1 // SPDX-License-Identifier: GPL-2.0
2 /**
3 * USB Typec-C DisplayPort Alternate Mode driver
4 *
5 * Copyright (C) 2018 Intel Corporation
6 * Author: Heikki Krogerus <heikki.krogerus@linux.intel.com>
7 *
8 * DisplayPort is trademark of VESA (www.vesa.org)
9 */
10
11 #include <linux/delay.h>
12 #include <linux/mutex.h>
13 #include <linux/module.h>
14 #include <linux/usb/pd_vdo.h>
15 #include <linux/usb/typec_dp.h>
16
17 #define DP_HEADER(cmd) (VDO(USB_TYPEC_DP_SID, 1, cmd) | \
18 VDO_OPOS(USB_TYPEC_DP_MODE))
19
20 enum {
21 DP_CONF_USB,
22 DP_CONF_DFP_D,
23 DP_CONF_UFP_D,
24 DP_CONF_DUAL_D,
25 };
26
27 /* Helper for setting/getting the pin assignement value to the configuration */
28 #define DP_CONF_SET_PIN_ASSIGN(_a_) ((_a_) << 8)
29 #define DP_CONF_GET_PIN_ASSIGN(_conf_) (((_conf_) & GENMASK(15, 8)) >> 8)
30
31 /* Pin assignments that use USB3.1 Gen2 signaling to carry DP protocol */
32 #define DP_PIN_ASSIGN_GEN2_BR_MASK (BIT(DP_PIN_ASSIGN_A) | \
33 BIT(DP_PIN_ASSIGN_B))
34
35 /* Pin assignments that use DP v1.3 signaling to carry DP protocol */
36 #define DP_PIN_ASSIGN_DP_BR_MASK (BIT(DP_PIN_ASSIGN_C) | \
37 BIT(DP_PIN_ASSIGN_D) | \
38 BIT(DP_PIN_ASSIGN_E) | \
39 BIT(DP_PIN_ASSIGN_F))
40
41 /* DP only pin assignments */
42 #define DP_PIN_ASSIGN_DP_ONLY_MASK (BIT(DP_PIN_ASSIGN_A) | \
43 BIT(DP_PIN_ASSIGN_C) | \
44 BIT(DP_PIN_ASSIGN_E))
45
46 /* Pin assignments where one channel is for USB */
47 #define DP_PIN_ASSIGN_MULTI_FUNC_MASK (BIT(DP_PIN_ASSIGN_B) | \
48 BIT(DP_PIN_ASSIGN_D) | \
49 BIT(DP_PIN_ASSIGN_F))
50
51 enum dp_state {
52 DP_STATE_IDLE,
53 DP_STATE_ENTER,
54 DP_STATE_UPDATE,
55 DP_STATE_CONFIGURE,
56 DP_STATE_EXIT,
57 };
58
59 struct dp_altmode {
60 struct typec_displayport_data data;
61
62 enum dp_state state;
63
64 struct mutex lock; /* device lock */
65 struct work_struct work;
66 struct typec_altmode *alt;
67 const struct typec_altmode *port;
68 };
69
dp_altmode_notify(struct dp_altmode * dp)70 static int dp_altmode_notify(struct dp_altmode *dp)
71 {
72 u8 state = get_count_order(DP_CONF_GET_PIN_ASSIGN(dp->data.conf));
73
74 return typec_altmode_notify(dp->alt, TYPEC_MODAL_STATE(state),
75 &dp->data);
76 }
77
dp_altmode_configure(struct dp_altmode * dp,u8 con)78 static int dp_altmode_configure(struct dp_altmode *dp, u8 con)
79 {
80 u32 conf = DP_CONF_SIGNALING_DP; /* Only DP signaling supported */
81 u8 pin_assign = 0;
82
83 switch (con) {
84 case DP_STATUS_CON_DISABLED:
85 return 0;
86 case DP_STATUS_CON_DFP_D:
87 conf |= DP_CONF_UFP_U_AS_DFP_D;
88 pin_assign = DP_CAP_UFP_D_PIN_ASSIGN(dp->alt->vdo) &
89 DP_CAP_DFP_D_PIN_ASSIGN(dp->port->vdo);
90 break;
91 case DP_STATUS_CON_UFP_D:
92 case DP_STATUS_CON_BOTH: /* NOTE: First acting as DP source */
93 conf |= DP_CONF_UFP_U_AS_UFP_D;
94 pin_assign = DP_CAP_DFP_D_PIN_ASSIGN(dp->alt->vdo) &
95 DP_CAP_UFP_D_PIN_ASSIGN(dp->port->vdo);
96 break;
97 default:
98 break;
99 }
100
101 /* Determining the initial pin assignment. */
102 if (!DP_CONF_GET_PIN_ASSIGN(dp->data.conf)) {
103 /* Is USB together with DP preferred */
104 if (dp->data.status & DP_STATUS_PREFER_MULTI_FUNC &&
