common: Drop linux/delay.h from common header
[oweals/u-boot.git] / drivers / usb / gadget / fotg210.c
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Faraday USB 2.0 OTG Controller
4  *
5  * (C) Copyright 2010 Faraday Technology
6  * Dante Su <dantesu@faraday-tech.com>
7  */
8
9 #include <common.h>
10 #include <command.h>
11 #include <config.h>
12 #include <cpu_func.h>
13 #include <log.h>
14 #include <net.h>
15 #include <malloc.h>
16 #include <asm/io.h>
17 #include <linux/delay.h>
18 #include <linux/errno.h>
19 #include <linux/types.h>
20 #include <linux/usb/ch9.h>
21 #include <linux/usb/gadget.h>
22
23 #include <usb/fotg210.h>
24
25 #define CFG_NUM_ENDPOINTS               4
26 #define CFG_EP0_MAX_PACKET_SIZE 64
27 #define CFG_EPX_MAX_PACKET_SIZE 512
28
29 #define CFG_CMD_TIMEOUT (CONFIG_SYS_HZ >> 2) /* 250 ms */
30
31 struct fotg210_chip;
32
33 struct fotg210_ep {
34         struct usb_ep ep;
35
36         uint maxpacket;
37         uint id;
38         uint stopped;
39
40         struct list_head                      queue;
41         struct fotg210_chip                  *chip;
42         const struct usb_endpoint_descriptor *desc;
43 };
44
45 struct fotg210_request {
46         struct usb_request req;
47         struct list_head   queue;
48         struct fotg210_ep *ep;
49 };
50
51 struct fotg210_chip {
52         struct usb_gadget         gadget;
53         struct usb_gadget_driver *driver;
54         struct fotg210_regs      *regs;
55         uint8_t                   irq;
56         uint16_t                  addr;
57         int                       pullup;
58         enum usb_device_state     state;
59         struct fotg210_ep         ep[1 + CFG_NUM_ENDPOINTS];
60 };
61
62 static struct usb_endpoint_descriptor ep0_desc = {
63         .bLength = sizeof(struct usb_endpoint_descriptor),
64         .bDescriptorType = USB_DT_ENDPOINT,
65         .bEndpointAddress = USB_DIR_IN,
66         .bmAttributes = USB_ENDPOINT_XFER_CONTROL,
67 };
68
69 static inline int fifo_to_ep(struct fotg210_chip *chip, int id, int in)
70 {
71         return (id < 0) ? 0 : ((id & 0x03) + 1);
72 }
73
74 static inline int ep_to_fifo(struct fotg210_chip *chip, int id)
75 {
76         return (id <= 0) ? -1 : ((id - 1) & 0x03);
77 }
78
79 static inline int ep_reset(struct fotg210_chip *chip, uint8_t ep_addr)
80 {
81         int ep = ep_addr & USB_ENDPOINT_NUMBER_MASK;
82         struct fotg210_regs *regs = chip->regs;
83
84         if (ep_addr & USB_DIR_IN) {
85                 /* reset endpoint */
86                 setbits_le32(&regs->iep[ep - 1], IEP_RESET);
87                 mdelay(1);
88                 clrbits_le32(&regs->iep[ep - 1], IEP_RESET);
89                 /* clear endpoint stall */
90                 clrbits_le32(&regs->iep[ep - 1], IEP_STALL);
91         } else {
92                 /* reset endpoint */
93                 setbits_le32(&regs->oep[ep - 1], OEP_RESET);
94                 mdelay(1);
95                 clrbits_le32(&regs->oep[ep - 1], OEP_RESET);
96                 /* clear endpoint stall */
97                 clrbits_le32(&regs->oep[ep - 1], OEP_STALL);
98         }
99
100         return 0;
101 }
102
103 static int fotg210_reset(struct fotg210_chip *chip)
104 {
105         struct fotg210_regs *regs = chip->regs;
106         uint32_t i;
107
108         chip->state = USB_STATE_POWERED;
109
110         /* chip enable */
111         writel(DEVCTRL_EN, &regs->dev_ctrl);
112
113         /* device address reset */
114         chip->addr = 0;
115         writel(0, &regs->dev_addr);
116
117         /* set idle counter to 7ms */
118         writel(7, &regs->idle);
119
120         /* disable all interrupts */
121         writel(IMR_MASK, &regs->imr);
122         writel(GIMR_MASK, &regs->gimr);
123         writel(GIMR0_MASK, &regs->gimr0);
124         writel(GIMR1_MASK, &regs->gimr1);
125         writel(GIMR2_MASK, &regs->gimr2);
126
127         /* clear interrupts */
128         writel(ISR_MASK, &regs->isr);
129         writel(0, &regs->gisr);
130         writel(0, &regs->gisr0);
131         writel(0, &regs->gisr1);
132         writel(0, &regs->gisr2);
133
134         /* chip reset */
135         setbits_le32(&regs->dev_ctrl, DEVCTRL_RESET);
136         mdelay(10);
137         if (readl(&regs->dev_ctrl) & DEVCTRL_RESET) {
138                 printf("fotg210: chip reset failed\n");
139                 return -1;
140         }
141
