1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright (c) 2014-2016, NVIDIA CORPORATION.  All rights reserved.
4  */
5 
6 #include <linux/delay.h>
7 #include <linux/io.h>
8 #include <linux/mailbox_client.h>
9 #include <linux/module.h>
10 #include <linux/of.h>
11 #include <linux/of_device.h>
12 #include <linux/phy/phy.h>
13 #include <linux/phy/tegra/xusb.h>
14 #include <linux/platform_device.h>
15 #include <linux/regulator/consumer.h>
16 #include <linux/reset.h>
17 #include <linux/slab.h>
18 #include <linux/workqueue.h>
19 
20 #include <soc/tegra/fuse.h>
21 
22 #include "xusb.h"
23 
tegra_xusb_pad_of_xlate(struct device *dev, struct of_phandle_args *args)24 static struct phy *tegra_xusb_pad_of_xlate(struct device *dev,
25 					   struct of_phandle_args *args)
26 {
27 	struct tegra_xusb_pad *pad = dev_get_drvdata(dev);
28 	struct phy *phy = NULL;
29 	unsigned int i;
30 
31 	if (args->args_count != 0)
32 		return ERR_PTR(-EINVAL);
33 
34 	for (i = 0; i < pad->soc->num_lanes; i++) {
35 		if (!pad->lanes[i])
36 			continue;
37 
38 		if (pad->lanes[i]->dev.of_node == args->np) {
39 			phy = pad->lanes[i];
40 			break;
41 		}
42 	}
43 
44 	if (phy == NULL)
45 		phy = ERR_PTR(-ENODEV);
46 
47 	return phy;
48 }
49 
50 static const struct of_device_id tegra_xusb_padctl_of_match[] = {
51 #if defined(CONFIG_ARCH_TEGRA_124_SOC) || defined(CONFIG_ARCH_TEGRA_132_SOC)
52 	{
53 		.compatible = "nvidia,tegra124-xusb-padctl",
54 		.data = &tegra124_xusb_padctl_soc,
55 	},
56 #endif
57 #if defined(CONFIG_ARCH_TEGRA_210_SOC)
58 	{
59 		.compatible = "nvidia,tegra210-xusb-padctl",
60 		.data = &tegra210_xusb_padctl_soc,
61 	},
62 #endif
63 #if defined(CONFIG_ARCH_TEGRA_186_SOC)
64 	{
65 		.compatible = "nvidia,tegra186-xusb-padctl",
66 		.data = &tegra186_xusb_padctl_soc,
67 	},
68 #endif
69 #if defined(CONFIG_ARCH_TEGRA_194_SOC)
70 	{
71 		.compatible = "nvidia,tegra194-xusb-padctl",
72 		.data = &tegra194_xusb_padctl_soc,
73 	},
74 #endif
75 	{ }
76 };
77 MODULE_DEVICE_TABLE(of, tegra_xusb_padctl_of_match);
78 
79 static struct device_node *
tegra_xusb_find_pad_node(struct tegra_xusb_padctl *padctl, const char *name)80 tegra_xusb_find_pad_node(struct tegra_xusb_padctl *padctl, const char *name)
81 {
82 	struct device_node *pads, *np;
83 
84 	pads = of_get_child_by_name(padctl->dev->of_node, "pads");
85 	if (!pads)
86 		return NULL;
87 
88 	np = of_get_child_by_name(pads, name);
89 	of_node_put(pads);
90 
91 	return np;
92 }
93 
94 static struct device_node *
tegra_xusb_pad_find_phy_node(struct tegra_xusb_pad *pad, unsigned int index)95 tegra_xusb_pad_find_phy_node(struct tegra_xusb_pad *pad, unsigned int index)
96 {
97 	struct device_node *np, *lanes;
98 
99 	lanes = of_get_child_by_name(pad->dev.of_node, "lanes");
100 	if (!lanes)
101 		return NULL;
102 
103 	np = of_get_child_by_name(lanes, pad->soc->lanes[index].name);
104 	of_node_put(lanes);
105 
106 	return np;
107 }
108 
tegra_xusb_lane_parse_dt(struct tegra_xusb_lane *lane, struct device_node *np)109 int tegra_xusb_lane_parse_dt(struct tegra_xusb_lane *lane,
110 			     struct device_node *np)
111 {
112 	struct device *dev = &lane->pad->dev;
113 	const char *function;
114 	int err;
115 
116 	err = of_property_read_string(np, "nvidia,function", &function);
117 	if (err < 0)
118 		return err;
119 
120 	err = match_string(lane->soc->funcs, lane->soc->num_funcs, function);
121 	if (err < 0) {
122 		dev_err(dev, "invalid function \"%s\" for lane \"%pOFn\"\n",
123 			function, np);
124 		return err;
125 	}
126 
127 	lane->function = err;
128 
129 	return 0;
130 }
131 
tegra_xusb_lane_destroy(struct phy *phy)132 static void tegra_xusb_lane_destroy(struct phy *phy)
133 {
134 	if (phy) {
135 		struct tegra_xusb_lane *lane = phy_get_drvdata(phy);
136 
137 		lane->pad->ops->remove(lane);
138 		phy_destroy(phy);
139 	}
140 }
141 
tegra_xusb_pad_release(struct device *dev)142 static void tegra_xusb_pad_release(struct device *dev)
143 {
144 	struct tegra_xusb_pad *pad = to_tegra_xusb_pad(dev);
145 
146 	pad->soc->ops->remove(pad);
147 }
148 
149 static struct device_type tegra_xusb_pad_type = {
150 	.release = tegra_xusb_pad_release,
151 };
152 
tegra_xusb_pad_init(struct tegra_xusb_pad *pad, struct tegra_xusb_padctl *padctl, struct device_node *np)153 int tegra_xusb_pad_init(struct tegra_xusb_pad *pad,
154 			struct tegra_xusb_padctl *padctl,
155 			struct device_node *np)
156 {
157 	int err;
158 
159 	device_initialize(&pad->dev);
160 	INIT_LIST_HEAD(&pad->list);
161 	pad->dev.parent = padctl->dev;
162 	pad->dev.type = &tegra_xusb_pad_type;
163 	pad->dev.of_node = np;
164 	pad->padctl = padctl;
165 
166 	err = dev_set_name(&pad->dev, "%s", pad->soc->name);
167 	if (err < 0)
168 		goto unregister;
169 
170 	err = device_add(&pad->dev);
171 	if (err < 0)
172 		goto unregister;
173 
174 	return 0;
175 
176 unregister:
177 	device_unregister(&pad->dev);
178 	return err;
179 }
180 
tegra_xusb_pad_register(struct tegra_xusb_pad *pad, const struct phy_ops *ops)181 int tegra_xusb_pad_register(struct tegra_xusb_pad *pad,
182 			    const struct phy_ops *ops)
183 {
184 	struct device_node *children;
185 	struct phy *lane;
186 	unsigned int i;
187 	int err;
188 
189 	children = of_get_child_by_name(pad->dev.of_node, "lanes");
190 	if (!children)
191 		return -ENODEV;
192 
193 	pad->lanes = devm_kcalloc(&pad->dev, pad->soc->num_lanes, sizeof(lane),
194 				  GFP_KERNEL);
195 	if (!pad->lanes) {
196 		of_node_put(children);
197 		return -ENOMEM;
198 	}
199 
200 	for (i = 0; i < pad->soc->num_lanes; i++) {
201 		struct device_node *np = tegra_xusb_pad_find_phy_node(pad, i);
202 		struct tegra_xusb_lane *lane;
