Merge branch 'topic/docs-next' into v4l_for_linus
[sfrench/cifs-2.6.git] / drivers / phy / phy-sun4i-usb.c
1 /*
2  * Allwinner sun4i USB phy driver
3  *
4  * Copyright (C) 2014-2015 Hans de Goede <hdegoede@redhat.com>
5  *
6  * Based on code from
7  * Allwinner Technology Co., Ltd. <www.allwinnertech.com>
8  *
9  * Modelled after: Samsung S5P/EXYNOS SoC series MIPI CSIS/DSIM DPHY driver
10  * Copyright (C) 2013 Samsung Electronics Co., Ltd.
11  * Author: Sylwester Nawrocki <s.nawrocki@samsung.com>
12  *
13  * This program is free software; you can redistribute it and/or modify
14  * it under the terms of the GNU General Public License as published by
15  * the Free Software Foundation; either version 2 of the License, or
16  * (at your option) any later version.
17  *
18  * This program is distributed in the hope that it will be useful,
19  * but WITHOUT ANY WARRANTY; without even the implied warranty of
20  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
21  * GNU General Public License for more details.
22  */
23
24 #include <linux/clk.h>
25 #include <linux/delay.h>
26 #include <linux/err.h>
27 #include <linux/extcon.h>
28 #include <linux/io.h>
29 #include <linux/interrupt.h>
30 #include <linux/kernel.h>
31 #include <linux/module.h>
32 #include <linux/mutex.h>
33 #include <linux/of.h>
34 #include <linux/of_address.h>
35 #include <linux/of_device.h>
36 #include <linux/of_gpio.h>
37 #include <linux/phy/phy.h>
38 #include <linux/phy/phy-sun4i-usb.h>
39 #include <linux/platform_device.h>
40 #include <linux/power_supply.h>
41 #include <linux/regulator/consumer.h>
42 #include <linux/reset.h>
43 #include <linux/workqueue.h>
44
45 #define REG_ISCR                        0x00
46 #define REG_PHYCTL_A10                  0x04
47 #define REG_PHYBIST                     0x08
48 #define REG_PHYTUNE                     0x0c
49 #define REG_PHYCTL_A33                  0x10
50 #define REG_PHY_UNK_H3                  0x20
51
52 #define REG_PMU_UNK_H3                  0x10
53
54 #define PHYCTL_DATA                     BIT(7)
55
56 #define SUNXI_AHB_ICHR8_EN              BIT(10)
57 #define SUNXI_AHB_INCR4_BURST_EN        BIT(9)
58 #define SUNXI_AHB_INCRX_ALIGN_EN        BIT(8)
59 #define SUNXI_ULPI_BYPASS_EN            BIT(0)
60
61 /* ISCR, Interface Status and Control bits */
62 #define ISCR_ID_PULLUP_EN               (1 << 17)
63 #define ISCR_DPDM_PULLUP_EN     (1 << 16)
64 /* sunxi has the phy id/vbus pins not connected, so we use the force bits */
65 #define ISCR_FORCE_ID_MASK      (3 << 14)
66 #define ISCR_FORCE_ID_LOW               (2 << 14)
67 #define ISCR_FORCE_ID_HIGH      (3 << 14)
68 #define ISCR_FORCE_VBUS_MASK    (3 << 12)
69 #define ISCR_FORCE_VBUS_LOW     (2 << 12)
70 #define ISCR_FORCE_VBUS_HIGH    (3 << 12)
71
72 /* Common Control Bits for Both PHYs */
73 #define PHY_PLL_BW                      0x03
74 #define PHY_RES45_CAL_EN                0x0c
75
76 /* Private Control Bits for Each PHY */
77 #define PHY_TX_AMPLITUDE_TUNE           0x20
78 #define PHY_TX_SLEWRATE_TUNE            0x22
79 #define PHY_VBUSVALID_TH_SEL            0x25
80 #define PHY_PULLUP_RES_SEL              0x27
81 #define PHY_OTG_FUNC_EN                 0x28
82 #define PHY_VBUS_DET_EN                 0x29
83 #define PHY_DISCON_TH_SEL               0x2a
84 #define PHY_SQUELCH_DETECT              0x3c
85
86 #define MAX_PHYS                        4
87
88 /*
89  * Note do not raise the debounce time, we must report Vusb high within 100ms
90  * otherwise we get Vbus errors
91  */
92 #define DEBOUNCE_TIME                   msecs_to_jiffies(50)