142         /* CX FIFO reset */
143         setbits_le32(&regs->cxfifo, CXFIFO_CXFIFOCLR);
144         mdelay(10);
145         if (readl(&regs->cxfifo) & CXFIFO_CXFIFOCLR) {
146                 printf("fotg210: ep0 fifo reset failed\n");
147                 return -1;
148         }
149
150         /* create static ep-fifo map (EP1 <-> FIFO0, EP2 <-> FIFO1 ...) */
151         writel(EPMAP14_DEFAULT, &regs->epmap14);
152         writel(EPMAP58_DEFAULT, &regs->epmap58);
153         writel(FIFOMAP_DEFAULT, &regs->fifomap);
154         writel(0, &regs->fifocfg);
155         for (i = 0; i < 8; ++i) {
156                 writel(CFG_EPX_MAX_PACKET_SIZE, &regs->iep[i]);
157                 writel(CFG_EPX_MAX_PACKET_SIZE, &regs->oep[i]);
158         }
159
160         /* FIFO reset */
161         for (i = 0; i < 4; ++i) {
162                 writel(FIFOCSR_RESET, &regs->fifocsr[i]);
163                 mdelay(10);
164                 if (readl(&regs->fifocsr[i]) & FIFOCSR_RESET) {
165                         printf("fotg210: fifo%d reset failed\n", i);
166                         return -1;
167                 }
168         }
169
170         /* enable only device interrupt and triggered at level-high */
171         writel(IMR_IRQLH | IMR_HOST | IMR_OTG, &regs->imr);
172         writel(ISR_MASK, &regs->isr);
173         /* disable EP0 IN/OUT interrupt */
174         writel(GIMR0_CXOUT | GIMR0_CXIN, &regs->gimr0);
175         /* disable EPX IN+SPK+OUT interrupts */
176         writel(GIMR1_MASK, &regs->gimr1);
177         /* disable wakeup+idle+dma+zlp interrupts */
178         writel(GIMR2_WAKEUP | GIMR2_IDLE | GIMR2_DMAERR | GIMR2_DMAFIN
179                 | GIMR2_ZLPRX | GIMR2_ZLPTX, &regs->gimr2);
180         /* enable all group interrupt */
181         writel(0, &regs->gimr);
182
183         /* suspend delay = 3 ms */
184         writel(3, &regs->idle);
185
186         /* turn-on device interrupts */
187         setbits_le32(&regs->dev_ctrl, DEVCTRL_GIRQ_EN);
188
189         return 0;
190 }
191
192 static inline int fotg210_cxwait(struct fotg210_chip *chip, uint32_t mask)
193 {
194         struct fotg210_regs *regs = chip->regs;
195         int ret = -1;
196         ulong ts;
197
198         for (ts = get_timer(0); get_timer(ts) < CFG_CMD_TIMEOUT; ) {
199                 if ((readl(&regs->cxfifo) & mask) != mask)
200                         continue;
201                 ret = 0;
202                 break;
203         }
204
205         if (ret)
206                 printf("fotg210: cx/ep0 timeout\n");
207
208         return ret;
209 }
210
211 static int fotg210_dma(struct fotg210_ep *ep, struct fotg210_request *req)
212 {
213         struct fotg210_chip *chip = ep->chip;
214         struct fotg210_regs *regs = chip->regs;
215         uint32_t tmp, ts;
216         uint8_t *buf  = req->req.buf + req->req.actual;
217         uint32_t len  = req->req.length - req->req.actual;
218         int fifo = ep_to_fifo(chip, ep->id);
219         int ret = -EBUSY;
220
221         /* 1. init dma buffer */
222         if (len > ep->maxpacket)
223                 len = ep->maxpacket;
224
225         /* 2. wait for dma ready (hardware) */
226         for (ts = get_timer(0); get_timer(ts) < CFG_CMD_TIMEOUT; ) {
227                 if (!(readl(&regs->dma_ctrl) & DMACTRL_START)) {
228                         ret = 0;
229                         break;
230                 }
231         }
232         if (ret) {
233                 printf("fotg210: dma busy\n");
234                 req->req.status = ret;
235                 return ret;
236         }
237
238         /* 3. DMA target setup */
239         if (ep->desc->bEndpointAddress & USB_DIR_IN)
240                 flush_dcache_range((ulong)buf, (ulong)buf + len);
241         else
242                 invalidate_dcache_range((ulong)buf, (ulong)buf + len);
243
244         writel(virt_to_phys(buf), &regs->dma_addr);
245
246         if (ep->desc->bEndpointAddress & USB_DIR_IN) {
247                 if (ep->id == 0) {
248                         /* Wait until cx/ep0 fifo empty */
249                         fotg210_cxwait(chip, CXFIFO_CXFIFOE);
250                         udelay(1);
251                         writel(DMAFIFO_CX, &regs->dma_fifo);
252                 } else {
253                         /* Wait until epx fifo empty */
254                         fotg210_cxwait(chip, CXFIFO_FIFOE(fifo));