203 
204 		/* skip disabled lanes */
205 		if (!np || !of_device_is_available(np)) {
206 			of_node_put(np);
207 			continue;
208 		}
209 
210 		pad->lanes[i] = phy_create(&pad->dev, np, ops);
211 		if (IS_ERR(pad->lanes[i])) {
212 			err = PTR_ERR(pad->lanes[i]);
213 			of_node_put(np);
214 			goto remove;
215 		}
216 
217 		lane = pad->ops->probe(pad, np, i);
218 		if (IS_ERR(lane)) {
219 			phy_destroy(pad->lanes[i]);
220 			err = PTR_ERR(lane);
221 			goto remove;
222 		}
223 
224 		list_add_tail(&lane->list, &pad->padctl->lanes);
225 		phy_set_drvdata(pad->lanes[i], lane);
226 	}
227 
228 	pad->provider = of_phy_provider_register_full(&pad->dev, children,
229 						      tegra_xusb_pad_of_xlate);
230 	if (IS_ERR(pad->provider)) {
231 		err = PTR_ERR(pad->provider);
232 		goto remove;
233 	}
234 
235 	return 0;
236 
237 remove:
238 	while (i--)
239 		tegra_xusb_lane_destroy(pad->lanes[i]);
240 
241 	of_node_put(children);
242 
243 	return err;
244 }
245 
tegra_xusb_pad_unregister(struct tegra_xusb_pad *pad)246 void tegra_xusb_pad_unregister(struct tegra_xusb_pad *pad)
247 {
248 	unsigned int i = pad->soc->num_lanes;
249 
250 	of_phy_provider_unregister(pad->provider);
251 
252 	while (i--)
253 		tegra_xusb_lane_destroy(pad->lanes[i]);
254 
255 	device_unregister(&pad->dev);
256 }
257 
258 static struct tegra_xusb_pad *
tegra_xusb_pad_create(struct tegra_xusb_padctl *padctl, const struct tegra_xusb_pad_soc *soc)259 tegra_xusb_pad_create(struct tegra_xusb_padctl *padctl,
260 		      const struct tegra_xusb_pad_soc *soc)
261 {
262 	struct tegra_xusb_pad *pad;
263 	struct device_node *np;
264 	int err;
265 
266 	np = tegra_xusb_find_pad_node(padctl, soc->name);
267 	if (!np || !of_device_is_available(np))
268 		return NULL;
269 
270 	pad = soc->ops->probe(padctl, soc, np);
271 	if (IS_ERR(pad)) {
272 		err = PTR_ERR(pad);
273 		dev_err(padctl->dev, "failed to create pad %s: %d\n",
274 			soc->name, err);
275 		return ERR_PTR(err);
276 	}
277 
278 	/* XXX move this into ->probe() to avoid string comparison */
279 	if (strcmp(soc->name, "pcie") == 0)
280 		padctl->pcie = pad;
281 
282 	if (strcmp(soc->name, "sata") == 0)
283 		padctl->sata = pad;
284 
285 	if (strcmp(soc->name, "usb2") == 0)
286 		padctl->usb2 = pad;
287 
288 	if (strcmp(soc->name, "ulpi") == 0)
289 		padctl->ulpi = pad;
290 
291 	if (strcmp(soc->name, "hsic") == 0)
292 		padctl->hsic = pad;
293 
294 	return pad;
295 }
296 
__tegra_xusb_remove_pads(struct tegra_xusb_padctl *padctl)297 static void __tegra_xusb_remove_pads(struct tegra_xusb_padctl *padctl)
298 {
299 	struct tegra_xusb_pad *pad, *tmp;
300 
301 	list_for_each_entry_safe_reverse(pad, tmp, &padctl->pads, list) {
302 		list_del(&pad->list);
303 		tegra_xusb_pad_unregister(pad);
304 	}
305 }
306 
tegra_xusb_remove_pads(struct tegra_xusb_padctl *padctl)307 static void tegra_xusb_remove_pads(struct tegra_xusb_padctl *padctl)
308 {
309 	mutex_lock(&padctl->lock);
310 	__tegra_xusb_remove_pads(padctl);
311 	mutex_unlock(&padctl->lock);
312 }
313 
tegra_xusb_lane_program(struct tegra_xusb_lane *lane)314 static void tegra_xusb_lane_program(struct tegra_xusb_lane *lane)
315 {
316 	struct tegra_xusb_padctl *padctl = lane->pad->padctl;
317 	const struct tegra_xusb_lane_soc *soc = lane->soc;
318 	u32 value;
319 
320 	/* skip single function lanes */
321 	if (soc->num_funcs < 2)
322 		return;
323 
324 	/* choose function */
325 	value = padctl_readl(padctl, soc->offset);
326 	value &= ~(soc->mask << soc->shift);
327 	value |= lane->function << soc->shift;
328 	padctl_writel(padctl, value, soc->offset);
329 }
330 
tegra_xusb_pad_program(struct tegra_xusb_pad *pad)331 static void tegra_xusb_pad_program(struct tegra_xusb_pad *pad)
332 {
333 	unsigned int i;
334 
335 	for (i = 0; i < pad->soc->num_lanes; i++) {
336 		struct tegra_xusb_lane *lane;
337 
338 		if (pad->lanes[i]) {
339 			lane = phy_get_drvdata(pad->lanes[i]);
340 			tegra_xusb_lane_program(lane);
341 		}
342 	}
343 }
344 
tegra_xusb_setup_pads(struct tegra_xusb_padctl *padctl)345 static int tegra_xusb_setup_pads(struct tegra_xusb_padctl *padctl)
346 {
347 	struct tegra_xusb_pad *pad;
348 	unsigned int i;
349 
350 	mutex_lock(&padctl->lock);
351 
352 	for (i = 0; i < padctl->soc->num_pads; i++) {
353 		const struct tegra_xusb_pad_soc *soc = padctl->soc->pads[i];
354 		int err;
355 
356 		pad = tegra_xusb_pad_create(padctl, soc);
357 		if (IS_ERR(pad)) {
358 			err = PTR_ERR(pad);
359 			dev_err(padctl->dev, "failed to create pad %s: %d\n",
360 				soc->name, err);
361 			__tegra_xusb_remove_pads(padctl);
362 			mutex_unlock(&padctl->lock);
363 			return err;
364 		}
365 
366 		if (!pad)
367 			continue;
368 
369 		list_add_tail(&pad->list, &padctl->pads);
370 	}
371 
372 	list_for_each_entry(pad, &padctl->pads, list)
373 		tegra_xusb_pad_program(pad);
374 
375 	mutex_unlock(&padctl->lock);
376 	return 0;
377 }
378 
tegra_xusb_lane_check(struct tegra_xusb_lane *lane, const char *function)379 static bool tegra_xusb_lane_check(struct tegra_xusb_lane *lane,
380 				  const char *function)
381 {
382 	const char *func = lane->soc->funcs[lane->function];
383 
384 	return strcmp(function, func) == 0;
385 }
386 
tegra_xusb_find_lane(struct tegra_xusb_padctl *padctl, const char *type, unsigned int index)387 struct tegra_xusb_lane *tegra_xusb_find_lane(struct tegra_xusb_padctl *padctl,
388 					     const char *type,
389 					     unsigned int index)
390 {
391 	struct tegra_xusb_lane *lane, *hit = ERR_PTR(-ENODEV);
392 	char *name;
393 
394 	name = kasprintf(GFP_KERNEL, "%s-%u", type, index);
395 	if (!name)
396 		return ERR_PTR(-ENOMEM);
