blob: 0a5e0e6449826dce494d2d0028cf691a719671af [file] [log] [blame]
b.liue9582032025-04-17 19:18:16 +08001// SPDX-License-Identifier: GPL-2.0
2/*
3 * MAX3421 Host Controller driver for USB.
4 *
5 * Author: David Mosberger-Tang <davidm@egauge.net>
6 *
7 * (C) Copyright 2014 David Mosberger-Tang <davidm@egauge.net>
8 *
9 * MAX3421 is a chip implementing a USB 2.0 Full-/Low-Speed host
10 * controller on a SPI bus.
11 *
12 * Based on:
13 * o MAX3421E datasheet
14 * http://datasheets.maximintegrated.com/en/ds/MAX3421E.pdf
15 * o MAX3421E Programming Guide
16 * http://www.hdl.co.jp/ftpdata/utl-001/AN3785.pdf
17 * o gadget/dummy_hcd.c
18 * For USB HCD implementation.
19 * o Arduino MAX3421 driver
20 * https://github.com/felis/USB_Host_Shield_2.0/blob/master/Usb.cpp
21 *
22 * This file is licenced under the GPL v2.
23 *
24 * Important note on worst-case (full-speed) packet size constraints
25 * (See USB 2.0 Section 5.6.3 and following):
26 *
27 * - control: 64 bytes
28 * - isochronous: 1023 bytes
29 * - interrupt: 64 bytes
30 * - bulk: 64 bytes
31 *
32 * Since the MAX3421 FIFO size is 64 bytes, we do not have to work about
33 * multi-FIFO writes/reads for a single USB packet *except* for isochronous
34 * transfers. We don't support isochronous transfers at this time, so we
35 * just assume that a USB packet always fits into a single FIFO buffer.
36 *
37 * NOTE: The June 2006 version of "MAX3421E Programming Guide"
38 * (AN3785) has conflicting info for the RCVDAVIRQ bit:
39 *
40 * The description of RCVDAVIRQ says "The CPU *must* clear
41 * this IRQ bit (by writing a 1 to it) before reading the
42 * RCVFIFO data.
43 *
44 * However, the earlier section on "Programming BULK-IN
45 * Transfers" says * that:
46 *
47 * After the CPU retrieves the data, it clears the
48 * RCVDAVIRQ bit.
49 *
50 * The December 2006 version has been corrected and it consistently
51 * states the second behavior is the correct one.
52 *
53 * Synchronous SPI transactions sleep so we can't perform any such
54 * transactions while holding a spin-lock (and/or while interrupts are
55 * masked). To achieve this, all SPI transactions are issued from a
56 * single thread (max3421_spi_thread).
57 */
58
59#include <linux/jiffies.h>
60#include <linux/module.h>
61#include <linux/spi/spi.h>
62#include <linux/usb.h>
63#include <linux/usb/hcd.h>
64#include <linux/of.h>
65
66#include <linux/platform_data/max3421-hcd.h>
67
68#define DRIVER_DESC "MAX3421 USB Host-Controller Driver"
69#define DRIVER_VERSION "1.0"
70
71/* 11-bit counter that wraps around (USB 2.0 Section 8.3.3): */
72#define USB_MAX_FRAME_NUMBER 0x7ff
73#define USB_MAX_RETRIES 3 /* # of retries before error is reported */
74
75/*
76 * Max. # of times we're willing to retransmit a request immediately in
77 * resposne to a NAK. Afterwards, we fall back on trying once a frame.
78 */
79#define NAK_MAX_FAST_RETRANSMITS 2
80
81#define POWER_BUDGET 500 /* in mA; use 8 for low-power port testing */
82
83/* Port-change mask: */
84#define PORT_C_MASK ((USB_PORT_STAT_C_CONNECTION | \
85 USB_PORT_STAT_C_ENABLE | \
86 USB_PORT_STAT_C_SUSPEND | \
87 USB_PORT_STAT_C_OVERCURRENT | \
88 USB_PORT_STAT_C_RESET) << 16)
89
90#define MAX3421_GPOUT_COUNT 8
91
92enum max3421_rh_state {
93 MAX3421_RH_RESET,
94 MAX3421_RH_SUSPENDED,
95 MAX3421_RH_RUNNING
96};
97
98enum pkt_state {
99 PKT_STATE_SETUP, /* waiting to send setup packet to ctrl pipe */
100 PKT_STATE_TRANSFER, /* waiting to xfer transfer_buffer */
101 PKT_STATE_TERMINATE /* waiting to terminate control transfer */
102};
103
104enum scheduling_pass {
105 SCHED_PASS_PERIODIC,
106 SCHED_PASS_NON_PERIODIC,
107 SCHED_PASS_DONE
108};
109
110/* Bit numbers for max3421_hcd->todo: */
111enum {
112 ENABLE_IRQ = 0,
113 RESET_HCD,
114 RESET_PORT,
115 CHECK_UNLINK,
116 IOPIN_UPDATE
117};
118
119struct max3421_dma_buf {
120 u8 data[2];
121};
122
123struct max3421_hcd {
124 spinlock_t lock;
125
126 struct task_struct *spi_thread;
127
128 enum max3421_rh_state rh_state;
129 /* lower 16 bits contain port status, upper 16 bits the change mask: */
130 u32 port_status;
131
132 unsigned active:1;
133
134 struct list_head ep_list; /* list of EP's with work */
135
136 /*
137 * The following are owned by spi_thread (may be accessed by
138 * SPI-thread without acquiring the HCD lock:
139 */
140 u8 rev; /* chip revision */
141 u16 frame_number;
142 /*
143 * kmalloc'd buffers guaranteed to be in separate (DMA)
144 * cache-lines:
145 */
146 struct max3421_dma_buf *tx;
147 struct max3421_dma_buf *rx;
148 /*
149 * URB we're currently processing. Must not be reset to NULL
150 * unless MAX3421E chip is idle:
151 */
152 struct urb *curr_urb;
153 enum scheduling_pass sched_pass;
154 int urb_done; /* > 0 -> no errors, < 0: errno */
155 size_t curr_len;
156 u8 hien;
157 u8 mode;
158 u8 iopins[2];
159 unsigned long todo;
160#ifdef DEBUG
161 unsigned long err_stat[16];
162#endif
163};
164
165struct max3421_ep {
166 struct usb_host_endpoint *ep;
167 struct list_head ep_list;
168 u32 naks;
169 u16 last_active; /* frame # this ep was last active */
170 enum pkt_state pkt_state;
171 u8 retries;
172 u8 retransmit; /* packet needs retransmission */
173};
174
175#define MAX3421_FIFO_SIZE 64
176
177#define MAX3421_SPI_DIR_RD 0 /* read register from MAX3421 */
178#define MAX3421_SPI_DIR_WR 1 /* write register to MAX3421 */
179
180/* SPI commands: */
181#define MAX3421_SPI_DIR_SHIFT 1
182#define MAX3421_SPI_REG_SHIFT 3
183
184#define MAX3421_REG_RCVFIFO 1
185#define MAX3421_REG_SNDFIFO 2
186#define MAX3421_REG_SUDFIFO 4
187#define MAX3421_REG_RCVBC 6
188#define MAX3421_REG_SNDBC 7
189#define MAX3421_REG_USBIRQ 13
190#define MAX3421_REG_USBIEN 14
191#define MAX3421_REG_USBCTL 15
192#define MAX3421_REG_CPUCTL 16
193#define MAX3421_REG_PINCTL 17
194#define MAX3421_REG_REVISION 18
195#define MAX3421_REG_IOPINS1 20
196#define MAX3421_REG_IOPINS2 21
197#define MAX3421_REG_GPINIRQ 22
198#define MAX3421_REG_GPINIEN 23
199#define MAX3421_REG_GPINPOL 24
200#define MAX3421_REG_HIRQ 25
201#define MAX3421_REG_HIEN 26
202#define MAX3421_REG_MODE 27
203#define MAX3421_REG_PERADDR 28
204#define MAX3421_REG_HCTL 29
205#define MAX3421_REG_HXFR 30
206#define MAX3421_REG_HRSL 31
207
208enum {
209 MAX3421_USBIRQ_OSCOKIRQ_BIT = 0,
210 MAX3421_USBIRQ_NOVBUSIRQ_BIT = 5,
211 MAX3421_USBIRQ_VBUSIRQ_BIT
212};
213
214enum {
215 MAX3421_CPUCTL_IE_BIT = 0,
216 MAX3421_CPUCTL_PULSEWID0_BIT = 6,
217 MAX3421_CPUCTL_PULSEWID1_BIT
218};
219
220enum {
221 MAX3421_USBCTL_PWRDOWN_BIT = 4,
222 MAX3421_USBCTL_CHIPRES_BIT
223};
224
225enum {
226 MAX3421_PINCTL_GPXA_BIT = 0,
227 MAX3421_PINCTL_GPXB_BIT,
228 MAX3421_PINCTL_POSINT_BIT,
229 MAX3421_PINCTL_INTLEVEL_BIT,
230 MAX3421_PINCTL_FDUPSPI_BIT,
231 MAX3421_PINCTL_EP0INAK_BIT,
232 MAX3421_PINCTL_EP2INAK_BIT,
233 MAX3421_PINCTL_EP3INAK_BIT,
234};
235
236enum {
237 MAX3421_HI_BUSEVENT_BIT = 0, /* bus-reset/-resume */
238 MAX3421_HI_RWU_BIT, /* remote wakeup */
239 MAX3421_HI_RCVDAV_BIT, /* receive FIFO data available */
240 MAX3421_HI_SNDBAV_BIT, /* send buffer available */
241 MAX3421_HI_SUSDN_BIT, /* suspend operation done */
242 MAX3421_HI_CONDET_BIT, /* peripheral connect/disconnect */