255                         writel(DMAFIFO_FIFO(fifo), &regs->dma_fifo);
256                 }
257                 writel(DMACTRL_LEN(len) | DMACTRL_MEM2FIFO, &regs->dma_ctrl);
258         } else {
259                 uint32_t blen;
260
261                 if (ep->id == 0) {
262                         writel(DMAFIFO_CX, &regs->dma_fifo);
263                         do {
264                                 blen = CXFIFO_BYTES(readl(&regs->cxfifo));
265                         } while (blen < len);
266                 } else {
267                         writel(DMAFIFO_FIFO(fifo), &regs->dma_fifo);
268                         blen = FIFOCSR_BYTES(readl(&regs->fifocsr[fifo]));
269                 }
270                 len  = (len < blen) ? len : blen;
271                 writel(DMACTRL_LEN(len) | DMACTRL_FIFO2MEM, &regs->dma_ctrl);
272         }
273
274         /* 4. DMA start */
275         setbits_le32(&regs->dma_ctrl, DMACTRL_START);
276
277         /* 5. DMA wait */
278         ret = -EBUSY;
279         for (ts = get_timer(0); get_timer(ts) < CFG_CMD_TIMEOUT; ) {
280                 tmp = readl(&regs->gisr2);
281                 /* DMA complete */
282                 if (tmp & GISR2_DMAFIN) {
283                         ret = 0;
284                         break;
285                 }
286                 /* DMA error */
287                 if (tmp & GISR2_DMAERR) {
288                         printf("fotg210: dma error\n");
289                         break;
290                 }
291                 /* resume, suspend, reset */
292                 if (tmp & (GISR2_RESUME | GISR2_SUSPEND | GISR2_RESET)) {
293                         printf("fotg210: dma reset by host\n");
294                         break;
295                 }
296         }
297
298         /* 7. DMA target reset */
299         if (ret)
300                 writel(DMACTRL_ABORT | DMACTRL_CLRFF, &regs->dma_ctrl);
301
302         writel(0, &regs->gisr2);
303         writel(0, &regs->dma_fifo);
304
305         req->req.status = ret;
306         if (!ret)
307                 req->req.actual += len;
308         else
309                 printf("fotg210: ep%d dma error(code=%d)\n", ep->id, ret);
310
311         return len;
312 }
313
314 /*
315  * result of setup packet
316  */
317 #define CX_IDLE         0
318 #define CX_FINISH       1
319 #define CX_STALL        2
320
321 static void fotg210_setup(struct fotg210_chip *chip)
322 {
323         int id, ret = CX_IDLE;
324         uint32_t tmp[2];
325         struct usb_ctrlrequest *req = (struct usb_ctrlrequest *)tmp;
326         struct fotg210_regs *regs = chip->regs;
327
328         /*
329          * If this is the first Cx 8 byte command,
330          * we can now query USB mode (high/full speed; USB 2.0/USB 1.0)
331          */
332         if (chip->state == USB_STATE_POWERED) {
333                 chip->state = USB_STATE_DEFAULT;
334                 if (readl(&regs->otgcsr) & OTGCSR_DEV_B) {
335                         /* Mini-B */
336                         if (readl(&regs->dev_ctrl) & DEVCTRL_HS) {
337                                 puts("fotg210: HS\n");
338                                 chip->gadget.speed = USB_SPEED_HIGH;
339                                 /* SOF mask timer = 1100 ticks */
340                                 writel(SOFMTR_TMR(1100), &regs->sof_mtr);
341                         } else {
342                                 puts("fotg210: FS\n");
343                                 chip->gadget.speed = USB_SPEED_FULL;
344                                 /* SOF mask timer = 10000 ticks */
345                                 writel(SOFMTR_TMR(10000), &regs->sof_mtr);
346                         }
347                 } else {
348                         printf("fotg210: mini-A?\n");
349                 }
350         }
351
352         /* switch data port to ep0 */
353         writel(DMAFIFO_CX, &regs->dma_fifo);
354         /* fetch 8 bytes setup packet */
355         tmp[0] = readl(&regs->ep0_data);
356         tmp[1] = readl(&regs->ep0_data);
357         /* release data port */
358         writel(0, &regs->dma_fifo);
359
360         if (req->bRequestType & USB_DIR_IN)
361                 ep0_desc.bEndpointAddress = USB_DIR_IN;
362         else
363                 ep0_desc.bEndpointAddress = USB_DIR_OUT;
364
365         ret = CX_IDLE;
366
367         if ((req->bRequestType & USB_TYPE_MASK) == USB_TYPE_STANDARD) {