397 
398 	list_for_each_entry(lane, &padctl->lanes, list) {
399 		if (strcmp(lane->soc->name, name) == 0) {
400 			hit = lane;
401 			break;
402 		}
403 	}
404 
405 	kfree(name);
406 	return hit;
407 }
408 
409 struct tegra_xusb_lane *
tegra_xusb_port_find_lane(struct tegra_xusb_port *port, const struct tegra_xusb_lane_map *map, const char *function)410 tegra_xusb_port_find_lane(struct tegra_xusb_port *port,
411 			  const struct tegra_xusb_lane_map *map,
412 			  const char *function)
413 {
414 	struct tegra_xusb_lane *lane, *match = ERR_PTR(-ENODEV);
415 
416 	for (; map->type; map++) {
417 		if (port->index != map->port)
418 			continue;
419 
420 		lane = tegra_xusb_find_lane(port->padctl, map->type,
421 					    map->index);
422 		if (IS_ERR(lane))
423 			continue;
424 
425 		if (!tegra_xusb_lane_check(lane, function))
426 			continue;
427 
428 		if (!IS_ERR(match))
429 			dev_err(&port->dev, "conflicting match: %s-%u / %s\n",
430 				map->type, map->index, match->soc->name);
431 		else
432 			match = lane;
433 	}
434 
435 	return match;
436 }
437 
438 static struct device_node *
tegra_xusb_find_port_node(struct tegra_xusb_padctl *padctl, const char *type, unsigned int index)439 tegra_xusb_find_port_node(struct tegra_xusb_padctl *padctl, const char *type,
440 			  unsigned int index)
441 {
442 	struct device_node *ports, *np;
443 	char *name;
444 
445 	ports = of_get_child_by_name(padctl->dev->of_node, "ports");
446 	if (!ports)
447 		return NULL;
448 
449 	name = kasprintf(GFP_KERNEL, "%s-%u", type, index);
450 	if (!name) {
451 		of_node_put(ports);
452 		return NULL;
453 	}
454 	np = of_get_child_by_name(ports, name);
455 	kfree(name);
456 	of_node_put(ports);
457 
458 	return np;
459 }
460 
461 struct tegra_xusb_port *
tegra_xusb_find_port(struct tegra_xusb_padctl *padctl, const char *type, unsigned int index)462 tegra_xusb_find_port(struct tegra_xusb_padctl *padctl, const char *type,
463 		     unsigned int index)
464 {
465 	struct tegra_xusb_port *port;
466 	struct device_node *np;
467 
468 	np = tegra_xusb_find_port_node(padctl, type, index);
469 	if (!np)
470 		return NULL;
471 
472 	list_for_each_entry(port, &padctl->ports, list) {
473 		if (np == port->dev.of_node) {
474 			of_node_put(np);
475 			return port;
476 		}
477 	}
478 
479 	of_node_put(np);
480 
481 	return NULL;
482 }
483 
484 struct tegra_xusb_usb2_port *
tegra_xusb_find_usb2_port(struct tegra_xusb_padctl *padctl, unsigned int index)485 tegra_xusb_find_usb2_port(struct tegra_xusb_padctl *padctl, unsigned int index)
486 {
487 	struct tegra_xusb_port *port;
488 
489 	port = tegra_xusb_find_port(padctl, "usb2", index);
490 	if (port)
491 		return to_usb2_port(port);
492 
493 	return NULL;
494 }
495 
496 struct tegra_xusb_usb3_port *
tegra_xusb_find_usb3_port(struct tegra_xusb_padctl *padctl, unsigned int index)497 tegra_xusb_find_usb3_port(struct tegra_xusb_padctl *padctl, unsigned int index)
498 {
499 	struct tegra_xusb_port *port;
500 
501 	port = tegra_xusb_find_port(padctl, "usb3", index);
502 	if (port)
503 		return to_usb3_port(port);
504 
505 	return NULL;
506 }
507 
tegra_xusb_port_release(struct device *dev)508 static void tegra_xusb_port_release(struct device *dev)
509 {
510 	struct tegra_xusb_port *port = to_tegra_xusb_port(dev);
511 
512 	if (port->ops->release)
513 		port->ops->release(port);
514 }
515 
516 static struct device_type tegra_xusb_port_type = {
517 	.release = tegra_xusb_port_release,
518 };
519 
tegra_xusb_port_init(struct tegra_xusb_port *port, struct tegra_xusb_padctl *padctl, struct device_node *np, const char *name, unsigned int index)520 static int tegra_xusb_port_init(struct tegra_xusb_port *port,
521 				struct tegra_xusb_padctl *padctl,
522 				struct device_node *np,
523 				const char *name,
524 				unsigned int index)
525 {
526 	int err;
527 
528 	INIT_LIST_HEAD(&port->list);
529 	port->padctl = padctl;
530 	port->index = index;
531 
532 	device_initialize(&port->dev);
533 	port->dev.type = &tegra_xusb_port_type;
534 	port->dev.of_node = of_node_get(np);
535 	port->dev.parent = padctl->dev;
536 
537 	err = dev_set_name(&port->dev, "%s-%u", name, index);
538 	if (err < 0)
539 		goto unregister;
540 
541 	err = device_add(&port->dev);
542 	if (err < 0)
543 		goto unregister;
544 
545 	return 0;
546 
547 unregister:
548 	device_unregister(&port->dev);
549 	return err;
550 }
551 
tegra_xusb_port_unregister(struct tegra_xusb_port *port)552 static void tegra_xusb_port_unregister(struct tegra_xusb_port *port)
553 {
554 	if (!IS_ERR_OR_NULL(port->usb_role_sw)) {
555 		of_platform_depopulate(&port->dev);
556 		usb_role_switch_unregister(port->usb_role_sw);
557 		cancel_work_sync(&port->usb_phy_work);
558 		usb_remove_phy(&port->usb_phy);
559 		port->usb_phy.dev->driver = NULL;
560 	}
561 
562 	if (port->ops->remove)
563 		port->ops->remove(port);
564 
565 	device_unregister(&port->dev);
566 }
567 
568 static const char *const modes[] = {
569 	[USB_DR_MODE_UNKNOWN] = "",
570 	[USB_DR_MODE_HOST] = "host",
571 	[USB_DR_MODE_PERIPHERAL] = "peripheral",
572 	[USB_DR_MODE_OTG] = "otg",
573 };
574 
575 static const char * const usb_roles[] = {
576 	[USB_ROLE_NONE]		= "none",
577 	[USB_ROLE_HOST]		= "host",
578 	[USB_ROLE_DEVICE]	= "device",
579 };
580 
to_usb_phy_event(enum usb_role role)581 static enum usb_phy_events to_usb_phy_event(enum usb_role role)
582 {
583 	switch (role) {
584 	case USB_ROLE_DEVICE:
585 		return USB_EVENT_VBUS;
586 
587 	case USB_ROLE_HOST:
588 		return USB_EVENT_ID;
589 
590 	default:
591 		return USB_EVENT_NONE;
592 	}
593 }
594 
