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22#include <linux/usb/otg.h>
23#include <linux/usb/gadget.h>
24#include <linux/usb/hcd.h>
25#include <linux/usb/chipidea.h>
26#include <linux/regulator/consumer.h>
27
28#include "ci.h"
29#include "bits.h"
30#include "otg.h"
31#include "otg_fsm.h"
32
33
34static ssize_t
35get_a_bus_req(struct device *dev, struct device_attribute *attr, char *buf)
36{
37 char *next;
38 unsigned size, t;
39 struct ci_hdrc *ci = dev_get_drvdata(dev);
40
41 next = buf;
42 size = PAGE_SIZE;
43 t = scnprintf(next, size, "%d\n", ci->fsm.a_bus_req);
44 size -= t;
45 next += t;
46
47 return PAGE_SIZE - size;
48}
49
50static ssize_t
51set_a_bus_req(struct device *dev, struct device_attribute *attr,
52 const char *buf, size_t count)
53{
54 struct ci_hdrc *ci = dev_get_drvdata(dev);
55
56 if (count > 2)
57 return -1;
58
59 mutex_lock(&ci->fsm.lock);
60 if (buf[0] == '0') {
61 ci->fsm.a_bus_req = 0;
62 } else if (buf[0] == '1') {
63
64 if (ci->fsm.a_bus_drop) {
65 mutex_unlock(&ci->fsm.lock);
66 return count;
67 }
68 ci->fsm.a_bus_req = 1;
69 if (ci->fsm.otg->state == OTG_STATE_A_PERIPHERAL) {
70 ci->gadget.host_request_flag = 1;
71 mutex_unlock(&ci->fsm.lock);
72 return count;
73 }
74 }
75
76 ci_otg_queue_work(ci);
77 mutex_unlock(&ci->fsm.lock);
78
79 return count;
80}
81static DEVICE_ATTR(a_bus_req, S_IRUGO | S_IWUSR, get_a_bus_req, set_a_bus_req);
82
83static ssize_t
84get_a_bus_drop(struct device *dev, struct device_attribute *attr, char *buf)
85{
86 char *next;
87 unsigned size, t;
88 struct ci_hdrc *ci = dev_get_drvdata(dev);
89
90 next = buf;
91 size = PAGE_SIZE;
92 t = scnprintf(next, size, "%d\n", ci->fsm.a_bus_drop);
93 size -= t;
94 next += t;
95
96 return PAGE_SIZE - size;
97}
98
99static ssize_t
100set_a_bus_drop(struct device *dev, struct device_attribute *attr,
101 const char *buf, size_t count)
102{
103 struct ci_hdrc *ci = dev_get_drvdata(dev);
104
105 if (count > 2)
106 return -1;
107
108 mutex_lock(&ci->fsm.lock);
109 if (buf[0] == '0') {
110 ci->fsm.a_bus_drop = 0;
111 } else if (buf[0] == '1') {
112 ci->fsm.a_bus_drop = 1;
113 ci->fsm.a_bus_req = 0;
114 }
115
116 ci_otg_queue_work(ci);
117 mutex_unlock(&ci->fsm.lock);
118
119 return count;
120}
121static DEVICE_ATTR(a_bus_drop, S_IRUGO | S_IWUSR, get_a_bus_drop,
122 set_a_bus_drop);
123
124static ssize_t
125get_b_bus_req(struct device *dev, struct device_attribute *attr, char *buf)
126{
127 char *next;
128 unsigned size, t;
129 struct ci_hdrc *ci = dev_get_drvdata(dev);
130
131 next = buf;
132 size = PAGE_SIZE;
133 t = scnprintf(next, size, "%d\n", ci->fsm.b_bus_req);
134 size -= t;
135 next += t;
136
137 return PAGE_SIZE - size;
138}
139
140static ssize_t