93 #define POLL_TIME                       msecs_to_jiffies(250)
94
95 enum sun4i_usb_phy_type {
96         sun4i_a10_phy,
97         sun6i_a31_phy,
98         sun8i_a33_phy,
99         sun8i_h3_phy,
100 };
101
102 struct sun4i_usb_phy_cfg {
103         int num_phys;
104         enum sun4i_usb_phy_type type;
105         u32 disc_thresh;
106         u8 phyctl_offset;
107         bool dedicated_clocks;
108 };
109
110 struct sun4i_usb_phy_data {
111         void __iomem *base;
112         const struct sun4i_usb_phy_cfg *cfg;
113         struct mutex mutex;
114         struct sun4i_usb_phy {
115                 struct phy *phy;
116                 void __iomem *pmu;
117                 struct regulator *vbus;
118                 struct reset_control *reset;
119                 struct clk *clk;
120                 bool regulator_on;
121                 int index;
122         } phys[MAX_PHYS];
123         /* phy0 / otg related variables */
124         struct extcon_dev *extcon;
125         bool phy0_init;
126         struct gpio_desc *id_det_gpio;
127         struct gpio_desc *vbus_det_gpio;
128         struct power_supply *vbus_power_supply;
129         struct notifier_block vbus_power_nb;
130         bool vbus_power_nb_registered;
131         int id_det_irq;
132         int vbus_det_irq;
133         int id_det;
134         int vbus_det;
135         struct delayed_work detect;
136 };
137
138 #define to_sun4i_usb_phy_data(phy) \
139         container_of((phy), struct sun4i_usb_phy_data, phys[(phy)->index])
140
141 static void sun4i_usb_phy0_update_iscr(struct phy *_phy, u32 clr, u32 set)
142 {
143         struct sun4i_usb_phy *phy = phy_get_drvdata(_phy);
144         struct sun4i_usb_phy_data *data = to_sun4i_usb_phy_data(phy);
145         u32 iscr;
146
147         iscr = readl(data->base + REG_ISCR);
148         iscr &= ~clr;
149         iscr |= set;
150         writel(iscr, data->base + REG_ISCR);
151 }
152
153 static void sun4i_usb_phy0_set_id_detect(struct phy *phy, u32 val)
154 {
155         if (val)
156                 val = ISCR_FORCE_ID_HIGH;
157         else
158                 val = ISCR_FORCE_ID_LOW;
159
160         sun4i_usb_phy0_update_iscr(phy, ISCR_FORCE_ID_MASK, val);
161 }
162
163 static void sun4i_usb_phy0_set_vbus_detect(struct phy *phy, u32 val)
164 {
165         if (val)
166                 val = ISCR_FORCE_VBUS_HIGH;
167         else
168                 val = ISCR_FORCE_VBUS_LOW;
169
170         sun4i_usb_phy0_update_iscr(phy, ISCR_FORCE_VBUS_MASK, val);
171 }
172
173 static void sun4i_usb_phy_write(struct sun4i_usb_phy *phy, u32 addr, u32 data,
174                                 int len)
175 {
176         struct sun4i_usb_phy_data *phy_data = to_sun4i_usb_phy_data(phy);
177         u32 temp, usbc_bit = BIT(phy->index * 2);
178         void __iomem *phyctl = phy_data->base + phy_data->cfg->phyctl_offset;
179         int i;
180
181         mutex_lock(&phy_data->mutex);
182
183         if (phy_data->cfg->type == sun8i_a33_phy) {
184                 /* A33 needs us to set phyctl to 0 explicitly */
185                 writel(0, phyctl);
186         }
187
188         for (i = 0; i < len; i++) {
189                 temp = readl(phyctl);
190
191                 /* clear the address portion */
192                 temp &= ~(0xff << 8);
193
194                 /* set the address */
195                 temp |= ((addr + i) << 8);
196                 writel(temp, phyctl);
197
198                 /* set the data bit and clear usbc bit*/
199                 temp = readb(phyctl);
200                 if (data & 0x1)