243 MAX3421_HI_FRAME_BIT, /* frame generator */
244 MAX3421_HI_HXFRDN_BIT, /* host transfer done */
245};
246
247enum {
248 MAX3421_HCTL_BUSRST_BIT = 0,
249 MAX3421_HCTL_FRMRST_BIT,
250 MAX3421_HCTL_SAMPLEBUS_BIT,
251 MAX3421_HCTL_SIGRSM_BIT,
252 MAX3421_HCTL_RCVTOG0_BIT,
253 MAX3421_HCTL_RCVTOG1_BIT,
254 MAX3421_HCTL_SNDTOG0_BIT,
255 MAX3421_HCTL_SNDTOG1_BIT
256};
257
258enum {
259 MAX3421_MODE_HOST_BIT = 0,
260 MAX3421_MODE_LOWSPEED_BIT,
261 MAX3421_MODE_HUBPRE_BIT,
262 MAX3421_MODE_SOFKAENAB_BIT,
263 MAX3421_MODE_SEPIRQ_BIT,
264 MAX3421_MODE_DELAYISO_BIT,
265 MAX3421_MODE_DMPULLDN_BIT,
266 MAX3421_MODE_DPPULLDN_BIT
267};
268
269enum {
270 MAX3421_HRSL_OK = 0,
271 MAX3421_HRSL_BUSY,
272 MAX3421_HRSL_BADREQ,
273 MAX3421_HRSL_UNDEF,
274 MAX3421_HRSL_NAK,
275 MAX3421_HRSL_STALL,
276 MAX3421_HRSL_TOGERR,
277 MAX3421_HRSL_WRONGPID,
278 MAX3421_HRSL_BADBC,
279 MAX3421_HRSL_PIDERR,
280 MAX3421_HRSL_PKTERR,
281 MAX3421_HRSL_CRCERR,
282 MAX3421_HRSL_KERR,
283 MAX3421_HRSL_JERR,
284 MAX3421_HRSL_TIMEOUT,
285 MAX3421_HRSL_BABBLE,
286 MAX3421_HRSL_RESULT_MASK = 0xf,
287 MAX3421_HRSL_RCVTOGRD_BIT = 4,
288 MAX3421_HRSL_SNDTOGRD_BIT,
289 MAX3421_HRSL_KSTATUS_BIT,
290 MAX3421_HRSL_JSTATUS_BIT
291};
292
293/* Return same error-codes as ohci.h:cc_to_error: */
294static const int hrsl_to_error[] = {
295 [MAX3421_HRSL_OK] = 0,
296 [MAX3421_HRSL_BUSY] = -EINVAL,
297 [MAX3421_HRSL_BADREQ] = -EINVAL,
298 [MAX3421_HRSL_UNDEF] = -EINVAL,
299 [MAX3421_HRSL_NAK] = -EAGAIN,
300 [MAX3421_HRSL_STALL] = -EPIPE,
301 [MAX3421_HRSL_TOGERR] = -EILSEQ,
302 [MAX3421_HRSL_WRONGPID] = -EPROTO,
303 [MAX3421_HRSL_BADBC] = -EREMOTEIO,
304 [MAX3421_HRSL_PIDERR] = -EPROTO,
305 [MAX3421_HRSL_PKTERR] = -EPROTO,
306 [MAX3421_HRSL_CRCERR] = -EILSEQ,
307 [MAX3421_HRSL_KERR] = -EIO,
308 [MAX3421_HRSL_JERR] = -EIO,
309 [MAX3421_HRSL_TIMEOUT] = -ETIME,
310 [MAX3421_HRSL_BABBLE] = -EOVERFLOW
311};
312
313/*
314 * See http://www.beyondlogic.org/usbnutshell/usb4.shtml#Control for a
315 * reasonable overview of how control transfers use the the IN/OUT
316 * tokens.
317 */
318#define MAX3421_HXFR_BULK_IN(ep) (0x00 | (ep)) /* bulk or interrupt */
319#define MAX3421_HXFR_SETUP 0x10
320#define MAX3421_HXFR_BULK_OUT(ep) (0x20 | (ep)) /* bulk or interrupt */
321#define MAX3421_HXFR_ISO_IN(ep) (0x40 | (ep))
322#define MAX3421_HXFR_ISO_OUT(ep) (0x60 | (ep))
323#define MAX3421_HXFR_HS_IN 0x80 /* handshake in */
324#define MAX3421_HXFR_HS_OUT 0xa0 /* handshake out */
325
326#define field(val, bit) ((val) << (bit))
327
328static inline s16
329frame_diff(u16 left, u16 right)
330{
331 return ((unsigned) (left - right)) % (USB_MAX_FRAME_NUMBER + 1);
332}
333
334static inline struct max3421_hcd *
335hcd_to_max3421(struct usb_hcd *hcd)
336{
337 return (struct max3421_hcd *) hcd->hcd_priv;
338}
339
340static inline struct usb_hcd *
341max3421_to_hcd(struct max3421_hcd *max3421_hcd)
342{
343 return container_of((void *) max3421_hcd, struct usb_hcd, hcd_priv);
344}
345
346static u8
347spi_rd8(struct usb_hcd *hcd, unsigned int reg)
348{
349 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
350 struct spi_device *spi = to_spi_device(hcd->self.controller);
351 struct spi_transfer transfer;
352 struct spi_message msg;
353
354 memset(&transfer, 0, sizeof(transfer));
355
356 spi_message_init(&msg);
357
358 max3421_hcd->tx->data[0] =
359 (field(reg, MAX3421_SPI_REG_SHIFT) |
360 field(MAX3421_SPI_DIR_RD, MAX3421_SPI_DIR_SHIFT));
361
362 transfer.tx_buf = max3421_hcd->tx->data;
363 transfer.rx_buf = max3421_hcd->rx->data;
364 transfer.len = 2;
365
366 spi_message_add_tail(&transfer, &msg);
367 spi_sync(spi, &msg);
368
369 return max3421_hcd->rx->data[1];
370}
371
372static void
373spi_wr8(struct usb_hcd *hcd, unsigned int reg, u8 val)
374{
375 struct spi_device *spi = to_spi_device(hcd->self.controller);
376 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
377 struct spi_transfer transfer;
378 struct spi_message msg;
379
380 memset(&transfer, 0, sizeof(transfer));
381
382 spi_message_init(&msg);
383
384 max3421_hcd->tx->data[0] =
385 (field(reg, MAX3421_SPI_REG_SHIFT) |
386 field(MAX3421_SPI_DIR_WR, MAX3421_SPI_DIR_SHIFT));
387 max3421_hcd->tx->data[1] = val;
388
389 transfer.tx_buf = max3421_hcd->tx->data;
390 transfer.len = 2;
391
392 spi_message_add_tail(&transfer, &msg);
393 spi_sync(spi, &msg);
394}
395
396static void
397spi_rd_buf(struct usb_hcd *hcd, unsigned int reg, void *buf, size_t len)
398{
399 struct spi_device *spi = to_spi_device(hcd->self.controller);
400 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
401 struct spi_transfer transfer[2];
402 struct spi_message msg;
403
404 memset(transfer, 0, sizeof(transfer));
405
406 spi_message_init(&msg);
407
408 max3421_hcd->tx->data[0] =
409 (field(reg, MAX3421_SPI_REG_SHIFT) |
410 field(MAX3421_SPI_DIR_RD, MAX3421_SPI_DIR_SHIFT));
411 transfer[0].tx_buf = max3421_hcd->tx->data;
412 transfer[0].len = 1;
413
414 transfer[1].rx_buf = buf;
415 transfer[1].len = len;
416
417 spi_message_add_tail(&transfer[0], &msg);
418 spi_message_add_tail(&transfer[1], &msg);
419 spi_sync(spi, &msg);
420}
421
422static void
423spi_wr_buf(struct usb_hcd *hcd, unsigned int reg, void *buf, size_t len)
424{
425 struct spi_device *spi = to_spi_device(hcd->self.controller);
426 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
427 struct spi_transfer transfer[2];
428 struct spi_message msg;
429
430 memset(transfer, 0, sizeof(transfer));
431
432 spi_message_init(&msg);
433
434 max3421_hcd->tx->data[0] =
435 (field(reg, MAX3421_SPI_REG_SHIFT) |
436 field(MAX3421_SPI_DIR_WR, MAX3421_SPI_DIR_SHIFT));
437
438 transfer[0].tx_buf = max3421_hcd->tx->data;
439 transfer[0].len = 1;
440
441 transfer[1].tx_buf = buf;
442 transfer[1].len = len;
443
444 spi_message_add_tail(&transfer[0], &msg);
445 spi_message_add_tail(&transfer[1], &msg);
446 spi_sync(spi, &msg);
447}
448
449/*
450 * Figure out the correct setting for the LOWSPEED and HUBPRE mode
451 * bits. The HUBPRE bit needs to be set when MAX3421E operates at
452 * full speed, but it's talking to a low-speed device (i.e., through a
453 * hub). Setting that bit ensures that every low-speed packet is
454 * preceded by a full-speed PRE PID. Possible configurations:
455 *
456 * Hub speed: Device speed: => LOWSPEED bit: HUBPRE bit:
457 * FULL FULL => 0 0
458 * FULL LOW => 1 1
459 * LOW LOW => 1 0
460 * LOW FULL => 1 0
461 */
462static void
463max3421_set_speed(struct usb_hcd *hcd, struct usb_device *dev)
464{
465 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
466 u8 mode_lowspeed, mode_hubpre, mode = max3421_hcd->mode;
467
468 mode_lowspeed = BIT(MAX3421_MODE_LOWSPEED_BIT);
469 mode_hubpre = BIT(MAX3421_MODE_HUBPRE_BIT);
470 if (max3421_hcd->port_status & USB_PORT_STAT_LOW_SPEED) {
471 mode |= mode_lowspeed;
472 mode &= ~mode_hubpre;
473 } else if (dev->speed == USB_SPEED_LOW) {
474 mode |= mode_lowspeed | mode_hubpre;
475 } else {
476 mode &= ~(mode_lowspeed | mode_hubpre);
477 }
478 if (mode != max3421_hcd->mode) {
479 max3421_hcd->mode = mode;
480 spi_wr8(hcd, MAX3421_REG_MODE, max3421_hcd->mode);
481 }
482
483}
484
485/*
486 * Caller must NOT hold HCD spinlock.