141set_b_bus_req(struct device *dev, struct device_attribute *attr,
142 const char *buf, size_t count)
143{
144 struct ci_hdrc *ci = dev_get_drvdata(dev);
145
146 if (count > 2)
147 return -1;
148
149 mutex_lock(&ci->fsm.lock);
150 if (buf[0] == '0')
151 ci->fsm.b_bus_req = 0;
152 else if (buf[0] == '1') {
153 ci->fsm.b_bus_req = 1;
154 if (ci->fsm.otg->state == OTG_STATE_B_PERIPHERAL) {
155 ci->gadget.host_request_flag = 1;
156 mutex_unlock(&ci->fsm.lock);
157 return count;
158 }
159 }
160
161 ci_otg_queue_work(ci);
162 mutex_unlock(&ci->fsm.lock);
163
164 return count;
165}
166static DEVICE_ATTR(b_bus_req, S_IRUGO | S_IWUSR, get_b_bus_req, set_b_bus_req);
167
168static ssize_t
169set_a_clr_err(struct device *dev, struct device_attribute *attr,
170 const char *buf, size_t count)
171{
172 struct ci_hdrc *ci = dev_get_drvdata(dev);
173
174 if (count > 2)
175 return -1;
176
177 mutex_lock(&ci->fsm.lock);
178 if (buf[0] == '1')
179 ci->fsm.a_clr_err = 1;
180
181 ci_otg_queue_work(ci);
182 mutex_unlock(&ci->fsm.lock);
183
184 return count;
185}
186static DEVICE_ATTR(a_clr_err, S_IWUSR, NULL, set_a_clr_err);
187
188static struct attribute *inputs_attrs[] = {
189 &dev_attr_a_bus_req.attr,
190 &dev_attr_a_bus_drop.attr,
191 &dev_attr_b_bus_req.attr,
192 &dev_attr_a_clr_err.attr,
193 NULL,
194};
195
196static struct attribute_group inputs_attr_group = {
197 .name = "inputs",
198 .attrs = inputs_attrs,
199};
200
201
202
203
204
205static unsigned otg_timer_ms[] = {
206 TA_WAIT_VRISE,
207 TA_WAIT_VFALL,
208 TA_WAIT_BCON,
209 TA_AIDL_BDIS,
210 TB_ASE0_BRST,
211 TA_BIDL_ADIS,
212 TB_AIDL_BDIS,
213 TB_SE0_SRP,
214 TB_SRP_FAIL,
215 0,
216 TB_DATA_PLS,
217 TB_SSEND_SRP,
218};
219
220
221
222
223static void ci_otg_add_timer(struct ci_hdrc *ci, enum otg_fsm_timer t)
224{
225 unsigned long flags, timer_sec, timer_nsec;
226
227 if (t >= NUM_OTG_FSM_TIMERS)
228 return;
229
230 spin_lock_irqsave(&ci->lock, flags);
231 timer_sec = otg_timer_ms[t] / MSEC_PER_SEC;
232 timer_nsec = (otg_timer_ms[t] % MSEC_PER_SEC) * NSEC_PER_MSEC;
233 ci->hr_timeouts[t] = ktime_add(ktime_get(),
234 ktime_set(timer_sec, timer_nsec));
235 ci->enabled_otg_timer_bits |= (1 << t);
236 if ((ci->next_otg_timer == NUM_OTG_FSM_TIMERS) ||
237 (ci->hr_timeouts[ci->next_otg_timer].tv64 >
238 ci->hr_timeouts[t].tv64)) {
239 ci->next_otg_timer = t;
240 hrtimer_start_range_ns(&ci->otg_fsm_hrtimer,
241 ci->hr_timeouts[t], NSEC_PER_MSEC,
242 HRTIMER_MODE_ABS);
243 }
244 spin_unlock_irqrestore(&ci->lock, flags);
245}
246
247
248
249
250static void ci_otg_del_timer(struct ci_hdrc *ci, enum otg_fsm_timer t)
251{
252 unsigned long flags, enabled_timer_bits;
253 enum otg_fsm_timer cur_timer, next_timer = NUM_OTG_FSM_TIMERS;
254
255 if ((t >= NUM_OTG_FSM_TIMERS) ||