105 pin_assign & DP_PIN_ASSIGN_MULTI_FUNC_MASK)
106 pin_assign &= DP_PIN_ASSIGN_MULTI_FUNC_MASK;
107 else
108 pin_assign &= DP_PIN_ASSIGN_DP_ONLY_MASK;
109
110 if (!pin_assign)
111 return -EINVAL;
112
113 conf |= DP_CONF_SET_PIN_ASSIGN(pin_assign);
114 }
115
116 dp->data.conf = conf;
117
118 return 0;
119 }
120
dp_altmode_status_update(struct dp_altmode * dp)121 static int dp_altmode_status_update(struct dp_altmode *dp)
122 {
123 bool configured = !!DP_CONF_GET_PIN_ASSIGN(dp->data.conf);
124 u8 con = DP_STATUS_CONNECTION(dp->data.status);
125 int ret = 0;
126
127 if (configured && (dp->data.status & DP_STATUS_SWITCH_TO_USB)) {
128 dp->data.conf = 0;
129 dp->state = DP_STATE_CONFIGURE;
130 } else if (dp->data.status & DP_STATUS_EXIT_DP_MODE) {
131 dp->state = DP_STATE_EXIT;
132 } else if (!(con & DP_CONF_CURRENTLY(dp->data.conf))) {
133 ret = dp_altmode_configure(dp, con);
134 if (!ret)
135 dp->state = DP_STATE_CONFIGURE;
136 }
137
138 return ret;
139 }
140
dp_altmode_configured(struct dp_altmode * dp)141 static int dp_altmode_configured(struct dp_altmode *dp)
142 {
143 int ret;
144
145 sysfs_notify(&dp->alt->dev.kobj, "displayport", "configuration");
146
147 if (!dp->data.conf)
148 return typec_altmode_notify(dp->alt, TYPEC_STATE_USB,
149 &dp->data);
150
151 ret = dp_altmode_notify(dp);
152 if (ret)
153 return ret;
154
155 sysfs_notify(&dp->alt->dev.kobj, "displayport", "pin_assignment");
156
157 return 0;
158 }
159
dp_altmode_configure_vdm(struct dp_altmode * dp,u32 conf)160 static int dp_altmode_configure_vdm(struct dp_altmode *dp, u32 conf)
161 {
162 u32 header = DP_HEADER(DP_CMD_CONFIGURE);
163 int ret;
164
165 ret = typec_altmode_notify(dp->alt, TYPEC_STATE_SAFE, &dp->data);
166 if (ret) {
167 dev_err(&dp->alt->dev,
168 "unable to put to connector to safe mode\n");
169 return ret;
170 }
171
172 ret = typec_altmode_vdm(dp->alt, header, &conf, 2);
173 if (ret) {
174 if (DP_CONF_GET_PIN_ASSIGN(dp->data.conf))
175 dp_altmode_notify(dp);
176 else
177 typec_altmode_notify(dp->alt, TYPEC_STATE_USB,
178 &dp->data);
179 }
180
181 return ret;
182 }
183
dp_altmode_work(struct work_struct * work)184 static void dp_altmode_work(struct work_struct *work)
185 {
186 struct dp_altmode *dp = container_of(work, struct dp_altmode, work);
187 u32 header;
188 u32 vdo;
189 int ret;
190
191 mutex_lock(&dp->lock);
192
193 switch (dp->state) {
194 case DP_STATE_ENTER:
195 ret = typec_altmode_enter(dp->alt);
196 if (ret)
197 dev_err(&dp->alt->dev, "failed to enter mode\n");
198 break;
199 case DP_STATE_UPDATE:
200 header = DP_HEADER(DP_CMD_STATUS_UPDATE);
201 vdo = 1;
202 ret = typec_altmode_vdm(dp->alt, header, &vdo, 2);
203 if (ret)
204 dev_err(&dp->alt->dev,
205 "unable to send Status Update command (%d)\n",
206 ret);
207 break;
208 case DP_STATE_CONFIGURE:
209 ret = dp_altmode_configure_vdm(dp, dp->data.conf);
210 if (ret)
211 dev_err(&dp->alt->dev,
212 "unable to send Configure command (%d)\n", ret);
213 break;
214 case DP_STATE_EXIT:
215 if (typec_altmode_exit(dp->alt))
216 dev_err(&dp->alt->dev, "Exit Mode Failed!\n");
217 break;
218 default:
219 break;
220 }
221
222 dp->state = DP_STATE_IDLE;