487 */
488static void
489max3421_set_address(struct usb_hcd *hcd, struct usb_device *dev, int epnum)
490{
491 int rcvtog, sndtog;
492 u8 hctl;
493
494 /* setup new endpoint's toggle bits: */
495 rcvtog = usb_gettoggle(dev, epnum, 0);
496 sndtog = usb_gettoggle(dev, epnum, 1);
497 hctl = (BIT(rcvtog + MAX3421_HCTL_RCVTOG0_BIT) |
498 BIT(sndtog + MAX3421_HCTL_SNDTOG0_BIT));
499
500 spi_wr8(hcd, MAX3421_REG_HCTL, hctl);
501
502 /*
503 * Note: devnum for one and the same device can change during
504 * address-assignment so it's best to just always load the
505 * address whenever the end-point changed/was forced.
506 */
507 spi_wr8(hcd, MAX3421_REG_PERADDR, dev->devnum);
508}
509
510static int
511max3421_ctrl_setup(struct usb_hcd *hcd, struct urb *urb)
512{
513 spi_wr_buf(hcd, MAX3421_REG_SUDFIFO, urb->setup_packet, 8);
514 return MAX3421_HXFR_SETUP;
515}
516
517static int
518max3421_transfer_in(struct usb_hcd *hcd, struct urb *urb)
519{
520 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
521 int epnum = usb_pipeendpoint(urb->pipe);
522
523 max3421_hcd->curr_len = 0;
524 max3421_hcd->hien |= BIT(MAX3421_HI_RCVDAV_BIT);
525 return MAX3421_HXFR_BULK_IN(epnum);
526}
527
528static int
529max3421_transfer_out(struct usb_hcd *hcd, struct urb *urb, int fast_retransmit)
530{
531 struct spi_device *spi = to_spi_device(hcd->self.controller);
532 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
533 int epnum = usb_pipeendpoint(urb->pipe);
534 u32 max_packet;
535 void *src;
536
537 src = urb->transfer_buffer + urb->actual_length;
538
539 if (fast_retransmit) {
540 if (max3421_hcd->rev == 0x12) {
541 /* work around rev 0x12 bug: */
542 spi_wr8(hcd, MAX3421_REG_SNDBC, 0);
543 spi_wr8(hcd, MAX3421_REG_SNDFIFO, ((u8 *) src)[0]);
544 spi_wr8(hcd, MAX3421_REG_SNDBC, max3421_hcd->curr_len);
545 }
546 return MAX3421_HXFR_BULK_OUT(epnum);
547 }
548
549 max_packet = usb_maxpacket(urb->dev, urb->pipe, 1);
550
551 if (max_packet > MAX3421_FIFO_SIZE) {
552 /*
553 * We do not support isochronous transfers at this
554 * time.
555 */
556 dev_err(&spi->dev,
557 "%s: packet-size of %u too big (limit is %u bytes)",
558 __func__, max_packet, MAX3421_FIFO_SIZE);
559 max3421_hcd->urb_done = -EMSGSIZE;
560 return -EMSGSIZE;
561 }
562 max3421_hcd->curr_len = min((urb->transfer_buffer_length -
563 urb->actual_length), max_packet);
564
565 spi_wr_buf(hcd, MAX3421_REG_SNDFIFO, src, max3421_hcd->curr_len);
566 spi_wr8(hcd, MAX3421_REG_SNDBC, max3421_hcd->curr_len);
567 return MAX3421_HXFR_BULK_OUT(epnum);
568}
569
570/*
571 * Issue the next host-transfer command.
572 * Caller must NOT hold HCD spinlock.
573 */
574static void
575max3421_next_transfer(struct usb_hcd *hcd, int fast_retransmit)
576{
577 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
578 struct urb *urb = max3421_hcd->curr_urb;
579 struct max3421_ep *max3421_ep;
580 int cmd = -EINVAL;
581
582 if (!urb)
583 return; /* nothing to do */
584
585 max3421_ep = urb->ep->hcpriv;
586
587 switch (max3421_ep->pkt_state) {
588 case PKT_STATE_SETUP:
589 cmd = max3421_ctrl_setup(hcd, urb);
590 break;
591
592 case PKT_STATE_TRANSFER:
593 if (usb_urb_dir_in(urb))
594 cmd = max3421_transfer_in(hcd, urb);
595 else
596 cmd = max3421_transfer_out(hcd, urb, fast_retransmit);
597 break;
598
599 case PKT_STATE_TERMINATE:
600 /*
601 * IN transfers are terminated with HS_OUT token,
602 * OUT transfers with HS_IN:
603 */
604 if (usb_urb_dir_in(urb))
605 cmd = MAX3421_HXFR_HS_OUT;
606 else
607 cmd = MAX3421_HXFR_HS_IN;
608 break;
609 }
610
611 if (cmd < 0)
612 return;
613
614 /* issue the command and wait for host-xfer-done interrupt: */
615
616 spi_wr8(hcd, MAX3421_REG_HXFR, cmd);
617 max3421_hcd->hien |= BIT(MAX3421_HI_HXFRDN_BIT);
618}
619
620/*
621 * Find the next URB to process and start its execution.
622 *
623 * At this time, we do not anticipate ever connecting a USB hub to the
624 * MAX3421 chip, so at most USB device can be connected and we can use
625 * a simplistic scheduler: at the start of a frame, schedule all
626 * periodic transfers. Once that is done, use the remainder of the
627 * frame to process non-periodic (bulk & control) transfers.
628 *
629 * Preconditions:
630 * o Caller must NOT hold HCD spinlock.
631 * o max3421_hcd->curr_urb MUST BE NULL.
632 * o MAX3421E chip must be idle.
633 */
634static int
635max3421_select_and_start_urb(struct usb_hcd *hcd)
636{
637 struct spi_device *spi = to_spi_device(hcd->self.controller);
638 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
639 struct urb *urb, *curr_urb = NULL;
640 struct max3421_ep *max3421_ep;
641 int epnum;
642 struct usb_host_endpoint *ep;
643 struct list_head *pos;
644 unsigned long flags;
645
646 spin_lock_irqsave(&max3421_hcd->lock, flags);
647
648 for (;
649 max3421_hcd->sched_pass < SCHED_PASS_DONE;
650 ++max3421_hcd->sched_pass)
651 list_for_each(pos, &max3421_hcd->ep_list) {
652 urb = NULL;
653 max3421_ep = container_of(pos, struct max3421_ep,
654 ep_list);
655 ep = max3421_ep->ep;
656
657 switch (usb_endpoint_type(&ep->desc)) {
658 case USB_ENDPOINT_XFER_ISOC:
659 case USB_ENDPOINT_XFER_INT:
660 if (max3421_hcd->sched_pass !=
661 SCHED_PASS_PERIODIC)
662 continue;
663 break;
664
665 case USB_ENDPOINT_XFER_CONTROL:
666 case USB_ENDPOINT_XFER_BULK:
667 if (max3421_hcd->sched_pass !=
668 SCHED_PASS_NON_PERIODIC)
669 continue;
670 break;
671 }
672
673 if (list_empty(&ep->urb_list))
674 continue; /* nothing to do */
675 urb = list_first_entry(&ep->urb_list, struct urb,
676 urb_list);
677 if (urb->unlinked) {
678 dev_dbg(&spi->dev, "%s: URB %p unlinked=%d",
679 __func__, urb, urb->unlinked);
680 max3421_hcd->curr_urb = urb;
681 max3421_hcd->urb_done = 1;
682 spin_unlock_irqrestore(&max3421_hcd->lock,
683 flags);
684 return 1;
685 }
686
687 switch (usb_endpoint_type(&ep->desc)) {
688 case USB_ENDPOINT_XFER_CONTROL:
689 /*
690 * Allow one control transaction per
691 * frame per endpoint:
692 */
693 if (frame_diff(max3421_ep->last_active,
694 max3421_hcd->frame_number) == 0)
695 continue;
696 break;
697
698 case USB_ENDPOINT_XFER_BULK:
699 if (max3421_ep->retransmit
700 && (frame_diff(max3421_ep->last_active,
701 max3421_hcd->frame_number)
702 == 0))
703 /*
704 * We already tried this EP
705 * during this frame and got a
706 * NAK or error; wait for next frame
707 */
708 continue;
709 break;
710
711 case USB_ENDPOINT_XFER_ISOC:
712 case USB_ENDPOINT_XFER_INT:
713 if (frame_diff(max3421_hcd->frame_number,
714 max3421_ep->last_active)
715 < urb->interval)
716 /*
717 * We already processed this
718 * end-point in the current
719 * frame
720 */
721 continue;
722 break;
723 }
724
725 /* move current ep to tail: */
726 list_move_tail(pos, &max3421_hcd->ep_list);
727 curr_urb = urb;
728 goto done;
729 }
730done:
731 if (!curr_urb) {
732 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
733 return 0;
734 }
735
736 urb = max3421_hcd->curr_urb = curr_urb;
737 epnum = usb_endpoint_num(&urb->ep->desc);
738 if (max3421_ep->retransmit)
739 /* restart (part of) a USB transaction: */
740 max3421_ep->retransmit = 0;
741 else {
742 /* start USB transaction: */
743 if (usb_endpoint_xfer_control(&ep->desc)) {
744 /*
745 * See USB 2.0 spec section 8.6.1
746 * Initialization via SETUP Token:
747 */
748 usb_settoggle(urb->dev, epnum, 0, 1);
749 usb_settoggle(urb->dev, epnum, 1, 1);
750 max3421_ep->pkt_state = PKT_STATE_SETUP;
751 } else
752 max3421_ep->pkt_state = PKT_STATE_TRANSFER;
753 }
754
755 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
756
757 max3421_ep->last_active = max3421_hcd->frame_number;
758 max3421_set_address(hcd, urb->dev, epnum);
759 max3421_set_speed(hcd, urb->dev);
760 max3421_next_transfer(hcd, 0);
761 return 1;
762}
763
764/*
765 * Check all endpoints for URBs that got unlinked.