256 !(ci->enabled_otg_timer_bits & (1 << t)))
257 return;
258
259 spin_lock_irqsave(&ci->lock, flags);
260 ci->enabled_otg_timer_bits &= ~(1 << t);
261 if (ci->next_otg_timer == t) {
262 if (ci->enabled_otg_timer_bits == 0) {
263
264 hrtimer_cancel(&ci->otg_fsm_hrtimer);
265 ci->next_otg_timer = NUM_OTG_FSM_TIMERS;
266 } else {
267
268 enabled_timer_bits = ci->enabled_otg_timer_bits;
269 for_each_set_bit(cur_timer, &enabled_timer_bits,
270 NUM_OTG_FSM_TIMERS) {
271 if ((next_timer == NUM_OTG_FSM_TIMERS) ||
272 (ci->hr_timeouts[next_timer].tv64 <
273 ci->hr_timeouts[cur_timer].tv64))
274 next_timer = cur_timer;
275 }
276 }
277 }
278 if (next_timer != NUM_OTG_FSM_TIMERS) {
279 ci->next_otg_timer = next_timer;
280 hrtimer_start_range_ns(&ci->otg_fsm_hrtimer,
281 ci->hr_timeouts[next_timer], NSEC_PER_MSEC,
282 HRTIMER_MODE_ABS);
283 }
284 spin_unlock_irqrestore(&ci->lock, flags);
285}
286
287
288static int a_wait_vrise_tmout(struct ci_hdrc *ci)
289{
290 ci->fsm.a_wait_vrise_tmout = 1;
291 return 0;
292}
293
294static int a_wait_vfall_tmout(struct ci_hdrc *ci)
295{
296 ci->fsm.a_wait_vfall_tmout = 1;
297 return 0;
298}
299
300static int a_wait_bcon_tmout(struct ci_hdrc *ci)
301{
302 ci->fsm.a_wait_bcon_tmout = 1;
303 return 0;
304}
305
306static int a_aidl_bdis_tmout(struct ci_hdrc *ci)
307{
308 ci->fsm.a_aidl_bdis_tmout = 1;
309 return 0;
310}
311
312static int b_ase0_brst_tmout(struct ci_hdrc *ci)
313{
314 ci->fsm.b_ase0_brst_tmout = 1;
315 return 0;
316}
317
318static int a_bidl_adis_tmout(struct ci_hdrc *ci)
319{
320 ci->fsm.a_bidl_adis_tmout = 1;
321 return 0;
322}
323
324static int b_aidl_bdis_tmout(struct ci_hdrc *ci)
325{
326 ci->fsm.a_bus_suspend = 1;
327 return 0;
328}
329
330static int b_se0_srp_tmout(struct ci_hdrc *ci)
331{
332 ci->fsm.b_se0_srp = 1;
333 return 0;
334}
335
336static int b_srp_fail_tmout(struct ci_hdrc *ci)
337{
338 ci->fsm.b_srp_done = 1;
339 return 1;
340}
341
342static int b_data_pls_tmout(struct ci_hdrc *ci)
343{
344 ci->fsm.b_srp_done = 1;
345 ci->fsm.b_bus_req = 0;
346 if (ci->fsm.power_up)
347 ci->fsm.power_up = 0;
348 hw_write_otgsc(ci, OTGSC_HABA, 0);
349 pm_runtime_put(ci->dev);
350 return 0;
351}
352
353static int b_ssend_srp_tmout(struct ci_hdrc *ci)
354{
355 ci->fsm.b_ssend_srp = 1;
356
357 if (ci->fsm.otg->state == OTG_STATE_B_IDLE)
358 return 0;
359 else
360 return 1;
361}
362
363
364
365
366
367static int (*otg_timer_handlers[])(struct ci_hdrc *) = {
368 a_wait_vrise_tmout,
369 a_wait_vfall_tmout,
370 a_wait_bcon_tmout,
371 a_aidl_bdis_tmout,
372 b_ase0_brst_tmout,
373 a_bidl_adis_tmout,
374 b_aidl_bdis_tmout,
375 b_se0_srp_tmout,
376 b_srp_fail_tmout,
377 NULL,
378 b_data_pls_tmout,
379 b_ssend_srp_tmout,
380};
381
382
383