201                         temp |= PHYCTL_DATA;
202                 else
203                         temp &= ~PHYCTL_DATA;
204                 temp &= ~usbc_bit;
205                 writeb(temp, phyctl);
206
207                 /* pulse usbc_bit */
208                 temp = readb(phyctl);
209                 temp |= usbc_bit;
210                 writeb(temp, phyctl);
211
212                 temp = readb(phyctl);
213                 temp &= ~usbc_bit;
214                 writeb(temp, phyctl);
215
216                 data >>= 1;
217         }
218         mutex_unlock(&phy_data->mutex);
219 }
220
221 static void sun4i_usb_phy_passby(struct sun4i_usb_phy *phy, int enable)
222 {
223         u32 bits, reg_value;
224
225         if (!phy->pmu)
226                 return;
227
228         bits = SUNXI_AHB_ICHR8_EN | SUNXI_AHB_INCR4_BURST_EN |
229                 SUNXI_AHB_INCRX_ALIGN_EN | SUNXI_ULPI_BYPASS_EN;
230
231         reg_value = readl(phy->pmu);
232
233         if (enable)
234                 reg_value |= bits;
235         else
236                 reg_value &= ~bits;
237
238         writel(reg_value, phy->pmu);
239 }
240
241 static int sun4i_usb_phy_init(struct phy *_phy)
242 {
243         struct sun4i_usb_phy *phy = phy_get_drvdata(_phy);
244         struct sun4i_usb_phy_data *data = to_sun4i_usb_phy_data(phy);
245         int ret;
246         u32 val;
247
248         ret = clk_prepare_enable(phy->clk);
249         if (ret)
250                 return ret;
251
252         ret = reset_control_deassert(phy->reset);
253         if (ret) {
254                 clk_disable_unprepare(phy->clk);
255                 return ret;
256         }
257
258         if (data->cfg->type == sun8i_h3_phy) {
259                 if (phy->index == 0) {
260                         val = readl(data->base + REG_PHY_UNK_H3);
261                         writel(val & ~1, data->base + REG_PHY_UNK_H3);
262                 }
263
264                 val = readl(phy->pmu + REG_PMU_UNK_H3);
265                 writel(val & ~2, phy->pmu + REG_PMU_UNK_H3);
266         } else {
267                 /* Enable USB 45 Ohm resistor calibration */
268                 if (phy->index == 0)
269                         sun4i_usb_phy_write(phy, PHY_RES45_CAL_EN, 0x01, 1);
270
271                 /* Adjust PHY's magnitude and rate */
272                 sun4i_usb_phy_write(phy, PHY_TX_AMPLITUDE_TUNE, 0x14, 5);
273
274                 /* Disconnect threshold adjustment */
275                 sun4i_usb_phy_write(phy, PHY_DISCON_TH_SEL,
276                                     data->cfg->disc_thresh, 2);
277         }
278
279         sun4i_usb_phy_passby(phy, 1);
280
281         if (phy->index == 0) {
282                 data->phy0_init = true;
283
284                 /* Enable pull-ups */
285                 sun4i_usb_phy0_update_iscr(_phy, 0, ISCR_DPDM_PULLUP_EN);
286                 sun4i_usb_phy0_update_iscr(_phy, 0, ISCR_ID_PULLUP_EN);
287
288                 if (data->id_det_gpio) {
289                         /* OTG mode, force ISCR and cable state updates */
290                         data->id_det = -1;
291                         data->vbus_det = -1;
292                         queue_delayed_work(system_wq, &data->detect, 0);
293                 } else {
294                         /* Host only mode */
295                         sun4i_usb_phy0_set_id_detect(_phy, 0);
296                         sun4i_usb_phy0_set_vbus_detect(_phy, 1);
297                 }
298         }
299
300         return 0;
301 }
302
303 static int sun4i_usb_phy_exit(struct phy *_phy)
304 {