766 *
767 * Caller must NOT hold HCD spinlock.
768 */
769static int
770max3421_check_unlink(struct usb_hcd *hcd)
771{
772 struct spi_device *spi = to_spi_device(hcd->self.controller);
773 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
774 struct max3421_ep *max3421_ep;
775 struct usb_host_endpoint *ep;
776 struct urb *urb, *next;
777 unsigned long flags;
778 int retval = 0;
779
780 spin_lock_irqsave(&max3421_hcd->lock, flags);
781 list_for_each_entry(max3421_ep, &max3421_hcd->ep_list, ep_list) {
782 ep = max3421_ep->ep;
783 list_for_each_entry_safe(urb, next, &ep->urb_list, urb_list) {
784 if (urb->unlinked) {
785 retval = 1;
786 dev_dbg(&spi->dev, "%s: URB %p unlinked=%d",
787 __func__, urb, urb->unlinked);
788 if (urb == max3421_hcd->curr_urb) {
789 max3421_hcd->urb_done = 1;
790 max3421_hcd->hien &= ~(BIT(MAX3421_HI_HXFRDN_BIT) |
791 BIT(MAX3421_HI_RCVDAV_BIT));
792 } else {
793 usb_hcd_unlink_urb_from_ep(hcd, urb);
794 spin_unlock_irqrestore(&max3421_hcd->lock,
795 flags);
796 usb_hcd_giveback_urb(hcd, urb, 0);
797 spin_lock_irqsave(&max3421_hcd->lock, flags);
798 }
799 }
800 }
801 }
802 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
803 return retval;
804}
805
806/*
807 * Caller must NOT hold HCD spinlock.
808 */
809static void
810max3421_slow_retransmit(struct usb_hcd *hcd)
811{
812 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
813 struct urb *urb = max3421_hcd->curr_urb;
814 struct max3421_ep *max3421_ep;
815
816 max3421_ep = urb->ep->hcpriv;
817 max3421_ep->retransmit = 1;
818 max3421_hcd->curr_urb = NULL;
819}
820
821/*
822 * Caller must NOT hold HCD spinlock.
823 */
824static void
825max3421_recv_data_available(struct usb_hcd *hcd)
826{
827 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
828 struct urb *urb = max3421_hcd->curr_urb;
829 size_t remaining, transfer_size;
830 u8 rcvbc;
831
832 rcvbc = spi_rd8(hcd, MAX3421_REG_RCVBC);
833
834 if (rcvbc > MAX3421_FIFO_SIZE)
835 rcvbc = MAX3421_FIFO_SIZE;
836 if (urb->actual_length >= urb->transfer_buffer_length)
837 remaining = 0;
838 else
839 remaining = urb->transfer_buffer_length - urb->actual_length;
840 transfer_size = rcvbc;
841 if (transfer_size > remaining)
842 transfer_size = remaining;
843 if (transfer_size > 0) {
844 void *dst = urb->transfer_buffer + urb->actual_length;
845
846 spi_rd_buf(hcd, MAX3421_REG_RCVFIFO, dst, transfer_size);
847 urb->actual_length += transfer_size;
848 max3421_hcd->curr_len = transfer_size;
849 }
850
851 /* ack the RCVDAV irq now that the FIFO has been read: */
852 spi_wr8(hcd, MAX3421_REG_HIRQ, BIT(MAX3421_HI_RCVDAV_BIT));
853}
854
855static void
856max3421_handle_error(struct usb_hcd *hcd, u8 hrsl)
857{
858 struct spi_device *spi = to_spi_device(hcd->self.controller);
859 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
860 u8 result_code = hrsl & MAX3421_HRSL_RESULT_MASK;
861 struct urb *urb = max3421_hcd->curr_urb;
862 struct max3421_ep *max3421_ep = urb->ep->hcpriv;
863 int switch_sndfifo;
864
865 /*
866 * If an OUT command results in any response other than OK
867 * (i.e., error or NAK), we have to perform a dummy-write to
868 * SNDBC so the FIFO gets switched back to us. Otherwise, we
869 * get out of sync with the SNDFIFO double buffer.
870 */
871 switch_sndfifo = (max3421_ep->pkt_state == PKT_STATE_TRANSFER &&
872 usb_urb_dir_out(urb));
873
874 switch (result_code) {
875 case MAX3421_HRSL_OK:
876 return; /* this shouldn't happen */
877
878 case MAX3421_HRSL_WRONGPID: /* received wrong PID */
879 case MAX3421_HRSL_BUSY: /* SIE busy */
880 case MAX3421_HRSL_BADREQ: /* bad val in HXFR */
881 case MAX3421_HRSL_UNDEF: /* reserved */
882 case MAX3421_HRSL_KERR: /* K-state instead of response */
883 case MAX3421_HRSL_JERR: /* J-state instead of response */
884 /*
885 * packet experienced an error that we cannot recover
886 * from; report error
887 */
888 max3421_hcd->urb_done = hrsl_to_error[result_code];
889 dev_dbg(&spi->dev, "%s: unexpected error HRSL=0x%02x",
890 __func__, hrsl);
891 break;
892
893 case MAX3421_HRSL_TOGERR:
894 if (usb_urb_dir_in(urb))
895 ; /* don't do anything (device will switch toggle) */
896 else {
897 /* flip the send toggle bit: */
898 int sndtog = (hrsl >> MAX3421_HRSL_SNDTOGRD_BIT) & 1;
899
900 sndtog ^= 1;
901 spi_wr8(hcd, MAX3421_REG_HCTL,
902 BIT(sndtog + MAX3421_HCTL_SNDTOG0_BIT));
903 }
904 /* FALL THROUGH */
905 case MAX3421_HRSL_BADBC: /* bad byte count */
906 case MAX3421_HRSL_PIDERR: /* received PID is corrupted */
907 case MAX3421_HRSL_PKTERR: /* packet error (stuff, EOP) */
908 case MAX3421_HRSL_CRCERR: /* CRC error */
909 case MAX3421_HRSL_BABBLE: /* device talked too long */
910 case MAX3421_HRSL_TIMEOUT:
911 if (max3421_ep->retries++ < USB_MAX_RETRIES)
912 /* retry the packet again in the next frame */
913 max3421_slow_retransmit(hcd);
914 else {
915 /* Based on ohci.h cc_to_err[]: */
916 max3421_hcd->urb_done = hrsl_to_error[result_code];
917 dev_dbg(&spi->dev, "%s: unexpected error HRSL=0x%02x",
918 __func__, hrsl);
919 }
920 break;
921
922 case MAX3421_HRSL_STALL:
923 dev_dbg(&spi->dev, "%s: unexpected error HRSL=0x%02x",
924 __func__, hrsl);
925 max3421_hcd->urb_done = hrsl_to_error[result_code];
926 break;
927
928 case MAX3421_HRSL_NAK:
929 /*
930 * Device wasn't ready for data or has no data
931 * available: retry the packet again.
932 */
933 if (max3421_ep->naks++ < NAK_MAX_FAST_RETRANSMITS) {
934 max3421_next_transfer(hcd, 1);
935 switch_sndfifo = 0;
936 } else
937 max3421_slow_retransmit(hcd);
938 break;
939 }
940 if (switch_sndfifo)
941 spi_wr8(hcd, MAX3421_REG_SNDBC, 0);
942}
943
944/*
945 * Caller must NOT hold HCD spinlock.
946 */
947static int
948max3421_transfer_in_done(struct usb_hcd *hcd, struct urb *urb)
949{
950 struct spi_device *spi = to_spi_device(hcd->self.controller);
951 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
952 u32 max_packet;
953
954 if (urb->actual_length >= urb->transfer_buffer_length)
955 return 1; /* read is complete, so we're done */
956
957 /*
958 * USB 2.0 Section 5.3.2 Pipes: packets must be full size
959 * except for last one.
960 */
961 max_packet = usb_maxpacket(urb->dev, urb->pipe, 0);
962 if (max_packet > MAX3421_FIFO_SIZE) {
963 /*
964 * We do not support isochronous transfers at this
965 * time...
966 */
967 dev_err(&spi->dev,
968 "%s: packet-size of %u too big (limit is %u bytes)",
969 __func__, max_packet, MAX3421_FIFO_SIZE);
970 return -EINVAL;
971 }
972
973 if (max3421_hcd->curr_len < max_packet) {
974 if (urb->transfer_flags & URB_SHORT_NOT_OK) {
975 /*
976 * remaining > 0 and received an
977 * unexpected partial packet ->
978 * error
979 */
980 return -EREMOTEIO;
981 } else
982 /* short read, but it's OK */
983 return 1;
984 }
985 return 0; /* not done */
986}
987
988/*
989 * Caller must NOT hold HCD spinlock.