384
385static enum hrtimer_restart ci_otg_hrtimer_func(struct hrtimer *t)
386{
387 struct ci_hdrc *ci = container_of(t, struct ci_hdrc, otg_fsm_hrtimer);
388 ktime_t now, *timeout;
389 unsigned long enabled_timer_bits;
390 unsigned long flags;
391 enum otg_fsm_timer cur_timer, next_timer = NUM_OTG_FSM_TIMERS;
392 int ret = -EINVAL;
393
394 spin_lock_irqsave(&ci->lock, flags);
395 enabled_timer_bits = ci->enabled_otg_timer_bits;
396 ci->next_otg_timer = NUM_OTG_FSM_TIMERS;
397
398 now = ktime_get();
399 for_each_set_bit(cur_timer, &enabled_timer_bits, NUM_OTG_FSM_TIMERS) {
400 if (now.tv64 >= ci->hr_timeouts[cur_timer].tv64) {
401 ci->enabled_otg_timer_bits &= ~(1 << cur_timer);
402 if (otg_timer_handlers[cur_timer])
403 ret = otg_timer_handlers[cur_timer](ci);
404 } else {
405 if ((next_timer == NUM_OTG_FSM_TIMERS) ||
406 (ci->hr_timeouts[cur_timer].tv64 <
407 ci->hr_timeouts[next_timer].tv64))
408 next_timer = cur_timer;
409 }
410 }
411
412 if (next_timer < NUM_OTG_FSM_TIMERS) {
413 timeout = &ci->hr_timeouts[next_timer];
414 hrtimer_start_range_ns(&ci->otg_fsm_hrtimer, *timeout,
415 NSEC_PER_MSEC, HRTIMER_MODE_ABS);
416 ci->next_otg_timer = next_timer;
417 }
418 spin_unlock_irqrestore(&ci->lock, flags);
419
420 if (!ret)
421 ci_otg_queue_work(ci);
422
423 return HRTIMER_NORESTART;
424}
425
426
427static int ci_otg_init_timers(struct ci_hdrc *ci)
428{
429 hrtimer_init(&ci->otg_fsm_hrtimer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
430 ci->otg_fsm_hrtimer.function = ci_otg_hrtimer_func;
431
432 return 0;
433}
434
435
436
437
438static void ci_otg_fsm_add_timer(struct otg_fsm *fsm, enum otg_fsm_timer t)
439{
440 struct ci_hdrc *ci = container_of(fsm, struct ci_hdrc, fsm);
441
442 if (t < NUM_OTG_FSM_TIMERS)
443 ci_otg_add_timer(ci, t);
444 return;
445}
446
447static void ci_otg_fsm_del_timer(struct otg_fsm *fsm, enum otg_fsm_timer t)
448{
449 struct ci_hdrc *ci = container_of(fsm, struct ci_hdrc, fsm);
450
451 if (t < NUM_OTG_FSM_TIMERS)
452 ci_otg_del_timer(ci, t);
453 return;
454}
455
456
457
458
459
460static void ci_otg_drv_vbus(struct otg_fsm *fsm, int on)
461{
462 int ret;
463 struct ci_hdrc *ci = container_of(fsm, struct ci_hdrc, fsm);
464
465 if (on) {
466
467 hw_write(ci, OP_PORTSC, PORTSC_W1C_BITS | PORTSC_PP,
468 PORTSC_PP);
469 if (ci->platdata->reg_vbus) {
470 ret = regulator_enable(ci->platdata->reg_vbus);
471 if (ret) {
472 dev_err(ci->dev,
473 "Failed to enable vbus regulator, ret=%d\n",
474 ret);
475 return;
476 }
477 }
478
479 if (ci->platdata->flags & CI_HDRC_PHY_VBUS_CONTROL &&
480 ci->usb_phy && ci->usb_phy->set_vbus)
481 ci->usb_phy->set_vbus(ci->usb_phy, 1);
482
483
484 hw_write_otgsc(ci, OTGSC_DPIE, 0);
485
486 fsm->a_srp_det = 0;