tegra_xusb_usb_phy_work(struct work_struct *work)595 static void tegra_xusb_usb_phy_work(struct work_struct *work)
596 {
597 	struct tegra_xusb_port *port = container_of(work,
598 						    struct tegra_xusb_port,
599 						    usb_phy_work);
600 	enum usb_role role = usb_role_switch_get_role(port->usb_role_sw);
601 
602 	usb_phy_set_event(&port->usb_phy, to_usb_phy_event(role));
603 
604 	dev_dbg(&port->dev, "%s(): calling notifier for role %s\n", __func__,
605 		usb_roles[role]);
606 
607 	atomic_notifier_call_chain(&port->usb_phy.notifier, 0, &port->usb_phy);
608 }
609 
tegra_xusb_role_sw_set(struct usb_role_switch *sw, enum usb_role role)610 static int tegra_xusb_role_sw_set(struct usb_role_switch *sw,
611 				  enum usb_role role)
612 {
613 	struct tegra_xusb_port *port = usb_role_switch_get_drvdata(sw);
614 
615 	dev_dbg(&port->dev, "%s(): role %s\n", __func__, usb_roles[role]);
616 
617 	schedule_work(&port->usb_phy_work);
618 
619 	return 0;
620 }
621 
tegra_xusb_set_peripheral(struct usb_otg *otg, struct usb_gadget *gadget)622 static int tegra_xusb_set_peripheral(struct usb_otg *otg,
623 				     struct usb_gadget *gadget)
624 {
625 	struct tegra_xusb_port *port = container_of(otg->usb_phy,
626 						    struct tegra_xusb_port,
627 						    usb_phy);
628 
629 	if (gadget != NULL)
630 		schedule_work(&port->usb_phy_work);
631 
632 	return 0;
633 }
634 
tegra_xusb_set_host(struct usb_otg *otg, struct usb_bus *host)635 static int tegra_xusb_set_host(struct usb_otg *otg, struct usb_bus *host)
636 {
637 	struct tegra_xusb_port *port = container_of(otg->usb_phy,
638 						    struct tegra_xusb_port,
639 						    usb_phy);
640 
641 	if (host != NULL)
642 		schedule_work(&port->usb_phy_work);
643 
644 	return 0;
645 }
646 
647 
tegra_xusb_setup_usb_role_switch(struct tegra_xusb_port *port)648 static int tegra_xusb_setup_usb_role_switch(struct tegra_xusb_port *port)
649 {
650 	struct tegra_xusb_lane *lane;
651 	struct usb_role_switch_desc role_sx_desc = {
652 		.fwnode = dev_fwnode(&port->dev),
653 		.set = tegra_xusb_role_sw_set,
654 	};
655 	int err = 0;
656 
657 	/*
658 	 * USB role switch driver needs parent driver owner info. This is a
659 	 * suboptimal solution. TODO: Need to revisit this in a follow-up patch
660 	 * where an optimal solution is possible with changes to USB role
661 	 * switch driver.
662 	 */
663 	port->dev.driver = devm_kzalloc(&port->dev,
664 					sizeof(struct device_driver),
665 					GFP_KERNEL);
666 	if (!port->dev.driver)
667 		return -ENOMEM;
668 
669 	port->dev.driver->owner	 = THIS_MODULE;
670 
671 	port->usb_role_sw = usb_role_switch_register(&port->dev,
672 						     &role_sx_desc);
673 	if (IS_ERR(port->usb_role_sw)) {
674 		err = PTR_ERR(port->usb_role_sw);
675 		dev_err(&port->dev, "failed to register USB role switch: %d",
676 			err);
677 		return err;
678 	}
679 
680 	INIT_WORK(&port->usb_phy_work, tegra_xusb_usb_phy_work);
681 	usb_role_switch_set_drvdata(port->usb_role_sw, port);
682 
683 	port->usb_phy.otg = devm_kzalloc(&port->dev, sizeof(struct usb_otg),
684 					 GFP_KERNEL);
685 	if (!port->usb_phy.otg)
686 		return -ENOMEM;
687 
688 	lane = tegra_xusb_find_lane(port->padctl, "usb2", port->index);
689 
690 	/*
691 	 * Assign phy dev to usb-phy dev. Host/device drivers can use phy
692 	 * reference to retrieve usb-phy details.
693 	 */
694 	port->usb_phy.dev = &lane->pad->lanes[port->index]->dev;
695 	port->usb_phy.dev->driver = port->dev.driver;
696 	port->usb_phy.otg->usb_phy = &port->usb_phy;
697 	port->usb_phy.otg->set_peripheral = tegra_xusb_set_peripheral;
698 	port->usb_phy.otg->set_host = tegra_xusb_set_host;
699 
700 	err = usb_add_phy_dev(&port->usb_phy);
701 	if (err < 0) {
702 		dev_err(&port->dev, "Failed to add USB PHY: %d\n", err);
703 		return err;
704 	}
705 
706 	/* populate connector entry */
707 	of_platform_populate(port->dev.of_node, NULL, NULL, &port->dev);
708 
709 	return err;
710 }
711 
tegra_xusb_usb2_port_parse_dt(struct tegra_xusb_usb2_port *usb2)712 static int tegra_xusb_usb2_port_parse_dt(struct tegra_xusb_usb2_port *usb2)
713 {
714 	struct tegra_xusb_port *port = &usb2->base;
715 	struct device_node *np = port->dev.of_node;
716 	const char *mode;
717 	int err;
718 
719 	usb2->internal = of_property_read_bool(np, "nvidia,internal");
720 
721 	if (!of_property_read_string(np, "mode", &mode)) {
722 		int err = match_string(modes, ARRAY_SIZE(modes), mode);
723 		if (err < 0) {
724 			dev_err(&port->dev, "invalid value %s for \"mode\"\n",
725 				mode);
726 			usb2->mode = USB_DR_MODE_UNKNOWN;
727 		} else {
728 			usb2->mode = err;
729 		}
730 	} else {
731 		usb2->mode = USB_DR_MODE_HOST;
732 	}
733 
734 	/* usb-role-switch property is mandatory for OTG/Peripheral modes */
735 	if (usb2->mode == USB_DR_MODE_PERIPHERAL ||
736 	    usb2->mode == USB_DR_MODE_OTG) {
737 		if (of_property_read_bool(np, "usb-role-switch")) {
738 			err = tegra_xusb_setup_usb_role_switch(port);
739 			if (err < 0)
740 				return err;
741 		} else {
742 			dev_err(&port->dev, "usb-role-switch not found for %s mode",
743 				modes[usb2->mode]);
744 			return -EINVAL;
745 		}
746 	}
747 
748 	usb2->supply = regulator_get(&port->dev, "vbus");
749 	return PTR_ERR_OR_ZERO(usb2->supply);
750 }
751 
tegra_xusb_add_usb2_port(struct tegra_xusb_padctl *padctl, unsigned int index)752 static int tegra_xusb_add_usb2_port(struct tegra_xusb_padctl *padctl,
753 				    unsigned int index)
754 {
755 	struct tegra_xusb_usb2_port *usb2;
756 	struct device_node *np;
757 	int err = 0;
758 
759 	/*
760 	 * USB2 ports don't require additional properties, but if the port is
761 	 * marked as disabled there is no reason to register it.