305         struct sun4i_usb_phy *phy = phy_get_drvdata(_phy);
306         struct sun4i_usb_phy_data *data = to_sun4i_usb_phy_data(phy);
307
308         if (phy->index == 0) {
309                 /* Disable pull-ups */
310                 sun4i_usb_phy0_update_iscr(_phy, ISCR_DPDM_PULLUP_EN, 0);
311                 sun4i_usb_phy0_update_iscr(_phy, ISCR_ID_PULLUP_EN, 0);
312                 data->phy0_init = false;
313         }
314
315         sun4i_usb_phy_passby(phy, 0);
316         reset_control_assert(phy->reset);
317         clk_disable_unprepare(phy->clk);
318
319         return 0;
320 }
321
322 static int sun4i_usb_phy0_get_vbus_det(struct sun4i_usb_phy_data *data)
323 {
324         if (data->vbus_det_gpio)
325                 return gpiod_get_value_cansleep(data->vbus_det_gpio);
326
327         if (data->vbus_power_supply) {
328                 union power_supply_propval val;
329                 int r;
330
331                 r = power_supply_get_property(data->vbus_power_supply,
332                                               POWER_SUPPLY_PROP_PRESENT, &val);
333                 if (r == 0)
334                         return val.intval;
335         }
336
337         /* Fallback: report vbus as high */
338         return 1;
339 }
340
341 static bool sun4i_usb_phy0_have_vbus_det(struct sun4i_usb_phy_data *data)
342 {
343         return data->vbus_det_gpio || data->vbus_power_supply;
344 }
345
346 static bool sun4i_usb_phy0_poll(struct sun4i_usb_phy_data *data)
347 {
348         if ((data->id_det_gpio && data->id_det_irq <= 0) ||
349             (data->vbus_det_gpio && data->vbus_det_irq <= 0))
350                 return true;
351
352         /*
353          * The A31 companion pmic (axp221) does not generate vbus change
354          * interrupts when the board is driving vbus, so we must poll
355          * when using the pmic for vbus-det _and_ we're driving vbus.
356          */
357         if (data->cfg->type == sun6i_a31_phy &&
358             data->vbus_power_supply && data->phys[0].regulator_on)
359                 return true;
360
361         return false;
362 }
363
364 static int sun4i_usb_phy_power_on(struct phy *_phy)
365 {
366         struct sun4i_usb_phy *phy = phy_get_drvdata(_phy);
367         struct sun4i_usb_phy_data *data = to_sun4i_usb_phy_data(phy);
368         int ret;
369
370         if (!phy->vbus || phy->regulator_on)
371                 return 0;
372
373         /* For phy0 only turn on Vbus if we don't have an ext. Vbus */
374         if (phy->index == 0 && sun4i_usb_phy0_have_vbus_det(data) &&
375                                 data->vbus_det)
376                 return 0;
377
378         ret = regulator_enable(phy->vbus);
379         if (ret)
380                 return ret;
381
382         phy->regulator_on = true;
383
384         /* We must report Vbus high within OTG_TIME_A_WAIT_VRISE msec. */
385         if (phy->index == 0 && sun4i_usb_phy0_poll(data))
386                 mod_delayed_work(system_wq, &data->detect, DEBOUNCE_TIME);
387
388         return 0;
389 }
390
391 static int sun4i_usb_phy_power_off(struct phy *_phy)
392 {
393         struct sun4i_usb_phy *phy = phy_get_drvdata(_phy);
394         struct sun4i_usb_phy_data *data = to_sun4i_usb_phy_data(phy);
395
396         if (!phy->vbus || !phy->regulator_on)
397                 return 0;
398
399         regulator_disable(phy->vbus);
400         phy->regulator_on = false;
401
402         /*
403          * phy0 vbus typically slowly discharges, sometimes this causes the
404          * Vbus gpio to not trigger an edge irq on Vbus off, so force a rescan.
