush_incoming_operations(struct gb_connection *connection,
400                                                 int errno)
401 {
402         struct gb_operation *operation;
403         bool incoming;
404
405         while (!list_empty(&connection->operations)) {
406                 incoming = false;
407                 list_for_each_entry(operation, &connection->operations,
408                                                                 links) {
409                         if (gb_operation_is_incoming(operation)) {
410                                 gb_operation_get(operation);
411                                 incoming = true;
412                                 break;
413                         }
414                 }
415
416                 if (!incoming)
417                         break;
418
419                 spin_unlock_irq(&connection->lock);
420
421                 /* FIXME: flush, not cancel? */
422                 gb_operation_cancel_incoming(operation, errno);
423                 gb_operation_put(operation);
424
425                 spin_lock_irq(&connection->lock);
426         }
427 }
428
429 int gb_connection_enable(struct gb_connection *connection,
430                                 gb_request_handler_t handler)
431 {
432         int ret;
433
434         mutex_lock(&connection->mutex);
435
436         if (connection->state == GB_CONNECTION_STATE_ENABLED)
437                 goto out_unlock;
438
439         if (connection->state == GB_CONNECTION_STATE_ENABLED_TX) {
440                 if (!handler)
441                         goto out_unlock;
442
443                 spin_lock_irq(&connection->lock);
444                 connection->handler = handler;
445                 connection->state = GB_CONNECTION_STATE_ENABLED;
446                 spin_unlock_irq(&connection->lock);
447
448                 goto out_unlock;
449         }
450
451         ret = gb_connection_hd_cport_enable(connection);
452         if (ret)
453                 goto err_unlock;
454
455         ret = gb_connection_svc_connection_create(connection);
456         if (ret)
457                 goto err_hd_cport_disable;
458
459         spin_lock_irq(&connection->lock);
460         connection->handler = handler;
461         if (handler)
462                 connection->state = GB_CONNECTION_STATE_ENABLED;
463         else
464                 connection->state = GB_CONNECTION_STATE_ENABLED_TX;
465         spin_unlock_irq(&connection->lock);
466
467         ret = gb_connection_control_connected(connection);
468         if (ret)
469                 goto err_svc_destroy;
470
471 out_unlock:
472         mutex_unlock(&connection->mutex);
473
474         return 0;
475
476 err_svc_destroy:
477         spin_lock_irq(&connection->lock);
478         connection->state = GB_CONNECTION_STATE_DISABLED;
479         gb_connection_cancel_operations(connection, -ESHUTDOWN);
480         connection->handler = NULL;
481         spin_unlock_irq(&connection->lock);
482
483         gb_connection_svc_connection_destroy(connection);
484 err_hd_cport_disable:
485         gb_connection_hd_cport_disable(connection);
486 err_unlock:
487         mutex_unlock(&connection->mutex);
488
489         return ret;
490 }
491 EXPORT_SYMBOL_GPL(gb_connection_enable);
492
493 void gb_connection_disable_rx(struct gb_connection *connection)
494 {
495         mutex_lock(&connection->mutex);
496
497         spin_lock_irq(&connection->lock);
498         if (connection->state != GB_CONNECTION_STATE_ENABLED) {
499                 spin_unlock_irq(&connection->lock);
500                 goto out_unlock;
501         }
502         connection->state = GB_CONNECTION_STATE_ENABLED_TX;
503         gb_connection_flush_incoming_operations(connection, -ESHUTDOWN);
504         connection->handler = NULL;
505         spin_unlock_irq(&connection->lock);
506
507 out_unlock:
508         mutex_unlock(&connection->mutex);
509 }
510
511 void gb_connection_disable(struct gb_connection *connection)
512 {
513         mutex_lock(&connection->mutex);
514
515         if (connection->state == GB_CONNECTION_STATE_DISABLED)
516                 goto out_unlock;
517
518         gb_connection_control_disconnected(connection);
519
520         spin_lock_irq(&connection->lock);
521         connection->state = GB_CONNECTION_STATE_DISABLED;
522         gb_connection_cancel_operations(connection, -ESHUTDOWN);
523         connection->handler = NULL;
524         spin_unlock_irq(&connection->lock);
525
526         gb_connection_svc_connection_destroy(connection);
527         gb_connection_hd_cport_disable(connection);
528
529 out_unlock:
530         mutex_unlock(&connection->mutex);
531 }