368                 switch (req->bRequest) {
369                 case USB_REQ_SET_CONFIGURATION:
370                         debug("fotg210: set_cfg(%d)\n", req->wValue & 0x00FF);
371                         if (!(req->wValue & 0x00FF)) {
372                                 chip->state = USB_STATE_ADDRESS;
373                                 writel(chip->addr, &regs->dev_addr);
374                         } else {
375                                 chip->state = USB_STATE_CONFIGURED;
376                                 writel(chip->addr | DEVADDR_CONF,
377                                         &regs->dev_addr);
378                         }
379                         ret = CX_IDLE;
380                         break;
381
382                 case USB_REQ_SET_ADDRESS:
383                         debug("fotg210: set_addr(0x%04X)\n", req->wValue);
384                         chip->state = USB_STATE_ADDRESS;
385                         chip->addr  = req->wValue & DEVADDR_ADDR_MASK;
386                         ret = CX_FINISH;
387                         writel(chip->addr, &regs->dev_addr);
388                         break;
389
390                 case USB_REQ_CLEAR_FEATURE:
391                         debug("fotg210: clr_feature(%d, %d)\n",
392                                 req->bRequestType & 0x03, req->wValue);
393                         switch (req->wValue) {
394                         case 0:    /* [Endpoint] halt */
395                                 ep_reset(chip, req->wIndex);
396                                 ret = CX_FINISH;
397                                 break;
398                         case 1:    /* [Device] remote wake-up */
399                         case 2:    /* [Device] test mode */
400                         default:
401                                 ret = CX_STALL;
402                                 break;
403                         }
404                         break;
405
406                 case USB_REQ_SET_FEATURE:
407                         debug("fotg210: set_feature(%d, %d)\n",
408                                 req->wValue, req->wIndex & 0xf);
409                         switch (req->wValue) {
410                         case 0:    /* Endpoint Halt */
411                                 id = req->wIndex & 0xf;
412                                 setbits_le32(&regs->iep[id - 1], IEP_STALL);
413                                 setbits_le32(&regs->oep[id - 1], OEP_STALL);
414                                 ret = CX_FINISH;
415                                 break;
416                         case 1:    /* Remote Wakeup */
417                         case 2:    /* Test Mode */
418                         default:
419                                 ret = CX_STALL;
420                                 break;
421                         }
422                         break;
423
424                 case USB_REQ_GET_STATUS:
425                         debug("fotg210: get_status\n");
426                         ret = CX_STALL;
427                         break;
428
429                 case USB_REQ_SET_DESCRIPTOR:
430                         debug("fotg210: set_descriptor\n");
431                         ret = CX_STALL;
432                         break;
433
434                 case USB_REQ_SYNCH_FRAME:
435                         debug("fotg210: sync frame\n");
436                         ret = CX_STALL;
437                         break;
438                 }
439         } /* if ((req->bRequestType & USB_TYPE_MASK) == USB_TYPE_STANDARD) */
440
441         if (ret == CX_IDLE && chip->driver->setup) {
442                 if (chip->driver->setup(&chip->gadget, req) < 0)
443                         ret = CX_STALL;
444                 else
445                         ret = CX_FINISH;
446         }
447
448         switch (ret) {
449         case CX_FINISH:
450                 setbits_le32(&regs->cxfifo, CXFIFO_CXFIN);
451                 break;
452
453         case CX_STALL:
454                 setbits_le32(&regs->cxfifo, CXFIFO_CXSTALL | CXFIFO_CXFIN);
455                 printf("fotg210: cx_stall!\n");
456                 break;
457
458         case CX_IDLE:
459                 debug("fotg210: cx_idle?\n");
460         default:
461                 break;
462         }
463 }
464
465 /*
466  * fifo - FIFO id
467  * zlp  - zero length packet
468  */
469 static void fotg210_recv(struct fotg210_chip *chip, int ep_id)
470 {