405          */
406         if (phy->index == 0 && !sun4i_usb_phy0_poll(data))
407                 mod_delayed_work(system_wq, &data->detect, POLL_TIME);
408
409         return 0;
410 }
411
412 void sun4i_usb_phy_set_squelch_detect(struct phy *_phy, bool enabled)
413 {
414         struct sun4i_usb_phy *phy = phy_get_drvdata(_phy);
415
416         sun4i_usb_phy_write(phy, PHY_SQUELCH_DETECT, enabled ? 0 : 2, 2);
417 }
418 EXPORT_SYMBOL_GPL(sun4i_usb_phy_set_squelch_detect);
419
420 static const struct phy_ops sun4i_usb_phy_ops = {
421         .init           = sun4i_usb_phy_init,
422         .exit           = sun4i_usb_phy_exit,
423         .power_on       = sun4i_usb_phy_power_on,
424         .power_off      = sun4i_usb_phy_power_off,
425         .owner          = THIS_MODULE,
426 };
427
428 static void sun4i_usb_phy0_id_vbus_det_scan(struct work_struct *work)
429 {
430         struct sun4i_usb_phy_data *data =
431                 container_of(work, struct sun4i_usb_phy_data, detect.work);
432         struct phy *phy0 = data->phys[0].phy;
433         int id_det, vbus_det, id_notify = 0, vbus_notify = 0;
434
435         id_det = gpiod_get_value_cansleep(data->id_det_gpio);
436         vbus_det = sun4i_usb_phy0_get_vbus_det(data);
437
438         mutex_lock(&phy0->mutex);
439
440         if (!data->phy0_init) {
441                 mutex_unlock(&phy0->mutex);
442                 return;
443         }
444
445         if (id_det != data->id_det) {
446                 /*
447                  * When a host cable (id == 0) gets plugged in on systems
448                  * without vbus detection report vbus low for long enough for
449                  * the musb-ip to end the current device session.
450                  */
451                 if (!sun4i_usb_phy0_have_vbus_det(data) && id_det == 0) {
452                         sun4i_usb_phy0_set_vbus_detect(phy0, 0);
453                         msleep(200);
454                         sun4i_usb_phy0_set_vbus_detect(phy0, 1);
455                 }
456                 sun4i_usb_phy0_set_id_detect(phy0, id_det);
457                 data->id_det = id_det;
458                 id_notify = 1;
459         }
460
461         if (vbus_det != data->vbus_det) {
462                 sun4i_usb_phy0_set_vbus_detect(phy0, vbus_det);
463                 data->vbus_det = vbus_det;
464                 vbus_notify = 1;
465         }
466
467         mutex_unlock(&phy0->mutex);
468
469         if (id_notify) {
470                 extcon_set_cable_state_(data->extcon, EXTCON_USB_HOST,
471                                         !id_det);
472                 /*
473                  * When a host cable gets unplugged (id == 1) on systems
474                  * without vbus detection report vbus low for long enough to
475                  * the musb-ip to end the current host session.