990 */
991static int
992max3421_transfer_out_done(struct usb_hcd *hcd, struct urb *urb)
993{
994 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
995
996 urb->actual_length += max3421_hcd->curr_len;
997 if (urb->actual_length < urb->transfer_buffer_length)
998 return 0;
999 if (urb->transfer_flags & URB_ZERO_PACKET) {
1000 /*
1001 * Some hardware needs a zero-size packet at the end
1002 * of a bulk-out transfer if the last transfer was a
1003 * full-sized packet (i.e., such hardware use <
1004 * max_packet as an indicator that the end of the
1005 * packet has been reached).
1006 */
1007 u32 max_packet = usb_maxpacket(urb->dev, urb->pipe, 1);
1008
1009 if (max3421_hcd->curr_len == max_packet)
1010 return 0;
1011 }
1012 return 1;
1013}
1014
1015/*
1016 * Caller must NOT hold HCD spinlock.
1017 */
1018static void
1019max3421_host_transfer_done(struct usb_hcd *hcd)
1020{
1021 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1022 struct urb *urb = max3421_hcd->curr_urb;
1023 struct max3421_ep *max3421_ep;
1024 u8 result_code, hrsl;
1025 int urb_done = 0;
1026
1027 max3421_hcd->hien &= ~(BIT(MAX3421_HI_HXFRDN_BIT) |
1028 BIT(MAX3421_HI_RCVDAV_BIT));
1029
1030 hrsl = spi_rd8(hcd, MAX3421_REG_HRSL);
1031 result_code = hrsl & MAX3421_HRSL_RESULT_MASK;
1032
1033#ifdef DEBUG
1034 ++max3421_hcd->err_stat[result_code];
1035#endif
1036
1037 max3421_ep = urb->ep->hcpriv;
1038
1039 if (unlikely(result_code != MAX3421_HRSL_OK)) {
1040 max3421_handle_error(hcd, hrsl);
1041 return;
1042 }
1043
1044 max3421_ep->naks = 0;
1045 max3421_ep->retries = 0;
1046 switch (max3421_ep->pkt_state) {
1047
1048 case PKT_STATE_SETUP:
1049 if (urb->transfer_buffer_length > 0)
1050 max3421_ep->pkt_state = PKT_STATE_TRANSFER;
1051 else
1052 max3421_ep->pkt_state = PKT_STATE_TERMINATE;
1053 break;
1054
1055 case PKT_STATE_TRANSFER:
1056 if (usb_urb_dir_in(urb))
1057 urb_done = max3421_transfer_in_done(hcd, urb);
1058 else
1059 urb_done = max3421_transfer_out_done(hcd, urb);
1060 if (urb_done > 0 && usb_pipetype(urb->pipe) == PIPE_CONTROL) {
1061 /*
1062 * We aren't really done - we still need to
1063 * terminate the control transfer:
1064 */
1065 max3421_hcd->urb_done = urb_done = 0;
1066 max3421_ep->pkt_state = PKT_STATE_TERMINATE;
1067 }
1068 break;
1069
1070 case PKT_STATE_TERMINATE:
1071 urb_done = 1;
1072 break;
1073 }
1074
1075 if (urb_done)
1076 max3421_hcd->urb_done = urb_done;
1077 else
1078 max3421_next_transfer(hcd, 0);
1079}
1080
1081/*
1082 * Caller must NOT hold HCD spinlock.
1083 */
1084static void
1085max3421_detect_conn(struct usb_hcd *hcd)
1086{
1087 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1088 unsigned int jk, have_conn = 0;
1089 u32 old_port_status, chg;
1090 unsigned long flags;
1091 u8 hrsl, mode;
1092
1093 hrsl = spi_rd8(hcd, MAX3421_REG_HRSL);
1094
1095 jk = ((((hrsl >> MAX3421_HRSL_JSTATUS_BIT) & 1) << 0) |
1096 (((hrsl >> MAX3421_HRSL_KSTATUS_BIT) & 1) << 1));
1097
1098 mode = max3421_hcd->mode;
1099
1100 switch (jk) {
1101 case 0x0: /* SE0: disconnect */
1102 /*
1103 * Turn off SOFKAENAB bit to avoid getting interrupt
1104 * every milli-second:
1105 */
1106 mode &= ~BIT(MAX3421_MODE_SOFKAENAB_BIT);
1107 break;
1108
1109 case 0x1: /* J=0,K=1: low-speed (in full-speed or vice versa) */
1110 case 0x2: /* J=1,K=0: full-speed (in full-speed or vice versa) */
1111 if (jk == 0x2)
1112 /* need to switch to the other speed: */
1113 mode ^= BIT(MAX3421_MODE_LOWSPEED_BIT);
1114 /* turn on SOFKAENAB bit: */
1115 mode |= BIT(MAX3421_MODE_SOFKAENAB_BIT);
1116 have_conn = 1;
1117 break;
1118
1119 case 0x3: /* illegal */
1120 break;
1121 }
1122
1123 max3421_hcd->mode = mode;
1124 spi_wr8(hcd, MAX3421_REG_MODE, max3421_hcd->mode);
1125
1126 spin_lock_irqsave(&max3421_hcd->lock, flags);
1127 old_port_status = max3421_hcd->port_status;
1128 if (have_conn)
1129 max3421_hcd->port_status |= USB_PORT_STAT_CONNECTION;
1130 else
1131 max3421_hcd->port_status &= ~USB_PORT_STAT_CONNECTION;
1132 if (mode & BIT(MAX3421_MODE_LOWSPEED_BIT))
1133 max3421_hcd->port_status |= USB_PORT_STAT_LOW_SPEED;
1134 else
1135 max3421_hcd->port_status &= ~USB_PORT_STAT_LOW_SPEED;
1136 chg = (old_port_status ^ max3421_hcd->port_status);
1137 max3421_hcd->port_status |= chg << 16;
1138 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1139}
1140
1141static irqreturn_t
1142max3421_irq_handler(int irq, void *dev_id)
1143{
1144 struct usb_hcd *hcd = dev_id;
1145 struct spi_device *spi = to_spi_device(hcd->self.controller);
1146 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1147
1148 if (max3421_hcd->spi_thread &&
1149 max3421_hcd->spi_thread->state != TASK_RUNNING)
1150 wake_up_process(max3421_hcd->spi_thread);
1151 if (!test_and_set_bit(ENABLE_IRQ, &max3421_hcd->todo))
1152 disable_irq_nosync(spi->irq);
1153 return IRQ_HANDLED;
1154}
1155
1156#ifdef DEBUG
1157
1158static void
1159dump_eps(struct usb_hcd *hcd)
1160{
1161 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1162 struct max3421_ep *max3421_ep;
1163 struct usb_host_endpoint *ep;
1164 char ubuf[512], *dp, *end;
1165 unsigned long flags;
1166 struct urb *urb;
1167 int epnum, ret;
1168
1169 spin_lock_irqsave(&max3421_hcd->lock, flags);
1170 list_for_each_entry(max3421_ep, &max3421_hcd->ep_list, ep_list) {
1171 ep = max3421_ep->ep;
1172
1173 dp = ubuf;
1174 end = dp + sizeof(ubuf);
1175 *dp = '\0';
1176 list_for_each_entry(urb, &ep->urb_list, urb_list) {
1177 ret = snprintf(dp, end - dp, " %p(%d.%s %d/%d)", urb,
1178 usb_pipetype(urb->pipe),
1179 usb_urb_dir_in(urb) ? "IN" : "OUT",
1180 urb->actual_length,
1181 urb->transfer_buffer_length);
1182 if (ret < 0 || ret >= end - dp)
1183 break; /* error or buffer full */
1184 dp += ret;
1185 }
1186
1187 epnum = usb_endpoint_num(&ep->desc);
1188 pr_info("EP%0u %u lst %04u rtr %u nak %6u rxmt %u: %s\n",
1189 epnum, max3421_ep->pkt_state, max3421_ep->last_active,
1190 max3421_ep->retries, max3421_ep->naks,
1191 max3421_ep->retransmit, ubuf);
1192 }
1193 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1194}
1195
1196#endif /* DEBUG */
1197
1198/* Return zero if no work was performed, 1 otherwise. */
1199static int
1200max3421_handle_irqs(struct usb_hcd *hcd)
1201{
1202 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1203 u32 chg, old_port_status;
1204 unsigned long flags;
1205 u8 hirq;
1206
1207 /*
1208 * Read and ack pending interrupts (CPU must never
1209 * clear SNDBAV directly and RCVDAV must be cleared by
1210 * max3421_recv_data_available()!):
1211 */
1212 hirq = spi_rd8(hcd, MAX3421_REG_HIRQ);
1213 hirq &= max3421_hcd->hien;
1214 if (!hirq)
1215 return 0;
1216
1217 spi_wr8(hcd, MAX3421_REG_HIRQ,
1218 hirq & ~(BIT(MAX3421_HI_SNDBAV_BIT) |
1219 BIT(MAX3421_HI_RCVDAV_BIT)));
1220
1221 if (hirq & BIT(MAX3421_HI_FRAME_BIT)) {
1222 max3421_hcd->frame_number = ((max3421_hcd->frame_number + 1)
1223 & USB_MAX_FRAME_NUMBER);
1224 max3421_hcd->sched_pass = SCHED_PASS_PERIODIC;
1225 }
1226