471         struct fotg210_regs *regs = chip->regs;
472         struct fotg210_ep *ep = chip->ep + ep_id;
473         struct fotg210_request *req;
474         int len;
475
476         if (ep->stopped || (ep->desc->bEndpointAddress & USB_DIR_IN)) {
477                 printf("fotg210: ep%d recv, invalid!\n", ep->id);
478                 return;
479         }
480
481         if (list_empty(&ep->queue)) {
482                 printf("fotg210: ep%d recv, drop!\n", ep->id);
483                 return;
484         }
485
486         req = list_first_entry(&ep->queue, struct fotg210_request, queue);
487         len = fotg210_dma(ep, req);
488         if (len < ep->ep.maxpacket || req->req.length <= req->req.actual) {
489                 list_del_init(&req->queue);
490                 if (req->req.complete)
491                         req->req.complete(&ep->ep, &req->req);
492         }
493
494         if (ep->id > 0 && list_empty(&ep->queue)) {
495                 setbits_le32(&regs->gimr1,
496                         GIMR1_FIFO_RX(ep_to_fifo(chip, ep->id)));
497         }
498 }
499
500 /*
501  * USB Gadget Layer
502  */
503 static int fotg210_ep_enable(
504         struct usb_ep *_ep, const struct usb_endpoint_descriptor *desc)
505 {
506         struct fotg210_ep *ep = container_of(_ep, struct fotg210_ep, ep);
507         struct fotg210_chip *chip = ep->chip;
508         struct fotg210_regs *regs = chip->regs;
509         int id = ep_to_fifo(chip, ep->id);
510         int in = (desc->bEndpointAddress & USB_DIR_IN) ? 1 : 0;
511
512         if (!_ep || !desc
513                 || desc->bDescriptorType != USB_DT_ENDPOINT
514                 || le16_to_cpu(desc->wMaxPacketSize) == 0) {
515                 printf("fotg210: bad ep or descriptor\n");
516                 return -EINVAL;
517         }
518
519         ep->desc = desc;
520         ep->stopped = 0;
521
522         if (in)
523                 setbits_le32(&regs->fifomap, FIFOMAP(id, FIFOMAP_IN));
524
525         switch (desc->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) {
526         case USB_ENDPOINT_XFER_CONTROL:
527                 return -EINVAL;
528
529         case USB_ENDPOINT_XFER_ISOC:
530                 setbits_le32(&regs->fifocfg,
531                         FIFOCFG(id, FIFOCFG_EN | FIFOCFG_ISOC));
532                 break;
533
534         case USB_ENDPOINT_XFER_BULK:
535                 setbits_le32(&regs->fifocfg,
536                         FIFOCFG(id, FIFOCFG_EN | FIFOCFG_BULK));
537                 break;
538
539         case USB_ENDPOINT_XFER_INT:
540                 setbits_le32(&regs->fifocfg,
541                         FIFOCFG(id, FIFOCFG_EN | FIFOCFG_INTR));
542                 break;
543         }
544
545         return 0;
546 }
547
548 static int fotg210_ep_disable(struct usb_ep *_ep)
549 {
550         struct fotg210_ep *ep = container_of(_ep, struct fotg210_ep, ep);
551         struct fotg210_chip *chip = ep->chip;
552         struct fotg210_regs *regs = chip->regs;
553         int id = ep_to_fifo(chip, ep->id);
554
555         ep->desc = NULL;
556         ep->stopped = 1;
557
558         clrbits_le32(&regs->fifocfg, FIFOCFG(id, FIFOCFG_CFG_MASK));
559         clrbits_le32(&regs->fifomap, FIFOMAP(id, FIFOMAP_DIR_MASK));
560
561         return 0;
562 }
563
564 static struct usb_request *fotg210_ep_alloc_request(
565         struct usb_ep *_ep, gfp_t gfp_flags)
566 {
567         struct fotg210_request *req = malloc(sizeof(*req));
568
569         if (req) {
570                 memset(req, 0, sizeof(*req));
571                 INIT_LIST_HEAD(&req->queue);
572         }
573         return &req->req;
574 }
575
576 static void fotg210_ep_free_request(
577         struct usb_ep *_ep, struct usb_request *_req)
578 {
579         struct fotg210_request *req;
580
581         req = container_of(_req, struct fotg210_request, req);
582         free(req);
583 }
584
585 static int fotg210_ep_queue(
586         struct usb_ep *_ep, struct usb_request *_req, gfp_t gfp_flags)
587 {
588         struct fotg210_ep *ep = container_of(_ep, struct fotg210_ep, ep);
589         struct fotg210_chip *chip = ep->chip;
590         struct fotg210_regs *regs = chip->regs;
591         struct fotg210_request *req;
592
593         req = container_of(_req, struct fotg210_request, req);
594         if (!_req || !_req->complete || !_req->buf
595                 || !list_empty(&req->queue)) {