476                  */
477                 if (!sun4i_usb_phy0_have_vbus_det(data) && id_det == 1) {
478                         mutex_lock(&phy0->mutex);
479                         sun4i_usb_phy0_set_vbus_detect(phy0, 0);
480                         msleep(1000);
481                         sun4i_usb_phy0_set_vbus_detect(phy0, 1);
482                         mutex_unlock(&phy0->mutex);
483                 }
484         }
485
486         if (vbus_notify)
487                 extcon_set_cable_state_(data->extcon, EXTCON_USB, vbus_det);
488
489         if (sun4i_usb_phy0_poll(data))
490                 queue_delayed_work(system_wq, &data->detect, POLL_TIME);
491 }
492
493 static irqreturn_t sun4i_usb_phy0_id_vbus_det_irq(int irq, void *dev_id)
494 {
495         struct sun4i_usb_phy_data *data = dev_id;
496
497         /* vbus or id changed, let the pins settle and then scan them */
498         mod_delayed_work(system_wq, &data->detect, DEBOUNCE_TIME);
499
500         return IRQ_HANDLED;
501 }
502
503 static int sun4i_usb_phy0_vbus_notify(struct notifier_block *nb,
504                                       unsigned long val, void *v)
505 {
506         struct sun4i_usb_phy_data *data =
507                 container_of(nb, struct sun4i_usb_phy_data, vbus_power_nb);
508         struct power_supply *psy = v;
509
510         /* Properties on the vbus_power_supply changed, scan vbus_det */
511         if (val == PSY_EVENT_PROP_CHANGED && psy == data->vbus_power_supply)
512                 mod_delayed_work(system_wq, &data->detect, DEBOUNCE_TIME);
513
514         return NOTIFY_OK;
515 }
516
517 static struct phy *sun4i_usb_phy_xlate(struct device *dev,
518                                         struct of_phandle_args *args)
519 {
520         struct sun4i_usb_phy_data *data = dev_get_drvdata(dev);
521
522         if (args->args[0] >= data->cfg->num_phys)
523                 return ERR_PTR(-ENODEV);
524
525         return data->phys[args->args[0]].phy;
526 }
527
528 static int sun4i_usb_phy_remove(struct platform_device *pdev)
529 {
530         struct device *dev = &pdev->dev;
531         struct sun4i_usb_phy_data *data = dev_get_drvdata(dev);
532
533         if (data->vbus_power_nb_registered)
534                 power_supply_unreg_notifier(&data->vbus_power_nb);
535         if (data->id_det_irq > 0)
536                 devm_free_irq(dev, data->id_det_irq, data);
537         if (data->vbus_det_irq > 0)
538                 devm_free_irq(dev, data->vbus_det_irq, data);
539
540         cancel_delayed_work_sync(&data->detect);
541
542         return 0;
543 }
544
545 static const unsigned int sun4i_usb_phy0_cable[] = {
546         EXTCON_USB,
547         EXTCON_USB_HOST,
548         EXTCON_NONE,
549 };
550
551 static int sun4i_usb_phy_probe(struct platform_device *pdev)
552 {
553         struct sun4i_usb_phy_data *data;
554         struct device *dev = &pdev->dev;
555         struct device_node *np = dev->of_node;
556         struct phy_provider *phy_provider;
557         struct resource *res;
558         int i, ret;
559
560         data = devm_kzalloc(dev, sizeof(*data), GFP_KERNEL);
561         if (!data)
562                 return -ENOMEM;
563
564         mutex_init(&data->mutex);
565         INIT_DELAYED_WORK(&data->detect, sun4i_usb_phy0_id_vbus_det_scan);
566         dev_set_drvdata(dev, data);
567         data->cfg = of_device_get_match_data(dev);
568         if (!data->cfg)
569                 return -EINVAL;
570
571         res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "phy_ctrl");
572         data->base = devm_ioremap_resource(dev, res);
573         if (IS_ERR(data->base))
574                 return PTR_ERR(data->base);
575
576         data->id_det_gpio = devm_gpiod_get_optional(dev, "usb0_id_det",
577                                                     GPIOD_IN);
578         if (IS_ERR(data->id_det_gpio))
579                 return PTR_ERR(data->id_det_gpio);
580
581         data->vbus_det_gpio = devm_gpiod_get_optional(dev, "usb0_vbus_det",
582                                                       GPIOD_IN);
583         if (IS_ERR(data->vbus_det_gpio))
584                 return PTR_ERR(data->vbus_det_gpio);
585
586         if (of_find_property(np, "usb0_vbus_power-supply", NULL)) {