487 fsm->power_up = 0;
488 } else {
489 if (ci->platdata->reg_vbus)
490 regulator_disable(ci->platdata->reg_vbus);
491
492 if (ci->platdata->flags & CI_HDRC_PHY_VBUS_CONTROL &&
493 ci->usb_phy && ci->usb_phy->set_vbus)
494 ci->usb_phy->set_vbus(ci->usb_phy, 0);
495
496 fsm->a_bus_drop = 1;
497 fsm->a_bus_req = 0;
498 }
499}
500
501
502
503
504static void ci_otg_loc_conn(struct otg_fsm *fsm, int on)
505{
506 struct ci_hdrc *ci = container_of(fsm, struct ci_hdrc, fsm);
507
508 if (on)
509 hw_write(ci, OP_USBCMD, USBCMD_RS, USBCMD_RS);
510 else
511 hw_write(ci, OP_USBCMD, USBCMD_RS, 0);
512}
513
514
515
516
517
518
519
520
521
522
523static void ci_otg_loc_sof(struct otg_fsm *fsm, int on)
524{
525 struct usb_device *udev;
526
527 if (!fsm->otg->host)
528 return;
529
530 udev = usb_hub_find_child(fsm->otg->host->root_hub, 1);
531 if (!udev)
532 return;
533
534 if (on) {
535 usb_disable_autosuspend(udev);
536 } else {
537 pm_runtime_set_autosuspend_delay(&udev->dev, 0);
538 usb_enable_autosuspend(udev);
539 }
540}
541
542
543
544
545
546static void ci_otg_start_pulse(struct otg_fsm *fsm)
547{
548 struct ci_hdrc *ci = container_of(fsm, struct ci_hdrc, fsm);
549
550
551 hw_write_otgsc(ci, OTGSC_HADP, OTGSC_HADP);
552
553 pm_runtime_get(ci->dev);
554 ci_otg_add_timer(ci, B_DATA_PLS);
555}
556
557static int ci_otg_start_host(struct otg_fsm *fsm, int on)
558{
559 struct ci_hdrc *ci = container_of(fsm, struct ci_hdrc, fsm);
560
561 if (on) {
562 ci_role_stop(ci);
563 ci_role_start(ci, CI_ROLE_HOST);
564 } else {
565 ci_role_stop(ci);
566 ci_role_start(ci, CI_ROLE_GADGET);
567 }
568 return 0;
569}
570
571static int ci_otg_start_gadget(struct otg_fsm *fsm, int on)
572{
573 struct ci_hdrc *ci = container_of(fsm, struct ci_hdrc, fsm);
574
575 if (on)
576 usb_gadget_vbus_connect(&ci->gadget);
577 else
578 usb_gadget_vbus_disconnect(&ci->gadget);
579
580 return 0;
581}
582
583static struct otg_fsm_ops ci_otg_ops = {
584 .drv_vbus = ci_otg_drv_vbus,
585 .loc_conn = ci_otg_loc_conn,
586 .loc_sof = ci_otg_loc_sof,
587 .start_pulse = ci_otg_start_pulse,
588 .add_timer = ci_otg_fsm_add_timer,
589 .del_timer = ci_otg_fsm_del_timer,
590 .start_host = ci_otg_start_host,
591 .start_gadget = ci_otg_start_gadget,
592};
593
594int ci_otg_fsm_work(struct ci_hdrc *ci)
595{
596
597
598
599
600 if (ci->fsm.id && !(ci->driver) &&
601 ci->fsm.otg->state < OTG_STATE_A_IDLE)
602 return 0;
603
604 pm_runtime_get_sync(ci->dev);
605 if (otg_statemachine(&ci->fsm)) {
606 if (ci->fsm.otg->state == OTG_STATE_A_IDLE) {
607
608
609
610
611
612
613
614
615 if ((ci->fsm.id) || (ci->id_event) ||
616 (ci->fsm.power_up)) {
617 ci_otg_queue_work(ci);
618 } else {
619
620 hw_write(ci, OP_PORTSC, PORTSC_W1C_BITS |
621 PORTSC_PP, 0);