596                 printf("fotg210: invalid request to ep%d\n", ep->id);
597                 return -EINVAL;
598         }
599
600         if (!chip || chip->state == USB_STATE_SUSPENDED) {
601                 printf("fotg210: request while chip suspended\n");
602                 return -EINVAL;
603         }
604
605         req->req.actual = 0;
606         req->req.status = -EINPROGRESS;
607
608         if (req->req.length == 0) {
609                 req->req.status = 0;
610                 if (req->req.complete)
611                         req->req.complete(&ep->ep, &req->req);
612                 return 0;
613         }
614
615         if (ep->id == 0) {
616                 do {
617                         int len = fotg210_dma(ep, req);
618                         if (len < ep->ep.maxpacket)
619                                 break;
620                         if (ep->desc->bEndpointAddress & USB_DIR_IN)
621                                 udelay(100);
622                 } while (req->req.length > req->req.actual);
623         } else {
624                 if (ep->desc->bEndpointAddress & USB_DIR_IN) {
625                         do {
626                                 int len = fotg210_dma(ep, req);
627                                 if (len < ep->ep.maxpacket)
628                                         break;
629                         } while (req->req.length > req->req.actual);
630                 } else {
631                         list_add_tail(&req->queue, &ep->queue);
632                         clrbits_le32(&regs->gimr1,
633                                 GIMR1_FIFO_RX(ep_to_fifo(chip, ep->id)));
634                 }
635         }
636
637         if (ep->id == 0 || (ep->desc->bEndpointAddress & USB_DIR_IN)) {
638                 if (req->req.complete)
639                         req->req.complete(&ep->ep, &req->req);
640         }
641
642         return 0;
643 }
644
645 static int fotg210_ep_dequeue(struct usb_ep *_ep, struct usb_request *_req)
646 {
647         struct fotg210_ep *ep = container_of(_ep, struct fotg210_ep, ep);
648         struct fotg210_request *req;
649
650         /* make sure it's actually queued on this endpoint */
651         list_for_each_entry(req, &ep->queue, queue) {
652                 if (&req->req == _req)
653                         break;
654         }
655         if (&req->req != _req)
656                 return -EINVAL;
657
658         /* remove the request */
659         list_del_init(&req->queue);
660
661         /* update status & invoke complete callback */
662         if (req->req.status == -EINPROGRESS) {
663                 req->req.status = -ECONNRESET;
664                 if (req->req.complete)
665                         req->req.complete(_ep, &req->req);
666         }
667
668         return 0;
669 }
670
671 static int fotg210_ep_halt(struct usb_ep *_ep, int halt)
672 {
673         struct fotg210_ep *ep = container_of(_ep, struct fotg210_ep, ep);
674         struct fotg210_chip *chip = ep->chip;
675         struct fotg210_regs *regs = chip->regs;
676         int ret = -1;
677
678         debug("fotg210: ep%d halt=%d\n", ep->id, halt);
679
680         /* Endpoint STALL */
681         if (ep->id > 0 && ep->id <= CFG_NUM_ENDPOINTS) {
682                 if (halt) {
683                         /* wait until all ep fifo empty */
684                         fotg210_cxwait(chip, 0xf00);
685                         /* stall */
686                         if (ep->desc->bEndpointAddress & USB_DIR_IN) {
687                                 setbits_le32(&regs->iep[ep->id - 1],
688                                         IEP_STALL);
689                         } else {
690                                 setbits_le32(&regs->oep[ep->id - 1],
691                                         OEP_STALL);
692                         }
693                 } else {
694                         if (ep->desc->bEndpointAddress & USB_DIR_IN) {
695                                 clrbits_le32(&regs->iep[ep->id - 1],
696                                         IEP_STALL);
697                         } else {
698                                 clrbits_le32(&regs->oep[ep->id - 1],
699                                         OEP_STALL);
700                         }
701                 }
702                 ret = 0;
703         }
704
705         return ret;
706 }
707
708 /*
709  * activate/deactivate link with host.