587                 data->vbus_power_supply = devm_power_supply_get_by_phandle(dev,
588                                                      "usb0_vbus_power-supply");
589                 if (IS_ERR(data->vbus_power_supply))
590                         return PTR_ERR(data->vbus_power_supply);
591
592                 if (!data->vbus_power_supply)
593                         return -EPROBE_DEFER;
594         }
595
596         /* vbus_det without id_det makes no sense, and is not supported */
597         if (sun4i_usb_phy0_have_vbus_det(data) && !data->id_det_gpio) {
598                 dev_err(dev, "usb0_id_det missing or invalid\n");
599                 return -ENODEV;
600         }
601
602         if (data->id_det_gpio) {
603                 data->extcon = devm_extcon_dev_allocate(dev,
604                                                         sun4i_usb_phy0_cable);
605                 if (IS_ERR(data->extcon))
606                         return PTR_ERR(data->extcon);
607
608                 ret = devm_extcon_dev_register(dev, data->extcon);
609                 if (ret) {
610                         dev_err(dev, "failed to register extcon: %d\n", ret);
611                         return ret;
612                 }
613         }
614
615         for (i = 0; i < data->cfg->num_phys; i++) {
616                 struct sun4i_usb_phy *phy = data->phys + i;
617                 char name[16];
618
619                 snprintf(name, sizeof(name), "usb%d_vbus", i);
620                 phy->vbus = devm_regulator_get_optional(dev, name);
621                 if (IS_ERR(phy->vbus)) {
622                         if (PTR_ERR(phy->vbus) == -EPROBE_DEFER)
623                                 return -EPROBE_DEFER;
624                         phy->vbus = NULL;
625                 }
626
627                 if (data->cfg->dedicated_clocks)
628                         snprintf(name, sizeof(name), "usb%d_phy", i);
629                 else
630                         strlcpy(name, "usb_phy", sizeof(name));
631
632                 phy->clk = devm_clk_get(dev, name);
633                 if (IS_ERR(phy->clk)) {
634                         dev_err(dev, "failed to get clock %s\n", name);
635                         return PTR_ERR(phy->clk);
636                 }
637
638                 snprintf(name, sizeof(name), "usb%d_reset", i);
639                 phy->reset = devm_reset_control_get(dev, name);
640                 if (IS_ERR(phy->reset)) {
641                         dev_err(dev, "failed to get reset %s\n", name);
642                         return PTR_ERR(phy->reset);
643                 }
644
645                 if (i) { /* No pmu for usbc0 */
646                         snprintf(name, sizeof(name), "pmu%d", i);
647                         res = platform_get_resource_byname(pdev,
648                                                         IORESOURCE_MEM, name);
649                         phy->pmu = devm_ioremap_resource(dev, res);
650                         if (IS_ERR(phy->pmu))
651                                 return PTR_ERR(phy->pmu);
652                 }
653
654                 phy->phy = devm_phy_create(dev, NULL, &sun4i_usb_phy_ops);
655                 if (IS_ERR(phy->phy)) {
656                         dev_err(dev, "failed to create PHY %d\n", i);
657                         return PTR_ERR(phy->phy);
658                 }
659
660                 phy->index = i;
661                 phy_set_drvdata(phy->phy, &data->phys[i]);
662         }
663
664         data->id_det_irq = gpiod_to_irq(data->id_det_gpio);
665         if (data->id_det_irq > 0) {
666                 ret = devm_request_irq(dev, data->id_det_irq,
667                                 sun4i_usb_phy0_id_vbus_det_irq,
668                                 IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
669                                 "usb0-id-det", data);
670                 if (ret) {
671                         dev_err(dev, "Err requesting id-det-irq: %d\n", ret);
672                         return ret;
673                 }
674         }
675
676         data->vbus_det_irq = gpiod_to_irq(data->vbus_det_gpio);
677         if (data->vbus_det_irq > 0) {
678                 ret = devm_request_irq(dev, data->vbus_det_irq,