622 hw_write_otgsc(ci, OTGSC_DPIS, OTGSC_DPIS);
623 hw_write_otgsc(ci, OTGSC_DPIE, OTGSC_DPIE);
624 }
625 if (ci->id_event)
626 ci->id_event = false;
627 } else if (ci->fsm.otg->state == OTG_STATE_B_IDLE) {
628 if (ci->fsm.b_sess_vld) {
629 ci->fsm.power_up = 0;
630
631
632
633
634 ci_otg_queue_work(ci);
635 }
636 } else if (ci->fsm.otg->state == OTG_STATE_A_HOST) {
637 pm_runtime_mark_last_busy(ci->dev);
638 pm_runtime_put_autosuspend(ci->dev);
639 return 0;
640 }
641 }
642 pm_runtime_put_sync(ci->dev);
643 return 0;
644}
645
646
647
648
649
650static void ci_otg_fsm_event(struct ci_hdrc *ci)
651{
652 u32 intr_sts, otg_bsess_vld, port_conn;
653 struct otg_fsm *fsm = &ci->fsm;
654
655 intr_sts = hw_read_intr_status(ci);
656 otg_bsess_vld = hw_read_otgsc(ci, OTGSC_BSV);
657 port_conn = hw_read(ci, OP_PORTSC, PORTSC_CCS);
658
659 switch (ci->fsm.otg->state) {
660 case OTG_STATE_A_WAIT_BCON:
661 if (port_conn) {
662 fsm->b_conn = 1;
663 fsm->a_bus_req = 1;
664 ci_otg_queue_work(ci);
665 }
666 break;
667 case OTG_STATE_B_IDLE:
668 if (otg_bsess_vld && (intr_sts & USBi_PCI) && port_conn) {
669 fsm->b_sess_vld = 1;
670 ci_otg_queue_work(ci);
671 }
672 break;
673 case OTG_STATE_B_PERIPHERAL:
674 if ((intr_sts & USBi_SLI) && port_conn && otg_bsess_vld) {
675 ci_otg_add_timer(ci, B_AIDL_BDIS);
676 } else if (intr_sts & USBi_PCI) {
677 ci_otg_del_timer(ci, B_AIDL_BDIS);
678 if (fsm->a_bus_suspend == 1)
679 fsm->a_bus_suspend = 0;
680 }
681 break;
682 case OTG_STATE_B_HOST:
683 if ((intr_sts & USBi_PCI) && !port_conn) {
684 fsm->a_conn = 0;
685 fsm->b_bus_req = 0;
686 ci_otg_queue_work(ci);
687 }
688 break;
689 case OTG_STATE_A_PERIPHERAL:
690 if (intr_sts & USBi_SLI) {
691 fsm->b_bus_suspend = 1;
692
693
694
695
696
697 ci_otg_add_timer(ci, A_BIDL_ADIS);
698 }
699
700 if (intr_sts & USBi_URI)
701 ci_otg_del_timer(ci, A_BIDL_ADIS);
702
703 if (intr_sts & USBi_PCI) {
704 if (fsm->b_bus_suspend == 1) {
705 ci_otg_del_timer(ci, A_BIDL_ADIS);
706 fsm->b_bus_suspend = 0;
707 }
708 }
709 break;
710 case OTG_STATE_A_SUSPEND:
711 if ((intr_sts & USBi_PCI) && !port_conn) {
712 fsm->b_conn = 0;
713
714
715 if (ci->driver) {
716
717 ci->gadget.is_a_peripheral = 1;
718 }
719 ci_otg_queue_work(ci);
720 }
721 break;
722 case OTG_STATE_A_HOST:
723 if ((intr_sts & USBi_PCI) && !port_conn) {
724 fsm->b_conn = 0;
725 ci_otg_queue_work(ci);
726 }
727 break;
728 case OTG_STATE_B_WAIT_ACON:
729 if ((intr_sts & USBi_PCI) && port_conn) {
730 fsm->a_conn = 1;
731 ci_otg_queue_work(ci);
732 }
733 break;
734 default:
735 break;
736 }
737}
738
739
740
741
742
743
744
745irqreturn_t ci_otg_fsm_irq(struct ci_hdrc *ci)
746{
747 irqreturn_t retval = IRQ_NONE;
748 u32 otgsc, otg_int_src = 0;
749 struct otg_fsm *fsm = &ci->fsm;