532 EXPORT_SYMBOL_GPL(gb_connection_disable);
533
534 static int gb_legacy_request_handler(struct gb_operation *operation)
535 {
536         struct gb_protocol *protocol = operation->connection->protocol;
537
538         return protocol->request_recv(operation->type, operation);
539 }
540
541 int gb_connection_legacy_init(struct gb_connection *connection)
542 {
543         gb_request_handler_t handler;
544         int ret;
545
546         ret = gb_connection_bind_protocol(connection);
547         if (ret)
548                 return ret;
549
550         if (connection->protocol->request_recv)
551                 handler = gb_legacy_request_handler;
552         else
553                 handler = NULL;
554
555         ret = gb_connection_enable(connection, handler);
556         if (ret)
557                 goto err_unbind_protocol;
558
559         ret = gb_connection_protocol_get_version(connection);
560         if (ret)
561                 goto err_disable;
562
563         ret = connection->protocol->connection_init(connection);
564         if (ret)
565                 goto err_disable;
566
567         return 0;
568
569 err_disable:
570         gb_connection_disable(connection);
571 err_unbind_protocol:
572         gb_connection_unbind_protocol(connection);
573
574         return ret;
575 }
576 EXPORT_SYMBOL_GPL(gb_connection_legacy_init);
577
578 void gb_connection_legacy_exit(struct gb_connection *connection)
579 {
580         if (connection->state == GB_CONNECTION_STATE_DISABLED)
581                 return;
582
583         gb_connection_disable(connection);
584
585         connection->protocol->connection_exit(connection);
586
587         gb_connection_unbind_protocol(connection);
588 }
589 EXPORT_SYMBOL_GPL(gb_connection_legacy_exit);
590
591 /*
592  * Tear down a previously set up connection.
593  */
594 void gb_connection_destroy(struct gb_connection *connection)
595 {
596         struct ida *id_map;
597
598         if (WARN_ON(!connection))
599                 return;
600
601         spin_lock_irq(&gb_connections_lock);
602         list_del(&connection->bundle_links);
603         list_del(&connection->hd_links);
604         spin_unlock_irq(&gb_connections_lock);
605
606         id_map = &connection->hd->cport_id_map;
607         ida_simple_remove(id_map, connection->hd_cport_id);
608         connection->hd_cport_id = CPORT_ID_BAD;
609
610         kref_put_mutex(&connection->kref, gb_connection_kref_release,
611                        &connection_mutex);
612 }
613
614 void gb_connection_latency_tag_enable(struct gb_connection *connection)
615 {
616         struct gb_host_device *hd = connection->hd;
617         int ret;
618
619         if (!hd->driver->latency_tag_enable)
620                 return;
621
622         ret = hd->driver->latency_tag_enable(hd, connection->hd_cport_id);
623         if (ret) {
624                 dev_err(&connection->hd->dev,
625                         "%s: failed to enable latency tag: %d\n",
626                         connection->name, ret);
627         }
628 }
629 EXPORT_SYMBOL_GPL(gb_connection_latency_tag_enable);
630
631 void gb_connection_latency_tag_disable(struct gb_connection *connection)
632 {
633         struct gb_host_device *hd = connection->hd;
634         int ret;
635
636         if (!hd->driver->latency_tag_disable)
637                 return;
638
639         ret = hd->driver->latency_tag_disable(hd, connection->hd_cport_id);
640         if (ret) {
641                 dev_err(&connection->hd->dev,
642                         "%s: failed to disable latency tag: %d\n",
643                         connection->name, ret);
644         }
645 }
646 EXPORT_SYMBOL_GPL(gb_connection_latency_tag_disable);
647
648 static int gb_connection_bind_protocol(struct gb_connection *connection)
649 {
650         struct gb_protocol *protocol;
651
652         protocol = gb_protocol_get(connection->protocol_id,
653                                    connection->major,
654                                    connection->minor);
655         if (!protocol) {
656                 dev_err(&connection->hd->dev,
657                                 "protocol 0x%02x version %u.%u not found\n",
658                                 connection->protocol_id,
659                                 connection->major, connection->minor);
660                 return -EPROTONOSUPPORT;
661         }
662         connection->protocol = protocol;
663
664         return 0;
665 }
666
667 static void gb_connection_unbind_protocol(struct gb_connection *connection)
668 {
669         struct gb_protocol *protocol = connection->protocol;
670
671         gb_protocol_put(protocol);
672
673         connection->protocol = NULL;
674 }