223
224 mutex_unlock(&dp->lock);
225 }
226
dp_altmode_attention(struct typec_altmode * alt,const u32 vdo)227 static void dp_altmode_attention(struct typec_altmode *alt, const u32 vdo)
228 {
229 struct dp_altmode *dp = typec_altmode_get_drvdata(alt);
230 u8 old_state;
231
232 mutex_lock(&dp->lock);
233
234 old_state = dp->state;
235 dp->data.status = vdo;
236
237 if (old_state != DP_STATE_IDLE)
238 dev_warn(&alt->dev, "ATTENTION while processing state %d\n",
239 old_state);
240
241 if (dp_altmode_status_update(dp))
242 dev_warn(&alt->dev, "%s: status update failed\n", __func__);
243
244 if (dp_altmode_notify(dp))
245 dev_err(&alt->dev, "%s: notification failed\n", __func__);
246
247 if (old_state == DP_STATE_IDLE && dp->state != DP_STATE_IDLE)
248 schedule_work(&dp->work);
249
250 mutex_unlock(&dp->lock);
251 }
252
dp_altmode_vdm(struct typec_altmode * alt,const u32 hdr,const u32 * vdo,int count)253 static int dp_altmode_vdm(struct typec_altmode *alt,
254 const u32 hdr, const u32 *vdo, int count)
255 {
256 struct dp_altmode *dp = typec_altmode_get_drvdata(alt);
257 int cmd_type = PD_VDO_CMDT(hdr);
258 int cmd = PD_VDO_CMD(hdr);
259 int ret = 0;
260
261 mutex_lock(&dp->lock);
262
263 if (dp->state != DP_STATE_IDLE) {
264 ret = -EBUSY;
265 goto err_unlock;
266 }
267
268 switch (cmd_type) {
269 case CMDT_RSP_ACK:
270 switch (cmd) {
271 case CMD_ENTER_MODE:
272 dp->state = DP_STATE_UPDATE;
273 break;
274 case CMD_EXIT_MODE:
275 dp->data.status = 0;
276 dp->data.conf = 0;
277 break;
278 case DP_CMD_STATUS_UPDATE:
279 dp->data.status = *vdo;
280 ret = dp_altmode_status_update(dp);
281 break;
282 case DP_CMD_CONFIGURE:
283 ret = dp_altmode_configured(dp);
284 break;
285 default:
286 break;
287 }
288 break;
289 case CMDT_RSP_NAK:
290 switch (cmd) {
291 case DP_CMD_CONFIGURE:
292 dp->data.conf = 0;
293 ret = dp_altmode_configured(dp);
294 break;
295 default:
296 break;
297 }
298 break;
299 default:
300 break;
301 }
302
303 if (dp->state != DP_STATE_IDLE)
304 schedule_work(&dp->work);
305
306 err_unlock:
307 mutex_unlock(&dp->lock);
308 return ret;
309 }
310
dp_altmode_activate(struct typec_altmode * alt,int activate)311 static int dp_altmode_activate(struct typec_altmode *alt, int activate)
312 {
313 return activate ? typec_altmode_enter(alt) : typec_altmode_exit(alt);
314 }
315
316 static const struct typec_altmode_ops dp_altmode_ops = {
317 .attention = dp_altmode_attention,
318 .vdm = dp_altmode_vdm,
319 .activate = dp_altmode_activate,
320 };
321
322 static const char * const configurations[] = {
323 [DP_CONF_USB] = "USB",
324 [DP_CONF_DFP_D] = "source",
325 [DP_CONF_UFP_D] = "sink",
326 };
327
328 static ssize_t
configuration_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)329 configuration_store(struct device *dev, struct device_attribute *attr,
330 const char *buf, size_t size)
331 {
332 struct dp_altmode *dp = dev_get_drvdata(dev);
333 u32 conf;
334 u32 cap;
335 int con;
336 int ret = 0;
337
338 con = sysfs_match_string(configurations, buf);
339 if (con < 0)
340 return con;
341
342 mutex_lock(&dp->lock);
343
344 if (dp->state != DP_STATE_IDLE) {