762 	 */
763 	np = tegra_xusb_find_port_node(padctl, "usb2", index);
764 	if (!np || !of_device_is_available(np))
765 		goto out;
766 
767 	usb2 = kzalloc(sizeof(*usb2), GFP_KERNEL);
768 	if (!usb2) {
769 		err = -ENOMEM;
770 		goto out;
771 	}
772 
773 	err = tegra_xusb_port_init(&usb2->base, padctl, np, "usb2", index);
774 	if (err < 0)
775 		goto out;
776 
777 	usb2->base.ops = padctl->soc->ports.usb2.ops;
778 
779 	usb2->base.lane = usb2->base.ops->map(&usb2->base);
780 	if (IS_ERR(usb2->base.lane)) {
781 		err = PTR_ERR(usb2->base.lane);
782 		tegra_xusb_port_unregister(&usb2->base);
783 		goto out;
784 	}
785 
786 	err = tegra_xusb_usb2_port_parse_dt(usb2);
787 	if (err < 0) {
788 		tegra_xusb_port_unregister(&usb2->base);
789 		goto out;
790 	}
791 
792 	list_add_tail(&usb2->base.list, &padctl->ports);
793 
794 out:
795 	of_node_put(np);
796 	return err;
797 }
798 
tegra_xusb_usb2_port_release(struct tegra_xusb_port *port)799 void tegra_xusb_usb2_port_release(struct tegra_xusb_port *port)
800 {
801 	struct tegra_xusb_usb2_port *usb2 = to_usb2_port(port);
802 
803 	kfree(usb2);
804 }
805 
tegra_xusb_usb2_port_remove(struct tegra_xusb_port *port)806 void tegra_xusb_usb2_port_remove(struct tegra_xusb_port *port)
807 {
808 	struct tegra_xusb_usb2_port *usb2 = to_usb2_port(port);
809 
810 	regulator_put(usb2->supply);
811 }
812 
tegra_xusb_ulpi_port_parse_dt(struct tegra_xusb_ulpi_port *ulpi)813 static int tegra_xusb_ulpi_port_parse_dt(struct tegra_xusb_ulpi_port *ulpi)
814 {
815 	struct tegra_xusb_port *port = &ulpi->base;
816 	struct device_node *np = port->dev.of_node;
817 
818 	ulpi->internal = of_property_read_bool(np, "nvidia,internal");
819 
820 	return 0;
821 }
822 
tegra_xusb_add_ulpi_port(struct tegra_xusb_padctl *padctl, unsigned int index)823 static int tegra_xusb_add_ulpi_port(struct tegra_xusb_padctl *padctl,
824 				    unsigned int index)
825 {
826 	struct tegra_xusb_ulpi_port *ulpi;
827 	struct device_node *np;
828 	int err = 0;
829 
830 	np = tegra_xusb_find_port_node(padctl, "ulpi", index);
831 	if (!np || !of_device_is_available(np))
832 		goto out;
833 
834 	ulpi = kzalloc(sizeof(*ulpi), GFP_KERNEL);
835 	if (!ulpi) {
836 		err = -ENOMEM;
837 		goto out;
838 	}
839 
840 	err = tegra_xusb_port_init(&ulpi->base, padctl, np, "ulpi", index);
841 	if (err < 0)
842 		goto out;
843 
844 	ulpi->base.ops = padctl->soc->ports.ulpi.ops;
845 
846 	ulpi->base.lane = ulpi->base.ops->map(&ulpi->base);
847 	if (IS_ERR(ulpi->base.lane)) {
848 		err = PTR_ERR(ulpi->base.lane);
849 		tegra_xusb_port_unregister(&ulpi->base);
850 		goto out;
851 	}
852 
853 	err = tegra_xusb_ulpi_port_parse_dt(ulpi);
854 	if (err < 0) {
855 		tegra_xusb_port_unregister(&ulpi->base);
856 		goto out;
857 	}
858 
859 	list_add_tail(&ulpi->base.list, &padctl->ports);
860 
861 out:
862 	of_node_put(np);
863 	return err;
864 }
865 
tegra_xusb_ulpi_port_release(struct tegra_xusb_port *port)866 void tegra_xusb_ulpi_port_release(struct tegra_xusb_port *port)
867 {
868 	struct tegra_xusb_ulpi_port *ulpi = to_ulpi_port(port);
869 
870 	kfree(ulpi);
871 }
872 
tegra_xusb_hsic_port_parse_dt(struct tegra_xusb_hsic_port *hsic)873 static int tegra_xusb_hsic_port_parse_dt(struct tegra_xusb_hsic_port *hsic)
874 {
875 	/* XXX */
876 	return 0;
877 }
878 
tegra_xusb_add_hsic_port(struct tegra_xusb_padctl *padctl, unsigned int index)879 static int tegra_xusb_add_hsic_port(struct tegra_xusb_padctl *padctl,
880 				    unsigned int index)
881 {
882 	struct tegra_xusb_hsic_port *hsic;
883 	struct device_node *np;
884 	int err = 0;
885 
886 	np = tegra_xusb_find_port_node(padctl, "hsic", index);
887 	if (!np || !of_device_is_available(np))
888 		goto out;
889 
890 	hsic = kzalloc(sizeof(*hsic), GFP_KERNEL);
891 	if (!hsic) {
892 		err = -ENOMEM;
893 		goto out;
894 	}
895 
896 	err = tegra_xusb_port_init(&hsic->base, padctl, np, "hsic", index);
897 	if (err < 0)
898 		goto out;
899 
900 	hsic->base.ops = padctl->soc->ports.hsic.ops;
901 
902 	hsic->base.lane = hsic->base.ops->map(&hsic->base);
903 	if (IS_ERR(hsic->base.lane)) {
904 		err = PTR_ERR(hsic->base.lane);
905 		goto out;
906 	}
907 
908 	err = tegra_xusb_hsic_port_parse_dt(hsic);
909 	if (err < 0) {
910 		tegra_xusb_port_unregister(&hsic->base);
911 		goto out;
912 	}
913 
914 	list_add_tail(&hsic->base.list, &padctl->ports);
915 
916 out:
917 	of_node_put(np);
918 	return err;
919 }
920 
tegra_xusb_hsic_port_release(struct tegra_xusb_port *port)921 void tegra_xusb_hsic_port_release(struct tegra_xusb_port *port)
922 {
923 	struct tegra_xusb_hsic_port *hsic = to_hsic_port(port);
924 
925 	kfree(hsic);
926 }
927 
tegra_xusb_usb3_port_parse_dt(struct tegra_xusb_usb3_port *usb3)928 static int tegra_xusb_usb3_port_parse_dt(struct tegra_xusb_usb3_port *usb3)
929 {
930 	struct tegra_xusb_port *port = &usb3->base;
931 	struct device_node *np = port->dev.of_node;
932 	enum usb_device_speed maximum_speed;
933 	u32 value;
934 	int err;
935 
936 	err = of_property_read_u32(np, "nvidia,usb2-companion", &value);
937 	if (err < 0) {
938 		dev_err(&port->dev, "failed to read port: %d\n", err);
939 		return err;
940 	}
941 
942 	usb3->port = value;
943 
944 	usb3->internal = of_property_read_bool(np, "nvidia,internal");
945 
946 	if (device_property_present(&port->dev, "maximum-speed")) {
947 		maximum_speed =  usb_get_maximum_speed(&port->dev);
948 		if (maximum_speed == USB_SPEED_SUPER)
949 			usb3->disable_gen2 = true;