750
751 otgsc = hw_read_otgsc(ci, ~0);
752 otg_int_src = otgsc & OTGSC_INT_STATUS_BITS & (otgsc >> 8);
753 fsm->id = (otgsc & OTGSC_ID) ? 1 : 0;
754
755 if (otg_int_src) {
756 if (otg_int_src & OTGSC_DPIS) {
757 hw_write_otgsc(ci, OTGSC_DPIS, OTGSC_DPIS);
758 fsm->a_srp_det = 1;
759 fsm->a_bus_drop = 0;
760 } else if (otg_int_src & OTGSC_IDIS) {
761 hw_write_otgsc(ci, OTGSC_IDIS, OTGSC_IDIS);
762 if (fsm->id == 0) {
763 fsm->a_bus_drop = 0;
764 fsm->a_bus_req = 1;
765 ci->id_event = true;
766 }
767 } else if (otg_int_src & OTGSC_BSVIS) {
768 hw_write_otgsc(ci, OTGSC_BSVIS, OTGSC_BSVIS);
769 if (otgsc & OTGSC_BSV) {
770 fsm->b_sess_vld = 1;
771 ci_otg_del_timer(ci, B_SSEND_SRP);
772 ci_otg_del_timer(ci, B_SRP_FAIL);
773 fsm->b_ssend_srp = 0;
774 } else {
775 fsm->b_sess_vld = 0;
776 if (fsm->id)
777 ci_otg_add_timer(ci, B_SSEND_SRP);
778 }
779 } else if (otg_int_src & OTGSC_AVVIS) {
780 hw_write_otgsc(ci, OTGSC_AVVIS, OTGSC_AVVIS);
781 if (otgsc & OTGSC_AVV) {
782 fsm->a_vbus_vld = 1;
783 } else {
784 fsm->a_vbus_vld = 0;
785 fsm->b_conn = 0;
786 }
787 }
788 ci_otg_queue_work(ci);
789 return IRQ_HANDLED;
790 }
791
792 ci_otg_fsm_event(ci);
793
794 return retval;
795}
796
797void ci_hdrc_otg_fsm_start(struct ci_hdrc *ci)
798{
799 ci_otg_queue_work(ci);
800}
801
802int ci_hdrc_otg_fsm_init(struct ci_hdrc *ci)
803{
804 int retval = 0;
805
806 if (ci->phy)
807 ci->otg.phy = ci->phy;
808 else
809 ci->otg.usb_phy = ci->usb_phy;
810
811 ci->otg.gadget = &ci->gadget;
812 ci->fsm.otg = &ci->otg;
813 ci->fsm.power_up = 1;
814 ci->fsm.id = hw_read_otgsc(ci, OTGSC_ID) ? 1 : 0;
815 ci->fsm.otg->state = OTG_STATE_UNDEFINED;
816 ci->fsm.ops = &ci_otg_ops;
817 ci->gadget.hnp_polling_support = 1;
818 ci->fsm.host_req_flag = devm_kzalloc(ci->dev, 1, GFP_KERNEL);
819 if (!ci->fsm.host_req_flag)
820 return -ENOMEM;
821
822 mutex_init(&ci->fsm.lock);
823
824 retval = ci_otg_init_timers(ci);
825 if (retval) {
826 dev_err(ci->dev, "Couldn't init OTG timers\n");
827 return retval;
828 }
829 ci->enabled_otg_timer_bits = 0;
830 ci->next_otg_timer = NUM_OTG_FSM_TIMERS;
831
832 retval = sysfs_create_group(&ci->dev->kobj, &inputs_attr_group);
833 if (retval < 0) {
834 dev_dbg(ci->dev,
835 "Can't register sysfs attr group: %d\n", retval);
836 return retval;
837 }
838
839
840 hw_write_otgsc(ci, OTGSC_AVVIE, OTGSC_AVVIE);
841
842 if (ci->fsm.id) {
843 ci->fsm.b_ssend_srp =
844 hw_read_otgsc(ci, OTGSC_BSV) ? 0 : 1;
845 ci->fsm.b_sess_vld =
846 hw_read_otgsc(ci, OTGSC_BSV) ? 1 : 0;
847
848 hw_write_otgsc(ci, OTGSC_BSVIE, OTGSC_BSVIE);
849 }
850
851 return 0;
852}
853
854void ci_hdrc_otg_fsm_remove(struct ci_hdrc *ci)
855{
856 sysfs_remove_group(&ci->dev->kobj, &inputs_attr_group);
857}
858