710  */
711 static void pullup(struct fotg210_chip *chip, int is_on)
712 {
713         struct fotg210_regs *regs = chip->regs;
714
715         if (is_on) {
716                 if (!chip->pullup) {
717                         chip->state = USB_STATE_POWERED;
718                         chip->pullup = 1;
719                         /* enable the chip */
720                         setbits_le32(&regs->dev_ctrl, DEVCTRL_EN);
721                         /* clear unplug bit (BIT0) */
722                         clrbits_le32(&regs->phy_tmsr, PHYTMSR_UNPLUG);
723                 }
724         } else {
725                 chip->state = USB_STATE_NOTATTACHED;
726                 chip->pullup = 0;
727                 chip->addr = 0;
728                 writel(chip->addr, &regs->dev_addr);
729                 /* set unplug bit (BIT0) */
730                 setbits_le32(&regs->phy_tmsr, PHYTMSR_UNPLUG);
731                 /* disable the chip */
732                 clrbits_le32(&regs->dev_ctrl, DEVCTRL_EN);
733         }
734 }
735
736 static int fotg210_pullup(struct usb_gadget *_gadget, int is_on)
737 {
738         struct fotg210_chip *chip;
739
740         chip = container_of(_gadget, struct fotg210_chip, gadget);
741
742         debug("fotg210: pullup=%d\n", is_on);
743
744         pullup(chip, is_on);
745
746         return 0;
747 }
748
749 static int fotg210_get_frame(struct usb_gadget *_gadget)
750 {
751         struct fotg210_chip *chip;
752         struct fotg210_regs *regs;
753
754         chip = container_of(_gadget, struct fotg210_chip, gadget);
755         regs = chip->regs;
756
757         return SOFFNR_FNR(readl(&regs->sof_fnr));
758 }
759
760 static struct usb_gadget_ops fotg210_gadget_ops = {
761         .get_frame = fotg210_get_frame,
762         .pullup = fotg210_pullup,
763 };
764
765 static struct usb_ep_ops fotg210_ep_ops = {
766         .enable         = fotg210_ep_enable,
767         .disable        = fotg210_ep_disable,
768         .queue          = fotg210_ep_queue,
769         .dequeue        = fotg210_ep_dequeue,
770         .set_halt       = fotg210_ep_halt,
771         .alloc_request  = fotg210_ep_alloc_request,
772         .free_request   = fotg210_ep_free_request,
773 };
774
775 static struct fotg210_chip controller = {
776         .regs = (void __iomem *)CONFIG_FOTG210_BASE,
777         .gadget = {
778                 .name = "fotg210_udc",
779                 .ops = &fotg210_gadget_ops,
780                 .ep0 = &controller.ep[0].ep,
781                 .speed = USB_SPEED_UNKNOWN,
782                 .is_dualspeed = 1,
783                 .is_otg = 0,
784                 .is_a_peripheral = 0,
785                 .b_hnp_enable = 0,
786                 .a_hnp_support = 0,
787                 .a_alt_hnp_support = 0,
788         },
789         .ep[0] = {
790                 .id = 0,
791                 .ep = {
792                         .name  = "ep0",
793                         .ops   = &fotg210_ep_ops,
794                 },
795                 .desc      = &ep0_desc,
796                 .chip      = &controller,
797                 .maxpacket = CFG_EP0_MAX_PACKET_SIZE,
798         },
799         .ep[1] = {
800                 .id = 1,
801                 .ep = {
802                         .name  = "ep1",
803                         .ops   = &fotg210_ep_ops,
804                 },
805                 .chip      = &controller,
806                 .maxpacket = CFG_EPX_MAX_PACKET_SIZE,
807         },
808         .ep[2] = {
809                 .id = 2,
810                 .ep = {
811                         .name  = "ep2",
812                         .ops   = &fotg210_ep_ops,
813                 },
814                 .chip      = &controller,
815                 .maxpacket = CFG_EPX_MAX_PACKET_SIZE,
816         },
817         .ep[3] = {
818                 .id = 3,
819                 .ep = {
820                         .name  = "ep3",
821                         .ops   = &fotg210_ep_ops,
822                 },
823                 .chip      = &controller,
824                 .maxpacket = CFG_EPX_MAX_PACKET_SIZE,
825         },
826         .ep[4] = {
827                 .id = 4,
828                 .ep = {
829                         .name  = "ep4",
830                         .ops   = &fotg210_ep_ops,
831                 },
832                 .chip      = &controller,
833                 .maxpacket = CFG_EPX_MAX_PACKET_SIZE,
834         },
835 };
836
837 int usb_gadget_handle_interrupts(int index)
838 {
839         struct fotg210_chip *chip = &controller;
840         struct fotg210_regs *regs = chip->regs;
841         uint32_t id, st, isr, gisr;
842
843         isr  = readl(&regs->isr) & (~readl(&regs->imr));
844         gisr = readl(&regs->gisr) & (~readl(&regs->gimr));
845         if (!(isr & ISR_DEV) || !gisr)
846                 return 0;
847
848         writel(ISR_DEV, &regs->isr);
849
850         /* CX interrupts */
851         if (gisr & GISR_GRP0) {
852                 st = readl(&regs->gisr0);
853                 /*
854                  * Write 1 and then 0 works for both W1C & RW.