950 		else if (maximum_speed == USB_SPEED_SUPER_PLUS)
951 			usb3->disable_gen2 = false;
952 		else
953 			return -EINVAL;
954 	}
955 
956 	usb3->supply = regulator_get(&port->dev, "vbus");
957 	return PTR_ERR_OR_ZERO(usb3->supply);
958 }
959 
tegra_xusb_add_usb3_port(struct tegra_xusb_padctl *padctl, unsigned int index)960 static int tegra_xusb_add_usb3_port(struct tegra_xusb_padctl *padctl,
961 				    unsigned int index)
962 {
963 	struct tegra_xusb_usb3_port *usb3;
964 	struct device_node *np;
965 	int err = 0;
966 
967 	/*
968 	 * If there is no supplemental configuration in the device tree the
969 	 * port is unusable. But it is valid to configure only a single port,
970 	 * hence return 0 instead of an error to allow ports to be optional.
971 	 */
972 	np = tegra_xusb_find_port_node(padctl, "usb3", index);
973 	if (!np || !of_device_is_available(np))
974 		goto out;
975 
976 	usb3 = kzalloc(sizeof(*usb3), GFP_KERNEL);
977 	if (!usb3) {
978 		err = -ENOMEM;
979 		goto out;
980 	}
981 
982 	err = tegra_xusb_port_init(&usb3->base, padctl, np, "usb3", index);
983 	if (err < 0)
984 		goto out;
985 
986 	usb3->base.ops = padctl->soc->ports.usb3.ops;
987 
988 	usb3->base.lane = usb3->base.ops->map(&usb3->base);
989 	if (IS_ERR(usb3->base.lane)) {
990 		err = PTR_ERR(usb3->base.lane);
991 		goto out;
992 	}
993 
994 	err = tegra_xusb_usb3_port_parse_dt(usb3);
995 	if (err < 0) {
996 		tegra_xusb_port_unregister(&usb3->base);
997 		goto out;
998 	}
999 
1000 	list_add_tail(&usb3->base.list, &padctl->ports);
1001 
1002 out:
1003 	of_node_put(np);
1004 	return err;
1005 }
1006 
tegra_xusb_usb3_port_release(struct tegra_xusb_port *port)1007 void tegra_xusb_usb3_port_release(struct tegra_xusb_port *port)
1008 {
1009 	struct tegra_xusb_usb3_port *usb3 = to_usb3_port(port);
1010 
1011 	kfree(usb3);
1012 }
1013 
tegra_xusb_usb3_port_remove(struct tegra_xusb_port *port)1014 void tegra_xusb_usb3_port_remove(struct tegra_xusb_port *port)
1015 {
1016 	struct tegra_xusb_usb3_port *usb3 = to_usb3_port(port);
1017 
1018 	regulator_put(usb3->supply);
1019 }
1020 
__tegra_xusb_remove_ports(struct tegra_xusb_padctl *padctl)1021 static void __tegra_xusb_remove_ports(struct tegra_xusb_padctl *padctl)
1022 {
1023 	struct tegra_xusb_port *port, *tmp;
1024 
1025 	list_for_each_entry_safe_reverse(port, tmp, &padctl->ports, list) {
1026 		list_del(&port->list);
1027 		tegra_xusb_port_unregister(port);
1028 	}
1029 }
1030 
tegra_xusb_find_unused_usb3_port(struct tegra_xusb_padctl *padctl)1031 static int tegra_xusb_find_unused_usb3_port(struct tegra_xusb_padctl *padctl)
1032 {
1033 	struct device_node *np;
1034 	unsigned int i;
1035 
1036 	for (i = 0; i < padctl->soc->ports.usb3.count; i++) {
1037 		np = tegra_xusb_find_port_node(padctl, "usb3", i);
1038 		if (!np || !of_device_is_available(np))
1039 			return i;
1040 	}
1041 
1042 	return -ENODEV;
1043 }
1044 
tegra_xusb_port_is_companion(struct tegra_xusb_usb2_port *usb2)1045 static bool tegra_xusb_port_is_companion(struct tegra_xusb_usb2_port *usb2)
1046 {
1047 	unsigned int i;
1048 	struct tegra_xusb_usb3_port *usb3;
1049 	struct tegra_xusb_padctl *padctl = usb2->base.padctl;
1050 
1051 	for (i = 0; i < padctl->soc->ports.usb3.count; i++) {
1052 		usb3 = tegra_xusb_find_usb3_port(padctl, i);
1053 		if (usb3 && usb3->port == usb2->base.index)
1054 			return true;
1055 	}
1056 
1057 	return false;
1058 }
1059 
tegra_xusb_update_usb3_fake_port(struct tegra_xusb_usb2_port *usb2)1060 static int tegra_xusb_update_usb3_fake_port(struct tegra_xusb_usb2_port *usb2)
1061 {
1062 	int fake;
1063 
1064 	/* Disable usb3_port_fake usage by default and assign if needed */
1065 	usb2->usb3_port_fake = -1;
1066 
1067 	if ((usb2->mode == USB_DR_MODE_OTG ||
1068 	     usb2->mode == USB_DR_MODE_PERIPHERAL) &&
1069 		!tegra_xusb_port_is_companion(usb2)) {
1070 		fake = tegra_xusb_find_unused_usb3_port(usb2->base.padctl);
1071 		if (fake < 0) {
1072 			dev_err(&usb2->base.dev, "no unused USB3 ports available\n");
1073 			return -ENODEV;
1074 		}
1075 
1076 		dev_dbg(&usb2->base.dev, "Found unused usb3 port: %d\n", fake);
1077 		usb2->usb3_port_fake = fake;
1078 	}
1079 
1080 	return 0;
1081 }
1082 
tegra_xusb_setup_ports(struct tegra_xusb_padctl *padctl)1083 static int tegra_xusb_setup_ports(struct tegra_xusb_padctl *padctl)
1084 {
1085 	struct tegra_xusb_port *port;
1086 	struct tegra_xusb_usb2_port *usb2;
1087 	unsigned int i;
1088 	int err = 0;
1089 
1090 	mutex_lock(&padctl->lock);
1091 
1092 	for (i = 0; i < padctl->soc->ports.usb2.count; i++) {
1093 		err = tegra_xusb_add_usb2_port(padctl, i);
1094 		if (err < 0)
1095 			goto remove_ports;
1096 	}
1097 
1098 	for (i = 0; i < padctl->soc->ports.ulpi.count; i++) {
1099 		err = tegra_xusb_add_ulpi_port(padctl, i);
1100 		if (err < 0)
1101 			goto remove_ports;
1102 	}
1103 
1104 	for (i = 0; i < padctl->soc->ports.hsic.count; i++) {
1105 		err = tegra_xusb_add_hsic_port(padctl, i);
1106 		if (err < 0)
1107 			goto remove_ports;
1108 	}
1109 
1110 	for (i = 0; i < padctl->soc->ports.usb3.count; i++) {
1111 		err = tegra_xusb_add_usb3_port(padctl, i);
1112 		if (err < 0)
1113 			goto remove_ports;
1114 	}
1115 
1116 	if (padctl->soc->need_fake_usb3_port) {
1117 		for (i = 0; i < padctl->soc->ports.usb2.count; i++) {
1118 			usb2 = tegra_xusb_find_usb2_port(padctl, i);
1119 			if (!usb2)
1120 				continue;
1121 
1122 			err = tegra_xusb_update_usb3_fake_port(usb2);
1123 			if (err < 0)
1124 				goto remove_ports;