345 ret = -EBUSY;
346 goto err_unlock;
347 }
348
349 cap = DP_CAP_CAPABILITY(dp->alt->vdo);
350
351 if ((con == DP_CONF_DFP_D && !(cap & DP_CAP_DFP_D)) ||
352 (con == DP_CONF_UFP_D && !(cap & DP_CAP_UFP_D))) {
353 ret = -EINVAL;
354 goto err_unlock;
355 }
356
357 conf = dp->data.conf & ~DP_CONF_DUAL_D;
358 conf |= con;
359
360 if (dp->alt->active) {
361 ret = dp_altmode_configure_vdm(dp, conf);
362 if (ret)
363 goto err_unlock;
364 }
365
366 dp->data.conf = conf;
367
368 err_unlock:
369 mutex_unlock(&dp->lock);
370
371 return ret ? ret : size;
372 }
373
configuration_show(struct device * dev,struct device_attribute * attr,char * buf)374 static ssize_t configuration_show(struct device *dev,
375 struct device_attribute *attr, char *buf)
376 {
377 struct dp_altmode *dp = dev_get_drvdata(dev);
378 int len;
379 u8 cap;
380 u8 cur;
381 int i;
382
383 mutex_lock(&dp->lock);
384
385 cap = DP_CAP_CAPABILITY(dp->alt->vdo);
386 cur = DP_CONF_CURRENTLY(dp->data.conf);
387
388 len = sprintf(buf, "%s ", cur ? "USB" : "[USB]");
389
390 for (i = 1; i < ARRAY_SIZE(configurations); i++) {
391 if (i == cur)
392 len += sprintf(buf + len, "[%s] ", configurations[i]);
393 else if ((i == DP_CONF_DFP_D && cap & DP_CAP_DFP_D) ||
394 (i == DP_CONF_UFP_D && cap & DP_CAP_UFP_D))
395 len += sprintf(buf + len, "%s ", configurations[i]);
396 }
397
398 mutex_unlock(&dp->lock);
399
400 buf[len - 1] = '\n';
401 return len;
402 }
403 static DEVICE_ATTR_RW(configuration);
404
405 static const char * const pin_assignments[] = {
406 [DP_PIN_ASSIGN_A] = "A",
407 [DP_PIN_ASSIGN_B] = "B",
408 [DP_PIN_ASSIGN_C] = "C",
409 [DP_PIN_ASSIGN_D] = "D",
410 [DP_PIN_ASSIGN_E] = "E",
411 [DP_PIN_ASSIGN_F] = "F",
412 };
413
414 static ssize_t
pin_assignment_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)415 pin_assignment_store(struct device *dev, struct device_attribute *attr,
416 const char *buf, size_t size)
417 {
418 struct dp_altmode *dp = dev_get_drvdata(dev);
419 u8 assignments;
420 u32 conf;
421 int ret;
422
423 ret = sysfs_match_string(pin_assignments, buf);
424 if (ret < 0)
425 return ret;
426
427 conf = DP_CONF_SET_PIN_ASSIGN(BIT(ret));
428 ret = 0;
429
430 mutex_lock(&dp->lock);
431
432 if (conf & dp->data.conf)
433 goto out_unlock;
434
435 if (dp->state != DP_STATE_IDLE) {
436 ret = -EBUSY;
437 goto out_unlock;
438 }
439
440 if (DP_CONF_CURRENTLY(dp->data.conf) == DP_CONF_DFP_D)
441 assignments = DP_CAP_UFP_D_PIN_ASSIGN(dp->alt->vdo);
442 else
443 assignments = DP_CAP_DFP_D_PIN_ASSIGN(dp->alt->vdo);
444
445 if (!(DP_CONF_GET_PIN_ASSIGN(conf) & assignments)) {
446 ret = -EINVAL;
447 goto out_unlock;
448 }
449
450 conf |= dp->data.conf & ~DP_CONF_PIN_ASSIGNEMENT_MASK;
451
452 /* Only send Configure command if a configuration has been set */
453 if (dp->alt->active && DP_CONF_CURRENTLY(dp->data.conf)) {
454 ret = dp_altmode_configure_vdm(dp, conf);
455 if (ret)
456 goto out_unlock;
457 }
458
459 dp->data.conf = conf;
460
461 out_unlock:
462 mutex_unlock(&dp->lock);
463
464 return ret ? ret : size;
465 }
466
pin_assignment_show(struct device * dev,struct device_attribute * attr,char * buf)467 static ssize_t pin_assignment_show(struct device *dev,