1227 if (hirq & BIT(MAX3421_HI_RCVDAV_BIT))
1228 max3421_recv_data_available(hcd);
1229
1230 if (hirq & BIT(MAX3421_HI_HXFRDN_BIT))
1231 max3421_host_transfer_done(hcd);
1232
1233 if (hirq & BIT(MAX3421_HI_CONDET_BIT))
1234 max3421_detect_conn(hcd);
1235
1236 /*
1237 * Now process interrupts that may affect HCD state
1238 * other than the end-points:
1239 */
1240 spin_lock_irqsave(&max3421_hcd->lock, flags);
1241
1242 old_port_status = max3421_hcd->port_status;
1243 if (hirq & BIT(MAX3421_HI_BUSEVENT_BIT)) {
1244 if (max3421_hcd->port_status & USB_PORT_STAT_RESET) {
1245 /* BUSEVENT due to completion of Bus Reset */
1246 max3421_hcd->port_status &= ~USB_PORT_STAT_RESET;
1247 max3421_hcd->port_status |= USB_PORT_STAT_ENABLE;
1248 } else {
1249 /* BUSEVENT due to completion of Bus Resume */
1250 pr_info("%s: BUSEVENT Bus Resume Done\n", __func__);
1251 }
1252 }
1253 if (hirq & BIT(MAX3421_HI_RWU_BIT))
1254 pr_info("%s: RWU\n", __func__);
1255 if (hirq & BIT(MAX3421_HI_SUSDN_BIT))
1256 pr_info("%s: SUSDN\n", __func__);
1257
1258 chg = (old_port_status ^ max3421_hcd->port_status);
1259 max3421_hcd->port_status |= chg << 16;
1260
1261 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1262
1263#ifdef DEBUG
1264 {
1265 static unsigned long last_time;
1266 char sbuf[16 * 16], *dp, *end;
1267 int i;
1268
1269 if (time_after(jiffies, last_time + 5*HZ)) {
1270 dp = sbuf;
1271 end = sbuf + sizeof(sbuf);
1272 *dp = '\0';
1273 for (i = 0; i < 16; ++i) {
1274 int ret = snprintf(dp, end - dp, " %lu",
1275 max3421_hcd->err_stat[i]);
1276 if (ret < 0 || ret >= end - dp)
1277 break; /* error or buffer full */
1278 dp += ret;
1279 }
1280 pr_info("%s: hrsl_stats %s\n", __func__, sbuf);
1281 memset(max3421_hcd->err_stat, 0,
1282 sizeof(max3421_hcd->err_stat));
1283 last_time = jiffies;
1284
1285 dump_eps(hcd);
1286 }
1287 }
1288#endif
1289 return 1;
1290}
1291
1292static int
1293max3421_reset_hcd(struct usb_hcd *hcd)
1294{
1295 struct spi_device *spi = to_spi_device(hcd->self.controller);
1296 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1297 int timeout;
1298
1299 /* perform a chip reset and wait for OSCIRQ signal to appear: */
1300 spi_wr8(hcd, MAX3421_REG_USBCTL, BIT(MAX3421_USBCTL_CHIPRES_BIT));
1301 /* clear reset: */
1302 spi_wr8(hcd, MAX3421_REG_USBCTL, 0);
1303 timeout = 1000;
1304 while (1) {
1305 if (spi_rd8(hcd, MAX3421_REG_USBIRQ)
1306 & BIT(MAX3421_USBIRQ_OSCOKIRQ_BIT))
1307 break;
1308 if (--timeout < 0) {
1309 dev_err(&spi->dev,
1310 "timed out waiting for oscillator OK signal");
1311 return 1;
1312 }
1313 cond_resched();
1314 }
1315
1316 /*
1317 * Turn on host mode, automatic generation of SOF packets, and
1318 * enable pull-down registers on DM/DP:
1319 */
1320 max3421_hcd->mode = (BIT(MAX3421_MODE_HOST_BIT) |
1321 BIT(MAX3421_MODE_SOFKAENAB_BIT) |
1322 BIT(MAX3421_MODE_DMPULLDN_BIT) |
1323 BIT(MAX3421_MODE_DPPULLDN_BIT));
1324 spi_wr8(hcd, MAX3421_REG_MODE, max3421_hcd->mode);
1325
1326 /* reset frame-number: */
1327 max3421_hcd->frame_number = USB_MAX_FRAME_NUMBER;
1328 spi_wr8(hcd, MAX3421_REG_HCTL, BIT(MAX3421_HCTL_FRMRST_BIT));
1329
1330 /* sample the state of the D+ and D- lines */
1331 spi_wr8(hcd, MAX3421_REG_HCTL, BIT(MAX3421_HCTL_SAMPLEBUS_BIT));
1332 max3421_detect_conn(hcd);
1333
1334 /* enable frame, connection-detected, and bus-event interrupts: */
1335 max3421_hcd->hien = (BIT(MAX3421_HI_FRAME_BIT) |
1336 BIT(MAX3421_HI_CONDET_BIT) |
1337 BIT(MAX3421_HI_BUSEVENT_BIT));
1338 spi_wr8(hcd, MAX3421_REG_HIEN, max3421_hcd->hien);
1339
1340 /* enable interrupts: */
1341 spi_wr8(hcd, MAX3421_REG_CPUCTL, BIT(MAX3421_CPUCTL_IE_BIT));
1342 return 1;
1343}
1344
1345static int
1346max3421_urb_done(struct usb_hcd *hcd)
1347{
1348 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1349 unsigned long flags;
1350 struct urb *urb;
1351 int status;
1352
1353 status = max3421_hcd->urb_done;
1354 max3421_hcd->urb_done = 0;
1355 if (status > 0)
1356 status = 0;
1357 urb = max3421_hcd->curr_urb;
1358 if (urb) {
1359 /* save the old end-points toggles: */
1360 u8 hrsl = spi_rd8(hcd, MAX3421_REG_HRSL);
1361 int rcvtog = (hrsl >> MAX3421_HRSL_RCVTOGRD_BIT) & 1;
1362 int sndtog = (hrsl >> MAX3421_HRSL_SNDTOGRD_BIT) & 1;
1363 int epnum = usb_endpoint_num(&urb->ep->desc);
1364
1365 /* no locking: HCD (i.e., we) own toggles, don't we? */
1366 usb_settoggle(urb->dev, epnum, 0, rcvtog);
1367 usb_settoggle(urb->dev, epnum, 1, sndtog);
1368
1369 max3421_hcd->curr_urb = NULL;
1370 spin_lock_irqsave(&max3421_hcd->lock, flags);
1371 usb_hcd_unlink_urb_from_ep(hcd, urb);
1372 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1373
1374 /* must be called without the HCD spinlock: */
1375 usb_hcd_giveback_urb(hcd, urb, status);
1376 }
1377 return 1;
1378}
1379
1380static int
1381max3421_spi_thread(void *dev_id)
1382{
1383 struct usb_hcd *hcd = dev_id;
1384 struct spi_device *spi = to_spi_device(hcd->self.controller);
1385 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1386 int i, i_worked = 1;
1387
1388 /* set full-duplex SPI mode, low-active interrupt pin: */
1389 spi_wr8(hcd, MAX3421_REG_PINCTL,
1390 (BIT(MAX3421_PINCTL_FDUPSPI_BIT) | /* full-duplex */
1391 BIT(MAX3421_PINCTL_INTLEVEL_BIT))); /* low-active irq */
1392
1393 while (!kthread_should_stop()) {
1394 max3421_hcd->rev = spi_rd8(hcd, MAX3421_REG_REVISION);
1395 if (max3421_hcd->rev == 0x12 || max3421_hcd->rev == 0x13)
1396 break;
1397 dev_err(&spi->dev, "bad rev 0x%02x", max3421_hcd->rev);
1398 msleep(10000);
1399 }
1400 dev_info(&spi->dev, "rev 0x%x, SPI clk %dHz, bpw %u, irq %d\n",
1401 max3421_hcd->rev, spi->max_speed_hz, spi->bits_per_word,
1402 spi->irq);
1403
1404 while (!kthread_should_stop()) {
1405 if (!i_worked) {
1406 /*
1407 * We'll be waiting for wakeups from the hard
1408 * interrupt handler, so now is a good time to
1409 * sync our hien with the chip:
1410 */
1411 spi_wr8(hcd, MAX3421_REG_HIEN, max3421_hcd->hien);
1412
1413 set_current_state(TASK_INTERRUPTIBLE);
1414 if (test_and_clear_bit(ENABLE_IRQ, &max3421_hcd->todo))
1415 enable_irq(spi->irq);
1416 schedule();
1417 __set_current_state(TASK_RUNNING);
1418 }
1419
1420 i_worked = 0;
1421
1422 if (max3421_hcd->urb_done)
1423 i_worked |= max3421_urb_done(hcd);
1424 else if (max3421_handle_irqs(hcd))
1425 i_worked = 1;
1426 else if (!max3421_hcd->curr_urb)
1427 i_worked |= max3421_select_and_start_urb(hcd);
1428
1429 if (test_and_clear_bit(RESET_HCD, &max3421_hcd->todo))
1430 /* reset the HCD: */
1431 i_worked |= max3421_reset_hcd(hcd);
1432 if (test_and_clear_bit(RESET_PORT, &max3421_hcd->todo)) {
1433 /* perform a USB bus reset: */
1434 spi_wr8(hcd, MAX3421_REG_HCTL,
1435 BIT(MAX3421_HCTL_BUSRST_BIT));
1436 i_worked = 1;
1437 }
1438 if (test_and_clear_bit(CHECK_UNLINK, &max3421_hcd->todo))
1439 i_worked |= max3421_check_unlink(hcd);
1440 if (test_and_clear_bit(IOPIN_UPDATE, &max3421_hcd->todo)) {
1441 /*
1442 * IOPINS1/IOPINS2 do not auto-increment, so we can't
1443 * use spi_wr_buf().