1125 		}
1126 	}
1127 
1128 	list_for_each_entry(port, &padctl->ports, list) {
1129 		err = port->ops->enable(port);
1130 		if (err < 0)
1131 			dev_err(padctl->dev, "failed to enable port %s: %d\n",
1132 				dev_name(&port->dev), err);
1133 	}
1134 
1135 	goto unlock;
1136 
1137 remove_ports:
1138 	__tegra_xusb_remove_ports(padctl);
1139 unlock:
1140 	mutex_unlock(&padctl->lock);
1141 	return err;
1142 }
1143 
tegra_xusb_remove_ports(struct tegra_xusb_padctl *padctl)1144 static void tegra_xusb_remove_ports(struct tegra_xusb_padctl *padctl)
1145 {
1146 	mutex_lock(&padctl->lock);
1147 	__tegra_xusb_remove_ports(padctl);
1148 	mutex_unlock(&padctl->lock);
1149 }
1150 
tegra_xusb_padctl_probe(struct platform_device *pdev)1151 static int tegra_xusb_padctl_probe(struct platform_device *pdev)
1152 {
1153 	struct device_node *np = pdev->dev.of_node;
1154 	const struct tegra_xusb_padctl_soc *soc;
1155 	struct tegra_xusb_padctl *padctl;
1156 	const struct of_device_id *match;
1157 	struct resource *res;
1158 	int err;
1159 
1160 	/* for backwards compatibility with old device trees */
1161 	np = of_get_child_by_name(np, "pads");
1162 	if (!np) {
1163 		dev_warn(&pdev->dev, "deprecated DT, using legacy driver\n");
1164 		return tegra_xusb_padctl_legacy_probe(pdev);
1165 	}
1166 
1167 	of_node_put(np);
1168 
1169 	match = of_match_node(tegra_xusb_padctl_of_match, pdev->dev.of_node);
1170 	soc = match->data;
1171 
1172 	padctl = soc->ops->probe(&pdev->dev, soc);
1173 	if (IS_ERR(padctl))
1174 		return PTR_ERR(padctl);
1175 
1176 	platform_set_drvdata(pdev, padctl);
1177 	INIT_LIST_HEAD(&padctl->ports);
1178 	INIT_LIST_HEAD(&padctl->lanes);
1179 	INIT_LIST_HEAD(&padctl->pads);
1180 	mutex_init(&padctl->lock);
1181 
1182 	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1183 	padctl->regs = devm_ioremap_resource(&pdev->dev, res);
1184 	if (IS_ERR(padctl->regs)) {
1185 		err = PTR_ERR(padctl->regs);
1186 		goto remove;
1187 	}
1188 
1189 	padctl->rst = devm_reset_control_get(&pdev->dev, NULL);
1190 	if (IS_ERR(padctl->rst)) {
1191 		err = PTR_ERR(padctl->rst);
1192 		goto remove;
1193 	}
1194 
1195 	padctl->supplies = devm_kcalloc(&pdev->dev, padctl->soc->num_supplies,
1196 					sizeof(*padctl->supplies), GFP_KERNEL);
1197 	if (!padctl->supplies) {
1198 		err = -ENOMEM;
1199 		goto remove;
1200 	}
1201 
1202 	regulator_bulk_set_supply_names(padctl->supplies,
1203 					padctl->soc->supply_names,
1204 					padctl->soc->num_supplies);
1205 
1206 	err = devm_regulator_bulk_get(&pdev->dev, padctl->soc->num_supplies,
1207 				      padctl->supplies);
1208 	if (err < 0) {
1209 		dev_err(&pdev->dev, "failed to get regulators: %d\n", err);
1210 		goto remove;
1211 	}
1212 
1213 	err = reset_control_deassert(padctl->rst);
1214 	if (err < 0)
1215 		goto remove;
1216 
1217 	err = regulator_bulk_enable(padctl->soc->num_supplies,
1218 				    padctl->supplies);
1219 	if (err < 0) {
1220 		dev_err(&pdev->dev, "failed to enable supplies: %d\n", err);
1221 		goto reset;
1222 	}
1223 
1224 	err = tegra_xusb_setup_pads(padctl);
1225 	if (err < 0) {
1226 		dev_err(&pdev->dev, "failed to setup pads: %d\n", err);
1227 		goto power_down;
1228 	}
1229 
1230 	err = tegra_xusb_setup_ports(padctl);
1231 	if (err) {
1232 		const char *level = KERN_ERR;
1233 
1234 		if (err == -EPROBE_DEFER)
1235 			level = KERN_DEBUG;
1236 
1237 		dev_printk(level, &pdev->dev,
1238 			   dev_fmt("failed to setup XUSB ports: %d\n"), err);
1239 		goto remove_pads;
1240 	}
1241 
1242 	return 0;
1243 
1244 remove_pads:
1245 	tegra_xusb_remove_pads(padctl);
1246 power_down:
1247 	regulator_bulk_disable(padctl->soc->num_supplies, padctl->supplies);
1248 reset:
1249 	reset_control_assert(padctl->rst);
1250 remove:
1251 	platform_set_drvdata(pdev, NULL);
1252 	soc->ops->remove(padctl);
1253 	return err;
1254 }
1255 
tegra_xusb_padctl_remove(struct platform_device *pdev)1256 static int tegra_xusb_padctl_remove(struct platform_device *pdev)
1257 {
1258 	struct tegra_xusb_padctl *padctl = platform_get_drvdata(pdev);
1259 	int err;
1260 
1261 	tegra_xusb_remove_ports(padctl);
1262 	tegra_xusb_remove_pads(padctl);
1263 
1264 	err = regulator_bulk_disable(padctl->soc->num_supplies,
1265 				     padctl->supplies);
1266 	if (err < 0)
1267 		dev_err(&pdev->dev, "failed to disable supplies: %d\n", err);
1268 
1269 	err = reset_control_assert(padctl->rst);
1270 	if (err < 0)
1271 		dev_err(&pdev->dev, "failed to assert reset: %d\n", err);
1272 
1273 	padctl->soc->ops->remove(padctl);
1274 
1275 	return err;
1276 }
1277 
1278 static struct platform_driver tegra_xusb_padctl_driver = {
1279 	.driver = {
1280 		.name = "tegra-xusb-padctl",
1281 		.of_match_table = tegra_xusb_padctl_of_match,
1282 	},
1283 	.probe = tegra_xusb_padctl_probe,
1284 	.remove = tegra_xusb_padctl_remove,
1285 };
1286 module_platform_driver(tegra_xusb_padctl_driver);
1287 
tegra_xusb_padctl_get(struct device *dev)1288 struct tegra_xusb_padctl *tegra_xusb_padctl_get(struct device *dev)
1289 {
1290 	struct tegra_xusb_padctl *padctl;
1291 	struct platform_device *pdev;
1292 	struct device_node *np;
1293 
1294 	np = of_parse_phandle(dev->of_node, "nvidia,xusb-padctl", 0);
1295 	if (!np)
1296 		return ERR_PTR(-EINVAL);
1297 
1298 	/*
1299 	 * This is slightly ugly. A better implementation would be to keep a
1300 	 * registry of pad controllers, but since there will almost certainly
1301 	 * only ever be one per SoC that would be a little overkill.