468 struct device_attribute *attr, char *buf)
469 {
470 struct dp_altmode *dp = dev_get_drvdata(dev);
471 u8 assignments;
472 int len = 0;
473 u8 cur;
474 int i;
475
476 mutex_lock(&dp->lock);
477
478 cur = get_count_order(DP_CONF_GET_PIN_ASSIGN(dp->data.conf));
479
480 if (DP_CONF_CURRENTLY(dp->data.conf) == DP_CONF_DFP_D)
481 assignments = DP_CAP_UFP_D_PIN_ASSIGN(dp->alt->vdo);
482 else
483 assignments = DP_CAP_DFP_D_PIN_ASSIGN(dp->alt->vdo);
484
485 for (i = 0; assignments; assignments >>= 1, i++) {
486 if (assignments & 1) {
487 if (i == cur)
488 len += sprintf(buf + len, "[%s] ",
489 pin_assignments[i]);
490 else
491 len += sprintf(buf + len, "%s ",
492 pin_assignments[i]);
493 }
494 }
495
496 mutex_unlock(&dp->lock);
497
498 buf[len - 1] = '\n';
499 return len;
500 }
501 static DEVICE_ATTR_RW(pin_assignment);
502
503 static struct attribute *dp_altmode_attrs[] = {
504 &dev_attr_configuration.attr,
505 &dev_attr_pin_assignment.attr,
506 NULL
507 };
508
509 static const struct attribute_group dp_altmode_group = {
510 .name = "displayport",
511 .attrs = dp_altmode_attrs,
512 };
513
dp_altmode_probe(struct typec_altmode * alt)514 static int dp_altmode_probe(struct typec_altmode *alt)
515 {
516 const struct typec_altmode *port = typec_altmode_get_partner(alt);
517 struct dp_altmode *dp;
518 int ret;
519
520 /* FIXME: Port can only be DFP_U. */
521
522 /* Make sure we have compatiple pin configurations */
523 if (!(DP_CAP_DFP_D_PIN_ASSIGN(port->vdo) &
524 DP_CAP_UFP_D_PIN_ASSIGN(alt->vdo)) &&
525 !(DP_CAP_UFP_D_PIN_ASSIGN(port->vdo) &
526 DP_CAP_DFP_D_PIN_ASSIGN(alt->vdo)))
527 return -ENODEV;
528
529 ret = sysfs_create_group(&alt->dev.kobj, &dp_altmode_group);
530 if (ret)
531 return ret;
532
533 dp = devm_kzalloc(&alt->dev, sizeof(*dp), GFP_KERNEL);
534 if (!dp)
535 return -ENOMEM;
536
537 INIT_WORK(&dp->work, dp_altmode_work);
538 mutex_init(&dp->lock);
539 dp->port = port;
540 dp->alt = alt;
541
542 alt->desc = "DisplayPort";
543 alt->ops = &dp_altmode_ops;
544
545 typec_altmode_set_drvdata(alt, dp);
546
547 dp->state = DP_STATE_ENTER;
548 schedule_work(&dp->work);
549
550 return 0;
551 }
552
dp_altmode_remove(struct typec_altmode * alt)553 static void dp_altmode_remove(struct typec_altmode *alt)
554 {
555 struct dp_altmode *dp = typec_altmode_get_drvdata(alt);
556
557 sysfs_remove_group(&alt->dev.kobj, &dp_altmode_group);
558 cancel_work_sync(&dp->work);
559 }
560
561 static const struct typec_device_id dp_typec_id[] = {
562 { USB_TYPEC_DP_SID, USB_TYPEC_DP_MODE },
563 { },
564 };
565 MODULE_DEVICE_TABLE(typec, dp_typec_id);
566
567 static struct typec_altmode_driver dp_altmode_driver = {
568 .id_table = dp_typec_id,
569 .probe = dp_altmode_probe,
570 .remove = dp_altmode_remove,
571 .driver = {
572 .name = "typec_displayport",
573 .owner = THIS_MODULE,
574 },
575 };
576 module_typec_altmode_driver(dp_altmode_driver);
577
578 MODULE_AUTHOR("Heikki Krogerus <heikki.krogerus@linux.intel.com>");
579 MODULE_LICENSE("GPL v2");
580 MODULE_DESCRIPTION("DisplayPort Alternate Mode");
581