855                  *
856                  * HW v1.11.0+: It's a W1C register (write 1 clear)
857                  * HW v1.10.0-: It's a R/W register (write 0 clear)
858                  */
859                 writel(st & GISR0_CXABORT, &regs->gisr0);
860                 writel(0, &regs->gisr0);
861
862                 if (st & GISR0_CXERR)
863                         printf("fotg210: cmd error\n");
864
865                 if (st & GISR0_CXABORT)
866                         printf("fotg210: cmd abort\n");
867
868                 if (st & GISR0_CXSETUP)    /* setup */
869                         fotg210_setup(chip);
870                 else if (st & GISR0_CXEND) /* command finish */
871                         setbits_le32(&regs->cxfifo, CXFIFO_CXFIN);
872         }
873
874         /* FIFO interrupts */
875         if (gisr & GISR_GRP1) {
876                 st = readl(&regs->gisr1);
877                 for (id = 0; id < 4; ++id) {
878                         if (st & GISR1_RX_FIFO(id))
879                                 fotg210_recv(chip, fifo_to_ep(chip, id, 0));
880                 }
881         }
882
883         /* Device Status Interrupts */
884         if (gisr & GISR_GRP2) {
885                 st = readl(&regs->gisr2);
886                 /*
887                  * Write 1 and then 0 works for both W1C & RW.
888                  *
889                  * HW v1.11.0+: It's a W1C register (write 1 clear)
890                  * HW v1.10.0-: It's a R/W register (write 0 clear)
891                  */
892                 writel(st, &regs->gisr2);
893                 writel(0, &regs->gisr2);
894
895                 if (st & GISR2_RESET)
896                         printf("fotg210: reset by host\n");
897                 else if (st & GISR2_SUSPEND)
898                         printf("fotg210: suspend/removed\n");
899                 else if (st & GISR2_RESUME)
900                         printf("fotg210: resume\n");
901
902                 /* Errors */
903                 if (st & GISR2_ISOCERR)
904                         printf("fotg210: iso error\n");
905                 if (st & GISR2_ISOCABT)
906                         printf("fotg210: iso abort\n");
907                 if (st & GISR2_DMAERR)
908                         printf("fotg210: dma error\n");
909         }
910
911         return 0;
912 }
913
914 int usb_gadget_register_driver(struct usb_gadget_driver *driver)
915 {
916         int i, ret = 0;
917         struct fotg210_chip *chip = &controller;
918
919         if (!driver    || !driver->bind || !driver->setup) {
920                 puts("fotg210: bad parameter.\n");
921                 return -EINVAL;
922         }
923
924         INIT_LIST_HEAD(&chip->gadget.ep_list);
925         for (i = 0; i < CFG_NUM_ENDPOINTS + 1; ++i) {
926                 struct fotg210_ep *ep = chip->ep + i;
927
928                 ep->ep.maxpacket = ep->maxpacket;
929                 INIT_LIST_HEAD(&ep->queue);
930
931                 if (ep->id == 0) {
932                         ep->stopped = 0;
933                 } else {
934                         ep->stopped = 1;
935                         list_add_tail(&ep->ep.ep_list, &chip->gadget.ep_list);
936                 }
937         }
938
939         if (fotg210_reset(chip)) {
940                 puts("fotg210: reset failed.\n");
941                 return -EINVAL;
942         }
943
944         ret = driver->bind(&chip->gadget);
945         if (ret) {
946                 debug("fotg210: driver->bind() returned %d\n", ret);
947                 return ret;
948         }
949         chip->driver = driver;
950
951         return ret;
952 }
953
954 int usb_gadget_unregister_driver(struct usb_gadget_driver *driver)
955 {
956         struct fotg210_chip *chip = &controller;
957
958         driver->unbind(&chip->gadget);
959         chip->driver = NULL;
960
961         pullup(chip, 0);
962
963         return 0;
964 }