1302 	 */
1303 	pdev = of_find_device_by_node(np);
1304 	if (!pdev) {
1305 		of_node_put(np);
1306 		return ERR_PTR(-ENODEV);
1307 	}
1308 
1309 	of_node_put(np);
1310 
1311 	padctl = platform_get_drvdata(pdev);
1312 	if (!padctl) {
1313 		put_device(&pdev->dev);
1314 		return ERR_PTR(-EPROBE_DEFER);
1315 	}
1316 
1317 	return padctl;
1318 }
1319 EXPORT_SYMBOL_GPL(tegra_xusb_padctl_get);
1320 
tegra_xusb_padctl_put(struct tegra_xusb_padctl *padctl)1321 void tegra_xusb_padctl_put(struct tegra_xusb_padctl *padctl)
1322 {
1323 	if (padctl)
1324 		put_device(padctl->dev);
1325 }
1326 EXPORT_SYMBOL_GPL(tegra_xusb_padctl_put);
1327 
tegra_xusb_padctl_usb3_save_context(struct tegra_xusb_padctl *padctl, unsigned int port)1328 int tegra_xusb_padctl_usb3_save_context(struct tegra_xusb_padctl *padctl,
1329 					unsigned int port)
1330 {
1331 	if (padctl->soc->ops->usb3_save_context)
1332 		return padctl->soc->ops->usb3_save_context(padctl, port);
1333 
1334 	return -ENOSYS;
1335 }
1336 EXPORT_SYMBOL_GPL(tegra_xusb_padctl_usb3_save_context);
1337 
tegra_xusb_padctl_hsic_set_idle(struct tegra_xusb_padctl *padctl, unsigned int port, bool idle)1338 int tegra_xusb_padctl_hsic_set_idle(struct tegra_xusb_padctl *padctl,
1339 				    unsigned int port, bool idle)
1340 {
1341 	if (padctl->soc->ops->hsic_set_idle)
1342 		return padctl->soc->ops->hsic_set_idle(padctl, port, idle);
1343 
1344 	return -ENOSYS;
1345 }
1346 EXPORT_SYMBOL_GPL(tegra_xusb_padctl_hsic_set_idle);
1347 
tegra_xusb_padctl_usb3_set_lfps_detect(struct tegra_xusb_padctl *padctl, unsigned int port, bool enable)1348 int tegra_xusb_padctl_usb3_set_lfps_detect(struct tegra_xusb_padctl *padctl,
1349 					   unsigned int port, bool enable)
1350 {
1351 	if (padctl->soc->ops->usb3_set_lfps_detect)
1352 		return padctl->soc->ops->usb3_set_lfps_detect(padctl, port,
1353 							      enable);
1354 
1355 	return -ENOSYS;
1356 }
1357 EXPORT_SYMBOL_GPL(tegra_xusb_padctl_usb3_set_lfps_detect);
1358 
tegra_xusb_padctl_set_vbus_override(struct tegra_xusb_padctl *padctl, bool val)1359 int tegra_xusb_padctl_set_vbus_override(struct tegra_xusb_padctl *padctl,
1360 							bool val)
1361 {
1362 	if (padctl->soc->ops->vbus_override)
1363 		return padctl->soc->ops->vbus_override(padctl, val);
1364 
1365 	return -ENOTSUPP;
1366 }
1367 EXPORT_SYMBOL_GPL(tegra_xusb_padctl_set_vbus_override);
1368 
tegra_phy_xusb_utmi_port_reset(struct phy *phy)1369 int tegra_phy_xusb_utmi_port_reset(struct phy *phy)
1370 {
1371 	struct tegra_xusb_lane *lane = phy_get_drvdata(phy);
1372 	struct tegra_xusb_padctl *padctl = lane->pad->padctl;
1373 
1374 	if (padctl->soc->ops->utmi_port_reset)
1375 		return padctl->soc->ops->utmi_port_reset(phy);
1376 
1377 	return -ENOTSUPP;
1378 }
1379 EXPORT_SYMBOL_GPL(tegra_phy_xusb_utmi_port_reset);
1380 
tegra_xusb_padctl_get_usb3_companion(struct tegra_xusb_padctl *padctl, unsigned int port)1381 int tegra_xusb_padctl_get_usb3_companion(struct tegra_xusb_padctl *padctl,
1382 				    unsigned int port)
1383 {
1384 	struct tegra_xusb_usb2_port *usb2;
1385 	struct tegra_xusb_usb3_port *usb3;
1386 	int i;
1387 
1388 	usb2 = tegra_xusb_find_usb2_port(padctl, port);
1389 	if (!usb2)
1390 		return -EINVAL;
1391 
1392 	for (i = 0; i < padctl->soc->ports.usb3.count; i++) {
1393 		usb3 = tegra_xusb_find_usb3_port(padctl, i);
1394 		if (usb3 && usb3->port == usb2->base.index)
1395 			return usb3->base.index;
1396 	}
1397 
1398 	return -ENODEV;
1399 }
1400 EXPORT_SYMBOL_GPL(tegra_xusb_padctl_get_usb3_companion);
1401 
1402 MODULE_AUTHOR("Thierry Reding <treding@nvidia.com>");
1403 MODULE_DESCRIPTION("Tegra XUSB Pad Controller driver");
1404 MODULE_LICENSE("GPL v2");
1405