1444 */
1445 for (i = 0; i < ARRAY_SIZE(max3421_hcd->iopins); ++i) {
1446 u8 val = spi_rd8(hcd, MAX3421_REG_IOPINS1);
1447
1448 val = ((val & 0xf0) |
1449 (max3421_hcd->iopins[i] & 0x0f));
1450 spi_wr8(hcd, MAX3421_REG_IOPINS1 + i, val);
1451 max3421_hcd->iopins[i] = val;
1452 }
1453 i_worked = 1;
1454 }
1455 }
1456 set_current_state(TASK_RUNNING);
1457 dev_info(&spi->dev, "SPI thread exiting");
1458 return 0;
1459}
1460
1461static int
1462max3421_reset_port(struct usb_hcd *hcd)
1463{
1464 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1465
1466 max3421_hcd->port_status &= ~(USB_PORT_STAT_ENABLE |
1467 USB_PORT_STAT_LOW_SPEED);
1468 max3421_hcd->port_status |= USB_PORT_STAT_RESET;
1469 set_bit(RESET_PORT, &max3421_hcd->todo);
1470 wake_up_process(max3421_hcd->spi_thread);
1471 return 0;
1472}
1473
1474static int
1475max3421_reset(struct usb_hcd *hcd)
1476{
1477 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1478
1479 hcd->self.sg_tablesize = 0;
1480 hcd->speed = HCD_USB2;
1481 hcd->self.root_hub->speed = USB_SPEED_FULL;
1482 set_bit(RESET_HCD, &max3421_hcd->todo);
1483 wake_up_process(max3421_hcd->spi_thread);
1484 return 0;
1485}
1486
1487static int
1488max3421_start(struct usb_hcd *hcd)
1489{
1490 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1491
1492 spin_lock_init(&max3421_hcd->lock);
1493 max3421_hcd->rh_state = MAX3421_RH_RUNNING;
1494
1495 INIT_LIST_HEAD(&max3421_hcd->ep_list);
1496
1497 hcd->power_budget = POWER_BUDGET;
1498 hcd->state = HC_STATE_RUNNING;
1499 hcd->uses_new_polling = 1;
1500 return 0;
1501}
1502
1503static void
1504max3421_stop(struct usb_hcd *hcd)
1505{
1506}
1507
1508static int
1509max3421_urb_enqueue(struct usb_hcd *hcd, struct urb *urb, gfp_t mem_flags)
1510{
1511 struct spi_device *spi = to_spi_device(hcd->self.controller);
1512 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1513 struct max3421_ep *max3421_ep;
1514 unsigned long flags;
1515 int retval;
1516
1517 switch (usb_pipetype(urb->pipe)) {
1518 case PIPE_INTERRUPT:
1519 case PIPE_ISOCHRONOUS:
1520 if (urb->interval < 0) {
1521 dev_err(&spi->dev,
1522 "%s: interval=%d for intr-/iso-pipe; expected > 0\n",
1523 __func__, urb->interval);
1524 return -EINVAL;
1525 }
1526 default:
1527 break;
1528 }
1529
1530 spin_lock_irqsave(&max3421_hcd->lock, flags);
1531
1532 max3421_ep = urb->ep->hcpriv;
1533 if (!max3421_ep) {
1534 /* gets freed in max3421_endpoint_disable: */
1535 max3421_ep = kzalloc(sizeof(struct max3421_ep), GFP_ATOMIC);
1536 if (!max3421_ep) {
1537 retval = -ENOMEM;
1538 goto out;
1539 }
1540 max3421_ep->ep = urb->ep;
1541 max3421_ep->last_active = max3421_hcd->frame_number;
1542 urb->ep->hcpriv = max3421_ep;
1543
1544 list_add_tail(&max3421_ep->ep_list, &max3421_hcd->ep_list);
1545 }
1546
1547 retval = usb_hcd_link_urb_to_ep(hcd, urb);
1548 if (retval == 0) {
1549 /* Since we added to the queue, restart scheduling: */
1550 max3421_hcd->sched_pass = SCHED_PASS_PERIODIC;
1551 wake_up_process(max3421_hcd->spi_thread);
1552 }
1553
1554out:
1555 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1556 return retval;
1557}
1558
1559static int
1560max3421_urb_dequeue(struct usb_hcd *hcd, struct urb *urb, int status)
1561{
1562 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1563 unsigned long flags;
1564 int retval;
1565
1566 spin_lock_irqsave(&max3421_hcd->lock, flags);
1567
1568 /*
1569 * This will set urb->unlinked which in turn causes the entry
1570 * to be dropped at the next opportunity.
1571 */
1572 retval = usb_hcd_check_unlink_urb(hcd, urb, status);
1573 if (retval == 0) {
1574 set_bit(CHECK_UNLINK, &max3421_hcd->todo);
1575 wake_up_process(max3421_hcd->spi_thread);
1576 }
1577 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1578 return retval;
1579}
1580
1581static void
1582max3421_endpoint_disable(struct usb_hcd *hcd, struct usb_host_endpoint *ep)
1583{
1584 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1585 unsigned long flags;
1586
1587 spin_lock_irqsave(&max3421_hcd->lock, flags);
1588
1589 if (ep->hcpriv) {
1590 struct max3421_ep *max3421_ep = ep->hcpriv;
1591
1592 /* remove myself from the ep_list: */
1593 if (!list_empty(&max3421_ep->ep_list))
1594 list_del(&max3421_ep->ep_list);
1595 kfree(max3421_ep);
1596 ep->hcpriv = NULL;
1597 }
1598
1599 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1600}
1601
1602static int
1603max3421_get_frame_number(struct usb_hcd *hcd)
1604{
1605 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1606 return max3421_hcd->frame_number;
1607}
1608
1609/*
1610 * Should return a non-zero value when any port is undergoing a resume
1611 * transition while the root hub is suspended.
1612 */
1613static int
1614max3421_hub_status_data(struct usb_hcd *hcd, char *buf)
1615{
1616 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1617 unsigned long flags;
1618 int retval = 0;
1619
1620 spin_lock_irqsave(&max3421_hcd->lock, flags);
1621 if (!HCD_HW_ACCESSIBLE(hcd))
1622 goto done;
1623
1624 *buf = 0;
1625 if ((max3421_hcd->port_status & PORT_C_MASK) != 0) {
1626 *buf = (1 << 1); /* a hub over-current condition exists */
1627 dev_dbg(hcd->self.controller,
1628 "port status 0x%08x has changes\n",
1629 max3421_hcd->port_status);
1630 retval = 1;
1631 if (max3421_hcd->rh_state == MAX3421_RH_SUSPENDED)
1632 usb_hcd_resume_root_hub(hcd);
1633 }
1634done:
1635 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1636 return retval;
1637}
1638
1639static inline void
1640hub_descriptor(struct usb_hub_descriptor *desc)
1641{
1642 memset(desc, 0, sizeof(*desc));
1643 /*
1644 * See Table 11-13: Hub Descriptor in USB 2.0 spec.
1645 */
1646 desc->bDescriptorType = USB_DT_HUB; /* hub descriptor */
1647 desc->bDescLength = 9;
1648 desc->wHubCharacteristics = cpu_to_le16(HUB_CHAR_INDV_PORT_LPSM |
1649 HUB_CHAR_COMMON_OCPM);
1650 desc->bNbrPorts = 1;
1651}
1652
1653/*
1654 * Set the MAX3421E general-purpose output with number PIN_NUMBER to
1655 * VALUE (0 or 1). PIN_NUMBER may be in the range from 1-8. For
1656 * any other value, this function acts as a no-op.