679                                 sun4i_usb_phy0_id_vbus_det_irq,
680                                 IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
681                                 "usb0-vbus-det", data);
682                 if (ret) {
683                         dev_err(dev, "Err requesting vbus-det-irq: %d\n", ret);
684                         data->vbus_det_irq = -1;
685                         sun4i_usb_phy_remove(pdev); /* Stop detect work */
686                         return ret;
687                 }
688         }
689
690         if (data->vbus_power_supply) {
691                 data->vbus_power_nb.notifier_call = sun4i_usb_phy0_vbus_notify;
692                 data->vbus_power_nb.priority = 0;
693                 ret = power_supply_reg_notifier(&data->vbus_power_nb);
694                 if (ret) {
695                         sun4i_usb_phy_remove(pdev); /* Stop detect work */
696                         return ret;
697                 }
698                 data->vbus_power_nb_registered = true;
699         }
700
701         phy_provider = devm_of_phy_provider_register(dev, sun4i_usb_phy_xlate);
702         if (IS_ERR(phy_provider)) {
703                 sun4i_usb_phy_remove(pdev); /* Stop detect work */
704                 return PTR_ERR(phy_provider);
705         }
706
707         return 0;
708 }
709
710 static const struct sun4i_usb_phy_cfg sun4i_a10_cfg = {
711         .num_phys = 3,
712         .type = sun4i_a10_phy,
713         .disc_thresh = 3,
714         .phyctl_offset = REG_PHYCTL_A10,
715         .dedicated_clocks = false,
716 };
717
718 static const struct sun4i_usb_phy_cfg sun5i_a13_cfg = {
719         .num_phys = 2,
720         .type = sun4i_a10_phy,
721         .disc_thresh = 2,
722         .phyctl_offset = REG_PHYCTL_A10,
723         .dedicated_clocks = false,
724 };
725
726 static const struct sun4i_usb_phy_cfg sun6i_a31_cfg = {
727         .num_phys = 3,
728         .type = sun6i_a31_phy,
729         .disc_thresh = 3,
730         .phyctl_offset = REG_PHYCTL_A10,
731         .dedicated_clocks = true,
732 };
733
734 static const struct sun4i_usb_phy_cfg sun7i_a20_cfg = {
735         .num_phys = 3,
736         .type = sun4i_a10_phy,
737         .disc_thresh = 2,
738         .phyctl_offset = REG_PHYCTL_A10,
739         .dedicated_clocks = false,
740 };
741
742 static const struct sun4i_usb_phy_cfg sun8i_a23_cfg = {
743         .num_phys = 2,
744         .type = sun4i_a10_phy,
745         .disc_thresh = 3,
746         .phyctl_offset = REG_PHYCTL_A10,
747         .dedicated_clocks = true,
748 };
749
750 static const struct sun4i_usb_phy_cfg sun8i_a33_cfg = {
751         .num_phys = 2,
752         .type = sun8i_a33_phy,
753         .disc_thresh = 3,
754         .phyctl_offset = REG_PHYCTL_A33,
755         .dedicated_clocks = true,
756 };
757
758 static const struct sun4i_usb_phy_cfg sun8i_h3_cfg = {
759         .num_phys = 4,
760         .type = sun8i_h3_phy,
761         .disc_thresh = 3,
762         .dedicated_clocks = true,
763 };
764
765 static const struct of_device_id sun4i_usb_phy_of_match[] = {
766         { .compatible = "allwinner,sun4i-a10-usb-phy", .data = &sun4i_a10_cfg },
767         { .compatible = "allwinner,sun5i-a13-usb-phy", .data = &sun5i_a13_cfg },
768         { .compatible = "allwinner,sun6i-a31-usb-phy", .data = &sun6i_a31_cfg },
769         { .compatible = "allwinner,sun7i-a20-usb-phy", .data = &sun7i_a20_cfg },
770         { .compatible = "allwinner,sun8i-a23-usb-phy", .data = &sun8i_a23_cfg },
771         { .compatible = "allwinner,sun8i-a33-usb-phy", .data = &sun8i_a33_cfg },
772         { .compatible = "allwinner,sun8i-h3-usb-phy", .data = &sun8i_h3_cfg },
773         { },
774 };
775 MODULE_DEVICE_TABLE(of, sun4i_usb_phy_of_match);
776
777 static struct platform_driver sun4i_usb_phy_driver = {
778         .probe  = sun4i_usb_phy_probe,
779         .remove = sun4i_usb_phy_remove,
780         .driver = {
781                 .of_match_table = sun4i_usb_phy_of_match,
782                 .name  = "sun4i-usb-phy",
783         }
784 };
785 module_platform_driver(sun4i_usb_phy_driver);
786
787 MODULE_DESCRIPTION("Allwinner sun4i USB phy driver");
788 MODULE_AUTHOR("Hans de Goede <hdegoede@redhat.com>");
789 MODULE_LICENSE("GPL v2");