1657 */
1658static void
1659max3421_gpout_set_value(struct usb_hcd *hcd, u8 pin_number, u8 value)
1660{
1661 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1662 u8 mask, idx;
1663
1664 --pin_number;
1665 if (pin_number >= MAX3421_GPOUT_COUNT)
1666 return;
1667
1668 mask = 1u << (pin_number % 4);
1669 idx = pin_number / 4;
1670
1671 if (value)
1672 max3421_hcd->iopins[idx] |= mask;
1673 else
1674 max3421_hcd->iopins[idx] &= ~mask;
1675 set_bit(IOPIN_UPDATE, &max3421_hcd->todo);
1676 wake_up_process(max3421_hcd->spi_thread);
1677}
1678
1679static int
1680max3421_hub_control(struct usb_hcd *hcd, u16 type_req, u16 value, u16 index,
1681 char *buf, u16 length)
1682{
1683 struct spi_device *spi = to_spi_device(hcd->self.controller);
1684 struct max3421_hcd *max3421_hcd = hcd_to_max3421(hcd);
1685 struct max3421_hcd_platform_data *pdata;
1686 unsigned long flags;
1687 int retval = 0;
1688
1689 pdata = spi->dev.platform_data;
1690
1691 spin_lock_irqsave(&max3421_hcd->lock, flags);
1692
1693 switch (type_req) {
1694 case ClearHubFeature:
1695 break;
1696 case ClearPortFeature:
1697 switch (value) {
1698 case USB_PORT_FEAT_SUSPEND:
1699 break;
1700 case USB_PORT_FEAT_POWER:
1701 dev_dbg(hcd->self.controller, "power-off\n");
1702 max3421_gpout_set_value(hcd, pdata->vbus_gpout,
1703 !pdata->vbus_active_level);
1704 /* FALLS THROUGH */
1705 default:
1706 max3421_hcd->port_status &= ~(1 << value);
1707 }
1708 break;
1709 case GetHubDescriptor:
1710 hub_descriptor((struct usb_hub_descriptor *) buf);
1711 break;
1712
1713 case DeviceRequest | USB_REQ_GET_DESCRIPTOR:
1714 case GetPortErrorCount:
1715 case SetHubDepth:
1716 /* USB3 only */
1717 goto error;
1718
1719 case GetHubStatus:
1720 *(__le32 *) buf = cpu_to_le32(0);
1721 break;
1722
1723 case GetPortStatus:
1724 if (index != 1) {
1725 retval = -EPIPE;
1726 goto error;
1727 }
1728 ((__le16 *) buf)[0] = cpu_to_le16(max3421_hcd->port_status);
1729 ((__le16 *) buf)[1] =
1730 cpu_to_le16(max3421_hcd->port_status >> 16);
1731 break;
1732
1733 case SetHubFeature:
1734 retval = -EPIPE;
1735 break;
1736
1737 case SetPortFeature:
1738 switch (value) {
1739 case USB_PORT_FEAT_LINK_STATE:
1740 case USB_PORT_FEAT_U1_TIMEOUT:
1741 case USB_PORT_FEAT_U2_TIMEOUT:
1742 case USB_PORT_FEAT_BH_PORT_RESET:
1743 goto error;
1744 case USB_PORT_FEAT_SUSPEND:
1745 if (max3421_hcd->active)
1746 max3421_hcd->port_status |=
1747 USB_PORT_STAT_SUSPEND;
1748 break;
1749 case USB_PORT_FEAT_POWER:
1750 dev_dbg(hcd->self.controller, "power-on\n");
1751 max3421_hcd->port_status |= USB_PORT_STAT_POWER;
1752 max3421_gpout_set_value(hcd, pdata->vbus_gpout,
1753 pdata->vbus_active_level);
1754 break;
1755 case USB_PORT_FEAT_RESET:
1756 max3421_reset_port(hcd);
1757 /* FALLS THROUGH */
1758 default:
1759 if ((max3421_hcd->port_status & USB_PORT_STAT_POWER)
1760 != 0)
1761 max3421_hcd->port_status |= (1 << value);
1762 }
1763 break;
1764
1765 default:
1766 dev_dbg(hcd->self.controller,
1767 "hub control req%04x v%04x i%04x l%d\n",
1768 type_req, value, index, length);
1769error: /* "protocol stall" on error */
1770 retval = -EPIPE;
1771 }
1772
1773 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1774 return retval;
1775}
1776
1777static int
1778max3421_bus_suspend(struct usb_hcd *hcd)
1779{
1780 return -1;
1781}
1782
1783static int
1784max3421_bus_resume(struct usb_hcd *hcd)
1785{
1786 return -1;
1787}
1788
1789static const struct hc_driver max3421_hcd_desc = {
1790 .description = "max3421",
1791 .product_desc = DRIVER_DESC,
1792 .hcd_priv_size = sizeof(struct max3421_hcd),
1793 .flags = HCD_USB11,
1794 .reset = max3421_reset,
1795 .start = max3421_start,
1796 .stop = max3421_stop,
1797 .get_frame_number = max3421_get_frame_number,
1798 .urb_enqueue = max3421_urb_enqueue,
1799 .urb_dequeue = max3421_urb_dequeue,
1800 .endpoint_disable = max3421_endpoint_disable,
1801 .hub_status_data = max3421_hub_status_data,
1802 .hub_control = max3421_hub_control,
1803 .bus_suspend = max3421_bus_suspend,
1804 .bus_resume = max3421_bus_resume,
1805};
1806
1807static int
1808max3421_of_vbus_en_pin(struct device *dev, struct max3421_hcd_platform_data *pdata)
1809{
1810 int retval;
1811 uint32_t value[2];
1812
1813 if (!pdata)
1814 return -EINVAL;
1815
1816 retval = of_property_read_u32_array(dev->of_node, "maxim,vbus-en-pin", value, 2);
1817 if (retval) {
1818 dev_err(dev, "device tree node property 'maxim,vbus-en-pin' is missing\n");
1819 return retval;
1820 }
1821 dev_info(dev, "property 'maxim,vbus-en-pin' value is <%d %d>\n", value[0], value[1]);
1822
1823 pdata->vbus_gpout = value[0];
1824 pdata->vbus_active_level = value[1];
1825
1826 return 0;
1827}
1828
1829static int
1830max3421_probe(struct spi_device *spi)
1831{
1832 struct device *dev = &spi->dev;
1833 struct max3421_hcd *max3421_hcd;
1834 struct usb_hcd *hcd = NULL;
1835 struct max3421_hcd_platform_data *pdata = NULL;
1836 int retval;
1837
1838 if (spi_setup(spi) < 0) {
1839 dev_err(&spi->dev, "Unable to setup SPI bus");
1840 return -EFAULT;
1841 }
1842
1843 if (!spi->irq) {
1844 dev_err(dev, "Failed to get SPI IRQ");
1845 return -EFAULT;
1846 }
1847
1848 if (IS_ENABLED(CONFIG_OF) && dev->of_node) {
1849 pdata = devm_kzalloc(&spi->dev, sizeof(*pdata), GFP_KERNEL);
1850 if (!pdata) {
1851 retval = -ENOMEM;
1852 goto error;
1853 }
1854 retval = max3421_of_vbus_en_pin(dev, pdata);
1855 if (retval)
1856 goto error;
1857
1858 spi->dev.platform_data = pdata;
1859 }
1860
1861 pdata = spi->dev.platform_data;
1862 if (!pdata) {
1863 dev_err(&spi->dev, "driver configuration data is not provided\n");
1864 retval = -EFAULT;
1865 goto error;
1866 }
1867 if (pdata->vbus_active_level > 1) {
1868 dev_err(&spi->dev, "vbus active level value %d is out of range (0/1)\n", pdata->vbus_active_level);
1869 retval = -EINVAL;
1870 goto error;
1871 }
1872 if (pdata->vbus_gpout < 1 || pdata->vbus_gpout > MAX3421_GPOUT_COUNT) {
1873 dev_err(&spi->dev, "vbus gpout value %d is out of range (1..8)\n", pdata->vbus_gpout);
1874 retval = -EINVAL;
1875 goto error;
1876 }
1877
1878 retval = -ENOMEM;
1879 hcd = usb_create_hcd(&max3421_hcd_desc, &spi->dev,
1880 dev_name(&spi->dev));
1881 if (!hcd) {
1882 dev_err(&spi->dev, "failed to create HCD structure\n");
1883 goto error;
1884 }
1885 set_bit(HCD_FLAG_POLL_RH, &hcd->flags);
1886 max3421_hcd = hcd_to_max3421(hcd);
1887 INIT_LIST_HEAD(&max3421_hcd->ep_list);
1888 spi_set_drvdata(spi, max3421_hcd);
1889
1890 max3421_hcd->tx = kmalloc(sizeof(*max3421_hcd->tx), GFP_KERNEL);
1891 if (!max3421_hcd->tx)
1892 goto error;
1893 max3421_hcd->rx = kmalloc(sizeof(*max3421_hcd->rx), GFP_KERNEL);
1894 if (!max3421_hcd->rx)
1895 goto error;
1896
1897 max3421_hcd->spi_thread = kthread_run(max3421_spi_thread, hcd,
1898 "max3421_spi_thread");
1899 if (max3421_hcd->spi_thread == ERR_PTR(-ENOMEM)) {
1900 dev_err(&spi->dev,
1901 "failed to create SPI thread (out of memory)\n");
1902 goto error;
1903 }
1904
1905 retval = usb_add_hcd(hcd, 0, 0);
1906 if (retval) {
1907 dev_err(&spi->dev, "failed to add HCD\n");
1908 goto error;
1909 }
1910
1911 retval = request_irq(spi->irq, max3421_irq_handler,
1912 IRQF_TRIGGER_LOW, "max3421", hcd);
1913 if (retval < 0) {
1914 dev_err(&spi->dev, "failed to request irq %d\n", spi->irq);
1915 goto error;
1916 }
1917 return 0;
1918
1919error:
1920 if (IS_ENABLED(CONFIG_OF) && dev->of_node && pdata) {
1921 devm_kfree(&spi->dev, pdata);
1922 spi->dev.platform_data = NULL;
1923 }
1924
1925 if (hcd) {
1926 kfree(max3421_hcd->tx);
1927 kfree(max3421_hcd->rx);
1928 if (max3421_hcd->spi_thread)
1929 kthread_stop(max3421_hcd->spi_thread);
1930 usb_put_hcd(hcd);
1931 }
1932 return retval;
1933}
1934
1935static int
1936max3421_remove(struct spi_device *spi)
1937{
1938 struct max3421_hcd *max3421_hcd;
1939 struct usb_hcd *hcd;
1940 unsigned long flags;
1941
1942 max3421_hcd = spi_get_drvdata(spi);
1943 hcd = max3421_to_hcd(max3421_hcd);
1944
1945 usb_remove_hcd(hcd);
1946
1947 spin_lock_irqsave(&max3421_hcd->lock, flags);
1948
1949 kthread_stop(max3421_hcd->spi_thread);
1950
1951 spin_unlock_irqrestore(&max3421_hcd->lock, flags);
1952
1953 free_irq(spi->irq, hcd);
1954
1955 usb_put_hcd(hcd);
1956 return 0;
1957}
1958
1959static const struct of_device_id max3421_of_match_table[] = {
1960 { .compatible = "maxim,max3421", },
1961 {},
1962};
1963MODULE_DEVICE_TABLE(of, max3421_of_match_table);
1964
1965static struct spi_driver max3421_driver = {
1966 .probe = max3421_probe,
1967 .remove = max3421_remove,
1968 .driver = {
1969 .name = "max3421-hcd",
1970 .of_match_table = of_match_ptr(max3421_of_match_table),
1971 },
1972};
1973
1974module_spi_driver(max3421_driver);
1975
1976MODULE_DESCRIPTION(DRIVER_DESC);
1977MODULE_AUTHOR("David Mosberger <davidm@egauge.net>");
1978MODULE_LICENSE("GPL");